event.c 42 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. #include <dirent.h>
  3. #include <errno.h>
  4. #include <fcntl.h>
  5. #include <inttypes.h>
  6. #include <linux/kernel.h>
  7. #include <linux/types.h>
  8. #include <sys/types.h>
  9. #include <sys/stat.h>
  10. #include <unistd.h>
  11. #include <uapi/linux/mman.h> /* To get things like MAP_HUGETLB even on older libc headers */
  12. #include <api/fs/fs.h>
  13. #include <linux/perf_event.h>
  14. #include "event.h"
  15. #include "debug.h"
  16. #include "hist.h"
  17. #include "machine.h"
  18. #include "sort.h"
  19. #include "string2.h"
  20. #include "strlist.h"
  21. #include "thread.h"
  22. #include "thread_map.h"
  23. #include "sane_ctype.h"
  24. #include "symbol/kallsyms.h"
  25. #include "asm/bug.h"
  26. #include "stat.h"
  27. static const char *perf_event__names[] = {
  28. [0] = "TOTAL",
  29. [PERF_RECORD_MMAP] = "MMAP",
  30. [PERF_RECORD_MMAP2] = "MMAP2",
  31. [PERF_RECORD_LOST] = "LOST",
  32. [PERF_RECORD_COMM] = "COMM",
  33. [PERF_RECORD_EXIT] = "EXIT",
  34. [PERF_RECORD_THROTTLE] = "THROTTLE",
  35. [PERF_RECORD_UNTHROTTLE] = "UNTHROTTLE",
  36. [PERF_RECORD_FORK] = "FORK",
  37. [PERF_RECORD_READ] = "READ",
  38. [PERF_RECORD_SAMPLE] = "SAMPLE",
  39. [PERF_RECORD_AUX] = "AUX",
  40. [PERF_RECORD_ITRACE_START] = "ITRACE_START",
  41. [PERF_RECORD_LOST_SAMPLES] = "LOST_SAMPLES",
  42. [PERF_RECORD_SWITCH] = "SWITCH",
  43. [PERF_RECORD_SWITCH_CPU_WIDE] = "SWITCH_CPU_WIDE",
  44. [PERF_RECORD_NAMESPACES] = "NAMESPACES",
  45. [PERF_RECORD_HEADER_ATTR] = "ATTR",
  46. [PERF_RECORD_HEADER_EVENT_TYPE] = "EVENT_TYPE",
  47. [PERF_RECORD_HEADER_TRACING_DATA] = "TRACING_DATA",
  48. [PERF_RECORD_HEADER_BUILD_ID] = "BUILD_ID",
  49. [PERF_RECORD_FINISHED_ROUND] = "FINISHED_ROUND",
  50. [PERF_RECORD_ID_INDEX] = "ID_INDEX",
  51. [PERF_RECORD_AUXTRACE_INFO] = "AUXTRACE_INFO",
  52. [PERF_RECORD_AUXTRACE] = "AUXTRACE",
  53. [PERF_RECORD_AUXTRACE_ERROR] = "AUXTRACE_ERROR",
  54. [PERF_RECORD_THREAD_MAP] = "THREAD_MAP",
  55. [PERF_RECORD_CPU_MAP] = "CPU_MAP",
  56. [PERF_RECORD_STAT_CONFIG] = "STAT_CONFIG",
  57. [PERF_RECORD_STAT] = "STAT",
  58. [PERF_RECORD_STAT_ROUND] = "STAT_ROUND",
  59. [PERF_RECORD_EVENT_UPDATE] = "EVENT_UPDATE",
  60. [PERF_RECORD_TIME_CONV] = "TIME_CONV",
  61. [PERF_RECORD_HEADER_FEATURE] = "FEATURE",
  62. };
  63. static const char *perf_ns__names[] = {
  64. [NET_NS_INDEX] = "net",
  65. [UTS_NS_INDEX] = "uts",
  66. [IPC_NS_INDEX] = "ipc",
  67. [PID_NS_INDEX] = "pid",
  68. [USER_NS_INDEX] = "user",
  69. [MNT_NS_INDEX] = "mnt",
  70. [CGROUP_NS_INDEX] = "cgroup",
  71. };
  72. const char *perf_event__name(unsigned int id)
  73. {
  74. if (id >= ARRAY_SIZE(perf_event__names))
  75. return "INVALID";
  76. if (!perf_event__names[id])
  77. return "UNKNOWN";
  78. return perf_event__names[id];
  79. }
  80. static const char *perf_ns__name(unsigned int id)
  81. {
  82. if (id >= ARRAY_SIZE(perf_ns__names))
  83. return "UNKNOWN";
  84. return perf_ns__names[id];
  85. }
  86. int perf_tool__process_synth_event(struct perf_tool *tool,
  87. union perf_event *event,
  88. struct machine *machine,
  89. perf_event__handler_t process)
  90. {
  91. struct perf_sample synth_sample = {
  92. .pid = -1,
  93. .tid = -1,
  94. .time = -1,
  95. .stream_id = -1,
  96. .cpu = -1,
  97. .period = 1,
  98. .cpumode = event->header.misc & PERF_RECORD_MISC_CPUMODE_MASK,
  99. };
  100. return process(tool, event, &synth_sample, machine);
  101. };
  102. /*
  103. * Assumes that the first 4095 bytes of /proc/pid/stat contains
  104. * the comm, tgid and ppid.
  105. */
  106. static int perf_event__get_comm_ids(pid_t pid, char *comm, size_t len,
  107. pid_t *tgid, pid_t *ppid)
  108. {
  109. char filename[PATH_MAX];
  110. char bf[4096];
  111. int fd;
  112. size_t size = 0;
  113. ssize_t n;
  114. char *name, *tgids, *ppids;
  115. *tgid = -1;
  116. *ppid = -1;
  117. snprintf(filename, sizeof(filename), "/proc/%d/status", pid);
  118. fd = open(filename, O_RDONLY);
  119. if (fd < 0) {
  120. pr_debug("couldn't open %s\n", filename);
  121. return -1;
  122. }
  123. n = read(fd, bf, sizeof(bf) - 1);
  124. close(fd);
  125. if (n <= 0) {
  126. pr_warning("Couldn't get COMM, tigd and ppid for pid %d\n",
  127. pid);
  128. return -1;
  129. }
  130. bf[n] = '\0';
  131. name = strstr(bf, "Name:");
  132. tgids = strstr(bf, "Tgid:");
  133. ppids = strstr(bf, "PPid:");
  134. if (name) {
  135. char *nl;
  136. name += 5; /* strlen("Name:") */
  137. name = ltrim(name);
  138. nl = strchr(name, '\n');
  139. if (nl)
  140. *nl = '\0';
  141. size = strlen(name);
  142. if (size >= len)
  143. size = len - 1;
  144. memcpy(comm, name, size);
  145. comm[size] = '\0';
  146. } else {
  147. pr_debug("Name: string not found for pid %d\n", pid);
  148. }
  149. if (tgids) {
  150. tgids += 5; /* strlen("Tgid:") */
  151. *tgid = atoi(tgids);
  152. } else {
  153. pr_debug("Tgid: string not found for pid %d\n", pid);
  154. }
  155. if (ppids) {
  156. ppids += 5; /* strlen("PPid:") */
  157. *ppid = atoi(ppids);
  158. } else {
  159. pr_debug("PPid: string not found for pid %d\n", pid);
  160. }
  161. return 0;
  162. }
  163. static int perf_event__prepare_comm(union perf_event *event, pid_t pid,
  164. struct machine *machine,
  165. pid_t *tgid, pid_t *ppid)
  166. {
  167. size_t size;
  168. *ppid = -1;
  169. memset(&event->comm, 0, sizeof(event->comm));
  170. if (machine__is_host(machine)) {
  171. if (perf_event__get_comm_ids(pid, event->comm.comm,
  172. sizeof(event->comm.comm),
  173. tgid, ppid) != 0) {
  174. return -1;
  175. }
  176. } else {
  177. *tgid = machine->pid;
  178. }
  179. if (*tgid < 0)
  180. return -1;
  181. event->comm.pid = *tgid;
  182. event->comm.header.type = PERF_RECORD_COMM;
  183. size = strlen(event->comm.comm) + 1;
  184. size = PERF_ALIGN(size, sizeof(u64));
  185. memset(event->comm.comm + size, 0, machine->id_hdr_size);
  186. event->comm.header.size = (sizeof(event->comm) -
  187. (sizeof(event->comm.comm) - size) +
  188. machine->id_hdr_size);
  189. event->comm.tid = pid;
  190. return 0;
  191. }
  192. pid_t perf_event__synthesize_comm(struct perf_tool *tool,
  193. union perf_event *event, pid_t pid,
  194. perf_event__handler_t process,
  195. struct machine *machine)
  196. {
  197. pid_t tgid, ppid;
  198. if (perf_event__prepare_comm(event, pid, machine, &tgid, &ppid) != 0)
  199. return -1;
  200. if (perf_tool__process_synth_event(tool, event, machine, process) != 0)
  201. return -1;
  202. return tgid;
  203. }
  204. static void perf_event__get_ns_link_info(pid_t pid, const char *ns,
  205. struct perf_ns_link_info *ns_link_info)
  206. {
  207. struct stat64 st;
  208. char proc_ns[128];
  209. sprintf(proc_ns, "/proc/%u/ns/%s", pid, ns);
  210. if (stat64(proc_ns, &st) == 0) {
  211. ns_link_info->dev = st.st_dev;
  212. ns_link_info->ino = st.st_ino;
  213. }
  214. }
  215. int perf_event__synthesize_namespaces(struct perf_tool *tool,
  216. union perf_event *event,
  217. pid_t pid, pid_t tgid,
  218. perf_event__handler_t process,
  219. struct machine *machine)
  220. {
  221. u32 idx;
  222. struct perf_ns_link_info *ns_link_info;
  223. if (!tool || !tool->namespace_events)
  224. return 0;
  225. memset(&event->namespaces, 0, (sizeof(event->namespaces) +
  226. (NR_NAMESPACES * sizeof(struct perf_ns_link_info)) +
  227. machine->id_hdr_size));
  228. event->namespaces.pid = tgid;
  229. event->namespaces.tid = pid;
  230. event->namespaces.nr_namespaces = NR_NAMESPACES;
  231. ns_link_info = event->namespaces.link_info;
  232. for (idx = 0; idx < event->namespaces.nr_namespaces; idx++)
  233. perf_event__get_ns_link_info(pid, perf_ns__name(idx),
  234. &ns_link_info[idx]);
  235. event->namespaces.header.type = PERF_RECORD_NAMESPACES;
  236. event->namespaces.header.size = (sizeof(event->namespaces) +
  237. (NR_NAMESPACES * sizeof(struct perf_ns_link_info)) +
  238. machine->id_hdr_size);
  239. if (perf_tool__process_synth_event(tool, event, machine, process) != 0)
  240. return -1;
  241. return 0;
  242. }
  243. static int perf_event__synthesize_fork(struct perf_tool *tool,
  244. union perf_event *event,
  245. pid_t pid, pid_t tgid, pid_t ppid,
  246. perf_event__handler_t process,
  247. struct machine *machine)
  248. {
  249. memset(&event->fork, 0, sizeof(event->fork) + machine->id_hdr_size);
  250. /*
  251. * for main thread set parent to ppid from status file. For other
  252. * threads set parent pid to main thread. ie., assume main thread
  253. * spawns all threads in a process
  254. */
  255. if (tgid == pid) {
  256. event->fork.ppid = ppid;
  257. event->fork.ptid = ppid;
  258. } else {
  259. event->fork.ppid = tgid;
  260. event->fork.ptid = tgid;
  261. }
  262. event->fork.pid = tgid;
  263. event->fork.tid = pid;
  264. event->fork.header.type = PERF_RECORD_FORK;
  265. event->fork.header.misc = PERF_RECORD_MISC_FORK_EXEC;
  266. event->fork.header.size = (sizeof(event->fork) + machine->id_hdr_size);
  267. if (perf_tool__process_synth_event(tool, event, machine, process) != 0)
  268. return -1;
  269. return 0;
  270. }
  271. int perf_event__synthesize_mmap_events(struct perf_tool *tool,
  272. union perf_event *event,
  273. pid_t pid, pid_t tgid,
  274. perf_event__handler_t process,
  275. struct machine *machine,
  276. bool mmap_data,
  277. unsigned int proc_map_timeout)
  278. {
  279. char filename[PATH_MAX];
  280. FILE *fp;
  281. unsigned long long t;
  282. bool truncation = false;
  283. unsigned long long timeout = proc_map_timeout * 1000000ULL;
  284. int rc = 0;
  285. const char *hugetlbfs_mnt = hugetlbfs__mountpoint();
  286. int hugetlbfs_mnt_len = hugetlbfs_mnt ? strlen(hugetlbfs_mnt) : 0;
  287. if (machine__is_default_guest(machine))
  288. return 0;
  289. snprintf(filename, sizeof(filename), "%s/proc/%d/task/%d/maps",
  290. machine->root_dir, pid, pid);
  291. fp = fopen(filename, "r");
  292. if (fp == NULL) {
  293. /*
  294. * We raced with a task exiting - just return:
  295. */
  296. pr_debug("couldn't open %s\n", filename);
  297. return -1;
  298. }
  299. event->header.type = PERF_RECORD_MMAP2;
  300. t = rdclock();
  301. while (1) {
  302. char bf[BUFSIZ];
  303. char prot[5];
  304. char execname[PATH_MAX];
  305. char anonstr[] = "//anon";
  306. unsigned int ino;
  307. size_t size;
  308. ssize_t n;
  309. if (fgets(bf, sizeof(bf), fp) == NULL)
  310. break;
  311. if ((rdclock() - t) > timeout) {
  312. pr_warning("Reading %s time out. "
  313. "You may want to increase "
  314. "the time limit by --proc-map-timeout\n",
  315. filename);
  316. truncation = true;
  317. goto out;
  318. }
  319. /* ensure null termination since stack will be reused. */
  320. strcpy(execname, "");
  321. /* 00400000-0040c000 r-xp 00000000 fd:01 41038 /bin/cat */
  322. n = sscanf(bf, "%"PRIx64"-%"PRIx64" %s %"PRIx64" %x:%x %u %[^\n]\n",
  323. &event->mmap2.start, &event->mmap2.len, prot,
  324. &event->mmap2.pgoff, &event->mmap2.maj,
  325. &event->mmap2.min,
  326. &ino, execname);
  327. /*
  328. * Anon maps don't have the execname.
  329. */
  330. if (n < 7)
  331. continue;
  332. event->mmap2.ino = (u64)ino;
  333. /*
  334. * Just like the kernel, see __perf_event_mmap in kernel/perf_event.c
  335. */
  336. if (machine__is_host(machine))
  337. event->header.misc = PERF_RECORD_MISC_USER;
  338. else
  339. event->header.misc = PERF_RECORD_MISC_GUEST_USER;
  340. /* map protection and flags bits */
  341. event->mmap2.prot = 0;
  342. event->mmap2.flags = 0;
  343. if (prot[0] == 'r')
  344. event->mmap2.prot |= PROT_READ;
  345. if (prot[1] == 'w')
  346. event->mmap2.prot |= PROT_WRITE;
  347. if (prot[2] == 'x')
  348. event->mmap2.prot |= PROT_EXEC;
  349. if (prot[3] == 's')
  350. event->mmap2.flags |= MAP_SHARED;
  351. else
  352. event->mmap2.flags |= MAP_PRIVATE;
  353. if (prot[2] != 'x') {
  354. if (!mmap_data || prot[0] != 'r')
  355. continue;
  356. event->header.misc |= PERF_RECORD_MISC_MMAP_DATA;
  357. }
  358. out:
  359. if (truncation)
  360. event->header.misc |= PERF_RECORD_MISC_PROC_MAP_PARSE_TIMEOUT;
  361. if (!strcmp(execname, ""))
  362. strcpy(execname, anonstr);
  363. if (hugetlbfs_mnt_len &&
  364. !strncmp(execname, hugetlbfs_mnt, hugetlbfs_mnt_len)) {
  365. strcpy(execname, anonstr);
  366. event->mmap2.flags |= MAP_HUGETLB;
  367. }
  368. size = strlen(execname) + 1;
  369. memcpy(event->mmap2.filename, execname, size);
  370. size = PERF_ALIGN(size, sizeof(u64));
  371. event->mmap2.len -= event->mmap.start;
  372. event->mmap2.header.size = (sizeof(event->mmap2) -
  373. (sizeof(event->mmap2.filename) - size));
  374. memset(event->mmap2.filename + size, 0, machine->id_hdr_size);
  375. event->mmap2.header.size += machine->id_hdr_size;
  376. event->mmap2.pid = tgid;
  377. event->mmap2.tid = pid;
  378. if (perf_tool__process_synth_event(tool, event, machine, process) != 0) {
  379. rc = -1;
  380. break;
  381. }
  382. if (truncation)
  383. break;
  384. }
  385. fclose(fp);
  386. return rc;
  387. }
  388. int perf_event__synthesize_modules(struct perf_tool *tool,
  389. perf_event__handler_t process,
  390. struct machine *machine)
  391. {
  392. int rc = 0;
  393. struct map *pos;
  394. struct maps *maps = machine__kernel_maps(machine);
  395. union perf_event *event = zalloc((sizeof(event->mmap) +
  396. machine->id_hdr_size));
  397. if (event == NULL) {
  398. pr_debug("Not enough memory synthesizing mmap event "
  399. "for kernel modules\n");
  400. return -1;
  401. }
  402. event->header.type = PERF_RECORD_MMAP;
  403. /*
  404. * kernel uses 0 for user space maps, see kernel/perf_event.c
  405. * __perf_event_mmap
  406. */
  407. if (machine__is_host(machine))
  408. event->header.misc = PERF_RECORD_MISC_KERNEL;
  409. else
  410. event->header.misc = PERF_RECORD_MISC_GUEST_KERNEL;
  411. for (pos = maps__first(maps); pos; pos = map__next(pos)) {
  412. size_t size;
  413. if (!__map__is_kmodule(pos))
  414. continue;
  415. size = PERF_ALIGN(pos->dso->long_name_len + 1, sizeof(u64));
  416. event->mmap.header.type = PERF_RECORD_MMAP;
  417. event->mmap.header.size = (sizeof(event->mmap) -
  418. (sizeof(event->mmap.filename) - size));
  419. memset(event->mmap.filename + size, 0, machine->id_hdr_size);
  420. event->mmap.header.size += machine->id_hdr_size;
  421. event->mmap.start = pos->start;
  422. event->mmap.len = pos->end - pos->start;
  423. event->mmap.pid = machine->pid;
  424. memcpy(event->mmap.filename, pos->dso->long_name,
  425. pos->dso->long_name_len + 1);
  426. if (perf_tool__process_synth_event(tool, event, machine, process) != 0) {
  427. rc = -1;
  428. break;
  429. }
  430. }
  431. free(event);
  432. return rc;
  433. }
  434. static int __event__synthesize_thread(union perf_event *comm_event,
  435. union perf_event *mmap_event,
  436. union perf_event *fork_event,
  437. union perf_event *namespaces_event,
  438. pid_t pid, int full,
  439. perf_event__handler_t process,
  440. struct perf_tool *tool,
  441. struct machine *machine,
  442. bool mmap_data,
  443. unsigned int proc_map_timeout)
  444. {
  445. char filename[PATH_MAX];
  446. DIR *tasks;
  447. struct dirent *dirent;
  448. pid_t tgid, ppid;
  449. int rc = 0;
  450. /* special case: only send one comm event using passed in pid */
  451. if (!full) {
  452. tgid = perf_event__synthesize_comm(tool, comm_event, pid,
  453. process, machine);
  454. if (tgid == -1)
  455. return -1;
  456. if (perf_event__synthesize_namespaces(tool, namespaces_event, pid,
  457. tgid, process, machine) < 0)
  458. return -1;
  459. /*
  460. * send mmap only for thread group leader
  461. * see thread__init_map_groups
  462. */
  463. if (pid == tgid &&
  464. perf_event__synthesize_mmap_events(tool, mmap_event, pid, tgid,
  465. process, machine, mmap_data,
  466. proc_map_timeout))
  467. return -1;
  468. return 0;
  469. }
  470. if (machine__is_default_guest(machine))
  471. return 0;
  472. snprintf(filename, sizeof(filename), "%s/proc/%d/task",
  473. machine->root_dir, pid);
  474. tasks = opendir(filename);
  475. if (tasks == NULL) {
  476. pr_debug("couldn't open %s\n", filename);
  477. return 0;
  478. }
  479. while ((dirent = readdir(tasks)) != NULL) {
  480. char *end;
  481. pid_t _pid;
  482. _pid = strtol(dirent->d_name, &end, 10);
  483. if (*end)
  484. continue;
  485. rc = -1;
  486. if (perf_event__prepare_comm(comm_event, _pid, machine,
  487. &tgid, &ppid) != 0)
  488. break;
  489. if (perf_event__synthesize_fork(tool, fork_event, _pid, tgid,
  490. ppid, process, machine) < 0)
  491. break;
  492. if (perf_event__synthesize_namespaces(tool, namespaces_event, _pid,
  493. tgid, process, machine) < 0)
  494. break;
  495. /*
  496. * Send the prepared comm event
  497. */
  498. if (perf_tool__process_synth_event(tool, comm_event, machine, process) != 0)
  499. break;
  500. rc = 0;
  501. if (_pid == pid) {
  502. /* process the parent's maps too */
  503. rc = perf_event__synthesize_mmap_events(tool, mmap_event, pid, tgid,
  504. process, machine, mmap_data, proc_map_timeout);
  505. if (rc)
  506. break;
  507. }
  508. }
  509. closedir(tasks);
  510. return rc;
  511. }
  512. int perf_event__synthesize_thread_map(struct perf_tool *tool,
  513. struct thread_map *threads,
  514. perf_event__handler_t process,
  515. struct machine *machine,
  516. bool mmap_data,
  517. unsigned int proc_map_timeout)
  518. {
  519. union perf_event *comm_event, *mmap_event, *fork_event;
  520. union perf_event *namespaces_event;
  521. int err = -1, thread, j;
  522. comm_event = malloc(sizeof(comm_event->comm) + machine->id_hdr_size);
  523. if (comm_event == NULL)
  524. goto out;
  525. mmap_event = malloc(sizeof(mmap_event->mmap2) + machine->id_hdr_size);
  526. if (mmap_event == NULL)
  527. goto out_free_comm;
  528. fork_event = malloc(sizeof(fork_event->fork) + machine->id_hdr_size);
  529. if (fork_event == NULL)
  530. goto out_free_mmap;
  531. namespaces_event = malloc(sizeof(namespaces_event->namespaces) +
  532. (NR_NAMESPACES * sizeof(struct perf_ns_link_info)) +
  533. machine->id_hdr_size);
  534. if (namespaces_event == NULL)
  535. goto out_free_fork;
  536. err = 0;
  537. for (thread = 0; thread < threads->nr; ++thread) {
  538. if (__event__synthesize_thread(comm_event, mmap_event,
  539. fork_event, namespaces_event,
  540. thread_map__pid(threads, thread), 0,
  541. process, tool, machine,
  542. mmap_data, proc_map_timeout)) {
  543. err = -1;
  544. break;
  545. }
  546. /*
  547. * comm.pid is set to thread group id by
  548. * perf_event__synthesize_comm
  549. */
  550. if ((int) comm_event->comm.pid != thread_map__pid(threads, thread)) {
  551. bool need_leader = true;
  552. /* is thread group leader in thread_map? */
  553. for (j = 0; j < threads->nr; ++j) {
  554. if ((int) comm_event->comm.pid == thread_map__pid(threads, j)) {
  555. need_leader = false;
  556. break;
  557. }
  558. }
  559. /* if not, generate events for it */
  560. if (need_leader &&
  561. __event__synthesize_thread(comm_event, mmap_event,
  562. fork_event, namespaces_event,
  563. comm_event->comm.pid, 0,
  564. process, tool, machine,
  565. mmap_data, proc_map_timeout)) {
  566. err = -1;
  567. break;
  568. }
  569. }
  570. }
  571. free(namespaces_event);
  572. out_free_fork:
  573. free(fork_event);
  574. out_free_mmap:
  575. free(mmap_event);
  576. out_free_comm:
  577. free(comm_event);
  578. out:
  579. return err;
  580. }
  581. static int __perf_event__synthesize_threads(struct perf_tool *tool,
  582. perf_event__handler_t process,
  583. struct machine *machine,
  584. bool mmap_data,
  585. unsigned int proc_map_timeout,
  586. struct dirent **dirent,
  587. int start,
  588. int num)
  589. {
  590. union perf_event *comm_event, *mmap_event, *fork_event;
  591. union perf_event *namespaces_event;
  592. int err = -1;
  593. char *end;
  594. pid_t pid;
  595. int i;
  596. comm_event = malloc(sizeof(comm_event->comm) + machine->id_hdr_size);
  597. if (comm_event == NULL)
  598. goto out;
  599. mmap_event = malloc(sizeof(mmap_event->mmap2) + machine->id_hdr_size);
  600. if (mmap_event == NULL)
  601. goto out_free_comm;
  602. fork_event = malloc(sizeof(fork_event->fork) + machine->id_hdr_size);
  603. if (fork_event == NULL)
  604. goto out_free_mmap;
  605. namespaces_event = malloc(sizeof(namespaces_event->namespaces) +
  606. (NR_NAMESPACES * sizeof(struct perf_ns_link_info)) +
  607. machine->id_hdr_size);
  608. if (namespaces_event == NULL)
  609. goto out_free_fork;
  610. for (i = start; i < start + num; i++) {
  611. if (!isdigit(dirent[i]->d_name[0]))
  612. continue;
  613. pid = (pid_t)strtol(dirent[i]->d_name, &end, 10);
  614. /* only interested in proper numerical dirents */
  615. if (*end)
  616. continue;
  617. /*
  618. * We may race with exiting thread, so don't stop just because
  619. * one thread couldn't be synthesized.
  620. */
  621. __event__synthesize_thread(comm_event, mmap_event, fork_event,
  622. namespaces_event, pid, 1, process,
  623. tool, machine, mmap_data,
  624. proc_map_timeout);
  625. }
  626. err = 0;
  627. free(namespaces_event);
  628. out_free_fork:
  629. free(fork_event);
  630. out_free_mmap:
  631. free(mmap_event);
  632. out_free_comm:
  633. free(comm_event);
  634. out:
  635. return err;
  636. }
  637. struct synthesize_threads_arg {
  638. struct perf_tool *tool;
  639. perf_event__handler_t process;
  640. struct machine *machine;
  641. bool mmap_data;
  642. unsigned int proc_map_timeout;
  643. struct dirent **dirent;
  644. int num;
  645. int start;
  646. };
  647. static void *synthesize_threads_worker(void *arg)
  648. {
  649. struct synthesize_threads_arg *args = arg;
  650. __perf_event__synthesize_threads(args->tool, args->process,
  651. args->machine, args->mmap_data,
  652. args->proc_map_timeout, args->dirent,
  653. args->start, args->num);
  654. return NULL;
  655. }
  656. int perf_event__synthesize_threads(struct perf_tool *tool,
  657. perf_event__handler_t process,
  658. struct machine *machine,
  659. bool mmap_data,
  660. unsigned int proc_map_timeout,
  661. unsigned int nr_threads_synthesize)
  662. {
  663. struct synthesize_threads_arg *args = NULL;
  664. pthread_t *synthesize_threads = NULL;
  665. char proc_path[PATH_MAX];
  666. struct dirent **dirent;
  667. int num_per_thread;
  668. int m, n, i, j;
  669. int thread_nr;
  670. int base = 0;
  671. int err = -1;
  672. if (machine__is_default_guest(machine))
  673. return 0;
  674. snprintf(proc_path, sizeof(proc_path), "%s/proc", machine->root_dir);
  675. n = scandir(proc_path, &dirent, 0, alphasort);
  676. if (n < 0)
  677. return err;
  678. if (nr_threads_synthesize == UINT_MAX)
  679. thread_nr = sysconf(_SC_NPROCESSORS_ONLN);
  680. else
  681. thread_nr = nr_threads_synthesize;
  682. if (thread_nr <= 1) {
  683. err = __perf_event__synthesize_threads(tool, process,
  684. machine, mmap_data,
  685. proc_map_timeout,
  686. dirent, base, n);
  687. goto free_dirent;
  688. }
  689. if (thread_nr > n)
  690. thread_nr = n;
  691. synthesize_threads = calloc(sizeof(pthread_t), thread_nr);
  692. if (synthesize_threads == NULL)
  693. goto free_dirent;
  694. args = calloc(sizeof(*args), thread_nr);
  695. if (args == NULL)
  696. goto free_threads;
  697. num_per_thread = n / thread_nr;
  698. m = n % thread_nr;
  699. for (i = 0; i < thread_nr; i++) {
  700. args[i].tool = tool;
  701. args[i].process = process;
  702. args[i].machine = machine;
  703. args[i].mmap_data = mmap_data;
  704. args[i].proc_map_timeout = proc_map_timeout;
  705. args[i].dirent = dirent;
  706. }
  707. for (i = 0; i < m; i++) {
  708. args[i].num = num_per_thread + 1;
  709. args[i].start = i * args[i].num;
  710. }
  711. if (i != 0)
  712. base = args[i-1].start + args[i-1].num;
  713. for (j = i; j < thread_nr; j++) {
  714. args[j].num = num_per_thread;
  715. args[j].start = base + (j - i) * args[i].num;
  716. }
  717. for (i = 0; i < thread_nr; i++) {
  718. if (pthread_create(&synthesize_threads[i], NULL,
  719. synthesize_threads_worker, &args[i]))
  720. goto out_join;
  721. }
  722. err = 0;
  723. out_join:
  724. for (i = 0; i < thread_nr; i++)
  725. pthread_join(synthesize_threads[i], NULL);
  726. free(args);
  727. free_threads:
  728. free(synthesize_threads);
  729. free_dirent:
  730. for (i = 0; i < n; i++)
  731. free(dirent[i]);
  732. free(dirent);
  733. return err;
  734. }
  735. struct process_symbol_args {
  736. const char *name;
  737. u64 start;
  738. };
  739. static int find_symbol_cb(void *arg, const char *name, char type,
  740. u64 start)
  741. {
  742. struct process_symbol_args *args = arg;
  743. /*
  744. * Must be a function or at least an alias, as in PARISC64, where "_text" is
  745. * an 'A' to the same address as "_stext".
  746. */
  747. if (!(kallsyms__is_function(type) ||
  748. type == 'A') || strcmp(name, args->name))
  749. return 0;
  750. args->start = start;
  751. return 1;
  752. }
  753. int kallsyms__get_function_start(const char *kallsyms_filename,
  754. const char *symbol_name, u64 *addr)
  755. {
  756. struct process_symbol_args args = { .name = symbol_name, };
  757. if (kallsyms__parse(kallsyms_filename, &args, find_symbol_cb) <= 0)
  758. return -1;
  759. *addr = args.start;
  760. return 0;
  761. }
  762. int __weak perf_event__synthesize_extra_kmaps(struct perf_tool *tool __maybe_unused,
  763. perf_event__handler_t process __maybe_unused,
  764. struct machine *machine __maybe_unused)
  765. {
  766. return 0;
  767. }
  768. static int __perf_event__synthesize_kernel_mmap(struct perf_tool *tool,
  769. perf_event__handler_t process,
  770. struct machine *machine)
  771. {
  772. size_t size;
  773. struct map *map = machine__kernel_map(machine);
  774. struct kmap *kmap;
  775. int err;
  776. union perf_event *event;
  777. if (symbol_conf.kptr_restrict)
  778. return -1;
  779. if (map == NULL)
  780. return -1;
  781. /*
  782. * We should get this from /sys/kernel/sections/.text, but till that is
  783. * available use this, and after it is use this as a fallback for older
  784. * kernels.
  785. */
  786. event = zalloc((sizeof(event->mmap) + machine->id_hdr_size));
  787. if (event == NULL) {
  788. pr_debug("Not enough memory synthesizing mmap event "
  789. "for kernel modules\n");
  790. return -1;
  791. }
  792. if (machine__is_host(machine)) {
  793. /*
  794. * kernel uses PERF_RECORD_MISC_USER for user space maps,
  795. * see kernel/perf_event.c __perf_event_mmap
  796. */
  797. event->header.misc = PERF_RECORD_MISC_KERNEL;
  798. } else {
  799. event->header.misc = PERF_RECORD_MISC_GUEST_KERNEL;
  800. }
  801. kmap = map__kmap(map);
  802. size = snprintf(event->mmap.filename, sizeof(event->mmap.filename),
  803. "%s%s", machine->mmap_name, kmap->ref_reloc_sym->name) + 1;
  804. size = PERF_ALIGN(size, sizeof(u64));
  805. event->mmap.header.type = PERF_RECORD_MMAP;
  806. event->mmap.header.size = (sizeof(event->mmap) -
  807. (sizeof(event->mmap.filename) - size) + machine->id_hdr_size);
  808. event->mmap.pgoff = kmap->ref_reloc_sym->addr;
  809. event->mmap.start = map->start;
  810. event->mmap.len = map->end - event->mmap.start;
  811. event->mmap.pid = machine->pid;
  812. err = perf_tool__process_synth_event(tool, event, machine, process);
  813. free(event);
  814. return err;
  815. }
  816. int perf_event__synthesize_kernel_mmap(struct perf_tool *tool,
  817. perf_event__handler_t process,
  818. struct machine *machine)
  819. {
  820. int err;
  821. err = __perf_event__synthesize_kernel_mmap(tool, process, machine);
  822. if (err < 0)
  823. return err;
  824. return perf_event__synthesize_extra_kmaps(tool, process, machine);
  825. }
  826. int perf_event__synthesize_thread_map2(struct perf_tool *tool,
  827. struct thread_map *threads,
  828. perf_event__handler_t process,
  829. struct machine *machine)
  830. {
  831. union perf_event *event;
  832. int i, err, size;
  833. size = sizeof(event->thread_map);
  834. size += threads->nr * sizeof(event->thread_map.entries[0]);
  835. event = zalloc(size);
  836. if (!event)
  837. return -ENOMEM;
  838. event->header.type = PERF_RECORD_THREAD_MAP;
  839. event->header.size = size;
  840. event->thread_map.nr = threads->nr;
  841. for (i = 0; i < threads->nr; i++) {
  842. struct thread_map_event_entry *entry = &event->thread_map.entries[i];
  843. char *comm = thread_map__comm(threads, i);
  844. if (!comm)
  845. comm = (char *) "";
  846. entry->pid = thread_map__pid(threads, i);
  847. strncpy((char *) &entry->comm, comm, sizeof(entry->comm));
  848. }
  849. err = process(tool, event, NULL, machine);
  850. free(event);
  851. return err;
  852. }
  853. static void synthesize_cpus(struct cpu_map_entries *cpus,
  854. struct cpu_map *map)
  855. {
  856. int i;
  857. cpus->nr = map->nr;
  858. for (i = 0; i < map->nr; i++)
  859. cpus->cpu[i] = map->map[i];
  860. }
  861. static void synthesize_mask(struct cpu_map_mask *mask,
  862. struct cpu_map *map, int max)
  863. {
  864. int i;
  865. mask->nr = BITS_TO_LONGS(max);
  866. mask->long_size = sizeof(long);
  867. for (i = 0; i < map->nr; i++)
  868. set_bit(map->map[i], mask->mask);
  869. }
  870. static size_t cpus_size(struct cpu_map *map)
  871. {
  872. return sizeof(struct cpu_map_entries) + map->nr * sizeof(u16);
  873. }
  874. static size_t mask_size(struct cpu_map *map, int *max)
  875. {
  876. int i;
  877. *max = 0;
  878. for (i = 0; i < map->nr; i++) {
  879. /* bit possition of the cpu is + 1 */
  880. int bit = map->map[i] + 1;
  881. if (bit > *max)
  882. *max = bit;
  883. }
  884. return sizeof(struct cpu_map_mask) + BITS_TO_LONGS(*max) * sizeof(long);
  885. }
  886. void *cpu_map_data__alloc(struct cpu_map *map, size_t *size, u16 *type, int *max)
  887. {
  888. size_t size_cpus, size_mask;
  889. bool is_dummy = cpu_map__empty(map);
  890. /*
  891. * Both array and mask data have variable size based
  892. * on the number of cpus and their actual values.
  893. * The size of the 'struct cpu_map_data' is:
  894. *
  895. * array = size of 'struct cpu_map_entries' +
  896. * number of cpus * sizeof(u64)
  897. *
  898. * mask = size of 'struct cpu_map_mask' +
  899. * maximum cpu bit converted to size of longs
  900. *
  901. * and finaly + the size of 'struct cpu_map_data'.
  902. */
  903. size_cpus = cpus_size(map);
  904. size_mask = mask_size(map, max);
  905. if (is_dummy || (size_cpus < size_mask)) {
  906. *size += size_cpus;
  907. *type = PERF_CPU_MAP__CPUS;
  908. } else {
  909. *size += size_mask;
  910. *type = PERF_CPU_MAP__MASK;
  911. }
  912. *size += sizeof(struct cpu_map_data);
  913. *size = PERF_ALIGN(*size, sizeof(u64));
  914. return zalloc(*size);
  915. }
  916. void cpu_map_data__synthesize(struct cpu_map_data *data, struct cpu_map *map,
  917. u16 type, int max)
  918. {
  919. data->type = type;
  920. switch (type) {
  921. case PERF_CPU_MAP__CPUS:
  922. synthesize_cpus((struct cpu_map_entries *) data->data, map);
  923. break;
  924. case PERF_CPU_MAP__MASK:
  925. synthesize_mask((struct cpu_map_mask *) data->data, map, max);
  926. default:
  927. break;
  928. };
  929. }
  930. static struct cpu_map_event* cpu_map_event__new(struct cpu_map *map)
  931. {
  932. size_t size = sizeof(struct cpu_map_event);
  933. struct cpu_map_event *event;
  934. int max;
  935. u16 type;
  936. event = cpu_map_data__alloc(map, &size, &type, &max);
  937. if (!event)
  938. return NULL;
  939. event->header.type = PERF_RECORD_CPU_MAP;
  940. event->header.size = size;
  941. event->data.type = type;
  942. cpu_map_data__synthesize(&event->data, map, type, max);
  943. return event;
  944. }
  945. int perf_event__synthesize_cpu_map(struct perf_tool *tool,
  946. struct cpu_map *map,
  947. perf_event__handler_t process,
  948. struct machine *machine)
  949. {
  950. struct cpu_map_event *event;
  951. int err;
  952. event = cpu_map_event__new(map);
  953. if (!event)
  954. return -ENOMEM;
  955. err = process(tool, (union perf_event *) event, NULL, machine);
  956. free(event);
  957. return err;
  958. }
  959. int perf_event__synthesize_stat_config(struct perf_tool *tool,
  960. struct perf_stat_config *config,
  961. perf_event__handler_t process,
  962. struct machine *machine)
  963. {
  964. struct stat_config_event *event;
  965. int size, i = 0, err;
  966. size = sizeof(*event);
  967. size += (PERF_STAT_CONFIG_TERM__MAX * sizeof(event->data[0]));
  968. event = zalloc(size);
  969. if (!event)
  970. return -ENOMEM;
  971. event->header.type = PERF_RECORD_STAT_CONFIG;
  972. event->header.size = size;
  973. event->nr = PERF_STAT_CONFIG_TERM__MAX;
  974. #define ADD(__term, __val) \
  975. event->data[i].tag = PERF_STAT_CONFIG_TERM__##__term; \
  976. event->data[i].val = __val; \
  977. i++;
  978. ADD(AGGR_MODE, config->aggr_mode)
  979. ADD(INTERVAL, config->interval)
  980. ADD(SCALE, config->scale)
  981. WARN_ONCE(i != PERF_STAT_CONFIG_TERM__MAX,
  982. "stat config terms unbalanced\n");
  983. #undef ADD
  984. err = process(tool, (union perf_event *) event, NULL, machine);
  985. free(event);
  986. return err;
  987. }
  988. int perf_event__synthesize_stat(struct perf_tool *tool,
  989. u32 cpu, u32 thread, u64 id,
  990. struct perf_counts_values *count,
  991. perf_event__handler_t process,
  992. struct machine *machine)
  993. {
  994. struct stat_event event;
  995. event.header.type = PERF_RECORD_STAT;
  996. event.header.size = sizeof(event);
  997. event.header.misc = 0;
  998. event.id = id;
  999. event.cpu = cpu;
  1000. event.thread = thread;
  1001. event.val = count->val;
  1002. event.ena = count->ena;
  1003. event.run = count->run;
  1004. return process(tool, (union perf_event *) &event, NULL, machine);
  1005. }
  1006. int perf_event__synthesize_stat_round(struct perf_tool *tool,
  1007. u64 evtime, u64 type,
  1008. perf_event__handler_t process,
  1009. struct machine *machine)
  1010. {
  1011. struct stat_round_event event;
  1012. event.header.type = PERF_RECORD_STAT_ROUND;
  1013. event.header.size = sizeof(event);
  1014. event.header.misc = 0;
  1015. event.time = evtime;
  1016. event.type = type;
  1017. return process(tool, (union perf_event *) &event, NULL, machine);
  1018. }
  1019. void perf_event__read_stat_config(struct perf_stat_config *config,
  1020. struct stat_config_event *event)
  1021. {
  1022. unsigned i;
  1023. for (i = 0; i < event->nr; i++) {
  1024. switch (event->data[i].tag) {
  1025. #define CASE(__term, __val) \
  1026. case PERF_STAT_CONFIG_TERM__##__term: \
  1027. config->__val = event->data[i].val; \
  1028. break;
  1029. CASE(AGGR_MODE, aggr_mode)
  1030. CASE(SCALE, scale)
  1031. CASE(INTERVAL, interval)
  1032. #undef CASE
  1033. default:
  1034. pr_warning("unknown stat config term %" PRIu64 "\n",
  1035. event->data[i].tag);
  1036. }
  1037. }
  1038. }
  1039. size_t perf_event__fprintf_comm(union perf_event *event, FILE *fp)
  1040. {
  1041. const char *s;
  1042. if (event->header.misc & PERF_RECORD_MISC_COMM_EXEC)
  1043. s = " exec";
  1044. else
  1045. s = "";
  1046. return fprintf(fp, "%s: %s:%d/%d\n", s, event->comm.comm, event->comm.pid, event->comm.tid);
  1047. }
  1048. size_t perf_event__fprintf_namespaces(union perf_event *event, FILE *fp)
  1049. {
  1050. size_t ret = 0;
  1051. struct perf_ns_link_info *ns_link_info;
  1052. u32 nr_namespaces, idx;
  1053. ns_link_info = event->namespaces.link_info;
  1054. nr_namespaces = event->namespaces.nr_namespaces;
  1055. ret += fprintf(fp, " %d/%d - nr_namespaces: %u\n\t\t[",
  1056. event->namespaces.pid,
  1057. event->namespaces.tid,
  1058. nr_namespaces);
  1059. for (idx = 0; idx < nr_namespaces; idx++) {
  1060. if (idx && (idx % 4 == 0))
  1061. ret += fprintf(fp, "\n\t\t ");
  1062. ret += fprintf(fp, "%u/%s: %" PRIu64 "/%#" PRIx64 "%s", idx,
  1063. perf_ns__name(idx), (u64)ns_link_info[idx].dev,
  1064. (u64)ns_link_info[idx].ino,
  1065. ((idx + 1) != nr_namespaces) ? ", " : "]\n");
  1066. }
  1067. return ret;
  1068. }
  1069. int perf_event__process_comm(struct perf_tool *tool __maybe_unused,
  1070. union perf_event *event,
  1071. struct perf_sample *sample,
  1072. struct machine *machine)
  1073. {
  1074. return machine__process_comm_event(machine, event, sample);
  1075. }
  1076. int perf_event__process_namespaces(struct perf_tool *tool __maybe_unused,
  1077. union perf_event *event,
  1078. struct perf_sample *sample,
  1079. struct machine *machine)
  1080. {
  1081. return machine__process_namespaces_event(machine, event, sample);
  1082. }
  1083. int perf_event__process_lost(struct perf_tool *tool __maybe_unused,
  1084. union perf_event *event,
  1085. struct perf_sample *sample,
  1086. struct machine *machine)
  1087. {
  1088. return machine__process_lost_event(machine, event, sample);
  1089. }
  1090. int perf_event__process_aux(struct perf_tool *tool __maybe_unused,
  1091. union perf_event *event,
  1092. struct perf_sample *sample __maybe_unused,
  1093. struct machine *machine)
  1094. {
  1095. return machine__process_aux_event(machine, event);
  1096. }
  1097. int perf_event__process_itrace_start(struct perf_tool *tool __maybe_unused,
  1098. union perf_event *event,
  1099. struct perf_sample *sample __maybe_unused,
  1100. struct machine *machine)
  1101. {
  1102. return machine__process_itrace_start_event(machine, event);
  1103. }
  1104. int perf_event__process_lost_samples(struct perf_tool *tool __maybe_unused,
  1105. union perf_event *event,
  1106. struct perf_sample *sample,
  1107. struct machine *machine)
  1108. {
  1109. return machine__process_lost_samples_event(machine, event, sample);
  1110. }
  1111. int perf_event__process_switch(struct perf_tool *tool __maybe_unused,
  1112. union perf_event *event,
  1113. struct perf_sample *sample __maybe_unused,
  1114. struct machine *machine)
  1115. {
  1116. return machine__process_switch_event(machine, event);
  1117. }
  1118. size_t perf_event__fprintf_mmap(union perf_event *event, FILE *fp)
  1119. {
  1120. return fprintf(fp, " %d/%d: [%#" PRIx64 "(%#" PRIx64 ") @ %#" PRIx64 "]: %c %s\n",
  1121. event->mmap.pid, event->mmap.tid, event->mmap.start,
  1122. event->mmap.len, event->mmap.pgoff,
  1123. (event->header.misc & PERF_RECORD_MISC_MMAP_DATA) ? 'r' : 'x',
  1124. event->mmap.filename);
  1125. }
  1126. size_t perf_event__fprintf_mmap2(union perf_event *event, FILE *fp)
  1127. {
  1128. return fprintf(fp, " %d/%d: [%#" PRIx64 "(%#" PRIx64 ") @ %#" PRIx64
  1129. " %02x:%02x %"PRIu64" %"PRIu64"]: %c%c%c%c %s\n",
  1130. event->mmap2.pid, event->mmap2.tid, event->mmap2.start,
  1131. event->mmap2.len, event->mmap2.pgoff, event->mmap2.maj,
  1132. event->mmap2.min, event->mmap2.ino,
  1133. event->mmap2.ino_generation,
  1134. (event->mmap2.prot & PROT_READ) ? 'r' : '-',
  1135. (event->mmap2.prot & PROT_WRITE) ? 'w' : '-',
  1136. (event->mmap2.prot & PROT_EXEC) ? 'x' : '-',
  1137. (event->mmap2.flags & MAP_SHARED) ? 's' : 'p',
  1138. event->mmap2.filename);
  1139. }
  1140. size_t perf_event__fprintf_thread_map(union perf_event *event, FILE *fp)
  1141. {
  1142. struct thread_map *threads = thread_map__new_event(&event->thread_map);
  1143. size_t ret;
  1144. ret = fprintf(fp, " nr: ");
  1145. if (threads)
  1146. ret += thread_map__fprintf(threads, fp);
  1147. else
  1148. ret += fprintf(fp, "failed to get threads from event\n");
  1149. thread_map__put(threads);
  1150. return ret;
  1151. }
  1152. size_t perf_event__fprintf_cpu_map(union perf_event *event, FILE *fp)
  1153. {
  1154. struct cpu_map *cpus = cpu_map__new_data(&event->cpu_map.data);
  1155. size_t ret;
  1156. ret = fprintf(fp, ": ");
  1157. if (cpus)
  1158. ret += cpu_map__fprintf(cpus, fp);
  1159. else
  1160. ret += fprintf(fp, "failed to get cpumap from event\n");
  1161. cpu_map__put(cpus);
  1162. return ret;
  1163. }
  1164. int perf_event__process_mmap(struct perf_tool *tool __maybe_unused,
  1165. union perf_event *event,
  1166. struct perf_sample *sample,
  1167. struct machine *machine)
  1168. {
  1169. return machine__process_mmap_event(machine, event, sample);
  1170. }
  1171. int perf_event__process_mmap2(struct perf_tool *tool __maybe_unused,
  1172. union perf_event *event,
  1173. struct perf_sample *sample,
  1174. struct machine *machine)
  1175. {
  1176. return machine__process_mmap2_event(machine, event, sample);
  1177. }
  1178. size_t perf_event__fprintf_task(union perf_event *event, FILE *fp)
  1179. {
  1180. return fprintf(fp, "(%d:%d):(%d:%d)\n",
  1181. event->fork.pid, event->fork.tid,
  1182. event->fork.ppid, event->fork.ptid);
  1183. }
  1184. int perf_event__process_fork(struct perf_tool *tool __maybe_unused,
  1185. union perf_event *event,
  1186. struct perf_sample *sample,
  1187. struct machine *machine)
  1188. {
  1189. return machine__process_fork_event(machine, event, sample);
  1190. }
  1191. int perf_event__process_exit(struct perf_tool *tool __maybe_unused,
  1192. union perf_event *event,
  1193. struct perf_sample *sample,
  1194. struct machine *machine)
  1195. {
  1196. return machine__process_exit_event(machine, event, sample);
  1197. }
  1198. size_t perf_event__fprintf_aux(union perf_event *event, FILE *fp)
  1199. {
  1200. return fprintf(fp, " offset: %#"PRIx64" size: %#"PRIx64" flags: %#"PRIx64" [%s%s%s]\n",
  1201. event->aux.aux_offset, event->aux.aux_size,
  1202. event->aux.flags,
  1203. event->aux.flags & PERF_AUX_FLAG_TRUNCATED ? "T" : "",
  1204. event->aux.flags & PERF_AUX_FLAG_OVERWRITE ? "O" : "",
  1205. event->aux.flags & PERF_AUX_FLAG_PARTIAL ? "P" : "");
  1206. }
  1207. size_t perf_event__fprintf_itrace_start(union perf_event *event, FILE *fp)
  1208. {
  1209. return fprintf(fp, " pid: %u tid: %u\n",
  1210. event->itrace_start.pid, event->itrace_start.tid);
  1211. }
  1212. size_t perf_event__fprintf_switch(union perf_event *event, FILE *fp)
  1213. {
  1214. bool out = event->header.misc & PERF_RECORD_MISC_SWITCH_OUT;
  1215. const char *in_out = !out ? "IN " :
  1216. !(event->header.misc & PERF_RECORD_MISC_SWITCH_OUT_PREEMPT) ?
  1217. "OUT " : "OUT preempt";
  1218. if (event->header.type == PERF_RECORD_SWITCH)
  1219. return fprintf(fp, " %s\n", in_out);
  1220. return fprintf(fp, " %s %s pid/tid: %5u/%-5u\n",
  1221. in_out, out ? "next" : "prev",
  1222. event->context_switch.next_prev_pid,
  1223. event->context_switch.next_prev_tid);
  1224. }
  1225. static size_t perf_event__fprintf_lost(union perf_event *event, FILE *fp)
  1226. {
  1227. return fprintf(fp, " lost %" PRIu64 "\n", event->lost.lost);
  1228. }
  1229. size_t perf_event__fprintf(union perf_event *event, FILE *fp)
  1230. {
  1231. size_t ret = fprintf(fp, "PERF_RECORD_%s",
  1232. perf_event__name(event->header.type));
  1233. switch (event->header.type) {
  1234. case PERF_RECORD_COMM:
  1235. ret += perf_event__fprintf_comm(event, fp);
  1236. break;
  1237. case PERF_RECORD_FORK:
  1238. case PERF_RECORD_EXIT:
  1239. ret += perf_event__fprintf_task(event, fp);
  1240. break;
  1241. case PERF_RECORD_MMAP:
  1242. ret += perf_event__fprintf_mmap(event, fp);
  1243. break;
  1244. case PERF_RECORD_NAMESPACES:
  1245. ret += perf_event__fprintf_namespaces(event, fp);
  1246. break;
  1247. case PERF_RECORD_MMAP2:
  1248. ret += perf_event__fprintf_mmap2(event, fp);
  1249. break;
  1250. case PERF_RECORD_AUX:
  1251. ret += perf_event__fprintf_aux(event, fp);
  1252. break;
  1253. case PERF_RECORD_ITRACE_START:
  1254. ret += perf_event__fprintf_itrace_start(event, fp);
  1255. break;
  1256. case PERF_RECORD_SWITCH:
  1257. case PERF_RECORD_SWITCH_CPU_WIDE:
  1258. ret += perf_event__fprintf_switch(event, fp);
  1259. break;
  1260. case PERF_RECORD_LOST:
  1261. ret += perf_event__fprintf_lost(event, fp);
  1262. break;
  1263. default:
  1264. ret += fprintf(fp, "\n");
  1265. }
  1266. return ret;
  1267. }
  1268. int perf_event__process(struct perf_tool *tool __maybe_unused,
  1269. union perf_event *event,
  1270. struct perf_sample *sample,
  1271. struct machine *machine)
  1272. {
  1273. return machine__process_event(machine, event, sample);
  1274. }
  1275. struct map *thread__find_map(struct thread *thread, u8 cpumode, u64 addr,
  1276. struct addr_location *al)
  1277. {
  1278. struct map_groups *mg = thread->mg;
  1279. struct machine *machine = mg->machine;
  1280. bool load_map = false;
  1281. al->machine = machine;
  1282. al->thread = thread;
  1283. al->addr = addr;
  1284. al->cpumode = cpumode;
  1285. al->filtered = 0;
  1286. if (machine == NULL) {
  1287. al->map = NULL;
  1288. return NULL;
  1289. }
  1290. if (cpumode == PERF_RECORD_MISC_KERNEL && perf_host) {
  1291. al->level = 'k';
  1292. mg = &machine->kmaps;
  1293. load_map = true;
  1294. } else if (cpumode == PERF_RECORD_MISC_USER && perf_host) {
  1295. al->level = '.';
  1296. } else if (cpumode == PERF_RECORD_MISC_GUEST_KERNEL && perf_guest) {
  1297. al->level = 'g';
  1298. mg = &machine->kmaps;
  1299. load_map = true;
  1300. } else if (cpumode == PERF_RECORD_MISC_GUEST_USER && perf_guest) {
  1301. al->level = 'u';
  1302. } else {
  1303. al->level = 'H';
  1304. al->map = NULL;
  1305. if ((cpumode == PERF_RECORD_MISC_GUEST_USER ||
  1306. cpumode == PERF_RECORD_MISC_GUEST_KERNEL) &&
  1307. !perf_guest)
  1308. al->filtered |= (1 << HIST_FILTER__GUEST);
  1309. if ((cpumode == PERF_RECORD_MISC_USER ||
  1310. cpumode == PERF_RECORD_MISC_KERNEL) &&
  1311. !perf_host)
  1312. al->filtered |= (1 << HIST_FILTER__HOST);
  1313. return NULL;
  1314. }
  1315. al->map = map_groups__find(mg, al->addr);
  1316. if (al->map != NULL) {
  1317. /*
  1318. * Kernel maps might be changed when loading symbols so loading
  1319. * must be done prior to using kernel maps.
  1320. */
  1321. if (load_map)
  1322. map__load(al->map);
  1323. al->addr = al->map->map_ip(al->map, al->addr);
  1324. }
  1325. return al->map;
  1326. }
  1327. struct symbol *thread__find_symbol(struct thread *thread, u8 cpumode,
  1328. u64 addr, struct addr_location *al)
  1329. {
  1330. al->sym = NULL;
  1331. if (thread__find_map(thread, cpumode, addr, al))
  1332. al->sym = map__find_symbol(al->map, al->addr);
  1333. return al->sym;
  1334. }
  1335. /*
  1336. * Callers need to drop the reference to al->thread, obtained in
  1337. * machine__findnew_thread()
  1338. */
  1339. int machine__resolve(struct machine *machine, struct addr_location *al,
  1340. struct perf_sample *sample)
  1341. {
  1342. struct thread *thread = machine__findnew_thread(machine, sample->pid,
  1343. sample->tid);
  1344. if (thread == NULL)
  1345. return -1;
  1346. dump_printf(" ... thread: %s:%d\n", thread__comm_str(thread), thread->tid);
  1347. thread__find_map(thread, sample->cpumode, sample->ip, al);
  1348. dump_printf(" ...... dso: %s\n",
  1349. al->map ? al->map->dso->long_name :
  1350. al->level == 'H' ? "[hypervisor]" : "<not found>");
  1351. if (thread__is_filtered(thread))
  1352. al->filtered |= (1 << HIST_FILTER__THREAD);
  1353. al->sym = NULL;
  1354. al->cpu = sample->cpu;
  1355. al->socket = -1;
  1356. al->srcline = NULL;
  1357. if (al->cpu >= 0) {
  1358. struct perf_env *env = machine->env;
  1359. if (env && env->cpu)
  1360. al->socket = env->cpu[al->cpu].socket_id;
  1361. }
  1362. if (al->map) {
  1363. struct dso *dso = al->map->dso;
  1364. if (symbol_conf.dso_list &&
  1365. (!dso || !(strlist__has_entry(symbol_conf.dso_list,
  1366. dso->short_name) ||
  1367. (dso->short_name != dso->long_name &&
  1368. strlist__has_entry(symbol_conf.dso_list,
  1369. dso->long_name))))) {
  1370. al->filtered |= (1 << HIST_FILTER__DSO);
  1371. }
  1372. al->sym = map__find_symbol(al->map, al->addr);
  1373. }
  1374. if (symbol_conf.sym_list &&
  1375. (!al->sym || !strlist__has_entry(symbol_conf.sym_list,
  1376. al->sym->name))) {
  1377. al->filtered |= (1 << HIST_FILTER__SYMBOL);
  1378. }
  1379. return 0;
  1380. }
  1381. /*
  1382. * The preprocess_sample method will return with reference counts for the
  1383. * in it, when done using (and perhaps getting ref counts if needing to
  1384. * keep a pointer to one of those entries) it must be paired with
  1385. * addr_location__put(), so that the refcounts can be decremented.
  1386. */
  1387. void addr_location__put(struct addr_location *al)
  1388. {
  1389. thread__zput(al->thread);
  1390. }
  1391. bool is_bts_event(struct perf_event_attr *attr)
  1392. {
  1393. return attr->type == PERF_TYPE_HARDWARE &&
  1394. (attr->config & PERF_COUNT_HW_BRANCH_INSTRUCTIONS) &&
  1395. attr->sample_period == 1;
  1396. }
  1397. bool sample_addr_correlates_sym(struct perf_event_attr *attr)
  1398. {
  1399. if (attr->type == PERF_TYPE_SOFTWARE &&
  1400. (attr->config == PERF_COUNT_SW_PAGE_FAULTS ||
  1401. attr->config == PERF_COUNT_SW_PAGE_FAULTS_MIN ||
  1402. attr->config == PERF_COUNT_SW_PAGE_FAULTS_MAJ))
  1403. return true;
  1404. if (is_bts_event(attr))
  1405. return true;
  1406. return false;
  1407. }
  1408. void thread__resolve(struct thread *thread, struct addr_location *al,
  1409. struct perf_sample *sample)
  1410. {
  1411. thread__find_map(thread, sample->cpumode, sample->addr, al);
  1412. al->cpu = sample->cpu;
  1413. al->sym = NULL;
  1414. if (al->map)
  1415. al->sym = map__find_symbol(al->map, al->addr);
  1416. }