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 #include "util.h" 10 #include "debugfs.h" 11 #include <poll.h> 12 #include "cpumap.h" 13 #include "thread_map.h" 14 #include "evlist.h" 15 #include "evsel.h" 16 #include <unistd.h> 17 18 #include "parse-events.h" 19 20 #include <sys/mman.h> 21 22 #include <linux/bitops.h> 23 #include <linux/hash.h> 24 25 #define FD(e, x, y) (*(int *)xyarray__entry(e->fd, x, y)) 26 #define SID(e, x, y) xyarray__entry(e->sample_id, x, y) 27 28 void perf_evlist__init(struct perf_evlist *evlist, struct cpu_map *cpus, 29 struct thread_map *threads) 30 { 31 int i; 32 33 for (i = 0; i < PERF_EVLIST__HLIST_SIZE; ++i) 34 INIT_HLIST_HEAD(&evlist->heads[i]); 35 INIT_LIST_HEAD(&evlist->entries); 36 perf_evlist__set_maps(evlist, cpus, threads); 37 evlist->workload.pid = -1; 38 } 39 40 struct perf_evlist *perf_evlist__new(struct cpu_map *cpus, 41 struct thread_map *threads) 42 { 43 struct perf_evlist *evlist = zalloc(sizeof(*evlist)); 44 45 if (evlist != NULL) 46 perf_evlist__init(evlist, cpus, threads); 47 48 return evlist; 49 } 50 51 void perf_evlist__config_attrs(struct perf_evlist *evlist, 52 struct perf_record_opts *opts) 53 { 54 struct perf_evsel *evsel, *first; 55 56 if (evlist->cpus->map[0] < 0) 57 opts->no_inherit = true; 58 59 first = list_entry(evlist->entries.next, struct perf_evsel, node); 60 61 list_for_each_entry(evsel, &evlist->entries, node) { 62 perf_evsel__config(evsel, opts, first); 63 64 if (evlist->nr_entries > 1) 65 evsel->attr.sample_type |= PERF_SAMPLE_ID; 66 } 67 } 68 69 static void perf_evlist__purge(struct perf_evlist *evlist) 70 { 71 struct perf_evsel *pos, *n; 72 73 list_for_each_entry_safe(pos, n, &evlist->entries, node) { 74 list_del_init(&pos->node); 75 perf_evsel__delete(pos); 76 } 77 78 evlist->nr_entries = 0; 79 } 80 81 void perf_evlist__exit(struct perf_evlist *evlist) 82 { 83 free(evlist->mmap); 84 free(evlist->pollfd); 85 evlist->mmap = NULL; 86 evlist->pollfd = NULL; 87 } 88 89 void perf_evlist__delete(struct perf_evlist *evlist) 90 { 91 perf_evlist__purge(evlist); 92 perf_evlist__exit(evlist); 93 free(evlist); 94 } 95 96 void perf_evlist__add(struct perf_evlist *evlist, struct perf_evsel *entry) 97 { 98 list_add_tail(&entry->node, &evlist->entries); 99 ++evlist->nr_entries; 100 } 101 102 void perf_evlist__splice_list_tail(struct perf_evlist *evlist, 103 struct list_head *list, 104 int nr_entries) 105 { 106 list_splice_tail(list, &evlist->entries); 107 evlist->nr_entries += nr_entries; 108 } 109 110 int perf_evlist__add_default(struct perf_evlist *evlist) 111 { 112 struct perf_event_attr attr = { 113 .type = PERF_TYPE_HARDWARE, 114 .config = PERF_COUNT_HW_CPU_CYCLES, 115 }; 116 struct perf_evsel *evsel; 117 118 event_attr_init(&attr); 119 120 evsel = perf_evsel__new(&attr, 0); 121 if (evsel == NULL) 122 goto error; 123 124 /* use strdup() because free(evsel) assumes name is allocated */ 125 evsel->name = strdup("cycles"); 126 if (!evsel->name) 127 goto error_free; 128 129 perf_evlist__add(evlist, evsel); 130 return 0; 131 error_free: 132 perf_evsel__delete(evsel); 133 error: 134 return -ENOMEM; 135 } 136 137 int perf_evlist__add_attrs(struct perf_evlist *evlist, 138 struct perf_event_attr *attrs, size_t nr_attrs) 139 { 140 struct perf_evsel *evsel, *n; 141 LIST_HEAD(head); 142 size_t i; 143 144 for (i = 0; i < nr_attrs; i++) { 145 evsel = perf_evsel__new(attrs + i, evlist->nr_entries + i); 146 if (evsel == NULL) 147 goto out_delete_partial_list; 148 list_add_tail(&evsel->node, &head); 149 } 150 151 perf_evlist__splice_list_tail(evlist, &head, nr_attrs); 152 153 return 0; 154 155 out_delete_partial_list: 156 list_for_each_entry_safe(evsel, n, &head, node) 157 perf_evsel__delete(evsel); 158 return -1; 159 } 160 161 static int trace_event__id(const char *evname) 162 { 163 char *filename, *colon; 164 int err = -1, fd; 165 166 if (asprintf(&filename, "%s/%s/id", tracing_events_path, evname) < 0) 167 return -1; 168 169 colon = strrchr(filename, ':'); 170 if (colon != NULL) 171 *colon = '/'; 172 173 fd = open(filename, O_RDONLY); 174 if (fd >= 0) { 175 char id[16]; 176 if (read(fd, id, sizeof(id)) > 0) 177 err = atoi(id); 178 close(fd); 179 } 180 181 free(filename); 182 return err; 183 } 184 185 int perf_evlist__add_tracepoints(struct perf_evlist *evlist, 186 const char *tracepoints[], 187 size_t nr_tracepoints) 188 { 189 int err; 190 size_t i; 191 struct perf_event_attr *attrs = zalloc(nr_tracepoints * sizeof(*attrs)); 192 193 if (attrs == NULL) 194 return -1; 195 196 for (i = 0; i < nr_tracepoints; i++) { 197 err = trace_event__id(tracepoints[i]); 198 199 if (err < 0) 200 goto out_free_attrs; 201 202 attrs[i].type = PERF_TYPE_TRACEPOINT; 203 attrs[i].config = err; 204 attrs[i].sample_type = (PERF_SAMPLE_RAW | PERF_SAMPLE_TIME | 205 PERF_SAMPLE_CPU); 206 attrs[i].sample_period = 1; 207 } 208 209 err = perf_evlist__add_attrs(evlist, attrs, nr_tracepoints); 210 out_free_attrs: 211 free(attrs); 212 return err; 213 } 214 215 static struct perf_evsel * 216 perf_evlist__find_tracepoint_by_id(struct perf_evlist *evlist, int id) 217 { 218 struct perf_evsel *evsel; 219 220 list_for_each_entry(evsel, &evlist->entries, node) { 221 if (evsel->attr.type == PERF_TYPE_TRACEPOINT && 222 (int)evsel->attr.config == id) 223 return evsel; 224 } 225 226 return NULL; 227 } 228 229 int perf_evlist__set_tracepoints_handlers(struct perf_evlist *evlist, 230 const struct perf_evsel_str_handler *assocs, 231 size_t nr_assocs) 232 { 233 struct perf_evsel *evsel; 234 int err; 235 size_t i; 236 237 for (i = 0; i < nr_assocs; i++) { 238 err = trace_event__id(assocs[i].name); 239 if (err < 0) 240 goto out; 241 242 evsel = perf_evlist__find_tracepoint_by_id(evlist, err); 243 if (evsel == NULL) 244 continue; 245 246 err = -EEXIST; 247 if (evsel->handler.func != NULL) 248 goto out; 249 evsel->handler.func = assocs[i].handler; 250 } 251 252 err = 0; 253 out: 254 return err; 255 } 256 257 void perf_evlist__disable(struct perf_evlist *evlist) 258 { 259 int cpu, thread; 260 struct perf_evsel *pos; 261 262 for (cpu = 0; cpu < evlist->cpus->nr; cpu++) { 263 list_for_each_entry(pos, &evlist->entries, node) { 264 for (thread = 0; thread < evlist->threads->nr; thread++) 265 ioctl(FD(pos, cpu, thread), PERF_EVENT_IOC_DISABLE); 266 } 267 } 268 } 269 270 void perf_evlist__enable(struct perf_evlist *evlist) 271 { 272 int cpu, thread; 273 struct perf_evsel *pos; 274 275 for (cpu = 0; cpu < evlist->cpus->nr; cpu++) { 276 list_for_each_entry(pos, &evlist->entries, node) { 277 for (thread = 0; thread < evlist->threads->nr; thread++) 278 ioctl(FD(pos, cpu, thread), PERF_EVENT_IOC_ENABLE); 279 } 280 } 281 } 282 283 static int perf_evlist__alloc_pollfd(struct perf_evlist *evlist) 284 { 285 int nfds = evlist->cpus->nr * evlist->threads->nr * evlist->nr_entries; 286 evlist->pollfd = malloc(sizeof(struct pollfd) * nfds); 287 return evlist->pollfd != NULL ? 0 : -ENOMEM; 288 } 289 290 void perf_evlist__add_pollfd(struct perf_evlist *evlist, int fd) 291 { 292 fcntl(fd, F_SETFL, O_NONBLOCK); 293 evlist->pollfd[evlist->nr_fds].fd = fd; 294 evlist->pollfd[evlist->nr_fds].events = POLLIN; 295 evlist->nr_fds++; 296 } 297 298 static void perf_evlist__id_hash(struct perf_evlist *evlist, 299 struct perf_evsel *evsel, 300 int cpu, int thread, u64 id) 301 { 302 int hash; 303 struct perf_sample_id *sid = SID(evsel, cpu, thread); 304 305 sid->id = id; 306 sid->evsel = evsel; 307 hash = hash_64(sid->id, PERF_EVLIST__HLIST_BITS); 308 hlist_add_head(&sid->node, &evlist->heads[hash]); 309 } 310 311 void perf_evlist__id_add(struct perf_evlist *evlist, struct perf_evsel *evsel, 312 int cpu, int thread, u64 id) 313 { 314 perf_evlist__id_hash(evlist, evsel, cpu, thread, id); 315 evsel->id[evsel->ids++] = id; 316 } 317 318 static int perf_evlist__id_add_fd(struct perf_evlist *evlist, 319 struct perf_evsel *evsel, 320 int cpu, int thread, int fd) 321 { 322 u64 read_data[4] = { 0, }; 323 int id_idx = 1; /* The first entry is the counter value */ 324 325 if (!(evsel->attr.read_format & PERF_FORMAT_ID) || 326 read(fd, &read_data, sizeof(read_data)) == -1) 327 return -1; 328 329 if (evsel->attr.read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) 330 ++id_idx; 331 if (evsel->attr.read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) 332 ++id_idx; 333 334 perf_evlist__id_add(evlist, evsel, cpu, thread, read_data[id_idx]); 335 return 0; 336 } 337 338 struct perf_evsel *perf_evlist__id2evsel(struct perf_evlist *evlist, u64 id) 339 { 340 struct hlist_head *head; 341 struct hlist_node *pos; 342 struct perf_sample_id *sid; 343 int hash; 344 345 if (evlist->nr_entries == 1) 346 return list_entry(evlist->entries.next, struct perf_evsel, node); 347 348 hash = hash_64(id, PERF_EVLIST__HLIST_BITS); 349 head = &evlist->heads[hash]; 350 351 hlist_for_each_entry(sid, pos, head, node) 352 if (sid->id == id) 353 return sid->evsel; 354 355 if (!perf_evlist__sample_id_all(evlist)) 356 return list_entry(evlist->entries.next, struct perf_evsel, node); 357 358 return NULL; 359 } 360 361 union perf_event *perf_evlist__mmap_read(struct perf_evlist *evlist, int idx) 362 { 363 /* XXX Move this to perf.c, making it generally available */ 364 unsigned int page_size = sysconf(_SC_PAGE_SIZE); 365 struct perf_mmap *md = &evlist->mmap[idx]; 366 unsigned int head = perf_mmap__read_head(md); 367 unsigned int old = md->prev; 368 unsigned char *data = md->base + page_size; 369 union perf_event *event = NULL; 370 371 if (evlist->overwrite) { 372 /* 373 * If we're further behind than half the buffer, there's a chance 374 * the writer will bite our tail and mess up the samples under us. 375 * 376 * If we somehow ended up ahead of the head, we got messed up. 377 * 378 * In either case, truncate and restart at head. 379 */ 380 int diff = head - old; 381 if (diff > md->mask / 2 || diff < 0) { 382 fprintf(stderr, "WARNING: failed to keep up with mmap data.\n"); 383 384 /* 385 * head points to a known good entry, start there. 386 */ 387 old = head; 388 } 389 } 390 391 if (old != head) { 392 size_t size; 393 394 event = (union perf_event *)&data[old & md->mask]; 395 size = event->header.size; 396 397 /* 398 * Event straddles the mmap boundary -- header should always 399 * be inside due to u64 alignment of output. 400 */ 401 if ((old & md->mask) + size != ((old + size) & md->mask)) { 402 unsigned int offset = old; 403 unsigned int len = min(sizeof(*event), size), cpy; 404 void *dst = &evlist->event_copy; 405 406 do { 407 cpy = min(md->mask + 1 - (offset & md->mask), len); 408 memcpy(dst, &data[offset & md->mask], cpy); 409 offset += cpy; 410 dst += cpy; 411 len -= cpy; 412 } while (len); 413 414 event = &evlist->event_copy; 415 } 416 417 old += size; 418 } 419 420 md->prev = old; 421 422 if (!evlist->overwrite) 423 perf_mmap__write_tail(md, old); 424 425 return event; 426 } 427 428 void perf_evlist__munmap(struct perf_evlist *evlist) 429 { 430 int i; 431 432 for (i = 0; i < evlist->nr_mmaps; i++) { 433 if (evlist->mmap[i].base != NULL) { 434 munmap(evlist->mmap[i].base, evlist->mmap_len); 435 evlist->mmap[i].base = NULL; 436 } 437 } 438 439 free(evlist->mmap); 440 evlist->mmap = NULL; 441 } 442 443 static int perf_evlist__alloc_mmap(struct perf_evlist *evlist) 444 { 445 evlist->nr_mmaps = evlist->cpus->nr; 446 if (evlist->cpus->map[0] == -1) 447 evlist->nr_mmaps = evlist->threads->nr; 448 evlist->mmap = zalloc(evlist->nr_mmaps * sizeof(struct perf_mmap)); 449 return evlist->mmap != NULL ? 0 : -ENOMEM; 450 } 451 452 static int __perf_evlist__mmap(struct perf_evlist *evlist, 453 int idx, int prot, int mask, int fd) 454 { 455 evlist->mmap[idx].prev = 0; 456 evlist->mmap[idx].mask = mask; 457 evlist->mmap[idx].base = mmap(NULL, evlist->mmap_len, prot, 458 MAP_SHARED, fd, 0); 459 if (evlist->mmap[idx].base == MAP_FAILED) { 460 evlist->mmap[idx].base = NULL; 461 return -1; 462 } 463 464 perf_evlist__add_pollfd(evlist, fd); 465 return 0; 466 } 467 468 static int perf_evlist__mmap_per_cpu(struct perf_evlist *evlist, int prot, int mask) 469 { 470 struct perf_evsel *evsel; 471 int cpu, thread; 472 473 for (cpu = 0; cpu < evlist->cpus->nr; cpu++) { 474 int output = -1; 475 476 for (thread = 0; thread < evlist->threads->nr; thread++) { 477 list_for_each_entry(evsel, &evlist->entries, node) { 478 int fd = FD(evsel, cpu, thread); 479 480 if (output == -1) { 481 output = fd; 482 if (__perf_evlist__mmap(evlist, cpu, 483 prot, mask, output) < 0) 484 goto out_unmap; 485 } else { 486 if (ioctl(fd, PERF_EVENT_IOC_SET_OUTPUT, output) != 0) 487 goto out_unmap; 488 } 489 490 if ((evsel->attr.read_format & PERF_FORMAT_ID) && 491 perf_evlist__id_add_fd(evlist, evsel, cpu, thread, fd) < 0) 492 goto out_unmap; 493 } 494 } 495 } 496 497 return 0; 498 499 out_unmap: 500 for (cpu = 0; cpu < evlist->cpus->nr; cpu++) { 501 if (evlist->mmap[cpu].base != NULL) { 502 munmap(evlist->mmap[cpu].base, evlist->mmap_len); 503 evlist->mmap[cpu].base = NULL; 504 } 505 } 506 return -1; 507 } 508 509 static int perf_evlist__mmap_per_thread(struct perf_evlist *evlist, int prot, int mask) 510 { 511 struct perf_evsel *evsel; 512 int thread; 513 514 for (thread = 0; thread < evlist->threads->nr; thread++) { 515 int output = -1; 516 517 list_for_each_entry(evsel, &evlist->entries, node) { 518 int fd = FD(evsel, 0, thread); 519 520 if (output == -1) { 521 output = fd; 522 if (__perf_evlist__mmap(evlist, thread, 523 prot, mask, output) < 0) 524 goto out_unmap; 525 } else { 526 if (ioctl(fd, PERF_EVENT_IOC_SET_OUTPUT, output) != 0) 527 goto out_unmap; 528 } 529 530 if ((evsel->attr.read_format & PERF_FORMAT_ID) && 531 perf_evlist__id_add_fd(evlist, evsel, 0, thread, fd) < 0) 532 goto out_unmap; 533 } 534 } 535 536 return 0; 537 538 out_unmap: 539 for (thread = 0; thread < evlist->threads->nr; thread++) { 540 if (evlist->mmap[thread].base != NULL) { 541 munmap(evlist->mmap[thread].base, evlist->mmap_len); 542 evlist->mmap[thread].base = NULL; 543 } 544 } 545 return -1; 546 } 547 548 /** perf_evlist__mmap - Create per cpu maps to receive events 549 * 550 * @evlist - list of events 551 * @pages - map length in pages 552 * @overwrite - overwrite older events? 553 * 554 * If overwrite is false the user needs to signal event consuption using: 555 * 556 * struct perf_mmap *m = &evlist->mmap[cpu]; 557 * unsigned int head = perf_mmap__read_head(m); 558 * 559 * perf_mmap__write_tail(m, head) 560 * 561 * Using perf_evlist__read_on_cpu does this automatically. 562 */ 563 int perf_evlist__mmap(struct perf_evlist *evlist, unsigned int pages, 564 bool overwrite) 565 { 566 unsigned int page_size = sysconf(_SC_PAGE_SIZE); 567 struct perf_evsel *evsel; 568 const struct cpu_map *cpus = evlist->cpus; 569 const struct thread_map *threads = evlist->threads; 570 int prot = PROT_READ | (overwrite ? 0 : PROT_WRITE), mask; 571 572 /* 512 kiB: default amount of unprivileged mlocked memory */ 573 if (pages == UINT_MAX) 574 pages = (512 * 1024) / page_size; 575 else if (!is_power_of_2(pages)) 576 return -EINVAL; 577 578 mask = pages * page_size - 1; 579 580 if (evlist->mmap == NULL && perf_evlist__alloc_mmap(evlist) < 0) 581 return -ENOMEM; 582 583 if (evlist->pollfd == NULL && perf_evlist__alloc_pollfd(evlist) < 0) 584 return -ENOMEM; 585 586 evlist->overwrite = overwrite; 587 evlist->mmap_len = (pages + 1) * page_size; 588 589 list_for_each_entry(evsel, &evlist->entries, node) { 590 if ((evsel->attr.read_format & PERF_FORMAT_ID) && 591 evsel->sample_id == NULL && 592 perf_evsel__alloc_id(evsel, cpus->nr, threads->nr) < 0) 593 return -ENOMEM; 594 } 595 596 if (evlist->cpus->map[0] == -1) 597 return perf_evlist__mmap_per_thread(evlist, prot, mask); 598 599 return perf_evlist__mmap_per_cpu(evlist, prot, mask); 600 } 601 602 int perf_evlist__create_maps(struct perf_evlist *evlist, const char *target_pid, 603 const char *target_tid, uid_t uid, const char *cpu_list) 604 { 605 evlist->threads = thread_map__new_str(target_pid, target_tid, uid); 606 607 if (evlist->threads == NULL) 608 return -1; 609 610 if (uid != UINT_MAX || (cpu_list == NULL && target_tid)) 611 evlist->cpus = cpu_map__dummy_new(); 612 else 613 evlist->cpus = cpu_map__new(cpu_list); 614 615 if (evlist->cpus == NULL) 616 goto out_delete_threads; 617 618 return 0; 619 620 out_delete_threads: 621 thread_map__delete(evlist->threads); 622 return -1; 623 } 624 625 void perf_evlist__delete_maps(struct perf_evlist *evlist) 626 { 627 cpu_map__delete(evlist->cpus); 628 thread_map__delete(evlist->threads); 629 evlist->cpus = NULL; 630 evlist->threads = NULL; 631 } 632 633 int perf_evlist__set_filters(struct perf_evlist *evlist) 634 { 635 const struct thread_map *threads = evlist->threads; 636 const struct cpu_map *cpus = evlist->cpus; 637 struct perf_evsel *evsel; 638 char *filter; 639 int thread; 640 int cpu; 641 int err; 642 int fd; 643 644 list_for_each_entry(evsel, &evlist->entries, node) { 645 filter = evsel->filter; 646 if (!filter) 647 continue; 648 for (cpu = 0; cpu < cpus->nr; cpu++) { 649 for (thread = 0; thread < threads->nr; thread++) { 650 fd = FD(evsel, cpu, thread); 651 err = ioctl(fd, PERF_EVENT_IOC_SET_FILTER, filter); 652 if (err) 653 return err; 654 } 655 } 656 } 657 658 return 0; 659 } 660 661 bool perf_evlist__valid_sample_type(const struct perf_evlist *evlist) 662 { 663 struct perf_evsel *pos, *first; 664 665 pos = first = list_entry(evlist->entries.next, struct perf_evsel, node); 666 667 list_for_each_entry_continue(pos, &evlist->entries, node) { 668 if (first->attr.sample_type != pos->attr.sample_type) 669 return false; 670 } 671 672 return true; 673 } 674 675 u64 perf_evlist__sample_type(const struct perf_evlist *evlist) 676 { 677 struct perf_evsel *first; 678 679 first = list_entry(evlist->entries.next, struct perf_evsel, node); 680 return first->attr.sample_type; 681 } 682 683 u16 perf_evlist__id_hdr_size(const struct perf_evlist *evlist) 684 { 685 struct perf_evsel *first; 686 struct perf_sample *data; 687 u64 sample_type; 688 u16 size = 0; 689 690 first = list_entry(evlist->entries.next, struct perf_evsel, node); 691 692 if (!first->attr.sample_id_all) 693 goto out; 694 695 sample_type = first->attr.sample_type; 696 697 if (sample_type & PERF_SAMPLE_TID) 698 size += sizeof(data->tid) * 2; 699 700 if (sample_type & PERF_SAMPLE_TIME) 701 size += sizeof(data->time); 702 703 if (sample_type & PERF_SAMPLE_ID) 704 size += sizeof(data->id); 705 706 if (sample_type & PERF_SAMPLE_STREAM_ID) 707 size += sizeof(data->stream_id); 708 709 if (sample_type & PERF_SAMPLE_CPU) 710 size += sizeof(data->cpu) * 2; 711 out: 712 return size; 713 } 714 715 bool perf_evlist__valid_sample_id_all(const struct perf_evlist *evlist) 716 { 717 struct perf_evsel *pos, *first; 718 719 pos = first = list_entry(evlist->entries.next, struct perf_evsel, node); 720 721 list_for_each_entry_continue(pos, &evlist->entries, node) { 722 if (first->attr.sample_id_all != pos->attr.sample_id_all) 723 return false; 724 } 725 726 return true; 727 } 728 729 bool perf_evlist__sample_id_all(const struct perf_evlist *evlist) 730 { 731 struct perf_evsel *first; 732 733 first = list_entry(evlist->entries.next, struct perf_evsel, node); 734 return first->attr.sample_id_all; 735 } 736 737 void perf_evlist__set_selected(struct perf_evlist *evlist, 738 struct perf_evsel *evsel) 739 { 740 evlist->selected = evsel; 741 } 742 743 int perf_evlist__open(struct perf_evlist *evlist, bool group) 744 { 745 struct perf_evsel *evsel, *first; 746 int err, ncpus, nthreads; 747 748 first = list_entry(evlist->entries.next, struct perf_evsel, node); 749 750 list_for_each_entry(evsel, &evlist->entries, node) { 751 struct xyarray *group_fd = NULL; 752 753 if (group && evsel != first) 754 group_fd = first->fd; 755 756 err = perf_evsel__open(evsel, evlist->cpus, evlist->threads, 757 group, group_fd); 758 if (err < 0) 759 goto out_err; 760 } 761 762 return 0; 763 out_err: 764 ncpus = evlist->cpus ? evlist->cpus->nr : 1; 765 nthreads = evlist->threads ? evlist->threads->nr : 1; 766 767 list_for_each_entry_reverse(evsel, &evlist->entries, node) 768 perf_evsel__close(evsel, ncpus, nthreads); 769 770 errno = -err; 771 return err; 772 } 773 774 int perf_evlist__prepare_workload(struct perf_evlist *evlist, 775 struct perf_record_opts *opts, 776 const char *argv[]) 777 { 778 int child_ready_pipe[2], go_pipe[2]; 779 char bf; 780 781 if (pipe(child_ready_pipe) < 0) { 782 perror("failed to create 'ready' pipe"); 783 return -1; 784 } 785 786 if (pipe(go_pipe) < 0) { 787 perror("failed to create 'go' pipe"); 788 goto out_close_ready_pipe; 789 } 790 791 evlist->workload.pid = fork(); 792 if (evlist->workload.pid < 0) { 793 perror("failed to fork"); 794 goto out_close_pipes; 795 } 796 797 if (!evlist->workload.pid) { 798 if (opts->pipe_output) 799 dup2(2, 1); 800 801 close(child_ready_pipe[0]); 802 close(go_pipe[1]); 803 fcntl(go_pipe[0], F_SETFD, FD_CLOEXEC); 804 805 /* 806 * Do a dummy execvp to get the PLT entry resolved, 807 * so we avoid the resolver overhead on the real 808 * execvp call. 809 */ 810 execvp("", (char **)argv); 811 812 /* 813 * Tell the parent we're ready to go 814 */ 815 close(child_ready_pipe[1]); 816 817 /* 818 * Wait until the parent tells us to go. 819 */ 820 if (read(go_pipe[0], &bf, 1) == -1) 821 perror("unable to read pipe"); 822 823 execvp(argv[0], (char **)argv); 824 825 perror(argv[0]); 826 kill(getppid(), SIGUSR1); 827 exit(-1); 828 } 829 830 if (!opts->system_wide && !opts->target_tid && !opts->target_pid) 831 evlist->threads->map[0] = evlist->workload.pid; 832 833 close(child_ready_pipe[1]); 834 close(go_pipe[0]); 835 /* 836 * wait for child to settle 837 */ 838 if (read(child_ready_pipe[0], &bf, 1) == -1) { 839 perror("unable to read pipe"); 840 goto out_close_pipes; 841 } 842 843 evlist->workload.cork_fd = go_pipe[1]; 844 close(child_ready_pipe[0]); 845 return 0; 846 847 out_close_pipes: 848 close(go_pipe[0]); 849 close(go_pipe[1]); 850 out_close_ready_pipe: 851 close(child_ready_pipe[0]); 852 close(child_ready_pipe[1]); 853 return -1; 854 } 855 856 int perf_evlist__start_workload(struct perf_evlist *evlist) 857 { 858 if (evlist->workload.cork_fd > 0) { 859 /* 860 * Remove the cork, let it rip! 861 */ 862 return close(evlist->workload.cork_fd); 863 } 864 865 return 0; 866 } 867