evlist.c 38.2 KB
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// SPDX-License-Identifier: GPL-2.0-only
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/*
 * Copyright (C) 2011, Red Hat Inc, Arnaldo Carvalho de Melo <acme@redhat.com>
 *
 * Parts came from builtin-{top,stat,record}.c, see those files for further
 * copyright notes.
 */
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#include <api/fs/fs.h>
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#include <errno.h>
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#include <inttypes.h>
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#include <poll.h>
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#include "cpumap.h"
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#include "util/mmap.h"
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#include "thread_map.h"
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#include "target.h"
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#include "evlist.h"
#include "evsel.h"
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#include "debug.h"
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#include "units.h"
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#include <internal/lib.h> // page_size
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#include "../perf.h"
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#include "asm/bug.h"
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#include "bpf-event.h"
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#include "util/string2.h"
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#include <signal.h>
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#include <unistd.h>
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#include <sched.h>
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#include <stdlib.h>
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#include "parse-events.h"
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#include <subcmd/parse-options.h>
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#include <fcntl.h>
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#include <sys/ioctl.h>
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#include <sys/mman.h>

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#include <linux/bitops.h>
#include <linux/hash.h>
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#include <linux/log2.h>
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#include <linux/err.h>
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#include <linux/string.h>
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#include <linux/zalloc.h>
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#include <perf/evlist.h>
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#include <perf/evsel.h>
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#include <perf/cpumap.h>
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#include <perf/mmap.h>
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#include <internal/xyarray.h>

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#ifdef LACKS_SIGQUEUE_PROTOTYPE
int sigqueue(pid_t pid, int sig, const union sigval value);
#endif

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#define FD(e, x, y) (*(int *)xyarray__entry(e->core.fd, x, y))
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#define SID(e, x, y) xyarray__entry(e->core.sample_id, x, y)
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void evlist__init(struct evlist *evlist, struct perf_cpu_map *cpus,
		  struct perf_thread_map *threads)
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{
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	perf_evlist__init(&evlist->core);
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	perf_evlist__set_maps(&evlist->core, cpus, threads);
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	evlist->workload.pid = -1;
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	evlist->bkw_mmap_state = BKW_MMAP_NOTREADY;
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}

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struct evlist *evlist__new(void)
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{
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	struct evlist *evlist = zalloc(sizeof(*evlist));
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	if (evlist != NULL)
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		evlist__init(evlist, NULL, NULL);
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	return evlist;
}

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struct evlist *perf_evlist__new_default(void)
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{
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	struct evlist *evlist = evlist__new();
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	if (evlist && perf_evlist__add_default(evlist)) {
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		evlist__delete(evlist);
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		evlist = NULL;
	}

	return evlist;
}

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struct evlist *perf_evlist__new_dummy(void)
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{
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	struct evlist *evlist = evlist__new();
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	if (evlist && perf_evlist__add_dummy(evlist)) {
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		evlist__delete(evlist);
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		evlist = NULL;
	}

	return evlist;
}

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/**
 * perf_evlist__set_id_pos - set the positions of event ids.
 * @evlist: selected event list
 *
 * Events with compatible sample types all have the same id_pos
 * and is_pos.  For convenience, put a copy on evlist.
 */
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void perf_evlist__set_id_pos(struct evlist *evlist)
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{
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	struct evsel *first = evlist__first(evlist);
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	evlist->id_pos = first->id_pos;
	evlist->is_pos = first->is_pos;
}

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static void perf_evlist__update_id_pos(struct evlist *evlist)
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{
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	struct evsel *evsel;
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	evlist__for_each_entry(evlist, evsel)
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		perf_evsel__calc_id_pos(evsel);

	perf_evlist__set_id_pos(evlist);
}

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static void evlist__purge(struct evlist *evlist)
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{
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	struct evsel *pos, *n;
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	evlist__for_each_entry_safe(evlist, n, pos) {
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		list_del_init(&pos->core.node);
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		pos->evlist = NULL;
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		evsel__delete(pos);
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	}

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	evlist->core.nr_entries = 0;
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}

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void evlist__exit(struct evlist *evlist)
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{
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	zfree(&evlist->mmap);
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	zfree(&evlist->overwrite_mmap);
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	perf_evlist__exit(&evlist->core);
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}

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void evlist__delete(struct evlist *evlist)
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{
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	if (evlist == NULL)
		return;

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	evlist__munmap(evlist);
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	evlist__close(evlist);
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	evlist__purge(evlist);
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	evlist__exit(evlist);
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	free(evlist);
}

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void evlist__add(struct evlist *evlist, struct evsel *entry)
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{
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	entry->evlist = evlist;
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	entry->idx = evlist->core.nr_entries;
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	entry->tracking = !entry->idx;
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	perf_evlist__add(&evlist->core, &entry->core);

	if (evlist->core.nr_entries == 1)
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		perf_evlist__set_id_pos(evlist);
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}

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void evlist__remove(struct evlist *evlist, struct evsel *evsel)
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{
	evsel->evlist = NULL;
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	perf_evlist__remove(&evlist->core, &evsel->core);
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}

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void perf_evlist__splice_list_tail(struct evlist *evlist,
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				   struct list_head *list)
177
{
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	struct evsel *evsel, *temp;
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	__evlist__for_each_entry_safe(list, temp, evsel) {
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		list_del_init(&evsel->core.node);
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		evlist__add(evlist, evsel);
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	}
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}

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int __evlist__set_tracepoints_handlers(struct evlist *evlist,
				       const struct evsel_str_handler *assocs, size_t nr_assocs)
{
	struct evsel *evsel;
	size_t i;
	int err;

	for (i = 0; i < nr_assocs; i++) {
		// Adding a handler for an event not in this evlist, just ignore it.
		evsel = perf_evlist__find_tracepoint_by_name(evlist, assocs[i].name);
		if (evsel == NULL)
			continue;

		err = -EEXIST;
		if (evsel->handler != NULL)
			goto out;
		evsel->handler = assocs[i].handler;
	}

	err = 0;
out:
	return err;
}

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void __perf_evlist__set_leader(struct list_head *list)
{
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	struct evsel *evsel, *leader;
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	leader = list_entry(list->next, struct evsel, core.node);
	evsel = list_entry(list->prev, struct evsel, core.node);
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	leader->core.nr_members = evsel->idx - leader->idx + 1;
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	__evlist__for_each_entry(list, evsel) {
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		evsel->leader = leader;
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	}
}

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void perf_evlist__set_leader(struct evlist *evlist)
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{
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	if (evlist->core.nr_entries) {
		evlist->nr_groups = evlist->core.nr_entries > 1 ? 1 : 0;
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		__perf_evlist__set_leader(&evlist->core.entries);
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	}
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}

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int __perf_evlist__add_default(struct evlist *evlist, bool precise)
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{
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	struct evsel *evsel = perf_evsel__new_cycles(precise);
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236
	if (evsel == NULL)
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		return -ENOMEM;
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239
	evlist__add(evlist, evsel);
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	return 0;
}
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int perf_evlist__add_dummy(struct evlist *evlist)
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{
	struct perf_event_attr attr = {
		.type	= PERF_TYPE_SOFTWARE,
		.config = PERF_COUNT_SW_DUMMY,
		.size	= sizeof(attr), /* to capture ABI version */
	};
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	struct evsel *evsel = perf_evsel__new_idx(&attr, evlist->core.nr_entries);
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	if (evsel == NULL)
		return -ENOMEM;

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	evlist__add(evlist, evsel);
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	return 0;
}

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static int evlist__add_attrs(struct evlist *evlist,
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				  struct perf_event_attr *attrs, size_t nr_attrs)
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{
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	struct evsel *evsel, *n;
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	LIST_HEAD(head);
	size_t i;

	for (i = 0; i < nr_attrs; i++) {
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		evsel = perf_evsel__new_idx(attrs + i, evlist->core.nr_entries + i);
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		if (evsel == NULL)
			goto out_delete_partial_list;
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		list_add_tail(&evsel->core.node, &head);
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	}

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	perf_evlist__splice_list_tail(evlist, &head);
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	return 0;

out_delete_partial_list:
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	__evlist__for_each_entry_safe(&head, n, evsel)
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		evsel__delete(evsel);
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	return -1;
}

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int __perf_evlist__add_default_attrs(struct evlist *evlist,
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				     struct perf_event_attr *attrs, size_t nr_attrs)
{
	size_t i;

	for (i = 0; i < nr_attrs; i++)
		event_attr_init(attrs + i);

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	return evlist__add_attrs(evlist, attrs, nr_attrs);
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}

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struct evsel *
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perf_evlist__find_tracepoint_by_id(struct evlist *evlist, int id)
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{
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	struct evsel *evsel;
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	evlist__for_each_entry(evlist, evsel) {
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		if (evsel->core.attr.type   == PERF_TYPE_TRACEPOINT &&
		    (int)evsel->core.attr.config == id)
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			return evsel;
	}

	return NULL;
}

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struct evsel *
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perf_evlist__find_tracepoint_by_name(struct evlist *evlist,
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				     const char *name)
{
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	struct evsel *evsel;
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	evlist__for_each_entry(evlist, evsel) {
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		if ((evsel->core.attr.type == PERF_TYPE_TRACEPOINT) &&
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		    (strcmp(evsel->name, name) == 0))
			return evsel;
	}

	return NULL;
}

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int perf_evlist__add_newtp(struct evlist *evlist,
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			   const char *sys, const char *name, void *handler)
{
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	struct evsel *evsel = perf_evsel__newtp(sys, name);
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328
	if (IS_ERR(evsel))
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		return -1;

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	evsel->handler = handler;
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	evlist__add(evlist, evsel);
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	return 0;
}

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static int perf_evlist__nr_threads(struct evlist *evlist,
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				   struct evsel *evsel)
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{
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	if (evsel->core.system_wide)
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		return 1;
	else
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		return perf_thread_map__nr(evlist->core.threads);
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}

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void evlist__disable(struct evlist *evlist)
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{
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	struct evsel *pos;
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349
	evlist__for_each_entry(evlist, pos) {
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		if (pos->disabled || !perf_evsel__is_group_leader(pos) || !pos->core.fd)
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			continue;
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		evsel__disable(pos);
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	}
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	evlist->enabled = false;
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}

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void evlist__enable(struct evlist *evlist)
359
{
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	struct evsel *pos;
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362
	evlist__for_each_entry(evlist, pos) {
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		if (!perf_evsel__is_group_leader(pos) || !pos->core.fd)
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			continue;
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		evsel__enable(pos);
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	}
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	evlist->enabled = true;
}

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void perf_evlist__toggle_enable(struct evlist *evlist)
372
{
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	(evlist->enabled ? evlist__disable : evlist__enable)(evlist);
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}

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static int perf_evlist__enable_event_cpu(struct evlist *evlist,
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					 struct evsel *evsel, int cpu)
378
{
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	int thread;
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	int nr_threads = perf_evlist__nr_threads(evlist, evsel);

382
	if (!evsel->core.fd)
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		return -EINVAL;

	for (thread = 0; thread < nr_threads; thread++) {
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		int err = ioctl(FD(evsel, cpu, thread), PERF_EVENT_IOC_ENABLE, 0);
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		if (err)
			return err;
	}
	return 0;
}

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static int perf_evlist__enable_event_thread(struct evlist *evlist,
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					    struct evsel *evsel,
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					    int thread)
{
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	int cpu;
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	int nr_cpus = perf_cpu_map__nr(evlist->core.cpus);
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400
	if (!evsel->core.fd)
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		return -EINVAL;

	for (cpu = 0; cpu < nr_cpus; cpu++) {
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		int err = ioctl(FD(evsel, cpu, thread), PERF_EVENT_IOC_ENABLE, 0);
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		if (err)
			return err;
	}
	return 0;
}

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int perf_evlist__enable_event_idx(struct evlist *evlist,
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				  struct evsel *evsel, int idx)
413
{
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	bool per_cpu_mmaps = !perf_cpu_map__empty(evlist->core.cpus);
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	if (per_cpu_mmaps)
		return perf_evlist__enable_event_cpu(evlist, evsel, idx);
	else
		return perf_evlist__enable_event_thread(evlist, evsel, idx);
}

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int evlist__add_pollfd(struct evlist *evlist, int fd)
423
{
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	return perf_evlist__add_pollfd(&evlist->core, fd, NULL, POLLIN);
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}

427
int evlist__filter_pollfd(struct evlist *evlist, short revents_and_mask)
428
{
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	return perf_evlist__filter_pollfd(&evlist->core, revents_and_mask);
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}

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int evlist__poll(struct evlist *evlist, int timeout)
433
{
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	return perf_evlist__poll(&evlist->core, timeout);
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}

437
struct perf_sample_id *perf_evlist__id2sid(struct evlist *evlist, u64 id)
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{
	struct hlist_head *head;
	struct perf_sample_id *sid;
	int hash;

	hash = hash_64(id, PERF_EVLIST__HLIST_BITS);
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	head = &evlist->core.heads[hash];
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446
	hlist_for_each_entry(sid, head, node)
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		if (sid->id == id)
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			return sid;

	return NULL;
}

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struct evsel *perf_evlist__id2evsel(struct evlist *evlist, u64 id)
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{
	struct perf_sample_id *sid;

457
	if (evlist->core.nr_entries == 1 || !id)
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		return evlist__first(evlist);
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	sid = perf_evlist__id2sid(evlist, id);
	if (sid)
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		return container_of(sid->evsel, struct evsel, core);
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	if (!perf_evlist__sample_id_all(evlist))
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		return evlist__first(evlist);
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	return NULL;
}
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struct evsel *perf_evlist__id2evsel_strict(struct evlist *evlist,
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						u64 id)
{
	struct perf_sample_id *sid;

	if (!id)
		return NULL;

	sid = perf_evlist__id2sid(evlist, id);
	if (sid)
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		return container_of(sid->evsel, struct evsel, core);
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	return NULL;
}

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static int perf_evlist__event2id(struct evlist *evlist,
486 487
				 union perf_event *event, u64 *id)
{
488
	const __u64 *array = event->sample.array;
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	ssize_t n;

	n = (event->header.size - sizeof(event->header)) >> 3;

	if (event->header.type == PERF_RECORD_SAMPLE) {
		if (evlist->id_pos >= n)
			return -1;
		*id = array[evlist->id_pos];
	} else {
		if (evlist->is_pos > n)
			return -1;
		n -= evlist->is_pos;
		*id = array[n];
	}
	return 0;
}

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struct evsel *perf_evlist__event2evsel(struct evlist *evlist,
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					    union perf_event *event)
508
{
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	struct evsel *first = evlist__first(evlist);
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	struct hlist_head *head;
	struct perf_sample_id *sid;
	int hash;
	u64 id;

515
	if (evlist->core.nr_entries == 1)
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		return first;

518
	if (!first->core.attr.sample_id_all &&
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	    event->header.type != PERF_RECORD_SAMPLE)
		return first;
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	if (perf_evlist__event2id(evlist, event, &id))
		return NULL;

	/* Synthesized events have an id of zero */
	if (!id)
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		return first;
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	hash = hash_64(id, PERF_EVLIST__HLIST_BITS);
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	head = &evlist->core.heads[hash];
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	hlist_for_each_entry(sid, head, node) {
		if (sid->id == id)
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			return container_of(sid->evsel, struct evsel, core);
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	}
	return NULL;
}

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static int perf_evlist__set_paused(struct evlist *evlist, bool value)
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{
	int i;

543
	if (!evlist->overwrite_mmap)
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		return 0;

546
	for (i = 0; i < evlist->core.nr_mmaps; i++) {
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		int fd = evlist->overwrite_mmap[i].core.fd;
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		int err;

		if (fd < 0)
			continue;
		err = ioctl(fd, PERF_EVENT_IOC_PAUSE_OUTPUT, value ? 1 : 0);
		if (err)
			return err;
	}
	return 0;
}

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static int perf_evlist__pause(struct evlist *evlist)
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{
	return perf_evlist__set_paused(evlist, true);
}

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static int perf_evlist__resume(struct evlist *evlist)
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{
	return perf_evlist__set_paused(evlist, false);
}

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static void evlist__munmap_nofree(struct evlist *evlist)
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{
571
	int i;
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573
	if (evlist->mmap)
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		for (i = 0; i < evlist->core.nr_mmaps; i++)
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			perf_mmap__munmap(&evlist->mmap[i].core);
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577
	if (evlist->overwrite_mmap)
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		for (i = 0; i < evlist->core.nr_mmaps; i++)
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			perf_mmap__munmap(&evlist->overwrite_mmap[i].core);
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}
581

582
void evlist__munmap(struct evlist *evlist)
583
{
584
	evlist__munmap_nofree(evlist);
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	zfree(&evlist->mmap);
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	zfree(&evlist->overwrite_mmap);
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}

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static void perf_mmap__unmap_cb(struct perf_mmap *map)
{
	struct mmap *m = container_of(map, struct mmap, core);

	mmap__munmap(m);
}

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static struct mmap *evlist__alloc_mmap(struct evlist *evlist,
				       bool overwrite)
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{
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	int i;
600
	struct mmap *map;
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602
	map = zalloc(evlist->core.nr_mmaps * sizeof(struct mmap));
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	if (!map)
		return NULL;
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	for (i = 0; i < evlist->core.nr_mmaps; i++) {
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		struct perf_mmap *prev = i ? &map[i - 1].core : NULL;

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		/*
		 * When the perf_mmap() call is made we grab one refcount, plus
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		 * one extra to let perf_mmap__consume() get the last
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		 * events after all real references (perf_mmap__get()) are
		 * dropped.
		 *
		 * Each PERF_EVENT_IOC_SET_OUTPUT points to this mmap and
		 * thus does perf_mmap__get() on it.
		 */
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		perf_mmap__init(&map[i].core, prev, overwrite, perf_mmap__unmap_cb);
619
	}
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621
	return map;
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}

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static void
perf_evlist__mmap_cb_idx(struct perf_evlist *_evlist,
			 struct perf_mmap_param *_mp,
			 int idx, bool per_cpu)
{
	struct evlist *evlist = container_of(_evlist, struct evlist, core);
	struct mmap_params *mp = container_of(_mp, struct mmap_params, core);

	auxtrace_mmap_params__set_idx(&mp->auxtrace_mp, evlist, idx, per_cpu);
}

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static struct perf_mmap*
perf_evlist__mmap_cb_get(struct perf_evlist *_evlist, bool overwrite, int idx)
{
	struct evlist *evlist = container_of(_evlist, struct evlist, core);
639
	struct mmap *maps;
640

641
	maps = overwrite ? evlist->overwrite_mmap : evlist->mmap;
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	if (!maps) {
		maps = evlist__alloc_mmap(evlist, overwrite);
		if (!maps)
			return NULL;
647

648
		if (overwrite) {
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			evlist->overwrite_mmap = maps;
			if (evlist->bkw_mmap_state == BKW_MMAP_NOTREADY)
				perf_evlist__toggle_bkw_mmap(evlist, BKW_MMAP_RUNNING);
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		} else {
			evlist->mmap = maps;
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		}
	}

	return &maps[idx].core;
}

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static int
perf_evlist__mmap_cb_mmap(struct perf_mmap *_map, struct perf_mmap_param *_mp,
			  int output, int cpu)
{
	struct mmap *map = container_of(_map, struct mmap, core);
	struct mmap_params *mp = container_of(_mp, struct mmap_params, core);

	return mmap__mmap(map, mp, output, cpu);
}

670
unsigned long perf_event_mlock_kb_in_pages(void)
671
{
672 673
	unsigned long pages;
	int max;
674

675 676 677 678 679 680 681 682 683 684
	if (sysctl__read_int("kernel/perf_event_mlock_kb", &max) < 0) {
		/*
		 * Pick a once upon a time good value, i.e. things look
		 * strange since we can't read a sysctl value, but lets not
		 * die yet...
		 */
		max = 512;
	} else {
		max -= (page_size / 1024);
	}
685

686 687 688 689 690 691 692
	pages = (max * 1024) / page_size;
	if (!is_power_of_2(pages))
		pages = rounddown_pow_of_two(pages);

	return pages;
}

693
size_t evlist__mmap_size(unsigned long pages)
694 695 696 697
{
	if (pages == UINT_MAX)
		pages = perf_event_mlock_kb_in_pages();
	else if (!is_power_of_2(pages))
698 699 700 701 702
		return 0;

	return (pages + 1) * page_size;
}

703 704
static long parse_pages_arg(const char *str, unsigned long min,
			    unsigned long max)
705
{
706
	unsigned long pages, val;
707 708 709 710 711 712 713
	static struct parse_tag tags[] = {
		{ .tag  = 'B', .mult = 1       },
		{ .tag  = 'K', .mult = 1 << 10 },
		{ .tag  = 'M', .mult = 1 << 20 },
		{ .tag  = 'G', .mult = 1 << 30 },
		{ .tag  = 0 },
	};
714

715
	if (str == NULL)
716
		return -EINVAL;
717

718
	val = parse_tag_value(str, tags);
719
	if (val != (unsigned long) -1) {
720 721 722 723 724 725
		/* we got file size value */
		pages = PERF_ALIGN(val, page_size) / page_size;
	} else {
		/* we got pages count value */
		char *eptr;
		pages = strtoul(str, &eptr, 10);
726 727
		if (*eptr != '\0')
			return -EINVAL;
728 729
	}

730
	if (pages == 0 && min == 0) {
731
		/* leave number of pages at 0 */
732
	} else if (!is_power_of_2(pages)) {
733 734
		char buf[100];

735
		/* round pages up to next power of 2 */
736
		pages = roundup_pow_of_two(pages);
737 738
		if (!pages)
			return -EINVAL;
739 740 741 742

		unit_number__scnprintf(buf, sizeof(buf), pages * page_size);
		pr_info("rounding mmap pages size to %s (%lu pages)\n",
			buf, pages);
743 744
	}

745 746 747 748 749 750
	if (pages > max)
		return -EINVAL;

	return pages;
}

751
int __perf_evlist__parse_mmap_pages(unsigned int *mmap_pages, const char *str)
752 753 754 755
{
	unsigned long max = UINT_MAX;
	long pages;

A
Adrian Hunter 已提交
756
	if (max > SIZE_MAX / page_size)
757 758 759 760 761
		max = SIZE_MAX / page_size;

	pages = parse_pages_arg(str, 1, max);
	if (pages < 0) {
		pr_err("Invalid argument for --mmap_pages/-m\n");
762 763 764 765 766 767 768
		return -1;
	}

	*mmap_pages = pages;
	return 0;
}

769 770 771 772 773 774
int perf_evlist__parse_mmap_pages(const struct option *opt, const char *str,
				  int unset __maybe_unused)
{
	return __perf_evlist__parse_mmap_pages(opt->value, str);
}

775
/**
776
 * evlist__mmap_ex - Create mmaps to receive events.
777 778 779
 * @evlist: list of events
 * @pages: map length in pages
 * @overwrite: overwrite older events?
780 781
 * @auxtrace_pages - auxtrace map length in pages
 * @auxtrace_overwrite - overwrite older auxtrace data?
782
 *
783
 * If @overwrite is %false the user needs to signal event consumption using
784
 * perf_mmap__write_tail().  Using evlist__mmap_read() does this
785
 * automatically.
786
 *
787 788 789
 * Similarly, if @auxtrace_overwrite is %false the user needs to signal data
 * consumption using auxtrace_mmap__write_tail().
 *
790
 * Return: %0 on success, negative error code otherwise.
791
 */
792
int evlist__mmap_ex(struct evlist *evlist, unsigned int pages,
793
			 unsigned int auxtrace_pages,
794 795
			 bool auxtrace_overwrite, int nr_cblocks, int affinity, int flush,
			 int comp_level)
796
{
W
Wang Nan 已提交
797 798 799 800 801
	/*
	 * Delay setting mp.prot: set it before calling perf_mmap__mmap.
	 * Its value is decided by evsel's write_backward.
	 * So &mp should not be passed through const pointer.
	 */
J
Jiri Olsa 已提交
802 803 804 805 806 807
	struct mmap_params mp = {
		.nr_cblocks	= nr_cblocks,
		.affinity	= affinity,
		.flush		= flush,
		.comp_level	= comp_level
	};
808
	struct perf_evlist_mmap_ops ops = {
809 810 811
		.idx  = perf_evlist__mmap_cb_idx,
		.get  = perf_evlist__mmap_cb_get,
		.mmap = perf_evlist__mmap_cb_mmap,
812
	};
813

814 815
	evlist->core.mmap_len = evlist__mmap_size(pages);
	pr_debug("mmap size %zuB\n", evlist->core.mmap_len);
816

817
	auxtrace_mmap_params__init(&mp.auxtrace_mp, evlist->core.mmap_len,
818 819
				   auxtrace_pages, auxtrace_overwrite);

820
	return perf_evlist__mmap_ops(&evlist->core, &ops, &mp.core);
821
}
822

823
int evlist__mmap(struct evlist *evlist, unsigned int pages)
824
{
825
	return evlist__mmap_ex(evlist, pages, 0, false, 0, PERF_AFFINITY_SYS, 1, 0);
826 827
}

828
int perf_evlist__create_maps(struct evlist *evlist, struct target *target)
829
{
830
	bool all_threads = (target->per_thread && target->system_wide);
831
	struct perf_cpu_map *cpus;
832
	struct perf_thread_map *threads;
833

834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851
	/*
	 * If specify '-a' and '--per-thread' to perf record, perf record
	 * will override '--per-thread'. target->per_thread = false and
	 * target->system_wide = true.
	 *
	 * If specify '--per-thread' only to perf record,
	 * target->per_thread = true and target->system_wide = false.
	 *
	 * So target->per_thread && target->system_wide is false.
	 * For perf record, thread_map__new_str doesn't call
	 * thread_map__new_all_cpus. That will keep perf record's
	 * current behavior.
	 *
	 * For perf stat, it allows the case that target->per_thread and
	 * target->system_wide are all true. It means to collect system-wide
	 * per-thread data. thread_map__new_str will call
	 * thread_map__new_all_cpus to enumerate all threads.
	 */
852
	threads = thread_map__new_str(target->pid, target->tid, target->uid,
853
				      all_threads);
854

855
	if (!threads)
856 857
		return -1;

858
	if (target__uses_dummy_map(target))
859
		cpus = perf_cpu_map__dummy_new();
860
	else
861
		cpus = perf_cpu_map__new(target->cpu_list);
862

863
	if (!cpus)
864 865
		goto out_delete_threads;

866
	evlist->core.has_user_cpus = !!target->cpu_list;
867

868
	perf_evlist__set_maps(&evlist->core, cpus, threads);
869 870

	return 0;
871 872

out_delete_threads:
873
	perf_thread_map__put(threads);
874 875 876
	return -1;
}

877
void __perf_evlist__set_sample_bit(struct evlist *evlist,
878 879
				   enum perf_event_sample_format bit)
{
880
	struct evsel *evsel;
881

882
	evlist__for_each_entry(evlist, evsel)
883 884 885
		__perf_evsel__set_sample_bit(evsel, bit);
}

886
void __perf_evlist__reset_sample_bit(struct evlist *evlist,
887 888
				     enum perf_event_sample_format bit)
{
889
	struct evsel *evsel;
890

891
	evlist__for_each_entry(evlist, evsel)
892 893 894
		__perf_evsel__reset_sample_bit(evsel, bit);
}

895
int perf_evlist__apply_filters(struct evlist *evlist, struct evsel **err_evsel)
896
{
897
	struct evsel *evsel;
898
	int err = 0;
899

900
	evlist__for_each_entry(evlist, evsel) {
901
		if (evsel->filter == NULL)
902
			continue;
903

904 905 906 907
		/*
		 * filters only work for tracepoint event, which doesn't have cpu limit.
		 * So evlist and evsel should always be same.
		 */
908
		err = perf_evsel__apply_filter(&evsel->core, evsel->filter);
909 910
		if (err) {
			*err_evsel = evsel;
911
			break;
912
		}
913 914
	}

915 916 917
	return err;
}

918
int perf_evlist__set_tp_filter(struct evlist *evlist, const char *filter)
919
{
920
	struct evsel *evsel;
921 922
	int err = 0;

923 924 925
	if (filter == NULL)
		return -1;

926
	evlist__for_each_entry(evlist, evsel) {
927
		if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT)
928 929
			continue;

930
		err = perf_evsel__set_filter(evsel, filter);
931 932 933 934 935
		if (err)
			break;
	}

	return err;
936
}
937

938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957
int perf_evlist__append_tp_filter(struct evlist *evlist, const char *filter)
{
	struct evsel *evsel;
	int err = 0;

	if (filter == NULL)
		return -1;

	evlist__for_each_entry(evlist, evsel) {
		if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT)
			continue;

		err = perf_evsel__append_tp_filter(evsel, filter);
		if (err)
			break;
	}

	return err;
}

958
char *asprintf__tp_filter_pids(size_t npids, pid_t *pids)
959 960
{
	char *filter;
961
	size_t i;
962

963 964 965
	for (i = 0; i < npids; ++i) {
		if (i == 0) {
			if (asprintf(&filter, "common_pid != %d", pids[i]) < 0)
966
				return NULL;
967 968 969 970 971 972 973 974 975 976
		} else {
			char *tmp;

			if (asprintf(&tmp, "%s && common_pid != %d", filter, pids[i]) < 0)
				goto out_free;

			free(filter);
			filter = tmp;
		}
	}
977

978
	return filter;
979
out_free:
980 981 982 983 984 985 986 987 988
	free(filter);
	return NULL;
}

int perf_evlist__set_tp_filter_pids(struct evlist *evlist, size_t npids, pid_t *pids)
{
	char *filter = asprintf__tp_filter_pids(npids, pids);
	int ret = perf_evlist__set_tp_filter(evlist, filter);

989 990 991 992
	free(filter);
	return ret;
}

993
int perf_evlist__set_tp_filter_pid(struct evlist *evlist, pid_t pid)
994
{
995
	return perf_evlist__set_tp_filter_pids(evlist, 1, &pid);
996 997
}

998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011
int perf_evlist__append_tp_filter_pids(struct evlist *evlist, size_t npids, pid_t *pids)
{
	char *filter = asprintf__tp_filter_pids(npids, pids);
	int ret = perf_evlist__append_tp_filter(evlist, filter);

	free(filter);
	return ret;
}

int perf_evlist__append_tp_filter_pid(struct evlist *evlist, pid_t pid)
{
	return perf_evlist__append_tp_filter_pids(evlist, 1, &pid);
}

1012
bool perf_evlist__valid_sample_type(struct evlist *evlist)
1013
{
1014
	struct evsel *pos;
1015

1016
	if (evlist->core.nr_entries == 1)
1017 1018 1019 1020 1021
		return true;

	if (evlist->id_pos < 0 || evlist->is_pos < 0)
		return false;

1022
	evlist__for_each_entry(evlist, pos) {
1023 1024
		if (pos->id_pos != evlist->id_pos ||
		    pos->is_pos != evlist->is_pos)
1025
			return false;
1026 1027
	}

1028
	return true;
1029 1030
}

1031
u64 __perf_evlist__combined_sample_type(struct evlist *evlist)
1032
{
1033
	struct evsel *evsel;
1034 1035 1036 1037

	if (evlist->combined_sample_type)
		return evlist->combined_sample_type;

1038
	evlist__for_each_entry(evlist, evsel)
1039
		evlist->combined_sample_type |= evsel->core.attr.sample_type;
1040 1041 1042 1043

	return evlist->combined_sample_type;
}

1044
u64 perf_evlist__combined_sample_type(struct evlist *evlist)
1045 1046 1047
{
	evlist->combined_sample_type = 0;
	return __perf_evlist__combined_sample_type(evlist);
1048 1049
}

1050
u64 perf_evlist__combined_branch_type(struct evlist *evlist)
1051
{
1052
	struct evsel *evsel;
1053 1054
	u64 branch_type = 0;

1055
	evlist__for_each_entry(evlist, evsel)
1056
		branch_type |= evsel->core.attr.branch_sample_type;
1057 1058 1059
	return branch_type;
}

1060
bool perf_evlist__valid_read_format(struct evlist *evlist)
1061
{
1062
	struct evsel *first = evlist__first(evlist), *pos = first;
1063 1064
	u64 read_format = first->core.attr.read_format;
	u64 sample_type = first->core.attr.sample_type;
1065

1066
	evlist__for_each_entry(evlist, pos) {
1067
		if (read_format != pos->core.attr.read_format)
1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079
			return false;
	}

	/* PERF_SAMPLE_READ imples PERF_FORMAT_ID. */
	if ((sample_type & PERF_SAMPLE_READ) &&
	    !(read_format & PERF_FORMAT_ID)) {
		return false;
	}

	return true;
}

1080
u16 perf_evlist__id_hdr_size(struct evlist *evlist)
1081
{
1082
	struct evsel *first = evlist__first(evlist);
1083 1084 1085 1086
	struct perf_sample *data;
	u64 sample_type;
	u16 size = 0;

1087
	if (!first->core.attr.sample_id_all)
1088 1089
		goto out;

1090
	sample_type = first->core.attr.sample_type;
1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105

	if (sample_type & PERF_SAMPLE_TID)
		size += sizeof(data->tid) * 2;

       if (sample_type & PERF_SAMPLE_TIME)
		size += sizeof(data->time);

	if (sample_type & PERF_SAMPLE_ID)
		size += sizeof(data->id);

	if (sample_type & PERF_SAMPLE_STREAM_ID)
		size += sizeof(data->stream_id);

	if (sample_type & PERF_SAMPLE_CPU)
		size += sizeof(data->cpu) * 2;
1106 1107 1108

	if (sample_type & PERF_SAMPLE_IDENTIFIER)
		size += sizeof(data->id);
1109 1110 1111 1112
out:
	return size;
}

1113
bool perf_evlist__valid_sample_id_all(struct evlist *evlist)
1114
{
1115
	struct evsel *first = evlist__first(evlist), *pos = first;
1116

1117
	evlist__for_each_entry_continue(evlist, pos) {
1118
		if (first->core.attr.sample_id_all != pos->core.attr.sample_id_all)
1119
			return false;
1120 1121
	}

1122 1123 1124
	return true;
}

1125
bool perf_evlist__sample_id_all(struct evlist *evlist)
1126
{
1127
	struct evsel *first = evlist__first(evlist);
1128
	return first->core.attr.sample_id_all;
1129
}
1130

1131
void perf_evlist__set_selected(struct evlist *evlist,
1132
			       struct evsel *evsel)
1133 1134 1135
{
	evlist->selected = evsel;
}
1136

1137
void evlist__close(struct evlist *evlist)
1138
{
1139
	struct evsel *evsel;
1140

1141
	evlist__for_each_entry_reverse(evlist, evsel)
1142
		evsel__close(evsel);
1143 1144
}

1145
static int perf_evlist__create_syswide_maps(struct evlist *evlist)
1146
{
1147
	struct perf_cpu_map *cpus;
1148
	struct perf_thread_map *threads;
1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159
	int err = -ENOMEM;

	/*
	 * Try reading /sys/devices/system/cpu/online to get
	 * an all cpus map.
	 *
	 * FIXME: -ENOMEM is the best we can do here, the cpu_map
	 * code needs an overhaul to properly forward the
	 * error, and we may not want to do that fallback to a
	 * default cpu identity map :-\
	 */
1160
	cpus = perf_cpu_map__new(NULL);
1161
	if (!cpus)
1162 1163
		goto out;

1164
	threads = perf_thread_map__new_dummy();
1165 1166
	if (!threads)
		goto out_put;
1167

1168
	perf_evlist__set_maps(&evlist->core, cpus, threads);
1169 1170
out:
	return err;
1171
out_put:
1172
	perf_cpu_map__put(cpus);
1173 1174 1175
	goto out;
}

1176
int evlist__open(struct evlist *evlist)
1177
{
1178
	struct evsel *evsel;
1179
	int err;
1180

1181 1182 1183 1184
	/*
	 * Default: one fd per CPU, all threads, aka systemwide
	 * as sys_perf_event_open(cpu = -1, thread = -1) is EINVAL
	 */
1185
	if (evlist->core.threads == NULL && evlist->core.cpus == NULL) {
1186 1187 1188 1189 1190
		err = perf_evlist__create_syswide_maps(evlist);
		if (err < 0)
			goto out_err;
	}

1191 1192
	perf_evlist__update_id_pos(evlist);

1193
	evlist__for_each_entry(evlist, evsel) {
1194
		err = evsel__open(evsel, evsel->core.cpus, evsel->core.threads);
1195 1196 1197 1198 1199 1200
		if (err < 0)
			goto out_err;
	}

	return 0;
out_err:
1201
	evlist__close(evlist);
1202
	errno = -err;
1203 1204
	return err;
}
1205

1206
int perf_evlist__prepare_workload(struct evlist *evlist, struct target *target,
1207
				  const char *argv[], bool pipe_output,
1208
				  void (*exec_error)(int signo, siginfo_t *info, void *ucontext))
1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229
{
	int child_ready_pipe[2], go_pipe[2];
	char bf;

	if (pipe(child_ready_pipe) < 0) {
		perror("failed to create 'ready' pipe");
		return -1;
	}

	if (pipe(go_pipe) < 0) {
		perror("failed to create 'go' pipe");
		goto out_close_ready_pipe;
	}

	evlist->workload.pid = fork();
	if (evlist->workload.pid < 0) {
		perror("failed to fork");
		goto out_close_pipes;
	}

	if (!evlist->workload.pid) {
1230 1231
		int ret;

1232
		if (pipe_output)
1233 1234
			dup2(2, 1);

1235 1236
		signal(SIGTERM, SIG_DFL);

1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248
		close(child_ready_pipe[0]);
		close(go_pipe[1]);
		fcntl(go_pipe[0], F_SETFD, FD_CLOEXEC);

		/*
		 * Tell the parent we're ready to go
		 */
		close(child_ready_pipe[1]);

		/*
		 * Wait until the parent tells us to go.
		 */
1249 1250 1251 1252 1253 1254
		ret = read(go_pipe[0], &bf, 1);
		/*
		 * The parent will ask for the execvp() to be performed by
		 * writing exactly one byte, in workload.cork_fd, usually via
		 * perf_evlist__start_workload().
		 *
1255
		 * For cancelling the workload without actually running it,
1256 1257 1258 1259 1260 1261 1262 1263 1264
		 * the parent will just close workload.cork_fd, without writing
		 * anything, i.e. read will return zero and we just exit()
		 * here.
		 */
		if (ret != 1) {
			if (ret == -1)
				perror("unable to read pipe");
			exit(ret);
		}
1265 1266 1267

		execvp(argv[0], (char **)argv);

1268
		if (exec_error) {
1269 1270 1271 1272 1273 1274 1275
			union sigval val;

			val.sival_int = errno;
			if (sigqueue(getppid(), SIGUSR1, val))
				perror(argv[0]);
		} else
			perror(argv[0]);
1276 1277 1278
		exit(-1);
	}

1279 1280 1281 1282 1283 1284 1285 1286
	if (exec_error) {
		struct sigaction act = {
			.sa_flags     = SA_SIGINFO,
			.sa_sigaction = exec_error,
		};
		sigaction(SIGUSR1, &act, NULL);
	}

1287
	if (target__none(target)) {
1288
		if (evlist->core.threads == NULL) {
1289 1290 1291 1292
			fprintf(stderr, "FATAL: evlist->threads need to be set at this point (%s:%d).\n",
				__func__, __LINE__);
			goto out_close_pipes;
		}
1293
		perf_thread_map__set_pid(evlist->core.threads, 0, evlist->workload.pid);
1294
	}
1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305

	close(child_ready_pipe[1]);
	close(go_pipe[0]);
	/*
	 * wait for child to settle
	 */
	if (read(child_ready_pipe[0], &bf, 1) == -1) {
		perror("unable to read pipe");
		goto out_close_pipes;
	}

1306
	fcntl(go_pipe[1], F_SETFD, FD_CLOEXEC);
1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319
	evlist->workload.cork_fd = go_pipe[1];
	close(child_ready_pipe[0]);
	return 0;

out_close_pipes:
	close(go_pipe[0]);
	close(go_pipe[1]);
out_close_ready_pipe:
	close(child_ready_pipe[0]);
	close(child_ready_pipe[1]);
	return -1;
}

1320
int perf_evlist__start_workload(struct evlist *evlist)
1321 1322
{
	if (evlist->workload.cork_fd > 0) {
1323
		char bf = 0;
1324
		int ret;
1325 1326 1327
		/*
		 * Remove the cork, let it rip!
		 */
1328 1329
		ret = write(evlist->workload.cork_fd, &bf, 1);
		if (ret < 0)
1330
			perror("unable to write to pipe");
1331 1332 1333

		close(evlist->workload.cork_fd);
		return ret;
1334 1335 1336 1337
	}

	return 0;
}
1338

1339
int perf_evlist__parse_sample(struct evlist *evlist, union perf_event *event,
1340
			      struct perf_sample *sample)
1341
{
1342
	struct evsel *evsel = perf_evlist__event2evsel(evlist, event);
1343 1344 1345

	if (!evsel)
		return -EFAULT;
1346
	return perf_evsel__parse_sample(evsel, event, sample);
1347
}
1348

1349
int perf_evlist__parse_sample_timestamp(struct evlist *evlist,
1350 1351 1352
					union perf_event *event,
					u64 *timestamp)
{
1353
	struct evsel *evsel = perf_evlist__event2evsel(evlist, event);
1354 1355 1356 1357 1358 1359

	if (!evsel)
		return -EFAULT;
	return perf_evsel__parse_sample_timestamp(evsel, event, timestamp);
}

1360
int perf_evlist__strerror_open(struct evlist *evlist,
1361 1362 1363
			       int err, char *buf, size_t size)
{
	int printed, value;
1364
	char sbuf[STRERR_BUFSIZE], *emsg = str_error_r(err, sbuf, sizeof(sbuf));
1365 1366 1367 1368 1369 1370 1371 1372

	switch (err) {
	case EACCES:
	case EPERM:
		printed = scnprintf(buf, size,
				    "Error:\t%s.\n"
				    "Hint:\tCheck /proc/sys/kernel/perf_event_paranoid setting.", emsg);

1373
		value = perf_event_paranoid();
1374 1375 1376 1377 1378 1379 1380 1381

		printed += scnprintf(buf + printed, size - printed, "\nHint:\t");

		if (value >= 2) {
			printed += scnprintf(buf + printed, size - printed,
					     "For your workloads it needs to be <= 1\nHint:\t");
		}
		printed += scnprintf(buf + printed, size - printed,
1382
				     "For system wide tracing it needs to be set to -1.\n");
1383 1384

		printed += scnprintf(buf + printed, size - printed,
1385 1386
				    "Hint:\tTry: 'sudo sh -c \"echo -1 > /proc/sys/kernel/perf_event_paranoid\"'\n"
				    "Hint:\tThe current value is %d.", value);
1387
		break;
1388
	case EINVAL: {
1389
		struct evsel *first = evlist__first(evlist);
1390 1391 1392 1393 1394
		int max_freq;

		if (sysctl__read_int("kernel/perf_event_max_sample_rate", &max_freq) < 0)
			goto out_default;

1395
		if (first->core.attr.sample_freq < (u64)max_freq)
1396 1397 1398 1399 1400 1401
			goto out_default;

		printed = scnprintf(buf, size,
				    "Error:\t%s.\n"
				    "Hint:\tCheck /proc/sys/kernel/perf_event_max_sample_rate.\n"
				    "Hint:\tThe current value is %d and %" PRIu64 " is being requested.",
1402
				    emsg, max_freq, first->core.attr.sample_freq);
1403 1404
		break;
	}
1405
	default:
1406
out_default:
1407 1408 1409 1410 1411 1412
		scnprintf(buf, size, "%s", emsg);
		break;
	}

	return 0;
}
1413

1414
int perf_evlist__strerror_mmap(struct evlist *evlist, int err, char *buf, size_t size)
1415
{
1416
	char sbuf[STRERR_BUFSIZE], *emsg = str_error_r(err, sbuf, sizeof(sbuf));
1417
	int pages_attempted = evlist->core.mmap_len / 1024, pages_max_per_user, printed = 0;
1418 1419 1420

	switch (err) {
	case EPERM:
1421
		sysctl__read_int("kernel/perf_event_mlock_kb", &pages_max_per_user);
1422 1423
		printed += scnprintf(buf + printed, size - printed,
				     "Error:\t%s.\n"
1424
				     "Hint:\tCheck /proc/sys/kernel/perf_event_mlock_kb (%d kB) setting.\n"
1425
				     "Hint:\tTried using %zd kB.\n",
1426
				     emsg, pages_max_per_user, pages_attempted);
1427 1428 1429 1430 1431 1432 1433 1434 1435

		if (pages_attempted >= pages_max_per_user) {
			printed += scnprintf(buf + printed, size - printed,
					     "Hint:\tTry 'sudo sh -c \"echo %d > /proc/sys/kernel/perf_event_mlock_kb\"', or\n",
					     pages_max_per_user + pages_attempted);
		}

		printed += scnprintf(buf + printed, size - printed,
				     "Hint:\tTry using a smaller -m/--mmap-pages value.");
1436 1437 1438 1439 1440 1441 1442 1443 1444
		break;
	default:
		scnprintf(buf, size, "%s", emsg);
		break;
	}

	return 0;
}

1445
void perf_evlist__to_front(struct evlist *evlist,
1446
			   struct evsel *move_evsel)
1447
{
1448
	struct evsel *evsel, *n;
1449 1450
	LIST_HEAD(move);

1451
	if (move_evsel == evlist__first(evlist))
1452 1453
		return;

1454
	evlist__for_each_entry_safe(evlist, n, evsel) {
1455
		if (evsel->leader == move_evsel->leader)
1456
			list_move_tail(&evsel->core.node, &move);
1457 1458
	}

1459
	list_splice(&move, &evlist->core.entries);
1460
}
1461

1462
void perf_evlist__set_tracking_event(struct evlist *evlist,
1463
				     struct evsel *tracking_evsel)
1464
{
1465
	struct evsel *evsel;
1466 1467 1468 1469

	if (tracking_evsel->tracking)
		return;

1470
	evlist__for_each_entry(evlist, evsel) {
1471 1472 1473 1474 1475 1476
		if (evsel != tracking_evsel)
			evsel->tracking = false;
	}

	tracking_evsel->tracking = true;
}
1477

1478
struct evsel *
1479
perf_evlist__find_evsel_by_str(struct evlist *evlist,
1480 1481
			       const char *str)
{
1482
	struct evsel *evsel;
1483

1484
	evlist__for_each_entry(evlist, evsel) {
1485 1486 1487 1488 1489 1490 1491 1492
		if (!evsel->name)
			continue;
		if (strcmp(str, evsel->name) == 0)
			return evsel;
	}

	return NULL;
}
1493

1494
void perf_evlist__toggle_bkw_mmap(struct evlist *evlist,
1495 1496 1497 1498 1499 1500 1501 1502 1503
				  enum bkw_mmap_state state)
{
	enum bkw_mmap_state old_state = evlist->bkw_mmap_state;
	enum action {
		NONE,
		PAUSE,
		RESUME,
	} action = NONE;

1504
	if (!evlist->overwrite_mmap)
1505 1506 1507 1508 1509
		return;

	switch (old_state) {
	case BKW_MMAP_NOTREADY: {
		if (state != BKW_MMAP_RUNNING)
1510
			goto state_err;
1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550
		break;
	}
	case BKW_MMAP_RUNNING: {
		if (state != BKW_MMAP_DATA_PENDING)
			goto state_err;
		action = PAUSE;
		break;
	}
	case BKW_MMAP_DATA_PENDING: {
		if (state != BKW_MMAP_EMPTY)
			goto state_err;
		break;
	}
	case BKW_MMAP_EMPTY: {
		if (state != BKW_MMAP_RUNNING)
			goto state_err;
		action = RESUME;
		break;
	}
	default:
		WARN_ONCE(1, "Shouldn't get there\n");
	}

	evlist->bkw_mmap_state = state;

	switch (action) {
	case PAUSE:
		perf_evlist__pause(evlist);
		break;
	case RESUME:
		perf_evlist__resume(evlist);
		break;
	case NONE:
	default:
		break;
	}

state_err:
	return;
}
1551

1552
bool perf_evlist__exclude_kernel(struct evlist *evlist)
1553
{
1554
	struct evsel *evsel;
1555 1556

	evlist__for_each_entry(evlist, evsel) {
1557
		if (!evsel->core.attr.exclude_kernel)
1558 1559 1560 1561 1562
			return false;
	}

	return true;
}
1563 1564 1565 1566 1567 1568

/*
 * Events in data file are not collect in groups, but we still want
 * the group display. Set the artificial group and set the leader's
 * forced_leader flag to notify the display code.
 */
1569
void perf_evlist__force_leader(struct evlist *evlist)
1570 1571
{
	if (!evlist->nr_groups) {
1572
		struct evsel *leader = evlist__first(evlist);
1573 1574 1575 1576 1577

		perf_evlist__set_leader(evlist);
		leader->forced_leader = true;
	}
}
1578

1579
struct evsel *perf_evlist__reset_weak_group(struct evlist *evsel_list,
1580
						 struct evsel *evsel)
1581
{
1582
	struct evsel *c2, *leader;
1583 1584 1585 1586
	bool is_open = true;

	leader = evsel->leader;
	pr_debug("Weak group for %s/%d failed\n",
1587
			leader->name, leader->core.nr_members);
1588 1589 1590 1591 1592 1593 1594 1595 1596 1597

	/*
	 * for_each_group_member doesn't work here because it doesn't
	 * include the first entry.
	 */
	evlist__for_each_entry(evsel_list, c2) {
		if (c2 == evsel)
			is_open = false;
		if (c2->leader == leader) {
			if (is_open)
1598
				perf_evsel__close(&c2->core);
1599
			c2->leader = c2;
1600
			c2->core.nr_members = 0;
1601 1602 1603 1604
		}
	}
	return leader;
}
1605

1606
int perf_evlist__add_sb_event(struct evlist **evlist,
1607 1608 1609 1610
			      struct perf_event_attr *attr,
			      perf_evsel__sb_cb_t cb,
			      void *data)
{
1611
	struct evsel *evsel;
1612 1613 1614
	bool new_evlist = (*evlist) == NULL;

	if (*evlist == NULL)
1615
		*evlist = evlist__new();
1616 1617 1618 1619 1620 1621 1622 1623
	if (*evlist == NULL)
		return -1;

	if (!attr->sample_id_all) {
		pr_warning("enabling sample_id_all for all side band events\n");
		attr->sample_id_all = 1;
	}

1624
	evsel = perf_evsel__new_idx(attr, (*evlist)->core.nr_entries);
1625 1626 1627 1628 1629
	if (!evsel)
		goto out_err;

	evsel->side_band.cb = cb;
	evsel->side_band.data = data;
1630
	evlist__add(*evlist, evsel);
1631 1632 1633 1634
	return 0;

out_err:
	if (new_evlist) {
1635
		evlist__delete(*evlist);
1636 1637 1638 1639 1640 1641 1642
		*evlist = NULL;
	}
	return -1;
}

static void *perf_evlist__poll_thread(void *arg)
{
1643
	struct evlist *evlist = arg;
1644
	bool draining = false;
1645
	int i, done = 0;
1646 1647 1648 1649 1650 1651 1652 1653
	/*
	 * In order to read symbols from other namespaces perf to needs to call
	 * setns(2).  This isn't permitted if the struct_fs has multiple users.
	 * unshare(2) the fs so that we may continue to setns into namespaces
	 * that we're observing when, for instance, reading the build-ids at
	 * the end of a 'perf record' session.
	 */
	unshare(CLONE_FS);
1654 1655 1656

	while (!done) {
		bool got_data = false;
1657

1658
		if (evlist->thread.done)
1659 1660 1661
			draining = true;

		if (!draining)
1662
			evlist__poll(evlist, 1000);
1663

1664
		for (i = 0; i < evlist->core.nr_mmaps; i++) {
1665
			struct mmap *map = &evlist->mmap[i];
1666 1667
			union perf_event *event;

1668
			if (perf_mmap__read_init(&map->core))
1669
				continue;
1670
			while ((event = perf_mmap__read_event(&map->core)) != NULL) {
1671
				struct evsel *evsel = perf_evlist__event2evsel(evlist, event);
1672 1673 1674 1675 1676 1677

				if (evsel && evsel->side_band.cb)
					evsel->side_band.cb(event, evsel->side_band.data);
				else
					pr_warning("cannot locate proper evsel for the side band event\n");

1678
				perf_mmap__consume(&map->core);
1679
				got_data = true;
1680
			}
1681
			perf_mmap__read_done(&map->core);
1682
		}
1683 1684 1685

		if (draining && !got_data)
			break;
1686 1687 1688 1689
	}
	return NULL;
}

1690
int perf_evlist__start_sb_thread(struct evlist *evlist,
1691 1692
				 struct target *target)
{
1693
	struct evsel *counter;
1694 1695 1696 1697 1698 1699 1700 1701

	if (!evlist)
		return 0;

	if (perf_evlist__create_maps(evlist, target))
		goto out_delete_evlist;

	evlist__for_each_entry(evlist, counter) {
1702
		if (evsel__open(counter, evlist->core.cpus,
1703
				     evlist->core.threads) < 0)
1704 1705 1706
			goto out_delete_evlist;
	}

1707
	if (evlist__mmap(evlist, UINT_MAX))
1708 1709 1710
		goto out_delete_evlist;

	evlist__for_each_entry(evlist, counter) {
1711
		if (evsel__enable(counter))
1712 1713 1714 1715 1716 1717 1718 1719 1720 1721
			goto out_delete_evlist;
	}

	evlist->thread.done = 0;
	if (pthread_create(&evlist->thread.th, NULL, perf_evlist__poll_thread, evlist))
		goto out_delete_evlist;

	return 0;

out_delete_evlist:
1722
	evlist__delete(evlist);
1723 1724 1725 1726
	evlist = NULL;
	return -1;
}

1727
void perf_evlist__stop_sb_thread(struct evlist *evlist)
1728 1729 1730 1731 1732
{
	if (!evlist)
		return;
	evlist->thread.done = 1;
	pthread_join(evlist->thread.th, NULL);
1733
	evlist__delete(evlist);
1734
}