builtin-stat.c 35.6 KB
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/*
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 * builtin-stat.c
 *
 * Builtin stat command: Give a precise performance counters summary
 * overview about any workload, CPU or specific PID.
 *
 * Sample output:
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   $ perf stat ./hackbench 10
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  Time: 0.118
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  Performance counter stats for './hackbench 10':
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       1708.761321 task-clock                #   11.037 CPUs utilized
            41,190 context-switches          #    0.024 M/sec
             6,735 CPU-migrations            #    0.004 M/sec
            17,318 page-faults               #    0.010 M/sec
     5,205,202,243 cycles                    #    3.046 GHz
     3,856,436,920 stalled-cycles-frontend   #   74.09% frontend cycles idle
     1,600,790,871 stalled-cycles-backend    #   30.75% backend  cycles idle
     2,603,501,247 instructions              #    0.50  insns per cycle
                                             #    1.48  stalled cycles per insn
       484,357,498 branches                  #  283.455 M/sec
         6,388,934 branch-misses             #    1.32% of all branches

        0.154822978  seconds time elapsed
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 *
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 * Copyright (C) 2008-2011, Red Hat Inc, Ingo Molnar <mingo@redhat.com>
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 *
 * Improvements and fixes by:
 *
 *   Arjan van de Ven <arjan@linux.intel.com>
 *   Yanmin Zhang <yanmin.zhang@intel.com>
 *   Wu Fengguang <fengguang.wu@intel.com>
 *   Mike Galbraith <efault@gmx.de>
 *   Paul Mackerras <paulus@samba.org>
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 *   Jaswinder Singh Rajput <jaswinder@kernel.org>
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 *
 * Released under the GPL v2. (and only v2, not any later version)
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 */

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#include "perf.h"
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#include "builtin.h"
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#include "util/cgroup.h"
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#include "util/util.h"
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#include "util/parse-options.h"
#include "util/parse-events.h"
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#include "util/pmu.h"
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#include "util/event.h"
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#include "util/evlist.h"
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#include "util/evsel.h"
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#include "util/debug.h"
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#include "util/color.h"
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#include "util/stat.h"
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#include "util/header.h"
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#include "util/cpumap.h"
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#include "util/thread.h"
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#include "util/thread_map.h"
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#include "util/counts.h"
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#include <stdlib.h>
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#include <sys/prctl.h>
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#include <locale.h>
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#define DEFAULT_SEPARATOR	" "
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#define CNTR_NOT_SUPPORTED	"<not supported>"
#define CNTR_NOT_COUNTED	"<not counted>"
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static void print_counters(struct timespec *ts, int argc, const char **argv);
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/* Default events used for perf stat -T */
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static const char *transaction_attrs = {
	"task-clock,"
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	"{"
	"instructions,"
	"cycles,"
	"cpu/cycles-t/,"
	"cpu/tx-start/,"
	"cpu/el-start/,"
	"cpu/cycles-ct/"
	"}"
};

/* More limited version when the CPU does not have all events. */
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static const char * transaction_limited_attrs = {
	"task-clock,"
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	"{"
	"instructions,"
	"cycles,"
	"cpu/cycles-t/,"
	"cpu/tx-start/"
	"}"
};

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static struct perf_evlist	*evsel_list;
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static struct target target = {
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	.uid	= UINT_MAX,
};
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typedef int (*aggr_get_id_t)(struct cpu_map *m, int cpu);

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static int			run_count			=  1;
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static bool			no_inherit			= false;
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static volatile pid_t		child_pid			= -1;
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static bool			null_run			=  false;
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static int			detailed_run			=  0;
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static bool			transaction_run;
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static bool			big_num				=  true;
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static int			big_num_opt			=  -1;
static const char		*csv_sep			= NULL;
static bool			csv_output			= false;
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static bool			group				= false;
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static const char		*pre_cmd			= NULL;
static const char		*post_cmd			= NULL;
static bool			sync_run			= false;
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static unsigned int		initial_delay			= 0;
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static unsigned int		unit_width			= 4; /* strlen("unit") */
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static bool			forever				= false;
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static struct timespec		ref_time;
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static struct cpu_map		*aggr_map;
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static aggr_get_id_t		aggr_get_id;
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static volatile int done = 0;

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static struct perf_stat_config stat_config = {
	.aggr_mode	= AGGR_GLOBAL,
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	.scale		= true,
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};

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static inline void diff_timespec(struct timespec *r, struct timespec *a,
				 struct timespec *b)
{
	r->tv_sec = a->tv_sec - b->tv_sec;
	if (a->tv_nsec < b->tv_nsec) {
		r->tv_nsec = a->tv_nsec + 1000000000L - b->tv_nsec;
		r->tv_sec--;
	} else {
		r->tv_nsec = a->tv_nsec - b->tv_nsec ;
	}
}

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static void perf_stat__reset_stats(void)
{
	perf_evlist__reset_stats(evsel_list);
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	perf_stat__reset_shadow_stats();
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}

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static int create_perf_stat_counter(struct perf_evsel *evsel)
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{
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	struct perf_event_attr *attr = &evsel->attr;
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	if (stat_config.scale)
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		attr->read_format = PERF_FORMAT_TOTAL_TIME_ENABLED |
				    PERF_FORMAT_TOTAL_TIME_RUNNING;
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	attr->inherit = !no_inherit;

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	if (target__has_cpu(&target))
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		return perf_evsel__open_per_cpu(evsel, perf_evsel__cpus(evsel));
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	if (!target__has_task(&target) && perf_evsel__is_group_leader(evsel)) {
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		attr->disabled = 1;
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		if (!initial_delay)
			attr->enable_on_exec = 1;
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	}
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	return perf_evsel__open_per_thread(evsel, evsel_list->threads);
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}

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/*
 * Does the counter have nsecs as a unit?
 */
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static inline int nsec_counter(struct perf_evsel *evsel)
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{
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	if (perf_evsel__match(evsel, SOFTWARE, SW_CPU_CLOCK) ||
	    perf_evsel__match(evsel, SOFTWARE, SW_TASK_CLOCK))
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		return 1;

	return 0;
}

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/*
 * Read out the results of a single counter:
 * do not aggregate counts across CPUs in system-wide mode
 */
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static int read_counter(struct perf_evsel *counter)
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{
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	int nthreads = thread_map__nr(evsel_list->threads);
	int ncpus = perf_evsel__nr_cpus(counter);
	int cpu, thread;
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	if (!counter->supported)
		return -ENOENT;

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	if (counter->system_wide)
		nthreads = 1;

	for (thread = 0; thread < nthreads; thread++) {
		for (cpu = 0; cpu < ncpus; cpu++) {
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			struct perf_counts_values *count;

			count = perf_counts(counter->counts, cpu, thread);
			if (perf_evsel__read(counter, cpu, thread, count))
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				return -1;
		}
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	}
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	return 0;
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}

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static void read_counters(bool close_counters)
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{
	struct perf_evsel *counter;

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	evlist__for_each(evsel_list, counter) {
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		if (read_counter(counter))
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			pr_debug("failed to read counter %s\n", counter->name);
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		if (perf_stat_process_counter(&stat_config, counter))
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			pr_warning("failed to process counter %s\n", counter->name);
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		if (close_counters) {
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			perf_evsel__close_fd(counter, perf_evsel__nr_cpus(counter),
					     thread_map__nr(evsel_list->threads));
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		}
	}
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}

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static void process_interval(void)
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{
	struct timespec ts, rs;

	read_counters(false);
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	clock_gettime(CLOCK_MONOTONIC, &ts);
	diff_timespec(&rs, &ts, &ref_time);

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	print_counters(&rs, 0, NULL);
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}

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static void handle_initial_delay(void)
{
	struct perf_evsel *counter;

	if (initial_delay) {
		const int ncpus = cpu_map__nr(evsel_list->cpus),
			nthreads = thread_map__nr(evsel_list->threads);

		usleep(initial_delay * 1000);
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		evlist__for_each(evsel_list, counter)
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			perf_evsel__enable(counter, ncpus, nthreads);
	}
}

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static volatile int workload_exec_errno;
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/*
 * perf_evlist__prepare_workload will send a SIGUSR1
 * if the fork fails, since we asked by setting its
 * want_signal to true.
 */
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static void workload_exec_failed_signal(int signo __maybe_unused, siginfo_t *info,
					void *ucontext __maybe_unused)
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{
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	workload_exec_errno = info->si_value.sival_int;
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}

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static int __run_perf_stat(int argc, const char **argv)
272
{
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	int interval = stat_config.interval;
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	char msg[512];
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	unsigned long long t0, t1;
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	struct perf_evsel *counter;
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	struct timespec ts;
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	size_t l;
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	int status = 0;
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	const bool forks = (argc > 0);
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	if (interval) {
		ts.tv_sec  = interval / 1000;
		ts.tv_nsec = (interval % 1000) * 1000000;
	} else {
		ts.tv_sec  = 1;
		ts.tv_nsec = 0;
	}

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	if (forks) {
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		if (perf_evlist__prepare_workload(evsel_list, &target, argv, false,
						  workload_exec_failed_signal) < 0) {
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			perror("failed to prepare workload");
			return -1;
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		}
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		child_pid = evsel_list->workload.pid;
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	}

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	if (group)
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		perf_evlist__set_leader(evsel_list);
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	evlist__for_each(evsel_list, counter) {
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		if (create_perf_stat_counter(counter) < 0) {
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			/*
			 * PPC returns ENXIO for HW counters until 2.6.37
			 * (behavior changed with commit b0a873e).
			 */
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			if (errno == EINVAL || errno == ENOSYS ||
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			    errno == ENOENT || errno == EOPNOTSUPP ||
			    errno == ENXIO) {
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				if (verbose)
					ui__warning("%s event is not supported by the kernel.\n",
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						    perf_evsel__name(counter));
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				counter->supported = false;
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				if ((counter->leader != counter) ||
				    !(counter->leader->nr_members > 1))
					continue;
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			}
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			perf_evsel__open_strerror(counter, &target,
						  errno, msg, sizeof(msg));
			ui__error("%s\n", msg);

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			if (child_pid != -1)
				kill(child_pid, SIGTERM);
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			return -1;
		}
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		counter->supported = true;
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		l = strlen(counter->unit);
		if (l > unit_width)
			unit_width = l;
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	}
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	if (perf_evlist__apply_filters(evsel_list, &counter)) {
		error("failed to set filter \"%s\" on event %s with %d (%s)\n",
			counter->filter, perf_evsel__name(counter), errno,
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			strerror_r(errno, msg, sizeof(msg)));
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		return -1;
	}

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	/*
	 * Enable counters and exec the command:
	 */
	t0 = rdclock();
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	clock_gettime(CLOCK_MONOTONIC, &ref_time);
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	if (forks) {
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		perf_evlist__start_workload(evsel_list);
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		handle_initial_delay();
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		if (interval) {
			while (!waitpid(child_pid, &status, WNOHANG)) {
				nanosleep(&ts, NULL);
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				process_interval();
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			}
		}
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		wait(&status);
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		if (workload_exec_errno) {
			const char *emsg = strerror_r(workload_exec_errno, msg, sizeof(msg));
			pr_err("Workload failed: %s\n", emsg);
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			return -1;
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		}
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		if (WIFSIGNALED(status))
			psignal(WTERMSIG(status), argv[0]);
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	} else {
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		handle_initial_delay();
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		while (!done) {
			nanosleep(&ts, NULL);
			if (interval)
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				process_interval();
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		}
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	}
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	t1 = rdclock();

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	update_stats(&walltime_nsecs_stats, t1 - t0);
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	read_counters(true);
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	return WEXITSTATUS(status);
}

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static int run_perf_stat(int argc, const char **argv)
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{
	int ret;

	if (pre_cmd) {
		ret = system(pre_cmd);
		if (ret)
			return ret;
	}

	if (sync_run)
		sync();

	ret = __run_perf_stat(argc, argv);
	if (ret)
		return ret;

	if (post_cmd) {
		ret = system(post_cmd);
		if (ret)
			return ret;
	}

	return ret;
}

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static void print_running(u64 run, u64 ena)
{
	if (csv_output) {
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		fprintf(stat_config.output, "%s%" PRIu64 "%s%.2f",
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					csv_sep,
					run,
					csv_sep,
					ena ? 100.0 * run / ena : 100.0);
	} else if (run != ena) {
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		fprintf(stat_config.output, "  (%.2f%%)", 100.0 * run / ena);
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	}
}

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static void print_noise_pct(double total, double avg)
{
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	double pct = rel_stddev_stats(total, avg);
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	if (csv_output)
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		fprintf(stat_config.output, "%s%.2f%%", csv_sep, pct);
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	else if (pct)
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		fprintf(stat_config.output, "  ( +-%6.2f%% )", pct);
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}

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static void print_noise(struct perf_evsel *evsel, double avg)
438
{
439
	struct perf_stat_evsel *ps;
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	if (run_count == 1)
		return;

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	ps = evsel->priv;
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	print_noise_pct(stddev_stats(&ps->res_stats[0]), avg);
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}

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static void aggr_printout(struct perf_evsel *evsel, int id, int nr)
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{
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	switch (stat_config.aggr_mode) {
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	case AGGR_CORE:
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		fprintf(stat_config.output, "S%d-C%*d%s%*d%s",
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			cpu_map__id_to_socket(id),
			csv_output ? 0 : -8,
			cpu_map__id_to_cpu(id),
			csv_sep,
			csv_output ? 0 : 4,
			nr,
			csv_sep);
		break;
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	case AGGR_SOCKET:
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		fprintf(stat_config.output, "S%*d%s%*d%s",
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			csv_output ? 0 : -5,
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			id,
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			csv_sep,
			csv_output ? 0 : 4,
			nr,
			csv_sep);
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			break;
	case AGGR_NONE:
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		fprintf(stat_config.output, "CPU%*d%s",
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			csv_output ? 0 : -4,
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			perf_evsel__cpus(evsel)->map[id], csv_sep);
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		break;
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	case AGGR_THREAD:
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		fprintf(stat_config.output, "%*s-%*d%s",
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			csv_output ? 0 : 16,
			thread_map__comm(evsel->threads, id),
			csv_output ? 0 : -8,
			thread_map__pid(evsel->threads, id),
			csv_sep);
		break;
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	case AGGR_GLOBAL:
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	case AGGR_UNSET:
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	default:
		break;
	}
}

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static void nsec_printout(int id, int nr, struct perf_evsel *evsel, double avg)
491
{
492
	FILE *output = stat_config.output;
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	double msecs = avg / 1e6;
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	const char *fmt_v, *fmt_n;
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	char name[25];
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	fmt_v = csv_output ? "%.6f%s" : "%18.6f%s";
	fmt_n = csv_output ? "%s" : "%-25s";

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	aggr_printout(evsel, id, nr);
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	scnprintf(name, sizeof(name), "%s%s",
		  perf_evsel__name(evsel), csv_output ? "" : " (msec)");
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	fprintf(output, fmt_v, msecs, csv_sep);

	if (csv_output)
		fprintf(output, "%s%s", evsel->unit, csv_sep);
	else
		fprintf(output, "%-*s%s", unit_width, evsel->unit, csv_sep);

	fprintf(output, fmt_n, name);
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	if (evsel->cgrp)
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		fprintf(output, "%s%s", csv_sep, evsel->cgrp->name);
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}

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static void abs_printout(int id, int nr, struct perf_evsel *evsel, double avg)
{
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	FILE *output = stat_config.output;
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	double sc =  evsel->scale;
	const char *fmt;

	if (csv_output) {
		fmt = sc != 1.0 ?  "%.2f%s" : "%.0f%s";
	} else {
		if (big_num)
			fmt = sc != 1.0 ? "%'18.2f%s" : "%'18.0f%s";
		else
			fmt = sc != 1.0 ? "%18.2f%s" : "%18.0f%s";
	}

	aggr_printout(evsel, id, nr);

	fprintf(output, fmt, avg, csv_sep);

	if (evsel->unit)
		fprintf(output, "%-*s%s",
			csv_output ? 0 : unit_width,
			evsel->unit, csv_sep);

	fprintf(output, "%-*s", csv_output ? 0 : 25, perf_evsel__name(evsel));

	if (evsel->cgrp)
		fprintf(output, "%s%s", csv_sep, evsel->cgrp->name);
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}
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static void printout(int id, int nr, struct perf_evsel *counter, double uval)
{
	int cpu = cpu_map__id_to_cpu(id);

	if (stat_config.aggr_mode == AGGR_GLOBAL)
		cpu = 0;

	if (nsec_counter(counter))
		nsec_printout(id, nr, counter, uval);
	else
		abs_printout(id, nr, counter, uval);
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	if (!csv_output && !stat_config.interval)
		perf_stat__print_shadow_stats(stat_config.output, counter,
					      uval, cpu,
					      stat_config.aggr_mode);
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}

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static void print_aggr(char *prefix)
567
{
568
	FILE *output = stat_config.output;
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	struct perf_evsel *counter;
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	int cpu, s, s2, id, nr;
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	double uval;
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	u64 ena, run, val;

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	if (!(aggr_map || aggr_get_id))
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		return;

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	for (s = 0; s < aggr_map->nr; s++) {
		id = aggr_map->map[s];
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		evlist__for_each(evsel_list, counter) {
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			val = ena = run = 0;
			nr = 0;
			for (cpu = 0; cpu < perf_evsel__nr_cpus(counter); cpu++) {
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				s2 = aggr_get_id(perf_evsel__cpus(counter), cpu);
584
				if (s2 != id)
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					continue;
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				val += perf_counts(counter->counts, cpu, 0)->val;
				ena += perf_counts(counter->counts, cpu, 0)->ena;
				run += perf_counts(counter->counts, cpu, 0)->run;
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				nr++;
			}
			if (prefix)
				fprintf(output, "%s", prefix);

			if (run == 0 || ena == 0) {
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				aggr_printout(counter, id, nr);
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597
				fprintf(output, "%*s%s",
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					csv_output ? 0 : 18,
					counter->supported ? CNTR_NOT_COUNTED : CNTR_NOT_SUPPORTED,
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					csv_sep);

				fprintf(output, "%-*s%s",
					csv_output ? 0 : unit_width,
					counter->unit, csv_sep);

				fprintf(output, "%*s",
					csv_output ? 0 : -25,
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					perf_evsel__name(counter));
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				if (counter->cgrp)
					fprintf(output, "%s%s",
						csv_sep, counter->cgrp->name);

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				print_running(run, ena);
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				fputc('\n', output);
				continue;
			}
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			uval = val * counter->scale;
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			printout(id, nr, counter, uval);
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			if (!csv_output)
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				print_noise(counter, 1.0);

623
			print_running(run, ena);
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			fputc('\n', output);
		}
	}
}

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static void print_aggr_thread(struct perf_evsel *counter, char *prefix)
{
631
	FILE *output = stat_config.output;
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	int nthreads = thread_map__nr(counter->threads);
	int ncpus = cpu_map__nr(counter->cpus);
	int cpu, thread;
	double uval;

	for (thread = 0; thread < nthreads; thread++) {
		u64 ena = 0, run = 0, val = 0;

		for (cpu = 0; cpu < ncpus; cpu++) {
			val += perf_counts(counter->counts, cpu, thread)->val;
			ena += perf_counts(counter->counts, cpu, thread)->ena;
			run += perf_counts(counter->counts, cpu, thread)->run;
		}

		if (prefix)
			fprintf(output, "%s", prefix);

		uval = val * counter->scale;
650
		printout(thread, 0, counter, uval);
651 652 653 654 655 656 657 658 659

		if (!csv_output)
			print_noise(counter, 1.0);

		print_running(run, ena);
		fputc('\n', output);
	}
}

660 661
/*
 * Print out the results of a single counter:
662
 * aggregated counts in system-wide mode
663
 */
664
static void print_counter_aggr(struct perf_evsel *counter, char *prefix)
665
{
666
	FILE *output = stat_config.output;
667
	struct perf_stat_evsel *ps = counter->priv;
668
	double avg = avg_stats(&ps->res_stats[0]);
669
	int scaled = counter->counts->scaled;
670
	double uval;
671 672 673 674
	double avg_enabled, avg_running;

	avg_enabled = avg_stats(&ps->res_stats[1]);
	avg_running = avg_stats(&ps->res_stats[2]);
675

676 677 678
	if (prefix)
		fprintf(output, "%s", prefix);

679
	if (scaled == -1 || !counter->supported) {
680
		fprintf(output, "%*s%s",
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681
			csv_output ? 0 : 18,
682
			counter->supported ? CNTR_NOT_COUNTED : CNTR_NOT_SUPPORTED,
683 684 685 686 687 688
			csv_sep);
		fprintf(output, "%-*s%s",
			csv_output ? 0 : unit_width,
			counter->unit, csv_sep);
		fprintf(output, "%*s",
			csv_output ? 0 : -25,
689
			perf_evsel__name(counter));
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690 691

		if (counter->cgrp)
692
			fprintf(output, "%s%s", csv_sep, counter->cgrp->name);
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693

694
		print_running(avg_running, avg_enabled);
695
		fputc('\n', output);
696 697
		return;
	}
698

699
	uval = avg * counter->scale;
700
	printout(-1, 0, counter, uval);
701

702 703
	print_noise(counter, avg);

704
	print_running(avg_running, avg_enabled);
705
	fprintf(output, "\n");
706 707
}

708 709 710 711
/*
 * Print out the results of a single counter:
 * does not use aggregated count in system-wide
 */
712
static void print_counter(struct perf_evsel *counter, char *prefix)
713
{
714
	FILE *output = stat_config.output;
715
	u64 ena, run, val;
716
	double uval;
717 718
	int cpu;

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	for (cpu = 0; cpu < perf_evsel__nr_cpus(counter); cpu++) {
720 721 722
		val = perf_counts(counter->counts, cpu, 0)->val;
		ena = perf_counts(counter->counts, cpu, 0)->ena;
		run = perf_counts(counter->counts, cpu, 0)->run;
723 724 725 726

		if (prefix)
			fprintf(output, "%s", prefix);

727
		if (run == 0 || ena == 0) {
728
			fprintf(output, "CPU%*d%s%*s%s",
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				csv_output ? 0 : -4,
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				perf_evsel__cpus(counter)->map[cpu], csv_sep,
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				csv_output ? 0 : 18,
732
				counter->supported ? CNTR_NOT_COUNTED : CNTR_NOT_SUPPORTED,
733 734 735 736 737 738 739 740 741
				csv_sep);

				fprintf(output, "%-*s%s",
					csv_output ? 0 : unit_width,
					counter->unit, csv_sep);

				fprintf(output, "%*s",
					csv_output ? 0 : -25,
					perf_evsel__name(counter));
742

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743
			if (counter->cgrp)
744 745
				fprintf(output, "%s%s",
					csv_sep, counter->cgrp->name);
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746

747
			print_running(run, ena);
748
			fputc('\n', output);
749 750 751
			continue;
		}

752
		uval = val * counter->scale;
753
		printout(cpu, 0, counter, uval);
754
		if (!csv_output)
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			print_noise(counter, 1.0);
756
		print_running(run, ena);
757

758
		fputc('\n', output);
759 760 761
	}
}

762 763
static void print_interval(char *prefix, struct timespec *ts)
{
764
	FILE *output = stat_config.output;
765 766 767 768 769
	static int num_print_interval;

	sprintf(prefix, "%6lu.%09lu%s", ts->tv_sec, ts->tv_nsec, csv_sep);

	if (num_print_interval == 0 && !csv_output) {
770
		switch (stat_config.aggr_mode) {
771 772 773 774 775 776 777 778 779
		case AGGR_SOCKET:
			fprintf(output, "#           time socket cpus             counts %*s events\n", unit_width, "unit");
			break;
		case AGGR_CORE:
			fprintf(output, "#           time core         cpus             counts %*s events\n", unit_width, "unit");
			break;
		case AGGR_NONE:
			fprintf(output, "#           time CPU                counts %*s events\n", unit_width, "unit");
			break;
780 781 782
		case AGGR_THREAD:
			fprintf(output, "#           time             comm-pid                  counts %*s events\n", unit_width, "unit");
			break;
783 784 785
		case AGGR_GLOBAL:
		default:
			fprintf(output, "#           time             counts %*s events\n", unit_width, "unit");
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		case AGGR_UNSET:
			break;
788 789 790 791 792 793 794 795
		}
	}

	if (++num_print_interval == 25)
		num_print_interval = 0;
}

static void print_header(int argc, const char **argv)
796
{
797
	FILE *output = stat_config.output;
798
	int i;
799

800 801
	fflush(stdout);

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	if (!csv_output) {
803 804
		fprintf(output, "\n");
		fprintf(output, " Performance counter stats for ");
805 806 807 808
		if (target.system_wide)
			fprintf(output, "\'system wide");
		else if (target.cpu_list)
			fprintf(output, "\'CPU(s) %s", target.cpu_list);
809
		else if (!target__has_task(&target)) {
810
			fprintf(output, "\'%s", argv[0]);
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			for (i = 1; i < argc; i++)
812
				fprintf(output, " %s", argv[i]);
813 814
		} else if (target.pid)
			fprintf(output, "process id \'%s", target.pid);
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		else
816
			fprintf(output, "thread id \'%s", target.tid);
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818
		fprintf(output, "\'");
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819
		if (run_count > 1)
820 821
			fprintf(output, " (%d runs)", run_count);
		fprintf(output, ":\n\n");
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	}
823 824 825 826
}

static void print_footer(void)
{
827 828
	FILE *output = stat_config.output;

829 830 831 832 833 834 835 836 837 838 839 840 841 842
	if (!null_run)
		fprintf(output, "\n");
	fprintf(output, " %17.9f seconds time elapsed",
			avg_stats(&walltime_nsecs_stats)/1e9);
	if (run_count > 1) {
		fprintf(output, "                                        ");
		print_noise_pct(stddev_stats(&walltime_nsecs_stats),
				avg_stats(&walltime_nsecs_stats));
	}
	fprintf(output, "\n\n");
}

static void print_counters(struct timespec *ts, int argc, const char **argv)
{
843
	int interval = stat_config.interval;
844 845 846 847 848 849 850
	struct perf_evsel *counter;
	char buf[64], *prefix = NULL;

	if (interval)
		print_interval(prefix = buf, ts);
	else
		print_header(argc, argv);
851

852
	switch (stat_config.aggr_mode) {
853
	case AGGR_CORE:
854
	case AGGR_SOCKET:
855
		print_aggr(prefix);
856
		break;
857 858 859 860
	case AGGR_THREAD:
		evlist__for_each(evsel_list, counter)
			print_aggr_thread(counter, prefix);
		break;
861
	case AGGR_GLOBAL:
862
		evlist__for_each(evsel_list, counter)
863
			print_counter_aggr(counter, prefix);
864 865
		break;
	case AGGR_NONE:
866
		evlist__for_each(evsel_list, counter)
867
			print_counter(counter, prefix);
868
		break;
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	case AGGR_UNSET:
870 871
	default:
		break;
872
	}
873

874 875 876
	if (!interval && !csv_output)
		print_footer();

877
	fflush(stat_config.output);
878 879
}

880 881
static volatile int signr = -1;

882
static void skip_signal(int signo)
883
{
884
	if ((child_pid == -1) || stat_config.interval)
885 886
		done = 1;

887
	signr = signo;
888 889 890 891 892 893 894
	/*
	 * render child_pid harmless
	 * won't send SIGTERM to a random
	 * process in case of race condition
	 * and fast PID recycling
	 */
	child_pid = -1;
895 896 897 898
}

static void sig_atexit(void)
{
899 900 901 902 903 904 905 906 907 908 909 910
	sigset_t set, oset;

	/*
	 * avoid race condition with SIGCHLD handler
	 * in skip_signal() which is modifying child_pid
	 * goal is to avoid send SIGTERM to a random
	 * process
	 */
	sigemptyset(&set);
	sigaddset(&set, SIGCHLD);
	sigprocmask(SIG_BLOCK, &set, &oset);

911 912 913
	if (child_pid != -1)
		kill(child_pid, SIGTERM);

914 915
	sigprocmask(SIG_SETMASK, &oset, NULL);

916 917 918 919 920
	if (signr == -1)
		return;

	signal(signr, SIG_DFL);
	kill(getpid(), signr);
921 922
}

923 924
static int stat__set_big_num(const struct option *opt __maybe_unused,
			     const char *s __maybe_unused, int unset)
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{
	big_num_opt = unset ? 0 : 1;
	return 0;
}

930 931 932 933 934 935 936 937 938 939
static int perf_stat__get_socket(struct cpu_map *map, int cpu)
{
	return cpu_map__get_socket(map, cpu, NULL);
}

static int perf_stat__get_core(struct cpu_map *map, int cpu)
{
	return cpu_map__get_core(map, cpu, NULL);
}

940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978
static int cpu_map__get_max(struct cpu_map *map)
{
	int i, max = -1;

	for (i = 0; i < map->nr; i++) {
		if (map->map[i] > max)
			max = map->map[i];
	}

	return max;
}

static struct cpu_map *cpus_aggr_map;

static int perf_stat__get_aggr(aggr_get_id_t get_id, struct cpu_map *map, int idx)
{
	int cpu;

	if (idx >= map->nr)
		return -1;

	cpu = map->map[idx];

	if (cpus_aggr_map->map[cpu] == -1)
		cpus_aggr_map->map[cpu] = get_id(map, idx);

	return cpus_aggr_map->map[cpu];
}

static int perf_stat__get_socket_cached(struct cpu_map *map, int idx)
{
	return perf_stat__get_aggr(perf_stat__get_socket, map, idx);
}

static int perf_stat__get_core_cached(struct cpu_map *map, int idx)
{
	return perf_stat__get_aggr(perf_stat__get_core, map, idx);
}

979 980
static int perf_stat_init_aggr_mode(void)
{
981 982
	int nr;

983
	switch (stat_config.aggr_mode) {
984 985 986 987 988
	case AGGR_SOCKET:
		if (cpu_map__build_socket_map(evsel_list->cpus, &aggr_map)) {
			perror("cannot build socket map");
			return -1;
		}
989
		aggr_get_id = perf_stat__get_socket_cached;
990
		break;
991 992 993 994 995
	case AGGR_CORE:
		if (cpu_map__build_core_map(evsel_list->cpus, &aggr_map)) {
			perror("cannot build core map");
			return -1;
		}
996
		aggr_get_id = perf_stat__get_core_cached;
997
		break;
998 999
	case AGGR_NONE:
	case AGGR_GLOBAL:
1000
	case AGGR_THREAD:
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1001
	case AGGR_UNSET:
1002 1003 1004
	default:
		break;
	}
1005 1006 1007 1008 1009 1010 1011 1012 1013

	/*
	 * The evsel_list->cpus is the base we operate on,
	 * taking the highest cpu number to be the size of
	 * the aggregation translate cpumap.
	 */
	nr = cpu_map__get_max(evsel_list->cpus);
	cpus_aggr_map = cpu_map__empty_new(nr + 1);
	return cpus_aggr_map ? 0 : -ENOMEM;
1014 1015
}

1016 1017 1018 1019 1020 1021
/*
 * Add default attributes, if there were no attributes specified or
 * if -d/--detailed, -d -d or -d -d -d is used:
 */
static int add_default_attributes(void)
{
1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128
	struct perf_event_attr default_attrs[] = {

  { .type = PERF_TYPE_SOFTWARE, .config = PERF_COUNT_SW_TASK_CLOCK		},
  { .type = PERF_TYPE_SOFTWARE, .config = PERF_COUNT_SW_CONTEXT_SWITCHES	},
  { .type = PERF_TYPE_SOFTWARE, .config = PERF_COUNT_SW_CPU_MIGRATIONS		},
  { .type = PERF_TYPE_SOFTWARE, .config = PERF_COUNT_SW_PAGE_FAULTS		},

  { .type = PERF_TYPE_HARDWARE, .config = PERF_COUNT_HW_CPU_CYCLES		},
  { .type = PERF_TYPE_HARDWARE, .config = PERF_COUNT_HW_STALLED_CYCLES_FRONTEND	},
  { .type = PERF_TYPE_HARDWARE, .config = PERF_COUNT_HW_STALLED_CYCLES_BACKEND	},
  { .type = PERF_TYPE_HARDWARE, .config = PERF_COUNT_HW_INSTRUCTIONS		},
  { .type = PERF_TYPE_HARDWARE, .config = PERF_COUNT_HW_BRANCH_INSTRUCTIONS	},
  { .type = PERF_TYPE_HARDWARE, .config = PERF_COUNT_HW_BRANCH_MISSES		},

};

/*
 * Detailed stats (-d), covering the L1 and last level data caches:
 */
	struct perf_event_attr detailed_attrs[] = {

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_L1D		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_ACCESS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_L1D		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_MISS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_LL			<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_ACCESS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_LL			<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_MISS	<< 16)				},
};

/*
 * Very detailed stats (-d -d), covering the instruction cache and the TLB caches:
 */
	struct perf_event_attr very_detailed_attrs[] = {

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_L1I		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_ACCESS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_L1I		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_MISS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_DTLB		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_ACCESS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_DTLB		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_MISS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_ITLB		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_ACCESS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_ITLB		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_READ		<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_MISS	<< 16)				},

};

/*
 * Very, very detailed stats (-d -d -d), adding prefetch events:
 */
	struct perf_event_attr very_very_detailed_attrs[] = {

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_L1D		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_PREFETCH	<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_ACCESS	<< 16)				},

  { .type = PERF_TYPE_HW_CACHE,
    .config =
	 PERF_COUNT_HW_CACHE_L1D		<<  0  |
	(PERF_COUNT_HW_CACHE_OP_PREFETCH	<<  8) |
	(PERF_COUNT_HW_CACHE_RESULT_MISS	<< 16)				},
};

1129 1130 1131 1132
	/* Set attrs if no event is selected and !null_run: */
	if (null_run)
		return 0;

1133 1134 1135 1136
	if (transaction_run) {
		int err;
		if (pmu_have_event("cpu", "cycles-ct") &&
		    pmu_have_event("cpu", "el-start"))
1137
			err = parse_events(evsel_list, transaction_attrs, NULL);
1138
		else
1139 1140
			err = parse_events(evsel_list, transaction_limited_attrs, NULL);
		if (err) {
1141 1142 1143 1144 1145 1146
			fprintf(stderr, "Cannot set up transaction events\n");
			return -1;
		}
		return 0;
	}

1147
	if (!evsel_list->nr_entries) {
1148
		if (perf_evlist__add_default_attrs(evsel_list, default_attrs) < 0)
1149
			return -1;
1150 1151 1152 1153 1154 1155 1156 1157
	}

	/* Detailed events get appended to the event list: */

	if (detailed_run <  1)
		return 0;

	/* Append detailed run extra attributes: */
1158
	if (perf_evlist__add_default_attrs(evsel_list, detailed_attrs) < 0)
1159
		return -1;
1160 1161 1162 1163 1164

	if (detailed_run < 2)
		return 0;

	/* Append very detailed run extra attributes: */
1165
	if (perf_evlist__add_default_attrs(evsel_list, very_detailed_attrs) < 0)
1166
		return -1;
1167 1168 1169 1170 1171

	if (detailed_run < 3)
		return 0;

	/* Append very, very detailed run extra attributes: */
1172
	return perf_evlist__add_default_attrs(evsel_list, very_very_detailed_attrs);
1173 1174
}

1175
int cmd_stat(int argc, const char **argv, const char *prefix __maybe_unused)
1176
{
1177
	bool append_file = false;
1178 1179 1180
	int output_fd = 0;
	const char *output_name	= NULL;
	const struct option options[] = {
1181 1182
	OPT_BOOLEAN('T', "transaction", &transaction_run,
		    "hardware transaction statistics"),
1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197
	OPT_CALLBACK('e', "event", &evsel_list, "event",
		     "event selector. use 'perf list' to list available events",
		     parse_events_option),
	OPT_CALLBACK(0, "filter", &evsel_list, "filter",
		     "event filter", parse_filter),
	OPT_BOOLEAN('i', "no-inherit", &no_inherit,
		    "child tasks do not inherit counters"),
	OPT_STRING('p', "pid", &target.pid, "pid",
		   "stat events on existing process id"),
	OPT_STRING('t', "tid", &target.tid, "tid",
		   "stat events on existing thread id"),
	OPT_BOOLEAN('a', "all-cpus", &target.system_wide,
		    "system-wide collection from all CPUs"),
	OPT_BOOLEAN('g', "group", &group,
		    "put the counters into a counter group"),
1198
	OPT_BOOLEAN('c', "scale", &stat_config.scale, "scale/normalize counters"),
1199 1200 1201
	OPT_INCR('v', "verbose", &verbose,
		    "be more verbose (show counter open errors, etc)"),
	OPT_INTEGER('r', "repeat", &run_count,
1202
		    "repeat command and print average + stddev (max: 100, forever: 0)"),
1203 1204 1205 1206 1207 1208
	OPT_BOOLEAN('n', "null", &null_run,
		    "null run - dont start any counters"),
	OPT_INCR('d', "detailed", &detailed_run,
		    "detailed run - start a lot of events"),
	OPT_BOOLEAN('S', "sync", &sync_run,
		    "call sync() before starting a run"),
1209
	OPT_CALLBACK_NOOPT('B', "big-num", NULL, NULL,
1210 1211 1212 1213
			   "print large numbers with thousands\' separators",
			   stat__set_big_num),
	OPT_STRING('C', "cpu", &target.cpu_list, "cpu",
		    "list of cpus to monitor in system-wide"),
1214
	OPT_SET_UINT('A', "no-aggr", &stat_config.aggr_mode,
1215
		    "disable CPU count aggregation", AGGR_NONE),
1216 1217 1218 1219 1220 1221 1222 1223
	OPT_STRING('x', "field-separator", &csv_sep, "separator",
		   "print counts with custom separator"),
	OPT_CALLBACK('G', "cgroup", &evsel_list, "name",
		     "monitor event in cgroup name only", parse_cgroups),
	OPT_STRING('o', "output", &output_name, "file", "output file name"),
	OPT_BOOLEAN(0, "append", &append_file, "append to the output file"),
	OPT_INTEGER(0, "log-fd", &output_fd,
		    "log output to fd, instead of stderr"),
1224 1225 1226 1227
	OPT_STRING(0, "pre", &pre_cmd, "command",
			"command to run prior to the measured command"),
	OPT_STRING(0, "post", &post_cmd, "command",
			"command to run after to the measured command"),
1228
	OPT_UINTEGER('I', "interval-print", &stat_config.interval,
1229
		    "print counts at regular interval in ms (>= 10)"),
1230
	OPT_SET_UINT(0, "per-socket", &stat_config.aggr_mode,
1231
		     "aggregate counts per processor socket", AGGR_SOCKET),
1232
	OPT_SET_UINT(0, "per-core", &stat_config.aggr_mode,
1233
		     "aggregate counts per physical processor core", AGGR_CORE),
1234
	OPT_SET_UINT(0, "per-thread", &stat_config.aggr_mode,
1235
		     "aggregate counts per thread", AGGR_THREAD),
1236 1237
	OPT_UINTEGER('D', "delay", &initial_delay,
		     "ms to wait before starting measurement after program start"),
1238 1239 1240 1241 1242 1243
	OPT_END()
	};
	const char * const stat_usage[] = {
		"perf stat [<options>] [<command>]",
		NULL
	};
1244
	int status = -EINVAL, run_idx;
1245
	const char *mode;
1246
	FILE *output = stderr;
1247
	unsigned int interval;
1248

1249 1250
	setlocale(LC_ALL, "");

1251
	evsel_list = perf_evlist__new();
1252 1253 1254
	if (evsel_list == NULL)
		return -ENOMEM;

1255 1256
	argc = parse_options(argc, argv, options, stat_usage,
		PARSE_OPT_STOP_AT_NON_OPTION);
S
Stephane Eranian 已提交
1257

1258 1259
	interval = stat_config.interval;

1260 1261 1262
	if (output_name && strcmp(output_name, "-"))
		output = NULL;

1263 1264
	if (output_name && output_fd) {
		fprintf(stderr, "cannot use both --output and --log-fd\n");
1265 1266 1267
		parse_options_usage(stat_usage, options, "o", 1);
		parse_options_usage(NULL, options, "log-fd", 0);
		goto out;
1268
	}
1269 1270 1271

	if (output_fd < 0) {
		fprintf(stderr, "argument to --log-fd must be a > 0\n");
1272 1273
		parse_options_usage(stat_usage, options, "log-fd", 0);
		goto out;
1274 1275
	}

1276 1277 1278 1279 1280 1281 1282
	if (!output) {
		struct timespec tm;
		mode = append_file ? "a" : "w";

		output = fopen(output_name, mode);
		if (!output) {
			perror("failed to create output file");
1283
			return -1;
1284 1285 1286
		}
		clock_gettime(CLOCK_REALTIME, &tm);
		fprintf(output, "# started on %s\n", ctime(&tm.tv_sec));
1287
	} else if (output_fd > 0) {
1288 1289 1290 1291 1292 1293
		mode = append_file ? "a" : "w";
		output = fdopen(output_fd, mode);
		if (!output) {
			perror("Failed opening logfd");
			return -errno;
		}
1294 1295
	}

1296 1297
	stat_config.output = output;

1298
	if (csv_sep) {
S
Stephane Eranian 已提交
1299
		csv_output = true;
1300 1301 1302
		if (!strcmp(csv_sep, "\\t"))
			csv_sep = "\t";
	} else
S
Stephane Eranian 已提交
1303 1304 1305 1306 1307 1308
		csv_sep = DEFAULT_SEPARATOR;

	/*
	 * let the spreadsheet do the pretty-printing
	 */
	if (csv_output) {
J
Jim Cromie 已提交
1309
		/* User explicitly passed -B? */
S
Stephane Eranian 已提交
1310 1311
		if (big_num_opt == 1) {
			fprintf(stderr, "-B option not supported with -x\n");
1312 1313 1314
			parse_options_usage(stat_usage, options, "B", 1);
			parse_options_usage(NULL, options, "x", 1);
			goto out;
S
Stephane Eranian 已提交
1315 1316 1317 1318 1319
		} else /* Nope, so disable big number formatting */
			big_num = false;
	} else if (big_num_opt == 0) /* User passed --no-big-num */
		big_num = false;

1320
	if (!argc && target__none(&target))
1321
		usage_with_options(stat_usage, options);
1322

1323
	if (run_count < 0) {
1324 1325 1326
		pr_err("Run count must be a positive number\n");
		parse_options_usage(stat_usage, options, "r", 1);
		goto out;
1327 1328 1329 1330
	} else if (run_count == 0) {
		forever = true;
		run_count = 1;
	}
1331

1332
	if ((stat_config.aggr_mode == AGGR_THREAD) && !target__has_task(&target)) {
1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343
		fprintf(stderr, "The --per-thread option is only available "
			"when monitoring via -p -t options.\n");
		parse_options_usage(NULL, options, "p", 1);
		parse_options_usage(NULL, options, "t", 1);
		goto out;
	}

	/*
	 * no_aggr, cgroup are for system-wide only
	 * --per-thread is aggregated per thread, we dont mix it with cpu mode
	 */
1344 1345
	if (((stat_config.aggr_mode != AGGR_GLOBAL &&
	      stat_config.aggr_mode != AGGR_THREAD) || nr_cgroups) &&
1346
	    !target__has_cpu(&target)) {
S
Stephane Eranian 已提交
1347 1348 1349
		fprintf(stderr, "both cgroup and no-aggregation "
			"modes only available in system-wide mode\n");

1350 1351 1352 1353
		parse_options_usage(stat_usage, options, "G", 1);
		parse_options_usage(NULL, options, "A", 1);
		parse_options_usage(NULL, options, "a", 1);
		goto out;
1354 1355
	}

1356 1357
	if (add_default_attributes())
		goto out;
1358

1359
	target__validate(&target);
1360

1361
	if (perf_evlist__create_maps(evsel_list, &target) < 0) {
1362
		if (target__has_task(&target)) {
1363
			pr_err("Problems finding threads of monitor\n");
1364 1365
			parse_options_usage(stat_usage, options, "p", 1);
			parse_options_usage(NULL, options, "t", 1);
1366
		} else if (target__has_cpu(&target)) {
1367
			perror("failed to parse CPUs map");
1368 1369 1370 1371
			parse_options_usage(stat_usage, options, "C", 1);
			parse_options_usage(NULL, options, "a", 1);
		}
		goto out;
1372
	}
1373 1374 1375 1376 1377

	/*
	 * Initialize thread_map with comm names,
	 * so we could print it out on output.
	 */
1378
	if (stat_config.aggr_mode == AGGR_THREAD)
1379 1380
		thread_map__read_comms(evsel_list->threads);

1381
	if (interval && interval < 100) {
1382 1383 1384 1385 1386 1387 1388 1389
		if (interval < 10) {
			pr_err("print interval must be >= 10ms\n");
			parse_options_usage(stat_usage, options, "I", 1);
			goto out;
		} else
			pr_warning("print interval < 100ms. "
				   "The overhead percentage could be high in some cases. "
				   "Please proceed with caution.\n");
1390
	}
1391

1392
	if (perf_evlist__alloc_stats(evsel_list, interval))
1393
		goto out;
1394

1395
	if (perf_stat_init_aggr_mode())
1396
		goto out;
1397

I
Ingo Molnar 已提交
1398 1399 1400 1401 1402 1403
	/*
	 * We dont want to block the signals - that would cause
	 * child tasks to inherit that and Ctrl-C would not work.
	 * What we want is for Ctrl-C to work in the exec()-ed
	 * task, but being ignored by perf stat itself:
	 */
1404
	atexit(sig_atexit);
1405 1406
	if (!forever)
		signal(SIGINT,  skip_signal);
1407
	signal(SIGCHLD, skip_signal);
I
Ingo Molnar 已提交
1408 1409 1410
	signal(SIGALRM, skip_signal);
	signal(SIGABRT, skip_signal);

1411
	status = 0;
1412
	for (run_idx = 0; forever || run_idx < run_count; run_idx++) {
1413
		if (run_count != 1 && verbose)
1414 1415
			fprintf(output, "[ perf stat: executing run #%d ... ]\n",
				run_idx + 1);
I
Ingo Molnar 已提交
1416

1417
		status = run_perf_stat(argc, argv);
1418
		if (forever && status != -1) {
1419
			print_counters(NULL, argc, argv);
1420
			perf_stat__reset_stats();
1421
		}
1422 1423
	}

1424
	if (!forever && status != -1 && !interval)
1425
		print_counters(NULL, argc, argv);
1426 1427

	perf_evlist__free_stats(evsel_list);
1428 1429
out:
	perf_evlist__delete(evsel_list);
1430
	return status;
1431
}