aboutsummaryrefslogtreecommitdiffstats
path: root/tools/perf/scripts/python/stackcollapse.py
blob: 5a605f70ef32268fb92a749c970cba321cba11d1 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
# stackcollapse.py - format perf samples with one line per distinct call stack
#
# This script's output has two space-separated fields.  The first is a semicolon
# separated stack including the program name (from the "comm" field) and the
# function names from the call stack.  The second is a count:
#
#  swapper;start_kernel;rest_init;cpu_idle;default_idle;native_safe_halt 2
#
# The file is sorted according to the first field.
#
# Input may be created and processed using:
#
#  perf record -a -g -F 99 sleep 60
#  perf script report stackcollapse > out.stacks-folded
#
# (perf script record stackcollapse works too).
#
# Written by Paolo Bonzini <pbonzini@redhat.com>
# Based on Brendan Gregg's stackcollapse-perf.pl script.

import os
import sys
from collections import defaultdict
from optparse import OptionParser, make_option

sys.path.append(os.environ['PERF_EXEC_PATH'] + \
                '/scripts/python/Perf-Trace-Util/lib/Perf/Trace')

from perf_trace_context import *
from Core import *
from EventClass import *

# command line parsing

option_list = [
    # formatting options for the bottom entry of the stack
    make_option("--include-tid", dest="include_tid",
                 action="store_true", default=False,
                 help="include thread id in stack"),
    make_option("--include-pid", dest="include_pid",
                 action="store_true", default=False,
                 help="include process id in stack"),
    make_option("--no-comm", dest="include_comm",
                 action="store_false", default=True,
                 help="do not separate stacks according to comm"),
    make_option("--tidy-java", dest="tidy_java",
                 action="store_true", default=False,
                 help="beautify Java signatures"),
    make_option("--kernel", dest="annotate_kernel",
                 action="store_true", default=False,
                 help="annotate kernel functions with _[k]")
]

parser = OptionParser(option_list=option_list)
(opts, args) = parser.parse_args()

if len(args) != 0:
    parser.error("unexpected command line argument")
if opts.include_tid and not opts.include_comm:
    parser.error("requesting tid but not comm is invalid")
if opts.include_pid and not opts.include_comm:
    parser.error("requesting pid but not comm is invalid")

# event handlers

lines = defaultdict(lambda: 0)

def process_event(param_dict):
    def tidy_function_name(sym, dso):
        if sym is None:
            sym = '[unknown]'

        sym = sym.replace(';', ':')
        if opts.tidy_java:
            # the original stackcollapse-perf.pl script gives the
            # example of converting this:
            #    Lorg/mozilla/javascript/MemberBox;.<init>(Ljava/lang/reflect/Method;)V
            # to this:
            #    org/mozilla/javascript/MemberBox:.init
            sym = sym.replace('<', '')
            sym = sym.replace('>', '')
            if sym[0] == 'L' and sym.find('/'):
                sym = sym[1:]
            try:
                sym = sym[:sym.index('(')]
            except ValueError:
                pass

        if opts.annotate_kernel and dso == '[kernel.kallsyms]':
            return sym + '_[k]'
        else:
            return sym

    stack = list()
    if 'callchain' in param_dict:
        for entry in param_dict['callchain']:
            entry.setdefault('sym', dict())
            entry['sym'].setdefault('name', None)
            entry.setdefault('dso', None)
            stack.append(tidy_function_name(entry['sym']['name'],
                                            entry['dso']))
    else:
        param_dict.setdefault('symbol', None)
        param_dict.setdefault('dso', None)
        stack.append(tidy_function_name(param_dict['symbol'],
                                        param_dict['dso']))

    if opts.include_comm:
        comm = param_dict["comm"].replace(' ', '_')
        sep = "-"
        if opts.include_pid:
            comm = comm + sep + str(param_dict['sample']['pid'])
            sep = "/"
        if opts.include_tid:
            comm = comm + sep + str(param_dict['sample']['tid'])
        stack.append(comm)

    stack_string = ';'.join(reversed(stack))
    lines[stack_string] = lines[stack_string] + 1

def trace_end():
    list = lines.keys()
    list.sort()
    for stack in list:
        print "%s %d" % (stack, lines[stack])
/CLKCx settings */ min = ~0; best_rate = 0; spcr = 0; for (idiv_clk = 0x00; idiv_clk <= 0x3F; idiv_clk++) { rate = clk_get_rate(hspi->clk); /* IDIV calculation */ if (idiv_clk & (1 << 5)) rate /= 128; else rate /= 16; /* CLKCx calculation */ rate /= (((idiv_clk & 0x1F) + 1) * 2); /* save best settings */ tmp = abs(t->speed_hz - rate); if (tmp < min) { min = tmp; spcr = idiv_clk; best_rate = rate; } } if (spi->mode & SPI_CPHA) spcr |= 1 << 7; if (spi->mode & SPI_CPOL) spcr |= 1 << 6; dev_dbg(dev, "speed %d/%d\n", t->speed_hz, best_rate); hspi_write(hspi, SPCR, spcr); hspi_write(hspi, SPSR, 0x0); hspi_write(hspi, SPSCR, 0x21); /* master mode / CS control */ } static int hspi_transfer_one_message(struct spi_controller *ctlr, struct spi_message *msg) { struct hspi_priv *hspi = spi_controller_get_devdata(ctlr); struct spi_transfer *t; u32 tx; u32 rx; int ret, i; unsigned int cs_change; const int nsecs = 50; dev_dbg(hspi->dev, "%s\n", __func__); cs_change = 1; ret = 0; list_for_each_entry(t, &msg->transfers, transfer_list) { if (cs_change) { hspi_hw_setup(hspi, msg, t); hspi_hw_cs_enable(hspi); ndelay(nsecs); } cs_change = t->cs_change; for (i = 0; i < t->len; i++) { /* wait remains */ ret = hspi_status_check_timeout(hspi, 0x1, 0); if (ret < 0) break; tx = 0; if (t->tx_buf) tx = (u32)((u8 *)t->tx_buf)[i]; hspi_write(hspi, SPTBR, tx); /* wait receive */ ret = hspi_status_check_timeout(hspi, 0x4, 0x4); if (ret < 0) break; rx = hspi_read(hspi, SPRBR); if (t->rx_buf) ((u8 *)t->rx_buf)[i] = (u8)rx; } msg->actual_length += t->len; if (t->delay_usecs) udelay(t->delay_usecs); if (cs_change) { ndelay(nsecs); hspi_hw_cs_disable(hspi); ndelay(nsecs); } } msg->status = ret; if (!cs_change) { ndelay(nsecs); hspi_hw_cs_disable(hspi); } spi_finalize_current_message(ctlr); return ret; } static int hspi_probe(struct platform_device *pdev) { struct resource *res; struct spi_controller *ctlr; struct hspi_priv *hspi; struct clk *clk; int ret; /* get base addr */ res = platform_get_resource(pdev, IORESOURCE_MEM, 0); if (!res) { dev_err(&pdev->dev, "invalid resource\n"); return -EINVAL; } ctlr = spi_alloc_master(&pdev->dev, sizeof(*hspi)); if (!ctlr) return -ENOMEM; clk = clk_get(&pdev->dev, NULL); if (IS_ERR(clk)) { dev_err(&pdev->dev, "couldn't get clock\n"); ret = -EINVAL; goto error0; } hspi = spi_controller_get_devdata(ctlr); platform_set_drvdata(pdev, hspi); /* init hspi */ hspi->ctlr = ctlr; hspi->dev = &pdev->dev; hspi->clk = clk; hspi->addr = devm_ioremap(hspi->dev, res->start, resource_size(res)); if (!hspi->addr) { ret = -ENOMEM; goto error1; } pm_runtime_enable(&pdev->dev); ctlr->bus_num = pdev->id; ctlr->mode_bits = SPI_CPOL | SPI_CPHA; ctlr->dev.of_node = pdev->dev.of_node; ctlr->auto_runtime_pm = true; ctlr->transfer_one_message = hspi_transfer_one_message; ctlr->bits_per_word_mask = SPI_BPW_MASK(8); ret = devm_spi_register_controller(&pdev->dev, ctlr); if (ret < 0) { dev_err(&pdev->dev, "devm_spi_register_controller error.\n"); goto error2; } return 0; error2: pm_runtime_disable(&pdev->dev); error1: clk_put(clk); error0: spi_controller_put(ctlr); return ret; } static int hspi_remove(struct platform_device *pdev) { struct hspi_priv *hspi = platform_get_drvdata(pdev); pm_runtime_disable(&pdev->dev); clk_put(hspi->clk); return 0; } static const struct of_device_id hspi_of_match[] = { { .compatible = "renesas,hspi", }, { /* sentinel */ } }; MODULE_DEVICE_TABLE(of, hspi_of_match); static struct platform_driver hspi_driver = { .probe = hspi_probe, .remove = hspi_remove, .driver = { .name = "sh-hspi", .of_match_table = hspi_of_match, }, }; module_platform_driver(hspi_driver); MODULE_DESCRIPTION("SuperH HSPI bus driver"); MODULE_LICENSE("GPL v2"); MODULE_AUTHOR("Kuninori Morimoto <kuninori.morimoto.gx@renesas.com>"); MODULE_ALIAS("platform:sh-hspi");