header.c 50 KB

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  1. #define _FILE_OFFSET_BITS 64
  2. #include "util.h"
  3. #include <sys/types.h>
  4. #include <byteswap.h>
  5. #include <unistd.h>
  6. #include <stdio.h>
  7. #include <stdlib.h>
  8. #include <linux/list.h>
  9. #include <linux/kernel.h>
  10. #include <linux/bitops.h>
  11. #include <sys/utsname.h>
  12. #include "evlist.h"
  13. #include "evsel.h"
  14. #include "header.h"
  15. #include "../perf.h"
  16. #include "trace-event.h"
  17. #include "session.h"
  18. #include "symbol.h"
  19. #include "debug.h"
  20. #include "cpumap.h"
  21. static bool no_buildid_cache = false;
  22. static int event_count;
  23. static struct perf_trace_event_type *events;
  24. static u32 header_argc;
  25. static const char **header_argv;
  26. int perf_header__push_event(u64 id, const char *name)
  27. {
  28. if (strlen(name) > MAX_EVENT_NAME)
  29. pr_warning("Event %s will be truncated\n", name);
  30. if (!events) {
  31. events = malloc(sizeof(struct perf_trace_event_type));
  32. if (events == NULL)
  33. return -ENOMEM;
  34. } else {
  35. struct perf_trace_event_type *nevents;
  36. nevents = realloc(events, (event_count + 1) * sizeof(*events));
  37. if (nevents == NULL)
  38. return -ENOMEM;
  39. events = nevents;
  40. }
  41. memset(&events[event_count], 0, sizeof(struct perf_trace_event_type));
  42. events[event_count].event_id = id;
  43. strncpy(events[event_count].name, name, MAX_EVENT_NAME - 1);
  44. event_count++;
  45. return 0;
  46. }
  47. char *perf_header__find_event(u64 id)
  48. {
  49. int i;
  50. for (i = 0 ; i < event_count; i++) {
  51. if (events[i].event_id == id)
  52. return events[i].name;
  53. }
  54. return NULL;
  55. }
  56. /*
  57. * magic2 = "PERFILE2"
  58. * must be a numerical value to let the endianness
  59. * determine the memory layout. That way we are able
  60. * to detect endianness when reading the perf.data file
  61. * back.
  62. *
  63. * we check for legacy (PERFFILE) format.
  64. */
  65. static const char *__perf_magic1 = "PERFFILE";
  66. static const u64 __perf_magic2 = 0x32454c4946524550ULL;
  67. static const u64 __perf_magic2_sw = 0x50455246494c4532ULL;
  68. #define PERF_MAGIC __perf_magic2
  69. struct perf_file_attr {
  70. struct perf_event_attr attr;
  71. struct perf_file_section ids;
  72. };
  73. void perf_header__set_feat(struct perf_header *header, int feat)
  74. {
  75. set_bit(feat, header->adds_features);
  76. }
  77. void perf_header__clear_feat(struct perf_header *header, int feat)
  78. {
  79. clear_bit(feat, header->adds_features);
  80. }
  81. bool perf_header__has_feat(const struct perf_header *header, int feat)
  82. {
  83. return test_bit(feat, header->adds_features);
  84. }
  85. static int do_write(int fd, const void *buf, size_t size)
  86. {
  87. while (size) {
  88. int ret = write(fd, buf, size);
  89. if (ret < 0)
  90. return -errno;
  91. size -= ret;
  92. buf += ret;
  93. }
  94. return 0;
  95. }
  96. #define NAME_ALIGN 64
  97. static int write_padded(int fd, const void *bf, size_t count,
  98. size_t count_aligned)
  99. {
  100. static const char zero_buf[NAME_ALIGN];
  101. int err = do_write(fd, bf, count);
  102. if (!err)
  103. err = do_write(fd, zero_buf, count_aligned - count);
  104. return err;
  105. }
  106. static int do_write_string(int fd, const char *str)
  107. {
  108. u32 len, olen;
  109. int ret;
  110. olen = strlen(str) + 1;
  111. len = ALIGN(olen, NAME_ALIGN);
  112. /* write len, incl. \0 */
  113. ret = do_write(fd, &len, sizeof(len));
  114. if (ret < 0)
  115. return ret;
  116. return write_padded(fd, str, olen, len);
  117. }
  118. static char *do_read_string(int fd, struct perf_header *ph)
  119. {
  120. ssize_t sz, ret;
  121. u32 len;
  122. char *buf;
  123. sz = read(fd, &len, sizeof(len));
  124. if (sz < (ssize_t)sizeof(len))
  125. return NULL;
  126. if (ph->needs_swap)
  127. len = bswap_32(len);
  128. buf = malloc(len);
  129. if (!buf)
  130. return NULL;
  131. ret = read(fd, buf, len);
  132. if (ret == (ssize_t)len) {
  133. /*
  134. * strings are padded by zeroes
  135. * thus the actual strlen of buf
  136. * may be less than len
  137. */
  138. return buf;
  139. }
  140. free(buf);
  141. return NULL;
  142. }
  143. int
  144. perf_header__set_cmdline(int argc, const char **argv)
  145. {
  146. int i;
  147. header_argc = (u32)argc;
  148. /* do not include NULL termination */
  149. header_argv = calloc(argc, sizeof(char *));
  150. if (!header_argv)
  151. return -ENOMEM;
  152. /*
  153. * must copy argv contents because it gets moved
  154. * around during option parsing
  155. */
  156. for (i = 0; i < argc ; i++)
  157. header_argv[i] = argv[i];
  158. return 0;
  159. }
  160. #define dsos__for_each_with_build_id(pos, head) \
  161. list_for_each_entry(pos, head, node) \
  162. if (!pos->has_build_id) \
  163. continue; \
  164. else
  165. static int __dsos__write_buildid_table(struct list_head *head, pid_t pid,
  166. u16 misc, int fd)
  167. {
  168. struct dso *pos;
  169. dsos__for_each_with_build_id(pos, head) {
  170. int err;
  171. struct build_id_event b;
  172. size_t len;
  173. if (!pos->hit)
  174. continue;
  175. len = pos->long_name_len + 1;
  176. len = ALIGN(len, NAME_ALIGN);
  177. memset(&b, 0, sizeof(b));
  178. memcpy(&b.build_id, pos->build_id, sizeof(pos->build_id));
  179. b.pid = pid;
  180. b.header.misc = misc;
  181. b.header.size = sizeof(b) + len;
  182. err = do_write(fd, &b, sizeof(b));
  183. if (err < 0)
  184. return err;
  185. err = write_padded(fd, pos->long_name,
  186. pos->long_name_len + 1, len);
  187. if (err < 0)
  188. return err;
  189. }
  190. return 0;
  191. }
  192. static int machine__write_buildid_table(struct machine *machine, int fd)
  193. {
  194. int err;
  195. u16 kmisc = PERF_RECORD_MISC_KERNEL,
  196. umisc = PERF_RECORD_MISC_USER;
  197. if (!machine__is_host(machine)) {
  198. kmisc = PERF_RECORD_MISC_GUEST_KERNEL;
  199. umisc = PERF_RECORD_MISC_GUEST_USER;
  200. }
  201. err = __dsos__write_buildid_table(&machine->kernel_dsos, machine->pid,
  202. kmisc, fd);
  203. if (err == 0)
  204. err = __dsos__write_buildid_table(&machine->user_dsos,
  205. machine->pid, umisc, fd);
  206. return err;
  207. }
  208. static int dsos__write_buildid_table(struct perf_header *header, int fd)
  209. {
  210. struct perf_session *session = container_of(header,
  211. struct perf_session, header);
  212. struct rb_node *nd;
  213. int err = machine__write_buildid_table(&session->host_machine, fd);
  214. if (err)
  215. return err;
  216. for (nd = rb_first(&session->machines); nd; nd = rb_next(nd)) {
  217. struct machine *pos = rb_entry(nd, struct machine, rb_node);
  218. err = machine__write_buildid_table(pos, fd);
  219. if (err)
  220. break;
  221. }
  222. return err;
  223. }
  224. int build_id_cache__add_s(const char *sbuild_id, const char *debugdir,
  225. const char *name, bool is_kallsyms)
  226. {
  227. const size_t size = PATH_MAX;
  228. char *realname, *filename = zalloc(size),
  229. *linkname = zalloc(size), *targetname;
  230. int len, err = -1;
  231. if (is_kallsyms) {
  232. if (symbol_conf.kptr_restrict) {
  233. pr_debug("Not caching a kptr_restrict'ed /proc/kallsyms\n");
  234. return 0;
  235. }
  236. realname = (char *)name;
  237. } else
  238. realname = realpath(name, NULL);
  239. if (realname == NULL || filename == NULL || linkname == NULL)
  240. goto out_free;
  241. len = snprintf(filename, size, "%s%s%s",
  242. debugdir, is_kallsyms ? "/" : "", realname);
  243. if (mkdir_p(filename, 0755))
  244. goto out_free;
  245. snprintf(filename + len, sizeof(filename) - len, "/%s", sbuild_id);
  246. if (access(filename, F_OK)) {
  247. if (is_kallsyms) {
  248. if (copyfile("/proc/kallsyms", filename))
  249. goto out_free;
  250. } else if (link(realname, filename) && copyfile(name, filename))
  251. goto out_free;
  252. }
  253. len = snprintf(linkname, size, "%s/.build-id/%.2s",
  254. debugdir, sbuild_id);
  255. if (access(linkname, X_OK) && mkdir_p(linkname, 0755))
  256. goto out_free;
  257. snprintf(linkname + len, size - len, "/%s", sbuild_id + 2);
  258. targetname = filename + strlen(debugdir) - 5;
  259. memcpy(targetname, "../..", 5);
  260. if (symlink(targetname, linkname) == 0)
  261. err = 0;
  262. out_free:
  263. if (!is_kallsyms)
  264. free(realname);
  265. free(filename);
  266. free(linkname);
  267. return err;
  268. }
  269. static int build_id_cache__add_b(const u8 *build_id, size_t build_id_size,
  270. const char *name, const char *debugdir,
  271. bool is_kallsyms)
  272. {
  273. char sbuild_id[BUILD_ID_SIZE * 2 + 1];
  274. build_id__sprintf(build_id, build_id_size, sbuild_id);
  275. return build_id_cache__add_s(sbuild_id, debugdir, name, is_kallsyms);
  276. }
  277. int build_id_cache__remove_s(const char *sbuild_id, const char *debugdir)
  278. {
  279. const size_t size = PATH_MAX;
  280. char *filename = zalloc(size),
  281. *linkname = zalloc(size);
  282. int err = -1;
  283. if (filename == NULL || linkname == NULL)
  284. goto out_free;
  285. snprintf(linkname, size, "%s/.build-id/%.2s/%s",
  286. debugdir, sbuild_id, sbuild_id + 2);
  287. if (access(linkname, F_OK))
  288. goto out_free;
  289. if (readlink(linkname, filename, size - 1) < 0)
  290. goto out_free;
  291. if (unlink(linkname))
  292. goto out_free;
  293. /*
  294. * Since the link is relative, we must make it absolute:
  295. */
  296. snprintf(linkname, size, "%s/.build-id/%.2s/%s",
  297. debugdir, sbuild_id, filename);
  298. if (unlink(linkname))
  299. goto out_free;
  300. err = 0;
  301. out_free:
  302. free(filename);
  303. free(linkname);
  304. return err;
  305. }
  306. static int dso__cache_build_id(struct dso *dso, const char *debugdir)
  307. {
  308. bool is_kallsyms = dso->kernel && dso->long_name[0] != '/';
  309. return build_id_cache__add_b(dso->build_id, sizeof(dso->build_id),
  310. dso->long_name, debugdir, is_kallsyms);
  311. }
  312. static int __dsos__cache_build_ids(struct list_head *head, const char *debugdir)
  313. {
  314. struct dso *pos;
  315. int err = 0;
  316. dsos__for_each_with_build_id(pos, head)
  317. if (dso__cache_build_id(pos, debugdir))
  318. err = -1;
  319. return err;
  320. }
  321. static int machine__cache_build_ids(struct machine *machine, const char *debugdir)
  322. {
  323. int ret = __dsos__cache_build_ids(&machine->kernel_dsos, debugdir);
  324. ret |= __dsos__cache_build_ids(&machine->user_dsos, debugdir);
  325. return ret;
  326. }
  327. static int perf_session__cache_build_ids(struct perf_session *session)
  328. {
  329. struct rb_node *nd;
  330. int ret;
  331. char debugdir[PATH_MAX];
  332. snprintf(debugdir, sizeof(debugdir), "%s", buildid_dir);
  333. if (mkdir(debugdir, 0755) != 0 && errno != EEXIST)
  334. return -1;
  335. ret = machine__cache_build_ids(&session->host_machine, debugdir);
  336. for (nd = rb_first(&session->machines); nd; nd = rb_next(nd)) {
  337. struct machine *pos = rb_entry(nd, struct machine, rb_node);
  338. ret |= machine__cache_build_ids(pos, debugdir);
  339. }
  340. return ret ? -1 : 0;
  341. }
  342. static bool machine__read_build_ids(struct machine *machine, bool with_hits)
  343. {
  344. bool ret = __dsos__read_build_ids(&machine->kernel_dsos, with_hits);
  345. ret |= __dsos__read_build_ids(&machine->user_dsos, with_hits);
  346. return ret;
  347. }
  348. static bool perf_session__read_build_ids(struct perf_session *session, bool with_hits)
  349. {
  350. struct rb_node *nd;
  351. bool ret = machine__read_build_ids(&session->host_machine, with_hits);
  352. for (nd = rb_first(&session->machines); nd; nd = rb_next(nd)) {
  353. struct machine *pos = rb_entry(nd, struct machine, rb_node);
  354. ret |= machine__read_build_ids(pos, with_hits);
  355. }
  356. return ret;
  357. }
  358. static int write_trace_info(int fd, struct perf_header *h __used,
  359. struct perf_evlist *evlist)
  360. {
  361. return read_tracing_data(fd, &evlist->entries);
  362. }
  363. static int write_build_id(int fd, struct perf_header *h,
  364. struct perf_evlist *evlist __used)
  365. {
  366. struct perf_session *session;
  367. int err;
  368. session = container_of(h, struct perf_session, header);
  369. if (!perf_session__read_build_ids(session, true))
  370. return -1;
  371. err = dsos__write_buildid_table(h, fd);
  372. if (err < 0) {
  373. pr_debug("failed to write buildid table\n");
  374. return err;
  375. }
  376. if (!no_buildid_cache)
  377. perf_session__cache_build_ids(session);
  378. return 0;
  379. }
  380. static int write_hostname(int fd, struct perf_header *h __used,
  381. struct perf_evlist *evlist __used)
  382. {
  383. struct utsname uts;
  384. int ret;
  385. ret = uname(&uts);
  386. if (ret < 0)
  387. return -1;
  388. return do_write_string(fd, uts.nodename);
  389. }
  390. static int write_osrelease(int fd, struct perf_header *h __used,
  391. struct perf_evlist *evlist __used)
  392. {
  393. struct utsname uts;
  394. int ret;
  395. ret = uname(&uts);
  396. if (ret < 0)
  397. return -1;
  398. return do_write_string(fd, uts.release);
  399. }
  400. static int write_arch(int fd, struct perf_header *h __used,
  401. struct perf_evlist *evlist __used)
  402. {
  403. struct utsname uts;
  404. int ret;
  405. ret = uname(&uts);
  406. if (ret < 0)
  407. return -1;
  408. return do_write_string(fd, uts.machine);
  409. }
  410. static int write_version(int fd, struct perf_header *h __used,
  411. struct perf_evlist *evlist __used)
  412. {
  413. return do_write_string(fd, perf_version_string);
  414. }
  415. static int write_cpudesc(int fd, struct perf_header *h __used,
  416. struct perf_evlist *evlist __used)
  417. {
  418. #ifndef CPUINFO_PROC
  419. #define CPUINFO_PROC NULL
  420. #endif
  421. FILE *file;
  422. char *buf = NULL;
  423. char *s, *p;
  424. const char *search = CPUINFO_PROC;
  425. size_t len = 0;
  426. int ret = -1;
  427. if (!search)
  428. return -1;
  429. file = fopen("/proc/cpuinfo", "r");
  430. if (!file)
  431. return -1;
  432. while (getline(&buf, &len, file) > 0) {
  433. ret = strncmp(buf, search, strlen(search));
  434. if (!ret)
  435. break;
  436. }
  437. if (ret)
  438. goto done;
  439. s = buf;
  440. p = strchr(buf, ':');
  441. if (p && *(p+1) == ' ' && *(p+2))
  442. s = p + 2;
  443. p = strchr(s, '\n');
  444. if (p)
  445. *p = '\0';
  446. /* squash extra space characters (branding string) */
  447. p = s;
  448. while (*p) {
  449. if (isspace(*p)) {
  450. char *r = p + 1;
  451. char *q = r;
  452. *p = ' ';
  453. while (*q && isspace(*q))
  454. q++;
  455. if (q != (p+1))
  456. while ((*r++ = *q++));
  457. }
  458. p++;
  459. }
  460. ret = do_write_string(fd, s);
  461. done:
  462. free(buf);
  463. fclose(file);
  464. return ret;
  465. }
  466. static int write_nrcpus(int fd, struct perf_header *h __used,
  467. struct perf_evlist *evlist __used)
  468. {
  469. long nr;
  470. u32 nrc, nra;
  471. int ret;
  472. nr = sysconf(_SC_NPROCESSORS_CONF);
  473. if (nr < 0)
  474. return -1;
  475. nrc = (u32)(nr & UINT_MAX);
  476. nr = sysconf(_SC_NPROCESSORS_ONLN);
  477. if (nr < 0)
  478. return -1;
  479. nra = (u32)(nr & UINT_MAX);
  480. ret = do_write(fd, &nrc, sizeof(nrc));
  481. if (ret < 0)
  482. return ret;
  483. return do_write(fd, &nra, sizeof(nra));
  484. }
  485. static int write_event_desc(int fd, struct perf_header *h __used,
  486. struct perf_evlist *evlist)
  487. {
  488. struct perf_evsel *attr;
  489. u32 nre = 0, nri, sz;
  490. int ret;
  491. list_for_each_entry(attr, &evlist->entries, node)
  492. nre++;
  493. /*
  494. * write number of events
  495. */
  496. ret = do_write(fd, &nre, sizeof(nre));
  497. if (ret < 0)
  498. return ret;
  499. /*
  500. * size of perf_event_attr struct
  501. */
  502. sz = (u32)sizeof(attr->attr);
  503. ret = do_write(fd, &sz, sizeof(sz));
  504. if (ret < 0)
  505. return ret;
  506. list_for_each_entry(attr, &evlist->entries, node) {
  507. ret = do_write(fd, &attr->attr, sz);
  508. if (ret < 0)
  509. return ret;
  510. /*
  511. * write number of unique id per event
  512. * there is one id per instance of an event
  513. *
  514. * copy into an nri to be independent of the
  515. * type of ids,
  516. */
  517. nri = attr->ids;
  518. ret = do_write(fd, &nri, sizeof(nri));
  519. if (ret < 0)
  520. return ret;
  521. /*
  522. * write event string as passed on cmdline
  523. */
  524. ret = do_write_string(fd, event_name(attr));
  525. if (ret < 0)
  526. return ret;
  527. /*
  528. * write unique ids for this event
  529. */
  530. ret = do_write(fd, attr->id, attr->ids * sizeof(u64));
  531. if (ret < 0)
  532. return ret;
  533. }
  534. return 0;
  535. }
  536. static int write_cmdline(int fd, struct perf_header *h __used,
  537. struct perf_evlist *evlist __used)
  538. {
  539. char buf[MAXPATHLEN];
  540. char proc[32];
  541. u32 i, n;
  542. int ret;
  543. /*
  544. * actual atual path to perf binary
  545. */
  546. sprintf(proc, "/proc/%d/exe", getpid());
  547. ret = readlink(proc, buf, sizeof(buf));
  548. if (ret <= 0)
  549. return -1;
  550. /* readlink() does not add null termination */
  551. buf[ret] = '\0';
  552. /* account for binary path */
  553. n = header_argc + 1;
  554. ret = do_write(fd, &n, sizeof(n));
  555. if (ret < 0)
  556. return ret;
  557. ret = do_write_string(fd, buf);
  558. if (ret < 0)
  559. return ret;
  560. for (i = 0 ; i < header_argc; i++) {
  561. ret = do_write_string(fd, header_argv[i]);
  562. if (ret < 0)
  563. return ret;
  564. }
  565. return 0;
  566. }
  567. #define CORE_SIB_FMT \
  568. "/sys/devices/system/cpu/cpu%d/topology/core_siblings_list"
  569. #define THRD_SIB_FMT \
  570. "/sys/devices/system/cpu/cpu%d/topology/thread_siblings_list"
  571. struct cpu_topo {
  572. u32 core_sib;
  573. u32 thread_sib;
  574. char **core_siblings;
  575. char **thread_siblings;
  576. };
  577. static int build_cpu_topo(struct cpu_topo *tp, int cpu)
  578. {
  579. FILE *fp;
  580. char filename[MAXPATHLEN];
  581. char *buf = NULL, *p;
  582. size_t len = 0;
  583. u32 i = 0;
  584. int ret = -1;
  585. sprintf(filename, CORE_SIB_FMT, cpu);
  586. fp = fopen(filename, "r");
  587. if (!fp)
  588. return -1;
  589. if (getline(&buf, &len, fp) <= 0)
  590. goto done;
  591. fclose(fp);
  592. p = strchr(buf, '\n');
  593. if (p)
  594. *p = '\0';
  595. for (i = 0; i < tp->core_sib; i++) {
  596. if (!strcmp(buf, tp->core_siblings[i]))
  597. break;
  598. }
  599. if (i == tp->core_sib) {
  600. tp->core_siblings[i] = buf;
  601. tp->core_sib++;
  602. buf = NULL;
  603. len = 0;
  604. }
  605. sprintf(filename, THRD_SIB_FMT, cpu);
  606. fp = fopen(filename, "r");
  607. if (!fp)
  608. goto done;
  609. if (getline(&buf, &len, fp) <= 0)
  610. goto done;
  611. p = strchr(buf, '\n');
  612. if (p)
  613. *p = '\0';
  614. for (i = 0; i < tp->thread_sib; i++) {
  615. if (!strcmp(buf, tp->thread_siblings[i]))
  616. break;
  617. }
  618. if (i == tp->thread_sib) {
  619. tp->thread_siblings[i] = buf;
  620. tp->thread_sib++;
  621. buf = NULL;
  622. }
  623. ret = 0;
  624. done:
  625. if(fp)
  626. fclose(fp);
  627. free(buf);
  628. return ret;
  629. }
  630. static void free_cpu_topo(struct cpu_topo *tp)
  631. {
  632. u32 i;
  633. if (!tp)
  634. return;
  635. for (i = 0 ; i < tp->core_sib; i++)
  636. free(tp->core_siblings[i]);
  637. for (i = 0 ; i < tp->thread_sib; i++)
  638. free(tp->thread_siblings[i]);
  639. free(tp);
  640. }
  641. static struct cpu_topo *build_cpu_topology(void)
  642. {
  643. struct cpu_topo *tp;
  644. void *addr;
  645. u32 nr, i;
  646. size_t sz;
  647. long ncpus;
  648. int ret = -1;
  649. ncpus = sysconf(_SC_NPROCESSORS_CONF);
  650. if (ncpus < 0)
  651. return NULL;
  652. nr = (u32)(ncpus & UINT_MAX);
  653. sz = nr * sizeof(char *);
  654. addr = calloc(1, sizeof(*tp) + 2 * sz);
  655. if (!addr)
  656. return NULL;
  657. tp = addr;
  658. addr += sizeof(*tp);
  659. tp->core_siblings = addr;
  660. addr += sz;
  661. tp->thread_siblings = addr;
  662. for (i = 0; i < nr; i++) {
  663. ret = build_cpu_topo(tp, i);
  664. if (ret < 0)
  665. break;
  666. }
  667. if (ret) {
  668. free_cpu_topo(tp);
  669. tp = NULL;
  670. }
  671. return tp;
  672. }
  673. static int write_cpu_topology(int fd, struct perf_header *h __used,
  674. struct perf_evlist *evlist __used)
  675. {
  676. struct cpu_topo *tp;
  677. u32 i;
  678. int ret;
  679. tp = build_cpu_topology();
  680. if (!tp)
  681. return -1;
  682. ret = do_write(fd, &tp->core_sib, sizeof(tp->core_sib));
  683. if (ret < 0)
  684. goto done;
  685. for (i = 0; i < tp->core_sib; i++) {
  686. ret = do_write_string(fd, tp->core_siblings[i]);
  687. if (ret < 0)
  688. goto done;
  689. }
  690. ret = do_write(fd, &tp->thread_sib, sizeof(tp->thread_sib));
  691. if (ret < 0)
  692. goto done;
  693. for (i = 0; i < tp->thread_sib; i++) {
  694. ret = do_write_string(fd, tp->thread_siblings[i]);
  695. if (ret < 0)
  696. break;
  697. }
  698. done:
  699. free_cpu_topo(tp);
  700. return ret;
  701. }
  702. static int write_total_mem(int fd, struct perf_header *h __used,
  703. struct perf_evlist *evlist __used)
  704. {
  705. char *buf = NULL;
  706. FILE *fp;
  707. size_t len = 0;
  708. int ret = -1, n;
  709. uint64_t mem;
  710. fp = fopen("/proc/meminfo", "r");
  711. if (!fp)
  712. return -1;
  713. while (getline(&buf, &len, fp) > 0) {
  714. ret = strncmp(buf, "MemTotal:", 9);
  715. if (!ret)
  716. break;
  717. }
  718. if (!ret) {
  719. n = sscanf(buf, "%*s %"PRIu64, &mem);
  720. if (n == 1)
  721. ret = do_write(fd, &mem, sizeof(mem));
  722. }
  723. free(buf);
  724. fclose(fp);
  725. return ret;
  726. }
  727. static int write_topo_node(int fd, int node)
  728. {
  729. char str[MAXPATHLEN];
  730. char field[32];
  731. char *buf = NULL, *p;
  732. size_t len = 0;
  733. FILE *fp;
  734. u64 mem_total, mem_free, mem;
  735. int ret = -1;
  736. sprintf(str, "/sys/devices/system/node/node%d/meminfo", node);
  737. fp = fopen(str, "r");
  738. if (!fp)
  739. return -1;
  740. while (getline(&buf, &len, fp) > 0) {
  741. /* skip over invalid lines */
  742. if (!strchr(buf, ':'))
  743. continue;
  744. if (sscanf(buf, "%*s %*d %s %"PRIu64, field, &mem) != 2)
  745. goto done;
  746. if (!strcmp(field, "MemTotal:"))
  747. mem_total = mem;
  748. if (!strcmp(field, "MemFree:"))
  749. mem_free = mem;
  750. }
  751. fclose(fp);
  752. ret = do_write(fd, &mem_total, sizeof(u64));
  753. if (ret)
  754. goto done;
  755. ret = do_write(fd, &mem_free, sizeof(u64));
  756. if (ret)
  757. goto done;
  758. ret = -1;
  759. sprintf(str, "/sys/devices/system/node/node%d/cpulist", node);
  760. fp = fopen(str, "r");
  761. if (!fp)
  762. goto done;
  763. if (getline(&buf, &len, fp) <= 0)
  764. goto done;
  765. p = strchr(buf, '\n');
  766. if (p)
  767. *p = '\0';
  768. ret = do_write_string(fd, buf);
  769. done:
  770. free(buf);
  771. fclose(fp);
  772. return ret;
  773. }
  774. static int write_numa_topology(int fd, struct perf_header *h __used,
  775. struct perf_evlist *evlist __used)
  776. {
  777. char *buf = NULL;
  778. size_t len = 0;
  779. FILE *fp;
  780. struct cpu_map *node_map = NULL;
  781. char *c;
  782. u32 nr, i, j;
  783. int ret = -1;
  784. fp = fopen("/sys/devices/system/node/online", "r");
  785. if (!fp)
  786. return -1;
  787. if (getline(&buf, &len, fp) <= 0)
  788. goto done;
  789. c = strchr(buf, '\n');
  790. if (c)
  791. *c = '\0';
  792. node_map = cpu_map__new(buf);
  793. if (!node_map)
  794. goto done;
  795. nr = (u32)node_map->nr;
  796. ret = do_write(fd, &nr, sizeof(nr));
  797. if (ret < 0)
  798. goto done;
  799. for (i = 0; i < nr; i++) {
  800. j = (u32)node_map->map[i];
  801. ret = do_write(fd, &j, sizeof(j));
  802. if (ret < 0)
  803. break;
  804. ret = write_topo_node(fd, i);
  805. if (ret < 0)
  806. break;
  807. }
  808. done:
  809. free(buf);
  810. fclose(fp);
  811. free(node_map);
  812. return ret;
  813. }
  814. /*
  815. * default get_cpuid(): nothing gets recorded
  816. * actual implementation must be in arch/$(ARCH)/util/header.c
  817. */
  818. int __attribute__((weak)) get_cpuid(char *buffer __used, size_t sz __used)
  819. {
  820. return -1;
  821. }
  822. static int write_cpuid(int fd, struct perf_header *h __used,
  823. struct perf_evlist *evlist __used)
  824. {
  825. char buffer[64];
  826. int ret;
  827. ret = get_cpuid(buffer, sizeof(buffer));
  828. if (!ret)
  829. goto write_it;
  830. return -1;
  831. write_it:
  832. return do_write_string(fd, buffer);
  833. }
  834. static void print_hostname(struct perf_header *ph, int fd, FILE *fp)
  835. {
  836. char *str = do_read_string(fd, ph);
  837. fprintf(fp, "# hostname : %s\n", str);
  838. free(str);
  839. }
  840. static void print_osrelease(struct perf_header *ph, int fd, FILE *fp)
  841. {
  842. char *str = do_read_string(fd, ph);
  843. fprintf(fp, "# os release : %s\n", str);
  844. free(str);
  845. }
  846. static void print_arch(struct perf_header *ph, int fd, FILE *fp)
  847. {
  848. char *str = do_read_string(fd, ph);
  849. fprintf(fp, "# arch : %s\n", str);
  850. free(str);
  851. }
  852. static void print_cpudesc(struct perf_header *ph, int fd, FILE *fp)
  853. {
  854. char *str = do_read_string(fd, ph);
  855. fprintf(fp, "# cpudesc : %s\n", str);
  856. free(str);
  857. }
  858. static void print_nrcpus(struct perf_header *ph, int fd, FILE *fp)
  859. {
  860. ssize_t ret;
  861. u32 nr;
  862. ret = read(fd, &nr, sizeof(nr));
  863. if (ret != (ssize_t)sizeof(nr))
  864. nr = -1; /* interpreted as error */
  865. if (ph->needs_swap)
  866. nr = bswap_32(nr);
  867. fprintf(fp, "# nrcpus online : %u\n", nr);
  868. ret = read(fd, &nr, sizeof(nr));
  869. if (ret != (ssize_t)sizeof(nr))
  870. nr = -1; /* interpreted as error */
  871. if (ph->needs_swap)
  872. nr = bswap_32(nr);
  873. fprintf(fp, "# nrcpus avail : %u\n", nr);
  874. }
  875. static void print_version(struct perf_header *ph, int fd, FILE *fp)
  876. {
  877. char *str = do_read_string(fd, ph);
  878. fprintf(fp, "# perf version : %s\n", str);
  879. free(str);
  880. }
  881. static void print_cmdline(struct perf_header *ph, int fd, FILE *fp)
  882. {
  883. ssize_t ret;
  884. char *str;
  885. u32 nr, i;
  886. ret = read(fd, &nr, sizeof(nr));
  887. if (ret != (ssize_t)sizeof(nr))
  888. return;
  889. if (ph->needs_swap)
  890. nr = bswap_32(nr);
  891. fprintf(fp, "# cmdline : ");
  892. for (i = 0; i < nr; i++) {
  893. str = do_read_string(fd, ph);
  894. fprintf(fp, "%s ", str);
  895. free(str);
  896. }
  897. fputc('\n', fp);
  898. }
  899. static void print_cpu_topology(struct perf_header *ph, int fd, FILE *fp)
  900. {
  901. ssize_t ret;
  902. u32 nr, i;
  903. char *str;
  904. ret = read(fd, &nr, sizeof(nr));
  905. if (ret != (ssize_t)sizeof(nr))
  906. return;
  907. if (ph->needs_swap)
  908. nr = bswap_32(nr);
  909. for (i = 0; i < nr; i++) {
  910. str = do_read_string(fd, ph);
  911. fprintf(fp, "# sibling cores : %s\n", str);
  912. free(str);
  913. }
  914. ret = read(fd, &nr, sizeof(nr));
  915. if (ret != (ssize_t)sizeof(nr))
  916. return;
  917. if (ph->needs_swap)
  918. nr = bswap_32(nr);
  919. for (i = 0; i < nr; i++) {
  920. str = do_read_string(fd, ph);
  921. fprintf(fp, "# sibling threads : %s\n", str);
  922. free(str);
  923. }
  924. }
  925. static void print_event_desc(struct perf_header *ph, int fd, FILE *fp)
  926. {
  927. struct perf_event_attr attr;
  928. uint64_t id;
  929. void *buf = NULL;
  930. char *str;
  931. u32 nre, sz, nr, i, j, msz;
  932. int ret;
  933. /* number of events */
  934. ret = read(fd, &nre, sizeof(nre));
  935. if (ret != (ssize_t)sizeof(nre))
  936. goto error;
  937. if (ph->needs_swap)
  938. nre = bswap_32(nre);
  939. ret = read(fd, &sz, sizeof(sz));
  940. if (ret != (ssize_t)sizeof(sz))
  941. goto error;
  942. if (ph->needs_swap)
  943. sz = bswap_32(sz);
  944. /*
  945. * ensure it is at least to our ABI rev
  946. */
  947. if (sz < (u32)sizeof(attr))
  948. goto error;
  949. memset(&attr, 0, sizeof(attr));
  950. /* read entire region to sync up to next field */
  951. buf = malloc(sz);
  952. if (!buf)
  953. goto error;
  954. msz = sizeof(attr);
  955. if (sz < msz)
  956. msz = sz;
  957. for (i = 0 ; i < nre; i++) {
  958. ret = read(fd, buf, sz);
  959. if (ret != (ssize_t)sz)
  960. goto error;
  961. if (ph->needs_swap)
  962. perf_event__attr_swap(buf);
  963. memcpy(&attr, buf, msz);
  964. ret = read(fd, &nr, sizeof(nr));
  965. if (ret != (ssize_t)sizeof(nr))
  966. goto error;
  967. if (ph->needs_swap)
  968. nr = bswap_32(nr);
  969. str = do_read_string(fd, ph);
  970. fprintf(fp, "# event : name = %s, ", str);
  971. free(str);
  972. fprintf(fp, "type = %d, config = 0x%"PRIx64
  973. ", config1 = 0x%"PRIx64", config2 = 0x%"PRIx64,
  974. attr.type,
  975. (u64)attr.config,
  976. (u64)attr.config1,
  977. (u64)attr.config2);
  978. fprintf(fp, ", excl_usr = %d, excl_kern = %d",
  979. attr.exclude_user,
  980. attr.exclude_kernel);
  981. if (nr)
  982. fprintf(fp, ", id = {");
  983. for (j = 0 ; j < nr; j++) {
  984. ret = read(fd, &id, sizeof(id));
  985. if (ret != (ssize_t)sizeof(id))
  986. goto error;
  987. if (ph->needs_swap)
  988. id = bswap_64(id);
  989. if (j)
  990. fputc(',', fp);
  991. fprintf(fp, " %"PRIu64, id);
  992. }
  993. if (nr && j == nr)
  994. fprintf(fp, " }");
  995. fputc('\n', fp);
  996. }
  997. free(buf);
  998. return;
  999. error:
  1000. fprintf(fp, "# event desc: not available or unable to read\n");
  1001. }
  1002. static void print_total_mem(struct perf_header *h __used, int fd, FILE *fp)
  1003. {
  1004. uint64_t mem;
  1005. ssize_t ret;
  1006. ret = read(fd, &mem, sizeof(mem));
  1007. if (ret != sizeof(mem))
  1008. goto error;
  1009. if (h->needs_swap)
  1010. mem = bswap_64(mem);
  1011. fprintf(fp, "# total memory : %"PRIu64" kB\n", mem);
  1012. return;
  1013. error:
  1014. fprintf(fp, "# total memory : unknown\n");
  1015. }
  1016. static void print_numa_topology(struct perf_header *h __used, int fd, FILE *fp)
  1017. {
  1018. ssize_t ret;
  1019. u32 nr, c, i;
  1020. char *str;
  1021. uint64_t mem_total, mem_free;
  1022. /* nr nodes */
  1023. ret = read(fd, &nr, sizeof(nr));
  1024. if (ret != (ssize_t)sizeof(nr))
  1025. goto error;
  1026. if (h->needs_swap)
  1027. nr = bswap_32(nr);
  1028. for (i = 0; i < nr; i++) {
  1029. /* node number */
  1030. ret = read(fd, &c, sizeof(c));
  1031. if (ret != (ssize_t)sizeof(c))
  1032. goto error;
  1033. if (h->needs_swap)
  1034. c = bswap_32(c);
  1035. ret = read(fd, &mem_total, sizeof(u64));
  1036. if (ret != sizeof(u64))
  1037. goto error;
  1038. ret = read(fd, &mem_free, sizeof(u64));
  1039. if (ret != sizeof(u64))
  1040. goto error;
  1041. if (h->needs_swap) {
  1042. mem_total = bswap_64(mem_total);
  1043. mem_free = bswap_64(mem_free);
  1044. }
  1045. fprintf(fp, "# node%u meminfo : total = %"PRIu64" kB,"
  1046. " free = %"PRIu64" kB\n",
  1047. c,
  1048. mem_total,
  1049. mem_free);
  1050. str = do_read_string(fd, h);
  1051. fprintf(fp, "# node%u cpu list : %s\n", c, str);
  1052. free(str);
  1053. }
  1054. return;
  1055. error:
  1056. fprintf(fp, "# numa topology : not available\n");
  1057. }
  1058. static void print_cpuid(struct perf_header *ph, int fd, FILE *fp)
  1059. {
  1060. char *str = do_read_string(fd, ph);
  1061. fprintf(fp, "# cpuid : %s\n", str);
  1062. free(str);
  1063. }
  1064. struct feature_ops {
  1065. int (*write)(int fd, struct perf_header *h, struct perf_evlist *evlist);
  1066. void (*print)(struct perf_header *h, int fd, FILE *fp);
  1067. const char *name;
  1068. bool full_only;
  1069. };
  1070. #define FEAT_OPA(n, func) \
  1071. [n] = { .name = #n, .write = write_##func, .print = print_##func }
  1072. #define FEAT_OPF(n, func) \
  1073. [n] = { .name = #n, .write = write_##func, .print = print_##func, .full_only = true }
  1074. /* feature_ops not implemented: */
  1075. #define print_trace_info NULL
  1076. #define print_build_id NULL
  1077. static const struct feature_ops feat_ops[HEADER_LAST_FEATURE] = {
  1078. FEAT_OPA(HEADER_TRACE_INFO, trace_info),
  1079. FEAT_OPA(HEADER_BUILD_ID, build_id),
  1080. FEAT_OPA(HEADER_HOSTNAME, hostname),
  1081. FEAT_OPA(HEADER_OSRELEASE, osrelease),
  1082. FEAT_OPA(HEADER_VERSION, version),
  1083. FEAT_OPA(HEADER_ARCH, arch),
  1084. FEAT_OPA(HEADER_NRCPUS, nrcpus),
  1085. FEAT_OPA(HEADER_CPUDESC, cpudesc),
  1086. FEAT_OPA(HEADER_CPUID, cpuid),
  1087. FEAT_OPA(HEADER_TOTAL_MEM, total_mem),
  1088. FEAT_OPA(HEADER_EVENT_DESC, event_desc),
  1089. FEAT_OPA(HEADER_CMDLINE, cmdline),
  1090. FEAT_OPF(HEADER_CPU_TOPOLOGY, cpu_topology),
  1091. FEAT_OPF(HEADER_NUMA_TOPOLOGY, numa_topology),
  1092. };
  1093. struct header_print_data {
  1094. FILE *fp;
  1095. bool full; /* extended list of headers */
  1096. };
  1097. static int perf_file_section__fprintf_info(struct perf_file_section *section,
  1098. struct perf_header *ph,
  1099. int feat, int fd, void *data)
  1100. {
  1101. struct header_print_data *hd = data;
  1102. if (lseek(fd, section->offset, SEEK_SET) == (off_t)-1) {
  1103. pr_debug("Failed to lseek to %" PRIu64 " offset for feature "
  1104. "%d, continuing...\n", section->offset, feat);
  1105. return 0;
  1106. }
  1107. if (feat >= HEADER_LAST_FEATURE) {
  1108. pr_warning("unknown feature %d\n", feat);
  1109. return 0;
  1110. }
  1111. if (!feat_ops[feat].print)
  1112. return 0;
  1113. if (!feat_ops[feat].full_only || hd->full)
  1114. feat_ops[feat].print(ph, fd, hd->fp);
  1115. else
  1116. fprintf(hd->fp, "# %s info available, use -I to display\n",
  1117. feat_ops[feat].name);
  1118. return 0;
  1119. }
  1120. int perf_header__fprintf_info(struct perf_session *session, FILE *fp, bool full)
  1121. {
  1122. struct header_print_data hd;
  1123. struct perf_header *header = &session->header;
  1124. int fd = session->fd;
  1125. hd.fp = fp;
  1126. hd.full = full;
  1127. perf_header__process_sections(header, fd, &hd,
  1128. perf_file_section__fprintf_info);
  1129. return 0;
  1130. }
  1131. static int do_write_feat(int fd, struct perf_header *h, int type,
  1132. struct perf_file_section **p,
  1133. struct perf_evlist *evlist)
  1134. {
  1135. int err;
  1136. int ret = 0;
  1137. if (perf_header__has_feat(h, type)) {
  1138. if (!feat_ops[type].write)
  1139. return -1;
  1140. (*p)->offset = lseek(fd, 0, SEEK_CUR);
  1141. err = feat_ops[type].write(fd, h, evlist);
  1142. if (err < 0) {
  1143. pr_debug("failed to write feature %d\n", type);
  1144. /* undo anything written */
  1145. lseek(fd, (*p)->offset, SEEK_SET);
  1146. return -1;
  1147. }
  1148. (*p)->size = lseek(fd, 0, SEEK_CUR) - (*p)->offset;
  1149. (*p)++;
  1150. }
  1151. return ret;
  1152. }
  1153. static int perf_header__adds_write(struct perf_header *header,
  1154. struct perf_evlist *evlist, int fd)
  1155. {
  1156. int nr_sections;
  1157. struct perf_file_section *feat_sec, *p;
  1158. int sec_size;
  1159. u64 sec_start;
  1160. int feat;
  1161. int err;
  1162. nr_sections = bitmap_weight(header->adds_features, HEADER_FEAT_BITS);
  1163. if (!nr_sections)
  1164. return 0;
  1165. feat_sec = p = calloc(sizeof(*feat_sec), nr_sections);
  1166. if (feat_sec == NULL)
  1167. return -ENOMEM;
  1168. sec_size = sizeof(*feat_sec) * nr_sections;
  1169. sec_start = header->data_offset + header->data_size;
  1170. lseek(fd, sec_start + sec_size, SEEK_SET);
  1171. for_each_set_bit(feat, header->adds_features, HEADER_FEAT_BITS) {
  1172. if (do_write_feat(fd, header, feat, &p, evlist))
  1173. perf_header__clear_feat(header, feat);
  1174. }
  1175. lseek(fd, sec_start, SEEK_SET);
  1176. /*
  1177. * may write more than needed due to dropped feature, but
  1178. * this is okay, reader will skip the mising entries
  1179. */
  1180. err = do_write(fd, feat_sec, sec_size);
  1181. if (err < 0)
  1182. pr_debug("failed to write feature section\n");
  1183. free(feat_sec);
  1184. return err;
  1185. }
  1186. int perf_header__write_pipe(int fd)
  1187. {
  1188. struct perf_pipe_file_header f_header;
  1189. int err;
  1190. f_header = (struct perf_pipe_file_header){
  1191. .magic = PERF_MAGIC,
  1192. .size = sizeof(f_header),
  1193. };
  1194. err = do_write(fd, &f_header, sizeof(f_header));
  1195. if (err < 0) {
  1196. pr_debug("failed to write perf pipe header\n");
  1197. return err;
  1198. }
  1199. return 0;
  1200. }
  1201. int perf_session__write_header(struct perf_session *session,
  1202. struct perf_evlist *evlist,
  1203. int fd, bool at_exit)
  1204. {
  1205. struct perf_file_header f_header;
  1206. struct perf_file_attr f_attr;
  1207. struct perf_header *header = &session->header;
  1208. struct perf_evsel *attr, *pair = NULL;
  1209. int err;
  1210. lseek(fd, sizeof(f_header), SEEK_SET);
  1211. if (session->evlist != evlist)
  1212. pair = list_entry(session->evlist->entries.next, struct perf_evsel, node);
  1213. list_for_each_entry(attr, &evlist->entries, node) {
  1214. attr->id_offset = lseek(fd, 0, SEEK_CUR);
  1215. err = do_write(fd, attr->id, attr->ids * sizeof(u64));
  1216. if (err < 0) {
  1217. out_err_write:
  1218. pr_debug("failed to write perf header\n");
  1219. return err;
  1220. }
  1221. if (session->evlist != evlist) {
  1222. err = do_write(fd, pair->id, pair->ids * sizeof(u64));
  1223. if (err < 0)
  1224. goto out_err_write;
  1225. attr->ids += pair->ids;
  1226. pair = list_entry(pair->node.next, struct perf_evsel, node);
  1227. }
  1228. }
  1229. header->attr_offset = lseek(fd, 0, SEEK_CUR);
  1230. list_for_each_entry(attr, &evlist->entries, node) {
  1231. f_attr = (struct perf_file_attr){
  1232. .attr = attr->attr,
  1233. .ids = {
  1234. .offset = attr->id_offset,
  1235. .size = attr->ids * sizeof(u64),
  1236. }
  1237. };
  1238. err = do_write(fd, &f_attr, sizeof(f_attr));
  1239. if (err < 0) {
  1240. pr_debug("failed to write perf header attribute\n");
  1241. return err;
  1242. }
  1243. }
  1244. header->event_offset = lseek(fd, 0, SEEK_CUR);
  1245. header->event_size = event_count * sizeof(struct perf_trace_event_type);
  1246. if (events) {
  1247. err = do_write(fd, events, header->event_size);
  1248. if (err < 0) {
  1249. pr_debug("failed to write perf header events\n");
  1250. return err;
  1251. }
  1252. }
  1253. header->data_offset = lseek(fd, 0, SEEK_CUR);
  1254. if (at_exit) {
  1255. err = perf_header__adds_write(header, evlist, fd);
  1256. if (err < 0)
  1257. return err;
  1258. }
  1259. f_header = (struct perf_file_header){
  1260. .magic = PERF_MAGIC,
  1261. .size = sizeof(f_header),
  1262. .attr_size = sizeof(f_attr),
  1263. .attrs = {
  1264. .offset = header->attr_offset,
  1265. .size = evlist->nr_entries * sizeof(f_attr),
  1266. },
  1267. .data = {
  1268. .offset = header->data_offset,
  1269. .size = header->data_size,
  1270. },
  1271. .event_types = {
  1272. .offset = header->event_offset,
  1273. .size = header->event_size,
  1274. },
  1275. };
  1276. memcpy(&f_header.adds_features, &header->adds_features, sizeof(header->adds_features));
  1277. lseek(fd, 0, SEEK_SET);
  1278. err = do_write(fd, &f_header, sizeof(f_header));
  1279. if (err < 0) {
  1280. pr_debug("failed to write perf header\n");
  1281. return err;
  1282. }
  1283. lseek(fd, header->data_offset + header->data_size, SEEK_SET);
  1284. header->frozen = 1;
  1285. return 0;
  1286. }
  1287. static int perf_header__getbuffer64(struct perf_header *header,
  1288. int fd, void *buf, size_t size)
  1289. {
  1290. if (readn(fd, buf, size) <= 0)
  1291. return -1;
  1292. if (header->needs_swap)
  1293. mem_bswap_64(buf, size);
  1294. return 0;
  1295. }
  1296. int perf_header__process_sections(struct perf_header *header, int fd,
  1297. void *data,
  1298. int (*process)(struct perf_file_section *section,
  1299. struct perf_header *ph,
  1300. int feat, int fd, void *data))
  1301. {
  1302. struct perf_file_section *feat_sec, *sec;
  1303. int nr_sections;
  1304. int sec_size;
  1305. int feat;
  1306. int err;
  1307. nr_sections = bitmap_weight(header->adds_features, HEADER_FEAT_BITS);
  1308. if (!nr_sections)
  1309. return 0;
  1310. feat_sec = sec = calloc(sizeof(*feat_sec), nr_sections);
  1311. if (!feat_sec)
  1312. return -1;
  1313. sec_size = sizeof(*feat_sec) * nr_sections;
  1314. lseek(fd, header->data_offset + header->data_size, SEEK_SET);
  1315. err = perf_header__getbuffer64(header, fd, feat_sec, sec_size);
  1316. if (err < 0)
  1317. goto out_free;
  1318. for_each_set_bit(feat, header->adds_features, HEADER_LAST_FEATURE) {
  1319. err = process(sec++, header, feat, fd, data);
  1320. if (err < 0)
  1321. goto out_free;
  1322. }
  1323. err = 0;
  1324. out_free:
  1325. free(feat_sec);
  1326. return err;
  1327. }
  1328. static int check_magic_endian(u64 *magic, struct perf_file_header *header,
  1329. struct perf_header *ph)
  1330. {
  1331. int ret;
  1332. /* check for legacy format */
  1333. ret = memcmp(magic, __perf_magic1, sizeof(*magic));
  1334. if (ret == 0) {
  1335. pr_debug("legacy perf.data format\n");
  1336. if (!header)
  1337. return -1;
  1338. if (header->attr_size != sizeof(struct perf_file_attr)) {
  1339. u64 attr_size = bswap_64(header->attr_size);
  1340. if (attr_size != sizeof(struct perf_file_attr))
  1341. return -1;
  1342. ph->needs_swap = true;
  1343. }
  1344. return 0;
  1345. }
  1346. /* check magic number with same endianness */
  1347. if (*magic == __perf_magic2)
  1348. return 0;
  1349. /* check magic number but opposite endianness */
  1350. if (*magic != __perf_magic2_sw)
  1351. return -1;
  1352. ph->needs_swap = true;
  1353. return 0;
  1354. }
  1355. int perf_file_header__read(struct perf_file_header *header,
  1356. struct perf_header *ph, int fd)
  1357. {
  1358. int ret;
  1359. lseek(fd, 0, SEEK_SET);
  1360. ret = readn(fd, header, sizeof(*header));
  1361. if (ret <= 0)
  1362. return -1;
  1363. if (check_magic_endian(&header->magic, header, ph) < 0)
  1364. return -1;
  1365. if (ph->needs_swap) {
  1366. mem_bswap_64(header, offsetof(struct perf_file_header,
  1367. adds_features));
  1368. }
  1369. if (header->size != sizeof(*header)) {
  1370. /* Support the previous format */
  1371. if (header->size == offsetof(typeof(*header), adds_features))
  1372. bitmap_zero(header->adds_features, HEADER_FEAT_BITS);
  1373. else
  1374. return -1;
  1375. } else if (ph->needs_swap) {
  1376. unsigned int i;
  1377. /*
  1378. * feature bitmap is declared as an array of unsigned longs --
  1379. * not good since its size can differ between the host that
  1380. * generated the data file and the host analyzing the file.
  1381. *
  1382. * We need to handle endianness, but we don't know the size of
  1383. * the unsigned long where the file was generated. Take a best
  1384. * guess at determining it: try 64-bit swap first (ie., file
  1385. * created on a 64-bit host), and check if the hostname feature
  1386. * bit is set (this feature bit is forced on as of fbe96f2).
  1387. * If the bit is not, undo the 64-bit swap and try a 32-bit
  1388. * swap. If the hostname bit is still not set (e.g., older data
  1389. * file), punt and fallback to the original behavior --
  1390. * clearing all feature bits and setting buildid.
  1391. */
  1392. for (i = 0; i < BITS_TO_LONGS(HEADER_FEAT_BITS); ++i)
  1393. header->adds_features[i] = bswap_64(header->adds_features[i]);
  1394. if (!test_bit(HEADER_HOSTNAME, header->adds_features)) {
  1395. for (i = 0; i < BITS_TO_LONGS(HEADER_FEAT_BITS); ++i) {
  1396. header->adds_features[i] = bswap_64(header->adds_features[i]);
  1397. header->adds_features[i] = bswap_32(header->adds_features[i]);
  1398. }
  1399. }
  1400. if (!test_bit(HEADER_HOSTNAME, header->adds_features)) {
  1401. bitmap_zero(header->adds_features, HEADER_FEAT_BITS);
  1402. set_bit(HEADER_BUILD_ID, header->adds_features);
  1403. }
  1404. }
  1405. memcpy(&ph->adds_features, &header->adds_features,
  1406. sizeof(ph->adds_features));
  1407. ph->event_offset = header->event_types.offset;
  1408. ph->event_size = header->event_types.size;
  1409. ph->data_offset = header->data.offset;
  1410. ph->data_size = header->data.size;
  1411. return 0;
  1412. }
  1413. static int __event_process_build_id(struct build_id_event *bev,
  1414. char *filename,
  1415. struct perf_session *session)
  1416. {
  1417. int err = -1;
  1418. struct list_head *head;
  1419. struct machine *machine;
  1420. u16 misc;
  1421. struct dso *dso;
  1422. enum dso_kernel_type dso_type;
  1423. machine = perf_session__findnew_machine(session, bev->pid);
  1424. if (!machine)
  1425. goto out;
  1426. misc = bev->header.misc & PERF_RECORD_MISC_CPUMODE_MASK;
  1427. switch (misc) {
  1428. case PERF_RECORD_MISC_KERNEL:
  1429. dso_type = DSO_TYPE_KERNEL;
  1430. head = &machine->kernel_dsos;
  1431. break;
  1432. case PERF_RECORD_MISC_GUEST_KERNEL:
  1433. dso_type = DSO_TYPE_GUEST_KERNEL;
  1434. head = &machine->kernel_dsos;
  1435. break;
  1436. case PERF_RECORD_MISC_USER:
  1437. case PERF_RECORD_MISC_GUEST_USER:
  1438. dso_type = DSO_TYPE_USER;
  1439. head = &machine->user_dsos;
  1440. break;
  1441. default:
  1442. goto out;
  1443. }
  1444. dso = __dsos__findnew(head, filename);
  1445. if (dso != NULL) {
  1446. char sbuild_id[BUILD_ID_SIZE * 2 + 1];
  1447. dso__set_build_id(dso, &bev->build_id);
  1448. if (filename[0] == '[')
  1449. dso->kernel = dso_type;
  1450. build_id__sprintf(dso->build_id, sizeof(dso->build_id),
  1451. sbuild_id);
  1452. pr_debug("build id event received for %s: %s\n",
  1453. dso->long_name, sbuild_id);
  1454. }
  1455. err = 0;
  1456. out:
  1457. return err;
  1458. }
  1459. static int perf_header__read_build_ids_abi_quirk(struct perf_header *header,
  1460. int input, u64 offset, u64 size)
  1461. {
  1462. struct perf_session *session = container_of(header, struct perf_session, header);
  1463. struct {
  1464. struct perf_event_header header;
  1465. u8 build_id[ALIGN(BUILD_ID_SIZE, sizeof(u64))];
  1466. char filename[0];
  1467. } old_bev;
  1468. struct build_id_event bev;
  1469. char filename[PATH_MAX];
  1470. u64 limit = offset + size;
  1471. while (offset < limit) {
  1472. ssize_t len;
  1473. if (read(input, &old_bev, sizeof(old_bev)) != sizeof(old_bev))
  1474. return -1;
  1475. if (header->needs_swap)
  1476. perf_event_header__bswap(&old_bev.header);
  1477. len = old_bev.header.size - sizeof(old_bev);
  1478. if (read(input, filename, len) != len)
  1479. return -1;
  1480. bev.header = old_bev.header;
  1481. /*
  1482. * As the pid is the missing value, we need to fill
  1483. * it properly. The header.misc value give us nice hint.
  1484. */
  1485. bev.pid = HOST_KERNEL_ID;
  1486. if (bev.header.misc == PERF_RECORD_MISC_GUEST_USER ||
  1487. bev.header.misc == PERF_RECORD_MISC_GUEST_KERNEL)
  1488. bev.pid = DEFAULT_GUEST_KERNEL_ID;
  1489. memcpy(bev.build_id, old_bev.build_id, sizeof(bev.build_id));
  1490. __event_process_build_id(&bev, filename, session);
  1491. offset += bev.header.size;
  1492. }
  1493. return 0;
  1494. }
  1495. static int perf_header__read_build_ids(struct perf_header *header,
  1496. int input, u64 offset, u64 size)
  1497. {
  1498. struct perf_session *session = container_of(header, struct perf_session, header);
  1499. struct build_id_event bev;
  1500. char filename[PATH_MAX];
  1501. u64 limit = offset + size, orig_offset = offset;
  1502. int err = -1;
  1503. while (offset < limit) {
  1504. ssize_t len;
  1505. if (read(input, &bev, sizeof(bev)) != sizeof(bev))
  1506. goto out;
  1507. if (header->needs_swap)
  1508. perf_event_header__bswap(&bev.header);
  1509. len = bev.header.size - sizeof(bev);
  1510. if (read(input, filename, len) != len)
  1511. goto out;
  1512. /*
  1513. * The a1645ce1 changeset:
  1514. *
  1515. * "perf: 'perf kvm' tool for monitoring guest performance from host"
  1516. *
  1517. * Added a field to struct build_id_event that broke the file
  1518. * format.
  1519. *
  1520. * Since the kernel build-id is the first entry, process the
  1521. * table using the old format if the well known
  1522. * '[kernel.kallsyms]' string for the kernel build-id has the
  1523. * first 4 characters chopped off (where the pid_t sits).
  1524. */
  1525. if (memcmp(filename, "nel.kallsyms]", 13) == 0) {
  1526. if (lseek(input, orig_offset, SEEK_SET) == (off_t)-1)
  1527. return -1;
  1528. return perf_header__read_build_ids_abi_quirk(header, input, offset, size);
  1529. }
  1530. __event_process_build_id(&bev, filename, session);
  1531. offset += bev.header.size;
  1532. }
  1533. err = 0;
  1534. out:
  1535. return err;
  1536. }
  1537. static int perf_file_section__process(struct perf_file_section *section,
  1538. struct perf_header *ph,
  1539. int feat, int fd, void *data __used)
  1540. {
  1541. if (lseek(fd, section->offset, SEEK_SET) == (off_t)-1) {
  1542. pr_debug("Failed to lseek to %" PRIu64 " offset for feature "
  1543. "%d, continuing...\n", section->offset, feat);
  1544. return 0;
  1545. }
  1546. if (feat >= HEADER_LAST_FEATURE) {
  1547. pr_debug("unknown feature %d, continuing...\n", feat);
  1548. return 0;
  1549. }
  1550. switch (feat) {
  1551. case HEADER_TRACE_INFO:
  1552. trace_report(fd, false);
  1553. break;
  1554. case HEADER_BUILD_ID:
  1555. if (perf_header__read_build_ids(ph, fd, section->offset, section->size))
  1556. pr_debug("Failed to read buildids, continuing...\n");
  1557. break;
  1558. default:
  1559. break;
  1560. }
  1561. return 0;
  1562. }
  1563. static int perf_file_header__read_pipe(struct perf_pipe_file_header *header,
  1564. struct perf_header *ph, int fd,
  1565. bool repipe)
  1566. {
  1567. int ret;
  1568. ret = readn(fd, header, sizeof(*header));
  1569. if (ret <= 0)
  1570. return -1;
  1571. if (check_magic_endian(&header->magic, NULL, ph) < 0)
  1572. return -1;
  1573. if (repipe && do_write(STDOUT_FILENO, header, sizeof(*header)) < 0)
  1574. return -1;
  1575. if (header->size != sizeof(*header)) {
  1576. u64 size = bswap_64(header->size);
  1577. if (size != sizeof(*header))
  1578. return -1;
  1579. ph->needs_swap = true;
  1580. }
  1581. return 0;
  1582. }
  1583. static int perf_header__read_pipe(struct perf_session *session, int fd)
  1584. {
  1585. struct perf_header *header = &session->header;
  1586. struct perf_pipe_file_header f_header;
  1587. if (perf_file_header__read_pipe(&f_header, header, fd,
  1588. session->repipe) < 0) {
  1589. pr_debug("incompatible file format\n");
  1590. return -EINVAL;
  1591. }
  1592. session->fd = fd;
  1593. return 0;
  1594. }
  1595. int perf_session__read_header(struct perf_session *session, int fd)
  1596. {
  1597. struct perf_header *header = &session->header;
  1598. struct perf_file_header f_header;
  1599. struct perf_file_attr f_attr;
  1600. u64 f_id;
  1601. int nr_attrs, nr_ids, i, j;
  1602. session->evlist = perf_evlist__new(NULL, NULL);
  1603. if (session->evlist == NULL)
  1604. return -ENOMEM;
  1605. if (session->fd_pipe)
  1606. return perf_header__read_pipe(session, fd);
  1607. if (perf_file_header__read(&f_header, header, fd) < 0) {
  1608. pr_debug("incompatible file format\n");
  1609. return -EINVAL;
  1610. }
  1611. nr_attrs = f_header.attrs.size / sizeof(f_attr);
  1612. lseek(fd, f_header.attrs.offset, SEEK_SET);
  1613. for (i = 0; i < nr_attrs; i++) {
  1614. struct perf_evsel *evsel;
  1615. off_t tmp;
  1616. if (readn(fd, &f_attr, sizeof(f_attr)) <= 0)
  1617. goto out_errno;
  1618. if (header->needs_swap)
  1619. perf_event__attr_swap(&f_attr.attr);
  1620. tmp = lseek(fd, 0, SEEK_CUR);
  1621. evsel = perf_evsel__new(&f_attr.attr, i);
  1622. if (evsel == NULL)
  1623. goto out_delete_evlist;
  1624. /*
  1625. * Do it before so that if perf_evsel__alloc_id fails, this
  1626. * entry gets purged too at perf_evlist__delete().
  1627. */
  1628. perf_evlist__add(session->evlist, evsel);
  1629. nr_ids = f_attr.ids.size / sizeof(u64);
  1630. /*
  1631. * We don't have the cpu and thread maps on the header, so
  1632. * for allocating the perf_sample_id table we fake 1 cpu and
  1633. * hattr->ids threads.
  1634. */
  1635. if (perf_evsel__alloc_id(evsel, 1, nr_ids))
  1636. goto out_delete_evlist;
  1637. lseek(fd, f_attr.ids.offset, SEEK_SET);
  1638. for (j = 0; j < nr_ids; j++) {
  1639. if (perf_header__getbuffer64(header, fd, &f_id, sizeof(f_id)))
  1640. goto out_errno;
  1641. perf_evlist__id_add(session->evlist, evsel, 0, j, f_id);
  1642. }
  1643. lseek(fd, tmp, SEEK_SET);
  1644. }
  1645. symbol_conf.nr_events = nr_attrs;
  1646. if (f_header.event_types.size) {
  1647. lseek(fd, f_header.event_types.offset, SEEK_SET);
  1648. events = malloc(f_header.event_types.size);
  1649. if (events == NULL)
  1650. return -ENOMEM;
  1651. if (perf_header__getbuffer64(header, fd, events,
  1652. f_header.event_types.size))
  1653. goto out_errno;
  1654. event_count = f_header.event_types.size / sizeof(struct perf_trace_event_type);
  1655. }
  1656. perf_header__process_sections(header, fd, NULL,
  1657. perf_file_section__process);
  1658. lseek(fd, header->data_offset, SEEK_SET);
  1659. header->frozen = 1;
  1660. return 0;
  1661. out_errno:
  1662. return -errno;
  1663. out_delete_evlist:
  1664. perf_evlist__delete(session->evlist);
  1665. session->evlist = NULL;
  1666. return -ENOMEM;
  1667. }
  1668. int perf_event__synthesize_attr(struct perf_tool *tool,
  1669. struct perf_event_attr *attr, u16 ids, u64 *id,
  1670. perf_event__handler_t process)
  1671. {
  1672. union perf_event *ev;
  1673. size_t size;
  1674. int err;
  1675. size = sizeof(struct perf_event_attr);
  1676. size = ALIGN(size, sizeof(u64));
  1677. size += sizeof(struct perf_event_header);
  1678. size += ids * sizeof(u64);
  1679. ev = malloc(size);
  1680. if (ev == NULL)
  1681. return -ENOMEM;
  1682. ev->attr.attr = *attr;
  1683. memcpy(ev->attr.id, id, ids * sizeof(u64));
  1684. ev->attr.header.type = PERF_RECORD_HEADER_ATTR;
  1685. ev->attr.header.size = size;
  1686. err = process(tool, ev, NULL, NULL);
  1687. free(ev);
  1688. return err;
  1689. }
  1690. int perf_event__synthesize_attrs(struct perf_tool *tool,
  1691. struct perf_session *session,
  1692. perf_event__handler_t process)
  1693. {
  1694. struct perf_evsel *attr;
  1695. int err = 0;
  1696. list_for_each_entry(attr, &session->evlist->entries, node) {
  1697. err = perf_event__synthesize_attr(tool, &attr->attr, attr->ids,
  1698. attr->id, process);
  1699. if (err) {
  1700. pr_debug("failed to create perf header attribute\n");
  1701. return err;
  1702. }
  1703. }
  1704. return err;
  1705. }
  1706. int perf_event__process_attr(union perf_event *event,
  1707. struct perf_evlist **pevlist)
  1708. {
  1709. unsigned int i, ids, n_ids;
  1710. struct perf_evsel *evsel;
  1711. struct perf_evlist *evlist = *pevlist;
  1712. if (evlist == NULL) {
  1713. *pevlist = evlist = perf_evlist__new(NULL, NULL);
  1714. if (evlist == NULL)
  1715. return -ENOMEM;
  1716. }
  1717. evsel = perf_evsel__new(&event->attr.attr, evlist->nr_entries);
  1718. if (evsel == NULL)
  1719. return -ENOMEM;
  1720. perf_evlist__add(evlist, evsel);
  1721. ids = event->header.size;
  1722. ids -= (void *)&event->attr.id - (void *)event;
  1723. n_ids = ids / sizeof(u64);
  1724. /*
  1725. * We don't have the cpu and thread maps on the header, so
  1726. * for allocating the perf_sample_id table we fake 1 cpu and
  1727. * hattr->ids threads.
  1728. */
  1729. if (perf_evsel__alloc_id(evsel, 1, n_ids))
  1730. return -ENOMEM;
  1731. for (i = 0; i < n_ids; i++) {
  1732. perf_evlist__id_add(evlist, evsel, 0, i, event->attr.id[i]);
  1733. }
  1734. return 0;
  1735. }
  1736. int perf_event__synthesize_event_type(struct perf_tool *tool,
  1737. u64 event_id, char *name,
  1738. perf_event__handler_t process,
  1739. struct machine *machine)
  1740. {
  1741. union perf_event ev;
  1742. size_t size = 0;
  1743. int err = 0;
  1744. memset(&ev, 0, sizeof(ev));
  1745. ev.event_type.event_type.event_id = event_id;
  1746. memset(ev.event_type.event_type.name, 0, MAX_EVENT_NAME);
  1747. strncpy(ev.event_type.event_type.name, name, MAX_EVENT_NAME - 1);
  1748. ev.event_type.header.type = PERF_RECORD_HEADER_EVENT_TYPE;
  1749. size = strlen(ev.event_type.event_type.name);
  1750. size = ALIGN(size, sizeof(u64));
  1751. ev.event_type.header.size = sizeof(ev.event_type) -
  1752. (sizeof(ev.event_type.event_type.name) - size);
  1753. err = process(tool, &ev, NULL, machine);
  1754. return err;
  1755. }
  1756. int perf_event__synthesize_event_types(struct perf_tool *tool,
  1757. perf_event__handler_t process,
  1758. struct machine *machine)
  1759. {
  1760. struct perf_trace_event_type *type;
  1761. int i, err = 0;
  1762. for (i = 0; i < event_count; i++) {
  1763. type = &events[i];
  1764. err = perf_event__synthesize_event_type(tool, type->event_id,
  1765. type->name, process,
  1766. machine);
  1767. if (err) {
  1768. pr_debug("failed to create perf header event type\n");
  1769. return err;
  1770. }
  1771. }
  1772. return err;
  1773. }
  1774. int perf_event__process_event_type(struct perf_tool *tool __unused,
  1775. union perf_event *event)
  1776. {
  1777. if (perf_header__push_event(event->event_type.event_type.event_id,
  1778. event->event_type.event_type.name) < 0)
  1779. return -ENOMEM;
  1780. return 0;
  1781. }
  1782. int perf_event__synthesize_tracing_data(struct perf_tool *tool, int fd,
  1783. struct perf_evlist *evlist,
  1784. perf_event__handler_t process)
  1785. {
  1786. union perf_event ev;
  1787. struct tracing_data *tdata;
  1788. ssize_t size = 0, aligned_size = 0, padding;
  1789. int err __used = 0;
  1790. /*
  1791. * We are going to store the size of the data followed
  1792. * by the data contents. Since the fd descriptor is a pipe,
  1793. * we cannot seek back to store the size of the data once
  1794. * we know it. Instead we:
  1795. *
  1796. * - write the tracing data to the temp file
  1797. * - get/write the data size to pipe
  1798. * - write the tracing data from the temp file
  1799. * to the pipe
  1800. */
  1801. tdata = tracing_data_get(&evlist->entries, fd, true);
  1802. if (!tdata)
  1803. return -1;
  1804. memset(&ev, 0, sizeof(ev));
  1805. ev.tracing_data.header.type = PERF_RECORD_HEADER_TRACING_DATA;
  1806. size = tdata->size;
  1807. aligned_size = ALIGN(size, sizeof(u64));
  1808. padding = aligned_size - size;
  1809. ev.tracing_data.header.size = sizeof(ev.tracing_data);
  1810. ev.tracing_data.size = aligned_size;
  1811. process(tool, &ev, NULL, NULL);
  1812. /*
  1813. * The put function will copy all the tracing data
  1814. * stored in temp file to the pipe.
  1815. */
  1816. tracing_data_put(tdata);
  1817. write_padded(fd, NULL, 0, padding);
  1818. return aligned_size;
  1819. }
  1820. int perf_event__process_tracing_data(union perf_event *event,
  1821. struct perf_session *session)
  1822. {
  1823. ssize_t size_read, padding, size = event->tracing_data.size;
  1824. off_t offset = lseek(session->fd, 0, SEEK_CUR);
  1825. char buf[BUFSIZ];
  1826. /* setup for reading amidst mmap */
  1827. lseek(session->fd, offset + sizeof(struct tracing_data_event),
  1828. SEEK_SET);
  1829. size_read = trace_report(session->fd, session->repipe);
  1830. padding = ALIGN(size_read, sizeof(u64)) - size_read;
  1831. if (read(session->fd, buf, padding) < 0)
  1832. die("reading input file");
  1833. if (session->repipe) {
  1834. int retw = write(STDOUT_FILENO, buf, padding);
  1835. if (retw <= 0 || retw != padding)
  1836. die("repiping tracing data padding");
  1837. }
  1838. if (size_read + padding != size)
  1839. die("tracing data size mismatch");
  1840. return size_read + padding;
  1841. }
  1842. int perf_event__synthesize_build_id(struct perf_tool *tool,
  1843. struct dso *pos, u16 misc,
  1844. perf_event__handler_t process,
  1845. struct machine *machine)
  1846. {
  1847. union perf_event ev;
  1848. size_t len;
  1849. int err = 0;
  1850. if (!pos->hit)
  1851. return err;
  1852. memset(&ev, 0, sizeof(ev));
  1853. len = pos->long_name_len + 1;
  1854. len = ALIGN(len, NAME_ALIGN);
  1855. memcpy(&ev.build_id.build_id, pos->build_id, sizeof(pos->build_id));
  1856. ev.build_id.header.type = PERF_RECORD_HEADER_BUILD_ID;
  1857. ev.build_id.header.misc = misc;
  1858. ev.build_id.pid = machine->pid;
  1859. ev.build_id.header.size = sizeof(ev.build_id) + len;
  1860. memcpy(&ev.build_id.filename, pos->long_name, pos->long_name_len);
  1861. err = process(tool, &ev, NULL, machine);
  1862. return err;
  1863. }
  1864. int perf_event__process_build_id(struct perf_tool *tool __used,
  1865. union perf_event *event,
  1866. struct perf_session *session)
  1867. {
  1868. __event_process_build_id(&event->build_id,
  1869. event->build_id.filename,
  1870. session);
  1871. return 0;
  1872. }
  1873. void disable_buildid_cache(void)
  1874. {
  1875. no_buildid_cache = true;
  1876. }