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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/tools/perf/builtin-top.c
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1
// SPDX-License-Identifier: GPL-2.0-only
2
/*
3
* builtin-top.c
4
*
5
* Builtin top command: Display a continuously updated profile of
6
* any workload, CPU or specific PID.
7
*
8
* Copyright (C) 2008, Red Hat Inc, Ingo Molnar <[email protected]>
9
* 2011, Red Hat Inc, Arnaldo Carvalho de Melo <[email protected]>
10
*
11
* Improvements and fixes by:
12
*
13
* Arjan van de Ven <[email protected]>
14
* Yanmin Zhang <[email protected]>
15
* Wu Fengguang <[email protected]>
16
* Mike Galbraith <[email protected]>
17
* Paul Mackerras <[email protected]>
18
*/
19
#include "builtin.h"
20
21
#include "perf.h"
22
23
#include "util/annotate.h"
24
#include "util/bpf-event.h"
25
#include "util/cgroup.h"
26
#include "util/config.h"
27
#include "util/color.h"
28
#include "util/dso.h"
29
#include "util/evlist.h"
30
#include "util/evsel.h"
31
#include "util/evsel_config.h"
32
#include "util/event.h"
33
#include "util/machine.h"
34
#include "util/map.h"
35
#include "util/mmap.h"
36
#include "util/session.h"
37
#include "util/thread.h"
38
#include "util/stat.h"
39
#include "util/symbol.h"
40
#include "util/synthetic-events.h"
41
#include "util/top.h"
42
#include "util/util.h"
43
#include <linux/rbtree.h>
44
#include <subcmd/parse-options.h>
45
#include "util/parse-events.h"
46
#include "util/callchain.h"
47
#include "util/cpumap.h"
48
#include "util/sort.h"
49
#include "util/string2.h"
50
#include "util/term.h"
51
#include "util/intlist.h"
52
#include "util/parse-branch-options.h"
53
#include "arch/common.h"
54
#include "ui/ui.h"
55
56
#include "util/debug.h"
57
#include "util/ordered-events.h"
58
#include "util/pfm.h"
59
60
#include <assert.h>
61
#include <elf.h>
62
#include <fcntl.h>
63
64
#include <stdio.h>
65
#include <termios.h>
66
#include <unistd.h>
67
#include <inttypes.h>
68
69
#include <errno.h>
70
#include <time.h>
71
#include <sched.h>
72
#include <signal.h>
73
74
#include <sys/syscall.h>
75
#include <sys/ioctl.h>
76
#include <poll.h>
77
#include <sys/prctl.h>
78
#include <sys/wait.h>
79
#include <sys/uio.h>
80
#include <sys/utsname.h>
81
#include <sys/mman.h>
82
83
#include <linux/stringify.h>
84
#include <linux/time64.h>
85
#include <linux/types.h>
86
#include <linux/err.h>
87
88
#include <linux/ctype.h>
89
#include <perf/mmap.h>
90
91
static volatile sig_atomic_t done;
92
static volatile sig_atomic_t resize;
93
94
#define HEADER_LINE_NR 5
95
96
static void perf_top__update_print_entries(struct perf_top *top)
97
{
98
top->print_entries = top->winsize.ws_row - HEADER_LINE_NR;
99
}
100
101
static void winch_sig(int sig __maybe_unused)
102
{
103
resize = 1;
104
}
105
106
static void perf_top__resize(struct perf_top *top)
107
{
108
get_term_dimensions(&top->winsize);
109
perf_top__update_print_entries(top);
110
}
111
112
static int perf_top__parse_source(struct perf_top *top, struct hist_entry *he)
113
{
114
struct evsel *evsel;
115
struct symbol *sym;
116
struct annotation *notes;
117
struct map *map;
118
struct dso *dso;
119
int err = -1;
120
121
if (!he || !he->ms.sym)
122
return -1;
123
124
evsel = hists_to_evsel(he->hists);
125
126
sym = he->ms.sym;
127
map = he->ms.map;
128
dso = map__dso(map);
129
130
/*
131
* We can't annotate with just /proc/kallsyms
132
*/
133
if (dso__symtab_type(dso) == DSO_BINARY_TYPE__KALLSYMS && !dso__is_kcore(dso)) {
134
pr_err("Can't annotate %s: No vmlinux file was found in the "
135
"path\n", sym->name);
136
sleep(1);
137
return -1;
138
}
139
140
notes = symbol__annotation(sym);
141
annotation__lock(notes);
142
143
if (!symbol__hists(sym, top->evlist->core.nr_entries)) {
144
annotation__unlock(notes);
145
pr_err("Not enough memory for annotating '%s' symbol!\n",
146
sym->name);
147
sleep(1);
148
return err;
149
}
150
151
err = symbol__annotate(&he->ms, evsel, NULL);
152
if (err == 0) {
153
top->sym_filter_entry = he;
154
} else {
155
char msg[BUFSIZ];
156
symbol__strerror_disassemble(&he->ms, err, msg, sizeof(msg));
157
pr_err("Couldn't annotate %s: %s\n", sym->name, msg);
158
}
159
160
annotation__unlock(notes);
161
return err;
162
}
163
164
static void __zero_source_counters(struct hist_entry *he)
165
{
166
struct symbol *sym = he->ms.sym;
167
symbol__annotate_zero_histograms(sym);
168
}
169
170
static void ui__warn_map_erange(struct map *map, struct symbol *sym, u64 ip)
171
{
172
struct utsname uts;
173
int err = uname(&uts);
174
struct dso *dso = map__dso(map);
175
176
ui__warning("Out of bounds address found:\n\n"
177
"Addr: %" PRIx64 "\n"
178
"DSO: %s %c\n"
179
"Map: %" PRIx64 "-%" PRIx64 "\n"
180
"Symbol: %" PRIx64 "-%" PRIx64 " %c %s\n"
181
"Arch: %s\n"
182
"Kernel: %s\n"
183
"Tools: %s\n\n"
184
"Not all samples will be on the annotation output.\n\n"
185
"Please report to [email protected]\n",
186
ip, dso__long_name(dso), dso__symtab_origin(dso),
187
map__start(map), map__end(map), sym->start, sym->end,
188
sym->binding == STB_GLOBAL ? 'g' :
189
sym->binding == STB_LOCAL ? 'l' : 'w', sym->name,
190
err ? "[unknown]" : uts.machine,
191
err ? "[unknown]" : uts.release, perf_version_string);
192
if (use_browser <= 0)
193
sleep(5);
194
195
map__set_erange_warned(map);
196
}
197
198
static void perf_top__record_precise_ip(struct perf_top *top,
199
struct hist_entry *he,
200
struct perf_sample *sample,
201
struct evsel *evsel, u64 ip)
202
EXCLUSIVE_LOCKS_REQUIRED(he->hists->lock)
203
{
204
struct annotation *notes;
205
struct symbol *sym = he->ms.sym;
206
int err = 0;
207
208
if (sym == NULL || (use_browser == 0 &&
209
(top->sym_filter_entry == NULL ||
210
top->sym_filter_entry->ms.sym != sym)))
211
return;
212
213
notes = symbol__annotation(sym);
214
215
if (!annotation__trylock(notes))
216
return;
217
218
err = hist_entry__inc_addr_samples(he, sample, evsel, ip);
219
220
annotation__unlock(notes);
221
222
if (unlikely(err)) {
223
/*
224
* This function is now called with he->hists->lock held.
225
* Release it before going to sleep.
226
*/
227
mutex_unlock(&he->hists->lock);
228
229
if (err == -ERANGE && !map__erange_warned(he->ms.map))
230
ui__warn_map_erange(he->ms.map, sym, ip);
231
else if (err == -ENOMEM) {
232
pr_err("Not enough memory for annotating '%s' symbol!\n",
233
sym->name);
234
sleep(1);
235
}
236
237
mutex_lock(&he->hists->lock);
238
}
239
}
240
241
static void perf_top__show_details(struct perf_top *top)
242
{
243
struct hist_entry *he = top->sym_filter_entry;
244
struct evsel *evsel;
245
struct annotation *notes;
246
struct symbol *symbol;
247
int more;
248
249
if (!he)
250
return;
251
252
evsel = hists_to_evsel(he->hists);
253
254
symbol = he->ms.sym;
255
notes = symbol__annotation(symbol);
256
257
annotation__lock(notes);
258
259
symbol__calc_percent(symbol, evsel);
260
261
if (notes->src == NULL)
262
goto out_unlock;
263
264
printf("Showing %s for %s\n", evsel__name(top->sym_evsel), symbol->name);
265
printf(" Events Pcnt (>=%d%%)\n", annotate_opts.min_pcnt);
266
267
more = hist_entry__annotate_printf(he, top->sym_evsel);
268
269
if (top->evlist->enabled) {
270
if (top->zero)
271
symbol__annotate_zero_histogram(symbol, top->sym_evsel);
272
else
273
symbol__annotate_decay_histogram(symbol, top->sym_evsel);
274
}
275
if (more != 0)
276
printf("%d lines not displayed, maybe increase display entries [e]\n", more);
277
out_unlock:
278
annotation__unlock(notes);
279
}
280
281
static void perf_top__resort_hists(struct perf_top *t)
282
{
283
struct evlist *evlist = t->evlist;
284
struct evsel *pos;
285
286
evlist__for_each_entry(evlist, pos) {
287
struct hists *hists = evsel__hists(pos);
288
289
/*
290
* unlink existing entries so that they can be linked
291
* in a correct order in hists__match() below.
292
*/
293
hists__unlink(hists);
294
295
if (evlist->enabled) {
296
if (t->zero) {
297
hists__delete_entries(hists);
298
} else {
299
hists__decay_entries(hists, t->hide_user_symbols,
300
t->hide_kernel_symbols);
301
}
302
}
303
304
hists__collapse_resort(hists, NULL);
305
306
/* Non-group events are considered as leader */
307
if (symbol_conf.event_group && !evsel__is_group_leader(pos)) {
308
struct hists *leader_hists = evsel__hists(evsel__leader(pos));
309
310
hists__match(leader_hists, hists);
311
hists__link(leader_hists, hists);
312
}
313
}
314
315
evlist__for_each_entry(evlist, pos) {
316
evsel__output_resort(pos, NULL);
317
}
318
}
319
320
static void perf_top__print_sym_table(struct perf_top *top)
321
{
322
char bf[160];
323
int printed = 0;
324
const int win_width = top->winsize.ws_col - 1;
325
struct evsel *evsel = top->sym_evsel;
326
struct hists *hists = evsel__hists(evsel);
327
328
puts(CONSOLE_CLEAR);
329
330
perf_top__header_snprintf(top, bf, sizeof(bf));
331
printf("%s\n", bf);
332
333
printf("%-*.*s\n", win_width, win_width, graph_dotted_line);
334
335
if (!top->record_opts.overwrite &&
336
(top->evlist->stats.nr_lost_warned !=
337
top->evlist->stats.nr_events[PERF_RECORD_LOST])) {
338
top->evlist->stats.nr_lost_warned =
339
top->evlist->stats.nr_events[PERF_RECORD_LOST];
340
color_fprintf(stdout, PERF_COLOR_RED,
341
"WARNING: LOST %d chunks, Check IO/CPU overload",
342
top->evlist->stats.nr_lost_warned);
343
++printed;
344
}
345
346
if (top->sym_filter_entry) {
347
perf_top__show_details(top);
348
return;
349
}
350
351
perf_top__resort_hists(top);
352
353
hists__output_recalc_col_len(hists, top->print_entries - printed);
354
putchar('\n');
355
hists__fprintf(hists, false, top->print_entries - printed, win_width,
356
top->min_percent, stdout, !symbol_conf.use_callchain);
357
}
358
359
static void prompt_integer(int *target, const char *msg)
360
{
361
char *buf = NULL, *p;
362
size_t dummy = 0;
363
int tmp;
364
365
fprintf(stdout, "\n%s: ", msg);
366
if (getline(&buf, &dummy, stdin) < 0)
367
return;
368
369
p = strchr(buf, '\n');
370
if (p)
371
*p = 0;
372
373
p = buf;
374
while(*p) {
375
if (!isdigit(*p))
376
goto out_free;
377
p++;
378
}
379
tmp = strtoul(buf, NULL, 10);
380
*target = tmp;
381
out_free:
382
free(buf);
383
}
384
385
static void prompt_percent(int *target, const char *msg)
386
{
387
int tmp = 0;
388
389
prompt_integer(&tmp, msg);
390
if (tmp >= 0 && tmp <= 100)
391
*target = tmp;
392
}
393
394
static void perf_top__prompt_symbol(struct perf_top *top, const char *msg)
395
{
396
char *buf = NULL, *p;
397
struct hist_entry *syme = top->sym_filter_entry, *n, *found = NULL;
398
struct hists *hists = evsel__hists(top->sym_evsel);
399
struct rb_node *next;
400
size_t dummy = 0;
401
402
/* zero counters of active symbol */
403
if (syme) {
404
__zero_source_counters(syme);
405
top->sym_filter_entry = NULL;
406
}
407
408
fprintf(stdout, "\n%s: ", msg);
409
if (getline(&buf, &dummy, stdin) < 0)
410
goto out_free;
411
412
p = strchr(buf, '\n');
413
if (p)
414
*p = 0;
415
416
next = rb_first_cached(&hists->entries);
417
while (next) {
418
n = rb_entry(next, struct hist_entry, rb_node);
419
if (n->ms.sym && !strcmp(buf, n->ms.sym->name)) {
420
found = n;
421
break;
422
}
423
next = rb_next(&n->rb_node);
424
}
425
426
if (!found) {
427
fprintf(stderr, "Sorry, %s is not active.\n", buf);
428
sleep(1);
429
} else
430
perf_top__parse_source(top, found);
431
432
out_free:
433
free(buf);
434
}
435
436
static void perf_top__print_mapped_keys(struct perf_top *top)
437
{
438
char *name = NULL;
439
440
if (top->sym_filter_entry) {
441
struct symbol *sym = top->sym_filter_entry->ms.sym;
442
name = sym->name;
443
}
444
445
fprintf(stdout, "\nMapped keys:\n");
446
fprintf(stdout, "\t[d] display refresh delay. \t(%d)\n", top->delay_secs);
447
fprintf(stdout, "\t[e] display entries (lines). \t(%d)\n", top->print_entries);
448
449
if (top->evlist->core.nr_entries > 1)
450
fprintf(stdout, "\t[E] active event counter. \t(%s)\n", evsel__name(top->sym_evsel));
451
452
fprintf(stdout, "\t[f] profile display filter (count). \t(%d)\n", top->count_filter);
453
454
fprintf(stdout, "\t[F] annotate display filter (percent). \t(%d%%)\n", annotate_opts.min_pcnt);
455
fprintf(stdout, "\t[s] annotate symbol. \t(%s)\n", name?: "NULL");
456
fprintf(stdout, "\t[S] stop annotation.\n");
457
458
fprintf(stdout,
459
"\t[K] hide kernel symbols. \t(%s)\n",
460
top->hide_kernel_symbols ? "yes" : "no");
461
fprintf(stdout,
462
"\t[U] hide user symbols. \t(%s)\n",
463
top->hide_user_symbols ? "yes" : "no");
464
fprintf(stdout, "\t[z] toggle sample zeroing. \t(%d)\n", top->zero ? 1 : 0);
465
fprintf(stdout, "\t[qQ] quit.\n");
466
}
467
468
static int perf_top__key_mapped(struct perf_top *top, int c)
469
{
470
switch (c) {
471
case 'd':
472
case 'e':
473
case 'f':
474
case 'z':
475
case 'q':
476
case 'Q':
477
case 'K':
478
case 'U':
479
case 'F':
480
case 's':
481
case 'S':
482
return 1;
483
case 'E':
484
return top->evlist->core.nr_entries > 1 ? 1 : 0;
485
default:
486
break;
487
}
488
489
return 0;
490
}
491
492
static bool perf_top__handle_keypress(struct perf_top *top, int c)
493
{
494
bool ret = true;
495
496
if (!perf_top__key_mapped(top, c)) {
497
struct pollfd stdin_poll = { .fd = 0, .events = POLLIN };
498
struct termios save;
499
500
perf_top__print_mapped_keys(top);
501
fprintf(stdout, "\nEnter selection, or unmapped key to continue: ");
502
fflush(stdout);
503
504
set_term_quiet_input(&save);
505
506
poll(&stdin_poll, 1, -1);
507
c = getc(stdin);
508
509
tcsetattr(0, TCSAFLUSH, &save);
510
if (!perf_top__key_mapped(top, c))
511
return ret;
512
}
513
514
switch (c) {
515
case 'd':
516
prompt_integer(&top->delay_secs, "Enter display delay");
517
if (top->delay_secs < 1)
518
top->delay_secs = 1;
519
break;
520
case 'e':
521
prompt_integer(&top->print_entries, "Enter display entries (lines)");
522
if (top->print_entries == 0) {
523
perf_top__resize(top);
524
signal(SIGWINCH, winch_sig);
525
} else {
526
signal(SIGWINCH, SIG_DFL);
527
}
528
break;
529
case 'E':
530
if (top->evlist->core.nr_entries > 1) {
531
/* Select 0 as the default event: */
532
int counter = 0;
533
534
fprintf(stderr, "\nAvailable events:");
535
536
evlist__for_each_entry(top->evlist, top->sym_evsel)
537
fprintf(stderr, "\n\t%d %s", top->sym_evsel->core.idx, evsel__name(top->sym_evsel));
538
539
prompt_integer(&counter, "Enter details event counter");
540
541
if (counter >= top->evlist->core.nr_entries) {
542
top->sym_evsel = evlist__first(top->evlist);
543
fprintf(stderr, "Sorry, no such event, using %s.\n", evsel__name(top->sym_evsel));
544
sleep(1);
545
break;
546
}
547
evlist__for_each_entry(top->evlist, top->sym_evsel)
548
if (top->sym_evsel->core.idx == counter)
549
break;
550
} else
551
top->sym_evsel = evlist__first(top->evlist);
552
break;
553
case 'f':
554
prompt_integer(&top->count_filter, "Enter display event count filter");
555
break;
556
case 'F':
557
prompt_percent(&annotate_opts.min_pcnt,
558
"Enter details display event filter (percent)");
559
break;
560
case 'K':
561
top->hide_kernel_symbols = !top->hide_kernel_symbols;
562
break;
563
case 'q':
564
case 'Q':
565
printf("exiting.\n");
566
if (top->dump_symtab)
567
perf_session__fprintf_dsos(top->session, stderr);
568
ret = false;
569
break;
570
case 's':
571
perf_top__prompt_symbol(top, "Enter details symbol");
572
break;
573
case 'S':
574
if (!top->sym_filter_entry)
575
break;
576
else {
577
struct hist_entry *syme = top->sym_filter_entry;
578
579
top->sym_filter_entry = NULL;
580
__zero_source_counters(syme);
581
}
582
break;
583
case 'U':
584
top->hide_user_symbols = !top->hide_user_symbols;
585
break;
586
case 'z':
587
top->zero = !top->zero;
588
break;
589
default:
590
break;
591
}
592
593
return ret;
594
}
595
596
static void perf_top__sort_new_samples(void *arg)
597
{
598
struct perf_top *t = arg;
599
600
if (t->evlist->selected != NULL)
601
t->sym_evsel = t->evlist->selected;
602
603
perf_top__resort_hists(t);
604
605
if (t->lost || t->drop)
606
pr_warning("Too slow to read ring buffer (change period (-c/-F) or limit CPUs (-C)\n");
607
}
608
609
static void stop_top(void)
610
{
611
session_done = 1;
612
done = 1;
613
}
614
615
static void *display_thread_tui(void *arg)
616
{
617
struct evsel *pos;
618
struct perf_top *top = arg;
619
const char *help = "For a higher level overview, try: perf top --sort comm,dso";
620
struct hist_browser_timer hbt = {
621
.timer = perf_top__sort_new_samples,
622
.arg = top,
623
.refresh = top->delay_secs,
624
};
625
int ret;
626
627
/* In order to read symbols from other namespaces perf to needs to call
628
* setns(2). This isn't permitted if the struct_fs has multiple users.
629
* unshare(2) the fs so that we may continue to setns into namespaces
630
* that we're observing.
631
*/
632
unshare(CLONE_FS);
633
634
prctl(PR_SET_NAME, "perf-top-UI", 0, 0, 0);
635
636
repeat:
637
perf_top__sort_new_samples(top);
638
639
/*
640
* Initialize the uid_filter_str, in the future the TUI will allow
641
* Zooming in/out UIDs. For now just use whatever the user passed
642
* via --uid.
643
*/
644
evlist__for_each_entry(top->evlist, pos) {
645
struct hists *hists = evsel__hists(pos);
646
hists->uid_filter_str = top->uid_str;
647
}
648
649
ret = evlist__tui_browse_hists(top->evlist, help, &hbt, top->min_percent,
650
perf_session__env(top->session),
651
!top->record_opts.overwrite);
652
if (ret == K_RELOAD) {
653
top->zero = true;
654
goto repeat;
655
} else
656
stop_top();
657
658
return NULL;
659
}
660
661
static void display_sig(int sig __maybe_unused)
662
{
663
stop_top();
664
}
665
666
static void display_setup_sig(void)
667
{
668
signal(SIGSEGV, sighandler_dump_stack);
669
signal(SIGFPE, sighandler_dump_stack);
670
signal(SIGINT, display_sig);
671
signal(SIGQUIT, display_sig);
672
signal(SIGTERM, display_sig);
673
}
674
675
static void *display_thread(void *arg)
676
{
677
struct pollfd stdin_poll = { .fd = 0, .events = POLLIN };
678
struct termios save;
679
struct perf_top *top = arg;
680
int delay_msecs, c;
681
682
/* In order to read symbols from other namespaces perf to needs to call
683
* setns(2). This isn't permitted if the struct_fs has multiple users.
684
* unshare(2) the fs so that we may continue to setns into namespaces
685
* that we're observing.
686
*/
687
unshare(CLONE_FS);
688
689
prctl(PR_SET_NAME, "perf-top-UI", 0, 0, 0);
690
691
display_setup_sig();
692
pthread__unblock_sigwinch();
693
repeat:
694
delay_msecs = top->delay_secs * MSEC_PER_SEC;
695
set_term_quiet_input(&save);
696
/* trash return*/
697
clearerr(stdin);
698
if (poll(&stdin_poll, 1, 0) > 0)
699
getc(stdin);
700
701
while (!done) {
702
perf_top__print_sym_table(top);
703
/*
704
* Either timeout expired or we got an EINTR due to SIGWINCH,
705
* refresh screen in both cases.
706
*/
707
switch (poll(&stdin_poll, 1, delay_msecs)) {
708
case 0:
709
continue;
710
case -1:
711
if (errno == EINTR)
712
continue;
713
fallthrough;
714
default:
715
c = getc(stdin);
716
tcsetattr(0, TCSAFLUSH, &save);
717
718
if (perf_top__handle_keypress(top, c))
719
goto repeat;
720
stop_top();
721
}
722
}
723
724
tcsetattr(0, TCSAFLUSH, &save);
725
return NULL;
726
}
727
728
static int hist_iter__top_callback(struct hist_entry_iter *iter,
729
struct addr_location *al, bool single,
730
void *arg)
731
EXCLUSIVE_LOCKS_REQUIRED(iter->he->hists->lock)
732
{
733
struct perf_top *top = arg;
734
struct evsel *evsel = iter->evsel;
735
736
if (perf_hpp_list.sym && single)
737
perf_top__record_precise_ip(top, iter->he, iter->sample, evsel, al->addr);
738
739
hist__account_cycles(iter->sample->branch_stack, al, iter->sample,
740
!(top->record_opts.branch_stack & PERF_SAMPLE_BRANCH_ANY),
741
NULL, evsel);
742
return 0;
743
}
744
745
static void perf_event__process_sample(const struct perf_tool *tool,
746
const union perf_event *event,
747
struct evsel *evsel,
748
struct perf_sample *sample,
749
struct machine *machine)
750
{
751
struct perf_top *top = container_of(tool, struct perf_top, tool);
752
struct addr_location al;
753
754
if (!machine && perf_guest) {
755
static struct intlist *seen;
756
757
if (!seen)
758
seen = intlist__new(NULL);
759
760
if (!intlist__has_entry(seen, sample->pid)) {
761
pr_err("Can't find guest [%d]'s kernel information\n",
762
sample->pid);
763
intlist__add(seen, sample->pid);
764
}
765
return;
766
}
767
768
if (!machine) {
769
pr_err("%u unprocessable samples recorded.\r",
770
top->session->evlist->stats.nr_unprocessable_samples++);
771
return;
772
}
773
774
if (event->header.misc & PERF_RECORD_MISC_EXACT_IP)
775
top->exact_samples++;
776
777
addr_location__init(&al);
778
if (machine__resolve(machine, &al, sample) < 0)
779
goto out;
780
781
if (top->stitch_lbr)
782
thread__set_lbr_stitch_enable(al.thread, true);
783
784
if (!machine->kptr_restrict_warned &&
785
symbol_conf.kptr_restrict &&
786
al.cpumode == PERF_RECORD_MISC_KERNEL) {
787
if (!evlist__exclude_kernel(top->session->evlist)) {
788
ui__warning(
789
"Kernel address maps (/proc/{kallsyms,modules}) are restricted.\n\n"
790
"Check /proc/sys/kernel/kptr_restrict and /proc/sys/kernel/perf_event_paranoid.\n\n"
791
"Kernel%s samples will not be resolved.\n",
792
al.map && map__has_symbols(al.map) ?
793
" modules" : "");
794
if (use_browser <= 0)
795
sleep(5);
796
}
797
machine->kptr_restrict_warned = true;
798
}
799
800
if (al.sym == NULL && al.map != NULL) {
801
const char *msg = "Kernel samples will not be resolved.\n";
802
/*
803
* As we do lazy loading of symtabs we only will know if the
804
* specified vmlinux file is invalid when we actually have a
805
* hit in kernel space and then try to load it. So if we get
806
* here and there are _no_ symbols in the DSO backing the
807
* kernel map, bail out.
808
*
809
* We may never get here, for instance, if we use -K/
810
* --hide-kernel-symbols, even if the user specifies an
811
* invalid --vmlinux ;-)
812
*/
813
if (!machine->kptr_restrict_warned && !top->vmlinux_warned &&
814
__map__is_kernel(al.map) && !map__has_symbols(al.map)) {
815
if (symbol_conf.vmlinux_name) {
816
char serr[256];
817
818
dso__strerror_load(map__dso(al.map), serr, sizeof(serr));
819
ui__warning("The %s file can't be used: %s\n%s",
820
symbol_conf.vmlinux_name, serr, msg);
821
} else {
822
ui__warning("A vmlinux file was not found.\n%s",
823
msg);
824
}
825
826
if (use_browser <= 0)
827
sleep(5);
828
top->vmlinux_warned = true;
829
}
830
}
831
832
if (al.sym == NULL || !al.sym->idle) {
833
struct hists *hists = evsel__hists(evsel);
834
struct hist_entry_iter iter = {
835
.evsel = evsel,
836
.sample = sample,
837
.add_entry_cb = hist_iter__top_callback,
838
};
839
840
if (symbol_conf.cumulate_callchain)
841
iter.ops = &hist_iter_cumulative;
842
else
843
iter.ops = &hist_iter_normal;
844
845
mutex_lock(&hists->lock);
846
847
if (hist_entry_iter__add(&iter, &al, top->max_stack, top) < 0)
848
pr_err("Problem incrementing symbol period, skipping event\n");
849
850
mutex_unlock(&hists->lock);
851
}
852
853
out:
854
addr_location__exit(&al);
855
}
856
857
static void
858
perf_top__process_lost(struct perf_top *top, union perf_event *event,
859
struct evsel *evsel)
860
{
861
top->lost += event->lost.lost;
862
top->lost_total += event->lost.lost;
863
evsel->evlist->stats.total_lost += event->lost.lost;
864
}
865
866
static void
867
perf_top__process_lost_samples(struct perf_top *top,
868
union perf_event *event,
869
struct evsel *evsel)
870
{
871
top->lost += event->lost_samples.lost;
872
top->lost_total += event->lost_samples.lost;
873
evsel->evlist->stats.total_lost_samples += event->lost_samples.lost;
874
}
875
876
static u64 last_timestamp;
877
878
static void perf_top__mmap_read_idx(struct perf_top *top, int idx)
879
{
880
struct record_opts *opts = &top->record_opts;
881
struct evlist *evlist = top->evlist;
882
struct mmap *md;
883
union perf_event *event;
884
885
md = opts->overwrite ? &evlist->overwrite_mmap[idx] : &evlist->mmap[idx];
886
if (perf_mmap__read_init(&md->core) < 0)
887
return;
888
889
while ((event = perf_mmap__read_event(&md->core)) != NULL) {
890
int ret;
891
892
ret = evlist__parse_sample_timestamp(evlist, event, &last_timestamp);
893
if (ret && ret != -1)
894
break;
895
896
ret = ordered_events__queue(top->qe.in, event, last_timestamp, 0, NULL);
897
if (ret)
898
break;
899
900
perf_mmap__consume(&md->core);
901
902
if (top->qe.rotate) {
903
mutex_lock(&top->qe.mutex);
904
top->qe.rotate = false;
905
cond_signal(&top->qe.cond);
906
mutex_unlock(&top->qe.mutex);
907
}
908
}
909
910
perf_mmap__read_done(&md->core);
911
}
912
913
static void perf_top__mmap_read(struct perf_top *top)
914
{
915
bool overwrite = top->record_opts.overwrite;
916
struct evlist *evlist = top->evlist;
917
int i;
918
919
if (overwrite)
920
evlist__toggle_bkw_mmap(evlist, BKW_MMAP_DATA_PENDING);
921
922
for (i = 0; i < top->evlist->core.nr_mmaps; i++)
923
perf_top__mmap_read_idx(top, i);
924
925
if (overwrite) {
926
evlist__toggle_bkw_mmap(evlist, BKW_MMAP_EMPTY);
927
evlist__toggle_bkw_mmap(evlist, BKW_MMAP_RUNNING);
928
}
929
}
930
931
/*
932
* Check per-event overwrite term.
933
* perf top should support consistent term for all events.
934
* - All events don't have per-event term
935
* E.g. "cpu/cpu-cycles/,cpu/instructions/"
936
* Nothing change, return 0.
937
* - All events have same per-event term
938
* E.g. "cpu/cpu-cycles,no-overwrite/,cpu/instructions,no-overwrite/
939
* Using the per-event setting to replace the opts->overwrite if
940
* they are different, then return 0.
941
* - Events have different per-event term
942
* E.g. "cpu/cpu-cycles,overwrite/,cpu/instructions,no-overwrite/"
943
* Return -1
944
* - Some of the event set per-event term, but some not.
945
* E.g. "cpu/cpu-cycles/,cpu/instructions,no-overwrite/"
946
* Return -1
947
*/
948
static int perf_top__overwrite_check(struct perf_top *top)
949
{
950
struct record_opts *opts = &top->record_opts;
951
struct evlist *evlist = top->evlist;
952
struct evsel_config_term *term;
953
struct list_head *config_terms;
954
struct evsel *evsel;
955
int set, overwrite = -1;
956
957
evlist__for_each_entry(evlist, evsel) {
958
set = -1;
959
config_terms = &evsel->config_terms;
960
list_for_each_entry(term, config_terms, list) {
961
if (term->type == EVSEL__CONFIG_TERM_OVERWRITE)
962
set = term->val.overwrite ? 1 : 0;
963
}
964
965
/* no term for current and previous event (likely) */
966
if ((overwrite < 0) && (set < 0))
967
continue;
968
969
/* has term for both current and previous event, compare */
970
if ((overwrite >= 0) && (set >= 0) && (overwrite != set))
971
return -1;
972
973
/* no term for current event but has term for previous one */
974
if ((overwrite >= 0) && (set < 0))
975
return -1;
976
977
/* has term for current event */
978
if ((overwrite < 0) && (set >= 0)) {
979
/* if it's first event, set overwrite */
980
if (evsel == evlist__first(evlist))
981
overwrite = set;
982
else
983
return -1;
984
}
985
}
986
987
if ((overwrite >= 0) && (opts->overwrite != overwrite))
988
opts->overwrite = overwrite;
989
990
return 0;
991
}
992
993
static int perf_top_overwrite_fallback(struct perf_top *top,
994
struct evsel *evsel)
995
{
996
struct record_opts *opts = &top->record_opts;
997
struct evlist *evlist = top->evlist;
998
struct evsel *counter;
999
1000
if (!opts->overwrite)
1001
return 0;
1002
1003
/* only fall back when first event fails */
1004
if (evsel != evlist__first(evlist))
1005
return 0;
1006
1007
evlist__for_each_entry(evlist, counter)
1008
counter->core.attr.write_backward = false;
1009
opts->overwrite = false;
1010
pr_debug2("fall back to non-overwrite mode\n");
1011
return 1;
1012
}
1013
1014
static int perf_top__start_counters(struct perf_top *top)
1015
{
1016
char msg[BUFSIZ];
1017
struct evsel *counter;
1018
struct evlist *evlist = top->evlist;
1019
struct record_opts *opts = &top->record_opts;
1020
1021
if (perf_top__overwrite_check(top)) {
1022
ui__error("perf top only support consistent per-event "
1023
"overwrite setting for all events\n");
1024
goto out_err;
1025
}
1026
1027
evlist__config(evlist, opts, &callchain_param);
1028
1029
evlist__for_each_entry(evlist, counter) {
1030
try_again:
1031
if (evsel__open(counter, counter->core.cpus,
1032
counter->core.threads) < 0) {
1033
1034
/*
1035
* Specially handle overwrite fall back.
1036
* Because perf top is the only tool which has
1037
* overwrite mode by default, support
1038
* both overwrite and non-overwrite mode, and
1039
* require consistent mode for all events.
1040
*
1041
* May move it to generic code with more tools
1042
* have similar attribute.
1043
*/
1044
if (perf_missing_features.write_backward &&
1045
perf_top_overwrite_fallback(top, counter))
1046
goto try_again;
1047
1048
if (evsel__fallback(counter, &opts->target, errno, msg, sizeof(msg))) {
1049
if (verbose > 0)
1050
ui__warning("%s\n", msg);
1051
goto try_again;
1052
}
1053
1054
evsel__open_strerror(counter, &opts->target, errno, msg, sizeof(msg));
1055
ui__error("%s\n", msg);
1056
goto out_err;
1057
}
1058
}
1059
1060
if (evlist__apply_filters(evlist, &counter, &opts->target)) {
1061
pr_err("failed to set filter \"%s\" on event %s with %d (%s)\n",
1062
counter->filter ?: "BPF", evsel__name(counter), errno,
1063
str_error_r(errno, msg, sizeof(msg)));
1064
goto out_err;
1065
}
1066
1067
if (evlist__mmap(evlist, opts->mmap_pages) < 0) {
1068
ui__error("Failed to mmap with %d (%s)\n",
1069
errno, str_error_r(errno, msg, sizeof(msg)));
1070
goto out_err;
1071
}
1072
1073
return 0;
1074
1075
out_err:
1076
return -1;
1077
}
1078
1079
static int callchain_param__setup_sample_type(struct callchain_param *callchain)
1080
{
1081
if (callchain->mode != CHAIN_NONE) {
1082
if (callchain_register_param(callchain) < 0) {
1083
ui__error("Can't register callchain params.\n");
1084
return -EINVAL;
1085
}
1086
}
1087
1088
return 0;
1089
}
1090
1091
static struct ordered_events *rotate_queues(struct perf_top *top)
1092
{
1093
struct ordered_events *in = top->qe.in;
1094
1095
if (top->qe.in == &top->qe.data[1])
1096
top->qe.in = &top->qe.data[0];
1097
else
1098
top->qe.in = &top->qe.data[1];
1099
1100
return in;
1101
}
1102
1103
static void *process_thread(void *arg)
1104
{
1105
struct perf_top *top = arg;
1106
1107
while (!done) {
1108
struct ordered_events *out, *in = top->qe.in;
1109
1110
if (!in->nr_events) {
1111
usleep(100);
1112
continue;
1113
}
1114
1115
out = rotate_queues(top);
1116
1117
mutex_lock(&top->qe.mutex);
1118
top->qe.rotate = true;
1119
cond_wait(&top->qe.cond, &top->qe.mutex);
1120
mutex_unlock(&top->qe.mutex);
1121
1122
if (ordered_events__flush(out, OE_FLUSH__TOP))
1123
pr_err("failed to process events\n");
1124
}
1125
1126
return NULL;
1127
}
1128
1129
/*
1130
* Allow only 'top->delay_secs' seconds behind samples.
1131
*/
1132
static int should_drop(struct ordered_event *qevent, struct perf_top *top)
1133
{
1134
union perf_event *event = qevent->event;
1135
u64 delay_timestamp;
1136
1137
if (event->header.type != PERF_RECORD_SAMPLE)
1138
return false;
1139
1140
delay_timestamp = qevent->timestamp + top->delay_secs * NSEC_PER_SEC;
1141
return delay_timestamp < last_timestamp;
1142
}
1143
1144
static int deliver_event(struct ordered_events *qe,
1145
struct ordered_event *qevent)
1146
{
1147
struct perf_top *top = qe->data;
1148
struct evlist *evlist = top->evlist;
1149
struct perf_session *session = top->session;
1150
union perf_event *event = qevent->event;
1151
struct perf_sample sample;
1152
struct evsel *evsel;
1153
struct machine *machine;
1154
int ret = -1;
1155
1156
if (should_drop(qevent, top)) {
1157
top->drop++;
1158
top->drop_total++;
1159
return 0;
1160
}
1161
1162
perf_sample__init(&sample, /*all=*/false);
1163
ret = evlist__parse_sample(evlist, event, &sample);
1164
if (ret) {
1165
pr_err("Can't parse sample, err = %d\n", ret);
1166
goto next_event;
1167
}
1168
1169
evsel = evlist__id2evsel(session->evlist, sample.id);
1170
assert(evsel != NULL);
1171
1172
if (event->header.type == PERF_RECORD_SAMPLE) {
1173
if (evswitch__discard(&top->evswitch, evsel)) {
1174
ret = 0;
1175
goto next_event;
1176
}
1177
++top->samples;
1178
}
1179
1180
switch (sample.cpumode) {
1181
case PERF_RECORD_MISC_USER:
1182
++top->us_samples;
1183
if (top->hide_user_symbols)
1184
goto next_event;
1185
machine = &session->machines.host;
1186
break;
1187
case PERF_RECORD_MISC_KERNEL:
1188
++top->kernel_samples;
1189
if (top->hide_kernel_symbols)
1190
goto next_event;
1191
machine = &session->machines.host;
1192
break;
1193
case PERF_RECORD_MISC_GUEST_KERNEL:
1194
++top->guest_kernel_samples;
1195
machine = perf_session__find_machine(session,
1196
sample.pid);
1197
break;
1198
case PERF_RECORD_MISC_GUEST_USER:
1199
++top->guest_us_samples;
1200
/*
1201
* TODO: we don't process guest user from host side
1202
* except simple counting.
1203
*/
1204
goto next_event;
1205
default:
1206
if (event->header.type == PERF_RECORD_SAMPLE)
1207
goto next_event;
1208
machine = &session->machines.host;
1209
break;
1210
}
1211
1212
if (event->header.type == PERF_RECORD_SAMPLE) {
1213
perf_event__process_sample(&top->tool, event, evsel,
1214
&sample, machine);
1215
} else if (event->header.type == PERF_RECORD_LOST) {
1216
perf_top__process_lost(top, event, evsel);
1217
} else if (event->header.type == PERF_RECORD_LOST_SAMPLES) {
1218
perf_top__process_lost_samples(top, event, evsel);
1219
} else if (event->header.type < PERF_RECORD_MAX) {
1220
events_stats__inc(&session->evlist->stats, event->header.type);
1221
machine__process_event(machine, event, &sample);
1222
} else
1223
++session->evlist->stats.nr_unknown_events;
1224
1225
ret = 0;
1226
next_event:
1227
perf_sample__exit(&sample);
1228
return ret;
1229
}
1230
1231
static void init_process_thread(struct perf_top *top)
1232
{
1233
ordered_events__init(&top->qe.data[0], deliver_event, top);
1234
ordered_events__init(&top->qe.data[1], deliver_event, top);
1235
ordered_events__set_copy_on_queue(&top->qe.data[0], true);
1236
ordered_events__set_copy_on_queue(&top->qe.data[1], true);
1237
top->qe.in = &top->qe.data[0];
1238
mutex_init(&top->qe.mutex);
1239
cond_init(&top->qe.cond);
1240
}
1241
1242
static void exit_process_thread(struct perf_top *top)
1243
{
1244
ordered_events__free(&top->qe.data[0]);
1245
ordered_events__free(&top->qe.data[1]);
1246
mutex_destroy(&top->qe.mutex);
1247
cond_destroy(&top->qe.cond);
1248
}
1249
1250
static int __cmd_top(struct perf_top *top)
1251
{
1252
struct record_opts *opts = &top->record_opts;
1253
pthread_t thread, thread_process;
1254
int ret;
1255
1256
if (!annotate_opts.objdump_path) {
1257
ret = perf_env__lookup_objdump(perf_session__env(top->session),
1258
&annotate_opts.objdump_path);
1259
if (ret)
1260
return ret;
1261
}
1262
1263
ret = callchain_param__setup_sample_type(&callchain_param);
1264
if (ret)
1265
return ret;
1266
1267
if (perf_session__register_idle_thread(top->session) < 0)
1268
return ret;
1269
1270
if (top->nr_threads_synthesize > 1)
1271
perf_set_multithreaded();
1272
1273
init_process_thread(top);
1274
1275
if (opts->record_namespaces)
1276
top->tool.namespace_events = true;
1277
if (opts->record_cgroup) {
1278
#ifdef HAVE_FILE_HANDLE
1279
top->tool.cgroup_events = true;
1280
#else
1281
pr_err("cgroup tracking is not supported.\n");
1282
return -1;
1283
#endif
1284
}
1285
1286
ret = perf_event__synthesize_bpf_events(top->session, perf_event__process,
1287
&top->session->machines.host,
1288
&top->record_opts);
1289
if (ret < 0)
1290
pr_debug("Couldn't synthesize BPF events: Pre-existing BPF programs won't have symbols resolved.\n");
1291
1292
ret = perf_event__synthesize_cgroups(&top->tool, perf_event__process,
1293
&top->session->machines.host);
1294
if (ret < 0)
1295
pr_debug("Couldn't synthesize cgroup events.\n");
1296
1297
machine__synthesize_threads(&top->session->machines.host, &opts->target,
1298
top->evlist->core.threads, true, false,
1299
top->nr_threads_synthesize);
1300
1301
perf_set_multithreaded();
1302
1303
if (perf_hpp_list.socket) {
1304
ret = perf_env__read_cpu_topology_map(perf_session__env(top->session));
1305
if (ret < 0) {
1306
char errbuf[BUFSIZ];
1307
const char *err = str_error_r(-ret, errbuf, sizeof(errbuf));
1308
1309
ui__error("Could not read the CPU topology map: %s\n", err);
1310
return ret;
1311
}
1312
}
1313
1314
/*
1315
* Use global stat_config that is zero meaning aggr_mode is AGGR_NONE
1316
* and hybrid_merge is false.
1317
*/
1318
evlist__uniquify_evsel_names(top->evlist, &stat_config);
1319
ret = perf_top__start_counters(top);
1320
if (ret)
1321
return ret;
1322
1323
top->session->evlist = top->evlist;
1324
perf_session__set_id_hdr_size(top->session);
1325
1326
/*
1327
* When perf is starting the traced process, all the events (apart from
1328
* group members) have enable_on_exec=1 set, so don't spoil it by
1329
* prematurely enabling them.
1330
*
1331
* XXX 'top' still doesn't start workloads like record, trace, but should,
1332
* so leave the check here.
1333
*/
1334
if (!target__none(&opts->target))
1335
evlist__enable(top->evlist);
1336
1337
ret = -1;
1338
if (pthread_create(&thread_process, NULL, process_thread, top)) {
1339
ui__error("Could not create process thread.\n");
1340
return ret;
1341
}
1342
1343
if (pthread_create(&thread, NULL, (use_browser > 0 ? display_thread_tui :
1344
display_thread), top)) {
1345
ui__error("Could not create display thread.\n");
1346
goto out_join_thread;
1347
}
1348
1349
if (top->realtime_prio) {
1350
struct sched_param param;
1351
1352
param.sched_priority = top->realtime_prio;
1353
if (sched_setscheduler(0, SCHED_FIFO, &param)) {
1354
ui__error("Could not set realtime priority.\n");
1355
goto out_join;
1356
}
1357
}
1358
1359
/* Wait for a minimal set of events before starting the snapshot */
1360
evlist__poll(top->evlist, 100);
1361
1362
perf_top__mmap_read(top);
1363
1364
while (!done) {
1365
u64 hits = top->samples;
1366
1367
perf_top__mmap_read(top);
1368
1369
if (opts->overwrite || (hits == top->samples))
1370
ret = evlist__poll(top->evlist, 100);
1371
1372
if (resize) {
1373
perf_top__resize(top);
1374
resize = 0;
1375
}
1376
}
1377
1378
ret = 0;
1379
out_join:
1380
pthread_join(thread, NULL);
1381
out_join_thread:
1382
cond_signal(&top->qe.cond);
1383
pthread_join(thread_process, NULL);
1384
perf_set_singlethreaded();
1385
exit_process_thread(top);
1386
return ret;
1387
}
1388
1389
static int
1390
callchain_opt(const struct option *opt, const char *arg, int unset)
1391
{
1392
symbol_conf.use_callchain = true;
1393
return record_callchain_opt(opt, arg, unset);
1394
}
1395
1396
static int
1397
parse_callchain_opt(const struct option *opt, const char *arg, int unset)
1398
{
1399
struct callchain_param *callchain = opt->value;
1400
1401
callchain->enabled = !unset;
1402
callchain->record_mode = CALLCHAIN_FP;
1403
1404
/*
1405
* --no-call-graph
1406
*/
1407
if (unset) {
1408
symbol_conf.use_callchain = false;
1409
callchain->record_mode = CALLCHAIN_NONE;
1410
return 0;
1411
}
1412
1413
return parse_callchain_top_opt(arg);
1414
}
1415
1416
static int perf_top_config(const char *var, const char *value, void *cb __maybe_unused)
1417
{
1418
if (!strcmp(var, "top.call-graph")) {
1419
var = "call-graph.record-mode";
1420
return perf_default_config(var, value, cb);
1421
}
1422
if (!strcmp(var, "top.children")) {
1423
symbol_conf.cumulate_callchain = perf_config_bool(var, value);
1424
return 0;
1425
}
1426
1427
return 0;
1428
}
1429
1430
static int
1431
parse_percent_limit(const struct option *opt, const char *arg,
1432
int unset __maybe_unused)
1433
{
1434
struct perf_top *top = opt->value;
1435
1436
top->min_percent = strtof(arg, NULL);
1437
return 0;
1438
}
1439
1440
const char top_callchain_help[] = CALLCHAIN_RECORD_HELP CALLCHAIN_REPORT_HELP
1441
"\n\t\t\t\tDefault: fp,graph,0.5,caller,function";
1442
1443
int cmd_top(int argc, const char **argv)
1444
{
1445
char errbuf[BUFSIZ];
1446
struct perf_top top = {
1447
.count_filter = 5,
1448
.delay_secs = 2,
1449
.record_opts = {
1450
.mmap_pages = UINT_MAX,
1451
.user_freq = UINT_MAX,
1452
.user_interval = ULLONG_MAX,
1453
.freq = 4000, /* 4 KHz */
1454
.target = {
1455
.uses_mmap = true,
1456
},
1457
/*
1458
* FIXME: This will lose PERF_RECORD_MMAP and other metadata
1459
* when we pause, fix that and reenable. Probably using a
1460
* separate evlist with a dummy event, i.e. a non-overwrite
1461
* ring buffer just for metadata events, while PERF_RECORD_SAMPLE
1462
* stays in overwrite mode. -acme
1463
* */
1464
.overwrite = 0,
1465
.sample_time = true,
1466
.sample_time_set = true,
1467
},
1468
.max_stack = sysctl__max_stack(),
1469
.nr_threads_synthesize = UINT_MAX,
1470
};
1471
struct parse_events_option_args parse_events_option_args = {
1472
.evlistp = &top.evlist,
1473
};
1474
bool branch_call_mode = false;
1475
struct record_opts *opts = &top.record_opts;
1476
struct target *target = &opts->target;
1477
const char *disassembler_style = NULL, *objdump_path = NULL, *addr2line_path = NULL;
1478
const struct option options[] = {
1479
OPT_CALLBACK('e', "event", &parse_events_option_args, "event",
1480
"event selector. use 'perf list' to list available events",
1481
parse_events_option),
1482
OPT_CALLBACK(0, "filter", &top.evlist, "filter",
1483
"event filter", parse_filter),
1484
OPT_U64('c', "count", &opts->user_interval, "event period to sample"),
1485
OPT_STRING('p', "pid", &target->pid, "pid",
1486
"profile events on existing process id"),
1487
OPT_STRING('t', "tid", &target->tid, "tid",
1488
"profile events on existing thread id"),
1489
OPT_BOOLEAN('a', "all-cpus", &target->system_wide,
1490
"system-wide collection from all CPUs"),
1491
OPT_STRING('C', "cpu", &target->cpu_list, "cpu",
1492
"list of cpus to monitor"),
1493
OPT_STRING('k', "vmlinux", &symbol_conf.vmlinux_name,
1494
"file", "vmlinux pathname"),
1495
OPT_BOOLEAN(0, "ignore-vmlinux", &symbol_conf.ignore_vmlinux,
1496
"don't load vmlinux even if found"),
1497
OPT_STRING(0, "kallsyms", &symbol_conf.kallsyms_name,
1498
"file", "kallsyms pathname"),
1499
OPT_BOOLEAN('K', "hide_kernel_symbols", &top.hide_kernel_symbols,
1500
"hide kernel symbols"),
1501
OPT_CALLBACK('m', "mmap-pages", &opts->mmap_pages, "pages",
1502
"number of mmap data pages", evlist__parse_mmap_pages),
1503
OPT_INTEGER('r', "realtime", &top.realtime_prio,
1504
"collect data with this RT SCHED_FIFO priority"),
1505
OPT_INTEGER('d', "delay", &top.delay_secs,
1506
"number of seconds to delay between refreshes"),
1507
OPT_BOOLEAN('D', "dump-symtab", &top.dump_symtab,
1508
"dump the symbol table used for profiling"),
1509
OPT_INTEGER('f', "count-filter", &top.count_filter,
1510
"only display functions with more events than this"),
1511
OPT_BOOLEAN('i', "no-inherit", &opts->no_inherit,
1512
"child tasks do not inherit counters"),
1513
OPT_STRING(0, "sym-annotate", &top.sym_filter, "symbol name",
1514
"symbol to annotate"),
1515
OPT_BOOLEAN('z', "zero", &top.zero, "zero history across updates"),
1516
OPT_CALLBACK('F', "freq", &top.record_opts, "freq or 'max'",
1517
"profile at this frequency",
1518
record__parse_freq),
1519
OPT_INTEGER('E', "entries", &top.print_entries,
1520
"display this many functions"),
1521
OPT_BOOLEAN('U', "hide_user_symbols", &top.hide_user_symbols,
1522
"hide user symbols"),
1523
#ifdef HAVE_SLANG_SUPPORT
1524
OPT_BOOLEAN(0, "tui", &top.use_tui, "Use the TUI interface"),
1525
#endif
1526
OPT_BOOLEAN(0, "stdio", &top.use_stdio, "Use the stdio interface"),
1527
OPT_INCR('v', "verbose", &verbose,
1528
"be more verbose (show counter open errors, etc)"),
1529
OPT_STRING('s', "sort", &sort_order, "key[,key2...]",
1530
"sort by key(s): pid, comm, dso, symbol, parent, cpu, srcline, ..."
1531
" Please refer the man page for the complete list."),
1532
OPT_STRING(0, "fields", &field_order, "key[,keys...]",
1533
"output field(s): overhead, period, sample plus all of sort keys"),
1534
OPT_BOOLEAN('n', "show-nr-samples", &symbol_conf.show_nr_samples,
1535
"Show a column with the number of samples"),
1536
OPT_CALLBACK_NOOPT('g', NULL, &callchain_param,
1537
NULL, "enables call-graph recording and display",
1538
&callchain_opt),
1539
OPT_CALLBACK(0, "call-graph", &callchain_param,
1540
"record_mode[,record_size],print_type,threshold[,print_limit],order,sort_key[,branch]",
1541
top_callchain_help, &parse_callchain_opt),
1542
OPT_BOOLEAN(0, "children", &symbol_conf.cumulate_callchain,
1543
"Accumulate callchains of children and show total overhead as well"),
1544
OPT_INTEGER(0, "max-stack", &top.max_stack,
1545
"Set the maximum stack depth when parsing the callchain. "
1546
"Default: kernel.perf_event_max_stack or " __stringify(PERF_MAX_STACK_DEPTH)),
1547
OPT_CALLBACK(0, "ignore-callees", NULL, "regex",
1548
"ignore callees of these functions in call graphs",
1549
report_parse_ignore_callees_opt),
1550
OPT_BOOLEAN(0, "show-total-period", &symbol_conf.show_total_period,
1551
"Show a column with the sum of periods"),
1552
OPT_STRING(0, "dsos", &symbol_conf.dso_list_str, "dso[,dso...]",
1553
"only consider symbols in these dsos"),
1554
OPT_STRING(0, "comms", &symbol_conf.comm_list_str, "comm[,comm...]",
1555
"only consider symbols in these comms"),
1556
OPT_STRING(0, "symbols", &symbol_conf.sym_list_str, "symbol[,symbol...]",
1557
"only consider these symbols"),
1558
OPT_BOOLEAN(0, "source", &annotate_opts.annotate_src,
1559
"Interleave source code with assembly code (default)"),
1560
OPT_BOOLEAN(0, "asm-raw", &annotate_opts.show_asm_raw,
1561
"Display raw encoding of assembly instructions (default)"),
1562
OPT_BOOLEAN(0, "demangle-kernel", &symbol_conf.demangle_kernel,
1563
"Enable kernel symbol demangling"),
1564
OPT_BOOLEAN(0, "no-bpf-event", &top.record_opts.no_bpf_event, "do not record bpf events"),
1565
OPT_STRING(0, "objdump", &objdump_path, "path",
1566
"objdump binary to use for disassembly and annotations"),
1567
OPT_STRING(0, "addr2line", &addr2line_path, "path",
1568
"addr2line binary to use for line numbers"),
1569
OPT_STRING('M', "disassembler-style", &disassembler_style, "disassembler style",
1570
"Specify disassembler style (e.g. -M intel for intel syntax)"),
1571
OPT_STRING(0, "prefix", &annotate_opts.prefix, "prefix",
1572
"Add prefix to source file path names in programs (with --prefix-strip)"),
1573
OPT_STRING(0, "prefix-strip", &annotate_opts.prefix_strip, "N",
1574
"Strip first N entries of source file path name in programs (with --prefix)"),
1575
OPT_STRING('u', "uid", &top.uid_str, "user", "user to profile"),
1576
OPT_CALLBACK(0, "percent-limit", &top, "percent",
1577
"Don't show entries under that percent", parse_percent_limit),
1578
OPT_CALLBACK(0, "percentage", NULL, "relative|absolute",
1579
"How to display percentage of filtered entries", parse_filter_percentage),
1580
OPT_STRING('w', "column-widths", &symbol_conf.col_width_list_str,
1581
"width[,width...]",
1582
"don't try to adjust column width, use these fixed values"),
1583
OPT_UINTEGER(0, "proc-map-timeout", &proc_map_timeout,
1584
"per thread proc mmap processing timeout in ms"),
1585
OPT_CALLBACK_NOOPT('b', "branch-any", &opts->branch_stack,
1586
"branch any", "sample any taken branches",
1587
parse_branch_stack),
1588
OPT_CALLBACK('j', "branch-filter", &opts->branch_stack,
1589
"branch filter mask", "branch stack filter modes",
1590
parse_branch_stack),
1591
OPT_BOOLEAN(0, "branch-history", &branch_call_mode,
1592
"add last branch records to call history"),
1593
OPT_BOOLEAN(0, "raw-trace", &symbol_conf.raw_trace,
1594
"Show raw trace event output (do not use print fmt or plugins)"),
1595
OPT_BOOLEAN('H', "hierarchy", &symbol_conf.report_hierarchy,
1596
"Show entries in a hierarchy"),
1597
OPT_BOOLEAN(0, "overwrite", &top.record_opts.overwrite,
1598
"Use a backward ring buffer, default: no"),
1599
OPT_BOOLEAN(0, "force", &symbol_conf.force, "don't complain, do it"),
1600
OPT_UINTEGER(0, "num-thread-synthesize", &top.nr_threads_synthesize,
1601
"number of thread to run event synthesize"),
1602
OPT_CALLBACK('G', "cgroup", &top.evlist, "name",
1603
"monitor event in cgroup name only", parse_cgroups),
1604
OPT_BOOLEAN(0, "namespaces", &opts->record_namespaces,
1605
"Record namespaces events"),
1606
OPT_BOOLEAN(0, "all-cgroups", &opts->record_cgroup,
1607
"Record cgroup events"),
1608
OPT_INTEGER(0, "group-sort-idx", &symbol_conf.group_sort_idx,
1609
"Sort the output by the event at the index n in group. "
1610
"If n is invalid, sort by the first event. "
1611
"WARNING: should be used on grouped events."),
1612
OPT_BOOLEAN(0, "stitch-lbr", &top.stitch_lbr,
1613
"Enable LBR callgraph stitching approach"),
1614
#ifdef HAVE_LIBPFM
1615
OPT_CALLBACK(0, "pfm-events", &top.evlist, "event",
1616
"libpfm4 event selector. use 'perf list' to list available events",
1617
parse_libpfm_events_option),
1618
#endif
1619
OPTS_EVSWITCH(&top.evswitch),
1620
OPT_END()
1621
};
1622
const char * const top_usage[] = {
1623
"perf top [<options>]",
1624
NULL
1625
};
1626
int status = hists__init();
1627
struct perf_env host_env;
1628
1629
if (status < 0)
1630
return status;
1631
1632
annotation_options__init();
1633
1634
annotate_opts.min_pcnt = 5;
1635
annotate_opts.context = 4;
1636
1637
top.evlist = evlist__new();
1638
if (top.evlist == NULL)
1639
return -ENOMEM;
1640
1641
perf_env__init(&host_env);
1642
status = perf_config(perf_top_config, &top);
1643
if (status)
1644
goto out_delete_evlist;
1645
/*
1646
* Since the per arch annotation init routine may need the cpuid, read
1647
* it here, since we are not getting this from the perf.data header.
1648
*/
1649
status = perf_env__set_cmdline(&host_env, argc, argv);
1650
if (status)
1651
goto out_delete_evlist;
1652
1653
status = perf_env__read_cpuid(&host_env);
1654
if (status) {
1655
/*
1656
* Some arches do not provide a get_cpuid(), so just use pr_debug, otherwise
1657
* warn the user explicitly.
1658
*/
1659
eprintf(status == ENOSYS ? 1 : 0, verbose,
1660
"Couldn't read the cpuid for this machine: %s\n",
1661
str_error_r(errno, errbuf, sizeof(errbuf)));
1662
}
1663
1664
argc = parse_options(argc, argv, options, top_usage, 0);
1665
if (argc)
1666
usage_with_options(top_usage, options);
1667
1668
if (disassembler_style) {
1669
annotate_opts.disassembler_style = strdup(disassembler_style);
1670
if (!annotate_opts.disassembler_style) {
1671
status = -ENOMEM;
1672
goto out_delete_evlist;
1673
}
1674
}
1675
if (objdump_path) {
1676
annotate_opts.objdump_path = strdup(objdump_path);
1677
if (!annotate_opts.objdump_path) {
1678
status = -ENOMEM;
1679
goto out_delete_evlist;
1680
}
1681
}
1682
if (addr2line_path) {
1683
symbol_conf.addr2line_path = strdup(addr2line_path);
1684
if (!symbol_conf.addr2line_path) {
1685
status = -ENOMEM;
1686
goto out_delete_evlist;
1687
}
1688
}
1689
1690
status = symbol__validate_sym_arguments();
1691
if (status)
1692
goto out_delete_evlist;
1693
1694
if (annotate_check_args() < 0)
1695
goto out_delete_evlist;
1696
1697
if (!top.evlist->core.nr_entries) {
1698
bool can_profile_kernel = perf_event_paranoid_check(1);
1699
int err = parse_event(top.evlist, can_profile_kernel ? "cycles:P" : "cycles:Pu");
1700
1701
if (err)
1702
goto out_delete_evlist;
1703
}
1704
1705
status = evswitch__init(&top.evswitch, top.evlist, stderr);
1706
if (status)
1707
goto out_delete_evlist;
1708
1709
if (symbol_conf.report_hierarchy) {
1710
/* disable incompatible options */
1711
symbol_conf.event_group = false;
1712
symbol_conf.cumulate_callchain = false;
1713
1714
if (field_order) {
1715
pr_err("Error: --hierarchy and --fields options cannot be used together\n");
1716
parse_options_usage(top_usage, options, "fields", 0);
1717
parse_options_usage(NULL, options, "hierarchy", 0);
1718
goto out_delete_evlist;
1719
}
1720
}
1721
1722
if (top.stitch_lbr && !(callchain_param.record_mode == CALLCHAIN_LBR)) {
1723
pr_err("Error: --stitch-lbr must be used with --call-graph lbr\n");
1724
goto out_delete_evlist;
1725
}
1726
1727
if (nr_cgroups > 0 && opts->record_cgroup) {
1728
pr_err("--cgroup and --all-cgroups cannot be used together\n");
1729
goto out_delete_evlist;
1730
}
1731
1732
if (branch_call_mode) {
1733
if (!opts->branch_stack)
1734
opts->branch_stack = PERF_SAMPLE_BRANCH_ANY;
1735
symbol_conf.use_callchain = true;
1736
callchain_param.key = CCKEY_ADDRESS;
1737
callchain_param.branch_callstack = true;
1738
callchain_param.enabled = true;
1739
if (callchain_param.record_mode == CALLCHAIN_NONE)
1740
callchain_param.record_mode = CALLCHAIN_FP;
1741
callchain_register_param(&callchain_param);
1742
if (!sort_order)
1743
sort_order = "srcline,symbol,dso";
1744
}
1745
1746
if (opts->branch_stack && callchain_param.enabled)
1747
symbol_conf.show_branchflag_count = true;
1748
1749
if (opts->branch_stack) {
1750
status = perf_env__read_core_pmu_caps(&host_env);
1751
if (status) {
1752
pr_err("PMU capability data is not available\n");
1753
goto out_delete_evlist;
1754
}
1755
}
1756
1757
sort__mode = SORT_MODE__TOP;
1758
/* display thread wants entries to be collapsed in a different tree */
1759
perf_hpp_list.need_collapse = 1;
1760
1761
if (top.use_stdio)
1762
use_browser = 0;
1763
#ifdef HAVE_SLANG_SUPPORT
1764
else if (top.use_tui)
1765
use_browser = 1;
1766
#endif
1767
1768
setup_browser(false);
1769
1770
top.session = __perf_session__new(/*data=*/NULL, /*tool=*/NULL,
1771
/*trace_event_repipe=*/false,
1772
&host_env);
1773
if (IS_ERR(top.session)) {
1774
status = PTR_ERR(top.session);
1775
top.session = NULL;
1776
goto out_delete_evlist;
1777
}
1778
top.evlist->session = top.session;
1779
1780
if (setup_sorting(top.evlist, perf_session__env(top.session)) < 0) {
1781
if (sort_order)
1782
parse_options_usage(top_usage, options, "s", 1);
1783
if (field_order)
1784
parse_options_usage(sort_order ? NULL : top_usage,
1785
options, "fields", 0);
1786
goto out_delete_evlist;
1787
}
1788
1789
status = target__validate(target);
1790
if (status) {
1791
target__strerror(target, status, errbuf, BUFSIZ);
1792
ui__warning("%s\n", errbuf);
1793
}
1794
1795
if (top.uid_str) {
1796
uid_t uid = parse_uid(top.uid_str);
1797
1798
if (uid == UINT_MAX) {
1799
ui__error("Invalid User: %s", top.uid_str);
1800
status = -EINVAL;
1801
goto out_delete_evlist;
1802
}
1803
status = parse_uid_filter(top.evlist, uid);
1804
if (status)
1805
goto out_delete_evlist;
1806
}
1807
1808
if (target__none(target))
1809
target->system_wide = true;
1810
1811
if (evlist__create_maps(top.evlist, target) < 0) {
1812
ui__error("Couldn't create thread/CPU maps: %s\n",
1813
errno == ENOENT ? "No such process" : str_error_r(errno, errbuf, sizeof(errbuf)));
1814
status = -errno;
1815
goto out_delete_evlist;
1816
}
1817
1818
if (top.delay_secs < 1)
1819
top.delay_secs = 1;
1820
1821
if (record_opts__config(opts)) {
1822
status = -EINVAL;
1823
goto out_delete_evlist;
1824
}
1825
1826
top.sym_evsel = evlist__first(top.evlist);
1827
1828
if (!callchain_param.enabled) {
1829
symbol_conf.cumulate_callchain = false;
1830
perf_hpp__cancel_cumulate(top.evlist);
1831
}
1832
1833
if (symbol_conf.cumulate_callchain && !callchain_param.order_set)
1834
callchain_param.order = ORDER_CALLER;
1835
1836
status = symbol__annotation_init();
1837
if (status < 0)
1838
goto out_delete_evlist;
1839
1840
annotation_config__init();
1841
1842
symbol_conf.try_vmlinux_path = (symbol_conf.vmlinux_name == NULL);
1843
status = symbol__init(NULL);
1844
if (status < 0)
1845
goto out_delete_evlist;
1846
1847
sort__setup_elide(stdout);
1848
1849
get_term_dimensions(&top.winsize);
1850
if (top.print_entries == 0) {
1851
perf_top__update_print_entries(&top);
1852
signal(SIGWINCH, winch_sig);
1853
}
1854
1855
if (!evlist__needs_bpf_sb_event(top.evlist))
1856
top.record_opts.no_bpf_event = true;
1857
1858
#ifdef HAVE_LIBBPF_SUPPORT
1859
if (!top.record_opts.no_bpf_event) {
1860
top.sb_evlist = evlist__new();
1861
1862
if (top.sb_evlist == NULL) {
1863
pr_err("Couldn't create side band evlist.\n.");
1864
status = -EINVAL;
1865
goto out_delete_evlist;
1866
}
1867
1868
if (evlist__add_bpf_sb_event(top.sb_evlist, &host_env)) {
1869
pr_err("Couldn't ask for PERF_RECORD_BPF_EVENT side band events.\n.");
1870
status = -EINVAL;
1871
goto out_delete_evlist;
1872
}
1873
}
1874
#endif
1875
1876
if (evlist__start_sb_thread(top.sb_evlist, target)) {
1877
pr_debug("Couldn't start the BPF side band thread:\nBPF programs starting from now on won't be annotatable\n");
1878
opts->no_bpf_event = true;
1879
}
1880
1881
status = __cmd_top(&top);
1882
1883
if (!opts->no_bpf_event)
1884
evlist__stop_sb_thread(top.sb_evlist);
1885
1886
out_delete_evlist:
1887
evlist__delete(top.evlist);
1888
perf_session__delete(top.session);
1889
annotation_options__exit();
1890
perf_env__exit(&host_env);
1891
1892
return status;
1893
}
1894
1895