diff options
Diffstat (limited to '')
327 files changed, 67948 insertions, 3737 deletions
diff --git a/tools/testing/selftests/bpf/prog_tests/access_variable_array.c b/tools/testing/selftests/bpf/prog_tests/access_variable_array.c new file mode 100644 index 000000000000..08131782437c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/access_variable_array.c @@ -0,0 +1,16 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Bytedance */ + +#include <test_progs.h> +#include "test_access_variable_array.skel.h" + +void test_access_variable_array(void) +{ + struct test_access_variable_array *skel; + + skel = test_access_variable_array__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_access_variable_array__open_and_load")) + return; + + test_access_variable_array__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/align.c b/tools/testing/selftests/bpf/prog_tests/align.c index c548aded6585..4ebd0da898f5 100644 --- a/tools/testing/selftests/bpf/prog_tests/align.c +++ b/tools/testing/selftests/bpf/prog_tests/align.c @@ -2,10 +2,11 @@ #include <test_progs.h> #define MAX_INSNS 512 -#define MAX_MATCHES 16 +#define MAX_MATCHES 24 struct bpf_reg_match { unsigned int line; + const char *reg; const char *match; }; @@ -39,13 +40,13 @@ static struct bpf_align_test tests[] = { }, .prog_type = BPF_PROG_TYPE_SCHED_CLS, .matches = { - {1, "R1=ctx(id=0,off=0,imm=0)"}, - {1, "R10=fp0"}, - {1, "R3_w=inv2"}, - {2, "R3_w=inv4"}, - {3, "R3_w=inv8"}, - {4, "R3_w=inv16"}, - {5, "R3_w=inv32"}, + {0, "R1", "ctx()"}, + {0, "R10", "fp0"}, + {0, "R3_w", "2"}, + {1, "R3_w", "4"}, + {2, "R3_w", "8"}, + {3, "R3_w", "16"}, + {4, "R3_w", "32"}, }, }, { @@ -67,19 +68,19 @@ static struct bpf_align_test tests[] = { }, .prog_type = BPF_PROG_TYPE_SCHED_CLS, .matches = { - {1, "R1=ctx(id=0,off=0,imm=0)"}, - {1, "R10=fp0"}, - {1, "R3_w=inv1"}, - {2, "R3_w=inv2"}, - {3, "R3_w=inv4"}, - {4, "R3_w=inv8"}, - {5, "R3_w=inv16"}, - {6, "R3_w=inv1"}, - {7, "R4_w=inv32"}, - {8, "R4_w=inv16"}, - {9, "R4_w=inv8"}, - {10, "R4_w=inv4"}, - {11, "R4_w=inv2"}, + {0, "R1", "ctx()"}, + {0, "R10", "fp0"}, + {0, "R3_w", "1"}, + {1, "R3_w", "2"}, + {2, "R3_w", "4"}, + {3, "R3_w", "8"}, + {4, "R3_w", "16"}, + {5, "R3_w", "1"}, + {6, "R4_w", "32"}, + {7, "R4_w", "16"}, + {8, "R4_w", "8"}, + {9, "R4_w", "4"}, + {10, "R4_w", "2"}, }, }, { @@ -96,14 +97,14 @@ static struct bpf_align_test tests[] = { }, .prog_type = BPF_PROG_TYPE_SCHED_CLS, .matches = { - {1, "R1=ctx(id=0,off=0,imm=0)"}, - {1, "R10=fp0"}, - {1, "R3_w=inv4"}, - {2, "R3_w=inv8"}, - {3, "R3_w=inv10"}, - {4, "R4_w=inv8"}, - {5, "R4_w=inv12"}, - {6, "R4_w=inv14"}, + {0, "R1", "ctx()"}, + {0, "R10", "fp0"}, + {0, "R3_w", "4"}, + {1, "R3_w", "8"}, + {2, "R3_w", "10"}, + {3, "R4_w", "8"}, + {4, "R4_w", "12"}, + {5, "R4_w", "14"}, }, }, { @@ -118,12 +119,12 @@ static struct bpf_align_test tests[] = { }, .prog_type = BPF_PROG_TYPE_SCHED_CLS, .matches = { - {1, "R1=ctx(id=0,off=0,imm=0)"}, - {1, "R10=fp0"}, - {1, "R3_w=inv7"}, - {2, "R3_w=inv7"}, - {3, "R3_w=inv14"}, - {4, "R3_w=inv56"}, + {0, "R1", "ctx()"}, + {0, "R10", "fp0"}, + {0, "R3_w", "7"}, + {1, "R3_w", "7"}, + {2, "R3_w", "14"}, + {3, "R3_w", "56"}, }, }, @@ -161,19 +162,19 @@ static struct bpf_align_test tests[] = { }, .prog_type = BPF_PROG_TYPE_SCHED_CLS, .matches = { - {7, "R0_w=pkt(id=0,off=8,r=8,imm=0)"}, - {7, "R3_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {8, "R3_w=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"}, - {9, "R3_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, - {10, "R3_w=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"}, - {11, "R3_w=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"}, - {18, "R3=pkt_end(id=0,off=0,imm=0)"}, - {18, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {19, "R4_w=inv(id=0,umax_value=8160,var_off=(0x0; 0x1fe0))"}, - {20, "R4_w=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"}, - {21, "R4_w=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"}, - {22, "R4_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, - {23, "R4_w=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"}, + {6, "R0_w", "pkt(off=8,r=8)"}, + {6, "R3_w", "var_off=(0x0; 0xff)"}, + {7, "R3_w", "var_off=(0x0; 0x1fe)"}, + {8, "R3_w", "var_off=(0x0; 0x3fc)"}, + {9, "R3_w", "var_off=(0x0; 0x7f8)"}, + {10, "R3_w", "var_off=(0x0; 0xff0)"}, + {12, "R3_w", "pkt_end()"}, + {17, "R4_w", "var_off=(0x0; 0xff)"}, + {18, "R4_w", "var_off=(0x0; 0x1fe0)"}, + {19, "R4_w", "var_off=(0x0; 0xff0)"}, + {20, "R4_w", "var_off=(0x0; 0x7f8)"}, + {21, "R4_w", "var_off=(0x0; 0x3fc)"}, + {22, "R4_w", "var_off=(0x0; 0x1fe)"}, }, }, { @@ -194,16 +195,16 @@ static struct bpf_align_test tests[] = { }, .prog_type = BPF_PROG_TYPE_SCHED_CLS, .matches = { - {7, "R3_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {8, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {9, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {10, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {11, "R4_w=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"}, - {12, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {13, "R4_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, - {14, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {15, "R4_w=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"}, - {16, "R4_w=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"}, + {6, "R3_w", "var_off=(0x0; 0xff)"}, + {7, "R4_w", "var_off=(0x0; 0xff)"}, + {8, "R4_w", "var_off=(0x0; 0xff)"}, + {9, "R4_w", "var_off=(0x0; 0xff)"}, + {10, "R4_w", "var_off=(0x0; 0x1fe)"}, + {11, "R4_w", "var_off=(0x0; 0xff)"}, + {12, "R4_w", "var_off=(0x0; 0x3fc)"}, + {13, "R4_w", "var_off=(0x0; 0xff)"}, + {14, "R4_w", "var_off=(0x0; 0x7f8)"}, + {15, "R4_w", "var_off=(0x0; 0xff0)"}, }, }, { @@ -234,14 +235,14 @@ static struct bpf_align_test tests[] = { }, .prog_type = BPF_PROG_TYPE_SCHED_CLS, .matches = { - {4, "R5_w=pkt(id=0,off=0,r=0,imm=0)"}, - {5, "R5_w=pkt(id=0,off=14,r=0,imm=0)"}, - {6, "R4_w=pkt(id=0,off=14,r=0,imm=0)"}, - {10, "R2=pkt(id=0,off=0,r=18,imm=0)"}, - {10, "R5=pkt(id=0,off=14,r=18,imm=0)"}, - {10, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"}, - {14, "R4_w=inv(id=0,umax_value=65535,var_off=(0x0; 0xffff))"}, - {15, "R4_w=inv(id=0,umax_value=65535,var_off=(0x0; 0xffff))"}, + {2, "R5_w", "pkt(r=0)"}, + {4, "R5_w", "pkt(off=14,r=0)"}, + {5, "R4_w", "pkt(off=14,r=0)"}, + {9, "R2", "pkt(r=18)"}, + {10, "R5", "pkt(off=14,r=18)"}, + {10, "R4_w", "var_off=(0x0; 0xff)"}, + {13, "R4_w", "var_off=(0x0; 0xffff)"}, + {14, "R4_w", "var_off=(0x0; 0xffff)"}, }, }, { @@ -267,6 +268,7 @@ static struct bpf_align_test tests[] = { */ BPF_MOV64_REG(BPF_REG_5, BPF_REG_2), BPF_ALU64_REG(BPF_ADD, BPF_REG_5, BPF_REG_6), + BPF_MOV64_REG(BPF_REG_4, BPF_REG_5), BPF_ALU64_IMM(BPF_ADD, BPF_REG_5, 14), BPF_MOV64_REG(BPF_REG_4, BPF_REG_5), BPF_ALU64_IMM(BPF_ADD, BPF_REG_4, 4), @@ -280,6 +282,7 @@ static struct bpf_align_test tests[] = { BPF_MOV64_REG(BPF_REG_5, BPF_REG_2), BPF_ALU64_IMM(BPF_ADD, BPF_REG_5, 14), BPF_ALU64_REG(BPF_ADD, BPF_REG_5, BPF_REG_6), + BPF_MOV64_REG(BPF_REG_4, BPF_REG_5), BPF_ALU64_IMM(BPF_ADD, BPF_REG_5, 4), BPF_ALU64_REG(BPF_ADD, BPF_REG_5, BPF_REG_6), BPF_MOV64_REG(BPF_REG_4, BPF_REG_5), @@ -296,59 +299,67 @@ static struct bpf_align_test tests[] = { /* Calculated offset in R6 has unknown value, but known * alignment of 4. */ - {8, "R2_w=pkt(id=0,off=0,r=8,imm=0)"}, - {8, "R6_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {6, "R2_w", "pkt(r=8)"}, + {7, "R6_w", "var_off=(0x0; 0x3fc)"}, /* Offset is added to packet pointer R5, resulting in * known fixed offset, and variable offset from R6. */ - {11, "R5_w=pkt(id=1,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {11, "R5_w", "pkt(id=1,off=14,"}, /* At the time the word size load is performed from R5, * it's total offset is NET_IP_ALIGN + reg->off (0) + * reg->aux_off (14) which is 16. Then the variable * offset is considered using reg->aux_off_align which * is 4 and meets the load's requirements. */ - {15, "R4=pkt(id=1,off=18,r=18,umax_value=1020,var_off=(0x0; 0x3fc))"}, - {15, "R5=pkt(id=1,off=14,r=18,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {15, "R4", "var_off=(0x0; 0x3fc)"}, + {15, "R5", "var_off=(0x0; 0x3fc)"}, /* Variable offset is added to R5 packet pointer, - * resulting in auxiliary alignment of 4. + * resulting in auxiliary alignment of 4. To avoid BPF + * verifier's precision backtracking logging + * interfering we also have a no-op R4 = R5 + * instruction to validate R5 state. We also check + * that R4 is what it should be in such case. */ - {18, "R5_w=pkt(id=2,off=0,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {18, "R4_w", "var_off=(0x0; 0x3fc)"}, + {18, "R5_w", "var_off=(0x0; 0x3fc)"}, /* Constant offset is added to R5, resulting in * reg->off of 14. */ - {19, "R5_w=pkt(id=2,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {19, "R5_w", "pkt(id=2,off=14,"}, /* At the time the word size load is performed from R5, * its total fixed offset is NET_IP_ALIGN + reg->off * (14) which is 16. Then the variable offset is 4-byte * aligned, so the total offset is 4-byte aligned and * meets the load's requirements. */ - {23, "R4=pkt(id=2,off=18,r=18,umax_value=1020,var_off=(0x0; 0x3fc))"}, - {23, "R5=pkt(id=2,off=14,r=18,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {24, "R4", "var_off=(0x0; 0x3fc)"}, + {24, "R5", "var_off=(0x0; 0x3fc)"}, /* Constant offset is added to R5 packet pointer, * resulting in reg->off value of 14. */ - {26, "R5_w=pkt(id=0,off=14,r=8"}, + {26, "R5_w", "pkt(off=14,r=8)"}, /* Variable offset is added to R5, resulting in a - * variable offset of (4n). + * variable offset of (4n). See comment for insn #18 + * for R4 = R5 trick. */ - {27, "R5_w=pkt(id=3,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {28, "R4_w", "var_off=(0x0; 0x3fc)"}, + {28, "R5_w", "var_off=(0x0; 0x3fc)"}, /* Constant is added to R5 again, setting reg->off to 18. */ - {28, "R5_w=pkt(id=3,off=18,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {29, "R5_w", "pkt(id=3,off=18,"}, /* And once more we add a variable; resulting var_off * is still (4n), fixed offset is not changed. * Also, we create a new reg->id. */ - {29, "R5_w=pkt(id=4,off=18,r=0,umax_value=2040,var_off=(0x0; 0x7fc)"}, + {31, "R4_w", "var_off=(0x0; 0x7fc)"}, + {31, "R5_w", "var_off=(0x0; 0x7fc)"}, /* At the time the word size load is performed from R5, * its total fixed offset is NET_IP_ALIGN + reg->off (18) * which is 20. Then the variable offset is (4n), so * the total offset is 4-byte aligned and meets the * load's requirements. */ - {33, "R4=pkt(id=4,off=22,r=22,umax_value=2040,var_off=(0x0; 0x7fc)"}, - {33, "R5=pkt(id=4,off=18,r=22,umax_value=2040,var_off=(0x0; 0x7fc)"}, + {35, "R4", "var_off=(0x0; 0x7fc)"}, + {35, "R5", "var_off=(0x0; 0x7fc)"}, }, }, { @@ -386,36 +397,36 @@ static struct bpf_align_test tests[] = { /* Calculated offset in R6 has unknown value, but known * alignment of 4. */ - {8, "R2_w=pkt(id=0,off=0,r=8,imm=0)"}, - {8, "R6_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {6, "R2_w", "pkt(r=8)"}, + {7, "R6_w", "var_off=(0x0; 0x3fc)"}, /* Adding 14 makes R6 be (4n+2) */ - {9, "R6_w=inv(id=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"}, + {8, "R6_w", "var_off=(0x2; 0x7fc)"}, /* Packet pointer has (4n+2) offset */ - {11, "R5_w=pkt(id=1,off=0,r=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc)"}, - {13, "R4=pkt(id=1,off=4,r=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc)"}, + {11, "R5_w", "var_off=(0x2; 0x7fc)"}, + {12, "R4", "var_off=(0x2; 0x7fc)"}, /* At the time the word size load is performed from R5, * its total fixed offset is NET_IP_ALIGN + reg->off (0) * which is 2. Then the variable offset is (4n+2), so * the total offset is 4-byte aligned and meets the * load's requirements. */ - {15, "R5=pkt(id=1,off=0,r=4,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc)"}, + {15, "R5", "var_off=(0x2; 0x7fc)"}, /* Newly read value in R6 was shifted left by 2, so has * known alignment of 4. */ - {18, "R6_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {17, "R6_w", "var_off=(0x0; 0x3fc)"}, /* Added (4n) to packet pointer's (4n+2) var_off, giving * another (4n+2). */ - {19, "R5_w=pkt(id=2,off=0,r=0,umin_value=14,umax_value=2054,var_off=(0x2; 0xffc)"}, - {21, "R4=pkt(id=2,off=4,r=0,umin_value=14,umax_value=2054,var_off=(0x2; 0xffc)"}, + {19, "R5_w", "var_off=(0x2; 0xffc)"}, + {20, "R4", "var_off=(0x2; 0xffc)"}, /* At the time the word size load is performed from R5, * its total fixed offset is NET_IP_ALIGN + reg->off (0) * which is 2. Then the variable offset is (4n+2), so * the total offset is 4-byte aligned and meets the * load's requirements. */ - {23, "R5=pkt(id=2,off=0,r=4,umin_value=14,umax_value=2054,var_off=(0x2; 0xffc)"}, + {23, "R5", "var_off=(0x2; 0xffc)"}, }, }, { @@ -448,18 +459,18 @@ static struct bpf_align_test tests[] = { .prog_type = BPF_PROG_TYPE_SCHED_CLS, .result = REJECT, .matches = { - {4, "R5_w=pkt_end(id=0,off=0,imm=0)"}, + {3, "R5_w", "pkt_end()"}, /* (ptr - ptr) << 2 == unknown, (4n) */ - {6, "R5_w=inv(id=0,smax_value=9223372036854775804,umax_value=18446744073709551612,var_off=(0x0; 0xfffffffffffffffc)"}, + {5, "R5_w", "var_off=(0x0; 0xfffffffffffffffc)"}, /* (4n) + 14 == (4n+2). We blow our bounds, because * the add could overflow. */ - {7, "R5_w=inv(id=0,smin_value=-9223372036854775806,smax_value=9223372036854775806,umin_value=2,umax_value=18446744073709551614,var_off=(0x2; 0xfffffffffffffffc)"}, + {6, "R5_w", "var_off=(0x2; 0xfffffffffffffffc)"}, /* Checked s>=0 */ - {9, "R5=inv(id=0,umin_value=2,umax_value=9223372034707292158,var_off=(0x2; 0x7fffffff7ffffffc)"}, + {9, "R5", "var_off=(0x2; 0x7ffffffffffffffc)"}, /* packet pointer + nonnegative (4n+2) */ - {11, "R6_w=pkt(id=1,off=0,r=0,umin_value=2,umax_value=9223372034707292158,var_off=(0x2; 0x7fffffff7ffffffc)"}, - {13, "R4_w=pkt(id=1,off=4,r=0,umin_value=2,umax_value=9223372034707292158,var_off=(0x2; 0x7fffffff7ffffffc)"}, + {11, "R6_w", "var_off=(0x2; 0x7ffffffffffffffc)"}, + {12, "R4_w", "var_off=(0x2; 0x7ffffffffffffffc)"}, /* NET_IP_ALIGN + (4n+2) == (4n), alignment is fine. * We checked the bounds, but it might have been able * to overflow if the packet pointer started in the @@ -467,7 +478,7 @@ static struct bpf_align_test tests[] = { * So we did not get a 'range' on R6, and the access * attempt will fail. */ - {15, "R6_w=pkt(id=1,off=0,r=0,umin_value=2,umax_value=9223372034707292158,var_off=(0x2; 0x7fffffff7ffffffc)"}, + {15, "R6_w", "var_off=(0x2; 0x7ffffffffffffffc)"}, } }, { @@ -502,24 +513,23 @@ static struct bpf_align_test tests[] = { /* Calculated offset in R6 has unknown value, but known * alignment of 4. */ - {7, "R2_w=pkt(id=0,off=0,r=8,imm=0)"}, - {9, "R6_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {6, "R2_w", "pkt(r=8)"}, + {8, "R6_w", "var_off=(0x0; 0x3fc)"}, /* Adding 14 makes R6 be (4n+2) */ - {10, "R6_w=inv(id=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"}, + {9, "R6_w", "var_off=(0x2; 0x7fc)"}, /* New unknown value in R7 is (4n) */ - {11, "R7_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"}, + {10, "R7_w", "var_off=(0x0; 0x3fc)"}, /* Subtracting it from R6 blows our unsigned bounds */ - {12, "R6=inv(id=0,smin_value=-1006,smax_value=1034,umin_value=2,umax_value=18446744073709551614,var_off=(0x2; 0xfffffffffffffffc)"}, + {11, "R6", "var_off=(0x2; 0xfffffffffffffffc)"}, /* Checked s>= 0 */ - {14, "R6=inv(id=0,umin_value=2,umax_value=1034,var_off=(0x2; 0x7fc))"}, + {14, "R6", "var_off=(0x2; 0x7fc)"}, /* At the time the word size load is performed from R5, * its total fixed offset is NET_IP_ALIGN + reg->off (0) * which is 2. Then the variable offset is (4n+2), so * the total offset is 4-byte aligned and meets the * load's requirements. */ - {20, "R5=pkt(id=1,off=0,r=4,umin_value=2,umax_value=1034,var_off=(0x2; 0x7fc)"}, - + {20, "R5", "var_off=(0x2; 0x7fc)"}, }, }, { @@ -556,23 +566,23 @@ static struct bpf_align_test tests[] = { /* Calculated offset in R6 has unknown value, but known * alignment of 4. */ - {7, "R2_w=pkt(id=0,off=0,r=8,imm=0)"}, - {10, "R6_w=inv(id=0,umax_value=60,var_off=(0x0; 0x3c))"}, + {6, "R2_w", "pkt(r=8)"}, + {9, "R6_w", "var_off=(0x0; 0x3c)"}, /* Adding 14 makes R6 be (4n+2) */ - {11, "R6_w=inv(id=0,umin_value=14,umax_value=74,var_off=(0x2; 0x7c))"}, + {10, "R6_w", "var_off=(0x2; 0x7c)"}, /* Subtracting from packet pointer overflows ubounds */ - {13, "R5_w=pkt(id=1,off=0,r=8,umin_value=18446744073709551542,umax_value=18446744073709551602,var_off=(0xffffffffffffff82; 0x7c)"}, + {13, "R5_w", "var_off=(0xffffffffffffff82; 0x7c)"}, /* New unknown value in R7 is (4n), >= 76 */ - {15, "R7_w=inv(id=0,umin_value=76,umax_value=1096,var_off=(0x0; 0x7fc))"}, + {14, "R7_w", "var_off=(0x0; 0x7fc)"}, /* Adding it to packet pointer gives nice bounds again */ - {16, "R5_w=pkt(id=2,off=0,r=0,umin_value=2,umax_value=1082,var_off=(0x2; 0xfffffffc)"}, + {16, "R5_w", "var_off=(0x2; 0x7fc)"}, /* At the time the word size load is performed from R5, * its total fixed offset is NET_IP_ALIGN + reg->off (0) * which is 2. Then the variable offset is (4n+2), so * the total offset is 4-byte aligned and meets the * load's requirements. */ - {20, "R5=pkt(id=2,off=0,r=4,umin_value=2,umax_value=1082,var_off=(0x2; 0xfffffffc)"}, + {20, "R5", "var_off=(0x2; 0x7fc)"}, }, }, }; @@ -594,6 +604,12 @@ static int do_test_single(struct bpf_align_test *test) struct bpf_insn *prog = test->insns; int prog_type = test->prog_type; char bpf_vlog_copy[32768]; + LIBBPF_OPTS(bpf_prog_load_opts, opts, + .prog_flags = BPF_F_STRICT_ALIGNMENT, + .log_buf = bpf_vlog, + .log_size = sizeof(bpf_vlog), + .log_level = 2, + ); const char *line_ptr; int cur_line = -1; int prog_len, i; @@ -601,9 +617,8 @@ static int do_test_single(struct bpf_align_test *test) int ret; prog_len = probe_filter_length(prog); - fd_prog = bpf_verify_program(prog_type ? : BPF_PROG_TYPE_SOCKET_FILTER, - prog, prog_len, BPF_F_STRICT_ALIGNMENT, - "GPL", 0, bpf_vlog, sizeof(bpf_vlog), 2); + fd_prog = bpf_prog_load(prog_type ? : BPF_PROG_TYPE_SOCKET_FILTER, NULL, "GPL", + prog, prog_len, &opts); if (fd_prog < 0 && test->result != REJECT) { printf("Failed to load program.\n"); printf("%s", bpf_vlog); @@ -620,26 +635,48 @@ static int do_test_single(struct bpf_align_test *test) line_ptr = strtok(bpf_vlog_copy, "\n"); for (i = 0; i < MAX_MATCHES; i++) { struct bpf_reg_match m = test->matches[i]; + const char *p; + int tmp; if (!m.match) break; while (line_ptr) { cur_line = -1; sscanf(line_ptr, "%u: ", &cur_line); + if (cur_line == -1) + sscanf(line_ptr, "from %u to %u: ", &tmp, &cur_line); if (cur_line == m.line) break; line_ptr = strtok(NULL, "\n"); } if (!line_ptr) { - printf("Failed to find line %u for match: %s\n", - m.line, m.match); + printf("Failed to find line %u for match: %s=%s\n", + m.line, m.reg, m.match); ret = 1; printf("%s", bpf_vlog); break; } - if (!strstr(line_ptr, m.match)) { - printf("Failed to find match %u: %s\n", - m.line, m.match); + /* Check the next line as well in case the previous line + * did not have a corresponding bpf insn. Example: + * func#0 @0 + * 0: R1=ctx() R10=fp0 + * 0: (b7) r3 = 2 ; R3_w=2 + * + * Sometimes it's actually two lines below, e.g. when + * searching for "6: R3_w=scalar(umax=255,var_off=(0x0; 0xff))": + * from 4 to 6: R0_w=pkt(off=8,r=8) R1=ctx() R2_w=pkt(r=8) R3_w=pkt_end() R10=fp0 + * 6: R0_w=pkt(off=8,r=8) R1=ctx() R2_w=pkt(r=8) R3_w=pkt_end() R10=fp0 + * 6: (71) r3 = *(u8 *)(r2 +0) ; R2_w=pkt(r=8) R3_w=scalar(umax=255,var_off=(0x0; 0xff)) + */ + while (!(p = strstr(line_ptr, m.reg)) || !strstr(p, m.match)) { + cur_line = -1; + line_ptr = strtok(NULL, "\n"); + sscanf(line_ptr ?: "", "%u: ", &cur_line); + if (!line_ptr || cur_line != m.line) + break; + } + if (cur_line != m.line || !line_ptr || !(p = strstr(line_ptr, m.reg)) || !strstr(p, m.match)) { + printf("Failed to find match %u: %s=%s\n", m.line, m.reg, m.match); ret = 1; printf("%s", bpf_vlog); break; @@ -661,6 +698,6 @@ void test_align(void) if (!test__start_subtest(test->descr)) continue; - CHECK_FAIL(do_test_single(test)); + ASSERT_OK(do_test_single(test), test->descr); } } diff --git a/tools/testing/selftests/bpf/prog_tests/arena_atomics.c b/tools/testing/selftests/bpf/prog_tests/arena_atomics.c new file mode 100644 index 000000000000..0807a48a58ee --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/arena_atomics.c @@ -0,0 +1,186 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include "arena_atomics.skel.h" + +static void test_add(struct arena_atomics *skel) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + /* No need to attach it, just run it directly */ + prog_fd = bpf_program__fd(skel->progs.add); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->arena->add64_value, 3, "add64_value"); + ASSERT_EQ(skel->arena->add64_result, 1, "add64_result"); + + ASSERT_EQ(skel->arena->add32_value, 3, "add32_value"); + ASSERT_EQ(skel->arena->add32_result, 1, "add32_result"); + + ASSERT_EQ(skel->arena->add_stack_value_copy, 3, "add_stack_value"); + ASSERT_EQ(skel->arena->add_stack_result, 1, "add_stack_result"); + + ASSERT_EQ(skel->arena->add_noreturn_value, 3, "add_noreturn_value"); +} + +static void test_sub(struct arena_atomics *skel) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + /* No need to attach it, just run it directly */ + prog_fd = bpf_program__fd(skel->progs.sub); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->arena->sub64_value, -1, "sub64_value"); + ASSERT_EQ(skel->arena->sub64_result, 1, "sub64_result"); + + ASSERT_EQ(skel->arena->sub32_value, -1, "sub32_value"); + ASSERT_EQ(skel->arena->sub32_result, 1, "sub32_result"); + + ASSERT_EQ(skel->arena->sub_stack_value_copy, -1, "sub_stack_value"); + ASSERT_EQ(skel->arena->sub_stack_result, 1, "sub_stack_result"); + + ASSERT_EQ(skel->arena->sub_noreturn_value, -1, "sub_noreturn_value"); +} + +static void test_and(struct arena_atomics *skel) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + /* No need to attach it, just run it directly */ + prog_fd = bpf_program__fd(skel->progs.and); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->arena->and64_value, 0x010ull << 32, "and64_value"); + ASSERT_EQ(skel->arena->and32_value, 0x010, "and32_value"); +} + +static void test_or(struct arena_atomics *skel) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + /* No need to attach it, just run it directly */ + prog_fd = bpf_program__fd(skel->progs.or); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->arena->or64_value, 0x111ull << 32, "or64_value"); + ASSERT_EQ(skel->arena->or32_value, 0x111, "or32_value"); +} + +static void test_xor(struct arena_atomics *skel) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + /* No need to attach it, just run it directly */ + prog_fd = bpf_program__fd(skel->progs.xor); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->arena->xor64_value, 0x101ull << 32, "xor64_value"); + ASSERT_EQ(skel->arena->xor32_value, 0x101, "xor32_value"); +} + +static void test_cmpxchg(struct arena_atomics *skel) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + /* No need to attach it, just run it directly */ + prog_fd = bpf_program__fd(skel->progs.cmpxchg); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->arena->cmpxchg64_value, 2, "cmpxchg64_value"); + ASSERT_EQ(skel->arena->cmpxchg64_result_fail, 1, "cmpxchg_result_fail"); + ASSERT_EQ(skel->arena->cmpxchg64_result_succeed, 1, "cmpxchg_result_succeed"); + + ASSERT_EQ(skel->arena->cmpxchg32_value, 2, "lcmpxchg32_value"); + ASSERT_EQ(skel->arena->cmpxchg32_result_fail, 1, "cmpxchg_result_fail"); + ASSERT_EQ(skel->arena->cmpxchg32_result_succeed, 1, "cmpxchg_result_succeed"); +} + +static void test_xchg(struct arena_atomics *skel) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + /* No need to attach it, just run it directly */ + prog_fd = bpf_program__fd(skel->progs.xchg); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->arena->xchg64_value, 2, "xchg64_value"); + ASSERT_EQ(skel->arena->xchg64_result, 1, "xchg64_result"); + + ASSERT_EQ(skel->arena->xchg32_value, 2, "xchg32_value"); + ASSERT_EQ(skel->arena->xchg32_result, 1, "xchg32_result"); +} + +void test_arena_atomics(void) +{ + struct arena_atomics *skel; + int err; + + skel = arena_atomics__open(); + if (!ASSERT_OK_PTR(skel, "arena atomics skeleton open")) + return; + + if (skel->data->skip_tests) { + printf("%s:SKIP:no ENABLE_ATOMICS_TESTS or no addr_space_cast support in clang", + __func__); + test__skip(); + goto cleanup; + } + err = arena_atomics__load(skel); + if (!ASSERT_OK(err, "arena atomics skeleton load")) + return; + skel->bss->pid = getpid(); + + if (test__start_subtest("add")) + test_add(skel); + if (test__start_subtest("sub")) + test_sub(skel); + if (test__start_subtest("and")) + test_and(skel); + if (test__start_subtest("or")) + test_or(skel); + if (test__start_subtest("xor")) + test_xor(skel); + if (test__start_subtest("cmpxchg")) + test_cmpxchg(skel); + if (test__start_subtest("xchg")) + test_xchg(skel); + +cleanup: + arena_atomics__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/arena_htab.c b/tools/testing/selftests/bpf/prog_tests/arena_htab.c new file mode 100644 index 000000000000..d69fd2465f53 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/arena_htab.c @@ -0,0 +1,90 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include <sys/mman.h> +#include <network_helpers.h> +#include <sys/user.h> +#ifndef PAGE_SIZE /* on some archs it comes in sys/user.h */ +#include <unistd.h> +#define PAGE_SIZE getpagesize() +#endif +#include "arena_htab_asm.skel.h" +#include "arena_htab.skel.h" + +#include "bpf_arena_htab.h" + +static void test_arena_htab_common(struct htab *htab) +{ + int i; + + printf("htab %p buckets %p n_buckets %d\n", htab, htab->buckets, htab->n_buckets); + ASSERT_OK_PTR(htab->buckets, "htab->buckets shouldn't be NULL"); + for (i = 0; htab->buckets && i < 16; i += 4) { + /* + * Walk htab buckets and link lists since all pointers are correct, + * though they were written by bpf program. + */ + int val = htab_lookup_elem(htab, i); + + ASSERT_EQ(i, val, "key == value"); + } +} + +static void test_arena_htab_llvm(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts); + struct arena_htab *skel; + struct htab *htab; + size_t arena_sz; + void *area; + int ret; + + skel = arena_htab__open_and_load(); + if (!ASSERT_OK_PTR(skel, "arena_htab__open_and_load")) + return; + + area = bpf_map__initial_value(skel->maps.arena, &arena_sz); + /* fault-in a page with pgoff == 0 as sanity check */ + *(volatile int *)area = 0x55aa; + + /* bpf prog will allocate more pages */ + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.arena_htab_llvm), &opts); + ASSERT_OK(ret, "ret"); + ASSERT_OK(opts.retval, "retval"); + if (skel->bss->skip) { + printf("%s:SKIP:compiler doesn't support arena_cast\n", __func__); + test__skip(); + goto out; + } + htab = skel->bss->htab_for_user; + test_arena_htab_common(htab); +out: + arena_htab__destroy(skel); +} + +static void test_arena_htab_asm(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts); + struct arena_htab_asm *skel; + struct htab *htab; + int ret; + + skel = arena_htab_asm__open_and_load(); + if (!ASSERT_OK_PTR(skel, "arena_htab_asm__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.arena_htab_asm), &opts); + ASSERT_OK(ret, "ret"); + ASSERT_OK(opts.retval, "retval"); + htab = skel->bss->htab_for_user; + test_arena_htab_common(htab); + arena_htab_asm__destroy(skel); +} + +void test_arena_htab(void) +{ + if (test__start_subtest("arena_htab_llvm")) + test_arena_htab_llvm(); + if (test__start_subtest("arena_htab_asm")) + test_arena_htab_asm(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/arena_list.c b/tools/testing/selftests/bpf/prog_tests/arena_list.c new file mode 100644 index 000000000000..d15867cddde0 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/arena_list.c @@ -0,0 +1,71 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include <sys/mman.h> +#include <network_helpers.h> +#include <sys/user.h> +#ifndef PAGE_SIZE /* on some archs it comes in sys/user.h */ +#include <unistd.h> +#define PAGE_SIZE getpagesize() +#endif + +#include "bpf_arena_list.h" +#include "arena_list.skel.h" + +struct elem { + struct arena_list_node node; + __u64 value; +}; + +static int list_sum(struct arena_list_head *head) +{ + struct elem __arena *n; + int sum = 0; + + list_for_each_entry(n, head, node) + sum += n->value; + return sum; +} + +static void test_arena_list_add_del(int cnt) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts); + struct arena_list *skel; + int expected_sum = (u64)cnt * (cnt - 1) / 2; + int ret, sum; + + skel = arena_list__open_and_load(); + if (!ASSERT_OK_PTR(skel, "arena_list__open_and_load")) + return; + + skel->bss->cnt = cnt; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.arena_list_add), &opts); + ASSERT_OK(ret, "ret_add"); + ASSERT_OK(opts.retval, "retval"); + if (skel->bss->skip) { + printf("%s:SKIP:compiler doesn't support arena_cast\n", __func__); + test__skip(); + goto out; + } + sum = list_sum(skel->bss->list_head); + ASSERT_EQ(sum, expected_sum, "sum of elems"); + ASSERT_EQ(skel->arena->arena_sum, expected_sum, "__arena sum of elems"); + ASSERT_EQ(skel->arena->test_val, cnt + 1, "num of elems"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.arena_list_del), &opts); + ASSERT_OK(ret, "ret_del"); + sum = list_sum(skel->bss->list_head); + ASSERT_EQ(sum, 0, "sum of list elems after del"); + ASSERT_EQ(skel->bss->list_sum, expected_sum, "sum of list elems computed by prog"); + ASSERT_EQ(skel->arena->arena_sum, expected_sum, "__arena sum of elems"); +out: + arena_list__destroy(skel); +} + +void test_arena_list(void) +{ + if (test__start_subtest("arena_list_1")) + test_arena_list_add_del(1); + if (test__start_subtest("arena_list_1000")) + test_arena_list_add_del(1000); +} diff --git a/tools/testing/selftests/bpf/prog_tests/arg_parsing.c b/tools/testing/selftests/bpf/prog_tests/arg_parsing.c new file mode 100644 index 000000000000..bb143de68875 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/arg_parsing.c @@ -0,0 +1,175 @@ +// SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause) + +#include "test_progs.h" +#include "testing_helpers.h" + +static void init_test_filter_set(struct test_filter_set *set) +{ + set->cnt = 0; + set->tests = NULL; +} + +static void free_test_filter_set(struct test_filter_set *set) +{ + int i, j; + + for (i = 0; i < set->cnt; i++) { + for (j = 0; j < set->tests[i].subtest_cnt; j++) + free((void *)set->tests[i].subtests[j]); + free(set->tests[i].subtests); + free(set->tests[i].name); + } + + free(set->tests); + init_test_filter_set(set); +} + +static void test_parse_test_list(void) +{ + struct test_filter_set set; + + init_test_filter_set(&set); + + ASSERT_OK(parse_test_list("arg_parsing", &set, true), "parsing"); + if (!ASSERT_EQ(set.cnt, 1, "test filters count")) + goto error; + if (!ASSERT_OK_PTR(set.tests, "test filters initialized")) + goto error; + ASSERT_EQ(set.tests[0].subtest_cnt, 0, "subtest filters count"); + ASSERT_OK(strcmp("arg_parsing", set.tests[0].name), "subtest name"); + free_test_filter_set(&set); + + ASSERT_OK(parse_test_list("arg_parsing,bpf_cookie", &set, true), + "parsing"); + if (!ASSERT_EQ(set.cnt, 2, "count of test filters")) + goto error; + if (!ASSERT_OK_PTR(set.tests, "test filters initialized")) + goto error; + ASSERT_EQ(set.tests[0].subtest_cnt, 0, "subtest filters count"); + ASSERT_EQ(set.tests[1].subtest_cnt, 0, "subtest filters count"); + ASSERT_OK(strcmp("arg_parsing", set.tests[0].name), "test name"); + ASSERT_OK(strcmp("bpf_cookie", set.tests[1].name), "test name"); + free_test_filter_set(&set); + + ASSERT_OK(parse_test_list("arg_parsing/arg_parsing,bpf_cookie", + &set, + true), + "parsing"); + if (!ASSERT_EQ(set.cnt, 2, "count of test filters")) + goto error; + if (!ASSERT_OK_PTR(set.tests, "test filters initialized")) + goto error; + if (!ASSERT_EQ(set.tests[0].subtest_cnt, 1, "subtest filters count")) + goto error; + ASSERT_EQ(set.tests[1].subtest_cnt, 0, "subtest filters count"); + ASSERT_OK(strcmp("arg_parsing", set.tests[0].name), "test name"); + ASSERT_OK(strcmp("arg_parsing", set.tests[0].subtests[0]), + "subtest name"); + ASSERT_OK(strcmp("bpf_cookie", set.tests[1].name), "test name"); + free_test_filter_set(&set); + + ASSERT_OK(parse_test_list("arg_parsing/arg_parsing", &set, true), + "parsing"); + ASSERT_OK(parse_test_list("bpf_cookie", &set, true), "parsing"); + ASSERT_OK(parse_test_list("send_signal", &set, true), "parsing"); + if (!ASSERT_EQ(set.cnt, 3, "count of test filters")) + goto error; + if (!ASSERT_OK_PTR(set.tests, "test filters initialized")) + goto error; + if (!ASSERT_EQ(set.tests[0].subtest_cnt, 1, "subtest filters count")) + goto error; + ASSERT_EQ(set.tests[1].subtest_cnt, 0, "subtest filters count"); + ASSERT_EQ(set.tests[2].subtest_cnt, 0, "subtest filters count"); + ASSERT_OK(strcmp("arg_parsing", set.tests[0].name), "test name"); + ASSERT_OK(strcmp("arg_parsing", set.tests[0].subtests[0]), + "subtest name"); + ASSERT_OK(strcmp("bpf_cookie", set.tests[1].name), "test name"); + ASSERT_OK(strcmp("send_signal", set.tests[2].name), "test name"); + free_test_filter_set(&set); + + ASSERT_OK(parse_test_list("bpf_cookie/trace", &set, false), "parsing"); + if (!ASSERT_EQ(set.cnt, 1, "count of test filters")) + goto error; + if (!ASSERT_OK_PTR(set.tests, "test filters initialized")) + goto error; + if (!ASSERT_EQ(set.tests[0].subtest_cnt, 1, "subtest filters count")) + goto error; + ASSERT_OK(strcmp("*bpf_cookie*", set.tests[0].name), "test name"); + ASSERT_OK(strcmp("*trace*", set.tests[0].subtests[0]), "subtest name"); + free_test_filter_set(&set); + + ASSERT_OK(parse_test_list("t/subtest1,t/subtest2", &set, true), + "parsing"); + if (!ASSERT_EQ(set.cnt, 1, "count of test filters")) + goto error; + if (!ASSERT_OK_PTR(set.tests, "test filters initialized")) + goto error; + if (!ASSERT_EQ(set.tests[0].subtest_cnt, 2, "subtest filters count")) + goto error; + ASSERT_OK(strcmp("t", set.tests[0].name), "test name"); + ASSERT_OK(strcmp("subtest1", set.tests[0].subtests[0]), "subtest name"); + ASSERT_OK(strcmp("subtest2", set.tests[0].subtests[1]), "subtest name"); +error: + free_test_filter_set(&set); +} + +static void test_parse_test_list_file(void) +{ + struct test_filter_set set; + char tmpfile[80]; + FILE *fp; + int fd; + + snprintf(tmpfile, sizeof(tmpfile), "/tmp/bpf_arg_parsing_test.XXXXXX"); + fd = mkstemp(tmpfile); + if (!ASSERT_GE(fd, 0, "create tmp")) + return; + + fp = fdopen(fd, "w"); + if (!ASSERT_NEQ(fp, NULL, "fdopen tmp")) { + close(fd); + goto out_remove; + } + + fprintf(fp, "# comment\n"); + fprintf(fp, " test_with_spaces \n"); + fprintf(fp, "testA/subtest # comment\n"); + fprintf(fp, "testB#comment with no space\n"); + fprintf(fp, "testB # duplicate\n"); + fprintf(fp, "testA/subtest # subtest duplicate\n"); + fprintf(fp, "testA/subtest2\n"); + fprintf(fp, "testC_no_eof_newline"); + fflush(fp); + + if (!ASSERT_OK(ferror(fp), "prepare tmp")) + goto out_fclose; + + init_test_filter_set(&set); + + ASSERT_OK(parse_test_list_file(tmpfile, &set, true), "parse file"); + + ASSERT_EQ(set.cnt, 4, "test count"); + ASSERT_OK(strcmp("test_with_spaces", set.tests[0].name), "test 0 name"); + ASSERT_EQ(set.tests[0].subtest_cnt, 0, "test 0 subtest count"); + ASSERT_OK(strcmp("testA", set.tests[1].name), "test 1 name"); + ASSERT_EQ(set.tests[1].subtest_cnt, 2, "test 1 subtest count"); + ASSERT_OK(strcmp("subtest", set.tests[1].subtests[0]), "test 1 subtest 0"); + ASSERT_OK(strcmp("subtest2", set.tests[1].subtests[1]), "test 1 subtest 1"); + ASSERT_OK(strcmp("testB", set.tests[2].name), "test 2 name"); + ASSERT_OK(strcmp("testC_no_eof_newline", set.tests[3].name), "test 3 name"); + + free_test_filter_set(&set); + +out_fclose: + fclose(fp); +out_remove: + remove(tmpfile); +} + +void test_arg_parsing(void) +{ + if (test__start_subtest("test_parse_test_list")) + test_parse_test_list(); + if (test__start_subtest("test_parse_test_list_file")) + test_parse_test_list_file(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/assign_reuse.c b/tools/testing/selftests/bpf/prog_tests/assign_reuse.c new file mode 100644 index 000000000000..989ee4d9785b --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/assign_reuse.c @@ -0,0 +1,199 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Isovalent */ +#include <uapi/linux/if_link.h> +#include <test_progs.h> + +#include <netinet/tcp.h> +#include <netinet/udp.h> + +#include "network_helpers.h" +#include "test_assign_reuse.skel.h" + +#define NS_TEST "assign_reuse" +#define LOOPBACK 1 +#define PORT 4443 + +static int attach_reuseport(int sock_fd, int prog_fd) +{ + return setsockopt(sock_fd, SOL_SOCKET, SO_ATTACH_REUSEPORT_EBPF, + &prog_fd, sizeof(prog_fd)); +} + +static __u64 cookie(int fd) +{ + __u64 cookie = 0; + socklen_t cookie_len = sizeof(cookie); + int ret; + + ret = getsockopt(fd, SOL_SOCKET, SO_COOKIE, &cookie, &cookie_len); + ASSERT_OK(ret, "cookie"); + ASSERT_GT(cookie, 0, "cookie_invalid"); + + return cookie; +} + +static int echo_test_udp(int fd_sv) +{ + struct sockaddr_storage addr = {}; + socklen_t len = sizeof(addr); + char buff[1] = {}; + int fd_cl = -1, ret; + + fd_cl = connect_to_fd(fd_sv, 100); + ASSERT_GT(fd_cl, 0, "create_client"); + ASSERT_EQ(getsockname(fd_cl, (void *)&addr, &len), 0, "getsockname"); + + ASSERT_EQ(send(fd_cl, buff, sizeof(buff), 0), 1, "send_client"); + + ret = recv(fd_sv, buff, sizeof(buff), 0); + if (ret < 0) { + close(fd_cl); + return errno; + } + + ASSERT_EQ(ret, 1, "recv_server"); + ASSERT_EQ(sendto(fd_sv, buff, sizeof(buff), 0, (void *)&addr, len), 1, "send_server"); + ASSERT_EQ(recv(fd_cl, buff, sizeof(buff), 0), 1, "recv_client"); + close(fd_cl); + return 0; +} + +static int echo_test_tcp(int fd_sv) +{ + char buff[1] = {}; + int fd_cl = -1, fd_sv_cl = -1; + + fd_cl = connect_to_fd(fd_sv, 100); + if (fd_cl < 0) + return errno; + + fd_sv_cl = accept(fd_sv, NULL, NULL); + ASSERT_GE(fd_sv_cl, 0, "accept_fd"); + + ASSERT_EQ(send(fd_cl, buff, sizeof(buff), 0), 1, "send_client"); + ASSERT_EQ(recv(fd_sv_cl, buff, sizeof(buff), 0), 1, "recv_server"); + ASSERT_EQ(send(fd_sv_cl, buff, sizeof(buff), 0), 1, "send_server"); + ASSERT_EQ(recv(fd_cl, buff, sizeof(buff), 0), 1, "recv_client"); + close(fd_sv_cl); + close(fd_cl); + return 0; +} + +void run_assign_reuse(int family, int sotype, const char *ip, __u16 port) +{ + DECLARE_LIBBPF_OPTS(bpf_tc_hook, tc_hook, + .ifindex = LOOPBACK, + .attach_point = BPF_TC_INGRESS, + ); + DECLARE_LIBBPF_OPTS(bpf_tc_opts, tc_opts, + .handle = 1, + .priority = 1, + ); + bool hook_created = false, tc_attached = false; + int ret, fd_tc, fd_accept, fd_drop, fd_map; + int *fd_sv = NULL; + __u64 fd_val; + struct test_assign_reuse *skel; + const int zero = 0; + + skel = test_assign_reuse__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + skel->rodata->dest_port = port; + + ret = test_assign_reuse__load(skel); + if (!ASSERT_OK(ret, "skel_load")) + goto cleanup; + + ASSERT_EQ(skel->bss->sk_cookie_seen, 0, "cookie_init"); + + fd_tc = bpf_program__fd(skel->progs.tc_main); + fd_accept = bpf_program__fd(skel->progs.reuse_accept); + fd_drop = bpf_program__fd(skel->progs.reuse_drop); + fd_map = bpf_map__fd(skel->maps.sk_map); + + fd_sv = start_reuseport_server(family, sotype, ip, port, 100, 1); + if (!ASSERT_NEQ(fd_sv, NULL, "start_reuseport_server")) + goto cleanup; + + ret = attach_reuseport(*fd_sv, fd_drop); + if (!ASSERT_OK(ret, "attach_reuseport")) + goto cleanup; + + fd_val = *fd_sv; + ret = bpf_map_update_elem(fd_map, &zero, &fd_val, BPF_NOEXIST); + if (!ASSERT_OK(ret, "bpf_sk_map")) + goto cleanup; + + ret = bpf_tc_hook_create(&tc_hook); + if (ret == 0) + hook_created = true; + ret = ret == -EEXIST ? 0 : ret; + if (!ASSERT_OK(ret, "bpf_tc_hook_create")) + goto cleanup; + + tc_opts.prog_fd = fd_tc; + ret = bpf_tc_attach(&tc_hook, &tc_opts); + if (!ASSERT_OK(ret, "bpf_tc_attach")) + goto cleanup; + tc_attached = true; + + if (sotype == SOCK_STREAM) + ASSERT_EQ(echo_test_tcp(*fd_sv), ECONNREFUSED, "drop_tcp"); + else + ASSERT_EQ(echo_test_udp(*fd_sv), EAGAIN, "drop_udp"); + ASSERT_EQ(skel->bss->reuseport_executed, 1, "program executed once"); + + skel->bss->sk_cookie_seen = 0; + skel->bss->reuseport_executed = 0; + ASSERT_OK(attach_reuseport(*fd_sv, fd_accept), "attach_reuseport(accept)"); + + if (sotype == SOCK_STREAM) + ASSERT_EQ(echo_test_tcp(*fd_sv), 0, "echo_tcp"); + else + ASSERT_EQ(echo_test_udp(*fd_sv), 0, "echo_udp"); + + ASSERT_EQ(skel->bss->sk_cookie_seen, cookie(*fd_sv), + "cookie_mismatch"); + ASSERT_EQ(skel->bss->reuseport_executed, 1, "program executed once"); +cleanup: + if (tc_attached) { + tc_opts.flags = tc_opts.prog_fd = tc_opts.prog_id = 0; + ret = bpf_tc_detach(&tc_hook, &tc_opts); + ASSERT_OK(ret, "bpf_tc_detach"); + } + if (hook_created) { + tc_hook.attach_point = BPF_TC_INGRESS | BPF_TC_EGRESS; + bpf_tc_hook_destroy(&tc_hook); + } + test_assign_reuse__destroy(skel); + free_fds(fd_sv, 1); +} + +void test_assign_reuse(void) +{ + struct nstoken *tok = NULL; + + SYS(out, "ip netns add %s", NS_TEST); + SYS(cleanup, "ip -net %s link set dev lo up", NS_TEST); + + tok = open_netns(NS_TEST); + if (!ASSERT_OK_PTR(tok, "netns token")) + return; + + if (test__start_subtest("tcpv4")) + run_assign_reuse(AF_INET, SOCK_STREAM, "127.0.0.1", PORT); + if (test__start_subtest("tcpv6")) + run_assign_reuse(AF_INET6, SOCK_STREAM, "::1", PORT); + if (test__start_subtest("udpv4")) + run_assign_reuse(AF_INET, SOCK_DGRAM, "127.0.0.1", PORT); + if (test__start_subtest("udpv6")) + run_assign_reuse(AF_INET6, SOCK_DGRAM, "::1", PORT); + +cleanup: + close_netns(tok); + SYS_NOFAIL("ip netns delete %s", NS_TEST); +out: + return; +} diff --git a/tools/testing/selftests/bpf/prog_tests/async_stack_depth.c b/tools/testing/selftests/bpf/prog_tests/async_stack_depth.c new file mode 100644 index 000000000000..118abc29b236 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/async_stack_depth.c @@ -0,0 +1,9 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> + +#include "async_stack_depth.skel.h" + +void test_async_stack_depth(void) +{ + RUN_TESTS(async_stack_depth); +} diff --git a/tools/testing/selftests/bpf/prog_tests/atomic_bounds.c b/tools/testing/selftests/bpf/prog_tests/atomic_bounds.c new file mode 100644 index 000000000000..69bd7853e8f1 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/atomic_bounds.c @@ -0,0 +1,17 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> + +#include "atomic_bounds.skel.h" + +void test_atomic_bounds(void) +{ + struct atomic_bounds *skel; + __u32 duration = 0; + + skel = atomic_bounds__open_and_load(); + if (CHECK(!skel, "skel_load", "couldn't load program\n")) + return; + + atomic_bounds__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/atomics.c b/tools/testing/selftests/bpf/prog_tests/atomics.c new file mode 100644 index 000000000000..13e101f370a1 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/atomics.c @@ -0,0 +1,198 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> + +#include "atomics.lskel.h" + +static void test_add(struct atomics_lskel *skel) +{ + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + /* No need to attach it, just run it directly */ + prog_fd = skel->progs.add.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->data->add64_value, 3, "add64_value"); + ASSERT_EQ(skel->bss->add64_result, 1, "add64_result"); + + ASSERT_EQ(skel->data->add32_value, 3, "add32_value"); + ASSERT_EQ(skel->bss->add32_result, 1, "add32_result"); + + ASSERT_EQ(skel->bss->add_stack_value_copy, 3, "add_stack_value"); + ASSERT_EQ(skel->bss->add_stack_result, 1, "add_stack_result"); + + ASSERT_EQ(skel->data->add_noreturn_value, 3, "add_noreturn_value"); +} + +static void test_sub(struct atomics_lskel *skel) +{ + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + /* No need to attach it, just run it directly */ + prog_fd = skel->progs.sub.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->data->sub64_value, -1, "sub64_value"); + ASSERT_EQ(skel->bss->sub64_result, 1, "sub64_result"); + + ASSERT_EQ(skel->data->sub32_value, -1, "sub32_value"); + ASSERT_EQ(skel->bss->sub32_result, 1, "sub32_result"); + + ASSERT_EQ(skel->bss->sub_stack_value_copy, -1, "sub_stack_value"); + ASSERT_EQ(skel->bss->sub_stack_result, 1, "sub_stack_result"); + + ASSERT_EQ(skel->data->sub_noreturn_value, -1, "sub_noreturn_value"); +} + +static void test_and(struct atomics_lskel *skel) +{ + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + /* No need to attach it, just run it directly */ + prog_fd = skel->progs.and.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->data->and64_value, 0x010ull << 32, "and64_value"); + ASSERT_EQ(skel->bss->and64_result, 0x110ull << 32, "and64_result"); + + ASSERT_EQ(skel->data->and32_value, 0x010, "and32_value"); + ASSERT_EQ(skel->bss->and32_result, 0x110, "and32_result"); + + ASSERT_EQ(skel->data->and_noreturn_value, 0x010ull << 32, "and_noreturn_value"); +} + +static void test_or(struct atomics_lskel *skel) +{ + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + /* No need to attach it, just run it directly */ + prog_fd = skel->progs.or.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->data->or64_value, 0x111ull << 32, "or64_value"); + ASSERT_EQ(skel->bss->or64_result, 0x110ull << 32, "or64_result"); + + ASSERT_EQ(skel->data->or32_value, 0x111, "or32_value"); + ASSERT_EQ(skel->bss->or32_result, 0x110, "or32_result"); + + ASSERT_EQ(skel->data->or_noreturn_value, 0x111ull << 32, "or_noreturn_value"); +} + +static void test_xor(struct atomics_lskel *skel) +{ + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + /* No need to attach it, just run it directly */ + prog_fd = skel->progs.xor.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->data->xor64_value, 0x101ull << 32, "xor64_value"); + ASSERT_EQ(skel->bss->xor64_result, 0x110ull << 32, "xor64_result"); + + ASSERT_EQ(skel->data->xor32_value, 0x101, "xor32_value"); + ASSERT_EQ(skel->bss->xor32_result, 0x110, "xor32_result"); + + ASSERT_EQ(skel->data->xor_noreturn_value, 0x101ull << 32, "xor_nxoreturn_value"); +} + +static void test_cmpxchg(struct atomics_lskel *skel) +{ + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + /* No need to attach it, just run it directly */ + prog_fd = skel->progs.cmpxchg.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->data->cmpxchg64_value, 2, "cmpxchg64_value"); + ASSERT_EQ(skel->bss->cmpxchg64_result_fail, 1, "cmpxchg_result_fail"); + ASSERT_EQ(skel->bss->cmpxchg64_result_succeed, 1, "cmpxchg_result_succeed"); + + ASSERT_EQ(skel->data->cmpxchg32_value, 2, "lcmpxchg32_value"); + ASSERT_EQ(skel->bss->cmpxchg32_result_fail, 1, "cmpxchg_result_fail"); + ASSERT_EQ(skel->bss->cmpxchg32_result_succeed, 1, "cmpxchg_result_succeed"); +} + +static void test_xchg(struct atomics_lskel *skel) +{ + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + /* No need to attach it, just run it directly */ + prog_fd = skel->progs.xchg.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err")) + return; + if (!ASSERT_OK(topts.retval, "test_run_opts retval")) + return; + + ASSERT_EQ(skel->data->xchg64_value, 2, "xchg64_value"); + ASSERT_EQ(skel->bss->xchg64_result, 1, "xchg64_result"); + + ASSERT_EQ(skel->data->xchg32_value, 2, "xchg32_value"); + ASSERT_EQ(skel->bss->xchg32_result, 1, "xchg32_result"); +} + +void test_atomics(void) +{ + struct atomics_lskel *skel; + + skel = atomics_lskel__open_and_load(); + if (!ASSERT_OK_PTR(skel, "atomics skeleton load")) + return; + + if (skel->data->skip_tests) { + printf("%s:SKIP:no ENABLE_ATOMICS_TESTS (missing Clang BPF atomics support)", + __func__); + test__skip(); + goto cleanup; + } + skel->bss->pid = getpid(); + + if (test__start_subtest("add")) + test_add(skel); + if (test__start_subtest("sub")) + test_sub(skel); + if (test__start_subtest("and")) + test_and(skel); + if (test__start_subtest("or")) + test_or(skel); + if (test__start_subtest("xor")) + test_xor(skel); + if (test__start_subtest("cmpxchg")) + test_cmpxchg(skel); + if (test__start_subtest("xchg")) + test_xchg(skel); + +cleanup: + atomics_lskel__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/attach_probe.c b/tools/testing/selftests/bpf/prog_tests/attach_probe.c index a0ee87c8e1ea..7175af39134f 100644 --- a/tools/testing/selftests/bpf/prog_tests/attach_probe.c +++ b/tools/testing/selftests/bpf/prog_tests/attach_probe.c @@ -1,105 +1,327 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> +#include "test_attach_kprobe_sleepable.skel.h" +#include "test_attach_probe_manual.skel.h" #include "test_attach_probe.skel.h" -ssize_t get_base_addr() { - size_t start, offset; - char buf[256]; - FILE *f; - - f = fopen("/proc/self/maps", "r"); - if (!f) - return -errno; - - while (fscanf(f, "%zx-%*x %s %zx %*[^\n]\n", - &start, buf, &offset) == 3) { - if (strcmp(buf, "r-xp") == 0) { - fclose(f); - return start - offset; - } - } - - fclose(f); - return -EINVAL; +/* this is how USDT semaphore is actually defined, except volatile modifier */ +volatile unsigned short uprobe_ref_ctr __attribute__((unused)) __attribute((section(".probes"))); + +/* uprobe attach point */ +static noinline void trigger_func(void) +{ + asm volatile (""); } -void test_attach_probe(void) +/* attach point for byname uprobe */ +static noinline void trigger_func2(void) +{ + asm volatile (""); +} + +/* attach point for byname sleepable uprobe */ +static noinline void trigger_func3(void) { - int duration = 0; + asm volatile (""); +} + +/* attach point for ref_ctr */ +static noinline void trigger_func4(void) +{ + asm volatile (""); +} + +static char test_data[] = "test_data"; + +/* manual attach kprobe/kretprobe/uprobe/uretprobe testings */ +static void test_attach_probe_manual(enum probe_attach_mode attach_mode) +{ + DECLARE_LIBBPF_OPTS(bpf_uprobe_opts, uprobe_opts); + DECLARE_LIBBPF_OPTS(bpf_kprobe_opts, kprobe_opts); struct bpf_link *kprobe_link, *kretprobe_link; struct bpf_link *uprobe_link, *uretprobe_link; - struct test_attach_probe* skel; - size_t uprobe_offset; - ssize_t base_addr; + struct test_attach_probe_manual *skel; + ssize_t uprobe_offset; - base_addr = get_base_addr(); - if (CHECK(base_addr < 0, "get_base_addr", - "failed to find base addr: %zd", base_addr)) + skel = test_attach_probe_manual__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_kprobe_manual_open_and_load")) return; - uprobe_offset = (size_t)&get_base_addr - base_addr; - skel = test_attach_probe__open_and_load(); - if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) - return; - if (CHECK(!skel->bss, "check_bss", ".bss wasn't mmap()-ed\n")) + uprobe_offset = get_uprobe_offset(&trigger_func); + if (!ASSERT_GE(uprobe_offset, 0, "uprobe_offset")) goto cleanup; - kprobe_link = bpf_program__attach_kprobe(skel->progs.handle_kprobe, - false /* retprobe */, - SYS_NANOSLEEP_KPROBE_NAME); - if (CHECK(IS_ERR(kprobe_link), "attach_kprobe", - "err %ld\n", PTR_ERR(kprobe_link))) + /* manual-attach kprobe/kretprobe */ + kprobe_opts.attach_mode = attach_mode; + kprobe_opts.retprobe = false; + kprobe_link = bpf_program__attach_kprobe_opts(skel->progs.handle_kprobe, + SYS_NANOSLEEP_KPROBE_NAME, + &kprobe_opts); + if (!ASSERT_OK_PTR(kprobe_link, "attach_kprobe")) goto cleanup; skel->links.handle_kprobe = kprobe_link; - kretprobe_link = bpf_program__attach_kprobe(skel->progs.handle_kretprobe, - true /* retprobe */, - SYS_NANOSLEEP_KPROBE_NAME); - if (CHECK(IS_ERR(kretprobe_link), "attach_kretprobe", - "err %ld\n", PTR_ERR(kretprobe_link))) + kprobe_opts.retprobe = true; + kretprobe_link = bpf_program__attach_kprobe_opts(skel->progs.handle_kretprobe, + SYS_NANOSLEEP_KPROBE_NAME, + &kprobe_opts); + if (!ASSERT_OK_PTR(kretprobe_link, "attach_kretprobe")) goto cleanup; skel->links.handle_kretprobe = kretprobe_link; - uprobe_link = bpf_program__attach_uprobe(skel->progs.handle_uprobe, - false /* retprobe */, - 0 /* self pid */, - "/proc/self/exe", - uprobe_offset); - if (CHECK(IS_ERR(uprobe_link), "attach_uprobe", - "err %ld\n", PTR_ERR(uprobe_link))) + /* manual-attach uprobe/uretprobe */ + uprobe_opts.attach_mode = attach_mode; + uprobe_opts.ref_ctr_offset = 0; + uprobe_opts.retprobe = false; + uprobe_link = bpf_program__attach_uprobe_opts(skel->progs.handle_uprobe, + 0 /* self pid */, + "/proc/self/exe", + uprobe_offset, + &uprobe_opts); + if (!ASSERT_OK_PTR(uprobe_link, "attach_uprobe")) goto cleanup; skel->links.handle_uprobe = uprobe_link; - uretprobe_link = bpf_program__attach_uprobe(skel->progs.handle_uretprobe, - true /* retprobe */, - -1 /* any pid */, - "/proc/self/exe", - uprobe_offset); - if (CHECK(IS_ERR(uretprobe_link), "attach_uretprobe", - "err %ld\n", PTR_ERR(uretprobe_link))) + uprobe_opts.retprobe = true; + uretprobe_link = bpf_program__attach_uprobe_opts(skel->progs.handle_uretprobe, + -1 /* any pid */, + "/proc/self/exe", + uprobe_offset, &uprobe_opts); + if (!ASSERT_OK_PTR(uretprobe_link, "attach_uretprobe")) goto cleanup; skel->links.handle_uretprobe = uretprobe_link; + /* attach uprobe by function name manually */ + uprobe_opts.func_name = "trigger_func2"; + uprobe_opts.retprobe = false; + uprobe_opts.ref_ctr_offset = 0; + skel->links.handle_uprobe_byname = + bpf_program__attach_uprobe_opts(skel->progs.handle_uprobe_byname, + 0 /* this pid */, + "/proc/self/exe", + 0, &uprobe_opts); + if (!ASSERT_OK_PTR(skel->links.handle_uprobe_byname, "attach_uprobe_byname")) + goto cleanup; + /* trigger & validate kprobe && kretprobe */ usleep(1); - if (CHECK(skel->bss->kprobe_res != 1, "check_kprobe_res", - "wrong kprobe res: %d\n", skel->bss->kprobe_res)) + /* trigger & validate uprobe & uretprobe */ + trigger_func(); + + /* trigger & validate uprobe attached by name */ + trigger_func2(); + + ASSERT_EQ(skel->bss->kprobe_res, 1, "check_kprobe_res"); + ASSERT_EQ(skel->bss->kretprobe_res, 2, "check_kretprobe_res"); + ASSERT_EQ(skel->bss->uprobe_res, 3, "check_uprobe_res"); + ASSERT_EQ(skel->bss->uretprobe_res, 4, "check_uretprobe_res"); + ASSERT_EQ(skel->bss->uprobe_byname_res, 5, "check_uprobe_byname_res"); + +cleanup: + test_attach_probe_manual__destroy(skel); +} + +static void test_attach_probe_auto(struct test_attach_probe *skel) +{ + struct bpf_link *uprobe_err_link; + + /* auto-attachable kprobe and kretprobe */ + skel->links.handle_kprobe_auto = bpf_program__attach(skel->progs.handle_kprobe_auto); + ASSERT_OK_PTR(skel->links.handle_kprobe_auto, "attach_kprobe_auto"); + + skel->links.handle_kretprobe_auto = bpf_program__attach(skel->progs.handle_kretprobe_auto); + ASSERT_OK_PTR(skel->links.handle_kretprobe_auto, "attach_kretprobe_auto"); + + /* verify auto-attach fails for old-style uprobe definition */ + uprobe_err_link = bpf_program__attach(skel->progs.handle_uprobe_byname); + if (!ASSERT_EQ(libbpf_get_error(uprobe_err_link), -EOPNOTSUPP, + "auto-attach should fail for old-style name")) + return; + + /* verify auto-attach works */ + skel->links.handle_uretprobe_byname = + bpf_program__attach(skel->progs.handle_uretprobe_byname); + if (!ASSERT_OK_PTR(skel->links.handle_uretprobe_byname, "attach_uretprobe_byname")) + return; + + /* trigger & validate kprobe && kretprobe */ + usleep(1); + + /* trigger & validate uprobe attached by name */ + trigger_func2(); + + ASSERT_EQ(skel->bss->kprobe2_res, 11, "check_kprobe_auto_res"); + ASSERT_EQ(skel->bss->kretprobe2_res, 22, "check_kretprobe_auto_res"); + ASSERT_EQ(skel->bss->uretprobe_byname_res, 6, "check_uretprobe_byname_res"); +} + +static void test_uprobe_lib(struct test_attach_probe *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_uprobe_opts, uprobe_opts); + FILE *devnull; + + /* test attach by name for a library function, using the library + * as the binary argument. libc.so.6 will be resolved via dlopen()/dlinfo(). + */ + uprobe_opts.func_name = "fopen"; + uprobe_opts.retprobe = false; + skel->links.handle_uprobe_byname2 = + bpf_program__attach_uprobe_opts(skel->progs.handle_uprobe_byname2, + 0 /* this pid */, + "libc.so.6", + 0, &uprobe_opts); + if (!ASSERT_OK_PTR(skel->links.handle_uprobe_byname2, "attach_uprobe_byname2")) + return; + + uprobe_opts.func_name = "fclose"; + uprobe_opts.retprobe = true; + skel->links.handle_uretprobe_byname2 = + bpf_program__attach_uprobe_opts(skel->progs.handle_uretprobe_byname2, + -1 /* any pid */, + "libc.so.6", + 0, &uprobe_opts); + if (!ASSERT_OK_PTR(skel->links.handle_uretprobe_byname2, "attach_uretprobe_byname2")) + return; + + /* trigger & validate shared library u[ret]probes attached by name */ + devnull = fopen("/dev/null", "r"); + fclose(devnull); + + ASSERT_EQ(skel->bss->uprobe_byname2_res, 7, "check_uprobe_byname2_res"); + ASSERT_EQ(skel->bss->uretprobe_byname2_res, 8, "check_uretprobe_byname2_res"); +} + +static void test_uprobe_ref_ctr(struct test_attach_probe *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_uprobe_opts, uprobe_opts); + struct bpf_link *uprobe_link, *uretprobe_link; + ssize_t uprobe_offset, ref_ctr_offset; + + uprobe_offset = get_uprobe_offset(&trigger_func4); + if (!ASSERT_GE(uprobe_offset, 0, "uprobe_offset_ref_ctr")) + return; + + ref_ctr_offset = get_rel_offset((uintptr_t)&uprobe_ref_ctr); + if (!ASSERT_GE(ref_ctr_offset, 0, "ref_ctr_offset")) + return; + + ASSERT_EQ(uprobe_ref_ctr, 0, "uprobe_ref_ctr_before"); + + uprobe_opts.retprobe = false; + uprobe_opts.ref_ctr_offset = ref_ctr_offset; + uprobe_link = bpf_program__attach_uprobe_opts(skel->progs.handle_uprobe_ref_ctr, + 0 /* self pid */, + "/proc/self/exe", + uprobe_offset, + &uprobe_opts); + if (!ASSERT_OK_PTR(uprobe_link, "attach_uprobe_ref_ctr")) + return; + skel->links.handle_uprobe_ref_ctr = uprobe_link; + + ASSERT_GT(uprobe_ref_ctr, 0, "uprobe_ref_ctr_after"); + + /* if uprobe uses ref_ctr, uretprobe has to use ref_ctr as well */ + uprobe_opts.retprobe = true; + uprobe_opts.ref_ctr_offset = ref_ctr_offset; + uretprobe_link = bpf_program__attach_uprobe_opts(skel->progs.handle_uretprobe_ref_ctr, + -1 /* any pid */, + "/proc/self/exe", + uprobe_offset, &uprobe_opts); + if (!ASSERT_OK_PTR(uretprobe_link, "attach_uretprobe_ref_ctr")) + return; + skel->links.handle_uretprobe_ref_ctr = uretprobe_link; +} + +static void test_kprobe_sleepable(void) +{ + struct test_attach_kprobe_sleepable *skel; + + skel = test_attach_kprobe_sleepable__open(); + if (!ASSERT_OK_PTR(skel, "skel_kprobe_sleepable_open")) + return; + + /* sleepable kprobe test case needs flags set before loading */ + if (!ASSERT_OK(bpf_program__set_flags(skel->progs.handle_kprobe_sleepable, + BPF_F_SLEEPABLE), "kprobe_sleepable_flags")) goto cleanup; - if (CHECK(skel->bss->kretprobe_res != 2, "check_kretprobe_res", - "wrong kretprobe res: %d\n", skel->bss->kretprobe_res)) + + if (!ASSERT_OK(test_attach_kprobe_sleepable__load(skel), + "skel_kprobe_sleepable_load")) goto cleanup; - /* trigger & validate uprobe & uretprobe */ - get_base_addr(); + /* sleepable kprobes should not attach successfully */ + skel->links.handle_kprobe_sleepable = bpf_program__attach(skel->progs.handle_kprobe_sleepable); + ASSERT_ERR_PTR(skel->links.handle_kprobe_sleepable, "attach_kprobe_sleepable"); + +cleanup: + test_attach_kprobe_sleepable__destroy(skel); +} + +static void test_uprobe_sleepable(struct test_attach_probe *skel) +{ + /* test sleepable uprobe and uretprobe variants */ + skel->links.handle_uprobe_byname3_sleepable = bpf_program__attach(skel->progs.handle_uprobe_byname3_sleepable); + if (!ASSERT_OK_PTR(skel->links.handle_uprobe_byname3_sleepable, "attach_uprobe_byname3_sleepable")) + return; + + skel->links.handle_uprobe_byname3 = bpf_program__attach(skel->progs.handle_uprobe_byname3); + if (!ASSERT_OK_PTR(skel->links.handle_uprobe_byname3, "attach_uprobe_byname3")) + return; + + skel->links.handle_uretprobe_byname3_sleepable = bpf_program__attach(skel->progs.handle_uretprobe_byname3_sleepable); + if (!ASSERT_OK_PTR(skel->links.handle_uretprobe_byname3_sleepable, "attach_uretprobe_byname3_sleepable")) + return; + + skel->links.handle_uretprobe_byname3 = bpf_program__attach(skel->progs.handle_uretprobe_byname3); + if (!ASSERT_OK_PTR(skel->links.handle_uretprobe_byname3, "attach_uretprobe_byname3")) + return; - if (CHECK(skel->bss->uprobe_res != 3, "check_uprobe_res", - "wrong uprobe res: %d\n", skel->bss->uprobe_res)) + skel->bss->user_ptr = test_data; + + /* trigger & validate sleepable uprobe attached by name */ + trigger_func3(); + + ASSERT_EQ(skel->bss->uprobe_byname3_sleepable_res, 9, "check_uprobe_byname3_sleepable_res"); + ASSERT_EQ(skel->bss->uprobe_byname3_res, 10, "check_uprobe_byname3_res"); + ASSERT_EQ(skel->bss->uretprobe_byname3_sleepable_res, 11, "check_uretprobe_byname3_sleepable_res"); + ASSERT_EQ(skel->bss->uretprobe_byname3_res, 12, "check_uretprobe_byname3_res"); +} + +void test_attach_probe(void) +{ + struct test_attach_probe *skel; + + skel = test_attach_probe__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + if (!ASSERT_OK(test_attach_probe__load(skel), "skel_load")) goto cleanup; - if (CHECK(skel->bss->uretprobe_res != 4, "check_uretprobe_res", - "wrong uretprobe res: %d\n", skel->bss->uretprobe_res)) + if (!ASSERT_OK_PTR(skel->bss, "check_bss")) goto cleanup; + if (test__start_subtest("manual-default")) + test_attach_probe_manual(PROBE_ATTACH_MODE_DEFAULT); + if (test__start_subtest("manual-legacy")) + test_attach_probe_manual(PROBE_ATTACH_MODE_LEGACY); + if (test__start_subtest("manual-perf")) + test_attach_probe_manual(PROBE_ATTACH_MODE_PERF); + if (test__start_subtest("manual-link")) + test_attach_probe_manual(PROBE_ATTACH_MODE_LINK); + + if (test__start_subtest("auto")) + test_attach_probe_auto(skel); + if (test__start_subtest("kprobe-sleepable")) + test_kprobe_sleepable(); + if (test__start_subtest("uprobe-lib")) + test_uprobe_lib(skel); + if (test__start_subtest("uprobe-sleepable")) + test_uprobe_sleepable(skel); + if (test__start_subtest("uprobe-ref_ctr")) + test_uprobe_ref_ctr(skel); + cleanup: test_attach_probe__destroy(skel); + ASSERT_EQ(uprobe_ref_ctr, 0, "uprobe_ref_ctr_cleanup"); } diff --git a/tools/testing/selftests/bpf/prog_tests/autoattach.c b/tools/testing/selftests/bpf/prog_tests/autoattach.c new file mode 100644 index 000000000000..dc5e01d279bd --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/autoattach.c @@ -0,0 +1,30 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Google */ + +#include <test_progs.h> +#include "test_autoattach.skel.h" + +void test_autoattach(void) +{ + struct test_autoattach *skel; + + skel = test_autoattach__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + goto cleanup; + + /* disable auto-attach for prog2 */ + bpf_program__set_autoattach(skel->progs.prog2, false); + ASSERT_TRUE(bpf_program__autoattach(skel->progs.prog1), "autoattach_prog1"); + ASSERT_FALSE(bpf_program__autoattach(skel->progs.prog2), "autoattach_prog2"); + if (!ASSERT_OK(test_autoattach__attach(skel), "skel_attach")) + goto cleanup; + + usleep(1); + + ASSERT_TRUE(skel->bss->prog1_called, "attached_prog1"); + ASSERT_FALSE(skel->bss->prog2_called, "attached_prog2"); + +cleanup: + test_autoattach__destroy(skel); +} + diff --git a/tools/testing/selftests/bpf/prog_tests/bad_struct_ops.c b/tools/testing/selftests/bpf/prog_tests/bad_struct_ops.c new file mode 100644 index 000000000000..6a707213e46b --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bad_struct_ops.c @@ -0,0 +1,67 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include "bad_struct_ops.skel.h" +#include "bad_struct_ops2.skel.h" + +static void invalid_prog_reuse(void) +{ + struct bad_struct_ops *skel; + char *log = NULL; + int err; + + skel = bad_struct_ops__open(); + if (!ASSERT_OK_PTR(skel, "bad_struct_ops__open")) + return; + + if (start_libbpf_log_capture()) + goto cleanup; + + err = bad_struct_ops__load(skel); + log = stop_libbpf_log_capture(); + ASSERT_ERR(err, "bad_struct_ops__load should fail"); + ASSERT_HAS_SUBSTR(log, + "struct_ops init_kern testmod_2 func ptr test_1: invalid reuse of prog test_1", + "expected init_kern message"); + +cleanup: + free(log); + bad_struct_ops__destroy(skel); +} + +static void unused_program(void) +{ + struct bad_struct_ops2 *skel; + char *log = NULL; + int err; + + skel = bad_struct_ops2__open(); + if (!ASSERT_OK_PTR(skel, "bad_struct_ops2__open")) + return; + + /* struct_ops programs not referenced from any maps are open + * with autoload set to true. + */ + ASSERT_TRUE(bpf_program__autoload(skel->progs.foo), "foo autoload == true"); + + if (start_libbpf_log_capture()) + goto cleanup; + + err = bad_struct_ops2__load(skel); + ASSERT_ERR(err, "bad_struct_ops2__load should fail"); + log = stop_libbpf_log_capture(); + ASSERT_HAS_SUBSTR(log, "prog 'foo': failed to load", + "message about 'foo' failing to load"); + +cleanup: + free(log); + bad_struct_ops2__destroy(skel); +} + +void test_bad_struct_ops(void) +{ + if (test__start_subtest("invalid_prog_reuse")) + invalid_prog_reuse(); + if (test__start_subtest("unused_program")) + unused_program(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bind_perm.c b/tools/testing/selftests/bpf/prog_tests/bind_perm.c new file mode 100644 index 000000000000..f7cd129cb82b --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bind_perm.c @@ -0,0 +1,93 @@ +// SPDX-License-Identifier: GPL-2.0 +#define _GNU_SOURCE +#include <sched.h> +#include <stdlib.h> +#include <sys/types.h> +#include <sys/socket.h> + +#include "test_progs.h" +#include "cap_helpers.h" +#include "bind_perm.skel.h" + +static int create_netns(void) +{ + if (!ASSERT_OK(unshare(CLONE_NEWNET), "create netns")) + return -1; + + return 0; +} + +void try_bind(int family, int port, int expected_errno) +{ + struct sockaddr_storage addr = {}; + struct sockaddr_in6 *sin6; + struct sockaddr_in *sin; + int fd = -1; + + fd = socket(family, SOCK_STREAM, 0); + if (!ASSERT_GE(fd, 0, "socket")) + goto close_socket; + + if (family == AF_INET) { + sin = (struct sockaddr_in *)&addr; + sin->sin_family = family; + sin->sin_port = htons(port); + } else { + sin6 = (struct sockaddr_in6 *)&addr; + sin6->sin6_family = family; + sin6->sin6_port = htons(port); + } + + errno = 0; + bind(fd, (struct sockaddr *)&addr, sizeof(addr)); + ASSERT_EQ(errno, expected_errno, "bind"); + +close_socket: + if (fd >= 0) + close(fd); +} + +void test_bind_perm(void) +{ + const __u64 net_bind_svc_cap = 1ULL << CAP_NET_BIND_SERVICE; + struct bind_perm *skel; + __u64 old_caps = 0; + int cgroup_fd; + + if (create_netns()) + return; + + cgroup_fd = test__join_cgroup("/bind_perm"); + if (!ASSERT_GE(cgroup_fd, 0, "test__join_cgroup")) + return; + + skel = bind_perm__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel")) + goto close_cgroup_fd; + + skel->links.bind_v4_prog = bpf_program__attach_cgroup(skel->progs.bind_v4_prog, cgroup_fd); + if (!ASSERT_OK_PTR(skel, "bind_v4_prog")) + goto close_skeleton; + + skel->links.bind_v6_prog = bpf_program__attach_cgroup(skel->progs.bind_v6_prog, cgroup_fd); + if (!ASSERT_OK_PTR(skel, "bind_v6_prog")) + goto close_skeleton; + + ASSERT_OK(cap_disable_effective(net_bind_svc_cap, &old_caps), + "cap_disable_effective"); + + try_bind(AF_INET, 110, EACCES); + try_bind(AF_INET6, 110, EACCES); + + try_bind(AF_INET, 111, 0); + try_bind(AF_INET6, 111, 0); + + if (old_caps & net_bind_svc_cap) + ASSERT_OK(cap_enable_effective(net_bind_svc_cap, NULL), + "cap_enable_effective"); + +close_skeleton: + bind_perm__destroy(skel); +close_cgroup_fd: + close(cgroup_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bloom_filter_map.c b/tools/testing/selftests/bpf/prog_tests/bloom_filter_map.c new file mode 100644 index 000000000000..cc184e4420f6 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bloom_filter_map.c @@ -0,0 +1,219 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <sys/syscall.h> +#include <limits.h> +#include <test_progs.h> +#include "bloom_filter_map.skel.h" + +static void test_fail_cases(void) +{ + LIBBPF_OPTS(bpf_map_create_opts, opts); + __u32 value; + int fd, err; + + /* Invalid key size */ + fd = bpf_map_create(BPF_MAP_TYPE_BLOOM_FILTER, NULL, 4, sizeof(value), 100, NULL); + if (!ASSERT_LT(fd, 0, "bpf_map_create bloom filter invalid key size")) + close(fd); + + /* Invalid value size */ + fd = bpf_map_create(BPF_MAP_TYPE_BLOOM_FILTER, NULL, 0, 0, 100, NULL); + if (!ASSERT_LT(fd, 0, "bpf_map_create bloom filter invalid value size 0")) + close(fd); + + /* Invalid value size: too big */ + fd = bpf_map_create(BPF_MAP_TYPE_BLOOM_FILTER, NULL, 0, INT32_MAX, 100, NULL); + if (!ASSERT_LT(fd, 0, "bpf_map_create bloom filter invalid value too large")) + close(fd); + + /* Invalid max entries size */ + fd = bpf_map_create(BPF_MAP_TYPE_BLOOM_FILTER, NULL, 0, sizeof(value), 0, NULL); + if (!ASSERT_LT(fd, 0, "bpf_map_create bloom filter invalid max entries size")) + close(fd); + + /* Bloom filter maps do not support BPF_F_NO_PREALLOC */ + opts.map_flags = BPF_F_NO_PREALLOC; + fd = bpf_map_create(BPF_MAP_TYPE_BLOOM_FILTER, NULL, 0, sizeof(value), 100, &opts); + if (!ASSERT_LT(fd, 0, "bpf_map_create bloom filter invalid flags")) + close(fd); + + fd = bpf_map_create(BPF_MAP_TYPE_BLOOM_FILTER, NULL, 0, sizeof(value), 100, NULL); + if (!ASSERT_GE(fd, 0, "bpf_map_create bloom filter")) + return; + + /* Test invalid flags */ + err = bpf_map_update_elem(fd, NULL, &value, -1); + ASSERT_EQ(err, -EINVAL, "bpf_map_update_elem bloom filter invalid flags"); + + err = bpf_map_update_elem(fd, NULL, &value, BPF_EXIST); + ASSERT_EQ(err, -EINVAL, "bpf_map_update_elem bloom filter invalid flags"); + + err = bpf_map_update_elem(fd, NULL, &value, BPF_F_LOCK); + ASSERT_EQ(err, -EINVAL, "bpf_map_update_elem bloom filter invalid flags"); + + err = bpf_map_update_elem(fd, NULL, &value, BPF_NOEXIST); + ASSERT_EQ(err, -EINVAL, "bpf_map_update_elem bloom filter invalid flags"); + + err = bpf_map_update_elem(fd, NULL, &value, 10000); + ASSERT_EQ(err, -EINVAL, "bpf_map_update_elem bloom filter invalid flags"); + + close(fd); +} + +static void test_success_cases(void) +{ + LIBBPF_OPTS(bpf_map_create_opts, opts); + char value[11]; + int fd, err; + + /* Create a map */ + opts.map_flags = BPF_F_ZERO_SEED | BPF_F_NUMA_NODE; + fd = bpf_map_create(BPF_MAP_TYPE_BLOOM_FILTER, NULL, 0, sizeof(value), 100, &opts); + if (!ASSERT_GE(fd, 0, "bpf_map_create bloom filter success case")) + return; + + /* Add a value to the bloom filter */ + err = bpf_map_update_elem(fd, NULL, &value, 0); + if (!ASSERT_OK(err, "bpf_map_update_elem bloom filter success case")) + goto done; + + /* Lookup a value in the bloom filter */ + err = bpf_map_lookup_elem(fd, NULL, &value); + ASSERT_OK(err, "bpf_map_update_elem bloom filter success case"); + +done: + close(fd); +} + +static void check_bloom(struct bloom_filter_map *skel) +{ + struct bpf_link *link; + + link = bpf_program__attach(skel->progs.check_bloom); + if (!ASSERT_OK_PTR(link, "link")) + return; + + syscall(SYS_getpgid); + + ASSERT_EQ(skel->bss->error, 0, "error"); + + bpf_link__destroy(link); +} + +static void test_inner_map(struct bloom_filter_map *skel, const __u32 *rand_vals, + __u32 nr_rand_vals) +{ + int outer_map_fd, inner_map_fd, err, i, key = 0; + struct bpf_link *link; + + /* Create a bloom filter map that will be used as the inner map */ + inner_map_fd = bpf_map_create(BPF_MAP_TYPE_BLOOM_FILTER, NULL, 0, sizeof(*rand_vals), + nr_rand_vals, NULL); + if (!ASSERT_GE(inner_map_fd, 0, "bpf_map_create bloom filter inner map")) + return; + + for (i = 0; i < nr_rand_vals; i++) { + err = bpf_map_update_elem(inner_map_fd, NULL, rand_vals + i, BPF_ANY); + if (!ASSERT_OK(err, "Add random value to inner_map_fd")) + goto done; + } + + /* Add the bloom filter map to the outer map */ + outer_map_fd = bpf_map__fd(skel->maps.outer_map); + err = bpf_map_update_elem(outer_map_fd, &key, &inner_map_fd, BPF_ANY); + if (!ASSERT_OK(err, "Add bloom filter map to outer map")) + goto done; + + /* Attach the bloom_filter_inner_map prog */ + link = bpf_program__attach(skel->progs.inner_map); + if (!ASSERT_OK_PTR(link, "link")) + goto delete_inner_map; + + syscall(SYS_getpgid); + + ASSERT_EQ(skel->bss->error, 0, "error"); + + bpf_link__destroy(link); + +delete_inner_map: + /* Ensure the inner bloom filter map can be deleted */ + err = bpf_map_delete_elem(outer_map_fd, &key); + ASSERT_OK(err, "Delete inner bloom filter map"); + +done: + close(inner_map_fd); +} + +static int setup_progs(struct bloom_filter_map **out_skel, __u32 **out_rand_vals, + __u32 *out_nr_rand_vals) +{ + struct bloom_filter_map *skel; + int random_data_fd, bloom_fd; + __u32 *rand_vals = NULL; + __u32 map_size, val; + int err, i; + + /* Set up a bloom filter map skeleton */ + skel = bloom_filter_map__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bloom_filter_map__open_and_load")) + return -EINVAL; + + /* Set up rand_vals */ + map_size = bpf_map__max_entries(skel->maps.map_random_data); + rand_vals = malloc(sizeof(*rand_vals) * map_size); + if (!rand_vals) { + err = -ENOMEM; + goto error; + } + + /* Generate random values and populate both skeletons */ + random_data_fd = bpf_map__fd(skel->maps.map_random_data); + bloom_fd = bpf_map__fd(skel->maps.map_bloom); + for (i = 0; i < map_size; i++) { + val = rand(); + + err = bpf_map_update_elem(random_data_fd, &i, &val, BPF_ANY); + if (!ASSERT_OK(err, "Add random value to map_random_data")) + goto error; + + err = bpf_map_update_elem(bloom_fd, NULL, &val, BPF_ANY); + if (!ASSERT_OK(err, "Add random value to map_bloom")) + goto error; + + rand_vals[i] = val; + } + + *out_skel = skel; + *out_rand_vals = rand_vals; + *out_nr_rand_vals = map_size; + + return 0; + +error: + bloom_filter_map__destroy(skel); + if (rand_vals) + free(rand_vals); + return err; +} + +void test_bloom_filter_map(void) +{ + __u32 *rand_vals = NULL, nr_rand_vals = 0; + struct bloom_filter_map *skel = NULL; + int err; + + test_fail_cases(); + test_success_cases(); + + err = setup_progs(&skel, &rand_vals, &nr_rand_vals); + if (err) + return; + + test_inner_map(skel, rand_vals, nr_rand_vals); + free(rand_vals); + + check_bloom(skel); + + bloom_filter_map__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_cookie.c b/tools/testing/selftests/bpf/prog_tests/bpf_cookie.c new file mode 100644 index 000000000000..4407ea428e77 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bpf_cookie.c @@ -0,0 +1,718 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#define _GNU_SOURCE +#include <pthread.h> +#include <sched.h> +#include <sys/syscall.h> +#include <sys/mman.h> +#include <unistd.h> +#include <test_progs.h> +#include <network_helpers.h> +#include <bpf/btf.h> +#include "test_bpf_cookie.skel.h" +#include "kprobe_multi.skel.h" +#include "uprobe_multi.skel.h" + +/* uprobe attach point */ +static noinline void trigger_func(void) +{ + asm volatile (""); +} + +static void kprobe_subtest(struct test_bpf_cookie *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_kprobe_opts, opts); + struct bpf_link *link1 = NULL, *link2 = NULL; + struct bpf_link *retlink1 = NULL, *retlink2 = NULL; + + /* attach two kprobes */ + opts.bpf_cookie = 0x1; + opts.retprobe = false; + link1 = bpf_program__attach_kprobe_opts(skel->progs.handle_kprobe, + SYS_NANOSLEEP_KPROBE_NAME, &opts); + if (!ASSERT_OK_PTR(link1, "link1")) + goto cleanup; + + opts.bpf_cookie = 0x2; + opts.retprobe = false; + link2 = bpf_program__attach_kprobe_opts(skel->progs.handle_kprobe, + SYS_NANOSLEEP_KPROBE_NAME, &opts); + if (!ASSERT_OK_PTR(link2, "link2")) + goto cleanup; + + /* attach two kretprobes */ + opts.bpf_cookie = 0x10; + opts.retprobe = true; + retlink1 = bpf_program__attach_kprobe_opts(skel->progs.handle_kretprobe, + SYS_NANOSLEEP_KPROBE_NAME, &opts); + if (!ASSERT_OK_PTR(retlink1, "retlink1")) + goto cleanup; + + opts.bpf_cookie = 0x20; + opts.retprobe = true; + retlink2 = bpf_program__attach_kprobe_opts(skel->progs.handle_kretprobe, + SYS_NANOSLEEP_KPROBE_NAME, &opts); + if (!ASSERT_OK_PTR(retlink2, "retlink2")) + goto cleanup; + + /* trigger kprobe && kretprobe */ + usleep(1); + + ASSERT_EQ(skel->bss->kprobe_res, 0x1 | 0x2, "kprobe_res"); + ASSERT_EQ(skel->bss->kretprobe_res, 0x10 | 0x20, "kretprobe_res"); + +cleanup: + bpf_link__destroy(link1); + bpf_link__destroy(link2); + bpf_link__destroy(retlink1); + bpf_link__destroy(retlink2); +} + +static void kprobe_multi_test_run(struct kprobe_multi *skel) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + prog_fd = bpf_program__fd(skel->progs.trigger); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + ASSERT_EQ(skel->bss->kprobe_test1_result, 1, "kprobe_test1_result"); + ASSERT_EQ(skel->bss->kprobe_test2_result, 1, "kprobe_test2_result"); + ASSERT_EQ(skel->bss->kprobe_test3_result, 1, "kprobe_test3_result"); + ASSERT_EQ(skel->bss->kprobe_test4_result, 1, "kprobe_test4_result"); + ASSERT_EQ(skel->bss->kprobe_test5_result, 1, "kprobe_test5_result"); + ASSERT_EQ(skel->bss->kprobe_test6_result, 1, "kprobe_test6_result"); + ASSERT_EQ(skel->bss->kprobe_test7_result, 1, "kprobe_test7_result"); + ASSERT_EQ(skel->bss->kprobe_test8_result, 1, "kprobe_test8_result"); + + ASSERT_EQ(skel->bss->kretprobe_test1_result, 1, "kretprobe_test1_result"); + ASSERT_EQ(skel->bss->kretprobe_test2_result, 1, "kretprobe_test2_result"); + ASSERT_EQ(skel->bss->kretprobe_test3_result, 1, "kretprobe_test3_result"); + ASSERT_EQ(skel->bss->kretprobe_test4_result, 1, "kretprobe_test4_result"); + ASSERT_EQ(skel->bss->kretprobe_test5_result, 1, "kretprobe_test5_result"); + ASSERT_EQ(skel->bss->kretprobe_test6_result, 1, "kretprobe_test6_result"); + ASSERT_EQ(skel->bss->kretprobe_test7_result, 1, "kretprobe_test7_result"); + ASSERT_EQ(skel->bss->kretprobe_test8_result, 1, "kretprobe_test8_result"); +} + +static void kprobe_multi_link_api_subtest(void) +{ + int prog_fd, link1_fd = -1, link2_fd = -1; + struct kprobe_multi *skel = NULL; + LIBBPF_OPTS(bpf_link_create_opts, opts); + unsigned long long addrs[8]; + __u64 cookies[8]; + + if (!ASSERT_OK(load_kallsyms(), "load_kallsyms")) + goto cleanup; + + skel = kprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "fentry_raw_skel_load")) + goto cleanup; + + skel->bss->pid = getpid(); + skel->bss->test_cookie = true; + +#define GET_ADDR(__sym, __addr) ({ \ + __addr = ksym_get_addr(__sym); \ + if (!ASSERT_NEQ(__addr, 0, "ksym_get_addr " #__sym)) \ + goto cleanup; \ +}) + + GET_ADDR("bpf_fentry_test1", addrs[0]); + GET_ADDR("bpf_fentry_test3", addrs[1]); + GET_ADDR("bpf_fentry_test4", addrs[2]); + GET_ADDR("bpf_fentry_test5", addrs[3]); + GET_ADDR("bpf_fentry_test6", addrs[4]); + GET_ADDR("bpf_fentry_test7", addrs[5]); + GET_ADDR("bpf_fentry_test2", addrs[6]); + GET_ADDR("bpf_fentry_test8", addrs[7]); + +#undef GET_ADDR + + cookies[0] = 1; /* bpf_fentry_test1 */ + cookies[1] = 2; /* bpf_fentry_test3 */ + cookies[2] = 3; /* bpf_fentry_test4 */ + cookies[3] = 4; /* bpf_fentry_test5 */ + cookies[4] = 5; /* bpf_fentry_test6 */ + cookies[5] = 6; /* bpf_fentry_test7 */ + cookies[6] = 7; /* bpf_fentry_test2 */ + cookies[7] = 8; /* bpf_fentry_test8 */ + + opts.kprobe_multi.addrs = (const unsigned long *) &addrs; + opts.kprobe_multi.cnt = ARRAY_SIZE(addrs); + opts.kprobe_multi.cookies = (const __u64 *) &cookies; + prog_fd = bpf_program__fd(skel->progs.test_kprobe); + + link1_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_KPROBE_MULTI, &opts); + if (!ASSERT_GE(link1_fd, 0, "link1_fd")) + goto cleanup; + + cookies[0] = 8; /* bpf_fentry_test1 */ + cookies[1] = 7; /* bpf_fentry_test3 */ + cookies[2] = 6; /* bpf_fentry_test4 */ + cookies[3] = 5; /* bpf_fentry_test5 */ + cookies[4] = 4; /* bpf_fentry_test6 */ + cookies[5] = 3; /* bpf_fentry_test7 */ + cookies[6] = 2; /* bpf_fentry_test2 */ + cookies[7] = 1; /* bpf_fentry_test8 */ + + opts.kprobe_multi.flags = BPF_F_KPROBE_MULTI_RETURN; + prog_fd = bpf_program__fd(skel->progs.test_kretprobe); + + link2_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_KPROBE_MULTI, &opts); + if (!ASSERT_GE(link2_fd, 0, "link2_fd")) + goto cleanup; + + kprobe_multi_test_run(skel); + +cleanup: + close(link1_fd); + close(link2_fd); + kprobe_multi__destroy(skel); +} + +static void kprobe_multi_attach_api_subtest(void) +{ + struct bpf_link *link1 = NULL, *link2 = NULL; + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct kprobe_multi *skel = NULL; + const char *syms[8] = { + "bpf_fentry_test1", + "bpf_fentry_test3", + "bpf_fentry_test4", + "bpf_fentry_test5", + "bpf_fentry_test6", + "bpf_fentry_test7", + "bpf_fentry_test2", + "bpf_fentry_test8", + }; + __u64 cookies[8]; + + skel = kprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "fentry_raw_skel_load")) + goto cleanup; + + skel->bss->pid = getpid(); + skel->bss->test_cookie = true; + + cookies[0] = 1; /* bpf_fentry_test1 */ + cookies[1] = 2; /* bpf_fentry_test3 */ + cookies[2] = 3; /* bpf_fentry_test4 */ + cookies[3] = 4; /* bpf_fentry_test5 */ + cookies[4] = 5; /* bpf_fentry_test6 */ + cookies[5] = 6; /* bpf_fentry_test7 */ + cookies[6] = 7; /* bpf_fentry_test2 */ + cookies[7] = 8; /* bpf_fentry_test8 */ + + opts.syms = syms; + opts.cnt = ARRAY_SIZE(syms); + opts.cookies = cookies; + + link1 = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe, + NULL, &opts); + if (!ASSERT_OK_PTR(link1, "bpf_program__attach_kprobe_multi_opts")) + goto cleanup; + + cookies[0] = 8; /* bpf_fentry_test1 */ + cookies[1] = 7; /* bpf_fentry_test3 */ + cookies[2] = 6; /* bpf_fentry_test4 */ + cookies[3] = 5; /* bpf_fentry_test5 */ + cookies[4] = 4; /* bpf_fentry_test6 */ + cookies[5] = 3; /* bpf_fentry_test7 */ + cookies[6] = 2; /* bpf_fentry_test2 */ + cookies[7] = 1; /* bpf_fentry_test8 */ + + opts.retprobe = true; + + link2 = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kretprobe, + NULL, &opts); + if (!ASSERT_OK_PTR(link2, "bpf_program__attach_kprobe_multi_opts")) + goto cleanup; + + kprobe_multi_test_run(skel); + +cleanup: + bpf_link__destroy(link2); + bpf_link__destroy(link1); + kprobe_multi__destroy(skel); +} + +/* defined in prog_tests/uprobe_multi_test.c */ +void uprobe_multi_func_1(void); +void uprobe_multi_func_2(void); +void uprobe_multi_func_3(void); + +static void uprobe_multi_test_run(struct uprobe_multi *skel) +{ + skel->bss->uprobe_multi_func_1_addr = (__u64) uprobe_multi_func_1; + skel->bss->uprobe_multi_func_2_addr = (__u64) uprobe_multi_func_2; + skel->bss->uprobe_multi_func_3_addr = (__u64) uprobe_multi_func_3; + + skel->bss->pid = getpid(); + skel->bss->test_cookie = true; + + uprobe_multi_func_1(); + uprobe_multi_func_2(); + uprobe_multi_func_3(); + + ASSERT_EQ(skel->bss->uprobe_multi_func_1_result, 1, "uprobe_multi_func_1_result"); + ASSERT_EQ(skel->bss->uprobe_multi_func_2_result, 1, "uprobe_multi_func_2_result"); + ASSERT_EQ(skel->bss->uprobe_multi_func_3_result, 1, "uprobe_multi_func_3_result"); + + ASSERT_EQ(skel->bss->uretprobe_multi_func_1_result, 1, "uretprobe_multi_func_1_result"); + ASSERT_EQ(skel->bss->uretprobe_multi_func_2_result, 1, "uretprobe_multi_func_2_result"); + ASSERT_EQ(skel->bss->uretprobe_multi_func_3_result, 1, "uretprobe_multi_func_3_result"); +} + +static void uprobe_multi_attach_api_subtest(void) +{ + struct bpf_link *link1 = NULL, *link2 = NULL; + struct uprobe_multi *skel = NULL; + LIBBPF_OPTS(bpf_uprobe_multi_opts, opts); + const char *syms[3] = { + "uprobe_multi_func_1", + "uprobe_multi_func_2", + "uprobe_multi_func_3", + }; + __u64 cookies[3]; + + cookies[0] = 3; /* uprobe_multi_func_1 */ + cookies[1] = 1; /* uprobe_multi_func_2 */ + cookies[2] = 2; /* uprobe_multi_func_3 */ + + opts.syms = syms; + opts.cnt = ARRAY_SIZE(syms); + opts.cookies = &cookies[0]; + + skel = uprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "uprobe_multi")) + goto cleanup; + + link1 = bpf_program__attach_uprobe_multi(skel->progs.uprobe, -1, + "/proc/self/exe", NULL, &opts); + if (!ASSERT_OK_PTR(link1, "bpf_program__attach_uprobe_multi")) + goto cleanup; + + cookies[0] = 2; /* uprobe_multi_func_1 */ + cookies[1] = 3; /* uprobe_multi_func_2 */ + cookies[2] = 1; /* uprobe_multi_func_3 */ + + opts.retprobe = true; + link2 = bpf_program__attach_uprobe_multi(skel->progs.uretprobe, -1, + "/proc/self/exe", NULL, &opts); + if (!ASSERT_OK_PTR(link2, "bpf_program__attach_uprobe_multi_retprobe")) + goto cleanup; + + uprobe_multi_test_run(skel); + +cleanup: + bpf_link__destroy(link2); + bpf_link__destroy(link1); + uprobe_multi__destroy(skel); +} + +static void uprobe_subtest(struct test_bpf_cookie *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_uprobe_opts, opts); + struct bpf_link *link1 = NULL, *link2 = NULL; + struct bpf_link *retlink1 = NULL, *retlink2 = NULL; + ssize_t uprobe_offset; + + uprobe_offset = get_uprobe_offset(&trigger_func); + if (!ASSERT_GE(uprobe_offset, 0, "uprobe_offset")) + goto cleanup; + + /* attach two uprobes */ + opts.bpf_cookie = 0x100; + opts.retprobe = false; + link1 = bpf_program__attach_uprobe_opts(skel->progs.handle_uprobe, 0 /* self pid */, + "/proc/self/exe", uprobe_offset, &opts); + if (!ASSERT_OK_PTR(link1, "link1")) + goto cleanup; + + opts.bpf_cookie = 0x200; + opts.retprobe = false; + link2 = bpf_program__attach_uprobe_opts(skel->progs.handle_uprobe, -1 /* any pid */, + "/proc/self/exe", uprobe_offset, &opts); + if (!ASSERT_OK_PTR(link2, "link2")) + goto cleanup; + + /* attach two uretprobes */ + opts.bpf_cookie = 0x1000; + opts.retprobe = true; + retlink1 = bpf_program__attach_uprobe_opts(skel->progs.handle_uretprobe, -1 /* any pid */, + "/proc/self/exe", uprobe_offset, &opts); + if (!ASSERT_OK_PTR(retlink1, "retlink1")) + goto cleanup; + + opts.bpf_cookie = 0x2000; + opts.retprobe = true; + retlink2 = bpf_program__attach_uprobe_opts(skel->progs.handle_uretprobe, 0 /* self pid */, + "/proc/self/exe", uprobe_offset, &opts); + if (!ASSERT_OK_PTR(retlink2, "retlink2")) + goto cleanup; + + /* trigger uprobe && uretprobe */ + trigger_func(); + + ASSERT_EQ(skel->bss->uprobe_res, 0x100 | 0x200, "uprobe_res"); + ASSERT_EQ(skel->bss->uretprobe_res, 0x1000 | 0x2000, "uretprobe_res"); + +cleanup: + bpf_link__destroy(link1); + bpf_link__destroy(link2); + bpf_link__destroy(retlink1); + bpf_link__destroy(retlink2); +} + +static void tp_subtest(struct test_bpf_cookie *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_tracepoint_opts, opts); + struct bpf_link *link1 = NULL, *link2 = NULL, *link3 = NULL; + + /* attach first tp prog */ + opts.bpf_cookie = 0x10000; + link1 = bpf_program__attach_tracepoint_opts(skel->progs.handle_tp1, + "syscalls", "sys_enter_nanosleep", &opts); + if (!ASSERT_OK_PTR(link1, "link1")) + goto cleanup; + + /* attach second tp prog */ + opts.bpf_cookie = 0x20000; + link2 = bpf_program__attach_tracepoint_opts(skel->progs.handle_tp2, + "syscalls", "sys_enter_nanosleep", &opts); + if (!ASSERT_OK_PTR(link2, "link2")) + goto cleanup; + + /* trigger tracepoints */ + usleep(1); + + ASSERT_EQ(skel->bss->tp_res, 0x10000 | 0x20000, "tp_res1"); + + /* now we detach first prog and will attach third one, which causes + * two internal calls to bpf_prog_array_copy(), shuffling + * bpf_prog_array_items around. We test here that we don't lose track + * of associated bpf_cookies. + */ + bpf_link__destroy(link1); + link1 = NULL; + kern_sync_rcu(); + skel->bss->tp_res = 0; + + /* attach third tp prog */ + opts.bpf_cookie = 0x40000; + link3 = bpf_program__attach_tracepoint_opts(skel->progs.handle_tp3, + "syscalls", "sys_enter_nanosleep", &opts); + if (!ASSERT_OK_PTR(link3, "link3")) + goto cleanup; + + /* trigger tracepoints */ + usleep(1); + + ASSERT_EQ(skel->bss->tp_res, 0x20000 | 0x40000, "tp_res2"); + +cleanup: + bpf_link__destroy(link1); + bpf_link__destroy(link2); + bpf_link__destroy(link3); +} + +static void burn_cpu(void) +{ + volatile int j = 0; + cpu_set_t cpu_set; + int i, err; + + /* generate some branches on cpu 0 */ + CPU_ZERO(&cpu_set); + CPU_SET(0, &cpu_set); + err = pthread_setaffinity_np(pthread_self(), sizeof(cpu_set), &cpu_set); + ASSERT_OK(err, "set_thread_affinity"); + + /* spin the loop for a while (random high number) */ + for (i = 0; i < 1000000; ++i) + ++j; +} + +static void pe_subtest(struct test_bpf_cookie *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_perf_event_opts, opts); + struct bpf_link *link = NULL; + struct perf_event_attr attr; + int pfd = -1; + + /* create perf event */ + memset(&attr, 0, sizeof(attr)); + attr.size = sizeof(attr); + attr.type = PERF_TYPE_SOFTWARE; + attr.config = PERF_COUNT_SW_CPU_CLOCK; + attr.freq = 1; + attr.sample_freq = 1000; + pfd = syscall(__NR_perf_event_open, &attr, -1, 0, -1, PERF_FLAG_FD_CLOEXEC); + if (!ASSERT_GE(pfd, 0, "perf_fd")) + goto cleanup; + + opts.bpf_cookie = 0x100000; + link = bpf_program__attach_perf_event_opts(skel->progs.handle_pe, pfd, &opts); + if (!ASSERT_OK_PTR(link, "link1")) + goto cleanup; + + burn_cpu(); /* trigger BPF prog */ + + ASSERT_EQ(skel->bss->pe_res, 0x100000, "pe_res1"); + + /* prevent bpf_link__destroy() closing pfd itself */ + bpf_link__disconnect(link); + /* close BPF link's FD explicitly */ + close(bpf_link__fd(link)); + /* free up memory used by struct bpf_link */ + bpf_link__destroy(link); + link = NULL; + kern_sync_rcu(); + skel->bss->pe_res = 0; + + opts.bpf_cookie = 0x200000; + link = bpf_program__attach_perf_event_opts(skel->progs.handle_pe, pfd, &opts); + if (!ASSERT_OK_PTR(link, "link2")) + goto cleanup; + + burn_cpu(); /* trigger BPF prog */ + + ASSERT_EQ(skel->bss->pe_res, 0x200000, "pe_res2"); + +cleanup: + close(pfd); + bpf_link__destroy(link); +} + +static void tracing_subtest(struct test_bpf_cookie *skel) +{ + __u64 cookie; + int prog_fd; + int fentry_fd = -1, fexit_fd = -1, fmod_ret_fd = -1; + LIBBPF_OPTS(bpf_test_run_opts, opts); + LIBBPF_OPTS(bpf_link_create_opts, link_opts); + + skel->bss->fentry_res = 0; + skel->bss->fexit_res = 0; + + cookie = 0x10000000000000L; + prog_fd = bpf_program__fd(skel->progs.fentry_test1); + link_opts.tracing.cookie = cookie; + fentry_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_FENTRY, &link_opts); + if (!ASSERT_GE(fentry_fd, 0, "fentry.link_create")) + goto cleanup; + + cookie = 0x20000000000000L; + prog_fd = bpf_program__fd(skel->progs.fexit_test1); + link_opts.tracing.cookie = cookie; + fexit_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_FEXIT, &link_opts); + if (!ASSERT_GE(fexit_fd, 0, "fexit.link_create")) + goto cleanup; + + cookie = 0x30000000000000L; + prog_fd = bpf_program__fd(skel->progs.fmod_ret_test); + link_opts.tracing.cookie = cookie; + fmod_ret_fd = bpf_link_create(prog_fd, 0, BPF_MODIFY_RETURN, &link_opts); + if (!ASSERT_GE(fmod_ret_fd, 0, "fmod_ret.link_create")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.fentry_test1); + bpf_prog_test_run_opts(prog_fd, &opts); + + prog_fd = bpf_program__fd(skel->progs.fmod_ret_test); + bpf_prog_test_run_opts(prog_fd, &opts); + + ASSERT_EQ(skel->bss->fentry_res, 0x10000000000000L, "fentry_res"); + ASSERT_EQ(skel->bss->fexit_res, 0x20000000000000L, "fexit_res"); + ASSERT_EQ(skel->bss->fmod_ret_res, 0x30000000000000L, "fmod_ret_res"); + +cleanup: + if (fentry_fd >= 0) + close(fentry_fd); + if (fexit_fd >= 0) + close(fexit_fd); + if (fmod_ret_fd >= 0) + close(fmod_ret_fd); +} + +int stack_mprotect(void); + +static void lsm_subtest(struct test_bpf_cookie *skel) +{ + __u64 cookie; + int prog_fd; + int lsm_fd = -1; + LIBBPF_OPTS(bpf_link_create_opts, link_opts); + int err; + + skel->bss->lsm_res = 0; + + cookie = 0x90000000000090L; + prog_fd = bpf_program__fd(skel->progs.test_int_hook); + link_opts.tracing.cookie = cookie; + lsm_fd = bpf_link_create(prog_fd, 0, BPF_LSM_MAC, &link_opts); + if (!ASSERT_GE(lsm_fd, 0, "lsm.link_create")) + goto cleanup; + + err = stack_mprotect(); + if (!ASSERT_EQ(err, -1, "stack_mprotect") || + !ASSERT_EQ(errno, EPERM, "stack_mprotect")) + goto cleanup; + + usleep(1); + + ASSERT_EQ(skel->bss->lsm_res, 0x90000000000090L, "fentry_res"); + +cleanup: + if (lsm_fd >= 0) + close(lsm_fd); +} + +static void tp_btf_subtest(struct test_bpf_cookie *skel) +{ + __u64 cookie; + int prog_fd, link_fd = -1; + struct bpf_link *link = NULL; + LIBBPF_OPTS(bpf_link_create_opts, link_opts); + LIBBPF_OPTS(bpf_raw_tp_opts, raw_tp_opts); + LIBBPF_OPTS(bpf_trace_opts, trace_opts); + + /* There are three different ways to attach tp_btf (BTF-aware raw + * tracepoint) programs. Let's test all of them. + */ + prog_fd = bpf_program__fd(skel->progs.handle_tp_btf); + + /* low-level BPF_RAW_TRACEPOINT_OPEN command wrapper */ + skel->bss->tp_btf_res = 0; + + raw_tp_opts.cookie = cookie = 0x11000000000000L; + link_fd = bpf_raw_tracepoint_open_opts(prog_fd, &raw_tp_opts); + if (!ASSERT_GE(link_fd, 0, "bpf_raw_tracepoint_open_opts")) + goto cleanup; + + usleep(1); /* trigger */ + close(link_fd); /* detach */ + link_fd = -1; + + ASSERT_EQ(skel->bss->tp_btf_res, cookie, "raw_tp_open_res"); + + /* low-level generic bpf_link_create() API */ + skel->bss->tp_btf_res = 0; + + link_opts.tracing.cookie = cookie = 0x22000000000000L; + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_RAW_TP, &link_opts); + if (!ASSERT_GE(link_fd, 0, "bpf_link_create")) + goto cleanup; + + usleep(1); /* trigger */ + close(link_fd); /* detach */ + link_fd = -1; + + ASSERT_EQ(skel->bss->tp_btf_res, cookie, "link_create_res"); + + /* high-level bpf_link-based bpf_program__attach_trace_opts() API */ + skel->bss->tp_btf_res = 0; + + trace_opts.cookie = cookie = 0x33000000000000L; + link = bpf_program__attach_trace_opts(skel->progs.handle_tp_btf, &trace_opts); + if (!ASSERT_OK_PTR(link, "attach_trace_opts")) + goto cleanup; + + usleep(1); /* trigger */ + bpf_link__destroy(link); /* detach */ + link = NULL; + + ASSERT_EQ(skel->bss->tp_btf_res, cookie, "attach_trace_opts_res"); + +cleanup: + if (link_fd >= 0) + close(link_fd); + bpf_link__destroy(link); +} + +static void raw_tp_subtest(struct test_bpf_cookie *skel) +{ + __u64 cookie; + int prog_fd, link_fd = -1; + struct bpf_link *link = NULL; + LIBBPF_OPTS(bpf_raw_tp_opts, raw_tp_opts); + LIBBPF_OPTS(bpf_raw_tracepoint_opts, opts); + + /* There are two different ways to attach raw_tp programs */ + prog_fd = bpf_program__fd(skel->progs.handle_raw_tp); + + /* low-level BPF_RAW_TRACEPOINT_OPEN command wrapper */ + skel->bss->raw_tp_res = 0; + + raw_tp_opts.tp_name = "sys_enter"; + raw_tp_opts.cookie = cookie = 0x55000000000000L; + link_fd = bpf_raw_tracepoint_open_opts(prog_fd, &raw_tp_opts); + if (!ASSERT_GE(link_fd, 0, "bpf_raw_tracepoint_open_opts")) + goto cleanup; + + usleep(1); /* trigger */ + close(link_fd); /* detach */ + link_fd = -1; + + ASSERT_EQ(skel->bss->raw_tp_res, cookie, "raw_tp_open_res"); + + /* high-level bpf_link-based bpf_program__attach_raw_tracepoint_opts() API */ + skel->bss->raw_tp_res = 0; + + opts.cookie = cookie = 0x66000000000000L; + link = bpf_program__attach_raw_tracepoint_opts(skel->progs.handle_raw_tp, + "sys_enter", &opts); + if (!ASSERT_OK_PTR(link, "attach_raw_tp_opts")) + goto cleanup; + + usleep(1); /* trigger */ + bpf_link__destroy(link); /* detach */ + link = NULL; + + ASSERT_EQ(skel->bss->raw_tp_res, cookie, "attach_raw_tp_opts_res"); + +cleanup: + if (link_fd >= 0) + close(link_fd); + bpf_link__destroy(link); +} + +void test_bpf_cookie(void) +{ + struct test_bpf_cookie *skel; + + skel = test_bpf_cookie__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->bss->my_tid = syscall(SYS_gettid); + + if (test__start_subtest("kprobe")) + kprobe_subtest(skel); + if (test__start_subtest("multi_kprobe_link_api")) + kprobe_multi_link_api_subtest(); + if (test__start_subtest("multi_kprobe_attach_api")) + kprobe_multi_attach_api_subtest(); + if (test__start_subtest("uprobe")) + uprobe_subtest(skel); + if (test__start_subtest("multi_uprobe_attach_api")) + uprobe_multi_attach_api_subtest(); + if (test__start_subtest("tracepoint")) + tp_subtest(skel); + if (test__start_subtest("perf_event")) + pe_subtest(skel); + if (test__start_subtest("trampoline")) + tracing_subtest(skel); + if (test__start_subtest("lsm")) + lsm_subtest(skel); + if (test__start_subtest("tp_btf")) + tp_btf_subtest(skel); + if (test__start_subtest("raw_tp")) + raw_tp_subtest(skel); + test_bpf_cookie__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_iter.c b/tools/testing/selftests/bpf/prog_tests/bpf_iter.c index 7375d9a6d242..618af9dfae9b 100644 --- a/tools/testing/selftests/bpf/prog_tests/bpf_iter.c +++ b/tools/testing/selftests/bpf/prog_tests/bpf_iter.c @@ -1,16 +1,23 @@ // SPDX-License-Identifier: GPL-2.0 /* Copyright (c) 2020 Facebook */ #include <test_progs.h> +#include <unistd.h> +#include <sys/syscall.h> +#include <task_local_storage_helpers.h> #include "bpf_iter_ipv6_route.skel.h" #include "bpf_iter_netlink.skel.h" #include "bpf_iter_bpf_map.skel.h" -#include "bpf_iter_task.skel.h" +#include "bpf_iter_tasks.skel.h" #include "bpf_iter_task_stack.skel.h" #include "bpf_iter_task_file.skel.h" +#include "bpf_iter_task_vmas.skel.h" +#include "bpf_iter_task_btf.skel.h" #include "bpf_iter_tcp4.skel.h" #include "bpf_iter_tcp6.skel.h" #include "bpf_iter_udp4.skel.h" #include "bpf_iter_udp6.skel.h" +#include "bpf_iter_unix.skel.h" +#include "bpf_iter_vma_offset.skel.h" #include "bpf_iter_test_kern1.skel.h" #include "bpf_iter_test_kern2.skel.h" #include "bpf_iter_test_kern3.skel.h" @@ -19,42 +26,43 @@ #include "bpf_iter_bpf_percpu_hash_map.skel.h" #include "bpf_iter_bpf_array_map.skel.h" #include "bpf_iter_bpf_percpu_array_map.skel.h" +#include "bpf_iter_bpf_sk_storage_helpers.skel.h" #include "bpf_iter_bpf_sk_storage_map.skel.h" #include "bpf_iter_test_kern5.skel.h" #include "bpf_iter_test_kern6.skel.h" - -static int duration; +#include "bpf_iter_bpf_link.skel.h" +#include "bpf_iter_ksym.skel.h" +#include "bpf_iter_sockmap.skel.h" static void test_btf_id_or_null(void) { struct bpf_iter_test_kern3 *skel; skel = bpf_iter_test_kern3__open_and_load(); - if (CHECK(skel, "bpf_iter_test_kern3__open_and_load", - "skeleton open_and_load unexpectedly succeeded\n")) { + if (!ASSERT_ERR_PTR(skel, "bpf_iter_test_kern3__open_and_load")) { bpf_iter_test_kern3__destroy(skel); return; } } -static void do_dummy_read(struct bpf_program *prog) +static void do_dummy_read_opts(struct bpf_program *prog, struct bpf_iter_attach_opts *opts) { struct bpf_link *link; char buf[16] = {}; int iter_fd, len; - link = bpf_program__attach_iter(prog, NULL); - if (CHECK(IS_ERR(link), "attach_iter", "attach_iter failed\n")) + link = bpf_program__attach_iter(prog, opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) return; iter_fd = bpf_iter_create(bpf_link__fd(link)); - if (CHECK(iter_fd < 0, "create_iter", "create_iter failed\n")) + if (!ASSERT_GE(iter_fd, 0, "create_iter")) goto free_link; /* not check contents, but ensure read() ends without error */ while ((len = read(iter_fd, buf, sizeof(buf))) > 0) ; - CHECK(len < 0, "read", "read failed: %s\n", strerror(errno)); + ASSERT_GE(len, 0, "read"); close(iter_fd); @@ -62,13 +70,77 @@ free_link: bpf_link__destroy(link); } +static void do_dummy_read(struct bpf_program *prog) +{ + do_dummy_read_opts(prog, NULL); +} + +static void do_read_map_iter_fd(struct bpf_object_skeleton **skel, struct bpf_program *prog, + struct bpf_map *map) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + struct bpf_link *link; + char buf[16] = {}; + int iter_fd, len; + + memset(&linfo, 0, sizeof(linfo)); + linfo.map.map_fd = bpf_map__fd(map); + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + link = bpf_program__attach_iter(prog, &opts); + if (!ASSERT_OK_PTR(link, "attach_map_iter")) + return; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (!ASSERT_GE(iter_fd, 0, "create_map_iter")) { + bpf_link__destroy(link); + return; + } + + /* Close link and map fd prematurely */ + bpf_link__destroy(link); + bpf_object__destroy_skeleton(*skel); + *skel = NULL; + + /* Try to let map free work to run first if map is freed */ + usleep(100); + /* Memory used by both sock map and sock local storage map are + * freed after two synchronize_rcu() calls, so wait for it + */ + kern_sync_rcu(); + kern_sync_rcu(); + + /* Read after both map fd and link fd are closed */ + while ((len = read(iter_fd, buf, sizeof(buf))) > 0) + ; + ASSERT_GE(len, 0, "read_iterator"); + + close(iter_fd); +} + +static int read_fd_into_buffer(int fd, char *buf, int size) +{ + int bufleft = size; + int len; + + do { + len = read(fd, buf, bufleft); + if (len > 0) { + buf += len; + bufleft -= len; + } + } while (len > 0); + + return len < 0 ? len : size - bufleft; +} + static void test_ipv6_route(void) { struct bpf_iter_ipv6_route *skel; skel = bpf_iter_ipv6_route__open_and_load(); - if (CHECK(!skel, "bpf_iter_ipv6_route__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_ipv6_route__open_and_load")) return; do_dummy_read(skel->progs.dump_ipv6_route); @@ -81,8 +153,7 @@ static void test_netlink(void) struct bpf_iter_netlink *skel; skel = bpf_iter_netlink__open_and_load(); - if (CHECK(!skel, "bpf_iter_netlink__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_netlink__open_and_load")) return; do_dummy_read(skel->progs.dump_netlink); @@ -95,8 +166,7 @@ static void test_bpf_map(void) struct bpf_iter_bpf_map *skel; skel = bpf_iter_bpf_map__open_and_load(); - if (CHECK(!skel, "bpf_iter_bpf_map__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_map__open_and_load")) return; do_dummy_read(skel->progs.dump_bpf_map); @@ -104,18 +174,151 @@ static void test_bpf_map(void) bpf_iter_bpf_map__destroy(skel); } -static void test_task(void) +static void check_bpf_link_info(const struct bpf_program *prog) +{ + LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + struct bpf_link_info info = {}; + struct bpf_link *link; + __u32 info_len; + int err; + + memset(&linfo, 0, sizeof(linfo)); + linfo.task.tid = getpid(); + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + link = bpf_program__attach_iter(prog, &opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) + return; + + info_len = sizeof(info); + err = bpf_link_get_info_by_fd(bpf_link__fd(link), &info, &info_len); + ASSERT_OK(err, "bpf_link_get_info_by_fd"); + ASSERT_EQ(info.iter.task.tid, getpid(), "check_task_tid"); + + bpf_link__destroy(link); +} + +static pthread_mutex_t do_nothing_mutex; + +static void *do_nothing_wait(void *arg) +{ + pthread_mutex_lock(&do_nothing_mutex); + pthread_mutex_unlock(&do_nothing_mutex); + + pthread_exit(arg); +} + +static void test_task_common_nocheck(struct bpf_iter_attach_opts *opts, + int *num_unknown, int *num_known) { - struct bpf_iter_task *skel; + struct bpf_iter_tasks *skel; + pthread_t thread_id; + void *ret; - skel = bpf_iter_task__open_and_load(); - if (CHECK(!skel, "bpf_iter_task__open_and_load", - "skeleton open_and_load failed\n")) + skel = bpf_iter_tasks__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_tasks__open_and_load")) return; - do_dummy_read(skel->progs.dump_task); + ASSERT_OK(pthread_mutex_lock(&do_nothing_mutex), "pthread_mutex_lock"); + + ASSERT_OK(pthread_create(&thread_id, NULL, &do_nothing_wait, NULL), + "pthread_create"); + + skel->bss->tid = getpid(); + + do_dummy_read_opts(skel->progs.dump_task, opts); + + *num_unknown = skel->bss->num_unknown_tid; + *num_known = skel->bss->num_known_tid; + + ASSERT_OK(pthread_mutex_unlock(&do_nothing_mutex), "pthread_mutex_unlock"); + ASSERT_FALSE(pthread_join(thread_id, &ret) || ret != NULL, + "pthread_join"); + + bpf_iter_tasks__destroy(skel); +} + +static void test_task_common(struct bpf_iter_attach_opts *opts, int num_unknown, int num_known) +{ + int num_unknown_tid, num_known_tid; + + test_task_common_nocheck(opts, &num_unknown_tid, &num_known_tid); + ASSERT_EQ(num_unknown_tid, num_unknown, "check_num_unknown_tid"); + ASSERT_EQ(num_known_tid, num_known, "check_num_known_tid"); +} + +static void test_task_tid(void) +{ + LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + int num_unknown_tid, num_known_tid; + + memset(&linfo, 0, sizeof(linfo)); + linfo.task.tid = getpid(); + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + test_task_common(&opts, 0, 1); + + linfo.task.tid = 0; + linfo.task.pid = getpid(); + test_task_common(&opts, 1, 1); + + test_task_common_nocheck(NULL, &num_unknown_tid, &num_known_tid); + ASSERT_GT(num_unknown_tid, 1, "check_num_unknown_tid"); + ASSERT_EQ(num_known_tid, 1, "check_num_known_tid"); +} + +static void test_task_pid(void) +{ + LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + + memset(&linfo, 0, sizeof(linfo)); + linfo.task.pid = getpid(); + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); - bpf_iter_task__destroy(skel); + test_task_common(&opts, 1, 1); +} + +static void test_task_pidfd(void) +{ + LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + int pidfd; + + pidfd = sys_pidfd_open(getpid(), 0); + if (!ASSERT_GT(pidfd, 0, "sys_pidfd_open")) + return; + + memset(&linfo, 0, sizeof(linfo)); + linfo.task.pid_fd = pidfd; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + test_task_common(&opts, 1, 1); + + close(pidfd); +} + +static void test_task_sleepable(void) +{ + struct bpf_iter_tasks *skel; + + skel = bpf_iter_tasks__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_tasks__open_and_load")) + return; + + do_dummy_read(skel->progs.dump_task_sleepable); + + ASSERT_GT(skel->bss->num_expected_failure_copy_from_user_task, 0, + "num_expected_failure_copy_from_user_task"); + ASSERT_GT(skel->bss->num_success_copy_from_user_task, 0, + "num_success_copy_from_user_task"); + + bpf_iter_tasks__destroy(skel); } static void test_task_stack(void) @@ -123,36 +326,136 @@ static void test_task_stack(void) struct bpf_iter_task_stack *skel; skel = bpf_iter_task_stack__open_and_load(); - if (CHECK(!skel, "bpf_iter_task_stack__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_task_stack__open_and_load")) return; do_dummy_read(skel->progs.dump_task_stack); + do_dummy_read(skel->progs.get_task_user_stacks); + + ASSERT_EQ(skel->bss->num_user_stacks, 1, "num_user_stacks"); bpf_iter_task_stack__destroy(skel); } static void test_task_file(void) { + LIBBPF_OPTS(bpf_iter_attach_opts, opts); struct bpf_iter_task_file *skel; + union bpf_iter_link_info linfo; + pthread_t thread_id; + void *ret; skel = bpf_iter_task_file__open_and_load(); - if (CHECK(!skel, "bpf_iter_task_file__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_task_file__open_and_load")) return; + skel->bss->tgid = getpid(); + + ASSERT_OK(pthread_mutex_lock(&do_nothing_mutex), "pthread_mutex_lock"); + + ASSERT_OK(pthread_create(&thread_id, NULL, &do_nothing_wait, NULL), + "pthread_create"); + + memset(&linfo, 0, sizeof(linfo)); + linfo.task.tid = getpid(); + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + do_dummy_read_opts(skel->progs.dump_task_file, &opts); + + ASSERT_EQ(skel->bss->count, 0, "check_count"); + ASSERT_EQ(skel->bss->unique_tgid_count, 1, "check_unique_tgid_count"); + + skel->bss->last_tgid = 0; + skel->bss->count = 0; + skel->bss->unique_tgid_count = 0; + do_dummy_read(skel->progs.dump_task_file); + ASSERT_EQ(skel->bss->count, 0, "check_count"); + ASSERT_GT(skel->bss->unique_tgid_count, 1, "check_unique_tgid_count"); + + check_bpf_link_info(skel->progs.dump_task_file); + + ASSERT_OK(pthread_mutex_unlock(&do_nothing_mutex), "pthread_mutex_unlock"); + ASSERT_OK(pthread_join(thread_id, &ret), "pthread_join"); + ASSERT_NULL(ret, "pthread_join"); + bpf_iter_task_file__destroy(skel); } +#define TASKBUFSZ 32768 + +static char taskbuf[TASKBUFSZ]; + +static int do_btf_read(struct bpf_iter_task_btf *skel) +{ + struct bpf_program *prog = skel->progs.dump_task_struct; + struct bpf_iter_task_btf__bss *bss = skel->bss; + int iter_fd = -1, err; + struct bpf_link *link; + char *buf = taskbuf; + int ret = 0; + + link = bpf_program__attach_iter(prog, NULL); + if (!ASSERT_OK_PTR(link, "attach_iter")) + return ret; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (!ASSERT_GE(iter_fd, 0, "create_iter")) + goto free_link; + + err = read_fd_into_buffer(iter_fd, buf, TASKBUFSZ); + if (bss->skip) { + printf("%s:SKIP:no __builtin_btf_type_id\n", __func__); + ret = 1; + test__skip(); + goto free_link; + } + + if (!ASSERT_GE(err, 0, "read")) + goto free_link; + + ASSERT_HAS_SUBSTR(taskbuf, "(struct task_struct)", + "check for btf representation of task_struct in iter data"); +free_link: + if (iter_fd > 0) + close(iter_fd); + bpf_link__destroy(link); + return ret; +} + +static void test_task_btf(void) +{ + struct bpf_iter_task_btf__bss *bss; + struct bpf_iter_task_btf *skel; + int ret; + + skel = bpf_iter_task_btf__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_task_btf__open_and_load")) + return; + + bss = skel->bss; + + ret = do_btf_read(skel); + if (ret) + goto cleanup; + + if (!ASSERT_NEQ(bss->tasks, 0, "no task iteration, did BPF program run?")) + goto cleanup; + + ASSERT_EQ(bss->seq_err, 0, "check for unexpected err"); + +cleanup: + bpf_iter_task_btf__destroy(skel); +} + static void test_tcp4(void) { struct bpf_iter_tcp4 *skel; skel = bpf_iter_tcp4__open_and_load(); - if (CHECK(!skel, "bpf_iter_tcp4__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_tcp4__open_and_load")) return; do_dummy_read(skel->progs.dump_tcp4); @@ -165,8 +468,7 @@ static void test_tcp6(void) struct bpf_iter_tcp6 *skel; skel = bpf_iter_tcp6__open_and_load(); - if (CHECK(!skel, "bpf_iter_tcp6__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_tcp6__open_and_load")) return; do_dummy_read(skel->progs.dump_tcp6); @@ -179,8 +481,7 @@ static void test_udp4(void) struct bpf_iter_udp4 *skel; skel = bpf_iter_udp4__open_and_load(); - if (CHECK(!skel, "bpf_iter_udp4__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_udp4__open_and_load")) return; do_dummy_read(skel->progs.dump_udp4); @@ -193,8 +494,7 @@ static void test_udp6(void) struct bpf_iter_udp6 *skel; skel = bpf_iter_udp6__open_and_load(); - if (CHECK(!skel, "bpf_iter_udp6__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_udp6__open_and_load")) return; do_dummy_read(skel->progs.dump_udp6); @@ -202,27 +502,38 @@ static void test_udp6(void) bpf_iter_udp6__destroy(skel); } +static void test_unix(void) +{ + struct bpf_iter_unix *skel; + + skel = bpf_iter_unix__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_unix__open_and_load")) + return; + + do_dummy_read(skel->progs.dump_unix); + + bpf_iter_unix__destroy(skel); +} + /* The expected string is less than 16 bytes */ static int do_read_with_fd(int iter_fd, const char *expected, bool read_one_char) { - int err = -1, len, read_buf_len, start; + int len, read_buf_len, start; char buf[16] = {}; read_buf_len = read_one_char ? 1 : 16; start = 0; while ((len = read(iter_fd, buf + start, read_buf_len)) > 0) { start += len; - if (CHECK(start >= 16, "read", "read len %d\n", len)) + if (!ASSERT_LT(start, 16, "read")) return -1; read_buf_len = read_one_char ? 1 : 16 - start; } - if (CHECK(len < 0, "read", "read failed: %s\n", strerror(errno))) + if (!ASSERT_GE(len, 0, "read")) return -1; - err = strcmp(buf, expected); - if (CHECK(err, "read", "incorrect read result: buf %s, expected %s\n", - buf, expected)) + if (!ASSERT_STREQ(buf, expected, "read")) return -1; return 0; @@ -235,19 +546,17 @@ static void test_anon_iter(bool read_one_char) int iter_fd, err; skel = bpf_iter_test_kern1__open_and_load(); - if (CHECK(!skel, "bpf_iter_test_kern1__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_test_kern1__open_and_load")) return; err = bpf_iter_test_kern1__attach(skel); - if (CHECK(err, "bpf_iter_test_kern1__attach", - "skeleton attach failed\n")) { + if (!ASSERT_OK(err, "bpf_iter_test_kern1__attach")) { goto out; } link = skel->links.dump_task; iter_fd = bpf_iter_create(bpf_link__fd(link)); - if (CHECK(iter_fd < 0, "create_iter", "create_iter failed\n")) + if (!ASSERT_GE(iter_fd, 0, "create_iter")) goto out; do_read_with_fd(iter_fd, "abcd", read_one_char); @@ -262,8 +571,7 @@ static int do_read(const char *path, const char *expected) int err, iter_fd; iter_fd = open(path, O_RDONLY); - if (CHECK(iter_fd < 0, "open", "open %s failed: %s\n", - path, strerror(errno))) + if (!ASSERT_GE(iter_fd, 0, "open")) return -1; err = do_read_with_fd(iter_fd, expected, false); @@ -280,19 +588,18 @@ static void test_file_iter(void) int err; skel1 = bpf_iter_test_kern1__open_and_load(); - if (CHECK(!skel1, "bpf_iter_test_kern1__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel1, "bpf_iter_test_kern1__open_and_load")) return; link = bpf_program__attach_iter(skel1->progs.dump_task, NULL); - if (CHECK(IS_ERR(link), "attach_iter", "attach_iter failed\n")) + if (!ASSERT_OK_PTR(link, "attach_iter")) goto out; /* unlink this path if it exists. */ unlink(path); err = bpf_link__pin(link, path); - if (CHECK(err, "pin_iter", "pin_iter to %s failed: %d\n", path, err)) + if (!ASSERT_OK(err, "pin_iter")) goto free_link; err = do_read(path, "abcd"); @@ -304,12 +611,11 @@ static void test_file_iter(void) * should change. */ skel2 = bpf_iter_test_kern2__open_and_load(); - if (CHECK(!skel2, "bpf_iter_test_kern2__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel2, "bpf_iter_test_kern2__open_and_load")) goto unlink_path; err = bpf_link__update_program(link, skel2->progs.dump_task); - if (CHECK(err, "update_prog", "update_prog failed\n")) + if (!ASSERT_OK(err, "update_prog")) goto destroy_skel2; do_read(path, "ABCD"); @@ -331,12 +637,11 @@ static void test_overflow(bool test_e2big_overflow, bool ret1) struct bpf_map_info map_info = {}; struct bpf_iter_test_kern4 *skel; struct bpf_link *link; - __u32 page_size; + __u32 iter_size; char *buf; skel = bpf_iter_test_kern4__open(); - if (CHECK(!skel, "bpf_iter_test_kern4__open", - "skeleton open failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_test_kern4__open")) return; /* create two maps: bpf program will only do bpf_seq_write @@ -344,62 +649,58 @@ static void test_overflow(bool test_e2big_overflow, bool ret1) * fills seq_file buffer and then the other will trigger * overflow and needs restart. */ - map1_fd = bpf_create_map(BPF_MAP_TYPE_ARRAY, 4, 8, 1, 0); - if (CHECK(map1_fd < 0, "bpf_create_map", - "map_creation failed: %s\n", strerror(errno))) + map1_fd = bpf_map_create(BPF_MAP_TYPE_ARRAY, NULL, 4, 8, 1, NULL); + if (!ASSERT_GE(map1_fd, 0, "bpf_map_create")) goto out; - map2_fd = bpf_create_map(BPF_MAP_TYPE_ARRAY, 4, 8, 1, 0); - if (CHECK(map2_fd < 0, "bpf_create_map", - "map_creation failed: %s\n", strerror(errno))) + map2_fd = bpf_map_create(BPF_MAP_TYPE_ARRAY, NULL, 4, 8, 1, NULL); + if (!ASSERT_GE(map2_fd, 0, "bpf_map_create")) goto free_map1; - /* bpf_seq_printf kernel buffer is one page, so one map + /* bpf_seq_printf kernel buffer is 8 pages, so one map * bpf_seq_write will mostly fill it, and the other map * will partially fill and then trigger overflow and need * bpf_seq_read restart. */ - page_size = sysconf(_SC_PAGE_SIZE); + iter_size = sysconf(_SC_PAGE_SIZE) << 3; if (test_e2big_overflow) { - skel->rodata->print_len = (page_size + 8) / 8; - expected_read_len = 2 * (page_size + 8); + skel->rodata->print_len = (iter_size + 8) / 8; + expected_read_len = 2 * (iter_size + 8); } else if (!ret1) { - skel->rodata->print_len = (page_size - 8) / 8; - expected_read_len = 2 * (page_size - 8); + skel->rodata->print_len = (iter_size - 8) / 8; + expected_read_len = 2 * (iter_size - 8); } else { skel->rodata->print_len = 1; expected_read_len = 2 * 8; } skel->rodata->ret1 = ret1; - if (CHECK(bpf_iter_test_kern4__load(skel), - "bpf_iter_test_kern4__load", "skeleton load failed\n")) + if (!ASSERT_OK(bpf_iter_test_kern4__load(skel), + "bpf_iter_test_kern4__load")) goto free_map2; /* setup filtering map_id in bpf program */ map_info_len = sizeof(map_info); - err = bpf_obj_get_info_by_fd(map1_fd, &map_info, &map_info_len); - if (CHECK(err, "get_map_info", "get map info failed: %s\n", - strerror(errno))) + err = bpf_map_get_info_by_fd(map1_fd, &map_info, &map_info_len); + if (!ASSERT_OK(err, "get_map_info")) goto free_map2; skel->bss->map1_id = map_info.id; - err = bpf_obj_get_info_by_fd(map2_fd, &map_info, &map_info_len); - if (CHECK(err, "get_map_info", "get map info failed: %s\n", - strerror(errno))) + err = bpf_map_get_info_by_fd(map2_fd, &map_info, &map_info_len); + if (!ASSERT_OK(err, "get_map_info")) goto free_map2; skel->bss->map2_id = map_info.id; link = bpf_program__attach_iter(skel->progs.dump_bpf_map, NULL); - if (CHECK(IS_ERR(link), "attach_iter", "attach_iter failed\n")) + if (!ASSERT_OK_PTR(link, "attach_iter")) goto free_map2; iter_fd = bpf_iter_create(bpf_link__fd(link)); - if (CHECK(iter_fd < 0, "create_iter", "create_iter failed\n")) + if (!ASSERT_GE(iter_fd, 0, "create_iter")) goto free_link; buf = malloc(expected_read_len); - if (!buf) + if (!ASSERT_OK_PTR(buf, "malloc")) goto close_iter; /* do read */ @@ -408,16 +709,14 @@ static void test_overflow(bool test_e2big_overflow, bool ret1) while ((len = read(iter_fd, buf, expected_read_len)) > 0) total_read_len += len; - CHECK(len != -1 || errno != E2BIG, "read", - "expected ret -1, errno E2BIG, but get ret %d, error %s\n", - len, strerror(errno)); + ASSERT_EQ(len, -1, "read"); + ASSERT_EQ(errno, E2BIG, "read"); goto free_buf; } else if (!ret1) { while ((len = read(iter_fd, buf, expected_read_len)) > 0) total_read_len += len; - if (CHECK(len < 0, "read", "read failed: %s\n", - strerror(errno))) + if (!ASSERT_GE(len, 0, "read")) goto free_buf; } else { do { @@ -426,27 +725,20 @@ static void test_overflow(bool test_e2big_overflow, bool ret1) total_read_len += len; } while (len > 0 || len == -EAGAIN); - if (CHECK(len < 0, "read", "read failed: %s\n", - strerror(errno))) + if (!ASSERT_GE(len, 0, "read")) goto free_buf; } - if (CHECK(total_read_len != expected_read_len, "read", - "total len %u, expected len %u\n", total_read_len, - expected_read_len)) + if (!ASSERT_EQ(total_read_len, expected_read_len, "read")) goto free_buf; - if (CHECK(skel->bss->map1_accessed != 1, "map1_accessed", - "expected 1 actual %d\n", skel->bss->map1_accessed)) + if (!ASSERT_EQ(skel->bss->map1_accessed, 1, "map1_accessed")) goto free_buf; - if (CHECK(skel->bss->map2_accessed != 2, "map2_accessed", - "expected 2 actual %d\n", skel->bss->map2_accessed)) + if (!ASSERT_EQ(skel->bss->map2_accessed, 2, "map2_accessed")) goto free_buf; - CHECK(skel->bss->map2_seqnum1 != skel->bss->map2_seqnum2, - "map2_seqnum", "two different seqnum %lld %lld\n", - skel->bss->map2_seqnum1, skel->bss->map2_seqnum2); + ASSERT_EQ(skel->bss->map2_seqnum1, skel->bss->map2_seqnum2, "map2_seqnum"); free_buf: free(buf); @@ -464,7 +756,7 @@ out: static void test_bpf_hash_map(void) { - __u32 expected_key_a = 0, expected_key_b = 0, expected_key_c = 0; + __u32 expected_key_a = 0, expected_key_b = 0; DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); struct bpf_iter_bpf_hash_map *skel; int err, i, len, map_fd, iter_fd; @@ -479,15 +771,13 @@ static void test_bpf_hash_map(void) char buf[64]; skel = bpf_iter_bpf_hash_map__open(); - if (CHECK(!skel, "bpf_iter_bpf_hash_map__open", - "skeleton open failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_hash_map__open")) return; skel->bss->in_test_mode = true; err = bpf_iter_bpf_hash_map__load(skel); - if (CHECK(!skel, "bpf_iter_bpf_hash_map__load", - "skeleton load failed\n")) + if (!ASSERT_OK(err, "bpf_iter_bpf_hash_map__load")) goto out; /* iterator with hashmap2 and hashmap3 should fail */ @@ -496,14 +786,12 @@ static void test_bpf_hash_map(void) opts.link_info = &linfo; opts.link_info_len = sizeof(linfo); link = bpf_program__attach_iter(skel->progs.dump_bpf_hash_map, &opts); - if (CHECK(!IS_ERR(link), "attach_iter", - "attach_iter for hashmap2 unexpected succeeded\n")) + if (!ASSERT_ERR_PTR(link, "attach_iter")) goto out; linfo.map.map_fd = bpf_map__fd(skel->maps.hashmap3); link = bpf_program__attach_iter(skel->progs.dump_bpf_hash_map, &opts); - if (CHECK(!IS_ERR(link), "attach_iter", - "attach_iter for hashmap3 unexpected succeeded\n")) + if (!ASSERT_ERR_PTR(link, "attach_iter")) goto out; /* hashmap1 should be good, update map values here */ @@ -515,41 +803,40 @@ static void test_bpf_hash_map(void) val = i + 4; expected_key_a += key.a; expected_key_b += key.b; - expected_key_c += key.c; expected_val += val; err = bpf_map_update_elem(map_fd, &key, &val, BPF_ANY); - if (CHECK(err, "map_update", "map_update failed\n")) + if (!ASSERT_OK(err, "map_update")) goto out; } + /* Sleepable program is prohibited for hash map iterator */ + linfo.map.map_fd = map_fd; + link = bpf_program__attach_iter(skel->progs.sleepable_dummy_dump, &opts); + if (!ASSERT_ERR_PTR(link, "attach_sleepable_prog_to_iter")) + goto out; + linfo.map.map_fd = map_fd; link = bpf_program__attach_iter(skel->progs.dump_bpf_hash_map, &opts); - if (CHECK(IS_ERR(link), "attach_iter", "attach_iter failed\n")) + if (!ASSERT_OK_PTR(link, "attach_iter")) goto out; iter_fd = bpf_iter_create(bpf_link__fd(link)); - if (CHECK(iter_fd < 0, "create_iter", "create_iter failed\n")) + if (!ASSERT_GE(iter_fd, 0, "create_iter")) goto free_link; /* do some tests */ while ((len = read(iter_fd, buf, sizeof(buf))) > 0) ; - if (CHECK(len < 0, "read", "read failed: %s\n", strerror(errno))) + if (!ASSERT_GE(len, 0, "read")) goto close_iter; /* test results */ - if (CHECK(skel->bss->key_sum_a != expected_key_a, - "key_sum_a", "got %u expected %u\n", - skel->bss->key_sum_a, expected_key_a)) + if (!ASSERT_EQ(skel->bss->key_sum_a, expected_key_a, "key_sum_a")) goto close_iter; - if (CHECK(skel->bss->key_sum_b != expected_key_b, - "key_sum_b", "got %u expected %u\n", - skel->bss->key_sum_b, expected_key_b)) + if (!ASSERT_EQ(skel->bss->key_sum_b, expected_key_b, "key_sum_b")) goto close_iter; - if (CHECK(skel->bss->val_sum != expected_val, - "val_sum", "got %llu expected %llu\n", - skel->bss->val_sum, expected_val)) + if (!ASSERT_EQ(skel->bss->val_sum, expected_val, "val_sum")) goto close_iter; close_iter: @@ -562,7 +849,7 @@ out: static void test_bpf_percpu_hash_map(void) { - __u32 expected_key_a = 0, expected_key_b = 0, expected_key_c = 0; + __u32 expected_key_a = 0, expected_key_b = 0; DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); struct bpf_iter_bpf_percpu_hash_map *skel; int err, i, j, len, map_fd, iter_fd; @@ -577,18 +864,17 @@ static void test_bpf_percpu_hash_map(void) char buf[64]; void *val; - val = malloc(8 * bpf_num_possible_cpus()); - skel = bpf_iter_bpf_percpu_hash_map__open(); - if (CHECK(!skel, "bpf_iter_bpf_percpu_hash_map__open", - "skeleton open failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_percpu_hash_map__open")) return; skel->rodata->num_cpus = bpf_num_possible_cpus(); + val = malloc(8 * bpf_num_possible_cpus()); + if (!ASSERT_OK_PTR(val, "malloc")) + goto out; err = bpf_iter_bpf_percpu_hash_map__load(skel); - if (CHECK(!skel, "bpf_iter_bpf_percpu_hash_map__load", - "skeleton load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_percpu_hash_map__load")) goto out; /* update map values here */ @@ -599,7 +885,6 @@ static void test_bpf_percpu_hash_map(void) key.c = i + 3; expected_key_a += key.a; expected_key_b += key.b; - expected_key_c += key.c; for (j = 0; j < bpf_num_possible_cpus(); j++) { *(__u32 *)(val + j * 8) = i + j; @@ -607,7 +892,7 @@ static void test_bpf_percpu_hash_map(void) } err = bpf_map_update_elem(map_fd, &key, val, BPF_ANY); - if (CHECK(err, "map_update", "map_update failed\n")) + if (!ASSERT_OK(err, "map_update")) goto out; } @@ -616,31 +901,25 @@ static void test_bpf_percpu_hash_map(void) opts.link_info = &linfo; opts.link_info_len = sizeof(linfo); link = bpf_program__attach_iter(skel->progs.dump_bpf_percpu_hash_map, &opts); - if (CHECK(IS_ERR(link), "attach_iter", "attach_iter failed\n")) + if (!ASSERT_OK_PTR(link, "attach_iter")) goto out; iter_fd = bpf_iter_create(bpf_link__fd(link)); - if (CHECK(iter_fd < 0, "create_iter", "create_iter failed\n")) + if (!ASSERT_GE(iter_fd, 0, "create_iter")) goto free_link; /* do some tests */ while ((len = read(iter_fd, buf, sizeof(buf))) > 0) ; - if (CHECK(len < 0, "read", "read failed: %s\n", strerror(errno))) + if (!ASSERT_GE(len, 0, "read")) goto close_iter; /* test results */ - if (CHECK(skel->bss->key_sum_a != expected_key_a, - "key_sum_a", "got %u expected %u\n", - skel->bss->key_sum_a, expected_key_a)) + if (!ASSERT_EQ(skel->bss->key_sum_a, expected_key_a, "key_sum_a")) goto close_iter; - if (CHECK(skel->bss->key_sum_b != expected_key_b, - "key_sum_b", "got %u expected %u\n", - skel->bss->key_sum_b, expected_key_b)) + if (!ASSERT_EQ(skel->bss->key_sum_b, expected_key_b, "key_sum_b")) goto close_iter; - if (CHECK(skel->bss->val_sum != expected_val, - "val_sum", "got %u expected %u\n", - skel->bss->val_sum, expected_val)) + if (!ASSERT_EQ(skel->bss->val_sum, expected_val, "val_sum")) goto close_iter; close_iter: @@ -649,23 +928,23 @@ free_link: bpf_link__destroy(link); out: bpf_iter_bpf_percpu_hash_map__destroy(skel); + free(val); } static void test_bpf_array_map(void) { __u64 val, expected_val = 0, res_first_val, first_val = 0; DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); - __u32 expected_key = 0, res_first_key; + __u32 key, expected_key = 0, res_first_key; + int err, i, map_fd, hash_fd, iter_fd; struct bpf_iter_bpf_array_map *skel; union bpf_iter_link_info linfo; - int err, i, map_fd, iter_fd; struct bpf_link *link; char buf[64] = {}; int len, start; skel = bpf_iter_bpf_array_map__open_and_load(); - if (CHECK(!skel, "bpf_iter_bpf_array_map__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_array_map__open_and_load")) return; map_fd = bpf_map__fd(skel->maps.arraymap1); @@ -678,7 +957,7 @@ static void test_bpf_array_map(void) first_val = val; err = bpf_map_update_elem(map_fd, &i, &val, BPF_ANY); - if (CHECK(err, "map_update", "map_update failed\n")) + if (!ASSERT_OK(err, "map_update")) goto out; } @@ -687,46 +966,46 @@ static void test_bpf_array_map(void) opts.link_info = &linfo; opts.link_info_len = sizeof(linfo); link = bpf_program__attach_iter(skel->progs.dump_bpf_array_map, &opts); - if (CHECK(IS_ERR(link), "attach_iter", "attach_iter failed\n")) + if (!ASSERT_OK_PTR(link, "attach_iter")) goto out; iter_fd = bpf_iter_create(bpf_link__fd(link)); - if (CHECK(iter_fd < 0, "create_iter", "create_iter failed\n")) + if (!ASSERT_GE(iter_fd, 0, "create_iter")) goto free_link; /* do some tests */ start = 0; while ((len = read(iter_fd, buf + start, sizeof(buf) - start)) > 0) start += len; - if (CHECK(len < 0, "read", "read failed: %s\n", strerror(errno))) + if (!ASSERT_GE(len, 0, "read")) goto close_iter; /* test results */ res_first_key = *(__u32 *)buf; res_first_val = *(__u64 *)(buf + sizeof(__u32)); - if (CHECK(res_first_key != 0 || res_first_val != first_val, - "bpf_seq_write", - "seq_write failure: first key %u vs expected 0, " - " first value %llu vs expected %llu\n", - res_first_key, res_first_val, first_val)) + if (!ASSERT_EQ(res_first_key, 0, "bpf_seq_write") || + !ASSERT_EQ(res_first_val, first_val, "bpf_seq_write")) goto close_iter; - if (CHECK(skel->bss->key_sum != expected_key, - "key_sum", "got %u expected %u\n", - skel->bss->key_sum, expected_key)) + if (!ASSERT_EQ(skel->bss->key_sum, expected_key, "key_sum")) goto close_iter; - if (CHECK(skel->bss->val_sum != expected_val, - "val_sum", "got %llu expected %llu\n", - skel->bss->val_sum, expected_val)) + if (!ASSERT_EQ(skel->bss->val_sum, expected_val, "val_sum")) goto close_iter; + hash_fd = bpf_map__fd(skel->maps.hashmap1); for (i = 0; i < bpf_map__max_entries(skel->maps.arraymap1); i++) { err = bpf_map_lookup_elem(map_fd, &i, &val); - if (CHECK(err, "map_lookup", "map_lookup failed\n")) - goto out; - if (CHECK(i != val, "invalid_val", - "got value %llu expected %u\n", val, i)) - goto out; + if (!ASSERT_OK(err, "map_lookup arraymap1")) + goto close_iter; + if (!ASSERT_EQ(i, val, "invalid_val arraymap1")) + goto close_iter; + + val = i + 4; + err = bpf_map_lookup_elem(hash_fd, &val, &key); + if (!ASSERT_OK(err, "map_lookup hashmap1")) + goto close_iter; + if (!ASSERT_EQ(key, val - 4, "invalid_val hashmap1")) + goto close_iter; } close_iter: @@ -737,6 +1016,20 @@ out: bpf_iter_bpf_array_map__destroy(skel); } +static void test_bpf_array_map_iter_fd(void) +{ + struct bpf_iter_bpf_array_map *skel; + + skel = bpf_iter_bpf_array_map__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_array_map__open_and_load")) + return; + + do_read_map_iter_fd(&skel->skeleton, skel->progs.dump_bpf_array_map, + skel->maps.arraymap1); + + bpf_iter_bpf_array_map__destroy(skel); +} + static void test_bpf_percpu_array_map(void) { DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); @@ -749,18 +1042,17 @@ static void test_bpf_percpu_array_map(void) void *val; int len; - val = malloc(8 * bpf_num_possible_cpus()); - skel = bpf_iter_bpf_percpu_array_map__open(); - if (CHECK(!skel, "bpf_iter_bpf_percpu_array_map__open", - "skeleton open failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_percpu_array_map__open")) return; skel->rodata->num_cpus = bpf_num_possible_cpus(); + val = malloc(8 * bpf_num_possible_cpus()); + if (!ASSERT_OK_PTR(val, "malloc")) + goto out; err = bpf_iter_bpf_percpu_array_map__load(skel); - if (CHECK(!skel, "bpf_iter_bpf_percpu_array_map__load", - "skeleton load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_percpu_array_map__load")) goto out; /* update map values here */ @@ -774,7 +1066,7 @@ static void test_bpf_percpu_array_map(void) } err = bpf_map_update_elem(map_fd, &i, val, BPF_ANY); - if (CHECK(err, "map_update", "map_update failed\n")) + if (!ASSERT_OK(err, "map_update")) goto out; } @@ -783,27 +1075,23 @@ static void test_bpf_percpu_array_map(void) opts.link_info = &linfo; opts.link_info_len = sizeof(linfo); link = bpf_program__attach_iter(skel->progs.dump_bpf_percpu_array_map, &opts); - if (CHECK(IS_ERR(link), "attach_iter", "attach_iter failed\n")) + if (!ASSERT_OK_PTR(link, "attach_iter")) goto out; iter_fd = bpf_iter_create(bpf_link__fd(link)); - if (CHECK(iter_fd < 0, "create_iter", "create_iter failed\n")) + if (!ASSERT_GE(iter_fd, 0, "create_iter")) goto free_link; /* do some tests */ while ((len = read(iter_fd, buf, sizeof(buf))) > 0) ; - if (CHECK(len < 0, "read", "read failed: %s\n", strerror(errno))) + if (!ASSERT_GE(len, 0, "read")) goto close_iter; /* test results */ - if (CHECK(skel->bss->key_sum != expected_key, - "key_sum", "got %u expected %u\n", - skel->bss->key_sum, expected_key)) + if (!ASSERT_EQ(skel->bss->key_sum, expected_key, "key_sum")) goto close_iter; - if (CHECK(skel->bss->val_sum != expected_val, - "val_sum", "got %u expected %u\n", - skel->bss->val_sum, expected_val)) + if (!ASSERT_EQ(skel->bss->val_sum, expected_val, "val_sum")) goto close_iter; close_iter: @@ -812,6 +1100,136 @@ free_link: bpf_link__destroy(link); out: bpf_iter_bpf_percpu_array_map__destroy(skel); + free(val); +} + +/* An iterator program deletes all local storage in a map. */ +static void test_bpf_sk_storage_delete(void) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + struct bpf_iter_bpf_sk_storage_helpers *skel; + union bpf_iter_link_info linfo; + int err, len, map_fd, iter_fd; + struct bpf_link *link; + int sock_fd = -1; + __u32 val = 42; + char buf[64]; + + skel = bpf_iter_bpf_sk_storage_helpers__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_sk_storage_helpers__open_and_load")) + return; + + map_fd = bpf_map__fd(skel->maps.sk_stg_map); + + sock_fd = socket(AF_INET6, SOCK_STREAM, 0); + if (!ASSERT_GE(sock_fd, 0, "socket")) + goto out; + + err = bpf_map_update_elem(map_fd, &sock_fd, &val, BPF_NOEXIST); + if (!ASSERT_OK(err, "map_update")) + goto out; + + memset(&linfo, 0, sizeof(linfo)); + linfo.map.map_fd = map_fd; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + link = bpf_program__attach_iter(skel->progs.delete_bpf_sk_storage_map, + &opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) + goto out; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (!ASSERT_GE(iter_fd, 0, "create_iter")) + goto free_link; + + /* do some tests */ + while ((len = read(iter_fd, buf, sizeof(buf))) > 0) + ; + if (!ASSERT_GE(len, 0, "read")) + goto close_iter; + + /* test results */ + err = bpf_map_lookup_elem(map_fd, &sock_fd, &val); + + /* Note: The following assertions serve to ensure + * the value was deleted. It does so by asserting + * that bpf_map_lookup_elem has failed. This might + * seem counterintuitive at first. + */ + ASSERT_ERR(err, "bpf_map_lookup_elem"); + ASSERT_EQ(errno, ENOENT, "bpf_map_lookup_elem"); + +close_iter: + close(iter_fd); +free_link: + bpf_link__destroy(link); +out: + if (sock_fd >= 0) + close(sock_fd); + bpf_iter_bpf_sk_storage_helpers__destroy(skel); +} + +/* This creates a socket and its local storage. It then runs a task_iter BPF + * program that replaces the existing socket local storage with the tgid of the + * only task owning a file descriptor to this socket, this process, prog_tests. + * It then runs a tcp socket iterator that negates the value in the existing + * socket local storage, the test verifies that the resulting value is -pid. + */ +static void test_bpf_sk_storage_get(void) +{ + struct bpf_iter_bpf_sk_storage_helpers *skel; + int err, map_fd, val = -1; + int sock_fd = -1; + + skel = bpf_iter_bpf_sk_storage_helpers__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_sk_storage_helpers__open_and_load")) + return; + + sock_fd = socket(AF_INET6, SOCK_STREAM, 0); + if (!ASSERT_GE(sock_fd, 0, "socket")) + goto out; + + err = listen(sock_fd, 1); + if (!ASSERT_OK(err, "listen")) + goto close_socket; + + map_fd = bpf_map__fd(skel->maps.sk_stg_map); + + err = bpf_map_update_elem(map_fd, &sock_fd, &val, BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem")) + goto close_socket; + + do_dummy_read(skel->progs.fill_socket_owner); + + err = bpf_map_lookup_elem(map_fd, &sock_fd, &val); + if (!ASSERT_OK(err, "bpf_map_lookup_elem") || + !ASSERT_EQ(val, getpid(), "bpf_map_lookup_elem")) + goto close_socket; + + do_dummy_read(skel->progs.negate_socket_local_storage); + + err = bpf_map_lookup_elem(map_fd, &sock_fd, &val); + ASSERT_OK(err, "bpf_map_lookup_elem"); + ASSERT_EQ(val, -getpid(), "bpf_map_lookup_elem"); + +close_socket: + close(sock_fd); +out: + bpf_iter_bpf_sk_storage_helpers__destroy(skel); +} + +static void test_bpf_sk_stoarge_map_iter_fd(void) +{ + struct bpf_iter_bpf_sk_storage_map *skel; + + skel = bpf_iter_bpf_sk_storage_map__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_sk_storage_map__open_and_load")) + return; + + do_read_map_iter_fd(&skel->skeleton, skel->progs.rw_bpf_sk_storage_map, + skel->maps.sk_stg_map); + + bpf_iter_bpf_sk_storage_map__destroy(skel); } static void test_bpf_sk_storage_map(void) @@ -826,15 +1244,14 @@ static void test_bpf_sk_storage_map(void) char buf[64]; skel = bpf_iter_bpf_sk_storage_map__open_and_load(); - if (CHECK(!skel, "bpf_iter_bpf_sk_storage_map__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_sk_storage_map__open_and_load")) return; map_fd = bpf_map__fd(skel->maps.sk_stg_map); num_sockets = ARRAY_SIZE(sock_fd); for (i = 0; i < num_sockets; i++) { sock_fd[i] = socket(AF_INET6, SOCK_STREAM, 0); - if (CHECK(sock_fd[i] < 0, "socket", "errno: %d\n", errno)) + if (!ASSERT_GE(sock_fd[i], 0, "socket")) goto out; val = i + 1; @@ -842,7 +1259,7 @@ static void test_bpf_sk_storage_map(void) err = bpf_map_update_elem(map_fd, &sock_fd[i], &val, BPF_NOEXIST); - if (CHECK(err, "map_update", "map_update failed\n")) + if (!ASSERT_OK(err, "map_update")) goto out; } @@ -850,31 +1267,43 @@ static void test_bpf_sk_storage_map(void) linfo.map.map_fd = map_fd; opts.link_info = &linfo; opts.link_info_len = sizeof(linfo); - link = bpf_program__attach_iter(skel->progs.dump_bpf_sk_storage_map, &opts); - if (CHECK(IS_ERR(link), "attach_iter", "attach_iter failed\n")) + link = bpf_program__attach_iter(skel->progs.oob_write_bpf_sk_storage_map, &opts); + err = libbpf_get_error(link); + if (!ASSERT_EQ(err, -EACCES, "attach_oob_write_iter")) { + if (!err) + bpf_link__destroy(link); + goto out; + } + + link = bpf_program__attach_iter(skel->progs.rw_bpf_sk_storage_map, &opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) goto out; iter_fd = bpf_iter_create(bpf_link__fd(link)); - if (CHECK(iter_fd < 0, "create_iter", "create_iter failed\n")) + if (!ASSERT_GE(iter_fd, 0, "create_iter")) goto free_link; + skel->bss->to_add_val = time(NULL); /* do some tests */ while ((len = read(iter_fd, buf, sizeof(buf))) > 0) ; - if (CHECK(len < 0, "read", "read failed: %s\n", strerror(errno))) + if (!ASSERT_GE(len, 0, "read")) goto close_iter; /* test results */ - if (CHECK(skel->bss->ipv6_sk_count != num_sockets, - "ipv6_sk_count", "got %u expected %u\n", - skel->bss->ipv6_sk_count, num_sockets)) + if (!ASSERT_EQ(skel->bss->ipv6_sk_count, num_sockets, "ipv6_sk_count")) goto close_iter; - if (CHECK(skel->bss->val_sum != expected_val, - "val_sum", "got %u expected %u\n", - skel->bss->val_sum, expected_val)) + if (!ASSERT_EQ(skel->bss->val_sum, expected_val, "val_sum")) goto close_iter; + for (i = 0; i < num_sockets; i++) { + err = bpf_map_lookup_elem(map_fd, &sock_fd[i], &val); + if (!ASSERT_OK(err, "map_lookup") || + !ASSERT_EQ(val, i + 1 + skel->bss->to_add_val, "check_map_value")) + break; + } + close_iter: close(iter_fd); free_link: @@ -895,8 +1324,7 @@ static void test_rdonly_buf_out_of_bound(void) struct bpf_link *link; skel = bpf_iter_test_kern5__open_and_load(); - if (CHECK(!skel, "bpf_iter_test_kern5__open_and_load", - "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "bpf_iter_test_kern5__open_and_load")) return; memset(&linfo, 0, sizeof(linfo)); @@ -904,7 +1332,7 @@ static void test_rdonly_buf_out_of_bound(void) opts.link_info = &linfo; opts.link_info_len = sizeof(linfo); link = bpf_program__attach_iter(skel->progs.dump_bpf_hash_map, &opts); - if (CHECK(!IS_ERR(link), "attach_iter", "unexpected success\n")) + if (!ASSERT_ERR_PTR(link, "attach_iter")) bpf_link__destroy(link); bpf_iter_test_kern5__destroy(skel); @@ -915,13 +1343,295 @@ static void test_buf_neg_offset(void) struct bpf_iter_test_kern6 *skel; skel = bpf_iter_test_kern6__open_and_load(); - if (CHECK(skel, "bpf_iter_test_kern6__open_and_load", - "skeleton open_and_load unexpected success\n")) + if (!ASSERT_ERR_PTR(skel, "bpf_iter_test_kern6__open_and_load")) bpf_iter_test_kern6__destroy(skel); } +static void test_link_iter(void) +{ + struct bpf_iter_bpf_link *skel; + + skel = bpf_iter_bpf_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_bpf_link__open_and_load")) + return; + + do_dummy_read(skel->progs.dump_bpf_link); + + bpf_iter_bpf_link__destroy(skel); +} + +static void test_ksym_iter(void) +{ + struct bpf_iter_ksym *skel; + + skel = bpf_iter_ksym__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_ksym__open_and_load")) + return; + + do_dummy_read(skel->progs.dump_ksym); + + bpf_iter_ksym__destroy(skel); +} + +#define CMP_BUFFER_SIZE 1024 +static char task_vma_output[CMP_BUFFER_SIZE]; +static char proc_maps_output[CMP_BUFFER_SIZE]; + +/* remove \0 and \t from str, and only keep the first line */ +static void str_strip_first_line(char *str) +{ + char *dst = str, *src = str; + + do { + if (*src == ' ' || *src == '\t') + src++; + else + *(dst++) = *(src++); + + } while (*src != '\0' && *src != '\n'); + + *dst = '\0'; +} + +static void test_task_vma_common(struct bpf_iter_attach_opts *opts) +{ + int err, iter_fd = -1, proc_maps_fd = -1; + struct bpf_iter_task_vmas *skel; + int len, read_size = 4; + char maps_path[64]; + + skel = bpf_iter_task_vmas__open(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_task_vmas__open")) + return; + + skel->bss->pid = getpid(); + skel->bss->one_task = opts ? 1 : 0; + + err = bpf_iter_task_vmas__load(skel); + if (!ASSERT_OK(err, "bpf_iter_task_vmas__load")) + goto out; + + skel->links.proc_maps = bpf_program__attach_iter( + skel->progs.proc_maps, opts); + + if (!ASSERT_OK_PTR(skel->links.proc_maps, "bpf_program__attach_iter")) { + skel->links.proc_maps = NULL; + goto out; + } + + iter_fd = bpf_iter_create(bpf_link__fd(skel->links.proc_maps)); + if (!ASSERT_GE(iter_fd, 0, "create_iter")) + goto out; + + /* Read CMP_BUFFER_SIZE (1kB) from bpf_iter. Read in small chunks + * to trigger seq_file corner cases. + */ + len = 0; + while (len < CMP_BUFFER_SIZE) { + err = read_fd_into_buffer(iter_fd, task_vma_output + len, + MIN(read_size, CMP_BUFFER_SIZE - len)); + if (!err) + break; + if (!ASSERT_GE(err, 0, "read_iter_fd")) + goto out; + len += err; + } + if (opts) + ASSERT_EQ(skel->bss->one_task_error, 0, "unexpected task"); + + /* read CMP_BUFFER_SIZE (1kB) from /proc/pid/maps */ + snprintf(maps_path, 64, "/proc/%u/maps", skel->bss->pid); + proc_maps_fd = open(maps_path, O_RDONLY); + if (!ASSERT_GE(proc_maps_fd, 0, "open_proc_maps")) + goto out; + err = read_fd_into_buffer(proc_maps_fd, proc_maps_output, CMP_BUFFER_SIZE); + if (!ASSERT_GE(err, 0, "read_prog_maps_fd")) + goto out; + + /* strip and compare the first line of the two files */ + str_strip_first_line(task_vma_output); + str_strip_first_line(proc_maps_output); + + ASSERT_STREQ(task_vma_output, proc_maps_output, "compare_output"); + + check_bpf_link_info(skel->progs.proc_maps); + +out: + close(proc_maps_fd); + close(iter_fd); + bpf_iter_task_vmas__destroy(skel); +} + +static void test_task_vma_dead_task(void) +{ + struct bpf_iter_task_vmas *skel; + int wstatus, child_pid = -1; + time_t start_tm, cur_tm; + int err, iter_fd = -1; + int wait_sec = 3; + + skel = bpf_iter_task_vmas__open(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_task_vmas__open")) + return; + + skel->bss->pid = getpid(); + + err = bpf_iter_task_vmas__load(skel); + if (!ASSERT_OK(err, "bpf_iter_task_vmas__load")) + goto out; + + skel->links.proc_maps = bpf_program__attach_iter( + skel->progs.proc_maps, NULL); + + if (!ASSERT_OK_PTR(skel->links.proc_maps, "bpf_program__attach_iter")) { + skel->links.proc_maps = NULL; + goto out; + } + + start_tm = time(NULL); + cur_tm = start_tm; + + child_pid = fork(); + if (child_pid == 0) { + /* Fork short-lived processes in the background. */ + while (cur_tm < start_tm + wait_sec) { + system("echo > /dev/null"); + cur_tm = time(NULL); + } + exit(0); + } + + if (!ASSERT_GE(child_pid, 0, "fork_child")) + goto out; + + while (cur_tm < start_tm + wait_sec) { + iter_fd = bpf_iter_create(bpf_link__fd(skel->links.proc_maps)); + if (!ASSERT_GE(iter_fd, 0, "create_iter")) + goto out; + + /* Drain all data from iter_fd. */ + while (cur_tm < start_tm + wait_sec) { + err = read_fd_into_buffer(iter_fd, task_vma_output, CMP_BUFFER_SIZE); + if (!ASSERT_GE(err, 0, "read_iter_fd")) + goto out; + + cur_tm = time(NULL); + + if (err == 0) + break; + } + + close(iter_fd); + iter_fd = -1; + } + + check_bpf_link_info(skel->progs.proc_maps); + +out: + waitpid(child_pid, &wstatus, 0); + close(iter_fd); + bpf_iter_task_vmas__destroy(skel); +} + +void test_bpf_sockmap_map_iter_fd(void) +{ + struct bpf_iter_sockmap *skel; + + skel = bpf_iter_sockmap__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_sockmap__open_and_load")) + return; + + do_read_map_iter_fd(&skel->skeleton, skel->progs.copy, skel->maps.sockmap); + + bpf_iter_sockmap__destroy(skel); +} + +static void test_task_vma(void) +{ + LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + + memset(&linfo, 0, sizeof(linfo)); + linfo.task.tid = getpid(); + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + test_task_vma_common(&opts); + test_task_vma_common(NULL); +} + +/* uprobe attach point */ +static noinline int trigger_func(int arg) +{ + asm volatile (""); + return arg + 1; +} + +static void test_task_vma_offset_common(struct bpf_iter_attach_opts *opts, bool one_proc) +{ + struct bpf_iter_vma_offset *skel; + char buf[16] = {}; + int iter_fd, len; + int pgsz, shift; + + skel = bpf_iter_vma_offset__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_vma_offset__open_and_load")) + return; + + skel->bss->pid = getpid(); + skel->bss->address = (uintptr_t)trigger_func; + for (pgsz = getpagesize(), shift = 0; pgsz > 1; pgsz >>= 1, shift++) + ; + skel->bss->page_shift = shift; + + skel->links.get_vma_offset = bpf_program__attach_iter(skel->progs.get_vma_offset, opts); + if (!ASSERT_OK_PTR(skel->links.get_vma_offset, "attach_iter")) + goto exit; + + iter_fd = bpf_iter_create(bpf_link__fd(skel->links.get_vma_offset)); + if (!ASSERT_GT(iter_fd, 0, "create_iter")) + goto exit; + + while ((len = read(iter_fd, buf, sizeof(buf))) > 0) + ; + buf[15] = 0; + ASSERT_EQ(strcmp(buf, "OK\n"), 0, "strcmp"); + + ASSERT_EQ(skel->bss->offset, get_uprobe_offset(trigger_func), "offset"); + if (one_proc) + ASSERT_EQ(skel->bss->unique_tgid_cnt, 1, "unique_tgid_count"); + else + ASSERT_GT(skel->bss->unique_tgid_cnt, 1, "unique_tgid_count"); + + close(iter_fd); + +exit: + bpf_iter_vma_offset__destroy(skel); +} + +static void test_task_vma_offset(void) +{ + LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + + memset(&linfo, 0, sizeof(linfo)); + linfo.task.pid = getpid(); + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + test_task_vma_offset_common(&opts, true); + + linfo.task.pid = 0; + linfo.task.tid = getpid(); + test_task_vma_offset_common(&opts, true); + + test_task_vma_offset_common(NULL, false); +} + void test_bpf_iter(void) { + ASSERT_OK(pthread_mutex_init(&do_nothing_mutex, NULL), "pthread_mutex_init"); + if (test__start_subtest("btf_id_or_null")) test_btf_id_or_null(); if (test__start_subtest("ipv6_route")) @@ -930,12 +1640,24 @@ void test_bpf_iter(void) test_netlink(); if (test__start_subtest("bpf_map")) test_bpf_map(); - if (test__start_subtest("task")) - test_task(); + if (test__start_subtest("task_tid")) + test_task_tid(); + if (test__start_subtest("task_pid")) + test_task_pid(); + if (test__start_subtest("task_pidfd")) + test_task_pidfd(); + if (test__start_subtest("task_sleepable")) + test_task_sleepable(); if (test__start_subtest("task_stack")) test_task_stack(); if (test__start_subtest("task_file")) test_task_file(); + if (test__start_subtest("task_vma")) + test_task_vma(); + if (test__start_subtest("task_vma_dead_task")) + test_task_vma_dead_task(); + if (test__start_subtest("task_btf")) + test_task_btf(); if (test__start_subtest("tcp4")) test_tcp4(); if (test__start_subtest("tcp6")) @@ -944,6 +1666,8 @@ void test_bpf_iter(void) test_udp4(); if (test__start_subtest("udp6")) test_udp6(); + if (test__start_subtest("unix")) + test_unix(); if (test__start_subtest("anon")) test_anon_iter(false); if (test__start_subtest("anon-read-one-char")) @@ -962,12 +1686,28 @@ void test_bpf_iter(void) test_bpf_percpu_hash_map(); if (test__start_subtest("bpf_array_map")) test_bpf_array_map(); + if (test__start_subtest("bpf_array_map_iter_fd")) + test_bpf_array_map_iter_fd(); if (test__start_subtest("bpf_percpu_array_map")) test_bpf_percpu_array_map(); if (test__start_subtest("bpf_sk_storage_map")) test_bpf_sk_storage_map(); + if (test__start_subtest("bpf_sk_storage_map_iter_fd")) + test_bpf_sk_stoarge_map_iter_fd(); + if (test__start_subtest("bpf_sk_storage_delete")) + test_bpf_sk_storage_delete(); + if (test__start_subtest("bpf_sk_storage_get")) + test_bpf_sk_storage_get(); if (test__start_subtest("rdonly-buf-out-of-bound")) test_rdonly_buf_out_of_bound(); if (test__start_subtest("buf-neg-offset")) test_buf_neg_offset(); + if (test__start_subtest("link-iter")) + test_link_iter(); + if (test__start_subtest("ksym")) + test_ksym_iter(); + if (test__start_subtest("bpf_sockmap_map_iter_fd")) + test_bpf_sockmap_map_iter_fd(); + if (test__start_subtest("vma_offset")) + test_task_vma_offset(); } diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_iter_setsockopt.c b/tools/testing/selftests/bpf/prog_tests/bpf_iter_setsockopt.c new file mode 100644 index 000000000000..b52ff8ce34db --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bpf_iter_setsockopt.c @@ -0,0 +1,226 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#define _GNU_SOURCE +#include <sched.h> +#include <test_progs.h> +#include "network_helpers.h" +#include "bpf_dctcp.skel.h" +#include "bpf_cubic.skel.h" +#include "bpf_iter_setsockopt.skel.h" + +static int create_netns(void) +{ + if (!ASSERT_OK(unshare(CLONE_NEWNET), "create netns")) + return -1; + + if (!ASSERT_OK(system("ip link set dev lo up"), "bring up lo")) + return -1; + + return 0; +} + +static unsigned int set_bpf_cubic(int *fds, unsigned int nr_fds) +{ + unsigned int i; + + for (i = 0; i < nr_fds; i++) { + if (setsockopt(fds[i], SOL_TCP, TCP_CONGESTION, "bpf_cubic", + sizeof("bpf_cubic"))) + return i; + } + + return nr_fds; +} + +static unsigned int check_bpf_dctcp(int *fds, unsigned int nr_fds) +{ + char tcp_cc[16]; + socklen_t optlen = sizeof(tcp_cc); + unsigned int i; + + for (i = 0; i < nr_fds; i++) { + if (getsockopt(fds[i], SOL_TCP, TCP_CONGESTION, + tcp_cc, &optlen) || + strcmp(tcp_cc, "bpf_dctcp")) + return i; + } + + return nr_fds; +} + +static int *make_established(int listen_fd, unsigned int nr_est, + int **paccepted_fds) +{ + int *est_fds, *accepted_fds; + unsigned int i; + + est_fds = malloc(sizeof(*est_fds) * nr_est); + if (!est_fds) + return NULL; + + accepted_fds = malloc(sizeof(*accepted_fds) * nr_est); + if (!accepted_fds) { + free(est_fds); + return NULL; + } + + for (i = 0; i < nr_est; i++) { + est_fds[i] = connect_to_fd(listen_fd, 0); + if (est_fds[i] == -1) + break; + if (set_bpf_cubic(&est_fds[i], 1) != 1) { + close(est_fds[i]); + break; + } + + accepted_fds[i] = accept(listen_fd, NULL, 0); + if (accepted_fds[i] == -1) { + close(est_fds[i]); + break; + } + } + + if (!ASSERT_EQ(i, nr_est, "create established fds")) { + free_fds(accepted_fds, i); + free_fds(est_fds, i); + return NULL; + } + + *paccepted_fds = accepted_fds; + return est_fds; +} + +static unsigned short get_local_port(int fd) +{ + struct sockaddr_in6 addr; + socklen_t addrlen = sizeof(addr); + + if (!getsockname(fd, &addr, &addrlen)) + return ntohs(addr.sin6_port); + + return 0; +} + +static void do_bpf_iter_setsockopt(struct bpf_iter_setsockopt *iter_skel, + bool random_retry) +{ + int *reuse_listen_fds = NULL, *accepted_fds = NULL, *est_fds = NULL; + unsigned int nr_reuse_listens = 256, nr_est = 256; + int err, iter_fd = -1, listen_fd = -1; + char buf; + + /* Prepare non-reuseport listen_fd */ + listen_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + if (!ASSERT_GE(listen_fd, 0, "start_server")) + return; + if (!ASSERT_EQ(set_bpf_cubic(&listen_fd, 1), 1, + "set listen_fd to cubic")) + goto done; + iter_skel->bss->listen_hport = get_local_port(listen_fd); + if (!ASSERT_NEQ(iter_skel->bss->listen_hport, 0, + "get_local_port(listen_fd)")) + goto done; + + /* Connect to non-reuseport listen_fd */ + est_fds = make_established(listen_fd, nr_est, &accepted_fds); + if (!ASSERT_OK_PTR(est_fds, "create established")) + goto done; + + /* Prepare reuseport listen fds */ + reuse_listen_fds = start_reuseport_server(AF_INET6, SOCK_STREAM, + "::1", 0, 0, + nr_reuse_listens); + if (!ASSERT_OK_PTR(reuse_listen_fds, "start_reuseport_server")) + goto done; + if (!ASSERT_EQ(set_bpf_cubic(reuse_listen_fds, nr_reuse_listens), + nr_reuse_listens, "set reuse_listen_fds to cubic")) + goto done; + iter_skel->bss->reuse_listen_hport = get_local_port(reuse_listen_fds[0]); + if (!ASSERT_NEQ(iter_skel->bss->reuse_listen_hport, 0, + "get_local_port(reuse_listen_fds[0])")) + goto done; + + /* Run bpf tcp iter to switch from bpf_cubic to bpf_dctcp */ + iter_skel->bss->random_retry = random_retry; + iter_fd = bpf_iter_create(bpf_link__fd(iter_skel->links.change_tcp_cc)); + if (!ASSERT_GE(iter_fd, 0, "create iter_fd")) + goto done; + + while ((err = read(iter_fd, &buf, sizeof(buf))) == -1 && + errno == EAGAIN) + ; + if (!ASSERT_OK(err, "read iter error")) + goto done; + + /* Check reuseport listen fds for dctcp */ + ASSERT_EQ(check_bpf_dctcp(reuse_listen_fds, nr_reuse_listens), + nr_reuse_listens, + "check reuse_listen_fds dctcp"); + + /* Check non reuseport listen fd for dctcp */ + ASSERT_EQ(check_bpf_dctcp(&listen_fd, 1), 1, + "check listen_fd dctcp"); + + /* Check established fds for dctcp */ + ASSERT_EQ(check_bpf_dctcp(est_fds, nr_est), nr_est, + "check est_fds dctcp"); + + /* Check accepted fds for dctcp */ + ASSERT_EQ(check_bpf_dctcp(accepted_fds, nr_est), nr_est, + "check accepted_fds dctcp"); + +done: + if (iter_fd != -1) + close(iter_fd); + if (listen_fd != -1) + close(listen_fd); + free_fds(reuse_listen_fds, nr_reuse_listens); + free_fds(accepted_fds, nr_est); + free_fds(est_fds, nr_est); +} + +void serial_test_bpf_iter_setsockopt(void) +{ + struct bpf_iter_setsockopt *iter_skel = NULL; + struct bpf_cubic *cubic_skel = NULL; + struct bpf_dctcp *dctcp_skel = NULL; + struct bpf_link *cubic_link = NULL; + struct bpf_link *dctcp_link = NULL; + + if (create_netns()) + return; + + /* Load iter_skel */ + iter_skel = bpf_iter_setsockopt__open_and_load(); + if (!ASSERT_OK_PTR(iter_skel, "iter_skel")) + return; + iter_skel->links.change_tcp_cc = bpf_program__attach_iter(iter_skel->progs.change_tcp_cc, NULL); + if (!ASSERT_OK_PTR(iter_skel->links.change_tcp_cc, "attach iter")) + goto done; + + /* Load bpf_cubic */ + cubic_skel = bpf_cubic__open_and_load(); + if (!ASSERT_OK_PTR(cubic_skel, "cubic_skel")) + goto done; + cubic_link = bpf_map__attach_struct_ops(cubic_skel->maps.cubic); + if (!ASSERT_OK_PTR(cubic_link, "cubic_link")) + goto done; + + /* Load bpf_dctcp */ + dctcp_skel = bpf_dctcp__open_and_load(); + if (!ASSERT_OK_PTR(dctcp_skel, "dctcp_skel")) + goto done; + dctcp_link = bpf_map__attach_struct_ops(dctcp_skel->maps.dctcp); + if (!ASSERT_OK_PTR(dctcp_link, "dctcp_link")) + goto done; + + do_bpf_iter_setsockopt(iter_skel, true); + do_bpf_iter_setsockopt(iter_skel, false); + +done: + bpf_link__destroy(cubic_link); + bpf_link__destroy(dctcp_link); + bpf_cubic__destroy(cubic_skel); + bpf_dctcp__destroy(dctcp_skel); + bpf_iter_setsockopt__destroy(iter_skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_iter_setsockopt_unix.c b/tools/testing/selftests/bpf/prog_tests/bpf_iter_setsockopt_unix.c new file mode 100644 index 000000000000..ee725d4d98a5 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bpf_iter_setsockopt_unix.c @@ -0,0 +1,100 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright Amazon.com Inc. or its affiliates. */ +#include <sys/socket.h> +#include <sys/un.h> +#include <test_progs.h> +#include "bpf_iter_setsockopt_unix.skel.h" + +#define NR_CASES 5 + +static int create_unix_socket(struct bpf_iter_setsockopt_unix *skel) +{ + struct sockaddr_un addr = { + .sun_family = AF_UNIX, + .sun_path = "", + }; + socklen_t len; + int fd, err; + + fd = socket(AF_UNIX, SOCK_STREAM, 0); + if (!ASSERT_NEQ(fd, -1, "socket")) + return -1; + + len = offsetof(struct sockaddr_un, sun_path); + err = bind(fd, (struct sockaddr *)&addr, len); + if (!ASSERT_OK(err, "bind")) + return -1; + + len = sizeof(addr); + err = getsockname(fd, (struct sockaddr *)&addr, &len); + if (!ASSERT_OK(err, "getsockname")) + return -1; + + memcpy(&skel->bss->sun_path, &addr.sun_path, + len - offsetof(struct sockaddr_un, sun_path)); + + return fd; +} + +static void test_sndbuf(struct bpf_iter_setsockopt_unix *skel, int fd) +{ + socklen_t optlen; + int i, err; + + for (i = 0; i < NR_CASES; i++) { + if (!ASSERT_NEQ(skel->data->sndbuf_getsockopt[i], -1, + "bpf_(get|set)sockopt")) + return; + + err = setsockopt(fd, SOL_SOCKET, SO_SNDBUF, + &(skel->data->sndbuf_setsockopt[i]), + sizeof(skel->data->sndbuf_setsockopt[i])); + if (!ASSERT_OK(err, "setsockopt")) + return; + + optlen = sizeof(skel->bss->sndbuf_getsockopt_expected[i]); + err = getsockopt(fd, SOL_SOCKET, SO_SNDBUF, + &(skel->bss->sndbuf_getsockopt_expected[i]), + &optlen); + if (!ASSERT_OK(err, "getsockopt")) + return; + + if (!ASSERT_EQ(skel->data->sndbuf_getsockopt[i], + skel->bss->sndbuf_getsockopt_expected[i], + "bpf_(get|set)sockopt")) + return; + } +} + +void test_bpf_iter_setsockopt_unix(void) +{ + struct bpf_iter_setsockopt_unix *skel; + int err, unix_fd, iter_fd; + char buf; + + skel = bpf_iter_setsockopt_unix__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + unix_fd = create_unix_socket(skel); + if (!ASSERT_NEQ(unix_fd, -1, "create_unix_server")) + goto destroy; + + skel->links.change_sndbuf = bpf_program__attach_iter(skel->progs.change_sndbuf, NULL); + if (!ASSERT_OK_PTR(skel->links.change_sndbuf, "bpf_program__attach_iter")) + goto destroy; + + iter_fd = bpf_iter_create(bpf_link__fd(skel->links.change_sndbuf)); + if (!ASSERT_GE(iter_fd, 0, "bpf_iter_create")) + goto destroy; + + while ((err = read(iter_fd, &buf, sizeof(buf))) == -1 && + errno == EAGAIN) + ; + if (!ASSERT_OK(err, "read iter error")) + goto destroy; + + test_sndbuf(skel, unix_fd); +destroy: + bpf_iter_setsockopt_unix__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_loop.c b/tools/testing/selftests/bpf/prog_tests/bpf_loop.c new file mode 100644 index 000000000000..4cd8a25afe68 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bpf_loop.c @@ -0,0 +1,207 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> +#include <network_helpers.h> +#include "bpf_loop.skel.h" + +static void check_nr_loops(struct bpf_loop *skel) +{ + struct bpf_link *link; + + link = bpf_program__attach(skel->progs.test_prog); + if (!ASSERT_OK_PTR(link, "link")) + return; + + /* test 0 loops */ + skel->bss->nr_loops = 0; + + usleep(1); + + ASSERT_EQ(skel->bss->nr_loops_returned, skel->bss->nr_loops, + "0 loops"); + + /* test 500 loops */ + skel->bss->nr_loops = 500; + + usleep(1); + + ASSERT_EQ(skel->bss->nr_loops_returned, skel->bss->nr_loops, + "500 loops"); + ASSERT_EQ(skel->bss->g_output, (500 * 499) / 2, "g_output"); + + /* test exceeding the max limit */ + skel->bss->nr_loops = -1; + + usleep(1); + + ASSERT_EQ(skel->bss->err, -E2BIG, "over max limit"); + + bpf_link__destroy(link); +} + +static void check_callback_fn_stop(struct bpf_loop *skel) +{ + struct bpf_link *link; + + link = bpf_program__attach(skel->progs.test_prog); + if (!ASSERT_OK_PTR(link, "link")) + return; + + /* testing that loop is stopped when callback_fn returns 1 */ + skel->bss->nr_loops = 400; + skel->data->stop_index = 50; + + usleep(1); + + ASSERT_EQ(skel->bss->nr_loops_returned, skel->data->stop_index + 1, + "nr_loops_returned"); + ASSERT_EQ(skel->bss->g_output, (50 * 49) / 2, + "g_output"); + + bpf_link__destroy(link); +} + +static void check_null_callback_ctx(struct bpf_loop *skel) +{ + struct bpf_link *link; + + /* check that user is able to pass in a null callback_ctx */ + link = bpf_program__attach(skel->progs.prog_null_ctx); + if (!ASSERT_OK_PTR(link, "link")) + return; + + skel->bss->nr_loops = 10; + + usleep(1); + + ASSERT_EQ(skel->bss->nr_loops_returned, skel->bss->nr_loops, + "nr_loops_returned"); + + bpf_link__destroy(link); +} + +static void check_invalid_flags(struct bpf_loop *skel) +{ + struct bpf_link *link; + + /* check that passing in non-zero flags returns -EINVAL */ + link = bpf_program__attach(skel->progs.prog_invalid_flags); + if (!ASSERT_OK_PTR(link, "link")) + return; + + usleep(1); + + ASSERT_EQ(skel->bss->err, -EINVAL, "err"); + + bpf_link__destroy(link); +} + +static void check_nested_calls(struct bpf_loop *skel) +{ + __u32 nr_loops = 100, nested_callback_nr_loops = 4; + struct bpf_link *link; + + /* check that nested calls are supported */ + link = bpf_program__attach(skel->progs.prog_nested_calls); + if (!ASSERT_OK_PTR(link, "link")) + return; + + skel->bss->nr_loops = nr_loops; + skel->bss->nested_callback_nr_loops = nested_callback_nr_loops; + + usleep(1); + + ASSERT_EQ(skel->bss->nr_loops_returned, nr_loops * nested_callback_nr_loops + * nested_callback_nr_loops, "nr_loops_returned"); + ASSERT_EQ(skel->bss->g_output, (4 * 3) / 2 * nested_callback_nr_loops + * nr_loops, "g_output"); + + bpf_link__destroy(link); +} + +static void check_non_constant_callback(struct bpf_loop *skel) +{ + struct bpf_link *link = + bpf_program__attach(skel->progs.prog_non_constant_callback); + + if (!ASSERT_OK_PTR(link, "link")) + return; + + skel->bss->callback_selector = 0x0F; + usleep(1); + ASSERT_EQ(skel->bss->g_output, 0x0F, "g_output #1"); + + skel->bss->callback_selector = 0xF0; + usleep(1); + ASSERT_EQ(skel->bss->g_output, 0xF0, "g_output #2"); + + bpf_link__destroy(link); +} + +static void check_stack(struct bpf_loop *skel) +{ + struct bpf_link *link = bpf_program__attach(skel->progs.stack_check); + const int max_key = 12; + int key; + int map_fd; + + if (!ASSERT_OK_PTR(link, "link")) + return; + + map_fd = bpf_map__fd(skel->maps.map1); + + if (!ASSERT_GE(map_fd, 0, "bpf_map__fd")) + goto out; + + for (key = 1; key <= max_key; ++key) { + int val = key; + int err = bpf_map_update_elem(map_fd, &key, &val, BPF_NOEXIST); + + if (!ASSERT_OK(err, "bpf_map_update_elem")) + goto out; + } + + usleep(1); + + for (key = 1; key <= max_key; ++key) { + int val; + int err = bpf_map_lookup_elem(map_fd, &key, &val); + + if (!ASSERT_OK(err, "bpf_map_lookup_elem")) + goto out; + if (!ASSERT_EQ(val, key + 1, "bad value in the map")) + goto out; + } + +out: + bpf_link__destroy(link); +} + +void test_bpf_loop(void) +{ + struct bpf_loop *skel; + + skel = bpf_loop__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_loop__open_and_load")) + return; + + skel->bss->pid = getpid(); + + if (test__start_subtest("check_nr_loops")) + check_nr_loops(skel); + if (test__start_subtest("check_callback_fn_stop")) + check_callback_fn_stop(skel); + if (test__start_subtest("check_null_callback_ctx")) + check_null_callback_ctx(skel); + if (test__start_subtest("check_invalid_flags")) + check_invalid_flags(skel); + if (test__start_subtest("check_nested_calls")) + check_nested_calls(skel); + if (test__start_subtest("check_non_constant_callback")) + check_non_constant_callback(skel); + if (test__start_subtest("check_stack")) + check_stack(skel); + + bpf_loop__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_mod_race.c b/tools/testing/selftests/bpf/prog_tests/bpf_mod_race.c new file mode 100644 index 000000000000..fe2c502e5089 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bpf_mod_race.c @@ -0,0 +1,206 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <unistd.h> +#include <pthread.h> +#include <sys/mman.h> +#include <stdatomic.h> +#include <test_progs.h> +#include <sys/syscall.h> +#include <linux/module.h> +#include <linux/userfaultfd.h> + +#include "ksym_race.skel.h" +#include "bpf_mod_race.skel.h" +#include "kfunc_call_race.skel.h" +#include "testing_helpers.h" + +/* This test crafts a race between btf_try_get_module and do_init_module, and + * checks whether btf_try_get_module handles the invocation for a well-formed + * but uninitialized module correctly. Unless the module has completed its + * initcalls, the verifier should fail the program load and return ENXIO. + * + * userfaultfd is used to trigger a fault in an fmod_ret program, and make it + * sleep, then the BPF program is loaded and the return value from verifier is + * inspected. After this, the userfaultfd is closed so that the module loading + * thread makes forward progress, and fmod_ret injects an error so that the + * module load fails and it is freed. + * + * If the verifier succeeded in loading the supplied program, it will end up + * taking reference to freed module, and trigger a crash when the program fd + * is closed later. This is true for both kfuncs and ksyms. In both cases, + * the crash is triggered inside bpf_prog_free_deferred, when module reference + * is finally released. + */ + +struct test_config { + const char *str_open; + void *(*bpf_open_and_load)(); + void (*bpf_destroy)(void *); +}; + +enum bpf_test_state { + _TS_INVALID, + TS_MODULE_LOAD, + TS_MODULE_LOAD_FAIL, +}; + +static _Atomic enum bpf_test_state state = _TS_INVALID; + +static void *load_module_thread(void *p) +{ + + if (!ASSERT_NEQ(load_bpf_testmod(false), 0, "load_module_thread must fail")) + atomic_store(&state, TS_MODULE_LOAD); + else + atomic_store(&state, TS_MODULE_LOAD_FAIL); + return p; +} + +static int sys_userfaultfd(int flags) +{ + return syscall(__NR_userfaultfd, flags); +} + +static int test_setup_uffd(void *fault_addr) +{ + struct uffdio_register uffd_register = {}; + struct uffdio_api uffd_api = {}; + int uffd; + + uffd = sys_userfaultfd(O_CLOEXEC); + if (uffd < 0) + return -errno; + + uffd_api.api = UFFD_API; + uffd_api.features = 0; + if (ioctl(uffd, UFFDIO_API, &uffd_api)) { + close(uffd); + return -1; + } + + uffd_register.range.start = (unsigned long)fault_addr; + uffd_register.range.len = 4096; + uffd_register.mode = UFFDIO_REGISTER_MODE_MISSING; + if (ioctl(uffd, UFFDIO_REGISTER, &uffd_register)) { + close(uffd); + return -1; + } + return uffd; +} + +static void test_bpf_mod_race_config(const struct test_config *config) +{ + void *fault_addr, *skel_fail; + struct bpf_mod_race *skel; + struct uffd_msg uffd_msg; + pthread_t load_mod_thrd; + _Atomic int *blockingp; + int uffd, ret; + + fault_addr = mmap(0, 4096, PROT_READ, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0); + if (!ASSERT_NEQ(fault_addr, MAP_FAILED, "mmap for uffd registration")) + return; + + if (!ASSERT_OK(unload_bpf_testmod(false), "unload bpf_testmod")) + goto end_mmap; + + skel = bpf_mod_race__open(); + if (!ASSERT_OK_PTR(skel, "bpf_mod_kfunc_race__open")) + goto end_module; + + skel->rodata->bpf_mod_race_config.tgid = getpid(); + skel->rodata->bpf_mod_race_config.inject_error = -4242; + skel->rodata->bpf_mod_race_config.fault_addr = fault_addr; + if (!ASSERT_OK(bpf_mod_race__load(skel), "bpf_mod___load")) + goto end_destroy; + blockingp = (_Atomic int *)&skel->bss->bpf_blocking; + + if (!ASSERT_OK(bpf_mod_race__attach(skel), "bpf_mod_kfunc_race__attach")) + goto end_destroy; + + uffd = test_setup_uffd(fault_addr); + if (!ASSERT_GE(uffd, 0, "userfaultfd open + register address")) + goto end_destroy; + + if (!ASSERT_OK(pthread_create(&load_mod_thrd, NULL, load_module_thread, NULL), + "load module thread")) + goto end_uffd; + + /* Now, we either fail loading module, or block in bpf prog, spin to find out */ + while (!atomic_load(&state) && !atomic_load(blockingp)) + ; + if (!ASSERT_EQ(state, _TS_INVALID, "module load should block")) + goto end_join; + if (!ASSERT_EQ(*blockingp, 1, "module load blocked")) { + pthread_kill(load_mod_thrd, SIGKILL); + goto end_uffd; + } + + /* We might have set bpf_blocking to 1, but may have not blocked in + * bpf_copy_from_user. Read userfaultfd descriptor to verify that. + */ + if (!ASSERT_EQ(read(uffd, &uffd_msg, sizeof(uffd_msg)), sizeof(uffd_msg), + "read uffd block event")) + goto end_join; + if (!ASSERT_EQ(uffd_msg.event, UFFD_EVENT_PAGEFAULT, "read uffd event is pagefault")) + goto end_join; + + /* We know that load_mod_thrd is blocked in the fmod_ret program, the + * module state is still MODULE_STATE_COMING because mod->init hasn't + * returned. This is the time we try to load a program calling kfunc and + * check if we get ENXIO from verifier. + */ + skel_fail = config->bpf_open_and_load(); + ret = errno; + if (!ASSERT_EQ(skel_fail, NULL, config->str_open)) { + /* Close uffd to unblock load_mod_thrd */ + close(uffd); + uffd = -1; + while (atomic_load(blockingp) != 2) + ; + ASSERT_OK(kern_sync_rcu(), "kern_sync_rcu"); + config->bpf_destroy(skel_fail); + goto end_join; + + } + ASSERT_EQ(ret, ENXIO, "verifier returns ENXIO"); + ASSERT_EQ(skel->data->res_try_get_module, false, "btf_try_get_module == false"); + + close(uffd); + uffd = -1; +end_join: + pthread_join(load_mod_thrd, NULL); + if (uffd < 0) + ASSERT_EQ(atomic_load(&state), TS_MODULE_LOAD_FAIL, "load_mod_thrd success"); +end_uffd: + if (uffd >= 0) + close(uffd); +end_destroy: + bpf_mod_race__destroy(skel); + ASSERT_OK(kern_sync_rcu(), "kern_sync_rcu"); +end_module: + unload_bpf_testmod(false); + ASSERT_OK(load_bpf_testmod(false), "restore bpf_testmod"); +end_mmap: + munmap(fault_addr, 4096); + atomic_store(&state, _TS_INVALID); +} + +static const struct test_config ksym_config = { + .str_open = "ksym_race__open_and_load", + .bpf_open_and_load = (void *)ksym_race__open_and_load, + .bpf_destroy = (void *)ksym_race__destroy, +}; + +static const struct test_config kfunc_config = { + .str_open = "kfunc_call_race__open_and_load", + .bpf_open_and_load = (void *)kfunc_call_race__open_and_load, + .bpf_destroy = (void *)kfunc_call_race__destroy, +}; + +void serial_test_bpf_mod_race(void) +{ + if (test__start_subtest("ksym (used_btfs UAF)")) + test_bpf_mod_race_config(&ksym_config); + if (test__start_subtest("kfunc (kfunc_btf_tab UAF)")) + test_bpf_mod_race_config(&kfunc_config); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_nf.c b/tools/testing/selftests/bpf/prog_tests/bpf_nf.c new file mode 100644 index 000000000000..b30ff6b3b81a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bpf_nf.c @@ -0,0 +1,182 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> +#include <linux/netfilter/nf_conntrack_common.h> +#include "test_bpf_nf.skel.h" +#include "test_bpf_nf_fail.skel.h" + +static char log_buf[1024 * 1024]; + +struct { + const char *prog_name; + const char *err_msg; +} test_bpf_nf_fail_tests[] = { + { "alloc_release", "kernel function bpf_ct_release args#0 expected pointer to STRUCT nf_conn but" }, + { "insert_insert", "kernel function bpf_ct_insert_entry args#0 expected pointer to STRUCT nf_conn___init but" }, + { "lookup_insert", "kernel function bpf_ct_insert_entry args#0 expected pointer to STRUCT nf_conn___init but" }, + { "set_timeout_after_insert", "kernel function bpf_ct_set_timeout args#0 expected pointer to STRUCT nf_conn___init but" }, + { "set_status_after_insert", "kernel function bpf_ct_set_status args#0 expected pointer to STRUCT nf_conn___init but" }, + { "change_timeout_after_alloc", "kernel function bpf_ct_change_timeout args#0 expected pointer to STRUCT nf_conn but" }, + { "change_status_after_alloc", "kernel function bpf_ct_change_status args#0 expected pointer to STRUCT nf_conn but" }, + { "write_not_allowlisted_field", "no write support to nf_conn at off" }, +}; + +enum { + TEST_XDP, + TEST_TC_BPF, +}; + +#define TIMEOUT_MS 3000 +#define IPS_STATUS_MASK (IPS_CONFIRMED | IPS_SEEN_REPLY | \ + IPS_SRC_NAT_DONE | IPS_DST_NAT_DONE | \ + IPS_SRC_NAT | IPS_DST_NAT) + +static int connect_to_server(int srv_fd) +{ + int fd = -1; + + fd = socket(AF_INET, SOCK_STREAM, 0); + if (!ASSERT_GE(fd, 0, "socket")) + goto out; + + if (!ASSERT_EQ(connect_fd_to_fd(fd, srv_fd, TIMEOUT_MS), 0, "connect_fd_to_fd")) { + close(fd); + fd = -1; + } +out: + return fd; +} + +static void test_bpf_nf_ct(int mode) +{ + const char *iptables = "iptables-legacy -t raw %s PREROUTING -j CONNMARK --set-mark 42/0"; + int srv_fd = -1, client_fd = -1, srv_client_fd = -1; + struct sockaddr_in peer_addr = {}; + struct test_bpf_nf *skel; + int prog_fd, err; + socklen_t len; + u16 srv_port; + char cmd[128]; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + skel = test_bpf_nf__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_bpf_nf__open_and_load")) + return; + + /* Enable connection tracking */ + snprintf(cmd, sizeof(cmd), iptables, "-A"); + if (!ASSERT_OK(system(cmd), cmd)) + goto end; + + srv_port = (mode == TEST_XDP) ? 5005 : 5006; + srv_fd = start_server(AF_INET, SOCK_STREAM, "127.0.0.1", srv_port, TIMEOUT_MS); + if (!ASSERT_GE(srv_fd, 0, "start_server")) + goto end; + + client_fd = connect_to_server(srv_fd); + if (!ASSERT_GE(client_fd, 0, "connect_to_server")) + goto end; + + len = sizeof(peer_addr); + srv_client_fd = accept(srv_fd, (struct sockaddr *)&peer_addr, &len); + if (!ASSERT_GE(srv_client_fd, 0, "accept")) + goto end; + if (!ASSERT_EQ(len, sizeof(struct sockaddr_in), "sockaddr len")) + goto end; + + skel->bss->saddr = peer_addr.sin_addr.s_addr; + skel->bss->sport = peer_addr.sin_port; + skel->bss->daddr = peer_addr.sin_addr.s_addr; + skel->bss->dport = htons(srv_port); + + if (mode == TEST_XDP) + prog_fd = bpf_program__fd(skel->progs.nf_xdp_ct_test); + else + prog_fd = bpf_program__fd(skel->progs.nf_skb_ct_test); + + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "bpf_prog_test_run")) + goto end; + + ASSERT_EQ(skel->bss->test_einval_bpf_tuple, -EINVAL, "Test EINVAL for NULL bpf_tuple"); + ASSERT_EQ(skel->bss->test_einval_reserved, -EINVAL, "Test EINVAL for reserved not set to 0"); + ASSERT_EQ(skel->bss->test_einval_netns_id, -EINVAL, "Test EINVAL for netns_id < -1"); + ASSERT_EQ(skel->bss->test_einval_len_opts, -EINVAL, "Test EINVAL for len__opts != NF_BPF_CT_OPTS_SZ"); + ASSERT_EQ(skel->bss->test_eproto_l4proto, -EPROTO, "Test EPROTO for l4proto != TCP or UDP"); + ASSERT_EQ(skel->bss->test_enonet_netns_id, -ENONET, "Test ENONET for bad but valid netns_id"); + ASSERT_EQ(skel->bss->test_enoent_lookup, -ENOENT, "Test ENOENT for failed lookup"); + ASSERT_EQ(skel->bss->test_eafnosupport, -EAFNOSUPPORT, "Test EAFNOSUPPORT for invalid len__tuple"); + ASSERT_EQ(skel->data->test_alloc_entry, 0, "Test for alloc new entry"); + ASSERT_EQ(skel->data->test_insert_entry, 0, "Test for insert new entry"); + ASSERT_EQ(skel->data->test_succ_lookup, 0, "Test for successful lookup"); + /* allow some tolerance for test_delta_timeout value to avoid races. */ + ASSERT_GT(skel->bss->test_delta_timeout, 8, "Test for min ct timeout update"); + ASSERT_LE(skel->bss->test_delta_timeout, 10, "Test for max ct timeout update"); + ASSERT_EQ(skel->bss->test_insert_lookup_mark, 77, "Test for insert and lookup mark value"); + ASSERT_EQ(skel->bss->test_status, IPS_STATUS_MASK, "Test for ct status update "); + ASSERT_EQ(skel->data->test_exist_lookup, 0, "Test existing connection lookup"); + ASSERT_EQ(skel->bss->test_exist_lookup_mark, 43, "Test existing connection lookup ctmark"); + ASSERT_EQ(skel->data->test_snat_addr, 0, "Test for source natting"); + ASSERT_EQ(skel->data->test_dnat_addr, 0, "Test for destination natting"); +end: + if (client_fd != -1) + close(client_fd); + if (srv_client_fd != -1) + close(srv_client_fd); + if (srv_fd != -1) + close(srv_fd); + + snprintf(cmd, sizeof(cmd), iptables, "-D"); + system(cmd); + test_bpf_nf__destroy(skel); +} + +static void test_bpf_nf_ct_fail(const char *prog_name, const char *err_msg) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts, .kernel_log_buf = log_buf, + .kernel_log_size = sizeof(log_buf), + .kernel_log_level = 1); + struct test_bpf_nf_fail *skel; + struct bpf_program *prog; + int ret; + + skel = test_bpf_nf_fail__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "test_bpf_nf_fail__open")) + return; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto end; + + bpf_program__set_autoload(prog, true); + + ret = test_bpf_nf_fail__load(skel); + if (!ASSERT_ERR(ret, "test_bpf_nf_fail__load must fail")) + goto end; + + if (!ASSERT_OK_PTR(strstr(log_buf, err_msg), "expected error message")) { + fprintf(stderr, "Expected: %s\n", err_msg); + fprintf(stderr, "Verifier: %s\n", log_buf); + } + +end: + test_bpf_nf_fail__destroy(skel); +} + +void test_bpf_nf(void) +{ + int i; + if (test__start_subtest("xdp-ct")) + test_bpf_nf_ct(TEST_XDP); + if (test__start_subtest("tc-bpf-ct")) + test_bpf_nf_ct(TEST_TC_BPF); + for (i = 0; i < ARRAY_SIZE(test_bpf_nf_fail_tests); i++) { + if (test__start_subtest(test_bpf_nf_fail_tests[i].prog_name)) + test_bpf_nf_ct_fail(test_bpf_nf_fail_tests[i].prog_name, + test_bpf_nf_fail_tests[i].err_msg); + } +} diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_obj_id.c b/tools/testing/selftests/bpf/prog_tests/bpf_obj_id.c index 284d5921c345..f09d6ac2ef09 100644 --- a/tools/testing/selftests/bpf/prog_tests/bpf_obj_id.c +++ b/tools/testing/selftests/bpf/prog_tests/bpf_obj_id.c @@ -3,11 +3,11 @@ #define nr_iters 2 -void test_bpf_obj_id(void) +void serial_test_bpf_obj_id(void) { const __u64 array_magic_value = 0xfaceb00c; const __u32 array_key = 0; - const char *file = "./test_obj_id.o"; + const char *file = "./test_obj_id.bpf.o"; const char *expected_prog_name = "test_obj_id"; const char *expected_map_name = "test_map_id"; const __u64 nsec_per_sec = 1000000000; @@ -25,7 +25,7 @@ void test_bpf_obj_id(void) */ __u32 map_ids[nr_iters + 1]; char jited_insns[128], xlated_insns[128], zeros[128], tp_name[128]; - __u32 i, next_id, info_len, nr_id_found, duration = 0; + __u32 i, next_id, info_len, nr_id_found; struct timespec real_time_ts, boot_time_ts; int err = 0; __u64 array_value; @@ -33,45 +33,46 @@ void test_bpf_obj_id(void) time_t now, load_time; err = bpf_prog_get_fd_by_id(0); - CHECK(err >= 0 || errno != ENOENT, - "get-fd-by-notexist-prog-id", "err %d errno %d\n", err, errno); + ASSERT_LT(err, 0, "bpf_prog_get_fd_by_id"); + ASSERT_EQ(errno, ENOENT, "bpf_prog_get_fd_by_id"); err = bpf_map_get_fd_by_id(0); - CHECK(err >= 0 || errno != ENOENT, - "get-fd-by-notexist-map-id", "err %d errno %d\n", err, errno); + ASSERT_LT(err, 0, "bpf_map_get_fd_by_id"); + ASSERT_EQ(errno, ENOENT, "bpf_map_get_fd_by_id"); err = bpf_link_get_fd_by_id(0); - CHECK(err >= 0 || errno != ENOENT, - "get-fd-by-notexist-link-id", "err %d errno %d\n", err, errno); + ASSERT_LT(err, 0, "bpf_map_get_fd_by_id"); + ASSERT_EQ(errno, ENOENT, "bpf_map_get_fd_by_id"); - /* Check bpf_obj_get_info_by_fd() */ + /* Check bpf_map_get_info_by_fd() */ bzero(zeros, sizeof(zeros)); for (i = 0; i < nr_iters; i++) { now = time(NULL); - err = bpf_prog_load(file, BPF_PROG_TYPE_RAW_TRACEPOINT, + err = bpf_prog_test_load(file, BPF_PROG_TYPE_RAW_TRACEPOINT, &objs[i], &prog_fds[i]); /* test_obj_id.o is a dumb prog. It should never fail * to load. */ - if (CHECK_FAIL(err)) + if (!ASSERT_OK(err, "bpf_prog_test_load")) continue; /* Insert a magic value to the map */ map_fds[i] = bpf_find_map(__func__, objs[i], "test_map_id"); - if (CHECK_FAIL(map_fds[i] < 0)) + if (!ASSERT_GE(map_fds[i], 0, "bpf_find_map")) goto done; + err = bpf_map_update_elem(map_fds[i], &array_key, &array_magic_value, 0); - if (CHECK_FAIL(err)) + if (!ASSERT_OK(err, "bpf_map_update_elem")) goto done; - prog = bpf_object__find_program_by_title(objs[i], - "raw_tp/sys_enter"); - if (CHECK_FAIL(!prog)) + prog = bpf_object__find_program_by_name(objs[i], "test_obj_id"); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) goto done; + links[i] = bpf_program__attach(prog); err = libbpf_get_error(links[i]); - if (CHECK(err, "prog_attach", "prog #%d, err %d\n", i, err)) { + if (!ASSERT_OK(err, "bpf_program__attach")) { links[i] = NULL; goto done; } @@ -79,26 +80,16 @@ void test_bpf_obj_id(void) /* Check getting map info */ info_len = sizeof(struct bpf_map_info) * 2; bzero(&map_infos[i], info_len); - err = bpf_obj_get_info_by_fd(map_fds[i], &map_infos[i], + err = bpf_map_get_info_by_fd(map_fds[i], &map_infos[i], &info_len); - if (CHECK(err || - map_infos[i].type != BPF_MAP_TYPE_ARRAY || - map_infos[i].key_size != sizeof(__u32) || - map_infos[i].value_size != sizeof(__u64) || - map_infos[i].max_entries != 1 || - map_infos[i].map_flags != 0 || - info_len != sizeof(struct bpf_map_info) || - strcmp((char *)map_infos[i].name, expected_map_name), - "get-map-info(fd)", - "err %d errno %d type %d(%d) info_len %u(%zu) key_size %u value_size %u max_entries %u map_flags %X name %s(%s)\n", - err, errno, - map_infos[i].type, BPF_MAP_TYPE_ARRAY, - info_len, sizeof(struct bpf_map_info), - map_infos[i].key_size, - map_infos[i].value_size, - map_infos[i].max_entries, - map_infos[i].map_flags, - map_infos[i].name, expected_map_name)) + if (!ASSERT_OK(err, "bpf_map_get_info_by_fd") || + !ASSERT_EQ(map_infos[i].type, BPF_MAP_TYPE_ARRAY, "map_type") || + !ASSERT_EQ(map_infos[i].key_size, sizeof(__u32), "key_size") || + !ASSERT_EQ(map_infos[i].value_size, sizeof(__u64), "value_size") || + !ASSERT_EQ(map_infos[i].max_entries, 1, "max_entries") || + !ASSERT_EQ(map_infos[i].map_flags, 0, "map_flags") || + !ASSERT_EQ(info_len, sizeof(struct bpf_map_info), "map_info_len") || + !ASSERT_STREQ((char *)map_infos[i].name, expected_map_name, "map_name")) goto done; /* Check getting prog info */ @@ -112,48 +103,34 @@ void test_bpf_obj_id(void) prog_infos[i].xlated_prog_len = sizeof(xlated_insns); prog_infos[i].map_ids = ptr_to_u64(map_ids + i); prog_infos[i].nr_map_ids = 2; + err = clock_gettime(CLOCK_REALTIME, &real_time_ts); - if (CHECK_FAIL(err)) + if (!ASSERT_OK(err, "clock_gettime")) goto done; + err = clock_gettime(CLOCK_BOOTTIME, &boot_time_ts); - if (CHECK_FAIL(err)) + if (!ASSERT_OK(err, "clock_gettime")) goto done; - err = bpf_obj_get_info_by_fd(prog_fds[i], &prog_infos[i], - &info_len); + + err = bpf_prog_get_info_by_fd(prog_fds[i], &prog_infos[i], + &info_len); load_time = (real_time_ts.tv_sec - boot_time_ts.tv_sec) + (prog_infos[i].load_time / nsec_per_sec); - if (CHECK(err || - prog_infos[i].type != BPF_PROG_TYPE_RAW_TRACEPOINT || - info_len != sizeof(struct bpf_prog_info) || - (env.jit_enabled && !prog_infos[i].jited_prog_len) || - (env.jit_enabled && - !memcmp(jited_insns, zeros, sizeof(zeros))) || - !prog_infos[i].xlated_prog_len || - !memcmp(xlated_insns, zeros, sizeof(zeros)) || - load_time < now - 60 || load_time > now + 60 || - prog_infos[i].created_by_uid != my_uid || - prog_infos[i].nr_map_ids != 1 || - *(int *)(long)prog_infos[i].map_ids != map_infos[i].id || - strcmp((char *)prog_infos[i].name, expected_prog_name), - "get-prog-info(fd)", - "err %d errno %d i %d type %d(%d) info_len %u(%zu) " - "jit_enabled %d jited_prog_len %u xlated_prog_len %u " - "jited_prog %d xlated_prog %d load_time %lu(%lu) " - "uid %u(%u) nr_map_ids %u(%u) map_id %u(%u) " - "name %s(%s)\n", - err, errno, i, - prog_infos[i].type, BPF_PROG_TYPE_SOCKET_FILTER, - info_len, sizeof(struct bpf_prog_info), - env.jit_enabled, - prog_infos[i].jited_prog_len, - prog_infos[i].xlated_prog_len, - !!memcmp(jited_insns, zeros, sizeof(zeros)), - !!memcmp(xlated_insns, zeros, sizeof(zeros)), - load_time, now, - prog_infos[i].created_by_uid, my_uid, - prog_infos[i].nr_map_ids, 1, - *(int *)(long)prog_infos[i].map_ids, map_infos[i].id, - prog_infos[i].name, expected_prog_name)) + + if (!ASSERT_OK(err, "bpf_prog_get_info_by_fd") || + !ASSERT_EQ(prog_infos[i].type, BPF_PROG_TYPE_RAW_TRACEPOINT, "prog_type") || + !ASSERT_EQ(info_len, sizeof(struct bpf_prog_info), "prog_info_len") || + !ASSERT_FALSE((env.jit_enabled && !prog_infos[i].jited_prog_len), "jited_prog_len") || + !ASSERT_FALSE((env.jit_enabled && !memcmp(jited_insns, zeros, sizeof(zeros))), + "jited_insns") || + !ASSERT_NEQ(prog_infos[i].xlated_prog_len, 0, "xlated_prog_len") || + !ASSERT_NEQ(memcmp(xlated_insns, zeros, sizeof(zeros)), 0, "xlated_insns") || + !ASSERT_GE(load_time, (now - 60), "load_time") || + !ASSERT_LE(load_time, (now + 60), "load_time") || + !ASSERT_EQ(prog_infos[i].created_by_uid, my_uid, "created_by_uid") || + !ASSERT_EQ(prog_infos[i].nr_map_ids, 1, "nr_map_ids") || + !ASSERT_EQ(*(int *)(long)prog_infos[i].map_ids, map_infos[i].id, "map_ids") || + !ASSERT_STREQ((char *)prog_infos[i].name, expected_prog_name, "prog_name")) goto done; /* Check getting link info */ @@ -161,27 +138,14 @@ void test_bpf_obj_id(void) bzero(&link_infos[i], info_len); link_infos[i].raw_tracepoint.tp_name = ptr_to_u64(&tp_name); link_infos[i].raw_tracepoint.tp_name_len = sizeof(tp_name); - err = bpf_obj_get_info_by_fd(bpf_link__fd(links[i]), - &link_infos[i], &info_len); - if (CHECK(err || - link_infos[i].type != BPF_LINK_TYPE_RAW_TRACEPOINT || - link_infos[i].prog_id != prog_infos[i].id || - link_infos[i].raw_tracepoint.tp_name != ptr_to_u64(&tp_name) || - strcmp(u64_to_ptr(link_infos[i].raw_tracepoint.tp_name), - "sys_enter") || - info_len != sizeof(struct bpf_link_info), - "get-link-info(fd)", - "err %d errno %d info_len %u(%zu) type %d(%d) id %d " - "prog_id %d (%d) tp_name %s(%s)\n", - err, errno, - info_len, sizeof(struct bpf_link_info), - link_infos[i].type, BPF_LINK_TYPE_RAW_TRACEPOINT, - link_infos[i].id, - link_infos[i].prog_id, prog_infos[i].id, - (const char *)u64_to_ptr(link_infos[i].raw_tracepoint.tp_name), - "sys_enter")) + err = bpf_link_get_info_by_fd(bpf_link__fd(links[i]), + &link_infos[i], &info_len); + if (!ASSERT_OK(err, "bpf_link_get_info_by_fd") || + !ASSERT_EQ(link_infos[i].type, BPF_LINK_TYPE_RAW_TRACEPOINT, "link_type") || + !ASSERT_EQ(link_infos[i].prog_id, prog_infos[i].id, "prog_id") || + !ASSERT_EQ(link_infos[i].raw_tracepoint.tp_name, ptr_to_u64(&tp_name), "&tp_name") || + !ASSERT_STREQ(u64_to_ptr(link_infos[i].raw_tracepoint.tp_name), "sys_enter", "tp_name")) goto done; - } /* Check bpf_prog_get_next_id() */ @@ -190,7 +154,7 @@ void test_bpf_obj_id(void) while (!bpf_prog_get_next_id(next_id, &next_id)) { struct bpf_prog_info prog_info = {}; __u32 saved_map_id; - int prog_fd; + int prog_fd, cmp_res; info_len = sizeof(prog_info); @@ -198,9 +162,7 @@ void test_bpf_obj_id(void) if (prog_fd < 0 && errno == ENOENT) /* The bpf_prog is in the dead row */ continue; - if (CHECK(prog_fd < 0, "get-prog-fd(next_id)", - "prog_fd %d next_id %d errno %d\n", - prog_fd, next_id, errno)) + if (!ASSERT_GE(prog_fd, 0, "bpf_prog_get_fd_by_id")) break; for (i = 0; i < nr_iters; i++) @@ -217,10 +179,9 @@ void test_bpf_obj_id(void) * prog_info.map_ids = NULL */ prog_info.nr_map_ids = 1; - err = bpf_obj_get_info_by_fd(prog_fd, &prog_info, &info_len); - if (CHECK(!err || errno != EFAULT, - "get-prog-fd-bad-nr-map-ids", "err %d errno %d(%d)", - err, errno, EFAULT)) + err = bpf_prog_get_info_by_fd(prog_fd, &prog_info, &info_len); + if (!ASSERT_ERR(err, "bpf_prog_get_info_by_fd") || + !ASSERT_EQ(errno, EFAULT, "bpf_prog_get_info_by_fd")) break; bzero(&prog_info, sizeof(prog_info)); info_len = sizeof(prog_info); @@ -228,30 +189,25 @@ void test_bpf_obj_id(void) saved_map_id = *(int *)((long)prog_infos[i].map_ids); prog_info.map_ids = prog_infos[i].map_ids; prog_info.nr_map_ids = 2; - err = bpf_obj_get_info_by_fd(prog_fd, &prog_info, &info_len); + err = bpf_prog_get_info_by_fd(prog_fd, &prog_info, &info_len); prog_infos[i].jited_prog_insns = 0; prog_infos[i].xlated_prog_insns = 0; - CHECK(err || info_len != sizeof(struct bpf_prog_info) || - memcmp(&prog_info, &prog_infos[i], info_len) || - *(int *)(long)prog_info.map_ids != saved_map_id, - "get-prog-info(next_id->fd)", - "err %d errno %d info_len %u(%zu) memcmp %d map_id %u(%u)\n", - err, errno, info_len, sizeof(struct bpf_prog_info), - memcmp(&prog_info, &prog_infos[i], info_len), - *(int *)(long)prog_info.map_ids, saved_map_id); + cmp_res = memcmp(&prog_info, &prog_infos[i], info_len); + + ASSERT_OK(err, "bpf_prog_get_info_by_fd"); + ASSERT_EQ(info_len, sizeof(struct bpf_prog_info), "prog_info_len"); + ASSERT_OK(cmp_res, "memcmp"); + ASSERT_EQ(*(int *)(long)prog_info.map_ids, saved_map_id, "map_id"); close(prog_fd); } - CHECK(nr_id_found != nr_iters, - "check total prog id found by get_next_id", - "nr_id_found %u(%u)\n", - nr_id_found, nr_iters); + ASSERT_EQ(nr_id_found, nr_iters, "prog_nr_id_found"); /* Check bpf_map_get_next_id() */ nr_id_found = 0; next_id = 0; while (!bpf_map_get_next_id(next_id, &next_id)) { struct bpf_map_info map_info = {}; - int map_fd; + int map_fd, cmp_res; info_len = sizeof(map_info); @@ -259,9 +215,7 @@ void test_bpf_obj_id(void) if (map_fd < 0 && errno == ENOENT) /* The bpf_map is in the dead row */ continue; - if (CHECK(map_fd < 0, "get-map-fd(next_id)", - "map_fd %d next_id %u errno %d\n", - map_fd, next_id, errno)) + if (!ASSERT_GE(map_fd, 0, "bpf_map_get_fd_by_id")) break; for (i = 0; i < nr_iters; i++) @@ -274,25 +228,19 @@ void test_bpf_obj_id(void) nr_id_found++; err = bpf_map_lookup_elem(map_fd, &array_key, &array_value); - if (CHECK_FAIL(err)) + if (!ASSERT_OK(err, "bpf_map_lookup_elem")) goto done; - err = bpf_obj_get_info_by_fd(map_fd, &map_info, &info_len); - CHECK(err || info_len != sizeof(struct bpf_map_info) || - memcmp(&map_info, &map_infos[i], info_len) || - array_value != array_magic_value, - "check get-map-info(next_id->fd)", - "err %d errno %d info_len %u(%zu) memcmp %d array_value %llu(%llu)\n", - err, errno, info_len, sizeof(struct bpf_map_info), - memcmp(&map_info, &map_infos[i], info_len), - array_value, array_magic_value); + err = bpf_map_get_info_by_fd(map_fd, &map_info, &info_len); + cmp_res = memcmp(&map_info, &map_infos[i], info_len); + ASSERT_OK(err, "bpf_map_get_info_by_fd"); + ASSERT_EQ(info_len, sizeof(struct bpf_map_info), "info_len"); + ASSERT_OK(cmp_res, "memcmp"); + ASSERT_EQ(array_value, array_magic_value, "array_value"); close(map_fd); } - CHECK(nr_id_found != nr_iters, - "check total map id found by get_next_id", - "nr_id_found %u(%u)\n", - nr_id_found, nr_iters); + ASSERT_EQ(nr_id_found, nr_iters, "map_nr_id_found"); /* Check bpf_link_get_next_id() */ nr_id_found = 0; @@ -308,9 +256,7 @@ void test_bpf_obj_id(void) if (link_fd < 0 && errno == ENOENT) /* The bpf_link is in the dead row */ continue; - if (CHECK(link_fd < 0, "get-link-fd(next_id)", - "link_fd %d next_id %u errno %d\n", - link_fd, next_id, errno)) + if (!ASSERT_GE(link_fd, 0, "bpf_link_get_fd_by_id")) break; for (i = 0; i < nr_iters; i++) @@ -322,20 +268,16 @@ void test_bpf_obj_id(void) nr_id_found++; - err = bpf_obj_get_info_by_fd(link_fd, &link_info, &info_len); + err = bpf_link_get_info_by_fd(link_fd, &link_info, &info_len); cmp_res = memcmp(&link_info, &link_infos[i], offsetof(struct bpf_link_info, raw_tracepoint)); - CHECK(err || info_len != sizeof(link_info) || cmp_res, - "check get-link-info(next_id->fd)", - "err %d errno %d info_len %u(%zu) memcmp %d\n", - err, errno, info_len, sizeof(struct bpf_link_info), - cmp_res); + ASSERT_OK(err, "bpf_link_get_info_by_fd"); + ASSERT_EQ(info_len, sizeof(link_info), "info_len"); + ASSERT_OK(cmp_res, "memcmp"); close(link_fd); } - CHECK(nr_id_found != nr_iters, - "check total link id found by get_next_id", - "nr_id_found %u(%u)\n", nr_id_found, nr_iters); + ASSERT_EQ(nr_id_found, nr_iters, "link_nr_id_found"); done: for (i = 0; i < nr_iters; i++) { diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_obj_pinning.c b/tools/testing/selftests/bpf/prog_tests/bpf_obj_pinning.c new file mode 100644 index 000000000000..ee0458a5ce78 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/bpf_obj_pinning.c @@ -0,0 +1,269 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ +#define _GNU_SOURCE +#include <test_progs.h> +#include <bpf/btf.h> +#include <fcntl.h> +#include <unistd.h> +#include <linux/unistd.h> +#include <linux/mount.h> +#include <sys/syscall.h> +#include "bpf/libbpf_internal.h" + +static inline int sys_fsopen(const char *fsname, unsigned flags) +{ + return syscall(__NR_fsopen, fsname, flags); +} + +static inline int sys_fsconfig(int fs_fd, unsigned cmd, const char *key, const void *val, int aux) +{ + return syscall(__NR_fsconfig, fs_fd, cmd, key, val, aux); +} + +static inline int sys_fsmount(int fs_fd, unsigned flags, unsigned ms_flags) +{ + return syscall(__NR_fsmount, fs_fd, flags, ms_flags); +} + +__attribute__((unused)) +static inline int sys_move_mount(int from_dfd, const char *from_path, + int to_dfd, const char *to_path, + unsigned int ms_flags) +{ + return syscall(__NR_move_mount, from_dfd, from_path, to_dfd, to_path, ms_flags); +} + +static void bpf_obj_pinning_detached(void) +{ + LIBBPF_OPTS(bpf_obj_pin_opts, pin_opts); + LIBBPF_OPTS(bpf_obj_get_opts, get_opts); + int fs_fd = -1, mnt_fd = -1; + int map_fd = -1, map_fd2 = -1; + int zero = 0, src_value, dst_value, err; + const char *map_name = "fsmount_map"; + + /* A bunch of below UAPI calls are constructed based on reading: + * https://brauner.io/2023/02/28/mounting-into-mount-namespaces.html + */ + + /* create VFS context */ + fs_fd = sys_fsopen("bpf", 0); + if (!ASSERT_GE(fs_fd, 0, "fs_fd")) + goto cleanup; + + /* instantiate FS object */ + err = sys_fsconfig(fs_fd, FSCONFIG_CMD_CREATE, NULL, NULL, 0); + if (!ASSERT_OK(err, "fs_create")) + goto cleanup; + + /* create O_PATH fd for detached mount */ + mnt_fd = sys_fsmount(fs_fd, 0, 0); + if (!ASSERT_GE(mnt_fd, 0, "mnt_fd")) + goto cleanup; + + /* If we wanted to expose detached mount in the file system, we'd do + * something like below. But the whole point is that we actually don't + * even have to expose BPF FS in the file system to be able to work + * (pin/get objects) with it. + * + * err = sys_move_mount(mnt_fd, "", -EBADF, mnt_path, MOVE_MOUNT_F_EMPTY_PATH); + * if (!ASSERT_OK(err, "move_mount")) + * goto cleanup; + */ + + /* create BPF map to pin */ + map_fd = bpf_map_create(BPF_MAP_TYPE_ARRAY, map_name, 4, 4, 1, NULL); + if (!ASSERT_GE(map_fd, 0, "map_fd")) + goto cleanup; + + /* pin BPF map into detached BPF FS through mnt_fd */ + pin_opts.file_flags = BPF_F_PATH_FD; + pin_opts.path_fd = mnt_fd; + err = bpf_obj_pin_opts(map_fd, map_name, &pin_opts); + if (!ASSERT_OK(err, "map_pin")) + goto cleanup; + + /* get BPF map from detached BPF FS through mnt_fd */ + get_opts.file_flags = BPF_F_PATH_FD; + get_opts.path_fd = mnt_fd; + map_fd2 = bpf_obj_get_opts(map_name, &get_opts); + if (!ASSERT_GE(map_fd2, 0, "map_get")) + goto cleanup; + + /* update map through one FD */ + src_value = 0xcafebeef; + err = bpf_map_update_elem(map_fd, &zero, &src_value, 0); + ASSERT_OK(err, "map_update"); + + /* check values written/read through different FDs do match */ + dst_value = 0; + err = bpf_map_lookup_elem(map_fd2, &zero, &dst_value); + ASSERT_OK(err, "map_lookup"); + ASSERT_EQ(dst_value, src_value, "map_value_eq1"); + ASSERT_EQ(dst_value, 0xcafebeef, "map_value_eq2"); + +cleanup: + if (map_fd >= 0) + ASSERT_OK(close(map_fd), "close_map_fd"); + if (map_fd2 >= 0) + ASSERT_OK(close(map_fd2), "close_map_fd2"); + if (fs_fd >= 0) + ASSERT_OK(close(fs_fd), "close_fs_fd"); + if (mnt_fd >= 0) + ASSERT_OK(close(mnt_fd), "close_mnt_fd"); +} + +enum path_kind +{ + PATH_STR_ABS, + PATH_STR_REL, + PATH_FD_REL, +}; + +static void validate_pin(int map_fd, const char *map_name, int src_value, + enum path_kind path_kind) +{ + LIBBPF_OPTS(bpf_obj_pin_opts, pin_opts); + char abs_path[PATH_MAX], old_cwd[PATH_MAX]; + const char *pin_path = NULL; + int zero = 0, dst_value, map_fd2, err; + + snprintf(abs_path, sizeof(abs_path), "/sys/fs/bpf/%s", map_name); + old_cwd[0] = '\0'; + + switch (path_kind) { + case PATH_STR_ABS: + /* absolute path */ + pin_path = abs_path; + break; + case PATH_STR_REL: + /* cwd + relative path */ + ASSERT_OK_PTR(getcwd(old_cwd, sizeof(old_cwd)), "getcwd"); + ASSERT_OK(chdir("/sys/fs/bpf"), "chdir"); + pin_path = map_name; + break; + case PATH_FD_REL: + /* dir fd + relative path */ + pin_opts.file_flags = BPF_F_PATH_FD; + pin_opts.path_fd = open("/sys/fs/bpf", O_PATH); + ASSERT_GE(pin_opts.path_fd, 0, "path_fd"); + pin_path = map_name; + break; + } + + /* pin BPF map using specified path definition */ + err = bpf_obj_pin_opts(map_fd, pin_path, &pin_opts); + ASSERT_OK(err, "obj_pin"); + + /* cleanup */ + if (path_kind == PATH_FD_REL && pin_opts.path_fd >= 0) + close(pin_opts.path_fd); + if (old_cwd[0]) + ASSERT_OK(chdir(old_cwd), "restore_cwd"); + + map_fd2 = bpf_obj_get(abs_path); + if (!ASSERT_GE(map_fd2, 0, "map_get")) + goto cleanup; + + /* update map through one FD */ + err = bpf_map_update_elem(map_fd, &zero, &src_value, 0); + ASSERT_OK(err, "map_update"); + + /* check values written/read through different FDs do match */ + dst_value = 0; + err = bpf_map_lookup_elem(map_fd2, &zero, &dst_value); + ASSERT_OK(err, "map_lookup"); + ASSERT_EQ(dst_value, src_value, "map_value_eq"); +cleanup: + if (map_fd2 >= 0) + ASSERT_OK(close(map_fd2), "close_map_fd2"); + unlink(abs_path); +} + +static void validate_get(int map_fd, const char *map_name, int src_value, + enum path_kind path_kind) +{ + LIBBPF_OPTS(bpf_obj_get_opts, get_opts); + char abs_path[PATH_MAX], old_cwd[PATH_MAX]; + const char *pin_path = NULL; + int zero = 0, dst_value, map_fd2, err; + + snprintf(abs_path, sizeof(abs_path), "/sys/fs/bpf/%s", map_name); + /* pin BPF map using specified path definition */ + err = bpf_obj_pin(map_fd, abs_path); + if (!ASSERT_OK(err, "pin_map")) + return; + + old_cwd[0] = '\0'; + + switch (path_kind) { + case PATH_STR_ABS: + /* absolute path */ + pin_path = abs_path; + break; + case PATH_STR_REL: + /* cwd + relative path */ + ASSERT_OK_PTR(getcwd(old_cwd, sizeof(old_cwd)), "getcwd"); + ASSERT_OK(chdir("/sys/fs/bpf"), "chdir"); + pin_path = map_name; + break; + case PATH_FD_REL: + /* dir fd + relative path */ + get_opts.file_flags = BPF_F_PATH_FD; + get_opts.path_fd = open("/sys/fs/bpf", O_PATH); + ASSERT_GE(get_opts.path_fd, 0, "path_fd"); + pin_path = map_name; + break; + } + + map_fd2 = bpf_obj_get_opts(pin_path, &get_opts); + if (!ASSERT_GE(map_fd2, 0, "map_get")) + goto cleanup; + + /* cleanup */ + if (path_kind == PATH_FD_REL && get_opts.path_fd >= 0) + close(get_opts.path_fd); + if (old_cwd[0]) + ASSERT_OK(chdir(old_cwd), "restore_cwd"); + + /* update map through one FD */ + err = bpf_map_update_elem(map_fd, &zero, &src_value, 0); + ASSERT_OK(err, "map_update"); + + /* check values written/read through different FDs do match */ + dst_value = 0; + err = bpf_map_lookup_elem(map_fd2, &zero, &dst_value); + ASSERT_OK(err, "map_lookup"); + ASSERT_EQ(dst_value, src_value, "map_value_eq"); +cleanup: + if (map_fd2 >= 0) + ASSERT_OK(close(map_fd2), "close_map_fd2"); + unlink(abs_path); +} + +static void bpf_obj_pinning_mounted(enum path_kind path_kind) +{ + const char *map_name = "mounted_map"; + int map_fd; + + /* create BPF map to pin */ + map_fd = bpf_map_create(BPF_MAP_TYPE_ARRAY, map_name, 4, 4, 1, NULL); + if (!ASSERT_GE(map_fd, 0, "map_fd")) + return; + + validate_pin(map_fd, map_name, 100 + (int)path_kind, path_kind); + validate_get(map_fd, map_name, 200 + (int)path_kind, path_kind); + ASSERT_OK(close(map_fd), "close_map_fd"); +} + +void test_bpf_obj_pinning() +{ + if (test__start_subtest("detached")) + bpf_obj_pinning_detached(); + if (test__start_subtest("mounted-str-abs")) + bpf_obj_pinning_mounted(PATH_STR_ABS); + if (test__start_subtest("mounted-str-rel")) + bpf_obj_pinning_mounted(PATH_STR_REL); + if (test__start_subtest("mounted-fd-rel")) + bpf_obj_pinning_mounted(PATH_FD_REL); +} diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_tcp_ca.c b/tools/testing/selftests/bpf/prog_tests/bpf_tcp_ca.c index 9a8f47fc0b91..0aca02532794 100644 --- a/tools/testing/selftests/bpf/prog_tests/bpf_tcp_ca.c +++ b/tools/testing/selftests/bpf/prog_tests/bpf_tcp_ca.c @@ -2,143 +2,66 @@ /* Copyright (c) 2019 Facebook */ #include <linux/err.h> +#include <netinet/tcp.h> #include <test_progs.h> +#include "network_helpers.h" #include "bpf_dctcp.skel.h" #include "bpf_cubic.skel.h" - -#define min(a, b) ((a) < (b) ? (a) : (b)) +#include "bpf_tcp_nogpl.skel.h" +#include "tcp_ca_update.skel.h" +#include "bpf_dctcp_release.skel.h" +#include "tcp_ca_write_sk_pacing.skel.h" +#include "tcp_ca_incompl_cong_ops.skel.h" +#include "tcp_ca_unsupp_cong_op.skel.h" +#include "tcp_ca_kfunc.skel.h" +#include "bpf_cc_cubic.skel.h" + +#ifndef ENOTSUPP +#define ENOTSUPP 524 +#endif static const unsigned int total_bytes = 10 * 1024 * 1024; -static const struct timeval timeo_sec = { .tv_sec = 10 }; -static const size_t timeo_optlen = sizeof(timeo_sec); static int expected_stg = 0xeB9F; -static int stop, duration; - -static int settimeo(int fd) -{ - int err; - - err = setsockopt(fd, SOL_SOCKET, SO_RCVTIMEO, &timeo_sec, - timeo_optlen); - if (CHECK(err == -1, "setsockopt(fd, SO_RCVTIMEO)", "errno:%d\n", - errno)) - return -1; - - err = setsockopt(fd, SOL_SOCKET, SO_SNDTIMEO, &timeo_sec, - timeo_optlen); - if (CHECK(err == -1, "setsockopt(fd, SO_SNDTIMEO)", "errno:%d\n", - errno)) - return -1; - - return 0; -} static int settcpca(int fd, const char *tcp_ca) { int err; err = setsockopt(fd, IPPROTO_TCP, TCP_CONGESTION, tcp_ca, strlen(tcp_ca)); - if (CHECK(err == -1, "setsockopt(fd, TCP_CONGESTION)", "errno:%d\n", - errno)) + if (!ASSERT_NEQ(err, -1, "setsockopt")) return -1; return 0; } -static void *server(void *arg) -{ - int lfd = (int)(long)arg, err = 0, fd; - ssize_t nr_sent = 0, bytes = 0; - char batch[1500]; - - fd = accept(lfd, NULL, NULL); - while (fd == -1) { - if (errno == EINTR) - continue; - err = -errno; - goto done; - } - - if (settimeo(fd)) { - err = -errno; - goto done; - } - - while (bytes < total_bytes && !READ_ONCE(stop)) { - nr_sent = send(fd, &batch, - min(total_bytes - bytes, sizeof(batch)), 0); - if (nr_sent == -1 && errno == EINTR) - continue; - if (nr_sent == -1) { - err = -errno; - break; - } - bytes += nr_sent; - } - - CHECK(bytes != total_bytes, "send", "%zd != %u nr_sent:%zd errno:%d\n", - bytes, total_bytes, nr_sent, errno); - -done: - if (fd != -1) - close(fd); - if (err) { - WRITE_ONCE(stop, 1); - return ERR_PTR(err); - } - return NULL; -} - static void do_test(const char *tcp_ca, const struct bpf_map *sk_stg_map) { - struct sockaddr_in6 sa6 = {}; - ssize_t nr_recv = 0, bytes = 0; int lfd = -1, fd = -1; - pthread_t srv_thread; - socklen_t addrlen = sizeof(sa6); - void *thread_ret; - char batch[1500]; int err; - WRITE_ONCE(stop, 0); - - lfd = socket(AF_INET6, SOCK_STREAM, 0); - if (CHECK(lfd == -1, "socket", "errno:%d\n", errno)) + lfd = start_server(AF_INET6, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_NEQ(lfd, -1, "socket")) return; + fd = socket(AF_INET6, SOCK_STREAM, 0); - if (CHECK(fd == -1, "socket", "errno:%d\n", errno)) { + if (!ASSERT_NEQ(fd, -1, "socket")) { close(lfd); return; } - if (settcpca(lfd, tcp_ca) || settcpca(fd, tcp_ca) || - settimeo(lfd) || settimeo(fd)) - goto done; - - /* bind, listen and start server thread to accept */ - sa6.sin6_family = AF_INET6; - sa6.sin6_addr = in6addr_loopback; - err = bind(lfd, (struct sockaddr *)&sa6, addrlen); - if (CHECK(err == -1, "bind", "errno:%d\n", errno)) - goto done; - err = getsockname(lfd, (struct sockaddr *)&sa6, &addrlen); - if (CHECK(err == -1, "getsockname", "errno:%d\n", errno)) - goto done; - err = listen(lfd, 1); - if (CHECK(err == -1, "listen", "errno:%d\n", errno)) + if (settcpca(lfd, tcp_ca) || settcpca(fd, tcp_ca)) goto done; if (sk_stg_map) { err = bpf_map_update_elem(bpf_map__fd(sk_stg_map), &fd, &expected_stg, BPF_NOEXIST); - if (CHECK(err, "bpf_map_update_elem(sk_stg_map)", - "err:%d errno:%d\n", err, errno)) + if (!ASSERT_OK(err, "bpf_map_update_elem(sk_stg_map)")) goto done; } /* connect to server */ - err = connect(fd, (struct sockaddr *)&sa6, addrlen); - if (CHECK(err == -1, "connect", "errno:%d\n", errno)) + err = connect_fd_to_fd(fd, lfd, 0); + if (!ASSERT_NEQ(err, -1, "connect")) goto done; if (sk_stg_map) { @@ -146,34 +69,13 @@ static void do_test(const char *tcp_ca, const struct bpf_map *sk_stg_map) err = bpf_map_lookup_elem(bpf_map__fd(sk_stg_map), &fd, &tmp_stg); - if (CHECK(!err || errno != ENOENT, - "bpf_map_lookup_elem(sk_stg_map)", - "err:%d errno:%d\n", err, errno)) + if (!ASSERT_ERR(err, "bpf_map_lookup_elem(sk_stg_map)") || + !ASSERT_EQ(errno, ENOENT, "bpf_map_lookup_elem(sk_stg_map)")) goto done; } - err = pthread_create(&srv_thread, NULL, server, (void *)(long)lfd); - if (CHECK(err != 0, "pthread_create", "err:%d errno:%d\n", err, errno)) - goto done; - - /* recv total_bytes */ - while (bytes < total_bytes && !READ_ONCE(stop)) { - nr_recv = recv(fd, &batch, - min(total_bytes - bytes, sizeof(batch)), 0); - if (nr_recv == -1 && errno == EINTR) - continue; - if (nr_recv == -1) - break; - bytes += nr_recv; - } + ASSERT_OK(send_recv_data(lfd, fd, total_bytes), "send_recv_data"); - CHECK(bytes != total_bytes, "recv", "%zd != %u nr_recv:%zd errno:%d\n", - bytes, total_bytes, nr_recv, errno); - - WRITE_ONCE(stop, 1); - pthread_join(srv_thread, &thread_ret); - CHECK(IS_ERR(thread_ret), "pthread_join", "thread_ret:%ld", - PTR_ERR(thread_ret)); done: close(lfd); close(fd); @@ -185,18 +87,19 @@ static void test_cubic(void) struct bpf_link *link; cubic_skel = bpf_cubic__open_and_load(); - if (CHECK(!cubic_skel, "bpf_cubic__open_and_load", "failed\n")) + if (!ASSERT_OK_PTR(cubic_skel, "bpf_cubic__open_and_load")) return; link = bpf_map__attach_struct_ops(cubic_skel->maps.cubic); - if (CHECK(IS_ERR(link), "bpf_map__attach_struct_ops", "err:%ld\n", - PTR_ERR(link))) { + if (!ASSERT_OK_PTR(link, "bpf_map__attach_struct_ops")) { bpf_cubic__destroy(cubic_skel); return; } do_test("bpf_cubic", NULL); + ASSERT_EQ(cubic_skel->bss->bpf_cubic_acked_called, 1, "pkts_acked called"); + bpf_link__destroy(link); bpf_cubic__destroy(cubic_skel); } @@ -207,29 +110,400 @@ static void test_dctcp(void) struct bpf_link *link; dctcp_skel = bpf_dctcp__open_and_load(); - if (CHECK(!dctcp_skel, "bpf_dctcp__open_and_load", "failed\n")) + if (!ASSERT_OK_PTR(dctcp_skel, "bpf_dctcp__open_and_load")) return; link = bpf_map__attach_struct_ops(dctcp_skel->maps.dctcp); - if (CHECK(IS_ERR(link), "bpf_map__attach_struct_ops", "err:%ld\n", - PTR_ERR(link))) { + if (!ASSERT_OK_PTR(link, "bpf_map__attach_struct_ops")) { bpf_dctcp__destroy(dctcp_skel); return; } do_test("bpf_dctcp", dctcp_skel->maps.sk_stg_map); - CHECK(dctcp_skel->bss->stg_result != expected_stg, - "Unexpected stg_result", "stg_result (%x) != expected_stg (%x)\n", - dctcp_skel->bss->stg_result, expected_stg); + ASSERT_EQ(dctcp_skel->bss->stg_result, expected_stg, "stg_result"); bpf_link__destroy(link); bpf_dctcp__destroy(dctcp_skel); } +static char *err_str; +static bool found; + +static int libbpf_debug_print(enum libbpf_print_level level, + const char *format, va_list args) +{ + const char *prog_name, *log_buf; + + if (level != LIBBPF_WARN || + !strstr(format, "-- BEGIN PROG LOAD LOG --")) { + vprintf(format, args); + return 0; + } + + prog_name = va_arg(args, char *); + log_buf = va_arg(args, char *); + if (!log_buf) + goto out; + if (err_str && strstr(log_buf, err_str) != NULL) + found = true; +out: + printf(format, prog_name, log_buf); + return 0; +} + +static void test_invalid_license(void) +{ + libbpf_print_fn_t old_print_fn; + struct bpf_tcp_nogpl *skel; + + err_str = "struct ops programs must have a GPL compatible license"; + found = false; + old_print_fn = libbpf_set_print(libbpf_debug_print); + + skel = bpf_tcp_nogpl__open_and_load(); + ASSERT_NULL(skel, "bpf_tcp_nogpl"); + ASSERT_EQ(found, true, "expected_err_msg"); + + bpf_tcp_nogpl__destroy(skel); + libbpf_set_print(old_print_fn); +} + +static void test_dctcp_fallback(void) +{ + int err, lfd = -1, cli_fd = -1, srv_fd = -1; + struct network_helper_opts opts = { + .cc = "cubic", + }; + struct bpf_dctcp *dctcp_skel; + struct bpf_link *link = NULL; + char srv_cc[16]; + socklen_t cc_len = sizeof(srv_cc); + + dctcp_skel = bpf_dctcp__open(); + if (!ASSERT_OK_PTR(dctcp_skel, "dctcp_skel")) + return; + strcpy(dctcp_skel->rodata->fallback, "cubic"); + if (!ASSERT_OK(bpf_dctcp__load(dctcp_skel), "bpf_dctcp__load")) + goto done; + + link = bpf_map__attach_struct_ops(dctcp_skel->maps.dctcp); + if (!ASSERT_OK_PTR(link, "dctcp link")) + goto done; + + lfd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + if (!ASSERT_GE(lfd, 0, "lfd") || + !ASSERT_OK(settcpca(lfd, "bpf_dctcp"), "lfd=>bpf_dctcp")) + goto done; + + cli_fd = connect_to_fd_opts(lfd, &opts); + if (!ASSERT_GE(cli_fd, 0, "cli_fd")) + goto done; + + srv_fd = accept(lfd, NULL, 0); + if (!ASSERT_GE(srv_fd, 0, "srv_fd")) + goto done; + ASSERT_STREQ(dctcp_skel->bss->cc_res, "cubic", "cc_res"); + ASSERT_EQ(dctcp_skel->bss->tcp_cdg_res, -ENOTSUPP, "tcp_cdg_res"); + /* All setsockopt(TCP_CONGESTION) in the recurred + * bpf_dctcp->init() should fail with -EBUSY. + */ + ASSERT_EQ(dctcp_skel->bss->ebusy_cnt, 3, "ebusy_cnt"); + + err = getsockopt(srv_fd, SOL_TCP, TCP_CONGESTION, srv_cc, &cc_len); + if (!ASSERT_OK(err, "getsockopt(srv_fd, TCP_CONGESTION)")) + goto done; + ASSERT_STREQ(srv_cc, "cubic", "srv_fd cc"); + +done: + bpf_link__destroy(link); + bpf_dctcp__destroy(dctcp_skel); + if (lfd != -1) + close(lfd); + if (srv_fd != -1) + close(srv_fd); + if (cli_fd != -1) + close(cli_fd); +} + +static void test_rel_setsockopt(void) +{ + struct bpf_dctcp_release *rel_skel; + libbpf_print_fn_t old_print_fn; + + err_str = "program of this type cannot use helper bpf_setsockopt"; + found = false; + + old_print_fn = libbpf_set_print(libbpf_debug_print); + rel_skel = bpf_dctcp_release__open_and_load(); + libbpf_set_print(old_print_fn); + + ASSERT_ERR_PTR(rel_skel, "rel_skel"); + ASSERT_TRUE(found, "expected_err_msg"); + + bpf_dctcp_release__destroy(rel_skel); +} + +static void test_write_sk_pacing(void) +{ + struct tcp_ca_write_sk_pacing *skel; + struct bpf_link *link; + + skel = tcp_ca_write_sk_pacing__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + link = bpf_map__attach_struct_ops(skel->maps.write_sk_pacing); + ASSERT_OK_PTR(link, "attach_struct_ops"); + + bpf_link__destroy(link); + tcp_ca_write_sk_pacing__destroy(skel); +} + +static void test_incompl_cong_ops(void) +{ + struct tcp_ca_incompl_cong_ops *skel; + struct bpf_link *link; + + skel = tcp_ca_incompl_cong_ops__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + /* That cong_avoid() and cong_control() are missing is only reported at + * this point: + */ + link = bpf_map__attach_struct_ops(skel->maps.incompl_cong_ops); + ASSERT_ERR_PTR(link, "attach_struct_ops"); + + bpf_link__destroy(link); + tcp_ca_incompl_cong_ops__destroy(skel); +} + +static void test_unsupp_cong_op(void) +{ + libbpf_print_fn_t old_print_fn; + struct tcp_ca_unsupp_cong_op *skel; + + err_str = "attach to unsupported member get_info"; + found = false; + old_print_fn = libbpf_set_print(libbpf_debug_print); + + skel = tcp_ca_unsupp_cong_op__open_and_load(); + ASSERT_NULL(skel, "open_and_load"); + ASSERT_EQ(found, true, "expected_err_msg"); + + tcp_ca_unsupp_cong_op__destroy(skel); + libbpf_set_print(old_print_fn); +} + +static void test_update_ca(void) +{ + struct tcp_ca_update *skel; + struct bpf_link *link; + int saved_ca1_cnt; + int err; + + skel = tcp_ca_update__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open")) + return; + + link = bpf_map__attach_struct_ops(skel->maps.ca_update_1); + ASSERT_OK_PTR(link, "attach_struct_ops"); + + do_test("tcp_ca_update", NULL); + saved_ca1_cnt = skel->bss->ca1_cnt; + ASSERT_GT(saved_ca1_cnt, 0, "ca1_ca1_cnt"); + + err = bpf_link__update_map(link, skel->maps.ca_update_2); + ASSERT_OK(err, "update_map"); + + do_test("tcp_ca_update", NULL); + ASSERT_EQ(skel->bss->ca1_cnt, saved_ca1_cnt, "ca2_ca1_cnt"); + ASSERT_GT(skel->bss->ca2_cnt, 0, "ca2_ca2_cnt"); + + bpf_link__destroy(link); + tcp_ca_update__destroy(skel); +} + +static void test_update_wrong(void) +{ + struct tcp_ca_update *skel; + struct bpf_link *link; + int saved_ca1_cnt; + int err; + + skel = tcp_ca_update__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open")) + return; + + link = bpf_map__attach_struct_ops(skel->maps.ca_update_1); + ASSERT_OK_PTR(link, "attach_struct_ops"); + + do_test("tcp_ca_update", NULL); + saved_ca1_cnt = skel->bss->ca1_cnt; + ASSERT_GT(saved_ca1_cnt, 0, "ca1_ca1_cnt"); + + err = bpf_link__update_map(link, skel->maps.ca_wrong); + ASSERT_ERR(err, "update_map"); + + do_test("tcp_ca_update", NULL); + ASSERT_GT(skel->bss->ca1_cnt, saved_ca1_cnt, "ca2_ca1_cnt"); + + bpf_link__destroy(link); + tcp_ca_update__destroy(skel); +} + +static void test_mixed_links(void) +{ + struct tcp_ca_update *skel; + struct bpf_link *link, *link_nl; + int err; + + skel = tcp_ca_update__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open")) + return; + + link_nl = bpf_map__attach_struct_ops(skel->maps.ca_no_link); + ASSERT_OK_PTR(link_nl, "attach_struct_ops_nl"); + + link = bpf_map__attach_struct_ops(skel->maps.ca_update_1); + ASSERT_OK_PTR(link, "attach_struct_ops"); + + do_test("tcp_ca_update", NULL); + ASSERT_GT(skel->bss->ca1_cnt, 0, "ca1_ca1_cnt"); + + err = bpf_link__update_map(link, skel->maps.ca_no_link); + ASSERT_ERR(err, "update_map"); + + bpf_link__destroy(link); + bpf_link__destroy(link_nl); + tcp_ca_update__destroy(skel); +} + +static void test_multi_links(void) +{ + struct tcp_ca_update *skel; + struct bpf_link *link; + + skel = tcp_ca_update__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open")) + return; + + link = bpf_map__attach_struct_ops(skel->maps.ca_update_1); + ASSERT_OK_PTR(link, "attach_struct_ops_1st"); + bpf_link__destroy(link); + + /* A map should be able to be used to create links multiple + * times. + */ + link = bpf_map__attach_struct_ops(skel->maps.ca_update_1); + ASSERT_OK_PTR(link, "attach_struct_ops_2nd"); + bpf_link__destroy(link); + + tcp_ca_update__destroy(skel); +} + +static void test_link_replace(void) +{ + DECLARE_LIBBPF_OPTS(bpf_link_update_opts, opts); + struct tcp_ca_update *skel; + struct bpf_link *link; + int err; + + skel = tcp_ca_update__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open")) + return; + + link = bpf_map__attach_struct_ops(skel->maps.ca_update_1); + ASSERT_OK_PTR(link, "attach_struct_ops_1st"); + bpf_link__destroy(link); + + link = bpf_map__attach_struct_ops(skel->maps.ca_update_2); + ASSERT_OK_PTR(link, "attach_struct_ops_2nd"); + + /* BPF_F_REPLACE with a wrong old map Fd. It should fail! + * + * With BPF_F_REPLACE, the link should be updated only if the + * old map fd given here matches the map backing the link. + */ + opts.old_map_fd = bpf_map__fd(skel->maps.ca_update_1); + opts.flags = BPF_F_REPLACE; + err = bpf_link_update(bpf_link__fd(link), + bpf_map__fd(skel->maps.ca_update_1), + &opts); + ASSERT_ERR(err, "bpf_link_update_fail"); + + /* BPF_F_REPLACE with a correct old map Fd. It should success! */ + opts.old_map_fd = bpf_map__fd(skel->maps.ca_update_2); + err = bpf_link_update(bpf_link__fd(link), + bpf_map__fd(skel->maps.ca_update_1), + &opts); + ASSERT_OK(err, "bpf_link_update_success"); + + bpf_link__destroy(link); + + tcp_ca_update__destroy(skel); +} + +static void test_tcp_ca_kfunc(void) +{ + struct tcp_ca_kfunc *skel; + + skel = tcp_ca_kfunc__open_and_load(); + ASSERT_OK_PTR(skel, "tcp_ca_kfunc__open_and_load"); + tcp_ca_kfunc__destroy(skel); +} + +static void test_cc_cubic(void) +{ + struct bpf_cc_cubic *cc_cubic_skel; + struct bpf_link *link; + + cc_cubic_skel = bpf_cc_cubic__open_and_load(); + if (!ASSERT_OK_PTR(cc_cubic_skel, "bpf_cc_cubic__open_and_load")) + return; + + link = bpf_map__attach_struct_ops(cc_cubic_skel->maps.cc_cubic); + if (!ASSERT_OK_PTR(link, "bpf_map__attach_struct_ops")) { + bpf_cc_cubic__destroy(cc_cubic_skel); + return; + } + + do_test("bpf_cc_cubic", NULL); + + bpf_link__destroy(link); + bpf_cc_cubic__destroy(cc_cubic_skel); +} + void test_bpf_tcp_ca(void) { if (test__start_subtest("dctcp")) test_dctcp(); if (test__start_subtest("cubic")) test_cubic(); + if (test__start_subtest("invalid_license")) + test_invalid_license(); + if (test__start_subtest("dctcp_fallback")) + test_dctcp_fallback(); + if (test__start_subtest("rel_setsockopt")) + test_rel_setsockopt(); + if (test__start_subtest("write_sk_pacing")) + test_write_sk_pacing(); + if (test__start_subtest("incompl_cong_ops")) + test_incompl_cong_ops(); + if (test__start_subtest("unsupp_cong_op")) + test_unsupp_cong_op(); + if (test__start_subtest("update_ca")) + test_update_ca(); + if (test__start_subtest("update_wrong")) + test_update_wrong(); + if (test__start_subtest("mixed_links")) + test_mixed_links(); + if (test__start_subtest("multi_links")) + test_multi_links(); + if (test__start_subtest("link_replace")) + test_link_replace(); + if (test__start_subtest("tcp_ca_kfunc")) + test_tcp_ca_kfunc(); + if (test__start_subtest("cc_cubic")) + test_cc_cubic(); } diff --git a/tools/testing/selftests/bpf/prog_tests/bpf_verif_scale.c b/tools/testing/selftests/bpf/prog_tests/bpf_verif_scale.c index e9f2f12ba06b..4c6ada5b270b 100644 --- a/tools/testing/selftests/bpf/prog_tests/bpf_verif_scale.c +++ b/tools/testing/selftests/bpf/prog_tests/bpf_verif_scale.c @@ -19,16 +19,28 @@ extern int extra_prog_load_log_flags; static int check_load(const char *file, enum bpf_prog_type type) { - struct bpf_prog_load_attr attr; struct bpf_object *obj = NULL; - int err, prog_fd; - - memset(&attr, 0, sizeof(struct bpf_prog_load_attr)); - attr.file = file; - attr.prog_type = type; - attr.log_level = 4 | extra_prog_load_log_flags; - attr.prog_flags = BPF_F_TEST_RND_HI32; - err = bpf_prog_load_xattr(&attr, &obj, &prog_fd); + struct bpf_program *prog; + int err; + + obj = bpf_object__open_file(file, NULL); + err = libbpf_get_error(obj); + if (err) + return err; + + prog = bpf_object__next_program(obj, NULL); + if (!prog) { + err = -ENOENT; + goto err_out; + } + + bpf_program__set_type(prog, type); + bpf_program__set_flags(prog, testing_prog_flags()); + bpf_program__set_log_level(prog, 4 | extra_prog_load_log_flags); + + err = bpf_object__load(obj); + +err_out: bpf_object__close(obj); return err; } @@ -39,77 +51,189 @@ struct scale_test_def { bool fails; }; -void test_bpf_verif_scale(void) -{ - struct scale_test_def tests[] = { - { "loop3.o", BPF_PROG_TYPE_RAW_TRACEPOINT, true /* fails */ }, - - { "test_verif_scale1.o", BPF_PROG_TYPE_SCHED_CLS }, - { "test_verif_scale2.o", BPF_PROG_TYPE_SCHED_CLS }, - { "test_verif_scale3.o", BPF_PROG_TYPE_SCHED_CLS }, - - { "pyperf_global.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - - /* full unroll by llvm */ - { "pyperf50.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - { "pyperf100.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - { "pyperf180.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - - /* partial unroll. llvm will unroll loop ~150 times. - * C loop count -> 600. - * Asm loop count -> 4. - * 16k insns in loop body. - * Total of 5 such loops. Total program size ~82k insns. - */ - { "pyperf600.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - - /* no unroll at all. - * C loop count -> 600. - * ASM loop count -> 600. - * ~110 insns in loop body. - * Total of 5 such loops. Total program size ~1500 insns. - */ - { "pyperf600_nounroll.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - - { "loop1.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - { "loop2.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - { "loop4.o", BPF_PROG_TYPE_SCHED_CLS }, - { "loop5.o", BPF_PROG_TYPE_SCHED_CLS }, - - /* partial unroll. 19k insn in a loop. - * Total program size 20.8k insn. - * ~350k processed_insns - */ - { "strobemeta.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - - /* no unroll, tiny loops */ - { "strobemeta_nounroll1.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - { "strobemeta_nounroll2.o", BPF_PROG_TYPE_RAW_TRACEPOINT }, - - { "test_sysctl_loop1.o", BPF_PROG_TYPE_CGROUP_SYSCTL }, - { "test_sysctl_loop2.o", BPF_PROG_TYPE_CGROUP_SYSCTL }, - - { "test_xdp_loop.o", BPF_PROG_TYPE_XDP }, - { "test_seg6_loop.o", BPF_PROG_TYPE_LWT_SEG6LOCAL }, - }; +static void scale_test(const char *file, + enum bpf_prog_type attach_type, + bool should_fail) +{ libbpf_print_fn_t old_print_fn = NULL; - int err, i; + int err; if (env.verifier_stats) { test__force_log(); old_print_fn = libbpf_set_print(libbpf_debug_print); } - for (i = 0; i < ARRAY_SIZE(tests); i++) { - const struct scale_test_def *test = &tests[i]; - - if (!test__start_subtest(test->file)) - continue; - - err = check_load(test->file, test->attach_type); - CHECK_FAIL(err && !test->fails); - } + err = check_load(file, attach_type); + if (should_fail) + ASSERT_ERR(err, "expect_error"); + else + ASSERT_OK(err, "expect_success"); if (env.verifier_stats) libbpf_set_print(old_print_fn); } + +void test_verif_scale1() +{ + scale_test("test_verif_scale1.bpf.o", BPF_PROG_TYPE_SCHED_CLS, false); +} + +void test_verif_scale2() +{ + scale_test("test_verif_scale2.bpf.o", BPF_PROG_TYPE_SCHED_CLS, false); +} + +void test_verif_scale3() +{ + scale_test("test_verif_scale3.bpf.o", BPF_PROG_TYPE_SCHED_CLS, false); +} + +void test_verif_scale_pyperf_global() +{ + scale_test("pyperf_global.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_pyperf_subprogs() +{ + scale_test("pyperf_subprogs.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_pyperf50() +{ + /* full unroll by llvm */ + scale_test("pyperf50.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_pyperf100() +{ + /* full unroll by llvm */ + scale_test("pyperf100.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_pyperf180() +{ + /* full unroll by llvm */ + scale_test("pyperf180.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_pyperf600() +{ + /* partial unroll. llvm will unroll loop ~150 times. + * C loop count -> 600. + * Asm loop count -> 4. + * 16k insns in loop body. + * Total of 5 such loops. Total program size ~82k insns. + */ + scale_test("pyperf600.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_pyperf600_bpf_loop(void) +{ + /* use the bpf_loop helper*/ + scale_test("pyperf600_bpf_loop.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_pyperf600_nounroll() +{ + /* no unroll at all. + * C loop count -> 600. + * ASM loop count -> 600. + * ~110 insns in loop body. + * Total of 5 such loops. Total program size ~1500 insns. + */ + scale_test("pyperf600_nounroll.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_pyperf600_iter() +{ + /* open-coded BPF iterator version */ + scale_test("pyperf600_iter.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_loop1() +{ + scale_test("loop1.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_loop2() +{ + scale_test("loop2.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_loop3_fail() +{ + scale_test("loop3.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, true /* fails */); +} + +void test_verif_scale_loop4() +{ + scale_test("loop4.bpf.o", BPF_PROG_TYPE_SCHED_CLS, false); +} + +void test_verif_scale_loop5() +{ + scale_test("loop5.bpf.o", BPF_PROG_TYPE_SCHED_CLS, false); +} + +void test_verif_scale_loop6() +{ + scale_test("loop6.bpf.o", BPF_PROG_TYPE_KPROBE, false); +} + +void test_verif_scale_strobemeta() +{ + /* partial unroll. 19k insn in a loop. + * Total program size 20.8k insn. + * ~350k processed_insns + */ + scale_test("strobemeta.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_strobemeta_bpf_loop(void) +{ + /* use the bpf_loop helper*/ + scale_test("strobemeta_bpf_loop.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_strobemeta_nounroll1() +{ + /* no unroll, tiny loops */ + scale_test("strobemeta_nounroll1.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_strobemeta_nounroll2() +{ + /* no unroll, tiny loops */ + scale_test("strobemeta_nounroll2.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_strobemeta_subprogs() +{ + /* non-inlined subprogs */ + scale_test("strobemeta_subprogs.bpf.o", BPF_PROG_TYPE_RAW_TRACEPOINT, false); +} + +void test_verif_scale_sysctl_loop1() +{ + scale_test("test_sysctl_loop1.bpf.o", BPF_PROG_TYPE_CGROUP_SYSCTL, false); +} + +void test_verif_scale_sysctl_loop2() +{ + scale_test("test_sysctl_loop2.bpf.o", BPF_PROG_TYPE_CGROUP_SYSCTL, false); +} + +void test_verif_scale_xdp_loop() +{ + scale_test("test_xdp_loop.bpf.o", BPF_PROG_TYPE_XDP, false); +} + +void test_verif_scale_seg6_loop() +{ + scale_test("test_seg6_loop.bpf.o", BPF_PROG_TYPE_LWT_SEG6LOCAL, false); +} + +void test_verif_twfw() +{ + scale_test("twfw.bpf.o", BPF_PROG_TYPE_CGROUP_SKB, false); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf.c b/tools/testing/selftests/bpf/prog_tests/btf.c new file mode 100644 index 000000000000..00965a6e83bb --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/btf.c @@ -0,0 +1,8206 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* Copyright (c) 2018 Facebook */ + +#include <linux/bpf.h> +#include <linux/btf.h> +#include <linux/err.h> +#include <linux/kernel.h> +#include <linux/filter.h> +#include <linux/unistd.h> +#include <bpf/bpf.h> +#include <libelf.h> +#include <gelf.h> +#include <string.h> +#include <stdlib.h> +#include <stdio.h> +#include <stdarg.h> +#include <unistd.h> +#include <fcntl.h> +#include <errno.h> +#include <assert.h> +#include <bpf/libbpf.h> +#include <bpf/btf.h> + +#include "bpf_util.h" +#include "../test_btf.h" +#include "test_progs.h" + +#define MAX_INSNS 512 +#define MAX_SUBPROGS 16 + +static int duration = 0; +static bool always_log; + +#undef CHECK +#define CHECK(condition, format...) _CHECK(condition, "check", duration, format) + +#define NAME_TBD 0xdeadb33f + +#define NAME_NTH(N) (0xfffe0000 | N) +#define IS_NAME_NTH(X) ((X & 0xffff0000) == 0xfffe0000) +#define GET_NAME_NTH_IDX(X) (X & 0x0000ffff) + +#define MAX_NR_RAW_U32 1024 +#define BTF_LOG_BUF_SIZE 65535 + +static char btf_log_buf[BTF_LOG_BUF_SIZE]; + +static struct btf_header hdr_tmpl = { + .magic = BTF_MAGIC, + .version = BTF_VERSION, + .hdr_len = sizeof(struct btf_header), +}; + +/* several different mapv kinds(types) supported by pprint */ +enum pprint_mapv_kind_t { + PPRINT_MAPV_KIND_BASIC = 0, + PPRINT_MAPV_KIND_INT128, +}; + +struct btf_raw_test { + const char *descr; + const char *str_sec; + const char *map_name; + const char *err_str; + __u32 raw_types[MAX_NR_RAW_U32]; + __u32 str_sec_size; + enum bpf_map_type map_type; + __u32 key_size; + __u32 value_size; + __u32 key_type_id; + __u32 value_type_id; + __u32 max_entries; + bool btf_load_err; + bool map_create_err; + bool ordered_map; + bool lossless_map; + bool percpu_map; + int hdr_len_delta; + int type_off_delta; + int str_off_delta; + int str_len_delta; + enum pprint_mapv_kind_t mapv_kind; +}; + +#define BTF_STR_SEC(str) \ + .str_sec = str, .str_sec_size = sizeof(str) + +static struct btf_raw_test raw_tests[] = { +/* enum E { + * E0, + * E1, + * }; + * + * struct A { + * unsigned long long m; + * int n; + * char o; + * [3 bytes hole] + * int p[8]; + * int q[4][8]; + * enum E r; + * }; + */ +{ + .descr = "struct test #1", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 6), 180), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + BTF_MEMBER_ENC(NAME_TBD, 6, 384),/* int q[4][8] */ + BTF_MEMBER_ENC(NAME_TBD, 7, 1408), /* enum E r */ + /* } */ + /* int[4][8] */ + BTF_TYPE_ARRAY_ENC(4, 1, 4), /* [6] */ + /* enum E */ /* [7] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 2), sizeof(int)), + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_ENUM_ENC(NAME_TBD, 1), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0q\0r\0E\0E0\0E1", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0q\0r\0E\0E0\0E1"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_test1_map", + .key_size = sizeof(int), + .value_size = 180, + .key_type_id = 1, + .value_type_id = 5, + .max_entries = 4, +}, + +/* typedef struct b Struct_B; + * + * struct A { + * int m; + * struct b n[4]; + * const Struct_B o[4]; + * }; + * + * struct B { + * int m; + * int n; + * }; + */ +{ + .descr = "struct test #2", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* struct b [4] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(4, 1, 4), + + /* struct A { */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 3), 68), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int m; */ + BTF_MEMBER_ENC(NAME_TBD, 2, 32),/* struct B n[4] */ + BTF_MEMBER_ENC(NAME_TBD, 8, 288),/* const Struct_B o[4];*/ + /* } */ + + /* struct B { */ /* [4] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), 8), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int m; */ + BTF_MEMBER_ENC(NAME_TBD, 1, 32),/* int n; */ + /* } */ + + /* const int */ /* [5] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 1), + /* typedef struct b Struct_B */ /* [6] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_TYPEDEF, 0, 0), 4), + /* const Struct_B */ /* [7] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 6), + /* const Struct_B [4] */ /* [8] */ + BTF_TYPE_ARRAY_ENC(7, 1, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0B\0m\0n\0Struct_B", + .str_sec_size = sizeof("\0A\0m\0n\0o\0B\0m\0n\0Struct_B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_test2_map", + .key_size = sizeof(int), + .value_size = 68, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 4, +}, +{ + .descr = "struct test #3 Invalid member offset", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int64 */ /* [2] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 64, 8), + + /* struct A { */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), 16), + BTF_MEMBER_ENC(NAME_TBD, 1, 64), /* int m; */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* int64 n; */ + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0", + .str_sec_size = sizeof("\0A\0m\0n\0"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_test3_map", + .key_size = sizeof(int), + .value_size = 16, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid member bits_offset", +}, +/* + * struct A { + * unsigned long long m; + * int n; + * char o; + * [3 bytes hole] + * int p[8]; + * }; + */ +{ + .descr = "global data test #1", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_test1_map", + .key_size = sizeof(int), + .value_size = 48, + .key_type_id = 1, + .value_type_id = 5, + .max_entries = 4, +}, +/* + * struct A { + * unsigned long long m; + * int n; + * char o; + * [3 bytes hole] + * int p[8]; + * }; + * static struct A t; <- in .bss + */ +{ + .descr = "global data test #2", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + /* static struct A t */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + /* .bss section */ /* [7] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 48), + BTF_VAR_SECINFO_ENC(6, 0, 48), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0t\0.bss", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 48, + .key_type_id = 0, + .value_type_id = 7, + .max_entries = 1, +}, +{ + .descr = "global data test #3", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* static int t */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + /* .bss section */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(2, 0, 4), + BTF_END_RAW, + }, + .str_sec = "\0t\0.bss", + .str_sec_size = sizeof("\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 3, + .max_entries = 1, +}, +{ + .descr = "global data test #4, unsupported linkage", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* static int t */ + BTF_VAR_ENC(NAME_TBD, 1, 2), /* [2] */ + /* .bss section */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(2, 0, 4), + BTF_END_RAW, + }, + .str_sec = "\0t\0.bss", + .str_sec_size = sizeof("\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 3, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Linkage not supported", +}, +{ + .descr = "global data test #5, invalid var type", + .raw_types = { + /* static void t */ + BTF_VAR_ENC(NAME_TBD, 0, 0), /* [1] */ + /* .bss section */ /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(1, 0, 4), + BTF_END_RAW, + }, + .str_sec = "\0t\0.bss", + .str_sec_size = sizeof("\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 2, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type_id", +}, +{ + .descr = "global data test #6, invalid var type (fwd type)", + .raw_types = { + /* union A */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_FWD, 1, 0), 0), /* [1] */ + /* static union A t */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + /* .bss section */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(2, 0, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0.bss", + .str_sec_size = sizeof("\0A\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 2, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type", +}, +{ + .descr = "global data test #7, invalid var type (fwd type)", + .raw_types = { + /* union A */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_FWD, 1, 0), 0), /* [1] */ + /* static union A t */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + /* .bss section */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(1, 0, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0.bss", + .str_sec_size = sizeof("\0A\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 2, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type", +}, +{ + .descr = "global data test #8, invalid var size", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + /* static struct A t */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + /* .bss section */ /* [7] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 48), + BTF_VAR_SECINFO_ENC(6, 0, 47), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0t\0.bss", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 48, + .key_type_id = 0, + .value_type_id = 7, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid size", +}, +{ + .descr = "global data test #9, invalid var size", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + /* static struct A t */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + /* .bss section */ /* [7] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 46), + BTF_VAR_SECINFO_ENC(6, 0, 48), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0t\0.bss", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 48, + .key_type_id = 0, + .value_type_id = 7, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid size", +}, +{ + .descr = "global data test #10, invalid var size", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + /* static struct A t */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + /* .bss section */ /* [7] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 46), + BTF_VAR_SECINFO_ENC(6, 0, 46), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0t\0.bss", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 48, + .key_type_id = 0, + .value_type_id = 7, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid size", +}, +{ + .descr = "global data test #11, multiple section members", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + /* static struct A t */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + /* static int u */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [7] */ + /* .bss section */ /* [8] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 2), 62), + BTF_VAR_SECINFO_ENC(6, 10, 48), + BTF_VAR_SECINFO_ENC(7, 58, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0t\0u\0.bss", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0t\0u\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 62, + .key_type_id = 0, + .value_type_id = 8, + .max_entries = 1, +}, +{ + .descr = "global data test #12, invalid offset", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + /* static struct A t */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + /* static int u */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [7] */ + /* .bss section */ /* [8] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 2), 62), + BTF_VAR_SECINFO_ENC(6, 10, 48), + BTF_VAR_SECINFO_ENC(7, 60, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0t\0u\0.bss", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0t\0u\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 62, + .key_type_id = 0, + .value_type_id = 8, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid offset+size", +}, +{ + .descr = "global data test #13, invalid offset", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + /* static struct A t */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + /* static int u */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [7] */ + /* .bss section */ /* [8] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 2), 62), + BTF_VAR_SECINFO_ENC(6, 10, 48), + BTF_VAR_SECINFO_ENC(7, 12, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0t\0u\0.bss", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0t\0u\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 62, + .key_type_id = 0, + .value_type_id = 8, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid offset", +}, +{ + .descr = "global data test #14, invalid offset", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* unsigned long long */ + BTF_TYPE_INT_ENC(0, 0, 0, 64, 8), /* [2] */ + /* char */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), /* [3] */ + /* int[8] */ + BTF_TYPE_ARRAY_ENC(1, 1, 8), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 4), 48), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* unsigned long long m;*/ + BTF_MEMBER_ENC(NAME_TBD, 1, 64),/* int n; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 96),/* char o; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 128),/* int p[8] */ + /* } */ + /* static struct A t */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + /* static int u */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [7] */ + /* .bss section */ /* [8] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 2), 62), + BTF_VAR_SECINFO_ENC(7, 58, 4), + BTF_VAR_SECINFO_ENC(6, 10, 48), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n\0o\0p\0t\0u\0.bss", + .str_sec_size = sizeof("\0A\0m\0n\0o\0p\0t\0u\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 62, + .key_type_id = 0, + .value_type_id = 8, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid offset", +}, +{ + .descr = "global data test #15, not var kind", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + /* .bss section */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(1, 0, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0.bss", + .str_sec_size = sizeof("\0A\0t\0.bss"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 3, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Not a VAR kind member", +}, +{ + .descr = "global data test #16, invalid var referencing sec", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [2] */ + BTF_VAR_ENC(NAME_TBD, 2, 0), /* [3] */ + /* a section */ /* [4] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(3, 0, 4), + /* a section */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(6, 0, 4), + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [6] */ + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0s\0a\0a", + .str_sec_size = sizeof("\0A\0t\0s\0a\0a"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 4, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type_id", +}, +{ + .descr = "global data test #17, invalid var referencing var", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + BTF_VAR_ENC(NAME_TBD, 2, 0), /* [3] */ + /* a section */ /* [4] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(3, 0, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0s\0a\0a", + .str_sec_size = sizeof("\0A\0t\0s\0a\0a"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 4, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type_id", +}, +{ + .descr = "global data test #18, invalid var loop", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 2, 0), /* [2] */ + /* .bss section */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(2, 0, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0aaa", + .str_sec_size = sizeof("\0A\0t\0aaa"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 4, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type_id", +}, +{ + .descr = "global data test #19, invalid var referencing var", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 3, 0), /* [2] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [3] */ + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0s\0a\0a", + .str_sec_size = sizeof("\0A\0t\0s\0a\0a"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 4, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type_id", +}, +{ + .descr = "global data test #20, invalid ptr referencing var", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* PTR type_id=3 */ /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 3), + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [3] */ + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0s\0a\0a", + .str_sec_size = sizeof("\0A\0t\0s\0a\0a"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 4, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type_id", +}, +{ + .descr = "global data test #21, var included in struct", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* struct A { */ /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), sizeof(int) * 2), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int m; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 32),/* VAR type_id=3; */ + /* } */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [3] */ + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0s\0a\0a", + .str_sec_size = sizeof("\0A\0t\0s\0a\0a"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 4, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid member", +}, +{ + .descr = "global data test #22, array of var", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ARRAY_ENC(3, 1, 4), /* [2] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [3] */ + BTF_END_RAW, + }, + .str_sec = "\0A\0t\0s\0a\0a", + .str_sec_size = sizeof("\0A\0t\0s\0a\0a"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 0, + .value_type_id = 4, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid elem", +}, +{ + .descr = "var after datasec, ptr followed by modifier", + .raw_types = { + /* .bss section */ /* [1] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 2), + sizeof(void*)+4), + BTF_VAR_SECINFO_ENC(4, 0, sizeof(void*)), + BTF_VAR_SECINFO_ENC(6, sizeof(void*), 4), + /* int */ /* [2] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int* */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 2), + BTF_VAR_ENC(NAME_TBD, 3, 0), /* [4] */ + /* const int */ /* [5] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 2), + BTF_VAR_ENC(NAME_TBD, 5, 0), /* [6] */ + BTF_END_RAW, + }, + .str_sec = "\0a\0b\0c\0", + .str_sec_size = sizeof("\0a\0b\0c\0"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = ".bss", + .key_size = sizeof(int), + .value_size = sizeof(void*)+4, + .key_type_id = 0, + .value_type_id = 1, + .max_entries = 1, +}, +/* Test member exceeds the size of struct. + * + * struct A { + * int m; + * int n; + * }; + */ +{ + .descr = "size check test #1", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* struct A { */ /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), sizeof(int) * 2 - 1), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int m; */ + BTF_MEMBER_ENC(NAME_TBD, 1, 32),/* int n; */ + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n", + .str_sec_size = sizeof("\0A\0m\0n"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "size_check1_map", + .key_size = sizeof(int), + .value_size = 1, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Member exceeds struct_size", +}, + +/* Test member exceeds the size of struct + * + * struct A { + * int m; + * int n[2]; + * }; + */ +{ + .descr = "size check test #2", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, sizeof(int)), + /* int[2] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(1, 1, 2), + /* struct A { */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), sizeof(int) * 3 - 1), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int m; */ + BTF_MEMBER_ENC(NAME_TBD, 2, 32),/* int n[2]; */ + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n", + .str_sec_size = sizeof("\0A\0m\0n"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "size_check2_map", + .key_size = sizeof(int), + .value_size = 1, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Member exceeds struct_size", +}, + +/* Test member exceeds the size of struct + * + * struct A { + * int m; + * void *n; + * }; + */ +{ + .descr = "size check test #3", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, sizeof(int)), + /* void* */ /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 0), + /* struct A { */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), sizeof(int) + sizeof(void *) - 1), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int m; */ + BTF_MEMBER_ENC(NAME_TBD, 2, 32),/* void *n; */ + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0n", + .str_sec_size = sizeof("\0A\0m\0n"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "size_check3_map", + .key_size = sizeof(int), + .value_size = 1, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Member exceeds struct_size", +}, + +/* Test member exceeds the size of struct + * + * enum E { + * E0, + * E1, + * }; + * + * struct A { + * int m; + * enum E n; + * }; + */ +{ + .descr = "size check test #4", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, sizeof(int)), + /* enum E { */ /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 2), sizeof(int)), + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_ENUM_ENC(NAME_TBD, 1), + /* } */ + /* struct A { */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), sizeof(int) * 2 - 1), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int m; */ + BTF_MEMBER_ENC(NAME_TBD, 2, 32),/* enum E n; */ + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0E\0E0\0E1\0A\0m\0n", + .str_sec_size = sizeof("\0E\0E0\0E1\0A\0m\0n"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "size_check4_map", + .key_size = sizeof(int), + .value_size = 1, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Member exceeds struct_size", +}, + +/* Test member unexceeds the size of struct + * + * enum E { + * E0, + * E1, + * }; + * + * struct A { + * char m; + * enum E __attribute__((packed)) n; + * }; + */ +{ + .descr = "size check test #5", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, sizeof(int)), + /* char */ /* [2] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 8, 1), + /* enum E { */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 2), 1), + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_ENUM_ENC(NAME_TBD, 1), + /* } */ + /* struct A { */ /* [4] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), 2), + BTF_MEMBER_ENC(NAME_TBD, 2, 0), /* char m; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 8),/* enum E __attribute__((packed)) n; */ + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0E\0E0\0E1\0A\0m\0n", + .str_sec_size = sizeof("\0E\0E0\0E1\0A\0m\0n"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "size_check5_map", + .key_size = sizeof(int), + .value_size = 2, + .key_type_id = 1, + .value_type_id = 4, + .max_entries = 4, +}, + +/* typedef const void * const_void_ptr; + * struct A { + * const_void_ptr m; + * }; + */ +{ + .descr = "void test #1", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* const void */ /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 0), + /* const void* */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 2), + /* typedef const void * const_void_ptr */ + BTF_TYPEDEF_ENC(NAME_TBD, 3), /* [4] */ + /* struct A { */ /* [5] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), sizeof(void *)), + /* const_void_ptr m; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 0), + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0const_void_ptr\0A\0m", + .str_sec_size = sizeof("\0const_void_ptr\0A\0m"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "void_test1_map", + .key_size = sizeof(int), + .value_size = sizeof(void *), + .key_type_id = 1, + .value_type_id = 4, + .max_entries = 4, +}, + +/* struct A { + * const void m; + * }; + */ +{ + .descr = "void test #2", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* const void */ /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 0), + /* struct A { */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), 8), + /* const void m; */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + /* } */ + BTF_END_RAW, + }, + .str_sec = "\0A\0m", + .str_sec_size = sizeof("\0A\0m"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "void_test2_map", + .key_size = sizeof(int), + .value_size = sizeof(void *), + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid member", +}, + +/* typedef const void * const_void_ptr; + * const_void_ptr[4] + */ +{ + .descr = "void test #3", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* const void */ /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 0), + /* const void* */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 2), + /* typedef const void * const_void_ptr */ + BTF_TYPEDEF_ENC(NAME_TBD, 3), /* [4] */ + /* const_void_ptr[4] */ + BTF_TYPE_ARRAY_ENC(4, 1, 4), /* [5] */ + BTF_END_RAW, + }, + .str_sec = "\0const_void_ptr", + .str_sec_size = sizeof("\0const_void_ptr"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "void_test3_map", + .key_size = sizeof(int), + .value_size = sizeof(void *) * 4, + .key_type_id = 1, + .value_type_id = 5, + .max_entries = 4, +}, + +/* const void[4] */ +{ + .descr = "void test #4", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* const void */ /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 0), + /* const void[4] */ /* [3] */ + BTF_TYPE_ARRAY_ENC(2, 1, 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0m", + .str_sec_size = sizeof("\0A\0m"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "void_test4_map", + .key_size = sizeof(int), + .value_size = sizeof(void *) * 4, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid elem", +}, + +/* Array_A <------------------+ + * elem_type == Array_B | + * | | + * | | + * Array_B <-------- + | + * elem_type == Array A --+ + */ +{ + .descr = "loop test #1", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* Array_A */ /* [2] */ + BTF_TYPE_ARRAY_ENC(3, 1, 8), + /* Array_B */ /* [3] */ + BTF_TYPE_ARRAY_ENC(2, 1, 8), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "loop_test1_map", + .key_size = sizeof(int), + .value_size = sizeof(sizeof(int) * 8), + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Loop detected", +}, + +/* typedef is _before_ the BTF type of Array_A and Array_B + * + * typedef Array_B int_array; + * + * Array_A <------------------+ + * elem_type == int_array | + * | | + * | | + * Array_B <-------- + | + * elem_type == Array_A --+ + */ +{ + .descr = "loop test #2", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* typedef Array_B int_array */ + BTF_TYPEDEF_ENC(1, 4), /* [2] */ + /* Array_A */ + BTF_TYPE_ARRAY_ENC(2, 1, 8), /* [3] */ + /* Array_B */ + BTF_TYPE_ARRAY_ENC(3, 1, 8), /* [4] */ + BTF_END_RAW, + }, + .str_sec = "\0int_array\0", + .str_sec_size = sizeof("\0int_array"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "loop_test2_map", + .key_size = sizeof(int), + .value_size = sizeof(sizeof(int) * 8), + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Loop detected", +}, + +/* Array_A <------------------+ + * elem_type == Array_B | + * | | + * | | + * Array_B <-------- + | + * elem_type == Array_A --+ + */ +{ + .descr = "loop test #3", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* Array_A */ /* [2] */ + BTF_TYPE_ARRAY_ENC(3, 1, 8), + /* Array_B */ /* [3] */ + BTF_TYPE_ARRAY_ENC(2, 1, 8), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "loop_test3_map", + .key_size = sizeof(int), + .value_size = sizeof(sizeof(int) * 8), + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Loop detected", +}, + +/* typedef is _between_ the BTF type of Array_A and Array_B + * + * typedef Array_B int_array; + * + * Array_A <------------------+ + * elem_type == int_array | + * | | + * | | + * Array_B <-------- + | + * elem_type == Array_A --+ + */ +{ + .descr = "loop test #4", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* Array_A */ /* [2] */ + BTF_TYPE_ARRAY_ENC(3, 1, 8), + /* typedef Array_B int_array */ /* [3] */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), + /* Array_B */ /* [4] */ + BTF_TYPE_ARRAY_ENC(2, 1, 8), + BTF_END_RAW, + }, + .str_sec = "\0int_array\0", + .str_sec_size = sizeof("\0int_array"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "loop_test4_map", + .key_size = sizeof(int), + .value_size = sizeof(sizeof(int) * 8), + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Loop detected", +}, + +/* typedef struct B Struct_B + * + * struct A { + * int x; + * Struct_B y; + * }; + * + * struct B { + * int x; + * struct A y; + * }; + */ +{ + .descr = "loop test #5", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* struct A */ /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), 8), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int x; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 32),/* Struct_B y; */ + /* typedef struct B Struct_B */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), /* [3] */ + /* struct B */ /* [4] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), 8), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int x; */ + BTF_MEMBER_ENC(NAME_TBD, 2, 32),/* struct A y; */ + BTF_END_RAW, + }, + .str_sec = "\0A\0x\0y\0Struct_B\0B\0x\0y", + .str_sec_size = sizeof("\0A\0x\0y\0Struct_B\0B\0x\0y"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "loop_test5_map", + .key_size = sizeof(int), + .value_size = 8, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Loop detected", +}, + +/* struct A { + * int x; + * struct A array_a[4]; + * }; + */ +{ + .descr = "loop test #6", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ARRAY_ENC(3, 1, 4), /* [2] */ + /* struct A */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 2), 8), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), /* int x; */ + BTF_MEMBER_ENC(NAME_TBD, 2, 32),/* struct A array_a[4]; */ + BTF_END_RAW, + }, + .str_sec = "\0A\0x\0y", + .str_sec_size = sizeof("\0A\0x\0y"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "loop_test6_map", + .key_size = sizeof(int), + .value_size = 8, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Loop detected", +}, + +{ + .descr = "loop test #7", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* struct A { */ /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), sizeof(void *)), + /* const void *m; */ + BTF_MEMBER_ENC(NAME_TBD, 3, 0), + /* CONST type_id=3 */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 4), + /* PTR type_id=2 */ /* [4] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 3), + BTF_END_RAW, + }, + .str_sec = "\0A\0m", + .str_sec_size = sizeof("\0A\0m"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "loop_test7_map", + .key_size = sizeof(int), + .value_size = sizeof(void *), + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Loop detected", +}, + +{ + .descr = "loop test #8", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* struct A { */ /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), sizeof(void *)), + /* const void *m; */ + BTF_MEMBER_ENC(NAME_TBD, 4, 0), + /* struct B { */ /* [3] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), sizeof(void *)), + /* const void *n; */ + BTF_MEMBER_ENC(NAME_TBD, 6, 0), + /* CONST type_id=5 */ /* [4] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 5), + /* PTR type_id=6 */ /* [5] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 6), + /* CONST type_id=7 */ /* [6] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 7), + /* PTR type_id=4 */ /* [7] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 4), + BTF_END_RAW, + }, + .str_sec = "\0A\0m\0B\0n", + .str_sec_size = sizeof("\0A\0m\0B\0n"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "loop_test8_map", + .key_size = sizeof(int), + .value_size = sizeof(void *), + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Loop detected", +}, + +{ + .descr = "string section does not end with null", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "\0int", + .str_sec_size = sizeof("\0int") - 1, + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid string section", +}, + +{ + .descr = "empty string section", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = 0, + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid string section", +}, + +{ + .descr = "empty type section", + .raw_types = { + BTF_END_RAW, + }, + .str_sec = "\0int", + .str_sec_size = sizeof("\0int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "No type found", +}, + +{ + .descr = "btf_header test. Longer hdr_len", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "\0int", + .str_sec_size = sizeof("\0int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .hdr_len_delta = 4, + .err_str = "Unsupported btf_header", +}, + +{ + .descr = "btf_header test. Gap between hdr and type", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "\0int", + .str_sec_size = sizeof("\0int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .type_off_delta = 4, + .err_str = "Unsupported section found", +}, + +{ + .descr = "btf_header test. Gap between type and str", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "\0int", + .str_sec_size = sizeof("\0int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .str_off_delta = 4, + .err_str = "Unsupported section found", +}, + +{ + .descr = "btf_header test. Overlap between type and str", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "\0int", + .str_sec_size = sizeof("\0int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .str_off_delta = -4, + .err_str = "Section overlap found", +}, + +{ + .descr = "btf_header test. Larger BTF size", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "\0int", + .str_sec_size = sizeof("\0int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .str_len_delta = -4, + .err_str = "Unsupported section found", +}, + +{ + .descr = "btf_header test. Smaller BTF size", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "\0int", + .str_sec_size = sizeof("\0int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "hdr_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .str_len_delta = 4, + .err_str = "Total section length too long", +}, + +{ + .descr = "array test. index_type/elem_type \"int\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int[16] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(1, 1, 16), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "array test. index_type/elem_type \"const int\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int[16] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(3, 3, 16), + /* CONST type_id=1 */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 1), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "array test. index_type \"const int:31\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int:31 */ /* [2] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 31, 4), + /* int[16] */ /* [3] */ + BTF_TYPE_ARRAY_ENC(1, 4, 16), + /* CONST type_id=2 */ /* [4] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 2), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid index", +}, + +{ + .descr = "array test. elem_type \"const int:31\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int:31 */ /* [2] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 31, 4), + /* int[16] */ /* [3] */ + BTF_TYPE_ARRAY_ENC(4, 1, 16), + /* CONST type_id=2 */ /* [4] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 2), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid array of int", +}, + +{ + .descr = "array test. index_type \"void\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int[16] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(1, 0, 16), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid index", +}, + +{ + .descr = "array test. index_type \"const void\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int[16] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(1, 3, 16), + /* CONST type_id=0 (void) */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 0), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid index", +}, + +{ + .descr = "array test. elem_type \"const void\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int[16] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(3, 1, 16), + /* CONST type_id=0 (void) */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 0), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid elem", +}, + +{ + .descr = "array test. elem_type \"const void *\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* const void *[16] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(3, 1, 16), + /* CONST type_id=4 */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 4), + /* void* */ /* [4] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 0), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "array test. index_type \"const void *\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* const void *[16] */ /* [2] */ + BTF_TYPE_ARRAY_ENC(3, 3, 16), + /* CONST type_id=4 */ /* [3] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 4), + /* void* */ /* [4] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 0), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid index", +}, + +{ + .descr = "array test. t->size != 0\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* int[16] */ /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ARRAY, 0, 0), 1), + BTF_ARRAY_ENC(1, 1, 16), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "size != 0", +}, + +{ + .descr = "int test. invalid int_data", + .raw_types = { + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_INT, 0, 0), 4), + 0x10000000, + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid int_data", +}, + +{ + .descr = "invalid BTF_INFO", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + BTF_TYPE_ENC(0, 0x20000000, 4), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info", +}, + +{ + .descr = "fwd test. t->type != 0\"", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* fwd type */ /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_FWD, 0, 0), 1), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "fwd_test_map", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "type != 0", +}, + +{ + .descr = "typedef (invalid name, name_off = 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPEDEF_ENC(0, 1), /* [2] */ + BTF_END_RAW, + }, + .str_sec = "\0__int", + .str_sec_size = sizeof("\0__int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "typedef_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "typedef (invalid name, invalid identifier)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPEDEF_ENC(NAME_TBD, 1), /* [2] */ + BTF_END_RAW, + }, + .str_sec = "\0__!int", + .str_sec_size = sizeof("\0__!int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "typedef_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "ptr type (invalid name, name_off <> 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 1), /* [2] */ + BTF_END_RAW, + }, + .str_sec = "\0__int", + .str_sec_size = sizeof("\0__int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "ptr_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "volatile type (invalid name, name_off <> 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_VOLATILE, 0, 0), 1), /* [2] */ + BTF_END_RAW, + }, + .str_sec = "\0__int", + .str_sec_size = sizeof("\0__int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "volatile_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "const type (invalid name, name_off <> 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 1), /* [2] */ + BTF_END_RAW, + }, + .str_sec = "\0__int", + .str_sec_size = sizeof("\0__int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "const_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "restrict type (invalid name, name_off <> 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 1), /* [2] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_RESTRICT, 0, 0), 2), /* [3] */ + BTF_END_RAW, + }, + .str_sec = "\0__int", + .str_sec_size = sizeof("\0__int"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "restrict_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "fwd type (invalid name, name_off = 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_FWD, 0, 0), 0), /* [2] */ + BTF_END_RAW, + }, + .str_sec = "\0__skb", + .str_sec_size = sizeof("\0__skb"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "fwd_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "fwd type (invalid name, invalid identifier)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_FWD, 0, 0), 0), /* [2] */ + BTF_END_RAW, + }, + .str_sec = "\0__!skb", + .str_sec_size = sizeof("\0__!skb"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "fwd_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "array type (invalid name, name_off <> 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_ARRAY, 0, 0), 0), /* [2] */ + BTF_ARRAY_ENC(1, 1, 4), + BTF_END_RAW, + }, + .str_sec = "\0__skb", + .str_sec_size = sizeof("\0__skb"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "struct type (name_off = 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, + BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), 4), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_END_RAW, + }, + .str_sec = "\0A", + .str_sec_size = sizeof("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "struct type (invalid name, invalid identifier)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), 4), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_END_RAW, + }, + .str_sec = "\0A!\0B", + .str_sec_size = sizeof("\0A!\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "struct member (name_off = 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, + BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), 4), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_END_RAW, + }, + .str_sec = "\0A", + .str_sec_size = sizeof("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "struct member (invalid name, invalid identifier)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), 4), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_END_RAW, + }, + .str_sec = "\0A\0B*", + .str_sec_size = sizeof("\0A\0B*"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "enum type (name_off = 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, + BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), + sizeof(int)), /* [2] */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_END_RAW, + }, + .str_sec = "\0A\0B", + .str_sec_size = sizeof("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "enum_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "enum type (invalid name, invalid identifier)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), + sizeof(int)), /* [2] */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_END_RAW, + }, + .str_sec = "\0A!\0B", + .str_sec_size = sizeof("\0A!\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "enum_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "enum member (invalid name, name_off = 0)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, + BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), + sizeof(int)), /* [2] */ + BTF_ENUM_ENC(0, 0), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "enum_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "enum member (invalid name, invalid identifier)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, + BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), + sizeof(int)), /* [2] */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_END_RAW, + }, + .str_sec = "\0A!", + .str_sec_size = sizeof("\0A!"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "enum_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, +{ + .descr = "arraymap invalid btf key (a bit field)", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* 32 bit int with 32 bit offset */ /* [2] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 32, 32, 8), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_map_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 2, + .value_type_id = 1, + .max_entries = 4, + .map_create_err = true, +}, + +{ + .descr = "arraymap invalid btf key (!= 32 bits)", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* 16 bit int with 0 bit offset */ /* [2] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 16, 2), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_map_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 2, + .value_type_id = 1, + .max_entries = 4, + .map_create_err = true, +}, + +{ + .descr = "arraymap invalid btf value (too small)", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_map_check_btf", + .key_size = sizeof(int), + /* btf_value_size < map->value_size */ + .value_size = sizeof(__u64), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .map_create_err = true, +}, + +{ + .descr = "arraymap invalid btf value (too big)", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_map_check_btf", + .key_size = sizeof(int), + /* btf_value_size > map->value_size */ + .value_size = sizeof(__u16), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .map_create_err = true, +}, + +{ + .descr = "func proto (int (*)(int, unsigned int))", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* int (*)(int, unsigned int) */ + BTF_FUNC_PROTO_ENC(1, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(0, 1), + BTF_FUNC_PROTO_ARG_ENC(0, 2), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "func proto (vararg)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int, unsigned int, ...) */ + BTF_FUNC_PROTO_ENC(0, 3), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(0, 1), + BTF_FUNC_PROTO_ARG_ENC(0, 2), + BTF_FUNC_PROTO_ARG_ENC(0, 0), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "func proto (vararg with name)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, unsigned int b, ... c) */ + BTF_FUNC_PROTO_ENC(0, 3), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 0), + BTF_END_RAW, + }, + .str_sec = "\0a\0b\0c", + .str_sec_size = sizeof("\0a\0b\0c"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid arg#3", +}, + +{ + .descr = "func proto (arg after vararg)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, ..., unsigned int b) */ + BTF_FUNC_PROTO_ENC(0, 3), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(0, 0), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_END_RAW, + }, + .str_sec = "\0a\0b", + .str_sec_size = sizeof("\0a\0b"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid arg#2", +}, + +{ + .descr = "func proto (CONST=>TYPEDEF=>PTR=>FUNC_PROTO)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* typedef void (*func_ptr)(int, unsigned int) */ + BTF_TYPEDEF_ENC(NAME_TBD, 5), /* [3] */ + /* const func_ptr */ + BTF_CONST_ENC(3), /* [4] */ + BTF_PTR_ENC(6), /* [5] */ + BTF_FUNC_PROTO_ENC(0, 2), /* [6] */ + BTF_FUNC_PROTO_ARG_ENC(0, 1), + BTF_FUNC_PROTO_ARG_ENC(0, 2), + BTF_END_RAW, + }, + .str_sec = "\0func_ptr", + .str_sec_size = sizeof("\0func_ptr"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "func proto (TYPEDEF=>FUNC_PROTO)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), /* [3] */ + BTF_FUNC_PROTO_ENC(0, 2), /* [4] */ + BTF_FUNC_PROTO_ARG_ENC(0, 1), + BTF_FUNC_PROTO_ARG_ENC(0, 2), + BTF_END_RAW, + }, + .str_sec = "\0func_typedef", + .str_sec_size = sizeof("\0func_typedef"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "func proto (btf_resolve(arg))", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* void (*)(const void *) */ + BTF_FUNC_PROTO_ENC(0, 1), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(0, 3), + BTF_CONST_ENC(4), /* [3] */ + BTF_PTR_ENC(0), /* [4] */ + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "func proto (Not all arg has name)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int, unsigned int b) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(0, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_END_RAW, + }, + .str_sec = "\0b", + .str_sec_size = sizeof("\0b"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "func proto (Bad arg name_off)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, unsigned int <bad_name_off>) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(0x0fffffff, 2), + BTF_END_RAW, + }, + .str_sec = "\0a", + .str_sec_size = sizeof("\0a"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid arg#2", +}, + +{ + .descr = "func proto (Bad arg name)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, unsigned int !!!) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_END_RAW, + }, + .str_sec = "\0a\0!!!", + .str_sec_size = sizeof("\0a\0!!!"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid arg#2", +}, + +{ + .descr = "func proto (Invalid return type)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* <bad_ret_type> (*)(int, unsigned int) */ + BTF_FUNC_PROTO_ENC(100, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(0, 1), + BTF_FUNC_PROTO_ARG_ENC(0, 2), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid return type", +}, + +{ + .descr = "func proto (with func name)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void func_proto(int, unsigned int) */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_FUNC_PROTO, 0, 2), 0), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(0, 1), + BTF_FUNC_PROTO_ARG_ENC(0, 2), + BTF_END_RAW, + }, + .str_sec = "\0func_proto", + .str_sec_size = sizeof("\0func_proto"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "func proto (const void arg)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(const void) */ + BTF_FUNC_PROTO_ENC(0, 1), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(0, 4), + BTF_CONST_ENC(0), /* [4] */ + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid arg#1", +}, + +{ + .descr = "func (void func(int a, unsigned int b))", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, unsigned int b) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + /* void func(int a, unsigned int b) */ + BTF_FUNC_ENC(NAME_TBD, 3), /* [4] */ + BTF_END_RAW, + }, + .str_sec = "\0a\0b\0func", + .str_sec_size = sizeof("\0a\0b\0func"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "func (No func name)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, unsigned int b) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + /* void <no_name>(int a, unsigned int b) */ + BTF_FUNC_ENC(0, 3), /* [4] */ + BTF_END_RAW, + }, + .str_sec = "\0a\0b", + .str_sec_size = sizeof("\0a\0b"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "func (Invalid func name)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, unsigned int b) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + /* void !!!(int a, unsigned int b) */ + BTF_FUNC_ENC(NAME_TBD, 3), /* [4] */ + BTF_END_RAW, + }, + .str_sec = "\0a\0b\0!!!", + .str_sec_size = sizeof("\0a\0b\0!!!"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid name", +}, + +{ + .descr = "func (Some arg has no name)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, unsigned int) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(0, 2), + /* void func(int a, unsigned int) */ + BTF_FUNC_ENC(NAME_TBD, 3), /* [4] */ + BTF_END_RAW, + }, + .str_sec = "\0a\0func", + .str_sec_size = sizeof("\0a\0func"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid arg#2", +}, + +{ + .descr = "func (Non zero vlen)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [2] */ + /* void (*)(int a, unsigned int b) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + /* void func(int a, unsigned int b) */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_FUNC, 0, 2), 3), /* [4] */ + BTF_END_RAW, + }, + .str_sec = "\0a\0b\0func", + .str_sec_size = sizeof("\0a\0b\0func"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid func linkage", +}, + +{ + .descr = "func (Not referring to FUNC_PROTO)", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_ENC(NAME_TBD, 1), /* [2] */ + BTF_END_RAW, + }, + .str_sec = "\0func", + .str_sec_size = sizeof("\0func"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid type_id", +}, + +{ + .descr = "invalid int kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_INT, 1, 0), 4), /* [2] */ + BTF_INT_ENC(0, 0, 32), + BTF_END_RAW, + }, + BTF_STR_SEC(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "int_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "invalid ptr kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 1, 0), 1), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "ptr_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "invalid array kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ARRAY, 1, 0), 0), /* [2] */ + BTF_ARRAY_ENC(1, 1, 1), + BTF_END_RAW, + }, + BTF_STR_SEC(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "array_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "valid fwd kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_FWD, 1, 0), 0), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "fwd_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "invalid typedef kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, + BTF_INFO_ENC(BTF_KIND_TYPEDEF, 1, 0), 1), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "typedef_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "invalid volatile kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_VOLATILE, 1, 0), 1), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "volatile_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "invalid const kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 1, 0), 1), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "const_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "invalid restrict kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_RESTRICT, 1, 0), 1), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "restrict_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "invalid func kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_FUNC_PROTO, 0, 0), 0), /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_FUNC, 1, 0), 2), /* [3] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "invalid func_proto kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_FUNC_PROTO, 1, 0), 0), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC(""), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "func_proto_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, + +{ + .descr = "valid struct, kind_flag, bitfield_size = 0", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 8), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(0, 0)), + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(0, 32)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "valid struct, kind_flag, int member, bitfield_size != 0", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 4), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(4, 0)), + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(4, 4)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "valid union, kind_flag, int member, bitfield_size != 0", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_UNION, 1, 2), 4), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(4, 0)), + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(4, 0)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "union_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "valid struct, kind_flag, enum member, bitfield_size != 0", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), /* [2] */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 4),/* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(4, 0)), + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(4, 4)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B\0C"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "valid union, kind_flag, enum member, bitfield_size != 0", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), /* [2] */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_UNION, 1, 2), 4), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(4, 0)), + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(4, 0)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B\0C"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "union_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "valid struct, kind_flag, typedef member, bitfield_size != 0", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), /* [2] */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 4),/* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 4, BTF_MEMBER_OFFSET(4, 0)), + BTF_MEMBER_ENC(NAME_TBD, 5, BTF_MEMBER_OFFSET(4, 4)), + BTF_TYPEDEF_ENC(NAME_TBD, 1), /* [4] */ + BTF_TYPEDEF_ENC(NAME_TBD, 2), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B\0C\0D\0E"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "valid union, kind_flag, typedef member, bitfield_size != 0", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), /* [2] */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_UNION, 1, 2), 4), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 4, BTF_MEMBER_OFFSET(4, 0)), + BTF_MEMBER_ENC(NAME_TBD, 5, BTF_MEMBER_OFFSET(4, 0)), + BTF_TYPEDEF_ENC(NAME_TBD, 1), /* [4] */ + BTF_TYPEDEF_ENC(NAME_TBD, 2), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B\0C\0D\0E"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "union_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "invalid struct, kind_flag, bitfield_size greater than struct size", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 4), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(20, 0)), + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(20, 20)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Member exceeds struct_size", +}, + +{ + .descr = "invalid struct, kind_flag, bitfield base_type int not regular", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 20, 4), /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 4), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(20, 0)), + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(20, 20)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid member base type", +}, + +{ + .descr = "invalid struct, kind_flag, base_type int not regular", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 12, 4), /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 4), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(8, 0)), + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(8, 8)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid member base type", +}, + +{ + .descr = "invalid union, kind_flag, bitfield_size greater than struct size", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_UNION, 1, 2), 2), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(8, 0)), + BTF_MEMBER_ENC(NAME_TBD, 1, BTF_MEMBER_OFFSET(20, 0)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "union_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Member exceeds struct_size", +}, + +{ + .descr = "invalid struct, kind_flag, int member, bitfield_size = 0, wrong byte alignment", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 12), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(0, 0)), + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(0, 36)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid member offset", +}, + +{ + .descr = "invalid struct, kind_flag, enum member, bitfield_size = 0, wrong byte alignment", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), /* [2] */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 2), 12), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(0, 0)), + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(0, 36)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B\0C"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, + .btf_load_err = true, + .err_str = "Invalid member offset", +}, + +{ + .descr = "128-bit int", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 128, 16), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "int_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "struct, 128-bit int member", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 128, 16), /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), 16), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "struct, 120-bit int member bitfield", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 120, 16), /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 1), 16), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "struct, kind_flag, 128-bit int member", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 128, 16), /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 1), 16), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(0, 0)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, + +{ + .descr = "struct, kind_flag, 120-bit int member bitfield", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 128, 16), /* [2] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 1), 16), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(120, 0)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "struct_type_check_btf", + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 4, +}, +/* + * typedef int arr_t[16]; + * struct s { + * arr_t *a; + * }; + */ +{ + .descr = "struct->ptr->typedef->array->int size resolution", + .raw_types = { + BTF_STRUCT_ENC(NAME_TBD, 1, 8), /* [1] */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + BTF_PTR_ENC(3), /* [2] */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), /* [3] */ + BTF_TYPE_ARRAY_ENC(5, 5, 16), /* [4] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0s\0a\0arr_t"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "ptr_mod_chain_size_resolve_map", + .key_size = sizeof(int), + .value_size = sizeof(int) * 16, + .key_type_id = 5 /* int */, + .value_type_id = 3 /* arr_t */, + .max_entries = 4, +}, +/* + * typedef int arr_t[16][8][4]; + * struct s { + * arr_t *a; + * }; + */ +{ + .descr = "struct->ptr->typedef->multi-array->int size resolution", + .raw_types = { + BTF_STRUCT_ENC(NAME_TBD, 1, 8), /* [1] */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + BTF_PTR_ENC(3), /* [2] */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), /* [3] */ + BTF_TYPE_ARRAY_ENC(5, 7, 16), /* [4] */ + BTF_TYPE_ARRAY_ENC(6, 7, 8), /* [5] */ + BTF_TYPE_ARRAY_ENC(7, 7, 4), /* [6] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [7] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0s\0a\0arr_t"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "multi_arr_size_resolve_map", + .key_size = sizeof(int), + .value_size = sizeof(int) * 16 * 8 * 4, + .key_type_id = 7 /* int */, + .value_type_id = 3 /* arr_t */, + .max_entries = 4, +}, +/* + * typedef int int_t; + * typedef int_t arr3_t[4]; + * typedef arr3_t arr2_t[8]; + * typedef arr2_t arr1_t[16]; + * struct s { + * arr1_t *a; + * }; + */ +{ + .descr = "typedef/multi-arr mix size resolution", + .raw_types = { + BTF_STRUCT_ENC(NAME_TBD, 1, 8), /* [1] */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + BTF_PTR_ENC(3), /* [2] */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), /* [3] */ + BTF_TYPE_ARRAY_ENC(5, 10, 16), /* [4] */ + BTF_TYPEDEF_ENC(NAME_TBD, 6), /* [5] */ + BTF_TYPE_ARRAY_ENC(7, 10, 8), /* [6] */ + BTF_TYPEDEF_ENC(NAME_TBD, 8), /* [7] */ + BTF_TYPE_ARRAY_ENC(9, 10, 4), /* [8] */ + BTF_TYPEDEF_ENC(NAME_TBD, 10), /* [9] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [10] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0s\0a\0arr1_t\0arr2_t\0arr3_t\0int_t"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "typedef_arra_mix_size_resolve_map", + .key_size = sizeof(int), + .value_size = sizeof(int) * 16 * 8 * 4, + .key_type_id = 10 /* int */, + .value_type_id = 3 /* arr_t */, + .max_entries = 4, +}, +/* + * elf .rodata section size 4 and btf .rodata section vlen 0. + */ +{ + .descr = "datasec: vlen == 0", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* .rodata section */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 0), 4), + /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0.rodata"), + .map_type = BPF_MAP_TYPE_ARRAY, + .key_size = sizeof(int), + .value_size = sizeof(int), + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, +}, +{ + .descr = "datasec: name '?.foo bar:buz' is ok", + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* VAR x */ /* [2] */ + BTF_TYPE_ENC(1, BTF_INFO_ENC(BTF_KIND_VAR, 0, 0), 1), + BTF_VAR_STATIC, + /* DATASEC ?.data */ /* [3] */ + BTF_TYPE_ENC(3, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(2, 0, 4), + BTF_END_RAW, + }, + BTF_STR_SEC("\0x\0?.foo bar:buz"), +}, +{ + .descr = "type name '?foo' is not ok", + .raw_types = { + /* union ?foo; */ + BTF_TYPE_ENC(1, BTF_INFO_ENC(BTF_KIND_FWD, 1, 0), 0), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0?foo"), + .err_str = "Invalid name", + .btf_load_err = true, +}, + +{ + .descr = "float test #1, well-formed", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* [1] */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 2), /* [2] */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 4), /* [3] */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 8), /* [4] */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 12), /* [5] */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 16), /* [6] */ + BTF_STRUCT_ENC(NAME_TBD, 5, 48), /* [7] */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + BTF_MEMBER_ENC(NAME_TBD, 3, 32), + BTF_MEMBER_ENC(NAME_TBD, 4, 64), + BTF_MEMBER_ENC(NAME_TBD, 5, 128), + BTF_MEMBER_ENC(NAME_TBD, 6, 256), + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0_Float16\0float\0double\0_Float80\0long_double" + "\0floats\0a\0b\0c\0d\0e"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "float_type_check_btf", + .key_size = sizeof(int), + .value_size = 48, + .key_type_id = 1, + .value_type_id = 7, + .max_entries = 1, +}, +{ + .descr = "float test #2, invalid vlen", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* [1] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_FLOAT, 0, 1), 4), + /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0float"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "float_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 1, + .btf_load_err = true, + .err_str = "vlen != 0", +}, +{ + .descr = "float test #3, invalid kind_flag", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* [1] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_FLOAT, 1, 0), 4), + /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0float"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "float_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, +{ + .descr = "float test #4, member does not fit", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* [1] */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 4), /* [2] */ + BTF_STRUCT_ENC(NAME_TBD, 1, 2), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0float\0floats\0x"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "float_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Member exceeds struct_size", +}, +{ + .descr = "float test #5, member is not properly aligned", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* [1] */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 4), /* [2] */ + BTF_STRUCT_ENC(NAME_TBD, 1, 8), /* [3] */ + BTF_MEMBER_ENC(NAME_TBD, 2, 8), + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0float\0floats\0x"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "float_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Member is not properly aligned", +}, +{ + .descr = "float test #6, invalid size", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* [1] */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 6), /* [2] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0float"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "float_type_check_btf", + .key_size = sizeof(int), + .value_size = 6, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type_size", +}, + +{ + .descr = "decl_tag test #1, struct/member, well-formed", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_STRUCT_ENC(0, 2, 8), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_MEMBER_ENC(NAME_TBD, 1, 32), + BTF_DECL_TAG_ENC(NAME_TBD, 2, -1), + BTF_DECL_TAG_ENC(NAME_TBD, 2, 0), + BTF_DECL_TAG_ENC(NAME_TBD, 2, 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0m1\0m2\0tag1\0tag2\0tag3"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 8, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 1, +}, +{ + .descr = "decl_tag test #2, union/member, well-formed", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_UNION_ENC(NAME_TBD, 2, 4), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_DECL_TAG_ENC(NAME_TBD, 2, -1), + BTF_DECL_TAG_ENC(NAME_TBD, 2, 0), + BTF_DECL_TAG_ENC(NAME_TBD, 2, 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0t\0m1\0m2\0tag1\0tag2\0tag3"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 1, +}, +{ + .descr = "decl_tag test #3, variable, well-formed", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + BTF_VAR_ENC(NAME_TBD, 1, 1), /* [3] */ + BTF_DECL_TAG_ENC(NAME_TBD, 2, -1), + BTF_DECL_TAG_ENC(NAME_TBD, 3, -1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0local\0global\0tag1\0tag2"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, +}, +{ + .descr = "decl_tag test #4, func/parameter, well-formed", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(0, 2), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_DECL_TAG_ENC(NAME_TBD, 3, -1), + BTF_DECL_TAG_ENC(NAME_TBD, 3, 0), + BTF_DECL_TAG_ENC(NAME_TBD, 3, 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0arg1\0arg2\0f\0tag1\0tag2\0tag3"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, +}, +{ + .descr = "decl_tag test #5, invalid value", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + BTF_DECL_TAG_ENC(0, 2, -1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0local\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid value", +}, +{ + .descr = "decl_tag test #6, invalid target type", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_DECL_TAG_ENC(NAME_TBD, 1, -1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type", +}, +{ + .descr = "decl_tag test #7, invalid vlen", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DECL_TAG, 0, 1), 2), (0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0local\0tag1"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "vlen != 0", +}, +{ + .descr = "decl_tag test #8, invalid kflag", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DECL_TAG, 1, 0), 2), (-1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0local\0tag1"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid btf_info kind_flag", +}, +{ + .descr = "decl_tag test #9, var, invalid component_idx", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + BTF_DECL_TAG_ENC(NAME_TBD, 2, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0local\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid component_idx", +}, +{ + .descr = "decl_tag test #10, struct member, invalid component_idx", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_STRUCT_ENC(0, 2, 8), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_MEMBER_ENC(NAME_TBD, 1, 32), + BTF_DECL_TAG_ENC(NAME_TBD, 2, 2), + BTF_END_RAW, + }, + BTF_STR_SEC("\0m1\0m2\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 8, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid component_idx", +}, +{ + .descr = "decl_tag test #11, func parameter, invalid component_idx", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(0, 2), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_DECL_TAG_ENC(NAME_TBD, 3, 2), + BTF_END_RAW, + }, + BTF_STR_SEC("\0arg1\0arg2\0f\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid component_idx", +}, +{ + .descr = "decl_tag test #12, < -1 component_idx", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(0, 2), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_DECL_TAG_ENC(NAME_TBD, 3, -2), + BTF_END_RAW, + }, + BTF_STR_SEC("\0arg1\0arg2\0f\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid component_idx", +}, +{ + .descr = "decl_tag test #13, typedef, well-formed", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPEDEF_ENC(NAME_TBD, 1), /* [2] */ + BTF_DECL_TAG_ENC(NAME_TBD, 2, -1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0t\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, +}, +{ + .descr = "decl_tag test #14, typedef, invalid component_idx", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPEDEF_ENC(NAME_TBD, 1), /* [2] */ + BTF_DECL_TAG_ENC(NAME_TBD, 2, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0local\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid component_idx", +}, +{ + .descr = "decl_tag test #15, func, invalid func proto", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_DECL_TAG_ENC(NAME_TBD, 3, 0), /* [2] */ + BTF_FUNC_ENC(NAME_TBD, 8), /* [3] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag\0func"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Invalid type_id", +}, +{ + .descr = "decl_tag test #16, func proto, return type", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_TBD, 1, 0), /* [2] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DECL_TAG, 0, 0), 2), (-1), /* [3] */ + BTF_FUNC_PROTO_ENC(3, 0), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0local\0tag1"), + .btf_load_err = true, + .err_str = "Invalid return type", +}, +{ + .descr = "decl_tag test #17, func proto, argument", + .raw_types = { + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_DECL_TAG, 0, 0), 4), (-1), /* [1] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_PTR, 0, 0), 0), /* [2] */ + BTF_FUNC_PROTO_ENC(0, 1), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_VAR_ENC(NAME_TBD, 2, 0), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0local\0tag1\0var"), + .btf_load_err = true, + .err_str = "Invalid arg#1", +}, +{ + .descr = "decl_tag test #18, decl_tag as the map key type", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_STRUCT_ENC(0, 2, 8), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_MEMBER_ENC(NAME_TBD, 1, 32), + BTF_DECL_TAG_ENC(NAME_TBD, 2, -1), /* [3] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0m1\0m2\0tag"), + .map_type = BPF_MAP_TYPE_HASH, + .map_name = "tag_type_check_btf", + .key_size = 8, + .value_size = 4, + .key_type_id = 3, + .value_type_id = 1, + .max_entries = 1, + .map_create_err = true, +}, +{ + .descr = "decl_tag test #19, decl_tag as the map value type", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_STRUCT_ENC(0, 2, 8), /* [2] */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_MEMBER_ENC(NAME_TBD, 1, 32), + BTF_DECL_TAG_ENC(NAME_TBD, 2, -1), /* [3] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0m1\0m2\0tag"), + .map_type = BPF_MAP_TYPE_HASH, + .map_name = "tag_type_check_btf", + .key_size = 4, + .value_size = 8, + .key_type_id = 1, + .value_type_id = 3, + .max_entries = 1, + .map_create_err = true, +}, +{ + .descr = "type_tag test #1", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_TBD, 1), /* [2] */ + BTF_PTR_ENC(2), /* [3] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, +}, +{ + .descr = "type_tag test #2, type tag order", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_CONST_ENC(3), /* [2] */ + BTF_TYPE_TAG_ENC(NAME_TBD, 1), /* [3] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Type tags don't precede modifiers", +}, +{ + .descr = "type_tag test #3, type tag order", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_TBD, 3), /* [2] */ + BTF_CONST_ENC(4), /* [3] */ + BTF_TYPE_TAG_ENC(NAME_TBD, 1), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Type tags don't precede modifiers", +}, +{ + .descr = "type_tag test #4, type tag order", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPEDEF_ENC(NAME_TBD, 3), /* [2] */ + BTF_CONST_ENC(4), /* [3] */ + BTF_TYPE_TAG_ENC(NAME_TBD, 1), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Type tags don't precede modifiers", +}, +{ + .descr = "type_tag test #5, type tag order", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_TBD, 3), /* [2] */ + BTF_CONST_ENC(1), /* [3] */ + BTF_TYPE_TAG_ENC(NAME_TBD, 2), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, +}, +{ + .descr = "type_tag test #6, type tag order", + .raw_types = { + BTF_PTR_ENC(2), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_TBD, 3), /* [2] */ + BTF_CONST_ENC(4), /* [3] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [4] */ + BTF_PTR_ENC(6), /* [5] */ + BTF_CONST_ENC(2), /* [6] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 1, + .max_entries = 1, + .btf_load_err = true, + .err_str = "Type tags don't precede modifiers", +}, +{ + .descr = "enum64 test #1, unsigned, size 8", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 2), 8), /* [2] */ + BTF_ENUM64_ENC(NAME_TBD, 0, 0), + BTF_ENUM64_ENC(NAME_TBD, 1, 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0a\0b\0c"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 8, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 1, +}, +{ + .descr = "enum64 test #2, signed, size 4", + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM64, 1, 2), 4), /* [2] */ + BTF_ENUM64_ENC(NAME_TBD, -1, 0), + BTF_ENUM64_ENC(NAME_TBD, 1, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0a\0b\0c"), + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "tag_type_check_btf", + .key_size = sizeof(int), + .value_size = 4, + .key_type_id = 1, + .value_type_id = 2, + .max_entries = 1, +}, + +}; /* struct btf_raw_test raw_tests[] */ + +static const char *get_next_str(const char *start, const char *end) +{ + return start < end - 1 ? start + 1 : NULL; +} + +static int get_raw_sec_size(const __u32 *raw_types) +{ + int i; + + for (i = MAX_NR_RAW_U32 - 1; + i >= 0 && raw_types[i] != BTF_END_RAW; + i--) + ; + + return i < 0 ? i : i * sizeof(raw_types[0]); +} + +static void *btf_raw_create(const struct btf_header *hdr, + const __u32 *raw_types, + const char *str, + unsigned int str_sec_size, + unsigned int *btf_size, + const char **ret_next_str) +{ + const char *next_str = str, *end_str = str + str_sec_size; + const char **strs_idx = NULL, **tmp_strs_idx; + int strs_cap = 0, strs_cnt = 0, next_str_idx = 0; + unsigned int size_needed, offset; + struct btf_header *ret_hdr; + int i, type_sec_size, err = 0; + uint32_t *ret_types; + void *raw_btf = NULL; + + type_sec_size = get_raw_sec_size(raw_types); + if (CHECK(type_sec_size < 0, "Cannot get nr_raw_types")) + return NULL; + + size_needed = sizeof(*hdr) + type_sec_size + str_sec_size; + raw_btf = malloc(size_needed); + if (CHECK(!raw_btf, "Cannot allocate memory for raw_btf")) + return NULL; + + /* Copy header */ + memcpy(raw_btf, hdr, sizeof(*hdr)); + offset = sizeof(*hdr); + + /* Index strings */ + while ((next_str = get_next_str(next_str, end_str))) { + if (strs_cnt == strs_cap) { + strs_cap += max(16, strs_cap / 2); + tmp_strs_idx = realloc(strs_idx, + sizeof(*strs_idx) * strs_cap); + if (CHECK(!tmp_strs_idx, + "Cannot allocate memory for strs_idx")) { + err = -1; + goto done; + } + strs_idx = tmp_strs_idx; + } + strs_idx[strs_cnt++] = next_str; + next_str += strlen(next_str); + } + + /* Copy type section */ + ret_types = raw_btf + offset; + for (i = 0; i < type_sec_size / sizeof(raw_types[0]); i++) { + if (raw_types[i] == NAME_TBD) { + if (CHECK(next_str_idx == strs_cnt, + "Error in getting next_str #%d", + next_str_idx)) { + err = -1; + goto done; + } + ret_types[i] = strs_idx[next_str_idx++] - str; + } else if (IS_NAME_NTH(raw_types[i])) { + int idx = GET_NAME_NTH_IDX(raw_types[i]); + + if (CHECK(idx <= 0 || idx > strs_cnt, + "Error getting string #%d, strs_cnt:%d", + idx, strs_cnt)) { + err = -1; + goto done; + } + ret_types[i] = strs_idx[idx-1] - str; + } else { + ret_types[i] = raw_types[i]; + } + } + offset += type_sec_size; + + /* Copy string section */ + memcpy(raw_btf + offset, str, str_sec_size); + + ret_hdr = (struct btf_header *)raw_btf; + ret_hdr->type_len = type_sec_size; + ret_hdr->str_off = type_sec_size; + ret_hdr->str_len = str_sec_size; + + *btf_size = size_needed; + if (ret_next_str) + *ret_next_str = + next_str_idx < strs_cnt ? strs_idx[next_str_idx] : NULL; + +done: + free(strs_idx); + if (err) { + free(raw_btf); + return NULL; + } + return raw_btf; +} + +static int load_raw_btf(const void *raw_data, size_t raw_size) +{ + LIBBPF_OPTS(bpf_btf_load_opts, opts); + int btf_fd; + + if (always_log) { + opts.log_buf = btf_log_buf, + opts.log_size = BTF_LOG_BUF_SIZE, + opts.log_level = 1; + } + + btf_fd = bpf_btf_load(raw_data, raw_size, &opts); + if (btf_fd < 0 && !always_log) { + opts.log_buf = btf_log_buf, + opts.log_size = BTF_LOG_BUF_SIZE, + opts.log_level = 1; + btf_fd = bpf_btf_load(raw_data, raw_size, &opts); + } + + return btf_fd; +} + +static void do_test_raw(unsigned int test_num) +{ + struct btf_raw_test *test = &raw_tests[test_num - 1]; + LIBBPF_OPTS(bpf_map_create_opts, opts); + int map_fd = -1, btf_fd = -1; + unsigned int raw_btf_size; + struct btf_header *hdr; + void *raw_btf; + int err; + + if (!test__start_subtest(test->descr)) + return; + + raw_btf = btf_raw_create(&hdr_tmpl, + test->raw_types, + test->str_sec, + test->str_sec_size, + &raw_btf_size, NULL); + if (!raw_btf) + return; + + hdr = raw_btf; + + hdr->hdr_len = (int)hdr->hdr_len + test->hdr_len_delta; + hdr->type_off = (int)hdr->type_off + test->type_off_delta; + hdr->str_off = (int)hdr->str_off + test->str_off_delta; + hdr->str_len = (int)hdr->str_len + test->str_len_delta; + + *btf_log_buf = '\0'; + btf_fd = load_raw_btf(raw_btf, raw_btf_size); + free(raw_btf); + + err = ((btf_fd < 0) != test->btf_load_err); + if (CHECK(err, "btf_fd:%d test->btf_load_err:%u", + btf_fd, test->btf_load_err) || + CHECK(test->err_str && !strstr(btf_log_buf, test->err_str), + "expected err_str:%s\n", test->err_str)) { + err = -1; + goto done; + } + + if (err || btf_fd < 0) + goto done; + + if (!test->map_type) + goto done; + + opts.btf_fd = btf_fd; + opts.btf_key_type_id = test->key_type_id; + opts.btf_value_type_id = test->value_type_id; + map_fd = bpf_map_create(test->map_type, test->map_name, + test->key_size, test->value_size, test->max_entries, &opts); + + err = ((map_fd < 0) != test->map_create_err); + CHECK(err, "map_fd:%d test->map_create_err:%u", + map_fd, test->map_create_err); + +done: + if (*btf_log_buf && (err || always_log)) + fprintf(stderr, "\n%s", btf_log_buf); + if (btf_fd >= 0) + close(btf_fd); + if (map_fd >= 0) + close(map_fd); +} + +struct btf_get_info_test { + const char *descr; + const char *str_sec; + __u32 raw_types[MAX_NR_RAW_U32]; + __u32 str_sec_size; + int btf_size_delta; + int (*special_test)(unsigned int test_num); +}; + +static int test_big_btf_info(unsigned int test_num); +static int test_btf_id(unsigned int test_num); + +const struct btf_get_info_test get_info_tests[] = { +{ + .descr = "== raw_btf_size+1", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .btf_size_delta = 1, +}, +{ + .descr = "== raw_btf_size-3", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .btf_size_delta = -3, +}, +{ + .descr = "Large bpf_btf_info", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .special_test = test_big_btf_info, +}, +{ + .descr = "BTF ID", + .raw_types = { + /* int */ /* [1] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), + /* unsigned int */ /* [2] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), + BTF_END_RAW, + }, + .str_sec = "", + .str_sec_size = sizeof(""), + .special_test = test_btf_id, +}, +}; + +static int test_big_btf_info(unsigned int test_num) +{ + const struct btf_get_info_test *test = &get_info_tests[test_num - 1]; + uint8_t *raw_btf = NULL, *user_btf = NULL; + unsigned int raw_btf_size; + struct { + struct bpf_btf_info info; + uint64_t garbage; + } info_garbage; + struct bpf_btf_info *info; + int btf_fd = -1, err; + uint32_t info_len; + + raw_btf = btf_raw_create(&hdr_tmpl, + test->raw_types, + test->str_sec, + test->str_sec_size, + &raw_btf_size, NULL); + + if (!raw_btf) + return -1; + + *btf_log_buf = '\0'; + + user_btf = malloc(raw_btf_size); + if (CHECK(!user_btf, "!user_btf")) { + err = -1; + goto done; + } + + btf_fd = load_raw_btf(raw_btf, raw_btf_size); + if (CHECK(btf_fd < 0, "errno:%d", errno)) { + err = -1; + goto done; + } + + /* + * GET_INFO should error out if the userspace info + * has non zero tailing bytes. + */ + info = &info_garbage.info; + memset(info, 0, sizeof(*info)); + info_garbage.garbage = 0xdeadbeef; + info_len = sizeof(info_garbage); + info->btf = ptr_to_u64(user_btf); + info->btf_size = raw_btf_size; + + err = bpf_btf_get_info_by_fd(btf_fd, info, &info_len); + if (CHECK(!err, "!err")) { + err = -1; + goto done; + } + + /* + * GET_INFO should succeed even info_len is larger than + * the kernel supported as long as tailing bytes are zero. + * The kernel supported info len should also be returned + * to userspace. + */ + info_garbage.garbage = 0; + err = bpf_btf_get_info_by_fd(btf_fd, info, &info_len); + if (CHECK(err || info_len != sizeof(*info), + "err:%d errno:%d info_len:%u sizeof(*info):%zu", + err, errno, info_len, sizeof(*info))) { + err = -1; + goto done; + } + + fprintf(stderr, "OK"); + +done: + if (*btf_log_buf && (err || always_log)) + fprintf(stderr, "\n%s", btf_log_buf); + + free(raw_btf); + free(user_btf); + + if (btf_fd >= 0) + close(btf_fd); + + return err; +} + +static int test_btf_id(unsigned int test_num) +{ + const struct btf_get_info_test *test = &get_info_tests[test_num - 1]; + LIBBPF_OPTS(bpf_map_create_opts, opts); + uint8_t *raw_btf = NULL, *user_btf[2] = {}; + int btf_fd[2] = {-1, -1}, map_fd = -1; + struct bpf_map_info map_info = {}; + struct bpf_btf_info info[2] = {}; + unsigned int raw_btf_size; + uint32_t info_len; + int err, i, ret; + + raw_btf = btf_raw_create(&hdr_tmpl, + test->raw_types, + test->str_sec, + test->str_sec_size, + &raw_btf_size, NULL); + + if (!raw_btf) + return -1; + + *btf_log_buf = '\0'; + + for (i = 0; i < 2; i++) { + user_btf[i] = malloc(raw_btf_size); + if (CHECK(!user_btf[i], "!user_btf[%d]", i)) { + err = -1; + goto done; + } + info[i].btf = ptr_to_u64(user_btf[i]); + info[i].btf_size = raw_btf_size; + } + + btf_fd[0] = load_raw_btf(raw_btf, raw_btf_size); + if (CHECK(btf_fd[0] < 0, "errno:%d", errno)) { + err = -1; + goto done; + } + + /* Test BPF_OBJ_GET_INFO_BY_ID on btf_id */ + info_len = sizeof(info[0]); + err = bpf_btf_get_info_by_fd(btf_fd[0], &info[0], &info_len); + if (CHECK(err, "errno:%d", errno)) { + err = -1; + goto done; + } + + btf_fd[1] = bpf_btf_get_fd_by_id(info[0].id); + if (CHECK(btf_fd[1] < 0, "errno:%d", errno)) { + err = -1; + goto done; + } + + ret = 0; + err = bpf_btf_get_info_by_fd(btf_fd[1], &info[1], &info_len); + if (CHECK(err || info[0].id != info[1].id || + info[0].btf_size != info[1].btf_size || + (ret = memcmp(user_btf[0], user_btf[1], info[0].btf_size)), + "err:%d errno:%d id0:%u id1:%u btf_size0:%u btf_size1:%u memcmp:%d", + err, errno, info[0].id, info[1].id, + info[0].btf_size, info[1].btf_size, ret)) { + err = -1; + goto done; + } + + /* Test btf members in struct bpf_map_info */ + opts.btf_fd = btf_fd[0]; + opts.btf_key_type_id = 1; + opts.btf_value_type_id = 2; + map_fd = bpf_map_create(BPF_MAP_TYPE_ARRAY, "test_btf_id", + sizeof(int), sizeof(int), 4, &opts); + if (CHECK(map_fd < 0, "errno:%d", errno)) { + err = -1; + goto done; + } + + info_len = sizeof(map_info); + err = bpf_map_get_info_by_fd(map_fd, &map_info, &info_len); + if (CHECK(err || map_info.btf_id != info[0].id || + map_info.btf_key_type_id != 1 || map_info.btf_value_type_id != 2, + "err:%d errno:%d info.id:%u btf_id:%u btf_key_type_id:%u btf_value_type_id:%u", + err, errno, info[0].id, map_info.btf_id, map_info.btf_key_type_id, + map_info.btf_value_type_id)) { + err = -1; + goto done; + } + + for (i = 0; i < 2; i++) { + close(btf_fd[i]); + btf_fd[i] = -1; + } + + /* Test BTF ID is removed from the kernel */ + btf_fd[0] = bpf_btf_get_fd_by_id(map_info.btf_id); + if (CHECK(btf_fd[0] < 0, "errno:%d", errno)) { + err = -1; + goto done; + } + close(btf_fd[0]); + btf_fd[0] = -1; + + /* The map holds the last ref to BTF and its btf_id */ + close(map_fd); + map_fd = -1; + + fprintf(stderr, "OK"); + +done: + if (*btf_log_buf && (err || always_log)) + fprintf(stderr, "\n%s", btf_log_buf); + + free(raw_btf); + if (map_fd >= 0) + close(map_fd); + for (i = 0; i < 2; i++) { + free(user_btf[i]); + if (btf_fd[i] >= 0) + close(btf_fd[i]); + } + + return err; +} + +static void do_test_get_info(unsigned int test_num) +{ + const struct btf_get_info_test *test = &get_info_tests[test_num - 1]; + unsigned int raw_btf_size, user_btf_size, expected_nbytes; + uint8_t *raw_btf = NULL, *user_btf = NULL; + struct bpf_btf_info info = {}; + int btf_fd = -1, err, ret; + uint32_t info_len; + + if (!test__start_subtest(test->descr)) + return; + + if (test->special_test) { + err = test->special_test(test_num); + if (CHECK(err, "failed: %d\n", err)) + return; + } + + raw_btf = btf_raw_create(&hdr_tmpl, + test->raw_types, + test->str_sec, + test->str_sec_size, + &raw_btf_size, NULL); + + if (!raw_btf) + return; + + *btf_log_buf = '\0'; + + user_btf = malloc(raw_btf_size); + if (CHECK(!user_btf, "!user_btf")) { + err = -1; + goto done; + } + + btf_fd = load_raw_btf(raw_btf, raw_btf_size); + if (CHECK(btf_fd <= 0, "errno:%d", errno)) { + err = -1; + goto done; + } + + user_btf_size = (int)raw_btf_size + test->btf_size_delta; + expected_nbytes = min(raw_btf_size, user_btf_size); + if (raw_btf_size > expected_nbytes) + memset(user_btf + expected_nbytes, 0xff, + raw_btf_size - expected_nbytes); + + info_len = sizeof(info); + info.btf = ptr_to_u64(user_btf); + info.btf_size = user_btf_size; + + ret = 0; + err = bpf_btf_get_info_by_fd(btf_fd, &info, &info_len); + if (CHECK(err || !info.id || info_len != sizeof(info) || + info.btf_size != raw_btf_size || + (ret = memcmp(raw_btf, user_btf, expected_nbytes)), + "err:%d errno:%d info.id:%u info_len:%u sizeof(info):%zu raw_btf_size:%u info.btf_size:%u expected_nbytes:%u memcmp:%d", + err, errno, info.id, info_len, sizeof(info), + raw_btf_size, info.btf_size, expected_nbytes, ret)) { + err = -1; + goto done; + } + + while (expected_nbytes < raw_btf_size) { + fprintf(stderr, "%u...", expected_nbytes); + if (CHECK(user_btf[expected_nbytes++] != 0xff, + "user_btf[%u]:%x != 0xff", expected_nbytes - 1, + user_btf[expected_nbytes - 1])) { + err = -1; + goto done; + } + } + + fprintf(stderr, "OK"); + +done: + if (*btf_log_buf && (err || always_log)) + fprintf(stderr, "\n%s", btf_log_buf); + + free(raw_btf); + free(user_btf); + + if (btf_fd >= 0) + close(btf_fd); +} + +struct btf_file_test { + const char *file; + bool btf_kv_notfound; +}; + +static struct btf_file_test file_tests[] = { + { .file = "test_btf_newkv.bpf.o", }, + { .file = "test_btf_nokv.bpf.o", .btf_kv_notfound = true, }, +}; + +static void do_test_file(unsigned int test_num) +{ + const struct btf_file_test *test = &file_tests[test_num - 1]; + const char *expected_fnames[] = {"_dummy_tracepoint", + "test_long_fname_1", + "test_long_fname_2"}; + struct btf_ext *btf_ext = NULL; + struct bpf_prog_info info = {}; + struct bpf_object *obj = NULL; + struct bpf_func_info *finfo; + struct bpf_program *prog; + __u32 info_len, rec_size; + bool has_btf_ext = false; + struct btf *btf = NULL; + void *func_info = NULL; + struct bpf_map *map; + int i, err, prog_fd; + + if (!test__start_subtest(test->file)) + return; + + btf = btf__parse_elf(test->file, &btf_ext); + err = libbpf_get_error(btf); + if (err) { + if (err == -ENOENT) { + printf("%s:SKIP: No ELF %s found", __func__, BTF_ELF_SEC); + test__skip(); + return; + } + return; + } + btf__free(btf); + + has_btf_ext = btf_ext != NULL; + btf_ext__free(btf_ext); + + /* temporary disable LIBBPF_STRICT_MAP_DEFINITIONS to test legacy maps */ + libbpf_set_strict_mode(LIBBPF_STRICT_ALL & ~LIBBPF_STRICT_MAP_DEFINITIONS); + obj = bpf_object__open(test->file); + err = libbpf_get_error(obj); + if (CHECK(err, "obj: %d", err)) + return; + + prog = bpf_object__next_program(obj, NULL); + if (CHECK(!prog, "Cannot find bpf_prog")) { + err = -1; + goto done; + } + + bpf_program__set_type(prog, BPF_PROG_TYPE_TRACEPOINT); + err = bpf_object__load(obj); + if (CHECK(err < 0, "bpf_object__load: %d", err)) + goto done; + prog_fd = bpf_program__fd(prog); + + map = bpf_object__find_map_by_name(obj, "btf_map"); + if (CHECK(!map, "btf_map not found")) { + err = -1; + goto done; + } + + err = (bpf_map__btf_key_type_id(map) == 0 || bpf_map__btf_value_type_id(map) == 0) + != test->btf_kv_notfound; + if (CHECK(err, "btf_key_type_id:%u btf_value_type_id:%u test->btf_kv_notfound:%u", + bpf_map__btf_key_type_id(map), bpf_map__btf_value_type_id(map), + test->btf_kv_notfound)) + goto done; + + if (!has_btf_ext) + goto skip; + + /* get necessary program info */ + info_len = sizeof(struct bpf_prog_info); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + + if (CHECK(err < 0, "invalid get info (1st) errno:%d", errno)) { + fprintf(stderr, "%s\n", btf_log_buf); + err = -1; + goto done; + } + if (CHECK(info.nr_func_info != 3, + "incorrect info.nr_func_info (1st) %d", + info.nr_func_info)) { + err = -1; + goto done; + } + rec_size = info.func_info_rec_size; + if (CHECK(rec_size != sizeof(struct bpf_func_info), + "incorrect info.func_info_rec_size (1st) %d\n", rec_size)) { + err = -1; + goto done; + } + + func_info = malloc(info.nr_func_info * rec_size); + if (CHECK(!func_info, "out of memory")) { + err = -1; + goto done; + } + + /* reset info to only retrieve func_info related data */ + memset(&info, 0, sizeof(info)); + info.nr_func_info = 3; + info.func_info_rec_size = rec_size; + info.func_info = ptr_to_u64(func_info); + + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + + if (CHECK(err < 0, "invalid get info (2nd) errno:%d", errno)) { + fprintf(stderr, "%s\n", btf_log_buf); + err = -1; + goto done; + } + if (CHECK(info.nr_func_info != 3, + "incorrect info.nr_func_info (2nd) %d", + info.nr_func_info)) { + err = -1; + goto done; + } + if (CHECK(info.func_info_rec_size != rec_size, + "incorrect info.func_info_rec_size (2nd) %d", + info.func_info_rec_size)) { + err = -1; + goto done; + } + + btf = btf__load_from_kernel_by_id(info.btf_id); + err = libbpf_get_error(btf); + if (CHECK(err, "cannot get btf from kernel, err: %d", err)) + goto done; + + /* check three functions */ + finfo = func_info; + for (i = 0; i < 3; i++) { + const struct btf_type *t; + const char *fname; + + t = btf__type_by_id(btf, finfo->type_id); + if (CHECK(!t, "btf__type_by_id failure: id %u", + finfo->type_id)) { + err = -1; + goto done; + } + + fname = btf__name_by_offset(btf, t->name_off); + err = strcmp(fname, expected_fnames[i]); + /* for the second and third functions in .text section, + * the compiler may order them either way. + */ + if (i && err) + err = strcmp(fname, expected_fnames[3 - i]); + if (CHECK(err, "incorrect fname %s", fname ? : "")) { + err = -1; + goto done; + } + + finfo = (void *)finfo + rec_size; + } + +skip: + fprintf(stderr, "OK"); + +done: + libbpf_set_strict_mode(LIBBPF_STRICT_ALL); + + btf__free(btf); + free(func_info); + bpf_object__close(obj); +} + +const char *pprint_enum_str[] = { + "ENUM_ZERO", + "ENUM_ONE", + "ENUM_TWO", + "ENUM_THREE", +}; + +struct pprint_mapv { + uint32_t ui32; + uint16_t ui16; + /* 2 bytes hole */ + int32_t si32; + uint32_t unused_bits2a:2, + bits28:28, + unused_bits2b:2; + union { + uint64_t ui64; + uint8_t ui8a[8]; + }; + enum { + ENUM_ZERO, + ENUM_ONE, + ENUM_TWO, + ENUM_THREE, + } aenum; + uint32_t ui32b; + uint32_t bits2c:2; + uint8_t si8_4[2][2]; +}; + +#ifdef __SIZEOF_INT128__ +struct pprint_mapv_int128 { + __int128 si128a; + __int128 si128b; + unsigned __int128 bits3:3; + unsigned __int128 bits80:80; + unsigned __int128 ui128; +}; +#endif + +static struct btf_raw_test pprint_test_template[] = { +{ + .raw_types = { + /* unsighed char */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 8, 1), + /* unsigned short */ /* [2] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 16, 2), + /* unsigned int */ /* [3] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 32, 4), + /* int */ /* [4] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* unsigned long long */ /* [5] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 64, 8), + /* 2 bits */ /* [6] */ + BTF_TYPE_INT_ENC(0, 0, 0, 2, 2), + /* 28 bits */ /* [7] */ + BTF_TYPE_INT_ENC(0, 0, 0, 28, 4), + /* uint8_t[8] */ /* [8] */ + BTF_TYPE_ARRAY_ENC(9, 1, 8), + /* typedef unsigned char uint8_t */ /* [9] */ + BTF_TYPEDEF_ENC(NAME_TBD, 1), + /* typedef unsigned short uint16_t */ /* [10] */ + BTF_TYPEDEF_ENC(NAME_TBD, 2), + /* typedef unsigned int uint32_t */ /* [11] */ + BTF_TYPEDEF_ENC(NAME_TBD, 3), + /* typedef int int32_t */ /* [12] */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), + /* typedef unsigned long long uint64_t *//* [13] */ + BTF_TYPEDEF_ENC(NAME_TBD, 5), + /* union (anon) */ /* [14] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_UNION, 0, 2), 8), + BTF_MEMBER_ENC(NAME_TBD, 13, 0),/* uint64_t ui64; */ + BTF_MEMBER_ENC(NAME_TBD, 8, 0), /* uint8_t ui8a[8]; */ + /* enum (anon) */ /* [15] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 4), 4), + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_ENUM_ENC(NAME_TBD, 1), + BTF_ENUM_ENC(NAME_TBD, 2), + BTF_ENUM_ENC(NAME_TBD, 3), + /* struct pprint_mapv */ /* [16] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 11), 40), + BTF_MEMBER_ENC(NAME_TBD, 11, 0), /* uint32_t ui32 */ + BTF_MEMBER_ENC(NAME_TBD, 10, 32), /* uint16_t ui16 */ + BTF_MEMBER_ENC(NAME_TBD, 12, 64), /* int32_t si32 */ + BTF_MEMBER_ENC(NAME_TBD, 6, 96), /* unused_bits2a */ + BTF_MEMBER_ENC(NAME_TBD, 7, 98), /* bits28 */ + BTF_MEMBER_ENC(NAME_TBD, 6, 126), /* unused_bits2b */ + BTF_MEMBER_ENC(0, 14, 128), /* union (anon) */ + BTF_MEMBER_ENC(NAME_TBD, 15, 192), /* aenum */ + BTF_MEMBER_ENC(NAME_TBD, 11, 224), /* uint32_t ui32b */ + BTF_MEMBER_ENC(NAME_TBD, 6, 256), /* bits2c */ + BTF_MEMBER_ENC(NAME_TBD, 17, 264), /* si8_4 */ + BTF_TYPE_ARRAY_ENC(18, 1, 2), /* [17] */ + BTF_TYPE_ARRAY_ENC(1, 1, 2), /* [18] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0unsigned char\0unsigned short\0unsigned int\0int\0unsigned long long\0uint8_t\0uint16_t\0uint32_t\0int32_t\0uint64_t\0ui64\0ui8a\0ENUM_ZERO\0ENUM_ONE\0ENUM_TWO\0ENUM_THREE\0pprint_mapv\0ui32\0ui16\0si32\0unused_bits2a\0bits28\0unused_bits2b\0aenum\0ui32b\0bits2c\0si8_4"), + .key_size = sizeof(unsigned int), + .value_size = sizeof(struct pprint_mapv), + .key_type_id = 3, /* unsigned int */ + .value_type_id = 16, /* struct pprint_mapv */ + .max_entries = 128, +}, + +{ + /* this type will have the same type as the + * first .raw_types definition, but struct type will + * be encoded with kind_flag set. + */ + .raw_types = { + /* unsighed char */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 8, 1), + /* unsigned short */ /* [2] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 16, 2), + /* unsigned int */ /* [3] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 32, 4), + /* int */ /* [4] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* unsigned long long */ /* [5] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 64, 8), + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [6] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [7] */ + /* uint8_t[8] */ /* [8] */ + BTF_TYPE_ARRAY_ENC(9, 1, 8), + /* typedef unsigned char uint8_t */ /* [9] */ + BTF_TYPEDEF_ENC(NAME_TBD, 1), + /* typedef unsigned short uint16_t */ /* [10] */ + BTF_TYPEDEF_ENC(NAME_TBD, 2), + /* typedef unsigned int uint32_t */ /* [11] */ + BTF_TYPEDEF_ENC(NAME_TBD, 3), + /* typedef int int32_t */ /* [12] */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), + /* typedef unsigned long long uint64_t *//* [13] */ + BTF_TYPEDEF_ENC(NAME_TBD, 5), + /* union (anon) */ /* [14] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_UNION, 0, 2), 8), + BTF_MEMBER_ENC(NAME_TBD, 13, 0),/* uint64_t ui64; */ + BTF_MEMBER_ENC(NAME_TBD, 8, 0), /* uint8_t ui8a[8]; */ + /* enum (anon) */ /* [15] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 4), 4), + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_ENUM_ENC(NAME_TBD, 1), + BTF_ENUM_ENC(NAME_TBD, 2), + BTF_ENUM_ENC(NAME_TBD, 3), + /* struct pprint_mapv */ /* [16] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 11), 40), + BTF_MEMBER_ENC(NAME_TBD, 11, BTF_MEMBER_OFFSET(0, 0)), /* uint32_t ui32 */ + BTF_MEMBER_ENC(NAME_TBD, 10, BTF_MEMBER_OFFSET(0, 32)), /* uint16_t ui16 */ + BTF_MEMBER_ENC(NAME_TBD, 12, BTF_MEMBER_OFFSET(0, 64)), /* int32_t si32 */ + BTF_MEMBER_ENC(NAME_TBD, 6, BTF_MEMBER_OFFSET(2, 96)), /* unused_bits2a */ + BTF_MEMBER_ENC(NAME_TBD, 7, BTF_MEMBER_OFFSET(28, 98)), /* bits28 */ + BTF_MEMBER_ENC(NAME_TBD, 6, BTF_MEMBER_OFFSET(2, 126)), /* unused_bits2b */ + BTF_MEMBER_ENC(0, 14, BTF_MEMBER_OFFSET(0, 128)), /* union (anon) */ + BTF_MEMBER_ENC(NAME_TBD, 15, BTF_MEMBER_OFFSET(0, 192)), /* aenum */ + BTF_MEMBER_ENC(NAME_TBD, 11, BTF_MEMBER_OFFSET(0, 224)), /* uint32_t ui32b */ + BTF_MEMBER_ENC(NAME_TBD, 6, BTF_MEMBER_OFFSET(2, 256)), /* bits2c */ + BTF_MEMBER_ENC(NAME_TBD, 17, 264), /* si8_4 */ + BTF_TYPE_ARRAY_ENC(18, 1, 2), /* [17] */ + BTF_TYPE_ARRAY_ENC(1, 1, 2), /* [18] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0unsigned char\0unsigned short\0unsigned int\0int\0unsigned long long\0uint8_t\0uint16_t\0uint32_t\0int32_t\0uint64_t\0ui64\0ui8a\0ENUM_ZERO\0ENUM_ONE\0ENUM_TWO\0ENUM_THREE\0pprint_mapv\0ui32\0ui16\0si32\0unused_bits2a\0bits28\0unused_bits2b\0aenum\0ui32b\0bits2c\0si8_4"), + .key_size = sizeof(unsigned int), + .value_size = sizeof(struct pprint_mapv), + .key_type_id = 3, /* unsigned int */ + .value_type_id = 16, /* struct pprint_mapv */ + .max_entries = 128, +}, + +{ + /* this type will have the same layout as the + * first .raw_types definition. The struct type will + * be encoded with kind_flag set, bitfield members + * are added typedef/const/volatile, and bitfield members + * will have both int and enum types. + */ + .raw_types = { + /* unsighed char */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 8, 1), + /* unsigned short */ /* [2] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 16, 2), + /* unsigned int */ /* [3] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 32, 4), + /* int */ /* [4] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), + /* unsigned long long */ /* [5] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 64, 8), + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [6] */ + BTF_TYPE_INT_ENC(0, 0, 0, 32, 4), /* [7] */ + /* uint8_t[8] */ /* [8] */ + BTF_TYPE_ARRAY_ENC(9, 1, 8), + /* typedef unsigned char uint8_t */ /* [9] */ + BTF_TYPEDEF_ENC(NAME_TBD, 1), + /* typedef unsigned short uint16_t */ /* [10] */ + BTF_TYPEDEF_ENC(NAME_TBD, 2), + /* typedef unsigned int uint32_t */ /* [11] */ + BTF_TYPEDEF_ENC(NAME_TBD, 3), + /* typedef int int32_t */ /* [12] */ + BTF_TYPEDEF_ENC(NAME_TBD, 4), + /* typedef unsigned long long uint64_t *//* [13] */ + BTF_TYPEDEF_ENC(NAME_TBD, 5), + /* union (anon) */ /* [14] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_UNION, 0, 2), 8), + BTF_MEMBER_ENC(NAME_TBD, 13, 0),/* uint64_t ui64; */ + BTF_MEMBER_ENC(NAME_TBD, 8, 0), /* uint8_t ui8a[8]; */ + /* enum (anon) */ /* [15] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 4), 4), + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_ENUM_ENC(NAME_TBD, 1), + BTF_ENUM_ENC(NAME_TBD, 2), + BTF_ENUM_ENC(NAME_TBD, 3), + /* struct pprint_mapv */ /* [16] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 11), 40), + BTF_MEMBER_ENC(NAME_TBD, 11, BTF_MEMBER_OFFSET(0, 0)), /* uint32_t ui32 */ + BTF_MEMBER_ENC(NAME_TBD, 10, BTF_MEMBER_OFFSET(0, 32)), /* uint16_t ui16 */ + BTF_MEMBER_ENC(NAME_TBD, 12, BTF_MEMBER_OFFSET(0, 64)), /* int32_t si32 */ + BTF_MEMBER_ENC(NAME_TBD, 17, BTF_MEMBER_OFFSET(2, 96)), /* unused_bits2a */ + BTF_MEMBER_ENC(NAME_TBD, 7, BTF_MEMBER_OFFSET(28, 98)), /* bits28 */ + BTF_MEMBER_ENC(NAME_TBD, 19, BTF_MEMBER_OFFSET(2, 126)),/* unused_bits2b */ + BTF_MEMBER_ENC(0, 14, BTF_MEMBER_OFFSET(0, 128)), /* union (anon) */ + BTF_MEMBER_ENC(NAME_TBD, 15, BTF_MEMBER_OFFSET(0, 192)), /* aenum */ + BTF_MEMBER_ENC(NAME_TBD, 11, BTF_MEMBER_OFFSET(0, 224)), /* uint32_t ui32b */ + BTF_MEMBER_ENC(NAME_TBD, 17, BTF_MEMBER_OFFSET(2, 256)), /* bits2c */ + BTF_MEMBER_ENC(NAME_TBD, 20, BTF_MEMBER_OFFSET(0, 264)), /* si8_4 */ + /* typedef unsigned int ___int */ /* [17] */ + BTF_TYPEDEF_ENC(NAME_TBD, 18), + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_VOLATILE, 0, 0), 6), /* [18] */ + BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_CONST, 0, 0), 15), /* [19] */ + BTF_TYPE_ARRAY_ENC(21, 1, 2), /* [20] */ + BTF_TYPE_ARRAY_ENC(1, 1, 2), /* [21] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0unsigned char\0unsigned short\0unsigned int\0int\0unsigned long long\0uint8_t\0uint16_t\0uint32_t\0int32_t\0uint64_t\0ui64\0ui8a\0ENUM_ZERO\0ENUM_ONE\0ENUM_TWO\0ENUM_THREE\0pprint_mapv\0ui32\0ui16\0si32\0unused_bits2a\0bits28\0unused_bits2b\0aenum\0ui32b\0bits2c\0___int\0si8_4"), + .key_size = sizeof(unsigned int), + .value_size = sizeof(struct pprint_mapv), + .key_type_id = 3, /* unsigned int */ + .value_type_id = 16, /* struct pprint_mapv */ + .max_entries = 128, +}, + +#ifdef __SIZEOF_INT128__ +{ + /* test int128 */ + .raw_types = { + /* unsigned int */ /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 32, 4), + /* __int128 */ /* [2] */ + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 128, 16), + /* unsigned __int128 */ /* [3] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 128, 16), + /* struct pprint_mapv_int128 */ /* [4] */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 5), 64), + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(0, 0)), /* si128a */ + BTF_MEMBER_ENC(NAME_TBD, 2, BTF_MEMBER_OFFSET(0, 128)), /* si128b */ + BTF_MEMBER_ENC(NAME_TBD, 3, BTF_MEMBER_OFFSET(3, 256)), /* bits3 */ + BTF_MEMBER_ENC(NAME_TBD, 3, BTF_MEMBER_OFFSET(80, 259)), /* bits80 */ + BTF_MEMBER_ENC(NAME_TBD, 3, BTF_MEMBER_OFFSET(0, 384)), /* ui128 */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0unsigned int\0__int128\0unsigned __int128\0pprint_mapv_int128\0si128a\0si128b\0bits3\0bits80\0ui128"), + .key_size = sizeof(unsigned int), + .value_size = sizeof(struct pprint_mapv_int128), + .key_type_id = 1, + .value_type_id = 4, + .max_entries = 128, + .mapv_kind = PPRINT_MAPV_KIND_INT128, +}, +#endif + +}; + +static struct btf_pprint_test_meta { + const char *descr; + enum bpf_map_type map_type; + const char *map_name; + bool ordered_map; + bool lossless_map; + bool percpu_map; +} pprint_tests_meta[] = { +{ + .descr = "BTF pretty print array", + .map_type = BPF_MAP_TYPE_ARRAY, + .map_name = "pprint_test_array", + .ordered_map = true, + .lossless_map = true, + .percpu_map = false, +}, + +{ + .descr = "BTF pretty print hash", + .map_type = BPF_MAP_TYPE_HASH, + .map_name = "pprint_test_hash", + .ordered_map = false, + .lossless_map = true, + .percpu_map = false, +}, + +{ + .descr = "BTF pretty print lru hash", + .map_type = BPF_MAP_TYPE_LRU_HASH, + .map_name = "pprint_test_lru_hash", + .ordered_map = false, + .lossless_map = false, + .percpu_map = false, +}, + +{ + .descr = "BTF pretty print percpu array", + .map_type = BPF_MAP_TYPE_PERCPU_ARRAY, + .map_name = "pprint_test_percpu_array", + .ordered_map = true, + .lossless_map = true, + .percpu_map = true, +}, + +{ + .descr = "BTF pretty print percpu hash", + .map_type = BPF_MAP_TYPE_PERCPU_HASH, + .map_name = "pprint_test_percpu_hash", + .ordered_map = false, + .lossless_map = true, + .percpu_map = true, +}, + +{ + .descr = "BTF pretty print lru percpu hash", + .map_type = BPF_MAP_TYPE_LRU_PERCPU_HASH, + .map_name = "pprint_test_lru_percpu_hash", + .ordered_map = false, + .lossless_map = false, + .percpu_map = true, +}, + +}; + +static size_t get_pprint_mapv_size(enum pprint_mapv_kind_t mapv_kind) +{ + if (mapv_kind == PPRINT_MAPV_KIND_BASIC) + return sizeof(struct pprint_mapv); + +#ifdef __SIZEOF_INT128__ + if (mapv_kind == PPRINT_MAPV_KIND_INT128) + return sizeof(struct pprint_mapv_int128); +#endif + + assert(0); + return 0; +} + +static void set_pprint_mapv(enum pprint_mapv_kind_t mapv_kind, + void *mapv, uint32_t i, + int num_cpus, int rounded_value_size) +{ + int cpu; + + if (mapv_kind == PPRINT_MAPV_KIND_BASIC) { + struct pprint_mapv *v = mapv; + + for (cpu = 0; cpu < num_cpus; cpu++) { + v->ui32 = i + cpu; + v->si32 = -i; + v->unused_bits2a = 3; + v->bits28 = i; + v->unused_bits2b = 3; + v->ui64 = i; + v->aenum = i & 0x03; + v->ui32b = 4; + v->bits2c = 1; + v->si8_4[0][0] = (cpu + i) & 0xff; + v->si8_4[0][1] = (cpu + i + 1) & 0xff; + v->si8_4[1][0] = (cpu + i + 2) & 0xff; + v->si8_4[1][1] = (cpu + i + 3) & 0xff; + v = (void *)v + rounded_value_size; + } + } + +#ifdef __SIZEOF_INT128__ + if (mapv_kind == PPRINT_MAPV_KIND_INT128) { + struct pprint_mapv_int128 *v = mapv; + + for (cpu = 0; cpu < num_cpus; cpu++) { + v->si128a = i; + v->si128b = -i; + v->bits3 = i & 0x07; + v->bits80 = (((unsigned __int128)1) << 64) + i; + v->ui128 = (((unsigned __int128)2) << 64) + i; + v = (void *)v + rounded_value_size; + } + } +#endif +} + +ssize_t get_pprint_expected_line(enum pprint_mapv_kind_t mapv_kind, + char *expected_line, ssize_t line_size, + bool percpu_map, unsigned int next_key, + int cpu, void *mapv) +{ + ssize_t nexpected_line = -1; + + if (mapv_kind == PPRINT_MAPV_KIND_BASIC) { + struct pprint_mapv *v = mapv; + + nexpected_line = snprintf(expected_line, line_size, + "%s%u: {%u,0,%d,0x%x,0x%x,0x%x," + "{%llu|[%u,%u,%u,%u,%u,%u,%u,%u]},%s," + "%u,0x%x,[[%d,%d],[%d,%d]]}\n", + percpu_map ? "\tcpu" : "", + percpu_map ? cpu : next_key, + v->ui32, v->si32, + v->unused_bits2a, + v->bits28, + v->unused_bits2b, + (__u64)v->ui64, + v->ui8a[0], v->ui8a[1], + v->ui8a[2], v->ui8a[3], + v->ui8a[4], v->ui8a[5], + v->ui8a[6], v->ui8a[7], + pprint_enum_str[v->aenum], + v->ui32b, + v->bits2c, + v->si8_4[0][0], v->si8_4[0][1], + v->si8_4[1][0], v->si8_4[1][1]); + } + +#ifdef __SIZEOF_INT128__ + if (mapv_kind == PPRINT_MAPV_KIND_INT128) { + struct pprint_mapv_int128 *v = mapv; + + nexpected_line = snprintf(expected_line, line_size, + "%s%u: {0x%lx,0x%lx,0x%lx," + "0x%lx%016lx,0x%lx%016lx}\n", + percpu_map ? "\tcpu" : "", + percpu_map ? cpu : next_key, + (uint64_t)v->si128a, + (uint64_t)v->si128b, + (uint64_t)v->bits3, + (uint64_t)(v->bits80 >> 64), + (uint64_t)v->bits80, + (uint64_t)(v->ui128 >> 64), + (uint64_t)v->ui128); + } +#endif + + return nexpected_line; +} + +static int check_line(const char *expected_line, int nexpected_line, + int expected_line_len, const char *line) +{ + if (CHECK(nexpected_line == expected_line_len, + "expected_line is too long")) + return -1; + + if (strcmp(expected_line, line)) { + fprintf(stderr, "unexpected pprint output\n"); + fprintf(stderr, "expected: %s", expected_line); + fprintf(stderr, " read: %s", line); + return -1; + } + + return 0; +} + + +static void do_test_pprint(int test_num) +{ + const struct btf_raw_test *test = &pprint_test_template[test_num]; + enum pprint_mapv_kind_t mapv_kind = test->mapv_kind; + LIBBPF_OPTS(bpf_map_create_opts, opts); + bool ordered_map, lossless_map, percpu_map; + int err, ret, num_cpus, rounded_value_size; + unsigned int key, nr_read_elems; + int map_fd = -1, btf_fd = -1; + unsigned int raw_btf_size; + char expected_line[255]; + FILE *pin_file = NULL; + char pin_path[255]; + size_t line_len = 0; + char *line = NULL; + void *mapv = NULL; + uint8_t *raw_btf; + ssize_t nread; + + if (!test__start_subtest(test->descr)) + return; + + raw_btf = btf_raw_create(&hdr_tmpl, test->raw_types, + test->str_sec, test->str_sec_size, + &raw_btf_size, NULL); + + if (!raw_btf) + return; + + *btf_log_buf = '\0'; + btf_fd = load_raw_btf(raw_btf, raw_btf_size); + free(raw_btf); + + if (CHECK(btf_fd < 0, "errno:%d\n", errno)) { + err = -1; + goto done; + } + + opts.btf_fd = btf_fd; + opts.btf_key_type_id = test->key_type_id; + opts.btf_value_type_id = test->value_type_id; + map_fd = bpf_map_create(test->map_type, test->map_name, + test->key_size, test->value_size, test->max_entries, &opts); + if (CHECK(map_fd < 0, "errno:%d", errno)) { + err = -1; + goto done; + } + + ret = snprintf(pin_path, sizeof(pin_path), "%s/%s", + "/sys/fs/bpf", test->map_name); + + if (CHECK(ret >= sizeof(pin_path), "pin_path %s/%s is too long", + "/sys/fs/bpf", test->map_name)) { + err = -1; + goto done; + } + + err = bpf_obj_pin(map_fd, pin_path); + if (CHECK(err, "bpf_obj_pin(%s): errno:%d.", pin_path, errno)) + goto done; + + percpu_map = test->percpu_map; + num_cpus = percpu_map ? bpf_num_possible_cpus() : 1; + rounded_value_size = round_up(get_pprint_mapv_size(mapv_kind), 8); + mapv = calloc(num_cpus, rounded_value_size); + if (CHECK(!mapv, "mapv allocation failure")) { + err = -1; + goto done; + } + + for (key = 0; key < test->max_entries; key++) { + set_pprint_mapv(mapv_kind, mapv, key, num_cpus, rounded_value_size); + bpf_map_update_elem(map_fd, &key, mapv, 0); + } + + pin_file = fopen(pin_path, "r"); + if (CHECK(!pin_file, "fopen(%s): errno:%d", pin_path, errno)) { + err = -1; + goto done; + } + + /* Skip lines start with '#' */ + while ((nread = getline(&line, &line_len, pin_file)) > 0 && + *line == '#') + ; + + if (CHECK(nread <= 0, "Unexpected EOF")) { + err = -1; + goto done; + } + + nr_read_elems = 0; + ordered_map = test->ordered_map; + lossless_map = test->lossless_map; + do { + ssize_t nexpected_line; + unsigned int next_key; + void *cmapv; + int cpu; + + next_key = ordered_map ? nr_read_elems : atoi(line); + set_pprint_mapv(mapv_kind, mapv, next_key, num_cpus, rounded_value_size); + cmapv = mapv; + + for (cpu = 0; cpu < num_cpus; cpu++) { + if (percpu_map) { + /* for percpu map, the format looks like: + * <key>: { + * cpu0: <value_on_cpu0> + * cpu1: <value_on_cpu1> + * ... + * cpun: <value_on_cpun> + * } + * + * let us verify the line containing the key here. + */ + if (cpu == 0) { + nexpected_line = snprintf(expected_line, + sizeof(expected_line), + "%u: {\n", + next_key); + + err = check_line(expected_line, nexpected_line, + sizeof(expected_line), line); + if (err < 0) + goto done; + } + + /* read value@cpu */ + nread = getline(&line, &line_len, pin_file); + if (nread < 0) + break; + } + + nexpected_line = get_pprint_expected_line(mapv_kind, expected_line, + sizeof(expected_line), + percpu_map, next_key, + cpu, cmapv); + err = check_line(expected_line, nexpected_line, + sizeof(expected_line), line); + if (err < 0) + goto done; + + cmapv = cmapv + rounded_value_size; + } + + if (percpu_map) { + /* skip the last bracket for the percpu map */ + nread = getline(&line, &line_len, pin_file); + if (nread < 0) + break; + } + + nread = getline(&line, &line_len, pin_file); + } while (++nr_read_elems < test->max_entries && nread > 0); + + if (lossless_map && + CHECK(nr_read_elems < test->max_entries, + "Unexpected EOF. nr_read_elems:%u test->max_entries:%u", + nr_read_elems, test->max_entries)) { + err = -1; + goto done; + } + + if (CHECK(nread > 0, "Unexpected extra pprint output: %s", line)) { + err = -1; + goto done; + } + + err = 0; + +done: + if (mapv) + free(mapv); + if (!err) + fprintf(stderr, "OK"); + if (*btf_log_buf && (err || always_log)) + fprintf(stderr, "\n%s", btf_log_buf); + if (btf_fd >= 0) + close(btf_fd); + if (map_fd >= 0) + close(map_fd); + if (pin_file) + fclose(pin_file); + unlink(pin_path); + free(line); +} + +static void test_pprint(void) +{ + unsigned int i; + + /* test various maps with the first test template */ + for (i = 0; i < ARRAY_SIZE(pprint_tests_meta); i++) { + pprint_test_template[0].descr = pprint_tests_meta[i].descr; + pprint_test_template[0].map_type = pprint_tests_meta[i].map_type; + pprint_test_template[0].map_name = pprint_tests_meta[i].map_name; + pprint_test_template[0].ordered_map = pprint_tests_meta[i].ordered_map; + pprint_test_template[0].lossless_map = pprint_tests_meta[i].lossless_map; + pprint_test_template[0].percpu_map = pprint_tests_meta[i].percpu_map; + + do_test_pprint(0); + } + + /* test rest test templates with the first map */ + for (i = 1; i < ARRAY_SIZE(pprint_test_template); i++) { + pprint_test_template[i].descr = pprint_tests_meta[0].descr; + pprint_test_template[i].map_type = pprint_tests_meta[0].map_type; + pprint_test_template[i].map_name = pprint_tests_meta[0].map_name; + pprint_test_template[i].ordered_map = pprint_tests_meta[0].ordered_map; + pprint_test_template[i].lossless_map = pprint_tests_meta[0].lossless_map; + pprint_test_template[i].percpu_map = pprint_tests_meta[0].percpu_map; + do_test_pprint(i); + } +} + +#define BPF_LINE_INFO_ENC(insn_off, file_off, line_off, line_num, line_col) \ + (insn_off), (file_off), (line_off), ((line_num) << 10 | ((line_col) & 0x3ff)) + +static struct prog_info_raw_test { + const char *descr; + const char *str_sec; + const char *err_str; + __u32 raw_types[MAX_NR_RAW_U32]; + __u32 str_sec_size; + struct bpf_insn insns[MAX_INSNS]; + __u32 prog_type; + __u32 func_info[MAX_SUBPROGS][2]; + __u32 func_info_rec_size; + __u32 func_info_cnt; + __u32 line_info[MAX_NR_RAW_U32]; + __u32 line_info_rec_size; + __u32 nr_jited_ksyms; + bool expected_prog_load_failure; + __u32 dead_code_cnt; + __u32 dead_code_mask; + __u32 dead_func_cnt; + __u32 dead_func_mask; +} info_raw_tests[] = { +{ + .descr = "func_type (main func + one sub)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 32, 4), /* [2] */ + BTF_FUNC_PROTO_ENC(1, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ENC(1, 2), /* [4] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 3), /* [5] */ + BTF_FUNC_ENC(NAME_TBD, 4), /* [6] */ + BTF_END_RAW, + }, + .str_sec = "\0int\0unsigned int\0a\0b\0c\0d\0funcA\0funcB", + .str_sec_size = sizeof("\0int\0unsigned int\0a\0b\0c\0d\0funcA\0funcB"), + .insns = { + BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 1, 0, 2), + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_EXIT_INSN(), + BPF_MOV64_IMM(BPF_REG_0, 2), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info = { {0, 5}, {3, 6} }, + .func_info_rec_size = 8, + .func_info_cnt = 2, + .line_info = { BTF_END_RAW }, +}, + +{ + .descr = "func_type (Incorrect func_info_rec_size)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 32, 4), /* [2] */ + BTF_FUNC_PROTO_ENC(1, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ENC(1, 2), /* [4] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 3), /* [5] */ + BTF_FUNC_ENC(NAME_TBD, 4), /* [6] */ + BTF_END_RAW, + }, + .str_sec = "\0int\0unsigned int\0a\0b\0c\0d\0funcA\0funcB", + .str_sec_size = sizeof("\0int\0unsigned int\0a\0b\0c\0d\0funcA\0funcB"), + .insns = { + BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 1, 0, 2), + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_EXIT_INSN(), + BPF_MOV64_IMM(BPF_REG_0, 2), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info = { {0, 5}, {3, 6} }, + .func_info_rec_size = 4, + .func_info_cnt = 2, + .line_info = { BTF_END_RAW }, + .expected_prog_load_failure = true, +}, + +{ + .descr = "func_type (Incorrect func_info_cnt)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 32, 4), /* [2] */ + BTF_FUNC_PROTO_ENC(1, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ENC(1, 2), /* [4] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 3), /* [5] */ + BTF_FUNC_ENC(NAME_TBD, 4), /* [6] */ + BTF_END_RAW, + }, + .str_sec = "\0int\0unsigned int\0a\0b\0c\0d\0funcA\0funcB", + .str_sec_size = sizeof("\0int\0unsigned int\0a\0b\0c\0d\0funcA\0funcB"), + .insns = { + BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 1, 0, 2), + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_EXIT_INSN(), + BPF_MOV64_IMM(BPF_REG_0, 2), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info = { {0, 5}, {3, 6} }, + .func_info_rec_size = 8, + .func_info_cnt = 1, + .line_info = { BTF_END_RAW }, + .expected_prog_load_failure = true, +}, + +{ + .descr = "func_type (Incorrect bpf_func_info.insn_off)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 32, 4), /* [2] */ + BTF_FUNC_PROTO_ENC(1, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ENC(1, 2), /* [4] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 2), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 3), /* [5] */ + BTF_FUNC_ENC(NAME_TBD, 4), /* [6] */ + BTF_END_RAW, + }, + .str_sec = "\0int\0unsigned int\0a\0b\0c\0d\0funcA\0funcB", + .str_sec_size = sizeof("\0int\0unsigned int\0a\0b\0c\0d\0funcA\0funcB"), + .insns = { + BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 1, 0, 2), + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_EXIT_INSN(), + BPF_MOV64_IMM(BPF_REG_0, 2), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info = { {0, 5}, {2, 6} }, + .func_info_rec_size = 8, + .func_info_cnt = 2, + .line_info = { BTF_END_RAW }, + .expected_prog_load_failure = true, +}, + +{ + .descr = "line_info (No subprog)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1;\0int b=2;\0return a + b;\0return a + b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_MOV64_IMM(BPF_REG_1, 2), + BPF_ALU64_REG(BPF_ADD, BPF_REG_0, BPF_REG_1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(1, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 4, 7), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 1, +}, + +{ + .descr = "line_info (No subprog. insn_off >= prog->len)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1;\0int b=2;\0return a + b;\0return a + b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_MOV64_IMM(BPF_REG_1, 2), + BPF_ALU64_REG(BPF_ADD, BPF_REG_0, BPF_REG_1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(1, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 4, 7), + BPF_LINE_INFO_ENC(4, 0, 0, 5, 6), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 1, + .err_str = "line_info[4].insn_off", + .expected_prog_load_failure = true, +}, + +{ + .descr = "line_info (Zero bpf insn code)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_INT_ENC(NAME_TBD, 0, 0, 64, 8), /* [2] */ + BTF_TYPEDEF_ENC(NAME_TBD, 2), /* [3] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0unsigned long\0u64\0u64 a=1;\0return a;"), + .insns = { + BPF_LD_IMM64(BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(1, 0, 0, 2, 9), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 3, 8), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 1, + .err_str = "Invalid insn code at line_info[1]", + .expected_prog_load_failure = true, +}, + +{ + .descr = "line_info (No subprog. zero tailing line_info", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1;\0int b=2;\0return a + b;\0return a + b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_MOV64_IMM(BPF_REG_1, 2), + BPF_ALU64_REG(BPF_ADD, BPF_REG_0, BPF_REG_1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), 0, + BPF_LINE_INFO_ENC(1, 0, NAME_TBD, 2, 9), 0, + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 3, 8), 0, + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 4, 7), 0, + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info) + sizeof(__u32), + .nr_jited_ksyms = 1, +}, + +{ + .descr = "line_info (No subprog. nonzero tailing line_info)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1;\0int b=2;\0return a + b;\0return a + b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_MOV64_IMM(BPF_REG_1, 2), + BPF_ALU64_REG(BPF_ADD, BPF_REG_0, BPF_REG_1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), 0, + BPF_LINE_INFO_ENC(1, 0, NAME_TBD, 2, 9), 0, + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 3, 8), 0, + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 4, 7), 1, + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info) + sizeof(__u32), + .nr_jited_ksyms = 1, + .err_str = "nonzero tailing record in line_info", + .expected_prog_load_failure = true, +}, + +{ + .descr = "line_info (subprog)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1+1;\0return func(a);\0b+=1;\0return b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_2, 1), + BPF_MOV64_REG(BPF_REG_1, BPF_REG_2), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_MOV64_REG(BPF_REG_0, BPF_REG_1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 4, 7), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, +}, + +{ + .descr = "line_info (subprog + func_info)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(1, 1), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0x\0sub\0main\0int a=1+1;\0return func(a);\0b+=1;\0return b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_2, 1), + BPF_MOV64_REG(BPF_REG_1, BPF_REG_2), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_MOV64_REG(BPF_REG_0, BPF_REG_1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 2, + .func_info_rec_size = 8, + .func_info = { {0, 4}, {5, 3} }, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 4, 7), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, +}, + +{ + .descr = "line_info (subprog. missing 1st func line info)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1+1;\0return func(a);\0b+=1;\0return b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_2, 1), + BPF_MOV64_REG(BPF_REG_1, BPF_REG_2), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_MOV64_REG(BPF_REG_0, BPF_REG_1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(1, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 4, 7), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, + .err_str = "missing bpf_line_info for func#0", + .expected_prog_load_failure = true, +}, + +{ + .descr = "line_info (subprog. missing 2nd func line info)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1+1;\0return func(a);\0b+=1;\0return b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_2, 1), + BPF_MOV64_REG(BPF_REG_1, BPF_REG_2), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_MOV64_REG(BPF_REG_0, BPF_REG_1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(6, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 4, 7), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, + .err_str = "missing bpf_line_info for func#1", + .expected_prog_load_failure = true, +}, + +{ + .descr = "line_info (subprog. unordered insn offset)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1+1;\0return func(a);\0b+=1;\0return b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_2, 1), + BPF_MOV64_REG(BPF_REG_1, BPF_REG_2), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_MOV64_REG(BPF_REG_0, BPF_REG_1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 4, 7), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, + .err_str = "Invalid line_info[2].insn_off", + .expected_prog_load_failure = true, +}, + +{ + .descr = "line_info (dead start)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0/* dead jmp */\0int a=1;\0int b=2;\0return a + b;\0return a + b;"), + .insns = { + BPF_JMP_IMM(BPF_JA, 0, 0, 0), + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_MOV64_IMM(BPF_REG_1, 2), + BPF_ALU64_REG(BPF_ADD, BPF_REG_0, BPF_REG_1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(1, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 4, 7), + BPF_LINE_INFO_ENC(4, 0, NAME_TBD, 5, 6), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 1, + .dead_code_cnt = 1, + .dead_code_mask = 0x01, +}, + +{ + .descr = "line_info (dead end)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0int a=1;\0int b=2;\0return a + b;\0/* dead jmp */\0return a + b;\0/* dead exit */"), + .insns = { + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_MOV64_IMM(BPF_REG_1, 2), + BPF_ALU64_REG(BPF_ADD, BPF_REG_0, BPF_REG_1), + BPF_JMP_IMM(BPF_JGE, BPF_REG_0, 10, 1), + BPF_EXIT_INSN(), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 0, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 12), + BPF_LINE_INFO_ENC(1, 0, NAME_TBD, 2, 11), + BPF_LINE_INFO_ENC(2, 0, NAME_TBD, 3, 10), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 4, 9), + BPF_LINE_INFO_ENC(4, 0, NAME_TBD, 5, 8), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 6, 7), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 1, + .dead_code_cnt = 2, + .dead_code_mask = 0x28, +}, + +{ + .descr = "line_info (dead code + subprog + func_info)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(1, 1), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0x\0sub\0main\0int a=1+1;\0/* dead jmp */" + "\0/* dead */\0/* dead */\0/* dead */\0/* dead */" + "\0/* dead */\0/* dead */\0/* dead */\0/* dead */" + "\0return func(a);\0b+=1;\0return b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_2, 1), + BPF_MOV64_REG(BPF_REG_1, BPF_REG_2), + BPF_JMP_IMM(BPF_JGE, BPF_REG_2, 0, 8), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_MOV64_REG(BPF_REG_0, BPF_REG_1), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 2, + .func_info_rec_size = 8, + .func_info = { {0, 4}, {14, 3} }, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(4, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(6, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(8, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(9, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(10, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(11, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(12, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(14, 0, NAME_TBD, 3, 8), + BPF_LINE_INFO_ENC(16, 0, NAME_TBD, 4, 7), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, + .dead_code_cnt = 9, + .dead_code_mask = 0x3fe, +}, + +{ + .descr = "line_info (dead subprog)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(1, 1), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [4] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0x\0dead\0main\0func\0int a=1+1;\0/* live call */" + "\0return 0;\0return 0;\0/* dead */\0/* dead */" + "\0/* dead */\0return bla + 1;\0return bla + 1;" + "\0return bla + 1;\0return func(a);\0b+=1;\0return b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_JMP_IMM(BPF_JGE, BPF_REG_2, 0, 1), + BPF_CALL_REL(3), + BPF_CALL_REL(5), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_MOV64_REG(BPF_REG_0, 2), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 3, + .func_info_rec_size = 8, + .func_info = { {0, 4}, {6, 3}, {9, 5} }, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(4, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(6, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(8, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(9, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(10, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(11, 0, NAME_TBD, 2, 9), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, + .dead_code_cnt = 3, + .dead_code_mask = 0x70, + .dead_func_cnt = 1, + .dead_func_mask = 0x2, +}, + +{ + .descr = "line_info (dead last subprog)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(1, 1), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0x\0dead\0main\0int a=1+1;\0/* live call */" + "\0return 0;\0/* dead */\0/* dead */"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_JMP_IMM(BPF_JGE, BPF_REG_2, 0, 1), + BPF_CALL_REL(2), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 2, + .func_info_rec_size = 8, + .func_info = { {0, 4}, {5, 3} }, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(4, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(6, 0, NAME_TBD, 1, 10), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 1, + .dead_code_cnt = 2, + .dead_code_mask = 0x18, + .dead_func_cnt = 1, + .dead_func_mask = 0x2, +}, + +{ + .descr = "line_info (dead subprog + dead start)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(1, 1), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [4] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0x\0dead\0main\0func\0int a=1+1;\0/* dead */" + "\0return 0;\0return 0;\0return 0;" + "\0/* dead */\0/* dead */\0/* dead */\0/* dead */" + "\0return b + 1;\0return b + 1;\0return b + 1;"), + .insns = { + BPF_JMP_IMM(BPF_JA, 0, 0, 0), + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_JMP_IMM(BPF_JGE, BPF_REG_2, 0, 1), + BPF_CALL_REL(3), + BPF_CALL_REL(5), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_JMP_IMM(BPF_JA, 0, 0, 0), + BPF_MOV64_REG(BPF_REG_0, 2), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 3, + .func_info_rec_size = 8, + .func_info = { {0, 4}, {7, 3}, {10, 5} }, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(4, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(6, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(8, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(9, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(10, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(11, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(12, 0, NAME_TBD, 2, 9), + BPF_LINE_INFO_ENC(13, 0, NAME_TBD, 2, 9), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, + .dead_code_cnt = 5, + .dead_code_mask = 0x1e2, + .dead_func_cnt = 1, + .dead_func_mask = 0x2, +}, + +{ + .descr = "line_info (dead subprog + dead start w/ move)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(1, 1), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [4] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0x\0dead\0main\0func\0int a=1+1;\0/* live call */" + "\0return 0;\0return 0;\0/* dead */\0/* dead */" + "\0/* dead */\0return bla + 1;\0return bla + 1;" + "\0return bla + 1;\0return func(a);\0b+=1;\0return b;"), + .insns = { + BPF_MOV64_IMM(BPF_REG_2, 1), + BPF_JMP_IMM(BPF_JGE, BPF_REG_2, 0, 1), + BPF_CALL_REL(3), + BPF_CALL_REL(5), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_CALL_REL(1), + BPF_EXIT_INSN(), + BPF_JMP_IMM(BPF_JA, 0, 0, 0), + BPF_MOV64_REG(BPF_REG_0, 2), + BPF_ALU64_IMM(BPF_ADD, BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 3, + .func_info_rec_size = 8, + .func_info = { {0, 4}, {6, 3}, {9, 5} }, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(3, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(4, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(5, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(6, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(7, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(8, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(9, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(11, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(12, 0, NAME_TBD, 2, 9), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, + .dead_code_cnt = 3, + .dead_code_mask = 0x70, + .dead_func_cnt = 1, + .dead_func_mask = 0x2, +}, + +{ + .descr = "line_info (dead end + subprog start w/ no linfo)", + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(1, 1), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_ENC(NAME_TBD, 2), /* [3] */ + BTF_FUNC_ENC(NAME_TBD, 2), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0x\0main\0func\0/* main linfo */\0/* func linfo */"), + .insns = { + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_JMP_IMM(BPF_JGE, BPF_REG_0, 1, 3), + BPF_CALL_REL(3), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + BPF_EXIT_INSN(), + BPF_JMP_IMM(BPF_JA, 0, 0, 0), + BPF_EXIT_INSN(), + }, + .prog_type = BPF_PROG_TYPE_TRACEPOINT, + .func_info_cnt = 2, + .func_info_rec_size = 8, + .func_info = { {0, 3}, {6, 4}, }, + .line_info = { + BPF_LINE_INFO_ENC(0, 0, NAME_TBD, 1, 10), + BPF_LINE_INFO_ENC(6, 0, NAME_TBD, 1, 10), + BTF_END_RAW, + }, + .line_info_rec_size = sizeof(struct bpf_line_info), + .nr_jited_ksyms = 2, +}, + +}; + +static size_t probe_prog_length(const struct bpf_insn *fp) +{ + size_t len; + + for (len = MAX_INSNS - 1; len > 0; --len) + if (fp[len].code != 0 || fp[len].imm != 0) + break; + return len + 1; +} + +static __u32 *patch_name_tbd(const __u32 *raw_u32, + const char *str, __u32 str_off, + unsigned int str_sec_size, + unsigned int *ret_size) +{ + int i, raw_u32_size = get_raw_sec_size(raw_u32); + const char *end_str = str + str_sec_size; + const char *next_str = str + str_off; + __u32 *new_u32 = NULL; + + if (raw_u32_size == -1) + return ERR_PTR(-EINVAL); + + if (!raw_u32_size) { + *ret_size = 0; + return NULL; + } + + new_u32 = malloc(raw_u32_size); + if (!new_u32) + return ERR_PTR(-ENOMEM); + + for (i = 0; i < raw_u32_size / sizeof(raw_u32[0]); i++) { + if (raw_u32[i] == NAME_TBD) { + next_str = get_next_str(next_str, end_str); + if (CHECK(!next_str, "Error in getting next_str\n")) { + free(new_u32); + return ERR_PTR(-EINVAL); + } + new_u32[i] = next_str - str; + next_str += strlen(next_str); + } else { + new_u32[i] = raw_u32[i]; + } + } + + *ret_size = raw_u32_size; + return new_u32; +} + +static int test_get_finfo(const struct prog_info_raw_test *test, + int prog_fd) +{ + struct bpf_prog_info info = {}; + struct bpf_func_info *finfo; + __u32 info_len, rec_size, i; + void *func_info = NULL; + __u32 nr_func_info; + int err; + + /* get necessary lens */ + info_len = sizeof(struct bpf_prog_info); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + if (CHECK(err < 0, "invalid get info (1st) errno:%d", errno)) { + fprintf(stderr, "%s\n", btf_log_buf); + return -1; + } + nr_func_info = test->func_info_cnt - test->dead_func_cnt; + if (CHECK(info.nr_func_info != nr_func_info, + "incorrect info.nr_func_info (1st) %d", + info.nr_func_info)) { + return -1; + } + + rec_size = info.func_info_rec_size; + if (CHECK(rec_size != sizeof(struct bpf_func_info), + "incorrect info.func_info_rec_size (1st) %d", rec_size)) { + return -1; + } + + if (!info.nr_func_info) + return 0; + + func_info = malloc(info.nr_func_info * rec_size); + if (CHECK(!func_info, "out of memory")) + return -1; + + /* reset info to only retrieve func_info related data */ + memset(&info, 0, sizeof(info)); + info.nr_func_info = nr_func_info; + info.func_info_rec_size = rec_size; + info.func_info = ptr_to_u64(func_info); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + if (CHECK(err < 0, "invalid get info (2nd) errno:%d", errno)) { + fprintf(stderr, "%s\n", btf_log_buf); + err = -1; + goto done; + } + if (CHECK(info.nr_func_info != nr_func_info, + "incorrect info.nr_func_info (2nd) %d", + info.nr_func_info)) { + err = -1; + goto done; + } + if (CHECK(info.func_info_rec_size != rec_size, + "incorrect info.func_info_rec_size (2nd) %d", + info.func_info_rec_size)) { + err = -1; + goto done; + } + + finfo = func_info; + for (i = 0; i < nr_func_info; i++) { + if (test->dead_func_mask & (1 << i)) + continue; + if (CHECK(finfo->type_id != test->func_info[i][1], + "incorrect func_type %u expected %u", + finfo->type_id, test->func_info[i][1])) { + err = -1; + goto done; + } + finfo = (void *)finfo + rec_size; + } + + err = 0; + +done: + free(func_info); + return err; +} + +static int test_get_linfo(const struct prog_info_raw_test *test, + const void *patched_linfo, + __u32 cnt, int prog_fd) +{ + __u32 i, info_len, nr_jited_ksyms, nr_jited_func_lens; + __u64 *jited_linfo = NULL, *jited_ksyms = NULL; + __u32 rec_size, jited_rec_size, jited_cnt; + struct bpf_line_info *linfo = NULL; + __u32 cur_func_len, ksyms_found; + struct bpf_prog_info info = {}; + __u32 *jited_func_lens = NULL; + __u64 cur_func_ksyms; + __u32 dead_insns; + int err; + + jited_cnt = cnt; + rec_size = sizeof(*linfo); + jited_rec_size = sizeof(*jited_linfo); + if (test->nr_jited_ksyms) + nr_jited_ksyms = test->nr_jited_ksyms; + else + nr_jited_ksyms = test->func_info_cnt - test->dead_func_cnt; + nr_jited_func_lens = nr_jited_ksyms; + + info_len = sizeof(struct bpf_prog_info); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + if (CHECK(err < 0, "err:%d errno:%d", err, errno)) { + err = -1; + goto done; + } + + if (!info.jited_prog_len) { + /* prog is not jited */ + jited_cnt = 0; + nr_jited_ksyms = 1; + nr_jited_func_lens = 1; + } + + if (CHECK(info.nr_line_info != cnt || + info.nr_jited_line_info != jited_cnt || + info.nr_jited_ksyms != nr_jited_ksyms || + info.nr_jited_func_lens != nr_jited_func_lens || + (!info.nr_line_info && info.nr_jited_line_info), + "info: nr_line_info:%u(expected:%u) nr_jited_line_info:%u(expected:%u) nr_jited_ksyms:%u(expected:%u) nr_jited_func_lens:%u(expected:%u)", + info.nr_line_info, cnt, + info.nr_jited_line_info, jited_cnt, + info.nr_jited_ksyms, nr_jited_ksyms, + info.nr_jited_func_lens, nr_jited_func_lens)) { + err = -1; + goto done; + } + + if (CHECK(info.line_info_rec_size != sizeof(struct bpf_line_info) || + info.jited_line_info_rec_size != sizeof(__u64), + "info: line_info_rec_size:%u(userspace expected:%u) jited_line_info_rec_size:%u(userspace expected:%u)", + info.line_info_rec_size, rec_size, + info.jited_line_info_rec_size, jited_rec_size)) { + err = -1; + goto done; + } + + if (!cnt) + return 0; + + rec_size = info.line_info_rec_size; + jited_rec_size = info.jited_line_info_rec_size; + + memset(&info, 0, sizeof(info)); + + linfo = calloc(cnt, rec_size); + if (CHECK(!linfo, "!linfo")) { + err = -1; + goto done; + } + info.nr_line_info = cnt; + info.line_info_rec_size = rec_size; + info.line_info = ptr_to_u64(linfo); + + if (jited_cnt) { + jited_linfo = calloc(jited_cnt, jited_rec_size); + jited_ksyms = calloc(nr_jited_ksyms, sizeof(*jited_ksyms)); + jited_func_lens = calloc(nr_jited_func_lens, + sizeof(*jited_func_lens)); + if (CHECK(!jited_linfo || !jited_ksyms || !jited_func_lens, + "jited_linfo:%p jited_ksyms:%p jited_func_lens:%p", + jited_linfo, jited_ksyms, jited_func_lens)) { + err = -1; + goto done; + } + + info.nr_jited_line_info = jited_cnt; + info.jited_line_info_rec_size = jited_rec_size; + info.jited_line_info = ptr_to_u64(jited_linfo); + info.nr_jited_ksyms = nr_jited_ksyms; + info.jited_ksyms = ptr_to_u64(jited_ksyms); + info.nr_jited_func_lens = nr_jited_func_lens; + info.jited_func_lens = ptr_to_u64(jited_func_lens); + } + + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + + /* + * Only recheck the info.*line_info* fields. + * Other fields are not the concern of this test. + */ + if (CHECK(err < 0 || + info.nr_line_info != cnt || + (jited_cnt && !info.jited_line_info) || + info.nr_jited_line_info != jited_cnt || + info.line_info_rec_size != rec_size || + info.jited_line_info_rec_size != jited_rec_size, + "err:%d errno:%d info: nr_line_info:%u(expected:%u) nr_jited_line_info:%u(expected:%u) line_info_rec_size:%u(expected:%u) jited_linfo_rec_size:%u(expected:%u) line_info:%p jited_line_info:%p", + err, errno, + info.nr_line_info, cnt, + info.nr_jited_line_info, jited_cnt, + info.line_info_rec_size, rec_size, + info.jited_line_info_rec_size, jited_rec_size, + (void *)(long)info.line_info, + (void *)(long)info.jited_line_info)) { + err = -1; + goto done; + } + + dead_insns = 0; + while (test->dead_code_mask & (1 << dead_insns)) + dead_insns++; + + CHECK(linfo[0].insn_off, "linfo[0].insn_off:%u", + linfo[0].insn_off); + for (i = 1; i < cnt; i++) { + const struct bpf_line_info *expected_linfo; + + while (test->dead_code_mask & (1 << (i + dead_insns))) + dead_insns++; + + expected_linfo = patched_linfo + + ((i + dead_insns) * test->line_info_rec_size); + if (CHECK(linfo[i].insn_off <= linfo[i - 1].insn_off, + "linfo[%u].insn_off:%u <= linfo[%u].insn_off:%u", + i, linfo[i].insn_off, + i - 1, linfo[i - 1].insn_off)) { + err = -1; + goto done; + } + if (CHECK(linfo[i].file_name_off != expected_linfo->file_name_off || + linfo[i].line_off != expected_linfo->line_off || + linfo[i].line_col != expected_linfo->line_col, + "linfo[%u] (%u, %u, %u) != (%u, %u, %u)", i, + linfo[i].file_name_off, + linfo[i].line_off, + linfo[i].line_col, + expected_linfo->file_name_off, + expected_linfo->line_off, + expected_linfo->line_col)) { + err = -1; + goto done; + } + } + + if (!jited_cnt) { + fprintf(stderr, "not jited. skipping jited_line_info check. "); + err = 0; + goto done; + } + + if (CHECK(jited_linfo[0] != jited_ksyms[0], + "jited_linfo[0]:%lx != jited_ksyms[0]:%lx", + (long)(jited_linfo[0]), (long)(jited_ksyms[0]))) { + err = -1; + goto done; + } + + ksyms_found = 1; + cur_func_len = jited_func_lens[0]; + cur_func_ksyms = jited_ksyms[0]; + for (i = 1; i < jited_cnt; i++) { + if (ksyms_found < nr_jited_ksyms && + jited_linfo[i] == jited_ksyms[ksyms_found]) { + cur_func_ksyms = jited_ksyms[ksyms_found]; + cur_func_len = jited_ksyms[ksyms_found]; + ksyms_found++; + continue; + } + + if (CHECK(jited_linfo[i] <= jited_linfo[i - 1], + "jited_linfo[%u]:%lx <= jited_linfo[%u]:%lx", + i, (long)jited_linfo[i], + i - 1, (long)(jited_linfo[i - 1]))) { + err = -1; + goto done; + } + + if (CHECK(jited_linfo[i] - cur_func_ksyms > cur_func_len, + "jited_linfo[%u]:%lx - %lx > %u", + i, (long)jited_linfo[i], (long)cur_func_ksyms, + cur_func_len)) { + err = -1; + goto done; + } + } + + if (CHECK(ksyms_found != nr_jited_ksyms, + "ksyms_found:%u != nr_jited_ksyms:%u", + ksyms_found, nr_jited_ksyms)) { + err = -1; + goto done; + } + + err = 0; + +done: + free(linfo); + free(jited_linfo); + free(jited_ksyms); + free(jited_func_lens); + return err; +} + +static void do_test_info_raw(unsigned int test_num) +{ + const struct prog_info_raw_test *test = &info_raw_tests[test_num - 1]; + unsigned int raw_btf_size, linfo_str_off, linfo_size = 0; + int btf_fd = -1, prog_fd = -1, err = 0; + void *raw_btf, *patched_linfo = NULL; + const char *ret_next_str; + union bpf_attr attr = {}; + + if (!test__start_subtest(test->descr)) + return; + + raw_btf = btf_raw_create(&hdr_tmpl, test->raw_types, + test->str_sec, test->str_sec_size, + &raw_btf_size, &ret_next_str); + if (!raw_btf) + return; + + *btf_log_buf = '\0'; + btf_fd = load_raw_btf(raw_btf, raw_btf_size); + free(raw_btf); + + if (CHECK(btf_fd < 0, "invalid btf_fd errno:%d", errno)) { + err = -1; + goto done; + } + + if (*btf_log_buf && always_log) + fprintf(stderr, "\n%s", btf_log_buf); + *btf_log_buf = '\0'; + + linfo_str_off = ret_next_str - test->str_sec; + patched_linfo = patch_name_tbd(test->line_info, + test->str_sec, linfo_str_off, + test->str_sec_size, &linfo_size); + err = libbpf_get_error(patched_linfo); + if (err) { + fprintf(stderr, "error in creating raw bpf_line_info"); + err = -1; + goto done; + } + + attr.prog_type = test->prog_type; + attr.insns = ptr_to_u64(test->insns); + attr.insn_cnt = probe_prog_length(test->insns); + attr.license = ptr_to_u64("GPL"); + attr.prog_btf_fd = btf_fd; + attr.func_info_rec_size = test->func_info_rec_size; + attr.func_info_cnt = test->func_info_cnt; + attr.func_info = ptr_to_u64(test->func_info); + attr.log_buf = ptr_to_u64(btf_log_buf); + attr.log_size = BTF_LOG_BUF_SIZE; + attr.log_level = 1; + if (linfo_size) { + attr.line_info_rec_size = test->line_info_rec_size; + attr.line_info = ptr_to_u64(patched_linfo); + attr.line_info_cnt = linfo_size / attr.line_info_rec_size; + } + + prog_fd = syscall(__NR_bpf, BPF_PROG_LOAD, &attr, sizeof(attr)); + err = ((prog_fd < 0) != test->expected_prog_load_failure); + if (CHECK(err, "prog_fd:%d expected_prog_load_failure:%u errno:%d", + prog_fd, test->expected_prog_load_failure, errno) || + CHECK(test->err_str && !strstr(btf_log_buf, test->err_str), + "expected err_str:%s", test->err_str)) { + err = -1; + goto done; + } + + if (prog_fd < 0) + goto done; + + err = test_get_finfo(test, prog_fd); + if (err) + goto done; + + err = test_get_linfo(test, patched_linfo, + attr.line_info_cnt - test->dead_code_cnt, + prog_fd); + if (err) + goto done; + +done: + if (*btf_log_buf && (err || always_log)) + fprintf(stderr, "\n%s", btf_log_buf); + + if (btf_fd >= 0) + close(btf_fd); + if (prog_fd >= 0) + close(prog_fd); + + if (!libbpf_get_error(patched_linfo)) + free(patched_linfo); +} + +struct btf_raw_data { + __u32 raw_types[MAX_NR_RAW_U32]; + const char *str_sec; + __u32 str_sec_size; +}; + +struct btf_dedup_test { + const char *descr; + struct btf_raw_data input; + struct btf_raw_data expect; + struct btf_dedup_opts opts; +}; + +static struct btf_dedup_test dedup_tests[] = { + +{ + .descr = "dedup: unused strings filtering", + .input = { + .raw_types = { + BTF_TYPE_INT_ENC(NAME_NTH(2), BTF_INT_SIGNED, 0, 32, 4), + BTF_TYPE_INT_ENC(NAME_NTH(5), BTF_INT_SIGNED, 0, 64, 8), + BTF_END_RAW, + }, + BTF_STR_SEC("\0unused\0int\0foo\0bar\0long"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 4), + BTF_TYPE_INT_ENC(NAME_NTH(2), BTF_INT_SIGNED, 0, 64, 8), + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0long"), + }, +}, +{ + .descr = "dedup: strings deduplication", + .input = { + .raw_types = { + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 4), + BTF_TYPE_INT_ENC(NAME_NTH(2), BTF_INT_SIGNED, 0, 64, 8), + BTF_TYPE_INT_ENC(NAME_NTH(3), BTF_INT_SIGNED, 0, 32, 4), + BTF_TYPE_INT_ENC(NAME_NTH(4), BTF_INT_SIGNED, 0, 64, 8), + BTF_TYPE_INT_ENC(NAME_NTH(5), BTF_INT_SIGNED, 0, 32, 4), + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0long int\0int\0long int\0int"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 4), + BTF_TYPE_INT_ENC(NAME_NTH(2), BTF_INT_SIGNED, 0, 64, 8), + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0long int"), + }, +}, +{ + .descr = "dedup: struct example #1", + /* + * struct s { + * struct s *next; + * const int *a; + * int b[16]; + * int c; + * } + */ + .input = { + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* int[16] */ + BTF_TYPE_ARRAY_ENC(1, 1, 16), /* [2] */ + /* struct s { */ + BTF_STRUCT_ENC(NAME_NTH(2), 5, 88), /* [3] */ + BTF_MEMBER_ENC(NAME_NTH(3), 4, 0), /* struct s *next; */ + BTF_MEMBER_ENC(NAME_NTH(4), 5, 64), /* const int *a; */ + BTF_MEMBER_ENC(NAME_NTH(5), 2, 128), /* int b[16]; */ + BTF_MEMBER_ENC(NAME_NTH(6), 1, 640), /* int c; */ + BTF_MEMBER_ENC(NAME_NTH(8), 15, 672), /* float d; */ + /* ptr -> [3] struct s */ + BTF_PTR_ENC(3), /* [4] */ + /* ptr -> [6] const int */ + BTF_PTR_ENC(6), /* [5] */ + /* const -> [1] int */ + BTF_CONST_ENC(1), /* [6] */ + /* tag -> [3] struct s */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 3, -1), /* [7] */ + /* tag -> [3] struct s, member 1 */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 3, 1), /* [8] */ + + /* full copy of the above */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 4), /* [9] */ + BTF_TYPE_ARRAY_ENC(9, 9, 16), /* [10] */ + BTF_STRUCT_ENC(NAME_NTH(2), 5, 88), /* [11] */ + BTF_MEMBER_ENC(NAME_NTH(3), 12, 0), + BTF_MEMBER_ENC(NAME_NTH(4), 13, 64), + BTF_MEMBER_ENC(NAME_NTH(5), 10, 128), + BTF_MEMBER_ENC(NAME_NTH(6), 9, 640), + BTF_MEMBER_ENC(NAME_NTH(8), 15, 672), + BTF_PTR_ENC(11), /* [12] */ + BTF_PTR_ENC(14), /* [13] */ + BTF_CONST_ENC(9), /* [14] */ + BTF_TYPE_FLOAT_ENC(NAME_NTH(7), 4), /* [15] */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 11, -1), /* [16] */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 11, 1), /* [17] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0s\0next\0a\0b\0c\0float\0d"), + }, + .expect = { + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(NAME_NTH(5), BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* int[16] */ + BTF_TYPE_ARRAY_ENC(1, 1, 16), /* [2] */ + /* struct s { */ + BTF_STRUCT_ENC(NAME_NTH(8), 5, 88), /* [3] */ + BTF_MEMBER_ENC(NAME_NTH(7), 4, 0), /* struct s *next; */ + BTF_MEMBER_ENC(NAME_NTH(1), 5, 64), /* const int *a; */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 128), /* int b[16]; */ + BTF_MEMBER_ENC(NAME_NTH(3), 1, 640), /* int c; */ + BTF_MEMBER_ENC(NAME_NTH(4), 9, 672), /* float d; */ + /* ptr -> [3] struct s */ + BTF_PTR_ENC(3), /* [4] */ + /* ptr -> [6] const int */ + BTF_PTR_ENC(6), /* [5] */ + /* const -> [1] int */ + BTF_CONST_ENC(1), /* [6] */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 3, -1), /* [7] */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 3, 1), /* [8] */ + BTF_TYPE_FLOAT_ENC(NAME_NTH(7), 4), /* [9] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0a\0b\0c\0d\0int\0float\0next\0s"), + }, +}, +{ + .descr = "dedup: struct <-> fwd resolution w/ hash collision", + /* + * // CU 1: + * struct x; + * struct s { + * struct x *x; + * }; + * // CU 2: + * struct x {}; + * struct s { + * struct x *x; + * }; + */ + .input = { + .raw_types = { + /* CU 1 */ + BTF_FWD_ENC(NAME_TBD, 0 /* struct fwd */), /* [1] fwd x */ + BTF_PTR_ENC(1), /* [2] ptr -> [1] */ + BTF_STRUCT_ENC(NAME_TBD, 1, 8), /* [3] struct s */ + BTF_MEMBER_ENC(NAME_TBD, 2, 0), + /* CU 2 */ + BTF_STRUCT_ENC(NAME_TBD, 0, 0), /* [4] struct x */ + BTF_PTR_ENC(4), /* [5] ptr -> [4] */ + BTF_STRUCT_ENC(NAME_TBD, 1, 8), /* [6] struct s */ + BTF_MEMBER_ENC(NAME_TBD, 5, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0x\0s\0x\0x\0s\0x\0"), + }, + .expect = { + .raw_types = { + BTF_PTR_ENC(3), /* [1] ptr -> [3] */ + BTF_STRUCT_ENC(NAME_TBD, 1, 8), /* [2] struct s */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_STRUCT_ENC(NAME_NTH(2), 0, 0), /* [3] struct x */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0s\0x"), + }, + .opts = { + .force_collisions = true, /* force hash collisions */ + }, +}, +{ + .descr = "dedup: void equiv check", + /* + * // CU 1: + * struct s { + * struct {} *x; + * }; + * // CU 2: + * struct s { + * int *x; + * }; + */ + .input = { + .raw_types = { + /* CU 1 */ + BTF_STRUCT_ENC(0, 0, 1), /* [1] struct {} */ + BTF_PTR_ENC(1), /* [2] ptr -> [1] */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 8), /* [3] struct s */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + /* CU 2 */ + BTF_PTR_ENC(0), /* [4] ptr -> void */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 8), /* [5] struct s */ + BTF_MEMBER_ENC(NAME_NTH(2), 4, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0s\0x"), + }, + .expect = { + .raw_types = { + /* CU 1 */ + BTF_STRUCT_ENC(0, 0, 1), /* [1] struct {} */ + BTF_PTR_ENC(1), /* [2] ptr -> [1] */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 8), /* [3] struct s */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + /* CU 2 */ + BTF_PTR_ENC(0), /* [4] ptr -> void */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 8), /* [5] struct s */ + BTF_MEMBER_ENC(NAME_NTH(2), 4, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0s\0x"), + }, + .opts = { + .force_collisions = true, /* force hash collisions */ + }, +}, +{ + .descr = "dedup: all possible kinds (no duplicates)", + .input = { + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 8), /* [1] int */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 2), 4), /* [2] enum */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_ENUM_ENC(NAME_TBD, 1), + BTF_FWD_ENC(NAME_TBD, 1 /* union kind_flag */), /* [3] fwd */ + BTF_TYPE_ARRAY_ENC(2, 1, 7), /* [4] array */ + BTF_STRUCT_ENC(NAME_TBD, 1, 4), /* [5] struct */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_UNION_ENC(NAME_TBD, 1, 4), /* [6] union */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_TYPEDEF_ENC(NAME_TBD, 1), /* [7] typedef */ + BTF_PTR_ENC(0), /* [8] ptr */ + BTF_CONST_ENC(8), /* [9] const */ + BTF_VOLATILE_ENC(8), /* [10] volatile */ + BTF_RESTRICT_ENC(8), /* [11] restrict */ + BTF_FUNC_PROTO_ENC(1, 2), /* [12] func_proto */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 18), + BTF_FUNC_ENC(NAME_TBD, 12), /* [13] func */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 2), /* [14] float */ + BTF_DECL_TAG_ENC(NAME_TBD, 13, -1), /* [15] decl_tag */ + BTF_DECL_TAG_ENC(NAME_TBD, 13, 1), /* [16] decl_tag */ + BTF_DECL_TAG_ENC(NAME_TBD, 7, -1), /* [17] decl_tag */ + BTF_TYPE_TAG_ENC(NAME_TBD, 8), /* [18] type_tag */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 2), 8), /* [19] enum64 */ + BTF_ENUM64_ENC(NAME_TBD, 0, 0), + BTF_ENUM64_ENC(NAME_TBD, 1, 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B\0C\0D\0E\0F\0G\0H\0I\0J\0K\0L\0M\0N\0O\0P\0Q\0R\0S\0T\0U"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(NAME_TBD, BTF_INT_SIGNED, 0, 32, 8), /* [1] int */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM, 0, 2), 4), /* [2] enum */ + BTF_ENUM_ENC(NAME_TBD, 0), + BTF_ENUM_ENC(NAME_TBD, 1), + BTF_FWD_ENC(NAME_TBD, 1 /* union kind_flag */), /* [3] fwd */ + BTF_TYPE_ARRAY_ENC(2, 1, 7), /* [4] array */ + BTF_STRUCT_ENC(NAME_TBD, 1, 4), /* [5] struct */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_UNION_ENC(NAME_TBD, 1, 4), /* [6] union */ + BTF_MEMBER_ENC(NAME_TBD, 1, 0), + BTF_TYPEDEF_ENC(NAME_TBD, 1), /* [7] typedef */ + BTF_PTR_ENC(0), /* [8] ptr */ + BTF_CONST_ENC(8), /* [9] const */ + BTF_VOLATILE_ENC(8), /* [10] volatile */ + BTF_RESTRICT_ENC(8), /* [11] restrict */ + BTF_FUNC_PROTO_ENC(1, 2), /* [12] func_proto */ + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_TBD, 18), + BTF_FUNC_ENC(NAME_TBD, 12), /* [13] func */ + BTF_TYPE_FLOAT_ENC(NAME_TBD, 2), /* [14] float */ + BTF_DECL_TAG_ENC(NAME_TBD, 13, -1), /* [15] decl_tag */ + BTF_DECL_TAG_ENC(NAME_TBD, 13, 1), /* [16] decl_tag */ + BTF_DECL_TAG_ENC(NAME_TBD, 7, -1), /* [17] decl_tag */ + BTF_TYPE_TAG_ENC(NAME_TBD, 8), /* [18] type_tag */ + BTF_TYPE_ENC(NAME_TBD, BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 2), 8), /* [19] enum64 */ + BTF_ENUM64_ENC(NAME_TBD, 0, 0), + BTF_ENUM64_ENC(NAME_TBD, 1, 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0A\0B\0C\0D\0E\0F\0G\0H\0I\0J\0K\0L\0M\0N\0O\0P\0Q\0R\0S\0T\0U"), + }, +}, +{ + .descr = "dedup: no int/float duplicates", + .input = { + .raw_types = { + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 8), + /* different name */ + BTF_TYPE_INT_ENC(NAME_NTH(2), BTF_INT_SIGNED, 0, 32, 8), + /* different encoding */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_CHAR, 0, 32, 8), + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_BOOL, 0, 32, 8), + /* different bit offset */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 8, 32, 8), + /* different bit size */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 27, 8), + /* different byte size */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 4), + /* all allowed sizes */ + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 2), + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 4), + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 8), + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 12), + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 16), + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0some other int\0float"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 8), + /* different name */ + BTF_TYPE_INT_ENC(NAME_NTH(2), BTF_INT_SIGNED, 0, 32, 8), + /* different encoding */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_CHAR, 0, 32, 8), + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_BOOL, 0, 32, 8), + /* different bit offset */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 8, 32, 8), + /* different bit size */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 27, 8), + /* different byte size */ + BTF_TYPE_INT_ENC(NAME_NTH(1), BTF_INT_SIGNED, 0, 32, 4), + /* all allowed sizes */ + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 2), + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 4), + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 8), + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 12), + BTF_TYPE_FLOAT_ENC(NAME_NTH(3), 16), + BTF_END_RAW, + }, + BTF_STR_SEC("\0int\0some other int\0float"), + }, +}, +{ + .descr = "dedup: enum fwd resolution", + .input = { + .raw_types = { + /* [1] fwd enum 'e1' before full enum */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 0), 4), + /* [2] full enum 'e1' after fwd */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 123), + /* [3] full enum 'e2' before fwd */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(4), 456), + /* [4] fwd enum 'e2' after full enum */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 0), 4), + /* [5] fwd enum with different size, size does not matter for fwd */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 0), 1), + /* [6] incompatible full enum with different value */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 321), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val\0e2\0e2_val"), + }, + .expect = { + .raw_types = { + /* [1] full enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 123), + /* [2] full enum 'e2' */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(4), 456), + /* [3] incompatible full enum with different value */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 321), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val\0e2\0e2_val"), + }, +}, +{ + .descr = "dedup: datasec and vars pass-through", + .input = { + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* static int t */ + BTF_VAR_ENC(NAME_NTH(2), 1, 0), /* [2] */ + /* .bss section */ /* [3] */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(2, 0, 4), + /* int, referenced from [5] */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [4] */ + /* another static int t */ + BTF_VAR_ENC(NAME_NTH(2), 4, 0), /* [5] */ + /* another .bss section */ /* [6] */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(5, 0, 4), + BTF_END_RAW, + }, + BTF_STR_SEC("\0.bss\0t"), + }, + .expect = { + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* static int t */ + BTF_VAR_ENC(NAME_NTH(2), 1, 0), /* [2] */ + /* .bss section */ /* [3] */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(2, 0, 4), + /* another static int t */ + BTF_VAR_ENC(NAME_NTH(2), 1, 0), /* [4] */ + /* another .bss section */ /* [5] */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4), + BTF_VAR_SECINFO_ENC(4, 0, 4), + BTF_END_RAW, + }, + BTF_STR_SEC("\0.bss\0t"), + }, + .opts = { + .force_collisions = true + }, +}, +{ + .descr = "dedup: func/func_arg/var tags", + .input = { + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* static int t */ + BTF_VAR_ENC(NAME_NTH(1), 1, 0), /* [2] */ + /* void f(int a1, int a2) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(2), 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(3), 1), + BTF_FUNC_ENC(NAME_NTH(4), 3), /* [4] */ + /* tag -> t */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 2, -1), /* [5] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 2, -1), /* [6] */ + /* tag -> func */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 4, -1), /* [7] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 4, -1), /* [8] */ + /* tag -> func arg a1 */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 4, 1), /* [9] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 4, 1), /* [10] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0t\0a1\0a2\0f\0tag"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_VAR_ENC(NAME_NTH(1), 1, 0), /* [2] */ + BTF_FUNC_PROTO_ENC(0, 2), /* [3] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(2), 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(3), 1), + BTF_FUNC_ENC(NAME_NTH(4), 3), /* [4] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 2, -1), /* [5] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 4, -1), /* [6] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 4, 1), /* [7] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0t\0a1\0a2\0f\0tag"), + }, +}, +{ + .descr = "dedup: func/func_param tags", + .input = { + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + /* void f(int a1, int a2) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(1), 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(2), 1), + BTF_FUNC_ENC(NAME_NTH(3), 2), /* [3] */ + /* void f(int a1, int a2) */ + BTF_FUNC_PROTO_ENC(0, 2), /* [4] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(1), 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(2), 1), + BTF_FUNC_ENC(NAME_NTH(3), 4), /* [5] */ + /* tag -> f: tag1, tag2 */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 3, -1), /* [6] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 3, -1), /* [7] */ + /* tag -> f/a2: tag1, tag2 */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 3, 1), /* [8] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 3, 1), /* [9] */ + /* tag -> f: tag1, tag3 */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 5, -1), /* [10] */ + BTF_DECL_TAG_ENC(NAME_NTH(6), 5, -1), /* [11] */ + /* tag -> f/a2: tag1, tag3 */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 5, 1), /* [12] */ + BTF_DECL_TAG_ENC(NAME_NTH(6), 5, 1), /* [13] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0a1\0a2\0f\0tag1\0tag2\0tag3"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_FUNC_PROTO_ENC(0, 2), /* [2] */ + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(1), 1), + BTF_FUNC_PROTO_ARG_ENC(NAME_NTH(2), 1), + BTF_FUNC_ENC(NAME_NTH(3), 2), /* [3] */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 3, -1), /* [4] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 3, -1), /* [5] */ + BTF_DECL_TAG_ENC(NAME_NTH(6), 3, -1), /* [6] */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 3, 1), /* [7] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 3, 1), /* [8] */ + BTF_DECL_TAG_ENC(NAME_NTH(6), 3, 1), /* [9] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0a1\0a2\0f\0tag1\0tag2\0tag3"), + }, +}, +{ + .descr = "dedup: struct/struct_member tags", + .input = { + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_STRUCT_ENC(NAME_NTH(1), 2, 8), /* [2] */ + BTF_MEMBER_ENC(NAME_NTH(2), 1, 0), + BTF_MEMBER_ENC(NAME_NTH(3), 1, 32), + BTF_STRUCT_ENC(NAME_NTH(1), 2, 8), /* [3] */ + BTF_MEMBER_ENC(NAME_NTH(2), 1, 0), + BTF_MEMBER_ENC(NAME_NTH(3), 1, 32), + /* tag -> t: tag1, tag2 */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 2, -1), /* [4] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 2, -1), /* [5] */ + /* tag -> t/m2: tag1, tag2 */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 2, 1), /* [6] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 2, 1), /* [7] */ + /* tag -> t: tag1, tag3 */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 3, -1), /* [8] */ + BTF_DECL_TAG_ENC(NAME_NTH(6), 3, -1), /* [9] */ + /* tag -> t/m2: tag1, tag3 */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 3, 1), /* [10] */ + BTF_DECL_TAG_ENC(NAME_NTH(6), 3, 1), /* [11] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0t\0m1\0m2\0tag1\0tag2\0tag3"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_STRUCT_ENC(NAME_NTH(1), 2, 8), /* [2] */ + BTF_MEMBER_ENC(NAME_NTH(2), 1, 0), + BTF_MEMBER_ENC(NAME_NTH(3), 1, 32), + BTF_DECL_TAG_ENC(NAME_NTH(4), 2, -1), /* [3] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 2, -1), /* [4] */ + BTF_DECL_TAG_ENC(NAME_NTH(6), 2, -1), /* [5] */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 2, 1), /* [6] */ + BTF_DECL_TAG_ENC(NAME_NTH(5), 2, 1), /* [7] */ + BTF_DECL_TAG_ENC(NAME_NTH(6), 2, 1), /* [8] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0t\0m1\0m2\0tag1\0tag2\0tag3"), + }, +}, +{ + .descr = "dedup: typedef tags", + .input = { + .raw_types = { + /* int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPEDEF_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPEDEF_ENC(NAME_NTH(1), 1), /* [3] */ + /* tag -> t: tag1, tag2 */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 2, -1), /* [4] */ + BTF_DECL_TAG_ENC(NAME_NTH(3), 2, -1), /* [5] */ + /* tag -> t: tag1, tag3 */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 3, -1), /* [6] */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 3, -1), /* [7] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0t\0tag1\0tag2\0tag3"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPEDEF_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_DECL_TAG_ENC(NAME_NTH(2), 2, -1), /* [3] */ + BTF_DECL_TAG_ENC(NAME_NTH(3), 2, -1), /* [4] */ + BTF_DECL_TAG_ENC(NAME_NTH(4), 2, -1), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0t\0tag1\0tag2\0tag3"), + }, +}, +{ + .descr = "dedup: btf_type_tag #1", + .input = { + .raw_types = { + /* ptr -> tag2 -> tag1 -> int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 2), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + /* ptr -> tag2 -> tag1 -> int */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [5] */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 5), /* [6] */ + BTF_PTR_ENC(6), /* [7] */ + /* ptr -> tag1 -> int */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [8] */ + BTF_PTR_ENC(8), /* [9] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1\0tag2"), + }, + .expect = { + .raw_types = { + /* ptr -> tag2 -> tag1 -> int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 2), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + /* ptr -> tag1 -> int */ + BTF_PTR_ENC(2), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1\0tag2"), + }, +}, +{ + .descr = "dedup: btf_type_tag #2", + .input = { + .raw_types = { + /* ptr -> tag2 -> tag1 -> int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 2), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + /* ptr -> tag2 -> int */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 1), /* [5] */ + BTF_PTR_ENC(5), /* [6] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1\0tag2"), + }, + .expect = { + .raw_types = { + /* ptr -> tag2 -> tag1 -> int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 2), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + /* ptr -> tag2 -> int */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 1), /* [5] */ + BTF_PTR_ENC(5), /* [6] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1\0tag2"), + }, +}, +{ + .descr = "dedup: btf_type_tag #3", + .input = { + .raw_types = { + /* ptr -> tag2 -> tag1 -> int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 2), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + /* ptr -> tag1 -> tag2 -> int */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 1), /* [5] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 5), /* [6] */ + BTF_PTR_ENC(6), /* [7] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1\0tag2"), + }, + .expect = { + .raw_types = { + /* ptr -> tag2 -> tag1 -> int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 2), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + /* ptr -> tag1 -> tag2 -> int */ + BTF_TYPE_TAG_ENC(NAME_NTH(2), 1), /* [5] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 5), /* [6] */ + BTF_PTR_ENC(6), /* [7] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1\0tag2"), + }, +}, +{ + .descr = "dedup: btf_type_tag #4", + .input = { + .raw_types = { + /* ptr -> tag1 -> int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_PTR_ENC(2), /* [3] */ + /* ptr -> tag1 -> long */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 64, 8), /* [4] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 4), /* [5] */ + BTF_PTR_ENC(5), /* [6] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1"), + }, + .expect = { + .raw_types = { + /* ptr -> tag1 -> int */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_PTR_ENC(2), /* [3] */ + /* ptr -> tag1 -> long */ + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 64, 8), /* [4] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 4), /* [5] */ + BTF_PTR_ENC(5), /* [6] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1"), + }, +}, +{ + .descr = "dedup: btf_type_tag #5, struct", + .input = { + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPE_ENC(NAME_NTH(2), BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 1), 4), /* [3] */ + BTF_MEMBER_ENC(NAME_NTH(3), 2, BTF_MEMBER_OFFSET(0, 0)), + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [4] */ + BTF_TYPE_ENC(NAME_NTH(2), BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 1), 4), /* [5] */ + BTF_MEMBER_ENC(NAME_NTH(3), 4, BTF_MEMBER_OFFSET(0, 0)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1\0t\0m"), + }, + .expect = { + .raw_types = { + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [1] */ + BTF_TYPE_TAG_ENC(NAME_NTH(1), 1), /* [2] */ + BTF_TYPE_ENC(NAME_NTH(2), BTF_INFO_ENC(BTF_KIND_STRUCT, 1, 1), 4), /* [3] */ + BTF_MEMBER_ENC(NAME_NTH(3), 2, BTF_MEMBER_OFFSET(0, 0)), + BTF_END_RAW, + }, + BTF_STR_SEC("\0tag1\0t\0m"), + }, +}, +{ + .descr = "dedup: enum64, standalone", + .input = { + .raw_types = { + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 123), + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 123), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val"), + }, + .expect = { + .raw_types = { + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 123), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val"), + }, +}, +{ + .descr = "dedup: enum64, fwd resolution", + .input = { + .raw_types = { + /* [1] fwd enum64 'e1' before full enum */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 0), 8), + /* [2] full enum64 'e1' after fwd */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 123), + /* [3] full enum64 'e2' before fwd */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(4), 0, 456), + /* [4] fwd enum64 'e2' after full enum */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 0), 8), + /* [5] incompatible full enum64 with different value */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 0, 321), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val\0e2\0e2_val"), + }, + .expect = { + .raw_types = { + /* [1] full enum64 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 123), + /* [2] full enum64 'e2' */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(4), 0, 456), + /* [3] incompatible full enum64 with different value */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 0, 321), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val\0e2\0e2_val"), + }, +}, +{ + .descr = "dedup: enum and enum64, no dedup", + .input = { + .raw_types = { + /* [1] enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 1), + /* [2] enum64 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 4), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val"), + }, + .expect = { + .raw_types = { + /* [1] enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 1), + /* [2] enum64 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 4), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val"), + }, +}, +{ + .descr = "dedup: enum of different size: no dedup", + .input = { + .raw_types = { + /* [1] enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 1), + /* [2] enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 2), + BTF_ENUM_ENC(NAME_NTH(2), 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val"), + }, + .expect = { + .raw_types = { + /* [1] enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 1), + /* [2] enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 2), + BTF_ENUM_ENC(NAME_NTH(2), 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val"), + }, +}, +{ + .descr = "dedup: enum fwd to enum64", + .input = { + .raw_types = { + /* [1] enum64 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 0), + /* [2] enum 'e1' fwd */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 0), 4), + /* [3] typedef enum 'e1' td */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_TYPEDEF, 0, 0), 2), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val\0td"), + }, + .expect = { + .raw_types = { + /* [1] enum64 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 1), 8), + BTF_ENUM64_ENC(NAME_NTH(2), 1, 0), + /* [2] typedef enum 'e1' td */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_TYPEDEF, 0, 0), 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val\0td"), + }, +}, +{ + .descr = "dedup: enum64 fwd to enum", + .input = { + .raw_types = { + /* [1] enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 1), + /* [2] enum64 'e1' fwd */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM64, 0, 0), 8), + /* [3] typedef enum 'e1' td */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_TYPEDEF, 0, 0), 2), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val\0td"), + }, + .expect = { + .raw_types = { + /* [1] enum 'e1' */ + BTF_TYPE_ENC(NAME_NTH(1), BTF_INFO_ENC(BTF_KIND_ENUM, 0, 1), 4), + BTF_ENUM_ENC(NAME_NTH(2), 1), + /* [2] typedef enum 'e1' td */ + BTF_TYPE_ENC(NAME_NTH(3), BTF_INFO_ENC(BTF_KIND_TYPEDEF, 0, 0), 1), + BTF_END_RAW, + }, + BTF_STR_SEC("\0e1\0e1_val\0td"), + }, +}, +{ + .descr = "dedup: standalone fwd declaration struct", + /* + * Verify that CU1:foo and CU2:foo would be unified and that + * typedef/ptr would be updated to point to CU1:foo. + * + * // CU 1: + * struct foo { int x; }; + * + * // CU 2: + * struct foo; + * typedef struct foo *foo_ptr; + */ + .input = { + .raw_types = { + /* CU 1 */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 4), /* [1] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + /* CU 2 */ + BTF_FWD_ENC(NAME_NTH(1), 0), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + BTF_TYPEDEF_ENC(NAME_NTH(3), 4), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0foo\0x\0foo_ptr"), + }, + .expect = { + .raw_types = { + BTF_STRUCT_ENC(NAME_NTH(1), 1, 4), /* [1] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + BTF_PTR_ENC(1), /* [3] */ + BTF_TYPEDEF_ENC(NAME_NTH(3), 3), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0foo\0x\0foo_ptr"), + }, +}, +{ + .descr = "dedup: standalone fwd declaration union", + /* + * Verify that CU1:foo and CU2:foo would be unified and that + * typedef/ptr would be updated to point to CU1:foo. + * Same as "dedup: standalone fwd declaration struct" but for unions. + * + * // CU 1: + * union foo { int x; }; + * + * // CU 2: + * union foo; + * typedef union foo *foo_ptr; + */ + .input = { + .raw_types = { + /* CU 1 */ + BTF_UNION_ENC(NAME_NTH(1), 1, 4), /* [1] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + /* CU 2 */ + BTF_FWD_ENC(NAME_TBD, 1), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + BTF_TYPEDEF_ENC(NAME_NTH(3), 4), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0foo\0x\0foo_ptr"), + }, + .expect = { + .raw_types = { + BTF_UNION_ENC(NAME_NTH(1), 1, 4), /* [1] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + BTF_PTR_ENC(1), /* [3] */ + BTF_TYPEDEF_ENC(NAME_NTH(3), 3), /* [4] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0foo\0x\0foo_ptr"), + }, +}, +{ + .descr = "dedup: standalone fwd declaration wrong kind", + /* + * Negative test for btf_dedup_resolve_fwds: + * - CU1:foo is a struct, C2:foo is a union, thus CU2:foo is not deduped; + * - typedef/ptr should remain unchanged as well. + * + * // CU 1: + * struct foo { int x; }; + * + * // CU 2: + * union foo; + * typedef union foo *foo_ptr; + */ + .input = { + .raw_types = { + /* CU 1 */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 4), /* [1] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + /* CU 2 */ + BTF_FWD_ENC(NAME_NTH(3), 1), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + BTF_TYPEDEF_ENC(NAME_NTH(3), 4), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0foo\0x\0foo_ptr"), + }, + .expect = { + .raw_types = { + /* CU 1 */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 4), /* [1] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + /* CU 2 */ + BTF_FWD_ENC(NAME_NTH(3), 1), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + BTF_TYPEDEF_ENC(NAME_NTH(3), 4), /* [5] */ + BTF_END_RAW, + }, + BTF_STR_SEC("\0foo\0x\0foo_ptr"), + }, +}, +{ + .descr = "dedup: standalone fwd declaration name conflict", + /* + * Negative test for btf_dedup_resolve_fwds: + * - two candidates for CU2:foo dedup, thus it is unchanged; + * - typedef/ptr should remain unchanged as well. + * + * // CU 1: + * struct foo { int x; }; + * + * // CU 2: + * struct foo; + * typedef struct foo *foo_ptr; + * + * // CU 3: + * struct foo { int x; int y; }; + */ + .input = { + .raw_types = { + /* CU 1 */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 4), /* [1] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + /* CU 2 */ + BTF_FWD_ENC(NAME_NTH(1), 0), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + BTF_TYPEDEF_ENC(NAME_NTH(4), 4), /* [5] */ + /* CU 3 */ + BTF_STRUCT_ENC(NAME_NTH(1), 2, 8), /* [6] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_MEMBER_ENC(NAME_NTH(3), 2, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0foo\0x\0y\0foo_ptr"), + }, + .expect = { + .raw_types = { + /* CU 1 */ + BTF_STRUCT_ENC(NAME_NTH(1), 1, 4), /* [1] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4), /* [2] */ + /* CU 2 */ + BTF_FWD_ENC(NAME_NTH(1), 0), /* [3] */ + BTF_PTR_ENC(3), /* [4] */ + BTF_TYPEDEF_ENC(NAME_NTH(4), 4), /* [5] */ + /* CU 3 */ + BTF_STRUCT_ENC(NAME_NTH(1), 2, 8), /* [6] */ + BTF_MEMBER_ENC(NAME_NTH(2), 2, 0), + BTF_MEMBER_ENC(NAME_NTH(3), 2, 0), + BTF_END_RAW, + }, + BTF_STR_SEC("\0foo\0x\0y\0foo_ptr"), + }, +}, +}; + +static int btf_type_size(const struct btf_type *t) +{ + int base_size = sizeof(struct btf_type); + __u16 vlen = BTF_INFO_VLEN(t->info); + __u16 kind = BTF_INFO_KIND(t->info); + + switch (kind) { + case BTF_KIND_FWD: + case BTF_KIND_CONST: + case BTF_KIND_VOLATILE: + case BTF_KIND_RESTRICT: + case BTF_KIND_PTR: + case BTF_KIND_TYPEDEF: + case BTF_KIND_FUNC: + case BTF_KIND_FLOAT: + case BTF_KIND_TYPE_TAG: + return base_size; + case BTF_KIND_INT: + return base_size + sizeof(__u32); + case BTF_KIND_ENUM: + return base_size + vlen * sizeof(struct btf_enum); + case BTF_KIND_ENUM64: + return base_size + vlen * sizeof(struct btf_enum64); + case BTF_KIND_ARRAY: + return base_size + sizeof(struct btf_array); + case BTF_KIND_STRUCT: + case BTF_KIND_UNION: + return base_size + vlen * sizeof(struct btf_member); + case BTF_KIND_FUNC_PROTO: + return base_size + vlen * sizeof(struct btf_param); + case BTF_KIND_VAR: + return base_size + sizeof(struct btf_var); + case BTF_KIND_DATASEC: + return base_size + vlen * sizeof(struct btf_var_secinfo); + case BTF_KIND_DECL_TAG: + return base_size + sizeof(struct btf_decl_tag); + default: + fprintf(stderr, "Unsupported BTF_KIND:%u\n", kind); + return -EINVAL; + } +} + +static void dump_btf_strings(const char *strs, __u32 len) +{ + const char *cur = strs; + int i = 0; + + while (cur < strs + len) { + fprintf(stderr, "string #%d: '%s'\n", i, cur); + cur += strlen(cur) + 1; + i++; + } +} + +static void do_test_dedup(unsigned int test_num) +{ + struct btf_dedup_test *test = &dedup_tests[test_num - 1]; + __u32 test_nr_types, expect_nr_types, test_btf_size, expect_btf_size; + const struct btf_header *test_hdr, *expect_hdr; + struct btf *test_btf = NULL, *expect_btf = NULL; + const void *test_btf_data, *expect_btf_data; + const char *ret_test_next_str, *ret_expect_next_str; + const char *test_strs, *expect_strs; + const char *test_str_cur; + const char *expect_str_cur, *expect_str_end; + unsigned int raw_btf_size; + void *raw_btf; + int err = 0, i; + + if (!test__start_subtest(test->descr)) + return; + + raw_btf = btf_raw_create(&hdr_tmpl, test->input.raw_types, + test->input.str_sec, test->input.str_sec_size, + &raw_btf_size, &ret_test_next_str); + if (!raw_btf) + return; + + test_btf = btf__new((__u8 *)raw_btf, raw_btf_size); + err = libbpf_get_error(test_btf); + free(raw_btf); + if (CHECK(err, "invalid test_btf errno:%d", err)) { + err = -1; + goto done; + } + + raw_btf = btf_raw_create(&hdr_tmpl, test->expect.raw_types, + test->expect.str_sec, + test->expect.str_sec_size, + &raw_btf_size, &ret_expect_next_str); + if (!raw_btf) + return; + expect_btf = btf__new((__u8 *)raw_btf, raw_btf_size); + err = libbpf_get_error(expect_btf); + free(raw_btf); + if (CHECK(err, "invalid expect_btf errno:%d", err)) { + err = -1; + goto done; + } + + test->opts.sz = sizeof(test->opts); + err = btf__dedup(test_btf, &test->opts); + if (CHECK(err, "btf_dedup failed errno:%d", err)) { + err = -1; + goto done; + } + + test_btf_data = btf__raw_data(test_btf, &test_btf_size); + expect_btf_data = btf__raw_data(expect_btf, &expect_btf_size); + if (CHECK(test_btf_size != expect_btf_size, + "test_btf_size:%u != expect_btf_size:%u", + test_btf_size, expect_btf_size)) { + err = -1; + goto done; + } + + test_hdr = test_btf_data; + test_strs = test_btf_data + sizeof(*test_hdr) + test_hdr->str_off; + expect_hdr = expect_btf_data; + expect_strs = expect_btf_data + sizeof(*test_hdr) + expect_hdr->str_off; + if (CHECK(test_hdr->str_len != expect_hdr->str_len, + "test_hdr->str_len:%u != expect_hdr->str_len:%u", + test_hdr->str_len, expect_hdr->str_len)) { + fprintf(stderr, "\ntest strings:\n"); + dump_btf_strings(test_strs, test_hdr->str_len); + fprintf(stderr, "\nexpected strings:\n"); + dump_btf_strings(expect_strs, expect_hdr->str_len); + err = -1; + goto done; + } + + expect_str_cur = expect_strs; + expect_str_end = expect_strs + expect_hdr->str_len; + while (expect_str_cur < expect_str_end) { + size_t test_len, expect_len; + int off; + + off = btf__find_str(test_btf, expect_str_cur); + if (CHECK(off < 0, "exp str '%s' not found: %d\n", expect_str_cur, off)) { + err = -1; + goto done; + } + test_str_cur = btf__str_by_offset(test_btf, off); + + test_len = strlen(test_str_cur); + expect_len = strlen(expect_str_cur); + if (CHECK(test_len != expect_len, + "test_len:%zu != expect_len:%zu " + "(test_str:%s, expect_str:%s)", + test_len, expect_len, test_str_cur, expect_str_cur)) { + err = -1; + goto done; + } + if (CHECK(strcmp(test_str_cur, expect_str_cur), + "test_str:%s != expect_str:%s", + test_str_cur, expect_str_cur)) { + err = -1; + goto done; + } + expect_str_cur += expect_len + 1; + } + + test_nr_types = btf__type_cnt(test_btf); + expect_nr_types = btf__type_cnt(expect_btf); + if (CHECK(test_nr_types != expect_nr_types, + "test_nr_types:%u != expect_nr_types:%u", + test_nr_types, expect_nr_types)) { + err = -1; + goto done; + } + + for (i = 1; i < test_nr_types; i++) { + const struct btf_type *test_type, *expect_type; + int test_size, expect_size; + + test_type = btf__type_by_id(test_btf, i); + expect_type = btf__type_by_id(expect_btf, i); + test_size = btf_type_size(test_type); + expect_size = btf_type_size(expect_type); + + if (CHECK(test_size != expect_size, + "type #%d: test_size:%d != expect_size:%u", + i, test_size, expect_size)) { + err = -1; + goto done; + } + if (CHECK(btf_kind(test_type) != btf_kind(expect_type), + "type %d kind: exp %d != got %u\n", + i, btf_kind(expect_type), btf_kind(test_type))) { + err = -1; + goto done; + } + if (CHECK(test_type->info != expect_type->info, + "type %d info: exp %d != got %u\n", + i, expect_type->info, test_type->info)) { + err = -1; + goto done; + } + if (CHECK(test_type->size != expect_type->size, + "type %d size/type: exp %d != got %u\n", + i, expect_type->size, test_type->size)) { + err = -1; + goto done; + } + } + +done: + btf__free(test_btf); + btf__free(expect_btf); +} + +void test_btf(void) +{ + int i; + + always_log = env.verbosity > VERBOSE_NONE; + + for (i = 1; i <= ARRAY_SIZE(raw_tests); i++) + do_test_raw(i); + for (i = 1; i <= ARRAY_SIZE(get_info_tests); i++) + do_test_get_info(i); + for (i = 1; i <= ARRAY_SIZE(file_tests); i++) + do_test_file(i); + for (i = 1; i <= ARRAY_SIZE(info_raw_tests); i++) + do_test_info_raw(i); + for (i = 1; i <= ARRAY_SIZE(dedup_tests); i++) + do_test_dedup(i); + test_pprint(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf_dedup_split.c b/tools/testing/selftests/bpf/prog_tests/btf_dedup_split.c new file mode 100644 index 000000000000..d9024c7a892a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/btf_dedup_split.c @@ -0,0 +1,453 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ +#include <test_progs.h> +#include <bpf/btf.h> +#include "btf_helpers.h" + +static void test_split_simple() { + const struct btf_type *t; + struct btf *btf1, *btf2; + int str_off, err; + + btf1 = btf__new_empty(); + if (!ASSERT_OK_PTR(btf1, "empty_main_btf")) + return; + + btf__set_pointer_size(btf1, 8); /* enforce 64-bit arch */ + + btf__add_int(btf1, "int", 4, BTF_INT_SIGNED); /* [1] int */ + btf__add_ptr(btf1, 1); /* [2] ptr to int */ + btf__add_struct(btf1, "s1", 4); /* [3] struct s1 { */ + btf__add_field(btf1, "f1", 1, 0, 0); /* int f1; */ + /* } */ + + VALIDATE_RAW_BTF( + btf1, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=1", + "[3] STRUCT 's1' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0"); + + ASSERT_STREQ(btf_type_c_dump(btf1), "\ +struct s1 {\n\ + int f1;\n\ +};\n\n", "c_dump"); + + btf2 = btf__new_empty_split(btf1); + if (!ASSERT_OK_PTR(btf2, "empty_split_btf")) + goto cleanup; + + /* pointer size should be "inherited" from main BTF */ + ASSERT_EQ(btf__pointer_size(btf2), 8, "inherit_ptr_sz"); + + str_off = btf__find_str(btf2, "int"); + ASSERT_NEQ(str_off, -ENOENT, "str_int_missing"); + + t = btf__type_by_id(btf2, 1); + if (!ASSERT_OK_PTR(t, "int_type")) + goto cleanup; + ASSERT_EQ(btf_is_int(t), true, "int_kind"); + ASSERT_STREQ(btf__str_by_offset(btf2, t->name_off), "int", "int_name"); + + btf__add_struct(btf2, "s2", 16); /* [4] struct s2 { */ + btf__add_field(btf2, "f1", 6, 0, 0); /* struct s1 f1; */ + btf__add_field(btf2, "f2", 5, 32, 0); /* int f2; */ + btf__add_field(btf2, "f3", 2, 64, 0); /* int *f3; */ + /* } */ + + /* duplicated int */ + btf__add_int(btf2, "int", 4, BTF_INT_SIGNED); /* [5] int */ + + /* duplicated struct s1 */ + btf__add_struct(btf2, "s1", 4); /* [6] struct s1 { */ + btf__add_field(btf2, "f1", 5, 0, 0); /* int f1; */ + /* } */ + + VALIDATE_RAW_BTF( + btf2, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=1", + "[3] STRUCT 's1' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0", + "[4] STRUCT 's2' size=16 vlen=3\n" + "\t'f1' type_id=6 bits_offset=0\n" + "\t'f2' type_id=5 bits_offset=32\n" + "\t'f3' type_id=2 bits_offset=64", + "[5] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[6] STRUCT 's1' size=4 vlen=1\n" + "\t'f1' type_id=5 bits_offset=0"); + + ASSERT_STREQ(btf_type_c_dump(btf2), "\ +struct s1 {\n\ + int f1;\n\ +};\n\ +\n\ +struct s1___2 {\n\ + int f1;\n\ +};\n\ +\n\ +struct s2 {\n\ + struct s1___2 f1;\n\ + int f2;\n\ + int *f3;\n\ +};\n\n", "c_dump"); + + err = btf__dedup(btf2, NULL); + if (!ASSERT_OK(err, "btf_dedup")) + goto cleanup; + + VALIDATE_RAW_BTF( + btf2, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=1", + "[3] STRUCT 's1' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0", + "[4] STRUCT 's2' size=16 vlen=3\n" + "\t'f1' type_id=3 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32\n" + "\t'f3' type_id=2 bits_offset=64"); + + ASSERT_STREQ(btf_type_c_dump(btf2), "\ +struct s1 {\n\ + int f1;\n\ +};\n\ +\n\ +struct s2 {\n\ + struct s1 f1;\n\ + int f2;\n\ + int *f3;\n\ +};\n\n", "c_dump"); + +cleanup: + btf__free(btf2); + btf__free(btf1); +} + +static void test_split_fwd_resolve() { + struct btf *btf1, *btf2; + int err; + + btf1 = btf__new_empty(); + if (!ASSERT_OK_PTR(btf1, "empty_main_btf")) + return; + + btf__set_pointer_size(btf1, 8); /* enforce 64-bit arch */ + + btf__add_int(btf1, "int", 4, BTF_INT_SIGNED); /* [1] int */ + btf__add_ptr(btf1, 4); /* [2] ptr to struct s1 */ + btf__add_ptr(btf1, 5); /* [3] ptr to struct s2 */ + btf__add_struct(btf1, "s1", 16); /* [4] struct s1 { */ + btf__add_field(btf1, "f1", 2, 0, 0); /* struct s1 *f1; */ + btf__add_field(btf1, "f2", 3, 64, 0); /* struct s2 *f2; */ + /* } */ + btf__add_struct(btf1, "s2", 4); /* [5] struct s2 { */ + btf__add_field(btf1, "f1", 1, 0, 0); /* int f1; */ + /* } */ + /* keep this not a part of type the graph to test btf_dedup_resolve_fwds */ + btf__add_struct(btf1, "s3", 4); /* [6] struct s3 { */ + btf__add_field(btf1, "f1", 1, 0, 0); /* int f1; */ + /* } */ + + VALIDATE_RAW_BTF( + btf1, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=4", + "[3] PTR '(anon)' type_id=5", + "[4] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=2 bits_offset=0\n" + "\t'f2' type_id=3 bits_offset=64", + "[5] STRUCT 's2' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0", + "[6] STRUCT 's3' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0"); + + btf2 = btf__new_empty_split(btf1); + if (!ASSERT_OK_PTR(btf2, "empty_split_btf")) + goto cleanup; + + btf__add_int(btf2, "int", 4, BTF_INT_SIGNED); /* [7] int */ + btf__add_ptr(btf2, 11); /* [8] ptr to struct s1 */ + btf__add_fwd(btf2, "s2", BTF_FWD_STRUCT); /* [9] fwd for struct s2 */ + btf__add_ptr(btf2, 9); /* [10] ptr to fwd struct s2 */ + btf__add_struct(btf2, "s1", 16); /* [11] struct s1 { */ + btf__add_field(btf2, "f1", 8, 0, 0); /* struct s1 *f1; */ + btf__add_field(btf2, "f2", 10, 64, 0); /* struct s2 *f2; */ + /* } */ + btf__add_fwd(btf2, "s3", BTF_FWD_STRUCT); /* [12] fwd for struct s3 */ + btf__add_ptr(btf2, 12); /* [13] ptr to struct s1 */ + + VALIDATE_RAW_BTF( + btf2, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=4", + "[3] PTR '(anon)' type_id=5", + "[4] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=2 bits_offset=0\n" + "\t'f2' type_id=3 bits_offset=64", + "[5] STRUCT 's2' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0", + "[6] STRUCT 's3' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0", + "[7] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[8] PTR '(anon)' type_id=11", + "[9] FWD 's2' fwd_kind=struct", + "[10] PTR '(anon)' type_id=9", + "[11] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=8 bits_offset=0\n" + "\t'f2' type_id=10 bits_offset=64", + "[12] FWD 's3' fwd_kind=struct", + "[13] PTR '(anon)' type_id=12"); + + err = btf__dedup(btf2, NULL); + if (!ASSERT_OK(err, "btf_dedup")) + goto cleanup; + + VALIDATE_RAW_BTF( + btf2, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=4", + "[3] PTR '(anon)' type_id=5", + "[4] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=2 bits_offset=0\n" + "\t'f2' type_id=3 bits_offset=64", + "[5] STRUCT 's2' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0", + "[6] STRUCT 's3' size=4 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0", + "[7] PTR '(anon)' type_id=6"); + +cleanup: + btf__free(btf2); + btf__free(btf1); +} + +static void test_split_struct_duped() { + struct btf *btf1, *btf2; + int err; + + btf1 = btf__new_empty(); + if (!ASSERT_OK_PTR(btf1, "empty_main_btf")) + return; + + btf__set_pointer_size(btf1, 8); /* enforce 64-bit arch */ + + btf__add_int(btf1, "int", 4, BTF_INT_SIGNED); /* [1] int */ + btf__add_ptr(btf1, 5); /* [2] ptr to struct s1 */ + btf__add_fwd(btf1, "s2", BTF_FWD_STRUCT); /* [3] fwd for struct s2 */ + btf__add_ptr(btf1, 3); /* [4] ptr to fwd struct s2 */ + btf__add_struct(btf1, "s1", 16); /* [5] struct s1 { */ + btf__add_field(btf1, "f1", 2, 0, 0); /* struct s1 *f1; */ + btf__add_field(btf1, "f2", 4, 64, 0); /* struct s2 *f2; */ + /* } */ + + VALIDATE_RAW_BTF( + btf1, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=5", + "[3] FWD 's2' fwd_kind=struct", + "[4] PTR '(anon)' type_id=3", + "[5] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=2 bits_offset=0\n" + "\t'f2' type_id=4 bits_offset=64"); + + btf2 = btf__new_empty_split(btf1); + if (!ASSERT_OK_PTR(btf2, "empty_split_btf")) + goto cleanup; + + btf__add_int(btf2, "int", 4, BTF_INT_SIGNED); /* [6] int */ + btf__add_ptr(btf2, 10); /* [7] ptr to struct s1 */ + btf__add_fwd(btf2, "s2", BTF_FWD_STRUCT); /* [8] fwd for struct s2 */ + btf__add_ptr(btf2, 11); /* [9] ptr to struct s2 */ + btf__add_struct(btf2, "s1", 16); /* [10] struct s1 { */ + btf__add_field(btf2, "f1", 7, 0, 0); /* struct s1 *f1; */ + btf__add_field(btf2, "f2", 9, 64, 0); /* struct s2 *f2; */ + /* } */ + btf__add_struct(btf2, "s2", 40); /* [11] struct s2 { */ + btf__add_field(btf2, "f1", 7, 0, 0); /* struct s1 *f1; */ + btf__add_field(btf2, "f2", 9, 64, 0); /* struct s2 *f2; */ + btf__add_field(btf2, "f3", 6, 128, 0); /* int f3; */ + btf__add_field(btf2, "f4", 10, 192, 0); /* struct s1 f4; */ + /* } */ + btf__add_ptr(btf2, 8); /* [12] ptr to fwd struct s2 */ + btf__add_struct(btf2, "s3", 8); /* [13] struct s3 { */ + btf__add_field(btf2, "f1", 12, 0, 0); /* struct s2 *f1; (fwd) */ + /* } */ + + VALIDATE_RAW_BTF( + btf2, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=5", + "[3] FWD 's2' fwd_kind=struct", + "[4] PTR '(anon)' type_id=3", + "[5] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=2 bits_offset=0\n" + "\t'f2' type_id=4 bits_offset=64", + "[6] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[7] PTR '(anon)' type_id=10", + "[8] FWD 's2' fwd_kind=struct", + "[9] PTR '(anon)' type_id=11", + "[10] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=7 bits_offset=0\n" + "\t'f2' type_id=9 bits_offset=64", + "[11] STRUCT 's2' size=40 vlen=4\n" + "\t'f1' type_id=7 bits_offset=0\n" + "\t'f2' type_id=9 bits_offset=64\n" + "\t'f3' type_id=6 bits_offset=128\n" + "\t'f4' type_id=10 bits_offset=192", + "[12] PTR '(anon)' type_id=8", + "[13] STRUCT 's3' size=8 vlen=1\n" + "\t'f1' type_id=12 bits_offset=0"); + + err = btf__dedup(btf2, NULL); + if (!ASSERT_OK(err, "btf_dedup")) + goto cleanup; + + VALIDATE_RAW_BTF( + btf2, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=5", + "[3] FWD 's2' fwd_kind=struct", + "[4] PTR '(anon)' type_id=3", + "[5] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=2 bits_offset=0\n" + "\t'f2' type_id=4 bits_offset=64", + "[6] PTR '(anon)' type_id=8", + "[7] PTR '(anon)' type_id=9", + "[8] STRUCT 's1' size=16 vlen=2\n" + "\t'f1' type_id=6 bits_offset=0\n" + "\t'f2' type_id=7 bits_offset=64", + "[9] STRUCT 's2' size=40 vlen=4\n" + "\t'f1' type_id=6 bits_offset=0\n" + "\t'f2' type_id=7 bits_offset=64\n" + "\t'f3' type_id=1 bits_offset=128\n" + "\t'f4' type_id=8 bits_offset=192", + "[10] STRUCT 's3' size=8 vlen=1\n" + "\t'f1' type_id=7 bits_offset=0"); + +cleanup: + btf__free(btf2); + btf__free(btf1); +} + +static void btf_add_dup_struct_in_cu(struct btf *btf, int start_id) +{ +#define ID(n) (start_id + n) + btf__set_pointer_size(btf, 8); /* enforce 64-bit arch */ + + btf__add_int(btf, "int", 4, BTF_INT_SIGNED); /* [1] int */ + + btf__add_struct(btf, "s", 8); /* [2] struct s { */ + btf__add_field(btf, "a", ID(3), 0, 0); /* struct anon a; */ + btf__add_field(btf, "b", ID(4), 0, 0); /* struct anon b; */ + /* } */ + + btf__add_struct(btf, "(anon)", 8); /* [3] struct anon { */ + btf__add_field(btf, "f1", ID(1), 0, 0); /* int f1; */ + btf__add_field(btf, "f2", ID(1), 32, 0); /* int f2; */ + /* } */ + + btf__add_struct(btf, "(anon)", 8); /* [4] struct anon { */ + btf__add_field(btf, "f1", ID(1), 0, 0); /* int f1; */ + btf__add_field(btf, "f2", ID(1), 32, 0); /* int f2; */ + /* } */ +#undef ID +} + +static void test_split_dup_struct_in_cu() +{ + struct btf *btf1, *btf2 = NULL; + int err; + + /* generate the base data.. */ + btf1 = btf__new_empty(); + if (!ASSERT_OK_PTR(btf1, "empty_main_btf")) + return; + + btf_add_dup_struct_in_cu(btf1, 0); + + VALIDATE_RAW_BTF( + btf1, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] STRUCT 's' size=8 vlen=2\n" + "\t'a' type_id=3 bits_offset=0\n" + "\t'b' type_id=4 bits_offset=0", + "[3] STRUCT '(anon)' size=8 vlen=2\n" + "\t'f1' type_id=1 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32", + "[4] STRUCT '(anon)' size=8 vlen=2\n" + "\t'f1' type_id=1 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32"); + + /* ..dedup them... */ + err = btf__dedup(btf1, NULL); + if (!ASSERT_OK(err, "btf_dedup")) + goto cleanup; + + VALIDATE_RAW_BTF( + btf1, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] STRUCT 's' size=8 vlen=2\n" + "\t'a' type_id=3 bits_offset=0\n" + "\t'b' type_id=3 bits_offset=0", + "[3] STRUCT '(anon)' size=8 vlen=2\n" + "\t'f1' type_id=1 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32"); + + /* and add the same data on top of it */ + btf2 = btf__new_empty_split(btf1); + if (!ASSERT_OK_PTR(btf2, "empty_split_btf")) + goto cleanup; + + btf_add_dup_struct_in_cu(btf2, 3); + + VALIDATE_RAW_BTF( + btf2, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] STRUCT 's' size=8 vlen=2\n" + "\t'a' type_id=3 bits_offset=0\n" + "\t'b' type_id=3 bits_offset=0", + "[3] STRUCT '(anon)' size=8 vlen=2\n" + "\t'f1' type_id=1 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32", + "[4] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[5] STRUCT 's' size=8 vlen=2\n" + "\t'a' type_id=6 bits_offset=0\n" + "\t'b' type_id=7 bits_offset=0", + "[6] STRUCT '(anon)' size=8 vlen=2\n" + "\t'f1' type_id=4 bits_offset=0\n" + "\t'f2' type_id=4 bits_offset=32", + "[7] STRUCT '(anon)' size=8 vlen=2\n" + "\t'f1' type_id=4 bits_offset=0\n" + "\t'f2' type_id=4 bits_offset=32"); + + err = btf__dedup(btf2, NULL); + if (!ASSERT_OK(err, "btf_dedup")) + goto cleanup; + + /* after dedup it should match the original data */ + VALIDATE_RAW_BTF( + btf2, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] STRUCT 's' size=8 vlen=2\n" + "\t'a' type_id=3 bits_offset=0\n" + "\t'b' type_id=3 bits_offset=0", + "[3] STRUCT '(anon)' size=8 vlen=2\n" + "\t'f1' type_id=1 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32"); + +cleanup: + btf__free(btf2); + btf__free(btf1); +} + +void test_btf_dedup_split() +{ + if (test__start_subtest("split_simple")) + test_split_simple(); + if (test__start_subtest("split_struct_duped")) + test_split_struct_duped(); + if (test__start_subtest("split_fwd_resolve")) + test_split_fwd_resolve(); + if (test__start_subtest("split_dup_struct_in_cu")) + test_split_dup_struct_in_cu(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf_dump.c b/tools/testing/selftests/bpf/prog_tests/btf_dump.c index 39fb81d9daeb..09a8e6f9b379 100644 --- a/tools/testing/selftests/bpf/prog_tests/btf_dump.c +++ b/tools/testing/selftests/bpf/prog_tests/btf_dump.c @@ -13,29 +13,28 @@ static struct btf_dump_test_case { const char *name; const char *file; bool known_ptr_sz; - struct btf_dump_opts opts; } btf_dump_test_cases[] = { - {"btf_dump: syntax", "btf_dump_test_case_syntax", true, {}}, - {"btf_dump: ordering", "btf_dump_test_case_ordering", false, {}}, - {"btf_dump: padding", "btf_dump_test_case_padding", true, {}}, - {"btf_dump: packing", "btf_dump_test_case_packing", true, {}}, - {"btf_dump: bitfields", "btf_dump_test_case_bitfields", true, {}}, - {"btf_dump: multidim", "btf_dump_test_case_multidim", false, {}}, - {"btf_dump: namespacing", "btf_dump_test_case_namespacing", false, {}}, + {"btf_dump: syntax", "btf_dump_test_case_syntax", true}, + {"btf_dump: ordering", "btf_dump_test_case_ordering", false}, + {"btf_dump: padding", "btf_dump_test_case_padding", true}, + {"btf_dump: packing", "btf_dump_test_case_packing", true}, + {"btf_dump: bitfields", "btf_dump_test_case_bitfields", true}, + {"btf_dump: multidim", "btf_dump_test_case_multidim", false}, + {"btf_dump: namespacing", "btf_dump_test_case_namespacing", false}, }; -static int btf_dump_all_types(const struct btf *btf, - const struct btf_dump_opts *opts) +static int btf_dump_all_types(const struct btf *btf, void *ctx) { - size_t type_cnt = btf__get_nr_types(btf); + size_t type_cnt = btf__type_cnt(btf); struct btf_dump *d; int err = 0, id; - d = btf_dump__new(btf, NULL, opts, btf_dump_printf); - if (IS_ERR(d)) - return PTR_ERR(d); + d = btf_dump__new(btf, btf_dump_printf, ctx, NULL); + err = libbpf_get_error(d); + if (err) + return err; - for (id = 1; id <= type_cnt; id++) { + for (id = 1; id < type_cnt; id++) { err = btf_dump__dump_type(d, id); if (err) goto done; @@ -53,11 +52,10 @@ static int test_btf_dump_case(int n, struct btf_dump_test_case *t) int err = 0, fd = -1; FILE *f = NULL; - snprintf(test_file, sizeof(test_file), "%s.o", t->file); + snprintf(test_file, sizeof(test_file), "%s.bpf.o", t->file); btf = btf__parse_elf(test_file, NULL); - if (CHECK(IS_ERR(btf), "btf_parse_elf", - "failed to load test BTF: %ld\n", PTR_ERR(btf))) { + if (!ASSERT_OK_PTR(btf, "btf_parse_elf")) { err = -PTR_ERR(btf); btf = NULL; goto done; @@ -77,7 +75,7 @@ static int test_btf_dump_case(int n, struct btf_dump_test_case *t) snprintf(out_file, sizeof(out_file), "/tmp/%s.output.XXXXXX", t->file); fd = mkstemp(out_file); - if (CHECK(fd < 0, "create_tmp", "failed to create file: %d\n", fd)) { + if (!ASSERT_GE(fd, 0, "create_tmp")) { err = fd; goto done; } @@ -88,8 +86,7 @@ static int test_btf_dump_case(int n, struct btf_dump_test_case *t) goto done; } - t->opts.ctx = f; - err = btf_dump_all_types(btf, &t->opts); + err = btf_dump_all_types(btf, f); fclose(f); close(fd); if (CHECK(err, "btf_dump", "failure during C dumping: %d\n", err)) { @@ -129,7 +126,741 @@ done: return err; } +static char *dump_buf; +static size_t dump_buf_sz; +static FILE *dump_buf_file; + +static void test_btf_dump_incremental(void) +{ + struct btf *btf = NULL; + struct btf_dump *d = NULL; + int id, err, i; + + dump_buf_file = open_memstream(&dump_buf, &dump_buf_sz); + if (!ASSERT_OK_PTR(dump_buf_file, "dump_memstream")) + return; + btf = btf__new_empty(); + if (!ASSERT_OK_PTR(btf, "new_empty")) + goto err_out; + d = btf_dump__new(btf, btf_dump_printf, dump_buf_file, NULL); + if (!ASSERT_OK(libbpf_get_error(d), "btf_dump__new")) + goto err_out; + + /* First, generate BTF corresponding to the following C code: + * + * enum x; + * + * enum x { X = 1 }; + * + * enum { Y = 1 }; + * + * struct s; + * + * struct s { int x; }; + * + */ + id = btf__add_enum(btf, "x", 4); + ASSERT_EQ(id, 1, "enum_declaration_id"); + id = btf__add_enum(btf, "x", 4); + ASSERT_EQ(id, 2, "named_enum_id"); + err = btf__add_enum_value(btf, "X", 1); + ASSERT_OK(err, "named_enum_val_ok"); + + id = btf__add_enum(btf, NULL, 4); + ASSERT_EQ(id, 3, "anon_enum_id"); + err = btf__add_enum_value(btf, "Y", 1); + ASSERT_OK(err, "anon_enum_val_ok"); + + id = btf__add_int(btf, "int", 4, BTF_INT_SIGNED); + ASSERT_EQ(id, 4, "int_id"); + + id = btf__add_fwd(btf, "s", BTF_FWD_STRUCT); + ASSERT_EQ(id, 5, "fwd_id"); + + id = btf__add_struct(btf, "s", 4); + ASSERT_EQ(id, 6, "struct_id"); + err = btf__add_field(btf, "x", 4, 0, 0); + ASSERT_OK(err, "field_ok"); + + for (i = 1; i < btf__type_cnt(btf); i++) { + err = btf_dump__dump_type(d, i); + ASSERT_OK(err, "dump_type_ok"); + } + + fflush(dump_buf_file); + dump_buf[dump_buf_sz] = 0; /* some libc implementations don't do this */ + + ASSERT_STREQ(dump_buf, +"enum x;\n" +"\n" +"enum x {\n" +" X = 1,\n" +"};\n" +"\n" +"enum {\n" +" Y = 1,\n" +"};\n" +"\n" +"struct s;\n" +"\n" +"struct s {\n" +" int x;\n" +"};\n\n", "c_dump1"); + + /* Now, after dumping original BTF, append another struct that embeds + * anonymous enum. It also has a name conflict with the first struct: + * + * struct s___2 { + * enum { VAL___2 = 1 } x; + * struct s s; + * }; + * + * This will test that btf_dump'er maintains internal state properly. + * Note that VAL___2 enum value. It's because we've already emitted + * that enum as a global anonymous enum, so btf_dump will ensure that + * enum values don't conflict; + * + */ + fseek(dump_buf_file, 0, SEEK_SET); + + id = btf__add_struct(btf, "s", 4); + ASSERT_EQ(id, 7, "struct_id"); + err = btf__add_field(btf, "x", 2, 0, 0); + ASSERT_OK(err, "field_ok"); + err = btf__add_field(btf, "y", 3, 32, 0); + ASSERT_OK(err, "field_ok"); + err = btf__add_field(btf, "s", 6, 64, 0); + ASSERT_OK(err, "field_ok"); + + for (i = 1; i < btf__type_cnt(btf); i++) { + err = btf_dump__dump_type(d, i); + ASSERT_OK(err, "dump_type_ok"); + } + + fflush(dump_buf_file); + dump_buf[dump_buf_sz] = 0; /* some libc implementations don't do this */ + ASSERT_STREQ(dump_buf, +"struct s___2 {\n" +" enum x x;\n" +" enum {\n" +" Y___2 = 1,\n" +" } y;\n" +" struct s s;\n" +"};\n\n" , "c_dump1"); + +err_out: + fclose(dump_buf_file); + free(dump_buf); + btf_dump__free(d); + btf__free(btf); +} + +#define STRSIZE 4096 + +static void btf_dump_snprintf(void *ctx, const char *fmt, va_list args) +{ + char *s = ctx, new[STRSIZE]; + + vsnprintf(new, STRSIZE, fmt, args); + if (strlen(s) < STRSIZE) + strncat(s, new, STRSIZE - strlen(s) - 1); +} + +static int btf_dump_data(struct btf *btf, struct btf_dump *d, + char *name, char *prefix, __u64 flags, void *ptr, + size_t ptr_sz, char *str, const char *expected_val) +{ + DECLARE_LIBBPF_OPTS(btf_dump_type_data_opts, opts); + size_t type_sz; + __s32 type_id; + int ret = 0; + + if (flags & BTF_F_COMPACT) + opts.compact = true; + if (flags & BTF_F_NONAME) + opts.skip_names = true; + if (flags & BTF_F_ZERO) + opts.emit_zeroes = true; + if (prefix) { + ASSERT_STRNEQ(name, prefix, strlen(prefix), + "verify prefix match"); + name += strlen(prefix) + 1; + } + type_id = btf__find_by_name(btf, name); + if (!ASSERT_GE(type_id, 0, "find type id")) + return -ENOENT; + type_sz = btf__resolve_size(btf, type_id); + str[0] = '\0'; + ret = btf_dump__dump_type_data(d, type_id, ptr, ptr_sz, &opts); + if (type_sz <= ptr_sz) { + if (!ASSERT_EQ(ret, type_sz, "failed/unexpected type_sz")) + return -EINVAL; + } else { + if (!ASSERT_EQ(ret, -E2BIG, "failed to return -E2BIG")) + return -EINVAL; + } + if (!ASSERT_STREQ(str, expected_val, "ensure expected/actual match")) + return -EFAULT; + return 0; +} + +#define TEST_BTF_DUMP_DATA(_b, _d, _prefix, _str, _type, _flags, \ + _expected, ...) \ + do { \ + char __ptrtype[64] = #_type; \ + char *_ptrtype = (char *)__ptrtype; \ + _type _ptrdata = __VA_ARGS__; \ + void *_ptr = &_ptrdata; \ + \ + (void) btf_dump_data(_b, _d, _ptrtype, _prefix, _flags, \ + _ptr, sizeof(_type), _str, \ + _expected); \ + } while (0) + +/* Use where expected data string matches its stringified declaration */ +#define TEST_BTF_DUMP_DATA_C(_b, _d, _prefix, _str, _type, _flags, \ + ...) \ + TEST_BTF_DUMP_DATA(_b, _d, _prefix, _str, _type, _flags, \ + "(" #_type ")" #__VA_ARGS__, __VA_ARGS__) + +/* overflow test; pass typesize < expected type size, ensure E2BIG returned */ +#define TEST_BTF_DUMP_DATA_OVER(_b, _d, _prefix, _str, _type, _type_sz, \ + _expected, ...) \ + do { \ + char __ptrtype[64] = #_type; \ + char *_ptrtype = (char *)__ptrtype; \ + _type _ptrdata = __VA_ARGS__; \ + void *_ptr = &_ptrdata; \ + \ + (void) btf_dump_data(_b, _d, _ptrtype, _prefix, 0, \ + _ptr, _type_sz, _str, _expected); \ + } while (0) + +#define TEST_BTF_DUMP_VAR(_b, _d, _prefix, _str, _var, _type, _flags, \ + _expected, ...) \ + do { \ + _type _ptrdata = __VA_ARGS__; \ + void *_ptr = &_ptrdata; \ + \ + (void) btf_dump_data(_b, _d, _var, _prefix, _flags, \ + _ptr, sizeof(_type), _str, \ + _expected); \ + } while (0) + +static void test_btf_dump_int_data(struct btf *btf, struct btf_dump *d, + char *str) +{ +#ifdef __SIZEOF_INT128__ + unsigned __int128 i = 0xffffffffffffffff; + + /* this dance is required because we cannot directly initialize + * a 128-bit value to anything larger than a 64-bit value. + */ + i = (i << 64) | (i - 1); +#endif + /* simple int */ + TEST_BTF_DUMP_DATA_C(btf, d, NULL, str, int, BTF_F_COMPACT, 1234); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, int, BTF_F_COMPACT | BTF_F_NONAME, + "1234", 1234); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, int, 0, "(int)1234", 1234); + + /* zero value should be printed at toplevel */ + TEST_BTF_DUMP_DATA(btf, d, NULL, str, int, BTF_F_COMPACT, "(int)0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, int, BTF_F_COMPACT | BTF_F_NONAME, + "0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, int, BTF_F_COMPACT | BTF_F_ZERO, + "(int)0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, int, + BTF_F_COMPACT | BTF_F_NONAME | BTF_F_ZERO, + "0", 0); + TEST_BTF_DUMP_DATA_C(btf, d, NULL, str, int, BTF_F_COMPACT, -4567); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, int, BTF_F_COMPACT | BTF_F_NONAME, + "-4567", -4567); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, int, 0, "(int)-4567", -4567); + + TEST_BTF_DUMP_DATA_OVER(btf, d, NULL, str, int, sizeof(int)-1, "", 1); + +#ifdef __SIZEOF_INT128__ + /* gcc encode unsigned __int128 type with name "__int128 unsigned" in dwarf, + * and clang encode it with name "unsigned __int128" in dwarf. + * Do an availability test for either variant before doing actual test. + */ + if (btf__find_by_name(btf, "unsigned __int128") > 0) { + TEST_BTF_DUMP_DATA(btf, d, NULL, str, unsigned __int128, BTF_F_COMPACT, + "(unsigned __int128)0xffffffffffffffff", + 0xffffffffffffffff); + ASSERT_OK(btf_dump_data(btf, d, "unsigned __int128", NULL, 0, &i, 16, str, + "(unsigned __int128)0xfffffffffffffffffffffffffffffffe"), + "dump unsigned __int128"); + } else if (btf__find_by_name(btf, "__int128 unsigned") > 0) { + TEST_BTF_DUMP_DATA(btf, d, NULL, str, __int128 unsigned, BTF_F_COMPACT, + "(__int128 unsigned)0xffffffffffffffff", + 0xffffffffffffffff); + ASSERT_OK(btf_dump_data(btf, d, "__int128 unsigned", NULL, 0, &i, 16, str, + "(__int128 unsigned)0xfffffffffffffffffffffffffffffffe"), + "dump unsigned __int128"); + } else { + ASSERT_TRUE(false, "unsigned_int128_not_found"); + } +#endif +} + +static void test_btf_dump_float_data(struct btf *btf, struct btf_dump *d, + char *str) +{ + float t1 = 1.234567; + float t2 = -1.234567; + float t3 = 0.0; + double t4 = 5.678912; + double t5 = -5.678912; + double t6 = 0.0; + long double t7 = 9.876543; + long double t8 = -9.876543; + long double t9 = 0.0; + + /* since the kernel does not likely have any float types in its BTF, we + * will need to add some of various sizes. + */ + + ASSERT_GT(btf__add_float(btf, "test_float", 4), 0, "add float"); + ASSERT_OK(btf_dump_data(btf, d, "test_float", NULL, 0, &t1, 4, str, + "(test_float)1.234567"), "dump float"); + ASSERT_OK(btf_dump_data(btf, d, "test_float", NULL, 0, &t2, 4, str, + "(test_float)-1.234567"), "dump float"); + ASSERT_OK(btf_dump_data(btf, d, "test_float", NULL, 0, &t3, 4, str, + "(test_float)0.000000"), "dump float"); + + ASSERT_GT(btf__add_float(btf, "test_double", 8), 0, "add_double"); + ASSERT_OK(btf_dump_data(btf, d, "test_double", NULL, 0, &t4, 8, str, + "(test_double)5.678912"), "dump double"); + ASSERT_OK(btf_dump_data(btf, d, "test_double", NULL, 0, &t5, 8, str, + "(test_double)-5.678912"), "dump double"); + ASSERT_OK(btf_dump_data(btf, d, "test_double", NULL, 0, &t6, 8, str, + "(test_double)0.000000"), "dump double"); + + ASSERT_GT(btf__add_float(btf, "test_long_double", 16), 0, "add long double"); + ASSERT_OK(btf_dump_data(btf, d, "test_long_double", NULL, 0, &t7, 16, + str, "(test_long_double)9.876543"), + "dump long_double"); + ASSERT_OK(btf_dump_data(btf, d, "test_long_double", NULL, 0, &t8, 16, + str, "(test_long_double)-9.876543"), + "dump long_double"); + ASSERT_OK(btf_dump_data(btf, d, "test_long_double", NULL, 0, &t9, 16, + str, "(test_long_double)0.000000"), + "dump long_double"); +} + +static void test_btf_dump_char_data(struct btf *btf, struct btf_dump *d, + char *str) +{ + /* simple char */ + TEST_BTF_DUMP_DATA_C(btf, d, NULL, str, char, BTF_F_COMPACT, 100); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, char, BTF_F_COMPACT | BTF_F_NONAME, + "100", 100); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, char, 0, "(char)100", 100); + /* zero value should be printed at toplevel */ + TEST_BTF_DUMP_DATA(btf, d, NULL, str, char, BTF_F_COMPACT, + "(char)0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, char, BTF_F_COMPACT | BTF_F_NONAME, + "0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, char, BTF_F_COMPACT | BTF_F_ZERO, + "(char)0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, char, BTF_F_COMPACT | BTF_F_NONAME | BTF_F_ZERO, + "0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, char, 0, "(char)0", 0); + + TEST_BTF_DUMP_DATA_OVER(btf, d, NULL, str, char, sizeof(char)-1, "", 100); +} + +static void test_btf_dump_typedef_data(struct btf *btf, struct btf_dump *d, + char *str) +{ + /* simple typedef */ + TEST_BTF_DUMP_DATA_C(btf, d, NULL, str, uint64_t, BTF_F_COMPACT, 100); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, u64, BTF_F_COMPACT | BTF_F_NONAME, + "1", 1); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, u64, 0, "(u64)1", 1); + /* zero value should be printed at toplevel */ + TEST_BTF_DUMP_DATA(btf, d, NULL, str, u64, BTF_F_COMPACT, "(u64)0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, u64, BTF_F_COMPACT | BTF_F_NONAME, + "0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, u64, BTF_F_COMPACT | BTF_F_ZERO, + "(u64)0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, u64, + BTF_F_COMPACT | BTF_F_NONAME | BTF_F_ZERO, + "0", 0); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, u64, 0, "(u64)0", 0); + + /* typedef struct */ + TEST_BTF_DUMP_DATA_C(btf, d, NULL, str, atomic_t, BTF_F_COMPACT, + {.counter = (int)1,}); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, atomic_t, BTF_F_COMPACT | BTF_F_NONAME, + "{1,}", { .counter = 1 }); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, atomic_t, 0, +"(atomic_t){\n" +" .counter = (int)1,\n" +"}", + {.counter = 1,}); + /* typedef with 0 value should be printed at toplevel */ + TEST_BTF_DUMP_DATA(btf, d, NULL, str, atomic_t, BTF_F_COMPACT, "(atomic_t){}", + {.counter = 0,}); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, atomic_t, BTF_F_COMPACT | BTF_F_NONAME, + "{}", {.counter = 0,}); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, atomic_t, 0, +"(atomic_t){\n" +"}", + {.counter = 0,}); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, atomic_t, BTF_F_COMPACT | BTF_F_ZERO, + "(atomic_t){.counter = (int)0,}", + {.counter = 0,}); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, atomic_t, + BTF_F_COMPACT | BTF_F_NONAME | BTF_F_ZERO, + "{0,}", {.counter = 0,}); + TEST_BTF_DUMP_DATA(btf, d, NULL, str, atomic_t, BTF_F_ZERO, +"(atomic_t){\n" +" .counter = (int)0,\n" +"}", + { .counter = 0,}); + + /* overflow should show type but not value since it overflows */ + TEST_BTF_DUMP_DATA_OVER(btf, d, NULL, str, atomic_t, sizeof(atomic_t)-1, + "(atomic_t){\n", { .counter = 1}); +} + +static void test_btf_dump_enum_data(struct btf *btf, struct btf_dump *d, + char *str) +{ + /* enum where enum value does (and does not) exist */ + TEST_BTF_DUMP_DATA_C(btf, d, "enum", str, enum bpf_cmd, BTF_F_COMPACT, + BPF_MAP_CREATE); + TEST_BTF_DUMP_DATA(btf, d, "enum", str, enum bpf_cmd, BTF_F_COMPACT, + "(enum bpf_cmd)BPF_MAP_CREATE", 0); + TEST_BTF_DUMP_DATA(btf, d, "enum", str, enum bpf_cmd, + BTF_F_COMPACT | BTF_F_NONAME, + "BPF_MAP_CREATE", + BPF_MAP_CREATE); + TEST_BTF_DUMP_DATA(btf, d, "enum", str, enum bpf_cmd, 0, + "(enum bpf_cmd)BPF_MAP_CREATE", + BPF_MAP_CREATE); + TEST_BTF_DUMP_DATA(btf, d, "enum", str, enum bpf_cmd, + BTF_F_COMPACT | BTF_F_NONAME | BTF_F_ZERO, + "BPF_MAP_CREATE", 0); + TEST_BTF_DUMP_DATA(btf, d, "enum", str, enum bpf_cmd, + BTF_F_COMPACT | BTF_F_ZERO, + "(enum bpf_cmd)BPF_MAP_CREATE", + BPF_MAP_CREATE); + TEST_BTF_DUMP_DATA(btf, d, "enum", str, enum bpf_cmd, + BTF_F_COMPACT | BTF_F_NONAME | BTF_F_ZERO, + "BPF_MAP_CREATE", BPF_MAP_CREATE); + TEST_BTF_DUMP_DATA_C(btf, d, "enum", str, enum bpf_cmd, BTF_F_COMPACT, 2000); + TEST_BTF_DUMP_DATA(btf, d, "enum", str, enum bpf_cmd, + BTF_F_COMPACT | BTF_F_NONAME, + "2000", 2000); + TEST_BTF_DUMP_DATA(btf, d, "enum", str, enum bpf_cmd, 0, + "(enum bpf_cmd)2000", 2000); + + TEST_BTF_DUMP_DATA_OVER(btf, d, "enum", str, enum bpf_cmd, + sizeof(enum bpf_cmd) - 1, "", BPF_MAP_CREATE); +} + +static void test_btf_dump_struct_data(struct btf *btf, struct btf_dump *d, + char *str) +{ + DECLARE_LIBBPF_OPTS(btf_dump_type_data_opts, opts); + char zero_data[512] = { }; + char type_data[512]; + void *fops = type_data; + void *skb = type_data; + size_t type_sz; + __s32 type_id; + char *cmpstr; + int ret; + + memset(type_data, 255, sizeof(type_data)); + + /* simple struct */ + TEST_BTF_DUMP_DATA_C(btf, d, "struct", str, struct btf_enum, BTF_F_COMPACT, + {.name_off = (__u32)3,.val = (__s32)-1,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, + BTF_F_COMPACT | BTF_F_NONAME, + "{3,-1,}", + { .name_off = 3, .val = -1,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, 0, +"(struct btf_enum){\n" +" .name_off = (__u32)3,\n" +" .val = (__s32)-1,\n" +"}", + { .name_off = 3, .val = -1,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, + BTF_F_COMPACT | BTF_F_NONAME, + "{-1,}", + { .name_off = 0, .val = -1,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, + BTF_F_COMPACT | BTF_F_NONAME | BTF_F_ZERO, + "{0,-1,}", + { .name_off = 0, .val = -1,}); + /* empty struct should be printed */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, BTF_F_COMPACT, + "(struct btf_enum){}", + { .name_off = 0, .val = 0,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, + BTF_F_COMPACT | BTF_F_NONAME, + "{}", + { .name_off = 0, .val = 0,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, 0, +"(struct btf_enum){\n" +"}", + { .name_off = 0, .val = 0,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, + BTF_F_COMPACT | BTF_F_ZERO, + "(struct btf_enum){.name_off = (__u32)0,.val = (__s32)0,}", + { .name_off = 0, .val = 0,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct btf_enum, + BTF_F_ZERO, +"(struct btf_enum){\n" +" .name_off = (__u32)0,\n" +" .val = (__s32)0,\n" +"}", + { .name_off = 0, .val = 0,}); + + /* struct with pointers */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct list_head, BTF_F_COMPACT, + "(struct list_head){.next = (struct list_head *)0x1,}", + { .next = (struct list_head *)1 }); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct list_head, 0, +"(struct list_head){\n" +" .next = (struct list_head *)0x1,\n" +"}", + { .next = (struct list_head *)1 }); + /* NULL pointer should not be displayed */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct list_head, BTF_F_COMPACT, + "(struct list_head){}", + { .next = (struct list_head *)0 }); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct list_head, 0, +"(struct list_head){\n" +"}", + { .next = (struct list_head *)0 }); + + /* struct with function pointers */ + type_id = btf__find_by_name(btf, "file_operations"); + if (ASSERT_GT(type_id, 0, "find type id")) { + type_sz = btf__resolve_size(btf, type_id); + str[0] = '\0'; + + ret = btf_dump__dump_type_data(d, type_id, fops, type_sz, &opts); + ASSERT_EQ(ret, type_sz, + "unexpected return value dumping file_operations"); + cmpstr = +"(struct file_operations){\n" +" .owner = (struct module *)0xffffffffffffffff,\n" +" .fop_flags = (fop_flags_t)4294967295,"; + + ASSERT_STRNEQ(str, cmpstr, strlen(cmpstr), "file_operations"); + } + + /* struct with char array */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_prog_info, BTF_F_COMPACT, + "(struct bpf_prog_info){.name = (char[16])['f','o','o',],}", + { .name = "foo",}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_prog_info, + BTF_F_COMPACT | BTF_F_NONAME, + "{['f','o','o',],}", + {.name = "foo",}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_prog_info, 0, +"(struct bpf_prog_info){\n" +" .name = (char[16])[\n" +" 'f',\n" +" 'o',\n" +" 'o',\n" +" ],\n" +"}", + {.name = "foo",}); + /* leading null char means do not display string */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_prog_info, BTF_F_COMPACT, + "(struct bpf_prog_info){}", + {.name = {'\0', 'f', 'o', 'o'}}); + /* handle non-printable characters */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_prog_info, BTF_F_COMPACT, + "(struct bpf_prog_info){.name = (char[16])[1,2,3,],}", + { .name = {1, 2, 3, 0}}); + + /* struct with non-char array */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct __sk_buff, BTF_F_COMPACT, + "(struct __sk_buff){.cb = (__u32[5])[1,2,3,4,5,],}", + { .cb = {1, 2, 3, 4, 5,},}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct __sk_buff, + BTF_F_COMPACT | BTF_F_NONAME, + "{[1,2,3,4,5,],}", + { .cb = { 1, 2, 3, 4, 5},}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct __sk_buff, 0, +"(struct __sk_buff){\n" +" .cb = (__u32[5])[\n" +" 1,\n" +" 2,\n" +" 3,\n" +" 4,\n" +" 5,\n" +" ],\n" +"}", + { .cb = { 1, 2, 3, 4, 5},}); + /* For non-char, arrays, show non-zero values only */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct __sk_buff, BTF_F_COMPACT, + "(struct __sk_buff){.cb = (__u32[5])[0,0,1,0,0,],}", + { .cb = { 0, 0, 1, 0, 0},}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct __sk_buff, 0, +"(struct __sk_buff){\n" +" .cb = (__u32[5])[\n" +" 0,\n" +" 0,\n" +" 1,\n" +" 0,\n" +" 0,\n" +" ],\n" +"}", + { .cb = { 0, 0, 1, 0, 0},}); + + /* struct with bitfields */ + TEST_BTF_DUMP_DATA_C(btf, d, "struct", str, struct bpf_insn, BTF_F_COMPACT, + {.code = (__u8)1,.dst_reg = (__u8)0x2,.src_reg = (__u8)0x3,.off = (__s16)4,.imm = (__s32)5,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_insn, + BTF_F_COMPACT | BTF_F_NONAME, + "{1,0x2,0x3,4,5,}", + { .code = 1, .dst_reg = 0x2, .src_reg = 0x3, .off = 4, + .imm = 5,}); + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_insn, 0, +"(struct bpf_insn){\n" +" .code = (__u8)1,\n" +" .dst_reg = (__u8)0x2,\n" +" .src_reg = (__u8)0x3,\n" +" .off = (__s16)4,\n" +" .imm = (__s32)5,\n" +"}", + {.code = 1, .dst_reg = 2, .src_reg = 3, .off = 4, .imm = 5}); + + /* zeroed bitfields should not be displayed */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_insn, BTF_F_COMPACT, + "(struct bpf_insn){.dst_reg = (__u8)0x1,}", + { .code = 0, .dst_reg = 1}); + + /* struct with enum bitfield */ + type_id = btf__find_by_name(btf, "fs_context"); + if (ASSERT_GT(type_id, 0, "find fs_context")) { + type_sz = btf__resolve_size(btf, type_id); + str[0] = '\0'; + + opts.emit_zeroes = true; + ret = btf_dump__dump_type_data(d, type_id, zero_data, type_sz, &opts); + ASSERT_EQ(ret, type_sz, + "unexpected return value dumping fs_context"); + + ASSERT_NEQ(strstr(str, "FS_CONTEXT_FOR_MOUNT"), NULL, + "bitfield value not present"); + } + + /* struct with nested anon union */ + TEST_BTF_DUMP_DATA(btf, d, "struct", str, struct bpf_sock_ops, BTF_F_COMPACT, + "(struct bpf_sock_ops){.op = (__u32)1,(union){.args = (__u32[4])[1,2,3,4,],.reply = (__u32)1,.replylong = (__u32[4])[1,2,3,4,],},}", + { .op = 1, .args = { 1, 2, 3, 4}}); + + /* union with nested struct */ + TEST_BTF_DUMP_DATA(btf, d, "union", str, union bpf_iter_link_info, BTF_F_COMPACT, + "(union bpf_iter_link_info){.map = (struct){.map_fd = (__u32)1,},.cgroup = (struct){.order = (enum bpf_cgroup_iter_order)BPF_CGROUP_ITER_SELF_ONLY,.cgroup_fd = (__u32)1,},.task = (struct){.tid = (__u32)1,.pid = (__u32)1,},}", + { .cgroup = { .order = 1, .cgroup_fd = 1, }}); + + /* struct skb with nested structs/unions; because type output is so + * complex, we don't do a string comparison, just verify we return + * the type size as the amount of data displayed. + */ + type_id = btf__find_by_name(btf, "sk_buff"); + if (ASSERT_GT(type_id, 0, "find struct sk_buff")) { + type_sz = btf__resolve_size(btf, type_id); + str[0] = '\0'; + + ret = btf_dump__dump_type_data(d, type_id, skb, type_sz, &opts); + ASSERT_EQ(ret, type_sz, + "unexpected return value dumping sk_buff"); + } + + /* overflow bpf_sock_ops struct with final element nonzero/zero. + * Regardless of the value of the final field, we don't have all the + * data we need to display it, so we should trigger an overflow. + * In other words overflow checking should trump "is field zero?" + * checks because if we've overflowed, it shouldn't matter what the + * field is - we can't trust its value so shouldn't display it. + */ + TEST_BTF_DUMP_DATA_OVER(btf, d, "struct", str, struct bpf_sock_ops, + sizeof(struct bpf_sock_ops) - 1, + "(struct bpf_sock_ops){\n\t.op = (__u32)1,\n", + { .op = 1, .skb_hwtstamp = 2}); + TEST_BTF_DUMP_DATA_OVER(btf, d, "struct", str, struct bpf_sock_ops, + sizeof(struct bpf_sock_ops) - 1, + "(struct bpf_sock_ops){\n\t.op = (__u32)1,\n", + { .op = 1, .skb_hwtstamp = 0}); +} + +static void test_btf_dump_var_data(struct btf *btf, struct btf_dump *d, + char *str) +{ +#if 0 + TEST_BTF_DUMP_VAR(btf, d, NULL, str, "cpu_number", int, BTF_F_COMPACT, + "int cpu_number = (int)100", 100); +#endif + TEST_BTF_DUMP_VAR(btf, d, NULL, str, "cpu_profile_flip", int, BTF_F_COMPACT, + "static int cpu_profile_flip = (int)2", 2); +} + +static void test_btf_datasec(struct btf *btf, struct btf_dump *d, char *str, + const char *name, const char *expected_val, + void *data, size_t data_sz) +{ + DECLARE_LIBBPF_OPTS(btf_dump_type_data_opts, opts); + int ret = 0, cmp; + size_t secsize; + __s32 type_id; + + opts.compact = true; + + type_id = btf__find_by_name(btf, name); + if (!ASSERT_GT(type_id, 0, "find type id")) + return; + + secsize = btf__resolve_size(btf, type_id); + ASSERT_EQ(secsize, 0, "verify section size"); + + str[0] = '\0'; + ret = btf_dump__dump_type_data(d, type_id, data, data_sz, &opts); + ASSERT_EQ(ret, 0, "unexpected return value"); + + cmp = strcmp(str, expected_val); + ASSERT_EQ(cmp, 0, "ensure expected/actual match"); +} + +static void test_btf_dump_datasec_data(char *str) +{ + struct btf *btf; + char license[4] = "GPL"; + struct btf_dump *d; + + btf = btf__parse("xdping_kern.bpf.o", NULL); + if (!ASSERT_OK_PTR(btf, "xdping_kern.bpf.o BTF not found")) + return; + + d = btf_dump__new(btf, btf_dump_snprintf, str, NULL); + if (!ASSERT_OK_PTR(d, "could not create BTF dump")) + goto out; + + test_btf_datasec(btf, d, str, "license", + "SEC(\"license\") char[4] _license = (char[4])['G','P','L',];", + license, sizeof(license)); +out: + btf_dump__free(d); + btf__free(btf); +} + void test_btf_dump() { + char str[STRSIZE]; + struct btf_dump *d; + struct btf *btf; int i; for (i = 0; i < ARRAY_SIZE(btf_dump_test_cases); i++) { @@ -140,4 +871,35 @@ void test_btf_dump() { test_btf_dump_case(i, &btf_dump_test_cases[i]); } + if (test__start_subtest("btf_dump: incremental")) + test_btf_dump_incremental(); + + btf = libbpf_find_kernel_btf(); + if (!ASSERT_OK_PTR(btf, "no kernel BTF found")) + return; + + d = btf_dump__new(btf, btf_dump_snprintf, str, NULL); + if (!ASSERT_OK_PTR(d, "could not create BTF dump")) + return; + + /* Verify type display for various types. */ + if (test__start_subtest("btf_dump: int_data")) + test_btf_dump_int_data(btf, d, str); + if (test__start_subtest("btf_dump: float_data")) + test_btf_dump_float_data(btf, d, str); + if (test__start_subtest("btf_dump: char_data")) + test_btf_dump_char_data(btf, d, str); + if (test__start_subtest("btf_dump: typedef_data")) + test_btf_dump_typedef_data(btf, d, str); + if (test__start_subtest("btf_dump: enum_data")) + test_btf_dump_enum_data(btf, d, str); + if (test__start_subtest("btf_dump: struct_data")) + test_btf_dump_struct_data(btf, d, str); + if (test__start_subtest("btf_dump: var_data")) + test_btf_dump_var_data(btf, d, str); + btf_dump__free(d); + btf__free(btf); + + if (test__start_subtest("btf_dump: datasec_data")) + test_btf_dump_datasec_data(str); } diff --git a/tools/testing/selftests/bpf/prog_tests/btf_endian.c b/tools/testing/selftests/bpf/prog_tests/btf_endian.c new file mode 100644 index 000000000000..5b9f84dbeb43 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/btf_endian.c @@ -0,0 +1,99 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ +#define _GNU_SOURCE +#include <string.h> +#include <byteswap.h> +#include <test_progs.h> +#include <bpf/btf.h> + +void test_btf_endian() { +#if __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__ + enum btf_endianness endian = BTF_LITTLE_ENDIAN; +#elif __BYTE_ORDER__ == __ORDER_BIG_ENDIAN__ + enum btf_endianness endian = BTF_BIG_ENDIAN; +#else +#error "Unrecognized __BYTE_ORDER__" +#endif + enum btf_endianness swap_endian = 1 - endian; + struct btf *btf = NULL, *swap_btf = NULL; + const void *raw_data, *swap_raw_data; + const struct btf_type *t; + const struct btf_header *hdr; + __u32 raw_sz, swap_raw_sz; + int var_id; + + /* Load BTF in native endianness */ + btf = btf__parse_elf("btf_dump_test_case_syntax.bpf.o", NULL); + if (!ASSERT_OK_PTR(btf, "parse_native_btf")) + goto err_out; + + ASSERT_EQ(btf__endianness(btf), endian, "endian"); + btf__set_endianness(btf, swap_endian); + ASSERT_EQ(btf__endianness(btf), swap_endian, "endian"); + + /* Get raw BTF data in non-native endianness... */ + raw_data = btf__raw_data(btf, &raw_sz); + if (!ASSERT_OK_PTR(raw_data, "raw_data_inverted")) + goto err_out; + + /* ...and open it as a new BTF instance */ + swap_btf = btf__new(raw_data, raw_sz); + if (!ASSERT_OK_PTR(swap_btf, "parse_swap_btf")) + goto err_out; + + ASSERT_EQ(btf__endianness(swap_btf), swap_endian, "endian"); + ASSERT_EQ(btf__type_cnt(swap_btf), btf__type_cnt(btf), "nr_types"); + + swap_raw_data = btf__raw_data(swap_btf, &swap_raw_sz); + if (!ASSERT_OK_PTR(swap_raw_data, "swap_raw_data")) + goto err_out; + + /* both raw data should be identical (with non-native endianness) */ + ASSERT_OK(memcmp(raw_data, swap_raw_data, raw_sz), "mem_identical"); + + /* make sure that at least BTF header data is really swapped */ + hdr = swap_raw_data; + ASSERT_EQ(bswap_16(hdr->magic), BTF_MAGIC, "btf_magic_swapped"); + ASSERT_EQ(raw_sz, swap_raw_sz, "raw_sizes"); + + /* swap it back to native endianness */ + btf__set_endianness(swap_btf, endian); + swap_raw_data = btf__raw_data(swap_btf, &swap_raw_sz); + if (!ASSERT_OK_PTR(swap_raw_data, "swap_raw_data")) + goto err_out; + + /* now header should have native BTF_MAGIC */ + hdr = swap_raw_data; + ASSERT_EQ(hdr->magic, BTF_MAGIC, "btf_magic_native"); + ASSERT_EQ(raw_sz, swap_raw_sz, "raw_sizes"); + + /* now modify original BTF */ + var_id = btf__add_var(btf, "some_var", BTF_VAR_GLOBAL_ALLOCATED, 1); + ASSERT_GT(var_id, 0, "var_id"); + + btf__free(swap_btf); + swap_btf = NULL; + + btf__set_endianness(btf, swap_endian); + raw_data = btf__raw_data(btf, &raw_sz); + if (!ASSERT_OK_PTR(raw_data, "raw_data_inverted")) + goto err_out; + + /* and re-open swapped raw data again */ + swap_btf = btf__new(raw_data, raw_sz); + if (!ASSERT_OK_PTR(swap_btf, "parse_swap_btf")) + goto err_out; + + ASSERT_EQ(btf__endianness(swap_btf), swap_endian, "endian"); + ASSERT_EQ(btf__type_cnt(swap_btf), btf__type_cnt(btf), "nr_types"); + + /* the type should appear as if it was stored in native endianness */ + t = btf__type_by_id(swap_btf, var_id); + ASSERT_STREQ(btf__str_by_offset(swap_btf, t->name_off), "some_var", "var_name"); + ASSERT_EQ(btf_var(t)->linkage, BTF_VAR_GLOBAL_ALLOCATED, "var_linkage"); + ASSERT_EQ(t->type, 1, "var_type"); + +err_out: + btf__free(btf); + btf__free(swap_btf); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf_map_in_map.c b/tools/testing/selftests/bpf/prog_tests/btf_map_in_map.c index 6ccecbd39476..f66ceccd7029 100644 --- a/tools/testing/selftests/bpf/prog_tests/btf_map_in_map.c +++ b/tools/testing/selftests/bpf/prog_tests/btf_map_in_map.c @@ -14,51 +14,18 @@ static __u32 bpf_map_id(struct bpf_map *map) int err; memset(&info, 0, info_len); - err = bpf_obj_get_info_by_fd(bpf_map__fd(map), &info, &info_len); + err = bpf_map_get_info_by_fd(bpf_map__fd(map), &info, &info_len); if (err) return 0; return info.id; } -/* - * Trigger synchronize_rcu() in kernel. - * - * ARRAY_OF_MAPS/HASH_OF_MAPS lookup/update operations trigger synchronize_rcu() - * if looking up an existing non-NULL element or updating the map with a valid - * inner map FD. Use this fact to trigger synchronize_rcu(): create map-in-map, - * create a trivial ARRAY map, update map-in-map with ARRAY inner map. Then - * cleanup. At the end, at least one synchronize_rcu() would be called. - */ -static int kern_sync_rcu(void) +static void test_lookup_update(void) { - int inner_map_fd, outer_map_fd, err, zero = 0; - - inner_map_fd = bpf_create_map(BPF_MAP_TYPE_ARRAY, 4, 4, 1, 0); - if (CHECK(inner_map_fd < 0, "inner_map_create", "failed %d\n", -errno)) - return -1; - - outer_map_fd = bpf_create_map_in_map(BPF_MAP_TYPE_ARRAY_OF_MAPS, NULL, - sizeof(int), inner_map_fd, 1, 0); - if (CHECK(outer_map_fd < 0, "outer_map_create", "failed %d\n", -errno)) { - close(inner_map_fd); - return -1; - } - - err = bpf_map_update_elem(outer_map_fd, &zero, &inner_map_fd, 0); - if (err) - err = -errno; - CHECK(err, "outer_map_update", "failed %d\n", err); - close(inner_map_fd); - close(outer_map_fd); - return err; -} - -void test_btf_map_in_map(void) -{ - int err, key = 0, val, i; + int map1_fd, map2_fd, map3_fd, map4_fd, map5_fd, map1_id, map2_id; + int outer_arr_fd, outer_hash_fd, outer_arr_dyn_fd; struct test_btf_map_in_map *skel; - int outer_arr_fd, outer_hash_fd; - int fd, map1_fd, map2_fd, map1_id, map2_id; + int err, key = 0, val, i; skel = test_btf_map_in_map__open_and_load(); if (CHECK(!skel, "skel_open", "failed to open&load skeleton\n")) @@ -70,32 +37,45 @@ void test_btf_map_in_map(void) map1_fd = bpf_map__fd(skel->maps.inner_map1); map2_fd = bpf_map__fd(skel->maps.inner_map2); + map3_fd = bpf_map__fd(skel->maps.inner_map3); + map4_fd = bpf_map__fd(skel->maps.inner_map4); + map5_fd = bpf_map__fd(skel->maps.inner_map5); + outer_arr_dyn_fd = bpf_map__fd(skel->maps.outer_arr_dyn); outer_arr_fd = bpf_map__fd(skel->maps.outer_arr); outer_hash_fd = bpf_map__fd(skel->maps.outer_hash); - /* inner1 = input, inner2 = input + 1 */ - map1_fd = bpf_map__fd(skel->maps.inner_map1); + /* inner1 = input, inner2 = input + 1, inner3 = input + 2 */ bpf_map_update_elem(outer_arr_fd, &key, &map1_fd, 0); - map2_fd = bpf_map__fd(skel->maps.inner_map2); bpf_map_update_elem(outer_hash_fd, &key, &map2_fd, 0); + bpf_map_update_elem(outer_arr_dyn_fd, &key, &map3_fd, 0); skel->bss->input = 1; usleep(1); - bpf_map_lookup_elem(map1_fd, &key, &val); CHECK(val != 1, "inner1", "got %d != exp %d\n", val, 1); bpf_map_lookup_elem(map2_fd, &key, &val); CHECK(val != 2, "inner2", "got %d != exp %d\n", val, 2); + bpf_map_lookup_elem(map3_fd, &key, &val); + CHECK(val != 3, "inner3", "got %d != exp %d\n", val, 3); - /* inner1 = input + 1, inner2 = input */ + /* inner2 = input, inner1 = input + 1, inner4 = input + 2 */ bpf_map_update_elem(outer_arr_fd, &key, &map2_fd, 0); bpf_map_update_elem(outer_hash_fd, &key, &map1_fd, 0); + bpf_map_update_elem(outer_arr_dyn_fd, &key, &map4_fd, 0); skel->bss->input = 3; usleep(1); - bpf_map_lookup_elem(map1_fd, &key, &val); CHECK(val != 4, "inner1", "got %d != exp %d\n", val, 4); bpf_map_lookup_elem(map2_fd, &key, &val); CHECK(val != 3, "inner2", "got %d != exp %d\n", val, 3); + bpf_map_lookup_elem(map4_fd, &key, &val); + CHECK(val != 5, "inner4", "got %d != exp %d\n", val, 5); + + /* inner5 = input + 2 */ + bpf_map_update_elem(outer_arr_dyn_fd, &key, &map5_fd, 0); + skel->bss->input = 5; + usleep(1); + bpf_map_lookup_elem(map5_fd, &key, &val); + CHECK(val != 7, "inner5", "got %d != exp %d\n", val, 7); for (i = 0; i < 5; i++) { val = i % 2 ? map1_fd : map2_fd; @@ -106,7 +86,13 @@ void test_btf_map_in_map(void) } err = bpf_map_update_elem(outer_arr_fd, &key, &val, 0); if (CHECK_FAIL(err)) { - printf("failed to update hash_of_maps on iter #%d\n", i); + printf("failed to update array_of_maps on iter #%d\n", i); + goto cleanup; + } + val = i % 2 ? map4_fd : map5_fd; + err = bpf_map_update_elem(outer_arr_dyn_fd, &key, &val, 0); + if (CHECK_FAIL(err)) { + printf("failed to update array_of_maps (dyn) on iter #%d\n", i); goto cleanup; } } @@ -116,30 +102,39 @@ void test_btf_map_in_map(void) CHECK(map1_id == 0, "map1_id", "failed to get ID 1\n"); CHECK(map2_id == 0, "map2_id", "failed to get ID 2\n"); +cleanup: test_btf_map_in_map__destroy(skel); - skel = NULL; - - /* we need to either wait for or force synchronize_rcu(), before - * checking for "still exists" condition, otherwise map could still be - * resolvable by ID, causing false positives. - * - * Older kernels (5.8 and earlier) freed map only after two - * synchronize_rcu()s, so trigger two, to be entirely sure. - */ - CHECK(kern_sync_rcu(), "sync_rcu", "failed\n"); - CHECK(kern_sync_rcu(), "sync_rcu", "failed\n"); - - fd = bpf_map_get_fd_by_id(map1_id); - if (CHECK(fd >= 0, "map1_leak", "inner_map1 leaked!\n")) { - close(fd); - goto cleanup; - } - fd = bpf_map_get_fd_by_id(map2_id); - if (CHECK(fd >= 0, "map2_leak", "inner_map2 leaked!\n")) { - close(fd); - goto cleanup; - } +} + +static void test_diff_size(void) +{ + struct test_btf_map_in_map *skel; + int err, inner_map_fd, zero = 0; + + skel = test_btf_map_in_map__open_and_load(); + if (CHECK(!skel, "skel_open", "failed to open&load skeleton\n")) + return; + + inner_map_fd = bpf_map__fd(skel->maps.sockarr_sz2); + err = bpf_map_update_elem(bpf_map__fd(skel->maps.outer_sockarr), &zero, + &inner_map_fd, 0); + CHECK(err, "outer_sockarr inner map size check", + "cannot use a different size inner_map\n"); + + inner_map_fd = bpf_map__fd(skel->maps.inner_map_sz2); + err = bpf_map_update_elem(bpf_map__fd(skel->maps.outer_arr), &zero, + &inner_map_fd, 0); + CHECK(!err, "outer_arr inner map size check", + "incorrectly updated with a different size inner_map\n"); -cleanup: test_btf_map_in_map__destroy(skel); } + +void test_btf_map_in_map(void) +{ + if (test__start_subtest("lookup_update")) + test_lookup_update(); + + if (test__start_subtest("diff_size")) + test_diff_size(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf_module.c b/tools/testing/selftests/bpf/prog_tests/btf_module.c new file mode 100644 index 000000000000..2239d1fe0332 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/btf_module.c @@ -0,0 +1,34 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* Copyright (c) 2021 Hengqi Chen */ + +#include <test_progs.h> +#include <bpf/btf.h> + +static const char *module_name = "bpf_testmod"; +static const char *symbol_name = "bpf_testmod_test_read"; + +void test_btf_module() +{ + struct btf *vmlinux_btf, *module_btf; + __s32 type_id; + + if (!env.has_testmod) { + test__skip(); + return; + } + + vmlinux_btf = btf__load_vmlinux_btf(); + if (!ASSERT_OK_PTR(vmlinux_btf, "could not load vmlinux BTF")) + return; + + module_btf = btf__load_module_btf(module_name, vmlinux_btf); + if (!ASSERT_OK_PTR(module_btf, "could not load module BTF")) + goto cleanup; + + type_id = btf__find_by_name(module_btf, symbol_name); + ASSERT_GT(type_id, 0, "func not found"); + +cleanup: + btf__free(module_btf); + btf__free(vmlinux_btf); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf_skc_cls_ingress.c b/tools/testing/selftests/bpf/prog_tests/btf_skc_cls_ingress.c new file mode 100644 index 000000000000..ef4d6a3ae423 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/btf_skc_cls_ingress.c @@ -0,0 +1,221 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ + +#define _GNU_SOURCE +#include <netinet/in.h> +#include <arpa/inet.h> +#include <unistd.h> +#include <stdlib.h> +#include <string.h> +#include <errno.h> +#include <sched.h> +#include <net/if.h> +#include <linux/compiler.h> +#include <bpf/libbpf.h> + +#include "network_helpers.h" +#include "test_progs.h" +#include "test_btf_skc_cls_ingress.skel.h" + +static struct test_btf_skc_cls_ingress *skel; +static struct sockaddr_in6 srv_sa6; +static __u32 duration; + +static int prepare_netns(void) +{ + LIBBPF_OPTS(bpf_tc_hook, qdisc_lo, .attach_point = BPF_TC_INGRESS); + LIBBPF_OPTS(bpf_tc_opts, tc_attach, + .prog_fd = bpf_program__fd(skel->progs.cls_ingress)); + + if (CHECK(unshare(CLONE_NEWNET), "create netns", + "unshare(CLONE_NEWNET): %s (%d)", + strerror(errno), errno)) + return -1; + + if (CHECK(system("ip link set dev lo up"), + "ip link set dev lo up", "failed\n")) + return -1; + + qdisc_lo.ifindex = if_nametoindex("lo"); + if (!ASSERT_OK(bpf_tc_hook_create(&qdisc_lo), "qdisc add dev lo clsact")) + return -1; + + if (!ASSERT_OK(bpf_tc_attach(&qdisc_lo, &tc_attach), + "filter add dev lo ingress")) + return -1; + + /* Ensure 20 bytes options (i.e. in total 40 bytes tcp header) for the + * bpf_tcp_gen_syncookie() helper. + */ + if (write_sysctl("/proc/sys/net/ipv4/tcp_window_scaling", "1") || + write_sysctl("/proc/sys/net/ipv4/tcp_timestamps", "1") || + write_sysctl("/proc/sys/net/ipv4/tcp_sack", "1")) + return -1; + + return 0; +} + +static void reset_test(void) +{ + memset(&skel->bss->srv_sa6, 0, sizeof(skel->bss->srv_sa6)); + skel->bss->listen_tp_sport = 0; + skel->bss->req_sk_sport = 0; + skel->bss->recv_cookie = 0; + skel->bss->gen_cookie = 0; + skel->bss->linum = 0; +} + +static void print_err_line(void) +{ + if (skel->bss->linum) + printf("bpf prog error at line %u\n", skel->bss->linum); +} + +static void test_conn(void) +{ + int listen_fd = -1, cli_fd = -1, srv_fd = -1, err; + socklen_t addrlen = sizeof(srv_sa6); + int srv_port; + + if (write_sysctl("/proc/sys/net/ipv4/tcp_syncookies", "1")) + return; + + listen_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + if (CHECK_FAIL(listen_fd == -1)) + return; + + err = getsockname(listen_fd, (struct sockaddr *)&srv_sa6, &addrlen); + if (CHECK(err, "getsockname(listen_fd)", "err:%d errno:%d\n", err, + errno)) + goto done; + memcpy(&skel->bss->srv_sa6, &srv_sa6, sizeof(srv_sa6)); + srv_port = ntohs(srv_sa6.sin6_port); + + cli_fd = connect_to_fd(listen_fd, 0); + if (CHECK_FAIL(cli_fd == -1)) + goto done; + + srv_fd = accept(listen_fd, NULL, NULL); + if (CHECK_FAIL(srv_fd == -1)) + goto done; + + if (CHECK(skel->bss->listen_tp_sport != srv_port || + skel->bss->req_sk_sport != srv_port, + "Unexpected sk src port", + "listen_tp_sport:%u req_sk_sport:%u expected:%u\n", + skel->bss->listen_tp_sport, skel->bss->req_sk_sport, + srv_port)) + goto done; + + if (CHECK(skel->bss->gen_cookie || skel->bss->recv_cookie, + "Unexpected syncookie states", + "gen_cookie:%u recv_cookie:%u\n", + skel->bss->gen_cookie, skel->bss->recv_cookie)) + goto done; + + CHECK(skel->bss->linum, "bpf prog detected error", "at line %u\n", + skel->bss->linum); + +done: + if (listen_fd != -1) + close(listen_fd); + if (cli_fd != -1) + close(cli_fd); + if (srv_fd != -1) + close(srv_fd); +} + +static void test_syncookie(void) +{ + int listen_fd = -1, cli_fd = -1, srv_fd = -1, err; + socklen_t addrlen = sizeof(srv_sa6); + int srv_port; + + /* Enforce syncookie mode */ + if (write_sysctl("/proc/sys/net/ipv4/tcp_syncookies", "2")) + return; + + listen_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + if (CHECK_FAIL(listen_fd == -1)) + return; + + err = getsockname(listen_fd, (struct sockaddr *)&srv_sa6, &addrlen); + if (CHECK(err, "getsockname(listen_fd)", "err:%d errno:%d\n", err, + errno)) + goto done; + memcpy(&skel->bss->srv_sa6, &srv_sa6, sizeof(srv_sa6)); + srv_port = ntohs(srv_sa6.sin6_port); + + cli_fd = connect_to_fd(listen_fd, 0); + if (CHECK_FAIL(cli_fd == -1)) + goto done; + + srv_fd = accept(listen_fd, NULL, NULL); + if (CHECK_FAIL(srv_fd == -1)) + goto done; + + if (CHECK(skel->bss->listen_tp_sport != srv_port, + "Unexpected tp src port", + "listen_tp_sport:%u expected:%u\n", + skel->bss->listen_tp_sport, srv_port)) + goto done; + + if (CHECK(skel->bss->req_sk_sport, + "Unexpected req_sk src port", + "req_sk_sport:%u expected:0\n", + skel->bss->req_sk_sport)) + goto done; + + if (CHECK(!skel->bss->gen_cookie || + skel->bss->gen_cookie != skel->bss->recv_cookie, + "Unexpected syncookie states", + "gen_cookie:%u recv_cookie:%u\n", + skel->bss->gen_cookie, skel->bss->recv_cookie)) + goto done; + + CHECK(skel->bss->linum, "bpf prog detected error", "at line %u\n", + skel->bss->linum); + +done: + if (listen_fd != -1) + close(listen_fd); + if (cli_fd != -1) + close(cli_fd); + if (srv_fd != -1) + close(srv_fd); +} + +struct test { + const char *desc; + void (*run)(void); +}; + +#define DEF_TEST(name) { #name, test_##name } +static struct test tests[] = { + DEF_TEST(conn), + DEF_TEST(syncookie), +}; + +void test_btf_skc_cls_ingress(void) +{ + int i; + + skel = test_btf_skc_cls_ingress__open_and_load(); + if (CHECK(!skel, "test_btf_skc_cls_ingress__open_and_load", "failed\n")) + return; + + for (i = 0; i < ARRAY_SIZE(tests); i++) { + if (!test__start_subtest(tests[i].desc)) + continue; + + if (prepare_netns()) + break; + + tests[i].run(); + + print_err_line(); + reset_test(); + } + + test_btf_skc_cls_ingress__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf_split.c b/tools/testing/selftests/bpf/prog_tests/btf_split.c new file mode 100644 index 000000000000..eef1158676ed --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/btf_split.c @@ -0,0 +1,97 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ +#include <test_progs.h> +#include <bpf/btf.h> + +static char *dump_buf; +static size_t dump_buf_sz; +static FILE *dump_buf_file; + +static void btf_dump_printf(void *ctx, const char *fmt, va_list args) +{ + vfprintf(ctx, fmt, args); +} + +void test_btf_split() { + struct btf_dump *d = NULL; + const struct btf_type *t; + struct btf *btf1, *btf2; + int str_off, i, err; + + btf1 = btf__new_empty(); + if (!ASSERT_OK_PTR(btf1, "empty_main_btf")) + return; + + btf__set_pointer_size(btf1, 8); /* enforce 64-bit arch */ + + btf__add_int(btf1, "int", 4, BTF_INT_SIGNED); /* [1] int */ + btf__add_ptr(btf1, 1); /* [2] ptr to int */ + + btf__add_struct(btf1, "s1", 4); /* [3] struct s1 { */ + btf__add_field(btf1, "f1", 1, 0, 0); /* int f1; */ + /* } */ + + btf2 = btf__new_empty_split(btf1); + if (!ASSERT_OK_PTR(btf2, "empty_split_btf")) + goto cleanup; + + /* pointer size should be "inherited" from main BTF */ + ASSERT_EQ(btf__pointer_size(btf2), 8, "inherit_ptr_sz"); + + str_off = btf__find_str(btf2, "int"); + ASSERT_NEQ(str_off, -ENOENT, "str_int_missing"); + + t = btf__type_by_id(btf2, 1); + if (!ASSERT_OK_PTR(t, "int_type")) + goto cleanup; + ASSERT_EQ(btf_is_int(t), true, "int_kind"); + ASSERT_STREQ(btf__str_by_offset(btf2, t->name_off), "int", "int_name"); + + btf__add_struct(btf2, "s2", 16); /* [4] struct s2 { */ + btf__add_field(btf2, "f1", 3, 0, 0); /* struct s1 f1; */ + btf__add_field(btf2, "f2", 1, 32, 0); /* int f2; */ + btf__add_field(btf2, "f3", 2, 64, 0); /* int *f3; */ + /* } */ + + t = btf__type_by_id(btf1, 4); + ASSERT_NULL(t, "split_type_in_main"); + + t = btf__type_by_id(btf2, 4); + if (!ASSERT_OK_PTR(t, "split_struct_type")) + goto cleanup; + ASSERT_EQ(btf_is_struct(t), true, "split_struct_kind"); + ASSERT_EQ(btf_vlen(t), 3, "split_struct_vlen"); + ASSERT_STREQ(btf__str_by_offset(btf2, t->name_off), "s2", "split_struct_name"); + + /* BTF-to-C dump of split BTF */ + dump_buf_file = open_memstream(&dump_buf, &dump_buf_sz); + if (!ASSERT_OK_PTR(dump_buf_file, "dump_memstream")) + return; + d = btf_dump__new(btf2, btf_dump_printf, dump_buf_file, NULL); + if (!ASSERT_OK_PTR(d, "btf_dump__new")) + goto cleanup; + for (i = 1; i < btf__type_cnt(btf2); i++) { + err = btf_dump__dump_type(d, i); + ASSERT_OK(err, "dump_type_ok"); + } + fflush(dump_buf_file); + dump_buf[dump_buf_sz] = 0; /* some libc implementations don't do this */ + ASSERT_STREQ(dump_buf, +"struct s1 {\n" +" int f1;\n" +"};\n" +"\n" +"struct s2 {\n" +" struct s1 f1;\n" +" int f2;\n" +" int *f3;\n" +"};\n\n", "c_dump"); + +cleanup: + if (dump_buf_file) + fclose(dump_buf_file); + free(dump_buf); + btf_dump__free(d); + btf__free(btf1); + btf__free(btf2); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf_tag.c b/tools/testing/selftests/bpf/prog_tests/btf_tag.c new file mode 100644 index 000000000000..071430cd54de --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/btf_tag.c @@ -0,0 +1,249 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include <bpf/btf.h> +#include "test_btf_decl_tag.skel.h" + +/* struct btf_type_tag_test is referenced in btf_type_tag.skel.h */ +struct btf_type_tag_test { + int **p; +}; +#include "btf_type_tag.skel.h" +#include "btf_type_tag_user.skel.h" +#include "btf_type_tag_percpu.skel.h" + +static void test_btf_decl_tag(void) +{ + struct test_btf_decl_tag *skel; + + skel = test_btf_decl_tag__open_and_load(); + if (!ASSERT_OK_PTR(skel, "btf_decl_tag")) + return; + + if (skel->rodata->skip_tests) { + printf("%s:SKIP: btf_decl_tag attribute not supported", __func__); + test__skip(); + } + + test_btf_decl_tag__destroy(skel); +} + +static void test_btf_type_tag(void) +{ + struct btf_type_tag *skel; + + skel = btf_type_tag__open_and_load(); + if (!ASSERT_OK_PTR(skel, "btf_type_tag")) + return; + + if (skel->rodata->skip_tests) { + printf("%s:SKIP: btf_type_tag attribute not supported", __func__); + test__skip(); + } + + btf_type_tag__destroy(skel); +} + +/* loads vmlinux_btf as well as module_btf. If the caller passes NULL as + * module_btf, it will not load module btf. + * + * Returns 0 on success. + * Return -1 On error. In case of error, the loaded btf will be freed and the + * input parameters will be set to pointing to NULL. + */ +static int load_btfs(struct btf **vmlinux_btf, struct btf **module_btf, + bool needs_vmlinux_tag) +{ + const char *module_name = "bpf_testmod"; + __s32 type_id; + + if (!env.has_testmod) { + test__skip(); + return -1; + } + + *vmlinux_btf = btf__load_vmlinux_btf(); + if (!ASSERT_OK_PTR(*vmlinux_btf, "could not load vmlinux BTF")) + return -1; + + if (!needs_vmlinux_tag) + goto load_module_btf; + + /* skip the test if the vmlinux does not have __user tags */ + type_id = btf__find_by_name_kind(*vmlinux_btf, "user", BTF_KIND_TYPE_TAG); + if (type_id <= 0) { + printf("%s:SKIP: btf_type_tag attribute not in vmlinux btf", __func__); + test__skip(); + goto free_vmlinux_btf; + } + +load_module_btf: + /* skip loading module_btf, if not requested by caller */ + if (!module_btf) + return 0; + + *module_btf = btf__load_module_btf(module_name, *vmlinux_btf); + if (!ASSERT_OK_PTR(*module_btf, "could not load module BTF")) + goto free_vmlinux_btf; + + /* skip the test if the module does not have __user tags */ + type_id = btf__find_by_name_kind(*module_btf, "user", BTF_KIND_TYPE_TAG); + if (type_id <= 0) { + printf("%s:SKIP: btf_type_tag attribute not in %s", __func__, module_name); + test__skip(); + goto free_module_btf; + } + + return 0; + +free_module_btf: + btf__free(*module_btf); +free_vmlinux_btf: + btf__free(*vmlinux_btf); + + *vmlinux_btf = NULL; + if (module_btf) + *module_btf = NULL; + return -1; +} + +static void test_btf_type_tag_mod_user(bool load_test_user1) +{ + struct btf *vmlinux_btf = NULL, *module_btf = NULL; + struct btf_type_tag_user *skel; + int err; + + if (load_btfs(&vmlinux_btf, &module_btf, /*needs_vmlinux_tag=*/false)) + return; + + skel = btf_type_tag_user__open(); + if (!ASSERT_OK_PTR(skel, "btf_type_tag_user")) + goto cleanup; + + bpf_program__set_autoload(skel->progs.test_sys_getsockname, false); + if (load_test_user1) + bpf_program__set_autoload(skel->progs.test_user2, false); + else + bpf_program__set_autoload(skel->progs.test_user1, false); + + err = btf_type_tag_user__load(skel); + ASSERT_ERR(err, "btf_type_tag_user"); + + btf_type_tag_user__destroy(skel); + +cleanup: + btf__free(module_btf); + btf__free(vmlinux_btf); +} + +static void test_btf_type_tag_vmlinux_user(void) +{ + struct btf_type_tag_user *skel; + struct btf *vmlinux_btf = NULL; + int err; + + if (load_btfs(&vmlinux_btf, NULL, /*needs_vmlinux_tag=*/true)) + return; + + skel = btf_type_tag_user__open(); + if (!ASSERT_OK_PTR(skel, "btf_type_tag_user")) + goto cleanup; + + bpf_program__set_autoload(skel->progs.test_user2, false); + bpf_program__set_autoload(skel->progs.test_user1, false); + + err = btf_type_tag_user__load(skel); + ASSERT_ERR(err, "btf_type_tag_user"); + + btf_type_tag_user__destroy(skel); + +cleanup: + btf__free(vmlinux_btf); +} + +static void test_btf_type_tag_mod_percpu(bool load_test_percpu1) +{ + struct btf *vmlinux_btf, *module_btf; + struct btf_type_tag_percpu *skel; + int err; + + if (load_btfs(&vmlinux_btf, &module_btf, /*needs_vmlinux_tag=*/false)) + return; + + skel = btf_type_tag_percpu__open(); + if (!ASSERT_OK_PTR(skel, "btf_type_tag_percpu")) + goto cleanup; + + bpf_program__set_autoload(skel->progs.test_percpu_load, false); + bpf_program__set_autoload(skel->progs.test_percpu_helper, false); + if (load_test_percpu1) + bpf_program__set_autoload(skel->progs.test_percpu2, false); + else + bpf_program__set_autoload(skel->progs.test_percpu1, false); + + err = btf_type_tag_percpu__load(skel); + ASSERT_ERR(err, "btf_type_tag_percpu"); + + btf_type_tag_percpu__destroy(skel); + +cleanup: + btf__free(module_btf); + btf__free(vmlinux_btf); +} + +static void test_btf_type_tag_vmlinux_percpu(bool load_test) +{ + struct btf_type_tag_percpu *skel; + struct btf *vmlinux_btf = NULL; + int err; + + if (load_btfs(&vmlinux_btf, NULL, /*needs_vmlinux_tag=*/true)) + return; + + skel = btf_type_tag_percpu__open(); + if (!ASSERT_OK_PTR(skel, "btf_type_tag_percpu")) + goto cleanup; + + bpf_program__set_autoload(skel->progs.test_percpu2, false); + bpf_program__set_autoload(skel->progs.test_percpu1, false); + if (load_test) { + bpf_program__set_autoload(skel->progs.test_percpu_helper, false); + + err = btf_type_tag_percpu__load(skel); + ASSERT_ERR(err, "btf_type_tag_percpu_load"); + } else { + bpf_program__set_autoload(skel->progs.test_percpu_load, false); + + err = btf_type_tag_percpu__load(skel); + ASSERT_OK(err, "btf_type_tag_percpu_helper"); + } + + btf_type_tag_percpu__destroy(skel); + +cleanup: + btf__free(vmlinux_btf); +} + +void test_btf_tag(void) +{ + if (test__start_subtest("btf_decl_tag")) + test_btf_decl_tag(); + if (test__start_subtest("btf_type_tag")) + test_btf_type_tag(); + + if (test__start_subtest("btf_type_tag_user_mod1")) + test_btf_type_tag_mod_user(true); + if (test__start_subtest("btf_type_tag_user_mod2")) + test_btf_type_tag_mod_user(false); + if (test__start_subtest("btf_type_tag_sys_user_vmlinux")) + test_btf_type_tag_vmlinux_user(); + + if (test__start_subtest("btf_type_tag_percpu_mod1")) + test_btf_type_tag_mod_percpu(true); + if (test__start_subtest("btf_type_tag_percpu_mod2")) + test_btf_type_tag_mod_percpu(false); + if (test__start_subtest("btf_type_tag_percpu_vmlinux_load")) + test_btf_type_tag_vmlinux_percpu(true); + if (test__start_subtest("btf_type_tag_percpu_vmlinux_helper")) + test_btf_type_tag_vmlinux_percpu(false); +} diff --git a/tools/testing/selftests/bpf/prog_tests/btf_write.c b/tools/testing/selftests/bpf/prog_tests/btf_write.c new file mode 100644 index 000000000000..6e36de1302fc --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/btf_write.c @@ -0,0 +1,506 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ +#include <test_progs.h> +#include <bpf/btf.h> +#include "btf_helpers.h" + +static void gen_btf(struct btf *btf) +{ + const struct btf_var_secinfo *vi; + const struct btf_type *t; + const struct btf_member *m; + const struct btf_enum64 *v64; + const struct btf_enum *v; + const struct btf_param *p; + int id, err, str_off; + + str_off = btf__find_str(btf, "int"); + ASSERT_EQ(str_off, -ENOENT, "int_str_missing_off"); + + str_off = btf__add_str(btf, "int"); + ASSERT_EQ(str_off, 1, "int_str_off"); + + str_off = btf__find_str(btf, "int"); + ASSERT_EQ(str_off, 1, "int_str_found_off"); + + /* BTF_KIND_INT */ + id = btf__add_int(btf, "int", 4, BTF_INT_SIGNED); + ASSERT_EQ(id, 1, "int_id"); + + t = btf__type_by_id(btf, 1); + /* should re-use previously added "int" string */ + ASSERT_EQ(t->name_off, str_off, "int_name_off"); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "int", "int_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_INT, "int_kind"); + ASSERT_EQ(t->size, 4, "int_sz"); + ASSERT_EQ(btf_int_encoding(t), BTF_INT_SIGNED, "int_enc"); + ASSERT_EQ(btf_int_bits(t), 32, "int_bits"); + ASSERT_STREQ(btf_type_raw_dump(btf, 1), + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", "raw_dump"); + + /* invalid int size */ + id = btf__add_int(btf, "bad sz int", 7, 0); + ASSERT_ERR(id, "int_bad_sz"); + /* invalid encoding */ + id = btf__add_int(btf, "bad enc int", 4, 123); + ASSERT_ERR(id, "int_bad_enc"); + /* NULL name */ + id = btf__add_int(btf, NULL, 4, 0); + ASSERT_ERR(id, "int_bad_null_name"); + /* empty name */ + id = btf__add_int(btf, "", 4, 0); + ASSERT_ERR(id, "int_bad_empty_name"); + + /* PTR/CONST/VOLATILE/RESTRICT */ + id = btf__add_ptr(btf, 1); + ASSERT_EQ(id, 2, "ptr_id"); + t = btf__type_by_id(btf, 2); + ASSERT_EQ(btf_kind(t), BTF_KIND_PTR, "ptr_kind"); + ASSERT_EQ(t->type, 1, "ptr_type"); + ASSERT_STREQ(btf_type_raw_dump(btf, 2), + "[2] PTR '(anon)' type_id=1", "raw_dump"); + + id = btf__add_const(btf, 5); /* points forward to restrict */ + ASSERT_EQ(id, 3, "const_id"); + t = btf__type_by_id(btf, 3); + ASSERT_EQ(btf_kind(t), BTF_KIND_CONST, "const_kind"); + ASSERT_EQ(t->type, 5, "const_type"); + ASSERT_STREQ(btf_type_raw_dump(btf, 3), + "[3] CONST '(anon)' type_id=5", "raw_dump"); + + id = btf__add_volatile(btf, 3); + ASSERT_EQ(id, 4, "volatile_id"); + t = btf__type_by_id(btf, 4); + ASSERT_EQ(btf_kind(t), BTF_KIND_VOLATILE, "volatile_kind"); + ASSERT_EQ(t->type, 3, "volatile_type"); + ASSERT_STREQ(btf_type_raw_dump(btf, 4), + "[4] VOLATILE '(anon)' type_id=3", "raw_dump"); + + id = btf__add_restrict(btf, 4); + ASSERT_EQ(id, 5, "restrict_id"); + t = btf__type_by_id(btf, 5); + ASSERT_EQ(btf_kind(t), BTF_KIND_RESTRICT, "restrict_kind"); + ASSERT_EQ(t->type, 4, "restrict_type"); + ASSERT_STREQ(btf_type_raw_dump(btf, 5), + "[5] RESTRICT '(anon)' type_id=4", "raw_dump"); + + /* ARRAY */ + id = btf__add_array(btf, 1, 2, 10); /* int *[10] */ + ASSERT_EQ(id, 6, "array_id"); + t = btf__type_by_id(btf, 6); + ASSERT_EQ(btf_kind(t), BTF_KIND_ARRAY, "array_kind"); + ASSERT_EQ(btf_array(t)->index_type, 1, "array_index_type"); + ASSERT_EQ(btf_array(t)->type, 2, "array_elem_type"); + ASSERT_EQ(btf_array(t)->nelems, 10, "array_nelems"); + ASSERT_STREQ(btf_type_raw_dump(btf, 6), + "[6] ARRAY '(anon)' type_id=2 index_type_id=1 nr_elems=10", "raw_dump"); + + /* STRUCT */ + err = btf__add_field(btf, "field", 1, 0, 0); + ASSERT_ERR(err, "no_struct_field"); + id = btf__add_struct(btf, "s1", 8); + ASSERT_EQ(id, 7, "struct_id"); + err = btf__add_field(btf, "f1", 1, 0, 0); + ASSERT_OK(err, "f1_res"); + err = btf__add_field(btf, "f2", 1, 32, 16); + ASSERT_OK(err, "f2_res"); + + t = btf__type_by_id(btf, 7); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "s1", "struct_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_STRUCT, "struct_kind"); + ASSERT_EQ(btf_vlen(t), 2, "struct_vlen"); + ASSERT_EQ(btf_kflag(t), true, "struct_kflag"); + ASSERT_EQ(t->size, 8, "struct_sz"); + m = btf_members(t) + 0; + ASSERT_STREQ(btf__str_by_offset(btf, m->name_off), "f1", "f1_name"); + ASSERT_EQ(m->type, 1, "f1_type"); + ASSERT_EQ(btf_member_bit_offset(t, 0), 0, "f1_bit_off"); + ASSERT_EQ(btf_member_bitfield_size(t, 0), 0, "f1_bit_sz"); + m = btf_members(t) + 1; + ASSERT_STREQ(btf__str_by_offset(btf, m->name_off), "f2", "f2_name"); + ASSERT_EQ(m->type, 1, "f2_type"); + ASSERT_EQ(btf_member_bit_offset(t, 1), 32, "f2_bit_off"); + ASSERT_EQ(btf_member_bitfield_size(t, 1), 16, "f2_bit_sz"); + ASSERT_STREQ(btf_type_raw_dump(btf, 7), + "[7] STRUCT 's1' size=8 vlen=2\n" + "\t'f1' type_id=1 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32 bitfield_size=16", "raw_dump"); + + /* UNION */ + id = btf__add_union(btf, "u1", 8); + ASSERT_EQ(id, 8, "union_id"); + + /* invalid, non-zero offset */ + err = btf__add_field(btf, "field", 1, 1, 0); + ASSERT_ERR(err, "no_struct_field"); + + err = btf__add_field(btf, "f1", 1, 0, 16); + ASSERT_OK(err, "f1_res"); + + t = btf__type_by_id(btf, 8); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "u1", "union_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_UNION, "union_kind"); + ASSERT_EQ(btf_vlen(t), 1, "union_vlen"); + ASSERT_EQ(btf_kflag(t), true, "union_kflag"); + ASSERT_EQ(t->size, 8, "union_sz"); + m = btf_members(t) + 0; + ASSERT_STREQ(btf__str_by_offset(btf, m->name_off), "f1", "f1_name"); + ASSERT_EQ(m->type, 1, "f1_type"); + ASSERT_EQ(btf_member_bit_offset(t, 0), 0, "f1_bit_off"); + ASSERT_EQ(btf_member_bitfield_size(t, 0), 16, "f1_bit_sz"); + ASSERT_STREQ(btf_type_raw_dump(btf, 8), + "[8] UNION 'u1' size=8 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0 bitfield_size=16", "raw_dump"); + + /* ENUM */ + id = btf__add_enum(btf, "e1", 4); + ASSERT_EQ(id, 9, "enum_id"); + err = btf__add_enum_value(btf, "v1", 1); + ASSERT_OK(err, "v1_res"); + err = btf__add_enum_value(btf, "v2", 2); + ASSERT_OK(err, "v2_res"); + + t = btf__type_by_id(btf, 9); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "e1", "enum_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_ENUM, "enum_kind"); + ASSERT_EQ(btf_vlen(t), 2, "enum_vlen"); + ASSERT_EQ(t->size, 4, "enum_sz"); + v = btf_enum(t) + 0; + ASSERT_STREQ(btf__str_by_offset(btf, v->name_off), "v1", "v1_name"); + ASSERT_EQ(v->val, 1, "v1_val"); + v = btf_enum(t) + 1; + ASSERT_STREQ(btf__str_by_offset(btf, v->name_off), "v2", "v2_name"); + ASSERT_EQ(v->val, 2, "v2_val"); + ASSERT_STREQ(btf_type_raw_dump(btf, 9), + "[9] ENUM 'e1' encoding=UNSIGNED size=4 vlen=2\n" + "\t'v1' val=1\n" + "\t'v2' val=2", "raw_dump"); + + /* FWDs */ + id = btf__add_fwd(btf, "struct_fwd", BTF_FWD_STRUCT); + ASSERT_EQ(id, 10, "struct_fwd_id"); + t = btf__type_by_id(btf, 10); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "struct_fwd", "fwd_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_FWD, "fwd_kind"); + ASSERT_EQ(btf_kflag(t), 0, "fwd_kflag"); + ASSERT_STREQ(btf_type_raw_dump(btf, 10), + "[10] FWD 'struct_fwd' fwd_kind=struct", "raw_dump"); + + id = btf__add_fwd(btf, "union_fwd", BTF_FWD_UNION); + ASSERT_EQ(id, 11, "union_fwd_id"); + t = btf__type_by_id(btf, 11); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "union_fwd", "fwd_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_FWD, "fwd_kind"); + ASSERT_EQ(btf_kflag(t), 1, "fwd_kflag"); + ASSERT_STREQ(btf_type_raw_dump(btf, 11), + "[11] FWD 'union_fwd' fwd_kind=union", "raw_dump"); + + id = btf__add_fwd(btf, "enum_fwd", BTF_FWD_ENUM); + ASSERT_EQ(id, 12, "enum_fwd_id"); + t = btf__type_by_id(btf, 12); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "enum_fwd", "fwd_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_ENUM, "enum_fwd_kind"); + ASSERT_EQ(btf_vlen(t), 0, "enum_fwd_kind"); + ASSERT_EQ(t->size, 4, "enum_fwd_sz"); + ASSERT_STREQ(btf_type_raw_dump(btf, 12), + "[12] ENUM 'enum_fwd' encoding=UNSIGNED size=4 vlen=0", "raw_dump"); + + /* TYPEDEF */ + id = btf__add_typedef(btf, "typedef1", 1); + ASSERT_EQ(id, 13, "typedef_fwd_id"); + t = btf__type_by_id(btf, 13); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "typedef1", "typedef_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_TYPEDEF, "typedef_kind"); + ASSERT_EQ(t->type, 1, "typedef_type"); + ASSERT_STREQ(btf_type_raw_dump(btf, 13), + "[13] TYPEDEF 'typedef1' type_id=1", "raw_dump"); + + /* FUNC & FUNC_PROTO */ + id = btf__add_func(btf, "func1", BTF_FUNC_GLOBAL, 15); + ASSERT_EQ(id, 14, "func_id"); + t = btf__type_by_id(btf, 14); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "func1", "func_name"); + ASSERT_EQ(t->type, 15, "func_type"); + ASSERT_EQ(btf_kind(t), BTF_KIND_FUNC, "func_kind"); + ASSERT_EQ(btf_vlen(t), BTF_FUNC_GLOBAL, "func_vlen"); + ASSERT_STREQ(btf_type_raw_dump(btf, 14), + "[14] FUNC 'func1' type_id=15 linkage=global", "raw_dump"); + + id = btf__add_func_proto(btf, 1); + ASSERT_EQ(id, 15, "func_proto_id"); + err = btf__add_func_param(btf, "p1", 1); + ASSERT_OK(err, "p1_res"); + err = btf__add_func_param(btf, "p2", 2); + ASSERT_OK(err, "p2_res"); + + t = btf__type_by_id(btf, 15); + ASSERT_EQ(btf_kind(t), BTF_KIND_FUNC_PROTO, "func_proto_kind"); + ASSERT_EQ(btf_vlen(t), 2, "func_proto_vlen"); + ASSERT_EQ(t->type, 1, "func_proto_ret_type"); + p = btf_params(t) + 0; + ASSERT_STREQ(btf__str_by_offset(btf, p->name_off), "p1", "p1_name"); + ASSERT_EQ(p->type, 1, "p1_type"); + p = btf_params(t) + 1; + ASSERT_STREQ(btf__str_by_offset(btf, p->name_off), "p2", "p2_name"); + ASSERT_EQ(p->type, 2, "p2_type"); + ASSERT_STREQ(btf_type_raw_dump(btf, 15), + "[15] FUNC_PROTO '(anon)' ret_type_id=1 vlen=2\n" + "\t'p1' type_id=1\n" + "\t'p2' type_id=2", "raw_dump"); + + /* VAR */ + id = btf__add_var(btf, "var1", BTF_VAR_GLOBAL_ALLOCATED, 1); + ASSERT_EQ(id, 16, "var_id"); + t = btf__type_by_id(btf, 16); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "var1", "var_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_VAR, "var_kind"); + ASSERT_EQ(t->type, 1, "var_type"); + ASSERT_EQ(btf_var(t)->linkage, BTF_VAR_GLOBAL_ALLOCATED, "var_type"); + ASSERT_STREQ(btf_type_raw_dump(btf, 16), + "[16] VAR 'var1' type_id=1, linkage=global-alloc", "raw_dump"); + + /* DATASECT */ + id = btf__add_datasec(btf, "datasec1", 12); + ASSERT_EQ(id, 17, "datasec_id"); + err = btf__add_datasec_var_info(btf, 1, 4, 8); + ASSERT_OK(err, "v1_res"); + + t = btf__type_by_id(btf, 17); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "datasec1", "datasec_name"); + ASSERT_EQ(t->size, 12, "datasec_sz"); + ASSERT_EQ(btf_kind(t), BTF_KIND_DATASEC, "datasec_kind"); + ASSERT_EQ(btf_vlen(t), 1, "datasec_vlen"); + vi = btf_var_secinfos(t) + 0; + ASSERT_EQ(vi->type, 1, "v1_type"); + ASSERT_EQ(vi->offset, 4, "v1_off"); + ASSERT_EQ(vi->size, 8, "v1_sz"); + ASSERT_STREQ(btf_type_raw_dump(btf, 17), + "[17] DATASEC 'datasec1' size=12 vlen=1\n" + "\ttype_id=1 offset=4 size=8", "raw_dump"); + + /* DECL_TAG */ + id = btf__add_decl_tag(btf, "tag1", 16, -1); + ASSERT_EQ(id, 18, "tag_id"); + t = btf__type_by_id(btf, 18); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "tag1", "tag_value"); + ASSERT_EQ(btf_kind(t), BTF_KIND_DECL_TAG, "tag_kind"); + ASSERT_EQ(t->type, 16, "tag_type"); + ASSERT_EQ(btf_decl_tag(t)->component_idx, -1, "tag_component_idx"); + ASSERT_STREQ(btf_type_raw_dump(btf, 18), + "[18] DECL_TAG 'tag1' type_id=16 component_idx=-1", "raw_dump"); + + id = btf__add_decl_tag(btf, "tag2", 14, 1); + ASSERT_EQ(id, 19, "tag_id"); + t = btf__type_by_id(btf, 19); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "tag2", "tag_value"); + ASSERT_EQ(btf_kind(t), BTF_KIND_DECL_TAG, "tag_kind"); + ASSERT_EQ(t->type, 14, "tag_type"); + ASSERT_EQ(btf_decl_tag(t)->component_idx, 1, "tag_component_idx"); + ASSERT_STREQ(btf_type_raw_dump(btf, 19), + "[19] DECL_TAG 'tag2' type_id=14 component_idx=1", "raw_dump"); + + /* TYPE_TAG */ + id = btf__add_type_tag(btf, "tag1", 1); + ASSERT_EQ(id, 20, "tag_id"); + t = btf__type_by_id(btf, 20); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "tag1", "tag_value"); + ASSERT_EQ(btf_kind(t), BTF_KIND_TYPE_TAG, "tag_kind"); + ASSERT_EQ(t->type, 1, "tag_type"); + ASSERT_STREQ(btf_type_raw_dump(btf, 20), + "[20] TYPE_TAG 'tag1' type_id=1", "raw_dump"); + + /* ENUM64 */ + id = btf__add_enum64(btf, "e1", 8, true); + ASSERT_EQ(id, 21, "enum64_id"); + err = btf__add_enum64_value(btf, "v1", -1); + ASSERT_OK(err, "v1_res"); + err = btf__add_enum64_value(btf, "v2", 0x123456789); /* 4886718345 */ + ASSERT_OK(err, "v2_res"); + t = btf__type_by_id(btf, 21); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "e1", "enum64_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_ENUM64, "enum64_kind"); + ASSERT_EQ(btf_vlen(t), 2, "enum64_vlen"); + ASSERT_EQ(t->size, 8, "enum64_sz"); + v64 = btf_enum64(t) + 0; + ASSERT_STREQ(btf__str_by_offset(btf, v64->name_off), "v1", "v1_name"); + ASSERT_EQ(v64->val_hi32, 0xffffffff, "v1_val"); + ASSERT_EQ(v64->val_lo32, 0xffffffff, "v1_val"); + v64 = btf_enum64(t) + 1; + ASSERT_STREQ(btf__str_by_offset(btf, v64->name_off), "v2", "v2_name"); + ASSERT_EQ(v64->val_hi32, 0x1, "v2_val"); + ASSERT_EQ(v64->val_lo32, 0x23456789, "v2_val"); + ASSERT_STREQ(btf_type_raw_dump(btf, 21), + "[21] ENUM64 'e1' encoding=SIGNED size=8 vlen=2\n" + "\t'v1' val=-1\n" + "\t'v2' val=4886718345", "raw_dump"); + + id = btf__add_enum64(btf, "e1", 8, false); + ASSERT_EQ(id, 22, "enum64_id"); + err = btf__add_enum64_value(btf, "v1", 0xffffffffFFFFFFFF); /* 18446744073709551615 */ + ASSERT_OK(err, "v1_res"); + t = btf__type_by_id(btf, 22); + ASSERT_STREQ(btf__str_by_offset(btf, t->name_off), "e1", "enum64_name"); + ASSERT_EQ(btf_kind(t), BTF_KIND_ENUM64, "enum64_kind"); + ASSERT_EQ(btf_vlen(t), 1, "enum64_vlen"); + ASSERT_EQ(t->size, 8, "enum64_sz"); + v64 = btf_enum64(t) + 0; + ASSERT_STREQ(btf__str_by_offset(btf, v64->name_off), "v1", "v1_name"); + ASSERT_EQ(v64->val_hi32, 0xffffffff, "v1_val"); + ASSERT_EQ(v64->val_lo32, 0xffffffff, "v1_val"); + ASSERT_STREQ(btf_type_raw_dump(btf, 22), + "[22] ENUM64 'e1' encoding=UNSIGNED size=8 vlen=1\n" + "\t'v1' val=18446744073709551615", "raw_dump"); +} + +static void test_btf_add() +{ + struct btf *btf; + + btf = btf__new_empty(); + if (!ASSERT_OK_PTR(btf, "new_empty")) + return; + + gen_btf(btf); + + VALIDATE_RAW_BTF( + btf, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=1", + "[3] CONST '(anon)' type_id=5", + "[4] VOLATILE '(anon)' type_id=3", + "[5] RESTRICT '(anon)' type_id=4", + "[6] ARRAY '(anon)' type_id=2 index_type_id=1 nr_elems=10", + "[7] STRUCT 's1' size=8 vlen=2\n" + "\t'f1' type_id=1 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32 bitfield_size=16", + "[8] UNION 'u1' size=8 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0 bitfield_size=16", + "[9] ENUM 'e1' encoding=UNSIGNED size=4 vlen=2\n" + "\t'v1' val=1\n" + "\t'v2' val=2", + "[10] FWD 'struct_fwd' fwd_kind=struct", + "[11] FWD 'union_fwd' fwd_kind=union", + "[12] ENUM 'enum_fwd' encoding=UNSIGNED size=4 vlen=0", + "[13] TYPEDEF 'typedef1' type_id=1", + "[14] FUNC 'func1' type_id=15 linkage=global", + "[15] FUNC_PROTO '(anon)' ret_type_id=1 vlen=2\n" + "\t'p1' type_id=1\n" + "\t'p2' type_id=2", + "[16] VAR 'var1' type_id=1, linkage=global-alloc", + "[17] DATASEC 'datasec1' size=12 vlen=1\n" + "\ttype_id=1 offset=4 size=8", + "[18] DECL_TAG 'tag1' type_id=16 component_idx=-1", + "[19] DECL_TAG 'tag2' type_id=14 component_idx=1", + "[20] TYPE_TAG 'tag1' type_id=1", + "[21] ENUM64 'e1' encoding=SIGNED size=8 vlen=2\n" + "\t'v1' val=-1\n" + "\t'v2' val=4886718345", + "[22] ENUM64 'e1' encoding=UNSIGNED size=8 vlen=1\n" + "\t'v1' val=18446744073709551615"); + + btf__free(btf); +} + +static void test_btf_add_btf() +{ + struct btf *btf1 = NULL, *btf2 = NULL; + int id; + + btf1 = btf__new_empty(); + if (!ASSERT_OK_PTR(btf1, "btf1")) + return; + + btf2 = btf__new_empty(); + if (!ASSERT_OK_PTR(btf2, "btf2")) + goto cleanup; + + gen_btf(btf1); + gen_btf(btf2); + + id = btf__add_btf(btf1, btf2); + if (!ASSERT_EQ(id, 23, "id")) + goto cleanup; + + VALIDATE_RAW_BTF( + btf1, + "[1] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[2] PTR '(anon)' type_id=1", + "[3] CONST '(anon)' type_id=5", + "[4] VOLATILE '(anon)' type_id=3", + "[5] RESTRICT '(anon)' type_id=4", + "[6] ARRAY '(anon)' type_id=2 index_type_id=1 nr_elems=10", + "[7] STRUCT 's1' size=8 vlen=2\n" + "\t'f1' type_id=1 bits_offset=0\n" + "\t'f2' type_id=1 bits_offset=32 bitfield_size=16", + "[8] UNION 'u1' size=8 vlen=1\n" + "\t'f1' type_id=1 bits_offset=0 bitfield_size=16", + "[9] ENUM 'e1' encoding=UNSIGNED size=4 vlen=2\n" + "\t'v1' val=1\n" + "\t'v2' val=2", + "[10] FWD 'struct_fwd' fwd_kind=struct", + "[11] FWD 'union_fwd' fwd_kind=union", + "[12] ENUM 'enum_fwd' encoding=UNSIGNED size=4 vlen=0", + "[13] TYPEDEF 'typedef1' type_id=1", + "[14] FUNC 'func1' type_id=15 linkage=global", + "[15] FUNC_PROTO '(anon)' ret_type_id=1 vlen=2\n" + "\t'p1' type_id=1\n" + "\t'p2' type_id=2", + "[16] VAR 'var1' type_id=1, linkage=global-alloc", + "[17] DATASEC 'datasec1' size=12 vlen=1\n" + "\ttype_id=1 offset=4 size=8", + "[18] DECL_TAG 'tag1' type_id=16 component_idx=-1", + "[19] DECL_TAG 'tag2' type_id=14 component_idx=1", + "[20] TYPE_TAG 'tag1' type_id=1", + "[21] ENUM64 'e1' encoding=SIGNED size=8 vlen=2\n" + "\t'v1' val=-1\n" + "\t'v2' val=4886718345", + "[22] ENUM64 'e1' encoding=UNSIGNED size=8 vlen=1\n" + "\t'v1' val=18446744073709551615", + + /* types appended from the second BTF */ + "[23] INT 'int' size=4 bits_offset=0 nr_bits=32 encoding=SIGNED", + "[24] PTR '(anon)' type_id=23", + "[25] CONST '(anon)' type_id=27", + "[26] VOLATILE '(anon)' type_id=25", + "[27] RESTRICT '(anon)' type_id=26", + "[28] ARRAY '(anon)' type_id=24 index_type_id=23 nr_elems=10", + "[29] STRUCT 's1' size=8 vlen=2\n" + "\t'f1' type_id=23 bits_offset=0\n" + "\t'f2' type_id=23 bits_offset=32 bitfield_size=16", + "[30] UNION 'u1' size=8 vlen=1\n" + "\t'f1' type_id=23 bits_offset=0 bitfield_size=16", + "[31] ENUM 'e1' encoding=UNSIGNED size=4 vlen=2\n" + "\t'v1' val=1\n" + "\t'v2' val=2", + "[32] FWD 'struct_fwd' fwd_kind=struct", + "[33] FWD 'union_fwd' fwd_kind=union", + "[34] ENUM 'enum_fwd' encoding=UNSIGNED size=4 vlen=0", + "[35] TYPEDEF 'typedef1' type_id=23", + "[36] FUNC 'func1' type_id=37 linkage=global", + "[37] FUNC_PROTO '(anon)' ret_type_id=23 vlen=2\n" + "\t'p1' type_id=23\n" + "\t'p2' type_id=24", + "[38] VAR 'var1' type_id=23, linkage=global-alloc", + "[39] DATASEC 'datasec1' size=12 vlen=1\n" + "\ttype_id=23 offset=4 size=8", + "[40] DECL_TAG 'tag1' type_id=38 component_idx=-1", + "[41] DECL_TAG 'tag2' type_id=36 component_idx=1", + "[42] TYPE_TAG 'tag1' type_id=23", + "[43] ENUM64 'e1' encoding=SIGNED size=8 vlen=2\n" + "\t'v1' val=-1\n" + "\t'v2' val=4886718345", + "[44] ENUM64 'e1' encoding=UNSIGNED size=8 vlen=1\n" + "\t'v1' val=18446744073709551615"); + +cleanup: + btf__free(btf1); + btf__free(btf2); +} + +void test_btf_write() +{ + if (test__start_subtest("btf_add")) + test_btf_add(); + if (test__start_subtest("btf_add_btf")) + test_btf_add_btf(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cb_refs.c b/tools/testing/selftests/bpf/prog_tests/cb_refs.c new file mode 100644 index 000000000000..3bff680de16c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cb_refs.c @@ -0,0 +1,48 @@ +// SPDX-License-Identifier: GPL-2.0 +#include "bpf/libbpf.h" +#include <test_progs.h> +#include <network_helpers.h> + +#include "cb_refs.skel.h" + +static char log_buf[1024 * 1024]; + +struct { + const char *prog_name; + const char *err_msg; +} cb_refs_tests[] = { + { "underflow_prog", "reference has not been acquired before" }, + { "leak_prog", "Unreleased reference" }, + { "nested_cb", "Unreleased reference id=4 alloc_insn=2" }, /* alloc_insn=2{4,5} */ + { "non_cb_transfer_ref", "Unreleased reference id=4 alloc_insn=1" }, /* alloc_insn=1{1,2} */ +}; + +void test_cb_refs(void) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts, .kernel_log_buf = log_buf, + .kernel_log_size = sizeof(log_buf), + .kernel_log_level = 1); + struct bpf_program *prog; + struct cb_refs *skel; + int i; + + for (i = 0; i < ARRAY_SIZE(cb_refs_tests); i++) { + LIBBPF_OPTS(bpf_test_run_opts, run_opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + skel = cb_refs__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "cb_refs__open_and_load")) + return; + prog = bpf_object__find_program_by_name(skel->obj, cb_refs_tests[i].prog_name); + bpf_program__set_autoload(prog, true); + if (!ASSERT_ERR(cb_refs__load(skel), "cb_refs__load")) + bpf_prog_test_run_opts(bpf_program__fd(prog), &run_opts); + if (!ASSERT_OK_PTR(strstr(log_buf, cb_refs_tests[i].err_msg), "expected error message")) { + fprintf(stderr, "Expected: %s\n", cb_refs_tests[i].err_msg); + fprintf(stderr, "Verifier: %s\n", log_buf); + } + cb_refs__destroy(skel); + } +} diff --git a/tools/testing/selftests/bpf/prog_tests/cg_storage_multi.c b/tools/testing/selftests/bpf/prog_tests/cg_storage_multi.c index 643dfa35419c..63ee892bc757 100644 --- a/tools/testing/selftests/bpf/prog_tests/cg_storage_multi.c +++ b/tools/testing/selftests/bpf/prog_tests/cg_storage_multi.c @@ -56,8 +56,9 @@ static bool assert_storage_noexist(struct bpf_map *map, const void *key) static bool connect_send(const char *cgroup_path) { - bool res = true; int server_fd = -1, client_fd = -1; + char message[] = "message"; + bool res = true; if (join_cgroup(cgroup_path)) goto out_clean; @@ -70,7 +71,10 @@ static bool connect_send(const char *cgroup_path) if (client_fd < 0) goto out_clean; - if (send(client_fd, "message", strlen("message"), 0) < 0) + if (send(client_fd, &message, sizeof(message), 0) < 0) + goto out_clean; + + if (read(server_fd, &message, sizeof(message)) < 0) goto out_clean; res = false; @@ -102,8 +106,7 @@ static void test_egress_only(int parent_cgroup_fd, int child_cgroup_fd) */ parent_link = bpf_program__attach_cgroup(obj->progs.egress, parent_cgroup_fd); - if (CHECK(IS_ERR(parent_link), "parent-cg-attach", - "err %ld", PTR_ERR(parent_link))) + if (!ASSERT_OK_PTR(parent_link, "parent-cg-attach")) goto close_bpf_object; err = connect_send(CHILD_CGROUP); if (CHECK(err, "first-connect-send", "errno %d", errno)) @@ -126,8 +129,7 @@ static void test_egress_only(int parent_cgroup_fd, int child_cgroup_fd) */ child_link = bpf_program__attach_cgroup(obj->progs.egress, child_cgroup_fd); - if (CHECK(IS_ERR(child_link), "child-cg-attach", - "err %ld", PTR_ERR(child_link))) + if (!ASSERT_OK_PTR(child_link, "child-cg-attach")) goto close_bpf_object; err = connect_send(CHILD_CGROUP); if (CHECK(err, "second-connect-send", "errno %d", errno)) @@ -147,10 +149,8 @@ static void test_egress_only(int parent_cgroup_fd, int child_cgroup_fd) goto close_bpf_object; close_bpf_object: - if (!IS_ERR(parent_link)) - bpf_link__destroy(parent_link); - if (!IS_ERR(child_link)) - bpf_link__destroy(child_link); + bpf_link__destroy(parent_link); + bpf_link__destroy(child_link); cg_storage_multi_egress_only__destroy(obj); } @@ -176,18 +176,15 @@ static void test_isolated(int parent_cgroup_fd, int child_cgroup_fd) */ parent_egress1_link = bpf_program__attach_cgroup(obj->progs.egress1, parent_cgroup_fd); - if (CHECK(IS_ERR(parent_egress1_link), "parent-egress1-cg-attach", - "err %ld", PTR_ERR(parent_egress1_link))) + if (!ASSERT_OK_PTR(parent_egress1_link, "parent-egress1-cg-attach")) goto close_bpf_object; parent_egress2_link = bpf_program__attach_cgroup(obj->progs.egress2, parent_cgroup_fd); - if (CHECK(IS_ERR(parent_egress2_link), "parent-egress2-cg-attach", - "err %ld", PTR_ERR(parent_egress2_link))) + if (!ASSERT_OK_PTR(parent_egress2_link, "parent-egress2-cg-attach")) goto close_bpf_object; parent_ingress_link = bpf_program__attach_cgroup(obj->progs.ingress, parent_cgroup_fd); - if (CHECK(IS_ERR(parent_ingress_link), "parent-ingress-cg-attach", - "err %ld", PTR_ERR(parent_ingress_link))) + if (!ASSERT_OK_PTR(parent_ingress_link, "parent-ingress-cg-attach")) goto close_bpf_object; err = connect_send(CHILD_CGROUP); if (CHECK(err, "first-connect-send", "errno %d", errno)) @@ -221,18 +218,15 @@ static void test_isolated(int parent_cgroup_fd, int child_cgroup_fd) */ child_egress1_link = bpf_program__attach_cgroup(obj->progs.egress1, child_cgroup_fd); - if (CHECK(IS_ERR(child_egress1_link), "child-egress1-cg-attach", - "err %ld", PTR_ERR(child_egress1_link))) + if (!ASSERT_OK_PTR(child_egress1_link, "child-egress1-cg-attach")) goto close_bpf_object; child_egress2_link = bpf_program__attach_cgroup(obj->progs.egress2, child_cgroup_fd); - if (CHECK(IS_ERR(child_egress2_link), "child-egress2-cg-attach", - "err %ld", PTR_ERR(child_egress2_link))) + if (!ASSERT_OK_PTR(child_egress2_link, "child-egress2-cg-attach")) goto close_bpf_object; child_ingress_link = bpf_program__attach_cgroup(obj->progs.ingress, child_cgroup_fd); - if (CHECK(IS_ERR(child_ingress_link), "child-ingress-cg-attach", - "err %ld", PTR_ERR(child_ingress_link))) + if (!ASSERT_OK_PTR(child_ingress_link, "child-ingress-cg-attach")) goto close_bpf_object; err = connect_send(CHILD_CGROUP); if (CHECK(err, "second-connect-send", "errno %d", errno)) @@ -264,18 +258,12 @@ static void test_isolated(int parent_cgroup_fd, int child_cgroup_fd) goto close_bpf_object; close_bpf_object: - if (!IS_ERR(parent_egress1_link)) - bpf_link__destroy(parent_egress1_link); - if (!IS_ERR(parent_egress2_link)) - bpf_link__destroy(parent_egress2_link); - if (!IS_ERR(parent_ingress_link)) - bpf_link__destroy(parent_ingress_link); - if (!IS_ERR(child_egress1_link)) - bpf_link__destroy(child_egress1_link); - if (!IS_ERR(child_egress2_link)) - bpf_link__destroy(child_egress2_link); - if (!IS_ERR(child_ingress_link)) - bpf_link__destroy(child_ingress_link); + bpf_link__destroy(parent_egress1_link); + bpf_link__destroy(parent_egress2_link); + bpf_link__destroy(parent_ingress_link); + bpf_link__destroy(child_egress1_link); + bpf_link__destroy(child_egress2_link); + bpf_link__destroy(child_ingress_link); cg_storage_multi_isolated__destroy(obj); } @@ -301,18 +289,15 @@ static void test_shared(int parent_cgroup_fd, int child_cgroup_fd) */ parent_egress1_link = bpf_program__attach_cgroup(obj->progs.egress1, parent_cgroup_fd); - if (CHECK(IS_ERR(parent_egress1_link), "parent-egress1-cg-attach", - "err %ld", PTR_ERR(parent_egress1_link))) + if (!ASSERT_OK_PTR(parent_egress1_link, "parent-egress1-cg-attach")) goto close_bpf_object; parent_egress2_link = bpf_program__attach_cgroup(obj->progs.egress2, parent_cgroup_fd); - if (CHECK(IS_ERR(parent_egress2_link), "parent-egress2-cg-attach", - "err %ld", PTR_ERR(parent_egress2_link))) + if (!ASSERT_OK_PTR(parent_egress2_link, "parent-egress2-cg-attach")) goto close_bpf_object; parent_ingress_link = bpf_program__attach_cgroup(obj->progs.ingress, parent_cgroup_fd); - if (CHECK(IS_ERR(parent_ingress_link), "parent-ingress-cg-attach", - "err %ld", PTR_ERR(parent_ingress_link))) + if (!ASSERT_OK_PTR(parent_ingress_link, "parent-ingress-cg-attach")) goto close_bpf_object; err = connect_send(CHILD_CGROUP); if (CHECK(err, "first-connect-send", "errno %d", errno)) @@ -338,18 +323,15 @@ static void test_shared(int parent_cgroup_fd, int child_cgroup_fd) */ child_egress1_link = bpf_program__attach_cgroup(obj->progs.egress1, child_cgroup_fd); - if (CHECK(IS_ERR(child_egress1_link), "child-egress1-cg-attach", - "err %ld", PTR_ERR(child_egress1_link))) + if (!ASSERT_OK_PTR(child_egress1_link, "child-egress1-cg-attach")) goto close_bpf_object; child_egress2_link = bpf_program__attach_cgroup(obj->progs.egress2, child_cgroup_fd); - if (CHECK(IS_ERR(child_egress2_link), "child-egress2-cg-attach", - "err %ld", PTR_ERR(child_egress2_link))) + if (!ASSERT_OK_PTR(child_egress2_link, "child-egress2-cg-attach")) goto close_bpf_object; child_ingress_link = bpf_program__attach_cgroup(obj->progs.ingress, child_cgroup_fd); - if (CHECK(IS_ERR(child_ingress_link), "child-ingress-cg-attach", - "err %ld", PTR_ERR(child_ingress_link))) + if (!ASSERT_OK_PTR(child_ingress_link, "child-ingress-cg-attach")) goto close_bpf_object; err = connect_send(CHILD_CGROUP); if (CHECK(err, "second-connect-send", "errno %d", errno)) @@ -375,23 +357,17 @@ static void test_shared(int parent_cgroup_fd, int child_cgroup_fd) goto close_bpf_object; close_bpf_object: - if (!IS_ERR(parent_egress1_link)) - bpf_link__destroy(parent_egress1_link); - if (!IS_ERR(parent_egress2_link)) - bpf_link__destroy(parent_egress2_link); - if (!IS_ERR(parent_ingress_link)) - bpf_link__destroy(parent_ingress_link); - if (!IS_ERR(child_egress1_link)) - bpf_link__destroy(child_egress1_link); - if (!IS_ERR(child_egress2_link)) - bpf_link__destroy(child_egress2_link); - if (!IS_ERR(child_ingress_link)) - bpf_link__destroy(child_ingress_link); + bpf_link__destroy(parent_egress1_link); + bpf_link__destroy(parent_egress2_link); + bpf_link__destroy(parent_ingress_link); + bpf_link__destroy(child_egress1_link); + bpf_link__destroy(child_egress2_link); + bpf_link__destroy(child_ingress_link); cg_storage_multi_shared__destroy(obj); } -void test_cg_storage_multi(void) +void serial_test_cg_storage_multi(void) { int parent_cgroup_fd = -1, child_cgroup_fd = -1; diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup1_hierarchy.c b/tools/testing/selftests/bpf/prog_tests/cgroup1_hierarchy.c new file mode 100644 index 000000000000..25332e596750 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cgroup1_hierarchy.c @@ -0,0 +1,163 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023 Yafang Shao <laoar.shao@gmail.com> */ + +#include <sys/types.h> +#include <unistd.h> +#include <test_progs.h> +#include "cgroup_helpers.h" +#include "test_cgroup1_hierarchy.skel.h" + +static void bpf_cgroup1(struct test_cgroup1_hierarchy *skel) +{ + struct bpf_link *lsm_link, *fentry_link; + int err; + + /* Attach LSM prog first */ + lsm_link = bpf_program__attach_lsm(skel->progs.lsm_run); + if (!ASSERT_OK_PTR(lsm_link, "lsm_attach")) + return; + + /* LSM prog will be triggered when attaching fentry */ + fentry_link = bpf_program__attach_trace(skel->progs.fentry_run); + ASSERT_NULL(fentry_link, "fentry_attach_fail"); + + err = bpf_link__destroy(lsm_link); + ASSERT_OK(err, "destroy_lsm"); +} + +static void bpf_cgroup1_sleepable(struct test_cgroup1_hierarchy *skel) +{ + struct bpf_link *lsm_link, *fentry_link; + int err; + + /* Attach LSM prog first */ + lsm_link = bpf_program__attach_lsm(skel->progs.lsm_s_run); + if (!ASSERT_OK_PTR(lsm_link, "lsm_attach")) + return; + + /* LSM prog will be triggered when attaching fentry */ + fentry_link = bpf_program__attach_trace(skel->progs.fentry_run); + ASSERT_NULL(fentry_link, "fentry_attach_fail"); + + err = bpf_link__destroy(lsm_link); + ASSERT_OK(err, "destroy_lsm"); +} + +static void bpf_cgroup1_invalid_id(struct test_cgroup1_hierarchy *skel) +{ + struct bpf_link *lsm_link, *fentry_link; + int err; + + /* Attach LSM prog first */ + lsm_link = bpf_program__attach_lsm(skel->progs.lsm_run); + if (!ASSERT_OK_PTR(lsm_link, "lsm_attach")) + return; + + /* LSM prog will be triggered when attaching fentry */ + fentry_link = bpf_program__attach_trace(skel->progs.fentry_run); + if (!ASSERT_OK_PTR(fentry_link, "fentry_attach_success")) + goto cleanup; + + err = bpf_link__destroy(fentry_link); + ASSERT_OK(err, "destroy_lsm"); + +cleanup: + err = bpf_link__destroy(lsm_link); + ASSERT_OK(err, "destroy_fentry"); +} + +void test_cgroup1_hierarchy(void) +{ + struct test_cgroup1_hierarchy *skel; + __u64 current_cgid; + int hid, err; + + skel = test_cgroup1_hierarchy__open(); + if (!ASSERT_OK_PTR(skel, "open")) + return; + + skel->bss->target_pid = getpid(); + + err = bpf_program__set_attach_target(skel->progs.fentry_run, 0, "bpf_fentry_test1"); + if (!ASSERT_OK(err, "fentry_set_target")) + goto destroy; + + err = test_cgroup1_hierarchy__load(skel); + if (!ASSERT_OK(err, "load")) + goto destroy; + + /* Setup cgroup1 hierarchy */ + err = setup_cgroup_environment(); + if (!ASSERT_OK(err, "setup_cgroup_environment")) + goto destroy; + err = setup_classid_environment(); + if (!ASSERT_OK(err, "setup_classid_environment")) + goto cleanup_cgroup; + + err = join_classid(); + if (!ASSERT_OK(err, "join_cgroup1")) + goto cleanup; + + current_cgid = get_classid_cgroup_id(); + if (!ASSERT_GE(current_cgid, 0, "cgroup1 id")) + goto cleanup; + + hid = get_cgroup1_hierarchy_id("net_cls"); + if (!ASSERT_GE(hid, 0, "cgroup1 id")) + goto cleanup; + skel->bss->target_hid = hid; + + if (test__start_subtest("test_cgroup1_hierarchy")) { + skel->bss->target_ancestor_cgid = current_cgid; + bpf_cgroup1(skel); + } + + if (test__start_subtest("test_root_cgid")) { + skel->bss->target_ancestor_cgid = 1; + skel->bss->target_ancestor_level = 0; + bpf_cgroup1(skel); + } + + if (test__start_subtest("test_invalid_level")) { + skel->bss->target_ancestor_cgid = 1; + skel->bss->target_ancestor_level = 1; + bpf_cgroup1_invalid_id(skel); + } + + if (test__start_subtest("test_invalid_cgid")) { + skel->bss->target_ancestor_cgid = 0; + bpf_cgroup1_invalid_id(skel); + } + + if (test__start_subtest("test_invalid_hid")) { + skel->bss->target_ancestor_cgid = 1; + skel->bss->target_ancestor_level = 0; + skel->bss->target_hid = -1; + bpf_cgroup1_invalid_id(skel); + } + + if (test__start_subtest("test_invalid_cgrp_name")) { + skel->bss->target_hid = get_cgroup1_hierarchy_id("net_cl"); + skel->bss->target_ancestor_cgid = current_cgid; + bpf_cgroup1_invalid_id(skel); + } + + if (test__start_subtest("test_invalid_cgrp_name2")) { + skel->bss->target_hid = get_cgroup1_hierarchy_id("net_cls,"); + skel->bss->target_ancestor_cgid = current_cgid; + bpf_cgroup1_invalid_id(skel); + } + + if (test__start_subtest("test_sleepable_prog")) { + skel->bss->target_hid = hid; + skel->bss->target_ancestor_cgid = current_cgid; + bpf_cgroup1_sleepable(skel); + } + +cleanup: + cleanup_classid_environment(); +cleanup_cgroup: + cleanup_cgroup_environment(); +destroy: + test_cgroup1_hierarchy__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_attach_autodetach.c b/tools/testing/selftests/bpf/prog_tests/cgroup_attach_autodetach.c index 70e94e783070..9367bd2f0ae1 100644 --- a/tools/testing/selftests/bpf/prog_tests/cgroup_attach_autodetach.c +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_attach_autodetach.c @@ -14,14 +14,14 @@ static int prog_load(void) BPF_MOV64_IMM(BPF_REG_0, 1), /* r0 = 1 */ BPF_EXIT_INSN(), }; - size_t insns_cnt = sizeof(prog) / sizeof(struct bpf_insn); + size_t insns_cnt = ARRAY_SIZE(prog); - return bpf_load_program(BPF_PROG_TYPE_CGROUP_SKB, + return bpf_test_load_program(BPF_PROG_TYPE_CGROUP_SKB, prog, insns_cnt, "GPL", 0, bpf_log_buf, BPF_LOG_BUF_SIZE); } -void test_cgroup_attach_autodetach(void) +void serial_test_cgroup_attach_autodetach(void) { __u32 duration = 0, prog_cnt = 4, attach_flags; int allow_prog[2] = {-1}; diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_attach_multi.c b/tools/testing/selftests/bpf/prog_tests/cgroup_attach_multi.c index b549fcfacc0b..db0b7bac78d1 100644 --- a/tools/testing/selftests/bpf/prog_tests/cgroup_attach_multi.c +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_attach_multi.c @@ -15,22 +15,22 @@ static int prog_load_cnt(int verdict, int val) int cgroup_storage_fd, percpu_cgroup_storage_fd; if (map_fd < 0) - map_fd = bpf_create_map(BPF_MAP_TYPE_ARRAY, 4, 8, 1, 0); + map_fd = bpf_map_create(BPF_MAP_TYPE_ARRAY, NULL, 4, 8, 1, NULL); if (map_fd < 0) { printf("failed to create map '%s'\n", strerror(errno)); return -1; } - cgroup_storage_fd = bpf_create_map(BPF_MAP_TYPE_CGROUP_STORAGE, - sizeof(struct bpf_cgroup_storage_key), 8, 0, 0); + cgroup_storage_fd = bpf_map_create(BPF_MAP_TYPE_CGROUP_STORAGE, NULL, + sizeof(struct bpf_cgroup_storage_key), 8, 0, NULL); if (cgroup_storage_fd < 0) { printf("failed to create map '%s'\n", strerror(errno)); return -1; } - percpu_cgroup_storage_fd = bpf_create_map( - BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE, - sizeof(struct bpf_cgroup_storage_key), 8, 0, 0); + percpu_cgroup_storage_fd = bpf_map_create( + BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE, NULL, + sizeof(struct bpf_cgroup_storage_key), 8, 0, NULL); if (percpu_cgroup_storage_fd < 0) { printf("failed to create map '%s'\n", strerror(errno)); return -1; @@ -45,13 +45,13 @@ static int prog_load_cnt(int verdict, int val) BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 0, 0, BPF_FUNC_map_lookup_elem), BPF_JMP_IMM(BPF_JEQ, BPF_REG_0, 0, 2), BPF_MOV64_IMM(BPF_REG_1, val), /* r1 = 1 */ - BPF_RAW_INSN(BPF_STX | BPF_XADD | BPF_DW, BPF_REG_0, BPF_REG_1, 0, 0), /* xadd r0 += r1 */ + BPF_ATOMIC_OP(BPF_DW, BPF_ADD, BPF_REG_0, BPF_REG_1, 0), BPF_LD_MAP_FD(BPF_REG_1, cgroup_storage_fd), BPF_MOV64_IMM(BPF_REG_2, 0), BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 0, 0, BPF_FUNC_get_local_storage), BPF_MOV64_IMM(BPF_REG_1, val), - BPF_RAW_INSN(BPF_STX | BPF_XADD | BPF_W, BPF_REG_0, BPF_REG_1, 0, 0), + BPF_ATOMIC_OP(BPF_W, BPF_ADD, BPF_REG_0, BPF_REG_1, 0), BPF_LD_MAP_FD(BPF_REG_1, percpu_cgroup_storage_fd), BPF_MOV64_IMM(BPF_REG_2, 0), @@ -63,10 +63,10 @@ static int prog_load_cnt(int verdict, int val) BPF_MOV64_IMM(BPF_REG_0, verdict), /* r0 = verdict */ BPF_EXIT_INSN(), }; - size_t insns_cnt = sizeof(prog) / sizeof(struct bpf_insn); + size_t insns_cnt = ARRAY_SIZE(prog); int ret; - ret = bpf_load_program(BPF_PROG_TYPE_CGROUP_SKB, + ret = bpf_test_load_program(BPF_PROG_TYPE_CGROUP_SKB, prog, insns_cnt, "GPL", 0, bpf_log_buf, BPF_LOG_BUF_SIZE); @@ -74,7 +74,7 @@ static int prog_load_cnt(int verdict, int val) return ret; } -void test_cgroup_attach_multi(void) +void serial_test_cgroup_attach_multi(void) { __u32 prog_ids[4], prog_cnt = 0, attach_flags, saved_prog_id; int cg1 = 0, cg2 = 0, cg3 = 0, cg4 = 0, cg5 = 0, key = 0; @@ -167,7 +167,7 @@ void test_cgroup_attach_multi(void) prog_cnt = 2; CHECK_FAIL(bpf_prog_query(cg5, BPF_CGROUP_INET_EGRESS, BPF_F_QUERY_EFFECTIVE, &attach_flags, - prog_ids, &prog_cnt) != -1); + prog_ids, &prog_cnt) >= 0); CHECK_FAIL(errno != ENOSPC); CHECK_FAIL(prog_cnt != 4); /* check that prog_ids are returned even when buffer is too small */ @@ -194,14 +194,14 @@ void test_cgroup_attach_multi(void) attach_opts.flags = BPF_F_ALLOW_OVERRIDE | BPF_F_REPLACE; attach_opts.replace_prog_fd = allow_prog[0]; - if (CHECK(!bpf_prog_attach_xattr(allow_prog[6], cg1, + if (CHECK(!bpf_prog_attach_opts(allow_prog[6], cg1, BPF_CGROUP_INET_EGRESS, &attach_opts), "fail_prog_replace_override", "unexpected success\n")) goto err; CHECK_FAIL(errno != EINVAL); attach_opts.flags = BPF_F_REPLACE; - if (CHECK(!bpf_prog_attach_xattr(allow_prog[6], cg1, + if (CHECK(!bpf_prog_attach_opts(allow_prog[6], cg1, BPF_CGROUP_INET_EGRESS, &attach_opts), "fail_prog_replace_no_multi", "unexpected success\n")) goto err; @@ -209,7 +209,7 @@ void test_cgroup_attach_multi(void) attach_opts.flags = BPF_F_ALLOW_MULTI | BPF_F_REPLACE; attach_opts.replace_prog_fd = -1; - if (CHECK(!bpf_prog_attach_xattr(allow_prog[6], cg1, + if (CHECK(!bpf_prog_attach_opts(allow_prog[6], cg1, BPF_CGROUP_INET_EGRESS, &attach_opts), "fail_prog_replace_bad_fd", "unexpected success\n")) goto err; @@ -217,7 +217,7 @@ void test_cgroup_attach_multi(void) /* replacing a program that is not attached to cgroup should fail */ attach_opts.replace_prog_fd = allow_prog[3]; - if (CHECK(!bpf_prog_attach_xattr(allow_prog[6], cg1, + if (CHECK(!bpf_prog_attach_opts(allow_prog[6], cg1, BPF_CGROUP_INET_EGRESS, &attach_opts), "fail_prog_replace_no_ent", "unexpected success\n")) goto err; @@ -225,14 +225,14 @@ void test_cgroup_attach_multi(void) /* replace 1st from the top program */ attach_opts.replace_prog_fd = allow_prog[0]; - if (CHECK(bpf_prog_attach_xattr(allow_prog[6], cg1, + if (CHECK(bpf_prog_attach_opts(allow_prog[6], cg1, BPF_CGROUP_INET_EGRESS, &attach_opts), "prog_replace", "errno=%d\n", errno)) goto err; /* replace program with itself */ attach_opts.replace_prog_fd = allow_prog[6]; - if (CHECK(bpf_prog_attach_xattr(allow_prog[6], cg1, + if (CHECK(bpf_prog_attach_opts(allow_prog[6], cg1, BPF_CGROUP_INET_EGRESS, &attach_opts), "prog_replace", "errno=%d\n", errno)) goto err; diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_attach_override.c b/tools/testing/selftests/bpf/prog_tests/cgroup_attach_override.c index 9e96f8d87fea..9421a5b7f4e1 100644 --- a/tools/testing/selftests/bpf/prog_tests/cgroup_attach_override.c +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_attach_override.c @@ -16,14 +16,14 @@ static int prog_load(int verdict) BPF_MOV64_IMM(BPF_REG_0, verdict), /* r0 = verdict */ BPF_EXIT_INSN(), }; - size_t insns_cnt = sizeof(prog) / sizeof(struct bpf_insn); + size_t insns_cnt = ARRAY_SIZE(prog); - return bpf_load_program(BPF_PROG_TYPE_CGROUP_SKB, + return bpf_test_load_program(BPF_PROG_TYPE_CGROUP_SKB, prog, insns_cnt, "GPL", 0, bpf_log_buf, BPF_LOG_BUF_SIZE); } -void test_cgroup_attach_override(void) +void serial_test_cgroup_attach_override(void) { int drop_prog = -1, allow_prog = -1, foo = -1, bar = -1; __u32 duration = 0; diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_getset_retval.c b/tools/testing/selftests/bpf/prog_tests/cgroup_getset_retval.c new file mode 100644 index 000000000000..2bb5773d6f99 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_getset_retval.c @@ -0,0 +1,549 @@ +// SPDX-License-Identifier: GPL-2.0-only + +/* + * Copyright 2021 Google LLC. + */ + +#include <test_progs.h> +#include <cgroup_helpers.h> +#include <network_helpers.h> + +#include "cgroup_getset_retval_setsockopt.skel.h" +#include "cgroup_getset_retval_getsockopt.skel.h" +#include "cgroup_getset_retval_hooks.skel.h" + +#define SOL_CUSTOM 0xdeadbeef + +static int zero; + +static void test_setsockopt_set(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_setsockopt *obj; + struct bpf_link *link_set_eunatch = NULL; + + obj = cgroup_getset_retval_setsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach setsockopt that sets EUNATCH, assert that + * we actually get that error when we run setsockopt() + */ + link_set_eunatch = bpf_program__attach_cgroup(obj->progs.set_eunatch, + cgroup_fd); + if (!ASSERT_OK_PTR(link_set_eunatch, "cg-attach-set_eunatch")) + goto close_bpf_object; + + if (!ASSERT_ERR(setsockopt(sock_fd, SOL_SOCKET, SO_REUSEADDR, + &zero, sizeof(int)), "setsockopt")) + goto close_bpf_object; + if (!ASSERT_EQ(errno, EUNATCH, "setsockopt-errno")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 1, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_set_eunatch); + + cgroup_getset_retval_setsockopt__destroy(obj); +} + +static void test_setsockopt_set_and_get(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_setsockopt *obj; + struct bpf_link *link_set_eunatch = NULL, *link_get_retval = NULL; + + obj = cgroup_getset_retval_setsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach setsockopt that sets EUNATCH, and one that gets the + * previously set errno. Assert that we get the same errno back. + */ + link_set_eunatch = bpf_program__attach_cgroup(obj->progs.set_eunatch, + cgroup_fd); + if (!ASSERT_OK_PTR(link_set_eunatch, "cg-attach-set_eunatch")) + goto close_bpf_object; + link_get_retval = bpf_program__attach_cgroup(obj->progs.get_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_get_retval, "cg-attach-get_retval")) + goto close_bpf_object; + + if (!ASSERT_ERR(setsockopt(sock_fd, SOL_SOCKET, SO_REUSEADDR, + &zero, sizeof(int)), "setsockopt")) + goto close_bpf_object; + if (!ASSERT_EQ(errno, EUNATCH, "setsockopt-errno")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 2, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->retval_value, -EUNATCH, "retval_value")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_set_eunatch); + bpf_link__destroy(link_get_retval); + + cgroup_getset_retval_setsockopt__destroy(obj); +} + +static void test_setsockopt_default_zero(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_setsockopt *obj; + struct bpf_link *link_get_retval = NULL; + + obj = cgroup_getset_retval_setsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach setsockopt that gets the previously set errno. + * Assert that, without anything setting one, we get 0. + */ + link_get_retval = bpf_program__attach_cgroup(obj->progs.get_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_get_retval, "cg-attach-get_retval")) + goto close_bpf_object; + + if (!ASSERT_OK(setsockopt(sock_fd, SOL_SOCKET, SO_REUSEADDR, + &zero, sizeof(int)), "setsockopt")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 1, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->retval_value, 0, "retval_value")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_get_retval); + + cgroup_getset_retval_setsockopt__destroy(obj); +} + +static void test_setsockopt_default_zero_and_set(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_setsockopt *obj; + struct bpf_link *link_get_retval = NULL, *link_set_eunatch = NULL; + + obj = cgroup_getset_retval_setsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach setsockopt that gets the previously set errno, and then + * one that sets the errno to EUNATCH. Assert that the get does not + * see EUNATCH set later, and does not prevent EUNATCH from being set. + */ + link_get_retval = bpf_program__attach_cgroup(obj->progs.get_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_get_retval, "cg-attach-get_retval")) + goto close_bpf_object; + link_set_eunatch = bpf_program__attach_cgroup(obj->progs.set_eunatch, + cgroup_fd); + if (!ASSERT_OK_PTR(link_set_eunatch, "cg-attach-set_eunatch")) + goto close_bpf_object; + + if (!ASSERT_ERR(setsockopt(sock_fd, SOL_SOCKET, SO_REUSEADDR, + &zero, sizeof(int)), "setsockopt")) + goto close_bpf_object; + if (!ASSERT_EQ(errno, EUNATCH, "setsockopt-errno")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 2, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->retval_value, 0, "retval_value")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_get_retval); + bpf_link__destroy(link_set_eunatch); + + cgroup_getset_retval_setsockopt__destroy(obj); +} + +static void test_setsockopt_override(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_setsockopt *obj; + struct bpf_link *link_set_eunatch = NULL, *link_set_eisconn = NULL; + struct bpf_link *link_get_retval = NULL; + + obj = cgroup_getset_retval_setsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach setsockopt that sets EUNATCH, then one that sets EISCONN, + * and then one that gets the exported errno. Assert both the syscall + * and the helper sees the last set errno. + */ + link_set_eunatch = bpf_program__attach_cgroup(obj->progs.set_eunatch, + cgroup_fd); + if (!ASSERT_OK_PTR(link_set_eunatch, "cg-attach-set_eunatch")) + goto close_bpf_object; + link_set_eisconn = bpf_program__attach_cgroup(obj->progs.set_eisconn, + cgroup_fd); + if (!ASSERT_OK_PTR(link_set_eisconn, "cg-attach-set_eisconn")) + goto close_bpf_object; + link_get_retval = bpf_program__attach_cgroup(obj->progs.get_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_get_retval, "cg-attach-get_retval")) + goto close_bpf_object; + + if (!ASSERT_ERR(setsockopt(sock_fd, SOL_SOCKET, SO_REUSEADDR, + &zero, sizeof(int)), "setsockopt")) + goto close_bpf_object; + if (!ASSERT_EQ(errno, EISCONN, "setsockopt-errno")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 3, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->retval_value, -EISCONN, "retval_value")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_set_eunatch); + bpf_link__destroy(link_set_eisconn); + bpf_link__destroy(link_get_retval); + + cgroup_getset_retval_setsockopt__destroy(obj); +} + +static void test_setsockopt_legacy_eperm(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_setsockopt *obj; + struct bpf_link *link_legacy_eperm = NULL, *link_get_retval = NULL; + + obj = cgroup_getset_retval_setsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach setsockopt that return a reject without setting errno + * (legacy reject), and one that gets the errno. Assert that for + * backward compatibility the syscall result in EPERM, and this + * is also visible to the helper. + */ + link_legacy_eperm = bpf_program__attach_cgroup(obj->progs.legacy_eperm, + cgroup_fd); + if (!ASSERT_OK_PTR(link_legacy_eperm, "cg-attach-legacy_eperm")) + goto close_bpf_object; + link_get_retval = bpf_program__attach_cgroup(obj->progs.get_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_get_retval, "cg-attach-get_retval")) + goto close_bpf_object; + + if (!ASSERT_ERR(setsockopt(sock_fd, SOL_SOCKET, SO_REUSEADDR, + &zero, sizeof(int)), "setsockopt")) + goto close_bpf_object; + if (!ASSERT_EQ(errno, EPERM, "setsockopt-errno")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 2, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->retval_value, -EPERM, "retval_value")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_legacy_eperm); + bpf_link__destroy(link_get_retval); + + cgroup_getset_retval_setsockopt__destroy(obj); +} + +static void test_setsockopt_legacy_no_override(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_setsockopt *obj; + struct bpf_link *link_set_eunatch = NULL, *link_legacy_eperm = NULL; + struct bpf_link *link_get_retval = NULL; + + obj = cgroup_getset_retval_setsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach setsockopt that sets EUNATCH, then one that return a reject + * without setting errno, and then one that gets the exported errno. + * Assert both the syscall and the helper's errno are unaffected by + * the second prog (i.e. legacy rejects does not override the errno + * to EPERM). + */ + link_set_eunatch = bpf_program__attach_cgroup(obj->progs.set_eunatch, + cgroup_fd); + if (!ASSERT_OK_PTR(link_set_eunatch, "cg-attach-set_eunatch")) + goto close_bpf_object; + link_legacy_eperm = bpf_program__attach_cgroup(obj->progs.legacy_eperm, + cgroup_fd); + if (!ASSERT_OK_PTR(link_legacy_eperm, "cg-attach-legacy_eperm")) + goto close_bpf_object; + link_get_retval = bpf_program__attach_cgroup(obj->progs.get_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_get_retval, "cg-attach-get_retval")) + goto close_bpf_object; + + if (!ASSERT_ERR(setsockopt(sock_fd, SOL_SOCKET, SO_REUSEADDR, + &zero, sizeof(int)), "setsockopt")) + goto close_bpf_object; + if (!ASSERT_EQ(errno, EUNATCH, "setsockopt-errno")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 3, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->retval_value, -EUNATCH, "retval_value")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_set_eunatch); + bpf_link__destroy(link_legacy_eperm); + bpf_link__destroy(link_get_retval); + + cgroup_getset_retval_setsockopt__destroy(obj); +} + +static void test_getsockopt_get(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_getsockopt *obj; + struct bpf_link *link_get_retval = NULL; + int buf; + socklen_t optlen = sizeof(buf); + + obj = cgroup_getset_retval_getsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach getsockopt that gets previously set errno. Assert that the + * error from kernel is in both ctx_retval_value and retval_value. + */ + link_get_retval = bpf_program__attach_cgroup(obj->progs.get_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_get_retval, "cg-attach-get_retval")) + goto close_bpf_object; + + if (!ASSERT_ERR(getsockopt(sock_fd, SOL_CUSTOM, 0, + &buf, &optlen), "getsockopt")) + goto close_bpf_object; + if (!ASSERT_EQ(errno, EOPNOTSUPP, "getsockopt-errno")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 1, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->retval_value, -EOPNOTSUPP, "retval_value")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->ctx_retval_value, -EOPNOTSUPP, "ctx_retval_value")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_get_retval); + + cgroup_getset_retval_getsockopt__destroy(obj); +} + +static void test_getsockopt_override(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_getsockopt *obj; + struct bpf_link *link_set_eisconn = NULL; + int buf; + socklen_t optlen = sizeof(buf); + + obj = cgroup_getset_retval_getsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach getsockopt that sets retval to -EISCONN. Assert that this + * overrides the value from kernel. + */ + link_set_eisconn = bpf_program__attach_cgroup(obj->progs.set_eisconn, + cgroup_fd); + if (!ASSERT_OK_PTR(link_set_eisconn, "cg-attach-set_eisconn")) + goto close_bpf_object; + + if (!ASSERT_ERR(getsockopt(sock_fd, SOL_CUSTOM, 0, + &buf, &optlen), "getsockopt")) + goto close_bpf_object; + if (!ASSERT_EQ(errno, EISCONN, "getsockopt-errno")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 1, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_set_eisconn); + + cgroup_getset_retval_getsockopt__destroy(obj); +} + +static void test_getsockopt_retval_sync(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_getsockopt *obj; + struct bpf_link *link_set_eisconn = NULL, *link_clear_retval = NULL; + struct bpf_link *link_get_retval = NULL; + int buf; + socklen_t optlen = sizeof(buf); + + obj = cgroup_getset_retval_getsockopt__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) + return; + + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + /* Attach getsockopt that sets retval to -EISCONN, and one that clears + * ctx retval. Assert that the clearing ctx retval is synced to helper + * and clears any errors both from kernel and BPF.. + */ + link_set_eisconn = bpf_program__attach_cgroup(obj->progs.set_eisconn, + cgroup_fd); + if (!ASSERT_OK_PTR(link_set_eisconn, "cg-attach-set_eisconn")) + goto close_bpf_object; + link_clear_retval = bpf_program__attach_cgroup(obj->progs.clear_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_clear_retval, "cg-attach-clear_retval")) + goto close_bpf_object; + link_get_retval = bpf_program__attach_cgroup(obj->progs.get_retval, + cgroup_fd); + if (!ASSERT_OK_PTR(link_get_retval, "cg-attach-get_retval")) + goto close_bpf_object; + + if (!ASSERT_OK(getsockopt(sock_fd, SOL_CUSTOM, 0, + &buf, &optlen), "getsockopt")) + goto close_bpf_object; + + if (!ASSERT_EQ(obj->bss->invocations, 3, "invocations")) + goto close_bpf_object; + if (!ASSERT_FALSE(obj->bss->assertion_error, "assertion_error")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->retval_value, 0, "retval_value")) + goto close_bpf_object; + if (!ASSERT_EQ(obj->bss->ctx_retval_value, 0, "ctx_retval_value")) + goto close_bpf_object; + +close_bpf_object: + bpf_link__destroy(link_set_eisconn); + bpf_link__destroy(link_clear_retval); + bpf_link__destroy(link_get_retval); + + cgroup_getset_retval_getsockopt__destroy(obj); +} + +struct exposed_hook { + const char *name; + int expected_err; +} exposed_hooks[] = { + +#define BPF_RETVAL_HOOK(NAME, SECTION, CTX, EXPECTED_ERR) \ + { \ + .name = #NAME, \ + .expected_err = EXPECTED_ERR, \ + }, + +#include "cgroup_getset_retval_hooks.h" + +#undef BPF_RETVAL_HOOK +}; + +static void test_exposed_hooks(int cgroup_fd, int sock_fd) +{ + struct cgroup_getset_retval_hooks *skel; + struct bpf_program *prog; + int err; + int i; + + for (i = 0; i < ARRAY_SIZE(exposed_hooks); i++) { + skel = cgroup_getset_retval_hooks__open(); + if (!ASSERT_OK_PTR(skel, "cgroup_getset_retval_hooks__open")) + continue; + + prog = bpf_object__find_program_by_name(skel->obj, exposed_hooks[i].name); + if (!ASSERT_NEQ(prog, NULL, "bpf_object__find_program_by_name")) + goto close_skel; + + err = bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(err, "bpf_program__set_autoload")) + goto close_skel; + + err = cgroup_getset_retval_hooks__load(skel); + ASSERT_EQ(err, exposed_hooks[i].expected_err, "expected_err"); + +close_skel: + cgroup_getset_retval_hooks__destroy(skel); + } +} + +void test_cgroup_getset_retval(void) +{ + int cgroup_fd = -1; + int sock_fd = -1; + + cgroup_fd = test__join_cgroup("/cgroup_getset_retval"); + if (!ASSERT_GE(cgroup_fd, 0, "cg-create")) + goto close_fd; + + sock_fd = start_server(AF_INET, SOCK_DGRAM, NULL, 0, 0); + if (!ASSERT_GE(sock_fd, 0, "start-server")) + goto close_fd; + + if (test__start_subtest("setsockopt-set")) + test_setsockopt_set(cgroup_fd, sock_fd); + + if (test__start_subtest("setsockopt-set_and_get")) + test_setsockopt_set_and_get(cgroup_fd, sock_fd); + + if (test__start_subtest("setsockopt-default_zero")) + test_setsockopt_default_zero(cgroup_fd, sock_fd); + + if (test__start_subtest("setsockopt-default_zero_and_set")) + test_setsockopt_default_zero_and_set(cgroup_fd, sock_fd); + + if (test__start_subtest("setsockopt-override")) + test_setsockopt_override(cgroup_fd, sock_fd); + + if (test__start_subtest("setsockopt-legacy_eperm")) + test_setsockopt_legacy_eperm(cgroup_fd, sock_fd); + + if (test__start_subtest("setsockopt-legacy_no_override")) + test_setsockopt_legacy_no_override(cgroup_fd, sock_fd); + + if (test__start_subtest("getsockopt-get")) + test_getsockopt_get(cgroup_fd, sock_fd); + + if (test__start_subtest("getsockopt-override")) + test_getsockopt_override(cgroup_fd, sock_fd); + + if (test__start_subtest("getsockopt-retval_sync")) + test_getsockopt_retval_sync(cgroup_fd, sock_fd); + + if (test__start_subtest("exposed_hooks")) + test_exposed_hooks(cgroup_fd, sock_fd); + +close_fd: + close(cgroup_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_hierarchical_stats.c b/tools/testing/selftests/bpf/prog_tests/cgroup_hierarchical_stats.c new file mode 100644 index 000000000000..3bd27d2ea668 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_hierarchical_stats.c @@ -0,0 +1,339 @@ +// SPDX-License-Identifier: GPL-2.0-only +/* + * This test makes sure BPF stats collection using rstat works correctly. + * The test uses 3 BPF progs: + * (a) counter: This BPF prog is invoked every time we attach a process to a + * cgroup and locklessly increments a percpu counter. + * The program then calls cgroup_rstat_updated() to inform rstat + * of an update on the (cpu, cgroup) pair. + * + * (b) flusher: This BPF prog is invoked when an rstat flush is ongoing, it + * aggregates all percpu counters to a total counter, and also + * propagates the changes to the ancestor cgroups. + * + * (c) dumper: This BPF prog is a cgroup_iter. It is used to output the total + * counter of a cgroup through reading a file in userspace. + * + * The test sets up a cgroup hierarchy, and the above programs. It spawns a few + * processes in the leaf cgroups and makes sure all the counters are aggregated + * correctly. + * + * Copyright 2022 Google LLC. + */ +#include <asm-generic/errno.h> +#include <errno.h> +#include <sys/types.h> +#include <sys/mount.h> +#include <sys/stat.h> +#include <unistd.h> + +#include <test_progs.h> +#include <bpf/libbpf.h> +#include <bpf/bpf.h> + +#include "cgroup_helpers.h" +#include "cgroup_hierarchical_stats.skel.h" + +#define PAGE_SIZE 4096 +#define MB(x) (x << 20) + +#define PROCESSES_PER_CGROUP 3 + +#define BPFFS_ROOT "/sys/fs/bpf/" +#define BPFFS_ATTACH_COUNTERS BPFFS_ROOT "attach_counters/" + +#define CG_ROOT_NAME "root" +#define CG_ROOT_ID 1 + +#define CGROUP_PATH(p, n) {.path = p"/"n, .name = n} + +static struct { + const char *path, *name; + unsigned long long id; + int fd; +} cgroups[] = { + CGROUP_PATH("/", "test"), + CGROUP_PATH("/test", "child1"), + CGROUP_PATH("/test", "child2"), + CGROUP_PATH("/test/child1", "child1_1"), + CGROUP_PATH("/test/child1", "child1_2"), + CGROUP_PATH("/test/child2", "child2_1"), + CGROUP_PATH("/test/child2", "child2_2"), +}; + +#define N_CGROUPS ARRAY_SIZE(cgroups) +#define N_NON_LEAF_CGROUPS 3 + +static int root_cgroup_fd; +static bool mounted_bpffs; + +/* reads file at 'path' to 'buf', returns 0 on success. */ +static int read_from_file(const char *path, char *buf, size_t size) +{ + int fd, len; + + fd = open(path, O_RDONLY); + if (fd < 0) + return fd; + + len = read(fd, buf, size); + close(fd); + if (len < 0) + return len; + + buf[len] = 0; + return 0; +} + +/* mounts bpffs and mkdir for reading stats, returns 0 on success. */ +static int setup_bpffs(void) +{ + int err; + + /* Mount bpffs */ + err = mount("bpf", BPFFS_ROOT, "bpf", 0, NULL); + mounted_bpffs = !err; + if (ASSERT_FALSE(err && errno != EBUSY, "mount")) + return err; + + /* Create a directory to contain stat files in bpffs */ + err = mkdir(BPFFS_ATTACH_COUNTERS, 0755); + if (!ASSERT_OK(err, "mkdir")) + return err; + + return 0; +} + +static void cleanup_bpffs(void) +{ + /* Remove created directory in bpffs */ + ASSERT_OK(rmdir(BPFFS_ATTACH_COUNTERS), "rmdir "BPFFS_ATTACH_COUNTERS); + + /* Unmount bpffs, if it wasn't already mounted when we started */ + if (mounted_bpffs) + return; + + ASSERT_OK(umount(BPFFS_ROOT), "unmount bpffs"); +} + +/* sets up cgroups, returns 0 on success. */ +static int setup_cgroups(void) +{ + int i, fd, err; + + err = setup_cgroup_environment(); + if (!ASSERT_OK(err, "setup_cgroup_environment")) + return err; + + root_cgroup_fd = get_root_cgroup(); + if (!ASSERT_GE(root_cgroup_fd, 0, "get_root_cgroup")) + return root_cgroup_fd; + + for (i = 0; i < N_CGROUPS; i++) { + fd = create_and_get_cgroup(cgroups[i].path); + if (!ASSERT_GE(fd, 0, "create_and_get_cgroup")) + return fd; + + cgroups[i].fd = fd; + cgroups[i].id = get_cgroup_id(cgroups[i].path); + } + return 0; +} + +static void cleanup_cgroups(void) +{ + close(root_cgroup_fd); + for (int i = 0; i < N_CGROUPS; i++) + close(cgroups[i].fd); + cleanup_cgroup_environment(); +} + +/* Sets up cgroup hiearchary, returns 0 on success. */ +static int setup_hierarchy(void) +{ + return setup_bpffs() || setup_cgroups(); +} + +static void destroy_hierarchy(void) +{ + cleanup_cgroups(); + cleanup_bpffs(); +} + +static int attach_processes(void) +{ + int i, j, status; + + /* In every leaf cgroup, attach 3 processes */ + for (i = N_NON_LEAF_CGROUPS; i < N_CGROUPS; i++) { + for (j = 0; j < PROCESSES_PER_CGROUP; j++) { + pid_t pid; + + /* Create child and attach to cgroup */ + pid = fork(); + if (pid == 0) { + if (join_parent_cgroup(cgroups[i].path)) + exit(EACCES); + exit(0); + } + + /* Cleanup child */ + waitpid(pid, &status, 0); + if (!ASSERT_TRUE(WIFEXITED(status), "child process exited")) + return 1; + if (!ASSERT_EQ(WEXITSTATUS(status), 0, + "child process exit code")) + return 1; + } + } + return 0; +} + +static unsigned long long +get_attach_counter(unsigned long long cgroup_id, const char *file_name) +{ + unsigned long long attach_counter = 0, id = 0; + static char buf[128], path[128]; + + /* For every cgroup, read the file generated by cgroup_iter */ + snprintf(path, 128, "%s%s", BPFFS_ATTACH_COUNTERS, file_name); + if (!ASSERT_OK(read_from_file(path, buf, 128), "read cgroup_iter")) + return 0; + + /* Check the output file formatting */ + ASSERT_EQ(sscanf(buf, "cg_id: %llu, attach_counter: %llu\n", + &id, &attach_counter), 2, "output format"); + + /* Check that the cgroup_id is displayed correctly */ + ASSERT_EQ(id, cgroup_id, "cgroup_id"); + /* Check that the counter is non-zero */ + ASSERT_GT(attach_counter, 0, "attach counter non-zero"); + return attach_counter; +} + +static void check_attach_counters(void) +{ + unsigned long long attach_counters[N_CGROUPS], root_attach_counter; + int i; + + for (i = 0; i < N_CGROUPS; i++) + attach_counters[i] = get_attach_counter(cgroups[i].id, + cgroups[i].name); + + /* Read stats for root too */ + root_attach_counter = get_attach_counter(CG_ROOT_ID, CG_ROOT_NAME); + + /* Check that all leafs cgroups have an attach counter of 3 */ + for (i = N_NON_LEAF_CGROUPS; i < N_CGROUPS; i++) + ASSERT_EQ(attach_counters[i], PROCESSES_PER_CGROUP, + "leaf cgroup attach counter"); + + /* Check that child1 == child1_1 + child1_2 */ + ASSERT_EQ(attach_counters[1], attach_counters[3] + attach_counters[4], + "child1_counter"); + /* Check that child2 == child2_1 + child2_2 */ + ASSERT_EQ(attach_counters[2], attach_counters[5] + attach_counters[6], + "child2_counter"); + /* Check that test == child1 + child2 */ + ASSERT_EQ(attach_counters[0], attach_counters[1] + attach_counters[2], + "test_counter"); + /* Check that root >= test */ + ASSERT_GE(root_attach_counter, attach_counters[1], "root_counter"); +} + +/* Creates iter link and pins in bpffs, returns 0 on success, -errno on failure. + */ +static int setup_cgroup_iter(struct cgroup_hierarchical_stats *obj, + int cgroup_fd, const char *file_name) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo = {}; + struct bpf_link *link; + static char path[128]; + int err; + + /* + * Create an iter link, parameterized by cgroup_fd. We only want to + * traverse one cgroup, so set the traversal order to "self". + */ + linfo.cgroup.cgroup_fd = cgroup_fd; + linfo.cgroup.order = BPF_CGROUP_ITER_SELF_ONLY; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + link = bpf_program__attach_iter(obj->progs.dumper, &opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) + return -EFAULT; + + /* Pin the link to a bpffs file */ + snprintf(path, 128, "%s%s", BPFFS_ATTACH_COUNTERS, file_name); + err = bpf_link__pin(link, path); + ASSERT_OK(err, "pin cgroup_iter"); + + /* Remove the link, leaving only the ref held by the pinned file */ + bpf_link__destroy(link); + return err; +} + +/* Sets up programs for collecting stats, returns 0 on success. */ +static int setup_progs(struct cgroup_hierarchical_stats **skel) +{ + int i, err; + + *skel = cgroup_hierarchical_stats__open_and_load(); + if (!ASSERT_OK_PTR(*skel, "open_and_load")) + return 1; + + /* Attach cgroup_iter program that will dump the stats to cgroups */ + for (i = 0; i < N_CGROUPS; i++) { + err = setup_cgroup_iter(*skel, cgroups[i].fd, cgroups[i].name); + if (!ASSERT_OK(err, "setup_cgroup_iter")) + return err; + } + + /* Also dump stats for root */ + err = setup_cgroup_iter(*skel, root_cgroup_fd, CG_ROOT_NAME); + if (!ASSERT_OK(err, "setup_cgroup_iter")) + return err; + + bpf_program__set_autoattach((*skel)->progs.dumper, false); + err = cgroup_hierarchical_stats__attach(*skel); + if (!ASSERT_OK(err, "attach")) + return err; + + return 0; +} + +static void destroy_progs(struct cgroup_hierarchical_stats *skel) +{ + static char path[128]; + int i; + + for (i = 0; i < N_CGROUPS; i++) { + /* Delete files in bpffs that cgroup_iters are pinned in */ + snprintf(path, 128, "%s%s", BPFFS_ATTACH_COUNTERS, + cgroups[i].name); + ASSERT_OK(remove(path), "remove cgroup_iter pin"); + } + + /* Delete root file in bpffs */ + snprintf(path, 128, "%s%s", BPFFS_ATTACH_COUNTERS, CG_ROOT_NAME); + ASSERT_OK(remove(path), "remove cgroup_iter root pin"); + cgroup_hierarchical_stats__destroy(skel); +} + +void test_cgroup_hierarchical_stats(void) +{ + struct cgroup_hierarchical_stats *skel = NULL; + + if (setup_hierarchy()) + goto hierarchy_cleanup; + if (setup_progs(&skel)) + goto cleanup; + if (attach_processes()) + goto cleanup; + check_attach_counters(); +cleanup: + destroy_progs(skel); +hierarchy_cleanup: + destroy_hierarchy(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_iter.c b/tools/testing/selftests/bpf/prog_tests/cgroup_iter.c new file mode 100644 index 000000000000..574d9a0cdc8e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_iter.c @@ -0,0 +1,333 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Google */ + +#include <test_progs.h> +#include <bpf/libbpf.h> +#include <bpf/btf.h> +#include "iters_css_task.skel.h" +#include "cgroup_iter.skel.h" +#include "cgroup_helpers.h" + +#define ROOT 0 +#define PARENT 1 +#define CHILD1 2 +#define CHILD2 3 +#define NUM_CGROUPS 4 + +#define PROLOGUE "prologue\n" +#define EPILOGUE "epilogue\n" + +static const char *cg_path[] = { + "/", "/parent", "/parent/child1", "/parent/child2" +}; + +static int cg_fd[] = {-1, -1, -1, -1}; +static unsigned long long cg_id[] = {0, 0, 0, 0}; +static char expected_output[64]; + +static int setup_cgroups(void) +{ + int fd, i = 0; + + for (i = 0; i < NUM_CGROUPS; i++) { + fd = create_and_get_cgroup(cg_path[i]); + if (fd < 0) + return fd; + + cg_fd[i] = fd; + cg_id[i] = get_cgroup_id(cg_path[i]); + } + return 0; +} + +static void cleanup_cgroups(void) +{ + int i; + + for (i = 0; i < NUM_CGROUPS; i++) + close(cg_fd[i]); +} + +static void read_from_cgroup_iter(struct bpf_program *prog, int cgroup_fd, + int order, const char *testname) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + struct bpf_link *link; + int len, iter_fd; + static char buf[128]; + size_t left; + char *p; + + memset(&linfo, 0, sizeof(linfo)); + linfo.cgroup.cgroup_fd = cgroup_fd; + linfo.cgroup.order = order; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + link = bpf_program__attach_iter(prog, &opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) + return; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (iter_fd < 0) + goto free_link; + + memset(buf, 0, sizeof(buf)); + left = ARRAY_SIZE(buf); + p = buf; + while ((len = read(iter_fd, p, left)) > 0) { + p += len; + left -= len; + } + + ASSERT_STREQ(buf, expected_output, testname); + + /* read() after iter finishes should be ok. */ + if (len == 0) + ASSERT_OK(read(iter_fd, buf, sizeof(buf)), "second_read"); + + close(iter_fd); +free_link: + bpf_link__destroy(link); +} + +/* Invalid cgroup. */ +static void test_invalid_cgroup(struct cgroup_iter *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + struct bpf_link *link; + + memset(&linfo, 0, sizeof(linfo)); + linfo.cgroup.cgroup_fd = (__u32)-1; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + link = bpf_program__attach_iter(skel->progs.cgroup_id_printer, &opts); + ASSERT_ERR_PTR(link, "attach_iter"); + bpf_link__destroy(link); +} + +/* Specifying both cgroup_fd and cgroup_id is invalid. */ +static void test_invalid_cgroup_spec(struct cgroup_iter *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + struct bpf_link *link; + + memset(&linfo, 0, sizeof(linfo)); + linfo.cgroup.cgroup_fd = (__u32)cg_fd[PARENT]; + linfo.cgroup.cgroup_id = (__u64)cg_id[PARENT]; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + link = bpf_program__attach_iter(skel->progs.cgroup_id_printer, &opts); + ASSERT_ERR_PTR(link, "attach_iter"); + bpf_link__destroy(link); +} + +/* Preorder walk prints parent and child in order. */ +static void test_walk_preorder(struct cgroup_iter *skel) +{ + snprintf(expected_output, sizeof(expected_output), + PROLOGUE "%8llu\n%8llu\n%8llu\n" EPILOGUE, + cg_id[PARENT], cg_id[CHILD1], cg_id[CHILD2]); + + read_from_cgroup_iter(skel->progs.cgroup_id_printer, cg_fd[PARENT], + BPF_CGROUP_ITER_DESCENDANTS_PRE, "preorder"); +} + +/* Postorder walk prints child and parent in order. */ +static void test_walk_postorder(struct cgroup_iter *skel) +{ + snprintf(expected_output, sizeof(expected_output), + PROLOGUE "%8llu\n%8llu\n%8llu\n" EPILOGUE, + cg_id[CHILD1], cg_id[CHILD2], cg_id[PARENT]); + + read_from_cgroup_iter(skel->progs.cgroup_id_printer, cg_fd[PARENT], + BPF_CGROUP_ITER_DESCENDANTS_POST, "postorder"); +} + +/* Walking parents prints parent and then root. */ +static void test_walk_ancestors_up(struct cgroup_iter *skel) +{ + /* terminate the walk when ROOT is met. */ + skel->bss->terminal_cgroup = cg_id[ROOT]; + + snprintf(expected_output, sizeof(expected_output), + PROLOGUE "%8llu\n%8llu\n" EPILOGUE, + cg_id[PARENT], cg_id[ROOT]); + + read_from_cgroup_iter(skel->progs.cgroup_id_printer, cg_fd[PARENT], + BPF_CGROUP_ITER_ANCESTORS_UP, "ancestors_up"); + + skel->bss->terminal_cgroup = 0; +} + +/* Early termination prints parent only. */ +static void test_early_termination(struct cgroup_iter *skel) +{ + /* terminate the walk after the first element is processed. */ + skel->bss->terminate_early = 1; + + snprintf(expected_output, sizeof(expected_output), + PROLOGUE "%8llu\n" EPILOGUE, cg_id[PARENT]); + + read_from_cgroup_iter(skel->progs.cgroup_id_printer, cg_fd[PARENT], + BPF_CGROUP_ITER_DESCENDANTS_PRE, "early_termination"); + + skel->bss->terminate_early = 0; +} + +/* Waling self prints self only. */ +static void test_walk_self_only(struct cgroup_iter *skel) +{ + snprintf(expected_output, sizeof(expected_output), + PROLOGUE "%8llu\n" EPILOGUE, cg_id[PARENT]); + + read_from_cgroup_iter(skel->progs.cgroup_id_printer, cg_fd[PARENT], + BPF_CGROUP_ITER_SELF_ONLY, "self_only"); +} + +static void test_walk_dead_self_only(struct cgroup_iter *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + char expected_output[128], buf[128]; + const char *cgrp_name = "/dead"; + union bpf_iter_link_info linfo; + int len, cgrp_fd, iter_fd; + struct bpf_link *link; + size_t left; + char *p; + + cgrp_fd = create_and_get_cgroup(cgrp_name); + if (!ASSERT_GE(cgrp_fd, 0, "create cgrp")) + return; + + /* The cgroup will be dead during read() iteration, so it only has + * epilogue in the output + */ + snprintf(expected_output, sizeof(expected_output), EPILOGUE); + + memset(&linfo, 0, sizeof(linfo)); + linfo.cgroup.cgroup_fd = cgrp_fd; + linfo.cgroup.order = BPF_CGROUP_ITER_SELF_ONLY; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + + link = bpf_program__attach_iter(skel->progs.cgroup_id_printer, &opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) + goto close_cgrp; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (!ASSERT_GE(iter_fd, 0, "iter_create")) + goto free_link; + + /* Close link fd and cgroup fd */ + bpf_link__destroy(link); + close(cgrp_fd); + + /* Remove cgroup to mark it as dead */ + remove_cgroup(cgrp_name); + + /* Two kern_sync_rcu() and usleep() pairs are used to wait for the + * releases of cgroup css, and the last kern_sync_rcu() and usleep() + * pair is used to wait for the free of cgroup itself. + */ + kern_sync_rcu(); + usleep(8000); + kern_sync_rcu(); + usleep(8000); + kern_sync_rcu(); + usleep(1000); + + memset(buf, 0, sizeof(buf)); + left = ARRAY_SIZE(buf); + p = buf; + while ((len = read(iter_fd, p, left)) > 0) { + p += len; + left -= len; + } + + ASSERT_STREQ(buf, expected_output, "dead cgroup output"); + + /* read() after iter finishes should be ok. */ + if (len == 0) + ASSERT_OK(read(iter_fd, buf, sizeof(buf)), "second_read"); + + close(iter_fd); + return; +free_link: + bpf_link__destroy(link); +close_cgrp: + close(cgrp_fd); +} + +static void test_walk_self_only_css_task(void) +{ + struct iters_css_task *skel; + int err; + + skel = iters_css_task__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bpf_program__set_autoload(skel->progs.cgroup_id_printer, true); + + err = iters_css_task__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + err = join_cgroup(cg_path[CHILD2]); + if (!ASSERT_OK(err, "join_cgroup")) + goto cleanup; + + skel->bss->target_pid = getpid(); + snprintf(expected_output, sizeof(expected_output), + PROLOGUE "%8llu\n" EPILOGUE, cg_id[CHILD2]); + read_from_cgroup_iter(skel->progs.cgroup_id_printer, cg_fd[CHILD2], + BPF_CGROUP_ITER_SELF_ONLY, "test_walk_self_only_css_task"); + ASSERT_EQ(skel->bss->css_task_cnt, 1, "css_task_cnt"); +cleanup: + iters_css_task__destroy(skel); +} + +void test_cgroup_iter(void) +{ + struct cgroup_iter *skel = NULL; + + if (setup_cgroup_environment()) + return; + + if (setup_cgroups()) + goto out; + + skel = cgroup_iter__open_and_load(); + if (!ASSERT_OK_PTR(skel, "cgroup_iter__open_and_load")) + goto out; + + if (test__start_subtest("cgroup_iter__invalid_cgroup")) + test_invalid_cgroup(skel); + if (test__start_subtest("cgroup_iter__invalid_cgroup_spec")) + test_invalid_cgroup_spec(skel); + if (test__start_subtest("cgroup_iter__preorder")) + test_walk_preorder(skel); + if (test__start_subtest("cgroup_iter__postorder")) + test_walk_postorder(skel); + if (test__start_subtest("cgroup_iter__ancestors_up_walk")) + test_walk_ancestors_up(skel); + if (test__start_subtest("cgroup_iter__early_termination")) + test_early_termination(skel); + if (test__start_subtest("cgroup_iter__self_only")) + test_walk_self_only(skel); + if (test__start_subtest("cgroup_iter__dead_self_only")) + test_walk_dead_self_only(skel); + if (test__start_subtest("cgroup_iter__self_only_css_task")) + test_walk_self_only_css_task(); + +out: + cgroup_iter__destroy(skel); + cleanup_cgroups(); + cleanup_cgroup_environment(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_link.c b/tools/testing/selftests/bpf/prog_tests/cgroup_link.c index 4d9b514b3fd9..15093a69510e 100644 --- a/tools/testing/selftests/bpf/prog_tests/cgroup_link.c +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_link.c @@ -24,7 +24,7 @@ int ping_and_check(int exp_calls, int exp_alt_calls) return 0; } -void test_cgroup_link(void) +void serial_test_cgroup_link(void) { struct { const char *path; @@ -54,7 +54,7 @@ void test_cgroup_link(void) for (i = 0; i < cg_nr; i++) { cgs[i].fd = create_and_get_cgroup(cgs[i].path); - if (CHECK(cgs[i].fd < 0, "cg_create", "fail: %d\n", cgs[i].fd)) + if (!ASSERT_GE(cgs[i].fd, 0, "cg_create")) goto cleanup; } @@ -65,17 +65,15 @@ void test_cgroup_link(void) for (i = 0; i < cg_nr; i++) { links[i] = bpf_program__attach_cgroup(skel->progs.egress, cgs[i].fd); - if (CHECK(IS_ERR(links[i]), "cg_attach", "i: %d, err: %ld\n", - i, PTR_ERR(links[i]))) + if (!ASSERT_OK_PTR(links[i], "cg_attach")) goto cleanup; } ping_and_check(cg_nr, 0); - /* query the number of effective progs and attach flags in root cg */ + /* query the number of attached progs and attach flags in root cg */ err = bpf_prog_query(cgs[0].fd, BPF_CGROUP_INET_EGRESS, - BPF_F_QUERY_EFFECTIVE, &attach_flags, NULL, - &prog_cnt); + 0, &attach_flags, NULL, &prog_cnt); CHECK_FAIL(err); CHECK_FAIL(attach_flags != BPF_F_ALLOW_MULTI); if (CHECK(prog_cnt != 1, "effect_cnt", "exp %d, got %d\n", 1, prog_cnt)) @@ -86,17 +84,15 @@ void test_cgroup_link(void) BPF_F_QUERY_EFFECTIVE, NULL, NULL, &prog_cnt); CHECK_FAIL(err); - CHECK_FAIL(attach_flags != BPF_F_ALLOW_MULTI); if (CHECK(prog_cnt != cg_nr, "effect_cnt", "exp %d, got %d\n", cg_nr, prog_cnt)) goto cleanup; /* query the effective prog IDs in last cg */ err = bpf_prog_query(cgs[last_cg].fd, BPF_CGROUP_INET_EGRESS, - BPF_F_QUERY_EFFECTIVE, &attach_flags, - prog_ids, &prog_cnt); + BPF_F_QUERY_EFFECTIVE, NULL, prog_ids, + &prog_cnt); CHECK_FAIL(err); - CHECK_FAIL(attach_flags != BPF_F_ALLOW_MULTI); if (CHECK(prog_cnt != cg_nr, "effect_cnt", "exp %d, got %d\n", cg_nr, prog_cnt)) goto cleanup; @@ -121,8 +117,7 @@ void test_cgroup_link(void) links[last_cg] = bpf_program__attach_cgroup(skel->progs.egress, cgs[last_cg].fd); - if (CHECK(IS_ERR(links[last_cg]), "cg_attach", "err: %ld\n", - PTR_ERR(links[last_cg]))) + if (!ASSERT_OK_PTR(links[last_cg], "cg_attach")) goto cleanup; ping_and_check(cg_nr + 1, 0); @@ -147,7 +142,7 @@ void test_cgroup_link(void) /* attempt to mix in with multi-attach bpf_link */ tmp_link = bpf_program__attach_cgroup(skel->progs.egress, cgs[last_cg].fd); - if (CHECK(!IS_ERR(tmp_link), "cg_attach_fail", "unexpected success!\n")) { + if (!ASSERT_ERR_PTR(tmp_link, "cg_attach_fail")) { bpf_link__destroy(tmp_link); goto cleanup; } @@ -165,8 +160,7 @@ void test_cgroup_link(void) /* attach back link-based one */ links[last_cg] = bpf_program__attach_cgroup(skel->progs.egress, cgs[last_cg].fd); - if (CHECK(IS_ERR(links[last_cg]), "cg_attach", "err: %ld\n", - PTR_ERR(links[last_cg]))) + if (!ASSERT_OK_PTR(links[last_cg], "cg_attach")) goto cleanup; ping_and_check(cg_nr, 0); @@ -249,8 +243,7 @@ cleanup: BPF_CGROUP_INET_EGRESS); for (i = 0; i < cg_nr; i++) { - if (!IS_ERR(links[i])) - bpf_link__destroy(links[i]); + bpf_link__destroy(links[i]); } test_cgroup_link__destroy(skel); diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_skb_sk_lookup.c b/tools/testing/selftests/bpf/prog_tests/cgroup_skb_sk_lookup.c index 464edc1c1708..b9dc4ec655b5 100644 --- a/tools/testing/selftests/bpf/prog_tests/cgroup_skb_sk_lookup.c +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_skb_sk_lookup.c @@ -60,7 +60,7 @@ static void run_cgroup_bpf_test(const char *cg_path, int out_sk) goto cleanup; link = bpf_program__attach_cgroup(skel->progs.ingress_lookup, cgfd); - if (CHECK(IS_ERR(link), "cgroup_attach", "err: %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "cgroup_attach")) goto cleanup; run_lookup_test(&skel->bss->g_serv_port, out_sk); diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_tcp_skb.c b/tools/testing/selftests/bpf/prog_tests/cgroup_tcp_skb.c new file mode 100644 index 000000000000..a1542faf7873 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_tcp_skb.c @@ -0,0 +1,344 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Facebook */ +#include <test_progs.h> +#include <linux/in6.h> +#include <sys/socket.h> +#include <sched.h> +#include <unistd.h> +#include "cgroup_helpers.h" +#include "testing_helpers.h" +#include "cgroup_tcp_skb.skel.h" +#include "cgroup_tcp_skb.h" +#include "network_helpers.h" + +#define CGROUP_TCP_SKB_PATH "/test_cgroup_tcp_skb" + +static int install_filters(int cgroup_fd, + struct bpf_link **egress_link, + struct bpf_link **ingress_link, + struct bpf_program *egress_prog, + struct bpf_program *ingress_prog, + struct cgroup_tcp_skb *skel) +{ + /* Prepare filters */ + skel->bss->g_sock_state = 0; + skel->bss->g_unexpected = 0; + *egress_link = + bpf_program__attach_cgroup(egress_prog, + cgroup_fd); + if (!ASSERT_OK_PTR(egress_link, "egress_link")) + return -1; + *ingress_link = + bpf_program__attach_cgroup(ingress_prog, + cgroup_fd); + if (!ASSERT_OK_PTR(ingress_link, "ingress_link")) + return -1; + + return 0; +} + +static void uninstall_filters(struct bpf_link **egress_link, + struct bpf_link **ingress_link) +{ + bpf_link__destroy(*egress_link); + *egress_link = NULL; + bpf_link__destroy(*ingress_link); + *ingress_link = NULL; +} + +static int create_client_sock_v6(void) +{ + int fd; + + fd = socket(AF_INET6, SOCK_STREAM, 0); + if (fd < 0) { + perror("socket"); + return -1; + } + + return fd; +} + +/* Connect to the server in a cgroup from the outside of the cgroup. */ +static int talk_to_cgroup(int *client_fd, int *listen_fd, int *service_fd, + struct cgroup_tcp_skb *skel) +{ + int err, cp; + char buf[5]; + int port; + + /* Create client & server socket */ + err = join_root_cgroup(); + if (!ASSERT_OK(err, "join_root_cgroup")) + return -1; + *client_fd = create_client_sock_v6(); + if (!ASSERT_GE(*client_fd, 0, "client_fd")) + return -1; + err = join_cgroup(CGROUP_TCP_SKB_PATH); + if (!ASSERT_OK(err, "join_cgroup")) + return -1; + *listen_fd = start_server(AF_INET6, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_GE(*listen_fd, 0, "listen_fd")) + return -1; + port = get_socket_local_port(*listen_fd); + if (!ASSERT_GE(port, 0, "get_socket_local_port")) + return -1; + skel->bss->g_sock_port = ntohs(port); + + /* Connect client to server */ + err = connect_fd_to_fd(*client_fd, *listen_fd, 0); + if (!ASSERT_OK(err, "connect_fd_to_fd")) + return -1; + *service_fd = accept(*listen_fd, NULL, NULL); + if (!ASSERT_GE(*service_fd, 0, "service_fd")) + return -1; + err = join_root_cgroup(); + if (!ASSERT_OK(err, "join_root_cgroup")) + return -1; + cp = write(*client_fd, "hello", 5); + if (!ASSERT_EQ(cp, 5, "write")) + return -1; + cp = read(*service_fd, buf, 5); + if (!ASSERT_EQ(cp, 5, "read")) + return -1; + + return 0; +} + +/* Connect to the server out of a cgroup from inside the cgroup. */ +static int talk_to_outside(int *client_fd, int *listen_fd, int *service_fd, + struct cgroup_tcp_skb *skel) + +{ + int err, cp; + char buf[5]; + int port; + + /* Create client & server socket */ + err = join_root_cgroup(); + if (!ASSERT_OK(err, "join_root_cgroup")) + return -1; + *listen_fd = start_server(AF_INET6, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_GE(*listen_fd, 0, "listen_fd")) + return -1; + err = join_cgroup(CGROUP_TCP_SKB_PATH); + if (!ASSERT_OK(err, "join_cgroup")) + return -1; + *client_fd = create_client_sock_v6(); + if (!ASSERT_GE(*client_fd, 0, "client_fd")) + return -1; + err = join_root_cgroup(); + if (!ASSERT_OK(err, "join_root_cgroup")) + return -1; + port = get_socket_local_port(*listen_fd); + if (!ASSERT_GE(port, 0, "get_socket_local_port")) + return -1; + skel->bss->g_sock_port = ntohs(port); + + /* Connect client to server */ + err = connect_fd_to_fd(*client_fd, *listen_fd, 0); + if (!ASSERT_OK(err, "connect_fd_to_fd")) + return -1; + *service_fd = accept(*listen_fd, NULL, NULL); + if (!ASSERT_GE(*service_fd, 0, "service_fd")) + return -1; + cp = write(*client_fd, "hello", 5); + if (!ASSERT_EQ(cp, 5, "write")) + return -1; + cp = read(*service_fd, buf, 5); + if (!ASSERT_EQ(cp, 5, "read")) + return -1; + + return 0; +} + +static int close_connection(int *closing_fd, int *peer_fd, int *listen_fd, + struct cgroup_tcp_skb *skel) +{ + __u32 saved_packet_count = 0; + int err; + int i; + + /* Wait for ACKs to be sent */ + saved_packet_count = skel->bss->g_packet_count; + usleep(100000); /* 0.1s */ + for (i = 0; + skel->bss->g_packet_count != saved_packet_count && i < 10; + i++) { + saved_packet_count = skel->bss->g_packet_count; + usleep(100000); /* 0.1s */ + } + if (!ASSERT_EQ(skel->bss->g_packet_count, saved_packet_count, + "packet_count")) + return -1; + + skel->bss->g_packet_count = 0; + saved_packet_count = 0; + + /* Half shutdown to make sure the closing socket having a chance to + * receive a FIN from the peer. + */ + err = shutdown(*closing_fd, SHUT_WR); + if (!ASSERT_OK(err, "shutdown closing_fd")) + return -1; + + /* Wait for FIN and the ACK of the FIN to be observed */ + for (i = 0; + skel->bss->g_packet_count < saved_packet_count + 2 && i < 10; + i++) + usleep(100000); /* 0.1s */ + if (!ASSERT_GE(skel->bss->g_packet_count, saved_packet_count + 2, + "packet_count")) + return -1; + + saved_packet_count = skel->bss->g_packet_count; + + /* Fully shutdown the connection */ + err = close(*peer_fd); + if (!ASSERT_OK(err, "close peer_fd")) + return -1; + *peer_fd = -1; + + /* Wait for FIN and the ACK of the FIN to be observed */ + for (i = 0; + skel->bss->g_packet_count < saved_packet_count + 2 && i < 10; + i++) + usleep(100000); /* 0.1s */ + if (!ASSERT_GE(skel->bss->g_packet_count, saved_packet_count + 2, + "packet_count")) + return -1; + + err = close(*closing_fd); + if (!ASSERT_OK(err, "close closing_fd")) + return -1; + *closing_fd = -1; + + close(*listen_fd); + *listen_fd = -1; + + return 0; +} + +/* This test case includes four scenarios: + * 1. Connect to the server from outside the cgroup and close the connection + * from outside the cgroup. + * 2. Connect to the server from outside the cgroup and close the connection + * from inside the cgroup. + * 3. Connect to the server from inside the cgroup and close the connection + * from outside the cgroup. + * 4. Connect to the server from inside the cgroup and close the connection + * from inside the cgroup. + * + * The test case is to verify that cgroup_skb/{egress,ingress} filters + * receive expected packets including SYN, SYN/ACK, ACK, FIN, and FIN/ACK. + */ +void test_cgroup_tcp_skb(void) +{ + struct bpf_link *ingress_link = NULL; + struct bpf_link *egress_link = NULL; + int client_fd = -1, listen_fd = -1; + struct cgroup_tcp_skb *skel; + int service_fd = -1; + int cgroup_fd = -1; + int err; + + skel = cgroup_tcp_skb__open_and_load(); + if (!ASSERT_OK(!skel, "skel_open_load")) + return; + + err = setup_cgroup_environment(); + if (!ASSERT_OK(err, "setup_cgroup_environment")) + goto cleanup; + + cgroup_fd = create_and_get_cgroup(CGROUP_TCP_SKB_PATH); + if (!ASSERT_GE(cgroup_fd, 0, "cgroup_fd")) + goto cleanup; + + /* Scenario 1 */ + err = install_filters(cgroup_fd, &egress_link, &ingress_link, + skel->progs.server_egress, + skel->progs.server_ingress, + skel); + if (!ASSERT_OK(err, "install_filters")) + goto cleanup; + + err = talk_to_cgroup(&client_fd, &listen_fd, &service_fd, skel); + if (!ASSERT_OK(err, "talk_to_cgroup")) + goto cleanup; + + err = close_connection(&client_fd, &service_fd, &listen_fd, skel); + if (!ASSERT_OK(err, "close_connection")) + goto cleanup; + + ASSERT_EQ(skel->bss->g_unexpected, 0, "g_unexpected"); + ASSERT_EQ(skel->bss->g_sock_state, CLOSED, "g_sock_state"); + + uninstall_filters(&egress_link, &ingress_link); + + /* Scenario 2 */ + err = install_filters(cgroup_fd, &egress_link, &ingress_link, + skel->progs.server_egress_srv, + skel->progs.server_ingress_srv, + skel); + + err = talk_to_cgroup(&client_fd, &listen_fd, &service_fd, skel); + if (!ASSERT_OK(err, "talk_to_cgroup")) + goto cleanup; + + err = close_connection(&service_fd, &client_fd, &listen_fd, skel); + if (!ASSERT_OK(err, "close_connection")) + goto cleanup; + + ASSERT_EQ(skel->bss->g_unexpected, 0, "g_unexpected"); + ASSERT_EQ(skel->bss->g_sock_state, TIME_WAIT, "g_sock_state"); + + uninstall_filters(&egress_link, &ingress_link); + + /* Scenario 3 */ + err = install_filters(cgroup_fd, &egress_link, &ingress_link, + skel->progs.client_egress_srv, + skel->progs.client_ingress_srv, + skel); + + err = talk_to_outside(&client_fd, &listen_fd, &service_fd, skel); + if (!ASSERT_OK(err, "talk_to_outside")) + goto cleanup; + + err = close_connection(&service_fd, &client_fd, &listen_fd, skel); + if (!ASSERT_OK(err, "close_connection")) + goto cleanup; + + ASSERT_EQ(skel->bss->g_unexpected, 0, "g_unexpected"); + ASSERT_EQ(skel->bss->g_sock_state, CLOSED, "g_sock_state"); + + uninstall_filters(&egress_link, &ingress_link); + + /* Scenario 4 */ + err = install_filters(cgroup_fd, &egress_link, &ingress_link, + skel->progs.client_egress, + skel->progs.client_ingress, + skel); + + err = talk_to_outside(&client_fd, &listen_fd, &service_fd, skel); + if (!ASSERT_OK(err, "talk_to_outside")) + goto cleanup; + + err = close_connection(&client_fd, &service_fd, &listen_fd, skel); + if (!ASSERT_OK(err, "close_connection")) + goto cleanup; + + ASSERT_EQ(skel->bss->g_unexpected, 0, "g_unexpected"); + ASSERT_EQ(skel->bss->g_sock_state, TIME_WAIT, "g_sock_state"); + + uninstall_filters(&egress_link, &ingress_link); + +cleanup: + close(client_fd); + close(listen_fd); + close(service_fd); + close(cgroup_fd); + bpf_link__destroy(egress_link); + bpf_link__destroy(ingress_link); + cleanup_cgroup_environment(); + cgroup_tcp_skb__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cgroup_v1v2.c b/tools/testing/selftests/bpf/prog_tests/cgroup_v1v2.c new file mode 100644 index 000000000000..addf720428f7 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cgroup_v1v2.c @@ -0,0 +1,79 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> + +#include "connect4_dropper.skel.h" + +#include "cgroup_helpers.h" +#include "network_helpers.h" + +static int run_test(int cgroup_fd, int server_fd, bool classid) +{ + struct network_helper_opts opts = { + .must_fail = true, + }; + struct connect4_dropper *skel; + int fd, err = 0; + + skel = connect4_dropper__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return -1; + + skel->links.connect_v4_dropper = + bpf_program__attach_cgroup(skel->progs.connect_v4_dropper, + cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.connect_v4_dropper, "prog_attach")) { + err = -1; + goto out; + } + + if (classid && !ASSERT_OK(join_classid(), "join_classid")) { + err = -1; + goto out; + } + + fd = connect_to_fd_opts(server_fd, &opts); + if (fd < 0) + err = -1; + else + close(fd); +out: + connect4_dropper__destroy(skel); + return err; +} + +void test_cgroup_v1v2(void) +{ + struct network_helper_opts opts = {}; + int server_fd, client_fd, cgroup_fd; + static const int port = 60120; + + /* Step 1: Check base connectivity works without any BPF. */ + server_fd = start_server(AF_INET, SOCK_STREAM, NULL, port, 0); + if (!ASSERT_GE(server_fd, 0, "server_fd")) + return; + client_fd = connect_to_fd_opts(server_fd, &opts); + if (!ASSERT_GE(client_fd, 0, "client_fd")) { + close(server_fd); + return; + } + close(client_fd); + close(server_fd); + + /* Step 2: Check BPF policy prog attached to cgroups drops connectivity. */ + cgroup_fd = test__join_cgroup("/connect_dropper"); + if (!ASSERT_GE(cgroup_fd, 0, "cgroup_fd")) + return; + server_fd = start_server(AF_INET, SOCK_STREAM, NULL, port, 0); + if (!ASSERT_GE(server_fd, 0, "server_fd")) { + close(cgroup_fd); + return; + } + ASSERT_OK(run_test(cgroup_fd, server_fd, false), "cgroup-v2-only"); + setup_classid_environment(); + set_classid(); + ASSERT_OK(run_test(cgroup_fd, server_fd, true), "cgroup-v1v2"); + cleanup_classid_environment(); + close(server_fd); + close(cgroup_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cgrp_kfunc.c b/tools/testing/selftests/bpf/prog_tests/cgrp_kfunc.c new file mode 100644 index 000000000000..adda85f97058 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cgrp_kfunc.c @@ -0,0 +1,109 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ + +#define _GNU_SOURCE +#include <cgroup_helpers.h> +#include <test_progs.h> + +#include "cgrp_kfunc_failure.skel.h" +#include "cgrp_kfunc_success.skel.h" + +static struct cgrp_kfunc_success *open_load_cgrp_kfunc_skel(void) +{ + struct cgrp_kfunc_success *skel; + int err; + + skel = cgrp_kfunc_success__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return NULL; + + skel->bss->pid = getpid(); + + err = cgrp_kfunc_success__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + return skel; + +cleanup: + cgrp_kfunc_success__destroy(skel); + return NULL; +} + +static int mkdir_rm_test_dir(void) +{ + int fd; + const char *cgrp_path = "cgrp_kfunc"; + + fd = create_and_get_cgroup(cgrp_path); + if (!ASSERT_GT(fd, 0, "mkdir_cgrp_fd")) + return -1; + + close(fd); + remove_cgroup(cgrp_path); + + return 0; +} + +static void run_success_test(const char *prog_name) +{ + struct cgrp_kfunc_success *skel; + struct bpf_program *prog; + struct bpf_link *link = NULL; + + skel = open_load_cgrp_kfunc_skel(); + if (!ASSERT_OK_PTR(skel, "open_load_skel")) + return; + + if (!ASSERT_OK(skel->bss->err, "pre_mkdir_err")) + goto cleanup; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto cleanup; + + link = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(link, "attached_link")) + goto cleanup; + + ASSERT_EQ(skel->bss->invocations, 0, "pre_rmdir_count"); + if (!ASSERT_OK(mkdir_rm_test_dir(), "cgrp_mkdir")) + goto cleanup; + + ASSERT_EQ(skel->bss->invocations, 1, "post_rmdir_count"); + ASSERT_OK(skel->bss->err, "post_rmdir_err"); + +cleanup: + bpf_link__destroy(link); + cgrp_kfunc_success__destroy(skel); +} + +static const char * const success_tests[] = { + "test_cgrp_acquire_release_argument", + "test_cgrp_acquire_leave_in_map", + "test_cgrp_xchg_release", + "test_cgrp_get_release", + "test_cgrp_get_ancestors", + "test_cgrp_from_id", +}; + +void test_cgrp_kfunc(void) +{ + int i, err; + + err = setup_cgroup_environment(); + if (!ASSERT_OK(err, "cgrp_env_setup")) + goto cleanup; + + for (i = 0; i < ARRAY_SIZE(success_tests); i++) { + if (!test__start_subtest(success_tests[i])) + continue; + + run_success_test(success_tests[i]); + } + + RUN_TESTS(cgrp_kfunc_failure); + +cleanup: + cleanup_cgroup_environment(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cgrp_local_storage.c b/tools/testing/selftests/bpf/prog_tests/cgrp_local_storage.c new file mode 100644 index 000000000000..747761572098 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cgrp_local_storage.c @@ -0,0 +1,361 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates.*/ + +#define _GNU_SOURCE +#include <unistd.h> +#include <sys/syscall.h> +#include <sys/types.h> +#include <test_progs.h> +#include "cgrp_ls_tp_btf.skel.h" +#include "cgrp_ls_recursion.skel.h" +#include "cgrp_ls_attach_cgroup.skel.h" +#include "cgrp_ls_negative.skel.h" +#include "cgrp_ls_sleepable.skel.h" +#include "network_helpers.h" +#include "cgroup_helpers.h" + +struct socket_cookie { + __u64 cookie_key; + __u64 cookie_value; +}; + +static bool is_cgroup1; +static int target_hid; + +#define CGROUP_MODE_SET(skel) \ +{ \ + skel->bss->is_cgroup1 = is_cgroup1; \ + skel->bss->target_hid = target_hid; \ +} + +static void cgroup_mode_value_init(bool cgroup, int hid) +{ + is_cgroup1 = cgroup; + target_hid = hid; +} + +static void test_tp_btf(int cgroup_fd) +{ + struct cgrp_ls_tp_btf *skel; + long val1 = 1, val2 = 0; + int err; + + skel = cgrp_ls_tp_btf__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + CGROUP_MODE_SET(skel); + + /* populate a value in map_b */ + err = bpf_map_update_elem(bpf_map__fd(skel->maps.map_b), &cgroup_fd, &val1, BPF_ANY); + if (!ASSERT_OK(err, "map_update_elem")) + goto out; + + /* check value */ + err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.map_b), &cgroup_fd, &val2); + if (!ASSERT_OK(err, "map_lookup_elem")) + goto out; + if (!ASSERT_EQ(val2, 1, "map_lookup_elem, invalid val")) + goto out; + + /* delete value */ + err = bpf_map_delete_elem(bpf_map__fd(skel->maps.map_b), &cgroup_fd); + if (!ASSERT_OK(err, "map_delete_elem")) + goto out; + + skel->bss->target_pid = syscall(SYS_gettid); + + err = cgrp_ls_tp_btf__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + syscall(SYS_gettid); + syscall(SYS_gettid); + + skel->bss->target_pid = 0; + + /* 3x syscalls: 1x attach and 2x gettid */ + ASSERT_EQ(skel->bss->enter_cnt, 3, "enter_cnt"); + ASSERT_EQ(skel->bss->exit_cnt, 3, "exit_cnt"); + ASSERT_EQ(skel->bss->mismatch_cnt, 0, "mismatch_cnt"); +out: + cgrp_ls_tp_btf__destroy(skel); +} + +static void test_attach_cgroup(int cgroup_fd) +{ + int server_fd = 0, client_fd = 0, err = 0; + socklen_t addr_len = sizeof(struct sockaddr_in6); + struct cgrp_ls_attach_cgroup *skel; + __u32 cookie_expected_value; + struct sockaddr_in6 addr; + struct socket_cookie val; + + skel = cgrp_ls_attach_cgroup__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->links.set_cookie = bpf_program__attach_cgroup( + skel->progs.set_cookie, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.set_cookie, "prog_attach")) + goto out; + + skel->links.update_cookie_sockops = bpf_program__attach_cgroup( + skel->progs.update_cookie_sockops, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.update_cookie_sockops, "prog_attach")) + goto out; + + skel->links.update_cookie_tracing = bpf_program__attach( + skel->progs.update_cookie_tracing); + if (!ASSERT_OK_PTR(skel->links.update_cookie_tracing, "prog_attach")) + goto out; + + server_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + if (!ASSERT_GE(server_fd, 0, "start_server")) + goto out; + + client_fd = connect_to_fd(server_fd, 0); + if (!ASSERT_GE(client_fd, 0, "connect_to_fd")) + goto close_server_fd; + + err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.socket_cookies), + &cgroup_fd, &val); + if (!ASSERT_OK(err, "map_lookup(socket_cookies)")) + goto close_client_fd; + + err = getsockname(client_fd, (struct sockaddr *)&addr, &addr_len); + if (!ASSERT_OK(err, "getsockname")) + goto close_client_fd; + + cookie_expected_value = (ntohs(addr.sin6_port) << 8) | 0xFF; + ASSERT_EQ(val.cookie_value, cookie_expected_value, "cookie_value"); + +close_client_fd: + close(client_fd); +close_server_fd: + close(server_fd); +out: + cgrp_ls_attach_cgroup__destroy(skel); +} + +static void test_recursion(int cgroup_fd) +{ + struct cgrp_ls_recursion *skel; + int err; + + skel = cgrp_ls_recursion__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + CGROUP_MODE_SET(skel); + + err = cgrp_ls_recursion__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + /* trigger sys_enter, make sure it does not cause deadlock */ + syscall(SYS_gettid); + +out: + cgrp_ls_recursion__destroy(skel); +} + +static void test_negative(void) +{ + struct cgrp_ls_negative *skel; + + skel = cgrp_ls_negative__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "skel_open_and_load")) { + cgrp_ls_negative__destroy(skel); + return; + } +} + +static void test_cgroup_iter_sleepable(int cgroup_fd, __u64 cgroup_id) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + union bpf_iter_link_info linfo; + struct cgrp_ls_sleepable *skel; + struct bpf_link *link; + int err, iter_fd; + char buf[16]; + + skel = cgrp_ls_sleepable__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + CGROUP_MODE_SET(skel); + + bpf_program__set_autoload(skel->progs.cgroup_iter, true); + err = cgrp_ls_sleepable__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto out; + + memset(&linfo, 0, sizeof(linfo)); + linfo.cgroup.cgroup_fd = cgroup_fd; + linfo.cgroup.order = BPF_CGROUP_ITER_SELF_ONLY; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + link = bpf_program__attach_iter(skel->progs.cgroup_iter, &opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) + goto out; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (!ASSERT_GE(iter_fd, 0, "iter_create")) + goto out; + + /* trigger the program run */ + (void)read(iter_fd, buf, sizeof(buf)); + + ASSERT_EQ(skel->bss->cgroup_id, cgroup_id, "cgroup_id"); + + close(iter_fd); +out: + cgrp_ls_sleepable__destroy(skel); +} + +static void test_yes_rcu_lock(__u64 cgroup_id) +{ + struct cgrp_ls_sleepable *skel; + int err; + + skel = cgrp_ls_sleepable__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + CGROUP_MODE_SET(skel); + skel->bss->target_pid = syscall(SYS_gettid); + + bpf_program__set_autoload(skel->progs.yes_rcu_lock, true); + err = cgrp_ls_sleepable__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto out; + + err = cgrp_ls_sleepable__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + syscall(SYS_getpgid); + + ASSERT_EQ(skel->bss->cgroup_id, cgroup_id, "cgroup_id"); +out: + cgrp_ls_sleepable__destroy(skel); +} + +static void test_no_rcu_lock(void) +{ + struct cgrp_ls_sleepable *skel; + int err; + + skel = cgrp_ls_sleepable__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + CGROUP_MODE_SET(skel); + + bpf_program__set_autoload(skel->progs.no_rcu_lock, true); + err = cgrp_ls_sleepable__load(skel); + ASSERT_ERR(err, "skel_load"); + + cgrp_ls_sleepable__destroy(skel); +} + +static void test_cgrp1_no_rcu_lock(void) +{ + struct cgrp_ls_sleepable *skel; + int err; + + skel = cgrp_ls_sleepable__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + CGROUP_MODE_SET(skel); + + bpf_program__set_autoload(skel->progs.cgrp1_no_rcu_lock, true); + err = cgrp_ls_sleepable__load(skel); + ASSERT_OK(err, "skel_load"); + + cgrp_ls_sleepable__destroy(skel); +} + +static void cgrp2_local_storage(void) +{ + __u64 cgroup_id; + int cgroup_fd; + + cgroup_fd = test__join_cgroup("/cgrp_local_storage"); + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup /cgrp_local_storage")) + return; + + cgroup_mode_value_init(0, -1); + + cgroup_id = get_cgroup_id("/cgrp_local_storage"); + if (test__start_subtest("tp_btf")) + test_tp_btf(cgroup_fd); + if (test__start_subtest("attach_cgroup")) + test_attach_cgroup(cgroup_fd); + if (test__start_subtest("recursion")) + test_recursion(cgroup_fd); + if (test__start_subtest("negative")) + test_negative(); + if (test__start_subtest("cgroup_iter_sleepable")) + test_cgroup_iter_sleepable(cgroup_fd, cgroup_id); + if (test__start_subtest("yes_rcu_lock")) + test_yes_rcu_lock(cgroup_id); + if (test__start_subtest("no_rcu_lock")) + test_no_rcu_lock(); + + close(cgroup_fd); +} + +static void cgrp1_local_storage(void) +{ + int cgrp1_fd, cgrp1_hid, cgrp1_id, err; + + /* Setup cgroup1 hierarchy */ + err = setup_classid_environment(); + if (!ASSERT_OK(err, "setup_classid_environment")) + return; + + err = join_classid(); + if (!ASSERT_OK(err, "join_cgroup1")) + goto cleanup; + + cgrp1_fd = open_classid(); + if (!ASSERT_GE(cgrp1_fd, 0, "cgroup1 fd")) + goto cleanup; + + cgrp1_id = get_classid_cgroup_id(); + if (!ASSERT_GE(cgrp1_id, 0, "cgroup1 id")) + goto close_fd; + + cgrp1_hid = get_cgroup1_hierarchy_id("net_cls"); + if (!ASSERT_GE(cgrp1_hid, 0, "cgroup1 hid")) + goto close_fd; + + cgroup_mode_value_init(1, cgrp1_hid); + + if (test__start_subtest("cgrp1_tp_btf")) + test_tp_btf(cgrp1_fd); + if (test__start_subtest("cgrp1_recursion")) + test_recursion(cgrp1_fd); + if (test__start_subtest("cgrp1_negative")) + test_negative(); + if (test__start_subtest("cgrp1_iter_sleepable")) + test_cgroup_iter_sleepable(cgrp1_fd, cgrp1_id); + if (test__start_subtest("cgrp1_yes_rcu_lock")) + test_yes_rcu_lock(cgrp1_id); + if (test__start_subtest("cgrp1_no_rcu_lock")) + test_cgrp1_no_rcu_lock(); + +close_fd: + close(cgrp1_fd); +cleanup: + cleanup_classid_environment(); +} + +void test_cgrp_local_storage(void) +{ + cgrp2_local_storage(); + cgrp1_local_storage(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/check_mtu.c b/tools/testing/selftests/bpf/prog_tests/check_mtu.c new file mode 100644 index 000000000000..2a9a30650350 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/check_mtu.c @@ -0,0 +1,206 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Jesper Dangaard Brouer */ + +#include <linux/if_link.h> /* before test_progs.h, avoid bpf_util.h redefines */ +#include <test_progs.h> +#include "test_check_mtu.skel.h" +#include "network_helpers.h" + +#include <stdlib.h> +#include <inttypes.h> + +#define IFINDEX_LO 1 + +static __u32 duration; /* Hint: needed for CHECK macro */ + +static int read_mtu_device_lo(void) +{ + const char *filename = "/sys/class/net/lo/mtu"; + char buf[11] = {}; + int value, n, fd; + + fd = open(filename, 0, O_RDONLY); + if (fd == -1) + return -1; + + n = read(fd, buf, sizeof(buf)); + close(fd); + + if (n == -1) + return -2; + + value = strtoimax(buf, NULL, 10); + if (errno == ERANGE) + return -3; + + return value; +} + +static void test_check_mtu_xdp_attach(void) +{ + struct bpf_link_info link_info; + __u32 link_info_len = sizeof(link_info); + struct test_check_mtu *skel; + struct bpf_program *prog; + struct bpf_link *link; + int err = 0; + int fd; + + skel = test_check_mtu__open_and_load(); + if (CHECK(!skel, "open and load skel", "failed")) + return; /* Exit if e.g. helper unknown to kernel */ + + prog = skel->progs.xdp_use_helper_basic; + + link = bpf_program__attach_xdp(prog, IFINDEX_LO); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto out; + skel->links.xdp_use_helper_basic = link; + + memset(&link_info, 0, sizeof(link_info)); + fd = bpf_link__fd(link); + err = bpf_link_get_info_by_fd(fd, &link_info, &link_info_len); + if (CHECK(err, "link_info", "failed: %d\n", err)) + goto out; + + CHECK(link_info.type != BPF_LINK_TYPE_XDP, "link_type", + "got %u != exp %u\n", link_info.type, BPF_LINK_TYPE_XDP); + CHECK(link_info.xdp.ifindex != IFINDEX_LO, "link_ifindex", + "got %u != exp %u\n", link_info.xdp.ifindex, IFINDEX_LO); + + err = bpf_link__detach(link); + CHECK(err, "link_detach", "failed %d\n", err); + +out: + test_check_mtu__destroy(skel); +} + +static void test_check_mtu_run_xdp(struct test_check_mtu *skel, + struct bpf_program *prog, + __u32 mtu_expect) +{ + int retval_expect = XDP_PASS; + __u32 mtu_result = 0; + char buf[256] = {}; + int err, prog_fd = bpf_program__fd(prog); + LIBBPF_OPTS(bpf_test_run_opts, topts, + .repeat = 1, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + ); + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, retval_expect, "retval"); + + /* Extract MTU that BPF-prog got */ + mtu_result = skel->bss->global_bpf_mtu_xdp; + ASSERT_EQ(mtu_result, mtu_expect, "MTU-compare-user"); +} + + +static void test_check_mtu_xdp(__u32 mtu, __u32 ifindex) +{ + struct test_check_mtu *skel; + int err; + + skel = test_check_mtu__open(); + if (CHECK(!skel, "skel_open", "failed")) + return; + + /* Update "constants" in BPF-prog *BEFORE* libbpf load */ + skel->rodata->GLOBAL_USER_MTU = mtu; + skel->rodata->GLOBAL_USER_IFINDEX = ifindex; + + err = test_check_mtu__load(skel); + if (CHECK(err, "skel_load", "failed: %d\n", err)) + goto cleanup; + + test_check_mtu_run_xdp(skel, skel->progs.xdp_use_helper, mtu); + test_check_mtu_run_xdp(skel, skel->progs.xdp_exceed_mtu, mtu); + test_check_mtu_run_xdp(skel, skel->progs.xdp_minus_delta, mtu); + test_check_mtu_run_xdp(skel, skel->progs.xdp_input_len, mtu); + test_check_mtu_run_xdp(skel, skel->progs.xdp_input_len_exceed, mtu); + +cleanup: + test_check_mtu__destroy(skel); +} + +static void test_check_mtu_run_tc(struct test_check_mtu *skel, + struct bpf_program *prog, + __u32 mtu_expect) +{ + int retval_expect = BPF_OK; + __u32 mtu_result = 0; + char buf[256] = {}; + int err, prog_fd = bpf_program__fd(prog); + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 1, + ); + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, retval_expect, "retval"); + + /* Extract MTU that BPF-prog got */ + mtu_result = skel->bss->global_bpf_mtu_tc; + ASSERT_EQ(mtu_result, mtu_expect, "MTU-compare-user"); +} + + +static void test_check_mtu_tc(__u32 mtu, __u32 ifindex) +{ + struct test_check_mtu *skel; + int err; + + skel = test_check_mtu__open(); + if (CHECK(!skel, "skel_open", "failed")) + return; + + /* Update "constants" in BPF-prog *BEFORE* libbpf load */ + skel->rodata->GLOBAL_USER_MTU = mtu; + skel->rodata->GLOBAL_USER_IFINDEX = ifindex; + + err = test_check_mtu__load(skel); + if (CHECK(err, "skel_load", "failed: %d\n", err)) + goto cleanup; + + test_check_mtu_run_tc(skel, skel->progs.tc_use_helper, mtu); + test_check_mtu_run_tc(skel, skel->progs.tc_exceed_mtu, mtu); + test_check_mtu_run_tc(skel, skel->progs.tc_exceed_mtu_da, mtu); + test_check_mtu_run_tc(skel, skel->progs.tc_minus_delta, mtu); + test_check_mtu_run_tc(skel, skel->progs.tc_input_len, mtu); + test_check_mtu_run_tc(skel, skel->progs.tc_input_len_exceed, mtu); +cleanup: + test_check_mtu__destroy(skel); +} + +void serial_test_check_mtu(void) +{ + int mtu_lo; + + if (test__start_subtest("bpf_check_mtu XDP-attach")) + test_check_mtu_xdp_attach(); + + mtu_lo = read_mtu_device_lo(); + if (CHECK(mtu_lo < 0, "reading MTU value", "failed (err:%d)", mtu_lo)) + return; + + if (test__start_subtest("bpf_check_mtu XDP-run")) + test_check_mtu_xdp(mtu_lo, 0); + + if (test__start_subtest("bpf_check_mtu XDP-run ifindex-lookup")) + test_check_mtu_xdp(mtu_lo, IFINDEX_LO); + + if (test__start_subtest("bpf_check_mtu TC-run")) + test_check_mtu_tc(mtu_lo, 0); + + if (test__start_subtest("bpf_check_mtu TC-run ifindex-lookup")) + test_check_mtu_tc(mtu_lo, IFINDEX_LO); +} diff --git a/tools/testing/selftests/bpf/prog_tests/cls_redirect.c b/tools/testing/selftests/bpf/prog_tests/cls_redirect.c index f259085cca6a..34b59f6baca1 100644 --- a/tools/testing/selftests/bpf/prog_tests/cls_redirect.c +++ b/tools/testing/selftests/bpf/prog_tests/cls_redirect.c @@ -7,15 +7,21 @@ #include <string.h> #include <linux/pkt_cls.h> +#include <netinet/tcp.h> #include <test_progs.h> +#include "network_helpers.h" #include "progs/test_cls_redirect.h" #include "test_cls_redirect.skel.h" +#include "test_cls_redirect_dynptr.skel.h" +#include "test_cls_redirect_subprogs.skel.h" #define ENCAP_IP INADDR_LOOPBACK #define ENCAP_PORT (1234) +static int duration = 0; + struct addr_port { in_port_t port; union { @@ -30,39 +36,6 @@ struct tuple { struct addr_port dst; }; -static int start_server(const struct sockaddr *addr, socklen_t len, int type) -{ - int fd = socket(addr->sa_family, type, 0); - if (CHECK_FAIL(fd == -1)) - return -1; - if (CHECK_FAIL(bind(fd, addr, len) == -1)) - goto err; - if (type == SOCK_STREAM && CHECK_FAIL(listen(fd, 128) == -1)) - goto err; - - return fd; - -err: - close(fd); - return -1; -} - -static int connect_to_server(const struct sockaddr *addr, socklen_t len, - int type) -{ - int fd = socket(addr->sa_family, type, 0); - if (CHECK_FAIL(fd == -1)) - return -1; - if (CHECK_FAIL(connect(fd, addr, len))) - goto err; - - return fd; - -err: - close(fd); - return -1; -} - static bool fill_addr_port(const struct sockaddr *sa, struct addr_port *ap) { const struct sockaddr_in6 *in6; @@ -93,14 +66,14 @@ static bool set_up_conn(const struct sockaddr *addr, socklen_t len, int type, socklen_t slen = sizeof(ss); struct sockaddr *sa = (struct sockaddr *)&ss; - *server = start_server(addr, len, type); + *server = start_server_addr(type, (struct sockaddr_storage *)addr, len, NULL); if (*server < 0) return false; if (CHECK_FAIL(getsockname(*server, sa, &slen))) goto close_server; - *conn = connect_to_server(sa, slen, type); + *conn = connect_to_addr(type, (struct sockaddr_storage *)sa, slen, NULL); if (*conn < 0) goto close_server; @@ -157,7 +130,7 @@ static socklen_t prepare_addr(struct sockaddr_storage *addr, int family) } } -static bool was_decapsulated(struct bpf_prog_test_run_attr *tattr) +static bool was_decapsulated(struct bpf_test_run_opts *tattr) { return tattr->data_size_out < tattr->data_size_in; } @@ -361,30 +334,18 @@ static void close_fds(int *fds, int n) close(fds[i]); } -void test_cls_redirect(void) +static void test_cls_redirect_common(struct bpf_program *prog) { - struct test_cls_redirect *skel = NULL; - struct bpf_prog_test_run_attr tattr = {}; + LIBBPF_OPTS(bpf_test_run_opts, tattr); int families[] = { AF_INET, AF_INET6 }; struct sockaddr_storage ss; struct sockaddr *addr; socklen_t slen; - int i, j, err; - + int i, j, err, prog_fd; int servers[__NR_KIND][ARRAY_SIZE(families)] = {}; int conns[__NR_KIND][ARRAY_SIZE(families)] = {}; struct tuple tuples[__NR_KIND][ARRAY_SIZE(families)]; - skel = test_cls_redirect__open(); - if (CHECK_FAIL(!skel)) - return; - - skel->rodata->ENCAPSULATION_IP = htonl(ENCAP_IP); - skel->rodata->ENCAPSULATION_PORT = htons(ENCAP_PORT); - - if (CHECK_FAIL(test_cls_redirect__load(skel))) - goto cleanup; - addr = (struct sockaddr *)&ss; for (i = 0; i < ARRAY_SIZE(families); i++) { slen = prepare_addr(&ss, families[i]); @@ -402,7 +363,7 @@ void test_cls_redirect(void) goto cleanup; } - tattr.prog_fd = bpf_program__fd(skel->progs.cls_redirect); + prog_fd = bpf_program__fd(prog); for (i = 0; i < ARRAY_SIZE(tests); i++) { struct test_cfg *test = &tests[i]; @@ -423,7 +384,7 @@ void test_cls_redirect(void) if (CHECK_FAIL(!tattr.data_size_in)) continue; - err = bpf_prog_test_run_xattr(&tattr); + err = bpf_prog_test_run_opts(prog_fd, &tattr); if (CHECK_FAIL(err)) continue; @@ -450,7 +411,82 @@ void test_cls_redirect(void) } cleanup: - test_cls_redirect__destroy(skel); close_fds((int *)servers, sizeof(servers) / sizeof(servers[0][0])); close_fds((int *)conns, sizeof(conns) / sizeof(conns[0][0])); } + +static void test_cls_redirect_dynptr(void) +{ + struct test_cls_redirect_dynptr *skel; + int err; + + skel = test_cls_redirect_dynptr__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->rodata->ENCAPSULATION_IP = htonl(ENCAP_IP); + skel->rodata->ENCAPSULATION_PORT = htons(ENCAP_PORT); + + err = test_cls_redirect_dynptr__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + test_cls_redirect_common(skel->progs.cls_redirect); + +cleanup: + test_cls_redirect_dynptr__destroy(skel); +} + +static void test_cls_redirect_inlined(void) +{ + struct test_cls_redirect *skel; + int err; + + skel = test_cls_redirect__open(); + if (CHECK(!skel, "skel_open", "failed\n")) + return; + + skel->rodata->ENCAPSULATION_IP = htonl(ENCAP_IP); + skel->rodata->ENCAPSULATION_PORT = htons(ENCAP_PORT); + + err = test_cls_redirect__load(skel); + if (CHECK(err, "skel_load", "failed: %d\n", err)) + goto cleanup; + + test_cls_redirect_common(skel->progs.cls_redirect); + +cleanup: + test_cls_redirect__destroy(skel); +} + +static void test_cls_redirect_subprogs(void) +{ + struct test_cls_redirect_subprogs *skel; + int err; + + skel = test_cls_redirect_subprogs__open(); + if (CHECK(!skel, "skel_open", "failed\n")) + return; + + skel->rodata->ENCAPSULATION_IP = htonl(ENCAP_IP); + skel->rodata->ENCAPSULATION_PORT = htons(ENCAP_PORT); + + err = test_cls_redirect_subprogs__load(skel); + if (CHECK(err, "skel_load", "failed: %d\n", err)) + goto cleanup; + + test_cls_redirect_common(skel->progs.cls_redirect); + +cleanup: + test_cls_redirect_subprogs__destroy(skel); +} + +void test_cls_redirect(void) +{ + if (test__start_subtest("cls_redirect_inlined")) + test_cls_redirect_inlined(); + if (test__start_subtest("cls_redirect_subprogs")) + test_cls_redirect_subprogs(); + if (test__start_subtest("cls_redirect_dynptr")) + test_cls_redirect_dynptr(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/connect_force_port.c b/tools/testing/selftests/bpf/prog_tests/connect_force_port.c index 9229db2f5ca5..24d553109f8d 100644 --- a/tools/testing/selftests/bpf/prog_tests/connect_force_port.c +++ b/tools/testing/selftests/bpf/prog_tests/connect_force_port.c @@ -51,24 +51,25 @@ static int run_test(int cgroup_fd, int server_fd, int family, int type) bool v4 = family == AF_INET; __u16 expected_local_port = v4 ? 22222 : 22223; __u16 expected_peer_port = 60000; - struct bpf_prog_load_attr attr = { - .file = v4 ? "./connect_force_port4.o" : - "./connect_force_port6.o", - }; struct bpf_program *prog; struct bpf_object *obj; - int xlate_fd, fd, err; + const char *obj_file = v4 ? "connect_force_port4.bpf.o" : "connect_force_port6.bpf.o"; + int fd, err; __u32 duration = 0; - err = bpf_prog_load_xattr(&attr, &obj, &xlate_fd); - if (err) { - log_err("Failed to load BPF object"); + obj = bpf_object__open_file(obj_file, NULL); + if (!ASSERT_OK_PTR(obj, "bpf_obj_open")) return -1; + + err = bpf_object__load(obj); + if (!ASSERT_OK(err, "bpf_obj_load")) { + err = -EIO; + goto close_bpf_object; } - prog = bpf_object__find_program_by_title(obj, v4 ? - "cgroup/connect4" : - "cgroup/connect6"); + prog = bpf_object__find_program_by_name(obj, v4 ? + "connect4" : + "connect6"); if (CHECK(!prog, "find_prog", "connect prog not found\n")) { err = -EIO; goto close_bpf_object; @@ -82,9 +83,9 @@ static int run_test(int cgroup_fd, int server_fd, int family, int type) goto close_bpf_object; } - prog = bpf_object__find_program_by_title(obj, v4 ? - "cgroup/getpeername4" : - "cgroup/getpeername6"); + prog = bpf_object__find_program_by_name(obj, v4 ? + "getpeername4" : + "getpeername6"); if (CHECK(!prog, "find_prog", "getpeername prog not found\n")) { err = -EIO; goto close_bpf_object; @@ -98,9 +99,9 @@ static int run_test(int cgroup_fd, int server_fd, int family, int type) goto close_bpf_object; } - prog = bpf_object__find_program_by_title(obj, v4 ? - "cgroup/getsockname4" : - "cgroup/getsockname6"); + prog = bpf_object__find_program_by_name(obj, v4 ? + "getsockname4" : + "getsockname6"); if (CHECK(!prog, "find_prog", "getsockname prog not found\n")) { err = -EIO; goto close_bpf_object; diff --git a/tools/testing/selftests/bpf/prog_tests/connect_ping.c b/tools/testing/selftests/bpf/prog_tests/connect_ping.c new file mode 100644 index 000000000000..40fe571f2fe7 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/connect_ping.c @@ -0,0 +1,178 @@ +// SPDX-License-Identifier: GPL-2.0-only + +/* + * Copyright 2022 Google LLC. + */ + +#define _GNU_SOURCE +#include <sys/mount.h> + +#include "test_progs.h" +#include "cgroup_helpers.h" +#include "network_helpers.h" + +#include "connect_ping.skel.h" + +/* 2001:db8::1 */ +#define BINDADDR_V6 { { { 0x20,0x01,0x0d,0xb8,0,0,0,0,0,0,0,0,0,0,0,1 } } } +static const struct in6_addr bindaddr_v6 = BINDADDR_V6; + +static void subtest(int cgroup_fd, struct connect_ping *skel, + int family, int do_bind) +{ + struct sockaddr_in sa4 = { + .sin_family = AF_INET, + .sin_addr.s_addr = htonl(INADDR_LOOPBACK), + }; + struct sockaddr_in6 sa6 = { + .sin6_family = AF_INET6, + .sin6_addr = IN6ADDR_LOOPBACK_INIT, + }; + struct sockaddr *sa = NULL; + socklen_t sa_len; + int protocol = -1; + int sock_fd; + + switch (family) { + case AF_INET: + sa = (struct sockaddr *)&sa4; + sa_len = sizeof(sa4); + protocol = IPPROTO_ICMP; + break; + case AF_INET6: + sa = (struct sockaddr *)&sa6; + sa_len = sizeof(sa6); + protocol = IPPROTO_ICMPV6; + break; + } + + memset(skel->bss, 0, sizeof(*skel->bss)); + skel->bss->do_bind = do_bind; + + sock_fd = socket(family, SOCK_DGRAM, protocol); + if (!ASSERT_GE(sock_fd, 0, "sock-create")) + return; + + if (!ASSERT_OK(connect(sock_fd, sa, sa_len), "connect")) + goto close_sock; + + if (!ASSERT_EQ(skel->bss->invocations_v4, family == AF_INET ? 1 : 0, + "invocations_v4")) + goto close_sock; + if (!ASSERT_EQ(skel->bss->invocations_v6, family == AF_INET6 ? 1 : 0, + "invocations_v6")) + goto close_sock; + if (!ASSERT_EQ(skel->bss->has_error, 0, "has_error")) + goto close_sock; + + if (!ASSERT_OK(getsockname(sock_fd, sa, &sa_len), + "getsockname")) + goto close_sock; + + switch (family) { + case AF_INET: + if (!ASSERT_EQ(sa4.sin_family, family, "sin_family")) + goto close_sock; + if (!ASSERT_EQ(sa4.sin_addr.s_addr, + htonl(do_bind ? 0x01010101 : INADDR_LOOPBACK), + "sin_addr")) + goto close_sock; + break; + case AF_INET6: + if (!ASSERT_EQ(sa6.sin6_family, AF_INET6, "sin6_family")) + goto close_sock; + if (!ASSERT_EQ(memcmp(&sa6.sin6_addr, + do_bind ? &bindaddr_v6 : &in6addr_loopback, + sizeof(sa6.sin6_addr)), + 0, "sin6_addr")) + goto close_sock; + break; + } + +close_sock: + close(sock_fd); +} + +void test_connect_ping(void) +{ + struct connect_ping *skel; + int cgroup_fd; + + if (!ASSERT_OK(unshare(CLONE_NEWNET | CLONE_NEWNS), "unshare")) + return; + + /* overmount sysfs, and making original sysfs private so overmount + * does not propagate to other mntns. + */ + if (!ASSERT_OK(mount("none", "/sys", NULL, MS_PRIVATE, NULL), + "remount-private-sys")) + return; + if (!ASSERT_OK(mount("sysfs", "/sys", "sysfs", 0, NULL), + "mount-sys")) + return; + if (!ASSERT_OK(mount("bpffs", "/sys/fs/bpf", "bpf", 0, NULL), + "mount-bpf")) + goto clean_mount; + + if (!ASSERT_OK(system("ip link set dev lo up"), "lo-up")) + goto clean_mount; + if (!ASSERT_OK(system("ip addr add 1.1.1.1 dev lo"), "lo-addr-v4")) + goto clean_mount; + if (!ASSERT_OK(system("ip -6 addr add 2001:db8::1 dev lo"), "lo-addr-v6")) + goto clean_mount; + if (write_sysctl("/proc/sys/net/ipv4/ping_group_range", "0 0")) + goto clean_mount; + + cgroup_fd = test__join_cgroup("/connect_ping"); + if (!ASSERT_GE(cgroup_fd, 0, "cg-create")) + goto clean_mount; + + skel = connect_ping__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel-load")) + goto close_cgroup; + skel->links.connect_v4_prog = + bpf_program__attach_cgroup(skel->progs.connect_v4_prog, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.connect_v4_prog, "cg-attach-v4")) + goto skel_destroy; + skel->links.connect_v6_prog = + bpf_program__attach_cgroup(skel->progs.connect_v6_prog, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.connect_v6_prog, "cg-attach-v6")) + goto skel_destroy; + + /* Connect a v4 ping socket to localhost, assert that only v4 is called, + * and called exactly once, and that the socket's bound address is + * original loopback address. + */ + if (test__start_subtest("ipv4")) + subtest(cgroup_fd, skel, AF_INET, 0); + + /* Connect a v4 ping socket to localhost, assert that only v4 is called, + * and called exactly once, and that the socket's bound address is + * address we explicitly bound. + */ + if (test__start_subtest("ipv4-bind")) + subtest(cgroup_fd, skel, AF_INET, 1); + + /* Connect a v6 ping socket to localhost, assert that only v6 is called, + * and called exactly once, and that the socket's bound address is + * original loopback address. + */ + if (test__start_subtest("ipv6")) + subtest(cgroup_fd, skel, AF_INET6, 0); + + /* Connect a v6 ping socket to localhost, assert that only v6 is called, + * and called exactly once, and that the socket's bound address is + * address we explicitly bound. + */ + if (test__start_subtest("ipv6-bind")) + subtest(cgroup_fd, skel, AF_INET6, 1); + +skel_destroy: + connect_ping__destroy(skel); + +close_cgroup: + close(cgroup_fd); + +clean_mount: + umount2("/sys", MNT_DETACH); +} diff --git a/tools/testing/selftests/bpf/prog_tests/core_autosize.c b/tools/testing/selftests/bpf/prog_tests/core_autosize.c new file mode 100644 index 000000000000..f2ce4fd1cdae --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/core_autosize.c @@ -0,0 +1,223 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ + +#include <test_progs.h> +#include <bpf/btf.h> + +/* real layout and sizes according to test's (32-bit) BTF + * needs to be defined before skeleton is included */ +struct test_struct___real { + unsigned int ptr; /* can't use `void *`, it is always 8 byte in BPF target */ + unsigned int val2; + unsigned long long val1; + unsigned short val3; + unsigned char val4; + unsigned char _pad; +}; + +#include "test_core_autosize.skel.h" + +static int duration = 0; + +static struct { + unsigned long long ptr_samesized; + unsigned long long val1_samesized; + unsigned long long val2_samesized; + unsigned long long val3_samesized; + unsigned long long val4_samesized; + struct test_struct___real output_samesized; + + unsigned long long ptr_downsized; + unsigned long long val1_downsized; + unsigned long long val2_downsized; + unsigned long long val3_downsized; + unsigned long long val4_downsized; + struct test_struct___real output_downsized; + + unsigned long long ptr_probed; + unsigned long long val1_probed; + unsigned long long val2_probed; + unsigned long long val3_probed; + unsigned long long val4_probed; + + unsigned long long ptr_signed; + unsigned long long val1_signed; + unsigned long long val2_signed; + unsigned long long val3_signed; + unsigned long long val4_signed; + struct test_struct___real output_signed; +} out; + +void test_core_autosize(void) +{ + char btf_file[] = "/tmp/core_autosize.btf.XXXXXX"; + int err, fd = -1, zero = 0; + int char_id, short_id, int_id, long_long_id, void_ptr_id, id; + DECLARE_LIBBPF_OPTS(bpf_object_open_opts, open_opts); + struct test_core_autosize* skel = NULL; + struct bpf_program *prog; + struct bpf_map *bss_map; + struct btf *btf = NULL; + size_t written; + const void *raw_data; + __u32 raw_sz; + FILE *f = NULL; + + btf = btf__new_empty(); + if (!ASSERT_OK_PTR(btf, "empty_btf")) + return; + /* Emit the following struct with 32-bit pointer size: + * + * struct test_struct { + * void *ptr; + * unsigned long val2; + * unsigned long long val1; + * unsigned short val3; + * unsigned char val4; + * char: 8; + * }; + * + * This struct is going to be used as the "kernel BTF" for this test. + * It's equivalent memory-layout-wise to test_struct__real above. + */ + + /* force 32-bit pointer size */ + btf__set_pointer_size(btf, 4); + + char_id = btf__add_int(btf, "unsigned char", 1, 0); + ASSERT_EQ(char_id, 1, "char_id"); + short_id = btf__add_int(btf, "unsigned short", 2, 0); + ASSERT_EQ(short_id, 2, "short_id"); + /* "long unsigned int" of 4 byte size tells BTF that sizeof(void *) == 4 */ + int_id = btf__add_int(btf, "long unsigned int", 4, 0); + ASSERT_EQ(int_id, 3, "int_id"); + long_long_id = btf__add_int(btf, "unsigned long long", 8, 0); + ASSERT_EQ(long_long_id, 4, "long_long_id"); + void_ptr_id = btf__add_ptr(btf, 0); + ASSERT_EQ(void_ptr_id, 5, "void_ptr_id"); + + id = btf__add_struct(btf, "test_struct", 20 /* bytes */); + ASSERT_EQ(id, 6, "struct_id"); + err = btf__add_field(btf, "ptr", void_ptr_id, 0, 0); + err = err ?: btf__add_field(btf, "val2", int_id, 32, 0); + err = err ?: btf__add_field(btf, "val1", long_long_id, 64, 0); + err = err ?: btf__add_field(btf, "val3", short_id, 128, 0); + err = err ?: btf__add_field(btf, "val4", char_id, 144, 0); + ASSERT_OK(err, "struct_fields"); + + fd = mkstemp(btf_file); + if (CHECK(fd < 0, "btf_tmp", "failed to create file: %d\n", fd)) + goto cleanup; + f = fdopen(fd, "w"); + if (!ASSERT_OK_PTR(f, "btf_fdopen")) + goto cleanup; + + raw_data = btf__raw_data(btf, &raw_sz); + if (!ASSERT_OK_PTR(raw_data, "raw_data")) + goto cleanup; + written = fwrite(raw_data, 1, raw_sz, f); + if (CHECK(written != raw_sz, "btf_write", "written: %zu, errno: %d\n", written, errno)) + goto cleanup; + fflush(f); + fclose(f); + f = NULL; + close(fd); + fd = -1; + + /* open and load BPF program with custom BTF as the kernel BTF */ + open_opts.btf_custom_path = btf_file; + skel = test_core_autosize__open_opts(&open_opts); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + /* disable handle_signed() for now */ + prog = bpf_object__find_program_by_name(skel->obj, "handle_signed"); + if (!ASSERT_OK_PTR(prog, "prog_find")) + goto cleanup; + bpf_program__set_autoload(prog, false); + + err = bpf_object__load(skel->obj); + if (!ASSERT_OK(err, "prog_load")) + goto cleanup; + + prog = bpf_object__find_program_by_name(skel->obj, "handle_samesize"); + if (!ASSERT_OK_PTR(prog, "prog_find")) + goto cleanup; + skel->links.handle_samesize = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(skel->links.handle_samesize, "prog_attach")) + goto cleanup; + + prog = bpf_object__find_program_by_name(skel->obj, "handle_downsize"); + if (!ASSERT_OK_PTR(prog, "prog_find")) + goto cleanup; + skel->links.handle_downsize = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(skel->links.handle_downsize, "prog_attach")) + goto cleanup; + + prog = bpf_object__find_program_by_name(skel->obj, "handle_probed"); + if (!ASSERT_OK_PTR(prog, "prog_find")) + goto cleanup; + skel->links.handle_probed = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(skel->links.handle_probed, "prog_attach")) + goto cleanup; + + usleep(1); + + bss_map = bpf_object__find_map_by_name(skel->obj, ".bss"); + if (!ASSERT_OK_PTR(bss_map, "bss_map_find")) + goto cleanup; + + err = bpf_map__lookup_elem(bss_map, &zero, sizeof(zero), &out, sizeof(out), 0); + if (!ASSERT_OK(err, "bss_lookup")) + goto cleanup; + + ASSERT_EQ(out.ptr_samesized, 0x01020304, "ptr_samesized"); + ASSERT_EQ(out.val1_samesized, 0x1020304050607080, "val1_samesized"); + ASSERT_EQ(out.val2_samesized, 0x0a0b0c0d, "val2_samesized"); + ASSERT_EQ(out.val3_samesized, 0xfeed, "val3_samesized"); + ASSERT_EQ(out.val4_samesized, 0xb9, "val4_samesized"); + ASSERT_EQ(out.output_samesized.ptr, 0x01020304, "ptr_samesized"); + ASSERT_EQ(out.output_samesized.val1, 0x1020304050607080, "val1_samesized"); + ASSERT_EQ(out.output_samesized.val2, 0x0a0b0c0d, "val2_samesized"); + ASSERT_EQ(out.output_samesized.val3, 0xfeed, "val3_samesized"); + ASSERT_EQ(out.output_samesized.val4, 0xb9, "val4_samesized"); + + ASSERT_EQ(out.ptr_downsized, 0x01020304, "ptr_downsized"); + ASSERT_EQ(out.val1_downsized, 0x1020304050607080, "val1_downsized"); + ASSERT_EQ(out.val2_downsized, 0x0a0b0c0d, "val2_downsized"); + ASSERT_EQ(out.val3_downsized, 0xfeed, "val3_downsized"); + ASSERT_EQ(out.val4_downsized, 0xb9, "val4_downsized"); + ASSERT_EQ(out.output_downsized.ptr, 0x01020304, "ptr_downsized"); + ASSERT_EQ(out.output_downsized.val1, 0x1020304050607080, "val1_downsized"); + ASSERT_EQ(out.output_downsized.val2, 0x0a0b0c0d, "val2_downsized"); + ASSERT_EQ(out.output_downsized.val3, 0xfeed, "val3_downsized"); + ASSERT_EQ(out.output_downsized.val4, 0xb9, "val4_downsized"); + + ASSERT_EQ(out.ptr_probed, 0x01020304, "ptr_probed"); + ASSERT_EQ(out.val1_probed, 0x1020304050607080, "val1_probed"); + ASSERT_EQ(out.val2_probed, 0x0a0b0c0d, "val2_probed"); + ASSERT_EQ(out.val3_probed, 0xfeed, "val3_probed"); + ASSERT_EQ(out.val4_probed, 0xb9, "val4_probed"); + + test_core_autosize__destroy(skel); + skel = NULL; + + /* now re-load with handle_signed() enabled, it should fail loading */ + open_opts.btf_custom_path = btf_file; + skel = test_core_autosize__open_opts(&open_opts); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + err = test_core_autosize__load(skel); + if (!ASSERT_ERR(err, "skel_load")) + goto cleanup; + +cleanup: + if (f) + fclose(f); + if (fd >= 0) + close(fd); + remove(btf_file); + btf__free(btf); + test_core_autosize__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/core_extern.c b/tools/testing/selftests/bpf/prog_tests/core_extern.c index 1931a158510e..63a51e9f3630 100644 --- a/tools/testing/selftests/bpf/prog_tests/core_extern.c +++ b/tools/testing/selftests/bpf/prog_tests/core_extern.c @@ -39,6 +39,7 @@ static struct test_case { "CONFIG_STR=\"abracad\"\n" "CONFIG_MISSING=0", .data = { + .unkn_virt_val = 0, .bpf_syscall = false, .tristate_val = TRI_MODULE, .bool_val = true, @@ -121,7 +122,7 @@ static struct test_case { void test_core_extern(void) { const uint32_t kern_ver = get_kernel_version(); - int err, duration = 0, i, j; + int err, i, j; struct test_core_extern *skel = NULL; uint64_t *got, *exp; int n = sizeof(*skel->data) / sizeof(uint64_t); @@ -136,19 +137,17 @@ void test_core_extern(void) continue; skel = test_core_extern__open_opts(&opts); - if (CHECK(!skel, "skel_open", "skeleton open failed\n")) + if (!ASSERT_OK_PTR(skel, "skel_open")) goto cleanup; err = test_core_extern__load(skel); if (t->fails) { - CHECK(!err, "skel_load", - "shouldn't succeed open/load of skeleton\n"); + ASSERT_ERR(err, "skel_load_should_fail"); goto cleanup; - } else if (CHECK(err, "skel_load", - "failed to open/load skeleton\n")) { + } else if (!ASSERT_OK(err, "skel_load")) { goto cleanup; } err = test_core_extern__attach(skel); - if (CHECK(err, "attach_raw_tp", "failed attach: %d\n", err)) + if (!ASSERT_OK(err, "attach_raw_tp")) goto cleanup; usleep(1); @@ -158,9 +157,7 @@ void test_core_extern(void) got = (uint64_t *)skel->data; exp = (uint64_t *)&t->data; for (j = 0; j < n; j++) { - CHECK(got[j] != exp[j], "check_res", - "result #%d: expected %llx, but got %llx\n", - j, (__u64)exp[j], (__u64)got[j]); + ASSERT_EQ(got[j], exp[j], "result"); } cleanup: test_core_extern__destroy(skel); diff --git a/tools/testing/selftests/bpf/prog_tests/core_kern.c b/tools/testing/selftests/bpf/prog_tests/core_kern.c new file mode 100644 index 000000000000..6a5a1c019a5d --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/core_kern.c @@ -0,0 +1,28 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include "test_progs.h" +#include "core_kern.lskel.h" + +void test_core_kern_lskel(void) +{ + struct core_kern_lskel *skel; + int link_fd; + + skel = core_kern_lskel__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + link_fd = core_kern_lskel__core_relo_proto__attach(skel); + if (!ASSERT_GT(link_fd, 0, "attach(core_relo_proto)")) + goto cleanup; + + /* trigger tracepoints */ + usleep(1); + ASSERT_TRUE(skel->bss->proto_out[0], "bpf_core_type_exists"); + ASSERT_FALSE(skel->bss->proto_out[1], "!bpf_core_type_exists"); + ASSERT_TRUE(skel->bss->proto_out[2], "bpf_core_type_exists. nested"); + +cleanup: + core_kern_lskel__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/core_kern_overflow.c b/tools/testing/selftests/bpf/prog_tests/core_kern_overflow.c new file mode 100644 index 000000000000..04cc145bc26a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/core_kern_overflow.c @@ -0,0 +1,13 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include "test_progs.h" +#include "core_kern_overflow.lskel.h" + +void test_core_kern_overflow_lskel(void) +{ + struct core_kern_overflow_lskel *skel; + + skel = core_kern_overflow_lskel__open_and_load(); + if (!ASSERT_NULL(skel, "open_and_load")) + core_kern_overflow_lskel__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/core_read_macros.c b/tools/testing/selftests/bpf/prog_tests/core_read_macros.c new file mode 100644 index 000000000000..96f5cf3c6fa2 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/core_read_macros.c @@ -0,0 +1,64 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ + +#include <test_progs.h> + +struct callback_head { + struct callback_head *next; + void (*func)(struct callback_head *head); +}; + +/* ___shuffled flavor is just an illusion for BPF code, it doesn't really + * exist and user-space needs to provide data in the memory layout that + * matches callback_head. We just defined ___shuffled flavor to make it easier + * to work with the skeleton + */ +struct callback_head___shuffled { + struct callback_head___shuffled *next; + void (*func)(struct callback_head *head); +}; + +#include "test_core_read_macros.skel.h" + +void test_core_read_macros(void) +{ + int duration = 0, err; + struct test_core_read_macros* skel; + struct test_core_read_macros__bss *bss; + struct callback_head u_probe_in; + struct callback_head___shuffled u_core_in; + + skel = test_core_read_macros__open_and_load(); + if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) + return; + bss = skel->bss; + bss->my_pid = getpid(); + + /* next pointers have to be set from the kernel side */ + bss->k_probe_in.func = (void *)(long)0x1234; + bss->k_core_in.func = (void *)(long)0xabcd; + + u_probe_in.next = &u_probe_in; + u_probe_in.func = (void *)(long)0x5678; + bss->u_probe_in = &u_probe_in; + + u_core_in.next = &u_core_in; + u_core_in.func = (void *)(long)0xdbca; + bss->u_core_in = &u_core_in; + + err = test_core_read_macros__attach(skel); + if (CHECK(err, "skel_attach", "skeleton attach failed: %d\n", err)) + goto cleanup; + + /* trigger tracepoint */ + usleep(1); + + ASSERT_EQ(bss->k_probe_out, 0x1234, "k_probe_out"); + ASSERT_EQ(bss->k_core_out, 0xabcd, "k_core_out"); + + ASSERT_EQ(bss->u_probe_out, 0x5678, "u_probe_out"); + ASSERT_EQ(bss->u_core_out, 0xdbca, "u_core_out"); + +cleanup: + test_core_read_macros__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/core_reloc.c b/tools/testing/selftests/bpf/prog_tests/core_reloc.c index a54eafc5e4b3..47f42e680105 100644 --- a/tools/testing/selftests/bpf/prog_tests/core_reloc.c +++ b/tools/testing/selftests/bpf/prog_tests/core_reloc.c @@ -1,11 +1,40 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> #include "progs/core_reloc_types.h" +#include "bpf_testmod/bpf_testmod.h" +#include <linux/limits.h> #include <sys/mman.h> #include <sys/syscall.h> +#include <bpf/btf.h> + +static int duration = 0; #define STRUCT_TO_CHAR_PTR(struct_name) (const char *)&(struct struct_name) +#define MODULES_CASE(name, pg_name, tp_name) { \ + .case_name = name, \ + .bpf_obj_file = "test_core_reloc_module.bpf.o", \ + .btf_src_file = NULL, /* find in kernel module BTFs */ \ + .input = "", \ + .input_len = 0, \ + .output = STRUCT_TO_CHAR_PTR(core_reloc_module_output) { \ + .read_ctx_sz = sizeof(struct bpf_testmod_test_read_ctx),\ + .read_ctx_exists = true, \ + .buf_exists = true, \ + .len_exists = true, \ + .off_exists = true, \ + .len = 123, \ + .off = 0, \ + .comm = "test_progs", \ + .comm_len = sizeof("test_progs"), \ + }, \ + .output_len = sizeof(struct core_reloc_module_output), \ + .prog_name = pg_name, \ + .raw_tp_name = tp_name, \ + .trigger = __trigger_module_test_read, \ + .needs_testmod = true, \ +} + #define FLAVORS_DATA(struct_name) STRUCT_TO_CHAR_PTR(struct_name) { \ .a = 42, \ .b = 0xc001, \ @@ -14,8 +43,10 @@ #define FLAVORS_CASE_COMMON(name) \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_flavors.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o" \ + .bpf_obj_file = "test_core_reloc_flavors.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_flavors" \ #define FLAVORS_CASE(name) { \ FLAVORS_CASE_COMMON(name), \ @@ -37,8 +68,10 @@ #define NESTING_CASE_COMMON(name) \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_nesting.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o" + .bpf_obj_file = "test_core_reloc_nesting.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_nesting" \ #define NESTING_CASE(name) { \ NESTING_CASE_COMMON(name), \ @@ -51,6 +84,7 @@ #define NESTING_ERR_CASE(name) { \ NESTING_CASE_COMMON(name), \ .fails = true, \ + .run_btfgen_fails = true, \ } #define ARRAYS_DATA(struct_name) STRUCT_TO_CHAR_PTR(struct_name) { \ @@ -62,8 +96,10 @@ #define ARRAYS_CASE_COMMON(name) \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_arrays.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o" + .bpf_obj_file = "test_core_reloc_arrays.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_arrays" \ #define ARRAYS_CASE(name) { \ ARRAYS_CASE_COMMON(name), \ @@ -94,8 +130,10 @@ #define PRIMITIVES_CASE_COMMON(name) \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_primitives.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o" + .bpf_obj_file = "test_core_reloc_primitives.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_primitives" \ #define PRIMITIVES_CASE(name) { \ PRIMITIVES_CASE_COMMON(name), \ @@ -112,8 +150,8 @@ #define MODS_CASE(name) { \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_mods.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o", \ + .bpf_obj_file = "test_core_reloc_mods.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ .input = STRUCT_TO_CHAR_PTR(core_reloc_##name) { \ .a = 1, \ .b = 2, \ @@ -130,12 +168,14 @@ .e = 5, .f = 6, .g = 7, .h = 8, \ }, \ .output_len = sizeof(struct core_reloc_mods_output), \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_mods", \ } #define PTR_AS_ARR_CASE(name) { \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_ptr_as_arr.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o", \ + .bpf_obj_file = "test_core_reloc_ptr_as_arr.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ .input = (const char *)&(struct core_reloc_##name []){ \ { .a = 1 }, \ { .a = 2 }, \ @@ -146,6 +186,8 @@ .a = 3, \ }, \ .output_len = sizeof(struct core_reloc_ptr_as_arr), \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_ptr_as_arr", \ } #define INTS_DATA(struct_name) STRUCT_TO_CHAR_PTR(struct_name) { \ @@ -161,8 +203,10 @@ #define INTS_CASE_COMMON(name) \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_ints.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o" + .bpf_obj_file = "test_core_reloc_ints.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_ints" #define INTS_CASE(name) { \ INTS_CASE_COMMON(name), \ @@ -177,68 +221,80 @@ .fails = true, \ } -#define EXISTENCE_CASE_COMMON(name) \ +#define FIELD_EXISTS_CASE_COMMON(name) \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_existence.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o", \ - .relaxed_core_relocs = true - -#define EXISTENCE_ERR_CASE(name) { \ - EXISTENCE_CASE_COMMON(name), \ - .fails = true, \ -} + .bpf_obj_file = "test_core_reloc_existence.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_existence" #define BITFIELDS_CASE_COMMON(objfile, test_name_prefix, name) \ .case_name = test_name_prefix#name, \ .bpf_obj_file = objfile, \ - .btf_src_file = "btf__core_reloc_" #name ".o" + .btf_src_file = "btf__core_reloc_" #name ".bpf.o" #define BITFIELDS_CASE(name, ...) { \ - BITFIELDS_CASE_COMMON("test_core_reloc_bitfields_probed.o", \ - "direct:", name), \ + BITFIELDS_CASE_COMMON("test_core_reloc_bitfields_probed.bpf.o", \ + "probed:", name), \ .input = STRUCT_TO_CHAR_PTR(core_reloc_##name) __VA_ARGS__, \ .input_len = sizeof(struct core_reloc_##name), \ .output = STRUCT_TO_CHAR_PTR(core_reloc_bitfields_output) \ __VA_ARGS__, \ .output_len = sizeof(struct core_reloc_bitfields_output), \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_bitfields", \ }, { \ - BITFIELDS_CASE_COMMON("test_core_reloc_bitfields_direct.o", \ - "probed:", name), \ + BITFIELDS_CASE_COMMON("test_core_reloc_bitfields_direct.bpf.o", \ + "direct:", name), \ .input = STRUCT_TO_CHAR_PTR(core_reloc_##name) __VA_ARGS__, \ .input_len = sizeof(struct core_reloc_##name), \ .output = STRUCT_TO_CHAR_PTR(core_reloc_bitfields_output) \ __VA_ARGS__, \ .output_len = sizeof(struct core_reloc_bitfields_output), \ - .direct_raw_tp = true, \ + .prog_name = "test_core_bitfields_direct", \ } #define BITFIELDS_ERR_CASE(name) { \ - BITFIELDS_CASE_COMMON("test_core_reloc_bitfields_probed.o", \ + BITFIELDS_CASE_COMMON("test_core_reloc_bitfields_probed.bpf.o", \ "probed:", name), \ .fails = true, \ + .run_btfgen_fails = true, \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_bitfields", \ }, { \ - BITFIELDS_CASE_COMMON("test_core_reloc_bitfields_direct.o", \ + BITFIELDS_CASE_COMMON("test_core_reloc_bitfields_direct.bpf.o", \ "direct:", name), \ - .direct_raw_tp = true, \ .fails = true, \ + .run_btfgen_fails = true, \ + .prog_name = "test_core_bitfields_direct", \ } #define SIZE_CASE_COMMON(name) \ .case_name = #name, \ - .bpf_obj_file = "test_core_reloc_size.o", \ - .btf_src_file = "btf__core_reloc_" #name ".o", \ - .relaxed_core_relocs = true + .bpf_obj_file = "test_core_reloc_size.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_size" #define SIZE_OUTPUT_DATA(type) \ STRUCT_TO_CHAR_PTR(core_reloc_size_output) { \ .int_sz = sizeof(((type *)0)->int_field), \ + .int_off = offsetof(type, int_field), \ .struct_sz = sizeof(((type *)0)->struct_field), \ + .struct_off = offsetof(type, struct_field), \ .union_sz = sizeof(((type *)0)->union_field), \ + .union_off = offsetof(type, union_field), \ .arr_sz = sizeof(((type *)0)->arr_field), \ - .arr_elem_sz = sizeof(((type *)0)->arr_field[0]), \ + .arr_off = offsetof(type, arr_field), \ + .arr_elem_sz = sizeof(((type *)0)->arr_field[1]), \ + .arr_elem_off = offsetof(type, arr_field[1]), \ .ptr_sz = 8, /* always 8-byte pointer for BPF */ \ + .ptr_off = offsetof(type, ptr_field), \ .enum_sz = sizeof(((type *)0)->enum_field), \ + .enum_off = offsetof(type, enum_field), \ + .float_sz = sizeof(((type *)0)->float_field), \ + .float_off = offsetof(type, float_field), \ } #define SIZE_CASE(name) { \ @@ -251,8 +307,90 @@ #define SIZE_ERR_CASE(name) { \ SIZE_CASE_COMMON(name), \ .fails = true, \ + .run_btfgen_fails = true, \ +} + +#define TYPE_BASED_CASE_COMMON(name) \ + .case_name = #name, \ + .bpf_obj_file = "test_core_reloc_type_based.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_type_based" + +#define TYPE_BASED_CASE(name, ...) { \ + TYPE_BASED_CASE_COMMON(name), \ + .output = STRUCT_TO_CHAR_PTR(core_reloc_type_based_output) \ + __VA_ARGS__, \ + .output_len = sizeof(struct core_reloc_type_based_output), \ +} + +#define TYPE_BASED_ERR_CASE(name) { \ + TYPE_BASED_CASE_COMMON(name), \ + .fails = true, \ } +#define TYPE_ID_CASE_COMMON(name) \ + .case_name = #name, \ + .bpf_obj_file = "test_core_reloc_type_id.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_type_id" + +#define TYPE_ID_CASE(name, setup_fn) { \ + TYPE_ID_CASE_COMMON(name), \ + .output = STRUCT_TO_CHAR_PTR(core_reloc_type_id_output) {}, \ + .output_len = sizeof(struct core_reloc_type_id_output), \ + .setup = setup_fn, \ +} + +#define TYPE_ID_ERR_CASE(name) { \ + TYPE_ID_CASE_COMMON(name), \ + .fails = true, \ +} + +#define ENUMVAL_CASE_COMMON(name) \ + .case_name = #name, \ + .bpf_obj_file = "test_core_reloc_enumval.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_enumval" + +#define ENUMVAL_CASE(name, ...) { \ + ENUMVAL_CASE_COMMON(name), \ + .output = STRUCT_TO_CHAR_PTR(core_reloc_enumval_output) \ + __VA_ARGS__, \ + .output_len = sizeof(struct core_reloc_enumval_output), \ +} + +#define ENUMVAL_ERR_CASE(name) { \ + ENUMVAL_CASE_COMMON(name), \ + .fails = true, \ +} + +#define ENUM64VAL_CASE_COMMON(name) \ + .case_name = #name, \ + .bpf_obj_file = "test_core_reloc_enum64val.bpf.o", \ + .btf_src_file = "btf__core_reloc_" #name ".bpf.o", \ + .raw_tp_name = "sys_enter", \ + .prog_name = "test_core_enum64val" + +#define ENUM64VAL_CASE(name, ...) { \ + ENUM64VAL_CASE_COMMON(name), \ + .output = STRUCT_TO_CHAR_PTR(core_reloc_enum64val_output) \ + __VA_ARGS__, \ + .output_len = sizeof(struct core_reloc_enum64val_output), \ +} + +#define ENUM64VAL_ERR_CASE(name) { \ + ENUM64VAL_CASE_COMMON(name), \ + .fails = true, \ +} + +struct core_reloc_test_case; + +typedef int (*setup_test_fn)(struct core_reloc_test_case *test); +typedef int (*trigger_test_fn)(const struct core_reloc_test_case *test); + struct core_reloc_test_case { const char *case_name; const char *bpf_obj_file; @@ -262,15 +400,154 @@ struct core_reloc_test_case { const char *output; int output_len; bool fails; + bool run_btfgen_fails; + bool needs_testmod; bool relaxed_core_relocs; - bool direct_raw_tp; + const char *prog_name; + const char *raw_tp_name; + setup_test_fn setup; + trigger_test_fn trigger; }; -static struct core_reloc_test_case test_cases[] = { +static int find_btf_type(const struct btf *btf, const char *name, __u32 kind) +{ + int id; + + id = btf__find_by_name_kind(btf, name, kind); + if (CHECK(id <= 0, "find_type_id", "failed to find '%s', kind %d: %d\n", name, kind, id)) + return -1; + + return id; +} + +static int setup_type_id_case_local(struct core_reloc_test_case *test) +{ + struct core_reloc_type_id_output *exp = (void *)test->output; + struct btf *local_btf = btf__parse(test->bpf_obj_file, NULL); + struct btf *targ_btf = btf__parse(test->btf_src_file, NULL); + const struct btf_type *t; + const char *name; + int i; + + if (!ASSERT_OK_PTR(local_btf, "local_btf") || !ASSERT_OK_PTR(targ_btf, "targ_btf")) { + btf__free(local_btf); + btf__free(targ_btf); + return -EINVAL; + } + + exp->local_anon_struct = -1; + exp->local_anon_union = -1; + exp->local_anon_enum = -1; + exp->local_anon_func_proto_ptr = -1; + exp->local_anon_void_ptr = -1; + exp->local_anon_arr = -1; + + for (i = 1; i < btf__type_cnt(local_btf); i++) + { + t = btf__type_by_id(local_btf, i); + /* we are interested only in anonymous types */ + if (t->name_off) + continue; + + if (btf_is_struct(t) && btf_vlen(t) && + (name = btf__name_by_offset(local_btf, btf_members(t)[0].name_off)) && + strcmp(name, "marker_field") == 0) { + exp->local_anon_struct = i; + } else if (btf_is_union(t) && btf_vlen(t) && + (name = btf__name_by_offset(local_btf, btf_members(t)[0].name_off)) && + strcmp(name, "marker_field") == 0) { + exp->local_anon_union = i; + } else if (btf_is_enum(t) && btf_vlen(t) && + (name = btf__name_by_offset(local_btf, btf_enum(t)[0].name_off)) && + strcmp(name, "MARKER_ENUM_VAL") == 0) { + exp->local_anon_enum = i; + } else if (btf_is_ptr(t) && (t = btf__type_by_id(local_btf, t->type))) { + if (btf_is_func_proto(t) && (t = btf__type_by_id(local_btf, t->type)) && + btf_is_int(t) && (name = btf__name_by_offset(local_btf, t->name_off)) && + strcmp(name, "_Bool") == 0) { + /* ptr -> func_proto -> _Bool */ + exp->local_anon_func_proto_ptr = i; + } else if (btf_is_void(t)) { + /* ptr -> void */ + exp->local_anon_void_ptr = i; + } + } else if (btf_is_array(t) && (t = btf__type_by_id(local_btf, btf_array(t)->type)) && + btf_is_int(t) && (name = btf__name_by_offset(local_btf, t->name_off)) && + strcmp(name, "_Bool") == 0) { + /* _Bool[] */ + exp->local_anon_arr = i; + } + } + + exp->local_struct = find_btf_type(local_btf, "a_struct", BTF_KIND_STRUCT); + exp->local_union = find_btf_type(local_btf, "a_union", BTF_KIND_UNION); + exp->local_enum = find_btf_type(local_btf, "an_enum", BTF_KIND_ENUM); + exp->local_int = find_btf_type(local_btf, "int", BTF_KIND_INT); + exp->local_struct_typedef = find_btf_type(local_btf, "named_struct_typedef", BTF_KIND_TYPEDEF); + exp->local_func_proto_typedef = find_btf_type(local_btf, "func_proto_typedef", BTF_KIND_TYPEDEF); + exp->local_arr_typedef = find_btf_type(local_btf, "arr_typedef", BTF_KIND_TYPEDEF); + + btf__free(local_btf); + btf__free(targ_btf); + return 0; +} + +static int setup_type_id_case_success(struct core_reloc_test_case *test) { + struct core_reloc_type_id_output *exp = (void *)test->output; + struct btf *targ_btf; + int err; + + err = setup_type_id_case_local(test); + if (err) + return err; + + targ_btf = btf__parse(test->btf_src_file, NULL); + + exp->targ_struct = find_btf_type(targ_btf, "a_struct", BTF_KIND_STRUCT); + exp->targ_union = find_btf_type(targ_btf, "a_union", BTF_KIND_UNION); + exp->targ_enum = find_btf_type(targ_btf, "an_enum", BTF_KIND_ENUM); + exp->targ_int = find_btf_type(targ_btf, "int", BTF_KIND_INT); + exp->targ_struct_typedef = find_btf_type(targ_btf, "named_struct_typedef", BTF_KIND_TYPEDEF); + exp->targ_func_proto_typedef = find_btf_type(targ_btf, "func_proto_typedef", BTF_KIND_TYPEDEF); + exp->targ_arr_typedef = find_btf_type(targ_btf, "arr_typedef", BTF_KIND_TYPEDEF); + + btf__free(targ_btf); + return 0; +} + +static int setup_type_id_case_failure(struct core_reloc_test_case *test) +{ + struct core_reloc_type_id_output *exp = (void *)test->output; + int err; + + err = setup_type_id_case_local(test); + if (err) + return err; + + exp->targ_struct = 0; + exp->targ_union = 0; + exp->targ_enum = 0; + exp->targ_int = 0; + exp->targ_struct_typedef = 0; + exp->targ_func_proto_typedef = 0; + exp->targ_arr_typedef = 0; + + return 0; +} + +static int __trigger_module_test_read(const struct core_reloc_test_case *test) +{ + struct core_reloc_module_output *exp = (void *)test->output; + + trigger_module_test_read(exp->len); + return 0; +} + +static const struct core_reloc_test_case test_cases[] = { /* validate we can find kernel image and use its BTF for relocs */ { .case_name = "kernel", - .bpf_obj_file = "test_core_reloc_kernel.o", + .bpf_obj_file = "test_core_reloc_kernel.bpf.o", .btf_src_file = NULL, /* load from /lib/modules/$(uname -r) */ .input = "", .input_len = 0, @@ -278,10 +555,17 @@ static struct core_reloc_test_case test_cases[] = { .valid = { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, }, .comm = "test_progs", .comm_len = sizeof("test_progs"), + .local_task_struct_matches = true, }, .output_len = sizeof(struct core_reloc_kernel_output), + .raw_tp_name = "sys_enter", + .prog_name = "test_core_kernel", }, + /* validate we can find kernel module BTF types for relocs/attach */ + MODULES_CASE("module_probed", "test_core_module_probed", "bpf_testmod_test_read"), + MODULES_CASE("module_direct", "test_core_module_direct", NULL), + /* validate BPF program can use multiple flavors to match against * single target BTF type */ @@ -315,8 +599,7 @@ static struct core_reloc_test_case test_cases[] = { ARRAYS_ERR_CASE(arrays___err_too_small), ARRAYS_ERR_CASE(arrays___err_too_shallow), ARRAYS_ERR_CASE(arrays___err_non_array), - ARRAYS_ERR_CASE(arrays___err_wrong_val_type1), - ARRAYS_ERR_CASE(arrays___err_wrong_val_type2), + ARRAYS_ERR_CASE(arrays___err_wrong_val_type), ARRAYS_ERR_CASE(arrays___err_bad_zero_sz_arr), /* enum/ptr/int handling scenarios */ @@ -346,8 +629,8 @@ static struct core_reloc_test_case test_cases[] = { /* validate edge cases of capturing relocations */ { .case_name = "misc", - .bpf_obj_file = "test_core_reloc_misc.o", - .btf_src_file = "btf__core_reloc_misc.o", + .bpf_obj_file = "test_core_reloc_misc.bpf.o", + .btf_src_file = "btf__core_reloc_misc.bpf.o", .input = (const char *)&(struct core_reloc_misc_extensible[]){ { .a = 1 }, { .a = 2 }, /* not read */ @@ -360,11 +643,13 @@ static struct core_reloc_test_case test_cases[] = { .c = 0, /* BUG in clang, should be 3 */ }, .output_len = sizeof(struct core_reloc_misc_output), + .raw_tp_name = "sys_enter", + .prog_name = "test_core_misc", }, /* validate field existence checks */ { - EXISTENCE_CASE_COMMON(existence), + FIELD_EXISTS_CASE_COMMON(existence), .input = STRUCT_TO_CHAR_PTR(core_reloc_existence) { .a = 1, .b = 2, @@ -388,7 +673,7 @@ static struct core_reloc_test_case test_cases[] = { .output_len = sizeof(struct core_reloc_existence_output), }, { - EXISTENCE_CASE_COMMON(existence___minimal), + FIELD_EXISTS_CASE_COMMON(existence___minimal), .input = STRUCT_TO_CHAR_PTR(core_reloc_existence___minimal) { .a = 42, }, @@ -407,13 +692,25 @@ static struct core_reloc_test_case test_cases[] = { }, .output_len = sizeof(struct core_reloc_existence_output), }, - - EXISTENCE_ERR_CASE(existence__err_int_sz), - EXISTENCE_ERR_CASE(existence__err_int_type), - EXISTENCE_ERR_CASE(existence__err_int_kind), - EXISTENCE_ERR_CASE(existence__err_arr_kind), - EXISTENCE_ERR_CASE(existence__err_arr_value_type), - EXISTENCE_ERR_CASE(existence__err_struct_type), + { + FIELD_EXISTS_CASE_COMMON(existence___wrong_field_defs), + .input = STRUCT_TO_CHAR_PTR(core_reloc_existence___wrong_field_defs) { + }, + .input_len = sizeof(struct core_reloc_existence___wrong_field_defs), + .output = STRUCT_TO_CHAR_PTR(core_reloc_existence_output) { + .a_exists = 0, + .b_exists = 0, + .c_exists = 0, + .arr_exists = 0, + .s_exists = 0, + .a_value = 0xff000001u, + .b_value = 0xff000002u, + .c_value = 0xff000003u, + .arr_value = 0xff000004u, + .s_value = 0xff000005u, + }, + .output_len = sizeof(struct core_reloc_existence_output), + }, /* bitfield relocation checks */ BITFIELDS_CASE(bitfields, { @@ -449,14 +746,231 @@ static struct core_reloc_test_case test_cases[] = { }), BITFIELDS_ERR_CASE(bitfields___err_too_big_bitfield), - /* size relocation checks */ + /* field size and offset relocation checks */ SIZE_CASE(size), SIZE_CASE(size___diff_sz), + SIZE_CASE(size___diff_offs), + SIZE_ERR_CASE(size___err_ambiguous), + + /* validate type existence, match, and size relocations */ + TYPE_BASED_CASE(type_based, { + .struct_exists = 1, + .complex_struct_exists = 1, + .union_exists = 1, + .enum_exists = 1, + .typedef_named_struct_exists = 1, + .typedef_anon_struct_exists = 1, + .typedef_struct_ptr_exists = 1, + .typedef_int_exists = 1, + .typedef_enum_exists = 1, + .typedef_void_ptr_exists = 1, + .typedef_restrict_ptr_exists = 1, + .typedef_func_proto_exists = 1, + .typedef_arr_exists = 1, + + .struct_matches = 1, + .complex_struct_matches = 1, + .union_matches = 1, + .enum_matches = 1, + .typedef_named_struct_matches = 1, + .typedef_anon_struct_matches = 1, + .typedef_struct_ptr_matches = 1, + .typedef_int_matches = 1, + .typedef_enum_matches = 1, + .typedef_void_ptr_matches = 1, + .typedef_restrict_ptr_matches = 1, + .typedef_func_proto_matches = 1, + .typedef_arr_matches = 1, + + .struct_sz = sizeof(struct a_struct), + .union_sz = sizeof(union a_union), + .enum_sz = sizeof(enum an_enum), + .typedef_named_struct_sz = sizeof(named_struct_typedef), + .typedef_anon_struct_sz = sizeof(anon_struct_typedef), + .typedef_struct_ptr_sz = sizeof(struct_ptr_typedef), + .typedef_int_sz = sizeof(int_typedef), + .typedef_enum_sz = sizeof(enum_typedef), + .typedef_void_ptr_sz = sizeof(void_ptr_typedef), + .typedef_func_proto_sz = sizeof(func_proto_typedef), + .typedef_arr_sz = sizeof(arr_typedef), + }), + TYPE_BASED_CASE(type_based___all_missing, { + /* all zeros */ + }), + TYPE_BASED_CASE(type_based___diff, { + .struct_exists = 1, + .complex_struct_exists = 1, + .union_exists = 1, + .enum_exists = 1, + .typedef_named_struct_exists = 1, + .typedef_anon_struct_exists = 1, + .typedef_struct_ptr_exists = 1, + .typedef_int_exists = 1, + .typedef_enum_exists = 1, + .typedef_void_ptr_exists = 1, + .typedef_func_proto_exists = 1, + .typedef_arr_exists = 1, + + .struct_matches = 1, + .complex_struct_matches = 1, + .union_matches = 1, + .enum_matches = 1, + .typedef_named_struct_matches = 1, + .typedef_anon_struct_matches = 1, + .typedef_struct_ptr_matches = 1, + .typedef_int_matches = 0, + .typedef_enum_matches = 1, + .typedef_void_ptr_matches = 1, + .typedef_func_proto_matches = 0, + .typedef_arr_matches = 0, + + .struct_sz = sizeof(struct a_struct___diff), + .union_sz = sizeof(union a_union___diff), + .enum_sz = sizeof(enum an_enum___diff), + .typedef_named_struct_sz = sizeof(named_struct_typedef___diff), + .typedef_anon_struct_sz = sizeof(anon_struct_typedef___diff), + .typedef_struct_ptr_sz = sizeof(struct_ptr_typedef___diff), + .typedef_int_sz = sizeof(int_typedef___diff), + .typedef_enum_sz = sizeof(enum_typedef___diff), + .typedef_void_ptr_sz = sizeof(void_ptr_typedef___diff), + .typedef_func_proto_sz = sizeof(func_proto_typedef___diff), + .typedef_arr_sz = sizeof(arr_typedef___diff), + }), + TYPE_BASED_CASE(type_based___diff_sz, { + .struct_exists = 1, + .union_exists = 1, + .enum_exists = 1, + .typedef_named_struct_exists = 1, + .typedef_anon_struct_exists = 1, + .typedef_struct_ptr_exists = 1, + .typedef_int_exists = 1, + .typedef_enum_exists = 1, + .typedef_void_ptr_exists = 1, + .typedef_func_proto_exists = 1, + .typedef_arr_exists = 1, + + .struct_matches = 0, + .union_matches = 0, + .enum_matches = 0, + .typedef_named_struct_matches = 0, + .typedef_anon_struct_matches = 0, + .typedef_struct_ptr_matches = 1, + .typedef_int_matches = 0, + .typedef_enum_matches = 0, + .typedef_void_ptr_matches = 1, + .typedef_func_proto_matches = 0, + .typedef_arr_matches = 0, + + .struct_sz = sizeof(struct a_struct___diff_sz), + .union_sz = sizeof(union a_union___diff_sz), + .enum_sz = sizeof(enum an_enum___diff_sz), + .typedef_named_struct_sz = sizeof(named_struct_typedef___diff_sz), + .typedef_anon_struct_sz = sizeof(anon_struct_typedef___diff_sz), + .typedef_struct_ptr_sz = sizeof(struct_ptr_typedef___diff_sz), + .typedef_int_sz = sizeof(int_typedef___diff_sz), + .typedef_enum_sz = sizeof(enum_typedef___diff_sz), + .typedef_void_ptr_sz = sizeof(void_ptr_typedef___diff_sz), + .typedef_func_proto_sz = sizeof(func_proto_typedef___diff_sz), + .typedef_arr_sz = sizeof(arr_typedef___diff_sz), + }), + TYPE_BASED_CASE(type_based___incompat, { + .enum_exists = 1, + .enum_matches = 1, + .enum_sz = sizeof(enum an_enum), + }), + TYPE_BASED_CASE(type_based___fn_wrong_args, { + .struct_exists = 1, + .struct_matches = 1, + .struct_sz = sizeof(struct a_struct), + }), + + /* BTF_TYPE_ID_LOCAL/BTF_TYPE_ID_TARGET tests */ + TYPE_ID_CASE(type_id, setup_type_id_case_success), + TYPE_ID_CASE(type_id___missing_targets, setup_type_id_case_failure), + + /* Enumerator value existence and value relocations */ + ENUMVAL_CASE(enumval, { + .named_val1_exists = true, + .named_val2_exists = true, + .named_val3_exists = true, + .anon_val1_exists = true, + .anon_val2_exists = true, + .anon_val3_exists = true, + .named_val1 = 1, + .named_val2 = 2, + .anon_val1 = 0x10, + .anon_val2 = 0x20, + }), + ENUMVAL_CASE(enumval___diff, { + .named_val1_exists = true, + .named_val2_exists = true, + .named_val3_exists = true, + .anon_val1_exists = true, + .anon_val2_exists = true, + .anon_val3_exists = true, + .named_val1 = 101, + .named_val2 = 202, + .anon_val1 = 0x11, + .anon_val2 = 0x22, + }), + ENUMVAL_CASE(enumval___val3_missing, { + .named_val1_exists = true, + .named_val2_exists = true, + .named_val3_exists = false, + .anon_val1_exists = true, + .anon_val2_exists = true, + .anon_val3_exists = false, + .named_val1 = 111, + .named_val2 = 222, + .anon_val1 = 0x111, + .anon_val2 = 0x222, + }), + ENUMVAL_ERR_CASE(enumval___err_missing), + + /* 64bit enumerator value existence and value relocations */ + ENUM64VAL_CASE(enum64val, { + .unsigned_val1_exists = true, + .unsigned_val2_exists = true, + .unsigned_val3_exists = true, + .signed_val1_exists = true, + .signed_val2_exists = true, + .signed_val3_exists = true, + .unsigned_val1 = 0x1ffffffffULL, + .unsigned_val2 = 0x2, + .signed_val1 = 0x1ffffffffLL, + .signed_val2 = -2, + }), + ENUM64VAL_CASE(enum64val___diff, { + .unsigned_val1_exists = true, + .unsigned_val2_exists = true, + .unsigned_val3_exists = true, + .signed_val1_exists = true, + .signed_val2_exists = true, + .signed_val3_exists = true, + .unsigned_val1 = 0x101ffffffffULL, + .unsigned_val2 = 0x202ffffffffULL, + .signed_val1 = -101, + .signed_val2 = -202, + }), + ENUM64VAL_CASE(enum64val___val3_missing, { + .unsigned_val1_exists = true, + .unsigned_val2_exists = true, + .unsigned_val3_exists = false, + .signed_val1_exists = true, + .signed_val2_exists = true, + .signed_val3_exists = false, + .unsigned_val1 = 0x111ffffffffULL, + .unsigned_val2 = 0x222, + .signed_val1 = 0x111ffffffffLL, + .signed_val2 = -222, + }), + ENUM64VAL_ERR_CASE(enum64val___err_missing), }; struct data { char in[256]; char out[256]; + bool skip; uint64_t my_pid_tgid; }; @@ -466,13 +980,27 @@ static size_t roundup_page(size_t sz) return (sz + page_size - 1) / page_size * page_size; } -void test_core_reloc(void) +static int run_btfgen(const char *src_btf, const char *dst_btf, const char *objpath) +{ + char command[4096]; + int n; + + n = snprintf(command, sizeof(command), + "./bpftool gen min_core_btf %s %s %s", + src_btf, dst_btf, objpath); + if (n < 0 || n >= sizeof(command)) + return -1; + + return system(command); +} + +static void run_core_reloc_tests(bool use_btfgen) { const size_t mmap_sz = roundup_page(sizeof(struct data)); - struct bpf_object_load_attr load_attr = {}; - struct core_reloc_test_case *test_case; + DECLARE_LIBBPF_OPTS(bpf_object_open_opts, open_opts); + struct core_reloc_test_case *test_case, test_case_copy; const char *tp_name, *probe_name; - int err, duration = 0, i, equal; + int err, i, equal, fd; struct bpf_link *link = NULL; struct bpf_map *data_map; struct bpf_program *prog; @@ -484,49 +1012,71 @@ void test_core_reloc(void) my_pid_tgid = getpid() | ((uint64_t)syscall(SYS_gettid) << 32); for (i = 0; i < ARRAY_SIZE(test_cases); i++) { - test_case = &test_cases[i]; + char btf_file[] = "/tmp/core_reloc.btf.XXXXXX"; + + test_case_copy = test_cases[i]; + test_case = &test_case_copy; + if (!test__start_subtest(test_case->case_name)) continue; - DECLARE_LIBBPF_OPTS(bpf_object_open_opts, opts, - .relaxed_core_relocs = test_case->relaxed_core_relocs, - ); - - obj = bpf_object__open_file(test_case->bpf_obj_file, &opts); - if (CHECK(IS_ERR(obj), "obj_open", "failed to open '%s': %ld\n", - test_case->bpf_obj_file, PTR_ERR(obj))) + if (test_case->needs_testmod && !env.has_testmod) { + test__skip(); continue; + } - /* for typed raw tracepoints, NULL should be specified */ - if (test_case->direct_raw_tp) { - probe_name = "tp_btf/sys_enter"; - tp_name = NULL; - } else { - probe_name = "raw_tracepoint/sys_enter"; - tp_name = "sys_enter"; + /* generate a "minimal" BTF file and use it as source */ + if (use_btfgen) { + + if (!test_case->btf_src_file || test_case->run_btfgen_fails) { + test__skip(); + continue; + } + + fd = mkstemp(btf_file); + if (!ASSERT_GE(fd, 0, "btf_tmp")) + continue; + close(fd); /* we only need the path */ + err = run_btfgen(test_case->btf_src_file, btf_file, + test_case->bpf_obj_file); + if (!ASSERT_OK(err, "run_btfgen")) + continue; + + test_case->btf_src_file = btf_file; + } + + if (test_case->setup) { + err = test_case->setup(test_case); + if (CHECK(err, "test_setup", "test #%d setup failed: %d\n", i, err)) + continue; + } + + if (test_case->btf_src_file) { + err = access(test_case->btf_src_file, R_OK); + if (!ASSERT_OK(err, "btf_src_file")) + continue; } - prog = bpf_object__find_program_by_title(obj, probe_name); + open_opts.btf_custom_path = test_case->btf_src_file; + obj = bpf_object__open_file(test_case->bpf_obj_file, &open_opts); + if (!ASSERT_OK_PTR(obj, "obj_open")) + goto cleanup; + + probe_name = test_case->prog_name; + tp_name = test_case->raw_tp_name; /* NULL for tp_btf */ + prog = bpf_object__find_program_by_name(obj, probe_name); if (CHECK(!prog, "find_probe", "prog '%s' not found\n", probe_name)) goto cleanup; - load_attr.obj = obj; - load_attr.log_level = 0; - load_attr.target_btf_path = test_case->btf_src_file; - err = bpf_object__load_xattr(&load_attr); - if (test_case->fails) { - CHECK(!err, "obj_load_fail", - "should fail to load prog '%s'\n", probe_name); + err = bpf_object__load(obj); + if (err) { + if (!test_case->fails) + ASSERT_OK(err, "obj_load"); goto cleanup; - } else { - if (CHECK(err, "obj_load", - "failed to load prog '%s': %d\n", - probe_name, err)) - goto cleanup; } - data_map = bpf_object__find_map_by_name(obj, "test_cor.bss"); + data_map = bpf_object__find_map_by_name(obj, ".bss"); if (CHECK(!data_map, "find_data_map", "data map not found\n")) goto cleanup; @@ -540,16 +1090,29 @@ void test_core_reloc(void) data = mmap_data; memset(mmap_data, 0, sizeof(*data)); - memcpy(data->in, test_case->input, test_case->input_len); + if (test_case->input_len) + memcpy(data->in, test_case->input, test_case->input_len); data->my_pid_tgid = my_pid_tgid; link = bpf_program__attach_raw_tracepoint(prog, tp_name); - if (CHECK(IS_ERR(link), "attach_raw_tp", "err %ld\n", - PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_raw_tp")) goto cleanup; /* trigger test run */ - usleep(1); + if (test_case->trigger) { + if (!ASSERT_OK(test_case->trigger(test_case), "test_trigger")) + goto cleanup; + } else { + usleep(1); + } + + if (data->skip) { + test__skip(); + goto cleanup; + } + + if (!ASSERT_FALSE(test_case->fails, "obj_load_should_fail")) + goto cleanup; equal = memcmp(data->out, test_case->output, test_case->output_len) == 0; @@ -573,10 +1136,20 @@ cleanup: CHECK_FAIL(munmap(mmap_data, mmap_sz)); mmap_data = NULL; } - if (!IS_ERR_OR_NULL(link)) { - bpf_link__destroy(link); - link = NULL; - } + if (use_btfgen) + remove(test_case->btf_src_file); + bpf_link__destroy(link); + link = NULL; bpf_object__close(obj); } } + +void test_core_reloc(void) +{ + run_core_reloc_tests(false); +} + +void test_core_reloc_btfgen(void) +{ + run_core_reloc_tests(true); +} diff --git a/tools/testing/selftests/bpf/prog_tests/core_retro.c b/tools/testing/selftests/bpf/prog_tests/core_retro.c index 6acb0e94d4d7..4a2c256c8db6 100644 --- a/tools/testing/selftests/bpf/prog_tests/core_retro.c +++ b/tools/testing/selftests/bpf/prog_tests/core_retro.c @@ -6,31 +6,32 @@ void test_core_retro(void) { - int err, zero = 0, res, duration = 0, my_pid = getpid(); + int err, zero = 0, res, my_pid = getpid(); struct test_core_retro *skel; /* load program */ skel = test_core_retro__open_and_load(); - if (CHECK(!skel, "skel_load", "skeleton open/load failed\n")) + if (!ASSERT_OK_PTR(skel, "skel_load")) goto out_close; - err = bpf_map_update_elem(bpf_map__fd(skel->maps.exp_tgid_map), &zero, &my_pid, 0); - if (CHECK(err, "map_update", "failed to set expected PID: %d\n", errno)) + err = bpf_map__update_elem(skel->maps.exp_tgid_map, &zero, sizeof(zero), + &my_pid, sizeof(my_pid), 0); + if (!ASSERT_OK(err, "map_update")) goto out_close; /* attach probe */ err = test_core_retro__attach(skel); - if (CHECK(err, "attach_kprobe", "err %d\n", err)) + if (!ASSERT_OK(err, "attach_kprobe")) goto out_close; /* trigger */ usleep(1); - err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.results), &zero, &res); - if (CHECK(err, "map_lookup", "failed to lookup result: %d\n", errno)) + err = bpf_map__lookup_elem(skel->maps.results, &zero, sizeof(zero), &res, sizeof(res), 0); + if (!ASSERT_OK(err, "map_lookup")) goto out_close; - CHECK(res != my_pid, "pid_check", "got %d != exp %d\n", res, my_pid); + ASSERT_EQ(res, my_pid, "pid_check"); out_close: test_core_retro__destroy(skel); diff --git a/tools/testing/selftests/bpf/prog_tests/cpumask.c b/tools/testing/selftests/bpf/prog_tests/cpumask.c new file mode 100644 index 000000000000..ecf89df78109 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/cpumask.c @@ -0,0 +1,77 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include "cpumask_failure.skel.h" +#include "cpumask_success.skel.h" + +static const char * const cpumask_success_testcases[] = { + "test_alloc_free_cpumask", + "test_set_clear_cpu", + "test_setall_clear_cpu", + "test_first_firstzero_cpu", + "test_firstand_nocpu", + "test_test_and_set_clear", + "test_and_or_xor", + "test_intersects_subset", + "test_copy_any_anyand", + "test_insert_leave", + "test_insert_remove_release", + "test_global_mask_rcu", + "test_cpumask_weight", +}; + +static void verify_success(const char *prog_name) +{ + struct cpumask_success *skel; + struct bpf_program *prog; + struct bpf_link *link = NULL; + pid_t child_pid; + int status, err; + + skel = cpumask_success__open(); + if (!ASSERT_OK_PTR(skel, "cpumask_success__open")) + return; + + skel->bss->pid = getpid(); + skel->bss->nr_cpus = libbpf_num_possible_cpus(); + + err = cpumask_success__load(skel); + if (!ASSERT_OK(err, "cpumask_success__load")) + goto cleanup; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto cleanup; + + link = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(link, "bpf_program__attach")) + goto cleanup; + + child_pid = fork(); + if (!ASSERT_GT(child_pid, -1, "child_pid")) + goto cleanup; + if (child_pid == 0) + _exit(0); + waitpid(child_pid, &status, 0); + ASSERT_OK(skel->bss->err, "post_wait_err"); + +cleanup: + bpf_link__destroy(link); + cpumask_success__destroy(skel); +} + +void test_cpumask(void) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(cpumask_success_testcases); i++) { + if (!test__start_subtest(cpumask_success_testcases[i])) + continue; + + verify_success(cpumask_success_testcases[i]); + } + + RUN_TESTS(cpumask_success); + RUN_TESTS(cpumask_failure); +} diff --git a/tools/testing/selftests/bpf/prog_tests/crypto_sanity.c b/tools/testing/selftests/bpf/prog_tests/crypto_sanity.c new file mode 100644 index 000000000000..b1a3a49a822a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/crypto_sanity.c @@ -0,0 +1,197 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ + +#include <sys/types.h> +#include <sys/socket.h> +#include <net/if.h> +#include <linux/in6.h> +#include <linux/if_alg.h> + +#include "test_progs.h" +#include "network_helpers.h" +#include "crypto_sanity.skel.h" +#include "crypto_basic.skel.h" + +#define NS_TEST "crypto_sanity_ns" +#define IPV6_IFACE_ADDR "face::1" +static const unsigned char crypto_key[] = "testtest12345678"; +static const char plain_text[] = "stringtoencrypt0"; +static int opfd = -1, tfmfd = -1; +static const char algo[] = "ecb(aes)"; +static int init_afalg(void) +{ + struct sockaddr_alg sa = { + .salg_family = AF_ALG, + .salg_type = "skcipher", + .salg_name = "ecb(aes)" + }; + + tfmfd = socket(AF_ALG, SOCK_SEQPACKET, 0); + if (tfmfd == -1) + return errno; + if (bind(tfmfd, (struct sockaddr *)&sa, sizeof(sa)) == -1) + return errno; + if (setsockopt(tfmfd, SOL_ALG, ALG_SET_KEY, crypto_key, 16) == -1) + return errno; + opfd = accept(tfmfd, NULL, 0); + if (opfd == -1) + return errno; + return 0; +} + +static void deinit_afalg(void) +{ + if (tfmfd != -1) + close(tfmfd); + if (opfd != -1) + close(opfd); +} + +static void do_crypt_afalg(const void *src, void *dst, int size, bool encrypt) +{ + struct msghdr msg = {}; + struct cmsghdr *cmsg; + char cbuf[CMSG_SPACE(4)] = {0}; + struct iovec iov; + + msg.msg_control = cbuf; + msg.msg_controllen = sizeof(cbuf); + + cmsg = CMSG_FIRSTHDR(&msg); + cmsg->cmsg_level = SOL_ALG; + cmsg->cmsg_type = ALG_SET_OP; + cmsg->cmsg_len = CMSG_LEN(4); + *(__u32 *)CMSG_DATA(cmsg) = encrypt ? ALG_OP_ENCRYPT : ALG_OP_DECRYPT; + + iov.iov_base = (char *)src; + iov.iov_len = size; + + msg.msg_iov = &iov; + msg.msg_iovlen = 1; + + sendmsg(opfd, &msg, 0); + read(opfd, dst, size); +} + +void test_crypto_basic(void) +{ + RUN_TESTS(crypto_basic); +} + +void test_crypto_sanity(void) +{ + LIBBPF_OPTS(bpf_tc_hook, qdisc_hook, .attach_point = BPF_TC_EGRESS); + LIBBPF_OPTS(bpf_tc_opts, tc_attach_enc); + LIBBPF_OPTS(bpf_tc_opts, tc_attach_dec); + LIBBPF_OPTS(bpf_test_run_opts, opts); + struct nstoken *nstoken = NULL; + struct crypto_sanity *skel; + char afalg_plain[16] = {0}; + char afalg_dst[16] = {0}; + struct sockaddr_in6 addr; + int sockfd, err, pfd; + socklen_t addrlen; + u16 udp_test_port; + + skel = crypto_sanity__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel open")) + return; + + SYS(fail, "ip netns add %s", NS_TEST); + SYS(fail, "ip -net %s -6 addr add %s/128 dev lo nodad", NS_TEST, IPV6_IFACE_ADDR); + SYS(fail, "ip -net %s link set dev lo up", NS_TEST); + + nstoken = open_netns(NS_TEST); + if (!ASSERT_OK_PTR(nstoken, "open_netns")) + goto fail; + + err = init_afalg(); + if (!ASSERT_OK(err, "AF_ALG init fail")) + goto fail; + + qdisc_hook.ifindex = if_nametoindex("lo"); + if (!ASSERT_GT(qdisc_hook.ifindex, 0, "if_nametoindex lo")) + goto fail; + + skel->bss->key_len = 16; + skel->bss->authsize = 0; + udp_test_port = skel->data->udp_test_port; + memcpy(skel->bss->key, crypto_key, sizeof(crypto_key)); + snprintf(skel->bss->algo, 128, "%s", algo); + pfd = bpf_program__fd(skel->progs.skb_crypto_setup); + if (!ASSERT_GT(pfd, 0, "skb_crypto_setup fd")) + goto fail; + + err = bpf_prog_test_run_opts(pfd, &opts); + if (!ASSERT_OK(err, "skb_crypto_setup") || + !ASSERT_OK(opts.retval, "skb_crypto_setup retval")) + goto fail; + + if (!ASSERT_OK(skel->bss->status, "skb_crypto_setup status")) + goto fail; + + err = bpf_tc_hook_create(&qdisc_hook); + if (!ASSERT_OK(err, "create qdisc hook")) + goto fail; + + addrlen = sizeof(addr); + err = make_sockaddr(AF_INET6, IPV6_IFACE_ADDR, udp_test_port, + (void *)&addr, &addrlen); + if (!ASSERT_OK(err, "make_sockaddr")) + goto fail; + + tc_attach_enc.prog_fd = bpf_program__fd(skel->progs.encrypt_sanity); + err = bpf_tc_attach(&qdisc_hook, &tc_attach_enc); + if (!ASSERT_OK(err, "attach encrypt filter")) + goto fail; + + sockfd = socket(AF_INET6, SOCK_DGRAM, 0); + if (!ASSERT_NEQ(sockfd, -1, "encrypt socket")) + goto fail; + err = sendto(sockfd, plain_text, sizeof(plain_text), 0, (void *)&addr, addrlen); + close(sockfd); + if (!ASSERT_EQ(err, sizeof(plain_text), "encrypt send")) + goto fail; + + do_crypt_afalg(plain_text, afalg_dst, sizeof(afalg_dst), true); + + if (!ASSERT_OK(skel->bss->status, "encrypt status")) + goto fail; + if (!ASSERT_STRNEQ(skel->bss->dst, afalg_dst, sizeof(afalg_dst), "encrypt AF_ALG")) + goto fail; + + tc_attach_enc.flags = tc_attach_enc.prog_fd = tc_attach_enc.prog_id = 0; + err = bpf_tc_detach(&qdisc_hook, &tc_attach_enc); + if (!ASSERT_OK(err, "bpf_tc_detach encrypt")) + goto fail; + + tc_attach_dec.prog_fd = bpf_program__fd(skel->progs.decrypt_sanity); + err = bpf_tc_attach(&qdisc_hook, &tc_attach_dec); + if (!ASSERT_OK(err, "attach decrypt filter")) + goto fail; + + sockfd = socket(AF_INET6, SOCK_DGRAM, 0); + if (!ASSERT_NEQ(sockfd, -1, "decrypt socket")) + goto fail; + err = sendto(sockfd, afalg_dst, sizeof(afalg_dst), 0, (void *)&addr, addrlen); + close(sockfd); + if (!ASSERT_EQ(err, sizeof(afalg_dst), "decrypt send")) + goto fail; + + do_crypt_afalg(afalg_dst, afalg_plain, sizeof(afalg_plain), false); + + if (!ASSERT_OK(skel->bss->status, "decrypt status")) + goto fail; + if (!ASSERT_STRNEQ(skel->bss->dst, afalg_plain, sizeof(afalg_plain), "decrypt AF_ALG")) + goto fail; + + tc_attach_dec.flags = tc_attach_dec.prog_fd = tc_attach_dec.prog_id = 0; + err = bpf_tc_detach(&qdisc_hook, &tc_attach_dec); + ASSERT_OK(err, "bpf_tc_detach decrypt"); + +fail: + close_netns(nstoken); + deinit_afalg(); + SYS_NOFAIL("ip netns del " NS_TEST " &> /dev/null"); + crypto_sanity__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/ctx_rewrite.c b/tools/testing/selftests/bpf/prog_tests/ctx_rewrite.c new file mode 100644 index 000000000000..3b7c57fe55a5 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/ctx_rewrite.c @@ -0,0 +1,873 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <limits.h> +#include <stdio.h> +#include <string.h> +#include <ctype.h> +#include <regex.h> +#include <test_progs.h> + +#include "bpf/btf.h" +#include "bpf_util.h" +#include "linux/filter.h" +#include "disasm.h" + +#define MAX_PROG_TEXT_SZ (32 * 1024) + +/* The code in this file serves the sole purpose of executing test cases + * specified in the test_cases array. Each test case specifies a program + * type, context field offset, and disassembly patterns that correspond + * to read and write instructions generated by + * verifier.c:convert_ctx_access() for accessing that field. + * + * For each test case, up to three programs are created: + * - One that uses BPF_LDX_MEM to read the context field. + * - One that uses BPF_STX_MEM to write to the context field. + * - One that uses BPF_ST_MEM to write to the context field. + * + * The disassembly of each program is then compared with the pattern + * specified in the test case. + */ +struct test_case { + char *name; + enum bpf_prog_type prog_type; + enum bpf_attach_type expected_attach_type; + int field_offset; + int field_sz; + /* Program generated for BPF_ST_MEM uses value 42 by default, + * this field allows to specify custom value. + */ + struct { + bool use; + int value; + } st_value; + /* Pattern for BPF_LDX_MEM(field_sz, dst, ctx, field_offset) */ + char *read; + /* Pattern for BPF_STX_MEM(field_sz, ctx, src, field_offset) and + * BPF_ST_MEM (field_sz, ctx, src, field_offset) + */ + char *write; + /* Pattern for BPF_ST_MEM(field_sz, ctx, src, field_offset), + * takes priority over `write`. + */ + char *write_st; + /* Pattern for BPF_STX_MEM (field_sz, ctx, src, field_offset), + * takes priority over `write`. + */ + char *write_stx; +}; + +#define N(_prog_type, type, field, name_extra...) \ + .name = #_prog_type "." #field name_extra, \ + .prog_type = BPF_PROG_TYPE_##_prog_type, \ + .field_offset = offsetof(type, field), \ + .field_sz = sizeof(typeof(((type *)NULL)->field)) + +static struct test_case test_cases[] = { +/* Sign extension on s390 changes the pattern */ +#if defined(__x86_64__) || defined(__aarch64__) + { + N(SCHED_CLS, struct __sk_buff, tstamp), + .read = "r11 = *(u8 *)($ctx + sk_buff::__mono_tc_offset);" + "w11 &= 3;" + "if w11 != 0x3 goto pc+2;" + "$dst = 0;" + "goto pc+1;" + "$dst = *(u64 *)($ctx + sk_buff::tstamp);", + .write = "r11 = *(u8 *)($ctx + sk_buff::__mono_tc_offset);" + "if w11 & 0x2 goto pc+1;" + "goto pc+2;" + "w11 &= -2;" + "*(u8 *)($ctx + sk_buff::__mono_tc_offset) = r11;" + "*(u64 *)($ctx + sk_buff::tstamp) = $src;", + }, +#endif + { + N(SCHED_CLS, struct __sk_buff, priority), + .read = "$dst = *(u32 *)($ctx + sk_buff::priority);", + .write = "*(u32 *)($ctx + sk_buff::priority) = $src;", + }, + { + N(SCHED_CLS, struct __sk_buff, mark), + .read = "$dst = *(u32 *)($ctx + sk_buff::mark);", + .write = "*(u32 *)($ctx + sk_buff::mark) = $src;", + }, + { + N(SCHED_CLS, struct __sk_buff, cb[0]), + .read = "$dst = *(u32 *)($ctx + $(sk_buff::cb + qdisc_skb_cb::data));", + .write = "*(u32 *)($ctx + $(sk_buff::cb + qdisc_skb_cb::data)) = $src;", + }, + { + N(SCHED_CLS, struct __sk_buff, tc_classid), + .read = "$dst = *(u16 *)($ctx + $(sk_buff::cb + qdisc_skb_cb::tc_classid));", + .write = "*(u16 *)($ctx + $(sk_buff::cb + qdisc_skb_cb::tc_classid)) = $src;", + }, + { + N(SCHED_CLS, struct __sk_buff, tc_index), + .read = "$dst = *(u16 *)($ctx + sk_buff::tc_index);", + .write = "*(u16 *)($ctx + sk_buff::tc_index) = $src;", + }, + { + N(SCHED_CLS, struct __sk_buff, queue_mapping), + .read = "$dst = *(u16 *)($ctx + sk_buff::queue_mapping);", + .write_stx = "if $src >= 0xffff goto pc+1;" + "*(u16 *)($ctx + sk_buff::queue_mapping) = $src;", + .write_st = "*(u16 *)($ctx + sk_buff::queue_mapping) = $src;", + }, + { + /* This is a corner case in filter.c:bpf_convert_ctx_access() */ + N(SCHED_CLS, struct __sk_buff, queue_mapping, ".ushrt_max"), + .st_value = { true, USHRT_MAX }, + .write_st = "goto pc+0;", + }, + { + N(CGROUP_SOCK, struct bpf_sock, bound_dev_if), + .read = "$dst = *(u32 *)($ctx + sock_common::skc_bound_dev_if);", + .write = "*(u32 *)($ctx + sock_common::skc_bound_dev_if) = $src;", + }, + { + N(CGROUP_SOCK, struct bpf_sock, mark), + .read = "$dst = *(u32 *)($ctx + sock::sk_mark);", + .write = "*(u32 *)($ctx + sock::sk_mark) = $src;", + }, + { + N(CGROUP_SOCK, struct bpf_sock, priority), + .read = "$dst = *(u32 *)($ctx + sock::sk_priority);", + .write = "*(u32 *)($ctx + sock::sk_priority) = $src;", + }, + { + N(SOCK_OPS, struct bpf_sock_ops, replylong[0]), + .read = "$dst = *(u32 *)($ctx + bpf_sock_ops_kern::replylong);", + .write = "*(u32 *)($ctx + bpf_sock_ops_kern::replylong) = $src;", + }, + { + N(CGROUP_SYSCTL, struct bpf_sysctl, file_pos), +#if __BYTE_ORDER == __LITTLE_ENDIAN + .read = "$dst = *(u64 *)($ctx + bpf_sysctl_kern::ppos);" + "$dst = *(u32 *)($dst +0);", + .write = "*(u64 *)($ctx + bpf_sysctl_kern::tmp_reg) = r9;" + "r9 = *(u64 *)($ctx + bpf_sysctl_kern::ppos);" + "*(u32 *)(r9 +0) = $src;" + "r9 = *(u64 *)($ctx + bpf_sysctl_kern::tmp_reg);", +#else + .read = "$dst = *(u64 *)($ctx + bpf_sysctl_kern::ppos);" + "$dst = *(u32 *)($dst +4);", + .write = "*(u64 *)($ctx + bpf_sysctl_kern::tmp_reg) = r9;" + "r9 = *(u64 *)($ctx + bpf_sysctl_kern::ppos);" + "*(u32 *)(r9 +4) = $src;" + "r9 = *(u64 *)($ctx + bpf_sysctl_kern::tmp_reg);", +#endif + }, + { + N(CGROUP_SOCKOPT, struct bpf_sockopt, sk), + .read = "$dst = *(u64 *)($ctx + bpf_sockopt_kern::sk);", + .expected_attach_type = BPF_CGROUP_GETSOCKOPT, + }, + { + N(CGROUP_SOCKOPT, struct bpf_sockopt, level), + .read = "$dst = *(u32 *)($ctx + bpf_sockopt_kern::level);", + .write = "*(u32 *)($ctx + bpf_sockopt_kern::level) = $src;", + .expected_attach_type = BPF_CGROUP_SETSOCKOPT, + }, + { + N(CGROUP_SOCKOPT, struct bpf_sockopt, optname), + .read = "$dst = *(u32 *)($ctx + bpf_sockopt_kern::optname);", + .write = "*(u32 *)($ctx + bpf_sockopt_kern::optname) = $src;", + .expected_attach_type = BPF_CGROUP_SETSOCKOPT, + }, + { + N(CGROUP_SOCKOPT, struct bpf_sockopt, optlen), + .read = "$dst = *(u32 *)($ctx + bpf_sockopt_kern::optlen);", + .write = "*(u32 *)($ctx + bpf_sockopt_kern::optlen) = $src;", + .expected_attach_type = BPF_CGROUP_SETSOCKOPT, + }, + { + N(CGROUP_SOCKOPT, struct bpf_sockopt, retval), + .read = "$dst = *(u64 *)($ctx + bpf_sockopt_kern::current_task);" + "$dst = *(u64 *)($dst + task_struct::bpf_ctx);" + "$dst = *(u32 *)($dst + bpf_cg_run_ctx::retval);", + .write = "*(u64 *)($ctx + bpf_sockopt_kern::tmp_reg) = r9;" + "r9 = *(u64 *)($ctx + bpf_sockopt_kern::current_task);" + "r9 = *(u64 *)(r9 + task_struct::bpf_ctx);" + "*(u32 *)(r9 + bpf_cg_run_ctx::retval) = $src;" + "r9 = *(u64 *)($ctx + bpf_sockopt_kern::tmp_reg);", + .expected_attach_type = BPF_CGROUP_GETSOCKOPT, + }, + { + N(CGROUP_SOCKOPT, struct bpf_sockopt, optval), + .read = "$dst = *(u64 *)($ctx + bpf_sockopt_kern::optval);", + .expected_attach_type = BPF_CGROUP_GETSOCKOPT, + }, + { + N(CGROUP_SOCKOPT, struct bpf_sockopt, optval_end), + .read = "$dst = *(u64 *)($ctx + bpf_sockopt_kern::optval_end);", + .expected_attach_type = BPF_CGROUP_GETSOCKOPT, + }, +}; + +#undef N + +static regex_t *ident_regex; +static regex_t *field_regex; + +static char *skip_space(char *str) +{ + while (*str && isspace(*str)) + ++str; + return str; +} + +static char *skip_space_and_semi(char *str) +{ + while (*str && (isspace(*str) || *str == ';')) + ++str; + return str; +} + +static char *match_str(char *str, char *prefix) +{ + while (*str && *prefix && *str == *prefix) { + ++str; + ++prefix; + } + if (*prefix) + return NULL; + return str; +} + +static char *match_number(char *str, int num) +{ + char *next; + int snum = strtol(str, &next, 10); + + if (next - str == 0 || num != snum) + return NULL; + + return next; +} + +static int find_field_offset_aux(struct btf *btf, int btf_id, char *field_name, int off) +{ + const struct btf_type *type = btf__type_by_id(btf, btf_id); + const struct btf_member *m; + __u16 mnum; + int i; + + if (!type) { + PRINT_FAIL("Can't find btf_type for id %d\n", btf_id); + return -1; + } + + if (!btf_is_struct(type) && !btf_is_union(type)) { + PRINT_FAIL("BTF id %d is not struct or union\n", btf_id); + return -1; + } + + m = btf_members(type); + mnum = btf_vlen(type); + + for (i = 0; i < mnum; ++i, ++m) { + const char *mname = btf__name_by_offset(btf, m->name_off); + + if (strcmp(mname, "") == 0) { + int msize = find_field_offset_aux(btf, m->type, field_name, + off + m->offset); + if (msize >= 0) + return msize; + } + + if (strcmp(mname, field_name)) + continue; + + return (off + m->offset) / 8; + } + + return -1; +} + +static int find_field_offset(struct btf *btf, char *pattern, regmatch_t *matches) +{ + int type_sz = matches[1].rm_eo - matches[1].rm_so; + int field_sz = matches[2].rm_eo - matches[2].rm_so; + char *type = pattern + matches[1].rm_so; + char *field = pattern + matches[2].rm_so; + char field_str[128] = {}; + char type_str[128] = {}; + int btf_id, field_offset; + + if (type_sz >= sizeof(type_str)) { + PRINT_FAIL("Malformed pattern: type ident is too long: %d\n", type_sz); + return -1; + } + + if (field_sz >= sizeof(field_str)) { + PRINT_FAIL("Malformed pattern: field ident is too long: %d\n", field_sz); + return -1; + } + + strncpy(type_str, type, type_sz); + strncpy(field_str, field, field_sz); + btf_id = btf__find_by_name(btf, type_str); + if (btf_id < 0) { + PRINT_FAIL("No BTF info for type %s\n", type_str); + return -1; + } + + field_offset = find_field_offset_aux(btf, btf_id, field_str, 0); + if (field_offset < 0) { + PRINT_FAIL("No BTF info for field %s::%s\n", type_str, field_str); + return -1; + } + + return field_offset; +} + +static regex_t *compile_regex(char *pat) +{ + regex_t *re; + int err; + + re = malloc(sizeof(regex_t)); + if (!re) { + PRINT_FAIL("Can't alloc regex\n"); + return NULL; + } + + err = regcomp(re, pat, REG_EXTENDED); + if (err) { + char errbuf[512]; + + regerror(err, re, errbuf, sizeof(errbuf)); + PRINT_FAIL("Can't compile regex: %s\n", errbuf); + free(re); + return NULL; + } + + return re; +} + +static void free_regex(regex_t *re) +{ + if (!re) + return; + + regfree(re); + free(re); +} + +static u32 max_line_len(char *str) +{ + u32 max_line = 0; + char *next = str; + + while (next) { + next = strchr(str, '\n'); + if (next) { + max_line = max_t(u32, max_line, (next - str)); + str = next + 1; + } else { + max_line = max_t(u32, max_line, strlen(str)); + } + } + + return min(max_line, 60u); +} + +/* Print strings `pattern_origin` and `text_origin` side by side, + * assume `pattern_pos` and `text_pos` designate location within + * corresponding origin string where match diverges. + * The output should look like: + * + * Can't match disassembly(left) with pattern(right): + * r2 = *(u64 *)(r1 +0) ; $dst = *(u64 *)($ctx + bpf_sockopt_kern::sk1) + * ^ ^ + * r0 = 0 ; + * exit ; + */ +static void print_match_error(FILE *out, + char *pattern_origin, char *text_origin, + char *pattern_pos, char *text_pos) +{ + char *pattern = pattern_origin; + char *text = text_origin; + int middle = max_line_len(text) + 2; + + fprintf(out, "Can't match disassembly(left) with pattern(right):\n"); + while (*pattern || *text) { + int column = 0; + int mark1 = -1; + int mark2 = -1; + + /* Print one line from text */ + while (*text && *text != '\n') { + if (text == text_pos) + mark1 = column; + fputc(*text, out); + ++text; + ++column; + } + if (text == text_pos) + mark1 = column; + + /* Pad to the middle */ + while (column < middle) { + fputc(' ', out); + ++column; + } + fputs("; ", out); + column += 3; + + /* Print one line from pattern, pattern lines are terminated by ';' */ + while (*pattern && *pattern != ';') { + if (pattern == pattern_pos) + mark2 = column; + fputc(*pattern, out); + ++pattern; + ++column; + } + if (pattern == pattern_pos) + mark2 = column; + + fputc('\n', out); + if (*pattern) + ++pattern; + if (*text) + ++text; + + /* If pattern and text diverge at this line, print an + * additional line with '^' marks, highlighting + * positions where match fails. + */ + if (mark1 > 0 || mark2 > 0) { + for (column = 0; column <= max(mark1, mark2); ++column) { + if (column == mark1 || column == mark2) + fputc('^', out); + else + fputc(' ', out); + } + fputc('\n', out); + } + } +} + +/* Test if `text` matches `pattern`. Pattern consists of the following elements: + * + * - Field offset references: + * + * <type>::<field> + * + * When such reference is encountered BTF is used to compute numerical + * value for the offset of <field> in <type>. The `text` is expected to + * contain matching numerical value. + * + * - Field groups: + * + * $(<type>::<field> [+ <type>::<field>]*) + * + * Allows to specify an offset that is a sum of multiple field offsets. + * The `text` is expected to contain matching numerical value. + * + * - Variable references, e.g. `$src`, `$dst`, `$ctx`. + * These are substitutions specified in `reg_map` array. + * If a substring of pattern is equal to `reg_map[i][0]` the `text` is + * expected to contain `reg_map[i][1]` in the matching position. + * + * - Whitespace is ignored, ';' counts as whitespace for `pattern`. + * + * - Any other characters, `pattern` and `text` should match one-to-one. + * + * Example of a pattern: + * + * __________ fields group ________________ + * ' ' + * *(u16 *)($ctx + $(sk_buff::cb + qdisc_skb_cb::tc_classid)) = $src; + * ^^^^ '______________________' + * variable reference field offset reference + */ +static bool match_pattern(struct btf *btf, char *pattern, char *text, char *reg_map[][2]) +{ + char *pattern_origin = pattern; + char *text_origin = text; + regmatch_t matches[3]; + +_continue: + while (*pattern) { + if (!*text) + goto err; + + /* Skip whitespace */ + if (isspace(*pattern) || *pattern == ';') { + if (!isspace(*text) && text != text_origin && isalnum(text[-1])) + goto err; + pattern = skip_space_and_semi(pattern); + text = skip_space(text); + continue; + } + + /* Check for variable references */ + for (int i = 0; reg_map[i][0]; ++i) { + char *pattern_next, *text_next; + + pattern_next = match_str(pattern, reg_map[i][0]); + if (!pattern_next) + continue; + + text_next = match_str(text, reg_map[i][1]); + if (!text_next) + goto err; + + pattern = pattern_next; + text = text_next; + goto _continue; + } + + /* Match field group: + * $(sk_buff::cb + qdisc_skb_cb::tc_classid) + */ + if (strncmp(pattern, "$(", 2) == 0) { + char *group_start = pattern, *text_next; + int acc_offset = 0; + + pattern += 2; + + for (;;) { + int field_offset; + + pattern = skip_space(pattern); + if (!*pattern) { + PRINT_FAIL("Unexpected end of pattern\n"); + goto err; + } + + if (*pattern == ')') { + ++pattern; + break; + } + + if (*pattern == '+') { + ++pattern; + continue; + } + + printf("pattern: %s\n", pattern); + if (regexec(field_regex, pattern, 3, matches, 0) != 0) { + PRINT_FAIL("Field reference expected\n"); + goto err; + } + + field_offset = find_field_offset(btf, pattern, matches); + if (field_offset < 0) + goto err; + + pattern += matches[0].rm_eo; + acc_offset += field_offset; + } + + text_next = match_number(text, acc_offset); + if (!text_next) { + PRINT_FAIL("No match for group offset %.*s (%d)\n", + (int)(pattern - group_start), + group_start, + acc_offset); + goto err; + } + text = text_next; + } + + /* Match field reference: + * sk_buff::cb + */ + if (regexec(field_regex, pattern, 3, matches, 0) == 0) { + int field_offset; + char *text_next; + + field_offset = find_field_offset(btf, pattern, matches); + if (field_offset < 0) + goto err; + + text_next = match_number(text, field_offset); + if (!text_next) { + PRINT_FAIL("No match for field offset %.*s (%d)\n", + (int)matches[0].rm_eo, pattern, field_offset); + goto err; + } + + pattern += matches[0].rm_eo; + text = text_next; + continue; + } + + /* If pattern points to identifier not followed by '::' + * skip the identifier to avoid n^2 application of the + * field reference rule. + */ + if (regexec(ident_regex, pattern, 1, matches, 0) == 0) { + if (strncmp(pattern, text, matches[0].rm_eo) != 0) + goto err; + + pattern += matches[0].rm_eo; + text += matches[0].rm_eo; + continue; + } + + /* Match literally */ + if (*pattern != *text) + goto err; + + ++pattern; + ++text; + } + + return true; + +err: + test__fail(); + print_match_error(stdout, pattern_origin, text_origin, pattern, text); + return false; +} + +static void print_insn(void *private_data, const char *fmt, ...) +{ + va_list args; + + va_start(args, fmt); + vfprintf((FILE *)private_data, fmt, args); + va_end(args); +} + +/* Disassemble instructions to a stream */ +static void print_xlated(FILE *out, struct bpf_insn *insn, __u32 len) +{ + const struct bpf_insn_cbs cbs = { + .cb_print = print_insn, + .cb_call = NULL, + .cb_imm = NULL, + .private_data = out, + }; + bool double_insn = false; + int i; + + for (i = 0; i < len; i++) { + if (double_insn) { + double_insn = false; + continue; + } + + double_insn = insn[i].code == (BPF_LD | BPF_IMM | BPF_DW); + print_bpf_insn(&cbs, insn + i, true); + } +} + +/* We share code with kernel BPF disassembler, it adds '(FF) ' prefix + * for each instruction (FF stands for instruction `code` byte). + * This function removes the prefix inplace for each line in `str`. + */ +static void remove_insn_prefix(char *str, int size) +{ + const int prefix_size = 5; + + int write_pos = 0, read_pos = prefix_size; + int len = strlen(str); + char c; + + size = min(size, len); + + while (read_pos < size) { + c = str[read_pos++]; + if (c == 0) + break; + str[write_pos++] = c; + if (c == '\n') + read_pos += prefix_size; + } + str[write_pos] = 0; +} + +struct prog_info { + char *prog_kind; + enum bpf_prog_type prog_type; + enum bpf_attach_type expected_attach_type; + struct bpf_insn *prog; + u32 prog_len; +}; + +static void match_program(struct btf *btf, + struct prog_info *pinfo, + char *pattern, + char *reg_map[][2], + bool skip_first_insn) +{ + struct bpf_insn *buf = NULL; + int err = 0, prog_fd = 0; + FILE *prog_out = NULL; + char *text = NULL; + __u32 cnt = 0; + + text = calloc(MAX_PROG_TEXT_SZ, 1); + if (!text) { + PRINT_FAIL("Can't allocate %d bytes\n", MAX_PROG_TEXT_SZ); + goto out; + } + + // TODO: log level + LIBBPF_OPTS(bpf_prog_load_opts, opts); + opts.log_buf = text; + opts.log_size = MAX_PROG_TEXT_SZ; + opts.log_level = 1 | 2 | 4; + opts.expected_attach_type = pinfo->expected_attach_type; + + prog_fd = bpf_prog_load(pinfo->prog_type, NULL, "GPL", + pinfo->prog, pinfo->prog_len, &opts); + if (prog_fd < 0) { + PRINT_FAIL("Can't load program, errno %d (%s), verifier log:\n%s\n", + errno, strerror(errno), text); + goto out; + } + + memset(text, 0, MAX_PROG_TEXT_SZ); + + err = get_xlated_program(prog_fd, &buf, &cnt); + if (err) { + PRINT_FAIL("Can't load back BPF program\n"); + goto out; + } + + prog_out = fmemopen(text, MAX_PROG_TEXT_SZ - 1, "w"); + if (!prog_out) { + PRINT_FAIL("Can't open memory stream\n"); + goto out; + } + if (skip_first_insn) + print_xlated(prog_out, buf + 1, cnt - 1); + else + print_xlated(prog_out, buf, cnt); + fclose(prog_out); + remove_insn_prefix(text, MAX_PROG_TEXT_SZ); + + ASSERT_TRUE(match_pattern(btf, pattern, text, reg_map), + pinfo->prog_kind); + +out: + if (prog_fd) + close(prog_fd); + free(buf); + free(text); +} + +static void run_one_testcase(struct btf *btf, struct test_case *test) +{ + struct prog_info pinfo = {}; + int bpf_sz; + + if (!test__start_subtest(test->name)) + return; + + switch (test->field_sz) { + case 8: + bpf_sz = BPF_DW; + break; + case 4: + bpf_sz = BPF_W; + break; + case 2: + bpf_sz = BPF_H; + break; + case 1: + bpf_sz = BPF_B; + break; + default: + PRINT_FAIL("Unexpected field size: %d, want 8,4,2 or 1\n", test->field_sz); + return; + } + + pinfo.prog_type = test->prog_type; + pinfo.expected_attach_type = test->expected_attach_type; + + if (test->read) { + struct bpf_insn ldx_prog[] = { + BPF_LDX_MEM(bpf_sz, BPF_REG_2, BPF_REG_1, test->field_offset), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + char *reg_map[][2] = { + { "$ctx", "r1" }, + { "$dst", "r2" }, + {} + }; + + pinfo.prog_kind = "LDX"; + pinfo.prog = ldx_prog; + pinfo.prog_len = ARRAY_SIZE(ldx_prog); + match_program(btf, &pinfo, test->read, reg_map, false); + } + + if (test->write || test->write_st || test->write_stx) { + struct bpf_insn stx_prog[] = { + BPF_MOV64_IMM(BPF_REG_2, 0), + BPF_STX_MEM(bpf_sz, BPF_REG_1, BPF_REG_2, test->field_offset), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + char *stx_reg_map[][2] = { + { "$ctx", "r1" }, + { "$src", "r2" }, + {} + }; + struct bpf_insn st_prog[] = { + BPF_ST_MEM(bpf_sz, BPF_REG_1, test->field_offset, + test->st_value.use ? test->st_value.value : 42), + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + char *st_reg_map[][2] = { + { "$ctx", "r1" }, + { "$src", "42" }, + {} + }; + + if (test->write || test->write_stx) { + char *pattern = test->write_stx ? test->write_stx : test->write; + + pinfo.prog_kind = "STX"; + pinfo.prog = stx_prog; + pinfo.prog_len = ARRAY_SIZE(stx_prog); + match_program(btf, &pinfo, pattern, stx_reg_map, true); + } + + if (test->write || test->write_st) { + char *pattern = test->write_st ? test->write_st : test->write; + + pinfo.prog_kind = "ST"; + pinfo.prog = st_prog; + pinfo.prog_len = ARRAY_SIZE(st_prog); + match_program(btf, &pinfo, pattern, st_reg_map, false); + } + } + + test__end_subtest(); +} + +void test_ctx_rewrite(void) +{ + struct btf *btf; + int i; + + field_regex = compile_regex("^([[:alpha:]_][[:alnum:]_]+)::([[:alpha:]_][[:alnum:]_]+)"); + ident_regex = compile_regex("^[[:alpha:]_][[:alnum:]_]+"); + if (!field_regex || !ident_regex) + return; + + btf = btf__load_vmlinux_btf(); + if (!btf) { + PRINT_FAIL("Can't load vmlinux BTF, errno %d (%s)\n", errno, strerror(errno)); + goto out; + } + + for (i = 0; i < ARRAY_SIZE(test_cases); ++i) + run_one_testcase(btf, &test_cases[i]); + +out: + btf__free(btf); + free_regex(field_regex); + free_regex(ident_regex); +} diff --git a/tools/testing/selftests/bpf/prog_tests/custom_sec_handlers.c b/tools/testing/selftests/bpf/prog_tests/custom_sec_handlers.c new file mode 100644 index 000000000000..b2dfc5954aea --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/custom_sec_handlers.c @@ -0,0 +1,176 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Facebook */ + +#include <test_progs.h> +#include "test_custom_sec_handlers.skel.h" + +#define COOKIE_ABC1 1 +#define COOKIE_ABC2 2 +#define COOKIE_CUSTOM 3 +#define COOKIE_FALLBACK 4 +#define COOKIE_KPROBE 5 + +static int custom_setup_prog(struct bpf_program *prog, long cookie) +{ + if (cookie == COOKIE_ABC1) + bpf_program__set_autoload(prog, false); + + return 0; +} + +static int custom_prepare_load_prog(struct bpf_program *prog, + struct bpf_prog_load_opts *opts, long cookie) +{ + if (cookie == COOKIE_FALLBACK) + opts->prog_flags |= BPF_F_SLEEPABLE; + else if (cookie == COOKIE_ABC1) + ASSERT_FALSE(true, "unexpected preload for abc"); + + return 0; +} + +static int custom_attach_prog(const struct bpf_program *prog, long cookie, + struct bpf_link **link) +{ + switch (cookie) { + case COOKIE_ABC2: + *link = bpf_program__attach_raw_tracepoint(prog, "sys_enter"); + return libbpf_get_error(*link); + case COOKIE_CUSTOM: + *link = bpf_program__attach_tracepoint(prog, "syscalls", "sys_enter_nanosleep"); + return libbpf_get_error(*link); + case COOKIE_KPROBE: + case COOKIE_FALLBACK: + /* no auto-attach for SEC("xyz") and SEC("kprobe") */ + *link = NULL; + return 0; + default: + ASSERT_FALSE(true, "unexpected cookie"); + return -EINVAL; + } +} + +static int abc1_id; +static int abc2_id; +static int custom_id; +static int fallback_id; +static int kprobe_id; + +__attribute__((constructor)) +static void register_sec_handlers(void) +{ + LIBBPF_OPTS(libbpf_prog_handler_opts, abc1_opts, + .cookie = COOKIE_ABC1, + .prog_setup_fn = custom_setup_prog, + .prog_prepare_load_fn = custom_prepare_load_prog, + .prog_attach_fn = NULL, + ); + LIBBPF_OPTS(libbpf_prog_handler_opts, abc2_opts, + .cookie = COOKIE_ABC2, + .prog_setup_fn = custom_setup_prog, + .prog_prepare_load_fn = custom_prepare_load_prog, + .prog_attach_fn = custom_attach_prog, + ); + LIBBPF_OPTS(libbpf_prog_handler_opts, custom_opts, + .cookie = COOKIE_CUSTOM, + .prog_setup_fn = NULL, + .prog_prepare_load_fn = NULL, + .prog_attach_fn = custom_attach_prog, + ); + + abc1_id = libbpf_register_prog_handler("abc", BPF_PROG_TYPE_RAW_TRACEPOINT, 0, &abc1_opts); + abc2_id = libbpf_register_prog_handler("abc/", BPF_PROG_TYPE_RAW_TRACEPOINT, 0, &abc2_opts); + custom_id = libbpf_register_prog_handler("custom+", BPF_PROG_TYPE_TRACEPOINT, 0, &custom_opts); +} + +__attribute__((destructor)) +static void unregister_sec_handlers(void) +{ + libbpf_unregister_prog_handler(abc1_id); + libbpf_unregister_prog_handler(abc2_id); + libbpf_unregister_prog_handler(custom_id); +} + +void test_custom_sec_handlers(void) +{ + LIBBPF_OPTS(libbpf_prog_handler_opts, opts, + .prog_setup_fn = custom_setup_prog, + .prog_prepare_load_fn = custom_prepare_load_prog, + .prog_attach_fn = custom_attach_prog, + ); + struct test_custom_sec_handlers* skel; + int err; + + ASSERT_GT(abc1_id, 0, "abc1_id"); + ASSERT_GT(abc2_id, 0, "abc2_id"); + ASSERT_GT(custom_id, 0, "custom_id"); + + /* override libbpf's handle of SEC("kprobe/...") but also allow pure + * SEC("kprobe") due to "kprobe+" specifier. Register it as + * TRACEPOINT, just for fun. + */ + opts.cookie = COOKIE_KPROBE; + kprobe_id = libbpf_register_prog_handler("kprobe+", BPF_PROG_TYPE_TRACEPOINT, 0, &opts); + /* fallback treats everything as BPF_PROG_TYPE_SYSCALL program to test + * setting custom BPF_F_SLEEPABLE bit in preload handler + */ + opts.cookie = COOKIE_FALLBACK; + fallback_id = libbpf_register_prog_handler(NULL, BPF_PROG_TYPE_SYSCALL, 0, &opts); + + if (!ASSERT_GT(fallback_id, 0, "fallback_id") /* || !ASSERT_GT(kprobe_id, 0, "kprobe_id")*/) { + if (fallback_id > 0) + libbpf_unregister_prog_handler(fallback_id); + if (kprobe_id > 0) + libbpf_unregister_prog_handler(kprobe_id); + return; + } + + /* open skeleton and validate assumptions */ + skel = test_custom_sec_handlers__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__type(skel->progs.abc1), BPF_PROG_TYPE_RAW_TRACEPOINT, "abc1_type"); + ASSERT_FALSE(bpf_program__autoload(skel->progs.abc1), "abc1_autoload"); + + ASSERT_EQ(bpf_program__type(skel->progs.abc2), BPF_PROG_TYPE_RAW_TRACEPOINT, "abc2_type"); + ASSERT_EQ(bpf_program__type(skel->progs.custom1), BPF_PROG_TYPE_TRACEPOINT, "custom1_type"); + ASSERT_EQ(bpf_program__type(skel->progs.custom2), BPF_PROG_TYPE_TRACEPOINT, "custom2_type"); + ASSERT_EQ(bpf_program__type(skel->progs.kprobe1), BPF_PROG_TYPE_TRACEPOINT, "kprobe1_type"); + ASSERT_EQ(bpf_program__type(skel->progs.xyz), BPF_PROG_TYPE_SYSCALL, "xyz_type"); + + skel->rodata->my_pid = getpid(); + + /* now attempt to load everything */ + err = test_custom_sec_handlers__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + /* now try to auto-attach everything */ + err = test_custom_sec_handlers__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + skel->links.xyz = bpf_program__attach(skel->progs.kprobe1); + ASSERT_EQ(errno, EOPNOTSUPP, "xyz_attach_err"); + ASSERT_ERR_PTR(skel->links.xyz, "xyz_attach"); + + /* trigger programs */ + usleep(1); + + /* SEC("abc") is set to not auto-loaded */ + ASSERT_FALSE(skel->bss->abc1_called, "abc1_called"); + ASSERT_TRUE(skel->bss->abc2_called, "abc2_called"); + ASSERT_TRUE(skel->bss->custom1_called, "custom1_called"); + ASSERT_TRUE(skel->bss->custom2_called, "custom2_called"); + /* SEC("kprobe") shouldn't be auto-attached */ + ASSERT_FALSE(skel->bss->kprobe1_called, "kprobe1_called"); + /* SEC("xyz") shouldn't be auto-attached */ + ASSERT_FALSE(skel->bss->xyz_called, "xyz_called"); + +cleanup: + test_custom_sec_handlers__destroy(skel); + + ASSERT_OK(libbpf_unregister_prog_handler(fallback_id), "unregister_fallback"); + ASSERT_OK(libbpf_unregister_prog_handler(kprobe_id), "unregister_kprobe"); +} diff --git a/tools/testing/selftests/bpf/prog_tests/d_path.c b/tools/testing/selftests/bpf/prog_tests/d_path.c new file mode 100644 index 000000000000..ccc768592e66 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/d_path.c @@ -0,0 +1,208 @@ +// SPDX-License-Identifier: GPL-2.0 +#define _GNU_SOURCE +#include <test_progs.h> +#include <sys/stat.h> +#include <linux/sched.h> +#include <sys/syscall.h> + +#define MAX_PATH_LEN 128 +#define MAX_FILES 7 + +#include "test_d_path.skel.h" +#include "test_d_path_check_rdonly_mem.skel.h" +#include "test_d_path_check_types.skel.h" + +/* sys_close_range is not around for long time, so let's + * make sure we can call it on systems with older glibc + */ +#ifndef __NR_close_range +#ifdef __alpha__ +#define __NR_close_range 546 +#else +#define __NR_close_range 436 +#endif +#endif + +static int duration; + +static struct { + __u32 cnt; + char paths[MAX_FILES][MAX_PATH_LEN]; +} src; + +static int set_pathname(int fd, pid_t pid) +{ + char buf[MAX_PATH_LEN]; + + snprintf(buf, MAX_PATH_LEN, "/proc/%d/fd/%d", pid, fd); + return readlink(buf, src.paths[src.cnt++], MAX_PATH_LEN); +} + +static int trigger_fstat_events(pid_t pid) +{ + int sockfd = -1, procfd = -1, devfd = -1; + int localfd = -1, indicatorfd = -1; + int pipefd[2] = { -1, -1 }; + struct stat fileStat; + int ret = -1; + + /* unmountable pseudo-filesystems */ + if (CHECK(pipe(pipefd) < 0, "trigger", "pipe failed\n")) + return ret; + /* unmountable pseudo-filesystems */ + sockfd = socket(AF_INET, SOCK_STREAM, 0); + if (CHECK(sockfd < 0, "trigger", "socket failed\n")) + goto out_close; + /* mountable pseudo-filesystems */ + procfd = open("/proc/self/comm", O_RDONLY); + if (CHECK(procfd < 0, "trigger", "open /proc/self/comm failed\n")) + goto out_close; + devfd = open("/dev/urandom", O_RDONLY); + if (CHECK(devfd < 0, "trigger", "open /dev/urandom failed\n")) + goto out_close; + localfd = open("/tmp/d_path_loadgen.txt", O_CREAT | O_RDONLY, 0644); + if (CHECK(localfd < 0, "trigger", "open /tmp/d_path_loadgen.txt failed\n")) + goto out_close; + /* bpf_d_path will return path with (deleted) */ + remove("/tmp/d_path_loadgen.txt"); + indicatorfd = open("/tmp/", O_PATH); + if (CHECK(indicatorfd < 0, "trigger", "open /tmp/ failed\n")) + goto out_close; + + ret = set_pathname(pipefd[0], pid); + if (CHECK(ret < 0, "trigger", "set_pathname failed for pipe[0]\n")) + goto out_close; + ret = set_pathname(pipefd[1], pid); + if (CHECK(ret < 0, "trigger", "set_pathname failed for pipe[1]\n")) + goto out_close; + ret = set_pathname(sockfd, pid); + if (CHECK(ret < 0, "trigger", "set_pathname failed for socket\n")) + goto out_close; + ret = set_pathname(procfd, pid); + if (CHECK(ret < 0, "trigger", "set_pathname failed for proc\n")) + goto out_close; + ret = set_pathname(devfd, pid); + if (CHECK(ret < 0, "trigger", "set_pathname failed for dev\n")) + goto out_close; + ret = set_pathname(localfd, pid); + if (CHECK(ret < 0, "trigger", "set_pathname failed for file\n")) + goto out_close; + ret = set_pathname(indicatorfd, pid); + if (CHECK(ret < 0, "trigger", "set_pathname failed for dir\n")) + goto out_close; + + /* triggers vfs_getattr */ + fstat(pipefd[0], &fileStat); + fstat(pipefd[1], &fileStat); + fstat(sockfd, &fileStat); + fstat(procfd, &fileStat); + fstat(devfd, &fileStat); + fstat(localfd, &fileStat); + fstat(indicatorfd, &fileStat); + +out_close: + /* sys_close no longer triggers filp_close, but we can + * call sys_close_range instead which still does + */ +#define close(fd) syscall(__NR_close_range, fd, fd, 0) + + close(pipefd[0]); + close(pipefd[1]); + close(sockfd); + close(procfd); + close(devfd); + close(localfd); + close(indicatorfd); + +#undef close + return ret; +} + +static void test_d_path_basic(void) +{ + struct test_d_path__bss *bss; + struct test_d_path *skel; + int err; + + skel = test_d_path__open_and_load(); + if (CHECK(!skel, "setup", "d_path skeleton failed\n")) + goto cleanup; + + err = test_d_path__attach(skel); + if (CHECK(err, "setup", "attach failed: %d\n", err)) + goto cleanup; + + bss = skel->bss; + bss->my_pid = getpid(); + + err = trigger_fstat_events(bss->my_pid); + if (err < 0) + goto cleanup; + + if (CHECK(!bss->called_stat, + "stat", + "trampoline for security_inode_getattr was not called\n")) + goto cleanup; + + if (CHECK(!bss->called_close, + "close", + "trampoline for filp_close was not called\n")) + goto cleanup; + + for (int i = 0; i < MAX_FILES; i++) { + CHECK(strncmp(src.paths[i], bss->paths_stat[i], MAX_PATH_LEN), + "check", + "failed to get stat path[%d]: %s vs %s\n", + i, src.paths[i], bss->paths_stat[i]); + CHECK(strncmp(src.paths[i], bss->paths_close[i], MAX_PATH_LEN), + "check", + "failed to get close path[%d]: %s vs %s\n", + i, src.paths[i], bss->paths_close[i]); + /* The d_path helper returns size plus NUL char, hence + 1 */ + CHECK(bss->rets_stat[i] != strlen(bss->paths_stat[i]) + 1, + "check", + "failed to match stat return [%d]: %d vs %zd [%s]\n", + i, bss->rets_stat[i], strlen(bss->paths_stat[i]) + 1, + bss->paths_stat[i]); + CHECK(bss->rets_close[i] != strlen(bss->paths_stat[i]) + 1, + "check", + "failed to match stat return [%d]: %d vs %zd [%s]\n", + i, bss->rets_close[i], strlen(bss->paths_close[i]) + 1, + bss->paths_stat[i]); + } + +cleanup: + test_d_path__destroy(skel); +} + +static void test_d_path_check_rdonly_mem(void) +{ + struct test_d_path_check_rdonly_mem *skel; + + skel = test_d_path_check_rdonly_mem__open_and_load(); + ASSERT_ERR_PTR(skel, "unexpected_load_overwriting_rdonly_mem"); + + test_d_path_check_rdonly_mem__destroy(skel); +} + +static void test_d_path_check_types(void) +{ + struct test_d_path_check_types *skel; + + skel = test_d_path_check_types__open_and_load(); + ASSERT_ERR_PTR(skel, "unexpected_load_passing_wrong_type"); + + test_d_path_check_types__destroy(skel); +} + +void test_d_path(void) +{ + if (test__start_subtest("basic")) + test_d_path_basic(); + + if (test__start_subtest("check_rdonly_mem")) + test_d_path_check_rdonly_mem(); + + if (test__start_subtest("check_alloc_mem")) + test_d_path_check_types(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/decap_sanity.c b/tools/testing/selftests/bpf/prog_tests/decap_sanity.c new file mode 100644 index 000000000000..dcb9e5070cc3 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/decap_sanity.c @@ -0,0 +1,77 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ + +#include <sys/types.h> +#include <sys/socket.h> +#include <net/if.h> +#include <linux/in6.h> + +#include "test_progs.h" +#include "network_helpers.h" +#include "decap_sanity.skel.h" + +#define NS_TEST "decap_sanity_ns" +#define IPV6_IFACE_ADDR "face::1" +#define UDP_TEST_PORT 7777 + +void test_decap_sanity(void) +{ + LIBBPF_OPTS(bpf_tc_hook, qdisc_hook, .attach_point = BPF_TC_EGRESS); + LIBBPF_OPTS(bpf_tc_opts, tc_attach); + struct nstoken *nstoken = NULL; + struct decap_sanity *skel; + struct sockaddr_in6 addr; + socklen_t addrlen; + char buf[128] = {}; + int sockfd, err; + + skel = decap_sanity__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel open_and_load")) + return; + + SYS(fail, "ip netns add %s", NS_TEST); + SYS(fail, "ip -net %s -6 addr add %s/128 dev lo nodad", NS_TEST, IPV6_IFACE_ADDR); + SYS(fail, "ip -net %s link set dev lo up", NS_TEST); + + nstoken = open_netns(NS_TEST); + if (!ASSERT_OK_PTR(nstoken, "open_netns")) + goto fail; + + qdisc_hook.ifindex = if_nametoindex("lo"); + if (!ASSERT_GT(qdisc_hook.ifindex, 0, "if_nametoindex lo")) + goto fail; + + err = bpf_tc_hook_create(&qdisc_hook); + if (!ASSERT_OK(err, "create qdisc hook")) + goto fail; + + tc_attach.prog_fd = bpf_program__fd(skel->progs.decap_sanity); + err = bpf_tc_attach(&qdisc_hook, &tc_attach); + if (!ASSERT_OK(err, "attach filter")) + goto fail; + + addrlen = sizeof(addr); + err = make_sockaddr(AF_INET6, IPV6_IFACE_ADDR, UDP_TEST_PORT, + (void *)&addr, &addrlen); + if (!ASSERT_OK(err, "make_sockaddr")) + goto fail; + sockfd = socket(AF_INET6, SOCK_DGRAM, 0); + if (!ASSERT_NEQ(sockfd, -1, "socket")) + goto fail; + err = sendto(sockfd, buf, sizeof(buf), 0, (void *)&addr, addrlen); + close(sockfd); + if (!ASSERT_EQ(err, sizeof(buf), "send")) + goto fail; + + ASSERT_TRUE(skel->bss->init_csum_partial, "init_csum_partial"); + ASSERT_TRUE(skel->bss->final_csum_none, "final_csum_none"); + ASSERT_FALSE(skel->bss->broken_csum_start, "broken_csum_start"); + +fail: + if (nstoken) { + bpf_tc_hook_destroy(&qdisc_hook); + close_netns(nstoken); + } + SYS_NOFAIL("ip netns del " NS_TEST); + decap_sanity__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/deny_namespace.c b/tools/testing/selftests/bpf/prog_tests/deny_namespace.c new file mode 100644 index 000000000000..1bc6241b755b --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/deny_namespace.c @@ -0,0 +1,102 @@ +// SPDX-License-Identifier: GPL-2.0 +#define _GNU_SOURCE +#include <test_progs.h> +#include "test_deny_namespace.skel.h" +#include <sched.h> +#include "cap_helpers.h" +#include <stdio.h> + +static int wait_for_pid(pid_t pid) +{ + int status, ret; + +again: + ret = waitpid(pid, &status, 0); + if (ret == -1) { + if (errno == EINTR) + goto again; + + return -1; + } + + if (!WIFEXITED(status)) + return -1; + + return WEXITSTATUS(status); +} + +/* negative return value -> some internal error + * positive return value -> userns creation failed + * 0 -> userns creation succeeded + */ +static int create_user_ns(void) +{ + pid_t pid; + + pid = fork(); + if (pid < 0) + return -1; + + if (pid == 0) { + if (unshare(CLONE_NEWUSER)) + _exit(EXIT_FAILURE); + _exit(EXIT_SUCCESS); + } + + return wait_for_pid(pid); +} + +static void test_userns_create_bpf(void) +{ + __u32 cap_mask = 1ULL << CAP_SYS_ADMIN; + __u64 old_caps = 0; + + cap_enable_effective(cap_mask, &old_caps); + + ASSERT_OK(create_user_ns(), "priv new user ns"); + + cap_disable_effective(cap_mask, &old_caps); + + ASSERT_EQ(create_user_ns(), EPERM, "unpriv new user ns"); + + if (cap_mask & old_caps) + cap_enable_effective(cap_mask, NULL); +} + +static void test_unpriv_userns_create_no_bpf(void) +{ + __u32 cap_mask = 1ULL << CAP_SYS_ADMIN; + __u64 old_caps = 0; + + cap_disable_effective(cap_mask, &old_caps); + + ASSERT_OK(create_user_ns(), "no-bpf unpriv new user ns"); + + if (cap_mask & old_caps) + cap_enable_effective(cap_mask, NULL); +} + +void test_deny_namespace(void) +{ + struct test_deny_namespace *skel = NULL; + int err; + + if (test__start_subtest("unpriv_userns_create_no_bpf")) + test_unpriv_userns_create_no_bpf(); + + skel = test_deny_namespace__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel load")) + goto close_prog; + + err = test_deny_namespace__attach(skel); + if (!ASSERT_OK(err, "attach")) + goto close_prog; + + if (test__start_subtest("userns_create_bpf")) + test_userns_create_bpf(); + + test_deny_namespace__detach(skel); + +close_prog: + test_deny_namespace__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/dummy_st_ops.c b/tools/testing/selftests/bpf/prog_tests/dummy_st_ops.c new file mode 100644 index 000000000000..d3d94596ab79 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/dummy_st_ops.c @@ -0,0 +1,191 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2021. Huawei Technologies Co., Ltd */ +#include <test_progs.h> +#include "dummy_st_ops_success.skel.h" +#include "dummy_st_ops_fail.skel.h" +#include "trace_dummy_st_ops.skel.h" + +/* Need to keep consistent with definition in include/linux/bpf.h */ +struct bpf_dummy_ops_state { + int val; +}; + +static void test_dummy_st_ops_attach(void) +{ + struct dummy_st_ops_success *skel; + struct bpf_link *link; + + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_OK_PTR(skel, "dummy_st_ops_load")) + return; + + link = bpf_map__attach_struct_ops(skel->maps.dummy_1); + ASSERT_EQ(libbpf_get_error(link), -EOPNOTSUPP, "dummy_st_ops_attach"); + + dummy_st_ops_success__destroy(skel); +} + +static void test_dummy_init_ret_value(void) +{ + __u64 args[1] = {0}; + LIBBPF_OPTS(bpf_test_run_opts, attr, + .ctx_in = args, + .ctx_size_in = sizeof(args), + ); + struct dummy_st_ops_success *skel; + int fd, err; + + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_OK_PTR(skel, "dummy_st_ops_load")) + return; + + fd = bpf_program__fd(skel->progs.test_1); + err = bpf_prog_test_run_opts(fd, &attr); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(attr.retval, 0xf2f3f4f5, "test_ret"); + + dummy_st_ops_success__destroy(skel); +} + +static void test_dummy_init_ptr_arg(void) +{ + int exp_retval = 0xbeef; + struct bpf_dummy_ops_state in_state = { + .val = exp_retval, + }; + __u64 args[1] = {(unsigned long)&in_state}; + LIBBPF_OPTS(bpf_test_run_opts, attr, + .ctx_in = args, + .ctx_size_in = sizeof(args), + ); + struct trace_dummy_st_ops *trace_skel; + struct dummy_st_ops_success *skel; + int fd, err; + + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_OK_PTR(skel, "dummy_st_ops_load")) + return; + + fd = bpf_program__fd(skel->progs.test_1); + + trace_skel = trace_dummy_st_ops__open(); + if (!ASSERT_OK_PTR(trace_skel, "trace_dummy_st_ops__open")) + goto done; + + err = bpf_program__set_attach_target(trace_skel->progs.fentry_test_1, + fd, "test_1"); + if (!ASSERT_OK(err, "set_attach_target(fentry_test_1)")) + goto done; + + err = trace_dummy_st_ops__load(trace_skel); + if (!ASSERT_OK(err, "load(trace_skel)")) + goto done; + + err = trace_dummy_st_ops__attach(trace_skel); + if (!ASSERT_OK(err, "attach(trace_skel)")) + goto done; + + err = bpf_prog_test_run_opts(fd, &attr); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(in_state.val, 0x5a, "test_ptr_ret"); + ASSERT_EQ(attr.retval, exp_retval, "test_ret"); + ASSERT_EQ(trace_skel->bss->val, exp_retval, "fentry_val"); + +done: + dummy_st_ops_success__destroy(skel); + trace_dummy_st_ops__destroy(trace_skel); +} + +static void test_dummy_multiple_args(void) +{ + struct bpf_dummy_ops_state st = { 7 }; + __u64 args[5] = {(__u64)&st, -100, 0x8a5f, 'c', 0x1234567887654321ULL}; + LIBBPF_OPTS(bpf_test_run_opts, attr, + .ctx_in = args, + .ctx_size_in = sizeof(args), + ); + struct dummy_st_ops_success *skel; + int fd, err; + size_t i; + char name[8]; + + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_OK_PTR(skel, "dummy_st_ops_load")) + return; + + fd = bpf_program__fd(skel->progs.test_2); + err = bpf_prog_test_run_opts(fd, &attr); + ASSERT_OK(err, "test_run"); + args[0] = 7; + for (i = 0; i < ARRAY_SIZE(args); i++) { + snprintf(name, sizeof(name), "arg %zu", i); + ASSERT_EQ(skel->bss->test_2_args[i], args[i], name); + } + + dummy_st_ops_success__destroy(skel); +} + +static void test_dummy_sleepable(void) +{ + struct bpf_dummy_ops_state st; + __u64 args[1] = {(__u64)&st}; + LIBBPF_OPTS(bpf_test_run_opts, attr, + .ctx_in = args, + .ctx_size_in = sizeof(args), + ); + struct dummy_st_ops_success *skel; + int fd, err; + + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_OK_PTR(skel, "dummy_st_ops_load")) + return; + + fd = bpf_program__fd(skel->progs.test_sleepable); + err = bpf_prog_test_run_opts(fd, &attr); + ASSERT_OK(err, "test_run"); + + dummy_st_ops_success__destroy(skel); +} + +/* dummy_st_ops.test_sleepable() parameter is not marked as nullable, + * thus bpf_prog_test_run_opts() below should be rejected as it tries + * to pass NULL for this parameter. + */ +static void test_dummy_sleepable_reject_null(void) +{ + __u64 args[1] = {0}; + LIBBPF_OPTS(bpf_test_run_opts, attr, + .ctx_in = args, + .ctx_size_in = sizeof(args), + ); + struct dummy_st_ops_success *skel; + int fd, err; + + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_OK_PTR(skel, "dummy_st_ops_load")) + return; + + fd = bpf_program__fd(skel->progs.test_sleepable); + err = bpf_prog_test_run_opts(fd, &attr); + ASSERT_EQ(err, -EINVAL, "test_run"); + + dummy_st_ops_success__destroy(skel); +} + +void test_dummy_st_ops(void) +{ + if (test__start_subtest("dummy_st_ops_attach")) + test_dummy_st_ops_attach(); + if (test__start_subtest("dummy_init_ret_value")) + test_dummy_init_ret_value(); + if (test__start_subtest("dummy_init_ptr_arg")) + test_dummy_init_ptr_arg(); + if (test__start_subtest("dummy_multiple_args")) + test_dummy_multiple_args(); + if (test__start_subtest("dummy_sleepable")) + test_dummy_sleepable(); + if (test__start_subtest("dummy_sleepable_reject_null")) + test_dummy_sleepable_reject_null(); + + RUN_TESTS(dummy_st_ops_fail); +} diff --git a/tools/testing/selftests/bpf/prog_tests/dynptr.c b/tools/testing/selftests/bpf/prog_tests/dynptr.c new file mode 100644 index 000000000000..7cfac53c0d58 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/dynptr.c @@ -0,0 +1,110 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Facebook */ + +#include <test_progs.h> +#include <network_helpers.h> +#include "dynptr_fail.skel.h" +#include "dynptr_success.skel.h" + +enum test_setup_type { + SETUP_SYSCALL_SLEEP, + SETUP_SKB_PROG, +}; + +static struct { + const char *prog_name; + enum test_setup_type type; +} success_tests[] = { + {"test_read_write", SETUP_SYSCALL_SLEEP}, + {"test_dynptr_data", SETUP_SYSCALL_SLEEP}, + {"test_ringbuf", SETUP_SYSCALL_SLEEP}, + {"test_skb_readonly", SETUP_SKB_PROG}, + {"test_dynptr_skb_data", SETUP_SKB_PROG}, + {"test_adjust", SETUP_SYSCALL_SLEEP}, + {"test_adjust_err", SETUP_SYSCALL_SLEEP}, + {"test_zero_size_dynptr", SETUP_SYSCALL_SLEEP}, + {"test_dynptr_is_null", SETUP_SYSCALL_SLEEP}, + {"test_dynptr_is_rdonly", SETUP_SKB_PROG}, + {"test_dynptr_clone", SETUP_SKB_PROG}, + {"test_dynptr_skb_no_buff", SETUP_SKB_PROG}, + {"test_dynptr_skb_strcmp", SETUP_SKB_PROG}, +}; + +static void verify_success(const char *prog_name, enum test_setup_type setup_type) +{ + struct dynptr_success *skel; + struct bpf_program *prog; + struct bpf_link *link; + int err; + + skel = dynptr_success__open(); + if (!ASSERT_OK_PTR(skel, "dynptr_success__open")) + return; + + skel->bss->pid = getpid(); + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto cleanup; + + bpf_program__set_autoload(prog, true); + + err = dynptr_success__load(skel); + if (!ASSERT_OK(err, "dynptr_success__load")) + goto cleanup; + + switch (setup_type) { + case SETUP_SYSCALL_SLEEP: + link = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(link, "bpf_program__attach")) + goto cleanup; + + usleep(1); + + bpf_link__destroy(link); + break; + case SETUP_SKB_PROG: + { + int prog_fd; + char buf[64]; + + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 1, + ); + + prog_fd = bpf_program__fd(prog); + if (!ASSERT_GE(prog_fd, 0, "prog_fd")) + goto cleanup; + + err = bpf_prog_test_run_opts(prog_fd, &topts); + + if (!ASSERT_OK(err, "test_run")) + goto cleanup; + + break; + } + } + + ASSERT_EQ(skel->bss->err, 0, "err"); + +cleanup: + dynptr_success__destroy(skel); +} + +void test_dynptr(void) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(success_tests); i++) { + if (!test__start_subtest(success_tests[i].prog_name)) + continue; + + verify_success(success_tests[i].prog_name, success_tests[i].type); + } + + RUN_TESTS(dynptr_fail); +} diff --git a/tools/testing/selftests/bpf/prog_tests/empty_skb.c b/tools/testing/selftests/bpf/prog_tests/empty_skb.c new file mode 100644 index 000000000000..438583e1f2d1 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/empty_skb.c @@ -0,0 +1,151 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> +#include <net/if.h> +#include "empty_skb.skel.h" + +void test_empty_skb(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, tattr); + struct empty_skb *bpf_obj = NULL; + struct nstoken *tok = NULL; + struct bpf_program *prog; + char eth_hlen_pp[15]; + char eth_hlen[14]; + int veth_ifindex; + int ipip_ifindex; + int err; + int i; + + struct { + const char *msg; + const void *data_in; + __u32 data_size_in; + int *ifindex; + int err; + int ret; + int lwt_egress_ret; /* expected retval at lwt/egress */ + bool success_on_tc; + } tests[] = { + /* Empty packets are always rejected. */ + + { + /* BPF_PROG_RUN ETH_HLEN size check */ + .msg = "veth empty ingress packet", + .data_in = NULL, + .data_size_in = 0, + .ifindex = &veth_ifindex, + .err = -EINVAL, + }, + { + /* BPF_PROG_RUN ETH_HLEN size check */ + .msg = "ipip empty ingress packet", + .data_in = NULL, + .data_size_in = 0, + .ifindex = &ipip_ifindex, + .err = -EINVAL, + }, + + /* ETH_HLEN-sized packets: + * - can not be redirected at LWT_XMIT + * - can be redirected at TC to non-tunneling dest + */ + + { + /* __bpf_redirect_common */ + .msg = "veth ETH_HLEN packet ingress", + .data_in = eth_hlen, + .data_size_in = sizeof(eth_hlen), + .ifindex = &veth_ifindex, + .ret = -ERANGE, + .lwt_egress_ret = -ERANGE, + .success_on_tc = true, + }, + { + /* __bpf_redirect_no_mac + * + * lwt: skb->len=0 <= skb_network_offset=0 + * tc: skb->len=14 <= skb_network_offset=14 + */ + .msg = "ipip ETH_HLEN packet ingress", + .data_in = eth_hlen, + .data_size_in = sizeof(eth_hlen), + .ifindex = &ipip_ifindex, + .ret = -ERANGE, + .lwt_egress_ret = -ERANGE, + }, + + /* ETH_HLEN+1-sized packet should be redirected. */ + + { + .msg = "veth ETH_HLEN+1 packet ingress", + .data_in = eth_hlen_pp, + .data_size_in = sizeof(eth_hlen_pp), + .ifindex = &veth_ifindex, + .lwt_egress_ret = 1, /* veth_xmit NET_XMIT_DROP */ + }, + { + .msg = "ipip ETH_HLEN+1 packet ingress", + .data_in = eth_hlen_pp, + .data_size_in = sizeof(eth_hlen_pp), + .ifindex = &ipip_ifindex, + }, + }; + + SYS(out, "ip netns add empty_skb"); + tok = open_netns("empty_skb"); + if (!ASSERT_OK_PTR(tok, "setns")) + goto out; + SYS(out, "ip link add veth0 type veth peer veth1"); + SYS(out, "ip link set dev veth0 up"); + SYS(out, "ip link set dev veth1 up"); + SYS(out, "ip addr add 10.0.0.1/8 dev veth0"); + SYS(out, "ip addr add 10.0.0.2/8 dev veth1"); + veth_ifindex = if_nametoindex("veth0"); + + SYS(out, "ip link add ipip0 type ipip local 10.0.0.1 remote 10.0.0.2"); + SYS(out, "ip link set ipip0 up"); + SYS(out, "ip addr add 192.168.1.1/16 dev ipip0"); + ipip_ifindex = if_nametoindex("ipip0"); + + bpf_obj = empty_skb__open_and_load(); + if (!ASSERT_OK_PTR(bpf_obj, "open skeleton")) + goto out; + + for (i = 0; i < ARRAY_SIZE(tests); i++) { + bpf_object__for_each_program(prog, bpf_obj->obj) { + bool at_egress = strstr(bpf_program__name(prog), "egress") != NULL; + bool at_tc = !strncmp(bpf_program__section_name(prog), "tc", 2); + int expected_ret; + char buf[128]; + + expected_ret = at_egress && !at_tc ? tests[i].lwt_egress_ret : tests[i].ret; + + tattr.data_in = tests[i].data_in; + tattr.data_size_in = tests[i].data_size_in; + + tattr.data_size_out = 0; + bpf_obj->bss->ifindex = *tests[i].ifindex; + bpf_obj->bss->ret = 0; + err = bpf_prog_test_run_opts(bpf_program__fd(prog), &tattr); + sprintf(buf, "err: %s [%s]", tests[i].msg, bpf_program__name(prog)); + + if (at_tc && tests[i].success_on_tc) + ASSERT_GE(err, 0, buf); + else + ASSERT_EQ(err, tests[i].err, buf); + sprintf(buf, "ret: %s [%s]", tests[i].msg, bpf_program__name(prog)); + if (at_tc && tests[i].success_on_tc) + ASSERT_GE(bpf_obj->bss->ret, 0, buf); + else + ASSERT_EQ(bpf_obj->bss->ret, expected_ret, buf); + } + } + +out: + if (bpf_obj) + empty_skb__destroy(bpf_obj); + if (tok) + close_netns(tok); + SYS_NOFAIL("ip netns del empty_skb"); +} diff --git a/tools/testing/selftests/bpf/prog_tests/enable_stats.c b/tools/testing/selftests/bpf/prog_tests/enable_stats.c index 2cb2085917e7..75f85d0fe74a 100644 --- a/tools/testing/selftests/bpf/prog_tests/enable_stats.c +++ b/tools/testing/selftests/bpf/prog_tests/enable_stats.c @@ -28,7 +28,7 @@ void test_enable_stats(void) prog_fd = bpf_program__fd(skel->progs.test_enable_stats); memset(&info, 0, info_len); - err = bpf_obj_get_info_by_fd(prog_fd, &info, &info_len); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); if (CHECK(err, "get_prog_info", "failed to get bpf_prog_info for fd %d\n", prog_fd)) goto cleanup; diff --git a/tools/testing/selftests/bpf/prog_tests/exceptions.c b/tools/testing/selftests/bpf/prog_tests/exceptions.c new file mode 100644 index 000000000000..516f4a13013c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/exceptions.c @@ -0,0 +1,409 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> + +#include "exceptions.skel.h" +#include "exceptions_ext.skel.h" +#include "exceptions_fail.skel.h" +#include "exceptions_assert.skel.h" + +static char log_buf[1024 * 1024]; + +static void test_exceptions_failure(void) +{ + RUN_TESTS(exceptions_fail); +} + +static void test_exceptions_success(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, ropts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct exceptions_ext *eskel = NULL; + struct exceptions *skel; + int ret; + + skel = exceptions__open(); + if (!ASSERT_OK_PTR(skel, "exceptions__open")) + return; + + ret = exceptions__load(skel); + if (!ASSERT_OK(ret, "exceptions__load")) + goto done; + + if (!ASSERT_OK(bpf_map_update_elem(bpf_map__fd(skel->maps.jmp_table), &(int){0}, + &(int){bpf_program__fd(skel->progs.exception_tail_call_target)}, BPF_ANY), + "bpf_map_update_elem jmp_table")) + goto done; + +#define RUN_SUCCESS(_prog, return_val) \ + if (!test__start_subtest(#_prog)) goto _prog##_##return_val; \ + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs._prog), &ropts); \ + ASSERT_OK(ret, #_prog " prog run ret"); \ + ASSERT_EQ(ropts.retval, return_val, #_prog " prog run retval"); \ + _prog##_##return_val: + + RUN_SUCCESS(exception_throw_always_1, 64); + RUN_SUCCESS(exception_throw_always_2, 32); + RUN_SUCCESS(exception_throw_unwind_1, 16); + RUN_SUCCESS(exception_throw_unwind_2, 32); + RUN_SUCCESS(exception_throw_default, 0); + RUN_SUCCESS(exception_throw_default_value, 5); + RUN_SUCCESS(exception_tail_call, 24); + RUN_SUCCESS(exception_ext, 0); + RUN_SUCCESS(exception_ext_mod_cb_runtime, 35); + RUN_SUCCESS(exception_throw_subprog, 1); + RUN_SUCCESS(exception_assert_nz_gfunc, 1); + RUN_SUCCESS(exception_assert_zero_gfunc, 1); + RUN_SUCCESS(exception_assert_neg_gfunc, 1); + RUN_SUCCESS(exception_assert_pos_gfunc, 1); + RUN_SUCCESS(exception_assert_negeq_gfunc, 1); + RUN_SUCCESS(exception_assert_poseq_gfunc, 1); + RUN_SUCCESS(exception_assert_nz_gfunc_with, 1); + RUN_SUCCESS(exception_assert_zero_gfunc_with, 1); + RUN_SUCCESS(exception_assert_neg_gfunc_with, 1); + RUN_SUCCESS(exception_assert_pos_gfunc_with, 1); + RUN_SUCCESS(exception_assert_negeq_gfunc_with, 1); + RUN_SUCCESS(exception_assert_poseq_gfunc_with, 1); + RUN_SUCCESS(exception_bad_assert_nz_gfunc, 0); + RUN_SUCCESS(exception_bad_assert_zero_gfunc, 0); + RUN_SUCCESS(exception_bad_assert_neg_gfunc, 0); + RUN_SUCCESS(exception_bad_assert_pos_gfunc, 0); + RUN_SUCCESS(exception_bad_assert_negeq_gfunc, 0); + RUN_SUCCESS(exception_bad_assert_poseq_gfunc, 0); + RUN_SUCCESS(exception_bad_assert_nz_gfunc_with, 100); + RUN_SUCCESS(exception_bad_assert_zero_gfunc_with, 105); + RUN_SUCCESS(exception_bad_assert_neg_gfunc_with, 200); + RUN_SUCCESS(exception_bad_assert_pos_gfunc_with, 0); + RUN_SUCCESS(exception_bad_assert_negeq_gfunc_with, 101); + RUN_SUCCESS(exception_bad_assert_poseq_gfunc_with, 99); + RUN_SUCCESS(exception_assert_range, 1); + RUN_SUCCESS(exception_assert_range_with, 1); + RUN_SUCCESS(exception_bad_assert_range, 0); + RUN_SUCCESS(exception_bad_assert_range_with, 10); + +#define RUN_EXT(load_ret, attach_err, expr, msg, after_link) \ + { \ + LIBBPF_OPTS(bpf_object_open_opts, o, .kernel_log_buf = log_buf, \ + .kernel_log_size = sizeof(log_buf), \ + .kernel_log_level = 2); \ + exceptions_ext__destroy(eskel); \ + eskel = exceptions_ext__open_opts(&o); \ + struct bpf_program *prog = NULL; \ + struct bpf_link *link = NULL; \ + if (!ASSERT_OK_PTR(eskel, "exceptions_ext__open")) \ + goto done; \ + (expr); \ + ASSERT_OK_PTR(bpf_program__name(prog), bpf_program__name(prog)); \ + if (!ASSERT_EQ(exceptions_ext__load(eskel), load_ret, \ + "exceptions_ext__load")) { \ + printf("%s\n", log_buf); \ + goto done; \ + } \ + if (load_ret != 0) { \ + if (!ASSERT_OK_PTR(strstr(log_buf, msg), "strstr")) { \ + printf("%s\n", log_buf); \ + goto done; \ + } \ + } \ + if (!load_ret && attach_err) { \ + if (!ASSERT_ERR_PTR(link = bpf_program__attach(prog), "attach err")) \ + goto done; \ + } else if (!load_ret) { \ + if (!ASSERT_OK_PTR(link = bpf_program__attach(prog), "attach ok")) \ + goto done; \ + (void)(after_link); \ + bpf_link__destroy(link); \ + } \ + } + + if (test__start_subtest("non-throwing fentry -> exception_cb")) + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.pfentry; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_ext_mod_cb_runtime), + "exception_cb_mod"), "set_attach_target")) + goto done; + }), "FENTRY/FEXIT programs cannot attach to exception callback", 0); + + if (test__start_subtest("throwing fentry -> exception_cb")) + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.throwing_fentry; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_ext_mod_cb_runtime), + "exception_cb_mod"), "set_attach_target")) + goto done; + }), "FENTRY/FEXIT programs cannot attach to exception callback", 0); + + if (test__start_subtest("non-throwing fexit -> exception_cb")) + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.pfexit; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_ext_mod_cb_runtime), + "exception_cb_mod"), "set_attach_target")) + goto done; + }), "FENTRY/FEXIT programs cannot attach to exception callback", 0); + + if (test__start_subtest("throwing fexit -> exception_cb")) + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.throwing_fexit; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_ext_mod_cb_runtime), + "exception_cb_mod"), "set_attach_target")) + goto done; + }), "FENTRY/FEXIT programs cannot attach to exception callback", 0); + + if (test__start_subtest("throwing extension (with custom cb) -> exception_cb")) + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.throwing_exception_cb_extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_ext_mod_cb_runtime), + "exception_cb_mod"), "set_attach_target")) + goto done; + }), "Extension programs cannot attach to exception callback", 0); + + if (test__start_subtest("throwing extension -> global func in exception_cb")) + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_exception_cb_extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_ext_mod_cb_runtime), + "exception_cb_mod_global"), "set_attach_target")) + goto done; + }), "", ({ RUN_SUCCESS(exception_ext_mod_cb_runtime, 131); })); + + if (test__start_subtest("throwing extension (with custom cb) -> global func in exception_cb")) + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_ext), + "exception_ext_global"), "set_attach_target")) + goto done; + }), "", ({ RUN_SUCCESS(exception_ext, 128); })); + + if (test__start_subtest("non-throwing fentry -> non-throwing subprog")) + /* non-throwing fentry -> non-throwing subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.pfentry; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("throwing fentry -> non-throwing subprog")) + /* throwing fentry -> non-throwing subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_fentry; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("non-throwing fentry -> throwing subprog")) + /* non-throwing fentry -> throwing subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.pfentry; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "throwing_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("throwing fentry -> throwing subprog")) + /* throwing fentry -> throwing subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_fentry; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "throwing_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("non-throwing fexit -> non-throwing subprog")) + /* non-throwing fexit -> non-throwing subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.pfexit; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("throwing fexit -> non-throwing subprog")) + /* throwing fexit -> non-throwing subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_fexit; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("non-throwing fexit -> throwing subprog")) + /* non-throwing fexit -> throwing subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.pfexit; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "throwing_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("throwing fexit -> throwing subprog")) + /* throwing fexit -> throwing subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_fexit; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "throwing_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + /* fmod_ret not allowed for subprog - Check so we remember to handle its + * throwing specification compatibility with target when supported. + */ + if (test__start_subtest("non-throwing fmod_ret -> non-throwing subprog")) + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.pfmod_ret; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "subprog"), "set_attach_target")) + goto done; + }), "can't modify return codes of BPF program", 0); + + /* fmod_ret not allowed for subprog - Check so we remember to handle its + * throwing specification compatibility with target when supported. + */ + if (test__start_subtest("non-throwing fmod_ret -> non-throwing global subprog")) + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.pfmod_ret; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "global_subprog"), "set_attach_target")) + goto done; + }), "can't modify return codes of BPF program", 0); + + if (test__start_subtest("non-throwing extension -> non-throwing subprog")) + /* non-throwing extension -> non-throwing subprog : BAD (!global) */ + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "subprog"), "set_attach_target")) + goto done; + }), "subprog() is not a global function", 0); + + if (test__start_subtest("non-throwing extension -> throwing subprog")) + /* non-throwing extension -> throwing subprog : BAD (!global) */ + RUN_EXT(-EINVAL, true, ({ + prog = eskel->progs.extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "throwing_subprog"), "set_attach_target")) + goto done; + }), "throwing_subprog() is not a global function", 0); + + if (test__start_subtest("non-throwing extension -> non-throwing subprog")) + /* non-throwing extension -> non-throwing global subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "global_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("non-throwing extension -> throwing global subprog")) + /* non-throwing extension -> throwing global subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "throwing_global_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("throwing extension -> throwing global subprog")) + /* throwing extension -> throwing global subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "throwing_global_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("throwing extension -> non-throwing global subprog")) + /* throwing extension -> non-throwing global subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "global_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("non-throwing extension -> main subprog")) + /* non-throwing extension -> main subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "exception_throw_subprog"), "set_attach_target")) + goto done; + }), "", 0); + + if (test__start_subtest("throwing extension -> main subprog")) + /* throwing extension -> main subprog : OK */ + RUN_EXT(0, false, ({ + prog = eskel->progs.throwing_extension; + bpf_program__set_autoload(prog, true); + if (!ASSERT_OK(bpf_program__set_attach_target(prog, + bpf_program__fd(skel->progs.exception_throw_subprog), + "exception_throw_subprog"), "set_attach_target")) + goto done; + }), "", 0); + +done: + exceptions_ext__destroy(eskel); + exceptions__destroy(skel); +} + +static void test_exceptions_assertions(void) +{ + RUN_TESTS(exceptions_assert); +} + +void test_exceptions(void) +{ + test_exceptions_success(); + test_exceptions_failure(); + test_exceptions_assertions(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/exhandler.c b/tools/testing/selftests/bpf/prog_tests/exhandler.c new file mode 100644 index 000000000000..118bb182ee20 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/exhandler.c @@ -0,0 +1,43 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021, Oracle and/or its affiliates. */ + +#include <test_progs.h> + +/* Test that verifies exception handling is working. fork() + * triggers task_newtask tracepoint; that new task will have a + * NULL pointer task_works, and the associated task->task_works->func + * should not be NULL if task_works itself is non-NULL. + * + * So to verify exception handling we want to see a NULL task_works + * and task_works->func; if we see this we can conclude that the + * exception handler ran when we attempted to dereference task->task_works + * and zeroed the destination register. + */ +#include "exhandler_kern.skel.h" + +void test_exhandler(void) +{ + int err = 0, duration = 0, status; + struct exhandler_kern *skel; + pid_t cpid; + + skel = exhandler_kern__open_and_load(); + if (CHECK(!skel, "skel_load", "skeleton failed: %d\n", err)) + goto cleanup; + + skel->bss->test_pid = getpid(); + + err = exhandler_kern__attach(skel); + if (!ASSERT_OK(err, "attach")) + goto cleanup; + cpid = fork(); + if (!ASSERT_GT(cpid, -1, "fork failed")) + goto cleanup; + if (cpid == 0) + _exit(0); + waitpid(cpid, &status, 0); + + ASSERT_NEQ(skel->bss->exception_triggered, 0, "verify exceptions occurred"); +cleanup: + exhandler_kern__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/fentry_fexit.c b/tools/testing/selftests/bpf/prog_tests/fentry_fexit.c index 109d0345a2be..130f5b82d2e6 100644 --- a/tools/testing/selftests/bpf/prog_tests/fentry_fexit.c +++ b/tools/testing/selftests/bpf/prog_tests/fentry_fexit.c @@ -1,49 +1,45 @@ // SPDX-License-Identifier: GPL-2.0 /* Copyright (c) 2019 Facebook */ #include <test_progs.h> -#include "fentry_test.skel.h" -#include "fexit_test.skel.h" +#include "fentry_test.lskel.h" +#include "fexit_test.lskel.h" void test_fentry_fexit(void) { - struct fentry_test *fentry_skel = NULL; - struct fexit_test *fexit_skel = NULL; + struct fentry_test_lskel *fentry_skel = NULL; + struct fexit_test_lskel *fexit_skel = NULL; __u64 *fentry_res, *fexit_res; - __u32 duration = 0, retval; int err, prog_fd, i; + LIBBPF_OPTS(bpf_test_run_opts, topts); - fentry_skel = fentry_test__open_and_load(); - if (CHECK(!fentry_skel, "fentry_skel_load", "fentry skeleton failed\n")) + fentry_skel = fentry_test_lskel__open_and_load(); + if (!ASSERT_OK_PTR(fentry_skel, "fentry_skel_load")) goto close_prog; - fexit_skel = fexit_test__open_and_load(); - if (CHECK(!fexit_skel, "fexit_skel_load", "fexit skeleton failed\n")) + fexit_skel = fexit_test_lskel__open_and_load(); + if (!ASSERT_OK_PTR(fexit_skel, "fexit_skel_load")) goto close_prog; - err = fentry_test__attach(fentry_skel); - if (CHECK(err, "fentry_attach", "fentry attach failed: %d\n", err)) + err = fentry_test_lskel__attach(fentry_skel); + if (!ASSERT_OK(err, "fentry_attach")) goto close_prog; - err = fexit_test__attach(fexit_skel); - if (CHECK(err, "fexit_attach", "fexit attach failed: %d\n", err)) + err = fexit_test_lskel__attach(fexit_skel); + if (!ASSERT_OK(err, "fexit_attach")) goto close_prog; - prog_fd = bpf_program__fd(fexit_skel->progs.test1); - err = bpf_prog_test_run(prog_fd, 1, NULL, 0, - NULL, NULL, &retval, &duration); - CHECK(err || retval, "ipv6", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); + prog_fd = fexit_skel->progs.test1.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "ipv6 test_run"); + ASSERT_OK(topts.retval, "ipv6 test retval"); fentry_res = (__u64 *)fentry_skel->bss; fexit_res = (__u64 *)fexit_skel->bss; printf("%lld\n", fentry_skel->bss->test1_result); for (i = 0; i < 8; i++) { - CHECK(fentry_res[i] != 1, "result", - "fentry_test%d failed err %lld\n", i + 1, fentry_res[i]); - CHECK(fexit_res[i] != 1, "result", - "fexit_test%d failed err %lld\n", i + 1, fexit_res[i]); + ASSERT_EQ(fentry_res[i], 1, "fentry result"); + ASSERT_EQ(fexit_res[i], 1, "fexit result"); } close_prog: - fentry_test__destroy(fentry_skel); - fexit_test__destroy(fexit_skel); + fentry_test_lskel__destroy(fentry_skel); + fexit_test_lskel__destroy(fexit_skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/fentry_test.c b/tools/testing/selftests/bpf/prog_tests/fentry_test.c index 04ebbf1cb390..aee1bc77a17f 100644 --- a/tools/testing/selftests/bpf/prog_tests/fentry_test.c +++ b/tools/testing/selftests/bpf/prog_tests/fentry_test.c @@ -1,37 +1,93 @@ // SPDX-License-Identifier: GPL-2.0 /* Copyright (c) 2019 Facebook */ #include <test_progs.h> -#include "fentry_test.skel.h" +#include "fentry_test.lskel.h" +#include "fentry_many_args.skel.h" -void test_fentry_test(void) +static int fentry_test_common(struct fentry_test_lskel *fentry_skel) { - struct fentry_test *fentry_skel = NULL; int err, prog_fd, i; - __u32 duration = 0, retval; + int link_fd; __u64 *result; + LIBBPF_OPTS(bpf_test_run_opts, topts); - fentry_skel = fentry_test__open_and_load(); - if (CHECK(!fentry_skel, "fentry_skel_load", "fentry skeleton failed\n")) - goto cleanup; + err = fentry_test_lskel__attach(fentry_skel); + if (!ASSERT_OK(err, "fentry_attach")) + return err; - err = fentry_test__attach(fentry_skel); - if (CHECK(err, "fentry_attach", "fentry attach failed: %d\n", err)) - goto cleanup; + /* Check that already linked program can't be attached again. */ + link_fd = fentry_test_lskel__test1__attach(fentry_skel); + if (!ASSERT_LT(link_fd, 0, "fentry_attach_link")) + return -1; - prog_fd = bpf_program__fd(fentry_skel->progs.test1); - err = bpf_prog_test_run(prog_fd, 1, NULL, 0, - NULL, NULL, &retval, &duration); - CHECK(err || retval, "test_run", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); + prog_fd = fentry_skel->progs.test1.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); result = (__u64 *)fentry_skel->bss; - for (i = 0; i < 6; i++) { - if (CHECK(result[i] != 1, "result", - "fentry_test%d failed err %lld\n", i + 1, result[i])) - goto cleanup; + for (i = 0; i < sizeof(*fentry_skel->bss) / sizeof(__u64); i++) { + if (!ASSERT_EQ(result[i], 1, "fentry_result")) + return -1; } + fentry_test_lskel__detach(fentry_skel); + + /* zero results for re-attach test */ + memset(fentry_skel->bss, 0, sizeof(*fentry_skel->bss)); + return 0; +} + +static void fentry_test(void) +{ + struct fentry_test_lskel *fentry_skel = NULL; + int err; + + fentry_skel = fentry_test_lskel__open_and_load(); + if (!ASSERT_OK_PTR(fentry_skel, "fentry_skel_load")) + goto cleanup; + + err = fentry_test_common(fentry_skel); + if (!ASSERT_OK(err, "fentry_first_attach")) + goto cleanup; + + err = fentry_test_common(fentry_skel); + ASSERT_OK(err, "fentry_second_attach"); + +cleanup: + fentry_test_lskel__destroy(fentry_skel); +} + +static void fentry_many_args(void) +{ + struct fentry_many_args *fentry_skel = NULL; + int err; + + fentry_skel = fentry_many_args__open_and_load(); + if (!ASSERT_OK_PTR(fentry_skel, "fentry_many_args_skel_load")) + goto cleanup; + + err = fentry_many_args__attach(fentry_skel); + if (!ASSERT_OK(err, "fentry_many_args_attach")) + goto cleanup; + + ASSERT_OK(trigger_module_test_read(1), "trigger_read"); + + ASSERT_EQ(fentry_skel->bss->test1_result, 1, + "fentry_many_args_result1"); + ASSERT_EQ(fentry_skel->bss->test2_result, 1, + "fentry_many_args_result2"); + ASSERT_EQ(fentry_skel->bss->test3_result, 1, + "fentry_many_args_result3"); + cleanup: - fentry_test__destroy(fentry_skel); + fentry_many_args__destroy(fentry_skel); +} + +void test_fentry_test(void) +{ + if (test__start_subtest("fentry")) + fentry_test(); + if (test__start_subtest("fentry_many_args")) + fentry_many_args(); } diff --git a/tools/testing/selftests/bpf/prog_tests/fexit_bpf2bpf.c b/tools/testing/selftests/bpf/prog_tests/fexit_bpf2bpf.c index 197d0d217b56..f29fc789c14b 100644 --- a/tools/testing/selftests/bpf/prog_tests/fexit_bpf2bpf.c +++ b/tools/testing/selftests/bpf/prog_tests/fexit_bpf2bpf.c @@ -2,90 +2,173 @@ /* Copyright (c) 2019 Facebook */ #include <test_progs.h> #include <network_helpers.h> +#include <bpf/btf.h> +#include "bind4_prog.skel.h" +#include "freplace_progmap.skel.h" +#include "xdp_dummy.skel.h" + +typedef int (*test_cb)(struct bpf_object *obj); + +static int check_data_map(struct bpf_object *obj, int prog_cnt, bool reset) +{ + struct bpf_map *data_map = NULL, *map; + __u64 *result = NULL; + const int zero = 0; + __u32 duration = 0; + int ret = -1, i; + + result = malloc((prog_cnt + 32 /* spare */) * sizeof(__u64)); + if (CHECK(!result, "alloc_memory", "failed to alloc memory")) + return -ENOMEM; + + bpf_object__for_each_map(map, obj) + if (bpf_map__is_internal(map)) { + data_map = map; + break; + } + if (CHECK(!data_map, "find_data_map", "data map not found\n")) + goto out; + + ret = bpf_map_lookup_elem(bpf_map__fd(data_map), &zero, result); + if (CHECK(ret, "get_result", + "failed to get output data: %d\n", ret)) + goto out; + + for (i = 0; i < prog_cnt; i++) { + if (CHECK(result[i] != 1, "result", + "fexit_bpf2bpf result[%d] failed err %llu\n", + i, result[i])) + goto out; + result[i] = 0; + } + if (reset) { + ret = bpf_map_update_elem(bpf_map__fd(data_map), &zero, result, 0); + if (CHECK(ret, "reset_result", "failed to reset result\n")) + goto out; + } + + ret = 0; +out: + free(result); + return ret; +} static void test_fexit_bpf2bpf_common(const char *obj_file, const char *target_obj_file, int prog_cnt, const char **prog_name, - bool run_prog) + bool run_prog, + test_cb cb) { - struct bpf_object *obj = NULL, *pkt_obj; - int err, pkt_fd, i; + struct bpf_object *obj = NULL, *tgt_obj; + __u32 tgt_prog_id, info_len; + struct bpf_prog_info prog_info = {}; + struct bpf_program **prog = NULL, *p; struct bpf_link **link = NULL; - struct bpf_program **prog = NULL; - __u32 duration = 0, retval; - struct bpf_map *data_map; - const int zero = 0; - __u64 *result = NULL; + int err, tgt_fd, i; + struct btf *btf; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v6, + .data_size_in = sizeof(pkt_v6), + .repeat = 1, + ); - err = bpf_prog_load(target_obj_file, BPF_PROG_TYPE_UNSPEC, - &pkt_obj, &pkt_fd); - if (CHECK(err, "tgt_prog_load", "file %s err %d errno %d\n", - target_obj_file, err, errno)) + err = bpf_prog_test_load(target_obj_file, BPF_PROG_TYPE_UNSPEC, + &tgt_obj, &tgt_fd); + if (!ASSERT_OK(err, "tgt_prog_load")) return; - DECLARE_LIBBPF_OPTS(bpf_object_open_opts, opts, - .attach_prog_fd = pkt_fd, - ); + + info_len = sizeof(prog_info); + err = bpf_prog_get_info_by_fd(tgt_fd, &prog_info, &info_len); + if (!ASSERT_OK(err, "tgt_fd_get_info")) + goto close_prog; + + tgt_prog_id = prog_info.id; + btf = bpf_object__btf(tgt_obj); link = calloc(sizeof(struct bpf_link *), prog_cnt); + if (!ASSERT_OK_PTR(link, "link_ptr")) + goto close_prog; + prog = calloc(sizeof(struct bpf_program *), prog_cnt); - result = malloc((prog_cnt + 32 /* spare */) * sizeof(__u64)); - if (CHECK(!link || !prog || !result, "alloc_memory", - "failed to alloc memory")) + if (!ASSERT_OK_PTR(prog, "prog_ptr")) goto close_prog; - obj = bpf_object__open_file(obj_file, &opts); - if (CHECK(IS_ERR_OR_NULL(obj), "obj_open", - "failed to open %s: %ld\n", obj_file, - PTR_ERR(obj))) + obj = bpf_object__open_file(obj_file, NULL); + if (!ASSERT_OK_PTR(obj, "obj_open")) goto close_prog; + bpf_object__for_each_program(p, obj) { + err = bpf_program__set_attach_target(p, tgt_fd, NULL); + ASSERT_OK(err, "set_attach_target"); + } + err = bpf_object__load(obj); - if (CHECK(err, "obj_load", "err %d\n", err)) + if (!ASSERT_OK(err, "obj_load")) goto close_prog; for (i = 0; i < prog_cnt; i++) { - prog[i] = bpf_object__find_program_by_title(obj, prog_name[i]); - if (CHECK(!prog[i], "find_prog", "prog %s not found\n", prog_name[i])) + struct bpf_link_info link_info; + struct bpf_program *pos; + const char *pos_sec_name; + char *tgt_name; + __s32 btf_id; + + tgt_name = strstr(prog_name[i], "/"); + if (!ASSERT_OK_PTR(tgt_name, "tgt_name")) goto close_prog; + btf_id = btf__find_by_name_kind(btf, tgt_name + 1, BTF_KIND_FUNC); + + prog[i] = NULL; + bpf_object__for_each_program(pos, obj) { + pos_sec_name = bpf_program__section_name(pos); + if (pos_sec_name && !strcmp(pos_sec_name, prog_name[i])) { + prog[i] = pos; + break; + } + } + if (!ASSERT_OK_PTR(prog[i], prog_name[i])) + goto close_prog; + link[i] = bpf_program__attach_trace(prog[i]); - if (CHECK(IS_ERR(link[i]), "attach_trace", "failed to link\n")) + if (!ASSERT_OK_PTR(link[i], "attach_trace")) goto close_prog; + + info_len = sizeof(link_info); + memset(&link_info, 0, sizeof(link_info)); + err = bpf_link_get_info_by_fd(bpf_link__fd(link[i]), + &link_info, &info_len); + ASSERT_OK(err, "link_fd_get_info"); + ASSERT_EQ(link_info.tracing.attach_type, + bpf_program__expected_attach_type(prog[i]), + "link_attach_type"); + ASSERT_EQ(link_info.tracing.target_obj_id, tgt_prog_id, "link_tgt_obj_id"); + ASSERT_EQ(link_info.tracing.target_btf_id, btf_id, "link_tgt_btf_id"); } - if (!run_prog) - goto close_prog; + if (cb) { + err = cb(obj); + if (err) + goto close_prog; + } - data_map = bpf_object__find_map_by_name(obj, "fexit_bp.bss"); - if (CHECK(!data_map, "find_data_map", "data map not found\n")) + if (!run_prog) goto close_prog; - err = bpf_prog_test_run(pkt_fd, 1, &pkt_v6, sizeof(pkt_v6), - NULL, NULL, &retval, &duration); - CHECK(err || retval, "ipv6", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); + err = bpf_prog_test_run_opts(tgt_fd, &topts); + ASSERT_OK(err, "prog_run"); + ASSERT_EQ(topts.retval, 0, "prog_run_ret"); - err = bpf_map_lookup_elem(bpf_map__fd(data_map), &zero, result); - if (CHECK(err, "get_result", - "failed to get output data: %d\n", err)) + if (check_data_map(obj, prog_cnt, false)) goto close_prog; - for (i = 0; i < prog_cnt; i++) - if (CHECK(result[i] != 1, "result", "fexit_bpf2bpf failed err %llu\n", - result[i])) - goto close_prog; - close_prog: for (i = 0; i < prog_cnt; i++) - if (!IS_ERR_OR_NULL(link[i])) - bpf_link__destroy(link[i]); - if (!IS_ERR_OR_NULL(obj)) - bpf_object__close(obj); - bpf_object__close(pkt_obj); + bpf_link__destroy(link[i]); + bpf_object__close(obj); + bpf_object__close(tgt_obj); free(link); free(prog); - free(result); } static void test_target_no_callees(void) @@ -93,10 +176,10 @@ static void test_target_no_callees(void) const char *prog_name[] = { "fexit/test_pkt_md_access", }; - test_fexit_bpf2bpf_common("./fexit_bpf2bpf_simple.o", - "./test_pkt_md_access.o", + test_fexit_bpf2bpf_common("./fexit_bpf2bpf_simple.bpf.o", + "./test_pkt_md_access.bpf.o", ARRAY_SIZE(prog_name), - prog_name, true); + prog_name, true, NULL); } static void test_target_yes_callees(void) @@ -107,10 +190,10 @@ static void test_target_yes_callees(void) "fexit/test_pkt_access_subprog2", "fexit/test_pkt_access_subprog3", }; - test_fexit_bpf2bpf_common("./fexit_bpf2bpf.o", - "./test_pkt_access.o", + test_fexit_bpf2bpf_common("./fexit_bpf2bpf.bpf.o", + "./test_pkt_access.bpf.o", ARRAY_SIZE(prog_name), - prog_name, true); + prog_name, true, NULL); } static void test_func_replace(void) @@ -123,11 +206,12 @@ static void test_func_replace(void) "freplace/get_skb_len", "freplace/get_skb_ifindex", "freplace/get_constant", + "freplace/test_pkt_write_access_subprog", }; - test_fexit_bpf2bpf_common("./fexit_bpf2bpf.o", - "./test_pkt_access.o", + test_fexit_bpf2bpf_common("./fexit_bpf2bpf.bpf.o", + "./test_pkt_access.bpf.o", ARRAY_SIZE(prog_name), - prog_name, true); + prog_name, true, NULL); } static void test_func_replace_verify(void) @@ -135,16 +219,382 @@ static void test_func_replace_verify(void) const char *prog_name[] = { "freplace/do_bind", }; - test_fexit_bpf2bpf_common("./freplace_connect4.o", - "./connect4_prog.o", + test_fexit_bpf2bpf_common("./freplace_connect4.bpf.o", + "./connect4_prog.bpf.o", + ARRAY_SIZE(prog_name), + prog_name, false, NULL); +} + +static int test_second_attach(struct bpf_object *obj) +{ + const char *prog_name = "security_new_get_constant"; + const char *tgt_name = "get_constant"; + const char *tgt_obj_file = "./test_pkt_access.bpf.o"; + struct bpf_program *prog = NULL; + struct bpf_object *tgt_obj; + struct bpf_link *link; + int err = 0, tgt_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v6, + .data_size_in = sizeof(pkt_v6), + .repeat = 1, + ); + + prog = bpf_object__find_program_by_name(obj, prog_name); + if (!ASSERT_OK_PTR(prog, "find_prog")) + return -ENOENT; + + err = bpf_prog_test_load(tgt_obj_file, BPF_PROG_TYPE_UNSPEC, + &tgt_obj, &tgt_fd); + if (!ASSERT_OK(err, "second_prog_load")) + return err; + + link = bpf_program__attach_freplace(prog, tgt_fd, tgt_name); + if (!ASSERT_OK_PTR(link, "second_link")) + goto out; + + err = bpf_prog_test_run_opts(tgt_fd, &topts); + if (!ASSERT_OK(err, "ipv6 test_run")) + goto out; + if (!ASSERT_OK(topts.retval, "ipv6 retval")) + goto out; + + err = check_data_map(obj, 1, true); + if (err) + goto out; + +out: + bpf_link__destroy(link); + bpf_object__close(tgt_obj); + return err; +} + +static void test_func_replace_multi(void) +{ + const char *prog_name[] = { + "freplace/get_constant", + }; + test_fexit_bpf2bpf_common("./freplace_get_constant.bpf.o", + "./test_pkt_access.bpf.o", + ARRAY_SIZE(prog_name), + prog_name, true, test_second_attach); +} + +static void test_fmod_ret_freplace(void) +{ + struct bpf_object *freplace_obj = NULL, *pkt_obj, *fmod_obj = NULL; + const char *freplace_name = "./freplace_get_constant.bpf.o"; + const char *fmod_ret_name = "./fmod_ret_freplace.bpf.o"; + DECLARE_LIBBPF_OPTS(bpf_object_open_opts, opts); + const char *tgt_name = "./test_pkt_access.bpf.o"; + struct bpf_link *freplace_link = NULL; + struct bpf_program *prog; + __u32 duration = 0; + int err, pkt_fd, attach_prog_fd; + + err = bpf_prog_test_load(tgt_name, BPF_PROG_TYPE_UNSPEC, + &pkt_obj, &pkt_fd); + /* the target prog should load fine */ + if (CHECK(err, "tgt_prog_load", "file %s err %d errno %d\n", + tgt_name, err, errno)) + return; + + freplace_obj = bpf_object__open_file(freplace_name, NULL); + if (!ASSERT_OK_PTR(freplace_obj, "freplace_obj_open")) + goto out; + + prog = bpf_object__next_program(freplace_obj, NULL); + err = bpf_program__set_attach_target(prog, pkt_fd, NULL); + ASSERT_OK(err, "freplace__set_attach_target"); + + err = bpf_object__load(freplace_obj); + if (CHECK(err, "freplace_obj_load", "err %d\n", err)) + goto out; + + freplace_link = bpf_program__attach_trace(prog); + if (!ASSERT_OK_PTR(freplace_link, "freplace_attach_trace")) + goto out; + + fmod_obj = bpf_object__open_file(fmod_ret_name, NULL); + if (!ASSERT_OK_PTR(fmod_obj, "fmod_obj_open")) + goto out; + + attach_prog_fd = bpf_program__fd(prog); + prog = bpf_object__next_program(fmod_obj, NULL); + err = bpf_program__set_attach_target(prog, attach_prog_fd, NULL); + ASSERT_OK(err, "fmod_ret_set_attach_target"); + + err = bpf_object__load(fmod_obj); + if (CHECK(!err, "fmod_obj_load", "loading fmod_ret should fail\n")) + goto out; + +out: + bpf_link__destroy(freplace_link); + bpf_object__close(freplace_obj); + bpf_object__close(fmod_obj); + bpf_object__close(pkt_obj); +} + + +static void test_func_sockmap_update(void) +{ + const char *prog_name[] = { + "freplace/cls_redirect", + }; + test_fexit_bpf2bpf_common("./freplace_cls_redirect.bpf.o", + "./test_cls_redirect.bpf.o", + ARRAY_SIZE(prog_name), + prog_name, false, NULL); +} + +static void test_obj_load_failure_common(const char *obj_file, + const char *target_obj_file, + const char *exp_msg) +{ + /* + * standalone test that asserts failure to load freplace prog + * because of invalid return code. + */ + struct bpf_object *obj = NULL, *pkt_obj; + struct bpf_program *prog; + char log_buf[64 * 1024]; + int err, pkt_fd; + __u32 duration = 0; + + err = bpf_prog_test_load(target_obj_file, BPF_PROG_TYPE_UNSPEC, + &pkt_obj, &pkt_fd); + /* the target prog should load fine */ + if (CHECK(err, "tgt_prog_load", "file %s err %d errno %d\n", + target_obj_file, err, errno)) + return; + + obj = bpf_object__open_file(obj_file, NULL); + if (!ASSERT_OK_PTR(obj, "obj_open")) + goto close_prog; + + prog = bpf_object__next_program(obj, NULL); + err = bpf_program__set_attach_target(prog, pkt_fd, NULL); + ASSERT_OK(err, "set_attach_target"); + + log_buf[0] = '\0'; + if (exp_msg) + bpf_program__set_log_buf(prog, log_buf, sizeof(log_buf)); + if (env.verbosity > VERBOSE_NONE) + bpf_program__set_log_level(prog, 2); + + /* It should fail to load the program */ + err = bpf_object__load(obj); + if (env.verbosity > VERBOSE_NONE && exp_msg) /* we overtook log */ + printf("VERIFIER LOG:\n================\n%s\n================\n", log_buf); + if (CHECK(!err, "bpf_obj_load should fail", "err %d\n", err)) + goto close_prog; + + if (exp_msg) + ASSERT_HAS_SUBSTR(log_buf, exp_msg, "fail_msg"); +close_prog: + bpf_object__close(obj); + bpf_object__close(pkt_obj); +} + +static void test_func_replace_return_code(void) +{ + /* test invalid return code in the replaced program */ + test_obj_load_failure_common("./freplace_connect_v4_prog.bpf.o", + "./connect4_prog.bpf.o", NULL); +} + +static void test_func_map_prog_compatibility(void) +{ + /* test with spin lock map value in the replaced program */ + test_obj_load_failure_common("./freplace_attach_probe.bpf.o", + "./test_attach_probe.bpf.o", NULL); +} + +static void test_func_replace_unreliable(void) +{ + /* freplace'ing unreliable main prog should fail with error + * "Cannot replace static functions" + */ + test_obj_load_failure_common("freplace_unreliable_prog.bpf.o", + "./verifier_btf_unreliable_prog.bpf.o", + "Cannot replace static functions"); +} + +static void test_func_replace_global_func(void) +{ + const char *prog_name[] = { + "freplace/test_pkt_access", + }; + + test_fexit_bpf2bpf_common("./freplace_global_func.bpf.o", + "./test_pkt_access.bpf.o", ARRAY_SIZE(prog_name), - prog_name, false); + prog_name, false, NULL); +} + +static int find_prog_btf_id(const char *name, __u32 attach_prog_fd) +{ + struct bpf_prog_info info = {}; + __u32 info_len = sizeof(info); + struct btf *btf; + int ret; + + ret = bpf_prog_get_info_by_fd(attach_prog_fd, &info, &info_len); + if (ret) + return ret; + + if (!info.btf_id) + return -EINVAL; + + btf = btf__load_from_kernel_by_id(info.btf_id); + ret = libbpf_get_error(btf); + if (ret) + return ret; + + ret = btf__find_by_name_kind(btf, name, BTF_KIND_FUNC); + btf__free(btf); + return ret; +} + +static int load_fentry(int attach_prog_fd, int attach_btf_id) +{ + LIBBPF_OPTS(bpf_prog_load_opts, opts, + .expected_attach_type = BPF_TRACE_FENTRY, + .attach_prog_fd = attach_prog_fd, + .attach_btf_id = attach_btf_id, + ); + struct bpf_insn insns[] = { + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + + return bpf_prog_load(BPF_PROG_TYPE_TRACING, + "bind4_fentry", + "GPL", + insns, + ARRAY_SIZE(insns), + &opts); +} + +static void test_fentry_to_cgroup_bpf(void) +{ + struct bind4_prog *skel = NULL; + struct bpf_prog_info info = {}; + __u32 info_len = sizeof(info); + int cgroup_fd = -1; + int fentry_fd = -1; + int btf_id; + + cgroup_fd = test__join_cgroup("/fentry_to_cgroup_bpf"); + if (!ASSERT_GE(cgroup_fd, 0, "cgroup_fd")) + return; + + skel = bind4_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel")) + goto cleanup; + + skel->links.bind_v4_prog = bpf_program__attach_cgroup(skel->progs.bind_v4_prog, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.bind_v4_prog, "bpf_program__attach_cgroup")) + goto cleanup; + + btf_id = find_prog_btf_id("bind_v4_prog", bpf_program__fd(skel->progs.bind_v4_prog)); + if (!ASSERT_GE(btf_id, 0, "find_prog_btf_id")) + goto cleanup; + + fentry_fd = load_fentry(bpf_program__fd(skel->progs.bind_v4_prog), btf_id); + if (!ASSERT_GE(fentry_fd, 0, "load_fentry")) + goto cleanup; + + /* Make sure bpf_prog_get_info_by_fd works correctly when attaching + * to another BPF program. + */ + + ASSERT_OK(bpf_prog_get_info_by_fd(fentry_fd, &info, &info_len), + "bpf_prog_get_info_by_fd"); + + ASSERT_EQ(info.btf_id, 0, "info.btf_id"); + ASSERT_EQ(info.attach_btf_id, btf_id, "info.attach_btf_id"); + ASSERT_GT(info.attach_btf_obj_id, 0, "info.attach_btf_obj_id"); + +cleanup: + if (cgroup_fd >= 0) + close(cgroup_fd); + if (fentry_fd >= 0) + close(fentry_fd); + bind4_prog__destroy(skel); +} + +static void test_func_replace_progmap(void) +{ + struct bpf_cpumap_val value = { .qsize = 1 }; + struct freplace_progmap *skel = NULL; + struct xdp_dummy *tgt_skel = NULL; + __u32 key = 0; + int err; + + skel = freplace_progmap__open(); + if (!ASSERT_OK_PTR(skel, "prog_open")) + return; + + tgt_skel = xdp_dummy__open_and_load(); + if (!ASSERT_OK_PTR(tgt_skel, "tgt_prog_load")) + goto out; + + err = bpf_program__set_attach_target(skel->progs.xdp_cpumap_prog, + bpf_program__fd(tgt_skel->progs.xdp_dummy_prog), + "xdp_dummy_prog"); + if (!ASSERT_OK(err, "set_attach_target")) + goto out; + + err = freplace_progmap__load(skel); + if (!ASSERT_OK(err, "obj_load")) + goto out; + + /* Prior to fixing the kernel, loading the PROG_TYPE_EXT 'redirect' + * program above will cause the map owner type of 'cpumap' to be set to + * PROG_TYPE_EXT. This in turn will cause the bpf_map_update_elem() + * below to fail, because the program we are inserting into the map is + * of PROG_TYPE_XDP. After fixing the kernel, the initial ownership will + * be correctly resolved to the *target* of the PROG_TYPE_EXT program + * (i.e., PROG_TYPE_XDP) and the map update will succeed. + */ + value.bpf_prog.fd = bpf_program__fd(skel->progs.xdp_drop_prog); + err = bpf_map_update_elem(bpf_map__fd(skel->maps.cpu_map), + &key, &value, 0); + ASSERT_OK(err, "map_update"); + +out: + xdp_dummy__destroy(tgt_skel); + freplace_progmap__destroy(skel); } -void test_fexit_bpf2bpf(void) +/* NOTE: affect other tests, must run in serial mode */ +void serial_test_fexit_bpf2bpf(void) { - test_target_no_callees(); - test_target_yes_callees(); - test_func_replace(); - test_func_replace_verify(); + if (test__start_subtest("target_no_callees")) + test_target_no_callees(); + if (test__start_subtest("target_yes_callees")) + test_target_yes_callees(); + if (test__start_subtest("func_replace")) + test_func_replace(); + if (test__start_subtest("func_replace_verify")) + test_func_replace_verify(); + if (test__start_subtest("func_sockmap_update")) + test_func_sockmap_update(); + if (test__start_subtest("func_replace_return_code")) + test_func_replace_return_code(); + if (test__start_subtest("func_map_prog_compatibility")) + test_func_map_prog_compatibility(); + if (test__start_subtest("func_replace_unreliable")) + test_func_replace_unreliable(); + if (test__start_subtest("func_replace_multi")) + test_func_replace_multi(); + if (test__start_subtest("fmod_ret_freplace")) + test_fmod_ret_freplace(); + if (test__start_subtest("func_replace_global_func")) + test_func_replace_global_func(); + if (test__start_subtest("fentry_to_cgroup_bpf")) + test_fentry_to_cgroup_bpf(); + if (test__start_subtest("func_replace_progmap")) + test_func_replace_progmap(); } diff --git a/tools/testing/selftests/bpf/prog_tests/fexit_sleep.c b/tools/testing/selftests/bpf/prog_tests/fexit_sleep.c new file mode 100644 index 000000000000..f949647dbbc2 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/fexit_sleep.c @@ -0,0 +1,82 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#define _GNU_SOURCE +#include <sched.h> +#include <test_progs.h> +#include <time.h> +#include <sys/mman.h> +#include <sys/syscall.h> +#include "fexit_sleep.lskel.h" + +static int do_sleep(void *skel) +{ + struct fexit_sleep_lskel *fexit_skel = skel; + struct timespec ts1 = { .tv_nsec = 1 }; + struct timespec ts2 = { .tv_sec = 10 }; + + fexit_skel->bss->pid = getpid(); + (void)syscall(__NR_nanosleep, &ts1, NULL); + (void)syscall(__NR_nanosleep, &ts2, NULL); + return 0; +} + +#define STACK_SIZE (1024 * 1024) +static char child_stack[STACK_SIZE]; + +void test_fexit_sleep(void) +{ + struct fexit_sleep_lskel *fexit_skel = NULL; + int wstatus, duration = 0; + pid_t cpid; + int err, fexit_cnt; + + fexit_skel = fexit_sleep_lskel__open_and_load(); + if (CHECK(!fexit_skel, "fexit_skel_load", "fexit skeleton failed\n")) + goto cleanup; + + err = fexit_sleep_lskel__attach(fexit_skel); + if (CHECK(err, "fexit_attach", "fexit attach failed: %d\n", err)) + goto cleanup; + + cpid = clone(do_sleep, child_stack + STACK_SIZE, CLONE_FILES | SIGCHLD, fexit_skel); + if (CHECK(cpid == -1, "clone", "%s\n", strerror(errno))) + goto cleanup; + + /* wait until first sys_nanosleep ends and second sys_nanosleep starts */ + while (READ_ONCE(fexit_skel->bss->fentry_cnt) != 2); + fexit_cnt = READ_ONCE(fexit_skel->bss->fexit_cnt); + if (CHECK(fexit_cnt != 1, "fexit_cnt", "%d", fexit_cnt)) + goto cleanup; + + /* close progs and detach them. That will trigger two nop5->jmp5 rewrites + * in the trampolines to skip nanosleep_fexit prog. + * The nanosleep_fentry prog will get detached first. + * The nanosleep_fexit prog will get detached second. + * Detaching will trigger freeing of both progs JITed images. + * There will be two dying bpf_tramp_image-s, but only the initial + * bpf_tramp_image (with both _fentry and _fexit progs will be stuck + * waiting for percpu_ref_kill to confirm). The other one + * will be freed quickly. + */ + close(fexit_skel->progs.nanosleep_fentry.prog_fd); + close(fexit_skel->progs.nanosleep_fexit.prog_fd); + fexit_sleep_lskel__detach(fexit_skel); + + /* kill the thread to unwind sys_nanosleep stack through the trampoline */ + kill(cpid, 9); + + if (CHECK(waitpid(cpid, &wstatus, 0) == -1, "waitpid", "%s\n", strerror(errno))) + goto cleanup; + if (CHECK(WEXITSTATUS(wstatus) != 0, "exitstatus", "failed")) + goto cleanup; + + /* The bypassed nanosleep_fexit prog shouldn't have executed. + * Unlike progs the maps were not freed and directly accessible. + */ + fexit_cnt = READ_ONCE(fexit_skel->bss->fexit_cnt); + if (CHECK(fexit_cnt != 1, "fexit_cnt", "%d", fexit_cnt)) + goto cleanup; + +cleanup: + fexit_sleep_lskel__destroy(fexit_skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/fexit_stress.c b/tools/testing/selftests/bpf/prog_tests/fexit_stress.c index 3b9dbf7433f0..596536def43d 100644 --- a/tools/testing/selftests/bpf/prog_tests/fexit_stress.c +++ b/tools/testing/selftests/bpf/prog_tests/fexit_stress.c @@ -2,75 +2,58 @@ /* Copyright (c) 2019 Facebook */ #include <test_progs.h> -/* x86-64 fits 55 JITed and 43 interpreted progs into half page */ -#define CNT 40 - -void test_fexit_stress(void) +void serial_test_fexit_stress(void) { - char test_skb[128] = {}; - int fexit_fd[CNT] = {}; - int link_fd[CNT] = {}; - __u32 duration = 0; - char error[4096]; - __u32 prog_ret; - int err, i, filter_fd; + int bpf_max_tramp_links, err, i; + int *fd, *fexit_fd, *link_fd; + + bpf_max_tramp_links = get_bpf_max_tramp_links(); + if (!ASSERT_GE(bpf_max_tramp_links, 1, "bpf_max_tramp_links")) + return; + fd = calloc(bpf_max_tramp_links * 2, sizeof(*fd)); + if (!ASSERT_OK_PTR(fd, "fd")) + return; + fexit_fd = fd; + link_fd = fd + bpf_max_tramp_links; const struct bpf_insn trace_program[] = { BPF_MOV64_IMM(BPF_REG_0, 0), BPF_EXIT_INSN(), }; - struct bpf_load_program_attr load_attr = { - .prog_type = BPF_PROG_TYPE_TRACING, - .license = "GPL", - .insns = trace_program, - .insns_cnt = sizeof(trace_program) / sizeof(struct bpf_insn), + LIBBPF_OPTS(bpf_prog_load_opts, trace_opts, .expected_attach_type = BPF_TRACE_FEXIT, - }; + ); - const struct bpf_insn skb_program[] = { - BPF_MOV64_IMM(BPF_REG_0, 0), - BPF_EXIT_INSN(), - }; - - struct bpf_load_program_attr skb_load_attr = { - .prog_type = BPF_PROG_TYPE_SOCKET_FILTER, - .license = "GPL", - .insns = skb_program, - .insns_cnt = sizeof(skb_program) / sizeof(struct bpf_insn), - }; + LIBBPF_OPTS(bpf_test_run_opts, topts); err = libbpf_find_vmlinux_btf_id("bpf_fentry_test1", - load_attr.expected_attach_type); - if (CHECK(err <= 0, "find_vmlinux_btf_id", "failed: %d\n", err)) + trace_opts.expected_attach_type); + if (!ASSERT_GT(err, 0, "find_vmlinux_btf_id")) goto out; - load_attr.attach_btf_id = err; - - for (i = 0; i < CNT; i++) { - fexit_fd[i] = bpf_load_program_xattr(&load_attr, error, sizeof(error)); - if (CHECK(fexit_fd[i] < 0, "fexit loaded", - "failed: %d errno %d\n", fexit_fd[i], errno)) + trace_opts.attach_btf_id = err; + + for (i = 0; i < bpf_max_tramp_links; i++) { + fexit_fd[i] = bpf_prog_load(BPF_PROG_TYPE_TRACING, NULL, "GPL", + trace_program, + sizeof(trace_program) / sizeof(struct bpf_insn), + &trace_opts); + if (!ASSERT_GE(fexit_fd[i], 0, "fexit load")) goto out; - link_fd[i] = bpf_raw_tracepoint_open(NULL, fexit_fd[i]); - if (CHECK(link_fd[i] < 0, "fexit attach failed", - "prog %d failed: %d err %d\n", i, link_fd[i], errno)) + link_fd[i] = bpf_link_create(fexit_fd[i], 0, BPF_TRACE_FEXIT, NULL); + if (!ASSERT_GE(link_fd[i], 0, "fexit attach")) goto out; } - filter_fd = bpf_load_program_xattr(&skb_load_attr, error, sizeof(error)); - if (CHECK(filter_fd < 0, "test_program_loaded", "failed: %d errno %d\n", - filter_fd, errno)) - goto out; + err = bpf_prog_test_run_opts(fexit_fd[0], &topts); + ASSERT_OK(err, "bpf_prog_test_run_opts"); - err = bpf_prog_test_run(filter_fd, 1, test_skb, sizeof(test_skb), 0, - 0, &prog_ret, 0); - close(filter_fd); - CHECK_FAIL(err); out: - for (i = 0; i < CNT; i++) { + for (i = 0; i < bpf_max_tramp_links; i++) { if (link_fd[i]) close(link_fd[i]); if (fexit_fd[i]) close(fexit_fd[i]); } + free(fd); } diff --git a/tools/testing/selftests/bpf/prog_tests/fexit_test.c b/tools/testing/selftests/bpf/prog_tests/fexit_test.c index 78d7a2765c27..1c13007e37dd 100644 --- a/tools/testing/selftests/bpf/prog_tests/fexit_test.c +++ b/tools/testing/selftests/bpf/prog_tests/fexit_test.c @@ -1,37 +1,93 @@ // SPDX-License-Identifier: GPL-2.0 /* Copyright (c) 2019 Facebook */ #include <test_progs.h> -#include "fexit_test.skel.h" +#include "fexit_test.lskel.h" +#include "fexit_many_args.skel.h" -void test_fexit_test(void) +static int fexit_test_common(struct fexit_test_lskel *fexit_skel) { - struct fexit_test *fexit_skel = NULL; int err, prog_fd, i; - __u32 duration = 0, retval; + int link_fd; __u64 *result; + LIBBPF_OPTS(bpf_test_run_opts, topts); - fexit_skel = fexit_test__open_and_load(); - if (CHECK(!fexit_skel, "fexit_skel_load", "fexit skeleton failed\n")) - goto cleanup; + err = fexit_test_lskel__attach(fexit_skel); + if (!ASSERT_OK(err, "fexit_attach")) + return err; - err = fexit_test__attach(fexit_skel); - if (CHECK(err, "fexit_attach", "fexit attach failed: %d\n", err)) - goto cleanup; + /* Check that already linked program can't be attached again. */ + link_fd = fexit_test_lskel__test1__attach(fexit_skel); + if (!ASSERT_LT(link_fd, 0, "fexit_attach_link")) + return -1; - prog_fd = bpf_program__fd(fexit_skel->progs.test1); - err = bpf_prog_test_run(prog_fd, 1, NULL, 0, - NULL, NULL, &retval, &duration); - CHECK(err || retval, "test_run", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); + prog_fd = fexit_skel->progs.test1.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); result = (__u64 *)fexit_skel->bss; - for (i = 0; i < 6; i++) { - if (CHECK(result[i] != 1, "result", - "fexit_test%d failed err %lld\n", i + 1, result[i])) - goto cleanup; + for (i = 0; i < sizeof(*fexit_skel->bss) / sizeof(__u64); i++) { + if (!ASSERT_EQ(result[i], 1, "fexit_result")) + return -1; } + fexit_test_lskel__detach(fexit_skel); + + /* zero results for re-attach test */ + memset(fexit_skel->bss, 0, sizeof(*fexit_skel->bss)); + return 0; +} + +static void fexit_test(void) +{ + struct fexit_test_lskel *fexit_skel = NULL; + int err; + + fexit_skel = fexit_test_lskel__open_and_load(); + if (!ASSERT_OK_PTR(fexit_skel, "fexit_skel_load")) + goto cleanup; + + err = fexit_test_common(fexit_skel); + if (!ASSERT_OK(err, "fexit_first_attach")) + goto cleanup; + + err = fexit_test_common(fexit_skel); + ASSERT_OK(err, "fexit_second_attach"); + +cleanup: + fexit_test_lskel__destroy(fexit_skel); +} + +static void fexit_many_args(void) +{ + struct fexit_many_args *fexit_skel = NULL; + int err; + + fexit_skel = fexit_many_args__open_and_load(); + if (!ASSERT_OK_PTR(fexit_skel, "fexit_many_args_skel_load")) + goto cleanup; + + err = fexit_many_args__attach(fexit_skel); + if (!ASSERT_OK(err, "fexit_many_args_attach")) + goto cleanup; + + ASSERT_OK(trigger_module_test_read(1), "trigger_read"); + + ASSERT_EQ(fexit_skel->bss->test1_result, 1, + "fexit_many_args_result1"); + ASSERT_EQ(fexit_skel->bss->test2_result, 1, + "fexit_many_args_result2"); + ASSERT_EQ(fexit_skel->bss->test3_result, 1, + "fexit_many_args_result3"); + cleanup: - fexit_test__destroy(fexit_skel); + fexit_many_args__destroy(fexit_skel); +} + +void test_fexit_test(void) +{ + if (test__start_subtest("fexit")) + fexit_test(); + if (test__start_subtest("fexit_many_args")) + fexit_many_args(); } diff --git a/tools/testing/selftests/bpf/prog_tests/fib_lookup.c b/tools/testing/selftests/bpf/prog_tests/fib_lookup.c new file mode 100644 index 000000000000..bd7658958004 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/fib_lookup.c @@ -0,0 +1,377 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <linux/rtnetlink.h> +#include <sys/types.h> +#include <net/if.h> + +#include "test_progs.h" +#include "network_helpers.h" +#include "fib_lookup.skel.h" + +#define NS_TEST "fib_lookup_ns" +#define IPV6_IFACE_ADDR "face::face" +#define IPV6_IFACE_ADDR_SEC "cafe::cafe" +#define IPV6_ADDR_DST "face::3" +#define IPV6_NUD_FAILED_ADDR "face::1" +#define IPV6_NUD_STALE_ADDR "face::2" +#define IPV4_IFACE_ADDR "10.0.0.254" +#define IPV4_IFACE_ADDR_SEC "10.1.0.254" +#define IPV4_ADDR_DST "10.2.0.254" +#define IPV4_NUD_FAILED_ADDR "10.0.0.1" +#define IPV4_NUD_STALE_ADDR "10.0.0.2" +#define IPV4_TBID_ADDR "172.0.0.254" +#define IPV4_TBID_NET "172.0.0.0" +#define IPV4_TBID_DST "172.0.0.2" +#define IPV6_TBID_ADDR "fd00::FFFF" +#define IPV6_TBID_NET "fd00::" +#define IPV6_TBID_DST "fd00::2" +#define MARK_NO_POLICY 33 +#define MARK 42 +#define MARK_TABLE "200" +#define IPV4_REMOTE_DST "1.2.3.4" +#define IPV4_LOCAL "10.4.0.3" +#define IPV4_GW1 "10.4.0.1" +#define IPV4_GW2 "10.4.0.2" +#define IPV6_REMOTE_DST "be:ef::b0:10" +#define IPV6_LOCAL "fd01::3" +#define IPV6_GW1 "fd01::1" +#define IPV6_GW2 "fd01::2" +#define DMAC "11:11:11:11:11:11" +#define DMAC_INIT { 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, } +#define DMAC2 "01:01:01:01:01:01" +#define DMAC_INIT2 { 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, } + +struct fib_lookup_test { + const char *desc; + const char *daddr; + int expected_ret; + const char *expected_src; + const char *expected_dst; + int lookup_flags; + __u32 tbid; + __u8 dmac[6]; + __u32 mark; +}; + +static const struct fib_lookup_test tests[] = { + { .desc = "IPv6 failed neigh", + .daddr = IPV6_NUD_FAILED_ADDR, .expected_ret = BPF_FIB_LKUP_RET_NO_NEIGH, }, + { .desc = "IPv6 stale neigh", + .daddr = IPV6_NUD_STALE_ADDR, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .dmac = DMAC_INIT, }, + { .desc = "IPv6 skip neigh", + .daddr = IPV6_NUD_FAILED_ADDR, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .lookup_flags = BPF_FIB_LOOKUP_SKIP_NEIGH, }, + { .desc = "IPv4 failed neigh", + .daddr = IPV4_NUD_FAILED_ADDR, .expected_ret = BPF_FIB_LKUP_RET_NO_NEIGH, }, + { .desc = "IPv4 stale neigh", + .daddr = IPV4_NUD_STALE_ADDR, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .dmac = DMAC_INIT, }, + { .desc = "IPv4 skip neigh", + .daddr = IPV4_NUD_FAILED_ADDR, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .lookup_flags = BPF_FIB_LOOKUP_SKIP_NEIGH, }, + { .desc = "IPv4 TBID lookup failure", + .daddr = IPV4_TBID_DST, .expected_ret = BPF_FIB_LKUP_RET_NOT_FWDED, + .lookup_flags = BPF_FIB_LOOKUP_DIRECT | BPF_FIB_LOOKUP_TBID, + .tbid = RT_TABLE_MAIN, }, + { .desc = "IPv4 TBID lookup success", + .daddr = IPV4_TBID_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .lookup_flags = BPF_FIB_LOOKUP_DIRECT | BPF_FIB_LOOKUP_TBID, .tbid = 100, + .dmac = DMAC_INIT2, }, + { .desc = "IPv6 TBID lookup failure", + .daddr = IPV6_TBID_DST, .expected_ret = BPF_FIB_LKUP_RET_NOT_FWDED, + .lookup_flags = BPF_FIB_LOOKUP_DIRECT | BPF_FIB_LOOKUP_TBID, + .tbid = RT_TABLE_MAIN, }, + { .desc = "IPv6 TBID lookup success", + .daddr = IPV6_TBID_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .lookup_flags = BPF_FIB_LOOKUP_DIRECT | BPF_FIB_LOOKUP_TBID, .tbid = 100, + .dmac = DMAC_INIT2, }, + { .desc = "IPv4 set src addr from netdev", + .daddr = IPV4_NUD_FAILED_ADDR, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_src = IPV4_IFACE_ADDR, + .lookup_flags = BPF_FIB_LOOKUP_SRC | BPF_FIB_LOOKUP_SKIP_NEIGH, }, + { .desc = "IPv6 set src addr from netdev", + .daddr = IPV6_NUD_FAILED_ADDR, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_src = IPV6_IFACE_ADDR, + .lookup_flags = BPF_FIB_LOOKUP_SRC | BPF_FIB_LOOKUP_SKIP_NEIGH, }, + { .desc = "IPv4 set prefsrc addr from route", + .daddr = IPV4_ADDR_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_src = IPV4_IFACE_ADDR_SEC, + .lookup_flags = BPF_FIB_LOOKUP_SRC | BPF_FIB_LOOKUP_SKIP_NEIGH, }, + { .desc = "IPv6 set prefsrc addr route", + .daddr = IPV6_ADDR_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_src = IPV6_IFACE_ADDR_SEC, + .lookup_flags = BPF_FIB_LOOKUP_SRC | BPF_FIB_LOOKUP_SKIP_NEIGH, }, + /* policy routing */ + { .desc = "IPv4 policy routing, default", + .daddr = IPV4_REMOTE_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_dst = IPV4_GW1, + .lookup_flags = BPF_FIB_LOOKUP_MARK | BPF_FIB_LOOKUP_SKIP_NEIGH, }, + { .desc = "IPv4 policy routing, mark doesn't point to a policy", + .daddr = IPV4_REMOTE_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_dst = IPV4_GW1, + .lookup_flags = BPF_FIB_LOOKUP_MARK | BPF_FIB_LOOKUP_SKIP_NEIGH, + .mark = MARK_NO_POLICY, }, + { .desc = "IPv4 policy routing, mark points to a policy", + .daddr = IPV4_REMOTE_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_dst = IPV4_GW2, + .lookup_flags = BPF_FIB_LOOKUP_MARK | BPF_FIB_LOOKUP_SKIP_NEIGH, + .mark = MARK, }, + { .desc = "IPv4 policy routing, mark points to a policy, but no flag", + .daddr = IPV4_REMOTE_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_dst = IPV4_GW1, + .lookup_flags = BPF_FIB_LOOKUP_SKIP_NEIGH, + .mark = MARK, }, + { .desc = "IPv6 policy routing, default", + .daddr = IPV6_REMOTE_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_dst = IPV6_GW1, + .lookup_flags = BPF_FIB_LOOKUP_MARK | BPF_FIB_LOOKUP_SKIP_NEIGH, }, + { .desc = "IPv6 policy routing, mark doesn't point to a policy", + .daddr = IPV6_REMOTE_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_dst = IPV6_GW1, + .lookup_flags = BPF_FIB_LOOKUP_MARK | BPF_FIB_LOOKUP_SKIP_NEIGH, + .mark = MARK_NO_POLICY, }, + { .desc = "IPv6 policy routing, mark points to a policy", + .daddr = IPV6_REMOTE_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_dst = IPV6_GW2, + .lookup_flags = BPF_FIB_LOOKUP_MARK | BPF_FIB_LOOKUP_SKIP_NEIGH, + .mark = MARK, }, + { .desc = "IPv6 policy routing, mark points to a policy, but no flag", + .daddr = IPV6_REMOTE_DST, .expected_ret = BPF_FIB_LKUP_RET_SUCCESS, + .expected_dst = IPV6_GW1, + .lookup_flags = BPF_FIB_LOOKUP_SKIP_NEIGH, + .mark = MARK, }, +}; + +static int setup_netns(void) +{ + int err; + + SYS(fail, "ip link add veth1 type veth peer name veth2"); + SYS(fail, "ip link set dev veth1 up"); + SYS(fail, "ip link set dev veth2 up"); + + err = write_sysctl("/proc/sys/net/ipv4/neigh/veth1/gc_stale_time", "900"); + if (!ASSERT_OK(err, "write_sysctl(net.ipv4.neigh.veth1.gc_stale_time)")) + goto fail; + + err = write_sysctl("/proc/sys/net/ipv6/neigh/veth1/gc_stale_time", "900"); + if (!ASSERT_OK(err, "write_sysctl(net.ipv6.neigh.veth1.gc_stale_time)")) + goto fail; + + SYS(fail, "ip addr add %s/64 dev veth1 nodad", IPV6_IFACE_ADDR); + SYS(fail, "ip neigh add %s dev veth1 nud failed", IPV6_NUD_FAILED_ADDR); + SYS(fail, "ip neigh add %s dev veth1 lladdr %s nud stale", IPV6_NUD_STALE_ADDR, DMAC); + + SYS(fail, "ip addr add %s/24 dev veth1", IPV4_IFACE_ADDR); + SYS(fail, "ip neigh add %s dev veth1 nud failed", IPV4_NUD_FAILED_ADDR); + SYS(fail, "ip neigh add %s dev veth1 lladdr %s nud stale", IPV4_NUD_STALE_ADDR, DMAC); + + /* Setup for prefsrc IP addr selection */ + SYS(fail, "ip addr add %s/24 dev veth1", IPV4_IFACE_ADDR_SEC); + SYS(fail, "ip route add %s/32 dev veth1 src %s", IPV4_ADDR_DST, IPV4_IFACE_ADDR_SEC); + + SYS(fail, "ip addr add %s/64 dev veth1 nodad", IPV6_IFACE_ADDR_SEC); + SYS(fail, "ip route add %s/128 dev veth1 src %s", IPV6_ADDR_DST, IPV6_IFACE_ADDR_SEC); + + /* Setup for tbid lookup tests */ + SYS(fail, "ip addr add %s/24 dev veth2", IPV4_TBID_ADDR); + SYS(fail, "ip route del %s/24 dev veth2", IPV4_TBID_NET); + SYS(fail, "ip route add table 100 %s/24 dev veth2", IPV4_TBID_NET); + SYS(fail, "ip neigh add %s dev veth2 lladdr %s nud stale", IPV4_TBID_DST, DMAC2); + + SYS(fail, "ip addr add %s/64 dev veth2", IPV6_TBID_ADDR); + SYS(fail, "ip -6 route del %s/64 dev veth2", IPV6_TBID_NET); + SYS(fail, "ip -6 route add table 100 %s/64 dev veth2", IPV6_TBID_NET); + SYS(fail, "ip neigh add %s dev veth2 lladdr %s nud stale", IPV6_TBID_DST, DMAC2); + + err = write_sysctl("/proc/sys/net/ipv4/conf/veth1/forwarding", "1"); + if (!ASSERT_OK(err, "write_sysctl(net.ipv4.conf.veth1.forwarding)")) + goto fail; + + err = write_sysctl("/proc/sys/net/ipv6/conf/veth1/forwarding", "1"); + if (!ASSERT_OK(err, "write_sysctl(net.ipv6.conf.veth1.forwarding)")) + goto fail; + + /* Setup for policy routing tests */ + SYS(fail, "ip addr add %s/24 dev veth1", IPV4_LOCAL); + SYS(fail, "ip addr add %s/64 dev veth1 nodad", IPV6_LOCAL); + SYS(fail, "ip route add %s/32 via %s", IPV4_REMOTE_DST, IPV4_GW1); + SYS(fail, "ip route add %s/32 via %s table %s", IPV4_REMOTE_DST, IPV4_GW2, MARK_TABLE); + SYS(fail, "ip -6 route add %s/128 via %s", IPV6_REMOTE_DST, IPV6_GW1); + SYS(fail, "ip -6 route add %s/128 via %s table %s", IPV6_REMOTE_DST, IPV6_GW2, MARK_TABLE); + SYS(fail, "ip rule add prio 2 fwmark %d lookup %s", MARK, MARK_TABLE); + SYS(fail, "ip -6 rule add prio 2 fwmark %d lookup %s", MARK, MARK_TABLE); + + return 0; +fail: + return -1; +} + +static int set_lookup_params(struct bpf_fib_lookup *params, + const struct fib_lookup_test *test, + int ifindex) +{ + int ret; + + memset(params, 0, sizeof(*params)); + + params->l4_protocol = IPPROTO_TCP; + params->ifindex = ifindex; + params->tbid = test->tbid; + params->mark = test->mark; + + if (inet_pton(AF_INET6, test->daddr, params->ipv6_dst) == 1) { + params->family = AF_INET6; + if (!(test->lookup_flags & BPF_FIB_LOOKUP_SRC)) { + ret = inet_pton(AF_INET6, IPV6_IFACE_ADDR, params->ipv6_src); + if (!ASSERT_EQ(ret, 1, "inet_pton(IPV6_IFACE_ADDR)")) + return -1; + } + + return 0; + } + + ret = inet_pton(AF_INET, test->daddr, ¶ms->ipv4_dst); + if (!ASSERT_EQ(ret, 1, "convert IP[46] address")) + return -1; + params->family = AF_INET; + + if (!(test->lookup_flags & BPF_FIB_LOOKUP_SRC)) { + ret = inet_pton(AF_INET, IPV4_IFACE_ADDR, ¶ms->ipv4_src); + if (!ASSERT_EQ(ret, 1, "inet_pton(IPV4_IFACE_ADDR)")) + return -1; + } + + return 0; +} + +static void mac_str(char *b, const __u8 *mac) +{ + sprintf(b, "%02X:%02X:%02X:%02X:%02X:%02X", + mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]); +} + +static void assert_ip_address(int family, void *addr, const char *expected_str) +{ + char str[INET6_ADDRSTRLEN]; + u8 expected_addr[16]; + int addr_len = 0; + int ret; + + switch (family) { + case AF_INET6: + ret = inet_pton(AF_INET6, expected_str, expected_addr); + ASSERT_EQ(ret, 1, "inet_pton(AF_INET6, expected_str)"); + addr_len = 16; + break; + case AF_INET: + ret = inet_pton(AF_INET, expected_str, expected_addr); + ASSERT_EQ(ret, 1, "inet_pton(AF_INET, expected_str)"); + addr_len = 4; + break; + default: + PRINT_FAIL("invalid address family: %d", family); + break; + } + + if (memcmp(addr, expected_addr, addr_len)) { + inet_ntop(family, addr, str, sizeof(str)); + PRINT_FAIL("expected %s actual %s ", expected_str, str); + } +} + +static void assert_src_ip(struct bpf_fib_lookup *params, const char *expected) +{ + assert_ip_address(params->family, params->ipv6_src, expected); +} + +static void assert_dst_ip(struct bpf_fib_lookup *params, const char *expected) +{ + assert_ip_address(params->family, params->ipv6_dst, expected); +} + +void test_fib_lookup(void) +{ + struct bpf_fib_lookup *fib_params; + struct nstoken *nstoken = NULL; + struct __sk_buff skb = { }; + struct fib_lookup *skel; + int prog_fd, err, ret, i; + + /* The test does not use the skb->data, so + * use pkt_v6 for both v6 and v4 test. + */ + LIBBPF_OPTS(bpf_test_run_opts, run_opts, + .data_in = &pkt_v6, + .data_size_in = sizeof(pkt_v6), + .ctx_in = &skb, + .ctx_size_in = sizeof(skb), + ); + + skel = fib_lookup__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel open_and_load")) + return; + prog_fd = bpf_program__fd(skel->progs.fib_lookup); + + SYS(fail, "ip netns add %s", NS_TEST); + + nstoken = open_netns(NS_TEST); + if (!ASSERT_OK_PTR(nstoken, "open_netns")) + goto fail; + + if (setup_netns()) + goto fail; + + skb.ifindex = if_nametoindex("veth1"); + if (!ASSERT_NEQ(skb.ifindex, 0, "if_nametoindex(veth1)")) + goto fail; + + fib_params = &skel->bss->fib_params; + + for (i = 0; i < ARRAY_SIZE(tests); i++) { + printf("Testing %s ", tests[i].desc); + + if (set_lookup_params(fib_params, &tests[i], skb.ifindex)) + continue; + + skel->bss->fib_lookup_ret = -1; + skel->bss->lookup_flags = tests[i].lookup_flags; + + err = bpf_prog_test_run_opts(prog_fd, &run_opts); + if (!ASSERT_OK(err, "bpf_prog_test_run_opts")) + continue; + + ASSERT_EQ(skel->bss->fib_lookup_ret, tests[i].expected_ret, + "fib_lookup_ret"); + + if (tests[i].expected_src) + assert_src_ip(fib_params, tests[i].expected_src); + + if (tests[i].expected_dst) + assert_dst_ip(fib_params, tests[i].expected_dst); + + ret = memcmp(tests[i].dmac, fib_params->dmac, sizeof(tests[i].dmac)); + if (!ASSERT_EQ(ret, 0, "dmac not match")) { + char expected[18], actual[18]; + + mac_str(expected, tests[i].dmac); + mac_str(actual, fib_params->dmac); + printf("dmac expected %s actual %s ", expected, actual); + } + + // ensure tbid is zero'd out after fib lookup. + if (tests[i].lookup_flags & BPF_FIB_LOOKUP_DIRECT) { + if (!ASSERT_EQ(skel->bss->fib_params.tbid, 0, + "expected fib_params.tbid to be zero")) + goto fail; + } + } + +fail: + if (nstoken) + close_netns(nstoken); + SYS_NOFAIL("ip netns del " NS_TEST); + fib_lookup__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/fill_link_info.c b/tools/testing/selftests/bpf/prog_tests/fill_link_info.c new file mode 100644 index 000000000000..f3932941bbaa --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/fill_link_info.c @@ -0,0 +1,622 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023 Yafang Shao <laoar.shao@gmail.com> */ + +#include <string.h> +#include <linux/bpf.h> +#include <linux/limits.h> +#include <test_progs.h> +#include "trace_helpers.h" +#include "test_fill_link_info.skel.h" +#include "bpf/libbpf_internal.h" + +#define TP_CAT "sched" +#define TP_NAME "sched_switch" + +static const char *kmulti_syms[] = { + "bpf_fentry_test2", + "bpf_fentry_test1", + "bpf_fentry_test3", +}; +#define KMULTI_CNT ARRAY_SIZE(kmulti_syms) +static __u64 kmulti_addrs[KMULTI_CNT]; +static __u64 kmulti_cookies[] = { 3, 1, 2 }; + +#define KPROBE_FUNC "bpf_fentry_test1" +static __u64 kprobe_addr; + +#define UPROBE_FILE "/proc/self/exe" +static ssize_t uprobe_offset; +/* uprobe attach point */ +static noinline void uprobe_func(void) +{ + asm volatile (""); +} + +#define PERF_EVENT_COOKIE 0xdeadbeef + +static int verify_perf_link_info(int fd, enum bpf_perf_event_type type, long addr, + ssize_t offset, ssize_t entry_offset) +{ + struct bpf_link_info info; + __u32 len = sizeof(info); + char buf[PATH_MAX]; + int err; + + memset(&info, 0, sizeof(info)); + buf[0] = '\0'; + +again: + err = bpf_link_get_info_by_fd(fd, &info, &len); + if (!ASSERT_OK(err, "get_link_info")) + return -1; + + if (!ASSERT_EQ(info.type, BPF_LINK_TYPE_PERF_EVENT, "link_type")) + return -1; + if (!ASSERT_EQ(info.perf_event.type, type, "perf_type_match")) + return -1; + + switch (info.perf_event.type) { + case BPF_PERF_EVENT_KPROBE: + case BPF_PERF_EVENT_KRETPROBE: + ASSERT_EQ(info.perf_event.kprobe.offset, offset, "kprobe_offset"); + + /* In case kernel.kptr_restrict is not permitted or MAX_SYMS is reached */ + if (addr) + ASSERT_EQ(info.perf_event.kprobe.addr, addr + entry_offset, + "kprobe_addr"); + + ASSERT_EQ(info.perf_event.kprobe.cookie, PERF_EVENT_COOKIE, "kprobe_cookie"); + + if (!info.perf_event.kprobe.func_name) { + ASSERT_EQ(info.perf_event.kprobe.name_len, 0, "name_len"); + info.perf_event.kprobe.func_name = ptr_to_u64(&buf); + info.perf_event.kprobe.name_len = sizeof(buf); + goto again; + } + + err = strncmp(u64_to_ptr(info.perf_event.kprobe.func_name), KPROBE_FUNC, + strlen(KPROBE_FUNC)); + ASSERT_EQ(err, 0, "cmp_kprobe_func_name"); + break; + case BPF_PERF_EVENT_TRACEPOINT: + if (!info.perf_event.tracepoint.tp_name) { + ASSERT_EQ(info.perf_event.tracepoint.name_len, 0, "name_len"); + info.perf_event.tracepoint.tp_name = ptr_to_u64(&buf); + info.perf_event.tracepoint.name_len = sizeof(buf); + goto again; + } + + ASSERT_EQ(info.perf_event.tracepoint.cookie, PERF_EVENT_COOKIE, "tracepoint_cookie"); + + err = strncmp(u64_to_ptr(info.perf_event.tracepoint.tp_name), TP_NAME, + strlen(TP_NAME)); + ASSERT_EQ(err, 0, "cmp_tp_name"); + break; + case BPF_PERF_EVENT_UPROBE: + case BPF_PERF_EVENT_URETPROBE: + ASSERT_EQ(info.perf_event.uprobe.offset, offset, "uprobe_offset"); + + if (!info.perf_event.uprobe.file_name) { + ASSERT_EQ(info.perf_event.uprobe.name_len, 0, "name_len"); + info.perf_event.uprobe.file_name = ptr_to_u64(&buf); + info.perf_event.uprobe.name_len = sizeof(buf); + goto again; + } + + ASSERT_EQ(info.perf_event.uprobe.cookie, PERF_EVENT_COOKIE, "uprobe_cookie"); + + err = strncmp(u64_to_ptr(info.perf_event.uprobe.file_name), UPROBE_FILE, + strlen(UPROBE_FILE)); + ASSERT_EQ(err, 0, "cmp_file_name"); + break; + case BPF_PERF_EVENT_EVENT: + ASSERT_EQ(info.perf_event.event.type, PERF_TYPE_SOFTWARE, "event_type"); + ASSERT_EQ(info.perf_event.event.config, PERF_COUNT_SW_PAGE_FAULTS, "event_config"); + ASSERT_EQ(info.perf_event.event.cookie, PERF_EVENT_COOKIE, "event_cookie"); + break; + default: + err = -1; + break; + } + return err; +} + +static void kprobe_fill_invalid_user_buffer(int fd) +{ + struct bpf_link_info info; + __u32 len = sizeof(info); + int err; + + memset(&info, 0, sizeof(info)); + + info.perf_event.kprobe.func_name = 0x1; /* invalid address */ + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EINVAL, "invalid_buff_and_len"); + + info.perf_event.kprobe.name_len = 64; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EFAULT, "invalid_buff"); + + info.perf_event.kprobe.func_name = 0; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EINVAL, "invalid_len"); + + ASSERT_EQ(info.perf_event.kprobe.addr, 0, "func_addr"); + ASSERT_EQ(info.perf_event.kprobe.offset, 0, "func_offset"); + ASSERT_EQ(info.perf_event.type, 0, "type"); +} + +static void test_kprobe_fill_link_info(struct test_fill_link_info *skel, + enum bpf_perf_event_type type, + bool invalid) +{ + DECLARE_LIBBPF_OPTS(bpf_kprobe_opts, opts, + .attach_mode = PROBE_ATTACH_MODE_LINK, + .retprobe = type == BPF_PERF_EVENT_KRETPROBE, + .bpf_cookie = PERF_EVENT_COOKIE, + ); + ssize_t entry_offset = 0; + struct bpf_link *link; + int link_fd, err; + + link = bpf_program__attach_kprobe_opts(skel->progs.kprobe_run, KPROBE_FUNC, &opts); + if (!ASSERT_OK_PTR(link, "attach_kprobe")) + return; + + link_fd = bpf_link__fd(link); + if (!invalid) { + /* See also arch_adjust_kprobe_addr(). */ + if (skel->kconfig->CONFIG_X86_KERNEL_IBT) + entry_offset = 4; + err = verify_perf_link_info(link_fd, type, kprobe_addr, 0, entry_offset); + ASSERT_OK(err, "verify_perf_link_info"); + } else { + kprobe_fill_invalid_user_buffer(link_fd); + } + bpf_link__destroy(link); +} + +static void test_tp_fill_link_info(struct test_fill_link_info *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_tracepoint_opts, opts, + .bpf_cookie = PERF_EVENT_COOKIE, + ); + struct bpf_link *link; + int link_fd, err; + + link = bpf_program__attach_tracepoint_opts(skel->progs.tp_run, TP_CAT, TP_NAME, &opts); + if (!ASSERT_OK_PTR(link, "attach_tp")) + return; + + link_fd = bpf_link__fd(link); + err = verify_perf_link_info(link_fd, BPF_PERF_EVENT_TRACEPOINT, 0, 0, 0); + ASSERT_OK(err, "verify_perf_link_info"); + bpf_link__destroy(link); +} + +static void test_event_fill_link_info(struct test_fill_link_info *skel) +{ + DECLARE_LIBBPF_OPTS(bpf_perf_event_opts, opts, + .bpf_cookie = PERF_EVENT_COOKIE, + ); + struct bpf_link *link; + int link_fd, err, pfd; + struct perf_event_attr attr = { + .type = PERF_TYPE_SOFTWARE, + .config = PERF_COUNT_SW_PAGE_FAULTS, + .freq = 1, + .sample_freq = 1, + .size = sizeof(struct perf_event_attr), + }; + + pfd = syscall(__NR_perf_event_open, &attr, -1 /* pid */, 0 /* cpu 0 */, + -1 /* group id */, 0 /* flags */); + if (!ASSERT_GE(pfd, 0, "perf_event_open")) + return; + + link = bpf_program__attach_perf_event_opts(skel->progs.event_run, pfd, &opts); + if (!ASSERT_OK_PTR(link, "attach_event")) + goto error; + + link_fd = bpf_link__fd(link); + err = verify_perf_link_info(link_fd, BPF_PERF_EVENT_EVENT, 0, 0, 0); + ASSERT_OK(err, "verify_perf_link_info"); + bpf_link__destroy(link); + +error: + close(pfd); +} + +static void test_uprobe_fill_link_info(struct test_fill_link_info *skel, + enum bpf_perf_event_type type) +{ + DECLARE_LIBBPF_OPTS(bpf_uprobe_opts, opts, + .retprobe = type == BPF_PERF_EVENT_URETPROBE, + .bpf_cookie = PERF_EVENT_COOKIE, + ); + struct bpf_link *link; + int link_fd, err; + + link = bpf_program__attach_uprobe_opts(skel->progs.uprobe_run, + 0, /* self pid */ + UPROBE_FILE, uprobe_offset, + &opts); + if (!ASSERT_OK_PTR(link, "attach_uprobe")) + return; + + link_fd = bpf_link__fd(link); + err = verify_perf_link_info(link_fd, type, 0, uprobe_offset, 0); + ASSERT_OK(err, "verify_perf_link_info"); + bpf_link__destroy(link); +} + +static int verify_kmulti_link_info(int fd, bool retprobe, bool has_cookies) +{ + __u64 addrs[KMULTI_CNT], cookies[KMULTI_CNT]; + struct bpf_link_info info; + __u32 len = sizeof(info); + int flags, i, err; + + memset(&info, 0, sizeof(info)); + +again: + err = bpf_link_get_info_by_fd(fd, &info, &len); + if (!ASSERT_OK(err, "get_link_info")) + return -1; + + if (!ASSERT_EQ(info.type, BPF_LINK_TYPE_KPROBE_MULTI, "kmulti_type")) + return -1; + + ASSERT_EQ(info.kprobe_multi.count, KMULTI_CNT, "func_cnt"); + flags = info.kprobe_multi.flags & BPF_F_KPROBE_MULTI_RETURN; + if (!retprobe) + ASSERT_EQ(flags, 0, "kmulti_flags"); + else + ASSERT_NEQ(flags, 0, "kretmulti_flags"); + + if (!info.kprobe_multi.addrs) { + info.kprobe_multi.addrs = ptr_to_u64(addrs); + info.kprobe_multi.cookies = ptr_to_u64(cookies); + goto again; + } + for (i = 0; i < KMULTI_CNT; i++) { + ASSERT_EQ(addrs[i], kmulti_addrs[i], "kmulti_addrs"); + ASSERT_EQ(cookies[i], has_cookies ? kmulti_cookies[i] : 0, + "kmulti_cookies_value"); + } + return 0; +} + +static void verify_kmulti_invalid_user_buffer(int fd) +{ + __u64 addrs[KMULTI_CNT], cookies[KMULTI_CNT]; + struct bpf_link_info info; + __u32 len = sizeof(info); + int err, i; + + memset(&info, 0, sizeof(info)); + + info.kprobe_multi.count = KMULTI_CNT; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EINVAL, "no_addr"); + + info.kprobe_multi.addrs = ptr_to_u64(addrs); + info.kprobe_multi.count = 0; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EINVAL, "no_cnt"); + + for (i = 0; i < KMULTI_CNT; i++) + addrs[i] = 0; + info.kprobe_multi.count = KMULTI_CNT - 1; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -ENOSPC, "smaller_cnt"); + for (i = 0; i < KMULTI_CNT - 1; i++) + ASSERT_EQ(addrs[i], kmulti_addrs[i], "kmulti_addrs"); + ASSERT_EQ(addrs[i], 0, "kmulti_addrs"); + + for (i = 0; i < KMULTI_CNT; i++) + addrs[i] = 0; + info.kprobe_multi.count = KMULTI_CNT + 1; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, 0, "bigger_cnt"); + for (i = 0; i < KMULTI_CNT; i++) + ASSERT_EQ(addrs[i], kmulti_addrs[i], "kmulti_addrs"); + + info.kprobe_multi.count = KMULTI_CNT; + info.kprobe_multi.addrs = 0x1; /* invalid addr */ + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EFAULT, "invalid_buff_addrs"); + + info.kprobe_multi.count = KMULTI_CNT; + info.kprobe_multi.addrs = ptr_to_u64(addrs); + info.kprobe_multi.cookies = 0x1; /* invalid addr */ + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EFAULT, "invalid_buff_cookies"); + + /* cookies && !count */ + info.kprobe_multi.count = 0; + info.kprobe_multi.addrs = ptr_to_u64(NULL); + info.kprobe_multi.cookies = ptr_to_u64(cookies); + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EINVAL, "invalid_cookies_count"); +} + +static int symbols_cmp_r(const void *a, const void *b) +{ + const char **str_a = (const char **) a; + const char **str_b = (const char **) b; + + return strcmp(*str_a, *str_b); +} + +static void test_kprobe_multi_fill_link_info(struct test_fill_link_info *skel, + bool retprobe, bool cookies, + bool invalid) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + struct bpf_link *link; + int link_fd, err; + + opts.syms = kmulti_syms; + opts.cookies = cookies ? kmulti_cookies : NULL; + opts.cnt = KMULTI_CNT; + opts.retprobe = retprobe; + link = bpf_program__attach_kprobe_multi_opts(skel->progs.kmulti_run, NULL, &opts); + if (!ASSERT_OK_PTR(link, "attach_kprobe_multi")) + return; + + link_fd = bpf_link__fd(link); + if (!invalid) { + err = verify_kmulti_link_info(link_fd, retprobe, cookies); + ASSERT_OK(err, "verify_kmulti_link_info"); + } else { + verify_kmulti_invalid_user_buffer(link_fd); + } + bpf_link__destroy(link); +} + +#define SEC(name) __attribute__((section(name), used)) + +static short uprobe_link_info_sema_1 SEC(".probes"); +static short uprobe_link_info_sema_2 SEC(".probes"); +static short uprobe_link_info_sema_3 SEC(".probes"); + +noinline void uprobe_link_info_func_1(void) +{ + asm volatile (""); + uprobe_link_info_sema_1++; +} + +noinline void uprobe_link_info_func_2(void) +{ + asm volatile (""); + uprobe_link_info_sema_2++; +} + +noinline void uprobe_link_info_func_3(void) +{ + asm volatile (""); + uprobe_link_info_sema_3++; +} + +static int +verify_umulti_link_info(int fd, bool retprobe, __u64 *offsets, + __u64 *cookies, __u64 *ref_ctr_offsets) +{ + char path[PATH_MAX], path_buf[PATH_MAX]; + struct bpf_link_info info; + __u32 len = sizeof(info); + __u64 ref_ctr_offsets_buf[3]; + __u64 offsets_buf[3]; + __u64 cookies_buf[3]; + int i, err, bit; + __u32 count = 0; + + memset(path, 0, sizeof(path)); + err = readlink("/proc/self/exe", path, sizeof(path)); + if (!ASSERT_NEQ(err, -1, "readlink")) + return -1; + + for (bit = 0; bit < 8; bit++) { + memset(&info, 0, sizeof(info)); + info.uprobe_multi.path = ptr_to_u64(path_buf); + info.uprobe_multi.path_size = sizeof(path_buf); + info.uprobe_multi.count = count; + + if (bit & 0x1) + info.uprobe_multi.offsets = ptr_to_u64(offsets_buf); + if (bit & 0x2) + info.uprobe_multi.cookies = ptr_to_u64(cookies_buf); + if (bit & 0x4) + info.uprobe_multi.ref_ctr_offsets = ptr_to_u64(ref_ctr_offsets_buf); + + err = bpf_link_get_info_by_fd(fd, &info, &len); + if (!ASSERT_OK(err, "bpf_link_get_info_by_fd")) + return -1; + + if (!ASSERT_EQ(info.type, BPF_LINK_TYPE_UPROBE_MULTI, "info.type")) + return -1; + + ASSERT_EQ(info.uprobe_multi.pid, getpid(), "info.uprobe_multi.pid"); + ASSERT_EQ(info.uprobe_multi.count, 3, "info.uprobe_multi.count"); + ASSERT_EQ(info.uprobe_multi.flags & BPF_F_KPROBE_MULTI_RETURN, + retprobe, "info.uprobe_multi.flags.retprobe"); + ASSERT_EQ(info.uprobe_multi.path_size, strlen(path) + 1, "info.uprobe_multi.path_size"); + ASSERT_STREQ(path_buf, path, "info.uprobe_multi.path"); + + for (i = 0; i < info.uprobe_multi.count; i++) { + if (info.uprobe_multi.offsets) + ASSERT_EQ(offsets_buf[i], offsets[i], "info.uprobe_multi.offsets"); + if (info.uprobe_multi.cookies) + ASSERT_EQ(cookies_buf[i], cookies[i], "info.uprobe_multi.cookies"); + if (info.uprobe_multi.ref_ctr_offsets) { + ASSERT_EQ(ref_ctr_offsets_buf[i], ref_ctr_offsets[i], + "info.uprobe_multi.ref_ctr_offsets"); + } + } + count = count ?: info.uprobe_multi.count; + } + + return 0; +} + +static void verify_umulti_invalid_user_buffer(int fd) +{ + struct bpf_link_info info; + __u32 len = sizeof(info); + __u64 buf[3]; + int err; + + /* upath_size defined, not path */ + memset(&info, 0, sizeof(info)); + info.uprobe_multi.path_size = 3; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EINVAL, "failed_upath_size"); + + /* path defined, but small */ + memset(&info, 0, sizeof(info)); + info.uprobe_multi.path = ptr_to_u64(buf); + info.uprobe_multi.path_size = 3; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_LT(err, 0, "failed_upath_small"); + + /* path has wrong pointer */ + memset(&info, 0, sizeof(info)); + info.uprobe_multi.path_size = PATH_MAX; + info.uprobe_multi.path = 123; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EFAULT, "failed_bad_path_ptr"); + + /* count zero, with offsets */ + memset(&info, 0, sizeof(info)); + info.uprobe_multi.offsets = ptr_to_u64(buf); + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EINVAL, "failed_count"); + + /* offsets not big enough */ + memset(&info, 0, sizeof(info)); + info.uprobe_multi.offsets = ptr_to_u64(buf); + info.uprobe_multi.count = 2; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -ENOSPC, "failed_small_count"); + + /* offsets has wrong pointer */ + memset(&info, 0, sizeof(info)); + info.uprobe_multi.offsets = 123; + info.uprobe_multi.count = 3; + err = bpf_link_get_info_by_fd(fd, &info, &len); + ASSERT_EQ(err, -EFAULT, "failed_wrong_offsets"); +} + +static void test_uprobe_multi_fill_link_info(struct test_fill_link_info *skel, + bool retprobe, bool invalid) +{ + LIBBPF_OPTS(bpf_uprobe_multi_opts, opts, + .retprobe = retprobe, + ); + const char *syms[3] = { + "uprobe_link_info_func_1", + "uprobe_link_info_func_2", + "uprobe_link_info_func_3", + }; + __u64 cookies[3] = { + 0xdead, + 0xbeef, + 0xcafe, + }; + const char *sema[3] = { + "uprobe_link_info_sema_1", + "uprobe_link_info_sema_2", + "uprobe_link_info_sema_3", + }; + __u64 *offsets = NULL, *ref_ctr_offsets; + struct bpf_link *link; + int link_fd, err; + + err = elf_resolve_syms_offsets("/proc/self/exe", 3, sema, + (unsigned long **) &ref_ctr_offsets, STT_OBJECT); + if (!ASSERT_OK(err, "elf_resolve_syms_offsets_object")) + return; + + err = elf_resolve_syms_offsets("/proc/self/exe", 3, syms, + (unsigned long **) &offsets, STT_FUNC); + if (!ASSERT_OK(err, "elf_resolve_syms_offsets_func")) + goto out; + + opts.syms = syms; + opts.cookies = &cookies[0]; + opts.ref_ctr_offsets = (unsigned long *) &ref_ctr_offsets[0]; + opts.cnt = ARRAY_SIZE(syms); + + link = bpf_program__attach_uprobe_multi(skel->progs.umulti_run, 0, + "/proc/self/exe", NULL, &opts); + if (!ASSERT_OK_PTR(link, "bpf_program__attach_uprobe_multi")) + goto out; + + link_fd = bpf_link__fd(link); + if (invalid) + verify_umulti_invalid_user_buffer(link_fd); + else + verify_umulti_link_info(link_fd, retprobe, offsets, cookies, ref_ctr_offsets); + + bpf_link__destroy(link); +out: + free(ref_ctr_offsets); + free(offsets); +} + +void test_fill_link_info(void) +{ + struct test_fill_link_info *skel; + int i; + + skel = test_fill_link_info__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + /* load kallsyms to compare the addr */ + if (!ASSERT_OK(load_kallsyms(), "load_kallsyms")) + goto cleanup; + + kprobe_addr = ksym_get_addr(KPROBE_FUNC); + if (test__start_subtest("kprobe_link_info")) + test_kprobe_fill_link_info(skel, BPF_PERF_EVENT_KPROBE, false); + if (test__start_subtest("kretprobe_link_info")) + test_kprobe_fill_link_info(skel, BPF_PERF_EVENT_KRETPROBE, false); + if (test__start_subtest("kprobe_invalid_ubuff")) + test_kprobe_fill_link_info(skel, BPF_PERF_EVENT_KPROBE, true); + if (test__start_subtest("tracepoint_link_info")) + test_tp_fill_link_info(skel); + if (test__start_subtest("event_link_info")) + test_event_fill_link_info(skel); + + uprobe_offset = get_uprobe_offset(&uprobe_func); + if (test__start_subtest("uprobe_link_info")) + test_uprobe_fill_link_info(skel, BPF_PERF_EVENT_UPROBE); + if (test__start_subtest("uretprobe_link_info")) + test_uprobe_fill_link_info(skel, BPF_PERF_EVENT_URETPROBE); + + qsort(kmulti_syms, KMULTI_CNT, sizeof(kmulti_syms[0]), symbols_cmp_r); + for (i = 0; i < KMULTI_CNT; i++) + kmulti_addrs[i] = ksym_get_addr(kmulti_syms[i]); + if (test__start_subtest("kprobe_multi_link_info")) { + test_kprobe_multi_fill_link_info(skel, false, false, false); + test_kprobe_multi_fill_link_info(skel, false, true, false); + } + if (test__start_subtest("kretprobe_multi_link_info")) { + test_kprobe_multi_fill_link_info(skel, true, false, false); + test_kprobe_multi_fill_link_info(skel, true, true, false); + } + if (test__start_subtest("kprobe_multi_invalid_ubuff")) + test_kprobe_multi_fill_link_info(skel, true, true, true); + + if (test__start_subtest("uprobe_multi_link_info")) + test_uprobe_multi_fill_link_info(skel, false, false); + if (test__start_subtest("uretprobe_multi_link_info")) + test_uprobe_multi_fill_link_info(skel, true, false); + if (test__start_subtest("uprobe_multi_invalid")) + test_uprobe_multi_fill_link_info(skel, false, true); + +cleanup: + test_fill_link_info__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/find_vma.c b/tools/testing/selftests/bpf/prog_tests/find_vma.c new file mode 100644 index 000000000000..5165b38f0e59 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/find_vma.c @@ -0,0 +1,127 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include <sys/types.h> +#include <unistd.h> +#include "find_vma.skel.h" +#include "find_vma_fail1.skel.h" +#include "find_vma_fail2.skel.h" + +static void test_and_reset_skel(struct find_vma *skel, int expected_find_zero_ret, bool need_test) +{ + if (need_test) { + ASSERT_EQ(skel->bss->found_vm_exec, 1, "found_vm_exec"); + ASSERT_EQ(skel->data->find_addr_ret, 0, "find_addr_ret"); + ASSERT_EQ(skel->data->find_zero_ret, expected_find_zero_ret, "find_zero_ret"); + ASSERT_OK_PTR(strstr(skel->bss->d_iname, "test_progs"), "find_test_progs"); + } + + skel->bss->found_vm_exec = 0; + skel->data->find_addr_ret = -1; + skel->data->find_zero_ret = -1; + skel->bss->d_iname[0] = 0; +} + +static int open_pe(void) +{ + struct perf_event_attr attr = {0}; + int pfd; + + /* create perf event */ + attr.size = sizeof(attr); + attr.type = PERF_TYPE_HARDWARE; + attr.config = PERF_COUNT_HW_CPU_CYCLES; + attr.freq = 1; + attr.sample_freq = 1000; + pfd = syscall(__NR_perf_event_open, &attr, 0, -1, -1, PERF_FLAG_FD_CLOEXEC); + + return pfd >= 0 ? pfd : -errno; +} + +static bool find_vma_pe_condition(struct find_vma *skel) +{ + return skel->bss->found_vm_exec == 0 || + skel->data->find_addr_ret != 0 || + skel->data->find_zero_ret == -1 || + strcmp(skel->bss->d_iname, "test_progs") != 0; +} + +static void test_find_vma_pe(struct find_vma *skel) +{ + struct bpf_link *link = NULL; + volatile int j = 0; + int pfd, i; + const int one_bn = 1000000000; + + pfd = open_pe(); + if (pfd < 0) { + if (pfd == -ENOENT || pfd == -EOPNOTSUPP) { + printf("%s:SKIP:no PERF_COUNT_HW_CPU_CYCLES\n", __func__); + test__skip(); + goto cleanup; + } + if (!ASSERT_GE(pfd, 0, "perf_event_open")) + goto cleanup; + } + + link = bpf_program__attach_perf_event(skel->progs.handle_pe, pfd); + if (!ASSERT_OK_PTR(link, "attach_perf_event")) + goto cleanup; + + for (i = 0; i < one_bn && find_vma_pe_condition(skel); ++i) + ++j; + + test_and_reset_skel(skel, -EBUSY /* in nmi, irq_work is busy */, i == one_bn); +cleanup: + bpf_link__destroy(link); + close(pfd); +} + +static void test_find_vma_kprobe(struct find_vma *skel) +{ + int err; + + err = find_vma__attach(skel); + if (!ASSERT_OK(err, "get_branch_snapshot__attach")) + return; + + getpgid(skel->bss->target_pid); + test_and_reset_skel(skel, -ENOENT /* could not find vma for ptr 0 */, true); +} + +static void test_illegal_write_vma(void) +{ + struct find_vma_fail1 *skel; + + skel = find_vma_fail1__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "find_vma_fail1__open_and_load")) + find_vma_fail1__destroy(skel); +} + +static void test_illegal_write_task(void) +{ + struct find_vma_fail2 *skel; + + skel = find_vma_fail2__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "find_vma_fail2__open_and_load")) + find_vma_fail2__destroy(skel); +} + +void serial_test_find_vma(void) +{ + struct find_vma *skel; + + skel = find_vma__open_and_load(); + if (!ASSERT_OK_PTR(skel, "find_vma__open_and_load")) + return; + + skel->bss->target_pid = getpid(); + skel->bss->addr = (__u64)(uintptr_t)test_find_vma_pe; + + test_find_vma_pe(skel); + test_find_vma_kprobe(skel); + + find_vma__destroy(skel); + test_illegal_write_vma(); + test_illegal_write_task(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/flow_dissector.c b/tools/testing/selftests/bpf/prog_tests/flow_dissector.c index cd6dc80edf18..9e5f38739104 100644 --- a/tools/testing/selftests/bpf/prog_tests/flow_dissector.c +++ b/tools/testing/selftests/bpf/prog_tests/flow_dissector.c @@ -2,19 +2,21 @@ #include <test_progs.h> #include <network_helpers.h> #include <error.h> -#include <linux/if.h> #include <linux/if_tun.h> #include <sys/uio.h> #include "bpf_flow.skel.h" +#define FLOW_CONTINUE_SADDR 0x7f00007f /* 127.0.0.127 */ + #ifndef IP_MF #define IP_MF 0x2000 #endif #define CHECK_FLOW_KEYS(desc, got, expected) \ - CHECK_ATTR(memcmp(&got, &expected, sizeof(got)) != 0, \ + _CHECK(memcmp(&got, &expected, sizeof(got)) != 0, \ desc, \ + topts.duration, \ "nhoff=%u/%u " \ "thoff=%u/%u " \ "addr_proto=0x%x/0x%x " \ @@ -99,6 +101,7 @@ struct test { } pkt; struct bpf_flow_keys keys; __u32 flags; + __u32 retval; }; #define VLAN_HLEN 4 @@ -125,6 +128,7 @@ struct test tests[] = { .sport = 80, .dport = 8080, }, + .retval = BPF_OK, }, { .name = "ipv6", @@ -145,6 +149,7 @@ struct test tests[] = { .sport = 80, .dport = 8080, }, + .retval = BPF_OK, }, { .name = "802.1q-ipv4", @@ -167,6 +172,7 @@ struct test tests[] = { .sport = 80, .dport = 8080, }, + .retval = BPF_OK, }, { .name = "802.1ad-ipv6", @@ -190,6 +196,7 @@ struct test tests[] = { .sport = 80, .dport = 8080, }, + .retval = BPF_OK, }, { .name = "ipv4-frag", @@ -216,6 +223,7 @@ struct test tests[] = { .dport = 8080, }, .flags = BPF_FLOW_DISSECTOR_F_PARSE_1ST_FRAG, + .retval = BPF_OK, }, { .name = "ipv4-no-frag", @@ -238,6 +246,7 @@ struct test tests[] = { .is_frag = true, .is_first_frag = true, }, + .retval = BPF_OK, }, { .name = "ipv6-frag", @@ -264,6 +273,7 @@ struct test tests[] = { .dport = 8080, }, .flags = BPF_FLOW_DISSECTOR_F_PARSE_1ST_FRAG, + .retval = BPF_OK, }, { .name = "ipv6-no-frag", @@ -286,6 +296,7 @@ struct test tests[] = { .is_frag = true, .is_first_frag = true, }, + .retval = BPF_OK, }, { .name = "ipv6-flow-label", @@ -308,6 +319,7 @@ struct test tests[] = { .dport = 8080, .flow_label = __bpf_constant_htonl(0xbeeef), }, + .retval = BPF_OK, }, { .name = "ipv6-no-flow-label", @@ -330,6 +342,31 @@ struct test tests[] = { .flow_label = __bpf_constant_htonl(0xbeeef), }, .flags = BPF_FLOW_DISSECTOR_F_STOP_AT_FLOW_LABEL, + .retval = BPF_OK, + }, + { + .name = "ipv6-empty-flow-label", + .pkt.ipv6 = { + .eth.h_proto = __bpf_constant_htons(ETH_P_IPV6), + .iph.nexthdr = IPPROTO_TCP, + .iph.payload_len = __bpf_constant_htons(MAGIC_BYTES), + .iph.flow_lbl = { 0x00, 0x00, 0x00 }, + .tcp.doff = 5, + .tcp.source = 80, + .tcp.dest = 8080, + }, + .keys = { + .flags = BPF_FLOW_DISSECTOR_F_STOP_AT_FLOW_LABEL, + .nhoff = ETH_HLEN, + .thoff = ETH_HLEN + sizeof(struct ipv6hdr), + .addr_proto = ETH_P_IPV6, + .ip_proto = IPPROTO_TCP, + .n_proto = __bpf_constant_htons(ETH_P_IPV6), + .sport = 80, + .dport = 8080, + }, + .flags = BPF_FLOW_DISSECTOR_F_STOP_AT_FLOW_LABEL, + .retval = BPF_OK, }, { .name = "ipip-encap", @@ -358,6 +395,7 @@ struct test tests[] = { .sport = 80, .dport = 8080, }, + .retval = BPF_OK, }, { .name = "ipip-no-encap", @@ -385,6 +423,26 @@ struct test tests[] = { .is_encap = true, }, .flags = BPF_FLOW_DISSECTOR_F_STOP_AT_ENCAP, + .retval = BPF_OK, + }, + { + .name = "ipip-encap-dissector-continue", + .pkt.ipip = { + .eth.h_proto = __bpf_constant_htons(ETH_P_IP), + .iph.ihl = 5, + .iph.protocol = IPPROTO_IPIP, + .iph.tot_len = __bpf_constant_htons(MAGIC_BYTES), + .iph.saddr = __bpf_constant_htonl(FLOW_CONTINUE_SADDR), + .iph_inner.ihl = 5, + .iph_inner.protocol = IPPROTO_TCP, + .iph_inner.tot_len = + __bpf_constant_htons(MAGIC_BYTES) - + sizeof(struct iphdr), + .tcp.doff = 5, + .tcp.source = 99, + .tcp.dest = 9090, + }, + .retval = BPF_FLOW_DISSECTOR_CONTINUE, }, }; @@ -457,10 +515,10 @@ static int init_prog_array(struct bpf_object *obj, struct bpf_map *prog_array) if (map_fd < 0) return -1; - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - snprintf(prog_name, sizeof(prog_name), "flow_dissector/%i", i); + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "flow_dissector_%d", i); - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (!prog) return -1; @@ -487,7 +545,7 @@ static void run_tests_skb_less(int tap_fd, struct bpf_map *keys) /* Keep in sync with 'flags' from eth_get_headlen. */ __u32 eth_get_headlen_flags = BPF_FLOW_DISSECTOR_F_PARSE_1ST_FRAG; - struct bpf_prog_test_run_attr tattr = {}; + LIBBPF_OPTS(bpf_test_run_opts, topts); struct bpf_flow_keys flow_keys = {}; __u32 key = (__u32)(tests[i].keys.sport) << 16 | tests[i].keys.dport; @@ -502,14 +560,17 @@ static void run_tests_skb_less(int tap_fd, struct bpf_map *keys) err = tx_tap(tap_fd, &tests[i].pkt, sizeof(tests[i].pkt)); CHECK(err < 0, "tx_tap", "err %d errno %d\n", err, errno); + /* check the stored flow_keys only if BPF_OK expected */ + if (tests[i].retval != BPF_OK) + continue; + err = bpf_map_lookup_elem(keys_fd, &key, &flow_keys); - CHECK_ATTR(err, tests[i].name, "bpf_map_lookup_elem %d\n", err); + ASSERT_OK(err, "bpf_map_lookup_elem"); - CHECK_ATTR(err, tests[i].name, "skb-less err %d\n", err); CHECK_FLOW_KEYS(tests[i].name, flow_keys, tests[i].keys); err = bpf_map_delete_elem(keys_fd, &key); - CHECK_ATTR(err, tests[i].name, "bpf_map_delete_elem %d\n", err); + ASSERT_OK(err, "bpf_map_delete_elem"); } } @@ -541,7 +602,7 @@ static void test_skb_less_link_create(struct bpf_flow *skel, int tap_fd) return; link = bpf_program__attach_netns(skel->progs._dissect, net_fd); - if (CHECK(IS_ERR(link), "attach_netns", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_netns")) goto out_close; run_tests_skb_less(tap_fd, skel->maps.last_dissection); @@ -573,27 +634,28 @@ void test_flow_dissector(void) for (i = 0; i < ARRAY_SIZE(tests); i++) { struct bpf_flow_keys flow_keys; - struct bpf_prog_test_run_attr tattr = { - .prog_fd = prog_fd, + LIBBPF_OPTS(bpf_test_run_opts, topts, .data_in = &tests[i].pkt, .data_size_in = sizeof(tests[i].pkt), .data_out = &flow_keys, - }; + ); static struct bpf_flow_keys ctx = {}; if (tests[i].flags) { - tattr.ctx_in = &ctx; - tattr.ctx_size_in = sizeof(ctx); + topts.ctx_in = &ctx; + topts.ctx_size_in = sizeof(ctx); ctx.flags = tests[i].flags; } - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(tattr.data_size_out != sizeof(flow_keys) || - err || tattr.retval != 1, - tests[i].name, - "err %d errno %d retval %d duration %d size %u/%zu\n", - err, errno, tattr.retval, tattr.duration, - tattr.data_size_out, sizeof(flow_keys)); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, tests[i].retval, "test_run retval"); + + /* check the resulting flow_keys only if BPF_OK returned */ + if (topts.retval != BPF_OK) + continue; + ASSERT_EQ(topts.data_size_out, sizeof(flow_keys), + "test_run data_size_out"); CHECK_FLOW_KEYS(tests[i].name, flow_keys, tests[i].keys); } diff --git a/tools/testing/selftests/bpf/prog_tests/flow_dissector_load_bytes.c b/tools/testing/selftests/bpf/prog_tests/flow_dissector_load_bytes.c index 0e8a4d2f023d..c7a47b57ac91 100644 --- a/tools/testing/selftests/bpf/prog_tests/flow_dissector_load_bytes.c +++ b/tools/testing/selftests/bpf/prog_tests/flow_dissector_load_bytes.c @@ -2,10 +2,9 @@ #include <test_progs.h> #include <network_helpers.h> -void test_flow_dissector_load_bytes(void) +void serial_test_flow_dissector_load_bytes(void) { struct bpf_flow_keys flow_keys; - __u32 duration = 0, retval, size; struct bpf_insn prog[] = { // BPF_REG_1 - 1st argument: context // BPF_REG_2 - 2nd argument: offset, start at first byte @@ -27,22 +26,25 @@ void test_flow_dissector_load_bytes(void) BPF_EXIT_INSN(), }; int fd, err; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = &flow_keys, + .data_size_out = sizeof(flow_keys), + .repeat = 1, + ); /* make sure bpf_skb_load_bytes is not allowed from skb-less context */ - fd = bpf_load_program(BPF_PROG_TYPE_FLOW_DISSECTOR, prog, + fd = bpf_test_load_program(BPF_PROG_TYPE_FLOW_DISSECTOR, prog, ARRAY_SIZE(prog), "GPL", 0, NULL, 0); - CHECK(fd < 0, - "flow_dissector-bpf_skb_load_bytes-load", - "fd %d errno %d\n", - fd, errno); + ASSERT_GE(fd, 0, "bpf_test_load_program good fd"); - err = bpf_prog_test_run(fd, 1, &pkt_v4, sizeof(pkt_v4), - &flow_keys, &size, &retval, &duration); - CHECK(size != sizeof(flow_keys) || err || retval != 1, - "flow_dissector-bpf_skb_load_bytes", - "err %d errno %d retval %d duration %d size %u/%zu\n", - err, errno, retval, duration, size, sizeof(flow_keys)); + err = bpf_prog_test_run_opts(fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.data_size_out, sizeof(flow_keys), + "test_run data_size_out"); + ASSERT_EQ(topts.retval, BPF_OK, "test_run retval"); if (fd >= -1) close(fd); diff --git a/tools/testing/selftests/bpf/prog_tests/flow_dissector_reattach.c b/tools/testing/selftests/bpf/prog_tests/flow_dissector_reattach.c index 172c586b6996..9333f7346d15 100644 --- a/tools/testing/selftests/bpf/prog_tests/flow_dissector_reattach.c +++ b/tools/testing/selftests/bpf/prog_tests/flow_dissector_reattach.c @@ -47,9 +47,9 @@ static int load_prog(enum bpf_prog_type type) }; int fd; - fd = bpf_load_program(type, prog, ARRAY_SIZE(prog), "GPL", 0, NULL, 0); + fd = bpf_test_load_program(type, prog, ARRAY_SIZE(prog), "GPL", 0, NULL, 0); if (CHECK_FAIL(fd < 0)) - perror("bpf_load_program"); + perror("bpf_test_load_program"); return fd; } @@ -60,9 +60,9 @@ static __u32 query_prog_id(int prog) __u32 info_len = sizeof(info); int err; - err = bpf_obj_get_info_by_fd(prog, &info, &info_len); + err = bpf_prog_get_info_by_fd(prog, &info, &info_len); if (CHECK_FAIL(err || info_len != sizeof(info))) { - perror("bpf_obj_get_info_by_fd"); + perror("bpf_prog_get_info_by_fd"); return 0; } @@ -134,9 +134,9 @@ static void test_link_create_link_create(int netns, int prog1, int prog2) /* Expect failure creating link when another link exists */ errno = 0; link2 = bpf_link_create(prog2, netns, BPF_FLOW_DISSECTOR, &opts); - if (CHECK_FAIL(link2 != -1 || errno != E2BIG)) + if (CHECK_FAIL(link2 >= 0 || errno != E2BIG)) perror("bpf_prog_attach(prog2) expected E2BIG"); - if (link2 != -1) + if (link2 >= 0) close(link2); CHECK_FAIL(query_attached_prog_id(netns) != query_prog_id(prog1)); @@ -159,9 +159,9 @@ static void test_prog_attach_link_create(int netns, int prog1, int prog2) /* Expect failure creating link when prog attached */ errno = 0; link = bpf_link_create(prog2, netns, BPF_FLOW_DISSECTOR, &opts); - if (CHECK_FAIL(link != -1 || errno != EEXIST)) + if (CHECK_FAIL(link >= 0 || errno != EEXIST)) perror("bpf_link_create(prog2) expected EEXIST"); - if (link != -1) + if (link >= 0) close(link); CHECK_FAIL(query_attached_prog_id(netns) != query_prog_id(prog1)); @@ -497,7 +497,7 @@ static void test_link_get_info(int netns, int prog1, int prog2) } info_len = sizeof(info); - err = bpf_obj_get_info_by_fd(link, &info, &info_len); + err = bpf_link_get_info_by_fd(link, &info, &info_len); if (CHECK_FAIL(err)) { perror("bpf_obj_get_info"); goto out_unlink; @@ -521,7 +521,7 @@ static void test_link_get_info(int netns, int prog1, int prog2) link_id = info.id; info_len = sizeof(info); - err = bpf_obj_get_info_by_fd(link, &info, &info_len); + err = bpf_link_get_info_by_fd(link, &info, &info_len); if (CHECK_FAIL(err)) { perror("bpf_obj_get_info"); goto out_unlink; @@ -546,7 +546,7 @@ static void test_link_get_info(int netns, int prog1, int prog2) netns = -1; info_len = sizeof(info); - err = bpf_obj_get_info_by_fd(link, &info, &info_len); + err = bpf_link_get_info_by_fd(link, &info, &info_len); if (CHECK_FAIL(err)) { perror("bpf_obj_get_info"); goto out_unlink; @@ -623,12 +623,12 @@ static void run_tests(int netns) } out_close: for (i = 0; i < ARRAY_SIZE(progs); i++) { - if (progs[i] != -1) + if (progs[i] >= 0) CHECK_FAIL(close(progs[i])); } } -void test_flow_dissector_reattach(void) +void serial_test_flow_dissector_reattach(void) { int err, new_net, saved_net; diff --git a/tools/testing/selftests/bpf/prog_tests/for_each.c b/tools/testing/selftests/bpf/prog_tests/for_each.c new file mode 100644 index 000000000000..09f6487f58b9 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/for_each.c @@ -0,0 +1,216 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include <network_helpers.h> +#include "for_each_hash_map_elem.skel.h" +#include "for_each_array_map_elem.skel.h" +#include "for_each_map_elem_write_key.skel.h" +#include "for_each_multi_maps.skel.h" + +static unsigned int duration; + +static void test_hash_map(void) +{ + int i, err, max_entries; + struct for_each_hash_map_elem *skel; + __u64 *percpu_valbuf = NULL; + size_t percpu_val_sz; + __u32 key, num_cpus; + __u64 val; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + skel = for_each_hash_map_elem__open_and_load(); + if (!ASSERT_OK_PTR(skel, "for_each_hash_map_elem__open_and_load")) + return; + + max_entries = bpf_map__max_entries(skel->maps.hashmap); + for (i = 0; i < max_entries; i++) { + key = i; + val = i + 1; + err = bpf_map__update_elem(skel->maps.hashmap, &key, sizeof(key), + &val, sizeof(val), BPF_ANY); + if (!ASSERT_OK(err, "map_update")) + goto out; + } + + num_cpus = bpf_num_possible_cpus(); + percpu_val_sz = sizeof(__u64) * num_cpus; + percpu_valbuf = malloc(percpu_val_sz); + if (!ASSERT_OK_PTR(percpu_valbuf, "percpu_valbuf")) + goto out; + + key = 1; + for (i = 0; i < num_cpus; i++) + percpu_valbuf[i] = i + 1; + err = bpf_map__update_elem(skel->maps.percpu_map, &key, sizeof(key), + percpu_valbuf, percpu_val_sz, BPF_ANY); + if (!ASSERT_OK(err, "percpu_map_update")) + goto out; + + err = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_pkt_access), &topts); + duration = topts.duration; + if (CHECK(err || topts.retval, "ipv4", "err %d errno %d retval %d\n", + err, errno, topts.retval)) + goto out; + + ASSERT_EQ(skel->bss->hashmap_output, 4, "hashmap_output"); + ASSERT_EQ(skel->bss->hashmap_elems, max_entries, "hashmap_elems"); + + key = 1; + err = bpf_map__lookup_elem(skel->maps.hashmap, &key, sizeof(key), &val, sizeof(val), 0); + ASSERT_ERR(err, "hashmap_lookup"); + + ASSERT_EQ(skel->bss->percpu_called, 1, "percpu_called"); + ASSERT_LT(skel->bss->cpu, num_cpus, "num_cpus"); + ASSERT_EQ(skel->bss->percpu_map_elems, 1, "percpu_map_elems"); + ASSERT_EQ(skel->bss->percpu_key, 1, "percpu_key"); + ASSERT_EQ(skel->bss->percpu_val, skel->bss->cpu + 1, "percpu_val"); + ASSERT_EQ(skel->bss->percpu_output, 100, "percpu_output"); +out: + free(percpu_valbuf); + for_each_hash_map_elem__destroy(skel); +} + +static void test_array_map(void) +{ + __u32 key, num_cpus, max_entries; + int i, err; + struct for_each_array_map_elem *skel; + __u64 *percpu_valbuf = NULL; + size_t percpu_val_sz; + __u64 val, expected_total; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + skel = for_each_array_map_elem__open_and_load(); + if (!ASSERT_OK_PTR(skel, "for_each_array_map_elem__open_and_load")) + return; + + expected_total = 0; + max_entries = bpf_map__max_entries(skel->maps.arraymap); + for (i = 0; i < max_entries; i++) { + key = i; + val = i + 1; + /* skip the last iteration for expected total */ + if (i != max_entries - 1) + expected_total += val; + err = bpf_map__update_elem(skel->maps.arraymap, &key, sizeof(key), + &val, sizeof(val), BPF_ANY); + if (!ASSERT_OK(err, "map_update")) + goto out; + } + + num_cpus = bpf_num_possible_cpus(); + percpu_val_sz = sizeof(__u64) * num_cpus; + percpu_valbuf = malloc(percpu_val_sz); + if (!ASSERT_OK_PTR(percpu_valbuf, "percpu_valbuf")) + goto out; + + key = 0; + for (i = 0; i < num_cpus; i++) + percpu_valbuf[i] = i + 1; + err = bpf_map__update_elem(skel->maps.percpu_map, &key, sizeof(key), + percpu_valbuf, percpu_val_sz, BPF_ANY); + if (!ASSERT_OK(err, "percpu_map_update")) + goto out; + + err = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_pkt_access), &topts); + duration = topts.duration; + if (CHECK(err || topts.retval, "ipv4", "err %d errno %d retval %d\n", + err, errno, topts.retval)) + goto out; + + ASSERT_EQ(skel->bss->arraymap_output, expected_total, "array_output"); + ASSERT_EQ(skel->bss->cpu + 1, skel->bss->percpu_val, "percpu_val"); + +out: + free(percpu_valbuf); + for_each_array_map_elem__destroy(skel); +} + +static void test_write_map_key(void) +{ + struct for_each_map_elem_write_key *skel; + + skel = for_each_map_elem_write_key__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "for_each_map_elem_write_key__open_and_load")) + for_each_map_elem_write_key__destroy(skel); +} + +static void test_multi_maps(void) +{ + struct for_each_multi_maps *skel; + __u64 val, array_total, hash_total; + __u32 key, max_entries; + int i, err; + + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + skel = for_each_multi_maps__open_and_load(); + if (!ASSERT_OK_PTR(skel, "for_each_multi_maps__open_and_load")) + return; + + array_total = 0; + max_entries = bpf_map__max_entries(skel->maps.arraymap); + for (i = 0; i < max_entries; i++) { + key = i; + val = i + 1; + array_total += val; + err = bpf_map__update_elem(skel->maps.arraymap, &key, sizeof(key), + &val, sizeof(val), BPF_ANY); + if (!ASSERT_OK(err, "array_map_update")) + goto out; + } + + hash_total = 0; + max_entries = bpf_map__max_entries(skel->maps.hashmap); + for (i = 0; i < max_entries; i++) { + key = i + 100; + val = i + 1; + hash_total += val; + err = bpf_map__update_elem(skel->maps.hashmap, &key, sizeof(key), + &val, sizeof(val), BPF_ANY); + if (!ASSERT_OK(err, "hash_map_update")) + goto out; + } + + skel->bss->data_output = 0; + skel->bss->use_array = 1; + err = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_pkt_access), &topts); + ASSERT_OK(err, "bpf_prog_test_run_opts"); + ASSERT_OK(topts.retval, "retval"); + ASSERT_EQ(skel->bss->data_output, array_total, "array output"); + + skel->bss->data_output = 0; + skel->bss->use_array = 0; + err = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_pkt_access), &topts); + ASSERT_OK(err, "bpf_prog_test_run_opts"); + ASSERT_OK(topts.retval, "retval"); + ASSERT_EQ(skel->bss->data_output, hash_total, "hash output"); + +out: + for_each_multi_maps__destroy(skel); +} + +void test_for_each(void) +{ + if (test__start_subtest("hash_map")) + test_hash_map(); + if (test__start_subtest("array_map")) + test_array_map(); + if (test__start_subtest("write_map_key")) + test_write_map_key(); + if (test__start_subtest("multi_maps")) + test_multi_maps(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/fs_kfuncs.c b/tools/testing/selftests/bpf/prog_tests/fs_kfuncs.c new file mode 100644 index 000000000000..37056ba73847 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/fs_kfuncs.c @@ -0,0 +1,142 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <stdlib.h> +#include <sys/types.h> +#include <sys/xattr.h> +#include <linux/fsverity.h> +#include <unistd.h> +#include <test_progs.h> +#include "test_get_xattr.skel.h" +#include "test_fsverity.skel.h" + +static const char testfile[] = "/tmp/test_progs_fs_kfuncs"; + +static void test_xattr(void) +{ + struct test_get_xattr *skel = NULL; + int fd = -1, err; + + fd = open(testfile, O_CREAT | O_RDONLY, 0644); + if (!ASSERT_GE(fd, 0, "create_file")) + return; + + close(fd); + fd = -1; + + err = setxattr(testfile, "user.kfuncs", "hello", sizeof("hello"), 0); + if (err && errno == EOPNOTSUPP) { + printf("%s:SKIP:local fs doesn't support xattr (%d)\n" + "To run this test, make sure /tmp filesystem supports xattr.\n", + __func__, errno); + test__skip(); + goto out; + } + + if (!ASSERT_OK(err, "setxattr")) + goto out; + + skel = test_get_xattr__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_get_xattr__open_and_load")) + goto out; + + skel->bss->monitored_pid = getpid(); + err = test_get_xattr__attach(skel); + + if (!ASSERT_OK(err, "test_get_xattr__attach")) + goto out; + + fd = open(testfile, O_RDONLY, 0644); + if (!ASSERT_GE(fd, 0, "open_file")) + goto out; + + ASSERT_EQ(skel->bss->found_xattr, 1, "found_xattr"); + +out: + close(fd); + test_get_xattr__destroy(skel); + remove(testfile); +} + +#ifndef SHA256_DIGEST_SIZE +#define SHA256_DIGEST_SIZE 32 +#endif + +static void test_fsverity(void) +{ + struct fsverity_enable_arg arg = {0}; + struct test_fsverity *skel = NULL; + struct fsverity_digest *d; + int fd, err; + char buffer[4096]; + + fd = open(testfile, O_CREAT | O_RDWR, 0644); + if (!ASSERT_GE(fd, 0, "create_file")) + return; + + /* Write random buffer, so the file is not empty */ + err = write(fd, buffer, 4096); + if (!ASSERT_EQ(err, 4096, "write_file")) + goto out; + close(fd); + + /* Reopen read-only, otherwise FS_IOC_ENABLE_VERITY will fail */ + fd = open(testfile, O_RDONLY, 0644); + if (!ASSERT_GE(fd, 0, "open_file1")) + return; + + /* Enable fsverity for the file. + * If the file system doesn't support verity, this will fail. Skip + * the test in such case. + */ + arg.version = 1; + arg.hash_algorithm = FS_VERITY_HASH_ALG_SHA256; + arg.block_size = 4096; + err = ioctl(fd, FS_IOC_ENABLE_VERITY, &arg); + if (err) { + printf("%s:SKIP:local fs doesn't support fsverity (%d)\n" + "To run this test, try enable CONFIG_FS_VERITY and enable FSVerity for the filesystem.\n", + __func__, errno); + test__skip(); + goto out; + } + + skel = test_fsverity__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_fsverity__open_and_load")) + goto out; + + /* Get fsverity_digest from ioctl */ + d = (struct fsverity_digest *)skel->bss->expected_digest; + d->digest_algorithm = FS_VERITY_HASH_ALG_SHA256; + d->digest_size = SHA256_DIGEST_SIZE; + err = ioctl(fd, FS_IOC_MEASURE_VERITY, skel->bss->expected_digest); + if (!ASSERT_OK(err, "ioctl_FS_IOC_MEASURE_VERITY")) + goto out; + + skel->bss->monitored_pid = getpid(); + err = test_fsverity__attach(skel); + if (!ASSERT_OK(err, "test_fsverity__attach")) + goto out; + + /* Reopen the file to trigger the program */ + close(fd); + fd = open(testfile, O_RDONLY); + if (!ASSERT_GE(fd, 0, "open_file2")) + goto out; + + ASSERT_EQ(skel->bss->got_fsverity, 1, "got_fsverity"); + ASSERT_EQ(skel->bss->digest_matches, 1, "digest_matches"); +out: + close(fd); + test_fsverity__destroy(skel); + remove(testfile); +} + +void test_fs_kfuncs(void) +{ + if (test__start_subtest("xattr")) + test_xattr(); + + if (test__start_subtest("fsverity")) + test_fsverity(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/get_branch_snapshot.c b/tools/testing/selftests/bpf/prog_tests/get_branch_snapshot.c new file mode 100644 index 000000000000..0394a1156d99 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/get_branch_snapshot.c @@ -0,0 +1,130 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include "get_branch_snapshot.skel.h" + +static int *pfd_array; +static int cpu_cnt; + +static bool is_hypervisor(void) +{ + char *line = NULL; + bool ret = false; + size_t len; + FILE *fp; + + fp = fopen("/proc/cpuinfo", "r"); + if (!fp) + return false; + + while (getline(&line, &len, fp) != -1) { + if (!strncmp(line, "flags", 5)) { + if (strstr(line, "hypervisor") != NULL) + ret = true; + break; + } + } + + free(line); + fclose(fp); + return ret; +} + +static int create_perf_events(void) +{ + struct perf_event_attr attr = {0}; + int cpu; + + /* create perf event */ + attr.size = sizeof(attr); + attr.type = PERF_TYPE_HARDWARE; + attr.config = PERF_COUNT_HW_CPU_CYCLES; + attr.sample_type = PERF_SAMPLE_BRANCH_STACK; + attr.branch_sample_type = PERF_SAMPLE_BRANCH_KERNEL | + PERF_SAMPLE_BRANCH_USER | PERF_SAMPLE_BRANCH_ANY; + + cpu_cnt = libbpf_num_possible_cpus(); + pfd_array = malloc(sizeof(int) * cpu_cnt); + if (!pfd_array) { + cpu_cnt = 0; + return 1; + } + + for (cpu = 0; cpu < cpu_cnt; cpu++) { + pfd_array[cpu] = syscall(__NR_perf_event_open, &attr, + -1, cpu, -1, PERF_FLAG_FD_CLOEXEC); + if (pfd_array[cpu] < 0) + break; + } + + return cpu == 0; +} + +static void close_perf_events(void) +{ + int cpu, fd; + + for (cpu = 0; cpu < cpu_cnt; cpu++) { + fd = pfd_array[cpu]; + if (fd < 0) + break; + close(fd); + } + free(pfd_array); +} + +void serial_test_get_branch_snapshot(void) +{ + struct get_branch_snapshot *skel = NULL; + int err; + + /* Skip the test before we fix LBR snapshot for hypervisor. */ + if (is_hypervisor()) { + test__skip(); + return; + } + + if (create_perf_events()) { + test__skip(); /* system doesn't support LBR */ + goto cleanup; + } + + skel = get_branch_snapshot__open_and_load(); + if (!ASSERT_OK_PTR(skel, "get_branch_snapshot__open_and_load")) + goto cleanup; + + err = kallsyms_find("bpf_testmod_loop_test", &skel->bss->address_low); + if (!ASSERT_OK(err, "kallsyms_find")) + goto cleanup; + + /* Just a guess for the end of this function, as module functions + * in /proc/kallsyms could come in any order. + */ + skel->bss->address_high = skel->bss->address_low + 128; + + err = get_branch_snapshot__attach(skel); + if (!ASSERT_OK(err, "get_branch_snapshot__attach")) + goto cleanup; + + trigger_module_test_read(100); + + if (skel->bss->total_entries < 16) { + /* too few entries for the hit/waste test */ + test__skip(); + goto cleanup; + } + + ASSERT_GT(skel->bss->test1_hits, 6, "find_looptest_in_lbr"); + + /* Given we stop LBR in software, we will waste a few entries. + * But we should try to waste as few as possible entries. We are at + * about 7 on x86_64 systems. + * Add a check for < 10 so that we get heads-up when something + * changes and wastes too many entries. + */ + ASSERT_LT(skel->bss->wasted_entries, 10, "check_wasted_entries"); + +cleanup: + get_branch_snapshot__destroy(skel); + close_perf_events(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/get_func_args_test.c b/tools/testing/selftests/bpf/prog_tests/get_func_args_test.c new file mode 100644 index 000000000000..64a9c95d4acf --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/get_func_args_test.c @@ -0,0 +1,44 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "get_func_args_test.skel.h" + +void test_get_func_args_test(void) +{ + struct get_func_args_test *skel = NULL; + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + skel = get_func_args_test__open_and_load(); + if (!ASSERT_OK_PTR(skel, "get_func_args_test__open_and_load")) + return; + + err = get_func_args_test__attach(skel); + if (!ASSERT_OK(err, "get_func_args_test__attach")) + goto cleanup; + + /* This runs bpf_fentry_test* functions and triggers + * fentry/fexit programs. + */ + prog_fd = bpf_program__fd(skel->progs.test1); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + /* This runs bpf_modify_return_test function and triggers + * fmod_ret_test and fexit_test programs. + */ + prog_fd = bpf_program__fd(skel->progs.fmod_ret_test); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + + ASSERT_EQ(topts.retval >> 16, 1, "test_run"); + ASSERT_EQ(topts.retval & 0xffff, 1234 + 29, "test_run"); + + ASSERT_EQ(skel->bss->test1_result, 1, "test1_result"); + ASSERT_EQ(skel->bss->test2_result, 1, "test2_result"); + ASSERT_EQ(skel->bss->test3_result, 1, "test3_result"); + ASSERT_EQ(skel->bss->test4_result, 1, "test4_result"); + +cleanup: + get_func_args_test__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/get_func_ip_test.c b/tools/testing/selftests/bpf/prog_tests/get_func_ip_test.c new file mode 100644 index 000000000000..c40242dfa8fb --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/get_func_ip_test.c @@ -0,0 +1,139 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "get_func_ip_test.skel.h" +#include "get_func_ip_uprobe_test.skel.h" + +static noinline void uprobe_trigger(void) +{ +} + +static void test_function_entry(void) +{ + struct get_func_ip_test *skel = NULL; + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + skel = get_func_ip_test__open(); + if (!ASSERT_OK_PTR(skel, "get_func_ip_test__open")) + return; + + err = get_func_ip_test__load(skel); + if (!ASSERT_OK(err, "get_func_ip_test__load")) + goto cleanup; + + err = get_func_ip_test__attach(skel); + if (!ASSERT_OK(err, "get_func_ip_test__attach")) + goto cleanup; + + skel->bss->uprobe_trigger = (unsigned long) uprobe_trigger; + + prog_fd = bpf_program__fd(skel->progs.test1); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + prog_fd = bpf_program__fd(skel->progs.test5); + err = bpf_prog_test_run_opts(prog_fd, &topts); + + ASSERT_OK(err, "test_run"); + + uprobe_trigger(); + + ASSERT_EQ(skel->bss->test1_result, 1, "test1_result"); + ASSERT_EQ(skel->bss->test2_result, 1, "test2_result"); + ASSERT_EQ(skel->bss->test3_result, 1, "test3_result"); + ASSERT_EQ(skel->bss->test4_result, 1, "test4_result"); + ASSERT_EQ(skel->bss->test5_result, 1, "test5_result"); + ASSERT_EQ(skel->bss->test7_result, 1, "test7_result"); + ASSERT_EQ(skel->bss->test8_result, 1, "test8_result"); + +cleanup: + get_func_ip_test__destroy(skel); +} + +#ifdef __x86_64__ +extern void uprobe_trigger_body(void); +asm( +".globl uprobe_trigger_body\n" +".type uprobe_trigger_body, @function\n" +"uprobe_trigger_body:\n" +" nop\n" +" ret\n" +); + +static void test_function_body_kprobe(void) +{ + struct get_func_ip_test *skel = NULL; + LIBBPF_OPTS(bpf_test_run_opts, topts); + LIBBPF_OPTS(bpf_kprobe_opts, kopts); + struct bpf_link *link6 = NULL; + int err, prog_fd; + + skel = get_func_ip_test__open(); + if (!ASSERT_OK_PTR(skel, "get_func_ip_test__open")) + return; + + /* test6 is x86_64 specific and is disabled by default, + * enable it for body test. + */ + bpf_program__set_autoload(skel->progs.test6, true); + + err = get_func_ip_test__load(skel); + if (!ASSERT_OK(err, "get_func_ip_test__load")) + goto cleanup; + + kopts.offset = skel->kconfig->CONFIG_X86_KERNEL_IBT ? 9 : 5; + + link6 = bpf_program__attach_kprobe_opts(skel->progs.test6, "bpf_fentry_test6", &kopts); + if (!ASSERT_OK_PTR(link6, "link6")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.test1); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + ASSERT_EQ(skel->bss->test6_result, 1, "test6_result"); + +cleanup: + bpf_link__destroy(link6); + get_func_ip_test__destroy(skel); +} + +static void test_function_body_uprobe(void) +{ + struct get_func_ip_uprobe_test *skel = NULL; + int err; + + skel = get_func_ip_uprobe_test__open_and_load(); + if (!ASSERT_OK_PTR(skel, "get_func_ip_uprobe_test__open_and_load")) + return; + + err = get_func_ip_uprobe_test__attach(skel); + if (!ASSERT_OK(err, "get_func_ip_test__attach")) + goto cleanup; + + skel->bss->uprobe_trigger_body = (unsigned long) uprobe_trigger_body; + + uprobe_trigger_body(); + + ASSERT_EQ(skel->bss->test1_result, 1, "test1_result"); + +cleanup: + get_func_ip_uprobe_test__destroy(skel); +} + +static void test_function_body(void) +{ + test_function_body_kprobe(); + test_function_body_uprobe(); +} +#else +#define test_function_body() +#endif + +void test_get_func_ip_test(void) +{ + test_function_entry(); + test_function_body(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/get_stack_raw_tp.c b/tools/testing/selftests/bpf/prog_tests/get_stack_raw_tp.c index 925722217edf..858e0575f502 100644 --- a/tools/testing/selftests/bpf/prog_tests/get_stack_raw_tp.c +++ b/tools/testing/selftests/bpf/prog_tests/get_stack_raw_tp.c @@ -24,12 +24,15 @@ static void get_stack_print_output(void *ctx, int cpu, void *data, __u32 size) { bool good_kern_stack = false, good_user_stack = false; const char *nonjit_func = "___bpf_prog_run"; - struct get_stack_trace_t *e = data; + /* perfbuf-submitted data is 4-byte aligned, but we need 8-byte + * alignment, so copy data into a local variable, for simplicity + */ + struct get_stack_trace_t e; int i, num_stack; - static __u64 cnt; struct ksym *ks; - cnt++; + memset(&e, 0, sizeof(e)); + memcpy(&e, data, size <= sizeof(e) ? size : sizeof(e)); if (size < sizeof(struct get_stack_trace_t)) { __u64 *raw_data = data; @@ -57,19 +60,19 @@ static void get_stack_print_output(void *ctx, int cpu, void *data, __u32 size) good_user_stack = true; } } else { - num_stack = e->kern_stack_size / sizeof(__u64); + num_stack = e.kern_stack_size / sizeof(__u64); if (env.jit_enabled) { good_kern_stack = num_stack > 0; } else { for (i = 0; i < num_stack; i++) { - ks = ksym_search(e->kern_stack[i]); + ks = ksym_search(e.kern_stack[i]); if (ks && (strcmp(ks->name, nonjit_func) == 0)) { good_kern_stack = true; break; } } } - if (e->user_stack_size > 0 && e->user_stack_buildid_size > 0) + if (e.user_stack_size > 0 && e.user_stack_buildid_size > 0) good_user_stack = true; } @@ -81,11 +84,10 @@ static void get_stack_print_output(void *ctx, int cpu, void *data, __u32 size) void test_get_stack_raw_tp(void) { - const char *file = "./test_get_stack_rawtp.o"; - const char *file_err = "./test_get_stack_rawtp_err.o"; - const char *prog_name = "raw_tracepoint/sys_enter"; + const char *file = "./test_get_stack_rawtp.bpf.o"; + const char *file_err = "./test_get_stack_rawtp_err.bpf.o"; + const char *prog_name = "bpf_prog1"; int i, err, prog_fd, exp_cnt = MAX_CNT_RAWTP; - struct perf_buffer_opts pb_opts = {}; struct perf_buffer *pb = NULL; struct bpf_link *link = NULL; struct timespec tv = {0, 10}; @@ -94,15 +96,15 @@ void test_get_stack_raw_tp(void) struct bpf_map *map; cpu_set_t cpu_set; - err = bpf_prog_load(file_err, BPF_PROG_TYPE_RAW_TRACEPOINT, &obj, &prog_fd); + err = bpf_prog_test_load(file_err, BPF_PROG_TYPE_RAW_TRACEPOINT, &obj, &prog_fd); if (CHECK(err >= 0, "prog_load raw tp", "err %d errno %d\n", err, errno)) return; - err = bpf_prog_load(file, BPF_PROG_TYPE_RAW_TRACEPOINT, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_RAW_TRACEPOINT, &obj, &prog_fd); if (CHECK(err, "prog_load raw tp", "err %d errno %d\n", err, errno)) return; - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK(!prog, "find_probe", "prog '%s' not found\n", prog_name)) goto close_prog; @@ -121,12 +123,12 @@ void test_get_stack_raw_tp(void) goto close_prog; link = bpf_program__attach_raw_tracepoint(prog, "sys_enter"); - if (CHECK(IS_ERR(link), "attach_raw_tp", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_raw_tp")) goto close_prog; - pb_opts.sample_cb = get_stack_print_output; - pb = perf_buffer__new(bpf_map__fd(map), 8, &pb_opts); - if (CHECK(IS_ERR(pb), "perf_buf__new", "err %ld\n", PTR_ERR(pb))) + pb = perf_buffer__new(bpf_map__fd(map), 8, get_stack_print_output, + NULL, NULL, NULL); + if (!ASSERT_OK_PTR(pb, "perf_buf__new")) goto close_prog; /* trigger some syscall action */ @@ -141,9 +143,7 @@ void test_get_stack_raw_tp(void) } close_prog: - if (!IS_ERR_OR_NULL(link)) - bpf_link__destroy(link); - if (!IS_ERR_OR_NULL(pb)) - perf_buffer__free(pb); + bpf_link__destroy(link); + perf_buffer__free(pb); bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/get_stackid_cannot_attach.c b/tools/testing/selftests/bpf/prog_tests/get_stackid_cannot_attach.c index d884b2ed5bc5..2715c68301f5 100644 --- a/tools/testing/selftests/bpf/prog_tests/get_stackid_cannot_attach.c +++ b/tools/testing/selftests/bpf/prog_tests/get_stackid_cannot_attach.c @@ -27,7 +27,7 @@ void test_get_stackid_cannot_attach(void) return; /* override program type */ - bpf_program__set_perf_event(skel->progs.oncpu); + bpf_program__set_type(skel->progs.oncpu, BPF_PROG_TYPE_PERF_EVENT); err = test_stacktrace_build_id__load(skel); if (CHECK(err, "skel_load", "skeleton load failed: %d\n", err)) @@ -48,8 +48,7 @@ void test_get_stackid_cannot_attach(void) skel->links.oncpu = bpf_program__attach_perf_event(skel->progs.oncpu, pmu_fd); - CHECK(!IS_ERR(skel->links.oncpu), "attach_perf_event_no_callchain", - "should have failed\n"); + ASSERT_ERR_PTR(skel->links.oncpu, "attach_perf_event_no_callchain"); close(pmu_fd); /* add PERF_SAMPLE_CALLCHAIN, attach should succeed */ @@ -65,8 +64,8 @@ void test_get_stackid_cannot_attach(void) skel->links.oncpu = bpf_program__attach_perf_event(skel->progs.oncpu, pmu_fd); - CHECK(IS_ERR(skel->links.oncpu), "attach_perf_event_callchain", - "err: %ld\n", PTR_ERR(skel->links.oncpu)); + ASSERT_OK_PTR(skel->links.oncpu, "attach_perf_event_callchain"); + bpf_link__destroy(skel->links.oncpu); close(pmu_fd); /* add exclude_callchain_kernel, attach should fail */ @@ -82,8 +81,7 @@ void test_get_stackid_cannot_attach(void) skel->links.oncpu = bpf_program__attach_perf_event(skel->progs.oncpu, pmu_fd); - CHECK(!IS_ERR(skel->links.oncpu), "attach_perf_event_exclude_callchain_kernel", - "should have failed\n"); + ASSERT_ERR_PTR(skel->links.oncpu, "attach_perf_event_exclude_callchain_kernel"); close(pmu_fd); cleanup: diff --git a/tools/testing/selftests/bpf/prog_tests/global_data.c b/tools/testing/selftests/bpf/prog_tests/global_data.c index 9efa7e50eab2..fadfb64e2a71 100644 --- a/tools/testing/selftests/bpf/prog_tests/global_data.c +++ b/tools/testing/selftests/bpf/prog_tests/global_data.c @@ -29,7 +29,7 @@ static void test_global_data_number(struct bpf_object *obj, __u32 duration) { "relocate .rodata reference", 10, ~0 }, }; - for (i = 0; i < sizeof(tests) / sizeof(tests[0]); i++) { + for (i = 0; i < ARRAY_SIZE(tests); i++) { err = bpf_map_lookup_elem(map_fd, &tests[i].key, &num); CHECK(err || num != tests[i].num, tests[i].name, "err %d result %llx expected %llx\n", @@ -58,7 +58,7 @@ static void test_global_data_string(struct bpf_object *obj, __u32 duration) { "relocate .bss reference", 4, "\0\0hello" }, }; - for (i = 0; i < sizeof(tests) / sizeof(tests[0]); i++) { + for (i = 0; i < ARRAY_SIZE(tests); i++) { err = bpf_map_lookup_elem(map_fd, &tests[i].key, str); CHECK(err || memcmp(str, tests[i].str, sizeof(str)), tests[i].name, "err %d result \'%s\' expected \'%s\'\n", @@ -92,7 +92,7 @@ static void test_global_data_struct(struct bpf_object *obj, __u32 duration) { "relocate .data reference", 3, { 41, 0xeeeeefef, 0x2111111111111111ULL, } }, }; - for (i = 0; i < sizeof(tests) / sizeof(tests[0]); i++) { + for (i = 0; i < ARRAY_SIZE(tests); i++) { err = bpf_map_lookup_elem(map_fd, &tests[i].key, &val); CHECK(err || memcmp(&val, &tests[i].val, sizeof(val)), tests[i].name, "err %d result { %u, %u, %llu } expected { %u, %u, %llu }\n", @@ -103,18 +103,25 @@ static void test_global_data_struct(struct bpf_object *obj, __u32 duration) static void test_global_data_rdonly(struct bpf_object *obj, __u32 duration) { int err = -ENOMEM, map_fd, zero = 0; - struct bpf_map *map; + struct bpf_map *map, *map2; __u8 *buff; map = bpf_object__find_map_by_name(obj, "test_glo.rodata"); - if (CHECK_FAIL(!map || !bpf_map__is_internal(map))) + if (!ASSERT_OK_PTR(map, "map")) + return; + if (!ASSERT_TRUE(bpf_map__is_internal(map), "is_internal")) + return; + + /* ensure we can lookup internal maps by their ELF names */ + map2 = bpf_object__find_map_by_name(obj, ".rodata"); + if (!ASSERT_EQ(map, map2, "same_maps")) return; map_fd = bpf_map__fd(map); if (CHECK_FAIL(map_fd < 0)) return; - buff = malloc(bpf_map__def(map)->value_size); + buff = malloc(bpf_map__value_size(map)); if (buff) err = bpf_map_update_elem(map_fd, &zero, buff, 0); free(buff); @@ -124,25 +131,27 @@ static void test_global_data_rdonly(struct bpf_object *obj, __u32 duration) void test_global_data(void) { - const char *file = "./test_global_data.o"; - __u32 duration = 0, retval; + const char *file = "./test_global_data.bpf.o"; struct bpf_object *obj; int err, prog_fd; - - err = bpf_prog_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); - if (CHECK(err, "load program", "error %d loading %s\n", err, file)) + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + err = bpf_prog_test_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); + if (!ASSERT_OK(err, "load program")) return; - err = bpf_prog_test_run(prog_fd, 1, &pkt_v4, sizeof(pkt_v4), - NULL, NULL, &retval, &duration); - CHECK(err || retval, "pass global data run", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "pass global data run err"); + ASSERT_OK(topts.retval, "pass global data run retval"); - test_global_data_number(obj, duration); - test_global_data_string(obj, duration); - test_global_data_struct(obj, duration); - test_global_data_rdonly(obj, duration); + test_global_data_number(obj, topts.duration); + test_global_data_string(obj, topts.duration); + test_global_data_struct(obj, topts.duration); + test_global_data_rdonly(obj, topts.duration); bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/global_data_init.c b/tools/testing/selftests/bpf/prog_tests/global_data_init.c index 3bdaa5a40744..8466332d7406 100644 --- a/tools/testing/selftests/bpf/prog_tests/global_data_init.c +++ b/tools/testing/selftests/bpf/prog_tests/global_data_init.c @@ -3,7 +3,7 @@ void test_global_data_init(void) { - const char *file = "./test_global_data.o"; + const char *file = "./test_global_data.bpf.o"; int err = -ENOMEM, map_fd, zero = 0; __u8 *buff = NULL, *newval = NULL; struct bpf_object *obj; @@ -12,14 +12,15 @@ void test_global_data_init(void) size_t sz; obj = bpf_object__open_file(file, NULL); - if (CHECK_FAIL(!obj)) + err = libbpf_get_error(obj); + if (CHECK_FAIL(err)) return; - map = bpf_object__find_map_by_name(obj, "test_glo.rodata"); + map = bpf_object__find_map_by_name(obj, ".rodata"); if (CHECK_FAIL(!map || !bpf_map__is_internal(map))) goto out; - sz = bpf_map__def(map)->value_size; + sz = bpf_map__value_size(map); newval = malloc(sz); if (CHECK_FAIL(!newval)) goto out; diff --git a/tools/testing/selftests/bpf/prog_tests/global_func_args.c b/tools/testing/selftests/bpf/prog_tests/global_func_args.c new file mode 100644 index 000000000000..d997099f62d0 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/global_func_args.c @@ -0,0 +1,62 @@ +// SPDX-License-Identifier: GPL-2.0 +#include "test_progs.h" +#include "network_helpers.h" + +static __u32 duration; + +static void test_global_func_args0(struct bpf_object *obj) +{ + int err, i, map_fd, actual_value; + const char *map_name = "values"; + + map_fd = bpf_find_map(__func__, obj, map_name); + if (CHECK(map_fd < 0, "bpf_find_map", "cannot find BPF map %s: %s\n", + map_name, strerror(errno))) + return; + + struct { + const char *descr; + int expected_value; + } tests[] = { + {"passing NULL pointer", 0}, + {"returning value", 1}, + {"reading local variable", 100 }, + {"writing local variable", 101 }, + {"reading global variable", 42 }, + {"writing global variable", 43 }, + {"writing to pointer-to-pointer", 1 }, + }; + + for (i = 0; i < ARRAY_SIZE(tests); ++i) { + const int expected_value = tests[i].expected_value; + + err = bpf_map_lookup_elem(map_fd, &i, &actual_value); + + CHECK(err || actual_value != expected_value, tests[i].descr, + "err %d result %d expected %d\n", err, actual_value, expected_value); + } +} + +void test_global_func_args(void) +{ + const char *file = "./test_global_func_args.bpf.o"; + struct bpf_object *obj; + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + err = bpf_prog_test_load(file, BPF_PROG_TYPE_CGROUP_SKB, &obj, &prog_fd); + if (CHECK(err, "load program", "error %d loading %s\n", err, file)) + return; + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_OK(topts.retval, "test_run retval"); + + test_global_func_args0(obj); + + bpf_object__close(obj); +} diff --git a/tools/testing/selftests/bpf/prog_tests/global_func_dead_code.c b/tools/testing/selftests/bpf/prog_tests/global_func_dead_code.c new file mode 100644 index 000000000000..65309894b27a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/global_func_dead_code.c @@ -0,0 +1,60 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include "verifier_global_subprogs.skel.h" +#include "freplace_dead_global_func.skel.h" + +void test_global_func_dead_code(void) +{ + struct verifier_global_subprogs *tgt_skel = NULL; + struct freplace_dead_global_func *skel = NULL; + char log_buf[4096]; + int err, tgt_fd; + + /* first, try to load target with good global subprog */ + tgt_skel = verifier_global_subprogs__open(); + if (!ASSERT_OK_PTR(tgt_skel, "tgt_skel_good_open")) + return; + + bpf_program__set_autoload(tgt_skel->progs.chained_global_func_calls_success, true); + + err = verifier_global_subprogs__load(tgt_skel); + if (!ASSERT_OK(err, "tgt_skel_good_load")) + goto out; + + tgt_fd = bpf_program__fd(tgt_skel->progs.chained_global_func_calls_success); + + /* Attach to good non-eliminated subprog */ + skel = freplace_dead_global_func__open(); + if (!ASSERT_OK_PTR(skel, "skel_good_open")) + goto out; + + err = bpf_program__set_attach_target(skel->progs.freplace_prog, tgt_fd, "global_good"); + ASSERT_OK(err, "attach_target_good"); + + err = freplace_dead_global_func__load(skel); + if (!ASSERT_OK(err, "skel_good_load")) + goto out; + + freplace_dead_global_func__destroy(skel); + + /* Try attaching to dead code-eliminated subprog */ + skel = freplace_dead_global_func__open(); + if (!ASSERT_OK_PTR(skel, "skel_dead_open")) + goto out; + + bpf_program__set_log_buf(skel->progs.freplace_prog, log_buf, sizeof(log_buf)); + err = bpf_program__set_attach_target(skel->progs.freplace_prog, tgt_fd, "global_dead"); + ASSERT_OK(err, "attach_target_dead"); + + err = freplace_dead_global_func__load(skel); + if (!ASSERT_ERR(err, "skel_dead_load")) + goto out; + + ASSERT_HAS_SUBSTR(log_buf, "Subprog global_dead doesn't exist", "dead_subprog_missing_msg"); + +out: + verifier_global_subprogs__destroy(tgt_skel); + freplace_dead_global_func__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/global_map_resize.c b/tools/testing/selftests/bpf/prog_tests/global_map_resize.c new file mode 100644 index 000000000000..56b5baef35c8 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/global_map_resize.c @@ -0,0 +1,235 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ +#include <errno.h> +#include <sys/syscall.h> +#include <unistd.h> +#include "test_global_map_resize.skel.h" +#include "test_progs.h" + +static void run_prog_bss_array_sum(void) +{ + (void)syscall(__NR_getpid); +} + +static void run_prog_data_array_sum(void) +{ + (void)syscall(__NR_getuid); +} + +static void global_map_resize_bss_subtest(void) +{ + int err; + struct test_global_map_resize *skel; + struct bpf_map *map; + const __u32 desired_sz = sizeof(skel->bss->sum) + sysconf(_SC_PAGE_SIZE) * 2; + size_t array_len, actual_sz, new_sz; + + skel = test_global_map_resize__open(); + if (!ASSERT_OK_PTR(skel, "test_global_map_resize__open")) + goto teardown; + + /* set some initial value before resizing. + * it is expected this non-zero value will be preserved + * while resizing. + */ + skel->bss->array[0] = 1; + + /* resize map value and verify the new size */ + map = skel->maps.bss; + err = bpf_map__set_value_size(map, desired_sz); + if (!ASSERT_OK(err, "bpf_map__set_value_size")) + goto teardown; + if (!ASSERT_EQ(bpf_map__value_size(map), desired_sz, "resize")) + goto teardown; + + new_sz = sizeof(skel->data_percpu_arr->percpu_arr[0]) * libbpf_num_possible_cpus(); + err = bpf_map__set_value_size(skel->maps.data_percpu_arr, new_sz); + ASSERT_OK(err, "percpu_arr_resize"); + + /* set the expected number of elements based on the resized array */ + array_len = (desired_sz - sizeof(skel->bss->sum)) / sizeof(skel->bss->array[0]); + if (!ASSERT_GT(array_len, 1, "array_len")) + goto teardown; + + skel->bss = bpf_map__initial_value(skel->maps.bss, &actual_sz); + if (!ASSERT_OK_PTR(skel->bss, "bpf_map__initial_value (ptr)")) + goto teardown; + if (!ASSERT_EQ(actual_sz, desired_sz, "bpf_map__initial_value (size)")) + goto teardown; + + /* fill the newly resized array with ones, + * skipping the first element which was previously set + */ + for (int i = 1; i < array_len; i++) + skel->bss->array[i] = 1; + + /* set global const values before loading */ + skel->rodata->pid = getpid(); + skel->rodata->bss_array_len = array_len; + skel->rodata->data_array_len = 1; + + err = test_global_map_resize__load(skel); + if (!ASSERT_OK(err, "test_global_map_resize__load")) + goto teardown; + err = test_global_map_resize__attach(skel); + if (!ASSERT_OK(err, "test_global_map_resize__attach")) + goto teardown; + + /* run the bpf program which will sum the contents of the array. + * since the array was filled with ones,verify the sum equals array_len + */ + run_prog_bss_array_sum(); + if (!ASSERT_EQ(skel->bss->sum, array_len, "sum")) + goto teardown; + +teardown: + test_global_map_resize__destroy(skel); +} + +static void global_map_resize_data_subtest(void) +{ + struct test_global_map_resize *skel; + struct bpf_map *map; + const __u32 desired_sz = sysconf(_SC_PAGE_SIZE) * 2; + size_t array_len, actual_sz, new_sz; + int err; + + skel = test_global_map_resize__open(); + if (!ASSERT_OK_PTR(skel, "test_global_map_resize__open")) + goto teardown; + + /* set some initial value before resizing. + * it is expected this non-zero value will be preserved + * while resizing. + */ + skel->data_custom->my_array[0] = 1; + + /* resize map value and verify the new size */ + map = skel->maps.data_custom; + err = bpf_map__set_value_size(map, desired_sz); + if (!ASSERT_OK(err, "bpf_map__set_value_size")) + goto teardown; + if (!ASSERT_EQ(bpf_map__value_size(map), desired_sz, "resize")) + goto teardown; + + new_sz = sizeof(skel->data_percpu_arr->percpu_arr[0]) * libbpf_num_possible_cpus(); + err = bpf_map__set_value_size(skel->maps.data_percpu_arr, new_sz); + ASSERT_OK(err, "percpu_arr_resize"); + + /* set the expected number of elements based on the resized array */ + array_len = (desired_sz - sizeof(skel->bss->sum)) / sizeof(skel->data_custom->my_array[0]); + if (!ASSERT_GT(array_len, 1, "array_len")) + goto teardown; + + skel->data_custom = bpf_map__initial_value(skel->maps.data_custom, &actual_sz); + if (!ASSERT_OK_PTR(skel->data_custom, "bpf_map__initial_value (ptr)")) + goto teardown; + if (!ASSERT_EQ(actual_sz, desired_sz, "bpf_map__initial_value (size)")) + goto teardown; + + /* fill the newly resized array with ones, + * skipping the first element which was previously set + */ + for (int i = 1; i < array_len; i++) + skel->data_custom->my_array[i] = 1; + + /* set global const values before loading */ + skel->rodata->pid = getpid(); + skel->rodata->bss_array_len = 1; + skel->rodata->data_array_len = array_len; + + err = test_global_map_resize__load(skel); + if (!ASSERT_OK(err, "test_global_map_resize__load")) + goto teardown; + err = test_global_map_resize__attach(skel); + if (!ASSERT_OK(err, "test_global_map_resize__attach")) + goto teardown; + + /* run the bpf program which will sum the contents of the array. + * since the array was filled with ones,verify the sum equals array_len + */ + run_prog_data_array_sum(); + if (!ASSERT_EQ(skel->bss->sum, array_len, "sum")) + goto teardown; + +teardown: + test_global_map_resize__destroy(skel); +} + +static void global_map_resize_invalid_subtest(void) +{ + int err; + struct test_global_map_resize *skel; + struct bpf_map *map; + __u32 element_sz, desired_sz; + + skel = test_global_map_resize__open(); + if (!ASSERT_OK_PTR(skel, "test_global_map_resize__open")) + return; + + /* attempt to resize a global datasec map to size + * which does NOT align with array + */ + map = skel->maps.data_custom; + if (!ASSERT_NEQ(bpf_map__btf_value_type_id(map), 0, ".data.custom initial btf")) + goto teardown; + /* set desired size a fraction of element size beyond an aligned size */ + element_sz = sizeof(skel->data_custom->my_array[0]); + desired_sz = element_sz + element_sz / 2; + /* confirm desired size does NOT align with array */ + if (!ASSERT_NEQ(desired_sz % element_sz, 0, "my_array alignment")) + goto teardown; + err = bpf_map__set_value_size(map, desired_sz); + /* confirm resize is OK but BTF info is cleared */ + if (!ASSERT_OK(err, ".data.custom bpf_map__set_value_size") || + !ASSERT_EQ(bpf_map__btf_key_type_id(map), 0, ".data.custom clear btf key") || + !ASSERT_EQ(bpf_map__btf_value_type_id(map), 0, ".data.custom clear btf val")) + goto teardown; + + /* attempt to resize a global datasec map whose only var is NOT an array */ + map = skel->maps.data_non_array; + if (!ASSERT_NEQ(bpf_map__btf_value_type_id(map), 0, ".data.non_array initial btf")) + goto teardown; + /* set desired size to arbitrary value */ + desired_sz = 1024; + err = bpf_map__set_value_size(map, desired_sz); + /* confirm resize is OK but BTF info is cleared */ + if (!ASSERT_OK(err, ".data.non_array bpf_map__set_value_size") || + !ASSERT_EQ(bpf_map__btf_key_type_id(map), 0, ".data.non_array clear btf key") || + !ASSERT_EQ(bpf_map__btf_value_type_id(map), 0, ".data.non_array clear btf val")) + goto teardown; + + /* attempt to resize a global datasec map + * whose last var is NOT an array + */ + map = skel->maps.data_array_not_last; + if (!ASSERT_NEQ(bpf_map__btf_value_type_id(map), 0, ".data.array_not_last initial btf")) + goto teardown; + /* set desired size to a multiple of element size */ + element_sz = sizeof(skel->data_array_not_last->my_array_first[0]); + desired_sz = element_sz * 8; + /* confirm desired size aligns with array */ + if (!ASSERT_EQ(desired_sz % element_sz, 0, "my_array_first alignment")) + goto teardown; + err = bpf_map__set_value_size(map, desired_sz); + /* confirm resize is OK but BTF info is cleared */ + if (!ASSERT_OK(err, ".data.array_not_last bpf_map__set_value_size") || + !ASSERT_EQ(bpf_map__btf_key_type_id(map), 0, ".data.array_not_last clear btf key") || + !ASSERT_EQ(bpf_map__btf_value_type_id(map), 0, ".data.array_not_last clear btf val")) + goto teardown; + +teardown: + test_global_map_resize__destroy(skel); +} + +void test_global_map_resize(void) +{ + if (test__start_subtest("global_map_resize_bss")) + global_map_resize_bss_subtest(); + + if (test__start_subtest("global_map_resize_data")) + global_map_resize_data_subtest(); + + if (test__start_subtest("global_map_resize_invalid")) + global_map_resize_invalid_subtest(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/hash_large_key.c b/tools/testing/selftests/bpf/prog_tests/hash_large_key.c new file mode 100644 index 000000000000..34684c0fc76d --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/hash_large_key.c @@ -0,0 +1,43 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include "test_hash_large_key.skel.h" + +void test_hash_large_key(void) +{ + int err, value = 21, duration = 0, hash_map_fd; + struct test_hash_large_key *skel; + + struct bigelement { + int a; + char b[4096]; + long long c; + } key; + bzero(&key, sizeof(key)); + + skel = test_hash_large_key__open_and_load(); + if (CHECK(!skel, "skel_open_and_load", "skeleton open/load failed\n")) + return; + + hash_map_fd = bpf_map__fd(skel->maps.hash_map); + if (CHECK(hash_map_fd < 0, "bpf_map__fd", "failed\n")) + goto cleanup; + + err = test_hash_large_key__attach(skel); + if (CHECK(err, "attach_raw_tp", "err %d\n", err)) + goto cleanup; + + err = bpf_map_update_elem(hash_map_fd, &key, &value, BPF_ANY); + if (CHECK(err, "bpf_map_update_elem", "errno=%d\n", errno)) + goto cleanup; + + key.c = 1; + err = bpf_map_lookup_elem(hash_map_fd, &key, &value); + if (CHECK(err, "bpf_map_lookup_elem", "errno=%d\n", errno)) + goto cleanup; + + CHECK_FAIL(value != 42); + +cleanup: + test_hash_large_key__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/hashmap.c b/tools/testing/selftests/bpf/prog_tests/hashmap.c index 428d488830c6..d358a223fd2d 100644 --- a/tools/testing/selftests/bpf/prog_tests/hashmap.c +++ b/tools/testing/selftests/bpf/prog_tests/hashmap.c @@ -7,17 +7,18 @@ */ #include "test_progs.h" #include "bpf/hashmap.h" +#include <stddef.h> static int duration = 0; -static size_t hash_fn(const void *k, void *ctx) +static size_t hash_fn(long k, void *ctx) { - return (long)k; + return k; } -static bool equal_fn(const void *a, const void *b, void *ctx) +static bool equal_fn(long a, long b, void *ctx) { - return (long)a == (long)b; + return a == b; } static inline size_t next_pow_2(size_t n) @@ -48,13 +49,12 @@ static void test_hashmap_generic(void) struct hashmap *map; map = hashmap__new(hash_fn, equal_fn, NULL); - if (CHECK(IS_ERR(map), "hashmap__new", - "failed to create map: %ld\n", PTR_ERR(map))) + if (!ASSERT_OK_PTR(map, "hashmap__new")) return; for (i = 0; i < ELEM_CNT; i++) { - const void *oldk, *k = (const void *)(long)i; - void *oldv, *v = (void *)(long)(1024 + i); + long oldk, k = i; + long oldv, v = 1024 + i; err = hashmap__update(map, k, v, &oldk, &oldv); if (CHECK(err != -ENOENT, "hashmap__update", @@ -65,20 +65,18 @@ static void test_hashmap_generic(void) err = hashmap__add(map, k, v); } else { err = hashmap__set(map, k, v, &oldk, &oldv); - if (CHECK(oldk != NULL || oldv != NULL, "check_kv", - "unexpected k/v: %p=%p\n", oldk, oldv)) + if (CHECK(oldk != 0 || oldv != 0, "check_kv", + "unexpected k/v: %ld=%ld\n", oldk, oldv)) goto cleanup; } - if (CHECK(err, "elem_add", "failed to add k/v %ld = %ld: %d\n", - (long)k, (long)v, err)) + if (CHECK(err, "elem_add", "failed to add k/v %ld = %ld: %d\n", k, v, err)) goto cleanup; if (CHECK(!hashmap__find(map, k, &oldv), "elem_find", - "failed to find key %ld\n", (long)k)) + "failed to find key %ld\n", k)) goto cleanup; - if (CHECK(oldv != v, "elem_val", - "found value is wrong: %ld\n", (long)oldv)) + if (CHECK(oldv != v, "elem_val", "found value is wrong: %ld\n", oldv)) goto cleanup; } @@ -92,8 +90,8 @@ static void test_hashmap_generic(void) found_msk = 0; hashmap__for_each_entry(map, entry, bkt) { - long k = (long)entry->key; - long v = (long)entry->value; + long k = entry->key; + long v = entry->value; found_msk |= 1ULL << k; if (CHECK(v - k != 1024, "check_kv", @@ -105,8 +103,8 @@ static void test_hashmap_generic(void) goto cleanup; for (i = 0; i < ELEM_CNT; i++) { - const void *oldk, *k = (const void *)(long)i; - void *oldv, *v = (void *)(long)(256 + i); + long oldk, k = i; + long oldv, v = 256 + i; err = hashmap__add(map, k, v); if (CHECK(err != -EEXIST, "hashmap__add", @@ -120,13 +118,13 @@ static void test_hashmap_generic(void) if (CHECK(err, "elem_upd", "failed to update k/v %ld = %ld: %d\n", - (long)k, (long)v, err)) + k, v, err)) goto cleanup; if (CHECK(!hashmap__find(map, k, &oldv), "elem_find", - "failed to find key %ld\n", (long)k)) + "failed to find key %ld\n", k)) goto cleanup; if (CHECK(oldv != v, "elem_val", - "found value is wrong: %ld\n", (long)oldv)) + "found value is wrong: %ld\n", oldv)) goto cleanup; } @@ -140,8 +138,8 @@ static void test_hashmap_generic(void) found_msk = 0; hashmap__for_each_entry_safe(map, entry, tmp, bkt) { - long k = (long)entry->key; - long v = (long)entry->value; + long k = entry->key; + long v = entry->value; found_msk |= 1ULL << k; if (CHECK(v - k != 256, "elem_check", @@ -153,7 +151,7 @@ static void test_hashmap_generic(void) goto cleanup; found_cnt = 0; - hashmap__for_each_key_entry(map, entry, (void *)0) { + hashmap__for_each_key_entry(map, entry, 0) { found_cnt++; } if (CHECK(!found_cnt, "found_cnt", @@ -162,27 +160,25 @@ static void test_hashmap_generic(void) found_msk = 0; found_cnt = 0; - hashmap__for_each_key_entry_safe(map, entry, tmp, (void *)0) { - const void *oldk, *k; - void *oldv, *v; + hashmap__for_each_key_entry_safe(map, entry, tmp, 0) { + long oldk, k; + long oldv, v; k = entry->key; v = entry->value; found_cnt++; - found_msk |= 1ULL << (long)k; + found_msk |= 1ULL << k; if (CHECK(!hashmap__delete(map, k, &oldk, &oldv), "elem_del", - "failed to delete k/v %ld = %ld\n", - (long)k, (long)v)) + "failed to delete k/v %ld = %ld\n", k, v)) goto cleanup; if (CHECK(oldk != k || oldv != v, "check_old", "invalid deleted k/v: expected %ld = %ld, got %ld = %ld\n", - (long)k, (long)v, (long)oldk, (long)oldv)) + k, v, oldk, oldv)) goto cleanup; if (CHECK(hashmap__delete(map, k, &oldk, &oldv), "elem_del", - "unexpectedly deleted k/v %ld = %ld\n", - (long)oldk, (long)oldv)) + "unexpectedly deleted k/v %ld = %ld\n", oldk, oldv)) goto cleanup; } @@ -199,26 +195,24 @@ static void test_hashmap_generic(void) goto cleanup; hashmap__for_each_entry_safe(map, entry, tmp, bkt) { - const void *oldk, *k; - void *oldv, *v; + long oldk, k; + long oldv, v; k = entry->key; v = entry->value; found_cnt++; - found_msk |= 1ULL << (long)k; + found_msk |= 1ULL << k; if (CHECK(!hashmap__delete(map, k, &oldk, &oldv), "elem_del", - "failed to delete k/v %ld = %ld\n", - (long)k, (long)v)) + "failed to delete k/v %ld = %ld\n", k, v)) goto cleanup; if (CHECK(oldk != k || oldv != v, "elem_check", "invalid old k/v: expect %ld = %ld, got %ld = %ld\n", - (long)k, (long)v, (long)oldk, (long)oldv)) + k, v, oldk, oldv)) goto cleanup; if (CHECK(hashmap__delete(map, k, &oldk, &oldv), "elem_del", - "unexpectedly deleted k/v %ld = %ld\n", - (long)k, (long)v)) + "unexpectedly deleted k/v %ld = %ld\n", k, v)) goto cleanup; } @@ -236,7 +230,7 @@ static void test_hashmap_generic(void) hashmap__for_each_entry(map, entry, bkt) { CHECK(false, "elem_exists", "unexpected map entries left: %ld = %ld\n", - (long)entry->key, (long)entry->value); + entry->key, entry->value); goto cleanup; } @@ -244,22 +238,107 @@ static void test_hashmap_generic(void) hashmap__for_each_entry(map, entry, bkt) { CHECK(false, "elem_exists", "unexpected map entries left: %ld = %ld\n", - (long)entry->key, (long)entry->value); + entry->key, entry->value); + goto cleanup; + } + +cleanup: + hashmap__free(map); +} + +static size_t str_hash_fn(long a, void *ctx) +{ + return str_hash((char *)a); +} + +static bool str_equal_fn(long a, long b, void *ctx) +{ + return strcmp((char *)a, (char *)b) == 0; +} + +/* Verify that hashmap interface works with pointer keys and values */ +static void test_hashmap_ptr_iface(void) +{ + const char *key, *value, *old_key, *old_value; + struct hashmap_entry *cur; + struct hashmap *map; + int err, i, bkt; + + map = hashmap__new(str_hash_fn, str_equal_fn, NULL); + if (CHECK(!map, "hashmap__new", "can't allocate hashmap\n")) goto cleanup; + +#define CHECK_STR(fn, var, expected) \ + CHECK(strcmp(var, (expected)), (fn), \ + "wrong value of " #var ": '%s' instead of '%s'\n", var, (expected)) + + err = hashmap__insert(map, "a", "apricot", HASHMAP_ADD, NULL, NULL); + if (CHECK(err, "hashmap__insert", "unexpected error: %d\n", err)) + goto cleanup; + + err = hashmap__insert(map, "a", "apple", HASHMAP_SET, &old_key, &old_value); + if (CHECK(err, "hashmap__insert", "unexpected error: %d\n", err)) + goto cleanup; + CHECK_STR("hashmap__update", old_key, "a"); + CHECK_STR("hashmap__update", old_value, "apricot"); + + err = hashmap__add(map, "b", "banana"); + if (CHECK(err, "hashmap__add", "unexpected error: %d\n", err)) + goto cleanup; + + err = hashmap__set(map, "b", "breadfruit", &old_key, &old_value); + if (CHECK(err, "hashmap__set", "unexpected error: %d\n", err)) + goto cleanup; + CHECK_STR("hashmap__set", old_key, "b"); + CHECK_STR("hashmap__set", old_value, "banana"); + + err = hashmap__update(map, "b", "blueberry", &old_key, &old_value); + if (CHECK(err, "hashmap__update", "unexpected error: %d\n", err)) + goto cleanup; + CHECK_STR("hashmap__update", old_key, "b"); + CHECK_STR("hashmap__update", old_value, "breadfruit"); + + err = hashmap__append(map, "c", "cherry"); + if (CHECK(err, "hashmap__append", "unexpected error: %d\n", err)) + goto cleanup; + + if (CHECK(!hashmap__delete(map, "c", &old_key, &old_value), + "hashmap__delete", "expected to have entry for 'c'\n")) + goto cleanup; + CHECK_STR("hashmap__delete", old_key, "c"); + CHECK_STR("hashmap__delete", old_value, "cherry"); + + CHECK(!hashmap__find(map, "b", &value), "hashmap__find", "can't find value for 'b'\n"); + CHECK_STR("hashmap__find", value, "blueberry"); + + if (CHECK(!hashmap__delete(map, "b", NULL, NULL), + "hashmap__delete", "expected to have entry for 'b'\n")) + goto cleanup; + + i = 0; + hashmap__for_each_entry(map, cur, bkt) { + if (CHECK(i != 0, "hashmap__for_each_entry", "too many entries")) + goto cleanup; + key = cur->pkey; + value = cur->pvalue; + CHECK_STR("entry", key, "a"); + CHECK_STR("entry", value, "apple"); + i++; } +#undef CHECK_STR cleanup: hashmap__free(map); } -static size_t collision_hash_fn(const void *k, void *ctx) +static size_t collision_hash_fn(long k, void *ctx) { return 0; } static void test_hashmap_multimap(void) { - void *k1 = (void *)0, *k2 = (void *)1; + long k1 = 0, k2 = 1; struct hashmap_entry *entry; struct hashmap *map; long found_msk; @@ -267,31 +346,30 @@ static void test_hashmap_multimap(void) /* force collisions */ map = hashmap__new(collision_hash_fn, equal_fn, NULL); - if (CHECK(IS_ERR(map), "hashmap__new", - "failed to create map: %ld\n", PTR_ERR(map))) + if (!ASSERT_OK_PTR(map, "hashmap__new")) return; /* set up multimap: * [0] -> 1, 2, 4; * [1] -> 8, 16, 32; */ - err = hashmap__append(map, k1, (void *)1); + err = hashmap__append(map, k1, 1); if (CHECK(err, "elem_add", "failed to add k/v: %d\n", err)) goto cleanup; - err = hashmap__append(map, k1, (void *)2); + err = hashmap__append(map, k1, 2); if (CHECK(err, "elem_add", "failed to add k/v: %d\n", err)) goto cleanup; - err = hashmap__append(map, k1, (void *)4); + err = hashmap__append(map, k1, 4); if (CHECK(err, "elem_add", "failed to add k/v: %d\n", err)) goto cleanup; - err = hashmap__append(map, k2, (void *)8); + err = hashmap__append(map, k2, 8); if (CHECK(err, "elem_add", "failed to add k/v: %d\n", err)) goto cleanup; - err = hashmap__append(map, k2, (void *)16); + err = hashmap__append(map, k2, 16); if (CHECK(err, "elem_add", "failed to add k/v: %d\n", err)) goto cleanup; - err = hashmap__append(map, k2, (void *)32); + err = hashmap__append(map, k2, 32); if (CHECK(err, "elem_add", "failed to add k/v: %d\n", err)) goto cleanup; @@ -302,7 +380,7 @@ static void test_hashmap_multimap(void) /* verify global iteration still works and sees all values */ found_msk = 0; hashmap__for_each_entry(map, entry, bkt) { - found_msk |= (long)entry->value; + found_msk |= entry->value; } if (CHECK(found_msk != (1 << 6) - 1, "found_msk", "not all keys iterated: %lx\n", found_msk)) @@ -311,7 +389,7 @@ static void test_hashmap_multimap(void) /* iterate values for key 1 */ found_msk = 0; hashmap__for_each_key_entry(map, entry, k1) { - found_msk |= (long)entry->value; + found_msk |= entry->value; } if (CHECK(found_msk != (1 | 2 | 4), "found_msk", "invalid k1 values: %lx\n", found_msk)) @@ -320,7 +398,7 @@ static void test_hashmap_multimap(void) /* iterate values for key 2 */ found_msk = 0; hashmap__for_each_key_entry(map, entry, k2) { - found_msk |= (long)entry->value; + found_msk |= entry->value; } if (CHECK(found_msk != (8 | 16 | 32), "found_msk", "invalid k2 values: %lx\n", found_msk)) @@ -335,12 +413,11 @@ static void test_hashmap_empty() struct hashmap_entry *entry; int bkt; struct hashmap *map; - void *k = (void *)0; + long k = 0; /* force collisions */ map = hashmap__new(hash_fn, equal_fn, NULL); - if (CHECK(IS_ERR(map), "hashmap__new", - "failed to create map: %ld\n", PTR_ERR(map))) + if (!ASSERT_OK_PTR(map, "hashmap__new")) goto cleanup; if (CHECK(hashmap__size(map) != 0, "hashmap__size", @@ -377,4 +454,6 @@ void test_hashmap() test_hashmap_multimap(); if (test__start_subtest("empty")) test_hashmap_empty(); + if (test__start_subtest("ptr_iface")) + test_hashmap_ptr_iface(); } diff --git a/tools/testing/selftests/bpf/prog_tests/helper_restricted.c b/tools/testing/selftests/bpf/prog_tests/helper_restricted.c new file mode 100644 index 000000000000..0354f9b82c65 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/helper_restricted.c @@ -0,0 +1,31 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include "test_helper_restricted.skel.h" + +void test_helper_restricted(void) +{ + int prog_i = 0, prog_cnt; + + do { + struct test_helper_restricted *test; + int err; + + test = test_helper_restricted__open(); + if (!ASSERT_OK_PTR(test, "open")) + return; + + prog_cnt = test->skeleton->prog_cnt; + + for (int j = 0; j < prog_cnt; ++j) { + struct bpf_program *prog = *test->skeleton->progs[j].prog; + + bpf_program__set_autoload(prog, true); + } + + err = test_helper_restricted__load(test); + ASSERT_ERR(err, "load_should_fail"); + + test_helper_restricted__destroy(test); + } while (++prog_i < prog_cnt); +} diff --git a/tools/testing/selftests/bpf/prog_tests/htab_reuse.c b/tools/testing/selftests/bpf/prog_tests/htab_reuse.c new file mode 100644 index 000000000000..a742dd994d60 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/htab_reuse.c @@ -0,0 +1,101 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023. Huawei Technologies Co., Ltd */ +#define _GNU_SOURCE +#include <sched.h> +#include <stdbool.h> +#include <test_progs.h> +#include "htab_reuse.skel.h" + +struct htab_op_ctx { + int fd; + int loop; + bool stop; +}; + +struct htab_val { + unsigned int lock; + unsigned int data; +}; + +static void *htab_lookup_fn(void *arg) +{ + struct htab_op_ctx *ctx = arg; + int i = 0; + + while (i++ < ctx->loop && !ctx->stop) { + struct htab_val value; + unsigned int key; + + /* Use BPF_F_LOCK to use spin-lock in map value. */ + key = 7; + bpf_map_lookup_elem_flags(ctx->fd, &key, &value, BPF_F_LOCK); + } + + return NULL; +} + +static void *htab_update_fn(void *arg) +{ + struct htab_op_ctx *ctx = arg; + int i = 0; + + while (i++ < ctx->loop && !ctx->stop) { + struct htab_val value; + unsigned int key; + + key = 7; + value.lock = 0; + value.data = key; + bpf_map_update_elem(ctx->fd, &key, &value, BPF_F_LOCK); + bpf_map_delete_elem(ctx->fd, &key); + + key = 24; + value.lock = 0; + value.data = key; + bpf_map_update_elem(ctx->fd, &key, &value, BPF_F_LOCK); + bpf_map_delete_elem(ctx->fd, &key); + } + + return NULL; +} + +void test_htab_reuse(void) +{ + unsigned int i, wr_nr = 1, rd_nr = 4; + pthread_t tids[wr_nr + rd_nr]; + struct htab_reuse *skel; + struct htab_op_ctx ctx; + int err; + + skel = htab_reuse__open_and_load(); + if (!ASSERT_OK_PTR(skel, "htab_reuse__open_and_load")) + return; + + ctx.fd = bpf_map__fd(skel->maps.htab); + ctx.loop = 500; + ctx.stop = false; + + memset(tids, 0, sizeof(tids)); + for (i = 0; i < wr_nr; i++) { + err = pthread_create(&tids[i], NULL, htab_update_fn, &ctx); + if (!ASSERT_OK(err, "pthread_create")) { + ctx.stop = true; + goto reap; + } + } + for (i = 0; i < rd_nr; i++) { + err = pthread_create(&tids[i + wr_nr], NULL, htab_lookup_fn, &ctx); + if (!ASSERT_OK(err, "pthread_create")) { + ctx.stop = true; + goto reap; + } + } + +reap: + for (i = 0; i < wr_nr + rd_nr; i++) { + if (!tids[i]) + continue; + pthread_join(tids[i], NULL); + } + htab_reuse__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/htab_update.c b/tools/testing/selftests/bpf/prog_tests/htab_update.c new file mode 100644 index 000000000000..2bc85f4814f4 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/htab_update.c @@ -0,0 +1,126 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2022. Huawei Technologies Co., Ltd */ +#define _GNU_SOURCE +#include <sched.h> +#include <stdbool.h> +#include <test_progs.h> +#include "htab_update.skel.h" + +struct htab_update_ctx { + int fd; + int loop; + bool stop; +}; + +static void test_reenter_update(void) +{ + struct htab_update *skel; + unsigned int key, value; + int err; + + skel = htab_update__open(); + if (!ASSERT_OK_PTR(skel, "htab_update__open")) + return; + + /* lookup_elem_raw() may be inlined and find_kernel_btf_id() will return -ESRCH */ + bpf_program__set_autoload(skel->progs.lookup_elem_raw, true); + err = htab_update__load(skel); + if (!ASSERT_TRUE(!err || err == -ESRCH, "htab_update__load") || err) + goto out; + + skel->bss->pid = getpid(); + err = htab_update__attach(skel); + if (!ASSERT_OK(err, "htab_update__attach")) + goto out; + + /* Will trigger the reentrancy of bpf_map_update_elem() */ + key = 0; + value = 0; + err = bpf_map_update_elem(bpf_map__fd(skel->maps.htab), &key, &value, 0); + if (!ASSERT_OK(err, "add element")) + goto out; + + ASSERT_EQ(skel->bss->update_err, -EBUSY, "no reentrancy"); +out: + htab_update__destroy(skel); +} + +static void *htab_update_thread(void *arg) +{ + struct htab_update_ctx *ctx = arg; + cpu_set_t cpus; + int i; + + /* Pinned on CPU 0 */ + CPU_ZERO(&cpus); + CPU_SET(0, &cpus); + pthread_setaffinity_np(pthread_self(), sizeof(cpus), &cpus); + + i = 0; + while (i++ < ctx->loop && !ctx->stop) { + unsigned int key = 0, value = 0; + int err; + + err = bpf_map_update_elem(ctx->fd, &key, &value, 0); + if (err) { + ctx->stop = true; + return (void *)(long)err; + } + } + + return NULL; +} + +static void test_concurrent_update(void) +{ + struct htab_update_ctx ctx; + struct htab_update *skel; + unsigned int i, nr; + pthread_t *tids; + int err; + + skel = htab_update__open_and_load(); + if (!ASSERT_OK_PTR(skel, "htab_update__open_and_load")) + return; + + ctx.fd = bpf_map__fd(skel->maps.htab); + ctx.loop = 1000; + ctx.stop = false; + + nr = 4; + tids = calloc(nr, sizeof(*tids)); + if (!ASSERT_NEQ(tids, NULL, "no mem")) + goto out; + + for (i = 0; i < nr; i++) { + err = pthread_create(&tids[i], NULL, htab_update_thread, &ctx); + if (!ASSERT_OK(err, "pthread_create")) { + unsigned int j; + + ctx.stop = true; + for (j = 0; j < i; j++) + pthread_join(tids[j], NULL); + goto out; + } + } + + for (i = 0; i < nr; i++) { + void *thread_err = NULL; + + pthread_join(tids[i], &thread_err); + ASSERT_EQ(thread_err, NULL, "update error"); + } + +out: + if (tids) + free(tids); + htab_update__destroy(skel); +} + +void test_htab_update(void) +{ + if (test__start_subtest("reenter_update")) + test_reenter_update(); + if (test__start_subtest("concurrent_update")) + test_concurrent_update(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/inner_array_lookup.c b/tools/testing/selftests/bpf/prog_tests/inner_array_lookup.c new file mode 100644 index 000000000000..9ab4cd195108 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/inner_array_lookup.c @@ -0,0 +1,31 @@ +// SPDX-License-Identifier: GPL-2.0-only + +#include <test_progs.h> + +#include "inner_array_lookup.skel.h" + +void test_inner_array_lookup(void) +{ + int map1_fd, err; + int key = 3; + int val = 1; + struct inner_array_lookup *skel; + + skel = inner_array_lookup__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_load_skeleton")) + return; + + err = inner_array_lookup__attach(skel); + if (!ASSERT_OK(err, "skeleton_attach")) + goto cleanup; + + map1_fd = bpf_map__fd(skel->maps.inner_map1); + bpf_map_update_elem(map1_fd, &key, &val, 0); + + /* Probe should have set the element at index 3 to 2 */ + bpf_map_lookup_elem(map1_fd, &key, &val); + ASSERT_EQ(val, 2, "value_is_2"); + +cleanup: + inner_array_lookup__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/ip_check_defrag.c b/tools/testing/selftests/bpf/prog_tests/ip_check_defrag.c new file mode 100644 index 000000000000..284764e7179f --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/ip_check_defrag.c @@ -0,0 +1,285 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <net/if.h> +#include <linux/netfilter.h> +#include <network_helpers.h> +#include "ip_check_defrag.skel.h" +#include "ip_check_defrag_frags.h" + +/* + * This selftest spins up a client and an echo server, each in their own + * network namespace. The client will send a fragmented message to the server. + * The prog attached to the server will shoot down any fragments. Thus, if + * the server is able to correctly echo back the message to the client, we will + * have verified that netfilter is reassembling packets for us. + * + * Topology: + * ========= + * NS0 | NS1 + * | + * client | server + * ---------- | ---------- + * | veth0 | --------- | veth1 | + * ---------- peer ---------- + * | + * | with bpf + */ + +#define NS0 "defrag_ns0" +#define NS1 "defrag_ns1" +#define VETH0 "veth0" +#define VETH1 "veth1" +#define VETH0_ADDR "172.16.1.100" +#define VETH0_ADDR6 "fc00::100" +/* The following constants must stay in sync with `generate_udp_fragments.py` */ +#define VETH1_ADDR "172.16.1.200" +#define VETH1_ADDR6 "fc00::200" +#define CLIENT_PORT 48878 +#define SERVER_PORT 48879 +#define MAGIC_MESSAGE "THIS IS THE ORIGINAL MESSAGE, PLEASE REASSEMBLE ME" + +static int setup_topology(bool ipv6) +{ + bool up; + int i; + + SYS(fail, "ip netns add " NS0); + SYS(fail, "ip netns add " NS1); + SYS(fail, "ip link add " VETH0 " netns " NS0 " type veth peer name " VETH1 " netns " NS1); + if (ipv6) { + SYS(fail, "ip -6 -net " NS0 " addr add " VETH0_ADDR6 "/64 dev " VETH0 " nodad"); + SYS(fail, "ip -6 -net " NS1 " addr add " VETH1_ADDR6 "/64 dev " VETH1 " nodad"); + } else { + SYS(fail, "ip -net " NS0 " addr add " VETH0_ADDR "/24 dev " VETH0); + SYS(fail, "ip -net " NS1 " addr add " VETH1_ADDR "/24 dev " VETH1); + } + SYS(fail, "ip -net " NS0 " link set dev " VETH0 " up"); + SYS(fail, "ip -net " NS1 " link set dev " VETH1 " up"); + + /* Wait for up to 5s for links to come up */ + for (i = 0; i < 5; ++i) { + if (ipv6) + up = !SYS_NOFAIL("ip netns exec " NS0 " ping -6 -c 1 -W 1 " VETH1_ADDR6); + else + up = !SYS_NOFAIL("ip netns exec " NS0 " ping -c 1 -W 1 " VETH1_ADDR); + + if (up) + break; + } + + return 0; +fail: + return -1; +} + +static void cleanup_topology(void) +{ + SYS_NOFAIL("test -f /var/run/netns/" NS0 " && ip netns delete " NS0); + SYS_NOFAIL("test -f /var/run/netns/" NS1 " && ip netns delete " NS1); +} + +static int attach(struct ip_check_defrag *skel, bool ipv6) +{ + LIBBPF_OPTS(bpf_netfilter_opts, opts, + .pf = ipv6 ? NFPROTO_IPV6 : NFPROTO_IPV4, + .priority = 42, + .flags = BPF_F_NETFILTER_IP_DEFRAG); + struct nstoken *nstoken; + int err = -1; + + nstoken = open_netns(NS1); + if (!ASSERT_OK_PTR(nstoken, "setns")) + goto out; + + skel->links.defrag = bpf_program__attach_netfilter(skel->progs.defrag, &opts); + if (!ASSERT_OK_PTR(skel->links.defrag, "program attach")) + goto out; + + err = 0; +out: + close_netns(nstoken); + return err; +} + +static int send_frags(int client) +{ + struct sockaddr_storage saddr; + struct sockaddr *saddr_p; + socklen_t saddr_len; + int err; + + saddr_p = (struct sockaddr *)&saddr; + err = make_sockaddr(AF_INET, VETH1_ADDR, SERVER_PORT, &saddr, &saddr_len); + if (!ASSERT_OK(err, "make_sockaddr")) + return -1; + + err = sendto(client, frag_0, sizeof(frag_0), 0, saddr_p, saddr_len); + if (!ASSERT_GE(err, 0, "sendto frag_0")) + return -1; + + err = sendto(client, frag_1, sizeof(frag_1), 0, saddr_p, saddr_len); + if (!ASSERT_GE(err, 0, "sendto frag_1")) + return -1; + + err = sendto(client, frag_2, sizeof(frag_2), 0, saddr_p, saddr_len); + if (!ASSERT_GE(err, 0, "sendto frag_2")) + return -1; + + return 0; +} + +static int send_frags6(int client) +{ + struct sockaddr_storage saddr; + struct sockaddr *saddr_p; + socklen_t saddr_len; + int err; + + saddr_p = (struct sockaddr *)&saddr; + /* Port needs to be set to 0 for raw ipv6 socket for some reason */ + err = make_sockaddr(AF_INET6, VETH1_ADDR6, 0, &saddr, &saddr_len); + if (!ASSERT_OK(err, "make_sockaddr")) + return -1; + + err = sendto(client, frag6_0, sizeof(frag6_0), 0, saddr_p, saddr_len); + if (!ASSERT_GE(err, 0, "sendto frag6_0")) + return -1; + + err = sendto(client, frag6_1, sizeof(frag6_1), 0, saddr_p, saddr_len); + if (!ASSERT_GE(err, 0, "sendto frag6_1")) + return -1; + + err = sendto(client, frag6_2, sizeof(frag6_2), 0, saddr_p, saddr_len); + if (!ASSERT_GE(err, 0, "sendto frag6_2")) + return -1; + + return 0; +} + +void test_bpf_ip_check_defrag_ok(bool ipv6) +{ + struct network_helper_opts rx_opts = { + .timeout_ms = 1000, + .noconnect = true, + }; + struct network_helper_opts tx_ops = { + .timeout_ms = 1000, + .type = SOCK_RAW, + .proto = IPPROTO_RAW, + .noconnect = true, + }; + struct sockaddr_storage caddr; + struct ip_check_defrag *skel; + struct nstoken *nstoken; + int client_tx_fd = -1; + int client_rx_fd = -1; + socklen_t caddr_len; + int srv_fd = -1; + char buf[1024]; + int len, err; + + skel = ip_check_defrag__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + if (!ASSERT_OK(setup_topology(ipv6), "setup_topology")) + goto out; + + if (!ASSERT_OK(attach(skel, ipv6), "attach")) + goto out; + + /* Start server in ns1 */ + nstoken = open_netns(NS1); + if (!ASSERT_OK_PTR(nstoken, "setns ns1")) + goto out; + srv_fd = start_server(ipv6 ? AF_INET6 : AF_INET, SOCK_DGRAM, NULL, SERVER_PORT, 0); + close_netns(nstoken); + if (!ASSERT_GE(srv_fd, 0, "start_server")) + goto out; + + /* Open tx raw socket in ns0 */ + nstoken = open_netns(NS0); + if (!ASSERT_OK_PTR(nstoken, "setns ns0")) + goto out; + client_tx_fd = connect_to_fd_opts(srv_fd, &tx_ops); + close_netns(nstoken); + if (!ASSERT_GE(client_tx_fd, 0, "connect_to_fd_opts")) + goto out; + + /* Open rx socket in ns0 */ + nstoken = open_netns(NS0); + if (!ASSERT_OK_PTR(nstoken, "setns ns0")) + goto out; + client_rx_fd = connect_to_fd_opts(srv_fd, &rx_opts); + close_netns(nstoken); + if (!ASSERT_GE(client_rx_fd, 0, "connect_to_fd_opts")) + goto out; + + /* Bind rx socket to a premeditated port */ + memset(&caddr, 0, sizeof(caddr)); + nstoken = open_netns(NS0); + if (!ASSERT_OK_PTR(nstoken, "setns ns0")) + goto out; + if (ipv6) { + struct sockaddr_in6 *c = (struct sockaddr_in6 *)&caddr; + + c->sin6_family = AF_INET6; + inet_pton(AF_INET6, VETH0_ADDR6, &c->sin6_addr); + c->sin6_port = htons(CLIENT_PORT); + err = bind(client_rx_fd, (struct sockaddr *)c, sizeof(*c)); + } else { + struct sockaddr_in *c = (struct sockaddr_in *)&caddr; + + c->sin_family = AF_INET; + inet_pton(AF_INET, VETH0_ADDR, &c->sin_addr); + c->sin_port = htons(CLIENT_PORT); + err = bind(client_rx_fd, (struct sockaddr *)c, sizeof(*c)); + } + close_netns(nstoken); + if (!ASSERT_OK(err, "bind")) + goto out; + + /* Send message in fragments */ + if (ipv6) { + if (!ASSERT_OK(send_frags6(client_tx_fd), "send_frags6")) + goto out; + } else { + if (!ASSERT_OK(send_frags(client_tx_fd), "send_frags")) + goto out; + } + + if (!ASSERT_EQ(skel->bss->shootdowns, 0, "shootdowns")) + goto out; + + /* Receive reassembled msg on server and echo back to client */ + caddr_len = sizeof(caddr); + len = recvfrom(srv_fd, buf, sizeof(buf), 0, (struct sockaddr *)&caddr, &caddr_len); + if (!ASSERT_GE(len, 0, "server recvfrom")) + goto out; + len = sendto(srv_fd, buf, len, 0, (struct sockaddr *)&caddr, caddr_len); + if (!ASSERT_GE(len, 0, "server sendto")) + goto out; + + /* Expect reassembed message to be echoed back */ + len = recvfrom(client_rx_fd, buf, sizeof(buf), 0, NULL, NULL); + if (!ASSERT_EQ(len, sizeof(MAGIC_MESSAGE) - 1, "client short read")) + goto out; + +out: + if (client_rx_fd != -1) + close(client_rx_fd); + if (client_tx_fd != -1) + close(client_tx_fd); + if (srv_fd != -1) + close(srv_fd); + cleanup_topology(); + ip_check_defrag__destroy(skel); +} + +void test_bpf_ip_check_defrag(void) +{ + if (test__start_subtest("v4")) + test_bpf_ip_check_defrag_ok(false); + if (test__start_subtest("v6")) + test_bpf_ip_check_defrag_ok(true); +} diff --git a/tools/testing/selftests/bpf/prog_tests/iters.c b/tools/testing/selftests/bpf/prog_tests/iters.c new file mode 100644 index 000000000000..3c440370c1f0 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/iters.c @@ -0,0 +1,316 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <sys/syscall.h> +#include <sys/mman.h> +#include <sys/wait.h> +#include <unistd.h> +#include <malloc.h> +#include <stdlib.h> +#include <test_progs.h> +#include "cgroup_helpers.h" + +#include "iters.skel.h" +#include "iters_state_safety.skel.h" +#include "iters_looping.skel.h" +#include "iters_num.skel.h" +#include "iters_testmod_seq.skel.h" +#include "iters_task_vma.skel.h" +#include "iters_task.skel.h" +#include "iters_css_task.skel.h" +#include "iters_css.skel.h" +#include "iters_task_failure.skel.h" + +static void subtest_num_iters(void) +{ + struct iters_num *skel; + int err; + + skel = iters_num__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + err = iters_num__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + usleep(1); + iters_num__detach(skel); + +#define VALIDATE_CASE(case_name) \ + ASSERT_EQ(skel->bss->res_##case_name, \ + skel->rodata->exp_##case_name, \ + #case_name) + + VALIDATE_CASE(empty_zero); + VALIDATE_CASE(empty_int_min); + VALIDATE_CASE(empty_int_max); + VALIDATE_CASE(empty_minus_one); + + VALIDATE_CASE(simple_sum); + VALIDATE_CASE(neg_sum); + VALIDATE_CASE(very_neg_sum); + VALIDATE_CASE(neg_pos_sum); + + VALIDATE_CASE(invalid_range); + VALIDATE_CASE(max_range); + VALIDATE_CASE(e2big_range); + + VALIDATE_CASE(succ_elem_cnt); + VALIDATE_CASE(overfetched_elem_cnt); + VALIDATE_CASE(fail_elem_cnt); + +#undef VALIDATE_CASE + +cleanup: + iters_num__destroy(skel); +} + +static void subtest_testmod_seq_iters(void) +{ + struct iters_testmod_seq *skel; + int err; + + if (!env.has_testmod) { + test__skip(); + return; + } + + skel = iters_testmod_seq__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + err = iters_testmod_seq__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + usleep(1); + iters_testmod_seq__detach(skel); + +#define VALIDATE_CASE(case_name) \ + ASSERT_EQ(skel->bss->res_##case_name, \ + skel->rodata->exp_##case_name, \ + #case_name) + + VALIDATE_CASE(empty); + VALIDATE_CASE(full); + VALIDATE_CASE(truncated); + +#undef VALIDATE_CASE + +cleanup: + iters_testmod_seq__destroy(skel); +} + +static void subtest_task_vma_iters(void) +{ + unsigned long start, end, bpf_iter_start, bpf_iter_end; + struct iters_task_vma *skel; + char rest_of_line[1000]; + unsigned int seen; + FILE *f = NULL; + int err; + + skel = iters_task_vma__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + skel->bss->target_pid = getpid(); + + err = iters_task_vma__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + getpgid(skel->bss->target_pid); + iters_task_vma__detach(skel); + + if (!ASSERT_GT(skel->bss->vmas_seen, 0, "vmas_seen_gt_zero")) + goto cleanup; + + f = fopen("/proc/self/maps", "r"); + if (!ASSERT_OK_PTR(f, "proc_maps_fopen")) + goto cleanup; + + seen = 0; + while (fscanf(f, "%lx-%lx %[^\n]\n", &start, &end, rest_of_line) == 3) { + /* [vsyscall] vma isn't _really_ part of task->mm vmas. + * /proc/PID/maps returns it when out of vmas - see get_gate_vma + * calls in fs/proc/task_mmu.c + */ + if (strstr(rest_of_line, "[vsyscall]")) + continue; + + bpf_iter_start = skel->bss->vm_ranges[seen].vm_start; + bpf_iter_end = skel->bss->vm_ranges[seen].vm_end; + + ASSERT_EQ(bpf_iter_start, start, "vma->vm_start match"); + ASSERT_EQ(bpf_iter_end, end, "vma->vm_end match"); + seen++; + } + + if (!ASSERT_EQ(skel->bss->vmas_seen, seen, "vmas_seen_eq")) + goto cleanup; + +cleanup: + if (f) + fclose(f); + iters_task_vma__destroy(skel); +} + +static pthread_mutex_t do_nothing_mutex; + +static void *do_nothing_wait(void *arg) +{ + pthread_mutex_lock(&do_nothing_mutex); + pthread_mutex_unlock(&do_nothing_mutex); + + pthread_exit(arg); +} + +#define thread_num 2 + +static void subtest_task_iters(void) +{ + struct iters_task *skel = NULL; + pthread_t thread_ids[thread_num]; + void *ret; + int err; + + skel = iters_task__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + goto cleanup; + skel->bss->target_pid = getpid(); + err = iters_task__attach(skel); + if (!ASSERT_OK(err, "iters_task__attach")) + goto cleanup; + pthread_mutex_lock(&do_nothing_mutex); + for (int i = 0; i < thread_num; i++) + ASSERT_OK(pthread_create(&thread_ids[i], NULL, &do_nothing_wait, NULL), + "pthread_create"); + + syscall(SYS_getpgid); + iters_task__detach(skel); + ASSERT_EQ(skel->bss->procs_cnt, 1, "procs_cnt"); + ASSERT_EQ(skel->bss->threads_cnt, thread_num + 1, "threads_cnt"); + ASSERT_EQ(skel->bss->proc_threads_cnt, thread_num + 1, "proc_threads_cnt"); + ASSERT_EQ(skel->bss->invalid_cnt, 0, "invalid_cnt"); + pthread_mutex_unlock(&do_nothing_mutex); + for (int i = 0; i < thread_num; i++) + ASSERT_OK(pthread_join(thread_ids[i], &ret), "pthread_join"); +cleanup: + iters_task__destroy(skel); +} + +extern int stack_mprotect(void); + +static void subtest_css_task_iters(void) +{ + struct iters_css_task *skel = NULL; + int err, cg_fd, cg_id; + const char *cgrp_path = "/cg1"; + + err = setup_cgroup_environment(); + if (!ASSERT_OK(err, "setup_cgroup_environment")) + goto cleanup; + cg_fd = create_and_get_cgroup(cgrp_path); + if (!ASSERT_GE(cg_fd, 0, "create_and_get_cgroup")) + goto cleanup; + cg_id = get_cgroup_id(cgrp_path); + err = join_cgroup(cgrp_path); + if (!ASSERT_OK(err, "join_cgroup")) + goto cleanup; + + skel = iters_css_task__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + goto cleanup; + + skel->bss->target_pid = getpid(); + skel->bss->cg_id = cg_id; + err = iters_css_task__attach(skel); + if (!ASSERT_OK(err, "iters_task__attach")) + goto cleanup; + err = stack_mprotect(); + if (!ASSERT_EQ(err, -1, "stack_mprotect") || + !ASSERT_EQ(errno, EPERM, "stack_mprotect")) + goto cleanup; + iters_css_task__detach(skel); + ASSERT_EQ(skel->bss->css_task_cnt, 1, "css_task_cnt"); + +cleanup: + cleanup_cgroup_environment(); + iters_css_task__destroy(skel); +} + +static void subtest_css_iters(void) +{ + struct iters_css *skel = NULL; + struct { + const char *path; + int fd; + } cgs[] = { + { "/cg1" }, + { "/cg1/cg2" }, + { "/cg1/cg2/cg3" }, + { "/cg1/cg2/cg3/cg4" }, + }; + int err, cg_nr = ARRAY_SIZE(cgs); + int i; + + err = setup_cgroup_environment(); + if (!ASSERT_OK(err, "setup_cgroup_environment")) + goto cleanup; + for (i = 0; i < cg_nr; i++) { + cgs[i].fd = create_and_get_cgroup(cgs[i].path); + if (!ASSERT_GE(cgs[i].fd, 0, "create_and_get_cgroup")) + goto cleanup; + } + + skel = iters_css__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + goto cleanup; + + skel->bss->target_pid = getpid(); + skel->bss->root_cg_id = get_cgroup_id(cgs[0].path); + skel->bss->leaf_cg_id = get_cgroup_id(cgs[cg_nr - 1].path); + err = iters_css__attach(skel); + + if (!ASSERT_OK(err, "iters_task__attach")) + goto cleanup; + + syscall(SYS_getpgid); + ASSERT_EQ(skel->bss->pre_order_cnt, cg_nr, "pre_order_cnt"); + ASSERT_EQ(skel->bss->first_cg_id, get_cgroup_id(cgs[0].path), "first_cg_id"); + + ASSERT_EQ(skel->bss->post_order_cnt, cg_nr, "post_order_cnt"); + ASSERT_EQ(skel->bss->last_cg_id, get_cgroup_id(cgs[0].path), "last_cg_id"); + ASSERT_EQ(skel->bss->tree_high, cg_nr - 1, "tree_high"); + iters_css__detach(skel); +cleanup: + cleanup_cgroup_environment(); + iters_css__destroy(skel); +} + +void test_iters(void) +{ + RUN_TESTS(iters_state_safety); + RUN_TESTS(iters_looping); + RUN_TESTS(iters); + RUN_TESTS(iters_css_task); + + if (env.has_testmod) + RUN_TESTS(iters_testmod_seq); + + if (test__start_subtest("num")) + subtest_num_iters(); + if (test__start_subtest("testmod_seq")) + subtest_testmod_seq_iters(); + if (test__start_subtest("task_vma")) + subtest_task_vma_iters(); + if (test__start_subtest("task")) + subtest_task_iters(); + if (test__start_subtest("css_task")) + subtest_css_task_iters(); + if (test__start_subtest("css")) + subtest_css_iters(); + RUN_TESTS(iters_task_failure); +} diff --git a/tools/testing/selftests/bpf/prog_tests/jeq_infer_not_null.c b/tools/testing/selftests/bpf/prog_tests/jeq_infer_not_null.c new file mode 100644 index 000000000000..3add34df5767 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/jeq_infer_not_null.c @@ -0,0 +1,9 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include "jeq_infer_not_null_fail.skel.h" + +void test_jeq_infer_not_null(void) +{ + RUN_TESTS(jeq_infer_not_null_fail); +} diff --git a/tools/testing/selftests/bpf/prog_tests/jit_probe_mem.c b/tools/testing/selftests/bpf/prog_tests/jit_probe_mem.c new file mode 100644 index 000000000000..5639428607e6 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/jit_probe_mem.c @@ -0,0 +1,28 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include <network_helpers.h> + +#include "jit_probe_mem.skel.h" + +void test_jit_probe_mem(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct jit_probe_mem *skel; + int ret; + + skel = jit_probe_mem__open_and_load(); + if (!ASSERT_OK_PTR(skel, "jit_probe_mem__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_jit_probe_mem), &opts); + ASSERT_OK(ret, "jit_probe_mem ret"); + ASSERT_OK(opts.retval, "jit_probe_mem opts.retval"); + ASSERT_EQ(skel->data->total_sum, 192, "jit_probe_mem total_sum"); + + jit_probe_mem__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/kfree_skb.c b/tools/testing/selftests/bpf/prog_tests/kfree_skb.c index 42c3a3103c26..c07991544a78 100644 --- a/tools/testing/selftests/bpf/prog_tests/kfree_skb.c +++ b/tools/testing/selftests/bpf/prog_tests/kfree_skb.c @@ -1,6 +1,7 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> #include <network_helpers.h> +#include "kfree_skb.skel.h" struct meta { int ifindex; @@ -35,7 +36,7 @@ static void on_sample(void *ctx, int cpu, void *data, __u32 size) "cb32_0 %x != %x\n", meta->cb32_0, cb.cb32[0])) return; - if (CHECK(pkt_v6->eth.h_proto != 0xdd86, "check_eth", + if (CHECK(pkt_v6->eth.h_proto != htons(ETH_P_IPV6), "check_eth", "h_proto %x\n", pkt_v6->eth.h_proto)) return; if (CHECK(pkt_v6->iph.nexthdr != 6, "check_ip", @@ -48,83 +49,60 @@ static void on_sample(void *ctx, int cpu, void *data, __u32 size) *(bool *)ctx = true; } -void test_kfree_skb(void) +/* TODO: fix kernel panic caused by this test in parallel mode */ +void serial_test_kfree_skb(void) { struct __sk_buff skb = {}; - struct bpf_prog_test_run_attr tattr = { + LIBBPF_OPTS(bpf_test_run_opts, topts, .data_in = &pkt_v6, .data_size_in = sizeof(pkt_v6), .ctx_in = &skb, .ctx_size_in = sizeof(skb), - }; - struct bpf_prog_load_attr attr = { - .file = "./kfree_skb.o", - }; - - struct bpf_link *link = NULL, *link_fentry = NULL, *link_fexit = NULL; - struct bpf_map *perf_buf_map, *global_data; - struct bpf_program *prog, *fentry, *fexit; - struct bpf_object *obj, *obj2 = NULL; - struct perf_buffer_opts pb_opts = {}; + ); + struct kfree_skb *skel = NULL; + struct bpf_link *link; + struct bpf_object *obj; struct perf_buffer *pb = NULL; - int err, kfree_skb_fd; + int err, prog_fd; bool passed = false; __u32 duration = 0; const int zero = 0; bool test_ok[2]; - err = bpf_prog_load("./test_pkt_access.o", BPF_PROG_TYPE_SCHED_CLS, - &obj, &tattr.prog_fd); + err = bpf_prog_test_load("./test_pkt_access.bpf.o", BPF_PROG_TYPE_SCHED_CLS, + &obj, &prog_fd); if (CHECK(err, "prog_load sched cls", "err %d errno %d\n", err, errno)) return; - err = bpf_prog_load_xattr(&attr, &obj2, &kfree_skb_fd); - if (CHECK(err, "prog_load raw tp", "err %d errno %d\n", err, errno)) + skel = kfree_skb__open_and_load(); + if (!ASSERT_OK_PTR(skel, "kfree_skb_skel")) goto close_prog; - prog = bpf_object__find_program_by_title(obj2, "tp_btf/kfree_skb"); - if (CHECK(!prog, "find_prog", "prog kfree_skb not found\n")) - goto close_prog; - fentry = bpf_object__find_program_by_title(obj2, "fentry/eth_type_trans"); - if (CHECK(!fentry, "find_prog", "prog eth_type_trans not found\n")) - goto close_prog; - fexit = bpf_object__find_program_by_title(obj2, "fexit/eth_type_trans"); - if (CHECK(!fexit, "find_prog", "prog eth_type_trans not found\n")) - goto close_prog; - - global_data = bpf_object__find_map_by_name(obj2, "kfree_sk.bss"); - if (CHECK(!global_data, "find global data", "not found\n")) + link = bpf_program__attach_raw_tracepoint(skel->progs.trace_kfree_skb, NULL); + if (!ASSERT_OK_PTR(link, "attach_raw_tp")) goto close_prog; + skel->links.trace_kfree_skb = link; - link = bpf_program__attach_raw_tracepoint(prog, NULL); - if (CHECK(IS_ERR(link), "attach_raw_tp", "err %ld\n", PTR_ERR(link))) - goto close_prog; - link_fentry = bpf_program__attach_trace(fentry); - if (CHECK(IS_ERR(link_fentry), "attach fentry", "err %ld\n", - PTR_ERR(link_fentry))) - goto close_prog; - link_fexit = bpf_program__attach_trace(fexit); - if (CHECK(IS_ERR(link_fexit), "attach fexit", "err %ld\n", - PTR_ERR(link_fexit))) + link = bpf_program__attach_trace(skel->progs.fentry_eth_type_trans); + if (!ASSERT_OK_PTR(link, "attach fentry")) goto close_prog; + skel->links.fentry_eth_type_trans = link; - perf_buf_map = bpf_object__find_map_by_name(obj2, "perf_buf_map"); - if (CHECK(!perf_buf_map, "find_perf_buf_map", "not found\n")) + link = bpf_program__attach_trace(skel->progs.fexit_eth_type_trans); + if (!ASSERT_OK_PTR(link, "attach fexit")) goto close_prog; + skel->links.fexit_eth_type_trans = link; /* set up perf buffer */ - pb_opts.sample_cb = on_sample; - pb_opts.ctx = &passed; - pb = perf_buffer__new(bpf_map__fd(perf_buf_map), 1, &pb_opts); - if (CHECK(IS_ERR(pb), "perf_buf__new", "err %ld\n", PTR_ERR(pb))) + pb = perf_buffer__new(bpf_map__fd(skel->maps.perf_buf_map), 1, + on_sample, NULL, &passed, NULL); + if (!ASSERT_OK_PTR(pb, "perf_buf__new")) goto close_prog; memcpy(skb.cb, &cb, sizeof(cb)); - err = bpf_prog_test_run_xattr(&tattr); - duration = tattr.duration; - CHECK(err || tattr.retval, "ipv6", - "err %d errno %d retval %d duration %d\n", - err, errno, tattr.retval, duration); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "ipv6 test_run"); + ASSERT_OK(topts.retval, "ipv6 test_run retval"); /* read perf buffer */ err = perf_buffer__poll(pb, 100); @@ -134,9 +112,9 @@ void test_kfree_skb(void) /* make sure kfree_skb program was triggered * and it sent expected skb into ring buffer */ - CHECK_FAIL(!passed); + ASSERT_TRUE(passed, "passed"); - err = bpf_map_lookup_elem(bpf_map__fd(global_data), &zero, test_ok); + err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.bss), &zero, test_ok); if (CHECK(err, "get_result", "failed to get output data: %d\n", err)) goto close_prog; @@ -144,12 +122,6 @@ void test_kfree_skb(void) CHECK_FAIL(!test_ok[0] || !test_ok[1]); close_prog: perf_buffer__free(pb); - if (!IS_ERR_OR_NULL(link)) - bpf_link__destroy(link); - if (!IS_ERR_OR_NULL(link_fentry)) - bpf_link__destroy(link_fentry); - if (!IS_ERR_OR_NULL(link_fexit)) - bpf_link__destroy(link_fexit); bpf_object__close(obj); - bpf_object__close(obj2); + kfree_skb__destroy(skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/kfunc_call.c b/tools/testing/selftests/bpf/prog_tests/kfunc_call.c new file mode 100644 index 000000000000..2eb71559713c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/kfunc_call.c @@ -0,0 +1,322 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include <network_helpers.h> +#include "kfunc_call_fail.skel.h" +#include "kfunc_call_test.skel.h" +#include "kfunc_call_test.lskel.h" +#include "kfunc_call_test_subprog.skel.h" +#include "kfunc_call_test_subprog.lskel.h" +#include "kfunc_call_destructive.skel.h" + +#include "cap_helpers.h" + +static size_t log_buf_sz = 1048576; /* 1 MB */ +static char obj_log_buf[1048576]; + +enum kfunc_test_type { + tc_test = 0, + syscall_test, + syscall_null_ctx_test, +}; + +struct kfunc_test_params { + const char *prog_name; + unsigned long lskel_prog_desc_offset; + int retval; + enum kfunc_test_type test_type; + const char *expected_err_msg; +}; + +#define __BPF_TEST_SUCCESS(name, __retval, type) \ + { \ + .prog_name = #name, \ + .lskel_prog_desc_offset = offsetof(struct kfunc_call_test_lskel, progs.name), \ + .retval = __retval, \ + .test_type = type, \ + .expected_err_msg = NULL, \ + } + +#define __BPF_TEST_FAIL(name, __retval, type, error_msg) \ + { \ + .prog_name = #name, \ + .lskel_prog_desc_offset = 0 /* unused when test is failing */, \ + .retval = __retval, \ + .test_type = type, \ + .expected_err_msg = error_msg, \ + } + +#define TC_TEST(name, retval) __BPF_TEST_SUCCESS(name, retval, tc_test) +#define SYSCALL_TEST(name, retval) __BPF_TEST_SUCCESS(name, retval, syscall_test) +#define SYSCALL_NULL_CTX_TEST(name, retval) __BPF_TEST_SUCCESS(name, retval, syscall_null_ctx_test) + +#define TC_FAIL(name, retval, error_msg) __BPF_TEST_FAIL(name, retval, tc_test, error_msg) +#define SYSCALL_NULL_CTX_FAIL(name, retval, error_msg) \ + __BPF_TEST_FAIL(name, retval, syscall_null_ctx_test, error_msg) + +static struct kfunc_test_params kfunc_tests[] = { + /* failure cases: + * if retval is 0 -> the program will fail to load and the error message is an error + * if retval is not 0 -> the program can be loaded but running it will gives the + * provided return value. The error message is thus the one + * from a successful load + */ + SYSCALL_NULL_CTX_FAIL(kfunc_syscall_test_fail, -EINVAL, "processed 4 insns"), + SYSCALL_NULL_CTX_FAIL(kfunc_syscall_test_null_fail, -EINVAL, "processed 4 insns"), + TC_FAIL(kfunc_call_test_get_mem_fail_rdonly, 0, "R0 cannot write into rdonly_mem"), + TC_FAIL(kfunc_call_test_get_mem_fail_use_after_free, 0, "invalid mem access 'scalar'"), + TC_FAIL(kfunc_call_test_get_mem_fail_oob, 0, "min value is outside of the allowed memory range"), + TC_FAIL(kfunc_call_test_get_mem_fail_not_const, 0, "is not a const"), + TC_FAIL(kfunc_call_test_mem_acquire_fail, 0, "acquire kernel function does not return PTR_TO_BTF_ID"), + + /* success cases */ + TC_TEST(kfunc_call_test1, 12), + TC_TEST(kfunc_call_test2, 3), + TC_TEST(kfunc_call_test4, -1234), + TC_TEST(kfunc_call_test_ref_btf_id, 0), + TC_TEST(kfunc_call_test_get_mem, 42), + SYSCALL_TEST(kfunc_syscall_test, 0), + SYSCALL_NULL_CTX_TEST(kfunc_syscall_test_null, 0), + TC_TEST(kfunc_call_test_static_unused_arg, 0), +}; + +struct syscall_test_args { + __u8 data[16]; + size_t size; +}; + +static void verify_success(struct kfunc_test_params *param) +{ + struct kfunc_call_test_lskel *lskel = NULL; + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct bpf_prog_desc *lskel_prog; + struct kfunc_call_test *skel; + struct bpf_program *prog; + int prog_fd, err; + struct syscall_test_args args = { + .size = 10, + }; + + switch (param->test_type) { + case syscall_test: + topts.ctx_in = &args; + topts.ctx_size_in = sizeof(args); + /* fallthrough */ + case syscall_null_ctx_test: + break; + case tc_test: + topts.data_in = &pkt_v4; + topts.data_size_in = sizeof(pkt_v4); + topts.repeat = 1; + break; + } + + /* first test with normal libbpf */ + skel = kfunc_call_test__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel")) + return; + + prog = bpf_object__find_program_by_name(skel->obj, param->prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto cleanup; + + prog_fd = bpf_program__fd(prog); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, param->prog_name)) + goto cleanup; + + if (!ASSERT_EQ(topts.retval, param->retval, "retval")) + goto cleanup; + + /* second test with light skeletons */ + lskel = kfunc_call_test_lskel__open_and_load(); + if (!ASSERT_OK_PTR(lskel, "lskel")) + goto cleanup; + + lskel_prog = (struct bpf_prog_desc *)((char *)lskel + param->lskel_prog_desc_offset); + + prog_fd = lskel_prog->prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, param->prog_name)) + goto cleanup; + + ASSERT_EQ(topts.retval, param->retval, "retval"); + +cleanup: + kfunc_call_test__destroy(skel); + if (lskel) + kfunc_call_test_lskel__destroy(lskel); +} + +static void verify_fail(struct kfunc_test_params *param) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts); + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct bpf_program *prog; + struct kfunc_call_fail *skel; + int prog_fd, err; + struct syscall_test_args args = { + .size = 10, + }; + + opts.kernel_log_buf = obj_log_buf; + opts.kernel_log_size = log_buf_sz; + opts.kernel_log_level = 1; + + switch (param->test_type) { + case syscall_test: + topts.ctx_in = &args; + topts.ctx_size_in = sizeof(args); + /* fallthrough */ + case syscall_null_ctx_test: + break; + case tc_test: + topts.data_in = &pkt_v4; + topts.data_size_in = sizeof(pkt_v4); + topts.repeat = 1; + break; + } + + skel = kfunc_call_fail__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "kfunc_call_fail__open_opts")) + goto cleanup; + + prog = bpf_object__find_program_by_name(skel->obj, param->prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto cleanup; + + bpf_program__set_autoload(prog, true); + + err = kfunc_call_fail__load(skel); + if (!param->retval) { + /* the verifier is supposed to complain and refuses to load */ + if (!ASSERT_ERR(err, "unexpected load success")) + goto out_err; + + } else { + /* the program is loaded but must dynamically fail */ + if (!ASSERT_OK(err, "unexpected load error")) + goto out_err; + + prog_fd = bpf_program__fd(prog); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_EQ(err, param->retval, param->prog_name)) + goto out_err; + } + +out_err: + if (!ASSERT_OK_PTR(strstr(obj_log_buf, param->expected_err_msg), "expected_err_msg")) { + fprintf(stderr, "Expected err_msg: %s\n", param->expected_err_msg); + fprintf(stderr, "Verifier output: %s\n", obj_log_buf); + } + +cleanup: + kfunc_call_fail__destroy(skel); +} + +static void test_main(void) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(kfunc_tests); i++) { + if (!test__start_subtest(kfunc_tests[i].prog_name)) + continue; + + if (!kfunc_tests[i].expected_err_msg) + verify_success(&kfunc_tests[i]); + else + verify_fail(&kfunc_tests[i]); + } +} + +static void test_subprog(void) +{ + struct kfunc_call_test_subprog *skel; + int prog_fd, err; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + skel = kfunc_call_test_subprog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel")) + return; + + prog_fd = bpf_program__fd(skel->progs.kfunc_call_test1); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "bpf_prog_test_run(test1)"); + ASSERT_EQ(topts.retval, 10, "test1-retval"); + ASSERT_NEQ(skel->data->active_res, -1, "active_res"); + ASSERT_EQ(skel->data->sk_state_res, BPF_TCP_CLOSE, "sk_state_res"); + + kfunc_call_test_subprog__destroy(skel); +} + +static void test_subprog_lskel(void) +{ + struct kfunc_call_test_subprog_lskel *skel; + int prog_fd, err; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + skel = kfunc_call_test_subprog_lskel__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel")) + return; + + prog_fd = skel->progs.kfunc_call_test1.prog_fd; + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "bpf_prog_test_run(test1)"); + ASSERT_EQ(topts.retval, 10, "test1-retval"); + ASSERT_NEQ(skel->data->active_res, -1, "active_res"); + ASSERT_EQ(skel->data->sk_state_res, BPF_TCP_CLOSE, "sk_state_res"); + + kfunc_call_test_subprog_lskel__destroy(skel); +} + +static int test_destructive_open_and_load(void) +{ + struct kfunc_call_destructive *skel; + int err; + + skel = kfunc_call_destructive__open(); + if (!ASSERT_OK_PTR(skel, "prog_open")) + return -1; + + err = kfunc_call_destructive__load(skel); + + kfunc_call_destructive__destroy(skel); + + return err; +} + +static void test_destructive(void) +{ + __u64 save_caps = 0; + + ASSERT_OK(test_destructive_open_and_load(), "successful_load"); + + if (!ASSERT_OK(cap_disable_effective(1ULL << CAP_SYS_BOOT, &save_caps), "drop_caps")) + return; + + ASSERT_EQ(test_destructive_open_and_load(), -13, "no_caps_failure"); + + cap_enable_effective(save_caps, NULL); +} + +void test_kfunc_call(void) +{ + test_main(); + + if (test__start_subtest("subprog")) + test_subprog(); + + if (test__start_subtest("subprog_lskel")) + test_subprog_lskel(); + + if (test__start_subtest("destructive")) + test_destructive(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/kfunc_dynptr_param.c b/tools/testing/selftests/bpf/prog_tests/kfunc_dynptr_param.c new file mode 100644 index 000000000000..8cd298b78e44 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/kfunc_dynptr_param.c @@ -0,0 +1,119 @@ +// SPDX-License-Identifier: GPL-2.0 + +/* + * Copyright (c) 2022 Facebook + * Copyright (C) 2022 Huawei Technologies Duesseldorf GmbH + * + * Author: Roberto Sassu <roberto.sassu@huawei.com> + */ + +#include <test_progs.h> +#include "test_kfunc_dynptr_param.skel.h" + +static struct { + const char *prog_name; + int expected_runtime_err; +} kfunc_dynptr_tests[] = { + {"dynptr_data_null", -EBADMSG}, +}; + +static bool kfunc_not_supported; + +static int libbpf_print_cb(enum libbpf_print_level level, const char *fmt, + va_list args) +{ + if (strcmp(fmt, "libbpf: extern (func ksym) '%s': not found in kernel or module BTFs\n")) + return 0; + + if (strcmp(va_arg(args, char *), "bpf_verify_pkcs7_signature")) + return 0; + + kfunc_not_supported = true; + return 0; +} + +static bool has_pkcs7_kfunc_support(void) +{ + struct test_kfunc_dynptr_param *skel; + libbpf_print_fn_t old_print_cb; + int err; + + skel = test_kfunc_dynptr_param__open(); + if (!ASSERT_OK_PTR(skel, "test_kfunc_dynptr_param__open")) + return false; + + kfunc_not_supported = false; + + old_print_cb = libbpf_set_print(libbpf_print_cb); + err = test_kfunc_dynptr_param__load(skel); + libbpf_set_print(old_print_cb); + + if (err < 0 && kfunc_not_supported) { + fprintf(stderr, + "%s:SKIP:bpf_verify_pkcs7_signature() kfunc not supported\n", + __func__); + test_kfunc_dynptr_param__destroy(skel); + return false; + } + + test_kfunc_dynptr_param__destroy(skel); + + return true; +} + +static void verify_success(const char *prog_name, int expected_runtime_err) +{ + struct test_kfunc_dynptr_param *skel; + struct bpf_program *prog; + struct bpf_link *link; + __u32 next_id; + int err; + + skel = test_kfunc_dynptr_param__open(); + if (!ASSERT_OK_PTR(skel, "test_kfunc_dynptr_param__open")) + return; + + skel->bss->pid = getpid(); + + err = test_kfunc_dynptr_param__load(skel); + + if (!ASSERT_OK(err, "test_kfunc_dynptr_param__load")) + goto cleanup; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto cleanup; + + link = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(link, "bpf_program__attach")) + goto cleanup; + + err = bpf_prog_get_next_id(0, &next_id); + + bpf_link__destroy(link); + + if (!ASSERT_OK(err, "bpf_prog_get_next_id")) + goto cleanup; + + ASSERT_EQ(skel->bss->err, expected_runtime_err, "err"); + +cleanup: + test_kfunc_dynptr_param__destroy(skel); +} + +void test_kfunc_dynptr_param(void) +{ + int i; + + if (!has_pkcs7_kfunc_support()) + return; + + for (i = 0; i < ARRAY_SIZE(kfunc_dynptr_tests); i++) { + if (!test__start_subtest(kfunc_dynptr_tests[i].prog_name)) + continue; + + verify_success(kfunc_dynptr_tests[i].prog_name, + kfunc_dynptr_tests[i].expected_runtime_err); + } + RUN_TESTS(test_kfunc_dynptr_param); +} diff --git a/tools/testing/selftests/bpf/prog_tests/kprobe_multi_test.c b/tools/testing/selftests/bpf/prog_tests/kprobe_multi_test.c new file mode 100644 index 000000000000..960c9323d1e0 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/kprobe_multi_test.c @@ -0,0 +1,767 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "kprobe_multi.skel.h" +#include "trace_helpers.h" +#include "kprobe_multi_empty.skel.h" +#include "kprobe_multi_override.skel.h" +#include "kprobe_multi_session.skel.h" +#include "kprobe_multi_session_cookie.skel.h" +#include "bpf/libbpf_internal.h" +#include "bpf/hashmap.h" + +static void kprobe_multi_test_run(struct kprobe_multi *skel, bool test_return) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err, prog_fd; + + prog_fd = bpf_program__fd(skel->progs.trigger); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + ASSERT_EQ(skel->bss->kprobe_test1_result, 1, "kprobe_test1_result"); + ASSERT_EQ(skel->bss->kprobe_test2_result, 1, "kprobe_test2_result"); + ASSERT_EQ(skel->bss->kprobe_test3_result, 1, "kprobe_test3_result"); + ASSERT_EQ(skel->bss->kprobe_test4_result, 1, "kprobe_test4_result"); + ASSERT_EQ(skel->bss->kprobe_test5_result, 1, "kprobe_test5_result"); + ASSERT_EQ(skel->bss->kprobe_test6_result, 1, "kprobe_test6_result"); + ASSERT_EQ(skel->bss->kprobe_test7_result, 1, "kprobe_test7_result"); + ASSERT_EQ(skel->bss->kprobe_test8_result, 1, "kprobe_test8_result"); + + if (test_return) { + ASSERT_EQ(skel->bss->kretprobe_test1_result, 1, "kretprobe_test1_result"); + ASSERT_EQ(skel->bss->kretprobe_test2_result, 1, "kretprobe_test2_result"); + ASSERT_EQ(skel->bss->kretprobe_test3_result, 1, "kretprobe_test3_result"); + ASSERT_EQ(skel->bss->kretprobe_test4_result, 1, "kretprobe_test4_result"); + ASSERT_EQ(skel->bss->kretprobe_test5_result, 1, "kretprobe_test5_result"); + ASSERT_EQ(skel->bss->kretprobe_test6_result, 1, "kretprobe_test6_result"); + ASSERT_EQ(skel->bss->kretprobe_test7_result, 1, "kretprobe_test7_result"); + ASSERT_EQ(skel->bss->kretprobe_test8_result, 1, "kretprobe_test8_result"); + } +} + +static void test_skel_api(void) +{ + struct kprobe_multi *skel = NULL; + int err; + + skel = kprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "kprobe_multi__open_and_load")) + goto cleanup; + + skel->bss->pid = getpid(); + err = kprobe_multi__attach(skel); + if (!ASSERT_OK(err, "kprobe_multi__attach")) + goto cleanup; + + kprobe_multi_test_run(skel, true); + +cleanup: + kprobe_multi__destroy(skel); +} + +static void test_link_api(struct bpf_link_create_opts *opts) +{ + int prog_fd, link1_fd = -1, link2_fd = -1; + struct kprobe_multi *skel = NULL; + + skel = kprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "fentry_raw_skel_load")) + goto cleanup; + + skel->bss->pid = getpid(); + prog_fd = bpf_program__fd(skel->progs.test_kprobe); + link1_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_KPROBE_MULTI, opts); + if (!ASSERT_GE(link1_fd, 0, "link_fd")) + goto cleanup; + + opts->kprobe_multi.flags = BPF_F_KPROBE_MULTI_RETURN; + prog_fd = bpf_program__fd(skel->progs.test_kretprobe); + link2_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_KPROBE_MULTI, opts); + if (!ASSERT_GE(link2_fd, 0, "link_fd")) + goto cleanup; + + kprobe_multi_test_run(skel, true); + +cleanup: + if (link1_fd != -1) + close(link1_fd); + if (link2_fd != -1) + close(link2_fd); + kprobe_multi__destroy(skel); +} + +#define GET_ADDR(__sym, __addr) ({ \ + __addr = ksym_get_addr(__sym); \ + if (!ASSERT_NEQ(__addr, 0, "kallsyms load failed for " #__sym)) \ + return; \ +}) + +static void test_link_api_addrs(void) +{ + LIBBPF_OPTS(bpf_link_create_opts, opts); + unsigned long long addrs[8]; + + GET_ADDR("bpf_fentry_test1", addrs[0]); + GET_ADDR("bpf_fentry_test2", addrs[1]); + GET_ADDR("bpf_fentry_test3", addrs[2]); + GET_ADDR("bpf_fentry_test4", addrs[3]); + GET_ADDR("bpf_fentry_test5", addrs[4]); + GET_ADDR("bpf_fentry_test6", addrs[5]); + GET_ADDR("bpf_fentry_test7", addrs[6]); + GET_ADDR("bpf_fentry_test8", addrs[7]); + + opts.kprobe_multi.addrs = (const unsigned long*) addrs; + opts.kprobe_multi.cnt = ARRAY_SIZE(addrs); + test_link_api(&opts); +} + +static void test_link_api_syms(void) +{ + LIBBPF_OPTS(bpf_link_create_opts, opts); + const char *syms[8] = { + "bpf_fentry_test1", + "bpf_fentry_test2", + "bpf_fentry_test3", + "bpf_fentry_test4", + "bpf_fentry_test5", + "bpf_fentry_test6", + "bpf_fentry_test7", + "bpf_fentry_test8", + }; + + opts.kprobe_multi.syms = syms; + opts.kprobe_multi.cnt = ARRAY_SIZE(syms); + test_link_api(&opts); +} + +static void +test_attach_api(const char *pattern, struct bpf_kprobe_multi_opts *opts) +{ + struct bpf_link *link1 = NULL, *link2 = NULL; + struct kprobe_multi *skel = NULL; + + skel = kprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "fentry_raw_skel_load")) + goto cleanup; + + skel->bss->pid = getpid(); + link1 = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe_manual, + pattern, opts); + if (!ASSERT_OK_PTR(link1, "bpf_program__attach_kprobe_multi_opts")) + goto cleanup; + + if (opts) { + opts->retprobe = true; + link2 = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kretprobe_manual, + pattern, opts); + if (!ASSERT_OK_PTR(link2, "bpf_program__attach_kprobe_multi_opts")) + goto cleanup; + } + + kprobe_multi_test_run(skel, !!opts); + +cleanup: + bpf_link__destroy(link2); + bpf_link__destroy(link1); + kprobe_multi__destroy(skel); +} + +static void test_attach_api_pattern(void) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + + test_attach_api("bpf_fentry_test*", &opts); + test_attach_api("bpf_fentry_test?", NULL); +} + +static void test_attach_api_addrs(void) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + unsigned long long addrs[8]; + + GET_ADDR("bpf_fentry_test1", addrs[0]); + GET_ADDR("bpf_fentry_test2", addrs[1]); + GET_ADDR("bpf_fentry_test3", addrs[2]); + GET_ADDR("bpf_fentry_test4", addrs[3]); + GET_ADDR("bpf_fentry_test5", addrs[4]); + GET_ADDR("bpf_fentry_test6", addrs[5]); + GET_ADDR("bpf_fentry_test7", addrs[6]); + GET_ADDR("bpf_fentry_test8", addrs[7]); + + opts.addrs = (const unsigned long *) addrs; + opts.cnt = ARRAY_SIZE(addrs); + test_attach_api(NULL, &opts); +} + +static void test_attach_api_syms(void) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + const char *syms[8] = { + "bpf_fentry_test1", + "bpf_fentry_test2", + "bpf_fentry_test3", + "bpf_fentry_test4", + "bpf_fentry_test5", + "bpf_fentry_test6", + "bpf_fentry_test7", + "bpf_fentry_test8", + }; + + opts.syms = syms; + opts.cnt = ARRAY_SIZE(syms); + test_attach_api(NULL, &opts); +} + +static void test_attach_api_fails(void) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + struct kprobe_multi *skel = NULL; + struct bpf_link *link = NULL; + unsigned long long addrs[2]; + const char *syms[2] = { + "bpf_fentry_test1", + "bpf_fentry_test2", + }; + __u64 cookies[2]; + int saved_error; + + addrs[0] = ksym_get_addr("bpf_fentry_test1"); + addrs[1] = ksym_get_addr("bpf_fentry_test2"); + + if (!ASSERT_FALSE(!addrs[0] || !addrs[1], "ksym_get_addr")) + goto cleanup; + + skel = kprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "fentry_raw_skel_load")) + goto cleanup; + + skel->bss->pid = getpid(); + + /* fail_1 - pattern and opts NULL */ + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe_manual, + NULL, NULL); + saved_error = -errno; + if (!ASSERT_ERR_PTR(link, "fail_1")) + goto cleanup; + + if (!ASSERT_EQ(saved_error, -EINVAL, "fail_1_error")) + goto cleanup; + + /* fail_2 - both addrs and syms set */ + opts.addrs = (const unsigned long *) addrs; + opts.syms = syms; + opts.cnt = ARRAY_SIZE(syms); + opts.cookies = NULL; + + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe_manual, + NULL, &opts); + saved_error = -errno; + if (!ASSERT_ERR_PTR(link, "fail_2")) + goto cleanup; + + if (!ASSERT_EQ(saved_error, -EINVAL, "fail_2_error")) + goto cleanup; + + /* fail_3 - pattern and addrs set */ + opts.addrs = (const unsigned long *) addrs; + opts.syms = NULL; + opts.cnt = ARRAY_SIZE(syms); + opts.cookies = NULL; + + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe_manual, + "ksys_*", &opts); + saved_error = -errno; + if (!ASSERT_ERR_PTR(link, "fail_3")) + goto cleanup; + + if (!ASSERT_EQ(saved_error, -EINVAL, "fail_3_error")) + goto cleanup; + + /* fail_4 - pattern and cnt set */ + opts.addrs = NULL; + opts.syms = NULL; + opts.cnt = ARRAY_SIZE(syms); + opts.cookies = NULL; + + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe_manual, + "ksys_*", &opts); + saved_error = -errno; + if (!ASSERT_ERR_PTR(link, "fail_4")) + goto cleanup; + + if (!ASSERT_EQ(saved_error, -EINVAL, "fail_4_error")) + goto cleanup; + + /* fail_5 - pattern and cookies */ + opts.addrs = NULL; + opts.syms = NULL; + opts.cnt = 0; + opts.cookies = cookies; + + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe_manual, + "ksys_*", &opts); + saved_error = -errno; + if (!ASSERT_ERR_PTR(link, "fail_5")) + goto cleanup; + + if (!ASSERT_EQ(saved_error, -EINVAL, "fail_5_error")) + goto cleanup; + + /* fail_6 - abnormal cnt */ + opts.addrs = (const unsigned long *) addrs; + opts.syms = NULL; + opts.cnt = INT_MAX; + opts.cookies = NULL; + + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe_manual, + NULL, &opts); + saved_error = -errno; + if (!ASSERT_ERR_PTR(link, "fail_6")) + goto cleanup; + + if (!ASSERT_EQ(saved_error, -E2BIG, "fail_6_error")) + goto cleanup; + +cleanup: + bpf_link__destroy(link); + kprobe_multi__destroy(skel); +} + +static void test_session_skel_api(void) +{ + struct kprobe_multi_session *skel = NULL; + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct bpf_link *link = NULL; + int i, err, prog_fd; + + skel = kprobe_multi_session__open_and_load(); + if (!ASSERT_OK_PTR(skel, "kprobe_multi_session__open_and_load")) + return; + + skel->bss->pid = getpid(); + + err = kprobe_multi_session__attach(skel); + if (!ASSERT_OK(err, " kprobe_multi_session__attach")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.trigger); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + /* bpf_fentry_test1-4 trigger return probe, result is 2 */ + for (i = 0; i < 4; i++) + ASSERT_EQ(skel->bss->kprobe_session_result[i], 2, "kprobe_session_result"); + + /* bpf_fentry_test5-8 trigger only entry probe, result is 1 */ + for (i = 4; i < 8; i++) + ASSERT_EQ(skel->bss->kprobe_session_result[i], 1, "kprobe_session_result"); + +cleanup: + bpf_link__destroy(link); + kprobe_multi_session__destroy(skel); +} + +static void test_session_cookie_skel_api(void) +{ + struct kprobe_multi_session_cookie *skel = NULL; + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct bpf_link *link = NULL; + int err, prog_fd; + + skel = kprobe_multi_session_cookie__open_and_load(); + if (!ASSERT_OK_PTR(skel, "fentry_raw_skel_load")) + return; + + skel->bss->pid = getpid(); + + err = kprobe_multi_session_cookie__attach(skel); + if (!ASSERT_OK(err, " kprobe_multi_wrapper__attach")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.trigger); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + ASSERT_EQ(skel->bss->test_kprobe_1_result, 1, "test_kprobe_1_result"); + ASSERT_EQ(skel->bss->test_kprobe_2_result, 2, "test_kprobe_2_result"); + ASSERT_EQ(skel->bss->test_kprobe_3_result, 3, "test_kprobe_3_result"); + +cleanup: + bpf_link__destroy(link); + kprobe_multi_session_cookie__destroy(skel); +} + +static size_t symbol_hash(long key, void *ctx __maybe_unused) +{ + return str_hash((const char *) key); +} + +static bool symbol_equal(long key1, long key2, void *ctx __maybe_unused) +{ + return strcmp((const char *) key1, (const char *) key2) == 0; +} + +static bool is_invalid_entry(char *buf, bool kernel) +{ + if (kernel && strchr(buf, '[')) + return true; + if (!kernel && !strchr(buf, '[')) + return true; + return false; +} + +static bool skip_entry(char *name) +{ + /* + * We attach to almost all kernel functions and some of them + * will cause 'suspicious RCU usage' when fprobe is attached + * to them. Filter out the current culprits - arch_cpu_idle + * default_idle and rcu_* functions. + */ + if (!strcmp(name, "arch_cpu_idle")) + return true; + if (!strcmp(name, "default_idle")) + return true; + if (!strncmp(name, "rcu_", 4)) + return true; + if (!strcmp(name, "bpf_dispatcher_xdp_func")) + return true; + if (!strncmp(name, "__ftrace_invalid_address__", + sizeof("__ftrace_invalid_address__") - 1)) + return true; + return false; +} + +/* Do comparision by ignoring '.llvm.<hash>' suffixes. */ +static int compare_name(const char *name1, const char *name2) +{ + const char *res1, *res2; + int len1, len2; + + res1 = strstr(name1, ".llvm."); + res2 = strstr(name2, ".llvm."); + len1 = res1 ? res1 - name1 : strlen(name1); + len2 = res2 ? res2 - name2 : strlen(name2); + + if (len1 == len2) + return strncmp(name1, name2, len1); + if (len1 < len2) + return strncmp(name1, name2, len1) <= 0 ? -1 : 1; + return strncmp(name1, name2, len2) >= 0 ? 1 : -1; +} + +static int load_kallsyms_compare(const void *p1, const void *p2) +{ + return compare_name(((const struct ksym *)p1)->name, ((const struct ksym *)p2)->name); +} + +static int search_kallsyms_compare(const void *p1, const struct ksym *p2) +{ + return compare_name(p1, p2->name); +} + +static int get_syms(char ***symsp, size_t *cntp, bool kernel) +{ + size_t cap = 0, cnt = 0; + char *name = NULL, *ksym_name, **syms = NULL; + struct hashmap *map; + struct ksyms *ksyms; + struct ksym *ks; + char buf[256]; + FILE *f; + int err = 0; + + ksyms = load_kallsyms_custom_local(load_kallsyms_compare); + if (!ASSERT_OK_PTR(ksyms, "load_kallsyms_custom_local")) + return -EINVAL; + + /* + * The available_filter_functions contains many duplicates, + * but other than that all symbols are usable in kprobe multi + * interface. + * Filtering out duplicates by using hashmap__add, which won't + * add existing entry. + */ + + if (access("/sys/kernel/tracing/trace", F_OK) == 0) + f = fopen("/sys/kernel/tracing/available_filter_functions", "r"); + else + f = fopen("/sys/kernel/debug/tracing/available_filter_functions", "r"); + + if (!f) + return -EINVAL; + + map = hashmap__new(symbol_hash, symbol_equal, NULL); + if (IS_ERR(map)) { + err = libbpf_get_error(map); + goto error; + } + + while (fgets(buf, sizeof(buf), f)) { + if (is_invalid_entry(buf, kernel)) + continue; + + free(name); + if (sscanf(buf, "%ms$*[^\n]\n", &name) != 1) + continue; + if (skip_entry(name)) + continue; + + ks = search_kallsyms_custom_local(ksyms, name, search_kallsyms_compare); + if (!ks) { + err = -EINVAL; + goto error; + } + + ksym_name = ks->name; + err = hashmap__add(map, ksym_name, 0); + if (err == -EEXIST) { + err = 0; + continue; + } + if (err) + goto error; + + err = libbpf_ensure_mem((void **) &syms, &cap, + sizeof(*syms), cnt + 1); + if (err) + goto error; + + syms[cnt++] = ksym_name; + } + + *symsp = syms; + *cntp = cnt; + +error: + free(name); + fclose(f); + hashmap__free(map); + if (err) + free(syms); + return err; +} + +static int get_addrs(unsigned long **addrsp, size_t *cntp, bool kernel) +{ + unsigned long *addr, *addrs, *tmp_addrs; + int err = 0, max_cnt, inc_cnt; + char *name = NULL; + size_t cnt = 0; + char buf[256]; + FILE *f; + + if (access("/sys/kernel/tracing/trace", F_OK) == 0) + f = fopen("/sys/kernel/tracing/available_filter_functions_addrs", "r"); + else + f = fopen("/sys/kernel/debug/tracing/available_filter_functions_addrs", "r"); + + if (!f) + return -ENOENT; + + /* In my local setup, the number of entries is 50k+ so Let us initially + * allocate space to hold 64k entries. If 64k is not enough, incrementally + * increase 1k each time. + */ + max_cnt = 65536; + inc_cnt = 1024; + addrs = malloc(max_cnt * sizeof(long)); + if (addrs == NULL) { + err = -ENOMEM; + goto error; + } + + while (fgets(buf, sizeof(buf), f)) { + if (is_invalid_entry(buf, kernel)) + continue; + + free(name); + if (sscanf(buf, "%p %ms$*[^\n]\n", &addr, &name) != 2) + continue; + if (skip_entry(name)) + continue; + + if (cnt == max_cnt) { + max_cnt += inc_cnt; + tmp_addrs = realloc(addrs, max_cnt); + if (!tmp_addrs) { + err = -ENOMEM; + goto error; + } + addrs = tmp_addrs; + } + + addrs[cnt++] = (unsigned long)addr; + } + + *addrsp = addrs; + *cntp = cnt; + +error: + free(name); + fclose(f); + if (err) + free(addrs); + return err; +} + +static void do_bench_test(struct kprobe_multi_empty *skel, struct bpf_kprobe_multi_opts *opts) +{ + long attach_start_ns, attach_end_ns; + long detach_start_ns, detach_end_ns; + double attach_delta, detach_delta; + struct bpf_link *link = NULL; + + attach_start_ns = get_time_ns(); + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_kprobe_empty, + NULL, opts); + attach_end_ns = get_time_ns(); + + if (!ASSERT_OK_PTR(link, "bpf_program__attach_kprobe_multi_opts")) + return; + + detach_start_ns = get_time_ns(); + bpf_link__destroy(link); + detach_end_ns = get_time_ns(); + + attach_delta = (attach_end_ns - attach_start_ns) / 1000000000.0; + detach_delta = (detach_end_ns - detach_start_ns) / 1000000000.0; + + printf("%s: found %lu functions\n", __func__, opts->cnt); + printf("%s: attached in %7.3lfs\n", __func__, attach_delta); + printf("%s: detached in %7.3lfs\n", __func__, detach_delta); +} + +static void test_kprobe_multi_bench_attach(bool kernel) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + struct kprobe_multi_empty *skel = NULL; + char **syms = NULL; + size_t cnt = 0; + + if (!ASSERT_OK(get_syms(&syms, &cnt, kernel), "get_syms")) + return; + + skel = kprobe_multi_empty__open_and_load(); + if (!ASSERT_OK_PTR(skel, "kprobe_multi_empty__open_and_load")) + goto cleanup; + + opts.syms = (const char **) syms; + opts.cnt = cnt; + + do_bench_test(skel, &opts); + +cleanup: + kprobe_multi_empty__destroy(skel); + if (syms) + free(syms); +} + +static void test_kprobe_multi_bench_attach_addr(bool kernel) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + struct kprobe_multi_empty *skel = NULL; + unsigned long *addrs = NULL; + size_t cnt = 0; + int err; + + err = get_addrs(&addrs, &cnt, kernel); + if (err == -ENOENT) { + test__skip(); + return; + } + + if (!ASSERT_OK(err, "get_addrs")) + return; + + skel = kprobe_multi_empty__open_and_load(); + if (!ASSERT_OK_PTR(skel, "kprobe_multi_empty__open_and_load")) + goto cleanup; + + opts.addrs = addrs; + opts.cnt = cnt; + + do_bench_test(skel, &opts); + +cleanup: + kprobe_multi_empty__destroy(skel); + free(addrs); +} + +static void test_attach_override(void) +{ + struct kprobe_multi_override *skel = NULL; + struct bpf_link *link = NULL; + + skel = kprobe_multi_override__open_and_load(); + if (!ASSERT_OK_PTR(skel, "kprobe_multi_empty__open_and_load")) + goto cleanup; + + /* The test_override calls bpf_override_return so it should fail + * to attach to bpf_fentry_test1 function, which is not on error + * injection list. + */ + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_override, + "bpf_fentry_test1", NULL); + if (!ASSERT_ERR_PTR(link, "override_attached_bpf_fentry_test1")) { + bpf_link__destroy(link); + goto cleanup; + } + + /* The should_fail_bio function is on error injection list, + * attach should succeed. + */ + link = bpf_program__attach_kprobe_multi_opts(skel->progs.test_override, + "should_fail_bio", NULL); + if (!ASSERT_OK_PTR(link, "override_attached_should_fail_bio")) + goto cleanup; + + bpf_link__destroy(link); + +cleanup: + kprobe_multi_override__destroy(skel); +} + +void serial_test_kprobe_multi_bench_attach(void) +{ + if (test__start_subtest("kernel")) + test_kprobe_multi_bench_attach(true); + if (test__start_subtest("modules")) + test_kprobe_multi_bench_attach(false); + if (test__start_subtest("kernel")) + test_kprobe_multi_bench_attach_addr(true); + if (test__start_subtest("modules")) + test_kprobe_multi_bench_attach_addr(false); +} + +void test_kprobe_multi_test(void) +{ + if (!ASSERT_OK(load_kallsyms(), "load_kallsyms")) + return; + + if (test__start_subtest("skel_api")) + test_skel_api(); + if (test__start_subtest("link_api_addrs")) + test_link_api_syms(); + if (test__start_subtest("link_api_syms")) + test_link_api_addrs(); + if (test__start_subtest("attach_api_pattern")) + test_attach_api_pattern(); + if (test__start_subtest("attach_api_addrs")) + test_attach_api_addrs(); + if (test__start_subtest("attach_api_syms")) + test_attach_api_syms(); + if (test__start_subtest("attach_api_fails")) + test_attach_api_fails(); + if (test__start_subtest("attach_override")) + test_attach_override(); + if (test__start_subtest("session")) + test_session_skel_api(); + if (test__start_subtest("session_cookie")) + test_session_cookie_skel_api(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/kprobe_multi_testmod_test.c b/tools/testing/selftests/bpf/prog_tests/kprobe_multi_testmod_test.c new file mode 100644 index 000000000000..9d03528f05db --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/kprobe_multi_testmod_test.c @@ -0,0 +1,95 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "kprobe_multi.skel.h" +#include "trace_helpers.h" +#include "bpf/libbpf_internal.h" + +static struct ksyms *ksyms; + +static void kprobe_multi_testmod_check(struct kprobe_multi *skel) +{ + ASSERT_EQ(skel->bss->kprobe_testmod_test1_result, 1, "kprobe_test1_result"); + ASSERT_EQ(skel->bss->kprobe_testmod_test2_result, 1, "kprobe_test2_result"); + ASSERT_EQ(skel->bss->kprobe_testmod_test3_result, 1, "kprobe_test3_result"); + + ASSERT_EQ(skel->bss->kretprobe_testmod_test1_result, 1, "kretprobe_test1_result"); + ASSERT_EQ(skel->bss->kretprobe_testmod_test2_result, 1, "kretprobe_test2_result"); + ASSERT_EQ(skel->bss->kretprobe_testmod_test3_result, 1, "kretprobe_test3_result"); +} + +static void test_testmod_attach_api(struct bpf_kprobe_multi_opts *opts) +{ + struct kprobe_multi *skel = NULL; + + skel = kprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "fentry_raw_skel_load")) + return; + + skel->bss->pid = getpid(); + + skel->links.test_kprobe_testmod = bpf_program__attach_kprobe_multi_opts( + skel->progs.test_kprobe_testmod, + NULL, opts); + if (!skel->links.test_kprobe_testmod) + goto cleanup; + + opts->retprobe = true; + skel->links.test_kretprobe_testmod = bpf_program__attach_kprobe_multi_opts( + skel->progs.test_kretprobe_testmod, + NULL, opts); + if (!skel->links.test_kretprobe_testmod) + goto cleanup; + + ASSERT_OK(trigger_module_test_read(1), "trigger_read"); + kprobe_multi_testmod_check(skel); + +cleanup: + kprobe_multi__destroy(skel); +} + +static void test_testmod_attach_api_addrs(void) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + unsigned long long addrs[3]; + + addrs[0] = ksym_get_addr_local(ksyms, "bpf_testmod_fentry_test1"); + ASSERT_NEQ(addrs[0], 0, "ksym_get_addr_local"); + addrs[1] = ksym_get_addr_local(ksyms, "bpf_testmod_fentry_test2"); + ASSERT_NEQ(addrs[1], 0, "ksym_get_addr_local"); + addrs[2] = ksym_get_addr_local(ksyms, "bpf_testmod_fentry_test3"); + ASSERT_NEQ(addrs[2], 0, "ksym_get_addr_local"); + + opts.addrs = (const unsigned long *) addrs; + opts.cnt = ARRAY_SIZE(addrs); + + test_testmod_attach_api(&opts); +} + +static void test_testmod_attach_api_syms(void) +{ + LIBBPF_OPTS(bpf_kprobe_multi_opts, opts); + const char *syms[3] = { + "bpf_testmod_fentry_test1", + "bpf_testmod_fentry_test2", + "bpf_testmod_fentry_test3", + }; + + opts.syms = syms; + opts.cnt = ARRAY_SIZE(syms); + test_testmod_attach_api(&opts); +} + +void serial_test_kprobe_multi_testmod_test(void) +{ + ksyms = load_kallsyms_local(); + if (!ASSERT_OK_PTR(ksyms, "load_kallsyms_local")) + return; + + if (test__start_subtest("testmod_attach_api_syms")) + test_testmod_attach_api_syms(); + + if (test__start_subtest("testmod_attach_api_addrs")) + test_testmod_attach_api_addrs(); + + free_kallsyms_local(ksyms); +} diff --git a/tools/testing/selftests/bpf/prog_tests/kptr_xchg_inline.c b/tools/testing/selftests/bpf/prog_tests/kptr_xchg_inline.c new file mode 100644 index 000000000000..7def158da9eb --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/kptr_xchg_inline.c @@ -0,0 +1,52 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023. Huawei Technologies Co., Ltd */ +#include <test_progs.h> + +#include "linux/filter.h" +#include "kptr_xchg_inline.skel.h" + +void test_kptr_xchg_inline(void) +{ + struct kptr_xchg_inline *skel; + struct bpf_insn *insn = NULL; + struct bpf_insn exp; + unsigned int cnt; + int err; + +#if !(defined(__x86_64__) || defined(__aarch64__) || \ + (defined(__riscv) && __riscv_xlen == 64)) + test__skip(); + return; +#endif + + skel = kptr_xchg_inline__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_load")) + return; + + err = get_xlated_program(bpf_program__fd(skel->progs.kptr_xchg_inline), &insn, &cnt); + if (!ASSERT_OK(err, "prog insn")) + goto out; + + /* The original instructions are: + * r1 = map[id:xxx][0]+0 + * r2 = 0 + * call bpf_kptr_xchg#yyy + * + * call bpf_kptr_xchg#yyy will be inlined as: + * r0 = r2 + * r0 = atomic64_xchg((u64 *)(r1 +0), r0) + */ + if (!ASSERT_GT(cnt, 5, "insn cnt")) + goto out; + + exp = BPF_MOV64_REG(BPF_REG_0, BPF_REG_2); + if (!ASSERT_OK(memcmp(&insn[3], &exp, sizeof(exp)), "mov")) + goto out; + + exp = BPF_ATOMIC_OP(BPF_DW, BPF_XCHG, BPF_REG_1, BPF_REG_0, 0); + if (!ASSERT_OK(memcmp(&insn[4], &exp, sizeof(exp)), "xchg")) + goto out; +out: + free(insn); + kptr_xchg_inline__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/ksyms.c b/tools/testing/selftests/bpf/prog_tests/ksyms.c index e3d6777226a8..dc7aab532fb1 100644 --- a/tools/testing/selftests/bpf/prog_tests/ksyms.c +++ b/tools/testing/selftests/bpf/prog_tests/ksyms.c @@ -5,66 +5,48 @@ #include "test_ksyms.skel.h" #include <sys/stat.h> -static int duration; - -static __u64 kallsyms_find(const char *sym) -{ - char type, name[500]; - __u64 addr, res = 0; - FILE *f; - - f = fopen("/proc/kallsyms", "r"); - if (CHECK(!f, "kallsyms_fopen", "failed to open: %d\n", errno)) - return 0; - - while (fscanf(f, "%llx %c %499s%*[^\n]\n", &addr, &type, name) > 0) { - if (strcmp(name, sym) == 0) { - res = addr; - goto out; - } - } - - CHECK(false, "not_found", "symbol %s not found\n", sym); -out: - fclose(f); - return res; -} - void test_ksyms(void) { - __u64 link_fops_addr = kallsyms_find("bpf_link_fops"); const char *btf_path = "/sys/kernel/btf/vmlinux"; struct test_ksyms *skel; struct test_ksyms__data *data; + __u64 link_fops_addr, per_cpu_start_addr; struct stat st; __u64 btf_size; int err; - if (CHECK(stat(btf_path, &st), "stat_btf", "err %d\n", errno)) + err = kallsyms_find("bpf_link_fops", &link_fops_addr); + if (!ASSERT_NEQ(err, -EINVAL, "bpf_link_fops: kallsyms_fopen")) + return; + if (!ASSERT_NEQ(err, -ENOENT, "bpf_link_fops: ksym_find")) + return; + + err = kallsyms_find("__per_cpu_start", &per_cpu_start_addr); + if (!ASSERT_NEQ(err, -EINVAL, "__per_cpu_start: kallsyms_fopen")) + return; + if (!ASSERT_NEQ(err, -ENOENT, "__per_cpu_start: ksym_find")) + return; + + if (!ASSERT_OK(stat(btf_path, &st), "stat_btf")) return; btf_size = st.st_size; skel = test_ksyms__open_and_load(); - if (CHECK(!skel, "skel_open", "failed to open and load skeleton\n")) + if (!ASSERT_OK_PTR(skel, "test_ksyms__open_and_load")) return; err = test_ksyms__attach(skel); - if (CHECK(err, "skel_attach", "skeleton attach failed: %d\n", err)) + if (!ASSERT_OK(err, "test_ksyms__attach")) goto cleanup; /* trigger tracepoint */ usleep(1); data = skel->data; - CHECK(data->out__bpf_link_fops != link_fops_addr, "bpf_link_fops", - "got 0x%llx, exp 0x%llx\n", - data->out__bpf_link_fops, link_fops_addr); - CHECK(data->out__bpf_link_fops1 != 0, "bpf_link_fops1", - "got %llu, exp %llu\n", data->out__bpf_link_fops1, (__u64)0); - CHECK(data->out__btf_size != btf_size, "btf_size", - "got %llu, exp %llu\n", data->out__btf_size, btf_size); - CHECK(data->out__per_cpu_start != 0, "__per_cpu_start", - "got %llu, exp %llu\n", data->out__per_cpu_start, (__u64)0); + ASSERT_EQ(data->out__bpf_link_fops, link_fops_addr, "bpf_link_fops"); + ASSERT_EQ(data->out__bpf_link_fops1, 0, "bpf_link_fops1"); + ASSERT_EQ(data->out__btf_size, btf_size, "btf_size"); + ASSERT_EQ(data->out__per_cpu_start, per_cpu_start_addr, "__per_cpu_start"); cleanup: test_ksyms__destroy(skel); diff --git a/tools/testing/selftests/bpf/prog_tests/ksyms_btf.c b/tools/testing/selftests/bpf/prog_tests/ksyms_btf.c new file mode 100644 index 000000000000..1d7a2f1e0731 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/ksyms_btf.c @@ -0,0 +1,191 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Google */ + +#include <test_progs.h> +#include <bpf/libbpf.h> +#include <bpf/btf.h> +#include "test_ksyms_btf.skel.h" +#include "test_ksyms_btf_null_check.skel.h" +#include "test_ksyms_weak.skel.h" +#include "test_ksyms_weak.lskel.h" +#include "test_ksyms_btf_write_check.skel.h" + +static int duration; + +static void test_basic(void) +{ + __u64 runqueues_addr, bpf_prog_active_addr; + __u32 this_rq_cpu; + int this_bpf_prog_active; + struct test_ksyms_btf *skel = NULL; + struct test_ksyms_btf__data *data; + int err; + + err = kallsyms_find("runqueues", &runqueues_addr); + if (CHECK(err == -EINVAL, "kallsyms_fopen", "failed to open: %d\n", errno)) + return; + if (CHECK(err == -ENOENT, "ksym_find", "symbol 'runqueues' not found\n")) + return; + + err = kallsyms_find("bpf_prog_active", &bpf_prog_active_addr); + if (CHECK(err == -EINVAL, "kallsyms_fopen", "failed to open: %d\n", errno)) + return; + if (CHECK(err == -ENOENT, "ksym_find", "symbol 'bpf_prog_active' not found\n")) + return; + + skel = test_ksyms_btf__open_and_load(); + if (CHECK(!skel, "skel_open", "failed to open and load skeleton\n")) + goto cleanup; + + err = test_ksyms_btf__attach(skel); + if (CHECK(err, "skel_attach", "skeleton attach failed: %d\n", err)) + goto cleanup; + + /* trigger tracepoint */ + usleep(1); + + data = skel->data; + CHECK(data->out__runqueues_addr != runqueues_addr, "runqueues_addr", + "got %llu, exp %llu\n", + (unsigned long long)data->out__runqueues_addr, + (unsigned long long)runqueues_addr); + CHECK(data->out__bpf_prog_active_addr != bpf_prog_active_addr, "bpf_prog_active_addr", + "got %llu, exp %llu\n", + (unsigned long long)data->out__bpf_prog_active_addr, + (unsigned long long)bpf_prog_active_addr); + + CHECK(data->out__rq_cpu == -1, "rq_cpu", + "got %u, exp != -1\n", data->out__rq_cpu); + CHECK(data->out__bpf_prog_active < 0, "bpf_prog_active", + "got %d, exp >= 0\n", data->out__bpf_prog_active); + CHECK(data->out__cpu_0_rq_cpu != 0, "cpu_rq(0)->cpu", + "got %u, exp 0\n", data->out__cpu_0_rq_cpu); + + this_rq_cpu = data->out__this_rq_cpu; + CHECK(this_rq_cpu != data->out__rq_cpu, "this_rq_cpu", + "got %u, exp %u\n", this_rq_cpu, data->out__rq_cpu); + + this_bpf_prog_active = data->out__this_bpf_prog_active; + CHECK(this_bpf_prog_active != data->out__bpf_prog_active, "this_bpf_prog_active", + "got %d, exp %d\n", this_bpf_prog_active, + data->out__bpf_prog_active); + +cleanup: + test_ksyms_btf__destroy(skel); +} + +static void test_null_check(void) +{ + struct test_ksyms_btf_null_check *skel; + + skel = test_ksyms_btf_null_check__open_and_load(); + CHECK(skel, "skel_open", "unexpected load of a prog missing null check\n"); + + test_ksyms_btf_null_check__destroy(skel); +} + +static void test_weak_syms(void) +{ + struct test_ksyms_weak *skel; + struct test_ksyms_weak__data *data; + int err; + + skel = test_ksyms_weak__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_ksyms_weak__open_and_load")) + return; + + err = test_ksyms_weak__attach(skel); + if (!ASSERT_OK(err, "test_ksyms_weak__attach")) + goto cleanup; + + /* trigger tracepoint */ + usleep(1); + + data = skel->data; + ASSERT_EQ(data->out__existing_typed, 0, "existing typed ksym"); + ASSERT_NEQ(data->out__existing_typeless, -1, "existing typeless ksym"); + ASSERT_EQ(data->out__non_existent_typeless, 0, "nonexistent typeless ksym"); + ASSERT_EQ(data->out__non_existent_typed, 0, "nonexistent typed ksym"); + +cleanup: + test_ksyms_weak__destroy(skel); +} + +static void test_weak_syms_lskel(void) +{ + struct test_ksyms_weak_lskel *skel; + struct test_ksyms_weak_lskel__data *data; + int err; + + skel = test_ksyms_weak_lskel__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_ksyms_weak_lskel__open_and_load")) + return; + + err = test_ksyms_weak_lskel__attach(skel); + if (!ASSERT_OK(err, "test_ksyms_weak_lskel__attach")) + goto cleanup; + + /* trigger tracepoint */ + usleep(1); + + data = skel->data; + ASSERT_EQ(data->out__existing_typed, 0, "existing typed ksym"); + ASSERT_NEQ(data->out__existing_typeless, -1, "existing typeless ksym"); + ASSERT_EQ(data->out__non_existent_typeless, 0, "nonexistent typeless ksym"); + ASSERT_EQ(data->out__non_existent_typed, 0, "nonexistent typed ksym"); + +cleanup: + test_ksyms_weak_lskel__destroy(skel); +} + +static void test_write_check(bool test_handler1) +{ + struct test_ksyms_btf_write_check *skel; + + skel = test_ksyms_btf_write_check__open(); + if (!ASSERT_OK_PTR(skel, "test_ksyms_btf_write_check__open")) + return; + bpf_program__set_autoload(test_handler1 ? skel->progs.handler2 : skel->progs.handler1, false); + ASSERT_ERR(test_ksyms_btf_write_check__load(skel), + "unexpected load of a prog writing to ksym memory\n"); + + test_ksyms_btf_write_check__destroy(skel); +} + +void test_ksyms_btf(void) +{ + int percpu_datasec; + struct btf *btf; + + btf = libbpf_find_kernel_btf(); + if (!ASSERT_OK_PTR(btf, "btf_exists")) + return; + + percpu_datasec = btf__find_by_name_kind(btf, ".data..percpu", + BTF_KIND_DATASEC); + btf__free(btf); + if (percpu_datasec < 0) { + printf("%s:SKIP:no PERCPU DATASEC in kernel btf\n", + __func__); + test__skip(); + return; + } + + if (test__start_subtest("basic")) + test_basic(); + + if (test__start_subtest("null_check")) + test_null_check(); + + if (test__start_subtest("weak_ksyms")) + test_weak_syms(); + + if (test__start_subtest("weak_ksyms_lskel")) + test_weak_syms_lskel(); + + if (test__start_subtest("write_check1")) + test_write_check(true); + + if (test__start_subtest("write_check2")) + test_write_check(false); +} diff --git a/tools/testing/selftests/bpf/prog_tests/ksyms_module.c b/tools/testing/selftests/bpf/prog_tests/ksyms_module.c new file mode 100644 index 000000000000..a1ebac70ec29 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/ksyms_module.c @@ -0,0 +1,69 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> +#include <network_helpers.h> +#include "test_ksyms_module.lskel.h" +#include "test_ksyms_module.skel.h" + +static void test_ksyms_module_lskel(void) +{ + struct test_ksyms_module_lskel *skel; + int err; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + if (!env.has_testmod) { + test__skip(); + return; + } + + skel = test_ksyms_module_lskel__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_ksyms_module_lskel__open_and_load")) + return; + err = bpf_prog_test_run_opts(skel->progs.load.prog_fd, &topts); + if (!ASSERT_OK(err, "bpf_prog_test_run")) + goto cleanup; + ASSERT_EQ(topts.retval, 0, "retval"); + ASSERT_EQ(skel->bss->out_bpf_testmod_ksym, 42, "bpf_testmod_ksym"); +cleanup: + test_ksyms_module_lskel__destroy(skel); +} + +static void test_ksyms_module_libbpf(void) +{ + struct test_ksyms_module *skel; + int err; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + if (!env.has_testmod) { + test__skip(); + return; + } + + skel = test_ksyms_module__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_ksyms_module__open")) + return; + err = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.load), &topts); + if (!ASSERT_OK(err, "bpf_prog_test_run")) + goto cleanup; + ASSERT_EQ(topts.retval, 0, "retval"); + ASSERT_EQ(skel->bss->out_bpf_testmod_ksym, 42, "bpf_testmod_ksym"); +cleanup: + test_ksyms_module__destroy(skel); +} + +void test_ksyms_module(void) +{ + if (test__start_subtest("lskel")) + test_ksyms_module_lskel(); + if (test__start_subtest("libbpf")) + test_ksyms_module_libbpf(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/l4lb_all.c b/tools/testing/selftests/bpf/prog_tests/l4lb_all.c index c2d373e294bb..1eab286b14fe 100644 --- a/tools/testing/selftests/bpf/prog_tests/l4lb_all.c +++ b/tools/testing/selftests/bpf/prog_tests/l4lb_all.c @@ -23,14 +23,18 @@ static void test_l4lb(const char *file) __u8 flags; } real_def = {.dst = MAGIC_VAL}; __u32 ch_key = 11, real_num = 3; - __u32 duration, retval, size; int err, i, prog_fd, map_fd; __u64 bytes = 0, pkts = 0; struct bpf_object *obj; char buf[128]; u32 *magic = (u32 *)buf; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = NUM_ITER, + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); if (CHECK_FAIL(err)) return; @@ -49,19 +53,24 @@ static void test_l4lb(const char *file) goto out; bpf_map_update_elem(map_fd, &real_num, &real_def, 0); - err = bpf_prog_test_run(prog_fd, NUM_ITER, &pkt_v4, sizeof(pkt_v4), - buf, &size, &retval, &duration); - CHECK(err || retval != 7/*TC_ACT_REDIRECT*/ || size != 54 || - *magic != MAGIC_VAL, "ipv4", - "err %d errno %d retval %d size %d magic %x\n", - err, errno, retval, size, *magic); + topts.data_in = &pkt_v4; + topts.data_size_in = sizeof(pkt_v4); - err = bpf_prog_test_run(prog_fd, NUM_ITER, &pkt_v6, sizeof(pkt_v6), - buf, &size, &retval, &duration); - CHECK(err || retval != 7/*TC_ACT_REDIRECT*/ || size != 74 || - *magic != MAGIC_VAL, "ipv6", - "err %d errno %d retval %d size %d magic %x\n", - err, errno, retval, size, *magic); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 7 /*TC_ACT_REDIRECT*/, "ipv4 test_run retval"); + ASSERT_EQ(topts.data_size_out, 54, "ipv4 test_run data_size_out"); + ASSERT_EQ(*magic, MAGIC_VAL, "ipv4 magic"); + + topts.data_in = &pkt_v6; + topts.data_size_in = sizeof(pkt_v6); + topts.data_size_out = sizeof(buf); /* reset out size */ + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 7 /*TC_ACT_REDIRECT*/, "ipv6 test_run retval"); + ASSERT_EQ(topts.data_size_out, 74, "ipv6 test_run data_size_out"); + ASSERT_EQ(*magic, MAGIC_VAL, "ipv6 magic"); map_fd = bpf_find_map(__func__, obj, "stats"); if (map_fd < 0) @@ -80,9 +89,10 @@ out: void test_l4lb_all(void) { - const char *file1 = "./test_l4lb.o"; - const char *file2 = "./test_l4lb_noinline.o"; - - test_l4lb(file1); - test_l4lb(file2); + if (test__start_subtest("l4lb_inline")) + test_l4lb("test_l4lb.bpf.o"); + if (test__start_subtest("l4lb_noinline")) + test_l4lb("test_l4lb_noinline.bpf.o"); + if (test__start_subtest("l4lb_noinline_dynptr")) + test_l4lb("test_l4lb_noinline_dynptr.bpf.o"); } diff --git a/tools/testing/selftests/bpf/prog_tests/legacy_printk.c b/tools/testing/selftests/bpf/prog_tests/legacy_printk.c new file mode 100644 index 000000000000..ec6e45f2a644 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/legacy_printk.c @@ -0,0 +1,65 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include "test_legacy_printk.skel.h" + +static int execute_one_variant(bool legacy) +{ + struct test_legacy_printk *skel; + int err, zero = 0, my_pid = getpid(), res, map_fd; + + skel = test_legacy_printk__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return -errno; + + bpf_program__set_autoload(skel->progs.handle_legacy, legacy); + bpf_program__set_autoload(skel->progs.handle_modern, !legacy); + + err = test_legacy_printk__load(skel); + /* no ASSERT_OK, we expect one of two variants can fail here */ + if (err) + goto err_out; + + if (legacy) { + map_fd = bpf_map__fd(skel->maps.my_pid_map); + err = bpf_map_update_elem(map_fd, &zero, &my_pid, BPF_ANY); + if (!ASSERT_OK(err, "my_pid_map_update")) + goto err_out; + err = bpf_map_lookup_elem(map_fd, &zero, &res); + } else { + skel->bss->my_pid_var = my_pid; + } + + err = test_legacy_printk__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto err_out; + + usleep(1); /* trigger */ + + if (legacy) { + map_fd = bpf_map__fd(skel->maps.res_map); + err = bpf_map_lookup_elem(map_fd, &zero, &res); + if (!ASSERT_OK(err, "res_map_lookup")) + goto err_out; + } else { + res = skel->bss->res_var; + } + + if (!ASSERT_GT(res, 0, "res")) { + err = -EINVAL; + goto err_out; + } + +err_out: + test_legacy_printk__destroy(skel); + return err; +} + +void test_legacy_printk(void) +{ + /* legacy variant should work everywhere */ + ASSERT_OK(execute_one_variant(true /* legacy */), "legacy_case"); + + /* execute modern variant, can fail the load on old kernels */ + execute_one_variant(false); +} diff --git a/tools/testing/selftests/bpf/prog_tests/libbpf_get_fd_by_id_opts.c b/tools/testing/selftests/bpf/prog_tests/libbpf_get_fd_by_id_opts.c new file mode 100644 index 000000000000..a3f238f51d05 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/libbpf_get_fd_by_id_opts.c @@ -0,0 +1,87 @@ +// SPDX-License-Identifier: GPL-2.0 + +/* + * Copyright (C) 2022 Huawei Technologies Duesseldorf GmbH + * + * Author: Roberto Sassu <roberto.sassu@huawei.com> + */ + +#include <test_progs.h> + +#include "test_libbpf_get_fd_by_id_opts.skel.h" + +void test_libbpf_get_fd_by_id_opts(void) +{ + struct test_libbpf_get_fd_by_id_opts *skel; + struct bpf_map_info info_m = {}; + __u32 len = sizeof(info_m), value; + int ret, zero = 0, fd = -1; + LIBBPF_OPTS(bpf_get_fd_by_id_opts, fd_opts_rdonly, + .open_flags = BPF_F_RDONLY, + ); + + skel = test_libbpf_get_fd_by_id_opts__open_and_load(); + if (!ASSERT_OK_PTR(skel, + "test_libbpf_get_fd_by_id_opts__open_and_load")) + return; + + ret = test_libbpf_get_fd_by_id_opts__attach(skel); + if (!ASSERT_OK(ret, "test_libbpf_get_fd_by_id_opts__attach")) + goto close_prog; + + ret = bpf_map_get_info_by_fd(bpf_map__fd(skel->maps.data_input), + &info_m, &len); + if (!ASSERT_OK(ret, "bpf_map_get_info_by_fd")) + goto close_prog; + + fd = bpf_map_get_fd_by_id(info_m.id); + if (!ASSERT_LT(fd, 0, "bpf_map_get_fd_by_id")) + goto close_prog; + + fd = bpf_map_get_fd_by_id_opts(info_m.id, NULL); + if (!ASSERT_LT(fd, 0, "bpf_map_get_fd_by_id_opts")) + goto close_prog; + + fd = bpf_map_get_fd_by_id_opts(info_m.id, &fd_opts_rdonly); + if (!ASSERT_GE(fd, 0, "bpf_map_get_fd_by_id_opts")) + goto close_prog; + + /* Map lookup should work with read-only fd. */ + ret = bpf_map_lookup_elem(fd, &zero, &value); + if (!ASSERT_OK(ret, "bpf_map_lookup_elem")) + goto close_prog; + + if (!ASSERT_EQ(value, 0, "map value mismatch")) + goto close_prog; + + /* Map update should not work with read-only fd. */ + ret = bpf_map_update_elem(fd, &zero, &len, BPF_ANY); + if (!ASSERT_LT(ret, 0, "bpf_map_update_elem")) + goto close_prog; + + /* Map update should work with read-write fd. */ + ret = bpf_map_update_elem(bpf_map__fd(skel->maps.data_input), &zero, + &len, BPF_ANY); + if (!ASSERT_OK(ret, "bpf_map_update_elem")) + goto close_prog; + + /* Prog get fd with opts set should not work (no kernel support). */ + ret = bpf_prog_get_fd_by_id_opts(0, &fd_opts_rdonly); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_prog_get_fd_by_id_opts")) + goto close_prog; + + /* Link get fd with opts set should not work (no kernel support). */ + ret = bpf_link_get_fd_by_id_opts(0, &fd_opts_rdonly); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_link_get_fd_by_id_opts")) + goto close_prog; + + /* BTF get fd with opts set should not work (no kernel support). */ + ret = bpf_btf_get_fd_by_id_opts(0, &fd_opts_rdonly); + ASSERT_EQ(ret, -EINVAL, "bpf_btf_get_fd_by_id_opts"); + +close_prog: + if (fd >= 0) + close(fd); + + test_libbpf_get_fd_by_id_opts__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/libbpf_probes.c b/tools/testing/selftests/bpf/prog_tests/libbpf_probes.c new file mode 100644 index 000000000000..4ed46ed58a7b --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/libbpf_probes.c @@ -0,0 +1,128 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> +#include <bpf/btf.h> + +void test_libbpf_probe_prog_types(void) +{ + struct btf *btf; + const struct btf_type *t; + const struct btf_enum *e; + int i, n, id; + + btf = btf__parse("/sys/kernel/btf/vmlinux", NULL); + if (!ASSERT_OK_PTR(btf, "btf_parse")) + return; + + /* find enum bpf_prog_type and enumerate each value */ + id = btf__find_by_name_kind(btf, "bpf_prog_type", BTF_KIND_ENUM); + if (!ASSERT_GT(id, 0, "bpf_prog_type_id")) + goto cleanup; + t = btf__type_by_id(btf, id); + if (!ASSERT_OK_PTR(t, "bpf_prog_type_enum")) + goto cleanup; + + for (e = btf_enum(t), i = 0, n = btf_vlen(t); i < n; e++, i++) { + const char *prog_type_name = btf__str_by_offset(btf, e->name_off); + enum bpf_prog_type prog_type = (enum bpf_prog_type)e->val; + int res; + + if (prog_type == BPF_PROG_TYPE_UNSPEC) + continue; + if (strcmp(prog_type_name, "__MAX_BPF_PROG_TYPE") == 0) + continue; + + if (!test__start_subtest(prog_type_name)) + continue; + + res = libbpf_probe_bpf_prog_type(prog_type, NULL); + ASSERT_EQ(res, 1, prog_type_name); + } + +cleanup: + btf__free(btf); +} + +void test_libbpf_probe_map_types(void) +{ + struct btf *btf; + const struct btf_type *t; + const struct btf_enum *e; + int i, n, id; + + btf = btf__parse("/sys/kernel/btf/vmlinux", NULL); + if (!ASSERT_OK_PTR(btf, "btf_parse")) + return; + + /* find enum bpf_map_type and enumerate each value */ + id = btf__find_by_name_kind(btf, "bpf_map_type", BTF_KIND_ENUM); + if (!ASSERT_GT(id, 0, "bpf_map_type_id")) + goto cleanup; + t = btf__type_by_id(btf, id); + if (!ASSERT_OK_PTR(t, "bpf_map_type_enum")) + goto cleanup; + + for (e = btf_enum(t), i = 0, n = btf_vlen(t); i < n; e++, i++) { + const char *map_type_name = btf__str_by_offset(btf, e->name_off); + enum bpf_map_type map_type = (enum bpf_map_type)e->val; + int res; + + if (map_type == BPF_MAP_TYPE_UNSPEC) + continue; + if (strcmp(map_type_name, "__MAX_BPF_MAP_TYPE") == 0) + continue; + + if (!test__start_subtest(map_type_name)) + continue; + + res = libbpf_probe_bpf_map_type(map_type, NULL); + ASSERT_EQ(res, 1, map_type_name); + } + +cleanup: + btf__free(btf); +} + +void test_libbpf_probe_helpers(void) +{ +#define CASE(prog, helper, supp) { \ + .prog_type_name = "BPF_PROG_TYPE_" # prog, \ + .helper_name = "bpf_" # helper, \ + .prog_type = BPF_PROG_TYPE_ ## prog, \ + .helper_id = BPF_FUNC_ ## helper, \ + .supported = supp, \ +} + const struct case_def { + const char *prog_type_name; + const char *helper_name; + enum bpf_prog_type prog_type; + enum bpf_func_id helper_id; + bool supported; + } cases[] = { + CASE(KPROBE, unspec, false), + CASE(KPROBE, map_lookup_elem, true), + CASE(KPROBE, loop, true), + + CASE(KPROBE, ktime_get_coarse_ns, false), + CASE(SOCKET_FILTER, ktime_get_coarse_ns, true), + + CASE(KPROBE, sys_bpf, false), + CASE(SYSCALL, sys_bpf, true), + }; + size_t case_cnt = ARRAY_SIZE(cases), i; + char buf[128]; + + for (i = 0; i < case_cnt; i++) { + const struct case_def *d = &cases[i]; + int res; + + snprintf(buf, sizeof(buf), "%s+%s", d->prog_type_name, d->helper_name); + + if (!test__start_subtest(buf)) + continue; + + res = libbpf_probe_bpf_helper(d->prog_type, d->helper_id, NULL); + ASSERT_EQ(res, d->supported, buf); + } +} diff --git a/tools/testing/selftests/bpf/prog_tests/libbpf_str.c b/tools/testing/selftests/bpf/prog_tests/libbpf_str.c new file mode 100644 index 000000000000..62ea855ec4d0 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/libbpf_str.c @@ -0,0 +1,225 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ + +#include <ctype.h> +#include <test_progs.h> +#include <bpf/btf.h> + +/* + * Utility function uppercasing an entire string. + */ +static void uppercase(char *s) +{ + for (; *s != '\0'; s++) + *s = toupper(*s); +} + +/* + * Test case to check that all bpf_attach_type variants are covered by + * libbpf_bpf_attach_type_str. + */ +static void test_libbpf_bpf_attach_type_str(void) +{ + struct btf *btf; + const struct btf_type *t; + const struct btf_enum *e; + int i, n, id; + + btf = btf__parse("/sys/kernel/btf/vmlinux", NULL); + if (!ASSERT_OK_PTR(btf, "btf_parse")) + return; + + /* find enum bpf_attach_type and enumerate each value */ + id = btf__find_by_name_kind(btf, "bpf_attach_type", BTF_KIND_ENUM); + if (!ASSERT_GT(id, 0, "bpf_attach_type_id")) + goto cleanup; + t = btf__type_by_id(btf, id); + e = btf_enum(t); + n = btf_vlen(t); + for (i = 0; i < n; e++, i++) { + enum bpf_attach_type attach_type = (enum bpf_attach_type)e->val; + const char *attach_type_name; + const char *attach_type_str; + char buf[256]; + + if (attach_type == __MAX_BPF_ATTACH_TYPE) + continue; + + attach_type_name = btf__str_by_offset(btf, e->name_off); + attach_type_str = libbpf_bpf_attach_type_str(attach_type); + ASSERT_OK_PTR(attach_type_str, attach_type_name); + + snprintf(buf, sizeof(buf), "BPF_%s", attach_type_str); + uppercase(buf); + + ASSERT_STREQ(buf, attach_type_name, "exp_str_value"); + } + +cleanup: + btf__free(btf); +} + +/* + * Test case to check that all bpf_link_type variants are covered by + * libbpf_bpf_link_type_str. + */ +static void test_libbpf_bpf_link_type_str(void) +{ + struct btf *btf; + const struct btf_type *t; + const struct btf_enum *e; + int i, n, id; + + btf = btf__parse("/sys/kernel/btf/vmlinux", NULL); + if (!ASSERT_OK_PTR(btf, "btf_parse")) + return; + + /* find enum bpf_link_type and enumerate each value */ + id = btf__find_by_name_kind(btf, "bpf_link_type", BTF_KIND_ENUM); + if (!ASSERT_GT(id, 0, "bpf_link_type_id")) + goto cleanup; + t = btf__type_by_id(btf, id); + e = btf_enum(t); + n = btf_vlen(t); + for (i = 0; i < n; e++, i++) { + enum bpf_link_type link_type = (enum bpf_link_type)e->val; + const char *link_type_name; + const char *link_type_str; + char buf[256]; + + if (link_type == __MAX_BPF_LINK_TYPE) + continue; + + link_type_name = btf__str_by_offset(btf, e->name_off); + link_type_str = libbpf_bpf_link_type_str(link_type); + ASSERT_OK_PTR(link_type_str, link_type_name); + + snprintf(buf, sizeof(buf), "BPF_LINK_TYPE_%s", link_type_str); + uppercase(buf); + + ASSERT_STREQ(buf, link_type_name, "exp_str_value"); + } + +cleanup: + btf__free(btf); +} + +/* + * Test case to check that all bpf_map_type variants are covered by + * libbpf_bpf_map_type_str. + */ +static void test_libbpf_bpf_map_type_str(void) +{ + struct btf *btf; + const struct btf_type *t; + const struct btf_enum *e; + int i, n, id; + + btf = btf__parse("/sys/kernel/btf/vmlinux", NULL); + if (!ASSERT_OK_PTR(btf, "btf_parse")) + return; + + /* find enum bpf_map_type and enumerate each value */ + id = btf__find_by_name_kind(btf, "bpf_map_type", BTF_KIND_ENUM); + if (!ASSERT_GT(id, 0, "bpf_map_type_id")) + goto cleanup; + t = btf__type_by_id(btf, id); + e = btf_enum(t); + n = btf_vlen(t); + for (i = 0; i < n; e++, i++) { + enum bpf_map_type map_type = (enum bpf_map_type)e->val; + const char *map_type_name; + const char *map_type_str; + char buf[256]; + + if (map_type == __MAX_BPF_MAP_TYPE) + continue; + + map_type_name = btf__str_by_offset(btf, e->name_off); + map_type_str = libbpf_bpf_map_type_str(map_type); + ASSERT_OK_PTR(map_type_str, map_type_name); + + snprintf(buf, sizeof(buf), "BPF_MAP_TYPE_%s", map_type_str); + uppercase(buf); + + /* Special case for map_type_name BPF_MAP_TYPE_CGROUP_STORAGE_DEPRECATED + * where it and BPF_MAP_TYPE_CGROUP_STORAGE have the same enum value + * (map_type). For this enum value, libbpf_bpf_map_type_str() picks + * BPF_MAP_TYPE_CGROUP_STORAGE. The same for + * BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE_DEPRECATED and + * BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE. + */ + if (strcmp(map_type_name, "BPF_MAP_TYPE_CGROUP_STORAGE_DEPRECATED") == 0) + continue; + if (strcmp(map_type_name, "BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE_DEPRECATED") == 0) + continue; + + ASSERT_STREQ(buf, map_type_name, "exp_str_value"); + } + +cleanup: + btf__free(btf); +} + +/* + * Test case to check that all bpf_prog_type variants are covered by + * libbpf_bpf_prog_type_str. + */ +static void test_libbpf_bpf_prog_type_str(void) +{ + struct btf *btf; + const struct btf_type *t; + const struct btf_enum *e; + int i, n, id; + + btf = btf__parse("/sys/kernel/btf/vmlinux", NULL); + if (!ASSERT_OK_PTR(btf, "btf_parse")) + return; + + /* find enum bpf_prog_type and enumerate each value */ + id = btf__find_by_name_kind(btf, "bpf_prog_type", BTF_KIND_ENUM); + if (!ASSERT_GT(id, 0, "bpf_prog_type_id")) + goto cleanup; + t = btf__type_by_id(btf, id); + e = btf_enum(t); + n = btf_vlen(t); + for (i = 0; i < n; e++, i++) { + enum bpf_prog_type prog_type = (enum bpf_prog_type)e->val; + const char *prog_type_name; + const char *prog_type_str; + char buf[256]; + + if (prog_type == __MAX_BPF_PROG_TYPE) + continue; + + prog_type_name = btf__str_by_offset(btf, e->name_off); + prog_type_str = libbpf_bpf_prog_type_str(prog_type); + ASSERT_OK_PTR(prog_type_str, prog_type_name); + + snprintf(buf, sizeof(buf), "BPF_PROG_TYPE_%s", prog_type_str); + uppercase(buf); + + ASSERT_STREQ(buf, prog_type_name, "exp_str_value"); + } + +cleanup: + btf__free(btf); +} + +/* + * Run all libbpf str conversion tests. + */ +void test_libbpf_str(void) +{ + if (test__start_subtest("bpf_attach_type_str")) + test_libbpf_bpf_attach_type_str(); + + if (test__start_subtest("bpf_link_type_str")) + test_libbpf_bpf_link_type_str(); + + if (test__start_subtest("bpf_map_type_str")) + test_libbpf_bpf_map_type_str(); + + if (test__start_subtest("bpf_prog_type_str")) + test_libbpf_bpf_prog_type_str(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/link_pinning.c b/tools/testing/selftests/bpf/prog_tests/link_pinning.c index a743288cf384..6fc97c45f71e 100644 --- a/tools/testing/selftests/bpf/prog_tests/link_pinning.c +++ b/tools/testing/selftests/bpf/prog_tests/link_pinning.c @@ -17,7 +17,7 @@ void test_link_pinning_subtest(struct bpf_program *prog, int err, i; link = bpf_program__attach(prog); - if (CHECK(IS_ERR(link), "link_attach", "err: %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "link_attach")) goto cleanup; bss->in = 1; @@ -51,7 +51,7 @@ void test_link_pinning_subtest(struct bpf_program *prog, /* re-open link from BPFFS */ link = bpf_link__open(link_pin_path); - if (CHECK(IS_ERR(link), "link_open", "err: %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "link_open")) goto cleanup; CHECK(strcmp(link_pin_path, bpf_link__pin_path(link)), "pin_path2", @@ -84,8 +84,7 @@ void test_link_pinning_subtest(struct bpf_program *prog, CHECK(i == 10000, "link_attached", "got to iteration #%d\n", i); cleanup: - if (!IS_ERR(link)) - bpf_link__destroy(link); + bpf_link__destroy(link); } void test_link_pinning(void) diff --git a/tools/testing/selftests/bpf/prog_tests/linked_funcs.c b/tools/testing/selftests/bpf/prog_tests/linked_funcs.c new file mode 100644 index 000000000000..cad664546912 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/linked_funcs.c @@ -0,0 +1,48 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> +#include <sys/syscall.h> +#include "linked_funcs.skel.h" + +void test_linked_funcs(void) +{ + int err; + struct linked_funcs *skel; + + skel = linked_funcs__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + /* handler1 and handler2 are marked as SEC("?raw_tp/sys_enter") and + * are set to not autoload by default + */ + bpf_program__set_autoload(skel->progs.handler1, true); + bpf_program__set_autoload(skel->progs.handler2, true); + + skel->rodata->my_tid = syscall(SYS_gettid); + skel->bss->syscall_id = SYS_getpgid; + + err = linked_funcs__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + err = linked_funcs__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* trigger */ + syscall(SYS_getpgid); + + ASSERT_EQ(skel->bss->output_val1, 2000 + 2000, "output_val1"); + ASSERT_EQ(skel->bss->output_ctx1, SYS_getpgid, "output_ctx1"); + ASSERT_EQ(skel->bss->output_weak1, 42, "output_weak1"); + + ASSERT_EQ(skel->bss->output_val2, 2 * 1000 + 2 * (2 * 1000), "output_val2"); + ASSERT_EQ(skel->bss->output_ctx2, SYS_getpgid, "output_ctx2"); + /* output_weak2 should never be updated */ + ASSERT_EQ(skel->bss->output_weak2, 0, "output_weak2"); + +cleanup: + linked_funcs__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/linked_list.c b/tools/testing/selftests/bpf/prog_tests/linked_list.c new file mode 100644 index 000000000000..2fb89de63bd2 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/linked_list.c @@ -0,0 +1,795 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <bpf/btf.h> +#include <test_btf.h> +#include <linux/btf.h> +#include <test_progs.h> +#include <network_helpers.h> + +#include "linked_list.skel.h" +#include "linked_list_fail.skel.h" + +static char log_buf[1024 * 1024]; + +static struct { + const char *prog_name; + const char *err_msg; +} linked_list_fail_tests[] = { +#define TEST(test, off) \ + { #test "_missing_lock_push_front", \ + "bpf_spin_lock at off=" #off " must be held for bpf_list_head" }, \ + { #test "_missing_lock_push_back", \ + "bpf_spin_lock at off=" #off " must be held for bpf_list_head" }, \ + { #test "_missing_lock_pop_front", \ + "bpf_spin_lock at off=" #off " must be held for bpf_list_head" }, \ + { #test "_missing_lock_pop_back", \ + "bpf_spin_lock at off=" #off " must be held for bpf_list_head" }, + TEST(kptr, 40) + TEST(global, 16) + TEST(map, 0) + TEST(inner_map, 0) +#undef TEST +#define TEST(test, op) \ + { #test "_kptr_incorrect_lock_" #op, \ + "held lock and object are not in the same allocation\n" \ + "bpf_spin_lock at off=40 must be held for bpf_list_head" }, \ + { #test "_global_incorrect_lock_" #op, \ + "held lock and object are not in the same allocation\n" \ + "bpf_spin_lock at off=16 must be held for bpf_list_head" }, \ + { #test "_map_incorrect_lock_" #op, \ + "held lock and object are not in the same allocation\n" \ + "bpf_spin_lock at off=0 must be held for bpf_list_head" }, \ + { #test "_inner_map_incorrect_lock_" #op, \ + "held lock and object are not in the same allocation\n" \ + "bpf_spin_lock at off=0 must be held for bpf_list_head" }, + TEST(kptr, push_front) + TEST(kptr, push_back) + TEST(kptr, pop_front) + TEST(kptr, pop_back) + TEST(global, push_front) + TEST(global, push_back) + TEST(global, pop_front) + TEST(global, pop_back) + TEST(map, push_front) + TEST(map, push_back) + TEST(map, pop_front) + TEST(map, pop_back) + TEST(inner_map, push_front) + TEST(inner_map, push_back) + TEST(inner_map, pop_front) + TEST(inner_map, pop_back) +#undef TEST + { "map_compat_kprobe", "tracing progs cannot use bpf_{list_head,rb_root} yet" }, + { "map_compat_kretprobe", "tracing progs cannot use bpf_{list_head,rb_root} yet" }, + { "map_compat_tp", "tracing progs cannot use bpf_{list_head,rb_root} yet" }, + { "map_compat_perf", "tracing progs cannot use bpf_{list_head,rb_root} yet" }, + { "map_compat_raw_tp", "tracing progs cannot use bpf_{list_head,rb_root} yet" }, + { "map_compat_raw_tp_w", "tracing progs cannot use bpf_{list_head,rb_root} yet" }, + { "obj_type_id_oor", "local type ID argument must be in range [0, U32_MAX]" }, + { "obj_new_no_composite", "bpf_obj_new/bpf_percpu_obj_new type ID argument must be of a struct" }, + { "obj_new_no_struct", "bpf_obj_new/bpf_percpu_obj_new type ID argument must be of a struct" }, + { "obj_drop_non_zero_off", "R1 must have zero offset when passed to release func" }, + { "new_null_ret", "R0 invalid mem access 'ptr_or_null_'" }, + { "obj_new_acq", "Unreleased reference id=" }, + { "use_after_drop", "invalid mem access 'scalar'" }, + { "ptr_walk_scalar", "type=scalar expected=percpu_ptr_" }, + { "direct_read_lock", "direct access to bpf_spin_lock is disallowed" }, + { "direct_write_lock", "direct access to bpf_spin_lock is disallowed" }, + { "direct_read_head", "direct access to bpf_list_head is disallowed" }, + { "direct_write_head", "direct access to bpf_list_head is disallowed" }, + { "direct_read_node", "direct access to bpf_list_node is disallowed" }, + { "direct_write_node", "direct access to bpf_list_node is disallowed" }, + { "use_after_unlock_push_front", "invalid mem access 'scalar'" }, + { "use_after_unlock_push_back", "invalid mem access 'scalar'" }, + { "double_push_front", "arg#1 expected pointer to allocated object" }, + { "double_push_back", "arg#1 expected pointer to allocated object" }, + { "no_node_value_type", "bpf_list_node not found at offset=0" }, + { "incorrect_value_type", + "operation on bpf_list_head expects arg#1 bpf_list_node at offset=48 in struct foo, " + "but arg is at offset=0 in struct bar" }, + { "incorrect_node_var_off", "variable ptr_ access var_off=(0x0; 0xffffffff) disallowed" }, + { "incorrect_node_off1", "bpf_list_node not found at offset=49" }, + { "incorrect_node_off2", "arg#1 offset=0, but expected bpf_list_node at offset=48 in struct foo" }, + { "no_head_type", "bpf_list_head not found at offset=0" }, + { "incorrect_head_var_off1", "R1 doesn't have constant offset" }, + { "incorrect_head_var_off2", "variable ptr_ access var_off=(0x0; 0xffffffff) disallowed" }, + { "incorrect_head_off1", "bpf_list_head not found at offset=25" }, + { "incorrect_head_off2", "bpf_list_head not found at offset=1" }, + { "pop_front_off", "off 48 doesn't point to 'struct bpf_spin_lock' that is at 40" }, + { "pop_back_off", "off 48 doesn't point to 'struct bpf_spin_lock' that is at 40" }, +}; + +static void test_linked_list_fail_prog(const char *prog_name, const char *err_msg) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts, .kernel_log_buf = log_buf, + .kernel_log_size = sizeof(log_buf), + .kernel_log_level = 1); + struct linked_list_fail *skel; + struct bpf_program *prog; + int ret; + + skel = linked_list_fail__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "linked_list_fail__open_opts")) + return; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto end; + + bpf_program__set_autoload(prog, true); + + ret = linked_list_fail__load(skel); + if (!ASSERT_ERR(ret, "linked_list_fail__load must fail")) + goto end; + + if (!ASSERT_OK_PTR(strstr(log_buf, err_msg), "expected error message")) { + fprintf(stderr, "Expected: %s\n", err_msg); + fprintf(stderr, "Verifier: %s\n", log_buf); + } + +end: + linked_list_fail__destroy(skel); +} + +static void clear_fields(struct bpf_map *map) +{ + char buf[24]; + int key = 0; + + memset(buf, 0xff, sizeof(buf)); + ASSERT_OK(bpf_map__update_elem(map, &key, sizeof(key), buf, sizeof(buf), 0), "check_and_free_fields"); +} + +enum { + TEST_ALL, + PUSH_POP, + PUSH_POP_MULT, + LIST_IN_LIST, +}; + +static void test_linked_list_success(int mode, bool leave_in_map) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct linked_list *skel; + int ret; + + skel = linked_list__open_and_load(); + if (!ASSERT_OK_PTR(skel, "linked_list__open_and_load")) + return; + + if (mode == LIST_IN_LIST) + goto lil; + if (mode == PUSH_POP_MULT) + goto ppm; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.map_list_push_pop), &opts); + ASSERT_OK(ret, "map_list_push_pop"); + ASSERT_OK(opts.retval, "map_list_push_pop retval"); + if (!leave_in_map) + clear_fields(skel->maps.array_map); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.inner_map_list_push_pop), &opts); + ASSERT_OK(ret, "inner_map_list_push_pop"); + ASSERT_OK(opts.retval, "inner_map_list_push_pop retval"); + if (!leave_in_map) + clear_fields(skel->maps.inner_map); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.global_list_push_pop), &opts); + ASSERT_OK(ret, "global_list_push_pop"); + ASSERT_OK(opts.retval, "global_list_push_pop retval"); + if (!leave_in_map) + clear_fields(skel->maps.bss_A); + + if (mode == PUSH_POP) + goto end; + +ppm: + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.map_list_push_pop_multiple), &opts); + ASSERT_OK(ret, "map_list_push_pop_multiple"); + ASSERT_OK(opts.retval, "map_list_push_pop_multiple retval"); + if (!leave_in_map) + clear_fields(skel->maps.array_map); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.inner_map_list_push_pop_multiple), &opts); + ASSERT_OK(ret, "inner_map_list_push_pop_multiple"); + ASSERT_OK(opts.retval, "inner_map_list_push_pop_multiple retval"); + if (!leave_in_map) + clear_fields(skel->maps.inner_map); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.global_list_push_pop_multiple), &opts); + ASSERT_OK(ret, "global_list_push_pop_multiple"); + ASSERT_OK(opts.retval, "global_list_push_pop_multiple retval"); + if (!leave_in_map) + clear_fields(skel->maps.bss_A); + + if (mode == PUSH_POP_MULT) + goto end; + +lil: + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.map_list_in_list), &opts); + ASSERT_OK(ret, "map_list_in_list"); + ASSERT_OK(opts.retval, "map_list_in_list retval"); + if (!leave_in_map) + clear_fields(skel->maps.array_map); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.inner_map_list_in_list), &opts); + ASSERT_OK(ret, "inner_map_list_in_list"); + ASSERT_OK(opts.retval, "inner_map_list_in_list retval"); + if (!leave_in_map) + clear_fields(skel->maps.inner_map); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.global_list_in_list), &opts); + ASSERT_OK(ret, "global_list_in_list"); + ASSERT_OK(opts.retval, "global_list_in_list retval"); + if (!leave_in_map) + clear_fields(skel->maps.bss_A); +end: + linked_list__destroy(skel); +} + +#define SPIN_LOCK 2 +#define LIST_HEAD 3 +#define LIST_NODE 4 + +static struct btf *init_btf(void) +{ + int id, lid, hid, nid; + struct btf *btf; + + btf = btf__new_empty(); + if (!ASSERT_OK_PTR(btf, "btf__new_empty")) + return NULL; + id = btf__add_int(btf, "int", 4, BTF_INT_SIGNED); + if (!ASSERT_EQ(id, 1, "btf__add_int")) + goto end; + lid = btf__add_struct(btf, "bpf_spin_lock", 4); + if (!ASSERT_EQ(lid, SPIN_LOCK, "btf__add_struct bpf_spin_lock")) + goto end; + hid = btf__add_struct(btf, "bpf_list_head", 16); + if (!ASSERT_EQ(hid, LIST_HEAD, "btf__add_struct bpf_list_head")) + goto end; + nid = btf__add_struct(btf, "bpf_list_node", 24); + if (!ASSERT_EQ(nid, LIST_NODE, "btf__add_struct bpf_list_node")) + goto end; + return btf; +end: + btf__free(btf); + return NULL; +} + +static void list_and_rb_node_same_struct(bool refcount_field) +{ + int bpf_rb_node_btf_id, bpf_refcount_btf_id = 0, foo_btf_id; + struct btf *btf; + int id, err; + + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + return; + + bpf_rb_node_btf_id = btf__add_struct(btf, "bpf_rb_node", 32); + if (!ASSERT_GT(bpf_rb_node_btf_id, 0, "btf__add_struct bpf_rb_node")) + return; + + if (refcount_field) { + bpf_refcount_btf_id = btf__add_struct(btf, "bpf_refcount", 4); + if (!ASSERT_GT(bpf_refcount_btf_id, 0, "btf__add_struct bpf_refcount")) + return; + } + + id = btf__add_struct(btf, "bar", refcount_field ? 60 : 56); + if (!ASSERT_GT(id, 0, "btf__add_struct bar")) + return; + err = btf__add_field(btf, "a", LIST_NODE, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bar::a")) + return; + err = btf__add_field(btf, "c", bpf_rb_node_btf_id, 192, 0); + if (!ASSERT_OK(err, "btf__add_field bar::c")) + return; + if (refcount_field) { + err = btf__add_field(btf, "ref", bpf_refcount_btf_id, 448, 0); + if (!ASSERT_OK(err, "btf__add_field bar::ref")) + return; + } + + foo_btf_id = btf__add_struct(btf, "foo", 20); + if (!ASSERT_GT(foo_btf_id, 0, "btf__add_struct foo")) + return; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + return; + err = btf__add_field(btf, "b", SPIN_LOCK, 128, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + return; + id = btf__add_decl_tag(btf, "contains:bar:a", foo_btf_id, 0); + if (!ASSERT_GT(id, 0, "btf__add_decl_tag contains:bar:a")) + return; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, refcount_field ? 0 : -EINVAL, "check btf"); + btf__free(btf); +} + +static void test_btf(void) +{ + struct btf *btf = NULL; + int id, err; + + while (test__start_subtest("btf: too many locks")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 24); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", SPIN_LOCK, 0, 0); + if (!ASSERT_OK(err, "btf__add_struct foo::a")) + break; + err = btf__add_field(btf, "b", SPIN_LOCK, 32, 0); + if (!ASSERT_OK(err, "btf__add_struct foo::a")) + break; + err = btf__add_field(btf, "c", LIST_HEAD, 64, 0); + if (!ASSERT_OK(err, "btf__add_struct foo::a")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -E2BIG, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: missing lock")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 16); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_struct foo::a")) + break; + id = btf__add_decl_tag(btf, "contains:baz:a", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:baz:a")) + break; + id = btf__add_struct(btf, "baz", 16); + if (!ASSERT_EQ(id, 7, "btf__add_struct baz")) + break; + err = btf__add_field(btf, "a", LIST_NODE, 0, 0); + if (!ASSERT_OK(err, "btf__add_field baz::a")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -EINVAL, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: bad offset")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 36); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::c")) + break; + id = btf__add_decl_tag(btf, "contains:foo:b", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:foo:b")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -EEXIST, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: missing contains:")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 24); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", SPIN_LOCK, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", LIST_HEAD, 64, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -EINVAL, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: missing struct")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 24); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", SPIN_LOCK, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", LIST_HEAD, 64, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + id = btf__add_decl_tag(btf, "contains:bar:bar", 5, 1); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:bar:bar")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -ENOENT, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: missing node")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 24); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", SPIN_LOCK, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", LIST_HEAD, 64, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + id = btf__add_decl_tag(btf, "contains:foo:c", 5, 1); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:foo:c")) + break; + + err = btf__load_into_kernel(btf); + btf__free(btf); + ASSERT_EQ(err, -ENOENT, "check btf"); + break; + } + + while (test__start_subtest("btf: node incorrect type")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 20); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", SPIN_LOCK, 128, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + id = btf__add_decl_tag(btf, "contains:bar:a", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:bar:a")) + break; + id = btf__add_struct(btf, "bar", 4); + if (!ASSERT_EQ(id, 7, "btf__add_struct bar")) + break; + err = btf__add_field(btf, "a", SPIN_LOCK, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bar::a")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -EINVAL, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: multiple bpf_list_node with name b")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 52); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 256, 0); + if (!ASSERT_OK(err, "btf__add_field foo::c")) + break; + err = btf__add_field(btf, "d", SPIN_LOCK, 384, 0); + if (!ASSERT_OK(err, "btf__add_field foo::d")) + break; + id = btf__add_decl_tag(btf, "contains:foo:b", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:foo:b")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -EINVAL, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: owning | owned AA cycle")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 44); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 320, 0); + if (!ASSERT_OK(err, "btf__add_field foo::c")) + break; + id = btf__add_decl_tag(btf, "contains:foo:b", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:foo:b")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -ELOOP, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: owning | owned ABA cycle")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 44); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 320, 0); + if (!ASSERT_OK(err, "btf__add_field foo::c")) + break; + id = btf__add_decl_tag(btf, "contains:bar:b", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:bar:b")) + break; + id = btf__add_struct(btf, "bar", 44); + if (!ASSERT_EQ(id, 7, "btf__add_struct bar")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bar::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field bar::b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 320, 0); + if (!ASSERT_OK(err, "btf__add_field bar::c")) + break; + id = btf__add_decl_tag(btf, "contains:foo:b", 7, 0); + if (!ASSERT_EQ(id, 8, "btf__add_decl_tag contains:foo:b")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -ELOOP, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: owning -> owned")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 28); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", SPIN_LOCK, 192, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + id = btf__add_decl_tag(btf, "contains:bar:a", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:bar:a")) + break; + id = btf__add_struct(btf, "bar", 24); + if (!ASSERT_EQ(id, 7, "btf__add_struct bar")) + break; + err = btf__add_field(btf, "a", LIST_NODE, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bar::a")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, 0, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: owning -> owning | owned -> owned")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 28); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", SPIN_LOCK, 192, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + id = btf__add_decl_tag(btf, "contains:bar:b", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:bar:b")) + break; + id = btf__add_struct(btf, "bar", 44); + if (!ASSERT_EQ(id, 7, "btf__add_struct bar")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bar::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field bar::b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 320, 0); + if (!ASSERT_OK(err, "btf__add_field bar::c")) + break; + id = btf__add_decl_tag(btf, "contains:baz:a", 7, 0); + if (!ASSERT_EQ(id, 8, "btf__add_decl_tag contains:baz:a")) + break; + id = btf__add_struct(btf, "baz", 24); + if (!ASSERT_EQ(id, 9, "btf__add_struct baz")) + break; + err = btf__add_field(btf, "a", LIST_NODE, 0, 0); + if (!ASSERT_OK(err, "btf__add_field baz:a")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, 0, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: owning | owned -> owning | owned -> owned")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 44); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 320, 0); + if (!ASSERT_OK(err, "btf__add_field foo::c")) + break; + id = btf__add_decl_tag(btf, "contains:bar:b", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:bar:b")) + break; + id = btf__add_struct(btf, "bar", 44); + if (!ASSERT_EQ(id, 7, "btf__add_struct bar")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bar:a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field bar:b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 320, 0); + if (!ASSERT_OK(err, "btf__add_field bar:c")) + break; + id = btf__add_decl_tag(btf, "contains:baz:a", 7, 0); + if (!ASSERT_EQ(id, 8, "btf__add_decl_tag contains:baz:a")) + break; + id = btf__add_struct(btf, "baz", 24); + if (!ASSERT_EQ(id, 9, "btf__add_struct baz")) + break; + err = btf__add_field(btf, "a", LIST_NODE, 0, 0); + if (!ASSERT_OK(err, "btf__add_field baz:a")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -ELOOP, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: owning -> owning | owned -> owning | owned -> owned")) { + btf = init_btf(); + if (!ASSERT_OK_PTR(btf, "init_btf")) + break; + id = btf__add_struct(btf, "foo", 20); + if (!ASSERT_EQ(id, 5, "btf__add_struct foo")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field foo::a")) + break; + err = btf__add_field(btf, "b", SPIN_LOCK, 128, 0); + if (!ASSERT_OK(err, "btf__add_field foo::b")) + break; + id = btf__add_decl_tag(btf, "contains:bar:b", 5, 0); + if (!ASSERT_EQ(id, 6, "btf__add_decl_tag contains:bar:b")) + break; + id = btf__add_struct(btf, "bar", 44); + if (!ASSERT_EQ(id, 7, "btf__add_struct bar")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bar::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field bar::b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 320, 0); + if (!ASSERT_OK(err, "btf__add_field bar::c")) + break; + id = btf__add_decl_tag(btf, "contains:baz:b", 7, 0); + if (!ASSERT_EQ(id, 8, "btf__add_decl_tag")) + break; + id = btf__add_struct(btf, "baz", 44); + if (!ASSERT_EQ(id, 9, "btf__add_struct baz")) + break; + err = btf__add_field(btf, "a", LIST_HEAD, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bar::a")) + break; + err = btf__add_field(btf, "b", LIST_NODE, 128, 0); + if (!ASSERT_OK(err, "btf__add_field bar::b")) + break; + err = btf__add_field(btf, "c", SPIN_LOCK, 320, 0); + if (!ASSERT_OK(err, "btf__add_field bar::c")) + break; + id = btf__add_decl_tag(btf, "contains:bam:a", 9, 0); + if (!ASSERT_EQ(id, 10, "btf__add_decl_tag contains:bam:a")) + break; + id = btf__add_struct(btf, "bam", 24); + if (!ASSERT_EQ(id, 11, "btf__add_struct bam")) + break; + err = btf__add_field(btf, "a", LIST_NODE, 0, 0); + if (!ASSERT_OK(err, "btf__add_field bam::a")) + break; + + err = btf__load_into_kernel(btf); + ASSERT_EQ(err, -ELOOP, "check btf"); + btf__free(btf); + break; + } + + while (test__start_subtest("btf: list_node and rb_node in same struct")) { + list_and_rb_node_same_struct(true); + break; + } + + while (test__start_subtest("btf: list_node and rb_node in same struct, no bpf_refcount")) { + list_and_rb_node_same_struct(false); + break; + } +} + +void test_linked_list(void) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(linked_list_fail_tests); i++) { + if (!test__start_subtest(linked_list_fail_tests[i].prog_name)) + continue; + test_linked_list_fail_prog(linked_list_fail_tests[i].prog_name, + linked_list_fail_tests[i].err_msg); + } + test_btf(); + test_linked_list_success(PUSH_POP, false); + test_linked_list_success(PUSH_POP, true); + test_linked_list_success(PUSH_POP_MULT, false); + test_linked_list_success(PUSH_POP_MULT, true); + test_linked_list_success(LIST_IN_LIST, false); + test_linked_list_success(LIST_IN_LIST, true); + test_linked_list_success(TEST_ALL, false); +} diff --git a/tools/testing/selftests/bpf/prog_tests/linked_maps.c b/tools/testing/selftests/bpf/prog_tests/linked_maps.c new file mode 100644 index 000000000000..85dcaaaf2775 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/linked_maps.c @@ -0,0 +1,30 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> +#include <sys/syscall.h> +#include "linked_maps.skel.h" + +void test_linked_maps(void) +{ + int err; + struct linked_maps *skel; + + skel = linked_maps__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + err = linked_maps__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* trigger */ + syscall(SYS_getpgid); + + ASSERT_EQ(skel->bss->output_first1, 2000, "output_first1"); + ASSERT_EQ(skel->bss->output_second1, 2, "output_second1"); + ASSERT_EQ(skel->bss->output_weak1, 2, "output_weak1"); + +cleanup: + linked_maps__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/linked_vars.c b/tools/testing/selftests/bpf/prog_tests/linked_vars.c new file mode 100644 index 000000000000..267166abe4c1 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/linked_vars.c @@ -0,0 +1,43 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> +#include <sys/syscall.h> +#include "linked_vars.skel.h" + +void test_linked_vars(void) +{ + int err; + struct linked_vars *skel; + + skel = linked_vars__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->bss->input_bss1 = 1000; + skel->bss->input_bss2 = 2000; + skel->bss->input_bss_weak = 3000; + + err = linked_vars__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + err = linked_vars__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* trigger */ + syscall(SYS_getpgid); + + ASSERT_EQ(skel->bss->output_bss1, 1000 + 2000 + 3000, "output_bss1"); + ASSERT_EQ(skel->bss->output_bss2, 1000 + 2000 + 3000, "output_bss2"); + /* 10 comes from "winner" input_data_weak in first obj file */ + ASSERT_EQ(skel->bss->output_data1, 1 + 2 + 10, "output_bss1"); + ASSERT_EQ(skel->bss->output_data2, 1 + 2 + 10, "output_bss2"); + /* 100 comes from "winner" input_rodata_weak in first obj file */ + ASSERT_EQ(skel->bss->output_rodata1, 11 + 22 + 100, "output_weak1"); + ASSERT_EQ(skel->bss->output_rodata2, 11 + 22 + 100, "output_weak2"); + +cleanup: + linked_vars__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/load_bytes_relative.c b/tools/testing/selftests/bpf/prog_tests/load_bytes_relative.c index 5a2a689dbb68..581c0eb0a0a1 100644 --- a/tools/testing/selftests/bpf/prog_tests/load_bytes_relative.c +++ b/tools/testing/selftests/bpf/prog_tests/load_bytes_relative.c @@ -27,8 +27,8 @@ void test_load_bytes_relative(void) if (CHECK_FAIL(server_fd < 0)) goto close_cgroup_fd; - err = bpf_prog_load("./load_bytes_relative.o", BPF_PROG_TYPE_CGROUP_SKB, - &obj, &prog_fd); + err = bpf_prog_test_load("./load_bytes_relative.bpf.o", BPF_PROG_TYPE_CGROUP_SKB, + &obj, &prog_fd); if (CHECK_FAIL(err)) goto close_server_fd; diff --git a/tools/testing/selftests/bpf/prog_tests/local_kptr_stash.c b/tools/testing/selftests/bpf/prog_tests/local_kptr_stash.c new file mode 100644 index 000000000000..827e713f6cf1 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/local_kptr_stash.c @@ -0,0 +1,147 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include <network_helpers.h> + +#include "local_kptr_stash.skel.h" +#include "local_kptr_stash_fail.skel.h" +static void test_local_kptr_stash_simple(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct local_kptr_stash *skel; + int ret; + + skel = local_kptr_stash__open_and_load(); + if (!ASSERT_OK_PTR(skel, "local_kptr_stash__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.stash_rb_nodes), &opts); + ASSERT_OK(ret, "local_kptr_stash_add_nodes run"); + ASSERT_OK(opts.retval, "local_kptr_stash_add_nodes retval"); + + local_kptr_stash__destroy(skel); +} + +static void test_local_kptr_stash_plain(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct local_kptr_stash *skel; + int ret; + + skel = local_kptr_stash__open_and_load(); + if (!ASSERT_OK_PTR(skel, "local_kptr_stash__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.stash_plain), &opts); + ASSERT_OK(ret, "local_kptr_stash_add_plain run"); + ASSERT_OK(opts.retval, "local_kptr_stash_add_plain retval"); + + local_kptr_stash__destroy(skel); +} + +static void test_local_kptr_stash_local_with_root(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct local_kptr_stash *skel; + int ret; + + skel = local_kptr_stash__open_and_load(); + if (!ASSERT_OK_PTR(skel, "local_kptr_stash__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.stash_local_with_root), &opts); + ASSERT_OK(ret, "local_kptr_stash_add_local_with_root run"); + ASSERT_OK(opts.retval, "local_kptr_stash_add_local_with_root retval"); + + local_kptr_stash__destroy(skel); +} + +static void test_local_kptr_stash_unstash(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct local_kptr_stash *skel; + int ret; + + skel = local_kptr_stash__open_and_load(); + if (!ASSERT_OK_PTR(skel, "local_kptr_stash__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.stash_rb_nodes), &opts); + ASSERT_OK(ret, "local_kptr_stash_add_nodes run"); + ASSERT_OK(opts.retval, "local_kptr_stash_add_nodes retval"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.unstash_rb_node), &opts); + ASSERT_OK(ret, "local_kptr_stash_add_nodes run"); + ASSERT_EQ(opts.retval, 42, "local_kptr_stash_add_nodes retval"); + + local_kptr_stash__destroy(skel); +} + +static void test_refcount_acquire_without_unstash(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct local_kptr_stash *skel; + int ret; + + skel = local_kptr_stash__open_and_load(); + if (!ASSERT_OK_PTR(skel, "local_kptr_stash__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.refcount_acquire_without_unstash), + &opts); + ASSERT_OK(ret, "refcount_acquire_without_unstash run"); + ASSERT_EQ(opts.retval, 2, "refcount_acquire_without_unstash retval"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.stash_refcounted_node), &opts); + ASSERT_OK(ret, "stash_refcounted_node run"); + ASSERT_OK(opts.retval, "stash_refcounted_node retval"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.refcount_acquire_without_unstash), + &opts); + ASSERT_OK(ret, "refcount_acquire_without_unstash (2) run"); + ASSERT_EQ(opts.retval, 42, "refcount_acquire_without_unstash (2) retval"); + + local_kptr_stash__destroy(skel); +} + +static void test_local_kptr_stash_fail(void) +{ + RUN_TESTS(local_kptr_stash_fail); +} + +void test_local_kptr_stash(void) +{ + if (test__start_subtest("local_kptr_stash_simple")) + test_local_kptr_stash_simple(); + if (test__start_subtest("local_kptr_stash_plain")) + test_local_kptr_stash_plain(); + if (test__start_subtest("local_kptr_stash_local_with_root")) + test_local_kptr_stash_local_with_root(); + if (test__start_subtest("local_kptr_stash_unstash")) + test_local_kptr_stash_unstash(); + if (test__start_subtest("refcount_acquire_without_unstash")) + test_refcount_acquire_without_unstash(); + if (test__start_subtest("local_kptr_stash_fail")) + test_local_kptr_stash_fail(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/log_buf.c b/tools/testing/selftests/bpf/prog_tests/log_buf.c new file mode 100644 index 000000000000..0f7ea4d7d9f6 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/log_buf.c @@ -0,0 +1,276 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> +#include <bpf/btf.h> + +#include "test_log_buf.skel.h" + +static size_t libbpf_log_pos; +static char libbpf_log_buf[1024 * 1024]; +static bool libbpf_log_error; + +static int libbpf_print_cb(enum libbpf_print_level level, const char *fmt, va_list args) +{ + int emitted_cnt; + size_t left_cnt; + + left_cnt = sizeof(libbpf_log_buf) - libbpf_log_pos; + emitted_cnt = vsnprintf(libbpf_log_buf + libbpf_log_pos, left_cnt, fmt, args); + + if (emitted_cnt < 0 || emitted_cnt + 1 > left_cnt) { + libbpf_log_error = true; + return 0; + } + + libbpf_log_pos += emitted_cnt; + return 0; +} + +static void obj_load_log_buf(void) +{ + libbpf_print_fn_t old_print_cb = libbpf_set_print(libbpf_print_cb); + LIBBPF_OPTS(bpf_object_open_opts, opts); + const size_t log_buf_sz = 1024 * 1024; + struct test_log_buf* skel; + char *obj_log_buf, *good_log_buf, *bad_log_buf; + int err; + + obj_log_buf = malloc(3 * log_buf_sz); + if (!ASSERT_OK_PTR(obj_log_buf, "obj_log_buf")) + return; + + good_log_buf = obj_log_buf + log_buf_sz; + bad_log_buf = obj_log_buf + 2 * log_buf_sz; + obj_log_buf[0] = good_log_buf[0] = bad_log_buf[0] = '\0'; + + opts.kernel_log_buf = obj_log_buf; + opts.kernel_log_size = log_buf_sz; + opts.kernel_log_level = 4; /* for BTF this will turn into 1 */ + + /* In the first round every prog has its own log_buf, so libbpf logs + * don't have program failure logs + */ + skel = test_log_buf__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + /* set very verbose level for good_prog so we always get detailed logs */ + bpf_program__set_log_buf(skel->progs.good_prog, good_log_buf, log_buf_sz); + bpf_program__set_log_level(skel->progs.good_prog, 2); + + bpf_program__set_log_buf(skel->progs.bad_prog, bad_log_buf, log_buf_sz); + /* log_level 0 with custom log_buf means that verbose logs are not + * requested if program load is successful, but libbpf should retry + * with log_level 1 on error and put program's verbose load log into + * custom log_buf + */ + bpf_program__set_log_level(skel->progs.bad_prog, 0); + + err = test_log_buf__load(skel); + if (!ASSERT_ERR(err, "unexpected_load_success")) + goto cleanup; + + ASSERT_FALSE(libbpf_log_error, "libbpf_log_error"); + + /* there should be no prog loading log because we specified per-prog log buf */ + ASSERT_NULL(strstr(libbpf_log_buf, "-- BEGIN PROG LOAD LOG --"), "unexp_libbpf_log"); + ASSERT_OK_PTR(strstr(libbpf_log_buf, "prog 'bad_prog': BPF program load failed"), + "libbpf_log_not_empty"); + ASSERT_OK_PTR(strstr(obj_log_buf, "DATASEC license"), "obj_log_not_empty"); + ASSERT_OK_PTR(strstr(good_log_buf, "0: R1=ctx() R10=fp0"), + "good_log_verbose"); + ASSERT_OK_PTR(strstr(bad_log_buf, "invalid access to map value, value_size=16 off=16000 size=4"), + "bad_log_not_empty"); + + if (env.verbosity > VERBOSE_NONE) { + printf("LIBBPF LOG: \n=================\n%s=================\n", libbpf_log_buf); + printf("OBJ LOG: \n=================\n%s=================\n", obj_log_buf); + printf("GOOD_PROG LOG:\n=================\n%s=================\n", good_log_buf); + printf("BAD_PROG LOG:\n=================\n%s=================\n", bad_log_buf); + } + + /* reset everything */ + test_log_buf__destroy(skel); + obj_log_buf[0] = good_log_buf[0] = bad_log_buf[0] = '\0'; + libbpf_log_buf[0] = '\0'; + libbpf_log_pos = 0; + libbpf_log_error = false; + + /* In the second round we let bad_prog's failure be logged through print callback */ + opts.kernel_log_buf = NULL; /* let everything through into print callback */ + opts.kernel_log_size = 0; + opts.kernel_log_level = 1; + + skel = test_log_buf__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + /* set normal verbose level for good_prog to check log_level is taken into account */ + bpf_program__set_log_buf(skel->progs.good_prog, good_log_buf, log_buf_sz); + bpf_program__set_log_level(skel->progs.good_prog, 1); + + err = test_log_buf__load(skel); + if (!ASSERT_ERR(err, "unexpected_load_success")) + goto cleanup; + + ASSERT_FALSE(libbpf_log_error, "libbpf_log_error"); + + /* this time prog loading error should be logged through print callback */ + ASSERT_OK_PTR(strstr(libbpf_log_buf, "libbpf: prog 'bad_prog': -- BEGIN PROG LOAD LOG --"), + "libbpf_log_correct"); + ASSERT_STREQ(obj_log_buf, "", "obj_log__empty"); + ASSERT_STREQ(good_log_buf, "processed 4 insns (limit 1000000) max_states_per_insn 0 total_states 0 peak_states 0 mark_read 0\n", + "good_log_ok"); + ASSERT_STREQ(bad_log_buf, "", "bad_log_empty"); + + if (env.verbosity > VERBOSE_NONE) { + printf("LIBBPF LOG: \n=================\n%s=================\n", libbpf_log_buf); + printf("OBJ LOG: \n=================\n%s=================\n", obj_log_buf); + printf("GOOD_PROG LOG:\n=================\n%s=================\n", good_log_buf); + printf("BAD_PROG LOG:\n=================\n%s=================\n", bad_log_buf); + } + +cleanup: + free(obj_log_buf); + test_log_buf__destroy(skel); + libbpf_set_print(old_print_cb); +} + +static void bpf_prog_load_log_buf(void) +{ + const struct bpf_insn good_prog_insns[] = { + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + const size_t good_prog_insn_cnt = sizeof(good_prog_insns) / sizeof(struct bpf_insn); + const struct bpf_insn bad_prog_insns[] = { + BPF_EXIT_INSN(), + }; + size_t bad_prog_insn_cnt = sizeof(bad_prog_insns) / sizeof(struct bpf_insn); + LIBBPF_OPTS(bpf_prog_load_opts, opts); + const size_t log_buf_sz = 1024 * 1024; + char *log_buf; + int fd = -1; + + log_buf = malloc(log_buf_sz); + if (!ASSERT_OK_PTR(log_buf, "log_buf_alloc")) + return; + opts.log_buf = log_buf; + opts.log_size = log_buf_sz; + + /* with log_level == 0 log_buf shoud stay empty for good prog */ + log_buf[0] = '\0'; + opts.log_level = 0; + fd = bpf_prog_load(BPF_PROG_TYPE_SOCKET_FILTER, "good_prog", "GPL", + good_prog_insns, good_prog_insn_cnt, &opts); + ASSERT_STREQ(log_buf, "", "good_log_0"); + ASSERT_GE(fd, 0, "good_fd1"); + if (fd >= 0) + close(fd); + fd = -1; + + /* log_level == 2 should always fill log_buf, even for good prog */ + log_buf[0] = '\0'; + opts.log_level = 2; + fd = bpf_prog_load(BPF_PROG_TYPE_SOCKET_FILTER, "good_prog", "GPL", + good_prog_insns, good_prog_insn_cnt, &opts); + ASSERT_OK_PTR(strstr(log_buf, "0: R1=ctx() R10=fp0"), "good_log_2"); + ASSERT_GE(fd, 0, "good_fd2"); + if (fd >= 0) + close(fd); + fd = -1; + + /* log_level == 0 should fill log_buf for bad prog */ + log_buf[0] = '\0'; + opts.log_level = 0; + fd = bpf_prog_load(BPF_PROG_TYPE_SOCKET_FILTER, "bad_prog", "GPL", + bad_prog_insns, bad_prog_insn_cnt, &opts); + ASSERT_OK_PTR(strstr(log_buf, "R0 !read_ok"), "bad_log_0"); + ASSERT_LT(fd, 0, "bad_fd"); + if (fd >= 0) + close(fd); + fd = -1; + + free(log_buf); +} + +static void bpf_btf_load_log_buf(void) +{ + LIBBPF_OPTS(bpf_btf_load_opts, opts); + const size_t log_buf_sz = 1024 * 1024; + const void *raw_btf_data; + __u32 raw_btf_size; + struct btf *btf; + char *log_buf = NULL; + int fd = -1; + + btf = btf__new_empty(); + if (!ASSERT_OK_PTR(btf, "empty_btf")) + return; + + ASSERT_GT(btf__add_int(btf, "int", 4, 0), 0, "int_type"); + + raw_btf_data = btf__raw_data(btf, &raw_btf_size); + if (!ASSERT_OK_PTR(raw_btf_data, "raw_btf_data_good")) + goto cleanup; + + log_buf = malloc(log_buf_sz); + if (!ASSERT_OK_PTR(log_buf, "log_buf_alloc")) + goto cleanup; + opts.log_buf = log_buf; + opts.log_size = log_buf_sz; + + /* with log_level == 0 log_buf shoud stay empty for good BTF */ + log_buf[0] = '\0'; + opts.log_level = 0; + fd = bpf_btf_load(raw_btf_data, raw_btf_size, &opts); + ASSERT_STREQ(log_buf, "", "good_log_0"); + ASSERT_GE(fd, 0, "good_fd1"); + if (fd >= 0) + close(fd); + fd = -1; + + /* log_level == 2 should always fill log_buf, even for good BTF */ + log_buf[0] = '\0'; + opts.log_level = 2; + fd = bpf_btf_load(raw_btf_data, raw_btf_size, &opts); + printf("LOG_BUF: %s\n", log_buf); + ASSERT_OK_PTR(strstr(log_buf, "magic: 0xeb9f"), "good_log_2"); + ASSERT_GE(fd, 0, "good_fd2"); + if (fd >= 0) + close(fd); + fd = -1; + + /* make BTF bad, add pointer pointing to non-existing type */ + ASSERT_GT(btf__add_ptr(btf, 100), 0, "bad_ptr_type"); + + raw_btf_data = btf__raw_data(btf, &raw_btf_size); + if (!ASSERT_OK_PTR(raw_btf_data, "raw_btf_data_bad")) + goto cleanup; + + /* log_level == 0 should fill log_buf for bad BTF */ + log_buf[0] = '\0'; + opts.log_level = 0; + fd = bpf_btf_load(raw_btf_data, raw_btf_size, &opts); + printf("LOG_BUF: %s\n", log_buf); + ASSERT_OK_PTR(strstr(log_buf, "[2] PTR (anon) type_id=100 Invalid type_id"), "bad_log_0"); + ASSERT_LT(fd, 0, "bad_fd"); + if (fd >= 0) + close(fd); + fd = -1; + +cleanup: + free(log_buf); + btf__free(btf); +} + +void test_log_buf(void) +{ + if (test__start_subtest("obj_load_log_buf")) + obj_load_log_buf(); + if (test__start_subtest("bpf_prog_load_log_buf")) + bpf_prog_load_log_buf(); + if (test__start_subtest("bpf_btf_load_log_buf")) + bpf_btf_load_log_buf(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/log_fixup.c b/tools/testing/selftests/bpf/prog_tests/log_fixup.c new file mode 100644 index 000000000000..90a98e23be61 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/log_fixup.c @@ -0,0 +1,181 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include <bpf/btf.h> + +#include "test_log_fixup.skel.h" + +enum trunc_type { + TRUNC_NONE, + TRUNC_PARTIAL, + TRUNC_FULL, +}; + +static void bad_core_relo(size_t log_buf_size, enum trunc_type trunc_type) +{ + char log_buf[8 * 1024]; + struct test_log_fixup* skel; + int err; + + skel = test_log_fixup__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bpf_program__set_autoload(skel->progs.bad_relo, true); + memset(log_buf, 0, sizeof(log_buf)); + bpf_program__set_log_buf(skel->progs.bad_relo, log_buf, log_buf_size ?: sizeof(log_buf)); + bpf_program__set_log_level(skel->progs.bad_relo, 1 | 8); /* BPF_LOG_FIXED to force truncation */ + + err = test_log_fixup__load(skel); + if (!ASSERT_ERR(err, "load_fail")) + goto cleanup; + + ASSERT_HAS_SUBSTR(log_buf, + "0: <invalid CO-RE relocation>\n" + "failed to resolve CO-RE relocation <byte_sz> ", + "log_buf_part1"); + + switch (trunc_type) { + case TRUNC_NONE: + ASSERT_HAS_SUBSTR(log_buf, + "struct task_struct___bad.fake_field (0:1 @ offset 4)\n", + "log_buf_part2"); + ASSERT_HAS_SUBSTR(log_buf, + "max_states_per_insn 0 total_states 0 peak_states 0 mark_read 0\n", + "log_buf_end"); + break; + case TRUNC_PARTIAL: + /* we should get full libbpf message patch */ + ASSERT_HAS_SUBSTR(log_buf, + "struct task_struct___bad.fake_field (0:1 @ offset 4)\n", + "log_buf_part2"); + /* we shouldn't get full end of BPF verifier log */ + ASSERT_NULL(strstr(log_buf, "max_states_per_insn 0 total_states 0 peak_states 0 mark_read 0\n"), + "log_buf_end"); + break; + case TRUNC_FULL: + /* we shouldn't get second part of libbpf message patch */ + ASSERT_NULL(strstr(log_buf, "struct task_struct___bad.fake_field (0:1 @ offset 4)\n"), + "log_buf_part2"); + /* we shouldn't get full end of BPF verifier log */ + ASSERT_NULL(strstr(log_buf, "max_states_per_insn 0 total_states 0 peak_states 0 mark_read 0\n"), + "log_buf_end"); + break; + } + + if (env.verbosity > VERBOSE_NONE) + printf("LOG: \n=================\n%s=================\n", log_buf); +cleanup: + test_log_fixup__destroy(skel); +} + +static void bad_core_relo_subprog(void) +{ + char log_buf[8 * 1024]; + struct test_log_fixup* skel; + int err; + + skel = test_log_fixup__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bpf_program__set_autoload(skel->progs.bad_relo_subprog, true); + bpf_program__set_log_buf(skel->progs.bad_relo_subprog, log_buf, sizeof(log_buf)); + + err = test_log_fixup__load(skel); + if (!ASSERT_ERR(err, "load_fail")) + goto cleanup; + + ASSERT_HAS_SUBSTR(log_buf, + ": <invalid CO-RE relocation>\n" + "failed to resolve CO-RE relocation <byte_off> ", + "log_buf"); + ASSERT_HAS_SUBSTR(log_buf, + "struct task_struct___bad.fake_field_subprog (0:2 @ offset 8)\n", + "log_buf"); + + if (env.verbosity > VERBOSE_NONE) + printf("LOG: \n=================\n%s=================\n", log_buf); + +cleanup: + test_log_fixup__destroy(skel); +} + +static void missing_map(void) +{ + char log_buf[8 * 1024]; + struct test_log_fixup* skel; + int err; + + skel = test_log_fixup__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bpf_map__set_autocreate(skel->maps.missing_map, false); + + bpf_program__set_autoload(skel->progs.use_missing_map, true); + bpf_program__set_log_buf(skel->progs.use_missing_map, log_buf, sizeof(log_buf)); + + err = test_log_fixup__load(skel); + if (!ASSERT_ERR(err, "load_fail")) + goto cleanup; + + ASSERT_TRUE(bpf_map__autocreate(skel->maps.existing_map), "existing_map_autocreate"); + ASSERT_FALSE(bpf_map__autocreate(skel->maps.missing_map), "missing_map_autocreate"); + + ASSERT_HAS_SUBSTR(log_buf, + ": <invalid BPF map reference>\n" + "BPF map 'missing_map' is referenced but wasn't created\n", + "log_buf"); + + if (env.verbosity > VERBOSE_NONE) + printf("LOG: \n=================\n%s=================\n", log_buf); + +cleanup: + test_log_fixup__destroy(skel); +} + +static void missing_kfunc(void) +{ + char log_buf[8 * 1024]; + struct test_log_fixup* skel; + int err; + + skel = test_log_fixup__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bpf_program__set_autoload(skel->progs.use_missing_kfunc, true); + bpf_program__set_log_buf(skel->progs.use_missing_kfunc, log_buf, sizeof(log_buf)); + + err = test_log_fixup__load(skel); + if (!ASSERT_ERR(err, "load_fail")) + goto cleanup; + + ASSERT_HAS_SUBSTR(log_buf, + "0: <invalid kfunc call>\n" + "kfunc 'bpf_nonexistent_kfunc' is referenced but wasn't resolved\n", + "log_buf"); + + if (env.verbosity > VERBOSE_NONE) + printf("LOG: \n=================\n%s=================\n", log_buf); + +cleanup: + test_log_fixup__destroy(skel); +} + +void test_log_fixup(void) +{ + if (test__start_subtest("bad_core_relo_trunc_none")) + bad_core_relo(0, TRUNC_NONE /* full buf */); + if (test__start_subtest("bad_core_relo_trunc_partial")) + bad_core_relo(300, TRUNC_PARTIAL /* truncate original log a bit */); + if (test__start_subtest("bad_core_relo_trunc_full")) + bad_core_relo(240, TRUNC_FULL /* truncate also libbpf's message patch */); + if (test__start_subtest("bad_core_relo_subprog")) + bad_core_relo_subprog(); + if (test__start_subtest("missing_map")) + missing_map(); + if (test__start_subtest("missing_kfunc")) + missing_kfunc(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/lookup_and_delete.c b/tools/testing/selftests/bpf/prog_tests/lookup_and_delete.c new file mode 100644 index 000000000000..a767bb4a271c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/lookup_and_delete.c @@ -0,0 +1,291 @@ +// SPDX-License-Identifier: GPL-2.0-only + +#include <test_progs.h> +#include "test_lookup_and_delete.skel.h" + +#define START_VALUE 1234 +#define NEW_VALUE 4321 +#define MAX_ENTRIES 2 + +static int duration; +static int nr_cpus; + +static int fill_values(int map_fd) +{ + __u64 key, value = START_VALUE; + int err; + + for (key = 1; key < MAX_ENTRIES + 1; key++) { + err = bpf_map_update_elem(map_fd, &key, &value, BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem")) + return -1; + } + + return 0; +} + +static int fill_values_percpu(int map_fd) +{ + __u64 key, value[nr_cpus]; + int i, err; + + for (i = 0; i < nr_cpus; i++) + value[i] = START_VALUE; + + for (key = 1; key < MAX_ENTRIES + 1; key++) { + err = bpf_map_update_elem(map_fd, &key, value, BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem")) + return -1; + } + + return 0; +} + +static struct test_lookup_and_delete *setup_prog(enum bpf_map_type map_type, + int *map_fd) +{ + struct test_lookup_and_delete *skel; + int err; + + skel = test_lookup_and_delete__open(); + if (!ASSERT_OK_PTR(skel, "test_lookup_and_delete__open")) + return NULL; + + err = bpf_map__set_type(skel->maps.hash_map, map_type); + if (!ASSERT_OK(err, "bpf_map__set_type")) + goto cleanup; + + err = bpf_map__set_max_entries(skel->maps.hash_map, MAX_ENTRIES); + if (!ASSERT_OK(err, "bpf_map__set_max_entries")) + goto cleanup; + + err = test_lookup_and_delete__load(skel); + if (!ASSERT_OK(err, "test_lookup_and_delete__load")) + goto cleanup; + + *map_fd = bpf_map__fd(skel->maps.hash_map); + if (!ASSERT_GE(*map_fd, 0, "bpf_map__fd")) + goto cleanup; + + return skel; + +cleanup: + test_lookup_and_delete__destroy(skel); + return NULL; +} + +/* Triggers BPF program that updates map with given key and value */ +static int trigger_tp(struct test_lookup_and_delete *skel, __u64 key, + __u64 value) +{ + int err; + + skel->bss->set_pid = getpid(); + skel->bss->set_key = key; + skel->bss->set_value = value; + + err = test_lookup_and_delete__attach(skel); + if (!ASSERT_OK(err, "test_lookup_and_delete__attach")) + return -1; + + syscall(__NR_getpgid); + + test_lookup_and_delete__detach(skel); + + return 0; +} + +static void test_lookup_and_delete_hash(void) +{ + struct test_lookup_and_delete *skel; + __u64 key, value; + int map_fd, err; + + /* Setup program and fill the map. */ + skel = setup_prog(BPF_MAP_TYPE_HASH, &map_fd); + if (!ASSERT_OK_PTR(skel, "setup_prog")) + return; + + err = fill_values(map_fd); + if (!ASSERT_OK(err, "fill_values")) + goto cleanup; + + /* Lookup and delete element. */ + key = 1; + err = bpf_map__lookup_and_delete_elem(skel->maps.hash_map, + &key, sizeof(key), &value, sizeof(value), 0); + if (!ASSERT_OK(err, "bpf_map_lookup_and_delete_elem")) + goto cleanup; + + /* Fetched value should match the initially set value. */ + if (CHECK(value != START_VALUE, "bpf_map_lookup_and_delete_elem", + "unexpected value=%lld\n", value)) + goto cleanup; + + /* Check that the entry is non existent. */ + err = bpf_map_lookup_elem(map_fd, &key, &value); + if (!ASSERT_ERR(err, "bpf_map_lookup_elem")) + goto cleanup; + +cleanup: + test_lookup_and_delete__destroy(skel); +} + +static void test_lookup_and_delete_percpu_hash(void) +{ + struct test_lookup_and_delete *skel; + __u64 key, val, value[nr_cpus]; + int map_fd, err, i; + + /* Setup program and fill the map. */ + skel = setup_prog(BPF_MAP_TYPE_PERCPU_HASH, &map_fd); + if (!ASSERT_OK_PTR(skel, "setup_prog")) + return; + + err = fill_values_percpu(map_fd); + if (!ASSERT_OK(err, "fill_values_percpu")) + goto cleanup; + + /* Lookup and delete element. */ + key = 1; + err = bpf_map__lookup_and_delete_elem(skel->maps.hash_map, + &key, sizeof(key), value, sizeof(value), 0); + if (!ASSERT_OK(err, "bpf_map_lookup_and_delete_elem")) + goto cleanup; + + for (i = 0; i < nr_cpus; i++) { + val = value[i]; + + /* Fetched value should match the initially set value. */ + if (CHECK(val != START_VALUE, "map value", + "unexpected for cpu %d: %lld\n", i, val)) + goto cleanup; + } + + /* Check that the entry is non existent. */ + err = bpf_map_lookup_elem(map_fd, &key, value); + if (!ASSERT_ERR(err, "bpf_map_lookup_elem")) + goto cleanup; + +cleanup: + test_lookup_and_delete__destroy(skel); +} + +static void test_lookup_and_delete_lru_hash(void) +{ + struct test_lookup_and_delete *skel; + __u64 key, value; + int map_fd, err; + + /* Setup program and fill the LRU map. */ + skel = setup_prog(BPF_MAP_TYPE_LRU_HASH, &map_fd); + if (!ASSERT_OK_PTR(skel, "setup_prog")) + return; + + err = fill_values(map_fd); + if (!ASSERT_OK(err, "fill_values")) + goto cleanup; + + /* Insert new element at key=3, should reuse LRU element. */ + key = 3; + err = trigger_tp(skel, key, NEW_VALUE); + if (!ASSERT_OK(err, "trigger_tp")) + goto cleanup; + + /* Lookup and delete element 3. */ + err = bpf_map__lookup_and_delete_elem(skel->maps.hash_map, + &key, sizeof(key), &value, sizeof(value), 0); + if (!ASSERT_OK(err, "bpf_map_lookup_and_delete_elem")) + goto cleanup; + + /* Value should match the new value. */ + if (CHECK(value != NEW_VALUE, "bpf_map_lookup_and_delete_elem", + "unexpected value=%lld\n", value)) + goto cleanup; + + /* Check that entries 3 and 1 are non existent. */ + err = bpf_map_lookup_elem(map_fd, &key, &value); + if (!ASSERT_ERR(err, "bpf_map_lookup_elem")) + goto cleanup; + + key = 1; + err = bpf_map_lookup_elem(map_fd, &key, &value); + if (!ASSERT_ERR(err, "bpf_map_lookup_elem")) + goto cleanup; + +cleanup: + test_lookup_and_delete__destroy(skel); +} + +static void test_lookup_and_delete_lru_percpu_hash(void) +{ + struct test_lookup_and_delete *skel; + __u64 key, val, value[nr_cpus]; + int map_fd, err, i, cpucnt = 0; + + /* Setup program and fill the LRU map. */ + skel = setup_prog(BPF_MAP_TYPE_LRU_PERCPU_HASH, &map_fd); + if (!ASSERT_OK_PTR(skel, "setup_prog")) + return; + + err = fill_values_percpu(map_fd); + if (!ASSERT_OK(err, "fill_values_percpu")) + goto cleanup; + + /* Insert new element at key=3, should reuse LRU element 1. */ + key = 3; + err = trigger_tp(skel, key, NEW_VALUE); + if (!ASSERT_OK(err, "trigger_tp")) + goto cleanup; + + /* Clean value. */ + for (i = 0; i < nr_cpus; i++) + value[i] = 0; + + /* Lookup and delete element 3. */ + err = bpf_map__lookup_and_delete_elem(skel->maps.hash_map, + &key, sizeof(key), value, sizeof(value), 0); + if (!ASSERT_OK(err, "bpf_map_lookup_and_delete_elem")) + goto cleanup; + + /* Check if only one CPU has set the value. */ + for (i = 0; i < nr_cpus; i++) { + val = value[i]; + if (val) { + if (CHECK(val != NEW_VALUE, "map value", + "unexpected for cpu %d: %lld\n", i, val)) + goto cleanup; + cpucnt++; + } + } + if (CHECK(cpucnt != 1, "map value", "set for %d CPUs instead of 1!\n", + cpucnt)) + goto cleanup; + + /* Check that entries 3 and 1 are non existent. */ + err = bpf_map_lookup_elem(map_fd, &key, &value); + if (!ASSERT_ERR(err, "bpf_map_lookup_elem")) + goto cleanup; + + key = 1; + err = bpf_map_lookup_elem(map_fd, &key, &value); + if (!ASSERT_ERR(err, "bpf_map_lookup_elem")) + goto cleanup; + +cleanup: + test_lookup_and_delete__destroy(skel); +} + +void test_lookup_and_delete(void) +{ + nr_cpus = bpf_num_possible_cpus(); + + if (test__start_subtest("lookup_and_delete")) + test_lookup_and_delete_hash(); + if (test__start_subtest("lookup_and_delete_percpu")) + test_lookup_and_delete_percpu_hash(); + if (test__start_subtest("lookup_and_delete_lru")) + test_lookup_and_delete_lru_hash(); + if (test__start_subtest("lookup_and_delete_lru_percpu")) + test_lookup_and_delete_lru_percpu_hash(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/lookup_key.c b/tools/testing/selftests/bpf/prog_tests/lookup_key.c new file mode 100644 index 000000000000..68025e88f352 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/lookup_key.c @@ -0,0 +1,112 @@ +// SPDX-License-Identifier: GPL-2.0 + +/* + * Copyright (C) 2022 Huawei Technologies Duesseldorf GmbH + * + * Author: Roberto Sassu <roberto.sassu@huawei.com> + */ + +#include <linux/keyctl.h> +#include <test_progs.h> + +#include "test_lookup_key.skel.h" + +#define KEY_LOOKUP_CREATE 0x01 +#define KEY_LOOKUP_PARTIAL 0x02 + +static bool kfunc_not_supported; + +static int libbpf_print_cb(enum libbpf_print_level level, const char *fmt, + va_list args) +{ + char *func; + + if (strcmp(fmt, "libbpf: extern (func ksym) '%s': not found in kernel or module BTFs\n")) + return 0; + + func = va_arg(args, char *); + + if (strcmp(func, "bpf_lookup_user_key") && strcmp(func, "bpf_key_put") && + strcmp(func, "bpf_lookup_system_key")) + return 0; + + kfunc_not_supported = true; + return 0; +} + +void test_lookup_key(void) +{ + libbpf_print_fn_t old_print_cb; + struct test_lookup_key *skel; + __u32 next_id; + int ret; + + skel = test_lookup_key__open(); + if (!ASSERT_OK_PTR(skel, "test_lookup_key__open")) + return; + + old_print_cb = libbpf_set_print(libbpf_print_cb); + ret = test_lookup_key__load(skel); + libbpf_set_print(old_print_cb); + + if (ret < 0 && kfunc_not_supported) { + printf("%s:SKIP:bpf_lookup_*_key(), bpf_key_put() kfuncs not supported\n", + __func__); + test__skip(); + goto close_prog; + } + + if (!ASSERT_OK(ret, "test_lookup_key__load")) + goto close_prog; + + ret = test_lookup_key__attach(skel); + if (!ASSERT_OK(ret, "test_lookup_key__attach")) + goto close_prog; + + skel->bss->monitored_pid = getpid(); + skel->bss->key_serial = KEY_SPEC_THREAD_KEYRING; + + /* The thread-specific keyring does not exist, this test fails. */ + skel->bss->flags = 0; + + ret = bpf_prog_get_next_id(0, &next_id); + if (!ASSERT_LT(ret, 0, "bpf_prog_get_next_id")) + goto close_prog; + + /* Force creation of the thread-specific keyring, this test succeeds. */ + skel->bss->flags = KEY_LOOKUP_CREATE; + + ret = bpf_prog_get_next_id(0, &next_id); + if (!ASSERT_OK(ret, "bpf_prog_get_next_id")) + goto close_prog; + + /* Pass both lookup flags for parameter validation. */ + skel->bss->flags = KEY_LOOKUP_CREATE | KEY_LOOKUP_PARTIAL; + + ret = bpf_prog_get_next_id(0, &next_id); + if (!ASSERT_OK(ret, "bpf_prog_get_next_id")) + goto close_prog; + + /* Pass invalid flags. */ + skel->bss->flags = UINT64_MAX; + + ret = bpf_prog_get_next_id(0, &next_id); + if (!ASSERT_LT(ret, 0, "bpf_prog_get_next_id")) + goto close_prog; + + skel->bss->key_serial = 0; + skel->bss->key_id = 1; + + ret = bpf_prog_get_next_id(0, &next_id); + if (!ASSERT_OK(ret, "bpf_prog_get_next_id")) + goto close_prog; + + skel->bss->key_id = UINT32_MAX; + + ret = bpf_prog_get_next_id(0, &next_id); + ASSERT_LT(ret, 0, "bpf_prog_get_next_id"); + +close_prog: + skel->bss->monitored_pid = 0; + test_lookup_key__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/lru_bug.c b/tools/testing/selftests/bpf/prog_tests/lru_bug.c new file mode 100644 index 000000000000..3c7822390827 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/lru_bug.c @@ -0,0 +1,21 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> + +#include "lru_bug.skel.h" + +void test_lru_bug(void) +{ + struct lru_bug *skel; + int ret; + + skel = lru_bug__open_and_load(); + if (!ASSERT_OK_PTR(skel, "lru_bug__open_and_load")) + return; + ret = lru_bug__attach(skel); + if (!ASSERT_OK(ret, "lru_bug__attach")) + goto end; + usleep(1); + ASSERT_OK(skel->data->result, "prealloc_lru_pop doesn't call check_and_init_map_value"); +end: + lru_bug__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/lsm_cgroup.c b/tools/testing/selftests/bpf/prog_tests/lsm_cgroup.c new file mode 100644 index 000000000000..130a3b21e467 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/lsm_cgroup.c @@ -0,0 +1,323 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <sys/types.h> +#include <sys/socket.h> +#include <test_progs.h> +#include <bpf/btf.h> + +#include "lsm_cgroup.skel.h" +#include "lsm_cgroup_nonvoid.skel.h" +#include "cgroup_helpers.h" +#include "network_helpers.h" + +#ifndef ENOTSUPP +#define ENOTSUPP 524 +#endif + +static struct btf *btf; + +static __u32 query_prog_cnt(int cgroup_fd, const char *attach_func) +{ + LIBBPF_OPTS(bpf_prog_query_opts, p); + int cnt = 0; + int i; + + ASSERT_OK(bpf_prog_query_opts(cgroup_fd, BPF_LSM_CGROUP, &p), "prog_query"); + + if (!attach_func) + return p.prog_cnt; + + /* When attach_func is provided, count the number of progs that + * attach to the given symbol. + */ + + if (!btf) + btf = btf__load_vmlinux_btf(); + if (!ASSERT_OK(libbpf_get_error(btf), "btf_vmlinux")) + return -1; + + p.prog_ids = malloc(sizeof(u32) * p.prog_cnt); + p.prog_attach_flags = malloc(sizeof(u32) * p.prog_cnt); + ASSERT_OK(bpf_prog_query_opts(cgroup_fd, BPF_LSM_CGROUP, &p), "prog_query"); + + for (i = 0; i < p.prog_cnt; i++) { + struct bpf_prog_info info = {}; + __u32 info_len = sizeof(info); + int fd; + + fd = bpf_prog_get_fd_by_id(p.prog_ids[i]); + ASSERT_GE(fd, 0, "prog_get_fd_by_id"); + ASSERT_OK(bpf_prog_get_info_by_fd(fd, &info, &info_len), + "prog_info_by_fd"); + close(fd); + + if (info.attach_btf_id == + btf__find_by_name_kind(btf, attach_func, BTF_KIND_FUNC)) + cnt++; + } + + free(p.prog_ids); + free(p.prog_attach_flags); + + return cnt; +} + +static void test_lsm_cgroup_functional(void) +{ + DECLARE_LIBBPF_OPTS(bpf_prog_attach_opts, attach_opts); + DECLARE_LIBBPF_OPTS(bpf_link_update_opts, update_opts); + int cgroup_fd = -1, cgroup_fd2 = -1, cgroup_fd3 = -1; + int listen_fd, client_fd, accepted_fd; + struct lsm_cgroup *skel = NULL; + int post_create_prog_fd2 = -1; + int post_create_prog_fd = -1; + int bind_link_fd2 = -1; + int bind_prog_fd2 = -1; + int alloc_prog_fd = -1; + int bind_prog_fd = -1; + int bind_link_fd = -1; + int clone_prog_fd = -1; + int err, fd, prio; + socklen_t socklen; + + cgroup_fd3 = test__join_cgroup("/sock_policy_empty"); + if (!ASSERT_GE(cgroup_fd3, 0, "create empty cgroup")) + goto close_cgroup; + + cgroup_fd2 = test__join_cgroup("/sock_policy_reuse"); + if (!ASSERT_GE(cgroup_fd2, 0, "create cgroup for reuse")) + goto close_cgroup; + + cgroup_fd = test__join_cgroup("/sock_policy"); + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup")) + goto close_cgroup; + + skel = lsm_cgroup__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + goto close_cgroup; + + post_create_prog_fd = bpf_program__fd(skel->progs.socket_post_create); + post_create_prog_fd2 = bpf_program__fd(skel->progs.socket_post_create2); + bind_prog_fd = bpf_program__fd(skel->progs.socket_bind); + bind_prog_fd2 = bpf_program__fd(skel->progs.socket_bind2); + alloc_prog_fd = bpf_program__fd(skel->progs.socket_alloc); + clone_prog_fd = bpf_program__fd(skel->progs.socket_clone); + + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_sk_alloc_security"), 0, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd, NULL), 0, "total prog count"); + err = bpf_prog_attach(alloc_prog_fd, cgroup_fd, BPF_LSM_CGROUP, 0); + if (err == -ENOTSUPP) { + test__skip(); + goto close_cgroup; + } + if (!ASSERT_OK(err, "attach alloc_prog_fd")) + goto detach_cgroup; + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_sk_alloc_security"), 1, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd, NULL), 1, "total prog count"); + + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_inet_csk_clone"), 0, "prog count"); + err = bpf_prog_attach(clone_prog_fd, cgroup_fd, BPF_LSM_CGROUP, 0); + if (!ASSERT_OK(err, "attach clone_prog_fd")) + goto detach_cgroup; + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_inet_csk_clone"), 1, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd, NULL), 2, "total prog count"); + + /* Make sure replacing works. */ + + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_socket_post_create"), 0, "prog count"); + err = bpf_prog_attach(post_create_prog_fd, cgroup_fd, + BPF_LSM_CGROUP, 0); + if (!ASSERT_OK(err, "attach post_create_prog_fd")) + goto detach_cgroup; + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_socket_post_create"), 1, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd, NULL), 3, "total prog count"); + + attach_opts.replace_prog_fd = post_create_prog_fd; + err = bpf_prog_attach_opts(post_create_prog_fd2, cgroup_fd, + BPF_LSM_CGROUP, &attach_opts); + if (!ASSERT_OK(err, "prog replace post_create_prog_fd")) + goto detach_cgroup; + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_socket_post_create"), 1, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd, NULL), 3, "total prog count"); + + /* Try the same attach/replace via link API. */ + + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_socket_bind"), 0, "prog count"); + bind_link_fd = bpf_link_create(bind_prog_fd, cgroup_fd, + BPF_LSM_CGROUP, NULL); + if (!ASSERT_GE(bind_link_fd, 0, "link create bind_prog_fd")) + goto detach_cgroup; + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_socket_bind"), 1, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd, NULL), 4, "total prog count"); + + update_opts.old_prog_fd = bind_prog_fd; + update_opts.flags = BPF_F_REPLACE; + + err = bpf_link_update(bind_link_fd, bind_prog_fd2, &update_opts); + if (!ASSERT_OK(err, "link update bind_prog_fd")) + goto detach_cgroup; + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_socket_bind"), 1, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd, NULL), 4, "total prog count"); + + /* Attach another instance of bind program to another cgroup. + * This should trigger the reuse of the trampoline shim (two + * programs attaching to the same btf_id). + */ + + ASSERT_EQ(query_prog_cnt(cgroup_fd, "bpf_lsm_socket_bind"), 1, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd2, "bpf_lsm_socket_bind"), 0, "prog count"); + bind_link_fd2 = bpf_link_create(bind_prog_fd2, cgroup_fd2, + BPF_LSM_CGROUP, NULL); + if (!ASSERT_GE(bind_link_fd2, 0, "link create bind_prog_fd2")) + goto detach_cgroup; + ASSERT_EQ(query_prog_cnt(cgroup_fd2, "bpf_lsm_socket_bind"), 1, "prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd, NULL), 4, "total prog count"); + ASSERT_EQ(query_prog_cnt(cgroup_fd2, NULL), 1, "total prog count"); + + fd = socket(AF_UNIX, SOCK_STREAM, 0); + if (!(skel->kconfig->CONFIG_SECURITY_APPARMOR + || skel->kconfig->CONFIG_SECURITY_SELINUX + || skel->kconfig->CONFIG_SECURITY_SMACK)) + /* AF_UNIX is prohibited. */ + ASSERT_LT(fd, 0, "socket(AF_UNIX)"); + close(fd); + + /* AF_INET6 gets default policy (sk_priority). */ + + fd = socket(AF_INET6, SOCK_STREAM, 0); + if (!ASSERT_GE(fd, 0, "socket(SOCK_STREAM)")) + goto detach_cgroup; + + prio = 0; + socklen = sizeof(prio); + ASSERT_GE(getsockopt(fd, SOL_SOCKET, SO_PRIORITY, &prio, &socklen), 0, + "getsockopt"); + ASSERT_EQ(prio, 123, "sk_priority"); + + close(fd); + + /* TX-only AF_PACKET is allowed. */ + + ASSERT_LT(socket(AF_PACKET, SOCK_RAW, htons(ETH_P_ALL)), 0, + "socket(AF_PACKET, ..., ETH_P_ALL)"); + + fd = socket(AF_PACKET, SOCK_RAW, 0); + ASSERT_GE(fd, 0, "socket(AF_PACKET, ..., 0)"); + + /* TX-only AF_PACKET can not be rebound. */ + + struct sockaddr_ll sa = { + .sll_family = AF_PACKET, + .sll_protocol = htons(ETH_P_ALL), + }; + ASSERT_LT(bind(fd, (struct sockaddr *)&sa, sizeof(sa)), 0, + "bind(ETH_P_ALL)"); + + close(fd); + + /* Trigger passive open. */ + + listen_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + ASSERT_GE(listen_fd, 0, "start_server"); + client_fd = connect_to_fd(listen_fd, 0); + ASSERT_GE(client_fd, 0, "connect_to_fd"); + accepted_fd = accept(listen_fd, NULL, NULL); + ASSERT_GE(accepted_fd, 0, "accept"); + + prio = 0; + socklen = sizeof(prio); + ASSERT_GE(getsockopt(accepted_fd, SOL_SOCKET, SO_PRIORITY, &prio, &socklen), 0, + "getsockopt"); + ASSERT_EQ(prio, 234, "sk_priority"); + + /* These are replaced and never called. */ + ASSERT_EQ(skel->bss->called_socket_post_create, 0, "called_create"); + ASSERT_EQ(skel->bss->called_socket_bind, 0, "called_bind"); + + /* AF_INET6+SOCK_STREAM + * AF_PACKET+SOCK_RAW + * AF_UNIX+SOCK_RAW if already have non-bpf lsms installed + * listen_fd + * client_fd + * accepted_fd + */ + if (skel->kconfig->CONFIG_SECURITY_APPARMOR + || skel->kconfig->CONFIG_SECURITY_SELINUX + || skel->kconfig->CONFIG_SECURITY_SMACK) + /* AF_UNIX+SOCK_RAW if already have non-bpf lsms installed */ + ASSERT_EQ(skel->bss->called_socket_post_create2, 6, "called_create2"); + else + ASSERT_EQ(skel->bss->called_socket_post_create2, 5, "called_create2"); + + /* start_server + * bind(ETH_P_ALL) + */ + ASSERT_EQ(skel->bss->called_socket_bind2, 2, "called_bind2"); + /* Single accept(). */ + ASSERT_EQ(skel->bss->called_socket_clone, 1, "called_clone"); + + /* AF_UNIX+SOCK_STREAM (failed) + * AF_INET6+SOCK_STREAM + * AF_PACKET+SOCK_RAW (failed) + * AF_PACKET+SOCK_RAW + * listen_fd + * client_fd + * accepted_fd + */ + ASSERT_EQ(skel->bss->called_socket_alloc, 7, "called_alloc"); + + close(listen_fd); + close(client_fd); + close(accepted_fd); + + /* Make sure other cgroup doesn't trigger the programs. */ + + if (!ASSERT_OK(join_cgroup("/sock_policy_empty"), "join root cgroup")) + goto detach_cgroup; + + fd = socket(AF_INET6, SOCK_STREAM, 0); + if (!ASSERT_GE(fd, 0, "socket(SOCK_STREAM)")) + goto detach_cgroup; + + prio = 0; + socklen = sizeof(prio); + ASSERT_GE(getsockopt(fd, SOL_SOCKET, SO_PRIORITY, &prio, &socklen), 0, + "getsockopt"); + ASSERT_EQ(prio, 0, "sk_priority"); + + close(fd); + +detach_cgroup: + ASSERT_GE(bpf_prog_detach2(post_create_prog_fd2, cgroup_fd, + BPF_LSM_CGROUP), 0, "detach_create"); + close(bind_link_fd); + /* Don't close bind_link_fd2, exercise cgroup release cleanup. */ + ASSERT_GE(bpf_prog_detach2(alloc_prog_fd, cgroup_fd, + BPF_LSM_CGROUP), 0, "detach_alloc"); + ASSERT_GE(bpf_prog_detach2(clone_prog_fd, cgroup_fd, + BPF_LSM_CGROUP), 0, "detach_clone"); + +close_cgroup: + close(cgroup_fd); + close(cgroup_fd2); + close(cgroup_fd3); + lsm_cgroup__destroy(skel); +} + +static void test_lsm_cgroup_nonvoid(void) +{ + struct lsm_cgroup_nonvoid *skel = NULL; + + skel = lsm_cgroup_nonvoid__open_and_load(); + ASSERT_NULL(skel, "open succeeds"); + lsm_cgroup_nonvoid__destroy(skel); +} + +void test_lsm_cgroup(void) +{ + if (test__start_subtest("functional")) + test_lsm_cgroup_functional(); + if (test__start_subtest("nonvoid")) + test_lsm_cgroup_nonvoid(); + btf__free(btf); +} diff --git a/tools/testing/selftests/bpf/prog_tests/lwt_helpers.h b/tools/testing/selftests/bpf/prog_tests/lwt_helpers.h new file mode 100644 index 000000000000..fb1eb8c67361 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/lwt_helpers.h @@ -0,0 +1,138 @@ +/* SPDX-License-Identifier: GPL-2.0 */ + +#ifndef __LWT_HELPERS_H +#define __LWT_HELPERS_H + +#include <time.h> +#include <net/if.h> +#include <linux/if_tun.h> +#include <linux/icmp.h> + +#include "test_progs.h" + +#define log_err(MSG, ...) \ + fprintf(stderr, "(%s:%d: errno: %s) " MSG "\n", \ + __FILE__, __LINE__, strerror(errno), ##__VA_ARGS__) + +#define RUN_TEST(name) \ + ({ \ + if (test__start_subtest(#name)) \ + if (ASSERT_OK(netns_create(), "netns_create")) { \ + struct nstoken *token = open_netns(NETNS); \ + if (ASSERT_OK_PTR(token, "setns")) { \ + test_ ## name(); \ + close_netns(token); \ + } \ + netns_delete(); \ + } \ + }) + +static inline int netns_create(void) +{ + return system("ip netns add " NETNS); +} + +static inline int netns_delete(void) +{ + return system("ip netns del " NETNS ">/dev/null 2>&1"); +} + +static int open_tuntap(const char *dev_name, bool need_mac) +{ + int err = 0; + struct ifreq ifr; + int fd = open("/dev/net/tun", O_RDWR); + + if (!ASSERT_GT(fd, 0, "open(/dev/net/tun)")) + return -1; + + ifr.ifr_flags = IFF_NO_PI | (need_mac ? IFF_TAP : IFF_TUN); + strncpy(ifr.ifr_name, dev_name, IFNAMSIZ - 1); + ifr.ifr_name[IFNAMSIZ - 1] = '\0'; + + err = ioctl(fd, TUNSETIFF, &ifr); + if (!ASSERT_OK(err, "ioctl(TUNSETIFF)")) { + close(fd); + return -1; + } + + err = fcntl(fd, F_SETFL, O_NONBLOCK); + if (!ASSERT_OK(err, "fcntl(O_NONBLOCK)")) { + close(fd); + return -1; + } + + return fd; +} + +#define ICMP_PAYLOAD_SIZE 100 + +/* Match an ICMP packet with payload len ICMP_PAYLOAD_SIZE */ +static int __expect_icmp_ipv4(char *buf, ssize_t len) +{ + struct iphdr *ip = (struct iphdr *)buf; + struct icmphdr *icmp = (struct icmphdr *)(ip + 1); + ssize_t min_header_len = sizeof(*ip) + sizeof(*icmp); + + if (len < min_header_len) + return -1; + + if (ip->protocol != IPPROTO_ICMP) + return -1; + + if (icmp->type != ICMP_ECHO) + return -1; + + return len == ICMP_PAYLOAD_SIZE + min_header_len; +} + +typedef int (*filter_t) (char *, ssize_t); + +/* wait_for_packet - wait for a packet that matches the filter + * + * @fd: tun fd/packet socket to read packet + * @filter: filter function, returning 1 if matches + * @timeout: timeout to wait for the packet + * + * Returns 1 if a matching packet is read, 0 if timeout expired, -1 on error. + */ +static int wait_for_packet(int fd, filter_t filter, struct timeval *timeout) +{ + char buf[4096]; + int max_retry = 5; /* in case we read some spurious packets */ + fd_set fds; + + FD_ZERO(&fds); + while (max_retry--) { + /* Linux modifies timeout arg... So make a copy */ + struct timeval copied_timeout = *timeout; + ssize_t ret = -1; + + FD_SET(fd, &fds); + + ret = select(1 + fd, &fds, NULL, NULL, &copied_timeout); + if (ret <= 0) { + if (errno == EINTR) + continue; + else if (errno == EAGAIN || ret == 0) + return 0; + + log_err("select failed"); + return -1; + } + + ret = read(fd, buf, sizeof(buf)); + + if (ret <= 0) { + log_err("read(dev): %ld", ret); + return -1; + } + + if (filter && filter(buf, ret) > 0) + return 1; + } + + return 0; +} + +#endif /* __LWT_HELPERS_H */ diff --git a/tools/testing/selftests/bpf/prog_tests/lwt_redirect.c b/tools/testing/selftests/bpf/prog_tests/lwt_redirect.c new file mode 100644 index 000000000000..835a1d756c16 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/lwt_redirect.c @@ -0,0 +1,332 @@ +// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause + +/* + * Test suite of lwt_xmit BPF programs that redirect packets + * The file tests focus not only if these programs work as expected normally, + * but also if they can handle abnormal situations gracefully. + * + * WARNING + * ------- + * This test suite may crash the kernel, thus should be run in a VM. + * + * Setup: + * --------- + * All tests are performed in a single netns. Two lwt encap routes are setup for + * each subtest: + * + * ip route add 10.0.0.0/24 encap bpf xmit <obj> sec "<ingress_sec>" dev link_err + * ip route add 20.0.0.0/24 encap bpf xmit <obj> sec "<egress_sec>" dev link_err + * + * Here <obj> is statically defined to test_lwt_redirect.bpf.o, and each section + * of this object holds a program entry to test. The BPF object is built from + * progs/test_lwt_redirect.c. We didn't use generated BPF skeleton since the + * attachment for lwt programs are not supported by libbpf yet. + * + * For testing, ping commands are run in the test netns: + * + * ping 10.0.0.<ifindex> -c 1 -w 1 -s 100 + * ping 20.0.0.<ifindex> -c 1 -w 1 -s 100 + * + * Scenarios: + * -------------------------------- + * 1. Redirect to a running tap/tun device + * 2. Redirect to a down tap/tun device + * 3. Redirect to a vlan device with lower layer down + * + * Case 1, ping packets should be received by packet socket on target device + * when redirected to ingress, and by tun/tap fd when redirected to egress. + * + * Case 2,3 are considered successful as long as they do not crash the kernel + * as a regression. + * + * Case 1,2 use tap device to test redirect to device that requires MAC + * header, and tun device to test the case with no MAC header added. + */ +#include <sys/socket.h> +#include <net/if.h> +#include <linux/if_ether.h> +#include <linux/if_packet.h> +#include <linux/if_tun.h> +#include <linux/icmp.h> +#include <arpa/inet.h> +#include <unistd.h> +#include <errno.h> +#include <stdbool.h> +#include <stdlib.h> + +#define NETNS "ns_lwt_redirect" +#include "lwt_helpers.h" +#include "test_progs.h" +#include "network_helpers.h" + +#define BPF_OBJECT "test_lwt_redirect.bpf.o" +#define INGRESS_SEC(need_mac) ((need_mac) ? "redir_ingress" : "redir_ingress_nomac") +#define EGRESS_SEC(need_mac) ((need_mac) ? "redir_egress" : "redir_egress_nomac") +#define LOCAL_SRC "10.0.0.1" +#define CIDR_TO_INGRESS "10.0.0.0/24" +#define CIDR_TO_EGRESS "20.0.0.0/24" + +/* ping to redirect toward given dev, with last byte of dest IP being the target + * device index. + * + * Note: ping command inside BPF-CI is busybox version, so it does not have certain + * function, such like -m option to set packet mark. + */ +static void ping_dev(const char *dev, bool is_ingress) +{ + int link_index = if_nametoindex(dev); + char ip[256]; + + if (!ASSERT_GE(link_index, 0, "if_nametoindex")) + return; + + if (is_ingress) + snprintf(ip, sizeof(ip), "10.0.0.%d", link_index); + else + snprintf(ip, sizeof(ip), "20.0.0.%d", link_index); + + /* We won't get a reply. Don't fail here */ + SYS_NOFAIL("ping %s -c1 -W1 -s %d", + ip, ICMP_PAYLOAD_SIZE); +} + +static int new_packet_sock(const char *ifname) +{ + int err = 0; + int ignore_outgoing = 1; + int ifindex = -1; + int s = -1; + + s = socket(AF_PACKET, SOCK_RAW, 0); + if (!ASSERT_GE(s, 0, "socket(AF_PACKET)")) + return -1; + + ifindex = if_nametoindex(ifname); + if (!ASSERT_GE(ifindex, 0, "if_nametoindex")) { + close(s); + return -1; + } + + struct sockaddr_ll addr = { + .sll_family = AF_PACKET, + .sll_protocol = htons(ETH_P_IP), + .sll_ifindex = ifindex, + }; + + err = bind(s, (struct sockaddr *)&addr, sizeof(addr)); + if (!ASSERT_OK(err, "bind(AF_PACKET)")) { + close(s); + return -1; + } + + /* Use packet socket to capture only the ingress, so we can distinguish + * the case where a regression that actually redirects the packet to + * the egress. + */ + err = setsockopt(s, SOL_PACKET, PACKET_IGNORE_OUTGOING, + &ignore_outgoing, sizeof(ignore_outgoing)); + if (!ASSERT_OK(err, "setsockopt(PACKET_IGNORE_OUTGOING)")) { + close(s); + return -1; + } + + err = fcntl(s, F_SETFL, O_NONBLOCK); + if (!ASSERT_OK(err, "fcntl(O_NONBLOCK)")) { + close(s); + return -1; + } + + return s; +} + +static int expect_icmp(char *buf, ssize_t len) +{ + struct ethhdr *eth = (struct ethhdr *)buf; + + if (len < (ssize_t)sizeof(*eth)) + return -1; + + if (eth->h_proto == htons(ETH_P_IP)) + return __expect_icmp_ipv4((char *)(eth + 1), len - sizeof(*eth)); + + return -1; +} + +static int expect_icmp_nomac(char *buf, ssize_t len) +{ + return __expect_icmp_ipv4(buf, len); +} + +static void send_and_capture_test_packets(const char *test_name, int tap_fd, + const char *target_dev, bool need_mac) +{ + int psock = -1; + struct timeval timeo = { + .tv_sec = 0, + .tv_usec = 250000, + }; + int ret = -1; + + filter_t filter = need_mac ? expect_icmp : expect_icmp_nomac; + + ping_dev(target_dev, false); + + ret = wait_for_packet(tap_fd, filter, &timeo); + if (!ASSERT_EQ(ret, 1, "wait_for_epacket")) { + log_err("%s egress test fails", test_name); + goto out; + } + + psock = new_packet_sock(target_dev); + ping_dev(target_dev, true); + + ret = wait_for_packet(psock, filter, &timeo); + if (!ASSERT_EQ(ret, 1, "wait_for_ipacket")) { + log_err("%s ingress test fails", test_name); + goto out; + } + +out: + if (psock >= 0) + close(psock); +} + +static int setup_redirect_target(const char *target_dev, bool need_mac) +{ + int target_index = -1; + int tap_fd = -1; + + tap_fd = open_tuntap(target_dev, need_mac); + if (!ASSERT_GE(tap_fd, 0, "open_tuntap")) + goto fail; + + target_index = if_nametoindex(target_dev); + if (!ASSERT_GE(target_index, 0, "if_nametoindex")) + goto fail; + + SYS(fail, "sysctl -w net.ipv6.conf.all.disable_ipv6=1"); + SYS(fail, "ip link add link_err type dummy"); + SYS(fail, "ip link set lo up"); + SYS(fail, "ip addr add dev lo " LOCAL_SRC "/32"); + SYS(fail, "ip link set link_err up"); + SYS(fail, "ip link set %s up", target_dev); + + SYS(fail, "ip route add %s dev link_err encap bpf xmit obj %s sec %s", + CIDR_TO_INGRESS, BPF_OBJECT, INGRESS_SEC(need_mac)); + + SYS(fail, "ip route add %s dev link_err encap bpf xmit obj %s sec %s", + CIDR_TO_EGRESS, BPF_OBJECT, EGRESS_SEC(need_mac)); + + return tap_fd; + +fail: + if (tap_fd >= 0) + close(tap_fd); + return -1; +} + +static void test_lwt_redirect_normal(void) +{ + const char *target_dev = "tap0"; + int tap_fd = -1; + bool need_mac = true; + + tap_fd = setup_redirect_target(target_dev, need_mac); + if (!ASSERT_GE(tap_fd, 0, "setup_redirect_target")) + return; + + send_and_capture_test_packets(__func__, tap_fd, target_dev, need_mac); + close(tap_fd); +} + +static void test_lwt_redirect_normal_nomac(void) +{ + const char *target_dev = "tun0"; + int tap_fd = -1; + bool need_mac = false; + + tap_fd = setup_redirect_target(target_dev, need_mac); + if (!ASSERT_GE(tap_fd, 0, "setup_redirect_target")) + return; + + send_and_capture_test_packets(__func__, tap_fd, target_dev, need_mac); + close(tap_fd); +} + +/* This test aims to prevent regression of future. As long as the kernel does + * not panic, it is considered as success. + */ +static void __test_lwt_redirect_dev_down(bool need_mac) +{ + const char *target_dev = "tap0"; + int tap_fd = -1; + + tap_fd = setup_redirect_target(target_dev, need_mac); + if (!ASSERT_GE(tap_fd, 0, "setup_redirect_target")) + return; + + SYS(out, "ip link set %s down", target_dev); + ping_dev(target_dev, true); + ping_dev(target_dev, false); + +out: + close(tap_fd); +} + +static void test_lwt_redirect_dev_down(void) +{ + __test_lwt_redirect_dev_down(true); +} + +static void test_lwt_redirect_dev_down_nomac(void) +{ + __test_lwt_redirect_dev_down(false); +} + +/* This test aims to prevent regression of future. As long as the kernel does + * not panic, it is considered as success. + */ +static void test_lwt_redirect_dev_carrier_down(void) +{ + const char *lower_dev = "tap0"; + const char *vlan_dev = "vlan100"; + int tap_fd = -1; + + tap_fd = setup_redirect_target(lower_dev, true); + if (!ASSERT_GE(tap_fd, 0, "setup_redirect_target")) + return; + + SYS(out, "ip link add vlan100 link %s type vlan id 100", lower_dev); + SYS(out, "ip link set %s up", vlan_dev); + SYS(out, "ip link set %s down", lower_dev); + ping_dev(vlan_dev, true); + ping_dev(vlan_dev, false); + +out: + close(tap_fd); +} + +static void *test_lwt_redirect_run(void *arg) +{ + netns_delete(); + RUN_TEST(lwt_redirect_normal); + RUN_TEST(lwt_redirect_normal_nomac); + RUN_TEST(lwt_redirect_dev_down); + RUN_TEST(lwt_redirect_dev_down_nomac); + RUN_TEST(lwt_redirect_dev_carrier_down); + return NULL; +} + +void test_lwt_redirect(void) +{ + pthread_t test_thread; + int err; + + /* Run the tests in their own thread to isolate the namespace changes + * so they do not affect the environment of other tests. + * (specifically needed because of unshare(CLONE_NEWNS) in open_netns()) + */ + err = pthread_create(&test_thread, NULL, &test_lwt_redirect_run, NULL); + if (ASSERT_OK(err, "pthread_create")) + ASSERT_OK(pthread_join(test_thread, NULL), "pthread_join"); +} diff --git a/tools/testing/selftests/bpf/prog_tests/lwt_reroute.c b/tools/testing/selftests/bpf/prog_tests/lwt_reroute.c new file mode 100644 index 000000000000..03825d2b45a8 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/lwt_reroute.c @@ -0,0 +1,263 @@ +// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause + +/* + * Test suite of lwt BPF programs that reroutes packets + * The file tests focus not only if these programs work as expected normally, + * but also if they can handle abnormal situations gracefully. This test + * suite currently only covers lwt_xmit hook. lwt_in tests have not been + * implemented. + * + * WARNING + * ------- + * This test suite can crash the kernel, thus should be run in a VM. + * + * Setup: + * --------- + * all tests are performed in a single netns. A lwt encap route is setup for + * each subtest: + * + * ip route add 10.0.0.0/24 encap bpf xmit <obj> sec "<section_N>" dev link_err + * + * Here <obj> is statically defined to test_lwt_reroute.bpf.o, and it contains + * a single test program entry. This program sets packet mark by last byte of + * the IPv4 daddr. For example, a packet going to 1.2.3.4 will receive a skb + * mark 4. A packet will only be marked once, and IP x.x.x.0 will be skipped + * to avoid route loop. We didn't use generated BPF skeleton since the + * attachment for lwt programs are not supported by libbpf yet. + * + * The test program will bring up a tun device, and sets up the following + * routes: + * + * ip rule add pref 100 from all fwmark <tun_index> lookup 100 + * ip route add table 100 default dev tun0 + * + * For normal testing, a ping command is running in the test netns: + * + * ping 10.0.0.<tun_index> -c 1 -w 1 -s 100 + * + * For abnormal testing, fq is used as the qdisc of the tun device. Then a UDP + * socket will try to overflow the fq queue and trigger qdisc drop error. + * + * Scenarios: + * -------------------------------- + * 1. Reroute to a running tun device + * 2. Reroute to a device where qdisc drop + * + * For case 1, ping packets should be received by the tun device. + * + * For case 2, force UDP packets to overflow fq limit. As long as kernel + * is not crashed, it is considered successful. + */ +#define NETNS "ns_lwt_reroute" +#include "lwt_helpers.h" +#include "network_helpers.h" +#include <linux/net_tstamp.h> + +#define BPF_OBJECT "test_lwt_reroute.bpf.o" +#define LOCAL_SRC "10.0.0.1" +#define TEST_CIDR "10.0.0.0/24" +#define XMIT_HOOK "xmit" +#define XMIT_SECTION "lwt_xmit" +#define NSEC_PER_SEC 1000000000ULL + +/* send a ping to be rerouted to the target device */ +static void ping_once(const char *ip) +{ + /* We won't get a reply. Don't fail here */ + SYS_NOFAIL("ping %s -c1 -W1 -s %d", + ip, ICMP_PAYLOAD_SIZE); +} + +/* Send snd_target UDP packets to overflow the fq queue and trigger qdisc drop + * error. This is done via TX tstamp to force buffering delayed packets. + */ +static int overflow_fq(int snd_target, const char *target_ip) +{ + struct sockaddr_in addr = { + .sin_family = AF_INET, + .sin_port = htons(1234), + }; + + char data_buf[8]; /* only #pkts matter, so use a random small buffer */ + char control_buf[CMSG_SPACE(sizeof(uint64_t))]; + struct iovec iov = { + .iov_base = data_buf, + .iov_len = sizeof(data_buf), + }; + int err = -1; + int s = -1; + struct sock_txtime txtime_on = { + .clockid = CLOCK_MONOTONIC, + .flags = 0, + }; + struct msghdr msg = { + .msg_name = &addr, + .msg_namelen = sizeof(addr), + .msg_control = control_buf, + .msg_controllen = sizeof(control_buf), + .msg_iovlen = 1, + .msg_iov = &iov, + }; + struct cmsghdr *cmsg = CMSG_FIRSTHDR(&msg); + + memset(data_buf, 0, sizeof(data_buf)); + + s = socket(AF_INET, SOCK_DGRAM, 0); + if (!ASSERT_GE(s, 0, "socket")) + goto out; + + err = setsockopt(s, SOL_SOCKET, SO_TXTIME, &txtime_on, sizeof(txtime_on)); + if (!ASSERT_OK(err, "setsockopt(SO_TXTIME)")) + goto out; + + err = inet_pton(AF_INET, target_ip, &addr.sin_addr); + if (!ASSERT_EQ(err, 1, "inet_pton")) + goto out; + + while (snd_target > 0) { + struct timespec now; + + memset(control_buf, 0, sizeof(control_buf)); + cmsg->cmsg_type = SCM_TXTIME; + cmsg->cmsg_level = SOL_SOCKET; + cmsg->cmsg_len = CMSG_LEN(sizeof(uint64_t)); + + err = clock_gettime(CLOCK_MONOTONIC, &now); + if (!ASSERT_OK(err, "clock_gettime(CLOCK_MONOTONIC)")) { + err = -1; + goto out; + } + + *(uint64_t *)CMSG_DATA(cmsg) = (now.tv_nsec + 1) * NSEC_PER_SEC + + now.tv_nsec; + + /* we will intentionally send more than fq limit, so ignore + * the error here. + */ + sendmsg(s, &msg, MSG_NOSIGNAL); + snd_target--; + } + + /* no kernel crash so far is considered success */ + err = 0; + +out: + if (s >= 0) + close(s); + + return err; +} + +static int setup(const char *tun_dev) +{ + int target_index = -1; + int tap_fd = -1; + + tap_fd = open_tuntap(tun_dev, false); + if (!ASSERT_GE(tap_fd, 0, "open_tun")) + return -1; + + target_index = if_nametoindex(tun_dev); + if (!ASSERT_GE(target_index, 0, "if_nametoindex")) + return -1; + + SYS(fail, "ip link add link_err type dummy"); + SYS(fail, "ip link set lo up"); + SYS(fail, "ip addr add dev lo " LOCAL_SRC "/32"); + SYS(fail, "ip link set link_err up"); + SYS(fail, "ip link set %s up", tun_dev); + + SYS(fail, "ip route add %s dev link_err encap bpf xmit obj %s sec lwt_xmit", + TEST_CIDR, BPF_OBJECT); + + SYS(fail, "ip rule add pref 100 from all fwmark %d lookup 100", + target_index); + SYS(fail, "ip route add t 100 default dev %s", tun_dev); + + return tap_fd; + +fail: + if (tap_fd >= 0) + close(tap_fd); + return -1; +} + +static void test_lwt_reroute_normal_xmit(void) +{ + const char *tun_dev = "tun0"; + int tun_fd = -1; + int ifindex = -1; + char ip[256]; + struct timeval timeo = { + .tv_sec = 0, + .tv_usec = 250000, + }; + + tun_fd = setup(tun_dev); + if (!ASSERT_GE(tun_fd, 0, "setup_reroute")) + return; + + ifindex = if_nametoindex(tun_dev); + if (!ASSERT_GE(ifindex, 0, "if_nametoindex")) + return; + + snprintf(ip, 256, "10.0.0.%d", ifindex); + + /* ping packets should be received by the tun device */ + ping_once(ip); + + if (!ASSERT_EQ(wait_for_packet(tun_fd, __expect_icmp_ipv4, &timeo), 1, + "wait_for_packet")) + log_err("%s xmit", __func__); +} + +/* + * Test the failure case when the skb is dropped at the qdisc. This is a + * regression prevention at the xmit hook only. + */ +static void test_lwt_reroute_qdisc_dropped(void) +{ + const char *tun_dev = "tun0"; + int tun_fd = -1; + int ifindex = -1; + char ip[256]; + + tun_fd = setup(tun_dev); + if (!ASSERT_GE(tun_fd, 0, "setup_reroute")) + goto fail; + + SYS(fail, "tc qdisc replace dev %s root fq limit 5 flow_limit 5", tun_dev); + + ifindex = if_nametoindex(tun_dev); + if (!ASSERT_GE(ifindex, 0, "if_nametoindex")) + return; + + snprintf(ip, 256, "10.0.0.%d", ifindex); + ASSERT_EQ(overflow_fq(10, ip), 0, "overflow_fq"); + +fail: + if (tun_fd >= 0) + close(tun_fd); +} + +static void *test_lwt_reroute_run(void *arg) +{ + netns_delete(); + RUN_TEST(lwt_reroute_normal_xmit); + RUN_TEST(lwt_reroute_qdisc_dropped); + return NULL; +} + +void test_lwt_reroute(void) +{ + pthread_t test_thread; + int err; + + /* Run the tests in their own thread to isolate the namespace changes + * so they do not affect the environment of other tests. + * (specifically needed because of unshare(CLONE_NEWNS) in open_netns()) + */ + err = pthread_create(&test_thread, NULL, &test_lwt_reroute_run, NULL); + if (ASSERT_OK(err, "pthread_create")) + ASSERT_OK(pthread_join(test_thread, NULL), "pthread_join"); +} diff --git a/tools/testing/selftests/bpf/prog_tests/map_btf.c b/tools/testing/selftests/bpf/prog_tests/map_btf.c new file mode 100644 index 000000000000..2c4ef6037573 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/map_btf.c @@ -0,0 +1,98 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023. Huawei Technologies Co., Ltd */ +#include <test_progs.h> + +#include "normal_map_btf.skel.h" +#include "map_in_map_btf.skel.h" + +static void do_test_normal_map_btf(void) +{ + struct normal_map_btf *skel; + int i, err, new_fd = -1; + int map_fd_arr[64]; + + skel = normal_map_btf__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_load")) + return; + + err = normal_map_btf__attach(skel); + if (!ASSERT_OK(err, "attach")) + goto out; + + skel->bss->pid = getpid(); + usleep(1); + ASSERT_TRUE(skel->bss->done, "done"); + + /* Use percpu_array to slow bpf_map_free_deferred() down. + * The memory allocation may fail, so doesn't check the returned fd. + */ + for (i = 0; i < ARRAY_SIZE(map_fd_arr); i++) + map_fd_arr[i] = bpf_map_create(BPF_MAP_TYPE_PERCPU_ARRAY, NULL, 4, 4, 256, NULL); + + /* Close array fd later */ + new_fd = dup(bpf_map__fd(skel->maps.array)); +out: + normal_map_btf__destroy(skel); + if (new_fd < 0) + return; + /* Use kern_sync_rcu() to wait for the start of the free of the bpf + * program and use an assumed delay to wait for the release of the map + * btf which is held by other maps (e.g, bss). After that, array map + * holds the last reference of map btf. + */ + kern_sync_rcu(); + usleep(4000); + /* Spawn multiple kworkers to delay the invocation of + * bpf_map_free_deferred() for array map. + */ + for (i = 0; i < ARRAY_SIZE(map_fd_arr); i++) { + if (map_fd_arr[i] < 0) + continue; + close(map_fd_arr[i]); + } + close(new_fd); +} + +static void do_test_map_in_map_btf(void) +{ + int err, zero = 0, new_fd = -1; + struct map_in_map_btf *skel; + + skel = map_in_map_btf__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_load")) + return; + + err = map_in_map_btf__attach(skel); + if (!ASSERT_OK(err, "attach")) + goto out; + + skel->bss->pid = getpid(); + usleep(1); + ASSERT_TRUE(skel->bss->done, "done"); + + /* Close inner_array fd later */ + new_fd = dup(bpf_map__fd(skel->maps.inner_array)); + /* Defer the free of inner_array */ + err = bpf_map__delete_elem(skel->maps.outer_array, &zero, sizeof(zero), 0); + ASSERT_OK(err, "delete inner map"); +out: + map_in_map_btf__destroy(skel); + if (new_fd < 0) + return; + /* Use kern_sync_rcu() to wait for the start of the free of the bpf + * program and use an assumed delay to wait for the free of the outer + * map and the release of map btf. After that, inner map holds the last + * reference of map btf. + */ + kern_sync_rcu(); + usleep(10000); + close(new_fd); +} + +void test_map_btf(void) +{ + if (test__start_subtest("array_btf")) + do_test_normal_map_btf(); + if (test__start_subtest("inner_array_btf")) + do_test_map_in_map_btf(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/map_in_map.c b/tools/testing/selftests/bpf/prog_tests/map_in_map.c new file mode 100644 index 000000000000..d2a10eb4e5b5 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/map_in_map.c @@ -0,0 +1,141 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023. Huawei Technologies Co., Ltd */ +#define _GNU_SOURCE +#include <unistd.h> +#include <sys/syscall.h> +#include <test_progs.h> +#include <bpf/btf.h> +#include "access_map_in_map.skel.h" + +struct thread_ctx { + pthread_barrier_t barrier; + int outer_map_fd; + int start, abort; + int loop, err; +}; + +static int wait_for_start_or_abort(struct thread_ctx *ctx) +{ + while (!ctx->start && !ctx->abort) + usleep(1); + return ctx->abort ? -1 : 0; +} + +static void *update_map_fn(void *data) +{ + struct thread_ctx *ctx = data; + int loop = ctx->loop, err = 0; + + if (wait_for_start_or_abort(ctx) < 0) + return NULL; + pthread_barrier_wait(&ctx->barrier); + + while (loop-- > 0) { + int fd, zero = 0; + + fd = bpf_map_create(BPF_MAP_TYPE_ARRAY, NULL, 4, 4, 1, NULL); + if (fd < 0) { + err |= 1; + pthread_barrier_wait(&ctx->barrier); + continue; + } + + /* Remove the old inner map */ + if (bpf_map_update_elem(ctx->outer_map_fd, &zero, &fd, 0) < 0) + err |= 2; + close(fd); + pthread_barrier_wait(&ctx->barrier); + } + + ctx->err = err; + + return NULL; +} + +static void *access_map_fn(void *data) +{ + struct thread_ctx *ctx = data; + int loop = ctx->loop; + + if (wait_for_start_or_abort(ctx) < 0) + return NULL; + pthread_barrier_wait(&ctx->barrier); + + while (loop-- > 0) { + /* Access the old inner map */ + syscall(SYS_getpgid); + pthread_barrier_wait(&ctx->barrier); + } + + return NULL; +} + +static void test_map_in_map_access(const char *prog_name, const char *map_name) +{ + struct access_map_in_map *skel; + struct bpf_map *outer_map; + struct bpf_program *prog; + struct thread_ctx ctx; + pthread_t tid[2]; + int err; + + skel = access_map_in_map__open(); + if (!ASSERT_OK_PTR(skel, "access_map_in_map open")) + return; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "find program")) + goto out; + bpf_program__set_autoload(prog, true); + + outer_map = bpf_object__find_map_by_name(skel->obj, map_name); + if (!ASSERT_OK_PTR(outer_map, "find map")) + goto out; + + err = access_map_in_map__load(skel); + if (!ASSERT_OK(err, "access_map_in_map load")) + goto out; + + err = access_map_in_map__attach(skel); + if (!ASSERT_OK(err, "access_map_in_map attach")) + goto out; + + skel->bss->tgid = getpid(); + + memset(&ctx, 0, sizeof(ctx)); + pthread_barrier_init(&ctx.barrier, NULL, 2); + ctx.outer_map_fd = bpf_map__fd(outer_map); + ctx.loop = 4; + + err = pthread_create(&tid[0], NULL, update_map_fn, &ctx); + if (!ASSERT_OK(err, "close_thread")) + goto out; + + err = pthread_create(&tid[1], NULL, access_map_fn, &ctx); + if (!ASSERT_OK(err, "read_thread")) { + ctx.abort = 1; + pthread_join(tid[0], NULL); + goto out; + } + + ctx.start = 1; + pthread_join(tid[0], NULL); + pthread_join(tid[1], NULL); + + ASSERT_OK(ctx.err, "err"); +out: + access_map_in_map__destroy(skel); +} + +void test_map_in_map(void) +{ + if (test__start_subtest("acc_map_in_array")) + test_map_in_map_access("access_map_in_array", "outer_array_map"); + if (test__start_subtest("sleepable_acc_map_in_array")) + test_map_in_map_access("sleepable_access_map_in_array", "outer_array_map"); + if (test__start_subtest("acc_map_in_htab")) + test_map_in_map_access("access_map_in_htab", "outer_htab_map"); + if (test__start_subtest("sleepable_acc_map_in_htab")) + test_map_in_map_access("sleepable_access_map_in_htab", "outer_htab_map"); +} + diff --git a/tools/testing/selftests/bpf/prog_tests/map_init.c b/tools/testing/selftests/bpf/prog_tests/map_init.c new file mode 100644 index 000000000000..14a31109dd0e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/map_init.c @@ -0,0 +1,214 @@ +// SPDX-License-Identifier: GPL-2.0-only +/* Copyright (c) 2020 Tessares SA <http://www.tessares.net> */ + +#include <test_progs.h> +#include "test_map_init.skel.h" + +#define TEST_VALUE 0x1234 +#define FILL_VALUE 0xdeadbeef + +static int nr_cpus; +static int duration; + +typedef unsigned long long map_key_t; +typedef unsigned long long map_value_t; +typedef struct { + map_value_t v; /* padding */ +} __bpf_percpu_val_align pcpu_map_value_t; + + +static int map_populate(int map_fd, int num) +{ + pcpu_map_value_t value[nr_cpus]; + int i, err; + map_key_t key; + + for (i = 0; i < nr_cpus; i++) + bpf_percpu(value, i) = FILL_VALUE; + + for (key = 1; key <= num; key++) { + err = bpf_map_update_elem(map_fd, &key, value, BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem")) + return -1; + } + + return 0; +} + +static struct test_map_init *setup(enum bpf_map_type map_type, int map_sz, + int *map_fd, int populate) +{ + struct test_map_init *skel; + int err; + + skel = test_map_init__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return NULL; + + err = bpf_map__set_type(skel->maps.hashmap1, map_type); + if (!ASSERT_OK(err, "bpf_map__set_type")) + goto error; + + err = bpf_map__set_max_entries(skel->maps.hashmap1, map_sz); + if (!ASSERT_OK(err, "bpf_map__set_max_entries")) + goto error; + + err = test_map_init__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto error; + + *map_fd = bpf_map__fd(skel->maps.hashmap1); + if (CHECK(*map_fd < 0, "bpf_map__fd", "failed\n")) + goto error; + + err = map_populate(*map_fd, populate); + if (!ASSERT_OK(err, "map_populate")) + goto error_map; + + return skel; + +error_map: + close(*map_fd); +error: + test_map_init__destroy(skel); + return NULL; +} + +/* executes bpf program that updates map with key, value */ +static int prog_run_insert_elem(struct test_map_init *skel, map_key_t key, + map_value_t value) +{ + struct test_map_init__bss *bss; + + bss = skel->bss; + + bss->inKey = key; + bss->inValue = value; + bss->inPid = getpid(); + + if (!ASSERT_OK(test_map_init__attach(skel), "skel_attach")) + return -1; + + /* Let tracepoint trigger */ + syscall(__NR_getpgid); + + test_map_init__detach(skel); + + return 0; +} + +static int check_values_one_cpu(pcpu_map_value_t *value, map_value_t expected) +{ + int i, nzCnt = 0; + map_value_t val; + + for (i = 0; i < nr_cpus; i++) { + val = bpf_percpu(value, i); + if (val) { + if (CHECK(val != expected, "map value", + "unexpected for cpu %d: 0x%llx\n", i, val)) + return -1; + nzCnt++; + } + } + + if (CHECK(nzCnt != 1, "map value", "set for %d CPUs instead of 1!\n", + nzCnt)) + return -1; + + return 0; +} + +/* Add key=1 elem with values set for all CPUs + * Delete elem key=1 + * Run bpf prog that inserts new key=1 elem with value=0x1234 + * (bpf prog can only set value for current CPU) + * Lookup Key=1 and check value is as expected for all CPUs: + * value set by bpf prog for one CPU, 0 for all others + */ +static void test_pcpu_map_init(void) +{ + pcpu_map_value_t value[nr_cpus]; + struct test_map_init *skel; + int map_fd, err; + map_key_t key; + + /* max 1 elem in map so insertion is forced to reuse freed entry */ + skel = setup(BPF_MAP_TYPE_PERCPU_HASH, 1, &map_fd, 1); + if (!ASSERT_OK_PTR(skel, "prog_setup")) + return; + + /* delete element so the entry can be re-used*/ + key = 1; + err = bpf_map_delete_elem(map_fd, &key); + if (!ASSERT_OK(err, "bpf_map_delete_elem")) + goto cleanup; + + /* run bpf prog that inserts new elem, re-using the slot just freed */ + err = prog_run_insert_elem(skel, key, TEST_VALUE); + if (!ASSERT_OK(err, "prog_run_insert_elem")) + goto cleanup; + + /* check that key=1 was re-created by bpf prog */ + err = bpf_map_lookup_elem(map_fd, &key, value); + if (!ASSERT_OK(err, "bpf_map_lookup_elem")) + goto cleanup; + + /* and has expected values */ + check_values_one_cpu(value, TEST_VALUE); + +cleanup: + test_map_init__destroy(skel); +} + +/* Add key=1 and key=2 elems with values set for all CPUs + * Run bpf prog that inserts new key=3 elem + * (only for current cpu; other cpus should have initial value = 0) + * Lookup Key=1 and check value is as expected for all CPUs + */ +static void test_pcpu_lru_map_init(void) +{ + pcpu_map_value_t value[nr_cpus]; + struct test_map_init *skel; + int map_fd, err; + map_key_t key; + + /* Set up LRU map with 2 elements, values filled for all CPUs. + * With these 2 elements, the LRU map is full + */ + skel = setup(BPF_MAP_TYPE_LRU_PERCPU_HASH, 2, &map_fd, 2); + if (!ASSERT_OK_PTR(skel, "prog_setup")) + return; + + /* run bpf prog that inserts new key=3 element, re-using LRU slot */ + key = 3; + err = prog_run_insert_elem(skel, key, TEST_VALUE); + if (!ASSERT_OK(err, "prog_run_insert_elem")) + goto cleanup; + + /* check that key=3 replaced one of earlier elements */ + err = bpf_map_lookup_elem(map_fd, &key, value); + if (!ASSERT_OK(err, "bpf_map_lookup_elem")) + goto cleanup; + + /* and has expected values */ + check_values_one_cpu(value, TEST_VALUE); + +cleanup: + test_map_init__destroy(skel); +} + +void test_map_init(void) +{ + nr_cpus = bpf_num_possible_cpus(); + if (nr_cpus <= 1) { + printf("%s:SKIP: >1 cpu needed for this test\n", __func__); + test__skip(); + return; + } + + if (test__start_subtest("pcpu_map_init")) + test_pcpu_map_init(); + if (test__start_subtest("pcpu_lru_map_init")) + test_pcpu_lru_map_init(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/map_kptr.c b/tools/testing/selftests/bpf/prog_tests/map_kptr.c new file mode 100644 index 000000000000..8743df599567 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/map_kptr.c @@ -0,0 +1,163 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> + +#include "map_kptr.skel.h" +#include "map_kptr_fail.skel.h" +#include "rcu_tasks_trace_gp.skel.h" + +static void test_map_kptr_success(bool test_run) +{ + LIBBPF_OPTS(bpf_test_run_opts, lopts); + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + int key = 0, ret, cpu; + struct map_kptr *skel; + char buf[16], *pbuf; + + skel = map_kptr__open_and_load(); + if (!ASSERT_OK_PTR(skel, "map_kptr__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref1), &opts); + ASSERT_OK(ret, "test_map_kptr_ref1 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref1 retval"); + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref2), &opts); + ASSERT_OK(ret, "test_map_kptr_ref2 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref2 retval"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_ls_map_kptr_ref1), &lopts); + ASSERT_OK(ret, "test_ls_map_kptr_ref1 refcount"); + ASSERT_OK(lopts.retval, "test_ls_map_kptr_ref1 retval"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_ls_map_kptr_ref2), &lopts); + ASSERT_OK(ret, "test_ls_map_kptr_ref2 refcount"); + ASSERT_OK(lopts.retval, "test_ls_map_kptr_ref2 retval"); + + if (test_run) + goto exit; + + cpu = libbpf_num_possible_cpus(); + if (!ASSERT_GT(cpu, 0, "libbpf_num_possible_cpus")) + goto exit; + + pbuf = calloc(cpu, sizeof(buf)); + if (!ASSERT_OK_PTR(pbuf, "calloc(pbuf)")) + goto exit; + + ret = bpf_map__update_elem(skel->maps.array_map, + &key, sizeof(key), buf, sizeof(buf), 0); + ASSERT_OK(ret, "array_map update"); + skel->data->ref--; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref3), &opts); + ASSERT_OK(ret, "test_map_kptr_ref3 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref3 retval"); + + ret = bpf_map__update_elem(skel->maps.pcpu_array_map, + &key, sizeof(key), pbuf, cpu * sizeof(buf), 0); + ASSERT_OK(ret, "pcpu_array_map update"); + skel->data->ref--; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref3), &opts); + ASSERT_OK(ret, "test_map_kptr_ref3 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref3 retval"); + + ret = bpf_map__delete_elem(skel->maps.hash_map, &key, sizeof(key), 0); + ASSERT_OK(ret, "hash_map delete"); + skel->data->ref--; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref3), &opts); + ASSERT_OK(ret, "test_map_kptr_ref3 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref3 retval"); + + ret = bpf_map__delete_elem(skel->maps.pcpu_hash_map, &key, sizeof(key), 0); + ASSERT_OK(ret, "pcpu_hash_map delete"); + skel->data->ref--; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref3), &opts); + ASSERT_OK(ret, "test_map_kptr_ref3 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref3 retval"); + + ret = bpf_map__delete_elem(skel->maps.hash_malloc_map, &key, sizeof(key), 0); + ASSERT_OK(ret, "hash_malloc_map delete"); + skel->data->ref--; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref3), &opts); + ASSERT_OK(ret, "test_map_kptr_ref3 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref3 retval"); + + ret = bpf_map__delete_elem(skel->maps.pcpu_hash_malloc_map, &key, sizeof(key), 0); + ASSERT_OK(ret, "pcpu_hash_malloc_map delete"); + skel->data->ref--; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref3), &opts); + ASSERT_OK(ret, "test_map_kptr_ref3 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref3 retval"); + + ret = bpf_map__delete_elem(skel->maps.lru_hash_map, &key, sizeof(key), 0); + ASSERT_OK(ret, "lru_hash_map delete"); + skel->data->ref--; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref3), &opts); + ASSERT_OK(ret, "test_map_kptr_ref3 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref3 retval"); + + ret = bpf_map__delete_elem(skel->maps.lru_pcpu_hash_map, &key, sizeof(key), 0); + ASSERT_OK(ret, "lru_pcpu_hash_map delete"); + skel->data->ref--; + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_map_kptr_ref3), &opts); + ASSERT_OK(ret, "test_map_kptr_ref3 refcount"); + ASSERT_OK(opts.retval, "test_map_kptr_ref3 retval"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.test_ls_map_kptr_ref_del), &lopts); + ASSERT_OK(ret, "test_ls_map_kptr_ref_del delete"); + skel->data->ref--; + ASSERT_OK(lopts.retval, "test_ls_map_kptr_ref_del retval"); + + free(pbuf); +exit: + map_kptr__destroy(skel); +} + +static int kern_sync_rcu_tasks_trace(struct rcu_tasks_trace_gp *rcu) +{ + long gp_seq = READ_ONCE(rcu->bss->gp_seq); + LIBBPF_OPTS(bpf_test_run_opts, opts); + + if (!ASSERT_OK(bpf_prog_test_run_opts(bpf_program__fd(rcu->progs.do_call_rcu_tasks_trace), + &opts), "do_call_rcu_tasks_trace")) + return -EFAULT; + if (!ASSERT_OK(opts.retval, "opts.retval == 0")) + return -EFAULT; + while (gp_seq == READ_ONCE(rcu->bss->gp_seq)) + sched_yield(); + return 0; +} + +void serial_test_map_kptr(void) +{ + struct rcu_tasks_trace_gp *skel; + + RUN_TESTS(map_kptr_fail); + + skel = rcu_tasks_trace_gp__open_and_load(); + if (!ASSERT_OK_PTR(skel, "rcu_tasks_trace_gp__open_and_load")) + return; + if (!ASSERT_OK(rcu_tasks_trace_gp__attach(skel), "rcu_tasks_trace_gp__attach")) + goto end; + + if (test__start_subtest("success-map")) { + test_map_kptr_success(true); + + ASSERT_OK(kern_sync_rcu_tasks_trace(skel), "sync rcu_tasks_trace"); + ASSERT_OK(kern_sync_rcu(), "sync rcu"); + /* Observe refcount dropping to 1 on bpf_map_free_deferred */ + test_map_kptr_success(false); + + ASSERT_OK(kern_sync_rcu_tasks_trace(skel), "sync rcu_tasks_trace"); + ASSERT_OK(kern_sync_rcu(), "sync rcu"); + /* Observe refcount dropping to 1 on synchronous delete elem */ + test_map_kptr_success(true); + } + +end: + rcu_tasks_trace_gp__destroy(skel); + return; +} diff --git a/tools/testing/selftests/bpf/prog_tests/map_lock.c b/tools/testing/selftests/bpf/prog_tests/map_lock.c index ce17b1ed8709..1d6726f01dd2 100644 --- a/tools/testing/selftests/bpf/prog_tests/map_lock.c +++ b/tools/testing/selftests/bpf/prog_tests/map_lock.c @@ -4,14 +4,17 @@ static void *spin_lock_thread(void *arg) { - __u32 duration, retval; int err, prog_fd = *(u32 *) arg; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 10000, + ); + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run_opts err"); + ASSERT_OK(topts.retval, "test_run_opts retval"); - err = bpf_prog_test_run(prog_fd, 10000, &pkt_v4, sizeof(pkt_v4), - NULL, NULL, &retval, &duration); - CHECK(err || retval, "", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); pthread_exit(arg); } @@ -46,16 +49,16 @@ out: void test_map_lock(void) { - const char *file = "./test_map_lock.o"; + const char *file = "./test_map_lock.bpf.o"; int prog_fd, map_fd[2], vars[17] = {}; pthread_t thread_id[6]; struct bpf_object *obj = NULL; int err = 0, key = 0, i; void *ret; - err = bpf_prog_load(file, BPF_PROG_TYPE_CGROUP_SKB, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_CGROUP_SKB, &obj, &prog_fd); if (CHECK_FAIL(err)) { - printf("test_map_lock:bpf_prog_load errno %d\n", errno); + printf("test_map_lock:bpf_prog_test_load errno %d\n", errno); goto close_prog; } map_fd[0] = bpf_find_map(__func__, obj, "hash_map"); diff --git a/tools/testing/selftests/bpf/prog_tests/map_lookup_percpu_elem.c b/tools/testing/selftests/bpf/prog_tests/map_lookup_percpu_elem.c new file mode 100644 index 000000000000..bfb1bf3fd427 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/map_lookup_percpu_elem.c @@ -0,0 +1,58 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Bytedance */ + +#include <test_progs.h> +#include "test_map_lookup_percpu_elem.skel.h" + +void test_map_lookup_percpu_elem(void) +{ + struct test_map_lookup_percpu_elem *skel; + __u64 key = 0, sum; + int ret, i, nr_cpus = libbpf_num_possible_cpus(); + __u64 *buf; + + buf = malloc(nr_cpus*sizeof(__u64)); + if (!ASSERT_OK_PTR(buf, "malloc")) + return; + + for (i = 0; i < nr_cpus; i++) + buf[i] = i; + sum = (nr_cpus - 1) * nr_cpus / 2; + + skel = test_map_lookup_percpu_elem__open(); + if (!ASSERT_OK_PTR(skel, "test_map_lookup_percpu_elem__open")) + goto exit; + + skel->rodata->my_pid = getpid(); + skel->rodata->nr_cpus = nr_cpus; + + ret = test_map_lookup_percpu_elem__load(skel); + if (!ASSERT_OK(ret, "test_map_lookup_percpu_elem__load")) + goto cleanup; + + ret = test_map_lookup_percpu_elem__attach(skel); + if (!ASSERT_OK(ret, "test_map_lookup_percpu_elem__attach")) + goto cleanup; + + ret = bpf_map_update_elem(bpf_map__fd(skel->maps.percpu_array_map), &key, buf, 0); + ASSERT_OK(ret, "percpu_array_map update"); + + ret = bpf_map_update_elem(bpf_map__fd(skel->maps.percpu_hash_map), &key, buf, 0); + ASSERT_OK(ret, "percpu_hash_map update"); + + ret = bpf_map_update_elem(bpf_map__fd(skel->maps.percpu_lru_hash_map), &key, buf, 0); + ASSERT_OK(ret, "percpu_lru_hash_map update"); + + syscall(__NR_getuid); + + test_map_lookup_percpu_elem__detach(skel); + + ASSERT_EQ(skel->bss->percpu_array_elem_sum, sum, "percpu_array lookup percpu elem"); + ASSERT_EQ(skel->bss->percpu_hash_elem_sum, sum, "percpu_hash lookup percpu elem"); + ASSERT_EQ(skel->bss->percpu_lru_hash_elem_sum, sum, "percpu_lru_hash lookup percpu elem"); + +cleanup: + test_map_lookup_percpu_elem__destroy(skel); +exit: + free(buf); +} diff --git a/tools/testing/selftests/bpf/prog_tests/map_ops.c b/tools/testing/selftests/bpf/prog_tests/map_ops.c new file mode 100644 index 000000000000..be5e42a413b4 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/map_ops.c @@ -0,0 +1,162 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <errno.h> +#include <sys/syscall.h> +#include <unistd.h> + +#include "test_map_ops.skel.h" +#include "test_progs.h" + +static void map_update(void) +{ + (void)syscall(__NR_getpid); +} + +static void map_delete(void) +{ + (void)syscall(__NR_getppid); +} + +static void map_push(void) +{ + (void)syscall(__NR_getuid); +} + +static void map_pop(void) +{ + (void)syscall(__NR_geteuid); +} + +static void map_peek(void) +{ + (void)syscall(__NR_getgid); +} + +static void map_for_each_pass(void) +{ + (void)syscall(__NR_gettid); +} + +static void map_for_each_fail(void) +{ + (void)syscall(__NR_getpgid); +} + +static int setup(struct test_map_ops **skel) +{ + int err = 0; + + if (!skel) + return -1; + + *skel = test_map_ops__open(); + if (!ASSERT_OK_PTR(*skel, "test_map_ops__open")) + return -1; + + (*skel)->rodata->pid = getpid(); + + err = test_map_ops__load(*skel); + if (!ASSERT_OK(err, "test_map_ops__load")) + return err; + + err = test_map_ops__attach(*skel); + if (!ASSERT_OK(err, "test_map_ops__attach")) + return err; + + return err; +} + +static void teardown(struct test_map_ops **skel) +{ + if (skel && *skel) + test_map_ops__destroy(*skel); +} + +static void map_ops_update_delete_subtest(void) +{ + struct test_map_ops *skel; + + if (setup(&skel)) + goto teardown; + + map_update(); + ASSERT_OK(skel->bss->err, "map_update_initial"); + + map_update(); + ASSERT_LT(skel->bss->err, 0, "map_update_existing"); + ASSERT_EQ(skel->bss->err, -EEXIST, "map_update_existing"); + + map_delete(); + ASSERT_OK(skel->bss->err, "map_delete_existing"); + + map_delete(); + ASSERT_LT(skel->bss->err, 0, "map_delete_non_existing"); + ASSERT_EQ(skel->bss->err, -ENOENT, "map_delete_non_existing"); + +teardown: + teardown(&skel); +} + +static void map_ops_push_peek_pop_subtest(void) +{ + struct test_map_ops *skel; + + if (setup(&skel)) + goto teardown; + + map_push(); + ASSERT_OK(skel->bss->err, "map_push_initial"); + + map_push(); + ASSERT_LT(skel->bss->err, 0, "map_push_when_full"); + ASSERT_EQ(skel->bss->err, -E2BIG, "map_push_when_full"); + + map_peek(); + ASSERT_OK(skel->bss->err, "map_peek"); + + map_pop(); + ASSERT_OK(skel->bss->err, "map_pop"); + + map_peek(); + ASSERT_LT(skel->bss->err, 0, "map_peek_when_empty"); + ASSERT_EQ(skel->bss->err, -ENOENT, "map_peek_when_empty"); + + map_pop(); + ASSERT_LT(skel->bss->err, 0, "map_pop_when_empty"); + ASSERT_EQ(skel->bss->err, -ENOENT, "map_pop_when_empty"); + +teardown: + teardown(&skel); +} + +static void map_ops_for_each_subtest(void) +{ + struct test_map_ops *skel; + + if (setup(&skel)) + goto teardown; + + map_for_each_pass(); + /* expect to iterate over 1 element */ + ASSERT_EQ(skel->bss->err, 1, "map_for_each_no_flags"); + + map_for_each_fail(); + ASSERT_LT(skel->bss->err, 0, "map_for_each_with_flags"); + ASSERT_EQ(skel->bss->err, -EINVAL, "map_for_each_with_flags"); + +teardown: + teardown(&skel); +} + +void test_map_ops(void) +{ + if (test__start_subtest("map_ops_update_delete")) + map_ops_update_delete_subtest(); + + if (test__start_subtest("map_ops_push_peek_pop")) + map_ops_push_peek_pop_subtest(); + + if (test__start_subtest("map_ops_for_each")) + map_ops_for_each_subtest(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/map_ptr.c b/tools/testing/selftests/bpf/prog_tests/map_ptr.c index c230a573c373..43e502acf050 100644 --- a/tools/testing/selftests/bpf/prog_tests/map_ptr.c +++ b/tools/testing/selftests/bpf/prog_tests/map_ptr.c @@ -4,29 +4,42 @@ #include <test_progs.h> #include <network_helpers.h> -#include "map_ptr_kern.skel.h" +#include "map_ptr_kern.lskel.h" void test_map_ptr(void) { - struct map_ptr_kern *skel; - __u32 duration = 0, retval; + struct map_ptr_kern_lskel *skel; char buf[128]; int err; - - skel = map_ptr_kern__open_and_load(); - if (CHECK(!skel, "skel_open_load", "open_load failed\n")) + int page_size = getpagesize(); + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 1, + ); + + skel = map_ptr_kern_lskel__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) return; - err = bpf_prog_test_run(bpf_program__fd(skel->progs.cg_skb), 1, &pkt_v4, - sizeof(pkt_v4), buf, NULL, &retval, NULL); + skel->maps.m_ringbuf.max_entries = page_size; + + err = map_ptr_kern_lskel__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + skel->bss->page_size = page_size; + + err = bpf_prog_test_run_opts(skel->progs.cg_skb.prog_fd, &topts); - if (CHECK(err, "test_run", "err=%d errno=%d\n", err, errno)) + if (!ASSERT_OK(err, "test_run")) goto cleanup; - if (CHECK(!retval, "retval", "retval=%d map_type=%u line=%u\n", retval, - skel->bss->g_map_type, skel->bss->g_line)) + if (!ASSERT_NEQ(topts.retval, 0, "test_run retval")) goto cleanup; cleanup: - map_ptr_kern__destroy(skel); + map_ptr_kern_lskel__destroy(skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/metadata.c b/tools/testing/selftests/bpf/prog_tests/metadata.c new file mode 100644 index 000000000000..8b67dfc10f5c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/metadata.c @@ -0,0 +1,141 @@ +// SPDX-License-Identifier: GPL-2.0-only + +/* + * Copyright 2020 Google LLC. + */ + +#include <test_progs.h> +#include <cgroup_helpers.h> +#include <network_helpers.h> + +#include "metadata_unused.skel.h" +#include "metadata_used.skel.h" + +static int duration; + +static int prog_holds_map(int prog_fd, int map_fd) +{ + struct bpf_prog_info prog_info = {}; + struct bpf_map_info map_info = {}; + __u32 prog_info_len; + __u32 map_info_len; + __u32 *map_ids; + int nr_maps; + int ret; + int i; + + map_info_len = sizeof(map_info); + ret = bpf_map_get_info_by_fd(map_fd, &map_info, &map_info_len); + if (ret) + return -errno; + + prog_info_len = sizeof(prog_info); + ret = bpf_prog_get_info_by_fd(prog_fd, &prog_info, &prog_info_len); + if (ret) + return -errno; + + map_ids = calloc(prog_info.nr_map_ids, sizeof(__u32)); + if (!map_ids) + return -ENOMEM; + + nr_maps = prog_info.nr_map_ids; + memset(&prog_info, 0, sizeof(prog_info)); + prog_info.nr_map_ids = nr_maps; + prog_info.map_ids = ptr_to_u64(map_ids); + prog_info_len = sizeof(prog_info); + + ret = bpf_prog_get_info_by_fd(prog_fd, &prog_info, &prog_info_len); + if (ret) { + ret = -errno; + goto free_map_ids; + } + + ret = -ENOENT; + for (i = 0; i < prog_info.nr_map_ids; i++) { + if (map_ids[i] == map_info.id) { + ret = 0; + break; + } + } + +free_map_ids: + free(map_ids); + return ret; +} + +static void test_metadata_unused(void) +{ + struct metadata_unused *obj; + int err; + + obj = metadata_unused__open_and_load(); + if (CHECK(!obj, "skel-load", "errno %d", errno)) + return; + + err = prog_holds_map(bpf_program__fd(obj->progs.prog), + bpf_map__fd(obj->maps.rodata)); + if (CHECK(err, "prog-holds-rodata", "errno: %d", err)) + return; + + /* Assert that we can access the metadata in skel and the values are + * what we expect. + */ + if (CHECK(strncmp(obj->rodata->bpf_metadata_a, "foo", + sizeof(obj->rodata->bpf_metadata_a)), + "bpf_metadata_a", "expected \"foo\", value differ")) + goto close_bpf_object; + if (CHECK(obj->rodata->bpf_metadata_b != 1, "bpf_metadata_b", + "expected 1, got %d", obj->rodata->bpf_metadata_b)) + goto close_bpf_object; + + /* Assert that binding metadata map to prog again succeeds. */ + err = bpf_prog_bind_map(bpf_program__fd(obj->progs.prog), + bpf_map__fd(obj->maps.rodata), NULL); + CHECK(err, "rebind_map", "errno %d, expected 0", errno); + +close_bpf_object: + metadata_unused__destroy(obj); +} + +static void test_metadata_used(void) +{ + struct metadata_used *obj; + int err; + + obj = metadata_used__open_and_load(); + if (CHECK(!obj, "skel-load", "errno %d", errno)) + return; + + err = prog_holds_map(bpf_program__fd(obj->progs.prog), + bpf_map__fd(obj->maps.rodata)); + if (CHECK(err, "prog-holds-rodata", "errno: %d", err)) + return; + + /* Assert that we can access the metadata in skel and the values are + * what we expect. + */ + if (CHECK(strncmp(obj->rodata->bpf_metadata_a, "bar", + sizeof(obj->rodata->bpf_metadata_a)), + "metadata_a", "expected \"bar\", value differ")) + goto close_bpf_object; + if (CHECK(obj->rodata->bpf_metadata_b != 2, "metadata_b", + "expected 2, got %d", obj->rodata->bpf_metadata_b)) + goto close_bpf_object; + + /* Assert that binding metadata map to prog again succeeds. */ + err = bpf_prog_bind_map(bpf_program__fd(obj->progs.prog), + bpf_map__fd(obj->maps.rodata), NULL); + CHECK(err, "rebind_map", "errno %d, expected 0", errno); + +close_bpf_object: + metadata_used__destroy(obj); +} + +void test_metadata(void) +{ + if (test__start_subtest("unused")) + test_metadata_unused(); + + if (test__start_subtest("used")) + test_metadata_used(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/migrate_reuseport.c b/tools/testing/selftests/bpf/prog_tests/migrate_reuseport.c new file mode 100644 index 000000000000..653b0a20fab9 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/migrate_reuseport.c @@ -0,0 +1,559 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Check if we can migrate child sockets. + * + * 1. call listen() for 4 server sockets. + * 2. call connect() for 25 client sockets. + * 3. call listen() for 1 server socket. (migration target) + * 4. update a map to migrate all child sockets + * to the last server socket (migrate_map[cookie] = 4) + * 5. call shutdown() for first 4 server sockets + * and migrate the requests in the accept queue + * to the last server socket. + * 6. call listen() for the second server socket. + * 7. call shutdown() for the last server + * and migrate the requests in the accept queue + * to the second server socket. + * 8. call listen() for the last server. + * 9. call shutdown() for the second server + * and migrate the requests in the accept queue + * to the last server socket. + * 10. call accept() for the last server socket. + * + * Author: Kuniyuki Iwashima <kuniyu@amazon.co.jp> + */ + +#include <bpf/bpf.h> +#include <bpf/libbpf.h> + +#include "test_progs.h" +#include "test_migrate_reuseport.skel.h" +#include "network_helpers.h" + +#ifndef TCP_FASTOPEN_CONNECT +#define TCP_FASTOPEN_CONNECT 30 +#endif + +#define IFINDEX_LO 1 + +#define NR_SERVERS 5 +#define NR_CLIENTS (NR_SERVERS * 5) +#define MIGRATED_TO (NR_SERVERS - 1) + +/* fastopenq->max_qlen and sk->sk_max_ack_backlog */ +#define QLEN (NR_CLIENTS * 5) + +#define MSG "Hello World\0" +#define MSGLEN 12 + +static struct migrate_reuseport_test_case { + const char *name; + __s64 servers[NR_SERVERS]; + __s64 clients[NR_CLIENTS]; + struct sockaddr_storage addr; + socklen_t addrlen; + int family; + int state; + bool drop_ack; + bool expire_synack_timer; + bool fastopen; + struct bpf_link *link; +} test_cases[] = { + { + .name = "IPv4 TCP_ESTABLISHED inet_csk_listen_stop", + .family = AF_INET, + .state = BPF_TCP_ESTABLISHED, + .drop_ack = false, + .expire_synack_timer = false, + .fastopen = false, + }, + { + .name = "IPv4 TCP_SYN_RECV inet_csk_listen_stop", + .family = AF_INET, + .state = BPF_TCP_SYN_RECV, + .drop_ack = true, + .expire_synack_timer = false, + .fastopen = true, + }, + { + .name = "IPv4 TCP_NEW_SYN_RECV reqsk_timer_handler", + .family = AF_INET, + .state = BPF_TCP_NEW_SYN_RECV, + .drop_ack = true, + .expire_synack_timer = true, + .fastopen = false, + }, + { + .name = "IPv4 TCP_NEW_SYN_RECV inet_csk_complete_hashdance", + .family = AF_INET, + .state = BPF_TCP_NEW_SYN_RECV, + .drop_ack = true, + .expire_synack_timer = false, + .fastopen = false, + }, + { + .name = "IPv6 TCP_ESTABLISHED inet_csk_listen_stop", + .family = AF_INET6, + .state = BPF_TCP_ESTABLISHED, + .drop_ack = false, + .expire_synack_timer = false, + .fastopen = false, + }, + { + .name = "IPv6 TCP_SYN_RECV inet_csk_listen_stop", + .family = AF_INET6, + .state = BPF_TCP_SYN_RECV, + .drop_ack = true, + .expire_synack_timer = false, + .fastopen = true, + }, + { + .name = "IPv6 TCP_NEW_SYN_RECV reqsk_timer_handler", + .family = AF_INET6, + .state = BPF_TCP_NEW_SYN_RECV, + .drop_ack = true, + .expire_synack_timer = true, + .fastopen = false, + }, + { + .name = "IPv6 TCP_NEW_SYN_RECV inet_csk_complete_hashdance", + .family = AF_INET6, + .state = BPF_TCP_NEW_SYN_RECV, + .drop_ack = true, + .expire_synack_timer = false, + .fastopen = false, + } +}; + +static void init_fds(__s64 fds[], int len) +{ + int i; + + for (i = 0; i < len; i++) + fds[i] = -1; +} + +static void close_fds(__s64 fds[], int len) +{ + int i; + + for (i = 0; i < len; i++) { + if (fds[i] != -1) { + close(fds[i]); + fds[i] = -1; + } + } +} + +static int setup_fastopen(char *buf, int size, int *saved_len, bool restore) +{ + int err = 0, fd, len; + + fd = open("/proc/sys/net/ipv4/tcp_fastopen", O_RDWR); + if (!ASSERT_NEQ(fd, -1, "open")) + return -1; + + if (restore) { + len = write(fd, buf, *saved_len); + if (!ASSERT_EQ(len, *saved_len, "write - restore")) + err = -1; + } else { + *saved_len = read(fd, buf, size); + if (!ASSERT_GE(*saved_len, 1, "read")) { + err = -1; + goto close; + } + + err = lseek(fd, 0, SEEK_SET); + if (!ASSERT_OK(err, "lseek")) + goto close; + + /* (TFO_CLIENT_ENABLE | TFO_SERVER_ENABLE | + * TFO_CLIENT_NO_COOKIE | TFO_SERVER_COOKIE_NOT_REQD) + */ + len = write(fd, "519", 3); + if (!ASSERT_EQ(len, 3, "write - setup")) + err = -1; + } + +close: + close(fd); + + return err; +} + +static int drop_ack(struct migrate_reuseport_test_case *test_case, + struct test_migrate_reuseport *skel) +{ + if (test_case->family == AF_INET) + skel->bss->server_port = ((struct sockaddr_in *) + &test_case->addr)->sin_port; + else + skel->bss->server_port = ((struct sockaddr_in6 *) + &test_case->addr)->sin6_port; + + test_case->link = bpf_program__attach_xdp(skel->progs.drop_ack, + IFINDEX_LO); + if (!ASSERT_OK_PTR(test_case->link, "bpf_program__attach_xdp")) + return -1; + + return 0; +} + +static int pass_ack(struct migrate_reuseport_test_case *test_case) +{ + int err; + + err = bpf_link__destroy(test_case->link); + if (!ASSERT_OK(err, "bpf_link__destroy")) + return -1; + + test_case->link = NULL; + + return 0; +} + +static int start_servers(struct migrate_reuseport_test_case *test_case, + struct test_migrate_reuseport *skel) +{ + int i, err, prog_fd, reuseport = 1, qlen = QLEN; + + prog_fd = bpf_program__fd(skel->progs.migrate_reuseport); + + make_sockaddr(test_case->family, + test_case->family == AF_INET ? "127.0.0.1" : "::1", 0, + &test_case->addr, &test_case->addrlen); + + for (i = 0; i < NR_SERVERS; i++) { + test_case->servers[i] = socket(test_case->family, SOCK_STREAM, + IPPROTO_TCP); + if (!ASSERT_NEQ(test_case->servers[i], -1, "socket")) + return -1; + + err = setsockopt(test_case->servers[i], SOL_SOCKET, + SO_REUSEPORT, &reuseport, sizeof(reuseport)); + if (!ASSERT_OK(err, "setsockopt - SO_REUSEPORT")) + return -1; + + err = bind(test_case->servers[i], + (struct sockaddr *)&test_case->addr, + test_case->addrlen); + if (!ASSERT_OK(err, "bind")) + return -1; + + if (i == 0) { + err = setsockopt(test_case->servers[i], SOL_SOCKET, + SO_ATTACH_REUSEPORT_EBPF, + &prog_fd, sizeof(prog_fd)); + if (!ASSERT_OK(err, + "setsockopt - SO_ATTACH_REUSEPORT_EBPF")) + return -1; + + err = getsockname(test_case->servers[i], + (struct sockaddr *)&test_case->addr, + &test_case->addrlen); + if (!ASSERT_OK(err, "getsockname")) + return -1; + } + + if (test_case->fastopen) { + err = setsockopt(test_case->servers[i], + SOL_TCP, TCP_FASTOPEN, + &qlen, sizeof(qlen)); + if (!ASSERT_OK(err, "setsockopt - TCP_FASTOPEN")) + return -1; + } + + /* All requests will be tied to the first four listeners */ + if (i != MIGRATED_TO) { + err = listen(test_case->servers[i], qlen); + if (!ASSERT_OK(err, "listen")) + return -1; + } + } + + return 0; +} + +static int start_clients(struct migrate_reuseport_test_case *test_case) +{ + char buf[MSGLEN] = MSG; + int i, err; + + for (i = 0; i < NR_CLIENTS; i++) { + test_case->clients[i] = socket(test_case->family, SOCK_STREAM, + IPPROTO_TCP); + if (!ASSERT_NEQ(test_case->clients[i], -1, "socket")) + return -1; + + /* The attached XDP program drops only the final ACK, so + * clients will transition to TCP_ESTABLISHED immediately. + */ + err = settimeo(test_case->clients[i], 100); + if (!ASSERT_OK(err, "settimeo")) + return -1; + + if (test_case->fastopen) { + int fastopen = 1; + + err = setsockopt(test_case->clients[i], IPPROTO_TCP, + TCP_FASTOPEN_CONNECT, &fastopen, + sizeof(fastopen)); + if (!ASSERT_OK(err, + "setsockopt - TCP_FASTOPEN_CONNECT")) + return -1; + } + + err = connect(test_case->clients[i], + (struct sockaddr *)&test_case->addr, + test_case->addrlen); + if (!ASSERT_OK(err, "connect")) + return -1; + + err = write(test_case->clients[i], buf, MSGLEN); + if (!ASSERT_EQ(err, MSGLEN, "write")) + return -1; + } + + return 0; +} + +static int update_maps(struct migrate_reuseport_test_case *test_case, + struct test_migrate_reuseport *skel) +{ + int i, err, migrated_to = MIGRATED_TO; + int reuseport_map_fd, migrate_map_fd; + __u64 value; + + reuseport_map_fd = bpf_map__fd(skel->maps.reuseport_map); + migrate_map_fd = bpf_map__fd(skel->maps.migrate_map); + + for (i = 0; i < NR_SERVERS; i++) { + value = (__u64)test_case->servers[i]; + err = bpf_map_update_elem(reuseport_map_fd, &i, &value, + BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem - reuseport_map")) + return -1; + + err = bpf_map_lookup_elem(reuseport_map_fd, &i, &value); + if (!ASSERT_OK(err, "bpf_map_lookup_elem - reuseport_map")) + return -1; + + err = bpf_map_update_elem(migrate_map_fd, &value, &migrated_to, + BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem - migrate_map")) + return -1; + } + + return 0; +} + +static int migrate_dance(struct migrate_reuseport_test_case *test_case) +{ + int i, err; + + /* Migrate TCP_ESTABLISHED and TCP_SYN_RECV requests + * to the last listener based on eBPF. + */ + for (i = 0; i < MIGRATED_TO; i++) { + err = shutdown(test_case->servers[i], SHUT_RDWR); + if (!ASSERT_OK(err, "shutdown")) + return -1; + } + + /* No dance for TCP_NEW_SYN_RECV to migrate based on eBPF */ + if (test_case->state == BPF_TCP_NEW_SYN_RECV) + return 0; + + /* Note that we use the second listener instead of the + * first one here. + * + * The fist listener is bind()ed with port 0 and, + * SOCK_BINDPORT_LOCK is not set to sk_userlocks, so + * calling listen() again will bind() the first listener + * on a new ephemeral port and detach it from the existing + * reuseport group. (See: __inet_bind(), tcp_set_state()) + * + * OTOH, the second one is bind()ed with a specific port, + * and SOCK_BINDPORT_LOCK is set. Thus, re-listen() will + * resurrect the listener on the existing reuseport group. + */ + err = listen(test_case->servers[1], QLEN); + if (!ASSERT_OK(err, "listen")) + return -1; + + /* Migrate from the last listener to the second one. + * + * All listeners were detached out of the reuseport_map, + * so migration will be done by kernel random pick from here. + */ + err = shutdown(test_case->servers[MIGRATED_TO], SHUT_RDWR); + if (!ASSERT_OK(err, "shutdown")) + return -1; + + /* Back to the existing reuseport group */ + err = listen(test_case->servers[MIGRATED_TO], QLEN); + if (!ASSERT_OK(err, "listen")) + return -1; + + /* Migrate back to the last one from the second one */ + err = shutdown(test_case->servers[1], SHUT_RDWR); + if (!ASSERT_OK(err, "shutdown")) + return -1; + + return 0; +} + +static void count_requests(struct migrate_reuseport_test_case *test_case, + struct test_migrate_reuseport *skel) +{ + struct sockaddr_storage addr; + socklen_t len = sizeof(addr); + int err, cnt = 0, client; + char buf[MSGLEN]; + + err = settimeo(test_case->servers[MIGRATED_TO], 4000); + if (!ASSERT_OK(err, "settimeo")) + goto out; + + for (; cnt < NR_CLIENTS; cnt++) { + client = accept(test_case->servers[MIGRATED_TO], + (struct sockaddr *)&addr, &len); + if (!ASSERT_NEQ(client, -1, "accept")) + goto out; + + memset(buf, 0, MSGLEN); + read(client, &buf, MSGLEN); + close(client); + + if (!ASSERT_STREQ(buf, MSG, "read")) + goto out; + } + +out: + ASSERT_EQ(cnt, NR_CLIENTS, "count in userspace"); + + switch (test_case->state) { + case BPF_TCP_ESTABLISHED: + cnt = skel->bss->migrated_at_close; + break; + case BPF_TCP_SYN_RECV: + cnt = skel->bss->migrated_at_close_fastopen; + break; + case BPF_TCP_NEW_SYN_RECV: + if (test_case->expire_synack_timer) + cnt = skel->bss->migrated_at_send_synack; + else + cnt = skel->bss->migrated_at_recv_ack; + break; + default: + cnt = 0; + } + + ASSERT_EQ(cnt, NR_CLIENTS, "count in BPF prog"); +} + +static void run_test(struct migrate_reuseport_test_case *test_case, + struct test_migrate_reuseport *skel) +{ + int err, saved_len; + char buf[16]; + + skel->bss->migrated_at_close = 0; + skel->bss->migrated_at_close_fastopen = 0; + skel->bss->migrated_at_send_synack = 0; + skel->bss->migrated_at_recv_ack = 0; + + init_fds(test_case->servers, NR_SERVERS); + init_fds(test_case->clients, NR_CLIENTS); + + if (test_case->fastopen) { + memset(buf, 0, sizeof(buf)); + + err = setup_fastopen(buf, sizeof(buf), &saved_len, false); + if (!ASSERT_OK(err, "setup_fastopen - setup")) + return; + } + + err = start_servers(test_case, skel); + if (!ASSERT_OK(err, "start_servers")) + goto close_servers; + + if (test_case->drop_ack) { + /* Drop the final ACK of the 3-way handshake and stick the + * in-flight requests on TCP_SYN_RECV or TCP_NEW_SYN_RECV. + */ + err = drop_ack(test_case, skel); + if (!ASSERT_OK(err, "drop_ack")) + goto close_servers; + } + + /* Tie requests to the first four listeners */ + err = start_clients(test_case); + if (!ASSERT_OK(err, "start_clients")) + goto close_clients; + + err = listen(test_case->servers[MIGRATED_TO], QLEN); + if (!ASSERT_OK(err, "listen")) + goto close_clients; + + err = update_maps(test_case, skel); + if (!ASSERT_OK(err, "fill_maps")) + goto close_clients; + + /* Migrate the requests in the accept queue only. + * TCP_NEW_SYN_RECV requests are not migrated at this point. + */ + err = migrate_dance(test_case); + if (!ASSERT_OK(err, "migrate_dance")) + goto close_clients; + + if (test_case->expire_synack_timer) { + /* Wait for SYN+ACK timers to expire so that + * reqsk_timer_handler() migrates TCP_NEW_SYN_RECV requests. + */ + sleep(1); + } + + if (test_case->link) { + /* Resume 3WHS and migrate TCP_NEW_SYN_RECV requests */ + err = pass_ack(test_case); + if (!ASSERT_OK(err, "pass_ack")) + goto close_clients; + } + + count_requests(test_case, skel); + +close_clients: + close_fds(test_case->clients, NR_CLIENTS); + + if (test_case->link) { + err = pass_ack(test_case); + ASSERT_OK(err, "pass_ack - clean up"); + } + +close_servers: + close_fds(test_case->servers, NR_SERVERS); + + if (test_case->fastopen) { + err = setup_fastopen(buf, sizeof(buf), &saved_len, true); + ASSERT_OK(err, "setup_fastopen - restore"); + } +} + +void serial_test_migrate_reuseport(void) +{ + struct test_migrate_reuseport *skel; + int i; + + skel = test_migrate_reuseport__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + for (i = 0; i < ARRAY_SIZE(test_cases); i++) { + test__start_subtest(test_cases[i].name); + run_test(&test_cases[i], skel); + } + + test_migrate_reuseport__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/missed.c b/tools/testing/selftests/bpf/prog_tests/missed.c new file mode 100644 index 000000000000..70d90c43537c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/missed.c @@ -0,0 +1,138 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "missed_kprobe.skel.h" +#include "missed_kprobe_recursion.skel.h" +#include "missed_tp_recursion.skel.h" + +/* + * Putting kprobe on bpf_fentry_test1 that calls bpf_kfunc_common_test + * kfunc, which has also kprobe on. The latter won't get triggered due + * to kprobe recursion check and kprobe missed counter is incremented. + */ +static void test_missed_perf_kprobe(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct bpf_link_info info = {}; + struct missed_kprobe *skel; + __u32 len = sizeof(info); + int err, prog_fd; + + skel = missed_kprobe__open_and_load(); + if (!ASSERT_OK_PTR(skel, "missed_kprobe__open_and_load")) + goto cleanup; + + err = missed_kprobe__attach(skel); + if (!ASSERT_OK(err, "missed_kprobe__attach")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.trigger); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + err = bpf_link_get_info_by_fd(bpf_link__fd(skel->links.test2), &info, &len); + if (!ASSERT_OK(err, "bpf_link_get_info_by_fd")) + goto cleanup; + + ASSERT_EQ(info.type, BPF_LINK_TYPE_PERF_EVENT, "info.type"); + ASSERT_EQ(info.perf_event.type, BPF_PERF_EVENT_KPROBE, "info.perf_event.type"); + ASSERT_EQ(info.perf_event.kprobe.missed, 1, "info.perf_event.kprobe.missed"); + +cleanup: + missed_kprobe__destroy(skel); +} + +static __u64 get_missed_count(int fd) +{ + struct bpf_prog_info info = {}; + __u32 len = sizeof(info); + int err; + + err = bpf_prog_get_info_by_fd(fd, &info, &len); + if (!ASSERT_OK(err, "bpf_prog_get_info_by_fd")) + return (__u64) -1; + return info.recursion_misses; +} + +/* + * Putting kprobe.multi on bpf_fentry_test1 that calls bpf_kfunc_common_test + * kfunc which has 3 perf event kprobes and 1 kprobe.multi attached. + * + * Because fprobe (kprobe.multi attach layear) does not have strict recursion + * check the kprobe's bpf_prog_active check is hit for test2-5. + */ +static void test_missed_kprobe_recursion(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct missed_kprobe_recursion *skel; + int err, prog_fd; + + skel = missed_kprobe_recursion__open_and_load(); + if (!ASSERT_OK_PTR(skel, "missed_kprobe_recursion__open_and_load")) + goto cleanup; + + err = missed_kprobe_recursion__attach(skel); + if (!ASSERT_OK(err, "missed_kprobe_recursion__attach")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.trigger); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + ASSERT_EQ(get_missed_count(bpf_program__fd(skel->progs.test1)), 0, "test1_recursion_misses"); + ASSERT_GE(get_missed_count(bpf_program__fd(skel->progs.test2)), 1, "test2_recursion_misses"); + ASSERT_GE(get_missed_count(bpf_program__fd(skel->progs.test3)), 1, "test3_recursion_misses"); + ASSERT_GE(get_missed_count(bpf_program__fd(skel->progs.test4)), 1, "test4_recursion_misses"); + ASSERT_GE(get_missed_count(bpf_program__fd(skel->progs.test5)), 1, "test5_recursion_misses"); + +cleanup: + missed_kprobe_recursion__destroy(skel); +} + +/* + * Putting kprobe on bpf_fentry_test1 that calls bpf_printk and invokes + * bpf_trace_printk tracepoint. The bpf_trace_printk tracepoint has test[234] + * programs attached to it. + * + * Because kprobe execution goes through bpf_prog_active check, programs + * attached to the tracepoint will fail the recursion check and increment + * the recursion_misses stats. + */ +static void test_missed_tp_recursion(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct missed_tp_recursion *skel; + int err, prog_fd; + + skel = missed_tp_recursion__open_and_load(); + if (!ASSERT_OK_PTR(skel, "missed_tp_recursion__open_and_load")) + goto cleanup; + + err = missed_tp_recursion__attach(skel); + if (!ASSERT_OK(err, "missed_tp_recursion__attach")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.trigger); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + ASSERT_EQ(get_missed_count(bpf_program__fd(skel->progs.test1)), 0, "test1_recursion_misses"); + ASSERT_EQ(get_missed_count(bpf_program__fd(skel->progs.test2)), 1, "test2_recursion_misses"); + ASSERT_EQ(get_missed_count(bpf_program__fd(skel->progs.test3)), 1, "test3_recursion_misses"); + ASSERT_EQ(get_missed_count(bpf_program__fd(skel->progs.test4)), 1, "test4_recursion_misses"); + +cleanup: + missed_tp_recursion__destroy(skel); +} + +void test_missed(void) +{ + if (test__start_subtest("perf_kprobe")) + test_missed_perf_kprobe(); + if (test__start_subtest("kprobe_recursion")) + test_missed_kprobe_recursion(); + if (test__start_subtest("tp_recursion")) + test_missed_tp_recursion(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/mmap.c b/tools/testing/selftests/bpf/prog_tests/mmap.c index 9c3c5c0f068f..a271d5a0f7ab 100644 --- a/tools/testing/selftests/bpf/prog_tests/mmap.c +++ b/tools/testing/selftests/bpf/prog_tests/mmap.c @@ -29,28 +29,42 @@ void test_mmap(void) struct test_mmap *skel; __u64 val = 0; - skel = test_mmap__open_and_load(); - if (CHECK(!skel, "skel_open_and_load", "skeleton open/load failed\n")) + skel = test_mmap__open(); + if (CHECK(!skel, "skel_open", "skeleton open failed\n")) return; + err = bpf_map__set_max_entries(skel->maps.rdonly_map, page_size); + if (CHECK(err != 0, "bpf_map__set_max_entries", "bpf_map__set_max_entries failed\n")) + goto cleanup; + + /* at least 4 pages of data */ + err = bpf_map__set_max_entries(skel->maps.data_map, + 4 * (page_size / sizeof(u64))); + if (CHECK(err != 0, "bpf_map__set_max_entries", "bpf_map__set_max_entries failed\n")) + goto cleanup; + + err = test_mmap__load(skel); + if (CHECK(err != 0, "skel_load", "skeleton load failed\n")) + goto cleanup; + bss_map = skel->maps.bss; data_map = skel->maps.data_map; data_map_fd = bpf_map__fd(data_map); rdmap_fd = bpf_map__fd(skel->maps.rdonly_map); - tmp1 = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, rdmap_fd, 0); + tmp1 = mmap(NULL, page_size, PROT_READ | PROT_WRITE, MAP_SHARED, rdmap_fd, 0); if (CHECK(tmp1 != MAP_FAILED, "rdonly_write_mmap", "unexpected success\n")) { - munmap(tmp1, 4096); + munmap(tmp1, page_size); goto cleanup; } /* now double-check if it's mmap()'able at all */ - tmp1 = mmap(NULL, 4096, PROT_READ, MAP_SHARED, rdmap_fd, 0); + tmp1 = mmap(NULL, page_size, PROT_READ, MAP_SHARED, rdmap_fd, 0); if (CHECK(tmp1 == MAP_FAILED, "rdonly_read_mmap", "failed: %d\n", errno)) goto cleanup; /* get map's ID */ memset(&map_info, 0, map_info_sz); - err = bpf_obj_get_info_by_fd(data_map_fd, &map_info, &map_info_sz); + err = bpf_map_get_info_by_fd(data_map_fd, &map_info, &map_info_sz); if (CHECK(err, "map_get_info", "failed %d\n", errno)) goto cleanup; data_map_id = map_info.id; diff --git a/tools/testing/selftests/bpf/prog_tests/modify_return.c b/tools/testing/selftests/bpf/prog_tests/modify_return.c index 97fec70c600b..a70c99c2f8c8 100644 --- a/tools/testing/selftests/bpf/prog_tests/modify_return.c +++ b/tools/testing/selftests/bpf/prog_tests/modify_return.c @@ -15,51 +15,47 @@ static void run_test(__u32 input_retval, __u16 want_side_effect, __s16 want_ret) { struct modify_return *skel = NULL; int err, prog_fd; - __u32 duration = 0, retval; __u16 side_effect; __s16 ret; + LIBBPF_OPTS(bpf_test_run_opts, topts); skel = modify_return__open_and_load(); - if (CHECK(!skel, "skel_load", "modify_return skeleton failed\n")) + if (!ASSERT_OK_PTR(skel, "skel_load")) goto cleanup; err = modify_return__attach(skel); - if (CHECK(err, "modify_return", "attach failed: %d\n", err)) + if (!ASSERT_OK(err, "modify_return__attach failed")) goto cleanup; skel->bss->input_retval = input_retval; prog_fd = bpf_program__fd(skel->progs.fmod_ret_test); - err = bpf_prog_test_run(prog_fd, 1, NULL, 0, NULL, 0, - &retval, &duration); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); - CHECK(err, "test_run", "err %d errno %d\n", err, errno); + side_effect = UPPER(topts.retval); + ret = LOWER(topts.retval); - side_effect = UPPER(retval); - ret = LOWER(retval); + ASSERT_EQ(ret, want_ret, "test_run ret"); + ASSERT_EQ(side_effect, want_side_effect, "modify_return side_effect"); + ASSERT_EQ(skel->bss->fentry_result, 1, "modify_return fentry_result"); + ASSERT_EQ(skel->bss->fexit_result, 1, "modify_return fexit_result"); + ASSERT_EQ(skel->bss->fmod_ret_result, 1, "modify_return fmod_ret_result"); - CHECK(ret != want_ret, "test_run", - "unexpected ret: %d, expected: %d\n", ret, want_ret); - CHECK(side_effect != want_side_effect, "modify_return", - "unexpected side_effect: %d\n", side_effect); - - CHECK(skel->bss->fentry_result != 1, "modify_return", - "fentry failed\n"); - CHECK(skel->bss->fexit_result != 1, "modify_return", - "fexit failed\n"); - CHECK(skel->bss->fmod_ret_result != 1, "modify_return", - "fmod_ret failed\n"); + ASSERT_EQ(skel->bss->fentry_result2, 1, "modify_return fentry_result2"); + ASSERT_EQ(skel->bss->fexit_result2, 1, "modify_return fexit_result2"); + ASSERT_EQ(skel->bss->fmod_ret_result2, 1, "modify_return fmod_ret_result2"); cleanup: modify_return__destroy(skel); } -void test_modify_return(void) +/* TODO: conflict with get_func_ip_test */ +void serial_test_modify_return(void) { run_test(0 /* input_retval */, - 1 /* want_side_effect */, - 4 /* want_ret */); + 2 /* want_side_effect */, + 33 /* want_ret */); run_test(-EINVAL /* input_retval */, 0 /* want_side_effect */, - -EINVAL /* want_ret */); + -EINVAL * 2 /* want_ret */); } - diff --git a/tools/testing/selftests/bpf/prog_tests/module_attach.c b/tools/testing/selftests/bpf/prog_tests/module_attach.c new file mode 100644 index 000000000000..6d391d95f96e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/module_attach.c @@ -0,0 +1,117 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ + +#include <test_progs.h> +#include <stdbool.h> +#include "test_module_attach.skel.h" +#include "testing_helpers.h" + +static int duration; + +static int trigger_module_test_writable(int *val) +{ + int fd, err; + char buf[65]; + ssize_t rd; + + fd = open(BPF_TESTMOD_TEST_FILE, O_RDONLY); + err = -errno; + if (!ASSERT_GE(fd, 0, "testmode_file_open")) + return err; + + rd = read(fd, buf, sizeof(buf) - 1); + err = -errno; + if (!ASSERT_GT(rd, 0, "testmod_file_rd_val")) { + close(fd); + return err; + } + + buf[rd] = '\0'; + *val = strtol(buf, NULL, 0); + close(fd); + + return 0; +} + +void test_module_attach(void) +{ + const int READ_SZ = 456; + const int WRITE_SZ = 457; + struct test_module_attach* skel; + struct test_module_attach__bss *bss; + struct bpf_link *link; + int err; + int writable_val = 0; + + skel = test_module_attach__open(); + if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) + return; + + err = bpf_program__set_attach_target(skel->progs.handle_fentry_manual, + 0, "bpf_testmod_test_read"); + ASSERT_OK(err, "set_attach_target"); + + err = bpf_program__set_attach_target(skel->progs.handle_fentry_explicit_manual, + 0, "bpf_testmod:bpf_testmod_test_read"); + ASSERT_OK(err, "set_attach_target_explicit"); + + err = test_module_attach__load(skel); + if (CHECK(err, "skel_load", "failed to load skeleton\n")) + return; + + bss = skel->bss; + + err = test_module_attach__attach(skel); + if (CHECK(err, "skel_attach", "skeleton attach failed: %d\n", err)) + goto cleanup; + + /* trigger tracepoint */ + ASSERT_OK(trigger_module_test_read(READ_SZ), "trigger_read"); + ASSERT_OK(trigger_module_test_write(WRITE_SZ), "trigger_write"); + + ASSERT_EQ(bss->raw_tp_read_sz, READ_SZ, "raw_tp"); + ASSERT_EQ(bss->raw_tp_bare_write_sz, WRITE_SZ, "raw_tp_bare"); + ASSERT_EQ(bss->tp_btf_read_sz, READ_SZ, "tp_btf"); + ASSERT_EQ(bss->fentry_read_sz, READ_SZ, "fentry"); + ASSERT_EQ(bss->fentry_manual_read_sz, READ_SZ, "fentry_manual"); + ASSERT_EQ(bss->fentry_explicit_read_sz, READ_SZ, "fentry_explicit"); + ASSERT_EQ(bss->fentry_explicit_manual_read_sz, READ_SZ, "fentry_explicit_manual"); + ASSERT_EQ(bss->fexit_read_sz, READ_SZ, "fexit"); + ASSERT_EQ(bss->fexit_ret, -EIO, "fexit_tet"); + ASSERT_EQ(bss->fmod_ret_read_sz, READ_SZ, "fmod_ret"); + + bss->raw_tp_writable_bare_early_ret = true; + bss->raw_tp_writable_bare_out_val = 0xf1f2f3f4; + ASSERT_OK(trigger_module_test_writable(&writable_val), + "trigger_writable"); + ASSERT_EQ(bss->raw_tp_writable_bare_in_val, 1024, "writable_test_in"); + ASSERT_EQ(bss->raw_tp_writable_bare_out_val, writable_val, + "writable_test_out"); + + test_module_attach__detach(skel); + + /* attach fentry/fexit and make sure it get's module reference */ + link = bpf_program__attach(skel->progs.handle_fentry); + if (!ASSERT_OK_PTR(link, "attach_fentry")) + goto cleanup; + + ASSERT_ERR(unload_bpf_testmod(false), "unload_bpf_testmod"); + bpf_link__destroy(link); + + link = bpf_program__attach(skel->progs.handle_fexit); + if (!ASSERT_OK_PTR(link, "attach_fexit")) + goto cleanup; + + ASSERT_ERR(unload_bpf_testmod(false), "unload_bpf_testmod"); + bpf_link__destroy(link); + + link = bpf_program__attach(skel->progs.kprobe_multi); + if (!ASSERT_OK_PTR(link, "attach_kprobe_multi")) + goto cleanup; + + ASSERT_ERR(unload_bpf_testmod(false), "unload_bpf_testmod"); + bpf_link__destroy(link); + +cleanup: + test_module_attach__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/module_fentry_shadow.c b/tools/testing/selftests/bpf/prog_tests/module_fentry_shadow.c new file mode 100644 index 000000000000..aa9f67eb1c95 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/module_fentry_shadow.c @@ -0,0 +1,133 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Red Hat */ +#include <test_progs.h> +#include <bpf/btf.h> +#include "bpf/libbpf_internal.h" +#include "cgroup_helpers.h" + +static const char *module_name = "bpf_testmod"; +static const char *symbol_name = "bpf_fentry_shadow_test"; + +static int get_bpf_testmod_btf_fd(void) +{ + struct bpf_btf_info info; + char name[64]; + __u32 id = 0, len; + int err, fd; + + while (true) { + err = bpf_btf_get_next_id(id, &id); + if (err) { + log_err("failed to iterate BTF objects"); + return err; + } + + fd = bpf_btf_get_fd_by_id(id); + if (fd < 0) { + if (errno == ENOENT) + continue; /* expected race: BTF was unloaded */ + err = -errno; + log_err("failed to get FD for BTF object #%d", id); + return err; + } + + len = sizeof(info); + memset(&info, 0, sizeof(info)); + info.name = ptr_to_u64(name); + info.name_len = sizeof(name); + + err = bpf_obj_get_info_by_fd(fd, &info, &len); + if (err) { + err = -errno; + log_err("failed to get info for BTF object #%d", id); + close(fd); + return err; + } + + if (strcmp(name, module_name) == 0) + return fd; + + close(fd); + } + return -ENOENT; +} + +void test_module_fentry_shadow(void) +{ + struct btf *vmlinux_btf = NULL, *mod_btf = NULL; + int err, i; + int btf_fd[2] = {}; + int prog_fd[2] = {}; + int link_fd[2] = {}; + __s32 btf_id[2] = {}; + + if (!env.has_testmod) { + test__skip(); + return; + } + + LIBBPF_OPTS(bpf_prog_load_opts, load_opts, + .expected_attach_type = BPF_TRACE_FENTRY, + ); + + const struct bpf_insn trace_program[] = { + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + + vmlinux_btf = btf__load_vmlinux_btf(); + if (!ASSERT_OK_PTR(vmlinux_btf, "load_vmlinux_btf")) + return; + + btf_fd[1] = get_bpf_testmod_btf_fd(); + if (!ASSERT_GE(btf_fd[1], 0, "get_bpf_testmod_btf_fd")) + goto out; + + mod_btf = btf_get_from_fd(btf_fd[1], vmlinux_btf); + if (!ASSERT_OK_PTR(mod_btf, "btf_get_from_fd")) + goto out; + + btf_id[0] = btf__find_by_name_kind(vmlinux_btf, symbol_name, BTF_KIND_FUNC); + if (!ASSERT_GT(btf_id[0], 0, "btf_find_by_name")) + goto out; + + btf_id[1] = btf__find_by_name_kind(mod_btf, symbol_name, BTF_KIND_FUNC); + if (!ASSERT_GT(btf_id[1], 0, "btf_find_by_name")) + goto out; + + for (i = 0; i < 2; i++) { + load_opts.attach_btf_id = btf_id[i]; + load_opts.attach_btf_obj_fd = btf_fd[i]; + prog_fd[i] = bpf_prog_load(BPF_PROG_TYPE_TRACING, NULL, "GPL", + trace_program, + sizeof(trace_program) / sizeof(struct bpf_insn), + &load_opts); + if (!ASSERT_GE(prog_fd[i], 0, "bpf_prog_load")) + goto out; + + /* If the verifier incorrectly resolves addresses of the + * shadowed functions and uses the same address for both the + * vmlinux and the bpf_testmod functions, this will fail on + * attempting to create two trampolines for the same address, + * which is forbidden. + */ + link_fd[i] = bpf_link_create(prog_fd[i], 0, BPF_TRACE_FENTRY, NULL); + if (!ASSERT_GE(link_fd[i], 0, "bpf_link_create")) + goto out; + } + + err = bpf_prog_test_run_opts(prog_fd[0], NULL); + ASSERT_OK(err, "running test"); + +out: + btf__free(vmlinux_btf); + btf__free(mod_btf); + for (i = 0; i < 2; i++) { + if (btf_fd[i]) + close(btf_fd[i]); + if (prog_fd[i] > 0) + close(prog_fd[i]); + if (link_fd[i] > 0) + close(link_fd[i]); + } +} diff --git a/tools/testing/selftests/bpf/prog_tests/mptcp.c b/tools/testing/selftests/bpf/prog_tests/mptcp.c new file mode 100644 index 000000000000..274d2e033e39 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/mptcp.c @@ -0,0 +1,349 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020, Tessares SA. */ +/* Copyright (c) 2022, SUSE. */ + +#include <linux/const.h> +#include <netinet/in.h> +#include <test_progs.h> +#include "cgroup_helpers.h" +#include "network_helpers.h" +#include "mptcp_sock.skel.h" +#include "mptcpify.skel.h" + +#define NS_TEST "mptcp_ns" + +#ifndef IPPROTO_MPTCP +#define IPPROTO_MPTCP 262 +#endif + +#ifndef SOL_MPTCP +#define SOL_MPTCP 284 +#endif +#ifndef MPTCP_INFO +#define MPTCP_INFO 1 +#endif +#ifndef MPTCP_INFO_FLAG_FALLBACK +#define MPTCP_INFO_FLAG_FALLBACK _BITUL(0) +#endif +#ifndef MPTCP_INFO_FLAG_REMOTE_KEY_RECEIVED +#define MPTCP_INFO_FLAG_REMOTE_KEY_RECEIVED _BITUL(1) +#endif + +#ifndef TCP_CA_NAME_MAX +#define TCP_CA_NAME_MAX 16 +#endif + +struct __mptcp_info { + __u8 mptcpi_subflows; + __u8 mptcpi_add_addr_signal; + __u8 mptcpi_add_addr_accepted; + __u8 mptcpi_subflows_max; + __u8 mptcpi_add_addr_signal_max; + __u8 mptcpi_add_addr_accepted_max; + __u32 mptcpi_flags; + __u32 mptcpi_token; + __u64 mptcpi_write_seq; + __u64 mptcpi_snd_una; + __u64 mptcpi_rcv_nxt; + __u8 mptcpi_local_addr_used; + __u8 mptcpi_local_addr_max; + __u8 mptcpi_csum_enabled; + __u32 mptcpi_retransmits; + __u64 mptcpi_bytes_retrans; + __u64 mptcpi_bytes_sent; + __u64 mptcpi_bytes_received; + __u64 mptcpi_bytes_acked; +}; + +struct mptcp_storage { + __u32 invoked; + __u32 is_mptcp; + struct sock *sk; + __u32 token; + struct sock *first; + char ca_name[TCP_CA_NAME_MAX]; +}; + +static struct nstoken *create_netns(void) +{ + SYS(fail, "ip netns add %s", NS_TEST); + SYS(fail, "ip -net %s link set dev lo up", NS_TEST); + + return open_netns(NS_TEST); +fail: + return NULL; +} + +static void cleanup_netns(struct nstoken *nstoken) +{ + if (nstoken) + close_netns(nstoken); + + SYS_NOFAIL("ip netns del %s", NS_TEST); +} + +static int start_mptcp_server(int family, const char *addr_str, __u16 port, + int timeout_ms) +{ + struct network_helper_opts opts = { + .timeout_ms = timeout_ms, + .proto = IPPROTO_MPTCP, + }; + struct sockaddr_storage addr; + socklen_t addrlen; + + if (make_sockaddr(family, addr_str, port, &addr, &addrlen)) + return -1; + + return start_server_addr(SOCK_STREAM, &addr, addrlen, &opts); +} + +static int verify_tsk(int map_fd, int client_fd) +{ + int err, cfd = client_fd; + struct mptcp_storage val; + + err = bpf_map_lookup_elem(map_fd, &cfd, &val); + if (!ASSERT_OK(err, "bpf_map_lookup_elem")) + return err; + + if (!ASSERT_EQ(val.invoked, 1, "unexpected invoked count")) + err++; + + if (!ASSERT_EQ(val.is_mptcp, 0, "unexpected is_mptcp")) + err++; + + return err; +} + +static void get_msk_ca_name(char ca_name[]) +{ + size_t len; + int fd; + + fd = open("/proc/sys/net/ipv4/tcp_congestion_control", O_RDONLY); + if (!ASSERT_GE(fd, 0, "failed to open tcp_congestion_control")) + return; + + len = read(fd, ca_name, TCP_CA_NAME_MAX); + if (!ASSERT_GT(len, 0, "failed to read ca_name")) + goto err; + + if (len > 0 && ca_name[len - 1] == '\n') + ca_name[len - 1] = '\0'; + +err: + close(fd); +} + +static int verify_msk(int map_fd, int client_fd, __u32 token) +{ + char ca_name[TCP_CA_NAME_MAX]; + int err, cfd = client_fd; + struct mptcp_storage val; + + if (!ASSERT_GT(token, 0, "invalid token")) + return -1; + + get_msk_ca_name(ca_name); + + err = bpf_map_lookup_elem(map_fd, &cfd, &val); + if (!ASSERT_OK(err, "bpf_map_lookup_elem")) + return err; + + if (!ASSERT_EQ(val.invoked, 1, "unexpected invoked count")) + err++; + + if (!ASSERT_EQ(val.is_mptcp, 1, "unexpected is_mptcp")) + err++; + + if (!ASSERT_EQ(val.token, token, "unexpected token")) + err++; + + if (!ASSERT_EQ(val.first, val.sk, "unexpected first")) + err++; + + if (!ASSERT_STRNEQ(val.ca_name, ca_name, TCP_CA_NAME_MAX, "unexpected ca_name")) + err++; + + return err; +} + +static int run_test(int cgroup_fd, int server_fd, bool is_mptcp) +{ + int client_fd, prog_fd, map_fd, err; + struct mptcp_sock *sock_skel; + + sock_skel = mptcp_sock__open_and_load(); + if (!ASSERT_OK_PTR(sock_skel, "skel_open_load")) + return libbpf_get_error(sock_skel); + + err = mptcp_sock__attach(sock_skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + prog_fd = bpf_program__fd(sock_skel->progs._sockops); + map_fd = bpf_map__fd(sock_skel->maps.socket_storage_map); + err = bpf_prog_attach(prog_fd, cgroup_fd, BPF_CGROUP_SOCK_OPS, 0); + if (!ASSERT_OK(err, "bpf_prog_attach")) + goto out; + + client_fd = connect_to_fd(server_fd, 0); + if (!ASSERT_GE(client_fd, 0, "connect to fd")) { + err = -EIO; + goto out; + } + + err += is_mptcp ? verify_msk(map_fd, client_fd, sock_skel->bss->token) : + verify_tsk(map_fd, client_fd); + + close(client_fd); + +out: + mptcp_sock__destroy(sock_skel); + return err; +} + +static void test_base(void) +{ + struct nstoken *nstoken = NULL; + int server_fd, cgroup_fd; + + cgroup_fd = test__join_cgroup("/mptcp"); + if (!ASSERT_GE(cgroup_fd, 0, "test__join_cgroup")) + return; + + nstoken = create_netns(); + if (!ASSERT_OK_PTR(nstoken, "create_netns")) + goto fail; + + /* without MPTCP */ + server_fd = start_server(AF_INET, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_GE(server_fd, 0, "start_server")) + goto with_mptcp; + + ASSERT_OK(run_test(cgroup_fd, server_fd, false), "run_test tcp"); + + close(server_fd); + +with_mptcp: + /* with MPTCP */ + server_fd = start_mptcp_server(AF_INET, NULL, 0, 0); + if (!ASSERT_GE(server_fd, 0, "start_mptcp_server")) + goto fail; + + ASSERT_OK(run_test(cgroup_fd, server_fd, true), "run_test mptcp"); + + close(server_fd); + +fail: + cleanup_netns(nstoken); + close(cgroup_fd); +} + +static void send_byte(int fd) +{ + char b = 0x55; + + ASSERT_EQ(write(fd, &b, sizeof(b)), 1, "send single byte"); +} + +static int verify_mptcpify(int server_fd, int client_fd) +{ + struct __mptcp_info info; + socklen_t optlen; + int protocol; + int err = 0; + + optlen = sizeof(protocol); + if (!ASSERT_OK(getsockopt(server_fd, SOL_SOCKET, SO_PROTOCOL, &protocol, &optlen), + "getsockopt(SOL_PROTOCOL)")) + return -1; + + if (!ASSERT_EQ(protocol, IPPROTO_MPTCP, "protocol isn't MPTCP")) + err++; + + optlen = sizeof(info); + if (!ASSERT_OK(getsockopt(client_fd, SOL_MPTCP, MPTCP_INFO, &info, &optlen), + "getsockopt(MPTCP_INFO)")) + return -1; + + if (!ASSERT_GE(info.mptcpi_flags, 0, "unexpected mptcpi_flags")) + err++; + if (!ASSERT_FALSE(info.mptcpi_flags & MPTCP_INFO_FLAG_FALLBACK, + "MPTCP fallback")) + err++; + if (!ASSERT_TRUE(info.mptcpi_flags & MPTCP_INFO_FLAG_REMOTE_KEY_RECEIVED, + "no remote key received")) + err++; + + return err; +} + +static int run_mptcpify(int cgroup_fd) +{ + int server_fd, client_fd, err = 0; + struct mptcpify *mptcpify_skel; + + mptcpify_skel = mptcpify__open_and_load(); + if (!ASSERT_OK_PTR(mptcpify_skel, "skel_open_load")) + return libbpf_get_error(mptcpify_skel); + + mptcpify_skel->bss->pid = getpid(); + + err = mptcpify__attach(mptcpify_skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + /* without MPTCP */ + server_fd = start_server(AF_INET, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_GE(server_fd, 0, "start_server")) { + err = -EIO; + goto out; + } + + client_fd = connect_to_fd(server_fd, 0); + if (!ASSERT_GE(client_fd, 0, "connect to fd")) { + err = -EIO; + goto close_server; + } + + send_byte(client_fd); + + err = verify_mptcpify(server_fd, client_fd); + + close(client_fd); +close_server: + close(server_fd); +out: + mptcpify__destroy(mptcpify_skel); + return err; +} + +static void test_mptcpify(void) +{ + struct nstoken *nstoken = NULL; + int cgroup_fd; + + cgroup_fd = test__join_cgroup("/mptcpify"); + if (!ASSERT_GE(cgroup_fd, 0, "test__join_cgroup")) + return; + + nstoken = create_netns(); + if (!ASSERT_OK_PTR(nstoken, "create_netns")) + goto fail; + + ASSERT_OK(run_mptcpify(cgroup_fd), "run_mptcpify"); + +fail: + cleanup_netns(nstoken); + close(cgroup_fd); +} + +void test_mptcp(void) +{ + if (test__start_subtest("base")) + test_base(); + if (test__start_subtest("mptcpify")) + test_mptcpify(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/nested_trust.c b/tools/testing/selftests/bpf/prog_tests/nested_trust.c new file mode 100644 index 000000000000..39886f58924e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/nested_trust.c @@ -0,0 +1,12 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include "nested_trust_failure.skel.h" +#include "nested_trust_success.skel.h" + +void test_nested_trust(void) +{ + RUN_TESTS(nested_trust_success); + RUN_TESTS(nested_trust_failure); +} diff --git a/tools/testing/selftests/bpf/prog_tests/netcnt.c b/tools/testing/selftests/bpf/prog_tests/netcnt.c new file mode 100644 index 000000000000..c3333edd029f --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/netcnt.c @@ -0,0 +1,82 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <sys/sysinfo.h> +#include <test_progs.h> +#include "network_helpers.h" +#include "netcnt_prog.skel.h" +#include "netcnt_common.h" + +#define CG_NAME "/netcnt" + +void serial_test_netcnt(void) +{ + union percpu_net_cnt *percpu_netcnt = NULL; + struct bpf_cgroup_storage_key key; + int map_fd, percpu_map_fd; + struct netcnt_prog *skel; + unsigned long packets; + union net_cnt netcnt; + unsigned long bytes; + int cpu, nproc; + int cg_fd = -1; + char cmd[128]; + + skel = netcnt_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "netcnt_prog__open_and_load")) + return; + + nproc = bpf_num_possible_cpus(); + percpu_netcnt = malloc(sizeof(*percpu_netcnt) * nproc); + if (!ASSERT_OK_PTR(percpu_netcnt, "malloc(percpu_netcnt)")) + goto err; + + cg_fd = test__join_cgroup(CG_NAME); + if (!ASSERT_GE(cg_fd, 0, "test__join_cgroup")) + goto err; + + skel->links.bpf_nextcnt = bpf_program__attach_cgroup(skel->progs.bpf_nextcnt, cg_fd); + if (!ASSERT_OK_PTR(skel->links.bpf_nextcnt, + "attach_cgroup(bpf_nextcnt)")) + goto err; + + snprintf(cmd, sizeof(cmd), "%s ::1 -A -c 10000 -q > /dev/null", ping_command(AF_INET6)); + ASSERT_OK(system(cmd), cmd); + + map_fd = bpf_map__fd(skel->maps.netcnt); + if (!ASSERT_OK(bpf_map_get_next_key(map_fd, NULL, &key), "bpf_map_get_next_key")) + goto err; + + if (!ASSERT_OK(bpf_map_lookup_elem(map_fd, &key, &netcnt), "bpf_map_lookup_elem(netcnt)")) + goto err; + + percpu_map_fd = bpf_map__fd(skel->maps.percpu_netcnt); + if (!ASSERT_OK(bpf_map_lookup_elem(percpu_map_fd, &key, &percpu_netcnt[0]), + "bpf_map_lookup_elem(percpu_netcnt)")) + goto err; + + /* Some packets can be still in per-cpu cache, but not more than + * MAX_PERCPU_PACKETS. + */ + packets = netcnt.packets; + bytes = netcnt.bytes; + for (cpu = 0; cpu < nproc; cpu++) { + ASSERT_LE(percpu_netcnt[cpu].packets, MAX_PERCPU_PACKETS, "MAX_PERCPU_PACKETS"); + + packets += percpu_netcnt[cpu].packets; + bytes += percpu_netcnt[cpu].bytes; + } + + /* No packets should be lost */ + ASSERT_GE(packets, 10000, "packets"); + + /* Let's check that bytes counter matches the number of packets + * multiplied by the size of ipv6 ICMP packet. + */ + ASSERT_GE(bytes, packets * 104, "bytes"); + +err: + if (cg_fd != -1) + close(cg_fd); + free(percpu_netcnt); + netcnt_prog__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/netfilter_link_attach.c b/tools/testing/selftests/bpf/prog_tests/netfilter_link_attach.c new file mode 100644 index 000000000000..4297a2a4cb11 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/netfilter_link_attach.c @@ -0,0 +1,86 @@ +// SPDX-License-Identifier: GPL-2.0-or-later + +#include <netinet/in.h> +#include <linux/netfilter.h> + +#include "test_progs.h" +#include "test_netfilter_link_attach.skel.h" + +struct nf_link_test { + __u32 pf; + __u32 hooknum; + __s32 priority; + __u32 flags; + + bool expect_success; + const char * const name; +}; + +static const struct nf_link_test nf_hook_link_tests[] = { + { .name = "allzero", }, + { .pf = NFPROTO_NUMPROTO, .name = "invalid-pf", }, + { .pf = NFPROTO_IPV4, .hooknum = 42, .name = "invalid-hooknum", }, + { .pf = NFPROTO_IPV4, .priority = INT_MIN, .name = "invalid-priority-min", }, + { .pf = NFPROTO_IPV4, .priority = INT_MAX, .name = "invalid-priority-max", }, + { .pf = NFPROTO_IPV4, .flags = UINT_MAX, .name = "invalid-flags", }, + + { .pf = NFPROTO_INET, .priority = 1, .name = "invalid-inet-not-supported", }, + + { .pf = NFPROTO_IPV4, .priority = -10000, .expect_success = true, .name = "attach ipv4", }, + { .pf = NFPROTO_IPV6, .priority = 10001, .expect_success = true, .name = "attach ipv6", }, +}; + +void test_netfilter_link_attach(void) +{ + struct test_netfilter_link_attach *skel; + struct bpf_program *prog; + LIBBPF_OPTS(bpf_netfilter_opts, opts); + int i; + + skel = test_netfilter_link_attach__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_netfilter_link_attach__open_and_load")) + goto out; + + prog = skel->progs.nf_link_attach_test; + if (!ASSERT_OK_PTR(prog, "attach program")) + goto out; + + for (i = 0; i < ARRAY_SIZE(nf_hook_link_tests); i++) { + struct bpf_link *link; + + if (!test__start_subtest(nf_hook_link_tests[i].name)) + continue; + +#define X(opts, m, i) opts.m = nf_hook_link_tests[(i)].m + X(opts, pf, i); + X(opts, hooknum, i); + X(opts, priority, i); + X(opts, flags, i); +#undef X + link = bpf_program__attach_netfilter(prog, &opts); + if (nf_hook_link_tests[i].expect_success) { + struct bpf_link *link2; + + if (!ASSERT_OK_PTR(link, "program attach successful")) + continue; + + link2 = bpf_program__attach_netfilter(prog, &opts); + ASSERT_ERR_PTR(link2, "attach program with same pf/hook/priority"); + + if (!ASSERT_OK(bpf_link__destroy(link), "link destroy")) + break; + + link2 = bpf_program__attach_netfilter(prog, &opts); + if (!ASSERT_OK_PTR(link2, "program reattach successful")) + continue; + if (!ASSERT_OK(bpf_link__destroy(link2), "link destroy")) + break; + } else { + ASSERT_ERR_PTR(link, "program load failure"); + } + } + +out: + test_netfilter_link_attach__destroy(skel); +} + diff --git a/tools/testing/selftests/bpf/prog_tests/netns_cookie.c b/tools/testing/selftests/bpf/prog_tests/netns_cookie.c new file mode 100644 index 000000000000..71d8f3ba7d6b --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/netns_cookie.c @@ -0,0 +1,80 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include "netns_cookie_prog.skel.h" +#include "network_helpers.h" + +#ifndef SO_NETNS_COOKIE +#define SO_NETNS_COOKIE 71 +#endif + +static int duration; + +void test_netns_cookie(void) +{ + int server_fd = -1, client_fd = -1, cgroup_fd = -1; + int err, val, ret, map, verdict; + struct netns_cookie_prog *skel; + uint64_t cookie_expected_value; + socklen_t vallen = sizeof(cookie_expected_value); + static const char send_msg[] = "message"; + + skel = netns_cookie_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + cgroup_fd = test__join_cgroup("/netns_cookie"); + if (CHECK(cgroup_fd < 0, "join_cgroup", "cgroup creation failed\n")) + goto done; + + skel->links.get_netns_cookie_sockops = bpf_program__attach_cgroup( + skel->progs.get_netns_cookie_sockops, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.get_netns_cookie_sockops, "prog_attach")) + goto done; + + verdict = bpf_program__fd(skel->progs.get_netns_cookie_sk_msg); + map = bpf_map__fd(skel->maps.sock_map); + err = bpf_prog_attach(verdict, map, BPF_SK_MSG_VERDICT, 0); + if (!ASSERT_OK(err, "prog_attach")) + goto done; + + server_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + if (CHECK(server_fd < 0, "start_server", "errno %d\n", errno)) + goto done; + + client_fd = connect_to_fd(server_fd, 0); + if (CHECK(client_fd < 0, "connect_to_fd", "errno %d\n", errno)) + goto done; + + ret = send(client_fd, send_msg, sizeof(send_msg), 0); + if (CHECK(ret != sizeof(send_msg), "send(msg)", "ret:%d\n", ret)) + goto done; + + err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.sockops_netns_cookies), + &client_fd, &val); + if (!ASSERT_OK(err, "map_lookup(sockops_netns_cookies)")) + goto done; + + err = getsockopt(client_fd, SOL_SOCKET, SO_NETNS_COOKIE, + &cookie_expected_value, &vallen); + if (!ASSERT_OK(err, "getsockopt")) + goto done; + + ASSERT_EQ(val, cookie_expected_value, "cookie_value"); + + err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.sk_msg_netns_cookies), + &client_fd, &val); + if (!ASSERT_OK(err, "map_lookup(sk_msg_netns_cookies)")) + goto done; + + ASSERT_EQ(val, cookie_expected_value, "cookie_value"); + +done: + if (server_fd != -1) + close(server_fd); + if (client_fd != -1) + close(client_fd); + if (cgroup_fd != -1) + close(cgroup_fd); + netns_cookie_prog__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/ns_current_pid_tgid.c b/tools/testing/selftests/bpf/prog_tests/ns_current_pid_tgid.c index e74dc501b27f..e72d75d6baa7 100644 --- a/tools/testing/selftests/bpf/prog_tests/ns_current_pid_tgid.c +++ b/tools/testing/selftests/bpf/prog_tests/ns_current_pid_tgid.c @@ -1,85 +1,240 @@ // SPDX-License-Identifier: GPL-2.0 /* Copyright (c) 2020 Carlos Neira cneirabustos@gmail.com */ + +#define _GNU_SOURCE #include <test_progs.h> +#include "test_ns_current_pid_tgid.skel.h" #include <sys/stat.h> #include <sys/types.h> #include <unistd.h> #include <sys/syscall.h> +#include <sched.h> +#include <sys/wait.h> +#include <sys/mount.h> +#include <sys/fcntl.h> +#include "network_helpers.h" -struct bss { - __u64 dev; - __u64 ino; - __u64 pid_tgid; - __u64 user_pid_tgid; -}; +#define STACK_SIZE (1024 * 1024) +static char child_stack[STACK_SIZE]; -void test_ns_current_pid_tgid(void) +static int get_pid_tgid(pid_t *pid, pid_t *tgid, + struct test_ns_current_pid_tgid__bss *bss) { - const char *probe_name = "raw_tracepoint/sys_enter"; - const char *file = "test_ns_current_pid_tgid.o"; - int err, key = 0, duration = 0; - struct bpf_link *link = NULL; - struct bpf_program *prog; - struct bpf_map *bss_map; - struct bpf_object *obj; - struct bss bss; struct stat st; - __u64 id; + int err; - obj = bpf_object__open_file(file, NULL); - if (CHECK(IS_ERR(obj), "obj_open", "err %ld\n", PTR_ERR(obj))) - return; + *pid = syscall(SYS_gettid); + *tgid = getpid(); + + err = stat("/proc/self/ns/pid", &st); + if (!ASSERT_OK(err, "stat /proc/self/ns/pid")) + return err; + + bss->dev = st.st_dev; + bss->ino = st.st_ino; + bss->user_pid = 0; + bss->user_tgid = 0; + return 0; +} + +static int test_current_pid_tgid_tp(void *args) +{ + struct test_ns_current_pid_tgid__bss *bss; + struct test_ns_current_pid_tgid *skel; + int ret = -1, err; + pid_t tgid, pid; + + skel = test_ns_current_pid_tgid__open(); + if (!ASSERT_OK_PTR(skel, "test_ns_current_pid_tgid__open")) + return ret; + + bpf_program__set_autoload(skel->progs.tp_handler, true); - err = bpf_object__load(obj); - if (CHECK(err, "obj_load", "err %d errno %d\n", err, errno)) + err = test_ns_current_pid_tgid__load(skel); + if (!ASSERT_OK(err, "test_ns_current_pid_tgid__load")) goto cleanup; - bss_map = bpf_object__find_map_by_name(obj, "test_ns_.bss"); - if (CHECK(!bss_map, "find_bss_map", "failed\n")) + bss = skel->bss; + if (get_pid_tgid(&pid, &tgid, bss)) goto cleanup; - prog = bpf_object__find_program_by_title(obj, probe_name); - if (CHECK(!prog, "find_prog", "prog '%s' not found\n", - probe_name)) + err = test_ns_current_pid_tgid__attach(skel); + if (!ASSERT_OK(err, "test_ns_current_pid_tgid__attach")) goto cleanup; - memset(&bss, 0, sizeof(bss)); - pid_t tid = syscall(SYS_gettid); - pid_t pid = getpid(); + /* trigger tracepoint */ + usleep(1); + if (!ASSERT_EQ(bss->user_pid, pid, "pid")) + goto cleanup; + if (!ASSERT_EQ(bss->user_tgid, tgid, "tgid")) + goto cleanup; + ret = 0; + +cleanup: + test_ns_current_pid_tgid__destroy(skel); + return ret; +} + +static int test_current_pid_tgid_cgrp(void *args) +{ + struct test_ns_current_pid_tgid__bss *bss; + struct test_ns_current_pid_tgid *skel; + int server_fd = -1, ret = -1, err; + int cgroup_fd = *(int *)args; + pid_t tgid, pid; + + skel = test_ns_current_pid_tgid__open(); + if (!ASSERT_OK_PTR(skel, "test_ns_current_pid_tgid__open")) + return ret; - id = (__u64) tid << 32 | pid; - bss.user_pid_tgid = id; + bpf_program__set_autoload(skel->progs.cgroup_bind4, true); - if (CHECK_FAIL(stat("/proc/self/ns/pid", &st))) { - perror("Failed to stat /proc/self/ns/pid"); + err = test_ns_current_pid_tgid__load(skel); + if (!ASSERT_OK(err, "test_ns_current_pid_tgid__load")) goto cleanup; - } - bss.dev = st.st_dev; - bss.ino = st.st_ino; + bss = skel->bss; + if (get_pid_tgid(&pid, &tgid, bss)) + goto cleanup; - err = bpf_map_update_elem(bpf_map__fd(bss_map), &key, &bss, 0); - if (CHECK(err, "setting_bss", "failed to set bss : %d\n", err)) + skel->links.cgroup_bind4 = bpf_program__attach_cgroup( + skel->progs.cgroup_bind4, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.cgroup_bind4, "bpf_program__attach_cgroup")) goto cleanup; - link = bpf_program__attach_raw_tracepoint(prog, "sys_enter"); - if (CHECK(IS_ERR(link), "attach_raw_tp", "err %ld\n", - PTR_ERR(link))) { - link = NULL; + server_fd = start_server(AF_INET, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_GE(server_fd, 0, "start_server")) goto cleanup; - } - /* trigger some syscalls */ - usleep(1); + if (!ASSERT_EQ(bss->user_pid, pid, "pid")) + goto cleanup; + if (!ASSERT_EQ(bss->user_tgid, tgid, "tgid")) + goto cleanup; + ret = 0; + +cleanup: + if (server_fd >= 0) + close(server_fd); + test_ns_current_pid_tgid__destroy(skel); + return ret; +} + +static int test_current_pid_tgid_sk_msg(void *args) +{ + int verdict, map, server_fd = -1, client_fd = -1; + struct test_ns_current_pid_tgid__bss *bss; + static const char send_msg[] = "message"; + struct test_ns_current_pid_tgid *skel; + int ret = -1, err, key = 0; + pid_t tgid, pid; + + skel = test_ns_current_pid_tgid__open(); + if (!ASSERT_OK_PTR(skel, "test_ns_current_pid_tgid__open")) + return ret; + + bpf_program__set_autoload(skel->progs.sk_msg, true); + + err = test_ns_current_pid_tgid__load(skel); + if (!ASSERT_OK(err, "test_ns_current_pid_tgid__load")) + goto cleanup; + + bss = skel->bss; + if (get_pid_tgid(&pid, &tgid, skel->bss)) + goto cleanup; - err = bpf_map_lookup_elem(bpf_map__fd(bss_map), &key, &bss); - if (CHECK(err, "set_bss", "failed to get bss : %d\n", err)) + verdict = bpf_program__fd(skel->progs.sk_msg); + map = bpf_map__fd(skel->maps.sock_map); + err = bpf_prog_attach(verdict, map, BPF_SK_MSG_VERDICT, 0); + if (!ASSERT_OK(err, "prog_attach")) goto cleanup; - if (CHECK(id != bss.pid_tgid, "Compare user pid/tgid vs. bpf pid/tgid", - "User pid/tgid %llu BPF pid/tgid %llu\n", id, bss.pid_tgid)) + server_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + if (!ASSERT_GE(server_fd, 0, "start_server")) goto cleanup; + + client_fd = connect_to_fd(server_fd, 0); + if (!ASSERT_GE(client_fd, 0, "connect_to_fd")) + goto cleanup; + + err = bpf_map_update_elem(map, &key, &client_fd, BPF_ANY); + if (!ASSERT_OK(err, "bpf_map_update_elem")) + goto cleanup; + + err = send(client_fd, send_msg, sizeof(send_msg), 0); + if (!ASSERT_EQ(err, sizeof(send_msg), "send(msg)")) + goto cleanup; + + if (!ASSERT_EQ(bss->user_pid, pid, "pid")) + goto cleanup; + if (!ASSERT_EQ(bss->user_tgid, tgid, "tgid")) + goto cleanup; + ret = 0; + +cleanup: + if (server_fd >= 0) + close(server_fd); + if (client_fd >= 0) + close(client_fd); + test_ns_current_pid_tgid__destroy(skel); + return ret; +} + +static void test_ns_current_pid_tgid_new_ns(int (*fn)(void *), void *arg) +{ + int wstatus; + pid_t cpid; + + /* Create a process in a new namespace, this process + * will be the init process of this new namespace hence will be pid 1. + */ + cpid = clone(fn, child_stack + STACK_SIZE, + CLONE_NEWPID | SIGCHLD, arg); + + if (!ASSERT_NEQ(cpid, -1, "clone")) + return; + + if (!ASSERT_NEQ(waitpid(cpid, &wstatus, 0), -1, "waitpid")) + return; + + if (!ASSERT_OK(WEXITSTATUS(wstatus), "newns_pidtgid")) + return; +} + +static void test_in_netns(int (*fn)(void *), void *arg) +{ + struct nstoken *nstoken = NULL; + + SYS(cleanup, "ip netns add ns_current_pid_tgid"); + SYS(cleanup, "ip -net ns_current_pid_tgid link set dev lo up"); + + nstoken = open_netns("ns_current_pid_tgid"); + if (!ASSERT_OK_PTR(nstoken, "open_netns")) + goto cleanup; + + test_ns_current_pid_tgid_new_ns(fn, arg); + cleanup: - bpf_link__destroy(link); - bpf_object__close(obj); + if (nstoken) + close_netns(nstoken); + SYS_NOFAIL("ip netns del ns_current_pid_tgid"); +} + +/* TODO: use a different tracepoint */ +void serial_test_ns_current_pid_tgid(void) +{ + if (test__start_subtest("root_ns_tp")) + test_current_pid_tgid_tp(NULL); + if (test__start_subtest("new_ns_tp")) + test_ns_current_pid_tgid_new_ns(test_current_pid_tgid_tp, NULL); + if (test__start_subtest("new_ns_cgrp")) { + int cgroup_fd = -1; + + cgroup_fd = test__join_cgroup("/sock_addr"); + if (ASSERT_GE(cgroup_fd, 0, "join_cgroup")) { + test_in_netns(test_current_pid_tgid_cgrp, &cgroup_fd); + close(cgroup_fd); + } + } + if (test__start_subtest("new_ns_sk_msg")) + test_in_netns(test_current_pid_tgid_sk_msg, NULL); } diff --git a/tools/testing/selftests/bpf/prog_tests/obj_name.c b/tools/testing/selftests/bpf/prog_tests/obj_name.c index e178416bddad..7093edca6e08 100644 --- a/tools/testing/selftests/bpf/prog_tests/obj_name.c +++ b/tools/testing/selftests/bpf/prog_tests/obj_name.c @@ -20,7 +20,7 @@ void test_obj_name(void) __u32 duration = 0; int i; - for (i = 0; i < sizeof(tests) / sizeof(tests[0]); i++) { + for (i = 0; i < ARRAY_SIZE(tests); i++) { size_t name_len = strlen(tests[i].name) + 1; union bpf_attr attr; size_t ncopy; @@ -38,13 +38,13 @@ void test_obj_name(void) fd = syscall(__NR_bpf, BPF_PROG_LOAD, &attr, sizeof(attr)); CHECK((tests[i].success && fd < 0) || - (!tests[i].success && fd != -1) || + (!tests[i].success && fd >= 0) || (!tests[i].success && errno != tests[i].expected_errno), "check-bpf-prog-name", "fd %d(%d) errno %d(%d)\n", fd, tests[i].success, errno, tests[i].expected_errno); - if (fd != -1) + if (fd >= 0) close(fd); /* test different attr.map_name during BPF_MAP_CREATE */ @@ -59,13 +59,13 @@ void test_obj_name(void) memcpy(attr.map_name, tests[i].name, ncopy); fd = syscall(__NR_bpf, BPF_MAP_CREATE, &attr, sizeof(attr)); CHECK((tests[i].success && fd < 0) || - (!tests[i].success && fd != -1) || + (!tests[i].success && fd >= 0) || (!tests[i].success && errno != tests[i].expected_errno), "check-bpf-map-name", "fd %d(%d) errno %d(%d)\n", fd, tests[i].success, errno, tests[i].expected_errno); - if (fd != -1) + if (fd >= 0) close(fd); } } diff --git a/tools/testing/selftests/bpf/prog_tests/parse_tcp_hdr_opt.c b/tools/testing/selftests/bpf/prog_tests/parse_tcp_hdr_opt.c new file mode 100644 index 000000000000..daa952711d8f --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/parse_tcp_hdr_opt.c @@ -0,0 +1,93 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include <network_helpers.h> +#include "test_parse_tcp_hdr_opt.skel.h" +#include "test_parse_tcp_hdr_opt_dynptr.skel.h" +#include "test_tcp_hdr_options.h" + +struct test_pkt { + struct ipv6_packet pk6_v6; + u8 options[16]; +} __packed; + +struct test_pkt pkt = { + .pk6_v6.eth.h_proto = __bpf_constant_htons(ETH_P_IPV6), + .pk6_v6.iph.nexthdr = IPPROTO_TCP, + .pk6_v6.iph.payload_len = __bpf_constant_htons(MAGIC_BYTES), + .pk6_v6.tcp.urg_ptr = 123, + .pk6_v6.tcp.doff = 9, /* 16 bytes of options */ + + .options = { + TCPOPT_MSS, 4, 0x05, 0xB4, TCPOPT_NOP, TCPOPT_NOP, + 0, 6, 0xBB, 0xBB, 0xBB, 0xBB, TCPOPT_EOL + }, +}; + +static void test_parse_opt(void) +{ + struct test_parse_tcp_hdr_opt *skel; + struct bpf_program *prog; + char buf[128]; + int err; + + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt, + .data_size_in = sizeof(pkt), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 3, + ); + + skel = test_parse_tcp_hdr_opt__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + pkt.options[6] = skel->rodata->tcp_hdr_opt_kind_tpr; + prog = skel->progs.xdp_ingress_v6; + + err = bpf_prog_test_run_opts(bpf_program__fd(prog), &topts); + ASSERT_OK(err, "ipv6 test_run"); + ASSERT_EQ(topts.retval, XDP_PASS, "ipv6 test_run retval"); + ASSERT_EQ(skel->bss->server_id, 0xBBBBBBBB, "server id"); + + test_parse_tcp_hdr_opt__destroy(skel); +} + +static void test_parse_opt_dynptr(void) +{ + struct test_parse_tcp_hdr_opt_dynptr *skel; + struct bpf_program *prog; + char buf[128]; + int err; + + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt, + .data_size_in = sizeof(pkt), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 3, + ); + + skel = test_parse_tcp_hdr_opt_dynptr__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + pkt.options[6] = skel->rodata->tcp_hdr_opt_kind_tpr; + prog = skel->progs.xdp_ingress_v6; + + err = bpf_prog_test_run_opts(bpf_program__fd(prog), &topts); + ASSERT_OK(err, "ipv6 test_run"); + ASSERT_EQ(topts.retval, XDP_PASS, "ipv6 test_run retval"); + ASSERT_EQ(skel->bss->server_id, 0xBBBBBBBB, "server id"); + + test_parse_tcp_hdr_opt_dynptr__destroy(skel); +} + +void test_parse_tcp_hdr_opt(void) +{ + if (test__start_subtest("parse_tcp_hdr_opt")) + test_parse_opt(); + if (test__start_subtest("parse_tcp_hdr_opt_dynptr")) + test_parse_opt_dynptr(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/pe_preserve_elems.c b/tools/testing/selftests/bpf/prog_tests/pe_preserve_elems.c new file mode 100644 index 000000000000..673d38395253 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/pe_preserve_elems.c @@ -0,0 +1,66 @@ +// SPDX-License-Identifier: GPL-2.0-only +/* Copyright (c) 2019 Facebook */ +#include <test_progs.h> +#include <linux/bpf.h> +#include "test_pe_preserve_elems.skel.h" + +static int duration; + +static void test_one_map(struct bpf_map *map, struct bpf_program *prog, + bool has_share_pe) +{ + int err, key = 0, pfd = -1, mfd = bpf_map__fd(map); + DECLARE_LIBBPF_OPTS(bpf_test_run_opts, opts); + struct perf_event_attr attr = { + .size = sizeof(struct perf_event_attr), + .type = PERF_TYPE_SOFTWARE, + .config = PERF_COUNT_SW_CPU_CLOCK, + }; + + pfd = syscall(__NR_perf_event_open, &attr, 0 /* pid */, + -1 /* cpu 0 */, -1 /* group id */, 0 /* flags */); + if (CHECK(pfd < 0, "perf_event_open", "failed\n")) + return; + + err = bpf_map_update_elem(mfd, &key, &pfd, BPF_ANY); + close(pfd); + if (CHECK(err < 0, "bpf_map_update_elem", "failed\n")) + return; + + err = bpf_prog_test_run_opts(bpf_program__fd(prog), &opts); + if (CHECK(err < 0, "bpf_prog_test_run_opts", "failed\n")) + return; + if (CHECK(opts.retval != 0, "bpf_perf_event_read_value", + "failed with %d\n", opts.retval)) + return; + + /* closing mfd, prog still holds a reference on map */ + close(mfd); + + err = bpf_prog_test_run_opts(bpf_program__fd(prog), &opts); + if (CHECK(err < 0, "bpf_prog_test_run_opts", "failed\n")) + return; + + if (has_share_pe) { + CHECK(opts.retval != 0, "bpf_perf_event_read_value", + "failed with %d\n", opts.retval); + } else { + CHECK(opts.retval != -ENOENT, "bpf_perf_event_read_value", + "should have failed with %d, but got %d\n", -ENOENT, + opts.retval); + } +} + +void test_pe_preserve_elems(void) +{ + struct test_pe_preserve_elems *skel; + + skel = test_pe_preserve_elems__open_and_load(); + if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) + return; + + test_one_map(skel->maps.array_1, skel->progs.read_array_1, false); + test_one_map(skel->maps.array_2, skel->progs.read_array_2, true); + + test_pe_preserve_elems__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/percpu_alloc.c b/tools/testing/selftests/bpf/prog_tests/percpu_alloc.c new file mode 100644 index 000000000000..343da65864d6 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/percpu_alloc.c @@ -0,0 +1,128 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "percpu_alloc_array.skel.h" +#include "percpu_alloc_cgrp_local_storage.skel.h" +#include "percpu_alloc_fail.skel.h" + +static void test_array(void) +{ + struct percpu_alloc_array *skel; + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + skel = percpu_alloc_array__open(); + if (!ASSERT_OK_PTR(skel, "percpu_alloc_array__open")) + return; + + bpf_program__set_autoload(skel->progs.test_array_map_1, true); + bpf_program__set_autoload(skel->progs.test_array_map_2, true); + bpf_program__set_autoload(skel->progs.test_array_map_3, true); + bpf_program__set_autoload(skel->progs.test_array_map_4, true); + + skel->bss->my_pid = getpid(); + skel->rodata->nr_cpus = libbpf_num_possible_cpus(); + + err = percpu_alloc_array__load(skel); + if (!ASSERT_OK(err, "percpu_alloc_array__load")) + goto out; + + err = percpu_alloc_array__attach(skel); + if (!ASSERT_OK(err, "percpu_alloc_array__attach")) + goto out; + + prog_fd = bpf_program__fd(skel->progs.test_array_map_1); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run array_map 1-4"); + ASSERT_EQ(topts.retval, 0, "test_run array_map 1-4"); + ASSERT_EQ(skel->bss->cpu0_field_d, 2, "cpu0_field_d"); + ASSERT_EQ(skel->bss->sum_field_c, 1, "sum_field_c"); +out: + percpu_alloc_array__destroy(skel); +} + +static void test_array_sleepable(void) +{ + struct percpu_alloc_array *skel; + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + skel = percpu_alloc_array__open(); + if (!ASSERT_OK_PTR(skel, "percpu_alloc__open")) + return; + + bpf_program__set_autoload(skel->progs.test_array_map_10, true); + + skel->bss->my_pid = getpid(); + skel->rodata->nr_cpus = libbpf_num_possible_cpus(); + + err = percpu_alloc_array__load(skel); + if (!ASSERT_OK(err, "percpu_alloc_array__load")) + goto out; + + err = percpu_alloc_array__attach(skel); + if (!ASSERT_OK(err, "percpu_alloc_array__attach")) + goto out; + + prog_fd = bpf_program__fd(skel->progs.test_array_map_10); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run array_map_10"); + ASSERT_EQ(topts.retval, 0, "test_run array_map_10"); + ASSERT_EQ(skel->bss->cpu0_field_d, 2, "cpu0_field_d"); + ASSERT_EQ(skel->bss->sum_field_c, 1, "sum_field_c"); +out: + percpu_alloc_array__destroy(skel); +} + +static void test_cgrp_local_storage(void) +{ + struct percpu_alloc_cgrp_local_storage *skel; + int err, cgroup_fd, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + cgroup_fd = test__join_cgroup("/percpu_alloc"); + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup /percpu_alloc")) + return; + + skel = percpu_alloc_cgrp_local_storage__open(); + if (!ASSERT_OK_PTR(skel, "percpu_alloc_cgrp_local_storage__open")) + goto close_fd; + + skel->bss->my_pid = getpid(); + skel->rodata->nr_cpus = libbpf_num_possible_cpus(); + + err = percpu_alloc_cgrp_local_storage__load(skel); + if (!ASSERT_OK(err, "percpu_alloc_cgrp_local_storage__load")) + goto destroy_skel; + + err = percpu_alloc_cgrp_local_storage__attach(skel); + if (!ASSERT_OK(err, "percpu_alloc_cgrp_local_storage__attach")) + goto destroy_skel; + + prog_fd = bpf_program__fd(skel->progs.test_cgrp_local_storage_1); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run cgrp_local_storage 1-3"); + ASSERT_EQ(topts.retval, 0, "test_run cgrp_local_storage 1-3"); + ASSERT_EQ(skel->bss->cpu0_field_d, 2, "cpu0_field_d"); + ASSERT_EQ(skel->bss->sum_field_c, 1, "sum_field_c"); + +destroy_skel: + percpu_alloc_cgrp_local_storage__destroy(skel); +close_fd: + close(cgroup_fd); +} + +static void test_failure(void) { + RUN_TESTS(percpu_alloc_fail); +} + +void test_percpu_alloc(void) +{ + if (test__start_subtest("array")) + test_array(); + if (test__start_subtest("array_sleepable")) + test_array_sleepable(); + if (test__start_subtest("cgrp_local_storage")) + test_cgrp_local_storage(); + if (test__start_subtest("failure_tests")) + test_failure(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/perf_branches.c b/tools/testing/selftests/bpf/prog_tests/perf_branches.c index e35c444902a7..bc24f83339d6 100644 --- a/tools/testing/selftests/bpf/prog_tests/perf_branches.c +++ b/tools/testing/selftests/bpf/prog_tests/perf_branches.c @@ -74,7 +74,7 @@ static void test_perf_branches_common(int perf_fd, /* attach perf_event */ link = bpf_program__attach_perf_event(skel->progs.perf_branches, perf_fd); - if (CHECK(IS_ERR(link), "attach_perf_event", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_perf_event")) goto out_destroy_skel; /* generate some branches on cpu 0 */ @@ -110,7 +110,7 @@ static void test_perf_branches_hw(void) attr.type = PERF_TYPE_HARDWARE; attr.config = PERF_COUNT_HW_CPU_CYCLES; attr.freq = 1; - attr.sample_freq = 4000; + attr.sample_freq = 1000; attr.sample_type = PERF_SAMPLE_BRANCH_STACK; attr.branch_sample_type = PERF_SAMPLE_BRANCH_USER | PERF_SAMPLE_BRANCH_ANY; pfd = syscall(__NR_perf_event_open, &attr, -1, 0, -1, PERF_FLAG_FD_CLOEXEC); @@ -119,7 +119,7 @@ static void test_perf_branches_hw(void) * Some setups don't support branch records (virtual machines, !x86), * so skip test in this case. */ - if (pfd == -1) { + if (pfd < 0) { if (errno == ENOENT || errno == EOPNOTSUPP) { printf("%s:SKIP:no PERF_SAMPLE_BRANCH_STACK\n", __func__); @@ -151,7 +151,7 @@ static void test_perf_branches_no_hw(void) attr.type = PERF_TYPE_SOFTWARE; attr.config = PERF_COUNT_SW_CPU_CLOCK; attr.freq = 1; - attr.sample_freq = 4000; + attr.sample_freq = 1000; pfd = syscall(__NR_perf_event_open, &attr, -1, 0, -1, PERF_FLAG_FD_CLOEXEC); if (CHECK(pfd < 0, "perf_event_open", "err %d\n", pfd)) return; diff --git a/tools/testing/selftests/bpf/prog_tests/perf_buffer.c b/tools/testing/selftests/bpf/prog_tests/perf_buffer.c index c33ec180b3f2..5fc2b3a0711e 100644 --- a/tools/testing/selftests/bpf/prog_tests/perf_buffer.c +++ b/tools/testing/selftests/bpf/prog_tests/perf_buffer.c @@ -7,6 +7,8 @@ #include "test_perf_buffer.skel.h" #include "bpf/libbpf_internal.h" +static int duration; + /* AddressSanitizer sometimes crashes due to data dereference below, due to * this being mmap()'ed memory. Disable instrumentation with * no_sanitize_address attribute @@ -24,13 +26,31 @@ static void on_sample(void *ctx, int cpu, void *data, __u32 size) CPU_SET(cpu, cpu_seen); } -void test_perf_buffer(void) +int trigger_on_cpu(int cpu) +{ + cpu_set_t cpu_set; + int err; + + CPU_ZERO(&cpu_set); + CPU_SET(cpu, &cpu_set); + + err = pthread_setaffinity_np(pthread_self(), sizeof(cpu_set), &cpu_set); + if (err && CHECK(err, "set_affinity", "cpu #%d, err %d\n", cpu, err)) + return err; + + usleep(1); + + return 0; +} + +void serial_test_perf_buffer(void) { - int err, on_len, nr_on_cpus = 0, nr_cpus, i, duration = 0; - struct perf_buffer_opts pb_opts = {}; + int err, on_len, nr_on_cpus = 0, nr_cpus, i, j; + int zero = 0, my_pid = getpid(); struct test_perf_buffer *skel; - cpu_set_t cpu_set, cpu_seen; + cpu_set_t cpu_seen; struct perf_buffer *pb; + int last_fd = -1, fd; bool *online; nr_cpus = libbpf_num_possible_cpus(); @@ -51,18 +71,24 @@ void test_perf_buffer(void) if (CHECK(!skel, "skel_load", "skeleton open/load failed\n")) goto out_close; + err = bpf_map_update_elem(bpf_map__fd(skel->maps.my_pid_map), &zero, &my_pid, 0); + if (!ASSERT_OK(err, "my_pid_update")) + goto out_close; + /* attach probe */ err = test_perf_buffer__attach(skel); if (CHECK(err, "attach_kprobe", "err %d\n", err)) goto out_close; /* set up perf buffer */ - pb_opts.sample_cb = on_sample; - pb_opts.ctx = &cpu_seen; - pb = perf_buffer__new(bpf_map__fd(skel->maps.perf_buf_map), 1, &pb_opts); - if (CHECK(IS_ERR(pb), "perf_buf__new", "err %ld\n", PTR_ERR(pb))) + pb = perf_buffer__new(bpf_map__fd(skel->maps.perf_buf_map), 1, + on_sample, NULL, &cpu_seen, NULL); + if (!ASSERT_OK_PTR(pb, "perf_buf__new")) goto out_close; + CHECK(perf_buffer__epoll_fd(pb) < 0, "epoll_fd", + "bad fd: %d\n", perf_buffer__epoll_fd(pb)); + /* trigger kprobe on every CPU */ CPU_ZERO(&cpu_seen); for (i = 0; i < nr_cpus; i++) { @@ -71,16 +97,8 @@ void test_perf_buffer(void) continue; } - CPU_ZERO(&cpu_set); - CPU_SET(i, &cpu_set); - - err = pthread_setaffinity_np(pthread_self(), sizeof(cpu_set), - &cpu_set); - if (err && CHECK(err, "set_affinity", "cpu #%d, err %d\n", - i, err)) + if (trigger_on_cpu(i)) goto out_close; - - usleep(1); } /* read perf buffer */ @@ -92,6 +110,35 @@ void test_perf_buffer(void) "expect %d, seen %d\n", nr_on_cpus, CPU_COUNT(&cpu_seen))) goto out_free_pb; + if (CHECK(perf_buffer__buffer_cnt(pb) != nr_on_cpus, "buf_cnt", + "got %zu, expected %d\n", perf_buffer__buffer_cnt(pb), nr_on_cpus)) + goto out_close; + + for (i = 0, j = 0; i < nr_cpus; i++) { + if (i >= on_len || !online[i]) + continue; + + fd = perf_buffer__buffer_fd(pb, j); + CHECK(fd < 0 || last_fd == fd, "fd_check", "last fd %d == fd %d\n", last_fd, fd); + last_fd = fd; + + err = perf_buffer__consume_buffer(pb, j); + if (CHECK(err, "drain_buf", "cpu %d, err %d\n", i, err)) + goto out_close; + + CPU_CLR(i, &cpu_seen); + if (trigger_on_cpu(i)) + goto out_close; + + err = perf_buffer__consume_buffer(pb, j); + if (CHECK(err, "consume_buf", "cpu %d, err %d\n", j, err)) + goto out_close; + + if (CHECK(!CPU_ISSET(i, &cpu_seen), "cpu_seen", "cpu %d not seen\n", i)) + goto out_close; + j++; + } + out_free_pb: perf_buffer__free(pb); out_close: diff --git a/tools/testing/selftests/bpf/prog_tests/perf_event_stackmap.c b/tools/testing/selftests/bpf/prog_tests/perf_event_stackmap.c index 72c3690844fb..f4aad35afae1 100644 --- a/tools/testing/selftests/bpf/prog_tests/perf_event_stackmap.c +++ b/tools/testing/selftests/bpf/prog_tests/perf_event_stackmap.c @@ -63,7 +63,8 @@ void test_perf_event_stackmap(void) PERF_SAMPLE_BRANCH_NO_FLAGS | PERF_SAMPLE_BRANCH_NO_CYCLES | PERF_SAMPLE_BRANCH_CALL_STACK, - .sample_period = 5000, + .freq = 1, + .sample_freq = read_perf_max_sample_freq(), .size = sizeof(struct perf_event_attr), }; struct perf_event_stackmap *skel; @@ -97,8 +98,7 @@ void test_perf_event_stackmap(void) skel->links.oncpu = bpf_program__attach_perf_event(skel->progs.oncpu, pmu_fd); - if (CHECK(IS_ERR(skel->links.oncpu), "attach_perf_event", - "err %ld\n", PTR_ERR(skel->links.oncpu))) { + if (!ASSERT_OK_PTR(skel->links.oncpu, "attach_perf_event")) { close(pmu_fd); goto cleanup; } diff --git a/tools/testing/selftests/bpf/prog_tests/perf_link.c b/tools/testing/selftests/bpf/prog_tests/perf_link.c new file mode 100644 index 000000000000..3a25f1c743a1 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/perf_link.c @@ -0,0 +1,90 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#define _GNU_SOURCE +#include <pthread.h> +#include <sched.h> +#include <test_progs.h> +#include "test_perf_link.skel.h" + +static void burn_cpu(void) +{ + volatile int j = 0; + cpu_set_t cpu_set; + int i, err; + + /* generate some branches on cpu 0 */ + CPU_ZERO(&cpu_set); + CPU_SET(0, &cpu_set); + err = pthread_setaffinity_np(pthread_self(), sizeof(cpu_set), &cpu_set); + ASSERT_OK(err, "set_thread_affinity"); + + /* spin the loop for a while (random high number) */ + for (i = 0; i < 1000000; ++i) + ++j; +} + +/* TODO: often fails in concurrent mode */ +void serial_test_perf_link(void) +{ + struct test_perf_link *skel = NULL; + struct perf_event_attr attr; + int pfd = -1, link_fd = -1, err; + int run_cnt_before, run_cnt_after; + struct bpf_link_info info; + __u32 info_len = sizeof(info); + + /* create perf event */ + memset(&attr, 0, sizeof(attr)); + attr.size = sizeof(attr); + attr.type = PERF_TYPE_SOFTWARE; + attr.config = PERF_COUNT_SW_CPU_CLOCK; + attr.freq = 1; + attr.sample_freq = 1000; + pfd = syscall(__NR_perf_event_open, &attr, -1, 0, -1, PERF_FLAG_FD_CLOEXEC); + if (!ASSERT_GE(pfd, 0, "perf_fd")) + goto cleanup; + + skel = test_perf_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + link_fd = bpf_link_create(bpf_program__fd(skel->progs.handler), pfd, + BPF_PERF_EVENT, NULL); + if (!ASSERT_GE(link_fd, 0, "link_fd")) + goto cleanup; + + memset(&info, 0, sizeof(info)); + err = bpf_link_get_info_by_fd(link_fd, &info, &info_len); + if (!ASSERT_OK(err, "link_get_info")) + goto cleanup; + + ASSERT_EQ(info.type, BPF_LINK_TYPE_PERF_EVENT, "link_type"); + ASSERT_GT(info.id, 0, "link_id"); + ASSERT_GT(info.prog_id, 0, "link_prog_id"); + + /* ensure we get at least one perf_event prog execution */ + burn_cpu(); + ASSERT_GT(skel->bss->run_cnt, 0, "run_cnt"); + + /* perf_event is still active, but we close link and BPF program + * shouldn't be executed anymore + */ + close(link_fd); + link_fd = -1; + + /* make sure there are no stragglers */ + kern_sync_rcu(); + + run_cnt_before = skel->bss->run_cnt; + burn_cpu(); + run_cnt_after = skel->bss->run_cnt; + + ASSERT_EQ(run_cnt_before, run_cnt_after, "run_cnt_before_after"); + +cleanup: + if (link_fd >= 0) + close(link_fd); + if (pfd >= 0) + close(pfd); + test_perf_link__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/perf_skip.c b/tools/testing/selftests/bpf/prog_tests/perf_skip.c new file mode 100644 index 000000000000..37d8618800e4 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/perf_skip.c @@ -0,0 +1,137 @@ +// SPDX-License-Identifier: GPL-2.0 +#define _GNU_SOURCE + +#include <test_progs.h> +#include "test_perf_skip.skel.h" +#include <linux/compiler.h> +#include <linux/hw_breakpoint.h> +#include <sys/mman.h> + +#ifndef TRAP_PERF +#define TRAP_PERF 6 +#endif + +int sigio_count, sigtrap_count; + +static void handle_sigio(int sig __always_unused) +{ + ++sigio_count; +} + +static void handle_sigtrap(int signum __always_unused, + siginfo_t *info, + void *ucontext __always_unused) +{ + ASSERT_EQ(info->si_code, TRAP_PERF, "si_code"); + ++sigtrap_count; +} + +static noinline int test_function(void) +{ + asm volatile (""); + return 0; +} + +void serial_test_perf_skip(void) +{ + struct sigaction action = {}; + struct sigaction previous_sigtrap; + sighandler_t previous_sigio = SIG_ERR; + struct test_perf_skip *skel = NULL; + struct perf_event_attr attr = {}; + int perf_fd = -1; + int err; + struct f_owner_ex owner; + struct bpf_link *prog_link = NULL; + + action.sa_flags = SA_SIGINFO | SA_NODEFER; + action.sa_sigaction = handle_sigtrap; + sigemptyset(&action.sa_mask); + if (!ASSERT_OK(sigaction(SIGTRAP, &action, &previous_sigtrap), "sigaction")) + return; + + previous_sigio = signal(SIGIO, handle_sigio); + if (!ASSERT_NEQ(previous_sigio, SIG_ERR, "signal")) + goto cleanup; + + skel = test_perf_skip__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + attr.type = PERF_TYPE_BREAKPOINT; + attr.size = sizeof(attr); + attr.bp_type = HW_BREAKPOINT_X; + attr.bp_addr = (uintptr_t)test_function; + attr.bp_len = sizeof(long); + attr.sample_period = 1; + attr.sample_type = PERF_SAMPLE_IP; + attr.pinned = 1; + attr.exclude_kernel = 1; + attr.exclude_hv = 1; + attr.precise_ip = 3; + attr.sigtrap = 1; + attr.remove_on_exec = 1; + + perf_fd = syscall(__NR_perf_event_open, &attr, 0, -1, -1, 0); + if (perf_fd < 0 && (errno == ENOENT || errno == EOPNOTSUPP)) { + printf("SKIP:no PERF_TYPE_BREAKPOINT/HW_BREAKPOINT_X\n"); + test__skip(); + goto cleanup; + } + if (!ASSERT_OK(perf_fd < 0, "perf_event_open")) + goto cleanup; + + /* Configure the perf event to signal on sample. */ + err = fcntl(perf_fd, F_SETFL, O_ASYNC); + if (!ASSERT_OK(err, "fcntl(F_SETFL, O_ASYNC)")) + goto cleanup; + + owner.type = F_OWNER_TID; + owner.pid = syscall(__NR_gettid); + err = fcntl(perf_fd, F_SETOWN_EX, &owner); + if (!ASSERT_OK(err, "fcntl(F_SETOWN_EX)")) + goto cleanup; + + /* Allow at most one sample. A sample rejected by bpf should + * not count against this. + */ + err = ioctl(perf_fd, PERF_EVENT_IOC_REFRESH, 1); + if (!ASSERT_OK(err, "ioctl(PERF_EVENT_IOC_REFRESH)")) + goto cleanup; + + prog_link = bpf_program__attach_perf_event(skel->progs.handler, perf_fd); + if (!ASSERT_OK_PTR(prog_link, "bpf_program__attach_perf_event")) + goto cleanup; + + /* Configure the bpf program to suppress the sample. */ + skel->bss->ip = (uintptr_t)test_function; + test_function(); + + ASSERT_EQ(sigio_count, 0, "sigio_count"); + ASSERT_EQ(sigtrap_count, 0, "sigtrap_count"); + + /* Configure the bpf program to allow the sample. */ + skel->bss->ip = 0; + test_function(); + + ASSERT_EQ(sigio_count, 1, "sigio_count"); + ASSERT_EQ(sigtrap_count, 1, "sigtrap_count"); + + /* Test that the sample above is the only one allowed (by perf, not + * by bpf) + */ + test_function(); + + ASSERT_EQ(sigio_count, 1, "sigio_count"); + ASSERT_EQ(sigtrap_count, 1, "sigtrap_count"); + +cleanup: + bpf_link__destroy(prog_link); + if (perf_fd >= 0) + close(perf_fd); + test_perf_skip__destroy(skel); + + if (previous_sigio != SIG_ERR) + signal(SIGIO, previous_sigio); + sigaction(SIGTRAP, &previous_sigtrap, NULL); +} diff --git a/tools/testing/selftests/bpf/prog_tests/pinning.c b/tools/testing/selftests/bpf/prog_tests/pinning.c index 041952524c55..c799a3c5ad1f 100644 --- a/tools/testing/selftests/bpf/prog_tests/pinning.c +++ b/tools/testing/selftests/bpf/prog_tests/pinning.c @@ -18,7 +18,7 @@ __u32 get_map_id(struct bpf_object *obj, const char *name) if (CHECK(!map, "find map", "NULL map")) return 0; - err = bpf_obj_get_info_by_fd(bpf_map__fd(map), + err = bpf_map_get_info_by_fd(bpf_map__fd(map), &map_info, &map_info_len); CHECK(err, "get map info", "err %d errno %d", err, errno); return map_info.id; @@ -26,18 +26,18 @@ __u32 get_map_id(struct bpf_object *obj, const char *name) void test_pinning(void) { - const char *file_invalid = "./test_pinning_invalid.o"; + const char *file_invalid = "./test_pinning_invalid.bpf.o"; const char *custpinpath = "/sys/fs/bpf/custom/pinmap"; const char *nopinpath = "/sys/fs/bpf/nopinmap"; const char *nopinpath2 = "/sys/fs/bpf/nopinmap2"; const char *custpath = "/sys/fs/bpf/custom"; const char *pinpath = "/sys/fs/bpf/pinmap"; - const char *file = "./test_pinning.o"; + const char *file = "./test_pinning.bpf.o"; __u32 map_id, map_id2, duration = 0; struct stat statbuf = {}; struct bpf_object *obj; struct bpf_map *map; - int err; + int err, map_fd; DECLARE_LIBBPF_OPTS(bpf_object_open_opts, opts, .pin_root_path = custpath, ); @@ -125,6 +125,10 @@ void test_pinning(void) if (CHECK(err, "pin maps", "err %d errno %d\n", err, errno)) goto out; + /* get pinning path */ + if (!ASSERT_STREQ(bpf_map__pin_path(map), pinpath, "get pin path")) + goto out; + /* set pinning path of other map and re-pin all */ map = bpf_object__find_map_by_name(obj, "nopinmap"); if (CHECK(!map, "find map", "NULL map")) @@ -134,6 +138,11 @@ void test_pinning(void) if (CHECK(err, "set pin path", "err %d errno %d\n", err, errno)) goto out; + /* get pinning path after set */ + if (!ASSERT_STREQ(bpf_map__pin_path(map), custpinpath, + "get pin path after set")) + goto out; + /* should only pin the one unpinned map */ err = bpf_object__pin_maps(obj, NULL); if (CHECK(err, "pin maps", "err %d errno %d\n", err, errno)) @@ -213,6 +222,53 @@ void test_pinning(void) if (CHECK(err, "stat custpinpath", "err %d errno %d\n", err, errno)) goto out; + /* remove the custom pin path to re-test it with reuse fd below */ + err = unlink(custpinpath); + if (CHECK(err, "unlink custpinpath", "err %d errno %d\n", err, errno)) + goto out; + + err = rmdir(custpath); + if (CHECK(err, "rmdir custpindir", "err %d errno %d\n", err, errno)) + goto out; + + bpf_object__close(obj); + + /* test pinning at custom path with reuse fd */ + obj = bpf_object__open_file(file, NULL); + err = libbpf_get_error(obj); + if (CHECK(err, "default open", "err %d errno %d\n", err, errno)) { + obj = NULL; + goto out; + } + + map_fd = bpf_map_create(BPF_MAP_TYPE_ARRAY, NULL, sizeof(__u32), + sizeof(__u64), 1, NULL); + if (CHECK(map_fd < 0, "create pinmap manually", "fd %d\n", map_fd)) + goto out; + + map = bpf_object__find_map_by_name(obj, "pinmap"); + if (CHECK(!map, "find map", "NULL map")) + goto close_map_fd; + + err = bpf_map__reuse_fd(map, map_fd); + if (CHECK(err, "reuse pinmap fd", "err %d errno %d\n", err, errno)) + goto close_map_fd; + + err = bpf_map__set_pin_path(map, custpinpath); + if (CHECK(err, "set pin path", "err %d errno %d\n", err, errno)) + goto close_map_fd; + + err = bpf_object__load(obj); + if (CHECK(err, "custom load", "err %d errno %d\n", err, errno)) + goto close_map_fd; + + /* check that pinmap was pinned at the custom path */ + err = stat(custpinpath, &statbuf); + if (CHECK(err, "stat custpinpath", "err %d errno %d\n", err, errno)) + goto close_map_fd; + +close_map_fd: + close(map_fd); out: unlink(pinpath); unlink(nopinpath); diff --git a/tools/testing/selftests/bpf/prog_tests/pkt_access.c b/tools/testing/selftests/bpf/prog_tests/pkt_access.c index 44b514fabccd..682e4ff45b01 100644 --- a/tools/testing/selftests/bpf/prog_tests/pkt_access.c +++ b/tools/testing/selftests/bpf/prog_tests/pkt_access.c @@ -4,25 +4,29 @@ void test_pkt_access(void) { - const char *file = "./test_pkt_access.o"; + const char *file = "./test_pkt_access.bpf.o"; struct bpf_object *obj; - __u32 duration, retval; int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 100000, + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); if (CHECK_FAIL(err)) return; - err = bpf_prog_test_run(prog_fd, 100000, &pkt_v4, sizeof(pkt_v4), - NULL, NULL, &retval, &duration); - CHECK(err || retval, "ipv4", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "ipv4 test_run_opts err"); + ASSERT_OK(topts.retval, "ipv4 test_run_opts retval"); + + topts.data_in = &pkt_v6; + topts.data_size_in = sizeof(pkt_v6); + topts.data_size_out = 0; /* reset from last call */ + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "ipv6 test_run_opts err"); + ASSERT_OK(topts.retval, "ipv6 test_run_opts retval"); - err = bpf_prog_test_run(prog_fd, 100000, &pkt_v6, sizeof(pkt_v6), - NULL, NULL, &retval, &duration); - CHECK(err || retval, "ipv6", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/pkt_md_access.c b/tools/testing/selftests/bpf/prog_tests/pkt_md_access.c index 939015cd6dba..0d85e0642811 100644 --- a/tools/testing/selftests/bpf/prog_tests/pkt_md_access.c +++ b/tools/testing/selftests/bpf/prog_tests/pkt_md_access.c @@ -4,20 +4,22 @@ void test_pkt_md_access(void) { - const char *file = "./test_pkt_md_access.o"; + const char *file = "./test_pkt_md_access.bpf.o"; struct bpf_object *obj; - __u32 duration, retval; int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 10, + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); if (CHECK_FAIL(err)) return; - err = bpf_prog_test_run(prog_fd, 10, &pkt_v4, sizeof(pkt_v4), - NULL, NULL, &retval, &duration); - CHECK(err || retval, "", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run_opts err"); + ASSERT_OK(topts.retval, "test_run_opts retval"); bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/preempt_lock.c b/tools/testing/selftests/bpf/prog_tests/preempt_lock.c new file mode 100644 index 000000000000..02917c672441 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/preempt_lock.c @@ -0,0 +1,9 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> +#include <preempt_lock.skel.h> + +void test_preempt_lock(void) +{ + RUN_TESTS(preempt_lock); +} diff --git a/tools/testing/selftests/bpf/prog_tests/preempted_bpf_ma_op.c b/tools/testing/selftests/bpf/prog_tests/preempted_bpf_ma_op.c new file mode 100644 index 000000000000..3a2ec3923fca --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/preempted_bpf_ma_op.c @@ -0,0 +1,89 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023. Huawei Technologies Co., Ltd */ +#define _GNU_SOURCE +#include <sched.h> +#include <pthread.h> +#include <stdbool.h> +#include <test_progs.h> + +#include "preempted_bpf_ma_op.skel.h" + +#define ALLOC_THREAD_NR 4 +#define ALLOC_LOOP_NR 512 + +struct alloc_ctx { + /* output */ + int run_err; + /* input */ + int fd; + bool *nomem_err; +}; + +static void *run_alloc_prog(void *data) +{ + struct alloc_ctx *ctx = data; + cpu_set_t cpu_set; + int i; + + CPU_ZERO(&cpu_set); + CPU_SET(0, &cpu_set); + pthread_setaffinity_np(pthread_self(), sizeof(cpu_set), &cpu_set); + + for (i = 0; i < ALLOC_LOOP_NR && !*ctx->nomem_err; i++) { + LIBBPF_OPTS(bpf_test_run_opts, topts); + int err; + + err = bpf_prog_test_run_opts(ctx->fd, &topts); + ctx->run_err |= err | topts.retval; + } + + return NULL; +} + +void test_preempted_bpf_ma_op(void) +{ + struct alloc_ctx ctx[ALLOC_THREAD_NR]; + struct preempted_bpf_ma_op *skel; + pthread_t tid[ALLOC_THREAD_NR]; + int i, err; + + skel = preempted_bpf_ma_op__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + err = preempted_bpf_ma_op__attach(skel); + if (!ASSERT_OK(err, "attach")) + goto out; + + for (i = 0; i < ARRAY_SIZE(ctx); i++) { + struct bpf_program *prog; + char name[8]; + + snprintf(name, sizeof(name), "test%d", i); + prog = bpf_object__find_program_by_name(skel->obj, name); + if (!ASSERT_OK_PTR(prog, "no test prog")) + goto out; + + ctx[i].run_err = 0; + ctx[i].fd = bpf_program__fd(prog); + ctx[i].nomem_err = &skel->bss->nomem_err; + } + + memset(tid, 0, sizeof(tid)); + for (i = 0; i < ARRAY_SIZE(tid); i++) { + err = pthread_create(&tid[i], NULL, run_alloc_prog, &ctx[i]); + if (!ASSERT_OK(err, "pthread_create")) + break; + } + + for (i = 0; i < ARRAY_SIZE(tid); i++) { + if (!tid[i]) + break; + pthread_join(tid[i], NULL); + ASSERT_EQ(ctx[i].run_err, 0, "run prog err"); + } + + ASSERT_FALSE(skel->bss->nomem_err, "ENOMEM"); +out: + preempted_bpf_ma_op__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/probe_read_user_str.c b/tools/testing/selftests/bpf/prog_tests/probe_read_user_str.c new file mode 100644 index 000000000000..e419298132b5 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/probe_read_user_str.c @@ -0,0 +1,71 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "test_probe_read_user_str.skel.h" + +static const char str1[] = "mestring"; +static const char str2[] = "mestringalittlebigger"; +static const char str3[] = "mestringblubblubblubblubblub"; + +static int test_one_str(struct test_probe_read_user_str *skel, const char *str, + size_t len) +{ + int err, duration = 0; + char buf[256]; + + /* Ensure bytes after string are ones */ + memset(buf, 1, sizeof(buf)); + memcpy(buf, str, len); + + /* Give prog our userspace pointer */ + skel->bss->user_ptr = buf; + + /* Trigger tracepoint */ + usleep(1); + + /* Did helper fail? */ + if (CHECK(skel->bss->ret < 0, "prog_ret", "prog returned: %ld\n", + skel->bss->ret)) + return 1; + + /* Check that string was copied correctly */ + err = memcmp(skel->bss->buf, str, len); + if (CHECK(err, "memcmp", "prog copied wrong string")) + return 1; + + /* Now check that no extra trailing bytes were copied */ + memset(buf, 0, sizeof(buf)); + err = memcmp(skel->bss->buf + len, buf, sizeof(buf) - len); + if (CHECK(err, "memcmp", "trailing bytes were not stripped")) + return 1; + + return 0; +} + +void test_probe_read_user_str(void) +{ + struct test_probe_read_user_str *skel; + int err, duration = 0; + + skel = test_probe_read_user_str__open_and_load(); + if (CHECK(!skel, "test_probe_read_user_str__open_and_load", + "skeleton open and load failed\n")) + return; + + /* Give pid to bpf prog so it doesn't read from anyone else */ + skel->bss->pid = getpid(); + + err = test_probe_read_user_str__attach(skel); + if (CHECK(err, "test_probe_read_user_str__attach", + "skeleton attach failed: %d\n", err)) + goto out; + + if (test_one_str(skel, str1, sizeof(str1))) + goto out; + if (test_one_str(skel, str2, sizeof(str2))) + goto out; + if (test_one_str(skel, str3, sizeof(str3))) + goto out; + +out: + test_probe_read_user_str__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/probe_user.c b/tools/testing/selftests/bpf/prog_tests/probe_user.c index 7aecfd9e87d1..8721671321de 100644 --- a/tools/testing/selftests/bpf/prog_tests/probe_user.c +++ b/tools/testing/selftests/bpf/prog_tests/probe_user.c @@ -1,27 +1,38 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> -void test_probe_user(void) +/* TODO: corrupts other tests uses connect() */ +void serial_test_probe_user(void) { - const char *prog_name = "kprobe/__sys_connect"; - const char *obj_file = "./test_probe_user.o"; + static const char *const prog_names[] = { + "handle_sys_connect", +#if defined(__s390x__) + "handle_sys_socketcall", +#endif + }; + enum { prog_count = ARRAY_SIZE(prog_names) }; + const char *obj_file = "./test_probe_user.bpf.o"; DECLARE_LIBBPF_OPTS(bpf_object_open_opts, opts, ); int err, results_map_fd, sock_fd, duration = 0; struct sockaddr curr, orig, tmp; struct sockaddr_in *in = (struct sockaddr_in *)&curr; - struct bpf_link *kprobe_link = NULL; - struct bpf_program *kprobe_prog; + struct bpf_link *kprobe_links[prog_count] = {}; + struct bpf_program *kprobe_progs[prog_count]; struct bpf_object *obj; static const int zero = 0; + size_t i; obj = bpf_object__open_file(obj_file, &opts); - if (CHECK(IS_ERR(obj), "obj_open_file", "err %ld\n", PTR_ERR(obj))) + if (!ASSERT_OK_PTR(obj, "obj_open_file")) return; - kprobe_prog = bpf_object__find_program_by_title(obj, prog_name); - if (CHECK(!kprobe_prog, "find_probe", - "prog '%s' not found\n", prog_name)) - goto cleanup; + for (i = 0; i < prog_count; i++) { + kprobe_progs[i] = + bpf_object__find_program_by_name(obj, prog_names[i]); + if (CHECK(!kprobe_progs[i], "find_probe", + "prog '%s' not found\n", prog_names[i])) + goto cleanup; + } err = bpf_object__load(obj); if (CHECK(err, "obj_load", "err %d\n", err)) @@ -32,11 +43,10 @@ void test_probe_user(void) "err %d\n", results_map_fd)) goto cleanup; - kprobe_link = bpf_program__attach(kprobe_prog); - if (CHECK(IS_ERR(kprobe_link), "attach_kprobe", - "err %ld\n", PTR_ERR(kprobe_link))) { - kprobe_link = NULL; - goto cleanup; + for (i = 0; i < prog_count; i++) { + kprobe_links[i] = bpf_program__attach(kprobe_progs[i]); + if (!ASSERT_OK_PTR(kprobe_links[i], "attach_kprobe")) + goto cleanup; } memset(&curr, 0, sizeof(curr)); @@ -71,6 +81,7 @@ void test_probe_user(void) inet_ntoa(in->sin_addr), ntohs(in->sin_port))) goto cleanup; cleanup: - bpf_link__destroy(kprobe_link); + for (i = 0; i < prog_count; i++) + bpf_link__destroy(kprobe_links[i]); bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/prog_array_init.c b/tools/testing/selftests/bpf/prog_tests/prog_array_init.c new file mode 100644 index 000000000000..fc4657619739 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/prog_array_init.c @@ -0,0 +1,32 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* Copyright (c) 2021 Hengqi Chen */ + +#include <test_progs.h> +#include "test_prog_array_init.skel.h" + +void test_prog_array_init(void) +{ + struct test_prog_array_init *skel; + int err; + + skel = test_prog_array_init__open(); + if (!ASSERT_OK_PTR(skel, "could not open BPF object")) + return; + + skel->rodata->my_pid = getpid(); + + err = test_prog_array_init__load(skel); + if (!ASSERT_OK(err, "could not load BPF object")) + goto cleanup; + + skel->links.entry = bpf_program__attach_raw_tracepoint(skel->progs.entry, "sys_enter"); + if (!ASSERT_OK_PTR(skel->links.entry, "could not attach BPF program")) + goto cleanup; + + usleep(1); + + ASSERT_EQ(skel->bss->value, 42, "unexpected value"); + +cleanup: + test_prog_array_init__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/prog_run_opts.c b/tools/testing/selftests/bpf/prog_tests/prog_run_opts.c new file mode 100644 index 000000000000..01f1d1b6715a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/prog_run_opts.c @@ -0,0 +1,77 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> + +#include "test_pkt_access.skel.h" + +static const __u32 duration; + +static void check_run_cnt(int prog_fd, __u64 run_cnt) +{ + struct bpf_prog_info info = {}; + __u32 info_len = sizeof(info); + int err; + + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + if (CHECK(err, "get_prog_info", "failed to get bpf_prog_info for fd %d\n", prog_fd)) + return; + + CHECK(run_cnt != info.run_cnt, "run_cnt", + "incorrect number of repetitions, want %llu have %llu\n", run_cnt, info.run_cnt); +} + +void test_prog_run_opts(void) +{ + struct test_pkt_access *skel; + int err, stats_fd = -1, prog_fd; + char buf[10] = {}; + __u64 run_cnt = 0; + + LIBBPF_OPTS(bpf_test_run_opts, topts, + .repeat = 1, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = 5, + ); + + stats_fd = bpf_enable_stats(BPF_STATS_RUN_TIME); + if (!ASSERT_GE(stats_fd, 0, "enable_stats good fd")) + return; + + skel = test_pkt_access__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.test_pkt_access); + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_EQ(errno, ENOSPC, "test_run errno"); + ASSERT_ERR(err, "test_run"); + ASSERT_OK(topts.retval, "test_run retval"); + + ASSERT_EQ(topts.data_size_out, sizeof(pkt_v4), "test_run data_size_out"); + ASSERT_EQ(buf[5], 0, "overflow, BPF_PROG_TEST_RUN ignored size hint"); + + run_cnt += topts.repeat; + check_run_cnt(prog_fd, run_cnt); + + topts.data_out = NULL; + topts.data_size_out = 0; + topts.repeat = 2; + errno = 0; + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(errno, "run_no_output errno"); + ASSERT_OK(err, "run_no_output err"); + ASSERT_OK(topts.retval, "run_no_output retval"); + + run_cnt += topts.repeat; + check_run_cnt(prog_fd, run_cnt); + +cleanup: + if (skel) + test_pkt_access__destroy(skel); + if (stats_fd >= 0) + close(stats_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/prog_run_xattr.c b/tools/testing/selftests/bpf/prog_tests/prog_run_xattr.c deleted file mode 100644 index 935a294f049a..000000000000 --- a/tools/testing/selftests/bpf/prog_tests/prog_run_xattr.c +++ /dev/null @@ -1,50 +0,0 @@ -// SPDX-License-Identifier: GPL-2.0 -#include <test_progs.h> -#include <network_helpers.h> - -void test_prog_run_xattr(void) -{ - const char *file = "./test_pkt_access.o"; - struct bpf_object *obj; - char buf[10]; - int err; - struct bpf_prog_test_run_attr tattr = { - .repeat = 1, - .data_in = &pkt_v4, - .data_size_in = sizeof(pkt_v4), - .data_out = buf, - .data_size_out = 5, - }; - - err = bpf_prog_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, - &tattr.prog_fd); - if (CHECK_ATTR(err, "load", "err %d errno %d\n", err, errno)) - return; - - memset(buf, 0, sizeof(buf)); - - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err != -1 || errno != ENOSPC || tattr.retval, "run", - "err %d errno %d retval %d\n", err, errno, tattr.retval); - - CHECK_ATTR(tattr.data_size_out != sizeof(pkt_v4), "data_size_out", - "incorrect output size, want %zu have %u\n", - sizeof(pkt_v4), tattr.data_size_out); - - CHECK_ATTR(buf[5] != 0, "overflow", - "BPF_PROG_TEST_RUN ignored size hint\n"); - - tattr.data_out = NULL; - tattr.data_size_out = 0; - errno = 0; - - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err || errno || tattr.retval, "run_no_output", - "err %d errno %d retval %d\n", err, errno, tattr.retval); - - tattr.data_size_out = 1; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err != -EINVAL, "run_wrong_size_out", "err %d\n", err); - - bpf_object__close(obj); -} diff --git a/tools/testing/selftests/bpf/prog_tests/prog_tests_framework.c b/tools/testing/selftests/bpf/prog_tests/prog_tests_framework.c new file mode 100644 index 000000000000..14f2796076e0 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/prog_tests_framework.c @@ -0,0 +1,56 @@ +// SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause) + +#include "test_progs.h" +#include "testing_helpers.h" + +static void clear_test_state(struct test_state *state) +{ + state->error_cnt = 0; + state->sub_succ_cnt = 0; + state->skip_cnt = 0; +} + +void test_prog_tests_framework(void) +{ + struct test_state *state = env.test_state; + + /* in all the ASSERT calls below we need to return on the first + * error due to the fact that we are cleaning the test state after + * each dummy subtest + */ + + /* test we properly count skipped tests with subtests */ + if (test__start_subtest("test_good_subtest")) + test__end_subtest(); + if (!ASSERT_EQ(state->skip_cnt, 0, "skip_cnt_check")) + return; + if (!ASSERT_EQ(state->error_cnt, 0, "error_cnt_check")) + return; + if (!ASSERT_EQ(state->subtest_num, 1, "subtest_num_check")) + return; + clear_test_state(state); + + if (test__start_subtest("test_skip_subtest")) { + test__skip(); + test__end_subtest(); + } + if (test__start_subtest("test_skip_subtest")) { + test__skip(); + test__end_subtest(); + } + if (!ASSERT_EQ(state->skip_cnt, 2, "skip_cnt_check")) + return; + if (!ASSERT_EQ(state->subtest_num, 3, "subtest_num_check")) + return; + clear_test_state(state); + + if (test__start_subtest("test_fail_subtest")) { + test__fail(); + test__end_subtest(); + } + if (!ASSERT_EQ(state->error_cnt, 1, "error_cnt_check")) + return; + if (!ASSERT_EQ(state->subtest_num, 4, "subtest_num_check")) + return; + clear_test_state(state); +} diff --git a/tools/testing/selftests/bpf/prog_tests/ptr_untrusted.c b/tools/testing/selftests/bpf/prog_tests/ptr_untrusted.c new file mode 100644 index 000000000000..8d077d150c56 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/ptr_untrusted.c @@ -0,0 +1,36 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023 Yafang Shao <laoar.shao@gmail.com> */ + +#include <string.h> +#include <linux/bpf.h> +#include <test_progs.h> +#include "test_ptr_untrusted.skel.h" + +#define TP_NAME "sched_switch" + +void serial_test_ptr_untrusted(void) +{ + struct test_ptr_untrusted *skel; + int err; + + skel = test_ptr_untrusted__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + /* First, attach lsm prog */ + skel->links.lsm_run = bpf_program__attach_lsm(skel->progs.lsm_run); + if (!ASSERT_OK_PTR(skel->links.lsm_run, "lsm_attach")) + goto cleanup; + + /* Second, attach raw_tp prog. The lsm prog will be triggered. */ + skel->links.raw_tp_run = bpf_program__attach_raw_tracepoint(skel->progs.raw_tp_run, + TP_NAME); + if (!ASSERT_OK_PTR(skel->links.raw_tp_run, "raw_tp_attach")) + goto cleanup; + + err = strncmp(skel->bss->tp_name, TP_NAME, strlen(TP_NAME)); + ASSERT_EQ(err, 0, "cmp_tp_name"); + +cleanup: + test_ptr_untrusted__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/queue_stack_map.c b/tools/testing/selftests/bpf/prog_tests/queue_stack_map.c index f47e7b1cb32c..a043af9cd6d9 100644 --- a/tools/testing/selftests/bpf/prog_tests/queue_stack_map.c +++ b/tools/testing/selftests/bpf/prog_tests/queue_stack_map.c @@ -10,24 +10,31 @@ enum { static void test_queue_stack_map_by_type(int type) { const int MAP_SIZE = 32; - __u32 vals[MAP_SIZE], duration, retval, size, val; + __u32 vals[MAP_SIZE], val; int i, err, prog_fd, map_in_fd, map_out_fd; char file[32], buf[128]; struct bpf_object *obj; - struct iphdr *iph = (void *)buf + sizeof(struct ethhdr); + struct iphdr iph = {}; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 1, + ); /* Fill test values to be used */ for (i = 0; i < MAP_SIZE; i++) vals[i] = rand(); if (type == QUEUE) - strncpy(file, "./test_queue_map.o", sizeof(file)); + strncpy(file, "./test_queue_map.bpf.o", sizeof(file)); else if (type == STACK) - strncpy(file, "./test_stack_map.o", sizeof(file)); + strncpy(file, "./test_stack_map.bpf.o", sizeof(file)); else return; - err = bpf_prog_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); if (CHECK_FAIL(err)) return; @@ -58,36 +65,37 @@ static void test_queue_stack_map_by_type(int type) pkt_v4.iph.saddr = vals[MAP_SIZE - 1 - i] * 5; } - err = bpf_prog_test_run(prog_fd, 1, &pkt_v4, sizeof(pkt_v4), - buf, &size, &retval, &duration); - if (err || retval || size != sizeof(pkt_v4) || - iph->daddr != val) + topts.data_size_out = sizeof(buf); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (err || topts.retval || + topts.data_size_out != sizeof(pkt_v4)) + break; + memcpy(&iph, buf + sizeof(struct ethhdr), sizeof(iph)); + if (iph.daddr != val) break; } - CHECK(err || retval || size != sizeof(pkt_v4) || iph->daddr != val, - "bpf_map_pop_elem", - "err %d errno %d retval %d size %d iph->daddr %u\n", - err, errno, retval, size, iph->daddr); + ASSERT_OK(err, "bpf_map_pop_elem"); + ASSERT_OK(topts.retval, "bpf_map_pop_elem test retval"); + ASSERT_EQ(topts.data_size_out, sizeof(pkt_v4), + "bpf_map_pop_elem data_size_out"); + ASSERT_EQ(iph.daddr, val, "bpf_map_pop_elem iph.daddr"); /* Queue is empty, program should return TC_ACT_SHOT */ - err = bpf_prog_test_run(prog_fd, 1, &pkt_v4, sizeof(pkt_v4), - buf, &size, &retval, &duration); - CHECK(err || retval != 2 /* TC_ACT_SHOT */|| size != sizeof(pkt_v4), - "check-queue-stack-map-empty", - "err %d errno %d retval %d size %d\n", - err, errno, retval, size); + topts.data_size_out = sizeof(buf); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "check-queue-stack-map-empty"); + ASSERT_EQ(topts.retval, 2 /* TC_ACT_SHOT */, + "check-queue-stack-map-empty test retval"); + ASSERT_EQ(topts.data_size_out, sizeof(pkt_v4), + "check-queue-stack-map-empty data_size_out"); /* Check that the program pushed elements correctly */ for (i = 0; i < MAP_SIZE; i++) { err = bpf_map_lookup_and_delete_elem(map_out_fd, NULL, &val); - if (err || val != vals[i] * 5) - break; + ASSERT_OK(err, "bpf_map_lookup_and_delete_elem"); + ASSERT_EQ(val, vals[i] * 5, "bpf_map_push_elem val"); } - - CHECK(i != MAP_SIZE && (err || val != vals[i] * 5), - "bpf_map_push_elem", "err %d value %u\n", err, val); - out: pkt_v4.iph.saddr = 0; bpf_object__close(obj); diff --git a/tools/testing/selftests/bpf/prog_tests/raw_tp_test_run.c b/tools/testing/selftests/bpf/prog_tests/raw_tp_test_run.c new file mode 100644 index 000000000000..fe5b8fae2c36 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/raw_tp_test_run.c @@ -0,0 +1,86 @@ +// SPDX-License-Identifier: GPL-2.0-only +/* Copyright (c) 2019 Facebook */ +#include <test_progs.h> +#include <linux/bpf.h> +#include "bpf/libbpf_internal.h" +#include "test_raw_tp_test_run.skel.h" + +void test_raw_tp_test_run(void) +{ + int comm_fd = -1, err, nr_online, i, prog_fd; + __u64 args[2] = {0x1234ULL, 0x5678ULL}; + int expected_retval = 0x1234 + 0x5678; + struct test_raw_tp_test_run *skel; + char buf[] = "new_name"; + bool *online = NULL; + LIBBPF_OPTS(bpf_test_run_opts, opts, + .ctx_in = args, + .ctx_size_in = sizeof(args), + .flags = BPF_F_TEST_RUN_ON_CPU, + ); + + err = parse_cpu_mask_file("/sys/devices/system/cpu/online", &online, + &nr_online); + if (!ASSERT_OK(err, "parse_cpu_mask_file")) + return; + + skel = test_raw_tp_test_run__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + err = test_raw_tp_test_run__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + comm_fd = open("/proc/self/comm", O_WRONLY|O_TRUNC); + if (!ASSERT_GE(comm_fd, 0, "open /proc/self/comm")) + goto cleanup; + + err = write(comm_fd, buf, sizeof(buf)); + ASSERT_GE(err, 0, "task rename"); + + ASSERT_NEQ(skel->bss->count, 0, "check_count"); + ASSERT_EQ(skel->data->on_cpu, 0xffffffff, "check_on_cpu"); + + prog_fd = bpf_program__fd(skel->progs.rename); + opts.ctx_in = args; + opts.ctx_size_in = sizeof(__u64); + + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_NEQ(err, 0, "test_run should fail for too small ctx"); + + opts.ctx_size_in = sizeof(args); + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(opts.retval, expected_retval, "check_retval"); + + for (i = 0; i < nr_online; i++) { + if (!online[i]) + continue; + + opts.cpu = i; + opts.retval = 0; + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_OK(err, "test_run_opts"); + ASSERT_EQ(skel->data->on_cpu, i, "check_on_cpu"); + ASSERT_EQ(opts.retval, expected_retval, "check_retval"); + } + + /* invalid cpu ID should fail with ENXIO */ + opts.cpu = 0xffffffff; + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_EQ(errno, ENXIO, "test_run_opts should fail with ENXIO"); + ASSERT_ERR(err, "test_run_opts_fail"); + + /* non-zero cpu w/o BPF_F_TEST_RUN_ON_CPU should fail with EINVAL */ + opts.cpu = 1; + opts.flags = 0; + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_EQ(errno, EINVAL, "test_run_opts should fail with EINVAL"); + ASSERT_ERR(err, "test_run_opts_fail"); + +cleanup: + close(comm_fd); + test_raw_tp_test_run__destroy(skel); + free(online); +} diff --git a/tools/testing/selftests/bpf/prog_tests/raw_tp_writable_reject_nbd_invalid.c b/tools/testing/selftests/bpf/prog_tests/raw_tp_writable_reject_nbd_invalid.c index 9807336a3016..e2f1445b0e10 100644 --- a/tools/testing/selftests/bpf/prog_tests/raw_tp_writable_reject_nbd_invalid.c +++ b/tools/testing/selftests/bpf/prog_tests/raw_tp_writable_reject_nbd_invalid.c @@ -18,15 +18,15 @@ void test_raw_tp_writable_reject_nbd_invalid(void) BPF_EXIT_INSN(), }; - struct bpf_load_program_attr load_attr = { - .prog_type = BPF_PROG_TYPE_RAW_TRACEPOINT_WRITABLE, - .license = "GPL v2", - .insns = program, - .insns_cnt = sizeof(program) / sizeof(struct bpf_insn), + LIBBPF_OPTS(bpf_prog_load_opts, opts, .log_level = 2, - }; + .log_buf = error, + .log_size = sizeof(error), + ); - bpf_fd = bpf_load_program_xattr(&load_attr, error, sizeof(error)); + bpf_fd = bpf_prog_load(BPF_PROG_TYPE_RAW_TRACEPOINT_WRITABLE, NULL, "GPL v2", + program, sizeof(program) / sizeof(struct bpf_insn), + &opts); if (CHECK(bpf_fd < 0, "bpf_raw_tracepoint_writable load", "failed: %d errno %d\n", bpf_fd, errno)) return; diff --git a/tools/testing/selftests/bpf/prog_tests/raw_tp_writable_test_run.c b/tools/testing/selftests/bpf/prog_tests/raw_tp_writable_test_run.c index 5c45424cac5f..f4aa7dab4766 100644 --- a/tools/testing/selftests/bpf/prog_tests/raw_tp_writable_test_run.c +++ b/tools/testing/selftests/bpf/prog_tests/raw_tp_writable_test_run.c @@ -3,7 +3,8 @@ #include <test_progs.h> #include <linux/nbd.h> -void test_raw_tp_writable_test_run(void) +/* NOTE: conflict with other tests. */ +void serial_test_raw_tp_writable_test_run(void) { __u32 duration = 0; char error[4096]; @@ -16,15 +17,15 @@ void test_raw_tp_writable_test_run(void) BPF_EXIT_INSN(), }; - struct bpf_load_program_attr load_attr = { - .prog_type = BPF_PROG_TYPE_RAW_TRACEPOINT_WRITABLE, - .license = "GPL v2", - .insns = trace_program, - .insns_cnt = sizeof(trace_program) / sizeof(struct bpf_insn), + LIBBPF_OPTS(bpf_prog_load_opts, trace_opts, .log_level = 2, - }; + .log_buf = error, + .log_size = sizeof(error), + ); - int bpf_fd = bpf_load_program_xattr(&load_attr, error, sizeof(error)); + int bpf_fd = bpf_prog_load(BPF_PROG_TYPE_RAW_TRACEPOINT_WRITABLE, NULL, "GPL v2", + trace_program, sizeof(trace_program) / sizeof(struct bpf_insn), + &trace_opts); if (CHECK(bpf_fd < 0, "bpf_raw_tracepoint_writable loaded", "failed: %d errno %d\n", bpf_fd, errno)) return; @@ -34,15 +35,14 @@ void test_raw_tp_writable_test_run(void) BPF_EXIT_INSN(), }; - struct bpf_load_program_attr skb_load_attr = { - .prog_type = BPF_PROG_TYPE_SOCKET_FILTER, - .license = "GPL v2", - .insns = skb_program, - .insns_cnt = sizeof(skb_program) / sizeof(struct bpf_insn), - }; + LIBBPF_OPTS(bpf_prog_load_opts, skb_opts, + .log_buf = error, + .log_size = sizeof(error), + ); - int filter_fd = - bpf_load_program_xattr(&skb_load_attr, error, sizeof(error)); + int filter_fd = bpf_prog_load(BPF_PROG_TYPE_SOCKET_FILTER, NULL, "GPL v2", + skb_program, sizeof(skb_program) / sizeof(struct bpf_insn), + &skb_opts); if (CHECK(filter_fd < 0, "test_program_loaded", "failed: %d errno %d\n", filter_fd, errno)) goto out_bpffd; @@ -56,21 +56,23 @@ void test_raw_tp_writable_test_run(void) 0, }; - __u32 prog_ret; - int err = bpf_prog_test_run(filter_fd, 1, test_skb, sizeof(test_skb), 0, - 0, &prog_ret, 0); + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = test_skb, + .data_size_in = sizeof(test_skb), + .repeat = 1, + ); + int err = bpf_prog_test_run_opts(filter_fd, &topts); CHECK(err != 42, "test_run", "tracepoint did not modify return value\n"); - CHECK(prog_ret != 0, "test_run_ret", + CHECK(topts.retval != 0, "test_run_ret", "socket_filter did not return 0\n"); close(tp_fd); - err = bpf_prog_test_run(filter_fd, 1, test_skb, sizeof(test_skb), 0, 0, - &prog_ret, 0); + err = bpf_prog_test_run_opts(filter_fd, &topts); CHECK(err != 0, "test_run_notrace", "test_run failed with %d errno %d\n", err, errno); - CHECK(prog_ret != 0, "test_run_ret_notrace", + CHECK(topts.retval != 0, "test_run_ret_notrace", "socket_filter did not return 0\n"); out_filterfd: diff --git a/tools/testing/selftests/bpf/prog_tests/rbtree.c b/tools/testing/selftests/bpf/prog_tests/rbtree.c new file mode 100644 index 000000000000..e9300c96607d --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/rbtree.c @@ -0,0 +1,142 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include <network_helpers.h> + +#include "rbtree.skel.h" +#include "rbtree_fail.skel.h" +#include "rbtree_btf_fail__wrong_node_type.skel.h" +#include "rbtree_btf_fail__add_wrong_type.skel.h" + +static void test_rbtree_add_nodes(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct rbtree *skel; + int ret; + + skel = rbtree__open_and_load(); + if (!ASSERT_OK_PTR(skel, "rbtree__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.rbtree_add_nodes), &opts); + ASSERT_OK(ret, "rbtree_add_nodes run"); + ASSERT_OK(opts.retval, "rbtree_add_nodes retval"); + ASSERT_EQ(skel->data->less_callback_ran, 1, "rbtree_add_nodes less_callback_ran"); + + rbtree__destroy(skel); +} + +static void test_rbtree_add_and_remove(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct rbtree *skel; + int ret; + + skel = rbtree__open_and_load(); + if (!ASSERT_OK_PTR(skel, "rbtree__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.rbtree_add_and_remove), &opts); + ASSERT_OK(ret, "rbtree_add_and_remove"); + ASSERT_OK(opts.retval, "rbtree_add_and_remove retval"); + ASSERT_EQ(skel->data->removed_key, 5, "rbtree_add_and_remove first removed key"); + + rbtree__destroy(skel); +} + +static void test_rbtree_first_and_remove(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct rbtree *skel; + int ret; + + skel = rbtree__open_and_load(); + if (!ASSERT_OK_PTR(skel, "rbtree__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.rbtree_first_and_remove), &opts); + ASSERT_OK(ret, "rbtree_first_and_remove"); + ASSERT_OK(opts.retval, "rbtree_first_and_remove retval"); + ASSERT_EQ(skel->data->first_data[0], 2, "rbtree_first_and_remove first rbtree_first()"); + ASSERT_EQ(skel->data->removed_key, 1, "rbtree_first_and_remove first removed key"); + ASSERT_EQ(skel->data->first_data[1], 4, "rbtree_first_and_remove second rbtree_first()"); + + rbtree__destroy(skel); +} + +static void test_rbtree_api_release_aliasing(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct rbtree *skel; + int ret; + + skel = rbtree__open_and_load(); + if (!ASSERT_OK_PTR(skel, "rbtree__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.rbtree_api_release_aliasing), &opts); + ASSERT_OK(ret, "rbtree_api_release_aliasing"); + ASSERT_OK(opts.retval, "rbtree_api_release_aliasing retval"); + ASSERT_EQ(skel->data->first_data[0], 42, "rbtree_api_release_aliasing first rbtree_remove()"); + ASSERT_EQ(skel->data->first_data[1], -1, "rbtree_api_release_aliasing second rbtree_remove()"); + + rbtree__destroy(skel); +} + +void test_rbtree_success(void) +{ + if (test__start_subtest("rbtree_add_nodes")) + test_rbtree_add_nodes(); + if (test__start_subtest("rbtree_add_and_remove")) + test_rbtree_add_and_remove(); + if (test__start_subtest("rbtree_first_and_remove")) + test_rbtree_first_and_remove(); + if (test__start_subtest("rbtree_api_release_aliasing")) + test_rbtree_api_release_aliasing(); +} + +#define BTF_FAIL_TEST(suffix) \ +void test_rbtree_btf_fail__##suffix(void) \ +{ \ + struct rbtree_btf_fail__##suffix *skel; \ + \ + skel = rbtree_btf_fail__##suffix##__open_and_load(); \ + if (!ASSERT_ERR_PTR(skel, \ + "rbtree_btf_fail__" #suffix "__open_and_load unexpected success")) \ + rbtree_btf_fail__##suffix##__destroy(skel); \ +} + +#define RUN_BTF_FAIL_TEST(suffix) \ + if (test__start_subtest("rbtree_btf_fail__" #suffix)) \ + test_rbtree_btf_fail__##suffix(); + +BTF_FAIL_TEST(wrong_node_type); +BTF_FAIL_TEST(add_wrong_type); + +void test_rbtree_btf_fail(void) +{ + RUN_BTF_FAIL_TEST(wrong_node_type); + RUN_BTF_FAIL_TEST(add_wrong_type); +} + +void test_rbtree_fail(void) +{ + RUN_TESTS(rbtree_fail); +} diff --git a/tools/testing/selftests/bpf/prog_tests/rcu_read_lock.c b/tools/testing/selftests/bpf/prog_tests/rcu_read_lock.c new file mode 100644 index 000000000000..a1f7e7378a64 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/rcu_read_lock.c @@ -0,0 +1,154 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates.*/ + +#define _GNU_SOURCE +#include <unistd.h> +#include <sys/syscall.h> +#include <sys/types.h> +#include <test_progs.h> +#include <bpf/btf.h> +#include "rcu_read_lock.skel.h" +#include "cgroup_helpers.h" + +static unsigned long long cgroup_id; + +static void test_success(void) +{ + struct rcu_read_lock *skel; + int err; + + skel = rcu_read_lock__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->bss->target_pid = syscall(SYS_gettid); + + bpf_program__set_autoload(skel->progs.get_cgroup_id, true); + bpf_program__set_autoload(skel->progs.task_succ, true); + bpf_program__set_autoload(skel->progs.two_regions, true); + bpf_program__set_autoload(skel->progs.non_sleepable_1, true); + bpf_program__set_autoload(skel->progs.non_sleepable_2, true); + bpf_program__set_autoload(skel->progs.task_trusted_non_rcuptr, true); + bpf_program__set_autoload(skel->progs.rcu_read_lock_subprog, true); + bpf_program__set_autoload(skel->progs.rcu_read_lock_global_subprog, true); + bpf_program__set_autoload(skel->progs.rcu_read_lock_subprog_lock, true); + bpf_program__set_autoload(skel->progs.rcu_read_lock_subprog_unlock, true); + err = rcu_read_lock__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto out; + + err = rcu_read_lock__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + syscall(SYS_getpgid); + + ASSERT_EQ(skel->bss->task_storage_val, 2, "task_storage_val"); + ASSERT_EQ(skel->bss->cgroup_id, cgroup_id, "cgroup_id"); +out: + rcu_read_lock__destroy(skel); +} + +static void test_rcuptr_acquire(void) +{ + struct rcu_read_lock *skel; + int err; + + skel = rcu_read_lock__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->bss->target_pid = syscall(SYS_gettid); + + bpf_program__set_autoload(skel->progs.task_acquire, true); + err = rcu_read_lock__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto out; + + err = rcu_read_lock__attach(skel); + ASSERT_OK(err, "skel_attach"); +out: + rcu_read_lock__destroy(skel); +} + +static const char * const inproper_region_tests[] = { + "miss_lock", + "no_lock", + "miss_unlock", + "non_sleepable_rcu_mismatch", + "inproper_sleepable_helper", + "inproper_sleepable_kfunc", + "nested_rcu_region", + "rcu_read_lock_global_subprog_lock", + "rcu_read_lock_global_subprog_unlock", +}; + +static void test_inproper_region(void) +{ + struct rcu_read_lock *skel; + struct bpf_program *prog; + int i, err; + + for (i = 0; i < ARRAY_SIZE(inproper_region_tests); i++) { + skel = rcu_read_lock__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + prog = bpf_object__find_program_by_name(skel->obj, inproper_region_tests[i]); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto out; + bpf_program__set_autoload(prog, true); + err = rcu_read_lock__load(skel); + ASSERT_ERR(err, "skel_load"); +out: + rcu_read_lock__destroy(skel); + } +} + +static const char * const rcuptr_misuse_tests[] = { + "task_untrusted_rcuptr", + "cross_rcu_region", +}; + +static void test_rcuptr_misuse(void) +{ + struct rcu_read_lock *skel; + struct bpf_program *prog; + int i, err; + + for (i = 0; i < ARRAY_SIZE(rcuptr_misuse_tests); i++) { + skel = rcu_read_lock__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + prog = bpf_object__find_program_by_name(skel->obj, rcuptr_misuse_tests[i]); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto out; + bpf_program__set_autoload(prog, true); + err = rcu_read_lock__load(skel); + ASSERT_ERR(err, "skel_load"); +out: + rcu_read_lock__destroy(skel); + } +} + +void test_rcu_read_lock(void) +{ + int cgroup_fd; + + cgroup_fd = test__join_cgroup("/rcu_read_lock"); + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup /rcu_read_lock")) + goto out; + + cgroup_id = get_cgroup_id("/rcu_read_lock"); + if (test__start_subtest("success")) + test_success(); + if (test__start_subtest("rcuptr_acquire")) + test_rcuptr_acquire(); + if (test__start_subtest("negative_tests_inproper_region")) + test_inproper_region(); + if (test__start_subtest("negative_tests_rcuptr_misuse")) + test_rcuptr_misuse(); + close(cgroup_fd); +out:; +} diff --git a/tools/testing/selftests/bpf/prog_tests/rdonly_maps.c b/tools/testing/selftests/bpf/prog_tests/rdonly_maps.c index 563e12120e77..19e2f2526dbd 100644 --- a/tools/testing/selftests/bpf/prog_tests/rdonly_maps.c +++ b/tools/testing/selftests/bpf/prog_tests/rdonly_maps.c @@ -16,7 +16,7 @@ struct rdonly_map_subtest { void test_rdonly_maps(void) { - const char *file = "test_rdonly_maps.o"; + const char *file = "test_rdonly_maps.bpf.o"; struct rdonly_map_subtest subtests[] = { { "skip loop", "skip_loop", 0, 0 }, { "part loop", "part_loop", 3, 2 + 3 + 4 }, @@ -30,14 +30,14 @@ void test_rdonly_maps(void) struct bss bss; obj = bpf_object__open_file(file, NULL); - if (CHECK(IS_ERR(obj), "obj_open", "err %ld\n", PTR_ERR(obj))) + if (!ASSERT_OK_PTR(obj, "obj_open")) return; err = bpf_object__load(obj); if (CHECK(err, "obj_load", "err %d errno %d\n", err, errno)) goto cleanup; - bss_map = bpf_object__find_map_by_name(obj, "test_rdo.bss"); + bss_map = bpf_object__find_map_by_name(obj, ".bss"); if (CHECK(!bss_map, "find_bss_map", "failed\n")) goto cleanup; @@ -58,11 +58,8 @@ void test_rdonly_maps(void) goto cleanup; link = bpf_program__attach_raw_tracepoint(prog, "sys_enter"); - if (CHECK(IS_ERR(link), "attach_prog", "prog '%s', err %ld\n", - t->prog_name, PTR_ERR(link))) { - link = NULL; + if (!ASSERT_OK_PTR(link, "attach_prog")) goto cleanup; - } /* trigger probe */ usleep(1); diff --git a/tools/testing/selftests/bpf/prog_tests/read_vsyscall.c b/tools/testing/selftests/bpf/prog_tests/read_vsyscall.c new file mode 100644 index 000000000000..3405923fe4e6 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/read_vsyscall.c @@ -0,0 +1,57 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2024. Huawei Technologies Co., Ltd */ +#include "test_progs.h" +#include "read_vsyscall.skel.h" + +#if defined(__x86_64__) +/* For VSYSCALL_ADDR */ +#include <asm/vsyscall.h> +#else +/* To prevent build failure on non-x86 arch */ +#define VSYSCALL_ADDR 0UL +#endif + +struct read_ret_desc { + const char *name; + int ret; +} all_read[] = { + { .name = "probe_read_kernel", .ret = -ERANGE }, + { .name = "probe_read_kernel_str", .ret = -ERANGE }, + { .name = "probe_read", .ret = -ERANGE }, + { .name = "probe_read_str", .ret = -ERANGE }, + { .name = "probe_read_user", .ret = -EFAULT }, + { .name = "probe_read_user_str", .ret = -EFAULT }, + { .name = "copy_from_user", .ret = -EFAULT }, + { .name = "copy_from_user_task", .ret = -EFAULT }, +}; + +void test_read_vsyscall(void) +{ + struct read_vsyscall *skel; + unsigned int i; + int err; + +#if !defined(__x86_64__) + test__skip(); + return; +#endif + skel = read_vsyscall__open_and_load(); + if (!ASSERT_OK_PTR(skel, "read_vsyscall open_load")) + return; + + skel->bss->target_pid = getpid(); + err = read_vsyscall__attach(skel); + if (!ASSERT_EQ(err, 0, "read_vsyscall attach")) + goto out; + + /* userspace may don't have vsyscall page due to LEGACY_VSYSCALL_NONE, + * but it doesn't affect the returned error codes. + */ + skel->bss->user_ptr = (void *)VSYSCALL_ADDR; + usleep(1); + + for (i = 0; i < ARRAY_SIZE(all_read); i++) + ASSERT_EQ(skel->bss->read_ret[i], all_read[i].ret, all_read[i].name); +out: + read_vsyscall__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/recursion.c b/tools/testing/selftests/bpf/prog_tests/recursion.c new file mode 100644 index 000000000000..23552d3e3365 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/recursion.c @@ -0,0 +1,41 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include "recursion.skel.h" + +void test_recursion(void) +{ + struct bpf_prog_info prog_info = {}; + __u32 prog_info_len = sizeof(prog_info); + struct recursion *skel; + int key = 0; + int err; + + skel = recursion__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + err = recursion__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + ASSERT_EQ(skel->bss->pass1, 0, "pass1 == 0"); + bpf_map_delete_elem(bpf_map__fd(skel->maps.hash1), &key); + ASSERT_EQ(skel->bss->pass1, 1, "pass1 == 1"); + bpf_map_delete_elem(bpf_map__fd(skel->maps.hash1), &key); + ASSERT_EQ(skel->bss->pass1, 2, "pass1 == 2"); + + ASSERT_EQ(skel->bss->pass2, 0, "pass2 == 0"); + bpf_map_delete_elem(bpf_map__fd(skel->maps.hash2), &key); + ASSERT_EQ(skel->bss->pass2, 1, "pass2 == 1"); + bpf_map_delete_elem(bpf_map__fd(skel->maps.hash2), &key); + ASSERT_EQ(skel->bss->pass2, 2, "pass2 == 2"); + + err = bpf_prog_get_info_by_fd(bpf_program__fd(skel->progs.on_delete), + &prog_info, &prog_info_len); + if (!ASSERT_OK(err, "get_prog_info")) + goto out; + ASSERT_EQ(prog_info.recursion_misses, 2, "recursion_misses"); +out: + recursion__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/recursive_attach.c b/tools/testing/selftests/bpf/prog_tests/recursive_attach.c new file mode 100644 index 000000000000..8100509e561b --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/recursive_attach.c @@ -0,0 +1,151 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Red Hat, Inc. */ +#include <test_progs.h> +#include "fentry_recursive.skel.h" +#include "fentry_recursive_target.skel.h" +#include <bpf/btf.h> +#include "bpf/libbpf_internal.h" + +/* Test recursive attachment of tracing progs with more than one nesting level + * is not possible. Create a chain of attachment, verify that the last prog + * will fail. Depending on the arguments, following cases are tested: + * + * - Recursive loading of tracing progs, without attaching (attach = false, + * detach = false). The chain looks like this: + * load target + * load fentry1 -> target + * load fentry2 -> fentry1 (fail) + * + * - Recursive attach of tracing progs (attach = true, detach = false). The + * chain looks like this: + * load target + * load fentry1 -> target + * attach fentry1 -> target + * load fentry2 -> fentry1 (fail) + * + * - Recursive attach and detach of tracing progs (attach = true, detach = + * true). This validates that attach_tracing_prog flag will be set throughout + * the whole lifecycle of an fentry prog, independently from whether it's + * detached. The chain looks like this: + * load target + * load fentry1 -> target + * attach fentry1 -> target + * detach fentry1 + * load fentry2 -> fentry1 (fail) + */ +static void test_recursive_fentry_chain(bool attach, bool detach) +{ + struct fentry_recursive_target *target_skel = NULL; + struct fentry_recursive *tracing_chain[2] = {}; + struct bpf_program *prog; + int prev_fd, err; + + target_skel = fentry_recursive_target__open_and_load(); + if (!ASSERT_OK_PTR(target_skel, "fentry_recursive_target__open_and_load")) + return; + + /* Create an attachment chain with two fentry progs */ + for (int i = 0; i < 2; i++) { + tracing_chain[i] = fentry_recursive__open(); + if (!ASSERT_OK_PTR(tracing_chain[i], "fentry_recursive__open")) + goto close_prog; + + /* The first prog in the chain is going to be attached to the target + * fentry program, the second one to the previous in the chain. + */ + prog = tracing_chain[i]->progs.recursive_attach; + if (i == 0) { + prev_fd = bpf_program__fd(target_skel->progs.test1); + err = bpf_program__set_attach_target(prog, prev_fd, "test1"); + } else { + prev_fd = bpf_program__fd(tracing_chain[i-1]->progs.recursive_attach); + err = bpf_program__set_attach_target(prog, prev_fd, "recursive_attach"); + } + + if (!ASSERT_OK(err, "bpf_program__set_attach_target")) + goto close_prog; + + err = fentry_recursive__load(tracing_chain[i]); + /* The first attach should succeed, the second fail */ + if (i == 0) { + if (!ASSERT_OK(err, "fentry_recursive__load")) + goto close_prog; + + if (attach) { + err = fentry_recursive__attach(tracing_chain[i]); + if (!ASSERT_OK(err, "fentry_recursive__attach")) + goto close_prog; + } + + if (detach) { + /* Flag attach_tracing_prog should still be set, preventing + * attachment of the following prog. + */ + fentry_recursive__detach(tracing_chain[i]); + } + } else { + if (!ASSERT_ERR(err, "fentry_recursive__load")) + goto close_prog; + } + } + +close_prog: + fentry_recursive_target__destroy(target_skel); + for (int i = 0; i < 2; i++) { + fentry_recursive__destroy(tracing_chain[i]); + } +} + +void test_recursive_fentry(void) +{ + if (test__start_subtest("attach")) + test_recursive_fentry_chain(true, false); + if (test__start_subtest("load")) + test_recursive_fentry_chain(false, false); + if (test__start_subtest("detach")) + test_recursive_fentry_chain(true, true); +} + +/* Test that a tracing prog reattachment (when we land in + * "prog->aux->dst_trampoline and tgt_prog is NULL" branch in + * bpf_tracing_prog_attach) does not lead to a crash due to missing attach_btf + */ +void test_fentry_attach_btf_presence(void) +{ + struct fentry_recursive_target *target_skel = NULL; + struct fentry_recursive *tracing_skel = NULL; + struct bpf_program *prog; + int err, link_fd, tgt_prog_fd; + + target_skel = fentry_recursive_target__open_and_load(); + if (!ASSERT_OK_PTR(target_skel, "fentry_recursive_target__open_and_load")) + goto close_prog; + + tracing_skel = fentry_recursive__open(); + if (!ASSERT_OK_PTR(tracing_skel, "fentry_recursive__open")) + goto close_prog; + + prog = tracing_skel->progs.recursive_attach; + tgt_prog_fd = bpf_program__fd(target_skel->progs.fentry_target); + err = bpf_program__set_attach_target(prog, tgt_prog_fd, "fentry_target"); + if (!ASSERT_OK(err, "bpf_program__set_attach_target")) + goto close_prog; + + err = fentry_recursive__load(tracing_skel); + if (!ASSERT_OK(err, "fentry_recursive__load")) + goto close_prog; + + tgt_prog_fd = bpf_program__fd(tracing_skel->progs.recursive_attach); + link_fd = bpf_link_create(tgt_prog_fd, 0, BPF_TRACE_FENTRY, NULL); + if (!ASSERT_GE(link_fd, 0, "link_fd")) + goto close_prog; + + fentry_recursive__detach(tracing_skel); + + err = fentry_recursive__attach(tracing_skel); + ASSERT_ERR(err, "fentry_recursive__attach"); + +close_prog: + fentry_recursive_target__destroy(target_skel); + fentry_recursive__destroy(tracing_skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/refcounted_kptr.c b/tools/testing/selftests/bpf/prog_tests/refcounted_kptr.c new file mode 100644 index 000000000000..d6bd5e16e637 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/refcounted_kptr.c @@ -0,0 +1,46 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include <network_helpers.h> + +#include "refcounted_kptr.skel.h" +#include "refcounted_kptr_fail.skel.h" + +void test_refcounted_kptr(void) +{ + RUN_TESTS(refcounted_kptr); +} + +void test_refcounted_kptr_fail(void) +{ + RUN_TESTS(refcounted_kptr_fail); +} + +void test_refcounted_kptr_wrong_owner(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + struct refcounted_kptr *skel; + int ret; + + skel = refcounted_kptr__open_and_load(); + if (!ASSERT_OK_PTR(skel, "refcounted_kptr__open_and_load")) + return; + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.rbtree_wrong_owner_remove_fail_a1), &opts); + ASSERT_OK(ret, "rbtree_wrong_owner_remove_fail_a1"); + ASSERT_OK(opts.retval, "rbtree_wrong_owner_remove_fail_a1 retval"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.rbtree_wrong_owner_remove_fail_b), &opts); + ASSERT_OK(ret, "rbtree_wrong_owner_remove_fail_b"); + ASSERT_OK(opts.retval, "rbtree_wrong_owner_remove_fail_b retval"); + + ret = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.rbtree_wrong_owner_remove_fail_a2), &opts); + ASSERT_OK(ret, "rbtree_wrong_owner_remove_fail_a2"); + ASSERT_OK(opts.retval, "rbtree_wrong_owner_remove_fail_a2 retval"); + refcounted_kptr__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/reference_tracking.c b/tools/testing/selftests/bpf/prog_tests/reference_tracking.c index fc0d7f4f02cf..d863205bbe95 100644 --- a/tools/testing/selftests/bpf/prog_tests/reference_tracking.c +++ b/tools/testing/selftests/bpf/prog_tests/reference_tracking.c @@ -3,50 +3,61 @@ void test_reference_tracking(void) { - const char *file = "test_sk_lookup_kern.o"; + const char *file = "test_sk_lookup_kern.bpf.o"; const char *obj_name = "ref_track"; DECLARE_LIBBPF_OPTS(bpf_object_open_opts, open_opts, .object_name = obj_name, .relaxed_maps = true, ); - struct bpf_object *obj; + struct bpf_object *obj_iter, *obj = NULL; struct bpf_program *prog; __u32 duration = 0; int err = 0; - obj = bpf_object__open_file(file, &open_opts); - if (CHECK_FAIL(IS_ERR(obj))) + obj_iter = bpf_object__open_file(file, &open_opts); + if (!ASSERT_OK_PTR(obj_iter, "obj_iter_open_file")) return; - if (CHECK(strcmp(bpf_object__name(obj), obj_name), "obj_name", + if (CHECK(strcmp(bpf_object__name(obj_iter), obj_name), "obj_name", "wrong obj name '%s', expected '%s'\n", - bpf_object__name(obj), obj_name)) + bpf_object__name(obj_iter), obj_name)) goto cleanup; - bpf_object__for_each_program(prog, obj) { - const char *title; + bpf_object__for_each_program(prog, obj_iter) { + struct bpf_program *p; + const char *name; - /* Ignore .text sections */ - title = bpf_program__title(prog, false); - if (strstr(title, ".text") != NULL) + name = bpf_program__name(prog); + if (!test__start_subtest(name)) continue; - if (!test__start_subtest(title)) - continue; + obj = bpf_object__open_file(file, &open_opts); + if (!ASSERT_OK_PTR(obj, "obj_open_file")) + goto cleanup; + + /* all programs are not loaded by default, so just set + * autoload to true for the single prog under test + */ + p = bpf_object__find_program_by_name(obj, name); + bpf_program__set_autoload(p, true); - /* Expect verifier failure if test name has 'fail' */ - if (strstr(title, "fail") != NULL) { + /* Expect verifier failure if test name has 'err' */ + if (strncmp(name, "err_", sizeof("err_") - 1) == 0) { libbpf_print_fn_t old_print_fn; old_print_fn = libbpf_set_print(NULL); - err = !bpf_program__load(prog, "GPL", 0); + err = !bpf_object__load(obj); libbpf_set_print(old_print_fn); } else { - err = bpf_program__load(prog, "GPL", 0); + err = bpf_object__load(obj); } - CHECK(err, title, "\n"); + ASSERT_OK(err, name); + + bpf_object__close(obj); + obj = NULL; } cleanup: bpf_object__close(obj); + bpf_object__close(obj_iter); } diff --git a/tools/testing/selftests/bpf/prog_tests/reg_bounds.c b/tools/testing/selftests/bpf/prog_tests/reg_bounds.c new file mode 100644 index 000000000000..eb74363f9f70 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/reg_bounds.c @@ -0,0 +1,2131 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#define _GNU_SOURCE +#include <limits.h> +#include <test_progs.h> +#include <linux/filter.h> +#include <linux/bpf.h> + +/* ================================= + * SHORT AND CONSISTENT NUMBER TYPES + * ================================= + */ +#define U64_MAX ((u64)UINT64_MAX) +#define U32_MAX ((u32)UINT_MAX) +#define U16_MAX ((u32)UINT_MAX) +#define S64_MIN ((s64)INT64_MIN) +#define S64_MAX ((s64)INT64_MAX) +#define S32_MIN ((s32)INT_MIN) +#define S32_MAX ((s32)INT_MAX) +#define S16_MIN ((s16)0x80000000) +#define S16_MAX ((s16)0x7fffffff) + +typedef unsigned long long ___u64; +typedef unsigned int ___u32; +typedef long long ___s64; +typedef int ___s32; + +/* avoid conflicts with already defined types in kernel headers */ +#define u64 ___u64 +#define u32 ___u32 +#define s64 ___s64 +#define s32 ___s32 + +/* ================================== + * STRING BUF ABSTRACTION AND HELPERS + * ================================== + */ +struct strbuf { + size_t buf_sz; + int pos; + char buf[0]; +}; + +#define DEFINE_STRBUF(name, N) \ + struct { struct strbuf buf; char data[(N)]; } ___##name; \ + struct strbuf *name = (___##name.buf.buf_sz = (N), ___##name.buf.pos = 0, &___##name.buf) + +__printf(2, 3) +static inline void snappendf(struct strbuf *s, const char *fmt, ...) +{ + va_list args; + + va_start(args, fmt); + s->pos += vsnprintf(s->buf + s->pos, + s->pos < s->buf_sz ? s->buf_sz - s->pos : 0, + fmt, args); + va_end(args); +} + +/* ================================== + * GENERIC NUMBER TYPE AND OPERATIONS + * ================================== + */ +enum num_t { U64, first_t = U64, U32, S64, S32, last_t = S32 }; + +static __always_inline u64 min_t(enum num_t t, u64 x, u64 y) +{ + switch (t) { + case U64: return (u64)x < (u64)y ? (u64)x : (u64)y; + case U32: return (u32)x < (u32)y ? (u32)x : (u32)y; + case S64: return (s64)x < (s64)y ? (s64)x : (s64)y; + case S32: return (s32)x < (s32)y ? (s32)x : (s32)y; + default: printf("min_t!\n"); exit(1); + } +} + +static __always_inline u64 max_t(enum num_t t, u64 x, u64 y) +{ + switch (t) { + case U64: return (u64)x > (u64)y ? (u64)x : (u64)y; + case U32: return (u32)x > (u32)y ? (u32)x : (u32)y; + case S64: return (s64)x > (s64)y ? (s64)x : (s64)y; + case S32: return (s32)x > (s32)y ? (u32)(s32)x : (u32)(s32)y; + default: printf("max_t!\n"); exit(1); + } +} + +static __always_inline u64 cast_t(enum num_t t, u64 x) +{ + switch (t) { + case U64: return (u64)x; + case U32: return (u32)x; + case S64: return (s64)x; + case S32: return (u32)(s32)x; + default: printf("cast_t!\n"); exit(1); + } +} + +static const char *t_str(enum num_t t) +{ + switch (t) { + case U64: return "u64"; + case U32: return "u32"; + case S64: return "s64"; + case S32: return "s32"; + default: printf("t_str!\n"); exit(1); + } +} + +static enum num_t t_is_32(enum num_t t) +{ + switch (t) { + case U64: return false; + case U32: return true; + case S64: return false; + case S32: return true; + default: printf("t_is_32!\n"); exit(1); + } +} + +static enum num_t t_signed(enum num_t t) +{ + switch (t) { + case U64: return S64; + case U32: return S32; + case S64: return S64; + case S32: return S32; + default: printf("t_signed!\n"); exit(1); + } +} + +static enum num_t t_unsigned(enum num_t t) +{ + switch (t) { + case U64: return U64; + case U32: return U32; + case S64: return U64; + case S32: return U32; + default: printf("t_unsigned!\n"); exit(1); + } +} + +#define UNUM_MAX_DECIMAL U16_MAX +#define SNUM_MAX_DECIMAL S16_MAX +#define SNUM_MIN_DECIMAL S16_MIN + +static bool num_is_small(enum num_t t, u64 x) +{ + switch (t) { + case U64: return (u64)x <= UNUM_MAX_DECIMAL; + case U32: return (u32)x <= UNUM_MAX_DECIMAL; + case S64: return (s64)x >= SNUM_MIN_DECIMAL && (s64)x <= SNUM_MAX_DECIMAL; + case S32: return (s32)x >= SNUM_MIN_DECIMAL && (s32)x <= SNUM_MAX_DECIMAL; + default: printf("num_is_small!\n"); exit(1); + } +} + +static void snprintf_num(enum num_t t, struct strbuf *sb, u64 x) +{ + bool is_small = num_is_small(t, x); + + if (is_small) { + switch (t) { + case U64: return snappendf(sb, "%llu", (u64)x); + case U32: return snappendf(sb, "%u", (u32)x); + case S64: return snappendf(sb, "%lld", (s64)x); + case S32: return snappendf(sb, "%d", (s32)x); + default: printf("snprintf_num!\n"); exit(1); + } + } else { + switch (t) { + case U64: + if (x == U64_MAX) + return snappendf(sb, "U64_MAX"); + else if (x >= U64_MAX - 256) + return snappendf(sb, "U64_MAX-%llu", U64_MAX - x); + else + return snappendf(sb, "%#llx", (u64)x); + case U32: + if ((u32)x == U32_MAX) + return snappendf(sb, "U32_MAX"); + else if ((u32)x >= U32_MAX - 256) + return snappendf(sb, "U32_MAX-%u", U32_MAX - (u32)x); + else + return snappendf(sb, "%#x", (u32)x); + case S64: + if ((s64)x == S64_MAX) + return snappendf(sb, "S64_MAX"); + else if ((s64)x >= S64_MAX - 256) + return snappendf(sb, "S64_MAX-%lld", S64_MAX - (s64)x); + else if ((s64)x == S64_MIN) + return snappendf(sb, "S64_MIN"); + else if ((s64)x <= S64_MIN + 256) + return snappendf(sb, "S64_MIN+%lld", (s64)x - S64_MIN); + else + return snappendf(sb, "%#llx", (s64)x); + case S32: + if ((s32)x == S32_MAX) + return snappendf(sb, "S32_MAX"); + else if ((s32)x >= S32_MAX - 256) + return snappendf(sb, "S32_MAX-%d", S32_MAX - (s32)x); + else if ((s32)x == S32_MIN) + return snappendf(sb, "S32_MIN"); + else if ((s32)x <= S32_MIN + 256) + return snappendf(sb, "S32_MIN+%d", (s32)x - S32_MIN); + else + return snappendf(sb, "%#x", (s32)x); + default: printf("snprintf_num!\n"); exit(1); + } + } +} + +/* =================================== + * GENERIC RANGE STRUCT AND OPERATIONS + * =================================== + */ +struct range { + u64 a, b; +}; + +static void snprintf_range(enum num_t t, struct strbuf *sb, struct range x) +{ + if (x.a == x.b) + return snprintf_num(t, sb, x.a); + + snappendf(sb, "["); + snprintf_num(t, sb, x.a); + snappendf(sb, "; "); + snprintf_num(t, sb, x.b); + snappendf(sb, "]"); +} + +static void print_range(enum num_t t, struct range x, const char *sfx) +{ + DEFINE_STRBUF(sb, 128); + + snprintf_range(t, sb, x); + printf("%s%s", sb->buf, sfx); +} + +static const struct range unkn[] = { + [U64] = { 0, U64_MAX }, + [U32] = { 0, U32_MAX }, + [S64] = { (u64)S64_MIN, (u64)S64_MAX }, + [S32] = { (u64)(u32)S32_MIN, (u64)(u32)S32_MAX }, +}; + +static struct range unkn_subreg(enum num_t t) +{ + switch (t) { + case U64: return unkn[U32]; + case U32: return unkn[U32]; + case S64: return unkn[U32]; + case S32: return unkn[S32]; + default: printf("unkn_subreg!\n"); exit(1); + } +} + +static struct range range(enum num_t t, u64 a, u64 b) +{ + switch (t) { + case U64: return (struct range){ (u64)a, (u64)b }; + case U32: return (struct range){ (u32)a, (u32)b }; + case S64: return (struct range){ (s64)a, (s64)b }; + case S32: return (struct range){ (u32)(s32)a, (u32)(s32)b }; + default: printf("range!\n"); exit(1); + } +} + +static __always_inline u32 sign64(u64 x) { return (x >> 63) & 1; } +static __always_inline u32 sign32(u64 x) { return ((u32)x >> 31) & 1; } +static __always_inline u32 upper32(u64 x) { return (u32)(x >> 32); } +static __always_inline u64 swap_low32(u64 x, u32 y) { return (x & 0xffffffff00000000ULL) | y; } + +static bool range_eq(struct range x, struct range y) +{ + return x.a == y.a && x.b == y.b; +} + +static struct range range_cast_to_s32(struct range x) +{ + u64 a = x.a, b = x.b; + + /* if upper 32 bits are constant, lower 32 bits should form a proper + * s32 range to be correct + */ + if (upper32(a) == upper32(b) && (s32)a <= (s32)b) + return range(S32, a, b); + + /* Special case where upper bits form a small sequence of two + * sequential numbers (in 32-bit unsigned space, so 0xffffffff to + * 0x00000000 is also valid), while lower bits form a proper s32 range + * going from negative numbers to positive numbers. + * + * E.g.: [0xfffffff0ffffff00; 0xfffffff100000010]. Iterating + * over full 64-bit numbers range will form a proper [-16, 16] + * ([0xffffff00; 0x00000010]) range in its lower 32 bits. + */ + if (upper32(a) + 1 == upper32(b) && (s32)a < 0 && (s32)b >= 0) + return range(S32, a, b); + + /* otherwise we can't derive much meaningful information */ + return unkn[S32]; +} + +static struct range range_cast_u64(enum num_t to_t, struct range x) +{ + u64 a = (u64)x.a, b = (u64)x.b; + + switch (to_t) { + case U64: + return x; + case U32: + if (upper32(a) != upper32(b)) + return unkn[U32]; + return range(U32, a, b); + case S64: + if (sign64(a) != sign64(b)) + return unkn[S64]; + return range(S64, a, b); + case S32: + return range_cast_to_s32(x); + default: printf("range_cast_u64!\n"); exit(1); + } +} + +static struct range range_cast_s64(enum num_t to_t, struct range x) +{ + s64 a = (s64)x.a, b = (s64)x.b; + + switch (to_t) { + case U64: + /* equivalent to (s64)a <= (s64)b check */ + if (sign64(a) != sign64(b)) + return unkn[U64]; + return range(U64, a, b); + case U32: + if (upper32(a) != upper32(b) || sign32(a) != sign32(b)) + return unkn[U32]; + return range(U32, a, b); + case S64: + return x; + case S32: + return range_cast_to_s32(x); + default: printf("range_cast_s64!\n"); exit(1); + } +} + +static struct range range_cast_u32(enum num_t to_t, struct range x) +{ + u32 a = (u32)x.a, b = (u32)x.b; + + switch (to_t) { + case U64: + case S64: + /* u32 is always a valid zero-extended u64/s64 */ + return range(to_t, a, b); + case U32: + return x; + case S32: + return range_cast_to_s32(range(U32, a, b)); + default: printf("range_cast_u32!\n"); exit(1); + } +} + +static struct range range_cast_s32(enum num_t to_t, struct range x) +{ + s32 a = (s32)x.a, b = (s32)x.b; + + switch (to_t) { + case U64: + case U32: + case S64: + if (sign32(a) != sign32(b)) + return unkn[to_t]; + return range(to_t, a, b); + case S32: + return x; + default: printf("range_cast_s32!\n"); exit(1); + } +} + +/* Reinterpret range in *from_t* domain as a range in *to_t* domain preserving + * all possible information. Worst case, it will be unknown range within + * *to_t* domain, if nothing more specific can be guaranteed during the + * conversion + */ +static struct range range_cast(enum num_t from_t, enum num_t to_t, struct range from) +{ + switch (from_t) { + case U64: return range_cast_u64(to_t, from); + case U32: return range_cast_u32(to_t, from); + case S64: return range_cast_s64(to_t, from); + case S32: return range_cast_s32(to_t, from); + default: printf("range_cast!\n"); exit(1); + } +} + +static bool is_valid_num(enum num_t t, u64 x) +{ + switch (t) { + case U64: return true; + case U32: return upper32(x) == 0; + case S64: return true; + case S32: return upper32(x) == 0; + default: printf("is_valid_num!\n"); exit(1); + } +} + +static bool is_valid_range(enum num_t t, struct range x) +{ + if (!is_valid_num(t, x.a) || !is_valid_num(t, x.b)) + return false; + + switch (t) { + case U64: return (u64)x.a <= (u64)x.b; + case U32: return (u32)x.a <= (u32)x.b; + case S64: return (s64)x.a <= (s64)x.b; + case S32: return (s32)x.a <= (s32)x.b; + default: printf("is_valid_range!\n"); exit(1); + } +} + +static struct range range_improve(enum num_t t, struct range old, struct range new) +{ + return range(t, max_t(t, old.a, new.a), min_t(t, old.b, new.b)); +} + +static struct range range_refine(enum num_t x_t, struct range x, enum num_t y_t, struct range y) +{ + struct range y_cast; + + y_cast = range_cast(y_t, x_t, y); + + /* the case when new range knowledge, *y*, is a 32-bit subregister + * range, while previous range knowledge, *x*, is a full register + * 64-bit range, needs special treatment to take into account upper 32 + * bits of full register range + */ + if (t_is_32(y_t) && !t_is_32(x_t)) { + struct range x_swap; + + /* some combinations of upper 32 bits and sign bit can lead to + * invalid ranges, in such cases it's easier to detect them + * after cast/swap than try to enumerate all the conditions + * under which transformation and knowledge transfer is valid + */ + x_swap = range(x_t, swap_low32(x.a, y_cast.a), swap_low32(x.b, y_cast.b)); + if (!is_valid_range(x_t, x_swap)) + return x; + return range_improve(x_t, x, x_swap); + } + + /* otherwise, plain range cast and intersection works */ + return range_improve(x_t, x, y_cast); +} + +/* ======================= + * GENERIC CONDITIONAL OPS + * ======================= + */ +enum op { OP_LT, OP_LE, OP_GT, OP_GE, OP_EQ, OP_NE, first_op = OP_LT, last_op = OP_NE }; + +static enum op complement_op(enum op op) +{ + switch (op) { + case OP_LT: return OP_GE; + case OP_LE: return OP_GT; + case OP_GT: return OP_LE; + case OP_GE: return OP_LT; + case OP_EQ: return OP_NE; + case OP_NE: return OP_EQ; + default: printf("complement_op!\n"); exit(1); + } +} + +static const char *op_str(enum op op) +{ + switch (op) { + case OP_LT: return "<"; + case OP_LE: return "<="; + case OP_GT: return ">"; + case OP_GE: return ">="; + case OP_EQ: return "=="; + case OP_NE: return "!="; + default: printf("op_str!\n"); exit(1); + } +} + +/* Can register with range [x.a, x.b] *EVER* satisfy + * OP (<, <=, >, >=, ==, !=) relation to + * a regsiter with range [y.a, y.b] + * _in *num_t* domain_ + */ +static bool range_canbe_op(enum num_t t, struct range x, struct range y, enum op op) +{ +#define range_canbe(T) do { \ + switch (op) { \ + case OP_LT: return (T)x.a < (T)y.b; \ + case OP_LE: return (T)x.a <= (T)y.b; \ + case OP_GT: return (T)x.b > (T)y.a; \ + case OP_GE: return (T)x.b >= (T)y.a; \ + case OP_EQ: return (T)max_t(t, x.a, y.a) <= (T)min_t(t, x.b, y.b); \ + case OP_NE: return !((T)x.a == (T)x.b && (T)y.a == (T)y.b && (T)x.a == (T)y.a); \ + default: printf("range_canbe op %d\n", op); exit(1); \ + } \ +} while (0) + + switch (t) { + case U64: { range_canbe(u64); } + case U32: { range_canbe(u32); } + case S64: { range_canbe(s64); } + case S32: { range_canbe(s32); } + default: printf("range_canbe!\n"); exit(1); + } +#undef range_canbe +} + +/* Does register with range [x.a, x.b] *ALWAYS* satisfy + * OP (<, <=, >, >=, ==, !=) relation to + * a regsiter with range [y.a, y.b] + * _in *num_t* domain_ + */ +static bool range_always_op(enum num_t t, struct range x, struct range y, enum op op) +{ + /* always op <=> ! canbe complement(op) */ + return !range_canbe_op(t, x, y, complement_op(op)); +} + +/* Does register with range [x.a, x.b] *NEVER* satisfy + * OP (<, <=, >, >=, ==, !=) relation to + * a regsiter with range [y.a, y.b] + * _in *num_t* domain_ + */ +static bool range_never_op(enum num_t t, struct range x, struct range y, enum op op) +{ + return !range_canbe_op(t, x, y, op); +} + +/* similar to verifier's is_branch_taken(): + * 1 - always taken; + * 0 - never taken, + * -1 - unsure. + */ +static int range_branch_taken_op(enum num_t t, struct range x, struct range y, enum op op) +{ + if (range_always_op(t, x, y, op)) + return 1; + if (range_never_op(t, x, y, op)) + return 0; + return -1; +} + +/* What would be the new estimates for register x and y ranges assuming truthful + * OP comparison between them. I.e., (x OP y == true) => x <- newx, y <- newy. + * + * We assume "interesting" cases where ranges overlap. Cases where it's + * obvious that (x OP y) is either always true or false should be filtered with + * range_never and range_always checks. + */ +static void range_cond(enum num_t t, struct range x, struct range y, + enum op op, struct range *newx, struct range *newy) +{ + if (!range_canbe_op(t, x, y, op)) { + /* nothing to adjust, can't happen, return original values */ + *newx = x; + *newy = y; + return; + } + switch (op) { + case OP_LT: + *newx = range(t, x.a, min_t(t, x.b, y.b - 1)); + *newy = range(t, max_t(t, x.a + 1, y.a), y.b); + break; + case OP_LE: + *newx = range(t, x.a, min_t(t, x.b, y.b)); + *newy = range(t, max_t(t, x.a, y.a), y.b); + break; + case OP_GT: + *newx = range(t, max_t(t, x.a, y.a + 1), x.b); + *newy = range(t, y.a, min_t(t, x.b - 1, y.b)); + break; + case OP_GE: + *newx = range(t, max_t(t, x.a, y.a), x.b); + *newy = range(t, y.a, min_t(t, x.b, y.b)); + break; + case OP_EQ: + *newx = range(t, max_t(t, x.a, y.a), min_t(t, x.b, y.b)); + *newy = range(t, max_t(t, x.a, y.a), min_t(t, x.b, y.b)); + break; + case OP_NE: + /* below logic is supported by the verifier now */ + if (x.a == x.b && x.a == y.a) { + /* X is a constant matching left side of Y */ + *newx = range(t, x.a, x.b); + *newy = range(t, y.a + 1, y.b); + } else if (x.a == x.b && x.b == y.b) { + /* X is a constant matching rigth side of Y */ + *newx = range(t, x.a, x.b); + *newy = range(t, y.a, y.b - 1); + } else if (y.a == y.b && x.a == y.a) { + /* Y is a constant matching left side of X */ + *newx = range(t, x.a + 1, x.b); + *newy = range(t, y.a, y.b); + } else if (y.a == y.b && x.b == y.b) { + /* Y is a constant matching rigth side of X */ + *newx = range(t, x.a, x.b - 1); + *newy = range(t, y.a, y.b); + } else { + /* generic case, can't derive more information */ + *newx = range(t, x.a, x.b); + *newy = range(t, y.a, y.b); + } + + break; + default: + break; + } +} + +/* ======================= + * REGISTER STATE HANDLING + * ======================= + */ +struct reg_state { + struct range r[4]; /* indexed by enum num_t: U64, U32, S64, S32 */ + bool valid; +}; + +static void print_reg_state(struct reg_state *r, const char *sfx) +{ + DEFINE_STRBUF(sb, 512); + enum num_t t; + int cnt = 0; + + if (!r->valid) { + printf("<not found>%s", sfx); + return; + } + + snappendf(sb, "scalar("); + for (t = first_t; t <= last_t; t++) { + snappendf(sb, "%s%s=", cnt++ ? "," : "", t_str(t)); + snprintf_range(t, sb, r->r[t]); + } + snappendf(sb, ")"); + + printf("%s%s", sb->buf, sfx); +} + +static void print_refinement(enum num_t s_t, struct range src, + enum num_t d_t, struct range old, struct range new, + const char *ctx) +{ + printf("REFINING (%s) (%s)SRC=", ctx, t_str(s_t)); + print_range(s_t, src, ""); + printf(" (%s)DST_OLD=", t_str(d_t)); + print_range(d_t, old, ""); + printf(" (%s)DST_NEW=", t_str(d_t)); + print_range(d_t, new, "\n"); +} + +static void reg_state_refine(struct reg_state *r, enum num_t t, struct range x, const char *ctx) +{ + enum num_t d_t, s_t; + struct range old; + bool keep_going = false; + +again: + /* try to derive new knowledge from just learned range x of type t */ + for (d_t = first_t; d_t <= last_t; d_t++) { + old = r->r[d_t]; + r->r[d_t] = range_refine(d_t, r->r[d_t], t, x); + if (!range_eq(r->r[d_t], old)) { + keep_going = true; + if (env.verbosity >= VERBOSE_VERY) + print_refinement(t, x, d_t, old, r->r[d_t], ctx); + } + } + + /* now see if we can derive anything new from updated reg_state's ranges */ + for (s_t = first_t; s_t <= last_t; s_t++) { + for (d_t = first_t; d_t <= last_t; d_t++) { + old = r->r[d_t]; + r->r[d_t] = range_refine(d_t, r->r[d_t], s_t, r->r[s_t]); + if (!range_eq(r->r[d_t], old)) { + keep_going = true; + if (env.verbosity >= VERBOSE_VERY) + print_refinement(s_t, r->r[s_t], d_t, old, r->r[d_t], ctx); + } + } + } + + /* keep refining until we converge */ + if (keep_going) { + keep_going = false; + goto again; + } +} + +static void reg_state_set_const(struct reg_state *rs, enum num_t t, u64 val) +{ + enum num_t tt; + + rs->valid = true; + for (tt = first_t; tt <= last_t; tt++) + rs->r[tt] = tt == t ? range(t, val, val) : unkn[tt]; + + reg_state_refine(rs, t, rs->r[t], "CONST"); +} + +static void reg_state_cond(enum num_t t, struct reg_state *x, struct reg_state *y, enum op op, + struct reg_state *newx, struct reg_state *newy, const char *ctx) +{ + char buf[32]; + enum num_t ts[2]; + struct reg_state xx = *x, yy = *y; + int i, t_cnt; + struct range z1, z2; + + if (op == OP_EQ || op == OP_NE) { + /* OP_EQ and OP_NE are sign-agnostic, so we need to process + * both signed and unsigned domains at the same time + */ + ts[0] = t_unsigned(t); + ts[1] = t_signed(t); + t_cnt = 2; + } else { + ts[0] = t; + t_cnt = 1; + } + + for (i = 0; i < t_cnt; i++) { + t = ts[i]; + z1 = x->r[t]; + z2 = y->r[t]; + + range_cond(t, z1, z2, op, &z1, &z2); + + if (newx) { + snprintf(buf, sizeof(buf), "%s R1", ctx); + reg_state_refine(&xx, t, z1, buf); + } + if (newy) { + snprintf(buf, sizeof(buf), "%s R2", ctx); + reg_state_refine(&yy, t, z2, buf); + } + } + + if (newx) + *newx = xx; + if (newy) + *newy = yy; +} + +static int reg_state_branch_taken_op(enum num_t t, struct reg_state *x, struct reg_state *y, + enum op op) +{ + if (op == OP_EQ || op == OP_NE) { + /* OP_EQ and OP_NE are sign-agnostic */ + enum num_t tu = t_unsigned(t); + enum num_t ts = t_signed(t); + int br_u, br_s, br; + + br_u = range_branch_taken_op(tu, x->r[tu], y->r[tu], op); + br_s = range_branch_taken_op(ts, x->r[ts], y->r[ts], op); + + if (br_u >= 0 && br_s >= 0 && br_u != br_s) + ASSERT_FALSE(true, "branch taken inconsistency!\n"); + + /* if 64-bit ranges are indecisive, use 32-bit subranges to + * eliminate always/never taken branches, if possible + */ + if (br_u == -1 && (t == U64 || t == S64)) { + br = range_branch_taken_op(U32, x->r[U32], y->r[U32], op); + /* we can only reject for OP_EQ, never take branch + * based on lower 32 bits + */ + if (op == OP_EQ && br == 0) + return 0; + /* for OP_NEQ we can be conclusive only if lower 32 bits + * differ and thus inequality branch is always taken + */ + if (op == OP_NE && br == 1) + return 1; + + br = range_branch_taken_op(S32, x->r[S32], y->r[S32], op); + if (op == OP_EQ && br == 0) + return 0; + if (op == OP_NE && br == 1) + return 1; + } + + return br_u >= 0 ? br_u : br_s; + } + return range_branch_taken_op(t, x->r[t], y->r[t], op); +} + +/* ===================================== + * BPF PROGS GENERATION AND VERIFICATION + * ===================================== + */ +struct case_spec { + /* whether to init full register (r1) or sub-register (w1) */ + bool init_subregs; + /* whether to establish initial value range on full register (r1) or + * sub-register (w1) + */ + bool setup_subregs; + /* whether to establish initial value range using signed or unsigned + * comparisons (i.e., initialize umin/umax or smin/smax directly) + */ + bool setup_signed; + /* whether to perform comparison on full registers or sub-registers */ + bool compare_subregs; + /* whether to perform comparison using signed or unsigned operations */ + bool compare_signed; +}; + +/* Generate test BPF program based on provided test ranges, operation, and + * specifications about register bitness and signedness. + */ +static int load_range_cmp_prog(struct range x, struct range y, enum op op, + int branch_taken, struct case_spec spec, + char *log_buf, size_t log_sz, + int *false_pos, int *true_pos) +{ +#define emit(insn) ({ \ + struct bpf_insn __insns[] = { insn }; \ + int __i; \ + for (__i = 0; __i < ARRAY_SIZE(__insns); __i++) \ + insns[cur_pos + __i] = __insns[__i]; \ + cur_pos += __i; \ +}) +#define JMP_TO(target) (target - cur_pos - 1) + int cur_pos = 0, exit_pos, fd, op_code; + struct bpf_insn insns[64]; + LIBBPF_OPTS(bpf_prog_load_opts, opts, + .log_level = 2, + .log_buf = log_buf, + .log_size = log_sz, + .prog_flags = testing_prog_flags(), + ); + + /* ; skip exit block below + * goto +2; + */ + emit(BPF_JMP_A(2)); + exit_pos = cur_pos; + /* ; exit block for all the preparatory conditionals + * out: + * r0 = 0; + * exit; + */ + emit(BPF_MOV64_IMM(BPF_REG_0, 0)); + emit(BPF_EXIT_INSN()); + /* + * ; assign r6/w6 and r7/w7 unpredictable u64/u32 value + * call bpf_get_current_pid_tgid; + * r6 = r0; | w6 = w0; + * call bpf_get_current_pid_tgid; + * r7 = r0; | w7 = w0; + */ + emit(BPF_EMIT_CALL(BPF_FUNC_get_current_pid_tgid)); + if (spec.init_subregs) + emit(BPF_MOV32_REG(BPF_REG_6, BPF_REG_0)); + else + emit(BPF_MOV64_REG(BPF_REG_6, BPF_REG_0)); + emit(BPF_EMIT_CALL(BPF_FUNC_get_current_pid_tgid)); + if (spec.init_subregs) + emit(BPF_MOV32_REG(BPF_REG_7, BPF_REG_0)); + else + emit(BPF_MOV64_REG(BPF_REG_7, BPF_REG_0)); + /* ; setup initial r6/w6 possible value range ([x.a, x.b]) + * r1 = %[x.a] ll; | w1 = %[x.a]; + * r2 = %[x.b] ll; | w2 = %[x.b]; + * if r6 < r1 goto out; | if w6 < w1 goto out; + * if r6 > r2 goto out; | if w6 > w2 goto out; + */ + if (spec.setup_subregs) { + emit(BPF_MOV32_IMM(BPF_REG_1, (s32)x.a)); + emit(BPF_MOV32_IMM(BPF_REG_2, (s32)x.b)); + emit(BPF_JMP32_REG(spec.setup_signed ? BPF_JSLT : BPF_JLT, + BPF_REG_6, BPF_REG_1, JMP_TO(exit_pos))); + emit(BPF_JMP32_REG(spec.setup_signed ? BPF_JSGT : BPF_JGT, + BPF_REG_6, BPF_REG_2, JMP_TO(exit_pos))); + } else { + emit(BPF_LD_IMM64(BPF_REG_1, x.a)); + emit(BPF_LD_IMM64(BPF_REG_2, x.b)); + emit(BPF_JMP_REG(spec.setup_signed ? BPF_JSLT : BPF_JLT, + BPF_REG_6, BPF_REG_1, JMP_TO(exit_pos))); + emit(BPF_JMP_REG(spec.setup_signed ? BPF_JSGT : BPF_JGT, + BPF_REG_6, BPF_REG_2, JMP_TO(exit_pos))); + } + /* ; setup initial r7/w7 possible value range ([y.a, y.b]) + * r1 = %[y.a] ll; | w1 = %[y.a]; + * r2 = %[y.b] ll; | w2 = %[y.b]; + * if r7 < r1 goto out; | if w7 < w1 goto out; + * if r7 > r2 goto out; | if w7 > w2 goto out; + */ + if (spec.setup_subregs) { + emit(BPF_MOV32_IMM(BPF_REG_1, (s32)y.a)); + emit(BPF_MOV32_IMM(BPF_REG_2, (s32)y.b)); + emit(BPF_JMP32_REG(spec.setup_signed ? BPF_JSLT : BPF_JLT, + BPF_REG_7, BPF_REG_1, JMP_TO(exit_pos))); + emit(BPF_JMP32_REG(spec.setup_signed ? BPF_JSGT : BPF_JGT, + BPF_REG_7, BPF_REG_2, JMP_TO(exit_pos))); + } else { + emit(BPF_LD_IMM64(BPF_REG_1, y.a)); + emit(BPF_LD_IMM64(BPF_REG_2, y.b)); + emit(BPF_JMP_REG(spec.setup_signed ? BPF_JSLT : BPF_JLT, + BPF_REG_7, BPF_REG_1, JMP_TO(exit_pos))); + emit(BPF_JMP_REG(spec.setup_signed ? BPF_JSGT : BPF_JGT, + BPF_REG_7, BPF_REG_2, JMP_TO(exit_pos))); + } + /* ; range test instruction + * if r6 <op> r7 goto +3; | if w6 <op> w7 goto +3; + */ + switch (op) { + case OP_LT: op_code = spec.compare_signed ? BPF_JSLT : BPF_JLT; break; + case OP_LE: op_code = spec.compare_signed ? BPF_JSLE : BPF_JLE; break; + case OP_GT: op_code = spec.compare_signed ? BPF_JSGT : BPF_JGT; break; + case OP_GE: op_code = spec.compare_signed ? BPF_JSGE : BPF_JGE; break; + case OP_EQ: op_code = BPF_JEQ; break; + case OP_NE: op_code = BPF_JNE; break; + default: + printf("unrecognized op %d\n", op); + return -ENOTSUP; + } + /* ; BEFORE conditional, r0/w0 = {r6/w6,r7/w7} is to extract verifier state reliably + * ; this is used for debugging, as verifier doesn't always print + * ; registers states as of condition jump instruction (e.g., when + * ; precision marking happens) + * r0 = r6; | w0 = w6; + * r0 = r7; | w0 = w7; + */ + if (spec.compare_subregs) { + emit(BPF_MOV32_REG(BPF_REG_0, BPF_REG_6)); + emit(BPF_MOV32_REG(BPF_REG_0, BPF_REG_7)); + } else { + emit(BPF_MOV64_REG(BPF_REG_0, BPF_REG_6)); + emit(BPF_MOV64_REG(BPF_REG_0, BPF_REG_7)); + } + if (spec.compare_subregs) + emit(BPF_JMP32_REG(op_code, BPF_REG_6, BPF_REG_7, 3)); + else + emit(BPF_JMP_REG(op_code, BPF_REG_6, BPF_REG_7, 3)); + /* ; FALSE branch, r0/w0 = {r6/w6,r7/w7} is to extract verifier state reliably + * r0 = r6; | w0 = w6; + * r0 = r7; | w0 = w7; + * exit; + */ + *false_pos = cur_pos; + if (spec.compare_subregs) { + emit(BPF_MOV32_REG(BPF_REG_0, BPF_REG_6)); + emit(BPF_MOV32_REG(BPF_REG_0, BPF_REG_7)); + } else { + emit(BPF_MOV64_REG(BPF_REG_0, BPF_REG_6)); + emit(BPF_MOV64_REG(BPF_REG_0, BPF_REG_7)); + } + if (branch_taken == 1) /* false branch is never taken */ + emit(BPF_EMIT_CALL(0xDEAD)); /* poison this branch */ + else + emit(BPF_EXIT_INSN()); + /* ; TRUE branch, r0/w0 = {r6/w6,r7/w7} is to extract verifier state reliably + * r0 = r6; | w0 = w6; + * r0 = r7; | w0 = w7; + * exit; + */ + *true_pos = cur_pos; + if (spec.compare_subregs) { + emit(BPF_MOV32_REG(BPF_REG_0, BPF_REG_6)); + emit(BPF_MOV32_REG(BPF_REG_0, BPF_REG_7)); + } else { + emit(BPF_MOV64_REG(BPF_REG_0, BPF_REG_6)); + emit(BPF_MOV64_REG(BPF_REG_0, BPF_REG_7)); + } + if (branch_taken == 0) /* true branch is never taken */ + emit(BPF_EMIT_CALL(0xDEAD)); /* poison this branch */ + emit(BPF_EXIT_INSN()); /* last instruction has to be exit */ + + fd = bpf_prog_load(BPF_PROG_TYPE_RAW_TRACEPOINT, "reg_bounds_test", + "GPL", insns, cur_pos, &opts); + if (fd < 0) + return fd; + + close(fd); + return 0; +#undef emit +#undef JMP_TO +} + +#define str_has_pfx(str, pfx) (strncmp(str, pfx, strlen(pfx)) == 0) + +/* Parse register state from verifier log. + * `s` should point to the start of "Rx = ..." substring in the verifier log. + */ +static int parse_reg_state(const char *s, struct reg_state *reg) +{ + /* There are two generic forms for SCALAR register: + * - known constant: R6_rwD=P%lld + * - range: R6_rwD=scalar(id=1,...), where "..." is a comma-separated + * list of optional range specifiers: + * - umin=%llu, if missing, assumed 0; + * - umax=%llu, if missing, assumed U64_MAX; + * - smin=%lld, if missing, assumed S64_MIN; + * - smax=%lld, if missing, assummed S64_MAX; + * - umin32=%d, if missing, assumed 0; + * - umax32=%d, if missing, assumed U32_MAX; + * - smin32=%d, if missing, assumed S32_MIN; + * - smax32=%d, if missing, assummed S32_MAX; + * - var_off=(%#llx; %#llx), tnum part, we don't care about it. + * + * If some of the values are equal, they will be grouped (but min/max + * are not mixed together, and similarly negative values are not + * grouped with non-negative ones). E.g.: + * + * R6_w=Pscalar(smin=smin32=0, smax=umax=umax32=1000) + * + * _rwD part is optional (and any of the letters can be missing). + * P (precision mark) is optional as well. + * + * Anything inside scalar() is optional, including id, of course. + */ + struct { + const char *pfx; + u64 *dst, def; + bool is_32, is_set; + } *f, fields[8] = { + {"smin=", ®->r[S64].a, S64_MIN}, + {"smax=", ®->r[S64].b, S64_MAX}, + {"umin=", ®->r[U64].a, 0}, + {"umax=", ®->r[U64].b, U64_MAX}, + {"smin32=", ®->r[S32].a, (u32)S32_MIN, true}, + {"smax32=", ®->r[S32].b, (u32)S32_MAX, true}, + {"umin32=", ®->r[U32].a, 0, true}, + {"umax32=", ®->r[U32].b, U32_MAX, true}, + }; + const char *p; + int i; + + p = strchr(s, '='); + if (!p) + return -EINVAL; + p++; + if (*p == 'P') + p++; + + if (!str_has_pfx(p, "scalar(")) { + long long sval; + enum num_t t; + + if (p[0] == '0' && p[1] == 'x') { + if (sscanf(p, "%llx", &sval) != 1) + return -EINVAL; + } else { + if (sscanf(p, "%lld", &sval) != 1) + return -EINVAL; + } + + reg->valid = true; + for (t = first_t; t <= last_t; t++) { + reg->r[t] = range(t, sval, sval); + } + return 0; + } + + p += sizeof("scalar"); + while (p) { + int midxs[ARRAY_SIZE(fields)], mcnt = 0; + u64 val; + + for (i = 0; i < ARRAY_SIZE(fields); i++) { + f = &fields[i]; + if (!str_has_pfx(p, f->pfx)) + continue; + midxs[mcnt++] = i; + p += strlen(f->pfx); + } + + if (mcnt) { + /* populate all matched fields */ + if (p[0] == '0' && p[1] == 'x') { + if (sscanf(p, "%llx", &val) != 1) + return -EINVAL; + } else { + if (sscanf(p, "%lld", &val) != 1) + return -EINVAL; + } + + for (i = 0; i < mcnt; i++) { + f = &fields[midxs[i]]; + f->is_set = true; + *f->dst = f->is_32 ? (u64)(u32)val : val; + } + } else if (str_has_pfx(p, "var_off")) { + /* skip "var_off=(0x0; 0x3f)" part completely */ + p = strchr(p, ')'); + if (!p) + return -EINVAL; + p++; + } + + p = strpbrk(p, ",)"); + if (*p == ')') + break; + if (p) + p++; + } + + reg->valid = true; + + for (i = 0; i < ARRAY_SIZE(fields); i++) { + f = &fields[i]; + if (!f->is_set) + *f->dst = f->def; + } + + return 0; +} + + +/* Parse all register states (TRUE/FALSE branches and DST/SRC registers) + * out of the verifier log for a corresponding test case BPF program. + */ +static int parse_range_cmp_log(const char *log_buf, struct case_spec spec, + int false_pos, int true_pos, + struct reg_state *false1_reg, struct reg_state *false2_reg, + struct reg_state *true1_reg, struct reg_state *true2_reg) +{ + struct { + int insn_idx; + int reg_idx; + const char *reg_upper; + struct reg_state *state; + } specs[] = { + {false_pos, 6, "R6=", false1_reg}, + {false_pos + 1, 7, "R7=", false2_reg}, + {true_pos, 6, "R6=", true1_reg}, + {true_pos + 1, 7, "R7=", true2_reg}, + }; + char buf[32]; + const char *p = log_buf, *q; + int i, err; + + for (i = 0; i < 4; i++) { + sprintf(buf, "%d: (%s) %s = %s%d", specs[i].insn_idx, + spec.compare_subregs ? "bc" : "bf", + spec.compare_subregs ? "w0" : "r0", + spec.compare_subregs ? "w" : "r", specs[i].reg_idx); + + q = strstr(p, buf); + if (!q) { + *specs[i].state = (struct reg_state){.valid = false}; + continue; + } + p = strstr(q, specs[i].reg_upper); + if (!p) + return -EINVAL; + err = parse_reg_state(p, specs[i].state); + if (err) + return -EINVAL; + } + return 0; +} + +/* Validate ranges match, and print details if they don't */ +static bool assert_range_eq(enum num_t t, struct range x, struct range y, + const char *ctx1, const char *ctx2) +{ + DEFINE_STRBUF(sb, 512); + + if (range_eq(x, y)) + return true; + + snappendf(sb, "MISMATCH %s.%s: ", ctx1, ctx2); + snprintf_range(t, sb, x); + snappendf(sb, " != "); + snprintf_range(t, sb, y); + + printf("%s\n", sb->buf); + + return false; +} + +/* Validate that register states match, and print details if they don't */ +static bool assert_reg_state_eq(struct reg_state *r, struct reg_state *e, const char *ctx) +{ + bool ok = true; + enum num_t t; + + if (r->valid != e->valid) { + printf("MISMATCH %s: actual %s != expected %s\n", ctx, + r->valid ? "<valid>" : "<invalid>", + e->valid ? "<valid>" : "<invalid>"); + return false; + } + + if (!r->valid) + return true; + + for (t = first_t; t <= last_t; t++) { + if (!assert_range_eq(t, r->r[t], e->r[t], ctx, t_str(t))) + ok = false; + } + + return ok; +} + +/* Printf verifier log, filtering out irrelevant noise */ +static void print_verifier_log(const char *buf) +{ + const char *p; + + while (buf[0]) { + p = strchrnul(buf, '\n'); + + /* filter out irrelevant precision backtracking logs */ + if (str_has_pfx(buf, "mark_precise: ")) + goto skip_line; + + printf("%.*s\n", (int)(p - buf), buf); + +skip_line: + buf = *p == '\0' ? p : p + 1; + } +} + +/* Simulate provided test case purely with our own range-based logic. + * This is done to set up expectations for verifier's branch_taken logic and + * verifier's register states in the verifier log. + */ +static void sim_case(enum num_t init_t, enum num_t cond_t, + struct range x, struct range y, enum op op, + struct reg_state *fr1, struct reg_state *fr2, + struct reg_state *tr1, struct reg_state *tr2, + int *branch_taken) +{ + const u64 A = x.a; + const u64 B = x.b; + const u64 C = y.a; + const u64 D = y.b; + struct reg_state rc; + enum op rev_op = complement_op(op); + enum num_t t; + + fr1->valid = fr2->valid = true; + tr1->valid = tr2->valid = true; + for (t = first_t; t <= last_t; t++) { + /* if we are initializing using 32-bit subregisters, + * full registers get upper 32 bits zeroed automatically + */ + struct range z = t_is_32(init_t) ? unkn_subreg(t) : unkn[t]; + + fr1->r[t] = fr2->r[t] = tr1->r[t] = tr2->r[t] = z; + } + + /* step 1: r1 >= A, r2 >= C */ + reg_state_set_const(&rc, init_t, A); + reg_state_cond(init_t, fr1, &rc, OP_GE, fr1, NULL, "r1>=A"); + reg_state_set_const(&rc, init_t, C); + reg_state_cond(init_t, fr2, &rc, OP_GE, fr2, NULL, "r2>=C"); + *tr1 = *fr1; + *tr2 = *fr2; + if (env.verbosity >= VERBOSE_VERY) { + printf("STEP1 (%s) R1: ", t_str(init_t)); print_reg_state(fr1, "\n"); + printf("STEP1 (%s) R2: ", t_str(init_t)); print_reg_state(fr2, "\n"); + } + + /* step 2: r1 <= B, r2 <= D */ + reg_state_set_const(&rc, init_t, B); + reg_state_cond(init_t, fr1, &rc, OP_LE, fr1, NULL, "r1<=B"); + reg_state_set_const(&rc, init_t, D); + reg_state_cond(init_t, fr2, &rc, OP_LE, fr2, NULL, "r2<=D"); + *tr1 = *fr1; + *tr2 = *fr2; + if (env.verbosity >= VERBOSE_VERY) { + printf("STEP2 (%s) R1: ", t_str(init_t)); print_reg_state(fr1, "\n"); + printf("STEP2 (%s) R2: ", t_str(init_t)); print_reg_state(fr2, "\n"); + } + + /* step 3: r1 <op> r2 */ + *branch_taken = reg_state_branch_taken_op(cond_t, fr1, fr2, op); + fr1->valid = fr2->valid = false; + tr1->valid = tr2->valid = false; + if (*branch_taken != 1) { /* FALSE is possible */ + fr1->valid = fr2->valid = true; + reg_state_cond(cond_t, fr1, fr2, rev_op, fr1, fr2, "FALSE"); + } + if (*branch_taken != 0) { /* TRUE is possible */ + tr1->valid = tr2->valid = true; + reg_state_cond(cond_t, tr1, tr2, op, tr1, tr2, "TRUE"); + } + if (env.verbosity >= VERBOSE_VERY) { + printf("STEP3 (%s) FALSE R1:", t_str(cond_t)); print_reg_state(fr1, "\n"); + printf("STEP3 (%s) FALSE R2:", t_str(cond_t)); print_reg_state(fr2, "\n"); + printf("STEP3 (%s) TRUE R1:", t_str(cond_t)); print_reg_state(tr1, "\n"); + printf("STEP3 (%s) TRUE R2:", t_str(cond_t)); print_reg_state(tr2, "\n"); + } +} + +/* =============================== + * HIGH-LEVEL TEST CASE VALIDATION + * =============================== + */ +static u32 upper_seeds[] = { + 0, + 1, + U32_MAX, + U32_MAX - 1, + S32_MAX, + (u32)S32_MIN, +}; + +static u32 lower_seeds[] = { + 0, + 1, + 2, (u32)-2, + 255, (u32)-255, + UINT_MAX, + UINT_MAX - 1, + INT_MAX, + (u32)INT_MIN, +}; + +struct ctx { + int val_cnt, subval_cnt, range_cnt, subrange_cnt; + u64 uvals[ARRAY_SIZE(upper_seeds) * ARRAY_SIZE(lower_seeds)]; + s64 svals[ARRAY_SIZE(upper_seeds) * ARRAY_SIZE(lower_seeds)]; + u32 usubvals[ARRAY_SIZE(lower_seeds)]; + s32 ssubvals[ARRAY_SIZE(lower_seeds)]; + struct range *uranges, *sranges; + struct range *usubranges, *ssubranges; + int max_failure_cnt, cur_failure_cnt; + int total_case_cnt, case_cnt; + int rand_case_cnt; + unsigned rand_seed; + __u64 start_ns; + char progress_ctx[64]; +}; + +static void cleanup_ctx(struct ctx *ctx) +{ + free(ctx->uranges); + free(ctx->sranges); + free(ctx->usubranges); + free(ctx->ssubranges); +} + +struct subtest_case { + enum num_t init_t; + enum num_t cond_t; + struct range x; + struct range y; + enum op op; +}; + +static void subtest_case_str(struct strbuf *sb, struct subtest_case *t, bool use_op) +{ + snappendf(sb, "(%s)", t_str(t->init_t)); + snprintf_range(t->init_t, sb, t->x); + snappendf(sb, " (%s)%s ", t_str(t->cond_t), use_op ? op_str(t->op) : "<op>"); + snprintf_range(t->init_t, sb, t->y); +} + +/* Generate and validate test case based on specific combination of setup + * register ranges (including their expected num_t domain), and conditional + * operation to perform (including num_t domain in which it has to be + * performed) + */ +static int verify_case_op(enum num_t init_t, enum num_t cond_t, + struct range x, struct range y, enum op op) +{ + char log_buf[256 * 1024]; + size_t log_sz = sizeof(log_buf); + int err, false_pos = 0, true_pos = 0, branch_taken; + struct reg_state fr1, fr2, tr1, tr2; + struct reg_state fe1, fe2, te1, te2; + bool failed = false; + struct case_spec spec = { + .init_subregs = (init_t == U32 || init_t == S32), + .setup_subregs = (init_t == U32 || init_t == S32), + .setup_signed = (init_t == S64 || init_t == S32), + .compare_subregs = (cond_t == U32 || cond_t == S32), + .compare_signed = (cond_t == S64 || cond_t == S32), + }; + + log_buf[0] = '\0'; + + sim_case(init_t, cond_t, x, y, op, &fe1, &fe2, &te1, &te2, &branch_taken); + + err = load_range_cmp_prog(x, y, op, branch_taken, spec, + log_buf, log_sz, &false_pos, &true_pos); + if (err) { + ASSERT_OK(err, "load_range_cmp_prog"); + failed = true; + } + + err = parse_range_cmp_log(log_buf, spec, false_pos, true_pos, + &fr1, &fr2, &tr1, &tr2); + if (err) { + ASSERT_OK(err, "parse_range_cmp_log"); + failed = true; + } + + if (!assert_reg_state_eq(&fr1, &fe1, "false_reg1") || + !assert_reg_state_eq(&fr2, &fe2, "false_reg2") || + !assert_reg_state_eq(&tr1, &te1, "true_reg1") || + !assert_reg_state_eq(&tr2, &te2, "true_reg2")) { + failed = true; + } + + if (failed || env.verbosity >= VERBOSE_NORMAL) { + if (failed || env.verbosity >= VERBOSE_VERY) { + printf("VERIFIER LOG:\n========================\n"); + print_verifier_log(log_buf); + printf("=====================\n"); + } + printf("ACTUAL FALSE1: "); print_reg_state(&fr1, "\n"); + printf("EXPECTED FALSE1: "); print_reg_state(&fe1, "\n"); + printf("ACTUAL FALSE2: "); print_reg_state(&fr2, "\n"); + printf("EXPECTED FALSE2: "); print_reg_state(&fe2, "\n"); + printf("ACTUAL TRUE1: "); print_reg_state(&tr1, "\n"); + printf("EXPECTED TRUE1: "); print_reg_state(&te1, "\n"); + printf("ACTUAL TRUE2: "); print_reg_state(&tr2, "\n"); + printf("EXPECTED TRUE2: "); print_reg_state(&te2, "\n"); + + return failed ? -EINVAL : 0; + } + + return 0; +} + +/* Given setup ranges and number types, go over all supported operations, + * generating individual subtest for each allowed combination + */ +static int verify_case_opt(struct ctx *ctx, enum num_t init_t, enum num_t cond_t, + struct range x, struct range y, bool is_subtest) +{ + DEFINE_STRBUF(sb, 256); + int err; + struct subtest_case sub = { + .init_t = init_t, + .cond_t = cond_t, + .x = x, + .y = y, + }; + + sb->pos = 0; /* reset position in strbuf */ + subtest_case_str(sb, &sub, false /* ignore op */); + if (is_subtest && !test__start_subtest(sb->buf)) + return 0; + + for (sub.op = first_op; sub.op <= last_op; sub.op++) { + sb->pos = 0; /* reset position in strbuf */ + subtest_case_str(sb, &sub, true /* print op */); + + if (env.verbosity >= VERBOSE_NORMAL) /* this speeds up debugging */ + printf("TEST CASE: %s\n", sb->buf); + + err = verify_case_op(init_t, cond_t, x, y, sub.op); + if (err || env.verbosity >= VERBOSE_NORMAL) + ASSERT_OK(err, sb->buf); + if (err) { + ctx->cur_failure_cnt++; + if (ctx->cur_failure_cnt > ctx->max_failure_cnt) + return err; + return 0; /* keep testing other cases */ + } + ctx->case_cnt++; + if ((ctx->case_cnt % 10000) == 0) { + double progress = (ctx->case_cnt + 0.0) / ctx->total_case_cnt; + u64 elapsed_ns = get_time_ns() - ctx->start_ns; + double remain_ns = elapsed_ns / progress * (1 - progress); + + fprintf(env.stderr, "PROGRESS (%s): %d/%d (%.2lf%%), " + "elapsed %llu mins (%.2lf hrs), " + "ETA %.0lf mins (%.2lf hrs)\n", + ctx->progress_ctx, + ctx->case_cnt, ctx->total_case_cnt, 100.0 * progress, + elapsed_ns / 1000000000 / 60, + elapsed_ns / 1000000000.0 / 3600, + remain_ns / 1000000000.0 / 60, + remain_ns / 1000000000.0 / 3600); + } + } + + return 0; +} + +static int verify_case(struct ctx *ctx, enum num_t init_t, enum num_t cond_t, + struct range x, struct range y) +{ + return verify_case_opt(ctx, init_t, cond_t, x, y, true /* is_subtest */); +} + +/* ================================ + * GENERATED CASES FROM SEED VALUES + * ================================ + */ +static int u64_cmp(const void *p1, const void *p2) +{ + u64 x1 = *(const u64 *)p1, x2 = *(const u64 *)p2; + + return x1 != x2 ? (x1 < x2 ? -1 : 1) : 0; +} + +static int u32_cmp(const void *p1, const void *p2) +{ + u32 x1 = *(const u32 *)p1, x2 = *(const u32 *)p2; + + return x1 != x2 ? (x1 < x2 ? -1 : 1) : 0; +} + +static int s64_cmp(const void *p1, const void *p2) +{ + s64 x1 = *(const s64 *)p1, x2 = *(const s64 *)p2; + + return x1 != x2 ? (x1 < x2 ? -1 : 1) : 0; +} + +static int s32_cmp(const void *p1, const void *p2) +{ + s32 x1 = *(const s32 *)p1, x2 = *(const s32 *)p2; + + return x1 != x2 ? (x1 < x2 ? -1 : 1) : 0; +} + +/* Generate valid unique constants from seeds, both signed and unsigned */ +static void gen_vals(struct ctx *ctx) +{ + int i, j, cnt = 0; + + for (i = 0; i < ARRAY_SIZE(upper_seeds); i++) { + for (j = 0; j < ARRAY_SIZE(lower_seeds); j++) { + ctx->uvals[cnt++] = (((u64)upper_seeds[i]) << 32) | lower_seeds[j]; + } + } + + /* sort and compact uvals (i.e., it's `sort | uniq`) */ + qsort(ctx->uvals, cnt, sizeof(*ctx->uvals), u64_cmp); + for (i = 1, j = 0; i < cnt; i++) { + if (ctx->uvals[j] == ctx->uvals[i]) + continue; + j++; + ctx->uvals[j] = ctx->uvals[i]; + } + ctx->val_cnt = j + 1; + + /* we have exactly the same number of s64 values, they are just in + * a different order than u64s, so just sort them differently + */ + for (i = 0; i < ctx->val_cnt; i++) + ctx->svals[i] = ctx->uvals[i]; + qsort(ctx->svals, ctx->val_cnt, sizeof(*ctx->svals), s64_cmp); + + if (env.verbosity >= VERBOSE_SUPER) { + DEFINE_STRBUF(sb1, 256); + DEFINE_STRBUF(sb2, 256); + + for (i = 0; i < ctx->val_cnt; i++) { + sb1->pos = sb2->pos = 0; + snprintf_num(U64, sb1, ctx->uvals[i]); + snprintf_num(S64, sb2, ctx->svals[i]); + printf("SEED #%d: u64=%-20s s64=%-20s\n", i, sb1->buf, sb2->buf); + } + } + + /* 32-bit values are generated separately */ + cnt = 0; + for (i = 0; i < ARRAY_SIZE(lower_seeds); i++) { + ctx->usubvals[cnt++] = lower_seeds[i]; + } + + /* sort and compact usubvals (i.e., it's `sort | uniq`) */ + qsort(ctx->usubvals, cnt, sizeof(*ctx->usubvals), u32_cmp); + for (i = 1, j = 0; i < cnt; i++) { + if (ctx->usubvals[j] == ctx->usubvals[i]) + continue; + j++; + ctx->usubvals[j] = ctx->usubvals[i]; + } + ctx->subval_cnt = j + 1; + + for (i = 0; i < ctx->subval_cnt; i++) + ctx->ssubvals[i] = ctx->usubvals[i]; + qsort(ctx->ssubvals, ctx->subval_cnt, sizeof(*ctx->ssubvals), s32_cmp); + + if (env.verbosity >= VERBOSE_SUPER) { + DEFINE_STRBUF(sb1, 256); + DEFINE_STRBUF(sb2, 256); + + for (i = 0; i < ctx->subval_cnt; i++) { + sb1->pos = sb2->pos = 0; + snprintf_num(U32, sb1, ctx->usubvals[i]); + snprintf_num(S32, sb2, ctx->ssubvals[i]); + printf("SUBSEED #%d: u32=%-10s s32=%-10s\n", i, sb1->buf, sb2->buf); + } + } +} + +/* Generate valid ranges from upper/lower seeds */ +static int gen_ranges(struct ctx *ctx) +{ + int i, j, cnt = 0; + + for (i = 0; i < ctx->val_cnt; i++) { + for (j = i; j < ctx->val_cnt; j++) { + if (env.verbosity >= VERBOSE_SUPER) { + DEFINE_STRBUF(sb1, 256); + DEFINE_STRBUF(sb2, 256); + + sb1->pos = sb2->pos = 0; + snprintf_range(U64, sb1, range(U64, ctx->uvals[i], ctx->uvals[j])); + snprintf_range(S64, sb2, range(S64, ctx->svals[i], ctx->svals[j])); + printf("RANGE #%d: u64=%-40s s64=%-40s\n", cnt, sb1->buf, sb2->buf); + } + cnt++; + } + } + ctx->range_cnt = cnt; + + ctx->uranges = calloc(ctx->range_cnt, sizeof(*ctx->uranges)); + if (!ASSERT_OK_PTR(ctx->uranges, "uranges_calloc")) + return -EINVAL; + ctx->sranges = calloc(ctx->range_cnt, sizeof(*ctx->sranges)); + if (!ASSERT_OK_PTR(ctx->sranges, "sranges_calloc")) + return -EINVAL; + + cnt = 0; + for (i = 0; i < ctx->val_cnt; i++) { + for (j = i; j < ctx->val_cnt; j++) { + ctx->uranges[cnt] = range(U64, ctx->uvals[i], ctx->uvals[j]); + ctx->sranges[cnt] = range(S64, ctx->svals[i], ctx->svals[j]); + cnt++; + } + } + + cnt = 0; + for (i = 0; i < ctx->subval_cnt; i++) { + for (j = i; j < ctx->subval_cnt; j++) { + if (env.verbosity >= VERBOSE_SUPER) { + DEFINE_STRBUF(sb1, 256); + DEFINE_STRBUF(sb2, 256); + + sb1->pos = sb2->pos = 0; + snprintf_range(U32, sb1, range(U32, ctx->usubvals[i], ctx->usubvals[j])); + snprintf_range(S32, sb2, range(S32, ctx->ssubvals[i], ctx->ssubvals[j])); + printf("SUBRANGE #%d: u32=%-20s s32=%-20s\n", cnt, sb1->buf, sb2->buf); + } + cnt++; + } + } + ctx->subrange_cnt = cnt; + + ctx->usubranges = calloc(ctx->subrange_cnt, sizeof(*ctx->usubranges)); + if (!ASSERT_OK_PTR(ctx->usubranges, "usubranges_calloc")) + return -EINVAL; + ctx->ssubranges = calloc(ctx->subrange_cnt, sizeof(*ctx->ssubranges)); + if (!ASSERT_OK_PTR(ctx->ssubranges, "ssubranges_calloc")) + return -EINVAL; + + cnt = 0; + for (i = 0; i < ctx->subval_cnt; i++) { + for (j = i; j < ctx->subval_cnt; j++) { + ctx->usubranges[cnt] = range(U32, ctx->usubvals[i], ctx->usubvals[j]); + ctx->ssubranges[cnt] = range(S32, ctx->ssubvals[i], ctx->ssubvals[j]); + cnt++; + } + } + + return 0; +} + +static int parse_env_vars(struct ctx *ctx) +{ + const char *s; + + if ((s = getenv("REG_BOUNDS_MAX_FAILURE_CNT"))) { + errno = 0; + ctx->max_failure_cnt = strtol(s, NULL, 10); + if (errno || ctx->max_failure_cnt < 0) { + ASSERT_OK(-errno, "REG_BOUNDS_MAX_FAILURE_CNT"); + return -EINVAL; + } + } + + if ((s = getenv("REG_BOUNDS_RAND_CASE_CNT"))) { + errno = 0; + ctx->rand_case_cnt = strtol(s, NULL, 10); + if (errno || ctx->rand_case_cnt < 0) { + ASSERT_OK(-errno, "REG_BOUNDS_RAND_CASE_CNT"); + return -EINVAL; + } + } + + if ((s = getenv("REG_BOUNDS_RAND_SEED"))) { + errno = 0; + ctx->rand_seed = strtoul(s, NULL, 10); + if (errno) { + ASSERT_OK(-errno, "REG_BOUNDS_RAND_SEED"); + return -EINVAL; + } + } + + return 0; +} + +static int prepare_gen_tests(struct ctx *ctx) +{ + const char *s; + int err; + + if (!(s = getenv("SLOW_TESTS")) || strcmp(s, "1") != 0) { + test__skip(); + return -ENOTSUP; + } + + err = parse_env_vars(ctx); + if (err) + return err; + + gen_vals(ctx); + err = gen_ranges(ctx); + if (err) { + ASSERT_OK(err, "gen_ranges"); + return err; + } + + return 0; +} + +/* Go over generated constants and ranges and validate various supported + * combinations of them + */ +static void validate_gen_range_vs_const_64(enum num_t init_t, enum num_t cond_t) +{ + struct ctx ctx; + struct range rconst; + const struct range *ranges; + const u64 *vals; + int i, j; + + memset(&ctx, 0, sizeof(ctx)); + + if (prepare_gen_tests(&ctx)) + goto cleanup; + + ranges = init_t == U64 ? ctx.uranges : ctx.sranges; + vals = init_t == U64 ? ctx.uvals : (const u64 *)ctx.svals; + + ctx.total_case_cnt = (last_op - first_op + 1) * (2 * ctx.range_cnt * ctx.val_cnt); + ctx.start_ns = get_time_ns(); + snprintf(ctx.progress_ctx, sizeof(ctx.progress_ctx), + "RANGE x CONST, %s -> %s", + t_str(init_t), t_str(cond_t)); + + for (i = 0; i < ctx.val_cnt; i++) { + for (j = 0; j < ctx.range_cnt; j++) { + rconst = range(init_t, vals[i], vals[i]); + + /* (u64|s64)(<range> x <const>) */ + if (verify_case(&ctx, init_t, cond_t, ranges[j], rconst)) + goto cleanup; + /* (u64|s64)(<const> x <range>) */ + if (verify_case(&ctx, init_t, cond_t, rconst, ranges[j])) + goto cleanup; + } + } + +cleanup: + cleanup_ctx(&ctx); +} + +static void validate_gen_range_vs_const_32(enum num_t init_t, enum num_t cond_t) +{ + struct ctx ctx; + struct range rconst; + const struct range *ranges; + const u32 *vals; + int i, j; + + memset(&ctx, 0, sizeof(ctx)); + + if (prepare_gen_tests(&ctx)) + goto cleanup; + + ranges = init_t == U32 ? ctx.usubranges : ctx.ssubranges; + vals = init_t == U32 ? ctx.usubvals : (const u32 *)ctx.ssubvals; + + ctx.total_case_cnt = (last_op - first_op + 1) * (2 * ctx.subrange_cnt * ctx.subval_cnt); + ctx.start_ns = get_time_ns(); + snprintf(ctx.progress_ctx, sizeof(ctx.progress_ctx), + "RANGE x CONST, %s -> %s", + t_str(init_t), t_str(cond_t)); + + for (i = 0; i < ctx.subval_cnt; i++) { + for (j = 0; j < ctx.subrange_cnt; j++) { + rconst = range(init_t, vals[i], vals[i]); + + /* (u32|s32)(<range> x <const>) */ + if (verify_case(&ctx, init_t, cond_t, ranges[j], rconst)) + goto cleanup; + /* (u32|s32)(<const> x <range>) */ + if (verify_case(&ctx, init_t, cond_t, rconst, ranges[j])) + goto cleanup; + } + } + +cleanup: + cleanup_ctx(&ctx); +} + +static void validate_gen_range_vs_range(enum num_t init_t, enum num_t cond_t) +{ + struct ctx ctx; + const struct range *ranges; + int i, j, rcnt; + + memset(&ctx, 0, sizeof(ctx)); + + if (prepare_gen_tests(&ctx)) + goto cleanup; + + switch (init_t) + { + case U64: + ranges = ctx.uranges; + rcnt = ctx.range_cnt; + break; + case U32: + ranges = ctx.usubranges; + rcnt = ctx.subrange_cnt; + break; + case S64: + ranges = ctx.sranges; + rcnt = ctx.range_cnt; + break; + case S32: + ranges = ctx.ssubranges; + rcnt = ctx.subrange_cnt; + break; + default: + printf("validate_gen_range_vs_range!\n"); + exit(1); + } + + ctx.total_case_cnt = (last_op - first_op + 1) * (2 * rcnt * (rcnt + 1) / 2); + ctx.start_ns = get_time_ns(); + snprintf(ctx.progress_ctx, sizeof(ctx.progress_ctx), + "RANGE x RANGE, %s -> %s", + t_str(init_t), t_str(cond_t)); + + for (i = 0; i < rcnt; i++) { + for (j = i; j < rcnt; j++) { + /* (<range> x <range>) */ + if (verify_case(&ctx, init_t, cond_t, ranges[i], ranges[j])) + goto cleanup; + if (verify_case(&ctx, init_t, cond_t, ranges[j], ranges[i])) + goto cleanup; + } + } + +cleanup: + cleanup_ctx(&ctx); +} + +/* Go over thousands of test cases generated from initial seed values. + * Given this take a long time, guard this begind SLOW_TESTS=1 envvar. If + * envvar is not set, this test is skipped during test_progs testing. + * + * We split this up into smaller subsets based on initialization and + * conditiona numeric domains to get an easy parallelization with test_progs' + * -j argument. + */ + +/* RANGE x CONST, U64 initial range */ +void test_reg_bounds_gen_consts_u64_u64(void) { validate_gen_range_vs_const_64(U64, U64); } +void test_reg_bounds_gen_consts_u64_s64(void) { validate_gen_range_vs_const_64(U64, S64); } +void test_reg_bounds_gen_consts_u64_u32(void) { validate_gen_range_vs_const_64(U64, U32); } +void test_reg_bounds_gen_consts_u64_s32(void) { validate_gen_range_vs_const_64(U64, S32); } +/* RANGE x CONST, S64 initial range */ +void test_reg_bounds_gen_consts_s64_u64(void) { validate_gen_range_vs_const_64(S64, U64); } +void test_reg_bounds_gen_consts_s64_s64(void) { validate_gen_range_vs_const_64(S64, S64); } +void test_reg_bounds_gen_consts_s64_u32(void) { validate_gen_range_vs_const_64(S64, U32); } +void test_reg_bounds_gen_consts_s64_s32(void) { validate_gen_range_vs_const_64(S64, S32); } +/* RANGE x CONST, U32 initial range */ +void test_reg_bounds_gen_consts_u32_u64(void) { validate_gen_range_vs_const_32(U32, U64); } +void test_reg_bounds_gen_consts_u32_s64(void) { validate_gen_range_vs_const_32(U32, S64); } +void test_reg_bounds_gen_consts_u32_u32(void) { validate_gen_range_vs_const_32(U32, U32); } +void test_reg_bounds_gen_consts_u32_s32(void) { validate_gen_range_vs_const_32(U32, S32); } +/* RANGE x CONST, S32 initial range */ +void test_reg_bounds_gen_consts_s32_u64(void) { validate_gen_range_vs_const_32(S32, U64); } +void test_reg_bounds_gen_consts_s32_s64(void) { validate_gen_range_vs_const_32(S32, S64); } +void test_reg_bounds_gen_consts_s32_u32(void) { validate_gen_range_vs_const_32(S32, U32); } +void test_reg_bounds_gen_consts_s32_s32(void) { validate_gen_range_vs_const_32(S32, S32); } + +/* RANGE x RANGE, U64 initial range */ +void test_reg_bounds_gen_ranges_u64_u64(void) { validate_gen_range_vs_range(U64, U64); } +void test_reg_bounds_gen_ranges_u64_s64(void) { validate_gen_range_vs_range(U64, S64); } +void test_reg_bounds_gen_ranges_u64_u32(void) { validate_gen_range_vs_range(U64, U32); } +void test_reg_bounds_gen_ranges_u64_s32(void) { validate_gen_range_vs_range(U64, S32); } +/* RANGE x RANGE, S64 initial range */ +void test_reg_bounds_gen_ranges_s64_u64(void) { validate_gen_range_vs_range(S64, U64); } +void test_reg_bounds_gen_ranges_s64_s64(void) { validate_gen_range_vs_range(S64, S64); } +void test_reg_bounds_gen_ranges_s64_u32(void) { validate_gen_range_vs_range(S64, U32); } +void test_reg_bounds_gen_ranges_s64_s32(void) { validate_gen_range_vs_range(S64, S32); } +/* RANGE x RANGE, U32 initial range */ +void test_reg_bounds_gen_ranges_u32_u64(void) { validate_gen_range_vs_range(U32, U64); } +void test_reg_bounds_gen_ranges_u32_s64(void) { validate_gen_range_vs_range(U32, S64); } +void test_reg_bounds_gen_ranges_u32_u32(void) { validate_gen_range_vs_range(U32, U32); } +void test_reg_bounds_gen_ranges_u32_s32(void) { validate_gen_range_vs_range(U32, S32); } +/* RANGE x RANGE, S32 initial range */ +void test_reg_bounds_gen_ranges_s32_u64(void) { validate_gen_range_vs_range(S32, U64); } +void test_reg_bounds_gen_ranges_s32_s64(void) { validate_gen_range_vs_range(S32, S64); } +void test_reg_bounds_gen_ranges_s32_u32(void) { validate_gen_range_vs_range(S32, U32); } +void test_reg_bounds_gen_ranges_s32_s32(void) { validate_gen_range_vs_range(S32, S32); } + +#define DEFAULT_RAND_CASE_CNT 100 + +#define RAND_21BIT_MASK ((1 << 22) - 1) + +static u64 rand_u64() +{ + /* RAND_MAX is guaranteed to be at least 1<<15, but in practice it + * seems to be 1<<31, so we need to call it thrice to get full u64; + * we'll use rougly equal split: 22 + 21 + 21 bits + */ + return ((u64)random() << 42) | + (((u64)random() & RAND_21BIT_MASK) << 21) | + (random() & RAND_21BIT_MASK); +} + +static u64 rand_const(enum num_t t) +{ + return cast_t(t, rand_u64()); +} + +static struct range rand_range(enum num_t t) +{ + u64 x = rand_const(t), y = rand_const(t); + + return range(t, min_t(t, x, y), max_t(t, x, y)); +} + +static void validate_rand_ranges(enum num_t init_t, enum num_t cond_t, bool const_range) +{ + struct ctx ctx; + struct range range1, range2; + int err, i; + u64 t; + + memset(&ctx, 0, sizeof(ctx)); + + err = parse_env_vars(&ctx); + if (err) { + ASSERT_OK(err, "parse_env_vars"); + return; + } + + if (ctx.rand_case_cnt == 0) + ctx.rand_case_cnt = DEFAULT_RAND_CASE_CNT; + if (ctx.rand_seed == 0) + ctx.rand_seed = (unsigned)get_time_ns(); + + srandom(ctx.rand_seed); + + ctx.total_case_cnt = (last_op - first_op + 1) * (2 * ctx.rand_case_cnt); + ctx.start_ns = get_time_ns(); + snprintf(ctx.progress_ctx, sizeof(ctx.progress_ctx), + "[RANDOM SEED %u] RANGE x %s, %s -> %s", + ctx.rand_seed, const_range ? "CONST" : "RANGE", + t_str(init_t), t_str(cond_t)); + + for (i = 0; i < ctx.rand_case_cnt; i++) { + range1 = rand_range(init_t); + if (const_range) { + t = rand_const(init_t); + range2 = range(init_t, t, t); + } else { + range2 = rand_range(init_t); + } + + /* <range1> x <range2> */ + if (verify_case_opt(&ctx, init_t, cond_t, range1, range2, false /* !is_subtest */)) + goto cleanup; + /* <range2> x <range1> */ + if (verify_case_opt(&ctx, init_t, cond_t, range2, range1, false /* !is_subtest */)) + goto cleanup; + } + +cleanup: + /* make sure we report random seed for reproducing */ + ASSERT_TRUE(true, ctx.progress_ctx); + cleanup_ctx(&ctx); +} + +/* [RANDOM] RANGE x CONST, U64 initial range */ +void test_reg_bounds_rand_consts_u64_u64(void) { validate_rand_ranges(U64, U64, true /* const */); } +void test_reg_bounds_rand_consts_u64_s64(void) { validate_rand_ranges(U64, S64, true /* const */); } +void test_reg_bounds_rand_consts_u64_u32(void) { validate_rand_ranges(U64, U32, true /* const */); } +void test_reg_bounds_rand_consts_u64_s32(void) { validate_rand_ranges(U64, S32, true /* const */); } +/* [RANDOM] RANGE x CONST, S64 initial range */ +void test_reg_bounds_rand_consts_s64_u64(void) { validate_rand_ranges(S64, U64, true /* const */); } +void test_reg_bounds_rand_consts_s64_s64(void) { validate_rand_ranges(S64, S64, true /* const */); } +void test_reg_bounds_rand_consts_s64_u32(void) { validate_rand_ranges(S64, U32, true /* const */); } +void test_reg_bounds_rand_consts_s64_s32(void) { validate_rand_ranges(S64, S32, true /* const */); } +/* [RANDOM] RANGE x CONST, U32 initial range */ +void test_reg_bounds_rand_consts_u32_u64(void) { validate_rand_ranges(U32, U64, true /* const */); } +void test_reg_bounds_rand_consts_u32_s64(void) { validate_rand_ranges(U32, S64, true /* const */); } +void test_reg_bounds_rand_consts_u32_u32(void) { validate_rand_ranges(U32, U32, true /* const */); } +void test_reg_bounds_rand_consts_u32_s32(void) { validate_rand_ranges(U32, S32, true /* const */); } +/* [RANDOM] RANGE x CONST, S32 initial range */ +void test_reg_bounds_rand_consts_s32_u64(void) { validate_rand_ranges(S32, U64, true /* const */); } +void test_reg_bounds_rand_consts_s32_s64(void) { validate_rand_ranges(S32, S64, true /* const */); } +void test_reg_bounds_rand_consts_s32_u32(void) { validate_rand_ranges(S32, U32, true /* const */); } +void test_reg_bounds_rand_consts_s32_s32(void) { validate_rand_ranges(S32, S32, true /* const */); } + +/* [RANDOM] RANGE x RANGE, U64 initial range */ +void test_reg_bounds_rand_ranges_u64_u64(void) { validate_rand_ranges(U64, U64, false /* range */); } +void test_reg_bounds_rand_ranges_u64_s64(void) { validate_rand_ranges(U64, S64, false /* range */); } +void test_reg_bounds_rand_ranges_u64_u32(void) { validate_rand_ranges(U64, U32, false /* range */); } +void test_reg_bounds_rand_ranges_u64_s32(void) { validate_rand_ranges(U64, S32, false /* range */); } +/* [RANDOM] RANGE x RANGE, S64 initial range */ +void test_reg_bounds_rand_ranges_s64_u64(void) { validate_rand_ranges(S64, U64, false /* range */); } +void test_reg_bounds_rand_ranges_s64_s64(void) { validate_rand_ranges(S64, S64, false /* range */); } +void test_reg_bounds_rand_ranges_s64_u32(void) { validate_rand_ranges(S64, U32, false /* range */); } +void test_reg_bounds_rand_ranges_s64_s32(void) { validate_rand_ranges(S64, S32, false /* range */); } +/* [RANDOM] RANGE x RANGE, U32 initial range */ +void test_reg_bounds_rand_ranges_u32_u64(void) { validate_rand_ranges(U32, U64, false /* range */); } +void test_reg_bounds_rand_ranges_u32_s64(void) { validate_rand_ranges(U32, S64, false /* range */); } +void test_reg_bounds_rand_ranges_u32_u32(void) { validate_rand_ranges(U32, U32, false /* range */); } +void test_reg_bounds_rand_ranges_u32_s32(void) { validate_rand_ranges(U32, S32, false /* range */); } +/* [RANDOM] RANGE x RANGE, S32 initial range */ +void test_reg_bounds_rand_ranges_s32_u64(void) { validate_rand_ranges(S32, U64, false /* range */); } +void test_reg_bounds_rand_ranges_s32_s64(void) { validate_rand_ranges(S32, S64, false /* range */); } +void test_reg_bounds_rand_ranges_s32_u32(void) { validate_rand_ranges(S32, U32, false /* range */); } +void test_reg_bounds_rand_ranges_s32_s32(void) { validate_rand_ranges(S32, S32, false /* range */); } + +/* A set of hard-coded "interesting" cases to validate as part of normal + * test_progs test runs + */ +static struct subtest_case crafted_cases[] = { + {U64, U64, {0, 0xffffffff}, {0, 0}}, + {U64, U64, {0, 0x80000000}, {0, 0}}, + {U64, U64, {0x100000000ULL, 0x100000100ULL}, {0, 0}}, + {U64, U64, {0x100000000ULL, 0x180000000ULL}, {0, 0}}, + {U64, U64, {0x100000000ULL, 0x1ffffff00ULL}, {0, 0}}, + {U64, U64, {0x100000000ULL, 0x1ffffff01ULL}, {0, 0}}, + {U64, U64, {0x100000000ULL, 0x1fffffffeULL}, {0, 0}}, + {U64, U64, {0x100000001ULL, 0x1000000ffULL}, {0, 0}}, + + /* single point overlap, interesting BPF_EQ and BPF_NE interactions */ + {U64, U64, {0, 1}, {1, 0x80000000}}, + {U64, S64, {0, 1}, {1, 0x80000000}}, + {U64, U32, {0, 1}, {1, 0x80000000}}, + {U64, S32, {0, 1}, {1, 0x80000000}}, + + {U64, S64, {0, 0xffffffff00000000ULL}, {0, 0}}, + {U64, S64, {0x7fffffffffffffffULL, 0xffffffff00000000ULL}, {0, 0}}, + {U64, S64, {0x7fffffff00000001ULL, 0xffffffff00000000ULL}, {0, 0}}, + {U64, S64, {0, 0xffffffffULL}, {1, 1}}, + {U64, S64, {0, 0xffffffffULL}, {0x7fffffff, 0x7fffffff}}, + + {U64, U32, {0, 0x100000000}, {0, 0}}, + {U64, U32, {0xfffffffe, 0x100000000}, {0x80000000, 0x80000000}}, + + {U64, S32, {0, 0xffffffff00000000ULL}, {0, 0}}, + /* these are tricky cases where lower 32 bits allow to tighten 64 + * bit boundaries based on tightened lower 32 bit boundaries + */ + {U64, S32, {0, 0x0ffffffffULL}, {0, 0}}, + {U64, S32, {0, 0x100000000ULL}, {0, 0}}, + {U64, S32, {0, 0x100000001ULL}, {0, 0}}, + {U64, S32, {0, 0x180000000ULL}, {0, 0}}, + {U64, S32, {0, 0x17fffffffULL}, {0, 0}}, + {U64, S32, {0, 0x180000001ULL}, {0, 0}}, + + /* verifier knows about [-1, 0] range for s32 for this case already */ + {S64, S64, {0xffffffffffffffffULL, 0}, {0xffffffff00000000ULL, 0xffffffff00000000ULL}}, + /* but didn't know about these cases initially */ + {U64, U64, {0xffffffff, 0x100000000ULL}, {0, 0}}, /* s32: [-1, 0] */ + {U64, U64, {0xffffffff, 0x100000001ULL}, {0, 0}}, /* s32: [-1, 1] */ + + /* longer convergence case: learning from u64 -> s64 -> u64 -> u32, + * arriving at u32: [1, U32_MAX] (instead of more pessimistic [0, U32_MAX]) + */ + {S64, U64, {0xffffffff00000001ULL, 0}, {0xffffffff00000000ULL, 0xffffffff00000000ULL}}, + + {U32, U32, {1, U32_MAX}, {0, 0}}, + + {U32, S32, {0, U32_MAX}, {U32_MAX, U32_MAX}}, + + {S32, U64, {(u32)S32_MIN, (u32)S32_MIN}, {(u32)(s32)-255, 0}}, + {S32, S64, {(u32)S32_MIN, (u32)(s32)-255}, {(u32)(s32)-2, 0}}, + {S32, S64, {0, 1}, {(u32)S32_MIN, (u32)S32_MIN}}, + {S32, U32, {(u32)S32_MIN, (u32)S32_MIN}, {(u32)S32_MIN, (u32)S32_MIN}}, + + /* edge overlap testings for BPF_NE */ + {U64, U64, {0, U64_MAX}, {U64_MAX, U64_MAX}}, + {U64, U64, {0, U64_MAX}, {0, 0}}, + {S64, U64, {S64_MIN, 0}, {S64_MIN, S64_MIN}}, + {S64, U64, {S64_MIN, 0}, {0, 0}}, + {S64, U64, {S64_MIN, S64_MAX}, {S64_MAX, S64_MAX}}, + {U32, U32, {0, U32_MAX}, {0, 0}}, + {U32, U32, {0, U32_MAX}, {U32_MAX, U32_MAX}}, + {S32, U32, {(u32)S32_MIN, 0}, {0, 0}}, + {S32, U32, {(u32)S32_MIN, 0}, {(u32)S32_MIN, (u32)S32_MIN}}, + {S32, U32, {(u32)S32_MIN, S32_MAX}, {S32_MAX, S32_MAX}}, +}; + +/* Go over crafted hard-coded cases. This is fast, so we do it as part of + * normal test_progs run. + */ +void test_reg_bounds_crafted(void) +{ + struct ctx ctx; + int i; + + memset(&ctx, 0, sizeof(ctx)); + + for (i = 0; i < ARRAY_SIZE(crafted_cases); i++) { + struct subtest_case *c = &crafted_cases[i]; + + verify_case(&ctx, c->init_t, c->cond_t, c->x, c->y); + verify_case(&ctx, c->init_t, c->cond_t, c->y, c->x); + } + + cleanup_ctx(&ctx); +} diff --git a/tools/testing/selftests/bpf/prog_tests/resolve_btfids.c b/tools/testing/selftests/bpf/prog_tests/resolve_btfids.c index 3b127cab4864..f81d08d429a2 100644 --- a/tools/testing/selftests/bpf/prog_tests/resolve_btfids.c +++ b/tools/testing/selftests/bpf/prog_tests/resolve_btfids.c @@ -28,6 +28,12 @@ struct symbol test_symbols[] = { { "func", BTF_KIND_FUNC, -1 }, }; +/* Align the .BTF_ids section to 4 bytes */ +asm ( +".pushsection " BTF_IDS_SECTION " ,\"a\"; \n" +".balign 4, 0; \n" +".popsection; \n"); + BTF_ID_LIST(test_list_local) BTF_ID_UNUSED BTF_ID(typedef, S) @@ -38,7 +44,7 @@ BTF_ID(union, U) BTF_ID(func, func) extern __u32 test_list_global[]; -BTF_ID_LIST_GLOBAL(test_list_global) +BTF_ID_LIST_GLOBAL(test_list_global, 1) BTF_ID_UNUSED BTF_ID(typedef, S) BTF_ID(typedef, T) @@ -47,6 +53,15 @@ BTF_ID(struct, S) BTF_ID(union, U) BTF_ID(func, func) +BTF_SET_START(test_set) +BTF_ID(typedef, S) +BTF_ID(typedef, T) +BTF_ID(typedef, U) +BTF_ID(struct, S) +BTF_ID(union, U) +BTF_ID(func, func) +BTF_SET_END(test_set) + static int __resolve_symbol(struct btf *btf, int type_id) { @@ -61,7 +76,7 @@ __resolve_symbol(struct btf *btf, int type_id) } for (i = 0; i < ARRAY_SIZE(test_symbols); i++) { - if (test_symbols[i].id != -1) + if (test_symbols[i].id >= 0) continue; if (BTF_INFO_KIND(type->info) != test_symbols[i].type) @@ -86,14 +101,14 @@ static int resolve_symbols(void) int type_id; __u32 nr; - btf = btf__parse_elf("btf_data.o", NULL); + btf = btf__parse_elf("btf_data.bpf.o", NULL); if (CHECK(libbpf_get_error(btf), "resolve", "Failed to load BTF from btf_data.o\n")) return -1; - nr = btf__get_nr_types(btf); + nr = btf__type_cnt(btf); - for (type_id = 1; type_id <= nr; type_id++) { + for (type_id = 1; type_id < nr; type_id++) { if (__resolve_symbol(btf, type_id)) break; } @@ -102,28 +117,51 @@ static int resolve_symbols(void) return 0; } -int test_resolve_btfids(void) +void test_resolve_btfids(void) { __u32 *test_list, *test_lists[] = { test_list_local, test_list_global }; unsigned int i, j; int ret = 0; if (resolve_symbols()) - return -1; + return; /* Check BTF_ID_LIST(test_list_local) and * BTF_ID_LIST_GLOBAL(test_list_global) IDs */ for (j = 0; j < ARRAY_SIZE(test_lists); j++) { test_list = test_lists[j]; - for (i = 0; i < ARRAY_SIZE(test_symbols) && !ret; i++) { + for (i = 0; i < ARRAY_SIZE(test_symbols); i++) { ret = CHECK(test_list[i] != test_symbols[i].id, "id_check", "wrong ID for %s (%d != %d)\n", test_symbols[i].name, test_list[i], test_symbols[i].id); + if (ret) + return; } } - return ret; + /* Check BTF_SET_START(test_set) IDs */ + for (i = 0; i < test_set.cnt; i++) { + bool found = false; + + for (j = 0; j < ARRAY_SIZE(test_symbols); j++) { + if (test_symbols[j].id != test_set.ids[i]) + continue; + found = true; + break; + } + + ret = CHECK(!found, "id_check", + "ID %d not found in test_symbols\n", + test_set.ids[i]); + if (ret) + break; + + if (i > 0) { + if (!ASSERT_LE(test_set.ids[i - 1], test_set.ids[i], "sort_check")) + return; + } + } } diff --git a/tools/testing/selftests/bpf/prog_tests/ringbuf.c b/tools/testing/selftests/bpf/prog_tests/ringbuf.c index c1650548433c..4c6f42dae409 100644 --- a/tools/testing/selftests/bpf/prog_tests/ringbuf.c +++ b/tools/testing/selftests/bpf/prog_tests/ringbuf.c @@ -12,7 +12,9 @@ #include <sys/sysinfo.h> #include <linux/perf_event.h> #include <linux/ring_buffer.h> -#include "test_ringbuf.skel.h" +#include "test_ringbuf.lskel.h" +#include "test_ringbuf_n.lskel.h" +#include "test_ringbuf_map_key.lskel.h" #define EDONE 7777 @@ -58,7 +60,8 @@ static int process_sample(void *ctx, void *data, size_t len) } } -static struct test_ringbuf *skel; +static struct test_ringbuf_map_key_lskel *skel_map_key; +static struct test_ringbuf_lskel *skel; static struct ring_buffer *ringbuf; static void trigger_samples() @@ -81,38 +84,102 @@ static void *poll_thread(void *input) return (void *)(long)ring_buffer__poll(ringbuf, timeout); } -void test_ringbuf(void) +static void ringbuf_subtest(void) { const size_t rec_sz = BPF_RINGBUF_HDR_SZ + sizeof(struct sample); pthread_t thread; long bg_ret = -1; - int err, cnt; - - skel = test_ringbuf__open_and_load(); - if (CHECK(!skel, "skel_open_load", "skeleton open&load failed\n")) + int err, cnt, rb_fd; + int page_size = getpagesize(); + void *mmap_ptr, *tmp_ptr; + struct ring *ring; + int map_fd; + unsigned long avail_data, ring_size, cons_pos, prod_pos; + + skel = test_ringbuf_lskel__open(); + if (CHECK(!skel, "skel_open", "skeleton open failed\n")) return; + skel->maps.ringbuf.max_entries = page_size; + + err = test_ringbuf_lskel__load(skel); + if (CHECK(err != 0, "skel_load", "skeleton load failed\n")) + goto cleanup; + + rb_fd = skel->maps.ringbuf.map_fd; + /* good read/write cons_pos */ + mmap_ptr = mmap(NULL, page_size, PROT_READ | PROT_WRITE, MAP_SHARED, rb_fd, 0); + ASSERT_OK_PTR(mmap_ptr, "rw_cons_pos"); + tmp_ptr = mremap(mmap_ptr, page_size, 2 * page_size, MREMAP_MAYMOVE); + if (!ASSERT_ERR_PTR(tmp_ptr, "rw_extend")) + goto cleanup; + ASSERT_ERR(mprotect(mmap_ptr, page_size, PROT_EXEC), "exec_cons_pos_protect"); + ASSERT_OK(munmap(mmap_ptr, page_size), "unmap_rw"); + + /* bad writeable prod_pos */ + mmap_ptr = mmap(NULL, page_size, PROT_WRITE, MAP_SHARED, rb_fd, page_size); + err = -errno; + ASSERT_ERR_PTR(mmap_ptr, "wr_prod_pos"); + ASSERT_EQ(err, -EPERM, "wr_prod_pos_err"); + + /* bad writeable data pages */ + mmap_ptr = mmap(NULL, page_size, PROT_WRITE, MAP_SHARED, rb_fd, 2 * page_size); + err = -errno; + ASSERT_ERR_PTR(mmap_ptr, "wr_data_page_one"); + ASSERT_EQ(err, -EPERM, "wr_data_page_one_err"); + mmap_ptr = mmap(NULL, page_size, PROT_WRITE, MAP_SHARED, rb_fd, 3 * page_size); + ASSERT_ERR_PTR(mmap_ptr, "wr_data_page_two"); + mmap_ptr = mmap(NULL, 2 * page_size, PROT_WRITE, MAP_SHARED, rb_fd, 2 * page_size); + ASSERT_ERR_PTR(mmap_ptr, "wr_data_page_all"); + + /* good read-only pages */ + mmap_ptr = mmap(NULL, 4 * page_size, PROT_READ, MAP_SHARED, rb_fd, 0); + if (!ASSERT_OK_PTR(mmap_ptr, "ro_prod_pos")) + goto cleanup; + + ASSERT_ERR(mprotect(mmap_ptr, 4 * page_size, PROT_WRITE), "write_protect"); + ASSERT_ERR(mprotect(mmap_ptr, 4 * page_size, PROT_EXEC), "exec_protect"); + ASSERT_ERR_PTR(mremap(mmap_ptr, 0, 4 * page_size, MREMAP_MAYMOVE), "ro_remap"); + ASSERT_OK(munmap(mmap_ptr, 4 * page_size), "unmap_ro"); + + /* good read-only pages with initial offset */ + mmap_ptr = mmap(NULL, page_size, PROT_READ, MAP_SHARED, rb_fd, page_size); + if (!ASSERT_OK_PTR(mmap_ptr, "ro_prod_pos")) + goto cleanup; + + ASSERT_ERR(mprotect(mmap_ptr, page_size, PROT_WRITE), "write_protect"); + ASSERT_ERR(mprotect(mmap_ptr, page_size, PROT_EXEC), "exec_protect"); + ASSERT_ERR_PTR(mremap(mmap_ptr, 0, 3 * page_size, MREMAP_MAYMOVE), "ro_remap"); + ASSERT_OK(munmap(mmap_ptr, page_size), "unmap_ro"); + /* only trigger BPF program for current process */ skel->bss->pid = getpid(); - ringbuf = ring_buffer__new(bpf_map__fd(skel->maps.ringbuf), + ringbuf = ring_buffer__new(skel->maps.ringbuf.map_fd, process_sample, NULL, NULL); if (CHECK(!ringbuf, "ringbuf_create", "failed to create ringbuf\n")) goto cleanup; - err = test_ringbuf__attach(skel); + err = test_ringbuf_lskel__attach(skel); if (CHECK(err, "skel_attach", "skeleton attachment failed: %d\n", err)) goto cleanup; trigger_samples(); + ring = ring_buffer__ring(ringbuf, 0); + if (!ASSERT_OK_PTR(ring, "ring_buffer__ring_idx_0")) + goto cleanup; + + map_fd = ring__map_fd(ring); + ASSERT_EQ(map_fd, skel->maps.ringbuf.map_fd, "ring_map_fd"); + /* 2 submitted + 1 discarded records */ CHECK(skel->bss->avail_data != 3 * rec_sz, "err_avail_size", "exp %ld, got %ld\n", 3L * rec_sz, skel->bss->avail_data); - CHECK(skel->bss->ring_size != 4096, + CHECK(skel->bss->ring_size != page_size, "err_ring_size", "exp %ld, got %ld\n", - 4096L, skel->bss->ring_size); + (long)page_size, skel->bss->ring_size); CHECK(skel->bss->cons_pos != 0, "err_cons_pos", "exp %ld, got %ld\n", 0L, skel->bss->cons_pos); @@ -120,6 +187,18 @@ void test_ringbuf(void) "err_prod_pos", "exp %ld, got %ld\n", 3L * rec_sz, skel->bss->prod_pos); + /* verify getting this data directly via the ring object yields the same + * results + */ + avail_data = ring__avail_data_size(ring); + ASSERT_EQ(avail_data, 3 * rec_sz, "ring_avail_size"); + ring_size = ring__size(ring); + ASSERT_EQ(ring_size, page_size, "ring_ring_size"); + cons_pos = ring__consumer_pos(ring); + ASSERT_EQ(cons_pos, 0, "ring_cons_pos"); + prod_pos = ring__producer_pos(ring); + ASSERT_EQ(prod_pos, 3 * rec_sz, "ring_prod_pos"); + /* poll for samples */ err = ring_buffer__poll(ringbuf, -1); @@ -217,9 +296,19 @@ void test_ringbuf(void) if (CHECK(err, "join_bg", "err %d\n", err)) goto cleanup; - if (CHECK(bg_ret != 1, "bg_ret", "epoll_wait result: %ld", bg_ret)) + if (CHECK(bg_ret <= 0, "bg_ret", "epoll_wait result: %ld", bg_ret)) goto cleanup; + /* due to timing variations, there could still be non-notified + * samples, so consume them here to collect all the samples + */ + err = ring_buffer__consume(ringbuf); + CHECK(err < 0, "rb_consume", "failed: %d\b", err); + + /* also consume using ring__consume to make sure it works the same */ + err = ring__consume(ring); + ASSERT_GE(err, 0, "ring_consume"); + /* 3 rounds, 2 samples each */ cnt = atomic_xchg(&sample_cnt, 0); CHECK(cnt != 6, "cnt", "exp %d samples, got %d\n", 6, cnt); @@ -232,8 +321,134 @@ void test_ringbuf(void) CHECK(skel->bss->discarded != 1, "err_discarded", "exp %ld, got %ld\n", 1L, skel->bss->discarded); - test_ringbuf__detach(skel); + test_ringbuf_lskel__detach(skel); +cleanup: + ring_buffer__free(ringbuf); + test_ringbuf_lskel__destroy(skel); +} + +/* + * Test ring_buffer__consume_n() by producing N_TOT_SAMPLES samples in the ring + * buffer, via getpid(), and consuming them in chunks of N_SAMPLES. + */ +#define N_TOT_SAMPLES 32 +#define N_SAMPLES 4 + +/* Sample value to verify the callback validity */ +#define SAMPLE_VALUE 42L + +static int process_n_sample(void *ctx, void *data, size_t len) +{ + struct sample *s = data; + + ASSERT_EQ(s->value, SAMPLE_VALUE, "sample_value"); + + return 0; +} + +static void ringbuf_n_subtest(void) +{ + struct test_ringbuf_n_lskel *skel_n; + int err, i; + + skel_n = test_ringbuf_n_lskel__open(); + if (!ASSERT_OK_PTR(skel_n, "test_ringbuf_n_lskel__open")) + return; + + skel_n->maps.ringbuf.max_entries = getpagesize(); + skel_n->bss->pid = getpid(); + + err = test_ringbuf_n_lskel__load(skel_n); + if (!ASSERT_OK(err, "test_ringbuf_n_lskel__load")) + goto cleanup; + + ringbuf = ring_buffer__new(skel_n->maps.ringbuf.map_fd, + process_n_sample, NULL, NULL); + if (!ASSERT_OK_PTR(ringbuf, "ring_buffer__new")) + goto cleanup; + + err = test_ringbuf_n_lskel__attach(skel_n); + if (!ASSERT_OK(err, "test_ringbuf_n_lskel__attach")) + goto cleanup_ringbuf; + + /* Produce N_TOT_SAMPLES samples in the ring buffer by calling getpid() */ + skel_n->bss->value = SAMPLE_VALUE; + for (i = 0; i < N_TOT_SAMPLES; i++) + syscall(__NR_getpgid); + + /* Consume all samples from the ring buffer in batches of N_SAMPLES */ + for (i = 0; i < N_TOT_SAMPLES; i += err) { + err = ring_buffer__consume_n(ringbuf, N_SAMPLES); + if (!ASSERT_EQ(err, N_SAMPLES, "rb_consume")) + goto cleanup_ringbuf; + } + +cleanup_ringbuf: + ring_buffer__free(ringbuf); cleanup: + test_ringbuf_n_lskel__destroy(skel_n); +} + +static int process_map_key_sample(void *ctx, void *data, size_t len) +{ + struct sample *s; + int err, val; + + s = data; + switch (s->seq) { + case 1: + ASSERT_EQ(s->value, 42, "sample_value"); + err = bpf_map_lookup_elem(skel_map_key->maps.hash_map.map_fd, + s, &val); + ASSERT_OK(err, "hash_map bpf_map_lookup_elem"); + ASSERT_EQ(val, 1, "hash_map val"); + return -EDONE; + default: + return 0; + } +} + +static void ringbuf_map_key_subtest(void) +{ + int err; + + skel_map_key = test_ringbuf_map_key_lskel__open(); + if (!ASSERT_OK_PTR(skel_map_key, "test_ringbuf_map_key_lskel__open")) + return; + + skel_map_key->maps.ringbuf.max_entries = getpagesize(); + skel_map_key->bss->pid = getpid(); + + err = test_ringbuf_map_key_lskel__load(skel_map_key); + if (!ASSERT_OK(err, "test_ringbuf_map_key_lskel__load")) + goto cleanup; + + ringbuf = ring_buffer__new(skel_map_key->maps.ringbuf.map_fd, + process_map_key_sample, NULL, NULL); + if (!ASSERT_OK_PTR(ringbuf, "ring_buffer__new")) + goto cleanup; + + err = test_ringbuf_map_key_lskel__attach(skel_map_key); + if (!ASSERT_OK(err, "test_ringbuf_map_key_lskel__attach")) + goto cleanup_ringbuf; + + syscall(__NR_getpgid); + ASSERT_EQ(skel_map_key->bss->seq, 1, "skel_map_key->bss->seq"); + err = ring_buffer__poll(ringbuf, -1); + ASSERT_EQ(err, -EDONE, "ring_buffer__poll"); + +cleanup_ringbuf: ring_buffer__free(ringbuf); - test_ringbuf__destroy(skel); +cleanup: + test_ringbuf_map_key_lskel__destroy(skel_map_key); +} + +void test_ringbuf(void) +{ + if (test__start_subtest("ringbuf")) + ringbuf_subtest(); + if (test__start_subtest("ringbuf_n")) + ringbuf_n_subtest(); + if (test__start_subtest("ringbuf_map_key")) + ringbuf_map_key_subtest(); } diff --git a/tools/testing/selftests/bpf/prog_tests/ringbuf_multi.c b/tools/testing/selftests/bpf/prog_tests/ringbuf_multi.c index 78e450609803..58522195081b 100644 --- a/tools/testing/selftests/bpf/prog_tests/ringbuf_multi.c +++ b/tools/testing/selftests/bpf/prog_tests/ringbuf_multi.c @@ -41,13 +41,43 @@ static int process_sample(void *ctx, void *data, size_t len) void test_ringbuf_multi(void) { struct test_ringbuf_multi *skel; - struct ring_buffer *ringbuf; + struct ring_buffer *ringbuf = NULL; + struct ring *ring_old; + struct ring *ring; int err; + int page_size = getpagesize(); + int proto_fd = -1; - skel = test_ringbuf_multi__open_and_load(); - if (CHECK(!skel, "skel_open_load", "skeleton open&load failed\n")) + skel = test_ringbuf_multi__open(); + if (CHECK(!skel, "skel_open", "skeleton open failed\n")) return; + /* validate ringbuf size adjustment logic */ + ASSERT_EQ(bpf_map__max_entries(skel->maps.ringbuf1), page_size, "rb1_size_before"); + ASSERT_OK(bpf_map__set_max_entries(skel->maps.ringbuf1, page_size + 1), "rb1_resize"); + ASSERT_EQ(bpf_map__max_entries(skel->maps.ringbuf1), 2 * page_size, "rb1_size_after"); + ASSERT_OK(bpf_map__set_max_entries(skel->maps.ringbuf1, page_size), "rb1_reset"); + ASSERT_EQ(bpf_map__max_entries(skel->maps.ringbuf1), page_size, "rb1_size_final"); + + proto_fd = bpf_map_create(BPF_MAP_TYPE_RINGBUF, NULL, 0, 0, page_size, NULL); + if (CHECK(proto_fd < 0, "bpf_map_create", "bpf_map_create failed\n")) + goto cleanup; + + err = bpf_map__set_inner_map_fd(skel->maps.ringbuf_hash, proto_fd); + if (CHECK(err != 0, "bpf_map__set_inner_map_fd", "bpf_map__set_inner_map_fd failed\n")) + goto cleanup; + + err = test_ringbuf_multi__load(skel); + if (CHECK(err != 0, "skel_load", "skeleton load failed\n")) + goto cleanup; + + close(proto_fd); + proto_fd = -1; + + /* make sure we can't resize ringbuf after object load */ + if (!ASSERT_ERR(bpf_map__set_max_entries(skel->maps.ringbuf1, 3 * page_size), "rb1_resize_after_load")) + goto cleanup; + /* only trigger BPF program for current process */ skel->bss->pid = getpid(); @@ -56,11 +86,24 @@ void test_ringbuf_multi(void) if (CHECK(!ringbuf, "ringbuf_create", "failed to create ringbuf\n")) goto cleanup; + /* verify ring_buffer__ring returns expected results */ + ring = ring_buffer__ring(ringbuf, 0); + if (!ASSERT_OK_PTR(ring, "ring_buffer__ring_idx_0")) + goto cleanup; + ring_old = ring; + ring = ring_buffer__ring(ringbuf, 1); + ASSERT_ERR_PTR(ring, "ring_buffer__ring_idx_1"); + err = ring_buffer__add(ringbuf, bpf_map__fd(skel->maps.ringbuf2), process_sample, (void *)(long)2); if (CHECK(err, "ringbuf_add", "failed to add another ring\n")) goto cleanup; + /* verify adding a new ring didn't invalidate our older pointer */ + ring = ring_buffer__ring(ringbuf, 0); + if (!ASSERT_EQ(ring, ring_old, "ring_buffer__ring_again")) + goto cleanup; + err = test_ringbuf_multi__attach(skel); if (CHECK(err, "skel_attach", "skeleton attachment failed: %d\n", err)) goto cleanup; @@ -81,7 +124,7 @@ void test_ringbuf_multi(void) /* poll for samples, should get 2 ringbufs back */ err = ring_buffer__poll(ringbuf, -1); - if (CHECK(err != 4, "poll_res", "expected 4 records, got %d\n", err)) + if (CHECK(err != 2, "poll_res", "expected 2 records, got %d\n", err)) goto cleanup; /* expect extra polling to return nothing */ @@ -97,6 +140,8 @@ void test_ringbuf_multi(void) 2L, skel->bss->total); cleanup: + if (proto_fd >= 0) + close(proto_fd); ring_buffer__free(ringbuf); test_ringbuf_multi__destroy(skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/section_names.c b/tools/testing/selftests/bpf/prog_tests/section_names.c index 8b571890c57e..c3d78846f31a 100644 --- a/tools/testing/selftests/bpf/prog_tests/section_names.c +++ b/tools/testing/selftests/bpf/prog_tests/section_names.c @@ -124,6 +124,11 @@ static struct sec_name_test tests[] = { {0, BPF_CGROUP_INET6_CONNECT}, }, { + "cgroup/connect_unix", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_UNIX_CONNECT}, + {0, BPF_CGROUP_UNIX_CONNECT}, + }, + { "cgroup/sendmsg4", {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_UDP4_SENDMSG}, {0, BPF_CGROUP_UDP4_SENDMSG}, @@ -134,6 +139,11 @@ static struct sec_name_test tests[] = { {0, BPF_CGROUP_UDP6_SENDMSG}, }, { + "cgroup/sendmsg_unix", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_UNIX_SENDMSG}, + {0, BPF_CGROUP_UNIX_SENDMSG}, + }, + { "cgroup/recvmsg4", {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_UDP4_RECVMSG}, {0, BPF_CGROUP_UDP4_RECVMSG}, @@ -144,6 +154,11 @@ static struct sec_name_test tests[] = { {0, BPF_CGROUP_UDP6_RECVMSG}, }, { + "cgroup/recvmsg_unix", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_UNIX_RECVMSG}, + {0, BPF_CGROUP_UNIX_RECVMSG}, + }, + { "cgroup/sysctl", {0, BPF_PROG_TYPE_CGROUP_SYSCTL, BPF_CGROUP_SYSCTL}, {0, BPF_CGROUP_SYSCTL}, @@ -158,6 +173,36 @@ static struct sec_name_test tests[] = { {0, BPF_PROG_TYPE_CGROUP_SOCKOPT, BPF_CGROUP_SETSOCKOPT}, {0, BPF_CGROUP_SETSOCKOPT}, }, + { + "cgroup/getpeername4", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_INET4_GETPEERNAME}, + {0, BPF_CGROUP_INET4_GETPEERNAME}, + }, + { + "cgroup/getpeername6", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_INET6_GETPEERNAME}, + {0, BPF_CGROUP_INET6_GETPEERNAME}, + }, + { + "cgroup/getpeername_unix", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_UNIX_GETPEERNAME}, + {0, BPF_CGROUP_UNIX_GETPEERNAME}, + }, + { + "cgroup/getsockname4", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_INET4_GETSOCKNAME}, + {0, BPF_CGROUP_INET4_GETSOCKNAME}, + }, + { + "cgroup/getsockname6", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_INET6_GETSOCKNAME}, + {0, BPF_CGROUP_INET6_GETSOCKNAME}, + }, + { + "cgroup/getsockname_unix", + {0, BPF_PROG_TYPE_CGROUP_SOCK_ADDR, BPF_CGROUP_UNIX_GETSOCKNAME}, + {0, BPF_CGROUP_UNIX_GETSOCKNAME}, + }, }; static void test_prog_type_by_name(const struct sec_name_test *test) diff --git a/tools/testing/selftests/bpf/prog_tests/select_reuseport.c b/tools/testing/selftests/bpf/prog_tests/select_reuseport.c index 821b4146b7b6..64c5f5eb2994 100644 --- a/tools/testing/selftests/bpf/prog_tests/select_reuseport.c +++ b/tools/testing/selftests/bpf/prog_tests/select_reuseport.c @@ -18,7 +18,6 @@ #include <netinet/in.h> #include <bpf/bpf.h> #include <bpf/libbpf.h> -#include "bpf_rlimit.h" #include "bpf_util.h" #include "test_progs.h" @@ -66,30 +65,21 @@ static union sa46 { static int create_maps(enum bpf_map_type inner_type) { - struct bpf_create_map_attr attr = {}; + LIBBPF_OPTS(bpf_map_create_opts, opts); inner_map_type = inner_type; /* Creating reuseport_array */ - attr.name = "reuseport_array"; - attr.map_type = inner_type; - attr.key_size = sizeof(__u32); - attr.value_size = sizeof(__u32); - attr.max_entries = REUSEPORT_ARRAY_SIZE; - - reuseport_array = bpf_create_map_xattr(&attr); - RET_ERR(reuseport_array == -1, "creating reuseport_array", + reuseport_array = bpf_map_create(inner_type, "reuseport_array", + sizeof(__u32), sizeof(__u32), REUSEPORT_ARRAY_SIZE, NULL); + RET_ERR(reuseport_array < 0, "creating reuseport_array", "reuseport_array:%d errno:%d\n", reuseport_array, errno); /* Creating outer_map */ - attr.name = "outer_map"; - attr.map_type = BPF_MAP_TYPE_ARRAY_OF_MAPS; - attr.key_size = sizeof(__u32); - attr.value_size = sizeof(__u32); - attr.max_entries = 1; - attr.inner_map_fd = reuseport_array; - outer_map = bpf_create_map_xattr(&attr); - RET_ERR(outer_map == -1, "creating outer_map", + opts.inner_map_fd = reuseport_array; + outer_map = bpf_map_create(BPF_MAP_TYPE_ARRAY_OF_MAPS, "outer_map", + sizeof(__u32), sizeof(__u32), 1, &opts); + RET_ERR(outer_map < 0, "creating outer_map", "outer_map:%d errno:%d\n", outer_map, errno); return 0; @@ -101,9 +91,10 @@ static int prepare_bpf_obj(void) struct bpf_map *map; int err; - obj = bpf_object__open("test_select_reuseport_kern.o"); - RET_ERR(IS_ERR_OR_NULL(obj), "open test_select_reuseport_kern.o", - "obj:%p PTR_ERR(obj):%ld\n", obj, PTR_ERR(obj)); + obj = bpf_object__open("test_select_reuseport_kern.bpf.o"); + err = libbpf_get_error(obj); + RET_ERR(err, "open test_select_reuseport_kern.bpf.o", + "obj:%p PTR_ERR(obj):%d\n", obj, err); map = bpf_object__find_map_by_name(obj, "outer_map"); RET_ERR(!map, "find outer_map", "!map\n"); @@ -113,34 +104,34 @@ static int prepare_bpf_obj(void) err = bpf_object__load(obj); RET_ERR(err, "load bpf_object", "err:%d\n", err); - prog = bpf_program__next(NULL, obj); + prog = bpf_object__next_program(obj, NULL); RET_ERR(!prog, "get first bpf_program", "!prog\n"); select_by_skb_data_prog = bpf_program__fd(prog); - RET_ERR(select_by_skb_data_prog == -1, "get prog fd", + RET_ERR(select_by_skb_data_prog < 0, "get prog fd", "select_by_skb_data_prog:%d\n", select_by_skb_data_prog); map = bpf_object__find_map_by_name(obj, "result_map"); RET_ERR(!map, "find result_map", "!map\n"); result_map = bpf_map__fd(map); - RET_ERR(result_map == -1, "get result_map fd", + RET_ERR(result_map < 0, "get result_map fd", "result_map:%d\n", result_map); map = bpf_object__find_map_by_name(obj, "tmp_index_ovr_map"); RET_ERR(!map, "find tmp_index_ovr_map\n", "!map"); tmp_index_ovr_map = bpf_map__fd(map); - RET_ERR(tmp_index_ovr_map == -1, "get tmp_index_ovr_map fd", + RET_ERR(tmp_index_ovr_map < 0, "get tmp_index_ovr_map fd", "tmp_index_ovr_map:%d\n", tmp_index_ovr_map); map = bpf_object__find_map_by_name(obj, "linum_map"); RET_ERR(!map, "find linum_map", "!map\n"); linum_map = bpf_map__fd(map); - RET_ERR(linum_map == -1, "get linum_map fd", + RET_ERR(linum_map < 0, "get linum_map fd", "linum_map:%d\n", linum_map); map = bpf_object__find_map_by_name(obj, "data_check_map"); RET_ERR(!map, "find data_check_map", "!map\n"); data_check_map = bpf_map__fd(map); - RET_ERR(data_check_map == -1, "get data_check_map fd", + RET_ERR(data_check_map < 0, "get data_check_map fd", "data_check_map:%d\n", data_check_map); return 0; @@ -237,7 +228,7 @@ static long get_linum(void) int err; err = bpf_map_lookup_elem(linum_map, &index_zero, &linum); - RET_ERR(err == -1, "lookup_elem(linum_map)", "err:%d errno:%d\n", + RET_ERR(err < 0, "lookup_elem(linum_map)", "err:%d errno:%d\n", err, errno); return linum; @@ -254,11 +245,11 @@ static void check_data(int type, sa_family_t family, const struct cmd *cmd, addrlen = sizeof(cli_sa); err = getsockname(cli_fd, (struct sockaddr *)&cli_sa, &addrlen); - RET_IF(err == -1, "getsockname(cli_fd)", "err:%d errno:%d\n", + RET_IF(err < 0, "getsockname(cli_fd)", "err:%d errno:%d\n", err, errno); err = bpf_map_lookup_elem(data_check_map, &index_zero, &result); - RET_IF(err == -1, "lookup_elem(data_check_map)", "err:%d errno:%d\n", + RET_IF(err < 0, "lookup_elem(data_check_map)", "err:%d errno:%d\n", err, errno); if (type == SOCK_STREAM) { @@ -347,7 +338,7 @@ static void check_results(void) for (i = 0; i < NR_RESULTS; i++) { err = bpf_map_lookup_elem(result_map, &i, &results[i]); - RET_IF(err == -1, "lookup_elem(result_map)", + RET_IF(err < 0, "lookup_elem(result_map)", "i:%u err:%d errno:%d\n", i, err, errno); } @@ -524,12 +515,12 @@ static void test_syncookie(int type, sa_family_t family) */ err = bpf_map_update_elem(tmp_index_ovr_map, &index_zero, &tmp_index, BPF_ANY); - RET_IF(err == -1, "update_elem(tmp_index_ovr_map, 0, 1)", + RET_IF(err < 0, "update_elem(tmp_index_ovr_map, 0, 1)", "err:%d errno:%d\n", err, errno); do_test(type, family, &cmd, PASS); err = bpf_map_lookup_elem(tmp_index_ovr_map, &index_zero, &tmp_index); - RET_IF(err == -1 || tmp_index != -1, + RET_IF(err < 0 || tmp_index >= 0, "lookup_elem(tmp_index_ovr_map)", "err:%d errno:%d tmp_index:%d\n", err, errno, tmp_index); @@ -569,7 +560,7 @@ static void test_detach_bpf(int type, sa_family_t family) for (i = 0; i < NR_RESULTS; i++) { err = bpf_map_lookup_elem(result_map, &i, &tmp); - RET_IF(err == -1, "lookup_elem(result_map)", + RET_IF(err < 0, "lookup_elem(result_map)", "i:%u err:%d errno:%d\n", i, err, errno); nr_run_before += tmp; } @@ -584,7 +575,7 @@ static void test_detach_bpf(int type, sa_family_t family) for (i = 0; i < NR_RESULTS; i++) { err = bpf_map_lookup_elem(result_map, &i, &tmp); - RET_IF(err == -1, "lookup_elem(result_map)", + RET_IF(err < 0, "lookup_elem(result_map)", "i:%u err:%d errno:%d\n", i, err, errno); nr_run_after += tmp; } @@ -632,24 +623,24 @@ static void prepare_sk_fds(int type, sa_family_t family, bool inany) SO_ATTACH_REUSEPORT_EBPF, &select_by_skb_data_prog, sizeof(select_by_skb_data_prog)); - RET_IF(err == -1, "setsockopt(SO_ATTACH_REUEPORT_EBPF)", + RET_IF(err < 0, "setsockopt(SO_ATTACH_REUEPORT_EBPF)", "err:%d errno:%d\n", err, errno); } err = bind(sk_fds[i], (struct sockaddr *)&srv_sa, addrlen); - RET_IF(err == -1, "bind()", "sk_fds[%d] err:%d errno:%d\n", + RET_IF(err < 0, "bind()", "sk_fds[%d] err:%d errno:%d\n", i, err, errno); if (type == SOCK_STREAM) { err = listen(sk_fds[i], 10); - RET_IF(err == -1, "listen()", + RET_IF(err < 0, "listen()", "sk_fds[%d] err:%d errno:%d\n", i, err, errno); } err = bpf_map_update_elem(reuseport_array, &i, &sk_fds[i], BPF_NOEXIST); - RET_IF(err == -1, "update_elem(reuseport_array)", + RET_IF(err < 0, "update_elem(reuseport_array)", "sk_fds[%d] err:%d errno:%d\n", i, err, errno); if (i == first) { @@ -682,7 +673,7 @@ static void setup_per_test(int type, sa_family_t family, bool inany, prepare_sk_fds(type, family, inany); err = bpf_map_update_elem(tmp_index_ovr_map, &index_zero, &ovr, BPF_ANY); - RET_IF(err == -1, "update_elem(tmp_index_ovr_map, 0, -1)", + RET_IF(err < 0, "update_elem(tmp_index_ovr_map, 0, -1)", "err:%d errno:%d\n", err, errno); /* Install reuseport_array to outer_map? */ @@ -691,7 +682,7 @@ static void setup_per_test(int type, sa_family_t family, bool inany, err = bpf_map_update_elem(outer_map, &index_zero, &reuseport_array, BPF_ANY); - RET_IF(err == -1, "update_elem(outer_map, 0, reuseport_array)", + RET_IF(err < 0, "update_elem(outer_map, 0, reuseport_array)", "err:%d errno:%d\n", err, errno); } @@ -720,18 +711,18 @@ static void cleanup_per_test(bool no_inner_map) return; err = bpf_map_delete_elem(outer_map, &index_zero); - RET_IF(err == -1, "delete_elem(outer_map)", + RET_IF(err < 0, "delete_elem(outer_map)", "err:%d errno:%d\n", err, errno); } static void cleanup(void) { - if (outer_map != -1) { + if (outer_map >= 0) { close(outer_map); outer_map = -1; } - if (reuseport_array != -1) { + if (reuseport_array >= 0) { close(reuseport_array); reuseport_array = -1; } @@ -857,7 +848,7 @@ out: cleanup(); } -void test_select_reuseport(void) +void serial_test_select_reuseport(void) { saved_tcp_fo = read_int_sysctl(TCP_FO_SYSCTL); if (saved_tcp_fo < 0) diff --git a/tools/testing/selftests/bpf/prog_tests/send_signal.c b/tools/testing/selftests/bpf/prog_tests/send_signal.c index 7043e6ded0e6..920aee41bd58 100644 --- a/tools/testing/selftests/bpf/prog_tests/send_signal.c +++ b/tools/testing/selftests/bpf/prog_tests/send_signal.c @@ -1,38 +1,36 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> +#include <sys/time.h> +#include <sys/resource.h> #include "test_send_signal_kern.skel.h" -static volatile int sigusr1_received = 0; +static int sigusr1_received; static void sigusr1_handler(int signum) { - sigusr1_received++; + sigusr1_received = 1; } static void test_send_signal_common(struct perf_event_attr *attr, - bool signal_thread, - const char *test_name) + bool signal_thread) { struct test_send_signal_kern *skel; int pipe_c2p[2], pipe_p2c[2]; int err = -1, pmu_fd = -1; - __u32 duration = 0; char buf[256]; pid_t pid; - if (CHECK(pipe(pipe_c2p), test_name, - "pipe pipe_c2p error: %s\n", strerror(errno))) + if (!ASSERT_OK(pipe(pipe_c2p), "pipe_c2p")) return; - if (CHECK(pipe(pipe_p2c), test_name, - "pipe pipe_p2c error: %s\n", strerror(errno))) { + if (!ASSERT_OK(pipe(pipe_p2c), "pipe_p2c")) { close(pipe_c2p[0]); close(pipe_c2p[1]); return; } pid = fork(); - if (CHECK(pid < 0, test_name, "fork error: %s\n", strerror(errno))) { + if (!ASSERT_GE(pid, 0, "fork")) { close(pipe_c2p[0]); close(pipe_c2p[1]); close(pipe_p2c[0]); @@ -41,26 +39,47 @@ static void test_send_signal_common(struct perf_event_attr *attr, } if (pid == 0) { + int old_prio; + volatile int j = 0; + /* install signal handler and notify parent */ - signal(SIGUSR1, sigusr1_handler); + ASSERT_NEQ(signal(SIGUSR1, sigusr1_handler), SIG_ERR, "signal"); close(pipe_c2p[0]); /* close read */ close(pipe_p2c[1]); /* close write */ + /* boost with a high priority so we got a higher chance + * that if an interrupt happens, the underlying task + * is this process. + */ + errno = 0; + old_prio = getpriority(PRIO_PROCESS, 0); + ASSERT_OK(errno, "getpriority"); + ASSERT_OK(setpriority(PRIO_PROCESS, 0, -20), "setpriority"); + /* notify parent signal handler is installed */ - CHECK(write(pipe_c2p[1], buf, 1) != 1, "pipe_write", "err %d\n", -errno); + ASSERT_EQ(write(pipe_c2p[1], buf, 1), 1, "pipe_write"); /* make sure parent enabled bpf program to send_signal */ - CHECK(read(pipe_p2c[0], buf, 1) != 1, "pipe_read", "err %d\n", -errno); + ASSERT_EQ(read(pipe_p2c[0], buf, 1), 1, "pipe_read"); /* wait a little for signal handler */ - sleep(1); + for (int i = 0; i < 1000000000 && !sigusr1_received; i++) { + j /= i + j + 1; + if (!attr) + /* trigger the nanosleep tracepoint program. */ + usleep(1); + } buf[0] = sigusr1_received ? '2' : '0'; - CHECK(write(pipe_c2p[1], buf, 1) != 1, "pipe_write", "err %d\n", -errno); + ASSERT_EQ(sigusr1_received, 1, "sigusr1_received"); + ASSERT_EQ(write(pipe_c2p[1], buf, 1), 1, "pipe_write"); /* wait for parent notification and exit */ - CHECK(read(pipe_p2c[0], buf, 1) != 1, "pipe_read", "err %d\n", -errno); + ASSERT_EQ(read(pipe_p2c[0], buf, 1), 1, "pipe_read"); + + /* restore the old priority */ + ASSERT_OK(setpriority(PRIO_PROCESS, 0, old_prio), "setpriority"); close(pipe_c2p[1]); close(pipe_p2c[0]); @@ -71,55 +90,53 @@ static void test_send_signal_common(struct perf_event_attr *attr, close(pipe_p2c[0]); /* close read */ skel = test_send_signal_kern__open_and_load(); - if (CHECK(!skel, "skel_open_and_load", "skeleton open_and_load failed\n")) + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) goto skel_open_load_failure; if (!attr) { err = test_send_signal_kern__attach(skel); - if (CHECK(err, "skel_attach", "skeleton attach failed\n")) { + if (!ASSERT_OK(err, "skel_attach")) { err = -1; goto destroy_skel; } } else { - pmu_fd = syscall(__NR_perf_event_open, attr, pid, -1, + pmu_fd = syscall(__NR_perf_event_open, attr, pid, -1 /* cpu */, -1 /* group id */, 0 /* flags */); - if (CHECK(pmu_fd < 0, test_name, "perf_event_open error: %s\n", - strerror(errno))) { + if (!ASSERT_GE(pmu_fd, 0, "perf_event_open")) { err = -1; goto destroy_skel; } skel->links.send_signal_perf = bpf_program__attach_perf_event(skel->progs.send_signal_perf, pmu_fd); - if (CHECK(IS_ERR(skel->links.send_signal_perf), "attach_perf_event", - "err %ld\n", PTR_ERR(skel->links.send_signal_perf))) + if (!ASSERT_OK_PTR(skel->links.send_signal_perf, "attach_perf_event")) goto disable_pmu; } /* wait until child signal handler installed */ - CHECK(read(pipe_c2p[0], buf, 1) != 1, "pipe_read", "err %d\n", -errno); + ASSERT_EQ(read(pipe_c2p[0], buf, 1), 1, "pipe_read"); /* trigger the bpf send_signal */ - skel->bss->pid = pid; - skel->bss->sig = SIGUSR1; skel->bss->signal_thread = signal_thread; + skel->bss->sig = SIGUSR1; + skel->bss->pid = pid; /* notify child that bpf program can send_signal now */ - CHECK(write(pipe_p2c[1], buf, 1) != 1, "pipe_write", "err %d\n", -errno); + ASSERT_EQ(write(pipe_p2c[1], buf, 1), 1, "pipe_write"); /* wait for result */ err = read(pipe_c2p[0], buf, 1); - if (CHECK(err < 0, test_name, "reading pipe error: %s\n", strerror(errno))) + if (!ASSERT_GE(err, 0, "reading pipe")) goto disable_pmu; - if (CHECK(err == 0, test_name, "reading pipe error: size 0\n")) { + if (!ASSERT_GT(err, 0, "reading pipe error: size 0")) { err = -1; goto disable_pmu; } - CHECK(buf[0] != '2', test_name, "incorrect result\n"); + ASSERT_EQ(buf[0], '2', "incorrect result"); /* notify child safe to exit */ - CHECK(write(pipe_p2c[1], buf, 1) != 1, "pipe_write", "err %d\n", -errno); + ASSERT_EQ(write(pipe_p2c[1], buf, 1), 1, "pipe_write"); disable_pmu: close(pmu_fd); @@ -133,7 +150,7 @@ skel_open_load_failure: static void test_send_signal_tracepoint(bool signal_thread) { - test_send_signal_common(NULL, signal_thread, "tracepoint"); + test_send_signal_common(NULL, signal_thread); } static void test_send_signal_perf(bool signal_thread) @@ -144,7 +161,7 @@ static void test_send_signal_perf(bool signal_thread) .config = PERF_COUNT_SW_CPU_CLOCK, }; - test_send_signal_common(&attr, signal_thread, "perf_sw_event"); + test_send_signal_common(&attr, signal_thread); } static void test_send_signal_nmi(bool signal_thread) @@ -162,7 +179,7 @@ static void test_send_signal_nmi(bool signal_thread) pmu_fd = syscall(__NR_perf_event_open, &attr, 0 /* pid */, -1 /* cpu */, -1 /* group_fd */, 0 /* flags */); if (pmu_fd == -1) { - if (errno == ENOENT) { + if (errno == ENOENT || errno == EOPNOTSUPP) { printf("%s:SKIP:no PERF_COUNT_HW_CPU_CYCLES\n", __func__); test__skip(); @@ -173,7 +190,7 @@ static void test_send_signal_nmi(bool signal_thread) close(pmu_fd); } - test_send_signal_common(&attr, signal_thread, "perf_hw_event"); + test_send_signal_common(&attr, signal_thread); } void test_send_signal(void) diff --git a/tools/testing/selftests/bpf/prog_tests/send_signal_sched_switch.c b/tools/testing/selftests/bpf/prog_tests/send_signal_sched_switch.c index 189a34a7addb..15dacfcfaa6d 100644 --- a/tools/testing/selftests/bpf/prog_tests/send_signal_sched_switch.c +++ b/tools/testing/selftests/bpf/prog_tests/send_signal_sched_switch.c @@ -25,7 +25,8 @@ static void *worker(void *p) return NULL; } -void test_send_signal_sched_switch(void) +/* NOTE: cause events loss */ +void serial_test_send_signal_sched_switch(void) { struct test_send_signal_kern *skel; pthread_t threads[THREAD_COUNT]; diff --git a/tools/testing/selftests/bpf/prog_tests/setget_sockopt.c b/tools/testing/selftests/bpf/prog_tests/setget_sockopt.c new file mode 100644 index 000000000000..7d4a9b3d3722 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/setget_sockopt.c @@ -0,0 +1,198 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) Meta Platforms, Inc. and affiliates. */ + +#define _GNU_SOURCE +#include <sched.h> +#include <linux/socket.h> +#include <linux/tls.h> +#include <net/if.h> + +#include "test_progs.h" +#include "cgroup_helpers.h" +#include "network_helpers.h" + +#include "setget_sockopt.skel.h" + +#define CG_NAME "/setget-sockopt-test" + +static const char addr4_str[] = "127.0.0.1"; +static const char addr6_str[] = "::1"; +static struct setget_sockopt *skel; +static int cg_fd; + +static int create_netns(void) +{ + if (!ASSERT_OK(unshare(CLONE_NEWNET), "create netns")) + return -1; + + if (!ASSERT_OK(system("ip link set dev lo up"), "set lo up")) + return -1; + + if (!ASSERT_OK(system("ip link add dev binddevtest1 type veth peer name binddevtest2"), + "add veth")) + return -1; + + if (!ASSERT_OK(system("ip link set dev binddevtest1 up"), + "bring veth up")) + return -1; + + return 0; +} + +static void test_tcp(int family) +{ + struct setget_sockopt__bss *bss = skel->bss; + int sfd, cfd; + + memset(bss, 0, sizeof(*bss)); + + sfd = start_server(family, SOCK_STREAM, + family == AF_INET6 ? addr6_str : addr4_str, 0, 0); + if (!ASSERT_GE(sfd, 0, "start_server")) + return; + + cfd = connect_to_fd(sfd, 0); + if (!ASSERT_GE(cfd, 0, "connect_to_fd_server")) { + close(sfd); + return; + } + close(sfd); + close(cfd); + + ASSERT_EQ(bss->nr_listen, 1, "nr_listen"); + ASSERT_EQ(bss->nr_connect, 1, "nr_connect"); + ASSERT_EQ(bss->nr_active, 1, "nr_active"); + ASSERT_EQ(bss->nr_passive, 1, "nr_passive"); + ASSERT_EQ(bss->nr_socket_post_create, 2, "nr_socket_post_create"); + ASSERT_EQ(bss->nr_binddev, 2, "nr_bind"); +} + +static void test_udp(int family) +{ + struct setget_sockopt__bss *bss = skel->bss; + int sfd; + + memset(bss, 0, sizeof(*bss)); + + sfd = start_server(family, SOCK_DGRAM, + family == AF_INET6 ? addr6_str : addr4_str, 0, 0); + if (!ASSERT_GE(sfd, 0, "start_server")) + return; + close(sfd); + + ASSERT_GE(bss->nr_socket_post_create, 1, "nr_socket_post_create"); + ASSERT_EQ(bss->nr_binddev, 1, "nr_bind"); +} + +static void test_ktls(int family) +{ + struct tls12_crypto_info_aes_gcm_128 aes128; + struct setget_sockopt__bss *bss = skel->bss; + int cfd = -1, sfd = -1, fd = -1, ret; + char buf; + + memset(bss, 0, sizeof(*bss)); + + sfd = start_server(family, SOCK_STREAM, + family == AF_INET6 ? addr6_str : addr4_str, 0, 0); + if (!ASSERT_GE(sfd, 0, "start_server")) + return; + fd = connect_to_fd(sfd, 0); + if (!ASSERT_GE(fd, 0, "connect_to_fd")) + goto err_out; + + cfd = accept(sfd, NULL, 0); + if (!ASSERT_GE(cfd, 0, "accept")) + goto err_out; + + close(sfd); + sfd = -1; + + /* Setup KTLS */ + ret = setsockopt(fd, IPPROTO_TCP, TCP_ULP, "tls", sizeof("tls")); + if (!ASSERT_OK(ret, "setsockopt")) + goto err_out; + ret = setsockopt(cfd, IPPROTO_TCP, TCP_ULP, "tls", sizeof("tls")); + if (!ASSERT_OK(ret, "setsockopt")) + goto err_out; + + memset(&aes128, 0, sizeof(aes128)); + aes128.info.version = TLS_1_2_VERSION; + aes128.info.cipher_type = TLS_CIPHER_AES_GCM_128; + + ret = setsockopt(fd, SOL_TLS, TLS_TX, &aes128, sizeof(aes128)); + if (!ASSERT_OK(ret, "setsockopt")) + goto err_out; + + ret = setsockopt(cfd, SOL_TLS, TLS_RX, &aes128, sizeof(aes128)); + if (!ASSERT_OK(ret, "setsockopt")) + goto err_out; + + /* KTLS is enabled */ + + close(fd); + /* At this point, the cfd socket is at the CLOSE_WAIT state + * and still run TLS protocol. The test for + * BPF_TCP_CLOSE_WAIT should be run at this point. + */ + ret = read(cfd, &buf, sizeof(buf)); + ASSERT_EQ(ret, 0, "read"); + close(cfd); + + ASSERT_EQ(bss->nr_listen, 1, "nr_listen"); + ASSERT_EQ(bss->nr_connect, 1, "nr_connect"); + ASSERT_EQ(bss->nr_active, 1, "nr_active"); + ASSERT_EQ(bss->nr_passive, 1, "nr_passive"); + ASSERT_EQ(bss->nr_socket_post_create, 2, "nr_socket_post_create"); + ASSERT_EQ(bss->nr_binddev, 2, "nr_bind"); + ASSERT_EQ(bss->nr_fin_wait1, 1, "nr_fin_wait1"); + return; + +err_out: + close(fd); + close(cfd); + close(sfd); +} + +void test_setget_sockopt(void) +{ + cg_fd = test__join_cgroup(CG_NAME); + if (cg_fd < 0) + return; + + if (create_netns()) + goto done; + + skel = setget_sockopt__open(); + if (!ASSERT_OK_PTR(skel, "open skel")) + goto done; + + strcpy(skel->rodata->veth, "binddevtest1"); + skel->rodata->veth_ifindex = if_nametoindex("binddevtest1"); + if (!ASSERT_GT(skel->rodata->veth_ifindex, 0, "if_nametoindex")) + goto done; + + if (!ASSERT_OK(setget_sockopt__load(skel), "load skel")) + goto done; + + skel->links.skops_sockopt = + bpf_program__attach_cgroup(skel->progs.skops_sockopt, cg_fd); + if (!ASSERT_OK_PTR(skel->links.skops_sockopt, "attach cgroup")) + goto done; + + skel->links.socket_post_create = + bpf_program__attach_cgroup(skel->progs.socket_post_create, cg_fd); + if (!ASSERT_OK_PTR(skel->links.socket_post_create, "attach_cgroup")) + goto done; + + test_tcp(AF_INET6); + test_tcp(AF_INET); + test_udp(AF_INET6); + test_udp(AF_INET); + test_ktls(AF_INET6); + test_ktls(AF_INET); + +done: + setget_sockopt__destroy(skel); + close(cg_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/signal_pending.c b/tools/testing/selftests/bpf/prog_tests/signal_pending.c index dfcbddcbe4d3..70b49da5ca0a 100644 --- a/tools/testing/selftests/bpf/prog_tests/signal_pending.c +++ b/tools/testing/selftests/bpf/prog_tests/signal_pending.c @@ -13,36 +13,37 @@ static void test_signal_pending_by_type(enum bpf_prog_type prog_type) struct itimerval timeo = { .it_value.tv_usec = 100000, /* 100ms */ }; - __u32 duration = 0, retval; int prog_fd; int err; int i; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 0xffffffff, + ); for (i = 0; i < ARRAY_SIZE(prog); i++) prog[i] = BPF_ALU64_IMM(BPF_MOV, BPF_REG_0, 0); prog[ARRAY_SIZE(prog) - 1] = BPF_EXIT_INSN(); - prog_fd = bpf_load_program(prog_type, prog, ARRAY_SIZE(prog), + prog_fd = bpf_test_load_program(prog_type, prog, ARRAY_SIZE(prog), "GPL", 0, NULL, 0); - CHECK(prog_fd < 0, "test-run", "errno %d\n", errno); + ASSERT_GE(prog_fd, 0, "test-run load"); err = sigaction(SIGALRM, &sigalrm_action, NULL); - CHECK(err, "test-run-signal-sigaction", "errno %d\n", errno); + ASSERT_OK(err, "test-run-signal-sigaction"); err = setitimer(ITIMER_REAL, &timeo, NULL); - CHECK(err, "test-run-signal-timer", "errno %d\n", errno); + ASSERT_OK(err, "test-run-signal-timer"); - err = bpf_prog_test_run(prog_fd, 0xffffffff, &pkt_v4, sizeof(pkt_v4), - NULL, NULL, &retval, &duration); - CHECK(duration > 500000000, /* 500ms */ - "test-run-signal-duration", - "duration %dns > 500ms\n", - duration); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_LE(topts.duration, 500000000 /* 500ms */, + "test-run-signal-duration"); signal(SIGALRM, SIG_DFL); } -void test_signal_pending(enum bpf_prog_type prog_type) +void test_signal_pending(void) { test_signal_pending_by_type(BPF_PROG_TYPE_SOCKET_FILTER); test_signal_pending_by_type(BPF_PROG_TYPE_FLOW_DISSECTOR); diff --git a/tools/testing/selftests/bpf/prog_tests/sk_assign.c b/tools/testing/selftests/bpf/prog_tests/sk_assign.c index 47fa04adc147..0b9bd1d6f7cc 100644 --- a/tools/testing/selftests/bpf/prog_tests/sk_assign.c +++ b/tools/testing/selftests/bpf/prog_tests/sk_assign.c @@ -15,6 +15,7 @@ #include <unistd.h> #include "test_progs.h" +#include "network_helpers.h" #define BIND_PORT 1234 #define CONNECT_PORT 4321 @@ -22,14 +23,28 @@ #define NS_SELF "/proc/self/ns/net" #define SERVER_MAP_PATH "/sys/fs/bpf/tc/globals/server_map" -static const struct timeval timeo_sec = { .tv_sec = 3 }; -static const size_t timeo_optlen = sizeof(timeo_sec); static int stop, duration; static bool configure_stack(void) { + char tc_version[128]; char tc_cmd[BUFSIZ]; + char *prog; + FILE *tc; + + /* Check whether tc is built with libbpf. */ + tc = popen("tc -V", "r"); + if (CHECK_FAIL(!tc)) + return false; + if (CHECK_FAIL(!fgets(tc_version, sizeof(tc_version), tc))) + return false; + if (strstr(tc_version, ", libbpf ")) + prog = "test_sk_assign_libbpf.bpf.o"; + else + prog = "test_sk_assign.bpf.o"; + if (CHECK_FAIL(pclose(tc))) + return false; /* Move to a new networking namespace */ if (CHECK_FAIL(unshare(CLONE_NEWNET))) @@ -46,10 +61,10 @@ configure_stack(void) /* Load qdisc, BPF program */ if (CHECK_FAIL(system("tc qdisc add dev lo clsact"))) return false; - sprintf(tc_cmd, "%s %s %s %s", "tc filter add dev lo ingress bpf", - "direct-action object-file ./test_sk_assign.o", - "section classifier/sk_assign_test", - (env.verbosity < VERBOSE_VERY) ? " 2>/dev/null" : ""); + sprintf(tc_cmd, "%s %s %s %s %s", "tc filter add dev lo ingress bpf", + "direct-action object-file", prog, + "section tc", + (env.verbosity < VERBOSE_VERY) ? " 2>/dev/null" : "verbose"); if (CHECK(system(tc_cmd), "BPF load failed;", "run with -vv for more info\n")) return false; @@ -57,52 +72,6 @@ configure_stack(void) return true; } -static int -start_server(const struct sockaddr *addr, socklen_t len, int type) -{ - int fd; - - fd = socket(addr->sa_family, type, 0); - if (CHECK_FAIL(fd == -1)) - goto out; - if (CHECK_FAIL(setsockopt(fd, SOL_SOCKET, SO_RCVTIMEO, &timeo_sec, - timeo_optlen))) - goto close_out; - if (CHECK_FAIL(bind(fd, addr, len) == -1)) - goto close_out; - if (type == SOCK_STREAM && CHECK_FAIL(listen(fd, 128) == -1)) - goto close_out; - - goto out; -close_out: - close(fd); - fd = -1; -out: - return fd; -} - -static int -connect_to_server(const struct sockaddr *addr, socklen_t len, int type) -{ - int fd = -1; - - fd = socket(addr->sa_family, type, 0); - if (CHECK_FAIL(fd == -1)) - goto out; - if (CHECK_FAIL(setsockopt(fd, SOL_SOCKET, SO_SNDTIMEO, &timeo_sec, - timeo_optlen))) - goto close_out; - if (CHECK_FAIL(connect(fd, addr, len))) - goto close_out; - - goto out; -close_out: - close(fd); - fd = -1; -out: - return fd; -} - static in_port_t get_port(int fd) { @@ -129,15 +98,12 @@ get_port(int fd) static ssize_t rcv_msg(int srv_client, int type) { - struct sockaddr_storage ss; char buf[BUFSIZ]; - socklen_t slen; if (type == SOCK_STREAM) return read(srv_client, &buf, sizeof(buf)); else - return recvfrom(srv_client, &buf, sizeof(buf), 0, - (struct sockaddr *)&ss, &slen); + return recvfrom(srv_client, &buf, sizeof(buf), 0, NULL, NULL); } static int @@ -148,7 +114,7 @@ run_test(int server_fd, const struct sockaddr *addr, socklen_t len, int type) in_port_t port; int ret = 1; - client = connect_to_server(addr, len, type); + client = connect_to_addr(type, (struct sockaddr_storage *)addr, len, NULL); if (client == -1) { perror("Cannot connect to server"); goto out; @@ -265,9 +231,10 @@ void test_sk_assign(void) TEST("ipv6 udp port redir", AF_INET6, SOCK_DGRAM, false), TEST("ipv6 udp addr redir", AF_INET6, SOCK_DGRAM, true), }; - int server = -1; + __s64 server = -1; int server_map; int self_net; + int i; self_net = open(NS_SELF, O_RDONLY); if (CHECK_FAIL(self_net < 0)) { @@ -286,7 +253,7 @@ void test_sk_assign(void) goto cleanup; } - for (int i = 0; i < ARRAY_SIZE(tests) && !READ_ONCE(stop); i++) { + for (i = 0; i < ARRAY_SIZE(tests) && !READ_ONCE(stop); i++) { struct test_sk_cfg *test = &tests[i]; const struct sockaddr *addr; const int zero = 0; @@ -296,7 +263,9 @@ void test_sk_assign(void) continue; prepare_addr(test->addr, test->family, BIND_PORT, false); addr = (const struct sockaddr *)test->addr; - server = start_server(addr, test->len, test->type); + server = start_server_addr(test->type, + (const struct sockaddr_storage *)addr, + test->len, NULL); if (server == -1) goto close; diff --git a/tools/testing/selftests/bpf/prog_tests/sk_lookup.c b/tools/testing/selftests/bpf/prog_tests/sk_lookup.c index 9ff0412e1fd3..597d0467a926 100644 --- a/tools/testing/selftests/bpf/prog_tests/sk_lookup.c +++ b/tools/testing/selftests/bpf/prog_tests/sk_lookup.c @@ -30,7 +30,6 @@ #include <bpf/bpf.h> #include "test_progs.h" -#include "bpf_rlimit.h" #include "bpf_util.h" #include "cgroup_helpers.h" #include "network_helpers.h" @@ -241,6 +240,48 @@ fail: return -1; } +static __u64 socket_cookie(int fd) +{ + __u64 cookie; + socklen_t cookie_len = sizeof(cookie); + + if (CHECK(getsockopt(fd, SOL_SOCKET, SO_COOKIE, &cookie, &cookie_len) < 0, + "getsockopt(SO_COOKIE)", "%s\n", strerror(errno))) + return 0; + return cookie; +} + +static int fill_sk_lookup_ctx(struct bpf_sk_lookup *ctx, const char *local_ip, __u16 local_port, + const char *remote_ip, __u16 remote_port) +{ + void *local, *remote; + int err; + + memset(ctx, 0, sizeof(*ctx)); + ctx->local_port = local_port; + ctx->remote_port = htons(remote_port); + + if (is_ipv6(local_ip)) { + ctx->family = AF_INET6; + local = &ctx->local_ip6[0]; + remote = &ctx->remote_ip6[0]; + } else { + ctx->family = AF_INET; + local = &ctx->local_ip4; + remote = &ctx->remote_ip4; + } + + err = inet_pton(ctx->family, local_ip, local); + if (CHECK(err != 1, "inet_pton", "local_ip failed\n")) + return 1; + + err = inet_pton(ctx->family, remote_ip, remote); + if (CHECK(err != 1, "inet_pton", "remote_ip failed\n")) + return 1; + + return 0; +} + static int send_byte(int fd) { ssize_t n; @@ -438,7 +479,7 @@ static struct bpf_link *attach_lookup_prog(struct bpf_program *prog) } link = bpf_program__attach_netns(prog, net_fd); - if (CHECK(IS_ERR(link), "bpf_program__attach_netns", "failed\n")) { + if (!ASSERT_OK_PTR(link, "bpf_program__attach_netns")) { errno = -PTR_ERR(link); log_err("failed to attach program '%s' to netns", bpf_program__name(prog)); @@ -556,7 +597,7 @@ close: static void run_lookup_prog(const struct test *t) { - int server_fds[MAX_SERVERS] = { -1 }; + int server_fds[] = { [0 ... MAX_SERVERS - 1] = -1 }; int client_fd, reuse_conn_fd = -1; struct bpf_link *lookup_link; int i, err; @@ -895,6 +936,37 @@ static void test_drop_on_lookup(struct test_sk_lookup *skel) .connect_to = { EXT_IP6, EXT_PORT }, .listen_at = { EXT_IP6, INT_PORT }, }, + /* The program will drop on success, meaning that the ifindex + * was 1. + */ + { + .desc = "TCP IPv4 drop on valid ifindex", + .lookup_prog = skel->progs.check_ifindex, + .sotype = SOCK_STREAM, + .connect_to = { EXT_IP4, EXT_PORT }, + .listen_at = { EXT_IP4, EXT_PORT }, + }, + { + .desc = "TCP IPv6 drop on valid ifindex", + .lookup_prog = skel->progs.check_ifindex, + .sotype = SOCK_STREAM, + .connect_to = { EXT_IP6, EXT_PORT }, + .listen_at = { EXT_IP6, EXT_PORT }, + }, + { + .desc = "UDP IPv4 drop on valid ifindex", + .lookup_prog = skel->progs.check_ifindex, + .sotype = SOCK_DGRAM, + .connect_to = { EXT_IP4, EXT_PORT }, + .listen_at = { EXT_IP4, EXT_PORT }, + }, + { + .desc = "UDP IPv6 drop on valid ifindex", + .lookup_prog = skel->progs.check_ifindex, + .sotype = SOCK_DGRAM, + .connect_to = { EXT_IP6, EXT_PORT }, + .listen_at = { EXT_IP6, EXT_PORT }, + }, }; const struct test *t; @@ -1009,18 +1081,27 @@ static void test_drop_on_reuseport(struct test_sk_lookup *skel) static void run_sk_assign(struct test_sk_lookup *skel, struct bpf_program *lookup_prog, - const char *listen_ip, const char *connect_ip) + const char *remote_ip, const char *local_ip) { - int client_fd, peer_fd, server_fds[MAX_SERVERS] = { -1 }; - struct bpf_link *lookup_link; + int server_fds[] = { [0 ... MAX_SERVERS - 1] = -1 }; + struct bpf_sk_lookup ctx; + __u64 server_cookie; int i, err; - lookup_link = attach_lookup_prog(lookup_prog); - if (!lookup_link) + DECLARE_LIBBPF_OPTS(bpf_test_run_opts, opts, + .ctx_in = &ctx, + .ctx_size_in = sizeof(ctx), + .ctx_out = &ctx, + .ctx_size_out = sizeof(ctx), + ); + + if (fill_sk_lookup_ctx(&ctx, local_ip, EXT_PORT, remote_ip, INT_PORT)) return; + ctx.protocol = IPPROTO_TCP; + for (i = 0; i < ARRAY_SIZE(server_fds); i++) { - server_fds[i] = make_server(SOCK_STREAM, listen_ip, 0, NULL); + server_fds[i] = make_server(SOCK_STREAM, local_ip, 0, NULL); if (server_fds[i] < 0) goto close_servers; @@ -1030,23 +1111,25 @@ static void run_sk_assign(struct test_sk_lookup *skel, goto close_servers; } - client_fd = make_client(SOCK_STREAM, connect_ip, EXT_PORT); - if (client_fd < 0) + server_cookie = socket_cookie(server_fds[SERVER_B]); + if (!server_cookie) + return; + + err = bpf_prog_test_run_opts(bpf_program__fd(lookup_prog), &opts); + if (CHECK(err, "test_run", "failed with error %d\n", errno)) goto close_servers; - peer_fd = accept(server_fds[SERVER_B], NULL, NULL); - if (CHECK(peer_fd < 0, "accept", "failed\n")) - goto close_client; + if (CHECK(ctx.cookie == 0, "ctx.cookie", "no socket selected\n")) + goto close_servers; + + CHECK(ctx.cookie != server_cookie, "ctx.cookie", + "selected sk %llu instead of %llu\n", ctx.cookie, server_cookie); - close(peer_fd); -close_client: - close(client_fd); close_servers: for (i = 0; i < ARRAY_SIZE(server_fds); i++) { if (server_fds[i] != -1) close(server_fds[i]); } - bpf_link__destroy(lookup_link); } static void run_sk_assign_v4(struct test_sk_lookup *skel, diff --git a/tools/testing/selftests/bpf/prog_tests/sk_storage_omem_uncharge.c b/tools/testing/selftests/bpf/prog_tests/sk_storage_omem_uncharge.c new file mode 100644 index 000000000000..f35852d245e3 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/sk_storage_omem_uncharge.c @@ -0,0 +1,56 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Facebook */ +#include <test_progs.h> +#include <bpf/libbpf.h> +#include <sys/types.h> +#include <sys/socket.h> +#include "sk_storage_omem_uncharge.skel.h" + +void test_sk_storage_omem_uncharge(void) +{ + struct sk_storage_omem_uncharge *skel; + int sk_fd = -1, map_fd, err, value; + socklen_t optlen; + + skel = sk_storage_omem_uncharge__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel open_and_load")) + return; + map_fd = bpf_map__fd(skel->maps.sk_storage); + + /* A standalone socket not binding to addr:port, + * so nentns is not needed. + */ + sk_fd = socket(AF_INET6, SOCK_STREAM, 0); + if (!ASSERT_GE(sk_fd, 0, "socket")) + goto done; + + optlen = sizeof(skel->bss->cookie); + err = getsockopt(sk_fd, SOL_SOCKET, SO_COOKIE, &skel->bss->cookie, &optlen); + if (!ASSERT_OK(err, "getsockopt(SO_COOKIE)")) + goto done; + + value = 0; + err = bpf_map_update_elem(map_fd, &sk_fd, &value, 0); + if (!ASSERT_OK(err, "bpf_map_update_elem(value=0)")) + goto done; + + value = 0xdeadbeef; + err = bpf_map_update_elem(map_fd, &sk_fd, &value, 0); + if (!ASSERT_OK(err, "bpf_map_update_elem(value=0xdeadbeef)")) + goto done; + + err = sk_storage_omem_uncharge__attach(skel); + if (!ASSERT_OK(err, "attach")) + goto done; + + close(sk_fd); + sk_fd = -1; + + ASSERT_EQ(skel->bss->cookie_found, 2, "cookie_found"); + ASSERT_EQ(skel->bss->omem, 0, "omem"); + +done: + sk_storage_omem_uncharge__destroy(skel); + if (sk_fd != -1) + close(sk_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/sk_storage_tracing.c b/tools/testing/selftests/bpf/prog_tests/sk_storage_tracing.c new file mode 100644 index 000000000000..547ae53cde74 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/sk_storage_tracing.c @@ -0,0 +1,135 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ + +#include <sys/types.h> +#include <bpf/bpf.h> +#include <bpf/libbpf.h> +#include "test_progs.h" +#include "network_helpers.h" +#include "test_sk_storage_trace_itself.skel.h" +#include "test_sk_storage_tracing.skel.h" + +#define LO_ADDR6 "::1" +#define TEST_COMM "test_progs" + +struct sk_stg { + __u32 pid; + __u32 last_notclose_state; + char comm[16]; +}; + +static struct test_sk_storage_tracing *skel; +static __u32 duration; +static pid_t my_pid; + +static int check_sk_stg(int sk_fd, __u32 expected_state) +{ + struct sk_stg sk_stg; + int err; + + err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.sk_stg_map), &sk_fd, + &sk_stg); + if (!ASSERT_OK(err, "map_lookup(sk_stg_map)")) + return -1; + + if (!ASSERT_EQ(sk_stg.last_notclose_state, expected_state, + "last_notclose_state")) + return -1; + + if (!ASSERT_EQ(sk_stg.pid, my_pid, "pid")) + return -1; + + if (!ASSERT_STREQ(sk_stg.comm, skel->bss->task_comm, "task_comm")) + return -1; + + return 0; +} + +static void do_test(void) +{ + int listen_fd = -1, passive_fd = -1, active_fd = -1, value = 1, err; + char abyte; + + listen_fd = start_server(AF_INET6, SOCK_STREAM, LO_ADDR6, 0, 0); + if (CHECK(listen_fd == -1, "start_server", + "listen_fd:%d errno:%d\n", listen_fd, errno)) + return; + + active_fd = connect_to_fd(listen_fd, 0); + if (CHECK(active_fd == -1, "connect_to_fd", "active_fd:%d errno:%d\n", + active_fd, errno)) + goto out; + + err = bpf_map_update_elem(bpf_map__fd(skel->maps.del_sk_stg_map), + &active_fd, &value, 0); + if (!ASSERT_OK(err, "map_update(del_sk_stg_map)")) + goto out; + + passive_fd = accept(listen_fd, NULL, 0); + if (CHECK(passive_fd == -1, "accept", "passive_fd:%d errno:%d\n", + passive_fd, errno)) + goto out; + + shutdown(active_fd, SHUT_WR); + err = read(passive_fd, &abyte, 1); + if (!ASSERT_OK(err, "read(passive_fd)")) + goto out; + + shutdown(passive_fd, SHUT_WR); + err = read(active_fd, &abyte, 1); + if (!ASSERT_OK(err, "read(active_fd)")) + goto out; + + err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.del_sk_stg_map), + &active_fd, &value); + if (!ASSERT_ERR(err, "map_lookup(del_sk_stg_map)")) + goto out; + + err = check_sk_stg(listen_fd, BPF_TCP_LISTEN); + if (!ASSERT_OK(err, "listen_fd sk_stg")) + goto out; + + err = check_sk_stg(active_fd, BPF_TCP_FIN_WAIT2); + if (!ASSERT_OK(err, "active_fd sk_stg")) + goto out; + + err = check_sk_stg(passive_fd, BPF_TCP_LAST_ACK); + ASSERT_OK(err, "passive_fd sk_stg"); + +out: + if (active_fd != -1) + close(active_fd); + if (passive_fd != -1) + close(passive_fd); + if (listen_fd != -1) + close(listen_fd); +} + +void serial_test_sk_storage_tracing(void) +{ + struct test_sk_storage_trace_itself *skel_itself; + int err; + + my_pid = getpid(); + + skel_itself = test_sk_storage_trace_itself__open_and_load(); + + if (!ASSERT_NULL(skel_itself, "test_sk_storage_trace_itself")) { + test_sk_storage_trace_itself__destroy(skel_itself); + return; + } + + skel = test_sk_storage_tracing__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_sk_storage_tracing")) + return; + + err = test_sk_storage_tracing__attach(skel); + if (!ASSERT_OK(err, "test_sk_storage_tracing__attach")) { + test_sk_storage_tracing__destroy(skel); + return; + } + + do_test(); + + test_sk_storage_tracing__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/skb_ctx.c b/tools/testing/selftests/bpf/prog_tests/skb_ctx.c index fafeddaad6a9..33f950e2dae3 100644 --- a/tools/testing/selftests/bpf/prog_tests/skb_ctx.c +++ b/tools/testing/selftests/bpf/prog_tests/skb_ctx.c @@ -11,98 +11,81 @@ void test_skb_ctx(void) .cb[3] = 4, .cb[4] = 5, .priority = 6, + .ingress_ifindex = 11, .ifindex = 1, .tstamp = 7, .wire_len = 100, .gso_segs = 8, .mark = 9, .gso_size = 10, + .hwtstamp = 11, }; - struct bpf_prog_test_run_attr tattr = { + LIBBPF_OPTS(bpf_test_run_opts, tattr, .data_in = &pkt_v4, .data_size_in = sizeof(pkt_v4), .ctx_in = &skb, .ctx_size_in = sizeof(skb), .ctx_out = &skb, .ctx_size_out = sizeof(skb), - }; + ); struct bpf_object *obj; - int err; - int i; + int err, prog_fd, i; - err = bpf_prog_load("./test_skb_ctx.o", BPF_PROG_TYPE_SCHED_CLS, &obj, - &tattr.prog_fd); - if (CHECK_ATTR(err, "load", "err %d errno %d\n", err, errno)) + err = bpf_prog_test_load("./test_skb_ctx.bpf.o", BPF_PROG_TYPE_SCHED_CLS, + &obj, &prog_fd); + if (!ASSERT_OK(err, "load")) return; /* ctx_in != NULL, ctx_size_in == 0 */ tattr.ctx_size_in = 0; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err == 0, "ctx_size_in", "err %d errno %d\n", err, errno); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + ASSERT_NEQ(err, 0, "ctx_size_in"); tattr.ctx_size_in = sizeof(skb); /* ctx_out != NULL, ctx_size_out == 0 */ tattr.ctx_size_out = 0; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err == 0, "ctx_size_out", "err %d errno %d\n", err, errno); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + ASSERT_NEQ(err, 0, "ctx_size_out"); tattr.ctx_size_out = sizeof(skb); /* non-zero [len, tc_index] fields should be rejected*/ skb.len = 1; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err == 0, "len", "err %d errno %d\n", err, errno); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + ASSERT_NEQ(err, 0, "len"); skb.len = 0; skb.tc_index = 1; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err == 0, "tc_index", "err %d errno %d\n", err, errno); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + ASSERT_NEQ(err, 0, "tc_index"); skb.tc_index = 0; /* non-zero [hash, sk] fields should be rejected */ skb.hash = 1; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err == 0, "hash", "err %d errno %d\n", err, errno); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + ASSERT_NEQ(err, 0, "hash"); skb.hash = 0; skb.sk = (struct bpf_sock *)1; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err == 0, "sk", "err %d errno %d\n", err, errno); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + ASSERT_NEQ(err, 0, "sk"); skb.sk = 0; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err != 0 || tattr.retval, - "run", - "err %d errno %d retval %d\n", - err, errno, tattr.retval); - - CHECK_ATTR(tattr.ctx_size_out != sizeof(skb), - "ctx_size_out", - "incorrect output size, want %zu have %u\n", - sizeof(skb), tattr.ctx_size_out); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + ASSERT_OK(err, "test_run"); + ASSERT_OK(tattr.retval, "test_run retval"); + ASSERT_EQ(tattr.ctx_size_out, sizeof(skb), "ctx_size_out"); for (i = 0; i < 5; i++) - CHECK_ATTR(skb.cb[i] != i + 2, - "ctx_out_cb", - "skb->cb[i] == %d, expected %d\n", - skb.cb[i], i + 2); - CHECK_ATTR(skb.priority != 7, - "ctx_out_priority", - "skb->priority == %d, expected %d\n", - skb.priority, 7); - CHECK_ATTR(skb.ifindex != 1, - "ctx_out_ifindex", - "skb->ifindex == %d, expected %d\n", - skb.ifindex, 1); - CHECK_ATTR(skb.tstamp != 8, - "ctx_out_tstamp", - "skb->tstamp == %lld, expected %d\n", - skb.tstamp, 8); - CHECK_ATTR(skb.mark != 10, - "ctx_out_mark", - "skb->mark == %u, expected %d\n", - skb.mark, 10); + ASSERT_EQ(skb.cb[i], i + 2, "ctx_out_cb"); + ASSERT_EQ(skb.priority, 7, "ctx_out_priority"); + ASSERT_EQ(skb.ifindex, 1, "ctx_out_ifindex"); + ASSERT_EQ(skb.ingress_ifindex, 11, "ctx_out_ingress_ifindex"); + ASSERT_EQ(skb.tstamp, 8, "ctx_out_tstamp"); + ASSERT_EQ(skb.mark, 10, "ctx_out_mark"); + + bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/skb_helpers.c b/tools/testing/selftests/bpf/prog_tests/skb_helpers.c index f302ad84a298..f7ee25f290f7 100644 --- a/tools/testing/selftests/bpf/prog_tests/skb_helpers.c +++ b/tools/testing/selftests/bpf/prog_tests/skb_helpers.c @@ -9,22 +9,22 @@ void test_skb_helpers(void) .gso_segs = 8, .gso_size = 10, }; - struct bpf_prog_test_run_attr tattr = { + LIBBPF_OPTS(bpf_test_run_opts, topts, .data_in = &pkt_v4, .data_size_in = sizeof(pkt_v4), .ctx_in = &skb, .ctx_size_in = sizeof(skb), .ctx_out = &skb, .ctx_size_out = sizeof(skb), - }; + ); struct bpf_object *obj; - int err; + int err, prog_fd; - err = bpf_prog_load("./test_skb_helpers.o", BPF_PROG_TYPE_SCHED_CLS, &obj, - &tattr.prog_fd); - if (CHECK_ATTR(err, "load", "err %d errno %d\n", err, errno)) + err = bpf_prog_test_load("./test_skb_helpers.bpf.o", + BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); + if (!ASSERT_OK(err, "load")) return; - err = bpf_prog_test_run_xattr(&tattr); - CHECK_ATTR(err, "len", "err %d errno %d\n", err, errno); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/skb_load_bytes.c b/tools/testing/selftests/bpf/prog_tests/skb_load_bytes.c new file mode 100644 index 000000000000..d7f83c0a40a5 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/skb_load_bytes.c @@ -0,0 +1,45 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> +#include "skb_load_bytes.skel.h" + +void test_skb_load_bytes(void) +{ + struct skb_load_bytes *skel; + int err, prog_fd, test_result; + struct __sk_buff skb = { 0 }; + + LIBBPF_OPTS(bpf_test_run_opts, tattr, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .ctx_in = &skb, + .ctx_size_in = sizeof(skb), + ); + + skel = skb_load_bytes__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + prog_fd = bpf_program__fd(skel->progs.skb_process); + if (!ASSERT_GE(prog_fd, 0, "prog_fd")) + goto out; + + skel->bss->load_offset = (uint32_t)(-1); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + if (!ASSERT_OK(err, "bpf_prog_test_run_opts")) + goto out; + test_result = skel->bss->test_result; + if (!ASSERT_EQ(test_result, -EFAULT, "offset -1")) + goto out; + + skel->bss->load_offset = (uint32_t)10; + err = bpf_prog_test_run_opts(prog_fd, &tattr); + if (!ASSERT_OK(err, "bpf_prog_test_run_opts")) + goto out; + test_result = skel->bss->test_result; + if (!ASSERT_EQ(test_result, 0, "offset 10")) + goto out; + +out: + skb_load_bytes__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/skc_to_unix_sock.c b/tools/testing/selftests/bpf/prog_tests/skc_to_unix_sock.c new file mode 100644 index 000000000000..3eefdfed1db9 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/skc_to_unix_sock.c @@ -0,0 +1,54 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* Copyright (c) 2021 Hengqi Chen */ + +#include <test_progs.h> +#include <sys/un.h> +#include "test_skc_to_unix_sock.skel.h" + +static const char *sock_path = "@skc_to_unix_sock"; + +void test_skc_to_unix_sock(void) +{ + struct test_skc_to_unix_sock *skel; + struct sockaddr_un sockaddr; + int err, sockfd = 0; + + skel = test_skc_to_unix_sock__open(); + if (!ASSERT_OK_PTR(skel, "could not open BPF object")) + return; + + skel->rodata->my_pid = getpid(); + + err = test_skc_to_unix_sock__load(skel); + if (!ASSERT_OK(err, "could not load BPF object")) + goto cleanup; + + err = test_skc_to_unix_sock__attach(skel); + if (!ASSERT_OK(err, "could not attach BPF object")) + goto cleanup; + + /* trigger unix_listen */ + sockfd = socket(AF_UNIX, SOCK_STREAM, 0); + if (!ASSERT_GT(sockfd, 0, "socket failed")) + goto cleanup; + + memset(&sockaddr, 0, sizeof(sockaddr)); + sockaddr.sun_family = AF_UNIX; + strncpy(sockaddr.sun_path, sock_path, strlen(sock_path)); + sockaddr.sun_path[0] = '\0'; + + err = bind(sockfd, (struct sockaddr *)&sockaddr, sizeof(sockaddr)); + if (!ASSERT_OK(err, "bind failed")) + goto cleanup; + + err = listen(sockfd, 1); + if (!ASSERT_OK(err, "listen failed")) + goto cleanup; + + ASSERT_EQ(strcmp(skel->bss->path, sock_path), 0, "bpf_skc_to_unix_sock failed"); + +cleanup: + if (sockfd) + close(sockfd); + test_skc_to_unix_sock__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/skeleton.c b/tools/testing/selftests/bpf/prog_tests/skeleton.c index fe87b77af459..bc6817aee9aa 100644 --- a/tools/testing/selftests/bpf/prog_tests/skeleton.c +++ b/tools/testing/selftests/bpf/prog_tests/skeleton.c @@ -2,6 +2,7 @@ /* Copyright (c) 2019 Facebook */ #include <test_progs.h> +#include <sys/mman.h> struct s { int a; @@ -16,8 +17,14 @@ void test_skeleton(void) struct test_skeleton* skel; struct test_skeleton__bss *bss; struct test_skeleton__data *data; + struct test_skeleton__data_dyn *data_dyn; struct test_skeleton__rodata *rodata; + struct test_skeleton__rodata_dyn *rodata_dyn; struct test_skeleton__kconfig *kcfg; + const void *elf_bytes; + size_t elf_bytes_sz = 0; + void *m; + int i, fd; skel = test_skeleton__open(); if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) @@ -28,7 +35,12 @@ void test_skeleton(void) bss = skel->bss; data = skel->data; + data_dyn = skel->data_dyn; rodata = skel->rodata; + rodata_dyn = skel->rodata_dyn; + + ASSERT_STREQ(bpf_map__name(skel->maps.rodata_dyn), ".rodata.dyn", "rodata_dyn_name"); + ASSERT_STREQ(bpf_map__name(skel->maps.data_dyn), ".data.dyn", "data_dyn_name"); /* validate values are pre-initialized correctly */ CHECK(data->in1 != -1, "in1", "got %d != exp %d\n", data->in1, -1); @@ -44,6 +56,12 @@ void test_skeleton(void) CHECK(rodata->in.in6 != 0, "in6", "got %d != exp %d\n", rodata->in.in6, 0); CHECK(bss->out6 != 0, "out6", "got %d != exp %d\n", bss->out6, 0); + ASSERT_EQ(rodata_dyn->in_dynarr_sz, 0, "in_dynarr_sz"); + for (i = 0; i < 4; i++) + ASSERT_EQ(rodata_dyn->in_dynarr[i], -(i + 1), "in_dynarr"); + for (i = 0; i < 4; i++) + ASSERT_EQ(data_dyn->out_dynarr[i], i + 1, "out_dynarr"); + /* validate we can pre-setup global variables, even in .bss */ data->in1 = 10; data->in2 = 11; @@ -51,6 +69,10 @@ void test_skeleton(void) bss->in4 = 13; rodata->in.in6 = 14; + rodata_dyn->in_dynarr_sz = 4; + for (i = 0; i < 4; i++) + rodata_dyn->in_dynarr[i] = i + 10; + err = test_skeleton__load(skel); if (CHECK(err, "skel_load", "failed to load skeleton: %d\n", err)) goto cleanup; @@ -62,6 +84,10 @@ void test_skeleton(void) CHECK(bss->in4 != 13, "in4", "got %lld != exp %lld\n", bss->in4, 13LL); CHECK(rodata->in.in6 != 14, "in6", "got %d != exp %d\n", rodata->in.in6, 14); + ASSERT_EQ(rodata_dyn->in_dynarr_sz, 4, "in_dynarr_sz"); + for (i = 0; i < 4; i++) + ASSERT_EQ(rodata_dyn->in_dynarr[i], i + 10, "in_dynarr"); + /* now set new values and attach to get them into outX variables */ data->in1 = 1; data->in2 = 2; @@ -71,6 +97,8 @@ void test_skeleton(void) bss->in5.b = 6; kcfg = skel->kconfig; + skel->data_read_mostly->read_mostly_var = 123; + err = test_skeleton__attach(skel); if (CHECK(err, "skel_attach", "skeleton attach failed: %d\n", err)) goto cleanup; @@ -82,10 +110,8 @@ void test_skeleton(void) CHECK(data->out2 != 2, "res2", "got %lld != exp %d\n", data->out2, 2); CHECK(bss->out3 != 3, "res3", "got %d != exp %d\n", (int)bss->out3, 3); CHECK(bss->out4 != 4, "res4", "got %lld != exp %d\n", bss->out4, 4); - CHECK(bss->handler_out5.a != 5, "res5", "got %d != exp %d\n", - bss->handler_out5.a, 5); - CHECK(bss->handler_out5.b != 6, "res6", "got %lld != exp %d\n", - bss->handler_out5.b, 6); + CHECK(bss->out5.a != 5, "res5", "got %d != exp %d\n", bss->out5.a, 5); + CHECK(bss->out5.b != 6, "res6", "got %lld != exp %d\n", bss->out5.b, 6); CHECK(bss->out6 != 14, "res7", "got %d != exp %d\n", bss->out6, 14); CHECK(bss->bpf_syscall != kcfg->CONFIG_BPF_SYSCALL, "ext1", @@ -93,6 +119,24 @@ void test_skeleton(void) CHECK(bss->kern_ver != kcfg->LINUX_KERNEL_VERSION, "ext2", "got %d != exp %d\n", bss->kern_ver, kcfg->LINUX_KERNEL_VERSION); + for (i = 0; i < 4; i++) + ASSERT_EQ(data_dyn->out_dynarr[i], i + 10, "out_dynarr"); + + ASSERT_EQ(skel->bss->out_mostly_var, 123, "out_mostly_var"); + + ASSERT_EQ(bss->huge_arr[ARRAY_SIZE(bss->huge_arr) - 1], 123, "huge_arr"); + + fd = bpf_map__fd(skel->maps.data_non_mmapable); + m = mmap(NULL, getpagesize(), PROT_READ, MAP_SHARED, fd, 0); + if (!ASSERT_EQ(m, MAP_FAILED, "unexpected_mmap_success")) + munmap(m, getpagesize()); + + ASSERT_EQ(bpf_map__map_flags(skel->maps.data_non_mmapable), 0, "non_mmap_flags"); + + elf_bytes = test_skeleton__elf_bytes(&elf_bytes_sz); + ASSERT_OK_PTR(elf_bytes, "elf_bytes"); + ASSERT_GE(elf_bytes_sz, 0, "elf_bytes_sz"); + cleanup: test_skeleton__destroy(skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/snprintf.c b/tools/testing/selftests/bpf/prog_tests/snprintf.c new file mode 100644 index 000000000000..4be6fdb78c6a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/snprintf.c @@ -0,0 +1,127 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Google LLC. */ + +#include <test_progs.h> +#include "test_snprintf.skel.h" +#include "test_snprintf_single.skel.h" + +#define EXP_NUM_OUT "-8 9 96 -424242 1337 DABBAD00" +#define EXP_NUM_RET sizeof(EXP_NUM_OUT) + +#define EXP_IP_OUT "127.000.000.001 0000:0000:0000:0000:0000:0000:0000:0001" +#define EXP_IP_RET sizeof(EXP_IP_OUT) + +/* The third specifier, %pB, depends on compiler inlining so don't check it */ +#define EXP_SYM_OUT "schedule schedule+0x0/" +#define MIN_SYM_RET sizeof(EXP_SYM_OUT) + +/* The third specifier, %p, is a hashed pointer which changes on every reboot */ +#define EXP_ADDR_OUT "0000000000000000 ffff00000add4e55 " +#define EXP_ADDR_RET sizeof(EXP_ADDR_OUT "unknownhashedptr") + +#define EXP_STR_OUT "str1 a b c d e longstr" +#define EXP_STR_RET sizeof(EXP_STR_OUT) + +#define EXP_OVER_OUT "%over" +#define EXP_OVER_RET 10 + +#define EXP_PAD_OUT " 4 000" +#define EXP_PAD_RET 900007 + +#define EXP_NO_ARG_OUT "simple case" +#define EXP_NO_ARG_RET 12 + +#define EXP_NO_BUF_RET 29 + +static void test_snprintf_positive(void) +{ + char exp_addr_out[] = EXP_ADDR_OUT; + char exp_sym_out[] = EXP_SYM_OUT; + struct test_snprintf *skel; + + skel = test_snprintf__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->bss->pid = getpid(); + + if (!ASSERT_OK(test_snprintf__attach(skel), "skel_attach")) + goto cleanup; + + /* trigger tracepoint */ + usleep(1); + + ASSERT_STREQ(skel->bss->num_out, EXP_NUM_OUT, "num_out"); + ASSERT_EQ(skel->bss->num_ret, EXP_NUM_RET, "num_ret"); + + ASSERT_STREQ(skel->bss->ip_out, EXP_IP_OUT, "ip_out"); + ASSERT_EQ(skel->bss->ip_ret, EXP_IP_RET, "ip_ret"); + + ASSERT_OK(memcmp(skel->bss->sym_out, exp_sym_out, + sizeof(exp_sym_out) - 1), "sym_out"); + ASSERT_LT(MIN_SYM_RET, skel->bss->sym_ret, "sym_ret"); + + ASSERT_OK(memcmp(skel->bss->addr_out, exp_addr_out, + sizeof(exp_addr_out) - 1), "addr_out"); + ASSERT_EQ(skel->bss->addr_ret, EXP_ADDR_RET, "addr_ret"); + + ASSERT_STREQ(skel->bss->str_out, EXP_STR_OUT, "str_out"); + ASSERT_EQ(skel->bss->str_ret, EXP_STR_RET, "str_ret"); + + ASSERT_STREQ(skel->bss->over_out, EXP_OVER_OUT, "over_out"); + ASSERT_EQ(skel->bss->over_ret, EXP_OVER_RET, "over_ret"); + + ASSERT_STREQ(skel->bss->pad_out, EXP_PAD_OUT, "pad_out"); + ASSERT_EQ(skel->bss->pad_ret, EXP_PAD_RET, "pad_ret"); + + ASSERT_STREQ(skel->bss->noarg_out, EXP_NO_ARG_OUT, "no_arg_out"); + ASSERT_EQ(skel->bss->noarg_ret, EXP_NO_ARG_RET, "no_arg_ret"); + + ASSERT_EQ(skel->bss->nobuf_ret, EXP_NO_BUF_RET, "no_buf_ret"); + +cleanup: + test_snprintf__destroy(skel); +} + +/* Loads an eBPF object calling bpf_snprintf with up to 10 characters of fmt */ +static int load_single_snprintf(char *fmt) +{ + struct test_snprintf_single *skel; + int ret; + + skel = test_snprintf_single__open(); + if (!skel) + return -EINVAL; + + memcpy(skel->rodata->fmt, fmt, MIN(strlen(fmt) + 1, 10)); + + ret = test_snprintf_single__load(skel); + test_snprintf_single__destroy(skel); + + return ret; +} + +static void test_snprintf_negative(void) +{ + ASSERT_OK(load_single_snprintf("valid %d"), "valid usage"); + + ASSERT_ERR(load_single_snprintf("0123456789"), "no terminating zero"); + ASSERT_ERR(load_single_snprintf("%d %d"), "too many specifiers"); + ASSERT_ERR(load_single_snprintf("%pi5"), "invalid specifier 1"); + ASSERT_ERR(load_single_snprintf("%a"), "invalid specifier 2"); + ASSERT_ERR(load_single_snprintf("%"), "invalid specifier 3"); + ASSERT_ERR(load_single_snprintf("%12345678"), "invalid specifier 4"); + ASSERT_ERR(load_single_snprintf("%--------"), "invalid specifier 5"); + ASSERT_ERR(load_single_snprintf("%lc"), "invalid specifier 6"); + ASSERT_ERR(load_single_snprintf("%llc"), "invalid specifier 7"); + ASSERT_ERR(load_single_snprintf("\x80"), "non ascii character"); + ASSERT_ERR(load_single_snprintf("\x1"), "non printable character"); +} + +void test_snprintf(void) +{ + if (test__start_subtest("snprintf_positive")) + test_snprintf_positive(); + if (test__start_subtest("snprintf_negative")) + test_snprintf_negative(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/snprintf_btf.c b/tools/testing/selftests/bpf/prog_tests/snprintf_btf.c new file mode 100644 index 000000000000..dd41b826be30 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/snprintf_btf.c @@ -0,0 +1,60 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <linux/btf.h> +#include "netif_receive_skb.skel.h" + +/* Demonstrate that bpf_snprintf_btf succeeds and that various data types + * are formatted correctly. + */ +void serial_test_snprintf_btf(void) +{ + struct netif_receive_skb *skel; + struct netif_receive_skb__bss *bss; + int err, duration = 0; + + skel = netif_receive_skb__open(); + if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) + return; + + err = netif_receive_skb__load(skel); + if (CHECK(err, "skel_load", "failed to load skeleton: %d\n", err)) + goto cleanup; + + bss = skel->bss; + + err = netif_receive_skb__attach(skel); + if (CHECK(err, "skel_attach", "skeleton attach failed: %d\n", err)) + goto cleanup; + + /* generate receive event */ + err = system("ping -c 1 127.0.0.1 > /dev/null"); + if (CHECK(err, "system", "ping failed: %d\n", err)) + goto cleanup; + + if (bss->skip) { + printf("%s:SKIP:no __builtin_btf_type_id\n", __func__); + test__skip(); + goto cleanup; + } + + /* + * Make sure netif_receive_skb program was triggered + * and it set expected return values from bpf_trace_printk()s + * and all tests ran. + */ + if (!ASSERT_GT(bss->ret, 0, "bpf_snprintf_ret")) + goto cleanup; + + if (CHECK(bss->ran_subtests == 0, "check if subtests ran", + "no subtests ran, did BPF program run?")) + goto cleanup; + + if (CHECK(bss->num_subtests != bss->ran_subtests, + "check all subtests ran", + "only ran %d of %d tests\n", bss->num_subtests, + bss->ran_subtests)) + goto cleanup; + +cleanup: + netif_receive_skb__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/sock_addr.c b/tools/testing/selftests/bpf/prog_tests/sock_addr.c new file mode 100644 index 000000000000..b880c564a204 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/sock_addr.c @@ -0,0 +1,2663 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <sys/un.h> + +#include "test_progs.h" + +#include "sock_addr_kern.skel.h" +#include "bind4_prog.skel.h" +#include "bind6_prog.skel.h" +#include "connect_unix_prog.skel.h" +#include "connect4_prog.skel.h" +#include "connect6_prog.skel.h" +#include "sendmsg4_prog.skel.h" +#include "sendmsg6_prog.skel.h" +#include "recvmsg4_prog.skel.h" +#include "recvmsg6_prog.skel.h" +#include "sendmsg_unix_prog.skel.h" +#include "recvmsg_unix_prog.skel.h" +#include "getsockname4_prog.skel.h" +#include "getsockname6_prog.skel.h" +#include "getsockname_unix_prog.skel.h" +#include "getpeername4_prog.skel.h" +#include "getpeername6_prog.skel.h" +#include "getpeername_unix_prog.skel.h" +#include "network_helpers.h" + +#ifndef ENOTSUPP +# define ENOTSUPP 524 +#endif + +#define TEST_NS "sock_addr" +#define TEST_IF_PREFIX "test_sock_addr" +#define TEST_IPV4 "127.0.0.4" +#define TEST_IPV6 "::6" + +#define SERV4_IP "192.168.1.254" +#define SERV4_REWRITE_IP "127.0.0.1" +#define SRC4_IP "172.16.0.1" +#define SRC4_REWRITE_IP TEST_IPV4 +#define SERV4_PORT 4040 +#define SERV4_REWRITE_PORT 4444 + +#define SERV6_IP "face:b00c:1234:5678::abcd" +#define SERV6_REWRITE_IP "::1" +#define SERV6_V4MAPPED_IP "::ffff:192.168.0.4" +#define SRC6_IP "::1" +#define SRC6_REWRITE_IP TEST_IPV6 +#define WILDCARD6_IP "::" +#define SERV6_PORT 6060 +#define SERV6_REWRITE_PORT 6666 + +#define SERVUN_ADDRESS "bpf_cgroup_unix_test" +#define SERVUN_REWRITE_ADDRESS "bpf_cgroup_unix_test_rewrite" +#define SRCUN_ADDRESS "bpf_cgroup_unix_test_src" + +#define save_errno_do(op) ({ int __save = errno; op; errno = __save; }) + +enum sock_addr_test_type { + SOCK_ADDR_TEST_BIND, + SOCK_ADDR_TEST_CONNECT, + SOCK_ADDR_TEST_SENDMSG, + SOCK_ADDR_TEST_RECVMSG, + SOCK_ADDR_TEST_GETSOCKNAME, + SOCK_ADDR_TEST_GETPEERNAME, +}; + +typedef void *(*load_fn)(int cgroup_fd, + enum bpf_attach_type attach_type, + bool expect_reject); +typedef void (*destroy_fn)(void *skel); + +static int cmp_addr(const struct sockaddr_storage *addr1, socklen_t addr1_len, + const struct sockaddr_storage *addr2, socklen_t addr2_len, + bool cmp_port); + +struct init_sock_args { + int af; + int type; +}; + +struct addr_args { + char addr[sizeof(struct sockaddr_storage)]; + int addrlen; +}; + +struct sendmsg_args { + struct addr_args addr; + char msg[10]; + int msglen; +}; + +static struct sock_addr_kern *skel; + +static int run_bpf_prog(const char *prog_name, void *ctx, int ctx_size) +{ + LIBBPF_OPTS(bpf_test_run_opts, topts); + struct bpf_program *prog; + int prog_fd, err; + + topts.ctx_in = ctx; + topts.ctx_size_in = ctx_size; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto err; + + prog_fd = bpf_program__fd(prog); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, prog_name)) + goto err; + + err = topts.retval; + errno = -topts.retval; + goto out; +err: + err = -1; +out: + return err; +} + +static int kernel_init_sock(int af, int type, int protocol) +{ + struct init_sock_args args = { + .af = af, + .type = type, + }; + + return run_bpf_prog("init_sock", &args, sizeof(args)); +} + +static int kernel_close_sock(int fd) +{ + return run_bpf_prog("close_sock", NULL, 0); +} + +static int sock_addr_op(const char *name, struct sockaddr *addr, + socklen_t *addrlen, bool expect_change) +{ + struct addr_args args; + int err; + + if (addrlen) + args.addrlen = *addrlen; + + if (addr) + memcpy(&args.addr, addr, *addrlen); + + err = run_bpf_prog(name, &args, sizeof(args)); + + if (!expect_change && addr) + if (!ASSERT_EQ(cmp_addr((struct sockaddr_storage *)addr, + *addrlen, + (struct sockaddr_storage *)&args.addr, + args.addrlen, 1), + 0, "address_param_modified")) + return -1; + + if (addrlen) + *addrlen = args.addrlen; + + if (addr) + memcpy(addr, &args.addr, *addrlen); + + return err; +} + +static int send_msg_op(const char *name, struct sockaddr *addr, + socklen_t addrlen, const char *msg, int msglen) +{ + struct sendmsg_args args; + int err; + + memset(&args, 0, sizeof(args)); + memcpy(&args.addr.addr, addr, addrlen); + args.addr.addrlen = addrlen; + memcpy(args.msg, msg, msglen); + args.msglen = msglen; + + err = run_bpf_prog(name, &args, sizeof(args)); + + if (!ASSERT_EQ(cmp_addr((struct sockaddr_storage *)addr, + addrlen, + (struct sockaddr_storage *)&args.addr.addr, + args.addr.addrlen, 1), + 0, "address_param_modified")) + return -1; + + return err; +} + +static int kernel_connect(struct sockaddr *addr, socklen_t addrlen) +{ + return sock_addr_op("kernel_connect", addr, &addrlen, false); +} + +static int kernel_bind(int fd, struct sockaddr *addr, socklen_t addrlen) +{ + return sock_addr_op("kernel_bind", addr, &addrlen, false); +} + +static int kernel_listen(void) +{ + return sock_addr_op("kernel_listen", NULL, NULL, false); +} + +static int kernel_sendmsg(int fd, struct sockaddr *addr, socklen_t addrlen, + char *msg, int msglen) +{ + return send_msg_op("kernel_sendmsg", addr, addrlen, msg, msglen); +} + +static int sock_sendmsg(int fd, struct sockaddr *addr, socklen_t addrlen, + char *msg, int msglen) +{ + return send_msg_op("sock_sendmsg", addr, addrlen, msg, msglen); +} + +static int kernel_getsockname(int fd, struct sockaddr *addr, socklen_t *addrlen) +{ + return sock_addr_op("kernel_getsockname", addr, addrlen, true); +} + +static int kernel_getpeername(int fd, struct sockaddr *addr, socklen_t *addrlen) +{ + return sock_addr_op("kernel_getpeername", addr, addrlen, true); +} + +int kernel_connect_to_addr(int type, const struct sockaddr_storage *addr, socklen_t addrlen, + const struct network_helper_opts *opts) +{ + int err; + + if (!ASSERT_OK(kernel_init_sock(addr->ss_family, type, 0), + "kernel_init_sock")) + goto err; + + if (kernel_connect((struct sockaddr *)addr, addrlen) < 0) + goto err; + + /* Test code expects a "file descriptor" on success. */ + err = 1; + goto out; +err: + err = -1; + save_errno_do(ASSERT_OK(kernel_close_sock(0), "kernel_close_sock")); +out: + return err; +} + +int kernel_start_server(int family, int type, const char *addr_str, __u16 port, + int timeout_ms) +{ + struct sockaddr_storage addr; + socklen_t addrlen; + int err; + + if (!ASSERT_OK(kernel_init_sock(family, type, 0), "kernel_init_sock")) + goto err; + + if (make_sockaddr(family, addr_str, port, &addr, &addrlen)) + goto err; + + if (kernel_bind(0, (struct sockaddr *)&addr, addrlen) < 0) + goto err; + + if (type == SOCK_STREAM) { + if (!ASSERT_OK(kernel_listen(), "kernel_listen")) + goto err; + } + + /* Test code expects a "file descriptor" on success. */ + err = 1; + goto out; +err: + err = -1; + save_errno_do(ASSERT_OK(kernel_close_sock(0), "kernel_close_sock")); +out: + return err; +} + +struct sock_ops { + int (*connect_to_addr)(int type, const struct sockaddr_storage *addr, + socklen_t addrlen, + const struct network_helper_opts *opts); + int (*start_server)(int family, int type, const char *addr_str, + __u16 port, int timeout_ms); + int (*socket)(int famil, int type, int protocol); + int (*bind)(int fd, struct sockaddr *addr, socklen_t addrlen); + int (*getsockname)(int fd, struct sockaddr *addr, socklen_t *addrlen); + int (*getpeername)(int fd, struct sockaddr *addr, socklen_t *addrlen); + int (*sendmsg)(int fd, struct sockaddr *addr, socklen_t addrlen, + char *msg, int msglen); + int (*close)(int fd); +}; + +static int user_sendmsg(int fd, struct sockaddr *addr, socklen_t addrlen, + char *msg, int msglen) +{ + struct msghdr hdr; + struct iovec iov; + + memset(&iov, 0, sizeof(iov)); + iov.iov_base = msg; + iov.iov_len = msglen; + + memset(&hdr, 0, sizeof(hdr)); + hdr.msg_name = (void *)addr; + hdr.msg_namelen = addrlen; + hdr.msg_iov = &iov; + hdr.msg_iovlen = 1; + + return sendmsg(fd, &hdr, 0); +} + +static int user_bind(int fd, struct sockaddr *addr, socklen_t addrlen) +{ + return bind(fd, (const struct sockaddr *)addr, addrlen); +} + +struct sock_ops user_ops = { + .connect_to_addr = connect_to_addr, + .start_server = start_server, + .socket = socket, + .bind = user_bind, + .getsockname = getsockname, + .getpeername = getpeername, + .sendmsg = user_sendmsg, + .close = close, +}; + +struct sock_ops kern_ops_sock_sendmsg = { + .connect_to_addr = kernel_connect_to_addr, + .start_server = kernel_start_server, + .socket = kernel_init_sock, + .bind = kernel_bind, + .getsockname = kernel_getsockname, + .getpeername = kernel_getpeername, + .sendmsg = sock_sendmsg, + .close = kernel_close_sock, +}; + +struct sock_ops kern_ops_kernel_sendmsg = { + .connect_to_addr = kernel_connect_to_addr, + .start_server = kernel_start_server, + .socket = kernel_init_sock, + .bind = kernel_bind, + .getsockname = kernel_getsockname, + .getpeername = kernel_getpeername, + .sendmsg = kernel_sendmsg, + .close = kernel_close_sock, +}; + +struct sock_addr_test { + enum sock_addr_test_type type; + const char *name; + /* BPF prog properties */ + load_fn loadfn; + destroy_fn destroyfn; + enum bpf_attach_type attach_type; + /* Socket operations */ + struct sock_ops *ops; + /* Socket properties */ + int socket_family; + int socket_type; + /* IP:port pairs for BPF prog to override */ + const char *requested_addr; + unsigned short requested_port; + const char *expected_addr; + unsigned short expected_port; + const char *expected_src_addr; + /* Expected test result */ + enum { + LOAD_REJECT, + ATTACH_REJECT, + SYSCALL_EPERM, + SYSCALL_ENOTSUPP, + SUCCESS, + } expected_result; +}; + +#define BPF_SKEL_FUNCS_RAW(skel_name, prog_name) \ +static void *prog_name##_load_raw(int cgroup_fd, \ + enum bpf_attach_type attach_type, \ + bool expect_reject) \ +{ \ + struct skel_name *skel = skel_name##__open(); \ + int prog_fd = -1; \ + if (!ASSERT_OK_PTR(skel, "skel_open")) \ + goto cleanup; \ + if (!ASSERT_OK(skel_name##__load(skel), "load")) \ + goto cleanup; \ + prog_fd = bpf_program__fd(skel->progs.prog_name); \ + if (!ASSERT_GT(prog_fd, 0, "prog_fd")) \ + goto cleanup; \ + if (bpf_prog_attach(prog_fd, cgroup_fd, attach_type, \ + BPF_F_ALLOW_OVERRIDE), "bpf_prog_attach") { \ + ASSERT_TRUE(expect_reject, "unexpected rejection"); \ + goto cleanup; \ + } \ + if (!ASSERT_FALSE(expect_reject, "expected rejection")) \ + goto cleanup; \ +cleanup: \ + if (prog_fd > 0) \ + bpf_prog_detach(cgroup_fd, attach_type); \ + skel_name##__destroy(skel); \ + return NULL; \ +} \ +static void prog_name##_destroy_raw(void *progfd) \ +{ \ + /* No-op. *_load_raw does all cleanup. */ \ +} \ + +#define BPF_SKEL_FUNCS(skel_name, prog_name) \ +static void *prog_name##_load(int cgroup_fd, \ + enum bpf_attach_type attach_type, \ + bool expect_reject) \ +{ \ + struct skel_name *skel = skel_name##__open(); \ + if (!ASSERT_OK_PTR(skel, "skel_open")) \ + goto cleanup; \ + if (!ASSERT_OK(bpf_program__set_expected_attach_type(skel->progs.prog_name, \ + attach_type), \ + "set_expected_attach_type")) \ + goto cleanup; \ + if (skel_name##__load(skel)) { \ + ASSERT_TRUE(expect_reject, "unexpected rejection"); \ + goto cleanup; \ + } \ + if (!ASSERT_FALSE(expect_reject, "expected rejection")) \ + goto cleanup; \ + skel->links.prog_name = bpf_program__attach_cgroup( \ + skel->progs.prog_name, cgroup_fd); \ + if (!ASSERT_OK_PTR(skel->links.prog_name, "prog_attach")) \ + goto cleanup; \ + return skel; \ +cleanup: \ + skel_name##__destroy(skel); \ + return NULL; \ +} \ +static void prog_name##_destroy(void *skel) \ +{ \ + skel_name##__destroy(skel); \ +} + +BPF_SKEL_FUNCS(bind4_prog, bind_v4_prog); +BPF_SKEL_FUNCS_RAW(bind4_prog, bind_v4_prog); +BPF_SKEL_FUNCS(bind4_prog, bind_v4_deny_prog); +BPF_SKEL_FUNCS(bind6_prog, bind_v6_prog); +BPF_SKEL_FUNCS_RAW(bind6_prog, bind_v6_prog); +BPF_SKEL_FUNCS(bind6_prog, bind_v6_deny_prog); +BPF_SKEL_FUNCS(connect4_prog, connect_v4_prog); +BPF_SKEL_FUNCS_RAW(connect4_prog, connect_v4_prog); +BPF_SKEL_FUNCS(connect4_prog, connect_v4_deny_prog); +BPF_SKEL_FUNCS(connect6_prog, connect_v6_prog); +BPF_SKEL_FUNCS_RAW(connect6_prog, connect_v6_prog); +BPF_SKEL_FUNCS(connect6_prog, connect_v6_deny_prog); +BPF_SKEL_FUNCS(connect_unix_prog, connect_unix_prog); +BPF_SKEL_FUNCS_RAW(connect_unix_prog, connect_unix_prog); +BPF_SKEL_FUNCS(connect_unix_prog, connect_unix_deny_prog); +BPF_SKEL_FUNCS(sendmsg4_prog, sendmsg_v4_prog); +BPF_SKEL_FUNCS_RAW(sendmsg4_prog, sendmsg_v4_prog); +BPF_SKEL_FUNCS(sendmsg4_prog, sendmsg_v4_deny_prog); +BPF_SKEL_FUNCS(sendmsg6_prog, sendmsg_v6_prog); +BPF_SKEL_FUNCS_RAW(sendmsg6_prog, sendmsg_v6_prog); +BPF_SKEL_FUNCS(sendmsg6_prog, sendmsg_v6_deny_prog); +BPF_SKEL_FUNCS(sendmsg6_prog, sendmsg_v6_preserve_dst_prog); +BPF_SKEL_FUNCS(sendmsg6_prog, sendmsg_v6_v4mapped_prog); +BPF_SKEL_FUNCS(sendmsg6_prog, sendmsg_v6_wildcard_prog); +BPF_SKEL_FUNCS(sendmsg_unix_prog, sendmsg_unix_prog); +BPF_SKEL_FUNCS_RAW(sendmsg_unix_prog, sendmsg_unix_prog); +BPF_SKEL_FUNCS(sendmsg_unix_prog, sendmsg_unix_deny_prog); +BPF_SKEL_FUNCS(recvmsg4_prog, recvmsg4_prog); +BPF_SKEL_FUNCS_RAW(recvmsg4_prog, recvmsg4_prog); +BPF_SKEL_FUNCS(recvmsg6_prog, recvmsg6_prog); +BPF_SKEL_FUNCS_RAW(recvmsg6_prog, recvmsg6_prog); +BPF_SKEL_FUNCS(recvmsg_unix_prog, recvmsg_unix_prog); +BPF_SKEL_FUNCS_RAW(recvmsg_unix_prog, recvmsg_unix_prog); +BPF_SKEL_FUNCS(getsockname_unix_prog, getsockname_unix_prog); +BPF_SKEL_FUNCS_RAW(getsockname_unix_prog, getsockname_unix_prog); +BPF_SKEL_FUNCS(getsockname4_prog, getsockname_v4_prog); +BPF_SKEL_FUNCS_RAW(getsockname4_prog, getsockname_v4_prog); +BPF_SKEL_FUNCS(getsockname6_prog, getsockname_v6_prog); +BPF_SKEL_FUNCS_RAW(getsockname6_prog, getsockname_v6_prog); +BPF_SKEL_FUNCS(getpeername_unix_prog, getpeername_unix_prog); +BPF_SKEL_FUNCS_RAW(getpeername_unix_prog, getpeername_unix_prog); +BPF_SKEL_FUNCS(getpeername4_prog, getpeername_v4_prog); +BPF_SKEL_FUNCS_RAW(getpeername4_prog, getpeername_v4_prog); +BPF_SKEL_FUNCS(getpeername6_prog, getpeername_v6_prog); +BPF_SKEL_FUNCS_RAW(getpeername6_prog, getpeername_v6_prog); + +static struct sock_addr_test tests[] = { + /* bind - system calls */ + { + SOCK_ADDR_TEST_BIND, + "bind4: bind (stream)", + bind_v4_prog_load, + bind_v4_prog_destroy, + BPF_CGROUP_INET4_BIND, + &user_ops, + AF_INET, + SOCK_STREAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_BIND, + "bind4: bind deny (stream)", + bind_v4_deny_prog_load, + bind_v4_deny_prog_destroy, + BPF_CGROUP_INET4_BIND, + &user_ops, + AF_INET, + SOCK_STREAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_BIND, + "bind4: bind (dgram)", + bind_v4_prog_load, + bind_v4_prog_destroy, + BPF_CGROUP_INET4_BIND, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_BIND, + "bind4: bind deny (dgram)", + bind_v4_deny_prog_load, + bind_v4_deny_prog_destroy, + BPF_CGROUP_INET4_BIND, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_BIND, + "bind4: load prog with wrong expected attach type", + bind_v4_prog_load, + bind_v4_prog_destroy, + BPF_CGROUP_INET6_BIND, + &user_ops, + AF_INET, + SOCK_STREAM, + NULL, + 0, + NULL, + 0, + NULL, + LOAD_REJECT, + }, + { + SOCK_ADDR_TEST_BIND, + "bind4: attach prog with wrong attach type", + bind_v4_prog_load_raw, + bind_v4_prog_destroy_raw, + BPF_CGROUP_INET6_BIND, + &user_ops, + AF_INET, + SOCK_STREAM, + NULL, + 0, + NULL, + 0, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: bind (stream)", + bind_v6_prog_load, + bind_v6_prog_destroy, + BPF_CGROUP_INET6_BIND, + &user_ops, + AF_INET6, + SOCK_STREAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: bind deny (stream)", + bind_v6_deny_prog_load, + bind_v6_deny_prog_destroy, + BPF_CGROUP_INET6_BIND, + &user_ops, + AF_INET6, + SOCK_STREAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: bind (dgram)", + bind_v6_prog_load, + bind_v6_prog_destroy, + BPF_CGROUP_INET6_BIND, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: bind deny (dgram)", + bind_v6_deny_prog_load, + bind_v6_deny_prog_destroy, + BPF_CGROUP_INET6_BIND, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: load prog with wrong expected attach type", + bind_v6_prog_load, + bind_v6_prog_destroy, + BPF_CGROUP_INET4_BIND, + &user_ops, + AF_INET6, + SOCK_STREAM, + NULL, + 0, + NULL, + 0, + NULL, + LOAD_REJECT, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: attach prog with wrong attach type", + bind_v6_prog_load_raw, + bind_v6_prog_destroy_raw, + BPF_CGROUP_INET4_BIND, + &user_ops, + AF_INET, + SOCK_STREAM, + NULL, + 0, + NULL, + 0, + NULL, + ATTACH_REJECT, + }, + + /* bind - kernel calls */ + { + SOCK_ADDR_TEST_BIND, + "bind4: kernel_bind (stream)", + bind_v4_prog_load, + bind_v4_prog_destroy, + BPF_CGROUP_INET4_BIND, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_STREAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_BIND, + "bind4: kernel_bind deny (stream)", + bind_v4_deny_prog_load, + bind_v4_deny_prog_destroy, + BPF_CGROUP_INET4_BIND, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_STREAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_BIND, + "bind4: kernel_bind (dgram)", + bind_v4_prog_load, + bind_v4_prog_destroy, + BPF_CGROUP_INET4_BIND, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_BIND, + "bind4: kernel_bind deny (dgram)", + bind_v4_deny_prog_load, + bind_v4_deny_prog_destroy, + BPF_CGROUP_INET4_BIND, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: kernel_bind (stream)", + bind_v6_prog_load, + bind_v6_prog_destroy, + BPF_CGROUP_INET6_BIND, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_STREAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: kernel_bind deny (stream)", + bind_v6_deny_prog_load, + bind_v6_deny_prog_destroy, + BPF_CGROUP_INET6_BIND, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_STREAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: kernel_bind (dgram)", + bind_v6_prog_load, + bind_v6_prog_destroy, + BPF_CGROUP_INET6_BIND, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_BIND, + "bind6: kernel_bind deny (dgram)", + bind_v6_deny_prog_load, + bind_v6_deny_prog_destroy, + BPF_CGROUP_INET6_BIND, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + NULL, + SYSCALL_EPERM, + }, + + /* connect - system calls */ + { + SOCK_ADDR_TEST_CONNECT, + "connect4: connect (stream)", + connect_v4_prog_load, + connect_v4_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &user_ops, + AF_INET, + SOCK_STREAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect4: connect deny (stream)", + connect_v4_deny_prog_load, + connect_v4_deny_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &user_ops, + AF_INET, + SOCK_STREAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect4: connect (dgram)", + connect_v4_prog_load, + connect_v4_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect4: connect deny (dgram)", + connect_v4_deny_prog_load, + connect_v4_deny_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect4: load prog with wrong expected attach type", + connect_v4_prog_load, + connect_v4_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &user_ops, + AF_INET, + SOCK_STREAM, + NULL, + 0, + NULL, + 0, + NULL, + LOAD_REJECT, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect4: attach prog with wrong attach type", + connect_v4_prog_load_raw, + connect_v4_prog_destroy_raw, + BPF_CGROUP_INET6_CONNECT, + &user_ops, + AF_INET, + SOCK_STREAM, + NULL, + 0, + NULL, + 0, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: connect (stream)", + connect_v6_prog_load, + connect_v6_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &user_ops, + AF_INET6, + SOCK_STREAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: connect deny (stream)", + connect_v6_deny_prog_load, + connect_v6_deny_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &user_ops, + AF_INET6, + SOCK_STREAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: connect (dgram)", + connect_v6_prog_load, + connect_v6_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: connect deny (dgram)", + connect_v6_deny_prog_load, + connect_v6_deny_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: load prog with wrong expected attach type", + connect_v6_prog_load, + connect_v6_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &user_ops, + AF_INET6, + SOCK_STREAM, + NULL, + 0, + NULL, + 0, + NULL, + LOAD_REJECT, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: attach prog with wrong attach type", + connect_v6_prog_load_raw, + connect_v6_prog_destroy_raw, + BPF_CGROUP_INET4_CONNECT, + &user_ops, + AF_INET, + SOCK_STREAM, + NULL, + 0, + NULL, + 0, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect_unix: connect (stream)", + connect_unix_prog_load, + connect_unix_prog_destroy, + BPF_CGROUP_UNIX_CONNECT, + &user_ops, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect_unix: connect deny (stream)", + connect_unix_deny_prog_load, + connect_unix_deny_prog_destroy, + BPF_CGROUP_UNIX_CONNECT, + &user_ops, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect_unix: attach prog with wrong attach type", + connect_unix_prog_load_raw, + connect_unix_prog_destroy_raw, + BPF_CGROUP_INET4_CONNECT, + &user_ops, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + ATTACH_REJECT, + }, + + /* connect - kernel calls */ + { + SOCK_ADDR_TEST_CONNECT, + "connect4: kernel_connect (stream)", + connect_v4_prog_load, + connect_v4_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_STREAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect4: kernel_connect deny (stream)", + connect_v4_deny_prog_load, + connect_v4_deny_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_STREAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect4: kernel_connect (dgram)", + connect_v4_prog_load, + connect_v4_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect4: kernel_connect deny (dgram)", + connect_v4_deny_prog_load, + connect_v4_deny_prog_destroy, + BPF_CGROUP_INET4_CONNECT, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: kernel_connect (stream)", + connect_v6_prog_load, + connect_v6_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_STREAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: kernel_connect deny (stream)", + connect_v6_deny_prog_load, + connect_v6_deny_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_STREAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: kernel_connect (dgram)", + connect_v6_prog_load, + connect_v6_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect6: kernel_connect deny (dgram)", + connect_v6_deny_prog_load, + connect_v6_deny_prog_destroy, + BPF_CGROUP_INET6_CONNECT, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect_unix: kernel_connect (dgram)", + connect_unix_prog_load, + connect_unix_prog_destroy, + BPF_CGROUP_UNIX_CONNECT, + &kern_ops_sock_sendmsg, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_CONNECT, + "connect_unix: kernel_connect deny (dgram)", + connect_unix_deny_prog_load, + connect_unix_deny_prog_destroy, + BPF_CGROUP_UNIX_CONNECT, + &kern_ops_sock_sendmsg, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SYSCALL_EPERM, + }, + + /* sendmsg - system calls */ + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg4: sendmsg (dgram)", + sendmsg_v4_prog_load, + sendmsg_v4_prog_destroy, + BPF_CGROUP_UDP4_SENDMSG, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg4: sendmsg deny (dgram)", + sendmsg_v4_deny_prog_load, + sendmsg_v4_deny_prog_destroy, + BPF_CGROUP_UDP4_SENDMSG, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg4: load prog with wrong expected attach type", + sendmsg_v4_prog_load, + sendmsg_v4_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &user_ops, + AF_INET, + SOCK_DGRAM, + NULL, + 0, + NULL, + 0, + NULL, + LOAD_REJECT, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg4: attach prog with wrong attach type", + sendmsg_v4_prog_load_raw, + sendmsg_v4_prog_destroy_raw, + BPF_CGROUP_UDP6_SENDMSG, + &user_ops, + AF_INET, + SOCK_DGRAM, + NULL, + 0, + NULL, + 0, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: sendmsg (dgram)", + sendmsg_v6_prog_load, + sendmsg_v6_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: sendmsg [::] (BSD'ism) (dgram)", + sendmsg_v6_preserve_dst_prog_load, + sendmsg_v6_preserve_dst_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + WILDCARD6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_PORT, + SRC6_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: sendmsg deny (dgram)", + sendmsg_v6_deny_prog_load, + sendmsg_v6_deny_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: sendmsg IPv4-mapped IPv6 (dgram)", + sendmsg_v6_v4mapped_prog_load, + sendmsg_v6_v4mapped_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SYSCALL_ENOTSUPP, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: sendmsg dst IP = [::] (BSD'ism) (dgram)", + sendmsg_v6_wildcard_prog_load, + sendmsg_v6_wildcard_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: load prog with wrong expected attach type", + sendmsg_v6_prog_load, + sendmsg_v6_prog_destroy, + BPF_CGROUP_UDP4_SENDMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + NULL, + 0, + NULL, + 0, + NULL, + LOAD_REJECT, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: attach prog with wrong attach type", + sendmsg_v6_prog_load_raw, + sendmsg_v6_prog_destroy_raw, + BPF_CGROUP_UDP4_SENDMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + NULL, + 0, + NULL, + 0, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg_unix: sendmsg (dgram)", + sendmsg_unix_prog_load, + sendmsg_unix_prog_destroy, + BPF_CGROUP_UNIX_SENDMSG, + &user_ops, + AF_UNIX, + SOCK_DGRAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg_unix: sendmsg deny (dgram)", + sendmsg_unix_deny_prog_load, + sendmsg_unix_deny_prog_destroy, + BPF_CGROUP_UNIX_SENDMSG, + &user_ops, + AF_UNIX, + SOCK_DGRAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg_unix: attach prog with wrong attach type", + sendmsg_unix_prog_load_raw, + sendmsg_unix_prog_destroy_raw, + BPF_CGROUP_UDP4_SENDMSG, + &user_ops, + AF_UNIX, + SOCK_DGRAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + ATTACH_REJECT, + }, + + /* sendmsg - kernel calls (sock_sendmsg) */ + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg4: sock_sendmsg (dgram)", + sendmsg_v4_prog_load, + sendmsg_v4_prog_destroy, + BPF_CGROUP_UDP4_SENDMSG, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg4: sock_sendmsg deny (dgram)", + sendmsg_v4_deny_prog_load, + sendmsg_v4_deny_prog_destroy, + BPF_CGROUP_UDP4_SENDMSG, + &kern_ops_sock_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: sock_sendmsg (dgram)", + sendmsg_v6_prog_load, + sendmsg_v6_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: sock_sendmsg [::] (BSD'ism) (dgram)", + sendmsg_v6_preserve_dst_prog_load, + sendmsg_v6_preserve_dst_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_DGRAM, + WILDCARD6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_PORT, + SRC6_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: sock_sendmsg deny (dgram)", + sendmsg_v6_deny_prog_load, + sendmsg_v6_deny_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &kern_ops_sock_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg_unix: sock_sendmsg (dgram)", + sendmsg_unix_prog_load, + sendmsg_unix_prog_destroy, + BPF_CGROUP_UNIX_SENDMSG, + &kern_ops_sock_sendmsg, + AF_UNIX, + SOCK_DGRAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg_unix: sock_sendmsg deny (dgram)", + sendmsg_unix_deny_prog_load, + sendmsg_unix_deny_prog_destroy, + BPF_CGROUP_UNIX_SENDMSG, + &kern_ops_sock_sendmsg, + AF_UNIX, + SOCK_DGRAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SYSCALL_EPERM, + }, + + /* sendmsg - kernel calls (kernel_sendmsg) */ + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg4: kernel_sendmsg (dgram)", + sendmsg_v4_prog_load, + sendmsg_v4_prog_destroy, + BPF_CGROUP_UDP4_SENDMSG, + &kern_ops_kernel_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg4: kernel_sendmsg deny (dgram)", + sendmsg_v4_deny_prog_load, + sendmsg_v4_deny_prog_destroy, + BPF_CGROUP_UDP4_SENDMSG, + &kern_ops_kernel_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_IP, + SERV4_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SRC4_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: kernel_sendmsg (dgram)", + sendmsg_v6_prog_load, + sendmsg_v6_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &kern_ops_kernel_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: kernel_sendmsg [::] (BSD'ism) (dgram)", + sendmsg_v6_preserve_dst_prog_load, + sendmsg_v6_preserve_dst_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &kern_ops_kernel_sendmsg, + AF_INET6, + SOCK_DGRAM, + WILDCARD6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_PORT, + SRC6_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg6: kernel_sendmsg deny (dgram)", + sendmsg_v6_deny_prog_load, + sendmsg_v6_deny_prog_destroy, + BPF_CGROUP_UDP6_SENDMSG, + &kern_ops_kernel_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_IP, + SERV6_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SRC6_REWRITE_IP, + SYSCALL_EPERM, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg_unix: sock_sendmsg (dgram)", + sendmsg_unix_prog_load, + sendmsg_unix_prog_destroy, + BPF_CGROUP_UNIX_SENDMSG, + &kern_ops_kernel_sendmsg, + AF_UNIX, + SOCK_DGRAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_SENDMSG, + "sendmsg_unix: kernel_sendmsg deny (dgram)", + sendmsg_unix_deny_prog_load, + sendmsg_unix_deny_prog_destroy, + BPF_CGROUP_UNIX_SENDMSG, + &kern_ops_kernel_sendmsg, + AF_UNIX, + SOCK_DGRAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SYSCALL_EPERM, + }, + + /* recvmsg - system calls */ + { + SOCK_ADDR_TEST_RECVMSG, + "recvmsg4: recvfrom (dgram)", + recvmsg4_prog_load, + recvmsg4_prog_destroy, + BPF_CGROUP_UDP4_RECVMSG, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_RECVMSG, + "recvmsg4: attach prog with wrong attach type", + recvmsg4_prog_load_raw, + recvmsg4_prog_destroy_raw, + BPF_CGROUP_UDP6_RECVMSG, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_RECVMSG, + "recvmsg6: recvfrom (dgram)", + recvmsg6_prog_load, + recvmsg6_prog_destroy, + BPF_CGROUP_UDP6_RECVMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SUCCESS, + }, + { + SOCK_ADDR_TEST_RECVMSG, + "recvmsg6: attach prog with wrong attach type", + recvmsg6_prog_load_raw, + recvmsg6_prog_destroy_raw, + BPF_CGROUP_UDP4_RECVMSG, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_RECVMSG, + "recvmsg_unix: recvfrom (dgram)", + recvmsg_unix_prog_load, + recvmsg_unix_prog_destroy, + BPF_CGROUP_UNIX_RECVMSG, + &user_ops, + AF_UNIX, + SOCK_DGRAM, + SERVUN_REWRITE_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + SERVUN_ADDRESS, + SUCCESS, + }, + { + SOCK_ADDR_TEST_RECVMSG, + "recvmsg_unix: recvfrom (stream)", + recvmsg_unix_prog_load, + recvmsg_unix_prog_destroy, + BPF_CGROUP_UNIX_RECVMSG, + &user_ops, + AF_UNIX, + SOCK_STREAM, + SERVUN_REWRITE_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + SERVUN_ADDRESS, + SUCCESS, + }, + { + SOCK_ADDR_TEST_RECVMSG, + "recvmsg_unix: attach prog with wrong attach type", + recvmsg_unix_prog_load_raw, + recvmsg_unix_prog_destroy_raw, + BPF_CGROUP_UDP4_RECVMSG, + &user_ops, + AF_INET6, + SOCK_STREAM, + SERVUN_REWRITE_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + SERVUN_ADDRESS, + ATTACH_REJECT, + }, + + /* getsockname - system calls */ + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname4: getsockname (stream)", + getsockname_v4_prog_load, + getsockname_v4_prog_destroy, + BPF_CGROUP_INET4_GETSOCKNAME, + &user_ops, + AF_INET, + SOCK_STREAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname4: getsockname (dgram)", + getsockname_v4_prog_load, + getsockname_v4_prog_destroy, + BPF_CGROUP_INET4_GETSOCKNAME, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname4: attach prog with wrong attach type", + getsockname_v4_prog_load_raw, + getsockname_v4_prog_destroy_raw, + BPF_CGROUP_INET6_GETSOCKNAME, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname6: getsockname (stream)", + getsockname_v6_prog_load, + getsockname_v6_prog_destroy, + BPF_CGROUP_INET6_GETSOCKNAME, + &user_ops, + AF_INET6, + SOCK_STREAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname6: getsockname (dgram)", + getsockname_v6_prog_load, + getsockname_v6_prog_destroy, + BPF_CGROUP_INET6_GETSOCKNAME, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname6: attach prog with wrong attach type", + getsockname_v6_prog_load_raw, + getsockname_v6_prog_destroy_raw, + BPF_CGROUP_INET4_GETSOCKNAME, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname_unix: getsockname", + getsockname_unix_prog_load, + getsockname_unix_prog_destroy, + BPF_CGROUP_UNIX_GETSOCKNAME, + &user_ops, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname_unix: attach prog with wrong attach type", + getsockname_unix_prog_load_raw, + getsockname_unix_prog_destroy_raw, + BPF_CGROUP_INET4_GETSOCKNAME, + &user_ops, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + ATTACH_REJECT, + }, + + /* getsockname - kernel calls */ + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname4: kernel_getsockname (stream)", + getsockname_v4_prog_load, + getsockname_v4_prog_destroy, + BPF_CGROUP_INET4_GETSOCKNAME, + &kern_ops_kernel_sendmsg, + AF_INET, + SOCK_STREAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname4: kernel_getsockname (dgram)", + getsockname_v4_prog_load, + getsockname_v4_prog_destroy, + BPF_CGROUP_INET4_GETSOCKNAME, + &kern_ops_kernel_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname6: kernel_getsockname (stream)", + getsockname_v6_prog_load, + getsockname_v6_prog_destroy, + BPF_CGROUP_INET6_GETSOCKNAME, + &kern_ops_kernel_sendmsg, + AF_INET6, + SOCK_STREAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname6: kernel_getsockname (dgram)", + getsockname_v6_prog_load, + getsockname_v6_prog_destroy, + BPF_CGROUP_INET6_GETSOCKNAME, + &kern_ops_kernel_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETSOCKNAME, + "getsockname_unix: kernel_getsockname", + getsockname_unix_prog_load, + getsockname_unix_prog_destroy, + BPF_CGROUP_UNIX_GETSOCKNAME, + &kern_ops_kernel_sendmsg, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, + + /* getpeername - system calls */ + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername4: getpeername (stream)", + getpeername_v4_prog_load, + getpeername_v4_prog_destroy, + BPF_CGROUP_INET4_GETPEERNAME, + &user_ops, + AF_INET, + SOCK_STREAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername4: getpeername (dgram)", + getpeername_v4_prog_load, + getpeername_v4_prog_destroy, + BPF_CGROUP_INET4_GETPEERNAME, + &user_ops, + AF_INET, + SOCK_DGRAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername4: attach prog with wrong attach type", + getpeername_v4_prog_load_raw, + getpeername_v4_prog_destroy_raw, + BPF_CGROUP_INET6_GETSOCKNAME, + &user_ops, + AF_UNIX, + SOCK_DGRAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername6: getpeername (stream)", + getpeername_v6_prog_load, + getpeername_v6_prog_destroy, + BPF_CGROUP_INET6_GETPEERNAME, + &user_ops, + AF_INET6, + SOCK_STREAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername6: getpeername (dgram)", + getpeername_v6_prog_load, + getpeername_v6_prog_destroy, + BPF_CGROUP_INET6_GETPEERNAME, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername6: attach prog with wrong attach type", + getpeername_v6_prog_load_raw, + getpeername_v6_prog_destroy_raw, + BPF_CGROUP_INET4_GETSOCKNAME, + &user_ops, + AF_INET6, + SOCK_DGRAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + ATTACH_REJECT, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername_unix: getpeername", + getpeername_unix_prog_load, + getpeername_unix_prog_destroy, + BPF_CGROUP_UNIX_GETPEERNAME, + &user_ops, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername_unix: attach prog with wrong attach type", + getpeername_unix_prog_load_raw, + getpeername_unix_prog_destroy_raw, + BPF_CGROUP_INET4_GETSOCKNAME, + &user_ops, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + ATTACH_REJECT, + }, + + /* getpeername - kernel calls */ + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername4: kernel_getpeername (stream)", + getpeername_v4_prog_load, + getpeername_v4_prog_destroy, + BPF_CGROUP_INET4_GETPEERNAME, + &kern_ops_kernel_sendmsg, + AF_INET, + SOCK_STREAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername4: kernel_getpeername (dgram)", + getpeername_v4_prog_load, + getpeername_v4_prog_destroy, + BPF_CGROUP_INET4_GETPEERNAME, + &kern_ops_kernel_sendmsg, + AF_INET, + SOCK_DGRAM, + SERV4_REWRITE_IP, + SERV4_REWRITE_PORT, + SERV4_IP, + SERV4_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername6: kernel_getpeername (stream)", + getpeername_v6_prog_load, + getpeername_v6_prog_destroy, + BPF_CGROUP_INET6_GETPEERNAME, + &kern_ops_kernel_sendmsg, + AF_INET6, + SOCK_STREAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername6: kernel_getpeername (dgram)", + getpeername_v6_prog_load, + getpeername_v6_prog_destroy, + BPF_CGROUP_INET6_GETPEERNAME, + &kern_ops_kernel_sendmsg, + AF_INET6, + SOCK_DGRAM, + SERV6_REWRITE_IP, + SERV6_REWRITE_PORT, + SERV6_IP, + SERV6_PORT, + NULL, + SUCCESS, + }, + { + SOCK_ADDR_TEST_GETPEERNAME, + "getpeername_unix: kernel_getpeername", + getpeername_unix_prog_load, + getpeername_unix_prog_destroy, + BPF_CGROUP_UNIX_GETPEERNAME, + &kern_ops_kernel_sendmsg, + AF_UNIX, + SOCK_STREAM, + SERVUN_ADDRESS, + 0, + SERVUN_REWRITE_ADDRESS, + 0, + NULL, + SUCCESS, + }, +}; + +typedef int (*info_fn)(int, struct sockaddr *, socklen_t *); + +static int cmp_addr(const struct sockaddr_storage *addr1, socklen_t addr1_len, + const struct sockaddr_storage *addr2, socklen_t addr2_len, + bool cmp_port) +{ + const struct sockaddr_in *four1, *four2; + const struct sockaddr_in6 *six1, *six2; + const struct sockaddr_un *un1, *un2; + + if (addr1->ss_family != addr2->ss_family) + return -1; + + if (addr1_len != addr2_len) + return -1; + + if (addr1->ss_family == AF_INET) { + four1 = (const struct sockaddr_in *)addr1; + four2 = (const struct sockaddr_in *)addr2; + return !((four1->sin_port == four2->sin_port || !cmp_port) && + four1->sin_addr.s_addr == four2->sin_addr.s_addr); + } else if (addr1->ss_family == AF_INET6) { + six1 = (const struct sockaddr_in6 *)addr1; + six2 = (const struct sockaddr_in6 *)addr2; + return !((six1->sin6_port == six2->sin6_port || !cmp_port) && + !memcmp(&six1->sin6_addr, &six2->sin6_addr, + sizeof(struct in6_addr))); + } else if (addr1->ss_family == AF_UNIX) { + un1 = (const struct sockaddr_un *)addr1; + un2 = (const struct sockaddr_un *)addr2; + return memcmp(un1, un2, addr1_len); + } + + return -1; +} + +static int cmp_sock_addr(info_fn fn, int sock1, + const struct sockaddr_storage *addr2, + socklen_t addr2_len, bool cmp_port) +{ + struct sockaddr_storage addr1; + socklen_t len1 = sizeof(addr1); + + memset(&addr1, 0, len1); + if (fn(sock1, (struct sockaddr *)&addr1, (socklen_t *)&len1) != 0) + return -1; + + return cmp_addr(&addr1, len1, addr2, addr2_len, cmp_port); +} + +static int load_sock_addr_kern(void) +{ + int err; + + skel = sock_addr_kern__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel")) + goto err; + + err = 0; + goto out; +err: + err = -1; +out: + return err; +} + +static void unload_sock_addr_kern(void) +{ + sock_addr_kern__destroy(skel); +} + +static int test_bind(struct sock_addr_test *test) +{ + struct sockaddr_storage expected_addr; + socklen_t expected_addr_len = sizeof(struct sockaddr_storage); + int serv = -1, client = -1, err; + + serv = test->ops->start_server(test->socket_family, test->socket_type, + test->requested_addr, + test->requested_port, 0); + if (serv < 0) { + err = errno; + goto err; + } + + err = make_sockaddr(test->socket_family, + test->expected_addr, test->expected_port, + &expected_addr, &expected_addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + err = cmp_sock_addr(test->ops->getsockname, serv, &expected_addr, + expected_addr_len, true); + if (!ASSERT_EQ(err, 0, "cmp_local_addr")) + goto cleanup; + + /* Try to connect to server just in case */ + client = connect_to_addr(test->socket_type, &expected_addr, expected_addr_len, NULL); + if (!ASSERT_GE(client, 0, "connect_to_addr")) + goto cleanup; + +cleanup: + err = 0; +err: + if (client != -1) + close(client); + if (serv != -1) + test->ops->close(serv); + + return err; +} + +static int test_connect(struct sock_addr_test *test) +{ + struct sockaddr_storage addr, expected_addr, expected_src_addr; + socklen_t addr_len = sizeof(struct sockaddr_storage), + expected_addr_len = sizeof(struct sockaddr_storage), + expected_src_addr_len = sizeof(struct sockaddr_storage); + int serv = -1, client = -1, err; + + serv = start_server(test->socket_family, test->socket_type, + test->expected_addr, test->expected_port, 0); + if (!ASSERT_GE(serv, 0, "start_server")) + goto cleanup; + + err = make_sockaddr(test->socket_family, test->requested_addr, test->requested_port, + &addr, &addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + client = test->ops->connect_to_addr(test->socket_type, &addr, addr_len, + NULL); + if (client < 0) { + err = errno; + goto err; + } + + err = make_sockaddr(test->socket_family, test->expected_addr, test->expected_port, + &expected_addr, &expected_addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + if (test->expected_src_addr) { + err = make_sockaddr(test->socket_family, test->expected_src_addr, 0, + &expected_src_addr, &expected_src_addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + } + + err = cmp_sock_addr(test->ops->getpeername, client, &expected_addr, + expected_addr_len, true); + if (!ASSERT_EQ(err, 0, "cmp_peer_addr")) + goto cleanup; + + if (test->expected_src_addr) { + err = cmp_sock_addr(test->ops->getsockname, client, + &expected_src_addr, expected_src_addr_len, + false); + if (!ASSERT_EQ(err, 0, "cmp_local_addr")) + goto cleanup; + } +cleanup: + err = 0; +err: + if (client != -1) + test->ops->close(client); + if (serv != -1) + close(serv); + + return err; +} + +static int test_xmsg(struct sock_addr_test *test) +{ + struct sockaddr_storage addr, src_addr; + socklen_t addr_len = sizeof(struct sockaddr_storage), + src_addr_len = sizeof(struct sockaddr_storage); + char data = 'a'; + int serv = -1, client = -1, err; + + /* Unlike the other tests, here we test that we can rewrite the src addr + * with a recvmsg() hook. + */ + + serv = start_server(test->socket_family, test->socket_type, + test->expected_addr, test->expected_port, 0); + if (!ASSERT_GE(serv, 0, "start_server")) + goto cleanup; + + client = test->ops->socket(test->socket_family, test->socket_type, 0); + if (!ASSERT_GE(client, 0, "socket")) + goto cleanup; + + /* AF_UNIX sockets have to be bound to something to trigger the recvmsg bpf program. */ + if (test->socket_family == AF_UNIX) { + err = make_sockaddr(AF_UNIX, SRCUN_ADDRESS, 0, &src_addr, &src_addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + err = test->ops->bind(client, (struct sockaddr *)&src_addr, + src_addr_len); + if (!ASSERT_OK(err, "bind")) + goto cleanup; + } + + err = make_sockaddr(test->socket_family, test->requested_addr, test->requested_port, + &addr, &addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + if (test->socket_type == SOCK_DGRAM) { + err = test->ops->sendmsg(client, (struct sockaddr *)&addr, + addr_len, &data, sizeof(data)); + if (err < 0) { + err = errno; + goto err; + } + + if (!ASSERT_EQ(err, sizeof(data), "sendmsg")) + goto cleanup; + } else { + /* Testing with connection-oriented sockets is only valid for + * recvmsg() tests. + */ + if (!ASSERT_EQ(test->type, SOCK_ADDR_TEST_RECVMSG, "recvmsg")) + goto cleanup; + + err = connect(client, (const struct sockaddr *)&addr, addr_len); + if (!ASSERT_OK(err, "connect")) + goto cleanup; + + err = send(client, &data, sizeof(data), 0); + if (!ASSERT_EQ(err, sizeof(data), "send")) + goto cleanup; + + err = listen(serv, 0); + if (!ASSERT_OK(err, "listen")) + goto cleanup; + + err = accept(serv, NULL, NULL); + if (!ASSERT_GE(err, 0, "accept")) + goto cleanup; + + close(serv); + serv = err; + } + + addr_len = src_addr_len = sizeof(struct sockaddr_storage); + + err = recvfrom(serv, &data, sizeof(data), 0, (struct sockaddr *) &src_addr, &src_addr_len); + if (!ASSERT_EQ(err, sizeof(data), "recvfrom")) + goto cleanup; + + ASSERT_EQ(data, 'a', "data mismatch"); + + if (test->expected_src_addr) { + err = make_sockaddr(test->socket_family, test->expected_src_addr, 0, + &addr, &addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + err = cmp_addr(&src_addr, src_addr_len, &addr, addr_len, false); + if (!ASSERT_EQ(err, 0, "cmp_addr")) + goto cleanup; + } + +cleanup: + err = 0; +err: + if (client != -1) + test->ops->close(client); + if (serv != -1) + close(serv); + + return err; +} + +static int test_getsockname(struct sock_addr_test *test) +{ + struct sockaddr_storage expected_addr; + socklen_t expected_addr_len = sizeof(struct sockaddr_storage); + int serv = -1, err; + + serv = test->ops->start_server(test->socket_family, test->socket_type, + test->requested_addr, test->requested_port, 0); + if (!ASSERT_GE(serv, 0, "start_server")) + goto cleanup; + + err = make_sockaddr(test->socket_family, + test->expected_addr, test->expected_port, + &expected_addr, &expected_addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + err = cmp_sock_addr(test->ops->getsockname, serv, &expected_addr, expected_addr_len, true); + if (!ASSERT_EQ(err, 0, "cmp_local_addr")) + goto cleanup; + +cleanup: + if (serv != -1) + test->ops->close(serv); + + return 0; +} + +static int test_getpeername(struct sock_addr_test *test) +{ + struct sockaddr_storage addr, expected_addr; + socklen_t addr_len = sizeof(struct sockaddr_storage), + expected_addr_len = sizeof(struct sockaddr_storage); + int serv = -1, client = -1, err; + + serv = start_server(test->socket_family, test->socket_type, + test->requested_addr, test->requested_port, 0); + if (!ASSERT_GE(serv, 0, "start_server")) + goto cleanup; + + err = make_sockaddr(test->socket_family, test->requested_addr, test->requested_port, + &addr, &addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + client = test->ops->connect_to_addr(test->socket_type, &addr, addr_len, + NULL); + if (!ASSERT_GE(client, 0, "connect_to_addr")) + goto cleanup; + + err = make_sockaddr(test->socket_family, test->expected_addr, test->expected_port, + &expected_addr, &expected_addr_len); + if (!ASSERT_EQ(err, 0, "make_sockaddr")) + goto cleanup; + + err = cmp_sock_addr(test->ops->getpeername, client, &expected_addr, + expected_addr_len, true); + if (!ASSERT_EQ(err, 0, "cmp_peer_addr")) + goto cleanup; + +cleanup: + if (client != -1) + test->ops->close(client); + if (serv != -1) + close(serv); + + return 0; +} + +static int setup_test_env(struct nstoken **tok) +{ + int err; + + SYS_NOFAIL("ip netns delete %s", TEST_NS); + SYS(fail, "ip netns add %s", TEST_NS); + *tok = open_netns(TEST_NS); + if (!ASSERT_OK_PTR(*tok, "netns token")) + goto fail; + + SYS(fail, "ip link add dev %s1 type veth peer name %s2", TEST_IF_PREFIX, + TEST_IF_PREFIX); + SYS(fail, "ip link set lo up"); + SYS(fail, "ip link set %s1 up", TEST_IF_PREFIX); + SYS(fail, "ip link set %s2 up", TEST_IF_PREFIX); + SYS(fail, "ip -4 addr add %s/8 dev %s1", TEST_IPV4, TEST_IF_PREFIX); + SYS(fail, "ip -6 addr add %s/128 nodad dev %s1", TEST_IPV6, TEST_IF_PREFIX); + + err = 0; + goto out; +fail: + err = -1; + close_netns(*tok); + *tok = NULL; + SYS_NOFAIL("ip netns delete %s", TEST_NS); +out: + return err; +} + +static void cleanup_test_env(struct nstoken *tok) +{ + close_netns(tok); + SYS_NOFAIL("ip netns delete %s", TEST_NS); +} + +void test_sock_addr(void) +{ + struct nstoken *tok = NULL; + int cgroup_fd = -1; + void *skel; + + cgroup_fd = test__join_cgroup("/sock_addr"); + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup")) + goto cleanup; + + if (!ASSERT_OK(setup_test_env(&tok), "setup_test_env")) + goto cleanup; + + if (!ASSERT_OK(load_sock_addr_kern(), "load_sock_addr_kern")) + goto cleanup; + + for (size_t i = 0; i < ARRAY_SIZE(tests); ++i) { + struct sock_addr_test *test = &tests[i]; + int err; + + if (!test__start_subtest(test->name)) + continue; + + skel = test->loadfn(cgroup_fd, test->attach_type, + test->expected_result == LOAD_REJECT || + test->expected_result == ATTACH_REJECT); + if (!skel) + continue; + + switch (test->type) { + /* Not exercised yet but we leave this code here for when the + * INET and INET6 sockaddr tests are migrated to this file in + * the future. + */ + case SOCK_ADDR_TEST_BIND: + err = test_bind(test); + break; + case SOCK_ADDR_TEST_CONNECT: + err = test_connect(test); + break; + case SOCK_ADDR_TEST_SENDMSG: + case SOCK_ADDR_TEST_RECVMSG: + err = test_xmsg(test); + break; + case SOCK_ADDR_TEST_GETSOCKNAME: + err = test_getsockname(test); + break; + case SOCK_ADDR_TEST_GETPEERNAME: + err = test_getpeername(test); + break; + default: + ASSERT_TRUE(false, "Unknown sock addr test type"); + break; + } + + if (test->expected_result == SYSCALL_EPERM) + ASSERT_EQ(err, EPERM, "socket operation returns EPERM"); + else if (test->expected_result == SYSCALL_ENOTSUPP) + ASSERT_EQ(err, ENOTSUPP, "socket operation returns ENOTSUPP"); + else if (test->expected_result == SUCCESS) + ASSERT_OK(err, "socket operation succeeds"); + + test->destroyfn(skel); + } + +cleanup: + unload_sock_addr_kern(); + cleanup_test_env(tok); + if (cgroup_fd >= 0) + close(cgroup_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/sock_destroy.c b/tools/testing/selftests/bpf/prog_tests/sock_destroy.c new file mode 100644 index 000000000000..9c11938fe597 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/sock_destroy.c @@ -0,0 +1,221 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <bpf/bpf_endian.h> + +#include "sock_destroy_prog.skel.h" +#include "sock_destroy_prog_fail.skel.h" +#include "network_helpers.h" + +#define TEST_NS "sock_destroy_netns" + +static void start_iter_sockets(struct bpf_program *prog) +{ + struct bpf_link *link; + char buf[50] = {}; + int iter_fd, len; + + link = bpf_program__attach_iter(prog, NULL); + if (!ASSERT_OK_PTR(link, "attach_iter")) + return; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (!ASSERT_GE(iter_fd, 0, "create_iter")) + goto free_link; + + while ((len = read(iter_fd, buf, sizeof(buf))) > 0) + ; + ASSERT_GE(len, 0, "read"); + + close(iter_fd); + +free_link: + bpf_link__destroy(link); +} + +static void test_tcp_client(struct sock_destroy_prog *skel) +{ + int serv = -1, clien = -1, accept_serv = -1, n; + + serv = start_server(AF_INET6, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_GE(serv, 0, "start_server")) + goto cleanup; + + clien = connect_to_fd(serv, 0); + if (!ASSERT_GE(clien, 0, "connect_to_fd")) + goto cleanup; + + accept_serv = accept(serv, NULL, NULL); + if (!ASSERT_GE(accept_serv, 0, "serv accept")) + goto cleanup; + + n = send(clien, "t", 1, 0); + if (!ASSERT_EQ(n, 1, "client send")) + goto cleanup; + + /* Run iterator program that destroys connected client sockets. */ + start_iter_sockets(skel->progs.iter_tcp6_client); + + n = send(clien, "t", 1, 0); + if (!ASSERT_LT(n, 0, "client_send on destroyed socket")) + goto cleanup; + ASSERT_EQ(errno, ECONNABORTED, "error code on destroyed socket"); + +cleanup: + if (clien != -1) + close(clien); + if (accept_serv != -1) + close(accept_serv); + if (serv != -1) + close(serv); +} + +static void test_tcp_server(struct sock_destroy_prog *skel) +{ + int serv = -1, clien = -1, accept_serv = -1, n, serv_port; + + serv = start_server(AF_INET6, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_GE(serv, 0, "start_server")) + goto cleanup; + serv_port = get_socket_local_port(serv); + if (!ASSERT_GE(serv_port, 0, "get_sock_local_port")) + goto cleanup; + skel->bss->serv_port = (__be16) serv_port; + + clien = connect_to_fd(serv, 0); + if (!ASSERT_GE(clien, 0, "connect_to_fd")) + goto cleanup; + + accept_serv = accept(serv, NULL, NULL); + if (!ASSERT_GE(accept_serv, 0, "serv accept")) + goto cleanup; + + n = send(clien, "t", 1, 0); + if (!ASSERT_EQ(n, 1, "client send")) + goto cleanup; + + /* Run iterator program that destroys server sockets. */ + start_iter_sockets(skel->progs.iter_tcp6_server); + + n = send(clien, "t", 1, 0); + if (!ASSERT_LT(n, 0, "client_send on destroyed socket")) + goto cleanup; + ASSERT_EQ(errno, ECONNRESET, "error code on destroyed socket"); + +cleanup: + if (clien != -1) + close(clien); + if (accept_serv != -1) + close(accept_serv); + if (serv != -1) + close(serv); +} + +static void test_udp_client(struct sock_destroy_prog *skel) +{ + int serv = -1, clien = -1, n = 0; + + serv = start_server(AF_INET6, SOCK_DGRAM, NULL, 0, 0); + if (!ASSERT_GE(serv, 0, "start_server")) + goto cleanup; + + clien = connect_to_fd(serv, 0); + if (!ASSERT_GE(clien, 0, "connect_to_fd")) + goto cleanup; + + n = send(clien, "t", 1, 0); + if (!ASSERT_EQ(n, 1, "client send")) + goto cleanup; + + /* Run iterator program that destroys sockets. */ + start_iter_sockets(skel->progs.iter_udp6_client); + + n = send(clien, "t", 1, 0); + if (!ASSERT_LT(n, 0, "client_send on destroyed socket")) + goto cleanup; + /* UDP sockets have an overriding error code after they are disconnected, + * so we don't check for ECONNABORTED error code. + */ + +cleanup: + if (clien != -1) + close(clien); + if (serv != -1) + close(serv); +} + +static void test_udp_server(struct sock_destroy_prog *skel) +{ + int *listen_fds = NULL, n, i, serv_port; + unsigned int num_listens = 5; + char buf[1]; + + /* Start reuseport servers. */ + listen_fds = start_reuseport_server(AF_INET6, SOCK_DGRAM, + "::1", 0, 0, num_listens); + if (!ASSERT_OK_PTR(listen_fds, "start_reuseport_server")) + goto cleanup; + serv_port = get_socket_local_port(listen_fds[0]); + if (!ASSERT_GE(serv_port, 0, "get_sock_local_port")) + goto cleanup; + skel->bss->serv_port = (__be16) serv_port; + + /* Run iterator program that destroys server sockets. */ + start_iter_sockets(skel->progs.iter_udp6_server); + + for (i = 0; i < num_listens; ++i) { + n = read(listen_fds[i], buf, sizeof(buf)); + if (!ASSERT_EQ(n, -1, "read") || + !ASSERT_EQ(errno, ECONNABORTED, "error code on destroyed socket")) + break; + } + ASSERT_EQ(i, num_listens, "server socket"); + +cleanup: + free_fds(listen_fds, num_listens); +} + +void test_sock_destroy(void) +{ + struct sock_destroy_prog *skel; + struct nstoken *nstoken = NULL; + int cgroup_fd; + + skel = sock_destroy_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + cgroup_fd = test__join_cgroup("/sock_destroy"); + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup")) + goto cleanup; + + skel->links.sock_connect = bpf_program__attach_cgroup( + skel->progs.sock_connect, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.sock_connect, "prog_attach")) + goto cleanup; + + SYS(cleanup, "ip netns add %s", TEST_NS); + SYS(cleanup, "ip -net %s link set dev lo up", TEST_NS); + + nstoken = open_netns(TEST_NS); + if (!ASSERT_OK_PTR(nstoken, "open_netns")) + goto cleanup; + + if (test__start_subtest("tcp_client")) + test_tcp_client(skel); + if (test__start_subtest("tcp_server")) + test_tcp_server(skel); + if (test__start_subtest("udp_client")) + test_udp_client(skel); + if (test__start_subtest("udp_server")) + test_udp_server(skel); + + RUN_TESTS(sock_destroy_prog_fail); + +cleanup: + if (nstoken) + close_netns(nstoken); + SYS_NOFAIL("ip netns del " TEST_NS); + if (cgroup_fd >= 0) + close(cgroup_fd); + sock_destroy_prog__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/sock_fields.c b/tools/testing/selftests/bpf/prog_tests/sock_fields.c new file mode 100644 index 000000000000..7d23166c77af --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/sock_fields.c @@ -0,0 +1,402 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2019 Facebook */ + +#define _GNU_SOURCE +#include <netinet/in.h> +#include <arpa/inet.h> +#include <unistd.h> +#include <sched.h> +#include <stdlib.h> +#include <string.h> +#include <errno.h> + +#include <bpf/bpf.h> +#include <bpf/libbpf.h> +#include <linux/compiler.h> + +#include "network_helpers.h" +#include "cgroup_helpers.h" +#include "test_progs.h" +#include "test_sock_fields.skel.h" + +enum bpf_linum_array_idx { + EGRESS_LINUM_IDX, + INGRESS_LINUM_IDX, + READ_SK_DST_PORT_LINUM_IDX, + __NR_BPF_LINUM_ARRAY_IDX, +}; + +struct bpf_spinlock_cnt { + struct bpf_spin_lock lock; + __u32 cnt; +}; + +#define PARENT_CGROUP "/test-bpf-sock-fields" +#define CHILD_CGROUP "/test-bpf-sock-fields/child" +#define DATA "Hello BPF!" +#define DATA_LEN sizeof(DATA) + +static struct sockaddr_in6 srv_sa6, cli_sa6; +static int sk_pkt_out_cnt10_fd; +static struct test_sock_fields *skel; +static int sk_pkt_out_cnt_fd; +static __u64 parent_cg_id; +static __u64 child_cg_id; +static int linum_map_fd; +static __u32 duration; + +static bool create_netns(void) +{ + if (!ASSERT_OK(unshare(CLONE_NEWNET), "create netns")) + return false; + + if (!ASSERT_OK(system("ip link set dev lo up"), "bring up lo")) + return false; + + return true; +} + +static void print_sk(const struct bpf_sock *sk, const char *prefix) +{ + char src_ip4[24], dst_ip4[24]; + char src_ip6[64], dst_ip6[64]; + + inet_ntop(AF_INET, &sk->src_ip4, src_ip4, sizeof(src_ip4)); + inet_ntop(AF_INET6, &sk->src_ip6, src_ip6, sizeof(src_ip6)); + inet_ntop(AF_INET, &sk->dst_ip4, dst_ip4, sizeof(dst_ip4)); + inet_ntop(AF_INET6, &sk->dst_ip6, dst_ip6, sizeof(dst_ip6)); + + printf("%s: state:%u bound_dev_if:%u family:%u type:%u protocol:%u mark:%u priority:%u " + "src_ip4:%x(%s) src_ip6:%x:%x:%x:%x(%s) src_port:%u " + "dst_ip4:%x(%s) dst_ip6:%x:%x:%x:%x(%s) dst_port:%u\n", + prefix, + sk->state, sk->bound_dev_if, sk->family, sk->type, sk->protocol, + sk->mark, sk->priority, + sk->src_ip4, src_ip4, + sk->src_ip6[0], sk->src_ip6[1], sk->src_ip6[2], sk->src_ip6[3], + src_ip6, sk->src_port, + sk->dst_ip4, dst_ip4, + sk->dst_ip6[0], sk->dst_ip6[1], sk->dst_ip6[2], sk->dst_ip6[3], + dst_ip6, ntohs(sk->dst_port)); +} + +static void print_tp(const struct bpf_tcp_sock *tp, const char *prefix) +{ + printf("%s: snd_cwnd:%u srtt_us:%u rtt_min:%u snd_ssthresh:%u rcv_nxt:%u " + "snd_nxt:%u snd:una:%u mss_cache:%u ecn_flags:%u " + "rate_delivered:%u rate_interval_us:%u packets_out:%u " + "retrans_out:%u total_retrans:%u segs_in:%u data_segs_in:%u " + "segs_out:%u data_segs_out:%u lost_out:%u sacked_out:%u " + "bytes_received:%llu bytes_acked:%llu\n", + prefix, + tp->snd_cwnd, tp->srtt_us, tp->rtt_min, tp->snd_ssthresh, + tp->rcv_nxt, tp->snd_nxt, tp->snd_una, tp->mss_cache, + tp->ecn_flags, tp->rate_delivered, tp->rate_interval_us, + tp->packets_out, tp->retrans_out, tp->total_retrans, + tp->segs_in, tp->data_segs_in, tp->segs_out, + tp->data_segs_out, tp->lost_out, tp->sacked_out, + tp->bytes_received, tp->bytes_acked); +} + +static void check_result(void) +{ + struct bpf_tcp_sock srv_tp, cli_tp, listen_tp; + struct bpf_sock srv_sk, cli_sk, listen_sk; + __u32 idx, ingress_linum, egress_linum, linum; + int err; + + idx = EGRESS_LINUM_IDX; + err = bpf_map_lookup_elem(linum_map_fd, &idx, &egress_linum); + CHECK(err < 0, "bpf_map_lookup_elem(linum_map_fd)", + "err:%d errno:%d\n", err, errno); + + idx = INGRESS_LINUM_IDX; + err = bpf_map_lookup_elem(linum_map_fd, &idx, &ingress_linum); + CHECK(err < 0, "bpf_map_lookup_elem(linum_map_fd)", + "err:%d errno:%d\n", err, errno); + + idx = READ_SK_DST_PORT_LINUM_IDX; + err = bpf_map_lookup_elem(linum_map_fd, &idx, &linum); + ASSERT_OK(err, "bpf_map_lookup_elem(linum_map_fd, READ_SK_DST_PORT_IDX)"); + ASSERT_EQ(linum, 0, "failure in read_sk_dst_port on line"); + + memcpy(&srv_sk, &skel->bss->srv_sk, sizeof(srv_sk)); + memcpy(&srv_tp, &skel->bss->srv_tp, sizeof(srv_tp)); + memcpy(&cli_sk, &skel->bss->cli_sk, sizeof(cli_sk)); + memcpy(&cli_tp, &skel->bss->cli_tp, sizeof(cli_tp)); + memcpy(&listen_sk, &skel->bss->listen_sk, sizeof(listen_sk)); + memcpy(&listen_tp, &skel->bss->listen_tp, sizeof(listen_tp)); + + print_sk(&listen_sk, "listen_sk"); + print_sk(&srv_sk, "srv_sk"); + print_sk(&cli_sk, "cli_sk"); + print_tp(&listen_tp, "listen_tp"); + print_tp(&srv_tp, "srv_tp"); + print_tp(&cli_tp, "cli_tp"); + + CHECK(listen_sk.state != 10 || + listen_sk.family != AF_INET6 || + listen_sk.protocol != IPPROTO_TCP || + memcmp(listen_sk.src_ip6, &in6addr_loopback, + sizeof(listen_sk.src_ip6)) || + listen_sk.dst_ip6[0] || listen_sk.dst_ip6[1] || + listen_sk.dst_ip6[2] || listen_sk.dst_ip6[3] || + listen_sk.src_port != ntohs(srv_sa6.sin6_port) || + listen_sk.dst_port, + "listen_sk", + "Unexpected. Check listen_sk output. ingress_linum:%u\n", + ingress_linum); + + CHECK(srv_sk.state == 10 || + !srv_sk.state || + srv_sk.family != AF_INET6 || + srv_sk.protocol != IPPROTO_TCP || + memcmp(srv_sk.src_ip6, &in6addr_loopback, + sizeof(srv_sk.src_ip6)) || + memcmp(srv_sk.dst_ip6, &in6addr_loopback, + sizeof(srv_sk.dst_ip6)) || + srv_sk.src_port != ntohs(srv_sa6.sin6_port) || + srv_sk.dst_port != cli_sa6.sin6_port, + "srv_sk", "Unexpected. Check srv_sk output. egress_linum:%u\n", + egress_linum); + + CHECK(!skel->bss->lsndtime, "srv_tp", "Unexpected lsndtime:0\n"); + + CHECK(cli_sk.state == 10 || + !cli_sk.state || + cli_sk.family != AF_INET6 || + cli_sk.protocol != IPPROTO_TCP || + memcmp(cli_sk.src_ip6, &in6addr_loopback, + sizeof(cli_sk.src_ip6)) || + memcmp(cli_sk.dst_ip6, &in6addr_loopback, + sizeof(cli_sk.dst_ip6)) || + cli_sk.src_port != ntohs(cli_sa6.sin6_port) || + cli_sk.dst_port != srv_sa6.sin6_port, + "cli_sk", "Unexpected. Check cli_sk output. egress_linum:%u\n", + egress_linum); + + CHECK(listen_tp.data_segs_out || + listen_tp.data_segs_in || + listen_tp.total_retrans || + listen_tp.bytes_acked, + "listen_tp", + "Unexpected. Check listen_tp output. ingress_linum:%u\n", + ingress_linum); + + CHECK(srv_tp.data_segs_out != 2 || + srv_tp.data_segs_in || + srv_tp.snd_cwnd != 10 || + srv_tp.total_retrans || + srv_tp.bytes_acked < 2 * DATA_LEN, + "srv_tp", "Unexpected. Check srv_tp output. egress_linum:%u\n", + egress_linum); + + CHECK(cli_tp.data_segs_out || + cli_tp.data_segs_in != 2 || + cli_tp.snd_cwnd != 10 || + cli_tp.total_retrans || + cli_tp.bytes_received < 2 * DATA_LEN, + "cli_tp", "Unexpected. Check cli_tp output. egress_linum:%u\n", + egress_linum); + + CHECK(skel->bss->parent_cg_id != parent_cg_id, + "parent_cg_id", "%zu != %zu\n", + (size_t)skel->bss->parent_cg_id, (size_t)parent_cg_id); + + CHECK(skel->bss->child_cg_id != child_cg_id, + "child_cg_id", "%zu != %zu\n", + (size_t)skel->bss->child_cg_id, (size_t)child_cg_id); +} + +static void check_sk_pkt_out_cnt(int accept_fd, int cli_fd) +{ + struct bpf_spinlock_cnt pkt_out_cnt = {}, pkt_out_cnt10 = {}; + int err; + + pkt_out_cnt.cnt = ~0; + pkt_out_cnt10.cnt = ~0; + err = bpf_map_lookup_elem(sk_pkt_out_cnt_fd, &accept_fd, &pkt_out_cnt); + if (!err) + err = bpf_map_lookup_elem(sk_pkt_out_cnt10_fd, &accept_fd, + &pkt_out_cnt10); + + /* The bpf prog only counts for fullsock and + * passive connection did not become fullsock until 3WHS + * had been finished, so the bpf prog only counted two data + * packet out. + */ + CHECK(err || pkt_out_cnt.cnt < 0xeB9F + 2 || + pkt_out_cnt10.cnt < 0xeB9F + 20, + "bpf_map_lookup_elem(sk_pkt_out_cnt, &accept_fd)", + "err:%d errno:%d pkt_out_cnt:%u pkt_out_cnt10:%u\n", + err, errno, pkt_out_cnt.cnt, pkt_out_cnt10.cnt); + + pkt_out_cnt.cnt = ~0; + pkt_out_cnt10.cnt = ~0; + err = bpf_map_lookup_elem(sk_pkt_out_cnt_fd, &cli_fd, &pkt_out_cnt); + if (!err) + err = bpf_map_lookup_elem(sk_pkt_out_cnt10_fd, &cli_fd, + &pkt_out_cnt10); + /* Active connection is fullsock from the beginning. + * 1 SYN and 1 ACK during 3WHS + * 2 Acks on data packet. + * + * The bpf_prog initialized it to 0xeB9F. + */ + CHECK(err || pkt_out_cnt.cnt < 0xeB9F + 4 || + pkt_out_cnt10.cnt < 0xeB9F + 40, + "bpf_map_lookup_elem(sk_pkt_out_cnt, &cli_fd)", + "err:%d errno:%d pkt_out_cnt:%u pkt_out_cnt10:%u\n", + err, errno, pkt_out_cnt.cnt, pkt_out_cnt10.cnt); +} + +static int init_sk_storage(int sk_fd, __u32 pkt_out_cnt) +{ + struct bpf_spinlock_cnt scnt = {}; + int err; + + scnt.cnt = pkt_out_cnt; + err = bpf_map_update_elem(sk_pkt_out_cnt_fd, &sk_fd, &scnt, + BPF_NOEXIST); + if (CHECK(err, "bpf_map_update_elem(sk_pkt_out_cnt_fd)", + "err:%d errno:%d\n", err, errno)) + return err; + + err = bpf_map_update_elem(sk_pkt_out_cnt10_fd, &sk_fd, &scnt, + BPF_NOEXIST); + if (CHECK(err, "bpf_map_update_elem(sk_pkt_out_cnt10_fd)", + "err:%d errno:%d\n", err, errno)) + return err; + + return 0; +} + +static void test(void) +{ + int listen_fd = -1, cli_fd = -1, accept_fd = -1, err, i; + socklen_t addrlen = sizeof(struct sockaddr_in6); + char buf[DATA_LEN]; + + /* Prepare listen_fd */ + listen_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0xcafe, 0); + /* start_server() has logged the error details */ + if (CHECK_FAIL(listen_fd == -1)) + goto done; + + err = getsockname(listen_fd, (struct sockaddr *)&srv_sa6, &addrlen); + if (CHECK(err, "getsockname(listen_fd)", "err:%d errno:%d\n", err, + errno)) + goto done; + memcpy(&skel->bss->srv_sa6, &srv_sa6, sizeof(srv_sa6)); + + cli_fd = connect_to_fd(listen_fd, 0); + if (CHECK_FAIL(cli_fd == -1)) + goto done; + + err = getsockname(cli_fd, (struct sockaddr *)&cli_sa6, &addrlen); + if (CHECK(err, "getsockname(cli_fd)", "err:%d errno:%d\n", + err, errno)) + goto done; + + accept_fd = accept(listen_fd, NULL, NULL); + if (CHECK(accept_fd == -1, "accept(listen_fd)", + "accept_fd:%d errno:%d\n", + accept_fd, errno)) + goto done; + + if (init_sk_storage(accept_fd, 0xeB9F)) + goto done; + + for (i = 0; i < 2; i++) { + /* Send some data from accept_fd to cli_fd. + * MSG_EOR to stop kernel from coalescing two pkts. + */ + err = send(accept_fd, DATA, DATA_LEN, MSG_EOR); + if (CHECK(err != DATA_LEN, "send(accept_fd)", + "err:%d errno:%d\n", err, errno)) + goto done; + + err = recv(cli_fd, buf, DATA_LEN, 0); + if (CHECK(err != DATA_LEN, "recv(cli_fd)", "err:%d errno:%d\n", + err, errno)) + goto done; + } + + shutdown(cli_fd, SHUT_WR); + err = recv(accept_fd, buf, 1, 0); + if (CHECK(err, "recv(accept_fd) for fin", "err:%d errno:%d\n", + err, errno)) + goto done; + shutdown(accept_fd, SHUT_WR); + err = recv(cli_fd, buf, 1, 0); + if (CHECK(err, "recv(cli_fd) for fin", "err:%d errno:%d\n", + err, errno)) + goto done; + check_sk_pkt_out_cnt(accept_fd, cli_fd); + check_result(); + +done: + if (accept_fd != -1) + close(accept_fd); + if (cli_fd != -1) + close(cli_fd); + if (listen_fd != -1) + close(listen_fd); +} + +void serial_test_sock_fields(void) +{ + int parent_cg_fd = -1, child_cg_fd = -1; + struct bpf_link *link; + + /* Use a dedicated netns to have a fixed listen port */ + if (!create_netns()) + return; + + /* Create a cgroup, get fd, and join it */ + parent_cg_fd = test__join_cgroup(PARENT_CGROUP); + if (CHECK_FAIL(parent_cg_fd < 0)) + return; + parent_cg_id = get_cgroup_id(PARENT_CGROUP); + if (CHECK_FAIL(!parent_cg_id)) + goto done; + + child_cg_fd = test__join_cgroup(CHILD_CGROUP); + if (CHECK_FAIL(child_cg_fd < 0)) + goto done; + child_cg_id = get_cgroup_id(CHILD_CGROUP); + if (CHECK_FAIL(!child_cg_id)) + goto done; + + skel = test_sock_fields__open_and_load(); + if (CHECK(!skel, "test_sock_fields__open_and_load", "failed\n")) + goto done; + + link = bpf_program__attach_cgroup(skel->progs.egress_read_sock_fields, child_cg_fd); + if (!ASSERT_OK_PTR(link, "attach_cgroup(egress_read_sock_fields)")) + goto done; + skel->links.egress_read_sock_fields = link; + + link = bpf_program__attach_cgroup(skel->progs.ingress_read_sock_fields, child_cg_fd); + if (!ASSERT_OK_PTR(link, "attach_cgroup(ingress_read_sock_fields)")) + goto done; + skel->links.ingress_read_sock_fields = link; + + link = bpf_program__attach_cgroup(skel->progs.read_sk_dst_port, child_cg_fd); + if (!ASSERT_OK_PTR(link, "attach_cgroup(read_sk_dst_port")) + goto done; + skel->links.read_sk_dst_port = link; + + linum_map_fd = bpf_map__fd(skel->maps.linum_map); + sk_pkt_out_cnt_fd = bpf_map__fd(skel->maps.sk_pkt_out_cnt); + sk_pkt_out_cnt10_fd = bpf_map__fd(skel->maps.sk_pkt_out_cnt10); + + test(); + +done: + test_sock_fields__destroy(skel); + if (child_cg_fd >= 0) + close(child_cg_fd); + if (parent_cg_fd >= 0) + close(parent_cg_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/sock_iter_batch.c b/tools/testing/selftests/bpf/prog_tests/sock_iter_batch.c new file mode 100644 index 000000000000..d56e18b25528 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/sock_iter_batch.c @@ -0,0 +1,135 @@ +// SPDX-License-Identifier: GPL-2.0 +// Copyright (c) 2024 Meta + +#include <test_progs.h> +#include "network_helpers.h" +#include "sock_iter_batch.skel.h" + +#define TEST_NS "sock_iter_batch_netns" + +static const int nr_soreuse = 4; + +static void do_test(int sock_type, bool onebyone) +{ + int err, i, nread, to_read, total_read, iter_fd = -1; + int first_idx, second_idx, indices[nr_soreuse]; + struct bpf_link *link = NULL; + struct sock_iter_batch *skel; + int *fds[2] = {}; + + skel = sock_iter_batch__open(); + if (!ASSERT_OK_PTR(skel, "sock_iter_batch__open")) + return; + + /* Prepare 2 buckets of sockets in the kernel hashtable */ + for (i = 0; i < ARRAY_SIZE(fds); i++) { + int local_port; + + fds[i] = start_reuseport_server(AF_INET6, sock_type, "::1", 0, 0, + nr_soreuse); + if (!ASSERT_OK_PTR(fds[i], "start_reuseport_server")) + goto done; + local_port = get_socket_local_port(*fds[i]); + if (!ASSERT_GE(local_port, 0, "get_socket_local_port")) + goto done; + skel->rodata->ports[i] = ntohs(local_port); + } + + err = sock_iter_batch__load(skel); + if (!ASSERT_OK(err, "sock_iter_batch__load")) + goto done; + + link = bpf_program__attach_iter(sock_type == SOCK_STREAM ? + skel->progs.iter_tcp_soreuse : + skel->progs.iter_udp_soreuse, + NULL); + if (!ASSERT_OK_PTR(link, "bpf_program__attach_iter")) + goto done; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (!ASSERT_GE(iter_fd, 0, "bpf_iter_create")) + goto done; + + /* Test reading a bucket (either from fds[0] or fds[1]). + * Only read "nr_soreuse - 1" number of sockets + * from a bucket and leave one socket out from + * that bucket on purpose. + */ + to_read = (nr_soreuse - 1) * sizeof(*indices); + total_read = 0; + first_idx = -1; + do { + nread = read(iter_fd, indices, onebyone ? sizeof(*indices) : to_read); + if (nread <= 0 || nread % sizeof(*indices)) + break; + total_read += nread; + + if (first_idx == -1) + first_idx = indices[0]; + for (i = 0; i < nread / sizeof(*indices); i++) + ASSERT_EQ(indices[i], first_idx, "first_idx"); + } while (total_read < to_read); + ASSERT_EQ(nread, onebyone ? sizeof(*indices) : to_read, "nread"); + ASSERT_EQ(total_read, to_read, "total_read"); + + free_fds(fds[first_idx], nr_soreuse); + fds[first_idx] = NULL; + + /* Read the "whole" second bucket */ + to_read = nr_soreuse * sizeof(*indices); + total_read = 0; + second_idx = !first_idx; + do { + nread = read(iter_fd, indices, onebyone ? sizeof(*indices) : to_read); + if (nread <= 0 || nread % sizeof(*indices)) + break; + total_read += nread; + + for (i = 0; i < nread / sizeof(*indices); i++) + ASSERT_EQ(indices[i], second_idx, "second_idx"); + } while (total_read <= to_read); + ASSERT_EQ(nread, 0, "nread"); + /* Both so_reuseport ports should be in different buckets, so + * total_read must equal to the expected to_read. + * + * For a very unlikely case, both ports collide at the same bucket, + * the bucket offset (i.e. 3) will be skipped and it cannot + * expect the to_read number of bytes. + */ + if (skel->bss->bucket[0] != skel->bss->bucket[1]) + ASSERT_EQ(total_read, to_read, "total_read"); + +done: + for (i = 0; i < ARRAY_SIZE(fds); i++) + free_fds(fds[i], nr_soreuse); + if (iter_fd < 0) + close(iter_fd); + bpf_link__destroy(link); + sock_iter_batch__destroy(skel); +} + +void test_sock_iter_batch(void) +{ + struct nstoken *nstoken = NULL; + + SYS_NOFAIL("ip netns del " TEST_NS); + SYS(done, "ip netns add %s", TEST_NS); + SYS(done, "ip -net %s link set dev lo up", TEST_NS); + + nstoken = open_netns(TEST_NS); + if (!ASSERT_OK_PTR(nstoken, "open_netns")) + goto done; + + if (test__start_subtest("tcp")) { + do_test(SOCK_STREAM, true); + do_test(SOCK_STREAM, false); + } + if (test__start_subtest("udp")) { + do_test(SOCK_DGRAM, true); + do_test(SOCK_DGRAM, false); + } + close_netns(nstoken); + +done: + SYS_NOFAIL("ip netns del " TEST_NS); +} diff --git a/tools/testing/selftests/bpf/prog_tests/socket_cookie.c b/tools/testing/selftests/bpf/prog_tests/socket_cookie.c new file mode 100644 index 000000000000..232db28dde18 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/socket_cookie.c @@ -0,0 +1,76 @@ +// SPDX-License-Identifier: GPL-2.0 +// Copyright (c) 2020 Google LLC. +// Copyright (c) 2018 Facebook + +#include <test_progs.h> +#include "socket_cookie_prog.skel.h" +#include "network_helpers.h" + +static int duration; + +struct socket_cookie { + __u64 cookie_key; + __u32 cookie_value; +}; + +void test_socket_cookie(void) +{ + int server_fd = 0, client_fd = 0, cgroup_fd = 0, err = 0; + socklen_t addr_len = sizeof(struct sockaddr_in6); + struct socket_cookie_prog *skel; + __u32 cookie_expected_value; + struct sockaddr_in6 addr; + struct socket_cookie val; + + skel = socket_cookie_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + cgroup_fd = test__join_cgroup("/socket_cookie"); + if (CHECK(cgroup_fd < 0, "join_cgroup", "cgroup creation failed\n")) + goto out; + + skel->links.set_cookie = bpf_program__attach_cgroup( + skel->progs.set_cookie, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.set_cookie, "prog_attach")) + goto close_cgroup_fd; + + skel->links.update_cookie_sockops = bpf_program__attach_cgroup( + skel->progs.update_cookie_sockops, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.update_cookie_sockops, "prog_attach")) + goto close_cgroup_fd; + + skel->links.update_cookie_tracing = bpf_program__attach( + skel->progs.update_cookie_tracing); + if (!ASSERT_OK_PTR(skel->links.update_cookie_tracing, "prog_attach")) + goto close_cgroup_fd; + + server_fd = start_server(AF_INET6, SOCK_STREAM, "::1", 0, 0); + if (CHECK(server_fd < 0, "start_server", "errno %d\n", errno)) + goto close_cgroup_fd; + + client_fd = connect_to_fd(server_fd, 0); + if (CHECK(client_fd < 0, "connect_to_fd", "errno %d\n", errno)) + goto close_server_fd; + + err = bpf_map_lookup_elem(bpf_map__fd(skel->maps.socket_cookies), + &client_fd, &val); + if (!ASSERT_OK(err, "map_lookup(socket_cookies)")) + goto close_client_fd; + + err = getsockname(client_fd, (struct sockaddr *)&addr, &addr_len); + if (!ASSERT_OK(err, "getsockname")) + goto close_client_fd; + + cookie_expected_value = (ntohs(addr.sin6_port) << 8) | 0xFF; + ASSERT_EQ(val.cookie_value, cookie_expected_value, "cookie_value"); + +close_client_fd: + close(client_fd); +close_server_fd: + close(server_fd); +close_cgroup_fd: + close(cgroup_fd); +out: + socket_cookie_prog__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/sockmap_basic.c b/tools/testing/selftests/bpf/prog_tests/sockmap_basic.c index 96e7b7f84c65..1337153eb0ad 100644 --- a/tools/testing/selftests/bpf/prog_tests/sockmap_basic.c +++ b/tools/testing/selftests/bpf/prog_tests/sockmap_basic.c @@ -1,9 +1,20 @@ // SPDX-License-Identifier: GPL-2.0 // Copyright (c) 2020 Cloudflare #include <error.h> +#include <netinet/tcp.h> +#include <sys/epoll.h> #include "test_progs.h" #include "test_skmsg_load_helpers.skel.h" +#include "test_sockmap_update.skel.h" +#include "test_sockmap_invalid_update.skel.h" +#include "test_sockmap_skb_verdict_attach.skel.h" +#include "test_sockmap_progs_query.skel.h" +#include "test_sockmap_pass_prog.skel.h" +#include "test_sockmap_drop_prog.skel.h" +#include "bpf_iter_sockmap.skel.h" + +#include "sockmap_helpers.h" #define TCP_REPAIR 19 /* TCP sock is under repair right now */ @@ -21,21 +32,21 @@ static int connected_socket_v4(void) int s, repair, err; s = socket(AF_INET, SOCK_STREAM, 0); - if (CHECK_FAIL(s == -1)) + if (!ASSERT_GE(s, 0, "socket")) goto error; repair = TCP_REPAIR_ON; err = setsockopt(s, SOL_TCP, TCP_REPAIR, &repair, sizeof(repair)); - if (CHECK_FAIL(err)) + if (!ASSERT_OK(err, "setsockopt(TCP_REPAIR)")) goto error; err = connect(s, (struct sockaddr *)&addr, len); - if (CHECK_FAIL(err)) + if (!ASSERT_OK(err, "connect")) goto error; repair = TCP_REPAIR_OFF_NO_WP; err = setsockopt(s, SOL_TCP, TCP_REPAIR, &repair, sizeof(repair)); - if (CHECK_FAIL(err)) + if (!ASSERT_OK(err, "setsockopt(TCP_REPAIR)")) goto error; return s; @@ -45,6 +56,35 @@ error: return -1; } +static void compare_cookies(struct bpf_map *src, struct bpf_map *dst) +{ + __u32 i, max_entries = bpf_map__max_entries(src); + int err, src_fd, dst_fd; + + src_fd = bpf_map__fd(src); + dst_fd = bpf_map__fd(dst); + + for (i = 0; i < max_entries; i++) { + __u64 src_cookie, dst_cookie; + + err = bpf_map_lookup_elem(src_fd, &i, &src_cookie); + if (err && errno == ENOENT) { + err = bpf_map_lookup_elem(dst_fd, &i, &dst_cookie); + ASSERT_ERR(err, "map_lookup_elem(dst)"); + ASSERT_EQ(errno, ENOENT, "map_lookup_elem(dst)"); + continue; + } + if (!ASSERT_OK(err, "lookup_elem(src)")) + continue; + + err = bpf_map_lookup_elem(dst_fd, &i, &dst_cookie); + if (!ASSERT_OK(err, "lookup_elem(dst)")) + continue; + + ASSERT_EQ(dst_cookie, src_cookie, "cookie mismatch"); + } +} + /* Create a map, populate it with one socket, and free the map. */ static void test_sockmap_create_update_free(enum bpf_map_type map_type) { @@ -52,20 +92,16 @@ static void test_sockmap_create_update_free(enum bpf_map_type map_type) int s, map, err; s = connected_socket_v4(); - if (CHECK_FAIL(s == -1)) + if (!ASSERT_GE(s, 0, "connected_socket_v4")) return; - map = bpf_create_map(map_type, sizeof(int), sizeof(int), 1, 0); - if (CHECK_FAIL(map == -1)) { - perror("bpf_create_map"); + map = bpf_map_create(map_type, NULL, sizeof(int), sizeof(int), 1, NULL); + if (!ASSERT_GE(map, 0, "bpf_map_create")) goto out; - } err = bpf_map_update_elem(map, &zero, &s, BPF_NOEXIST); - if (CHECK_FAIL(err)) { - perror("bpf_map_update"); + if (!ASSERT_OK(err, "bpf_map_update")) goto out; - } out: close(map); @@ -78,29 +114,787 @@ static void test_skmsg_helpers(enum bpf_map_type map_type) int err, map, verdict; skel = test_skmsg_load_helpers__open_and_load(); - if (CHECK_FAIL(!skel)) { - perror("test_skmsg_load_helpers__open_and_load"); + if (!ASSERT_OK_PTR(skel, "test_skmsg_load_helpers__open_and_load")) return; - } verdict = bpf_program__fd(skel->progs.prog_msg_verdict); map = bpf_map__fd(skel->maps.sock_map); err = bpf_prog_attach(verdict, map, BPF_SK_MSG_VERDICT, 0); - if (CHECK_FAIL(err)) { - perror("bpf_prog_attach"); + if (!ASSERT_OK(err, "bpf_prog_attach")) goto out; - } err = bpf_prog_detach2(verdict, map, BPF_SK_MSG_VERDICT); - if (CHECK_FAIL(err)) { - perror("bpf_prog_detach2"); + if (!ASSERT_OK(err, "bpf_prog_detach2")) + goto out; +out: + test_skmsg_load_helpers__destroy(skel); +} + +static void test_skmsg_helpers_with_link(enum bpf_map_type map_type) +{ + struct bpf_program *prog, *prog_clone, *prog_clone2; + DECLARE_LIBBPF_OPTS(bpf_link_update_opts, opts); + struct test_skmsg_load_helpers *skel; + struct bpf_link *link, *link2; + int err, map; + + skel = test_skmsg_load_helpers__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_skmsg_load_helpers__open_and_load")) + return; + + prog = skel->progs.prog_msg_verdict; + prog_clone = skel->progs.prog_msg_verdict_clone; + prog_clone2 = skel->progs.prog_msg_verdict_clone2; + map = bpf_map__fd(skel->maps.sock_map); + + link = bpf_program__attach_sockmap(prog, map); + if (!ASSERT_OK_PTR(link, "bpf_program__attach_sockmap")) + goto out; + + /* Fail since bpf_link for the same prog has been created. */ + err = bpf_prog_attach(bpf_program__fd(prog), map, BPF_SK_MSG_VERDICT, 0); + if (!ASSERT_ERR(err, "bpf_prog_attach")) + goto out; + + /* Fail since bpf_link for the same prog type has been created. */ + link2 = bpf_program__attach_sockmap(prog_clone, map); + if (!ASSERT_ERR_PTR(link2, "bpf_program__attach_sockmap")) { + bpf_link__detach(link2); goto out; } + + err = bpf_link__update_program(link, prog_clone); + if (!ASSERT_OK(err, "bpf_link__update_program")) + goto out; + + /* Fail since a prog with different type attempts to do update. */ + err = bpf_link__update_program(link, skel->progs.prog_skb_verdict); + if (!ASSERT_ERR(err, "bpf_link__update_program")) + goto out; + + /* Fail since the old prog does not match the one in the kernel. */ + opts.old_prog_fd = bpf_program__fd(prog_clone2); + opts.flags = BPF_F_REPLACE; + err = bpf_link_update(bpf_link__fd(link), bpf_program__fd(prog), &opts); + if (!ASSERT_ERR(err, "bpf_link_update")) + goto out; + + opts.old_prog_fd = bpf_program__fd(prog_clone); + opts.flags = BPF_F_REPLACE; + err = bpf_link_update(bpf_link__fd(link), bpf_program__fd(prog), &opts); + if (!ASSERT_OK(err, "bpf_link_update")) + goto out; out: + bpf_link__detach(link); test_skmsg_load_helpers__destroy(skel); } +static void test_sockmap_update(enum bpf_map_type map_type) +{ + int err, prog, src; + struct test_sockmap_update *skel; + struct bpf_map *dst_map; + const __u32 zero = 0; + char dummy[14] = {0}; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = dummy, + .data_size_in = sizeof(dummy), + .repeat = 1, + ); + __s64 sk; + + sk = connected_socket_v4(); + if (!ASSERT_NEQ(sk, -1, "connected_socket_v4")) + return; + + skel = test_sockmap_update__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + goto close_sk; + + prog = bpf_program__fd(skel->progs.copy_sock_map); + src = bpf_map__fd(skel->maps.src); + if (map_type == BPF_MAP_TYPE_SOCKMAP) + dst_map = skel->maps.dst_sock_map; + else + dst_map = skel->maps.dst_sock_hash; + + err = bpf_map_update_elem(src, &zero, &sk, BPF_NOEXIST); + if (!ASSERT_OK(err, "update_elem(src)")) + goto out; + + err = bpf_prog_test_run_opts(prog, &topts); + if (!ASSERT_OK(err, "test_run")) + goto out; + if (!ASSERT_NEQ(topts.retval, 0, "test_run retval")) + goto out; + + compare_cookies(skel->maps.src, dst_map); + +out: + test_sockmap_update__destroy(skel); +close_sk: + close(sk); +} + +static void test_sockmap_invalid_update(void) +{ + struct test_sockmap_invalid_update *skel; + + skel = test_sockmap_invalid_update__open_and_load(); + if (!ASSERT_NULL(skel, "open_and_load")) + test_sockmap_invalid_update__destroy(skel); +} + +static void test_sockmap_copy(enum bpf_map_type map_type) +{ + DECLARE_LIBBPF_OPTS(bpf_iter_attach_opts, opts); + int err, len, src_fd, iter_fd; + union bpf_iter_link_info linfo = {}; + __u32 i, num_sockets, num_elems; + struct bpf_iter_sockmap *skel; + __s64 *sock_fd = NULL; + struct bpf_link *link; + struct bpf_map *src; + char buf[64]; + + skel = bpf_iter_sockmap__open_and_load(); + if (!ASSERT_OK_PTR(skel, "bpf_iter_sockmap__open_and_load")) + return; + + if (map_type == BPF_MAP_TYPE_SOCKMAP) { + src = skel->maps.sockmap; + num_elems = bpf_map__max_entries(src); + num_sockets = num_elems - 1; + } else { + src = skel->maps.sockhash; + num_elems = bpf_map__max_entries(src) - 1; + num_sockets = num_elems; + } + + sock_fd = calloc(num_sockets, sizeof(*sock_fd)); + if (!ASSERT_OK_PTR(sock_fd, "calloc(sock_fd)")) + goto out; + + for (i = 0; i < num_sockets; i++) + sock_fd[i] = -1; + + src_fd = bpf_map__fd(src); + + for (i = 0; i < num_sockets; i++) { + sock_fd[i] = connected_socket_v4(); + if (!ASSERT_NEQ(sock_fd[i], -1, "connected_socket_v4")) + goto out; + + err = bpf_map_update_elem(src_fd, &i, &sock_fd[i], BPF_NOEXIST); + if (!ASSERT_OK(err, "map_update")) + goto out; + } + + linfo.map.map_fd = src_fd; + opts.link_info = &linfo; + opts.link_info_len = sizeof(linfo); + link = bpf_program__attach_iter(skel->progs.copy, &opts); + if (!ASSERT_OK_PTR(link, "attach_iter")) + goto out; + + iter_fd = bpf_iter_create(bpf_link__fd(link)); + if (!ASSERT_GE(iter_fd, 0, "create_iter")) + goto free_link; + + /* do some tests */ + while ((len = read(iter_fd, buf, sizeof(buf))) > 0) + ; + if (!ASSERT_GE(len, 0, "read")) + goto close_iter; + + /* test results */ + if (!ASSERT_EQ(skel->bss->elems, num_elems, "elems")) + goto close_iter; + + if (!ASSERT_EQ(skel->bss->socks, num_sockets, "socks")) + goto close_iter; + + compare_cookies(src, skel->maps.dst); + +close_iter: + close(iter_fd); +free_link: + bpf_link__destroy(link); +out: + for (i = 0; sock_fd && i < num_sockets; i++) + if (sock_fd[i] >= 0) + close(sock_fd[i]); + if (sock_fd) + free(sock_fd); + bpf_iter_sockmap__destroy(skel); +} + +static void test_sockmap_skb_verdict_attach(enum bpf_attach_type first, + enum bpf_attach_type second) +{ + struct test_sockmap_skb_verdict_attach *skel; + int err, map, verdict; + + skel = test_sockmap_skb_verdict_attach__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + verdict = bpf_program__fd(skel->progs.prog_skb_verdict); + map = bpf_map__fd(skel->maps.sock_map); + + err = bpf_prog_attach(verdict, map, first, 0); + if (!ASSERT_OK(err, "bpf_prog_attach")) + goto out; + + err = bpf_prog_attach(verdict, map, second, 0); + ASSERT_EQ(err, -EBUSY, "prog_attach_fail"); + + err = bpf_prog_detach2(verdict, map, first); + if (!ASSERT_OK(err, "bpf_prog_detach2")) + goto out; +out: + test_sockmap_skb_verdict_attach__destroy(skel); +} + +static void test_sockmap_skb_verdict_attach_with_link(void) +{ + struct test_sockmap_skb_verdict_attach *skel; + struct bpf_program *prog; + struct bpf_link *link; + int err, map; + + skel = test_sockmap_skb_verdict_attach__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + prog = skel->progs.prog_skb_verdict; + map = bpf_map__fd(skel->maps.sock_map); + link = bpf_program__attach_sockmap(prog, map); + if (!ASSERT_OK_PTR(link, "bpf_program__attach_sockmap")) + goto out; + + bpf_link__detach(link); + + err = bpf_prog_attach(bpf_program__fd(prog), map, BPF_SK_SKB_STREAM_VERDICT, 0); + if (!ASSERT_OK(err, "bpf_prog_attach")) + goto out; + + /* Fail since attaching with the same prog/map has been done. */ + link = bpf_program__attach_sockmap(prog, map); + if (!ASSERT_ERR_PTR(link, "bpf_program__attach_sockmap")) + bpf_link__detach(link); + + err = bpf_prog_detach2(bpf_program__fd(prog), map, BPF_SK_SKB_STREAM_VERDICT); + if (!ASSERT_OK(err, "bpf_prog_detach2")) + goto out; +out: + test_sockmap_skb_verdict_attach__destroy(skel); +} + +static __u32 query_prog_id(int prog_fd) +{ + struct bpf_prog_info info = {}; + __u32 info_len = sizeof(info); + int err; + + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + if (!ASSERT_OK(err, "bpf_prog_get_info_by_fd") || + !ASSERT_EQ(info_len, sizeof(info), "bpf_prog_get_info_by_fd")) + return 0; + + return info.id; +} + +static void test_sockmap_progs_query(enum bpf_attach_type attach_type) +{ + struct test_sockmap_progs_query *skel; + int err, map_fd, verdict_fd; + __u32 attach_flags = 0; + __u32 prog_ids[3] = {}; + __u32 prog_cnt = 3; + + skel = test_sockmap_progs_query__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_sockmap_progs_query__open_and_load")) + return; + + map_fd = bpf_map__fd(skel->maps.sock_map); + + if (attach_type == BPF_SK_MSG_VERDICT) + verdict_fd = bpf_program__fd(skel->progs.prog_skmsg_verdict); + else + verdict_fd = bpf_program__fd(skel->progs.prog_skb_verdict); + + err = bpf_prog_query(map_fd, attach_type, 0 /* query flags */, + &attach_flags, prog_ids, &prog_cnt); + ASSERT_OK(err, "bpf_prog_query failed"); + ASSERT_EQ(attach_flags, 0, "wrong attach_flags on query"); + ASSERT_EQ(prog_cnt, 0, "wrong program count on query"); + + err = bpf_prog_attach(verdict_fd, map_fd, attach_type, 0); + if (!ASSERT_OK(err, "bpf_prog_attach failed")) + goto out; + + prog_cnt = 1; + err = bpf_prog_query(map_fd, attach_type, 0 /* query flags */, + &attach_flags, prog_ids, &prog_cnt); + ASSERT_OK(err, "bpf_prog_query failed"); + ASSERT_EQ(attach_flags, 0, "wrong attach_flags on query"); + ASSERT_EQ(prog_cnt, 1, "wrong program count on query"); + ASSERT_EQ(prog_ids[0], query_prog_id(verdict_fd), + "wrong prog_ids on query"); + + bpf_prog_detach2(verdict_fd, map_fd, attach_type); +out: + test_sockmap_progs_query__destroy(skel); +} + +#define MAX_EVENTS 10 +static void test_sockmap_skb_verdict_shutdown(void) +{ + struct epoll_event ev, events[MAX_EVENTS]; + int n, err, map, verdict, s, c1 = -1, p1 = -1; + struct test_sockmap_pass_prog *skel; + int epollfd; + int zero = 0; + char b; + + skel = test_sockmap_pass_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + verdict = bpf_program__fd(skel->progs.prog_skb_verdict); + map = bpf_map__fd(skel->maps.sock_map_rx); + + err = bpf_prog_attach(verdict, map, BPF_SK_SKB_STREAM_VERDICT, 0); + if (!ASSERT_OK(err, "bpf_prog_attach")) + goto out; + + s = socket_loopback(AF_INET, SOCK_STREAM); + if (s < 0) + goto out; + err = create_pair(s, AF_INET, SOCK_STREAM, &c1, &p1); + if (err < 0) + goto out; + + err = bpf_map_update_elem(map, &zero, &c1, BPF_NOEXIST); + if (err < 0) + goto out_close; + + shutdown(p1, SHUT_WR); + + ev.events = EPOLLIN; + ev.data.fd = c1; + + epollfd = epoll_create1(0); + if (!ASSERT_GT(epollfd, -1, "epoll_create(0)")) + goto out_close; + err = epoll_ctl(epollfd, EPOLL_CTL_ADD, c1, &ev); + if (!ASSERT_OK(err, "epoll_ctl(EPOLL_CTL_ADD)")) + goto out_close; + err = epoll_wait(epollfd, events, MAX_EVENTS, -1); + if (!ASSERT_EQ(err, 1, "epoll_wait(fd)")) + goto out_close; + + n = recv(c1, &b, 1, SOCK_NONBLOCK); + ASSERT_EQ(n, 0, "recv_timeout(fin)"); +out_close: + close(c1); + close(p1); +out: + test_sockmap_pass_prog__destroy(skel); +} + +static void test_sockmap_skb_verdict_fionread(bool pass_prog) +{ + int expected, zero = 0, sent, recvd, avail; + int err, map, verdict, s, c0 = -1, c1 = -1, p0 = -1, p1 = -1; + struct test_sockmap_pass_prog *pass = NULL; + struct test_sockmap_drop_prog *drop = NULL; + char buf[256] = "0123456789"; + + if (pass_prog) { + pass = test_sockmap_pass_prog__open_and_load(); + if (!ASSERT_OK_PTR(pass, "open_and_load")) + return; + verdict = bpf_program__fd(pass->progs.prog_skb_verdict); + map = bpf_map__fd(pass->maps.sock_map_rx); + expected = sizeof(buf); + } else { + drop = test_sockmap_drop_prog__open_and_load(); + if (!ASSERT_OK_PTR(drop, "open_and_load")) + return; + verdict = bpf_program__fd(drop->progs.prog_skb_verdict); + map = bpf_map__fd(drop->maps.sock_map_rx); + /* On drop data is consumed immediately and copied_seq inc'd */ + expected = 0; + } + + + err = bpf_prog_attach(verdict, map, BPF_SK_SKB_STREAM_VERDICT, 0); + if (!ASSERT_OK(err, "bpf_prog_attach")) + goto out; + + s = socket_loopback(AF_INET, SOCK_STREAM); + if (!ASSERT_GT(s, -1, "socket_loopback(s)")) + goto out; + err = create_socket_pairs(s, AF_INET, SOCK_STREAM, &c0, &c1, &p0, &p1); + if (!ASSERT_OK(err, "create_socket_pairs(s)")) + goto out; + + err = bpf_map_update_elem(map, &zero, &c1, BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem(c1)")) + goto out_close; + + sent = xsend(p1, &buf, sizeof(buf), 0); + ASSERT_EQ(sent, sizeof(buf), "xsend(p0)"); + err = ioctl(c1, FIONREAD, &avail); + ASSERT_OK(err, "ioctl(FIONREAD) error"); + ASSERT_EQ(avail, expected, "ioctl(FIONREAD)"); + /* On DROP test there will be no data to read */ + if (pass_prog) { + recvd = recv_timeout(c1, &buf, sizeof(buf), SOCK_NONBLOCK, IO_TIMEOUT_SEC); + ASSERT_EQ(recvd, sizeof(buf), "recv_timeout(c0)"); + } + +out_close: + close(c0); + close(p0); + close(c1); + close(p1); +out: + if (pass_prog) + test_sockmap_pass_prog__destroy(pass); + else + test_sockmap_drop_prog__destroy(drop); +} + +static void test_sockmap_skb_verdict_peek_helper(int map) +{ + int err, s, c1, p1, zero = 0, sent, recvd, avail; + char snd[256] = "0123456789"; + char rcv[256] = "0"; + + s = socket_loopback(AF_INET, SOCK_STREAM); + if (!ASSERT_GT(s, -1, "socket_loopback(s)")) + return; + + err = create_pair(s, AF_INET, SOCK_STREAM, &c1, &p1); + if (!ASSERT_OK(err, "create_pairs(s)")) + return; + + err = bpf_map_update_elem(map, &zero, &c1, BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem(c1)")) + goto out_close; + + sent = xsend(p1, snd, sizeof(snd), 0); + ASSERT_EQ(sent, sizeof(snd), "xsend(p1)"); + recvd = recv(c1, rcv, sizeof(rcv), MSG_PEEK); + ASSERT_EQ(recvd, sizeof(rcv), "recv(c1)"); + err = ioctl(c1, FIONREAD, &avail); + ASSERT_OK(err, "ioctl(FIONREAD) error"); + ASSERT_EQ(avail, sizeof(snd), "after peek ioctl(FIONREAD)"); + recvd = recv(c1, rcv, sizeof(rcv), 0); + ASSERT_EQ(recvd, sizeof(rcv), "recv(p0)"); + err = ioctl(c1, FIONREAD, &avail); + ASSERT_OK(err, "ioctl(FIONREAD) error"); + ASSERT_EQ(avail, 0, "after read ioctl(FIONREAD)"); + +out_close: + close(c1); + close(p1); +} + +static void test_sockmap_skb_verdict_peek(void) +{ + struct test_sockmap_pass_prog *pass; + int err, map, verdict; + + pass = test_sockmap_pass_prog__open_and_load(); + if (!ASSERT_OK_PTR(pass, "open_and_load")) + return; + verdict = bpf_program__fd(pass->progs.prog_skb_verdict); + map = bpf_map__fd(pass->maps.sock_map_rx); + + err = bpf_prog_attach(verdict, map, BPF_SK_SKB_STREAM_VERDICT, 0); + if (!ASSERT_OK(err, "bpf_prog_attach")) + goto out; + + test_sockmap_skb_verdict_peek_helper(map); + +out: + test_sockmap_pass_prog__destroy(pass); +} + +static void test_sockmap_skb_verdict_peek_with_link(void) +{ + struct test_sockmap_pass_prog *pass; + struct bpf_program *prog; + struct bpf_link *link; + int err, map; + + pass = test_sockmap_pass_prog__open_and_load(); + if (!ASSERT_OK_PTR(pass, "open_and_load")) + return; + prog = pass->progs.prog_skb_verdict; + map = bpf_map__fd(pass->maps.sock_map_rx); + link = bpf_program__attach_sockmap(prog, map); + if (!ASSERT_OK_PTR(link, "bpf_program__attach_sockmap")) + goto out; + + err = bpf_link__update_program(link, pass->progs.prog_skb_verdict_clone); + if (!ASSERT_OK(err, "bpf_link__update_program")) + goto out; + + /* Fail since a prog with different attach type attempts to do update. */ + err = bpf_link__update_program(link, pass->progs.prog_skb_parser); + if (!ASSERT_ERR(err, "bpf_link__update_program")) + goto out; + + test_sockmap_skb_verdict_peek_helper(map); + ASSERT_EQ(pass->bss->clone_called, 1, "clone_called"); +out: + bpf_link__detach(link); + test_sockmap_pass_prog__destroy(pass); +} + +static void test_sockmap_unconnected_unix(void) +{ + int err, map, stream = 0, dgram = 0, zero = 0; + struct test_sockmap_pass_prog *skel; + + skel = test_sockmap_pass_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + map = bpf_map__fd(skel->maps.sock_map_rx); + + stream = xsocket(AF_UNIX, SOCK_STREAM, 0); + if (stream < 0) + return; + + dgram = xsocket(AF_UNIX, SOCK_DGRAM, 0); + if (dgram < 0) { + close(stream); + return; + } + + err = bpf_map_update_elem(map, &zero, &stream, BPF_ANY); + ASSERT_ERR(err, "bpf_map_update_elem(stream)"); + + err = bpf_map_update_elem(map, &zero, &dgram, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(dgram)"); + + close(stream); + close(dgram); +} + +static void test_sockmap_many_socket(void) +{ + struct test_sockmap_pass_prog *skel; + int stream[2], dgram, udp, tcp; + int i, err, map, entry = 0; + + skel = test_sockmap_pass_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + map = bpf_map__fd(skel->maps.sock_map_rx); + + dgram = xsocket(AF_UNIX, SOCK_DGRAM, 0); + if (dgram < 0) { + test_sockmap_pass_prog__destroy(skel); + return; + } + + tcp = connected_socket_v4(); + if (!ASSERT_GE(tcp, 0, "connected_socket_v4")) { + close(dgram); + test_sockmap_pass_prog__destroy(skel); + return; + } + + udp = xsocket(AF_INET, SOCK_DGRAM | SOCK_NONBLOCK, 0); + if (udp < 0) { + close(dgram); + close(tcp); + test_sockmap_pass_prog__destroy(skel); + return; + } + + err = socketpair(AF_UNIX, SOCK_STREAM, 0, stream); + ASSERT_OK(err, "socketpair(af_unix, sock_stream)"); + if (err) + goto out; + + for (i = 0; i < 2; i++, entry++) { + err = bpf_map_update_elem(map, &entry, &stream[0], BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(stream)"); + } + for (i = 0; i < 2; i++, entry++) { + err = bpf_map_update_elem(map, &entry, &dgram, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(dgram)"); + } + for (i = 0; i < 2; i++, entry++) { + err = bpf_map_update_elem(map, &entry, &udp, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(udp)"); + } + for (i = 0; i < 2; i++, entry++) { + err = bpf_map_update_elem(map, &entry, &tcp, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(tcp)"); + } + for (entry--; entry >= 0; entry--) { + err = bpf_map_delete_elem(map, &entry); + ASSERT_OK(err, "bpf_map_delete_elem(entry)"); + } + + close(stream[0]); + close(stream[1]); +out: + close(dgram); + close(tcp); + close(udp); + test_sockmap_pass_prog__destroy(skel); +} + +static void test_sockmap_many_maps(void) +{ + struct test_sockmap_pass_prog *skel; + int stream[2], dgram, udp, tcp; + int i, err, map[2], entry = 0; + + skel = test_sockmap_pass_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + map[0] = bpf_map__fd(skel->maps.sock_map_rx); + map[1] = bpf_map__fd(skel->maps.sock_map_tx); + + dgram = xsocket(AF_UNIX, SOCK_DGRAM, 0); + if (dgram < 0) { + test_sockmap_pass_prog__destroy(skel); + return; + } + + tcp = connected_socket_v4(); + if (!ASSERT_GE(tcp, 0, "connected_socket_v4")) { + close(dgram); + test_sockmap_pass_prog__destroy(skel); + return; + } + + udp = xsocket(AF_INET, SOCK_DGRAM | SOCK_NONBLOCK, 0); + if (udp < 0) { + close(dgram); + close(tcp); + test_sockmap_pass_prog__destroy(skel); + return; + } + + err = socketpair(AF_UNIX, SOCK_STREAM, 0, stream); + ASSERT_OK(err, "socketpair(af_unix, sock_stream)"); + if (err) + goto out; + + for (i = 0; i < 2; i++, entry++) { + err = bpf_map_update_elem(map[i], &entry, &stream[0], BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(stream)"); + } + for (i = 0; i < 2; i++, entry++) { + err = bpf_map_update_elem(map[i], &entry, &dgram, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(dgram)"); + } + for (i = 0; i < 2; i++, entry++) { + err = bpf_map_update_elem(map[i], &entry, &udp, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(udp)"); + } + for (i = 0; i < 2; i++, entry++) { + err = bpf_map_update_elem(map[i], &entry, &tcp, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(tcp)"); + } + for (entry--; entry >= 0; entry--) { + err = bpf_map_delete_elem(map[1], &entry); + entry--; + ASSERT_OK(err, "bpf_map_delete_elem(entry)"); + err = bpf_map_delete_elem(map[0], &entry); + ASSERT_OK(err, "bpf_map_delete_elem(entry)"); + } + + close(stream[0]); + close(stream[1]); +out: + close(dgram); + close(tcp); + close(udp); + test_sockmap_pass_prog__destroy(skel); +} + +static void test_sockmap_same_sock(void) +{ + struct test_sockmap_pass_prog *skel; + int stream[2], dgram, udp, tcp; + int i, err, map, zero = 0; + + skel = test_sockmap_pass_prog__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + map = bpf_map__fd(skel->maps.sock_map_rx); + + dgram = xsocket(AF_UNIX, SOCK_DGRAM, 0); + if (dgram < 0) { + test_sockmap_pass_prog__destroy(skel); + return; + } + + tcp = connected_socket_v4(); + if (!ASSERT_GE(tcp, 0, "connected_socket_v4")) { + close(dgram); + test_sockmap_pass_prog__destroy(skel); + return; + } + + udp = xsocket(AF_INET, SOCK_DGRAM | SOCK_NONBLOCK, 0); + if (udp < 0) { + close(dgram); + close(tcp); + test_sockmap_pass_prog__destroy(skel); + return; + } + + err = socketpair(AF_UNIX, SOCK_STREAM, 0, stream); + ASSERT_OK(err, "socketpair(af_unix, sock_stream)"); + if (err) + goto out; + + for (i = 0; i < 2; i++) { + err = bpf_map_update_elem(map, &zero, &stream[0], BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(stream)"); + } + for (i = 0; i < 2; i++) { + err = bpf_map_update_elem(map, &zero, &dgram, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(dgram)"); + } + for (i = 0; i < 2; i++) { + err = bpf_map_update_elem(map, &zero, &udp, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(udp)"); + } + for (i = 0; i < 2; i++) { + err = bpf_map_update_elem(map, &zero, &tcp, BPF_ANY); + ASSERT_OK(err, "bpf_map_update_elem(tcp)"); + } + + err = bpf_map_delete_elem(map, &zero); + ASSERT_OK(err, "bpf_map_delete_elem(entry)"); + + close(stream[0]); + close(stream[1]); +out: + close(dgram); + close(tcp); + close(udp); + test_sockmap_pass_prog__destroy(skel); +} + void test_sockmap_basic(void) { if (test__start_subtest("sockmap create_update_free")) @@ -111,4 +905,52 @@ void test_sockmap_basic(void) test_skmsg_helpers(BPF_MAP_TYPE_SOCKMAP); if (test__start_subtest("sockhash sk_msg load helpers")) test_skmsg_helpers(BPF_MAP_TYPE_SOCKHASH); + if (test__start_subtest("sockmap update")) + test_sockmap_update(BPF_MAP_TYPE_SOCKMAP); + if (test__start_subtest("sockhash update")) + test_sockmap_update(BPF_MAP_TYPE_SOCKHASH); + if (test__start_subtest("sockmap update in unsafe context")) + test_sockmap_invalid_update(); + if (test__start_subtest("sockmap copy")) + test_sockmap_copy(BPF_MAP_TYPE_SOCKMAP); + if (test__start_subtest("sockhash copy")) + test_sockmap_copy(BPF_MAP_TYPE_SOCKHASH); + if (test__start_subtest("sockmap skb_verdict attach")) { + test_sockmap_skb_verdict_attach(BPF_SK_SKB_VERDICT, + BPF_SK_SKB_STREAM_VERDICT); + test_sockmap_skb_verdict_attach(BPF_SK_SKB_STREAM_VERDICT, + BPF_SK_SKB_VERDICT); + } + if (test__start_subtest("sockmap skb_verdict attach_with_link")) + test_sockmap_skb_verdict_attach_with_link(); + if (test__start_subtest("sockmap msg_verdict progs query")) + test_sockmap_progs_query(BPF_SK_MSG_VERDICT); + if (test__start_subtest("sockmap stream_parser progs query")) + test_sockmap_progs_query(BPF_SK_SKB_STREAM_PARSER); + if (test__start_subtest("sockmap stream_verdict progs query")) + test_sockmap_progs_query(BPF_SK_SKB_STREAM_VERDICT); + if (test__start_subtest("sockmap skb_verdict progs query")) + test_sockmap_progs_query(BPF_SK_SKB_VERDICT); + if (test__start_subtest("sockmap skb_verdict shutdown")) + test_sockmap_skb_verdict_shutdown(); + if (test__start_subtest("sockmap skb_verdict fionread")) + test_sockmap_skb_verdict_fionread(true); + if (test__start_subtest("sockmap skb_verdict fionread on drop")) + test_sockmap_skb_verdict_fionread(false); + if (test__start_subtest("sockmap skb_verdict msg_f_peek")) + test_sockmap_skb_verdict_peek(); + if (test__start_subtest("sockmap skb_verdict msg_f_peek with link")) + test_sockmap_skb_verdict_peek_with_link(); + if (test__start_subtest("sockmap unconnected af_unix")) + test_sockmap_unconnected_unix(); + if (test__start_subtest("sockmap one socket to many map entries")) + test_sockmap_many_socket(); + if (test__start_subtest("sockmap one socket to many maps")) + test_sockmap_many_maps(); + if (test__start_subtest("sockmap same socket replace")) + test_sockmap_same_sock(); + if (test__start_subtest("sockmap sk_msg attach sockmap helpers with link")) + test_skmsg_helpers_with_link(BPF_MAP_TYPE_SOCKMAP); + if (test__start_subtest("sockhash sk_msg attach sockhash helpers with link")) + test_skmsg_helpers_with_link(BPF_MAP_TYPE_SOCKHASH); } diff --git a/tools/testing/selftests/bpf/prog_tests/sockmap_helpers.h b/tools/testing/selftests/bpf/prog_tests/sockmap_helpers.h new file mode 100644 index 000000000000..e880f97bc44d --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/sockmap_helpers.h @@ -0,0 +1,416 @@ +#ifndef __SOCKMAP_HELPERS__ +#define __SOCKMAP_HELPERS__ + +#include <linux/vm_sockets.h> + +#define IO_TIMEOUT_SEC 30 +#define MAX_STRERR_LEN 256 +#define MAX_TEST_NAME 80 + +/* workaround for older vm_sockets.h */ +#ifndef VMADDR_CID_LOCAL +#define VMADDR_CID_LOCAL 1 +#endif + +#define __always_unused __attribute__((__unused__)) + +#define _FAIL(errnum, fmt...) \ + ({ \ + error_at_line(0, (errnum), __func__, __LINE__, fmt); \ + CHECK_FAIL(true); \ + }) +#define FAIL(fmt...) _FAIL(0, fmt) +#define FAIL_ERRNO(fmt...) _FAIL(errno, fmt) +#define FAIL_LIBBPF(err, msg) \ + ({ \ + char __buf[MAX_STRERR_LEN]; \ + libbpf_strerror((err), __buf, sizeof(__buf)); \ + FAIL("%s: %s", (msg), __buf); \ + }) + +/* Wrappers that fail the test on error and report it. */ + +#define xaccept_nonblock(fd, addr, len) \ + ({ \ + int __ret = \ + accept_timeout((fd), (addr), (len), IO_TIMEOUT_SEC); \ + if (__ret == -1) \ + FAIL_ERRNO("accept"); \ + __ret; \ + }) + +#define xbind(fd, addr, len) \ + ({ \ + int __ret = bind((fd), (addr), (len)); \ + if (__ret == -1) \ + FAIL_ERRNO("bind"); \ + __ret; \ + }) + +#define xclose(fd) \ + ({ \ + int __ret = close((fd)); \ + if (__ret == -1) \ + FAIL_ERRNO("close"); \ + __ret; \ + }) + +#define xconnect(fd, addr, len) \ + ({ \ + int __ret = connect((fd), (addr), (len)); \ + if (__ret == -1) \ + FAIL_ERRNO("connect"); \ + __ret; \ + }) + +#define xgetsockname(fd, addr, len) \ + ({ \ + int __ret = getsockname((fd), (addr), (len)); \ + if (__ret == -1) \ + FAIL_ERRNO("getsockname"); \ + __ret; \ + }) + +#define xgetsockopt(fd, level, name, val, len) \ + ({ \ + int __ret = getsockopt((fd), (level), (name), (val), (len)); \ + if (__ret == -1) \ + FAIL_ERRNO("getsockopt(" #name ")"); \ + __ret; \ + }) + +#define xlisten(fd, backlog) \ + ({ \ + int __ret = listen((fd), (backlog)); \ + if (__ret == -1) \ + FAIL_ERRNO("listen"); \ + __ret; \ + }) + +#define xsetsockopt(fd, level, name, val, len) \ + ({ \ + int __ret = setsockopt((fd), (level), (name), (val), (len)); \ + if (__ret == -1) \ + FAIL_ERRNO("setsockopt(" #name ")"); \ + __ret; \ + }) + +#define xsend(fd, buf, len, flags) \ + ({ \ + ssize_t __ret = send((fd), (buf), (len), (flags)); \ + if (__ret == -1) \ + FAIL_ERRNO("send"); \ + __ret; \ + }) + +#define xrecv_nonblock(fd, buf, len, flags) \ + ({ \ + ssize_t __ret = recv_timeout((fd), (buf), (len), (flags), \ + IO_TIMEOUT_SEC); \ + if (__ret == -1) \ + FAIL_ERRNO("recv"); \ + __ret; \ + }) + +#define xsocket(family, sotype, flags) \ + ({ \ + int __ret = socket(family, sotype, flags); \ + if (__ret == -1) \ + FAIL_ERRNO("socket"); \ + __ret; \ + }) + +#define xbpf_map_delete_elem(fd, key) \ + ({ \ + int __ret = bpf_map_delete_elem((fd), (key)); \ + if (__ret < 0) \ + FAIL_ERRNO("map_delete"); \ + __ret; \ + }) + +#define xbpf_map_lookup_elem(fd, key, val) \ + ({ \ + int __ret = bpf_map_lookup_elem((fd), (key), (val)); \ + if (__ret < 0) \ + FAIL_ERRNO("map_lookup"); \ + __ret; \ + }) + +#define xbpf_map_update_elem(fd, key, val, flags) \ + ({ \ + int __ret = bpf_map_update_elem((fd), (key), (val), (flags)); \ + if (__ret < 0) \ + FAIL_ERRNO("map_update"); \ + __ret; \ + }) + +#define xbpf_prog_attach(prog, target, type, flags) \ + ({ \ + int __ret = \ + bpf_prog_attach((prog), (target), (type), (flags)); \ + if (__ret < 0) \ + FAIL_ERRNO("prog_attach(" #type ")"); \ + __ret; \ + }) + +#define xbpf_prog_detach2(prog, target, type) \ + ({ \ + int __ret = bpf_prog_detach2((prog), (target), (type)); \ + if (__ret < 0) \ + FAIL_ERRNO("prog_detach2(" #type ")"); \ + __ret; \ + }) + +#define xpthread_create(thread, attr, func, arg) \ + ({ \ + int __ret = pthread_create((thread), (attr), (func), (arg)); \ + errno = __ret; \ + if (__ret) \ + FAIL_ERRNO("pthread_create"); \ + __ret; \ + }) + +#define xpthread_join(thread, retval) \ + ({ \ + int __ret = pthread_join((thread), (retval)); \ + errno = __ret; \ + if (__ret) \ + FAIL_ERRNO("pthread_join"); \ + __ret; \ + }) + +static inline int poll_connect(int fd, unsigned int timeout_sec) +{ + struct timeval timeout = { .tv_sec = timeout_sec }; + fd_set wfds; + int r, eval; + socklen_t esize = sizeof(eval); + + FD_ZERO(&wfds); + FD_SET(fd, &wfds); + + r = select(fd + 1, NULL, &wfds, NULL, &timeout); + if (r == 0) + errno = ETIME; + if (r != 1) + return -1; + + if (getsockopt(fd, SOL_SOCKET, SO_ERROR, &eval, &esize) < 0) + return -1; + if (eval != 0) { + errno = eval; + return -1; + } + + return 0; +} + +static inline int poll_read(int fd, unsigned int timeout_sec) +{ + struct timeval timeout = { .tv_sec = timeout_sec }; + fd_set rfds; + int r; + + FD_ZERO(&rfds); + FD_SET(fd, &rfds); + + r = select(fd + 1, &rfds, NULL, NULL, &timeout); + if (r == 0) + errno = ETIME; + + return r == 1 ? 0 : -1; +} + +static inline int accept_timeout(int fd, struct sockaddr *addr, socklen_t *len, + unsigned int timeout_sec) +{ + if (poll_read(fd, timeout_sec)) + return -1; + + return accept(fd, addr, len); +} + +static inline int recv_timeout(int fd, void *buf, size_t len, int flags, + unsigned int timeout_sec) +{ + if (poll_read(fd, timeout_sec)) + return -1; + + return recv(fd, buf, len, flags); +} + +static inline void init_addr_loopback4(struct sockaddr_storage *ss, + socklen_t *len) +{ + struct sockaddr_in *addr4 = memset(ss, 0, sizeof(*ss)); + + addr4->sin_family = AF_INET; + addr4->sin_port = 0; + addr4->sin_addr.s_addr = htonl(INADDR_LOOPBACK); + *len = sizeof(*addr4); +} + +static inline void init_addr_loopback6(struct sockaddr_storage *ss, + socklen_t *len) +{ + struct sockaddr_in6 *addr6 = memset(ss, 0, sizeof(*ss)); + + addr6->sin6_family = AF_INET6; + addr6->sin6_port = 0; + addr6->sin6_addr = in6addr_loopback; + *len = sizeof(*addr6); +} + +static inline void init_addr_loopback_vsock(struct sockaddr_storage *ss, + socklen_t *len) +{ + struct sockaddr_vm *addr = memset(ss, 0, sizeof(*ss)); + + addr->svm_family = AF_VSOCK; + addr->svm_port = VMADDR_PORT_ANY; + addr->svm_cid = VMADDR_CID_LOCAL; + *len = sizeof(*addr); +} + +static inline void init_addr_loopback(int family, struct sockaddr_storage *ss, + socklen_t *len) +{ + switch (family) { + case AF_INET: + init_addr_loopback4(ss, len); + return; + case AF_INET6: + init_addr_loopback6(ss, len); + return; + case AF_VSOCK: + init_addr_loopback_vsock(ss, len); + return; + default: + FAIL("unsupported address family %d", family); + } +} + +static inline struct sockaddr *sockaddr(struct sockaddr_storage *ss) +{ + return (struct sockaddr *)ss; +} + +static inline int add_to_sockmap(int sock_mapfd, int fd1, int fd2) +{ + u64 value; + u32 key; + int err; + + key = 0; + value = fd1; + err = xbpf_map_update_elem(sock_mapfd, &key, &value, BPF_NOEXIST); + if (err) + return err; + + key = 1; + value = fd2; + return xbpf_map_update_elem(sock_mapfd, &key, &value, BPF_NOEXIST); +} + +static inline int create_pair(int s, int family, int sotype, int *c, int *p) +{ + struct sockaddr_storage addr; + socklen_t len; + int err = 0; + + len = sizeof(addr); + err = xgetsockname(s, sockaddr(&addr), &len); + if (err) + return err; + + *c = xsocket(family, sotype, 0); + if (*c < 0) + return errno; + err = xconnect(*c, sockaddr(&addr), len); + if (err) { + err = errno; + goto close_cli0; + } + + *p = xaccept_nonblock(s, NULL, NULL); + if (*p < 0) { + err = errno; + goto close_cli0; + } + return err; +close_cli0: + close(*c); + return err; +} + +static inline int create_socket_pairs(int s, int family, int sotype, + int *c0, int *c1, int *p0, int *p1) +{ + int err; + + err = create_pair(s, family, sotype, c0, p0); + if (err) + return err; + + err = create_pair(s, family, sotype, c1, p1); + if (err) { + close(*c0); + close(*p0); + } + return err; +} + +static inline int enable_reuseport(int s, int progfd) +{ + int err, one = 1; + + err = xsetsockopt(s, SOL_SOCKET, SO_REUSEPORT, &one, sizeof(one)); + if (err) + return -1; + err = xsetsockopt(s, SOL_SOCKET, SO_ATTACH_REUSEPORT_EBPF, &progfd, + sizeof(progfd)); + if (err) + return -1; + + return 0; +} + +static inline int socket_loopback_reuseport(int family, int sotype, int progfd) +{ + struct sockaddr_storage addr; + socklen_t len = 0; + int err, s; + + init_addr_loopback(family, &addr, &len); + + s = xsocket(family, sotype, 0); + if (s == -1) + return -1; + + if (progfd >= 0) + enable_reuseport(s, progfd); + + err = xbind(s, sockaddr(&addr), len); + if (err) + goto close; + + if (sotype & SOCK_DGRAM) + return s; + + err = xlisten(s, SOMAXCONN); + if (err) + goto close; + + return s; +close: + xclose(s); + return -1; +} + +static inline int socket_loopback(int family, int sotype) +{ + return socket_loopback_reuseport(family, sotype, -1); +} + + +#endif // __SOCKMAP_HELPERS__ diff --git a/tools/testing/selftests/bpf/prog_tests/sockmap_ktls.c b/tools/testing/selftests/bpf/prog_tests/sockmap_ktls.c index 06b86addc181..2d0796314862 100644 --- a/tools/testing/selftests/bpf/prog_tests/sockmap_ktls.c +++ b/tools/testing/selftests/bpf/prog_tests/sockmap_ktls.c @@ -4,6 +4,7 @@ * Tests for sockmap/sockhash holding kTLS sockets. */ +#include <netinet/tcp.h> #include "test_progs.h" #define MAX_TEST_NAME 80 @@ -14,16 +15,12 @@ static int tcp_server(int family) int err, s; s = socket(family, SOCK_STREAM, 0); - if (CHECK_FAIL(s == -1)) { - perror("socket"); + if (!ASSERT_GE(s, 0, "socket")) return -1; - } err = listen(s, SOMAXCONN); - if (CHECK_FAIL(err)) { - perror("listen"); + if (!ASSERT_OK(err, "listen")) return -1; - } return s; } @@ -47,44 +44,31 @@ static void test_sockmap_ktls_disconnect_after_delete(int family, int map) return; err = getsockname(srv, (struct sockaddr *)&addr, &len); - if (CHECK_FAIL(err)) { - perror("getsockopt"); + if (!ASSERT_OK(err, "getsockopt")) goto close_srv; - } cli = socket(family, SOCK_STREAM, 0); - if (CHECK_FAIL(cli == -1)) { - perror("socket"); + if (!ASSERT_GE(cli, 0, "socket")) goto close_srv; - } err = connect(cli, (struct sockaddr *)&addr, len); - if (CHECK_FAIL(err)) { - perror("connect"); + if (!ASSERT_OK(err, "connect")) goto close_cli; - } err = bpf_map_update_elem(map, &zero, &cli, 0); - if (CHECK_FAIL(err)) { - perror("bpf_map_update_elem"); + if (!ASSERT_OK(err, "bpf_map_update_elem")) goto close_cli; - } err = setsockopt(cli, IPPROTO_TCP, TCP_ULP, "tls", strlen("tls")); - if (CHECK_FAIL(err)) { - perror("setsockopt(TCP_ULP)"); + if (!ASSERT_OK(err, "setsockopt(TCP_ULP)")) goto close_cli; - } err = bpf_map_delete_elem(map, &zero); - if (CHECK_FAIL(err)) { - perror("bpf_map_delete_elem"); + if (!ASSERT_OK(err, "bpf_map_delete_elem")) goto close_cli; - } err = disconnect(cli); - if (CHECK_FAIL(err)) - perror("disconnect"); + ASSERT_OK(err, "disconnect"); close_cli: close(cli); @@ -92,25 +76,88 @@ close_srv: close(srv); } -static void run_tests(int family, enum bpf_map_type map_type) +static void test_sockmap_ktls_update_fails_when_sock_has_ulp(int family, int map) { - char test_name[MAX_TEST_NAME]; - int map; - - map = bpf_create_map(map_type, sizeof(int), sizeof(int), 1, 0); - if (CHECK_FAIL(map == -1)) { - perror("bpf_map_create"); + struct sockaddr_storage addr = {}; + socklen_t len = sizeof(addr); + struct sockaddr_in6 *v6; + struct sockaddr_in *v4; + int err, s, zero = 0; + + switch (family) { + case AF_INET: + v4 = (struct sockaddr_in *)&addr; + v4->sin_family = AF_INET; + break; + case AF_INET6: + v6 = (struct sockaddr_in6 *)&addr; + v6->sin6_family = AF_INET6; + break; + default: + PRINT_FAIL("unsupported socket family %d", family); return; } + s = socket(family, SOCK_STREAM, 0); + if (!ASSERT_GE(s, 0, "socket")) + return; + + err = bind(s, (struct sockaddr *)&addr, len); + if (!ASSERT_OK(err, "bind")) + goto close; + + err = getsockname(s, (struct sockaddr *)&addr, &len); + if (!ASSERT_OK(err, "getsockname")) + goto close; + + err = connect(s, (struct sockaddr *)&addr, len); + if (!ASSERT_OK(err, "connect")) + goto close; + + /* save sk->sk_prot and set it to tls_prots */ + err = setsockopt(s, IPPROTO_TCP, TCP_ULP, "tls", strlen("tls")); + if (!ASSERT_OK(err, "setsockopt(TCP_ULP)")) + goto close; + + /* sockmap update should not affect saved sk_prot */ + err = bpf_map_update_elem(map, &zero, &s, BPF_ANY); + if (!ASSERT_ERR(err, "sockmap update elem")) + goto close; + + /* call sk->sk_prot->setsockopt to dispatch to saved sk_prot */ + err = setsockopt(s, IPPROTO_TCP, TCP_NODELAY, &zero, sizeof(zero)); + ASSERT_OK(err, "setsockopt(TCP_NODELAY)"); + +close: + close(s); +} + +static const char *fmt_test_name(const char *subtest_name, int family, + enum bpf_map_type map_type) +{ + const char *map_type_str = BPF_MAP_TYPE_SOCKMAP ? "SOCKMAP" : "SOCKHASH"; + const char *family_str = AF_INET ? "IPv4" : "IPv6"; + static char test_name[MAX_TEST_NAME]; + snprintf(test_name, MAX_TEST_NAME, - "sockmap_ktls disconnect_after_delete %s %s", - family == AF_INET ? "IPv4" : "IPv6", - map_type == BPF_MAP_TYPE_SOCKMAP ? "SOCKMAP" : "SOCKHASH"); - if (!test__start_subtest(test_name)) + "sockmap_ktls %s %s %s", + subtest_name, family_str, map_type_str); + + return test_name; +} + +static void run_tests(int family, enum bpf_map_type map_type) +{ + int map; + + map = bpf_map_create(map_type, NULL, sizeof(int), sizeof(int), 1, NULL); + if (!ASSERT_GE(map, 0, "bpf_map_create")) return; - test_sockmap_ktls_disconnect_after_delete(family, map); + if (test__start_subtest(fmt_test_name("disconnect_after_delete", family, map_type))) + test_sockmap_ktls_disconnect_after_delete(family, map); + if (test__start_subtest(fmt_test_name("update_fails_when_sock_has_ulp", family, map_type))) + test_sockmap_ktls_update_fails_when_sock_has_ulp(family, map); close(map); } diff --git a/tools/testing/selftests/bpf/prog_tests/sockmap_listen.c b/tools/testing/selftests/bpf/prog_tests/sockmap_listen.c index d7d65a700799..e91b59366030 100644 --- a/tools/testing/selftests/bpf/prog_tests/sockmap_listen.c +++ b/tools/testing/selftests/bpf/prog_tests/sockmap_listen.c @@ -18,6 +18,7 @@ #include <string.h> #include <sys/select.h> #include <unistd.h> +#include <linux/vm_sockets.h> #include <bpf/bpf.h> #include <bpf/libbpf.h> @@ -26,302 +27,10 @@ #include "test_progs.h" #include "test_sockmap_listen.skel.h" -#define IO_TIMEOUT_SEC 30 -#define MAX_STRERR_LEN 256 -#define MAX_TEST_NAME 80 - -#define _FAIL(errnum, fmt...) \ - ({ \ - error_at_line(0, (errnum), __func__, __LINE__, fmt); \ - CHECK_FAIL(true); \ - }) -#define FAIL(fmt...) _FAIL(0, fmt) -#define FAIL_ERRNO(fmt...) _FAIL(errno, fmt) -#define FAIL_LIBBPF(err, msg) \ - ({ \ - char __buf[MAX_STRERR_LEN]; \ - libbpf_strerror((err), __buf, sizeof(__buf)); \ - FAIL("%s: %s", (msg), __buf); \ - }) - -/* Wrappers that fail the test on error and report it. */ - -#define xaccept_nonblock(fd, addr, len) \ - ({ \ - int __ret = \ - accept_timeout((fd), (addr), (len), IO_TIMEOUT_SEC); \ - if (__ret == -1) \ - FAIL_ERRNO("accept"); \ - __ret; \ - }) - -#define xbind(fd, addr, len) \ - ({ \ - int __ret = bind((fd), (addr), (len)); \ - if (__ret == -1) \ - FAIL_ERRNO("bind"); \ - __ret; \ - }) - -#define xclose(fd) \ - ({ \ - int __ret = close((fd)); \ - if (__ret == -1) \ - FAIL_ERRNO("close"); \ - __ret; \ - }) - -#define xconnect(fd, addr, len) \ - ({ \ - int __ret = connect((fd), (addr), (len)); \ - if (__ret == -1) \ - FAIL_ERRNO("connect"); \ - __ret; \ - }) - -#define xgetsockname(fd, addr, len) \ - ({ \ - int __ret = getsockname((fd), (addr), (len)); \ - if (__ret == -1) \ - FAIL_ERRNO("getsockname"); \ - __ret; \ - }) - -#define xgetsockopt(fd, level, name, val, len) \ - ({ \ - int __ret = getsockopt((fd), (level), (name), (val), (len)); \ - if (__ret == -1) \ - FAIL_ERRNO("getsockopt(" #name ")"); \ - __ret; \ - }) - -#define xlisten(fd, backlog) \ - ({ \ - int __ret = listen((fd), (backlog)); \ - if (__ret == -1) \ - FAIL_ERRNO("listen"); \ - __ret; \ - }) - -#define xsetsockopt(fd, level, name, val, len) \ - ({ \ - int __ret = setsockopt((fd), (level), (name), (val), (len)); \ - if (__ret == -1) \ - FAIL_ERRNO("setsockopt(" #name ")"); \ - __ret; \ - }) - -#define xsend(fd, buf, len, flags) \ - ({ \ - ssize_t __ret = send((fd), (buf), (len), (flags)); \ - if (__ret == -1) \ - FAIL_ERRNO("send"); \ - __ret; \ - }) - -#define xrecv_nonblock(fd, buf, len, flags) \ - ({ \ - ssize_t __ret = recv_timeout((fd), (buf), (len), (flags), \ - IO_TIMEOUT_SEC); \ - if (__ret == -1) \ - FAIL_ERRNO("recv"); \ - __ret; \ - }) - -#define xsocket(family, sotype, flags) \ - ({ \ - int __ret = socket(family, sotype, flags); \ - if (__ret == -1) \ - FAIL_ERRNO("socket"); \ - __ret; \ - }) - -#define xbpf_map_delete_elem(fd, key) \ - ({ \ - int __ret = bpf_map_delete_elem((fd), (key)); \ - if (__ret == -1) \ - FAIL_ERRNO("map_delete"); \ - __ret; \ - }) - -#define xbpf_map_lookup_elem(fd, key, val) \ - ({ \ - int __ret = bpf_map_lookup_elem((fd), (key), (val)); \ - if (__ret == -1) \ - FAIL_ERRNO("map_lookup"); \ - __ret; \ - }) - -#define xbpf_map_update_elem(fd, key, val, flags) \ - ({ \ - int __ret = bpf_map_update_elem((fd), (key), (val), (flags)); \ - if (__ret == -1) \ - FAIL_ERRNO("map_update"); \ - __ret; \ - }) - -#define xbpf_prog_attach(prog, target, type, flags) \ - ({ \ - int __ret = \ - bpf_prog_attach((prog), (target), (type), (flags)); \ - if (__ret == -1) \ - FAIL_ERRNO("prog_attach(" #type ")"); \ - __ret; \ - }) - -#define xbpf_prog_detach2(prog, target, type) \ - ({ \ - int __ret = bpf_prog_detach2((prog), (target), (type)); \ - if (__ret == -1) \ - FAIL_ERRNO("prog_detach2(" #type ")"); \ - __ret; \ - }) - -#define xpthread_create(thread, attr, func, arg) \ - ({ \ - int __ret = pthread_create((thread), (attr), (func), (arg)); \ - errno = __ret; \ - if (__ret) \ - FAIL_ERRNO("pthread_create"); \ - __ret; \ - }) - -#define xpthread_join(thread, retval) \ - ({ \ - int __ret = pthread_join((thread), (retval)); \ - errno = __ret; \ - if (__ret) \ - FAIL_ERRNO("pthread_join"); \ - __ret; \ - }) - -static int poll_read(int fd, unsigned int timeout_sec) -{ - struct timeval timeout = { .tv_sec = timeout_sec }; - fd_set rfds; - int r; - - FD_ZERO(&rfds); - FD_SET(fd, &rfds); - - r = select(fd + 1, &rfds, NULL, NULL, &timeout); - if (r == 0) - errno = ETIME; - - return r == 1 ? 0 : -1; -} - -static int accept_timeout(int fd, struct sockaddr *addr, socklen_t *len, - unsigned int timeout_sec) -{ - if (poll_read(fd, timeout_sec)) - return -1; - - return accept(fd, addr, len); -} - -static int recv_timeout(int fd, void *buf, size_t len, int flags, - unsigned int timeout_sec) -{ - if (poll_read(fd, timeout_sec)) - return -1; - - return recv(fd, buf, len, flags); -} - -static void init_addr_loopback4(struct sockaddr_storage *ss, socklen_t *len) -{ - struct sockaddr_in *addr4 = memset(ss, 0, sizeof(*ss)); - - addr4->sin_family = AF_INET; - addr4->sin_port = 0; - addr4->sin_addr.s_addr = htonl(INADDR_LOOPBACK); - *len = sizeof(*addr4); -} - -static void init_addr_loopback6(struct sockaddr_storage *ss, socklen_t *len) -{ - struct sockaddr_in6 *addr6 = memset(ss, 0, sizeof(*ss)); - - addr6->sin6_family = AF_INET6; - addr6->sin6_port = 0; - addr6->sin6_addr = in6addr_loopback; - *len = sizeof(*addr6); -} - -static void init_addr_loopback(int family, struct sockaddr_storage *ss, - socklen_t *len) -{ - switch (family) { - case AF_INET: - init_addr_loopback4(ss, len); - return; - case AF_INET6: - init_addr_loopback6(ss, len); - return; - default: - FAIL("unsupported address family %d", family); - } -} - -static inline struct sockaddr *sockaddr(struct sockaddr_storage *ss) -{ - return (struct sockaddr *)ss; -} - -static int enable_reuseport(int s, int progfd) -{ - int err, one = 1; - - err = xsetsockopt(s, SOL_SOCKET, SO_REUSEPORT, &one, sizeof(one)); - if (err) - return -1; - err = xsetsockopt(s, SOL_SOCKET, SO_ATTACH_REUSEPORT_EBPF, &progfd, - sizeof(progfd)); - if (err) - return -1; +#include "sockmap_helpers.h" - return 0; -} - -static int socket_loopback_reuseport(int family, int sotype, int progfd) -{ - struct sockaddr_storage addr; - socklen_t len; - int err, s; - - init_addr_loopback(family, &addr, &len); - - s = xsocket(family, sotype, 0); - if (s == -1) - return -1; - - if (progfd >= 0) - enable_reuseport(s, progfd); - - err = xbind(s, sockaddr(&addr), len); - if (err) - goto close; - - if (sotype & SOCK_DGRAM) - return s; - - err = xlisten(s, SOMAXCONN); - if (err) - goto close; - - return s; -close: - xclose(s); - return -1; -} - -static int socket_loopback(int family, int sotype) -{ - return socket_loopback_reuseport(family, sotype, -1); -} - -static void test_insert_invalid(int family, int sotype, int mapfd) +static void test_insert_invalid(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { u32 key = 0; u64 value; @@ -338,7 +47,8 @@ static void test_insert_invalid(int family, int sotype, int mapfd) FAIL_ERRNO("map_update: expected EBADF"); } -static void test_insert_opened(int family, int sotype, int mapfd) +static void test_insert_opened(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { u32 key = 0; u64 value; @@ -351,16 +61,19 @@ static void test_insert_opened(int family, int sotype, int mapfd) errno = 0; value = s; err = bpf_map_update_elem(mapfd, &key, &value, BPF_NOEXIST); - if (!err || errno != EOPNOTSUPP) - FAIL_ERRNO("map_update: expected EOPNOTSUPP"); - + if (sotype == SOCK_STREAM) { + if (!err || errno != EOPNOTSUPP) + FAIL_ERRNO("map_update: expected EOPNOTSUPP"); + } else if (err) + FAIL_ERRNO("map_update: expected success"); xclose(s); } -static void test_insert_bound(int family, int sotype, int mapfd) +static void test_insert_bound(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { struct sockaddr_storage addr; - socklen_t len; + socklen_t len = 0; u32 key = 0; u64 value; int err, s; @@ -384,7 +97,8 @@ close: xclose(s); } -static void test_insert(int family, int sotype, int mapfd) +static void test_insert(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { u64 value; u32 key; @@ -400,7 +114,8 @@ static void test_insert(int family, int sotype, int mapfd) xclose(s); } -static void test_delete_after_insert(int family, int sotype, int mapfd) +static void test_delete_after_insert(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { u64 value; u32 key; @@ -417,7 +132,8 @@ static void test_delete_after_insert(int family, int sotype, int mapfd) xclose(s); } -static void test_delete_after_close(int family, int sotype, int mapfd) +static void test_delete_after_close(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { int err, s; u64 value; @@ -440,7 +156,8 @@ static void test_delete_after_close(int family, int sotype, int mapfd) FAIL_ERRNO("map_delete: expected EINVAL/EINVAL"); } -static void test_lookup_after_insert(int family, int sotype, int mapfd) +static void test_lookup_after_insert(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { u64 cookie, value; socklen_t len; @@ -468,7 +185,8 @@ static void test_lookup_after_insert(int family, int sotype, int mapfd) xclose(s); } -static void test_lookup_after_delete(int family, int sotype, int mapfd) +static void test_lookup_after_delete(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { int err, s; u64 value; @@ -491,7 +209,8 @@ static void test_lookup_after_delete(int family, int sotype, int mapfd) xclose(s); } -static void test_lookup_32_bit_value(int family, int sotype, int mapfd) +static void test_lookup_32_bit_value(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { u32 key, value32; int err, s; @@ -500,8 +219,8 @@ static void test_lookup_32_bit_value(int family, int sotype, int mapfd) if (s < 0) return; - mapfd = bpf_create_map(BPF_MAP_TYPE_SOCKMAP, sizeof(key), - sizeof(value32), 1, 0); + mapfd = bpf_map_create(BPF_MAP_TYPE_SOCKMAP, NULL, sizeof(key), + sizeof(value32), 1, NULL); if (mapfd < 0) { FAIL_ERRNO("map_create"); goto close; @@ -521,7 +240,8 @@ close: xclose(s); } -static void test_update_existing(int family, int sotype, int mapfd) +static void test_update_existing(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { int s1, s2; u64 value; @@ -549,7 +269,7 @@ close_s1: /* Exercise the code path where we destroy child sockets that never * got accept()'ed, aka orphans, when parent socket gets closed. */ -static void test_destroy_orphan_child(int family, int sotype, int mapfd) +static void do_destroy_orphan_child(int family, int sotype, int mapfd) { struct sockaddr_storage addr; socklen_t len; @@ -580,10 +300,38 @@ close_srv: xclose(s); } +static void test_destroy_orphan_child(struct test_sockmap_listen *skel, + int family, int sotype, int mapfd) +{ + int msg_verdict = bpf_program__fd(skel->progs.prog_msg_verdict); + int skb_verdict = bpf_program__fd(skel->progs.prog_skb_verdict); + const struct test { + int progfd; + enum bpf_attach_type atype; + } tests[] = { + { -1, -1 }, + { msg_verdict, BPF_SK_MSG_VERDICT }, + { skb_verdict, BPF_SK_SKB_VERDICT }, + }; + const struct test *t; + + for (t = tests; t < tests + ARRAY_SIZE(tests); t++) { + if (t->progfd != -1 && + xbpf_prog_attach(t->progfd, mapfd, t->atype, 0) != 0) + return; + + do_destroy_orphan_child(family, sotype, mapfd); + + if (t->progfd != -1) + xbpf_prog_detach2(t->progfd, mapfd, t->atype); + } +} + /* Perform a passive open after removing listening socket from SOCKMAP * to ensure that callbacks get restored properly. */ -static void test_clone_after_delete(int family, int sotype, int mapfd) +static void test_clone_after_delete(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { struct sockaddr_storage addr; socklen_t len; @@ -619,7 +367,8 @@ close_srv: * SOCKMAP, but got accept()'ed only after the parent has been removed * from SOCKMAP, gets cloned without parent psock state or callbacks. */ -static void test_accept_after_delete(int family, int sotype, int mapfd) +static void test_accept_after_delete(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { struct sockaddr_storage addr; const u32 zero = 0; @@ -673,7 +422,8 @@ close_srv: /* Check that child socket that got created and accepted while parent * was in a SOCKMAP is cloned without parent psock state or callbacks. */ -static void test_accept_before_delete(int family, int sotype, int mapfd) +static void test_accept_before_delete(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { struct sockaddr_storage addr; const u32 zero = 0, one = 1; @@ -782,7 +532,8 @@ done: return NULL; } -static void test_syn_recv_insert_delete(int family, int sotype, int mapfd) +static void test_syn_recv_insert_delete(struct test_sockmap_listen *skel __always_unused, + int family, int sotype, int mapfd) { struct connect_accept_ctx ctx = { 0 }; struct sockaddr_storage addr; @@ -845,7 +596,8 @@ static void *listen_thread(void *arg) return NULL; } -static void test_race_insert_listen(int family, int socktype, int mapfd) +static void test_race_insert_listen(struct test_sockmap_listen *skel __always_unused, + int family, int socktype, int mapfd) { struct connect_accept_ctx ctx = { 0 }; const u32 zero = 0; @@ -923,12 +675,9 @@ static void redir_to_connected(int family, int sotype, int sock_mapfd, int verd_mapfd, enum redir_mode mode) { const char *log_prefix = redir_mode_str(mode); - struct sockaddr_storage addr; int s, c0, c1, p0, p1; unsigned int pass; - socklen_t len; int err, n; - u64 value; u32 key; char b; @@ -938,44 +687,13 @@ static void redir_to_connected(int family, int sotype, int sock_mapfd, if (s < 0) return; - len = sizeof(addr); - err = xgetsockname(s, sockaddr(&addr), &len); + err = create_socket_pairs(s, family, sotype, &c0, &c1, &p0, &p1); if (err) goto close_srv; - c0 = xsocket(family, sotype, 0); - if (c0 < 0) - goto close_srv; - err = xconnect(c0, sockaddr(&addr), len); - if (err) - goto close_cli0; - - p0 = xaccept_nonblock(s, NULL, NULL); - if (p0 < 0) - goto close_cli0; - - c1 = xsocket(family, sotype, 0); - if (c1 < 0) - goto close_peer0; - err = xconnect(c1, sockaddr(&addr), len); - if (err) - goto close_cli1; - - p1 = xaccept_nonblock(s, NULL, NULL); - if (p1 < 0) - goto close_cli1; - - key = 0; - value = p0; - err = xbpf_map_update_elem(sock_mapfd, &key, &value, BPF_NOEXIST); + err = add_to_sockmap(sock_mapfd, p0, p1); if (err) - goto close_peer1; - - key = 1; - value = p1; - err = xbpf_map_update_elem(sock_mapfd, &key, &value, BPF_NOEXIST); - if (err) - goto close_peer1; + goto close; n = write(mode == REDIR_INGRESS ? c1 : p1, "a", 1); if (n < 0) @@ -983,28 +701,24 @@ static void redir_to_connected(int family, int sotype, int sock_mapfd, if (n == 0) FAIL("%s: incomplete write", log_prefix); if (n < 1) - goto close_peer1; + goto close; key = SK_PASS; err = xbpf_map_lookup_elem(verd_mapfd, &key, &pass); if (err) - goto close_peer1; + goto close; if (pass != 1) FAIL("%s: want pass count 1, have %d", log_prefix, pass); - - n = read(c0, &b, 1); + n = recv_timeout(c0, &b, 1, 0, IO_TIMEOUT_SEC); if (n < 0) - FAIL_ERRNO("%s: read", log_prefix); + FAIL_ERRNO("%s: recv_timeout", log_prefix); if (n == 0) - FAIL("%s: incomplete read", log_prefix); + FAIL("%s: incomplete recv", log_prefix); -close_peer1: +close: xclose(p1); -close_cli1: xclose(c1); -close_peer0: xclose(p0); -close_cli0: xclose(c0); close_srv: xclose(s); @@ -1014,8 +728,8 @@ static void test_skb_redir_to_connected(struct test_sockmap_listen *skel, struct bpf_map *inner_map, int family, int sotype) { - int verdict = bpf_program__fd(skel->progs.prog_skb_verdict); - int parser = bpf_program__fd(skel->progs.prog_skb_parser); + int verdict = bpf_program__fd(skel->progs.prog_stream_verdict); + int parser = bpf_program__fd(skel->progs.prog_stream_parser); int verdict_map = bpf_map__fd(skel->maps.verdict_map); int sock_map = bpf_map__fd(inner_map); int err; @@ -1053,6 +767,24 @@ static void test_msg_redir_to_connected(struct test_sockmap_listen *skel, xbpf_prog_detach2(verdict, sock_map, BPF_SK_MSG_VERDICT); } +static void test_msg_redir_to_connected_with_link(struct test_sockmap_listen *skel, + struct bpf_map *inner_map, int family, + int sotype) +{ + int prog_msg_verdict = bpf_program__fd(skel->progs.prog_msg_verdict); + int verdict_map = bpf_map__fd(skel->maps.verdict_map); + int sock_map = bpf_map__fd(inner_map); + int link_fd; + + link_fd = bpf_link_create(prog_msg_verdict, sock_map, BPF_SK_MSG_VERDICT, NULL); + if (!ASSERT_GE(link_fd, 0, "bpf_link_create")) + return; + + redir_to_connected(family, sotype, sock_map, verdict_map, REDIR_EGRESS); + + close(link_fd); +} + static void redir_to_listening(int family, int sotype, int sock_mapfd, int verd_mapfd, enum redir_mode mode) { @@ -1061,7 +793,6 @@ static void redir_to_listening(int family, int sotype, int sock_mapfd, int s, c, p, err, n; unsigned int drop; socklen_t len; - u64 value; u32 key; zero_verdict_count(verd_mapfd); @@ -1086,15 +817,7 @@ static void redir_to_listening(int family, int sotype, int sock_mapfd, if (p < 0) goto close_cli; - key = 0; - value = s; - err = xbpf_map_update_elem(sock_mapfd, &key, &value, BPF_NOEXIST); - if (err) - goto close_peer; - - key = 1; - value = p; - err = xbpf_map_update_elem(sock_mapfd, &key, &value, BPF_NOEXIST); + err = add_to_sockmap(sock_mapfd, s, p); if (err) goto close_peer; @@ -1125,8 +848,8 @@ static void test_skb_redir_to_listening(struct test_sockmap_listen *skel, struct bpf_map *inner_map, int family, int sotype) { - int verdict = bpf_program__fd(skel->progs.prog_skb_verdict); - int parser = bpf_program__fd(skel->progs.prog_skb_parser); + int verdict = bpf_program__fd(skel->progs.prog_stream_verdict); + int parser = bpf_program__fd(skel->progs.prog_stream_parser); int verdict_map = bpf_map__fd(skel->maps.verdict_map); int sock_map = bpf_map__fd(inner_map); int err; @@ -1164,6 +887,95 @@ static void test_msg_redir_to_listening(struct test_sockmap_listen *skel, xbpf_prog_detach2(verdict, sock_map, BPF_SK_MSG_VERDICT); } +static void test_msg_redir_to_listening_with_link(struct test_sockmap_listen *skel, + struct bpf_map *inner_map, int family, + int sotype) +{ + struct bpf_program *verdict = skel->progs.prog_msg_verdict; + int verdict_map = bpf_map__fd(skel->maps.verdict_map); + int sock_map = bpf_map__fd(inner_map); + struct bpf_link *link; + + link = bpf_program__attach_sockmap(verdict, sock_map); + if (!ASSERT_OK_PTR(link, "bpf_program__attach_sockmap")) + return; + + redir_to_listening(family, sotype, sock_map, verdict_map, REDIR_EGRESS); + + bpf_link__detach(link); +} + +static void redir_partial(int family, int sotype, int sock_map, int parser_map) +{ + int s, c0 = -1, c1 = -1, p0 = -1, p1 = -1; + int err, n, key, value; + char buf[] = "abc"; + + key = 0; + value = sizeof(buf) - 1; + err = xbpf_map_update_elem(parser_map, &key, &value, 0); + if (err) + return; + + s = socket_loopback(family, sotype | SOCK_NONBLOCK); + if (s < 0) + goto clean_parser_map; + + err = create_socket_pairs(s, family, sotype, &c0, &c1, &p0, &p1); + if (err) + goto close_srv; + + err = add_to_sockmap(sock_map, p0, p1); + if (err) + goto close; + + n = xsend(c1, buf, sizeof(buf), 0); + if (n < sizeof(buf)) + FAIL("incomplete write"); + + n = xrecv_nonblock(c0, buf, sizeof(buf), 0); + if (n != sizeof(buf) - 1) + FAIL("expect %zu, received %d", sizeof(buf) - 1, n); + +close: + xclose(c0); + xclose(p0); + xclose(c1); + xclose(p1); +close_srv: + xclose(s); + +clean_parser_map: + key = 0; + value = 0; + xbpf_map_update_elem(parser_map, &key, &value, 0); +} + +static void test_skb_redir_partial(struct test_sockmap_listen *skel, + struct bpf_map *inner_map, int family, + int sotype) +{ + int verdict = bpf_program__fd(skel->progs.prog_stream_verdict); + int parser = bpf_program__fd(skel->progs.prog_stream_parser); + int parser_map = bpf_map__fd(skel->maps.parser_map); + int sock_map = bpf_map__fd(inner_map); + int err; + + err = xbpf_prog_attach(parser, sock_map, BPF_SK_SKB_STREAM_PARSER, 0); + if (err) + return; + + err = xbpf_prog_attach(verdict, sock_map, BPF_SK_SKB_STREAM_VERDICT, 0); + if (err) + goto detach; + + redir_partial(family, sotype, sock_map, parser_map); + + xbpf_prog_detach2(verdict, sock_map, BPF_SK_SKB_STREAM_VERDICT); +detach: + xbpf_prog_detach2(parser, sock_map, BPF_SK_SKB_STREAM_PARSER); +} + static void test_reuseport_select_listening(int family, int sotype, int sock_map, int verd_map, int reuseport_prog) @@ -1346,7 +1158,6 @@ static void test_reuseport_mixed_groups(int family, int sotype, int sock_map, int s1, s2, c, err; unsigned int drop; socklen_t len; - u64 value; u32 key; zero_verdict_count(verd_map); @@ -1360,16 +1171,10 @@ static void test_reuseport_mixed_groups(int family, int sotype, int sock_map, if (s2 < 0) goto close_srv1; - key = 0; - value = s1; - err = xbpf_map_update_elem(sock_map, &key, &value, BPF_NOEXIST); + err = add_to_sockmap(sock_map, s1, s2); if (err) goto close_srv2; - key = 1; - value = s2; - err = xbpf_map_update_elem(sock_map, &key, &value, BPF_NOEXIST); - /* Connect to s2, reuseport BPF selects s1 via sock_map[0] */ len = sizeof(addr); err = xgetsockname(s2, sockaddr(&addr), &len); @@ -1420,14 +1225,12 @@ close_srv1: static void test_ops_cleanup(const struct bpf_map *map) { - const struct bpf_map_def *def; int err, mapfd; u32 key; - def = bpf_map__def(map); mapfd = bpf_map__fd(map); - for (key = 0; key < def->max_entries; key++) { + for (key = 0; key < bpf_map__max_entries(map); key++) { err = bpf_map_delete_elem(mapfd, &key); if (err && errno != EINVAL && errno != ENOENT) FAIL_ERRNO("map_delete: expected EINVAL/ENOENT"); @@ -1441,6 +1244,10 @@ static const char *family_str(sa_family_t family) return "IPv4"; case AF_INET6: return "IPv6"; + case AF_UNIX: + return "Unix"; + case AF_VSOCK: + return "VSOCK"; default: return "unknown"; } @@ -1448,13 +1255,13 @@ static const char *family_str(sa_family_t family) static const char *map_type_str(const struct bpf_map *map) { - const struct bpf_map_def *def; + int type; - def = bpf_map__def(map); - if (IS_ERR(def)) + if (!map) return "invalid"; + type = bpf_map__type(map); - switch (def->type) { + switch (type) { case BPF_MAP_TYPE_SOCKMAP: return "sockmap"; case BPF_MAP_TYPE_SOCKHASH: @@ -1480,7 +1287,8 @@ static void test_ops(struct test_sockmap_listen *skel, struct bpf_map *map, int family, int sotype) { const struct op_test { - void (*fn)(int family, int sotype, int mapfd); + void (*fn)(struct test_sockmap_listen *skel, + int family, int sotype, int mapfd); const char *name; int sotype; } tests[] = { @@ -1527,7 +1335,7 @@ static void test_ops(struct test_sockmap_listen *skel, struct bpf_map *map, if (!test__start_subtest(s)) continue; - t->fn(family, sotype, map_fd); + t->fn(skel, family, sotype, map_fd); test_ops_cleanup(map); } } @@ -1542,8 +1350,11 @@ static void test_redir(struct test_sockmap_listen *skel, struct bpf_map *map, } tests[] = { TEST(test_skb_redir_to_connected), TEST(test_skb_redir_to_listening), + TEST(test_skb_redir_partial), TEST(test_msg_redir_to_connected), + TEST(test_msg_redir_to_connected_with_link), TEST(test_msg_redir_to_listening), + TEST(test_msg_redir_to_listening_with_link), }; const char *family_name, *map_name; const struct redir_test *t; @@ -1563,6 +1374,259 @@ static void test_redir(struct test_sockmap_listen *skel, struct bpf_map *map, } } +static void pairs_redir_to_connected(int cli0, int peer0, int cli1, int peer1, + int sock_mapfd, int nop_mapfd, + int verd_mapfd, enum redir_mode mode) +{ + const char *log_prefix = redir_mode_str(mode); + unsigned int pass; + int err, n; + u32 key; + char b; + + zero_verdict_count(verd_mapfd); + + err = add_to_sockmap(sock_mapfd, peer0, peer1); + if (err) + return; + + if (nop_mapfd >= 0) { + err = add_to_sockmap(nop_mapfd, cli0, cli1); + if (err) + return; + } + + n = write(cli1, "a", 1); + if (n < 0) + FAIL_ERRNO("%s: write", log_prefix); + if (n == 0) + FAIL("%s: incomplete write", log_prefix); + if (n < 1) + return; + + key = SK_PASS; + err = xbpf_map_lookup_elem(verd_mapfd, &key, &pass); + if (err) + return; + if (pass != 1) + FAIL("%s: want pass count 1, have %d", log_prefix, pass); + + n = recv_timeout(mode == REDIR_INGRESS ? peer0 : cli0, &b, 1, 0, IO_TIMEOUT_SEC); + if (n < 0) + FAIL_ERRNO("%s: recv_timeout", log_prefix); + if (n == 0) + FAIL("%s: incomplete recv", log_prefix); +} + +static void unix_redir_to_connected(int sotype, int sock_mapfd, + int verd_mapfd, enum redir_mode mode) +{ + int c0, c1, p0, p1; + int sfd[2]; + + if (socketpair(AF_UNIX, sotype | SOCK_NONBLOCK, 0, sfd)) + return; + c0 = sfd[0], p0 = sfd[1]; + + if (socketpair(AF_UNIX, sotype | SOCK_NONBLOCK, 0, sfd)) + goto close0; + c1 = sfd[0], p1 = sfd[1]; + + pairs_redir_to_connected(c0, p0, c1, p1, sock_mapfd, -1, verd_mapfd, mode); + + xclose(c1); + xclose(p1); +close0: + xclose(c0); + xclose(p0); +} + +static void unix_skb_redir_to_connected(struct test_sockmap_listen *skel, + struct bpf_map *inner_map, int sotype) +{ + int verdict = bpf_program__fd(skel->progs.prog_skb_verdict); + int verdict_map = bpf_map__fd(skel->maps.verdict_map); + int sock_map = bpf_map__fd(inner_map); + int err; + + err = xbpf_prog_attach(verdict, sock_map, BPF_SK_SKB_VERDICT, 0); + if (err) + return; + + skel->bss->test_ingress = false; + unix_redir_to_connected(sotype, sock_map, verdict_map, REDIR_EGRESS); + skel->bss->test_ingress = true; + unix_redir_to_connected(sotype, sock_map, verdict_map, REDIR_INGRESS); + + xbpf_prog_detach2(verdict, sock_map, BPF_SK_SKB_VERDICT); +} + +static void test_unix_redir(struct test_sockmap_listen *skel, struct bpf_map *map, + int sotype) +{ + const char *family_name, *map_name; + char s[MAX_TEST_NAME]; + + family_name = family_str(AF_UNIX); + map_name = map_type_str(map); + snprintf(s, sizeof(s), "%s %s %s", map_name, family_name, __func__); + if (!test__start_subtest(s)) + return; + unix_skb_redir_to_connected(skel, map, sotype); +} + +/* Returns two connected loopback vsock sockets */ +static int vsock_socketpair_connectible(int sotype, int *v0, int *v1) +{ + struct sockaddr_storage addr; + socklen_t len = sizeof(addr); + int s, p, c; + + s = socket_loopback(AF_VSOCK, sotype); + if (s < 0) + return -1; + + c = xsocket(AF_VSOCK, sotype | SOCK_NONBLOCK, 0); + if (c == -1) + goto close_srv; + + if (getsockname(s, sockaddr(&addr), &len) < 0) + goto close_cli; + + if (connect(c, sockaddr(&addr), len) < 0 && errno != EINPROGRESS) { + FAIL_ERRNO("connect"); + goto close_cli; + } + + len = sizeof(addr); + p = accept_timeout(s, sockaddr(&addr), &len, IO_TIMEOUT_SEC); + if (p < 0) + goto close_cli; + + if (poll_connect(c, IO_TIMEOUT_SEC) < 0) { + FAIL_ERRNO("poll_connect"); + goto close_acc; + } + + *v0 = p; + *v1 = c; + + return 0; + +close_acc: + close(p); +close_cli: + close(c); +close_srv: + close(s); + + return -1; +} + +static void vsock_unix_redir_connectible(int sock_mapfd, int verd_mapfd, + enum redir_mode mode, int sotype) +{ + const char *log_prefix = redir_mode_str(mode); + char a = 'a', b = 'b'; + int u0, u1, v0, v1; + int sfd[2]; + unsigned int pass; + int err, n; + u32 key; + + zero_verdict_count(verd_mapfd); + + if (socketpair(AF_UNIX, SOCK_STREAM | SOCK_NONBLOCK, 0, sfd)) + return; + + u0 = sfd[0]; + u1 = sfd[1]; + + err = vsock_socketpair_connectible(sotype, &v0, &v1); + if (err) { + FAIL("vsock_socketpair_connectible() failed"); + goto close_uds; + } + + err = add_to_sockmap(sock_mapfd, u0, v0); + if (err) { + FAIL("add_to_sockmap failed"); + goto close_vsock; + } + + n = write(v1, &a, sizeof(a)); + if (n < 0) + FAIL_ERRNO("%s: write", log_prefix); + if (n == 0) + FAIL("%s: incomplete write", log_prefix); + if (n < 1) + goto out; + + n = xrecv_nonblock(mode == REDIR_INGRESS ? u0 : u1, &b, sizeof(b), 0); + if (n < 0) + FAIL("%s: recv() err, errno=%d", log_prefix, errno); + if (n == 0) + FAIL("%s: incomplete recv", log_prefix); + if (b != a) + FAIL("%s: vsock socket map failed, %c != %c", log_prefix, a, b); + + key = SK_PASS; + err = xbpf_map_lookup_elem(verd_mapfd, &key, &pass); + if (err) + goto out; + if (pass != 1) + FAIL("%s: want pass count 1, have %d", log_prefix, pass); +out: + key = 0; + bpf_map_delete_elem(sock_mapfd, &key); + key = 1; + bpf_map_delete_elem(sock_mapfd, &key); + +close_vsock: + close(v0); + close(v1); + +close_uds: + close(u0); + close(u1); +} + +static void vsock_unix_skb_redir_connectible(struct test_sockmap_listen *skel, + struct bpf_map *inner_map, + int sotype) +{ + int verdict = bpf_program__fd(skel->progs.prog_skb_verdict); + int verdict_map = bpf_map__fd(skel->maps.verdict_map); + int sock_map = bpf_map__fd(inner_map); + int err; + + err = xbpf_prog_attach(verdict, sock_map, BPF_SK_SKB_VERDICT, 0); + if (err) + return; + + skel->bss->test_ingress = false; + vsock_unix_redir_connectible(sock_map, verdict_map, REDIR_EGRESS, sotype); + skel->bss->test_ingress = true; + vsock_unix_redir_connectible(sock_map, verdict_map, REDIR_INGRESS, sotype); + + xbpf_prog_detach2(verdict, sock_map, BPF_SK_SKB_VERDICT); +} + +static void test_vsock_redir(struct test_sockmap_listen *skel, struct bpf_map *map) +{ + const char *family_name, *map_name; + char s[MAX_TEST_NAME]; + + family_name = family_str(AF_VSOCK); + map_name = map_type_str(map); + snprintf(s, sizeof(s), "%s %s %s", map_name, family_name, __func__); + if (!test__start_subtest(s)) + return; + + vsock_unix_skb_redir_connectible(skel, map, SOCK_STREAM); + vsock_unix_skb_redir_connectible(skel, map, SOCK_SEQPACKET); +} + static void test_reuseport(struct test_sockmap_listen *skel, struct bpf_map *map, int family, int sotype) { @@ -1603,6 +1667,242 @@ static void test_reuseport(struct test_sockmap_listen *skel, } } +static int inet_socketpair(int family, int type, int *s, int *c) +{ + struct sockaddr_storage addr; + socklen_t len; + int p0, c0; + int err; + + p0 = socket_loopback(family, type | SOCK_NONBLOCK); + if (p0 < 0) + return p0; + + len = sizeof(addr); + err = xgetsockname(p0, sockaddr(&addr), &len); + if (err) + goto close_peer0; + + c0 = xsocket(family, type | SOCK_NONBLOCK, 0); + if (c0 < 0) { + err = c0; + goto close_peer0; + } + err = xconnect(c0, sockaddr(&addr), len); + if (err) + goto close_cli0; + err = xgetsockname(c0, sockaddr(&addr), &len); + if (err) + goto close_cli0; + err = xconnect(p0, sockaddr(&addr), len); + if (err) + goto close_cli0; + + *s = p0; + *c = c0; + return 0; + +close_cli0: + xclose(c0); +close_peer0: + xclose(p0); + return err; +} + +static void udp_redir_to_connected(int family, int sock_mapfd, int verd_mapfd, + enum redir_mode mode) +{ + int c0, c1, p0, p1; + int err; + + err = inet_socketpair(family, SOCK_DGRAM, &p0, &c0); + if (err) + return; + err = inet_socketpair(family, SOCK_DGRAM, &p1, &c1); + if (err) + goto close_cli0; + + pairs_redir_to_connected(c0, p0, c1, p1, sock_mapfd, -1, verd_mapfd, mode); + + xclose(c1); + xclose(p1); +close_cli0: + xclose(c0); + xclose(p0); +} + +static void udp_skb_redir_to_connected(struct test_sockmap_listen *skel, + struct bpf_map *inner_map, int family) +{ + int verdict = bpf_program__fd(skel->progs.prog_skb_verdict); + int verdict_map = bpf_map__fd(skel->maps.verdict_map); + int sock_map = bpf_map__fd(inner_map); + int err; + + err = xbpf_prog_attach(verdict, sock_map, BPF_SK_SKB_VERDICT, 0); + if (err) + return; + + skel->bss->test_ingress = false; + udp_redir_to_connected(family, sock_map, verdict_map, REDIR_EGRESS); + skel->bss->test_ingress = true; + udp_redir_to_connected(family, sock_map, verdict_map, REDIR_INGRESS); + + xbpf_prog_detach2(verdict, sock_map, BPF_SK_SKB_VERDICT); +} + +static void test_udp_redir(struct test_sockmap_listen *skel, struct bpf_map *map, + int family) +{ + const char *family_name, *map_name; + char s[MAX_TEST_NAME]; + + family_name = family_str(family); + map_name = map_type_str(map); + snprintf(s, sizeof(s), "%s %s %s", map_name, family_name, __func__); + if (!test__start_subtest(s)) + return; + udp_skb_redir_to_connected(skel, map, family); +} + +static void inet_unix_redir_to_connected(int family, int type, int sock_mapfd, + int verd_mapfd, enum redir_mode mode) +{ + int c0, c1, p0, p1; + int sfd[2]; + int err; + + if (socketpair(AF_UNIX, SOCK_DGRAM | SOCK_NONBLOCK, 0, sfd)) + return; + c0 = sfd[0], p0 = sfd[1]; + + err = inet_socketpair(family, SOCK_DGRAM, &p1, &c1); + if (err) + goto close; + + pairs_redir_to_connected(c0, p0, c1, p1, sock_mapfd, -1, verd_mapfd, mode); + + xclose(c1); + xclose(p1); +close: + xclose(c0); + xclose(p0); +} + +static void inet_unix_skb_redir_to_connected(struct test_sockmap_listen *skel, + struct bpf_map *inner_map, int family) +{ + int verdict = bpf_program__fd(skel->progs.prog_skb_verdict); + int verdict_map = bpf_map__fd(skel->maps.verdict_map); + int sock_map = bpf_map__fd(inner_map); + int err; + + err = xbpf_prog_attach(verdict, sock_map, BPF_SK_SKB_VERDICT, 0); + if (err) + return; + + skel->bss->test_ingress = false; + inet_unix_redir_to_connected(family, SOCK_DGRAM, sock_map, verdict_map, + REDIR_EGRESS); + inet_unix_redir_to_connected(family, SOCK_STREAM, sock_map, verdict_map, + REDIR_EGRESS); + skel->bss->test_ingress = true; + inet_unix_redir_to_connected(family, SOCK_DGRAM, sock_map, verdict_map, + REDIR_INGRESS); + inet_unix_redir_to_connected(family, SOCK_STREAM, sock_map, verdict_map, + REDIR_INGRESS); + + xbpf_prog_detach2(verdict, sock_map, BPF_SK_SKB_VERDICT); +} + +static void unix_inet_redir_to_connected(int family, int type, + int sock_mapfd, int nop_mapfd, + int verd_mapfd, + enum redir_mode mode) +{ + int c0, c1, p0, p1; + int sfd[2]; + int err; + + err = inet_socketpair(family, SOCK_DGRAM, &p0, &c0); + if (err) + return; + + if (socketpair(AF_UNIX, SOCK_DGRAM | SOCK_NONBLOCK, 0, sfd)) + goto close_cli0; + c1 = sfd[0], p1 = sfd[1]; + + pairs_redir_to_connected(c0, p0, c1, p1, + sock_mapfd, nop_mapfd, verd_mapfd, mode); + + xclose(c1); + xclose(p1); +close_cli0: + xclose(c0); + xclose(p0); + +} + +static void unix_inet_skb_redir_to_connected(struct test_sockmap_listen *skel, + struct bpf_map *inner_map, int family) +{ + int verdict = bpf_program__fd(skel->progs.prog_skb_verdict); + int nop_map = bpf_map__fd(skel->maps.nop_map); + int verdict_map = bpf_map__fd(skel->maps.verdict_map); + int sock_map = bpf_map__fd(inner_map); + int err; + + err = xbpf_prog_attach(verdict, sock_map, BPF_SK_SKB_VERDICT, 0); + if (err) + return; + + skel->bss->test_ingress = false; + unix_inet_redir_to_connected(family, SOCK_DGRAM, + sock_map, -1, verdict_map, + REDIR_EGRESS); + unix_inet_redir_to_connected(family, SOCK_DGRAM, + sock_map, -1, verdict_map, + REDIR_EGRESS); + + unix_inet_redir_to_connected(family, SOCK_DGRAM, + sock_map, nop_map, verdict_map, + REDIR_EGRESS); + unix_inet_redir_to_connected(family, SOCK_STREAM, + sock_map, nop_map, verdict_map, + REDIR_EGRESS); + skel->bss->test_ingress = true; + unix_inet_redir_to_connected(family, SOCK_DGRAM, + sock_map, -1, verdict_map, + REDIR_INGRESS); + unix_inet_redir_to_connected(family, SOCK_STREAM, + sock_map, -1, verdict_map, + REDIR_INGRESS); + + unix_inet_redir_to_connected(family, SOCK_DGRAM, + sock_map, nop_map, verdict_map, + REDIR_INGRESS); + unix_inet_redir_to_connected(family, SOCK_STREAM, + sock_map, nop_map, verdict_map, + REDIR_INGRESS); + + xbpf_prog_detach2(verdict, sock_map, BPF_SK_SKB_VERDICT); +} + +static void test_udp_unix_redir(struct test_sockmap_listen *skel, struct bpf_map *map, + int family) +{ + const char *family_name, *map_name; + char s[MAX_TEST_NAME]; + + family_name = family_str(family); + map_name = map_type_str(map); + snprintf(s, sizeof(s), "%s %s %s", map_name, family_name, __func__); + if (!test__start_subtest(s)) + return; + inet_unix_skb_redir_to_connected(skel, map, family); + unix_inet_skb_redir_to_connected(skel, map, family); +} + static void run_tests(struct test_sockmap_listen *skel, struct bpf_map *map, int family) { @@ -1611,9 +1911,11 @@ static void run_tests(struct test_sockmap_listen *skel, struct bpf_map *map, test_redir(skel, map, family, SOCK_STREAM); test_reuseport(skel, map, family, SOCK_STREAM); test_reuseport(skel, map, family, SOCK_DGRAM); + test_udp_redir(skel, map, family); + test_udp_unix_redir(skel, map, family); } -void test_sockmap_listen(void) +void serial_test_sockmap_listen(void) { struct test_sockmap_listen *skel; @@ -1626,10 +1928,16 @@ void test_sockmap_listen(void) skel->bss->test_sockmap = true; run_tests(skel, skel->maps.sock_map, AF_INET); run_tests(skel, skel->maps.sock_map, AF_INET6); + test_unix_redir(skel, skel->maps.sock_map, SOCK_DGRAM); + test_unix_redir(skel, skel->maps.sock_map, SOCK_STREAM); + test_vsock_redir(skel, skel->maps.sock_map); skel->bss->test_sockmap = false; run_tests(skel, skel->maps.sock_hash, AF_INET); run_tests(skel, skel->maps.sock_hash, AF_INET6); + test_unix_redir(skel, skel->maps.sock_hash, SOCK_DGRAM); + test_unix_redir(skel, skel->maps.sock_hash, SOCK_STREAM); + test_vsock_redir(skel, skel->maps.sock_hash); test_sockmap_listen__destroy(skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/sockopt.c b/tools/testing/selftests/bpf/prog_tests/sockopt.c index 3e8517a8395a..eaac83a7f388 100644 --- a/tools/testing/selftests/bpf/prog_tests/sockopt.c +++ b/tools/testing/selftests/bpf/prog_tests/sockopt.c @@ -1,14 +1,20 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> +#include <io_uring/mini_liburing.h> #include "cgroup_helpers.h" static char bpf_log_buf[4096]; static bool verbose; +#ifndef PAGE_SIZE +#define PAGE_SIZE 4096 +#endif + enum sockopt_test_error { OK = 0, DENY_LOAD, DENY_ATTACH, + EOPNOTSUPP_GETSOCKOPT, EPERM_GETSOCKOPT, EFAULT_GETSOCKOPT, EPERM_SETSOCKOPT, @@ -18,6 +24,7 @@ enum sockopt_test_error { static struct sockopt_test { const char *descr; const struct bpf_insn insns[64]; + enum bpf_prog_type prog_type; enum bpf_attach_type attach_type; enum bpf_attach_type expected_attach_type; @@ -33,6 +40,7 @@ static struct sockopt_test { socklen_t get_optlen_ret; enum sockopt_test_error error; + bool io_uring_support; } tests[] = { /* ==================== getsockopt ==================== */ @@ -246,7 +254,9 @@ static struct sockopt_test { .attach_type = BPF_CGROUP_GETSOCKOPT, .expected_attach_type = BPF_CGROUP_GETSOCKOPT, + .get_level = SOL_SOCKET, .get_optlen = 64, + .io_uring_support = true, }, { .descr = "getsockopt: deny bigger ctx->optlen", @@ -271,12 +281,34 @@ static struct sockopt_test { .get_optlen = 64, .error = EFAULT_GETSOCKOPT, + .io_uring_support = true, }, { - .descr = "getsockopt: deny arbitrary ctx->retval", + .descr = "getsockopt: ignore >PAGE_SIZE optlen", .insns = { - /* ctx->retval = 123 */ - BPF_MOV64_IMM(BPF_REG_0, 123), + /* write 0xFF to the first optval byte */ + + /* r6 = ctx->optval */ + BPF_LDX_MEM(BPF_DW, BPF_REG_6, BPF_REG_1, + offsetof(struct bpf_sockopt, optval)), + /* r2 = ctx->optval */ + BPF_MOV64_REG(BPF_REG_2, BPF_REG_6), + /* r6 = ctx->optval + 1 */ + BPF_ALU64_IMM(BPF_ADD, BPF_REG_6, 1), + + /* r7 = ctx->optval_end */ + BPF_LDX_MEM(BPF_DW, BPF_REG_7, BPF_REG_1, + offsetof(struct bpf_sockopt, optval_end)), + + /* if (ctx->optval + 1 <= ctx->optval_end) { */ + BPF_JMP_REG(BPF_JGT, BPF_REG_6, BPF_REG_7, 1), + /* ctx->optval[0] = 0xF0 */ + BPF_ST_MEM(BPF_B, BPF_REG_2, 0, 0xFF), + /* } */ + + /* retval changes are ignored */ + /* ctx->retval = 5 */ + BPF_MOV64_IMM(BPF_REG_0, 5), BPF_STX_MEM(BPF_W, BPF_REG_1, BPF_REG_0, offsetof(struct bpf_sockopt, retval)), @@ -287,9 +319,12 @@ static struct sockopt_test { .attach_type = BPF_CGROUP_GETSOCKOPT, .expected_attach_type = BPF_CGROUP_GETSOCKOPT, - .get_optlen = 64, - - .error = EFAULT_GETSOCKOPT, + .get_level = 1234, + .get_optname = 5678, + .get_optval = {}, /* the changes are ignored */ + .get_optlen = PAGE_SIZE + 1, + .error = EOPNOTSUPP_GETSOCKOPT, + .io_uring_support = true, }, { .descr = "getsockopt: support smaller ctx->optlen", @@ -309,8 +344,10 @@ static struct sockopt_test { .attach_type = BPF_CGROUP_GETSOCKOPT, .expected_attach_type = BPF_CGROUP_GETSOCKOPT, + .get_level = SOL_SOCKET, .get_optlen = 64, .get_optlen_ret = 32, + .io_uring_support = true, }, { .descr = "getsockopt: deny writing to ctx->optval", @@ -490,6 +527,7 @@ static struct sockopt_test { .set_level = 123, .set_optlen = 1, + .io_uring_support = true, }, { .descr = "setsockopt: allow changing ctx->level", @@ -544,6 +582,7 @@ static struct sockopt_test { .set_optname = 123, .set_optlen = 1, + .io_uring_support = true, }, { .descr = "setsockopt: allow changing ctx->optname", @@ -596,6 +635,7 @@ static struct sockopt_test { .expected_attach_type = BPF_CGROUP_SETSOCKOPT, .set_optlen = 64, + .io_uring_support = true, }, { .descr = "setsockopt: ctx->optlen == -1 is ok", @@ -612,6 +652,7 @@ static struct sockopt_test { .expected_attach_type = BPF_CGROUP_SETSOCKOPT, .set_optlen = 64, + .io_uring_support = true, }, { .descr = "setsockopt: deny ctx->optlen < 0 (except -1)", @@ -630,6 +671,7 @@ static struct sockopt_test { .set_optlen = 4, .error = EFAULT_SETSOCKOPT, + .io_uring_support = true, }, { .descr = "setsockopt: deny ctx->optlen > input optlen", @@ -647,6 +689,46 @@ static struct sockopt_test { .set_optlen = 64, .error = EFAULT_SETSOCKOPT, + .io_uring_support = true, + }, + { + .descr = "setsockopt: ignore >PAGE_SIZE optlen", + .insns = { + /* write 0xFF to the first optval byte */ + + /* r6 = ctx->optval */ + BPF_LDX_MEM(BPF_DW, BPF_REG_6, BPF_REG_1, + offsetof(struct bpf_sockopt, optval)), + /* r2 = ctx->optval */ + BPF_MOV64_REG(BPF_REG_2, BPF_REG_6), + /* r6 = ctx->optval + 1 */ + BPF_ALU64_IMM(BPF_ADD, BPF_REG_6, 1), + + /* r7 = ctx->optval_end */ + BPF_LDX_MEM(BPF_DW, BPF_REG_7, BPF_REG_1, + offsetof(struct bpf_sockopt, optval_end)), + + /* if (ctx->optval + 1 <= ctx->optval_end) { */ + BPF_JMP_REG(BPF_JGT, BPF_REG_6, BPF_REG_7, 1), + /* ctx->optval[0] = 0xF0 */ + BPF_ST_MEM(BPF_B, BPF_REG_2, 0, 0xF0), + /* } */ + + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_EXIT_INSN(), + }, + .attach_type = BPF_CGROUP_SETSOCKOPT, + .expected_attach_type = BPF_CGROUP_SETSOCKOPT, + + .set_level = SOL_IP, + .set_optname = IP_TOS, + .set_optval = {}, + .set_optlen = PAGE_SIZE + 1, + + .get_level = SOL_IP, + .get_optname = IP_TOS, + .get_optval = {}, /* the changes are ignored */ + .get_optlen = 4, }, { .descr = "setsockopt: allow changing ctx->optlen within bounds", @@ -847,40 +929,157 @@ static struct sockopt_test { .error = EPERM_SETSOCKOPT, }, + + /* ==================== prog_type ==================== */ + + { + .descr = "can attach only BPF_CGROUP_SETSOCKOP", + .insns = { + /* return 1 */ + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_EXIT_INSN(), + + }, + .prog_type = BPF_PROG_TYPE_CGROUP_SKB, + .attach_type = BPF_CGROUP_SETSOCKOPT, + .expected_attach_type = 0, + .error = DENY_ATTACH, + }, + + { + .descr = "can attach only BPF_CGROUP_GETSOCKOP", + .insns = { + /* return 1 */ + BPF_MOV64_IMM(BPF_REG_0, 1), + BPF_EXIT_INSN(), + + }, + .prog_type = BPF_PROG_TYPE_CGROUP_SKB, + .attach_type = BPF_CGROUP_GETSOCKOPT, + .expected_attach_type = 0, + .error = DENY_ATTACH, + }, }; static int load_prog(const struct bpf_insn *insns, + enum bpf_prog_type prog_type, enum bpf_attach_type expected_attach_type) { - struct bpf_load_program_attr attr = { - .prog_type = BPF_PROG_TYPE_CGROUP_SOCKOPT, + LIBBPF_OPTS(bpf_prog_load_opts, opts, .expected_attach_type = expected_attach_type, - .insns = insns, - .license = "GPL", .log_level = 2, - }; - int fd; + .log_buf = bpf_log_buf, + .log_size = sizeof(bpf_log_buf), + ); + int fd, insns_cnt = 0; for (; - insns[attr.insns_cnt].code != (BPF_JMP | BPF_EXIT); - attr.insns_cnt++) { + insns[insns_cnt].code != (BPF_JMP | BPF_EXIT); + insns_cnt++) { } - attr.insns_cnt++; + insns_cnt++; - fd = bpf_load_program_xattr(&attr, bpf_log_buf, sizeof(bpf_log_buf)); + fd = bpf_prog_load(prog_type, NULL, "GPL", insns, insns_cnt, &opts); if (verbose && fd < 0) fprintf(stderr, "%s\n", bpf_log_buf); return fd; } -static int run_test(int cgroup_fd, struct sockopt_test *test) +/* Core function that handles io_uring ring initialization, + * sending SQE with sockopt command and waiting for the CQE. + */ +static int uring_sockopt(int op, int fd, int level, int optname, + const void *optval, socklen_t optlen) +{ + struct io_uring_cqe *cqe; + struct io_uring_sqe *sqe; + struct io_uring ring; + int err; + + err = io_uring_queue_init(1, &ring, 0); + if (!ASSERT_OK(err, "io_uring initialization")) + return err; + + sqe = io_uring_get_sqe(&ring); + if (!ASSERT_NEQ(sqe, NULL, "Get an SQE")) { + err = -1; + goto fail; + } + + io_uring_prep_cmd(sqe, op, fd, level, optname, optval, optlen); + + err = io_uring_submit(&ring); + if (!ASSERT_EQ(err, 1, "Submit SQE")) + goto fail; + + err = io_uring_wait_cqe(&ring, &cqe); + if (!ASSERT_OK(err, "Wait for CQE")) + goto fail; + + err = cqe->res; + +fail: + io_uring_queue_exit(&ring); + + return err; +} + +static int uring_setsockopt(int fd, int level, int optname, const void *optval, + socklen_t optlen) +{ + return uring_sockopt(SOCKET_URING_OP_SETSOCKOPT, fd, level, optname, + optval, optlen); +} + +static int uring_getsockopt(int fd, int level, int optname, void *optval, + socklen_t *optlen) +{ + int ret = uring_sockopt(SOCKET_URING_OP_GETSOCKOPT, fd, level, optname, + optval, *optlen); + if (ret < 0) + return ret; + + /* Populate optlen back to be compatible with systemcall interface, + * and simplify the test. + */ + *optlen = ret; + + return 0; +} + +/* Execute the setsocktopt operation */ +static int call_setsockopt(bool use_io_uring, int fd, int level, int optname, + const void *optval, socklen_t optlen) +{ + if (use_io_uring) + return uring_setsockopt(fd, level, optname, optval, optlen); + + return setsockopt(fd, level, optname, optval, optlen); +} + +/* Execute the getsocktopt operation */ +static int call_getsockopt(bool use_io_uring, int fd, int level, int optname, + void *optval, socklen_t *optlen) { - int sock_fd, err, prog_fd; + if (use_io_uring) + return uring_getsockopt(fd, level, optname, optval, optlen); + + return getsockopt(fd, level, optname, optval, optlen); +} + +static int run_test(int cgroup_fd, struct sockopt_test *test, bool use_io_uring, + bool use_link) +{ + int prog_type = BPF_PROG_TYPE_CGROUP_SOCKOPT; + int sock_fd, err, prog_fd, link_fd = -1; void *optval = NULL; int ret = 0; - prog_fd = load_prog(test->insns, test->expected_attach_type); + if (test->prog_type) + prog_type = test->prog_type; + + prog_fd = load_prog(test->insns, prog_type, test->expected_attach_type); if (prog_fd < 0) { if (test->error == DENY_LOAD) return 0; @@ -889,7 +1088,12 @@ static int run_test(int cgroup_fd, struct sockopt_test *test) return -1; } - err = bpf_prog_attach(prog_fd, cgroup_fd, test->attach_type, 0); + if (use_link) { + err = bpf_link_create(prog_fd, cgroup_fd, test->attach_type, NULL); + link_fd = err; + } else { + err = bpf_prog_attach(prog_fd, cgroup_fd, test->attach_type, 0); + } if (err < 0) { if (test->error == DENY_ATTACH) goto close_prog_fd; @@ -907,8 +1111,16 @@ static int run_test(int cgroup_fd, struct sockopt_test *test) } if (test->set_optlen) { - err = setsockopt(sock_fd, test->set_level, test->set_optname, - test->set_optval, test->set_optlen); + if (test->set_optlen >= PAGE_SIZE) { + int num_pages = test->set_optlen / PAGE_SIZE; + int remainder = test->set_optlen % PAGE_SIZE; + + test->set_optlen = num_pages * sysconf(_SC_PAGESIZE) + remainder; + } + + err = call_setsockopt(use_io_uring, sock_fd, test->set_level, + test->set_optname, test->set_optval, + test->set_optlen); if (err) { if (errno == EPERM && test->error == EPERM_SETSOCKOPT) goto close_sock_fd; @@ -922,14 +1134,24 @@ static int run_test(int cgroup_fd, struct sockopt_test *test) } if (test->get_optlen) { + if (test->get_optlen >= PAGE_SIZE) { + int num_pages = test->get_optlen / PAGE_SIZE; + int remainder = test->get_optlen % PAGE_SIZE; + + test->get_optlen = num_pages * sysconf(_SC_PAGESIZE) + remainder; + } + optval = malloc(test->get_optlen); + memset(optval, 0, test->get_optlen); socklen_t optlen = test->get_optlen; socklen_t expected_get_optlen = test->get_optlen_ret ?: test->get_optlen; - err = getsockopt(sock_fd, test->get_level, test->get_optname, - optval, &optlen); + err = call_getsockopt(use_io_uring, sock_fd, test->get_level, + test->get_optname, optval, &optlen); if (err) { + if (errno == EOPNOTSUPP && test->error == EOPNOTSUPP_GETSOCKOPT) + goto free_optval; if (errno == EPERM && test->error == EPERM_GETSOCKOPT) goto free_optval; if (errno == EFAULT && test->error == EFAULT_GETSOCKOPT) @@ -962,7 +1184,12 @@ free_optval: close_sock_fd: close(sock_fd); detach_prog: - bpf_prog_detach2(prog_fd, cgroup_fd, test->attach_type); + if (use_link) { + if (link_fd >= 0) + close(link_fd); + } else { + bpf_prog_detach2(prog_fd, cgroup_fd, test->attach_type); + } close_prog_fd: close(prog_fd); return ret; @@ -973,12 +1200,20 @@ void test_sockopt(void) int cgroup_fd, i; cgroup_fd = test__join_cgroup("/sockopt"); - if (CHECK_FAIL(cgroup_fd < 0)) + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup")) return; for (i = 0; i < ARRAY_SIZE(tests); i++) { - test__start_subtest(tests[i].descr); - CHECK_FAIL(run_test(cgroup_fd, &tests[i])); + if (!test__start_subtest(tests[i].descr)) + continue; + + ASSERT_OK(run_test(cgroup_fd, &tests[i], false, false), + tests[i].descr); + ASSERT_OK(run_test(cgroup_fd, &tests[i], false, true), + tests[i].descr); + if (tests[i].io_uring_support) + ASSERT_OK(run_test(cgroup_fd, &tests[i], true, false), + tests[i].descr); } close(cgroup_fd); diff --git a/tools/testing/selftests/bpf/prog_tests/sockopt_inherit.c b/tools/testing/selftests/bpf/prog_tests/sockopt_inherit.c index ec281b0363b8..1d3a20f01b60 100644 --- a/tools/testing/selftests/bpf/prog_tests/sockopt_inherit.c +++ b/tools/testing/selftests/bpf/prog_tests/sockopt_inherit.c @@ -1,41 +1,15 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> #include "cgroup_helpers.h" +#include "network_helpers.h" + +#include "sockopt_inherit.skel.h" #define SOL_CUSTOM 0xdeadbeef #define CUSTOM_INHERIT1 0 #define CUSTOM_INHERIT2 1 #define CUSTOM_LISTENER 2 -static int connect_to_server(int server_fd) -{ - struct sockaddr_storage addr; - socklen_t len = sizeof(addr); - int fd; - - fd = socket(AF_INET, SOCK_STREAM, 0); - if (fd < 0) { - log_err("Failed to create client socket"); - return -1; - } - - if (getsockname(server_fd, (struct sockaddr *)&addr, &len)) { - log_err("Failed to get server addr"); - goto out; - } - - if (connect(fd, (const struct sockaddr *)&addr, len) < 0) { - log_err("Fail to connect to server"); - goto out; - } - - return fd; - -out: - close(fd); - return -1; -} - static int verify_sockopt(int fd, int optname, const char *msg, char expected) { socklen_t optlen = 1; @@ -76,20 +50,16 @@ static void *server_thread(void *arg) pthread_cond_signal(&server_started); pthread_mutex_unlock(&server_started_mtx); - if (CHECK_FAIL(err < 0)) { - perror("Failed to listed on socket"); + if (!ASSERT_GE(err, 0, "listed on socket")) return NULL; - } err += verify_sockopt(fd, CUSTOM_INHERIT1, "listen", 1); err += verify_sockopt(fd, CUSTOM_INHERIT2, "listen", 1); err += verify_sockopt(fd, CUSTOM_LISTENER, "listen", 1); client_fd = accept(fd, (struct sockaddr *)&addr, &len); - if (CHECK_FAIL(client_fd < 0)) { - perror("Failed to accept client"); + if (!ASSERT_GE(client_fd, 0, "accept client")) return NULL; - } err += verify_sockopt(client_fd, CUSTOM_INHERIT1, "accept", 1); err += verify_sockopt(client_fd, CUSTOM_INHERIT2, "accept", 1); @@ -100,125 +70,93 @@ static void *server_thread(void *arg) return (void *)(long)err; } -static int start_server(void) +static int custom_cb(int fd, const struct post_socket_opts *opts) { - struct sockaddr_in addr = { - .sin_family = AF_INET, - .sin_addr.s_addr = htonl(INADDR_LOOPBACK), - }; char buf; int err; - int fd; int i; - fd = socket(AF_INET, SOCK_STREAM, 0); - if (fd < 0) { - log_err("Failed to create server socket"); - return -1; - } - for (i = CUSTOM_INHERIT1; i <= CUSTOM_LISTENER; i++) { buf = 0x01; err = setsockopt(fd, SOL_CUSTOM, i, &buf, 1); if (err) { log_err("Failed to call setsockopt(%d)", i); - close(fd); return -1; } } - if (bind(fd, (const struct sockaddr *)&addr, sizeof(addr)) < 0) { - log_err("Failed to bind socket"); - close(fd); - return -1; - } - - return fd; -} - -static int prog_attach(struct bpf_object *obj, int cgroup_fd, const char *title) -{ - enum bpf_attach_type attach_type; - enum bpf_prog_type prog_type; - struct bpf_program *prog; - int err; - - err = libbpf_prog_type_by_name(title, &prog_type, &attach_type); - if (err) { - log_err("Failed to deduct types for %s BPF program", title); - return -1; - } - - prog = bpf_object__find_program_by_title(obj, title); - if (!prog) { - log_err("Failed to find %s BPF program", title); - return -1; - } - - err = bpf_prog_attach(bpf_program__fd(prog), cgroup_fd, - attach_type, 0); - if (err) { - log_err("Failed to attach %s BPF program", title); - return -1; - } - return 0; } static void run_test(int cgroup_fd) { - struct bpf_prog_load_attr attr = { - .file = "./sockopt_inherit.o", + struct bpf_link *link_getsockopt = NULL; + struct bpf_link *link_setsockopt = NULL; + struct network_helper_opts opts = { + .post_socket_cb = custom_cb, }; int server_fd = -1, client_fd; - struct bpf_object *obj; + struct sockaddr_in addr = { + .sin_family = AF_INET, + .sin_addr.s_addr = htonl(INADDR_LOOPBACK), + }; + struct sockopt_inherit *obj; void *server_err; pthread_t tid; - int ignored; int err; - err = bpf_prog_load_xattr(&attr, &obj, &ignored); - if (CHECK_FAIL(err)) + obj = sockopt_inherit__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) return; - err = prog_attach(obj, cgroup_fd, "cgroup/getsockopt"); - if (CHECK_FAIL(err)) + obj->bss->page_size = sysconf(_SC_PAGESIZE); + + link_getsockopt = bpf_program__attach_cgroup(obj->progs._getsockopt, + cgroup_fd); + if (!ASSERT_OK_PTR(link_getsockopt, "cg-attach-getsockopt")) goto close_bpf_object; - err = prog_attach(obj, cgroup_fd, "cgroup/setsockopt"); - if (CHECK_FAIL(err)) + link_setsockopt = bpf_program__attach_cgroup(obj->progs._setsockopt, + cgroup_fd); + if (!ASSERT_OK_PTR(link_setsockopt, "cg-attach-setsockopt")) goto close_bpf_object; - server_fd = start_server(); - if (CHECK_FAIL(server_fd < 0)) + server_fd = start_server_addr(SOCK_STREAM, (struct sockaddr_storage *)&addr, + sizeof(addr), &opts); + if (!ASSERT_GE(server_fd, 0, "start_server")) goto close_bpf_object; pthread_mutex_lock(&server_started_mtx); - if (CHECK_FAIL(pthread_create(&tid, NULL, server_thread, - (void *)&server_fd))) + if (!ASSERT_OK(pthread_create(&tid, NULL, server_thread, + (void *)&server_fd), "pthread_create")) { + pthread_mutex_unlock(&server_started_mtx); goto close_server_fd; + } pthread_cond_wait(&server_started, &server_started_mtx); pthread_mutex_unlock(&server_started_mtx); - client_fd = connect_to_server(server_fd); - if (CHECK_FAIL(client_fd < 0)) + client_fd = connect_to_fd(server_fd, 0); + if (!ASSERT_GE(client_fd, 0, "connect_to_server")) goto close_server_fd; - CHECK_FAIL(verify_sockopt(client_fd, CUSTOM_INHERIT1, "connect", 0)); - CHECK_FAIL(verify_sockopt(client_fd, CUSTOM_INHERIT2, "connect", 0)); - CHECK_FAIL(verify_sockopt(client_fd, CUSTOM_LISTENER, "connect", 0)); + ASSERT_OK(verify_sockopt(client_fd, CUSTOM_INHERIT1, "connect", 0), "verify_sockopt1"); + ASSERT_OK(verify_sockopt(client_fd, CUSTOM_INHERIT2, "connect", 0), "verify_sockopt2"); + ASSERT_OK(verify_sockopt(client_fd, CUSTOM_LISTENER, "connect", 0), "verify_sockopt ener"); pthread_join(tid, &server_err); err = (int)(long)server_err; - CHECK_FAIL(err); + ASSERT_OK(err, "pthread_join retval"); close(client_fd); close_server_fd: close(server_fd); close_bpf_object: - bpf_object__close(obj); + bpf_link__destroy(link_getsockopt); + bpf_link__destroy(link_setsockopt); + + sockopt_inherit__destroy(obj); } void test_sockopt_inherit(void) @@ -226,7 +164,7 @@ void test_sockopt_inherit(void) int cgroup_fd; cgroup_fd = test__join_cgroup("/sockopt_inherit"); - if (CHECK_FAIL(cgroup_fd < 0)) + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup")) return; run_test(cgroup_fd); diff --git a/tools/testing/selftests/bpf/prog_tests/sockopt_multi.c b/tools/testing/selftests/bpf/prog_tests/sockopt_multi.c index 29188d6f5c8d..759bbb6f8c5f 100644 --- a/tools/testing/selftests/bpf/prog_tests/sockopt_multi.c +++ b/tools/testing/selftests/bpf/prog_tests/sockopt_multi.c @@ -2,61 +2,13 @@ #include <test_progs.h> #include "cgroup_helpers.h" -static int prog_attach(struct bpf_object *obj, int cgroup_fd, const char *title) -{ - enum bpf_attach_type attach_type; - enum bpf_prog_type prog_type; - struct bpf_program *prog; - int err; - - err = libbpf_prog_type_by_name(title, &prog_type, &attach_type); - if (err) { - log_err("Failed to deduct types for %s BPF program", title); - return -1; - } - - prog = bpf_object__find_program_by_title(obj, title); - if (!prog) { - log_err("Failed to find %s BPF program", title); - return -1; - } - - err = bpf_prog_attach(bpf_program__fd(prog), cgroup_fd, - attach_type, BPF_F_ALLOW_MULTI); - if (err) { - log_err("Failed to attach %s BPF program", title); - return -1; - } - - return 0; -} - -static int prog_detach(struct bpf_object *obj, int cgroup_fd, const char *title) -{ - enum bpf_attach_type attach_type; - enum bpf_prog_type prog_type; - struct bpf_program *prog; - int err; - - err = libbpf_prog_type_by_name(title, &prog_type, &attach_type); - if (err) - return -1; - - prog = bpf_object__find_program_by_title(obj, title); - if (!prog) - return -1; - - err = bpf_prog_detach2(bpf_program__fd(prog), cgroup_fd, - attach_type); - if (err) - return -1; - - return 0; -} +#include "sockopt_multi.skel.h" -static int run_getsockopt_test(struct bpf_object *obj, int cg_parent, +static int run_getsockopt_test(struct sockopt_multi *obj, int cg_parent, int cg_child, int sock_fd) { + struct bpf_link *link_parent = NULL; + struct bpf_link *link_child = NULL; socklen_t optlen; __u8 buf; int err; @@ -89,8 +41,9 @@ static int run_getsockopt_test(struct bpf_object *obj, int cg_parent, * - child: 0x80 -> 0x90 */ - err = prog_attach(obj, cg_child, "cgroup/getsockopt/child"); - if (err) + link_child = bpf_program__attach_cgroup(obj->progs._getsockopt_child, + cg_child); + if (!ASSERT_OK_PTR(link_child, "cg-attach-getsockopt_child")) goto detach; buf = 0x00; @@ -113,8 +66,9 @@ static int run_getsockopt_test(struct bpf_object *obj, int cg_parent, * - parent: 0x90 -> 0xA0 */ - err = prog_attach(obj, cg_parent, "cgroup/getsockopt/parent"); - if (err) + link_parent = bpf_program__attach_cgroup(obj->progs._getsockopt_parent, + cg_parent); + if (!ASSERT_OK_PTR(link_parent, "cg-attach-getsockopt_parent")) goto detach; buf = 0x00; @@ -138,7 +92,8 @@ static int run_getsockopt_test(struct bpf_object *obj, int cg_parent, */ buf = 0x40; - if (setsockopt(sock_fd, SOL_IP, IP_TOS, &buf, 1) < 0) { + err = setsockopt(sock_fd, SOL_IP, IP_TOS, &buf, 1); + if (err < 0) { log_err("Failed to call setsockopt(IP_TOS)"); goto detach; } @@ -156,11 +111,8 @@ static int run_getsockopt_test(struct bpf_object *obj, int cg_parent, * - parent: unexpected 0x40, EPERM */ - err = prog_detach(obj, cg_child, "cgroup/getsockopt/child"); - if (err) { - log_err("Failed to detach child program"); - goto detach; - } + bpf_link__destroy(link_child); + link_child = NULL; buf = 0x00; optlen = 1; @@ -197,15 +149,17 @@ static int run_getsockopt_test(struct bpf_object *obj, int cg_parent, } detach: - prog_detach(obj, cg_child, "cgroup/getsockopt/child"); - prog_detach(obj, cg_parent, "cgroup/getsockopt/parent"); + bpf_link__destroy(link_child); + bpf_link__destroy(link_parent); return err; } -static int run_setsockopt_test(struct bpf_object *obj, int cg_parent, +static int run_setsockopt_test(struct sockopt_multi *obj, int cg_parent, int cg_child, int sock_fd) { + struct bpf_link *link_parent = NULL; + struct bpf_link *link_child = NULL; socklen_t optlen; __u8 buf; int err; @@ -235,8 +189,9 @@ static int run_setsockopt_test(struct bpf_object *obj, int cg_parent, /* Attach child program and make sure it adds 0x10. */ - err = prog_attach(obj, cg_child, "cgroup/setsockopt"); - if (err) + link_child = bpf_program__attach_cgroup(obj->progs._setsockopt, + cg_child); + if (!ASSERT_OK_PTR(link_child, "cg-attach-setsockopt_child")) goto detach; buf = 0x80; @@ -262,8 +217,9 @@ static int run_setsockopt_test(struct bpf_object *obj, int cg_parent, /* Attach parent program and make sure it adds another 0x10. */ - err = prog_attach(obj, cg_parent, "cgroup/setsockopt"); - if (err) + link_parent = bpf_program__attach_cgroup(obj->progs._setsockopt, + cg_parent); + if (!ASSERT_OK_PTR(link_parent, "cg-attach-setsockopt_parent")) goto detach; buf = 0x80; @@ -288,45 +244,42 @@ static int run_setsockopt_test(struct bpf_object *obj, int cg_parent, } detach: - prog_detach(obj, cg_child, "cgroup/setsockopt"); - prog_detach(obj, cg_parent, "cgroup/setsockopt"); + bpf_link__destroy(link_child); + bpf_link__destroy(link_parent); return err; } void test_sockopt_multi(void) { - struct bpf_prog_load_attr attr = { - .file = "./sockopt_multi.o", - }; int cg_parent = -1, cg_child = -1; - struct bpf_object *obj = NULL; + struct sockopt_multi *obj = NULL; int sock_fd = -1; - int err = -1; - int ignored; cg_parent = test__join_cgroup("/parent"); - if (CHECK_FAIL(cg_parent < 0)) + if (!ASSERT_GE(cg_parent, 0, "join_cgroup /parent")) goto out; cg_child = test__join_cgroup("/parent/child"); - if (CHECK_FAIL(cg_child < 0)) + if (!ASSERT_GE(cg_child, 0, "join_cgroup /parent/child")) goto out; - err = bpf_prog_load_xattr(&attr, &obj, &ignored); - if (CHECK_FAIL(err)) + obj = sockopt_multi__open_and_load(); + if (!ASSERT_OK_PTR(obj, "skel-load")) goto out; + obj->bss->page_size = sysconf(_SC_PAGESIZE); + sock_fd = socket(AF_INET, SOCK_STREAM, 0); - if (CHECK_FAIL(sock_fd < 0)) + if (!ASSERT_GE(sock_fd, 0, "socket")) goto out; - CHECK_FAIL(run_getsockopt_test(obj, cg_parent, cg_child, sock_fd)); - CHECK_FAIL(run_setsockopt_test(obj, cg_parent, cg_child, sock_fd)); + ASSERT_OK(run_getsockopt_test(obj, cg_parent, cg_child, sock_fd), "getsockopt_test"); + ASSERT_OK(run_setsockopt_test(obj, cg_parent, cg_child, sock_fd), "setsockopt_test"); out: close(sock_fd); - bpf_object__close(obj); + sockopt_multi__destroy(obj); close(cg_child); close(cg_parent); } diff --git a/tools/testing/selftests/bpf/prog_tests/sockopt_qos_to_cc.c b/tools/testing/selftests/bpf/prog_tests/sockopt_qos_to_cc.c new file mode 100644 index 000000000000..6b2d300e9fd4 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/sockopt_qos_to_cc.c @@ -0,0 +1,72 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include <netinet/tcp.h> +#include "sockopt_qos_to_cc.skel.h" + +static void run_setsockopt_test(int cg_fd, int sock_fd) +{ + socklen_t optlen; + char cc[16]; /* TCP_CA_NAME_MAX */ + int buf; + int err = -1; + + buf = 0x2D; + err = setsockopt(sock_fd, SOL_IPV6, IPV6_TCLASS, &buf, sizeof(buf)); + if (!ASSERT_OK(err, "setsockopt(sock_fd, IPV6_TCLASS)")) + return; + + /* Verify the setsockopt cc change */ + optlen = sizeof(cc); + err = getsockopt(sock_fd, SOL_TCP, TCP_CONGESTION, cc, &optlen); + if (!ASSERT_OK(err, "getsockopt(sock_fd, TCP_CONGESTION)")) + return; + + if (!ASSERT_STREQ(cc, "reno", "getsockopt(sock_fd, TCP_CONGESTION)")) + return; +} + +void test_sockopt_qos_to_cc(void) +{ + struct sockopt_qos_to_cc *skel; + char cc_cubic[16] = "cubic"; /* TCP_CA_NAME_MAX */ + int cg_fd = -1; + int sock_fd = -1; + int err; + + cg_fd = test__join_cgroup("/sockopt_qos_to_cc"); + if (!ASSERT_GE(cg_fd, 0, "cg-join(sockopt_qos_to_cc)")) + return; + + skel = sockopt_qos_to_cc__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel")) + goto done; + + skel->bss->page_size = sysconf(_SC_PAGESIZE); + + sock_fd = socket(AF_INET6, SOCK_STREAM, 0); + if (!ASSERT_GE(sock_fd, 0, "v6 socket open")) + goto done; + + err = setsockopt(sock_fd, SOL_TCP, TCP_CONGESTION, &cc_cubic, + sizeof(cc_cubic)); + if (!ASSERT_OK(err, "setsockopt(sock_fd, TCP_CONGESTION)")) + goto done; + + skel->links.sockopt_qos_to_cc = + bpf_program__attach_cgroup(skel->progs.sockopt_qos_to_cc, + cg_fd); + if (!ASSERT_OK_PTR(skel->links.sockopt_qos_to_cc, + "prog_attach(sockopt_qos_to_cc)")) + goto done; + + run_setsockopt_test(cg_fd, sock_fd); + +done: + if (sock_fd != -1) + close(sock_fd); + if (cg_fd != -1) + close(cg_fd); + /* destroy can take null and error pointer */ + sockopt_qos_to_cc__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/sockopt_sk.c b/tools/testing/selftests/bpf/prog_tests/sockopt_sk.c index 5f54c6aec7f0..05d0e07da394 100644 --- a/tools/testing/selftests/bpf/prog_tests/sockopt_sk.c +++ b/tools/testing/selftests/bpf/prog_tests/sockopt_sk.c @@ -2,6 +2,14 @@ #include <test_progs.h> #include "cgroup_helpers.h" +#include <linux/tcp.h> +#include <linux/netlink.h> +#include "sockopt_sk.skel.h" + +#ifndef SOL_TCP +#define SOL_TCP IPPROTO_TCP +#endif + #define SOL_CUSTOM 0xdeadbeef static int getsetsockopt(void) @@ -11,6 +19,7 @@ static int getsetsockopt(void) char u8[4]; __u32 u32; char cc[16]; /* TCP_CA_NAME_MAX */ + struct tcp_zerocopy_receive zc; } buf = {}; socklen_t optlen; char *big_buf = NULL; @@ -45,9 +54,9 @@ static int getsetsockopt(void) goto err; } - if (*(int *)big_buf != 0x08) { + if (*big_buf != 0x08) { log_err("Unexpected getsockopt(IP_TOS) optval 0x%x != 0x08", - *(int *)big_buf); + (int)*big_buf); goto err; } @@ -154,69 +163,87 @@ static int getsetsockopt(void) goto err; } - free(big_buf); - close(fd); - return 0; -err: - free(big_buf); - close(fd); - return -1; -} + /* TCP_ZEROCOPY_RECEIVE triggers */ + memset(&buf, 0, sizeof(buf)); + optlen = sizeof(buf.zc); + err = getsockopt(fd, SOL_TCP, TCP_ZEROCOPY_RECEIVE, &buf, &optlen); + if (err) { + log_err("Unexpected getsockopt(TCP_ZEROCOPY_RECEIVE) err=%d errno=%d", + err, errno); + goto err; + } -static int prog_attach(struct bpf_object *obj, int cgroup_fd, const char *title) -{ - enum bpf_attach_type attach_type; - enum bpf_prog_type prog_type; - struct bpf_program *prog; - int err; + memset(&buf, 0, sizeof(buf)); + buf.zc.address = 12345; /* Not page aligned. Rejected by tcp_zerocopy_receive() */ + optlen = sizeof(buf.zc); + errno = 0; + err = getsockopt(fd, SOL_TCP, TCP_ZEROCOPY_RECEIVE, &buf, &optlen); + if (errno != EINVAL) { + log_err("Unexpected getsockopt(TCP_ZEROCOPY_RECEIVE) err=%d errno=%d", + err, errno); + goto err; + } - err = libbpf_prog_type_by_name(title, &prog_type, &attach_type); - if (err) { - log_err("Failed to deduct types for %s BPF program", title); + /* optval=NULL case is handled correctly */ + + close(fd); + fd = socket(AF_NETLINK, SOCK_RAW, 0); + if (fd < 0) { + log_err("Failed to create AF_NETLINK socket"); return -1; } - prog = bpf_object__find_program_by_title(obj, title); - if (!prog) { - log_err("Failed to find %s BPF program", title); - return -1; + buf.u32 = 1; + optlen = sizeof(__u32); + err = setsockopt(fd, SOL_NETLINK, NETLINK_ADD_MEMBERSHIP, &buf, optlen); + if (err) { + log_err("Unexpected getsockopt(NETLINK_ADD_MEMBERSHIP) err=%d errno=%d", + err, errno); + goto err; } - err = bpf_prog_attach(bpf_program__fd(prog), cgroup_fd, - attach_type, 0); + optlen = 0; + err = getsockopt(fd, SOL_NETLINK, NETLINK_LIST_MEMBERSHIPS, NULL, &optlen); if (err) { - log_err("Failed to attach %s BPF program", title); - return -1; + log_err("Unexpected getsockopt(NETLINK_LIST_MEMBERSHIPS) err=%d errno=%d", + err, errno); + goto err; } + ASSERT_EQ(optlen, 8, "Unexpected NETLINK_LIST_MEMBERSHIPS value"); + free(big_buf); + close(fd); return 0; +err: + free(big_buf); + close(fd); + return -1; } static void run_test(int cgroup_fd) { - struct bpf_prog_load_attr attr = { - .file = "./sockopt_sk.o", - }; - struct bpf_object *obj; - int ignored; - int err; - - err = bpf_prog_load_xattr(&attr, &obj, &ignored); - if (CHECK_FAIL(err)) - return; + struct sockopt_sk *skel; + + skel = sockopt_sk__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + skel->bss->page_size = getpagesize(); - err = prog_attach(obj, cgroup_fd, "cgroup/getsockopt"); - if (CHECK_FAIL(err)) - goto close_bpf_object; + skel->links._setsockopt = + bpf_program__attach_cgroup(skel->progs._setsockopt, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links._setsockopt, "setsockopt_link")) + goto cleanup; - err = prog_attach(obj, cgroup_fd, "cgroup/setsockopt"); - if (CHECK_FAIL(err)) - goto close_bpf_object; + skel->links._getsockopt = + bpf_program__attach_cgroup(skel->progs._getsockopt, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links._getsockopt, "getsockopt_link")) + goto cleanup; - CHECK_FAIL(getsetsockopt()); + ASSERT_OK(getsetsockopt(), "getsetsockopt"); -close_bpf_object: - bpf_object__close(obj); +cleanup: + sockopt_sk__destroy(skel); } void test_sockopt_sk(void) @@ -224,7 +251,7 @@ void test_sockopt_sk(void) int cgroup_fd; cgroup_fd = test__join_cgroup("/sockopt_sk"); - if (CHECK_FAIL(cgroup_fd < 0)) + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup /sockopt_sk")) return; run_test(cgroup_fd); diff --git a/tools/testing/selftests/bpf/prog_tests/spin_lock.c b/tools/testing/selftests/bpf/prog_tests/spin_lock.c new file mode 100644 index 000000000000..2b0068742ef9 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/spin_lock.c @@ -0,0 +1,171 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <regex.h> +#include <test_progs.h> +#include <network_helpers.h> + +#include "test_spin_lock.skel.h" +#include "test_spin_lock_fail.skel.h" + +static char log_buf[1024 * 1024]; + +static struct { + const char *prog_name; + const char *err_msg; +} spin_lock_fail_tests[] = { + { "lock_id_kptr_preserve", + "5: (bf) r1 = r0 ; R0_w=ptr_foo(id=2,ref_obj_id=2) " + "R1_w=ptr_foo(id=2,ref_obj_id=2) refs=2\n6: (85) call bpf_this_cpu_ptr#154\n" + "R1 type=ptr_ expected=percpu_ptr_" }, + { "lock_id_global_zero", + "; R1_w=map_value(map=.data.A,ks=4,vs=4)\n2: (85) call bpf_this_cpu_ptr#154\n" + "R1 type=map_value expected=percpu_ptr_" }, + { "lock_id_mapval_preserve", + "[0-9]\\+: (bf) r1 = r0 ;" + " R0_w=map_value(id=1,map=array_map,ks=4,vs=8)" + " R1_w=map_value(id=1,map=array_map,ks=4,vs=8)\n" + "[0-9]\\+: (85) call bpf_this_cpu_ptr#154\n" + "R1 type=map_value expected=percpu_ptr_" }, + { "lock_id_innermapval_preserve", + "[0-9]\\+: (bf) r1 = r0 ;" + " R0=map_value(id=2,ks=4,vs=8)" + " R1_w=map_value(id=2,ks=4,vs=8)\n" + "[0-9]\\+: (85) call bpf_this_cpu_ptr#154\n" + "R1 type=map_value expected=percpu_ptr_" }, + { "lock_id_mismatch_kptr_kptr", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_kptr_global", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_kptr_mapval", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_kptr_innermapval", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_global_global", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_global_kptr", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_global_mapval", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_global_innermapval", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_mapval_mapval", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_mapval_kptr", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_mapval_global", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_mapval_innermapval", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_innermapval_innermapval1", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_innermapval_innermapval2", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_innermapval_kptr", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_innermapval_global", "bpf_spin_unlock of different lock" }, + { "lock_id_mismatch_innermapval_mapval", "bpf_spin_unlock of different lock" }, + { "lock_global_subprog_call1", "global function calls are not allowed while holding a lock" }, + { "lock_global_subprog_call2", "global function calls are not allowed while holding a lock" }, +}; + +static int match_regex(const char *pattern, const char *string) +{ + int err, rc; + regex_t re; + + err = regcomp(&re, pattern, REG_NOSUB); + if (err) { + char errbuf[512]; + + regerror(err, &re, errbuf, sizeof(errbuf)); + PRINT_FAIL("Can't compile regex: %s\n", errbuf); + return -1; + } + rc = regexec(&re, string, 0, NULL, 0); + regfree(&re); + return rc == 0 ? 1 : 0; +} + +static void test_spin_lock_fail_prog(const char *prog_name, const char *err_msg) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts, .kernel_log_buf = log_buf, + .kernel_log_size = sizeof(log_buf), + .kernel_log_level = 1); + struct test_spin_lock_fail *skel; + struct bpf_program *prog; + int ret; + + skel = test_spin_lock_fail__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "test_spin_lock_fail__open_opts")) + return; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto end; + + bpf_program__set_autoload(prog, true); + + ret = test_spin_lock_fail__load(skel); + if (!ASSERT_ERR(ret, "test_spin_lock_fail__load must fail")) + goto end; + + /* Skip check if JIT does not support kfuncs */ + if (strstr(log_buf, "JIT does not support calling kernel function")) { + test__skip(); + goto end; + } + + ret = match_regex(err_msg, log_buf); + if (!ASSERT_GE(ret, 0, "match_regex")) + goto end; + + if (!ASSERT_TRUE(ret, "no match for expected error message")) { + fprintf(stderr, "Expected: %s\n", err_msg); + fprintf(stderr, "Verifier: %s\n", log_buf); + } + +end: + test_spin_lock_fail__destroy(skel); +} + +static void *spin_lock_thread(void *arg) +{ + int err, prog_fd = *(u32 *) arg; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 10000, + ); + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_OK(topts.retval, "test_run retval"); + pthread_exit(arg); +} + +void test_spin_lock_success(void) +{ + struct test_spin_lock *skel; + pthread_t thread_id[4]; + int prog_fd, i; + void *ret; + + skel = test_spin_lock__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_spin_lock__open_and_load")) + return; + prog_fd = bpf_program__fd(skel->progs.bpf_spin_lock_test); + for (i = 0; i < 4; i++) { + int err; + + err = pthread_create(&thread_id[i], NULL, &spin_lock_thread, &prog_fd); + if (!ASSERT_OK(err, "pthread_create")) + goto end; + } + + for (i = 0; i < 4; i++) { + if (!ASSERT_OK(pthread_join(thread_id[i], &ret), "pthread_join")) + goto end; + if (!ASSERT_EQ(ret, &prog_fd, "ret == prog_fd")) + goto end; + } +end: + test_spin_lock__destroy(skel); +} + +void test_spin_lock(void) +{ + int i; + + test_spin_lock_success(); + + for (i = 0; i < ARRAY_SIZE(spin_lock_fail_tests); i++) { + if (!test__start_subtest(spin_lock_fail_tests[i].prog_name)) + continue; + test_spin_lock_fail_prog(spin_lock_fail_tests[i].prog_name, + spin_lock_fail_tests[i].err_msg); + } +} diff --git a/tools/testing/selftests/bpf/prog_tests/spinlock.c b/tools/testing/selftests/bpf/prog_tests/spinlock.c deleted file mode 100644 index 7577a77a4c4c..000000000000 --- a/tools/testing/selftests/bpf/prog_tests/spinlock.c +++ /dev/null @@ -1,43 +0,0 @@ -// SPDX-License-Identifier: GPL-2.0 -#include <test_progs.h> -#include <network_helpers.h> - -static void *spin_lock_thread(void *arg) -{ - __u32 duration, retval; - int err, prog_fd = *(u32 *) arg; - - err = bpf_prog_test_run(prog_fd, 10000, &pkt_v4, sizeof(pkt_v4), - NULL, NULL, &retval, &duration); - CHECK(err || retval, "", - "err %d errno %d retval %d duration %d\n", - err, errno, retval, duration); - pthread_exit(arg); -} - -void test_spinlock(void) -{ - const char *file = "./test_spin_lock.o"; - pthread_t thread_id[4]; - struct bpf_object *obj = NULL; - int prog_fd; - int err = 0, i; - void *ret; - - err = bpf_prog_load(file, BPF_PROG_TYPE_CGROUP_SKB, &obj, &prog_fd); - if (CHECK_FAIL(err)) { - printf("test_spin_lock:bpf_prog_load errno %d\n", errno); - goto close_prog; - } - for (i = 0; i < 4; i++) - if (CHECK_FAIL(pthread_create(&thread_id[i], NULL, - &spin_lock_thread, &prog_fd))) - goto close_prog; - - for (i = 0; i < 4; i++) - if (CHECK_FAIL(pthread_join(thread_id[i], &ret) || - ret != (void *)&prog_fd)) - goto close_prog; -close_prog: - bpf_object__close(obj); -} diff --git a/tools/testing/selftests/bpf/prog_tests/stack_var_off.c b/tools/testing/selftests/bpf/prog_tests/stack_var_off.c new file mode 100644 index 000000000000..2ce9deefa59c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/stack_var_off.c @@ -0,0 +1,35 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "test_stack_var_off.skel.h" + +/* Test read and writes to the stack performed with offsets that are not + * statically known. + */ +void test_stack_var_off(void) +{ + int duration = 0; + struct test_stack_var_off *skel; + + skel = test_stack_var_off__open_and_load(); + if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) + return; + + /* Give pid to bpf prog so it doesn't trigger for anyone else. */ + skel->bss->test_pid = getpid(); + /* Initialize the probe's input. */ + skel->bss->input[0] = 2; + skel->bss->input[1] = 42; /* This will be returned in probe_res. */ + + if (!ASSERT_OK(test_stack_var_off__attach(skel), "skel_attach")) + goto cleanup; + + /* Trigger probe. */ + usleep(1); + + if (CHECK(skel->bss->probe_res != 42, "check_probe_res", + "wrong probe res: %d\n", skel->bss->probe_res)) + goto cleanup; + +cleanup: + test_stack_var_off__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/stacktrace_build_id.c b/tools/testing/selftests/bpf/prog_tests/stacktrace_build_id.c index e8399ae50e77..b7ba5cd47d96 100644 --- a/tools/testing/selftests/bpf/prog_tests/stacktrace_build_id.c +++ b/tools/testing/selftests/bpf/prog_tests/stacktrace_build_id.c @@ -7,13 +7,12 @@ void test_stacktrace_build_id(void) int control_map_fd, stackid_hmap_fd, stackmap_fd, stack_amap_fd; struct test_stacktrace_build_id *skel; - int err, stack_trace_len; - __u32 key, previous_key, val, duration = 0; - char buf[256]; - int i, j; + int err, stack_trace_len, build_id_size; + __u32 key, prev_key, val, duration = 0; + char buf[BPF_BUILD_ID_SIZE]; struct bpf_stack_build_id id_offs[PERF_MAX_STACK_DEPTH]; int build_id_matches = 0; - int retry = 1; + int i, retry = 1; retry: skel = test_stacktrace_build_id__open_and_load(); @@ -52,20 +51,19 @@ retry: "err %d errno %d\n", err, errno)) goto cleanup; - err = extract_build_id(buf, 256); + build_id_size = read_build_id("urandom_read", buf, sizeof(buf)); + err = build_id_size < 0 ? build_id_size : 0; - if (CHECK(err, "get build_id with readelf", + if (CHECK(err, "read_build_id", "err %d errno %d\n", err, errno)) goto cleanup; - err = bpf_map_get_next_key(stackmap_fd, NULL, &key); + err = bpf_map__get_next_key(skel->maps.stackmap, NULL, &key, sizeof(key)); if (CHECK(err, "get_next_key from stackmap", "err %d, errno %d\n", err, errno)) goto cleanup; do { - char build_id[64]; - err = bpf_map_lookup_elem(stackmap_fd, &key, id_offs); if (CHECK(err, "lookup_elem from stackmap", "err %d, errno %d\n", err, errno)) @@ -73,14 +71,11 @@ retry: for (i = 0; i < PERF_MAX_STACK_DEPTH; ++i) if (id_offs[i].status == BPF_STACK_BUILD_ID_VALID && id_offs[i].offset != 0) { - for (j = 0; j < 20; ++j) - sprintf(build_id + 2 * j, "%02x", - id_offs[i].build_id[j] & 0xff); - if (strstr(buf, build_id) != NULL) + if (memcmp(buf, id_offs[i].build_id, build_id_size) == 0) build_id_matches = 1; } - previous_key = key; - } while (bpf_map_get_next_key(stackmap_fd, &previous_key, &key) == 0); + prev_key = key; + } while (bpf_map__get_next_key(skel->maps.stackmap, &prev_key, &key, sizeof(key)) == 0); /* stack_map_get_build_id_offset() is racy and sometimes can return * BPF_STACK_BUILD_ID_IP instead of BPF_STACK_BUILD_ID_VALID; diff --git a/tools/testing/selftests/bpf/prog_tests/stacktrace_build_id_nmi.c b/tools/testing/selftests/bpf/prog_tests/stacktrace_build_id_nmi.c index 11a769e18f5d..0832fd787457 100644 --- a/tools/testing/selftests/bpf/prog_tests/stacktrace_build_id_nmi.c +++ b/tools/testing/selftests/bpf/prog_tests/stacktrace_build_id_nmi.c @@ -2,21 +2,6 @@ #include <test_progs.h> #include "test_stacktrace_build_id.skel.h" -static __u64 read_perf_max_sample_freq(void) -{ - __u64 sample_freq = 5000; /* fallback to 5000 on error */ - FILE *f; - __u32 duration = 0; - - f = fopen("/proc/sys/kernel/perf_event_max_sample_rate", "r"); - if (f == NULL) - return sample_freq; - CHECK(fscanf(f, "%llu", &sample_freq) != 1, "Get max sample rate", - "return default value: 5000,err %d\n", -errno); - fclose(f); - return sample_freq; -} - void test_stacktrace_build_id_nmi(void) { int control_map_fd, stackid_hmap_fd, stackmap_fd; @@ -27,12 +12,11 @@ void test_stacktrace_build_id_nmi(void) .type = PERF_TYPE_HARDWARE, .config = PERF_COUNT_HW_CPU_CYCLES, }; - __u32 key, previous_key, val, duration = 0; - char buf[256]; - int i, j; + __u32 key, prev_key, val, duration = 0; + char buf[BPF_BUILD_ID_SIZE]; struct bpf_stack_build_id id_offs[PERF_MAX_STACK_DEPTH]; - int build_id_matches = 0; - int retry = 1; + int build_id_matches = 0, build_id_size; + int i, retry = 1; attr.sample_freq = read_perf_max_sample_freq(); @@ -42,7 +26,7 @@ retry: return; /* override program type */ - bpf_program__set_perf_event(skel->progs.oncpu); + bpf_program__set_type(skel->progs.oncpu, BPF_PROG_TYPE_PERF_EVENT); err = test_stacktrace_build_id__load(skel); if (CHECK(err, "skel_load", "skeleton load failed: %d\n", err)) @@ -51,7 +35,7 @@ retry: pmu_fd = syscall(__NR_perf_event_open, &attr, -1 /* pid */, 0 /* cpu 0 */, -1 /* group id */, 0 /* flags */); - if (pmu_fd < 0 && errno == ENOENT) { + if (pmu_fd < 0 && (errno == ENOENT || errno == EOPNOTSUPP)) { printf("%s:SKIP:no PERF_COUNT_HW_CPU_CYCLES\n", __func__); test__skip(); goto cleanup; @@ -62,8 +46,7 @@ retry: skel->links.oncpu = bpf_program__attach_perf_event(skel->progs.oncpu, pmu_fd); - if (CHECK(IS_ERR(skel->links.oncpu), "attach_perf_event", - "err %ld\n", PTR_ERR(skel->links.oncpu))) { + if (!ASSERT_OK_PTR(skel->links.oncpu, "attach_perf_event")) { close(pmu_fd); goto cleanup; } @@ -95,35 +78,32 @@ retry: "err %d errno %d\n", err, errno)) goto cleanup; - err = extract_build_id(buf, 256); + build_id_size = read_build_id("urandom_read", buf, sizeof(buf)); + err = build_id_size < 0 ? build_id_size : 0; if (CHECK(err, "get build_id with readelf", "err %d errno %d\n", err, errno)) goto cleanup; - err = bpf_map_get_next_key(stackmap_fd, NULL, &key); + err = bpf_map__get_next_key(skel->maps.stackmap, NULL, &key, sizeof(key)); if (CHECK(err, "get_next_key from stackmap", "err %d, errno %d\n", err, errno)) goto cleanup; do { - char build_id[64]; - - err = bpf_map_lookup_elem(stackmap_fd, &key, id_offs); + err = bpf_map__lookup_elem(skel->maps.stackmap, &key, sizeof(key), + id_offs, sizeof(id_offs), 0); if (CHECK(err, "lookup_elem from stackmap", "err %d, errno %d\n", err, errno)) goto cleanup; for (i = 0; i < PERF_MAX_STACK_DEPTH; ++i) if (id_offs[i].status == BPF_STACK_BUILD_ID_VALID && id_offs[i].offset != 0) { - for (j = 0; j < 20; ++j) - sprintf(build_id + 2 * j, "%02x", - id_offs[i].build_id[j] & 0xff); - if (strstr(buf, build_id) != NULL) + if (memcmp(buf, id_offs[i].build_id, build_id_size) == 0) build_id_matches = 1; } - previous_key = key; - } while (bpf_map_get_next_key(stackmap_fd, &previous_key, &key) == 0); + prev_key = key; + } while (bpf_map__get_next_key(skel->maps.stackmap, &prev_key, &key, sizeof(key)) == 0); /* stack_map_get_build_id_offset() is racy and sometimes can return * BPF_STACK_BUILD_ID_IP instead of BPF_STACK_BUILD_ID_VALID; diff --git a/tools/testing/selftests/bpf/prog_tests/stacktrace_map.c b/tools/testing/selftests/bpf/prog_tests/stacktrace_map.c index 37269d23df93..df59e4ae2951 100644 --- a/tools/testing/selftests/bpf/prog_tests/stacktrace_map.c +++ b/tools/testing/selftests/bpf/prog_tests/stacktrace_map.c @@ -4,24 +4,24 @@ void test_stacktrace_map(void) { int control_map_fd, stackid_hmap_fd, stackmap_fd, stack_amap_fd; - const char *prog_name = "tracepoint/sched/sched_switch"; + const char *prog_name = "oncpu"; int err, prog_fd, stack_trace_len; - const char *file = "./test_stacktrace_map.o"; + const char *file = "./test_stacktrace_map.bpf.o"; __u32 key, val, duration = 0; struct bpf_program *prog; struct bpf_object *obj; struct bpf_link *link; - err = bpf_prog_load(file, BPF_PROG_TYPE_TRACEPOINT, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_TRACEPOINT, &obj, &prog_fd); if (CHECK(err, "prog_load", "err %d errno %d\n", err, errno)) return; - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK(!prog, "find_prog", "prog '%s' not found\n", prog_name)) goto close_prog; link = bpf_program__attach_tracepoint(prog, "sched", "sched_switch"); - if (CHECK(IS_ERR(link), "attach_tp", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_tp")) goto close_prog; /* find map fds */ diff --git a/tools/testing/selftests/bpf/prog_tests/stacktrace_map_raw_tp.c b/tools/testing/selftests/bpf/prog_tests/stacktrace_map_raw_tp.c index 404a5498e1a3..c6ef06f55cdb 100644 --- a/tools/testing/selftests/bpf/prog_tests/stacktrace_map_raw_tp.c +++ b/tools/testing/selftests/bpf/prog_tests/stacktrace_map_raw_tp.c @@ -3,25 +3,25 @@ void test_stacktrace_map_raw_tp(void) { - const char *prog_name = "tracepoint/sched/sched_switch"; + const char *prog_name = "oncpu"; int control_map_fd, stackid_hmap_fd, stackmap_fd; - const char *file = "./test_stacktrace_map.o"; + const char *file = "./test_stacktrace_map.bpf.o"; __u32 key, val, duration = 0; int err, prog_fd; struct bpf_program *prog; struct bpf_object *obj; struct bpf_link *link = NULL; - err = bpf_prog_load(file, BPF_PROG_TYPE_RAW_TRACEPOINT, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_RAW_TRACEPOINT, &obj, &prog_fd); if (CHECK(err, "prog_load raw tp", "err %d errno %d\n", err, errno)) return; - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK(!prog, "find_prog", "prog '%s' not found\n", prog_name)) goto close_prog; link = bpf_program__attach_raw_tracepoint(prog, "sched_switch"); - if (CHECK(IS_ERR(link), "attach_raw_tp", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_raw_tp")) goto close_prog; /* find map fds */ @@ -59,7 +59,6 @@ void test_stacktrace_map_raw_tp(void) goto close_prog; close_prog: - if (!IS_ERR_OR_NULL(link)) - bpf_link__destroy(link); + bpf_link__destroy(link); bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/stacktrace_map_skip.c b/tools/testing/selftests/bpf/prog_tests/stacktrace_map_skip.c new file mode 100644 index 000000000000..1932b1e0685c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/stacktrace_map_skip.c @@ -0,0 +1,63 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "stacktrace_map_skip.skel.h" + +#define TEST_STACK_DEPTH 2 + +void test_stacktrace_map_skip(void) +{ + struct stacktrace_map_skip *skel; + int stackid_hmap_fd, stackmap_fd, stack_amap_fd; + int err, stack_trace_len; + + skel = stacktrace_map_skip__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + /* find map fds */ + stackid_hmap_fd = bpf_map__fd(skel->maps.stackid_hmap); + if (!ASSERT_GE(stackid_hmap_fd, 0, "stackid_hmap fd")) + goto out; + + stackmap_fd = bpf_map__fd(skel->maps.stackmap); + if (!ASSERT_GE(stackmap_fd, 0, "stackmap fd")) + goto out; + + stack_amap_fd = bpf_map__fd(skel->maps.stack_amap); + if (!ASSERT_GE(stack_amap_fd, 0, "stack_amap fd")) + goto out; + + skel->bss->pid = getpid(); + + err = stacktrace_map_skip__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + /* give some time for bpf program run */ + sleep(1); + + /* disable stack trace collection */ + skel->bss->control = 1; + + /* for every element in stackid_hmap, we can find a corresponding one + * in stackmap, and vise versa. + */ + err = compare_map_keys(stackid_hmap_fd, stackmap_fd); + if (!ASSERT_OK(err, "compare_map_keys stackid_hmap vs. stackmap")) + goto out; + + err = compare_map_keys(stackmap_fd, stackid_hmap_fd); + if (!ASSERT_OK(err, "compare_map_keys stackmap vs. stackid_hmap")) + goto out; + + stack_trace_len = TEST_STACK_DEPTH * sizeof(__u64); + err = compare_stack_ips(stackmap_fd, stack_amap_fd, stack_trace_len); + if (!ASSERT_OK(err, "compare_stack_ips stackmap vs. stack_amap")) + goto out; + + if (!ASSERT_EQ(skel->bss->failed, 0, "skip_failed")) + goto out; + +out: + stacktrace_map_skip__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/static_linked.c b/tools/testing/selftests/bpf/prog_tests/static_linked.c new file mode 100644 index 000000000000..5c4e3014e063 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/static_linked.c @@ -0,0 +1,35 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2019 Facebook */ + +#include <test_progs.h> +#include "test_static_linked.skel.h" + +void test_static_linked(void) +{ + int err; + struct test_static_linked* skel; + + skel = test_static_linked__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->rodata->rovar1 = 1; + skel->rodata->rovar2 = 4; + + err = test_static_linked__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + err = test_static_linked__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* trigger */ + usleep(1); + + ASSERT_EQ(skel->data->var1, 1 * 2 + 2 + 3, "var1"); + ASSERT_EQ(skel->data->var2, 4 * 3 + 5 + 6, "var2"); + +cleanup: + test_static_linked__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/struct_ops_autocreate.c b/tools/testing/selftests/bpf/prog_tests/struct_ops_autocreate.c new file mode 100644 index 000000000000..a5cc593c1e1d --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/struct_ops_autocreate.c @@ -0,0 +1,159 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include "struct_ops_autocreate.skel.h" +#include "struct_ops_autocreate2.skel.h" + +static void cant_load_full_object(void) +{ + struct struct_ops_autocreate *skel; + char *log = NULL; + int err; + + skel = struct_ops_autocreate__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_autocreate__open")) + return; + + if (start_libbpf_log_capture()) + goto cleanup; + /* The testmod_2 map BTF type (struct bpf_testmod_ops___v2) doesn't + * match the BTF of the actual struct bpf_testmod_ops defined in the + * kernel, so we should fail to load it if we don't disable autocreate + * for that map. + */ + err = struct_ops_autocreate__load(skel); + log = stop_libbpf_log_capture(); + if (!ASSERT_ERR(err, "struct_ops_autocreate__load")) + goto cleanup; + + ASSERT_HAS_SUBSTR(log, "libbpf: struct_ops init_kern", "init_kern message"); + ASSERT_EQ(err, -ENOTSUP, "errno should be ENOTSUP"); + +cleanup: + free(log); + struct_ops_autocreate__destroy(skel); +} + +static int check_test_1_link(struct struct_ops_autocreate *skel, struct bpf_map *map) +{ + struct bpf_link *link; + int err; + + link = bpf_map__attach_struct_ops(skel->maps.testmod_1); + if (!ASSERT_OK_PTR(link, "bpf_map__attach_struct_ops")) + return -1; + + /* test_1() would be called from bpf_dummy_reg2() in bpf_testmod.c */ + err = ASSERT_EQ(skel->bss->test_1_result, 42, "test_1_result"); + bpf_link__destroy(link); + return err; +} + +static void can_load_partial_object(void) +{ + struct struct_ops_autocreate *skel; + int err; + + skel = struct_ops_autocreate__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_autocreate__open_opts")) + return; + + err = bpf_map__set_autocreate(skel->maps.testmod_2, false); + if (!ASSERT_OK(err, "bpf_map__set_autocreate")) + goto cleanup; + + ASSERT_TRUE(bpf_program__autoload(skel->progs.test_1), "test_1 default autoload"); + ASSERT_TRUE(bpf_program__autoload(skel->progs.test_2), "test_2 default autoload"); + + err = struct_ops_autocreate__load(skel); + if (ASSERT_OK(err, "struct_ops_autocreate__load")) + goto cleanup; + + ASSERT_TRUE(bpf_program__autoload(skel->progs.test_1), "test_1 actual autoload"); + ASSERT_FALSE(bpf_program__autoload(skel->progs.test_2), "test_2 actual autoload"); + + check_test_1_link(skel, skel->maps.testmod_1); + +cleanup: + struct_ops_autocreate__destroy(skel); +} + +static void optional_maps(void) +{ + struct struct_ops_autocreate *skel; + int err; + + skel = struct_ops_autocreate__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_autocreate__open")) + return; + + ASSERT_TRUE(bpf_map__autocreate(skel->maps.testmod_1), "testmod_1 autocreate"); + ASSERT_TRUE(bpf_map__autocreate(skel->maps.testmod_2), "testmod_2 autocreate"); + ASSERT_FALSE(bpf_map__autocreate(skel->maps.optional_map), "optional_map autocreate"); + ASSERT_FALSE(bpf_map__autocreate(skel->maps.optional_map2), "optional_map2 autocreate"); + + err = bpf_map__set_autocreate(skel->maps.testmod_1, false); + err |= bpf_map__set_autocreate(skel->maps.testmod_2, false); + err |= bpf_map__set_autocreate(skel->maps.optional_map2, true); + if (!ASSERT_OK(err, "bpf_map__set_autocreate")) + goto cleanup; + + err = struct_ops_autocreate__load(skel); + if (ASSERT_OK(err, "struct_ops_autocreate__load")) + goto cleanup; + + check_test_1_link(skel, skel->maps.optional_map2); + +cleanup: + struct_ops_autocreate__destroy(skel); +} + +/* Swap test_mod1->test_1 program from 'bar' to 'foo' using shadow vars. + * test_mod1 load should enable autoload for 'foo'. + */ +static void autoload_and_shadow_vars(void) +{ + struct struct_ops_autocreate2 *skel = NULL; + struct bpf_link *link = NULL; + int err; + + skel = struct_ops_autocreate2__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_autocreate__open_opts")) + return; + + ASSERT_FALSE(bpf_program__autoload(skel->progs.foo), "foo default autoload"); + ASSERT_FALSE(bpf_program__autoload(skel->progs.bar), "bar default autoload"); + + /* loading map testmod_1 would switch foo's autoload to true */ + skel->struct_ops.testmod_1->test_1 = skel->progs.foo; + + err = struct_ops_autocreate2__load(skel); + if (ASSERT_OK(err, "struct_ops_autocreate__load")) + goto cleanup; + + ASSERT_TRUE(bpf_program__autoload(skel->progs.foo), "foo actual autoload"); + ASSERT_FALSE(bpf_program__autoload(skel->progs.bar), "bar actual autoload"); + + link = bpf_map__attach_struct_ops(skel->maps.testmod_1); + if (!ASSERT_OK_PTR(link, "bpf_map__attach_struct_ops")) + goto cleanup; + + /* test_1() would be called from bpf_dummy_reg2() in bpf_testmod.c */ + err = ASSERT_EQ(skel->bss->test_1_result, 42, "test_1_result"); + +cleanup: + bpf_link__destroy(link); + struct_ops_autocreate2__destroy(skel); +} + +void test_struct_ops_autocreate(void) +{ + if (test__start_subtest("cant_load_full_object")) + cant_load_full_object(); + if (test__start_subtest("can_load_partial_object")) + can_load_partial_object(); + if (test__start_subtest("autoload_and_shadow_vars")) + autoload_and_shadow_vars(); + if (test__start_subtest("optional_maps")) + optional_maps(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/subprogs.c b/tools/testing/selftests/bpf/prog_tests/subprogs.c new file mode 100644 index 000000000000..903f35a9e62e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/subprogs.c @@ -0,0 +1,96 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ +#include <test_progs.h> +#include "test_subprogs.skel.h" +#include "test_subprogs_unused.skel.h" + +struct toggler_ctx { + int fd; + bool stop; +}; + +static void *toggle_jit_harden(void *arg) +{ + struct toggler_ctx *ctx = arg; + char two = '2'; + char zero = '0'; + + while (!ctx->stop) { + lseek(ctx->fd, SEEK_SET, 0); + write(ctx->fd, &two, sizeof(two)); + lseek(ctx->fd, SEEK_SET, 0); + write(ctx->fd, &zero, sizeof(zero)); + } + + return NULL; +} + +static void test_subprogs_with_jit_harden_toggling(void) +{ + struct toggler_ctx ctx; + pthread_t toggler; + int err; + unsigned int i, loop = 10; + + ctx.fd = open("/proc/sys/net/core/bpf_jit_harden", O_RDWR); + if (!ASSERT_GE(ctx.fd, 0, "open bpf_jit_harden")) + return; + + ctx.stop = false; + err = pthread_create(&toggler, NULL, toggle_jit_harden, &ctx); + if (!ASSERT_OK(err, "new toggler")) + goto out; + + /* Make toggler thread to run */ + usleep(1); + + for (i = 0; i < loop; i++) { + struct test_subprogs *skel = test_subprogs__open_and_load(); + + if (!ASSERT_OK_PTR(skel, "skel open")) + break; + test_subprogs__destroy(skel); + } + + ctx.stop = true; + pthread_join(toggler, NULL); +out: + close(ctx.fd); +} + +static void test_subprogs_alone(void) +{ + struct test_subprogs *skel; + struct test_subprogs_unused *skel2; + int err; + + skel = test_subprogs__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + err = test_subprogs__attach(skel); + if (!ASSERT_OK(err, "skel attach")) + goto cleanup; + + usleep(1); + + ASSERT_EQ(skel->bss->res1, 12, "res1"); + ASSERT_EQ(skel->bss->res2, 17, "res2"); + ASSERT_EQ(skel->bss->res3, 19, "res3"); + ASSERT_EQ(skel->bss->res4, 36, "res4"); + + skel2 = test_subprogs_unused__open_and_load(); + ASSERT_OK_PTR(skel2, "unused_progs_skel"); + test_subprogs_unused__destroy(skel2); + +cleanup: + test_subprogs__destroy(skel); +} + +void test_subprogs(void) +{ + if (test__start_subtest("subprogs_alone")) + test_subprogs_alone(); + if (test__start_subtest("subprogs_and_jit_harden")) + test_subprogs_with_jit_harden_toggling(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/subprogs_extable.c b/tools/testing/selftests/bpf/prog_tests/subprogs_extable.c new file mode 100644 index 000000000000..3afd9f775f68 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/subprogs_extable.c @@ -0,0 +1,29 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include "test_subprogs_extable.skel.h" + +void test_subprogs_extable(void) +{ + const int read_sz = 456; + struct test_subprogs_extable *skel; + int err; + + skel = test_subprogs_extable__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + err = test_subprogs_extable__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* trigger tracepoint */ + ASSERT_OK(trigger_module_test_read(read_sz), "trigger_read"); + + ASSERT_NEQ(skel->bss->triggered, 0, "verify at least one program ran"); + + test_subprogs_extable__detach(skel); + +cleanup: + test_subprogs_extable__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/subskeleton.c b/tools/testing/selftests/bpf/prog_tests/subskeleton.c new file mode 100644 index 000000000000..9c31b7004f9c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/subskeleton.c @@ -0,0 +1,78 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include "test_subskeleton.skel.h" +#include "test_subskeleton_lib.subskel.h" + +static void subskeleton_lib_setup(struct bpf_object *obj) +{ + struct test_subskeleton_lib *lib = test_subskeleton_lib__open(obj); + + if (!ASSERT_OK_PTR(lib, "open subskeleton")) + return; + + *lib->rodata.var1 = 1; + *lib->data.var2 = 2; + lib->bss.var3->var3_1 = 3; + lib->bss.var3->var3_2 = 4; + + test_subskeleton_lib__destroy(lib); +} + +static int subskeleton_lib_subresult(struct bpf_object *obj) +{ + struct test_subskeleton_lib *lib = test_subskeleton_lib__open(obj); + int result; + + if (!ASSERT_OK_PTR(lib, "open subskeleton")) + return -EINVAL; + + result = *lib->bss.libout1; + ASSERT_EQ(result, 1 + 2 + 3 + 4 + 5 + 6, "lib subresult"); + + ASSERT_OK_PTR(lib->progs.lib_perf_handler, "lib_perf_handler"); + ASSERT_STREQ(bpf_program__name(lib->progs.lib_perf_handler), + "lib_perf_handler", "program name"); + + ASSERT_OK_PTR(lib->maps.map1, "map1"); + ASSERT_STREQ(bpf_map__name(lib->maps.map1), "map1", "map name"); + + ASSERT_EQ(*lib->data.var5, 5, "__weak var5"); + ASSERT_EQ(*lib->data.var6, 6, "extern var6"); + ASSERT_TRUE(*lib->kconfig.CONFIG_BPF_SYSCALL, "CONFIG_BPF_SYSCALL"); + + test_subskeleton_lib__destroy(lib); + return result; +} + +void test_subskeleton(void) +{ + int err, result; + struct test_subskeleton *skel; + + skel = test_subskeleton__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->rodata->rovar1 = 10; + skel->rodata->var1 = 1; + subskeleton_lib_setup(skel->obj); + + err = test_subskeleton__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + err = test_subskeleton__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* trigger tracepoint */ + usleep(1); + + result = subskeleton_lib_subresult(skel->obj) * 10; + ASSERT_EQ(skel->bss->out1, result, "unexpected calculation"); + +cleanup: + test_subskeleton__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/syscall.c b/tools/testing/selftests/bpf/prog_tests/syscall.c new file mode 100644 index 000000000000..0be8301c0ffd --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/syscall.c @@ -0,0 +1,81 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include "syscall.skel.h" + +struct args { + __u64 log_buf; + __u32 log_size; + int max_entries; + int map_fd; + int prog_fd; + int btf_fd; +}; + +static void test_syscall_load_prog(void) +{ + static char verifier_log[8192]; + struct args ctx = { + .max_entries = 1024, + .log_buf = (uintptr_t) verifier_log, + .log_size = sizeof(verifier_log), + }; + LIBBPF_OPTS(bpf_test_run_opts, tattr, + .ctx_in = &ctx, + .ctx_size_in = sizeof(ctx), + ); + struct syscall *skel = NULL; + __u64 key = 12, value = 0; + int err, prog_fd; + + skel = syscall__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.load_prog); + err = bpf_prog_test_run_opts(prog_fd, &tattr); + ASSERT_EQ(err, 0, "err"); + ASSERT_EQ(tattr.retval, 1, "retval"); + ASSERT_GT(ctx.map_fd, 0, "ctx.map_fd"); + ASSERT_GT(ctx.prog_fd, 0, "ctx.prog_fd"); + ASSERT_OK(memcmp(verifier_log, "processed", sizeof("processed") - 1), + "verifier_log"); + + err = bpf_map_lookup_elem(ctx.map_fd, &key, &value); + ASSERT_EQ(err, 0, "map_lookup"); + ASSERT_EQ(value, 34, "map lookup value"); +cleanup: + syscall__destroy(skel); + if (ctx.prog_fd > 0) + close(ctx.prog_fd); + if (ctx.map_fd > 0) + close(ctx.map_fd); + if (ctx.btf_fd > 0) + close(ctx.btf_fd); +} + +static void test_syscall_update_outer_map(void) +{ + LIBBPF_OPTS(bpf_test_run_opts, opts); + struct syscall *skel; + int err, prog_fd; + + skel = syscall__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.update_outer_map); + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_EQ(err, 0, "err"); + ASSERT_EQ(opts.retval, 1, "retval"); +cleanup: + syscall__destroy(skel); +} + +void test_syscall(void) +{ + if (test__start_subtest("load_prog")) + test_syscall_load_prog(); + if (test__start_subtest("update_outer_map")) + test_syscall_update_outer_map(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tailcalls.c b/tools/testing/selftests/bpf/prog_tests/tailcalls.c index bb8fe646dd9f..59993fc9c0d7 100644 --- a/tools/testing/selftests/bpf/prog_tests/tailcalls.c +++ b/tools/testing/selftests/bpf/prog_tests/tailcalls.c @@ -1,5 +1,9 @@ // SPDX-License-Identifier: GPL-2.0 +#include <unistd.h> #include <test_progs.h> +#include <network_helpers.h> +#include "tailcall_poke.skel.h" + /* test_tailcall_1 checks basic functionality by patching multiple locations * in a single program for a single tail call slot with nop->jmp, jmp->nop @@ -11,16 +15,20 @@ static void test_tailcall_1(void) struct bpf_map *prog_array; struct bpf_program *prog; struct bpf_object *obj; - __u32 retval, duration; char prog_name[32]; char buff[128] = {}; - - err = bpf_prog_load("tailcall1.o", BPF_PROG_TYPE_SCHED_CLS, &obj, - &prog_fd); + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = buff, + .data_size_in = sizeof(buff), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall1.bpf.o", BPF_PROG_TYPE_SCHED_CLS, &obj, + &prog_fd); if (CHECK_FAIL(err)) return; - prog = bpf_object__find_program_by_title(obj, "classifier"); + prog = bpf_object__find_program_by_name(obj, "entry"); if (CHECK_FAIL(!prog)) goto out; @@ -36,10 +44,10 @@ static void test_tailcall_1(void) if (CHECK_FAIL(map_fd < 0)) goto out; - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - snprintf(prog_name, sizeof(prog_name), "classifier/%i", i); + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "classifier_%d", i); - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK_FAIL(!prog)) goto out; @@ -52,26 +60,24 @@ static void test_tailcall_1(void) goto out; } - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != i, "tailcall", - "err %d errno %d retval %d\n", err, errno, retval); + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, i, "tailcall retval"); err = bpf_map_delete_elem(map_fd, &i); if (CHECK_FAIL(err)) goto out; } - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 3, "tailcall", "err %d errno %d retval %d\n", - err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 3, "tailcall retval"); - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - snprintf(prog_name, sizeof(prog_name), "classifier/%i", i); + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "classifier_%d", i); - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK_FAIL(!prog)) goto out; @@ -84,16 +90,15 @@ static void test_tailcall_1(void) goto out; } - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 0, "tailcall", "err %d errno %d retval %d\n", - err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_OK(topts.retval, "tailcall retval"); - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - j = bpf_map__def(prog_array)->max_entries - 1 - i; - snprintf(prog_name, sizeof(prog_name), "classifier/%i", j); + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + j = bpf_map__max_entries(prog_array) - 1 - i; + snprintf(prog_name, sizeof(prog_name), "classifier_%d", j); - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK_FAIL(!prog)) goto out; @@ -106,33 +111,30 @@ static void test_tailcall_1(void) goto out; } - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - j = bpf_map__def(prog_array)->max_entries - 1 - i; + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + j = bpf_map__max_entries(prog_array) - 1 - i; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != j, "tailcall", - "err %d errno %d retval %d\n", err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, j, "tailcall retval"); err = bpf_map_delete_elem(map_fd, &i); if (CHECK_FAIL(err)) goto out; } - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 3, "tailcall", "err %d errno %d retval %d\n", - err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 3, "tailcall retval"); - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { err = bpf_map_delete_elem(map_fd, &i); if (CHECK_FAIL(err >= 0 || errno != ENOENT)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 3, "tailcall", - "err %d errno %d retval %d\n", err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 3, "tailcall retval"); } out: @@ -149,16 +151,20 @@ static void test_tailcall_2(void) struct bpf_map *prog_array; struct bpf_program *prog; struct bpf_object *obj; - __u32 retval, duration; char prog_name[32]; char buff[128] = {}; - - err = bpf_prog_load("tailcall2.o", BPF_PROG_TYPE_SCHED_CLS, &obj, - &prog_fd); + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = buff, + .data_size_in = sizeof(buff), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall2.bpf.o", BPF_PROG_TYPE_SCHED_CLS, &obj, + &prog_fd); if (CHECK_FAIL(err)) return; - prog = bpf_object__find_program_by_title(obj, "classifier"); + prog = bpf_object__find_program_by_name(obj, "entry"); if (CHECK_FAIL(!prog)) goto out; @@ -174,10 +180,10 @@ static void test_tailcall_2(void) if (CHECK_FAIL(map_fd < 0)) goto out; - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - snprintf(prog_name, sizeof(prog_name), "classifier/%i", i); + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "classifier_%d", i); - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK_FAIL(!prog)) goto out; @@ -190,52 +196,52 @@ static void test_tailcall_2(void) goto out; } - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 2, "tailcall", "err %d errno %d retval %d\n", - err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 2, "tailcall retval"); i = 2; err = bpf_map_delete_elem(map_fd, &i); if (CHECK_FAIL(err)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 1, "tailcall", "err %d errno %d retval %d\n", - err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 1, "tailcall retval"); i = 0; err = bpf_map_delete_elem(map_fd, &i); if (CHECK_FAIL(err)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 3, "tailcall", "err %d errno %d retval %d\n", - err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 3, "tailcall retval"); out: bpf_object__close(obj); } -/* test_tailcall_3 checks that the count value of the tail call limit - * enforcement matches with expectations. - */ -static void test_tailcall_3(void) +static void test_tailcall_count(const char *which, bool test_fentry, + bool test_fexit) { + struct bpf_object *obj = NULL, *fentry_obj = NULL, *fexit_obj = NULL; + struct bpf_link *fentry_link = NULL, *fexit_link = NULL; int err, map_fd, prog_fd, main_fd, data_fd, i, val; struct bpf_map *prog_array, *data_map; struct bpf_program *prog; - struct bpf_object *obj; - __u32 retval, duration; char buff[128] = {}; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = buff, + .data_size_in = sizeof(buff), + .repeat = 1, + ); - err = bpf_prog_load("tailcall3.o", BPF_PROG_TYPE_SCHED_CLS, &obj, + err = bpf_prog_test_load(which, BPF_PROG_TYPE_SCHED_CLS, &obj, &prog_fd); if (CHECK_FAIL(err)) return; - prog = bpf_object__find_program_by_title(obj, "classifier"); + prog = bpf_object__find_program_by_name(obj, "entry"); if (CHECK_FAIL(!prog)) goto out; @@ -251,7 +257,7 @@ static void test_tailcall_3(void) if (CHECK_FAIL(map_fd < 0)) goto out; - prog = bpf_object__find_program_by_title(obj, "classifier/0"); + prog = bpf_object__find_program_by_name(obj, "classifier_0"); if (CHECK_FAIL(!prog)) goto out; @@ -264,37 +270,137 @@ static void test_tailcall_3(void) if (CHECK_FAIL(err)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 1, "tailcall", "err %d errno %d retval %d\n", - err, errno, retval); + if (test_fentry) { + fentry_obj = bpf_object__open_file("tailcall_bpf2bpf_fentry.bpf.o", + NULL); + if (!ASSERT_OK_PTR(fentry_obj, "open fentry_obj file")) + goto out; + + prog = bpf_object__find_program_by_name(fentry_obj, "fentry"); + if (!ASSERT_OK_PTR(prog, "find fentry prog")) + goto out; + + err = bpf_program__set_attach_target(prog, prog_fd, + "subprog_tail"); + if (!ASSERT_OK(err, "set_attach_target subprog_tail")) + goto out; + + err = bpf_object__load(fentry_obj); + if (!ASSERT_OK(err, "load fentry_obj")) + goto out; + + fentry_link = bpf_program__attach_trace(prog); + if (!ASSERT_OK_PTR(fentry_link, "attach_trace")) + goto out; + } + + if (test_fexit) { + fexit_obj = bpf_object__open_file("tailcall_bpf2bpf_fexit.bpf.o", + NULL); + if (!ASSERT_OK_PTR(fexit_obj, "open fexit_obj file")) + goto out; + + prog = bpf_object__find_program_by_name(fexit_obj, "fexit"); + if (!ASSERT_OK_PTR(prog, "find fexit prog")) + goto out; + + err = bpf_program__set_attach_target(prog, prog_fd, + "subprog_tail"); + if (!ASSERT_OK(err, "set_attach_target subprog_tail")) + goto out; + + err = bpf_object__load(fexit_obj); + if (!ASSERT_OK(err, "load fexit_obj")) + goto out; + + fexit_link = bpf_program__attach_trace(prog); + if (!ASSERT_OK_PTR(fexit_link, "attach_trace")) + goto out; + } + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 1, "tailcall retval"); data_map = bpf_object__find_map_by_name(obj, "tailcall.bss"); if (CHECK_FAIL(!data_map || !bpf_map__is_internal(data_map))) - return; + goto out; data_fd = bpf_map__fd(data_map); - if (CHECK_FAIL(map_fd < 0)) - return; + if (CHECK_FAIL(data_fd < 0)) + goto out; i = 0; err = bpf_map_lookup_elem(data_fd, &i, &val); - CHECK(err || val != 33, "tailcall count", "err %d errno %d count %d\n", - err, errno, val); + ASSERT_OK(err, "tailcall count"); + ASSERT_EQ(val, 33, "tailcall count"); + + if (test_fentry) { + data_map = bpf_object__find_map_by_name(fentry_obj, ".bss"); + if (!ASSERT_FALSE(!data_map || !bpf_map__is_internal(data_map), + "find tailcall_bpf2bpf_fentry.bss map")) + goto out; + + data_fd = bpf_map__fd(data_map); + if (!ASSERT_FALSE(data_fd < 0, + "find tailcall_bpf2bpf_fentry.bss map fd")) + goto out; + + i = 0; + err = bpf_map_lookup_elem(data_fd, &i, &val); + ASSERT_OK(err, "fentry count"); + ASSERT_EQ(val, 33, "fentry count"); + } + + if (test_fexit) { + data_map = bpf_object__find_map_by_name(fexit_obj, ".bss"); + if (!ASSERT_FALSE(!data_map || !bpf_map__is_internal(data_map), + "find tailcall_bpf2bpf_fexit.bss map")) + goto out; + + data_fd = bpf_map__fd(data_map); + if (!ASSERT_FALSE(data_fd < 0, + "find tailcall_bpf2bpf_fexit.bss map fd")) + goto out; + + i = 0; + err = bpf_map_lookup_elem(data_fd, &i, &val); + ASSERT_OK(err, "fexit count"); + ASSERT_EQ(val, 33, "fexit count"); + } i = 0; err = bpf_map_delete_elem(map_fd, &i); if (CHECK_FAIL(err)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 0, "tailcall", "err %d errno %d retval %d\n", - err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_OK(topts.retval, "tailcall retval"); out: + bpf_link__destroy(fentry_link); + bpf_link__destroy(fexit_link); + bpf_object__close(fentry_obj); + bpf_object__close(fexit_obj); bpf_object__close(obj); } +/* test_tailcall_3 checks that the count value of the tail call limit + * enforcement matches with expectations. JIT uses direct jump. + */ +static void test_tailcall_3(void) +{ + test_tailcall_count("tailcall3.bpf.o", false, false); +} + +/* test_tailcall_6 checks that the count value of the tail call limit + * enforcement matches with expectations. JIT uses indirect jump. + */ +static void test_tailcall_6(void) +{ + test_tailcall_count("tailcall6.bpf.o", false, false); +} + /* test_tailcall_4 checks that the kernel properly selects indirect jump * for the case where the key is not known. Latter is passed via global * data to select different targets we can compare return value of. @@ -305,17 +411,21 @@ static void test_tailcall_4(void) struct bpf_map *prog_array, *data_map; struct bpf_program *prog; struct bpf_object *obj; - __u32 retval, duration; static const int zero = 0; char buff[128] = {}; char prog_name[32]; - - err = bpf_prog_load("tailcall4.o", BPF_PROG_TYPE_SCHED_CLS, &obj, - &prog_fd); + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = buff, + .data_size_in = sizeof(buff), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall4.bpf.o", BPF_PROG_TYPE_SCHED_CLS, &obj, + &prog_fd); if (CHECK_FAIL(err)) return; - prog = bpf_object__find_program_by_title(obj, "classifier"); + prog = bpf_object__find_program_by_name(obj, "entry"); if (CHECK_FAIL(!prog)) goto out; @@ -333,16 +443,16 @@ static void test_tailcall_4(void) data_map = bpf_object__find_map_by_name(obj, "tailcall.bss"); if (CHECK_FAIL(!data_map || !bpf_map__is_internal(data_map))) - return; + goto out; data_fd = bpf_map__fd(data_map); - if (CHECK_FAIL(map_fd < 0)) - return; + if (CHECK_FAIL(data_fd < 0)) + goto out; - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - snprintf(prog_name, sizeof(prog_name), "classifier/%i", i); + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "classifier_%d", i); - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK_FAIL(!prog)) goto out; @@ -355,18 +465,17 @@ static void test_tailcall_4(void) goto out; } - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { err = bpf_map_update_elem(data_fd, &zero, &i, BPF_ANY); if (CHECK_FAIL(err)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != i, "tailcall", - "err %d errno %d retval %d\n", err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, i, "tailcall retval"); } - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { err = bpf_map_update_elem(data_fd, &zero, &i, BPF_ANY); if (CHECK_FAIL(err)) goto out; @@ -375,10 +484,9 @@ static void test_tailcall_4(void) if (CHECK_FAIL(err)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 3, "tailcall", - "err %d errno %d retval %d\n", err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 3, "tailcall retval"); } out: bpf_object__close(obj); @@ -393,17 +501,21 @@ static void test_tailcall_5(void) struct bpf_map *prog_array, *data_map; struct bpf_program *prog; struct bpf_object *obj; - __u32 retval, duration; static const int zero = 0; char buff[128] = {}; char prog_name[32]; - - err = bpf_prog_load("tailcall5.o", BPF_PROG_TYPE_SCHED_CLS, &obj, - &prog_fd); + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = buff, + .data_size_in = sizeof(buff), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall5.bpf.o", BPF_PROG_TYPE_SCHED_CLS, &obj, + &prog_fd); if (CHECK_FAIL(err)) return; - prog = bpf_object__find_program_by_title(obj, "classifier"); + prog = bpf_object__find_program_by_name(obj, "entry"); if (CHECK_FAIL(!prog)) goto out; @@ -421,16 +533,16 @@ static void test_tailcall_5(void) data_map = bpf_object__find_map_by_name(obj, "tailcall.bss"); if (CHECK_FAIL(!data_map || !bpf_map__is_internal(data_map))) - return; + goto out; data_fd = bpf_map__fd(data_map); - if (CHECK_FAIL(map_fd < 0)) - return; + if (CHECK_FAIL(data_fd < 0)) + goto out; - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { - snprintf(prog_name, sizeof(prog_name), "classifier/%i", i); + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "classifier_%d", i); - prog = bpf_object__find_program_by_title(obj, prog_name); + prog = bpf_object__find_program_by_name(obj, prog_name); if (CHECK_FAIL(!prog)) goto out; @@ -443,18 +555,17 @@ static void test_tailcall_5(void) goto out; } - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { err = bpf_map_update_elem(data_fd, &zero, &key[i], BPF_ANY); if (CHECK_FAIL(err)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != i, "tailcall", - "err %d errno %d retval %d\n", err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, i, "tailcall retval"); } - for (i = 0; i < bpf_map__def(prog_array)->max_entries; i++) { + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { err = bpf_map_update_elem(data_fd, &zero, &key[i], BPF_ANY); if (CHECK_FAIL(err)) goto out; @@ -463,15 +574,619 @@ static void test_tailcall_5(void) if (CHECK_FAIL(err)) goto out; - err = bpf_prog_test_run(main_fd, 1, buff, sizeof(buff), 0, - &duration, &retval, NULL); - CHECK(err || retval != 3, "tailcall", - "err %d errno %d retval %d\n", err, errno, retval); + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 3, "tailcall retval"); + } +out: + bpf_object__close(obj); +} + +/* test_tailcall_bpf2bpf_1 purpose is to make sure that tailcalls are working + * correctly in correlation with BPF subprograms + */ +static void test_tailcall_bpf2bpf_1(void) +{ + int err, map_fd, prog_fd, main_fd, i; + struct bpf_map *prog_array; + struct bpf_program *prog; + struct bpf_object *obj; + char prog_name[32]; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall_bpf2bpf1.bpf.o", BPF_PROG_TYPE_SCHED_CLS, + &obj, &prog_fd); + if (CHECK_FAIL(err)) + return; + + prog = bpf_object__find_program_by_name(obj, "entry"); + if (CHECK_FAIL(!prog)) + goto out; + + main_fd = bpf_program__fd(prog); + if (CHECK_FAIL(main_fd < 0)) + goto out; + + prog_array = bpf_object__find_map_by_name(obj, "jmp_table"); + if (CHECK_FAIL(!prog_array)) + goto out; + + map_fd = bpf_map__fd(prog_array); + if (CHECK_FAIL(map_fd < 0)) + goto out; + + /* nop -> jmp */ + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "classifier_%d", i); + + prog = bpf_object__find_program_by_name(obj, prog_name); + if (CHECK_FAIL(!prog)) + goto out; + + prog_fd = bpf_program__fd(prog); + if (CHECK_FAIL(prog_fd < 0)) + goto out; + + err = bpf_map_update_elem(map_fd, &i, &prog_fd, BPF_ANY); + if (CHECK_FAIL(err)) + goto out; } + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 1, "tailcall retval"); + + /* jmp -> nop, call subprog that will do tailcall */ + i = 1; + err = bpf_map_delete_elem(map_fd, &i); + if (CHECK_FAIL(err)) + goto out; + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_OK(topts.retval, "tailcall retval"); + + /* make sure that subprog can access ctx and entry prog that + * called this subprog can properly return + */ + i = 0; + err = bpf_map_delete_elem(map_fd, &i); + if (CHECK_FAIL(err)) + goto out; + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, sizeof(pkt_v4) * 2, "tailcall retval"); +out: + bpf_object__close(obj); +} + +/* test_tailcall_bpf2bpf_2 checks that the count value of the tail call limit + * enforcement matches with expectations when tailcall is preceded with + * bpf2bpf call. + */ +static void test_tailcall_bpf2bpf_2(void) +{ + int err, map_fd, prog_fd, main_fd, data_fd, i, val; + struct bpf_map *prog_array, *data_map; + struct bpf_program *prog; + struct bpf_object *obj; + char buff[128] = {}; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = buff, + .data_size_in = sizeof(buff), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall_bpf2bpf2.bpf.o", BPF_PROG_TYPE_SCHED_CLS, + &obj, &prog_fd); + if (CHECK_FAIL(err)) + return; + + prog = bpf_object__find_program_by_name(obj, "entry"); + if (CHECK_FAIL(!prog)) + goto out; + + main_fd = bpf_program__fd(prog); + if (CHECK_FAIL(main_fd < 0)) + goto out; + + prog_array = bpf_object__find_map_by_name(obj, "jmp_table"); + if (CHECK_FAIL(!prog_array)) + goto out; + + map_fd = bpf_map__fd(prog_array); + if (CHECK_FAIL(map_fd < 0)) + goto out; + + prog = bpf_object__find_program_by_name(obj, "classifier_0"); + if (CHECK_FAIL(!prog)) + goto out; + + prog_fd = bpf_program__fd(prog); + if (CHECK_FAIL(prog_fd < 0)) + goto out; + + i = 0; + err = bpf_map_update_elem(map_fd, &i, &prog_fd, BPF_ANY); + if (CHECK_FAIL(err)) + goto out; + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 1, "tailcall retval"); + + data_map = bpf_object__find_map_by_name(obj, "tailcall.bss"); + if (CHECK_FAIL(!data_map || !bpf_map__is_internal(data_map))) + goto out; + + data_fd = bpf_map__fd(data_map); + if (CHECK_FAIL(data_fd < 0)) + goto out; + + i = 0; + err = bpf_map_lookup_elem(data_fd, &i, &val); + ASSERT_OK(err, "tailcall count"); + ASSERT_EQ(val, 33, "tailcall count"); + + i = 0; + err = bpf_map_delete_elem(map_fd, &i); + if (CHECK_FAIL(err)) + goto out; + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_OK(topts.retval, "tailcall retval"); out: bpf_object__close(obj); } +/* test_tailcall_bpf2bpf_3 checks that non-trivial amount of stack (up to + * 256 bytes) can be used within bpf subprograms that have the tailcalls + * in them + */ +static void test_tailcall_bpf2bpf_3(void) +{ + int err, map_fd, prog_fd, main_fd, i; + struct bpf_map *prog_array; + struct bpf_program *prog; + struct bpf_object *obj; + char prog_name[32]; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall_bpf2bpf3.bpf.o", BPF_PROG_TYPE_SCHED_CLS, + &obj, &prog_fd); + if (CHECK_FAIL(err)) + return; + + prog = bpf_object__find_program_by_name(obj, "entry"); + if (CHECK_FAIL(!prog)) + goto out; + + main_fd = bpf_program__fd(prog); + if (CHECK_FAIL(main_fd < 0)) + goto out; + + prog_array = bpf_object__find_map_by_name(obj, "jmp_table"); + if (CHECK_FAIL(!prog_array)) + goto out; + + map_fd = bpf_map__fd(prog_array); + if (CHECK_FAIL(map_fd < 0)) + goto out; + + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "classifier_%d", i); + + prog = bpf_object__find_program_by_name(obj, prog_name); + if (CHECK_FAIL(!prog)) + goto out; + + prog_fd = bpf_program__fd(prog); + if (CHECK_FAIL(prog_fd < 0)) + goto out; + + err = bpf_map_update_elem(map_fd, &i, &prog_fd, BPF_ANY); + if (CHECK_FAIL(err)) + goto out; + } + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, sizeof(pkt_v4) * 3, "tailcall retval"); + + i = 1; + err = bpf_map_delete_elem(map_fd, &i); + if (CHECK_FAIL(err)) + goto out; + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, sizeof(pkt_v4), "tailcall retval"); + + i = 0; + err = bpf_map_delete_elem(map_fd, &i); + if (CHECK_FAIL(err)) + goto out; + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, sizeof(pkt_v4) * 2, "tailcall retval"); +out: + bpf_object__close(obj); +} + +#include "tailcall_bpf2bpf4.skel.h" + +/* test_tailcall_bpf2bpf_4 checks that tailcall counter is correctly preserved + * across tailcalls combined with bpf2bpf calls. for making sure that tailcall + * counter behaves correctly, bpf program will go through following flow: + * + * entry -> entry_subprog -> tailcall0 -> bpf_func0 -> subprog0 -> + * -> tailcall1 -> bpf_func1 -> subprog1 -> tailcall2 -> bpf_func2 -> + * subprog2 [here bump global counter] --------^ + * + * We go through first two tailcalls and start counting from the subprog2 where + * the loop begins. At the end of the test make sure that the global counter is + * equal to 31, because tailcall counter includes the first two tailcalls + * whereas global counter is incremented only on loop presented on flow above. + * + * The noise parameter is used to insert bpf_map_update calls into the logic + * to force verifier to patch instructions. This allows us to ensure jump + * logic remains correct with instruction movement. + */ +static void test_tailcall_bpf2bpf_4(bool noise) +{ + int err, map_fd, prog_fd, main_fd, data_fd, i; + struct tailcall_bpf2bpf4__bss val; + struct bpf_map *prog_array, *data_map; + struct bpf_program *prog; + struct bpf_object *obj; + char prog_name[32]; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall_bpf2bpf4.bpf.o", BPF_PROG_TYPE_SCHED_CLS, + &obj, &prog_fd); + if (CHECK_FAIL(err)) + return; + + prog = bpf_object__find_program_by_name(obj, "entry"); + if (CHECK_FAIL(!prog)) + goto out; + + main_fd = bpf_program__fd(prog); + if (CHECK_FAIL(main_fd < 0)) + goto out; + + prog_array = bpf_object__find_map_by_name(obj, "jmp_table"); + if (CHECK_FAIL(!prog_array)) + goto out; + + map_fd = bpf_map__fd(prog_array); + if (CHECK_FAIL(map_fd < 0)) + goto out; + + for (i = 0; i < bpf_map__max_entries(prog_array); i++) { + snprintf(prog_name, sizeof(prog_name), "classifier_%d", i); + + prog = bpf_object__find_program_by_name(obj, prog_name); + if (CHECK_FAIL(!prog)) + goto out; + + prog_fd = bpf_program__fd(prog); + if (CHECK_FAIL(prog_fd < 0)) + goto out; + + err = bpf_map_update_elem(map_fd, &i, &prog_fd, BPF_ANY); + if (CHECK_FAIL(err)) + goto out; + } + + data_map = bpf_object__find_map_by_name(obj, "tailcall.bss"); + if (CHECK_FAIL(!data_map || !bpf_map__is_internal(data_map))) + goto out; + + data_fd = bpf_map__fd(data_map); + if (CHECK_FAIL(data_fd < 0)) + goto out; + + i = 0; + val.noise = noise; + val.count = 0; + err = bpf_map_update_elem(data_fd, &i, &val, BPF_ANY); + if (CHECK_FAIL(err)) + goto out; + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, sizeof(pkt_v4) * 3, "tailcall retval"); + + i = 0; + err = bpf_map_lookup_elem(data_fd, &i, &val); + ASSERT_OK(err, "tailcall count"); + ASSERT_EQ(val.count, 31, "tailcall count"); + +out: + bpf_object__close(obj); +} + +#include "tailcall_bpf2bpf6.skel.h" + +/* Tail call counting works even when there is data on stack which is + * not aligned to 8 bytes. + */ +static void test_tailcall_bpf2bpf_6(void) +{ + struct tailcall_bpf2bpf6 *obj; + int err, map_fd, prog_fd, main_fd, data_fd, i, val; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + obj = tailcall_bpf2bpf6__open_and_load(); + if (!ASSERT_OK_PTR(obj, "open and load")) + return; + + main_fd = bpf_program__fd(obj->progs.entry); + if (!ASSERT_GE(main_fd, 0, "entry prog fd")) + goto out; + + map_fd = bpf_map__fd(obj->maps.jmp_table); + if (!ASSERT_GE(map_fd, 0, "jmp_table map fd")) + goto out; + + prog_fd = bpf_program__fd(obj->progs.classifier_0); + if (!ASSERT_GE(prog_fd, 0, "classifier_0 prog fd")) + goto out; + + i = 0; + err = bpf_map_update_elem(map_fd, &i, &prog_fd, BPF_ANY); + if (!ASSERT_OK(err, "jmp_table map update")) + goto out; + + err = bpf_prog_test_run_opts(main_fd, &topts); + ASSERT_OK(err, "entry prog test run"); + ASSERT_EQ(topts.retval, 0, "tailcall retval"); + + data_fd = bpf_map__fd(obj->maps.bss); + if (!ASSERT_GE(data_fd, 0, "bss map fd")) + goto out; + + i = 0; + err = bpf_map_lookup_elem(data_fd, &i, &val); + ASSERT_OK(err, "bss map lookup"); + ASSERT_EQ(val, 1, "done flag is set"); + +out: + tailcall_bpf2bpf6__destroy(obj); +} + +/* test_tailcall_bpf2bpf_fentry checks that the count value of the tail call + * limit enforcement matches with expectations when tailcall is preceded with + * bpf2bpf call, and the bpf2bpf call is traced by fentry. + */ +static void test_tailcall_bpf2bpf_fentry(void) +{ + test_tailcall_count("tailcall_bpf2bpf2.bpf.o", true, false); +} + +/* test_tailcall_bpf2bpf_fexit checks that the count value of the tail call + * limit enforcement matches with expectations when tailcall is preceded with + * bpf2bpf call, and the bpf2bpf call is traced by fexit. + */ +static void test_tailcall_bpf2bpf_fexit(void) +{ + test_tailcall_count("tailcall_bpf2bpf2.bpf.o", false, true); +} + +/* test_tailcall_bpf2bpf_fentry_fexit checks that the count value of the tail + * call limit enforcement matches with expectations when tailcall is preceded + * with bpf2bpf call, and the bpf2bpf call is traced by both fentry and fexit. + */ +static void test_tailcall_bpf2bpf_fentry_fexit(void) +{ + test_tailcall_count("tailcall_bpf2bpf2.bpf.o", true, true); +} + +/* test_tailcall_bpf2bpf_fentry_entry checks that the count value of the tail + * call limit enforcement matches with expectations when tailcall is preceded + * with bpf2bpf call, and the bpf2bpf caller is traced by fentry. + */ +static void test_tailcall_bpf2bpf_fentry_entry(void) +{ + struct bpf_object *tgt_obj = NULL, *fentry_obj = NULL; + int err, map_fd, prog_fd, data_fd, i, val; + struct bpf_map *prog_array, *data_map; + struct bpf_link *fentry_link = NULL; + struct bpf_program *prog; + char buff[128] = {}; + + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = buff, + .data_size_in = sizeof(buff), + .repeat = 1, + ); + + err = bpf_prog_test_load("tailcall_bpf2bpf2.bpf.o", + BPF_PROG_TYPE_SCHED_CLS, + &tgt_obj, &prog_fd); + if (!ASSERT_OK(err, "load tgt_obj")) + return; + + prog_array = bpf_object__find_map_by_name(tgt_obj, "jmp_table"); + if (!ASSERT_OK_PTR(prog_array, "find jmp_table map")) + goto out; + + map_fd = bpf_map__fd(prog_array); + if (!ASSERT_FALSE(map_fd < 0, "find jmp_table map fd")) + goto out; + + prog = bpf_object__find_program_by_name(tgt_obj, "classifier_0"); + if (!ASSERT_OK_PTR(prog, "find classifier_0 prog")) + goto out; + + prog_fd = bpf_program__fd(prog); + if (!ASSERT_FALSE(prog_fd < 0, "find classifier_0 prog fd")) + goto out; + + i = 0; + err = bpf_map_update_elem(map_fd, &i, &prog_fd, BPF_ANY); + if (!ASSERT_OK(err, "update jmp_table")) + goto out; + + fentry_obj = bpf_object__open_file("tailcall_bpf2bpf_fentry.bpf.o", + NULL); + if (!ASSERT_OK_PTR(fentry_obj, "open fentry_obj file")) + goto out; + + prog = bpf_object__find_program_by_name(fentry_obj, "fentry"); + if (!ASSERT_OK_PTR(prog, "find fentry prog")) + goto out; + + err = bpf_program__set_attach_target(prog, prog_fd, "classifier_0"); + if (!ASSERT_OK(err, "set_attach_target classifier_0")) + goto out; + + err = bpf_object__load(fentry_obj); + if (!ASSERT_OK(err, "load fentry_obj")) + goto out; + + fentry_link = bpf_program__attach_trace(prog); + if (!ASSERT_OK_PTR(fentry_link, "attach_trace")) + goto out; + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "tailcall"); + ASSERT_EQ(topts.retval, 1, "tailcall retval"); + + data_map = bpf_object__find_map_by_name(tgt_obj, "tailcall.bss"); + if (!ASSERT_FALSE(!data_map || !bpf_map__is_internal(data_map), + "find tailcall.bss map")) + goto out; + + data_fd = bpf_map__fd(data_map); + if (!ASSERT_FALSE(data_fd < 0, "find tailcall.bss map fd")) + goto out; + + i = 0; + err = bpf_map_lookup_elem(data_fd, &i, &val); + ASSERT_OK(err, "tailcall count"); + ASSERT_EQ(val, 34, "tailcall count"); + + data_map = bpf_object__find_map_by_name(fentry_obj, ".bss"); + if (!ASSERT_FALSE(!data_map || !bpf_map__is_internal(data_map), + "find tailcall_bpf2bpf_fentry.bss map")) + goto out; + + data_fd = bpf_map__fd(data_map); + if (!ASSERT_FALSE(data_fd < 0, + "find tailcall_bpf2bpf_fentry.bss map fd")) + goto out; + + i = 0; + err = bpf_map_lookup_elem(data_fd, &i, &val); + ASSERT_OK(err, "fentry count"); + ASSERT_EQ(val, 1, "fentry count"); + +out: + bpf_link__destroy(fentry_link); + bpf_object__close(fentry_obj); + bpf_object__close(tgt_obj); +} + +#define JMP_TABLE "/sys/fs/bpf/jmp_table" + +static int poke_thread_exit; + +static void *poke_update(void *arg) +{ + __u32 zero = 0, prog1_fd, prog2_fd, map_fd; + struct tailcall_poke *call = arg; + + map_fd = bpf_map__fd(call->maps.jmp_table); + prog1_fd = bpf_program__fd(call->progs.call1); + prog2_fd = bpf_program__fd(call->progs.call2); + + while (!poke_thread_exit) { + bpf_map_update_elem(map_fd, &zero, &prog1_fd, BPF_ANY); + bpf_map_update_elem(map_fd, &zero, &prog2_fd, BPF_ANY); + } + + return NULL; +} + +/* + * We are trying to hit prog array update during another program load + * that shares the same prog array map. + * + * For that we share the jmp_table map between two skeleton instances + * by pinning the jmp_table to same path. Then first skeleton instance + * periodically updates jmp_table in 'poke update' thread while we load + * the second skeleton instance in the main thread. + */ +static void test_tailcall_poke(void) +{ + struct tailcall_poke *call, *test; + int err, cnt = 10; + pthread_t thread; + + unlink(JMP_TABLE); + + call = tailcall_poke__open_and_load(); + if (!ASSERT_OK_PTR(call, "tailcall_poke__open")) + return; + + err = bpf_map__pin(call->maps.jmp_table, JMP_TABLE); + if (!ASSERT_OK(err, "bpf_map__pin")) + goto out; + + err = pthread_create(&thread, NULL, poke_update, call); + if (!ASSERT_OK(err, "new toggler")) + goto out; + + while (cnt--) { + test = tailcall_poke__open(); + if (!ASSERT_OK_PTR(test, "tailcall_poke__open")) + break; + + err = bpf_map__set_pin_path(test->maps.jmp_table, JMP_TABLE); + if (!ASSERT_OK(err, "bpf_map__pin")) { + tailcall_poke__destroy(test); + break; + } + + bpf_program__set_autoload(test->progs.test, true); + bpf_program__set_autoload(test->progs.call1, false); + bpf_program__set_autoload(test->progs.call2, false); + + err = tailcall_poke__load(test); + tailcall_poke__destroy(test); + if (!ASSERT_OK(err, "tailcall_poke__load")) + break; + } + + poke_thread_exit = 1; + ASSERT_OK(pthread_join(thread, NULL), "pthread_join"); + +out: + bpf_map__unpin(call->maps.jmp_table, JMP_TABLE); + tailcall_poke__destroy(call); +} + void test_tailcalls(void) { if (test__start_subtest("tailcall_1")) @@ -484,4 +1199,28 @@ void test_tailcalls(void) test_tailcall_4(); if (test__start_subtest("tailcall_5")) test_tailcall_5(); + if (test__start_subtest("tailcall_6")) + test_tailcall_6(); + if (test__start_subtest("tailcall_bpf2bpf_1")) + test_tailcall_bpf2bpf_1(); + if (test__start_subtest("tailcall_bpf2bpf_2")) + test_tailcall_bpf2bpf_2(); + if (test__start_subtest("tailcall_bpf2bpf_3")) + test_tailcall_bpf2bpf_3(); + if (test__start_subtest("tailcall_bpf2bpf_4")) + test_tailcall_bpf2bpf_4(false); + if (test__start_subtest("tailcall_bpf2bpf_5")) + test_tailcall_bpf2bpf_4(true); + if (test__start_subtest("tailcall_bpf2bpf_6")) + test_tailcall_bpf2bpf_6(); + if (test__start_subtest("tailcall_bpf2bpf_fentry")) + test_tailcall_bpf2bpf_fentry(); + if (test__start_subtest("tailcall_bpf2bpf_fexit")) + test_tailcall_bpf2bpf_fexit(); + if (test__start_subtest("tailcall_bpf2bpf_fentry_fexit")) + test_tailcall_bpf2bpf_fentry_fexit(); + if (test__start_subtest("tailcall_bpf2bpf_fentry_entry")) + test_tailcall_bpf2bpf_fentry_entry(); + if (test__start_subtest("tailcall_poke")) + test_tailcall_poke(); } diff --git a/tools/testing/selftests/bpf/prog_tests/task_fd_query_rawtp.c b/tools/testing/selftests/bpf/prog_tests/task_fd_query_rawtp.c index 1bdc1d86a50c..3d34bab01e48 100644 --- a/tools/testing/selftests/bpf/prog_tests/task_fd_query_rawtp.c +++ b/tools/testing/selftests/bpf/prog_tests/task_fd_query_rawtp.c @@ -3,7 +3,7 @@ void test_task_fd_query_rawtp(void) { - const char *file = "./test_get_stack_rawtp.o"; + const char *file = "./test_get_stack_rawtp.bpf.o"; __u64 probe_offset, probe_addr; __u32 len, prog_id, fd_type; struct bpf_object *obj; @@ -11,7 +11,7 @@ void test_task_fd_query_rawtp(void) __u32 duration = 0; char buf[256]; - err = bpf_prog_load(file, BPF_PROG_TYPE_RAW_TRACEPOINT, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_RAW_TRACEPOINT, &obj, &prog_fd); if (CHECK(err, "prog_load raw tp", "err %d errno %d\n", err, errno)) return; diff --git a/tools/testing/selftests/bpf/prog_tests/task_fd_query_tp.c b/tools/testing/selftests/bpf/prog_tests/task_fd_query_tp.c index 3f131b8fe328..c91eda624657 100644 --- a/tools/testing/selftests/bpf/prog_tests/task_fd_query_tp.c +++ b/tools/testing/selftests/bpf/prog_tests/task_fd_query_tp.c @@ -4,7 +4,7 @@ static void test_task_fd_query_tp_core(const char *probe_name, const char *tp_name) { - const char *file = "./test_tracepoint.o"; + const char *file = "./test_tracepoint.bpf.o"; int err, bytes, efd, prog_fd, pmu_fd; struct perf_event_attr attr = {}; __u64 probe_offset, probe_addr; @@ -13,12 +13,17 @@ static void test_task_fd_query_tp_core(const char *probe_name, __u32 duration = 0; char buf[256]; - err = bpf_prog_load(file, BPF_PROG_TYPE_TRACEPOINT, &obj, &prog_fd); - if (CHECK(err, "bpf_prog_load", "err %d errno %d\n", err, errno)) + err = bpf_prog_test_load(file, BPF_PROG_TYPE_TRACEPOINT, &obj, &prog_fd); + if (CHECK(err, "bpf_prog_test_load", "err %d errno %d\n", err, errno)) goto close_prog; - snprintf(buf, sizeof(buf), - "/sys/kernel/debug/tracing/events/%s/id", probe_name); + if (access("/sys/kernel/tracing/trace", F_OK) == 0) { + snprintf(buf, sizeof(buf), + "/sys/kernel/tracing/events/%s/id", probe_name); + } else { + snprintf(buf, sizeof(buf), + "/sys/kernel/debug/tracing/events/%s/id", probe_name); + } efd = open(buf, O_RDONLY, 0); if (CHECK(efd < 0, "open", "err %d errno %d\n", efd, errno)) goto close_prog; diff --git a/tools/testing/selftests/bpf/prog_tests/task_kfunc.c b/tools/testing/selftests/bpf/prog_tests/task_kfunc.c new file mode 100644 index 000000000000..d4579f735398 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/task_kfunc.c @@ -0,0 +1,98 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ + +#define _GNU_SOURCE +#include <sys/wait.h> +#include <test_progs.h> +#include <unistd.h> + +#include "task_kfunc_failure.skel.h" +#include "task_kfunc_success.skel.h" + +static struct task_kfunc_success *open_load_task_kfunc_skel(void) +{ + struct task_kfunc_success *skel; + int err; + + skel = task_kfunc_success__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return NULL; + + skel->bss->pid = getpid(); + + err = task_kfunc_success__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + return skel; + +cleanup: + task_kfunc_success__destroy(skel); + return NULL; +} + +static void run_success_test(const char *prog_name) +{ + struct task_kfunc_success *skel; + int status; + pid_t child_pid; + struct bpf_program *prog; + struct bpf_link *link = NULL; + + skel = open_load_task_kfunc_skel(); + if (!ASSERT_OK_PTR(skel, "open_load_skel")) + return; + + if (!ASSERT_OK(skel->bss->err, "pre_spawn_err")) + goto cleanup; + + prog = bpf_object__find_program_by_name(skel->obj, prog_name); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto cleanup; + + link = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(link, "attached_link")) + goto cleanup; + + child_pid = fork(); + if (!ASSERT_GT(child_pid, -1, "child_pid")) + goto cleanup; + if (child_pid == 0) + _exit(0); + waitpid(child_pid, &status, 0); + + ASSERT_OK(skel->bss->err, "post_wait_err"); + +cleanup: + bpf_link__destroy(link); + task_kfunc_success__destroy(skel); +} + +static const char * const success_tests[] = { + "test_task_acquire_release_argument", + "test_task_acquire_release_current", + "test_task_acquire_leave_in_map", + "test_task_xchg_release", + "test_task_map_acquire_release", + "test_task_current_acquire_release", + "test_task_from_pid_arg", + "test_task_from_pid_current", + "test_task_from_pid_invalid", + "task_kfunc_acquire_trusted_walked", + "test_task_kfunc_flavor_relo", + "test_task_kfunc_flavor_relo_not_found", +}; + +void test_task_kfunc(void) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(success_tests); i++) { + if (!test__start_subtest(success_tests[i])) + continue; + + run_success_test(success_tests[i]); + } + + RUN_TESTS(task_kfunc_failure); +} diff --git a/tools/testing/selftests/bpf/prog_tests/task_local_storage.c b/tools/testing/selftests/bpf/prog_tests/task_local_storage.c new file mode 100644 index 000000000000..c33c05161a9e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/task_local_storage.c @@ -0,0 +1,240 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#define _GNU_SOURCE /* See feature_test_macros(7) */ +#include <unistd.h> +#include <sched.h> +#include <pthread.h> +#include <sys/syscall.h> /* For SYS_xxx definitions */ +#include <sys/types.h> +#include <test_progs.h> +#include "task_local_storage_helpers.h" +#include "task_local_storage.skel.h" +#include "task_local_storage_exit_creds.skel.h" +#include "task_ls_recursion.skel.h" +#include "task_storage_nodeadlock.skel.h" + +static void test_sys_enter_exit(void) +{ + struct task_local_storage *skel; + int err; + + skel = task_local_storage__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + skel->bss->target_pid = syscall(SYS_gettid); + + err = task_local_storage__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + syscall(SYS_gettid); + syscall(SYS_gettid); + + /* 3x syscalls: 1x attach and 2x gettid */ + ASSERT_EQ(skel->bss->enter_cnt, 3, "enter_cnt"); + ASSERT_EQ(skel->bss->exit_cnt, 3, "exit_cnt"); + ASSERT_EQ(skel->bss->mismatch_cnt, 0, "mismatch_cnt"); +out: + task_local_storage__destroy(skel); +} + +static void test_exit_creds(void) +{ + struct task_local_storage_exit_creds *skel; + int err, run_count, sync_rcu_calls = 0; + const int MAX_SYNC_RCU_CALLS = 1000; + + skel = task_local_storage_exit_creds__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + return; + + err = task_local_storage_exit_creds__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + /* trigger at least one exit_creds() */ + if (CHECK_FAIL(system("ls > /dev/null"))) + goto out; + + /* kern_sync_rcu is not enough on its own as the read section we want + * to wait for may start after we enter synchronize_rcu, so our call + * won't wait for the section to finish. Loop on the run counter + * as well to ensure the program has run. + */ + do { + kern_sync_rcu(); + run_count = __atomic_load_n(&skel->bss->run_count, __ATOMIC_SEQ_CST); + } while (run_count == 0 && ++sync_rcu_calls < MAX_SYNC_RCU_CALLS); + + ASSERT_NEQ(sync_rcu_calls, MAX_SYNC_RCU_CALLS, + "sync_rcu count too high"); + ASSERT_NEQ(run_count, 0, "run_count"); + ASSERT_EQ(skel->bss->valid_ptr_count, 0, "valid_ptr_count"); + ASSERT_NEQ(skel->bss->null_ptr_count, 0, "null_ptr_count"); +out: + task_local_storage_exit_creds__destroy(skel); +} + +static void test_recursion(void) +{ + int err, map_fd, prog_fd, task_fd; + struct task_ls_recursion *skel; + struct bpf_prog_info info; + __u32 info_len = sizeof(info); + long value; + + task_fd = sys_pidfd_open(getpid(), 0); + if (!ASSERT_NEQ(task_fd, -1, "sys_pidfd_open")) + return; + + skel = task_ls_recursion__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) + goto out; + + err = task_ls_recursion__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto out; + + /* trigger sys_enter, make sure it does not cause deadlock */ + skel->bss->test_pid = getpid(); + syscall(SYS_gettid); + skel->bss->test_pid = 0; + task_ls_recursion__detach(skel); + + /* Refer to the comment in BPF_PROG(on_update) for + * the explanation on the value 201 and 100. + */ + map_fd = bpf_map__fd(skel->maps.map_a); + err = bpf_map_lookup_elem(map_fd, &task_fd, &value); + ASSERT_OK(err, "lookup map_a"); + ASSERT_EQ(value, 201, "map_a value"); + ASSERT_EQ(skel->bss->nr_del_errs, 1, "bpf_task_storage_delete busy"); + + map_fd = bpf_map__fd(skel->maps.map_b); + err = bpf_map_lookup_elem(map_fd, &task_fd, &value); + ASSERT_OK(err, "lookup map_b"); + ASSERT_EQ(value, 100, "map_b value"); + + prog_fd = bpf_program__fd(skel->progs.on_update); + memset(&info, 0, sizeof(info)); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + ASSERT_OK(err, "get prog info"); + ASSERT_EQ(info.recursion_misses, 0, "on_update prog recursion"); + + prog_fd = bpf_program__fd(skel->progs.on_enter); + memset(&info, 0, sizeof(info)); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + ASSERT_OK(err, "get prog info"); + ASSERT_EQ(info.recursion_misses, 0, "on_enter prog recursion"); + +out: + close(task_fd); + task_ls_recursion__destroy(skel); +} + +static bool stop; + +static void waitall(const pthread_t *tids, int nr) +{ + int i; + + stop = true; + for (i = 0; i < nr; i++) + pthread_join(tids[i], NULL); +} + +static void *sock_create_loop(void *arg) +{ + struct task_storage_nodeadlock *skel = arg; + int fd; + + while (!stop) { + fd = socket(AF_INET, SOCK_STREAM, 0); + close(fd); + if (skel->bss->nr_get_errs || skel->bss->nr_del_errs) + stop = true; + } + + return NULL; +} + +static void test_nodeadlock(void) +{ + struct task_storage_nodeadlock *skel; + struct bpf_prog_info info = {}; + __u32 info_len = sizeof(info); + const int nr_threads = 32; + pthread_t tids[nr_threads]; + int i, prog_fd, err; + cpu_set_t old, new; + + /* Pin all threads to one cpu to increase the chance of preemption + * in a sleepable bpf prog. + */ + CPU_ZERO(&new); + CPU_SET(0, &new); + err = sched_getaffinity(getpid(), sizeof(old), &old); + if (!ASSERT_OK(err, "getaffinity")) + return; + err = sched_setaffinity(getpid(), sizeof(new), &new); + if (!ASSERT_OK(err, "setaffinity")) + return; + + skel = task_storage_nodeadlock__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + goto done; + + /* Unnecessary recursion and deadlock detection are reproducible + * in the preemptible kernel. + */ + if (!skel->kconfig->CONFIG_PREEMPT) { + test__skip(); + goto done; + } + + err = task_storage_nodeadlock__attach(skel); + ASSERT_OK(err, "attach prog"); + + for (i = 0; i < nr_threads; i++) { + err = pthread_create(&tids[i], NULL, sock_create_loop, skel); + if (err) { + /* Only assert once here to avoid excessive + * PASS printing during test failure. + */ + ASSERT_OK(err, "pthread_create"); + waitall(tids, i); + goto done; + } + } + + /* With 32 threads, 1s is enough to reproduce the issue */ + sleep(1); + waitall(tids, nr_threads); + + info_len = sizeof(info); + prog_fd = bpf_program__fd(skel->progs.socket_post_create); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &info_len); + ASSERT_OK(err, "get prog info"); + ASSERT_EQ(info.recursion_misses, 0, "prog recursion"); + + ASSERT_EQ(skel->bss->nr_get_errs, 0, "bpf_task_storage_get busy"); + ASSERT_EQ(skel->bss->nr_del_errs, 0, "bpf_task_storage_delete busy"); + +done: + task_storage_nodeadlock__destroy(skel); + sched_setaffinity(getpid(), sizeof(old), &old); +} + +void test_task_local_storage(void) +{ + if (test__start_subtest("sys_enter_exit")) + test_sys_enter_exit(); + if (test__start_subtest("exit_creds")) + test_exit_creds(); + if (test__start_subtest("recursion")) + test_recursion(); + if (test__start_subtest("nodeadlock")) + test_nodeadlock(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/task_pt_regs.c b/tools/testing/selftests/bpf/prog_tests/task_pt_regs.c new file mode 100644 index 000000000000..f000734a3d1f --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/task_pt_regs.c @@ -0,0 +1,50 @@ +// SPDX-License-Identifier: GPL-2.0 +#define _GNU_SOURCE +#include <test_progs.h> +#include "test_task_pt_regs.skel.h" + +/* uprobe attach point */ +static noinline void trigger_func(void) +{ + asm volatile (""); +} + +void test_task_pt_regs(void) +{ + struct test_task_pt_regs *skel; + struct bpf_link *uprobe_link; + ssize_t uprobe_offset; + bool match; + + uprobe_offset = get_uprobe_offset(&trigger_func); + if (!ASSERT_GE(uprobe_offset, 0, "uprobe_offset")) + return; + + skel = test_task_pt_regs__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + if (!ASSERT_OK_PTR(skel->bss, "check_bss")) + goto cleanup; + + uprobe_link = bpf_program__attach_uprobe(skel->progs.handle_uprobe, + false /* retprobe */, + 0 /* self pid */, + "/proc/self/exe", + uprobe_offset); + if (!ASSERT_OK_PTR(uprobe_link, "attach_uprobe")) + goto cleanup; + skel->links.handle_uprobe = uprobe_link; + + /* trigger & validate uprobe */ + trigger_func(); + + if (!ASSERT_EQ(skel->bss->uprobe_res, 1, "check_uprobe_res")) + goto cleanup; + + match = !memcmp(&skel->bss->current_regs, &skel->bss->ctx_regs, + sizeof(skel->bss->current_regs)); + ASSERT_TRUE(match, "check_regs_match"); + +cleanup: + test_task_pt_regs__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/task_under_cgroup.c b/tools/testing/selftests/bpf/prog_tests/task_under_cgroup.c new file mode 100644 index 000000000000..626d76fe43a2 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/task_under_cgroup.c @@ -0,0 +1,60 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Bytedance */ + +#include <sys/syscall.h> +#include <test_progs.h> +#include <cgroup_helpers.h> +#include "test_task_under_cgroup.skel.h" + +#define FOO "/foo" + +void test_task_under_cgroup(void) +{ + struct test_task_under_cgroup *skel; + int ret, foo; + pid_t pid; + + foo = test__join_cgroup(FOO); + if (!ASSERT_OK(foo < 0, "cgroup_join_foo")) + return; + + skel = test_task_under_cgroup__open(); + if (!ASSERT_OK_PTR(skel, "test_task_under_cgroup__open")) + goto cleanup; + + skel->rodata->local_pid = getpid(); + skel->bss->remote_pid = getpid(); + skel->rodata->cgid = get_cgroup_id(FOO); + + ret = test_task_under_cgroup__load(skel); + if (!ASSERT_OK(ret, "test_task_under_cgroup__load")) + goto cleanup; + + /* First, attach the LSM program, and then it will be triggered when the + * TP_BTF program is attached. + */ + skel->links.lsm_run = bpf_program__attach_lsm(skel->progs.lsm_run); + if (!ASSERT_OK_PTR(skel->links.lsm_run, "attach_lsm")) + goto cleanup; + + skel->links.tp_btf_run = bpf_program__attach_trace(skel->progs.tp_btf_run); + if (!ASSERT_OK_PTR(skel->links.tp_btf_run, "attach_tp_btf")) + goto cleanup; + + pid = fork(); + if (pid == 0) + exit(0); + + ret = (pid == -1); + if (ASSERT_OK(ret, "fork process")) + wait(NULL); + + test_task_under_cgroup__detach(skel); + + ASSERT_NEQ(skel->bss->remote_pid, skel->rodata->local_pid, + "test task_under_cgroup"); + +cleanup: + test_task_under_cgroup__destroy(skel); + close(foo); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tc_bpf.c b/tools/testing/selftests/bpf/prog_tests/tc_bpf.c new file mode 100644 index 000000000000..48b55539331e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tc_bpf.c @@ -0,0 +1,429 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include <linux/pkt_cls.h> + +#include "cap_helpers.h" +#include "test_tc_bpf.skel.h" + +#define LO_IFINDEX 1 + +#define TEST_DECLARE_OPTS(__fd) \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_h, .handle = 1); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_p, .priority = 1); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_f, .prog_fd = __fd); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_hp, .handle = 1, .priority = 1); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_hf, .handle = 1, .prog_fd = __fd); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_pf, .priority = 1, .prog_fd = __fd); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_hpf, .handle = 1, .priority = 1, .prog_fd = __fd); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_hpi, .handle = 1, .priority = 1, .prog_id = 42); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_hpr, .handle = 1, .priority = 1, \ + .flags = BPF_TC_F_REPLACE); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_hpfi, .handle = 1, .priority = 1, .prog_fd = __fd, \ + .prog_id = 42); \ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts_prio_max, .handle = 1, .priority = UINT16_MAX + 1); + +static int test_tc_bpf_basic(const struct bpf_tc_hook *hook, int fd) +{ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts, .handle = 1, .priority = 1, .prog_fd = fd); + struct bpf_prog_info info = {}; + __u32 info_len = sizeof(info); + int ret; + + ret = bpf_prog_get_info_by_fd(fd, &info, &info_len); + if (!ASSERT_OK(ret, "bpf_prog_get_info_by_fd")) + return ret; + + ret = bpf_tc_attach(hook, &opts); + if (!ASSERT_OK(ret, "bpf_tc_attach")) + return ret; + + if (!ASSERT_EQ(opts.handle, 1, "handle set") || + !ASSERT_EQ(opts.priority, 1, "priority set") || + !ASSERT_EQ(opts.prog_id, info.id, "prog_id set")) + goto end; + + opts.prog_id = 0; + opts.flags = BPF_TC_F_REPLACE; + ret = bpf_tc_attach(hook, &opts); + if (!ASSERT_OK(ret, "bpf_tc_attach replace mode")) + goto end; + + opts.flags = opts.prog_fd = opts.prog_id = 0; + ret = bpf_tc_query(hook, &opts); + if (!ASSERT_OK(ret, "bpf_tc_query")) + goto end; + + if (!ASSERT_EQ(opts.handle, 1, "handle set") || + !ASSERT_EQ(opts.priority, 1, "priority set") || + !ASSERT_EQ(opts.prog_id, info.id, "prog_id set")) + goto end; + +end: + opts.flags = opts.prog_fd = opts.prog_id = 0; + ret = bpf_tc_detach(hook, &opts); + ASSERT_OK(ret, "bpf_tc_detach"); + return ret; +} + +static int test_tc_bpf_api(struct bpf_tc_hook *hook, int fd) +{ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, attach_opts, .handle = 1, .priority = 1, .prog_fd = fd); + DECLARE_LIBBPF_OPTS(bpf_tc_hook, inv_hook, .attach_point = BPF_TC_INGRESS); + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts, .handle = 1, .priority = 1); + int ret; + + ret = bpf_tc_hook_create(NULL); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_create invalid hook = NULL")) + return -EINVAL; + + /* hook ifindex = 0 */ + ret = bpf_tc_hook_create(&inv_hook); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_create invalid hook ifindex == 0")) + return -EINVAL; + + ret = bpf_tc_hook_destroy(&inv_hook); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_destroy invalid hook ifindex == 0")) + return -EINVAL; + + ret = bpf_tc_attach(&inv_hook, &attach_opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid hook ifindex == 0")) + return -EINVAL; + attach_opts.prog_id = 0; + + ret = bpf_tc_detach(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid hook ifindex == 0")) + return -EINVAL; + + ret = bpf_tc_query(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid hook ifindex == 0")) + return -EINVAL; + + /* hook ifindex < 0 */ + inv_hook.ifindex = -1; + + ret = bpf_tc_hook_create(&inv_hook); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_create invalid hook ifindex < 0")) + return -EINVAL; + + ret = bpf_tc_hook_destroy(&inv_hook); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_destroy invalid hook ifindex < 0")) + return -EINVAL; + + ret = bpf_tc_attach(&inv_hook, &attach_opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid hook ifindex < 0")) + return -EINVAL; + attach_opts.prog_id = 0; + + ret = bpf_tc_detach(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid hook ifindex < 0")) + return -EINVAL; + + ret = bpf_tc_query(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid hook ifindex < 0")) + return -EINVAL; + + inv_hook.ifindex = LO_IFINDEX; + + /* hook.attach_point invalid */ + inv_hook.attach_point = 0xabcd; + ret = bpf_tc_hook_create(&inv_hook); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_create invalid hook.attach_point")) + return -EINVAL; + + ret = bpf_tc_hook_destroy(&inv_hook); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_destroy invalid hook.attach_point")) + return -EINVAL; + + ret = bpf_tc_attach(&inv_hook, &attach_opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid hook.attach_point")) + return -EINVAL; + + ret = bpf_tc_detach(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid hook.attach_point")) + return -EINVAL; + + ret = bpf_tc_query(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid hook.attach_point")) + return -EINVAL; + + inv_hook.attach_point = BPF_TC_INGRESS; + + /* hook.attach_point valid, but parent invalid */ + inv_hook.parent = TC_H_MAKE(1UL << 16, 10); + ret = bpf_tc_hook_create(&inv_hook); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_create invalid hook parent")) + return -EINVAL; + + ret = bpf_tc_hook_destroy(&inv_hook); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_hook_destroy invalid hook parent")) + return -EINVAL; + + ret = bpf_tc_attach(&inv_hook, &attach_opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid hook parent")) + return -EINVAL; + + ret = bpf_tc_detach(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid hook parent")) + return -EINVAL; + + ret = bpf_tc_query(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid hook parent")) + return -EINVAL; + + inv_hook.attach_point = BPF_TC_CUSTOM; + inv_hook.parent = 0; + /* These return EOPNOTSUPP instead of EINVAL as parent is checked after + * attach_point of the hook. + */ + ret = bpf_tc_hook_create(&inv_hook); + if (!ASSERT_EQ(ret, -EOPNOTSUPP, "bpf_tc_hook_create invalid hook parent")) + return -EINVAL; + + ret = bpf_tc_hook_destroy(&inv_hook); + if (!ASSERT_EQ(ret, -EOPNOTSUPP, "bpf_tc_hook_destroy invalid hook parent")) + return -EINVAL; + + ret = bpf_tc_attach(&inv_hook, &attach_opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid hook parent")) + return -EINVAL; + + ret = bpf_tc_detach(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid hook parent")) + return -EINVAL; + + ret = bpf_tc_query(&inv_hook, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid hook parent")) + return -EINVAL; + + inv_hook.attach_point = BPF_TC_INGRESS; + + /* detach */ + { + TEST_DECLARE_OPTS(fd); + + ret = bpf_tc_detach(NULL, &opts_hp); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid hook = NULL")) + return -EINVAL; + + ret = bpf_tc_detach(hook, NULL); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid opts = NULL")) + return -EINVAL; + + ret = bpf_tc_detach(hook, &opts_hpr); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid flags set")) + return -EINVAL; + + ret = bpf_tc_detach(hook, &opts_hpf); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid prog_fd set")) + return -EINVAL; + + ret = bpf_tc_detach(hook, &opts_hpi); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid prog_id set")) + return -EINVAL; + + ret = bpf_tc_detach(hook, &opts_p); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid handle unset")) + return -EINVAL; + + ret = bpf_tc_detach(hook, &opts_h); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid priority unset")) + return -EINVAL; + + ret = bpf_tc_detach(hook, &opts_prio_max); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_detach invalid priority > UINT16_MAX")) + return -EINVAL; + } + + /* query */ + { + TEST_DECLARE_OPTS(fd); + + ret = bpf_tc_query(NULL, &opts); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid hook = NULL")) + return -EINVAL; + + ret = bpf_tc_query(hook, NULL); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid opts = NULL")) + return -EINVAL; + + ret = bpf_tc_query(hook, &opts_hpr); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid flags set")) + return -EINVAL; + + ret = bpf_tc_query(hook, &opts_hpf); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid prog_fd set")) + return -EINVAL; + + ret = bpf_tc_query(hook, &opts_hpi); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid prog_id set")) + return -EINVAL; + + ret = bpf_tc_query(hook, &opts_p); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid handle unset")) + return -EINVAL; + + ret = bpf_tc_query(hook, &opts_h); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid priority unset")) + return -EINVAL; + + ret = bpf_tc_query(hook, &opts_prio_max); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query invalid priority > UINT16_MAX")) + return -EINVAL; + + /* when chain is not present, kernel returns -EINVAL */ + ret = bpf_tc_query(hook, &opts_hp); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_query valid handle, priority set")) + return -EINVAL; + } + + /* attach */ + { + TEST_DECLARE_OPTS(fd); + + ret = bpf_tc_attach(NULL, &opts_hp); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid hook = NULL")) + return -EINVAL; + + ret = bpf_tc_attach(hook, NULL); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid opts = NULL")) + return -EINVAL; + + opts_hp.flags = 42; + ret = bpf_tc_attach(hook, &opts_hp); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid flags")) + return -EINVAL; + + ret = bpf_tc_attach(hook, NULL); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid prog_fd unset")) + return -EINVAL; + + ret = bpf_tc_attach(hook, &opts_hpi); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid prog_id set")) + return -EINVAL; + + ret = bpf_tc_attach(hook, &opts_pf); + if (!ASSERT_OK(ret, "bpf_tc_attach valid handle unset")) + return -EINVAL; + opts_pf.prog_fd = opts_pf.prog_id = 0; + ASSERT_OK(bpf_tc_detach(hook, &opts_pf), "bpf_tc_detach"); + + ret = bpf_tc_attach(hook, &opts_hf); + if (!ASSERT_OK(ret, "bpf_tc_attach valid priority unset")) + return -EINVAL; + opts_hf.prog_fd = opts_hf.prog_id = 0; + ASSERT_OK(bpf_tc_detach(hook, &opts_hf), "bpf_tc_detach"); + + ret = bpf_tc_attach(hook, &opts_prio_max); + if (!ASSERT_EQ(ret, -EINVAL, "bpf_tc_attach invalid priority > UINT16_MAX")) + return -EINVAL; + + ret = bpf_tc_attach(hook, &opts_f); + if (!ASSERT_OK(ret, "bpf_tc_attach valid both handle and priority unset")) + return -EINVAL; + opts_f.prog_fd = opts_f.prog_id = 0; + ASSERT_OK(bpf_tc_detach(hook, &opts_f), "bpf_tc_detach"); + } + + return 0; +} + +void tc_bpf_root(void) +{ + DECLARE_LIBBPF_OPTS(bpf_tc_hook, hook, .ifindex = LO_IFINDEX, + .attach_point = BPF_TC_INGRESS); + struct test_tc_bpf *skel = NULL; + bool hook_created = false; + int cls_fd, ret; + + skel = test_tc_bpf__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_tc_bpf__open_and_load")) + return; + + cls_fd = bpf_program__fd(skel->progs.cls); + + ret = bpf_tc_hook_create(&hook); + if (ret == 0) + hook_created = true; + + ret = ret == -EEXIST ? 0 : ret; + if (!ASSERT_OK(ret, "bpf_tc_hook_create(BPF_TC_INGRESS)")) + goto end; + + hook.attach_point = BPF_TC_CUSTOM; + hook.parent = TC_H_MAKE(TC_H_CLSACT, TC_H_MIN_INGRESS); + ret = bpf_tc_hook_create(&hook); + if (!ASSERT_EQ(ret, -EOPNOTSUPP, "bpf_tc_hook_create invalid hook.attach_point")) + goto end; + + ret = test_tc_bpf_basic(&hook, cls_fd); + if (!ASSERT_OK(ret, "test_tc_internal ingress")) + goto end; + + ret = bpf_tc_hook_destroy(&hook); + if (!ASSERT_EQ(ret, -EOPNOTSUPP, "bpf_tc_hook_destroy invalid hook.attach_point")) + goto end; + + hook.attach_point = BPF_TC_INGRESS; + hook.parent = 0; + bpf_tc_hook_destroy(&hook); + + ret = test_tc_bpf_basic(&hook, cls_fd); + if (!ASSERT_OK(ret, "test_tc_internal ingress")) + goto end; + + bpf_tc_hook_destroy(&hook); + + hook.attach_point = BPF_TC_EGRESS; + ret = test_tc_bpf_basic(&hook, cls_fd); + if (!ASSERT_OK(ret, "test_tc_internal egress")) + goto end; + + bpf_tc_hook_destroy(&hook); + + ret = test_tc_bpf_api(&hook, cls_fd); + if (!ASSERT_OK(ret, "test_tc_bpf_api")) + goto end; + + bpf_tc_hook_destroy(&hook); + +end: + if (hook_created) { + hook.attach_point = BPF_TC_INGRESS | BPF_TC_EGRESS; + bpf_tc_hook_destroy(&hook); + } + test_tc_bpf__destroy(skel); +} + +void tc_bpf_non_root(void) +{ + struct test_tc_bpf *skel = NULL; + __u64 caps = 0; + int ret; + + /* In case CAP_BPF and CAP_PERFMON is not set */ + ret = cap_enable_effective(1ULL << CAP_BPF | 1ULL << CAP_NET_ADMIN, &caps); + if (!ASSERT_OK(ret, "set_cap_bpf_cap_net_admin")) + return; + ret = cap_disable_effective(1ULL << CAP_SYS_ADMIN | 1ULL << CAP_PERFMON, NULL); + if (!ASSERT_OK(ret, "disable_cap_sys_admin")) + goto restore_cap; + + skel = test_tc_bpf__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_tc_bpf__open_and_load")) + goto restore_cap; + + test_tc_bpf__destroy(skel); + +restore_cap: + if (caps) + cap_enable_effective(caps, NULL); +} + +void test_tc_bpf(void) +{ + if (test__start_subtest("tc_bpf_root")) + tc_bpf_root(); + if (test__start_subtest("tc_bpf_non_root")) + tc_bpf_non_root(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tc_helpers.h b/tools/testing/selftests/bpf/prog_tests/tc_helpers.h new file mode 100644 index 000000000000..924d0e25320c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tc_helpers.h @@ -0,0 +1,78 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* Copyright (c) 2023 Isovalent */ +#ifndef TC_HELPERS +#define TC_HELPERS +#include <test_progs.h> + +#ifndef loopback +# define loopback 1 +#endif + +static inline __u32 id_from_prog_fd(int fd) +{ + struct bpf_prog_info prog_info = {}; + __u32 prog_info_len = sizeof(prog_info); + int err; + + err = bpf_obj_get_info_by_fd(fd, &prog_info, &prog_info_len); + if (!ASSERT_OK(err, "id_from_prog_fd")) + return 0; + + ASSERT_NEQ(prog_info.id, 0, "prog_info.id"); + return prog_info.id; +} + +static inline __u32 id_from_link_fd(int fd) +{ + struct bpf_link_info link_info = {}; + __u32 link_info_len = sizeof(link_info); + int err; + + err = bpf_link_get_info_by_fd(fd, &link_info, &link_info_len); + if (!ASSERT_OK(err, "id_from_link_fd")) + return 0; + + ASSERT_NEQ(link_info.id, 0, "link_info.id"); + return link_info.id; +} + +static inline __u32 ifindex_from_link_fd(int fd) +{ + struct bpf_link_info link_info = {}; + __u32 link_info_len = sizeof(link_info); + int err; + + err = bpf_link_get_info_by_fd(fd, &link_info, &link_info_len); + if (!ASSERT_OK(err, "id_from_link_fd")) + return 0; + + return link_info.tcx.ifindex; +} + +static inline void __assert_mprog_count(int target, int expected, int ifindex) +{ + __u32 count = 0, attach_flags = 0; + int err; + + err = bpf_prog_query(ifindex, target, 0, &attach_flags, + NULL, &count); + ASSERT_EQ(count, expected, "count"); + ASSERT_EQ(err, 0, "prog_query"); +} + +static inline void assert_mprog_count(int target, int expected) +{ + __assert_mprog_count(target, expected, loopback); +} + +static inline void assert_mprog_count_ifindex(int ifindex, int target, int expected) +{ + __assert_mprog_count(target, expected, ifindex); +} + +static inline void tc_skel_reset_all_seen(struct test_tc_link *skel) +{ + memset(skel->bss, 0, sizeof(*skel->bss)); +} + +#endif /* TC_HELPERS */ diff --git a/tools/testing/selftests/bpf/prog_tests/tc_links.c b/tools/testing/selftests/bpf/prog_tests/tc_links.c new file mode 100644 index 000000000000..bc9841144685 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tc_links.c @@ -0,0 +1,1901 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Isovalent */ +#include <uapi/linux/if_link.h> +#include <uapi/linux/pkt_sched.h> +#include <net/if.h> +#include <test_progs.h> + +#define loopback 1 +#define ping_cmd "ping -q -c1 -w1 127.0.0.1 > /dev/null" + +#include "test_tc_link.skel.h" +#include "tc_helpers.h" + +void serial_test_tc_links_basic(void) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 prog_ids[2], link_ids[2]; + __u32 pid1, pid2, lid1, lid2; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + + assert_mprog_count(BPF_TCX_INGRESS, 0); + assert_mprog_count(BPF_TCX_EGRESS, 0); + + ASSERT_EQ(skel->bss->seen_tc1, false, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count(BPF_TCX_INGRESS, 1); + assert_mprog_count(BPF_TCX_EGRESS, 0); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, BPF_TCX_INGRESS, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + ASSERT_NEQ(lid1, lid2, "link_ids_1_2"); + + assert_mprog_count(BPF_TCX_INGRESS, 1); + assert_mprog_count(BPF_TCX_EGRESS, 1); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, BPF_TCX_EGRESS, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid2, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid2, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); +cleanup: + test_tc_link__destroy(skel); + + assert_mprog_count(BPF_TCX_INGRESS, 0); + assert_mprog_count(BPF_TCX_EGRESS, 0); +} + +static void test_tc_links_before_target(int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 prog_ids[5], link_ids[5]; + __u32 pid1, pid2, pid3, pid4; + __u32 lid1, lid2, lid3, lid4; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, target), + 0, "tc3_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc4, target), + 0, "tc4_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + pid4 = id_from_prog_fd(bpf_program__fd(skel->progs.tc4)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid3, pid4, "prog_ids_3_4"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count(target, 1); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid2, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid2, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], 0, "link_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE, + .relative_fd = bpf_program__fd(skel->progs.tc2), + ); + + link = bpf_program__attach_tcx(skel->progs.tc3, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc3 = link; + + lid3 = id_from_link_fd(bpf_link__fd(skel->links.tc3)); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE | BPF_F_LINK, + .relative_id = lid1, + ); + + link = bpf_program__attach_tcx(skel->progs.tc4, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc4 = link; + + lid4 = id_from_link_fd(bpf_link__fd(skel->links.tc4)); + + assert_mprog_count(target, 4); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid4, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid4, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid1, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid1, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], pid3, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], lid3, "link_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], pid2, "prog_ids[3]"); + ASSERT_EQ(optq.link_ids[3], lid2, "link_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(optq.link_ids[4], 0, "link_ids[4]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_before(void) +{ + test_tc_links_before_target(BPF_TCX_INGRESS); + test_tc_links_before_target(BPF_TCX_EGRESS); +} + +static void test_tc_links_after_target(int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 prog_ids[5], link_ids[5]; + __u32 pid1, pid2, pid3, pid4; + __u32 lid1, lid2, lid3, lid4; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, target), + 0, "tc3_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc4, target), + 0, "tc4_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + pid4 = id_from_prog_fd(bpf_program__fd(skel->progs.tc4)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid3, pid4, "prog_ids_3_4"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count(target, 1); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid2, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid2, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], 0, "link_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER, + .relative_fd = bpf_program__fd(skel->progs.tc1), + ); + + link = bpf_program__attach_tcx(skel->progs.tc3, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc3 = link; + + lid3 = id_from_link_fd(bpf_link__fd(skel->links.tc3)); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER | BPF_F_LINK, + .relative_fd = bpf_link__fd(skel->links.tc2), + ); + + link = bpf_program__attach_tcx(skel->progs.tc4, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc4 = link; + + lid4 = id_from_link_fd(bpf_link__fd(skel->links.tc4)); + + assert_mprog_count(target, 4); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid3, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid3, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], pid2, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], lid2, "link_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], pid4, "prog_ids[3]"); + ASSERT_EQ(optq.link_ids[3], lid4, "link_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(optq.link_ids[4], 0, "link_ids[4]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_after(void) +{ + test_tc_links_after_target(BPF_TCX_INGRESS); + test_tc_links_after_target(BPF_TCX_EGRESS); +} + +static void test_tc_links_revision_target(int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 prog_ids[3], link_ids[3]; + __u32 pid1, pid2, lid1, lid2; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + + assert_mprog_count(target, 0); + + optl.expected_revision = 1; + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count(target, 1); + + optl.expected_revision = 1; + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 1); + + optl.expected_revision = 2; + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid2, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid2, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_revision(void) +{ + test_tc_links_revision_target(BPF_TCX_INGRESS); + test_tc_links_revision_target(BPF_TCX_EGRESS); +} + +static void test_tc_chain_classic(int target, bool chain_tc_old) +{ + LIBBPF_OPTS(bpf_tc_opts, tc_opts, .handle = 1, .priority = 1); + LIBBPF_OPTS(bpf_tc_hook, tc_hook, .ifindex = loopback); + bool hook_created = false, tc_attached = false; + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 pid1, pid2, pid3; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + if (chain_tc_old) { + tc_hook.attach_point = target == BPF_TCX_INGRESS ? + BPF_TC_INGRESS : BPF_TC_EGRESS; + err = bpf_tc_hook_create(&tc_hook); + if (err == 0) + hook_created = true; + err = err == -EEXIST ? 0 : err; + if (!ASSERT_OK(err, "bpf_tc_hook_create")) + goto cleanup; + + tc_opts.prog_fd = bpf_program__fd(skel->progs.tc3); + err = bpf_tc_attach(&tc_hook, &tc_opts); + if (!ASSERT_OK(err, "bpf_tc_attach")) + goto cleanup; + tc_attached = true; + } + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + assert_mprog_count(target, 2); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, chain_tc_old, "seen_tc3"); + + err = bpf_link__detach(skel->links.tc2); + if (!ASSERT_OK(err, "prog_detach")) + goto cleanup; + + assert_mprog_count(target, 1); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, chain_tc_old, "seen_tc3"); +cleanup: + if (tc_attached) { + tc_opts.flags = tc_opts.prog_fd = tc_opts.prog_id = 0; + err = bpf_tc_detach(&tc_hook, &tc_opts); + ASSERT_OK(err, "bpf_tc_detach"); + } + if (hook_created) { + tc_hook.attach_point = BPF_TC_INGRESS | BPF_TC_EGRESS; + bpf_tc_hook_destroy(&tc_hook); + } + assert_mprog_count(target, 1); + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_chain_classic(void) +{ + test_tc_chain_classic(BPF_TCX_INGRESS, false); + test_tc_chain_classic(BPF_TCX_EGRESS, false); + test_tc_chain_classic(BPF_TCX_INGRESS, true); + test_tc_chain_classic(BPF_TCX_EGRESS, true); +} + +static void test_tc_links_replace_target(int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 pid1, pid2, pid3, lid1, lid2; + __u32 prog_ids[4], link_ids[4]; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, target), + 0, "tc3_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + optl.expected_revision = 1; + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE, + .relative_id = pid1, + .expected_revision = 2, + ); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid2, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid2, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid1, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid1, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], 0, "link_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_REPLACE, + .relative_fd = bpf_program__fd(skel->progs.tc2), + .expected_revision = 3, + ); + + link = bpf_program__attach_tcx(skel->progs.tc3, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_REPLACE | BPF_F_LINK, + .relative_fd = bpf_link__fd(skel->links.tc2), + .expected_revision = 3, + ); + + link = bpf_program__attach_tcx(skel->progs.tc3, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_REPLACE | BPF_F_LINK | BPF_F_AFTER, + .relative_id = lid2, + ); + + link = bpf_program__attach_tcx(skel->progs.tc3, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 2); + + err = bpf_link__update_program(skel->links.tc2, skel->progs.tc3); + if (!ASSERT_OK(err, "link_update")) + goto cleanup; + + assert_mprog_count(target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 4, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid3, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid2, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid1, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid1, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], 0, "link_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + + err = bpf_link__detach(skel->links.tc2); + if (!ASSERT_OK(err, "link_detach")) + goto cleanup; + + assert_mprog_count(target, 1); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + + err = bpf_link__update_program(skel->links.tc1, skel->progs.tc1); + if (!ASSERT_OK(err, "link_update_self")) + goto cleanup; + + assert_mprog_count(target, 1); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_replace(void) +{ + test_tc_links_replace_target(BPF_TCX_INGRESS); + test_tc_links_replace_target(BPF_TCX_EGRESS); +} + +static void test_tc_links_invalid_target(int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 pid1, pid2, lid1; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + + assert_mprog_count(target, 0); + + optl.flags = BPF_F_BEFORE | BPF_F_AFTER; + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE | BPF_F_ID, + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER | BPF_F_ID, + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_ID, + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_LINK, + .relative_fd = bpf_program__fd(skel->progs.tc2), + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_LINK, + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .relative_fd = bpf_program__fd(skel->progs.tc2), + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE | BPF_F_AFTER, + .relative_fd = bpf_program__fd(skel->progs.tc2), + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE, + .relative_fd = bpf_program__fd(skel->progs.tc1), + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_ID, + .relative_id = pid2, + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_ID, + .relative_id = 42, + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE, + .relative_fd = bpf_program__fd(skel->progs.tc1), + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE | BPF_F_LINK, + .relative_fd = bpf_program__fd(skel->progs.tc1), + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER, + .relative_fd = bpf_program__fd(skel->progs.tc1), + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl); + + link = bpf_program__attach_tcx(skel->progs.tc1, 0, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER | BPF_F_LINK, + .relative_fd = bpf_program__fd(skel->progs.tc1), + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optl); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER | BPF_F_LINK, + .relative_fd = bpf_program__fd(skel->progs.tc1), + ); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE | BPF_F_LINK | BPF_F_ID, + .relative_id = ~0, + ); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE | BPF_F_LINK | BPF_F_ID, + .relative_id = lid1, + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE | BPF_F_ID, + .relative_id = pid1, + ); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE | BPF_F_LINK | BPF_F_ID, + .relative_id = lid1, + ); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + assert_mprog_count(target, 2); +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_invalid(void) +{ + test_tc_links_invalid_target(BPF_TCX_INGRESS); + test_tc_links_invalid_target(BPF_TCX_EGRESS); +} + +static void test_tc_links_prepend_target(int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 prog_ids[5], link_ids[5]; + __u32 pid1, pid2, pid3, pid4; + __u32 lid1, lid2, lid3, lid4; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, target), + 0, "tc3_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc4, target), + 0, "tc4_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + pid4 = id_from_prog_fd(bpf_program__fd(skel->progs.tc4)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid3, pid4, "prog_ids_3_4"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE, + ); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid2, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid2, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid1, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid1, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], 0, "link_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE, + ); + + link = bpf_program__attach_tcx(skel->progs.tc3, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc3 = link; + + lid3 = id_from_link_fd(bpf_link__fd(skel->links.tc3)); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE, + ); + + link = bpf_program__attach_tcx(skel->progs.tc4, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc4 = link; + + lid4 = id_from_link_fd(bpf_link__fd(skel->links.tc4)); + + assert_mprog_count(target, 4); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid4, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid4, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid3, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid3, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], pid2, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], lid2, "link_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], pid1, "prog_ids[3]"); + ASSERT_EQ(optq.link_ids[3], lid1, "link_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(optq.link_ids[4], 0, "link_ids[4]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_prepend(void) +{ + test_tc_links_prepend_target(BPF_TCX_INGRESS); + test_tc_links_prepend_target(BPF_TCX_EGRESS); +} + +static void test_tc_links_append_target(int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 prog_ids[5], link_ids[5]; + __u32 pid1, pid2, pid3, pid4; + __u32 lid1, lid2, lid3, lid4; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, target), + 0, "tc3_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc4, target), + 0, "tc4_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + pid4 = id_from_prog_fd(bpf_program__fd(skel->progs.tc4)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid3, pid4, "prog_ids_3_4"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER, + ); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid2, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid2, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], 0, "link_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER, + ); + + link = bpf_program__attach_tcx(skel->progs.tc3, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc3 = link; + + lid3 = id_from_link_fd(bpf_link__fd(skel->links.tc3)); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_AFTER, + ); + + link = bpf_program__attach_tcx(skel->progs.tc4, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc4 = link; + + lid4 = id_from_link_fd(bpf_link__fd(skel->links.tc4)); + + assert_mprog_count(target, 4); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid2, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid2, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], pid3, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], lid3, "link_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], pid4, "prog_ids[3]"); + ASSERT_EQ(optq.link_ids[3], lid4, "link_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(optq.link_ids[4], 0, "link_ids[4]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_append(void) +{ + test_tc_links_append_target(BPF_TCX_INGRESS); + test_tc_links_append_target(BPF_TCX_EGRESS); +} + +static void test_tc_links_dev_cleanup_target(int target) +{ + LIBBPF_OPTS(bpf_tcx_opts, optl); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 pid1, pid2, pid3, pid4; + struct test_tc_link *skel; + struct bpf_link *link; + int err, ifindex; + + ASSERT_OK(system("ip link add dev tcx_opts1 type veth peer name tcx_opts2"), "add veth"); + ifindex = if_nametoindex("tcx_opts1"); + ASSERT_NEQ(ifindex, 0, "non_zero_ifindex"); + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, target), + 0, "tc3_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc4, target), + 0, "tc4_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + pid4 = id_from_prog_fd(bpf_program__fd(skel->progs.tc4)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid3, pid4, "prog_ids_3_4"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + link = bpf_program__attach_tcx(skel->progs.tc1, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + assert_mprog_count_ifindex(ifindex, target, 1); + + link = bpf_program__attach_tcx(skel->progs.tc2, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + assert_mprog_count_ifindex(ifindex, target, 2); + + link = bpf_program__attach_tcx(skel->progs.tc3, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc3 = link; + + assert_mprog_count_ifindex(ifindex, target, 3); + + link = bpf_program__attach_tcx(skel->progs.tc4, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc4 = link; + + assert_mprog_count_ifindex(ifindex, target, 4); + + ASSERT_OK(system("ip link del dev tcx_opts1"), "del veth"); + ASSERT_EQ(if_nametoindex("tcx_opts1"), 0, "dev1_removed"); + ASSERT_EQ(if_nametoindex("tcx_opts2"), 0, "dev2_removed"); + + ASSERT_EQ(ifindex_from_link_fd(bpf_link__fd(skel->links.tc1)), 0, "tc1_ifindex"); + ASSERT_EQ(ifindex_from_link_fd(bpf_link__fd(skel->links.tc2)), 0, "tc2_ifindex"); + ASSERT_EQ(ifindex_from_link_fd(bpf_link__fd(skel->links.tc3)), 0, "tc3_ifindex"); + ASSERT_EQ(ifindex_from_link_fd(bpf_link__fd(skel->links.tc4)), 0, "tc4_ifindex"); + + test_tc_link__destroy(skel); + return; +cleanup: + test_tc_link__destroy(skel); + + ASSERT_OK(system("ip link del dev tcx_opts1"), "del veth"); + ASSERT_EQ(if_nametoindex("tcx_opts1"), 0, "dev1_removed"); + ASSERT_EQ(if_nametoindex("tcx_opts2"), 0, "dev2_removed"); +} + +void serial_test_tc_links_dev_cleanup(void) +{ + test_tc_links_dev_cleanup_target(BPF_TCX_INGRESS); + test_tc_links_dev_cleanup_target(BPF_TCX_EGRESS); +} + +static void test_tc_chain_mixed(int target) +{ + LIBBPF_OPTS(bpf_tc_opts, tc_opts, .handle = 1, .priority = 1); + LIBBPF_OPTS(bpf_tc_hook, tc_hook, .ifindex = loopback); + LIBBPF_OPTS(bpf_tcx_opts, optl); + struct test_tc_link *skel; + struct bpf_link *link; + __u32 pid1, pid2, pid3; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc4, target), + 0, "tc4_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc5, target), + 0, "tc5_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc6, target), + 0, "tc6_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc4)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc5)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc6)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + tc_hook.attach_point = target == BPF_TCX_INGRESS ? + BPF_TC_INGRESS : BPF_TC_EGRESS; + err = bpf_tc_hook_create(&tc_hook); + err = err == -EEXIST ? 0 : err; + if (!ASSERT_OK(err, "bpf_tc_hook_create")) + goto cleanup; + + tc_opts.prog_fd = bpf_program__fd(skel->progs.tc5); + err = bpf_tc_attach(&tc_hook, &tc_opts); + if (!ASSERT_OK(err, "bpf_tc_attach")) + goto cleanup; + + link = bpf_program__attach_tcx(skel->progs.tc6, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc6 = link; + + assert_mprog_count(target, 1); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + ASSERT_EQ(skel->bss->seen_tc5, false, "seen_tc5"); + ASSERT_EQ(skel->bss->seen_tc6, true, "seen_tc6"); + + err = bpf_link__update_program(skel->links.tc6, skel->progs.tc4); + if (!ASSERT_OK(err, "link_update")) + goto cleanup; + + assert_mprog_count(target, 1); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); + ASSERT_EQ(skel->bss->seen_tc5, true, "seen_tc5"); + ASSERT_EQ(skel->bss->seen_tc6, false, "seen_tc6"); + + err = bpf_link__detach(skel->links.tc6); + if (!ASSERT_OK(err, "prog_detach")) + goto cleanup; + + assert_mprog_count(target, 0); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + ASSERT_EQ(skel->bss->seen_tc5, true, "seen_tc5"); + ASSERT_EQ(skel->bss->seen_tc6, false, "seen_tc6"); + +cleanup: + tc_opts.flags = tc_opts.prog_fd = tc_opts.prog_id = 0; + err = bpf_tc_detach(&tc_hook, &tc_opts); + ASSERT_OK(err, "bpf_tc_detach"); + + tc_hook.attach_point = BPF_TC_INGRESS | BPF_TC_EGRESS; + bpf_tc_hook_destroy(&tc_hook); + + test_tc_link__destroy(skel); +} + +void serial_test_tc_links_chain_mixed(void) +{ + test_tc_chain_mixed(BPF_TCX_INGRESS); + test_tc_chain_mixed(BPF_TCX_EGRESS); +} + +static void test_tc_links_ingress(int target, bool chain_tc_old, + bool tcx_teardown_first) +{ + LIBBPF_OPTS(bpf_tc_opts, tc_opts, + .handle = 1, + .priority = 1, + ); + LIBBPF_OPTS(bpf_tc_hook, tc_hook, + .ifindex = loopback, + .attach_point = BPF_TC_CUSTOM, + .parent = TC_H_INGRESS, + ); + bool hook_created = false, tc_attached = false; + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 pid1, pid2, pid3; + struct test_tc_link *skel; + struct bpf_link *link; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + if (chain_tc_old) { + ASSERT_OK(system("tc qdisc add dev lo ingress"), "add_ingress"); + hook_created = true; + + tc_opts.prog_fd = bpf_program__fd(skel->progs.tc3); + err = bpf_tc_attach(&tc_hook, &tc_opts); + if (!ASSERT_OK(err, "bpf_tc_attach")) + goto cleanup; + tc_attached = true; + } + + link = bpf_program__attach_tcx(skel->progs.tc1, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + assert_mprog_count(target, 2); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, chain_tc_old, "seen_tc3"); + + err = bpf_link__detach(skel->links.tc2); + if (!ASSERT_OK(err, "prog_detach")) + goto cleanup; + + assert_mprog_count(target, 1); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, chain_tc_old, "seen_tc3"); +cleanup: + if (tc_attached) { + tc_opts.flags = tc_opts.prog_fd = tc_opts.prog_id = 0; + err = bpf_tc_detach(&tc_hook, &tc_opts); + ASSERT_OK(err, "bpf_tc_detach"); + } + ASSERT_OK(system(ping_cmd), ping_cmd); + assert_mprog_count(target, 1); + if (hook_created && tcx_teardown_first) + ASSERT_OK(system("tc qdisc del dev lo ingress"), "del_ingress"); + ASSERT_OK(system(ping_cmd), ping_cmd); + test_tc_link__destroy(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + if (hook_created && !tcx_teardown_first) + ASSERT_OK(system("tc qdisc del dev lo ingress"), "del_ingress"); + ASSERT_OK(system(ping_cmd), ping_cmd); + assert_mprog_count(target, 0); +} + +void serial_test_tc_links_ingress(void) +{ + test_tc_links_ingress(BPF_TCX_INGRESS, true, true); + test_tc_links_ingress(BPF_TCX_INGRESS, true, false); + test_tc_links_ingress(BPF_TCX_INGRESS, false, false); +} + +static void test_tc_links_dev_mixed(int target) +{ + LIBBPF_OPTS(bpf_tc_opts, tc_opts, .handle = 1, .priority = 1); + LIBBPF_OPTS(bpf_tc_hook, tc_hook); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 pid1, pid2, pid3, pid4; + struct test_tc_link *skel; + struct bpf_link *link; + int err, ifindex; + + ASSERT_OK(system("ip link add dev tcx_opts1 type veth peer name tcx_opts2"), "add veth"); + ifindex = if_nametoindex("tcx_opts1"); + ASSERT_NEQ(ifindex, 0, "non_zero_ifindex"); + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, target), + 0, "tc3_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc4, target), + 0, "tc4_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + pid4 = id_from_prog_fd(bpf_program__fd(skel->progs.tc4)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid3, pid4, "prog_ids_3_4"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + link = bpf_program__attach_tcx(skel->progs.tc1, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + assert_mprog_count_ifindex(ifindex, target, 1); + + link = bpf_program__attach_tcx(skel->progs.tc2, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + assert_mprog_count_ifindex(ifindex, target, 2); + + link = bpf_program__attach_tcx(skel->progs.tc3, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc3 = link; + + assert_mprog_count_ifindex(ifindex, target, 3); + + link = bpf_program__attach_tcx(skel->progs.tc4, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc4 = link; + + assert_mprog_count_ifindex(ifindex, target, 4); + + tc_hook.ifindex = ifindex; + tc_hook.attach_point = target == BPF_TCX_INGRESS ? + BPF_TC_INGRESS : BPF_TC_EGRESS; + + err = bpf_tc_hook_create(&tc_hook); + err = err == -EEXIST ? 0 : err; + if (!ASSERT_OK(err, "bpf_tc_hook_create")) + goto cleanup; + + tc_opts.prog_fd = bpf_program__fd(skel->progs.tc5); + err = bpf_tc_attach(&tc_hook, &tc_opts); + if (!ASSERT_OK(err, "bpf_tc_attach")) + goto cleanup; + + ASSERT_OK(system("ip link del dev tcx_opts1"), "del veth"); + ASSERT_EQ(if_nametoindex("tcx_opts1"), 0, "dev1_removed"); + ASSERT_EQ(if_nametoindex("tcx_opts2"), 0, "dev2_removed"); + + ASSERT_EQ(ifindex_from_link_fd(bpf_link__fd(skel->links.tc1)), 0, "tc1_ifindex"); + ASSERT_EQ(ifindex_from_link_fd(bpf_link__fd(skel->links.tc2)), 0, "tc2_ifindex"); + ASSERT_EQ(ifindex_from_link_fd(bpf_link__fd(skel->links.tc3)), 0, "tc3_ifindex"); + ASSERT_EQ(ifindex_from_link_fd(bpf_link__fd(skel->links.tc4)), 0, "tc4_ifindex"); + + test_tc_link__destroy(skel); + return; +cleanup: + test_tc_link__destroy(skel); + + ASSERT_OK(system("ip link del dev tcx_opts1"), "del veth"); + ASSERT_EQ(if_nametoindex("tcx_opts1"), 0, "dev1_removed"); + ASSERT_EQ(if_nametoindex("tcx_opts2"), 0, "dev2_removed"); +} + +void serial_test_tc_links_dev_mixed(void) +{ + test_tc_links_dev_mixed(BPF_TCX_INGRESS); + test_tc_links_dev_mixed(BPF_TCX_EGRESS); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tc_netkit.c b/tools/testing/selftests/bpf/prog_tests/tc_netkit.c new file mode 100644 index 000000000000..b9135720024c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tc_netkit.c @@ -0,0 +1,781 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Isovalent */ +#include <uapi/linux/if_link.h> +#include <net/if.h> +#include <test_progs.h> + +#define netkit_peer "nk0" +#define netkit_name "nk1" + +#define ping_addr_neigh 0x0a000002 /* 10.0.0.2 */ +#define ping_addr_noneigh 0x0a000003 /* 10.0.0.3 */ + +#include "test_tc_link.skel.h" +#include "netlink_helpers.h" +#include "tc_helpers.h" + +#define ICMP_ECHO 8 + +struct icmphdr { + __u8 type; + __u8 code; + __sum16 checksum; + struct { + __be16 id; + __be16 sequence; + } echo; +}; + +struct iplink_req { + struct nlmsghdr n; + struct ifinfomsg i; + char buf[1024]; +}; + +static int create_netkit(int mode, int policy, int peer_policy, int *ifindex, + bool same_netns) +{ + struct rtnl_handle rth = { .fd = -1 }; + struct iplink_req req = {}; + struct rtattr *linkinfo, *data; + const char *type = "netkit"; + int err; + + err = rtnl_open(&rth, 0); + if (!ASSERT_OK(err, "open_rtnetlink")) + return err; + + memset(&req, 0, sizeof(req)); + req.n.nlmsg_len = NLMSG_LENGTH(sizeof(struct ifinfomsg)); + req.n.nlmsg_flags = NLM_F_REQUEST | NLM_F_CREATE | NLM_F_EXCL; + req.n.nlmsg_type = RTM_NEWLINK; + req.i.ifi_family = AF_UNSPEC; + + addattr_l(&req.n, sizeof(req), IFLA_IFNAME, netkit_name, + strlen(netkit_name)); + linkinfo = addattr_nest(&req.n, sizeof(req), IFLA_LINKINFO); + addattr_l(&req.n, sizeof(req), IFLA_INFO_KIND, type, strlen(type)); + data = addattr_nest(&req.n, sizeof(req), IFLA_INFO_DATA); + addattr32(&req.n, sizeof(req), IFLA_NETKIT_POLICY, policy); + addattr32(&req.n, sizeof(req), IFLA_NETKIT_PEER_POLICY, peer_policy); + addattr32(&req.n, sizeof(req), IFLA_NETKIT_MODE, mode); + addattr_nest_end(&req.n, data); + addattr_nest_end(&req.n, linkinfo); + + err = rtnl_talk(&rth, &req.n, NULL); + ASSERT_OK(err, "talk_rtnetlink"); + rtnl_close(&rth); + *ifindex = if_nametoindex(netkit_name); + + ASSERT_GT(*ifindex, 0, "retrieve_ifindex"); + ASSERT_OK(system("ip netns add foo"), "create netns"); + ASSERT_OK(system("ip link set dev " netkit_name " up"), + "up primary"); + ASSERT_OK(system("ip addr add dev " netkit_name " 10.0.0.1/24"), + "addr primary"); + + if (mode == NETKIT_L3) { + ASSERT_EQ(system("ip link set dev " netkit_name + " addr ee:ff:bb:cc:aa:dd 2> /dev/null"), 512, + "set hwaddress"); + } else { + ASSERT_OK(system("ip link set dev " netkit_name + " addr ee:ff:bb:cc:aa:dd"), + "set hwaddress"); + } + if (same_netns) { + ASSERT_OK(system("ip link set dev " netkit_peer " up"), + "up peer"); + ASSERT_OK(system("ip addr add dev " netkit_peer " 10.0.0.2/24"), + "addr peer"); + } else { + ASSERT_OK(system("ip link set " netkit_peer " netns foo"), + "move peer"); + ASSERT_OK(system("ip netns exec foo ip link set dev " + netkit_peer " up"), "up peer"); + ASSERT_OK(system("ip netns exec foo ip addr add dev " + netkit_peer " 10.0.0.2/24"), "addr peer"); + } + return err; +} + +static void move_netkit(void) +{ + ASSERT_OK(system("ip link set " netkit_peer " netns foo"), + "move peer"); + ASSERT_OK(system("ip netns exec foo ip link set dev " + netkit_peer " up"), "up peer"); + ASSERT_OK(system("ip netns exec foo ip addr add dev " + netkit_peer " 10.0.0.2/24"), "addr peer"); +} + +static void destroy_netkit(void) +{ + ASSERT_OK(system("ip link del dev " netkit_name), "del primary"); + ASSERT_OK(system("ip netns del foo"), "delete netns"); + ASSERT_EQ(if_nametoindex(netkit_name), 0, netkit_name "_ifindex"); +} + +static int __send_icmp(__u32 dest) +{ + struct sockaddr_in addr; + struct icmphdr icmp; + int sock, ret; + + ret = write_sysctl("/proc/sys/net/ipv4/ping_group_range", "0 0"); + if (!ASSERT_OK(ret, "write_sysctl(net.ipv4.ping_group_range)")) + return ret; + + sock = socket(AF_INET, SOCK_DGRAM, IPPROTO_ICMP); + if (!ASSERT_GE(sock, 0, "icmp_socket")) + return -errno; + + ret = setsockopt(sock, SOL_SOCKET, SO_BINDTODEVICE, + netkit_name, strlen(netkit_name) + 1); + if (!ASSERT_OK(ret, "setsockopt(SO_BINDTODEVICE)")) + goto out; + + memset(&addr, 0, sizeof(addr)); + addr.sin_family = AF_INET; + addr.sin_addr.s_addr = htonl(dest); + + memset(&icmp, 0, sizeof(icmp)); + icmp.type = ICMP_ECHO; + icmp.echo.id = 1234; + icmp.echo.sequence = 1; + + ret = sendto(sock, &icmp, sizeof(icmp), 0, + (struct sockaddr *)&addr, sizeof(addr)); + if (!ASSERT_GE(ret, 0, "icmp_sendto")) + ret = -errno; + else + ret = 0; +out: + close(sock); + return ret; +} + +static int send_icmp(void) +{ + return __send_icmp(ping_addr_neigh); +} + +void serial_test_tc_netkit_basic(void) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_netkit_opts, optl); + __u32 prog_ids[2], link_ids[2]; + __u32 pid1, pid2, lid1, lid2; + struct test_tc_link *skel; + struct bpf_link *link; + int err, ifindex; + + err = create_netkit(NETKIT_L2, NETKIT_PASS, NETKIT_PASS, + &ifindex, false); + if (err) + return; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, + BPF_NETKIT_PRIMARY), 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, + BPF_NETKIT_PEER), 0, "tc2_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 0); + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PEER, 0); + + ASSERT_EQ(skel->bss->seen_tc1, false, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + link = bpf_program__attach_netkit(skel->progs.tc1, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 1); + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PEER, 0); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex, BPF_NETKIT_PRIMARY, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_EQ(send_icmp(), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + link = bpf_program__attach_netkit(skel->progs.tc2, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + ASSERT_NEQ(lid1, lid2, "link_ids_1_2"); + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 1); + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PEER, 1); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex, BPF_NETKIT_PEER, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid2, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid2, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_EQ(send_icmp(), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); +cleanup: + test_tc_link__destroy(skel); + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 0); + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PEER, 0); + destroy_netkit(); +} + +static void serial_test_tc_netkit_multi_links_target(int mode, int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_netkit_opts, optl); + __u32 prog_ids[3], link_ids[3]; + __u32 pid1, pid2, lid1, lid2; + struct test_tc_link *skel; + struct bpf_link *link; + int err, ifindex; + + err = create_netkit(mode, NETKIT_PASS, NETKIT_PASS, + &ifindex, false); + if (err) + return; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, + target), 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, + target), 0, "tc2_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + + assert_mprog_count_ifindex(ifindex, target, 0); + + ASSERT_EQ(skel->bss->seen_tc1, false, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_eth, false, "seen_eth"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + link = bpf_program__attach_netkit(skel->progs.tc1, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count_ifindex(ifindex, target, 1); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_EQ(send_icmp(), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_eth, true, "seen_eth"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + LIBBPF_OPTS_RESET(optl, + .flags = BPF_F_BEFORE, + .relative_fd = bpf_program__fd(skel->progs.tc1), + ); + + link = bpf_program__attach_netkit(skel->progs.tc2, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + ASSERT_NEQ(lid1, lid2, "link_ids_1_2"); + + assert_mprog_count_ifindex(ifindex, target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid2, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid2, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid1, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], lid1, "link_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(optq.link_ids[2], 0, "link_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_EQ(send_icmp(), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_eth, true, "seen_eth"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); +cleanup: + test_tc_link__destroy(skel); + + assert_mprog_count_ifindex(ifindex, target, 0); + destroy_netkit(); +} + +void serial_test_tc_netkit_multi_links(void) +{ + serial_test_tc_netkit_multi_links_target(NETKIT_L2, BPF_NETKIT_PRIMARY); + serial_test_tc_netkit_multi_links_target(NETKIT_L3, BPF_NETKIT_PRIMARY); + serial_test_tc_netkit_multi_links_target(NETKIT_L2, BPF_NETKIT_PEER); + serial_test_tc_netkit_multi_links_target(NETKIT_L3, BPF_NETKIT_PEER); +} + +static void serial_test_tc_netkit_multi_opts_target(int mode, int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 pid1, pid2, fd1, fd2; + __u32 prog_ids[3]; + struct test_tc_link *skel; + int err, ifindex; + + err = create_netkit(mode, NETKIT_PASS, NETKIT_PASS, + &ifindex, false); + if (err) + return; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + + pid1 = id_from_prog_fd(fd1); + pid2 = id_from_prog_fd(fd2); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + + assert_mprog_count_ifindex(ifindex, target, 0); + + ASSERT_EQ(skel->bss->seen_tc1, false, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_eth, false, "seen_eth"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + err = bpf_prog_attach_opts(fd1, ifindex, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count_ifindex(ifindex, target, 1); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_fd1; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_EQ(send_icmp(), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_eth, true, "seen_eth"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + .relative_fd = fd1, + ); + + err = bpf_prog_attach_opts(fd2, ifindex, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_fd1; + + assert_mprog_count_ifindex(ifindex, target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_fd2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid2, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], pid1, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_EQ(send_icmp(), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_eth, true, "seen_eth"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + +cleanup_fd2: + err = bpf_prog_detach_opts(fd2, ifindex, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count_ifindex(ifindex, target, 1); +cleanup_fd1: + err = bpf_prog_detach_opts(fd1, ifindex, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count_ifindex(ifindex, target, 0); +cleanup: + test_tc_link__destroy(skel); + + assert_mprog_count_ifindex(ifindex, target, 0); + destroy_netkit(); +} + +void serial_test_tc_netkit_multi_opts(void) +{ + serial_test_tc_netkit_multi_opts_target(NETKIT_L2, BPF_NETKIT_PRIMARY); + serial_test_tc_netkit_multi_opts_target(NETKIT_L3, BPF_NETKIT_PRIMARY); + serial_test_tc_netkit_multi_opts_target(NETKIT_L2, BPF_NETKIT_PEER); + serial_test_tc_netkit_multi_opts_target(NETKIT_L3, BPF_NETKIT_PEER); +} + +void serial_test_tc_netkit_device(void) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_netkit_opts, optl); + __u32 prog_ids[2], link_ids[2]; + __u32 pid1, pid2, lid1; + struct test_tc_link *skel; + struct bpf_link *link; + int err, ifindex, ifindex2; + + err = create_netkit(NETKIT_L3, NETKIT_PASS, NETKIT_PASS, + &ifindex, true); + if (err) + return; + + ifindex2 = if_nametoindex(netkit_peer); + ASSERT_NEQ(ifindex, ifindex2, "ifindex_1_2"); + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, + BPF_NETKIT_PRIMARY), 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, + BPF_NETKIT_PEER), 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, + BPF_NETKIT_PRIMARY), 0, "tc3_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 0); + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PEER, 0); + + ASSERT_EQ(skel->bss->seen_tc1, false, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + link = bpf_program__attach_netkit(skel->progs.tc1, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 1); + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PEER, 0); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex, BPF_NETKIT_PRIMARY, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_EQ(send_icmp(), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex2, BPF_NETKIT_PRIMARY, &optq); + ASSERT_EQ(err, -EACCES, "prog_query_should_fail"); + + err = bpf_prog_query_opts(ifindex2, BPF_NETKIT_PEER, &optq); + ASSERT_EQ(err, -EACCES, "prog_query_should_fail"); + + link = bpf_program__attach_netkit(skel->progs.tc2, ifindex2, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + link = bpf_program__attach_netkit(skel->progs.tc3, ifindex2, &optl); + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { + bpf_link__destroy(link); + goto cleanup; + } + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 1); + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PEER, 0); +cleanup: + test_tc_link__destroy(skel); + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 0); + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PEER, 0); + destroy_netkit(); +} + +static void serial_test_tc_netkit_neigh_links_target(int mode, int target) +{ + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_netkit_opts, optl); + __u32 prog_ids[2], link_ids[2]; + __u32 pid1, lid1; + struct test_tc_link *skel; + struct bpf_link *link; + int err, ifindex; + + err = create_netkit(mode, NETKIT_PASS, NETKIT_PASS, + &ifindex, false); + if (err) + return; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, + BPF_NETKIT_PRIMARY), 0, "tc1_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + + assert_mprog_count_ifindex(ifindex, target, 0); + + ASSERT_EQ(skel->bss->seen_tc1, false, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_eth, false, "seen_eth"); + + link = bpf_program__attach_netkit(skel->progs.tc1, ifindex, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + lid1 = id_from_link_fd(bpf_link__fd(skel->links.tc1)); + + assert_mprog_count_ifindex(ifindex, target, 1); + + optq.prog_ids = prog_ids; + optq.link_ids = link_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(link_ids, 0, sizeof(link_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(ifindex, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid1, "prog_ids[0]"); + ASSERT_EQ(optq.link_ids[0], lid1, "link_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(optq.link_ids[1], 0, "link_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_EQ(__send_icmp(ping_addr_noneigh), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true /* L2: ARP */, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_eth, mode == NETKIT_L3, "seen_eth"); +cleanup: + test_tc_link__destroy(skel); + + assert_mprog_count_ifindex(ifindex, target, 0); + destroy_netkit(); +} + +void serial_test_tc_netkit_neigh_links(void) +{ + serial_test_tc_netkit_neigh_links_target(NETKIT_L2, BPF_NETKIT_PRIMARY); + serial_test_tc_netkit_neigh_links_target(NETKIT_L3, BPF_NETKIT_PRIMARY); +} + +static void serial_test_tc_netkit_pkt_type_mode(int mode) +{ + LIBBPF_OPTS(bpf_netkit_opts, optl_nk); + LIBBPF_OPTS(bpf_tcx_opts, optl_tcx); + int err, ifindex, ifindex2; + struct test_tc_link *skel; + struct bpf_link *link; + + err = create_netkit(mode, NETKIT_PASS, NETKIT_PASS, + &ifindex, true); + if (err) + return; + + ifindex2 = if_nametoindex(netkit_peer); + ASSERT_NEQ(ifindex, ifindex2, "ifindex_1_2"); + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, + BPF_NETKIT_PRIMARY), 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc7, + BPF_TCX_INGRESS), 0, "tc7_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 0); + assert_mprog_count_ifindex(ifindex2, BPF_TCX_INGRESS, 0); + + link = bpf_program__attach_netkit(skel->progs.tc1, ifindex, &optl_nk); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc1 = link; + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 1); + assert_mprog_count_ifindex(ifindex2, BPF_TCX_INGRESS, 0); + + link = bpf_program__attach_tcx(skel->progs.tc7, ifindex2, &optl_tcx); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup; + + skel->links.tc7 = link; + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 1); + assert_mprog_count_ifindex(ifindex2, BPF_TCX_INGRESS, 1); + + move_netkit(); + + tc_skel_reset_all_seen(skel); + skel->bss->set_type = true; + ASSERT_EQ(send_icmp(), 0, "icmp_pkt"); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc7, true, "seen_tc7"); + + ASSERT_EQ(skel->bss->seen_host, true, "seen_host"); + ASSERT_EQ(skel->bss->seen_mcast, true, "seen_mcast"); +cleanup: + test_tc_link__destroy(skel); + + assert_mprog_count_ifindex(ifindex, BPF_NETKIT_PRIMARY, 0); + destroy_netkit(); +} + +void serial_test_tc_netkit_pkt_type(void) +{ + serial_test_tc_netkit_pkt_type_mode(NETKIT_L2); + serial_test_tc_netkit_pkt_type_mode(NETKIT_L3); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tc_opts.c b/tools/testing/selftests/bpf/prog_tests/tc_opts.c new file mode 100644 index 000000000000..196abf223465 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tc_opts.c @@ -0,0 +1,2814 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Isovalent */ +#include <uapi/linux/if_link.h> +#include <net/if.h> +#include <test_progs.h> + +#define loopback 1 +#define ping_cmd "ping -q -c1 -w1 127.0.0.1 > /dev/null" + +#include "test_tc_link.skel.h" +#include "tc_helpers.h" + +void serial_test_tc_opts_basic(void) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, id1, id2; + struct test_tc_link *skel; + __u32 prog_ids[2]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + + assert_mprog_count(BPF_TCX_INGRESS, 0); + assert_mprog_count(BPF_TCX_EGRESS, 0); + + ASSERT_EQ(skel->bss->seen_tc1, false, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + err = bpf_prog_attach_opts(fd1, loopback, BPF_TCX_INGRESS, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(BPF_TCX_INGRESS, 1); + assert_mprog_count(BPF_TCX_EGRESS, 0); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, BPF_TCX_INGRESS, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_in; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + + err = bpf_prog_attach_opts(fd2, loopback, BPF_TCX_EGRESS, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_in; + + assert_mprog_count(BPF_TCX_INGRESS, 1); + assert_mprog_count(BPF_TCX_EGRESS, 1); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, BPF_TCX_EGRESS, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_eg; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], id2, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + +cleanup_eg: + err = bpf_prog_detach_opts(fd2, loopback, BPF_TCX_EGRESS, &optd); + ASSERT_OK(err, "prog_detach_eg"); + + assert_mprog_count(BPF_TCX_INGRESS, 1); + assert_mprog_count(BPF_TCX_EGRESS, 0); + +cleanup_in: + err = bpf_prog_detach_opts(fd1, loopback, BPF_TCX_INGRESS, &optd); + ASSERT_OK(err, "prog_detach_in"); + + assert_mprog_count(BPF_TCX_INGRESS, 0); + assert_mprog_count(BPF_TCX_EGRESS, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +static void test_tc_opts_before_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + __u32 prog_ids[5]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id3, id4, "prog_ids_3_4"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target; + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + .relative_fd = fd2, + ); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target2; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target3; + + ASSERT_EQ(optq.count, 3, "count"); + ASSERT_EQ(optq.revision, 4, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id2, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], 0, "prog_ids[3]"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + .relative_id = id1, + ); + + err = bpf_prog_attach_opts(fd4, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target3; + + assert_mprog_count(target, 4); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id4, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id1, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id3, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], id2, "prog_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); + +cleanup_target4: + err = bpf_prog_detach_opts(fd4, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 3); + +cleanup_target3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup_target2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup_target: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_before(void) +{ + test_tc_opts_before_target(BPF_TCX_INGRESS); + test_tc_opts_before_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_after_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + __u32 prog_ids[5]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id3, id4, "prog_ids_3_4"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target; + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_AFTER, + .relative_fd = fd1, + ); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target2; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target3; + + ASSERT_EQ(optq.count, 3, "count"); + ASSERT_EQ(optq.revision, 4, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id2, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], 0, "prog_ids[3]"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_AFTER, + .relative_id = id2, + ); + + err = bpf_prog_attach_opts(fd4, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target3; + + assert_mprog_count(target, 4); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id2, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], id4, "prog_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); + +cleanup_target4: + err = bpf_prog_detach_opts(fd4, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 3); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target3; + + ASSERT_EQ(optq.count, 3, "count"); + ASSERT_EQ(optq.revision, 6, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id2, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], 0, "prog_ids[3]"); + +cleanup_target3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 7, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + +cleanup_target2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 8, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + +cleanup_target: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_after(void) +{ + test_tc_opts_after_target(BPF_TCX_INGRESS); + test_tc_opts_after_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_revision_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, id1, id2; + struct test_tc_link *skel; + __u32 prog_ids[3]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = 1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = 1, + ); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, -ESTALE, "prog_attach")) + goto cleanup_target; + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = 2, + ); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target; + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + + LIBBPF_OPTS_RESET(optd, + .expected_revision = 2, + ); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_EQ(err, -ESTALE, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup_target2: + LIBBPF_OPTS_RESET(optd, + .expected_revision = 3, + ); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup_target: + LIBBPF_OPTS_RESET(optd); + + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_revision(void) +{ + test_tc_opts_revision_target(BPF_TCX_INGRESS); + test_tc_opts_revision_target(BPF_TCX_EGRESS); +} + +static void test_tc_chain_classic(int target, bool chain_tc_old) +{ + LIBBPF_OPTS(bpf_tc_opts, tc_opts, .handle = 1, .priority = 1); + LIBBPF_OPTS(bpf_tc_hook, tc_hook, .ifindex = loopback); + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + bool hook_created = false, tc_attached = false; + __u32 fd1, fd2, fd3, id1, id2, id3; + struct test_tc_link *skel; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + if (chain_tc_old) { + tc_hook.attach_point = target == BPF_TCX_INGRESS ? + BPF_TC_INGRESS : BPF_TC_EGRESS; + err = bpf_tc_hook_create(&tc_hook); + if (err == 0) + hook_created = true; + err = err == -EEXIST ? 0 : err; + if (!ASSERT_OK(err, "bpf_tc_hook_create")) + goto cleanup; + + tc_opts.prog_fd = fd3; + err = bpf_tc_attach(&tc_hook, &tc_opts); + if (!ASSERT_OK(err, "bpf_tc_attach")) + goto cleanup; + tc_attached = true; + } + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_detach; + + assert_mprog_count(target, 2); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, chain_tc_old, "seen_tc3"); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + if (!ASSERT_OK(err, "prog_detach")) + goto cleanup_detach; + + assert_mprog_count(target, 1); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, chain_tc_old, "seen_tc3"); + +cleanup_detach: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + if (!ASSERT_OK(err, "prog_detach")) + goto cleanup; + + assert_mprog_count(target, 0); +cleanup: + if (tc_attached) { + tc_opts.flags = tc_opts.prog_fd = tc_opts.prog_id = 0; + err = bpf_tc_detach(&tc_hook, &tc_opts); + ASSERT_OK(err, "bpf_tc_detach"); + } + if (hook_created) { + tc_hook.attach_point = BPF_TC_INGRESS | BPF_TC_EGRESS; + bpf_tc_hook_destroy(&tc_hook); + } + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_opts_chain_classic(void) +{ + test_tc_chain_classic(BPF_TCX_INGRESS, false); + test_tc_chain_classic(BPF_TCX_EGRESS, false); + test_tc_chain_classic(BPF_TCX_INGRESS, true); + test_tc_chain_classic(BPF_TCX_EGRESS, true); +} + +static void test_tc_opts_replace_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, id1, id2, id3, detach_fd; + __u32 prog_ids[4], prog_flags[4]; + struct test_tc_link *skel; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = 1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + .relative_id = id1, + .expected_revision = 2, + ); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target; + + detach_fd = fd2; + + assert_mprog_count(target, 2); + + optq.prog_attach_flags = prog_flags; + optq.prog_ids = prog_ids; + + memset(prog_flags, 0, sizeof(prog_flags)); + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], id2, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id1, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + ASSERT_EQ(optq.prog_attach_flags[0], 0, "prog_flags[0]"); + ASSERT_EQ(optq.prog_attach_flags[1], 0, "prog_flags[1]"); + ASSERT_EQ(optq.prog_attach_flags[2], 0, "prog_flags[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = fd2, + .expected_revision = 3, + ); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target2; + + detach_fd = fd3; + + assert_mprog_count(target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 4, "revision"); + ASSERT_EQ(optq.prog_ids[0], id3, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id1, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, false, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE | BPF_F_BEFORE, + .replace_prog_fd = fd3, + .relative_fd = fd1, + .expected_revision = 4, + ); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target2; + + detach_fd = fd2; + + assert_mprog_count(target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id2, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id1, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = fd2, + ); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + ASSERT_EQ(err, -EEXIST, "prog_attach"); + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE | BPF_F_AFTER, + .replace_prog_fd = fd2, + .relative_fd = fd1, + .expected_revision = 5, + ); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + ASSERT_EQ(err, -ERANGE, "prog_attach"); + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE | BPF_F_AFTER | BPF_F_REPLACE, + .replace_prog_fd = fd2, + .relative_fd = fd1, + .expected_revision = 5, + ); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + ASSERT_EQ(err, -ERANGE, "prog_attach"); + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + .relative_id = id1, + .expected_revision = 5, + ); + +cleanup_target2: + err = bpf_prog_detach_opts(detach_fd, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup_target: + LIBBPF_OPTS_RESET(optd); + + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_replace(void) +{ + test_tc_opts_replace_target(BPF_TCX_INGRESS); + test_tc_opts_replace_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_invalid_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + __u32 fd1, fd2, id1, id2; + struct test_tc_link *skel; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE | BPF_F_AFTER, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -ERANGE, "prog_attach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE | BPF_F_ID, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -ENOENT, "prog_attach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_AFTER | BPF_F_ID, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -ENOENT, "prog_attach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .relative_fd = fd2, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -EINVAL, "prog_attach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE | BPF_F_AFTER, + .relative_fd = fd2, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -ENOENT, "prog_attach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_ID, + .relative_id = id2, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -EINVAL, "prog_attach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + .relative_fd = fd1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -ENOENT, "prog_attach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_AFTER, + .relative_fd = fd1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -ENOENT, "prog_attach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -EEXIST, "prog_attach"); + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + .relative_fd = fd1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -EEXIST, "prog_attach"); + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_AFTER, + .relative_fd = fd1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -EEXIST, "prog_attach"); + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .relative_fd = fd1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -EINVAL, "prog_attach_x1"); + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = fd1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + ASSERT_EQ(err, -EEXIST, "prog_attach"); + assert_mprog_count(target, 1); + + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_invalid(void) +{ + test_tc_opts_invalid_target(BPF_TCX_INGRESS); + test_tc_opts_invalid_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_prepend_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + __u32 prog_ids[5]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id3, id4, "prog_ids_3_4"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + ); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target; + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], id2, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id1, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + ); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target2; + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_BEFORE, + ); + + err = bpf_prog_attach_opts(fd4, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target3; + + assert_mprog_count(target, 4); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id4, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id2, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], id1, "prog_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); + +cleanup_target4: + err = bpf_prog_detach_opts(fd4, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 3); + +cleanup_target3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup_target2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup_target: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_prepend(void) +{ + test_tc_opts_prepend_target(BPF_TCX_INGRESS); + test_tc_opts_prepend_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_append_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + __u32 prog_ids[5]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id3, id4, "prog_ids_3_4"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_AFTER, + ); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target; + + assert_mprog_count(target, 2); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target2; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 3, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, false, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_AFTER, + ); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target2; + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_AFTER, + ); + + err = bpf_prog_attach_opts(fd4, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_target3; + + assert_mprog_count(target, 4); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup_target4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id3, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], id4, "prog_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc1, true, "seen_tc1"); + ASSERT_EQ(skel->bss->seen_tc2, true, "seen_tc2"); + ASSERT_EQ(skel->bss->seen_tc3, true, "seen_tc3"); + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); + +cleanup_target4: + err = bpf_prog_detach_opts(fd4, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 3); + +cleanup_target3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup_target2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup_target: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_append(void) +{ + test_tc_opts_append_target(BPF_TCX_INGRESS); + test_tc_opts_append_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_dev_cleanup_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + int err, ifindex; + + ASSERT_OK(system("ip link add dev tcx_opts1 type veth peer name tcx_opts2"), "add veth"); + ifindex = if_nametoindex("tcx_opts1"); + ASSERT_NEQ(ifindex, 0, "non_zero_ifindex"); + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id3, id4, "prog_ids_3_4"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count_ifindex(ifindex, target, 0); + + err = bpf_prog_attach_opts(fd1, ifindex, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count_ifindex(ifindex, target, 1); + + err = bpf_prog_attach_opts(fd2, ifindex, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup1; + + assert_mprog_count_ifindex(ifindex, target, 2); + + err = bpf_prog_attach_opts(fd3, ifindex, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup2; + + assert_mprog_count_ifindex(ifindex, target, 3); + + err = bpf_prog_attach_opts(fd4, ifindex, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup3; + + assert_mprog_count_ifindex(ifindex, target, 4); + + ASSERT_OK(system("ip link del dev tcx_opts1"), "del veth"); + ASSERT_EQ(if_nametoindex("tcx_opts1"), 0, "dev1_removed"); + ASSERT_EQ(if_nametoindex("tcx_opts2"), 0, "dev2_removed"); + return; +cleanup3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count_ifindex(ifindex, target, 2); +cleanup2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count_ifindex(ifindex, target, 1); +cleanup1: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count_ifindex(ifindex, target, 0); +cleanup: + test_tc_link__destroy(skel); + + ASSERT_OK(system("ip link del dev tcx_opts1"), "del veth"); + ASSERT_EQ(if_nametoindex("tcx_opts1"), 0, "dev1_removed"); + ASSERT_EQ(if_nametoindex("tcx_opts2"), 0, "dev2_removed"); +} + +void serial_test_tc_opts_dev_cleanup(void) +{ + test_tc_opts_dev_cleanup_target(BPF_TCX_INGRESS); + test_tc_opts_dev_cleanup_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_mixed_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + LIBBPF_OPTS(bpf_tcx_opts, optl); + __u32 pid1, pid2, pid3, pid4, lid2, lid4; + __u32 prog_flags[4], link_flags[4]; + __u32 prog_ids[4], link_ids[4]; + struct test_tc_link *skel; + struct bpf_link *link; + int err, detach_fd; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc3, target), + 0, "tc3_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc4, target), + 0, "tc4_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + pid3 = id_from_prog_fd(bpf_program__fd(skel->progs.tc3)); + pid4 = id_from_prog_fd(bpf_program__fd(skel->progs.tc4)); + + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + ASSERT_NEQ(pid3, pid4, "prog_ids_3_4"); + ASSERT_NEQ(pid2, pid3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(bpf_program__fd(skel->progs.tc1), + loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + detach_fd = bpf_program__fd(skel->progs.tc1); + + assert_mprog_count(target, 1); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup1; + skel->links.tc2 = link; + + lid2 = id_from_link_fd(bpf_link__fd(skel->links.tc2)); + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = bpf_program__fd(skel->progs.tc1), + ); + + err = bpf_prog_attach_opts(bpf_program__fd(skel->progs.tc2), + loopback, target, &opta); + ASSERT_EQ(err, -EEXIST, "prog_attach"); + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = bpf_program__fd(skel->progs.tc2), + ); + + err = bpf_prog_attach_opts(bpf_program__fd(skel->progs.tc1), + loopback, target, &opta); + ASSERT_EQ(err, -EEXIST, "prog_attach"); + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = bpf_program__fd(skel->progs.tc2), + ); + + err = bpf_prog_attach_opts(bpf_program__fd(skel->progs.tc3), + loopback, target, &opta); + ASSERT_EQ(err, -EBUSY, "prog_attach"); + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = bpf_program__fd(skel->progs.tc1), + ); + + err = bpf_prog_attach_opts(bpf_program__fd(skel->progs.tc3), + loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup1; + + detach_fd = bpf_program__fd(skel->progs.tc3); + + assert_mprog_count(target, 2); + + link = bpf_program__attach_tcx(skel->progs.tc4, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup1; + skel->links.tc4 = link; + + lid4 = id_from_link_fd(bpf_link__fd(skel->links.tc4)); + + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = bpf_program__fd(skel->progs.tc4), + ); + + err = bpf_prog_attach_opts(bpf_program__fd(skel->progs.tc2), + loopback, target, &opta); + ASSERT_EQ(err, -EEXIST, "prog_attach"); + + optq.prog_ids = prog_ids; + optq.prog_attach_flags = prog_flags; + optq.link_ids = link_ids; + optq.link_attach_flags = link_flags; + + memset(prog_ids, 0, sizeof(prog_ids)); + memset(prog_flags, 0, sizeof(prog_flags)); + memset(link_ids, 0, sizeof(link_ids)); + memset(link_flags, 0, sizeof(link_flags)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup1; + + ASSERT_EQ(optq.count, 3, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], pid3, "prog_ids[0]"); + ASSERT_EQ(optq.prog_attach_flags[0], 0, "prog_flags[0]"); + ASSERT_EQ(optq.link_ids[0], 0, "link_ids[0]"); + ASSERT_EQ(optq.link_attach_flags[0], 0, "link_flags[0]"); + ASSERT_EQ(optq.prog_ids[1], pid2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_attach_flags[1], 0, "prog_flags[1]"); + ASSERT_EQ(optq.link_ids[1], lid2, "link_ids[1]"); + ASSERT_EQ(optq.link_attach_flags[1], 0, "link_flags[1]"); + ASSERT_EQ(optq.prog_ids[2], pid4, "prog_ids[2]"); + ASSERT_EQ(optq.prog_attach_flags[2], 0, "prog_flags[2]"); + ASSERT_EQ(optq.link_ids[2], lid4, "link_ids[2]"); + ASSERT_EQ(optq.link_attach_flags[2], 0, "link_flags[2]"); + ASSERT_EQ(optq.prog_ids[3], 0, "prog_ids[3]"); + ASSERT_EQ(optq.prog_attach_flags[3], 0, "prog_flags[3]"); + ASSERT_EQ(optq.link_ids[3], 0, "link_ids[3]"); + ASSERT_EQ(optq.link_attach_flags[3], 0, "link_flags[3]"); + + ASSERT_OK(system(ping_cmd), ping_cmd); + +cleanup1: + err = bpf_prog_detach_opts(detach_fd, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_opts_mixed(void) +{ + test_tc_opts_mixed_target(BPF_TCX_INGRESS); + test_tc_opts_mixed_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_demixed_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_tcx_opts, optl); + struct test_tc_link *skel; + struct bpf_link *link; + __u32 pid1, pid2; + int err; + + skel = test_tc_link__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + goto cleanup; + + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc1, target), + 0, "tc1_attach_type"); + ASSERT_EQ(bpf_program__set_expected_attach_type(skel->progs.tc2, target), + 0, "tc2_attach_type"); + + err = test_tc_link__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + pid1 = id_from_prog_fd(bpf_program__fd(skel->progs.tc1)); + pid2 = id_from_prog_fd(bpf_program__fd(skel->progs.tc2)); + ASSERT_NEQ(pid1, pid2, "prog_ids_1_2"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(bpf_program__fd(skel->progs.tc1), + loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + link = bpf_program__attach_tcx(skel->progs.tc2, loopback, &optl); + if (!ASSERT_OK_PTR(link, "link_attach")) + goto cleanup1; + skel->links.tc2 = link; + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_EQ(err, -EBUSY, "prog_detach"); + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 1); + goto cleanup; + +cleanup1: + err = bpf_prog_detach_opts(bpf_program__fd(skel->progs.tc1), + loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup: + test_tc_link__destroy(skel); + assert_mprog_count(target, 0); +} + +void serial_test_tc_opts_demixed(void) +{ + test_tc_opts_demixed_target(BPF_TCX_INGRESS); + test_tc_opts_demixed_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_detach_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + __u32 prog_ids[5]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id3, id4, "prog_ids_3_4"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup1; + + assert_mprog_count(target, 2); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup2; + + assert_mprog_count(target, 3); + + err = bpf_prog_attach_opts(fd4, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup3; + + assert_mprog_count(target, 4); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id3, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], id4, "prog_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 3); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 3, "count"); + ASSERT_EQ(optq.revision, 6, "revision"); + ASSERT_EQ(optq.prog_ids[0], id2, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id4, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], 0, "prog_ids[3]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 7, "revision"); + ASSERT_EQ(optq.prog_ids[0], id2, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + LIBBPF_OPTS_RESET(optd); + + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_EQ(err, -ENOENT, "prog_detach"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_EQ(err, -ENOENT, "prog_detach"); + goto cleanup; + +cleanup4: + err = bpf_prog_detach_opts(fd4, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 3); + +cleanup3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup1: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_detach(void) +{ + test_tc_opts_detach_target(BPF_TCX_INGRESS); + test_tc_opts_detach_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_detach_before_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + __u32 prog_ids[5]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id3, id4, "prog_ids_3_4"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup1; + + assert_mprog_count(target, 2); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup2; + + assert_mprog_count(target, 3); + + err = bpf_prog_attach_opts(fd4, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup3; + + assert_mprog_count(target, 4); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id3, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], id4, "prog_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + .relative_fd = fd2, + ); + + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 3); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 3, "count"); + ASSERT_EQ(optq.revision, 6, "revision"); + ASSERT_EQ(optq.prog_ids[0], id2, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id4, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], 0, "prog_ids[3]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + .relative_fd = fd2, + ); + + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_EQ(err, -ENOENT, "prog_detach"); + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + .relative_fd = fd4, + ); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_EQ(err, -ERANGE, "prog_detach"); + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + .relative_fd = fd1, + ); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_EQ(err, -ENOENT, "prog_detach"); + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + .relative_fd = fd3, + ); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 7, "revision"); + ASSERT_EQ(optq.prog_ids[0], id3, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id4, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + .relative_fd = fd4, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 1); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 8, "revision"); + ASSERT_EQ(optq.prog_ids[0], id4, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_BEFORE, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 0); + goto cleanup; + +cleanup4: + err = bpf_prog_detach_opts(fd4, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 3); + +cleanup3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup1: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_detach_before(void) +{ + test_tc_opts_detach_before_target(BPF_TCX_INGRESS); + test_tc_opts_detach_before_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_detach_after_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + __u32 prog_ids[5]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id3, id4, "prog_ids_3_4"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup1; + + assert_mprog_count(target, 2); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup2; + + assert_mprog_count(target, 3); + + err = bpf_prog_attach_opts(fd4, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup3; + + assert_mprog_count(target, 4); + + optq.prog_ids = prog_ids; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id3, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], id4, "prog_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + .relative_fd = fd1, + ); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 3); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 3, "count"); + ASSERT_EQ(optq.revision, 6, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id3, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id4, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], 0, "prog_ids[3]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + .relative_fd = fd1, + ); + + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_EQ(err, -ENOENT, "prog_detach"); + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + .relative_fd = fd4, + ); + + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_EQ(err, -ERANGE, "prog_detach"); + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + .relative_fd = fd3, + ); + + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_EQ(err, -ERANGE, "prog_detach"); + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + .relative_fd = fd1, + ); + + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_EQ(err, -ERANGE, "prog_detach"); + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + .relative_fd = fd1, + ); + + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 2); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 2, "count"); + ASSERT_EQ(optq.revision, 7, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id4, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], 0, "prog_ids[2]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + .relative_fd = fd1, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 1); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 8, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + + LIBBPF_OPTS_RESET(optd, + .flags = BPF_F_AFTER, + ); + + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + + assert_mprog_count(target, 0); + goto cleanup; + +cleanup4: + err = bpf_prog_detach_opts(fd4, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 3); + +cleanup3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup1: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_detach_after(void) +{ + test_tc_opts_detach_after_target(BPF_TCX_INGRESS); + test_tc_opts_detach_after_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_delete_empty(int target, bool chain_tc_old) +{ + LIBBPF_OPTS(bpf_tc_hook, tc_hook, .ifindex = loopback); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + int err; + + assert_mprog_count(target, 0); + if (chain_tc_old) { + tc_hook.attach_point = target == BPF_TCX_INGRESS ? + BPF_TC_INGRESS : BPF_TC_EGRESS; + err = bpf_tc_hook_create(&tc_hook); + ASSERT_OK(err, "bpf_tc_hook_create"); + assert_mprog_count(target, 0); + } + err = bpf_prog_detach_opts(0, loopback, target, &optd); + ASSERT_EQ(err, -ENOENT, "prog_detach"); + if (chain_tc_old) { + tc_hook.attach_point = BPF_TC_INGRESS | BPF_TC_EGRESS; + bpf_tc_hook_destroy(&tc_hook); + } + assert_mprog_count(target, 0); +} + +void serial_test_tc_opts_delete_empty(void) +{ + test_tc_opts_delete_empty(BPF_TCX_INGRESS, false); + test_tc_opts_delete_empty(BPF_TCX_EGRESS, false); + test_tc_opts_delete_empty(BPF_TCX_INGRESS, true); + test_tc_opts_delete_empty(BPF_TCX_EGRESS, true); +} + +static void test_tc_chain_mixed(int target) +{ + LIBBPF_OPTS(bpf_tc_opts, tc_opts, .handle = 1, .priority = 1); + LIBBPF_OPTS(bpf_tc_hook, tc_hook, .ifindex = loopback); + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + __u32 fd1, fd2, fd3, id1, id2, id3; + struct test_tc_link *skel; + int err, detach_fd; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc4); + fd2 = bpf_program__fd(skel->progs.tc5); + fd3 = bpf_program__fd(skel->progs.tc6); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + + ASSERT_NEQ(id1, id2, "prog_ids_1_2"); + ASSERT_NEQ(id2, id3, "prog_ids_2_3"); + + assert_mprog_count(target, 0); + + tc_hook.attach_point = target == BPF_TCX_INGRESS ? + BPF_TC_INGRESS : BPF_TC_EGRESS; + err = bpf_tc_hook_create(&tc_hook); + err = err == -EEXIST ? 0 : err; + if (!ASSERT_OK(err, "bpf_tc_hook_create")) + goto cleanup; + + tc_opts.prog_fd = fd2; + err = bpf_tc_attach(&tc_hook, &tc_opts); + if (!ASSERT_OK(err, "bpf_tc_attach")) + goto cleanup_hook; + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_filter; + + detach_fd = fd3; + + assert_mprog_count(target, 1); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + ASSERT_EQ(skel->bss->seen_tc5, false, "seen_tc5"); + ASSERT_EQ(skel->bss->seen_tc6, true, "seen_tc6"); + + LIBBPF_OPTS_RESET(opta, + .flags = BPF_F_REPLACE, + .replace_prog_fd = fd3, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup_opts; + + detach_fd = fd1; + + assert_mprog_count(target, 1); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc4, true, "seen_tc4"); + ASSERT_EQ(skel->bss->seen_tc5, true, "seen_tc5"); + ASSERT_EQ(skel->bss->seen_tc6, false, "seen_tc6"); + +cleanup_opts: + err = bpf_prog_detach_opts(detach_fd, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + + tc_skel_reset_all_seen(skel); + ASSERT_OK(system(ping_cmd), ping_cmd); + + ASSERT_EQ(skel->bss->seen_tc4, false, "seen_tc4"); + ASSERT_EQ(skel->bss->seen_tc5, true, "seen_tc5"); + ASSERT_EQ(skel->bss->seen_tc6, false, "seen_tc6"); + +cleanup_filter: + tc_opts.flags = tc_opts.prog_fd = tc_opts.prog_id = 0; + err = bpf_tc_detach(&tc_hook, &tc_opts); + ASSERT_OK(err, "bpf_tc_detach"); + +cleanup_hook: + tc_hook.attach_point = BPF_TC_INGRESS | BPF_TC_EGRESS; + bpf_tc_hook_destroy(&tc_hook); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_chain_mixed(void) +{ + test_tc_chain_mixed(BPF_TCX_INGRESS); + test_tc_chain_mixed(BPF_TCX_EGRESS); +} + +static int generate_dummy_prog(void) +{ + const struct bpf_insn prog_insns[] = { + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + const size_t prog_insn_cnt = sizeof(prog_insns) / sizeof(struct bpf_insn); + LIBBPF_OPTS(bpf_prog_load_opts, opts); + const size_t log_buf_sz = 256; + char log_buf[log_buf_sz]; + int fd = -1; + + opts.log_buf = log_buf; + opts.log_size = log_buf_sz; + + log_buf[0] = '\0'; + opts.log_level = 0; + fd = bpf_prog_load(BPF_PROG_TYPE_SCHED_CLS, "tcx_prog", "GPL", + prog_insns, prog_insn_cnt, &opts); + ASSERT_STREQ(log_buf, "", "log_0"); + ASSERT_GE(fd, 0, "prog_fd"); + return fd; +} + +static void test_tc_opts_max_target(int target, int flags, bool relative) +{ + int err, ifindex, i, prog_fd, last_fd = -1; + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + const int max_progs = 63; + + ASSERT_OK(system("ip link add dev tcx_opts1 type veth peer name tcx_opts2"), "add veth"); + ifindex = if_nametoindex("tcx_opts1"); + ASSERT_NEQ(ifindex, 0, "non_zero_ifindex"); + + assert_mprog_count_ifindex(ifindex, target, 0); + + for (i = 0; i < max_progs; i++) { + prog_fd = generate_dummy_prog(); + if (!ASSERT_GE(prog_fd, 0, "dummy_prog")) + goto cleanup; + err = bpf_prog_attach_opts(prog_fd, ifindex, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + assert_mprog_count_ifindex(ifindex, target, i + 1); + if (i == max_progs - 1 && relative) + last_fd = prog_fd; + else + close(prog_fd); + } + + prog_fd = generate_dummy_prog(); + if (!ASSERT_GE(prog_fd, 0, "dummy_prog")) + goto cleanup; + opta.flags = flags; + if (last_fd > 0) + opta.relative_fd = last_fd; + err = bpf_prog_attach_opts(prog_fd, ifindex, target, &opta); + ASSERT_EQ(err, -ERANGE, "prog_64_attach"); + assert_mprog_count_ifindex(ifindex, target, max_progs); + close(prog_fd); +cleanup: + if (last_fd > 0) + close(last_fd); + ASSERT_OK(system("ip link del dev tcx_opts1"), "del veth"); + ASSERT_EQ(if_nametoindex("tcx_opts1"), 0, "dev1_removed"); + ASSERT_EQ(if_nametoindex("tcx_opts2"), 0, "dev2_removed"); +} + +void serial_test_tc_opts_max(void) +{ + test_tc_opts_max_target(BPF_TCX_INGRESS, 0, false); + test_tc_opts_max_target(BPF_TCX_EGRESS, 0, false); + + test_tc_opts_max_target(BPF_TCX_INGRESS, BPF_F_BEFORE, false); + test_tc_opts_max_target(BPF_TCX_EGRESS, BPF_F_BEFORE, true); + + test_tc_opts_max_target(BPF_TCX_INGRESS, BPF_F_AFTER, true); + test_tc_opts_max_target(BPF_TCX_EGRESS, BPF_F_AFTER, false); +} + +static void test_tc_opts_query_target(int target) +{ + const size_t attr_size = offsetofend(union bpf_attr, query); + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + __u32 fd1, fd2, fd3, fd4, id1, id2, id3, id4; + struct test_tc_link *skel; + union bpf_attr attr; + __u32 prog_ids[10]; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + fd2 = bpf_program__fd(skel->progs.tc2); + fd3 = bpf_program__fd(skel->progs.tc3); + fd4 = bpf_program__fd(skel->progs.tc4); + + id1 = id_from_prog_fd(fd1); + id2 = id_from_prog_fd(fd2); + id3 = id_from_prog_fd(fd3); + id4 = id_from_prog_fd(fd4); + + assert_mprog_count(target, 0); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = 1, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + assert_mprog_count(target, 1); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = 2, + ); + + err = bpf_prog_attach_opts(fd2, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup1; + + assert_mprog_count(target, 2); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = 3, + ); + + err = bpf_prog_attach_opts(fd3, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup2; + + assert_mprog_count(target, 3); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = 4, + ); + + err = bpf_prog_attach_opts(fd4, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup3; + + assert_mprog_count(target, 4); + + /* Test 1: Double query via libbpf API */ + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids, NULL, "prog_ids"); + ASSERT_EQ(optq.link_ids, NULL, "link_ids"); + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.prog_ids = prog_ids; + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(optq.count, 4, "count"); + ASSERT_EQ(optq.revision, 5, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(optq.prog_ids[2], id3, "prog_ids[2]"); + ASSERT_EQ(optq.prog_ids[3], id4, "prog_ids[3]"); + ASSERT_EQ(optq.prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(optq.link_ids, NULL, "link_ids"); + + /* Test 2: Double query via bpf_attr & bpf(2) directly */ + memset(&attr, 0, attr_size); + attr.query.target_ifindex = loopback; + attr.query.attach_type = target; + + err = syscall(__NR_bpf, BPF_PROG_QUERY, &attr, attr_size); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(attr.query.count, 4, "count"); + ASSERT_EQ(attr.query.revision, 5, "revision"); + ASSERT_EQ(attr.query.query_flags, 0, "query_flags"); + ASSERT_EQ(attr.query.attach_flags, 0, "attach_flags"); + ASSERT_EQ(attr.query.target_ifindex, loopback, "target_ifindex"); + ASSERT_EQ(attr.query.attach_type, target, "attach_type"); + ASSERT_EQ(attr.query.prog_ids, 0, "prog_ids"); + ASSERT_EQ(attr.query.prog_attach_flags, 0, "prog_attach_flags"); + ASSERT_EQ(attr.query.link_ids, 0, "link_ids"); + ASSERT_EQ(attr.query.link_attach_flags, 0, "link_attach_flags"); + + memset(prog_ids, 0, sizeof(prog_ids)); + attr.query.prog_ids = ptr_to_u64(prog_ids); + + err = syscall(__NR_bpf, BPF_PROG_QUERY, &attr, attr_size); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(attr.query.count, 4, "count"); + ASSERT_EQ(attr.query.revision, 5, "revision"); + ASSERT_EQ(attr.query.query_flags, 0, "query_flags"); + ASSERT_EQ(attr.query.attach_flags, 0, "attach_flags"); + ASSERT_EQ(attr.query.target_ifindex, loopback, "target_ifindex"); + ASSERT_EQ(attr.query.attach_type, target, "attach_type"); + ASSERT_EQ(attr.query.prog_ids, ptr_to_u64(prog_ids), "prog_ids"); + ASSERT_EQ(prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(prog_ids[2], id3, "prog_ids[2]"); + ASSERT_EQ(prog_ids[3], id4, "prog_ids[3]"); + ASSERT_EQ(prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(attr.query.prog_attach_flags, 0, "prog_attach_flags"); + ASSERT_EQ(attr.query.link_ids, 0, "link_ids"); + ASSERT_EQ(attr.query.link_attach_flags, 0, "link_attach_flags"); + + /* Test 3: Query with smaller prog_ids array */ + memset(&attr, 0, attr_size); + attr.query.target_ifindex = loopback; + attr.query.attach_type = target; + + memset(prog_ids, 0, sizeof(prog_ids)); + attr.query.prog_ids = ptr_to_u64(prog_ids); + attr.query.count = 2; + + err = syscall(__NR_bpf, BPF_PROG_QUERY, &attr, attr_size); + ASSERT_EQ(err, -1, "prog_query_should_fail"); + ASSERT_EQ(errno, ENOSPC, "prog_query_should_fail"); + + ASSERT_EQ(attr.query.count, 4, "count"); + ASSERT_EQ(attr.query.revision, 5, "revision"); + ASSERT_EQ(attr.query.query_flags, 0, "query_flags"); + ASSERT_EQ(attr.query.attach_flags, 0, "attach_flags"); + ASSERT_EQ(attr.query.target_ifindex, loopback, "target_ifindex"); + ASSERT_EQ(attr.query.attach_type, target, "attach_type"); + ASSERT_EQ(attr.query.prog_ids, ptr_to_u64(prog_ids), "prog_ids"); + ASSERT_EQ(prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(prog_ids[3], 0, "prog_ids[3]"); + ASSERT_EQ(prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(attr.query.prog_attach_flags, 0, "prog_attach_flags"); + ASSERT_EQ(attr.query.link_ids, 0, "link_ids"); + ASSERT_EQ(attr.query.link_attach_flags, 0, "link_attach_flags"); + + /* Test 4: Query with larger prog_ids array */ + memset(&attr, 0, attr_size); + attr.query.target_ifindex = loopback; + attr.query.attach_type = target; + + memset(prog_ids, 0, sizeof(prog_ids)); + attr.query.prog_ids = ptr_to_u64(prog_ids); + attr.query.count = 10; + + err = syscall(__NR_bpf, BPF_PROG_QUERY, &attr, attr_size); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(attr.query.count, 4, "count"); + ASSERT_EQ(attr.query.revision, 5, "revision"); + ASSERT_EQ(attr.query.query_flags, 0, "query_flags"); + ASSERT_EQ(attr.query.attach_flags, 0, "attach_flags"); + ASSERT_EQ(attr.query.target_ifindex, loopback, "target_ifindex"); + ASSERT_EQ(attr.query.attach_type, target, "attach_type"); + ASSERT_EQ(attr.query.prog_ids, ptr_to_u64(prog_ids), "prog_ids"); + ASSERT_EQ(prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(prog_ids[1], id2, "prog_ids[1]"); + ASSERT_EQ(prog_ids[2], id3, "prog_ids[2]"); + ASSERT_EQ(prog_ids[3], id4, "prog_ids[3]"); + ASSERT_EQ(prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(attr.query.prog_attach_flags, 0, "prog_attach_flags"); + ASSERT_EQ(attr.query.link_ids, 0, "link_ids"); + ASSERT_EQ(attr.query.link_attach_flags, 0, "link_attach_flags"); + + /* Test 5: Query with NULL prog_ids array but with count > 0 */ + memset(&attr, 0, attr_size); + attr.query.target_ifindex = loopback; + attr.query.attach_type = target; + + memset(prog_ids, 0, sizeof(prog_ids)); + attr.query.count = sizeof(prog_ids); + + err = syscall(__NR_bpf, BPF_PROG_QUERY, &attr, attr_size); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(attr.query.count, 4, "count"); + ASSERT_EQ(attr.query.revision, 5, "revision"); + ASSERT_EQ(attr.query.query_flags, 0, "query_flags"); + ASSERT_EQ(attr.query.attach_flags, 0, "attach_flags"); + ASSERT_EQ(attr.query.target_ifindex, loopback, "target_ifindex"); + ASSERT_EQ(attr.query.attach_type, target, "attach_type"); + ASSERT_EQ(prog_ids[0], 0, "prog_ids[0]"); + ASSERT_EQ(prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(prog_ids[3], 0, "prog_ids[3]"); + ASSERT_EQ(prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(attr.query.prog_ids, 0, "prog_ids"); + ASSERT_EQ(attr.query.prog_attach_flags, 0, "prog_attach_flags"); + ASSERT_EQ(attr.query.link_ids, 0, "link_ids"); + ASSERT_EQ(attr.query.link_attach_flags, 0, "link_attach_flags"); + + /* Test 6: Query with non-NULL prog_ids array but with count == 0 */ + memset(&attr, 0, attr_size); + attr.query.target_ifindex = loopback; + attr.query.attach_type = target; + + memset(prog_ids, 0, sizeof(prog_ids)); + attr.query.prog_ids = ptr_to_u64(prog_ids); + + err = syscall(__NR_bpf, BPF_PROG_QUERY, &attr, attr_size); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup4; + + ASSERT_EQ(attr.query.count, 4, "count"); + ASSERT_EQ(attr.query.revision, 5, "revision"); + ASSERT_EQ(attr.query.query_flags, 0, "query_flags"); + ASSERT_EQ(attr.query.attach_flags, 0, "attach_flags"); + ASSERT_EQ(attr.query.target_ifindex, loopback, "target_ifindex"); + ASSERT_EQ(attr.query.attach_type, target, "attach_type"); + ASSERT_EQ(prog_ids[0], 0, "prog_ids[0]"); + ASSERT_EQ(prog_ids[1], 0, "prog_ids[1]"); + ASSERT_EQ(prog_ids[2], 0, "prog_ids[2]"); + ASSERT_EQ(prog_ids[3], 0, "prog_ids[3]"); + ASSERT_EQ(prog_ids[4], 0, "prog_ids[4]"); + ASSERT_EQ(attr.query.prog_ids, ptr_to_u64(prog_ids), "prog_ids"); + ASSERT_EQ(attr.query.prog_attach_flags, 0, "prog_attach_flags"); + ASSERT_EQ(attr.query.link_ids, 0, "link_ids"); + ASSERT_EQ(attr.query.link_attach_flags, 0, "link_attach_flags"); + + /* Test 7: Query with invalid flags */ + attr.query.attach_flags = 0; + attr.query.query_flags = 1; + + err = syscall(__NR_bpf, BPF_PROG_QUERY, &attr, attr_size); + ASSERT_EQ(err, -1, "prog_query_should_fail"); + ASSERT_EQ(errno, EINVAL, "prog_query_should_fail"); + + attr.query.attach_flags = 1; + attr.query.query_flags = 0; + + err = syscall(__NR_bpf, BPF_PROG_QUERY, &attr, attr_size); + ASSERT_EQ(err, -1, "prog_query_should_fail"); + ASSERT_EQ(errno, EINVAL, "prog_query_should_fail"); + +cleanup4: + err = bpf_prog_detach_opts(fd4, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 3); + +cleanup3: + err = bpf_prog_detach_opts(fd3, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 2); + +cleanup2: + err = bpf_prog_detach_opts(fd2, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 1); + +cleanup1: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); + +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_query(void) +{ + test_tc_opts_query_target(BPF_TCX_INGRESS); + test_tc_opts_query_target(BPF_TCX_EGRESS); +} + +static void test_tc_opts_query_attach_target(int target) +{ + LIBBPF_OPTS(bpf_prog_attach_opts, opta); + LIBBPF_OPTS(bpf_prog_detach_opts, optd); + LIBBPF_OPTS(bpf_prog_query_opts, optq); + struct test_tc_link *skel; + __u32 prog_ids[2]; + __u32 fd1, id1; + int err; + + skel = test_tc_link__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto cleanup; + + fd1 = bpf_program__fd(skel->progs.tc1); + id1 = id_from_prog_fd(fd1); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup; + + ASSERT_EQ(optq.count, 0, "count"); + ASSERT_EQ(optq.revision, 1, "revision"); + + LIBBPF_OPTS_RESET(opta, + .expected_revision = optq.revision, + ); + + err = bpf_prog_attach_opts(fd1, loopback, target, &opta); + if (!ASSERT_EQ(err, 0, "prog_attach")) + goto cleanup; + + memset(prog_ids, 0, sizeof(prog_ids)); + optq.prog_ids = prog_ids; + optq.count = ARRAY_SIZE(prog_ids); + + err = bpf_prog_query_opts(loopback, target, &optq); + if (!ASSERT_OK(err, "prog_query")) + goto cleanup1; + + ASSERT_EQ(optq.count, 1, "count"); + ASSERT_EQ(optq.revision, 2, "revision"); + ASSERT_EQ(optq.prog_ids[0], id1, "prog_ids[0]"); + ASSERT_EQ(optq.prog_ids[1], 0, "prog_ids[1]"); + +cleanup1: + err = bpf_prog_detach_opts(fd1, loopback, target, &optd); + ASSERT_OK(err, "prog_detach"); + assert_mprog_count(target, 0); +cleanup: + test_tc_link__destroy(skel); +} + +void serial_test_tc_opts_query_attach(void) +{ + test_tc_opts_query_attach_target(BPF_TCX_INGRESS); + test_tc_opts_query_attach_target(BPF_TCX_EGRESS); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tc_redirect.c b/tools/testing/selftests/bpf/prog_tests/tc_redirect.c new file mode 100644 index 000000000000..b1073d36d77a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tc_redirect.c @@ -0,0 +1,1290 @@ +// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause + +/* + * This test sets up 3 netns (src <-> fwd <-> dst). There is no direct veth link + * between src and dst. The netns fwd has veth links to each src and dst. The + * client is in src and server in dst. The test installs a TC BPF program to each + * host facing veth in fwd which calls into i) bpf_redirect_neigh() to perform the + * neigh addr population and redirect or ii) bpf_redirect_peer() for namespace + * switch from ingress side; it also installs a checker prog on the egress side + * to drop unexpected traffic. + */ + +#include <arpa/inet.h> +#include <linux/if_tun.h> +#include <linux/limits.h> +#include <linux/sysctl.h> +#include <linux/time_types.h> +#include <linux/net_tstamp.h> +#include <net/if.h> +#include <stdbool.h> +#include <stdio.h> +#include <sys/stat.h> +#include <unistd.h> + +#include "test_progs.h" +#include "network_helpers.h" +#include "netlink_helpers.h" +#include "test_tc_neigh_fib.skel.h" +#include "test_tc_neigh.skel.h" +#include "test_tc_peer.skel.h" +#include "test_tc_dtime.skel.h" + +#ifndef TCP_TX_DELAY +#define TCP_TX_DELAY 37 +#endif + +#define NS_SRC "ns_src" +#define NS_FWD "ns_fwd" +#define NS_DST "ns_dst" + +#define IP4_SRC "172.16.1.100" +#define IP4_DST "172.16.2.100" +#define IP4_TUN_SRC "172.17.1.100" +#define IP4_TUN_FWD "172.17.1.200" +#define IP4_PORT 9004 + +#define IP6_SRC "0::1:dead:beef:cafe" +#define IP6_DST "0::2:dead:beef:cafe" +#define IP6_TUN_SRC "1::1:dead:beef:cafe" +#define IP6_TUN_FWD "1::2:dead:beef:cafe" +#define IP6_PORT 9006 + +#define IP4_SLL "169.254.0.1" +#define IP4_DLL "169.254.0.2" +#define IP4_NET "169.254.0.0" + +#define MAC_DST_FWD "00:11:22:33:44:55" +#define MAC_DST "00:22:33:44:55:66" + +#define IFADDR_STR_LEN 18 +#define PING_ARGS "-i 0.2 -c 3 -w 10 -q" + +#define TIMEOUT_MILLIS 10000 +#define NSEC_PER_SEC 1000000000ULL + +#define log_err(MSG, ...) \ + fprintf(stderr, "(%s:%d: errno: %s) " MSG "\n", \ + __FILE__, __LINE__, strerror(errno), ##__VA_ARGS__) + +static const char * const namespaces[] = {NS_SRC, NS_FWD, NS_DST, NULL}; + +static int write_file(const char *path, const char *newval) +{ + FILE *f; + + f = fopen(path, "r+"); + if (!f) + return -1; + if (fwrite(newval, strlen(newval), 1, f) != 1) { + log_err("writing to %s failed", path); + fclose(f); + return -1; + } + fclose(f); + return 0; +} + +static int netns_setup_namespaces(const char *verb) +{ + const char * const *ns = namespaces; + char cmd[128]; + + while (*ns) { + snprintf(cmd, sizeof(cmd), "ip netns %s %s", verb, *ns); + if (!ASSERT_OK(system(cmd), cmd)) + return -1; + ns++; + } + return 0; +} + +static void netns_setup_namespaces_nofail(const char *verb) +{ + const char * const *ns = namespaces; + char cmd[128]; + + while (*ns) { + snprintf(cmd, sizeof(cmd), "ip netns %s %s > /dev/null 2>&1", verb, *ns); + system(cmd); + ns++; + } +} + +enum dev_mode { + MODE_VETH, + MODE_NETKIT, +}; + +struct netns_setup_result { + enum dev_mode dev_mode; + int ifindex_src; + int ifindex_src_fwd; + int ifindex_dst; + int ifindex_dst_fwd; +}; + +static int get_ifaddr(const char *name, char *ifaddr) +{ + char path[PATH_MAX]; + FILE *f; + int ret; + + snprintf(path, PATH_MAX, "/sys/class/net/%s/address", name); + f = fopen(path, "r"); + if (!ASSERT_OK_PTR(f, path)) + return -1; + + ret = fread(ifaddr, 1, IFADDR_STR_LEN, f); + if (!ASSERT_EQ(ret, IFADDR_STR_LEN, "fread ifaddr")) { + fclose(f); + return -1; + } + fclose(f); + return 0; +} + +static int create_netkit(int mode, char *prim, char *peer) +{ + struct rtattr *linkinfo, *data, *peer_info; + struct rtnl_handle rth = { .fd = -1 }; + const char *type = "netkit"; + struct { + struct nlmsghdr n; + struct ifinfomsg i; + char buf[1024]; + } req = {}; + int err; + + err = rtnl_open(&rth, 0); + if (!ASSERT_OK(err, "open_rtnetlink")) + return err; + + memset(&req, 0, sizeof(req)); + req.n.nlmsg_len = NLMSG_LENGTH(sizeof(struct ifinfomsg)); + req.n.nlmsg_flags = NLM_F_REQUEST | NLM_F_CREATE | NLM_F_EXCL; + req.n.nlmsg_type = RTM_NEWLINK; + req.i.ifi_family = AF_UNSPEC; + + addattr_l(&req.n, sizeof(req), IFLA_IFNAME, prim, strlen(prim)); + linkinfo = addattr_nest(&req.n, sizeof(req), IFLA_LINKINFO); + addattr_l(&req.n, sizeof(req), IFLA_INFO_KIND, type, strlen(type)); + data = addattr_nest(&req.n, sizeof(req), IFLA_INFO_DATA); + addattr32(&req.n, sizeof(req), IFLA_NETKIT_MODE, mode); + peer_info = addattr_nest(&req.n, sizeof(req), IFLA_NETKIT_PEER_INFO); + req.n.nlmsg_len += sizeof(struct ifinfomsg); + addattr_l(&req.n, sizeof(req), IFLA_IFNAME, peer, strlen(peer)); + addattr_nest_end(&req.n, peer_info); + addattr_nest_end(&req.n, data); + addattr_nest_end(&req.n, linkinfo); + + err = rtnl_talk(&rth, &req.n, NULL); + ASSERT_OK(err, "talk_rtnetlink"); + rtnl_close(&rth); + return err; +} + +static int netns_setup_links_and_routes(struct netns_setup_result *result) +{ + struct nstoken *nstoken = NULL; + char src_fwd_addr[IFADDR_STR_LEN+1] = {}; + char src_addr[IFADDR_STR_LEN + 1] = {}; + int err; + + if (result->dev_mode == MODE_VETH) { + SYS(fail, "ip link add src type veth peer name src_fwd"); + SYS(fail, "ip link add dst type veth peer name dst_fwd"); + + SYS(fail, "ip link set dst_fwd address " MAC_DST_FWD); + SYS(fail, "ip link set dst address " MAC_DST); + } else if (result->dev_mode == MODE_NETKIT) { + err = create_netkit(NETKIT_L3, "src", "src_fwd"); + if (!ASSERT_OK(err, "create_ifindex_src")) + goto fail; + err = create_netkit(NETKIT_L3, "dst", "dst_fwd"); + if (!ASSERT_OK(err, "create_ifindex_dst")) + goto fail; + } + + if (get_ifaddr("src_fwd", src_fwd_addr)) + goto fail; + + if (get_ifaddr("src", src_addr)) + goto fail; + + result->ifindex_src = if_nametoindex("src"); + if (!ASSERT_GT(result->ifindex_src, 0, "ifindex_src")) + goto fail; + + result->ifindex_src_fwd = if_nametoindex("src_fwd"); + if (!ASSERT_GT(result->ifindex_src_fwd, 0, "ifindex_src_fwd")) + goto fail; + + result->ifindex_dst = if_nametoindex("dst"); + if (!ASSERT_GT(result->ifindex_dst, 0, "ifindex_dst")) + goto fail; + + result->ifindex_dst_fwd = if_nametoindex("dst_fwd"); + if (!ASSERT_GT(result->ifindex_dst_fwd, 0, "ifindex_dst_fwd")) + goto fail; + + SYS(fail, "ip link set src netns " NS_SRC); + SYS(fail, "ip link set src_fwd netns " NS_FWD); + SYS(fail, "ip link set dst_fwd netns " NS_FWD); + SYS(fail, "ip link set dst netns " NS_DST); + + /** setup in 'src' namespace */ + nstoken = open_netns(NS_SRC); + if (!ASSERT_OK_PTR(nstoken, "setns src")) + goto fail; + + SYS(fail, "ip addr add " IP4_SRC "/32 dev src"); + SYS(fail, "ip addr add " IP6_SRC "/128 dev src nodad"); + SYS(fail, "ip link set dev src up"); + + SYS(fail, "ip route add " IP4_DST "/32 dev src scope global"); + SYS(fail, "ip route add " IP4_NET "/16 dev src scope global"); + SYS(fail, "ip route add " IP6_DST "/128 dev src scope global"); + + if (result->dev_mode == MODE_VETH) { + SYS(fail, "ip neigh add " IP4_DST " dev src lladdr %s", + src_fwd_addr); + SYS(fail, "ip neigh add " IP6_DST " dev src lladdr %s", + src_fwd_addr); + } + + close_netns(nstoken); + + /** setup in 'fwd' namespace */ + nstoken = open_netns(NS_FWD); + if (!ASSERT_OK_PTR(nstoken, "setns fwd")) + goto fail; + + /* The fwd netns automatically gets a v6 LL address / routes, but also + * needs v4 one in order to start ARP probing. IP4_NET route is added + * to the endpoints so that the ARP processing will reply. + */ + SYS(fail, "ip addr add " IP4_SLL "/32 dev src_fwd"); + SYS(fail, "ip addr add " IP4_DLL "/32 dev dst_fwd"); + SYS(fail, "ip link set dev src_fwd up"); + SYS(fail, "ip link set dev dst_fwd up"); + + SYS(fail, "ip route add " IP4_SRC "/32 dev src_fwd scope global"); + SYS(fail, "ip route add " IP6_SRC "/128 dev src_fwd scope global"); + SYS(fail, "ip route add " IP4_DST "/32 dev dst_fwd scope global"); + SYS(fail, "ip route add " IP6_DST "/128 dev dst_fwd scope global"); + + if (result->dev_mode == MODE_VETH) { + SYS(fail, "ip neigh add " IP4_SRC " dev src_fwd lladdr %s", src_addr); + SYS(fail, "ip neigh add " IP6_SRC " dev src_fwd lladdr %s", src_addr); + SYS(fail, "ip neigh add " IP4_DST " dev dst_fwd lladdr %s", MAC_DST); + SYS(fail, "ip neigh add " IP6_DST " dev dst_fwd lladdr %s", MAC_DST); + } + + close_netns(nstoken); + + /** setup in 'dst' namespace */ + nstoken = open_netns(NS_DST); + if (!ASSERT_OK_PTR(nstoken, "setns dst")) + goto fail; + + SYS(fail, "ip addr add " IP4_DST "/32 dev dst"); + SYS(fail, "ip addr add " IP6_DST "/128 dev dst nodad"); + SYS(fail, "ip link set dev dst up"); + SYS(fail, "ip link set dev lo up"); + + SYS(fail, "ip route add " IP4_SRC "/32 dev dst scope global"); + SYS(fail, "ip route add " IP4_NET "/16 dev dst scope global"); + SYS(fail, "ip route add " IP6_SRC "/128 dev dst scope global"); + + if (result->dev_mode == MODE_VETH) { + SYS(fail, "ip neigh add " IP4_SRC " dev dst lladdr " MAC_DST_FWD); + SYS(fail, "ip neigh add " IP6_SRC " dev dst lladdr " MAC_DST_FWD); + } + + close_netns(nstoken); + + return 0; +fail: + if (nstoken) + close_netns(nstoken); + return -1; +} + +static int qdisc_clsact_create(struct bpf_tc_hook *qdisc_hook, int ifindex) +{ + char err_str[128], ifname[16]; + int err; + + qdisc_hook->ifindex = ifindex; + qdisc_hook->attach_point = BPF_TC_INGRESS | BPF_TC_EGRESS; + err = bpf_tc_hook_create(qdisc_hook); + snprintf(err_str, sizeof(err_str), + "qdisc add dev %s clsact", + if_indextoname(qdisc_hook->ifindex, ifname) ? : "<unknown_iface>"); + err_str[sizeof(err_str) - 1] = 0; + ASSERT_OK(err, err_str); + + return err; +} + +static int xgress_filter_add(struct bpf_tc_hook *qdisc_hook, + enum bpf_tc_attach_point xgress, + const struct bpf_program *prog, int priority) +{ + LIBBPF_OPTS(bpf_tc_opts, tc_attach); + char err_str[128], ifname[16]; + int err; + + qdisc_hook->attach_point = xgress; + tc_attach.prog_fd = bpf_program__fd(prog); + tc_attach.priority = priority; + err = bpf_tc_attach(qdisc_hook, &tc_attach); + snprintf(err_str, sizeof(err_str), + "filter add dev %s %s prio %d bpf da %s", + if_indextoname(qdisc_hook->ifindex, ifname) ? : "<unknown_iface>", + xgress == BPF_TC_INGRESS ? "ingress" : "egress", + priority, bpf_program__name(prog)); + err_str[sizeof(err_str) - 1] = 0; + ASSERT_OK(err, err_str); + + return err; +} + +#define QDISC_CLSACT_CREATE(qdisc_hook, ifindex) ({ \ + if ((err = qdisc_clsact_create(qdisc_hook, ifindex))) \ + goto fail; \ +}) + +#define XGRESS_FILTER_ADD(qdisc_hook, xgress, prog, priority) ({ \ + if ((err = xgress_filter_add(qdisc_hook, xgress, prog, priority))) \ + goto fail; \ +}) + +static int netns_load_bpf(const struct bpf_program *src_prog, + const struct bpf_program *dst_prog, + const struct bpf_program *chk_prog, + const struct netns_setup_result *setup_result) +{ + LIBBPF_OPTS(bpf_tc_hook, qdisc_src_fwd); + LIBBPF_OPTS(bpf_tc_hook, qdisc_dst_fwd); + int err; + + /* tc qdisc add dev src_fwd clsact */ + QDISC_CLSACT_CREATE(&qdisc_src_fwd, setup_result->ifindex_src_fwd); + /* tc filter add dev src_fwd ingress bpf da src_prog */ + XGRESS_FILTER_ADD(&qdisc_src_fwd, BPF_TC_INGRESS, src_prog, 0); + /* tc filter add dev src_fwd egress bpf da chk_prog */ + XGRESS_FILTER_ADD(&qdisc_src_fwd, BPF_TC_EGRESS, chk_prog, 0); + + /* tc qdisc add dev dst_fwd clsact */ + QDISC_CLSACT_CREATE(&qdisc_dst_fwd, setup_result->ifindex_dst_fwd); + /* tc filter add dev dst_fwd ingress bpf da dst_prog */ + XGRESS_FILTER_ADD(&qdisc_dst_fwd, BPF_TC_INGRESS, dst_prog, 0); + /* tc filter add dev dst_fwd egress bpf da chk_prog */ + XGRESS_FILTER_ADD(&qdisc_dst_fwd, BPF_TC_EGRESS, chk_prog, 0); + + return 0; +fail: + return -1; +} + +static void test_tcp(int family, const char *addr, __u16 port) +{ + int listen_fd = -1, accept_fd = -1, client_fd = -1; + char buf[] = "testing testing"; + int n; + struct nstoken *nstoken; + + nstoken = open_netns(NS_DST); + if (!ASSERT_OK_PTR(nstoken, "setns dst")) + return; + + listen_fd = start_server(family, SOCK_STREAM, addr, port, 0); + if (!ASSERT_GE(listen_fd, 0, "listen")) + goto done; + + close_netns(nstoken); + nstoken = open_netns(NS_SRC); + if (!ASSERT_OK_PTR(nstoken, "setns src")) + goto done; + + client_fd = connect_to_fd(listen_fd, TIMEOUT_MILLIS); + if (!ASSERT_GE(client_fd, 0, "connect_to_fd")) + goto done; + + accept_fd = accept(listen_fd, NULL, NULL); + if (!ASSERT_GE(accept_fd, 0, "accept")) + goto done; + + if (!ASSERT_OK(settimeo(accept_fd, TIMEOUT_MILLIS), "settimeo")) + goto done; + + n = write(client_fd, buf, sizeof(buf)); + if (!ASSERT_EQ(n, sizeof(buf), "send to server")) + goto done; + + n = read(accept_fd, buf, sizeof(buf)); + ASSERT_EQ(n, sizeof(buf), "recv from server"); + +done: + if (nstoken) + close_netns(nstoken); + if (listen_fd >= 0) + close(listen_fd); + if (accept_fd >= 0) + close(accept_fd); + if (client_fd >= 0) + close(client_fd); +} + +static int test_ping(int family, const char *addr) +{ + SYS(fail, "ip netns exec " NS_SRC " %s " PING_ARGS " %s > /dev/null", ping_command(family), addr); + return 0; +fail: + return -1; +} + +static void test_connectivity(void) +{ + test_tcp(AF_INET, IP4_DST, IP4_PORT); + test_ping(AF_INET, IP4_DST); + test_tcp(AF_INET6, IP6_DST, IP6_PORT); + test_ping(AF_INET6, IP6_DST); +} + +static int set_forwarding(bool enable) +{ + int err; + + err = write_file("/proc/sys/net/ipv4/ip_forward", enable ? "1" : "0"); + if (!ASSERT_OK(err, "set ipv4.ip_forward=0")) + return err; + + err = write_file("/proc/sys/net/ipv6/conf/all/forwarding", enable ? "1" : "0"); + if (!ASSERT_OK(err, "set ipv6.forwarding=0")) + return err; + + return 0; +} + +static int __rcv_tstamp(int fd, const char *expected, size_t s, __u64 *tstamp) +{ + struct __kernel_timespec pkt_ts = {}; + char ctl[CMSG_SPACE(sizeof(pkt_ts))]; + struct timespec now_ts; + struct msghdr msg = {}; + __u64 now_ns, pkt_ns; + struct cmsghdr *cmsg; + struct iovec iov; + char data[32]; + int ret; + + iov.iov_base = data; + iov.iov_len = sizeof(data); + msg.msg_iov = &iov; + msg.msg_iovlen = 1; + msg.msg_control = &ctl; + msg.msg_controllen = sizeof(ctl); + + ret = recvmsg(fd, &msg, 0); + if (!ASSERT_EQ(ret, s, "recvmsg")) + return -1; + ASSERT_STRNEQ(data, expected, s, "expected rcv data"); + + cmsg = CMSG_FIRSTHDR(&msg); + if (cmsg && cmsg->cmsg_level == SOL_SOCKET && + cmsg->cmsg_type == SO_TIMESTAMPNS_NEW) + memcpy(&pkt_ts, CMSG_DATA(cmsg), sizeof(pkt_ts)); + + pkt_ns = pkt_ts.tv_sec * NSEC_PER_SEC + pkt_ts.tv_nsec; + if (tstamp) { + /* caller will check the tstamp itself */ + *tstamp = pkt_ns; + return 0; + } + + ASSERT_NEQ(pkt_ns, 0, "pkt rcv tstamp"); + + ret = clock_gettime(CLOCK_REALTIME, &now_ts); + ASSERT_OK(ret, "clock_gettime"); + now_ns = now_ts.tv_sec * NSEC_PER_SEC + now_ts.tv_nsec; + + if (ASSERT_GE(now_ns, pkt_ns, "check rcv tstamp")) + ASSERT_LT(now_ns - pkt_ns, 5 * NSEC_PER_SEC, + "check rcv tstamp"); + return 0; +} + +static void rcv_tstamp(int fd, const char *expected, size_t s) +{ + __rcv_tstamp(fd, expected, s, NULL); +} + +static int wait_netstamp_needed_key(void) +{ + int opt = 1, srv_fd = -1, cli_fd = -1, nretries = 0, err, n; + char buf[] = "testing testing"; + struct nstoken *nstoken; + __u64 tstamp = 0; + + nstoken = open_netns(NS_DST); + if (!ASSERT_OK_PTR(nstoken, "setns dst")) + return -1; + + srv_fd = start_server(AF_INET6, SOCK_DGRAM, "::1", 0, 0); + if (!ASSERT_GE(srv_fd, 0, "start_server")) + goto done; + + err = setsockopt(srv_fd, SOL_SOCKET, SO_TIMESTAMPNS_NEW, + &opt, sizeof(opt)); + if (!ASSERT_OK(err, "setsockopt(SO_TIMESTAMPNS_NEW)")) + goto done; + + cli_fd = connect_to_fd(srv_fd, TIMEOUT_MILLIS); + if (!ASSERT_GE(cli_fd, 0, "connect_to_fd")) + goto done; + +again: + n = write(cli_fd, buf, sizeof(buf)); + if (!ASSERT_EQ(n, sizeof(buf), "send to server")) + goto done; + err = __rcv_tstamp(srv_fd, buf, sizeof(buf), &tstamp); + if (!ASSERT_OK(err, "__rcv_tstamp")) + goto done; + if (!tstamp && nretries++ < 5) { + sleep(1); + printf("netstamp_needed_key retry#%d\n", nretries); + goto again; + } + +done: + if (!tstamp && srv_fd != -1) { + close(srv_fd); + srv_fd = -1; + } + if (cli_fd != -1) + close(cli_fd); + close_netns(nstoken); + return srv_fd; +} + +static void snd_tstamp(int fd, char *b, size_t s) +{ + struct sock_txtime opt = { .clockid = CLOCK_TAI }; + char ctl[CMSG_SPACE(sizeof(__u64))]; + struct timespec now_ts; + struct msghdr msg = {}; + struct cmsghdr *cmsg; + struct iovec iov; + __u64 now_ns; + int ret; + + ret = clock_gettime(CLOCK_TAI, &now_ts); + ASSERT_OK(ret, "clock_get_time(CLOCK_TAI)"); + now_ns = now_ts.tv_sec * NSEC_PER_SEC + now_ts.tv_nsec; + + iov.iov_base = b; + iov.iov_len = s; + msg.msg_iov = &iov; + msg.msg_iovlen = 1; + msg.msg_control = &ctl; + msg.msg_controllen = sizeof(ctl); + + cmsg = CMSG_FIRSTHDR(&msg); + cmsg->cmsg_level = SOL_SOCKET; + cmsg->cmsg_type = SCM_TXTIME; + cmsg->cmsg_len = CMSG_LEN(sizeof(now_ns)); + *(__u64 *)CMSG_DATA(cmsg) = now_ns; + + ret = setsockopt(fd, SOL_SOCKET, SO_TXTIME, &opt, sizeof(opt)); + ASSERT_OK(ret, "setsockopt(SO_TXTIME)"); + + ret = sendmsg(fd, &msg, 0); + ASSERT_EQ(ret, s, "sendmsg"); +} + +static void test_inet_dtime(int family, int type, const char *addr, __u16 port) +{ + int opt = 1, accept_fd = -1, client_fd = -1, listen_fd, err; + char buf[] = "testing testing"; + struct nstoken *nstoken; + + nstoken = open_netns(NS_DST); + if (!ASSERT_OK_PTR(nstoken, "setns dst")) + return; + listen_fd = start_server(family, type, addr, port, 0); + close_netns(nstoken); + + if (!ASSERT_GE(listen_fd, 0, "listen")) + return; + + /* Ensure the kernel puts the (rcv) timestamp for all skb */ + err = setsockopt(listen_fd, SOL_SOCKET, SO_TIMESTAMPNS_NEW, + &opt, sizeof(opt)); + if (!ASSERT_OK(err, "setsockopt(SO_TIMESTAMPNS_NEW)")) + goto done; + + if (type == SOCK_STREAM) { + /* Ensure the kernel set EDT when sending out rst/ack + * from the kernel's ctl_sk. + */ + err = setsockopt(listen_fd, SOL_TCP, TCP_TX_DELAY, &opt, + sizeof(opt)); + if (!ASSERT_OK(err, "setsockopt(TCP_TX_DELAY)")) + goto done; + } + + nstoken = open_netns(NS_SRC); + if (!ASSERT_OK_PTR(nstoken, "setns src")) + goto done; + client_fd = connect_to_fd(listen_fd, TIMEOUT_MILLIS); + close_netns(nstoken); + + if (!ASSERT_GE(client_fd, 0, "connect_to_fd")) + goto done; + + if (type == SOCK_STREAM) { + int n; + + accept_fd = accept(listen_fd, NULL, NULL); + if (!ASSERT_GE(accept_fd, 0, "accept")) + goto done; + + n = write(client_fd, buf, sizeof(buf)); + if (!ASSERT_EQ(n, sizeof(buf), "send to server")) + goto done; + rcv_tstamp(accept_fd, buf, sizeof(buf)); + } else { + snd_tstamp(client_fd, buf, sizeof(buf)); + rcv_tstamp(listen_fd, buf, sizeof(buf)); + } + +done: + close(listen_fd); + if (accept_fd != -1) + close(accept_fd); + if (client_fd != -1) + close(client_fd); +} + +static int netns_load_dtime_bpf(struct test_tc_dtime *skel, + const struct netns_setup_result *setup_result) +{ + LIBBPF_OPTS(bpf_tc_hook, qdisc_src_fwd); + LIBBPF_OPTS(bpf_tc_hook, qdisc_dst_fwd); + LIBBPF_OPTS(bpf_tc_hook, qdisc_src); + LIBBPF_OPTS(bpf_tc_hook, qdisc_dst); + struct nstoken *nstoken; + int err; + + /* setup ns_src tc progs */ + nstoken = open_netns(NS_SRC); + if (!ASSERT_OK_PTR(nstoken, "setns " NS_SRC)) + return -1; + /* tc qdisc add dev src clsact */ + QDISC_CLSACT_CREATE(&qdisc_src, setup_result->ifindex_src); + /* tc filter add dev src ingress bpf da ingress_host */ + XGRESS_FILTER_ADD(&qdisc_src, BPF_TC_INGRESS, skel->progs.ingress_host, 0); + /* tc filter add dev src egress bpf da egress_host */ + XGRESS_FILTER_ADD(&qdisc_src, BPF_TC_EGRESS, skel->progs.egress_host, 0); + close_netns(nstoken); + + /* setup ns_dst tc progs */ + nstoken = open_netns(NS_DST); + if (!ASSERT_OK_PTR(nstoken, "setns " NS_DST)) + return -1; + /* tc qdisc add dev dst clsact */ + QDISC_CLSACT_CREATE(&qdisc_dst, setup_result->ifindex_dst); + /* tc filter add dev dst ingress bpf da ingress_host */ + XGRESS_FILTER_ADD(&qdisc_dst, BPF_TC_INGRESS, skel->progs.ingress_host, 0); + /* tc filter add dev dst egress bpf da egress_host */ + XGRESS_FILTER_ADD(&qdisc_dst, BPF_TC_EGRESS, skel->progs.egress_host, 0); + close_netns(nstoken); + + /* setup ns_fwd tc progs */ + nstoken = open_netns(NS_FWD); + if (!ASSERT_OK_PTR(nstoken, "setns " NS_FWD)) + return -1; + /* tc qdisc add dev dst_fwd clsact */ + QDISC_CLSACT_CREATE(&qdisc_dst_fwd, setup_result->ifindex_dst_fwd); + /* tc filter add dev dst_fwd ingress prio 100 bpf da ingress_fwdns_prio100 */ + XGRESS_FILTER_ADD(&qdisc_dst_fwd, BPF_TC_INGRESS, + skel->progs.ingress_fwdns_prio100, 100); + /* tc filter add dev dst_fwd ingress prio 101 bpf da ingress_fwdns_prio101 */ + XGRESS_FILTER_ADD(&qdisc_dst_fwd, BPF_TC_INGRESS, + skel->progs.ingress_fwdns_prio101, 101); + /* tc filter add dev dst_fwd egress prio 100 bpf da egress_fwdns_prio100 */ + XGRESS_FILTER_ADD(&qdisc_dst_fwd, BPF_TC_EGRESS, + skel->progs.egress_fwdns_prio100, 100); + /* tc filter add dev dst_fwd egress prio 101 bpf da egress_fwdns_prio101 */ + XGRESS_FILTER_ADD(&qdisc_dst_fwd, BPF_TC_EGRESS, + skel->progs.egress_fwdns_prio101, 101); + + /* tc qdisc add dev src_fwd clsact */ + QDISC_CLSACT_CREATE(&qdisc_src_fwd, setup_result->ifindex_src_fwd); + /* tc filter add dev src_fwd ingress prio 100 bpf da ingress_fwdns_prio100 */ + XGRESS_FILTER_ADD(&qdisc_src_fwd, BPF_TC_INGRESS, + skel->progs.ingress_fwdns_prio100, 100); + /* tc filter add dev src_fwd ingress prio 101 bpf da ingress_fwdns_prio101 */ + XGRESS_FILTER_ADD(&qdisc_src_fwd, BPF_TC_INGRESS, + skel->progs.ingress_fwdns_prio101, 101); + /* tc filter add dev src_fwd egress prio 100 bpf da egress_fwdns_prio100 */ + XGRESS_FILTER_ADD(&qdisc_src_fwd, BPF_TC_EGRESS, + skel->progs.egress_fwdns_prio100, 100); + /* tc filter add dev src_fwd egress prio 101 bpf da egress_fwdns_prio101 */ + XGRESS_FILTER_ADD(&qdisc_src_fwd, BPF_TC_EGRESS, + skel->progs.egress_fwdns_prio101, 101); + close_netns(nstoken); + return 0; + +fail: + close_netns(nstoken); + return err; +} + +enum { + INGRESS_FWDNS_P100, + INGRESS_FWDNS_P101, + EGRESS_FWDNS_P100, + EGRESS_FWDNS_P101, + INGRESS_ENDHOST, + EGRESS_ENDHOST, + SET_DTIME, + __MAX_CNT, +}; + +const char *cnt_names[] = { + "ingress_fwdns_p100", + "ingress_fwdns_p101", + "egress_fwdns_p100", + "egress_fwdns_p101", + "ingress_endhost", + "egress_endhost", + "set_dtime", +}; + +enum { + TCP_IP6_CLEAR_DTIME, + TCP_IP4, + TCP_IP6, + UDP_IP4, + UDP_IP6, + TCP_IP4_RT_FWD, + TCP_IP6_RT_FWD, + UDP_IP4_RT_FWD, + UDP_IP6_RT_FWD, + UKN_TEST, + __NR_TESTS, +}; + +const char *test_names[] = { + "tcp ip6 clear dtime", + "tcp ip4", + "tcp ip6", + "udp ip4", + "udp ip6", + "tcp ip4 rt fwd", + "tcp ip6 rt fwd", + "udp ip4 rt fwd", + "udp ip6 rt fwd", +}; + +static const char *dtime_cnt_str(int test, int cnt) +{ + static char name[64]; + + snprintf(name, sizeof(name), "%s %s", test_names[test], cnt_names[cnt]); + + return name; +} + +static const char *dtime_err_str(int test, int cnt) +{ + static char name[64]; + + snprintf(name, sizeof(name), "%s %s errs", test_names[test], + cnt_names[cnt]); + + return name; +} + +static void test_tcp_clear_dtime(struct test_tc_dtime *skel) +{ + int i, t = TCP_IP6_CLEAR_DTIME; + __u32 *dtimes = skel->bss->dtimes[t]; + __u32 *errs = skel->bss->errs[t]; + + skel->bss->test = t; + test_inet_dtime(AF_INET6, SOCK_STREAM, IP6_DST, 50000 + t); + + ASSERT_EQ(dtimes[INGRESS_FWDNS_P100], 0, + dtime_cnt_str(t, INGRESS_FWDNS_P100)); + ASSERT_EQ(dtimes[INGRESS_FWDNS_P101], 0, + dtime_cnt_str(t, INGRESS_FWDNS_P101)); + ASSERT_GT(dtimes[EGRESS_FWDNS_P100], 0, + dtime_cnt_str(t, EGRESS_FWDNS_P100)); + ASSERT_EQ(dtimes[EGRESS_FWDNS_P101], 0, + dtime_cnt_str(t, EGRESS_FWDNS_P101)); + ASSERT_GT(dtimes[EGRESS_ENDHOST], 0, + dtime_cnt_str(t, EGRESS_ENDHOST)); + ASSERT_GT(dtimes[INGRESS_ENDHOST], 0, + dtime_cnt_str(t, INGRESS_ENDHOST)); + + for (i = INGRESS_FWDNS_P100; i < __MAX_CNT; i++) + ASSERT_EQ(errs[i], 0, dtime_err_str(t, i)); +} + +static void test_tcp_dtime(struct test_tc_dtime *skel, int family, bool bpf_fwd) +{ + __u32 *dtimes, *errs; + const char *addr; + int i, t; + + if (family == AF_INET) { + t = bpf_fwd ? TCP_IP4 : TCP_IP4_RT_FWD; + addr = IP4_DST; + } else { + t = bpf_fwd ? TCP_IP6 : TCP_IP6_RT_FWD; + addr = IP6_DST; + } + + dtimes = skel->bss->dtimes[t]; + errs = skel->bss->errs[t]; + + skel->bss->test = t; + test_inet_dtime(family, SOCK_STREAM, addr, 50000 + t); + + /* fwdns_prio100 prog does not read delivery_time_type, so + * kernel puts the (rcv) timetamp in __sk_buff->tstamp + */ + ASSERT_EQ(dtimes[INGRESS_FWDNS_P100], 0, + dtime_cnt_str(t, INGRESS_FWDNS_P100)); + for (i = INGRESS_FWDNS_P101; i < SET_DTIME; i++) + ASSERT_GT(dtimes[i], 0, dtime_cnt_str(t, i)); + + for (i = INGRESS_FWDNS_P100; i < __MAX_CNT; i++) + ASSERT_EQ(errs[i], 0, dtime_err_str(t, i)); +} + +static void test_udp_dtime(struct test_tc_dtime *skel, int family, bool bpf_fwd) +{ + __u32 *dtimes, *errs; + const char *addr; + int i, t; + + if (family == AF_INET) { + t = bpf_fwd ? UDP_IP4 : UDP_IP4_RT_FWD; + addr = IP4_DST; + } else { + t = bpf_fwd ? UDP_IP6 : UDP_IP6_RT_FWD; + addr = IP6_DST; + } + + dtimes = skel->bss->dtimes[t]; + errs = skel->bss->errs[t]; + + skel->bss->test = t; + test_inet_dtime(family, SOCK_DGRAM, addr, 50000 + t); + + ASSERT_EQ(dtimes[INGRESS_FWDNS_P100], 0, + dtime_cnt_str(t, INGRESS_FWDNS_P100)); + /* non mono delivery time is not forwarded */ + ASSERT_EQ(dtimes[INGRESS_FWDNS_P101], 0, + dtime_cnt_str(t, INGRESS_FWDNS_P101)); + for (i = EGRESS_FWDNS_P100; i < SET_DTIME; i++) + ASSERT_GT(dtimes[i], 0, dtime_cnt_str(t, i)); + + for (i = INGRESS_FWDNS_P100; i < __MAX_CNT; i++) + ASSERT_EQ(errs[i], 0, dtime_err_str(t, i)); +} + +static void test_tc_redirect_dtime(struct netns_setup_result *setup_result) +{ + struct test_tc_dtime *skel; + struct nstoken *nstoken; + int hold_tstamp_fd, err; + + /* Hold a sk with the SOCK_TIMESTAMP set to ensure there + * is no delay in the kernel net_enable_timestamp(). + * This ensures the following tests must have + * non zero rcv tstamp in the recvmsg(). + */ + hold_tstamp_fd = wait_netstamp_needed_key(); + if (!ASSERT_GE(hold_tstamp_fd, 0, "wait_netstamp_needed_key")) + return; + + skel = test_tc_dtime__open(); + if (!ASSERT_OK_PTR(skel, "test_tc_dtime__open")) + goto done; + + skel->rodata->IFINDEX_SRC = setup_result->ifindex_src_fwd; + skel->rodata->IFINDEX_DST = setup_result->ifindex_dst_fwd; + + err = test_tc_dtime__load(skel); + if (!ASSERT_OK(err, "test_tc_dtime__load")) + goto done; + + if (netns_load_dtime_bpf(skel, setup_result)) + goto done; + + nstoken = open_netns(NS_FWD); + if (!ASSERT_OK_PTR(nstoken, "setns fwd")) + goto done; + err = set_forwarding(false); + close_netns(nstoken); + if (!ASSERT_OK(err, "disable forwarding")) + goto done; + + test_tcp_clear_dtime(skel); + + test_tcp_dtime(skel, AF_INET, true); + test_tcp_dtime(skel, AF_INET6, true); + test_udp_dtime(skel, AF_INET, true); + test_udp_dtime(skel, AF_INET6, true); + + /* Test the kernel ip[6]_forward path instead + * of bpf_redirect_neigh(). + */ + nstoken = open_netns(NS_FWD); + if (!ASSERT_OK_PTR(nstoken, "setns fwd")) + goto done; + err = set_forwarding(true); + close_netns(nstoken); + if (!ASSERT_OK(err, "enable forwarding")) + goto done; + + test_tcp_dtime(skel, AF_INET, false); + test_tcp_dtime(skel, AF_INET6, false); + test_udp_dtime(skel, AF_INET, false); + test_udp_dtime(skel, AF_INET6, false); + +done: + test_tc_dtime__destroy(skel); + close(hold_tstamp_fd); +} + +static void test_tc_redirect_neigh_fib(struct netns_setup_result *setup_result) +{ + struct nstoken *nstoken = NULL; + struct test_tc_neigh_fib *skel = NULL; + + nstoken = open_netns(NS_FWD); + if (!ASSERT_OK_PTR(nstoken, "setns fwd")) + return; + + skel = test_tc_neigh_fib__open(); + if (!ASSERT_OK_PTR(skel, "test_tc_neigh_fib__open")) + goto done; + + if (!ASSERT_OK(test_tc_neigh_fib__load(skel), "test_tc_neigh_fib__load")) + goto done; + + if (netns_load_bpf(skel->progs.tc_src, skel->progs.tc_dst, + skel->progs.tc_chk, setup_result)) + goto done; + + /* bpf_fib_lookup() checks if forwarding is enabled */ + if (!ASSERT_OK(set_forwarding(true), "enable forwarding")) + goto done; + + test_connectivity(); + +done: + if (skel) + test_tc_neigh_fib__destroy(skel); + close_netns(nstoken); +} + +static void test_tc_redirect_neigh(struct netns_setup_result *setup_result) +{ + struct nstoken *nstoken = NULL; + struct test_tc_neigh *skel = NULL; + int err; + + nstoken = open_netns(NS_FWD); + if (!ASSERT_OK_PTR(nstoken, "setns fwd")) + return; + + skel = test_tc_neigh__open(); + if (!ASSERT_OK_PTR(skel, "test_tc_neigh__open")) + goto done; + + skel->rodata->IFINDEX_SRC = setup_result->ifindex_src_fwd; + skel->rodata->IFINDEX_DST = setup_result->ifindex_dst_fwd; + + err = test_tc_neigh__load(skel); + if (!ASSERT_OK(err, "test_tc_neigh__load")) + goto done; + + if (netns_load_bpf(skel->progs.tc_src, skel->progs.tc_dst, + skel->progs.tc_chk, setup_result)) + goto done; + + if (!ASSERT_OK(set_forwarding(false), "disable forwarding")) + goto done; + + test_connectivity(); + +done: + if (skel) + test_tc_neigh__destroy(skel); + close_netns(nstoken); +} + +static void test_tc_redirect_peer(struct netns_setup_result *setup_result) +{ + struct nstoken *nstoken; + struct test_tc_peer *skel; + int err; + + nstoken = open_netns(NS_FWD); + if (!ASSERT_OK_PTR(nstoken, "setns fwd")) + return; + + skel = test_tc_peer__open(); + if (!ASSERT_OK_PTR(skel, "test_tc_peer__open")) + goto done; + + skel->rodata->IFINDEX_SRC = setup_result->ifindex_src_fwd; + skel->rodata->IFINDEX_DST = setup_result->ifindex_dst_fwd; + + err = test_tc_peer__load(skel); + if (!ASSERT_OK(err, "test_tc_peer__load")) + goto done; + + if (netns_load_bpf(skel->progs.tc_src, skel->progs.tc_dst, + skel->progs.tc_chk, setup_result)) + goto done; + + if (!ASSERT_OK(set_forwarding(false), "disable forwarding")) + goto done; + + test_connectivity(); + +done: + if (skel) + test_tc_peer__destroy(skel); + close_netns(nstoken); +} + +static int tun_open(char *name) +{ + struct ifreq ifr; + int fd, err; + + fd = open("/dev/net/tun", O_RDWR); + if (!ASSERT_GE(fd, 0, "open /dev/net/tun")) + return -1; + + memset(&ifr, 0, sizeof(ifr)); + + ifr.ifr_flags = IFF_TUN | IFF_NO_PI; + if (*name) + strncpy(ifr.ifr_name, name, IFNAMSIZ); + + err = ioctl(fd, TUNSETIFF, &ifr); + if (!ASSERT_OK(err, "ioctl TUNSETIFF")) + goto fail; + + SYS(fail, "ip link set dev %s up", name); + + return fd; +fail: + close(fd); + return -1; +} + +enum { + SRC_TO_TARGET = 0, + TARGET_TO_SRC = 1, +}; + +static int tun_relay_loop(int src_fd, int target_fd) +{ + fd_set rfds, wfds; + + FD_ZERO(&rfds); + FD_ZERO(&wfds); + + for (;;) { + char buf[1500]; + int direction, nread, nwrite; + + FD_SET(src_fd, &rfds); + FD_SET(target_fd, &rfds); + + if (select(1 + MAX(src_fd, target_fd), &rfds, NULL, NULL, NULL) < 0) { + log_err("select failed"); + return 1; + } + + direction = FD_ISSET(src_fd, &rfds) ? SRC_TO_TARGET : TARGET_TO_SRC; + + nread = read(direction == SRC_TO_TARGET ? src_fd : target_fd, buf, sizeof(buf)); + if (nread < 0) { + log_err("read failed"); + return 1; + } + + nwrite = write(direction == SRC_TO_TARGET ? target_fd : src_fd, buf, nread); + if (nwrite != nread) { + log_err("write failed"); + return 1; + } + } +} + +static void test_tc_redirect_peer_l3(struct netns_setup_result *setup_result) +{ + LIBBPF_OPTS(bpf_tc_hook, qdisc_tun_fwd); + LIBBPF_OPTS(bpf_tc_hook, qdisc_dst_fwd); + struct test_tc_peer *skel = NULL; + struct nstoken *nstoken = NULL; + int err; + int tunnel_pid = -1; + int src_fd, target_fd = -1; + int ifindex; + + /* Start a L3 TUN/TAP tunnel between the src and dst namespaces. + * This test is using TUN/TAP instead of e.g. IPIP or GRE tunnel as those + * expose the L2 headers encapsulating the IP packet to BPF and hence + * don't have skb in suitable state for this test. Alternative to TUN/TAP + * would be e.g. Wireguard which would appear as a pure L3 device to BPF, + * but that requires much more complicated setup. + */ + nstoken = open_netns(NS_SRC); + if (!ASSERT_OK_PTR(nstoken, "setns " NS_SRC)) + return; + + src_fd = tun_open("tun_src"); + if (!ASSERT_GE(src_fd, 0, "tun_open tun_src")) + goto fail; + + close_netns(nstoken); + + nstoken = open_netns(NS_FWD); + if (!ASSERT_OK_PTR(nstoken, "setns " NS_FWD)) + goto fail; + + target_fd = tun_open("tun_fwd"); + if (!ASSERT_GE(target_fd, 0, "tun_open tun_fwd")) + goto fail; + + tunnel_pid = fork(); + if (!ASSERT_GE(tunnel_pid, 0, "fork tun_relay_loop")) + goto fail; + + if (tunnel_pid == 0) + exit(tun_relay_loop(src_fd, target_fd)); + + skel = test_tc_peer__open(); + if (!ASSERT_OK_PTR(skel, "test_tc_peer__open")) + goto fail; + + ifindex = if_nametoindex("tun_fwd"); + if (!ASSERT_GT(ifindex, 0, "if_indextoname tun_fwd")) + goto fail; + + skel->rodata->IFINDEX_SRC = ifindex; + skel->rodata->IFINDEX_DST = setup_result->ifindex_dst_fwd; + + err = test_tc_peer__load(skel); + if (!ASSERT_OK(err, "test_tc_peer__load")) + goto fail; + + /* Load "tc_src_l3" to the tun_fwd interface to redirect packets + * towards dst, and "tc_dst" to redirect packets + * and "tc_chk" on dst_fwd to drop non-redirected packets. + */ + /* tc qdisc add dev tun_fwd clsact */ + QDISC_CLSACT_CREATE(&qdisc_tun_fwd, ifindex); + /* tc filter add dev tun_fwd ingress bpf da tc_src_l3 */ + XGRESS_FILTER_ADD(&qdisc_tun_fwd, BPF_TC_INGRESS, skel->progs.tc_src_l3, 0); + + /* tc qdisc add dev dst_fwd clsact */ + QDISC_CLSACT_CREATE(&qdisc_dst_fwd, setup_result->ifindex_dst_fwd); + /* tc filter add dev dst_fwd ingress bpf da tc_dst_l3 */ + XGRESS_FILTER_ADD(&qdisc_dst_fwd, BPF_TC_INGRESS, skel->progs.tc_dst_l3, 0); + /* tc filter add dev dst_fwd egress bpf da tc_chk */ + XGRESS_FILTER_ADD(&qdisc_dst_fwd, BPF_TC_EGRESS, skel->progs.tc_chk, 0); + + /* Setup route and neigh tables */ + SYS(fail, "ip -netns " NS_SRC " addr add dev tun_src " IP4_TUN_SRC "/24"); + SYS(fail, "ip -netns " NS_FWD " addr add dev tun_fwd " IP4_TUN_FWD "/24"); + + SYS(fail, "ip -netns " NS_SRC " addr add dev tun_src " IP6_TUN_SRC "/64 nodad"); + SYS(fail, "ip -netns " NS_FWD " addr add dev tun_fwd " IP6_TUN_FWD "/64 nodad"); + + SYS(fail, "ip -netns " NS_SRC " route del " IP4_DST "/32 dev src scope global"); + SYS(fail, "ip -netns " NS_SRC " route add " IP4_DST "/32 via " IP4_TUN_FWD + " dev tun_src scope global"); + SYS(fail, "ip -netns " NS_DST " route add " IP4_TUN_SRC "/32 dev dst scope global"); + SYS(fail, "ip -netns " NS_SRC " route del " IP6_DST "/128 dev src scope global"); + SYS(fail, "ip -netns " NS_SRC " route add " IP6_DST "/128 via " IP6_TUN_FWD + " dev tun_src scope global"); + SYS(fail, "ip -netns " NS_DST " route add " IP6_TUN_SRC "/128 dev dst scope global"); + + SYS(fail, "ip -netns " NS_DST " neigh add " IP4_TUN_SRC " dev dst lladdr " MAC_DST_FWD); + SYS(fail, "ip -netns " NS_DST " neigh add " IP6_TUN_SRC " dev dst lladdr " MAC_DST_FWD); + + if (!ASSERT_OK(set_forwarding(false), "disable forwarding")) + goto fail; + + test_connectivity(); + +fail: + if (tunnel_pid > 0) { + kill(tunnel_pid, SIGTERM); + waitpid(tunnel_pid, NULL, 0); + } + if (src_fd >= 0) + close(src_fd); + if (target_fd >= 0) + close(target_fd); + if (skel) + test_tc_peer__destroy(skel); + if (nstoken) + close_netns(nstoken); +} + +#define RUN_TEST(name, mode) \ + ({ \ + struct netns_setup_result setup_result = { .dev_mode = mode, }; \ + if (test__start_subtest(#name)) \ + if (ASSERT_OK(netns_setup_namespaces("add"), "setup namespaces")) { \ + if (ASSERT_OK(netns_setup_links_and_routes(&setup_result), \ + "setup links and routes")) \ + test_ ## name(&setup_result); \ + netns_setup_namespaces("delete"); \ + } \ + }) + +static void *test_tc_redirect_run_tests(void *arg) +{ + netns_setup_namespaces_nofail("delete"); + + RUN_TEST(tc_redirect_peer, MODE_VETH); + RUN_TEST(tc_redirect_peer, MODE_NETKIT); + RUN_TEST(tc_redirect_peer_l3, MODE_VETH); + RUN_TEST(tc_redirect_peer_l3, MODE_NETKIT); + RUN_TEST(tc_redirect_neigh, MODE_VETH); + RUN_TEST(tc_redirect_neigh_fib, MODE_VETH); + RUN_TEST(tc_redirect_dtime, MODE_VETH); + return NULL; +} + +void test_tc_redirect(void) +{ + pthread_t test_thread; + int err; + + /* Run the tests in their own thread to isolate the namespace changes + * so they do not affect the environment of other tests. + * (specifically needed because of unshare(CLONE_NEWNS) in open_netns()) + */ + err = pthread_create(&test_thread, NULL, &test_tc_redirect_run_tests, NULL); + if (ASSERT_OK(err, "pthread_create")) + ASSERT_OK(pthread_join(test_thread, NULL), "pthread_join"); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tcp_custom_syncookie.c b/tools/testing/selftests/bpf/prog_tests/tcp_custom_syncookie.c new file mode 100644 index 000000000000..eaf441dc7e79 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tcp_custom_syncookie.c @@ -0,0 +1,150 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright Amazon.com Inc. or its affiliates. */ + +#define _GNU_SOURCE +#include <sched.h> +#include <stdlib.h> +#include <net/if.h> + +#include "test_progs.h" +#include "cgroup_helpers.h" +#include "network_helpers.h" +#include "test_tcp_custom_syncookie.skel.h" + +static struct test_tcp_custom_syncookie_case { + int family, type; + char addr[16]; + char name[10]; +} test_cases[] = { + { + .name = "IPv4 TCP", + .family = AF_INET, + .type = SOCK_STREAM, + .addr = "127.0.0.1", + }, + { + .name = "IPv6 TCP", + .family = AF_INET6, + .type = SOCK_STREAM, + .addr = "::1", + }, +}; + +static int setup_netns(void) +{ + if (!ASSERT_OK(unshare(CLONE_NEWNET), "create netns")) + return -1; + + if (!ASSERT_OK(system("ip link set dev lo up"), "ip")) + goto err; + + if (!ASSERT_OK(write_sysctl("/proc/sys/net/ipv4/tcp_ecn", "1"), + "write_sysctl")) + goto err; + + return 0; +err: + return -1; +} + +static int setup_tc(struct test_tcp_custom_syncookie *skel) +{ + LIBBPF_OPTS(bpf_tc_hook, qdisc_lo, .attach_point = BPF_TC_INGRESS); + LIBBPF_OPTS(bpf_tc_opts, tc_attach, + .prog_fd = bpf_program__fd(skel->progs.tcp_custom_syncookie)); + + qdisc_lo.ifindex = if_nametoindex("lo"); + if (!ASSERT_OK(bpf_tc_hook_create(&qdisc_lo), "qdisc add dev lo clsact")) + goto err; + + if (!ASSERT_OK(bpf_tc_attach(&qdisc_lo, &tc_attach), + "filter add dev lo ingress")) + goto err; + + return 0; +err: + return -1; +} + +#define msg "Hello World" +#define msglen 11 + +static void transfer_message(int sender, int receiver) +{ + char buf[msglen]; + int ret; + + ret = send(sender, msg, msglen, 0); + if (!ASSERT_EQ(ret, msglen, "send")) + return; + + memset(buf, 0, sizeof(buf)); + + ret = recv(receiver, buf, msglen, 0); + if (!ASSERT_EQ(ret, msglen, "recv")) + return; + + ret = strncmp(buf, msg, msglen); + if (!ASSERT_EQ(ret, 0, "strncmp")) + return; +} + +static void create_connection(struct test_tcp_custom_syncookie_case *test_case) +{ + int server, client, child; + + server = start_server(test_case->family, test_case->type, test_case->addr, 0, 0); + if (!ASSERT_NEQ(server, -1, "start_server")) + return; + + client = connect_to_fd(server, 0); + if (!ASSERT_NEQ(client, -1, "connect_to_fd")) + goto close_server; + + child = accept(server, NULL, 0); + if (!ASSERT_NEQ(child, -1, "accept")) + goto close_client; + + transfer_message(client, child); + transfer_message(child, client); + + close(child); +close_client: + close(client); +close_server: + close(server); +} + +void test_tcp_custom_syncookie(void) +{ + struct test_tcp_custom_syncookie *skel; + int i; + + if (setup_netns()) + return; + + skel = test_tcp_custom_syncookie__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open_and_load")) + return; + + if (setup_tc(skel)) + goto destroy_skel; + + for (i = 0; i < ARRAY_SIZE(test_cases); i++) { + if (!test__start_subtest(test_cases[i].name)) + continue; + + skel->bss->handled_syn = false; + skel->bss->handled_ack = false; + + create_connection(&test_cases[i]); + + ASSERT_EQ(skel->bss->handled_syn, true, "SYN is not handled at tc."); + ASSERT_EQ(skel->bss->handled_ack, true, "ACK is not handled at tc"); + } + +destroy_skel: + system("tc qdisc del dev lo clsact"); + + test_tcp_custom_syncookie__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tcp_estats.c b/tools/testing/selftests/bpf/prog_tests/tcp_estats.c index 594307dffd13..e070bca2b764 100644 --- a/tools/testing/selftests/bpf/prog_tests/tcp_estats.c +++ b/tools/testing/selftests/bpf/prog_tests/tcp_estats.c @@ -3,14 +3,12 @@ void test_tcp_estats(void) { - const char *file = "./test_tcp_estats.o"; + const char *file = "./test_tcp_estats.bpf.o"; int err, prog_fd; struct bpf_object *obj; - __u32 duration = 0; - err = bpf_prog_load(file, BPF_PROG_TYPE_TRACEPOINT, &obj, &prog_fd); - CHECK(err, "", "err %d errno %d\n", err, errno); - if (err) + err = bpf_prog_test_load(file, BPF_PROG_TYPE_TRACEPOINT, &obj, &prog_fd); + if (!ASSERT_OK(err, "")) return; bpf_object__close(obj); diff --git a/tools/testing/selftests/bpf/prog_tests/tcp_hdr_options.c b/tools/testing/selftests/bpf/prog_tests/tcp_hdr_options.c new file mode 100644 index 000000000000..56685fc03c7e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tcp_hdr_options.c @@ -0,0 +1,563 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ + +#define _GNU_SOURCE +#include <sched.h> +#include <stdio.h> +#include <stdlib.h> +#include <sys/socket.h> +#include <linux/compiler.h> + +#include "test_progs.h" +#include "cgroup_helpers.h" +#include "network_helpers.h" +#include "test_tcp_hdr_options.h" +#include "test_tcp_hdr_options.skel.h" +#include "test_misc_tcp_hdr_options.skel.h" + +#define LO_ADDR6 "::1" +#define CG_NAME "/tcpbpf-hdr-opt-test" + +static struct bpf_test_option exp_passive_estab_in; +static struct bpf_test_option exp_active_estab_in; +static struct bpf_test_option exp_passive_fin_in; +static struct bpf_test_option exp_active_fin_in; +static struct hdr_stg exp_passive_hdr_stg; +static struct hdr_stg exp_active_hdr_stg = { .active = true, }; + +static struct test_misc_tcp_hdr_options *misc_skel; +static struct test_tcp_hdr_options *skel; +static int lport_linum_map_fd; +static int hdr_stg_map_fd; +static __u32 duration; +static int cg_fd; + +struct sk_fds { + int srv_fd; + int passive_fd; + int active_fd; + int passive_lport; + int active_lport; +}; + +static int create_netns(void) +{ + if (!ASSERT_OK(unshare(CLONE_NEWNET), "create netns")) + return -1; + + if (!ASSERT_OK(system("ip link set dev lo up"), "run ip cmd")) + return -1; + + return 0; +} + +static void print_hdr_stg(const struct hdr_stg *hdr_stg, const char *prefix) +{ + fprintf(stderr, "%s{active:%u, resend_syn:%u, syncookie:%u, fastopen:%u}\n", + prefix ? : "", hdr_stg->active, hdr_stg->resend_syn, + hdr_stg->syncookie, hdr_stg->fastopen); +} + +static void print_option(const struct bpf_test_option *opt, const char *prefix) +{ + fprintf(stderr, "%s{flags:0x%x, max_delack_ms:%u, rand:0x%x}\n", + prefix ? : "", opt->flags, opt->max_delack_ms, opt->rand); +} + +static void sk_fds_close(struct sk_fds *sk_fds) +{ + close(sk_fds->srv_fd); + close(sk_fds->passive_fd); + close(sk_fds->active_fd); +} + +static int sk_fds_shutdown(struct sk_fds *sk_fds) +{ + int ret, abyte; + + shutdown(sk_fds->active_fd, SHUT_WR); + ret = read(sk_fds->passive_fd, &abyte, sizeof(abyte)); + if (!ASSERT_EQ(ret, 0, "read-after-shutdown(passive_fd):")) + return -1; + + shutdown(sk_fds->passive_fd, SHUT_WR); + ret = read(sk_fds->active_fd, &abyte, sizeof(abyte)); + if (!ASSERT_EQ(ret, 0, "read-after-shutdown(active_fd):")) + return -1; + + return 0; +} + +static int sk_fds_connect(struct sk_fds *sk_fds, bool fast_open) +{ + const char fast[] = "FAST!!!"; + struct sockaddr_in6 addr6; + socklen_t len; + + sk_fds->srv_fd = start_server(AF_INET6, SOCK_STREAM, LO_ADDR6, 0, 0); + if (!ASSERT_NEQ(sk_fds->srv_fd, -1, "start_server")) + goto error; + + if (fast_open) + sk_fds->active_fd = fastopen_connect(sk_fds->srv_fd, fast, + sizeof(fast), 0); + else + sk_fds->active_fd = connect_to_fd(sk_fds->srv_fd, 0); + + if (!ASSERT_NEQ(sk_fds->active_fd, -1, "")) { + close(sk_fds->srv_fd); + goto error; + } + + len = sizeof(addr6); + if (!ASSERT_OK(getsockname(sk_fds->srv_fd, (struct sockaddr *)&addr6, + &len), "getsockname(srv_fd)")) + goto error_close; + sk_fds->passive_lport = ntohs(addr6.sin6_port); + + len = sizeof(addr6); + if (!ASSERT_OK(getsockname(sk_fds->active_fd, (struct sockaddr *)&addr6, + &len), "getsockname(active_fd)")) + goto error_close; + sk_fds->active_lport = ntohs(addr6.sin6_port); + + sk_fds->passive_fd = accept(sk_fds->srv_fd, NULL, 0); + if (!ASSERT_NEQ(sk_fds->passive_fd, -1, "accept(srv_fd)")) + goto error_close; + + if (fast_open) { + char bytes_in[sizeof(fast)]; + int ret; + + ret = read(sk_fds->passive_fd, bytes_in, sizeof(bytes_in)); + if (!ASSERT_EQ(ret, sizeof(fast), "read fastopen syn data")) { + close(sk_fds->passive_fd); + goto error_close; + } + } + + return 0; + +error_close: + close(sk_fds->active_fd); + close(sk_fds->srv_fd); + +error: + memset(sk_fds, -1, sizeof(*sk_fds)); + return -1; +} + +static int check_hdr_opt(const struct bpf_test_option *exp, + const struct bpf_test_option *act, + const char *hdr_desc) +{ + if (!ASSERT_EQ(memcmp(exp, act, sizeof(*exp)), 0, hdr_desc)) { + print_option(exp, "expected: "); + print_option(act, " actual: "); + return -1; + } + + return 0; +} + +static int check_hdr_stg(const struct hdr_stg *exp, int fd, + const char *stg_desc) +{ + struct hdr_stg act; + + if (!ASSERT_OK(bpf_map_lookup_elem(hdr_stg_map_fd, &fd, &act), + "map_lookup(hdr_stg_map_fd)")) + return -1; + + if (!ASSERT_EQ(memcmp(exp, &act, sizeof(*exp)), 0, stg_desc)) { + print_hdr_stg(exp, "expected: "); + print_hdr_stg(&act, " actual: "); + return -1; + } + + return 0; +} + +static int check_error_linum(const struct sk_fds *sk_fds) +{ + unsigned int nr_errors = 0; + struct linum_err linum_err; + int lport; + + lport = sk_fds->passive_lport; + if (!bpf_map_lookup_elem(lport_linum_map_fd, &lport, &linum_err)) { + fprintf(stderr, + "bpf prog error out at lport:passive(%d), linum:%u err:%d\n", + lport, linum_err.linum, linum_err.err); + nr_errors++; + } + + lport = sk_fds->active_lport; + if (!bpf_map_lookup_elem(lport_linum_map_fd, &lport, &linum_err)) { + fprintf(stderr, + "bpf prog error out at lport:active(%d), linum:%u err:%d\n", + lport, linum_err.linum, linum_err.err); + nr_errors++; + } + + return nr_errors; +} + +static void check_hdr_and_close_fds(struct sk_fds *sk_fds) +{ + const __u32 expected_inherit_cb_flags = + BPF_SOCK_OPS_PARSE_UNKNOWN_HDR_OPT_CB_FLAG | + BPF_SOCK_OPS_WRITE_HDR_OPT_CB_FLAG | + BPF_SOCK_OPS_STATE_CB_FLAG; + + if (sk_fds_shutdown(sk_fds)) + goto check_linum; + + if (!ASSERT_EQ(expected_inherit_cb_flags, skel->bss->inherit_cb_flags, + "inherit_cb_flags")) + goto check_linum; + + if (check_hdr_stg(&exp_passive_hdr_stg, sk_fds->passive_fd, + "passive_hdr_stg")) + goto check_linum; + + if (check_hdr_stg(&exp_active_hdr_stg, sk_fds->active_fd, + "active_hdr_stg")) + goto check_linum; + + if (check_hdr_opt(&exp_passive_estab_in, &skel->bss->passive_estab_in, + "passive_estab_in")) + goto check_linum; + + if (check_hdr_opt(&exp_active_estab_in, &skel->bss->active_estab_in, + "active_estab_in")) + goto check_linum; + + if (check_hdr_opt(&exp_passive_fin_in, &skel->bss->passive_fin_in, + "passive_fin_in")) + goto check_linum; + + check_hdr_opt(&exp_active_fin_in, &skel->bss->active_fin_in, + "active_fin_in"); + +check_linum: + ASSERT_FALSE(check_error_linum(sk_fds), "check_error_linum"); + sk_fds_close(sk_fds); +} + +static void prepare_out(void) +{ + skel->bss->active_syn_out = exp_passive_estab_in; + skel->bss->passive_synack_out = exp_active_estab_in; + + skel->bss->active_fin_out = exp_passive_fin_in; + skel->bss->passive_fin_out = exp_active_fin_in; +} + +static void reset_test(void) +{ + size_t optsize = sizeof(struct bpf_test_option); + int lport, err; + + memset(&skel->bss->passive_synack_out, 0, optsize); + memset(&skel->bss->passive_fin_out, 0, optsize); + + memset(&skel->bss->passive_estab_in, 0, optsize); + memset(&skel->bss->passive_fin_in, 0, optsize); + + memset(&skel->bss->active_syn_out, 0, optsize); + memset(&skel->bss->active_fin_out, 0, optsize); + + memset(&skel->bss->active_estab_in, 0, optsize); + memset(&skel->bss->active_fin_in, 0, optsize); + + skel->bss->inherit_cb_flags = 0; + + skel->data->test_kind = TCPOPT_EXP; + skel->data->test_magic = 0xeB9F; + + memset(&exp_passive_estab_in, 0, optsize); + memset(&exp_active_estab_in, 0, optsize); + memset(&exp_passive_fin_in, 0, optsize); + memset(&exp_active_fin_in, 0, optsize); + + memset(&exp_passive_hdr_stg, 0, sizeof(exp_passive_hdr_stg)); + memset(&exp_active_hdr_stg, 0, sizeof(exp_active_hdr_stg)); + exp_active_hdr_stg.active = true; + + err = bpf_map_get_next_key(lport_linum_map_fd, NULL, &lport); + while (!err) { + bpf_map_delete_elem(lport_linum_map_fd, &lport); + err = bpf_map_get_next_key(lport_linum_map_fd, &lport, &lport); + } +} + +static void fastopen_estab(void) +{ + struct bpf_link *link; + struct sk_fds sk_fds; + + hdr_stg_map_fd = bpf_map__fd(skel->maps.hdr_stg_map); + lport_linum_map_fd = bpf_map__fd(skel->maps.lport_linum_map); + + exp_passive_estab_in.flags = OPTION_F_RAND | OPTION_F_MAX_DELACK_MS; + exp_passive_estab_in.rand = 0xfa; + exp_passive_estab_in.max_delack_ms = 11; + + exp_active_estab_in.flags = OPTION_F_RAND | OPTION_F_MAX_DELACK_MS; + exp_active_estab_in.rand = 0xce; + exp_active_estab_in.max_delack_ms = 22; + + exp_passive_hdr_stg.fastopen = true; + + prepare_out(); + + /* Allow fastopen without fastopen cookie */ + if (write_sysctl("/proc/sys/net/ipv4/tcp_fastopen", "1543")) + return; + + link = bpf_program__attach_cgroup(skel->progs.estab, cg_fd); + if (!ASSERT_OK_PTR(link, "attach_cgroup(estab)")) + return; + + if (sk_fds_connect(&sk_fds, true)) { + bpf_link__destroy(link); + return; + } + + check_hdr_and_close_fds(&sk_fds); + bpf_link__destroy(link); +} + +static void syncookie_estab(void) +{ + struct bpf_link *link; + struct sk_fds sk_fds; + + hdr_stg_map_fd = bpf_map__fd(skel->maps.hdr_stg_map); + lport_linum_map_fd = bpf_map__fd(skel->maps.lport_linum_map); + + exp_passive_estab_in.flags = OPTION_F_RAND | OPTION_F_MAX_DELACK_MS; + exp_passive_estab_in.rand = 0xfa; + exp_passive_estab_in.max_delack_ms = 11; + + exp_active_estab_in.flags = OPTION_F_RAND | OPTION_F_MAX_DELACK_MS | + OPTION_F_RESEND; + exp_active_estab_in.rand = 0xce; + exp_active_estab_in.max_delack_ms = 22; + + exp_passive_hdr_stg.syncookie = true; + exp_active_hdr_stg.resend_syn = true; + + prepare_out(); + + /* Clear the RESEND to ensure the bpf prog can learn + * want_cookie and set the RESEND by itself. + */ + skel->bss->passive_synack_out.flags &= ~OPTION_F_RESEND; + + /* Enforce syncookie mode */ + if (write_sysctl("/proc/sys/net/ipv4/tcp_syncookies", "2")) + return; + + link = bpf_program__attach_cgroup(skel->progs.estab, cg_fd); + if (!ASSERT_OK_PTR(link, "attach_cgroup(estab)")) + return; + + if (sk_fds_connect(&sk_fds, false)) { + bpf_link__destroy(link); + return; + } + + check_hdr_and_close_fds(&sk_fds); + bpf_link__destroy(link); +} + +static void fin(void) +{ + struct bpf_link *link; + struct sk_fds sk_fds; + + hdr_stg_map_fd = bpf_map__fd(skel->maps.hdr_stg_map); + lport_linum_map_fd = bpf_map__fd(skel->maps.lport_linum_map); + + exp_passive_fin_in.flags = OPTION_F_RAND; + exp_passive_fin_in.rand = 0xfa; + + exp_active_fin_in.flags = OPTION_F_RAND; + exp_active_fin_in.rand = 0xce; + + prepare_out(); + + if (write_sysctl("/proc/sys/net/ipv4/tcp_syncookies", "1")) + return; + + link = bpf_program__attach_cgroup(skel->progs.estab, cg_fd); + if (!ASSERT_OK_PTR(link, "attach_cgroup(estab)")) + return; + + if (sk_fds_connect(&sk_fds, false)) { + bpf_link__destroy(link); + return; + } + + check_hdr_and_close_fds(&sk_fds); + bpf_link__destroy(link); +} + +static void __simple_estab(bool exprm) +{ + struct bpf_link *link; + struct sk_fds sk_fds; + + hdr_stg_map_fd = bpf_map__fd(skel->maps.hdr_stg_map); + lport_linum_map_fd = bpf_map__fd(skel->maps.lport_linum_map); + + exp_passive_estab_in.flags = OPTION_F_RAND | OPTION_F_MAX_DELACK_MS; + exp_passive_estab_in.rand = 0xfa; + exp_passive_estab_in.max_delack_ms = 11; + + exp_active_estab_in.flags = OPTION_F_RAND | OPTION_F_MAX_DELACK_MS; + exp_active_estab_in.rand = 0xce; + exp_active_estab_in.max_delack_ms = 22; + + prepare_out(); + + if (!exprm) { + skel->data->test_kind = 0xB9; + skel->data->test_magic = 0; + } + + if (write_sysctl("/proc/sys/net/ipv4/tcp_syncookies", "1")) + return; + + link = bpf_program__attach_cgroup(skel->progs.estab, cg_fd); + if (!ASSERT_OK_PTR(link, "attach_cgroup(estab)")) + return; + + if (sk_fds_connect(&sk_fds, false)) { + bpf_link__destroy(link); + return; + } + + check_hdr_and_close_fds(&sk_fds); + bpf_link__destroy(link); +} + +static void no_exprm_estab(void) +{ + __simple_estab(false); +} + +static void simple_estab(void) +{ + __simple_estab(true); +} + +static void misc(void) +{ + const char send_msg[] = "MISC!!!"; + char recv_msg[sizeof(send_msg)]; + const unsigned int nr_data = 2; + struct bpf_link *link; + struct sk_fds sk_fds; + int i, ret; + + lport_linum_map_fd = bpf_map__fd(misc_skel->maps.lport_linum_map); + + if (write_sysctl("/proc/sys/net/ipv4/tcp_syncookies", "1")) + return; + + link = bpf_program__attach_cgroup(misc_skel->progs.misc_estab, cg_fd); + if (!ASSERT_OK_PTR(link, "attach_cgroup(misc_estab)")) + return; + + if (sk_fds_connect(&sk_fds, false)) { + bpf_link__destroy(link); + return; + } + + for (i = 0; i < nr_data; i++) { + /* MSG_EOR to ensure skb will not be combined */ + ret = send(sk_fds.active_fd, send_msg, sizeof(send_msg), + MSG_EOR); + if (!ASSERT_EQ(ret, sizeof(send_msg), "send(msg)")) + goto check_linum; + + ret = read(sk_fds.passive_fd, recv_msg, sizeof(recv_msg)); + if (!ASSERT_EQ(ret, sizeof(send_msg), "read(msg)")) + goto check_linum; + } + + if (sk_fds_shutdown(&sk_fds)) + goto check_linum; + + ASSERT_EQ(misc_skel->bss->nr_syn, 1, "unexpected nr_syn"); + + ASSERT_EQ(misc_skel->bss->nr_data, nr_data, "unexpected nr_data"); + + /* The last ACK may have been delayed, so it is either 1 or 2. */ + CHECK(misc_skel->bss->nr_pure_ack != 1 && + misc_skel->bss->nr_pure_ack != 2, + "unexpected nr_pure_ack", + "expected (1 or 2) != actual (%u)\n", + misc_skel->bss->nr_pure_ack); + + ASSERT_EQ(misc_skel->bss->nr_fin, 1, "unexpected nr_fin"); + + ASSERT_EQ(misc_skel->bss->nr_hwtstamp, 0, "nr_hwtstamp"); + +check_linum: + ASSERT_FALSE(check_error_linum(&sk_fds), "check_error_linum"); + sk_fds_close(&sk_fds); + bpf_link__destroy(link); +} + +struct test { + const char *desc; + void (*run)(void); +}; + +#define DEF_TEST(name) { #name, name } +static struct test tests[] = { + DEF_TEST(simple_estab), + DEF_TEST(no_exprm_estab), + DEF_TEST(syncookie_estab), + DEF_TEST(fastopen_estab), + DEF_TEST(fin), + DEF_TEST(misc), +}; + +void test_tcp_hdr_options(void) +{ + int i; + + skel = test_tcp_hdr_options__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open and load skel")) + return; + + misc_skel = test_misc_tcp_hdr_options__open_and_load(); + if (!ASSERT_OK_PTR(misc_skel, "open and load misc test skel")) + goto skel_destroy; + + cg_fd = test__join_cgroup(CG_NAME); + if (!ASSERT_GE(cg_fd, 0, "join_cgroup")) + goto skel_destroy; + + for (i = 0; i < ARRAY_SIZE(tests); i++) { + if (!test__start_subtest(tests[i].desc)) + continue; + + if (create_netns()) + break; + + tests[i].run(); + + reset_test(); + } + + close(cg_fd); +skel_destroy: + test_misc_tcp_hdr_options__destroy(misc_skel); + test_tcp_hdr_options__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tcp_rtt.c b/tools/testing/selftests/bpf/prog_tests/tcp_rtt.c index d207e968e6b1..f2b99d95d916 100644 --- a/tools/testing/selftests/bpf/prog_tests/tcp_rtt.c +++ b/tools/testing/selftests/bpf/prog_tests/tcp_rtt.c @@ -2,6 +2,7 @@ #include <test_progs.h> #include "cgroup_helpers.h" #include "network_helpers.h" +#include "tcp_rtt.skel.h" struct tcp_rtt_storage { __u32 invoked; @@ -9,14 +10,16 @@ struct tcp_rtt_storage { __u32 delivered; __u32 delivered_ce; __u32 icsk_retransmits; + + __u32 mrtt_us; /* args[0] */ + __u32 srtt; /* args[1] */ }; static void send_byte(int fd) { char b = 0x55; - if (CHECK_FAIL(write(fd, &b, sizeof(b)) != 1)) - perror("Failed to send single byte"); + ASSERT_EQ(write(fd, &b, sizeof(b)), 1, "send single byte"); } static int wait_for_ack(int fd, int retries) @@ -50,10 +53,8 @@ static int verify_sk(int map_fd, int client_fd, const char *msg, __u32 invoked, int err = 0; struct tcp_rtt_storage val; - if (CHECK_FAIL(bpf_map_lookup_elem(map_fd, &client_fd, &val) < 0)) { - perror("Failed to read socket storage"); + if (!ASSERT_GE(bpf_map_lookup_elem(map_fd, &client_fd, &val), 0, "read socket storage")) return -1; - } if (val.invoked != invoked) { log_err("%s: unexpected bpf_tcp_sock.invoked %d != %d", @@ -85,32 +86,35 @@ static int verify_sk(int map_fd, int client_fd, const char *msg, __u32 invoked, err++; } + /* Precise values of mrtt and srtt are unavailable, just make sure they are nonzero */ + if (val.mrtt_us == 0) { + log_err("%s: unexpected bpf_tcp_sock.args[0] (mrtt_us) %u == 0", msg, val.mrtt_us); + err++; + } + + if (val.srtt == 0) { + log_err("%s: unexpected bpf_tcp_sock.args[1] (srtt) %u == 0", msg, val.srtt); + err++; + } + return err; } static int run_test(int cgroup_fd, int server_fd) { - struct bpf_prog_load_attr attr = { - .prog_type = BPF_PROG_TYPE_SOCK_OPS, - .file = "./tcp_rtt.o", - .expected_attach_type = BPF_CGROUP_SOCK_OPS, - }; - struct bpf_object *obj; - struct bpf_map *map; + struct tcp_rtt *skel; int client_fd; int prog_fd; int map_fd; int err; - err = bpf_prog_load_xattr(&attr, &obj, &prog_fd); - if (err) { - log_err("Failed to load BPF object"); + skel = tcp_rtt__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_load")) return -1; - } - map = bpf_map__next(NULL, obj); - map_fd = bpf_map__fd(map); + map_fd = bpf_map__fd(skel->maps.socket_storage_map); + prog_fd = bpf_program__fd(skel->progs._sockops); err = bpf_prog_attach(prog_fd, cgroup_fd, BPF_CGROUP_SOCK_OPS, 0); if (err) { @@ -149,7 +153,7 @@ close_client_fd: close(client_fd); close_bpf_object: - bpf_object__close(obj); + tcp_rtt__destroy(skel); return err; } @@ -158,14 +162,14 @@ void test_tcp_rtt(void) int server_fd, cgroup_fd; cgroup_fd = test__join_cgroup("/tcp_rtt"); - if (CHECK_FAIL(cgroup_fd < 0)) + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup /tcp_rtt")) return; server_fd = start_server(AF_INET, SOCK_STREAM, NULL, 0, 0); - if (CHECK_FAIL(server_fd < 0)) + if (!ASSERT_GE(server_fd, 0, "start_server")) goto close_cgroup_fd; - CHECK_FAIL(run_test(cgroup_fd, server_fd)); + ASSERT_OK(run_test(cgroup_fd, server_fd), "run_test"); close(server_fd); diff --git a/tools/testing/selftests/bpf/prog_tests/tcpbpf_user.c b/tools/testing/selftests/bpf/prog_tests/tcpbpf_user.c new file mode 100644 index 000000000000..7e8fe1bad03f --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tcpbpf_user.c @@ -0,0 +1,137 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> + +#include "test_tcpbpf.h" +#include "test_tcpbpf_kern.skel.h" + +#define LO_ADDR6 "::1" +#define CG_NAME "/tcpbpf-user-test" + +static void verify_result(struct tcpbpf_globals *result) +{ + __u32 expected_events = ((1 << BPF_SOCK_OPS_TIMEOUT_INIT) | + (1 << BPF_SOCK_OPS_RWND_INIT) | + (1 << BPF_SOCK_OPS_TCP_CONNECT_CB) | + (1 << BPF_SOCK_OPS_ACTIVE_ESTABLISHED_CB) | + (1 << BPF_SOCK_OPS_PASSIVE_ESTABLISHED_CB) | + (1 << BPF_SOCK_OPS_NEEDS_ECN) | + (1 << BPF_SOCK_OPS_STATE_CB) | + (1 << BPF_SOCK_OPS_TCP_LISTEN_CB)); + + /* check global map */ + ASSERT_EQ(expected_events, result->event_map, "event_map"); + + ASSERT_EQ(result->bytes_received, 501, "bytes_received"); + ASSERT_EQ(result->bytes_acked, 1002, "bytes_acked"); + ASSERT_EQ(result->data_segs_in, 1, "data_segs_in"); + ASSERT_EQ(result->data_segs_out, 1, "data_segs_out"); + ASSERT_EQ(result->bad_cb_test_rv, 0x80, "bad_cb_test_rv"); + ASSERT_EQ(result->good_cb_test_rv, 0, "good_cb_test_rv"); + ASSERT_EQ(result->num_listen, 1, "num_listen"); + + /* 3 comes from one listening socket + both ends of the connection */ + ASSERT_EQ(result->num_close_events, 3, "num_close_events"); + + /* check setsockopt for SAVE_SYN */ + ASSERT_EQ(result->tcp_save_syn, 0, "tcp_save_syn"); + + /* check getsockopt for SAVED_SYN */ + ASSERT_EQ(result->tcp_saved_syn, 1, "tcp_saved_syn"); + + /* check getsockopt for window_clamp */ + ASSERT_EQ(result->window_clamp_client, 9216, "window_clamp_client"); + ASSERT_EQ(result->window_clamp_server, 9216, "window_clamp_server"); +} + +static void run_test(struct tcpbpf_globals *result) +{ + int listen_fd = -1, cli_fd = -1, accept_fd = -1; + char buf[1000]; + int err = -1; + int i, rv; + + listen_fd = start_server(AF_INET6, SOCK_STREAM, LO_ADDR6, 0, 0); + if (!ASSERT_NEQ(listen_fd, -1, "start_server")) + goto done; + + cli_fd = connect_to_fd(listen_fd, 0); + if (!ASSERT_NEQ(cli_fd, -1, "connect_to_fd(listen_fd)")) + goto done; + + accept_fd = accept(listen_fd, NULL, NULL); + if (!ASSERT_NEQ(accept_fd, -1, "accept(listen_fd)")) + goto done; + + /* Send 1000B of '+'s from cli_fd -> accept_fd */ + for (i = 0; i < 1000; i++) + buf[i] = '+'; + + rv = send(cli_fd, buf, 1000, 0); + if (!ASSERT_EQ(rv, 1000, "send(cli_fd)")) + goto done; + + rv = recv(accept_fd, buf, 1000, 0); + if (!ASSERT_EQ(rv, 1000, "recv(accept_fd)")) + goto done; + + /* Send 500B of '.'s from accept_fd ->cli_fd */ + for (i = 0; i < 500; i++) + buf[i] = '.'; + + rv = send(accept_fd, buf, 500, 0); + if (!ASSERT_EQ(rv, 500, "send(accept_fd)")) + goto done; + + rv = recv(cli_fd, buf, 500, 0); + if (!ASSERT_EQ(rv, 500, "recv(cli_fd)")) + goto done; + + /* + * shutdown accept first to guarantee correct ordering for + * bytes_received and bytes_acked when we go to verify the results. + */ + shutdown(accept_fd, SHUT_WR); + err = recv(cli_fd, buf, 1, 0); + if (!ASSERT_OK(err, "recv(cli_fd) for fin")) + goto done; + + shutdown(cli_fd, SHUT_WR); + err = recv(accept_fd, buf, 1, 0); + ASSERT_OK(err, "recv(accept_fd) for fin"); +done: + if (accept_fd != -1) + close(accept_fd); + if (cli_fd != -1) + close(cli_fd); + if (listen_fd != -1) + close(listen_fd); + + if (!err) + verify_result(result); +} + +void test_tcpbpf_user(void) +{ + struct test_tcpbpf_kern *skel; + int cg_fd = -1; + + skel = test_tcpbpf_kern__open_and_load(); + if (!ASSERT_OK_PTR(skel, "open and load skel")) + return; + + cg_fd = test__join_cgroup(CG_NAME); + if (!ASSERT_GE(cg_fd, 0, "test__join_cgroup(" CG_NAME ")")) + goto err; + + skel->links.bpf_testcb = bpf_program__attach_cgroup(skel->progs.bpf_testcb, cg_fd); + if (!ASSERT_OK_PTR(skel->links.bpf_testcb, "attach_cgroup(bpf_testcb)")) + goto err; + + run_test(&skel->bss->global); + +err: + if (cg_fd != -1) + close(cg_fd); + test_tcpbpf_kern__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_bpf_ma.c b/tools/testing/selftests/bpf/prog_tests/test_bpf_ma.c new file mode 100644 index 000000000000..ccae0b31ac6c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_bpf_ma.c @@ -0,0 +1,74 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2023. Huawei Technologies Co., Ltd */ +#define _GNU_SOURCE +#include <sched.h> +#include <pthread.h> +#include <stdbool.h> +#include <bpf/btf.h> +#include <test_progs.h> + +#include "test_bpf_ma.skel.h" + +static void do_bpf_ma_test(const char *name) +{ + struct test_bpf_ma *skel; + struct bpf_program *prog; + struct btf *btf; + int i, err, id; + char tname[32]; + + skel = test_bpf_ma__open(); + if (!ASSERT_OK_PTR(skel, "open")) + return; + + btf = bpf_object__btf(skel->obj); + if (!ASSERT_OK_PTR(btf, "btf")) + goto out; + + for (i = 0; i < ARRAY_SIZE(skel->rodata->data_sizes); i++) { + snprintf(tname, sizeof(tname), "bin_data_%u", skel->rodata->data_sizes[i]); + id = btf__find_by_name_kind(btf, tname, BTF_KIND_STRUCT); + if (!ASSERT_GT(id, 0, tname)) + goto out; + skel->rodata->data_btf_ids[i] = id; + } + + for (i = 0; i < ARRAY_SIZE(skel->rodata->percpu_data_sizes); i++) { + snprintf(tname, sizeof(tname), "percpu_bin_data_%u", skel->rodata->percpu_data_sizes[i]); + id = btf__find_by_name_kind(btf, tname, BTF_KIND_STRUCT); + if (!ASSERT_GT(id, 0, tname)) + goto out; + skel->rodata->percpu_data_btf_ids[i] = id; + } + + prog = bpf_object__find_program_by_name(skel->obj, name); + if (!ASSERT_OK_PTR(prog, "invalid prog name")) + goto out; + bpf_program__set_autoload(prog, true); + + err = test_bpf_ma__load(skel); + if (!ASSERT_OK(err, "load")) + goto out; + + err = test_bpf_ma__attach(skel); + if (!ASSERT_OK(err, "attach")) + goto out; + + skel->bss->pid = getpid(); + usleep(1); + ASSERT_OK(skel->bss->err, "test error"); +out: + test_bpf_ma__destroy(skel); +} + +void test_test_bpf_ma(void) +{ + if (test__start_subtest("batch_alloc_free")) + do_bpf_ma_test("test_batch_alloc_free"); + if (test__start_subtest("free_through_map_free")) + do_bpf_ma_test("test_free_through_map_free"); + if (test__start_subtest("batch_percpu_alloc_free")) + do_bpf_ma_test("test_batch_percpu_alloc_free"); + if (test__start_subtest("percpu_free_through_map_free")) + do_bpf_ma_test("test_percpu_free_through_map_free"); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_bpf_syscall_macro.c b/tools/testing/selftests/bpf/prog_tests/test_bpf_syscall_macro.c new file mode 100644 index 000000000000..2900c5e9a016 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_bpf_syscall_macro.c @@ -0,0 +1,90 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright 2022 Sony Group Corporation */ +#define _GNU_SOURCE +#include <fcntl.h> +#include <sys/prctl.h> +#include <test_progs.h> +#include "bpf_syscall_macro.skel.h" + +void test_bpf_syscall_macro(void) +{ + struct bpf_syscall_macro *skel = NULL; + int err; + int exp_arg1 = 1001; + unsigned long exp_arg2 = 12; + unsigned long exp_arg3 = 13; + unsigned long exp_arg4 = 14; + unsigned long exp_arg5 = 15; + loff_t off_in, off_out; + ssize_t r; + + /* check whether it can open program */ + skel = bpf_syscall_macro__open(); + if (!ASSERT_OK_PTR(skel, "bpf_syscall_macro__open")) + return; + + skel->rodata->filter_pid = getpid(); + + /* check whether it can load program */ + err = bpf_syscall_macro__load(skel); + if (!ASSERT_OK(err, "bpf_syscall_macro__load")) + goto cleanup; + + /* check whether it can attach kprobe */ + err = bpf_syscall_macro__attach(skel); + if (!ASSERT_OK(err, "bpf_syscall_macro__attach")) + goto cleanup; + + /* check whether args of syscall are copied correctly */ + prctl(exp_arg1, exp_arg2, exp_arg3, exp_arg4, exp_arg5); + +#if defined(__aarch64__) || defined(__s390__) + ASSERT_NEQ(skel->bss->arg1, exp_arg1, "syscall_arg1"); +#else + ASSERT_EQ(skel->bss->arg1, exp_arg1, "syscall_arg1"); +#endif + ASSERT_EQ(skel->bss->arg2, exp_arg2, "syscall_arg2"); + ASSERT_EQ(skel->bss->arg3, exp_arg3, "syscall_arg3"); + /* it cannot copy arg4 when uses PT_REGS_PARM4 on x86_64 */ +#ifdef __x86_64__ + ASSERT_NEQ(skel->bss->arg4_cx, exp_arg4, "syscall_arg4_from_cx"); +#else + ASSERT_EQ(skel->bss->arg4_cx, exp_arg4, "syscall_arg4_from_cx"); +#endif + ASSERT_EQ(skel->bss->arg4, exp_arg4, "syscall_arg4"); + ASSERT_EQ(skel->bss->arg5, exp_arg5, "syscall_arg5"); + + /* check whether args of syscall are copied correctly for CORE variants */ + ASSERT_EQ(skel->bss->arg1_core, exp_arg1, "syscall_arg1_core_variant"); + ASSERT_EQ(skel->bss->arg2_core, exp_arg2, "syscall_arg2_core_variant"); + ASSERT_EQ(skel->bss->arg3_core, exp_arg3, "syscall_arg3_core_variant"); + /* it cannot copy arg4 when uses PT_REGS_PARM4_CORE on x86_64 */ +#ifdef __x86_64__ + ASSERT_NEQ(skel->bss->arg4_core_cx, exp_arg4, "syscall_arg4_from_cx_core_variant"); +#else + ASSERT_EQ(skel->bss->arg4_core_cx, exp_arg4, "syscall_arg4_from_cx_core_variant"); +#endif + ASSERT_EQ(skel->bss->arg4_core, exp_arg4, "syscall_arg4_core_variant"); + ASSERT_EQ(skel->bss->arg5_core, exp_arg5, "syscall_arg5_core_variant"); + + ASSERT_EQ(skel->bss->option_syscall, exp_arg1, "BPF_KPROBE_SYSCALL_option"); + ASSERT_EQ(skel->bss->arg2_syscall, exp_arg2, "BPF_KPROBE_SYSCALL_arg2"); + ASSERT_EQ(skel->bss->arg3_syscall, exp_arg3, "BPF_KPROBE_SYSCALL_arg3"); + ASSERT_EQ(skel->bss->arg4_syscall, exp_arg4, "BPF_KPROBE_SYSCALL_arg4"); + ASSERT_EQ(skel->bss->arg5_syscall, exp_arg5, "BPF_KPROBE_SYSCALL_arg5"); + + r = splice(-42, &off_in, 42, &off_out, 0x12340000, SPLICE_F_NONBLOCK); + err = -errno; + ASSERT_EQ(r, -1, "splice_res"); + ASSERT_EQ(err, -EBADF, "splice_err"); + + ASSERT_EQ(skel->bss->splice_fd_in, -42, "splice_arg1"); + ASSERT_EQ(skel->bss->splice_off_in, (__u64)&off_in, "splice_arg2"); + ASSERT_EQ(skel->bss->splice_fd_out, 42, "splice_arg3"); + ASSERT_EQ(skel->bss->splice_off_out, (__u64)&off_out, "splice_arg4"); + ASSERT_EQ(skel->bss->splice_len, 0x12340000, "splice_arg5"); + ASSERT_EQ(skel->bss->splice_flags, SPLICE_F_NONBLOCK, "splice_arg6"); + +cleanup: + bpf_syscall_macro__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_bpffs.c b/tools/testing/selftests/bpf/prog_tests/test_bpffs.c new file mode 100644 index 000000000000..ea933fd151c3 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_bpffs.c @@ -0,0 +1,164 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ +#define _GNU_SOURCE +#include <stdio.h> +#include <sched.h> +#include <sys/mount.h> +#include <sys/stat.h> +#include <sys/types.h> +#include <test_progs.h> + +/* TDIR must be in a location we can create a directory in. */ +#define TDIR "/tmp/test_bpffs_testdir" + +static int read_iter(char *file) +{ + /* 1024 should be enough to get contiguous 4 "iter" letters at some point */ + char buf[1024]; + int fd, len; + + fd = open(file, 0); + if (fd < 0) + return -1; + while ((len = read(fd, buf, sizeof(buf))) > 0) { + buf[sizeof(buf) - 1] = '\0'; + if (strstr(buf, "iter")) { + close(fd); + return 0; + } + } + close(fd); + return -1; +} + +static int fn(void) +{ + struct stat a, b, c; + int err, map; + + err = unshare(CLONE_NEWNS); + if (!ASSERT_OK(err, "unshare")) + goto out; + + err = mount("", "/", "", MS_REC | MS_PRIVATE, NULL); + if (!ASSERT_OK(err, "mount /")) + goto out; + + err = mkdir(TDIR, 0777); + /* If the directory already exists we can carry on. It may be left over + * from a previous run. + */ + if ((err && errno != EEXIST) && !ASSERT_OK(err, "mkdir " TDIR)) + goto out; + + err = mount("none", TDIR, "tmpfs", 0, NULL); + if (!ASSERT_OK(err, "mount tmpfs")) + goto out; + + err = mkdir(TDIR "/fs1", 0777); + if (!ASSERT_OK(err, "mkdir " TDIR "/fs1")) + goto out; + err = mkdir(TDIR "/fs2", 0777); + if (!ASSERT_OK(err, "mkdir " TDIR "/fs2")) + goto out; + + err = mount("bpf", TDIR "/fs1", "bpf", 0, NULL); + if (!ASSERT_OK(err, "mount bpffs " TDIR "/fs1")) + goto out; + err = mount("bpf", TDIR "/fs2", "bpf", 0, NULL); + if (!ASSERT_OK(err, "mount bpffs " TDIR "/fs2")) + goto out; + + err = read_iter(TDIR "/fs1/maps.debug"); + if (!ASSERT_OK(err, "reading " TDIR "/fs1/maps.debug")) + goto out; + err = read_iter(TDIR "/fs2/progs.debug"); + if (!ASSERT_OK(err, "reading " TDIR "/fs2/progs.debug")) + goto out; + + err = mkdir(TDIR "/fs1/a", 0777); + if (!ASSERT_OK(err, "creating " TDIR "/fs1/a")) + goto out; + err = mkdir(TDIR "/fs1/a/1", 0777); + if (!ASSERT_OK(err, "creating " TDIR "/fs1/a/1")) + goto out; + err = mkdir(TDIR "/fs1/b", 0777); + if (!ASSERT_OK(err, "creating " TDIR "/fs1/b")) + goto out; + + map = bpf_map_create(BPF_MAP_TYPE_ARRAY, NULL, 4, 4, 1, NULL); + if (!ASSERT_GT(map, 0, "create_map(ARRAY)")) + goto out; + err = bpf_obj_pin(map, TDIR "/fs1/c"); + if (!ASSERT_OK(err, "pin map")) + goto out; + close(map); + + /* Check that RENAME_EXCHANGE works for directories. */ + err = stat(TDIR "/fs1/a", &a); + if (!ASSERT_OK(err, "stat(" TDIR "/fs1/a)")) + goto out; + err = renameat2(0, TDIR "/fs1/a", 0, TDIR "/fs1/b", RENAME_EXCHANGE); + if (!ASSERT_OK(err, "renameat2(/fs1/a, /fs1/b, RENAME_EXCHANGE)")) + goto out; + err = stat(TDIR "/fs1/b", &b); + if (!ASSERT_OK(err, "stat(" TDIR "/fs1/b)")) + goto out; + if (!ASSERT_EQ(a.st_ino, b.st_ino, "b should have a's inode")) + goto out; + err = access(TDIR "/fs1/b/1", F_OK); + if (!ASSERT_OK(err, "access(" TDIR "/fs1/b/1)")) + goto out; + + /* Check that RENAME_EXCHANGE works for mixed file types. */ + err = stat(TDIR "/fs1/c", &c); + if (!ASSERT_OK(err, "stat(" TDIR "/fs1/map)")) + goto out; + err = renameat2(0, TDIR "/fs1/c", 0, TDIR "/fs1/b", RENAME_EXCHANGE); + if (!ASSERT_OK(err, "renameat2(/fs1/c, /fs1/b, RENAME_EXCHANGE)")) + goto out; + err = stat(TDIR "/fs1/b", &b); + if (!ASSERT_OK(err, "stat(" TDIR "/fs1/b)")) + goto out; + if (!ASSERT_EQ(c.st_ino, b.st_ino, "b should have c's inode")) + goto out; + err = access(TDIR "/fs1/c/1", F_OK); + if (!ASSERT_OK(err, "access(" TDIR "/fs1/c/1)")) + goto out; + + /* Check that RENAME_NOREPLACE works. */ + err = renameat2(0, TDIR "/fs1/b", 0, TDIR "/fs1/a", RENAME_NOREPLACE); + if (!ASSERT_ERR(err, "renameat2(RENAME_NOREPLACE)")) { + err = -EINVAL; + goto out; + } + err = access(TDIR "/fs1/b", F_OK); + if (!ASSERT_OK(err, "access(" TDIR "/fs1/b)")) + goto out; + +out: + umount(TDIR "/fs1"); + umount(TDIR "/fs2"); + rmdir(TDIR "/fs1"); + rmdir(TDIR "/fs2"); + umount(TDIR); + rmdir(TDIR); + exit(err); +} + +void test_test_bpffs(void) +{ + int err, duration = 0, status = 0; + pid_t pid; + + pid = fork(); + if (CHECK(pid == -1, "clone", "clone failed %d", errno)) + return; + if (pid == 0) + fn(); + err = waitpid(pid, &status, 0); + if (CHECK(err == -1 && errno != ECHILD, "waitpid", "failed %d", errno)) + return; + if (CHECK(WEXITSTATUS(status), "bpffs test ", "failed %d", WEXITSTATUS(status))) + return; +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_bprm_opts.c b/tools/testing/selftests/bpf/prog_tests/test_bprm_opts.c new file mode 100644 index 000000000000..a0054019e677 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_bprm_opts.c @@ -0,0 +1,108 @@ +// SPDX-License-Identifier: GPL-2.0 + +/* + * Copyright (C) 2020 Google LLC. + */ + +#include <test_progs.h> +#include <linux/limits.h> + +#include "bprm_opts.skel.h" +#include "network_helpers.h" +#include "task_local_storage_helpers.h" + +static const char * const bash_envp[] = { "TMPDIR=shouldnotbeset", NULL }; + +static int update_storage(int map_fd, int secureexec) +{ + int task_fd, ret = 0; + + task_fd = sys_pidfd_open(getpid(), 0); + if (task_fd < 0) + return errno; + + ret = bpf_map_update_elem(map_fd, &task_fd, &secureexec, BPF_NOEXIST); + if (ret) + ret = errno; + + close(task_fd); + return ret; +} + +static int run_set_secureexec(int map_fd, int secureexec) +{ + int child_pid, child_status, ret, null_fd; + + child_pid = fork(); + if (child_pid == 0) { + null_fd = open("/dev/null", O_WRONLY); + if (null_fd == -1) + exit(errno); + dup2(null_fd, STDOUT_FILENO); + dup2(null_fd, STDERR_FILENO); + close(null_fd); + + /* Ensure that all executions from hereon are + * secure by setting a local storage which is read by + * the bprm_creds_for_exec hook and sets bprm->secureexec. + */ + ret = update_storage(map_fd, secureexec); + if (ret) + exit(ret); + + /* If the binary is executed with securexec=1, the dynamic + * loader ingores and unsets certain variables like LD_PRELOAD, + * TMPDIR etc. TMPDIR is used here to simplify the example, as + * LD_PRELOAD requires a real .so file. + * + * If the value of TMPDIR is set, the bash command returns 10 + * and if the value is unset, it returns 20. + */ + execle("/bin/bash", "bash", "-c", + "[[ -z \"${TMPDIR}\" ]] || exit 10 && exit 20", NULL, + bash_envp); + exit(errno); + } else if (child_pid > 0) { + waitpid(child_pid, &child_status, 0); + ret = WEXITSTATUS(child_status); + + /* If a secureexec occurred, the exit status should be 20 */ + if (secureexec && ret == 20) + return 0; + + /* If normal execution happened, the exit code should be 10 */ + if (!secureexec && ret == 10) + return 0; + } + + return -EINVAL; +} + +void test_test_bprm_opts(void) +{ + int err, duration = 0; + struct bprm_opts *skel = NULL; + + skel = bprm_opts__open_and_load(); + if (CHECK(!skel, "skel_load", "skeleton failed\n")) + goto close_prog; + + err = bprm_opts__attach(skel); + if (CHECK(err, "attach", "attach failed: %d\n", err)) + goto close_prog; + + /* Run the test with the secureexec bit unset */ + err = run_set_secureexec(bpf_map__fd(skel->maps.secure_exec_task_map), + 0 /* secureexec */); + if (CHECK(err, "run_set_secureexec:0", "err = %d\n", err)) + goto close_prog; + + /* Run the test with the secureexec bit set */ + err = run_set_secureexec(bpf_map__fd(skel->maps.secure_exec_task_map), + 1 /* secureexec */); + if (CHECK(err, "run_set_secureexec:1", "err = %d\n", err)) + goto close_prog; + +close_prog: + bprm_opts__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_global_funcs.c b/tools/testing/selftests/bpf/prog_tests/test_global_funcs.c index 193002b14d7f..e905cbaf6b3d 100644 --- a/tools/testing/selftests/bpf/prog_tests/test_global_funcs.c +++ b/tools/testing/selftests/bpf/prog_tests/test_global_funcs.c @@ -1,82 +1,162 @@ // SPDX-License-Identifier: GPL-2.0 /* Copyright (c) 2020 Facebook */ #include <test_progs.h> +#include "test_global_func1.skel.h" +#include "test_global_func2.skel.h" +#include "test_global_func3.skel.h" +#include "test_global_func4.skel.h" +#include "test_global_func5.skel.h" +#include "test_global_func6.skel.h" +#include "test_global_func7.skel.h" +#include "test_global_func8.skel.h" +#include "test_global_func9.skel.h" +#include "test_global_func10.skel.h" +#include "test_global_func11.skel.h" +#include "test_global_func12.skel.h" +#include "test_global_func13.skel.h" +#include "test_global_func14.skel.h" +#include "test_global_func15.skel.h" +#include "test_global_func16.skel.h" +#include "test_global_func17.skel.h" +#include "test_global_func_ctx_args.skel.h" -const char *err_str; -bool found; +#include "bpf/libbpf_internal.h" +#include "btf_helpers.h" -static int libbpf_debug_print(enum libbpf_print_level level, - const char *format, va_list args) +static void check_ctx_arg_type(const struct btf *btf, const struct btf_param *p) { - char *log_buf; + const struct btf_type *t; + const char *s; - if (level != LIBBPF_WARN || - strcmp(format, "libbpf: \n%s\n")) { - vprintf(format, args); - return 0; + t = btf__type_by_id(btf, p->type); + if (!ASSERT_EQ(btf_kind(t), BTF_KIND_PTR, "ptr_t")) + return; + + s = btf_type_raw_dump(btf, t->type); + if (!ASSERT_HAS_SUBSTR(s, "STRUCT 'bpf_perf_event_data' size=0 vlen=0", + "ctx_struct_t")) + return; +} + +static void subtest_ctx_arg_rewrite(void) +{ + struct test_global_func_ctx_args *skel = NULL; + struct bpf_prog_info info; + char func_info_buf[1024] __attribute__((aligned(8))); + struct bpf_func_info_min *rec; + struct btf *btf = NULL; + __u32 info_len = sizeof(info); + int err, fd, i; + struct btf *kern_btf = NULL; + + kern_btf = btf__load_vmlinux_btf(); + if (!ASSERT_OK_PTR(kern_btf, "kern_btf_load")) + return; + + /* simple detection of kernel native arg:ctx tag support */ + if (btf__find_by_name_kind(kern_btf, "bpf_subprog_arg_info", BTF_KIND_STRUCT) > 0) { + test__skip(); + btf__free(kern_btf); + return; } + btf__free(kern_btf); + + skel = test_global_func_ctx_args__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; - log_buf = va_arg(args, char *); - if (!log_buf) + bpf_program__set_autoload(skel->progs.arg_tag_ctx_perf, true); + + err = test_global_func_ctx_args__load(skel); + if (!ASSERT_OK(err, "skel_load")) goto out; - if (err_str && strstr(log_buf, err_str) == 0) - found = true; -out: - printf(format, log_buf); - return 0; -} -extern int extra_prog_load_log_flags; + memset(&info, 0, sizeof(info)); + info.func_info = ptr_to_u64(&func_info_buf); + info.nr_func_info = 3; + info.func_info_rec_size = sizeof(struct bpf_func_info_min); -static int check_load(const char *file) -{ - struct bpf_prog_load_attr attr; - struct bpf_object *obj = NULL; - int err, prog_fd; - - memset(&attr, 0, sizeof(struct bpf_prog_load_attr)); - attr.file = file; - attr.prog_type = BPF_PROG_TYPE_UNSPEC; - attr.log_level = extra_prog_load_log_flags; - attr.prog_flags = BPF_F_TEST_RND_HI32; - found = false; - err = bpf_prog_load_xattr(&attr, &obj, &prog_fd); - bpf_object__close(obj); - return err; -} + fd = bpf_program__fd(skel->progs.arg_tag_ctx_perf); + err = bpf_prog_get_info_by_fd(fd, &info, &info_len); + if (!ASSERT_OK(err, "prog_info")) + goto out; + + if (!ASSERT_EQ(info.nr_func_info, 3, "nr_func_info")) + goto out; + + btf = btf__load_from_kernel_by_id(info.btf_id); + if (!ASSERT_OK_PTR(btf, "obj_kern_btf")) + goto out; + + rec = (struct bpf_func_info_min *)func_info_buf; + for (i = 0; i < info.nr_func_info; i++, rec = (void *)rec + info.func_info_rec_size) { + const struct btf_type *fn_t, *proto_t; + const char *name; + + if (rec->insn_off == 0) + continue; /* main prog, skip */ + + fn_t = btf__type_by_id(btf, rec->type_id); + if (!ASSERT_OK_PTR(fn_t, "fn_type")) + goto out; + if (!ASSERT_EQ(btf_kind(fn_t), BTF_KIND_FUNC, "fn_type_kind")) + goto out; + proto_t = btf__type_by_id(btf, fn_t->type); + if (!ASSERT_OK_PTR(proto_t, "proto_type")) + goto out; + + name = btf__name_by_offset(btf, fn_t->name_off); + if (strcmp(name, "subprog_ctx_tag") == 0) { + /* int subprog_ctx_tag(void *ctx __arg_ctx) */ + if (!ASSERT_EQ(btf_vlen(proto_t), 1, "arg_cnt")) + goto out; -struct test_def { - const char *file; - const char *err_str; -}; + /* arg 0 is PTR -> STRUCT bpf_perf_event_data */ + check_ctx_arg_type(btf, &btf_params(proto_t)[0]); + } else if (strcmp(name, "subprog_multi_ctx_tags") == 0) { + /* int subprog_multi_ctx_tags(void *ctx1 __arg_ctx, + * struct my_struct *mem, + * void *ctx2 __arg_ctx) + */ + if (!ASSERT_EQ(btf_vlen(proto_t), 3, "arg_cnt")) + goto out; + + /* arg 0 is PTR -> STRUCT bpf_perf_event_data */ + check_ctx_arg_type(btf, &btf_params(proto_t)[0]); + /* arg 2 is PTR -> STRUCT bpf_perf_event_data */ + check_ctx_arg_type(btf, &btf_params(proto_t)[2]); + } else { + ASSERT_FAIL("unexpected subprog %s", name); + goto out; + } + } + +out: + btf__free(btf); + test_global_func_ctx_args__destroy(skel); +} void test_test_global_funcs(void) { - struct test_def tests[] = { - { "test_global_func1.o", "combined stack size of 4 calls is 544" }, - { "test_global_func2.o" }, - { "test_global_func3.o" , "the call stack of 8 frames" }, - { "test_global_func4.o" }, - { "test_global_func5.o" , "expected pointer to ctx, but got PTR" }, - { "test_global_func6.o" , "modified ctx ptr R2" }, - { "test_global_func7.o" , "foo() doesn't return scalar" }, - }; - libbpf_print_fn_t old_print_fn = NULL; - int err, i, duration = 0; - - old_print_fn = libbpf_set_print(libbpf_debug_print); - - for (i = 0; i < ARRAY_SIZE(tests); i++) { - const struct test_def *test = &tests[i]; - - if (!test__start_subtest(test->file)) - continue; - - err_str = test->err_str; - err = check_load(test->file); - CHECK_FAIL(!!err ^ !!err_str); - if (err_str) - CHECK(found, "", "expected string '%s'", err_str); - } - libbpf_set_print(old_print_fn); + RUN_TESTS(test_global_func1); + RUN_TESTS(test_global_func2); + RUN_TESTS(test_global_func3); + RUN_TESTS(test_global_func4); + RUN_TESTS(test_global_func5); + RUN_TESTS(test_global_func6); + RUN_TESTS(test_global_func7); + RUN_TESTS(test_global_func8); + RUN_TESTS(test_global_func9); + RUN_TESTS(test_global_func10); + RUN_TESTS(test_global_func11); + RUN_TESTS(test_global_func12); + RUN_TESTS(test_global_func13); + RUN_TESTS(test_global_func14); + RUN_TESTS(test_global_func15); + RUN_TESTS(test_global_func16); + RUN_TESTS(test_global_func17); + RUN_TESTS(test_global_func_ctx_args); + + if (test__start_subtest("ctx_arg_rewrite")) + subtest_ctx_arg_rewrite(); } diff --git a/tools/testing/selftests/bpf/prog_tests/test_ima.c b/tools/testing/selftests/bpf/prog_tests/test_ima.c new file mode 100644 index 000000000000..810b14981c2e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_ima.c @@ -0,0 +1,240 @@ +// SPDX-License-Identifier: GPL-2.0 + +/* + * Copyright (C) 2020 Google LLC. + */ + +#include <stdio.h> +#include <stdlib.h> +#include <unistd.h> +#include <sys/wait.h> +#include <test_progs.h> +#include <linux/ring_buffer.h> + +#include "ima.skel.h" + +#define MAX_SAMPLES 4 + +static int _run_measured_process(const char *measured_dir, u32 *monitored_pid, + const char *cmd) +{ + int child_pid, child_status; + + child_pid = fork(); + if (child_pid == 0) { + *monitored_pid = getpid(); + execlp("./ima_setup.sh", "./ima_setup.sh", cmd, measured_dir, + NULL); + exit(errno); + + } else if (child_pid > 0) { + waitpid(child_pid, &child_status, 0); + return WEXITSTATUS(child_status); + } + + return -EINVAL; +} + +static int run_measured_process(const char *measured_dir, u32 *monitored_pid) +{ + return _run_measured_process(measured_dir, monitored_pid, "run"); +} + +static u64 ima_hash_from_bpf[MAX_SAMPLES]; +static int ima_hash_from_bpf_idx; + +static int process_sample(void *ctx, void *data, size_t len) +{ + if (ima_hash_from_bpf_idx >= MAX_SAMPLES) + return -ENOSPC; + + ima_hash_from_bpf[ima_hash_from_bpf_idx++] = *((u64 *)data); + return 0; +} + +static void test_init(struct ima__bss *bss) +{ + ima_hash_from_bpf_idx = 0; + + bss->use_ima_file_hash = false; + bss->enable_bprm_creds_for_exec = false; + bss->enable_kernel_read_file = false; + bss->test_deny = false; +} + +void test_test_ima(void) +{ + char measured_dir_template[] = "/tmp/ima_measuredXXXXXX"; + struct ring_buffer *ringbuf = NULL; + const char *measured_dir; + u64 bin_true_sample; + char cmd[256]; + + int err, duration = 0, fresh_digest_idx = 0; + struct ima *skel = NULL; + + skel = ima__open_and_load(); + if (CHECK(!skel, "skel_load", "skeleton failed\n")) + goto close_prog; + + ringbuf = ring_buffer__new(bpf_map__fd(skel->maps.ringbuf), + process_sample, NULL, NULL); + if (!ASSERT_OK_PTR(ringbuf, "ringbuf")) + goto close_prog; + + err = ima__attach(skel); + if (CHECK(err, "attach", "attach failed: %d\n", err)) + goto close_prog; + + measured_dir = mkdtemp(measured_dir_template); + if (CHECK(measured_dir == NULL, "mkdtemp", "err %d\n", errno)) + goto close_prog; + + snprintf(cmd, sizeof(cmd), "./ima_setup.sh setup %s", measured_dir); + err = system(cmd); + if (CHECK(err, "failed to run command", "%s, errno = %d\n", cmd, errno)) + goto close_clean; + + /* + * Test #1 + * - Goal: obtain a sample with the bpf_ima_inode_hash() helper + * - Expected result: 1 sample (/bin/true) + */ + test_init(skel->bss); + err = run_measured_process(measured_dir, &skel->bss->monitored_pid); + if (CHECK(err, "run_measured_process #1", "err = %d\n", err)) + goto close_clean; + + err = ring_buffer__consume(ringbuf); + ASSERT_EQ(err, 1, "num_samples_or_err"); + ASSERT_NEQ(ima_hash_from_bpf[0], 0, "ima_hash"); + + /* + * Test #2 + * - Goal: obtain samples with the bpf_ima_file_hash() helper + * - Expected result: 2 samples (./ima_setup.sh, /bin/true) + */ + test_init(skel->bss); + skel->bss->use_ima_file_hash = true; + err = run_measured_process(measured_dir, &skel->bss->monitored_pid); + if (CHECK(err, "run_measured_process #2", "err = %d\n", err)) + goto close_clean; + + err = ring_buffer__consume(ringbuf); + ASSERT_EQ(err, 2, "num_samples_or_err"); + ASSERT_NEQ(ima_hash_from_bpf[0], 0, "ima_hash"); + ASSERT_NEQ(ima_hash_from_bpf[1], 0, "ima_hash"); + bin_true_sample = ima_hash_from_bpf[1]; + + /* + * Test #3 + * - Goal: confirm that bpf_ima_inode_hash() returns a non-fresh digest + * - Expected result: + * 1 sample (/bin/true: fresh) if commit 62622dab0a28 applied + * 2 samples (/bin/true: non-fresh, fresh) if commit 62622dab0a28 is + * not applied + * + * If commit 62622dab0a28 ("ima: return IMA digest value only when + * IMA_COLLECTED flag is set") is applied, bpf_ima_inode_hash() refuses + * to give a non-fresh digest, hence the correct result is 1 instead of + * 2. + */ + test_init(skel->bss); + + err = _run_measured_process(measured_dir, &skel->bss->monitored_pid, + "modify-bin"); + if (CHECK(err, "modify-bin #3", "err = %d\n", err)) + goto close_clean; + + skel->bss->enable_bprm_creds_for_exec = true; + err = run_measured_process(measured_dir, &skel->bss->monitored_pid); + if (CHECK(err, "run_measured_process #3", "err = %d\n", err)) + goto close_clean; + + err = ring_buffer__consume(ringbuf); + ASSERT_GE(err, 1, "num_samples_or_err"); + if (err == 2) { + ASSERT_NEQ(ima_hash_from_bpf[0], 0, "ima_hash"); + ASSERT_EQ(ima_hash_from_bpf[0], bin_true_sample, + "sample_equal_or_err"); + fresh_digest_idx = 1; + } + + ASSERT_NEQ(ima_hash_from_bpf[fresh_digest_idx], 0, "ima_hash"); + /* IMA refreshed the digest. */ + ASSERT_NEQ(ima_hash_from_bpf[fresh_digest_idx], bin_true_sample, + "sample_equal_or_err"); + + /* + * Test #4 + * - Goal: verify that bpf_ima_file_hash() returns a fresh digest + * - Expected result: 4 samples (./ima_setup.sh: fresh, fresh; + * /bin/true: fresh, fresh) + */ + test_init(skel->bss); + skel->bss->use_ima_file_hash = true; + skel->bss->enable_bprm_creds_for_exec = true; + err = run_measured_process(measured_dir, &skel->bss->monitored_pid); + if (CHECK(err, "run_measured_process #4", "err = %d\n", err)) + goto close_clean; + + err = ring_buffer__consume(ringbuf); + ASSERT_EQ(err, 4, "num_samples_or_err"); + ASSERT_NEQ(ima_hash_from_bpf[0], 0, "ima_hash"); + ASSERT_NEQ(ima_hash_from_bpf[1], 0, "ima_hash"); + ASSERT_NEQ(ima_hash_from_bpf[2], 0, "ima_hash"); + ASSERT_NEQ(ima_hash_from_bpf[3], 0, "ima_hash"); + ASSERT_NEQ(ima_hash_from_bpf[2], bin_true_sample, + "sample_different_or_err"); + ASSERT_EQ(ima_hash_from_bpf[3], ima_hash_from_bpf[2], + "sample_equal_or_err"); + + skel->bss->use_ima_file_hash = false; + skel->bss->enable_bprm_creds_for_exec = false; + err = _run_measured_process(measured_dir, &skel->bss->monitored_pid, + "restore-bin"); + if (CHECK(err, "restore-bin #3", "err = %d\n", err)) + goto close_clean; + + /* + * Test #5 + * - Goal: obtain a sample from the kernel_read_file hook + * - Expected result: 2 samples (./ima_setup.sh, policy_test) + */ + test_init(skel->bss); + skel->bss->use_ima_file_hash = true; + skel->bss->enable_kernel_read_file = true; + err = _run_measured_process(measured_dir, &skel->bss->monitored_pid, + "load-policy"); + if (CHECK(err, "run_measured_process #5", "err = %d\n", err)) + goto close_clean; + + err = ring_buffer__consume(ringbuf); + ASSERT_EQ(err, 2, "num_samples_or_err"); + ASSERT_NEQ(ima_hash_from_bpf[0], 0, "ima_hash"); + ASSERT_NEQ(ima_hash_from_bpf[1], 0, "ima_hash"); + + /* + * Test #6 + * - Goal: ensure that the kernel_read_file hook denies an operation + * - Expected result: 0 samples + */ + test_init(skel->bss); + skel->bss->enable_kernel_read_file = true; + skel->bss->test_deny = true; + err = _run_measured_process(measured_dir, &skel->bss->monitored_pid, + "load-policy"); + if (CHECK(!err, "run_measured_process #6", "err = %d\n", err)) + goto close_clean; + + err = ring_buffer__consume(ringbuf); + ASSERT_EQ(err, 0, "num_samples_or_err"); + +close_clean: + snprintf(cmd, sizeof(cmd), "./ima_setup.sh cleanup %s", measured_dir); + err = system(cmd); + CHECK(err, "failed to run command", "%s, errno = %d\n", cmd, errno); +close_prog: + ring_buffer__free(ringbuf); + ima__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_ldsx_insn.c b/tools/testing/selftests/bpf/prog_tests/test_ldsx_insn.c new file mode 100644 index 000000000000..375677c19146 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_ldsx_insn.c @@ -0,0 +1,139 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates.*/ + +#include <test_progs.h> +#include <network_helpers.h> +#include "test_ldsx_insn.skel.h" + +static void test_map_val_and_probed_memory(void) +{ + struct test_ldsx_insn *skel; + int err; + + skel = test_ldsx_insn__open(); + if (!ASSERT_OK_PTR(skel, "test_ldsx_insn__open")) + return; + + if (skel->rodata->skip) { + test__skip(); + goto out; + } + + bpf_program__set_autoload(skel->progs.rdonly_map_prog, true); + bpf_program__set_autoload(skel->progs.map_val_prog, true); + bpf_program__set_autoload(skel->progs.test_ptr_struct_arg, true); + + err = test_ldsx_insn__load(skel); + if (!ASSERT_OK(err, "test_ldsx_insn__load")) + goto out; + + err = test_ldsx_insn__attach(skel); + if (!ASSERT_OK(err, "test_ldsx_insn__attach")) + goto out; + + ASSERT_OK(trigger_module_test_read(256), "trigger_read"); + + ASSERT_EQ(skel->bss->done1, 1, "done1"); + ASSERT_EQ(skel->bss->ret1, 1, "ret1"); + ASSERT_EQ(skel->bss->done2, 1, "done2"); + ASSERT_EQ(skel->bss->ret2, 1, "ret2"); + ASSERT_EQ(skel->bss->int_member, -1, "int_member"); + +out: + test_ldsx_insn__destroy(skel); +} + +static void test_ctx_member_sign_ext(void) +{ + struct test_ldsx_insn *skel; + int err, fd, cgroup_fd; + char buf[16] = {0}; + socklen_t optlen; + + cgroup_fd = test__join_cgroup("/ldsx_test"); + if (!ASSERT_GE(cgroup_fd, 0, "join_cgroup /ldsx_test")) + return; + + skel = test_ldsx_insn__open(); + if (!ASSERT_OK_PTR(skel, "test_ldsx_insn__open")) + goto close_cgroup_fd; + + if (skel->rodata->skip) { + test__skip(); + goto destroy_skel; + } + + bpf_program__set_autoload(skel->progs._getsockopt, true); + + err = test_ldsx_insn__load(skel); + if (!ASSERT_OK(err, "test_ldsx_insn__load")) + goto destroy_skel; + + skel->links._getsockopt = + bpf_program__attach_cgroup(skel->progs._getsockopt, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links._getsockopt, "getsockopt_link")) + goto destroy_skel; + + fd = socket(AF_INET, SOCK_STREAM, 0); + if (!ASSERT_GE(fd, 0, "socket")) + goto destroy_skel; + + optlen = sizeof(buf); + (void)getsockopt(fd, SOL_IP, IP_TTL, buf, &optlen); + + ASSERT_EQ(skel->bss->set_optlen, -1, "optlen"); + ASSERT_EQ(skel->bss->set_retval, -1, "retval"); + + close(fd); +destroy_skel: + test_ldsx_insn__destroy(skel); +close_cgroup_fd: + close(cgroup_fd); +} + +static void test_ctx_member_narrow_sign_ext(void) +{ + struct test_ldsx_insn *skel; + struct __sk_buff skb = {}; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .ctx_in = &skb, + .ctx_size_in = sizeof(skb), + ); + int err, prog_fd; + + skel = test_ldsx_insn__open(); + if (!ASSERT_OK_PTR(skel, "test_ldsx_insn__open")) + return; + + if (skel->rodata->skip) { + test__skip(); + goto out; + } + + bpf_program__set_autoload(skel->progs._tc, true); + + err = test_ldsx_insn__load(skel); + if (!ASSERT_OK(err, "test_ldsx_insn__load")) + goto out; + + prog_fd = bpf_program__fd(skel->progs._tc); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + + ASSERT_EQ(skel->bss->set_mark, -2, "set_mark"); + +out: + test_ldsx_insn__destroy(skel); +} + +void test_ldsx_insn(void) +{ + if (test__start_subtest("map_val and probed_memory")) + test_map_val_and_probed_memory(); + if (test__start_subtest("ctx_member_sign_ext")) + test_ctx_member_sign_ext(); + if (test__start_subtest("ctx_member_narrow_sign_ext")) + test_ctx_member_narrow_sign_ext(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_local_storage.c b/tools/testing/selftests/bpf/prog_tests/test_local_storage.c new file mode 100644 index 000000000000..bcf2e1905ed7 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_local_storage.c @@ -0,0 +1,172 @@ +// SPDX-License-Identifier: GPL-2.0 + +/* + * Copyright (C) 2020 Google LLC. + */ + +#include <asm-generic/errno-base.h> +#include <sys/stat.h> +#include <test_progs.h> +#include <linux/limits.h> + +#include "local_storage.skel.h" +#include "network_helpers.h" +#include "task_local_storage_helpers.h" + +#define TEST_STORAGE_VALUE 0xbeefdead + +struct storage { + void *inode; + unsigned int value; +}; + +/* Fork and exec the provided rm binary and return the exit code of the + * forked process and its pid. + */ +static int run_self_unlink(struct local_storage *skel, const char *rm_path) +{ + int child_pid, child_status, ret; + int null_fd; + + child_pid = fork(); + if (child_pid == 0) { + null_fd = open("/dev/null", O_WRONLY); + dup2(null_fd, STDOUT_FILENO); + dup2(null_fd, STDERR_FILENO); + close(null_fd); + + skel->bss->monitored_pid = getpid(); + /* Use the copied /usr/bin/rm to delete itself + * /tmp/copy_of_rm /tmp/copy_of_rm. + */ + ret = execlp(rm_path, rm_path, rm_path, NULL); + if (ret) + exit(errno); + } else if (child_pid > 0) { + waitpid(child_pid, &child_status, 0); + ASSERT_EQ(skel->data->task_storage_result, 0, "task_storage_result"); + return WEXITSTATUS(child_status); + } + + return -EINVAL; +} + +static bool check_syscall_operations(int map_fd, int obj_fd) +{ + struct storage val = { .value = TEST_STORAGE_VALUE }, + lookup_val = { .value = 0 }; + int err; + + /* Looking up an existing element should fail initially */ + err = bpf_map_lookup_elem_flags(map_fd, &obj_fd, &lookup_val, 0); + if (!ASSERT_EQ(err, -ENOENT, "bpf_map_lookup_elem")) + return false; + + /* Create a new element */ + err = bpf_map_update_elem(map_fd, &obj_fd, &val, BPF_NOEXIST); + if (!ASSERT_OK(err, "bpf_map_update_elem")) + return false; + + /* Lookup the newly created element */ + err = bpf_map_lookup_elem_flags(map_fd, &obj_fd, &lookup_val, 0); + if (!ASSERT_OK(err, "bpf_map_lookup_elem")) + return false; + + /* Check the value of the newly created element */ + if (!ASSERT_EQ(lookup_val.value, val.value, "bpf_map_lookup_elem")) + return false; + + err = bpf_map_delete_elem(map_fd, &obj_fd); + if (!ASSERT_OK(err, "bpf_map_delete_elem()")) + return false; + + /* The lookup should fail, now that the element has been deleted */ + err = bpf_map_lookup_elem_flags(map_fd, &obj_fd, &lookup_val, 0); + if (!ASSERT_EQ(err, -ENOENT, "bpf_map_lookup_elem")) + return false; + + return true; +} + +void test_test_local_storage(void) +{ + char tmp_dir_path[] = "/tmp/local_storageXXXXXX"; + int err, serv_sk = -1, task_fd = -1, rm_fd = -1; + struct local_storage *skel = NULL; + char tmp_exec_path[64]; + char cmd[256]; + + skel = local_storage__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_load")) + goto close_prog; + + err = local_storage__attach(skel); + if (!ASSERT_OK(err, "attach")) + goto close_prog; + + task_fd = sys_pidfd_open(getpid(), 0); + if (!ASSERT_GE(task_fd, 0, "pidfd_open")) + goto close_prog; + + if (!check_syscall_operations(bpf_map__fd(skel->maps.task_storage_map), + task_fd)) + goto close_prog; + + if (!ASSERT_OK_PTR(mkdtemp(tmp_dir_path), "mkdtemp")) + goto close_prog; + + snprintf(tmp_exec_path, sizeof(tmp_exec_path), "%s/copy_of_rm", + tmp_dir_path); + snprintf(cmd, sizeof(cmd), "cp /bin/rm %s", tmp_exec_path); + if (!ASSERT_OK(system(cmd), "system(cp)")) + goto close_prog_rmdir; + + rm_fd = open(tmp_exec_path, O_RDONLY); + if (!ASSERT_GE(rm_fd, 0, "open(tmp_exec_path)")) + goto close_prog_rmdir; + + if (!check_syscall_operations(bpf_map__fd(skel->maps.inode_storage_map), + rm_fd)) + goto close_prog_rmdir; + + /* Sets skel->bss->monitored_pid to the pid of the forked child + * forks a child process that executes tmp_exec_path and tries to + * unlink its executable. This operation should be denied by the loaded + * LSM program. + */ + err = run_self_unlink(skel, tmp_exec_path); + if (!ASSERT_EQ(err, EPERM, "run_self_unlink")) + goto close_prog_rmdir; + + /* Set the process being monitored to be the current process */ + skel->bss->monitored_pid = getpid(); + + /* Move copy_of_rm to a new location so that it triggers the + * inode_rename LSM hook with a new_dentry that has a NULL inode ptr. + */ + snprintf(cmd, sizeof(cmd), "mv %s/copy_of_rm %s/check_null_ptr", + tmp_dir_path, tmp_dir_path); + if (!ASSERT_OK(system(cmd), "system(mv)")) + goto close_prog_rmdir; + + ASSERT_EQ(skel->data->inode_storage_result, 0, "inode_storage_result"); + + serv_sk = start_server(AF_INET6, SOCK_STREAM, NULL, 0, 0); + if (!ASSERT_GE(serv_sk, 0, "start_server")) + goto close_prog_rmdir; + + ASSERT_EQ(skel->data->sk_storage_result, 0, "sk_storage_result"); + + if (!check_syscall_operations(bpf_map__fd(skel->maps.sk_storage_map), + serv_sk)) + goto close_prog_rmdir; + +close_prog_rmdir: + snprintf(cmd, sizeof(cmd), "rm -rf %s", tmp_dir_path); + system(cmd); +close_prog: + close(serv_sk); + close(rm_fd); + close(task_fd); + local_storage__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_lsm.c b/tools/testing/selftests/bpf/prog_tests/test_lsm.c index b17eb2045c1d..16175d579bc7 100644 --- a/tools/testing/selftests/bpf/prog_tests/test_lsm.c +++ b/tools/testing/selftests/bpf/prog_tests/test_lsm.c @@ -51,35 +51,65 @@ int exec_cmd(int *monitored_pid) return -EINVAL; } -void test_test_lsm(void) +static int test_lsm(struct lsm *skel) { - struct lsm *skel = NULL; - int err, duration = 0; - - skel = lsm__open_and_load(); - if (CHECK(!skel, "skel_load", "lsm skeleton failed\n")) - goto close_prog; + struct bpf_link *link; + int buf = 1234; + int err; err = lsm__attach(skel); - if (CHECK(err, "attach", "lsm attach failed: %d\n", err)) - goto close_prog; + if (!ASSERT_OK(err, "attach")) + return err; + + /* Check that already linked program can't be attached again. */ + link = bpf_program__attach(skel->progs.test_int_hook); + if (!ASSERT_ERR_PTR(link, "attach_link")) + return -1; err = exec_cmd(&skel->bss->monitored_pid); - if (CHECK(err < 0, "exec_cmd", "err %d errno %d\n", err, errno)) - goto close_prog; + if (!ASSERT_OK(err, "exec_cmd")) + return err; - CHECK(skel->bss->bprm_count != 1, "bprm_count", "bprm_count = %d\n", - skel->bss->bprm_count); + ASSERT_EQ(skel->bss->bprm_count, 1, "bprm_count"); skel->bss->monitored_pid = getpid(); err = stack_mprotect(); - if (CHECK(errno != EPERM, "stack_mprotect", "want err=EPERM, got %d\n", - errno)) + if (!ASSERT_EQ(err, -1, "stack_mprotect") || + !ASSERT_EQ(errno, EPERM, "stack_mprotect")) + return err; + + ASSERT_EQ(skel->bss->mprotect_count, 1, "mprotect_count"); + + syscall(__NR_setdomainname, &buf, -2L); + syscall(__NR_setdomainname, 0, -3L); + syscall(__NR_setdomainname, ~0L, -4L); + + ASSERT_EQ(skel->bss->copy_test, 3, "copy_test"); + + lsm__detach(skel); + + skel->bss->copy_test = 0; + skel->bss->bprm_count = 0; + skel->bss->mprotect_count = 0; + return 0; +} + +void test_test_lsm(void) +{ + struct lsm *skel = NULL; + int err; + + skel = lsm__open_and_load(); + if (!ASSERT_OK_PTR(skel, "lsm_skel_load")) + goto close_prog; + + err = test_lsm(skel); + if (!ASSERT_OK(err, "test_lsm_first_attach")) goto close_prog; - CHECK(skel->bss->mprotect_count != 1, "mprotect_count", - "mprotect_count = %d\n", skel->bss->mprotect_count); + err = test_lsm(skel); + ASSERT_OK(err, "test_lsm_second_attach"); close_prog: lsm__destroy(skel); diff --git a/tools/testing/selftests/bpf/prog_tests/test_overhead.c b/tools/testing/selftests/bpf/prog_tests/test_overhead.c index 2702df2b2343..f27013e38d03 100644 --- a/tools/testing/selftests/bpf/prog_tests/test_overhead.c +++ b/tools/testing/selftests/bpf/prog_tests/test_overhead.c @@ -56,15 +56,14 @@ static void setaffinity(void) void test_test_overhead(void) { - const char *kprobe_name = "kprobe/__set_task_comm"; - const char *kretprobe_name = "kretprobe/__set_task_comm"; - const char *raw_tp_name = "raw_tp/task_rename"; - const char *fentry_name = "fentry/__set_task_comm"; - const char *fexit_name = "fexit/__set_task_comm"; - const char *fmodret_name = "fmod_ret/__set_task_comm"; + const char *kprobe_name = "prog1"; + const char *kretprobe_name = "prog2"; + const char *raw_tp_name = "prog3"; + const char *fentry_name = "prog4"; + const char *fexit_name = "prog5"; const char *kprobe_func = "__set_task_comm"; struct bpf_program *kprobe_prog, *kretprobe_prog, *raw_tp_prog; - struct bpf_program *fentry_prog, *fexit_prog, *fmodret_prog; + struct bpf_program *fentry_prog, *fexit_prog; struct bpf_object *obj; struct bpf_link *link; int err, duration = 0; @@ -73,35 +72,30 @@ void test_test_overhead(void) if (CHECK_FAIL(prctl(PR_GET_NAME, comm, 0L, 0L, 0L))) return; - obj = bpf_object__open_file("./test_overhead.o", NULL); - if (CHECK(IS_ERR(obj), "obj_open_file", "err %ld\n", PTR_ERR(obj))) + obj = bpf_object__open_file("./test_overhead.bpf.o", NULL); + if (!ASSERT_OK_PTR(obj, "obj_open_file")) return; - kprobe_prog = bpf_object__find_program_by_title(obj, kprobe_name); + kprobe_prog = bpf_object__find_program_by_name(obj, kprobe_name); if (CHECK(!kprobe_prog, "find_probe", "prog '%s' not found\n", kprobe_name)) goto cleanup; - kretprobe_prog = bpf_object__find_program_by_title(obj, kretprobe_name); + kretprobe_prog = bpf_object__find_program_by_name(obj, kretprobe_name); if (CHECK(!kretprobe_prog, "find_probe", "prog '%s' not found\n", kretprobe_name)) goto cleanup; - raw_tp_prog = bpf_object__find_program_by_title(obj, raw_tp_name); + raw_tp_prog = bpf_object__find_program_by_name(obj, raw_tp_name); if (CHECK(!raw_tp_prog, "find_probe", "prog '%s' not found\n", raw_tp_name)) goto cleanup; - fentry_prog = bpf_object__find_program_by_title(obj, fentry_name); + fentry_prog = bpf_object__find_program_by_name(obj, fentry_name); if (CHECK(!fentry_prog, "find_probe", "prog '%s' not found\n", fentry_name)) goto cleanup; - fexit_prog = bpf_object__find_program_by_title(obj, fexit_name); + fexit_prog = bpf_object__find_program_by_name(obj, fexit_name); if (CHECK(!fexit_prog, "find_probe", "prog '%s' not found\n", fexit_name)) goto cleanup; - fmodret_prog = bpf_object__find_program_by_title(obj, fmodret_name); - if (CHECK(!fmodret_prog, "find_probe", - "prog '%s' not found\n", fmodret_name)) - goto cleanup; - err = bpf_object__load(obj); if (CHECK(err, "obj_load", "err %d\n", err)) goto cleanup; @@ -114,7 +108,7 @@ void test_test_overhead(void) /* attach kprobe */ link = bpf_program__attach_kprobe(kprobe_prog, false /* retprobe */, kprobe_func); - if (CHECK(IS_ERR(link), "attach_kprobe", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_kprobe")) goto cleanup; test_run("kprobe"); bpf_link__destroy(link); @@ -122,38 +116,32 @@ void test_test_overhead(void) /* attach kretprobe */ link = bpf_program__attach_kprobe(kretprobe_prog, true /* retprobe */, kprobe_func); - if (CHECK(IS_ERR(link), "attach kretprobe", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_kretprobe")) goto cleanup; test_run("kretprobe"); bpf_link__destroy(link); /* attach raw_tp */ link = bpf_program__attach_raw_tracepoint(raw_tp_prog, "task_rename"); - if (CHECK(IS_ERR(link), "attach fentry", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_raw_tp")) goto cleanup; test_run("raw_tp"); bpf_link__destroy(link); /* attach fentry */ link = bpf_program__attach_trace(fentry_prog); - if (CHECK(IS_ERR(link), "attach fentry", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_fentry")) goto cleanup; test_run("fentry"); bpf_link__destroy(link); /* attach fexit */ link = bpf_program__attach_trace(fexit_prog); - if (CHECK(IS_ERR(link), "attach fexit", "err %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "attach_fexit")) goto cleanup; test_run("fexit"); bpf_link__destroy(link); - /* attach fmod_ret */ - link = bpf_program__attach_trace(fmodret_prog); - if (CHECK(IS_ERR(link), "attach fmod_ret", "err %ld\n", PTR_ERR(link))) - goto cleanup; - test_run("fmod_ret"); - bpf_link__destroy(link); cleanup: prctl(PR_SET_NAME, comm, 0L, 0L, 0L); bpf_object__close(obj); diff --git a/tools/testing/selftests/bpf/prog_tests/test_profiler.c b/tools/testing/selftests/bpf/prog_tests/test_profiler.c new file mode 100644 index 000000000000..de24e8f0e738 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_profiler.c @@ -0,0 +1,72 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ +#include <test_progs.h> +#include "progs/profiler.h" +#include "profiler1.skel.h" +#include "profiler2.skel.h" +#include "profiler3.skel.h" + +static int sanity_run(struct bpf_program *prog) +{ + LIBBPF_OPTS(bpf_test_run_opts, test_attr); + __u64 args[] = {1, 2, 3}; + int err, prog_fd; + + prog_fd = bpf_program__fd(prog); + test_attr.ctx_in = args; + test_attr.ctx_size_in = sizeof(args); + err = bpf_prog_test_run_opts(prog_fd, &test_attr); + if (!ASSERT_OK(err, "test_run")) + return -1; + + if (!ASSERT_OK(test_attr.retval, "test_run retval")) + return -1; + + return 0; +} + +void test_test_profiler(void) +{ + struct profiler1 *profiler1_skel = NULL; + struct profiler2 *profiler2_skel = NULL; + struct profiler3 *profiler3_skel = NULL; + __u32 duration = 0; + int err; + + profiler1_skel = profiler1__open_and_load(); + if (CHECK(!profiler1_skel, "profiler1_skel_load", "profiler1 skeleton failed\n")) + goto cleanup; + + err = profiler1__attach(profiler1_skel); + if (CHECK(err, "profiler1_attach", "profiler1 attach failed: %d\n", err)) + goto cleanup; + + if (sanity_run(profiler1_skel->progs.raw_tracepoint__sched_process_exec)) + goto cleanup; + + profiler2_skel = profiler2__open_and_load(); + if (CHECK(!profiler2_skel, "profiler2_skel_load", "profiler2 skeleton failed\n")) + goto cleanup; + + err = profiler2__attach(profiler2_skel); + if (CHECK(err, "profiler2_attach", "profiler2 attach failed: %d\n", err)) + goto cleanup; + + if (sanity_run(profiler2_skel->progs.raw_tracepoint__sched_process_exec)) + goto cleanup; + + profiler3_skel = profiler3__open_and_load(); + if (CHECK(!profiler3_skel, "profiler3_skel_load", "profiler3 skeleton failed\n")) + goto cleanup; + + err = profiler3__attach(profiler3_skel); + if (CHECK(err, "profiler3_attach", "profiler3 attach failed: %d\n", err)) + goto cleanup; + + if (sanity_run(profiler3_skel->progs.raw_tracepoint__sched_process_exec)) + goto cleanup; +cleanup: + profiler1__destroy(profiler1_skel); + profiler2__destroy(profiler2_skel); + profiler3__destroy(profiler3_skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_skb_pkt_end.c b/tools/testing/selftests/bpf/prog_tests/test_skb_pkt_end.c new file mode 100644 index 000000000000..ae93411fd582 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_skb_pkt_end.c @@ -0,0 +1,44 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2020 Facebook */ +#include <test_progs.h> +#include <network_helpers.h> +#include "skb_pkt_end.skel.h" + +static int sanity_run(struct bpf_program *prog) +{ + int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + prog_fd = bpf_program__fd(prog); + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run")) + return -1; + if (!ASSERT_EQ(topts.retval, 123, "test_run retval")) + return -1; + return 0; +} + +void test_test_skb_pkt_end(void) +{ + struct skb_pkt_end *skb_pkt_end_skel = NULL; + __u32 duration = 0; + int err; + + skb_pkt_end_skel = skb_pkt_end__open_and_load(); + if (CHECK(!skb_pkt_end_skel, "skb_pkt_end_skel_load", "skb_pkt_end skeleton failed\n")) + goto cleanup; + + err = skb_pkt_end__attach(skb_pkt_end_skel); + if (CHECK(err, "skb_pkt_end_attach", "skb_pkt_end attach failed: %d\n", err)) + goto cleanup; + + if (sanity_run(skb_pkt_end_skel->progs.main_prog)) + goto cleanup; + +cleanup: + skb_pkt_end__destroy(skb_pkt_end_skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_strncmp.c b/tools/testing/selftests/bpf/prog_tests/test_strncmp.c new file mode 100644 index 000000000000..7ddd6615b7e7 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_strncmp.c @@ -0,0 +1,148 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2021. Huawei Technologies Co., Ltd */ +#include <test_progs.h> +#include "strncmp_test.skel.h" + +static int trigger_strncmp(const struct strncmp_test *skel) +{ + int cmp; + + usleep(1); + + cmp = skel->bss->cmp_ret; + if (cmp > 0) + return 1; + if (cmp < 0) + return -1; + return 0; +} + +/* + * Compare str and target after making str[i] != target[i]. + * When exp is -1, make str[i] < target[i] and delta = -1. + */ +static void strncmp_full_str_cmp(struct strncmp_test *skel, const char *name, + int exp) +{ + size_t nr = sizeof(skel->bss->str); + char *str = skel->bss->str; + int delta = exp; + int got; + size_t i; + + memcpy(str, skel->rodata->target, nr); + for (i = 0; i < nr - 1; i++) { + str[i] += delta; + + got = trigger_strncmp(skel); + ASSERT_EQ(got, exp, name); + + str[i] -= delta; + } +} + +static void test_strncmp_ret(void) +{ + struct strncmp_test *skel; + int err, got; + + skel = strncmp_test__open(); + if (!ASSERT_OK_PTR(skel, "strncmp_test open")) + return; + + bpf_program__set_autoload(skel->progs.do_strncmp, true); + + err = strncmp_test__load(skel); + if (!ASSERT_EQ(err, 0, "strncmp_test load")) + goto out; + + err = strncmp_test__attach(skel); + if (!ASSERT_EQ(err, 0, "strncmp_test attach")) + goto out; + + skel->bss->target_pid = getpid(); + + /* Empty str */ + skel->bss->str[0] = '\0'; + got = trigger_strncmp(skel); + ASSERT_EQ(got, -1, "strncmp: empty str"); + + /* Same string */ + memcpy(skel->bss->str, skel->rodata->target, sizeof(skel->bss->str)); + got = trigger_strncmp(skel); + ASSERT_EQ(got, 0, "strncmp: same str"); + + /* Not-null-termainted string */ + memcpy(skel->bss->str, skel->rodata->target, sizeof(skel->bss->str)); + skel->bss->str[sizeof(skel->bss->str) - 1] = 'A'; + got = trigger_strncmp(skel); + ASSERT_EQ(got, 1, "strncmp: not-null-term str"); + + strncmp_full_str_cmp(skel, "strncmp: less than", -1); + strncmp_full_str_cmp(skel, "strncmp: greater than", 1); +out: + strncmp_test__destroy(skel); +} + +static void test_strncmp_bad_not_const_str_size(void) +{ + struct strncmp_test *skel; + int err; + + skel = strncmp_test__open(); + if (!ASSERT_OK_PTR(skel, "strncmp_test open")) + return; + + bpf_program__set_autoload(skel->progs.strncmp_bad_not_const_str_size, true); + + err = strncmp_test__load(skel); + ASSERT_ERR(err, "strncmp_test load bad_not_const_str_size"); + + strncmp_test__destroy(skel); +} + +static void test_strncmp_bad_writable_target(void) +{ + struct strncmp_test *skel; + int err; + + skel = strncmp_test__open(); + if (!ASSERT_OK_PTR(skel, "strncmp_test open")) + return; + + bpf_program__set_autoload(skel->progs.strncmp_bad_writable_target, true); + + err = strncmp_test__load(skel); + ASSERT_ERR(err, "strncmp_test load bad_writable_target"); + + strncmp_test__destroy(skel); +} + +static void test_strncmp_bad_not_null_term_target(void) +{ + struct strncmp_test *skel; + int err; + + skel = strncmp_test__open(); + if (!ASSERT_OK_PTR(skel, "strncmp_test open")) + return; + + bpf_program__set_autoload(skel->progs.strncmp_bad_not_null_term_target, true); + + err = strncmp_test__load(skel); + ASSERT_ERR(err, "strncmp_test load bad_not_null_term_target"); + + strncmp_test__destroy(skel); +} + +void test_test_strncmp(void) +{ + if (test__start_subtest("strncmp_ret")) + test_strncmp_ret(); + if (test__start_subtest("strncmp_bad_not_const_str_size")) + test_strncmp_bad_not_const_str_size(); + if (test__start_subtest("strncmp_bad_writable_target")) + test_strncmp_bad_writable_target(); + if (test__start_subtest("strncmp_bad_not_null_term_target")) + test_strncmp_bad_not_null_term_target(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_struct_ops_maybe_null.c b/tools/testing/selftests/bpf/prog_tests/test_struct_ops_maybe_null.c new file mode 100644 index 000000000000..01dc2613c8a5 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_struct_ops_maybe_null.c @@ -0,0 +1,46 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> + +#include "struct_ops_maybe_null.skel.h" +#include "struct_ops_maybe_null_fail.skel.h" + +/* Test that the verifier accepts a program that access a nullable pointer + * with a proper check. + */ +static void maybe_null(void) +{ + struct struct_ops_maybe_null *skel; + + skel = struct_ops_maybe_null__open_and_load(); + if (!ASSERT_OK_PTR(skel, "struct_ops_module_open_and_load")) + return; + + struct_ops_maybe_null__destroy(skel); +} + +/* Test that the verifier rejects a program that access a nullable pointer + * without a check beforehand. + */ +static void maybe_null_fail(void) +{ + struct struct_ops_maybe_null_fail *skel; + + skel = struct_ops_maybe_null_fail__open_and_load(); + if (ASSERT_ERR_PTR(skel, "struct_ops_module_fail__open_and_load")) + return; + + struct_ops_maybe_null_fail__destroy(skel); +} + +void test_struct_ops_maybe_null(void) +{ + /* The verifier verifies the programs at load time, so testing both + * programs in the same compile-unit is complicated. We run them in + * separate objects to simplify the testing. + */ + if (test__start_subtest("maybe_null")) + maybe_null(); + if (test__start_subtest("maybe_null_fail")) + maybe_null_fail(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_struct_ops_module.c b/tools/testing/selftests/bpf/prog_tests/test_struct_ops_module.c new file mode 100644 index 000000000000..29e183a80f49 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_struct_ops_module.c @@ -0,0 +1,258 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include <time.h> + +#include "struct_ops_module.skel.h" +#include "struct_ops_nulled_out_cb.skel.h" +#include "struct_ops_forgotten_cb.skel.h" + +static void check_map_info(struct bpf_map_info *info) +{ + struct bpf_btf_info btf_info; + char btf_name[256]; + u32 btf_info_len = sizeof(btf_info); + int err, fd; + + fd = bpf_btf_get_fd_by_id(info->btf_vmlinux_id); + if (!ASSERT_GE(fd, 0, "get_value_type_btf_obj_fd")) + return; + + memset(&btf_info, 0, sizeof(btf_info)); + btf_info.name = ptr_to_u64(btf_name); + btf_info.name_len = sizeof(btf_name); + err = bpf_btf_get_info_by_fd(fd, &btf_info, &btf_info_len); + if (!ASSERT_OK(err, "get_value_type_btf_obj_info")) + goto cleanup; + + if (!ASSERT_EQ(strcmp(btf_name, "bpf_testmod"), 0, "get_value_type_btf_obj_name")) + goto cleanup; + +cleanup: + close(fd); +} + +static int attach_ops_and_check(struct struct_ops_module *skel, + struct bpf_map *map, + int expected_test_2_result) +{ + struct bpf_link *link; + + link = bpf_map__attach_struct_ops(map); + ASSERT_OK_PTR(link, "attach_test_mod_1"); + if (!link) + return -1; + + /* test_{1,2}() would be called from bpf_dummy_reg() in bpf_testmod.c */ + ASSERT_EQ(skel->bss->test_1_result, 0xdeadbeef, "test_1_result"); + ASSERT_EQ(skel->bss->test_2_result, expected_test_2_result, "test_2_result"); + + bpf_link__destroy(link); + return 0; +} + +static void test_struct_ops_load(void) +{ + struct struct_ops_module *skel; + struct bpf_map_info info = {}; + int err; + u32 len; + + skel = struct_ops_module__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_module_open")) + return; + + skel->struct_ops.testmod_1->data = 13; + skel->struct_ops.testmod_1->test_2 = skel->progs.test_3; + /* Since test_2() is not being used, it should be disabled from + * auto-loading, or it will fail to load. + */ + bpf_program__set_autoload(skel->progs.test_2, false); + bpf_map__set_autocreate(skel->maps.testmod_zeroed, false); + + err = struct_ops_module__load(skel); + if (!ASSERT_OK(err, "struct_ops_module_load")) + goto cleanup; + + len = sizeof(info); + err = bpf_map_get_info_by_fd(bpf_map__fd(skel->maps.testmod_1), &info, + &len); + if (!ASSERT_OK(err, "bpf_map_get_info_by_fd")) + goto cleanup; + + check_map_info(&info); + /* test_3() will be called from bpf_dummy_reg() in bpf_testmod.c + * + * In bpf_testmod.c it will pass 4 and 13 (the value of data) to + * .test_2. So, the value of test_2_result should be 20 (4 + 13 + + * 3). + */ + if (!attach_ops_and_check(skel, skel->maps.testmod_1, 20)) + goto cleanup; + if (!attach_ops_and_check(skel, skel->maps.testmod_2, 12)) + goto cleanup; + +cleanup: + struct_ops_module__destroy(skel); +} + +static void test_struct_ops_not_zeroed(void) +{ + struct struct_ops_module *skel; + int err; + + /* zeroed is 0, and zeroed_op is null */ + skel = struct_ops_module__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_module_open")) + return; + + skel->struct_ops.testmod_zeroed->zeroed = 0; + /* zeroed_op prog should be not loaded automatically now */ + skel->struct_ops.testmod_zeroed->zeroed_op = NULL; + + err = struct_ops_module__load(skel); + ASSERT_OK(err, "struct_ops_module_load"); + + struct_ops_module__destroy(skel); + + /* zeroed is not 0 */ + skel = struct_ops_module__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_module_open_not_zeroed")) + return; + + /* libbpf should reject the testmod_zeroed since struct + * bpf_testmod_ops in the kernel has no "zeroed" field and the + * value of "zeroed" is non-zero. + */ + skel->struct_ops.testmod_zeroed->zeroed = 0xdeadbeef; + skel->struct_ops.testmod_zeroed->zeroed_op = NULL; + err = struct_ops_module__load(skel); + ASSERT_ERR(err, "struct_ops_module_load_not_zeroed"); + + struct_ops_module__destroy(skel); + + /* zeroed_op is not null */ + skel = struct_ops_module__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_module_open_not_zeroed_op")) + return; + + /* libbpf should reject the testmod_zeroed since the value of its + * "zeroed_op" is not null. + */ + skel->struct_ops.testmod_zeroed->zeroed_op = skel->progs.test_3; + err = struct_ops_module__load(skel); + ASSERT_ERR(err, "struct_ops_module_load_not_zeroed_op"); + + struct_ops_module__destroy(skel); +} + +/* The signature of an implementation might not match the signature of the + * function pointer prototype defined in the BPF program. This mismatch + * should be allowed as long as the behavior of the operator program + * adheres to the signature in the kernel. Libbpf should not enforce the + * signature; rather, let the kernel verifier handle the enforcement. + */ +static void test_struct_ops_incompatible(void) +{ + struct struct_ops_module *skel; + struct bpf_link *link; + int err; + + skel = struct_ops_module__open(); + if (!ASSERT_OK_PTR(skel, "struct_ops_module_open")) + return; + + bpf_map__set_autocreate(skel->maps.testmod_zeroed, false); + + err = struct_ops_module__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + link = bpf_map__attach_struct_ops(skel->maps.testmod_incompatible); + if (ASSERT_OK_PTR(link, "attach_struct_ops")) + bpf_link__destroy(link); + +cleanup: + struct_ops_module__destroy(skel); +} + +/* validate that it's ok to "turn off" callback that kernel supports */ +static void test_struct_ops_nulled_out_cb(void) +{ + struct struct_ops_nulled_out_cb *skel; + int err; + + skel = struct_ops_nulled_out_cb__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + /* kernel knows about test_1, but we still null it out */ + skel->struct_ops.ops->test_1 = NULL; + + err = struct_ops_nulled_out_cb__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + ASSERT_FALSE(bpf_program__autoload(skel->progs.test_1_turn_off), "prog_autoload"); + ASSERT_LT(bpf_program__fd(skel->progs.test_1_turn_off), 0, "prog_fd"); + +cleanup: + struct_ops_nulled_out_cb__destroy(skel); +} + +/* validate that libbpf generates reasonable error message if struct_ops is + * not referenced in any struct_ops map + */ +static void test_struct_ops_forgotten_cb(void) +{ + struct struct_ops_forgotten_cb *skel; + char *log; + int err; + + skel = struct_ops_forgotten_cb__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + start_libbpf_log_capture(); + + err = struct_ops_forgotten_cb__load(skel); + if (!ASSERT_ERR(err, "skel_load")) + goto cleanup; + + log = stop_libbpf_log_capture(); + ASSERT_HAS_SUBSTR(log, + "prog 'test_1_forgotten': SEC(\"struct_ops\") program isn't referenced anywhere, did you forget to use it?", + "libbpf_log"); + free(log); + + struct_ops_forgotten_cb__destroy(skel); + + /* now let's programmatically use it, we should be fine now */ + skel = struct_ops_forgotten_cb__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->struct_ops.ops->test_1 = skel->progs.test_1_forgotten; /* not anymore */ + + err = struct_ops_forgotten_cb__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + +cleanup: + struct_ops_forgotten_cb__destroy(skel); +} + +void serial_test_struct_ops_module(void) +{ + if (test__start_subtest("struct_ops_load")) + test_struct_ops_load(); + if (test__start_subtest("struct_ops_not_zeroed")) + test_struct_ops_not_zeroed(); + if (test__start_subtest("struct_ops_incompatible")) + test_struct_ops_incompatible(); + if (test__start_subtest("struct_ops_null_out_cb")) + test_struct_ops_nulled_out_cb(); + if (test__start_subtest("struct_ops_forgotten_cb")) + test_struct_ops_forgotten_cb(); +} + diff --git a/tools/testing/selftests/bpf/prog_tests/test_struct_ops_multi_pages.c b/tools/testing/selftests/bpf/prog_tests/test_struct_ops_multi_pages.c new file mode 100644 index 000000000000..645d32b5160c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_struct_ops_multi_pages.c @@ -0,0 +1,30 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> + +#include "struct_ops_multi_pages.skel.h" + +static void do_struct_ops_multi_pages(void) +{ + struct struct_ops_multi_pages *skel; + struct bpf_link *link; + + /* The size of all trampolines of skel->maps.multi_pages should be + * over 1 page (at least for x86). + */ + skel = struct_ops_multi_pages__open_and_load(); + if (!ASSERT_OK_PTR(skel, "struct_ops_multi_pages_open_and_load")) + return; + + link = bpf_map__attach_struct_ops(skel->maps.multi_pages); + ASSERT_OK_PTR(link, "attach_multi_pages"); + + bpf_link__destroy(link); + struct_ops_multi_pages__destroy(skel); +} + +void test_struct_ops_multi_pages(void) +{ + if (test__start_subtest("multi_pages")) + do_struct_ops_multi_pages(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_struct_ops_no_cfi.c b/tools/testing/selftests/bpf/prog_tests/test_struct_ops_no_cfi.c new file mode 100644 index 000000000000..106ea447965a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_struct_ops_no_cfi.c @@ -0,0 +1,35 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include <testing_helpers.h> + +static void load_bpf_test_no_cfi(void) +{ + int fd; + int err; + + fd = open("bpf_test_no_cfi.ko", O_RDONLY); + if (!ASSERT_GE(fd, 0, "open")) + return; + + /* The module will try to register a struct_ops type without + * cfi_stubs and with cfi_stubs. + * + * The one without cfi_stub should fail. The module will be loaded + * successfully only if the result of the registration is as + * expected, or it fails. + */ + err = finit_module(fd, "", 0); + close(fd); + if (!ASSERT_OK(err, "finit_module")) + return; + + err = delete_module("bpf_test_no_cfi", 0); + ASSERT_OK(err, "delete_module"); +} + +void test_struct_ops_no_cfi(void) +{ + if (test__start_subtest("load_bpf_test_no_cfi")) + load_bpf_test_no_cfi(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/test_tunnel.c b/tools/testing/selftests/bpf/prog_tests/test_tunnel.c new file mode 100644 index 000000000000..cec746e77cd3 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/test_tunnel.c @@ -0,0 +1,726 @@ +// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause + +/* + * End-to-end eBPF tunnel test suite + * The file tests BPF network tunnel implementation. + * + * Topology: + * --------- + * root namespace | at_ns0 namespace + * | + * ----------- | ----------- + * | tnl dev | | | tnl dev | (overlay network) + * ----------- | ----------- + * metadata-mode | metadata-mode + * with bpf | with bpf + * | + * ---------- | ---------- + * | veth1 | --------- | veth0 | (underlay network) + * ---------- peer ---------- + * + * + * Device Configuration + * -------------------- + * root namespace with metadata-mode tunnel + BPF + * Device names and addresses: + * veth1 IP 1: 172.16.1.200, IPv6: 00::22 (underlay) + * IP 2: 172.16.1.20, IPv6: 00::bb (underlay) + * tunnel dev <type>11, ex: gre11, IPv4: 10.1.1.200, IPv6: 1::22 (overlay) + * + * Namespace at_ns0 with native tunnel + * Device names and addresses: + * veth0 IPv4: 172.16.1.100, IPv6: 00::11 (underlay) + * tunnel dev <type>00, ex: gre00, IPv4: 10.1.1.100, IPv6: 1::11 (overlay) + * + * + * End-to-end ping packet flow + * --------------------------- + * Most of the tests start by namespace creation, device configuration, + * then ping the underlay and overlay network. When doing 'ping 10.1.1.100' + * from root namespace, the following operations happen: + * 1) Route lookup shows 10.1.1.100/24 belongs to tnl dev, fwd to tnl dev. + * 2) Tnl device's egress BPF program is triggered and set the tunnel metadata, + * with local_ip=172.16.1.200, remote_ip=172.16.1.100. BPF program choose + * the primary or secondary ip of veth1 as the local ip of tunnel. The + * choice is made based on the value of bpf map local_ip_map. + * 3) Outer tunnel header is prepended and route the packet to veth1's egress. + * 4) veth0's ingress queue receive the tunneled packet at namespace at_ns0. + * 5) Tunnel protocol handler, ex: vxlan_rcv, decap the packet. + * 6) Forward the packet to the overlay tnl dev. + */ + +#include <arpa/inet.h> +#include <linux/if_link.h> +#include <linux/if_tun.h> +#include <linux/limits.h> +#include <linux/sysctl.h> +#include <linux/time_types.h> +#include <linux/net_tstamp.h> +#include <net/if.h> +#include <stdbool.h> +#include <stdio.h> +#include <sys/stat.h> +#include <unistd.h> + +#include "test_progs.h" +#include "network_helpers.h" +#include "test_tunnel_kern.skel.h" + +#define IP4_ADDR_VETH0 "172.16.1.100" +#define IP4_ADDR1_VETH1 "172.16.1.200" +#define IP4_ADDR2_VETH1 "172.16.1.20" +#define IP4_ADDR_TUNL_DEV0 "10.1.1.100" +#define IP4_ADDR_TUNL_DEV1 "10.1.1.200" + +#define IP6_ADDR_VETH0 "::11" +#define IP6_ADDR1_VETH1 "::22" +#define IP6_ADDR2_VETH1 "::bb" + +#define IP4_ADDR1_HEX_VETH1 0xac1001c8 +#define IP4_ADDR2_HEX_VETH1 0xac100114 +#define IP6_ADDR1_HEX_VETH1 0x22 +#define IP6_ADDR2_HEX_VETH1 0xbb + +#define MAC_TUNL_DEV0 "52:54:00:d9:01:00" +#define MAC_TUNL_DEV1 "52:54:00:d9:02:00" +#define MAC_VETH1 "52:54:00:d9:03:00" + +#define VXLAN_TUNL_DEV0 "vxlan00" +#define VXLAN_TUNL_DEV1 "vxlan11" +#define IP6VXLAN_TUNL_DEV0 "ip6vxlan00" +#define IP6VXLAN_TUNL_DEV1 "ip6vxlan11" + +#define IPIP_TUNL_DEV0 "ipip00" +#define IPIP_TUNL_DEV1 "ipip11" + +#define XFRM_AUTH "0x1111111111111111111111111111111111111111" +#define XFRM_ENC "0x22222222222222222222222222222222" +#define XFRM_SPI_IN_TO_OUT 0x1 +#define XFRM_SPI_OUT_TO_IN 0x2 + +#define PING_ARGS "-i 0.01 -c 3 -w 10 -q" + +static int config_device(void) +{ + SYS(fail, "ip netns add at_ns0"); + SYS(fail, "ip link add veth0 address " MAC_VETH1 " type veth peer name veth1"); + SYS(fail, "ip link set veth0 netns at_ns0"); + SYS(fail, "ip addr add " IP4_ADDR1_VETH1 "/24 dev veth1"); + SYS(fail, "ip link set dev veth1 up mtu 1500"); + SYS(fail, "ip netns exec at_ns0 ip addr add " IP4_ADDR_VETH0 "/24 dev veth0"); + SYS(fail, "ip netns exec at_ns0 ip link set dev veth0 up mtu 1500"); + + return 0; +fail: + return -1; +} + +static void cleanup(void) +{ + SYS_NOFAIL("test -f /var/run/netns/at_ns0 && ip netns delete at_ns0"); + SYS_NOFAIL("ip link del veth1"); + SYS_NOFAIL("ip link del %s", VXLAN_TUNL_DEV1); + SYS_NOFAIL("ip link del %s", IP6VXLAN_TUNL_DEV1); +} + +static int add_vxlan_tunnel(void) +{ + /* at_ns0 namespace */ + SYS(fail, "ip netns exec at_ns0 ip link add dev %s type vxlan external gbp dstport 4789", + VXLAN_TUNL_DEV0); + SYS(fail, "ip netns exec at_ns0 ip link set dev %s address %s up", + VXLAN_TUNL_DEV0, MAC_TUNL_DEV0); + SYS(fail, "ip netns exec at_ns0 ip addr add dev %s %s/24", + VXLAN_TUNL_DEV0, IP4_ADDR_TUNL_DEV0); + SYS(fail, "ip netns exec at_ns0 ip neigh add %s lladdr %s dev %s", + IP4_ADDR_TUNL_DEV1, MAC_TUNL_DEV1, VXLAN_TUNL_DEV0); + SYS(fail, "ip netns exec at_ns0 ip neigh add %s lladdr %s dev veth0", + IP4_ADDR2_VETH1, MAC_VETH1); + + /* root namespace */ + SYS(fail, "ip link add dev %s type vxlan external gbp dstport 4789", + VXLAN_TUNL_DEV1); + SYS(fail, "ip link set dev %s address %s up", VXLAN_TUNL_DEV1, MAC_TUNL_DEV1); + SYS(fail, "ip addr add dev %s %s/24", VXLAN_TUNL_DEV1, IP4_ADDR_TUNL_DEV1); + SYS(fail, "ip neigh add %s lladdr %s dev %s", + IP4_ADDR_TUNL_DEV0, MAC_TUNL_DEV0, VXLAN_TUNL_DEV1); + + return 0; +fail: + return -1; +} + +static void delete_vxlan_tunnel(void) +{ + SYS_NOFAIL("ip netns exec at_ns0 ip link delete dev %s", + VXLAN_TUNL_DEV0); + SYS_NOFAIL("ip link delete dev %s", VXLAN_TUNL_DEV1); +} + +static int add_ip6vxlan_tunnel(void) +{ + SYS(fail, "ip netns exec at_ns0 ip -6 addr add %s/96 dev veth0", + IP6_ADDR_VETH0); + SYS(fail, "ip netns exec at_ns0 ip link set dev veth0 up"); + SYS(fail, "ip -6 addr add %s/96 dev veth1", IP6_ADDR1_VETH1); + SYS(fail, "ip -6 addr add %s/96 dev veth1", IP6_ADDR2_VETH1); + SYS(fail, "ip link set dev veth1 up"); + + /* at_ns0 namespace */ + SYS(fail, "ip netns exec at_ns0 ip link add dev %s type vxlan external dstport 4789", + IP6VXLAN_TUNL_DEV0); + SYS(fail, "ip netns exec at_ns0 ip addr add dev %s %s/24", + IP6VXLAN_TUNL_DEV0, IP4_ADDR_TUNL_DEV0); + SYS(fail, "ip netns exec at_ns0 ip link set dev %s address %s up", + IP6VXLAN_TUNL_DEV0, MAC_TUNL_DEV0); + + /* root namespace */ + SYS(fail, "ip link add dev %s type vxlan external dstport 4789", + IP6VXLAN_TUNL_DEV1); + SYS(fail, "ip addr add dev %s %s/24", IP6VXLAN_TUNL_DEV1, IP4_ADDR_TUNL_DEV1); + SYS(fail, "ip link set dev %s address %s up", + IP6VXLAN_TUNL_DEV1, MAC_TUNL_DEV1); + + return 0; +fail: + return -1; +} + +static void delete_ip6vxlan_tunnel(void) +{ + SYS_NOFAIL("ip netns exec at_ns0 ip -6 addr delete %s/96 dev veth0", + IP6_ADDR_VETH0); + SYS_NOFAIL("ip -6 addr delete %s/96 dev veth1", IP6_ADDR1_VETH1); + SYS_NOFAIL("ip -6 addr delete %s/96 dev veth1", IP6_ADDR2_VETH1); + SYS_NOFAIL("ip netns exec at_ns0 ip link delete dev %s", + IP6VXLAN_TUNL_DEV0); + SYS_NOFAIL("ip link delete dev %s", IP6VXLAN_TUNL_DEV1); +} + +enum ipip_encap { + NONE = 0, + FOU = 1, + GUE = 2, +}; + +static int set_ipip_encap(const char *ipproto, const char *type) +{ + SYS(fail, "ip -n at_ns0 fou add port 5555 %s", ipproto); + SYS(fail, "ip -n at_ns0 link set dev %s type ipip encap %s", + IPIP_TUNL_DEV0, type); + SYS(fail, "ip -n at_ns0 link set dev %s type ipip encap-dport 5555", + IPIP_TUNL_DEV0); + + return 0; +fail: + return -1; +} + +static int add_ipip_tunnel(enum ipip_encap encap) +{ + int err; + const char *ipproto, *type; + + switch (encap) { + case FOU: + ipproto = "ipproto 4"; + type = "fou"; + break; + case GUE: + ipproto = "gue"; + type = ipproto; + break; + default: + ipproto = NULL; + type = ipproto; + } + + /* at_ns0 namespace */ + SYS(fail, "ip -n at_ns0 link add dev %s type ipip local %s remote %s", + IPIP_TUNL_DEV0, IP4_ADDR_VETH0, IP4_ADDR1_VETH1); + + if (type && ipproto) { + err = set_ipip_encap(ipproto, type); + if (!ASSERT_OK(err, "set_ipip_encap")) + goto fail; + } + + SYS(fail, "ip -n at_ns0 link set dev %s up", IPIP_TUNL_DEV0); + SYS(fail, "ip -n at_ns0 addr add dev %s %s/24", + IPIP_TUNL_DEV0, IP4_ADDR_TUNL_DEV0); + + /* root namespace */ + if (type && ipproto) + SYS(fail, "ip fou add port 5555 %s", ipproto); + SYS(fail, "ip link add dev %s type ipip external", IPIP_TUNL_DEV1); + SYS(fail, "ip link set dev %s up", IPIP_TUNL_DEV1); + SYS(fail, "ip addr add dev %s %s/24", IPIP_TUNL_DEV1, + IP4_ADDR_TUNL_DEV1); + + return 0; +fail: + return -1; +} + +static void delete_ipip_tunnel(void) +{ + SYS_NOFAIL("ip -n at_ns0 link delete dev %s", IPIP_TUNL_DEV0); + SYS_NOFAIL("ip -n at_ns0 fou del port 5555"); + SYS_NOFAIL("ip link delete dev %s", IPIP_TUNL_DEV1); + SYS_NOFAIL("ip fou del port 5555"); +} + +static int add_xfrm_tunnel(void) +{ + /* at_ns0 namespace + * at_ns0 -> root + */ + SYS(fail, + "ip netns exec at_ns0 " + "ip xfrm state add src %s dst %s proto esp " + "spi %d reqid 1 mode tunnel replay-window 42 " + "auth-trunc 'hmac(sha1)' %s 96 enc 'cbc(aes)' %s", + IP4_ADDR_VETH0, IP4_ADDR1_VETH1, XFRM_SPI_IN_TO_OUT, XFRM_AUTH, XFRM_ENC); + SYS(fail, + "ip netns exec at_ns0 " + "ip xfrm policy add src %s/32 dst %s/32 dir out " + "tmpl src %s dst %s proto esp reqid 1 " + "mode tunnel", + IP4_ADDR_TUNL_DEV0, IP4_ADDR_TUNL_DEV1, IP4_ADDR_VETH0, IP4_ADDR1_VETH1); + + /* root -> at_ns0 */ + SYS(fail, + "ip netns exec at_ns0 " + "ip xfrm state add src %s dst %s proto esp " + "spi %d reqid 2 mode tunnel " + "auth-trunc 'hmac(sha1)' %s 96 enc 'cbc(aes)' %s", + IP4_ADDR1_VETH1, IP4_ADDR_VETH0, XFRM_SPI_OUT_TO_IN, XFRM_AUTH, XFRM_ENC); + SYS(fail, + "ip netns exec at_ns0 " + "ip xfrm policy add src %s/32 dst %s/32 dir in " + "tmpl src %s dst %s proto esp reqid 2 " + "mode tunnel", + IP4_ADDR_TUNL_DEV1, IP4_ADDR_TUNL_DEV0, IP4_ADDR1_VETH1, IP4_ADDR_VETH0); + + /* address & route */ + SYS(fail, "ip netns exec at_ns0 ip addr add dev veth0 %s/32", + IP4_ADDR_TUNL_DEV0); + SYS(fail, "ip netns exec at_ns0 ip route add %s dev veth0 via %s src %s", + IP4_ADDR_TUNL_DEV1, IP4_ADDR1_VETH1, IP4_ADDR_TUNL_DEV0); + + /* root namespace + * at_ns0 -> root + */ + SYS(fail, + "ip xfrm state add src %s dst %s proto esp " + "spi %d reqid 1 mode tunnel replay-window 42 " + "auth-trunc 'hmac(sha1)' %s 96 enc 'cbc(aes)' %s", + IP4_ADDR_VETH0, IP4_ADDR1_VETH1, XFRM_SPI_IN_TO_OUT, XFRM_AUTH, XFRM_ENC); + SYS(fail, + "ip xfrm policy add src %s/32 dst %s/32 dir in " + "tmpl src %s dst %s proto esp reqid 1 " + "mode tunnel", + IP4_ADDR_TUNL_DEV0, IP4_ADDR_TUNL_DEV1, IP4_ADDR_VETH0, IP4_ADDR1_VETH1); + + /* root -> at_ns0 */ + SYS(fail, + "ip xfrm state add src %s dst %s proto esp " + "spi %d reqid 2 mode tunnel " + "auth-trunc 'hmac(sha1)' %s 96 enc 'cbc(aes)' %s", + IP4_ADDR1_VETH1, IP4_ADDR_VETH0, XFRM_SPI_OUT_TO_IN, XFRM_AUTH, XFRM_ENC); + SYS(fail, + "ip xfrm policy add src %s/32 dst %s/32 dir out " + "tmpl src %s dst %s proto esp reqid 2 " + "mode tunnel", + IP4_ADDR_TUNL_DEV1, IP4_ADDR_TUNL_DEV0, IP4_ADDR1_VETH1, IP4_ADDR_VETH0); + + /* address & route */ + SYS(fail, "ip addr add dev veth1 %s/32", IP4_ADDR_TUNL_DEV1); + SYS(fail, "ip route add %s dev veth1 via %s src %s", + IP4_ADDR_TUNL_DEV0, IP4_ADDR_VETH0, IP4_ADDR_TUNL_DEV1); + + return 0; +fail: + return -1; +} + +static void delete_xfrm_tunnel(void) +{ + SYS_NOFAIL("ip xfrm policy delete dir out src %s/32 dst %s/32", + IP4_ADDR_TUNL_DEV1, IP4_ADDR_TUNL_DEV0); + SYS_NOFAIL("ip xfrm policy delete dir in src %s/32 dst %s/32", + IP4_ADDR_TUNL_DEV0, IP4_ADDR_TUNL_DEV1); + SYS_NOFAIL("ip xfrm state delete src %s dst %s proto esp spi %d", + IP4_ADDR_VETH0, IP4_ADDR1_VETH1, XFRM_SPI_IN_TO_OUT); + SYS_NOFAIL("ip xfrm state delete src %s dst %s proto esp spi %d", + IP4_ADDR1_VETH1, IP4_ADDR_VETH0, XFRM_SPI_OUT_TO_IN); +} + +static int test_ping(int family, const char *addr) +{ + SYS(fail, "%s %s %s > /dev/null", ping_command(family), PING_ARGS, addr); + return 0; +fail: + return -1; +} + +static int attach_tc_prog(struct bpf_tc_hook *hook, int igr_fd, int egr_fd) +{ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts1, .handle = 1, + .priority = 1, .prog_fd = igr_fd); + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts2, .handle = 1, + .priority = 1, .prog_fd = egr_fd); + int ret; + + ret = bpf_tc_hook_create(hook); + if (!ASSERT_OK(ret, "create tc hook")) + return ret; + + if (igr_fd >= 0) { + hook->attach_point = BPF_TC_INGRESS; + ret = bpf_tc_attach(hook, &opts1); + if (!ASSERT_OK(ret, "bpf_tc_attach")) { + bpf_tc_hook_destroy(hook); + return ret; + } + } + + if (egr_fd >= 0) { + hook->attach_point = BPF_TC_EGRESS; + ret = bpf_tc_attach(hook, &opts2); + if (!ASSERT_OK(ret, "bpf_tc_attach")) { + bpf_tc_hook_destroy(hook); + return ret; + } + } + + return 0; +} + +static void test_vxlan_tunnel(void) +{ + struct test_tunnel_kern *skel = NULL; + struct nstoken *nstoken; + int local_ip_map_fd = -1; + int set_src_prog_fd, get_src_prog_fd; + int set_dst_prog_fd; + int key = 0, ifindex = -1; + uint local_ip; + int err; + DECLARE_LIBBPF_OPTS(bpf_tc_hook, tc_hook, + .attach_point = BPF_TC_INGRESS); + + /* add vxlan tunnel */ + err = add_vxlan_tunnel(); + if (!ASSERT_OK(err, "add vxlan tunnel")) + goto done; + + /* load and attach bpf prog to tunnel dev tc hook point */ + skel = test_tunnel_kern__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_tunnel_kern__open_and_load")) + goto done; + ifindex = if_nametoindex(VXLAN_TUNL_DEV1); + if (!ASSERT_NEQ(ifindex, 0, "vxlan11 ifindex")) + goto done; + tc_hook.ifindex = ifindex; + get_src_prog_fd = bpf_program__fd(skel->progs.vxlan_get_tunnel_src); + set_src_prog_fd = bpf_program__fd(skel->progs.vxlan_set_tunnel_src); + if (!ASSERT_GE(get_src_prog_fd, 0, "bpf_program__fd")) + goto done; + if (!ASSERT_GE(set_src_prog_fd, 0, "bpf_program__fd")) + goto done; + if (attach_tc_prog(&tc_hook, get_src_prog_fd, set_src_prog_fd)) + goto done; + + /* load and attach bpf prog to veth dev tc hook point */ + ifindex = if_nametoindex("veth1"); + if (!ASSERT_NEQ(ifindex, 0, "veth1 ifindex")) + goto done; + tc_hook.ifindex = ifindex; + set_dst_prog_fd = bpf_program__fd(skel->progs.veth_set_outer_dst); + if (!ASSERT_GE(set_dst_prog_fd, 0, "bpf_program__fd")) + goto done; + if (attach_tc_prog(&tc_hook, set_dst_prog_fd, -1)) + goto done; + + /* load and attach prog set_md to tunnel dev tc hook point at_ns0 */ + nstoken = open_netns("at_ns0"); + if (!ASSERT_OK_PTR(nstoken, "setns src")) + goto done; + ifindex = if_nametoindex(VXLAN_TUNL_DEV0); + if (!ASSERT_NEQ(ifindex, 0, "vxlan00 ifindex")) + goto done; + tc_hook.ifindex = ifindex; + set_dst_prog_fd = bpf_program__fd(skel->progs.vxlan_set_tunnel_dst); + if (!ASSERT_GE(set_dst_prog_fd, 0, "bpf_program__fd")) + goto done; + if (attach_tc_prog(&tc_hook, -1, set_dst_prog_fd)) + goto done; + close_netns(nstoken); + + /* use veth1 ip 2 as tunnel source ip */ + local_ip_map_fd = bpf_map__fd(skel->maps.local_ip_map); + if (!ASSERT_GE(local_ip_map_fd, 0, "bpf_map__fd")) + goto done; + local_ip = IP4_ADDR2_HEX_VETH1; + err = bpf_map_update_elem(local_ip_map_fd, &key, &local_ip, BPF_ANY); + if (!ASSERT_OK(err, "update bpf local_ip_map")) + goto done; + + /* ping test */ + err = test_ping(AF_INET, IP4_ADDR_TUNL_DEV0); + if (!ASSERT_OK(err, "test_ping")) + goto done; + +done: + /* delete vxlan tunnel */ + delete_vxlan_tunnel(); + if (local_ip_map_fd >= 0) + close(local_ip_map_fd); + if (skel) + test_tunnel_kern__destroy(skel); +} + +static void test_ip6vxlan_tunnel(void) +{ + struct test_tunnel_kern *skel = NULL; + struct nstoken *nstoken; + int local_ip_map_fd = -1; + int set_src_prog_fd, get_src_prog_fd; + int set_dst_prog_fd; + int key = 0, ifindex = -1; + uint local_ip; + int err; + DECLARE_LIBBPF_OPTS(bpf_tc_hook, tc_hook, + .attach_point = BPF_TC_INGRESS); + + /* add vxlan tunnel */ + err = add_ip6vxlan_tunnel(); + if (!ASSERT_OK(err, "add_ip6vxlan_tunnel")) + goto done; + + /* load and attach bpf prog to tunnel dev tc hook point */ + skel = test_tunnel_kern__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_tunnel_kern__open_and_load")) + goto done; + ifindex = if_nametoindex(IP6VXLAN_TUNL_DEV1); + if (!ASSERT_NEQ(ifindex, 0, "ip6vxlan11 ifindex")) + goto done; + tc_hook.ifindex = ifindex; + get_src_prog_fd = bpf_program__fd(skel->progs.ip6vxlan_get_tunnel_src); + set_src_prog_fd = bpf_program__fd(skel->progs.ip6vxlan_set_tunnel_src); + if (!ASSERT_GE(set_src_prog_fd, 0, "bpf_program__fd")) + goto done; + if (!ASSERT_GE(get_src_prog_fd, 0, "bpf_program__fd")) + goto done; + if (attach_tc_prog(&tc_hook, get_src_prog_fd, set_src_prog_fd)) + goto done; + + /* load and attach prog set_md to tunnel dev tc hook point at_ns0 */ + nstoken = open_netns("at_ns0"); + if (!ASSERT_OK_PTR(nstoken, "setns src")) + goto done; + ifindex = if_nametoindex(IP6VXLAN_TUNL_DEV0); + if (!ASSERT_NEQ(ifindex, 0, "ip6vxlan00 ifindex")) + goto done; + tc_hook.ifindex = ifindex; + set_dst_prog_fd = bpf_program__fd(skel->progs.ip6vxlan_set_tunnel_dst); + if (!ASSERT_GE(set_dst_prog_fd, 0, "bpf_program__fd")) + goto done; + if (attach_tc_prog(&tc_hook, -1, set_dst_prog_fd)) + goto done; + close_netns(nstoken); + + /* use veth1 ip 2 as tunnel source ip */ + local_ip_map_fd = bpf_map__fd(skel->maps.local_ip_map); + if (!ASSERT_GE(local_ip_map_fd, 0, "get local_ip_map fd")) + goto done; + local_ip = IP6_ADDR2_HEX_VETH1; + err = bpf_map_update_elem(local_ip_map_fd, &key, &local_ip, BPF_ANY); + if (!ASSERT_OK(err, "update bpf local_ip_map")) + goto done; + + /* ping test */ + err = test_ping(AF_INET, IP4_ADDR_TUNL_DEV0); + if (!ASSERT_OK(err, "test_ping")) + goto done; + +done: + /* delete ipv6 vxlan tunnel */ + delete_ip6vxlan_tunnel(); + if (local_ip_map_fd >= 0) + close(local_ip_map_fd); + if (skel) + test_tunnel_kern__destroy(skel); +} + +static void test_ipip_tunnel(enum ipip_encap encap) +{ + struct test_tunnel_kern *skel = NULL; + struct nstoken *nstoken; + int set_src_prog_fd, get_src_prog_fd; + int ifindex = -1; + int err; + DECLARE_LIBBPF_OPTS(bpf_tc_hook, tc_hook, + .attach_point = BPF_TC_INGRESS); + + /* add ipip tunnel */ + err = add_ipip_tunnel(encap); + if (!ASSERT_OK(err, "add_ipip_tunnel")) + goto done; + + /* load and attach bpf prog to tunnel dev tc hook point */ + skel = test_tunnel_kern__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_tunnel_kern__open_and_load")) + goto done; + ifindex = if_nametoindex(IPIP_TUNL_DEV1); + if (!ASSERT_NEQ(ifindex, 0, "ipip11 ifindex")) + goto done; + tc_hook.ifindex = ifindex; + + switch (encap) { + case FOU: + get_src_prog_fd = bpf_program__fd( + skel->progs.ipip_encap_get_tunnel); + set_src_prog_fd = bpf_program__fd( + skel->progs.ipip_fou_set_tunnel); + break; + case GUE: + get_src_prog_fd = bpf_program__fd( + skel->progs.ipip_encap_get_tunnel); + set_src_prog_fd = bpf_program__fd( + skel->progs.ipip_gue_set_tunnel); + break; + default: + get_src_prog_fd = bpf_program__fd( + skel->progs.ipip_get_tunnel); + set_src_prog_fd = bpf_program__fd( + skel->progs.ipip_set_tunnel); + } + + if (!ASSERT_GE(set_src_prog_fd, 0, "bpf_program__fd")) + goto done; + if (!ASSERT_GE(get_src_prog_fd, 0, "bpf_program__fd")) + goto done; + if (attach_tc_prog(&tc_hook, get_src_prog_fd, set_src_prog_fd)) + goto done; + + /* ping from root namespace test */ + err = test_ping(AF_INET, IP4_ADDR_TUNL_DEV0); + if (!ASSERT_OK(err, "test_ping")) + goto done; + + /* ping from at_ns0 namespace test */ + nstoken = open_netns("at_ns0"); + if (!ASSERT_OK_PTR(nstoken, "setns")) + goto done; + err = test_ping(AF_INET, IP4_ADDR_TUNL_DEV1); + if (!ASSERT_OK(err, "test_ping")) + goto done; + close_netns(nstoken); + +done: + /* delete ipip tunnel */ + delete_ipip_tunnel(); + if (skel) + test_tunnel_kern__destroy(skel); +} + +static void test_xfrm_tunnel(void) +{ + DECLARE_LIBBPF_OPTS(bpf_tc_hook, tc_hook, + .attach_point = BPF_TC_INGRESS); + LIBBPF_OPTS(bpf_xdp_attach_opts, opts); + struct test_tunnel_kern *skel = NULL; + struct nstoken *nstoken; + int xdp_prog_fd; + int tc_prog_fd; + int ifindex; + int err; + + err = add_xfrm_tunnel(); + if (!ASSERT_OK(err, "add_xfrm_tunnel")) + return; + + skel = test_tunnel_kern__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_tunnel_kern__open_and_load")) + goto done; + + ifindex = if_nametoindex("veth1"); + if (!ASSERT_NEQ(ifindex, 0, "veth1 ifindex")) + goto done; + + /* attach tc prog to tunnel dev */ + tc_hook.ifindex = ifindex; + tc_prog_fd = bpf_program__fd(skel->progs.xfrm_get_state); + if (!ASSERT_GE(tc_prog_fd, 0, "bpf_program__fd")) + goto done; + if (attach_tc_prog(&tc_hook, tc_prog_fd, -1)) + goto done; + + /* attach xdp prog to tunnel dev */ + xdp_prog_fd = bpf_program__fd(skel->progs.xfrm_get_state_xdp); + if (!ASSERT_GE(xdp_prog_fd, 0, "bpf_program__fd")) + goto done; + err = bpf_xdp_attach(ifindex, xdp_prog_fd, XDP_FLAGS_REPLACE, &opts); + if (!ASSERT_OK(err, "bpf_xdp_attach")) + goto done; + + /* ping from at_ns0 namespace test */ + nstoken = open_netns("at_ns0"); + if (!ASSERT_OK_PTR(nstoken, "setns")) + goto done; + err = test_ping(AF_INET, IP4_ADDR_TUNL_DEV1); + close_netns(nstoken); + if (!ASSERT_OK(err, "test_ping")) + goto done; + + if (!ASSERT_EQ(skel->bss->xfrm_reqid, 1, "req_id")) + goto done; + if (!ASSERT_EQ(skel->bss->xfrm_spi, XFRM_SPI_IN_TO_OUT, "spi")) + goto done; + if (!ASSERT_EQ(skel->bss->xfrm_remote_ip, 0xac100164, "remote_ip")) + goto done; + if (!ASSERT_EQ(skel->bss->xfrm_replay_window, 42, "replay_window")) + goto done; + +done: + delete_xfrm_tunnel(); + if (skel) + test_tunnel_kern__destroy(skel); +} + +#define RUN_TEST(name, ...) \ + ({ \ + if (test__start_subtest(#name)) { \ + config_device(); \ + test_ ## name(__VA_ARGS__); \ + cleanup(); \ + } \ + }) + +static void *test_tunnel_run_tests(void *arg) +{ + RUN_TEST(vxlan_tunnel); + RUN_TEST(ip6vxlan_tunnel); + RUN_TEST(ipip_tunnel, NONE); + RUN_TEST(ipip_tunnel, FOU); + RUN_TEST(ipip_tunnel, GUE); + RUN_TEST(xfrm_tunnel); + + return NULL; +} + +void test_tunnel(void) +{ + pthread_t test_thread; + int err; + + /* Run the tests in their own thread to isolate the namespace changes + * so they do not affect the environment of other tests. + * (specifically needed because of unshare(CLONE_NEWNS) in open_netns()) + */ + err = pthread_create(&test_thread, NULL, &test_tunnel_run_tests, NULL); + if (ASSERT_OK(err, "pthread_create")) + ASSERT_OK(pthread_join(test_thread, NULL), "pthread_join"); +} diff --git a/tools/testing/selftests/bpf/prog_tests/time_tai.c b/tools/testing/selftests/bpf/prog_tests/time_tai.c new file mode 100644 index 000000000000..f45af1b0ef2c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/time_tai.c @@ -0,0 +1,74 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (C) 2022 Linutronix GmbH */ + +#include <test_progs.h> +#include <network_helpers.h> + +#include "test_time_tai.skel.h" + +#include <time.h> +#include <stdint.h> + +#define TAI_THRESHOLD 1000000000ULL /* 1s */ +#define NSEC_PER_SEC 1000000000ULL + +static __u64 ts_to_ns(const struct timespec *ts) +{ + return ts->tv_sec * NSEC_PER_SEC + ts->tv_nsec; +} + +void test_time_tai(void) +{ + struct __sk_buff skb = { + .cb[0] = 0, + .cb[1] = 0, + .tstamp = 0, + }; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .ctx_in = &skb, + .ctx_size_in = sizeof(skb), + .ctx_out = &skb, + .ctx_size_out = sizeof(skb), + ); + struct test_time_tai *skel; + struct timespec now_tai; + __u64 ts1, ts2, now; + int ret, prog_fd; + + /* Open and load */ + skel = test_time_tai__open_and_load(); + if (!ASSERT_OK_PTR(skel, "tai_open")) + return; + + /* Run test program */ + prog_fd = bpf_program__fd(skel->progs.time_tai); + ret = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(ret, "test_run"); + + /* Retrieve generated TAI timestamps */ + ts1 = skb.tstamp; + ts2 = skb.cb[0] | ((__u64)skb.cb[1] << 32); + + /* TAI != 0 */ + ASSERT_NEQ(ts1, 0, "tai_ts1"); + ASSERT_NEQ(ts2, 0, "tai_ts2"); + + /* TAI is moving forward only */ + ASSERT_GE(ts2, ts1, "tai_forward"); + + /* Check for future */ + ret = clock_gettime(CLOCK_TAI, &now_tai); + ASSERT_EQ(ret, 0, "tai_gettime"); + now = ts_to_ns(&now_tai); + + ASSERT_TRUE(now > ts1, "tai_future_ts1"); + ASSERT_TRUE(now > ts2, "tai_future_ts2"); + + /* Check for reasonable range */ + ASSERT_TRUE(now - ts1 < TAI_THRESHOLD, "tai_range_ts1"); + ASSERT_TRUE(now - ts2 < TAI_THRESHOLD, "tai_range_ts2"); + + test_time_tai__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/timer.c b/tools/testing/selftests/bpf/prog_tests/timer.c new file mode 100644 index 000000000000..d66687f1ee6a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/timer.c @@ -0,0 +1,97 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include "timer.skel.h" +#include "timer_failure.skel.h" + +#define NUM_THR 8 + +static void *spin_lock_thread(void *arg) +{ + int i, err, prog_fd = *(int *)arg; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + for (i = 0; i < 10000; i++) { + err = bpf_prog_test_run_opts(prog_fd, &topts); + if (!ASSERT_OK(err, "test_run_opts err") || + !ASSERT_OK(topts.retval, "test_run_opts retval")) + break; + } + + pthread_exit(arg); +} + +static int timer(struct timer *timer_skel) +{ + int i, err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts); + pthread_t thread_id[NUM_THR]; + void *ret; + + err = timer__attach(timer_skel); + if (!ASSERT_OK(err, "timer_attach")) + return err; + + ASSERT_EQ(timer_skel->data->callback_check, 52, "callback_check1"); + ASSERT_EQ(timer_skel->data->callback2_check, 52, "callback2_check1"); + ASSERT_EQ(timer_skel->bss->pinned_callback_check, 0, "pinned_callback_check1"); + + prog_fd = bpf_program__fd(timer_skel->progs.test1); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + timer__detach(timer_skel); + + usleep(50); /* 10 usecs should be enough, but give it extra */ + /* check that timer_cb1() was executed 10+10 times */ + ASSERT_EQ(timer_skel->data->callback_check, 42, "callback_check2"); + ASSERT_EQ(timer_skel->data->callback2_check, 42, "callback2_check2"); + + /* check that timer_cb2() was executed twice */ + ASSERT_EQ(timer_skel->bss->bss_data, 10, "bss_data"); + + /* check that timer_cb3() was executed twice */ + ASSERT_EQ(timer_skel->bss->abs_data, 12, "abs_data"); + + /* check that timer_cb_pinned() was executed twice */ + ASSERT_EQ(timer_skel->bss->pinned_callback_check, 2, "pinned_callback_check"); + + /* check that there were no errors in timer execution */ + ASSERT_EQ(timer_skel->bss->err, 0, "err"); + + /* check that code paths completed */ + ASSERT_EQ(timer_skel->bss->ok, 1 | 2 | 4, "ok"); + + prog_fd = bpf_program__fd(timer_skel->progs.race); + for (i = 0; i < NUM_THR; i++) { + err = pthread_create(&thread_id[i], NULL, + &spin_lock_thread, &prog_fd); + if (!ASSERT_OK(err, "pthread_create")) + break; + } + + while (i) { + err = pthread_join(thread_id[--i], &ret); + if (ASSERT_OK(err, "pthread_join")) + ASSERT_EQ(ret, (void *)&prog_fd, "pthread_join"); + } + + return 0; +} + +/* TODO: use pid filtering */ +void serial_test_timer(void) +{ + struct timer *timer_skel = NULL; + int err; + + timer_skel = timer__open_and_load(); + if (!ASSERT_OK_PTR(timer_skel, "timer_skel_load")) + return; + + err = timer(timer_skel); + ASSERT_OK(err, "timer"); + timer__destroy(timer_skel); + + RUN_TESTS(timer_failure); +} diff --git a/tools/testing/selftests/bpf/prog_tests/timer_crash.c b/tools/testing/selftests/bpf/prog_tests/timer_crash.c new file mode 100644 index 000000000000..f74b82305da8 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/timer_crash.c @@ -0,0 +1,32 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include "timer_crash.skel.h" + +enum { + MODE_ARRAY, + MODE_HASH, +}; + +static void test_timer_crash_mode(int mode) +{ + struct timer_crash *skel; + + skel = timer_crash__open_and_load(); + if (!ASSERT_OK_PTR(skel, "timer_crash__open_and_load")) + return; + skel->bss->pid = getpid(); + skel->bss->crash_map = mode; + if (!ASSERT_OK(timer_crash__attach(skel), "timer_crash__attach")) + goto end; + usleep(1); +end: + timer_crash__destroy(skel); +} + +void test_timer_crash(void) +{ + if (test__start_subtest("array")) + test_timer_crash_mode(MODE_ARRAY); + if (test__start_subtest("hash")) + test_timer_crash_mode(MODE_HASH); +} diff --git a/tools/testing/selftests/bpf/prog_tests/timer_mim.c b/tools/testing/selftests/bpf/prog_tests/timer_mim.c new file mode 100644 index 000000000000..9ff7843909e7 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/timer_mim.c @@ -0,0 +1,76 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ +#include <test_progs.h> +#include "timer_mim.skel.h" +#include "timer_mim_reject.skel.h" + +static int timer_mim(struct timer_mim *timer_skel) +{ + __u64 cnt1, cnt2; + int err, prog_fd, key1 = 1; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + err = timer_mim__attach(timer_skel); + if (!ASSERT_OK(err, "timer_attach")) + return err; + + prog_fd = bpf_program__fd(timer_skel->progs.test1); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + timer_mim__detach(timer_skel); + + /* check that timer_cb[12] are incrementing 'cnt' */ + cnt1 = READ_ONCE(timer_skel->bss->cnt); + for (int i = 0; i < 100; i++) { + cnt2 = READ_ONCE(timer_skel->bss->cnt); + if (cnt2 != cnt1) + break; + usleep(200); /* 100 times more than interval */ + } + ASSERT_GT(cnt2, cnt1, "cnt"); + + ASSERT_EQ(timer_skel->bss->err, 0, "err"); + /* check that code paths completed */ + ASSERT_EQ(timer_skel->bss->ok, 1 | 2, "ok"); + + close(bpf_map__fd(timer_skel->maps.inner_htab)); + err = bpf_map__delete_elem(timer_skel->maps.outer_arr, &key1, sizeof(key1), 0); + ASSERT_EQ(err, 0, "delete inner map"); + + /* check that timer_cb[12] are no longer running */ + cnt1 = READ_ONCE(timer_skel->bss->cnt); + for (int i = 0; i < 100; i++) { + usleep(200); /* 100 times more than interval */ + cnt2 = READ_ONCE(timer_skel->bss->cnt); + if (cnt2 == cnt1) + break; + } + ASSERT_EQ(cnt2, cnt1, "cnt"); + + return 0; +} + +void serial_test_timer_mim(void) +{ + struct timer_mim_reject *timer_reject_skel = NULL; + libbpf_print_fn_t old_print_fn = NULL; + struct timer_mim *timer_skel = NULL; + int err; + + old_print_fn = libbpf_set_print(NULL); + timer_reject_skel = timer_mim_reject__open_and_load(); + libbpf_set_print(old_print_fn); + if (!ASSERT_ERR_PTR(timer_reject_skel, "timer_reject_skel_load")) + goto cleanup; + + timer_skel = timer_mim__open_and_load(); + if (!ASSERT_OK_PTR(timer_skel, "timer_skel_load")) + goto cleanup; + + err = timer_mim(timer_skel); + ASSERT_OK(err, "timer_mim"); +cleanup: + timer_mim__destroy(timer_skel); + timer_mim_reject__destroy(timer_reject_skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/token.c b/tools/testing/selftests/bpf/prog_tests/token.c new file mode 100644 index 000000000000..fc4a175d8d76 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/token.c @@ -0,0 +1,1052 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ +#define _GNU_SOURCE +#include <test_progs.h> +#include <bpf/btf.h> +#include "cap_helpers.h" +#include <fcntl.h> +#include <sched.h> +#include <signal.h> +#include <unistd.h> +#include <linux/filter.h> +#include <linux/unistd.h> +#include <linux/mount.h> +#include <sys/socket.h> +#include <sys/stat.h> +#include <sys/syscall.h> +#include <sys/un.h> +#include "priv_map.skel.h" +#include "priv_prog.skel.h" +#include "dummy_st_ops_success.skel.h" +#include "token_lsm.skel.h" + +static inline int sys_mount(const char *dev_name, const char *dir_name, + const char *type, unsigned long flags, + const void *data) +{ + return syscall(__NR_mount, dev_name, dir_name, type, flags, data); +} + +static inline int sys_fsopen(const char *fsname, unsigned flags) +{ + return syscall(__NR_fsopen, fsname, flags); +} + +static inline int sys_fspick(int dfd, const char *path, unsigned flags) +{ + return syscall(__NR_fspick, dfd, path, flags); +} + +static inline int sys_fsconfig(int fs_fd, unsigned cmd, const char *key, const void *val, int aux) +{ + return syscall(__NR_fsconfig, fs_fd, cmd, key, val, aux); +} + +static inline int sys_fsmount(int fs_fd, unsigned flags, unsigned ms_flags) +{ + return syscall(__NR_fsmount, fs_fd, flags, ms_flags); +} + +static inline int sys_move_mount(int from_dfd, const char *from_path, + int to_dfd, const char *to_path, + unsigned flags) +{ + return syscall(__NR_move_mount, from_dfd, from_path, to_dfd, to_path, flags); +} + +static int drop_priv_caps(__u64 *old_caps) +{ + return cap_disable_effective((1ULL << CAP_BPF) | + (1ULL << CAP_PERFMON) | + (1ULL << CAP_NET_ADMIN) | + (1ULL << CAP_SYS_ADMIN), old_caps); +} + +static int restore_priv_caps(__u64 old_caps) +{ + return cap_enable_effective(old_caps, NULL); +} + +static int set_delegate_mask(int fs_fd, const char *key, __u64 mask, const char *mask_str) +{ + char buf[32]; + int err; + + if (!mask_str) { + if (mask == ~0ULL) { + mask_str = "any"; + } else { + snprintf(buf, sizeof(buf), "0x%llx", (unsigned long long)mask); + mask_str = buf; + } + } + + err = sys_fsconfig(fs_fd, FSCONFIG_SET_STRING, key, + mask_str, 0); + if (err < 0) + err = -errno; + return err; +} + +#define zclose(fd) do { if (fd >= 0) close(fd); fd = -1; } while (0) + +struct bpffs_opts { + __u64 cmds; + __u64 maps; + __u64 progs; + __u64 attachs; + const char *cmds_str; + const char *maps_str; + const char *progs_str; + const char *attachs_str; +}; + +static int create_bpffs_fd(void) +{ + int fs_fd; + + /* create VFS context */ + fs_fd = sys_fsopen("bpf", 0); + ASSERT_GE(fs_fd, 0, "fs_fd"); + + return fs_fd; +} + +static int materialize_bpffs_fd(int fs_fd, struct bpffs_opts *opts) +{ + int mnt_fd, err; + + /* set up token delegation mount options */ + err = set_delegate_mask(fs_fd, "delegate_cmds", opts->cmds, opts->cmds_str); + if (!ASSERT_OK(err, "fs_cfg_cmds")) + return err; + err = set_delegate_mask(fs_fd, "delegate_maps", opts->maps, opts->maps_str); + if (!ASSERT_OK(err, "fs_cfg_maps")) + return err; + err = set_delegate_mask(fs_fd, "delegate_progs", opts->progs, opts->progs_str); + if (!ASSERT_OK(err, "fs_cfg_progs")) + return err; + err = set_delegate_mask(fs_fd, "delegate_attachs", opts->attachs, opts->attachs_str); + if (!ASSERT_OK(err, "fs_cfg_attachs")) + return err; + + /* instantiate FS object */ + err = sys_fsconfig(fs_fd, FSCONFIG_CMD_CREATE, NULL, NULL, 0); + if (err < 0) + return -errno; + + /* create O_PATH fd for detached mount */ + mnt_fd = sys_fsmount(fs_fd, 0, 0); + if (err < 0) + return -errno; + + return mnt_fd; +} + +/* send FD over Unix domain (AF_UNIX) socket */ +static int sendfd(int sockfd, int fd) +{ + struct msghdr msg = {}; + struct cmsghdr *cmsg; + int fds[1] = { fd }, err; + char iobuf[1]; + struct iovec io = { + .iov_base = iobuf, + .iov_len = sizeof(iobuf), + }; + union { + char buf[CMSG_SPACE(sizeof(fds))]; + struct cmsghdr align; + } u; + + msg.msg_iov = &io; + msg.msg_iovlen = 1; + msg.msg_control = u.buf; + msg.msg_controllen = sizeof(u.buf); + cmsg = CMSG_FIRSTHDR(&msg); + cmsg->cmsg_level = SOL_SOCKET; + cmsg->cmsg_type = SCM_RIGHTS; + cmsg->cmsg_len = CMSG_LEN(sizeof(fds)); + memcpy(CMSG_DATA(cmsg), fds, sizeof(fds)); + + err = sendmsg(sockfd, &msg, 0); + if (err < 0) + err = -errno; + if (!ASSERT_EQ(err, 1, "sendmsg")) + return -EINVAL; + + return 0; +} + +/* receive FD over Unix domain (AF_UNIX) socket */ +static int recvfd(int sockfd, int *fd) +{ + struct msghdr msg = {}; + struct cmsghdr *cmsg; + int fds[1], err; + char iobuf[1]; + struct iovec io = { + .iov_base = iobuf, + .iov_len = sizeof(iobuf), + }; + union { + char buf[CMSG_SPACE(sizeof(fds))]; + struct cmsghdr align; + } u; + + msg.msg_iov = &io; + msg.msg_iovlen = 1; + msg.msg_control = u.buf; + msg.msg_controllen = sizeof(u.buf); + + err = recvmsg(sockfd, &msg, 0); + if (err < 0) + err = -errno; + if (!ASSERT_EQ(err, 1, "recvmsg")) + return -EINVAL; + + cmsg = CMSG_FIRSTHDR(&msg); + if (!ASSERT_OK_PTR(cmsg, "cmsg_null") || + !ASSERT_EQ(cmsg->cmsg_len, CMSG_LEN(sizeof(fds)), "cmsg_len") || + !ASSERT_EQ(cmsg->cmsg_level, SOL_SOCKET, "cmsg_level") || + !ASSERT_EQ(cmsg->cmsg_type, SCM_RIGHTS, "cmsg_type")) + return -EINVAL; + + memcpy(fds, CMSG_DATA(cmsg), sizeof(fds)); + *fd = fds[0]; + + return 0; +} + +static ssize_t write_nointr(int fd, const void *buf, size_t count) +{ + ssize_t ret; + + do { + ret = write(fd, buf, count); + } while (ret < 0 && errno == EINTR); + + return ret; +} + +static int write_file(const char *path, const void *buf, size_t count) +{ + int fd; + ssize_t ret; + + fd = open(path, O_WRONLY | O_CLOEXEC | O_NOCTTY | O_NOFOLLOW); + if (fd < 0) + return -1; + + ret = write_nointr(fd, buf, count); + close(fd); + if (ret < 0 || (size_t)ret != count) + return -1; + + return 0; +} + +static int create_and_enter_userns(void) +{ + uid_t uid; + gid_t gid; + char map[100]; + + uid = getuid(); + gid = getgid(); + + if (unshare(CLONE_NEWUSER)) + return -1; + + if (write_file("/proc/self/setgroups", "deny", sizeof("deny") - 1) && + errno != ENOENT) + return -1; + + snprintf(map, sizeof(map), "0 %d 1", uid); + if (write_file("/proc/self/uid_map", map, strlen(map))) + return -1; + + + snprintf(map, sizeof(map), "0 %d 1", gid); + if (write_file("/proc/self/gid_map", map, strlen(map))) + return -1; + + if (setgid(0)) + return -1; + + if (setuid(0)) + return -1; + + return 0; +} + +typedef int (*child_callback_fn)(int bpffs_fd, struct token_lsm *lsm_skel); + +static void child(int sock_fd, struct bpffs_opts *opts, child_callback_fn callback) +{ + int mnt_fd = -1, fs_fd = -1, err = 0, bpffs_fd = -1, token_fd = -1; + struct token_lsm *lsm_skel = NULL; + + /* load and attach LSM "policy" before we go into unpriv userns */ + lsm_skel = token_lsm__open_and_load(); + if (!ASSERT_OK_PTR(lsm_skel, "lsm_skel_load")) { + err = -EINVAL; + goto cleanup; + } + lsm_skel->bss->my_pid = getpid(); + err = token_lsm__attach(lsm_skel); + if (!ASSERT_OK(err, "lsm_skel_attach")) + goto cleanup; + + /* setup userns with root mappings */ + err = create_and_enter_userns(); + if (!ASSERT_OK(err, "create_and_enter_userns")) + goto cleanup; + + /* setup mountns to allow creating BPF FS (fsopen("bpf")) from unpriv process */ + err = unshare(CLONE_NEWNS); + if (!ASSERT_OK(err, "create_mountns")) + goto cleanup; + + err = sys_mount(NULL, "/", NULL, MS_REC | MS_PRIVATE, 0); + if (!ASSERT_OK(err, "remount_root")) + goto cleanup; + + fs_fd = create_bpffs_fd(); + if (!ASSERT_GE(fs_fd, 0, "create_bpffs_fd")) { + err = -EINVAL; + goto cleanup; + } + + /* ensure unprivileged child cannot set delegation options */ + err = set_delegate_mask(fs_fd, "delegate_cmds", 0x1, NULL); + ASSERT_EQ(err, -EPERM, "delegate_cmd_eperm"); + err = set_delegate_mask(fs_fd, "delegate_maps", 0x1, NULL); + ASSERT_EQ(err, -EPERM, "delegate_maps_eperm"); + err = set_delegate_mask(fs_fd, "delegate_progs", 0x1, NULL); + ASSERT_EQ(err, -EPERM, "delegate_progs_eperm"); + err = set_delegate_mask(fs_fd, "delegate_attachs", 0x1, NULL); + ASSERT_EQ(err, -EPERM, "delegate_attachs_eperm"); + + /* pass BPF FS context object to parent */ + err = sendfd(sock_fd, fs_fd); + if (!ASSERT_OK(err, "send_fs_fd")) + goto cleanup; + zclose(fs_fd); + + /* avoid mucking around with mount namespaces and mounting at + * well-known path, just get detach-mounted BPF FS fd back from parent + */ + err = recvfd(sock_fd, &mnt_fd); + if (!ASSERT_OK(err, "recv_mnt_fd")) + goto cleanup; + + /* try to fspick() BPF FS and try to add some delegation options */ + fs_fd = sys_fspick(mnt_fd, "", FSPICK_EMPTY_PATH); + if (!ASSERT_GE(fs_fd, 0, "bpffs_fspick")) { + err = -EINVAL; + goto cleanup; + } + + /* ensure unprivileged child cannot reconfigure to set delegation options */ + err = set_delegate_mask(fs_fd, "delegate_cmds", 0, "any"); + if (!ASSERT_EQ(err, -EPERM, "delegate_cmd_eperm_reconfig")) { + err = -EINVAL; + goto cleanup; + } + err = set_delegate_mask(fs_fd, "delegate_maps", 0, "any"); + if (!ASSERT_EQ(err, -EPERM, "delegate_maps_eperm_reconfig")) { + err = -EINVAL; + goto cleanup; + } + err = set_delegate_mask(fs_fd, "delegate_progs", 0, "any"); + if (!ASSERT_EQ(err, -EPERM, "delegate_progs_eperm_reconfig")) { + err = -EINVAL; + goto cleanup; + } + err = set_delegate_mask(fs_fd, "delegate_attachs", 0, "any"); + if (!ASSERT_EQ(err, -EPERM, "delegate_attachs_eperm_reconfig")) { + err = -EINVAL; + goto cleanup; + } + zclose(fs_fd); + + bpffs_fd = openat(mnt_fd, ".", 0, O_RDWR); + if (!ASSERT_GE(bpffs_fd, 0, "bpffs_open")) { + err = -EINVAL; + goto cleanup; + } + + /* create BPF token FD and pass it to parent for some extra checks */ + token_fd = bpf_token_create(bpffs_fd, NULL); + if (!ASSERT_GT(token_fd, 0, "child_token_create")) { + err = -EINVAL; + goto cleanup; + } + err = sendfd(sock_fd, token_fd); + if (!ASSERT_OK(err, "send_token_fd")) + goto cleanup; + zclose(token_fd); + + /* do custom test logic with customly set up BPF FS instance */ + err = callback(bpffs_fd, lsm_skel); + if (!ASSERT_OK(err, "test_callback")) + goto cleanup; + + err = 0; +cleanup: + zclose(sock_fd); + zclose(mnt_fd); + zclose(fs_fd); + zclose(bpffs_fd); + zclose(token_fd); + + lsm_skel->bss->my_pid = 0; + token_lsm__destroy(lsm_skel); + + exit(-err); +} + +static int wait_for_pid(pid_t pid) +{ + int status, ret; + +again: + ret = waitpid(pid, &status, 0); + if (ret == -1) { + if (errno == EINTR) + goto again; + + return -1; + } + + if (!WIFEXITED(status)) + return -1; + + return WEXITSTATUS(status); +} + +static void parent(int child_pid, struct bpffs_opts *bpffs_opts, int sock_fd) +{ + int fs_fd = -1, mnt_fd = -1, token_fd = -1, err; + + err = recvfd(sock_fd, &fs_fd); + if (!ASSERT_OK(err, "recv_bpffs_fd")) + goto cleanup; + + mnt_fd = materialize_bpffs_fd(fs_fd, bpffs_opts); + if (!ASSERT_GE(mnt_fd, 0, "materialize_bpffs_fd")) { + err = -EINVAL; + goto cleanup; + } + zclose(fs_fd); + + /* pass BPF FS context object to parent */ + err = sendfd(sock_fd, mnt_fd); + if (!ASSERT_OK(err, "send_mnt_fd")) + goto cleanup; + zclose(mnt_fd); + + /* receive BPF token FD back from child for some extra tests */ + err = recvfd(sock_fd, &token_fd); + if (!ASSERT_OK(err, "recv_token_fd")) + goto cleanup; + + err = wait_for_pid(child_pid); + ASSERT_OK(err, "waitpid_child"); + +cleanup: + zclose(sock_fd); + zclose(fs_fd); + zclose(mnt_fd); + zclose(token_fd); + + if (child_pid > 0) + (void)kill(child_pid, SIGKILL); +} + +static void subtest_userns(struct bpffs_opts *bpffs_opts, + child_callback_fn child_cb) +{ + int sock_fds[2] = { -1, -1 }; + int child_pid = 0, err; + + err = socketpair(AF_UNIX, SOCK_STREAM, 0, sock_fds); + if (!ASSERT_OK(err, "socketpair")) + goto cleanup; + + child_pid = fork(); + if (!ASSERT_GE(child_pid, 0, "fork")) + goto cleanup; + + if (child_pid == 0) { + zclose(sock_fds[0]); + return child(sock_fds[1], bpffs_opts, child_cb); + + } else { + zclose(sock_fds[1]); + return parent(child_pid, bpffs_opts, sock_fds[0]); + } + +cleanup: + zclose(sock_fds[0]); + zclose(sock_fds[1]); + if (child_pid > 0) + (void)kill(child_pid, SIGKILL); +} + +static int userns_map_create(int mnt_fd, struct token_lsm *lsm_skel) +{ + LIBBPF_OPTS(bpf_map_create_opts, map_opts); + int err, token_fd = -1, map_fd = -1; + __u64 old_caps = 0; + + /* create BPF token from BPF FS mount */ + token_fd = bpf_token_create(mnt_fd, NULL); + if (!ASSERT_GT(token_fd, 0, "token_create")) { + err = -EINVAL; + goto cleanup; + } + + /* while inside non-init userns, we need both a BPF token *and* + * CAP_BPF inside current userns to create privileged map; let's test + * that neither BPF token alone nor namespaced CAP_BPF is sufficient + */ + err = drop_priv_caps(&old_caps); + if (!ASSERT_OK(err, "drop_caps")) + goto cleanup; + + /* no token, no CAP_BPF -> fail */ + map_opts.map_flags = 0; + map_opts.token_fd = 0; + map_fd = bpf_map_create(BPF_MAP_TYPE_STACK, "wo_token_wo_bpf", 0, 8, 1, &map_opts); + if (!ASSERT_LT(map_fd, 0, "stack_map_wo_token_wo_cap_bpf_should_fail")) { + err = -EINVAL; + goto cleanup; + } + + /* token without CAP_BPF -> fail */ + map_opts.map_flags = BPF_F_TOKEN_FD; + map_opts.token_fd = token_fd; + map_fd = bpf_map_create(BPF_MAP_TYPE_STACK, "w_token_wo_bpf", 0, 8, 1, &map_opts); + if (!ASSERT_LT(map_fd, 0, "stack_map_w_token_wo_cap_bpf_should_fail")) { + err = -EINVAL; + goto cleanup; + } + + /* get back effective local CAP_BPF (and CAP_SYS_ADMIN) */ + err = restore_priv_caps(old_caps); + if (!ASSERT_OK(err, "restore_caps")) + goto cleanup; + + /* CAP_BPF without token -> fail */ + map_opts.map_flags = 0; + map_opts.token_fd = 0; + map_fd = bpf_map_create(BPF_MAP_TYPE_STACK, "wo_token_w_bpf", 0, 8, 1, &map_opts); + if (!ASSERT_LT(map_fd, 0, "stack_map_wo_token_w_cap_bpf_should_fail")) { + err = -EINVAL; + goto cleanup; + } + + /* finally, namespaced CAP_BPF + token -> success */ + map_opts.map_flags = BPF_F_TOKEN_FD; + map_opts.token_fd = token_fd; + map_fd = bpf_map_create(BPF_MAP_TYPE_STACK, "w_token_w_bpf", 0, 8, 1, &map_opts); + if (!ASSERT_GT(map_fd, 0, "stack_map_w_token_w_cap_bpf")) { + err = -EINVAL; + goto cleanup; + } + +cleanup: + zclose(token_fd); + zclose(map_fd); + return err; +} + +static int userns_btf_load(int mnt_fd, struct token_lsm *lsm_skel) +{ + LIBBPF_OPTS(bpf_btf_load_opts, btf_opts); + int err, token_fd = -1, btf_fd = -1; + const void *raw_btf_data; + struct btf *btf = NULL; + __u32 raw_btf_size; + __u64 old_caps = 0; + + /* create BPF token from BPF FS mount */ + token_fd = bpf_token_create(mnt_fd, NULL); + if (!ASSERT_GT(token_fd, 0, "token_create")) { + err = -EINVAL; + goto cleanup; + } + + /* while inside non-init userns, we need both a BPF token *and* + * CAP_BPF inside current userns to create privileged map; let's test + * that neither BPF token alone nor namespaced CAP_BPF is sufficient + */ + err = drop_priv_caps(&old_caps); + if (!ASSERT_OK(err, "drop_caps")) + goto cleanup; + + /* setup a trivial BTF data to load to the kernel */ + btf = btf__new_empty(); + if (!ASSERT_OK_PTR(btf, "empty_btf")) + goto cleanup; + + ASSERT_GT(btf__add_int(btf, "int", 4, 0), 0, "int_type"); + + raw_btf_data = btf__raw_data(btf, &raw_btf_size); + if (!ASSERT_OK_PTR(raw_btf_data, "raw_btf_data")) + goto cleanup; + + /* no token + no CAP_BPF -> failure */ + btf_opts.btf_flags = 0; + btf_opts.token_fd = 0; + btf_fd = bpf_btf_load(raw_btf_data, raw_btf_size, &btf_opts); + if (!ASSERT_LT(btf_fd, 0, "no_token_no_cap_should_fail")) + goto cleanup; + + /* token + no CAP_BPF -> failure */ + btf_opts.btf_flags = BPF_F_TOKEN_FD; + btf_opts.token_fd = token_fd; + btf_fd = bpf_btf_load(raw_btf_data, raw_btf_size, &btf_opts); + if (!ASSERT_LT(btf_fd, 0, "token_no_cap_should_fail")) + goto cleanup; + + /* get back effective local CAP_BPF (and CAP_SYS_ADMIN) */ + err = restore_priv_caps(old_caps); + if (!ASSERT_OK(err, "restore_caps")) + goto cleanup; + + /* token + CAP_BPF -> success */ + btf_opts.btf_flags = BPF_F_TOKEN_FD; + btf_opts.token_fd = token_fd; + btf_fd = bpf_btf_load(raw_btf_data, raw_btf_size, &btf_opts); + if (!ASSERT_GT(btf_fd, 0, "token_and_cap_success")) + goto cleanup; + + err = 0; +cleanup: + btf__free(btf); + zclose(btf_fd); + zclose(token_fd); + return err; +} + +static int userns_prog_load(int mnt_fd, struct token_lsm *lsm_skel) +{ + LIBBPF_OPTS(bpf_prog_load_opts, prog_opts); + int err, token_fd = -1, prog_fd = -1; + struct bpf_insn insns[] = { + /* bpf_jiffies64() requires CAP_BPF */ + BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 0, 0, BPF_FUNC_jiffies64), + /* bpf_get_current_task() requires CAP_PERFMON */ + BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 0, 0, BPF_FUNC_get_current_task), + /* r0 = 0; exit; */ + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + size_t insn_cnt = ARRAY_SIZE(insns); + __u64 old_caps = 0; + + /* create BPF token from BPF FS mount */ + token_fd = bpf_token_create(mnt_fd, NULL); + if (!ASSERT_GT(token_fd, 0, "token_create")) { + err = -EINVAL; + goto cleanup; + } + + /* validate we can successfully load BPF program with token; this + * being XDP program (CAP_NET_ADMIN) using bpf_jiffies64() (CAP_BPF) + * and bpf_get_current_task() (CAP_PERFMON) helpers validates we have + * BPF token wired properly in a bunch of places in the kernel + */ + prog_opts.prog_flags = BPF_F_TOKEN_FD; + prog_opts.token_fd = token_fd; + prog_opts.expected_attach_type = BPF_XDP; + prog_fd = bpf_prog_load(BPF_PROG_TYPE_XDP, "token_prog", "GPL", + insns, insn_cnt, &prog_opts); + if (!ASSERT_GT(prog_fd, 0, "prog_fd")) { + err = -EPERM; + goto cleanup; + } + + /* no token + caps -> failure */ + prog_opts.prog_flags = 0; + prog_opts.token_fd = 0; + prog_fd = bpf_prog_load(BPF_PROG_TYPE_XDP, "token_prog", "GPL", + insns, insn_cnt, &prog_opts); + if (!ASSERT_EQ(prog_fd, -EPERM, "prog_fd_eperm")) { + err = -EPERM; + goto cleanup; + } + + err = drop_priv_caps(&old_caps); + if (!ASSERT_OK(err, "drop_caps")) + goto cleanup; + + /* no caps + token -> failure */ + prog_opts.prog_flags = BPF_F_TOKEN_FD; + prog_opts.token_fd = token_fd; + prog_fd = bpf_prog_load(BPF_PROG_TYPE_XDP, "token_prog", "GPL", + insns, insn_cnt, &prog_opts); + if (!ASSERT_EQ(prog_fd, -EPERM, "prog_fd_eperm")) { + err = -EPERM; + goto cleanup; + } + + /* no caps + no token -> definitely a failure */ + prog_opts.prog_flags = 0; + prog_opts.token_fd = 0; + prog_fd = bpf_prog_load(BPF_PROG_TYPE_XDP, "token_prog", "GPL", + insns, insn_cnt, &prog_opts); + if (!ASSERT_EQ(prog_fd, -EPERM, "prog_fd_eperm")) { + err = -EPERM; + goto cleanup; + } + + err = 0; +cleanup: + zclose(prog_fd); + zclose(token_fd); + return err; +} + +static int userns_obj_priv_map(int mnt_fd, struct token_lsm *lsm_skel) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts); + char buf[256]; + struct priv_map *skel; + int err; + + skel = priv_map__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "obj_tokenless_load")) { + priv_map__destroy(skel); + return -EINVAL; + } + + /* use bpf_token_path to provide BPF FS path */ + snprintf(buf, sizeof(buf), "/proc/self/fd/%d", mnt_fd); + opts.bpf_token_path = buf; + skel = priv_map__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "obj_token_path_open")) + return -EINVAL; + + err = priv_map__load(skel); + priv_map__destroy(skel); + if (!ASSERT_OK(err, "obj_token_path_load")) + return -EINVAL; + + return 0; +} + +static int userns_obj_priv_prog(int mnt_fd, struct token_lsm *lsm_skel) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts); + char buf[256]; + struct priv_prog *skel; + int err; + + skel = priv_prog__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "obj_tokenless_load")) { + priv_prog__destroy(skel); + return -EINVAL; + } + + /* use bpf_token_path to provide BPF FS path */ + snprintf(buf, sizeof(buf), "/proc/self/fd/%d", mnt_fd); + opts.bpf_token_path = buf; + skel = priv_prog__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "obj_token_path_open")) + return -EINVAL; + err = priv_prog__load(skel); + priv_prog__destroy(skel); + if (!ASSERT_OK(err, "obj_token_path_load")) + return -EINVAL; + + /* provide BPF token, but reject bpf_token_capable() with LSM */ + lsm_skel->bss->reject_capable = true; + lsm_skel->bss->reject_cmd = false; + skel = priv_prog__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "obj_token_lsm_reject_cap_open")) + return -EINVAL; + err = priv_prog__load(skel); + priv_prog__destroy(skel); + if (!ASSERT_ERR(err, "obj_token_lsm_reject_cap_load")) + return -EINVAL; + + /* provide BPF token, but reject bpf_token_cmd() with LSM */ + lsm_skel->bss->reject_capable = false; + lsm_skel->bss->reject_cmd = true; + skel = priv_prog__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "obj_token_lsm_reject_cmd_open")) + return -EINVAL; + err = priv_prog__load(skel); + priv_prog__destroy(skel); + if (!ASSERT_ERR(err, "obj_token_lsm_reject_cmd_load")) + return -EINVAL; + + return 0; +} + +/* this test is called with BPF FS that doesn't delegate BPF_BTF_LOAD command, + * which should cause struct_ops application to fail, as BTF won't be uploaded + * into the kernel, even if STRUCT_OPS programs themselves are allowed + */ +static int validate_struct_ops_load(int mnt_fd, bool expect_success) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts); + char buf[256]; + struct dummy_st_ops_success *skel; + int err; + + snprintf(buf, sizeof(buf), "/proc/self/fd/%d", mnt_fd); + opts.bpf_token_path = buf; + skel = dummy_st_ops_success__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "obj_token_path_open")) + return -EINVAL; + + err = dummy_st_ops_success__load(skel); + dummy_st_ops_success__destroy(skel); + if (expect_success) { + if (!ASSERT_OK(err, "obj_token_path_load")) + return -EINVAL; + } else /* expect failure */ { + if (!ASSERT_ERR(err, "obj_token_path_load")) + return -EINVAL; + } + + return 0; +} + +static int userns_obj_priv_btf_fail(int mnt_fd, struct token_lsm *lsm_skel) +{ + return validate_struct_ops_load(mnt_fd, false /* should fail */); +} + +static int userns_obj_priv_btf_success(int mnt_fd, struct token_lsm *lsm_skel) +{ + return validate_struct_ops_load(mnt_fd, true /* should succeed */); +} + +#define TOKEN_ENVVAR "LIBBPF_BPF_TOKEN_PATH" +#define TOKEN_BPFFS_CUSTOM "/bpf-token-fs" + +static int userns_obj_priv_implicit_token(int mnt_fd, struct token_lsm *lsm_skel) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts); + struct dummy_st_ops_success *skel; + int err; + + /* before we mount BPF FS with token delegation, struct_ops skeleton + * should fail to load + */ + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "obj_tokenless_load")) { + dummy_st_ops_success__destroy(skel); + return -EINVAL; + } + + /* mount custom BPF FS over /sys/fs/bpf so that libbpf can create BPF + * token automatically and implicitly + */ + err = sys_move_mount(mnt_fd, "", AT_FDCWD, "/sys/fs/bpf", MOVE_MOUNT_F_EMPTY_PATH); + if (!ASSERT_OK(err, "move_mount_bpffs")) + return -EINVAL; + + /* disable implicit BPF token creation by setting + * LIBBPF_BPF_TOKEN_PATH envvar to empty value, load should fail + */ + err = setenv(TOKEN_ENVVAR, "", 1 /*overwrite*/); + if (!ASSERT_OK(err, "setenv_token_path")) + return -EINVAL; + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "obj_token_envvar_disabled_load")) { + unsetenv(TOKEN_ENVVAR); + dummy_st_ops_success__destroy(skel); + return -EINVAL; + } + unsetenv(TOKEN_ENVVAR); + + /* now the same struct_ops skeleton should succeed thanks to libppf + * creating BPF token from /sys/fs/bpf mount point + */ + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_OK_PTR(skel, "obj_implicit_token_load")) + return -EINVAL; + + dummy_st_ops_success__destroy(skel); + + /* now disable implicit token through empty bpf_token_path, should fail */ + opts.bpf_token_path = ""; + skel = dummy_st_ops_success__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "obj_empty_token_path_open")) + return -EINVAL; + + err = dummy_st_ops_success__load(skel); + dummy_st_ops_success__destroy(skel); + if (!ASSERT_ERR(err, "obj_empty_token_path_load")) + return -EINVAL; + + return 0; +} + +static int userns_obj_priv_implicit_token_envvar(int mnt_fd, struct token_lsm *lsm_skel) +{ + LIBBPF_OPTS(bpf_object_open_opts, opts); + struct dummy_st_ops_success *skel; + int err; + + /* before we mount BPF FS with token delegation, struct_ops skeleton + * should fail to load + */ + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "obj_tokenless_load")) { + dummy_st_ops_success__destroy(skel); + return -EINVAL; + } + + /* mount custom BPF FS over custom location, so libbpf can't create + * BPF token implicitly, unless pointed to it through + * LIBBPF_BPF_TOKEN_PATH envvar + */ + rmdir(TOKEN_BPFFS_CUSTOM); + if (!ASSERT_OK(mkdir(TOKEN_BPFFS_CUSTOM, 0777), "mkdir_bpffs_custom")) + goto err_out; + err = sys_move_mount(mnt_fd, "", AT_FDCWD, TOKEN_BPFFS_CUSTOM, MOVE_MOUNT_F_EMPTY_PATH); + if (!ASSERT_OK(err, "move_mount_bpffs")) + goto err_out; + + /* even though we have BPF FS with delegation, it's not at default + * /sys/fs/bpf location, so we still fail to load until envvar is set up + */ + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_ERR_PTR(skel, "obj_tokenless_load2")) { + dummy_st_ops_success__destroy(skel); + goto err_out; + } + + err = setenv(TOKEN_ENVVAR, TOKEN_BPFFS_CUSTOM, 1 /*overwrite*/); + if (!ASSERT_OK(err, "setenv_token_path")) + goto err_out; + + /* now the same struct_ops skeleton should succeed thanks to libppf + * creating BPF token from custom mount point + */ + skel = dummy_st_ops_success__open_and_load(); + if (!ASSERT_OK_PTR(skel, "obj_implicit_token_load")) + goto err_out; + + dummy_st_ops_success__destroy(skel); + + /* now disable implicit token through empty bpf_token_path, envvar + * will be ignored, should fail + */ + opts.bpf_token_path = ""; + skel = dummy_st_ops_success__open_opts(&opts); + if (!ASSERT_OK_PTR(skel, "obj_empty_token_path_open")) + goto err_out; + + err = dummy_st_ops_success__load(skel); + dummy_st_ops_success__destroy(skel); + if (!ASSERT_ERR(err, "obj_empty_token_path_load")) + goto err_out; + + rmdir(TOKEN_BPFFS_CUSTOM); + unsetenv(TOKEN_ENVVAR); + return 0; +err_out: + rmdir(TOKEN_BPFFS_CUSTOM); + unsetenv(TOKEN_ENVVAR); + return -EINVAL; +} + +#define bit(n) (1ULL << (n)) + +void test_token(void) +{ + if (test__start_subtest("map_token")) { + struct bpffs_opts opts = { + .cmds_str = "map_create", + .maps_str = "stack", + }; + + subtest_userns(&opts, userns_map_create); + } + if (test__start_subtest("btf_token")) { + struct bpffs_opts opts = { + .cmds = 1ULL << BPF_BTF_LOAD, + }; + + subtest_userns(&opts, userns_btf_load); + } + if (test__start_subtest("prog_token")) { + struct bpffs_opts opts = { + .cmds_str = "PROG_LOAD", + .progs_str = "XDP", + .attachs_str = "xdp", + }; + + subtest_userns(&opts, userns_prog_load); + } + if (test__start_subtest("obj_priv_map")) { + struct bpffs_opts opts = { + .cmds = bit(BPF_MAP_CREATE), + .maps = bit(BPF_MAP_TYPE_QUEUE), + }; + + subtest_userns(&opts, userns_obj_priv_map); + } + if (test__start_subtest("obj_priv_prog")) { + struct bpffs_opts opts = { + .cmds = bit(BPF_PROG_LOAD), + .progs = bit(BPF_PROG_TYPE_KPROBE), + .attachs = ~0ULL, + }; + + subtest_userns(&opts, userns_obj_priv_prog); + } + if (test__start_subtest("obj_priv_btf_fail")) { + struct bpffs_opts opts = { + /* disallow BTF loading */ + .cmds = bit(BPF_MAP_CREATE) | bit(BPF_PROG_LOAD), + .maps = bit(BPF_MAP_TYPE_STRUCT_OPS), + .progs = bit(BPF_PROG_TYPE_STRUCT_OPS), + .attachs = ~0ULL, + }; + + subtest_userns(&opts, userns_obj_priv_btf_fail); + } + if (test__start_subtest("obj_priv_btf_success")) { + struct bpffs_opts opts = { + /* allow BTF loading */ + .cmds = bit(BPF_BTF_LOAD) | bit(BPF_MAP_CREATE) | bit(BPF_PROG_LOAD), + .maps = bit(BPF_MAP_TYPE_STRUCT_OPS), + .progs = bit(BPF_PROG_TYPE_STRUCT_OPS), + .attachs = ~0ULL, + }; + + subtest_userns(&opts, userns_obj_priv_btf_success); + } + if (test__start_subtest("obj_priv_implicit_token")) { + struct bpffs_opts opts = { + /* allow BTF loading */ + .cmds = bit(BPF_BTF_LOAD) | bit(BPF_MAP_CREATE) | bit(BPF_PROG_LOAD), + .maps = bit(BPF_MAP_TYPE_STRUCT_OPS), + .progs = bit(BPF_PROG_TYPE_STRUCT_OPS), + .attachs = ~0ULL, + }; + + subtest_userns(&opts, userns_obj_priv_implicit_token); + } + if (test__start_subtest("obj_priv_implicit_token_envvar")) { + struct bpffs_opts opts = { + /* allow BTF loading */ + .cmds = bit(BPF_BTF_LOAD) | bit(BPF_MAP_CREATE) | bit(BPF_PROG_LOAD), + .maps = bit(BPF_MAP_TYPE_STRUCT_OPS), + .progs = bit(BPF_PROG_TYPE_STRUCT_OPS), + .attachs = ~0ULL, + }; + + subtest_userns(&opts, userns_obj_priv_implicit_token_envvar); + } +} diff --git a/tools/testing/selftests/bpf/prog_tests/tp_attach_query.c b/tools/testing/selftests/bpf/prog_tests/tp_attach_query.c index fb095e5cd9af..655d69f0ff0b 100644 --- a/tools/testing/selftests/bpf/prog_tests/tp_attach_query.c +++ b/tools/testing/selftests/bpf/prog_tests/tp_attach_query.c @@ -1,12 +1,12 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> -void test_tp_attach_query(void) +void serial_test_tp_attach_query(void) { const int num_progs = 3; int i, j, bytes, efd, err, prog_fd[num_progs], pmu_fd[num_progs]; __u32 duration = 0, info_len, saved_prog_ids[num_progs]; - const char *file = "./test_tracepoint.o"; + const char *file = "./test_tracepoint.bpf.o"; struct perf_event_query_bpf *query; struct perf_event_attr attr = {}; struct bpf_object *obj[num_progs]; @@ -16,8 +16,13 @@ void test_tp_attach_query(void) for (i = 0; i < num_progs; i++) obj[i] = NULL; - snprintf(buf, sizeof(buf), - "/sys/kernel/debug/tracing/events/sched/sched_switch/id"); + if (access("/sys/kernel/tracing/trace", F_OK) == 0) { + snprintf(buf, sizeof(buf), + "/sys/kernel/tracing/events/sched/sched_switch/id"); + } else { + snprintf(buf, sizeof(buf), + "/sys/kernel/debug/tracing/events/sched/sched_switch/id"); + } efd = open(buf, O_RDONLY, 0); if (CHECK(efd < 0, "open", "err %d errno %d\n", efd, errno)) return; @@ -35,7 +40,7 @@ void test_tp_attach_query(void) query = malloc(sizeof(*query) + sizeof(__u32) * num_progs); for (i = 0; i < num_progs; i++) { - err = bpf_prog_load(file, BPF_PROG_TYPE_TRACEPOINT, &obj[i], + err = bpf_prog_test_load(file, BPF_PROG_TYPE_TRACEPOINT, &obj[i], &prog_fd[i]); if (CHECK(err, "prog_load", "err %d errno %d\n", err, errno)) goto cleanup1; @@ -45,8 +50,9 @@ void test_tp_attach_query(void) prog_info.xlated_prog_len = 0; prog_info.nr_map_ids = 0; info_len = sizeof(prog_info); - err = bpf_obj_get_info_by_fd(prog_fd[i], &prog_info, &info_len); - if (CHECK(err, "bpf_obj_get_info_by_fd", "err %d errno %d\n", + err = bpf_prog_get_info_by_fd(prog_fd[i], &prog_info, + &info_len); + if (CHECK(err, "bpf_prog_get_info_by_fd", "err %d errno %d\n", err, errno)) goto cleanup1; saved_prog_ids[i] = prog_info.id; diff --git a/tools/testing/selftests/bpf/prog_tests/trace_ext.c b/tools/testing/selftests/bpf/prog_tests/trace_ext.c new file mode 100644 index 000000000000..aabdff7bea3e --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/trace_ext.c @@ -0,0 +1,115 @@ +// SPDX-License-Identifier: GPL-2.0 + +#define _GNU_SOURCE +#include <test_progs.h> +#include <network_helpers.h> +#include <sys/stat.h> +#include <linux/sched.h> +#include <sys/syscall.h> + +#include "test_pkt_md_access.skel.h" +#include "test_trace_ext.skel.h" +#include "test_trace_ext_tracing.skel.h" + +static __u32 duration; + +void test_trace_ext(void) +{ + struct test_pkt_md_access *skel_pkt = NULL; + struct test_trace_ext_tracing *skel_trace = NULL; + struct test_trace_ext_tracing__bss *bss_trace; + struct test_trace_ext *skel_ext = NULL; + struct test_trace_ext__bss *bss_ext; + int err, pkt_fd, ext_fd; + struct bpf_program *prog; + char buf[100]; + __u64 len; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + /* open/load/attach test_pkt_md_access */ + skel_pkt = test_pkt_md_access__open_and_load(); + if (CHECK(!skel_pkt, "setup", "classifier/test_pkt_md_access open failed\n")) + goto cleanup; + + err = test_pkt_md_access__attach(skel_pkt); + if (CHECK(err, "setup", "classifier/test_pkt_md_access attach failed: %d\n", err)) + goto cleanup; + + prog = skel_pkt->progs.test_pkt_md_access; + pkt_fd = bpf_program__fd(prog); + + /* open extension */ + skel_ext = test_trace_ext__open(); + if (CHECK(!skel_ext, "setup", "freplace/test_pkt_md_access open failed\n")) + goto cleanup; + + /* set extension's attach target - test_pkt_md_access */ + prog = skel_ext->progs.test_pkt_md_access_new; + bpf_program__set_attach_target(prog, pkt_fd, "test_pkt_md_access"); + + /* load/attach extension */ + err = test_trace_ext__load(skel_ext); + if (CHECK(err, "setup", "freplace/test_pkt_md_access load failed\n")) { + libbpf_strerror(err, buf, sizeof(buf)); + fprintf(stderr, "%s\n", buf); + goto cleanup; + } + + err = test_trace_ext__attach(skel_ext); + if (CHECK(err, "setup", "freplace/test_pkt_md_access attach failed: %d\n", err)) + goto cleanup; + + prog = skel_ext->progs.test_pkt_md_access_new; + ext_fd = bpf_program__fd(prog); + + /* open tracing */ + skel_trace = test_trace_ext_tracing__open(); + if (CHECK(!skel_trace, "setup", "tracing/test_pkt_md_access_new open failed\n")) + goto cleanup; + + /* set tracing's attach target - fentry */ + prog = skel_trace->progs.fentry; + bpf_program__set_attach_target(prog, ext_fd, "test_pkt_md_access_new"); + + /* set tracing's attach target - fexit */ + prog = skel_trace->progs.fexit; + bpf_program__set_attach_target(prog, ext_fd, "test_pkt_md_access_new"); + + /* load/attach tracing */ + err = test_trace_ext_tracing__load(skel_trace); + if (!ASSERT_OK(err, "tracing/test_pkt_md_access_new load")) { + libbpf_strerror(err, buf, sizeof(buf)); + fprintf(stderr, "%s\n", buf); + goto cleanup; + } + + err = test_trace_ext_tracing__attach(skel_trace); + if (!ASSERT_OK(err, "tracing/test_pkt_md_access_new attach")) + goto cleanup; + + /* trigger the test */ + err = bpf_prog_test_run_opts(pkt_fd, &topts); + ASSERT_OK(err, "test_run_opts err"); + ASSERT_OK(topts.retval, "test_run_opts retval"); + + bss_ext = skel_ext->bss; + bss_trace = skel_trace->bss; + + len = bss_ext->ext_called; + + ASSERT_NEQ(bss_ext->ext_called, 0, + "failed to trigger freplace/test_pkt_md_access"); + ASSERT_EQ(bss_trace->fentry_called, len, + "failed to trigger fentry/test_pkt_md_access_new"); + ASSERT_EQ(bss_trace->fexit_called, len, + "failed to trigger fexit/test_pkt_md_access_new"); + +cleanup: + test_trace_ext_tracing__destroy(skel_trace); + test_trace_ext__destroy(skel_ext); + test_pkt_md_access__destroy(skel_pkt); +} diff --git a/tools/testing/selftests/bpf/prog_tests/trace_printk.c b/tools/testing/selftests/bpf/prog_tests/trace_printk.c index 39b0decb1bb2..e56e88596d64 100644 --- a/tools/testing/selftests/bpf/prog_tests/trace_printk.c +++ b/tools/testing/selftests/bpf/prog_tests/trace_printk.c @@ -3,73 +3,56 @@ #include <test_progs.h> -#include "trace_printk.skel.h" +#include "trace_printk.lskel.h" -#define TRACEBUF "/sys/kernel/debug/tracing/trace_pipe" #define SEARCHMSG "testing,testing" -void test_trace_printk(void) +static void trace_pipe_cb(const char *str, void *data) { - int err, iter = 0, duration = 0, found = 0; - struct trace_printk__bss *bss; - struct trace_printk *skel; - char *buf = NULL; - FILE *fp = NULL; - size_t buflen; - - skel = trace_printk__open(); - if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) + if (strstr(str, SEARCHMSG) != NULL) + (*(int *)data)++; +} + +void serial_test_trace_printk(void) +{ + struct trace_printk_lskel__bss *bss; + struct trace_printk_lskel *skel; + int err = 0, found = 0; + + skel = trace_printk_lskel__open(); + if (!ASSERT_OK_PTR(skel, "trace_printk__open")) return; - err = trace_printk__load(skel); - if (CHECK(err, "skel_load", "failed to load skeleton: %d\n", err)) + ASSERT_EQ(skel->rodata->fmt[0], 'T', "skel->rodata->fmt[0]"); + skel->rodata->fmt[0] = 't'; + + err = trace_printk_lskel__load(skel); + if (!ASSERT_OK(err, "trace_printk__load")) goto cleanup; bss = skel->bss; - err = trace_printk__attach(skel); - if (CHECK(err, "skel_attach", "skeleton attach failed: %d\n", err)) + err = trace_printk_lskel__attach(skel); + if (!ASSERT_OK(err, "trace_printk__attach")) goto cleanup; - fp = fopen(TRACEBUF, "r"); - if (CHECK(fp == NULL, "could not open trace buffer", - "error %d opening %s", errno, TRACEBUF)) - goto cleanup; - - /* We do not want to wait forever if this test fails... */ - fcntl(fileno(fp), F_SETFL, O_NONBLOCK); - /* wait for tracepoint to trigger */ usleep(1); - trace_printk__detach(skel); + trace_printk_lskel__detach(skel); - if (CHECK(bss->trace_printk_ran == 0, - "bpf_trace_printk never ran", - "ran == %d", bss->trace_printk_ran)) + if (!ASSERT_GT(bss->trace_printk_ran, 0, "bss->trace_printk_ran")) goto cleanup; - if (CHECK(bss->trace_printk_ret <= 0, - "bpf_trace_printk returned <= 0 value", - "got %d", bss->trace_printk_ret)) + if (!ASSERT_GT(bss->trace_printk_ret, 0, "bss->trace_printk_ret")) goto cleanup; /* verify our search string is in the trace buffer */ - while (getline(&buf, &buflen, fp) >= 0 || errno == EAGAIN) { - if (strstr(buf, SEARCHMSG) != NULL) - found++; - if (found == bss->trace_printk_ran) - break; - if (++iter > 1000) - break; - } - - if (CHECK(!found, "message from bpf_trace_printk not found", - "no instance of %s in %s", SEARCHMSG, TRACEBUF)) + ASSERT_OK(read_trace_pipe_iter(trace_pipe_cb, &found, 1000), + "read_trace_pipe_iter"); + + if (!ASSERT_EQ(found, bss->trace_printk_ran, "found")) goto cleanup; cleanup: - trace_printk__destroy(skel); - free(buf); - if (fp) - fclose(fp); + trace_printk_lskel__destroy(skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/trace_vprintk.c b/tools/testing/selftests/bpf/prog_tests/trace_vprintk.c new file mode 100644 index 000000000000..2af6a6f2096a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/trace_vprintk.c @@ -0,0 +1,54 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> + +#include "trace_vprintk.lskel.h" + +#define SEARCHMSG "1,2,3,4,5,6,7,8,9,10" + +static void trace_pipe_cb(const char *str, void *data) +{ + if (strstr(str, SEARCHMSG) != NULL) + (*(int *)data)++; +} + +void serial_test_trace_vprintk(void) +{ + struct trace_vprintk_lskel__bss *bss; + struct trace_vprintk_lskel *skel; + int err = 0, found = 0; + + skel = trace_vprintk_lskel__open_and_load(); + if (!ASSERT_OK_PTR(skel, "trace_vprintk__open_and_load")) + goto cleanup; + + bss = skel->bss; + + err = trace_vprintk_lskel__attach(skel); + if (!ASSERT_OK(err, "trace_vprintk__attach")) + goto cleanup; + + /* wait for tracepoint to trigger */ + usleep(1); + trace_vprintk_lskel__detach(skel); + + if (!ASSERT_GT(bss->trace_vprintk_ran, 0, "bss->trace_vprintk_ran")) + goto cleanup; + + if (!ASSERT_GT(bss->trace_vprintk_ret, 0, "bss->trace_vprintk_ret")) + goto cleanup; + + /* verify our search string is in the trace buffer */ + ASSERT_OK(read_trace_pipe_iter(trace_pipe_cb, &found, 1000), + "read_trace_pipe_iter"); + + if (!ASSERT_EQ(found, bss->trace_vprintk_ran, "found")) + goto cleanup; + + if (!ASSERT_LT(bss->null_data_vprintk_ret, 0, "bss->null_data_vprintk_ret")) + goto cleanup; + +cleanup: + trace_vprintk_lskel__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tracing_failure.c b/tools/testing/selftests/bpf/prog_tests/tracing_failure.c new file mode 100644 index 000000000000..a222df765bc3 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tracing_failure.c @@ -0,0 +1,37 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include "tracing_failure.skel.h" + +static void test_bpf_spin_lock(bool is_spin_lock) +{ + struct tracing_failure *skel; + int err; + + skel = tracing_failure__open(); + if (!ASSERT_OK_PTR(skel, "tracing_failure__open")) + return; + + if (is_spin_lock) + bpf_program__set_autoload(skel->progs.test_spin_lock, true); + else + bpf_program__set_autoload(skel->progs.test_spin_unlock, true); + + err = tracing_failure__load(skel); + if (!ASSERT_OK(err, "tracing_failure__load")) + goto out; + + err = tracing_failure__attach(skel); + ASSERT_ERR(err, "tracing_failure__attach"); + +out: + tracing_failure__destroy(skel); +} + +void test_tracing_failure(void) +{ + if (test__start_subtest("bpf_spin_lock")) + test_bpf_spin_lock(true); + if (test__start_subtest("bpf_spin_unlock")) + test_bpf_spin_lock(false); +} diff --git a/tools/testing/selftests/bpf/prog_tests/tracing_struct.c b/tools/testing/selftests/bpf/prog_tests/tracing_struct.c new file mode 100644 index 000000000000..fe0fb0c9849a --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/tracing_struct.c @@ -0,0 +1,85 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include "tracing_struct.skel.h" + +static void test_fentry(void) +{ + struct tracing_struct *skel; + int err; + + skel = tracing_struct__open_and_load(); + if (!ASSERT_OK_PTR(skel, "tracing_struct__open_and_load")) + return; + + err = tracing_struct__attach(skel); + if (!ASSERT_OK(err, "tracing_struct__attach")) + goto destroy_skel; + + ASSERT_OK(trigger_module_test_read(256), "trigger_read"); + + ASSERT_EQ(skel->bss->t1_a_a, 2, "t1:a.a"); + ASSERT_EQ(skel->bss->t1_a_b, 3, "t1:a.b"); + ASSERT_EQ(skel->bss->t1_b, 1, "t1:b"); + ASSERT_EQ(skel->bss->t1_c, 4, "t1:c"); + + ASSERT_EQ(skel->bss->t1_nregs, 4, "t1 nregs"); + ASSERT_EQ(skel->bss->t1_reg0, 2, "t1 reg0"); + ASSERT_EQ(skel->bss->t1_reg1, 3, "t1 reg1"); + ASSERT_EQ(skel->bss->t1_reg2, 1, "t1 reg2"); + ASSERT_EQ(skel->bss->t1_reg3, 4, "t1 reg3"); + ASSERT_EQ(skel->bss->t1_ret, 10, "t1 ret"); + + ASSERT_EQ(skel->bss->t2_a, 1, "t2:a"); + ASSERT_EQ(skel->bss->t2_b_a, 2, "t2:b.a"); + ASSERT_EQ(skel->bss->t2_b_b, 3, "t2:b.b"); + ASSERT_EQ(skel->bss->t2_c, 4, "t2:c"); + ASSERT_EQ(skel->bss->t2_ret, 10, "t2 ret"); + + ASSERT_EQ(skel->bss->t3_a, 1, "t3:a"); + ASSERT_EQ(skel->bss->t3_b, 4, "t3:b"); + ASSERT_EQ(skel->bss->t3_c_a, 2, "t3:c.a"); + ASSERT_EQ(skel->bss->t3_c_b, 3, "t3:c.b"); + ASSERT_EQ(skel->bss->t3_ret, 10, "t3 ret"); + + ASSERT_EQ(skel->bss->t4_a_a, 10, "t4:a.a"); + ASSERT_EQ(skel->bss->t4_b, 1, "t4:b"); + ASSERT_EQ(skel->bss->t4_c, 2, "t4:c"); + ASSERT_EQ(skel->bss->t4_d, 3, "t4:d"); + ASSERT_EQ(skel->bss->t4_e_a, 2, "t4:e.a"); + ASSERT_EQ(skel->bss->t4_e_b, 3, "t4:e.b"); + ASSERT_EQ(skel->bss->t4_ret, 21, "t4 ret"); + + ASSERT_EQ(skel->bss->t5_ret, 1, "t5 ret"); + + ASSERT_EQ(skel->bss->t6, 1, "t6 ret"); + + ASSERT_EQ(skel->bss->t7_a, 16, "t7:a"); + ASSERT_EQ(skel->bss->t7_b, 17, "t7:b"); + ASSERT_EQ(skel->bss->t7_c, 18, "t7:c"); + ASSERT_EQ(skel->bss->t7_d, 19, "t7:d"); + ASSERT_EQ(skel->bss->t7_e, 20, "t7:e"); + ASSERT_EQ(skel->bss->t7_f_a, 21, "t7:f.a"); + ASSERT_EQ(skel->bss->t7_f_b, 22, "t7:f.b"); + ASSERT_EQ(skel->bss->t7_ret, 133, "t7 ret"); + + ASSERT_EQ(skel->bss->t8_a, 16, "t8:a"); + ASSERT_EQ(skel->bss->t8_b, 17, "t8:b"); + ASSERT_EQ(skel->bss->t8_c, 18, "t8:c"); + ASSERT_EQ(skel->bss->t8_d, 19, "t8:d"); + ASSERT_EQ(skel->bss->t8_e, 20, "t8:e"); + ASSERT_EQ(skel->bss->t8_f_a, 21, "t8:f.a"); + ASSERT_EQ(skel->bss->t8_f_b, 22, "t8:f.b"); + ASSERT_EQ(skel->bss->t8_g, 23, "t8:g"); + ASSERT_EQ(skel->bss->t8_ret, 156, "t8 ret"); + + tracing_struct__detach(skel); +destroy_skel: + tracing_struct__destroy(skel); +} + +void test_tracing_struct(void) +{ + test_fentry(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/trampoline_count.c b/tools/testing/selftests/bpf/prog_tests/trampoline_count.c index 781c8d11604b..6cd7349d4a2b 100644 --- a/tools/testing/selftests/bpf/prog_tests/trampoline_count.c +++ b/tools/testing/selftests/bpf/prog_tests/trampoline_count.c @@ -1,123 +1,100 @@ // SPDX-License-Identifier: GPL-2.0-only #define _GNU_SOURCE -#include <sched.h> -#include <sys/prctl.h> #include <test_progs.h> -#define MAX_TRAMP_PROGS 40 - struct inst { struct bpf_object *obj; - struct bpf_link *link_fentry; - struct bpf_link *link_fexit; + struct bpf_link *link; }; -static int test_task_rename(void) -{ - int fd, duration = 0, err; - char buf[] = "test_overhead"; - - fd = open("/proc/self/comm", O_WRONLY|O_TRUNC); - if (CHECK(fd < 0, "open /proc", "err %d", errno)) - return -1; - err = write(fd, buf, sizeof(buf)); - if (err < 0) { - CHECK(err < 0, "task rename", "err %d", errno); - close(fd); - return -1; - } - close(fd); - return 0; -} - -static struct bpf_link *load(struct bpf_object *obj, const char *name) +static struct bpf_program *load_prog(char *file, char *name, struct inst *inst) { + struct bpf_object *obj; struct bpf_program *prog; - int duration = 0; + int err; + + obj = bpf_object__open_file(file, NULL); + if (!ASSERT_OK_PTR(obj, "obj_open_file")) + return NULL; - prog = bpf_object__find_program_by_title(obj, name); - if (CHECK(!prog, "find_probe", "prog '%s' not found\n", name)) - return ERR_PTR(-EINVAL); - return bpf_program__attach_trace(prog); + inst->obj = obj; + + err = bpf_object__load(obj); + if (!ASSERT_OK(err, "obj_load")) + return NULL; + + prog = bpf_object__find_program_by_name(obj, name); + if (!ASSERT_OK_PTR(prog, "obj_find_prog")) + return NULL; + + return prog; } -void test_trampoline_count(void) +/* TODO: use different target function to run in concurrent mode */ +void serial_test_trampoline_count(void) { - const char *fentry_name = "fentry/__set_task_comm"; - const char *fexit_name = "fexit/__set_task_comm"; - const char *object = "test_trampoline_count.o"; - struct inst inst[MAX_TRAMP_PROGS] = {}; - int err, i = 0, duration = 0; - struct bpf_object *obj; + char *file = "test_trampoline_count.bpf.o"; + char *const progs[] = { "fentry_test", "fmod_ret_test", "fexit_test" }; + int bpf_max_tramp_links, err, i, prog_fd; + struct bpf_program *prog; struct bpf_link *link; - char comm[16] = {}; - - /* attach 'allowed' 40 trampoline programs */ - for (i = 0; i < MAX_TRAMP_PROGS; i++) { - obj = bpf_object__open_file(object, NULL); - if (CHECK(IS_ERR(obj), "obj_open_file", "err %ld\n", PTR_ERR(obj))) { - obj = NULL; + struct inst *inst; + LIBBPF_OPTS(bpf_test_run_opts, opts); + + bpf_max_tramp_links = get_bpf_max_tramp_links(); + if (!ASSERT_GE(bpf_max_tramp_links, 1, "bpf_max_tramp_links")) + return; + inst = calloc(bpf_max_tramp_links + 1, sizeof(*inst)); + if (!ASSERT_OK_PTR(inst, "inst")) + return; + + /* attach 'allowed' trampoline programs */ + for (i = 0; i < bpf_max_tramp_links; i++) { + prog = load_prog(file, progs[i % ARRAY_SIZE(progs)], &inst[i]); + if (!prog) goto cleanup; - } - err = bpf_object__load(obj); - if (CHECK(err, "obj_load", "err %d\n", err)) + link = bpf_program__attach(prog); + if (!ASSERT_OK_PTR(link, "attach_prog")) goto cleanup; - inst[i].obj = obj; - obj = NULL; - - if (rand() % 2) { - link = load(inst[i].obj, fentry_name); - if (CHECK(IS_ERR(link), "attach prog", "err %ld\n", PTR_ERR(link))) { - link = NULL; - goto cleanup; - } - inst[i].link_fentry = link; - } else { - link = load(inst[i].obj, fexit_name); - if (CHECK(IS_ERR(link), "attach prog", "err %ld\n", PTR_ERR(link))) { - link = NULL; - goto cleanup; - } - inst[i].link_fexit = link; - } + + inst[i].link = link; } /* and try 1 extra.. */ - obj = bpf_object__open_file(object, NULL); - if (CHECK(IS_ERR(obj), "obj_open_file", "err %ld\n", PTR_ERR(obj))) { - obj = NULL; + prog = load_prog(file, "fmod_ret_test", &inst[i]); + if (!prog) goto cleanup; - } - - err = bpf_object__load(obj); - if (CHECK(err, "obj_load", "err %d\n", err)) - goto cleanup_extra; /* ..that needs to fail */ - link = load(obj, fentry_name); - if (CHECK(!IS_ERR(link), "cannot attach over the limit", "err %ld\n", PTR_ERR(link))) { - bpf_link__destroy(link); - goto cleanup_extra; + link = bpf_program__attach(prog); + if (!ASSERT_ERR_PTR(link, "attach_prog")) { + inst[i].link = link; + goto cleanup; } /* with E2BIG error */ - CHECK(PTR_ERR(link) != -E2BIG, "proper error check", "err %ld\n", PTR_ERR(link)); + if (!ASSERT_EQ(libbpf_get_error(link), -E2BIG, "E2BIG")) + goto cleanup; + if (!ASSERT_EQ(link, NULL, "ptr_is_null")) + goto cleanup; + + /* and finally execute the probe */ + prog_fd = bpf_program__fd(prog); + if (!ASSERT_GE(prog_fd, 0, "bpf_program__fd")) + goto cleanup; + + err = bpf_prog_test_run_opts(prog_fd, &opts); + if (!ASSERT_OK(err, "bpf_prog_test_run_opts")) + goto cleanup; - /* and finaly execute the probe */ - if (CHECK_FAIL(prctl(PR_GET_NAME, comm, 0L, 0L, 0L))) - goto cleanup_extra; - CHECK_FAIL(test_task_rename()); - CHECK_FAIL(prctl(PR_SET_NAME, comm, 0L, 0L, 0L)); + ASSERT_EQ(opts.retval & 0xffff, 33, "bpf_modify_return_test.result"); + ASSERT_EQ(opts.retval >> 16, 2, "bpf_modify_return_test.side_effect"); -cleanup_extra: - bpf_object__close(obj); cleanup: - if (i >= MAX_TRAMP_PROGS) - i = MAX_TRAMP_PROGS - 1; for (; i >= 0; i--) { - bpf_link__destroy(inst[i].link_fentry); - bpf_link__destroy(inst[i].link_fexit); + bpf_link__destroy(inst[i].link); bpf_object__close(inst[i].obj); } + free(inst); } diff --git a/tools/testing/selftests/bpf/prog_tests/type_cast.c b/tools/testing/selftests/bpf/prog_tests/type_cast.c new file mode 100644 index 000000000000..9317d5fa2635 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/type_cast.c @@ -0,0 +1,114 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> +#include <network_helpers.h> +#include "type_cast.skel.h" + +static void test_xdp(void) +{ + struct type_cast *skel; + int err, prog_fd; + char buf[128]; + + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 1, + ); + + skel = type_cast__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bpf_program__set_autoload(skel->progs.md_xdp, true); + err = type_cast__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto out; + + prog_fd = bpf_program__fd(skel->progs.md_xdp); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, XDP_PASS, "xdp test_run retval"); + + ASSERT_EQ(skel->bss->ifindex, 1, "xdp_md ifindex"); + ASSERT_EQ(skel->bss->ifindex, skel->bss->ingress_ifindex, "xdp_md ingress_ifindex"); + ASSERT_STREQ(skel->bss->name, "lo", "xdp_md name"); + ASSERT_NEQ(skel->bss->inum, 0, "xdp_md inum"); + +out: + type_cast__destroy(skel); +} + +static void test_tc(void) +{ + struct type_cast *skel; + int err, prog_fd; + + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .repeat = 1, + ); + + skel = type_cast__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bpf_program__set_autoload(skel->progs.md_skb, true); + err = type_cast__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto out; + + prog_fd = bpf_program__fd(skel->progs.md_skb); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "tc test_run retval"); + + ASSERT_EQ(skel->bss->meta_len, 0, "skb meta_len"); + ASSERT_EQ(skel->bss->frag0_len, 0, "skb frag0_len"); + ASSERT_NEQ(skel->bss->kskb_len, 0, "skb len"); + ASSERT_NEQ(skel->bss->kskb2_len, 0, "skb2 len"); + ASSERT_EQ(skel->bss->kskb_len, skel->bss->kskb2_len, "skb len compare"); + +out: + type_cast__destroy(skel); +} + +static const char * const negative_tests[] = { + "untrusted_ptr", + "kctx_u64", +}; + +static void test_negative(void) +{ + struct bpf_program *prog; + struct type_cast *skel; + int i, err; + + for (i = 0; i < ARRAY_SIZE(negative_tests); i++) { + skel = type_cast__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + prog = bpf_object__find_program_by_name(skel->obj, negative_tests[i]); + if (!ASSERT_OK_PTR(prog, "bpf_object__find_program_by_name")) + goto out; + bpf_program__set_autoload(prog, true); + err = type_cast__load(skel); + ASSERT_ERR(err, "skel_load"); +out: + type_cast__destroy(skel); + } +} + +void test_type_cast(void) +{ + if (test__start_subtest("xdp")) + test_xdp(); + if (test__start_subtest("tc")) + test_tc(); + if (test__start_subtest("negative")) + test_negative(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/udp_limit.c b/tools/testing/selftests/bpf/prog_tests/udp_limit.c index 2aba09d4d01b..2643d896ddae 100644 --- a/tools/testing/selftests/bpf/prog_tests/udp_limit.c +++ b/tools/testing/selftests/bpf/prog_tests/udp_limit.c @@ -5,8 +5,6 @@ #include <sys/types.h> #include <sys/socket.h> -static int duration; - void test_udp_limit(void) { struct udp_limit *skel; @@ -14,30 +12,29 @@ void test_udp_limit(void) int cgroup_fd; cgroup_fd = test__join_cgroup("/udp_limit"); - if (CHECK(cgroup_fd < 0, "cg-join", "errno %d", errno)) + if (!ASSERT_GE(cgroup_fd, 0, "cg-join")) return; skel = udp_limit__open_and_load(); - if (CHECK(!skel, "skel-load", "errno %d", errno)) + if (!ASSERT_OK_PTR(skel, "skel-load")) goto close_cgroup_fd; skel->links.sock = bpf_program__attach_cgroup(skel->progs.sock, cgroup_fd); + if (!ASSERT_OK_PTR(skel->links.sock, "cg_attach_sock")) + goto close_skeleton; skel->links.sock_release = bpf_program__attach_cgroup(skel->progs.sock_release, cgroup_fd); - if (CHECK(IS_ERR(skel->links.sock) || IS_ERR(skel->links.sock_release), - "cg-attach", "sock %ld sock_release %ld", - PTR_ERR(skel->links.sock), - PTR_ERR(skel->links.sock_release))) + if (!ASSERT_OK_PTR(skel->links.sock_release, "cg_attach_sock_release")) goto close_skeleton; /* BPF program enforces a single UDP socket per cgroup, * verify that. */ fd1 = socket(AF_INET, SOCK_DGRAM, 0); - if (CHECK(fd1 < 0, "fd1", "errno %d", errno)) + if (!ASSERT_GE(fd1, 0, "socket(fd1)")) goto close_skeleton; fd2 = socket(AF_INET, SOCK_DGRAM, 0); - if (CHECK(fd2 >= 0, "fd2", "errno %d", errno)) + if (!ASSERT_LT(fd2, 0, "socket(fd2)")) goto close_skeleton; /* We can reopen again after close. */ @@ -45,7 +42,7 @@ void test_udp_limit(void) fd1 = -1; fd1 = socket(AF_INET, SOCK_DGRAM, 0); - if (CHECK(fd1 < 0, "fd1-again", "errno %d", errno)) + if (!ASSERT_GE(fd1, 0, "socket(fd1-again)")) goto close_skeleton; /* Make sure the program was invoked the expected @@ -55,13 +52,11 @@ void test_udp_limit(void) * - close fd1 - BPF_CGROUP_INET_SOCK_RELEASE * - open fd1 again - BPF_CGROUP_INET_SOCK_CREATE */ - if (CHECK(skel->bss->invocations != 4, "bss-invocations", - "invocations=%d", skel->bss->invocations)) + if (!ASSERT_EQ(skel->bss->invocations, 4, "bss-invocations")) goto close_skeleton; /* We should still have a single socket in use */ - if (CHECK(skel->bss->in_use != 1, "bss-in_use", - "in_use=%d", skel->bss->in_use)) + if (!ASSERT_EQ(skel->bss->in_use, 1, "bss-in_use")) goto close_skeleton; close_skeleton: diff --git a/tools/testing/selftests/bpf/prog_tests/uninit_stack.c b/tools/testing/selftests/bpf/prog_tests/uninit_stack.c new file mode 100644 index 000000000000..e64c71948491 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/uninit_stack.c @@ -0,0 +1,9 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <test_progs.h> +#include "uninit_stack.skel.h" + +void test_uninit_stack(void) +{ + RUN_TESTS(uninit_stack); +} diff --git a/tools/testing/selftests/bpf/prog_tests/unpriv_bpf_disabled.c b/tools/testing/selftests/bpf/prog_tests/unpriv_bpf_disabled.c new file mode 100644 index 000000000000..0adf8d9475cb --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/unpriv_bpf_disabled.c @@ -0,0 +1,316 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022, Oracle and/or its affiliates. */ + +#include <test_progs.h> +#include <bpf/btf.h> + +#include "test_unpriv_bpf_disabled.skel.h" + +#include "cap_helpers.h" + +/* Using CAP_LAST_CAP is risky here, since it can get pulled in from + * an old /usr/include/linux/capability.h and be < CAP_BPF; as a result + * CAP_BPF would not be included in ALL_CAPS. Instead use CAP_BPF as + * we know its value is correct since it is explicitly defined in + * cap_helpers.h. + */ +#define ALL_CAPS ((2ULL << CAP_BPF) - 1) + +#define PINPATH "/sys/fs/bpf/unpriv_bpf_disabled_" +#define NUM_MAPS 7 + +static __u32 got_perfbuf_val; +static __u32 got_ringbuf_val; + +static int process_ringbuf(void *ctx, void *data, size_t len) +{ + if (ASSERT_EQ(len, sizeof(__u32), "ringbuf_size_valid")) + got_ringbuf_val = *(__u32 *)data; + return 0; +} + +static void process_perfbuf(void *ctx, int cpu, void *data, __u32 len) +{ + if (ASSERT_EQ(len, sizeof(__u32), "perfbuf_size_valid")) + got_perfbuf_val = *(__u32 *)data; +} + +static int sysctl_set(const char *sysctl_path, char *old_val, const char *new_val) +{ + int ret = 0; + FILE *fp; + + fp = fopen(sysctl_path, "r+"); + if (!fp) + return -errno; + if (old_val && fscanf(fp, "%s", old_val) <= 0) { + ret = -ENOENT; + } else if (!old_val || strcmp(old_val, new_val) != 0) { + fseek(fp, 0, SEEK_SET); + if (fprintf(fp, "%s", new_val) < 0) + ret = -errno; + } + fclose(fp); + + return ret; +} + +static void test_unpriv_bpf_disabled_positive(struct test_unpriv_bpf_disabled *skel, + __u32 prog_id, int prog_fd, int perf_fd, + char **map_paths, int *map_fds) +{ + struct perf_buffer *perfbuf = NULL; + struct ring_buffer *ringbuf = NULL; + int i, nr_cpus, link_fd = -1; + + nr_cpus = bpf_num_possible_cpus(); + + skel->bss->perfbuf_val = 1; + skel->bss->ringbuf_val = 2; + + /* Positive tests for unprivileged BPF disabled. Verify we can + * - retrieve and interact with pinned maps; + * - set up and interact with perf buffer; + * - set up and interact with ring buffer; + * - create a link + */ + perfbuf = perf_buffer__new(bpf_map__fd(skel->maps.perfbuf), 8, process_perfbuf, NULL, NULL, + NULL); + if (!ASSERT_OK_PTR(perfbuf, "perf_buffer__new")) + goto cleanup; + + ringbuf = ring_buffer__new(bpf_map__fd(skel->maps.ringbuf), process_ringbuf, NULL, NULL); + if (!ASSERT_OK_PTR(ringbuf, "ring_buffer__new")) + goto cleanup; + + /* trigger & validate perf event, ringbuf output */ + usleep(1); + + ASSERT_GT(perf_buffer__poll(perfbuf, 100), -1, "perf_buffer__poll"); + ASSERT_EQ(got_perfbuf_val, skel->bss->perfbuf_val, "check_perfbuf_val"); + ASSERT_EQ(ring_buffer__consume(ringbuf), 1, "ring_buffer__consume"); + ASSERT_EQ(got_ringbuf_val, skel->bss->ringbuf_val, "check_ringbuf_val"); + + for (i = 0; i < NUM_MAPS; i++) { + map_fds[i] = bpf_obj_get(map_paths[i]); + if (!ASSERT_GT(map_fds[i], -1, "obj_get")) + goto cleanup; + } + + for (i = 0; i < NUM_MAPS; i++) { + bool prog_array = strstr(map_paths[i], "prog_array") != NULL; + bool array = strstr(map_paths[i], "array") != NULL; + bool buf = strstr(map_paths[i], "buf") != NULL; + __u32 key = 0, vals[nr_cpus], lookup_vals[nr_cpus]; + __u32 expected_val = 1; + int j; + + /* skip ringbuf, perfbuf */ + if (buf) + continue; + + for (j = 0; j < nr_cpus; j++) + vals[j] = expected_val; + + if (prog_array) { + /* need valid prog array value */ + vals[0] = prog_fd; + /* prog array lookup returns prog id, not fd */ + expected_val = prog_id; + } + ASSERT_OK(bpf_map_update_elem(map_fds[i], &key, vals, 0), "map_update_elem"); + ASSERT_OK(bpf_map_lookup_elem(map_fds[i], &key, &lookup_vals), "map_lookup_elem"); + ASSERT_EQ(lookup_vals[0], expected_val, "map_lookup_elem_values"); + if (!array) + ASSERT_OK(bpf_map_delete_elem(map_fds[i], &key), "map_delete_elem"); + } + + link_fd = bpf_link_create(bpf_program__fd(skel->progs.handle_perf_event), perf_fd, + BPF_PERF_EVENT, NULL); + ASSERT_GT(link_fd, 0, "link_create"); + +cleanup: + if (link_fd) + close(link_fd); + if (perfbuf) + perf_buffer__free(perfbuf); + if (ringbuf) + ring_buffer__free(ringbuf); +} + +static void test_unpriv_bpf_disabled_negative(struct test_unpriv_bpf_disabled *skel, + __u32 prog_id, int prog_fd, int perf_fd, + char **map_paths, int *map_fds) +{ + const struct bpf_insn prog_insns[] = { + BPF_MOV64_IMM(BPF_REG_0, 0), + BPF_EXIT_INSN(), + }; + const size_t prog_insn_cnt = sizeof(prog_insns) / sizeof(struct bpf_insn); + LIBBPF_OPTS(bpf_prog_load_opts, load_opts); + struct bpf_map_info map_info = {}; + __u32 map_info_len = sizeof(map_info); + struct bpf_link_info link_info = {}; + __u32 link_info_len = sizeof(link_info); + struct btf *btf = NULL; + __u32 attach_flags = 0; + __u32 prog_ids[3] = {}; + __u32 prog_cnt = 3; + __u32 next; + int i; + + /* Negative tests for unprivileged BPF disabled. Verify we cannot + * - load BPF programs; + * - create BPF maps; + * - get a prog/map/link fd by id; + * - get next prog/map/link id + * - query prog + * - BTF load + */ + ASSERT_EQ(bpf_prog_load(BPF_PROG_TYPE_SOCKET_FILTER, "simple_prog", "GPL", + prog_insns, prog_insn_cnt, &load_opts), + -EPERM, "prog_load_fails"); + + /* some map types require particular correct parameters which could be + * sanity-checked before enforcing -EPERM, so only validate that + * the simple ARRAY and HASH maps are failing with -EPERM + */ + for (i = BPF_MAP_TYPE_HASH; i <= BPF_MAP_TYPE_ARRAY; i++) + ASSERT_EQ(bpf_map_create(i, NULL, sizeof(int), sizeof(int), 1, NULL), + -EPERM, "map_create_fails"); + + ASSERT_EQ(bpf_prog_get_fd_by_id(prog_id), -EPERM, "prog_get_fd_by_id_fails"); + ASSERT_EQ(bpf_prog_get_next_id(prog_id, &next), -EPERM, "prog_get_next_id_fails"); + ASSERT_EQ(bpf_prog_get_next_id(0, &next), -EPERM, "prog_get_next_id_fails"); + + if (ASSERT_OK(bpf_map_get_info_by_fd(map_fds[0], &map_info, &map_info_len), + "obj_get_info_by_fd")) { + ASSERT_EQ(bpf_map_get_fd_by_id(map_info.id), -EPERM, "map_get_fd_by_id_fails"); + ASSERT_EQ(bpf_map_get_next_id(map_info.id, &next), -EPERM, + "map_get_next_id_fails"); + } + ASSERT_EQ(bpf_map_get_next_id(0, &next), -EPERM, "map_get_next_id_fails"); + + if (ASSERT_OK(bpf_link_get_info_by_fd(bpf_link__fd(skel->links.sys_nanosleep_enter), + &link_info, &link_info_len), + "obj_get_info_by_fd")) { + ASSERT_EQ(bpf_link_get_fd_by_id(link_info.id), -EPERM, "link_get_fd_by_id_fails"); + ASSERT_EQ(bpf_link_get_next_id(link_info.id, &next), -EPERM, + "link_get_next_id_fails"); + } + ASSERT_EQ(bpf_link_get_next_id(0, &next), -EPERM, "link_get_next_id_fails"); + + ASSERT_EQ(bpf_prog_query(prog_fd, BPF_TRACE_FENTRY, 0, &attach_flags, prog_ids, + &prog_cnt), -EPERM, "prog_query_fails"); + + btf = btf__new_empty(); + if (ASSERT_OK_PTR(btf, "empty_btf") && + ASSERT_GT(btf__add_int(btf, "int", 4, 0), 0, "unpriv_int_type")) { + const void *raw_btf_data; + __u32 raw_btf_size; + + raw_btf_data = btf__raw_data(btf, &raw_btf_size); + if (ASSERT_OK_PTR(raw_btf_data, "raw_btf_data_good")) + ASSERT_EQ(bpf_btf_load(raw_btf_data, raw_btf_size, NULL), -EPERM, + "bpf_btf_load_fails"); + } + btf__free(btf); +} + +void test_unpriv_bpf_disabled(void) +{ + char *map_paths[NUM_MAPS] = { PINPATH "array", + PINPATH "percpu_array", + PINPATH "hash", + PINPATH "percpu_hash", + PINPATH "perfbuf", + PINPATH "ringbuf", + PINPATH "prog_array" }; + int map_fds[NUM_MAPS]; + struct test_unpriv_bpf_disabled *skel; + char unprivileged_bpf_disabled_orig[32] = {}; + char perf_event_paranoid_orig[32] = {}; + struct bpf_prog_info prog_info = {}; + __u32 prog_info_len = sizeof(prog_info); + struct perf_event_attr attr = {}; + int prog_fd, perf_fd = -1, i, ret; + __u64 save_caps = 0; + __u32 prog_id; + + skel = test_unpriv_bpf_disabled__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + skel->bss->test_pid = getpid(); + + map_fds[0] = bpf_map__fd(skel->maps.array); + map_fds[1] = bpf_map__fd(skel->maps.percpu_array); + map_fds[2] = bpf_map__fd(skel->maps.hash); + map_fds[3] = bpf_map__fd(skel->maps.percpu_hash); + map_fds[4] = bpf_map__fd(skel->maps.perfbuf); + map_fds[5] = bpf_map__fd(skel->maps.ringbuf); + map_fds[6] = bpf_map__fd(skel->maps.prog_array); + + for (i = 0; i < NUM_MAPS; i++) + ASSERT_OK(bpf_obj_pin(map_fds[i], map_paths[i]), "pin map_fd"); + + /* allow user without caps to use perf events */ + if (!ASSERT_OK(sysctl_set("/proc/sys/kernel/perf_event_paranoid", perf_event_paranoid_orig, + "-1"), + "set_perf_event_paranoid")) + goto cleanup; + /* ensure unprivileged bpf disabled is set */ + ret = sysctl_set("/proc/sys/kernel/unprivileged_bpf_disabled", + unprivileged_bpf_disabled_orig, "2"); + if (ret == -EPERM) { + /* if unprivileged_bpf_disabled=1, we get -EPERM back; that's okay. */ + if (!ASSERT_OK(strcmp(unprivileged_bpf_disabled_orig, "1"), + "unprivileged_bpf_disabled_on")) + goto cleanup; + } else { + if (!ASSERT_OK(ret, "set unprivileged_bpf_disabled")) + goto cleanup; + } + + prog_fd = bpf_program__fd(skel->progs.sys_nanosleep_enter); + ASSERT_OK(bpf_prog_get_info_by_fd(prog_fd, &prog_info, &prog_info_len), + "obj_get_info_by_fd"); + prog_id = prog_info.id; + ASSERT_GT(prog_id, 0, "valid_prog_id"); + + attr.size = sizeof(attr); + attr.type = PERF_TYPE_SOFTWARE; + attr.config = PERF_COUNT_SW_CPU_CLOCK; + attr.freq = 1; + attr.sample_freq = 1000; + perf_fd = syscall(__NR_perf_event_open, &attr, -1, 0, -1, PERF_FLAG_FD_CLOEXEC); + if (!ASSERT_GE(perf_fd, 0, "perf_fd")) + goto cleanup; + + if (!ASSERT_OK(test_unpriv_bpf_disabled__attach(skel), "skel_attach")) + goto cleanup; + + if (!ASSERT_OK(cap_disable_effective(ALL_CAPS, &save_caps), "disable caps")) + goto cleanup; + + if (test__start_subtest("unpriv_bpf_disabled_positive")) + test_unpriv_bpf_disabled_positive(skel, prog_id, prog_fd, perf_fd, map_paths, + map_fds); + + if (test__start_subtest("unpriv_bpf_disabled_negative")) + test_unpriv_bpf_disabled_negative(skel, prog_id, prog_fd, perf_fd, map_paths, + map_fds); + +cleanup: + close(perf_fd); + if (save_caps) + cap_enable_effective(save_caps, NULL); + if (strlen(perf_event_paranoid_orig) > 0) + sysctl_set("/proc/sys/kernel/perf_event_paranoid", NULL, perf_event_paranoid_orig); + if (strlen(unprivileged_bpf_disabled_orig) > 0) + sysctl_set("/proc/sys/kernel/unprivileged_bpf_disabled", NULL, + unprivileged_bpf_disabled_orig); + for (i = 0; i < NUM_MAPS; i++) + unlink(map_paths[i]); + test_unpriv_bpf_disabled__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/uprobe.c b/tools/testing/selftests/bpf/prog_tests/uprobe.c new file mode 100644 index 000000000000..cf3e0e7a64fa --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/uprobe.c @@ -0,0 +1,95 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Hengqi Chen */ + +#include <test_progs.h> +#include "test_uprobe.skel.h" + +static FILE *urand_spawn(int *pid) +{ + FILE *f; + + /* urandom_read's stdout is wired into f */ + f = popen("./urandom_read 1 report-pid", "r"); + if (!f) + return NULL; + + if (fscanf(f, "%d", pid) != 1) { + pclose(f); + errno = EINVAL; + return NULL; + } + + return f; +} + +static int urand_trigger(FILE **urand_pipe) +{ + int exit_code; + + /* pclose() waits for child process to exit and returns their exit code */ + exit_code = pclose(*urand_pipe); + *urand_pipe = NULL; + + return exit_code; +} + +void test_uprobe(void) +{ + LIBBPF_OPTS(bpf_uprobe_opts, uprobe_opts); + struct test_uprobe *skel; + FILE *urand_pipe = NULL; + int urand_pid = 0, err; + + skel = test_uprobe__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + urand_pipe = urand_spawn(&urand_pid); + if (!ASSERT_OK_PTR(urand_pipe, "urand_spawn")) + goto cleanup; + + skel->bss->my_pid = urand_pid; + + /* Manual attach uprobe to urandlib_api + * There are two `urandlib_api` symbols in .dynsym section: + * - urandlib_api@LIBURANDOM_READ_1.0.0 + * - urandlib_api@@LIBURANDOM_READ_2.0.0 + * Both are global bind and would cause a conflict if user + * specify the symbol name without a version suffix + */ + uprobe_opts.func_name = "urandlib_api"; + skel->links.test4 = bpf_program__attach_uprobe_opts(skel->progs.test4, + urand_pid, + "./liburandom_read.so", + 0 /* offset */, + &uprobe_opts); + if (!ASSERT_ERR_PTR(skel->links.test4, "urandlib_api_attach_conflict")) + goto cleanup; + + uprobe_opts.func_name = "urandlib_api@LIBURANDOM_READ_1.0.0"; + skel->links.test4 = bpf_program__attach_uprobe_opts(skel->progs.test4, + urand_pid, + "./liburandom_read.so", + 0 /* offset */, + &uprobe_opts); + if (!ASSERT_OK_PTR(skel->links.test4, "urandlib_api_attach_ok")) + goto cleanup; + + /* Auto attach 3 u[ret]probes to urandlib_api_sameoffset */ + err = test_uprobe__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* trigger urandom_read */ + ASSERT_OK(urand_trigger(&urand_pipe), "urand_exit_code"); + + ASSERT_EQ(skel->bss->test1_result, 1, "urandlib_api_sameoffset"); + ASSERT_EQ(skel->bss->test2_result, 1, "urandlib_api_sameoffset@v1"); + ASSERT_EQ(skel->bss->test3_result, 3, "urandlib_api_sameoffset@@v2"); + ASSERT_EQ(skel->bss->test4_result, 1, "urandlib_api"); + +cleanup: + if (urand_pipe) + pclose(urand_pipe); + test_uprobe__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/uprobe_autoattach.c b/tools/testing/selftests/bpf/prog_tests/uprobe_autoattach.c new file mode 100644 index 000000000000..d5b3377aa33c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/uprobe_autoattach.c @@ -0,0 +1,74 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022, Oracle and/or its affiliates. */ + +#include <test_progs.h> +#include "test_uprobe_autoattach.skel.h" + +/* uprobe attach point */ +static noinline int autoattach_trigger_func(int arg1, int arg2, int arg3, + int arg4, int arg5, int arg6, + int arg7, int arg8) +{ + asm volatile (""); + return arg1 + arg2 + arg3 + arg4 + arg5 + arg6 + arg7 + arg8 + 1; +} + +void test_uprobe_autoattach(void) +{ + const char *devnull_str = "/dev/null"; + struct test_uprobe_autoattach *skel; + int trigger_ret; + FILE *devnull; + + skel = test_uprobe_autoattach__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + if (!ASSERT_OK(test_uprobe_autoattach__attach(skel), "skel_attach")) + goto cleanup; + + skel->bss->test_pid = getpid(); + + /* trigger & validate uprobe & uretprobe */ + trigger_ret = autoattach_trigger_func(1, 2, 3, 4, 5, 6, 7, 8); + + skel->bss->test_pid = getpid(); + + /* trigger & validate shared library u[ret]probes attached by name */ + devnull = fopen(devnull_str, "r"); + + ASSERT_EQ(skel->bss->uprobe_byname_parm1, 1, "check_uprobe_byname_parm1"); + ASSERT_EQ(skel->bss->uprobe_byname_ran, 1, "check_uprobe_byname_ran"); + ASSERT_EQ(skel->bss->uretprobe_byname_rc, trigger_ret, "check_uretprobe_byname_rc"); + ASSERT_EQ(skel->bss->uretprobe_byname_ret, trigger_ret, "check_uretprobe_byname_ret"); + ASSERT_EQ(skel->bss->uretprobe_byname_ran, 2, "check_uretprobe_byname_ran"); + ASSERT_EQ(skel->bss->uprobe_byname2_parm1, (__u64)(long)devnull_str, + "check_uprobe_byname2_parm1"); + ASSERT_EQ(skel->bss->uprobe_byname2_ran, 3, "check_uprobe_byname2_ran"); + ASSERT_EQ(skel->bss->uretprobe_byname2_rc, (__u64)(long)devnull, + "check_uretprobe_byname2_rc"); + ASSERT_EQ(skel->bss->uretprobe_byname2_ran, 4, "check_uretprobe_byname2_ran"); + + ASSERT_EQ(skel->bss->a[0], 1, "arg1"); + ASSERT_EQ(skel->bss->a[1], 2, "arg2"); + ASSERT_EQ(skel->bss->a[2], 3, "arg3"); +#if FUNC_REG_ARG_CNT > 3 + ASSERT_EQ(skel->bss->a[3], 4, "arg4"); +#endif +#if FUNC_REG_ARG_CNT > 4 + ASSERT_EQ(skel->bss->a[4], 5, "arg5"); +#endif +#if FUNC_REG_ARG_CNT > 5 + ASSERT_EQ(skel->bss->a[5], 6, "arg6"); +#endif +#if FUNC_REG_ARG_CNT > 6 + ASSERT_EQ(skel->bss->a[6], 7, "arg7"); +#endif +#if FUNC_REG_ARG_CNT > 7 + ASSERT_EQ(skel->bss->a[7], 8, "arg8"); +#endif + + fclose(devnull); +cleanup: + test_uprobe_autoattach__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/uprobe_multi_test.c b/tools/testing/selftests/bpf/prog_tests/uprobe_multi_test.c new file mode 100644 index 000000000000..bf6ca8e3eb13 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/uprobe_multi_test.c @@ -0,0 +1,706 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <unistd.h> +#include <pthread.h> +#include <test_progs.h> +#include "uprobe_multi.skel.h" +#include "uprobe_multi_bench.skel.h" +#include "uprobe_multi_usdt.skel.h" +#include "bpf/libbpf_internal.h" +#include "testing_helpers.h" +#include "../sdt.h" + +static char test_data[] = "test_data"; + +noinline void uprobe_multi_func_1(void) +{ + asm volatile (""); +} + +noinline void uprobe_multi_func_2(void) +{ + asm volatile (""); +} + +noinline void uprobe_multi_func_3(void) +{ + asm volatile (""); +} + +noinline void usdt_trigger(void) +{ + STAP_PROBE(test, pid_filter_usdt); +} + +struct child { + int go[2]; + int c2p[2]; /* child -> parent channel */ + int pid; + int tid; + pthread_t thread; +}; + +static void release_child(struct child *child) +{ + int child_status; + + if (!child) + return; + close(child->go[1]); + close(child->go[0]); + if (child->thread) + pthread_join(child->thread, NULL); + close(child->c2p[0]); + close(child->c2p[1]); + if (child->pid > 0) + waitpid(child->pid, &child_status, 0); +} + +static void kick_child(struct child *child) +{ + char c = 1; + + if (child) { + write(child->go[1], &c, 1); + release_child(child); + } + fflush(NULL); +} + +static struct child *spawn_child(void) +{ + static struct child child; + int err; + int c; + + /* pipe to notify child to execute the trigger functions */ + if (pipe(child.go)) + return NULL; + + child.pid = child.tid = fork(); + if (child.pid < 0) { + release_child(&child); + errno = EINVAL; + return NULL; + } + + /* child */ + if (child.pid == 0) { + close(child.go[1]); + + /* wait for parent's kick */ + err = read(child.go[0], &c, 1); + if (err != 1) + exit(err); + + uprobe_multi_func_1(); + uprobe_multi_func_2(); + uprobe_multi_func_3(); + usdt_trigger(); + + exit(errno); + } + + return &child; +} + +static void *child_thread(void *ctx) +{ + struct child *child = ctx; + int c = 0, err; + + child->tid = syscall(SYS_gettid); + + /* let parent know we are ready */ + err = write(child->c2p[1], &c, 1); + if (err != 1) + pthread_exit(&err); + + /* wait for parent's kick */ + err = read(child->go[0], &c, 1); + if (err != 1) + pthread_exit(&err); + + uprobe_multi_func_1(); + uprobe_multi_func_2(); + uprobe_multi_func_3(); + usdt_trigger(); + + err = 0; + pthread_exit(&err); +} + +static struct child *spawn_thread(void) +{ + static struct child child; + int c, err; + + /* pipe to notify child to execute the trigger functions */ + if (pipe(child.go)) + return NULL; + /* pipe to notify parent that child thread is ready */ + if (pipe(child.c2p)) { + close(child.go[0]); + close(child.go[1]); + return NULL; + } + + child.pid = getpid(); + + err = pthread_create(&child.thread, NULL, child_thread, &child); + if (err) { + err = -errno; + close(child.go[0]); + close(child.go[1]); + close(child.c2p[0]); + close(child.c2p[1]); + errno = -err; + return NULL; + } + + err = read(child.c2p[0], &c, 1); + if (!ASSERT_EQ(err, 1, "child_thread_ready")) + return NULL; + + return &child; +} + +static void uprobe_multi_test_run(struct uprobe_multi *skel, struct child *child) +{ + skel->bss->uprobe_multi_func_1_addr = (__u64) uprobe_multi_func_1; + skel->bss->uprobe_multi_func_2_addr = (__u64) uprobe_multi_func_2; + skel->bss->uprobe_multi_func_3_addr = (__u64) uprobe_multi_func_3; + + skel->bss->user_ptr = test_data; + + /* + * Disable pid check in bpf program if we are pid filter test, + * because the probe should be executed only by child->pid + * passed at the probe attach. + */ + skel->bss->pid = child ? 0 : getpid(); + skel->bss->expect_pid = child ? child->pid : 0; + + /* trigger all probes, if we are testing child *process*, just to make + * sure that PID filtering doesn't let through activations from wrong + * PIDs; when we test child *thread*, we don't want to do this to + * avoid double counting number of triggering events + */ + if (!child || !child->thread) { + uprobe_multi_func_1(); + uprobe_multi_func_2(); + uprobe_multi_func_3(); + usdt_trigger(); + } + + if (child) + kick_child(child); + + /* + * There are 2 entry and 2 exit probe called for each uprobe_multi_func_[123] + * function and each slepable probe (6) increments uprobe_multi_sleep_result. + */ + ASSERT_EQ(skel->bss->uprobe_multi_func_1_result, 2, "uprobe_multi_func_1_result"); + ASSERT_EQ(skel->bss->uprobe_multi_func_2_result, 2, "uprobe_multi_func_2_result"); + ASSERT_EQ(skel->bss->uprobe_multi_func_3_result, 2, "uprobe_multi_func_3_result"); + + ASSERT_EQ(skel->bss->uretprobe_multi_func_1_result, 2, "uretprobe_multi_func_1_result"); + ASSERT_EQ(skel->bss->uretprobe_multi_func_2_result, 2, "uretprobe_multi_func_2_result"); + ASSERT_EQ(skel->bss->uretprobe_multi_func_3_result, 2, "uretprobe_multi_func_3_result"); + + ASSERT_EQ(skel->bss->uprobe_multi_sleep_result, 6, "uprobe_multi_sleep_result"); + + ASSERT_FALSE(skel->bss->bad_pid_seen, "bad_pid_seen"); + + if (child) { + ASSERT_EQ(skel->bss->child_pid, child->pid, "uprobe_multi_child_pid"); + ASSERT_EQ(skel->bss->child_tid, child->tid, "uprobe_multi_child_tid"); + } +} + +static void test_skel_api(void) +{ + struct uprobe_multi *skel = NULL; + int err; + + skel = uprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "uprobe_multi__open_and_load")) + goto cleanup; + + err = uprobe_multi__attach(skel); + if (!ASSERT_OK(err, "uprobe_multi__attach")) + goto cleanup; + + uprobe_multi_test_run(skel, NULL); + +cleanup: + uprobe_multi__destroy(skel); +} + +static void +__test_attach_api(const char *binary, const char *pattern, struct bpf_uprobe_multi_opts *opts, + struct child *child) +{ + pid_t pid = child ? child->pid : -1; + struct uprobe_multi *skel = NULL; + + skel = uprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "uprobe_multi__open_and_load")) + goto cleanup; + + opts->retprobe = false; + skel->links.uprobe = bpf_program__attach_uprobe_multi(skel->progs.uprobe, pid, + binary, pattern, opts); + if (!ASSERT_OK_PTR(skel->links.uprobe, "bpf_program__attach_uprobe_multi")) + goto cleanup; + + opts->retprobe = true; + skel->links.uretprobe = bpf_program__attach_uprobe_multi(skel->progs.uretprobe, pid, + binary, pattern, opts); + if (!ASSERT_OK_PTR(skel->links.uretprobe, "bpf_program__attach_uprobe_multi")) + goto cleanup; + + opts->retprobe = false; + skel->links.uprobe_sleep = bpf_program__attach_uprobe_multi(skel->progs.uprobe_sleep, pid, + binary, pattern, opts); + if (!ASSERT_OK_PTR(skel->links.uprobe_sleep, "bpf_program__attach_uprobe_multi")) + goto cleanup; + + opts->retprobe = true; + skel->links.uretprobe_sleep = bpf_program__attach_uprobe_multi(skel->progs.uretprobe_sleep, + pid, binary, pattern, opts); + if (!ASSERT_OK_PTR(skel->links.uretprobe_sleep, "bpf_program__attach_uprobe_multi")) + goto cleanup; + + opts->retprobe = false; + skel->links.uprobe_extra = bpf_program__attach_uprobe_multi(skel->progs.uprobe_extra, -1, + binary, pattern, opts); + if (!ASSERT_OK_PTR(skel->links.uprobe_extra, "bpf_program__attach_uprobe_multi")) + goto cleanup; + + /* Attach (uprobe-backed) USDTs */ + skel->links.usdt_pid = bpf_program__attach_usdt(skel->progs.usdt_pid, pid, binary, + "test", "pid_filter_usdt", NULL); + if (!ASSERT_OK_PTR(skel->links.usdt_pid, "attach_usdt_pid")) + goto cleanup; + + skel->links.usdt_extra = bpf_program__attach_usdt(skel->progs.usdt_extra, -1, binary, + "test", "pid_filter_usdt", NULL); + if (!ASSERT_OK_PTR(skel->links.usdt_extra, "attach_usdt_extra")) + goto cleanup; + + uprobe_multi_test_run(skel, child); + + ASSERT_FALSE(skel->bss->bad_pid_seen_usdt, "bad_pid_seen_usdt"); + if (child) { + ASSERT_EQ(skel->bss->child_pid_usdt, child->pid, "usdt_multi_child_pid"); + ASSERT_EQ(skel->bss->child_tid_usdt, child->tid, "usdt_multi_child_tid"); + } +cleanup: + uprobe_multi__destroy(skel); +} + +static void +test_attach_api(const char *binary, const char *pattern, struct bpf_uprobe_multi_opts *opts) +{ + struct child *child; + + /* no pid filter */ + __test_attach_api(binary, pattern, opts, NULL); + + /* pid filter */ + child = spawn_child(); + if (!ASSERT_OK_PTR(child, "spawn_child")) + return; + + __test_attach_api(binary, pattern, opts, child); + + /* pid filter (thread) */ + child = spawn_thread(); + if (!ASSERT_OK_PTR(child, "spawn_thread")) + return; + + __test_attach_api(binary, pattern, opts, child); +} + +static void test_attach_api_pattern(void) +{ + LIBBPF_OPTS(bpf_uprobe_multi_opts, opts); + + test_attach_api("/proc/self/exe", "uprobe_multi_func_*", &opts); + test_attach_api("/proc/self/exe", "uprobe_multi_func_?", &opts); +} + +static void test_attach_api_syms(void) +{ + LIBBPF_OPTS(bpf_uprobe_multi_opts, opts); + const char *syms[3] = { + "uprobe_multi_func_1", + "uprobe_multi_func_2", + "uprobe_multi_func_3", + }; + + opts.syms = syms; + opts.cnt = ARRAY_SIZE(syms); + test_attach_api("/proc/self/exe", NULL, &opts); +} + +static void test_attach_api_fails(void) +{ + LIBBPF_OPTS(bpf_link_create_opts, opts); + const char *path = "/proc/self/exe"; + struct uprobe_multi *skel = NULL; + int prog_fd, link_fd = -1; + unsigned long offset = 0; + + skel = uprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "uprobe_multi__open_and_load")) + goto cleanup; + + prog_fd = bpf_program__fd(skel->progs.uprobe_extra); + + /* abnormal cnt */ + opts.uprobe_multi.path = path; + opts.uprobe_multi.offsets = &offset; + opts.uprobe_multi.cnt = INT_MAX; + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -E2BIG, "big cnt")) + goto cleanup; + + /* cnt is 0 */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.path = path, + .uprobe_multi.offsets = (unsigned long *) &offset, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EINVAL, "cnt_is_zero")) + goto cleanup; + + /* negative offset */ + offset = -1; + opts.uprobe_multi.path = path; + opts.uprobe_multi.offsets = (unsigned long *) &offset; + opts.uprobe_multi.cnt = 1; + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EINVAL, "offset_is_negative")) + goto cleanup; + + /* offsets is NULL */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.path = path, + .uprobe_multi.cnt = 1, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EINVAL, "offsets_is_null")) + goto cleanup; + + /* wrong offsets pointer */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.path = path, + .uprobe_multi.offsets = (unsigned long *) 1, + .uprobe_multi.cnt = 1, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EFAULT, "offsets_is_wrong")) + goto cleanup; + + /* path is NULL */ + offset = 1; + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.offsets = (unsigned long *) &offset, + .uprobe_multi.cnt = 1, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EINVAL, "path_is_null")) + goto cleanup; + + /* wrong path pointer */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.path = (const char *) 1, + .uprobe_multi.offsets = (unsigned long *) &offset, + .uprobe_multi.cnt = 1, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EFAULT, "path_is_wrong")) + goto cleanup; + + /* wrong path type */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.path = "/", + .uprobe_multi.offsets = (unsigned long *) &offset, + .uprobe_multi.cnt = 1, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EBADF, "path_is_wrong_type")) + goto cleanup; + + /* wrong cookies pointer */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.path = path, + .uprobe_multi.offsets = (unsigned long *) &offset, + .uprobe_multi.cookies = (__u64 *) 1ULL, + .uprobe_multi.cnt = 1, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EFAULT, "cookies_is_wrong")) + goto cleanup; + + /* wrong ref_ctr_offsets pointer */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.path = path, + .uprobe_multi.offsets = (unsigned long *) &offset, + .uprobe_multi.cookies = (__u64 *) &offset, + .uprobe_multi.ref_ctr_offsets = (unsigned long *) 1, + .uprobe_multi.cnt = 1, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EFAULT, "ref_ctr_offsets_is_wrong")) + goto cleanup; + + /* wrong flags */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.flags = 1 << 31, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + if (!ASSERT_EQ(link_fd, -EINVAL, "wrong_flags")) + goto cleanup; + + /* wrong pid */ + LIBBPF_OPTS_RESET(opts, + .uprobe_multi.path = path, + .uprobe_multi.offsets = (unsigned long *) &offset, + .uprobe_multi.cnt = 1, + .uprobe_multi.pid = -2, + ); + + link_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_ERR(link_fd, "link_fd")) + goto cleanup; + ASSERT_EQ(link_fd, -EINVAL, "pid_is_wrong"); + +cleanup: + if (link_fd >= 0) + close(link_fd); + uprobe_multi__destroy(skel); +} + +static void __test_link_api(struct child *child) +{ + int prog_fd, link1_fd = -1, link2_fd = -1, link3_fd = -1, link4_fd = -1; + LIBBPF_OPTS(bpf_link_create_opts, opts); + const char *path = "/proc/self/exe"; + struct uprobe_multi *skel = NULL; + unsigned long *offsets = NULL; + const char *syms[3] = { + "uprobe_multi_func_1", + "uprobe_multi_func_2", + "uprobe_multi_func_3", + }; + int link_extra_fd = -1; + int err; + + err = elf_resolve_syms_offsets(path, 3, syms, (unsigned long **) &offsets, STT_FUNC); + if (!ASSERT_OK(err, "elf_resolve_syms_offsets")) + return; + + opts.uprobe_multi.path = path; + opts.uprobe_multi.offsets = offsets; + opts.uprobe_multi.cnt = ARRAY_SIZE(syms); + opts.uprobe_multi.pid = child ? child->pid : 0; + + skel = uprobe_multi__open_and_load(); + if (!ASSERT_OK_PTR(skel, "uprobe_multi__open_and_load")) + goto cleanup; + + opts.kprobe_multi.flags = 0; + prog_fd = bpf_program__fd(skel->progs.uprobe); + link1_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_GE(link1_fd, 0, "link1_fd")) + goto cleanup; + + opts.kprobe_multi.flags = BPF_F_UPROBE_MULTI_RETURN; + prog_fd = bpf_program__fd(skel->progs.uretprobe); + link2_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_GE(link2_fd, 0, "link2_fd")) + goto cleanup; + + opts.kprobe_multi.flags = 0; + prog_fd = bpf_program__fd(skel->progs.uprobe_sleep); + link3_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_GE(link3_fd, 0, "link3_fd")) + goto cleanup; + + opts.kprobe_multi.flags = BPF_F_UPROBE_MULTI_RETURN; + prog_fd = bpf_program__fd(skel->progs.uretprobe_sleep); + link4_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_GE(link4_fd, 0, "link4_fd")) + goto cleanup; + + opts.kprobe_multi.flags = 0; + opts.uprobe_multi.pid = 0; + prog_fd = bpf_program__fd(skel->progs.uprobe_extra); + link_extra_fd = bpf_link_create(prog_fd, 0, BPF_TRACE_UPROBE_MULTI, &opts); + if (!ASSERT_GE(link_extra_fd, 0, "link_extra_fd")) + goto cleanup; + + uprobe_multi_test_run(skel, child); + +cleanup: + if (link1_fd >= 0) + close(link1_fd); + if (link2_fd >= 0) + close(link2_fd); + if (link3_fd >= 0) + close(link3_fd); + if (link4_fd >= 0) + close(link4_fd); + if (link_extra_fd >= 0) + close(link_extra_fd); + + uprobe_multi__destroy(skel); + free(offsets); +} + +static void test_link_api(void) +{ + struct child *child; + + /* no pid filter */ + __test_link_api(NULL); + + /* pid filter */ + child = spawn_child(); + if (!ASSERT_OK_PTR(child, "spawn_child")) + return; + + __test_link_api(child); + + /* pid filter (thread) */ + child = spawn_thread(); + if (!ASSERT_OK_PTR(child, "spawn_thread")) + return; + + __test_link_api(child); +} + +static void test_bench_attach_uprobe(void) +{ + long attach_start_ns = 0, attach_end_ns = 0; + struct uprobe_multi_bench *skel = NULL; + long detach_start_ns, detach_end_ns; + double attach_delta, detach_delta; + int err; + + skel = uprobe_multi_bench__open_and_load(); + if (!ASSERT_OK_PTR(skel, "uprobe_multi_bench__open_and_load")) + goto cleanup; + + attach_start_ns = get_time_ns(); + + err = uprobe_multi_bench__attach(skel); + if (!ASSERT_OK(err, "uprobe_multi_bench__attach")) + goto cleanup; + + attach_end_ns = get_time_ns(); + + system("./uprobe_multi bench"); + + ASSERT_EQ(skel->bss->count, 50000, "uprobes_count"); + +cleanup: + detach_start_ns = get_time_ns(); + uprobe_multi_bench__destroy(skel); + detach_end_ns = get_time_ns(); + + attach_delta = (attach_end_ns - attach_start_ns) / 1000000000.0; + detach_delta = (detach_end_ns - detach_start_ns) / 1000000000.0; + + printf("%s: attached in %7.3lfs\n", __func__, attach_delta); + printf("%s: detached in %7.3lfs\n", __func__, detach_delta); +} + +static void test_bench_attach_usdt(void) +{ + long attach_start_ns = 0, attach_end_ns = 0; + struct uprobe_multi_usdt *skel = NULL; + long detach_start_ns, detach_end_ns; + double attach_delta, detach_delta; + + skel = uprobe_multi_usdt__open_and_load(); + if (!ASSERT_OK_PTR(skel, "uprobe_multi__open")) + goto cleanup; + + attach_start_ns = get_time_ns(); + + skel->links.usdt0 = bpf_program__attach_usdt(skel->progs.usdt0, -1, "./uprobe_multi", + "test", "usdt", NULL); + if (!ASSERT_OK_PTR(skel->links.usdt0, "bpf_program__attach_usdt")) + goto cleanup; + + attach_end_ns = get_time_ns(); + + system("./uprobe_multi usdt"); + + ASSERT_EQ(skel->bss->count, 50000, "usdt_count"); + +cleanup: + detach_start_ns = get_time_ns(); + uprobe_multi_usdt__destroy(skel); + detach_end_ns = get_time_ns(); + + attach_delta = (attach_end_ns - attach_start_ns) / 1000000000.0; + detach_delta = (detach_end_ns - detach_start_ns) / 1000000000.0; + + printf("%s: attached in %7.3lfs\n", __func__, attach_delta); + printf("%s: detached in %7.3lfs\n", __func__, detach_delta); +} + +void test_uprobe_multi_test(void) +{ + if (test__start_subtest("skel_api")) + test_skel_api(); + if (test__start_subtest("attach_api_pattern")) + test_attach_api_pattern(); + if (test__start_subtest("attach_api_syms")) + test_attach_api_syms(); + if (test__start_subtest("link_api")) + test_link_api(); + if (test__start_subtest("bench_uprobe")) + test_bench_attach_uprobe(); + if (test__start_subtest("bench_usdt")) + test_bench_attach_usdt(); + if (test__start_subtest("attach_api_fails")) + test_attach_api_fails(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/usdt.c b/tools/testing/selftests/bpf/prog_tests/usdt.c new file mode 100644 index 000000000000..56ed1eb9b527 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/usdt.c @@ -0,0 +1,420 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ +#include <test_progs.h> + +#define _SDT_HAS_SEMAPHORES 1 +#include "../sdt.h" + +#include "test_usdt.skel.h" +#include "test_urandom_usdt.skel.h" + +int lets_test_this(int); + +static volatile int idx = 2; +static volatile __u64 bla = 0xFEDCBA9876543210ULL; +static volatile short nums[] = {-1, -2, -3, -4}; + +static volatile struct { + int x; + signed char y; +} t1 = { 1, -127 }; + +#define SEC(name) __attribute__((section(name), used)) + +unsigned short test_usdt0_semaphore SEC(".probes"); +unsigned short test_usdt3_semaphore SEC(".probes"); +unsigned short test_usdt12_semaphore SEC(".probes"); + +static void __always_inline trigger_func(int x) { + long y = 42; + + if (test_usdt0_semaphore) + STAP_PROBE(test, usdt0); + if (test_usdt3_semaphore) + STAP_PROBE3(test, usdt3, x, y, &bla); + if (test_usdt12_semaphore) { + STAP_PROBE12(test, usdt12, + x, x + 1, y, x + y, 5, + y / 7, bla, &bla, -9, nums[x], + nums[idx], t1.y); + } +} + +static void subtest_basic_usdt(void) +{ + LIBBPF_OPTS(bpf_usdt_opts, opts); + struct test_usdt *skel; + struct test_usdt__bss *bss; + int err; + + skel = test_usdt__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bss = skel->bss; + bss->my_pid = getpid(); + + err = test_usdt__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* usdt0 won't be auto-attached */ + opts.usdt_cookie = 0xcafedeadbeeffeed; + skel->links.usdt0 = bpf_program__attach_usdt(skel->progs.usdt0, + 0 /*self*/, "/proc/self/exe", + "test", "usdt0", &opts); + if (!ASSERT_OK_PTR(skel->links.usdt0, "usdt0_link")) + goto cleanup; + + trigger_func(1); + + ASSERT_EQ(bss->usdt0_called, 1, "usdt0_called"); + ASSERT_EQ(bss->usdt3_called, 1, "usdt3_called"); + ASSERT_EQ(bss->usdt12_called, 1, "usdt12_called"); + + ASSERT_EQ(bss->usdt0_cookie, 0xcafedeadbeeffeed, "usdt0_cookie"); + ASSERT_EQ(bss->usdt0_arg_cnt, 0, "usdt0_arg_cnt"); + ASSERT_EQ(bss->usdt0_arg_ret, -ENOENT, "usdt0_arg_ret"); + + /* auto-attached usdt3 gets default zero cookie value */ + ASSERT_EQ(bss->usdt3_cookie, 0, "usdt3_cookie"); + ASSERT_EQ(bss->usdt3_arg_cnt, 3, "usdt3_arg_cnt"); + + ASSERT_EQ(bss->usdt3_arg_rets[0], 0, "usdt3_arg1_ret"); + ASSERT_EQ(bss->usdt3_arg_rets[1], 0, "usdt3_arg2_ret"); + ASSERT_EQ(bss->usdt3_arg_rets[2], 0, "usdt3_arg3_ret"); + ASSERT_EQ(bss->usdt3_args[0], 1, "usdt3_arg1"); + ASSERT_EQ(bss->usdt3_args[1], 42, "usdt3_arg2"); + ASSERT_EQ(bss->usdt3_args[2], (uintptr_t)&bla, "usdt3_arg3"); + + /* auto-attached usdt12 gets default zero cookie value */ + ASSERT_EQ(bss->usdt12_cookie, 0, "usdt12_cookie"); + ASSERT_EQ(bss->usdt12_arg_cnt, 12, "usdt12_arg_cnt"); + + ASSERT_EQ(bss->usdt12_args[0], 1, "usdt12_arg1"); + ASSERT_EQ(bss->usdt12_args[1], 1 + 1, "usdt12_arg2"); + ASSERT_EQ(bss->usdt12_args[2], 42, "usdt12_arg3"); + ASSERT_EQ(bss->usdt12_args[3], 42 + 1, "usdt12_arg4"); + ASSERT_EQ(bss->usdt12_args[4], 5, "usdt12_arg5"); + ASSERT_EQ(bss->usdt12_args[5], 42 / 7, "usdt12_arg6"); + ASSERT_EQ(bss->usdt12_args[6], bla, "usdt12_arg7"); + ASSERT_EQ(bss->usdt12_args[7], (uintptr_t)&bla, "usdt12_arg8"); + ASSERT_EQ(bss->usdt12_args[8], -9, "usdt12_arg9"); + ASSERT_EQ(bss->usdt12_args[9], nums[1], "usdt12_arg10"); + ASSERT_EQ(bss->usdt12_args[10], nums[idx], "usdt12_arg11"); + ASSERT_EQ(bss->usdt12_args[11], t1.y, "usdt12_arg12"); + + /* trigger_func() is marked __always_inline, so USDT invocations will be + * inlined in two different places, meaning that each USDT will have + * at least 2 different places to be attached to. This verifies that + * bpf_program__attach_usdt() handles this properly and attaches to + * all possible places of USDT invocation. + */ + trigger_func(2); + + ASSERT_EQ(bss->usdt0_called, 2, "usdt0_called"); + ASSERT_EQ(bss->usdt3_called, 2, "usdt3_called"); + ASSERT_EQ(bss->usdt12_called, 2, "usdt12_called"); + + /* only check values that depend on trigger_func()'s input value */ + ASSERT_EQ(bss->usdt3_args[0], 2, "usdt3_arg1"); + + ASSERT_EQ(bss->usdt12_args[0], 2, "usdt12_arg1"); + ASSERT_EQ(bss->usdt12_args[1], 2 + 1, "usdt12_arg2"); + ASSERT_EQ(bss->usdt12_args[3], 42 + 2, "usdt12_arg4"); + ASSERT_EQ(bss->usdt12_args[9], nums[2], "usdt12_arg10"); + + /* detach and re-attach usdt3 */ + bpf_link__destroy(skel->links.usdt3); + + opts.usdt_cookie = 0xBADC00C51E; + skel->links.usdt3 = bpf_program__attach_usdt(skel->progs.usdt3, -1 /* any pid */, + "/proc/self/exe", "test", "usdt3", &opts); + if (!ASSERT_OK_PTR(skel->links.usdt3, "usdt3_reattach")) + goto cleanup; + + trigger_func(3); + + ASSERT_EQ(bss->usdt3_called, 3, "usdt3_called"); + /* this time usdt3 has custom cookie */ + ASSERT_EQ(bss->usdt3_cookie, 0xBADC00C51E, "usdt3_cookie"); + ASSERT_EQ(bss->usdt3_arg_cnt, 3, "usdt3_arg_cnt"); + + ASSERT_EQ(bss->usdt3_arg_rets[0], 0, "usdt3_arg1_ret"); + ASSERT_EQ(bss->usdt3_arg_rets[1], 0, "usdt3_arg2_ret"); + ASSERT_EQ(bss->usdt3_arg_rets[2], 0, "usdt3_arg3_ret"); + ASSERT_EQ(bss->usdt3_args[0], 3, "usdt3_arg1"); + ASSERT_EQ(bss->usdt3_args[1], 42, "usdt3_arg2"); + ASSERT_EQ(bss->usdt3_args[2], (uintptr_t)&bla, "usdt3_arg3"); + +cleanup: + test_usdt__destroy(skel); +} + +unsigned short test_usdt_100_semaphore SEC(".probes"); +unsigned short test_usdt_300_semaphore SEC(".probes"); +unsigned short test_usdt_400_semaphore SEC(".probes"); + +#define R10(F, X) F(X+0); F(X+1);F(X+2); F(X+3); F(X+4); \ + F(X+5); F(X+6); F(X+7); F(X+8); F(X+9); +#define R100(F, X) R10(F,X+ 0);R10(F,X+10);R10(F,X+20);R10(F,X+30);R10(F,X+40); \ + R10(F,X+50);R10(F,X+60);R10(F,X+70);R10(F,X+80);R10(F,X+90); + +/* carefully control that we get exactly 100 inlines by preventing inlining */ +static void __always_inline f100(int x) +{ + STAP_PROBE1(test, usdt_100, x); +} + +__weak void trigger_100_usdts(void) +{ + R100(f100, 0); +} + +/* we shouldn't be able to attach to test:usdt2_300 USDT as we don't have as + * many slots for specs. It's important that each STAP_PROBE2() invocation + * (after untolling) gets different arg spec due to compiler inlining i as + * a constant + */ +static void __always_inline f300(int x) +{ + STAP_PROBE1(test, usdt_300, x); +} + +__weak void trigger_300_usdts(void) +{ + R100(f300, 0); + R100(f300, 100); + R100(f300, 200); +} + +static void __always_inline f400(int x __attribute__((unused))) +{ + STAP_PROBE1(test, usdt_400, 400); +} + +/* this time we have 400 different USDT call sites, but they have uniform + * argument location, so libbpf's spec string deduplication logic should keep + * spec count use very small and so we should be able to attach to all 400 + * call sites + */ +__weak void trigger_400_usdts(void) +{ + R100(f400, 0); + R100(f400, 100); + R100(f400, 200); + R100(f400, 300); +} + +static void subtest_multispec_usdt(void) +{ + LIBBPF_OPTS(bpf_usdt_opts, opts); + struct test_usdt *skel; + struct test_usdt__bss *bss; + int err, i; + + skel = test_usdt__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bss = skel->bss; + bss->my_pid = getpid(); + + err = test_usdt__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + /* usdt_100 is auto-attached and there are 100 inlined call sites, + * let's validate that all of them are properly attached to and + * handled from BPF side + */ + trigger_100_usdts(); + + ASSERT_EQ(bss->usdt_100_called, 100, "usdt_100_called"); + ASSERT_EQ(bss->usdt_100_sum, 99 * 100 / 2, "usdt_100_sum"); + + /* Stress test free spec ID tracking. By default libbpf allows up to + * 256 specs to be used, so if we don't return free spec IDs back + * after few detachments and re-attachments we should run out of + * available spec IDs. + */ + for (i = 0; i < 2; i++) { + bpf_link__destroy(skel->links.usdt_100); + + skel->links.usdt_100 = bpf_program__attach_usdt(skel->progs.usdt_100, -1, + "/proc/self/exe", + "test", "usdt_100", NULL); + if (!ASSERT_OK_PTR(skel->links.usdt_100, "usdt_100_reattach")) + goto cleanup; + + bss->usdt_100_sum = 0; + trigger_100_usdts(); + + ASSERT_EQ(bss->usdt_100_called, (i + 1) * 100 + 100, "usdt_100_called"); + ASSERT_EQ(bss->usdt_100_sum, 99 * 100 / 2, "usdt_100_sum"); + } + + /* Now let's step it up and try to attach USDT that requires more than + * 256 attach points with different specs for each. + * Note that we need trigger_300_usdts() only to actually have 300 + * USDT call sites, we are not going to actually trace them. + */ + trigger_300_usdts(); + + /* we'll reuse usdt_100 BPF program for usdt_300 test */ + bpf_link__destroy(skel->links.usdt_100); + skel->links.usdt_100 = bpf_program__attach_usdt(skel->progs.usdt_100, -1, "/proc/self/exe", + "test", "usdt_300", NULL); + err = -errno; + if (!ASSERT_ERR_PTR(skel->links.usdt_100, "usdt_300_bad_attach")) + goto cleanup; + ASSERT_EQ(err, -E2BIG, "usdt_300_attach_err"); + + /* let's check that there are no "dangling" BPF programs attached due + * to partial success of the above test:usdt_300 attachment + */ + bss->usdt_100_called = 0; + bss->usdt_100_sum = 0; + + f300(777); /* this is 301st instance of usdt_300 */ + + ASSERT_EQ(bss->usdt_100_called, 0, "usdt_301_called"); + ASSERT_EQ(bss->usdt_100_sum, 0, "usdt_301_sum"); + + /* This time we have USDT with 400 inlined invocations, but arg specs + * should be the same across all sites, so libbpf will only need to + * use one spec and thus we'll be able to attach 400 uprobes + * successfully. + * + * Again, we are reusing usdt_100 BPF program. + */ + skel->links.usdt_100 = bpf_program__attach_usdt(skel->progs.usdt_100, -1, + "/proc/self/exe", + "test", "usdt_400", NULL); + if (!ASSERT_OK_PTR(skel->links.usdt_100, "usdt_400_attach")) + goto cleanup; + + trigger_400_usdts(); + + ASSERT_EQ(bss->usdt_100_called, 400, "usdt_400_called"); + ASSERT_EQ(bss->usdt_100_sum, 400 * 400, "usdt_400_sum"); + +cleanup: + test_usdt__destroy(skel); +} + +static FILE *urand_spawn(int *pid) +{ + FILE *f; + + /* urandom_read's stdout is wired into f */ + f = popen("./urandom_read 1 report-pid", "r"); + if (!f) + return NULL; + + if (fscanf(f, "%d", pid) != 1) { + pclose(f); + errno = EINVAL; + return NULL; + } + + return f; +} + +static int urand_trigger(FILE **urand_pipe) +{ + int exit_code; + + /* pclose() waits for child process to exit and returns their exit code */ + exit_code = pclose(*urand_pipe); + *urand_pipe = NULL; + + return exit_code; +} + +static void subtest_urandom_usdt(bool auto_attach) +{ + struct test_urandom_usdt *skel; + struct test_urandom_usdt__bss *bss; + struct bpf_link *l; + FILE *urand_pipe = NULL; + int err, urand_pid = 0; + + skel = test_urandom_usdt__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + urand_pipe = urand_spawn(&urand_pid); + if (!ASSERT_OK_PTR(urand_pipe, "urand_spawn")) + goto cleanup; + + bss = skel->bss; + bss->urand_pid = urand_pid; + + if (auto_attach) { + err = test_urandom_usdt__attach(skel); + if (!ASSERT_OK(err, "skel_auto_attach")) + goto cleanup; + } else { + l = bpf_program__attach_usdt(skel->progs.urand_read_without_sema, + urand_pid, "./urandom_read", + "urand", "read_without_sema", NULL); + if (!ASSERT_OK_PTR(l, "urand_without_sema_attach")) + goto cleanup; + skel->links.urand_read_without_sema = l; + + l = bpf_program__attach_usdt(skel->progs.urand_read_with_sema, + urand_pid, "./urandom_read", + "urand", "read_with_sema", NULL); + if (!ASSERT_OK_PTR(l, "urand_with_sema_attach")) + goto cleanup; + skel->links.urand_read_with_sema = l; + + l = bpf_program__attach_usdt(skel->progs.urandlib_read_without_sema, + urand_pid, "./liburandom_read.so", + "urandlib", "read_without_sema", NULL); + if (!ASSERT_OK_PTR(l, "urandlib_without_sema_attach")) + goto cleanup; + skel->links.urandlib_read_without_sema = l; + + l = bpf_program__attach_usdt(skel->progs.urandlib_read_with_sema, + urand_pid, "./liburandom_read.so", + "urandlib", "read_with_sema", NULL); + if (!ASSERT_OK_PTR(l, "urandlib_with_sema_attach")) + goto cleanup; + skel->links.urandlib_read_with_sema = l; + + } + + /* trigger urandom_read USDTs */ + ASSERT_OK(urand_trigger(&urand_pipe), "urand_exit_code"); + + ASSERT_EQ(bss->urand_read_without_sema_call_cnt, 1, "urand_wo_sema_cnt"); + ASSERT_EQ(bss->urand_read_without_sema_buf_sz_sum, 256, "urand_wo_sema_sum"); + + ASSERT_EQ(bss->urand_read_with_sema_call_cnt, 1, "urand_w_sema_cnt"); + ASSERT_EQ(bss->urand_read_with_sema_buf_sz_sum, 256, "urand_w_sema_sum"); + + ASSERT_EQ(bss->urandlib_read_without_sema_call_cnt, 1, "urandlib_wo_sema_cnt"); + ASSERT_EQ(bss->urandlib_read_without_sema_buf_sz_sum, 256, "urandlib_wo_sema_sum"); + + ASSERT_EQ(bss->urandlib_read_with_sema_call_cnt, 1, "urandlib_w_sema_cnt"); + ASSERT_EQ(bss->urandlib_read_with_sema_buf_sz_sum, 256, "urandlib_w_sema_sum"); + +cleanup: + if (urand_pipe) + pclose(urand_pipe); + test_urandom_usdt__destroy(skel); +} + +void test_usdt(void) +{ + if (test__start_subtest("basic")) + subtest_basic_usdt(); + if (test__start_subtest("multispec")) + subtest_multispec_usdt(); + if (test__start_subtest("urand_auto_attach")) + subtest_urandom_usdt(true /* auto_attach */); + if (test__start_subtest("urand_pid_attach")) + subtest_urandom_usdt(false /* auto_attach */); +} diff --git a/tools/testing/selftests/bpf/prog_tests/user_ringbuf.c b/tools/testing/selftests/bpf/prog_tests/user_ringbuf.c new file mode 100644 index 000000000000..e51721df14fc --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/user_ringbuf.c @@ -0,0 +1,696 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2022 Meta Platforms, Inc. and affiliates. */ + +#define _GNU_SOURCE +#include <linux/compiler.h> +#include <linux/ring_buffer.h> +#include <pthread.h> +#include <stdio.h> +#include <stdlib.h> +#include <sys/mman.h> +#include <sys/syscall.h> +#include <sys/sysinfo.h> +#include <test_progs.h> +#include <uapi/linux/bpf.h> +#include <unistd.h> + +#include "user_ringbuf_fail.skel.h" +#include "user_ringbuf_success.skel.h" + +#include "../progs/test_user_ringbuf.h" + +static const long c_sample_size = sizeof(struct sample) + BPF_RINGBUF_HDR_SZ; +static const long c_ringbuf_size = 1 << 12; /* 1 small page */ +static const long c_max_entries = c_ringbuf_size / c_sample_size; + +static void drain_current_samples(void) +{ + syscall(__NR_getpgid); +} + +static int write_samples(struct user_ring_buffer *ringbuf, uint32_t num_samples) +{ + int i, err = 0; + + /* Write some number of samples to the ring buffer. */ + for (i = 0; i < num_samples; i++) { + struct sample *entry; + int read; + + entry = user_ring_buffer__reserve(ringbuf, sizeof(*entry)); + if (!entry) { + err = -errno; + goto done; + } + + entry->pid = getpid(); + entry->seq = i; + entry->value = i * i; + + read = snprintf(entry->comm, sizeof(entry->comm), "%u", i); + if (read <= 0) { + /* Assert on the error path to avoid spamming logs with + * mostly success messages. + */ + ASSERT_GT(read, 0, "snprintf_comm"); + err = read; + user_ring_buffer__discard(ringbuf, entry); + goto done; + } + + user_ring_buffer__submit(ringbuf, entry); + } + +done: + drain_current_samples(); + + return err; +} + +static struct user_ringbuf_success *open_load_ringbuf_skel(void) +{ + struct user_ringbuf_success *skel; + int err; + + skel = user_ringbuf_success__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return NULL; + + err = bpf_map__set_max_entries(skel->maps.user_ringbuf, c_ringbuf_size); + if (!ASSERT_OK(err, "set_max_entries")) + goto cleanup; + + err = bpf_map__set_max_entries(skel->maps.kernel_ringbuf, c_ringbuf_size); + if (!ASSERT_OK(err, "set_max_entries")) + goto cleanup; + + err = user_ringbuf_success__load(skel); + if (!ASSERT_OK(err, "skel_load")) + goto cleanup; + + return skel; + +cleanup: + user_ringbuf_success__destroy(skel); + return NULL; +} + +static void test_user_ringbuf_mappings(void) +{ + int err, rb_fd; + int page_size = getpagesize(); + void *mmap_ptr; + struct user_ringbuf_success *skel; + + skel = open_load_ringbuf_skel(); + if (!skel) + return; + + rb_fd = bpf_map__fd(skel->maps.user_ringbuf); + /* cons_pos can be mapped R/O, can't add +X with mprotect. */ + mmap_ptr = mmap(NULL, page_size, PROT_READ, MAP_SHARED, rb_fd, 0); + ASSERT_OK_PTR(mmap_ptr, "ro_cons_pos"); + ASSERT_ERR(mprotect(mmap_ptr, page_size, PROT_WRITE), "write_cons_pos_protect"); + ASSERT_ERR(mprotect(mmap_ptr, page_size, PROT_EXEC), "exec_cons_pos_protect"); + ASSERT_ERR_PTR(mremap(mmap_ptr, 0, 4 * page_size, MREMAP_MAYMOVE), "wr_prod_pos"); + err = -errno; + ASSERT_ERR(err, "wr_prod_pos_err"); + ASSERT_OK(munmap(mmap_ptr, page_size), "unmap_ro_cons"); + + /* prod_pos can be mapped RW, can't add +X with mprotect. */ + mmap_ptr = mmap(NULL, page_size, PROT_READ | PROT_WRITE, MAP_SHARED, + rb_fd, page_size); + ASSERT_OK_PTR(mmap_ptr, "rw_prod_pos"); + ASSERT_ERR(mprotect(mmap_ptr, page_size, PROT_EXEC), "exec_prod_pos_protect"); + err = -errno; + ASSERT_ERR(err, "wr_prod_pos_err"); + ASSERT_OK(munmap(mmap_ptr, page_size), "unmap_rw_prod"); + + /* data pages can be mapped RW, can't add +X with mprotect. */ + mmap_ptr = mmap(NULL, page_size, PROT_WRITE, MAP_SHARED, rb_fd, + 2 * page_size); + ASSERT_OK_PTR(mmap_ptr, "rw_data"); + ASSERT_ERR(mprotect(mmap_ptr, page_size, PROT_EXEC), "exec_data_protect"); + err = -errno; + ASSERT_ERR(err, "exec_data_err"); + ASSERT_OK(munmap(mmap_ptr, page_size), "unmap_rw_data"); + + user_ringbuf_success__destroy(skel); +} + +static int load_skel_create_ringbufs(struct user_ringbuf_success **skel_out, + struct ring_buffer **kern_ringbuf_out, + ring_buffer_sample_fn callback, + struct user_ring_buffer **user_ringbuf_out) +{ + struct user_ringbuf_success *skel; + struct ring_buffer *kern_ringbuf = NULL; + struct user_ring_buffer *user_ringbuf = NULL; + int err = -ENOMEM, rb_fd; + + skel = open_load_ringbuf_skel(); + if (!skel) + return err; + + /* only trigger BPF program for current process */ + skel->bss->pid = getpid(); + + if (kern_ringbuf_out) { + rb_fd = bpf_map__fd(skel->maps.kernel_ringbuf); + kern_ringbuf = ring_buffer__new(rb_fd, callback, skel, NULL); + if (!ASSERT_OK_PTR(kern_ringbuf, "kern_ringbuf_create")) + goto cleanup; + + *kern_ringbuf_out = kern_ringbuf; + } + + if (user_ringbuf_out) { + rb_fd = bpf_map__fd(skel->maps.user_ringbuf); + user_ringbuf = user_ring_buffer__new(rb_fd, NULL); + if (!ASSERT_OK_PTR(user_ringbuf, "user_ringbuf_create")) + goto cleanup; + + *user_ringbuf_out = user_ringbuf; + ASSERT_EQ(skel->bss->read, 0, "no_reads_after_load"); + } + + err = user_ringbuf_success__attach(skel); + if (!ASSERT_OK(err, "skel_attach")) + goto cleanup; + + *skel_out = skel; + return 0; + +cleanup: + if (kern_ringbuf_out) + *kern_ringbuf_out = NULL; + if (user_ringbuf_out) + *user_ringbuf_out = NULL; + ring_buffer__free(kern_ringbuf); + user_ring_buffer__free(user_ringbuf); + user_ringbuf_success__destroy(skel); + return err; +} + +static int load_skel_create_user_ringbuf(struct user_ringbuf_success **skel_out, + struct user_ring_buffer **ringbuf_out) +{ + return load_skel_create_ringbufs(skel_out, NULL, NULL, ringbuf_out); +} + +static void manually_write_test_invalid_sample(struct user_ringbuf_success *skel, + __u32 size, __u64 producer_pos, int err) +{ + void *data_ptr; + __u64 *producer_pos_ptr; + int rb_fd, page_size = getpagesize(); + + rb_fd = bpf_map__fd(skel->maps.user_ringbuf); + + ASSERT_EQ(skel->bss->read, 0, "num_samples_before_bad_sample"); + + /* Map the producer_pos as RW. */ + producer_pos_ptr = mmap(NULL, page_size, PROT_READ | PROT_WRITE, + MAP_SHARED, rb_fd, page_size); + ASSERT_OK_PTR(producer_pos_ptr, "producer_pos_ptr"); + + /* Map the data pages as RW. */ + data_ptr = mmap(NULL, page_size, PROT_WRITE, MAP_SHARED, rb_fd, 2 * page_size); + ASSERT_OK_PTR(data_ptr, "rw_data"); + + memset(data_ptr, 0, BPF_RINGBUF_HDR_SZ); + *(__u32 *)data_ptr = size; + + /* Synchronizes with smp_load_acquire() in __bpf_user_ringbuf_peek() in the kernel. */ + smp_store_release(producer_pos_ptr, producer_pos + BPF_RINGBUF_HDR_SZ); + + drain_current_samples(); + ASSERT_EQ(skel->bss->read, 0, "num_samples_after_bad_sample"); + ASSERT_EQ(skel->bss->err, err, "err_after_bad_sample"); + + ASSERT_OK(munmap(producer_pos_ptr, page_size), "unmap_producer_pos"); + ASSERT_OK(munmap(data_ptr, page_size), "unmap_data_ptr"); +} + +static void test_user_ringbuf_post_misaligned(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + int err; + __u32 size = (1 << 5) + 7; + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (!ASSERT_OK(err, "misaligned_skel")) + return; + + manually_write_test_invalid_sample(skel, size, size, -EINVAL); + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void test_user_ringbuf_post_producer_wrong_offset(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + int err; + __u32 size = (1 << 5); + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (!ASSERT_OK(err, "wrong_offset_skel")) + return; + + manually_write_test_invalid_sample(skel, size, size - 8, -EINVAL); + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void test_user_ringbuf_post_larger_than_ringbuf_sz(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + int err; + __u32 size = c_ringbuf_size; + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (!ASSERT_OK(err, "huge_sample_skel")) + return; + + manually_write_test_invalid_sample(skel, size, size, -E2BIG); + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void test_user_ringbuf_basic(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + int err; + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (!ASSERT_OK(err, "ringbuf_basic_skel")) + return; + + ASSERT_EQ(skel->bss->read, 0, "num_samples_read_before"); + + err = write_samples(ringbuf, 2); + if (!ASSERT_OK(err, "write_samples")) + goto cleanup; + + ASSERT_EQ(skel->bss->read, 2, "num_samples_read_after"); + +cleanup: + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void test_user_ringbuf_sample_full_ring_buffer(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + int err; + void *sample; + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (!ASSERT_OK(err, "ringbuf_full_sample_skel")) + return; + + sample = user_ring_buffer__reserve(ringbuf, c_ringbuf_size - BPF_RINGBUF_HDR_SZ); + if (!ASSERT_OK_PTR(sample, "full_sample")) + goto cleanup; + + user_ring_buffer__submit(ringbuf, sample); + ASSERT_EQ(skel->bss->read, 0, "num_samples_read_before"); + drain_current_samples(); + ASSERT_EQ(skel->bss->read, 1, "num_samples_read_after"); + +cleanup: + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void test_user_ringbuf_post_alignment_autoadjust(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + struct sample *sample; + int err; + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (!ASSERT_OK(err, "ringbuf_align_autoadjust_skel")) + return; + + /* libbpf should automatically round any sample up to an 8-byte alignment. */ + sample = user_ring_buffer__reserve(ringbuf, sizeof(*sample) + 1); + ASSERT_OK_PTR(sample, "reserve_autoaligned"); + user_ring_buffer__submit(ringbuf, sample); + + ASSERT_EQ(skel->bss->read, 0, "num_samples_read_before"); + drain_current_samples(); + ASSERT_EQ(skel->bss->read, 1, "num_samples_read_after"); + + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void test_user_ringbuf_overfill(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + int err; + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (err) + return; + + err = write_samples(ringbuf, c_max_entries * 5); + ASSERT_ERR(err, "write_samples"); + ASSERT_EQ(skel->bss->read, c_max_entries, "max_entries"); + + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void test_user_ringbuf_discards_properly_ignored(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + int err, num_discarded = 0; + __u64 *token; + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (err) + return; + + ASSERT_EQ(skel->bss->read, 0, "num_samples_read_before"); + + while (1) { + /* Write samples until the buffer is full. */ + token = user_ring_buffer__reserve(ringbuf, sizeof(*token)); + if (!token) + break; + + user_ring_buffer__discard(ringbuf, token); + num_discarded++; + } + + if (!ASSERT_GE(num_discarded, 0, "num_discarded")) + goto cleanup; + + /* Should not read any samples, as they are all discarded. */ + ASSERT_EQ(skel->bss->read, 0, "num_pre_kick"); + drain_current_samples(); + ASSERT_EQ(skel->bss->read, 0, "num_post_kick"); + + /* Now that the ring buffer has been drained, we should be able to + * reserve another token. + */ + token = user_ring_buffer__reserve(ringbuf, sizeof(*token)); + + if (!ASSERT_OK_PTR(token, "new_token")) + goto cleanup; + + user_ring_buffer__discard(ringbuf, token); +cleanup: + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void test_user_ringbuf_loop(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + uint32_t total_samples = 8192; + uint32_t remaining_samples = total_samples; + int err; + + BUILD_BUG_ON(total_samples <= c_max_entries); + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (err) + return; + + do { + uint32_t curr_samples; + + curr_samples = remaining_samples > c_max_entries + ? c_max_entries : remaining_samples; + err = write_samples(ringbuf, curr_samples); + if (err != 0) { + /* Assert inside of if statement to avoid flooding logs + * on the success path. + */ + ASSERT_OK(err, "write_samples"); + goto cleanup; + } + + remaining_samples -= curr_samples; + ASSERT_EQ(skel->bss->read, total_samples - remaining_samples, + "current_batched_entries"); + } while (remaining_samples > 0); + ASSERT_EQ(skel->bss->read, total_samples, "total_batched_entries"); + +cleanup: + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +static int send_test_message(struct user_ring_buffer *ringbuf, + enum test_msg_op op, s64 operand_64, + s32 operand_32) +{ + struct test_msg *msg; + + msg = user_ring_buffer__reserve(ringbuf, sizeof(*msg)); + if (!msg) { + /* Assert on the error path to avoid spamming logs with mostly + * success messages. + */ + ASSERT_OK_PTR(msg, "reserve_msg"); + return -ENOMEM; + } + + msg->msg_op = op; + + switch (op) { + case TEST_MSG_OP_INC64: + case TEST_MSG_OP_MUL64: + msg->operand_64 = operand_64; + break; + case TEST_MSG_OP_INC32: + case TEST_MSG_OP_MUL32: + msg->operand_32 = operand_32; + break; + default: + PRINT_FAIL("Invalid operand %d\n", op); + user_ring_buffer__discard(ringbuf, msg); + return -EINVAL; + } + + user_ring_buffer__submit(ringbuf, msg); + + return 0; +} + +static void kick_kernel_read_messages(void) +{ + syscall(__NR_prctl); +} + +static int handle_kernel_msg(void *ctx, void *data, size_t len) +{ + struct user_ringbuf_success *skel = ctx; + struct test_msg *msg = data; + + switch (msg->msg_op) { + case TEST_MSG_OP_INC64: + skel->bss->user_mutated += msg->operand_64; + return 0; + case TEST_MSG_OP_INC32: + skel->bss->user_mutated += msg->operand_32; + return 0; + case TEST_MSG_OP_MUL64: + skel->bss->user_mutated *= msg->operand_64; + return 0; + case TEST_MSG_OP_MUL32: + skel->bss->user_mutated *= msg->operand_32; + return 0; + default: + fprintf(stderr, "Invalid operand %d\n", msg->msg_op); + return -EINVAL; + } +} + +static void drain_kernel_messages_buffer(struct ring_buffer *kern_ringbuf, + struct user_ringbuf_success *skel) +{ + int cnt; + + cnt = ring_buffer__consume(kern_ringbuf); + ASSERT_EQ(cnt, 8, "consume_kern_ringbuf"); + ASSERT_OK(skel->bss->err, "consume_kern_ringbuf_err"); +} + +static void test_user_ringbuf_msg_protocol(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *user_ringbuf; + struct ring_buffer *kern_ringbuf; + int err, i; + __u64 expected_kern = 0; + + err = load_skel_create_ringbufs(&skel, &kern_ringbuf, handle_kernel_msg, &user_ringbuf); + if (!ASSERT_OK(err, "create_ringbufs")) + return; + + for (i = 0; i < 64; i++) { + enum test_msg_op op = i % TEST_MSG_OP_NUM_OPS; + __u64 operand_64 = TEST_OP_64; + __u32 operand_32 = TEST_OP_32; + + err = send_test_message(user_ringbuf, op, operand_64, operand_32); + if (err) { + /* Only assert on a failure to avoid spamming success logs. */ + ASSERT_OK(err, "send_test_message"); + goto cleanup; + } + + switch (op) { + case TEST_MSG_OP_INC64: + expected_kern += operand_64; + break; + case TEST_MSG_OP_INC32: + expected_kern += operand_32; + break; + case TEST_MSG_OP_MUL64: + expected_kern *= operand_64; + break; + case TEST_MSG_OP_MUL32: + expected_kern *= operand_32; + break; + default: + PRINT_FAIL("Unexpected op %d\n", op); + goto cleanup; + } + + if (i % 8 == 0) { + kick_kernel_read_messages(); + ASSERT_EQ(skel->bss->kern_mutated, expected_kern, "expected_kern"); + ASSERT_EQ(skel->bss->err, 0, "bpf_prog_err"); + drain_kernel_messages_buffer(kern_ringbuf, skel); + } + } + +cleanup: + ring_buffer__free(kern_ringbuf); + user_ring_buffer__free(user_ringbuf); + user_ringbuf_success__destroy(skel); +} + +static void *kick_kernel_cb(void *arg) +{ + /* Kick the kernel, causing it to drain the ring buffer and then wake + * up the test thread waiting on epoll. + */ + syscall(__NR_prlimit64); + + return NULL; +} + +static int spawn_kick_thread_for_poll(void) +{ + pthread_t thread; + + return pthread_create(&thread, NULL, kick_kernel_cb, NULL); +} + +static void test_user_ringbuf_blocking_reserve(void) +{ + struct user_ringbuf_success *skel; + struct user_ring_buffer *ringbuf; + int err, num_written = 0; + __u64 *token; + + err = load_skel_create_user_ringbuf(&skel, &ringbuf); + if (err) + return; + + ASSERT_EQ(skel->bss->read, 0, "num_samples_read_before"); + + while (1) { + /* Write samples until the buffer is full. */ + token = user_ring_buffer__reserve(ringbuf, sizeof(*token)); + if (!token) + break; + + *token = 0xdeadbeef; + + user_ring_buffer__submit(ringbuf, token); + num_written++; + } + + if (!ASSERT_GE(num_written, 0, "num_written")) + goto cleanup; + + /* Should not have read any samples until the kernel is kicked. */ + ASSERT_EQ(skel->bss->read, 0, "num_pre_kick"); + + /* We correctly time out after 1 second, without a sample. */ + token = user_ring_buffer__reserve_blocking(ringbuf, sizeof(*token), 1000); + if (!ASSERT_EQ(token, NULL, "pre_kick_timeout_token")) + goto cleanup; + + err = spawn_kick_thread_for_poll(); + if (!ASSERT_EQ(err, 0, "deferred_kick_thread\n")) + goto cleanup; + + /* After spawning another thread that asychronously kicks the kernel to + * drain the messages, we're able to block and successfully get a + * sample once we receive an event notification. + */ + token = user_ring_buffer__reserve_blocking(ringbuf, sizeof(*token), 10000); + + if (!ASSERT_OK_PTR(token, "block_token")) + goto cleanup; + + ASSERT_GT(skel->bss->read, 0, "num_post_kill"); + ASSERT_LE(skel->bss->read, num_written, "num_post_kill"); + ASSERT_EQ(skel->bss->err, 0, "err_post_poll"); + user_ring_buffer__discard(ringbuf, token); + +cleanup: + user_ring_buffer__free(ringbuf); + user_ringbuf_success__destroy(skel); +} + +#define SUCCESS_TEST(_func) { _func, #_func } + +static struct { + void (*test_callback)(void); + const char *test_name; +} success_tests[] = { + SUCCESS_TEST(test_user_ringbuf_mappings), + SUCCESS_TEST(test_user_ringbuf_post_misaligned), + SUCCESS_TEST(test_user_ringbuf_post_producer_wrong_offset), + SUCCESS_TEST(test_user_ringbuf_post_larger_than_ringbuf_sz), + SUCCESS_TEST(test_user_ringbuf_basic), + SUCCESS_TEST(test_user_ringbuf_sample_full_ring_buffer), + SUCCESS_TEST(test_user_ringbuf_post_alignment_autoadjust), + SUCCESS_TEST(test_user_ringbuf_overfill), + SUCCESS_TEST(test_user_ringbuf_discards_properly_ignored), + SUCCESS_TEST(test_user_ringbuf_loop), + SUCCESS_TEST(test_user_ringbuf_msg_protocol), + SUCCESS_TEST(test_user_ringbuf_blocking_reserve), +}; + +void test_user_ringbuf(void) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(success_tests); i++) { + if (!test__start_subtest(success_tests[i].test_name)) + continue; + + success_tests[i].test_callback(); + } + + RUN_TESTS(user_ringbuf_fail); +} diff --git a/tools/testing/selftests/bpf/prog_tests/varlen.c b/tools/testing/selftests/bpf/prog_tests/varlen.c index dd324b4933db..4d7056f8f177 100644 --- a/tools/testing/selftests/bpf/prog_tests/varlen.c +++ b/tools/testing/selftests/bpf/prog_tests/varlen.c @@ -63,6 +63,13 @@ void test_varlen(void) CHECK_VAL(data->total4, size1 + size2); CHECK(memcmp(data->payload4, exp_str, size1 + size2), "content_check", "doesn't match!\n"); + + CHECK_VAL(bss->ret_bad_read, -EFAULT); + CHECK_VAL(data->payload_bad[0], 0x42); + CHECK_VAL(data->payload_bad[1], 0x42); + CHECK_VAL(data->payload_bad[2], 0); + CHECK_VAL(data->payload_bad[3], 0x42); + CHECK_VAL(data->payload_bad[4], 0x42); cleanup: test_varlen__destroy(skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/verif_stats.c b/tools/testing/selftests/bpf/prog_tests/verif_stats.c new file mode 100644 index 000000000000..af4b95f57ac1 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/verif_stats.c @@ -0,0 +1,29 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include <test_progs.h> + +#include "trace_vprintk.lskel.h" + +void test_verif_stats(void) +{ + __u32 len = sizeof(struct bpf_prog_info); + struct trace_vprintk_lskel *skel; + struct bpf_prog_info info = {}; + int err; + + skel = trace_vprintk_lskel__open_and_load(); + if (!ASSERT_OK_PTR(skel, "trace_vprintk__open_and_load")) + goto cleanup; + + err = bpf_prog_get_info_by_fd(skel->progs.sys_enter.prog_fd, + &info, &len); + if (!ASSERT_OK(err, "bpf_prog_get_info_by_fd")) + goto cleanup; + + if (!ASSERT_GT(info.verified_insns, 0, "verified_insns")) + goto cleanup; + +cleanup: + trace_vprintk_lskel__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/verifier.c b/tools/testing/selftests/bpf/prog_tests/verifier.c new file mode 100644 index 000000000000..1c9c4ec1be11 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/verifier.c @@ -0,0 +1,252 @@ +// SPDX-License-Identifier: GPL-2.0-only + +#include <test_progs.h> + +#include "cap_helpers.h" +#include "verifier_and.skel.h" +#include "verifier_arena.skel.h" +#include "verifier_arena_large.skel.h" +#include "verifier_array_access.skel.h" +#include "verifier_basic_stack.skel.h" +#include "verifier_bitfield_write.skel.h" +#include "verifier_bounds.skel.h" +#include "verifier_bounds_deduction.skel.h" +#include "verifier_bounds_deduction_non_const.skel.h" +#include "verifier_bounds_mix_sign_unsign.skel.h" +#include "verifier_bpf_get_stack.skel.h" +#include "verifier_bswap.skel.h" +#include "verifier_btf_ctx_access.skel.h" +#include "verifier_btf_unreliable_prog.skel.h" +#include "verifier_cfg.skel.h" +#include "verifier_cgroup_inv_retcode.skel.h" +#include "verifier_cgroup_skb.skel.h" +#include "verifier_cgroup_storage.skel.h" +#include "verifier_const_or.skel.h" +#include "verifier_ctx.skel.h" +#include "verifier_ctx_sk_msg.skel.h" +#include "verifier_d_path.skel.h" +#include "verifier_direct_packet_access.skel.h" +#include "verifier_direct_stack_access_wraparound.skel.h" +#include "verifier_div0.skel.h" +#include "verifier_div_overflow.skel.h" +#include "verifier_global_subprogs.skel.h" +#include "verifier_global_ptr_args.skel.h" +#include "verifier_gotol.skel.h" +#include "verifier_helper_access_var_len.skel.h" +#include "verifier_helper_packet_access.skel.h" +#include "verifier_helper_restricted.skel.h" +#include "verifier_helper_value_access.skel.h" +#include "verifier_int_ptr.skel.h" +#include "verifier_iterating_callbacks.skel.h" +#include "verifier_jeq_infer_not_null.skel.h" +#include "verifier_ld_ind.skel.h" +#include "verifier_ldsx.skel.h" +#include "verifier_leak_ptr.skel.h" +#include "verifier_loops1.skel.h" +#include "verifier_lwt.skel.h" +#include "verifier_map_in_map.skel.h" +#include "verifier_map_ptr.skel.h" +#include "verifier_map_ptr_mixing.skel.h" +#include "verifier_map_ret_val.skel.h" +#include "verifier_masking.skel.h" +#include "verifier_meta_access.skel.h" +#include "verifier_movsx.skel.h" +#include "verifier_netfilter_ctx.skel.h" +#include "verifier_netfilter_retcode.skel.h" +#include "verifier_precision.skel.h" +#include "verifier_prevent_map_lookup.skel.h" +#include "verifier_raw_stack.skel.h" +#include "verifier_raw_tp_writable.skel.h" +#include "verifier_reg_equal.skel.h" +#include "verifier_ref_tracking.skel.h" +#include "verifier_regalloc.skel.h" +#include "verifier_ringbuf.skel.h" +#include "verifier_runtime_jit.skel.h" +#include "verifier_scalar_ids.skel.h" +#include "verifier_sdiv.skel.h" +#include "verifier_search_pruning.skel.h" +#include "verifier_sock.skel.h" +#include "verifier_sock_addr.skel.h" +#include "verifier_sockmap_mutate.skel.h" +#include "verifier_spill_fill.skel.h" +#include "verifier_spin_lock.skel.h" +#include "verifier_stack_ptr.skel.h" +#include "verifier_subprog_precision.skel.h" +#include "verifier_subreg.skel.h" +#include "verifier_typedef.skel.h" +#include "verifier_uninit.skel.h" +#include "verifier_unpriv.skel.h" +#include "verifier_unpriv_perf.skel.h" +#include "verifier_value_adj_spill.skel.h" +#include "verifier_value.skel.h" +#include "verifier_value_illegal_alu.skel.h" +#include "verifier_value_or_null.skel.h" +#include "verifier_value_ptr_arith.skel.h" +#include "verifier_var_off.skel.h" +#include "verifier_xadd.skel.h" +#include "verifier_xdp.skel.h" +#include "verifier_xdp_direct_packet_access.skel.h" + +#define MAX_ENTRIES 11 + +struct test_val { + unsigned int index; + int foo[MAX_ENTRIES]; +}; + +__maybe_unused +static void run_tests_aux(const char *skel_name, + skel_elf_bytes_fn elf_bytes_factory, + pre_execution_cb pre_execution_cb) +{ + struct test_loader tester = {}; + __u64 old_caps; + int err; + + /* test_verifier tests are executed w/o CAP_SYS_ADMIN, do the same here */ + err = cap_disable_effective(1ULL << CAP_SYS_ADMIN, &old_caps); + if (err) { + PRINT_FAIL("failed to drop CAP_SYS_ADMIN: %i, %s\n", err, strerror(err)); + return; + } + + test_loader__set_pre_execution_cb(&tester, pre_execution_cb); + test_loader__run_subtests(&tester, skel_name, elf_bytes_factory); + test_loader_fini(&tester); + + err = cap_enable_effective(old_caps, NULL); + if (err) + PRINT_FAIL("failed to restore CAP_SYS_ADMIN: %i, %s\n", err, strerror(err)); +} + +#define RUN(skel) run_tests_aux(#skel, skel##__elf_bytes, NULL) + +void test_verifier_and(void) { RUN(verifier_and); } +void test_verifier_arena(void) { RUN(verifier_arena); } +void test_verifier_arena_large(void) { RUN(verifier_arena_large); } +void test_verifier_basic_stack(void) { RUN(verifier_basic_stack); } +void test_verifier_bitfield_write(void) { RUN(verifier_bitfield_write); } +void test_verifier_bounds(void) { RUN(verifier_bounds); } +void test_verifier_bounds_deduction(void) { RUN(verifier_bounds_deduction); } +void test_verifier_bounds_deduction_non_const(void) { RUN(verifier_bounds_deduction_non_const); } +void test_verifier_bounds_mix_sign_unsign(void) { RUN(verifier_bounds_mix_sign_unsign); } +void test_verifier_bpf_get_stack(void) { RUN(verifier_bpf_get_stack); } +void test_verifier_bswap(void) { RUN(verifier_bswap); } +void test_verifier_btf_ctx_access(void) { RUN(verifier_btf_ctx_access); } +void test_verifier_btf_unreliable_prog(void) { RUN(verifier_btf_unreliable_prog); } +void test_verifier_cfg(void) { RUN(verifier_cfg); } +void test_verifier_cgroup_inv_retcode(void) { RUN(verifier_cgroup_inv_retcode); } +void test_verifier_cgroup_skb(void) { RUN(verifier_cgroup_skb); } +void test_verifier_cgroup_storage(void) { RUN(verifier_cgroup_storage); } +void test_verifier_const_or(void) { RUN(verifier_const_or); } +void test_verifier_ctx(void) { RUN(verifier_ctx); } +void test_verifier_ctx_sk_msg(void) { RUN(verifier_ctx_sk_msg); } +void test_verifier_d_path(void) { RUN(verifier_d_path); } +void test_verifier_direct_packet_access(void) { RUN(verifier_direct_packet_access); } +void test_verifier_direct_stack_access_wraparound(void) { RUN(verifier_direct_stack_access_wraparound); } +void test_verifier_div0(void) { RUN(verifier_div0); } +void test_verifier_div_overflow(void) { RUN(verifier_div_overflow); } +void test_verifier_global_subprogs(void) { RUN(verifier_global_subprogs); } +void test_verifier_global_ptr_args(void) { RUN(verifier_global_ptr_args); } +void test_verifier_gotol(void) { RUN(verifier_gotol); } +void test_verifier_helper_access_var_len(void) { RUN(verifier_helper_access_var_len); } +void test_verifier_helper_packet_access(void) { RUN(verifier_helper_packet_access); } +void test_verifier_helper_restricted(void) { RUN(verifier_helper_restricted); } +void test_verifier_helper_value_access(void) { RUN(verifier_helper_value_access); } +void test_verifier_int_ptr(void) { RUN(verifier_int_ptr); } +void test_verifier_iterating_callbacks(void) { RUN(verifier_iterating_callbacks); } +void test_verifier_jeq_infer_not_null(void) { RUN(verifier_jeq_infer_not_null); } +void test_verifier_ld_ind(void) { RUN(verifier_ld_ind); } +void test_verifier_ldsx(void) { RUN(verifier_ldsx); } +void test_verifier_leak_ptr(void) { RUN(verifier_leak_ptr); } +void test_verifier_loops1(void) { RUN(verifier_loops1); } +void test_verifier_lwt(void) { RUN(verifier_lwt); } +void test_verifier_map_in_map(void) { RUN(verifier_map_in_map); } +void test_verifier_map_ptr(void) { RUN(verifier_map_ptr); } +void test_verifier_map_ptr_mixing(void) { RUN(verifier_map_ptr_mixing); } +void test_verifier_map_ret_val(void) { RUN(verifier_map_ret_val); } +void test_verifier_masking(void) { RUN(verifier_masking); } +void test_verifier_meta_access(void) { RUN(verifier_meta_access); } +void test_verifier_movsx(void) { RUN(verifier_movsx); } +void test_verifier_netfilter_ctx(void) { RUN(verifier_netfilter_ctx); } +void test_verifier_netfilter_retcode(void) { RUN(verifier_netfilter_retcode); } +void test_verifier_precision(void) { RUN(verifier_precision); } +void test_verifier_prevent_map_lookup(void) { RUN(verifier_prevent_map_lookup); } +void test_verifier_raw_stack(void) { RUN(verifier_raw_stack); } +void test_verifier_raw_tp_writable(void) { RUN(verifier_raw_tp_writable); } +void test_verifier_reg_equal(void) { RUN(verifier_reg_equal); } +void test_verifier_ref_tracking(void) { RUN(verifier_ref_tracking); } +void test_verifier_regalloc(void) { RUN(verifier_regalloc); } +void test_verifier_ringbuf(void) { RUN(verifier_ringbuf); } +void test_verifier_runtime_jit(void) { RUN(verifier_runtime_jit); } +void test_verifier_scalar_ids(void) { RUN(verifier_scalar_ids); } +void test_verifier_sdiv(void) { RUN(verifier_sdiv); } +void test_verifier_search_pruning(void) { RUN(verifier_search_pruning); } +void test_verifier_sock(void) { RUN(verifier_sock); } +void test_verifier_sock_addr(void) { RUN(verifier_sock_addr); } +void test_verifier_sockmap_mutate(void) { RUN(verifier_sockmap_mutate); } +void test_verifier_spill_fill(void) { RUN(verifier_spill_fill); } +void test_verifier_spin_lock(void) { RUN(verifier_spin_lock); } +void test_verifier_stack_ptr(void) { RUN(verifier_stack_ptr); } +void test_verifier_subprog_precision(void) { RUN(verifier_subprog_precision); } +void test_verifier_subreg(void) { RUN(verifier_subreg); } +void test_verifier_typedef(void) { RUN(verifier_typedef); } +void test_verifier_uninit(void) { RUN(verifier_uninit); } +void test_verifier_unpriv(void) { RUN(verifier_unpriv); } +void test_verifier_unpriv_perf(void) { RUN(verifier_unpriv_perf); } +void test_verifier_value_adj_spill(void) { RUN(verifier_value_adj_spill); } +void test_verifier_value(void) { RUN(verifier_value); } +void test_verifier_value_illegal_alu(void) { RUN(verifier_value_illegal_alu); } +void test_verifier_value_or_null(void) { RUN(verifier_value_or_null); } +void test_verifier_var_off(void) { RUN(verifier_var_off); } +void test_verifier_xadd(void) { RUN(verifier_xadd); } +void test_verifier_xdp(void) { RUN(verifier_xdp); } +void test_verifier_xdp_direct_packet_access(void) { RUN(verifier_xdp_direct_packet_access); } + +static int init_test_val_map(struct bpf_object *obj, char *map_name) +{ + struct test_val value = { + .index = (6 + 1) * sizeof(int), + .foo[6] = 0xabcdef12, + }; + struct bpf_map *map; + int err, key = 0; + + map = bpf_object__find_map_by_name(obj, map_name); + if (!map) { + PRINT_FAIL("Can't find map '%s'\n", map_name); + return -EINVAL; + } + + err = bpf_map_update_elem(bpf_map__fd(map), &key, &value, 0); + if (err) { + PRINT_FAIL("Error while updating map '%s': %d\n", map_name, err); + return err; + } + + return 0; +} + +static int init_array_access_maps(struct bpf_object *obj) +{ + return init_test_val_map(obj, "map_array_ro"); +} + +void test_verifier_array_access(void) +{ + run_tests_aux("verifier_array_access", + verifier_array_access__elf_bytes, + init_array_access_maps); +} + +static int init_value_ptr_arith_maps(struct bpf_object *obj) +{ + return init_test_val_map(obj, "map_array_48b"); +} + +void test_verifier_value_ptr_arith(void) +{ + run_tests_aux("verifier_value_ptr_arith", + verifier_value_ptr_arith__elf_bytes, + init_value_ptr_arith_maps); +} diff --git a/tools/testing/selftests/bpf/prog_tests/verifier_kfunc_prog_types.c b/tools/testing/selftests/bpf/prog_tests/verifier_kfunc_prog_types.c new file mode 100644 index 000000000000..3918ecc2ee91 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/verifier_kfunc_prog_types.c @@ -0,0 +1,11 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> + +#include "verifier_kfunc_prog_types.skel.h" + +void test_verifier_kfunc_prog_types(void) +{ + RUN_TESTS(verifier_kfunc_prog_types); +} diff --git a/tools/testing/selftests/bpf/prog_tests/verifier_log.c b/tools/testing/selftests/bpf/prog_tests/verifier_log.c new file mode 100644 index 000000000000..8337c6bc5b95 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/verifier_log.c @@ -0,0 +1,450 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2023 Meta Platforms, Inc. and affiliates. */ + +#include <test_progs.h> +#include <bpf/btf.h> + +#include "test_log_buf.skel.h" + + +static bool check_prog_load(int prog_fd, bool expect_err, const char *tag) +{ + if (expect_err) { + if (!ASSERT_LT(prog_fd, 0, tag)) { + close(prog_fd); + return false; + } + } else /* !expect_err */ { + if (!ASSERT_GT(prog_fd, 0, tag)) + return false; + } + if (prog_fd >= 0) + close(prog_fd); + return true; +} + +static struct { + /* strategically placed before others to avoid accidental modification by kernel */ + char filler[1024]; + char buf[1024]; + /* strategically placed after buf[] to catch more accidental corruptions */ + char reference[1024]; +} logs; +static const struct bpf_insn *insns; +static size_t insn_cnt; + +static int load_prog(struct bpf_prog_load_opts *opts, bool expect_load_error) +{ + int prog_fd; + + prog_fd = bpf_prog_load(BPF_PROG_TYPE_RAW_TRACEPOINT, "log_prog", + "GPL", insns, insn_cnt, opts); + check_prog_load(prog_fd, expect_load_error, "prog_load"); + + return prog_fd; +} + +static void verif_log_subtest(const char *name, bool expect_load_error, int log_level) +{ + LIBBPF_OPTS(bpf_prog_load_opts, opts); + char *exp_log, prog_name[16], op_name[32]; + struct test_log_buf *skel; + struct bpf_program *prog; + size_t fixed_log_sz; + __u32 log_true_sz_fixed, log_true_sz_rolling; + int i, mode, err, prog_fd, res; + + skel = test_log_buf__open(); + if (!ASSERT_OK_PTR(skel, "skel_open")) + return; + + bpf_object__for_each_program(prog, skel->obj) { + if (strcmp(bpf_program__name(prog), name) == 0) + bpf_program__set_autoload(prog, true); + else + bpf_program__set_autoload(prog, false); + } + + err = test_log_buf__load(skel); + if (!expect_load_error && !ASSERT_OK(err, "unexpected_load_failure")) + goto cleanup; + if (expect_load_error && !ASSERT_ERR(err, "unexpected_load_success")) + goto cleanup; + + insns = bpf_program__insns(skel->progs.good_prog); + insn_cnt = bpf_program__insn_cnt(skel->progs.good_prog); + + opts.log_buf = logs.reference; + opts.log_size = sizeof(logs.reference); + opts.log_level = log_level | 8 /* BPF_LOG_FIXED */; + load_prog(&opts, expect_load_error); + + fixed_log_sz = strlen(logs.reference) + 1; + if (!ASSERT_GT(fixed_log_sz, 50, "fixed_log_sz")) + goto cleanup; + memset(logs.reference + fixed_log_sz, 0, sizeof(logs.reference) - fixed_log_sz); + + /* validate BPF_LOG_FIXED works as verifier log used to work, that is: + * we get -ENOSPC and beginning of the full verifier log. This only + * works for log_level 2 and log_level 1 + failed program. For log + * level 2 we don't reset log at all. For log_level 1 + failed program + * we don't get to verification stats output. With log level 1 + * for successful program final result will be just verifier stats. + * But if provided too short log buf, kernel will NULL-out log->ubuf + * and will stop emitting further log. This means we'll never see + * predictable verifier stats. + * Long story short, we do the following -ENOSPC test only for + * predictable combinations. + */ + if (log_level >= 2 || expect_load_error) { + opts.log_buf = logs.buf; + opts.log_level = log_level | 8; /* fixed-length log */ + opts.log_size = 25; + + prog_fd = bpf_prog_load(BPF_PROG_TYPE_RAW_TRACEPOINT, "log_fixed25", + "GPL", insns, insn_cnt, &opts); + if (!ASSERT_EQ(prog_fd, -ENOSPC, "unexpected_log_fixed_prog_load_result")) { + if (prog_fd >= 0) + close(prog_fd); + goto cleanup; + } + if (!ASSERT_EQ(strlen(logs.buf), 24, "log_fixed_25")) + goto cleanup; + if (!ASSERT_STRNEQ(logs.buf, logs.reference, 24, "log_fixed_contents_25")) + goto cleanup; + } + + /* validate rolling verifier log logic: try all variations of log buf + * length to force various truncation scenarios + */ + opts.log_buf = logs.buf; + + /* rotating mode, then fixed mode */ + for (mode = 1; mode >= 0; mode--) { + /* prefill logs.buf with 'A's to detect any write beyond allowed length */ + memset(logs.filler, 'A', sizeof(logs.filler)); + logs.filler[sizeof(logs.filler) - 1] = '\0'; + memset(logs.buf, 'A', sizeof(logs.buf)); + logs.buf[sizeof(logs.buf) - 1] = '\0'; + + for (i = 1; i < fixed_log_sz; i++) { + opts.log_size = i; + opts.log_level = log_level | (mode ? 0 : 8 /* BPF_LOG_FIXED */); + + snprintf(prog_name, sizeof(prog_name), + "log_%s_%d", mode ? "roll" : "fixed", i); + prog_fd = bpf_prog_load(BPF_PROG_TYPE_RAW_TRACEPOINT, prog_name, + "GPL", insns, insn_cnt, &opts); + + snprintf(op_name, sizeof(op_name), + "log_%s_prog_load_%d", mode ? "roll" : "fixed", i); + if (!ASSERT_EQ(prog_fd, -ENOSPC, op_name)) { + if (prog_fd >= 0) + close(prog_fd); + goto cleanup; + } + + snprintf(op_name, sizeof(op_name), + "log_%s_strlen_%d", mode ? "roll" : "fixed", i); + ASSERT_EQ(strlen(logs.buf), i - 1, op_name); + + if (mode) + exp_log = logs.reference + fixed_log_sz - i; + else + exp_log = logs.reference; + + snprintf(op_name, sizeof(op_name), + "log_%s_contents_%d", mode ? "roll" : "fixed", i); + if (!ASSERT_STRNEQ(logs.buf, exp_log, i - 1, op_name)) { + printf("CMP:%d\nS1:'%s'\nS2:'%s'\n", + strncmp(logs.buf, exp_log, i - 1), + logs.buf, exp_log); + goto cleanup; + } + + /* check that unused portions of logs.buf is not overwritten */ + snprintf(op_name, sizeof(op_name), + "log_%s_unused_%d", mode ? "roll" : "fixed", i); + if (!ASSERT_STREQ(logs.buf + i, logs.filler + i, op_name)) { + printf("CMP:%d\nS1:'%s'\nS2:'%s'\n", + strcmp(logs.buf + i, logs.filler + i), + logs.buf + i, logs.filler + i); + goto cleanup; + } + } + } + + /* (FIXED) get actual log size */ + opts.log_buf = logs.buf; + opts.log_level = log_level | 8; /* BPF_LOG_FIXED */ + opts.log_size = sizeof(logs.buf); + opts.log_true_size = 0; + res = load_prog(&opts, expect_load_error); + ASSERT_NEQ(res, -ENOSPC, "prog_load_res_fixed"); + + log_true_sz_fixed = opts.log_true_size; + ASSERT_GT(log_true_sz_fixed, 0, "log_true_sz_fixed"); + + /* (FIXED, NULL) get actual log size */ + opts.log_buf = NULL; + opts.log_level = log_level | 8; /* BPF_LOG_FIXED */ + opts.log_size = 0; + opts.log_true_size = 0; + res = load_prog(&opts, expect_load_error); + ASSERT_NEQ(res, -ENOSPC, "prog_load_res_fixed_null"); + ASSERT_EQ(opts.log_true_size, log_true_sz_fixed, "log_sz_fixed_null_eq"); + + /* (ROLLING) get actual log size */ + opts.log_buf = logs.buf; + opts.log_level = log_level; + opts.log_size = sizeof(logs.buf); + opts.log_true_size = 0; + res = load_prog(&opts, expect_load_error); + ASSERT_NEQ(res, -ENOSPC, "prog_load_res_rolling"); + + log_true_sz_rolling = opts.log_true_size; + ASSERT_EQ(log_true_sz_rolling, log_true_sz_fixed, "log_true_sz_eq"); + + /* (ROLLING, NULL) get actual log size */ + opts.log_buf = NULL; + opts.log_level = log_level; + opts.log_size = 0; + opts.log_true_size = 0; + res = load_prog(&opts, expect_load_error); + ASSERT_NEQ(res, -ENOSPC, "prog_load_res_rolling_null"); + ASSERT_EQ(opts.log_true_size, log_true_sz_rolling, "log_true_sz_null_eq"); + + /* (FIXED) expect -ENOSPC for one byte short log */ + opts.log_buf = logs.buf; + opts.log_level = log_level | 8; /* BPF_LOG_FIXED */ + opts.log_size = log_true_sz_fixed - 1; + opts.log_true_size = 0; + res = load_prog(&opts, true /* should fail */); + ASSERT_EQ(res, -ENOSPC, "prog_load_res_too_short_fixed"); + + /* (FIXED) expect *not* -ENOSPC with exact log_true_size buffer */ + opts.log_buf = logs.buf; + opts.log_level = log_level | 8; /* BPF_LOG_FIXED */ + opts.log_size = log_true_sz_fixed; + opts.log_true_size = 0; + res = load_prog(&opts, expect_load_error); + ASSERT_NEQ(res, -ENOSPC, "prog_load_res_just_right_fixed"); + + /* (ROLLING) expect -ENOSPC for one byte short log */ + opts.log_buf = logs.buf; + opts.log_level = log_level; + opts.log_size = log_true_sz_rolling - 1; + res = load_prog(&opts, true /* should fail */); + ASSERT_EQ(res, -ENOSPC, "prog_load_res_too_short_rolling"); + + /* (ROLLING) expect *not* -ENOSPC with exact log_true_size buffer */ + opts.log_buf = logs.buf; + opts.log_level = log_level; + opts.log_size = log_true_sz_rolling; + opts.log_true_size = 0; + res = load_prog(&opts, expect_load_error); + ASSERT_NEQ(res, -ENOSPC, "prog_load_res_just_right_rolling"); + +cleanup: + test_log_buf__destroy(skel); +} + +static const void *btf_data; +static u32 btf_data_sz; + +static int load_btf(struct bpf_btf_load_opts *opts, bool expect_err) +{ + int fd; + + fd = bpf_btf_load(btf_data, btf_data_sz, opts); + if (fd >= 0) + close(fd); + if (expect_err) + ASSERT_LT(fd, 0, "btf_load_failure"); + else /* !expect_err */ + ASSERT_GT(fd, 0, "btf_load_success"); + return fd; +} + +static void verif_btf_log_subtest(bool bad_btf) +{ + LIBBPF_OPTS(bpf_btf_load_opts, opts); + struct btf *btf; + struct btf_type *t; + char *exp_log, op_name[32]; + size_t fixed_log_sz; + __u32 log_true_sz_fixed, log_true_sz_rolling; + int i, res; + + /* prepare simple BTF contents */ + btf = btf__new_empty(); + if (!ASSERT_OK_PTR(btf, "btf_new_empty")) + return; + res = btf__add_int(btf, "whatever", 4, 0); + if (!ASSERT_GT(res, 0, "btf_add_int_id")) + goto cleanup; + if (bad_btf) { + /* btf__add_int() doesn't allow bad value of size, so we'll just + * force-cast btf_type pointer and manually override size to invalid + * 3 if we need to simulate failure + */ + t = (void *)btf__type_by_id(btf, res); + if (!ASSERT_OK_PTR(t, "int_btf_type")) + goto cleanup; + t->size = 3; + } + + btf_data = btf__raw_data(btf, &btf_data_sz); + if (!ASSERT_OK_PTR(btf_data, "btf_data")) + goto cleanup; + + load_btf(&opts, bad_btf); + + opts.log_buf = logs.reference; + opts.log_size = sizeof(logs.reference); + opts.log_level = 1 | 8 /* BPF_LOG_FIXED */; + load_btf(&opts, bad_btf); + + fixed_log_sz = strlen(logs.reference) + 1; + if (!ASSERT_GT(fixed_log_sz, 50, "fixed_log_sz")) + goto cleanup; + memset(logs.reference + fixed_log_sz, 0, sizeof(logs.reference) - fixed_log_sz); + + /* validate BPF_LOG_FIXED truncation works as verifier log used to work */ + opts.log_buf = logs.buf; + opts.log_level = 1 | 8; /* fixed-length log */ + opts.log_size = 25; + res = load_btf(&opts, true); + ASSERT_EQ(res, -ENOSPC, "half_log_fd"); + ASSERT_EQ(strlen(logs.buf), 24, "log_fixed_25"); + ASSERT_STRNEQ(logs.buf, logs.reference, 24, op_name); + + /* validate rolling verifier log logic: try all variations of log buf + * length to force various truncation scenarios + */ + opts.log_buf = logs.buf; + opts.log_level = 1; /* rolling log */ + + /* prefill logs.buf with 'A's to detect any write beyond allowed length */ + memset(logs.filler, 'A', sizeof(logs.filler)); + logs.filler[sizeof(logs.filler) - 1] = '\0'; + memset(logs.buf, 'A', sizeof(logs.buf)); + logs.buf[sizeof(logs.buf) - 1] = '\0'; + + for (i = 1; i < fixed_log_sz; i++) { + opts.log_size = i; + + snprintf(op_name, sizeof(op_name), "log_roll_btf_load_%d", i); + res = load_btf(&opts, true); + if (!ASSERT_EQ(res, -ENOSPC, op_name)) + goto cleanup; + + exp_log = logs.reference + fixed_log_sz - i; + snprintf(op_name, sizeof(op_name), "log_roll_contents_%d", i); + if (!ASSERT_STREQ(logs.buf, exp_log, op_name)) { + printf("CMP:%d\nS1:'%s'\nS2:'%s'\n", + strcmp(logs.buf, exp_log), + logs.buf, exp_log); + goto cleanup; + } + + /* check that unused portions of logs.buf are not overwritten */ + snprintf(op_name, sizeof(op_name), "log_roll_unused_tail_%d", i); + if (!ASSERT_STREQ(logs.buf + i, logs.filler + i, op_name)) { + printf("CMP:%d\nS1:'%s'\nS2:'%s'\n", + strcmp(logs.buf + i, logs.filler + i), + logs.buf + i, logs.filler + i); + goto cleanup; + } + } + + /* (FIXED) get actual log size */ + opts.log_buf = logs.buf; + opts.log_level = 1 | 8; /* BPF_LOG_FIXED */ + opts.log_size = sizeof(logs.buf); + opts.log_true_size = 0; + res = load_btf(&opts, bad_btf); + ASSERT_NEQ(res, -ENOSPC, "btf_load_res_fixed"); + + log_true_sz_fixed = opts.log_true_size; + ASSERT_GT(log_true_sz_fixed, 0, "log_true_sz_fixed"); + + /* (FIXED, NULL) get actual log size */ + opts.log_buf = NULL; + opts.log_level = 1 | 8; /* BPF_LOG_FIXED */ + opts.log_size = 0; + opts.log_true_size = 0; + res = load_btf(&opts, bad_btf); + ASSERT_NEQ(res, -ENOSPC, "btf_load_res_fixed_null"); + ASSERT_EQ(opts.log_true_size, log_true_sz_fixed, "log_sz_fixed_null_eq"); + + /* (ROLLING) get actual log size */ + opts.log_buf = logs.buf; + opts.log_level = 1; + opts.log_size = sizeof(logs.buf); + opts.log_true_size = 0; + res = load_btf(&opts, bad_btf); + ASSERT_NEQ(res, -ENOSPC, "btf_load_res_rolling"); + + log_true_sz_rolling = opts.log_true_size; + ASSERT_EQ(log_true_sz_rolling, log_true_sz_fixed, "log_true_sz_eq"); + + /* (ROLLING, NULL) get actual log size */ + opts.log_buf = NULL; + opts.log_level = 1; + opts.log_size = 0; + opts.log_true_size = 0; + res = load_btf(&opts, bad_btf); + ASSERT_NEQ(res, -ENOSPC, "btf_load_res_rolling_null"); + ASSERT_EQ(opts.log_true_size, log_true_sz_rolling, "log_true_sz_null_eq"); + + /* (FIXED) expect -ENOSPC for one byte short log */ + opts.log_buf = logs.buf; + opts.log_level = 1 | 8; /* BPF_LOG_FIXED */ + opts.log_size = log_true_sz_fixed - 1; + opts.log_true_size = 0; + res = load_btf(&opts, true); + ASSERT_EQ(res, -ENOSPC, "btf_load_res_too_short_fixed"); + + /* (FIXED) expect *not* -ENOSPC with exact log_true_size buffer */ + opts.log_buf = logs.buf; + opts.log_level = 1 | 8; /* BPF_LOG_FIXED */ + opts.log_size = log_true_sz_fixed; + opts.log_true_size = 0; + res = load_btf(&opts, bad_btf); + ASSERT_NEQ(res, -ENOSPC, "btf_load_res_just_right_fixed"); + + /* (ROLLING) expect -ENOSPC for one byte short log */ + opts.log_buf = logs.buf; + opts.log_level = 1; + opts.log_size = log_true_sz_rolling - 1; + res = load_btf(&opts, true); + ASSERT_EQ(res, -ENOSPC, "btf_load_res_too_short_rolling"); + + /* (ROLLING) expect *not* -ENOSPC with exact log_true_size buffer */ + opts.log_buf = logs.buf; + opts.log_level = 1; + opts.log_size = log_true_sz_rolling; + opts.log_true_size = 0; + res = load_btf(&opts, bad_btf); + ASSERT_NEQ(res, -ENOSPC, "btf_load_res_just_right_rolling"); + +cleanup: + btf__free(btf); +} + +void test_verifier_log(void) +{ + if (test__start_subtest("good_prog-level1")) + verif_log_subtest("good_prog", false, 1); + if (test__start_subtest("good_prog-level2")) + verif_log_subtest("good_prog", false, 2); + if (test__start_subtest("bad_prog-level1")) + verif_log_subtest("bad_prog", true, 1); + if (test__start_subtest("bad_prog-level2")) + verif_log_subtest("bad_prog", true, 2); + if (test__start_subtest("bad_btf")) + verif_btf_log_subtest(true /* bad btf */); + if (test__start_subtest("good_btf")) + verif_btf_log_subtest(false /* !bad btf */); +} diff --git a/tools/testing/selftests/bpf/prog_tests/verify_pkcs7_sig.c b/tools/testing/selftests/bpf/prog_tests/verify_pkcs7_sig.c new file mode 100644 index 000000000000..ab0f02faa80c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/verify_pkcs7_sig.c @@ -0,0 +1,565 @@ +// SPDX-License-Identifier: GPL-2.0 + +/* + * Copyright (C) 2022 Huawei Technologies Duesseldorf GmbH + * + * Author: Roberto Sassu <roberto.sassu@huawei.com> + */ + +#include <stdio.h> +#include <errno.h> +#include <stdlib.h> +#include <unistd.h> +#include <endian.h> +#include <limits.h> +#include <sys/stat.h> +#include <sys/wait.h> +#include <sys/mman.h> +#include <linux/keyctl.h> +#include <sys/xattr.h> +#include <linux/fsverity.h> +#include <test_progs.h> + +#include "test_verify_pkcs7_sig.skel.h" +#include "test_sig_in_xattr.skel.h" + +#define MAX_DATA_SIZE (1024 * 1024) +#define MAX_SIG_SIZE 1024 + +#define VERIFY_USE_SECONDARY_KEYRING (1UL) +#define VERIFY_USE_PLATFORM_KEYRING (2UL) + +#ifndef SHA256_DIGEST_SIZE +#define SHA256_DIGEST_SIZE 32 +#endif + +/* In stripped ARM and x86-64 modules, ~ is surprisingly rare. */ +#define MODULE_SIG_STRING "~Module signature appended~\n" + +/* + * Module signature information block. + * + * The constituents of the signature section are, in order: + * + * - Signer's name + * - Key identifier + * - Signature data + * - Information block + */ +struct module_signature { + __u8 algo; /* Public-key crypto algorithm [0] */ + __u8 hash; /* Digest algorithm [0] */ + __u8 id_type; /* Key identifier type [PKEY_ID_PKCS7] */ + __u8 signer_len; /* Length of signer's name [0] */ + __u8 key_id_len; /* Length of key identifier [0] */ + __u8 __pad[3]; + __be32 sig_len; /* Length of signature data */ +}; + +struct data { + __u8 data[MAX_DATA_SIZE]; + __u32 data_len; + __u8 sig[MAX_SIG_SIZE]; + __u32 sig_len; +}; + +static bool kfunc_not_supported; + +static int libbpf_print_cb(enum libbpf_print_level level, const char *fmt, + va_list args) +{ + if (level == LIBBPF_WARN) + vprintf(fmt, args); + + if (strcmp(fmt, "libbpf: extern (func ksym) '%s': not found in kernel or module BTFs\n")) + return 0; + + if (strcmp(va_arg(args, char *), "bpf_verify_pkcs7_signature")) + return 0; + + kfunc_not_supported = true; + return 0; +} + +static int _run_setup_process(const char *setup_dir, const char *cmd) +{ + int child_pid, child_status; + + child_pid = fork(); + if (child_pid == 0) { + execlp("./verify_sig_setup.sh", "./verify_sig_setup.sh", cmd, + setup_dir, NULL); + exit(errno); + + } else if (child_pid > 0) { + waitpid(child_pid, &child_status, 0); + return WEXITSTATUS(child_status); + } + + return -EINVAL; +} + +static int populate_data_item_str(const char *tmp_dir, struct data *data_item) +{ + struct stat st; + char data_template[] = "/tmp/dataXXXXXX"; + char path[PATH_MAX]; + int ret, fd, child_status, child_pid; + + data_item->data_len = 4; + memcpy(data_item->data, "test", data_item->data_len); + + fd = mkstemp(data_template); + if (fd == -1) + return -errno; + + ret = write(fd, data_item->data, data_item->data_len); + + close(fd); + + if (ret != data_item->data_len) { + ret = -EIO; + goto out; + } + + child_pid = fork(); + + if (child_pid == -1) { + ret = -errno; + goto out; + } + + if (child_pid == 0) { + snprintf(path, sizeof(path), "%s/signing_key.pem", tmp_dir); + + return execlp("./sign-file", "./sign-file", "-d", "sha256", + path, path, data_template, NULL); + } + + waitpid(child_pid, &child_status, 0); + + ret = WEXITSTATUS(child_status); + if (ret) + goto out; + + snprintf(path, sizeof(path), "%s.p7s", data_template); + + ret = stat(path, &st); + if (ret == -1) { + ret = -errno; + goto out; + } + + if (st.st_size > sizeof(data_item->sig)) { + ret = -EINVAL; + goto out_sig; + } + + data_item->sig_len = st.st_size; + + fd = open(path, O_RDONLY); + if (fd == -1) { + ret = -errno; + goto out_sig; + } + + ret = read(fd, data_item->sig, data_item->sig_len); + + close(fd); + + if (ret != data_item->sig_len) { + ret = -EIO; + goto out_sig; + } + + ret = 0; +out_sig: + unlink(path); +out: + unlink(data_template); + return ret; +} + +static int populate_data_item_mod(struct data *data_item) +{ + char mod_path[PATH_MAX], *mod_path_ptr; + struct stat st; + void *mod; + FILE *fp; + struct module_signature ms; + int ret, fd, modlen, marker_len, sig_len; + + data_item->data_len = 0; + + if (stat("/lib/modules", &st) == -1) + return 0; + + /* Requires CONFIG_TCP_CONG_BIC=m. */ + fp = popen("find /lib/modules/$(uname -r) -name tcp_bic.ko", "r"); + if (!fp) + return 0; + + mod_path_ptr = fgets(mod_path, sizeof(mod_path), fp); + pclose(fp); + + if (!mod_path_ptr) + return 0; + + mod_path_ptr = strchr(mod_path, '\n'); + if (!mod_path_ptr) + return 0; + + *mod_path_ptr = '\0'; + + if (stat(mod_path, &st) == -1) + return 0; + + modlen = st.st_size; + marker_len = sizeof(MODULE_SIG_STRING) - 1; + + fd = open(mod_path, O_RDONLY); + if (fd == -1) + return -errno; + + mod = mmap(NULL, st.st_size, PROT_READ, MAP_PRIVATE, fd, 0); + + close(fd); + + if (mod == MAP_FAILED) + return -errno; + + if (strncmp(mod + modlen - marker_len, MODULE_SIG_STRING, marker_len)) { + ret = -EINVAL; + goto out; + } + + modlen -= marker_len; + + memcpy(&ms, mod + (modlen - sizeof(ms)), sizeof(ms)); + + sig_len = __be32_to_cpu(ms.sig_len); + modlen -= sig_len + sizeof(ms); + + if (modlen > sizeof(data_item->data)) { + ret = -E2BIG; + goto out; + } + + memcpy(data_item->data, mod, modlen); + data_item->data_len = modlen; + + if (sig_len > sizeof(data_item->sig)) { + ret = -E2BIG; + goto out; + } + + memcpy(data_item->sig, mod + modlen, sig_len); + data_item->sig_len = sig_len; + ret = 0; +out: + munmap(mod, st.st_size); + return ret; +} + +static void test_verify_pkcs7_sig_from_map(void) +{ + libbpf_print_fn_t old_print_cb; + char tmp_dir_template[] = "/tmp/verify_sigXXXXXX"; + char *tmp_dir; + struct test_verify_pkcs7_sig *skel = NULL; + struct bpf_map *map; + struct data data; + int ret, zero = 0; + + /* Trigger creation of session keyring. */ + syscall(__NR_request_key, "keyring", "_uid.0", NULL, + KEY_SPEC_SESSION_KEYRING); + + tmp_dir = mkdtemp(tmp_dir_template); + if (!ASSERT_OK_PTR(tmp_dir, "mkdtemp")) + return; + + ret = _run_setup_process(tmp_dir, "setup"); + if (!ASSERT_OK(ret, "_run_setup_process")) + goto close_prog; + + skel = test_verify_pkcs7_sig__open(); + if (!ASSERT_OK_PTR(skel, "test_verify_pkcs7_sig__open")) + goto close_prog; + + old_print_cb = libbpf_set_print(libbpf_print_cb); + ret = test_verify_pkcs7_sig__load(skel); + libbpf_set_print(old_print_cb); + + if (ret < 0 && kfunc_not_supported) { + printf( + "%s:SKIP:bpf_verify_pkcs7_signature() kfunc not supported\n", + __func__); + test__skip(); + goto close_prog; + } + + if (!ASSERT_OK(ret, "test_verify_pkcs7_sig__load")) + goto close_prog; + + ret = test_verify_pkcs7_sig__attach(skel); + if (!ASSERT_OK(ret, "test_verify_pkcs7_sig__attach")) + goto close_prog; + + map = bpf_object__find_map_by_name(skel->obj, "data_input"); + if (!ASSERT_OK_PTR(map, "data_input not found")) + goto close_prog; + + skel->bss->monitored_pid = getpid(); + + /* Test without data and signature. */ + skel->bss->user_keyring_serial = KEY_SPEC_SESSION_KEYRING; + + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, BPF_ANY); + if (!ASSERT_LT(ret, 0, "bpf_map_update_elem data_input")) + goto close_prog; + + /* Test successful signature verification with session keyring. */ + ret = populate_data_item_str(tmp_dir, &data); + if (!ASSERT_OK(ret, "populate_data_item_str")) + goto close_prog; + + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, BPF_ANY); + if (!ASSERT_OK(ret, "bpf_map_update_elem data_input")) + goto close_prog; + + /* Test successful signature verification with testing keyring. */ + skel->bss->user_keyring_serial = syscall(__NR_request_key, "keyring", + "ebpf_testing_keyring", NULL, + KEY_SPEC_SESSION_KEYRING); + + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, BPF_ANY); + if (!ASSERT_OK(ret, "bpf_map_update_elem data_input")) + goto close_prog; + + /* + * Ensure key_task_permission() is called and rejects the keyring + * (no Search permission). + */ + syscall(__NR_keyctl, KEYCTL_SETPERM, skel->bss->user_keyring_serial, + 0x37373737); + + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, BPF_ANY); + if (!ASSERT_LT(ret, 0, "bpf_map_update_elem data_input")) + goto close_prog; + + syscall(__NR_keyctl, KEYCTL_SETPERM, skel->bss->user_keyring_serial, + 0x3f3f3f3f); + + /* + * Ensure key_validate() is called and rejects the keyring (key expired) + */ + syscall(__NR_keyctl, KEYCTL_SET_TIMEOUT, + skel->bss->user_keyring_serial, 1); + sleep(1); + + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, BPF_ANY); + if (!ASSERT_LT(ret, 0, "bpf_map_update_elem data_input")) + goto close_prog; + + skel->bss->user_keyring_serial = KEY_SPEC_SESSION_KEYRING; + + /* Test with corrupted data (signature verification should fail). */ + data.data[0] = 'a'; + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, BPF_ANY); + if (!ASSERT_LT(ret, 0, "bpf_map_update_elem data_input")) + goto close_prog; + + ret = populate_data_item_mod(&data); + if (!ASSERT_OK(ret, "populate_data_item_mod")) + goto close_prog; + + /* Test signature verification with system keyrings. */ + if (data.data_len) { + skel->bss->user_keyring_serial = 0; + skel->bss->system_keyring_id = 0; + + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, + BPF_ANY); + if (!ASSERT_OK(ret, "bpf_map_update_elem data_input")) + goto close_prog; + + skel->bss->system_keyring_id = VERIFY_USE_SECONDARY_KEYRING; + + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, + BPF_ANY); + if (!ASSERT_OK(ret, "bpf_map_update_elem data_input")) + goto close_prog; + + skel->bss->system_keyring_id = VERIFY_USE_PLATFORM_KEYRING; + + ret = bpf_map_update_elem(bpf_map__fd(map), &zero, &data, + BPF_ANY); + ASSERT_LT(ret, 0, "bpf_map_update_elem data_input"); + } + +close_prog: + _run_setup_process(tmp_dir, "cleanup"); + + if (!skel) + return; + + skel->bss->monitored_pid = 0; + test_verify_pkcs7_sig__destroy(skel); +} + +static int get_signature_size(const char *sig_path) +{ + struct stat st; + + if (stat(sig_path, &st) == -1) + return -1; + + return st.st_size; +} + +static int add_signature_to_xattr(const char *data_path, const char *sig_path) +{ + char sig[MAX_SIG_SIZE] = {0}; + int fd, size, ret; + + if (sig_path) { + fd = open(sig_path, O_RDONLY); + if (fd < 0) + return -1; + + size = read(fd, sig, MAX_SIG_SIZE); + close(fd); + if (size <= 0) + return -1; + } else { + /* no sig_path, just write 32 bytes of zeros */ + size = 32; + } + ret = setxattr(data_path, "user.sig", sig, size, 0); + if (!ASSERT_OK(ret, "setxattr")) + return -1; + + return 0; +} + +static int test_open_file(struct test_sig_in_xattr *skel, char *data_path, + pid_t pid, bool should_success, char *name) +{ + int ret; + + skel->bss->monitored_pid = pid; + ret = open(data_path, O_RDONLY); + close(ret); + skel->bss->monitored_pid = 0; + + if (should_success) { + if (!ASSERT_GE(ret, 0, name)) + return -1; + } else { + if (!ASSERT_LT(ret, 0, name)) + return -1; + } + return 0; +} + +static void test_pkcs7_sig_fsverity(void) +{ + char data_path[PATH_MAX]; + char sig_path[PATH_MAX]; + char tmp_dir_template[] = "/tmp/verify_sigXXXXXX"; + char *tmp_dir; + struct test_sig_in_xattr *skel = NULL; + pid_t pid; + int ret; + + tmp_dir = mkdtemp(tmp_dir_template); + if (!ASSERT_OK_PTR(tmp_dir, "mkdtemp")) + return; + + snprintf(data_path, PATH_MAX, "%s/data-file", tmp_dir); + snprintf(sig_path, PATH_MAX, "%s/sig-file", tmp_dir); + + ret = _run_setup_process(tmp_dir, "setup"); + if (!ASSERT_OK(ret, "_run_setup_process")) + goto out; + + ret = _run_setup_process(tmp_dir, "fsverity-create-sign"); + + if (ret) { + printf("%s: SKIP: fsverity [sign|enable] doesn't work.\n" + "To run this test, try enable CONFIG_FS_VERITY and enable FSVerity for the filesystem.\n", + __func__); + test__skip(); + goto out; + } + + skel = test_sig_in_xattr__open(); + if (!ASSERT_OK_PTR(skel, "test_sig_in_xattr__open")) + goto out; + ret = get_signature_size(sig_path); + if (!ASSERT_GT(ret, 0, "get_signature_size")) + goto out; + skel->bss->sig_size = ret; + skel->bss->user_keyring_serial = syscall(__NR_request_key, "keyring", + "ebpf_testing_keyring", NULL, + KEY_SPEC_SESSION_KEYRING); + memcpy(skel->bss->digest, "FSVerity", 8); + + ret = test_sig_in_xattr__load(skel); + if (!ASSERT_OK(ret, "test_sig_in_xattr__load")) + goto out; + + ret = test_sig_in_xattr__attach(skel); + if (!ASSERT_OK(ret, "test_sig_in_xattr__attach")) + goto out; + + pid = getpid(); + + /* Case 1: fsverity is not enabled, open should succeed */ + if (test_open_file(skel, data_path, pid, true, "open_1")) + goto out; + + /* Case 2: fsverity is enabled, xattr is missing, open should + * fail + */ + ret = _run_setup_process(tmp_dir, "fsverity-enable"); + if (!ASSERT_OK(ret, "fsverity-enable")) + goto out; + if (test_open_file(skel, data_path, pid, false, "open_2")) + goto out; + + /* Case 3: fsverity is enabled, xattr has valid signature, open + * should succeed + */ + ret = add_signature_to_xattr(data_path, sig_path); + if (!ASSERT_OK(ret, "add_signature_to_xattr_1")) + goto out; + + if (test_open_file(skel, data_path, pid, true, "open_3")) + goto out; + + /* Case 4: fsverity is enabled, xattr has invalid signature, open + * should fail + */ + ret = add_signature_to_xattr(data_path, NULL); + if (!ASSERT_OK(ret, "add_signature_to_xattr_2")) + goto out; + test_open_file(skel, data_path, pid, false, "open_4"); + +out: + _run_setup_process(tmp_dir, "cleanup"); + if (!skel) + return; + + skel->bss->monitored_pid = 0; + test_sig_in_xattr__destroy(skel); +} + +void test_verify_pkcs7_sig(void) +{ + if (test__start_subtest("pkcs7_sig_from_map")) + test_verify_pkcs7_sig_from_map(); + if (test__start_subtest("pkcs7_sig_fsverity")) + test_pkcs7_sig_fsverity(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/vmlinux.c b/tools/testing/selftests/bpf/prog_tests/vmlinux.c index 72310cfc6474..6fb2217d940b 100644 --- a/tools/testing/selftests/bpf/prog_tests/vmlinux.c +++ b/tools/testing/selftests/bpf/prog_tests/vmlinux.c @@ -16,27 +16,27 @@ static void nsleep() void test_vmlinux(void) { - int duration = 0, err; + int err; struct test_vmlinux* skel; struct test_vmlinux__bss *bss; skel = test_vmlinux__open_and_load(); - if (CHECK(!skel, "skel_open", "failed to open skeleton\n")) + if (!ASSERT_OK_PTR(skel, "test_vmlinux__open_and_load")) return; bss = skel->bss; err = test_vmlinux__attach(skel); - if (CHECK(err, "skel_attach", "skeleton attach failed: %d\n", err)) + if (!ASSERT_OK(err, "test_vmlinux__attach")) goto cleanup; /* trigger everything */ nsleep(); - CHECK(!bss->tp_called, "tp", "not called\n"); - CHECK(!bss->raw_tp_called, "raw_tp", "not called\n"); - CHECK(!bss->tp_btf_called, "tp_btf", "not called\n"); - CHECK(!bss->kprobe_called, "kprobe", "not called\n"); - CHECK(!bss->fentry_called, "fentry", "not called\n"); + ASSERT_TRUE(bss->tp_called, "tp"); + ASSERT_TRUE(bss->raw_tp_called, "raw_tp"); + ASSERT_TRUE(bss->tp_btf_called, "tp_btf"); + ASSERT_TRUE(bss->kprobe_called, "kprobe"); + ASSERT_TRUE(bss->fentry_called, "fentry"); cleanup: test_vmlinux__destroy(skel); diff --git a/tools/testing/selftests/bpf/prog_tests/vrf_socket_lookup.c b/tools/testing/selftests/bpf/prog_tests/vrf_socket_lookup.c new file mode 100644 index 000000000000..2a5e207edad6 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/vrf_socket_lookup.c @@ -0,0 +1,312 @@ +// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause + +/* + * Topology: + * --------- + * NS0 namespace | NS1 namespace + * | + * +--------------+ | +--------------+ + * | veth01 |----------| veth10 | + * | 172.16.1.100 | | | 172.16.1.200 | + * | bpf | | +--------------+ + * +--------------+ | + * server(UDP/TCP) | + * +-------------------+ | + * | vrf1 | | + * | +--------------+ | | +--------------+ + * | | veth02 |----------| veth20 | + * | | 172.16.2.100 | | | | 172.16.2.200 | + * | | bpf | | | +--------------+ + * | +--------------+ | | + * | server(UDP/TCP) | | + * +-------------------+ | + * + * Test flow + * ----------- + * The tests verifies that socket lookup via TC is VRF aware: + * 1) Creates two veth pairs between NS0 and NS1: + * a) veth01 <-> veth10 outside the VRF + * b) veth02 <-> veth20 in the VRF + * 2) Attaches to veth01 and veth02 a program that calls: + * a) bpf_skc_lookup_tcp() with TCP and tcp_skc is true + * b) bpf_sk_lookup_tcp() with TCP and tcp_skc is false + * c) bpf_sk_lookup_udp() with UDP + * The program stores the lookup result in bss->lookup_status. + * 3) Creates a socket TCP/UDP server in/outside the VRF. + * 4) The test expects lookup_status to be: + * a) 0 from device in VRF to server outside VRF + * b) 0 from device outside VRF to server in VRF + * c) 1 from device in VRF to server in VRF + * d) 1 from device outside VRF to server outside VRF + */ + +#include <net/if.h> + +#include "test_progs.h" +#include "network_helpers.h" +#include "vrf_socket_lookup.skel.h" + +#define NS0 "vrf_socket_lookup_0" +#define NS1 "vrf_socket_lookup_1" + +#define IP4_ADDR_VETH01 "172.16.1.100" +#define IP4_ADDR_VETH10 "172.16.1.200" +#define IP4_ADDR_VETH02 "172.16.2.100" +#define IP4_ADDR_VETH20 "172.16.2.200" + +#define NON_VRF_PORT 5000 +#define IN_VRF_PORT 5001 + +#define TIMEOUT_MS 3000 + +static int make_socket(int sotype, const char *ip, int port, + struct sockaddr_storage *addr) +{ + int err, fd; + + err = make_sockaddr(AF_INET, ip, port, addr, NULL); + if (!ASSERT_OK(err, "make_address")) + return -1; + + fd = socket(AF_INET, sotype, 0); + if (!ASSERT_GE(fd, 0, "socket")) + return -1; + + if (!ASSERT_OK(settimeo(fd, TIMEOUT_MS), "settimeo")) + goto fail; + + return fd; +fail: + close(fd); + return -1; +} + +static int make_server(int sotype, const char *ip, int port, const char *ifname) +{ + int err, fd = -1; + + fd = start_server(AF_INET, sotype, ip, port, TIMEOUT_MS); + if (!ASSERT_GE(fd, 0, "start_server")) + return -1; + + if (ifname) { + err = setsockopt(fd, SOL_SOCKET, SO_BINDTODEVICE, + ifname, strlen(ifname) + 1); + if (!ASSERT_OK(err, "setsockopt(SO_BINDTODEVICE)")) + goto fail; + } + + return fd; +fail: + close(fd); + return -1; +} + +static int attach_progs(char *ifname, int tc_prog_fd, int xdp_prog_fd) +{ + LIBBPF_OPTS(bpf_tc_hook, hook, .attach_point = BPF_TC_INGRESS); + LIBBPF_OPTS(bpf_tc_opts, opts, .handle = 1, .priority = 1, + .prog_fd = tc_prog_fd); + int ret, ifindex; + + ifindex = if_nametoindex(ifname); + if (!ASSERT_NEQ(ifindex, 0, "if_nametoindex")) + return -1; + hook.ifindex = ifindex; + + ret = bpf_tc_hook_create(&hook); + if (!ASSERT_OK(ret, "bpf_tc_hook_create")) + return ret; + + ret = bpf_tc_attach(&hook, &opts); + if (!ASSERT_OK(ret, "bpf_tc_attach")) { + bpf_tc_hook_destroy(&hook); + return ret; + } + ret = bpf_xdp_attach(ifindex, xdp_prog_fd, 0, NULL); + if (!ASSERT_OK(ret, "bpf_xdp_attach")) { + bpf_tc_hook_destroy(&hook); + return ret; + } + + return 0; +} + +static void cleanup(void) +{ + SYS_NOFAIL("test -f /var/run/netns/" NS0 " && ip netns delete " + NS0); + SYS_NOFAIL("test -f /var/run/netns/" NS1 " && ip netns delete " + NS1); +} + +static int setup(struct vrf_socket_lookup *skel) +{ + int tc_prog_fd, xdp_prog_fd, ret = 0; + struct nstoken *nstoken = NULL; + + SYS(fail, "ip netns add " NS0); + SYS(fail, "ip netns add " NS1); + + /* NS0 <-> NS1 [veth01 <-> veth10] */ + SYS(fail, "ip link add veth01 netns " NS0 " type veth peer name veth10" + " netns " NS1); + SYS(fail, "ip -net " NS0 " addr add " IP4_ADDR_VETH01 "/24 dev veth01"); + SYS(fail, "ip -net " NS0 " link set dev veth01 up"); + SYS(fail, "ip -net " NS1 " addr add " IP4_ADDR_VETH10 "/24 dev veth10"); + SYS(fail, "ip -net " NS1 " link set dev veth10 up"); + + /* NS0 <-> NS1 [veth02 <-> veth20] */ + SYS(fail, "ip link add veth02 netns " NS0 " type veth peer name veth20" + " netns " NS1); + SYS(fail, "ip -net " NS0 " addr add " IP4_ADDR_VETH02 "/24 dev veth02"); + SYS(fail, "ip -net " NS0 " link set dev veth02 up"); + SYS(fail, "ip -net " NS1 " addr add " IP4_ADDR_VETH20 "/24 dev veth20"); + SYS(fail, "ip -net " NS1 " link set dev veth20 up"); + + /* veth02 -> vrf1 */ + SYS(fail, "ip -net " NS0 " link add vrf1 type vrf table 11"); + SYS(fail, "ip -net " NS0 " route add vrf vrf1 unreachable default" + " metric 4278198272"); + SYS(fail, "ip -net " NS0 " link set vrf1 alias vrf"); + SYS(fail, "ip -net " NS0 " link set vrf1 up"); + SYS(fail, "ip -net " NS0 " link set veth02 master vrf1"); + + /* Attach TC and XDP progs to veth devices in NS0 */ + nstoken = open_netns(NS0); + if (!ASSERT_OK_PTR(nstoken, "setns " NS0)) + goto fail; + tc_prog_fd = bpf_program__fd(skel->progs.tc_socket_lookup); + if (!ASSERT_GE(tc_prog_fd, 0, "bpf_program__tc_fd")) + goto fail; + xdp_prog_fd = bpf_program__fd(skel->progs.xdp_socket_lookup); + if (!ASSERT_GE(xdp_prog_fd, 0, "bpf_program__xdp_fd")) + goto fail; + + if (attach_progs("veth01", tc_prog_fd, xdp_prog_fd)) + goto fail; + + if (attach_progs("veth02", tc_prog_fd, xdp_prog_fd)) + goto fail; + + goto close; +fail: + ret = -1; +close: + if (nstoken) + close_netns(nstoken); + return ret; +} + +static int test_lookup(struct vrf_socket_lookup *skel, int sotype, + const char *ip, int port, bool test_xdp, bool tcp_skc, + int lookup_status_exp) +{ + static const char msg[] = "Hello Server"; + struct sockaddr_storage addr = {}; + int fd, ret = 0; + + fd = make_socket(sotype, ip, port, &addr); + if (fd < 0) + return -1; + + skel->bss->test_xdp = test_xdp; + skel->bss->tcp_skc = tcp_skc; + skel->bss->lookup_status = -1; + + if (sotype == SOCK_STREAM) + connect(fd, (void *)&addr, sizeof(struct sockaddr_in)); + else + sendto(fd, msg, sizeof(msg), 0, (void *)&addr, + sizeof(struct sockaddr_in)); + + if (!ASSERT_EQ(skel->bss->lookup_status, lookup_status_exp, + "lookup_status")) + goto fail; + + goto close; + +fail: + ret = -1; +close: + close(fd); + return ret; +} + +static void _test_vrf_socket_lookup(struct vrf_socket_lookup *skel, int sotype, + bool test_xdp, bool tcp_skc) +{ + int in_vrf_server = -1, non_vrf_server = -1; + struct nstoken *nstoken = NULL; + + nstoken = open_netns(NS0); + if (!ASSERT_OK_PTR(nstoken, "setns " NS0)) + goto done; + + /* Open sockets in and outside VRF */ + non_vrf_server = make_server(sotype, "0.0.0.0", NON_VRF_PORT, NULL); + if (!ASSERT_GE(non_vrf_server, 0, "make_server__outside_vrf_fd")) + goto done; + + in_vrf_server = make_server(sotype, "0.0.0.0", IN_VRF_PORT, "veth02"); + if (!ASSERT_GE(in_vrf_server, 0, "make_server__in_vrf_fd")) + goto done; + + /* Perform test from NS1 */ + close_netns(nstoken); + nstoken = open_netns(NS1); + if (!ASSERT_OK_PTR(nstoken, "setns " NS1)) + goto done; + + if (!ASSERT_OK(test_lookup(skel, sotype, IP4_ADDR_VETH02, NON_VRF_PORT, + test_xdp, tcp_skc, 0), "in_to_out")) + goto done; + if (!ASSERT_OK(test_lookup(skel, sotype, IP4_ADDR_VETH02, IN_VRF_PORT, + test_xdp, tcp_skc, 1), "in_to_in")) + goto done; + if (!ASSERT_OK(test_lookup(skel, sotype, IP4_ADDR_VETH01, NON_VRF_PORT, + test_xdp, tcp_skc, 1), "out_to_out")) + goto done; + if (!ASSERT_OK(test_lookup(skel, sotype, IP4_ADDR_VETH01, IN_VRF_PORT, + test_xdp, tcp_skc, 0), "out_to_in")) + goto done; + +done: + if (non_vrf_server >= 0) + close(non_vrf_server); + if (in_vrf_server >= 0) + close(in_vrf_server); + if (nstoken) + close_netns(nstoken); +} + +void test_vrf_socket_lookup(void) +{ + struct vrf_socket_lookup *skel; + + cleanup(); + + skel = vrf_socket_lookup__open_and_load(); + if (!ASSERT_OK_PTR(skel, "vrf_socket_lookup__open_and_load")) + return; + + if (!ASSERT_OK(setup(skel), "setup")) + goto done; + + if (test__start_subtest("tc_socket_lookup_tcp")) + _test_vrf_socket_lookup(skel, SOCK_STREAM, false, false); + if (test__start_subtest("tc_socket_lookup_tcp_skc")) + _test_vrf_socket_lookup(skel, SOCK_STREAM, false, false); + if (test__start_subtest("tc_socket_lookup_udp")) + _test_vrf_socket_lookup(skel, SOCK_STREAM, false, false); + if (test__start_subtest("xdp_socket_lookup_tcp")) + _test_vrf_socket_lookup(skel, SOCK_STREAM, true, false); + if (test__start_subtest("xdp_socket_lookup_tcp_skc")) + _test_vrf_socket_lookup(skel, SOCK_STREAM, true, false); + if (test__start_subtest("xdp_socket_lookup_udp")) + _test_vrf_socket_lookup(skel, SOCK_STREAM, true, false); + +done: + vrf_socket_lookup__destroy(skel); + cleanup(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/wq.c b/tools/testing/selftests/bpf/prog_tests/wq.c new file mode 100644 index 000000000000..99e438fe12ac --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/wq.c @@ -0,0 +1,40 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2024 Benjamin Tissoires */ +#include <test_progs.h> +#include "wq.skel.h" +#include "wq_failures.skel.h" + +void serial_test_wq(void) +{ + struct wq *wq_skel = NULL; + int err, prog_fd; + + LIBBPF_OPTS(bpf_test_run_opts, topts); + + RUN_TESTS(wq); + + /* re-run the success test to check if the timer was actually executed */ + + wq_skel = wq__open_and_load(); + if (!ASSERT_OK_PTR(wq_skel, "wq_skel_load")) + return; + + err = wq__attach(wq_skel); + if (!ASSERT_OK(err, "wq_attach")) + return; + + prog_fd = bpf_program__fd(wq_skel->progs.test_syscall_array_sleepable); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, 0, "test_run"); + + usleep(50); /* 10 usecs should be enough, but give it extra */ + + ASSERT_EQ(wq_skel->bss->ok_sleepable, (1 << 1), "ok_sleepable"); + wq__destroy(wq_skel); +} + +void serial_test_failures_wq(void) +{ + RUN_TESTS(wq_failures); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdp.c b/tools/testing/selftests/bpf/prog_tests/xdp.c index 48921ff74850..947863a1d536 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp.c @@ -8,15 +8,21 @@ void test_xdp(void) struct vip key6 = {.protocol = 6, .family = AF_INET6}; struct iptnl_info value4 = {.family = AF_INET}; struct iptnl_info value6 = {.family = AF_INET6}; - const char *file = "./test_xdp.o"; + const char *file = "./test_xdp.bpf.o"; struct bpf_object *obj; char buf[128]; - struct ipv6hdr *iph6 = (void *)buf + sizeof(struct ethhdr); - struct iphdr *iph = (void *)buf + sizeof(struct ethhdr); - __u32 duration, retval, size; + struct ipv6hdr iph6; + struct iphdr iph; int err, prog_fd, map_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 1, + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); if (CHECK_FAIL(err)) return; @@ -26,20 +32,23 @@ void test_xdp(void) bpf_map_update_elem(map_fd, &key4, &value4, 0); bpf_map_update_elem(map_fd, &key6, &value6, 0); - err = bpf_prog_test_run(prog_fd, 1, &pkt_v4, sizeof(pkt_v4), - buf, &size, &retval, &duration); + err = bpf_prog_test_run_opts(prog_fd, &topts); + memcpy(&iph, buf + sizeof(struct ethhdr), sizeof(iph)); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, XDP_TX, "ipv4 test_run retval"); + ASSERT_EQ(topts.data_size_out, 74, "ipv4 test_run data_size_out"); + ASSERT_EQ(iph.protocol, IPPROTO_IPIP, "ipv4 test_run iph.protocol"); - CHECK(err || retval != XDP_TX || size != 74 || - iph->protocol != IPPROTO_IPIP, "ipv4", - "err %d errno %d retval %d size %d\n", - err, errno, retval, size); + topts.data_in = &pkt_v6; + topts.data_size_in = sizeof(pkt_v6); + topts.data_size_out = sizeof(buf); - err = bpf_prog_test_run(prog_fd, 1, &pkt_v6, sizeof(pkt_v6), - buf, &size, &retval, &duration); - CHECK(err || retval != XDP_TX || size != 114 || - iph6->nexthdr != IPPROTO_IPV6, "ipv6", - "err %d errno %d retval %d size %d\n", - err, errno, retval, size); + err = bpf_prog_test_run_opts(prog_fd, &topts); + memcpy(&iph6, buf + sizeof(struct ethhdr), sizeof(iph6)); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, XDP_TX, "ipv6 test_run retval"); + ASSERT_EQ(topts.data_size_out, 114, "ipv6 test_run data_size_out"); + ASSERT_EQ(iph6.nexthdr, IPPROTO_IPV6, "ipv6 test_run iph6.nexthdr"); out: bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_adjust_frags.c b/tools/testing/selftests/bpf/prog_tests/xdp_adjust_frags.c new file mode 100644 index 000000000000..fce203640f8c --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xdp_adjust_frags.c @@ -0,0 +1,146 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> + +static void test_xdp_update_frags(void) +{ + const char *file = "./test_xdp_update_frags.bpf.o"; + int err, prog_fd, max_skb_frags, buf_size, num; + struct bpf_program *prog; + struct bpf_object *obj; + __u32 *offset; + __u8 *buf; + FILE *f; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + obj = bpf_object__open(file); + if (libbpf_get_error(obj)) + return; + + prog = bpf_object__next_program(obj, NULL); + if (bpf_object__load(obj)) + return; + + prog_fd = bpf_program__fd(prog); + + buf = malloc(128); + if (!ASSERT_OK_PTR(buf, "alloc buf 128b")) + goto out; + + memset(buf, 0, 128); + offset = (__u32 *)buf; + *offset = 16; + buf[*offset] = 0xaa; /* marker at offset 16 (head) */ + buf[*offset + 15] = 0xaa; /* marker at offset 31 (head) */ + + topts.data_in = buf; + topts.data_out = buf; + topts.data_size_in = 128; + topts.data_size_out = 128; + + err = bpf_prog_test_run_opts(prog_fd, &topts); + + /* test_xdp_update_frags: buf[16,31]: 0xaa -> 0xbb */ + ASSERT_OK(err, "xdp_update_frag"); + ASSERT_EQ(topts.retval, XDP_PASS, "xdp_update_frag retval"); + ASSERT_EQ(buf[16], 0xbb, "xdp_update_frag buf[16]"); + ASSERT_EQ(buf[31], 0xbb, "xdp_update_frag buf[31]"); + + free(buf); + + buf = malloc(9000); + if (!ASSERT_OK_PTR(buf, "alloc buf 9Kb")) + goto out; + + memset(buf, 0, 9000); + offset = (__u32 *)buf; + *offset = 5000; + buf[*offset] = 0xaa; /* marker at offset 5000 (frag0) */ + buf[*offset + 15] = 0xaa; /* marker at offset 5015 (frag0) */ + + topts.data_in = buf; + topts.data_out = buf; + topts.data_size_in = 9000; + topts.data_size_out = 9000; + + err = bpf_prog_test_run_opts(prog_fd, &topts); + + /* test_xdp_update_frags: buf[5000,5015]: 0xaa -> 0xbb */ + ASSERT_OK(err, "xdp_update_frag"); + ASSERT_EQ(topts.retval, XDP_PASS, "xdp_update_frag retval"); + ASSERT_EQ(buf[5000], 0xbb, "xdp_update_frag buf[5000]"); + ASSERT_EQ(buf[5015], 0xbb, "xdp_update_frag buf[5015]"); + + memset(buf, 0, 9000); + offset = (__u32 *)buf; + *offset = 3510; + buf[*offset] = 0xaa; /* marker at offset 3510 (head) */ + buf[*offset + 15] = 0xaa; /* marker at offset 3525 (frag0) */ + + err = bpf_prog_test_run_opts(prog_fd, &topts); + + /* test_xdp_update_frags: buf[3510,3525]: 0xaa -> 0xbb */ + ASSERT_OK(err, "xdp_update_frag"); + ASSERT_EQ(topts.retval, XDP_PASS, "xdp_update_frag retval"); + ASSERT_EQ(buf[3510], 0xbb, "xdp_update_frag buf[3510]"); + ASSERT_EQ(buf[3525], 0xbb, "xdp_update_frag buf[3525]"); + + memset(buf, 0, 9000); + offset = (__u32 *)buf; + *offset = 7606; + buf[*offset] = 0xaa; /* marker at offset 7606 (frag0) */ + buf[*offset + 15] = 0xaa; /* marker at offset 7621 (frag1) */ + + err = bpf_prog_test_run_opts(prog_fd, &topts); + + /* test_xdp_update_frags: buf[7606,7621]: 0xaa -> 0xbb */ + ASSERT_OK(err, "xdp_update_frag"); + ASSERT_EQ(topts.retval, XDP_PASS, "xdp_update_frag retval"); + ASSERT_EQ(buf[7606], 0xbb, "xdp_update_frag buf[7606]"); + ASSERT_EQ(buf[7621], 0xbb, "xdp_update_frag buf[7621]"); + + free(buf); + + /* test_xdp_update_frags: unsupported buffer size */ + f = fopen("/proc/sys/net/core/max_skb_frags", "r"); + if (!ASSERT_OK_PTR(f, "max_skb_frag file pointer")) + goto out; + + num = fscanf(f, "%d", &max_skb_frags); + fclose(f); + + if (!ASSERT_EQ(num, 1, "max_skb_frags read failed")) + goto out; + + /* xdp_buff linear area size is always set to 4096 in the + * bpf_prog_test_run_xdp routine. + */ + buf_size = 4096 + (max_skb_frags + 1) * sysconf(_SC_PAGE_SIZE); + buf = malloc(buf_size); + if (!ASSERT_OK_PTR(buf, "alloc buf")) + goto out; + + memset(buf, 0, buf_size); + offset = (__u32 *)buf; + *offset = 16; + buf[*offset] = 0xaa; + buf[*offset + 15] = 0xaa; + + topts.data_in = buf; + topts.data_out = buf; + topts.data_size_in = buf_size; + topts.data_size_out = buf_size; + + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_EQ(err, -ENOMEM, + "unsupported buf size, possible non-default /proc/sys/net/core/max_skb_flags?"); + free(buf); +out: + bpf_object__close(obj); +} + +void test_xdp_adjust_frags(void) +{ + if (test__start_subtest("xdp_adjust_frags")) + test_xdp_update_frags(); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_adjust_tail.c b/tools/testing/selftests/bpf/prog_tests/xdp_adjust_tail.c index d5c98f2cb12f..f09505f8b038 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_adjust_tail.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_adjust_tail.c @@ -2,81 +2,100 @@ #include <test_progs.h> #include <network_helpers.h> -void test_xdp_adjust_tail_shrink(void) +static void test_xdp_adjust_tail_shrink(void) { - const char *file = "./test_xdp_adjust_tail_shrink.o"; - __u32 duration, retval, size, expect_sz; + const char *file = "./test_xdp_adjust_tail_shrink.bpf.o"; + __u32 expect_sz; struct bpf_object *obj; int err, prog_fd; char buf[128]; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 1, + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); - if (CHECK_FAIL(err)) + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); + if (!ASSERT_OK(err, "test_xdp_adjust_tail_shrink")) return; - err = bpf_prog_test_run(prog_fd, 1, &pkt_v4, sizeof(pkt_v4), - buf, &size, &retval, &duration); - - CHECK(err || retval != XDP_DROP, - "ipv4", "err %d errno %d retval %d size %d\n", - err, errno, retval, size); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "ipv4"); + ASSERT_EQ(topts.retval, XDP_DROP, "ipv4 retval"); expect_sz = sizeof(pkt_v6) - 20; /* Test shrink with 20 bytes */ - err = bpf_prog_test_run(prog_fd, 1, &pkt_v6, sizeof(pkt_v6), - buf, &size, &retval, &duration); - CHECK(err || retval != XDP_TX || size != expect_sz, - "ipv6", "err %d errno %d retval %d size %d expect-size %d\n", - err, errno, retval, size, expect_sz); + topts.data_in = &pkt_v6; + topts.data_size_in = sizeof(pkt_v6); + topts.data_size_out = sizeof(buf); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "ipv6"); + ASSERT_EQ(topts.retval, XDP_TX, "ipv6 retval"); + ASSERT_EQ(topts.data_size_out, expect_sz, "ipv6 size"); + bpf_object__close(obj); } -void test_xdp_adjust_tail_grow(void) +static void test_xdp_adjust_tail_grow(void) { - const char *file = "./test_xdp_adjust_tail_grow.o"; + const char *file = "./test_xdp_adjust_tail_grow.bpf.o"; struct bpf_object *obj; char buf[4096]; /* avoid segfault: large buf to hold grow results */ - __u32 duration, retval, size, expect_sz; + __u32 expect_sz; int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = 1, + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); - if (CHECK_FAIL(err)) + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); + if (!ASSERT_OK(err, "test_xdp_adjust_tail_grow")) return; - err = bpf_prog_test_run(prog_fd, 1, &pkt_v4, sizeof(pkt_v4), - buf, &size, &retval, &duration); - CHECK(err || retval != XDP_DROP, - "ipv4", "err %d errno %d retval %d size %d\n", - err, errno, retval, size); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "ipv4"); + ASSERT_EQ(topts.retval, XDP_DROP, "ipv4 retval"); expect_sz = sizeof(pkt_v6) + 40; /* Test grow with 40 bytes */ - err = bpf_prog_test_run(prog_fd, 1, &pkt_v6, sizeof(pkt_v6) /* 74 */, - buf, &size, &retval, &duration); - CHECK(err || retval != XDP_TX || size != expect_sz, - "ipv6", "err %d errno %d retval %d size %d expect-size %d\n", - err, errno, retval, size, expect_sz); + topts.data_in = &pkt_v6; + topts.data_size_in = sizeof(pkt_v6); + topts.data_size_out = sizeof(buf); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "ipv6"); + ASSERT_EQ(topts.retval, XDP_TX, "ipv6 retval"); + ASSERT_EQ(topts.data_size_out, expect_sz, "ipv6 size"); bpf_object__close(obj); } -void test_xdp_adjust_tail_grow2(void) +static void test_xdp_adjust_tail_grow2(void) { - const char *file = "./test_xdp_adjust_tail_grow.o"; + const char *file = "./test_xdp_adjust_tail_grow.bpf.o"; char buf[4096]; /* avoid segfault: large buf to hold grow results */ - int tailroom = 320; /* SKB_DATA_ALIGN(sizeof(struct skb_shared_info))*/; struct bpf_object *obj; int err, cnt, i; - int max_grow; + int max_grow, prog_fd; + /* SKB_DATA_ALIGN(sizeof(struct skb_shared_info)) */ +#if defined(__s390x__) + int tailroom = 512; +#else + int tailroom = 320; +#endif - struct bpf_prog_test_run_attr tattr = { + LIBBPF_OPTS(bpf_test_run_opts, tattr, .repeat = 1, .data_in = &buf, .data_out = &buf, .data_size_in = 0, /* Per test */ .data_size_out = 0, /* Per test */ - }; + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj, &tattr.prog_fd); - if (CHECK_ATTR(err, "load", "err %d errno %d\n", err, errno)) + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); + if (!ASSERT_OK(err, "test_xdp_adjust_tail_grow")) return; /* Test case-64 */ @@ -84,49 +103,171 @@ void test_xdp_adjust_tail_grow2(void) tattr.data_size_in = 64; /* Determine test case via pkt size */ tattr.data_size_out = 128; /* Limit copy_size */ /* Kernel side alloc packet memory area that is zero init */ - err = bpf_prog_test_run_xattr(&tattr); + err = bpf_prog_test_run_opts(prog_fd, &tattr); - CHECK_ATTR(errno != ENOSPC /* Due limit copy_size in bpf_test_finish */ - || tattr.retval != XDP_TX - || tattr.data_size_out != 192, /* Expected grow size */ - "case-64", - "err %d errno %d retval %d size %d\n", - err, errno, tattr.retval, tattr.data_size_out); + ASSERT_EQ(errno, ENOSPC, "case-64 errno"); /* Due limit copy_size in bpf_test_finish */ + ASSERT_EQ(tattr.retval, XDP_TX, "case-64 retval"); + ASSERT_EQ(tattr.data_size_out, 192, "case-64 data_size_out"); /* Expected grow size */ /* Extra checks for data contents */ - CHECK_ATTR(tattr.data_size_out != 192 - || buf[0] != 1 || buf[63] != 1 /* 0-63 memset to 1 */ - || buf[64] != 0 || buf[127] != 0 /* 64-127 memset to 0 */ - || buf[128] != 1 || buf[191] != 1, /*128-191 memset to 1 */ - "case-64-data", - "err %d errno %d retval %d size %d\n", - err, errno, tattr.retval, tattr.data_size_out); + ASSERT_EQ(buf[0], 1, "case-64-data buf[0]"); /* 0-63 memset to 1 */ + ASSERT_EQ(buf[63], 1, "case-64-data buf[63]"); + ASSERT_EQ(buf[64], 0, "case-64-data buf[64]"); /* 64-127 memset to 0 */ + ASSERT_EQ(buf[127], 0, "case-64-data buf[127]"); + ASSERT_EQ(buf[128], 1, "case-64-data buf[128]"); /* 128-191 memset to 1 */ + ASSERT_EQ(buf[191], 1, "case-64-data buf[191]"); /* Test case-128 */ memset(buf, 2, sizeof(buf)); tattr.data_size_in = 128; /* Determine test case via pkt size */ tattr.data_size_out = sizeof(buf); /* Copy everything */ - err = bpf_prog_test_run_xattr(&tattr); + err = bpf_prog_test_run_opts(prog_fd, &tattr); max_grow = 4096 - XDP_PACKET_HEADROOM - tailroom; /* 3520 */ - CHECK_ATTR(err - || tattr.retval != XDP_TX - || tattr.data_size_out != max_grow,/* Expect max grow size */ - "case-128", - "err %d errno %d retval %d size %d expect-size %d\n", - err, errno, tattr.retval, tattr.data_size_out, max_grow); + ASSERT_OK(err, "case-128"); + ASSERT_EQ(tattr.retval, XDP_TX, "case-128 retval"); + ASSERT_EQ(tattr.data_size_out, max_grow, "case-128 data_size_out"); /* Expect max grow */ /* Extra checks for data content: Count grow size, will contain zeros */ for (i = 0, cnt = 0; i < sizeof(buf); i++) { if (buf[i] == 0) cnt++; } - CHECK_ATTR((cnt != (max_grow - tattr.data_size_in)) /* Grow increase */ - || tattr.data_size_out != max_grow, /* Total grow size */ - "case-128-data", - "err %d errno %d retval %d size %d grow-size %d\n", - err, errno, tattr.retval, tattr.data_size_out, cnt); + ASSERT_EQ(cnt, max_grow - tattr.data_size_in, "case-128-data cnt"); /* Grow increase */ + ASSERT_EQ(tattr.data_size_out, max_grow, "case-128-data data_size_out"); /* Total grow */ + + bpf_object__close(obj); +} + +static void test_xdp_adjust_frags_tail_shrink(void) +{ + const char *file = "./test_xdp_adjust_tail_shrink.bpf.o"; + __u32 exp_size; + struct bpf_program *prog; + struct bpf_object *obj; + int err, prog_fd; + __u8 *buf; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + /* For the individual test cases, the first byte in the packet + * indicates which test will be run. + */ + obj = bpf_object__open(file); + if (libbpf_get_error(obj)) + return; + + prog = bpf_object__next_program(obj, NULL); + if (bpf_object__load(obj)) + return; + + prog_fd = bpf_program__fd(prog); + + buf = malloc(9000); + if (!ASSERT_OK_PTR(buf, "alloc buf 9Kb")) + goto out; + + memset(buf, 0, 9000); + + /* Test case removing 10 bytes from last frag, NOT freeing it */ + exp_size = 8990; /* 9000 - 10 */ + topts.data_in = buf; + topts.data_out = buf; + topts.data_size_in = 9000; + topts.data_size_out = 9000; + err = bpf_prog_test_run_opts(prog_fd, &topts); + + ASSERT_OK(err, "9Kb-10b"); + ASSERT_EQ(topts.retval, XDP_TX, "9Kb-10b retval"); + ASSERT_EQ(topts.data_size_out, exp_size, "9Kb-10b size"); + + /* Test case removing one of two pages, assuming 4K pages */ + buf[0] = 1; + exp_size = 4900; /* 9000 - 4100 */ + + topts.data_size_out = 9000; /* reset from previous invocation */ + err = bpf_prog_test_run_opts(prog_fd, &topts); + + ASSERT_OK(err, "9Kb-4Kb"); + ASSERT_EQ(topts.retval, XDP_TX, "9Kb-4Kb retval"); + ASSERT_EQ(topts.data_size_out, exp_size, "9Kb-4Kb size"); + + /* Test case removing two pages resulting in a linear xdp_buff */ + buf[0] = 2; + exp_size = 800; /* 9000 - 8200 */ + topts.data_size_out = 9000; /* reset from previous invocation */ + err = bpf_prog_test_run_opts(prog_fd, &topts); + + ASSERT_OK(err, "9Kb-9Kb"); + ASSERT_EQ(topts.retval, XDP_TX, "9Kb-9Kb retval"); + ASSERT_EQ(topts.data_size_out, exp_size, "9Kb-9Kb size"); + + free(buf); +out: + bpf_object__close(obj); +} + +static void test_xdp_adjust_frags_tail_grow(void) +{ + const char *file = "./test_xdp_adjust_tail_grow.bpf.o"; + __u32 exp_size; + struct bpf_program *prog; + struct bpf_object *obj; + int err, i, prog_fd; + __u8 *buf; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + obj = bpf_object__open(file); + if (libbpf_get_error(obj)) + return; + + prog = bpf_object__next_program(obj, NULL); + if (bpf_object__load(obj)) + return; + + prog_fd = bpf_program__fd(prog); + + buf = malloc(16384); + if (!ASSERT_OK_PTR(buf, "alloc buf 16Kb")) + goto out; + + /* Test case add 10 bytes to last frag */ + memset(buf, 1, 16384); + exp_size = 9000 + 10; + + topts.data_in = buf; + topts.data_out = buf; + topts.data_size_in = 9000; + topts.data_size_out = 16384; + err = bpf_prog_test_run_opts(prog_fd, &topts); + + ASSERT_OK(err, "9Kb+10b"); + ASSERT_EQ(topts.retval, XDP_TX, "9Kb+10b retval"); + ASSERT_EQ(topts.data_size_out, exp_size, "9Kb+10b size"); + + for (i = 0; i < 9000; i++) + ASSERT_EQ(buf[i], 1, "9Kb+10b-old"); + + for (i = 9000; i < 9010; i++) + ASSERT_EQ(buf[i], 0, "9Kb+10b-new"); + + for (i = 9010; i < 16384; i++) + ASSERT_EQ(buf[i], 1, "9Kb+10b-untouched"); + + /* Test a too large grow */ + memset(buf, 1, 16384); + exp_size = 9001; + + topts.data_in = topts.data_out = buf; + topts.data_size_in = 9001; + topts.data_size_out = 16384; + err = bpf_prog_test_run_opts(prog_fd, &topts); + + ASSERT_OK(err, "9Kb+10b"); + ASSERT_EQ(topts.retval, XDP_DROP, "9Kb+10b retval"); + ASSERT_EQ(topts.data_size_out, exp_size, "9Kb+10b size"); + free(buf); +out: bpf_object__close(obj); } @@ -138,4 +279,8 @@ void test_xdp_adjust_tail(void) test_xdp_adjust_tail_grow(); if (test__start_subtest("xdp_adjust_tail_grow2")) test_xdp_adjust_tail_grow2(); + if (test__start_subtest("xdp_adjust_frags_tail_shrink")) + test_xdp_adjust_frags_tail_shrink(); + if (test__start_subtest("xdp_adjust_frags_tail_grow")) + test_xdp_adjust_frags_tail_grow(); } diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_attach.c b/tools/testing/selftests/bpf/prog_tests/xdp_attach.c index 15ef3531483e..e6bcb6051402 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_attach.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_attach.c @@ -1,86 +1,83 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> +#include "test_xdp_attach_fail.skel.h" #define IFINDEX_LO 1 #define XDP_FLAGS_REPLACE (1U << 4) -void test_xdp_attach(void) +static void test_xdp_attach(const char *file) { __u32 duration = 0, id1, id2, id0 = 0, len; struct bpf_object *obj1, *obj2, *obj3; - const char *file = "./test_xdp.o"; struct bpf_prog_info info = {}; int err, fd1, fd2, fd3; - DECLARE_LIBBPF_OPTS(bpf_xdp_set_link_opts, opts, - .old_fd = -1); + LIBBPF_OPTS(bpf_xdp_attach_opts, opts); len = sizeof(info); - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj1, &fd1); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj1, &fd1); if (CHECK_FAIL(err)) return; - err = bpf_obj_get_info_by_fd(fd1, &info, &len); + err = bpf_prog_get_info_by_fd(fd1, &info, &len); if (CHECK_FAIL(err)) goto out_1; id1 = info.id; - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj2, &fd2); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj2, &fd2); if (CHECK_FAIL(err)) goto out_1; memset(&info, 0, sizeof(info)); - err = bpf_obj_get_info_by_fd(fd2, &info, &len); + err = bpf_prog_get_info_by_fd(fd2, &info, &len); if (CHECK_FAIL(err)) goto out_2; id2 = info.id; - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj3, &fd3); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj3, &fd3); if (CHECK_FAIL(err)) goto out_2; - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, fd1, XDP_FLAGS_REPLACE, - &opts); + err = bpf_xdp_attach(IFINDEX_LO, fd1, XDP_FLAGS_REPLACE, &opts); if (CHECK(err, "load_ok", "initial load failed")) goto out_close; - err = bpf_get_link_xdp_id(IFINDEX_LO, &id0, 0); + err = bpf_xdp_query_id(IFINDEX_LO, 0, &id0); if (CHECK(err || id0 != id1, "id1_check", "loaded prog id %u != id1 %u, err %d", id0, id1, err)) goto out_close; - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, fd2, XDP_FLAGS_REPLACE, - &opts); + err = bpf_xdp_attach(IFINDEX_LO, fd2, XDP_FLAGS_REPLACE, &opts); if (CHECK(!err, "load_fail", "load with expected id didn't fail")) goto out; - opts.old_fd = fd1; - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, fd2, 0, &opts); + opts.old_prog_fd = fd1; + err = bpf_xdp_attach(IFINDEX_LO, fd2, 0, &opts); if (CHECK(err, "replace_ok", "replace valid old_fd failed")) goto out; - err = bpf_get_link_xdp_id(IFINDEX_LO, &id0, 0); + err = bpf_xdp_query_id(IFINDEX_LO, 0, &id0); if (CHECK(err || id0 != id2, "id2_check", "loaded prog id %u != id2 %u, err %d", id0, id2, err)) goto out_close; - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, fd3, 0, &opts); + err = bpf_xdp_attach(IFINDEX_LO, fd3, 0, &opts); if (CHECK(!err, "replace_fail", "replace invalid old_fd didn't fail")) goto out; - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, -1, 0, &opts); + err = bpf_xdp_detach(IFINDEX_LO, 0, &opts); if (CHECK(!err, "remove_fail", "remove invalid old_fd didn't fail")) goto out; - opts.old_fd = fd2; - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, -1, 0, &opts); + opts.old_prog_fd = fd2; + err = bpf_xdp_detach(IFINDEX_LO, 0, &opts); if (CHECK(err, "remove_ok", "remove valid old_fd failed")) goto out; - err = bpf_get_link_xdp_id(IFINDEX_LO, &id0, 0); + err = bpf_xdp_query_id(IFINDEX_LO, 0, &id0); if (CHECK(err || id0 != 0, "unload_check", "loaded prog id %u != 0, err %d", id0, err)) goto out_close; out: - bpf_set_link_xdp_fd(IFINDEX_LO, -1, 0); + bpf_xdp_detach(IFINDEX_LO, 0, NULL); out_close: bpf_object__close(obj3); out_2: @@ -88,3 +85,75 @@ out_2: out_1: bpf_object__close(obj1); } + +#define ERRMSG_LEN 64 + +struct xdp_errmsg { + char msg[ERRMSG_LEN]; +}; + +static void on_xdp_errmsg(void *ctx, int cpu, void *data, __u32 size) +{ + struct xdp_errmsg *ctx_errmg = ctx, *tp_errmsg = data; + + memcpy(&ctx_errmg->msg, &tp_errmsg->msg, ERRMSG_LEN); +} + +static const char tgt_errmsg[] = "Invalid XDP flags for BPF link attachment"; + +static void test_xdp_attach_fail(const char *file) +{ + struct test_xdp_attach_fail *skel = NULL; + struct xdp_errmsg errmsg = {}; + struct perf_buffer *pb = NULL; + struct bpf_object *obj = NULL; + int err, fd_xdp; + + LIBBPF_OPTS(bpf_link_create_opts, opts); + + skel = test_xdp_attach_fail__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_xdp_attach_fail__open_and_load")) + goto out_close; + + err = test_xdp_attach_fail__attach(skel); + if (!ASSERT_EQ(err, 0, "test_xdp_attach_fail__attach")) + goto out_close; + + /* set up perf buffer */ + pb = perf_buffer__new(bpf_map__fd(skel->maps.xdp_errmsg_pb), 1, + on_xdp_errmsg, NULL, &errmsg, NULL); + if (!ASSERT_OK_PTR(pb, "perf_buffer__new")) + goto out_close; + + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj, &fd_xdp); + if (!ASSERT_EQ(err, 0, "bpf_prog_test_load")) + goto out_close; + + opts.flags = 0xFF; // invalid flags to fail to attach XDP prog + err = bpf_link_create(fd_xdp, IFINDEX_LO, BPF_XDP, &opts); + if (!ASSERT_EQ(err, -EINVAL, "bpf_link_create")) + goto out_close; + + /* read perf buffer */ + err = perf_buffer__poll(pb, 100); + if (!ASSERT_GT(err, -1, "perf_buffer__poll")) + goto out_close; + + ASSERT_STRNEQ((const char *) errmsg.msg, tgt_errmsg, + 42 /* strlen(tgt_errmsg) */, "check error message"); + +out_close: + perf_buffer__free(pb); + bpf_object__close(obj); + test_xdp_attach_fail__destroy(skel); +} + +void serial_test_xdp_attach(void) +{ + if (test__start_subtest("xdp_attach")) + test_xdp_attach("./test_xdp.bpf.o"); + if (test__start_subtest("xdp_attach_dynptr")) + test_xdp_attach("./test_xdp_dynptr.bpf.o"); + if (test__start_subtest("xdp_attach_failed")) + test_xdp_attach_fail("./xdp_dummy.bpf.o"); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_bonding.c b/tools/testing/selftests/bpf/prog_tests/xdp_bonding.c new file mode 100644 index 000000000000..6d8b54124cb3 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xdp_bonding.c @@ -0,0 +1,691 @@ +// SPDX-License-Identifier: GPL-2.0 + +/** + * Test XDP bonding support + * + * Sets up two bonded veth pairs between two fresh namespaces + * and verifies that XDP_TX program loaded on a bond device + * are correctly loaded onto the slave devices and XDP_TX'd + * packets are balanced using bonding. + */ + +#define _GNU_SOURCE +#include <sched.h> +#include <net/if.h> +#include <linux/if_link.h> +#include "test_progs.h" +#include "network_helpers.h" +#include <linux/if_bonding.h> +#include <linux/limits.h> +#include <linux/udp.h> +#include <uapi/linux/netdev.h> + +#include "xdp_dummy.skel.h" +#include "xdp_redirect_multi_kern.skel.h" +#include "xdp_tx.skel.h" + +#define BOND1_MAC {0x00, 0x11, 0x22, 0x33, 0x44, 0x55} +#define BOND1_MAC_STR "00:11:22:33:44:55" +#define BOND2_MAC {0x00, 0x22, 0x33, 0x44, 0x55, 0x66} +#define BOND2_MAC_STR "00:22:33:44:55:66" +#define NPACKETS 100 + +static int root_netns_fd = -1; + +static void restore_root_netns(void) +{ + ASSERT_OK(setns(root_netns_fd, CLONE_NEWNET), "restore_root_netns"); +} + +static int setns_by_name(char *name) +{ + int nsfd, err; + char nspath[PATH_MAX]; + + snprintf(nspath, sizeof(nspath), "%s/%s", "/var/run/netns", name); + nsfd = open(nspath, O_RDONLY | O_CLOEXEC); + if (nsfd < 0) + return -1; + + err = setns(nsfd, CLONE_NEWNET); + close(nsfd); + return err; +} + +static int get_rx_packets(const char *iface) +{ + FILE *f; + char line[512]; + int iface_len = strlen(iface); + + f = fopen("/proc/net/dev", "r"); + if (!f) + return -1; + + while (fgets(line, sizeof(line), f)) { + char *p = line; + + while (*p == ' ') + p++; /* skip whitespace */ + if (!strncmp(p, iface, iface_len)) { + p += iface_len; + if (*p++ != ':') + continue; + while (*p == ' ') + p++; /* skip whitespace */ + while (*p && *p != ' ') + p++; /* skip rx bytes */ + while (*p == ' ') + p++; /* skip whitespace */ + fclose(f); + return atoi(p); + } + } + fclose(f); + return -1; +} + +#define MAX_BPF_LINKS 8 + +struct skeletons { + struct xdp_dummy *xdp_dummy; + struct xdp_tx *xdp_tx; + struct xdp_redirect_multi_kern *xdp_redirect_multi_kern; + + int nlinks; + struct bpf_link *links[MAX_BPF_LINKS]; +}; + +static int xdp_attach(struct skeletons *skeletons, struct bpf_program *prog, char *iface) +{ + struct bpf_link *link; + int ifindex; + + ifindex = if_nametoindex(iface); + if (!ASSERT_GT(ifindex, 0, "get ifindex")) + return -1; + + if (!ASSERT_LE(skeletons->nlinks+1, MAX_BPF_LINKS, "too many XDP programs attached")) + return -1; + + link = bpf_program__attach_xdp(prog, ifindex); + if (!ASSERT_OK_PTR(link, "attach xdp program")) + return -1; + + skeletons->links[skeletons->nlinks++] = link; + return 0; +} + +enum { + BOND_ONE_NO_ATTACH = 0, + BOND_BOTH_AND_ATTACH, +}; + +static const char * const mode_names[] = { + [BOND_MODE_ROUNDROBIN] = "balance-rr", + [BOND_MODE_ACTIVEBACKUP] = "active-backup", + [BOND_MODE_XOR] = "balance-xor", + [BOND_MODE_BROADCAST] = "broadcast", + [BOND_MODE_8023AD] = "802.3ad", + [BOND_MODE_TLB] = "balance-tlb", + [BOND_MODE_ALB] = "balance-alb", +}; + +static const char * const xmit_policy_names[] = { + [BOND_XMIT_POLICY_LAYER2] = "layer2", + [BOND_XMIT_POLICY_LAYER34] = "layer3+4", + [BOND_XMIT_POLICY_LAYER23] = "layer2+3", + [BOND_XMIT_POLICY_ENCAP23] = "encap2+3", + [BOND_XMIT_POLICY_ENCAP34] = "encap3+4", +}; + +static int bonding_setup(struct skeletons *skeletons, int mode, int xmit_policy, + int bond_both_attach) +{ + SYS(fail, "ip netns add ns_dst"); + SYS(fail, "ip link add veth1_1 type veth peer name veth2_1 netns ns_dst"); + SYS(fail, "ip link add veth1_2 type veth peer name veth2_2 netns ns_dst"); + + SYS(fail, "ip link add bond1 type bond mode %s xmit_hash_policy %s", + mode_names[mode], xmit_policy_names[xmit_policy]); + SYS(fail, "ip link set bond1 up address " BOND1_MAC_STR " addrgenmode none"); + SYS(fail, "ip -netns ns_dst link add bond2 type bond mode %s xmit_hash_policy %s", + mode_names[mode], xmit_policy_names[xmit_policy]); + SYS(fail, "ip -netns ns_dst link set bond2 up address " BOND2_MAC_STR " addrgenmode none"); + + SYS(fail, "ip link set veth1_1 master bond1"); + if (bond_both_attach == BOND_BOTH_AND_ATTACH) { + SYS(fail, "ip link set veth1_2 master bond1"); + } else { + SYS(fail, "ip link set veth1_2 up addrgenmode none"); + + if (xdp_attach(skeletons, skeletons->xdp_dummy->progs.xdp_dummy_prog, "veth1_2")) + return -1; + } + + SYS(fail, "ip -netns ns_dst link set veth2_1 master bond2"); + + if (bond_both_attach == BOND_BOTH_AND_ATTACH) + SYS(fail, "ip -netns ns_dst link set veth2_2 master bond2"); + else + SYS(fail, "ip -netns ns_dst link set veth2_2 up addrgenmode none"); + + /* Load a dummy program on sending side as with veth peer needs to have a + * XDP program loaded as well. + */ + if (xdp_attach(skeletons, skeletons->xdp_dummy->progs.xdp_dummy_prog, "bond1")) + return -1; + + if (bond_both_attach == BOND_BOTH_AND_ATTACH) { + if (!ASSERT_OK(setns_by_name("ns_dst"), "set netns to ns_dst")) + return -1; + + if (xdp_attach(skeletons, skeletons->xdp_tx->progs.xdp_tx, "bond2")) + return -1; + + restore_root_netns(); + } + + return 0; +fail: + return -1; +} + +static void bonding_cleanup(struct skeletons *skeletons) +{ + restore_root_netns(); + while (skeletons->nlinks) { + skeletons->nlinks--; + bpf_link__destroy(skeletons->links[skeletons->nlinks]); + } + ASSERT_OK(system("ip link delete bond1"), "delete bond1"); + ASSERT_OK(system("ip link delete veth1_1"), "delete veth1_1"); + ASSERT_OK(system("ip link delete veth1_2"), "delete veth1_2"); + ASSERT_OK(system("ip netns delete ns_dst"), "delete ns_dst"); +} + +static int send_udp_packets(int vary_dst_ip) +{ + struct ethhdr eh = { + .h_source = BOND1_MAC, + .h_dest = BOND2_MAC, + .h_proto = htons(ETH_P_IP), + }; + struct iphdr iph = {}; + struct udphdr uh = {}; + uint8_t buf[128]; + int i, s = -1; + int ifindex; + + s = socket(AF_PACKET, SOCK_RAW, IPPROTO_RAW); + if (!ASSERT_GE(s, 0, "socket")) + goto err; + + ifindex = if_nametoindex("bond1"); + if (!ASSERT_GT(ifindex, 0, "get bond1 ifindex")) + goto err; + + iph.ihl = 5; + iph.version = 4; + iph.tos = 16; + iph.id = 1; + iph.ttl = 64; + iph.protocol = IPPROTO_UDP; + iph.saddr = 1; + iph.daddr = 2; + iph.tot_len = htons(sizeof(buf) - ETH_HLEN); + iph.check = 0; + + for (i = 1; i <= NPACKETS; i++) { + int n; + struct sockaddr_ll saddr_ll = { + .sll_ifindex = ifindex, + .sll_halen = ETH_ALEN, + .sll_addr = BOND2_MAC, + }; + + /* vary the UDP destination port for even distribution with roundrobin/xor modes */ + uh.dest++; + + if (vary_dst_ip) + iph.daddr++; + + /* construct a packet */ + memcpy(buf, &eh, sizeof(eh)); + memcpy(buf + sizeof(eh), &iph, sizeof(iph)); + memcpy(buf + sizeof(eh) + sizeof(iph), &uh, sizeof(uh)); + + n = sendto(s, buf, sizeof(buf), 0, (struct sockaddr *)&saddr_ll, sizeof(saddr_ll)); + if (!ASSERT_EQ(n, sizeof(buf), "sendto")) + goto err; + } + + return 0; + +err: + if (s >= 0) + close(s); + return -1; +} + +static void test_xdp_bonding_with_mode(struct skeletons *skeletons, int mode, int xmit_policy) +{ + int bond1_rx; + + if (bonding_setup(skeletons, mode, xmit_policy, BOND_BOTH_AND_ATTACH)) + goto out; + + if (send_udp_packets(xmit_policy != BOND_XMIT_POLICY_LAYER34)) + goto out; + + bond1_rx = get_rx_packets("bond1"); + ASSERT_EQ(bond1_rx, NPACKETS, "expected more received packets"); + + switch (mode) { + case BOND_MODE_ROUNDROBIN: + case BOND_MODE_XOR: { + int veth1_rx = get_rx_packets("veth1_1"); + int veth2_rx = get_rx_packets("veth1_2"); + int diff = abs(veth1_rx - veth2_rx); + + ASSERT_GE(veth1_rx + veth2_rx, NPACKETS, "expected more packets"); + + switch (xmit_policy) { + case BOND_XMIT_POLICY_LAYER2: + ASSERT_GE(diff, NPACKETS, + "expected packets on only one of the interfaces"); + break; + case BOND_XMIT_POLICY_LAYER23: + case BOND_XMIT_POLICY_LAYER34: + ASSERT_LT(diff, NPACKETS/2, + "expected even distribution of packets"); + break; + default: + PRINT_FAIL("Unimplemented xmit_policy=%d\n", xmit_policy); + break; + } + break; + } + case BOND_MODE_ACTIVEBACKUP: { + int veth1_rx = get_rx_packets("veth1_1"); + int veth2_rx = get_rx_packets("veth1_2"); + int diff = abs(veth1_rx - veth2_rx); + + ASSERT_GE(diff, NPACKETS, + "expected packets on only one of the interfaces"); + break; + } + default: + PRINT_FAIL("Unimplemented xmit_policy=%d\n", xmit_policy); + break; + } + +out: + bonding_cleanup(skeletons); +} + +/* Test the broadcast redirection using xdp_redirect_map_multi_prog and adding + * all the interfaces to it and checking that broadcasting won't send the packet + * to neither the ingress bond device (bond2) or its slave (veth2_1). + */ +static void test_xdp_bonding_redirect_multi(struct skeletons *skeletons) +{ + static const char * const ifaces[] = {"bond2", "veth2_1", "veth2_2"}; + int veth1_1_rx, veth1_2_rx; + int err; + + if (bonding_setup(skeletons, BOND_MODE_ROUNDROBIN, BOND_XMIT_POLICY_LAYER23, + BOND_ONE_NO_ATTACH)) + goto out; + + + if (!ASSERT_OK(setns_by_name("ns_dst"), "could not set netns to ns_dst")) + goto out; + + /* populate the devmap with the relevant interfaces */ + for (int i = 0; i < ARRAY_SIZE(ifaces); i++) { + int ifindex = if_nametoindex(ifaces[i]); + int map_fd = bpf_map__fd(skeletons->xdp_redirect_multi_kern->maps.map_all); + + if (!ASSERT_GT(ifindex, 0, "could not get interface index")) + goto out; + + err = bpf_map_update_elem(map_fd, &ifindex, &ifindex, 0); + if (!ASSERT_OK(err, "add interface to map_all")) + goto out; + } + + if (xdp_attach(skeletons, + skeletons->xdp_redirect_multi_kern->progs.xdp_redirect_map_multi_prog, + "bond2")) + goto out; + + restore_root_netns(); + + if (send_udp_packets(BOND_MODE_ROUNDROBIN)) + goto out; + + veth1_1_rx = get_rx_packets("veth1_1"); + veth1_2_rx = get_rx_packets("veth1_2"); + + ASSERT_EQ(veth1_1_rx, 0, "expected no packets on veth1_1"); + ASSERT_GE(veth1_2_rx, NPACKETS, "expected packets on veth1_2"); + +out: + restore_root_netns(); + bonding_cleanup(skeletons); +} + +/* Test that XDP programs cannot be attached to both the bond master and slaves simultaneously */ +static void test_xdp_bonding_attach(struct skeletons *skeletons) +{ + struct bpf_link *link = NULL; + struct bpf_link *link2 = NULL; + int veth, bond, err; + + if (!ASSERT_OK(system("ip link add veth type veth"), "add veth")) + goto out; + if (!ASSERT_OK(system("ip link add bond type bond"), "add bond")) + goto out; + + veth = if_nametoindex("veth"); + if (!ASSERT_GE(veth, 0, "if_nametoindex veth")) + goto out; + bond = if_nametoindex("bond"); + if (!ASSERT_GE(bond, 0, "if_nametoindex bond")) + goto out; + + /* enslaving with a XDP program loaded is allowed */ + link = bpf_program__attach_xdp(skeletons->xdp_dummy->progs.xdp_dummy_prog, veth); + if (!ASSERT_OK_PTR(link, "attach program to veth")) + goto out; + + err = system("ip link set veth master bond"); + if (!ASSERT_OK(err, "set veth master")) + goto out; + + bpf_link__destroy(link); + link = NULL; + + /* attaching to slave when master has no program is allowed */ + link = bpf_program__attach_xdp(skeletons->xdp_dummy->progs.xdp_dummy_prog, veth); + if (!ASSERT_OK_PTR(link, "attach program to slave when enslaved")) + goto out; + + /* attaching to master not allowed when slave has program loaded */ + link2 = bpf_program__attach_xdp(skeletons->xdp_dummy->progs.xdp_dummy_prog, bond); + if (!ASSERT_ERR_PTR(link2, "attach program to master when slave has program")) + goto out; + + bpf_link__destroy(link); + link = NULL; + + /* attaching XDP program to master allowed when slave has no program */ + link = bpf_program__attach_xdp(skeletons->xdp_dummy->progs.xdp_dummy_prog, bond); + if (!ASSERT_OK_PTR(link, "attach program to master")) + goto out; + + /* attaching to slave not allowed when master has program loaded */ + link2 = bpf_program__attach_xdp(skeletons->xdp_dummy->progs.xdp_dummy_prog, veth); + if (!ASSERT_ERR_PTR(link2, "attach program to slave when master has program")) + goto out; + + bpf_link__destroy(link); + link = NULL; + + /* test program unwinding with a non-XDP slave */ + if (!ASSERT_OK(system("ip link add vxlan type vxlan id 1 remote 1.2.3.4 dstport 0 dev lo"), + "add vxlan")) + goto out; + + err = system("ip link set vxlan master bond"); + if (!ASSERT_OK(err, "set vxlan master")) + goto out; + + /* attaching not allowed when one slave does not support XDP */ + link = bpf_program__attach_xdp(skeletons->xdp_dummy->progs.xdp_dummy_prog, bond); + if (!ASSERT_ERR_PTR(link, "attach program to master when slave does not support XDP")) + goto out; + +out: + bpf_link__destroy(link); + bpf_link__destroy(link2); + + system("ip link del veth"); + system("ip link del bond"); + system("ip link del vxlan"); +} + +/* Test with nested bonding devices to catch issue with negative jump label count */ +static void test_xdp_bonding_nested(struct skeletons *skeletons) +{ + struct bpf_link *link = NULL; + int bond, err; + + if (!ASSERT_OK(system("ip link add bond type bond"), "add bond")) + goto out; + + bond = if_nametoindex("bond"); + if (!ASSERT_GE(bond, 0, "if_nametoindex bond")) + goto out; + + if (!ASSERT_OK(system("ip link add bond_nest1 type bond"), "add bond_nest1")) + goto out; + + err = system("ip link set bond_nest1 master bond"); + if (!ASSERT_OK(err, "set bond_nest1 master")) + goto out; + + if (!ASSERT_OK(system("ip link add bond_nest2 type bond"), "add bond_nest1")) + goto out; + + err = system("ip link set bond_nest2 master bond_nest1"); + if (!ASSERT_OK(err, "set bond_nest2 master")) + goto out; + + link = bpf_program__attach_xdp(skeletons->xdp_dummy->progs.xdp_dummy_prog, bond); + ASSERT_OK_PTR(link, "attach program to master"); + +out: + bpf_link__destroy(link); + system("ip link del bond"); + system("ip link del bond_nest1"); + system("ip link del bond_nest2"); +} + +static void test_xdp_bonding_features(struct skeletons *skeletons) +{ + LIBBPF_OPTS(bpf_xdp_query_opts, query_opts); + int bond_idx, veth1_idx, err; + struct bpf_link *link = NULL; + + if (!ASSERT_OK(system("ip link add bond type bond"), "add bond")) + goto out; + + bond_idx = if_nametoindex("bond"); + if (!ASSERT_GE(bond_idx, 0, "if_nametoindex bond")) + goto out; + + /* query default xdp-feature for bond device */ + err = bpf_xdp_query(bond_idx, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "bond bpf_xdp_query")) + goto out; + + if (!ASSERT_EQ(query_opts.feature_flags, 0, + "bond query_opts.feature_flags")) + goto out; + + if (!ASSERT_OK(system("ip link add veth0 type veth peer name veth1"), + "add veth{0,1} pair")) + goto out; + + if (!ASSERT_OK(system("ip link add veth2 type veth peer name veth3"), + "add veth{2,3} pair")) + goto out; + + if (!ASSERT_OK(system("ip link set veth0 master bond"), + "add veth0 to master bond")) + goto out; + + /* xdp-feature for bond device should be obtained from the single slave + * device (veth0) + */ + err = bpf_xdp_query(bond_idx, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "bond bpf_xdp_query")) + goto out; + + if (!ASSERT_EQ(query_opts.feature_flags, + NETDEV_XDP_ACT_BASIC | NETDEV_XDP_ACT_REDIRECT | + NETDEV_XDP_ACT_RX_SG, + "bond query_opts.feature_flags")) + goto out; + + veth1_idx = if_nametoindex("veth1"); + if (!ASSERT_GE(veth1_idx, 0, "if_nametoindex veth1")) + goto out; + + link = bpf_program__attach_xdp(skeletons->xdp_dummy->progs.xdp_dummy_prog, + veth1_idx); + if (!ASSERT_OK_PTR(link, "attach program to veth1")) + goto out; + + /* xdp-feature for veth0 are changed */ + err = bpf_xdp_query(bond_idx, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "bond bpf_xdp_query")) + goto out; + + if (!ASSERT_EQ(query_opts.feature_flags, + NETDEV_XDP_ACT_BASIC | NETDEV_XDP_ACT_REDIRECT | + NETDEV_XDP_ACT_RX_SG | NETDEV_XDP_ACT_NDO_XMIT | + NETDEV_XDP_ACT_NDO_XMIT_SG, + "bond query_opts.feature_flags")) + goto out; + + if (!ASSERT_OK(system("ip link set veth2 master bond"), + "add veth2 to master bond")) + goto out; + + err = bpf_xdp_query(bond_idx, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "bond bpf_xdp_query")) + goto out; + + /* xdp-feature for bond device should be set to the most restrict + * value obtained from attached slave devices (veth0 and veth2) + */ + if (!ASSERT_EQ(query_opts.feature_flags, + NETDEV_XDP_ACT_BASIC | NETDEV_XDP_ACT_REDIRECT | + NETDEV_XDP_ACT_RX_SG, + "bond query_opts.feature_flags")) + goto out; + + if (!ASSERT_OK(system("ip link set veth2 nomaster"), + "del veth2 to master bond")) + goto out; + + err = bpf_xdp_query(bond_idx, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "bond bpf_xdp_query")) + goto out; + + if (!ASSERT_EQ(query_opts.feature_flags, + NETDEV_XDP_ACT_BASIC | NETDEV_XDP_ACT_REDIRECT | + NETDEV_XDP_ACT_RX_SG | NETDEV_XDP_ACT_NDO_XMIT | + NETDEV_XDP_ACT_NDO_XMIT_SG, + "bond query_opts.feature_flags")) + goto out; + + if (!ASSERT_OK(system("ip link set veth0 nomaster"), + "del veth0 to master bond")) + goto out; + + err = bpf_xdp_query(bond_idx, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "bond bpf_xdp_query")) + goto out; + + ASSERT_EQ(query_opts.feature_flags, 0, + "bond query_opts.feature_flags"); +out: + bpf_link__destroy(link); + system("ip link del veth0"); + system("ip link del veth2"); + system("ip link del bond"); +} + +static int libbpf_debug_print(enum libbpf_print_level level, + const char *format, va_list args) +{ + if (level != LIBBPF_WARN) + vprintf(format, args); + return 0; +} + +struct bond_test_case { + char *name; + int mode; + int xmit_policy; +}; + +static struct bond_test_case bond_test_cases[] = { + { "xdp_bonding_roundrobin", BOND_MODE_ROUNDROBIN, BOND_XMIT_POLICY_LAYER23, }, + { "xdp_bonding_activebackup", BOND_MODE_ACTIVEBACKUP, BOND_XMIT_POLICY_LAYER23 }, + + { "xdp_bonding_xor_layer2", BOND_MODE_XOR, BOND_XMIT_POLICY_LAYER2, }, + { "xdp_bonding_xor_layer23", BOND_MODE_XOR, BOND_XMIT_POLICY_LAYER23, }, + { "xdp_bonding_xor_layer34", BOND_MODE_XOR, BOND_XMIT_POLICY_LAYER34, }, +}; + +void serial_test_xdp_bonding(void) +{ + libbpf_print_fn_t old_print_fn; + struct skeletons skeletons = {}; + int i; + + old_print_fn = libbpf_set_print(libbpf_debug_print); + + root_netns_fd = open("/proc/self/ns/net", O_RDONLY); + if (!ASSERT_GE(root_netns_fd, 0, "open /proc/self/ns/net")) + goto out; + + skeletons.xdp_dummy = xdp_dummy__open_and_load(); + if (!ASSERT_OK_PTR(skeletons.xdp_dummy, "xdp_dummy__open_and_load")) + goto out; + + skeletons.xdp_tx = xdp_tx__open_and_load(); + if (!ASSERT_OK_PTR(skeletons.xdp_tx, "xdp_tx__open_and_load")) + goto out; + + skeletons.xdp_redirect_multi_kern = xdp_redirect_multi_kern__open_and_load(); + if (!ASSERT_OK_PTR(skeletons.xdp_redirect_multi_kern, + "xdp_redirect_multi_kern__open_and_load")) + goto out; + + if (test__start_subtest("xdp_bonding_attach")) + test_xdp_bonding_attach(&skeletons); + + if (test__start_subtest("xdp_bonding_nested")) + test_xdp_bonding_nested(&skeletons); + + if (test__start_subtest("xdp_bonding_features")) + test_xdp_bonding_features(&skeletons); + + for (i = 0; i < ARRAY_SIZE(bond_test_cases); i++) { + struct bond_test_case *test_case = &bond_test_cases[i]; + + if (test__start_subtest(test_case->name)) + test_xdp_bonding_with_mode( + &skeletons, + test_case->mode, + test_case->xmit_policy); + } + + if (test__start_subtest("xdp_bonding_redirect_multi")) + test_xdp_bonding_redirect_multi(&skeletons); + +out: + xdp_dummy__destroy(skeletons.xdp_dummy); + xdp_tx__destroy(skeletons.xdp_tx); + xdp_redirect_multi_kern__destroy(skeletons.xdp_redirect_multi_kern); + + libbpf_set_print(old_print_fn); + if (root_netns_fd >= 0) + close(root_netns_fd); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_bpf2bpf.c b/tools/testing/selftests/bpf/prog_tests/xdp_bpf2bpf.c index 2c6c570b21f8..76967d8ace9c 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_bpf2bpf.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_bpf2bpf.c @@ -10,50 +10,110 @@ struct meta { int pkt_len; }; +struct test_ctx_s { + bool passed; + int pkt_size; +}; + +struct test_ctx_s test_ctx; + static void on_sample(void *ctx, int cpu, void *data, __u32 size) { - int duration = 0; struct meta *meta = (struct meta *)data; struct ipv4_packet *trace_pkt_v4 = data + sizeof(*meta); + unsigned char *raw_pkt = data + sizeof(*meta); + struct test_ctx_s *tst_ctx = ctx; + + ASSERT_GE(size, sizeof(pkt_v4) + sizeof(*meta), "check_size"); + ASSERT_EQ(meta->ifindex, if_nametoindex("lo"), "check_meta_ifindex"); + ASSERT_EQ(meta->pkt_len, tst_ctx->pkt_size, "check_meta_pkt_len"); + ASSERT_EQ(memcmp(trace_pkt_v4, &pkt_v4, sizeof(pkt_v4)), 0, + "check_packet_content"); + + if (meta->pkt_len > sizeof(pkt_v4)) { + for (int i = 0; i < meta->pkt_len - sizeof(pkt_v4); i++) + ASSERT_EQ(raw_pkt[i + sizeof(pkt_v4)], (unsigned char)i, + "check_packet_content"); + } + + tst_ctx->passed = true; +} - if (CHECK(size < sizeof(pkt_v4) + sizeof(*meta), - "check_size", "size %u < %zu\n", - size, sizeof(pkt_v4) + sizeof(*meta))) - return; +#define BUF_SZ 9000 - if (CHECK(meta->ifindex != if_nametoindex("lo"), "check_meta_ifindex", - "meta->ifindex = %d\n", meta->ifindex)) +static void run_xdp_bpf2bpf_pkt_size(int pkt_fd, struct perf_buffer *pb, + struct test_xdp_bpf2bpf *ftrace_skel, + int pkt_size) +{ + __u8 *buf, *buf_in; + int err; + LIBBPF_OPTS(bpf_test_run_opts, topts); + + if (!ASSERT_LE(pkt_size, BUF_SZ, "pkt_size") || + !ASSERT_GE(pkt_size, sizeof(pkt_v4), "pkt_size")) return; - if (CHECK(meta->pkt_len != sizeof(pkt_v4), "check_meta_pkt_len", - "meta->pkt_len = %zd\n", sizeof(pkt_v4))) + buf_in = malloc(BUF_SZ); + if (!ASSERT_OK_PTR(buf_in, "buf_in malloc()")) return; - if (CHECK(memcmp(trace_pkt_v4, &pkt_v4, sizeof(pkt_v4)), - "check_packet_content", "content not the same\n")) + buf = malloc(BUF_SZ); + if (!ASSERT_OK_PTR(buf, "buf malloc()")) { + free(buf_in); return; + } + + test_ctx.passed = false; + test_ctx.pkt_size = pkt_size; + + memcpy(buf_in, &pkt_v4, sizeof(pkt_v4)); + if (pkt_size > sizeof(pkt_v4)) { + for (int i = 0; i < (pkt_size - sizeof(pkt_v4)); i++) + buf_in[i + sizeof(pkt_v4)] = i; + } + + /* Run test program */ + topts.data_in = buf_in; + topts.data_size_in = pkt_size; + topts.data_out = buf; + topts.data_size_out = BUF_SZ; + + err = bpf_prog_test_run_opts(pkt_fd, &topts); + + ASSERT_OK(err, "ipv4"); + ASSERT_EQ(topts.retval, XDP_PASS, "ipv4 retval"); + ASSERT_EQ(topts.data_size_out, pkt_size, "ipv4 size"); + + /* Make sure bpf_xdp_output() was triggered and it sent the expected + * data to the perf ring buffer. + */ + err = perf_buffer__poll(pb, 100); - *(bool *)ctx = true; + ASSERT_GE(err, 0, "perf_buffer__poll"); + ASSERT_TRUE(test_ctx.passed, "test passed"); + /* Verify test results */ + ASSERT_EQ(ftrace_skel->bss->test_result_fentry, if_nametoindex("lo"), + "fentry result"); + ASSERT_EQ(ftrace_skel->bss->test_result_fexit, XDP_PASS, "fexit result"); + + free(buf); + free(buf_in); } void test_xdp_bpf2bpf(void) { - __u32 duration = 0, retval, size; - char buf[128]; int err, pkt_fd, map_fd; - bool passed = false; - struct iphdr *iph = (void *)buf + sizeof(struct ethhdr); - struct iptnl_info value4 = {.family = AF_INET}; + int pkt_sizes[] = {sizeof(pkt_v4), 1024, 4100, 8200}; + struct iptnl_info value4 = {.family = AF_INET6}; struct test_xdp *pkt_skel = NULL; struct test_xdp_bpf2bpf *ftrace_skel = NULL; struct vip key4 = {.protocol = 6, .family = AF_INET}; struct bpf_program *prog; struct perf_buffer *pb = NULL; - struct perf_buffer_opts pb_opts = {}; /* Load XDP program to introspect */ pkt_skel = test_xdp__open_and_load(); - if (CHECK(!pkt_skel, "pkt_skel_load", "test_xdp skeleton failed\n")) + if (!ASSERT_OK_PTR(pkt_skel, "test_xdp__open_and_load")) return; pkt_fd = bpf_program__fd(pkt_skel->progs._xdp_tx_iptunnel); @@ -63,7 +123,7 @@ void test_xdp_bpf2bpf(void) /* Load trace program */ ftrace_skel = test_xdp_bpf2bpf__open(); - if (CHECK(!ftrace_skel, "__open", "ftrace skeleton failed\n")) + if (!ASSERT_OK_PTR(ftrace_skel, "test_xdp_bpf2bpf__open")) goto out; /* Demonstrate the bpf_program__set_attach_target() API rather than @@ -78,52 +138,24 @@ void test_xdp_bpf2bpf(void) bpf_program__set_attach_target(prog, pkt_fd, "_xdp_tx_iptunnel"); err = test_xdp_bpf2bpf__load(ftrace_skel); - if (CHECK(err, "__load", "ftrace skeleton failed\n")) + if (!ASSERT_OK(err, "test_xdp_bpf2bpf__load")) goto out; err = test_xdp_bpf2bpf__attach(ftrace_skel); - if (CHECK(err, "ftrace_attach", "ftrace attach failed: %d\n", err)) + if (!ASSERT_OK(err, "test_xdp_bpf2bpf__attach")) goto out; /* Set up perf buffer */ - pb_opts.sample_cb = on_sample; - pb_opts.ctx = &passed; - pb = perf_buffer__new(bpf_map__fd(ftrace_skel->maps.perf_buf_map), - 1, &pb_opts); - if (CHECK(IS_ERR(pb), "perf_buf__new", "err %ld\n", PTR_ERR(pb))) + pb = perf_buffer__new(bpf_map__fd(ftrace_skel->maps.perf_buf_map), 8, + on_sample, NULL, &test_ctx, NULL); + if (!ASSERT_OK_PTR(pb, "perf_buf__new")) goto out; - /* Run test program */ - err = bpf_prog_test_run(pkt_fd, 1, &pkt_v4, sizeof(pkt_v4), - buf, &size, &retval, &duration); - - if (CHECK(err || retval != XDP_TX || size != 74 || - iph->protocol != IPPROTO_IPIP, "ipv4", - "err %d errno %d retval %d size %d\n", - err, errno, retval, size)) - goto out; - - /* Make sure bpf_xdp_output() was triggered and it sent the expected - * data to the perf ring buffer. - */ - err = perf_buffer__poll(pb, 100); - if (CHECK(err < 0, "perf_buffer__poll", "err %d\n", err)) - goto out; - - CHECK_FAIL(!passed); - - /* Verify test results */ - if (CHECK(ftrace_skel->bss->test_result_fentry != if_nametoindex("lo"), - "result", "fentry failed err %llu\n", - ftrace_skel->bss->test_result_fentry)) - goto out; - - CHECK(ftrace_skel->bss->test_result_fexit != XDP_TX, "result", - "fexit failed err %llu\n", ftrace_skel->bss->test_result_fexit); - + for (int i = 0; i < ARRAY_SIZE(pkt_sizes); i++) + run_xdp_bpf2bpf_pkt_size(pkt_fd, pb, ftrace_skel, + pkt_sizes[i]); out: - if (pb) - perf_buffer__free(pb); + perf_buffer__free(pb); test_xdp__destroy(pkt_skel); test_xdp_bpf2bpf__destroy(ftrace_skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_context_test_run.c b/tools/testing/selftests/bpf/prog_tests/xdp_context_test_run.c new file mode 100644 index 000000000000..e6a783c7f5db --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xdp_context_test_run.c @@ -0,0 +1,105 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> +#include "test_xdp_context_test_run.skel.h" + +void test_xdp_context_error(int prog_fd, struct bpf_test_run_opts opts, + __u32 data_meta, __u32 data, __u32 data_end, + __u32 ingress_ifindex, __u32 rx_queue_index, + __u32 egress_ifindex) +{ + struct xdp_md ctx = { + .data = data, + .data_end = data_end, + .data_meta = data_meta, + .ingress_ifindex = ingress_ifindex, + .rx_queue_index = rx_queue_index, + .egress_ifindex = egress_ifindex, + }; + int err; + + opts.ctx_in = &ctx; + opts.ctx_size_in = sizeof(ctx); + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_EQ(errno, EINVAL, "errno-EINVAL"); + ASSERT_ERR(err, "bpf_prog_test_run"); +} + +void test_xdp_context_test_run(void) +{ + struct test_xdp_context_test_run *skel = NULL; + char data[sizeof(pkt_v4) + sizeof(__u32)]; + char bad_ctx[sizeof(struct xdp_md) + 1]; + struct xdp_md ctx_in, ctx_out; + DECLARE_LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &data, + .data_size_in = sizeof(data), + .ctx_out = &ctx_out, + .ctx_size_out = sizeof(ctx_out), + .repeat = 1, + ); + int err, prog_fd; + + skel = test_xdp_context_test_run__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel")) + return; + prog_fd = bpf_program__fd(skel->progs.xdp_context); + + /* Data past the end of the kernel's struct xdp_md must be 0 */ + bad_ctx[sizeof(bad_ctx) - 1] = 1; + opts.ctx_in = bad_ctx; + opts.ctx_size_in = sizeof(bad_ctx); + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_EQ(errno, E2BIG, "extradata-errno"); + ASSERT_ERR(err, "bpf_prog_test_run(extradata)"); + + *(__u32 *)data = XDP_PASS; + *(struct ipv4_packet *)(data + sizeof(__u32)) = pkt_v4; + opts.ctx_in = &ctx_in; + opts.ctx_size_in = sizeof(ctx_in); + memset(&ctx_in, 0, sizeof(ctx_in)); + ctx_in.data_meta = 0; + ctx_in.data = sizeof(__u32); + ctx_in.data_end = ctx_in.data + sizeof(pkt_v4); + err = bpf_prog_test_run_opts(prog_fd, &opts); + ASSERT_OK(err, "bpf_prog_test_run(valid)"); + ASSERT_EQ(opts.retval, XDP_PASS, "valid-retval"); + ASSERT_EQ(opts.data_size_out, sizeof(pkt_v4), "valid-datasize"); + ASSERT_EQ(opts.ctx_size_out, opts.ctx_size_in, "valid-ctxsize"); + ASSERT_EQ(ctx_out.data_meta, 0, "valid-datameta"); + ASSERT_EQ(ctx_out.data, 0, "valid-data"); + ASSERT_EQ(ctx_out.data_end, sizeof(pkt_v4), "valid-dataend"); + + /* Meta data's size must be a multiple of 4 */ + test_xdp_context_error(prog_fd, opts, 0, 1, sizeof(data), 0, 0, 0); + + /* data_meta must reference the start of data */ + test_xdp_context_error(prog_fd, opts, 4, sizeof(__u32), sizeof(data), + 0, 0, 0); + + /* Meta data must be 255 bytes or smaller */ + test_xdp_context_error(prog_fd, opts, 0, 256, sizeof(data), 0, 0, 0); + + /* Total size of data must match data_end - data_meta */ + test_xdp_context_error(prog_fd, opts, 0, sizeof(__u32), + sizeof(data) - 1, 0, 0, 0); + test_xdp_context_error(prog_fd, opts, 0, sizeof(__u32), + sizeof(data) + 1, 0, 0, 0); + + /* RX queue cannot be specified without specifying an ingress */ + test_xdp_context_error(prog_fd, opts, 0, sizeof(__u32), sizeof(data), + 0, 1, 0); + + /* Interface 1 is always the loopback interface which always has only + * one RX queue (index 0). This makes index 1 an invalid rx queue index + * for interface 1. + */ + test_xdp_context_error(prog_fd, opts, 0, sizeof(__u32), sizeof(data), + 1, 1, 0); + + /* The egress cannot be specified */ + test_xdp_context_error(prog_fd, opts, 0, sizeof(__u32), sizeof(data), + 0, 0, 1); + + test_xdp_context_test_run__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_cpumap_attach.c b/tools/testing/selftests/bpf/prog_tests/xdp_cpumap_attach.c index 0176573fe4e7..481626a875d1 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_cpumap_attach.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_cpumap_attach.c @@ -3,68 +3,119 @@ #include <linux/if_link.h> #include <test_progs.h> +#include "test_xdp_with_cpumap_frags_helpers.skel.h" #include "test_xdp_with_cpumap_helpers.skel.h" #define IFINDEX_LO 1 -void test_xdp_with_cpumap_helpers(void) +static void test_xdp_with_cpumap_helpers(void) { struct test_xdp_with_cpumap_helpers *skel; struct bpf_prog_info info = {}; + __u32 len = sizeof(info); struct bpf_cpumap_val val = { .qsize = 192, }; - __u32 duration = 0, idx = 0; - __u32 len = sizeof(info); int err, prog_fd, map_fd; + __u32 idx = 0; skel = test_xdp_with_cpumap_helpers__open_and_load(); - if (CHECK_FAIL(!skel)) { - perror("test_xdp_with_cpumap_helpers__open_and_load"); + if (!ASSERT_OK_PTR(skel, "test_xdp_with_cpumap_helpers__open_and_load")) return; - } - /* can not attach program with cpumaps that allow programs - * as xdp generic - */ prog_fd = bpf_program__fd(skel->progs.xdp_redir_prog); - err = bpf_set_link_xdp_fd(IFINDEX_LO, prog_fd, XDP_FLAGS_SKB_MODE); - CHECK(err == 0, "Generic attach of program with 8-byte CPUMAP", - "should have failed\n"); + err = bpf_xdp_attach(IFINDEX_LO, prog_fd, XDP_FLAGS_SKB_MODE, NULL); + if (!ASSERT_OK(err, "Generic attach of program with 8-byte CPUMAP")) + goto out_close; + + err = bpf_xdp_detach(IFINDEX_LO, XDP_FLAGS_SKB_MODE, NULL); + ASSERT_OK(err, "XDP program detach"); prog_fd = bpf_program__fd(skel->progs.xdp_dummy_cm); map_fd = bpf_map__fd(skel->maps.cpu_map); - err = bpf_obj_get_info_by_fd(prog_fd, &info, &len); - if (CHECK_FAIL(err)) + err = bpf_prog_get_info_by_fd(prog_fd, &info, &len); + if (!ASSERT_OK(err, "bpf_prog_get_info_by_fd")) goto out_close; val.bpf_prog.fd = prog_fd; err = bpf_map_update_elem(map_fd, &idx, &val, 0); - CHECK(err, "Add program to cpumap entry", "err %d errno %d\n", - err, errno); + ASSERT_OK(err, "Add program to cpumap entry"); err = bpf_map_lookup_elem(map_fd, &idx, &val); - CHECK(err, "Read cpumap entry", "err %d errno %d\n", err, errno); - CHECK(info.id != val.bpf_prog.id, "Expected program id in cpumap entry", - "expected %u read %u\n", info.id, val.bpf_prog.id); + ASSERT_OK(err, "Read cpumap entry"); + ASSERT_EQ(info.id, val.bpf_prog.id, "Match program id to cpumap entry prog_id"); /* can not attach BPF_XDP_CPUMAP program to a device */ - err = bpf_set_link_xdp_fd(IFINDEX_LO, prog_fd, XDP_FLAGS_SKB_MODE); - CHECK(err == 0, "Attach of BPF_XDP_CPUMAP program", - "should have failed\n"); + err = bpf_xdp_attach(IFINDEX_LO, prog_fd, XDP_FLAGS_SKB_MODE, NULL); + if (!ASSERT_NEQ(err, 0, "Attach of BPF_XDP_CPUMAP program")) + bpf_xdp_detach(IFINDEX_LO, XDP_FLAGS_SKB_MODE, NULL); val.qsize = 192; val.bpf_prog.fd = bpf_program__fd(skel->progs.xdp_dummy_prog); err = bpf_map_update_elem(map_fd, &idx, &val, 0); - CHECK(err == 0, "Add non-BPF_XDP_CPUMAP program to cpumap entry", - "should have failed\n"); + ASSERT_NEQ(err, 0, "Add non-BPF_XDP_CPUMAP program to cpumap entry"); + + /* Try to attach BPF_XDP program with frags to cpumap when we have + * already loaded a BPF_XDP program on the map + */ + idx = 1; + val.qsize = 192; + val.bpf_prog.fd = bpf_program__fd(skel->progs.xdp_dummy_cm_frags); + err = bpf_map_update_elem(map_fd, &idx, &val, 0); + ASSERT_NEQ(err, 0, "Add BPF_XDP program with frags to cpumap entry"); out_close: test_xdp_with_cpumap_helpers__destroy(skel); } -void test_xdp_cpumap_attach(void) +static void test_xdp_with_cpumap_frags_helpers(void) { - if (test__start_subtest("cpumap_with_progs")) + struct test_xdp_with_cpumap_frags_helpers *skel; + struct bpf_prog_info info = {}; + __u32 len = sizeof(info); + struct bpf_cpumap_val val = { + .qsize = 192, + }; + int err, frags_prog_fd, map_fd; + __u32 idx = 0; + + skel = test_xdp_with_cpumap_frags_helpers__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_xdp_with_cpumap_helpers__open_and_load")) + return; + + frags_prog_fd = bpf_program__fd(skel->progs.xdp_dummy_cm_frags); + map_fd = bpf_map__fd(skel->maps.cpu_map); + err = bpf_prog_get_info_by_fd(frags_prog_fd, &info, &len); + if (!ASSERT_OK(err, "bpf_prog_get_info_by_fd")) + goto out_close; + + val.bpf_prog.fd = frags_prog_fd; + err = bpf_map_update_elem(map_fd, &idx, &val, 0); + ASSERT_OK(err, "Add program to cpumap entry"); + + err = bpf_map_lookup_elem(map_fd, &idx, &val); + ASSERT_OK(err, "Read cpumap entry"); + ASSERT_EQ(info.id, val.bpf_prog.id, + "Match program id to cpumap entry prog_id"); + + /* Try to attach BPF_XDP program to cpumap when we have + * already loaded a BPF_XDP program with frags on the map + */ + idx = 1; + val.qsize = 192; + val.bpf_prog.fd = bpf_program__fd(skel->progs.xdp_dummy_cm); + err = bpf_map_update_elem(map_fd, &idx, &val, 0); + ASSERT_NEQ(err, 0, "Add BPF_XDP program to cpumap entry"); + +out_close: + test_xdp_with_cpumap_frags_helpers__destroy(skel); +} + +void serial_test_xdp_cpumap_attach(void) +{ + if (test__start_subtest("CPUMAP with programs in entries")) test_xdp_with_cpumap_helpers(); + + if (test__start_subtest("CPUMAP with frags programs in entries")) + test_xdp_with_cpumap_frags_helpers(); } diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_dev_bound_only.c b/tools/testing/selftests/bpf/prog_tests/xdp_dev_bound_only.c new file mode 100644 index 000000000000..7dd18c6d06c6 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xdp_dev_bound_only.c @@ -0,0 +1,61 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <net/if.h> +#include <test_progs.h> +#include <network_helpers.h> + +#define LOCAL_NETNS "xdp_dev_bound_only_netns" + +static int load_dummy_prog(char *name, __u32 ifindex, __u32 flags) +{ + struct bpf_insn insns[] = { BPF_MOV64_IMM(BPF_REG_0, 0), BPF_EXIT_INSN() }; + LIBBPF_OPTS(bpf_prog_load_opts, opts); + + opts.prog_flags = flags; + opts.prog_ifindex = ifindex; + return bpf_prog_load(BPF_PROG_TYPE_XDP, name, "GPL", insns, ARRAY_SIZE(insns), &opts); +} + +/* A test case for bpf_offload_netdev->offload handling bug: + * - create a veth device (does not support offload); + * - create a device bound XDP program with BPF_F_XDP_DEV_BOUND_ONLY flag + * (such programs are not offloaded); + * - create a device bound XDP program without flags (such programs are offloaded). + * This might lead to 'BUG: kernel NULL pointer dereference'. + */ +void test_xdp_dev_bound_only_offdev(void) +{ + struct nstoken *tok = NULL; + __u32 ifindex; + int fd1 = -1; + int fd2 = -1; + + SYS(out, "ip netns add " LOCAL_NETNS); + tok = open_netns(LOCAL_NETNS); + if (!ASSERT_OK_PTR(tok, "open_netns")) + goto out; + SYS(out, "ip link add eth42 type veth"); + ifindex = if_nametoindex("eth42"); + if (!ASSERT_NEQ(ifindex, 0, "if_nametoindex")) { + perror("if_nametoindex"); + goto out; + } + fd1 = load_dummy_prog("dummy1", ifindex, BPF_F_XDP_DEV_BOUND_ONLY); + if (!ASSERT_GE(fd1, 0, "load_dummy_prog #1")) { + perror("load_dummy_prog #1"); + goto out; + } + /* Program with ifindex is considered offloaded, however veth + * does not support offload => error should be reported. + */ + fd2 = load_dummy_prog("dummy2", ifindex, 0); + ASSERT_EQ(fd2, -EINVAL, "load_dummy_prog #2 (offloaded)"); + +out: + close(fd1); + close(fd2); + close_netns(tok); + /* eth42 was added inside netns, removing the netns will + * also remove eth42 veth pair. + */ + SYS_NOFAIL("ip netns del " LOCAL_NETNS); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_devmap_attach.c b/tools/testing/selftests/bpf/prog_tests/xdp_devmap_attach.c index 88ef3ec8ac4c..ce6812558287 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_devmap_attach.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_devmap_attach.c @@ -4,11 +4,12 @@ #include <test_progs.h> #include "test_xdp_devmap_helpers.skel.h" +#include "test_xdp_with_devmap_frags_helpers.skel.h" #include "test_xdp_with_devmap_helpers.skel.h" #define IFINDEX_LO 1 -void test_xdp_with_devmap_helpers(void) +static void test_xdp_with_devmap_helpers(void) { struct test_xdp_with_devmap_helpers *skel; struct bpf_prog_info info = {}; @@ -16,74 +17,121 @@ void test_xdp_with_devmap_helpers(void) .ifindex = IFINDEX_LO, }; __u32 len = sizeof(info); - __u32 duration = 0, idx = 0; int err, dm_fd, map_fd; + __u32 idx = 0; skel = test_xdp_with_devmap_helpers__open_and_load(); - if (CHECK_FAIL(!skel)) { - perror("test_xdp_with_devmap_helpers__open_and_load"); + if (!ASSERT_OK_PTR(skel, "test_xdp_with_devmap_helpers__open_and_load")) return; - } - /* can not attach program with DEVMAPs that allow programs - * as xdp generic - */ dm_fd = bpf_program__fd(skel->progs.xdp_redir_prog); - err = bpf_set_link_xdp_fd(IFINDEX_LO, dm_fd, XDP_FLAGS_SKB_MODE); - CHECK(err == 0, "Generic attach of program with 8-byte devmap", - "should have failed\n"); + err = bpf_xdp_attach(IFINDEX_LO, dm_fd, XDP_FLAGS_SKB_MODE, NULL); + if (!ASSERT_OK(err, "Generic attach of program with 8-byte devmap")) + goto out_close; + + err = bpf_xdp_detach(IFINDEX_LO, XDP_FLAGS_SKB_MODE, NULL); + ASSERT_OK(err, "XDP program detach"); dm_fd = bpf_program__fd(skel->progs.xdp_dummy_dm); map_fd = bpf_map__fd(skel->maps.dm_ports); - err = bpf_obj_get_info_by_fd(dm_fd, &info, &len); - if (CHECK_FAIL(err)) + err = bpf_prog_get_info_by_fd(dm_fd, &info, &len); + if (!ASSERT_OK(err, "bpf_prog_get_info_by_fd")) goto out_close; val.bpf_prog.fd = dm_fd; err = bpf_map_update_elem(map_fd, &idx, &val, 0); - CHECK(err, "Add program to devmap entry", - "err %d errno %d\n", err, errno); + ASSERT_OK(err, "Add program to devmap entry"); err = bpf_map_lookup_elem(map_fd, &idx, &val); - CHECK(err, "Read devmap entry", "err %d errno %d\n", err, errno); - CHECK(info.id != val.bpf_prog.id, "Expected program id in devmap entry", - "expected %u read %u\n", info.id, val.bpf_prog.id); + ASSERT_OK(err, "Read devmap entry"); + ASSERT_EQ(info.id, val.bpf_prog.id, "Match program id to devmap entry prog_id"); /* can not attach BPF_XDP_DEVMAP program to a device */ - err = bpf_set_link_xdp_fd(IFINDEX_LO, dm_fd, XDP_FLAGS_SKB_MODE); - CHECK(err == 0, "Attach of BPF_XDP_DEVMAP program", - "should have failed\n"); + err = bpf_xdp_attach(IFINDEX_LO, dm_fd, XDP_FLAGS_SKB_MODE, NULL); + if (!ASSERT_NEQ(err, 0, "Attach of BPF_XDP_DEVMAP program")) + bpf_xdp_detach(IFINDEX_LO, XDP_FLAGS_SKB_MODE, NULL); val.ifindex = 1; val.bpf_prog.fd = bpf_program__fd(skel->progs.xdp_dummy_prog); err = bpf_map_update_elem(map_fd, &idx, &val, 0); - CHECK(err == 0, "Add non-BPF_XDP_DEVMAP program to devmap entry", - "should have failed\n"); + ASSERT_NEQ(err, 0, "Add non-BPF_XDP_DEVMAP program to devmap entry"); + + /* Try to attach BPF_XDP program with frags to devmap when we have + * already loaded a BPF_XDP program on the map + */ + idx = 1; + val.ifindex = 1; + val.bpf_prog.fd = bpf_program__fd(skel->progs.xdp_dummy_dm_frags); + err = bpf_map_update_elem(map_fd, &idx, &val, 0); + ASSERT_NEQ(err, 0, "Add BPF_XDP program with frags to devmap entry"); out_close: test_xdp_with_devmap_helpers__destroy(skel); } -void test_neg_xdp_devmap_helpers(void) +static void test_neg_xdp_devmap_helpers(void) { struct test_xdp_devmap_helpers *skel; - __u32 duration = 0; skel = test_xdp_devmap_helpers__open_and_load(); - if (CHECK(skel, - "Load of XDP program accessing egress ifindex without attach type", - "should have failed\n")) { + if (!ASSERT_EQ(skel, NULL, + "Load of XDP program accessing egress ifindex without attach type")) { test_xdp_devmap_helpers__destroy(skel); } } +static void test_xdp_with_devmap_frags_helpers(void) +{ + struct test_xdp_with_devmap_frags_helpers *skel; + struct bpf_prog_info info = {}; + struct bpf_devmap_val val = { + .ifindex = IFINDEX_LO, + }; + __u32 len = sizeof(info); + int err, dm_fd_frags, map_fd; + __u32 idx = 0; + + skel = test_xdp_with_devmap_frags_helpers__open_and_load(); + if (!ASSERT_OK_PTR(skel, "test_xdp_with_devmap_helpers__open_and_load")) + return; -void test_xdp_devmap_attach(void) + dm_fd_frags = bpf_program__fd(skel->progs.xdp_dummy_dm_frags); + map_fd = bpf_map__fd(skel->maps.dm_ports); + err = bpf_prog_get_info_by_fd(dm_fd_frags, &info, &len); + if (!ASSERT_OK(err, "bpf_prog_get_info_by_fd")) + goto out_close; + + val.bpf_prog.fd = dm_fd_frags; + err = bpf_map_update_elem(map_fd, &idx, &val, 0); + ASSERT_OK(err, "Add frags program to devmap entry"); + + err = bpf_map_lookup_elem(map_fd, &idx, &val); + ASSERT_OK(err, "Read devmap entry"); + ASSERT_EQ(info.id, val.bpf_prog.id, + "Match program id to devmap entry prog_id"); + + /* Try to attach BPF_XDP program to devmap when we have + * already loaded a BPF_XDP program with frags on the map + */ + idx = 1; + val.ifindex = 1; + val.bpf_prog.fd = bpf_program__fd(skel->progs.xdp_dummy_dm); + err = bpf_map_update_elem(map_fd, &idx, &val, 0); + ASSERT_NEQ(err, 0, "Add BPF_XDP program to devmap entry"); + +out_close: + test_xdp_with_devmap_frags_helpers__destroy(skel); +} + +void serial_test_xdp_devmap_attach(void) { if (test__start_subtest("DEVMAP with programs in entries")) test_xdp_with_devmap_helpers(); + if (test__start_subtest("DEVMAP with frags programs in entries")) + test_xdp_with_devmap_frags_helpers(); + if (test__start_subtest("Verifier check of DEVMAP programs")) test_neg_xdp_devmap_helpers(); } diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_do_redirect.c b/tools/testing/selftests/bpf/prog_tests/xdp_do_redirect.c new file mode 100644 index 000000000000..bad0ea167be7 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xdp_do_redirect.c @@ -0,0 +1,248 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> +#include <net/if.h> +#include <linux/if_ether.h> +#include <linux/if_packet.h> +#include <linux/if_link.h> +#include <linux/ipv6.h> +#include <linux/in6.h> +#include <linux/udp.h> +#include <bpf/bpf_endian.h> +#include <uapi/linux/netdev.h> +#include "test_xdp_do_redirect.skel.h" + +struct udp_packet { + struct ethhdr eth; + struct ipv6hdr iph; + struct udphdr udp; + __u8 payload[64 - sizeof(struct udphdr) + - sizeof(struct ethhdr) - sizeof(struct ipv6hdr)]; +} __packed; + +static struct udp_packet pkt_udp = { + .eth.h_proto = __bpf_constant_htons(ETH_P_IPV6), + .eth.h_dest = {0x00, 0x11, 0x22, 0x33, 0x44, 0x55}, + .eth.h_source = {0x66, 0x77, 0x88, 0x99, 0xaa, 0xbb}, + .iph.version = 6, + .iph.nexthdr = IPPROTO_UDP, + .iph.payload_len = bpf_htons(sizeof(struct udp_packet) + - offsetof(struct udp_packet, udp)), + .iph.hop_limit = 2, + .iph.saddr.s6_addr16 = {bpf_htons(0xfc00), 0, 0, 0, 0, 0, 0, bpf_htons(1)}, + .iph.daddr.s6_addr16 = {bpf_htons(0xfc00), 0, 0, 0, 0, 0, 0, bpf_htons(2)}, + .udp.source = bpf_htons(1), + .udp.dest = bpf_htons(1), + .udp.len = bpf_htons(sizeof(struct udp_packet) + - offsetof(struct udp_packet, udp)), + .payload = {0x42}, /* receiver XDP program matches on this */ +}; + +static int attach_tc_prog(struct bpf_tc_hook *hook, int fd) +{ + DECLARE_LIBBPF_OPTS(bpf_tc_opts, opts, .handle = 1, .priority = 1, .prog_fd = fd); + int ret; + + ret = bpf_tc_hook_create(hook); + if (!ASSERT_OK(ret, "create tc hook")) + return ret; + + ret = bpf_tc_attach(hook, &opts); + if (!ASSERT_OK(ret, "bpf_tc_attach")) { + bpf_tc_hook_destroy(hook); + return ret; + } + + return 0; +} + +/* The maximum permissible size is: PAGE_SIZE - sizeof(struct xdp_page_head) - + * SKB_DATA_ALIGN(sizeof(struct skb_shared_info)) - XDP_PACKET_HEADROOM = + * 3408 bytes for 64-byte cacheline and 3216 for 256-byte one. + */ +#if defined(__s390x__) +#define MAX_PKT_SIZE 3216 +#else +#define MAX_PKT_SIZE 3408 +#endif +static void test_max_pkt_size(int fd) +{ + char data[MAX_PKT_SIZE + 1] = {}; + int err; + DECLARE_LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &data, + .data_size_in = MAX_PKT_SIZE, + .flags = BPF_F_TEST_XDP_LIVE_FRAMES, + .repeat = 1, + ); + err = bpf_prog_test_run_opts(fd, &opts); + ASSERT_OK(err, "prog_run_max_size"); + + opts.data_size_in += 1; + err = bpf_prog_test_run_opts(fd, &opts); + ASSERT_EQ(err, -EINVAL, "prog_run_too_big"); +} + +#define NUM_PKTS 10000 +void test_xdp_do_redirect(void) +{ + int err, xdp_prog_fd, tc_prog_fd, ifindex_src, ifindex_dst; + char data[sizeof(pkt_udp) + sizeof(__u64)]; + struct test_xdp_do_redirect *skel = NULL; + struct nstoken *nstoken = NULL; + struct bpf_link *link; + LIBBPF_OPTS(bpf_xdp_query_opts, query_opts); + struct xdp_md ctx_in = { .data = sizeof(__u64), + .data_end = sizeof(data) }; + DECLARE_LIBBPF_OPTS(bpf_test_run_opts, opts, + .data_in = &data, + .data_size_in = sizeof(data), + .ctx_in = &ctx_in, + .ctx_size_in = sizeof(ctx_in), + .flags = BPF_F_TEST_XDP_LIVE_FRAMES, + .repeat = NUM_PKTS, + .batch_size = 64, + ); + DECLARE_LIBBPF_OPTS(bpf_tc_hook, tc_hook, + .attach_point = BPF_TC_INGRESS); + + memcpy(&data[sizeof(__u64)], &pkt_udp, sizeof(pkt_udp)); + ((__u32 *)data)[0] = 0x42; /* metadata test value */ + ((__u32 *)data)[1] = 0; + + skel = test_xdp_do_redirect__open(); + if (!ASSERT_OK_PTR(skel, "skel")) + return; + + /* The XDP program we run with bpf_prog_run() will cycle through all + * three xmit (PASS/TX/REDIRECT) return codes starting from above, and + * ending up with PASS, so we should end up with two packets on the dst + * iface and NUM_PKTS-2 in the TC hook. We match the packets on the UDP + * payload. + */ + SYS(out, "ip netns add testns"); + nstoken = open_netns("testns"); + if (!ASSERT_OK_PTR(nstoken, "setns")) + goto out; + + SYS(out, "ip link add veth_src type veth peer name veth_dst"); + SYS(out, "ip link set dev veth_src address 00:11:22:33:44:55"); + SYS(out, "ip link set dev veth_dst address 66:77:88:99:aa:bb"); + SYS(out, "ip link set dev veth_src up"); + SYS(out, "ip link set dev veth_dst up"); + SYS(out, "ip addr add dev veth_src fc00::1/64"); + SYS(out, "ip addr add dev veth_dst fc00::2/64"); + SYS(out, "ip neigh add fc00::2 dev veth_src lladdr 66:77:88:99:aa:bb"); + + /* We enable forwarding in the test namespace because that will cause + * the packets that go through the kernel stack (with XDP_PASS) to be + * forwarded back out the same interface (because of the packet dst + * combined with the interface addresses). When this happens, the + * regular forwarding path will end up going through the same + * veth_xdp_xmit() call as the XDP_REDIRECT code, which can cause a + * deadlock if it happens on the same CPU. There's a local_bh_disable() + * in the test_run code to prevent this, but an earlier version of the + * code didn't have this, so we keep the test behaviour to make sure the + * bug doesn't resurface. + */ + SYS(out, "sysctl -qw net.ipv6.conf.all.forwarding=1"); + + ifindex_src = if_nametoindex("veth_src"); + ifindex_dst = if_nametoindex("veth_dst"); + if (!ASSERT_NEQ(ifindex_src, 0, "ifindex_src") || + !ASSERT_NEQ(ifindex_dst, 0, "ifindex_dst")) + goto out; + + /* Check xdp features supported by veth driver */ + err = bpf_xdp_query(ifindex_src, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "veth_src bpf_xdp_query")) + goto out; + + if (!ASSERT_EQ(query_opts.feature_flags, + NETDEV_XDP_ACT_BASIC | NETDEV_XDP_ACT_REDIRECT | + NETDEV_XDP_ACT_RX_SG, + "veth_src query_opts.feature_flags")) + goto out; + + err = bpf_xdp_query(ifindex_dst, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "veth_dst bpf_xdp_query")) + goto out; + + if (!ASSERT_EQ(query_opts.feature_flags, + NETDEV_XDP_ACT_BASIC | NETDEV_XDP_ACT_REDIRECT | + NETDEV_XDP_ACT_RX_SG, + "veth_dst query_opts.feature_flags")) + goto out; + + /* Enable GRO */ + SYS(out, "ethtool -K veth_src gro on"); + SYS(out, "ethtool -K veth_dst gro on"); + + err = bpf_xdp_query(ifindex_src, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "veth_src bpf_xdp_query gro on")) + goto out; + + if (!ASSERT_EQ(query_opts.feature_flags, + NETDEV_XDP_ACT_BASIC | NETDEV_XDP_ACT_REDIRECT | + NETDEV_XDP_ACT_NDO_XMIT | NETDEV_XDP_ACT_RX_SG | + NETDEV_XDP_ACT_NDO_XMIT_SG, + "veth_src query_opts.feature_flags gro on")) + goto out; + + err = bpf_xdp_query(ifindex_dst, XDP_FLAGS_DRV_MODE, &query_opts); + if (!ASSERT_OK(err, "veth_dst bpf_xdp_query gro on")) + goto out; + + if (!ASSERT_EQ(query_opts.feature_flags, + NETDEV_XDP_ACT_BASIC | NETDEV_XDP_ACT_REDIRECT | + NETDEV_XDP_ACT_NDO_XMIT | NETDEV_XDP_ACT_RX_SG | + NETDEV_XDP_ACT_NDO_XMIT_SG, + "veth_dst query_opts.feature_flags gro on")) + goto out; + + memcpy(skel->rodata->expect_dst, &pkt_udp.eth.h_dest, ETH_ALEN); + skel->rodata->ifindex_out = ifindex_src; /* redirect back to the same iface */ + skel->rodata->ifindex_in = ifindex_src; + ctx_in.ingress_ifindex = ifindex_src; + tc_hook.ifindex = ifindex_src; + + if (!ASSERT_OK(test_xdp_do_redirect__load(skel), "load")) + goto out; + + link = bpf_program__attach_xdp(skel->progs.xdp_count_pkts, ifindex_dst); + if (!ASSERT_OK_PTR(link, "prog_attach")) + goto out; + skel->links.xdp_count_pkts = link; + + tc_prog_fd = bpf_program__fd(skel->progs.tc_count_pkts); + if (attach_tc_prog(&tc_hook, tc_prog_fd)) + goto out; + + xdp_prog_fd = bpf_program__fd(skel->progs.xdp_redirect); + err = bpf_prog_test_run_opts(xdp_prog_fd, &opts); + if (!ASSERT_OK(err, "prog_run")) + goto out_tc; + + /* wait for the packets to be flushed */ + kern_sync_rcu(); + + /* There will be one packet sent through XDP_REDIRECT and one through + * XDP_TX; these will show up on the XDP counting program, while the + * rest will be counted at the TC ingress hook (and the counting program + * resets the packet payload so they don't get counted twice even though + * they are re-xmited out the veth device + */ + ASSERT_EQ(skel->bss->pkts_seen_xdp, 2, "pkt_count_xdp"); + ASSERT_EQ(skel->bss->pkts_seen_zero, 2, "pkt_count_zero"); + ASSERT_EQ(skel->bss->pkts_seen_tc, NUM_PKTS - 2, "pkt_count_tc"); + + test_max_pkt_size(bpf_program__fd(skel->progs.xdp_count_pkts)); + +out_tc: + bpf_tc_hook_destroy(&tc_hook); +out: + if (nstoken) + close_netns(nstoken); + SYS_NOFAIL("ip netns del testns"); + test_xdp_do_redirect__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_info.c b/tools/testing/selftests/bpf/prog_tests/xdp_info.c index d2d7a283d72f..1dbddcab87a8 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_info.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_info.c @@ -4,23 +4,24 @@ #define IFINDEX_LO 1 -void test_xdp_info(void) +void serial_test_xdp_info(void) { __u32 len = sizeof(struct bpf_prog_info), duration = 0, prog_id; - const char *file = "./xdp_dummy.o"; + const char *file = "./xdp_dummy.bpf.o"; + LIBBPF_OPTS(bpf_xdp_query_opts, opts); struct bpf_prog_info info = {}; struct bpf_object *obj; int err, prog_fd; /* Get prog_id for XDP_ATTACHED_NONE mode */ - err = bpf_get_link_xdp_id(IFINDEX_LO, &prog_id, 0); + err = bpf_xdp_query_id(IFINDEX_LO, 0, &prog_id); if (CHECK(err, "get_xdp_none", "errno=%d\n", errno)) return; if (CHECK(prog_id, "prog_id_none", "unexpected prog_id=%u\n", prog_id)) return; - err = bpf_get_link_xdp_id(IFINDEX_LO, &prog_id, XDP_FLAGS_SKB_MODE); + err = bpf_xdp_query_id(IFINDEX_LO, XDP_FLAGS_SKB_MODE, &prog_id); if (CHECK(err, "get_xdp_none_skb", "errno=%d\n", errno)) return; if (CHECK(prog_id, "prog_id_none_skb", "unexpected prog_id=%u\n", @@ -29,40 +30,47 @@ void test_xdp_info(void) /* Setup prog */ - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); if (CHECK_FAIL(err)) return; - err = bpf_obj_get_info_by_fd(prog_fd, &info, &len); + err = bpf_prog_get_info_by_fd(prog_fd, &info, &len); if (CHECK(err, "get_prog_info", "errno=%d\n", errno)) goto out_close; - err = bpf_set_link_xdp_fd(IFINDEX_LO, prog_fd, XDP_FLAGS_SKB_MODE); + err = bpf_xdp_attach(IFINDEX_LO, prog_fd, XDP_FLAGS_SKB_MODE, NULL); if (CHECK(err, "set_xdp_skb", "errno=%d\n", errno)) goto out_close; /* Get prog_id for single prog mode */ - err = bpf_get_link_xdp_id(IFINDEX_LO, &prog_id, 0); + err = bpf_xdp_query_id(IFINDEX_LO, 0, &prog_id); if (CHECK(err, "get_xdp", "errno=%d\n", errno)) goto out; if (CHECK(prog_id != info.id, "prog_id", "prog_id not available\n")) goto out; - err = bpf_get_link_xdp_id(IFINDEX_LO, &prog_id, XDP_FLAGS_SKB_MODE); + err = bpf_xdp_query_id(IFINDEX_LO, XDP_FLAGS_SKB_MODE, &prog_id); if (CHECK(err, "get_xdp_skb", "errno=%d\n", errno)) goto out; if (CHECK(prog_id != info.id, "prog_id_skb", "prog_id not available\n")) goto out; - err = bpf_get_link_xdp_id(IFINDEX_LO, &prog_id, XDP_FLAGS_DRV_MODE); + err = bpf_xdp_query_id(IFINDEX_LO, XDP_FLAGS_DRV_MODE, &prog_id); if (CHECK(err, "get_xdp_drv", "errno=%d\n", errno)) goto out; if (CHECK(prog_id, "prog_id_drv", "unexpected prog_id=%u\n", prog_id)) goto out; + /* Check xdp features supported by lo device */ + opts.feature_flags = ~0; + err = bpf_xdp_query(IFINDEX_LO, XDP_FLAGS_DRV_MODE, &opts); + if (!ASSERT_OK(err, "bpf_xdp_query")) + goto out; + + ASSERT_EQ(opts.feature_flags, 0, "opts.feature_flags"); out: - bpf_set_link_xdp_fd(IFINDEX_LO, -1, 0); + bpf_xdp_detach(IFINDEX_LO, 0, NULL); out_close: bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_link.c b/tools/testing/selftests/bpf/prog_tests/xdp_link.c index 6f814999b395..e7e9f3c22edf 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_link.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_link.c @@ -6,96 +6,96 @@ #define IFINDEX_LO 1 -void test_xdp_link(void) +void serial_test_xdp_link(void) { - __u32 duration = 0, id1, id2, id0 = 0, prog_fd1, prog_fd2, err; - DECLARE_LIBBPF_OPTS(bpf_xdp_set_link_opts, opts, .old_fd = -1); struct test_xdp_link *skel1 = NULL, *skel2 = NULL; + __u32 id1, id2, id0 = 0, prog_fd1, prog_fd2; + LIBBPF_OPTS(bpf_xdp_attach_opts, opts); struct bpf_link_info link_info; struct bpf_prog_info prog_info; struct bpf_link *link; + int err; __u32 link_info_len = sizeof(link_info); __u32 prog_info_len = sizeof(prog_info); skel1 = test_xdp_link__open_and_load(); - if (CHECK(!skel1, "skel_load", "skeleton open and load failed\n")) + if (!ASSERT_OK_PTR(skel1, "skel_load")) goto cleanup; prog_fd1 = bpf_program__fd(skel1->progs.xdp_handler); skel2 = test_xdp_link__open_and_load(); - if (CHECK(!skel2, "skel_load", "skeleton open and load failed\n")) + if (!ASSERT_OK_PTR(skel2, "skel_load")) goto cleanup; prog_fd2 = bpf_program__fd(skel2->progs.xdp_handler); memset(&prog_info, 0, sizeof(prog_info)); - err = bpf_obj_get_info_by_fd(prog_fd1, &prog_info, &prog_info_len); - if (CHECK(err, "fd_info1", "failed %d\n", -errno)) + err = bpf_prog_get_info_by_fd(prog_fd1, &prog_info, &prog_info_len); + if (!ASSERT_OK(err, "fd_info1")) goto cleanup; id1 = prog_info.id; memset(&prog_info, 0, sizeof(prog_info)); - err = bpf_obj_get_info_by_fd(prog_fd2, &prog_info, &prog_info_len); - if (CHECK(err, "fd_info2", "failed %d\n", -errno)) + err = bpf_prog_get_info_by_fd(prog_fd2, &prog_info, &prog_info_len); + if (!ASSERT_OK(err, "fd_info2")) goto cleanup; id2 = prog_info.id; /* set initial prog attachment */ - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, prog_fd1, XDP_FLAGS_REPLACE, &opts); - if (CHECK(err, "fd_attach", "initial prog attach failed: %d\n", err)) + err = bpf_xdp_attach(IFINDEX_LO, prog_fd1, XDP_FLAGS_REPLACE, &opts); + if (!ASSERT_OK(err, "fd_attach")) goto cleanup; /* validate prog ID */ - err = bpf_get_link_xdp_id(IFINDEX_LO, &id0, 0); - CHECK(err || id0 != id1, "id1_check", - "loaded prog id %u != id1 %u, err %d", id0, id1, err); + err = bpf_xdp_query_id(IFINDEX_LO, 0, &id0); + if (!ASSERT_OK(err, "id1_check_err") || !ASSERT_EQ(id0, id1, "id1_check_val")) + goto cleanup; /* BPF link is not allowed to replace prog attachment */ link = bpf_program__attach_xdp(skel1->progs.xdp_handler, IFINDEX_LO); - if (CHECK(!IS_ERR(link), "link_attach_fail", "unexpected success\n")) { + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { bpf_link__destroy(link); /* best-effort detach prog */ - opts.old_fd = prog_fd1; - bpf_set_link_xdp_fd_opts(IFINDEX_LO, -1, XDP_FLAGS_REPLACE, &opts); + opts.old_prog_fd = prog_fd1; + bpf_xdp_detach(IFINDEX_LO, XDP_FLAGS_REPLACE, &opts); goto cleanup; } /* detach BPF program */ - opts.old_fd = prog_fd1; - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, -1, XDP_FLAGS_REPLACE, &opts); - if (CHECK(err, "prog_detach", "failed %d\n", err)) + opts.old_prog_fd = prog_fd1; + err = bpf_xdp_detach(IFINDEX_LO, XDP_FLAGS_REPLACE, &opts); + if (!ASSERT_OK(err, "prog_detach")) goto cleanup; /* now BPF link should attach successfully */ link = bpf_program__attach_xdp(skel1->progs.xdp_handler, IFINDEX_LO); - if (CHECK(IS_ERR(link), "link_attach", "failed: %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "link_attach")) goto cleanup; skel1->links.xdp_handler = link; /* validate prog ID */ - err = bpf_get_link_xdp_id(IFINDEX_LO, &id0, 0); - if (CHECK(err || id0 != id1, "id1_check", - "loaded prog id %u != id1 %u, err %d", id0, id1, err)) + err = bpf_xdp_query_id(IFINDEX_LO, 0, &id0); + if (!ASSERT_OK(err, "id1_check_err") || !ASSERT_EQ(id0, id1, "id1_check_val")) goto cleanup; /* BPF prog attach is not allowed to replace BPF link */ - opts.old_fd = prog_fd1; - err = bpf_set_link_xdp_fd_opts(IFINDEX_LO, prog_fd2, XDP_FLAGS_REPLACE, &opts); - if (CHECK(!err, "prog_attach_fail", "unexpected success\n")) + opts.old_prog_fd = prog_fd1; + err = bpf_xdp_attach(IFINDEX_LO, prog_fd2, XDP_FLAGS_REPLACE, &opts); + if (!ASSERT_ERR(err, "prog_attach_fail")) goto cleanup; /* Can't force-update when BPF link is active */ - err = bpf_set_link_xdp_fd(IFINDEX_LO, prog_fd2, 0); - if (CHECK(!err, "prog_update_fail", "unexpected success\n")) + err = bpf_xdp_attach(IFINDEX_LO, prog_fd2, 0, NULL); + if (!ASSERT_ERR(err, "prog_update_fail")) goto cleanup; /* Can't force-detach when BPF link is active */ - err = bpf_set_link_xdp_fd(IFINDEX_LO, -1, 0); - if (CHECK(!err, "prog_detach_fail", "unexpected success\n")) + err = bpf_xdp_detach(IFINDEX_LO, 0, NULL); + if (!ASSERT_ERR(err, "prog_detach_fail")) goto cleanup; /* BPF link is not allowed to replace another BPF link */ link = bpf_program__attach_xdp(skel2->progs.xdp_handler, IFINDEX_LO); - if (CHECK(!IS_ERR(link), "link_attach_fail", "unexpected success\n")) { + if (!ASSERT_ERR_PTR(link, "link_attach_should_fail")) { bpf_link__destroy(link); goto cleanup; } @@ -105,45 +105,46 @@ void test_xdp_link(void) /* new link attach should succeed */ link = bpf_program__attach_xdp(skel2->progs.xdp_handler, IFINDEX_LO); - if (CHECK(IS_ERR(link), "link_attach", "failed: %ld\n", PTR_ERR(link))) + if (!ASSERT_OK_PTR(link, "link_attach")) goto cleanup; skel2->links.xdp_handler = link; - err = bpf_get_link_xdp_id(IFINDEX_LO, &id0, 0); - if (CHECK(err || id0 != id2, "id2_check", - "loaded prog id %u != id2 %u, err %d", id0, id1, err)) + err = bpf_xdp_query_id(IFINDEX_LO, 0, &id0); + if (!ASSERT_OK(err, "id2_check_err") || !ASSERT_EQ(id0, id2, "id2_check_val")) goto cleanup; /* updating program under active BPF link works as expected */ err = bpf_link__update_program(link, skel1->progs.xdp_handler); - if (CHECK(err, "link_upd", "failed: %d\n", err)) + if (!ASSERT_OK(err, "link_upd")) goto cleanup; memset(&link_info, 0, sizeof(link_info)); - err = bpf_obj_get_info_by_fd(bpf_link__fd(link), &link_info, &link_info_len); - if (CHECK(err, "link_info", "failed: %d\n", err)) + err = bpf_link_get_info_by_fd(bpf_link__fd(link), + &link_info, &link_info_len); + if (!ASSERT_OK(err, "link_info")) goto cleanup; - CHECK(link_info.type != BPF_LINK_TYPE_XDP, "link_type", - "got %u != exp %u\n", link_info.type, BPF_LINK_TYPE_XDP); - CHECK(link_info.prog_id != id1, "link_prog_id", - "got %u != exp %u\n", link_info.prog_id, id1); - CHECK(link_info.xdp.ifindex != IFINDEX_LO, "link_ifindex", - "got %u != exp %u\n", link_info.xdp.ifindex, IFINDEX_LO); + ASSERT_EQ(link_info.type, BPF_LINK_TYPE_XDP, "link_type"); + ASSERT_EQ(link_info.prog_id, id1, "link_prog_id"); + ASSERT_EQ(link_info.xdp.ifindex, IFINDEX_LO, "link_ifindex"); + + /* updating program under active BPF link with different type fails */ + err = bpf_link__update_program(link, skel1->progs.tc_handler); + if (!ASSERT_ERR(err, "link_upd_invalid")) + goto cleanup; err = bpf_link__detach(link); - if (CHECK(err, "link_detach", "failed %d\n", err)) + if (!ASSERT_OK(err, "link_detach")) goto cleanup; memset(&link_info, 0, sizeof(link_info)); - err = bpf_obj_get_info_by_fd(bpf_link__fd(link), &link_info, &link_info_len); - if (CHECK(err, "link_info", "failed: %d\n", err)) - goto cleanup; - CHECK(link_info.prog_id != id1, "link_prog_id", - "got %u != exp %u\n", link_info.prog_id, id1); + err = bpf_link_get_info_by_fd(bpf_link__fd(link), + &link_info, &link_info_len); + + ASSERT_OK(err, "link_info"); + ASSERT_EQ(link_info.prog_id, id1, "link_prog_id"); /* ifindex should be zeroed out */ - CHECK(link_info.xdp.ifindex != 0, "link_ifindex", - "got %u != exp %u\n", link_info.xdp.ifindex, 0); + ASSERT_EQ(link_info.xdp.ifindex, 0, "link_ifindex"); cleanup: test_xdp_link__destroy(skel1); diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_metadata.c b/tools/testing/selftests/bpf/prog_tests/xdp_metadata.c new file mode 100644 index 000000000000..f76b5d67a3ee --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xdp_metadata.c @@ -0,0 +1,541 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <test_progs.h> +#include <network_helpers.h> +#include "xdp_metadata.skel.h" +#include "xdp_metadata2.skel.h" +#include "xdp_metadata.h" +#include "xsk.h" + +#include <bpf/btf.h> +#include <linux/errqueue.h> +#include <linux/if_link.h> +#include <linux/net_tstamp.h> +#include <linux/udp.h> +#include <sys/mman.h> +#include <net/if.h> +#include <poll.h> + +#define TX_NAME "veTX" +#define RX_NAME "veRX" + +#define UDP_PAYLOAD_BYTES 4 + +#define UDP_SOURCE_PORT 1234 +#define AF_XDP_CONSUMER_PORT 8080 + +#define UMEM_NUM 16 +#define UMEM_FRAME_SIZE XSK_UMEM__DEFAULT_FRAME_SIZE +#define UMEM_SIZE (UMEM_FRAME_SIZE * UMEM_NUM) +#define XDP_FLAGS XDP_FLAGS_DRV_MODE +#define QUEUE_ID 0 + +#define TX_ADDR "10.0.0.1" +#define RX_ADDR "10.0.0.2" +#define PREFIX_LEN "8" +#define FAMILY AF_INET +#define TX_NETNS_NAME "xdp_metadata_tx" +#define RX_NETNS_NAME "xdp_metadata_rx" +#define TX_MAC "00:00:00:00:00:01" +#define RX_MAC "00:00:00:00:00:02" + +#define VLAN_ID 59 +#define VLAN_PROTO "802.1Q" +#define VLAN_PID htons(ETH_P_8021Q) +#define TX_NAME_VLAN TX_NAME "." TO_STR(VLAN_ID) + +#define XDP_RSS_TYPE_L4 BIT(3) +#define VLAN_VID_MASK 0xfff + +struct xsk { + void *umem_area; + struct xsk_umem *umem; + struct xsk_ring_prod fill; + struct xsk_ring_cons comp; + struct xsk_ring_prod tx; + struct xsk_ring_cons rx; + struct xsk_socket *socket; +}; + +static int open_xsk(int ifindex, struct xsk *xsk) +{ + int mmap_flags = MAP_PRIVATE | MAP_ANONYMOUS | MAP_NORESERVE; + const struct xsk_socket_config socket_config = { + .rx_size = XSK_RING_PROD__DEFAULT_NUM_DESCS, + .tx_size = XSK_RING_PROD__DEFAULT_NUM_DESCS, + .bind_flags = XDP_COPY, + }; + const struct xsk_umem_config umem_config = { + .fill_size = XSK_RING_PROD__DEFAULT_NUM_DESCS, + .comp_size = XSK_RING_CONS__DEFAULT_NUM_DESCS, + .frame_size = XSK_UMEM__DEFAULT_FRAME_SIZE, + .flags = XDP_UMEM_UNALIGNED_CHUNK_FLAG | XDP_UMEM_TX_SW_CSUM, + .tx_metadata_len = sizeof(struct xsk_tx_metadata), + }; + __u32 idx; + u64 addr; + int ret; + int i; + + xsk->umem_area = mmap(NULL, UMEM_SIZE, PROT_READ | PROT_WRITE, mmap_flags, -1, 0); + if (!ASSERT_NEQ(xsk->umem_area, MAP_FAILED, "mmap")) + return -1; + + ret = xsk_umem__create(&xsk->umem, + xsk->umem_area, UMEM_SIZE, + &xsk->fill, + &xsk->comp, + &umem_config); + if (!ASSERT_OK(ret, "xsk_umem__create")) + return ret; + + ret = xsk_socket__create(&xsk->socket, ifindex, QUEUE_ID, + xsk->umem, + &xsk->rx, + &xsk->tx, + &socket_config); + if (!ASSERT_OK(ret, "xsk_socket__create")) + return ret; + + /* First half of umem is for TX. This way address matches 1-to-1 + * to the completion queue index. + */ + + for (i = 0; i < UMEM_NUM / 2; i++) { + addr = i * UMEM_FRAME_SIZE; + printf("%p: tx_desc[%d] -> %lx\n", xsk, i, addr); + } + + /* Second half of umem is for RX. */ + + ret = xsk_ring_prod__reserve(&xsk->fill, UMEM_NUM / 2, &idx); + if (!ASSERT_EQ(UMEM_NUM / 2, ret, "xsk_ring_prod__reserve")) + return ret; + if (!ASSERT_EQ(idx, 0, "fill idx != 0")) + return -1; + + for (i = 0; i < UMEM_NUM / 2; i++) { + addr = (UMEM_NUM / 2 + i) * UMEM_FRAME_SIZE; + printf("%p: rx_desc[%d] -> %lx\n", xsk, i, addr); + *xsk_ring_prod__fill_addr(&xsk->fill, i) = addr; + } + xsk_ring_prod__submit(&xsk->fill, ret); + + return 0; +} + +static void close_xsk(struct xsk *xsk) +{ + if (xsk->umem) + xsk_umem__delete(xsk->umem); + if (xsk->socket) + xsk_socket__delete(xsk->socket); + munmap(xsk->umem_area, UMEM_SIZE); +} + +static void ip_csum(struct iphdr *iph) +{ + __u32 sum = 0; + __u16 *p; + int i; + + iph->check = 0; + p = (void *)iph; + for (i = 0; i < sizeof(*iph) / sizeof(*p); i++) + sum += p[i]; + + while (sum >> 16) + sum = (sum & 0xffff) + (sum >> 16); + + iph->check = ~sum; +} + +static int generate_packet(struct xsk *xsk, __u16 dst_port) +{ + struct xsk_tx_metadata *meta; + struct xdp_desc *tx_desc; + struct udphdr *udph; + struct ethhdr *eth; + struct iphdr *iph; + void *data; + __u32 idx; + int ret; + + ret = xsk_ring_prod__reserve(&xsk->tx, 1, &idx); + if (!ASSERT_EQ(ret, 1, "xsk_ring_prod__reserve")) + return -1; + + tx_desc = xsk_ring_prod__tx_desc(&xsk->tx, idx); + tx_desc->addr = idx % (UMEM_NUM / 2) * UMEM_FRAME_SIZE + sizeof(struct xsk_tx_metadata); + printf("%p: tx_desc[%u]->addr=%llx\n", xsk, idx, tx_desc->addr); + data = xsk_umem__get_data(xsk->umem_area, tx_desc->addr); + + meta = data - sizeof(struct xsk_tx_metadata); + memset(meta, 0, sizeof(*meta)); + meta->flags = XDP_TXMD_FLAGS_TIMESTAMP; + + eth = data; + iph = (void *)(eth + 1); + udph = (void *)(iph + 1); + + memcpy(eth->h_dest, "\x00\x00\x00\x00\x00\x02", ETH_ALEN); + memcpy(eth->h_source, "\x00\x00\x00\x00\x00\x01", ETH_ALEN); + eth->h_proto = htons(ETH_P_IP); + + iph->version = 0x4; + iph->ihl = 0x5; + iph->tos = 0x9; + iph->tot_len = htons(sizeof(*iph) + sizeof(*udph) + UDP_PAYLOAD_BYTES); + iph->id = 0; + iph->frag_off = 0; + iph->ttl = 0; + iph->protocol = IPPROTO_UDP; + ASSERT_EQ(inet_pton(FAMILY, TX_ADDR, &iph->saddr), 1, "inet_pton(TX_ADDR)"); + ASSERT_EQ(inet_pton(FAMILY, RX_ADDR, &iph->daddr), 1, "inet_pton(RX_ADDR)"); + ip_csum(iph); + + udph->source = htons(UDP_SOURCE_PORT); + udph->dest = htons(dst_port); + udph->len = htons(sizeof(*udph) + UDP_PAYLOAD_BYTES); + udph->check = ~csum_tcpudp_magic(iph->saddr, iph->daddr, + ntohs(udph->len), IPPROTO_UDP, 0); + + memset(udph + 1, 0xAA, UDP_PAYLOAD_BYTES); + + meta->flags |= XDP_TXMD_FLAGS_CHECKSUM; + meta->request.csum_start = sizeof(*eth) + sizeof(*iph); + meta->request.csum_offset = offsetof(struct udphdr, check); + + tx_desc->len = sizeof(*eth) + sizeof(*iph) + sizeof(*udph) + UDP_PAYLOAD_BYTES; + tx_desc->options |= XDP_TX_METADATA; + xsk_ring_prod__submit(&xsk->tx, 1); + + ret = sendto(xsk_socket__fd(xsk->socket), NULL, 0, MSG_DONTWAIT, NULL, 0); + if (!ASSERT_GE(ret, 0, "sendto")) + return ret; + + return 0; +} + +static int generate_packet_inet(void) +{ + char udp_payload[UDP_PAYLOAD_BYTES]; + struct sockaddr_in rx_addr; + int sock_fd, err = 0; + + /* Build a packet */ + memset(udp_payload, 0xAA, UDP_PAYLOAD_BYTES); + rx_addr.sin_addr.s_addr = inet_addr(RX_ADDR); + rx_addr.sin_family = AF_INET; + rx_addr.sin_port = htons(AF_XDP_CONSUMER_PORT); + + sock_fd = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP); + if (!ASSERT_GE(sock_fd, 0, "socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP)")) + return sock_fd; + + err = sendto(sock_fd, udp_payload, UDP_PAYLOAD_BYTES, MSG_DONTWAIT, + (void *)&rx_addr, sizeof(rx_addr)); + ASSERT_GE(err, 0, "sendto"); + + close(sock_fd); + return err; +} + +static void complete_tx(struct xsk *xsk) +{ + struct xsk_tx_metadata *meta; + __u64 addr; + void *data; + __u32 idx; + + if (ASSERT_EQ(xsk_ring_cons__peek(&xsk->comp, 1, &idx), 1, "xsk_ring_cons__peek")) { + addr = *xsk_ring_cons__comp_addr(&xsk->comp, idx); + + printf("%p: complete tx idx=%u addr=%llx\n", xsk, idx, addr); + + data = xsk_umem__get_data(xsk->umem_area, addr); + meta = data - sizeof(struct xsk_tx_metadata); + + ASSERT_NEQ(meta->completion.tx_timestamp, 0, "tx_timestamp"); + + xsk_ring_cons__release(&xsk->comp, 1); + } +} + +static void refill_rx(struct xsk *xsk, __u64 addr) +{ + __u32 idx; + + if (ASSERT_EQ(xsk_ring_prod__reserve(&xsk->fill, 1, &idx), 1, "xsk_ring_prod__reserve")) { + printf("%p: complete idx=%u addr=%llx\n", xsk, idx, addr); + *xsk_ring_prod__fill_addr(&xsk->fill, idx) = addr; + xsk_ring_prod__submit(&xsk->fill, 1); + } +} + +static int verify_xsk_metadata(struct xsk *xsk, bool sent_from_af_xdp) +{ + const struct xdp_desc *rx_desc; + struct pollfd fds = {}; + struct xdp_meta *meta; + struct udphdr *udph; + struct ethhdr *eth; + struct iphdr *iph; + __u64 comp_addr; + void *data; + __u64 addr; + __u32 idx = 0; + int ret; + + ret = recvfrom(xsk_socket__fd(xsk->socket), NULL, 0, MSG_DONTWAIT, NULL, NULL); + if (!ASSERT_EQ(ret, 0, "recvfrom")) + return -1; + + fds.fd = xsk_socket__fd(xsk->socket); + fds.events = POLLIN; + + ret = poll(&fds, 1, 1000); + if (!ASSERT_GT(ret, 0, "poll")) + return -1; + + ret = xsk_ring_cons__peek(&xsk->rx, 1, &idx); + if (!ASSERT_EQ(ret, 1, "xsk_ring_cons__peek")) + return -2; + + rx_desc = xsk_ring_cons__rx_desc(&xsk->rx, idx); + comp_addr = xsk_umem__extract_addr(rx_desc->addr); + addr = xsk_umem__add_offset_to_addr(rx_desc->addr); + printf("%p: rx_desc[%u]->addr=%llx addr=%llx comp_addr=%llx\n", + xsk, idx, rx_desc->addr, addr, comp_addr); + data = xsk_umem__get_data(xsk->umem_area, addr); + + /* Make sure we got the packet offset correctly. */ + + eth = data; + ASSERT_EQ(eth->h_proto, htons(ETH_P_IP), "eth->h_proto"); + iph = (void *)(eth + 1); + ASSERT_EQ((int)iph->version, 4, "iph->version"); + udph = (void *)(iph + 1); + + /* custom metadata */ + + meta = data - sizeof(struct xdp_meta); + + if (!ASSERT_NEQ(meta->rx_timestamp, 0, "rx_timestamp")) + return -1; + + if (!ASSERT_NEQ(meta->rx_hash, 0, "rx_hash")) + return -1; + + if (!sent_from_af_xdp) { + if (!ASSERT_NEQ(meta->rx_hash_type & XDP_RSS_TYPE_L4, 0, "rx_hash_type")) + return -1; + + if (!ASSERT_EQ(meta->rx_vlan_tci & VLAN_VID_MASK, VLAN_ID, "rx_vlan_tci")) + return -1; + + if (!ASSERT_EQ(meta->rx_vlan_proto, VLAN_PID, "rx_vlan_proto")) + return -1; + goto done; + } + + ASSERT_EQ(meta->rx_hash_type, 0, "rx_hash_type"); + + /* checksum offload */ + ASSERT_EQ(udph->check, htons(0x721c), "csum"); + +done: + xsk_ring_cons__release(&xsk->rx, 1); + refill_rx(xsk, comp_addr); + + return 0; +} + +static void switch_ns_to_rx(struct nstoken **tok) +{ + close_netns(*tok); + *tok = open_netns(RX_NETNS_NAME); +} + +static void switch_ns_to_tx(struct nstoken **tok) +{ + close_netns(*tok); + *tok = open_netns(TX_NETNS_NAME); +} + +void test_xdp_metadata(void) +{ + struct xdp_metadata2 *bpf_obj2 = NULL; + struct xdp_metadata *bpf_obj = NULL; + struct bpf_program *new_prog, *prog; + struct nstoken *tok = NULL; + __u32 queue_id = QUEUE_ID; + struct bpf_map *prog_arr; + struct xsk tx_xsk = {}; + struct xsk rx_xsk = {}; + __u32 val, key = 0; + int retries = 10; + int rx_ifindex; + int tx_ifindex; + int sock_fd; + int ret; + + /* Setup new networking namespaces, with a veth pair. */ + SYS(out, "ip netns add " TX_NETNS_NAME); + SYS(out, "ip netns add " RX_NETNS_NAME); + + tok = open_netns(TX_NETNS_NAME); + if (!ASSERT_OK_PTR(tok, "setns")) + goto out; + SYS(out, "ip link add numtxqueues 1 numrxqueues 1 " TX_NAME + " type veth peer " RX_NAME " numtxqueues 1 numrxqueues 1"); + SYS(out, "ip link set " RX_NAME " netns " RX_NETNS_NAME); + + SYS(out, "ip link set dev " TX_NAME " address " TX_MAC); + SYS(out, "ip link set dev " TX_NAME " up"); + + SYS(out, "ip link add link " TX_NAME " " TX_NAME_VLAN + " type vlan proto " VLAN_PROTO " id " TO_STR(VLAN_ID)); + SYS(out, "ip link set dev " TX_NAME_VLAN " up"); + SYS(out, "ip addr add " TX_ADDR "/" PREFIX_LEN " dev " TX_NAME_VLAN); + + /* Avoid ARP calls */ + SYS(out, "ip -4 neigh add " RX_ADDR " lladdr " RX_MAC " dev " TX_NAME_VLAN); + + switch_ns_to_rx(&tok); + if (!ASSERT_OK_PTR(tok, "setns rx")) + goto out; + + SYS(out, "ip link set dev " RX_NAME " address " RX_MAC); + SYS(out, "ip link set dev " RX_NAME " up"); + SYS(out, "ip addr add " RX_ADDR "/" PREFIX_LEN " dev " RX_NAME); + + rx_ifindex = if_nametoindex(RX_NAME); + + /* Setup separate AF_XDP for RX interface. */ + + ret = open_xsk(rx_ifindex, &rx_xsk); + if (!ASSERT_OK(ret, "open_xsk(RX_NAME)")) + goto out; + + bpf_obj = xdp_metadata__open(); + if (!ASSERT_OK_PTR(bpf_obj, "open skeleton")) + goto out; + + prog = bpf_object__find_program_by_name(bpf_obj->obj, "rx"); + bpf_program__set_ifindex(prog, rx_ifindex); + bpf_program__set_flags(prog, BPF_F_XDP_DEV_BOUND_ONLY); + + if (!ASSERT_OK(xdp_metadata__load(bpf_obj), "load skeleton")) + goto out; + + /* Make sure we can't add dev-bound programs to prog maps. */ + prog_arr = bpf_object__find_map_by_name(bpf_obj->obj, "prog_arr"); + if (!ASSERT_OK_PTR(prog_arr, "no prog_arr map")) + goto out; + + val = bpf_program__fd(prog); + if (!ASSERT_ERR(bpf_map__update_elem(prog_arr, &key, sizeof(key), + &val, sizeof(val), BPF_ANY), + "update prog_arr")) + goto out; + + /* Attach BPF program to RX interface. */ + + ret = bpf_xdp_attach(rx_ifindex, + bpf_program__fd(bpf_obj->progs.rx), + XDP_FLAGS, NULL); + if (!ASSERT_GE(ret, 0, "bpf_xdp_attach")) + goto out; + + sock_fd = xsk_socket__fd(rx_xsk.socket); + ret = bpf_map_update_elem(bpf_map__fd(bpf_obj->maps.xsk), &queue_id, &sock_fd, 0); + if (!ASSERT_GE(ret, 0, "bpf_map_update_elem")) + goto out; + + switch_ns_to_tx(&tok); + if (!ASSERT_OK_PTR(tok, "setns tx")) + goto out; + + /* Setup separate AF_XDP for TX interface nad send packet to the RX socket. */ + tx_ifindex = if_nametoindex(TX_NAME); + ret = open_xsk(tx_ifindex, &tx_xsk); + if (!ASSERT_OK(ret, "open_xsk(TX_NAME)")) + goto out; + + if (!ASSERT_GE(generate_packet(&tx_xsk, AF_XDP_CONSUMER_PORT), 0, + "generate AF_XDP_CONSUMER_PORT")) + goto out; + + switch_ns_to_rx(&tok); + if (!ASSERT_OK_PTR(tok, "setns rx")) + goto out; + + /* Verify packet sent from AF_XDP has proper metadata. */ + if (!ASSERT_GE(verify_xsk_metadata(&rx_xsk, true), 0, + "verify_xsk_metadata")) + goto out; + + switch_ns_to_tx(&tok); + if (!ASSERT_OK_PTR(tok, "setns tx")) + goto out; + complete_tx(&tx_xsk); + + /* Now check metadata of packet, generated with network stack */ + if (!ASSERT_GE(generate_packet_inet(), 0, "generate UDP packet")) + goto out; + + switch_ns_to_rx(&tok); + if (!ASSERT_OK_PTR(tok, "setns rx")) + goto out; + + if (!ASSERT_GE(verify_xsk_metadata(&rx_xsk, false), 0, + "verify_xsk_metadata")) + goto out; + + /* Make sure freplace correctly picks up original bound device + * and doesn't crash. + */ + + bpf_obj2 = xdp_metadata2__open(); + if (!ASSERT_OK_PTR(bpf_obj2, "open skeleton")) + goto out; + + new_prog = bpf_object__find_program_by_name(bpf_obj2->obj, "freplace_rx"); + bpf_program__set_attach_target(new_prog, bpf_program__fd(prog), "rx"); + + if (!ASSERT_OK(xdp_metadata2__load(bpf_obj2), "load freplace skeleton")) + goto out; + + if (!ASSERT_OK(xdp_metadata2__attach(bpf_obj2), "attach freplace")) + goto out; + + switch_ns_to_tx(&tok); + if (!ASSERT_OK_PTR(tok, "setns tx")) + goto out; + + /* Send packet to trigger . */ + if (!ASSERT_GE(generate_packet(&tx_xsk, AF_XDP_CONSUMER_PORT), 0, + "generate freplace packet")) + goto out; + + switch_ns_to_rx(&tok); + if (!ASSERT_OK_PTR(tok, "setns rx")) + goto out; + + while (!retries--) { + if (bpf_obj2->bss->called) + break; + usleep(10); + } + ASSERT_GT(bpf_obj2->bss->called, 0, "not called"); + +out: + close_xsk(&rx_xsk); + close_xsk(&tx_xsk); + xdp_metadata2__destroy(bpf_obj2); + xdp_metadata__destroy(bpf_obj); + if (tok) + close_netns(tok); + SYS_NOFAIL("ip netns del " RX_NETNS_NAME); + SYS_NOFAIL("ip netns del " TX_NETNS_NAME); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_noinline.c b/tools/testing/selftests/bpf/prog_tests/xdp_noinline.c index f284f72158ef..92ef0aa50866 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_noinline.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_noinline.c @@ -1,11 +1,12 @@ // SPDX-License-Identifier: GPL-2.0 #include <test_progs.h> #include <network_helpers.h> +#include "test_xdp_noinline.skel.h" void test_xdp_noinline(void) { - const char *file = "./test_xdp_noinline.o"; unsigned int nr_cpus = bpf_num_possible_cpus(); + struct test_xdp_noinline *skel; struct vip key = {.protocol = 6}; struct vip_meta { __u32 flags; @@ -24,59 +25,49 @@ void test_xdp_noinline(void) __u8 flags; } real_def = {.dst = MAGIC_VAL}; __u32 ch_key = 11, real_num = 3; - __u32 duration, retval, size; - int err, i, prog_fd, map_fd; + int err, i; __u64 bytes = 0, pkts = 0; - struct bpf_object *obj; char buf[128]; u32 *magic = (u32 *)buf; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = &pkt_v4, + .data_size_in = sizeof(pkt_v4), + .data_out = buf, + .data_size_out = sizeof(buf), + .repeat = NUM_ITER, + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); - if (CHECK_FAIL(err)) + skel = test_xdp_noinline__open_and_load(); + if (!ASSERT_OK_PTR(skel, "skel_open_and_load")) return; - map_fd = bpf_find_map(__func__, obj, "vip_map"); - if (map_fd < 0) - goto out; - bpf_map_update_elem(map_fd, &key, &value, 0); + bpf_map_update_elem(bpf_map__fd(skel->maps.vip_map), &key, &value, 0); + bpf_map_update_elem(bpf_map__fd(skel->maps.ch_rings), &ch_key, &real_num, 0); + bpf_map_update_elem(bpf_map__fd(skel->maps.reals), &real_num, &real_def, 0); - map_fd = bpf_find_map(__func__, obj, "ch_rings"); - if (map_fd < 0) - goto out; - bpf_map_update_elem(map_fd, &ch_key, &real_num, 0); + err = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.balancer_ingress_v4), &topts); + ASSERT_OK(err, "ipv4 test_run"); + ASSERT_EQ(topts.retval, 1, "ipv4 test_run retval"); + ASSERT_EQ(topts.data_size_out, 54, "ipv4 test_run data_size_out"); + ASSERT_EQ(*magic, MAGIC_VAL, "ipv4 test_run magic"); - map_fd = bpf_find_map(__func__, obj, "reals"); - if (map_fd < 0) - goto out; - bpf_map_update_elem(map_fd, &real_num, &real_def, 0); + topts.data_in = &pkt_v6; + topts.data_size_in = sizeof(pkt_v6); + topts.data_out = buf; + topts.data_size_out = sizeof(buf); - err = bpf_prog_test_run(prog_fd, NUM_ITER, &pkt_v4, sizeof(pkt_v4), - buf, &size, &retval, &duration); - CHECK(err || retval != 1 || size != 54 || - *magic != MAGIC_VAL, "ipv4", - "err %d errno %d retval %d size %d magic %x\n", - err, errno, retval, size, *magic); + err = bpf_prog_test_run_opts(bpf_program__fd(skel->progs.balancer_ingress_v6), &topts); + ASSERT_OK(err, "ipv6 test_run"); + ASSERT_EQ(topts.retval, 1, "ipv6 test_run retval"); + ASSERT_EQ(topts.data_size_out, 74, "ipv6 test_run data_size_out"); + ASSERT_EQ(*magic, MAGIC_VAL, "ipv6 test_run magic"); - err = bpf_prog_test_run(prog_fd, NUM_ITER, &pkt_v6, sizeof(pkt_v6), - buf, &size, &retval, &duration); - CHECK(err || retval != 1 || size != 74 || - *magic != MAGIC_VAL, "ipv6", - "err %d errno %d retval %d size %d magic %x\n", - err, errno, retval, size, *magic); - - map_fd = bpf_find_map(__func__, obj, "stats"); - if (map_fd < 0) - goto out; - bpf_map_lookup_elem(map_fd, &stats_key, stats); + bpf_map_lookup_elem(bpf_map__fd(skel->maps.stats), &stats_key, stats); for (i = 0; i < nr_cpus; i++) { bytes += stats[i].bytes; pkts += stats[i].pkts; } - if (CHECK_FAIL(bytes != MAGIC_BYTES * NUM_ITER * 2 || - pkts != NUM_ITER * 2)) { - printf("test_xdp_noinline:FAIL:stats %lld %lld\n", - bytes, pkts); - } -out: - bpf_object__close(obj); + ASSERT_EQ(bytes, MAGIC_BYTES * NUM_ITER * 2, "stats bytes"); + ASSERT_EQ(pkts, NUM_ITER * 2, "stats pkts"); + test_xdp_noinline__destroy(skel); } diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_perf.c b/tools/testing/selftests/bpf/prog_tests/xdp_perf.c index 7185bee16fe4..ec5369f247cb 100644 --- a/tools/testing/selftests/bpf/prog_tests/xdp_perf.c +++ b/tools/testing/selftests/bpf/prog_tests/xdp_perf.c @@ -3,23 +3,26 @@ void test_xdp_perf(void) { - const char *file = "./xdp_dummy.o"; - __u32 duration, retval, size; + const char *file = "./xdp_dummy.bpf.o"; struct bpf_object *obj; char in[128], out[128]; int err, prog_fd; + LIBBPF_OPTS(bpf_test_run_opts, topts, + .data_in = in, + .data_size_in = sizeof(in), + .data_out = out, + .data_size_out = sizeof(out), + .repeat = 1000000, + ); - err = bpf_prog_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); + err = bpf_prog_test_load(file, BPF_PROG_TYPE_XDP, &obj, &prog_fd); if (CHECK_FAIL(err)) return; - err = bpf_prog_test_run(prog_fd, 1000000, &in[0], 128, - out, &size, &retval, &duration); - - CHECK(err || retval != XDP_PASS || size != 128, - "xdp-perf", - "err %d errno %d retval %d size %d\n", - err, errno, retval, size); + err = bpf_prog_test_run_opts(prog_fd, &topts); + ASSERT_OK(err, "test_run"); + ASSERT_EQ(topts.retval, XDP_PASS, "test_run retval"); + ASSERT_EQ(topts.data_size_out, 128, "test_run data_size_out"); bpf_object__close(obj); } diff --git a/tools/testing/selftests/bpf/prog_tests/xdp_synproxy.c b/tools/testing/selftests/bpf/prog_tests/xdp_synproxy.c new file mode 100644 index 000000000000..8b50a992d233 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xdp_synproxy.c @@ -0,0 +1,178 @@ +// SPDX-License-Identifier: LGPL-2.1 OR BSD-2-Clause +/* Copyright (c) 2022, NVIDIA CORPORATION & AFFILIATES. All rights reserved. */ + +#define _GNU_SOURCE +#include <test_progs.h> +#include <network_helpers.h> +#include <ctype.h> + +#define CMD_OUT_BUF_SIZE 1023 + +#define SYS_OUT(cmd, ...) ({ \ + char buf[1024]; \ + snprintf(buf, sizeof(buf), (cmd), ##__VA_ARGS__); \ + FILE *f = popen(buf, "r"); \ + if (!ASSERT_OK_PTR(f, buf)) \ + goto out; \ + f; \ +}) + +/* out must be at least `size * 4 + 1` bytes long */ +static void escape_str(char *out, const char *in, size_t size) +{ + static const char *hex = "0123456789ABCDEF"; + size_t i; + + for (i = 0; i < size; i++) { + if (isprint(in[i]) && in[i] != '\\' && in[i] != '\'') { + *out++ = in[i]; + } else { + *out++ = '\\'; + *out++ = 'x'; + *out++ = hex[(in[i] >> 4) & 0xf]; + *out++ = hex[in[i] & 0xf]; + } + } + *out++ = '\0'; +} + +static bool expect_str(char *buf, size_t size, const char *str, const char *name) +{ + static char escbuf_expected[CMD_OUT_BUF_SIZE * 4]; + static char escbuf_actual[CMD_OUT_BUF_SIZE * 4]; + static int duration = 0; + bool ok; + + ok = size == strlen(str) && !memcmp(buf, str, size); + + if (!ok) { + escape_str(escbuf_expected, str, strlen(str)); + escape_str(escbuf_actual, buf, size); + } + CHECK(!ok, name, "unexpected %s: actual '%s' != expected '%s'\n", + name, escbuf_actual, escbuf_expected); + + return ok; +} + +static void test_synproxy(bool xdp) +{ + int server_fd = -1, client_fd = -1, accept_fd = -1; + char *prog_id = NULL, *prog_id_end; + struct nstoken *ns = NULL; + FILE *ctrl_file = NULL; + char buf[CMD_OUT_BUF_SIZE]; + size_t size; + + SYS(out, "ip netns add synproxy"); + + SYS(out, "ip link add tmp0 type veth peer name tmp1"); + SYS(out, "ip link set tmp1 netns synproxy"); + SYS(out, "ip link set tmp0 up"); + SYS(out, "ip addr replace 198.18.0.1/24 dev tmp0"); + + /* When checksum offload is enabled, the XDP program sees wrong + * checksums and drops packets. + */ + SYS(out, "ethtool -K tmp0 tx off"); + if (xdp) + /* Workaround required for veth. */ + SYS(out, "ip link set tmp0 xdp object xdp_dummy.bpf.o section xdp 2> /dev/null"); + + ns = open_netns("synproxy"); + if (!ASSERT_OK_PTR(ns, "setns")) + goto out; + + SYS(out, "ip link set lo up"); + SYS(out, "ip link set tmp1 up"); + SYS(out, "ip addr replace 198.18.0.2/24 dev tmp1"); + SYS(out, "sysctl -w net.ipv4.tcp_syncookies=2"); + SYS(out, "sysctl -w net.ipv4.tcp_timestamps=1"); + SYS(out, "sysctl -w net.netfilter.nf_conntrack_tcp_loose=0"); + SYS(out, "iptables-legacy -t raw -I PREROUTING \ + -i tmp1 -p tcp -m tcp --syn --dport 8080 -j CT --notrack"); + SYS(out, "iptables-legacy -t filter -A INPUT \ + -i tmp1 -p tcp -m tcp --dport 8080 -m state --state INVALID,UNTRACKED \ + -j SYNPROXY --sack-perm --timestamp --wscale 7 --mss 1460"); + SYS(out, "iptables-legacy -t filter -A INPUT \ + -i tmp1 -m state --state INVALID -j DROP"); + + ctrl_file = SYS_OUT("./xdp_synproxy --iface tmp1 --ports 8080 \ + --single --mss4 1460 --mss6 1440 \ + --wscale 7 --ttl 64%s", xdp ? "" : " --tc"); + size = fread(buf, 1, sizeof(buf), ctrl_file); + pclose(ctrl_file); + if (!expect_str(buf, size, "Total SYNACKs generated: 0\n", + "initial SYNACKs")) + goto out; + + if (!xdp) { + ctrl_file = SYS_OUT("tc filter show dev tmp1 ingress"); + size = fread(buf, 1, sizeof(buf), ctrl_file); + pclose(ctrl_file); + prog_id = memmem(buf, size, " id ", 4); + if (!ASSERT_OK_PTR(prog_id, "find prog id")) + goto out; + prog_id += 4; + if (!ASSERT_LT(prog_id, buf + size, "find prog id begin")) + goto out; + prog_id_end = prog_id; + while (prog_id_end < buf + size && *prog_id_end >= '0' && + *prog_id_end <= '9') + prog_id_end++; + if (!ASSERT_LT(prog_id_end, buf + size, "find prog id end")) + goto out; + *prog_id_end = '\0'; + } + + server_fd = start_server(AF_INET, SOCK_STREAM, "198.18.0.2", 8080, 0); + if (!ASSERT_GE(server_fd, 0, "start_server")) + goto out; + + close_netns(ns); + ns = NULL; + + client_fd = connect_to_fd(server_fd, 10000); + if (!ASSERT_GE(client_fd, 0, "connect_to_fd")) + goto out; + + accept_fd = accept(server_fd, NULL, NULL); + if (!ASSERT_GE(accept_fd, 0, "accept")) + goto out; + + ns = open_netns("synproxy"); + if (!ASSERT_OK_PTR(ns, "setns")) + goto out; + + if (xdp) + ctrl_file = SYS_OUT("./xdp_synproxy --iface tmp1 --single"); + else + ctrl_file = SYS_OUT("./xdp_synproxy --prog %s --single", + prog_id); + size = fread(buf, 1, sizeof(buf), ctrl_file); + pclose(ctrl_file); + if (!expect_str(buf, size, "Total SYNACKs generated: 1\n", + "SYNACKs after connection")) + goto out; + +out: + if (accept_fd >= 0) + close(accept_fd); + if (client_fd >= 0) + close(client_fd); + if (server_fd >= 0) + close(server_fd); + if (ns) + close_netns(ns); + + SYS_NOFAIL("ip link del tmp0"); + SYS_NOFAIL("ip netns del synproxy"); +} + +void test_xdp_synproxy(void) +{ + if (test__start_subtest("xdp")) + test_synproxy(true); + if (test__start_subtest("tc")) + test_synproxy(false); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xdpwall.c b/tools/testing/selftests/bpf/prog_tests/xdpwall.c new file mode 100644 index 000000000000..4599154c8e9b --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xdpwall.c @@ -0,0 +1,15 @@ +// SPDX-License-Identifier: GPL-2.0 +/* Copyright (c) 2021 Facebook */ + +#include "test_progs.h" +#include "xdpwall.skel.h" + +void test_xdpwall(void) +{ + struct xdpwall *skel; + + skel = xdpwall__open_and_load(); + ASSERT_OK_PTR(skel, "Does LLVM have https://github.com/llvm/llvm-project/commit/ea72b0319d7b0f0c2fcf41d121afa5d031b319d5?"); + + xdpwall__destroy(skel); +} diff --git a/tools/testing/selftests/bpf/prog_tests/xfrm_info.c b/tools/testing/selftests/bpf/prog_tests/xfrm_info.c new file mode 100644 index 000000000000..d37f5394e199 --- /dev/null +++ b/tools/testing/selftests/bpf/prog_tests/xfrm_info.c @@ -0,0 +1,347 @@ +// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause + +/* + * Topology: + * --------- + * NS0 namespace | NS1 namespace | NS2 namespace + * | | + * +---------------+ | +---------------+ | + * | ipsec0 |---------| ipsec0 | | + * | 192.168.1.100 | | | 192.168.1.200 | | + * | if_id: bpf | | +---------------+ | + * +---------------+ | | + * | | | +---------------+ + * | | | | ipsec0 | + * \------------------------------------------| 192.168.1.200 | + * | | +---------------+ + * | | + * | | (overlay network) + * ------------------------------------------------------ + * | | (underlay network) + * +--------------+ | +--------------+ | + * | veth01 |----------| veth10 | | + * | 172.16.1.100 | | | 172.16.1.200 | | + * ---------------+ | +--------------+ | + * | | + * +--------------+ | | +--------------+ + * | veth02 |-----------------------------------| veth20 | + * | 172.16.2.100 | | | | 172.16.2.200 | + * +--------------+ | | +--------------+ + * + * + * Test Packet flow + * ----------- + * The tests perform 'ping 192.168.1.200' from the NS0 namespace: + * 1) request is routed to NS0 ipsec0 + * 2) NS0 ipsec0 tc egress BPF program is triggered and sets the if_id based + * on the requested value. This makes the ipsec0 device in external mode + * select the destination tunnel + * 3) ping reaches the other namespace (NS1 or NS2 based on which if_id was + * used) and response is sent + * 4) response is received on NS0 ipsec0, tc ingress program is triggered and + * records the response if_id + * 5) requested if_id is compared with received if_id + */ + +#include <net/if.h> +#include <linux/rtnetlink.h> +#include <linux/if_link.h> + +#include "test_progs.h" +#include "network_helpers.h" +#include "xfrm_info.skel.h" + +#define NS0 "xfrm_test_ns0" +#define NS1 "xfrm_test_ns1" +#define NS2 "xfrm_test_ns2" + +#define IF_ID_0_TO_1 1 +#define IF_ID_0_TO_2 2 +#define IF_ID_1 3 +#define IF_ID_2 4 + +#define IP4_ADDR_VETH01 "172.16.1.100" +#define IP4_ADDR_VETH10 "172.16.1.200" +#define IP4_ADDR_VETH02 "172.16.2.100" +#define IP4_ADDR_VETH20 "172.16.2.200" + +#define ESP_DUMMY_PARAMS \ + "proto esp aead 'rfc4106(gcm(aes))' " \ + "0xe4d8f4b4da1df18a3510b3781496daa82488b713 128 mode tunnel " + +static int attach_tc_prog(struct bpf_tc_hook *hook, int igr_fd, int egr_fd) +{ + LIBBPF_OPTS(bpf_tc_opts, opts1, .handle = 1, .priority = 1, + .prog_fd = igr_fd); + LIBBPF_OPTS(bpf_tc_opts, opts2, .handle = 1, .priority = 1, + .prog_fd = egr_fd); + int ret; + + ret = bpf_tc_hook_create(hook); + if (!ASSERT_OK(ret, "create tc hook")) + return ret; + + if (igr_fd >= 0) { + hook->attach_point = BPF_TC_INGRESS; + ret = bpf_tc_attach(hook, &opts1); + if (!ASSERT_OK(ret, "bpf_tc_attach")) { + bpf_tc_hook_destroy(hook); + return ret; + } + } + + if (egr_fd >= 0) { + hook->attach_point = BPF_TC_EGRESS; + ret = bpf_tc_attach(hook, &opts2); + if (!ASSERT_OK(ret, "bpf_tc_attach")) { + bpf_tc_hook_destroy(hook); + return ret; + } + } + + return 0; +} + +static void cleanup(void) +{ + SYS_NOFAIL("test -f /var/run/netns/" NS0 " && ip netns delete " NS0); + SYS_NOFAIL("test -f /var/run/netns/" NS1 " && ip netns delete " NS1); + SYS_NOFAIL("test -f /var/run/netns/" NS2 " && ip netns delete " NS2); +} + +static int config_underlay(void) +{ + SYS(fail, "ip netns add " NS0); + SYS(fail, "ip netns add " NS1); + SYS(fail, "ip netns add " NS2); + + /* NS0 <-> NS1 [veth01 <-> veth10] */ + SYS(fail, "ip link add veth01 netns " NS0 " type veth peer name veth10 netns " NS1); + SYS(fail, "ip -net " NS0 " addr add " IP4_ADDR_VETH01 "/24 dev veth01"); + SYS(fail, "ip -net " NS0 " link set dev veth01 up"); + SYS(fail, "ip -net " NS1 " addr add " IP4_ADDR_VETH10 "/24 dev veth10"); + SYS(fail, "ip -net " NS1 " link set dev veth10 up"); + + /* NS0 <-> NS2 [veth02 <-> veth20] */ + SYS(fail, "ip link add veth02 netns " NS0 " type veth peer name veth20 netns " NS2); + SYS(fail, "ip -net " NS0 " addr add " IP4_ADDR_VETH02 "/24 dev veth02"); + SYS(fail, "ip -net " NS0 " link set dev veth02 up"); + SYS(fail, "ip -net " NS2 " addr add " IP4_ADDR_VETH20 "/24 dev veth20"); + SYS(fail, "ip -net " NS2 " link set dev veth20 up"); + + return 0; +fail: + return -1; +} + +static int setup_xfrm_tunnel_ns(const char *ns, const char *ipv4_local, + const char *ipv4_remote, int if_id) +{ + /* State: local -> remote */ + SYS(fail, "ip -net %s xfrm state add src %s dst %s spi 1 " + ESP_DUMMY_PARAMS "if_id %d", ns, ipv4_local, ipv4_remote, if_id); + + /* State: local <- remote */ + SYS(fail, "ip -net %s xfrm state add src %s dst %s spi 1 " + ESP_DUMMY_PARAMS "if_id %d", ns, ipv4_remote, ipv4_local, if_id); + + /* Policy: local -> remote */ + SYS(fail, "ip -net %s xfrm policy add dir out src 0.0.0.0/0 dst 0.0.0.0/0 " + "if_id %d tmpl src %s dst %s proto esp mode tunnel if_id %d", ns, + if_id, ipv4_local, ipv4_remote, if_id); + + /* Policy: local <- remote */ + SYS(fail, "ip -net %s xfrm policy add dir in src 0.0.0.0/0 dst 0.0.0.0/0 " + "if_id %d tmpl src %s dst %s proto esp mode tunnel if_id %d", ns, + if_id, ipv4_remote, ipv4_local, if_id); + + return 0; +fail: + return -1; +} + +static int setup_xfrm_tunnel(const char *ns_a, const char *ns_b, + const char *ipv4_a, const char *ipv4_b, + int if_id_a, int if_id_b) +{ + return setup_xfrm_tunnel_ns(ns_a, ipv4_a, ipv4_b, if_id_a) || + setup_xfrm_tunnel_ns(ns_b, ipv4_b, ipv4_a, if_id_b); +} + +static struct rtattr *rtattr_add(struct nlmsghdr *nh, unsigned short type, + unsigned short len) +{ + struct rtattr *rta = + (struct rtattr *)((uint8_t *)nh + RTA_ALIGN(nh->nlmsg_len)); + rta->rta_type = type; + rta->rta_len = RTA_LENGTH(len); + nh->nlmsg_len = RTA_ALIGN(nh->nlmsg_len) + RTA_ALIGN(rta->rta_len); + return rta; +} + +static struct rtattr *rtattr_add_str(struct nlmsghdr *nh, unsigned short type, + const char *s) +{ + struct rtattr *rta = rtattr_add(nh, type, strlen(s)); + + memcpy(RTA_DATA(rta), s, strlen(s)); + return rta; +} + +static struct rtattr *rtattr_begin(struct nlmsghdr *nh, unsigned short type) +{ + return rtattr_add(nh, type, 0); +} + +static void rtattr_end(struct nlmsghdr *nh, struct rtattr *attr) +{ + uint8_t *end = (uint8_t *)nh + nh->nlmsg_len; + + attr->rta_len = end - (uint8_t *)attr; +} + +static int setup_xfrmi_external_dev(const char *ns) +{ + struct { + struct nlmsghdr nh; + struct ifinfomsg info; + unsigned char data[128]; + } req; + struct rtattr *link_info, *info_data; + struct nstoken *nstoken; + int ret = -1, sock = -1; + struct nlmsghdr *nh; + + memset(&req, 0, sizeof(req)); + nh = &req.nh; + nh->nlmsg_len = NLMSG_LENGTH(sizeof(req.info)); + nh->nlmsg_type = RTM_NEWLINK; + nh->nlmsg_flags |= NLM_F_CREATE | NLM_F_REQUEST; + + rtattr_add_str(nh, IFLA_IFNAME, "ipsec0"); + link_info = rtattr_begin(nh, IFLA_LINKINFO); + rtattr_add_str(nh, IFLA_INFO_KIND, "xfrm"); + info_data = rtattr_begin(nh, IFLA_INFO_DATA); + rtattr_add(nh, IFLA_XFRM_COLLECT_METADATA, 0); + rtattr_end(nh, info_data); + rtattr_end(nh, link_info); + + nstoken = open_netns(ns); + if (!ASSERT_OK_PTR(nstoken, "setns")) + goto done; + + sock = socket(AF_NETLINK, SOCK_RAW | SOCK_CLOEXEC, NETLINK_ROUTE); + if (!ASSERT_GE(sock, 0, "netlink socket")) + goto done; + ret = send(sock, nh, nh->nlmsg_len, 0); + if (!ASSERT_EQ(ret, nh->nlmsg_len, "netlink send length")) + goto done; + + ret = 0; +done: + if (sock != -1) + close(sock); + if (nstoken) + close_netns(nstoken); + return ret; +} + +static int config_overlay(void) +{ + if (setup_xfrm_tunnel(NS0, NS1, IP4_ADDR_VETH01, IP4_ADDR_VETH10, + IF_ID_0_TO_1, IF_ID_1)) + goto fail; + if (setup_xfrm_tunnel(NS0, NS2, IP4_ADDR_VETH02, IP4_ADDR_VETH20, + IF_ID_0_TO_2, IF_ID_2)) + goto fail; + + /* Older iproute2 doesn't support this option */ + if (!ASSERT_OK(setup_xfrmi_external_dev(NS0), "xfrmi")) + goto fail; + + SYS(fail, "ip -net " NS0 " addr add 192.168.1.100/24 dev ipsec0"); + SYS(fail, "ip -net " NS0 " link set dev ipsec0 up"); + + SYS(fail, "ip -net " NS1 " link add ipsec0 type xfrm if_id %d", IF_ID_1); + SYS(fail, "ip -net " NS1 " addr add 192.168.1.200/24 dev ipsec0"); + SYS(fail, "ip -net " NS1 " link set dev ipsec0 up"); + + SYS(fail, "ip -net " NS2 " link add ipsec0 type xfrm if_id %d", IF_ID_2); + SYS(fail, "ip -net " NS2 " addr add 192.168.1.200/24 dev ipsec0"); + SYS(fail, "ip -net " NS2 " link set dev ipsec0 up"); + + return 0; +fail: + return -1; +} + +static int test_xfrm_ping(struct xfrm_info *skel, u32 if_id) +{ + skel->bss->req_if_id = if_id; + + SYS(fail, "ping -i 0.01 -c 3 -w 10 -q 192.168.1.200 > /dev/null"); + + if (!ASSERT_EQ(skel->bss->resp_if_id, if_id, "if_id")) + goto fail; + + return 0; +fail: + return -1; +} + +static void _test_xfrm_info(void) +{ + LIBBPF_OPTS(bpf_tc_hook, tc_hook, .attach_point = BPF_TC_INGRESS); + int get_xfrm_info_prog_fd, set_xfrm_info_prog_fd; + struct nstoken *nstoken = NULL; + struct xfrm_info *skel; + int ifindex; + + /* load and attach bpf progs to ipsec dev tc hook point */ + skel = xfrm_info__open_and_load(); + if (!ASSERT_OK_PTR(skel, "xfrm_info__open_and_load")) + goto done; + nstoken = open_netns(NS0); + if (!ASSERT_OK_PTR(nstoken, "setns " NS0)) + goto done; + ifindex = if_nametoindex("ipsec0"); + if (!ASSERT_NEQ(ifindex, 0, "ipsec0 ifindex")) + goto done; + tc_hook.ifindex = ifindex; + set_xfrm_info_prog_fd = bpf_program__fd(skel->progs.set_xfrm_info); + get_xfrm_info_prog_fd = bpf_program__fd(skel->progs.get_xfrm_info); + if (!ASSERT_GE(set_xfrm_info_prog_fd, 0, "bpf_program__fd")) + goto done; + if (!ASSERT_GE(get_xfrm_info_prog_fd, 0, "bpf_program__fd")) + goto done; + if (attach_tc_prog(&tc_hook, get_xfrm_info_prog_fd, + set_xfrm_info_prog_fd)) + goto done; + + /* perform test */ + if (!ASSERT_EQ(test_xfrm_ping(skel, IF_ID_0_TO_1), 0, "ping " NS1)) + goto done; + if (!ASSERT_EQ(test_xfrm_ping(skel, IF_ID_0_TO_2), 0, "ping " NS2)) + goto done; + +done: + if (nstoken) + close_netns(nstoken); + xfrm_info__destroy(skel); +} + +void test_xfrm_info(void) +{ + cleanup(); + + if (!ASSERT_OK(config_underlay(), "config_underlay")) + goto done; + if (!ASSERT_OK(config_overlay(), "config_overlay")) + goto done; + + if (test__start_subtest("xfrm_info")) + _test_xfrm_info(); + +done: + cleanup(); +} |