builtin-lock.c 23 KB

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  1. #include <errno.h>
  2. #include <inttypes.h>
  3. #include "builtin.h"
  4. #include "perf.h"
  5. #include "util/evlist.h"
  6. #include "util/evsel.h"
  7. #include "util/util.h"
  8. #include "util/cache.h"
  9. #include "util/symbol.h"
  10. #include "util/thread.h"
  11. #include "util/header.h"
  12. #include <subcmd/parse-options.h>
  13. #include "util/trace-event.h"
  14. #include "util/debug.h"
  15. #include "util/session.h"
  16. #include "util/tool.h"
  17. #include "util/data.h"
  18. #include <sys/types.h>
  19. #include <sys/prctl.h>
  20. #include <semaphore.h>
  21. #include <pthread.h>
  22. #include <math.h>
  23. #include <limits.h>
  24. #include <linux/list.h>
  25. #include <linux/hash.h>
  26. #include <linux/kernel.h>
  27. static struct perf_session *session;
  28. /* based on kernel/lockdep.c */
  29. #define LOCKHASH_BITS 12
  30. #define LOCKHASH_SIZE (1UL << LOCKHASH_BITS)
  31. static struct list_head lockhash_table[LOCKHASH_SIZE];
  32. #define __lockhashfn(key) hash_long((unsigned long)key, LOCKHASH_BITS)
  33. #define lockhashentry(key) (lockhash_table + __lockhashfn((key)))
  34. struct lock_stat {
  35. struct list_head hash_entry;
  36. struct rb_node rb; /* used for sorting */
  37. /*
  38. * FIXME: perf_evsel__intval() returns u64,
  39. * so address of lockdep_map should be dealed as 64bit.
  40. * Is there more better solution?
  41. */
  42. void *addr; /* address of lockdep_map, used as ID */
  43. char *name; /* for strcpy(), we cannot use const */
  44. unsigned int nr_acquire;
  45. unsigned int nr_acquired;
  46. unsigned int nr_contended;
  47. unsigned int nr_release;
  48. unsigned int nr_readlock;
  49. unsigned int nr_trylock;
  50. /* these times are in nano sec. */
  51. u64 avg_wait_time;
  52. u64 wait_time_total;
  53. u64 wait_time_min;
  54. u64 wait_time_max;
  55. int discard; /* flag of blacklist */
  56. };
  57. /*
  58. * States of lock_seq_stat
  59. *
  60. * UNINITIALIZED is required for detecting first event of acquire.
  61. * As the nature of lock events, there is no guarantee
  62. * that the first event for the locks are acquire,
  63. * it can be acquired, contended or release.
  64. */
  65. #define SEQ_STATE_UNINITIALIZED 0 /* initial state */
  66. #define SEQ_STATE_RELEASED 1
  67. #define SEQ_STATE_ACQUIRING 2
  68. #define SEQ_STATE_ACQUIRED 3
  69. #define SEQ_STATE_READ_ACQUIRED 4
  70. #define SEQ_STATE_CONTENDED 5
  71. /*
  72. * MAX_LOCK_DEPTH
  73. * Imported from include/linux/sched.h.
  74. * Should this be synchronized?
  75. */
  76. #define MAX_LOCK_DEPTH 48
  77. /*
  78. * struct lock_seq_stat:
  79. * Place to put on state of one lock sequence
  80. * 1) acquire -> acquired -> release
  81. * 2) acquire -> contended -> acquired -> release
  82. * 3) acquire (with read or try) -> release
  83. * 4) Are there other patterns?
  84. */
  85. struct lock_seq_stat {
  86. struct list_head list;
  87. int state;
  88. u64 prev_event_time;
  89. void *addr;
  90. int read_count;
  91. };
  92. struct thread_stat {
  93. struct rb_node rb;
  94. u32 tid;
  95. struct list_head seq_list;
  96. };
  97. static struct rb_root thread_stats;
  98. static struct thread_stat *thread_stat_find(u32 tid)
  99. {
  100. struct rb_node *node;
  101. struct thread_stat *st;
  102. node = thread_stats.rb_node;
  103. while (node) {
  104. st = container_of(node, struct thread_stat, rb);
  105. if (st->tid == tid)
  106. return st;
  107. else if (tid < st->tid)
  108. node = node->rb_left;
  109. else
  110. node = node->rb_right;
  111. }
  112. return NULL;
  113. }
  114. static void thread_stat_insert(struct thread_stat *new)
  115. {
  116. struct rb_node **rb = &thread_stats.rb_node;
  117. struct rb_node *parent = NULL;
  118. struct thread_stat *p;
  119. while (*rb) {
  120. p = container_of(*rb, struct thread_stat, rb);
  121. parent = *rb;
  122. if (new->tid < p->tid)
  123. rb = &(*rb)->rb_left;
  124. else if (new->tid > p->tid)
  125. rb = &(*rb)->rb_right;
  126. else
  127. BUG_ON("inserting invalid thread_stat\n");
  128. }
  129. rb_link_node(&new->rb, parent, rb);
  130. rb_insert_color(&new->rb, &thread_stats);
  131. }
  132. static struct thread_stat *thread_stat_findnew_after_first(u32 tid)
  133. {
  134. struct thread_stat *st;
  135. st = thread_stat_find(tid);
  136. if (st)
  137. return st;
  138. st = zalloc(sizeof(struct thread_stat));
  139. if (!st) {
  140. pr_err("memory allocation failed\n");
  141. return NULL;
  142. }
  143. st->tid = tid;
  144. INIT_LIST_HEAD(&st->seq_list);
  145. thread_stat_insert(st);
  146. return st;
  147. }
  148. static struct thread_stat *thread_stat_findnew_first(u32 tid);
  149. static struct thread_stat *(*thread_stat_findnew)(u32 tid) =
  150. thread_stat_findnew_first;
  151. static struct thread_stat *thread_stat_findnew_first(u32 tid)
  152. {
  153. struct thread_stat *st;
  154. st = zalloc(sizeof(struct thread_stat));
  155. if (!st) {
  156. pr_err("memory allocation failed\n");
  157. return NULL;
  158. }
  159. st->tid = tid;
  160. INIT_LIST_HEAD(&st->seq_list);
  161. rb_link_node(&st->rb, NULL, &thread_stats.rb_node);
  162. rb_insert_color(&st->rb, &thread_stats);
  163. thread_stat_findnew = thread_stat_findnew_after_first;
  164. return st;
  165. }
  166. /* build simple key function one is bigger than two */
  167. #define SINGLE_KEY(member) \
  168. static int lock_stat_key_ ## member(struct lock_stat *one, \
  169. struct lock_stat *two) \
  170. { \
  171. return one->member > two->member; \
  172. }
  173. SINGLE_KEY(nr_acquired)
  174. SINGLE_KEY(nr_contended)
  175. SINGLE_KEY(avg_wait_time)
  176. SINGLE_KEY(wait_time_total)
  177. SINGLE_KEY(wait_time_max)
  178. static int lock_stat_key_wait_time_min(struct lock_stat *one,
  179. struct lock_stat *two)
  180. {
  181. u64 s1 = one->wait_time_min;
  182. u64 s2 = two->wait_time_min;
  183. if (s1 == ULLONG_MAX)
  184. s1 = 0;
  185. if (s2 == ULLONG_MAX)
  186. s2 = 0;
  187. return s1 > s2;
  188. }
  189. struct lock_key {
  190. /*
  191. * name: the value for specify by user
  192. * this should be simpler than raw name of member
  193. * e.g. nr_acquired -> acquired, wait_time_total -> wait_total
  194. */
  195. const char *name;
  196. int (*key)(struct lock_stat*, struct lock_stat*);
  197. };
  198. static const char *sort_key = "acquired";
  199. static int (*compare)(struct lock_stat *, struct lock_stat *);
  200. static struct rb_root result; /* place to store sorted data */
  201. #define DEF_KEY_LOCK(name, fn_suffix) \
  202. { #name, lock_stat_key_ ## fn_suffix }
  203. struct lock_key keys[] = {
  204. DEF_KEY_LOCK(acquired, nr_acquired),
  205. DEF_KEY_LOCK(contended, nr_contended),
  206. DEF_KEY_LOCK(avg_wait, avg_wait_time),
  207. DEF_KEY_LOCK(wait_total, wait_time_total),
  208. DEF_KEY_LOCK(wait_min, wait_time_min),
  209. DEF_KEY_LOCK(wait_max, wait_time_max),
  210. /* extra comparisons much complicated should be here */
  211. { NULL, NULL }
  212. };
  213. static int select_key(void)
  214. {
  215. int i;
  216. for (i = 0; keys[i].name; i++) {
  217. if (!strcmp(keys[i].name, sort_key)) {
  218. compare = keys[i].key;
  219. return 0;
  220. }
  221. }
  222. pr_err("Unknown compare key: %s\n", sort_key);
  223. return -1;
  224. }
  225. static void insert_to_result(struct lock_stat *st,
  226. int (*bigger)(struct lock_stat *, struct lock_stat *))
  227. {
  228. struct rb_node **rb = &result.rb_node;
  229. struct rb_node *parent = NULL;
  230. struct lock_stat *p;
  231. while (*rb) {
  232. p = container_of(*rb, struct lock_stat, rb);
  233. parent = *rb;
  234. if (bigger(st, p))
  235. rb = &(*rb)->rb_left;
  236. else
  237. rb = &(*rb)->rb_right;
  238. }
  239. rb_link_node(&st->rb, parent, rb);
  240. rb_insert_color(&st->rb, &result);
  241. }
  242. /* returns left most element of result, and erase it */
  243. static struct lock_stat *pop_from_result(void)
  244. {
  245. struct rb_node *node = result.rb_node;
  246. if (!node)
  247. return NULL;
  248. while (node->rb_left)
  249. node = node->rb_left;
  250. rb_erase(node, &result);
  251. return container_of(node, struct lock_stat, rb);
  252. }
  253. static struct lock_stat *lock_stat_findnew(void *addr, const char *name)
  254. {
  255. struct list_head *entry = lockhashentry(addr);
  256. struct lock_stat *ret, *new;
  257. list_for_each_entry(ret, entry, hash_entry) {
  258. if (ret->addr == addr)
  259. return ret;
  260. }
  261. new = zalloc(sizeof(struct lock_stat));
  262. if (!new)
  263. goto alloc_failed;
  264. new->addr = addr;
  265. new->name = zalloc(sizeof(char) * strlen(name) + 1);
  266. if (!new->name) {
  267. free(new);
  268. goto alloc_failed;
  269. }
  270. strcpy(new->name, name);
  271. new->wait_time_min = ULLONG_MAX;
  272. list_add(&new->hash_entry, entry);
  273. return new;
  274. alloc_failed:
  275. pr_err("memory allocation failed\n");
  276. return NULL;
  277. }
  278. struct trace_lock_handler {
  279. int (*acquire_event)(struct perf_evsel *evsel,
  280. struct perf_sample *sample);
  281. int (*acquired_event)(struct perf_evsel *evsel,
  282. struct perf_sample *sample);
  283. int (*contended_event)(struct perf_evsel *evsel,
  284. struct perf_sample *sample);
  285. int (*release_event)(struct perf_evsel *evsel,
  286. struct perf_sample *sample);
  287. };
  288. static struct lock_seq_stat *get_seq(struct thread_stat *ts, void *addr)
  289. {
  290. struct lock_seq_stat *seq;
  291. list_for_each_entry(seq, &ts->seq_list, list) {
  292. if (seq->addr == addr)
  293. return seq;
  294. }
  295. seq = zalloc(sizeof(struct lock_seq_stat));
  296. if (!seq) {
  297. pr_err("memory allocation failed\n");
  298. return NULL;
  299. }
  300. seq->state = SEQ_STATE_UNINITIALIZED;
  301. seq->addr = addr;
  302. list_add(&seq->list, &ts->seq_list);
  303. return seq;
  304. }
  305. enum broken_state {
  306. BROKEN_ACQUIRE,
  307. BROKEN_ACQUIRED,
  308. BROKEN_CONTENDED,
  309. BROKEN_RELEASE,
  310. BROKEN_MAX,
  311. };
  312. static int bad_hist[BROKEN_MAX];
  313. enum acquire_flags {
  314. TRY_LOCK = 1,
  315. READ_LOCK = 2,
  316. };
  317. static int report_lock_acquire_event(struct perf_evsel *evsel,
  318. struct perf_sample *sample)
  319. {
  320. void *addr;
  321. struct lock_stat *ls;
  322. struct thread_stat *ts;
  323. struct lock_seq_stat *seq;
  324. const char *name = perf_evsel__strval(evsel, sample, "name");
  325. u64 tmp = perf_evsel__intval(evsel, sample, "lockdep_addr");
  326. int flag = perf_evsel__intval(evsel, sample, "flag");
  327. memcpy(&addr, &tmp, sizeof(void *));
  328. ls = lock_stat_findnew(addr, name);
  329. if (!ls)
  330. return -ENOMEM;
  331. if (ls->discard)
  332. return 0;
  333. ts = thread_stat_findnew(sample->tid);
  334. if (!ts)
  335. return -ENOMEM;
  336. seq = get_seq(ts, addr);
  337. if (!seq)
  338. return -ENOMEM;
  339. switch (seq->state) {
  340. case SEQ_STATE_UNINITIALIZED:
  341. case SEQ_STATE_RELEASED:
  342. if (!flag) {
  343. seq->state = SEQ_STATE_ACQUIRING;
  344. } else {
  345. if (flag & TRY_LOCK)
  346. ls->nr_trylock++;
  347. if (flag & READ_LOCK)
  348. ls->nr_readlock++;
  349. seq->state = SEQ_STATE_READ_ACQUIRED;
  350. seq->read_count = 1;
  351. ls->nr_acquired++;
  352. }
  353. break;
  354. case SEQ_STATE_READ_ACQUIRED:
  355. if (flag & READ_LOCK) {
  356. seq->read_count++;
  357. ls->nr_acquired++;
  358. goto end;
  359. } else {
  360. goto broken;
  361. }
  362. break;
  363. case SEQ_STATE_ACQUIRED:
  364. case SEQ_STATE_ACQUIRING:
  365. case SEQ_STATE_CONTENDED:
  366. broken:
  367. /* broken lock sequence, discard it */
  368. ls->discard = 1;
  369. bad_hist[BROKEN_ACQUIRE]++;
  370. list_del(&seq->list);
  371. free(seq);
  372. goto end;
  373. default:
  374. BUG_ON("Unknown state of lock sequence found!\n");
  375. break;
  376. }
  377. ls->nr_acquire++;
  378. seq->prev_event_time = sample->time;
  379. end:
  380. return 0;
  381. }
  382. static int report_lock_acquired_event(struct perf_evsel *evsel,
  383. struct perf_sample *sample)
  384. {
  385. void *addr;
  386. struct lock_stat *ls;
  387. struct thread_stat *ts;
  388. struct lock_seq_stat *seq;
  389. u64 contended_term;
  390. const char *name = perf_evsel__strval(evsel, sample, "name");
  391. u64 tmp = perf_evsel__intval(evsel, sample, "lockdep_addr");
  392. memcpy(&addr, &tmp, sizeof(void *));
  393. ls = lock_stat_findnew(addr, name);
  394. if (!ls)
  395. return -ENOMEM;
  396. if (ls->discard)
  397. return 0;
  398. ts = thread_stat_findnew(sample->tid);
  399. if (!ts)
  400. return -ENOMEM;
  401. seq = get_seq(ts, addr);
  402. if (!seq)
  403. return -ENOMEM;
  404. switch (seq->state) {
  405. case SEQ_STATE_UNINITIALIZED:
  406. /* orphan event, do nothing */
  407. return 0;
  408. case SEQ_STATE_ACQUIRING:
  409. break;
  410. case SEQ_STATE_CONTENDED:
  411. contended_term = sample->time - seq->prev_event_time;
  412. ls->wait_time_total += contended_term;
  413. if (contended_term < ls->wait_time_min)
  414. ls->wait_time_min = contended_term;
  415. if (ls->wait_time_max < contended_term)
  416. ls->wait_time_max = contended_term;
  417. break;
  418. case SEQ_STATE_RELEASED:
  419. case SEQ_STATE_ACQUIRED:
  420. case SEQ_STATE_READ_ACQUIRED:
  421. /* broken lock sequence, discard it */
  422. ls->discard = 1;
  423. bad_hist[BROKEN_ACQUIRED]++;
  424. list_del(&seq->list);
  425. free(seq);
  426. goto end;
  427. default:
  428. BUG_ON("Unknown state of lock sequence found!\n");
  429. break;
  430. }
  431. seq->state = SEQ_STATE_ACQUIRED;
  432. ls->nr_acquired++;
  433. ls->avg_wait_time = ls->nr_contended ? ls->wait_time_total/ls->nr_contended : 0;
  434. seq->prev_event_time = sample->time;
  435. end:
  436. return 0;
  437. }
  438. static int report_lock_contended_event(struct perf_evsel *evsel,
  439. struct perf_sample *sample)
  440. {
  441. void *addr;
  442. struct lock_stat *ls;
  443. struct thread_stat *ts;
  444. struct lock_seq_stat *seq;
  445. const char *name = perf_evsel__strval(evsel, sample, "name");
  446. u64 tmp = perf_evsel__intval(evsel, sample, "lockdep_addr");
  447. memcpy(&addr, &tmp, sizeof(void *));
  448. ls = lock_stat_findnew(addr, name);
  449. if (!ls)
  450. return -ENOMEM;
  451. if (ls->discard)
  452. return 0;
  453. ts = thread_stat_findnew(sample->tid);
  454. if (!ts)
  455. return -ENOMEM;
  456. seq = get_seq(ts, addr);
  457. if (!seq)
  458. return -ENOMEM;
  459. switch (seq->state) {
  460. case SEQ_STATE_UNINITIALIZED:
  461. /* orphan event, do nothing */
  462. return 0;
  463. case SEQ_STATE_ACQUIRING:
  464. break;
  465. case SEQ_STATE_RELEASED:
  466. case SEQ_STATE_ACQUIRED:
  467. case SEQ_STATE_READ_ACQUIRED:
  468. case SEQ_STATE_CONTENDED:
  469. /* broken lock sequence, discard it */
  470. ls->discard = 1;
  471. bad_hist[BROKEN_CONTENDED]++;
  472. list_del(&seq->list);
  473. free(seq);
  474. goto end;
  475. default:
  476. BUG_ON("Unknown state of lock sequence found!\n");
  477. break;
  478. }
  479. seq->state = SEQ_STATE_CONTENDED;
  480. ls->nr_contended++;
  481. ls->avg_wait_time = ls->wait_time_total/ls->nr_contended;
  482. seq->prev_event_time = sample->time;
  483. end:
  484. return 0;
  485. }
  486. static int report_lock_release_event(struct perf_evsel *evsel,
  487. struct perf_sample *sample)
  488. {
  489. void *addr;
  490. struct lock_stat *ls;
  491. struct thread_stat *ts;
  492. struct lock_seq_stat *seq;
  493. const char *name = perf_evsel__strval(evsel, sample, "name");
  494. u64 tmp = perf_evsel__intval(evsel, sample, "lockdep_addr");
  495. memcpy(&addr, &tmp, sizeof(void *));
  496. ls = lock_stat_findnew(addr, name);
  497. if (!ls)
  498. return -ENOMEM;
  499. if (ls->discard)
  500. return 0;
  501. ts = thread_stat_findnew(sample->tid);
  502. if (!ts)
  503. return -ENOMEM;
  504. seq = get_seq(ts, addr);
  505. if (!seq)
  506. return -ENOMEM;
  507. switch (seq->state) {
  508. case SEQ_STATE_UNINITIALIZED:
  509. goto end;
  510. case SEQ_STATE_ACQUIRED:
  511. break;
  512. case SEQ_STATE_READ_ACQUIRED:
  513. seq->read_count--;
  514. BUG_ON(seq->read_count < 0);
  515. if (!seq->read_count) {
  516. ls->nr_release++;
  517. goto end;
  518. }
  519. break;
  520. case SEQ_STATE_ACQUIRING:
  521. case SEQ_STATE_CONTENDED:
  522. case SEQ_STATE_RELEASED:
  523. /* broken lock sequence, discard it */
  524. ls->discard = 1;
  525. bad_hist[BROKEN_RELEASE]++;
  526. goto free_seq;
  527. default:
  528. BUG_ON("Unknown state of lock sequence found!\n");
  529. break;
  530. }
  531. ls->nr_release++;
  532. free_seq:
  533. list_del(&seq->list);
  534. free(seq);
  535. end:
  536. return 0;
  537. }
  538. /* lock oriented handlers */
  539. /* TODO: handlers for CPU oriented, thread oriented */
  540. static struct trace_lock_handler report_lock_ops = {
  541. .acquire_event = report_lock_acquire_event,
  542. .acquired_event = report_lock_acquired_event,
  543. .contended_event = report_lock_contended_event,
  544. .release_event = report_lock_release_event,
  545. };
  546. static struct trace_lock_handler *trace_handler;
  547. static int perf_evsel__process_lock_acquire(struct perf_evsel *evsel,
  548. struct perf_sample *sample)
  549. {
  550. if (trace_handler->acquire_event)
  551. return trace_handler->acquire_event(evsel, sample);
  552. return 0;
  553. }
  554. static int perf_evsel__process_lock_acquired(struct perf_evsel *evsel,
  555. struct perf_sample *sample)
  556. {
  557. if (trace_handler->acquired_event)
  558. return trace_handler->acquired_event(evsel, sample);
  559. return 0;
  560. }
  561. static int perf_evsel__process_lock_contended(struct perf_evsel *evsel,
  562. struct perf_sample *sample)
  563. {
  564. if (trace_handler->contended_event)
  565. return trace_handler->contended_event(evsel, sample);
  566. return 0;
  567. }
  568. static int perf_evsel__process_lock_release(struct perf_evsel *evsel,
  569. struct perf_sample *sample)
  570. {
  571. if (trace_handler->release_event)
  572. return trace_handler->release_event(evsel, sample);
  573. return 0;
  574. }
  575. static void print_bad_events(int bad, int total)
  576. {
  577. /* Output for debug, this have to be removed */
  578. int i;
  579. const char *name[4] =
  580. { "acquire", "acquired", "contended", "release" };
  581. pr_info("\n=== output for debug===\n\n");
  582. pr_info("bad: %d, total: %d\n", bad, total);
  583. pr_info("bad rate: %.2f %%\n", (double)bad / (double)total * 100);
  584. pr_info("histogram of events caused bad sequence\n");
  585. for (i = 0; i < BROKEN_MAX; i++)
  586. pr_info(" %10s: %d\n", name[i], bad_hist[i]);
  587. }
  588. /* TODO: various way to print, coloring, nano or milli sec */
  589. static void print_result(void)
  590. {
  591. struct lock_stat *st;
  592. char cut_name[20];
  593. int bad, total;
  594. pr_info("%20s ", "Name");
  595. pr_info("%10s ", "acquired");
  596. pr_info("%10s ", "contended");
  597. pr_info("%15s ", "avg wait (ns)");
  598. pr_info("%15s ", "total wait (ns)");
  599. pr_info("%15s ", "max wait (ns)");
  600. pr_info("%15s ", "min wait (ns)");
  601. pr_info("\n\n");
  602. bad = total = 0;
  603. while ((st = pop_from_result())) {
  604. total++;
  605. if (st->discard) {
  606. bad++;
  607. continue;
  608. }
  609. bzero(cut_name, 20);
  610. if (strlen(st->name) < 16) {
  611. /* output raw name */
  612. pr_info("%20s ", st->name);
  613. } else {
  614. strncpy(cut_name, st->name, 16);
  615. cut_name[16] = '.';
  616. cut_name[17] = '.';
  617. cut_name[18] = '.';
  618. cut_name[19] = '\0';
  619. /* cut off name for saving output style */
  620. pr_info("%20s ", cut_name);
  621. }
  622. pr_info("%10u ", st->nr_acquired);
  623. pr_info("%10u ", st->nr_contended);
  624. pr_info("%15" PRIu64 " ", st->avg_wait_time);
  625. pr_info("%15" PRIu64 " ", st->wait_time_total);
  626. pr_info("%15" PRIu64 " ", st->wait_time_max);
  627. pr_info("%15" PRIu64 " ", st->wait_time_min == ULLONG_MAX ?
  628. 0 : st->wait_time_min);
  629. pr_info("\n");
  630. }
  631. print_bad_events(bad, total);
  632. }
  633. static bool info_threads, info_map;
  634. static void dump_threads(void)
  635. {
  636. struct thread_stat *st;
  637. struct rb_node *node;
  638. struct thread *t;
  639. pr_info("%10s: comm\n", "Thread ID");
  640. node = rb_first(&thread_stats);
  641. while (node) {
  642. st = container_of(node, struct thread_stat, rb);
  643. t = perf_session__findnew(session, st->tid);
  644. pr_info("%10d: %s\n", st->tid, thread__comm_str(t));
  645. node = rb_next(node);
  646. thread__put(t);
  647. };
  648. }
  649. static void dump_map(void)
  650. {
  651. unsigned int i;
  652. struct lock_stat *st;
  653. pr_info("Address of instance: name of class\n");
  654. for (i = 0; i < LOCKHASH_SIZE; i++) {
  655. list_for_each_entry(st, &lockhash_table[i], hash_entry) {
  656. pr_info(" %p: %s\n", st->addr, st->name);
  657. }
  658. }
  659. }
  660. static int dump_info(void)
  661. {
  662. int rc = 0;
  663. if (info_threads)
  664. dump_threads();
  665. else if (info_map)
  666. dump_map();
  667. else {
  668. rc = -1;
  669. pr_err("Unknown type of information\n");
  670. }
  671. return rc;
  672. }
  673. typedef int (*tracepoint_handler)(struct perf_evsel *evsel,
  674. struct perf_sample *sample);
  675. static int process_sample_event(struct perf_tool *tool __maybe_unused,
  676. union perf_event *event,
  677. struct perf_sample *sample,
  678. struct perf_evsel *evsel,
  679. struct machine *machine)
  680. {
  681. int err = 0;
  682. struct thread *thread = machine__findnew_thread(machine, sample->pid,
  683. sample->tid);
  684. if (thread == NULL) {
  685. pr_debug("problem processing %d event, skipping it.\n",
  686. event->header.type);
  687. return -1;
  688. }
  689. if (evsel->handler != NULL) {
  690. tracepoint_handler f = evsel->handler;
  691. err = f(evsel, sample);
  692. }
  693. thread__put(thread);
  694. return err;
  695. }
  696. static void sort_result(void)
  697. {
  698. unsigned int i;
  699. struct lock_stat *st;
  700. for (i = 0; i < LOCKHASH_SIZE; i++) {
  701. list_for_each_entry(st, &lockhash_table[i], hash_entry) {
  702. insert_to_result(st, compare);
  703. }
  704. }
  705. }
  706. static const struct perf_evsel_str_handler lock_tracepoints[] = {
  707. { "lock:lock_acquire", perf_evsel__process_lock_acquire, }, /* CONFIG_LOCKDEP */
  708. { "lock:lock_acquired", perf_evsel__process_lock_acquired, }, /* CONFIG_LOCKDEP, CONFIG_LOCK_STAT */
  709. { "lock:lock_contended", perf_evsel__process_lock_contended, }, /* CONFIG_LOCKDEP, CONFIG_LOCK_STAT */
  710. { "lock:lock_release", perf_evsel__process_lock_release, }, /* CONFIG_LOCKDEP */
  711. };
  712. static bool force;
  713. static int __cmd_report(bool display_info)
  714. {
  715. int err = -EINVAL;
  716. struct perf_tool eops = {
  717. .sample = process_sample_event,
  718. .comm = perf_event__process_comm,
  719. .namespaces = perf_event__process_namespaces,
  720. .ordered_events = true,
  721. };
  722. struct perf_data_file file = {
  723. .path = input_name,
  724. .mode = PERF_DATA_MODE_READ,
  725. .force = force,
  726. };
  727. session = perf_session__new(&file, false, &eops);
  728. if (!session) {
  729. pr_err("Initializing perf session failed\n");
  730. return -1;
  731. }
  732. symbol__init(&session->header.env);
  733. if (!perf_session__has_traces(session, "lock record"))
  734. goto out_delete;
  735. if (perf_session__set_tracepoints_handlers(session, lock_tracepoints)) {
  736. pr_err("Initializing perf session tracepoint handlers failed\n");
  737. goto out_delete;
  738. }
  739. if (select_key())
  740. goto out_delete;
  741. err = perf_session__process_events(session);
  742. if (err)
  743. goto out_delete;
  744. setup_pager();
  745. if (display_info) /* used for info subcommand */
  746. err = dump_info();
  747. else {
  748. sort_result();
  749. print_result();
  750. }
  751. out_delete:
  752. perf_session__delete(session);
  753. return err;
  754. }
  755. static int __cmd_record(int argc, const char **argv)
  756. {
  757. const char *record_args[] = {
  758. "record", "-R", "-m", "1024", "-c", "1",
  759. };
  760. unsigned int rec_argc, i, j, ret;
  761. const char **rec_argv;
  762. for (i = 0; i < ARRAY_SIZE(lock_tracepoints); i++) {
  763. if (!is_valid_tracepoint(lock_tracepoints[i].name)) {
  764. pr_err("tracepoint %s is not enabled. "
  765. "Are CONFIG_LOCKDEP and CONFIG_LOCK_STAT enabled?\n",
  766. lock_tracepoints[i].name);
  767. return 1;
  768. }
  769. }
  770. rec_argc = ARRAY_SIZE(record_args) + argc - 1;
  771. /* factor of 2 is for -e in front of each tracepoint */
  772. rec_argc += 2 * ARRAY_SIZE(lock_tracepoints);
  773. rec_argv = calloc(rec_argc + 1, sizeof(char *));
  774. if (!rec_argv)
  775. return -ENOMEM;
  776. for (i = 0; i < ARRAY_SIZE(record_args); i++)
  777. rec_argv[i] = strdup(record_args[i]);
  778. for (j = 0; j < ARRAY_SIZE(lock_tracepoints); j++) {
  779. rec_argv[i++] = "-e";
  780. rec_argv[i++] = strdup(lock_tracepoints[j].name);
  781. }
  782. for (j = 1; j < (unsigned int)argc; j++, i++)
  783. rec_argv[i] = argv[j];
  784. BUG_ON(i != rec_argc);
  785. ret = cmd_record(i, rec_argv);
  786. free(rec_argv);
  787. return ret;
  788. }
  789. int cmd_lock(int argc, const char **argv)
  790. {
  791. const struct option lock_options[] = {
  792. OPT_STRING('i', "input", &input_name, "file", "input file name"),
  793. OPT_INCR('v', "verbose", &verbose, "be more verbose (show symbol address, etc)"),
  794. OPT_BOOLEAN('D', "dump-raw-trace", &dump_trace, "dump raw trace in ASCII"),
  795. OPT_BOOLEAN('f', "force", &force, "don't complain, do it"),
  796. OPT_END()
  797. };
  798. const struct option info_options[] = {
  799. OPT_BOOLEAN('t', "threads", &info_threads,
  800. "dump thread list in perf.data"),
  801. OPT_BOOLEAN('m', "map", &info_map,
  802. "map of lock instances (address:name table)"),
  803. OPT_PARENT(lock_options)
  804. };
  805. const struct option report_options[] = {
  806. OPT_STRING('k', "key", &sort_key, "acquired",
  807. "key for sorting (acquired / contended / avg_wait / wait_total / wait_max / wait_min)"),
  808. /* TODO: type */
  809. OPT_PARENT(lock_options)
  810. };
  811. const char * const info_usage[] = {
  812. "perf lock info [<options>]",
  813. NULL
  814. };
  815. const char *const lock_subcommands[] = { "record", "report", "script",
  816. "info", NULL };
  817. const char *lock_usage[] = {
  818. NULL,
  819. NULL
  820. };
  821. const char * const report_usage[] = {
  822. "perf lock report [<options>]",
  823. NULL
  824. };
  825. unsigned int i;
  826. int rc = 0;
  827. for (i = 0; i < LOCKHASH_SIZE; i++)
  828. INIT_LIST_HEAD(lockhash_table + i);
  829. argc = parse_options_subcommand(argc, argv, lock_options, lock_subcommands,
  830. lock_usage, PARSE_OPT_STOP_AT_NON_OPTION);
  831. if (!argc)
  832. usage_with_options(lock_usage, lock_options);
  833. if (!strncmp(argv[0], "rec", 3)) {
  834. return __cmd_record(argc, argv);
  835. } else if (!strncmp(argv[0], "report", 6)) {
  836. trace_handler = &report_lock_ops;
  837. if (argc) {
  838. argc = parse_options(argc, argv,
  839. report_options, report_usage, 0);
  840. if (argc)
  841. usage_with_options(report_usage, report_options);
  842. }
  843. rc = __cmd_report(false);
  844. } else if (!strcmp(argv[0], "script")) {
  845. /* Aliased to 'perf script' */
  846. return cmd_script(argc, argv);
  847. } else if (!strcmp(argv[0], "info")) {
  848. if (argc) {
  849. argc = parse_options(argc, argv,
  850. info_options, info_usage, 0);
  851. if (argc)
  852. usage_with_options(info_usage, info_options);
  853. }
  854. /* recycling report_lock_ops */
  855. trace_handler = &report_lock_ops;
  856. rc = __cmd_report(true);
  857. } else {
  858. usage_with_options(lock_usage, lock_options);
  859. }
  860. return rc;
  861. }