futex_requeue_pi.c 10 KB

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  1. /******************************************************************************
  2. *
  3. * Copyright © International Business Machines Corp., 2006-2008
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation; either version 2 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * DESCRIPTION
  11. * This test excercises the futex syscall op codes needed for requeuing
  12. * priority inheritance aware POSIX condition variables and mutexes.
  13. *
  14. * AUTHORS
  15. * Sripathi Kodi <sripathik@in.ibm.com>
  16. * Darren Hart <dvhart@linux.intel.com>
  17. *
  18. * HISTORY
  19. * 2008-Jan-13: Initial version by Sripathi Kodi <sripathik@in.ibm.com>
  20. * 2009-Nov-6: futex test adaptation by Darren Hart <dvhart@linux.intel.com>
  21. *
  22. *****************************************************************************/
  23. #include <errno.h>
  24. #include <limits.h>
  25. #include <pthread.h>
  26. #include <stdio.h>
  27. #include <stdlib.h>
  28. #include <signal.h>
  29. #include <string.h>
  30. #include "atomic.h"
  31. #include "futextest.h"
  32. #include "logging.h"
  33. #define MAX_WAKE_ITERS 1000
  34. #define THREAD_MAX 10
  35. #define SIGNAL_PERIOD_US 100
  36. atomic_t waiters_blocked = ATOMIC_INITIALIZER;
  37. atomic_t waiters_woken = ATOMIC_INITIALIZER;
  38. futex_t f1 = FUTEX_INITIALIZER;
  39. futex_t f2 = FUTEX_INITIALIZER;
  40. futex_t wake_complete = FUTEX_INITIALIZER;
  41. /* Test option defaults */
  42. static long timeout_ns;
  43. static int broadcast;
  44. static int owner;
  45. static int locked;
  46. struct thread_arg {
  47. long id;
  48. struct timespec *timeout;
  49. int lock;
  50. int ret;
  51. };
  52. #define THREAD_ARG_INITIALIZER { 0, NULL, 0, 0 }
  53. void usage(char *prog)
  54. {
  55. printf("Usage: %s\n", prog);
  56. printf(" -b Broadcast wakeup (all waiters)\n");
  57. printf(" -c Use color\n");
  58. printf(" -h Display this help message\n");
  59. printf(" -l Lock the pi futex across requeue\n");
  60. printf(" -o Use a third party pi futex owner during requeue (cancels -l)\n");
  61. printf(" -t N Timeout in nanoseconds (default: 0)\n");
  62. printf(" -v L Verbosity level: %d=QUIET %d=CRITICAL %d=INFO\n",
  63. VQUIET, VCRITICAL, VINFO);
  64. }
  65. int create_rt_thread(pthread_t *pth, void*(*func)(void *), void *arg,
  66. int policy, int prio)
  67. {
  68. int ret;
  69. struct sched_param schedp;
  70. pthread_attr_t attr;
  71. pthread_attr_init(&attr);
  72. memset(&schedp, 0, sizeof(schedp));
  73. ret = pthread_attr_setinheritsched(&attr, PTHREAD_EXPLICIT_SCHED);
  74. if (ret) {
  75. error("pthread_attr_setinheritsched\n", ret);
  76. return -1;
  77. }
  78. ret = pthread_attr_setschedpolicy(&attr, policy);
  79. if (ret) {
  80. error("pthread_attr_setschedpolicy\n", ret);
  81. return -1;
  82. }
  83. schedp.sched_priority = prio;
  84. ret = pthread_attr_setschedparam(&attr, &schedp);
  85. if (ret) {
  86. error("pthread_attr_setschedparam\n", ret);
  87. return -1;
  88. }
  89. ret = pthread_create(pth, &attr, func, arg);
  90. if (ret) {
  91. error("pthread_create\n", ret);
  92. return -1;
  93. }
  94. return 0;
  95. }
  96. void *waiterfn(void *arg)
  97. {
  98. struct thread_arg *args = (struct thread_arg *)arg;
  99. futex_t old_val;
  100. info("Waiter %ld: running\n", args->id);
  101. /* Each thread sleeps for a different amount of time
  102. * This is to avoid races, because we don't lock the
  103. * external mutex here */
  104. usleep(1000 * (long)args->id);
  105. old_val = f1;
  106. atomic_inc(&waiters_blocked);
  107. info("Calling futex_wait_requeue_pi: %p (%u) -> %p\n",
  108. &f1, f1, &f2);
  109. args->ret = futex_wait_requeue_pi(&f1, old_val, &f2, args->timeout,
  110. FUTEX_PRIVATE_FLAG);
  111. info("waiter %ld woke with %d %s\n", args->id, args->ret,
  112. args->ret < 0 ? strerror(errno) : "");
  113. atomic_inc(&waiters_woken);
  114. if (args->ret < 0) {
  115. if (args->timeout && errno == ETIMEDOUT)
  116. args->ret = 0;
  117. else {
  118. args->ret = RET_ERROR;
  119. error("futex_wait_requeue_pi\n", errno);
  120. }
  121. futex_lock_pi(&f2, NULL, 0, FUTEX_PRIVATE_FLAG);
  122. }
  123. futex_unlock_pi(&f2, FUTEX_PRIVATE_FLAG);
  124. info("Waiter %ld: exiting with %d\n", args->id, args->ret);
  125. pthread_exit((void *)&args->ret);
  126. }
  127. void *broadcast_wakerfn(void *arg)
  128. {
  129. struct thread_arg *args = (struct thread_arg *)arg;
  130. int nr_requeue = INT_MAX;
  131. int task_count = 0;
  132. futex_t old_val;
  133. int nr_wake = 1;
  134. int i = 0;
  135. info("Waker: waiting for waiters to block\n");
  136. while (waiters_blocked.val < THREAD_MAX)
  137. usleep(1000);
  138. usleep(1000);
  139. info("Waker: Calling broadcast\n");
  140. if (args->lock) {
  141. info("Calling FUTEX_LOCK_PI on mutex=%x @ %p\n", f2, &f2);
  142. futex_lock_pi(&f2, NULL, 0, FUTEX_PRIVATE_FLAG);
  143. }
  144. continue_requeue:
  145. old_val = f1;
  146. args->ret = futex_cmp_requeue_pi(&f1, old_val, &f2, nr_wake, nr_requeue,
  147. FUTEX_PRIVATE_FLAG);
  148. if (args->ret < 0) {
  149. args->ret = RET_ERROR;
  150. error("FUTEX_CMP_REQUEUE_PI failed\n", errno);
  151. } else if (++i < MAX_WAKE_ITERS) {
  152. task_count += args->ret;
  153. if (task_count < THREAD_MAX - waiters_woken.val)
  154. goto continue_requeue;
  155. } else {
  156. error("max broadcast iterations (%d) reached with %d/%d tasks woken or requeued\n",
  157. 0, MAX_WAKE_ITERS, task_count, THREAD_MAX);
  158. args->ret = RET_ERROR;
  159. }
  160. futex_wake(&wake_complete, 1, FUTEX_PRIVATE_FLAG);
  161. if (args->lock)
  162. futex_unlock_pi(&f2, FUTEX_PRIVATE_FLAG);
  163. if (args->ret > 0)
  164. args->ret = task_count;
  165. info("Waker: exiting with %d\n", args->ret);
  166. pthread_exit((void *)&args->ret);
  167. }
  168. void *signal_wakerfn(void *arg)
  169. {
  170. struct thread_arg *args = (struct thread_arg *)arg;
  171. unsigned int old_val;
  172. int nr_requeue = 0;
  173. int task_count = 0;
  174. int nr_wake = 1;
  175. int i = 0;
  176. info("Waker: waiting for waiters to block\n");
  177. while (waiters_blocked.val < THREAD_MAX)
  178. usleep(1000);
  179. usleep(1000);
  180. while (task_count < THREAD_MAX && waiters_woken.val < THREAD_MAX) {
  181. info("task_count: %d, waiters_woken: %d\n",
  182. task_count, waiters_woken.val);
  183. if (args->lock) {
  184. info("Calling FUTEX_LOCK_PI on mutex=%x @ %p\n",
  185. f2, &f2);
  186. futex_lock_pi(&f2, NULL, 0, FUTEX_PRIVATE_FLAG);
  187. }
  188. info("Waker: Calling signal\n");
  189. /* cond_signal */
  190. old_val = f1;
  191. args->ret = futex_cmp_requeue_pi(&f1, old_val, &f2,
  192. nr_wake, nr_requeue,
  193. FUTEX_PRIVATE_FLAG);
  194. if (args->ret < 0)
  195. args->ret = -errno;
  196. info("futex: %x\n", f2);
  197. if (args->lock) {
  198. info("Calling FUTEX_UNLOCK_PI on mutex=%x @ %p\n",
  199. f2, &f2);
  200. futex_unlock_pi(&f2, FUTEX_PRIVATE_FLAG);
  201. }
  202. info("futex: %x\n", f2);
  203. if (args->ret < 0) {
  204. error("FUTEX_CMP_REQUEUE_PI failed\n", errno);
  205. args->ret = RET_ERROR;
  206. break;
  207. }
  208. task_count += args->ret;
  209. usleep(SIGNAL_PERIOD_US);
  210. i++;
  211. /* we have to loop at least THREAD_MAX times */
  212. if (i > MAX_WAKE_ITERS + THREAD_MAX) {
  213. error("max signaling iterations (%d) reached, giving up on pending waiters.\n",
  214. 0, MAX_WAKE_ITERS + THREAD_MAX);
  215. args->ret = RET_ERROR;
  216. break;
  217. }
  218. }
  219. futex_wake(&wake_complete, 1, FUTEX_PRIVATE_FLAG);
  220. if (args->ret >= 0)
  221. args->ret = task_count;
  222. info("Waker: exiting with %d\n", args->ret);
  223. info("Waker: waiters_woken: %d\n", waiters_woken.val);
  224. pthread_exit((void *)&args->ret);
  225. }
  226. void *third_party_blocker(void *arg)
  227. {
  228. struct thread_arg *args = (struct thread_arg *)arg;
  229. int ret2 = 0;
  230. args->ret = futex_lock_pi(&f2, NULL, 0, FUTEX_PRIVATE_FLAG);
  231. if (args->ret)
  232. goto out;
  233. args->ret = futex_wait(&wake_complete, wake_complete, NULL,
  234. FUTEX_PRIVATE_FLAG);
  235. ret2 = futex_unlock_pi(&f2, FUTEX_PRIVATE_FLAG);
  236. out:
  237. if (args->ret || ret2) {
  238. error("third_party_blocker() futex error", 0);
  239. args->ret = RET_ERROR;
  240. }
  241. pthread_exit((void *)&args->ret);
  242. }
  243. int unit_test(int broadcast, long lock, int third_party_owner, long timeout_ns)
  244. {
  245. void *(*wakerfn)(void *) = signal_wakerfn;
  246. struct thread_arg blocker_arg = THREAD_ARG_INITIALIZER;
  247. struct thread_arg waker_arg = THREAD_ARG_INITIALIZER;
  248. pthread_t waiter[THREAD_MAX], waker, blocker;
  249. struct timespec ts, *tsp = NULL;
  250. struct thread_arg args[THREAD_MAX];
  251. int *waiter_ret;
  252. int i, ret = RET_PASS;
  253. if (timeout_ns) {
  254. time_t secs;
  255. info("timeout_ns = %ld\n", timeout_ns);
  256. ret = clock_gettime(CLOCK_MONOTONIC, &ts);
  257. secs = (ts.tv_nsec + timeout_ns) / 1000000000;
  258. ts.tv_nsec = ((int64_t)ts.tv_nsec + timeout_ns) % 1000000000;
  259. ts.tv_sec += secs;
  260. info("ts.tv_sec = %ld\n", ts.tv_sec);
  261. info("ts.tv_nsec = %ld\n", ts.tv_nsec);
  262. tsp = &ts;
  263. }
  264. if (broadcast)
  265. wakerfn = broadcast_wakerfn;
  266. if (third_party_owner) {
  267. if (create_rt_thread(&blocker, third_party_blocker,
  268. (void *)&blocker_arg, SCHED_FIFO, 1)) {
  269. error("Creating third party blocker thread failed\n",
  270. errno);
  271. ret = RET_ERROR;
  272. goto out;
  273. }
  274. }
  275. atomic_set(&waiters_woken, 0);
  276. for (i = 0; i < THREAD_MAX; i++) {
  277. args[i].id = i;
  278. args[i].timeout = tsp;
  279. info("Starting thread %d\n", i);
  280. if (create_rt_thread(&waiter[i], waiterfn, (void *)&args[i],
  281. SCHED_FIFO, 1)) {
  282. error("Creating waiting thread failed\n", errno);
  283. ret = RET_ERROR;
  284. goto out;
  285. }
  286. }
  287. waker_arg.lock = lock;
  288. if (create_rt_thread(&waker, wakerfn, (void *)&waker_arg,
  289. SCHED_FIFO, 1)) {
  290. error("Creating waker thread failed\n", errno);
  291. ret = RET_ERROR;
  292. goto out;
  293. }
  294. /* Wait for threads to finish */
  295. /* Store the first error or failure encountered in waiter_ret */
  296. waiter_ret = &args[0].ret;
  297. for (i = 0; i < THREAD_MAX; i++)
  298. pthread_join(waiter[i],
  299. *waiter_ret ? NULL : (void **)&waiter_ret);
  300. if (third_party_owner)
  301. pthread_join(blocker, NULL);
  302. pthread_join(waker, NULL);
  303. out:
  304. if (!ret) {
  305. if (*waiter_ret)
  306. ret = *waiter_ret;
  307. else if (waker_arg.ret < 0)
  308. ret = waker_arg.ret;
  309. else if (blocker_arg.ret)
  310. ret = blocker_arg.ret;
  311. }
  312. return ret;
  313. }
  314. int main(int argc, char *argv[])
  315. {
  316. int c, ret;
  317. while ((c = getopt(argc, argv, "bchlot:v:")) != -1) {
  318. switch (c) {
  319. case 'b':
  320. broadcast = 1;
  321. break;
  322. case 'c':
  323. log_color(1);
  324. break;
  325. case 'h':
  326. usage(basename(argv[0]));
  327. exit(0);
  328. case 'l':
  329. locked = 1;
  330. break;
  331. case 'o':
  332. owner = 1;
  333. locked = 0;
  334. break;
  335. case 't':
  336. timeout_ns = atoi(optarg);
  337. break;
  338. case 'v':
  339. log_verbosity(atoi(optarg));
  340. break;
  341. default:
  342. usage(basename(argv[0]));
  343. exit(1);
  344. }
  345. }
  346. printf("%s: Test requeue functionality\n", basename(argv[0]));
  347. printf("\tArguments: broadcast=%d locked=%d owner=%d timeout=%ldns\n",
  348. broadcast, locked, owner, timeout_ns);
  349. /*
  350. * FIXME: unit_test is obsolete now that we parse options and the
  351. * various style of runs are done by run.sh - simplify the code and move
  352. * unit_test into main()
  353. */
  354. ret = unit_test(broadcast, locked, owner, timeout_ns);
  355. print_result(ret);
  356. return ret;
  357. }