blob: f016d1b330e543b875d83f27ed803e30e28d21b2 [file] [log] [blame]
xjb04a4022021-11-25 15:01:52 +08001// SPDX-License-Identifier: GPL-2.0
2#include <errno.h>
3#include <inttypes.h>
4#include <linux/kernel.h>
5#include <traceevent/event-parse.h>
6#include <api/fs/fs.h>
7
8#include <byteswap.h>
9#include <unistd.h>
10#include <sys/types.h>
11#include <sys/mman.h>
12
13#include "evlist.h"
14#include "evsel.h"
15#include "memswap.h"
16#include "session.h"
17#include "tool.h"
18#include "sort.h"
19#include "util.h"
20#include "cpumap.h"
21#include "perf_regs.h"
22#include "asm/bug.h"
23#include "auxtrace.h"
24#include "thread.h"
25#include "thread-stack.h"
26#include "stat.h"
27#include "arch/common.h"
28
29static int perf_session__deliver_event(struct perf_session *session,
30 union perf_event *event,
31 struct perf_tool *tool,
32 u64 file_offset);
33
34static int perf_session__open(struct perf_session *session)
35{
36 struct perf_data *data = session->data;
37
38 if (perf_session__read_header(session) < 0) {
39 pr_err("incompatible file format (rerun with -v to learn more)\n");
40 return -1;
41 }
42
43 if (perf_data__is_pipe(data))
44 return 0;
45
46 if (perf_header__has_feat(&session->header, HEADER_STAT))
47 return 0;
48
49 if (!perf_evlist__valid_sample_type(session->evlist)) {
50 pr_err("non matching sample_type\n");
51 return -1;
52 }
53
54 if (!perf_evlist__valid_sample_id_all(session->evlist)) {
55 pr_err("non matching sample_id_all\n");
56 return -1;
57 }
58
59 if (!perf_evlist__valid_read_format(session->evlist)) {
60 pr_err("non matching read_format\n");
61 return -1;
62 }
63
64 return 0;
65}
66
67void perf_session__set_id_hdr_size(struct perf_session *session)
68{
69 u16 id_hdr_size = perf_evlist__id_hdr_size(session->evlist);
70
71 machines__set_id_hdr_size(&session->machines, id_hdr_size);
72}
73
74int perf_session__create_kernel_maps(struct perf_session *session)
75{
76 int ret = machine__create_kernel_maps(&session->machines.host);
77
78 if (ret >= 0)
79 ret = machines__create_guest_kernel_maps(&session->machines);
80 return ret;
81}
82
83static void perf_session__destroy_kernel_maps(struct perf_session *session)
84{
85 machines__destroy_kernel_maps(&session->machines);
86}
87
88static bool perf_session__has_comm_exec(struct perf_session *session)
89{
90 struct perf_evsel *evsel;
91
92 evlist__for_each_entry(session->evlist, evsel) {
93 if (evsel->attr.comm_exec)
94 return true;
95 }
96
97 return false;
98}
99
100static void perf_session__set_comm_exec(struct perf_session *session)
101{
102 bool comm_exec = perf_session__has_comm_exec(session);
103
104 machines__set_comm_exec(&session->machines, comm_exec);
105}
106
107static int ordered_events__deliver_event(struct ordered_events *oe,
108 struct ordered_event *event)
109{
110 struct perf_session *session = container_of(oe, struct perf_session,
111 ordered_events);
112
113 return perf_session__deliver_event(session, event->event,
114 session->tool, event->file_offset);
115}
116
117struct perf_session *perf_session__new(struct perf_data *data,
118 bool repipe, struct perf_tool *tool)
119{
120 struct perf_session *session = zalloc(sizeof(*session));
121
122 if (!session)
123 goto out;
124
125 session->repipe = repipe;
126 session->tool = tool;
127 INIT_LIST_HEAD(&session->auxtrace_index);
128 machines__init(&session->machines);
129 ordered_events__init(&session->ordered_events, ordered_events__deliver_event);
130
131 if (data) {
132 if (perf_data__open(data))
133 goto out_delete;
134
135 session->data = data;
136
137 if (perf_data__is_read(data)) {
138 if (perf_session__open(session) < 0)
139 goto out_close;
140
141 /*
142 * set session attributes that are present in perf.data
143 * but not in pipe-mode.
144 */
145 if (!data->is_pipe) {
146 perf_session__set_id_hdr_size(session);
147 perf_session__set_comm_exec(session);
148 }
149 }
150 } else {
151 session->machines.host.env = &perf_env;
152 }
153
154 session->machines.host.single_address_space =
155 perf_env__single_address_space(session->machines.host.env);
156
157 if (!data || perf_data__is_write(data)) {
158 /*
159 * In O_RDONLY mode this will be performed when reading the
160 * kernel MMAP event, in perf_event__process_mmap().
161 */
162 if (perf_session__create_kernel_maps(session) < 0)
163 pr_warning("Cannot read kernel map\n");
164 }
165
166 /*
167 * In pipe-mode, evlist is empty until PERF_RECORD_HEADER_ATTR is
168 * processed, so perf_evlist__sample_id_all is not meaningful here.
169 */
170 if ((!data || !data->is_pipe) && tool && tool->ordering_requires_timestamps &&
171 tool->ordered_events && !perf_evlist__sample_id_all(session->evlist)) {
172 dump_printf("WARNING: No sample_id_all support, falling back to unordered processing\n");
173 tool->ordered_events = false;
174 }
175
176 return session;
177
178 out_close:
179 perf_data__close(data);
180 out_delete:
181 perf_session__delete(session);
182 out:
183 return NULL;
184}
185
186static void perf_session__delete_threads(struct perf_session *session)
187{
188 machine__delete_threads(&session->machines.host);
189}
190
191void perf_session__delete(struct perf_session *session)
192{
193 if (session == NULL)
194 return;
195 auxtrace__free(session);
196 auxtrace_index__free(&session->auxtrace_index);
197 perf_session__destroy_kernel_maps(session);
198 perf_session__delete_threads(session);
199 perf_env__exit(&session->header.env);
200 machines__exit(&session->machines);
201 if (session->data)
202 perf_data__close(session->data);
203 free(session);
204}
205
206static int process_event_synth_tracing_data_stub(struct perf_tool *tool
207 __maybe_unused,
208 union perf_event *event
209 __maybe_unused,
210 struct perf_session *session
211 __maybe_unused)
212{
213 dump_printf(": unhandled!\n");
214 return 0;
215}
216
217static int process_event_synth_attr_stub(struct perf_tool *tool __maybe_unused,
218 union perf_event *event __maybe_unused,
219 struct perf_evlist **pevlist
220 __maybe_unused)
221{
222 dump_printf(": unhandled!\n");
223 return 0;
224}
225
226static int process_event_synth_event_update_stub(struct perf_tool *tool __maybe_unused,
227 union perf_event *event __maybe_unused,
228 struct perf_evlist **pevlist
229 __maybe_unused)
230{
231 if (dump_trace)
232 perf_event__fprintf_event_update(event, stdout);
233
234 dump_printf(": unhandled!\n");
235 return 0;
236}
237
238static int process_event_sample_stub(struct perf_tool *tool __maybe_unused,
239 union perf_event *event __maybe_unused,
240 struct perf_sample *sample __maybe_unused,
241 struct perf_evsel *evsel __maybe_unused,
242 struct machine *machine __maybe_unused)
243{
244 dump_printf(": unhandled!\n");
245 return 0;
246}
247
248static int process_event_stub(struct perf_tool *tool __maybe_unused,
249 union perf_event *event __maybe_unused,
250 struct perf_sample *sample __maybe_unused,
251 struct machine *machine __maybe_unused)
252{
253 dump_printf(": unhandled!\n");
254 return 0;
255}
256
257static int process_finished_round_stub(struct perf_tool *tool __maybe_unused,
258 union perf_event *event __maybe_unused,
259 struct ordered_events *oe __maybe_unused)
260{
261 dump_printf(": unhandled!\n");
262 return 0;
263}
264
265static int process_finished_round(struct perf_tool *tool,
266 union perf_event *event,
267 struct ordered_events *oe);
268
269static int skipn(int fd, off_t n)
270{
271 char buf[4096];
272 ssize_t ret;
273
274 while (n > 0) {
275 ret = read(fd, buf, min(n, (off_t)sizeof(buf)));
276 if (ret <= 0)
277 return ret;
278 n -= ret;
279 }
280
281 return 0;
282}
283
284static s64 process_event_auxtrace_stub(struct perf_tool *tool __maybe_unused,
285 union perf_event *event,
286 struct perf_session *session
287 __maybe_unused)
288{
289 dump_printf(": unhandled!\n");
290 if (perf_data__is_pipe(session->data))
291 skipn(perf_data__fd(session->data), event->auxtrace.size);
292 return event->auxtrace.size;
293}
294
295static int process_event_op2_stub(struct perf_tool *tool __maybe_unused,
296 union perf_event *event __maybe_unused,
297 struct perf_session *session __maybe_unused)
298{
299 dump_printf(": unhandled!\n");
300 return 0;
301}
302
303
304static
305int process_event_thread_map_stub(struct perf_tool *tool __maybe_unused,
306 union perf_event *event __maybe_unused,
307 struct perf_session *session __maybe_unused)
308{
309 if (dump_trace)
310 perf_event__fprintf_thread_map(event, stdout);
311
312 dump_printf(": unhandled!\n");
313 return 0;
314}
315
316static
317int process_event_cpu_map_stub(struct perf_tool *tool __maybe_unused,
318 union perf_event *event __maybe_unused,
319 struct perf_session *session __maybe_unused)
320{
321 if (dump_trace)
322 perf_event__fprintf_cpu_map(event, stdout);
323
324 dump_printf(": unhandled!\n");
325 return 0;
326}
327
328static
329int process_event_stat_config_stub(struct perf_tool *tool __maybe_unused,
330 union perf_event *event __maybe_unused,
331 struct perf_session *session __maybe_unused)
332{
333 if (dump_trace)
334 perf_event__fprintf_stat_config(event, stdout);
335
336 dump_printf(": unhandled!\n");
337 return 0;
338}
339
340static int process_stat_stub(struct perf_tool *tool __maybe_unused,
341 union perf_event *event __maybe_unused,
342 struct perf_session *perf_session
343 __maybe_unused)
344{
345 if (dump_trace)
346 perf_event__fprintf_stat(event, stdout);
347
348 dump_printf(": unhandled!\n");
349 return 0;
350}
351
352static int process_stat_round_stub(struct perf_tool *tool __maybe_unused,
353 union perf_event *event __maybe_unused,
354 struct perf_session *perf_session
355 __maybe_unused)
356{
357 if (dump_trace)
358 perf_event__fprintf_stat_round(event, stdout);
359
360 dump_printf(": unhandled!\n");
361 return 0;
362}
363
364void perf_tool__fill_defaults(struct perf_tool *tool)
365{
366 if (tool->sample == NULL)
367 tool->sample = process_event_sample_stub;
368 if (tool->mmap == NULL)
369 tool->mmap = process_event_stub;
370 if (tool->mmap2 == NULL)
371 tool->mmap2 = process_event_stub;
372 if (tool->comm == NULL)
373 tool->comm = process_event_stub;
374 if (tool->namespaces == NULL)
375 tool->namespaces = process_event_stub;
376 if (tool->fork == NULL)
377 tool->fork = process_event_stub;
378 if (tool->exit == NULL)
379 tool->exit = process_event_stub;
380 if (tool->lost == NULL)
381 tool->lost = perf_event__process_lost;
382 if (tool->lost_samples == NULL)
383 tool->lost_samples = perf_event__process_lost_samples;
384 if (tool->aux == NULL)
385 tool->aux = perf_event__process_aux;
386 if (tool->itrace_start == NULL)
387 tool->itrace_start = perf_event__process_itrace_start;
388 if (tool->context_switch == NULL)
389 tool->context_switch = perf_event__process_switch;
390 if (tool->read == NULL)
391 tool->read = process_event_sample_stub;
392 if (tool->throttle == NULL)
393 tool->throttle = process_event_stub;
394 if (tool->unthrottle == NULL)
395 tool->unthrottle = process_event_stub;
396 if (tool->attr == NULL)
397 tool->attr = process_event_synth_attr_stub;
398 if (tool->event_update == NULL)
399 tool->event_update = process_event_synth_event_update_stub;
400 if (tool->tracing_data == NULL)
401 tool->tracing_data = process_event_synth_tracing_data_stub;
402 if (tool->build_id == NULL)
403 tool->build_id = process_event_op2_stub;
404 if (tool->finished_round == NULL) {
405 if (tool->ordered_events)
406 tool->finished_round = process_finished_round;
407 else
408 tool->finished_round = process_finished_round_stub;
409 }
410 if (tool->id_index == NULL)
411 tool->id_index = process_event_op2_stub;
412 if (tool->auxtrace_info == NULL)
413 tool->auxtrace_info = process_event_op2_stub;
414 if (tool->auxtrace == NULL)
415 tool->auxtrace = process_event_auxtrace_stub;
416 if (tool->auxtrace_error == NULL)
417 tool->auxtrace_error = process_event_op2_stub;
418 if (tool->thread_map == NULL)
419 tool->thread_map = process_event_thread_map_stub;
420 if (tool->cpu_map == NULL)
421 tool->cpu_map = process_event_cpu_map_stub;
422 if (tool->stat_config == NULL)
423 tool->stat_config = process_event_stat_config_stub;
424 if (tool->stat == NULL)
425 tool->stat = process_stat_stub;
426 if (tool->stat_round == NULL)
427 tool->stat_round = process_stat_round_stub;
428 if (tool->time_conv == NULL)
429 tool->time_conv = process_event_op2_stub;
430 if (tool->feature == NULL)
431 tool->feature = process_event_op2_stub;
432}
433
434static void swap_sample_id_all(union perf_event *event, void *data)
435{
436 void *end = (void *) event + event->header.size;
437 int size = end - data;
438
439 BUG_ON(size % sizeof(u64));
440 mem_bswap_64(data, size);
441}
442
443static void perf_event__all64_swap(union perf_event *event,
444 bool sample_id_all __maybe_unused)
445{
446 struct perf_event_header *hdr = &event->header;
447 mem_bswap_64(hdr + 1, event->header.size - sizeof(*hdr));
448}
449
450static void perf_event__comm_swap(union perf_event *event, bool sample_id_all)
451{
452 event->comm.pid = bswap_32(event->comm.pid);
453 event->comm.tid = bswap_32(event->comm.tid);
454
455 if (sample_id_all) {
456 void *data = &event->comm.comm;
457
458 data += PERF_ALIGN(strlen(data) + 1, sizeof(u64));
459 swap_sample_id_all(event, data);
460 }
461}
462
463static void perf_event__mmap_swap(union perf_event *event,
464 bool sample_id_all)
465{
466 event->mmap.pid = bswap_32(event->mmap.pid);
467 event->mmap.tid = bswap_32(event->mmap.tid);
468 event->mmap.start = bswap_64(event->mmap.start);
469 event->mmap.len = bswap_64(event->mmap.len);
470 event->mmap.pgoff = bswap_64(event->mmap.pgoff);
471
472 if (sample_id_all) {
473 void *data = &event->mmap.filename;
474
475 data += PERF_ALIGN(strlen(data) + 1, sizeof(u64));
476 swap_sample_id_all(event, data);
477 }
478}
479
480static void perf_event__mmap2_swap(union perf_event *event,
481 bool sample_id_all)
482{
483 event->mmap2.pid = bswap_32(event->mmap2.pid);
484 event->mmap2.tid = bswap_32(event->mmap2.tid);
485 event->mmap2.start = bswap_64(event->mmap2.start);
486 event->mmap2.len = bswap_64(event->mmap2.len);
487 event->mmap2.pgoff = bswap_64(event->mmap2.pgoff);
488 event->mmap2.maj = bswap_32(event->mmap2.maj);
489 event->mmap2.min = bswap_32(event->mmap2.min);
490 event->mmap2.ino = bswap_64(event->mmap2.ino);
491
492 if (sample_id_all) {
493 void *data = &event->mmap2.filename;
494
495 data += PERF_ALIGN(strlen(data) + 1, sizeof(u64));
496 swap_sample_id_all(event, data);
497 }
498}
499static void perf_event__task_swap(union perf_event *event, bool sample_id_all)
500{
501 event->fork.pid = bswap_32(event->fork.pid);
502 event->fork.tid = bswap_32(event->fork.tid);
503 event->fork.ppid = bswap_32(event->fork.ppid);
504 event->fork.ptid = bswap_32(event->fork.ptid);
505 event->fork.time = bswap_64(event->fork.time);
506
507 if (sample_id_all)
508 swap_sample_id_all(event, &event->fork + 1);
509}
510
511static void perf_event__read_swap(union perf_event *event, bool sample_id_all)
512{
513 event->read.pid = bswap_32(event->read.pid);
514 event->read.tid = bswap_32(event->read.tid);
515 event->read.value = bswap_64(event->read.value);
516 event->read.time_enabled = bswap_64(event->read.time_enabled);
517 event->read.time_running = bswap_64(event->read.time_running);
518 event->read.id = bswap_64(event->read.id);
519
520 if (sample_id_all)
521 swap_sample_id_all(event, &event->read + 1);
522}
523
524static void perf_event__aux_swap(union perf_event *event, bool sample_id_all)
525{
526 event->aux.aux_offset = bswap_64(event->aux.aux_offset);
527 event->aux.aux_size = bswap_64(event->aux.aux_size);
528 event->aux.flags = bswap_64(event->aux.flags);
529
530 if (sample_id_all)
531 swap_sample_id_all(event, &event->aux + 1);
532}
533
534static void perf_event__itrace_start_swap(union perf_event *event,
535 bool sample_id_all)
536{
537 event->itrace_start.pid = bswap_32(event->itrace_start.pid);
538 event->itrace_start.tid = bswap_32(event->itrace_start.tid);
539
540 if (sample_id_all)
541 swap_sample_id_all(event, &event->itrace_start + 1);
542}
543
544static void perf_event__switch_swap(union perf_event *event, bool sample_id_all)
545{
546 if (event->header.type == PERF_RECORD_SWITCH_CPU_WIDE) {
547 event->context_switch.next_prev_pid =
548 bswap_32(event->context_switch.next_prev_pid);
549 event->context_switch.next_prev_tid =
550 bswap_32(event->context_switch.next_prev_tid);
551 }
552
553 if (sample_id_all)
554 swap_sample_id_all(event, &event->context_switch + 1);
555}
556
557static void perf_event__throttle_swap(union perf_event *event,
558 bool sample_id_all)
559{
560 event->throttle.time = bswap_64(event->throttle.time);
561 event->throttle.id = bswap_64(event->throttle.id);
562 event->throttle.stream_id = bswap_64(event->throttle.stream_id);
563
564 if (sample_id_all)
565 swap_sample_id_all(event, &event->throttle + 1);
566}
567
568static u8 revbyte(u8 b)
569{
570 int rev = (b >> 4) | ((b & 0xf) << 4);
571 rev = ((rev & 0xcc) >> 2) | ((rev & 0x33) << 2);
572 rev = ((rev & 0xaa) >> 1) | ((rev & 0x55) << 1);
573 return (u8) rev;
574}
575
576/*
577 * XXX this is hack in attempt to carry flags bitfield
578 * through endian village. ABI says:
579 *
580 * Bit-fields are allocated from right to left (least to most significant)
581 * on little-endian implementations and from left to right (most to least
582 * significant) on big-endian implementations.
583 *
584 * The above seems to be byte specific, so we need to reverse each
585 * byte of the bitfield. 'Internet' also says this might be implementation
586 * specific and we probably need proper fix and carry perf_event_attr
587 * bitfield flags in separate data file FEAT_ section. Thought this seems
588 * to work for now.
589 */
590static void swap_bitfield(u8 *p, unsigned len)
591{
592 unsigned i;
593
594 for (i = 0; i < len; i++) {
595 *p = revbyte(*p);
596 p++;
597 }
598}
599
600/* exported for swapping attributes in file header */
601void perf_event__attr_swap(struct perf_event_attr *attr)
602{
603 attr->type = bswap_32(attr->type);
604 attr->size = bswap_32(attr->size);
605
606#define bswap_safe(f, n) \
607 (attr->size > (offsetof(struct perf_event_attr, f) + \
608 sizeof(attr->f) * (n)))
609#define bswap_field(f, sz) \
610do { \
611 if (bswap_safe(f, 0)) \
612 attr->f = bswap_##sz(attr->f); \
613} while(0)
614#define bswap_field_16(f) bswap_field(f, 16)
615#define bswap_field_32(f) bswap_field(f, 32)
616#define bswap_field_64(f) bswap_field(f, 64)
617
618 bswap_field_64(config);
619 bswap_field_64(sample_period);
620 bswap_field_64(sample_type);
621 bswap_field_64(read_format);
622 bswap_field_32(wakeup_events);
623 bswap_field_32(bp_type);
624 bswap_field_64(bp_addr);
625 bswap_field_64(bp_len);
626 bswap_field_64(branch_sample_type);
627 bswap_field_64(sample_regs_user);
628 bswap_field_32(sample_stack_user);
629 bswap_field_32(aux_watermark);
630 bswap_field_16(sample_max_stack);
631
632 /*
633 * After read_format are bitfields. Check read_format because
634 * we are unable to use offsetof on bitfield.
635 */
636 if (bswap_safe(read_format, 1))
637 swap_bitfield((u8 *) (&attr->read_format + 1),
638 sizeof(u64));
639#undef bswap_field_64
640#undef bswap_field_32
641#undef bswap_field
642#undef bswap_safe
643}
644
645static void perf_event__hdr_attr_swap(union perf_event *event,
646 bool sample_id_all __maybe_unused)
647{
648 size_t size;
649
650 perf_event__attr_swap(&event->attr.attr);
651
652 size = event->header.size;
653 size -= (void *)&event->attr.id - (void *)event;
654 mem_bswap_64(event->attr.id, size);
655}
656
657static void perf_event__event_update_swap(union perf_event *event,
658 bool sample_id_all __maybe_unused)
659{
660 event->event_update.type = bswap_64(event->event_update.type);
661 event->event_update.id = bswap_64(event->event_update.id);
662}
663
664static void perf_event__event_type_swap(union perf_event *event,
665 bool sample_id_all __maybe_unused)
666{
667 event->event_type.event_type.event_id =
668 bswap_64(event->event_type.event_type.event_id);
669}
670
671static void perf_event__tracing_data_swap(union perf_event *event,
672 bool sample_id_all __maybe_unused)
673{
674 event->tracing_data.size = bswap_32(event->tracing_data.size);
675}
676
677static void perf_event__auxtrace_info_swap(union perf_event *event,
678 bool sample_id_all __maybe_unused)
679{
680 size_t size;
681
682 event->auxtrace_info.type = bswap_32(event->auxtrace_info.type);
683
684 size = event->header.size;
685 size -= (void *)&event->auxtrace_info.priv - (void *)event;
686 mem_bswap_64(event->auxtrace_info.priv, size);
687}
688
689static void perf_event__auxtrace_swap(union perf_event *event,
690 bool sample_id_all __maybe_unused)
691{
692 event->auxtrace.size = bswap_64(event->auxtrace.size);
693 event->auxtrace.offset = bswap_64(event->auxtrace.offset);
694 event->auxtrace.reference = bswap_64(event->auxtrace.reference);
695 event->auxtrace.idx = bswap_32(event->auxtrace.idx);
696 event->auxtrace.tid = bswap_32(event->auxtrace.tid);
697 event->auxtrace.cpu = bswap_32(event->auxtrace.cpu);
698}
699
700static void perf_event__auxtrace_error_swap(union perf_event *event,
701 bool sample_id_all __maybe_unused)
702{
703 event->auxtrace_error.type = bswap_32(event->auxtrace_error.type);
704 event->auxtrace_error.code = bswap_32(event->auxtrace_error.code);
705 event->auxtrace_error.cpu = bswap_32(event->auxtrace_error.cpu);
706 event->auxtrace_error.pid = bswap_32(event->auxtrace_error.pid);
707 event->auxtrace_error.tid = bswap_32(event->auxtrace_error.tid);
708 event->auxtrace_error.ip = bswap_64(event->auxtrace_error.ip);
709}
710
711static void perf_event__thread_map_swap(union perf_event *event,
712 bool sample_id_all __maybe_unused)
713{
714 unsigned i;
715
716 event->thread_map.nr = bswap_64(event->thread_map.nr);
717
718 for (i = 0; i < event->thread_map.nr; i++)
719 event->thread_map.entries[i].pid = bswap_64(event->thread_map.entries[i].pid);
720}
721
722static void perf_event__cpu_map_swap(union perf_event *event,
723 bool sample_id_all __maybe_unused)
724{
725 struct cpu_map_data *data = &event->cpu_map.data;
726 struct cpu_map_entries *cpus;
727 struct cpu_map_mask *mask;
728 unsigned i;
729
730 data->type = bswap_64(data->type);
731
732 switch (data->type) {
733 case PERF_CPU_MAP__CPUS:
734 cpus = (struct cpu_map_entries *)data->data;
735
736 cpus->nr = bswap_16(cpus->nr);
737
738 for (i = 0; i < cpus->nr; i++)
739 cpus->cpu[i] = bswap_16(cpus->cpu[i]);
740 break;
741 case PERF_CPU_MAP__MASK:
742 mask = (struct cpu_map_mask *) data->data;
743
744 mask->nr = bswap_16(mask->nr);
745 mask->long_size = bswap_16(mask->long_size);
746
747 switch (mask->long_size) {
748 case 4: mem_bswap_32(&mask->mask, mask->nr); break;
749 case 8: mem_bswap_64(&mask->mask, mask->nr); break;
750 default:
751 pr_err("cpu_map swap: unsupported long size\n");
752 }
753 default:
754 break;
755 }
756}
757
758static void perf_event__stat_config_swap(union perf_event *event,
759 bool sample_id_all __maybe_unused)
760{
761 u64 size;
762
763 size = event->stat_config.nr * sizeof(event->stat_config.data[0]);
764 size += 1; /* nr item itself */
765 mem_bswap_64(&event->stat_config.nr, size);
766}
767
768static void perf_event__stat_swap(union perf_event *event,
769 bool sample_id_all __maybe_unused)
770{
771 event->stat.id = bswap_64(event->stat.id);
772 event->stat.thread = bswap_32(event->stat.thread);
773 event->stat.cpu = bswap_32(event->stat.cpu);
774 event->stat.val = bswap_64(event->stat.val);
775 event->stat.ena = bswap_64(event->stat.ena);
776 event->stat.run = bswap_64(event->stat.run);
777}
778
779static void perf_event__stat_round_swap(union perf_event *event,
780 bool sample_id_all __maybe_unused)
781{
782 event->stat_round.type = bswap_64(event->stat_round.type);
783 event->stat_round.time = bswap_64(event->stat_round.time);
784}
785
786typedef void (*perf_event__swap_op)(union perf_event *event,
787 bool sample_id_all);
788
789static perf_event__swap_op perf_event__swap_ops[] = {
790 [PERF_RECORD_MMAP] = perf_event__mmap_swap,
791 [PERF_RECORD_MMAP2] = perf_event__mmap2_swap,
792 [PERF_RECORD_COMM] = perf_event__comm_swap,
793 [PERF_RECORD_FORK] = perf_event__task_swap,
794 [PERF_RECORD_EXIT] = perf_event__task_swap,
795 [PERF_RECORD_LOST] = perf_event__all64_swap,
796 [PERF_RECORD_READ] = perf_event__read_swap,
797 [PERF_RECORD_THROTTLE] = perf_event__throttle_swap,
798 [PERF_RECORD_UNTHROTTLE] = perf_event__throttle_swap,
799 [PERF_RECORD_SAMPLE] = perf_event__all64_swap,
800 [PERF_RECORD_AUX] = perf_event__aux_swap,
801 [PERF_RECORD_ITRACE_START] = perf_event__itrace_start_swap,
802 [PERF_RECORD_LOST_SAMPLES] = perf_event__all64_swap,
803 [PERF_RECORD_SWITCH] = perf_event__switch_swap,
804 [PERF_RECORD_SWITCH_CPU_WIDE] = perf_event__switch_swap,
805 [PERF_RECORD_HEADER_ATTR] = perf_event__hdr_attr_swap,
806 [PERF_RECORD_HEADER_EVENT_TYPE] = perf_event__event_type_swap,
807 [PERF_RECORD_HEADER_TRACING_DATA] = perf_event__tracing_data_swap,
808 [PERF_RECORD_HEADER_BUILD_ID] = NULL,
809 [PERF_RECORD_ID_INDEX] = perf_event__all64_swap,
810 [PERF_RECORD_AUXTRACE_INFO] = perf_event__auxtrace_info_swap,
811 [PERF_RECORD_AUXTRACE] = perf_event__auxtrace_swap,
812 [PERF_RECORD_AUXTRACE_ERROR] = perf_event__auxtrace_error_swap,
813 [PERF_RECORD_THREAD_MAP] = perf_event__thread_map_swap,
814 [PERF_RECORD_CPU_MAP] = perf_event__cpu_map_swap,
815 [PERF_RECORD_STAT_CONFIG] = perf_event__stat_config_swap,
816 [PERF_RECORD_STAT] = perf_event__stat_swap,
817 [PERF_RECORD_STAT_ROUND] = perf_event__stat_round_swap,
818 [PERF_RECORD_EVENT_UPDATE] = perf_event__event_update_swap,
819 [PERF_RECORD_TIME_CONV] = perf_event__all64_swap,
820 [PERF_RECORD_HEADER_MAX] = NULL,
821};
822
823/*
824 * When perf record finishes a pass on every buffers, it records this pseudo
825 * event.
826 * We record the max timestamp t found in the pass n.
827 * Assuming these timestamps are monotonic across cpus, we know that if
828 * a buffer still has events with timestamps below t, they will be all
829 * available and then read in the pass n + 1.
830 * Hence when we start to read the pass n + 2, we can safely flush every
831 * events with timestamps below t.
832 *
833 * ============ PASS n =================
834 * CPU 0 | CPU 1
835 * |
836 * cnt1 timestamps | cnt2 timestamps
837 * 1 | 2
838 * 2 | 3
839 * - | 4 <--- max recorded
840 *
841 * ============ PASS n + 1 ==============
842 * CPU 0 | CPU 1
843 * |
844 * cnt1 timestamps | cnt2 timestamps
845 * 3 | 5
846 * 4 | 6
847 * 5 | 7 <---- max recorded
848 *
849 * Flush every events below timestamp 4
850 *
851 * ============ PASS n + 2 ==============
852 * CPU 0 | CPU 1
853 * |
854 * cnt1 timestamps | cnt2 timestamps
855 * 6 | 8
856 * 7 | 9
857 * - | 10
858 *
859 * Flush every events below timestamp 7
860 * etc...
861 */
862static int process_finished_round(struct perf_tool *tool __maybe_unused,
863 union perf_event *event __maybe_unused,
864 struct ordered_events *oe)
865{
866 if (dump_trace)
867 fprintf(stdout, "\n");
868 return ordered_events__flush(oe, OE_FLUSH__ROUND);
869}
870
871int perf_session__queue_event(struct perf_session *s, union perf_event *event,
872 u64 timestamp, u64 file_offset)
873{
874 return ordered_events__queue(&s->ordered_events, event, timestamp, file_offset);
875}
876
877static void callchain__lbr_callstack_printf(struct perf_sample *sample)
878{
879 struct ip_callchain *callchain = sample->callchain;
880 struct branch_stack *lbr_stack = sample->branch_stack;
881 u64 kernel_callchain_nr = callchain->nr;
882 unsigned int i;
883
884 for (i = 0; i < kernel_callchain_nr; i++) {
885 if (callchain->ips[i] == PERF_CONTEXT_USER)
886 break;
887 }
888
889 if ((i != kernel_callchain_nr) && lbr_stack->nr) {
890 u64 total_nr;
891 /*
892 * LBR callstack can only get user call chain,
893 * i is kernel call chain number,
894 * 1 is PERF_CONTEXT_USER.
895 *
896 * The user call chain is stored in LBR registers.
897 * LBR are pair registers. The caller is stored
898 * in "from" register, while the callee is stored
899 * in "to" register.
900 * For example, there is a call stack
901 * "A"->"B"->"C"->"D".
902 * The LBR registers will recorde like
903 * "C"->"D", "B"->"C", "A"->"B".
904 * So only the first "to" register and all "from"
905 * registers are needed to construct the whole stack.
906 */
907 total_nr = i + 1 + lbr_stack->nr + 1;
908 kernel_callchain_nr = i + 1;
909
910 printf("... LBR call chain: nr:%" PRIu64 "\n", total_nr);
911
912 for (i = 0; i < kernel_callchain_nr; i++)
913 printf("..... %2d: %016" PRIx64 "\n",
914 i, callchain->ips[i]);
915
916 printf("..... %2d: %016" PRIx64 "\n",
917 (int)(kernel_callchain_nr), lbr_stack->entries[0].to);
918 for (i = 0; i < lbr_stack->nr; i++)
919 printf("..... %2d: %016" PRIx64 "\n",
920 (int)(i + kernel_callchain_nr + 1), lbr_stack->entries[i].from);
921 }
922}
923
924static void callchain__printf(struct perf_evsel *evsel,
925 struct perf_sample *sample)
926{
927 unsigned int i;
928 struct ip_callchain *callchain = sample->callchain;
929
930 if (perf_evsel__has_branch_callstack(evsel))
931 callchain__lbr_callstack_printf(sample);
932
933 printf("... FP chain: nr:%" PRIu64 "\n", callchain->nr);
934
935 for (i = 0; i < callchain->nr; i++)
936 printf("..... %2d: %016" PRIx64 "\n",
937 i, callchain->ips[i]);
938}
939
940static void branch_stack__printf(struct perf_sample *sample)
941{
942 uint64_t i;
943
944 printf("... branch stack: nr:%" PRIu64 "\n", sample->branch_stack->nr);
945
946 for (i = 0; i < sample->branch_stack->nr; i++) {
947 struct branch_entry *e = &sample->branch_stack->entries[i];
948
949 printf("..... %2"PRIu64": %016" PRIx64 " -> %016" PRIx64 " %hu cycles %s%s%s%s %x\n",
950 i, e->from, e->to,
951 (unsigned short)e->flags.cycles,
952 e->flags.mispred ? "M" : " ",
953 e->flags.predicted ? "P" : " ",
954 e->flags.abort ? "A" : " ",
955 e->flags.in_tx ? "T" : " ",
956 (unsigned)e->flags.reserved);
957 }
958}
959
960static void regs_dump__printf(u64 mask, u64 *regs)
961{
962 unsigned rid, i = 0;
963
964 for_each_set_bit(rid, (unsigned long *) &mask, sizeof(mask) * 8) {
965 u64 val = regs[i++];
966
967 printf(".... %-5s 0x%" PRIx64 "\n",
968 perf_reg_name(rid), val);
969 }
970}
971
972static const char *regs_abi[] = {
973 [PERF_SAMPLE_REGS_ABI_NONE] = "none",
974 [PERF_SAMPLE_REGS_ABI_32] = "32-bit",
975 [PERF_SAMPLE_REGS_ABI_64] = "64-bit",
976};
977
978static inline const char *regs_dump_abi(struct regs_dump *d)
979{
980 if (d->abi > PERF_SAMPLE_REGS_ABI_64)
981 return "unknown";
982
983 return regs_abi[d->abi];
984}
985
986static void regs__printf(const char *type, struct regs_dump *regs)
987{
988 u64 mask = regs->mask;
989
990 printf("... %s regs: mask 0x%" PRIx64 " ABI %s\n",
991 type,
992 mask,
993 regs_dump_abi(regs));
994
995 regs_dump__printf(mask, regs->regs);
996}
997
998static void regs_user__printf(struct perf_sample *sample)
999{
1000 struct regs_dump *user_regs = &sample->user_regs;
1001
1002 if (user_regs->regs)
1003 regs__printf("user", user_regs);
1004}
1005
1006static void regs_intr__printf(struct perf_sample *sample)
1007{
1008 struct regs_dump *intr_regs = &sample->intr_regs;
1009
1010 if (intr_regs->regs)
1011 regs__printf("intr", intr_regs);
1012}
1013
1014static void stack_user__printf(struct stack_dump *dump)
1015{
1016 printf("... ustack: size %" PRIu64 ", offset 0x%x\n",
1017 dump->size, dump->offset);
1018}
1019
1020static void perf_evlist__print_tstamp(struct perf_evlist *evlist,
1021 union perf_event *event,
1022 struct perf_sample *sample)
1023{
1024 u64 sample_type = __perf_evlist__combined_sample_type(evlist);
1025
1026 if (event->header.type != PERF_RECORD_SAMPLE &&
1027 !perf_evlist__sample_id_all(evlist)) {
1028 fputs("-1 -1 ", stdout);
1029 return;
1030 }
1031
1032 if ((sample_type & PERF_SAMPLE_CPU))
1033 printf("%u ", sample->cpu);
1034
1035 if (sample_type & PERF_SAMPLE_TIME)
1036 printf("%" PRIu64 " ", sample->time);
1037}
1038
1039static void sample_read__printf(struct perf_sample *sample, u64 read_format)
1040{
1041 printf("... sample_read:\n");
1042
1043 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
1044 printf("...... time enabled %016" PRIx64 "\n",
1045 sample->read.time_enabled);
1046
1047 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
1048 printf("...... time running %016" PRIx64 "\n",
1049 sample->read.time_running);
1050
1051 if (read_format & PERF_FORMAT_GROUP) {
1052 u64 i;
1053
1054 printf(".... group nr %" PRIu64 "\n", sample->read.group.nr);
1055
1056 for (i = 0; i < sample->read.group.nr; i++) {
1057 struct sample_read_value *value;
1058
1059 value = &sample->read.group.values[i];
1060 printf("..... id %016" PRIx64
1061 ", value %016" PRIx64 "\n",
1062 value->id, value->value);
1063 }
1064 } else
1065 printf("..... id %016" PRIx64 ", value %016" PRIx64 "\n",
1066 sample->read.one.id, sample->read.one.value);
1067}
1068
1069static void dump_event(struct perf_evlist *evlist, union perf_event *event,
1070 u64 file_offset, struct perf_sample *sample)
1071{
1072 if (!dump_trace)
1073 return;
1074
1075 printf("\n%#" PRIx64 " [%#x]: event: %d\n",
1076 file_offset, event->header.size, event->header.type);
1077
1078 trace_event(event);
1079
1080 if (sample)
1081 perf_evlist__print_tstamp(evlist, event, sample);
1082
1083 printf("%#" PRIx64 " [%#x]: PERF_RECORD_%s", file_offset,
1084 event->header.size, perf_event__name(event->header.type));
1085}
1086
1087static void dump_sample(struct perf_evsel *evsel, union perf_event *event,
1088 struct perf_sample *sample)
1089{
1090 u64 sample_type;
1091
1092 if (!dump_trace)
1093 return;
1094
1095 printf("(IP, 0x%x): %d/%d: %#" PRIx64 " period: %" PRIu64 " addr: %#" PRIx64 "\n",
1096 event->header.misc, sample->pid, sample->tid, sample->ip,
1097 sample->period, sample->addr);
1098
1099 sample_type = evsel->attr.sample_type;
1100
1101 if (evsel__has_callchain(evsel))
1102 callchain__printf(evsel, sample);
1103
1104 if ((sample_type & PERF_SAMPLE_BRANCH_STACK) && !perf_evsel__has_branch_callstack(evsel))
1105 branch_stack__printf(sample);
1106
1107 if (sample_type & PERF_SAMPLE_REGS_USER)
1108 regs_user__printf(sample);
1109
1110 if (sample_type & PERF_SAMPLE_REGS_INTR)
1111 regs_intr__printf(sample);
1112
1113 if (sample_type & PERF_SAMPLE_STACK_USER)
1114 stack_user__printf(&sample->user_stack);
1115
1116 if (sample_type & PERF_SAMPLE_WEIGHT)
1117 printf("... weight: %" PRIu64 "\n", sample->weight);
1118
1119 if (sample_type & PERF_SAMPLE_DATA_SRC)
1120 printf(" . data_src: 0x%"PRIx64"\n", sample->data_src);
1121
1122 if (sample_type & PERF_SAMPLE_PHYS_ADDR)
1123 printf(" .. phys_addr: 0x%"PRIx64"\n", sample->phys_addr);
1124
1125 if (sample_type & PERF_SAMPLE_TRANSACTION)
1126 printf("... transaction: %" PRIx64 "\n", sample->transaction);
1127
1128 if (sample_type & PERF_SAMPLE_READ)
1129 sample_read__printf(sample, evsel->attr.read_format);
1130}
1131
1132static void dump_read(struct perf_evsel *evsel, union perf_event *event)
1133{
1134 struct read_event *read_event = &event->read;
1135 u64 read_format;
1136
1137 if (!dump_trace)
1138 return;
1139
1140 printf(": %d %d %s %" PRIu64 "\n", event->read.pid, event->read.tid,
1141 evsel ? perf_evsel__name(evsel) : "FAIL",
1142 event->read.value);
1143
1144 if (!evsel)
1145 return;
1146
1147 read_format = evsel->attr.read_format;
1148
1149 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
1150 printf("... time enabled : %" PRIu64 "\n", read_event->time_enabled);
1151
1152 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
1153 printf("... time running : %" PRIu64 "\n", read_event->time_running);
1154
1155 if (read_format & PERF_FORMAT_ID)
1156 printf("... id : %" PRIu64 "\n", read_event->id);
1157}
1158
1159static struct machine *machines__find_for_cpumode(struct machines *machines,
1160 union perf_event *event,
1161 struct perf_sample *sample)
1162{
1163 struct machine *machine;
1164
1165 if (perf_guest &&
1166 ((sample->cpumode == PERF_RECORD_MISC_GUEST_KERNEL) ||
1167 (sample->cpumode == PERF_RECORD_MISC_GUEST_USER))) {
1168 u32 pid;
1169
1170 if (event->header.type == PERF_RECORD_MMAP
1171 || event->header.type == PERF_RECORD_MMAP2)
1172 pid = event->mmap.pid;
1173 else
1174 pid = sample->pid;
1175
1176 machine = machines__find(machines, pid);
1177 if (!machine)
1178 machine = machines__findnew(machines, DEFAULT_GUEST_KERNEL_ID);
1179 return machine;
1180 }
1181
1182 return &machines->host;
1183}
1184
1185static int deliver_sample_value(struct perf_evlist *evlist,
1186 struct perf_tool *tool,
1187 union perf_event *event,
1188 struct perf_sample *sample,
1189 struct sample_read_value *v,
1190 struct machine *machine)
1191{
1192 struct perf_sample_id *sid = perf_evlist__id2sid(evlist, v->id);
1193
1194 if (sid) {
1195 sample->id = v->id;
1196 sample->period = v->value - sid->period;
1197 sid->period = v->value;
1198 }
1199
1200 if (!sid || sid->evsel == NULL) {
1201 ++evlist->stats.nr_unknown_id;
1202 return 0;
1203 }
1204
1205 return tool->sample(tool, event, sample, sid->evsel, machine);
1206}
1207
1208static int deliver_sample_group(struct perf_evlist *evlist,
1209 struct perf_tool *tool,
1210 union perf_event *event,
1211 struct perf_sample *sample,
1212 struct machine *machine)
1213{
1214 int ret = -EINVAL;
1215 u64 i;
1216
1217 for (i = 0; i < sample->read.group.nr; i++) {
1218 ret = deliver_sample_value(evlist, tool, event, sample,
1219 &sample->read.group.values[i],
1220 machine);
1221 if (ret)
1222 break;
1223 }
1224
1225 return ret;
1226}
1227
1228static int
1229 perf_evlist__deliver_sample(struct perf_evlist *evlist,
1230 struct perf_tool *tool,
1231 union perf_event *event,
1232 struct perf_sample *sample,
1233 struct perf_evsel *evsel,
1234 struct machine *machine)
1235{
1236 /* We know evsel != NULL. */
1237 u64 sample_type = evsel->attr.sample_type;
1238 u64 read_format = evsel->attr.read_format;
1239
1240 /* Standard sample delivery. */
1241 if (!(sample_type & PERF_SAMPLE_READ))
1242 return tool->sample(tool, event, sample, evsel, machine);
1243
1244 /* For PERF_SAMPLE_READ we have either single or group mode. */
1245 if (read_format & PERF_FORMAT_GROUP)
1246 return deliver_sample_group(evlist, tool, event, sample,
1247 machine);
1248 else
1249 return deliver_sample_value(evlist, tool, event, sample,
1250 &sample->read.one, machine);
1251}
1252
1253static int machines__deliver_event(struct machines *machines,
1254 struct perf_evlist *evlist,
1255 union perf_event *event,
1256 struct perf_sample *sample,
1257 struct perf_tool *tool, u64 file_offset)
1258{
1259 struct perf_evsel *evsel;
1260 struct machine *machine;
1261
1262 dump_event(evlist, event, file_offset, sample);
1263
1264 evsel = perf_evlist__id2evsel(evlist, sample->id);
1265
1266 machine = machines__find_for_cpumode(machines, event, sample);
1267
1268 switch (event->header.type) {
1269 case PERF_RECORD_SAMPLE:
1270 if (evsel == NULL) {
1271 ++evlist->stats.nr_unknown_id;
1272 return 0;
1273 }
1274 dump_sample(evsel, event, sample);
1275 if (machine == NULL) {
1276 ++evlist->stats.nr_unprocessable_samples;
1277 return 0;
1278 }
1279 return perf_evlist__deliver_sample(evlist, tool, event, sample, evsel, machine);
1280 case PERF_RECORD_MMAP:
1281 return tool->mmap(tool, event, sample, machine);
1282 case PERF_RECORD_MMAP2:
1283 if (event->header.misc & PERF_RECORD_MISC_PROC_MAP_PARSE_TIMEOUT)
1284 ++evlist->stats.nr_proc_map_timeout;
1285 return tool->mmap2(tool, event, sample, machine);
1286 case PERF_RECORD_COMM:
1287 return tool->comm(tool, event, sample, machine);
1288 case PERF_RECORD_NAMESPACES:
1289 return tool->namespaces(tool, event, sample, machine);
1290 case PERF_RECORD_FORK:
1291 return tool->fork(tool, event, sample, machine);
1292 case PERF_RECORD_EXIT:
1293 return tool->exit(tool, event, sample, machine);
1294 case PERF_RECORD_LOST:
1295 if (tool->lost == perf_event__process_lost)
1296 evlist->stats.total_lost += event->lost.lost;
1297 return tool->lost(tool, event, sample, machine);
1298 case PERF_RECORD_LOST_SAMPLES:
1299 if (tool->lost_samples == perf_event__process_lost_samples)
1300 evlist->stats.total_lost_samples += event->lost_samples.lost;
1301 return tool->lost_samples(tool, event, sample, machine);
1302 case PERF_RECORD_READ:
1303 dump_read(evsel, event);
1304 return tool->read(tool, event, sample, evsel, machine);
1305 case PERF_RECORD_THROTTLE:
1306 return tool->throttle(tool, event, sample, machine);
1307 case PERF_RECORD_UNTHROTTLE:
1308 return tool->unthrottle(tool, event, sample, machine);
1309 case PERF_RECORD_AUX:
1310 if (tool->aux == perf_event__process_aux) {
1311 if (event->aux.flags & PERF_AUX_FLAG_TRUNCATED)
1312 evlist->stats.total_aux_lost += 1;
1313 if (event->aux.flags & PERF_AUX_FLAG_PARTIAL)
1314 evlist->stats.total_aux_partial += 1;
1315 }
1316 return tool->aux(tool, event, sample, machine);
1317 case PERF_RECORD_ITRACE_START:
1318 return tool->itrace_start(tool, event, sample, machine);
1319 case PERF_RECORD_SWITCH:
1320 case PERF_RECORD_SWITCH_CPU_WIDE:
1321 return tool->context_switch(tool, event, sample, machine);
1322 default:
1323 ++evlist->stats.nr_unknown_events;
1324 return -1;
1325 }
1326}
1327
1328static int perf_session__deliver_event(struct perf_session *session,
1329 union perf_event *event,
1330 struct perf_tool *tool,
1331 u64 file_offset)
1332{
1333 struct perf_sample sample;
1334 int ret;
1335
1336 ret = perf_evlist__parse_sample(session->evlist, event, &sample);
1337 if (ret) {
1338 pr_err("Can't parse sample, err = %d\n", ret);
1339 return ret;
1340 }
1341
1342 ret = auxtrace__process_event(session, event, &sample, tool);
1343 if (ret < 0)
1344 return ret;
1345 if (ret > 0)
1346 return 0;
1347
1348 return machines__deliver_event(&session->machines, session->evlist,
1349 event, &sample, tool, file_offset);
1350}
1351
1352static s64 perf_session__process_user_event(struct perf_session *session,
1353 union perf_event *event,
1354 u64 file_offset)
1355{
1356 struct ordered_events *oe = &session->ordered_events;
1357 struct perf_tool *tool = session->tool;
1358 struct perf_sample sample = { .time = 0, };
1359 int fd = perf_data__fd(session->data);
1360 int err;
1361
1362 dump_event(session->evlist, event, file_offset, &sample);
1363
1364 /* These events are processed right away */
1365 switch (event->header.type) {
1366 case PERF_RECORD_HEADER_ATTR:
1367 err = tool->attr(tool, event, &session->evlist);
1368 if (err == 0) {
1369 perf_session__set_id_hdr_size(session);
1370 perf_session__set_comm_exec(session);
1371 }
1372 return err;
1373 case PERF_RECORD_EVENT_UPDATE:
1374 return tool->event_update(tool, event, &session->evlist);
1375 case PERF_RECORD_HEADER_EVENT_TYPE:
1376 /*
1377 * Depreceated, but we need to handle it for sake
1378 * of old data files create in pipe mode.
1379 */
1380 return 0;
1381 case PERF_RECORD_HEADER_TRACING_DATA:
1382 /* setup for reading amidst mmap */
1383 lseek(fd, file_offset, SEEK_SET);
1384 return tool->tracing_data(tool, event, session);
1385 case PERF_RECORD_HEADER_BUILD_ID:
1386 return tool->build_id(tool, event, session);
1387 case PERF_RECORD_FINISHED_ROUND:
1388 return tool->finished_round(tool, event, oe);
1389 case PERF_RECORD_ID_INDEX:
1390 return tool->id_index(tool, event, session);
1391 case PERF_RECORD_AUXTRACE_INFO:
1392 return tool->auxtrace_info(tool, event, session);
1393 case PERF_RECORD_AUXTRACE:
1394 /* setup for reading amidst mmap */
1395 lseek(fd, file_offset + event->header.size, SEEK_SET);
1396 return tool->auxtrace(tool, event, session);
1397 case PERF_RECORD_AUXTRACE_ERROR:
1398 perf_session__auxtrace_error_inc(session, event);
1399 return tool->auxtrace_error(tool, event, session);
1400 case PERF_RECORD_THREAD_MAP:
1401 return tool->thread_map(tool, event, session);
1402 case PERF_RECORD_CPU_MAP:
1403 return tool->cpu_map(tool, event, session);
1404 case PERF_RECORD_STAT_CONFIG:
1405 return tool->stat_config(tool, event, session);
1406 case PERF_RECORD_STAT:
1407 return tool->stat(tool, event, session);
1408 case PERF_RECORD_STAT_ROUND:
1409 return tool->stat_round(tool, event, session);
1410 case PERF_RECORD_TIME_CONV:
1411 session->time_conv = event->time_conv;
1412 return tool->time_conv(tool, event, session);
1413 case PERF_RECORD_HEADER_FEATURE:
1414 return tool->feature(tool, event, session);
1415 default:
1416 return -EINVAL;
1417 }
1418}
1419
1420int perf_session__deliver_synth_event(struct perf_session *session,
1421 union perf_event *event,
1422 struct perf_sample *sample)
1423{
1424 struct perf_evlist *evlist = session->evlist;
1425 struct perf_tool *tool = session->tool;
1426
1427 events_stats__inc(&evlist->stats, event->header.type);
1428
1429 if (event->header.type >= PERF_RECORD_USER_TYPE_START)
1430 return perf_session__process_user_event(session, event, 0);
1431
1432 return machines__deliver_event(&session->machines, evlist, event, sample, tool, 0);
1433}
1434
1435static void event_swap(union perf_event *event, bool sample_id_all)
1436{
1437 perf_event__swap_op swap;
1438
1439 swap = perf_event__swap_ops[event->header.type];
1440 if (swap)
1441 swap(event, sample_id_all);
1442}
1443
1444int perf_session__peek_event(struct perf_session *session, off_t file_offset,
1445 void *buf, size_t buf_sz,
1446 union perf_event **event_ptr,
1447 struct perf_sample *sample)
1448{
1449 union perf_event *event;
1450 size_t hdr_sz, rest;
1451 int fd;
1452
1453 if (session->one_mmap && !session->header.needs_swap) {
1454 event = file_offset - session->one_mmap_offset +
1455 session->one_mmap_addr;
1456 goto out_parse_sample;
1457 }
1458
1459 if (perf_data__is_pipe(session->data))
1460 return -1;
1461
1462 fd = perf_data__fd(session->data);
1463 hdr_sz = sizeof(struct perf_event_header);
1464
1465 if (buf_sz < hdr_sz)
1466 return -1;
1467
1468 if (lseek(fd, file_offset, SEEK_SET) == (off_t)-1 ||
1469 readn(fd, buf, hdr_sz) != (ssize_t)hdr_sz)
1470 return -1;
1471
1472 event = (union perf_event *)buf;
1473
1474 if (session->header.needs_swap)
1475 perf_event_header__bswap(&event->header);
1476
1477 if (event->header.size < hdr_sz || event->header.size > buf_sz)
1478 return -1;
1479
1480 rest = event->header.size - hdr_sz;
1481
1482 if (readn(fd, buf, rest) != (ssize_t)rest)
1483 return -1;
1484
1485 if (session->header.needs_swap)
1486 event_swap(event, perf_evlist__sample_id_all(session->evlist));
1487
1488out_parse_sample:
1489
1490 if (sample && event->header.type < PERF_RECORD_USER_TYPE_START &&
1491 perf_evlist__parse_sample(session->evlist, event, sample))
1492 return -1;
1493
1494 *event_ptr = event;
1495
1496 return 0;
1497}
1498
1499static s64 perf_session__process_event(struct perf_session *session,
1500 union perf_event *event, u64 file_offset)
1501{
1502 struct perf_evlist *evlist = session->evlist;
1503 struct perf_tool *tool = session->tool;
1504 int ret;
1505
1506 if (session->header.needs_swap)
1507 event_swap(event, perf_evlist__sample_id_all(evlist));
1508
1509 if (event->header.type >= PERF_RECORD_HEADER_MAX)
1510 return -EINVAL;
1511
1512 events_stats__inc(&evlist->stats, event->header.type);
1513
1514 if (event->header.type >= PERF_RECORD_USER_TYPE_START)
1515 return perf_session__process_user_event(session, event, file_offset);
1516
1517 if (tool->ordered_events) {
1518 u64 timestamp = -1ULL;
1519
1520 ret = perf_evlist__parse_sample_timestamp(evlist, event, &timestamp);
1521 if (ret && ret != -1)
1522 return ret;
1523
1524 ret = perf_session__queue_event(session, event, timestamp, file_offset);
1525 if (ret != -ETIME)
1526 return ret;
1527 }
1528
1529 return perf_session__deliver_event(session, event, tool, file_offset);
1530}
1531
1532void perf_event_header__bswap(struct perf_event_header *hdr)
1533{
1534 hdr->type = bswap_32(hdr->type);
1535 hdr->misc = bswap_16(hdr->misc);
1536 hdr->size = bswap_16(hdr->size);
1537}
1538
1539struct thread *perf_session__findnew(struct perf_session *session, pid_t pid)
1540{
1541 return machine__findnew_thread(&session->machines.host, -1, pid);
1542}
1543
1544int perf_session__register_idle_thread(struct perf_session *session)
1545{
1546 struct thread *thread;
1547 int err = 0;
1548
1549 thread = machine__findnew_thread(&session->machines.host, 0, 0);
1550 if (thread == NULL || thread__set_comm(thread, "swapper", 0)) {
1551 pr_err("problem inserting idle task.\n");
1552 err = -1;
1553 }
1554
1555 if (thread == NULL || thread__set_namespaces(thread, 0, NULL)) {
1556 pr_err("problem inserting idle task.\n");
1557 err = -1;
1558 }
1559
1560 /* machine__findnew_thread() got the thread, so put it */
1561 thread__put(thread);
1562 return err;
1563}
1564
1565static void
1566perf_session__warn_order(const struct perf_session *session)
1567{
1568 const struct ordered_events *oe = &session->ordered_events;
1569 struct perf_evsel *evsel;
1570 bool should_warn = true;
1571
1572 evlist__for_each_entry(session->evlist, evsel) {
1573 if (evsel->attr.write_backward)
1574 should_warn = false;
1575 }
1576
1577 if (!should_warn)
1578 return;
1579 if (oe->nr_unordered_events != 0)
1580 ui__warning("%u out of order events recorded.\n", oe->nr_unordered_events);
1581}
1582
1583static void perf_session__warn_about_errors(const struct perf_session *session)
1584{
1585 const struct events_stats *stats = &session->evlist->stats;
1586
1587 if (session->tool->lost == perf_event__process_lost &&
1588 stats->nr_events[PERF_RECORD_LOST] != 0) {
1589 ui__warning("Processed %d events and lost %d chunks!\n\n"
1590 "Check IO/CPU overload!\n\n",
1591 stats->nr_events[0],
1592 stats->nr_events[PERF_RECORD_LOST]);
1593 }
1594
1595 if (session->tool->lost_samples == perf_event__process_lost_samples) {
1596 double drop_rate;
1597
1598 drop_rate = (double)stats->total_lost_samples /
1599 (double) (stats->nr_events[PERF_RECORD_SAMPLE] + stats->total_lost_samples);
1600 if (drop_rate > 0.05) {
1601 ui__warning("Processed %" PRIu64 " samples and lost %3.2f%%!\n\n",
1602 stats->nr_events[PERF_RECORD_SAMPLE] + stats->total_lost_samples,
1603 drop_rate * 100.0);
1604 }
1605 }
1606
1607 if (session->tool->aux == perf_event__process_aux &&
1608 stats->total_aux_lost != 0) {
1609 ui__warning("AUX data lost %" PRIu64 " times out of %u!\n\n",
1610 stats->total_aux_lost,
1611 stats->nr_events[PERF_RECORD_AUX]);
1612 }
1613
1614 if (session->tool->aux == perf_event__process_aux &&
1615 stats->total_aux_partial != 0) {
1616 bool vmm_exclusive = false;
1617
1618 (void)sysfs__read_bool("module/kvm_intel/parameters/vmm_exclusive",
1619 &vmm_exclusive);
1620
1621 ui__warning("AUX data had gaps in it %" PRIu64 " times out of %u!\n\n"
1622 "Are you running a KVM guest in the background?%s\n\n",
1623 stats->total_aux_partial,
1624 stats->nr_events[PERF_RECORD_AUX],
1625 vmm_exclusive ?
1626 "\nReloading kvm_intel module with vmm_exclusive=0\n"
1627 "will reduce the gaps to only guest's timeslices." :
1628 "");
1629 }
1630
1631 if (stats->nr_unknown_events != 0) {
1632 ui__warning("Found %u unknown events!\n\n"
1633 "Is this an older tool processing a perf.data "
1634 "file generated by a more recent tool?\n\n"
1635 "If that is not the case, consider "
1636 "reporting to linux-kernel@vger.kernel.org.\n\n",
1637 stats->nr_unknown_events);
1638 }
1639
1640 if (stats->nr_unknown_id != 0) {
1641 ui__warning("%u samples with id not present in the header\n",
1642 stats->nr_unknown_id);
1643 }
1644
1645 if (stats->nr_invalid_chains != 0) {
1646 ui__warning("Found invalid callchains!\n\n"
1647 "%u out of %u events were discarded for this reason.\n\n"
1648 "Consider reporting to linux-kernel@vger.kernel.org.\n\n",
1649 stats->nr_invalid_chains,
1650 stats->nr_events[PERF_RECORD_SAMPLE]);
1651 }
1652
1653 if (stats->nr_unprocessable_samples != 0) {
1654 ui__warning("%u unprocessable samples recorded.\n"
1655 "Do you have a KVM guest running and not using 'perf kvm'?\n",
1656 stats->nr_unprocessable_samples);
1657 }
1658
1659 perf_session__warn_order(session);
1660
1661 events_stats__auxtrace_error_warn(stats);
1662
1663 if (stats->nr_proc_map_timeout != 0) {
1664 ui__warning("%d map information files for pre-existing threads were\n"
1665 "not processed, if there are samples for addresses they\n"
1666 "will not be resolved, you may find out which are these\n"
1667 "threads by running with -v and redirecting the output\n"
1668 "to a file.\n"
1669 "The time limit to process proc map is too short?\n"
1670 "Increase it by --proc-map-timeout\n",
1671 stats->nr_proc_map_timeout);
1672 }
1673}
1674
1675static int perf_session__flush_thread_stack(struct thread *thread,
1676 void *p __maybe_unused)
1677{
1678 return thread_stack__flush(thread);
1679}
1680
1681static int perf_session__flush_thread_stacks(struct perf_session *session)
1682{
1683 return machines__for_each_thread(&session->machines,
1684 perf_session__flush_thread_stack,
1685 NULL);
1686}
1687
1688volatile int session_done;
1689
1690static int __perf_session__process_pipe_events(struct perf_session *session)
1691{
1692 struct ordered_events *oe = &session->ordered_events;
1693 struct perf_tool *tool = session->tool;
1694 int fd = perf_data__fd(session->data);
1695 union perf_event *event;
1696 uint32_t size, cur_size = 0;
1697 void *buf = NULL;
1698 s64 skip = 0;
1699 u64 head;
1700 ssize_t err;
1701 void *p;
1702
1703 perf_tool__fill_defaults(tool);
1704
1705 head = 0;
1706 cur_size = sizeof(union perf_event);
1707
1708 buf = malloc(cur_size);
1709 if (!buf)
1710 return -errno;
1711 ordered_events__set_copy_on_queue(oe, true);
1712more:
1713 event = buf;
1714 err = readn(fd, event, sizeof(struct perf_event_header));
1715 if (err <= 0) {
1716 if (err == 0)
1717 goto done;
1718
1719 pr_err("failed to read event header\n");
1720 goto out_err;
1721 }
1722
1723 if (session->header.needs_swap)
1724 perf_event_header__bswap(&event->header);
1725
1726 size = event->header.size;
1727 if (size < sizeof(struct perf_event_header)) {
1728 pr_err("bad event header size\n");
1729 goto out_err;
1730 }
1731
1732 if (size > cur_size) {
1733 void *new = realloc(buf, size);
1734 if (!new) {
1735 pr_err("failed to allocate memory to read event\n");
1736 goto out_err;
1737 }
1738 buf = new;
1739 cur_size = size;
1740 event = buf;
1741 }
1742 p = event;
1743 p += sizeof(struct perf_event_header);
1744
1745 if (size - sizeof(struct perf_event_header)) {
1746 err = readn(fd, p, size - sizeof(struct perf_event_header));
1747 if (err <= 0) {
1748 if (err == 0) {
1749 pr_err("unexpected end of event stream\n");
1750 goto done;
1751 }
1752
1753 pr_err("failed to read event data\n");
1754 goto out_err;
1755 }
1756 }
1757
1758 if ((skip = perf_session__process_event(session, event, head)) < 0) {
1759 pr_err("%#" PRIx64 " [%#x]: failed to process type: %d\n",
1760 head, event->header.size, event->header.type);
1761 err = -EINVAL;
1762 goto out_err;
1763 }
1764
1765 head += size;
1766
1767 if (skip > 0)
1768 head += skip;
1769
1770 if (!session_done())
1771 goto more;
1772done:
1773 /* do the final flush for ordered samples */
1774 err = ordered_events__flush(oe, OE_FLUSH__FINAL);
1775 if (err)
1776 goto out_err;
1777 err = auxtrace__flush_events(session, tool);
1778 if (err)
1779 goto out_err;
1780 err = perf_session__flush_thread_stacks(session);
1781out_err:
1782 free(buf);
1783 if (!tool->no_warn)
1784 perf_session__warn_about_errors(session);
1785 ordered_events__free(&session->ordered_events);
1786 auxtrace__free_events(session);
1787 return err;
1788}
1789
1790static union perf_event *
1791fetch_mmaped_event(struct perf_session *session,
1792 u64 head, size_t mmap_size, char *buf)
1793{
1794 union perf_event *event;
1795
1796 /*
1797 * Ensure we have enough space remaining to read
1798 * the size of the event in the headers.
1799 */
1800 if (head + sizeof(event->header) > mmap_size)
1801 return NULL;
1802
1803 event = (union perf_event *)(buf + head);
1804
1805 if (session->header.needs_swap)
1806 perf_event_header__bswap(&event->header);
1807
1808 if (head + event->header.size > mmap_size) {
1809 /* We're not fetching the event so swap back again */
1810 if (session->header.needs_swap)
1811 perf_event_header__bswap(&event->header);
1812 return NULL;
1813 }
1814
1815 return event;
1816}
1817
1818/*
1819 * On 64bit we can mmap the data file in one go. No need for tiny mmap
1820 * slices. On 32bit we use 32MB.
1821 */
1822#if BITS_PER_LONG == 64
1823#define MMAP_SIZE ULLONG_MAX
1824#define NUM_MMAPS 1
1825#else
1826#define MMAP_SIZE (32 * 1024 * 1024ULL)
1827#define NUM_MMAPS 128
1828#endif
1829
1830static int __perf_session__process_events(struct perf_session *session,
1831 u64 data_offset, u64 data_size,
1832 u64 file_size)
1833{
1834 struct ordered_events *oe = &session->ordered_events;
1835 struct perf_tool *tool = session->tool;
1836 int fd = perf_data__fd(session->data);
1837 u64 head, page_offset, file_offset, file_pos, size;
1838 int err, mmap_prot, mmap_flags, map_idx = 0;
1839 size_t mmap_size;
1840 char *buf, *mmaps[NUM_MMAPS];
1841 union perf_event *event;
1842 struct ui_progress prog;
1843 s64 skip;
1844
1845 perf_tool__fill_defaults(tool);
1846
1847 page_offset = page_size * (data_offset / page_size);
1848 file_offset = page_offset;
1849 head = data_offset - page_offset;
1850
1851 if (data_size == 0)
1852 goto out;
1853
1854 if (data_offset + data_size < file_size)
1855 file_size = data_offset + data_size;
1856
1857 ui_progress__init_size(&prog, file_size, "Processing events...");
1858
1859 mmap_size = MMAP_SIZE;
1860 if (mmap_size > file_size) {
1861 mmap_size = file_size;
1862 session->one_mmap = true;
1863 }
1864
1865 memset(mmaps, 0, sizeof(mmaps));
1866
1867 mmap_prot = PROT_READ;
1868 mmap_flags = MAP_SHARED;
1869
1870 if (session->header.needs_swap) {
1871 mmap_prot |= PROT_WRITE;
1872 mmap_flags = MAP_PRIVATE;
1873 }
1874remap:
1875 buf = mmap(NULL, mmap_size, mmap_prot, mmap_flags, fd,
1876 file_offset);
1877 if (buf == MAP_FAILED) {
1878 pr_err("failed to mmap file\n");
1879 err = -errno;
1880 goto out_err;
1881 }
1882 mmaps[map_idx] = buf;
1883 map_idx = (map_idx + 1) & (ARRAY_SIZE(mmaps) - 1);
1884 file_pos = file_offset + head;
1885 if (session->one_mmap) {
1886 session->one_mmap_addr = buf;
1887 session->one_mmap_offset = file_offset;
1888 }
1889
1890more:
1891 event = fetch_mmaped_event(session, head, mmap_size, buf);
1892 if (!event) {
1893 if (mmaps[map_idx]) {
1894 munmap(mmaps[map_idx], mmap_size);
1895 mmaps[map_idx] = NULL;
1896 }
1897
1898 page_offset = page_size * (head / page_size);
1899 file_offset += page_offset;
1900 head -= page_offset;
1901 goto remap;
1902 }
1903
1904 size = event->header.size;
1905
1906 if (size < sizeof(struct perf_event_header) ||
1907 (skip = perf_session__process_event(session, event, file_pos)) < 0) {
1908 pr_err("%#" PRIx64 " [%#x]: failed to process type: %d\n",
1909 file_offset + head, event->header.size,
1910 event->header.type);
1911 err = -EINVAL;
1912 goto out_err;
1913 }
1914
1915 if (skip)
1916 size += skip;
1917
1918 head += size;
1919 file_pos += size;
1920
1921 ui_progress__update(&prog, size);
1922
1923 if (session_done())
1924 goto out;
1925
1926 if (file_pos < file_size)
1927 goto more;
1928
1929out:
1930 /* do the final flush for ordered samples */
1931 err = ordered_events__flush(oe, OE_FLUSH__FINAL);
1932 if (err)
1933 goto out_err;
1934 err = auxtrace__flush_events(session, tool);
1935 if (err)
1936 goto out_err;
1937 err = perf_session__flush_thread_stacks(session);
1938out_err:
1939 ui_progress__finish();
1940 if (!tool->no_warn)
1941 perf_session__warn_about_errors(session);
1942 /*
1943 * We may switching perf.data output, make ordered_events
1944 * reusable.
1945 */
1946 ordered_events__reinit(&session->ordered_events);
1947 auxtrace__free_events(session);
1948 session->one_mmap = false;
1949 return err;
1950}
1951
1952int perf_session__process_events(struct perf_session *session)
1953{
1954 u64 size = perf_data__size(session->data);
1955 int err;
1956
1957 if (perf_session__register_idle_thread(session) < 0)
1958 return -ENOMEM;
1959
1960 if (!perf_data__is_pipe(session->data))
1961 err = __perf_session__process_events(session,
1962 session->header.data_offset,
1963 session->header.data_size, size);
1964 else
1965 err = __perf_session__process_pipe_events(session);
1966
1967 return err;
1968}
1969
1970bool perf_session__has_traces(struct perf_session *session, const char *msg)
1971{
1972 struct perf_evsel *evsel;
1973
1974 evlist__for_each_entry(session->evlist, evsel) {
1975 if (evsel->attr.type == PERF_TYPE_TRACEPOINT)
1976 return true;
1977 }
1978
1979 pr_err("No trace sample to read. Did you call 'perf %s'?\n", msg);
1980 return false;
1981}
1982
1983int map__set_kallsyms_ref_reloc_sym(struct map *map, const char *symbol_name, u64 addr)
1984{
1985 char *bracket;
1986 struct ref_reloc_sym *ref;
1987 struct kmap *kmap;
1988
1989 ref = zalloc(sizeof(struct ref_reloc_sym));
1990 if (ref == NULL)
1991 return -ENOMEM;
1992
1993 ref->name = strdup(symbol_name);
1994 if (ref->name == NULL) {
1995 free(ref);
1996 return -ENOMEM;
1997 }
1998
1999 bracket = strchr(ref->name, ']');
2000 if (bracket)
2001 *bracket = '\0';
2002
2003 ref->addr = addr;
2004
2005 kmap = map__kmap(map);
2006 if (kmap)
2007 kmap->ref_reloc_sym = ref;
2008
2009 return 0;
2010}
2011
2012size_t perf_session__fprintf_dsos(struct perf_session *session, FILE *fp)
2013{
2014 return machines__fprintf_dsos(&session->machines, fp);
2015}
2016
2017size_t perf_session__fprintf_dsos_buildid(struct perf_session *session, FILE *fp,
2018 bool (skip)(struct dso *dso, int parm), int parm)
2019{
2020 return machines__fprintf_dsos_buildid(&session->machines, fp, skip, parm);
2021}
2022
2023size_t perf_session__fprintf_nr_events(struct perf_session *session, FILE *fp)
2024{
2025 size_t ret;
2026 const char *msg = "";
2027
2028 if (perf_header__has_feat(&session->header, HEADER_AUXTRACE))
2029 msg = " (excludes AUX area (e.g. instruction trace) decoded / synthesized events)";
2030
2031 ret = fprintf(fp, "\nAggregated stats:%s\n", msg);
2032
2033 ret += events_stats__fprintf(&session->evlist->stats, fp);
2034 return ret;
2035}
2036
2037size_t perf_session__fprintf(struct perf_session *session, FILE *fp)
2038{
2039 /*
2040 * FIXME: Here we have to actually print all the machines in this
2041 * session, not just the host...
2042 */
2043 return machine__fprintf(&session->machines.host, fp);
2044}
2045
2046struct perf_evsel *perf_session__find_first_evtype(struct perf_session *session,
2047 unsigned int type)
2048{
2049 struct perf_evsel *pos;
2050
2051 evlist__for_each_entry(session->evlist, pos) {
2052 if (pos->attr.type == type)
2053 return pos;
2054 }
2055 return NULL;
2056}
2057
2058int perf_session__cpu_bitmap(struct perf_session *session,
2059 const char *cpu_list, unsigned long *cpu_bitmap)
2060{
2061 int i, err = -1;
2062 struct cpu_map *map;
2063
2064 for (i = 0; i < PERF_TYPE_MAX; ++i) {
2065 struct perf_evsel *evsel;
2066
2067 evsel = perf_session__find_first_evtype(session, i);
2068 if (!evsel)
2069 continue;
2070
2071 if (!(evsel->attr.sample_type & PERF_SAMPLE_CPU)) {
2072 pr_err("File does not contain CPU events. "
2073 "Remove -C option to proceed.\n");
2074 return -1;
2075 }
2076 }
2077
2078 map = cpu_map__new(cpu_list);
2079 if (map == NULL) {
2080 pr_err("Invalid cpu_list\n");
2081 return -1;
2082 }
2083
2084 for (i = 0; i < map->nr; i++) {
2085 int cpu = map->map[i];
2086
2087 if (cpu >= MAX_NR_CPUS) {
2088 pr_err("Requested CPU %d too large. "
2089 "Consider raising MAX_NR_CPUS\n", cpu);
2090 goto out_delete_map;
2091 }
2092
2093 set_bit(cpu, cpu_bitmap);
2094 }
2095
2096 err = 0;
2097
2098out_delete_map:
2099 cpu_map__put(map);
2100 return err;
2101}
2102
2103void perf_session__fprintf_info(struct perf_session *session, FILE *fp,
2104 bool full)
2105{
2106 if (session == NULL || fp == NULL)
2107 return;
2108
2109 fprintf(fp, "# ========\n");
2110 perf_header__fprintf_info(session, fp, full);
2111 fprintf(fp, "# ========\n#\n");
2112}
2113
2114
2115int __perf_session__set_tracepoints_handlers(struct perf_session *session,
2116 const struct perf_evsel_str_handler *assocs,
2117 size_t nr_assocs)
2118{
2119 struct perf_evsel *evsel;
2120 size_t i;
2121 int err;
2122
2123 for (i = 0; i < nr_assocs; i++) {
2124 /*
2125 * Adding a handler for an event not in the session,
2126 * just ignore it.
2127 */
2128 evsel = perf_evlist__find_tracepoint_by_name(session->evlist, assocs[i].name);
2129 if (evsel == NULL)
2130 continue;
2131
2132 err = -EEXIST;
2133 if (evsel->handler != NULL)
2134 goto out;
2135 evsel->handler = assocs[i].handler;
2136 }
2137
2138 err = 0;
2139out:
2140 return err;
2141}
2142
2143int perf_event__process_id_index(struct perf_tool *tool __maybe_unused,
2144 union perf_event *event,
2145 struct perf_session *session)
2146{
2147 struct perf_evlist *evlist = session->evlist;
2148 struct id_index_event *ie = &event->id_index;
2149 size_t i, nr, max_nr;
2150
2151 max_nr = (ie->header.size - sizeof(struct id_index_event)) /
2152 sizeof(struct id_index_entry);
2153 nr = ie->nr;
2154 if (nr > max_nr)
2155 return -EINVAL;
2156
2157 if (dump_trace)
2158 fprintf(stdout, " nr: %zu\n", nr);
2159
2160 for (i = 0; i < nr; i++) {
2161 struct id_index_entry *e = &ie->entries[i];
2162 struct perf_sample_id *sid;
2163
2164 if (dump_trace) {
2165 fprintf(stdout, " ... id: %"PRIu64, e->id);
2166 fprintf(stdout, " idx: %"PRIu64, e->idx);
2167 fprintf(stdout, " cpu: %"PRId64, e->cpu);
2168 fprintf(stdout, " tid: %"PRId64"\n", e->tid);
2169 }
2170
2171 sid = perf_evlist__id2sid(evlist, e->id);
2172 if (!sid)
2173 return -ENOENT;
2174 sid->idx = e->idx;
2175 sid->cpu = e->cpu;
2176 sid->tid = e->tid;
2177 }
2178 return 0;
2179}
2180
2181int perf_event__synthesize_id_index(struct perf_tool *tool,
2182 perf_event__handler_t process,
2183 struct perf_evlist *evlist,
2184 struct machine *machine)
2185{
2186 union perf_event *ev;
2187 struct perf_evsel *evsel;
2188 size_t nr = 0, i = 0, sz, max_nr, n;
2189 int err;
2190
2191 pr_debug2("Synthesizing id index\n");
2192
2193 max_nr = (UINT16_MAX - sizeof(struct id_index_event)) /
2194 sizeof(struct id_index_entry);
2195
2196 evlist__for_each_entry(evlist, evsel)
2197 nr += evsel->ids;
2198
2199 n = nr > max_nr ? max_nr : nr;
2200 sz = sizeof(struct id_index_event) + n * sizeof(struct id_index_entry);
2201 ev = zalloc(sz);
2202 if (!ev)
2203 return -ENOMEM;
2204
2205 ev->id_index.header.type = PERF_RECORD_ID_INDEX;
2206 ev->id_index.header.size = sz;
2207 ev->id_index.nr = n;
2208
2209 evlist__for_each_entry(evlist, evsel) {
2210 u32 j;
2211
2212 for (j = 0; j < evsel->ids; j++) {
2213 struct id_index_entry *e;
2214 struct perf_sample_id *sid;
2215
2216 if (i >= n) {
2217 err = process(tool, ev, NULL, machine);
2218 if (err)
2219 goto out_err;
2220 nr -= n;
2221 i = 0;
2222 }
2223
2224 e = &ev->id_index.entries[i++];
2225
2226 e->id = evsel->id[j];
2227
2228 sid = perf_evlist__id2sid(evlist, e->id);
2229 if (!sid) {
2230 free(ev);
2231 return -ENOENT;
2232 }
2233
2234 e->idx = sid->idx;
2235 e->cpu = sid->cpu;
2236 e->tid = sid->tid;
2237 }
2238 }
2239
2240 sz = sizeof(struct id_index_event) + nr * sizeof(struct id_index_entry);
2241 ev->id_index.header.size = sz;
2242 ev->id_index.nr = nr;
2243
2244 err = process(tool, ev, NULL, machine);
2245out_err:
2246 free(ev);
2247
2248 return err;
2249}