builtin-sched.c 44.2 KB
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#include "builtin.h"
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#include "perf.h"
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#include "util/util.h"
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#include "util/evlist.h"
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#include "util/cache.h"
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#include "util/evsel.h"
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#include "util/symbol.h"
#include "util/thread.h"
#include "util/header.h"
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#include "util/session.h"
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#include "util/tool.h"
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#include "util/parse-options.h"
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#include "util/trace-event.h"
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#include "util/debug.h"

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#include <sys/prctl.h>
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#include <sys/resource.h>
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#include <semaphore.h>
#include <pthread.h>
#include <math.h>
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static const char		*input_name;
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static char			default_sort_order[] = "avg, max, switch, runtime";
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static const char		*sort_order = default_sort_order;
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static int			profile_cpu = -1;

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#define PR_SET_NAME		15               /* Set process name */
#define MAX_CPUS		4096
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static u64			run_measurement_overhead;
static u64			sleep_measurement_overhead;
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#define COMM_LEN		20
#define SYM_LEN			129
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#define MAX_PID			65536
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static unsigned long		nr_tasks;
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struct perf_sched {
	struct perf_tool    tool;
	struct perf_session *session;
};

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struct sched_atom;
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struct task_desc {
	unsigned long		nr;
	unsigned long		pid;
	char			comm[COMM_LEN];
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	unsigned long		nr_events;
	unsigned long		curr_event;
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	struct sched_atom	**atoms;
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	pthread_t		thread;
	sem_t			sleep_sem;
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	sem_t			ready_for_work;
	sem_t			work_done_sem;

	u64			cpu_usage;
};

enum sched_event_type {
	SCHED_EVENT_RUN,
	SCHED_EVENT_SLEEP,
	SCHED_EVENT_WAKEUP,
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	SCHED_EVENT_MIGRATION,
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};

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struct sched_atom {
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	enum sched_event_type	type;
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	int			specific_wait;
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	u64			timestamp;
	u64			duration;
	unsigned long		nr;
	sem_t			*wait_sem;
	struct task_desc	*wakee;
};

static struct task_desc		*pid_to_task[MAX_PID];

static struct task_desc		**tasks;

static pthread_mutex_t		start_work_mutex = PTHREAD_MUTEX_INITIALIZER;
static u64			start_time;

static pthread_mutex_t		work_done_wait_mutex = PTHREAD_MUTEX_INITIALIZER;
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static unsigned long		nr_run_events;
static unsigned long		nr_sleep_events;
static unsigned long		nr_wakeup_events;

static unsigned long		nr_sleep_corrections;
static unsigned long		nr_run_events_optimized;

static unsigned long		targetless_wakeups;
static unsigned long		multitarget_wakeups;

static u64			cpu_usage;
static u64			runavg_cpu_usage;
static u64			parent_cpu_usage;
static u64			runavg_parent_cpu_usage;

static unsigned long		nr_runs;
static u64			sum_runtime;
static u64			sum_fluct;
static u64			run_avg;

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static unsigned int		replay_repeat = 10;
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static unsigned long		nr_timestamps;
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static unsigned long		nr_unordered_timestamps;
static unsigned long		nr_state_machine_bugs;
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static unsigned long		nr_context_switch_bugs;
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static unsigned long		nr_events;
static unsigned long		nr_lost_chunks;
static unsigned long		nr_lost_events;
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#define TASK_STATE_TO_CHAR_STR "RSDTtZX"

enum thread_state {
	THREAD_SLEEPING = 0,
	THREAD_WAIT_CPU,
	THREAD_SCHED_IN,
	THREAD_IGNORE
};

struct work_atom {
	struct list_head	list;
	enum thread_state	state;
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	u64			sched_out_time;
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	u64			wake_up_time;
	u64			sched_in_time;
	u64			runtime;
};

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struct work_atoms {
	struct list_head	work_list;
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	struct thread		*thread;
	struct rb_node		node;
	u64			max_lat;
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	u64			max_lat_at;
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	u64			total_lat;
	u64			nb_atoms;
	u64			total_runtime;
};

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typedef int (*sort_fn_t)(struct work_atoms *, struct work_atoms *);
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static struct rb_root		atom_root, sorted_atom_root;

static u64			all_runtime;
static u64			all_count;


static u64 get_nsecs(void)
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{
	struct timespec ts;

	clock_gettime(CLOCK_MONOTONIC, &ts);

	return ts.tv_sec * 1000000000ULL + ts.tv_nsec;
}

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static void burn_nsecs(u64 nsecs)
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{
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	u64 T0 = get_nsecs(), T1;
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	do {
		T1 = get_nsecs();
	} while (T1 + run_measurement_overhead < T0 + nsecs);
}

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static void sleep_nsecs(u64 nsecs)
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{
	struct timespec ts;

	ts.tv_nsec = nsecs % 999999999;
	ts.tv_sec = nsecs / 999999999;

	nanosleep(&ts, NULL);
}

static void calibrate_run_measurement_overhead(void)
{
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	u64 T0, T1, delta, min_delta = 1000000000ULL;
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	int i;

	for (i = 0; i < 10; i++) {
		T0 = get_nsecs();
		burn_nsecs(0);
		T1 = get_nsecs();
		delta = T1-T0;
		min_delta = min(min_delta, delta);
	}
	run_measurement_overhead = min_delta;

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	printf("run measurement overhead: %" PRIu64 " nsecs\n", min_delta);
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}

static void calibrate_sleep_measurement_overhead(void)
{
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	u64 T0, T1, delta, min_delta = 1000000000ULL;
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	int i;

	for (i = 0; i < 10; i++) {
		T0 = get_nsecs();
		sleep_nsecs(10000);
		T1 = get_nsecs();
		delta = T1-T0;
		min_delta = min(min_delta, delta);
	}
	min_delta -= 10000;
	sleep_measurement_overhead = min_delta;

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	printf("sleep measurement overhead: %" PRIu64 " nsecs\n", min_delta);
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}

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static struct sched_atom *
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get_new_event(struct task_desc *task, u64 timestamp)
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{
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	struct sched_atom *event = zalloc(sizeof(*event));
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	unsigned long idx = task->nr_events;
	size_t size;

	event->timestamp = timestamp;
	event->nr = idx;

	task->nr_events++;
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	size = sizeof(struct sched_atom *) * task->nr_events;
	task->atoms = realloc(task->atoms, size);
	BUG_ON(!task->atoms);
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	task->atoms[idx] = event;
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	return event;
}

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static struct sched_atom *last_event(struct task_desc *task)
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{
	if (!task->nr_events)
		return NULL;

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	return task->atoms[task->nr_events - 1];
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}

static void
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add_sched_event_run(struct task_desc *task, u64 timestamp, u64 duration)
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{
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	struct sched_atom *event, *curr_event = last_event(task);
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	/*
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	 * optimize an existing RUN event by merging this one
	 * to it:
	 */
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	if (curr_event && curr_event->type == SCHED_EVENT_RUN) {
		nr_run_events_optimized++;
		curr_event->duration += duration;
		return;
	}

	event = get_new_event(task, timestamp);

	event->type = SCHED_EVENT_RUN;
	event->duration = duration;

	nr_run_events++;
}

static void
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add_sched_event_wakeup(struct task_desc *task, u64 timestamp,
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		       struct task_desc *wakee)
{
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	struct sched_atom *event, *wakee_event;
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	event = get_new_event(task, timestamp);
	event->type = SCHED_EVENT_WAKEUP;
	event->wakee = wakee;

	wakee_event = last_event(wakee);
	if (!wakee_event || wakee_event->type != SCHED_EVENT_SLEEP) {
		targetless_wakeups++;
		return;
	}
	if (wakee_event->wait_sem) {
		multitarget_wakeups++;
		return;
	}

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	wakee_event->wait_sem = zalloc(sizeof(*wakee_event->wait_sem));
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	sem_init(wakee_event->wait_sem, 0, 0);
	wakee_event->specific_wait = 1;
	event->wait_sem = wakee_event->wait_sem;

	nr_wakeup_events++;
}

static void
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add_sched_event_sleep(struct task_desc *task, u64 timestamp,
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		      u64 task_state __used)
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{
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	struct sched_atom *event = get_new_event(task, timestamp);
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	event->type = SCHED_EVENT_SLEEP;

	nr_sleep_events++;
}

static struct task_desc *register_pid(unsigned long pid, const char *comm)
{
	struct task_desc *task;

	BUG_ON(pid >= MAX_PID);

	task = pid_to_task[pid];

	if (task)
		return task;

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	task = zalloc(sizeof(*task));
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	task->pid = pid;
	task->nr = nr_tasks;
	strcpy(task->comm, comm);
	/*
	 * every task starts in sleeping state - this gets ignored
	 * if there's no wakeup pointing to this sleep state:
	 */
	add_sched_event_sleep(task, 0, 0);

	pid_to_task[pid] = task;
	nr_tasks++;
	tasks = realloc(tasks, nr_tasks*sizeof(struct task_task *));
	BUG_ON(!tasks);
	tasks[task->nr] = task;

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	if (verbose)
		printf("registered task #%ld, PID %ld (%s)\n", nr_tasks, pid, comm);
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	return task;
}


static void print_task_traces(void)
{
	struct task_desc *task;
	unsigned long i;

	for (i = 0; i < nr_tasks; i++) {
		task = tasks[i];
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		printf("task %6ld (%20s:%10ld), nr_events: %ld\n",
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			task->nr, task->comm, task->pid, task->nr_events);
	}
}

static void add_cross_task_wakeups(void)
{
	struct task_desc *task1, *task2;
	unsigned long i, j;

	for (i = 0; i < nr_tasks; i++) {
		task1 = tasks[i];
		j = i + 1;
		if (j == nr_tasks)
			j = 0;
		task2 = tasks[j];
		add_sched_event_wakeup(task1, 0, task2);
	}
}

static void
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process_sched_event(struct task_desc *this_task __used, struct sched_atom *atom)
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{
	int ret = 0;

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	switch (atom->type) {
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		case SCHED_EVENT_RUN:
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			burn_nsecs(atom->duration);
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			break;
		case SCHED_EVENT_SLEEP:
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			if (atom->wait_sem)
				ret = sem_wait(atom->wait_sem);
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			BUG_ON(ret);
			break;
		case SCHED_EVENT_WAKEUP:
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			if (atom->wait_sem)
				ret = sem_post(atom->wait_sem);
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			BUG_ON(ret);
			break;
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		case SCHED_EVENT_MIGRATION:
			break;
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		default:
			BUG_ON(1);
	}
}

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static u64 get_cpu_usage_nsec_parent(void)
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{
	struct rusage ru;
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	u64 sum;
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	int err;

	err = getrusage(RUSAGE_SELF, &ru);
	BUG_ON(err);

	sum =  ru.ru_utime.tv_sec*1e9 + ru.ru_utime.tv_usec*1e3;
	sum += ru.ru_stime.tv_sec*1e9 + ru.ru_stime.tv_usec*1e3;

	return sum;
}

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static int self_open_counters(void)
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{
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	struct perf_event_attr attr;
	int fd;
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	memset(&attr, 0, sizeof(attr));
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	attr.type = PERF_TYPE_SOFTWARE;
	attr.config = PERF_COUNT_SW_TASK_CLOCK;
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	fd = sys_perf_event_open(&attr, 0, -1, -1, 0);

	if (fd < 0)
		die("Error: sys_perf_event_open() syscall returned"
		    "with %d (%s)\n", fd, strerror(errno));
	return fd;
}

static u64 get_cpu_usage_nsec_self(int fd)
{
	u64 runtime;
	int ret;

	ret = read(fd, &runtime, sizeof(runtime));
	BUG_ON(ret != sizeof(runtime));

	return runtime;
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}

static void *thread_func(void *ctx)
{
	struct task_desc *this_task = ctx;
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	u64 cpu_usage_0, cpu_usage_1;
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	unsigned long i, ret;
	char comm2[22];
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	int fd;
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	sprintf(comm2, ":%s", this_task->comm);
	prctl(PR_SET_NAME, comm2);
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	fd = self_open_counters();
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again:
	ret = sem_post(&this_task->ready_for_work);
	BUG_ON(ret);
	ret = pthread_mutex_lock(&start_work_mutex);
	BUG_ON(ret);
	ret = pthread_mutex_unlock(&start_work_mutex);
	BUG_ON(ret);

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	cpu_usage_0 = get_cpu_usage_nsec_self(fd);
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	for (i = 0; i < this_task->nr_events; i++) {
		this_task->curr_event = i;
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		process_sched_event(this_task, this_task->atoms[i]);
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	}

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	cpu_usage_1 = get_cpu_usage_nsec_self(fd);
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	this_task->cpu_usage = cpu_usage_1 - cpu_usage_0;
	ret = sem_post(&this_task->work_done_sem);
	BUG_ON(ret);

	ret = pthread_mutex_lock(&work_done_wait_mutex);
	BUG_ON(ret);
	ret = pthread_mutex_unlock(&work_done_wait_mutex);
	BUG_ON(ret);

	goto again;
}

static void create_tasks(void)
{
	struct task_desc *task;
	pthread_attr_t attr;
	unsigned long i;
	int err;

	err = pthread_attr_init(&attr);
	BUG_ON(err);
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	err = pthread_attr_setstacksize(&attr,
			(size_t) max(16 * 1024, PTHREAD_STACK_MIN));
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	BUG_ON(err);
	err = pthread_mutex_lock(&start_work_mutex);
	BUG_ON(err);
	err = pthread_mutex_lock(&work_done_wait_mutex);
	BUG_ON(err);
	for (i = 0; i < nr_tasks; i++) {
		task = tasks[i];
		sem_init(&task->sleep_sem, 0, 0);
		sem_init(&task->ready_for_work, 0, 0);
		sem_init(&task->work_done_sem, 0, 0);
		task->curr_event = 0;
		err = pthread_create(&task->thread, &attr, thread_func, task);
		BUG_ON(err);
	}
}

static void wait_for_tasks(void)
{
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	u64 cpu_usage_0, cpu_usage_1;
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	struct task_desc *task;
	unsigned long i, ret;

	start_time = get_nsecs();
	cpu_usage = 0;
	pthread_mutex_unlock(&work_done_wait_mutex);

	for (i = 0; i < nr_tasks; i++) {
		task = tasks[i];
		ret = sem_wait(&task->ready_for_work);
		BUG_ON(ret);
		sem_init(&task->ready_for_work, 0, 0);
	}
	ret = pthread_mutex_lock(&work_done_wait_mutex);
	BUG_ON(ret);

	cpu_usage_0 = get_cpu_usage_nsec_parent();

	pthread_mutex_unlock(&start_work_mutex);

	for (i = 0; i < nr_tasks; i++) {
		task = tasks[i];
		ret = sem_wait(&task->work_done_sem);
		BUG_ON(ret);
		sem_init(&task->work_done_sem, 0, 0);
		cpu_usage += task->cpu_usage;
		task->cpu_usage = 0;
	}

	cpu_usage_1 = get_cpu_usage_nsec_parent();
	if (!runavg_cpu_usage)
		runavg_cpu_usage = cpu_usage;
	runavg_cpu_usage = (runavg_cpu_usage*9 + cpu_usage)/10;

	parent_cpu_usage = cpu_usage_1 - cpu_usage_0;
	if (!runavg_parent_cpu_usage)
		runavg_parent_cpu_usage = parent_cpu_usage;
	runavg_parent_cpu_usage = (runavg_parent_cpu_usage*9 +
				   parent_cpu_usage)/10;

	ret = pthread_mutex_lock(&start_work_mutex);
	BUG_ON(ret);

	for (i = 0; i < nr_tasks; i++) {
		task = tasks[i];
		sem_init(&task->sleep_sem, 0, 0);
		task->curr_event = 0;
	}
}

static void run_one_test(void)
{
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	u64 T0, T1, delta, avg_delta, fluct;
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	T0 = get_nsecs();
	wait_for_tasks();
	T1 = get_nsecs();

	delta = T1 - T0;
	sum_runtime += delta;
	nr_runs++;

	avg_delta = sum_runtime / nr_runs;
	if (delta < avg_delta)
		fluct = avg_delta - delta;
	else
		fluct = delta - avg_delta;
	sum_fluct += fluct;
	if (!run_avg)
		run_avg = delta;
	run_avg = (run_avg*9 + delta)/10;

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	printf("#%-3ld: %0.3f, ",
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		nr_runs, (double)delta/1000000.0);

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	printf("ravg: %0.2f, ",
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		(double)run_avg/1e6);

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	printf("cpu: %0.2f / %0.2f",
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		(double)cpu_usage/1e6, (double)runavg_cpu_usage/1e6);

#if 0
	/*
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	 * rusage statistics done by the parent, these are less
	 * accurate than the sum_exec_runtime based statistics:
	 */
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	printf(" [%0.2f / %0.2f]",
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		(double)parent_cpu_usage/1e6,
		(double)runavg_parent_cpu_usage/1e6);
#endif

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	printf("\n");
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	if (nr_sleep_corrections)
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		printf(" (%ld sleep corrections)\n", nr_sleep_corrections);
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	nr_sleep_corrections = 0;
}

static void test_calibrations(void)
{
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	u64 T0, T1;
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	T0 = get_nsecs();
	burn_nsecs(1e6);
	T1 = get_nsecs();

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	printf("the run test took %" PRIu64 " nsecs\n", T1 - T0);
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	T0 = get_nsecs();
	sleep_nsecs(1e6);
	T1 = get_nsecs();

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	printf("the sleep test took %" PRIu64 " nsecs\n", T1 - T0);
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}

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#define FILL_FIELD(ptr, field, event, data)	\
	ptr.field = (typeof(ptr.field)) raw_field_value(event, #field, data)

#define FILL_ARRAY(ptr, array, event, data)			\
do {								\
	void *__array = raw_field_ptr(event, #array, data);	\
	memcpy(ptr.array, __array, sizeof(ptr.array));	\
} while(0)

#define FILL_COMMON_FIELDS(ptr, event, data)			\
do {								\
	FILL_FIELD(ptr, common_type, event, data);		\
	FILL_FIELD(ptr, common_flags, event, data);		\
	FILL_FIELD(ptr, common_preempt_count, event, data);	\
	FILL_FIELD(ptr, common_pid, event, data);		\
	FILL_FIELD(ptr, common_tgid, event, data);		\
} while (0)

650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669


struct trace_switch_event {
	u32 size;

	u16 common_type;
	u8 common_flags;
	u8 common_preempt_count;
	u32 common_pid;
	u32 common_tgid;

	char prev_comm[16];
	u32 prev_pid;
	u32 prev_prio;
	u64 prev_state;
	char next_comm[16];
	u32 next_pid;
	u32 next_prio;
};

670 671 672 673 674 675 676 677 678 679 680 681 682 683
struct trace_runtime_event {
	u32 size;

	u16 common_type;
	u8 common_flags;
	u8 common_preempt_count;
	u32 common_pid;
	u32 common_tgid;

	char comm[16];
	u32 pid;
	u64 runtime;
	u64 vruntime;
};
684

685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701
struct trace_wakeup_event {
	u32 size;

	u16 common_type;
	u8 common_flags;
	u8 common_preempt_count;
	u32 common_pid;
	u32 common_tgid;

	char comm[16];
	u32 pid;

	u32 prio;
	u32 success;
	u32 cpu;
};

702 703
struct trace_fork_event {
	u32 size;
704

705 706 707 708 709 710 711 712 713 714 715 716
	u16 common_type;
	u8 common_flags;
	u8 common_preempt_count;
	u32 common_pid;
	u32 common_tgid;

	char parent_comm[16];
	u32 parent_pid;
	char child_comm[16];
	u32 child_pid;
};

717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732
struct trace_migrate_task_event {
	u32 size;

	u16 common_type;
	u8 common_flags;
	u8 common_preempt_count;
	u32 common_pid;
	u32 common_tgid;

	char comm[16];
	u32 pid;

	u32 prio;
	u32 cpu;
};

733 734
struct trace_sched_handler {
	void (*switch_event)(struct trace_switch_event *,
735
			     struct machine *,
736
			     struct event_format *,
737 738 739 740
			     int cpu,
			     u64 timestamp,
			     struct thread *thread);

741
	void (*runtime_event)(struct trace_runtime_event *,
742
			      struct machine *,
743
			      struct event_format *,
744 745 746 747
			      int cpu,
			      u64 timestamp,
			      struct thread *thread);

748
	void (*wakeup_event)(struct trace_wakeup_event *,
749
			     struct machine *,
750
			     struct event_format *,
751 752 753 754 755
			     int cpu,
			     u64 timestamp,
			     struct thread *thread);

	void (*fork_event)(struct trace_fork_event *,
756
			   struct event_format *,
757 758 759
			   int cpu,
			   u64 timestamp,
			   struct thread *thread);
760 761

	void (*migrate_task_event)(struct trace_migrate_task_event *,
762
			   struct machine *machine,
763
			   struct event_format *,
764 765 766
			   int cpu,
			   u64 timestamp,
			   struct thread *thread);
767
};
768 769


770 771
static void
replay_wakeup_event(struct trace_wakeup_event *wakeup_event,
772
		    struct machine *machine __used,
773
		    struct event_format *event,
774 775 776 777 778
		    int cpu __used,
		    u64 timestamp __used,
		    struct thread *thread __used)
{
	struct task_desc *waker, *wakee;
779

I
Ingo Molnar 已提交
780 781
	if (verbose) {
		printf("sched_wakeup event %p\n", event);
782

I
Ingo Molnar 已提交
783
		printf(" ... pid %d woke up %s/%d\n",
784 785 786
			wakeup_event->common_pid,
			wakeup_event->comm,
			wakeup_event->pid);
I
Ingo Molnar 已提交
787
	}
788

789 790
	waker = register_pid(wakeup_event->common_pid, "<unknown>");
	wakee = register_pid(wakeup_event->pid, wakeup_event->comm);
791 792

	add_sched_event_wakeup(waker, timestamp, wakee);
I
Ingo Molnar 已提交
793 794
}

795
static u64 cpu_last_switched[MAX_CPUS];
796 797

static void
798
replay_switch_event(struct trace_switch_event *switch_event,
799
		    struct machine *machine __used,
800
		    struct event_format *event,
801 802 803
		    int cpu,
		    u64 timestamp,
		    struct thread *thread __used)
I
Ingo Molnar 已提交
804
{
K
Kyle McMartin 已提交
805
	struct task_desc *prev, __used *next;
806 807 808
	u64 timestamp0;
	s64 delta;

I
Ingo Molnar 已提交
809 810 811
	if (verbose)
		printf("sched_switch event %p\n", event);

812 813 814 815 816 817 818 819 820 821
	if (cpu >= MAX_CPUS || cpu < 0)
		return;

	timestamp0 = cpu_last_switched[cpu];
	if (timestamp0)
		delta = timestamp - timestamp0;
	else
		delta = 0;

	if (delta < 0)
822
		die("hm, delta: %" PRIu64 " < 0 ?\n", delta);
823

I
Ingo Molnar 已提交
824
	if (verbose) {
825
		printf(" ... switch from %s/%d to %s/%d [ran %" PRIu64 " nsecs]\n",
826 827
			switch_event->prev_comm, switch_event->prev_pid,
			switch_event->next_comm, switch_event->next_pid,
I
Ingo Molnar 已提交
828 829
			delta);
	}
830

831 832
	prev = register_pid(switch_event->prev_pid, switch_event->prev_comm);
	next = register_pid(switch_event->next_pid, switch_event->next_comm);
833 834 835 836

	cpu_last_switched[cpu] = timestamp;

	add_sched_event_run(prev, timestamp, delta);
837
	add_sched_event_sleep(prev, timestamp, switch_event->prev_state);
838 839 840
}


841 842
static void
replay_fork_event(struct trace_fork_event *fork_event,
843
		  struct event_format *event,
844 845 846 847 848 849 850 851 852 853 854 855
		  int cpu __used,
		  u64 timestamp __used,
		  struct thread *thread __used)
{
	if (verbose) {
		printf("sched_fork event %p\n", event);
		printf("... parent: %s/%d\n", fork_event->parent_comm, fork_event->parent_pid);
		printf("...  child: %s/%d\n", fork_event->child_comm, fork_event->child_pid);
	}
	register_pid(fork_event->parent_pid, fork_event->parent_comm);
	register_pid(fork_event->child_pid, fork_event->child_comm);
}
856

857
static struct trace_sched_handler replay_ops  = {
I
Ingo Molnar 已提交
858 859 860
	.wakeup_event		= replay_wakeup_event,
	.switch_event		= replay_switch_event,
	.fork_event		= replay_fork_event,
861 862
};

863 864
struct sort_dimension {
	const char		*name;
865
	sort_fn_t		cmp;
866 867 868 869 870
	struct list_head	list;
};

static LIST_HEAD(cmp_pid);

871
static int
872
thread_lat_cmp(struct list_head *list, struct work_atoms *l, struct work_atoms *r)
873 874 875 876
{
	struct sort_dimension *sort;
	int ret = 0;

877 878
	BUG_ON(list_empty(list));

879 880 881 882 883 884 885 886 887
	list_for_each_entry(sort, list, list) {
		ret = sort->cmp(l, r);
		if (ret)
			return ret;
	}

	return ret;
}

888
static struct work_atoms *
889 890 891 892
thread_atoms_search(struct rb_root *root, struct thread *thread,
			 struct list_head *sort_list)
{
	struct rb_node *node = root->rb_node;
893
	struct work_atoms key = { .thread = thread };
894 895

	while (node) {
896
		struct work_atoms *atoms;
897 898
		int cmp;

899
		atoms = container_of(node, struct work_atoms, node);
900 901 902 903 904 905 906 907 908 909 910 911 912 913

		cmp = thread_lat_cmp(sort_list, &key, atoms);
		if (cmp > 0)
			node = node->rb_left;
		else if (cmp < 0)
			node = node->rb_right;
		else {
			BUG_ON(thread != atoms->thread);
			return atoms;
		}
	}
	return NULL;
}

914
static void
915
__thread_latency_insert(struct rb_root *root, struct work_atoms *data,
916
			 struct list_head *sort_list)
917 918 919 920
{
	struct rb_node **new = &(root->rb_node), *parent = NULL;

	while (*new) {
921
		struct work_atoms *this;
922
		int cmp;
923

924
		this = container_of(*new, struct work_atoms, node);
925
		parent = *new;
926 927 928 929

		cmp = thread_lat_cmp(sort_list, data, this);

		if (cmp > 0)
930 931
			new = &((*new)->rb_left);
		else
932
			new = &((*new)->rb_right);
933 934 935 936 937 938
	}

	rb_link_node(&data->node, parent, new);
	rb_insert_color(&data->node, root);
}

939
static void thread_atoms_insert(struct thread *thread)
940
{
941
	struct work_atoms *atoms = zalloc(sizeof(*atoms));
942
	if (!atoms)
943 944
		die("No memory");

945
	atoms->thread = thread;
946
	INIT_LIST_HEAD(&atoms->work_list);
947
	__thread_latency_insert(&atom_root, atoms, &cmp_pid);
948 949 950 951
}

static void
latency_fork_event(struct trace_fork_event *fork_event __used,
952
		   struct event_format *event __used,
953 954 955 956 957 958 959
		   int cpu __used,
		   u64 timestamp __used,
		   struct thread *thread __used)
{
	/* should insert the newcomer */
}

I
Ingo Molnar 已提交
960
__used
961 962 963 964 965 966 967 968
static char sched_out_state(struct trace_switch_event *switch_event)
{
	const char *str = TASK_STATE_TO_CHAR_STR;

	return str[switch_event->prev_state];
}

static void
969 970 971
add_sched_out_event(struct work_atoms *atoms,
		    char run_state,
		    u64 timestamp)
972
{
973
	struct work_atom *atom = zalloc(sizeof(*atom));
974
	if (!atom)
975 976
		die("Non memory");

977 978
	atom->sched_out_time = timestamp;

979
	if (run_state == 'R') {
980
		atom->state = THREAD_WAIT_CPU;
981
		atom->wake_up_time = atom->sched_out_time;
982 983
	}

984
	list_add_tail(&atom->list, &atoms->work_list);
985 986 987
}

static void
988 989 990 991 992 993 994 995 996 997 998 999 1000 1001
add_runtime_event(struct work_atoms *atoms, u64 delta, u64 timestamp __used)
{
	struct work_atom *atom;

	BUG_ON(list_empty(&atoms->work_list));

	atom = list_entry(atoms->work_list.prev, struct work_atom, list);

	atom->runtime += delta;
	atoms->total_runtime += delta;
}

static void
add_sched_in_event(struct work_atoms *atoms, u64 timestamp)
1002
{
1003
	struct work_atom *atom;
1004
	u64 delta;
1005

1006
	if (list_empty(&atoms->work_list))
1007 1008
		return;

1009
	atom = list_entry(atoms->work_list.prev, struct work_atom, list);
1010

1011
	if (atom->state != THREAD_WAIT_CPU)
1012 1013
		return;

1014 1015
	if (timestamp < atom->wake_up_time) {
		atom->state = THREAD_IGNORE;
1016 1017 1018
		return;
	}

1019 1020
	atom->state = THREAD_SCHED_IN;
	atom->sched_in_time = timestamp;
1021

1022
	delta = atom->sched_in_time - atom->wake_up_time;
1023
	atoms->total_lat += delta;
1024
	if (delta > atoms->max_lat) {
1025
		atoms->max_lat = delta;
1026 1027
		atoms->max_lat_at = timestamp;
	}
1028
	atoms->nb_atoms++;
1029 1030 1031 1032
}

static void
latency_switch_event(struct trace_switch_event *switch_event,
1033
		     struct machine *machine,
1034
		     struct event_format *event __used,
I
Ingo Molnar 已提交
1035
		     int cpu,
1036 1037 1038
		     u64 timestamp,
		     struct thread *thread __used)
{
1039
	struct work_atoms *out_events, *in_events;
1040
	struct thread *sched_out, *sched_in;
I
Ingo Molnar 已提交
1041 1042 1043
	u64 timestamp0;
	s64 delta;

1044
	BUG_ON(cpu >= MAX_CPUS || cpu < 0);
I
Ingo Molnar 已提交
1045 1046 1047 1048 1049 1050 1051 1052 1053

	timestamp0 = cpu_last_switched[cpu];
	cpu_last_switched[cpu] = timestamp;
	if (timestamp0)
		delta = timestamp - timestamp0;
	else
		delta = 0;

	if (delta < 0)
1054
		die("hm, delta: %" PRIu64 " < 0 ?\n", delta);
I
Ingo Molnar 已提交
1055

1056

1057 1058
	sched_out = machine__findnew_thread(machine, switch_event->prev_pid);
	sched_in = machine__findnew_thread(machine, switch_event->next_pid);
1059

1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070
	out_events = thread_atoms_search(&atom_root, sched_out, &cmp_pid);
	if (!out_events) {
		thread_atoms_insert(sched_out);
		out_events = thread_atoms_search(&atom_root, sched_out, &cmp_pid);
		if (!out_events)
			die("out-event: Internal tree error");
	}
	add_sched_out_event(out_events, sched_out_state(switch_event), timestamp);

	in_events = thread_atoms_search(&atom_root, sched_in, &cmp_pid);
	if (!in_events) {
1071
		thread_atoms_insert(sched_in);
1072 1073 1074 1075 1076 1077 1078 1079
		in_events = thread_atoms_search(&atom_root, sched_in, &cmp_pid);
		if (!in_events)
			die("in-event: Internal tree error");
		/*
		 * Take came in we have not heard about yet,
		 * add in an initial atom in runnable state:
		 */
		add_sched_out_event(in_events, 'R', timestamp);
1080
	}
1081 1082
	add_sched_in_event(in_events, timestamp);
}
1083

1084 1085
static void
latency_runtime_event(struct trace_runtime_event *runtime_event,
1086
		     struct machine *machine,
1087
		     struct event_format *event __used,
1088 1089 1090 1091
		     int cpu,
		     u64 timestamp,
		     struct thread *this_thread __used)
{
1092
	struct thread *thread = machine__findnew_thread(machine, runtime_event->pid);
1093
	struct work_atoms *atoms = thread_atoms_search(&atom_root, thread, &cmp_pid);
1094 1095 1096 1097 1098 1099 1100 1101

	BUG_ON(cpu >= MAX_CPUS || cpu < 0);
	if (!atoms) {
		thread_atoms_insert(thread);
		atoms = thread_atoms_search(&atom_root, thread, &cmp_pid);
		if (!atoms)
			die("in-event: Internal tree error");
		add_sched_out_event(atoms, 'R', timestamp);
1102 1103
	}

1104
	add_runtime_event(atoms, runtime_event->runtime, timestamp);
1105 1106 1107 1108
}

static void
latency_wakeup_event(struct trace_wakeup_event *wakeup_event,
1109
		     struct machine *machine,
1110
		     struct event_format *__event __used,
1111 1112 1113 1114
		     int cpu __used,
		     u64 timestamp,
		     struct thread *thread __used)
{
1115
	struct work_atoms *atoms;
1116
	struct work_atom *atom;
1117 1118 1119 1120 1121 1122
	struct thread *wakee;

	/* Note for later, it may be interesting to observe the failing cases */
	if (!wakeup_event->success)
		return;

1123
	wakee = machine__findnew_thread(machine, wakeup_event->pid);
1124
	atoms = thread_atoms_search(&atom_root, wakee, &cmp_pid);
1125
	if (!atoms) {
1126
		thread_atoms_insert(wakee);
1127 1128 1129 1130
		atoms = thread_atoms_search(&atom_root, wakee, &cmp_pid);
		if (!atoms)
			die("wakeup-event: Internal tree error");
		add_sched_out_event(atoms, 'S', timestamp);
1131 1132
	}

1133
	BUG_ON(list_empty(&atoms->work_list));
1134

1135
	atom = list_entry(atoms->work_list.prev, struct work_atom, list);
1136

1137 1138 1139 1140 1141 1142
	/*
	 * You WILL be missing events if you've recorded only
	 * one CPU, or are only looking at only one, so don't
	 * make useless noise.
	 */
	if (profile_cpu == -1 && atom->state != THREAD_SLEEPING)
1143
		nr_state_machine_bugs++;
1144

1145 1146
	nr_timestamps++;
	if (atom->sched_out_time > timestamp) {
1147
		nr_unordered_timestamps++;
1148
		return;
1149
	}
1150

1151 1152
	atom->state = THREAD_WAIT_CPU;
	atom->wake_up_time = timestamp;
1153 1154
}

1155 1156
static void
latency_migrate_task_event(struct trace_migrate_task_event *migrate_task_event,
1157
		     struct machine *machine,
1158
		     struct event_format *__event __used,
1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172
		     int cpu __used,
		     u64 timestamp,
		     struct thread *thread __used)
{
	struct work_atoms *atoms;
	struct work_atom *atom;
	struct thread *migrant;

	/*
	 * Only need to worry about migration when profiling one CPU.
	 */
	if (profile_cpu == -1)
		return;

1173
	migrant = machine__findnew_thread(machine, migrate_task_event->pid);
1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194
	atoms = thread_atoms_search(&atom_root, migrant, &cmp_pid);
	if (!atoms) {
		thread_atoms_insert(migrant);
		register_pid(migrant->pid, migrant->comm);
		atoms = thread_atoms_search(&atom_root, migrant, &cmp_pid);
		if (!atoms)
			die("migration-event: Internal tree error");
		add_sched_out_event(atoms, 'R', timestamp);
	}

	BUG_ON(list_empty(&atoms->work_list));

	atom = list_entry(atoms->work_list.prev, struct work_atom, list);
	atom->sched_in_time = atom->sched_out_time = atom->wake_up_time = timestamp;

	nr_timestamps++;

	if (atom->sched_out_time > timestamp)
		nr_unordered_timestamps++;
}

1195
static struct trace_sched_handler lat_ops  = {
I
Ingo Molnar 已提交
1196 1197
	.wakeup_event		= latency_wakeup_event,
	.switch_event		= latency_switch_event,
1198
	.runtime_event		= latency_runtime_event,
I
Ingo Molnar 已提交
1199
	.fork_event		= latency_fork_event,
1200
	.migrate_task_event	= latency_migrate_task_event,
1201 1202
};

1203
static void output_lat_thread(struct work_atoms *work_list)
1204 1205 1206
{
	int i;
	int ret;
1207
	u64 avg;
1208

1209
	if (!work_list->nb_atoms)
1210
		return;
1211 1212 1213
	/*
	 * Ignore idle threads:
	 */
1214
	if (!strcmp(work_list->thread->comm, "swapper"))
1215
		return;
1216

1217 1218
	all_runtime += work_list->total_runtime;
	all_count += work_list->nb_atoms;
1219

1220
	ret = printf("  %s:%d ", work_list->thread->comm, work_list->thread->pid);
1221

M
mingo 已提交
1222
	for (i = 0; i < 24 - ret; i++)
1223 1224
		printf(" ");

1225
	avg = work_list->total_lat / work_list->nb_atoms;
1226

1227
	printf("|%11.3f ms |%9" PRIu64 " | avg:%9.3f ms | max:%9.3f ms | max at: %9.6f s\n",
1228 1229
	      (double)work_list->total_runtime / 1e6,
		 work_list->nb_atoms, (double)avg / 1e6,
1230 1231
		 (double)work_list->max_lat / 1e6,
		 (double)work_list->max_lat_at / 1e9);
1232 1233
}

1234
static int pid_cmp(struct work_atoms *l, struct work_atoms *r)
1235 1236 1237 1238 1239 1240 1241 1242 1243 1244
{
	if (l->thread->pid < r->thread->pid)
		return -1;
	if (l->thread->pid > r->thread->pid)
		return 1;

	return 0;
}

static struct sort_dimension pid_sort_dimension = {
1245 1246
	.name			= "pid",
	.cmp			= pid_cmp,
1247 1248
};

1249
static int avg_cmp(struct work_atoms *l, struct work_atoms *r)
1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270
{
	u64 avgl, avgr;

	if (!l->nb_atoms)
		return -1;

	if (!r->nb_atoms)
		return 1;

	avgl = l->total_lat / l->nb_atoms;
	avgr = r->total_lat / r->nb_atoms;

	if (avgl < avgr)
		return -1;
	if (avgl > avgr)
		return 1;

	return 0;
}

static struct sort_dimension avg_sort_dimension = {
1271 1272
	.name			= "avg",
	.cmp			= avg_cmp,
1273 1274
};

1275
static int max_cmp(struct work_atoms *l, struct work_atoms *r)
1276 1277 1278 1279 1280 1281 1282 1283 1284 1285
{
	if (l->max_lat < r->max_lat)
		return -1;
	if (l->max_lat > r->max_lat)
		return 1;

	return 0;
}

static struct sort_dimension max_sort_dimension = {
1286 1287
	.name			= "max",
	.cmp			= max_cmp,
1288 1289
};

1290
static int switch_cmp(struct work_atoms *l, struct work_atoms *r)
1291 1292 1293 1294 1295 1296 1297 1298 1299 1300
{
	if (l->nb_atoms < r->nb_atoms)
		return -1;
	if (l->nb_atoms > r->nb_atoms)
		return 1;

	return 0;
}

static struct sort_dimension switch_sort_dimension = {
1301 1302
	.name			= "switch",
	.cmp			= switch_cmp,
1303 1304
};

1305
static int runtime_cmp(struct work_atoms *l, struct work_atoms *r)
1306 1307 1308 1309 1310 1311 1312 1313 1314 1315
{
	if (l->total_runtime < r->total_runtime)
		return -1;
	if (l->total_runtime > r->total_runtime)
		return 1;

	return 0;
}

static struct sort_dimension runtime_sort_dimension = {
1316 1317
	.name			= "runtime",
	.cmp			= runtime_cmp,
1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331
};

static struct sort_dimension *available_sorts[] = {
	&pid_sort_dimension,
	&avg_sort_dimension,
	&max_sort_dimension,
	&switch_sort_dimension,
	&runtime_sort_dimension,
};

#define NB_AVAILABLE_SORTS	(int)(sizeof(available_sorts) / sizeof(struct sort_dimension *))

static LIST_HEAD(sort_list);

1332
static int sort_dimension__add(const char *tok, struct list_head *list)
1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353
{
	int i;

	for (i = 0; i < NB_AVAILABLE_SORTS; i++) {
		if (!strcmp(available_sorts[i]->name, tok)) {
			list_add_tail(&available_sorts[i]->list, list);

			return 0;
		}
	}

	return -1;
}

static void setup_sorting(void);

static void sort_lat(void)
{
	struct rb_node *node;

	for (;;) {
1354
		struct work_atoms *data;
1355
		node = rb_first(&atom_root);
1356 1357 1358
		if (!node)
			break;

1359
		rb_erase(node, &atom_root);
1360
		data = rb_entry(node, struct work_atoms, node);
1361
		__thread_latency_insert(&sorted_atom_root, data, &sort_list);
1362 1363 1364
	}
}

1365 1366
static struct trace_sched_handler *trace_handler;

1367
static void
1368
process_sched_wakeup_event(struct perf_tool *tool __used,
1369
			   struct event_format *event,
1370 1371 1372
			   struct perf_sample *sample,
			   struct machine *machine,
			   struct thread *thread)
1373
{
1374
	void *data = sample->raw_data;
1375 1376
	struct trace_wakeup_event wakeup_event;

X
Xiao Guangrong 已提交
1377
	FILL_COMMON_FIELDS(wakeup_event, event, data);
1378

X
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1379 1380 1381 1382 1383
	FILL_ARRAY(wakeup_event, comm, event, data);
	FILL_FIELD(wakeup_event, pid, event, data);
	FILL_FIELD(wakeup_event, prio, event, data);
	FILL_FIELD(wakeup_event, success, event, data);
	FILL_FIELD(wakeup_event, cpu, event, data);
1384

1385
	if (trace_handler->wakeup_event)
1386
		trace_handler->wakeup_event(&wakeup_event, machine, event,
1387
					    sample->cpu, sample->time, thread);
1388 1389
}

1390 1391 1392 1393
/*
 * Track the current task - that way we can know whether there's any
 * weird events, such as a task being switched away that is not current.
 */
1394
static int max_cpu;
1395

1396 1397
static u32 curr_pid[MAX_CPUS] = { [0 ... MAX_CPUS-1] = -1 };

1398 1399 1400 1401 1402 1403 1404
static struct thread *curr_thread[MAX_CPUS];

static char next_shortname1 = 'A';
static char next_shortname2 = '0';

static void
map_switch_event(struct trace_switch_event *switch_event,
1405
		 struct machine *machine,
1406
		 struct event_format *event __used,
1407 1408 1409 1410
		 int this_cpu,
		 u64 timestamp,
		 struct thread *thread __used)
{
K
Kyle McMartin 已提交
1411
	struct thread *sched_out __used, *sched_in;
1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429
	int new_shortname;
	u64 timestamp0;
	s64 delta;
	int cpu;

	BUG_ON(this_cpu >= MAX_CPUS || this_cpu < 0);

	if (this_cpu > max_cpu)
		max_cpu = this_cpu;

	timestamp0 = cpu_last_switched[this_cpu];
	cpu_last_switched[this_cpu] = timestamp;
	if (timestamp0)
		delta = timestamp - timestamp0;
	else
		delta = 0;

	if (delta < 0)
1430
		die("hm, delta: %" PRIu64 " < 0 ?\n", delta);
1431 1432


1433 1434
	sched_out = machine__findnew_thread(machine, switch_event->prev_pid);
	sched_in = machine__findnew_thread(machine, switch_event->next_pid);
1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481

	curr_thread[this_cpu] = sched_in;

	printf("  ");

	new_shortname = 0;
	if (!sched_in->shortname[0]) {
		sched_in->shortname[0] = next_shortname1;
		sched_in->shortname[1] = next_shortname2;

		if (next_shortname1 < 'Z') {
			next_shortname1++;
		} else {
			next_shortname1='A';
			if (next_shortname2 < '9') {
				next_shortname2++;
			} else {
				next_shortname2='0';
			}
		}
		new_shortname = 1;
	}

	for (cpu = 0; cpu <= max_cpu; cpu++) {
		if (cpu != this_cpu)
			printf(" ");
		else
			printf("*");

		if (curr_thread[cpu]) {
			if (curr_thread[cpu]->pid)
				printf("%2s ", curr_thread[cpu]->shortname);
			else
				printf(".  ");
		} else
			printf("   ");
	}

	printf("  %12.6f secs ", (double)timestamp/1e9);
	if (new_shortname) {
		printf("%s => %s:%d\n",
			sched_in->shortname, sched_in->comm, sched_in->pid);
	} else {
		printf("\n");
	}
}

1482
static void
1483
process_sched_switch_event(struct perf_tool *tool __used,
1484
			   struct event_format *event,
1485 1486 1487
			   struct perf_sample *sample,
			   struct machine *machine,
			   struct thread *thread)
1488
{
1489 1490
	int this_cpu = sample->cpu;
	void *data = sample->raw_data;
1491 1492
	struct trace_switch_event switch_event;

X
Xiao Guangrong 已提交
1493
	FILL_COMMON_FIELDS(switch_event, event, data);
1494

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Xiao Guangrong 已提交
1495 1496 1497 1498 1499 1500 1501
	FILL_ARRAY(switch_event, prev_comm, event, data);
	FILL_FIELD(switch_event, prev_pid, event, data);
	FILL_FIELD(switch_event, prev_prio, event, data);
	FILL_FIELD(switch_event, prev_state, event, data);
	FILL_ARRAY(switch_event, next_comm, event, data);
	FILL_FIELD(switch_event, next_pid, event, data);
	FILL_FIELD(switch_event, next_prio, event, data);
1502

1503
	if (curr_pid[this_cpu] != (u32)-1) {
1504 1505 1506 1507
		/*
		 * Are we trying to switch away a PID that is
		 * not current?
		 */
1508
		if (curr_pid[this_cpu] != switch_event.prev_pid)
1509 1510
			nr_context_switch_bugs++;
	}
1511
	if (trace_handler->switch_event)
1512
		trace_handler->switch_event(&switch_event, machine, event,
1513
					    this_cpu, sample->time, thread);
1514

1515
	curr_pid[this_cpu] = switch_event.next_pid;
1516 1517
}

1518
static void
1519
process_sched_runtime_event(struct perf_tool *tool __used,
1520
			    struct event_format *event,
1521 1522 1523
			    struct perf_sample *sample,
			    struct machine *machine,
			    struct thread *thread)
1524
{
1525
	void *data = sample->raw_data;
1526 1527
	struct trace_runtime_event runtime_event;

X
Xiao Guangrong 已提交
1528 1529 1530 1531
	FILL_ARRAY(runtime_event, comm, event, data);
	FILL_FIELD(runtime_event, pid, event, data);
	FILL_FIELD(runtime_event, runtime, event, data);
	FILL_FIELD(runtime_event, vruntime, event, data);
1532

1533
	if (trace_handler->runtime_event)
1534 1535
		trace_handler->runtime_event(&runtime_event, machine, event,
					     sample->cpu, sample->time, thread);
1536 1537
}

1538
static void
1539
process_sched_fork_event(struct perf_tool *tool __used,
1540
			 struct event_format *event,
1541 1542 1543
			 struct perf_sample *sample,
			 struct machine *machine __used,
			 struct thread *thread)
1544
{
1545
	void *data = sample->raw_data;
1546 1547
	struct trace_fork_event fork_event;

X
Xiao Guangrong 已提交
1548
	FILL_COMMON_FIELDS(fork_event, event, data);
1549

X
Xiao Guangrong 已提交
1550 1551 1552 1553
	FILL_ARRAY(fork_event, parent_comm, event, data);
	FILL_FIELD(fork_event, parent_pid, event, data);
	FILL_ARRAY(fork_event, child_comm, event, data);
	FILL_FIELD(fork_event, child_pid, event, data);
1554

1555
	if (trace_handler->fork_event)
1556
		trace_handler->fork_event(&fork_event, event,
1557
					  sample->cpu, sample->time, thread);
1558 1559
}

1560
static void
1561
process_sched_exit_event(struct perf_tool *tool __used,
1562
			 struct event_format *event,
1563 1564
			 struct perf_sample *sample __used,
			 struct machine *machine __used,
1565
			 struct thread *thread __used)
1566
{
I
Ingo Molnar 已提交
1567 1568
	if (verbose)
		printf("sched_exit event %p\n", event);
I
Ingo Molnar 已提交
1569 1570
}

1571
static void
1572
process_sched_migrate_task_event(struct perf_tool *tool __used,
1573
				 struct event_format *event,
1574 1575 1576
				 struct perf_sample *sample,
				 struct machine *machine,
				 struct thread *thread)
1577
{
1578
	void *data = sample->raw_data;
1579 1580
	struct trace_migrate_task_event migrate_task_event;

X
Xiao Guangrong 已提交
1581
	FILL_COMMON_FIELDS(migrate_task_event, event, data);
1582

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1583 1584 1585 1586
	FILL_ARRAY(migrate_task_event, comm, event, data);
	FILL_FIELD(migrate_task_event, pid, event, data);
	FILL_FIELD(migrate_task_event, prio, event, data);
	FILL_FIELD(migrate_task_event, cpu, event, data);
1587 1588

	if (trace_handler->migrate_task_event)
1589
		trace_handler->migrate_task_event(&migrate_task_event, machine,
1590 1591
						  event, sample->cpu,
						  sample->time, thread);
1592 1593
}

1594
typedef void (*tracepoint_handler)(struct perf_tool *tool, struct event_format *event,
1595 1596 1597
				   struct perf_sample *sample,
				   struct machine *machine,
				   struct thread *thread);
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Ingo Molnar 已提交
1598

1599 1600 1601 1602 1603
static int perf_sched__process_tracepoint_sample(struct perf_tool *tool,
						 union perf_event *event __used,
						 struct perf_sample *sample,
						 struct perf_evsel *evsel,
						 struct machine *machine)
I
Ingo Molnar 已提交
1604
{
1605 1606
	struct perf_sched *sched = container_of(tool, struct perf_sched, tool);
	struct pevent *pevent = sched->session->pevent;
1607
	struct thread *thread = machine__findnew_thread(machine, sample->pid);
I
Ingo Molnar 已提交
1608 1609

	if (thread == NULL) {
1610
		pr_debug("problem processing %s event, skipping it.\n",
1611
			 perf_evsel__name(evsel));
I
Ingo Molnar 已提交
1612 1613 1614
		return -1;
	}

1615 1616
	evsel->hists.stats.total_period += sample->period;
	hists__inc_nr_events(&evsel->hists, PERF_RECORD_SAMPLE);
1617

1618 1619
	if (evsel->handler.func != NULL) {
		tracepoint_handler f = evsel->handler.func;
1620

1621
		if (evsel->handler.data == NULL)
1622 1623
			evsel->handler.data = pevent_find_event(pevent,
							  evsel->attr.config);
1624 1625 1626

		f(tool, evsel->handler.data, sample, machine, thread);
	}
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Ingo Molnar 已提交
1627 1628 1629 1630

	return 0;
}

1631 1632 1633 1634 1635 1636 1637 1638
static struct perf_sched perf_sched = {
	.tool = {
		.sample		 = perf_sched__process_tracepoint_sample,
		.comm		 = perf_event__process_comm,
		.lost		 = perf_event__process_lost,
		.fork		 = perf_event__process_task,
		.ordered_samples = true,
	},
1639 1640
};

1641
static void read_events(bool destroy, struct perf_session **psession)
I
Ingo Molnar 已提交
1642
{
1643
	int err = -EINVAL;
1644 1645 1646 1647 1648 1649 1650 1651 1652
	const struct perf_evsel_str_handler handlers[] = {
		{ "sched:sched_switch",	      process_sched_switch_event, },
		{ "sched:sched_stat_runtime", process_sched_runtime_event, },
		{ "sched:sched_wakeup",	      process_sched_wakeup_event, },
		{ "sched:sched_wakeup_new",   process_sched_wakeup_event, },
		{ "sched:sched_process_fork", process_sched_fork_event, },
		{ "sched:sched_process_exit", process_sched_exit_event, },
		{ "sched:sched_migrate_task", process_sched_migrate_task_event, },
	};
1653 1654 1655 1656
	struct perf_session *session;

	session = perf_session__new(input_name, O_RDONLY, 0, false,
				    &perf_sched.tool);
1657
	if (session == NULL)
1658
		die("No Memory");
1659

1660 1661 1662
	perf_sched.session = session;

	err = perf_session__set_tracepoints_handlers(session, handlers);
1663 1664
	assert(err == 0);

1665
	if (perf_session__has_traces(session, "record -R")) {
1666
		err = perf_session__process_events(session, &perf_sched.tool);
1667 1668 1669
		if (err)
			die("Failed to process events, error %d", err);

1670 1671 1672 1673
		nr_events      = session->hists.stats.nr_events[0];
		nr_lost_events = session->hists.stats.total_lost;
		nr_lost_chunks = session->hists.stats.nr_events[PERF_RECORD_LOST];
	}
1674

1675 1676 1677 1678 1679
	if (destroy)
		perf_session__delete(session);

	if (psession)
		*psession = session;
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Ingo Molnar 已提交
1680 1681
}

1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714
static void print_bad_events(void)
{
	if (nr_unordered_timestamps && nr_timestamps) {
		printf("  INFO: %.3f%% unordered timestamps (%ld out of %ld)\n",
			(double)nr_unordered_timestamps/(double)nr_timestamps*100.0,
			nr_unordered_timestamps, nr_timestamps);
	}
	if (nr_lost_events && nr_events) {
		printf("  INFO: %.3f%% lost events (%ld out of %ld, in %ld chunks)\n",
			(double)nr_lost_events/(double)nr_events*100.0,
			nr_lost_events, nr_events, nr_lost_chunks);
	}
	if (nr_state_machine_bugs && nr_timestamps) {
		printf("  INFO: %.3f%% state machine bugs (%ld out of %ld)",
			(double)nr_state_machine_bugs/(double)nr_timestamps*100.0,
			nr_state_machine_bugs, nr_timestamps);
		if (nr_lost_events)
			printf(" (due to lost events?)");
		printf("\n");
	}
	if (nr_context_switch_bugs && nr_timestamps) {
		printf("  INFO: %.3f%% context switch bugs (%ld out of %ld)",
			(double)nr_context_switch_bugs/(double)nr_timestamps*100.0,
			nr_context_switch_bugs, nr_timestamps);
		if (nr_lost_events)
			printf(" (due to lost events?)");
		printf("\n");
	}
}

static void __cmd_lat(void)
{
	struct rb_node *next;
1715
	struct perf_session *session;
1716 1717

	setup_pager();
1718
	read_events(false, &session);
1719 1720
	sort_lat();

1721 1722 1723
	printf("\n ---------------------------------------------------------------------------------------------------------------\n");
	printf("  Task                  |   Runtime ms  | Switches | Average delay ms | Maximum delay ms | Maximum delay at     |\n");
	printf(" ---------------------------------------------------------------------------------------------------------------\n");
1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735

	next = rb_first(&sorted_atom_root);

	while (next) {
		struct work_atoms *work_list;

		work_list = rb_entry(next, struct work_atoms, node);
		output_lat_thread(work_list);
		next = rb_next(next);
	}

	printf(" -----------------------------------------------------------------------------------------\n");
1736
	printf("  TOTAL:                |%11.3f ms |%9" PRIu64 " |\n",
1737 1738 1739 1740 1741 1742 1743
		(double)all_runtime/1e6, all_count);

	printf(" ---------------------------------------------------\n");

	print_bad_events();
	printf("\n");

1744
	perf_session__delete(session);
1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755
}

static struct trace_sched_handler map_ops  = {
	.wakeup_event		= NULL,
	.switch_event		= map_switch_event,
	.runtime_event		= NULL,
	.fork_event		= NULL,
};

static void __cmd_map(void)
{
1756 1757
	max_cpu = sysconf(_SC_NPROCESSORS_CONF);

1758
	setup_pager();
1759
	read_events(true, NULL);
1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771
	print_bad_events();
}

static void __cmd_replay(void)
{
	unsigned long i;

	calibrate_run_measurement_overhead();
	calibrate_sleep_measurement_overhead();

	test_calibrations();

1772
	read_events(true, NULL);
1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795

	printf("nr_run_events:        %ld\n", nr_run_events);
	printf("nr_sleep_events:      %ld\n", nr_sleep_events);
	printf("nr_wakeup_events:     %ld\n", nr_wakeup_events);

	if (targetless_wakeups)
		printf("target-less wakeups:  %ld\n", targetless_wakeups);
	if (multitarget_wakeups)
		printf("multi-target wakeups: %ld\n", multitarget_wakeups);
	if (nr_run_events_optimized)
		printf("run atoms optimized: %ld\n",
			nr_run_events_optimized);

	print_task_traces();
	add_cross_task_wakeups();

	create_tasks();
	printf("------------------------------------------------------------\n");
	for (i = 0; i < replay_repeat; i++)
		run_one_test();
}


1796
static const char * const sched_usage[] = {
1797
	"perf sched [<options>] {record|latency|map|replay|script}",
I
Ingo Molnar 已提交
1798 1799 1800
	NULL
};

1801
static const struct option sched_options[] = {
1802 1803
	OPT_STRING('i', "input", &input_name, "file",
		    "input file name"),
1804
	OPT_INCR('v', "verbose", &verbose,
1805
		    "be more verbose (show symbol address, etc)"),
I
Ingo Molnar 已提交
1806 1807
	OPT_BOOLEAN('D', "dump-raw-trace", &dump_trace,
		    "dump raw trace in ASCII"),
1808 1809 1810 1811 1812 1813 1814 1815 1816
	OPT_END()
};

static const char * const latency_usage[] = {
	"perf sched latency [<options>]",
	NULL
};

static const struct option latency_options[] = {
1817 1818
	OPT_STRING('s', "sort", &sort_order, "key[,key2...]",
		   "sort by key(s): runtime, switch, avg, max"),
1819
	OPT_INCR('v', "verbose", &verbose,
I
Ingo Molnar 已提交
1820
		    "be more verbose (show symbol address, etc)"),
1821 1822
	OPT_INTEGER('C', "CPU", &profile_cpu,
		    "CPU to profile on"),
1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833
	OPT_BOOLEAN('D', "dump-raw-trace", &dump_trace,
		    "dump raw trace in ASCII"),
	OPT_END()
};

static const char * const replay_usage[] = {
	"perf sched replay [<options>]",
	NULL
};

static const struct option replay_options[] = {
1834 1835
	OPT_UINTEGER('r', "repeat", &replay_repeat,
		     "repeat the workload replay N times (-1: infinite)"),
1836
	OPT_INCR('v', "verbose", &verbose,
1837 1838 1839
		    "be more verbose (show symbol address, etc)"),
	OPT_BOOLEAN('D', "dump-raw-trace", &dump_trace,
		    "dump raw trace in ASCII"),
I
Ingo Molnar 已提交
1840 1841 1842
	OPT_END()
};

1843 1844 1845 1846 1847 1848 1849 1850
static void setup_sorting(void)
{
	char *tmp, *tok, *str = strdup(sort_order);

	for (tok = strtok_r(str, ", ", &tmp);
			tok; tok = strtok_r(NULL, ", ", &tmp)) {
		if (sort_dimension__add(tok, &sort_list) < 0) {
			error("Unknown --sort key: `%s'", tok);
1851
			usage_with_options(latency_usage, latency_options);
1852 1853 1854 1855 1856
		}
	}

	free(str);

1857
	sort_dimension__add("pid", &cmp_pid);
1858 1859
}

1860 1861 1862 1863
static const char *record_args[] = {
	"record",
	"-a",
	"-R",
1864
	"-f",
1865
	"-m", "1024",
1866
	"-c", "1",
1867 1868 1869 1870 1871 1872 1873 1874 1875
	"-e", "sched:sched_switch",
	"-e", "sched:sched_stat_wait",
	"-e", "sched:sched_stat_sleep",
	"-e", "sched:sched_stat_iowait",
	"-e", "sched:sched_stat_runtime",
	"-e", "sched:sched_process_exit",
	"-e", "sched:sched_process_fork",
	"-e", "sched:sched_wakeup",
	"-e", "sched:sched_migrate_task",
1876 1877 1878 1879 1880 1881 1882 1883 1884 1885
};

static int __cmd_record(int argc, const char **argv)
{
	unsigned int rec_argc, i, j;
	const char **rec_argv;

	rec_argc = ARRAY_SIZE(record_args) + argc - 1;
	rec_argv = calloc(rec_argc + 1, sizeof(char *));

1886
	if (rec_argv == NULL)
1887 1888
		return -ENOMEM;

1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899
	for (i = 0; i < ARRAY_SIZE(record_args); i++)
		rec_argv[i] = strdup(record_args[i]);

	for (j = 1; j < (unsigned int)argc; j++, i++)
		rec_argv[i] = argv[j];

	BUG_ON(i != rec_argc);

	return cmd_record(i, rec_argv, NULL);
}

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Ingo Molnar 已提交
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int cmd_sched(int argc, const char **argv, const char *prefix __used)
{
1902 1903 1904 1905
	argc = parse_options(argc, argv, sched_options, sched_usage,
			     PARSE_OPT_STOP_AT_NON_OPTION);
	if (!argc)
		usage_with_options(sched_usage, sched_options);
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Ingo Molnar 已提交
1906

1907
	/*
1908
	 * Aliased to 'perf script' for now:
1909
	 */
1910 1911
	if (!strcmp(argv[0], "script"))
		return cmd_script(argc, argv, prefix);
1912

1913
	symbol__init();
1914 1915 1916
	if (!strncmp(argv[0], "rec", 3)) {
		return __cmd_record(argc, argv);
	} else if (!strncmp(argv[0], "lat", 3)) {
1917
		trace_handler = &lat_ops;
1918 1919 1920 1921 1922
		if (argc > 1) {
			argc = parse_options(argc, argv, latency_options, latency_usage, 0);
			if (argc)
				usage_with_options(latency_usage, latency_options);
		}
1923
		setup_sorting();
1924
		__cmd_lat();
1925 1926 1927 1928
	} else if (!strcmp(argv[0], "map")) {
		trace_handler = &map_ops;
		setup_sorting();
		__cmd_map();
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	} else if (!strncmp(argv[0], "rep", 3)) {
		trace_handler = &replay_ops;
		if (argc) {
			argc = parse_options(argc, argv, replay_options, replay_usage, 0);
			if (argc)
				usage_with_options(replay_usage, replay_options);
		}
		__cmd_replay();
	} else {
		usage_with_options(sched_usage, sched_options);
	}

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Ingo Molnar 已提交
1941
	return 0;
I
Ingo Molnar 已提交
1942
}