builtin-stat.c 50.6 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 <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_stat(int argc, const char **argv);
static void print_counter_aggr(struct perf_evsel *counter, char *prefix);
static void print_counter(struct perf_evsel *counter, char *prefix);
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static void print_aggr(char *prefix);
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/* Default events used for perf stat -T */
static const char * const transaction_attrs[] = {
	"task-clock",
	"{"
	"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. */
static const char * const transaction_limited_attrs[] = {
	"task-clock",
	"{"
	"instructions,"
	"cycles,"
	"cpu/cycles-t/,"
	"cpu/tx-start/"
	"}"
};

/* must match transaction_attrs and the beginning limited_attrs */
enum {
	T_TASK_CLOCK,
	T_INSTRUCTIONS,
	T_CYCLES,
	T_CYCLES_IN_TX,
	T_TRANSACTION_START,
	T_ELISION_START,
	T_CYCLES_IN_TX_CP,
};

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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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enum aggr_mode {
	AGGR_NONE,
	AGGR_GLOBAL,
	AGGR_SOCKET,
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	AGGR_CORE,
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};

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static int			run_count			=  1;
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static bool			no_inherit			= false;
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static bool			scale				=  true;
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static enum aggr_mode		aggr_mode			= AGGR_GLOBAL;
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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 FILE			*output				= NULL;
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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		interval			= 0;
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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;
static int			(*aggr_get_id)(struct cpu_map *m, int cpu);
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static volatile int done = 0;

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struct perf_stat {
	struct stats	  res_stats[3];
};

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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 ;
	}
}

static inline struct cpu_map *perf_evsel__cpus(struct perf_evsel *evsel)
{
	return (evsel->cpus && !target.cpu_list) ? evsel->cpus : evsel_list->cpus;
}

static inline int perf_evsel__nr_cpus(struct perf_evsel *evsel)
{
	return perf_evsel__cpus(evsel)->nr;
}

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static void perf_evsel__reset_stat_priv(struct perf_evsel *evsel)
{
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	int i;
	struct perf_stat *ps = evsel->priv;

	for (i = 0; i < 3; i++)
		init_stats(&ps->res_stats[i]);
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}

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static int perf_evsel__alloc_stat_priv(struct perf_evsel *evsel)
186
{
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	evsel->priv = zalloc(sizeof(struct perf_stat));
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	if (evsel->priv == NULL)
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		return -ENOMEM;
	perf_evsel__reset_stat_priv(evsel);
	return 0;
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}

static void perf_evsel__free_stat_priv(struct perf_evsel *evsel)
{
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	zfree(&evsel->priv);
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}

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static int perf_evsel__alloc_prev_raw_counts(struct perf_evsel *evsel)
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{
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	void *addr;
	size_t sz;

	sz = sizeof(*evsel->counts) +
	     (perf_evsel__nr_cpus(evsel) * sizeof(struct perf_counts_values));

	addr = zalloc(sz);
	if (!addr)
		return -ENOMEM;

	evsel->prev_raw_counts =  addr;

	return 0;
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}

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static void perf_evsel__free_prev_raw_counts(struct perf_evsel *evsel)
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{
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	zfree(&evsel->prev_raw_counts);
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}

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static void perf_evlist__free_stats(struct perf_evlist *evlist)
{
	struct perf_evsel *evsel;

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	evlist__for_each(evlist, evsel) {
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		perf_evsel__free_stat_priv(evsel);
		perf_evsel__free_counts(evsel);
		perf_evsel__free_prev_raw_counts(evsel);
	}
}

static int perf_evlist__alloc_stats(struct perf_evlist *evlist, bool alloc_raw)
{
	struct perf_evsel *evsel;

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	evlist__for_each(evlist, evsel) {
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		if (perf_evsel__alloc_stat_priv(evsel) < 0 ||
		    perf_evsel__alloc_counts(evsel, perf_evsel__nr_cpus(evsel)) < 0 ||
		    (alloc_raw && perf_evsel__alloc_prev_raw_counts(evsel) < 0))
			goto out_free;
	}

	return 0;

out_free:
	perf_evlist__free_stats(evlist);
	return -1;
}

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enum {
	CTX_BIT_USER	= 1 << 0,
	CTX_BIT_KERNEL	= 1 << 1,
	CTX_BIT_MAX	= 1 << 2,
};
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#define NUM_CTX CTX_BIT_MAX
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static struct stats runtime_nsecs_stats[MAX_NR_CPUS];
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static struct stats runtime_cycles_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_stalled_cycles_front_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_stalled_cycles_back_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_branches_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_cacherefs_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_l1_dcache_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_l1_icache_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_ll_cache_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_itlb_cache_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_dtlb_cache_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_cycles_in_tx_stats[NUM_CTX][MAX_NR_CPUS];
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static struct stats walltime_nsecs_stats;
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static struct stats runtime_transaction_stats[NUM_CTX][MAX_NR_CPUS];
static struct stats runtime_elision_stats[NUM_CTX][MAX_NR_CPUS];

static int evsel_context(struct perf_evsel *evsel)
{
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	int ctx = 0;

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	if (evsel->attr.exclude_kernel)
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		ctx |= CTX_BIT_KERNEL;
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	if (evsel->attr.exclude_user)
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		ctx |= CTX_BIT_USER;
	return ctx;
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}
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static void perf_stat__reset_stats(struct perf_evlist *evlist)
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{
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	struct perf_evsel *evsel;

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	evlist__for_each(evlist, evsel) {
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		perf_evsel__reset_stat_priv(evsel);
		perf_evsel__reset_counts(evsel, perf_evsel__nr_cpus(evsel));
	}

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	memset(runtime_nsecs_stats, 0, sizeof(runtime_nsecs_stats));
	memset(runtime_cycles_stats, 0, sizeof(runtime_cycles_stats));
	memset(runtime_stalled_cycles_front_stats, 0, sizeof(runtime_stalled_cycles_front_stats));
	memset(runtime_stalled_cycles_back_stats, 0, sizeof(runtime_stalled_cycles_back_stats));
	memset(runtime_branches_stats, 0, sizeof(runtime_branches_stats));
	memset(runtime_cacherefs_stats, 0, sizeof(runtime_cacherefs_stats));
	memset(runtime_l1_dcache_stats, 0, sizeof(runtime_l1_dcache_stats));
	memset(runtime_l1_icache_stats, 0, sizeof(runtime_l1_icache_stats));
	memset(runtime_ll_cache_stats, 0, sizeof(runtime_ll_cache_stats));
	memset(runtime_itlb_cache_stats, 0, sizeof(runtime_itlb_cache_stats));
	memset(runtime_dtlb_cache_stats, 0, sizeof(runtime_dtlb_cache_stats));
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	memset(runtime_cycles_in_tx_stats, 0,
			sizeof(runtime_cycles_in_tx_stats));
	memset(runtime_transaction_stats, 0,
		sizeof(runtime_transaction_stats));
	memset(runtime_elision_stats, 0, sizeof(runtime_elision_stats));
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	memset(&walltime_nsecs_stats, 0, sizeof(walltime_nsecs_stats));
}

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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 (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)
339
{
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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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static struct perf_evsel *nth_evsel(int n)
{
	static struct perf_evsel **array;
	static int array_len;
	struct perf_evsel *ev;
	int j;

	/* Assumes this only called when evsel_list does not change anymore. */
	if (!array) {
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		evlist__for_each(evsel_list, ev)
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			array_len++;
		array = malloc(array_len * sizeof(void *));
		if (!array)
			exit(ENOMEM);
		j = 0;
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		evlist__for_each(evsel_list, ev)
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			array[j++] = ev;
	}
	if (n < array_len)
		return array[n];
	return NULL;
}

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/*
 * Update various tracking values we maintain to print
 * more semantic information such as miss/hit ratios,
 * instruction rates, etc:
 */
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static void update_shadow_stats(struct perf_evsel *counter, u64 *count,
				int cpu)
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{
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	int ctx = evsel_context(counter);

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	if (perf_evsel__match(counter, SOFTWARE, SW_TASK_CLOCK))
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		update_stats(&runtime_nsecs_stats[cpu], count[0]);
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	else if (perf_evsel__match(counter, HARDWARE, HW_CPU_CYCLES))
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		update_stats(&runtime_cycles_stats[ctx][cpu], count[0]);
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	else if (transaction_run &&
		 perf_evsel__cmp(counter, nth_evsel(T_CYCLES_IN_TX)))
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		update_stats(&runtime_transaction_stats[ctx][cpu], count[0]);
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	else if (transaction_run &&
		 perf_evsel__cmp(counter, nth_evsel(T_TRANSACTION_START)))
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		update_stats(&runtime_transaction_stats[ctx][cpu], count[0]);
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	else if (transaction_run &&
		 perf_evsel__cmp(counter, nth_evsel(T_ELISION_START)))
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		update_stats(&runtime_elision_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HARDWARE, HW_STALLED_CYCLES_FRONTEND))
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		update_stats(&runtime_stalled_cycles_front_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HARDWARE, HW_STALLED_CYCLES_BACKEND))
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		update_stats(&runtime_stalled_cycles_back_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HARDWARE, HW_BRANCH_INSTRUCTIONS))
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		update_stats(&runtime_branches_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HARDWARE, HW_CACHE_REFERENCES))
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		update_stats(&runtime_cacherefs_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HW_CACHE, HW_CACHE_L1D))
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		update_stats(&runtime_l1_dcache_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HW_CACHE, HW_CACHE_L1I))
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		update_stats(&runtime_ll_cache_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HW_CACHE, HW_CACHE_LL))
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		update_stats(&runtime_ll_cache_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HW_CACHE, HW_CACHE_DTLB))
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		update_stats(&runtime_dtlb_cache_stats[ctx][cpu], count[0]);
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	else if (perf_evsel__match(counter, HW_CACHE, HW_CACHE_ITLB))
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		update_stats(&runtime_itlb_cache_stats[ctx][cpu], count[0]);
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}

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static void zero_per_pkg(struct perf_evsel *counter)
{
	if (counter->per_pkg_mask)
		memset(counter->per_pkg_mask, 0, MAX_NR_CPUS);
}

static int check_per_pkg(struct perf_evsel *counter, int cpu, bool *skip)
{
	unsigned long *mask = counter->per_pkg_mask;
	struct cpu_map *cpus = perf_evsel__cpus(counter);
	int s;

	*skip = false;

	if (!counter->per_pkg)
		return 0;

	if (cpu_map__empty(cpus))
		return 0;

	if (!mask) {
		mask = zalloc(MAX_NR_CPUS);
		if (!mask)
			return -ENOMEM;

		counter->per_pkg_mask = mask;
	}

	s = cpu_map__get_socket(cpus, cpu);
	if (s < 0)
		return -1;

	*skip = test_and_set_bit(s, mask) == 1;
	return 0;
}

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static int read_cb(struct perf_evsel *evsel, int cpu, int thread __maybe_unused,
		   struct perf_counts_values *count)
{
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	struct perf_counts_values *aggr = &evsel->counts->aggr;
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	static struct perf_counts_values zero;
	bool skip = false;

	if (check_per_pkg(evsel, cpu, &skip)) {
		pr_err("failed to read per-pkg counter\n");
		return -1;
	}

	if (skip)
		count = &zero;
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	switch (aggr_mode) {
	case AGGR_CORE:
	case AGGR_SOCKET:
	case AGGR_NONE:
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		if (!evsel->snapshot)
			perf_evsel__compute_deltas(evsel, cpu, count);
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		perf_counts_values__scale(count, scale, NULL);
		evsel->counts->cpu[cpu] = *count;
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		if (aggr_mode == AGGR_NONE)
			update_shadow_stats(evsel, count->values, cpu);
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		break;
	case AGGR_GLOBAL:
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		aggr->val += count->val;
		if (scale) {
			aggr->ena += count->ena;
			aggr->run += count->run;
		}
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	default:
		break;
	}

	return 0;
}

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static int read_counter(struct perf_evsel *counter);

490
/*
491
 * Read out the results of a single counter:
492
 * aggregate counts across CPUs in system-wide mode
493
 */
494
static int read_counter_aggr(struct perf_evsel *counter)
495
{
496
	struct perf_counts_values *aggr = &counter->counts->aggr;
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	struct perf_stat *ps = counter->priv;
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	u64 *count = counter->counts->aggr.values;
	int i;
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	aggr->val = aggr->ena = aggr->run = 0;

	if (read_counter(counter))
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		return -1;
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	if (!counter->snapshot)
		perf_evsel__compute_deltas(counter, -1, aggr);
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	perf_counts_values__scale(aggr, scale, &counter->counts->scaled);

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	for (i = 0; i < 3; i++)
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		update_stats(&ps->res_stats[i], count[i]);
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	if (verbose) {
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		fprintf(output, "%s: %" PRIu64 " %" PRIu64 " %" PRIu64 "\n",
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			perf_evsel__name(counter), count[0], count[1], count[2]);
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	}

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	/*
	 * Save the full runtime - to allow normalization during printout:
	 */
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	update_shadow_stats(counter, count, 0);
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	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)
531
{
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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;

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	if (counter->per_pkg)
		zero_per_pkg(counter);

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	for (thread = 0; thread < nthreads; thread++) {
		for (cpu = 0; cpu < ncpus; cpu++) {
			if (perf_evsel__read_cb(counter, cpu, thread, read_cb))
				return -1;
		}
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	}
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	return 0;
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}

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static void print_interval(void)
{
	static int num_print_interval;
	struct perf_evsel *counter;
	struct perf_stat *ps;
	struct timespec ts, rs;
	char prefix[64];

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	if (aggr_mode == AGGR_GLOBAL) {
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		evlist__for_each(evsel_list, counter) {
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			ps = counter->priv;
			memset(ps->res_stats, 0, sizeof(ps->res_stats));
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			read_counter_aggr(counter);
568
		}
569
	} else	{
570
		evlist__for_each(evsel_list, counter) {
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			ps = counter->priv;
			memset(ps->res_stats, 0, sizeof(ps->res_stats));
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			read_counter(counter);
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		}
	}
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	clock_gettime(CLOCK_MONOTONIC, &ts);
	diff_timespec(&rs, &ts, &ref_time);
	sprintf(prefix, "%6lu.%09lu%s", rs.tv_sec, rs.tv_nsec, csv_sep);

	if (num_print_interval == 0 && !csv_output) {
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		switch (aggr_mode) {
		case AGGR_SOCKET:
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			fprintf(output, "#           time socket cpus             counts %*s events\n", unit_width, "unit");
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			break;
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		case AGGR_CORE:
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			fprintf(output, "#           time core         cpus             counts %*s events\n", unit_width, "unit");
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			break;
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		case AGGR_NONE:
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			fprintf(output, "#           time CPU                counts %*s events\n", unit_width, "unit");
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			break;
		case AGGR_GLOBAL:
		default:
594
			fprintf(output, "#           time             counts %*s events\n", unit_width, "unit");
595
		}
596 597 598 599 600
	}

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

601
	switch (aggr_mode) {
602
	case AGGR_CORE:
603 604 605 606
	case AGGR_SOCKET:
		print_aggr(prefix);
		break;
	case AGGR_NONE:
607
		evlist__for_each(evsel_list, counter)
608
			print_counter(counter, prefix);
609 610 611
		break;
	case AGGR_GLOBAL:
	default:
612
		evlist__for_each(evsel_list, counter)
613 614
			print_counter_aggr(counter, prefix);
	}
615 616

	fflush(output);
617 618
}

619 620 621 622 623 624 625 626 627
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);
628
		evlist__for_each(evsel_list, counter)
629 630 631 632
			perf_evsel__enable(counter, ncpus, nthreads);
	}
}

633
static volatile int workload_exec_errno;
634 635 636 637 638 639

/*
 * perf_evlist__prepare_workload will send a SIGUSR1
 * if the fork fails, since we asked by setting its
 * want_signal to true.
 */
640 641
static void workload_exec_failed_signal(int signo __maybe_unused, siginfo_t *info,
					void *ucontext __maybe_unused)
642
{
643
	workload_exec_errno = info->si_value.sival_int;
644 645
}

646
static int __run_perf_stat(int argc, const char **argv)
647
{
648
	char msg[512];
649
	unsigned long long t0, t1;
650
	struct perf_evsel *counter;
651
	struct timespec ts;
652
	size_t l;
653
	int status = 0;
654
	const bool forks = (argc > 0);
655

656 657 658 659 660 661 662 663
	if (interval) {
		ts.tv_sec  = interval / 1000;
		ts.tv_nsec = (interval % 1000) * 1000000;
	} else {
		ts.tv_sec  = 1;
		ts.tv_nsec = 0;
	}

664
	if (forks) {
665 666
		if (perf_evlist__prepare_workload(evsel_list, &target, argv, false,
						  workload_exec_failed_signal) < 0) {
667 668
			perror("failed to prepare workload");
			return -1;
669
		}
670
		child_pid = evsel_list->workload.pid;
671 672
	}

673
	if (group)
674
		perf_evlist__set_leader(evsel_list);
675

676
	evlist__for_each(evsel_list, counter) {
677
		if (create_perf_stat_counter(counter) < 0) {
678 679 680 681
			/*
			 * PPC returns ENXIO for HW counters until 2.6.37
			 * (behavior changed with commit b0a873e).
			 */
682
			if (errno == EINVAL || errno == ENOSYS ||
683 684
			    errno == ENOENT || errno == EOPNOTSUPP ||
			    errno == ENXIO) {
685 686
				if (verbose)
					ui__warning("%s event is not supported by the kernel.\n",
687
						    perf_evsel__name(counter));
688
				counter->supported = false;
689
				continue;
690
			}
691

692 693 694 695
			perf_evsel__open_strerror(counter, &target,
						  errno, msg, sizeof(msg));
			ui__error("%s\n", msg);

696 697
			if (child_pid != -1)
				kill(child_pid, SIGTERM);
698

699 700
			return -1;
		}
701
		counter->supported = true;
702 703 704 705

		l = strlen(counter->unit);
		if (l > unit_width)
			unit_width = l;
706
	}
707

708 709 710
	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,
711
			strerror_r(errno, msg, sizeof(msg)));
712 713 714
		return -1;
	}

715 716 717 718
	/*
	 * Enable counters and exec the command:
	 */
	t0 = rdclock();
719
	clock_gettime(CLOCK_MONOTONIC, &ref_time);
720

721
	if (forks) {
722
		perf_evlist__start_workload(evsel_list);
723
		handle_initial_delay();
724

725 726 727 728 729 730
		if (interval) {
			while (!waitpid(child_pid, &status, WNOHANG)) {
				nanosleep(&ts, NULL);
				print_interval();
			}
		}
731
		wait(&status);
732

733 734 735
		if (workload_exec_errno) {
			const char *emsg = strerror_r(workload_exec_errno, msg, sizeof(msg));
			pr_err("Workload failed: %s\n", emsg);
736
			return -1;
737
		}
738

739 740
		if (WIFSIGNALED(status))
			psignal(WTERMSIG(status), argv[0]);
741
	} else {
742
		handle_initial_delay();
743 744 745 746 747
		while (!done) {
			nanosleep(&ts, NULL);
			if (interval)
				print_interval();
		}
748
	}
749 750 751

	t1 = rdclock();

752
	update_stats(&walltime_nsecs_stats, t1 - t0);
753

754
	if (aggr_mode == AGGR_GLOBAL) {
755
		evlist__for_each(evsel_list, counter) {
756
			read_counter_aggr(counter);
Y
Yan, Zheng 已提交
757
			perf_evsel__close_fd(counter, perf_evsel__nr_cpus(counter),
758
					     thread_map__nr(evsel_list->threads));
759
		}
760
	} else {
761
		evlist__for_each(evsel_list, counter) {
762 763 764
			read_counter(counter);
			perf_evsel__close_fd(counter, perf_evsel__nr_cpus(counter), 1);
		}
765
	}
766

767 768 769
	return WEXITSTATUS(status);
}

770
static int run_perf_stat(int argc, const char **argv)
771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795
{
	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;
}

796 797 798 799 800 801 802 803 804 805 806 807 808
static void print_running(u64 run, u64 ena)
{
	if (csv_output) {
		fprintf(output, "%s%" PRIu64 "%s%.2f",
					csv_sep,
					run,
					csv_sep,
					ena ? 100.0 * run / ena : 100.0);
	} else if (run != ena) {
		fprintf(output, "  (%.2f%%)", 100.0 * run / ena);
	}
}

809 810
static void print_noise_pct(double total, double avg)
{
811
	double pct = rel_stddev_stats(total, avg);
812

813
	if (csv_output)
814
		fprintf(output, "%s%.2f%%", csv_sep, pct);
815
	else if (pct)
816
		fprintf(output, "  ( +-%6.2f%% )", pct);
817 818
}

819
static void print_noise(struct perf_evsel *evsel, double avg)
820
{
821 822
	struct perf_stat *ps;

823 824 825
	if (run_count == 1)
		return;

826
	ps = evsel->priv;
827
	print_noise_pct(stddev_stats(&ps->res_stats[0]), avg);
828 829
}

830
static void aggr_printout(struct perf_evsel *evsel, int id, int nr)
I
Ingo Molnar 已提交
831
{
832
	switch (aggr_mode) {
833 834 835 836 837 838 839 840 841 842
	case AGGR_CORE:
		fprintf(output, "S%d-C%*d%s%*d%s",
			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;
843 844
	case AGGR_SOCKET:
		fprintf(output, "S%*d%s%*d%s",
845
			csv_output ? 0 : -5,
846
			id,
847 848 849 850
			csv_sep,
			csv_output ? 0 : 4,
			nr,
			csv_sep);
851 852 853
			break;
	case AGGR_NONE:
		fprintf(output, "CPU%*d%s",
S
Stephane Eranian 已提交
854
			csv_output ? 0 : -4,
855
			perf_evsel__cpus(evsel)->map[id], csv_sep);
856 857 858 859 860 861 862
		break;
	case AGGR_GLOBAL:
	default:
		break;
	}
}

863
static void nsec_printout(int id, int nr, struct perf_evsel *evsel, double avg)
864 865
{
	double msecs = avg / 1e6;
866
	const char *fmt_v, *fmt_n;
867
	char name[25];
868

869 870 871
	fmt_v = csv_output ? "%.6f%s" : "%18.6f%s";
	fmt_n = csv_output ? "%s" : "%-25s";

872
	aggr_printout(evsel, id, nr);
S
Stephane Eranian 已提交
873

874 875
	scnprintf(name, sizeof(name), "%s%s",
		  perf_evsel__name(evsel), csv_output ? "" : " (msec)");
876 877 878 879 880 881 882 883 884

	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);
S
Stephane Eranian 已提交
885

S
Stephane Eranian 已提交
886
	if (evsel->cgrp)
887
		fprintf(output, "%s%s", csv_sep, evsel->cgrp->name);
S
Stephane Eranian 已提交
888

889
	if (csv_output || interval)
S
Stephane Eranian 已提交
890
		return;
I
Ingo Molnar 已提交
891

892
	if (perf_evsel__match(evsel, SOFTWARE, SW_TASK_CLOCK))
893 894
		fprintf(output, " # %8.3f CPUs utilized          ",
			avg / avg_stats(&walltime_nsecs_stats));
895 896
	else
		fprintf(output, "                                   ");
I
Ingo Molnar 已提交
897 898
}

899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925
/* used for get_ratio_color() */
enum grc_type {
	GRC_STALLED_CYCLES_FE,
	GRC_STALLED_CYCLES_BE,
	GRC_CACHE_MISSES,
	GRC_MAX_NR
};

static const char *get_ratio_color(enum grc_type type, double ratio)
{
	static const double grc_table[GRC_MAX_NR][3] = {
		[GRC_STALLED_CYCLES_FE] = { 50.0, 30.0, 10.0 },
		[GRC_STALLED_CYCLES_BE] = { 75.0, 50.0, 20.0 },
		[GRC_CACHE_MISSES] 	= { 20.0, 10.0, 5.0 },
	};
	const char *color = PERF_COLOR_NORMAL;

	if (ratio > grc_table[type][0])
		color = PERF_COLOR_RED;
	else if (ratio > grc_table[type][1])
		color = PERF_COLOR_MAGENTA;
	else if (ratio > grc_table[type][2])
		color = PERF_COLOR_YELLOW;

	return color;
}

926 927 928
static void print_stalled_cycles_frontend(int cpu,
					  struct perf_evsel *evsel
					  __maybe_unused, double avg)
929 930 931
{
	double total, ratio = 0.0;
	const char *color;
932
	int ctx = evsel_context(evsel);
933

934
	total = avg_stats(&runtime_cycles_stats[ctx][cpu]);
935 936 937 938

	if (total)
		ratio = avg / total * 100.0;

939
	color = get_ratio_color(GRC_STALLED_CYCLES_FE, ratio);
940

941 942 943
	fprintf(output, " #  ");
	color_fprintf(output, color, "%6.2f%%", ratio);
	fprintf(output, " frontend cycles idle   ");
944 945
}

946 947 948
static void print_stalled_cycles_backend(int cpu,
					 struct perf_evsel *evsel
					 __maybe_unused, double avg)
949 950 951
{
	double total, ratio = 0.0;
	const char *color;
952
	int ctx = evsel_context(evsel);
953

954
	total = avg_stats(&runtime_cycles_stats[ctx][cpu]);
955 956 957 958

	if (total)
		ratio = avg / total * 100.0;

959
	color = get_ratio_color(GRC_STALLED_CYCLES_BE, ratio);
960

961 962 963
	fprintf(output, " #  ");
	color_fprintf(output, color, "%6.2f%%", ratio);
	fprintf(output, " backend  cycles idle   ");
964 965
}

966 967 968
static void print_branch_misses(int cpu,
				struct perf_evsel *evsel __maybe_unused,
				double avg)
969 970 971
{
	double total, ratio = 0.0;
	const char *color;
972
	int ctx = evsel_context(evsel);
973

974
	total = avg_stats(&runtime_branches_stats[ctx][cpu]);
975 976 977 978

	if (total)
		ratio = avg / total * 100.0;

979
	color = get_ratio_color(GRC_CACHE_MISSES, ratio);
980

981 982 983
	fprintf(output, " #  ");
	color_fprintf(output, color, "%6.2f%%", ratio);
	fprintf(output, " of all branches        ");
984 985
}

986 987 988
static void print_l1_dcache_misses(int cpu,
				   struct perf_evsel *evsel __maybe_unused,
				   double avg)
989 990 991
{
	double total, ratio = 0.0;
	const char *color;
992
	int ctx = evsel_context(evsel);
993

994
	total = avg_stats(&runtime_l1_dcache_stats[ctx][cpu]);
995 996 997 998

	if (total)
		ratio = avg / total * 100.0;

999
	color = get_ratio_color(GRC_CACHE_MISSES, ratio);
1000

1001 1002 1003
	fprintf(output, " #  ");
	color_fprintf(output, color, "%6.2f%%", ratio);
	fprintf(output, " of all L1-dcache hits  ");
1004 1005
}

1006 1007 1008
static void print_l1_icache_misses(int cpu,
				   struct perf_evsel *evsel __maybe_unused,
				   double avg)
1009 1010 1011
{
	double total, ratio = 0.0;
	const char *color;
1012
	int ctx = evsel_context(evsel);
1013

1014
	total = avg_stats(&runtime_l1_icache_stats[ctx][cpu]);
1015 1016 1017 1018

	if (total)
		ratio = avg / total * 100.0;

1019
	color = get_ratio_color(GRC_CACHE_MISSES, ratio);
1020

1021 1022 1023
	fprintf(output, " #  ");
	color_fprintf(output, color, "%6.2f%%", ratio);
	fprintf(output, " of all L1-icache hits  ");
1024 1025
}

1026 1027 1028
static void print_dtlb_cache_misses(int cpu,
				    struct perf_evsel *evsel __maybe_unused,
				    double avg)
1029 1030 1031
{
	double total, ratio = 0.0;
	const char *color;
1032
	int ctx = evsel_context(evsel);
1033

1034
	total = avg_stats(&runtime_dtlb_cache_stats[ctx][cpu]);
1035 1036 1037 1038

	if (total)
		ratio = avg / total * 100.0;

1039
	color = get_ratio_color(GRC_CACHE_MISSES, ratio);
1040

1041 1042 1043
	fprintf(output, " #  ");
	color_fprintf(output, color, "%6.2f%%", ratio);
	fprintf(output, " of all dTLB cache hits ");
1044 1045
}

1046 1047 1048
static void print_itlb_cache_misses(int cpu,
				    struct perf_evsel *evsel __maybe_unused,
				    double avg)
1049 1050 1051
{
	double total, ratio = 0.0;
	const char *color;
1052
	int ctx = evsel_context(evsel);
1053

1054
	total = avg_stats(&runtime_itlb_cache_stats[ctx][cpu]);
1055 1056 1057 1058

	if (total)
		ratio = avg / total * 100.0;

1059
	color = get_ratio_color(GRC_CACHE_MISSES, ratio);
1060

1061 1062 1063
	fprintf(output, " #  ");
	color_fprintf(output, color, "%6.2f%%", ratio);
	fprintf(output, " of all iTLB cache hits ");
1064 1065
}

1066 1067 1068
static void print_ll_cache_misses(int cpu,
				  struct perf_evsel *evsel __maybe_unused,
				  double avg)
1069 1070 1071
{
	double total, ratio = 0.0;
	const char *color;
1072
	int ctx = evsel_context(evsel);
1073

1074
	total = avg_stats(&runtime_ll_cache_stats[ctx][cpu]);
1075 1076 1077 1078

	if (total)
		ratio = avg / total * 100.0;

1079
	color = get_ratio_color(GRC_CACHE_MISSES, ratio);
1080

1081 1082 1083
	fprintf(output, " #  ");
	color_fprintf(output, color, "%6.2f%%", ratio);
	fprintf(output, " of all LL-cache hits   ");
1084 1085
}

1086
static void abs_printout(int id, int nr, struct perf_evsel *evsel, double avg)
I
Ingo Molnar 已提交
1087
{
1088
	double total, ratio = 0.0, total2;
1089
	double sc =  evsel->scale;
S
Stephane Eranian 已提交
1090
	const char *fmt;
1091
	int cpu = cpu_map__id_to_cpu(id);
1092
	int ctx = evsel_context(evsel);
S
Stephane Eranian 已提交
1093

1094 1095 1096 1097 1098 1099 1100 1101
	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";
	}
1102

1103
	aggr_printout(evsel, id, nr);
1104 1105

	if (aggr_mode == AGGR_GLOBAL)
1106
		cpu = 0;
1107

1108 1109 1110 1111 1112 1113 1114 1115
	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));
S
Stephane Eranian 已提交
1116

S
Stephane Eranian 已提交
1117
	if (evsel->cgrp)
1118
		fprintf(output, "%s%s", csv_sep, evsel->cgrp->name);
S
Stephane Eranian 已提交
1119

1120
	if (csv_output || interval)
S
Stephane Eranian 已提交
1121
		return;
I
Ingo Molnar 已提交
1122

1123
	if (perf_evsel__match(evsel, HARDWARE, HW_INSTRUCTIONS)) {
1124
		total = avg_stats(&runtime_cycles_stats[ctx][cpu]);
1125
		if (total) {
1126
			ratio = avg / total;
1127
			fprintf(output, " #   %5.2f  insns per cycle        ", ratio);
1128 1129
		} else {
			fprintf(output, "                                   ");
1130
		}
1131 1132
		total = avg_stats(&runtime_stalled_cycles_front_stats[ctx][cpu]);
		total = max(total, avg_stats(&runtime_stalled_cycles_back_stats[ctx][cpu]));
1133 1134 1135

		if (total && avg) {
			ratio = total / avg;
1136 1137 1138 1139
			fprintf(output, "\n");
			if (aggr_mode == AGGR_NONE)
				fprintf(output, "        ");
			fprintf(output, "                                                  #   %5.2f  stalled cycles per insn", ratio);
1140 1141
		}

1142
	} else if (perf_evsel__match(evsel, HARDWARE, HW_BRANCH_MISSES) &&
1143
			runtime_branches_stats[ctx][cpu].n != 0) {
1144
		print_branch_misses(cpu, evsel, avg);
1145 1146 1147 1148 1149
	} else if (
		evsel->attr.type == PERF_TYPE_HW_CACHE &&
		evsel->attr.config ==  ( PERF_COUNT_HW_CACHE_L1D |
					((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
					((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16)) &&
1150
			runtime_l1_dcache_stats[ctx][cpu].n != 0) {
1151
		print_l1_dcache_misses(cpu, evsel, avg);
1152 1153 1154 1155 1156
	} else if (
		evsel->attr.type == PERF_TYPE_HW_CACHE &&
		evsel->attr.config ==  ( PERF_COUNT_HW_CACHE_L1I |
					((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
					((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16)) &&
1157
			runtime_l1_icache_stats[ctx][cpu].n != 0) {
1158 1159 1160 1161 1162 1163
		print_l1_icache_misses(cpu, evsel, avg);
	} else if (
		evsel->attr.type == PERF_TYPE_HW_CACHE &&
		evsel->attr.config ==  ( PERF_COUNT_HW_CACHE_DTLB |
					((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
					((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16)) &&
1164
			runtime_dtlb_cache_stats[ctx][cpu].n != 0) {
1165 1166 1167 1168 1169 1170
		print_dtlb_cache_misses(cpu, evsel, avg);
	} else if (
		evsel->attr.type == PERF_TYPE_HW_CACHE &&
		evsel->attr.config ==  ( PERF_COUNT_HW_CACHE_ITLB |
					((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
					((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16)) &&
1171
			runtime_itlb_cache_stats[ctx][cpu].n != 0) {
1172 1173 1174 1175 1176 1177
		print_itlb_cache_misses(cpu, evsel, avg);
	} else if (
		evsel->attr.type == PERF_TYPE_HW_CACHE &&
		evsel->attr.config ==  ( PERF_COUNT_HW_CACHE_LL |
					((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
					((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16)) &&
1178
			runtime_ll_cache_stats[ctx][cpu].n != 0) {
1179
		print_ll_cache_misses(cpu, evsel, avg);
1180
	} else if (perf_evsel__match(evsel, HARDWARE, HW_CACHE_MISSES) &&
1181 1182
			runtime_cacherefs_stats[ctx][cpu].n != 0) {
		total = avg_stats(&runtime_cacherefs_stats[ctx][cpu]);
1183 1184 1185 1186

		if (total)
			ratio = avg * 100 / total;

1187
		fprintf(output, " # %8.3f %% of all cache refs    ", ratio);
1188

1189 1190
	} else if (perf_evsel__match(evsel, HARDWARE, HW_STALLED_CYCLES_FRONTEND)) {
		print_stalled_cycles_frontend(cpu, evsel, avg);
1191
	} else if (perf_evsel__match(evsel, HARDWARE, HW_STALLED_CYCLES_BACKEND)) {
1192
		print_stalled_cycles_backend(cpu, evsel, avg);
1193
	} else if (perf_evsel__match(evsel, HARDWARE, HW_CPU_CYCLES)) {
1194
		total = avg_stats(&runtime_nsecs_stats[cpu]);
1195

1196 1197 1198
		if (total) {
			ratio = avg / total;
			fprintf(output, " # %8.3f GHz                    ", ratio);
1199 1200
		} else {
			fprintf(output, "                                   ");
1201
		}
1202 1203
	} else if (transaction_run &&
		   perf_evsel__cmp(evsel, nth_evsel(T_CYCLES_IN_TX))) {
1204
		total = avg_stats(&runtime_cycles_stats[ctx][cpu]);
1205 1206 1207 1208 1209 1210
		if (total)
			fprintf(output,
				" #   %5.2f%% transactional cycles   ",
				100.0 * (avg / total));
	} else if (transaction_run &&
		   perf_evsel__cmp(evsel, nth_evsel(T_CYCLES_IN_TX_CP))) {
1211 1212
		total = avg_stats(&runtime_cycles_stats[ctx][cpu]);
		total2 = avg_stats(&runtime_cycles_in_tx_stats[ctx][cpu]);
1213 1214 1215 1216 1217 1218 1219 1220 1221
		if (total2 < avg)
			total2 = avg;
		if (total)
			fprintf(output,
				" #   %5.2f%% aborted cycles         ",
				100.0 * ((total2-avg) / total));
	} else if (transaction_run &&
		   perf_evsel__cmp(evsel, nth_evsel(T_TRANSACTION_START)) &&
		   avg > 0 &&
1222 1223
		   runtime_cycles_in_tx_stats[ctx][cpu].n != 0) {
		total = avg_stats(&runtime_cycles_in_tx_stats[ctx][cpu]);
1224 1225 1226 1227 1228 1229 1230 1231

		if (total)
			ratio = total / avg;

		fprintf(output, " # %8.0f cycles / transaction   ", ratio);
	} else if (transaction_run &&
		   perf_evsel__cmp(evsel, nth_evsel(T_ELISION_START)) &&
		   avg > 0 &&
1232 1233
		   runtime_cycles_in_tx_stats[ctx][cpu].n != 0) {
		total = avg_stats(&runtime_cycles_in_tx_stats[ctx][cpu]);
1234 1235 1236 1237 1238

		if (total)
			ratio = total / avg;

		fprintf(output, " # %8.0f cycles / elision       ", ratio);
1239
	} else if (runtime_nsecs_stats[cpu].n != 0) {
N
Namhyung Kim 已提交
1240 1241
		char unit = 'M';

1242
		total = avg_stats(&runtime_nsecs_stats[cpu]);
1243 1244

		if (total)
1245
			ratio = 1000.0 * avg / total;
N
Namhyung Kim 已提交
1246 1247 1248 1249
		if (ratio < 0.001) {
			ratio *= 1000;
			unit = 'K';
		}
1250

N
Namhyung Kim 已提交
1251
		fprintf(output, " # %8.3f %c/sec                  ", ratio, unit);
1252
	} else {
1253
		fprintf(output, "                                   ");
I
Ingo Molnar 已提交
1254 1255 1256
	}
}

1257
static void print_aggr(char *prefix)
1258 1259
{
	struct perf_evsel *counter;
1260
	int cpu, cpu2, s, s2, id, nr;
1261
	double uval;
1262 1263
	u64 ena, run, val;

1264
	if (!(aggr_map || aggr_get_id))
1265 1266
		return;

1267 1268
	for (s = 0; s < aggr_map->nr; s++) {
		id = aggr_map->map[s];
1269
		evlist__for_each(evsel_list, counter) {
1270 1271 1272
			val = ena = run = 0;
			nr = 0;
			for (cpu = 0; cpu < perf_evsel__nr_cpus(counter); cpu++) {
1273 1274
				cpu2 = perf_evsel__cpus(counter)->map[cpu];
				s2 = aggr_get_id(evsel_list->cpus, cpu2);
1275
				if (s2 != id)
1276 1277 1278 1279 1280 1281 1282 1283 1284 1285
					continue;
				val += counter->counts->cpu[cpu].val;
				ena += counter->counts->cpu[cpu].ena;
				run += counter->counts->cpu[cpu].run;
				nr++;
			}
			if (prefix)
				fprintf(output, "%s", prefix);

			if (run == 0 || ena == 0) {
1286
				aggr_printout(counter, id, nr);
1287

1288
				fprintf(output, "%*s%s",
1289 1290
					csv_output ? 0 : 18,
					counter->supported ? CNTR_NOT_COUNTED : CNTR_NOT_SUPPORTED,
1291 1292 1293 1294 1295 1296 1297 1298
					csv_sep);

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

				fprintf(output, "%*s",
					csv_output ? 0 : -25,
1299
					perf_evsel__name(counter));
1300

1301 1302 1303 1304
				if (counter->cgrp)
					fprintf(output, "%s%s",
						csv_sep, counter->cgrp->name);

1305
				print_running(run, ena);
1306 1307 1308
				fputc('\n', output);
				continue;
			}
1309
			uval = val * counter->scale;
1310 1311

			if (nsec_counter(counter))
1312
				nsec_printout(id, nr, counter, uval);
1313
			else
1314
				abs_printout(id, nr, counter, uval);
1315

1316
			if (!csv_output)
1317 1318
				print_noise(counter, 1.0);

1319
			print_running(run, ena);
1320 1321 1322 1323 1324
			fputc('\n', output);
		}
	}
}

1325 1326
/*
 * Print out the results of a single counter:
1327
 * aggregated counts in system-wide mode
1328
 */
1329
static void print_counter_aggr(struct perf_evsel *counter, char *prefix)
1330
{
1331 1332
	struct perf_stat *ps = counter->priv;
	double avg = avg_stats(&ps->res_stats[0]);
1333
	int scaled = counter->counts->scaled;
1334
	double uval;
1335 1336 1337 1338
	double avg_enabled, avg_running;

	avg_enabled = avg_stats(&ps->res_stats[1]);
	avg_running = avg_stats(&ps->res_stats[2]);
1339

1340 1341 1342
	if (prefix)
		fprintf(output, "%s", prefix);

1343
	if (scaled == -1 || !counter->supported) {
1344
		fprintf(output, "%*s%s",
S
Stephane Eranian 已提交
1345
			csv_output ? 0 : 18,
1346
			counter->supported ? CNTR_NOT_COUNTED : CNTR_NOT_SUPPORTED,
1347 1348 1349 1350 1351 1352
			csv_sep);
		fprintf(output, "%-*s%s",
			csv_output ? 0 : unit_width,
			counter->unit, csv_sep);
		fprintf(output, "%*s",
			csv_output ? 0 : -25,
1353
			perf_evsel__name(counter));
S
Stephane Eranian 已提交
1354 1355

		if (counter->cgrp)
1356
			fprintf(output, "%s%s", csv_sep, counter->cgrp->name);
S
Stephane Eranian 已提交
1357

1358
		print_running(avg_running, avg_enabled);
1359
		fputc('\n', output);
1360 1361
		return;
	}
1362

1363 1364
	uval = avg * counter->scale;

I
Ingo Molnar 已提交
1365
	if (nsec_counter(counter))
1366
		nsec_printout(-1, 0, counter, uval);
I
Ingo Molnar 已提交
1367
	else
1368
		abs_printout(-1, 0, counter, uval);
1369

1370 1371
	print_noise(counter, avg);

1372
	print_running(avg_running, avg_enabled);
1373
	fprintf(output, "\n");
1374 1375
}

1376 1377 1378 1379
/*
 * Print out the results of a single counter:
 * does not use aggregated count in system-wide
 */
1380
static void print_counter(struct perf_evsel *counter, char *prefix)
1381 1382
{
	u64 ena, run, val;
1383
	double uval;
1384 1385
	int cpu;

Y
Yan, Zheng 已提交
1386
	for (cpu = 0; cpu < perf_evsel__nr_cpus(counter); cpu++) {
1387 1388 1389
		val = counter->counts->cpu[cpu].val;
		ena = counter->counts->cpu[cpu].ena;
		run = counter->counts->cpu[cpu].run;
1390 1391 1392 1393

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

1394
		if (run == 0 || ena == 0) {
1395
			fprintf(output, "CPU%*d%s%*s%s",
S
Stephane Eranian 已提交
1396
				csv_output ? 0 : -4,
Y
Yan, Zheng 已提交
1397
				perf_evsel__cpus(counter)->map[cpu], csv_sep,
S
Stephane Eranian 已提交
1398
				csv_output ? 0 : 18,
1399
				counter->supported ? CNTR_NOT_COUNTED : CNTR_NOT_SUPPORTED,
1400 1401 1402 1403 1404 1405 1406 1407 1408
				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));
1409

S
Stephane Eranian 已提交
1410
			if (counter->cgrp)
1411 1412
				fprintf(output, "%s%s",
					csv_sep, counter->cgrp->name);
S
Stephane Eranian 已提交
1413

1414
			print_running(run, ena);
1415
			fputc('\n', output);
1416 1417 1418
			continue;
		}

1419 1420
		uval = val * counter->scale;

1421
		if (nsec_counter(counter))
1422
			nsec_printout(cpu, 0, counter, uval);
1423
		else
1424
			abs_printout(cpu, 0, counter, uval);
1425

1426
		if (!csv_output)
S
Stephane Eranian 已提交
1427
			print_noise(counter, 1.0);
1428
		print_running(run, ena);
1429

1430
		fputc('\n', output);
1431 1432 1433
	}
}

1434 1435
static void print_stat(int argc, const char **argv)
{
1436 1437
	struct perf_evsel *counter;
	int i;
1438

1439 1440
	fflush(stdout);

S
Stephane Eranian 已提交
1441
	if (!csv_output) {
1442 1443
		fprintf(output, "\n");
		fprintf(output, " Performance counter stats for ");
1444 1445 1446 1447
		if (target.system_wide)
			fprintf(output, "\'system wide");
		else if (target.cpu_list)
			fprintf(output, "\'CPU(s) %s", target.cpu_list);
1448
		else if (!target__has_task(&target)) {
1449
			fprintf(output, "\'%s", argv[0]);
S
Stephane Eranian 已提交
1450
			for (i = 1; i < argc; i++)
1451
				fprintf(output, " %s", argv[i]);
1452 1453
		} else if (target.pid)
			fprintf(output, "process id \'%s", target.pid);
S
Stephane Eranian 已提交
1454
		else
1455
			fprintf(output, "thread id \'%s", target.tid);
I
Ingo Molnar 已提交
1456

1457
		fprintf(output, "\'");
S
Stephane Eranian 已提交
1458
		if (run_count > 1)
1459 1460
			fprintf(output, " (%d runs)", run_count);
		fprintf(output, ":\n\n");
S
Stephane Eranian 已提交
1461
	}
1462

1463
	switch (aggr_mode) {
1464
	case AGGR_CORE:
1465 1466 1467 1468
	case AGGR_SOCKET:
		print_aggr(NULL);
		break;
	case AGGR_GLOBAL:
1469
		evlist__for_each(evsel_list, counter)
1470
			print_counter_aggr(counter, NULL);
1471 1472
		break;
	case AGGR_NONE:
1473
		evlist__for_each(evsel_list, counter)
1474 1475 1476 1477
			print_counter(counter, NULL);
		break;
	default:
		break;
1478
	}
1479

S
Stephane Eranian 已提交
1480
	if (!csv_output) {
1481
		if (!null_run)
1482 1483
			fprintf(output, "\n");
		fprintf(output, " %17.9f seconds time elapsed",
S
Stephane Eranian 已提交
1484 1485
				avg_stats(&walltime_nsecs_stats)/1e9);
		if (run_count > 1) {
1486
			fprintf(output, "                                        ");
1487 1488
			print_noise_pct(stddev_stats(&walltime_nsecs_stats),
					avg_stats(&walltime_nsecs_stats));
S
Stephane Eranian 已提交
1489
		}
1490
		fprintf(output, "\n\n");
I
Ingo Molnar 已提交
1491
	}
1492 1493
}

1494 1495
static volatile int signr = -1;

1496
static void skip_signal(int signo)
1497
{
1498
	if ((child_pid == -1) || interval)
1499 1500
		done = 1;

1501
	signr = signo;
1502 1503 1504 1505 1506 1507 1508
	/*
	 * render child_pid harmless
	 * won't send SIGTERM to a random
	 * process in case of race condition
	 * and fast PID recycling
	 */
	child_pid = -1;
1509 1510 1511 1512
}

static void sig_atexit(void)
{
1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524
	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);

1525 1526 1527
	if (child_pid != -1)
		kill(child_pid, SIGTERM);

1528 1529
	sigprocmask(SIG_SETMASK, &oset, NULL);

1530 1531 1532 1533 1534
	if (signr == -1)
		return;

	signal(signr, SIG_DFL);
	kill(getpid(), signr);
1535 1536
}

1537 1538
static int stat__set_big_num(const struct option *opt __maybe_unused,
			     const char *s __maybe_unused, int unset)
S
Stephane Eranian 已提交
1539 1540 1541 1542 1543
{
	big_num_opt = unset ? 0 : 1;
	return 0;
}

1544 1545 1546 1547 1548 1549 1550 1551 1552 1553
static int perf_stat_init_aggr_mode(void)
{
	switch (aggr_mode) {
	case AGGR_SOCKET:
		if (cpu_map__build_socket_map(evsel_list->cpus, &aggr_map)) {
			perror("cannot build socket map");
			return -1;
		}
		aggr_get_id = cpu_map__get_socket;
		break;
1554 1555 1556 1557 1558 1559 1560
	case AGGR_CORE:
		if (cpu_map__build_core_map(evsel_list->cpus, &aggr_map)) {
			perror("cannot build core map");
			return -1;
		}
		aggr_get_id = cpu_map__get_core;
		break;
1561 1562 1563 1564 1565 1566 1567 1568
	case AGGR_NONE:
	case AGGR_GLOBAL:
	default:
		break;
	}
	return 0;
}

1569 1570 1571 1572 1573
static int setup_events(const char * const *attrs, unsigned len)
{
	unsigned i;

	for (i = 0; i < len; i++) {
1574
		if (parse_events(evsel_list, attrs[i], NULL))
1575 1576 1577 1578
			return -1;
	}
	return 0;
}
1579

1580 1581 1582 1583 1584 1585
/*
 * 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)
{
1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692
	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)				},
};

1693 1694 1695 1696
	/* Set attrs if no event is selected and !null_run: */
	if (null_run)
		return 0;

1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712
	if (transaction_run) {
		int err;
		if (pmu_have_event("cpu", "cycles-ct") &&
		    pmu_have_event("cpu", "el-start"))
			err = setup_events(transaction_attrs,
					ARRAY_SIZE(transaction_attrs));
		else
			err = setup_events(transaction_limited_attrs,
				 ARRAY_SIZE(transaction_limited_attrs));
		if (err < 0) {
			fprintf(stderr, "Cannot set up transaction events\n");
			return -1;
		}
		return 0;
	}

1713
	if (!evsel_list->nr_entries) {
1714
		if (perf_evlist__add_default_attrs(evsel_list, default_attrs) < 0)
1715
			return -1;
1716 1717 1718 1719 1720 1721 1722 1723
	}

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

	if (detailed_run <  1)
		return 0;

	/* Append detailed run extra attributes: */
1724
	if (perf_evlist__add_default_attrs(evsel_list, detailed_attrs) < 0)
1725
		return -1;
1726 1727 1728 1729 1730

	if (detailed_run < 2)
		return 0;

	/* Append very detailed run extra attributes: */
1731
	if (perf_evlist__add_default_attrs(evsel_list, very_detailed_attrs) < 0)
1732
		return -1;
1733 1734 1735 1736 1737

	if (detailed_run < 3)
		return 0;

	/* Append very, very detailed run extra attributes: */
1738
	return perf_evlist__add_default_attrs(evsel_list, very_very_detailed_attrs);
1739 1740
}

1741
int cmd_stat(int argc, const char **argv, const char *prefix __maybe_unused)
1742
{
1743
	bool append_file = false;
1744 1745 1746
	int output_fd = 0;
	const char *output_name	= NULL;
	const struct option options[] = {
1747 1748
	OPT_BOOLEAN('T', "transaction", &transaction_run,
		    "hardware transaction statistics"),
1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767
	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"),
	OPT_BOOLEAN('c', "scale", &scale, "scale/normalize counters"),
	OPT_INCR('v', "verbose", &verbose,
		    "be more verbose (show counter open errors, etc)"),
	OPT_INTEGER('r', "repeat", &run_count,
1768
		    "repeat command and print average + stddev (max: 100, forever: 0)"),
1769 1770 1771 1772 1773 1774
	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"),
1775
	OPT_CALLBACK_NOOPT('B', "big-num", NULL, NULL,
1776 1777 1778 1779
			   "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"),
1780 1781
	OPT_SET_UINT('A', "no-aggr", &aggr_mode,
		    "disable CPU count aggregation", AGGR_NONE),
1782 1783 1784 1785 1786 1787 1788 1789
	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"),
1790 1791 1792 1793
	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"),
1794 1795
	OPT_UINTEGER('I', "interval-print", &interval,
		    "print counts at regular interval in ms (>= 100)"),
1796
	OPT_SET_UINT(0, "per-socket", &aggr_mode,
1797
		     "aggregate counts per processor socket", AGGR_SOCKET),
1798 1799
	OPT_SET_UINT(0, "per-core", &aggr_mode,
		     "aggregate counts per physical processor core", AGGR_CORE),
1800 1801
	OPT_UINTEGER('D', "delay", &initial_delay,
		     "ms to wait before starting measurement after program start"),
1802 1803 1804 1805 1806 1807
	OPT_END()
	};
	const char * const stat_usage[] = {
		"perf stat [<options>] [<command>]",
		NULL
	};
1808
	int status = -EINVAL, run_idx;
1809
	const char *mode;
1810

1811 1812
	setlocale(LC_ALL, "");

1813
	evsel_list = perf_evlist__new();
1814 1815 1816
	if (evsel_list == NULL)
		return -ENOMEM;

1817 1818
	argc = parse_options(argc, argv, options, stat_usage,
		PARSE_OPT_STOP_AT_NON_OPTION);
S
Stephane Eranian 已提交
1819

1820 1821 1822 1823
	output = stderr;
	if (output_name && strcmp(output_name, "-"))
		output = NULL;

1824 1825
	if (output_name && output_fd) {
		fprintf(stderr, "cannot use both --output and --log-fd\n");
1826 1827 1828
		parse_options_usage(stat_usage, options, "o", 1);
		parse_options_usage(NULL, options, "log-fd", 0);
		goto out;
1829
	}
1830 1831 1832

	if (output_fd < 0) {
		fprintf(stderr, "argument to --log-fd must be a > 0\n");
1833 1834
		parse_options_usage(stat_usage, options, "log-fd", 0);
		goto out;
1835 1836
	}

1837 1838 1839 1840 1841 1842 1843
	if (!output) {
		struct timespec tm;
		mode = append_file ? "a" : "w";

		output = fopen(output_name, mode);
		if (!output) {
			perror("failed to create output file");
1844
			return -1;
1845 1846 1847
		}
		clock_gettime(CLOCK_REALTIME, &tm);
		fprintf(output, "# started on %s\n", ctime(&tm.tv_sec));
1848
	} else if (output_fd > 0) {
1849 1850 1851 1852 1853 1854
		mode = append_file ? "a" : "w";
		output = fdopen(output_fd, mode);
		if (!output) {
			perror("Failed opening logfd");
			return -errno;
		}
1855 1856
	}

1857
	if (csv_sep) {
S
Stephane Eranian 已提交
1858
		csv_output = true;
1859 1860 1861
		if (!strcmp(csv_sep, "\\t"))
			csv_sep = "\t";
	} else
S
Stephane Eranian 已提交
1862 1863 1864 1865 1866 1867
		csv_sep = DEFAULT_SEPARATOR;

	/*
	 * let the spreadsheet do the pretty-printing
	 */
	if (csv_output) {
J
Jim Cromie 已提交
1868
		/* User explicitly passed -B? */
S
Stephane Eranian 已提交
1869 1870
		if (big_num_opt == 1) {
			fprintf(stderr, "-B option not supported with -x\n");
1871 1872 1873
			parse_options_usage(stat_usage, options, "B", 1);
			parse_options_usage(NULL, options, "x", 1);
			goto out;
S
Stephane Eranian 已提交
1874 1875 1876 1877 1878
		} else /* Nope, so disable big number formatting */
			big_num = false;
	} else if (big_num_opt == 0) /* User passed --no-big-num */
		big_num = false;

1879
	if (!argc && target__none(&target))
1880
		usage_with_options(stat_usage, options);
1881

1882
	if (run_count < 0) {
1883 1884 1885
		pr_err("Run count must be a positive number\n");
		parse_options_usage(stat_usage, options, "r", 1);
		goto out;
1886 1887 1888 1889
	} else if (run_count == 0) {
		forever = true;
		run_count = 1;
	}
1890

S
Stephane Eranian 已提交
1891
	/* no_aggr, cgroup are for system-wide only */
1892 1893
	if ((aggr_mode != AGGR_GLOBAL || nr_cgroups) &&
	    !target__has_cpu(&target)) {
S
Stephane Eranian 已提交
1894 1895 1896
		fprintf(stderr, "both cgroup and no-aggregation "
			"modes only available in system-wide mode\n");

1897 1898 1899 1900
		parse_options_usage(stat_usage, options, "G", 1);
		parse_options_usage(NULL, options, "A", 1);
		parse_options_usage(NULL, options, "a", 1);
		goto out;
1901 1902
	}

1903 1904
	if (add_default_attributes())
		goto out;
1905

1906
	target__validate(&target);
1907

1908
	if (perf_evlist__create_maps(evsel_list, &target) < 0) {
1909
		if (target__has_task(&target)) {
1910
			pr_err("Problems finding threads of monitor\n");
1911 1912
			parse_options_usage(stat_usage, options, "p", 1);
			parse_options_usage(NULL, options, "t", 1);
1913
		} else if (target__has_cpu(&target)) {
1914
			perror("failed to parse CPUs map");
1915 1916 1917 1918
			parse_options_usage(stat_usage, options, "C", 1);
			parse_options_usage(NULL, options, "a", 1);
		}
		goto out;
1919
	}
1920 1921
	if (interval && interval < 100) {
		pr_err("print interval must be >= 100ms\n");
1922
		parse_options_usage(stat_usage, options, "I", 1);
1923
		goto out;
1924
	}
1925

1926
	if (perf_evlist__alloc_stats(evsel_list, interval))
1927
		goto out;
1928

1929
	if (perf_stat_init_aggr_mode())
1930
		goto out;
1931

I
Ingo Molnar 已提交
1932 1933 1934 1935 1936 1937
	/*
	 * 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:
	 */
1938
	atexit(sig_atexit);
1939 1940
	if (!forever)
		signal(SIGINT,  skip_signal);
1941
	signal(SIGCHLD, skip_signal);
I
Ingo Molnar 已提交
1942 1943 1944
	signal(SIGALRM, skip_signal);
	signal(SIGABRT, skip_signal);

1945
	status = 0;
1946
	for (run_idx = 0; forever || run_idx < run_count; run_idx++) {
1947
		if (run_count != 1 && verbose)
1948 1949
			fprintf(output, "[ perf stat: executing run #%d ... ]\n",
				run_idx + 1);
I
Ingo Molnar 已提交
1950

1951
		status = run_perf_stat(argc, argv);
1952 1953
		if (forever && status != -1) {
			print_stat(argc, argv);
1954
			perf_stat__reset_stats(evsel_list);
1955
		}
1956 1957
	}

1958
	if (!forever && status != -1 && !interval)
1959
		print_stat(argc, argv);
1960 1961

	perf_evlist__free_stats(evsel_list);
1962 1963
out:
	perf_evlist__delete(evsel_list);
1964
	return status;
1965
}