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-rw-r--r--arch/mips/mm/c-r4k.c33
1 files changed, 22 insertions, 11 deletions
diff --git a/arch/mips/mm/c-r4k.c b/arch/mips/mm/c-r4k.c
index 3f8059602765..0dbb65a51ce5 100644
--- a/arch/mips/mm/c-r4k.c
+++ b/arch/mips/mm/c-r4k.c
@@ -430,6 +430,7 @@ static inline void local_r4k___flush_cache_all(void * args)
case CPU_R10000:
case CPU_R12000:
case CPU_R14000:
+ case CPU_R16000:
/*
* These caches are inclusive caches, that is, if something
* is not cached in the S-cache, we know it also won't be
@@ -506,7 +507,7 @@ static inline void local_r4k_flush_cache_mm(void * args)
/*
* Kludge alert. For obscure reasons R4000SC and R4400SC go nuts if we
- * only flush the primary caches but R10000 and R12000 behave sane ...
+ * only flush the primary caches but R1x000 behave sane ...
* R4000SC and R4400SC indexed S-cache ops also invalidate primary
* caches, so we can bail out early.
*/
@@ -888,33 +889,39 @@ static inline void rm7k_erratum31(void)
}
}
-static inline void alias_74k_erratum(struct cpuinfo_mips *c)
+static inline int alias_74k_erratum(struct cpuinfo_mips *c)
{
unsigned int imp = c->processor_id & PRID_IMP_MASK;
unsigned int rev = c->processor_id & PRID_REV_MASK;
+ int present = 0;
/*
* Early versions of the 74K do not update the cache tags on a
* vtag miss/ptag hit which can occur in the case of KSEG0/KUSEG
- * aliases. In this case it is better to treat the cache as always
- * having aliases.
+ * aliases. In this case it is better to treat the cache as always
+ * having aliases. Also disable the synonym tag update feature
+ * where available. In this case no opportunistic tag update will
+ * happen where a load causes a virtual address miss but a physical
+ * address hit during a D-cache look-up.
*/
switch (imp) {
case PRID_IMP_74K:
if (rev <= PRID_REV_ENCODE_332(2, 4, 0))
- c->dcache.flags |= MIPS_CACHE_VTAG;
+ present = 1;
if (rev == PRID_REV_ENCODE_332(2, 4, 0))
write_c0_config6(read_c0_config6() | MIPS_CONF6_SYND);
break;
case PRID_IMP_1074K:
if (rev <= PRID_REV_ENCODE_332(1, 1, 0)) {
- c->dcache.flags |= MIPS_CACHE_VTAG;
+ present = 1;
write_c0_config6(read_c0_config6() | MIPS_CONF6_SYND);
}
break;
default:
BUG();
}
+
+ return present;
}
static void b5k_instruction_hazard(void)
@@ -938,6 +945,7 @@ static void probe_pcache(void)
struct cpuinfo_mips *c = &current_cpu_data;
unsigned int config = read_c0_config();
unsigned int prid = read_c0_prid();
+ int has_74k_erratum = 0;
unsigned long config1;
unsigned int lsize;
@@ -1012,6 +1020,7 @@ static void probe_pcache(void)
case CPU_R10000:
case CPU_R12000:
case CPU_R14000:
+ case CPU_R16000:
icache_size = 1 << (12 + ((config & R10K_CONF_IC) >> 29));
c->icache.linesz = 64;
c->icache.ways = 2;
@@ -1223,8 +1232,8 @@ static void probe_pcache(void)
dcache_size / (c->dcache.linesz * c->dcache.ways) : 0;
/*
- * R10000 and R12000 P-caches are odd in a positive way. They're 32kB
- * 2-way virtually indexed so normally would suffer from aliases. So
+ * R1x000 P-caches are odd in a positive way. They're 32kB 2-way
+ * virtually indexed so normally would suffer from aliases. So
* normally they'd suffer from aliases but magic in the hardware deals
* with that for us so we don't need to take care ourselves.
*/
@@ -1240,11 +1249,12 @@ static void probe_pcache(void)
case CPU_R10000:
case CPU_R12000:
case CPU_R14000:
+ case CPU_R16000:
break;
case CPU_74K:
case CPU_1074K:
- alias_74k_erratum(c);
+ has_74k_erratum = alias_74k_erratum(c);
/* Fall through. */
case CPU_M14KC:
case CPU_M14KEC:
@@ -1259,7 +1269,7 @@ static void probe_pcache(void)
if (!(read_c0_config7() & MIPS_CONF7_IAR) &&
(c->icache.waysize > PAGE_SIZE))
c->icache.flags |= MIPS_CACHE_ALIASES;
- if (read_c0_config7() & MIPS_CONF7_AR) {
+ if (!has_74k_erratum && (read_c0_config7() & MIPS_CONF7_AR)) {
/*
* Effectively physically indexed dcache,
* thus no virtual aliases.
@@ -1268,7 +1278,7 @@ static void probe_pcache(void)
break;
}
default:
- if (c->dcache.waysize > PAGE_SIZE)
+ if (has_74k_erratum || c->dcache.waysize > PAGE_SIZE)
c->dcache.flags |= MIPS_CACHE_ALIASES;
}
@@ -1438,6 +1448,7 @@ static void setup_scache(void)
case CPU_R10000:
case CPU_R12000:
case CPU_R14000:
+ case CPU_R16000:
scache_size = 0x80000 << ((config & R10K_CONF_SS) >> 16);
c->scache.linesz = 64 << ((config >> 13) & 1);
c->scache.ways = 2;