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perf bench: Fix failing assertions in numa bench
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CommitLineData
f8a95309
ACM
1/*
2 * Copyright (C) 2011, Red Hat Inc, Arnaldo Carvalho de Melo <acme@redhat.com>
3 *
4 * Parts came from builtin-{top,stat,record}.c, see those files for further
5 * copyright notes.
6 *
7 * Released under the GPL v2. (and only v2, not any later version)
8 */
9
936be503 10#include <byteswap.h>
0f6a3015 11#include <linux/bitops.h>
85c66be1 12#include <lk/debugfs.h>
4e319027
RR
13#include <traceevent/event-parse.h>
14#include <linux/hw_breakpoint.h>
15#include <linux/perf_event.h>
bec19672 16#include <sys/resource.h>
4e319027 17#include "asm/bug.h"
69aad6f1 18#include "evsel.h"
70082dd9 19#include "evlist.h"
69aad6f1 20#include "util.h"
86bd5e86 21#include "cpumap.h"
fd78260b 22#include "thread_map.h"
12864b31 23#include "target.h"
26d33022 24#include "perf_regs.h"
e3e1a54f 25#include "debug.h"
69aad6f1 26
594ac61a
ACM
27static struct {
28 bool sample_id_all;
29 bool exclude_guest;
5c5e854b 30 bool mmap2;
594ac61a
ACM
31} perf_missing_features;
32
c52b12ed
ACM
33#define FD(e, x, y) (*(int *)xyarray__entry(e->fd, x, y))
34
75562573 35int __perf_evsel__sample_size(u64 sample_type)
c2a70653
ACM
36{
37 u64 mask = sample_type & PERF_SAMPLE_MASK;
38 int size = 0;
39 int i;
40
41 for (i = 0; i < 64; i++) {
42 if (mask & (1ULL << i))
43 size++;
44 }
45
46 size *= sizeof(u64);
47
48 return size;
49}
50
75562573
AH
51/**
52 * __perf_evsel__calc_id_pos - calculate id_pos.
53 * @sample_type: sample type
54 *
55 * This function returns the position of the event id (PERF_SAMPLE_ID or
56 * PERF_SAMPLE_IDENTIFIER) in a sample event i.e. in the array of struct
57 * sample_event.
58 */
59static int __perf_evsel__calc_id_pos(u64 sample_type)
60{
61 int idx = 0;
62
63 if (sample_type & PERF_SAMPLE_IDENTIFIER)
64 return 0;
65
66 if (!(sample_type & PERF_SAMPLE_ID))
67 return -1;
68
69 if (sample_type & PERF_SAMPLE_IP)
70 idx += 1;
71
72 if (sample_type & PERF_SAMPLE_TID)
73 idx += 1;
74
75 if (sample_type & PERF_SAMPLE_TIME)
76 idx += 1;
77
78 if (sample_type & PERF_SAMPLE_ADDR)
79 idx += 1;
80
81 return idx;
82}
83
84/**
85 * __perf_evsel__calc_is_pos - calculate is_pos.
86 * @sample_type: sample type
87 *
88 * This function returns the position (counting backwards) of the event id
89 * (PERF_SAMPLE_ID or PERF_SAMPLE_IDENTIFIER) in a non-sample event i.e. if
90 * sample_id_all is used there is an id sample appended to non-sample events.
91 */
92static int __perf_evsel__calc_is_pos(u64 sample_type)
93{
94 int idx = 1;
95
96 if (sample_type & PERF_SAMPLE_IDENTIFIER)
97 return 1;
98
99 if (!(sample_type & PERF_SAMPLE_ID))
100 return -1;
101
102 if (sample_type & PERF_SAMPLE_CPU)
103 idx += 1;
104
105 if (sample_type & PERF_SAMPLE_STREAM_ID)
106 idx += 1;
107
108 return idx;
109}
110
111void perf_evsel__calc_id_pos(struct perf_evsel *evsel)
112{
113 evsel->id_pos = __perf_evsel__calc_id_pos(evsel->attr.sample_type);
114 evsel->is_pos = __perf_evsel__calc_is_pos(evsel->attr.sample_type);
115}
116
4bf9ce1b 117void hists__init(struct hists *hists)
0e2a5f10
ACM
118{
119 memset(hists, 0, sizeof(*hists));
120 hists->entries_in_array[0] = hists->entries_in_array[1] = RB_ROOT;
121 hists->entries_in = &hists->entries_in_array[0];
122 hists->entries_collapsed = RB_ROOT;
123 hists->entries = RB_ROOT;
124 pthread_mutex_init(&hists->lock, NULL);
125}
126
7be5ebe8
ACM
127void __perf_evsel__set_sample_bit(struct perf_evsel *evsel,
128 enum perf_event_sample_format bit)
129{
130 if (!(evsel->attr.sample_type & bit)) {
131 evsel->attr.sample_type |= bit;
132 evsel->sample_size += sizeof(u64);
75562573 133 perf_evsel__calc_id_pos(evsel);
7be5ebe8
ACM
134 }
135}
136
137void __perf_evsel__reset_sample_bit(struct perf_evsel *evsel,
138 enum perf_event_sample_format bit)
139{
140 if (evsel->attr.sample_type & bit) {
141 evsel->attr.sample_type &= ~bit;
142 evsel->sample_size -= sizeof(u64);
75562573 143 perf_evsel__calc_id_pos(evsel);
7be5ebe8
ACM
144 }
145}
146
75562573
AH
147void perf_evsel__set_sample_id(struct perf_evsel *evsel,
148 bool can_sample_identifier)
7a5a5ca5 149{
75562573
AH
150 if (can_sample_identifier) {
151 perf_evsel__reset_sample_bit(evsel, ID);
152 perf_evsel__set_sample_bit(evsel, IDENTIFIER);
153 } else {
154 perf_evsel__set_sample_bit(evsel, ID);
155 }
7a5a5ca5
ACM
156 evsel->attr.read_format |= PERF_FORMAT_ID;
157}
158
ef1d1af2
ACM
159void perf_evsel__init(struct perf_evsel *evsel,
160 struct perf_event_attr *attr, int idx)
161{
162 evsel->idx = idx;
163 evsel->attr = *attr;
2cfda562 164 evsel->leader = evsel;
ef1d1af2 165 INIT_LIST_HEAD(&evsel->node);
1980c2eb 166 hists__init(&evsel->hists);
bde09467 167 evsel->sample_size = __perf_evsel__sample_size(attr->sample_type);
75562573 168 perf_evsel__calc_id_pos(evsel);
ef1d1af2
ACM
169}
170
23a2f3ab 171struct perf_evsel *perf_evsel__new(struct perf_event_attr *attr, int idx)
69aad6f1
ACM
172{
173 struct perf_evsel *evsel = zalloc(sizeof(*evsel));
174
ef1d1af2
ACM
175 if (evsel != NULL)
176 perf_evsel__init(evsel, attr, idx);
69aad6f1
ACM
177
178 return evsel;
179}
180
201b7334 181struct event_format *event_format__new(const char *sys, const char *name)
efd2b924
ACM
182{
183 int fd, n;
184 char *filename;
185 void *bf = NULL, *nbf;
186 size_t size = 0, alloc_size = 0;
187 struct event_format *format = NULL;
188
189 if (asprintf(&filename, "%s/%s/%s/format", tracing_events_path, sys, name) < 0)
190 goto out;
191
192 fd = open(filename, O_RDONLY);
193 if (fd < 0)
194 goto out_free_filename;
195
196 do {
197 if (size == alloc_size) {
198 alloc_size += BUFSIZ;
199 nbf = realloc(bf, alloc_size);
200 if (nbf == NULL)
201 goto out_free_bf;
202 bf = nbf;
203 }
204
7cab84e8 205 n = read(fd, bf + size, alloc_size - size);
efd2b924
ACM
206 if (n < 0)
207 goto out_free_bf;
208 size += n;
209 } while (n > 0);
210
211 pevent_parse_format(&format, bf, size, sys);
212
213out_free_bf:
214 free(bf);
215 close(fd);
216out_free_filename:
217 free(filename);
218out:
219 return format;
220}
221
222struct perf_evsel *perf_evsel__newtp(const char *sys, const char *name, int idx)
223{
224 struct perf_evsel *evsel = zalloc(sizeof(*evsel));
225
226 if (evsel != NULL) {
227 struct perf_event_attr attr = {
0b80f8b3
ACM
228 .type = PERF_TYPE_TRACEPOINT,
229 .sample_type = (PERF_SAMPLE_RAW | PERF_SAMPLE_TIME |
230 PERF_SAMPLE_CPU | PERF_SAMPLE_PERIOD),
efd2b924
ACM
231 };
232
e48ffe2b
ACM
233 if (asprintf(&evsel->name, "%s:%s", sys, name) < 0)
234 goto out_free;
235
efd2b924
ACM
236 evsel->tp_format = event_format__new(sys, name);
237 if (evsel->tp_format == NULL)
238 goto out_free;
239
0b80f8b3 240 event_attr_init(&attr);
efd2b924 241 attr.config = evsel->tp_format->id;
0b80f8b3 242 attr.sample_period = 1;
efd2b924 243 perf_evsel__init(evsel, &attr, idx);
efd2b924
ACM
244 }
245
246 return evsel;
247
248out_free:
e48ffe2b 249 free(evsel->name);
efd2b924
ACM
250 free(evsel);
251 return NULL;
252}
253
8ad7013b 254const char *perf_evsel__hw_names[PERF_COUNT_HW_MAX] = {
c410431c
ACM
255 "cycles",
256 "instructions",
257 "cache-references",
258 "cache-misses",
259 "branches",
260 "branch-misses",
261 "bus-cycles",
262 "stalled-cycles-frontend",
263 "stalled-cycles-backend",
264 "ref-cycles",
265};
266
dd4f5223 267static const char *__perf_evsel__hw_name(u64 config)
c410431c
ACM
268{
269 if (config < PERF_COUNT_HW_MAX && perf_evsel__hw_names[config])
270 return perf_evsel__hw_names[config];
271
272 return "unknown-hardware";
273}
274
27f18617 275static int perf_evsel__add_modifiers(struct perf_evsel *evsel, char *bf, size_t size)
c410431c 276{
27f18617 277 int colon = 0, r = 0;
c410431c 278 struct perf_event_attr *attr = &evsel->attr;
c410431c
ACM
279 bool exclude_guest_default = false;
280
281#define MOD_PRINT(context, mod) do { \
282 if (!attr->exclude_##context) { \
27f18617 283 if (!colon) colon = ++r; \
c410431c
ACM
284 r += scnprintf(bf + r, size - r, "%c", mod); \
285 } } while(0)
286
287 if (attr->exclude_kernel || attr->exclude_user || attr->exclude_hv) {
288 MOD_PRINT(kernel, 'k');
289 MOD_PRINT(user, 'u');
290 MOD_PRINT(hv, 'h');
291 exclude_guest_default = true;
292 }
293
294 if (attr->precise_ip) {
295 if (!colon)
27f18617 296 colon = ++r;
c410431c
ACM
297 r += scnprintf(bf + r, size - r, "%.*s", attr->precise_ip, "ppp");
298 exclude_guest_default = true;
299 }
300
301 if (attr->exclude_host || attr->exclude_guest == exclude_guest_default) {
302 MOD_PRINT(host, 'H');
303 MOD_PRINT(guest, 'G');
304 }
305#undef MOD_PRINT
306 if (colon)
27f18617 307 bf[colon - 1] = ':';
c410431c
ACM
308 return r;
309}
310
27f18617
ACM
311static int perf_evsel__hw_name(struct perf_evsel *evsel, char *bf, size_t size)
312{
313 int r = scnprintf(bf, size, "%s", __perf_evsel__hw_name(evsel->attr.config));
314 return r + perf_evsel__add_modifiers(evsel, bf + r, size - r);
315}
316
8ad7013b 317const char *perf_evsel__sw_names[PERF_COUNT_SW_MAX] = {
335c2f5d
ACM
318 "cpu-clock",
319 "task-clock",
320 "page-faults",
321 "context-switches",
8ad7013b 322 "cpu-migrations",
335c2f5d
ACM
323 "minor-faults",
324 "major-faults",
325 "alignment-faults",
326 "emulation-faults",
d22d1a2a 327 "dummy",
335c2f5d
ACM
328};
329
dd4f5223 330static const char *__perf_evsel__sw_name(u64 config)
335c2f5d
ACM
331{
332 if (config < PERF_COUNT_SW_MAX && perf_evsel__sw_names[config])
333 return perf_evsel__sw_names[config];
334 return "unknown-software";
335}
336
337static int perf_evsel__sw_name(struct perf_evsel *evsel, char *bf, size_t size)
338{
339 int r = scnprintf(bf, size, "%s", __perf_evsel__sw_name(evsel->attr.config));
340 return r + perf_evsel__add_modifiers(evsel, bf + r, size - r);
341}
342
287e74aa
JO
343static int __perf_evsel__bp_name(char *bf, size_t size, u64 addr, u64 type)
344{
345 int r;
346
347 r = scnprintf(bf, size, "mem:0x%" PRIx64 ":", addr);
348
349 if (type & HW_BREAKPOINT_R)
350 r += scnprintf(bf + r, size - r, "r");
351
352 if (type & HW_BREAKPOINT_W)
353 r += scnprintf(bf + r, size - r, "w");
354
355 if (type & HW_BREAKPOINT_X)
356 r += scnprintf(bf + r, size - r, "x");
357
358 return r;
359}
360
361static int perf_evsel__bp_name(struct perf_evsel *evsel, char *bf, size_t size)
362{
363 struct perf_event_attr *attr = &evsel->attr;
364 int r = __perf_evsel__bp_name(bf, size, attr->bp_addr, attr->bp_type);
365 return r + perf_evsel__add_modifiers(evsel, bf + r, size - r);
366}
367
0b668bc9
ACM
368const char *perf_evsel__hw_cache[PERF_COUNT_HW_CACHE_MAX]
369 [PERF_EVSEL__MAX_ALIASES] = {
370 { "L1-dcache", "l1-d", "l1d", "L1-data", },
371 { "L1-icache", "l1-i", "l1i", "L1-instruction", },
372 { "LLC", "L2", },
373 { "dTLB", "d-tlb", "Data-TLB", },
374 { "iTLB", "i-tlb", "Instruction-TLB", },
375 { "branch", "branches", "bpu", "btb", "bpc", },
376 { "node", },
377};
378
379const char *perf_evsel__hw_cache_op[PERF_COUNT_HW_CACHE_OP_MAX]
380 [PERF_EVSEL__MAX_ALIASES] = {
381 { "load", "loads", "read", },
382 { "store", "stores", "write", },
383 { "prefetch", "prefetches", "speculative-read", "speculative-load", },
384};
385
386const char *perf_evsel__hw_cache_result[PERF_COUNT_HW_CACHE_RESULT_MAX]
387 [PERF_EVSEL__MAX_ALIASES] = {
388 { "refs", "Reference", "ops", "access", },
389 { "misses", "miss", },
390};
391
392#define C(x) PERF_COUNT_HW_CACHE_##x
393#define CACHE_READ (1 << C(OP_READ))
394#define CACHE_WRITE (1 << C(OP_WRITE))
395#define CACHE_PREFETCH (1 << C(OP_PREFETCH))
396#define COP(x) (1 << x)
397
398/*
399 * cache operartion stat
400 * L1I : Read and prefetch only
401 * ITLB and BPU : Read-only
402 */
403static unsigned long perf_evsel__hw_cache_stat[C(MAX)] = {
404 [C(L1D)] = (CACHE_READ | CACHE_WRITE | CACHE_PREFETCH),
405 [C(L1I)] = (CACHE_READ | CACHE_PREFETCH),
406 [C(LL)] = (CACHE_READ | CACHE_WRITE | CACHE_PREFETCH),
407 [C(DTLB)] = (CACHE_READ | CACHE_WRITE | CACHE_PREFETCH),
408 [C(ITLB)] = (CACHE_READ),
409 [C(BPU)] = (CACHE_READ),
410 [C(NODE)] = (CACHE_READ | CACHE_WRITE | CACHE_PREFETCH),
411};
412
413bool perf_evsel__is_cache_op_valid(u8 type, u8 op)
414{
415 if (perf_evsel__hw_cache_stat[type] & COP(op))
416 return true; /* valid */
417 else
418 return false; /* invalid */
419}
420
421int __perf_evsel__hw_cache_type_op_res_name(u8 type, u8 op, u8 result,
422 char *bf, size_t size)
423{
424 if (result) {
425 return scnprintf(bf, size, "%s-%s-%s", perf_evsel__hw_cache[type][0],
426 perf_evsel__hw_cache_op[op][0],
427 perf_evsel__hw_cache_result[result][0]);
428 }
429
430 return scnprintf(bf, size, "%s-%s", perf_evsel__hw_cache[type][0],
431 perf_evsel__hw_cache_op[op][1]);
432}
433
dd4f5223 434static int __perf_evsel__hw_cache_name(u64 config, char *bf, size_t size)
0b668bc9
ACM
435{
436 u8 op, result, type = (config >> 0) & 0xff;
437 const char *err = "unknown-ext-hardware-cache-type";
438
439 if (type > PERF_COUNT_HW_CACHE_MAX)
440 goto out_err;
441
442 op = (config >> 8) & 0xff;
443 err = "unknown-ext-hardware-cache-op";
444 if (op > PERF_COUNT_HW_CACHE_OP_MAX)
445 goto out_err;
446
447 result = (config >> 16) & 0xff;
448 err = "unknown-ext-hardware-cache-result";
449 if (result > PERF_COUNT_HW_CACHE_RESULT_MAX)
450 goto out_err;
451
452 err = "invalid-cache";
453 if (!perf_evsel__is_cache_op_valid(type, op))
454 goto out_err;
455
456 return __perf_evsel__hw_cache_type_op_res_name(type, op, result, bf, size);
457out_err:
458 return scnprintf(bf, size, "%s", err);
459}
460
461static int perf_evsel__hw_cache_name(struct perf_evsel *evsel, char *bf, size_t size)
462{
463 int ret = __perf_evsel__hw_cache_name(evsel->attr.config, bf, size);
464 return ret + perf_evsel__add_modifiers(evsel, bf + ret, size - ret);
465}
466
6eef3d9c
ACM
467static int perf_evsel__raw_name(struct perf_evsel *evsel, char *bf, size_t size)
468{
469 int ret = scnprintf(bf, size, "raw 0x%" PRIx64, evsel->attr.config);
470 return ret + perf_evsel__add_modifiers(evsel, bf + ret, size - ret);
471}
472
7289f83c 473const char *perf_evsel__name(struct perf_evsel *evsel)
a4460836 474{
7289f83c 475 char bf[128];
a4460836 476
7289f83c
ACM
477 if (evsel->name)
478 return evsel->name;
c410431c
ACM
479
480 switch (evsel->attr.type) {
481 case PERF_TYPE_RAW:
6eef3d9c 482 perf_evsel__raw_name(evsel, bf, sizeof(bf));
c410431c
ACM
483 break;
484
485 case PERF_TYPE_HARDWARE:
7289f83c 486 perf_evsel__hw_name(evsel, bf, sizeof(bf));
c410431c 487 break;
0b668bc9
ACM
488
489 case PERF_TYPE_HW_CACHE:
7289f83c 490 perf_evsel__hw_cache_name(evsel, bf, sizeof(bf));
0b668bc9
ACM
491 break;
492
335c2f5d 493 case PERF_TYPE_SOFTWARE:
7289f83c 494 perf_evsel__sw_name(evsel, bf, sizeof(bf));
335c2f5d
ACM
495 break;
496
a4460836 497 case PERF_TYPE_TRACEPOINT:
7289f83c 498 scnprintf(bf, sizeof(bf), "%s", "unknown tracepoint");
a4460836
ACM
499 break;
500
287e74aa
JO
501 case PERF_TYPE_BREAKPOINT:
502 perf_evsel__bp_name(evsel, bf, sizeof(bf));
503 break;
504
c410431c 505 default:
ca1b1457
RR
506 scnprintf(bf, sizeof(bf), "unknown attr type: %d",
507 evsel->attr.type);
a4460836 508 break;
c410431c
ACM
509 }
510
7289f83c
ACM
511 evsel->name = strdup(bf);
512
513 return evsel->name ?: "unknown";
c410431c
ACM
514}
515
717e263f
NK
516const char *perf_evsel__group_name(struct perf_evsel *evsel)
517{
518 return evsel->group_name ?: "anon group";
519}
520
521int perf_evsel__group_desc(struct perf_evsel *evsel, char *buf, size_t size)
522{
523 int ret;
524 struct perf_evsel *pos;
525 const char *group_name = perf_evsel__group_name(evsel);
526
527 ret = scnprintf(buf, size, "%s", group_name);
528
529 ret += scnprintf(buf + ret, size - ret, " { %s",
530 perf_evsel__name(evsel));
531
532 for_each_group_member(pos, evsel)
533 ret += scnprintf(buf + ret, size - ret, ", %s",
534 perf_evsel__name(pos));
535
536 ret += scnprintf(buf + ret, size - ret, " }");
537
538 return ret;
539}
540
774cb499
JO
541/*
542 * The enable_on_exec/disabled value strategy:
543 *
544 * 1) For any type of traced program:
545 * - all independent events and group leaders are disabled
546 * - all group members are enabled
547 *
548 * Group members are ruled by group leaders. They need to
549 * be enabled, because the group scheduling relies on that.
550 *
551 * 2) For traced programs executed by perf:
552 * - all independent events and group leaders have
553 * enable_on_exec set
554 * - we don't specifically enable or disable any event during
555 * the record command
556 *
557 * Independent events and group leaders are initially disabled
558 * and get enabled by exec. Group members are ruled by group
559 * leaders as stated in 1).
560 *
561 * 3) For traced programs attached by perf (pid/tid):
562 * - we specifically enable or disable all events during
563 * the record command
564 *
565 * When attaching events to already running traced we
566 * enable/disable events specifically, as there's no
567 * initial traced exec call.
568 */
cac21425
JO
569void perf_evsel__config(struct perf_evsel *evsel,
570 struct perf_record_opts *opts)
0f82ebc4 571{
3c176311 572 struct perf_evsel *leader = evsel->leader;
0f82ebc4
ACM
573 struct perf_event_attr *attr = &evsel->attr;
574 int track = !evsel->idx; /* only the first counter needs these */
575
594ac61a 576 attr->sample_id_all = perf_missing_features.sample_id_all ? 0 : 1;
0f82ebc4 577 attr->inherit = !opts->no_inherit;
0f82ebc4 578
7be5ebe8
ACM
579 perf_evsel__set_sample_bit(evsel, IP);
580 perf_evsel__set_sample_bit(evsel, TID);
0f82ebc4 581
3c176311
JO
582 if (evsel->sample_read) {
583 perf_evsel__set_sample_bit(evsel, READ);
584
585 /*
586 * We need ID even in case of single event, because
587 * PERF_SAMPLE_READ process ID specific data.
588 */
75562573 589 perf_evsel__set_sample_id(evsel, false);
3c176311
JO
590
591 /*
592 * Apply group format only if we belong to group
593 * with more than one members.
594 */
595 if (leader->nr_members > 1) {
596 attr->read_format |= PERF_FORMAT_GROUP;
597 attr->inherit = 0;
598 }
599 }
600
0f82ebc4
ACM
601 /*
602 * We default some events to a 1 default interval. But keep
603 * it a weak assumption overridable by the user.
604 */
605 if (!attr->sample_period || (opts->user_freq != UINT_MAX &&
606 opts->user_interval != ULLONG_MAX)) {
607 if (opts->freq) {
7be5ebe8 608 perf_evsel__set_sample_bit(evsel, PERIOD);
0f82ebc4
ACM
609 attr->freq = 1;
610 attr->sample_freq = opts->freq;
611 } else {
612 attr->sample_period = opts->default_interval;
613 }
614 }
615
3c176311
JO
616 /*
617 * Disable sampling for all group members other
618 * than leader in case leader 'leads' the sampling.
619 */
620 if ((leader != evsel) && leader->sample_read) {
621 attr->sample_freq = 0;
622 attr->sample_period = 0;
623 }
624
0f82ebc4
ACM
625 if (opts->no_samples)
626 attr->sample_freq = 0;
627
628 if (opts->inherit_stat)
629 attr->inherit_stat = 1;
630
631 if (opts->sample_address) {
7be5ebe8 632 perf_evsel__set_sample_bit(evsel, ADDR);
0f82ebc4
ACM
633 attr->mmap_data = track;
634 }
635
26d33022 636 if (opts->call_graph) {
7be5ebe8 637 perf_evsel__set_sample_bit(evsel, CALLCHAIN);
0f82ebc4 638
26d33022 639 if (opts->call_graph == CALLCHAIN_DWARF) {
7be5ebe8
ACM
640 perf_evsel__set_sample_bit(evsel, REGS_USER);
641 perf_evsel__set_sample_bit(evsel, STACK_USER);
26d33022
JO
642 attr->sample_regs_user = PERF_REGS_MASK;
643 attr->sample_stack_user = opts->stack_dump_size;
644 attr->exclude_callchain_user = 1;
645 }
646 }
647
e40ee742 648 if (perf_target__has_cpu(&opts->target))
7be5ebe8 649 perf_evsel__set_sample_bit(evsel, CPU);
0f82ebc4 650
3e76ac78 651 if (opts->period)
7be5ebe8 652 perf_evsel__set_sample_bit(evsel, PERIOD);
3e76ac78 653
594ac61a 654 if (!perf_missing_features.sample_id_all &&
d67356e7 655 (opts->sample_time || !opts->no_inherit ||
aa22dd49 656 perf_target__has_cpu(&opts->target)))
7be5ebe8 657 perf_evsel__set_sample_bit(evsel, TIME);
0f82ebc4
ACM
658
659 if (opts->raw_samples) {
7be5ebe8
ACM
660 perf_evsel__set_sample_bit(evsel, TIME);
661 perf_evsel__set_sample_bit(evsel, RAW);
662 perf_evsel__set_sample_bit(evsel, CPU);
0f82ebc4
ACM
663 }
664
ccf49bfc
SE
665 if (opts->sample_address)
666 attr->sample_type |= PERF_SAMPLE_DATA_SRC;
667
0f82ebc4
ACM
668 if (opts->no_delay) {
669 attr->watermark = 0;
670 attr->wakeup_events = 1;
671 }
bdfebd84 672 if (opts->branch_stack) {
7be5ebe8 673 perf_evsel__set_sample_bit(evsel, BRANCH_STACK);
bdfebd84
RAV
674 attr->branch_sample_type = opts->branch_stack;
675 }
0f82ebc4 676
05484298
AK
677 if (opts->sample_weight)
678 attr->sample_type |= PERF_SAMPLE_WEIGHT;
679
5c5e854b
SE
680 attr->mmap = track;
681 attr->mmap2 = track && !perf_missing_features.mmap2;
682 attr->comm = track;
0f82ebc4 683
475eeab9
AK
684 if (opts->sample_transaction)
685 attr->sample_type |= PERF_SAMPLE_TRANSACTION;
686
774cb499
JO
687 /*
688 * XXX see the function comment above
689 *
690 * Disabling only independent events or group leaders,
691 * keeping group members enabled.
692 */
823254ed 693 if (perf_evsel__is_group_leader(evsel))
774cb499
JO
694 attr->disabled = 1;
695
696 /*
697 * Setting enable_on_exec for independent events and
698 * group leaders for traced executed by perf.
699 */
823254ed 700 if (perf_target__none(&opts->target) && perf_evsel__is_group_leader(evsel))
0f82ebc4 701 attr->enable_on_exec = 1;
0f82ebc4
ACM
702}
703
69aad6f1
ACM
704int perf_evsel__alloc_fd(struct perf_evsel *evsel, int ncpus, int nthreads)
705{
4af4c955 706 int cpu, thread;
69aad6f1 707 evsel->fd = xyarray__new(ncpus, nthreads, sizeof(int));
4af4c955
DA
708
709 if (evsel->fd) {
710 for (cpu = 0; cpu < ncpus; cpu++) {
711 for (thread = 0; thread < nthreads; thread++) {
712 FD(evsel, cpu, thread) = -1;
713 }
714 }
715 }
716
69aad6f1
ACM
717 return evsel->fd != NULL ? 0 : -ENOMEM;
718}
719
e2407bef
AK
720static int perf_evsel__run_ioctl(struct perf_evsel *evsel, int ncpus, int nthreads,
721 int ioc, void *arg)
745cefc5
ACM
722{
723 int cpu, thread;
724
725 for (cpu = 0; cpu < ncpus; cpu++) {
726 for (thread = 0; thread < nthreads; thread++) {
727 int fd = FD(evsel, cpu, thread),
e2407bef 728 err = ioctl(fd, ioc, arg);
745cefc5
ACM
729
730 if (err)
731 return err;
732 }
733 }
734
735 return 0;
736}
737
e2407bef
AK
738int perf_evsel__set_filter(struct perf_evsel *evsel, int ncpus, int nthreads,
739 const char *filter)
740{
741 return perf_evsel__run_ioctl(evsel, ncpus, nthreads,
742 PERF_EVENT_IOC_SET_FILTER,
743 (void *)filter);
744}
745
746int perf_evsel__enable(struct perf_evsel *evsel, int ncpus, int nthreads)
747{
748 return perf_evsel__run_ioctl(evsel, ncpus, nthreads,
749 PERF_EVENT_IOC_ENABLE,
750 0);
751}
752
70db7533
ACM
753int perf_evsel__alloc_id(struct perf_evsel *evsel, int ncpus, int nthreads)
754{
a91e5431
ACM
755 evsel->sample_id = xyarray__new(ncpus, nthreads, sizeof(struct perf_sample_id));
756 if (evsel->sample_id == NULL)
757 return -ENOMEM;
758
759 evsel->id = zalloc(ncpus * nthreads * sizeof(u64));
760 if (evsel->id == NULL) {
761 xyarray__delete(evsel->sample_id);
762 evsel->sample_id = NULL;
763 return -ENOMEM;
764 }
765
766 return 0;
70db7533
ACM
767}
768
a7e191c3
FD
769void perf_evsel__reset_counts(struct perf_evsel *evsel, int ncpus)
770{
771 memset(evsel->counts, 0, (sizeof(*evsel->counts) +
772 (ncpus * sizeof(struct perf_counts_values))));
773}
774
c52b12ed
ACM
775int perf_evsel__alloc_counts(struct perf_evsel *evsel, int ncpus)
776{
777 evsel->counts = zalloc((sizeof(*evsel->counts) +
778 (ncpus * sizeof(struct perf_counts_values))));
779 return evsel->counts != NULL ? 0 : -ENOMEM;
780}
781
69aad6f1
ACM
782void perf_evsel__free_fd(struct perf_evsel *evsel)
783{
784 xyarray__delete(evsel->fd);
785 evsel->fd = NULL;
786}
787
70db7533
ACM
788void perf_evsel__free_id(struct perf_evsel *evsel)
789{
a91e5431
ACM
790 xyarray__delete(evsel->sample_id);
791 evsel->sample_id = NULL;
792 free(evsel->id);
70db7533
ACM
793 evsel->id = NULL;
794}
795
c52b12ed
ACM
796void perf_evsel__close_fd(struct perf_evsel *evsel, int ncpus, int nthreads)
797{
798 int cpu, thread;
799
800 for (cpu = 0; cpu < ncpus; cpu++)
801 for (thread = 0; thread < nthreads; ++thread) {
802 close(FD(evsel, cpu, thread));
803 FD(evsel, cpu, thread) = -1;
804 }
805}
806
43f8e76e
NK
807void perf_evsel__free_counts(struct perf_evsel *evsel)
808{
809 free(evsel->counts);
810}
811
ef1d1af2 812void perf_evsel__exit(struct perf_evsel *evsel)
69aad6f1
ACM
813{
814 assert(list_empty(&evsel->node));
736b05a0
NK
815 perf_evsel__free_fd(evsel);
816 perf_evsel__free_id(evsel);
ef1d1af2
ACM
817}
818
819void perf_evsel__delete(struct perf_evsel *evsel)
820{
821 perf_evsel__exit(evsel);
023695d9 822 close_cgroup(evsel->cgrp);
6a4bb04c 823 free(evsel->group_name);
e48ffe2b 824 if (evsel->tp_format)
efd2b924 825 pevent_free_format(evsel->tp_format);
f0c55bcf 826 free(evsel->name);
69aad6f1
ACM
827 free(evsel);
828}
c52b12ed 829
c7a79c47
SE
830static inline void compute_deltas(struct perf_evsel *evsel,
831 int cpu,
832 struct perf_counts_values *count)
833{
834 struct perf_counts_values tmp;
835
836 if (!evsel->prev_raw_counts)
837 return;
838
839 if (cpu == -1) {
840 tmp = evsel->prev_raw_counts->aggr;
841 evsel->prev_raw_counts->aggr = *count;
842 } else {
843 tmp = evsel->prev_raw_counts->cpu[cpu];
844 evsel->prev_raw_counts->cpu[cpu] = *count;
845 }
846
847 count->val = count->val - tmp.val;
848 count->ena = count->ena - tmp.ena;
849 count->run = count->run - tmp.run;
850}
851
c52b12ed
ACM
852int __perf_evsel__read_on_cpu(struct perf_evsel *evsel,
853 int cpu, int thread, bool scale)
854{
855 struct perf_counts_values count;
856 size_t nv = scale ? 3 : 1;
857
858 if (FD(evsel, cpu, thread) < 0)
859 return -EINVAL;
860
4eed11d5
ACM
861 if (evsel->counts == NULL && perf_evsel__alloc_counts(evsel, cpu + 1) < 0)
862 return -ENOMEM;
863
c52b12ed
ACM
864 if (readn(FD(evsel, cpu, thread), &count, nv * sizeof(u64)) < 0)
865 return -errno;
866
c7a79c47
SE
867 compute_deltas(evsel, cpu, &count);
868
c52b12ed
ACM
869 if (scale) {
870 if (count.run == 0)
871 count.val = 0;
872 else if (count.run < count.ena)
873 count.val = (u64)((double)count.val * count.ena / count.run + 0.5);
874 } else
875 count.ena = count.run = 0;
876
877 evsel->counts->cpu[cpu] = count;
878 return 0;
879}
880
881int __perf_evsel__read(struct perf_evsel *evsel,
882 int ncpus, int nthreads, bool scale)
883{
884 size_t nv = scale ? 3 : 1;
885 int cpu, thread;
886 struct perf_counts_values *aggr = &evsel->counts->aggr, count;
887
52bcd994 888 aggr->val = aggr->ena = aggr->run = 0;
c52b12ed
ACM
889
890 for (cpu = 0; cpu < ncpus; cpu++) {
891 for (thread = 0; thread < nthreads; thread++) {
892 if (FD(evsel, cpu, thread) < 0)
893 continue;
894
895 if (readn(FD(evsel, cpu, thread),
896 &count, nv * sizeof(u64)) < 0)
897 return -errno;
898
899 aggr->val += count.val;
900 if (scale) {
901 aggr->ena += count.ena;
902 aggr->run += count.run;
903 }
904 }
905 }
906
c7a79c47
SE
907 compute_deltas(evsel, -1, aggr);
908
c52b12ed
ACM
909 evsel->counts->scaled = 0;
910 if (scale) {
911 if (aggr->run == 0) {
912 evsel->counts->scaled = -1;
913 aggr->val = 0;
914 return 0;
915 }
916
917 if (aggr->run < aggr->ena) {
918 evsel->counts->scaled = 1;
919 aggr->val = (u64)((double)aggr->val * aggr->ena / aggr->run + 0.5);
920 }
921 } else
922 aggr->ena = aggr->run = 0;
923
924 return 0;
925}
48290609 926
6a4bb04c
JO
927static int get_group_fd(struct perf_evsel *evsel, int cpu, int thread)
928{
929 struct perf_evsel *leader = evsel->leader;
930 int fd;
931
823254ed 932 if (perf_evsel__is_group_leader(evsel))
6a4bb04c
JO
933 return -1;
934
935 /*
936 * Leader must be already processed/open,
937 * if not it's a bug.
938 */
939 BUG_ON(!leader->fd);
940
941 fd = FD(leader, cpu, thread);
942 BUG_ON(fd == -1);
943
944 return fd;
945}
946
e3e1a54f
AH
947#define __PRINT_ATTR(fmt, cast, field) \
948 fprintf(fp, " %-19s "fmt"\n", #field, cast attr->field)
949
950#define PRINT_ATTR_U32(field) __PRINT_ATTR("%u" , , field)
951#define PRINT_ATTR_X32(field) __PRINT_ATTR("%#x", , field)
952#define PRINT_ATTR_U64(field) __PRINT_ATTR("%" PRIu64, (uint64_t), field)
953#define PRINT_ATTR_X64(field) __PRINT_ATTR("%#"PRIx64, (uint64_t), field)
954
955#define PRINT_ATTR2N(name1, field1, name2, field2) \
956 fprintf(fp, " %-19s %u %-19s %u\n", \
957 name1, attr->field1, name2, attr->field2)
958
959#define PRINT_ATTR2(field1, field2) \
960 PRINT_ATTR2N(#field1, field1, #field2, field2)
961
962static size_t perf_event_attr__fprintf(struct perf_event_attr *attr, FILE *fp)
963{
964 size_t ret = 0;
965
966 ret += fprintf(fp, "%.60s\n", graph_dotted_line);
967 ret += fprintf(fp, "perf_event_attr:\n");
968
969 ret += PRINT_ATTR_U32(type);
970 ret += PRINT_ATTR_U32(size);
971 ret += PRINT_ATTR_X64(config);
972 ret += PRINT_ATTR_U64(sample_period);
973 ret += PRINT_ATTR_U64(sample_freq);
974 ret += PRINT_ATTR_X64(sample_type);
975 ret += PRINT_ATTR_X64(read_format);
976
977 ret += PRINT_ATTR2(disabled, inherit);
978 ret += PRINT_ATTR2(pinned, exclusive);
979 ret += PRINT_ATTR2(exclude_user, exclude_kernel);
980 ret += PRINT_ATTR2(exclude_hv, exclude_idle);
981 ret += PRINT_ATTR2(mmap, comm);
982 ret += PRINT_ATTR2(freq, inherit_stat);
983 ret += PRINT_ATTR2(enable_on_exec, task);
984 ret += PRINT_ATTR2(watermark, precise_ip);
985 ret += PRINT_ATTR2(mmap_data, sample_id_all);
986 ret += PRINT_ATTR2(exclude_host, exclude_guest);
987 ret += PRINT_ATTR2N("excl.callchain_kern", exclude_callchain_kernel,
988 "excl.callchain_user", exclude_callchain_user);
989
990 ret += PRINT_ATTR_U32(wakeup_events);
991 ret += PRINT_ATTR_U32(wakeup_watermark);
992 ret += PRINT_ATTR_X32(bp_type);
993 ret += PRINT_ATTR_X64(bp_addr);
994 ret += PRINT_ATTR_X64(config1);
995 ret += PRINT_ATTR_U64(bp_len);
996 ret += PRINT_ATTR_X64(config2);
997 ret += PRINT_ATTR_X64(branch_sample_type);
998 ret += PRINT_ATTR_X64(sample_regs_user);
999 ret += PRINT_ATTR_U32(sample_stack_user);
1000
1001 ret += fprintf(fp, "%.60s\n", graph_dotted_line);
1002
1003 return ret;
1004}
1005
0252208e 1006static int __perf_evsel__open(struct perf_evsel *evsel, struct cpu_map *cpus,
6a4bb04c 1007 struct thread_map *threads)
48290609 1008{
0252208e 1009 int cpu, thread;
023695d9 1010 unsigned long flags = 0;
727ab04e 1011 int pid = -1, err;
bec19672 1012 enum { NO_CHANGE, SET_TO_MAX, INCREASED_MAX } set_rlimit = NO_CHANGE;
48290609 1013
0252208e
ACM
1014 if (evsel->fd == NULL &&
1015 perf_evsel__alloc_fd(evsel, cpus->nr, threads->nr) < 0)
727ab04e 1016 return -ENOMEM;
4eed11d5 1017
023695d9
SE
1018 if (evsel->cgrp) {
1019 flags = PERF_FLAG_PID_CGROUP;
1020 pid = evsel->cgrp->fd;
1021 }
1022
594ac61a 1023fallback_missing_features:
5c5e854b
SE
1024 if (perf_missing_features.mmap2)
1025 evsel->attr.mmap2 = 0;
594ac61a
ACM
1026 if (perf_missing_features.exclude_guest)
1027 evsel->attr.exclude_guest = evsel->attr.exclude_host = 0;
1028retry_sample_id:
1029 if (perf_missing_features.sample_id_all)
1030 evsel->attr.sample_id_all = 0;
1031
e3e1a54f
AH
1032 if (verbose >= 2)
1033 perf_event_attr__fprintf(&evsel->attr, stderr);
1034
86bd5e86 1035 for (cpu = 0; cpu < cpus->nr; cpu++) {
9d04f178 1036
0252208e 1037 for (thread = 0; thread < threads->nr; thread++) {
6a4bb04c 1038 int group_fd;
023695d9
SE
1039
1040 if (!evsel->cgrp)
1041 pid = threads->map[thread];
1042
6a4bb04c 1043 group_fd = get_group_fd(evsel, cpu, thread);
bec19672 1044retry_open:
e3e1a54f
AH
1045 pr_debug2("perf_event_open: pid %d cpu %d group_fd %d flags %#lx\n",
1046 pid, cpus->map[cpu], group_fd, flags);
1047
0252208e 1048 FD(evsel, cpu, thread) = sys_perf_event_open(&evsel->attr,
023695d9 1049 pid,
f08199d3 1050 cpus->map[cpu],
023695d9 1051 group_fd, flags);
727ab04e
ACM
1052 if (FD(evsel, cpu, thread) < 0) {
1053 err = -errno;
594ac61a 1054 goto try_fallback;
727ab04e 1055 }
bec19672 1056 set_rlimit = NO_CHANGE;
0252208e 1057 }
48290609
ACM
1058 }
1059
1060 return 0;
1061
594ac61a 1062try_fallback:
bec19672
AK
1063 /*
1064 * perf stat needs between 5 and 22 fds per CPU. When we run out
1065 * of them try to increase the limits.
1066 */
1067 if (err == -EMFILE && set_rlimit < INCREASED_MAX) {
1068 struct rlimit l;
1069 int old_errno = errno;
1070
1071 if (getrlimit(RLIMIT_NOFILE, &l) == 0) {
1072 if (set_rlimit == NO_CHANGE)
1073 l.rlim_cur = l.rlim_max;
1074 else {
1075 l.rlim_cur = l.rlim_max + 1000;
1076 l.rlim_max = l.rlim_cur;
1077 }
1078 if (setrlimit(RLIMIT_NOFILE, &l) == 0) {
1079 set_rlimit++;
1080 errno = old_errno;
1081 goto retry_open;
1082 }
1083 }
1084 errno = old_errno;
1085 }
1086
594ac61a
ACM
1087 if (err != -EINVAL || cpu > 0 || thread > 0)
1088 goto out_close;
1089
5c5e854b
SE
1090 if (!perf_missing_features.mmap2 && evsel->attr.mmap2) {
1091 perf_missing_features.mmap2 = true;
1092 goto fallback_missing_features;
1093 } else if (!perf_missing_features.exclude_guest &&
1094 (evsel->attr.exclude_guest || evsel->attr.exclude_host)) {
594ac61a
ACM
1095 perf_missing_features.exclude_guest = true;
1096 goto fallback_missing_features;
1097 } else if (!perf_missing_features.sample_id_all) {
1098 perf_missing_features.sample_id_all = true;
1099 goto retry_sample_id;
1100 }
1101
48290609 1102out_close:
0252208e
ACM
1103 do {
1104 while (--thread >= 0) {
1105 close(FD(evsel, cpu, thread));
1106 FD(evsel, cpu, thread) = -1;
1107 }
1108 thread = threads->nr;
1109 } while (--cpu >= 0);
727ab04e
ACM
1110 return err;
1111}
1112
1113void perf_evsel__close(struct perf_evsel *evsel, int ncpus, int nthreads)
1114{
1115 if (evsel->fd == NULL)
1116 return;
1117
1118 perf_evsel__close_fd(evsel, ncpus, nthreads);
1119 perf_evsel__free_fd(evsel);
1120 evsel->fd = NULL;
48290609
ACM
1121}
1122
0252208e
ACM
1123static struct {
1124 struct cpu_map map;
1125 int cpus[1];
1126} empty_cpu_map = {
1127 .map.nr = 1,
1128 .cpus = { -1, },
1129};
1130
1131static struct {
1132 struct thread_map map;
1133 int threads[1];
1134} empty_thread_map = {
1135 .map.nr = 1,
1136 .threads = { -1, },
1137};
1138
f08199d3 1139int perf_evsel__open(struct perf_evsel *evsel, struct cpu_map *cpus,
6a4bb04c 1140 struct thread_map *threads)
48290609 1141{
0252208e
ACM
1142 if (cpus == NULL) {
1143 /* Work around old compiler warnings about strict aliasing */
1144 cpus = &empty_cpu_map.map;
48290609
ACM
1145 }
1146
0252208e
ACM
1147 if (threads == NULL)
1148 threads = &empty_thread_map.map;
48290609 1149
6a4bb04c 1150 return __perf_evsel__open(evsel, cpus, threads);
48290609
ACM
1151}
1152
f08199d3 1153int perf_evsel__open_per_cpu(struct perf_evsel *evsel,
6a4bb04c 1154 struct cpu_map *cpus)
48290609 1155{
6a4bb04c 1156 return __perf_evsel__open(evsel, cpus, &empty_thread_map.map);
0252208e 1157}
48290609 1158
f08199d3 1159int perf_evsel__open_per_thread(struct perf_evsel *evsel,
6a4bb04c 1160 struct thread_map *threads)
0252208e 1161{
6a4bb04c 1162 return __perf_evsel__open(evsel, &empty_cpu_map.map, threads);
48290609 1163}
70082dd9 1164
0807d2d8
ACM
1165static int perf_evsel__parse_id_sample(const struct perf_evsel *evsel,
1166 const union perf_event *event,
1167 struct perf_sample *sample)
d0dd74e8 1168{
0807d2d8 1169 u64 type = evsel->attr.sample_type;
d0dd74e8 1170 const u64 *array = event->sample.array;
0807d2d8 1171 bool swapped = evsel->needs_swap;
37073f9e 1172 union u64_swap u;
d0dd74e8
ACM
1173
1174 array += ((event->header.size -
1175 sizeof(event->header)) / sizeof(u64)) - 1;
1176
75562573
AH
1177 if (type & PERF_SAMPLE_IDENTIFIER) {
1178 sample->id = *array;
1179 array--;
1180 }
1181
d0dd74e8 1182 if (type & PERF_SAMPLE_CPU) {
37073f9e
JO
1183 u.val64 = *array;
1184 if (swapped) {
1185 /* undo swap of u64, then swap on individual u32s */
1186 u.val64 = bswap_64(u.val64);
1187 u.val32[0] = bswap_32(u.val32[0]);
1188 }
1189
1190 sample->cpu = u.val32[0];
d0dd74e8
ACM
1191 array--;
1192 }
1193
1194 if (type & PERF_SAMPLE_STREAM_ID) {
1195 sample->stream_id = *array;
1196 array--;
1197 }
1198
1199 if (type & PERF_SAMPLE_ID) {
1200 sample->id = *array;
1201 array--;
1202 }
1203
1204 if (type & PERF_SAMPLE_TIME) {
1205 sample->time = *array;
1206 array--;
1207 }
1208
1209 if (type & PERF_SAMPLE_TID) {
37073f9e
JO
1210 u.val64 = *array;
1211 if (swapped) {
1212 /* undo swap of u64, then swap on individual u32s */
1213 u.val64 = bswap_64(u.val64);
1214 u.val32[0] = bswap_32(u.val32[0]);
1215 u.val32[1] = bswap_32(u.val32[1]);
1216 }
1217
1218 sample->pid = u.val32[0];
1219 sample->tid = u.val32[1];
d0dd74e8
ACM
1220 }
1221
1222 return 0;
1223}
1224
03b6ea9b
AH
1225static inline bool overflow(const void *endp, u16 max_size, const void *offset,
1226 u64 size)
98e1da90 1227{
03b6ea9b
AH
1228 return size > max_size || offset + size > endp;
1229}
98e1da90 1230
03b6ea9b
AH
1231#define OVERFLOW_CHECK(offset, size, max_size) \
1232 do { \
1233 if (overflow(endp, (max_size), (offset), (size))) \
1234 return -EFAULT; \
1235 } while (0)
98e1da90 1236
03b6ea9b
AH
1237#define OVERFLOW_CHECK_u64(offset) \
1238 OVERFLOW_CHECK(offset, sizeof(u64), sizeof(u64))
98e1da90 1239
a3f698fe 1240int perf_evsel__parse_sample(struct perf_evsel *evsel, union perf_event *event,
0807d2d8 1241 struct perf_sample *data)
d0dd74e8 1242{
a3f698fe 1243 u64 type = evsel->attr.sample_type;
0807d2d8 1244 bool swapped = evsel->needs_swap;
d0dd74e8 1245 const u64 *array;
03b6ea9b
AH
1246 u16 max_size = event->header.size;
1247 const void *endp = (void *)event + max_size;
1248 u64 sz;
d0dd74e8 1249
936be503
DA
1250 /*
1251 * used for cross-endian analysis. See git commit 65014ab3
1252 * for why this goofiness is needed.
1253 */
6a11f92e 1254 union u64_swap u;
936be503 1255
f3bda2c9 1256 memset(data, 0, sizeof(*data));
d0dd74e8
ACM
1257 data->cpu = data->pid = data->tid = -1;
1258 data->stream_id = data->id = data->time = -1ULL;
a4a03fc7 1259 data->period = 1;
05484298 1260 data->weight = 0;
d0dd74e8
ACM
1261
1262 if (event->header.type != PERF_RECORD_SAMPLE) {
a3f698fe 1263 if (!evsel->attr.sample_id_all)
d0dd74e8 1264 return 0;
0807d2d8 1265 return perf_evsel__parse_id_sample(evsel, event, data);
d0dd74e8
ACM
1266 }
1267
1268 array = event->sample.array;
1269
03b6ea9b
AH
1270 /*
1271 * The evsel's sample_size is based on PERF_SAMPLE_MASK which includes
1272 * up to PERF_SAMPLE_PERIOD. After that overflow() must be used to
1273 * check the format does not go past the end of the event.
1274 */
a3f698fe 1275 if (evsel->sample_size + sizeof(event->header) > event->header.size)
a2854124
FW
1276 return -EFAULT;
1277
75562573
AH
1278 data->id = -1ULL;
1279 if (type & PERF_SAMPLE_IDENTIFIER) {
1280 data->id = *array;
1281 array++;
1282 }
1283
d0dd74e8 1284 if (type & PERF_SAMPLE_IP) {
ef89325f 1285 data->ip = *array;
d0dd74e8
ACM
1286 array++;
1287 }
1288
1289 if (type & PERF_SAMPLE_TID) {
936be503
DA
1290 u.val64 = *array;
1291 if (swapped) {
1292 /* undo swap of u64, then swap on individual u32s */
1293 u.val64 = bswap_64(u.val64);
1294 u.val32[0] = bswap_32(u.val32[0]);
1295 u.val32[1] = bswap_32(u.val32[1]);
1296 }
1297
1298 data->pid = u.val32[0];
1299 data->tid = u.val32[1];
d0dd74e8
ACM
1300 array++;
1301 }
1302
1303 if (type & PERF_SAMPLE_TIME) {
1304 data->time = *array;
1305 array++;
1306 }
1307
7cec0922 1308 data->addr = 0;
d0dd74e8
ACM
1309 if (type & PERF_SAMPLE_ADDR) {
1310 data->addr = *array;
1311 array++;
1312 }
1313
d0dd74e8
ACM
1314 if (type & PERF_SAMPLE_ID) {
1315 data->id = *array;
1316 array++;
1317 }
1318
1319 if (type & PERF_SAMPLE_STREAM_ID) {
1320 data->stream_id = *array;
1321 array++;
1322 }
1323
1324 if (type & PERF_SAMPLE_CPU) {
936be503
DA
1325
1326 u.val64 = *array;
1327 if (swapped) {
1328 /* undo swap of u64, then swap on individual u32s */
1329 u.val64 = bswap_64(u.val64);
1330 u.val32[0] = bswap_32(u.val32[0]);
1331 }
1332
1333 data->cpu = u.val32[0];
d0dd74e8
ACM
1334 array++;
1335 }
1336
1337 if (type & PERF_SAMPLE_PERIOD) {
1338 data->period = *array;
1339 array++;
1340 }
1341
1342 if (type & PERF_SAMPLE_READ) {
9ede473c
JO
1343 u64 read_format = evsel->attr.read_format;
1344
03b6ea9b 1345 OVERFLOW_CHECK_u64(array);
9ede473c
JO
1346 if (read_format & PERF_FORMAT_GROUP)
1347 data->read.group.nr = *array;
1348 else
1349 data->read.one.value = *array;
1350
1351 array++;
1352
1353 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) {
03b6ea9b 1354 OVERFLOW_CHECK_u64(array);
9ede473c
JO
1355 data->read.time_enabled = *array;
1356 array++;
1357 }
1358
1359 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) {
03b6ea9b 1360 OVERFLOW_CHECK_u64(array);
9ede473c
JO
1361 data->read.time_running = *array;
1362 array++;
1363 }
1364
1365 /* PERF_FORMAT_ID is forced for PERF_SAMPLE_READ */
1366 if (read_format & PERF_FORMAT_GROUP) {
03b6ea9b
AH
1367 const u64 max_group_nr = UINT64_MAX /
1368 sizeof(struct sample_read_value);
1369
1370 if (data->read.group.nr > max_group_nr)
1371 return -EFAULT;
1372 sz = data->read.group.nr *
1373 sizeof(struct sample_read_value);
1374 OVERFLOW_CHECK(array, sz, max_size);
1375 data->read.group.values =
1376 (struct sample_read_value *)array;
1377 array = (void *)array + sz;
9ede473c 1378 } else {
03b6ea9b 1379 OVERFLOW_CHECK_u64(array);
9ede473c
JO
1380 data->read.one.id = *array;
1381 array++;
1382 }
d0dd74e8
ACM
1383 }
1384
1385 if (type & PERF_SAMPLE_CALLCHAIN) {
03b6ea9b 1386 const u64 max_callchain_nr = UINT64_MAX / sizeof(u64);
98e1da90 1387
03b6ea9b
AH
1388 OVERFLOW_CHECK_u64(array);
1389 data->callchain = (struct ip_callchain *)array++;
1390 if (data->callchain->nr > max_callchain_nr)
98e1da90 1391 return -EFAULT;
03b6ea9b
AH
1392 sz = data->callchain->nr * sizeof(u64);
1393 OVERFLOW_CHECK(array, sz, max_size);
1394 array = (void *)array + sz;
d0dd74e8
ACM
1395 }
1396
1397 if (type & PERF_SAMPLE_RAW) {
03b6ea9b 1398 OVERFLOW_CHECK_u64(array);
936be503
DA
1399 u.val64 = *array;
1400 if (WARN_ONCE(swapped,
1401 "Endianness of raw data not corrected!\n")) {
1402 /* undo swap of u64, then swap on individual u32s */
1403 u.val64 = bswap_64(u.val64);
1404 u.val32[0] = bswap_32(u.val32[0]);
1405 u.val32[1] = bswap_32(u.val32[1]);
1406 }
936be503 1407 data->raw_size = u.val32[0];
03b6ea9b 1408 array = (void *)array + sizeof(u32);
98e1da90 1409
03b6ea9b
AH
1410 OVERFLOW_CHECK(array, data->raw_size, max_size);
1411 data->raw_data = (void *)array;
1412 array = (void *)array + data->raw_size;
d0dd74e8
ACM
1413 }
1414
b5387528 1415 if (type & PERF_SAMPLE_BRANCH_STACK) {
03b6ea9b
AH
1416 const u64 max_branch_nr = UINT64_MAX /
1417 sizeof(struct branch_entry);
b5387528 1418
03b6ea9b
AH
1419 OVERFLOW_CHECK_u64(array);
1420 data->branch_stack = (struct branch_stack *)array++;
b5387528 1421
03b6ea9b
AH
1422 if (data->branch_stack->nr > max_branch_nr)
1423 return -EFAULT;
b5387528 1424 sz = data->branch_stack->nr * sizeof(struct branch_entry);
03b6ea9b
AH
1425 OVERFLOW_CHECK(array, sz, max_size);
1426 array = (void *)array + sz;
b5387528 1427 }
0f6a3015
JO
1428
1429 if (type & PERF_SAMPLE_REGS_USER) {
03b6ea9b 1430 OVERFLOW_CHECK_u64(array);
5b95a4a3
AH
1431 data->user_regs.abi = *array;
1432 array++;
0f6a3015 1433
5b95a4a3 1434 if (data->user_regs.abi) {
03b6ea9b
AH
1435 u64 regs_user = evsel->attr.sample_regs_user;
1436
1437 sz = hweight_long(regs_user) * sizeof(u64);
1438 OVERFLOW_CHECK(array, sz, max_size);
0f6a3015 1439 data->user_regs.regs = (u64 *)array;
03b6ea9b 1440 array = (void *)array + sz;
0f6a3015
JO
1441 }
1442 }
1443
1444 if (type & PERF_SAMPLE_STACK_USER) {
03b6ea9b
AH
1445 OVERFLOW_CHECK_u64(array);
1446 sz = *array++;
0f6a3015
JO
1447
1448 data->user_stack.offset = ((char *)(array - 1)
1449 - (char *) event);
1450
03b6ea9b 1451 if (!sz) {
0f6a3015
JO
1452 data->user_stack.size = 0;
1453 } else {
03b6ea9b 1454 OVERFLOW_CHECK(array, sz, max_size);
0f6a3015 1455 data->user_stack.data = (char *)array;
03b6ea9b
AH
1456 array = (void *)array + sz;
1457 OVERFLOW_CHECK_u64(array);
54bd2692 1458 data->user_stack.size = *array++;
0f6a3015
JO
1459 }
1460 }
1461
05484298
AK
1462 data->weight = 0;
1463 if (type & PERF_SAMPLE_WEIGHT) {
03b6ea9b 1464 OVERFLOW_CHECK_u64(array);
05484298
AK
1465 data->weight = *array;
1466 array++;
1467 }
1468
98a3b32c
SE
1469 data->data_src = PERF_MEM_DATA_SRC_NONE;
1470 if (type & PERF_SAMPLE_DATA_SRC) {
03b6ea9b 1471 OVERFLOW_CHECK_u64(array);
98a3b32c
SE
1472 data->data_src = *array;
1473 array++;
1474 }
1475
475eeab9
AK
1476 data->transaction = 0;
1477 if (type & PERF_SAMPLE_TRANSACTION) {
1478 data->transaction = *array;
1479 array++;
1480 }
1481
d0dd74e8
ACM
1482 return 0;
1483}
74eec26f 1484
b1cf6f65
AH
1485size_t perf_event__sample_event_size(const struct perf_sample *sample, u64 type,
1486 u64 sample_regs_user, u64 read_format)
1487{
1488 size_t sz, result = sizeof(struct sample_event);
1489
1490 if (type & PERF_SAMPLE_IDENTIFIER)
1491 result += sizeof(u64);
1492
1493 if (type & PERF_SAMPLE_IP)
1494 result += sizeof(u64);
1495
1496 if (type & PERF_SAMPLE_TID)
1497 result += sizeof(u64);
1498
1499 if (type & PERF_SAMPLE_TIME)
1500 result += sizeof(u64);
1501
1502 if (type & PERF_SAMPLE_ADDR)
1503 result += sizeof(u64);
1504
1505 if (type & PERF_SAMPLE_ID)
1506 result += sizeof(u64);
1507
1508 if (type & PERF_SAMPLE_STREAM_ID)
1509 result += sizeof(u64);
1510
1511 if (type & PERF_SAMPLE_CPU)
1512 result += sizeof(u64);
1513
1514 if (type & PERF_SAMPLE_PERIOD)
1515 result += sizeof(u64);
1516
1517 if (type & PERF_SAMPLE_READ) {
1518 result += sizeof(u64);
1519 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
1520 result += sizeof(u64);
1521 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
1522 result += sizeof(u64);
1523 /* PERF_FORMAT_ID is forced for PERF_SAMPLE_READ */
1524 if (read_format & PERF_FORMAT_GROUP) {
1525 sz = sample->read.group.nr *
1526 sizeof(struct sample_read_value);
1527 result += sz;
1528 } else {
1529 result += sizeof(u64);
1530 }
1531 }
1532
1533 if (type & PERF_SAMPLE_CALLCHAIN) {
1534 sz = (sample->callchain->nr + 1) * sizeof(u64);
1535 result += sz;
1536 }
1537
1538 if (type & PERF_SAMPLE_RAW) {
1539 result += sizeof(u32);
1540 result += sample->raw_size;
1541 }
1542
1543 if (type & PERF_SAMPLE_BRANCH_STACK) {
1544 sz = sample->branch_stack->nr * sizeof(struct branch_entry);
1545 sz += sizeof(u64);
1546 result += sz;
1547 }
1548
1549 if (type & PERF_SAMPLE_REGS_USER) {
1550 if (sample->user_regs.abi) {
1551 result += sizeof(u64);
1552 sz = hweight_long(sample_regs_user) * sizeof(u64);
1553 result += sz;
1554 } else {
1555 result += sizeof(u64);
1556 }
1557 }
1558
1559 if (type & PERF_SAMPLE_STACK_USER) {
1560 sz = sample->user_stack.size;
1561 result += sizeof(u64);
1562 if (sz) {
1563 result += sz;
1564 result += sizeof(u64);
1565 }
1566 }
1567
1568 if (type & PERF_SAMPLE_WEIGHT)
1569 result += sizeof(u64);
1570
1571 if (type & PERF_SAMPLE_DATA_SRC)
1572 result += sizeof(u64);
1573
1574 return result;
1575}
1576
74eec26f 1577int perf_event__synthesize_sample(union perf_event *event, u64 type,
d03f2170 1578 u64 sample_regs_user, u64 read_format,
74eec26f
AV
1579 const struct perf_sample *sample,
1580 bool swapped)
1581{
1582 u64 *array;
d03f2170 1583 size_t sz;
74eec26f
AV
1584 /*
1585 * used for cross-endian analysis. See git commit 65014ab3
1586 * for why this goofiness is needed.
1587 */
6a11f92e 1588 union u64_swap u;
74eec26f
AV
1589
1590 array = event->sample.array;
1591
75562573
AH
1592 if (type & PERF_SAMPLE_IDENTIFIER) {
1593 *array = sample->id;
1594 array++;
1595 }
1596
74eec26f 1597 if (type & PERF_SAMPLE_IP) {
ef89325f 1598 *array = sample->ip;
74eec26f
AV
1599 array++;
1600 }
1601
1602 if (type & PERF_SAMPLE_TID) {
1603 u.val32[0] = sample->pid;
1604 u.val32[1] = sample->tid;
1605 if (swapped) {
1606 /*
a3f698fe 1607 * Inverse of what is done in perf_evsel__parse_sample
74eec26f
AV
1608 */
1609 u.val32[0] = bswap_32(u.val32[0]);
1610 u.val32[1] = bswap_32(u.val32[1]);
1611 u.val64 = bswap_64(u.val64);
1612 }
1613
1614 *array = u.val64;
1615 array++;
1616 }
1617
1618 if (type & PERF_SAMPLE_TIME) {
1619 *array = sample->time;
1620 array++;
1621 }
1622
1623 if (type & PERF_SAMPLE_ADDR) {
1624 *array = sample->addr;
1625 array++;
1626 }
1627
1628 if (type & PERF_SAMPLE_ID) {
1629 *array = sample->id;
1630 array++;
1631 }
1632
1633 if (type & PERF_SAMPLE_STREAM_ID) {
1634 *array = sample->stream_id;
1635 array++;
1636 }
1637
1638 if (type & PERF_SAMPLE_CPU) {
1639 u.val32[0] = sample->cpu;
1640 if (swapped) {
1641 /*
a3f698fe 1642 * Inverse of what is done in perf_evsel__parse_sample
74eec26f
AV
1643 */
1644 u.val32[0] = bswap_32(u.val32[0]);
1645 u.val64 = bswap_64(u.val64);
1646 }
1647 *array = u.val64;
1648 array++;
1649 }
1650
1651 if (type & PERF_SAMPLE_PERIOD) {
1652 *array = sample->period;
1653 array++;
1654 }
1655
d03f2170
AH
1656 if (type & PERF_SAMPLE_READ) {
1657 if (read_format & PERF_FORMAT_GROUP)
1658 *array = sample->read.group.nr;
1659 else
1660 *array = sample->read.one.value;
1661 array++;
1662
1663 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) {
1664 *array = sample->read.time_enabled;
1665 array++;
1666 }
1667
1668 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) {
1669 *array = sample->read.time_running;
1670 array++;
1671 }
1672
1673 /* PERF_FORMAT_ID is forced for PERF_SAMPLE_READ */
1674 if (read_format & PERF_FORMAT_GROUP) {
1675 sz = sample->read.group.nr *
1676 sizeof(struct sample_read_value);
1677 memcpy(array, sample->read.group.values, sz);
1678 array = (void *)array + sz;
1679 } else {
1680 *array = sample->read.one.id;
1681 array++;
1682 }
1683 }
1684
1685 if (type & PERF_SAMPLE_CALLCHAIN) {
1686 sz = (sample->callchain->nr + 1) * sizeof(u64);
1687 memcpy(array, sample->callchain, sz);
1688 array = (void *)array + sz;
1689 }
1690
1691 if (type & PERF_SAMPLE_RAW) {
1692 u.val32[0] = sample->raw_size;
1693 if (WARN_ONCE(swapped,
1694 "Endianness of raw data not corrected!\n")) {
1695 /*
1696 * Inverse of what is done in perf_evsel__parse_sample
1697 */
1698 u.val32[0] = bswap_32(u.val32[0]);
1699 u.val32[1] = bswap_32(u.val32[1]);
1700 u.val64 = bswap_64(u.val64);
1701 }
1702 *array = u.val64;
1703 array = (void *)array + sizeof(u32);
1704
1705 memcpy(array, sample->raw_data, sample->raw_size);
1706 array = (void *)array + sample->raw_size;
1707 }
1708
1709 if (type & PERF_SAMPLE_BRANCH_STACK) {
1710 sz = sample->branch_stack->nr * sizeof(struct branch_entry);
1711 sz += sizeof(u64);
1712 memcpy(array, sample->branch_stack, sz);
1713 array = (void *)array + sz;
1714 }
1715
1716 if (type & PERF_SAMPLE_REGS_USER) {
1717 if (sample->user_regs.abi) {
1718 *array++ = sample->user_regs.abi;
1719 sz = hweight_long(sample_regs_user) * sizeof(u64);
1720 memcpy(array, sample->user_regs.regs, sz);
1721 array = (void *)array + sz;
1722 } else {
1723 *array++ = 0;
1724 }
1725 }
1726
1727 if (type & PERF_SAMPLE_STACK_USER) {
1728 sz = sample->user_stack.size;
1729 *array++ = sz;
1730 if (sz) {
1731 memcpy(array, sample->user_stack.data, sz);
1732 array = (void *)array + sz;
1733 *array++ = sz;
1734 }
1735 }
1736
1737 if (type & PERF_SAMPLE_WEIGHT) {
1738 *array = sample->weight;
1739 array++;
1740 }
1741
1742 if (type & PERF_SAMPLE_DATA_SRC) {
1743 *array = sample->data_src;
1744 array++;
1745 }
1746
74eec26f
AV
1747 return 0;
1748}
5555ded4 1749
efd2b924
ACM
1750struct format_field *perf_evsel__field(struct perf_evsel *evsel, const char *name)
1751{
1752 return pevent_find_field(evsel->tp_format, name);
1753}
1754
5d2074ea 1755void *perf_evsel__rawptr(struct perf_evsel *evsel, struct perf_sample *sample,
5555ded4
ACM
1756 const char *name)
1757{
efd2b924 1758 struct format_field *field = perf_evsel__field(evsel, name);
5555ded4
ACM
1759 int offset;
1760
efd2b924
ACM
1761 if (!field)
1762 return NULL;
5555ded4
ACM
1763
1764 offset = field->offset;
1765
1766 if (field->flags & FIELD_IS_DYNAMIC) {
1767 offset = *(int *)(sample->raw_data + field->offset);
1768 offset &= 0xffff;
1769 }
1770
1771 return sample->raw_data + offset;
1772}
1773
1774u64 perf_evsel__intval(struct perf_evsel *evsel, struct perf_sample *sample,
1775 const char *name)
1776{
efd2b924 1777 struct format_field *field = perf_evsel__field(evsel, name);
e6b6f679
ACM
1778 void *ptr;
1779 u64 value;
5555ded4 1780
efd2b924
ACM
1781 if (!field)
1782 return 0;
5555ded4 1783
e6b6f679 1784 ptr = sample->raw_data + field->offset;
5555ded4 1785
e6b6f679
ACM
1786 switch (field->size) {
1787 case 1:
1788 return *(u8 *)ptr;
1789 case 2:
1790 value = *(u16 *)ptr;
1791 break;
1792 case 4:
1793 value = *(u32 *)ptr;
1794 break;
1795 case 8:
1796 value = *(u64 *)ptr;
1797 break;
1798 default:
1799 return 0;
1800 }
1801
1802 if (!evsel->needs_swap)
1803 return value;
1804
1805 switch (field->size) {
1806 case 2:
1807 return bswap_16(value);
1808 case 4:
1809 return bswap_32(value);
1810 case 8:
1811 return bswap_64(value);
1812 default:
1813 return 0;
1814 }
1815
1816 return 0;
5555ded4 1817}
0698aedd
ACM
1818
1819static int comma_fprintf(FILE *fp, bool *first, const char *fmt, ...)
1820{
1821 va_list args;
1822 int ret = 0;
1823
1824 if (!*first) {
1825 ret += fprintf(fp, ",");
1826 } else {
1827 ret += fprintf(fp, ":");
1828 *first = false;
1829 }
1830
1831 va_start(args, fmt);
1832 ret += vfprintf(fp, fmt, args);
1833 va_end(args);
1834 return ret;
1835}
1836
1837static int __if_fprintf(FILE *fp, bool *first, const char *field, u64 value)
1838{
1839 if (value == 0)
1840 return 0;
1841
1842 return comma_fprintf(fp, first, " %s: %" PRIu64, field, value);
1843}
1844
1845#define if_print(field) printed += __if_fprintf(fp, &first, #field, evsel->attr.field)
1846
c79a4393
ACM
1847struct bit_names {
1848 int bit;
1849 const char *name;
1850};
1851
1852static int bits__fprintf(FILE *fp, const char *field, u64 value,
1853 struct bit_names *bits, bool *first)
1854{
1855 int i = 0, printed = comma_fprintf(fp, first, " %s: ", field);
1856 bool first_bit = true;
1857
1858 do {
1859 if (value & bits[i].bit) {
1860 printed += fprintf(fp, "%s%s", first_bit ? "" : "|", bits[i].name);
1861 first_bit = false;
1862 }
1863 } while (bits[++i].name != NULL);
1864
1865 return printed;
1866}
1867
1868static int sample_type__fprintf(FILE *fp, bool *first, u64 value)
1869{
1870#define bit_name(n) { PERF_SAMPLE_##n, #n }
1871 struct bit_names bits[] = {
1872 bit_name(IP), bit_name(TID), bit_name(TIME), bit_name(ADDR),
1873 bit_name(READ), bit_name(CALLCHAIN), bit_name(ID), bit_name(CPU),
1874 bit_name(PERIOD), bit_name(STREAM_ID), bit_name(RAW),
1875 bit_name(BRANCH_STACK), bit_name(REGS_USER), bit_name(STACK_USER),
75562573 1876 bit_name(IDENTIFIER),
c79a4393
ACM
1877 { .name = NULL, }
1878 };
1879#undef bit_name
1880 return bits__fprintf(fp, "sample_type", value, bits, first);
1881}
1882
1883static int read_format__fprintf(FILE *fp, bool *first, u64 value)
1884{
1885#define bit_name(n) { PERF_FORMAT_##n, #n }
1886 struct bit_names bits[] = {
1887 bit_name(TOTAL_TIME_ENABLED), bit_name(TOTAL_TIME_RUNNING),
1888 bit_name(ID), bit_name(GROUP),
1889 { .name = NULL, }
1890 };
1891#undef bit_name
1892 return bits__fprintf(fp, "read_format", value, bits, first);
1893}
1894
0698aedd
ACM
1895int perf_evsel__fprintf(struct perf_evsel *evsel,
1896 struct perf_attr_details *details, FILE *fp)
1897{
1898 bool first = true;
e6ab07d0
NK
1899 int printed = 0;
1900
e35ef355 1901 if (details->event_group) {
e6ab07d0
NK
1902 struct perf_evsel *pos;
1903
1904 if (!perf_evsel__is_group_leader(evsel))
1905 return 0;
1906
1907 if (evsel->nr_members > 1)
1908 printed += fprintf(fp, "%s{", evsel->group_name ?: "");
1909
1910 printed += fprintf(fp, "%s", perf_evsel__name(evsel));
1911 for_each_group_member(pos, evsel)
1912 printed += fprintf(fp, ",%s", perf_evsel__name(pos));
1913
1914 if (evsel->nr_members > 1)
1915 printed += fprintf(fp, "}");
1916 goto out;
1917 }
1918
1919 printed += fprintf(fp, "%s", perf_evsel__name(evsel));
0698aedd
ACM
1920
1921 if (details->verbose || details->freq) {
1922 printed += comma_fprintf(fp, &first, " sample_freq=%" PRIu64,
1923 (u64)evsel->attr.sample_freq);
1924 }
1925
1926 if (details->verbose) {
1927 if_print(type);
1928 if_print(config);
1929 if_print(config1);
1930 if_print(config2);
1931 if_print(size);
c79a4393
ACM
1932 printed += sample_type__fprintf(fp, &first, evsel->attr.sample_type);
1933 if (evsel->attr.read_format)
1934 printed += read_format__fprintf(fp, &first, evsel->attr.read_format);
0698aedd
ACM
1935 if_print(disabled);
1936 if_print(inherit);
1937 if_print(pinned);
1938 if_print(exclusive);
1939 if_print(exclude_user);
1940 if_print(exclude_kernel);
1941 if_print(exclude_hv);
1942 if_print(exclude_idle);
1943 if_print(mmap);
5c5e854b 1944 if_print(mmap2);
0698aedd
ACM
1945 if_print(comm);
1946 if_print(freq);
1947 if_print(inherit_stat);
1948 if_print(enable_on_exec);
1949 if_print(task);
1950 if_print(watermark);
1951 if_print(precise_ip);
1952 if_print(mmap_data);
1953 if_print(sample_id_all);
1954 if_print(exclude_host);
1955 if_print(exclude_guest);
1956 if_print(__reserved_1);
1957 if_print(wakeup_events);
1958 if_print(bp_type);
1959 if_print(branch_sample_type);
1960 }
e6ab07d0 1961out:
0698aedd
ACM
1962 fputc('\n', fp);
1963 return ++printed;
1964}
c0a54341
ACM
1965
1966bool perf_evsel__fallback(struct perf_evsel *evsel, int err,
1967 char *msg, size_t msgsize)
1968{
2b821cce 1969 if ((err == ENOENT || err == ENXIO || err == ENODEV) &&
c0a54341
ACM
1970 evsel->attr.type == PERF_TYPE_HARDWARE &&
1971 evsel->attr.config == PERF_COUNT_HW_CPU_CYCLES) {
1972 /*
1973 * If it's cycles then fall back to hrtimer based
1974 * cpu-clock-tick sw counter, which is always available even if
1975 * no PMU support.
1976 *
1977 * PPC returns ENXIO until 2.6.37 (behavior changed with commit
1978 * b0a873e).
1979 */
1980 scnprintf(msg, msgsize, "%s",
1981"The cycles event is not supported, trying to fall back to cpu-clock-ticks");
1982
1983 evsel->attr.type = PERF_TYPE_SOFTWARE;
1984 evsel->attr.config = PERF_COUNT_SW_CPU_CLOCK;
1985
1986 free(evsel->name);
1987 evsel->name = NULL;
1988 return true;
1989 }
1990
1991 return false;
1992}
56e52e85
ACM
1993
1994int perf_evsel__open_strerror(struct perf_evsel *evsel,
1995 struct perf_target *target,
1996 int err, char *msg, size_t size)
1997{
1998 switch (err) {
1999 case EPERM:
2000 case EACCES:
b69e63a4 2001 return scnprintf(msg, size,
56e52e85
ACM
2002 "You may not have permission to collect %sstats.\n"
2003 "Consider tweaking /proc/sys/kernel/perf_event_paranoid:\n"
2004 " -1 - Not paranoid at all\n"
2005 " 0 - Disallow raw tracepoint access for unpriv\n"
2006 " 1 - Disallow cpu events for unpriv\n"
2007 " 2 - Disallow kernel profiling for unpriv",
2008 target->system_wide ? "system-wide " : "");
2009 case ENOENT:
2010 return scnprintf(msg, size, "The %s event is not supported.",
2011 perf_evsel__name(evsel));
2012 case EMFILE:
2013 return scnprintf(msg, size, "%s",
2014 "Too many events are opened.\n"
2015 "Try again after reducing the number of events.");
2016 case ENODEV:
2017 if (target->cpu_list)
2018 return scnprintf(msg, size, "%s",
2019 "No such device - did you specify an out-of-range profile CPU?\n");
2020 break;
2021 case EOPNOTSUPP:
2022 if (evsel->attr.precise_ip)
2023 return scnprintf(msg, size, "%s",
2024 "\'precise\' request may not be supported. Try removing 'p' modifier.");
2025#if defined(__i386__) || defined(__x86_64__)
2026 if (evsel->attr.type == PERF_TYPE_HARDWARE)
2027 return scnprintf(msg, size, "%s",
2028 "No hardware sampling interrupt available.\n"
2029 "No APIC? If so then you can boot the kernel with the \"lapic\" boot parameter to force-enable it.");
2030#endif
2031 break;
2032 default:
2033 break;
2034 }
2035
2036 return scnprintf(msg, size,
2037 "The sys_perf_event_open() syscall returned with %d (%s) for event (%s). \n"
2038 "/bin/dmesg may provide additional information.\n"
2039 "No CONFIG_PERF_EVENTS=y kernel support configured?\n",
2040 err, strerror(err), perf_evsel__name(evsel));
2041}