1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copyright (C) 2011, Red Hat Inc, Arnaldo Carvalho de Melo <acme@redhat.com>
4 *
5 * Parts came from builtin-{top,stat,record}.c, see those files for further
6 * copyright notes.
7 */
8 /*
9 * Powerpc needs __SANE_USERSPACE_TYPES__ before <linux/types.h> to select
10 * 'int-ll64.h' and avoid compile warnings when printing __u64 with %llu.
11 */
12 #define __SANE_USERSPACE_TYPES__
13
14 #include <byteswap.h>
15 #include <errno.h>
16 #include <inttypes.h>
17 #include <linux/bitops.h>
18 #include <api/fs/fs.h>
19 #include <api/fs/tracing_path.h>
20 #include <linux/hw_breakpoint.h>
21 #include <linux/perf_event.h>
22 #include <linux/compiler.h>
23 #include <linux/err.h>
24 #include <linux/zalloc.h>
25 #include <sys/ioctl.h>
26 #include <sys/resource.h>
27 #include <sys/syscall.h>
28 #include <sys/types.h>
29 #include <dirent.h>
30 #include <stdlib.h>
31 #include <perf/evsel.h>
32 #include "asm/bug.h"
33 #include "bpf_counter.h"
34 #include "callchain.h"
35 #include "cgroup.h"
36 #include "counts.h"
37 #include "event.h"
38 #include "evsel.h"
39 #include "time-utils.h"
40 #include "util/env.h"
41 #include "util/evsel_config.h"
42 #include "util/evsel_fprintf.h"
43 #include "evlist.h"
44 #include <perf/cpumap.h>
45 #include "thread_map.h"
46 #include "target.h"
47 #include "perf_regs.h"
48 #include "record.h"
49 #include "debug.h"
50 #include "trace-event.h"
51 #include "stat.h"
52 #include "string2.h"
53 #include "memswap.h"
54 #include "util.h"
55 #include "util/hashmap.h"
56 #include "off_cpu.h"
57 #include "pmu.h"
58 #include "pmus.h"
59 #include "hwmon_pmu.h"
60 #include "tool_pmu.h"
61 #include "rlimit.h"
62 #include "../perf-sys.h"
63 #include "util/parse-branch-options.h"
64 #include "util/bpf-filter.h"
65 #include "util/hist.h"
66 #include <internal/xyarray.h>
67 #include <internal/lib.h>
68 #include <internal/threadmap.h>
69 #include "util/intel-tpebs.h"
70
71 #include <linux/ctype.h>
72
73 #ifdef HAVE_LIBTRACEEVENT
74 #include <event-parse.h>
75 #endif
76
77 struct perf_missing_features perf_missing_features;
78
79 static clockid_t clockid;
80
evsel__no_extra_init(struct evsel * evsel __maybe_unused)81 static int evsel__no_extra_init(struct evsel *evsel __maybe_unused)
82 {
83 return 0;
84 }
85
test_attr__enabled(void)86 static bool test_attr__enabled(void)
87 {
88 static bool test_attr__enabled;
89 static bool test_attr__enabled_tested;
90
91 if (!test_attr__enabled_tested) {
92 char *dir = getenv("PERF_TEST_ATTR");
93
94 test_attr__enabled = (dir != NULL);
95 test_attr__enabled_tested = true;
96 }
97 return test_attr__enabled;
98 }
99
100 #define __WRITE_ASS(str, fmt, data) \
101 do { \
102 if (fprintf(file, #str "=%"fmt "\n", data) < 0) { \
103 perror("test attr - failed to write event file"); \
104 fclose(file); \
105 return -1; \
106 } \
107 } while (0)
108
109 #define WRITE_ASS(field, fmt) __WRITE_ASS(field, fmt, attr->field)
110
store_event(struct perf_event_attr * attr,pid_t pid,struct perf_cpu cpu,int fd,int group_fd,unsigned long flags)111 static int store_event(struct perf_event_attr *attr, pid_t pid, struct perf_cpu cpu,
112 int fd, int group_fd, unsigned long flags)
113 {
114 FILE *file;
115 char path[PATH_MAX];
116 char *dir = getenv("PERF_TEST_ATTR");
117
118 snprintf(path, PATH_MAX, "%s/event-%d-%llu-%d", dir,
119 attr->type, attr->config, fd);
120
121 file = fopen(path, "w+");
122 if (!file) {
123 perror("test attr - failed to open event file");
124 return -1;
125 }
126
127 if (fprintf(file, "[event-%d-%llu-%d]\n",
128 attr->type, attr->config, fd) < 0) {
129 perror("test attr - failed to write event file");
130 fclose(file);
131 return -1;
132 }
133
134 /* syscall arguments */
135 __WRITE_ASS(fd, "d", fd);
136 __WRITE_ASS(group_fd, "d", group_fd);
137 __WRITE_ASS(cpu, "d", cpu.cpu);
138 __WRITE_ASS(pid, "d", pid);
139 __WRITE_ASS(flags, "lu", flags);
140
141 /* struct perf_event_attr */
142 WRITE_ASS(type, PRIu32);
143 WRITE_ASS(size, PRIu32);
144 WRITE_ASS(config, "llu");
145 WRITE_ASS(sample_period, "llu");
146 WRITE_ASS(sample_type, "llu");
147 WRITE_ASS(read_format, "llu");
148 WRITE_ASS(disabled, "d");
149 WRITE_ASS(inherit, "d");
150 WRITE_ASS(pinned, "d");
151 WRITE_ASS(exclusive, "d");
152 WRITE_ASS(exclude_user, "d");
153 WRITE_ASS(exclude_kernel, "d");
154 WRITE_ASS(exclude_hv, "d");
155 WRITE_ASS(exclude_idle, "d");
156 WRITE_ASS(mmap, "d");
157 WRITE_ASS(comm, "d");
158 WRITE_ASS(freq, "d");
159 WRITE_ASS(inherit_stat, "d");
160 WRITE_ASS(enable_on_exec, "d");
161 WRITE_ASS(task, "d");
162 WRITE_ASS(watermark, "d");
163 WRITE_ASS(precise_ip, "d");
164 WRITE_ASS(mmap_data, "d");
165 WRITE_ASS(sample_id_all, "d");
166 WRITE_ASS(exclude_host, "d");
167 WRITE_ASS(exclude_guest, "d");
168 WRITE_ASS(exclude_callchain_kernel, "d");
169 WRITE_ASS(exclude_callchain_user, "d");
170 WRITE_ASS(mmap2, "d");
171 WRITE_ASS(comm_exec, "d");
172 WRITE_ASS(context_switch, "d");
173 WRITE_ASS(write_backward, "d");
174 WRITE_ASS(namespaces, "d");
175 WRITE_ASS(use_clockid, "d");
176 WRITE_ASS(wakeup_events, PRIu32);
177 WRITE_ASS(bp_type, PRIu32);
178 WRITE_ASS(config1, "llu");
179 WRITE_ASS(config2, "llu");
180 WRITE_ASS(branch_sample_type, "llu");
181 WRITE_ASS(sample_regs_user, "llu");
182 WRITE_ASS(sample_stack_user, PRIu32);
183
184 fclose(file);
185 return 0;
186 }
187
188 #undef __WRITE_ASS
189 #undef WRITE_ASS
190
test_attr__open(struct perf_event_attr * attr,pid_t pid,struct perf_cpu cpu,int fd,int group_fd,unsigned long flags)191 static void test_attr__open(struct perf_event_attr *attr, pid_t pid, struct perf_cpu cpu,
192 int fd, int group_fd, unsigned long flags)
193 {
194 int errno_saved = errno;
195
196 if ((fd != -1) && store_event(attr, pid, cpu, fd, group_fd, flags)) {
197 pr_err("test attr FAILED");
198 exit(128);
199 }
200
201 errno = errno_saved;
202 }
203
evsel__no_extra_fini(struct evsel * evsel __maybe_unused)204 static void evsel__no_extra_fini(struct evsel *evsel __maybe_unused)
205 {
206 }
207
208 static struct {
209 size_t size;
210 int (*init)(struct evsel *evsel);
211 void (*fini)(struct evsel *evsel);
212 } perf_evsel__object = {
213 .size = sizeof(struct evsel),
214 .init = evsel__no_extra_init,
215 .fini = evsel__no_extra_fini,
216 };
217
evsel__object_config(size_t object_size,int (* init)(struct evsel * evsel),void (* fini)(struct evsel * evsel))218 int evsel__object_config(size_t object_size, int (*init)(struct evsel *evsel),
219 void (*fini)(struct evsel *evsel))
220 {
221
222 if (object_size == 0)
223 goto set_methods;
224
225 if (perf_evsel__object.size > object_size)
226 return -EINVAL;
227
228 perf_evsel__object.size = object_size;
229
230 set_methods:
231 if (init != NULL)
232 perf_evsel__object.init = init;
233
234 if (fini != NULL)
235 perf_evsel__object.fini = fini;
236
237 return 0;
238 }
239
evsel__pmu_name(const struct evsel * evsel)240 const char *evsel__pmu_name(const struct evsel *evsel)
241 {
242 struct perf_pmu *pmu = evsel__find_pmu(evsel);
243
244 if (pmu)
245 return pmu->name;
246
247 return event_type(evsel->core.attr.type);
248 }
249
250 #define FD(e, x, y) (*(int *)xyarray__entry(e->core.fd, x, y))
251
__evsel__sample_size(u64 sample_type)252 int __evsel__sample_size(u64 sample_type)
253 {
254 u64 mask = sample_type & PERF_SAMPLE_MASK;
255 int size = 0;
256 int i;
257
258 for (i = 0; i < 64; i++) {
259 if (mask & (1ULL << i))
260 size++;
261 }
262
263 size *= sizeof(u64);
264
265 return size;
266 }
267
268 /**
269 * __perf_evsel__calc_id_pos - calculate id_pos.
270 * @sample_type: sample type
271 *
272 * This function returns the position of the event id (PERF_SAMPLE_ID or
273 * PERF_SAMPLE_IDENTIFIER) in a sample event i.e. in the array of struct
274 * perf_record_sample.
275 */
__perf_evsel__calc_id_pos(u64 sample_type)276 static int __perf_evsel__calc_id_pos(u64 sample_type)
277 {
278 int idx = 0;
279
280 if (sample_type & PERF_SAMPLE_IDENTIFIER)
281 return 0;
282
283 if (!(sample_type & PERF_SAMPLE_ID))
284 return -1;
285
286 if (sample_type & PERF_SAMPLE_IP)
287 idx += 1;
288
289 if (sample_type & PERF_SAMPLE_TID)
290 idx += 1;
291
292 if (sample_type & PERF_SAMPLE_TIME)
293 idx += 1;
294
295 if (sample_type & PERF_SAMPLE_ADDR)
296 idx += 1;
297
298 return idx;
299 }
300
301 /**
302 * __perf_evsel__calc_is_pos - calculate is_pos.
303 * @sample_type: sample type
304 *
305 * This function returns the position (counting backwards) of the event id
306 * (PERF_SAMPLE_ID or PERF_SAMPLE_IDENTIFIER) in a non-sample event i.e. if
307 * sample_id_all is used there is an id sample appended to non-sample events.
308 */
__perf_evsel__calc_is_pos(u64 sample_type)309 static int __perf_evsel__calc_is_pos(u64 sample_type)
310 {
311 int idx = 1;
312
313 if (sample_type & PERF_SAMPLE_IDENTIFIER)
314 return 1;
315
316 if (!(sample_type & PERF_SAMPLE_ID))
317 return -1;
318
319 if (sample_type & PERF_SAMPLE_CPU)
320 idx += 1;
321
322 if (sample_type & PERF_SAMPLE_STREAM_ID)
323 idx += 1;
324
325 return idx;
326 }
327
evsel__calc_id_pos(struct evsel * evsel)328 void evsel__calc_id_pos(struct evsel *evsel)
329 {
330 evsel->id_pos = __perf_evsel__calc_id_pos(evsel->core.attr.sample_type);
331 evsel->is_pos = __perf_evsel__calc_is_pos(evsel->core.attr.sample_type);
332 }
333
__evsel__set_sample_bit(struct evsel * evsel,enum perf_event_sample_format bit)334 void __evsel__set_sample_bit(struct evsel *evsel,
335 enum perf_event_sample_format bit)
336 {
337 if (!(evsel->core.attr.sample_type & bit)) {
338 evsel->core.attr.sample_type |= bit;
339 evsel->sample_size += sizeof(u64);
340 evsel__calc_id_pos(evsel);
341 }
342 }
343
__evsel__reset_sample_bit(struct evsel * evsel,enum perf_event_sample_format bit)344 void __evsel__reset_sample_bit(struct evsel *evsel,
345 enum perf_event_sample_format bit)
346 {
347 if (evsel->core.attr.sample_type & bit) {
348 evsel->core.attr.sample_type &= ~bit;
349 evsel->sample_size -= sizeof(u64);
350 evsel__calc_id_pos(evsel);
351 }
352 }
353
evsel__set_sample_id(struct evsel * evsel,bool can_sample_identifier)354 void evsel__set_sample_id(struct evsel *evsel,
355 bool can_sample_identifier)
356 {
357 if (can_sample_identifier) {
358 evsel__reset_sample_bit(evsel, ID);
359 evsel__set_sample_bit(evsel, IDENTIFIER);
360 } else {
361 evsel__set_sample_bit(evsel, ID);
362 }
363 evsel->core.attr.read_format |= PERF_FORMAT_ID;
364 }
365
366 /**
367 * evsel__is_function_event - Return whether given evsel is a function
368 * trace event
369 *
370 * @evsel - evsel selector to be tested
371 *
372 * Return %true if event is function trace event
373 */
evsel__is_function_event(struct evsel * evsel)374 bool evsel__is_function_event(struct evsel *evsel)
375 {
376 #define FUNCTION_EVENT "ftrace:function"
377
378 return evsel->name &&
379 !strncmp(FUNCTION_EVENT, evsel->name, sizeof(FUNCTION_EVENT));
380
381 #undef FUNCTION_EVENT
382 }
383
evsel__init(struct evsel * evsel,struct perf_event_attr * attr,int idx)384 void evsel__init(struct evsel *evsel,
385 struct perf_event_attr *attr, int idx)
386 {
387 perf_evsel__init(&evsel->core, attr, idx);
388 evsel->tracking = !idx;
389 evsel->unit = strdup("");
390 evsel->scale = 1.0;
391 evsel->max_events = ULONG_MAX;
392 evsel->evlist = NULL;
393 evsel->bpf_obj = NULL;
394 evsel->bpf_fd = -1;
395 INIT_LIST_HEAD(&evsel->config_terms);
396 INIT_LIST_HEAD(&evsel->bpf_counter_list);
397 INIT_LIST_HEAD(&evsel->bpf_filters);
398 perf_evsel__object.init(evsel);
399 evsel->sample_size = __evsel__sample_size(attr->sample_type);
400 evsel__calc_id_pos(evsel);
401 evsel->cmdline_group_boundary = false;
402 evsel->metric_events = NULL;
403 evsel->per_pkg_mask = NULL;
404 evsel->collect_stat = false;
405 evsel->group_pmu_name = NULL;
406 evsel->skippable = false;
407 evsel->alternate_hw_config = PERF_COUNT_HW_MAX;
408 evsel->script_output_type = -1; // FIXME: OUTPUT_TYPE_UNSET, see builtin-script.c
409 }
410
evsel__new_idx(struct perf_event_attr * attr,int idx)411 struct evsel *evsel__new_idx(struct perf_event_attr *attr, int idx)
412 {
413 struct evsel *evsel = zalloc(perf_evsel__object.size);
414
415 if (!evsel)
416 return NULL;
417 evsel__init(evsel, attr, idx);
418
419 if (evsel__is_bpf_output(evsel) && !attr->sample_type) {
420 evsel->core.attr.sample_type = (PERF_SAMPLE_RAW | PERF_SAMPLE_TIME |
421 PERF_SAMPLE_CPU | PERF_SAMPLE_PERIOD),
422 evsel->core.attr.sample_period = 1;
423 }
424
425 if (evsel__is_clock(evsel)) {
426 free((char *)evsel->unit);
427 evsel->unit = strdup("msec");
428 evsel->scale = 1e-6;
429 }
430
431 return evsel;
432 }
433
copy_config_terms(struct list_head * dst,struct list_head * src)434 int copy_config_terms(struct list_head *dst, struct list_head *src)
435 {
436 struct evsel_config_term *pos, *tmp;
437
438 list_for_each_entry(pos, src, list) {
439 tmp = malloc(sizeof(*tmp));
440 if (tmp == NULL)
441 return -ENOMEM;
442
443 *tmp = *pos;
444 if (tmp->free_str) {
445 tmp->val.str = strdup(pos->val.str);
446 if (tmp->val.str == NULL) {
447 free(tmp);
448 return -ENOMEM;
449 }
450 }
451 list_add_tail(&tmp->list, dst);
452 }
453 return 0;
454 }
455
evsel__copy_config_terms(struct evsel * dst,struct evsel * src)456 static int evsel__copy_config_terms(struct evsel *dst, struct evsel *src)
457 {
458 return copy_config_terms(&dst->config_terms, &src->config_terms);
459 }
460
461 /**
462 * evsel__clone - create a new evsel copied from @orig
463 * @orig: original evsel
464 *
465 * The assumption is that @orig is not configured nor opened yet.
466 * So we only care about the attributes that can be set while it's parsed.
467 */
evsel__clone(struct evsel * dest,struct evsel * orig)468 struct evsel *evsel__clone(struct evsel *dest, struct evsel *orig)
469 {
470 struct evsel *evsel;
471
472 BUG_ON(orig->core.fd);
473 BUG_ON(orig->counts);
474 BUG_ON(orig->priv);
475 BUG_ON(orig->per_pkg_mask);
476
477 /* cannot handle BPF objects for now */
478 if (orig->bpf_obj)
479 return NULL;
480
481 if (dest)
482 evsel = dest;
483 else
484 evsel = evsel__new(&orig->core.attr);
485
486 if (evsel == NULL)
487 return NULL;
488
489 evsel->core.cpus = perf_cpu_map__get(orig->core.cpus);
490 evsel->core.own_cpus = perf_cpu_map__get(orig->core.own_cpus);
491 evsel->core.threads = perf_thread_map__get(orig->core.threads);
492 evsel->core.nr_members = orig->core.nr_members;
493 evsel->core.system_wide = orig->core.system_wide;
494 evsel->core.requires_cpu = orig->core.requires_cpu;
495 evsel->core.is_pmu_core = orig->core.is_pmu_core;
496
497 if (orig->name) {
498 evsel->name = strdup(orig->name);
499 if (evsel->name == NULL)
500 goto out_err;
501 }
502 if (orig->group_name) {
503 evsel->group_name = strdup(orig->group_name);
504 if (evsel->group_name == NULL)
505 goto out_err;
506 }
507 if (orig->group_pmu_name) {
508 evsel->group_pmu_name = strdup(orig->group_pmu_name);
509 if (evsel->group_pmu_name == NULL)
510 goto out_err;
511 }
512 if (orig->filter) {
513 evsel->filter = strdup(orig->filter);
514 if (evsel->filter == NULL)
515 goto out_err;
516 }
517 if (orig->metric_id) {
518 evsel->metric_id = strdup(orig->metric_id);
519 if (evsel->metric_id == NULL)
520 goto out_err;
521 }
522 evsel->cgrp = cgroup__get(orig->cgrp);
523 #ifdef HAVE_LIBTRACEEVENT
524 if (orig->tp_sys) {
525 evsel->tp_sys = strdup(orig->tp_sys);
526 if (evsel->tp_sys == NULL)
527 goto out_err;
528 }
529 if (orig->tp_name) {
530 evsel->tp_name = strdup(orig->tp_name);
531 if (evsel->tp_name == NULL)
532 goto out_err;
533 }
534 evsel->tp_format = orig->tp_format;
535 #endif
536 evsel->handler = orig->handler;
537 evsel->core.leader = orig->core.leader;
538
539 evsel->max_events = orig->max_events;
540 zfree(&evsel->unit);
541 if (orig->unit) {
542 evsel->unit = strdup(orig->unit);
543 if (evsel->unit == NULL)
544 goto out_err;
545 }
546 evsel->scale = orig->scale;
547 evsel->snapshot = orig->snapshot;
548 evsel->per_pkg = orig->per_pkg;
549 evsel->percore = orig->percore;
550 evsel->precise_max = orig->precise_max;
551 evsel->is_libpfm_event = orig->is_libpfm_event;
552
553 evsel->exclude_GH = orig->exclude_GH;
554 evsel->sample_read = orig->sample_read;
555 evsel->auto_merge_stats = orig->auto_merge_stats;
556 evsel->collect_stat = orig->collect_stat;
557 evsel->weak_group = orig->weak_group;
558 evsel->use_config_name = orig->use_config_name;
559 evsel->pmu = orig->pmu;
560
561 if (evsel__copy_config_terms(evsel, orig) < 0)
562 goto out_err;
563
564 evsel->alternate_hw_config = orig->alternate_hw_config;
565
566 return evsel;
567
568 out_err:
569 evsel__delete(evsel);
570 return NULL;
571 }
572
trace_event__id(const char * sys,const char * name)573 static int trace_event__id(const char *sys, const char *name)
574 {
575 char *tp_dir = get_events_file(sys);
576 char path[PATH_MAX];
577 int id, err;
578
579 if (!tp_dir)
580 return -1;
581
582 scnprintf(path, PATH_MAX, "%s/%s/id", tp_dir, name);
583 put_events_file(tp_dir);
584 err = filename__read_int(path, &id);
585 if (err)
586 return err;
587
588 return id;
589 }
590
591 /*
592 * Returns pointer with encoded error via <linux/err.h> interface.
593 */
evsel__newtp_idx(const char * sys,const char * name,int idx,bool format)594 struct evsel *evsel__newtp_idx(const char *sys, const char *name, int idx, bool format)
595 {
596 struct perf_event_attr attr = {
597 .type = PERF_TYPE_TRACEPOINT,
598 .sample_type = (PERF_SAMPLE_RAW | PERF_SAMPLE_TIME |
599 PERF_SAMPLE_CPU | PERF_SAMPLE_PERIOD),
600 };
601 struct evsel *evsel = zalloc(perf_evsel__object.size);
602 int err = -ENOMEM, id = -1;
603
604 if (evsel == NULL)
605 goto out_err;
606
607
608 if (asprintf(&evsel->name, "%s:%s", sys, name) < 0)
609 goto out_free;
610
611 #ifdef HAVE_LIBTRACEEVENT
612 evsel->tp_sys = strdup(sys);
613 if (!evsel->tp_sys)
614 goto out_free;
615
616 evsel->tp_name = strdup(name);
617 if (!evsel->tp_name)
618 goto out_free;
619 #endif
620
621 event_attr_init(&attr);
622
623 if (format) {
624 id = trace_event__id(sys, name);
625 if (id < 0) {
626 err = id;
627 goto out_free;
628 }
629 }
630 attr.config = (__u64)id;
631 attr.sample_period = 1;
632 evsel__init(evsel, &attr, idx);
633 return evsel;
634
635 out_free:
636 zfree(&evsel->name);
637 #ifdef HAVE_LIBTRACEEVENT
638 zfree(&evsel->tp_sys);
639 zfree(&evsel->tp_name);
640 #endif
641 free(evsel);
642 out_err:
643 return ERR_PTR(err);
644 }
645
646 #ifdef HAVE_LIBTRACEEVENT
evsel__tp_format(struct evsel * evsel)647 struct tep_event *evsel__tp_format(struct evsel *evsel)
648 {
649 struct tep_event *tp_format = evsel->tp_format;
650
651 if (tp_format)
652 return tp_format;
653
654 if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT)
655 return NULL;
656
657 if (!evsel->tp_sys)
658 tp_format = trace_event__tp_format_id(evsel->core.attr.config);
659 else
660 tp_format = trace_event__tp_format(evsel->tp_sys, evsel->tp_name);
661
662 if (IS_ERR(tp_format)) {
663 int err = -PTR_ERR(evsel->tp_format);
664
665 pr_err("Error getting tracepoint format '%s' '%s'(%d)\n",
666 evsel__name(evsel), strerror(err), err);
667 return NULL;
668 }
669 evsel->tp_format = tp_format;
670 return evsel->tp_format;
671 }
672 #endif
673
674 const char *const evsel__hw_names[PERF_COUNT_HW_MAX] = {
675 "cycles",
676 "instructions",
677 "cache-references",
678 "cache-misses",
679 "branches",
680 "branch-misses",
681 "bus-cycles",
682 "stalled-cycles-frontend",
683 "stalled-cycles-backend",
684 "ref-cycles",
685 };
686
687 char *evsel__bpf_counter_events;
688
evsel__match_bpf_counter_events(const char * name)689 bool evsel__match_bpf_counter_events(const char *name)
690 {
691 int name_len;
692 bool match;
693 char *ptr;
694
695 if (!evsel__bpf_counter_events)
696 return false;
697
698 ptr = strstr(evsel__bpf_counter_events, name);
699 name_len = strlen(name);
700
701 /* check name matches a full token in evsel__bpf_counter_events */
702 match = (ptr != NULL) &&
703 ((ptr == evsel__bpf_counter_events) || (*(ptr - 1) == ',')) &&
704 ((*(ptr + name_len) == ',') || (*(ptr + name_len) == '\0'));
705
706 return match;
707 }
708
__evsel__hw_name(u64 config)709 static const char *__evsel__hw_name(u64 config)
710 {
711 if (config < PERF_COUNT_HW_MAX && evsel__hw_names[config])
712 return evsel__hw_names[config];
713
714 return "unknown-hardware";
715 }
716
evsel__add_modifiers(struct evsel * evsel,char * bf,size_t size)717 static int evsel__add_modifiers(struct evsel *evsel, char *bf, size_t size)
718 {
719 int colon = 0, r = 0;
720 struct perf_event_attr *attr = &evsel->core.attr;
721
722 #define MOD_PRINT(context, mod) do { \
723 if (!attr->exclude_##context) { \
724 if (!colon) colon = ++r; \
725 r += scnprintf(bf + r, size - r, "%c", mod); \
726 } } while(0)
727
728 if (attr->exclude_kernel || attr->exclude_user || attr->exclude_hv) {
729 MOD_PRINT(kernel, 'k');
730 MOD_PRINT(user, 'u');
731 MOD_PRINT(hv, 'h');
732 }
733
734 if (attr->precise_ip) {
735 if (!colon)
736 colon = ++r;
737 r += scnprintf(bf + r, size - r, "%.*s", attr->precise_ip, "ppp");
738 }
739
740 if (attr->exclude_host || attr->exclude_guest) {
741 MOD_PRINT(host, 'H');
742 MOD_PRINT(guest, 'G');
743 }
744 #undef MOD_PRINT
745 if (colon)
746 bf[colon - 1] = ':';
747 return r;
748 }
749
arch_evsel__hw_name(struct evsel * evsel,char * bf,size_t size)750 int __weak arch_evsel__hw_name(struct evsel *evsel, char *bf, size_t size)
751 {
752 return scnprintf(bf, size, "%s", __evsel__hw_name(evsel->core.attr.config));
753 }
754
evsel__hw_name(struct evsel * evsel,char * bf,size_t size)755 static int evsel__hw_name(struct evsel *evsel, char *bf, size_t size)
756 {
757 int r = arch_evsel__hw_name(evsel, bf, size);
758 return r + evsel__add_modifiers(evsel, bf + r, size - r);
759 }
760
761 const char *const evsel__sw_names[PERF_COUNT_SW_MAX] = {
762 "cpu-clock",
763 "task-clock",
764 "page-faults",
765 "context-switches",
766 "cpu-migrations",
767 "minor-faults",
768 "major-faults",
769 "alignment-faults",
770 "emulation-faults",
771 "dummy",
772 };
773
__evsel__sw_name(u64 config)774 static const char *__evsel__sw_name(u64 config)
775 {
776 if (config < PERF_COUNT_SW_MAX && evsel__sw_names[config])
777 return evsel__sw_names[config];
778 return "unknown-software";
779 }
780
evsel__sw_name(struct evsel * evsel,char * bf,size_t size)781 static int evsel__sw_name(struct evsel *evsel, char *bf, size_t size)
782 {
783 int r = scnprintf(bf, size, "%s", __evsel__sw_name(evsel->core.attr.config));
784 return r + evsel__add_modifiers(evsel, bf + r, size - r);
785 }
786
__evsel__bp_name(char * bf,size_t size,u64 addr,u64 type)787 static int __evsel__bp_name(char *bf, size_t size, u64 addr, u64 type)
788 {
789 int r;
790
791 r = scnprintf(bf, size, "mem:0x%" PRIx64 ":", addr);
792
793 if (type & HW_BREAKPOINT_R)
794 r += scnprintf(bf + r, size - r, "r");
795
796 if (type & HW_BREAKPOINT_W)
797 r += scnprintf(bf + r, size - r, "w");
798
799 if (type & HW_BREAKPOINT_X)
800 r += scnprintf(bf + r, size - r, "x");
801
802 return r;
803 }
804
evsel__bp_name(struct evsel * evsel,char * bf,size_t size)805 static int evsel__bp_name(struct evsel *evsel, char *bf, size_t size)
806 {
807 struct perf_event_attr *attr = &evsel->core.attr;
808 int r = __evsel__bp_name(bf, size, attr->bp_addr, attr->bp_type);
809 return r + evsel__add_modifiers(evsel, bf + r, size - r);
810 }
811
812 const char *const evsel__hw_cache[PERF_COUNT_HW_CACHE_MAX][EVSEL__MAX_ALIASES] = {
813 { "L1-dcache", "l1-d", "l1d", "L1-data", },
814 { "L1-icache", "l1-i", "l1i", "L1-instruction", },
815 { "LLC", "L2", },
816 { "dTLB", "d-tlb", "Data-TLB", },
817 { "iTLB", "i-tlb", "Instruction-TLB", },
818 { "branch", "branches", "bpu", "btb", "bpc", },
819 { "node", },
820 };
821
822 const char *const evsel__hw_cache_op[PERF_COUNT_HW_CACHE_OP_MAX][EVSEL__MAX_ALIASES] = {
823 { "load", "loads", "read", },
824 { "store", "stores", "write", },
825 { "prefetch", "prefetches", "speculative-read", "speculative-load", },
826 };
827
828 const char *const evsel__hw_cache_result[PERF_COUNT_HW_CACHE_RESULT_MAX][EVSEL__MAX_ALIASES] = {
829 { "refs", "Reference", "ops", "access", },
830 { "misses", "miss", },
831 };
832
833 #define C(x) PERF_COUNT_HW_CACHE_##x
834 #define CACHE_READ (1 << C(OP_READ))
835 #define CACHE_WRITE (1 << C(OP_WRITE))
836 #define CACHE_PREFETCH (1 << C(OP_PREFETCH))
837 #define COP(x) (1 << x)
838
839 /*
840 * cache operation stat
841 * L1I : Read and prefetch only
842 * ITLB and BPU : Read-only
843 */
844 static const unsigned long evsel__hw_cache_stat[C(MAX)] = {
845 [C(L1D)] = (CACHE_READ | CACHE_WRITE | CACHE_PREFETCH),
846 [C(L1I)] = (CACHE_READ | CACHE_PREFETCH),
847 [C(LL)] = (CACHE_READ | CACHE_WRITE | CACHE_PREFETCH),
848 [C(DTLB)] = (CACHE_READ | CACHE_WRITE | CACHE_PREFETCH),
849 [C(ITLB)] = (CACHE_READ),
850 [C(BPU)] = (CACHE_READ),
851 [C(NODE)] = (CACHE_READ | CACHE_WRITE | CACHE_PREFETCH),
852 };
853
evsel__is_cache_op_valid(u8 type,u8 op)854 bool evsel__is_cache_op_valid(u8 type, u8 op)
855 {
856 if (evsel__hw_cache_stat[type] & COP(op))
857 return true; /* valid */
858 else
859 return false; /* invalid */
860 }
861
__evsel__hw_cache_type_op_res_name(u8 type,u8 op,u8 result,char * bf,size_t size)862 int __evsel__hw_cache_type_op_res_name(u8 type, u8 op, u8 result, char *bf, size_t size)
863 {
864 if (result) {
865 return scnprintf(bf, size, "%s-%s-%s", evsel__hw_cache[type][0],
866 evsel__hw_cache_op[op][0],
867 evsel__hw_cache_result[result][0]);
868 }
869
870 return scnprintf(bf, size, "%s-%s", evsel__hw_cache[type][0],
871 evsel__hw_cache_op[op][1]);
872 }
873
__evsel__hw_cache_name(u64 config,char * bf,size_t size)874 static int __evsel__hw_cache_name(u64 config, char *bf, size_t size)
875 {
876 u8 op, result, type = (config >> 0) & 0xff;
877 const char *err = "unknown-ext-hardware-cache-type";
878
879 if (type >= PERF_COUNT_HW_CACHE_MAX)
880 goto out_err;
881
882 op = (config >> 8) & 0xff;
883 err = "unknown-ext-hardware-cache-op";
884 if (op >= PERF_COUNT_HW_CACHE_OP_MAX)
885 goto out_err;
886
887 result = (config >> 16) & 0xff;
888 err = "unknown-ext-hardware-cache-result";
889 if (result >= PERF_COUNT_HW_CACHE_RESULT_MAX)
890 goto out_err;
891
892 err = "invalid-cache";
893 if (!evsel__is_cache_op_valid(type, op))
894 goto out_err;
895
896 return __evsel__hw_cache_type_op_res_name(type, op, result, bf, size);
897 out_err:
898 return scnprintf(bf, size, "%s", err);
899 }
900
evsel__hw_cache_name(struct evsel * evsel,char * bf,size_t size)901 static int evsel__hw_cache_name(struct evsel *evsel, char *bf, size_t size)
902 {
903 int ret = __evsel__hw_cache_name(evsel->core.attr.config, bf, size);
904 return ret + evsel__add_modifiers(evsel, bf + ret, size - ret);
905 }
906
evsel__raw_name(struct evsel * evsel,char * bf,size_t size)907 static int evsel__raw_name(struct evsel *evsel, char *bf, size_t size)
908 {
909 int ret = scnprintf(bf, size, "raw 0x%" PRIx64, evsel->core.attr.config);
910 return ret + evsel__add_modifiers(evsel, bf + ret, size - ret);
911 }
912
evsel__name(struct evsel * evsel)913 const char *evsel__name(struct evsel *evsel)
914 {
915 char bf[128];
916
917 if (!evsel)
918 goto out_unknown;
919
920 if (evsel->name)
921 return evsel->name;
922
923 switch (evsel->core.attr.type) {
924 case PERF_TYPE_RAW:
925 evsel__raw_name(evsel, bf, sizeof(bf));
926 break;
927
928 case PERF_TYPE_HARDWARE:
929 evsel__hw_name(evsel, bf, sizeof(bf));
930 break;
931
932 case PERF_TYPE_HW_CACHE:
933 evsel__hw_cache_name(evsel, bf, sizeof(bf));
934 break;
935
936 case PERF_TYPE_SOFTWARE:
937 evsel__sw_name(evsel, bf, sizeof(bf));
938 break;
939
940 case PERF_TYPE_TRACEPOINT:
941 scnprintf(bf, sizeof(bf), "%s", "unknown tracepoint");
942 break;
943
944 case PERF_TYPE_BREAKPOINT:
945 evsel__bp_name(evsel, bf, sizeof(bf));
946 break;
947
948 case PERF_PMU_TYPE_TOOL:
949 scnprintf(bf, sizeof(bf), "%s", evsel__tool_pmu_event_name(evsel));
950 break;
951
952 default:
953 scnprintf(bf, sizeof(bf), "unknown attr type: %d",
954 evsel->core.attr.type);
955 break;
956 }
957
958 evsel->name = strdup(bf);
959
960 if (evsel->name)
961 return evsel->name;
962 out_unknown:
963 return "unknown";
964 }
965
evsel__name_is(struct evsel * evsel,const char * name)966 bool evsel__name_is(struct evsel *evsel, const char *name)
967 {
968 return !strcmp(evsel__name(evsel), name);
969 }
970
evsel__metric_id(const struct evsel * evsel)971 const char *evsel__metric_id(const struct evsel *evsel)
972 {
973 if (evsel->metric_id)
974 return evsel->metric_id;
975
976 if (evsel__is_tool(evsel))
977 return evsel__tool_pmu_event_name(evsel);
978
979 return "unknown";
980 }
981
evsel__group_name(struct evsel * evsel)982 const char *evsel__group_name(struct evsel *evsel)
983 {
984 return evsel->group_name ?: "anon group";
985 }
986
987 /*
988 * Returns the group details for the specified leader,
989 * with following rules.
990 *
991 * For record -e '{cycles,instructions}'
992 * 'anon group { cycles:u, instructions:u }'
993 *
994 * For record -e 'cycles,instructions' and report --group
995 * 'cycles:u, instructions:u'
996 */
evsel__group_desc(struct evsel * evsel,char * buf,size_t size)997 int evsel__group_desc(struct evsel *evsel, char *buf, size_t size)
998 {
999 int ret = 0;
1000 bool first = true;
1001 struct evsel *pos;
1002 const char *group_name = evsel__group_name(evsel);
1003
1004 if (!evsel->forced_leader)
1005 ret = scnprintf(buf, size, "%s { ", group_name);
1006
1007 for_each_group_evsel(pos, evsel) {
1008 if (symbol_conf.skip_empty &&
1009 evsel__hists(pos)->stats.nr_samples == 0)
1010 continue;
1011
1012 ret += scnprintf(buf + ret, size - ret, "%s%s",
1013 first ? "" : ", ", evsel__name(pos));
1014 first = false;
1015 }
1016
1017 if (!evsel->forced_leader)
1018 ret += scnprintf(buf + ret, size - ret, " }");
1019
1020 return ret;
1021 }
1022
__evsel__config_callchain(struct evsel * evsel,struct record_opts * opts,struct callchain_param * param)1023 static void __evsel__config_callchain(struct evsel *evsel, struct record_opts *opts,
1024 struct callchain_param *param)
1025 {
1026 bool function = evsel__is_function_event(evsel);
1027 struct perf_event_attr *attr = &evsel->core.attr;
1028
1029 evsel__set_sample_bit(evsel, CALLCHAIN);
1030
1031 attr->sample_max_stack = param->max_stack;
1032
1033 if (opts->kernel_callchains)
1034 attr->exclude_callchain_user = 1;
1035 if (opts->user_callchains)
1036 attr->exclude_callchain_kernel = 1;
1037 if (param->record_mode == CALLCHAIN_LBR) {
1038 if (!opts->branch_stack) {
1039 if (attr->exclude_user) {
1040 pr_warning("LBR callstack option is only available "
1041 "to get user callchain information. "
1042 "Falling back to framepointers.\n");
1043 } else {
1044 evsel__set_sample_bit(evsel, BRANCH_STACK);
1045 attr->branch_sample_type = PERF_SAMPLE_BRANCH_USER |
1046 PERF_SAMPLE_BRANCH_CALL_STACK |
1047 PERF_SAMPLE_BRANCH_NO_CYCLES |
1048 PERF_SAMPLE_BRANCH_NO_FLAGS |
1049 PERF_SAMPLE_BRANCH_HW_INDEX;
1050 }
1051 } else
1052 pr_warning("Cannot use LBR callstack with branch stack. "
1053 "Falling back to framepointers.\n");
1054 }
1055
1056 if (param->record_mode == CALLCHAIN_DWARF) {
1057 if (!function) {
1058 const char *arch = perf_env__arch(evsel__env(evsel));
1059
1060 evsel__set_sample_bit(evsel, REGS_USER);
1061 evsel__set_sample_bit(evsel, STACK_USER);
1062 if (opts->sample_user_regs &&
1063 DWARF_MINIMAL_REGS(arch) != arch__user_reg_mask()) {
1064 attr->sample_regs_user |= DWARF_MINIMAL_REGS(arch);
1065 pr_warning("WARNING: The use of --call-graph=dwarf may require all the user registers, "
1066 "specifying a subset with --user-regs may render DWARF unwinding unreliable, "
1067 "so the minimal registers set (IP, SP) is explicitly forced.\n");
1068 } else {
1069 attr->sample_regs_user |= arch__user_reg_mask();
1070 }
1071 attr->sample_stack_user = param->dump_size;
1072 attr->exclude_callchain_user = 1;
1073 } else {
1074 pr_info("Cannot use DWARF unwind for function trace event,"
1075 " falling back to framepointers.\n");
1076 }
1077 }
1078
1079 if (function) {
1080 pr_info("Disabling user space callchains for function trace event.\n");
1081 attr->exclude_callchain_user = 1;
1082 }
1083 }
1084
evsel__config_callchain(struct evsel * evsel,struct record_opts * opts,struct callchain_param * param)1085 void evsel__config_callchain(struct evsel *evsel, struct record_opts *opts,
1086 struct callchain_param *param)
1087 {
1088 if (param->enabled)
1089 return __evsel__config_callchain(evsel, opts, param);
1090 }
1091
evsel__reset_callgraph(struct evsel * evsel,struct callchain_param * param)1092 static void evsel__reset_callgraph(struct evsel *evsel, struct callchain_param *param)
1093 {
1094 struct perf_event_attr *attr = &evsel->core.attr;
1095
1096 evsel__reset_sample_bit(evsel, CALLCHAIN);
1097 if (param->record_mode == CALLCHAIN_LBR) {
1098 evsel__reset_sample_bit(evsel, BRANCH_STACK);
1099 attr->branch_sample_type &= ~(PERF_SAMPLE_BRANCH_USER |
1100 PERF_SAMPLE_BRANCH_CALL_STACK |
1101 PERF_SAMPLE_BRANCH_HW_INDEX);
1102 }
1103 if (param->record_mode == CALLCHAIN_DWARF) {
1104 evsel__reset_sample_bit(evsel, REGS_USER);
1105 evsel__reset_sample_bit(evsel, STACK_USER);
1106 }
1107 }
1108
evsel__apply_config_terms(struct evsel * evsel,struct record_opts * opts,bool track)1109 static void evsel__apply_config_terms(struct evsel *evsel,
1110 struct record_opts *opts, bool track)
1111 {
1112 struct evsel_config_term *term;
1113 struct list_head *config_terms = &evsel->config_terms;
1114 struct perf_event_attr *attr = &evsel->core.attr;
1115 /* callgraph default */
1116 struct callchain_param param = {
1117 .record_mode = callchain_param.record_mode,
1118 };
1119 u32 dump_size = 0;
1120 int max_stack = 0;
1121 const char *callgraph_buf = NULL;
1122
1123 list_for_each_entry(term, config_terms, list) {
1124 switch (term->type) {
1125 case EVSEL__CONFIG_TERM_PERIOD:
1126 if (!(term->weak && opts->user_interval != ULLONG_MAX)) {
1127 attr->sample_period = term->val.period;
1128 attr->freq = 0;
1129 evsel__reset_sample_bit(evsel, PERIOD);
1130 }
1131 break;
1132 case EVSEL__CONFIG_TERM_FREQ:
1133 if (!(term->weak && opts->user_freq != UINT_MAX)) {
1134 attr->sample_freq = term->val.freq;
1135 attr->freq = 1;
1136 evsel__set_sample_bit(evsel, PERIOD);
1137 }
1138 break;
1139 case EVSEL__CONFIG_TERM_TIME:
1140 if (term->val.time)
1141 evsel__set_sample_bit(evsel, TIME);
1142 else
1143 evsel__reset_sample_bit(evsel, TIME);
1144 break;
1145 case EVSEL__CONFIG_TERM_CALLGRAPH:
1146 callgraph_buf = term->val.str;
1147 break;
1148 case EVSEL__CONFIG_TERM_BRANCH:
1149 if (term->val.str && strcmp(term->val.str, "no")) {
1150 evsel__set_sample_bit(evsel, BRANCH_STACK);
1151 parse_branch_str(term->val.str,
1152 &attr->branch_sample_type);
1153 } else
1154 evsel__reset_sample_bit(evsel, BRANCH_STACK);
1155 break;
1156 case EVSEL__CONFIG_TERM_STACK_USER:
1157 dump_size = term->val.stack_user;
1158 break;
1159 case EVSEL__CONFIG_TERM_MAX_STACK:
1160 max_stack = term->val.max_stack;
1161 break;
1162 case EVSEL__CONFIG_TERM_MAX_EVENTS:
1163 evsel->max_events = term->val.max_events;
1164 break;
1165 case EVSEL__CONFIG_TERM_INHERIT:
1166 /*
1167 * attr->inherit should has already been set by
1168 * evsel__config. If user explicitly set
1169 * inherit using config terms, override global
1170 * opt->no_inherit setting.
1171 */
1172 attr->inherit = term->val.inherit ? 1 : 0;
1173 break;
1174 case EVSEL__CONFIG_TERM_OVERWRITE:
1175 attr->write_backward = term->val.overwrite ? 1 : 0;
1176 break;
1177 case EVSEL__CONFIG_TERM_DRV_CFG:
1178 break;
1179 case EVSEL__CONFIG_TERM_PERCORE:
1180 break;
1181 case EVSEL__CONFIG_TERM_AUX_OUTPUT:
1182 attr->aux_output = term->val.aux_output ? 1 : 0;
1183 break;
1184 case EVSEL__CONFIG_TERM_AUX_ACTION:
1185 /* Already applied by auxtrace */
1186 break;
1187 case EVSEL__CONFIG_TERM_AUX_SAMPLE_SIZE:
1188 /* Already applied by auxtrace */
1189 break;
1190 case EVSEL__CONFIG_TERM_CFG_CHG:
1191 break;
1192 default:
1193 break;
1194 }
1195 }
1196
1197 /* User explicitly set per-event callgraph, clear the old setting and reset. */
1198 if ((callgraph_buf != NULL) || (dump_size > 0) || max_stack) {
1199 bool sample_address = false;
1200
1201 if (max_stack) {
1202 param.max_stack = max_stack;
1203 if (callgraph_buf == NULL)
1204 callgraph_buf = "fp";
1205 }
1206
1207 /* parse callgraph parameters */
1208 if (callgraph_buf != NULL) {
1209 if (!strcmp(callgraph_buf, "no")) {
1210 param.enabled = false;
1211 param.record_mode = CALLCHAIN_NONE;
1212 } else {
1213 param.enabled = true;
1214 if (parse_callchain_record(callgraph_buf, ¶m)) {
1215 pr_err("per-event callgraph setting for %s failed. "
1216 "Apply callgraph global setting for it\n",
1217 evsel->name);
1218 return;
1219 }
1220 if (param.record_mode == CALLCHAIN_DWARF)
1221 sample_address = true;
1222 }
1223 }
1224 if (dump_size > 0) {
1225 dump_size = round_up(dump_size, sizeof(u64));
1226 param.dump_size = dump_size;
1227 }
1228
1229 /* If global callgraph set, clear it */
1230 if (callchain_param.enabled)
1231 evsel__reset_callgraph(evsel, &callchain_param);
1232
1233 /* set perf-event callgraph */
1234 if (param.enabled) {
1235 if (sample_address) {
1236 evsel__set_sample_bit(evsel, ADDR);
1237 evsel__set_sample_bit(evsel, DATA_SRC);
1238 evsel->core.attr.mmap_data = track;
1239 }
1240 evsel__config_callchain(evsel, opts, ¶m);
1241 }
1242 }
1243 }
1244
__evsel__get_config_term(struct evsel * evsel,enum evsel_term_type type)1245 struct evsel_config_term *__evsel__get_config_term(struct evsel *evsel, enum evsel_term_type type)
1246 {
1247 struct evsel_config_term *term, *found_term = NULL;
1248
1249 list_for_each_entry(term, &evsel->config_terms, list) {
1250 if (term->type == type)
1251 found_term = term;
1252 }
1253
1254 return found_term;
1255 }
1256
arch_evsel__set_sample_weight(struct evsel * evsel)1257 void __weak arch_evsel__set_sample_weight(struct evsel *evsel)
1258 {
1259 evsel__set_sample_bit(evsel, WEIGHT);
1260 }
1261
arch__post_evsel_config(struct evsel * evsel __maybe_unused,struct perf_event_attr * attr __maybe_unused)1262 void __weak arch__post_evsel_config(struct evsel *evsel __maybe_unused,
1263 struct perf_event_attr *attr __maybe_unused)
1264 {
1265 }
1266
evsel__set_default_freq_period(struct record_opts * opts,struct perf_event_attr * attr)1267 static void evsel__set_default_freq_period(struct record_opts *opts,
1268 struct perf_event_attr *attr)
1269 {
1270 if (opts->freq) {
1271 attr->freq = 1;
1272 attr->sample_freq = opts->freq;
1273 } else {
1274 attr->sample_period = opts->default_interval;
1275 }
1276 }
1277
evsel__is_offcpu_event(struct evsel * evsel)1278 static bool evsel__is_offcpu_event(struct evsel *evsel)
1279 {
1280 return evsel__is_bpf_output(evsel) && evsel__name_is(evsel, OFFCPU_EVENT);
1281 }
1282
1283 /*
1284 * The enable_on_exec/disabled value strategy:
1285 *
1286 * 1) For any type of traced program:
1287 * - all independent events and group leaders are disabled
1288 * - all group members are enabled
1289 *
1290 * Group members are ruled by group leaders. They need to
1291 * be enabled, because the group scheduling relies on that.
1292 *
1293 * 2) For traced programs executed by perf:
1294 * - all independent events and group leaders have
1295 * enable_on_exec set
1296 * - we don't specifically enable or disable any event during
1297 * the record command
1298 *
1299 * Independent events and group leaders are initially disabled
1300 * and get enabled by exec. Group members are ruled by group
1301 * leaders as stated in 1).
1302 *
1303 * 3) For traced programs attached by perf (pid/tid):
1304 * - we specifically enable or disable all events during
1305 * the record command
1306 *
1307 * When attaching events to already running traced we
1308 * enable/disable events specifically, as there's no
1309 * initial traced exec call.
1310 */
evsel__config(struct evsel * evsel,struct record_opts * opts,struct callchain_param * callchain)1311 void evsel__config(struct evsel *evsel, struct record_opts *opts,
1312 struct callchain_param *callchain)
1313 {
1314 struct evsel *leader = evsel__leader(evsel);
1315 struct perf_event_attr *attr = &evsel->core.attr;
1316 int track = evsel->tracking;
1317 bool per_cpu = opts->target.default_per_cpu && !opts->target.per_thread;
1318
1319 attr->sample_id_all = perf_missing_features.sample_id_all ? 0 : 1;
1320 attr->inherit = target__has_cpu(&opts->target) ? 0 : !opts->no_inherit;
1321 attr->write_backward = opts->overwrite ? 1 : 0;
1322 attr->read_format = PERF_FORMAT_LOST;
1323
1324 evsel__set_sample_bit(evsel, IP);
1325 evsel__set_sample_bit(evsel, TID);
1326
1327 if (evsel->sample_read) {
1328 evsel__set_sample_bit(evsel, READ);
1329
1330 /*
1331 * We need ID even in case of single event, because
1332 * PERF_SAMPLE_READ process ID specific data.
1333 */
1334 evsel__set_sample_id(evsel, false);
1335
1336 /*
1337 * Apply group format only if we belong to group
1338 * with more than one members.
1339 */
1340 if (leader->core.nr_members > 1) {
1341 attr->read_format |= PERF_FORMAT_GROUP;
1342 }
1343
1344 /*
1345 * Inherit + SAMPLE_READ requires SAMPLE_TID in the read_format
1346 */
1347 if (attr->inherit) {
1348 evsel__set_sample_bit(evsel, TID);
1349 evsel->core.attr.read_format |=
1350 PERF_FORMAT_ID;
1351 }
1352 }
1353
1354 /*
1355 * We default some events to have a default interval. But keep
1356 * it a weak assumption overridable by the user.
1357 */
1358 if ((evsel->is_libpfm_event && !attr->sample_period) ||
1359 (!evsel->is_libpfm_event && (!attr->sample_period ||
1360 opts->user_freq != UINT_MAX ||
1361 opts->user_interval != ULLONG_MAX)))
1362 evsel__set_default_freq_period(opts, attr);
1363
1364 /*
1365 * If attr->freq was set (here or earlier), ask for period
1366 * to be sampled.
1367 */
1368 if (attr->freq)
1369 evsel__set_sample_bit(evsel, PERIOD);
1370
1371 if (opts->no_samples)
1372 attr->sample_freq = 0;
1373
1374 if (opts->inherit_stat) {
1375 evsel->core.attr.read_format |=
1376 PERF_FORMAT_TOTAL_TIME_ENABLED |
1377 PERF_FORMAT_TOTAL_TIME_RUNNING |
1378 PERF_FORMAT_ID;
1379 attr->inherit_stat = 1;
1380 }
1381
1382 if (opts->sample_address) {
1383 evsel__set_sample_bit(evsel, ADDR);
1384 attr->mmap_data = track;
1385 }
1386
1387 /*
1388 * We don't allow user space callchains for function trace
1389 * event, due to issues with page faults while tracing page
1390 * fault handler and its overall trickiness nature.
1391 */
1392 if (evsel__is_function_event(evsel))
1393 evsel->core.attr.exclude_callchain_user = 1;
1394
1395 if (callchain && callchain->enabled && !evsel->no_aux_samples)
1396 evsel__config_callchain(evsel, opts, callchain);
1397
1398 if (opts->sample_intr_regs && !evsel->no_aux_samples &&
1399 !evsel__is_dummy_event(evsel)) {
1400 attr->sample_regs_intr = opts->sample_intr_regs;
1401 evsel__set_sample_bit(evsel, REGS_INTR);
1402 }
1403
1404 if (opts->sample_user_regs && !evsel->no_aux_samples &&
1405 !evsel__is_dummy_event(evsel)) {
1406 attr->sample_regs_user |= opts->sample_user_regs;
1407 evsel__set_sample_bit(evsel, REGS_USER);
1408 }
1409
1410 if (target__has_cpu(&opts->target) || opts->sample_cpu)
1411 evsel__set_sample_bit(evsel, CPU);
1412
1413 /*
1414 * When the user explicitly disabled time don't force it here.
1415 */
1416 if (opts->sample_time &&
1417 (!perf_missing_features.sample_id_all &&
1418 (!opts->no_inherit || target__has_cpu(&opts->target) || per_cpu ||
1419 opts->sample_time_set)))
1420 evsel__set_sample_bit(evsel, TIME);
1421
1422 if (opts->raw_samples && !evsel->no_aux_samples) {
1423 evsel__set_sample_bit(evsel, TIME);
1424 evsel__set_sample_bit(evsel, RAW);
1425 evsel__set_sample_bit(evsel, CPU);
1426 }
1427
1428 if (opts->sample_address)
1429 evsel__set_sample_bit(evsel, DATA_SRC);
1430
1431 if (opts->sample_phys_addr)
1432 evsel__set_sample_bit(evsel, PHYS_ADDR);
1433
1434 if (opts->no_buffering) {
1435 attr->watermark = 0;
1436 attr->wakeup_events = 1;
1437 }
1438 if (opts->branch_stack && !evsel->no_aux_samples) {
1439 evsel__set_sample_bit(evsel, BRANCH_STACK);
1440 attr->branch_sample_type = opts->branch_stack;
1441 }
1442
1443 if (opts->sample_weight)
1444 arch_evsel__set_sample_weight(evsel);
1445
1446 attr->task = track;
1447 attr->mmap = track;
1448 attr->mmap2 = track && !perf_missing_features.mmap2;
1449 attr->comm = track;
1450 attr->build_id = track && opts->build_id;
1451
1452 /*
1453 * ksymbol is tracked separately with text poke because it needs to be
1454 * system wide and enabled immediately.
1455 */
1456 if (!opts->text_poke)
1457 attr->ksymbol = track && !perf_missing_features.ksymbol;
1458 attr->bpf_event = track && !opts->no_bpf_event && !perf_missing_features.bpf;
1459
1460 if (opts->record_namespaces)
1461 attr->namespaces = track;
1462
1463 if (opts->record_cgroup) {
1464 attr->cgroup = track && !perf_missing_features.cgroup;
1465 evsel__set_sample_bit(evsel, CGROUP);
1466 }
1467
1468 if (opts->sample_data_page_size)
1469 evsel__set_sample_bit(evsel, DATA_PAGE_SIZE);
1470
1471 if (opts->sample_code_page_size)
1472 evsel__set_sample_bit(evsel, CODE_PAGE_SIZE);
1473
1474 if (opts->record_switch_events)
1475 attr->context_switch = track;
1476
1477 if (opts->sample_transaction)
1478 evsel__set_sample_bit(evsel, TRANSACTION);
1479
1480 if (opts->running_time) {
1481 evsel->core.attr.read_format |=
1482 PERF_FORMAT_TOTAL_TIME_ENABLED |
1483 PERF_FORMAT_TOTAL_TIME_RUNNING;
1484 }
1485
1486 /*
1487 * XXX see the function comment above
1488 *
1489 * Disabling only independent events or group leaders,
1490 * keeping group members enabled.
1491 */
1492 if (evsel__is_group_leader(evsel))
1493 attr->disabled = 1;
1494
1495 /*
1496 * Setting enable_on_exec for independent events and
1497 * group leaders for traced executed by perf.
1498 */
1499 if (target__none(&opts->target) && evsel__is_group_leader(evsel) &&
1500 !opts->target.initial_delay)
1501 attr->enable_on_exec = 1;
1502
1503 if (evsel->immediate) {
1504 attr->disabled = 0;
1505 attr->enable_on_exec = 0;
1506 }
1507
1508 clockid = opts->clockid;
1509 if (opts->use_clockid) {
1510 attr->use_clockid = 1;
1511 attr->clockid = opts->clockid;
1512 }
1513
1514 if (evsel->precise_max)
1515 attr->precise_ip = 3;
1516
1517 if (opts->all_user) {
1518 attr->exclude_kernel = 1;
1519 attr->exclude_user = 0;
1520 }
1521
1522 if (opts->all_kernel) {
1523 attr->exclude_kernel = 0;
1524 attr->exclude_user = 1;
1525 }
1526
1527 if (evsel->core.own_cpus || evsel->unit)
1528 evsel->core.attr.read_format |= PERF_FORMAT_ID;
1529
1530 /*
1531 * Apply event specific term settings,
1532 * it overloads any global configuration.
1533 */
1534 evsel__apply_config_terms(evsel, opts, track);
1535
1536 evsel->ignore_missing_thread = opts->ignore_missing_thread;
1537
1538 /* The --period option takes the precedence. */
1539 if (opts->period_set) {
1540 if (opts->period)
1541 evsel__set_sample_bit(evsel, PERIOD);
1542 else
1543 evsel__reset_sample_bit(evsel, PERIOD);
1544 }
1545
1546 /*
1547 * A dummy event never triggers any actual counter and therefore
1548 * cannot be used with branch_stack.
1549 *
1550 * For initial_delay, a dummy event is added implicitly.
1551 * The software event will trigger -EOPNOTSUPP error out,
1552 * if BRANCH_STACK bit is set.
1553 */
1554 if (evsel__is_dummy_event(evsel))
1555 evsel__reset_sample_bit(evsel, BRANCH_STACK);
1556
1557 if (evsel__is_offcpu_event(evsel))
1558 evsel->core.attr.sample_type &= OFFCPU_SAMPLE_TYPES;
1559
1560 arch__post_evsel_config(evsel, attr);
1561 }
1562
evsel__set_filter(struct evsel * evsel,const char * filter)1563 int evsel__set_filter(struct evsel *evsel, const char *filter)
1564 {
1565 char *new_filter = strdup(filter);
1566
1567 if (new_filter != NULL) {
1568 free(evsel->filter);
1569 evsel->filter = new_filter;
1570 return 0;
1571 }
1572
1573 return -1;
1574 }
1575
evsel__append_filter(struct evsel * evsel,const char * fmt,const char * filter)1576 static int evsel__append_filter(struct evsel *evsel, const char *fmt, const char *filter)
1577 {
1578 char *new_filter;
1579
1580 if (evsel->filter == NULL)
1581 return evsel__set_filter(evsel, filter);
1582
1583 if (asprintf(&new_filter, fmt, evsel->filter, filter) > 0) {
1584 free(evsel->filter);
1585 evsel->filter = new_filter;
1586 return 0;
1587 }
1588
1589 return -1;
1590 }
1591
evsel__append_tp_filter(struct evsel * evsel,const char * filter)1592 int evsel__append_tp_filter(struct evsel *evsel, const char *filter)
1593 {
1594 return evsel__append_filter(evsel, "(%s) && (%s)", filter);
1595 }
1596
evsel__append_addr_filter(struct evsel * evsel,const char * filter)1597 int evsel__append_addr_filter(struct evsel *evsel, const char *filter)
1598 {
1599 return evsel__append_filter(evsel, "%s,%s", filter);
1600 }
1601
1602 /* Caller has to clear disabled after going through all CPUs. */
evsel__enable_cpu(struct evsel * evsel,int cpu_map_idx)1603 int evsel__enable_cpu(struct evsel *evsel, int cpu_map_idx)
1604 {
1605 return perf_evsel__enable_cpu(&evsel->core, cpu_map_idx);
1606 }
1607
evsel__enable(struct evsel * evsel)1608 int evsel__enable(struct evsel *evsel)
1609 {
1610 int err = perf_evsel__enable(&evsel->core);
1611
1612 if (!err)
1613 evsel->disabled = false;
1614 return err;
1615 }
1616
1617 /* Caller has to set disabled after going through all CPUs. */
evsel__disable_cpu(struct evsel * evsel,int cpu_map_idx)1618 int evsel__disable_cpu(struct evsel *evsel, int cpu_map_idx)
1619 {
1620 return perf_evsel__disable_cpu(&evsel->core, cpu_map_idx);
1621 }
1622
evsel__disable(struct evsel * evsel)1623 int evsel__disable(struct evsel *evsel)
1624 {
1625 int err = perf_evsel__disable(&evsel->core);
1626 /*
1627 * We mark it disabled here so that tools that disable a event can
1628 * ignore events after they disable it. I.e. the ring buffer may have
1629 * already a few more events queued up before the kernel got the stop
1630 * request.
1631 */
1632 if (!err)
1633 evsel->disabled = true;
1634
1635 return err;
1636 }
1637
free_config_terms(struct list_head * config_terms)1638 void free_config_terms(struct list_head *config_terms)
1639 {
1640 struct evsel_config_term *term, *h;
1641
1642 list_for_each_entry_safe(term, h, config_terms, list) {
1643 list_del_init(&term->list);
1644 if (term->free_str)
1645 zfree(&term->val.str);
1646 free(term);
1647 }
1648 }
1649
evsel__free_config_terms(struct evsel * evsel)1650 static void evsel__free_config_terms(struct evsel *evsel)
1651 {
1652 free_config_terms(&evsel->config_terms);
1653 }
1654
evsel__exit(struct evsel * evsel)1655 void evsel__exit(struct evsel *evsel)
1656 {
1657 assert(list_empty(&evsel->core.node));
1658 assert(evsel->evlist == NULL);
1659 bpf_counter__destroy(evsel);
1660 perf_bpf_filter__destroy(evsel);
1661 evsel__free_counts(evsel);
1662 perf_evsel__free_fd(&evsel->core);
1663 perf_evsel__free_id(&evsel->core);
1664 evsel__free_config_terms(evsel);
1665 cgroup__put(evsel->cgrp);
1666 perf_cpu_map__put(evsel->core.cpus);
1667 perf_cpu_map__put(evsel->core.own_cpus);
1668 perf_thread_map__put(evsel->core.threads);
1669 zfree(&evsel->group_name);
1670 zfree(&evsel->name);
1671 #ifdef HAVE_LIBTRACEEVENT
1672 zfree(&evsel->tp_sys);
1673 zfree(&evsel->tp_name);
1674 #endif
1675 zfree(&evsel->filter);
1676 zfree(&evsel->group_pmu_name);
1677 zfree(&evsel->unit);
1678 zfree(&evsel->metric_id);
1679 evsel__zero_per_pkg(evsel);
1680 hashmap__free(evsel->per_pkg_mask);
1681 evsel->per_pkg_mask = NULL;
1682 zfree(&evsel->metric_events);
1683 perf_evsel__object.fini(evsel);
1684 if (evsel__tool_event(evsel) == TOOL_PMU__EVENT_SYSTEM_TIME ||
1685 evsel__tool_event(evsel) == TOOL_PMU__EVENT_USER_TIME)
1686 xyarray__delete(evsel->start_times);
1687 }
1688
evsel__delete(struct evsel * evsel)1689 void evsel__delete(struct evsel *evsel)
1690 {
1691 if (!evsel)
1692 return;
1693
1694 evsel__exit(evsel);
1695 free(evsel);
1696 }
1697
evsel__compute_deltas(struct evsel * evsel,int cpu_map_idx,int thread,struct perf_counts_values * count)1698 void evsel__compute_deltas(struct evsel *evsel, int cpu_map_idx, int thread,
1699 struct perf_counts_values *count)
1700 {
1701 struct perf_counts_values tmp;
1702
1703 if (!evsel->prev_raw_counts)
1704 return;
1705
1706 tmp = *perf_counts(evsel->prev_raw_counts, cpu_map_idx, thread);
1707 *perf_counts(evsel->prev_raw_counts, cpu_map_idx, thread) = *count;
1708
1709 count->val = count->val - tmp.val;
1710 count->ena = count->ena - tmp.ena;
1711 count->run = count->run - tmp.run;
1712 }
1713
evsel__read_one(struct evsel * evsel,int cpu_map_idx,int thread)1714 static int evsel__read_one(struct evsel *evsel, int cpu_map_idx, int thread)
1715 {
1716 struct perf_counts_values *count = perf_counts(evsel->counts, cpu_map_idx, thread);
1717
1718 return perf_evsel__read(&evsel->core, cpu_map_idx, thread, count);
1719 }
1720
evsel__read_retire_lat(struct evsel * evsel,int cpu_map_idx,int thread)1721 static int evsel__read_retire_lat(struct evsel *evsel, int cpu_map_idx, int thread)
1722 {
1723 return tpebs_set_evsel(evsel, cpu_map_idx, thread);
1724 }
1725
evsel__set_count(struct evsel * counter,int cpu_map_idx,int thread,u64 val,u64 ena,u64 run,u64 lost)1726 static void evsel__set_count(struct evsel *counter, int cpu_map_idx, int thread,
1727 u64 val, u64 ena, u64 run, u64 lost)
1728 {
1729 struct perf_counts_values *count;
1730
1731 count = perf_counts(counter->counts, cpu_map_idx, thread);
1732
1733 if (counter->retire_lat) {
1734 evsel__read_retire_lat(counter, cpu_map_idx, thread);
1735 perf_counts__set_loaded(counter->counts, cpu_map_idx, thread, true);
1736 return;
1737 }
1738
1739 count->val = val;
1740 count->ena = ena;
1741 count->run = run;
1742 count->lost = lost;
1743
1744 perf_counts__set_loaded(counter->counts, cpu_map_idx, thread, true);
1745 }
1746
evsel__group_has_tpebs(struct evsel * leader)1747 static bool evsel__group_has_tpebs(struct evsel *leader)
1748 {
1749 struct evsel *evsel;
1750
1751 for_each_group_evsel(evsel, leader) {
1752 if (evsel__is_retire_lat(evsel))
1753 return true;
1754 }
1755 return false;
1756 }
1757
evsel__group_read_nr_members(struct evsel * leader)1758 static u64 evsel__group_read_nr_members(struct evsel *leader)
1759 {
1760 u64 nr = leader->core.nr_members;
1761 struct evsel *evsel;
1762
1763 for_each_group_evsel(evsel, leader) {
1764 if (evsel__is_retire_lat(evsel))
1765 nr--;
1766 }
1767 return nr;
1768 }
1769
evsel__group_read_size(struct evsel * leader)1770 static u64 evsel__group_read_size(struct evsel *leader)
1771 {
1772 u64 read_format = leader->core.attr.read_format;
1773 int entry = sizeof(u64); /* value */
1774 int size = 0;
1775 int nr = 1;
1776
1777 if (!evsel__group_has_tpebs(leader))
1778 return perf_evsel__read_size(&leader->core);
1779
1780 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
1781 size += sizeof(u64);
1782
1783 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
1784 size += sizeof(u64);
1785
1786 if (read_format & PERF_FORMAT_ID)
1787 entry += sizeof(u64);
1788
1789 if (read_format & PERF_FORMAT_LOST)
1790 entry += sizeof(u64);
1791
1792 if (read_format & PERF_FORMAT_GROUP) {
1793 nr = evsel__group_read_nr_members(leader);
1794 size += sizeof(u64);
1795 }
1796
1797 size += entry * nr;
1798 return size;
1799 }
1800
evsel__process_group_data(struct evsel * leader,int cpu_map_idx,int thread,u64 * data)1801 static int evsel__process_group_data(struct evsel *leader, int cpu_map_idx, int thread, u64 *data)
1802 {
1803 u64 read_format = leader->core.attr.read_format;
1804 struct sample_read_value *v;
1805 u64 nr, ena = 0, run = 0, lost = 0;
1806
1807 nr = *data++;
1808
1809 if (nr != evsel__group_read_nr_members(leader))
1810 return -EINVAL;
1811
1812 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
1813 ena = *data++;
1814
1815 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
1816 run = *data++;
1817
1818 v = (void *)data;
1819 sample_read_group__for_each(v, nr, read_format) {
1820 struct evsel *counter;
1821
1822 counter = evlist__id2evsel(leader->evlist, v->id);
1823 if (!counter)
1824 return -EINVAL;
1825
1826 if (read_format & PERF_FORMAT_LOST)
1827 lost = v->lost;
1828
1829 evsel__set_count(counter, cpu_map_idx, thread, v->value, ena, run, lost);
1830 }
1831
1832 return 0;
1833 }
1834
evsel__read_group(struct evsel * leader,int cpu_map_idx,int thread)1835 static int evsel__read_group(struct evsel *leader, int cpu_map_idx, int thread)
1836 {
1837 struct perf_stat_evsel *ps = leader->stats;
1838 u64 read_format = leader->core.attr.read_format;
1839 int size = evsel__group_read_size(leader);
1840 u64 *data = ps->group_data;
1841
1842 if (!(read_format & PERF_FORMAT_ID))
1843 return -EINVAL;
1844
1845 if (!evsel__is_group_leader(leader))
1846 return -EINVAL;
1847
1848 if (!data) {
1849 data = zalloc(size);
1850 if (!data)
1851 return -ENOMEM;
1852
1853 ps->group_data = data;
1854 }
1855
1856 if (FD(leader, cpu_map_idx, thread) < 0)
1857 return -EINVAL;
1858
1859 if (readn(FD(leader, cpu_map_idx, thread), data, size) <= 0)
1860 return -errno;
1861
1862 return evsel__process_group_data(leader, cpu_map_idx, thread, data);
1863 }
1864
__evsel__match(const struct evsel * evsel,u32 type,u64 config)1865 bool __evsel__match(const struct evsel *evsel, u32 type, u64 config)
1866 {
1867
1868 u32 e_type = evsel->core.attr.type;
1869 u64 e_config = evsel->core.attr.config;
1870
1871 if (e_type != type) {
1872 return type == PERF_TYPE_HARDWARE && evsel->pmu && evsel->pmu->is_core &&
1873 evsel->alternate_hw_config == config;
1874 }
1875
1876 if ((type == PERF_TYPE_HARDWARE || type == PERF_TYPE_HW_CACHE) &&
1877 perf_pmus__supports_extended_type())
1878 e_config &= PERF_HW_EVENT_MASK;
1879
1880 return e_config == config;
1881 }
1882
evsel__read_counter(struct evsel * evsel,int cpu_map_idx,int thread)1883 int evsel__read_counter(struct evsel *evsel, int cpu_map_idx, int thread)
1884 {
1885 if (evsel__is_tool(evsel))
1886 return evsel__tool_pmu_read(evsel, cpu_map_idx, thread);
1887
1888 if (evsel__is_hwmon(evsel))
1889 return evsel__hwmon_pmu_read(evsel, cpu_map_idx, thread);
1890
1891 if (evsel__is_retire_lat(evsel))
1892 return evsel__read_retire_lat(evsel, cpu_map_idx, thread);
1893
1894 if (evsel->core.attr.read_format & PERF_FORMAT_GROUP)
1895 return evsel__read_group(evsel, cpu_map_idx, thread);
1896
1897 return evsel__read_one(evsel, cpu_map_idx, thread);
1898 }
1899
__evsel__read_on_cpu(struct evsel * evsel,int cpu_map_idx,int thread,bool scale)1900 int __evsel__read_on_cpu(struct evsel *evsel, int cpu_map_idx, int thread, bool scale)
1901 {
1902 struct perf_counts_values count;
1903 size_t nv = scale ? 3 : 1;
1904
1905 if (FD(evsel, cpu_map_idx, thread) < 0)
1906 return -EINVAL;
1907
1908 if (evsel->counts == NULL && evsel__alloc_counts(evsel) < 0)
1909 return -ENOMEM;
1910
1911 if (readn(FD(evsel, cpu_map_idx, thread), &count, nv * sizeof(u64)) <= 0)
1912 return -errno;
1913
1914 evsel__compute_deltas(evsel, cpu_map_idx, thread, &count);
1915 perf_counts_values__scale(&count, scale, NULL);
1916 *perf_counts(evsel->counts, cpu_map_idx, thread) = count;
1917 return 0;
1918 }
1919
evsel__match_other_cpu(struct evsel * evsel,struct evsel * other,int cpu_map_idx)1920 static int evsel__match_other_cpu(struct evsel *evsel, struct evsel *other,
1921 int cpu_map_idx)
1922 {
1923 struct perf_cpu cpu;
1924
1925 cpu = perf_cpu_map__cpu(evsel->core.cpus, cpu_map_idx);
1926 return perf_cpu_map__idx(other->core.cpus, cpu);
1927 }
1928
evsel__hybrid_group_cpu_map_idx(struct evsel * evsel,int cpu_map_idx)1929 static int evsel__hybrid_group_cpu_map_idx(struct evsel *evsel, int cpu_map_idx)
1930 {
1931 struct evsel *leader = evsel__leader(evsel);
1932
1933 if ((evsel__is_hybrid(evsel) && !evsel__is_hybrid(leader)) ||
1934 (!evsel__is_hybrid(evsel) && evsel__is_hybrid(leader))) {
1935 return evsel__match_other_cpu(evsel, leader, cpu_map_idx);
1936 }
1937
1938 return cpu_map_idx;
1939 }
1940
get_group_fd(struct evsel * evsel,int cpu_map_idx,int thread)1941 static int get_group_fd(struct evsel *evsel, int cpu_map_idx, int thread)
1942 {
1943 struct evsel *leader = evsel__leader(evsel);
1944 int fd;
1945
1946 if (evsel__is_group_leader(evsel))
1947 return -1;
1948
1949 /*
1950 * Leader must be already processed/open,
1951 * if not it's a bug.
1952 */
1953 BUG_ON(!leader->core.fd);
1954
1955 cpu_map_idx = evsel__hybrid_group_cpu_map_idx(evsel, cpu_map_idx);
1956 if (cpu_map_idx == -1)
1957 return -1;
1958
1959 fd = FD(leader, cpu_map_idx, thread);
1960 BUG_ON(fd == -1 && !leader->skippable);
1961
1962 /*
1963 * When the leader has been skipped, return -2 to distinguish from no
1964 * group leader case.
1965 */
1966 return fd == -1 ? -2 : fd;
1967 }
1968
evsel__remove_fd(struct evsel * pos,int nr_cpus,int nr_threads,int thread_idx)1969 static void evsel__remove_fd(struct evsel *pos, int nr_cpus, int nr_threads, int thread_idx)
1970 {
1971 for (int cpu = 0; cpu < nr_cpus; cpu++)
1972 for (int thread = thread_idx; thread < nr_threads - 1; thread++)
1973 FD(pos, cpu, thread) = FD(pos, cpu, thread + 1);
1974 }
1975
update_fds(struct evsel * evsel,int nr_cpus,int cpu_map_idx,int nr_threads,int thread_idx)1976 static int update_fds(struct evsel *evsel,
1977 int nr_cpus, int cpu_map_idx,
1978 int nr_threads, int thread_idx)
1979 {
1980 struct evsel *pos;
1981
1982 if (cpu_map_idx >= nr_cpus || thread_idx >= nr_threads)
1983 return -EINVAL;
1984
1985 evlist__for_each_entry(evsel->evlist, pos) {
1986 nr_cpus = pos != evsel ? nr_cpus : cpu_map_idx;
1987
1988 evsel__remove_fd(pos, nr_cpus, nr_threads, thread_idx);
1989
1990 /*
1991 * Since fds for next evsel has not been created,
1992 * there is no need to iterate whole event list.
1993 */
1994 if (pos == evsel)
1995 break;
1996 }
1997 return 0;
1998 }
1999
evsel__ignore_missing_thread(struct evsel * evsel,int nr_cpus,int cpu_map_idx,struct perf_thread_map * threads,int thread,int err)2000 static bool evsel__ignore_missing_thread(struct evsel *evsel,
2001 int nr_cpus, int cpu_map_idx,
2002 struct perf_thread_map *threads,
2003 int thread, int err)
2004 {
2005 pid_t ignore_pid = perf_thread_map__pid(threads, thread);
2006
2007 if (!evsel->ignore_missing_thread)
2008 return false;
2009
2010 /* The system wide setup does not work with threads. */
2011 if (evsel->core.system_wide)
2012 return false;
2013
2014 /* The -ESRCH is perf event syscall errno for pid's not found. */
2015 if (err != -ESRCH)
2016 return false;
2017
2018 /* If there's only one thread, let it fail. */
2019 if (threads->nr == 1)
2020 return false;
2021
2022 /*
2023 * We should remove fd for missing_thread first
2024 * because thread_map__remove() will decrease threads->nr.
2025 */
2026 if (update_fds(evsel, nr_cpus, cpu_map_idx, threads->nr, thread))
2027 return false;
2028
2029 if (thread_map__remove(threads, thread))
2030 return false;
2031
2032 pr_warning("WARNING: Ignored open failure for pid %d\n",
2033 ignore_pid);
2034 return true;
2035 }
2036
__open_attr__fprintf(FILE * fp,const char * name,const char * val,void * priv __maybe_unused)2037 static int __open_attr__fprintf(FILE *fp, const char *name, const char *val,
2038 void *priv __maybe_unused)
2039 {
2040 return fprintf(fp, " %-32s %s\n", name, val);
2041 }
2042
display_attr(struct perf_event_attr * attr)2043 static void display_attr(struct perf_event_attr *attr)
2044 {
2045 if (verbose >= 2 || debug_peo_args) {
2046 fprintf(stderr, "%.60s\n", graph_dotted_line);
2047 fprintf(stderr, "perf_event_attr:\n");
2048 perf_event_attr__fprintf(stderr, attr, __open_attr__fprintf, NULL);
2049 fprintf(stderr, "%.60s\n", graph_dotted_line);
2050 }
2051 }
2052
evsel__precise_ip_fallback(struct evsel * evsel)2053 bool evsel__precise_ip_fallback(struct evsel *evsel)
2054 {
2055 /* Do not try less precise if not requested. */
2056 if (!evsel->precise_max)
2057 return false;
2058
2059 /*
2060 * We tried all the precise_ip values, and it's
2061 * still failing, so leave it to standard fallback.
2062 */
2063 if (!evsel->core.attr.precise_ip) {
2064 evsel->core.attr.precise_ip = evsel->precise_ip_original;
2065 return false;
2066 }
2067
2068 if (!evsel->precise_ip_original)
2069 evsel->precise_ip_original = evsel->core.attr.precise_ip;
2070
2071 evsel->core.attr.precise_ip--;
2072 pr_debug2_peo("decreasing precise_ip by one (%d)\n", evsel->core.attr.precise_ip);
2073 display_attr(&evsel->core.attr);
2074 return true;
2075 }
2076
2077 static struct perf_cpu_map *empty_cpu_map;
2078 static struct perf_thread_map *empty_thread_map;
2079
__evsel__prepare_open(struct evsel * evsel,struct perf_cpu_map * cpus,struct perf_thread_map * threads)2080 static int __evsel__prepare_open(struct evsel *evsel, struct perf_cpu_map *cpus,
2081 struct perf_thread_map *threads)
2082 {
2083 int ret = 0;
2084 int nthreads = perf_thread_map__nr(threads);
2085
2086 if ((perf_missing_features.write_backward && evsel->core.attr.write_backward) ||
2087 (perf_missing_features.aux_output && evsel->core.attr.aux_output))
2088 return -EINVAL;
2089
2090 if (cpus == NULL) {
2091 if (empty_cpu_map == NULL) {
2092 empty_cpu_map = perf_cpu_map__new_any_cpu();
2093 if (empty_cpu_map == NULL)
2094 return -ENOMEM;
2095 }
2096
2097 cpus = empty_cpu_map;
2098 }
2099
2100 if (threads == NULL) {
2101 if (empty_thread_map == NULL) {
2102 empty_thread_map = thread_map__new_by_tid(-1);
2103 if (empty_thread_map == NULL)
2104 return -ENOMEM;
2105 }
2106
2107 threads = empty_thread_map;
2108 }
2109
2110 if (evsel->core.fd == NULL &&
2111 perf_evsel__alloc_fd(&evsel->core, perf_cpu_map__nr(cpus), nthreads) < 0)
2112 return -ENOMEM;
2113
2114 if (evsel__is_tool(evsel))
2115 ret = evsel__tool_pmu_prepare_open(evsel, cpus, nthreads);
2116
2117 evsel->open_flags = PERF_FLAG_FD_CLOEXEC;
2118 if (evsel->cgrp)
2119 evsel->open_flags |= PERF_FLAG_PID_CGROUP;
2120
2121 return ret;
2122 }
2123
evsel__disable_missing_features(struct evsel * evsel)2124 static void evsel__disable_missing_features(struct evsel *evsel)
2125 {
2126 if (perf_missing_features.inherit_sample_read && evsel->core.attr.inherit &&
2127 (evsel->core.attr.sample_type & PERF_SAMPLE_READ))
2128 evsel->core.attr.inherit = 0;
2129 if (perf_missing_features.branch_counters)
2130 evsel->core.attr.branch_sample_type &= ~PERF_SAMPLE_BRANCH_COUNTERS;
2131 if (perf_missing_features.read_lost)
2132 evsel->core.attr.read_format &= ~PERF_FORMAT_LOST;
2133 if (perf_missing_features.weight_struct) {
2134 evsel__set_sample_bit(evsel, WEIGHT);
2135 evsel__reset_sample_bit(evsel, WEIGHT_STRUCT);
2136 }
2137 if (perf_missing_features.clockid_wrong)
2138 evsel->core.attr.clockid = CLOCK_MONOTONIC; /* should always work */
2139 if (perf_missing_features.clockid) {
2140 evsel->core.attr.use_clockid = 0;
2141 evsel->core.attr.clockid = 0;
2142 }
2143 if (perf_missing_features.cloexec)
2144 evsel->open_flags &= ~(unsigned long)PERF_FLAG_FD_CLOEXEC;
2145 if (perf_missing_features.mmap2)
2146 evsel->core.attr.mmap2 = 0;
2147 if (evsel->pmu && evsel->pmu->missing_features.exclude_guest)
2148 evsel->core.attr.exclude_guest = evsel->core.attr.exclude_host = 0;
2149 if (perf_missing_features.lbr_flags)
2150 evsel->core.attr.branch_sample_type &= ~(PERF_SAMPLE_BRANCH_NO_FLAGS |
2151 PERF_SAMPLE_BRANCH_NO_CYCLES);
2152 if (perf_missing_features.group_read && evsel->core.attr.inherit)
2153 evsel->core.attr.read_format &= ~(PERF_FORMAT_GROUP|PERF_FORMAT_ID);
2154 if (perf_missing_features.ksymbol)
2155 evsel->core.attr.ksymbol = 0;
2156 if (perf_missing_features.bpf)
2157 evsel->core.attr.bpf_event = 0;
2158 if (perf_missing_features.branch_hw_idx)
2159 evsel->core.attr.branch_sample_type &= ~PERF_SAMPLE_BRANCH_HW_INDEX;
2160 if (perf_missing_features.sample_id_all)
2161 evsel->core.attr.sample_id_all = 0;
2162 }
2163
evsel__prepare_open(struct evsel * evsel,struct perf_cpu_map * cpus,struct perf_thread_map * threads)2164 int evsel__prepare_open(struct evsel *evsel, struct perf_cpu_map *cpus,
2165 struct perf_thread_map *threads)
2166 {
2167 int err;
2168
2169 err = __evsel__prepare_open(evsel, cpus, threads);
2170 if (err)
2171 return err;
2172
2173 evsel__disable_missing_features(evsel);
2174
2175 return err;
2176 }
2177
__has_attr_feature(struct perf_event_attr * attr,struct perf_cpu cpu,unsigned long flags)2178 static bool __has_attr_feature(struct perf_event_attr *attr,
2179 struct perf_cpu cpu, unsigned long flags)
2180 {
2181 int fd = syscall(SYS_perf_event_open, attr, /*pid=*/0, cpu.cpu,
2182 /*group_fd=*/-1, flags);
2183 close(fd);
2184
2185 if (fd < 0) {
2186 attr->exclude_kernel = 1;
2187
2188 fd = syscall(SYS_perf_event_open, attr, /*pid=*/0, cpu.cpu,
2189 /*group_fd=*/-1, flags);
2190 close(fd);
2191 }
2192
2193 if (fd < 0) {
2194 attr->exclude_hv = 1;
2195
2196 fd = syscall(SYS_perf_event_open, attr, /*pid=*/0, cpu.cpu,
2197 /*group_fd=*/-1, flags);
2198 close(fd);
2199 }
2200
2201 if (fd < 0) {
2202 attr->exclude_guest = 1;
2203
2204 fd = syscall(SYS_perf_event_open, attr, /*pid=*/0, cpu.cpu,
2205 /*group_fd=*/-1, flags);
2206 close(fd);
2207 }
2208
2209 attr->exclude_kernel = 0;
2210 attr->exclude_guest = 0;
2211 attr->exclude_hv = 0;
2212
2213 return fd >= 0;
2214 }
2215
has_attr_feature(struct perf_event_attr * attr,unsigned long flags)2216 static bool has_attr_feature(struct perf_event_attr *attr, unsigned long flags)
2217 {
2218 struct perf_cpu cpu = {.cpu = -1};
2219
2220 return __has_attr_feature(attr, cpu, flags);
2221 }
2222
evsel__detect_missing_pmu_features(struct evsel * evsel)2223 static void evsel__detect_missing_pmu_features(struct evsel *evsel)
2224 {
2225 struct perf_event_attr attr = {
2226 .type = evsel->core.attr.type,
2227 .config = evsel->core.attr.config,
2228 .disabled = 1,
2229 };
2230 struct perf_pmu *pmu = evsel->pmu;
2231 int old_errno;
2232
2233 old_errno = errno;
2234
2235 if (pmu == NULL)
2236 pmu = evsel->pmu = evsel__find_pmu(evsel);
2237
2238 if (pmu == NULL || pmu->missing_features.checked)
2239 goto out;
2240
2241 /*
2242 * Must probe features in the order they were added to the
2243 * perf_event_attr interface. These are kernel core limitation but
2244 * specific to PMUs with branch stack. So we can detect with the given
2245 * hardware event and stop on the first one succeeded.
2246 */
2247
2248 /* Please add new feature detection here. */
2249
2250 attr.exclude_guest = 1;
2251 if (has_attr_feature(&attr, /*flags=*/0))
2252 goto found;
2253 pmu->missing_features.exclude_guest = true;
2254 pr_debug2("switching off exclude_guest for PMU %s\n", pmu->name);
2255
2256 found:
2257 pmu->missing_features.checked = true;
2258 out:
2259 errno = old_errno;
2260 }
2261
evsel__detect_missing_brstack_features(struct evsel * evsel)2262 static void evsel__detect_missing_brstack_features(struct evsel *evsel)
2263 {
2264 static bool detection_done = false;
2265 struct perf_event_attr attr = {
2266 .type = evsel->core.attr.type,
2267 .config = evsel->core.attr.config,
2268 .disabled = 1,
2269 .sample_type = PERF_SAMPLE_BRANCH_STACK,
2270 .sample_period = 1000,
2271 };
2272 int old_errno;
2273
2274 if (detection_done)
2275 return;
2276
2277 old_errno = errno;
2278
2279 /*
2280 * Must probe features in the order they were added to the
2281 * perf_event_attr interface. These are PMU specific limitation
2282 * so we can detect with the given hardware event and stop on the
2283 * first one succeeded.
2284 */
2285
2286 /* Please add new feature detection here. */
2287
2288 attr.branch_sample_type = PERF_SAMPLE_BRANCH_COUNTERS;
2289 if (has_attr_feature(&attr, /*flags=*/0))
2290 goto found;
2291 perf_missing_features.branch_counters = true;
2292 pr_debug2("switching off branch counters support\n");
2293
2294 attr.branch_sample_type = PERF_SAMPLE_BRANCH_HW_INDEX;
2295 if (has_attr_feature(&attr, /*flags=*/0))
2296 goto found;
2297 perf_missing_features.branch_hw_idx = true;
2298 pr_debug2("switching off branch HW index support\n");
2299
2300 attr.branch_sample_type = PERF_SAMPLE_BRANCH_NO_CYCLES | PERF_SAMPLE_BRANCH_NO_FLAGS;
2301 if (has_attr_feature(&attr, /*flags=*/0))
2302 goto found;
2303 perf_missing_features.lbr_flags = true;
2304 pr_debug2_peo("switching off branch sample type no (cycles/flags)\n");
2305
2306 found:
2307 detection_done = true;
2308 errno = old_errno;
2309 }
2310
evsel__probe_aux_action(struct evsel * evsel,struct perf_cpu cpu)2311 static bool evsel__probe_aux_action(struct evsel *evsel, struct perf_cpu cpu)
2312 {
2313 struct perf_event_attr attr = evsel->core.attr;
2314 int old_errno = errno;
2315
2316 attr.disabled = 1;
2317 attr.aux_start_paused = 1;
2318
2319 if (__has_attr_feature(&attr, cpu, /*flags=*/0)) {
2320 errno = old_errno;
2321 return true;
2322 }
2323
2324 /*
2325 * EOPNOTSUPP means the kernel supports the feature but the PMU does
2326 * not, so keep that distinction if possible.
2327 */
2328 if (errno != EOPNOTSUPP)
2329 errno = old_errno;
2330
2331 return false;
2332 }
2333
evsel__detect_missing_aux_action_feature(struct evsel * evsel,struct perf_cpu cpu)2334 static void evsel__detect_missing_aux_action_feature(struct evsel *evsel, struct perf_cpu cpu)
2335 {
2336 static bool detection_done;
2337 struct evsel *leader;
2338
2339 /*
2340 * Don't bother probing aux_action if it is not being used or has been
2341 * probed before.
2342 */
2343 if (!evsel->core.attr.aux_action || detection_done)
2344 return;
2345
2346 detection_done = true;
2347
2348 /*
2349 * The leader is an AUX area event. If it has failed, assume the feature
2350 * is not supported.
2351 */
2352 leader = evsel__leader(evsel);
2353 if (evsel == leader) {
2354 perf_missing_features.aux_action = true;
2355 return;
2356 }
2357
2358 /*
2359 * AUX area event with aux_action must have been opened successfully
2360 * already, so feature is supported.
2361 */
2362 if (leader->core.attr.aux_action)
2363 return;
2364
2365 if (!evsel__probe_aux_action(leader, cpu))
2366 perf_missing_features.aux_action = true;
2367 }
2368
evsel__detect_missing_features(struct evsel * evsel,struct perf_cpu cpu)2369 static bool evsel__detect_missing_features(struct evsel *evsel, struct perf_cpu cpu)
2370 {
2371 static bool detection_done = false;
2372 struct perf_event_attr attr = {
2373 .type = PERF_TYPE_SOFTWARE,
2374 .config = PERF_COUNT_SW_TASK_CLOCK,
2375 .disabled = 1,
2376 };
2377 int old_errno;
2378
2379 evsel__detect_missing_aux_action_feature(evsel, cpu);
2380
2381 evsel__detect_missing_pmu_features(evsel);
2382
2383 if (evsel__has_br_stack(evsel))
2384 evsel__detect_missing_brstack_features(evsel);
2385
2386 if (detection_done)
2387 goto check;
2388
2389 old_errno = errno;
2390
2391 /*
2392 * Must probe features in the order they were added to the
2393 * perf_event_attr interface. These are kernel core limitation
2394 * not PMU-specific so we can detect with a software event and
2395 * stop on the first one succeeded.
2396 */
2397
2398 /* Please add new feature detection here. */
2399
2400 attr.inherit = true;
2401 attr.sample_type = PERF_SAMPLE_READ;
2402 if (has_attr_feature(&attr, /*flags=*/0))
2403 goto found;
2404 perf_missing_features.inherit_sample_read = true;
2405 pr_debug2("Using PERF_SAMPLE_READ / :S modifier is not compatible with inherit, falling back to no-inherit.\n");
2406 attr.inherit = false;
2407 attr.sample_type = 0;
2408
2409 attr.read_format = PERF_FORMAT_LOST;
2410 if (has_attr_feature(&attr, /*flags=*/0))
2411 goto found;
2412 perf_missing_features.read_lost = true;
2413 pr_debug2("switching off PERF_FORMAT_LOST support\n");
2414 attr.read_format = 0;
2415
2416 attr.sample_type = PERF_SAMPLE_WEIGHT_STRUCT;
2417 if (has_attr_feature(&attr, /*flags=*/0))
2418 goto found;
2419 perf_missing_features.weight_struct = true;
2420 pr_debug2("switching off weight struct support\n");
2421 attr.sample_type = 0;
2422
2423 attr.sample_type = PERF_SAMPLE_CODE_PAGE_SIZE;
2424 if (has_attr_feature(&attr, /*flags=*/0))
2425 goto found;
2426 perf_missing_features.code_page_size = true;
2427 pr_debug2_peo("Kernel has no PERF_SAMPLE_CODE_PAGE_SIZE support\n");
2428 attr.sample_type = 0;
2429
2430 attr.sample_type = PERF_SAMPLE_DATA_PAGE_SIZE;
2431 if (has_attr_feature(&attr, /*flags=*/0))
2432 goto found;
2433 perf_missing_features.data_page_size = true;
2434 pr_debug2_peo("Kernel has no PERF_SAMPLE_DATA_PAGE_SIZE support\n");
2435 attr.sample_type = 0;
2436
2437 attr.cgroup = 1;
2438 if (has_attr_feature(&attr, /*flags=*/0))
2439 goto found;
2440 perf_missing_features.cgroup = true;
2441 pr_debug2_peo("Kernel has no cgroup sampling support\n");
2442 attr.cgroup = 0;
2443
2444 attr.aux_output = 1;
2445 if (has_attr_feature(&attr, /*flags=*/0))
2446 goto found;
2447 perf_missing_features.aux_output = true;
2448 pr_debug2_peo("Kernel has no attr.aux_output support\n");
2449 attr.aux_output = 0;
2450
2451 attr.bpf_event = 1;
2452 if (has_attr_feature(&attr, /*flags=*/0))
2453 goto found;
2454 perf_missing_features.bpf = true;
2455 pr_debug2_peo("switching off bpf_event\n");
2456 attr.bpf_event = 0;
2457
2458 attr.ksymbol = 1;
2459 if (has_attr_feature(&attr, /*flags=*/0))
2460 goto found;
2461 perf_missing_features.ksymbol = true;
2462 pr_debug2_peo("switching off ksymbol\n");
2463 attr.ksymbol = 0;
2464
2465 attr.write_backward = 1;
2466 if (has_attr_feature(&attr, /*flags=*/0))
2467 goto found;
2468 perf_missing_features.write_backward = true;
2469 pr_debug2_peo("switching off write_backward\n");
2470 attr.write_backward = 0;
2471
2472 attr.use_clockid = 1;
2473 attr.clockid = CLOCK_MONOTONIC;
2474 if (has_attr_feature(&attr, /*flags=*/0))
2475 goto found;
2476 perf_missing_features.clockid = true;
2477 pr_debug2_peo("switching off clockid\n");
2478 attr.use_clockid = 0;
2479 attr.clockid = 0;
2480
2481 if (has_attr_feature(&attr, /*flags=*/PERF_FLAG_FD_CLOEXEC))
2482 goto found;
2483 perf_missing_features.cloexec = true;
2484 pr_debug2_peo("switching off cloexec flag\n");
2485
2486 attr.mmap2 = 1;
2487 if (has_attr_feature(&attr, /*flags=*/0))
2488 goto found;
2489 perf_missing_features.mmap2 = true;
2490 pr_debug2_peo("switching off mmap2\n");
2491 attr.mmap2 = 0;
2492
2493 /* set this unconditionally? */
2494 perf_missing_features.sample_id_all = true;
2495 pr_debug2_peo("switching off sample_id_all\n");
2496
2497 attr.inherit = 1;
2498 attr.read_format = PERF_FORMAT_GROUP;
2499 if (has_attr_feature(&attr, /*flags=*/0))
2500 goto found;
2501 perf_missing_features.group_read = true;
2502 pr_debug2_peo("switching off group read\n");
2503 attr.inherit = 0;
2504 attr.read_format = 0;
2505
2506 found:
2507 detection_done = true;
2508 errno = old_errno;
2509
2510 check:
2511 if (evsel->core.attr.inherit &&
2512 (evsel->core.attr.sample_type & PERF_SAMPLE_READ) &&
2513 perf_missing_features.inherit_sample_read)
2514 return true;
2515
2516 if ((evsel->core.attr.branch_sample_type & PERF_SAMPLE_BRANCH_COUNTERS) &&
2517 perf_missing_features.branch_counters)
2518 return true;
2519
2520 if ((evsel->core.attr.read_format & PERF_FORMAT_LOST) &&
2521 perf_missing_features.read_lost)
2522 return true;
2523
2524 if ((evsel->core.attr.sample_type & PERF_SAMPLE_WEIGHT_STRUCT) &&
2525 perf_missing_features.weight_struct)
2526 return true;
2527
2528 if (evsel->core.attr.use_clockid && evsel->core.attr.clockid != CLOCK_MONOTONIC &&
2529 !perf_missing_features.clockid) {
2530 perf_missing_features.clockid_wrong = true;
2531 return true;
2532 }
2533
2534 if (evsel->core.attr.use_clockid && perf_missing_features.clockid)
2535 return true;
2536
2537 if ((evsel->open_flags & PERF_FLAG_FD_CLOEXEC) &&
2538 perf_missing_features.cloexec)
2539 return true;
2540
2541 if (evsel->core.attr.mmap2 && perf_missing_features.mmap2)
2542 return true;
2543
2544 if ((evsel->core.attr.branch_sample_type & (PERF_SAMPLE_BRANCH_NO_FLAGS |
2545 PERF_SAMPLE_BRANCH_NO_CYCLES)) &&
2546 perf_missing_features.lbr_flags)
2547 return true;
2548
2549 if (evsel->core.attr.inherit && (evsel->core.attr.read_format & PERF_FORMAT_GROUP) &&
2550 perf_missing_features.group_read)
2551 return true;
2552
2553 if (evsel->core.attr.ksymbol && perf_missing_features.ksymbol)
2554 return true;
2555
2556 if (evsel->core.attr.bpf_event && perf_missing_features.bpf)
2557 return true;
2558
2559 if ((evsel->core.attr.branch_sample_type & PERF_SAMPLE_BRANCH_HW_INDEX) &&
2560 perf_missing_features.branch_hw_idx)
2561 return true;
2562
2563 if (evsel->core.attr.sample_id_all && perf_missing_features.sample_id_all)
2564 return true;
2565
2566 return false;
2567 }
2568
evsel__open_cpu(struct evsel * evsel,struct perf_cpu_map * cpus,struct perf_thread_map * threads,int start_cpu_map_idx,int end_cpu_map_idx)2569 static int evsel__open_cpu(struct evsel *evsel, struct perf_cpu_map *cpus,
2570 struct perf_thread_map *threads,
2571 int start_cpu_map_idx, int end_cpu_map_idx)
2572 {
2573 int idx, thread, nthreads;
2574 int pid = -1, err, old_errno;
2575 enum rlimit_action set_rlimit = NO_CHANGE;
2576 struct perf_cpu cpu;
2577
2578 if (evsel__is_retire_lat(evsel))
2579 return tpebs_start(evsel->evlist);
2580
2581 err = __evsel__prepare_open(evsel, cpus, threads);
2582 if (err)
2583 return err;
2584
2585 if (cpus == NULL)
2586 cpus = empty_cpu_map;
2587
2588 if (threads == NULL)
2589 threads = empty_thread_map;
2590
2591 nthreads = perf_thread_map__nr(threads);
2592
2593 if (evsel->cgrp)
2594 pid = evsel->cgrp->fd;
2595
2596 fallback_missing_features:
2597 evsel__disable_missing_features(evsel);
2598
2599 pr_debug3("Opening: %s\n", evsel__name(evsel));
2600 display_attr(&evsel->core.attr);
2601
2602 if (evsel__is_tool(evsel)) {
2603 return evsel__tool_pmu_open(evsel, threads,
2604 start_cpu_map_idx,
2605 end_cpu_map_idx);
2606 }
2607 if (evsel__is_hwmon(evsel)) {
2608 return evsel__hwmon_pmu_open(evsel, threads,
2609 start_cpu_map_idx,
2610 end_cpu_map_idx);
2611 }
2612
2613 for (idx = start_cpu_map_idx; idx < end_cpu_map_idx; idx++) {
2614 cpu = perf_cpu_map__cpu(cpus, idx);
2615
2616 for (thread = 0; thread < nthreads; thread++) {
2617 int fd, group_fd;
2618 retry_open:
2619 if (thread >= nthreads)
2620 break;
2621
2622 if (!evsel->cgrp && !evsel->core.system_wide)
2623 pid = perf_thread_map__pid(threads, thread);
2624
2625 group_fd = get_group_fd(evsel, idx, thread);
2626
2627 if (group_fd == -2) {
2628 pr_debug("broken group leader for %s\n", evsel->name);
2629 err = -EINVAL;
2630 goto out_close;
2631 }
2632
2633 /* Debug message used by test scripts */
2634 pr_debug2_peo("sys_perf_event_open: pid %d cpu %d group_fd %d flags %#lx",
2635 pid, cpu.cpu, group_fd, evsel->open_flags);
2636
2637 fd = sys_perf_event_open(&evsel->core.attr, pid, cpu.cpu,
2638 group_fd, evsel->open_flags);
2639
2640 FD(evsel, idx, thread) = fd;
2641
2642 if (fd < 0) {
2643 err = -errno;
2644
2645 pr_debug2_peo("\nsys_perf_event_open failed, error %d\n",
2646 err);
2647 goto try_fallback;
2648 }
2649
2650 bpf_counter__install_pe(evsel, idx, fd);
2651
2652 if (unlikely(test_attr__enabled())) {
2653 test_attr__open(&evsel->core.attr, pid, cpu,
2654 fd, group_fd, evsel->open_flags);
2655 }
2656
2657 /* Debug message used by test scripts */
2658 pr_debug2_peo(" = %d\n", fd);
2659
2660 if (evsel->bpf_fd >= 0) {
2661 int evt_fd = fd;
2662 int bpf_fd = evsel->bpf_fd;
2663
2664 err = ioctl(evt_fd,
2665 PERF_EVENT_IOC_SET_BPF,
2666 bpf_fd);
2667 if (err && errno != EEXIST) {
2668 pr_err("failed to attach bpf fd %d: %s\n",
2669 bpf_fd, strerror(errno));
2670 err = -EINVAL;
2671 goto out_close;
2672 }
2673 }
2674
2675 set_rlimit = NO_CHANGE;
2676
2677 /*
2678 * If we succeeded but had to kill clockid, fail and
2679 * have evsel__open_strerror() print us a nice error.
2680 */
2681 if (perf_missing_features.clockid ||
2682 perf_missing_features.clockid_wrong) {
2683 err = -EINVAL;
2684 goto out_close;
2685 }
2686 }
2687 }
2688
2689 return 0;
2690
2691 try_fallback:
2692 if (evsel__ignore_missing_thread(evsel, perf_cpu_map__nr(cpus),
2693 idx, threads, thread, err)) {
2694 /* We just removed 1 thread, so lower the upper nthreads limit. */
2695 nthreads--;
2696
2697 /* ... and pretend like nothing have happened. */
2698 err = 0;
2699 goto retry_open;
2700 }
2701 /*
2702 * perf stat needs between 5 and 22 fds per CPU. When we run out
2703 * of them try to increase the limits.
2704 */
2705 if (err == -EMFILE && rlimit__increase_nofile(&set_rlimit))
2706 goto retry_open;
2707
2708 if (err == -EINVAL && evsel__detect_missing_features(evsel, cpu))
2709 goto fallback_missing_features;
2710
2711 if (evsel__precise_ip_fallback(evsel))
2712 goto retry_open;
2713
2714 out_close:
2715 if (err)
2716 threads->err_thread = thread;
2717
2718 old_errno = errno;
2719 do {
2720 while (--thread >= 0) {
2721 if (FD(evsel, idx, thread) >= 0)
2722 close(FD(evsel, idx, thread));
2723 FD(evsel, idx, thread) = -1;
2724 }
2725 thread = nthreads;
2726 } while (--idx >= 0);
2727 errno = old_errno;
2728 return err;
2729 }
2730
evsel__open(struct evsel * evsel,struct perf_cpu_map * cpus,struct perf_thread_map * threads)2731 int evsel__open(struct evsel *evsel, struct perf_cpu_map *cpus,
2732 struct perf_thread_map *threads)
2733 {
2734 return evsel__open_cpu(evsel, cpus, threads, 0, perf_cpu_map__nr(cpus));
2735 }
2736
evsel__close(struct evsel * evsel)2737 void evsel__close(struct evsel *evsel)
2738 {
2739 if (evsel__is_retire_lat(evsel))
2740 tpebs_delete();
2741 perf_evsel__close(&evsel->core);
2742 perf_evsel__free_id(&evsel->core);
2743 }
2744
evsel__open_per_cpu(struct evsel * evsel,struct perf_cpu_map * cpus,int cpu_map_idx)2745 int evsel__open_per_cpu(struct evsel *evsel, struct perf_cpu_map *cpus, int cpu_map_idx)
2746 {
2747 if (cpu_map_idx == -1)
2748 return evsel__open_cpu(evsel, cpus, NULL, 0, perf_cpu_map__nr(cpus));
2749
2750 return evsel__open_cpu(evsel, cpus, NULL, cpu_map_idx, cpu_map_idx + 1);
2751 }
2752
evsel__open_per_thread(struct evsel * evsel,struct perf_thread_map * threads)2753 int evsel__open_per_thread(struct evsel *evsel, struct perf_thread_map *threads)
2754 {
2755 return evsel__open(evsel, NULL, threads);
2756 }
2757
perf_evsel__parse_id_sample(const struct evsel * evsel,const union perf_event * event,struct perf_sample * sample)2758 static int perf_evsel__parse_id_sample(const struct evsel *evsel,
2759 const union perf_event *event,
2760 struct perf_sample *sample)
2761 {
2762 u64 type = evsel->core.attr.sample_type;
2763 const __u64 *array = event->sample.array;
2764 bool swapped = evsel->needs_swap;
2765 union u64_swap u;
2766
2767 array += ((event->header.size -
2768 sizeof(event->header)) / sizeof(u64)) - 1;
2769
2770 if (type & PERF_SAMPLE_IDENTIFIER) {
2771 sample->id = *array;
2772 array--;
2773 }
2774
2775 if (type & PERF_SAMPLE_CPU) {
2776 u.val64 = *array;
2777 if (swapped) {
2778 /* undo swap of u64, then swap on individual u32s */
2779 u.val64 = bswap_64(u.val64);
2780 u.val32[0] = bswap_32(u.val32[0]);
2781 }
2782
2783 sample->cpu = u.val32[0];
2784 array--;
2785 }
2786
2787 if (type & PERF_SAMPLE_STREAM_ID) {
2788 sample->stream_id = *array;
2789 array--;
2790 }
2791
2792 if (type & PERF_SAMPLE_ID) {
2793 sample->id = *array;
2794 array--;
2795 }
2796
2797 if (type & PERF_SAMPLE_TIME) {
2798 sample->time = *array;
2799 array--;
2800 }
2801
2802 if (type & PERF_SAMPLE_TID) {
2803 u.val64 = *array;
2804 if (swapped) {
2805 /* undo swap of u64, then swap on individual u32s */
2806 u.val64 = bswap_64(u.val64);
2807 u.val32[0] = bswap_32(u.val32[0]);
2808 u.val32[1] = bswap_32(u.val32[1]);
2809 }
2810
2811 sample->pid = u.val32[0];
2812 sample->tid = u.val32[1];
2813 array--;
2814 }
2815
2816 return 0;
2817 }
2818
overflow(const void * endp,u16 max_size,const void * offset,u64 size)2819 static inline bool overflow(const void *endp, u16 max_size, const void *offset,
2820 u64 size)
2821 {
2822 return size > max_size || offset + size > endp;
2823 }
2824
2825 #define OVERFLOW_CHECK(offset, size, max_size) \
2826 do { \
2827 if (overflow(endp, (max_size), (offset), (size))) \
2828 return -EFAULT; \
2829 } while (0)
2830
2831 #define OVERFLOW_CHECK_u64(offset) \
2832 OVERFLOW_CHECK(offset, sizeof(u64), sizeof(u64))
2833
2834 static int
perf_event__check_size(union perf_event * event,unsigned int sample_size)2835 perf_event__check_size(union perf_event *event, unsigned int sample_size)
2836 {
2837 /*
2838 * The evsel's sample_size is based on PERF_SAMPLE_MASK which includes
2839 * up to PERF_SAMPLE_PERIOD. After that overflow() must be used to
2840 * check the format does not go past the end of the event.
2841 */
2842 if (sample_size + sizeof(event->header) > event->header.size)
2843 return -EFAULT;
2844
2845 return 0;
2846 }
2847
arch_perf_parse_sample_weight(struct perf_sample * data,const __u64 * array,u64 type __maybe_unused)2848 void __weak arch_perf_parse_sample_weight(struct perf_sample *data,
2849 const __u64 *array,
2850 u64 type __maybe_unused)
2851 {
2852 data->weight = *array;
2853 }
2854
evsel__bitfield_swap_branch_flags(u64 value)2855 u64 evsel__bitfield_swap_branch_flags(u64 value)
2856 {
2857 u64 new_val = 0;
2858
2859 /*
2860 * branch_flags
2861 * union {
2862 * u64 values;
2863 * struct {
2864 * mispred:1 //target mispredicted
2865 * predicted:1 //target predicted
2866 * in_tx:1 //in transaction
2867 * abort:1 //transaction abort
2868 * cycles:16 //cycle count to last branch
2869 * type:4 //branch type
2870 * spec:2 //branch speculation info
2871 * new_type:4 //additional branch type
2872 * priv:3 //privilege level
2873 * reserved:31
2874 * }
2875 * }
2876 *
2877 * Avoid bswap64() the entire branch_flag.value,
2878 * as it has variable bit-field sizes. Instead the
2879 * macro takes the bit-field position/size,
2880 * swaps it based on the host endianness.
2881 */
2882 if (host_is_bigendian()) {
2883 new_val = bitfield_swap(value, 0, 1);
2884 new_val |= bitfield_swap(value, 1, 1);
2885 new_val |= bitfield_swap(value, 2, 1);
2886 new_val |= bitfield_swap(value, 3, 1);
2887 new_val |= bitfield_swap(value, 4, 16);
2888 new_val |= bitfield_swap(value, 20, 4);
2889 new_val |= bitfield_swap(value, 24, 2);
2890 new_val |= bitfield_swap(value, 26, 4);
2891 new_val |= bitfield_swap(value, 30, 3);
2892 new_val |= bitfield_swap(value, 33, 31);
2893 } else {
2894 new_val = bitfield_swap(value, 63, 1);
2895 new_val |= bitfield_swap(value, 62, 1);
2896 new_val |= bitfield_swap(value, 61, 1);
2897 new_val |= bitfield_swap(value, 60, 1);
2898 new_val |= bitfield_swap(value, 44, 16);
2899 new_val |= bitfield_swap(value, 40, 4);
2900 new_val |= bitfield_swap(value, 38, 2);
2901 new_val |= bitfield_swap(value, 34, 4);
2902 new_val |= bitfield_swap(value, 31, 3);
2903 new_val |= bitfield_swap(value, 0, 31);
2904 }
2905
2906 return new_val;
2907 }
2908
evsel__has_branch_counters(const struct evsel * evsel)2909 static inline bool evsel__has_branch_counters(const struct evsel *evsel)
2910 {
2911 struct evsel *leader = evsel__leader(evsel);
2912
2913 /* The branch counters feature only supports group */
2914 if (!leader || !evsel->evlist)
2915 return false;
2916
2917 if (evsel->evlist->nr_br_cntr < 0)
2918 evlist__update_br_cntr(evsel->evlist);
2919
2920 if (leader->br_cntr_nr > 0)
2921 return true;
2922
2923 return false;
2924 }
2925
evsel__parse_sample(struct evsel * evsel,union perf_event * event,struct perf_sample * data)2926 int evsel__parse_sample(struct evsel *evsel, union perf_event *event,
2927 struct perf_sample *data)
2928 {
2929 u64 type = evsel->core.attr.sample_type;
2930 bool swapped = evsel->needs_swap;
2931 const __u64 *array;
2932 u16 max_size = event->header.size;
2933 const void *endp = (void *)event + max_size;
2934 u64 sz;
2935
2936 /*
2937 * used for cross-endian analysis. See git commit 65014ab3
2938 * for why this goofiness is needed.
2939 */
2940 union u64_swap u;
2941
2942 memset(data, 0, sizeof(*data));
2943 data->cpu = data->pid = data->tid = -1;
2944 data->stream_id = data->id = data->time = -1ULL;
2945 data->period = evsel->core.attr.sample_period;
2946 data->cpumode = event->header.misc & PERF_RECORD_MISC_CPUMODE_MASK;
2947 data->misc = event->header.misc;
2948 data->data_src = PERF_MEM_DATA_SRC_NONE;
2949 data->vcpu = -1;
2950
2951 if (event->header.type != PERF_RECORD_SAMPLE) {
2952 if (!evsel->core.attr.sample_id_all)
2953 return 0;
2954 return perf_evsel__parse_id_sample(evsel, event, data);
2955 }
2956
2957 array = event->sample.array;
2958
2959 if (perf_event__check_size(event, evsel->sample_size))
2960 return -EFAULT;
2961
2962 if (type & PERF_SAMPLE_IDENTIFIER) {
2963 data->id = *array;
2964 array++;
2965 }
2966
2967 if (type & PERF_SAMPLE_IP) {
2968 data->ip = *array;
2969 array++;
2970 }
2971
2972 if (type & PERF_SAMPLE_TID) {
2973 u.val64 = *array;
2974 if (swapped) {
2975 /* undo swap of u64, then swap on individual u32s */
2976 u.val64 = bswap_64(u.val64);
2977 u.val32[0] = bswap_32(u.val32[0]);
2978 u.val32[1] = bswap_32(u.val32[1]);
2979 }
2980
2981 data->pid = u.val32[0];
2982 data->tid = u.val32[1];
2983 array++;
2984 }
2985
2986 if (type & PERF_SAMPLE_TIME) {
2987 data->time = *array;
2988 array++;
2989 }
2990
2991 if (type & PERF_SAMPLE_ADDR) {
2992 data->addr = *array;
2993 array++;
2994 }
2995
2996 if (type & PERF_SAMPLE_ID) {
2997 data->id = *array;
2998 array++;
2999 }
3000
3001 if (type & PERF_SAMPLE_STREAM_ID) {
3002 data->stream_id = *array;
3003 array++;
3004 }
3005
3006 if (type & PERF_SAMPLE_CPU) {
3007
3008 u.val64 = *array;
3009 if (swapped) {
3010 /* undo swap of u64, then swap on individual u32s */
3011 u.val64 = bswap_64(u.val64);
3012 u.val32[0] = bswap_32(u.val32[0]);
3013 }
3014
3015 data->cpu = u.val32[0];
3016 array++;
3017 }
3018
3019 if (type & PERF_SAMPLE_PERIOD) {
3020 data->period = *array;
3021 array++;
3022 }
3023
3024 if (type & PERF_SAMPLE_READ) {
3025 u64 read_format = evsel->core.attr.read_format;
3026
3027 OVERFLOW_CHECK_u64(array);
3028 if (read_format & PERF_FORMAT_GROUP)
3029 data->read.group.nr = *array;
3030 else
3031 data->read.one.value = *array;
3032
3033 array++;
3034
3035 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) {
3036 OVERFLOW_CHECK_u64(array);
3037 data->read.time_enabled = *array;
3038 array++;
3039 }
3040
3041 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) {
3042 OVERFLOW_CHECK_u64(array);
3043 data->read.time_running = *array;
3044 array++;
3045 }
3046
3047 /* PERF_FORMAT_ID is forced for PERF_SAMPLE_READ */
3048 if (read_format & PERF_FORMAT_GROUP) {
3049 const u64 max_group_nr = UINT64_MAX /
3050 sizeof(struct sample_read_value);
3051
3052 if (data->read.group.nr > max_group_nr)
3053 return -EFAULT;
3054
3055 sz = data->read.group.nr * sample_read_value_size(read_format);
3056 OVERFLOW_CHECK(array, sz, max_size);
3057 data->read.group.values =
3058 (struct sample_read_value *)array;
3059 array = (void *)array + sz;
3060 } else {
3061 OVERFLOW_CHECK_u64(array);
3062 data->read.one.id = *array;
3063 array++;
3064
3065 if (read_format & PERF_FORMAT_LOST) {
3066 OVERFLOW_CHECK_u64(array);
3067 data->read.one.lost = *array;
3068 array++;
3069 }
3070 }
3071 }
3072
3073 if (type & PERF_SAMPLE_CALLCHAIN) {
3074 const u64 max_callchain_nr = UINT64_MAX / sizeof(u64);
3075
3076 OVERFLOW_CHECK_u64(array);
3077 data->callchain = (struct ip_callchain *)array++;
3078 if (data->callchain->nr > max_callchain_nr)
3079 return -EFAULT;
3080 sz = data->callchain->nr * sizeof(u64);
3081 OVERFLOW_CHECK(array, sz, max_size);
3082 array = (void *)array + sz;
3083 }
3084
3085 if (type & PERF_SAMPLE_RAW) {
3086 OVERFLOW_CHECK_u64(array);
3087 u.val64 = *array;
3088
3089 /*
3090 * Undo swap of u64, then swap on individual u32s,
3091 * get the size of the raw area and undo all of the
3092 * swap. The pevent interface handles endianness by
3093 * itself.
3094 */
3095 if (swapped) {
3096 u.val64 = bswap_64(u.val64);
3097 u.val32[0] = bswap_32(u.val32[0]);
3098 u.val32[1] = bswap_32(u.val32[1]);
3099 }
3100 data->raw_size = u.val32[0];
3101
3102 /*
3103 * The raw data is aligned on 64bits including the
3104 * u32 size, so it's safe to use mem_bswap_64.
3105 */
3106 if (swapped)
3107 mem_bswap_64((void *) array, data->raw_size);
3108
3109 array = (void *)array + sizeof(u32);
3110
3111 OVERFLOW_CHECK(array, data->raw_size, max_size);
3112 data->raw_data = (void *)array;
3113 array = (void *)array + data->raw_size;
3114 }
3115
3116 if (type & PERF_SAMPLE_BRANCH_STACK) {
3117 const u64 max_branch_nr = UINT64_MAX /
3118 sizeof(struct branch_entry);
3119 struct branch_entry *e;
3120 unsigned int i;
3121
3122 OVERFLOW_CHECK_u64(array);
3123 data->branch_stack = (struct branch_stack *)array++;
3124
3125 if (data->branch_stack->nr > max_branch_nr)
3126 return -EFAULT;
3127
3128 sz = data->branch_stack->nr * sizeof(struct branch_entry);
3129 if (evsel__has_branch_hw_idx(evsel)) {
3130 sz += sizeof(u64);
3131 e = &data->branch_stack->entries[0];
3132 } else {
3133 data->no_hw_idx = true;
3134 /*
3135 * if the PERF_SAMPLE_BRANCH_HW_INDEX is not applied,
3136 * only nr and entries[] will be output by kernel.
3137 */
3138 e = (struct branch_entry *)&data->branch_stack->hw_idx;
3139 }
3140
3141 if (swapped) {
3142 /*
3143 * struct branch_flag does not have endian
3144 * specific bit field definition. And bswap
3145 * will not resolve the issue, since these
3146 * are bit fields.
3147 *
3148 * evsel__bitfield_swap_branch_flags() uses a
3149 * bitfield_swap macro to swap the bit position
3150 * based on the host endians.
3151 */
3152 for (i = 0; i < data->branch_stack->nr; i++, e++)
3153 e->flags.value = evsel__bitfield_swap_branch_flags(e->flags.value);
3154 }
3155
3156 OVERFLOW_CHECK(array, sz, max_size);
3157 array = (void *)array + sz;
3158
3159 if (evsel__has_branch_counters(evsel)) {
3160 data->branch_stack_cntr = (u64 *)array;
3161 sz = data->branch_stack->nr * sizeof(u64);
3162
3163 OVERFLOW_CHECK(array, sz, max_size);
3164 array = (void *)array + sz;
3165 }
3166 }
3167
3168 if (type & PERF_SAMPLE_REGS_USER) {
3169 struct regs_dump *regs = perf_sample__user_regs(data);
3170
3171 OVERFLOW_CHECK_u64(array);
3172 regs->abi = *array;
3173 array++;
3174
3175 if (regs->abi) {
3176 u64 mask = evsel->core.attr.sample_regs_user;
3177
3178 sz = hweight64(mask) * sizeof(u64);
3179 OVERFLOW_CHECK(array, sz, max_size);
3180 regs->mask = mask;
3181 regs->regs = (u64 *)array;
3182 array = (void *)array + sz;
3183 }
3184 }
3185
3186 if (type & PERF_SAMPLE_STACK_USER) {
3187 OVERFLOW_CHECK_u64(array);
3188 sz = *array++;
3189
3190 data->user_stack.offset = ((char *)(array - 1)
3191 - (char *) event);
3192
3193 if (!sz) {
3194 data->user_stack.size = 0;
3195 } else {
3196 OVERFLOW_CHECK(array, sz, max_size);
3197 data->user_stack.data = (char *)array;
3198 array = (void *)array + sz;
3199 OVERFLOW_CHECK_u64(array);
3200 data->user_stack.size = *array++;
3201 if (WARN_ONCE(data->user_stack.size > sz,
3202 "user stack dump failure\n"))
3203 return -EFAULT;
3204 }
3205 }
3206
3207 if (type & PERF_SAMPLE_WEIGHT_TYPE) {
3208 OVERFLOW_CHECK_u64(array);
3209 arch_perf_parse_sample_weight(data, array, type);
3210 array++;
3211 }
3212
3213 if (type & PERF_SAMPLE_DATA_SRC) {
3214 OVERFLOW_CHECK_u64(array);
3215 data->data_src = *array;
3216 array++;
3217 }
3218
3219 if (type & PERF_SAMPLE_TRANSACTION) {
3220 OVERFLOW_CHECK_u64(array);
3221 data->transaction = *array;
3222 array++;
3223 }
3224
3225 if (type & PERF_SAMPLE_REGS_INTR) {
3226 struct regs_dump *regs = perf_sample__intr_regs(data);
3227
3228 OVERFLOW_CHECK_u64(array);
3229 regs->abi = *array;
3230 array++;
3231
3232 if (regs->abi != PERF_SAMPLE_REGS_ABI_NONE) {
3233 u64 mask = evsel->core.attr.sample_regs_intr;
3234
3235 sz = hweight64(mask) * sizeof(u64);
3236 OVERFLOW_CHECK(array, sz, max_size);
3237 regs->mask = mask;
3238 regs->regs = (u64 *)array;
3239 array = (void *)array + sz;
3240 }
3241 }
3242
3243 data->phys_addr = 0;
3244 if (type & PERF_SAMPLE_PHYS_ADDR) {
3245 data->phys_addr = *array;
3246 array++;
3247 }
3248
3249 data->cgroup = 0;
3250 if (type & PERF_SAMPLE_CGROUP) {
3251 data->cgroup = *array;
3252 array++;
3253 }
3254
3255 data->data_page_size = 0;
3256 if (type & PERF_SAMPLE_DATA_PAGE_SIZE) {
3257 data->data_page_size = *array;
3258 array++;
3259 }
3260
3261 data->code_page_size = 0;
3262 if (type & PERF_SAMPLE_CODE_PAGE_SIZE) {
3263 data->code_page_size = *array;
3264 array++;
3265 }
3266
3267 if (type & PERF_SAMPLE_AUX) {
3268 OVERFLOW_CHECK_u64(array);
3269 sz = *array++;
3270
3271 OVERFLOW_CHECK(array, sz, max_size);
3272 /* Undo swap of data */
3273 if (swapped)
3274 mem_bswap_64((char *)array, sz);
3275 data->aux_sample.size = sz;
3276 data->aux_sample.data = (char *)array;
3277 array = (void *)array + sz;
3278 }
3279
3280 return 0;
3281 }
3282
evsel__parse_sample_timestamp(struct evsel * evsel,union perf_event * event,u64 * timestamp)3283 int evsel__parse_sample_timestamp(struct evsel *evsel, union perf_event *event,
3284 u64 *timestamp)
3285 {
3286 u64 type = evsel->core.attr.sample_type;
3287 const __u64 *array;
3288
3289 if (!(type & PERF_SAMPLE_TIME))
3290 return -1;
3291
3292 if (event->header.type != PERF_RECORD_SAMPLE) {
3293 struct perf_sample data = {
3294 .time = -1ULL,
3295 };
3296
3297 if (!evsel->core.attr.sample_id_all)
3298 return -1;
3299 if (perf_evsel__parse_id_sample(evsel, event, &data))
3300 return -1;
3301
3302 *timestamp = data.time;
3303 return 0;
3304 }
3305
3306 array = event->sample.array;
3307
3308 if (perf_event__check_size(event, evsel->sample_size))
3309 return -EFAULT;
3310
3311 if (type & PERF_SAMPLE_IDENTIFIER)
3312 array++;
3313
3314 if (type & PERF_SAMPLE_IP)
3315 array++;
3316
3317 if (type & PERF_SAMPLE_TID)
3318 array++;
3319
3320 if (type & PERF_SAMPLE_TIME)
3321 *timestamp = *array;
3322
3323 return 0;
3324 }
3325
evsel__id_hdr_size(const struct evsel * evsel)3326 u16 evsel__id_hdr_size(const struct evsel *evsel)
3327 {
3328 u64 sample_type = evsel->core.attr.sample_type;
3329 u16 size = 0;
3330
3331 if (sample_type & PERF_SAMPLE_TID)
3332 size += sizeof(u64);
3333
3334 if (sample_type & PERF_SAMPLE_TIME)
3335 size += sizeof(u64);
3336
3337 if (sample_type & PERF_SAMPLE_ID)
3338 size += sizeof(u64);
3339
3340 if (sample_type & PERF_SAMPLE_STREAM_ID)
3341 size += sizeof(u64);
3342
3343 if (sample_type & PERF_SAMPLE_CPU)
3344 size += sizeof(u64);
3345
3346 if (sample_type & PERF_SAMPLE_IDENTIFIER)
3347 size += sizeof(u64);
3348
3349 return size;
3350 }
3351
3352 #ifdef HAVE_LIBTRACEEVENT
evsel__field(struct evsel * evsel,const char * name)3353 struct tep_format_field *evsel__field(struct evsel *evsel, const char *name)
3354 {
3355 struct tep_event *tp_format = evsel__tp_format(evsel);
3356
3357 return tp_format ? tep_find_field(tp_format, name) : NULL;
3358 }
3359
evsel__common_field(struct evsel * evsel,const char * name)3360 struct tep_format_field *evsel__common_field(struct evsel *evsel, const char *name)
3361 {
3362 struct tep_event *tp_format = evsel__tp_format(evsel);
3363
3364 return tp_format ? tep_find_common_field(tp_format, name) : NULL;
3365 }
3366
evsel__rawptr(struct evsel * evsel,struct perf_sample * sample,const char * name)3367 void *evsel__rawptr(struct evsel *evsel, struct perf_sample *sample, const char *name)
3368 {
3369 struct tep_format_field *field = evsel__field(evsel, name);
3370 int offset;
3371
3372 if (!field)
3373 return NULL;
3374
3375 offset = field->offset;
3376
3377 if (field->flags & TEP_FIELD_IS_DYNAMIC) {
3378 offset = *(int *)(sample->raw_data + field->offset);
3379 offset &= 0xffff;
3380 if (tep_field_is_relative(field->flags))
3381 offset += field->offset + field->size;
3382 }
3383
3384 return sample->raw_data + offset;
3385 }
3386
format_field__intval(struct tep_format_field * field,struct perf_sample * sample,bool needs_swap)3387 u64 format_field__intval(struct tep_format_field *field, struct perf_sample *sample,
3388 bool needs_swap)
3389 {
3390 u64 value;
3391 void *ptr = sample->raw_data + field->offset;
3392
3393 switch (field->size) {
3394 case 1:
3395 return *(u8 *)ptr;
3396 case 2:
3397 value = *(u16 *)ptr;
3398 break;
3399 case 4:
3400 value = *(u32 *)ptr;
3401 break;
3402 case 8:
3403 memcpy(&value, ptr, sizeof(u64));
3404 break;
3405 default:
3406 return 0;
3407 }
3408
3409 if (!needs_swap)
3410 return value;
3411
3412 switch (field->size) {
3413 case 2:
3414 return bswap_16(value);
3415 case 4:
3416 return bswap_32(value);
3417 case 8:
3418 return bswap_64(value);
3419 default:
3420 return 0;
3421 }
3422
3423 return 0;
3424 }
3425
evsel__intval(struct evsel * evsel,struct perf_sample * sample,const char * name)3426 u64 evsel__intval(struct evsel *evsel, struct perf_sample *sample, const char *name)
3427 {
3428 struct tep_format_field *field = evsel__field(evsel, name);
3429
3430 return field ? format_field__intval(field, sample, evsel->needs_swap) : 0;
3431 }
3432
evsel__intval_common(struct evsel * evsel,struct perf_sample * sample,const char * name)3433 u64 evsel__intval_common(struct evsel *evsel, struct perf_sample *sample, const char *name)
3434 {
3435 struct tep_format_field *field = evsel__common_field(evsel, name);
3436
3437 return field ? format_field__intval(field, sample, evsel->needs_swap) : 0;
3438 }
3439
evsel__taskstate(struct evsel * evsel,struct perf_sample * sample,const char * name)3440 char evsel__taskstate(struct evsel *evsel, struct perf_sample *sample, const char *name)
3441 {
3442 static struct tep_format_field *prev_state_field;
3443 static const char *states;
3444 struct tep_format_field *field;
3445 unsigned long long val;
3446 unsigned int bit;
3447 char state = '?'; /* '?' denotes unknown task state */
3448
3449 field = evsel__field(evsel, name);
3450
3451 if (!field)
3452 return state;
3453
3454 if (!states || field != prev_state_field) {
3455 states = parse_task_states(field);
3456 if (!states)
3457 return state;
3458 prev_state_field = field;
3459 }
3460
3461 /*
3462 * Note since the kernel exposes TASK_REPORT_MAX to userspace
3463 * to denote the 'preempted' state, we might as welll report
3464 * 'R' for this case, which make senses to users as well.
3465 *
3466 * We can change this if we have a good reason in the future.
3467 */
3468 val = evsel__intval(evsel, sample, name);
3469 bit = val ? ffs(val) : 0;
3470 state = (!bit || bit > strlen(states)) ? 'R' : states[bit-1];
3471 return state;
3472 }
3473 #endif
3474
evsel__fallback(struct evsel * evsel,struct target * target,int err,char * msg,size_t msgsize)3475 bool evsel__fallback(struct evsel *evsel, struct target *target, int err,
3476 char *msg, size_t msgsize)
3477 {
3478 int paranoid;
3479
3480 if ((err == ENOENT || err == ENXIO || err == ENODEV) &&
3481 evsel->core.attr.type == PERF_TYPE_HARDWARE &&
3482 evsel->core.attr.config == PERF_COUNT_HW_CPU_CYCLES) {
3483 /*
3484 * If it's cycles then fall back to hrtimer based cpu-clock sw
3485 * counter, which is always available even if no PMU support.
3486 *
3487 * PPC returns ENXIO until 2.6.37 (behavior changed with commit
3488 * b0a873e).
3489 */
3490 evsel->core.attr.type = PERF_TYPE_SOFTWARE;
3491 evsel->core.attr.config = target__has_cpu(target)
3492 ? PERF_COUNT_SW_CPU_CLOCK
3493 : PERF_COUNT_SW_TASK_CLOCK;
3494 scnprintf(msg, msgsize,
3495 "The cycles event is not supported, trying to fall back to %s",
3496 target__has_cpu(target) ? "cpu-clock" : "task-clock");
3497
3498 zfree(&evsel->name);
3499 return true;
3500 } else if (err == EACCES && !evsel->core.attr.exclude_kernel &&
3501 (paranoid = perf_event_paranoid()) > 1) {
3502 const char *name = evsel__name(evsel);
3503 char *new_name;
3504 const char *sep = ":";
3505
3506 /* If event has exclude user then don't exclude kernel. */
3507 if (evsel->core.attr.exclude_user)
3508 return false;
3509
3510 /* Is there already the separator in the name. */
3511 if (strchr(name, '/') ||
3512 (strchr(name, ':') && !evsel->is_libpfm_event))
3513 sep = "";
3514
3515 if (asprintf(&new_name, "%s%su", name, sep) < 0)
3516 return false;
3517
3518 free(evsel->name);
3519 evsel->name = new_name;
3520 scnprintf(msg, msgsize, "kernel.perf_event_paranoid=%d, trying "
3521 "to fall back to excluding kernel and hypervisor "
3522 " samples", paranoid);
3523 evsel->core.attr.exclude_kernel = 1;
3524 evsel->core.attr.exclude_hv = 1;
3525
3526 return true;
3527 } else if (err == EOPNOTSUPP && !evsel->core.attr.exclude_guest &&
3528 !evsel->exclude_GH) {
3529 const char *name = evsel__name(evsel);
3530 char *new_name;
3531 const char *sep = ":";
3532
3533 /* Is there already the separator in the name. */
3534 if (strchr(name, '/') ||
3535 (strchr(name, ':') && !evsel->is_libpfm_event))
3536 sep = "";
3537
3538 if (asprintf(&new_name, "%s%sH", name, sep) < 0)
3539 return false;
3540
3541 free(evsel->name);
3542 evsel->name = new_name;
3543 /* Apple M1 requires exclude_guest */
3544 scnprintf(msg, msgsize, "trying to fall back to excluding guest samples");
3545 evsel->core.attr.exclude_guest = 1;
3546
3547 return true;
3548 }
3549
3550 return false;
3551 }
3552
find_process(const char * name)3553 static bool find_process(const char *name)
3554 {
3555 size_t len = strlen(name);
3556 DIR *dir;
3557 struct dirent *d;
3558 int ret = -1;
3559
3560 dir = opendir(procfs__mountpoint());
3561 if (!dir)
3562 return false;
3563
3564 /* Walk through the directory. */
3565 while (ret && (d = readdir(dir)) != NULL) {
3566 char path[PATH_MAX];
3567 char *data;
3568 size_t size;
3569
3570 if ((d->d_type != DT_DIR) ||
3571 !strcmp(".", d->d_name) ||
3572 !strcmp("..", d->d_name))
3573 continue;
3574
3575 scnprintf(path, sizeof(path), "%s/%s/comm",
3576 procfs__mountpoint(), d->d_name);
3577
3578 if (filename__read_str(path, &data, &size))
3579 continue;
3580
3581 ret = strncmp(name, data, len);
3582 free(data);
3583 }
3584
3585 closedir(dir);
3586 return ret ? false : true;
3587 }
3588
dump_perf_event_processes(char * msg,size_t size)3589 static int dump_perf_event_processes(char *msg, size_t size)
3590 {
3591 DIR *proc_dir;
3592 struct dirent *proc_entry;
3593 int printed = 0;
3594
3595 proc_dir = opendir(procfs__mountpoint());
3596 if (!proc_dir)
3597 return 0;
3598
3599 /* Walk through the /proc directory. */
3600 while ((proc_entry = readdir(proc_dir)) != NULL) {
3601 char buf[256];
3602 DIR *fd_dir;
3603 struct dirent *fd_entry;
3604 int fd_dir_fd;
3605
3606 if (proc_entry->d_type != DT_DIR ||
3607 !isdigit(proc_entry->d_name[0]) ||
3608 strlen(proc_entry->d_name) > sizeof(buf) - 4)
3609 continue;
3610
3611 scnprintf(buf, sizeof(buf), "%s/fd", proc_entry->d_name);
3612 fd_dir_fd = openat(dirfd(proc_dir), buf, O_DIRECTORY);
3613 if (fd_dir_fd == -1)
3614 continue;
3615 fd_dir = fdopendir(fd_dir_fd);
3616 if (!fd_dir) {
3617 close(fd_dir_fd);
3618 continue;
3619 }
3620 while ((fd_entry = readdir(fd_dir)) != NULL) {
3621 ssize_t link_size;
3622
3623 if (fd_entry->d_type != DT_LNK)
3624 continue;
3625 link_size = readlinkat(fd_dir_fd, fd_entry->d_name, buf, sizeof(buf));
3626 if (link_size < 0)
3627 continue;
3628 /* Take care as readlink doesn't null terminate the string. */
3629 if (!strncmp(buf, "anon_inode:[perf_event]", link_size)) {
3630 int cmdline_fd;
3631 ssize_t cmdline_size;
3632
3633 scnprintf(buf, sizeof(buf), "%s/cmdline", proc_entry->d_name);
3634 cmdline_fd = openat(dirfd(proc_dir), buf, O_RDONLY);
3635 if (cmdline_fd == -1)
3636 continue;
3637 cmdline_size = read(cmdline_fd, buf, sizeof(buf) - 1);
3638 close(cmdline_fd);
3639 if (cmdline_size < 0)
3640 continue;
3641 buf[cmdline_size] = '\0';
3642 for (ssize_t i = 0; i < cmdline_size; i++) {
3643 if (buf[i] == '\0')
3644 buf[i] = ' ';
3645 }
3646
3647 if (printed == 0)
3648 printed += scnprintf(msg, size, "Possible processes:\n");
3649
3650 printed += scnprintf(msg + printed, size - printed,
3651 "%s %s\n", proc_entry->d_name, buf);
3652 break;
3653 }
3654 }
3655 closedir(fd_dir);
3656 }
3657 closedir(proc_dir);
3658 return printed;
3659 }
3660
arch_evsel__open_strerror(struct evsel * evsel __maybe_unused,char * msg __maybe_unused,size_t size __maybe_unused)3661 int __weak arch_evsel__open_strerror(struct evsel *evsel __maybe_unused,
3662 char *msg __maybe_unused,
3663 size_t size __maybe_unused)
3664 {
3665 return 0;
3666 }
3667
evsel__open_strerror(struct evsel * evsel,struct target * target,int err,char * msg,size_t size)3668 int evsel__open_strerror(struct evsel *evsel, struct target *target,
3669 int err, char *msg, size_t size)
3670 {
3671 char sbuf[STRERR_BUFSIZE];
3672 int printed = 0, enforced = 0;
3673 int ret;
3674
3675 switch (err) {
3676 case EPERM:
3677 case EACCES:
3678 printed += scnprintf(msg + printed, size - printed,
3679 "Access to performance monitoring and observability operations is limited.\n");
3680
3681 if (!sysfs__read_int("fs/selinux/enforce", &enforced)) {
3682 if (enforced) {
3683 printed += scnprintf(msg + printed, size - printed,
3684 "Enforced MAC policy settings (SELinux) can limit access to performance\n"
3685 "monitoring and observability operations. Inspect system audit records for\n"
3686 "more perf_event access control information and adjusting the policy.\n");
3687 }
3688 }
3689
3690 if (err == EPERM)
3691 printed += scnprintf(msg, size,
3692 "No permission to enable %s event.\n\n", evsel__name(evsel));
3693
3694 return printed + scnprintf(msg + printed, size - printed,
3695 "Consider adjusting /proc/sys/kernel/perf_event_paranoid setting to open\n"
3696 "access to performance monitoring and observability operations for processes\n"
3697 "without CAP_PERFMON, CAP_SYS_PTRACE or CAP_SYS_ADMIN Linux capability.\n"
3698 "More information can be found at 'Perf events and tool security' document:\n"
3699 "https://www.kernel.org/doc/html/latest/admin-guide/perf-security.html\n"
3700 "perf_event_paranoid setting is %d:\n"
3701 " -1: Allow use of (almost) all events by all users\n"
3702 " Ignore mlock limit after perf_event_mlock_kb without CAP_IPC_LOCK\n"
3703 ">= 0: Disallow raw and ftrace function tracepoint access\n"
3704 ">= 1: Disallow CPU event access\n"
3705 ">= 2: Disallow kernel profiling\n"
3706 "To make the adjusted perf_event_paranoid setting permanent preserve it\n"
3707 "in /etc/sysctl.conf (e.g. kernel.perf_event_paranoid = <setting>)",
3708 perf_event_paranoid());
3709 case ENOENT:
3710 return scnprintf(msg, size, "The %s event is not supported.", evsel__name(evsel));
3711 case EMFILE:
3712 return scnprintf(msg, size, "%s",
3713 "Too many events are opened.\n"
3714 "Probably the maximum number of open file descriptors has been reached.\n"
3715 "Hint: Try again after reducing the number of events.\n"
3716 "Hint: Try increasing the limit with 'ulimit -n <limit>'");
3717 case ENOMEM:
3718 if (evsel__has_callchain(evsel) &&
3719 access("/proc/sys/kernel/perf_event_max_stack", F_OK) == 0)
3720 return scnprintf(msg, size,
3721 "Not enough memory to setup event with callchain.\n"
3722 "Hint: Try tweaking /proc/sys/kernel/perf_event_max_stack\n"
3723 "Hint: Current value: %d", sysctl__max_stack());
3724 break;
3725 case ENODEV:
3726 if (target->cpu_list)
3727 return scnprintf(msg, size, "%s",
3728 "No such device - did you specify an out-of-range profile CPU?");
3729 break;
3730 case EOPNOTSUPP:
3731 if (evsel->core.attr.sample_type & PERF_SAMPLE_BRANCH_STACK)
3732 return scnprintf(msg, size,
3733 "%s: PMU Hardware or event type doesn't support branch stack sampling.",
3734 evsel__name(evsel));
3735 if (evsel->core.attr.aux_output)
3736 return scnprintf(msg, size,
3737 "%s: PMU Hardware doesn't support 'aux_output' feature",
3738 evsel__name(evsel));
3739 if (evsel->core.attr.aux_action)
3740 return scnprintf(msg, size,
3741 "%s: PMU Hardware doesn't support 'aux_action' feature",
3742 evsel__name(evsel));
3743 if (evsel->core.attr.sample_period != 0)
3744 return scnprintf(msg, size,
3745 "%s: PMU Hardware doesn't support sampling/overflow-interrupts. Try 'perf stat'",
3746 evsel__name(evsel));
3747 if (evsel->core.attr.precise_ip)
3748 return scnprintf(msg, size, "%s",
3749 "\'precise\' request may not be supported. Try removing 'p' modifier.");
3750 #if defined(__i386__) || defined(__x86_64__)
3751 if (evsel->core.attr.type == PERF_TYPE_HARDWARE)
3752 return scnprintf(msg, size, "%s",
3753 "No hardware sampling interrupt available.\n");
3754 #endif
3755 break;
3756 case EBUSY:
3757 if (find_process("oprofiled"))
3758 return scnprintf(msg, size,
3759 "The PMU counters are busy/taken by another profiler.\n"
3760 "We found oprofile daemon running, please stop it and try again.");
3761 printed += scnprintf(
3762 msg, size,
3763 "The PMU %s counters are busy and in use by another process.\n",
3764 evsel->pmu ? evsel->pmu->name : "");
3765 return printed + dump_perf_event_processes(msg + printed, size - printed);
3766 break;
3767 case EINVAL:
3768 if (evsel->core.attr.sample_type & PERF_SAMPLE_CODE_PAGE_SIZE && perf_missing_features.code_page_size)
3769 return scnprintf(msg, size, "Asking for the code page size isn't supported by this kernel.");
3770 if (evsel->core.attr.sample_type & PERF_SAMPLE_DATA_PAGE_SIZE && perf_missing_features.data_page_size)
3771 return scnprintf(msg, size, "Asking for the data page size isn't supported by this kernel.");
3772 if (evsel->core.attr.write_backward && perf_missing_features.write_backward)
3773 return scnprintf(msg, size, "Reading from overwrite event is not supported by this kernel.");
3774 if (perf_missing_features.clockid)
3775 return scnprintf(msg, size, "clockid feature not supported.");
3776 if (perf_missing_features.clockid_wrong)
3777 return scnprintf(msg, size, "wrong clockid (%d).", clockid);
3778 if (perf_missing_features.aux_action)
3779 return scnprintf(msg, size, "The 'aux_action' feature is not supported, update the kernel.");
3780 if (perf_missing_features.aux_output)
3781 return scnprintf(msg, size, "The 'aux_output' feature is not supported, update the kernel.");
3782 if (!target__has_cpu(target))
3783 return scnprintf(msg, size,
3784 "Invalid event (%s) in per-thread mode, enable system wide with '-a'.",
3785 evsel__name(evsel));
3786
3787 break;
3788 case ENODATA:
3789 return scnprintf(msg, size, "Cannot collect data source with the load latency event alone. "
3790 "Please add an auxiliary event in front of the load latency event.");
3791 default:
3792 break;
3793 }
3794
3795 ret = arch_evsel__open_strerror(evsel, msg, size);
3796 if (ret)
3797 return ret;
3798
3799 return scnprintf(msg, size,
3800 "The sys_perf_event_open() syscall returned with %d (%s) for event (%s).\n"
3801 "\"dmesg | grep -i perf\" may provide additional information.\n",
3802 err, str_error_r(err, sbuf, sizeof(sbuf)), evsel__name(evsel));
3803 }
3804
evsel__env(struct evsel * evsel)3805 struct perf_env *evsel__env(struct evsel *evsel)
3806 {
3807 if (evsel && evsel->evlist && evsel->evlist->env)
3808 return evsel->evlist->env;
3809 return &perf_env;
3810 }
3811
store_evsel_ids(struct evsel * evsel,struct evlist * evlist)3812 static int store_evsel_ids(struct evsel *evsel, struct evlist *evlist)
3813 {
3814 int cpu_map_idx, thread;
3815
3816 if (evsel__is_retire_lat(evsel))
3817 return 0;
3818
3819 for (cpu_map_idx = 0; cpu_map_idx < xyarray__max_x(evsel->core.fd); cpu_map_idx++) {
3820 for (thread = 0; thread < xyarray__max_y(evsel->core.fd);
3821 thread++) {
3822 int fd = FD(evsel, cpu_map_idx, thread);
3823
3824 if (perf_evlist__id_add_fd(&evlist->core, &evsel->core,
3825 cpu_map_idx, thread, fd) < 0)
3826 return -1;
3827 }
3828 }
3829
3830 return 0;
3831 }
3832
evsel__store_ids(struct evsel * evsel,struct evlist * evlist)3833 int evsel__store_ids(struct evsel *evsel, struct evlist *evlist)
3834 {
3835 struct perf_cpu_map *cpus = evsel->core.cpus;
3836 struct perf_thread_map *threads = evsel->core.threads;
3837
3838 if (perf_evsel__alloc_id(&evsel->core, perf_cpu_map__nr(cpus), threads->nr))
3839 return -ENOMEM;
3840
3841 return store_evsel_ids(evsel, evlist);
3842 }
3843
evsel__zero_per_pkg(struct evsel * evsel)3844 void evsel__zero_per_pkg(struct evsel *evsel)
3845 {
3846 struct hashmap_entry *cur;
3847 size_t bkt;
3848
3849 if (evsel->per_pkg_mask) {
3850 hashmap__for_each_entry(evsel->per_pkg_mask, cur, bkt)
3851 zfree(&cur->pkey);
3852
3853 hashmap__clear(evsel->per_pkg_mask);
3854 }
3855 }
3856
3857 /**
3858 * evsel__is_hybrid - does the evsel have a known PMU that is hybrid. Note, this
3859 * will be false on hybrid systems for hardware and legacy
3860 * cache events.
3861 */
evsel__is_hybrid(const struct evsel * evsel)3862 bool evsel__is_hybrid(const struct evsel *evsel)
3863 {
3864 if (!evsel->core.is_pmu_core)
3865 return false;
3866
3867 return perf_pmus__num_core_pmus() > 1;
3868 }
3869
evsel__leader(const struct evsel * evsel)3870 struct evsel *evsel__leader(const struct evsel *evsel)
3871 {
3872 return container_of(evsel->core.leader, struct evsel, core);
3873 }
3874
evsel__has_leader(struct evsel * evsel,struct evsel * leader)3875 bool evsel__has_leader(struct evsel *evsel, struct evsel *leader)
3876 {
3877 return evsel->core.leader == &leader->core;
3878 }
3879
evsel__is_leader(struct evsel * evsel)3880 bool evsel__is_leader(struct evsel *evsel)
3881 {
3882 return evsel__has_leader(evsel, evsel);
3883 }
3884
evsel__set_leader(struct evsel * evsel,struct evsel * leader)3885 void evsel__set_leader(struct evsel *evsel, struct evsel *leader)
3886 {
3887 evsel->core.leader = &leader->core;
3888 }
3889
evsel__source_count(const struct evsel * evsel)3890 int evsel__source_count(const struct evsel *evsel)
3891 {
3892 struct evsel *pos;
3893 int count = 0;
3894
3895 evlist__for_each_entry(evsel->evlist, pos) {
3896 if (pos->metric_leader == evsel)
3897 count++;
3898 }
3899 return count;
3900 }
3901
arch_evsel__must_be_in_group(const struct evsel * evsel __maybe_unused)3902 bool __weak arch_evsel__must_be_in_group(const struct evsel *evsel __maybe_unused)
3903 {
3904 return false;
3905 }
3906
3907 /*
3908 * Remove an event from a given group (leader).
3909 * Some events, e.g., perf metrics Topdown events,
3910 * must always be grouped. Ignore the events.
3911 */
evsel__remove_from_group(struct evsel * evsel,struct evsel * leader)3912 void evsel__remove_from_group(struct evsel *evsel, struct evsel *leader)
3913 {
3914 if (!arch_evsel__must_be_in_group(evsel) && evsel != leader) {
3915 evsel__set_leader(evsel, evsel);
3916 evsel->core.nr_members = 0;
3917 leader->core.nr_members--;
3918 }
3919 }
3920