rcutorture.c 60 KB

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  1. /*
  2. * Read-Copy Update module-based torture test facility
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation; either version 2 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, write to the Free Software
  16. * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  17. *
  18. * Copyright (C) IBM Corporation, 2005, 2006
  19. *
  20. * Authors: Paul E. McKenney <paulmck@us.ibm.com>
  21. * Josh Triplett <josh@freedesktop.org>
  22. *
  23. * See also: Documentation/RCU/torture.txt
  24. */
  25. #include <linux/types.h>
  26. #include <linux/kernel.h>
  27. #include <linux/init.h>
  28. #include <linux/module.h>
  29. #include <linux/kthread.h>
  30. #include <linux/err.h>
  31. #include <linux/spinlock.h>
  32. #include <linux/smp.h>
  33. #include <linux/rcupdate.h>
  34. #include <linux/interrupt.h>
  35. #include <linux/sched.h>
  36. #include <linux/atomic.h>
  37. #include <linux/bitops.h>
  38. #include <linux/completion.h>
  39. #include <linux/moduleparam.h>
  40. #include <linux/percpu.h>
  41. #include <linux/notifier.h>
  42. #include <linux/reboot.h>
  43. #include <linux/freezer.h>
  44. #include <linux/cpu.h>
  45. #include <linux/delay.h>
  46. #include <linux/stat.h>
  47. #include <linux/srcu.h>
  48. #include <linux/slab.h>
  49. #include <asm/byteorder.h>
  50. MODULE_LICENSE("GPL");
  51. MODULE_AUTHOR("Paul E. McKenney <paulmck@us.ibm.com> and "
  52. "Josh Triplett <josh@freedesktop.org>");
  53. static int nreaders = -1; /* # reader threads, defaults to 2*ncpus */
  54. static int nfakewriters = 4; /* # fake writer threads */
  55. static int stat_interval; /* Interval between stats, in seconds. */
  56. /* Defaults to "only at end of test". */
  57. static bool verbose; /* Print more debug info. */
  58. static bool test_no_idle_hz; /* Test RCU's support for tickless idle CPUs. */
  59. static int shuffle_interval = 3; /* Interval between shuffles (in sec)*/
  60. static int stutter = 5; /* Start/stop testing interval (in sec) */
  61. static int irqreader = 1; /* RCU readers from irq (timers). */
  62. static int fqs_duration; /* Duration of bursts (us), 0 to disable. */
  63. static int fqs_holdoff; /* Hold time within burst (us). */
  64. static int fqs_stutter = 3; /* Wait time between bursts (s). */
  65. static int n_barrier_cbs; /* Number of callbacks to test RCU barriers. */
  66. static int onoff_interval; /* Wait time between CPU hotplugs, 0=disable. */
  67. static int onoff_holdoff; /* Seconds after boot before CPU hotplugs. */
  68. static int shutdown_secs; /* Shutdown time (s). <=0 for no shutdown. */
  69. static int stall_cpu; /* CPU-stall duration (s). 0 for no stall. */
  70. static int stall_cpu_holdoff = 10; /* Time to wait until stall (s). */
  71. static int test_boost = 1; /* Test RCU prio boost: 0=no, 1=maybe, 2=yes. */
  72. static int test_boost_interval = 7; /* Interval between boost tests, seconds. */
  73. static int test_boost_duration = 4; /* Duration of each boost test, seconds. */
  74. static char *torture_type = "rcu"; /* What RCU implementation to torture. */
  75. module_param(nreaders, int, 0444);
  76. MODULE_PARM_DESC(nreaders, "Number of RCU reader threads");
  77. module_param(nfakewriters, int, 0444);
  78. MODULE_PARM_DESC(nfakewriters, "Number of RCU fake writer threads");
  79. module_param(stat_interval, int, 0644);
  80. MODULE_PARM_DESC(stat_interval, "Number of seconds between stats printk()s");
  81. module_param(verbose, bool, 0444);
  82. MODULE_PARM_DESC(verbose, "Enable verbose debugging printk()s");
  83. module_param(test_no_idle_hz, bool, 0444);
  84. MODULE_PARM_DESC(test_no_idle_hz, "Test support for tickless idle CPUs");
  85. module_param(shuffle_interval, int, 0444);
  86. MODULE_PARM_DESC(shuffle_interval, "Number of seconds between shuffles");
  87. module_param(stutter, int, 0444);
  88. MODULE_PARM_DESC(stutter, "Number of seconds to run/halt test");
  89. module_param(irqreader, int, 0444);
  90. MODULE_PARM_DESC(irqreader, "Allow RCU readers from irq handlers");
  91. module_param(fqs_duration, int, 0444);
  92. MODULE_PARM_DESC(fqs_duration, "Duration of fqs bursts (us)");
  93. module_param(fqs_holdoff, int, 0444);
  94. MODULE_PARM_DESC(fqs_holdoff, "Holdoff time within fqs bursts (us)");
  95. module_param(fqs_stutter, int, 0444);
  96. MODULE_PARM_DESC(fqs_stutter, "Wait time between fqs bursts (s)");
  97. module_param(n_barrier_cbs, int, 0444);
  98. MODULE_PARM_DESC(n_barrier_cbs, "# of callbacks/kthreads for barrier testing");
  99. module_param(onoff_interval, int, 0444);
  100. MODULE_PARM_DESC(onoff_interval, "Time between CPU hotplugs (s), 0=disable");
  101. module_param(onoff_holdoff, int, 0444);
  102. MODULE_PARM_DESC(onoff_holdoff, "Time after boot before CPU hotplugs (s)");
  103. module_param(shutdown_secs, int, 0444);
  104. MODULE_PARM_DESC(shutdown_secs, "Shutdown time (s), zero to disable.");
  105. module_param(stall_cpu, int, 0444);
  106. MODULE_PARM_DESC(stall_cpu, "Stall duration (s), zero to disable.");
  107. module_param(stall_cpu_holdoff, int, 0444);
  108. MODULE_PARM_DESC(stall_cpu_holdoff, "Time to wait before starting stall (s).");
  109. module_param(test_boost, int, 0444);
  110. MODULE_PARM_DESC(test_boost, "Test RCU prio boost: 0=no, 1=maybe, 2=yes.");
  111. module_param(test_boost_interval, int, 0444);
  112. MODULE_PARM_DESC(test_boost_interval, "Interval between boost tests, seconds.");
  113. module_param(test_boost_duration, int, 0444);
  114. MODULE_PARM_DESC(test_boost_duration, "Duration of each boost test, seconds.");
  115. module_param(torture_type, charp, 0444);
  116. MODULE_PARM_DESC(torture_type, "Type of RCU to torture (rcu, rcu_bh, srcu)");
  117. #define TORTURE_FLAG "-torture:"
  118. #define PRINTK_STRING(s) \
  119. do { printk(KERN_ALERT "%s" TORTURE_FLAG s "\n", torture_type); } while (0)
  120. #define VERBOSE_PRINTK_STRING(s) \
  121. do { if (verbose) printk(KERN_ALERT "%s" TORTURE_FLAG s "\n", torture_type); } while (0)
  122. #define VERBOSE_PRINTK_ERRSTRING(s) \
  123. do { if (verbose) printk(KERN_ALERT "%s" TORTURE_FLAG "!!! " s "\n", torture_type); } while (0)
  124. static char printk_buf[4096];
  125. static int nrealreaders;
  126. static struct task_struct *writer_task;
  127. static struct task_struct **fakewriter_tasks;
  128. static struct task_struct **reader_tasks;
  129. static struct task_struct *stats_task;
  130. static struct task_struct *shuffler_task;
  131. static struct task_struct *stutter_task;
  132. static struct task_struct *fqs_task;
  133. static struct task_struct *boost_tasks[NR_CPUS];
  134. static struct task_struct *shutdown_task;
  135. #ifdef CONFIG_HOTPLUG_CPU
  136. static struct task_struct *onoff_task;
  137. #endif /* #ifdef CONFIG_HOTPLUG_CPU */
  138. static struct task_struct *stall_task;
  139. static struct task_struct **barrier_cbs_tasks;
  140. static struct task_struct *barrier_task;
  141. #define RCU_TORTURE_PIPE_LEN 10
  142. struct rcu_torture {
  143. struct rcu_head rtort_rcu;
  144. int rtort_pipe_count;
  145. struct list_head rtort_free;
  146. int rtort_mbtest;
  147. };
  148. static LIST_HEAD(rcu_torture_freelist);
  149. static struct rcu_torture __rcu *rcu_torture_current;
  150. static unsigned long rcu_torture_current_version;
  151. static struct rcu_torture rcu_tortures[10 * RCU_TORTURE_PIPE_LEN];
  152. static DEFINE_SPINLOCK(rcu_torture_lock);
  153. static DEFINE_PER_CPU(long [RCU_TORTURE_PIPE_LEN + 1], rcu_torture_count) =
  154. { 0 };
  155. static DEFINE_PER_CPU(long [RCU_TORTURE_PIPE_LEN + 1], rcu_torture_batch) =
  156. { 0 };
  157. static atomic_t rcu_torture_wcount[RCU_TORTURE_PIPE_LEN + 1];
  158. static atomic_t n_rcu_torture_alloc;
  159. static atomic_t n_rcu_torture_alloc_fail;
  160. static atomic_t n_rcu_torture_free;
  161. static atomic_t n_rcu_torture_mberror;
  162. static atomic_t n_rcu_torture_error;
  163. static long n_rcu_torture_barrier_error;
  164. static long n_rcu_torture_boost_ktrerror;
  165. static long n_rcu_torture_boost_rterror;
  166. static long n_rcu_torture_boost_failure;
  167. static long n_rcu_torture_boosts;
  168. static long n_rcu_torture_timers;
  169. static long n_offline_attempts;
  170. static long n_offline_successes;
  171. static long n_online_attempts;
  172. static long n_online_successes;
  173. static long n_barrier_attempts;
  174. static long n_barrier_successes;
  175. static struct list_head rcu_torture_removed;
  176. static cpumask_var_t shuffle_tmp_mask;
  177. static int stutter_pause_test;
  178. #if defined(MODULE) || defined(CONFIG_RCU_TORTURE_TEST_RUNNABLE)
  179. #define RCUTORTURE_RUNNABLE_INIT 1
  180. #else
  181. #define RCUTORTURE_RUNNABLE_INIT 0
  182. #endif
  183. int rcutorture_runnable = RCUTORTURE_RUNNABLE_INIT;
  184. module_param(rcutorture_runnable, int, 0444);
  185. MODULE_PARM_DESC(rcutorture_runnable, "Start rcutorture at boot");
  186. #if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU)
  187. #define rcu_can_boost() 1
  188. #else /* #if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU) */
  189. #define rcu_can_boost() 0
  190. #endif /* #else #if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU) */
  191. static unsigned long shutdown_time; /* jiffies to system shutdown. */
  192. static unsigned long boost_starttime; /* jiffies of next boost test start. */
  193. DEFINE_MUTEX(boost_mutex); /* protect setting boost_starttime */
  194. /* and boost task create/destroy. */
  195. static atomic_t barrier_cbs_count; /* Barrier callbacks registered. */
  196. static atomic_t barrier_cbs_invoked; /* Barrier callbacks invoked. */
  197. static wait_queue_head_t *barrier_cbs_wq; /* Coordinate barrier testing. */
  198. static DECLARE_WAIT_QUEUE_HEAD(barrier_wq);
  199. /* Mediate rmmod and system shutdown. Concurrent rmmod & shutdown illegal! */
  200. #define FULLSTOP_DONTSTOP 0 /* Normal operation. */
  201. #define FULLSTOP_SHUTDOWN 1 /* System shutdown with rcutorture running. */
  202. #define FULLSTOP_RMMOD 2 /* Normal rmmod of rcutorture. */
  203. static int fullstop = FULLSTOP_RMMOD;
  204. /*
  205. * Protect fullstop transitions and spawning of kthreads.
  206. */
  207. static DEFINE_MUTEX(fullstop_mutex);
  208. /* Forward reference. */
  209. static void rcu_torture_cleanup(void);
  210. /*
  211. * Detect and respond to a system shutdown.
  212. */
  213. static int
  214. rcutorture_shutdown_notify(struct notifier_block *unused1,
  215. unsigned long unused2, void *unused3)
  216. {
  217. mutex_lock(&fullstop_mutex);
  218. if (fullstop == FULLSTOP_DONTSTOP)
  219. fullstop = FULLSTOP_SHUTDOWN;
  220. else
  221. printk(KERN_WARNING /* but going down anyway, so... */
  222. "Concurrent 'rmmod rcutorture' and shutdown illegal!\n");
  223. mutex_unlock(&fullstop_mutex);
  224. return NOTIFY_DONE;
  225. }
  226. /*
  227. * Absorb kthreads into a kernel function that won't return, so that
  228. * they won't ever access module text or data again.
  229. */
  230. static void rcutorture_shutdown_absorb(char *title)
  231. {
  232. if (ACCESS_ONCE(fullstop) == FULLSTOP_SHUTDOWN) {
  233. printk(KERN_NOTICE
  234. "rcutorture thread %s parking due to system shutdown\n",
  235. title);
  236. schedule_timeout_uninterruptible(MAX_SCHEDULE_TIMEOUT);
  237. }
  238. }
  239. /*
  240. * Allocate an element from the rcu_tortures pool.
  241. */
  242. static struct rcu_torture *
  243. rcu_torture_alloc(void)
  244. {
  245. struct list_head *p;
  246. spin_lock_bh(&rcu_torture_lock);
  247. if (list_empty(&rcu_torture_freelist)) {
  248. atomic_inc(&n_rcu_torture_alloc_fail);
  249. spin_unlock_bh(&rcu_torture_lock);
  250. return NULL;
  251. }
  252. atomic_inc(&n_rcu_torture_alloc);
  253. p = rcu_torture_freelist.next;
  254. list_del_init(p);
  255. spin_unlock_bh(&rcu_torture_lock);
  256. return container_of(p, struct rcu_torture, rtort_free);
  257. }
  258. /*
  259. * Free an element to the rcu_tortures pool.
  260. */
  261. static void
  262. rcu_torture_free(struct rcu_torture *p)
  263. {
  264. atomic_inc(&n_rcu_torture_free);
  265. spin_lock_bh(&rcu_torture_lock);
  266. list_add_tail(&p->rtort_free, &rcu_torture_freelist);
  267. spin_unlock_bh(&rcu_torture_lock);
  268. }
  269. struct rcu_random_state {
  270. unsigned long rrs_state;
  271. long rrs_count;
  272. };
  273. #define RCU_RANDOM_MULT 39916801 /* prime */
  274. #define RCU_RANDOM_ADD 479001701 /* prime */
  275. #define RCU_RANDOM_REFRESH 10000
  276. #define DEFINE_RCU_RANDOM(name) struct rcu_random_state name = { 0, 0 }
  277. /*
  278. * Crude but fast random-number generator. Uses a linear congruential
  279. * generator, with occasional help from cpu_clock().
  280. */
  281. static unsigned long
  282. rcu_random(struct rcu_random_state *rrsp)
  283. {
  284. if (--rrsp->rrs_count < 0) {
  285. rrsp->rrs_state += (unsigned long)local_clock();
  286. rrsp->rrs_count = RCU_RANDOM_REFRESH;
  287. }
  288. rrsp->rrs_state = rrsp->rrs_state * RCU_RANDOM_MULT + RCU_RANDOM_ADD;
  289. return swahw32(rrsp->rrs_state);
  290. }
  291. static void
  292. rcu_stutter_wait(char *title)
  293. {
  294. while (stutter_pause_test || !rcutorture_runnable) {
  295. if (rcutorture_runnable)
  296. schedule_timeout_interruptible(1);
  297. else
  298. schedule_timeout_interruptible(round_jiffies_relative(HZ));
  299. rcutorture_shutdown_absorb(title);
  300. }
  301. }
  302. /*
  303. * Operations vector for selecting different types of tests.
  304. */
  305. struct rcu_torture_ops {
  306. void (*init)(void);
  307. void (*cleanup)(void);
  308. int (*readlock)(void);
  309. void (*read_delay)(struct rcu_random_state *rrsp);
  310. void (*readunlock)(int idx);
  311. int (*completed)(void);
  312. void (*deferred_free)(struct rcu_torture *p);
  313. void (*sync)(void);
  314. void (*call)(struct rcu_head *head, void (*func)(struct rcu_head *rcu));
  315. void (*cb_barrier)(void);
  316. void (*fqs)(void);
  317. int (*stats)(char *page);
  318. int irq_capable;
  319. int can_boost;
  320. char *name;
  321. };
  322. static struct rcu_torture_ops *cur_ops;
  323. /*
  324. * Definitions for rcu torture testing.
  325. */
  326. static int rcu_torture_read_lock(void) __acquires(RCU)
  327. {
  328. rcu_read_lock();
  329. return 0;
  330. }
  331. static void rcu_read_delay(struct rcu_random_state *rrsp)
  332. {
  333. const unsigned long shortdelay_us = 200;
  334. const unsigned long longdelay_ms = 50;
  335. /* We want a short delay sometimes to make a reader delay the grace
  336. * period, and we want a long delay occasionally to trigger
  337. * force_quiescent_state. */
  338. if (!(rcu_random(rrsp) % (nrealreaders * 2000 * longdelay_ms)))
  339. mdelay(longdelay_ms);
  340. if (!(rcu_random(rrsp) % (nrealreaders * 2 * shortdelay_us)))
  341. udelay(shortdelay_us);
  342. #ifdef CONFIG_PREEMPT
  343. if (!preempt_count() && !(rcu_random(rrsp) % (nrealreaders * 20000)))
  344. preempt_schedule(); /* No QS if preempt_disable() in effect */
  345. #endif
  346. }
  347. static void rcu_torture_read_unlock(int idx) __releases(RCU)
  348. {
  349. rcu_read_unlock();
  350. }
  351. static int rcu_torture_completed(void)
  352. {
  353. return rcu_batches_completed();
  354. }
  355. static void
  356. rcu_torture_cb(struct rcu_head *p)
  357. {
  358. int i;
  359. struct rcu_torture *rp = container_of(p, struct rcu_torture, rtort_rcu);
  360. if (fullstop != FULLSTOP_DONTSTOP) {
  361. /* Test is ending, just drop callbacks on the floor. */
  362. /* The next initialization will pick up the pieces. */
  363. return;
  364. }
  365. i = rp->rtort_pipe_count;
  366. if (i > RCU_TORTURE_PIPE_LEN)
  367. i = RCU_TORTURE_PIPE_LEN;
  368. atomic_inc(&rcu_torture_wcount[i]);
  369. if (++rp->rtort_pipe_count >= RCU_TORTURE_PIPE_LEN) {
  370. rp->rtort_mbtest = 0;
  371. rcu_torture_free(rp);
  372. } else
  373. cur_ops->deferred_free(rp);
  374. }
  375. static int rcu_no_completed(void)
  376. {
  377. return 0;
  378. }
  379. static void rcu_torture_deferred_free(struct rcu_torture *p)
  380. {
  381. call_rcu(&p->rtort_rcu, rcu_torture_cb);
  382. }
  383. static struct rcu_torture_ops rcu_ops = {
  384. .init = NULL,
  385. .cleanup = NULL,
  386. .readlock = rcu_torture_read_lock,
  387. .read_delay = rcu_read_delay,
  388. .readunlock = rcu_torture_read_unlock,
  389. .completed = rcu_torture_completed,
  390. .deferred_free = rcu_torture_deferred_free,
  391. .sync = synchronize_rcu,
  392. .call = call_rcu,
  393. .cb_barrier = rcu_barrier,
  394. .fqs = rcu_force_quiescent_state,
  395. .stats = NULL,
  396. .irq_capable = 1,
  397. .can_boost = rcu_can_boost(),
  398. .name = "rcu"
  399. };
  400. static void rcu_sync_torture_deferred_free(struct rcu_torture *p)
  401. {
  402. int i;
  403. struct rcu_torture *rp;
  404. struct rcu_torture *rp1;
  405. cur_ops->sync();
  406. list_add(&p->rtort_free, &rcu_torture_removed);
  407. list_for_each_entry_safe(rp, rp1, &rcu_torture_removed, rtort_free) {
  408. i = rp->rtort_pipe_count;
  409. if (i > RCU_TORTURE_PIPE_LEN)
  410. i = RCU_TORTURE_PIPE_LEN;
  411. atomic_inc(&rcu_torture_wcount[i]);
  412. if (++rp->rtort_pipe_count >= RCU_TORTURE_PIPE_LEN) {
  413. rp->rtort_mbtest = 0;
  414. list_del(&rp->rtort_free);
  415. rcu_torture_free(rp);
  416. }
  417. }
  418. }
  419. static void rcu_sync_torture_init(void)
  420. {
  421. INIT_LIST_HEAD(&rcu_torture_removed);
  422. }
  423. static struct rcu_torture_ops rcu_sync_ops = {
  424. .init = rcu_sync_torture_init,
  425. .cleanup = NULL,
  426. .readlock = rcu_torture_read_lock,
  427. .read_delay = rcu_read_delay,
  428. .readunlock = rcu_torture_read_unlock,
  429. .completed = rcu_torture_completed,
  430. .deferred_free = rcu_sync_torture_deferred_free,
  431. .sync = synchronize_rcu,
  432. .call = NULL,
  433. .cb_barrier = NULL,
  434. .fqs = rcu_force_quiescent_state,
  435. .stats = NULL,
  436. .irq_capable = 1,
  437. .can_boost = rcu_can_boost(),
  438. .name = "rcu_sync"
  439. };
  440. static struct rcu_torture_ops rcu_expedited_ops = {
  441. .init = rcu_sync_torture_init,
  442. .cleanup = NULL,
  443. .readlock = rcu_torture_read_lock,
  444. .read_delay = rcu_read_delay, /* just reuse rcu's version. */
  445. .readunlock = rcu_torture_read_unlock,
  446. .completed = rcu_no_completed,
  447. .deferred_free = rcu_sync_torture_deferred_free,
  448. .sync = synchronize_rcu_expedited,
  449. .call = NULL,
  450. .cb_barrier = NULL,
  451. .fqs = rcu_force_quiescent_state,
  452. .stats = NULL,
  453. .irq_capable = 1,
  454. .can_boost = rcu_can_boost(),
  455. .name = "rcu_expedited"
  456. };
  457. /*
  458. * Definitions for rcu_bh torture testing.
  459. */
  460. static int rcu_bh_torture_read_lock(void) __acquires(RCU_BH)
  461. {
  462. rcu_read_lock_bh();
  463. return 0;
  464. }
  465. static void rcu_bh_torture_read_unlock(int idx) __releases(RCU_BH)
  466. {
  467. rcu_read_unlock_bh();
  468. }
  469. static int rcu_bh_torture_completed(void)
  470. {
  471. return rcu_batches_completed_bh();
  472. }
  473. static void rcu_bh_torture_deferred_free(struct rcu_torture *p)
  474. {
  475. call_rcu_bh(&p->rtort_rcu, rcu_torture_cb);
  476. }
  477. static struct rcu_torture_ops rcu_bh_ops = {
  478. .init = NULL,
  479. .cleanup = NULL,
  480. .readlock = rcu_bh_torture_read_lock,
  481. .read_delay = rcu_read_delay, /* just reuse rcu's version. */
  482. .readunlock = rcu_bh_torture_read_unlock,
  483. .completed = rcu_bh_torture_completed,
  484. .deferred_free = rcu_bh_torture_deferred_free,
  485. .sync = synchronize_rcu_bh,
  486. .call = call_rcu_bh,
  487. .cb_barrier = rcu_barrier_bh,
  488. .fqs = rcu_bh_force_quiescent_state,
  489. .stats = NULL,
  490. .irq_capable = 1,
  491. .name = "rcu_bh"
  492. };
  493. static struct rcu_torture_ops rcu_bh_sync_ops = {
  494. .init = rcu_sync_torture_init,
  495. .cleanup = NULL,
  496. .readlock = rcu_bh_torture_read_lock,
  497. .read_delay = rcu_read_delay, /* just reuse rcu's version. */
  498. .readunlock = rcu_bh_torture_read_unlock,
  499. .completed = rcu_bh_torture_completed,
  500. .deferred_free = rcu_sync_torture_deferred_free,
  501. .sync = synchronize_rcu_bh,
  502. .call = NULL,
  503. .cb_barrier = NULL,
  504. .fqs = rcu_bh_force_quiescent_state,
  505. .stats = NULL,
  506. .irq_capable = 1,
  507. .name = "rcu_bh_sync"
  508. };
  509. static struct rcu_torture_ops rcu_bh_expedited_ops = {
  510. .init = rcu_sync_torture_init,
  511. .cleanup = NULL,
  512. .readlock = rcu_bh_torture_read_lock,
  513. .read_delay = rcu_read_delay, /* just reuse rcu's version. */
  514. .readunlock = rcu_bh_torture_read_unlock,
  515. .completed = rcu_bh_torture_completed,
  516. .deferred_free = rcu_sync_torture_deferred_free,
  517. .sync = synchronize_rcu_bh_expedited,
  518. .call = NULL,
  519. .cb_barrier = NULL,
  520. .fqs = rcu_bh_force_quiescent_state,
  521. .stats = NULL,
  522. .irq_capable = 1,
  523. .name = "rcu_bh_expedited"
  524. };
  525. /*
  526. * Definitions for srcu torture testing.
  527. */
  528. static struct srcu_struct srcu_ctl;
  529. static void srcu_torture_init(void)
  530. {
  531. init_srcu_struct(&srcu_ctl);
  532. rcu_sync_torture_init();
  533. }
  534. static void srcu_torture_cleanup(void)
  535. {
  536. synchronize_srcu(&srcu_ctl);
  537. cleanup_srcu_struct(&srcu_ctl);
  538. }
  539. static int srcu_torture_read_lock(void) __acquires(&srcu_ctl)
  540. {
  541. return srcu_read_lock(&srcu_ctl);
  542. }
  543. static void srcu_read_delay(struct rcu_random_state *rrsp)
  544. {
  545. long delay;
  546. const long uspertick = 1000000 / HZ;
  547. const long longdelay = 10;
  548. /* We want there to be long-running readers, but not all the time. */
  549. delay = rcu_random(rrsp) % (nrealreaders * 2 * longdelay * uspertick);
  550. if (!delay)
  551. schedule_timeout_interruptible(longdelay);
  552. else
  553. rcu_read_delay(rrsp);
  554. }
  555. static void srcu_torture_read_unlock(int idx) __releases(&srcu_ctl)
  556. {
  557. srcu_read_unlock(&srcu_ctl, idx);
  558. }
  559. static int srcu_torture_completed(void)
  560. {
  561. return srcu_batches_completed(&srcu_ctl);
  562. }
  563. static void srcu_torture_synchronize(void)
  564. {
  565. synchronize_srcu(&srcu_ctl);
  566. }
  567. static int srcu_torture_stats(char *page)
  568. {
  569. int cnt = 0;
  570. int cpu;
  571. int idx = srcu_ctl.completed & 0x1;
  572. cnt += sprintf(&page[cnt], "%s%s per-CPU(idx=%d):",
  573. torture_type, TORTURE_FLAG, idx);
  574. for_each_possible_cpu(cpu) {
  575. cnt += sprintf(&page[cnt], " %d(%d,%d)", cpu,
  576. per_cpu_ptr(srcu_ctl.per_cpu_ref, cpu)->c[!idx],
  577. per_cpu_ptr(srcu_ctl.per_cpu_ref, cpu)->c[idx]);
  578. }
  579. cnt += sprintf(&page[cnt], "\n");
  580. return cnt;
  581. }
  582. static struct rcu_torture_ops srcu_ops = {
  583. .init = srcu_torture_init,
  584. .cleanup = srcu_torture_cleanup,
  585. .readlock = srcu_torture_read_lock,
  586. .read_delay = srcu_read_delay,
  587. .readunlock = srcu_torture_read_unlock,
  588. .completed = srcu_torture_completed,
  589. .deferred_free = rcu_sync_torture_deferred_free,
  590. .sync = srcu_torture_synchronize,
  591. .call = NULL,
  592. .cb_barrier = NULL,
  593. .stats = srcu_torture_stats,
  594. .name = "srcu"
  595. };
  596. static int srcu_torture_read_lock_raw(void) __acquires(&srcu_ctl)
  597. {
  598. return srcu_read_lock_raw(&srcu_ctl);
  599. }
  600. static void srcu_torture_read_unlock_raw(int idx) __releases(&srcu_ctl)
  601. {
  602. srcu_read_unlock_raw(&srcu_ctl, idx);
  603. }
  604. static struct rcu_torture_ops srcu_raw_ops = {
  605. .init = srcu_torture_init,
  606. .cleanup = srcu_torture_cleanup,
  607. .readlock = srcu_torture_read_lock_raw,
  608. .read_delay = srcu_read_delay,
  609. .readunlock = srcu_torture_read_unlock_raw,
  610. .completed = srcu_torture_completed,
  611. .deferred_free = rcu_sync_torture_deferred_free,
  612. .sync = srcu_torture_synchronize,
  613. .call = NULL,
  614. .cb_barrier = NULL,
  615. .stats = srcu_torture_stats,
  616. .name = "srcu_raw"
  617. };
  618. static void srcu_torture_synchronize_expedited(void)
  619. {
  620. synchronize_srcu_expedited(&srcu_ctl);
  621. }
  622. static struct rcu_torture_ops srcu_expedited_ops = {
  623. .init = srcu_torture_init,
  624. .cleanup = srcu_torture_cleanup,
  625. .readlock = srcu_torture_read_lock,
  626. .read_delay = srcu_read_delay,
  627. .readunlock = srcu_torture_read_unlock,
  628. .completed = srcu_torture_completed,
  629. .deferred_free = rcu_sync_torture_deferred_free,
  630. .sync = srcu_torture_synchronize_expedited,
  631. .call = NULL,
  632. .cb_barrier = NULL,
  633. .stats = srcu_torture_stats,
  634. .name = "srcu_expedited"
  635. };
  636. /*
  637. * Definitions for sched torture testing.
  638. */
  639. static int sched_torture_read_lock(void)
  640. {
  641. preempt_disable();
  642. return 0;
  643. }
  644. static void sched_torture_read_unlock(int idx)
  645. {
  646. preempt_enable();
  647. }
  648. static void rcu_sched_torture_deferred_free(struct rcu_torture *p)
  649. {
  650. call_rcu_sched(&p->rtort_rcu, rcu_torture_cb);
  651. }
  652. static struct rcu_torture_ops sched_ops = {
  653. .init = rcu_sync_torture_init,
  654. .cleanup = NULL,
  655. .readlock = sched_torture_read_lock,
  656. .read_delay = rcu_read_delay, /* just reuse rcu's version. */
  657. .readunlock = sched_torture_read_unlock,
  658. .completed = rcu_no_completed,
  659. .deferred_free = rcu_sched_torture_deferred_free,
  660. .sync = synchronize_sched,
  661. .cb_barrier = rcu_barrier_sched,
  662. .fqs = rcu_sched_force_quiescent_state,
  663. .stats = NULL,
  664. .irq_capable = 1,
  665. .name = "sched"
  666. };
  667. static struct rcu_torture_ops sched_sync_ops = {
  668. .init = rcu_sync_torture_init,
  669. .cleanup = NULL,
  670. .readlock = sched_torture_read_lock,
  671. .read_delay = rcu_read_delay, /* just reuse rcu's version. */
  672. .readunlock = sched_torture_read_unlock,
  673. .completed = rcu_no_completed,
  674. .deferred_free = rcu_sync_torture_deferred_free,
  675. .sync = synchronize_sched,
  676. .cb_barrier = NULL,
  677. .fqs = rcu_sched_force_quiescent_state,
  678. .stats = NULL,
  679. .name = "sched_sync"
  680. };
  681. static struct rcu_torture_ops sched_expedited_ops = {
  682. .init = rcu_sync_torture_init,
  683. .cleanup = NULL,
  684. .readlock = sched_torture_read_lock,
  685. .read_delay = rcu_read_delay, /* just reuse rcu's version. */
  686. .readunlock = sched_torture_read_unlock,
  687. .completed = rcu_no_completed,
  688. .deferred_free = rcu_sync_torture_deferred_free,
  689. .sync = synchronize_sched_expedited,
  690. .cb_barrier = NULL,
  691. .fqs = rcu_sched_force_quiescent_state,
  692. .stats = NULL,
  693. .irq_capable = 1,
  694. .name = "sched_expedited"
  695. };
  696. /*
  697. * RCU torture priority-boost testing. Runs one real-time thread per
  698. * CPU for moderate bursts, repeatedly registering RCU callbacks and
  699. * spinning waiting for them to be invoked. If a given callback takes
  700. * too long to be invoked, we assume that priority inversion has occurred.
  701. */
  702. struct rcu_boost_inflight {
  703. struct rcu_head rcu;
  704. int inflight;
  705. };
  706. static void rcu_torture_boost_cb(struct rcu_head *head)
  707. {
  708. struct rcu_boost_inflight *rbip =
  709. container_of(head, struct rcu_boost_inflight, rcu);
  710. smp_mb(); /* Ensure RCU-core accesses precede clearing ->inflight */
  711. rbip->inflight = 0;
  712. }
  713. static int rcu_torture_boost(void *arg)
  714. {
  715. unsigned long call_rcu_time;
  716. unsigned long endtime;
  717. unsigned long oldstarttime;
  718. struct rcu_boost_inflight rbi = { .inflight = 0 };
  719. struct sched_param sp;
  720. VERBOSE_PRINTK_STRING("rcu_torture_boost started");
  721. /* Set real-time priority. */
  722. sp.sched_priority = 1;
  723. if (sched_setscheduler(current, SCHED_FIFO, &sp) < 0) {
  724. VERBOSE_PRINTK_STRING("rcu_torture_boost RT prio failed!");
  725. n_rcu_torture_boost_rterror++;
  726. }
  727. init_rcu_head_on_stack(&rbi.rcu);
  728. /* Each pass through the following loop does one boost-test cycle. */
  729. do {
  730. /* Wait for the next test interval. */
  731. oldstarttime = boost_starttime;
  732. while (ULONG_CMP_LT(jiffies, oldstarttime)) {
  733. schedule_timeout_uninterruptible(1);
  734. rcu_stutter_wait("rcu_torture_boost");
  735. if (kthread_should_stop() ||
  736. fullstop != FULLSTOP_DONTSTOP)
  737. goto checkwait;
  738. }
  739. /* Do one boost-test interval. */
  740. endtime = oldstarttime + test_boost_duration * HZ;
  741. call_rcu_time = jiffies;
  742. while (ULONG_CMP_LT(jiffies, endtime)) {
  743. /* If we don't have a callback in flight, post one. */
  744. if (!rbi.inflight) {
  745. smp_mb(); /* RCU core before ->inflight = 1. */
  746. rbi.inflight = 1;
  747. call_rcu(&rbi.rcu, rcu_torture_boost_cb);
  748. if (jiffies - call_rcu_time >
  749. test_boost_duration * HZ - HZ / 2) {
  750. VERBOSE_PRINTK_STRING("rcu_torture_boost boosting failed");
  751. n_rcu_torture_boost_failure++;
  752. }
  753. call_rcu_time = jiffies;
  754. }
  755. cond_resched();
  756. rcu_stutter_wait("rcu_torture_boost");
  757. if (kthread_should_stop() ||
  758. fullstop != FULLSTOP_DONTSTOP)
  759. goto checkwait;
  760. }
  761. /*
  762. * Set the start time of the next test interval.
  763. * Yes, this is vulnerable to long delays, but such
  764. * delays simply cause a false negative for the next
  765. * interval. Besides, we are running at RT priority,
  766. * so delays should be relatively rare.
  767. */
  768. while (oldstarttime == boost_starttime &&
  769. !kthread_should_stop()) {
  770. if (mutex_trylock(&boost_mutex)) {
  771. boost_starttime = jiffies +
  772. test_boost_interval * HZ;
  773. n_rcu_torture_boosts++;
  774. mutex_unlock(&boost_mutex);
  775. break;
  776. }
  777. schedule_timeout_uninterruptible(1);
  778. }
  779. /* Go do the stutter. */
  780. checkwait: rcu_stutter_wait("rcu_torture_boost");
  781. } while (!kthread_should_stop() && fullstop == FULLSTOP_DONTSTOP);
  782. /* Clean up and exit. */
  783. VERBOSE_PRINTK_STRING("rcu_torture_boost task stopping");
  784. rcutorture_shutdown_absorb("rcu_torture_boost");
  785. while (!kthread_should_stop() || rbi.inflight)
  786. schedule_timeout_uninterruptible(1);
  787. smp_mb(); /* order accesses to ->inflight before stack-frame death. */
  788. destroy_rcu_head_on_stack(&rbi.rcu);
  789. return 0;
  790. }
  791. /*
  792. * RCU torture force-quiescent-state kthread. Repeatedly induces
  793. * bursts of calls to force_quiescent_state(), increasing the probability
  794. * of occurrence of some important types of race conditions.
  795. */
  796. static int
  797. rcu_torture_fqs(void *arg)
  798. {
  799. unsigned long fqs_resume_time;
  800. int fqs_burst_remaining;
  801. VERBOSE_PRINTK_STRING("rcu_torture_fqs task started");
  802. do {
  803. fqs_resume_time = jiffies + fqs_stutter * HZ;
  804. while (ULONG_CMP_LT(jiffies, fqs_resume_time) &&
  805. !kthread_should_stop()) {
  806. schedule_timeout_interruptible(1);
  807. }
  808. fqs_burst_remaining = fqs_duration;
  809. while (fqs_burst_remaining > 0 &&
  810. !kthread_should_stop()) {
  811. cur_ops->fqs();
  812. udelay(fqs_holdoff);
  813. fqs_burst_remaining -= fqs_holdoff;
  814. }
  815. rcu_stutter_wait("rcu_torture_fqs");
  816. } while (!kthread_should_stop() && fullstop == FULLSTOP_DONTSTOP);
  817. VERBOSE_PRINTK_STRING("rcu_torture_fqs task stopping");
  818. rcutorture_shutdown_absorb("rcu_torture_fqs");
  819. while (!kthread_should_stop())
  820. schedule_timeout_uninterruptible(1);
  821. return 0;
  822. }
  823. /*
  824. * RCU torture writer kthread. Repeatedly substitutes a new structure
  825. * for that pointed to by rcu_torture_current, freeing the old structure
  826. * after a series of grace periods (the "pipeline").
  827. */
  828. static int
  829. rcu_torture_writer(void *arg)
  830. {
  831. int i;
  832. long oldbatch = rcu_batches_completed();
  833. struct rcu_torture *rp;
  834. struct rcu_torture *old_rp;
  835. static DEFINE_RCU_RANDOM(rand);
  836. VERBOSE_PRINTK_STRING("rcu_torture_writer task started");
  837. set_user_nice(current, 19);
  838. do {
  839. schedule_timeout_uninterruptible(1);
  840. rp = rcu_torture_alloc();
  841. if (rp == NULL)
  842. continue;
  843. rp->rtort_pipe_count = 0;
  844. udelay(rcu_random(&rand) & 0x3ff);
  845. old_rp = rcu_dereference_check(rcu_torture_current,
  846. current == writer_task);
  847. rp->rtort_mbtest = 1;
  848. rcu_assign_pointer(rcu_torture_current, rp);
  849. smp_wmb(); /* Mods to old_rp must follow rcu_assign_pointer() */
  850. if (old_rp) {
  851. i = old_rp->rtort_pipe_count;
  852. if (i > RCU_TORTURE_PIPE_LEN)
  853. i = RCU_TORTURE_PIPE_LEN;
  854. atomic_inc(&rcu_torture_wcount[i]);
  855. old_rp->rtort_pipe_count++;
  856. cur_ops->deferred_free(old_rp);
  857. }
  858. rcutorture_record_progress(++rcu_torture_current_version);
  859. oldbatch = cur_ops->completed();
  860. rcu_stutter_wait("rcu_torture_writer");
  861. } while (!kthread_should_stop() && fullstop == FULLSTOP_DONTSTOP);
  862. VERBOSE_PRINTK_STRING("rcu_torture_writer task stopping");
  863. rcutorture_shutdown_absorb("rcu_torture_writer");
  864. while (!kthread_should_stop())
  865. schedule_timeout_uninterruptible(1);
  866. return 0;
  867. }
  868. /*
  869. * RCU torture fake writer kthread. Repeatedly calls sync, with a random
  870. * delay between calls.
  871. */
  872. static int
  873. rcu_torture_fakewriter(void *arg)
  874. {
  875. DEFINE_RCU_RANDOM(rand);
  876. VERBOSE_PRINTK_STRING("rcu_torture_fakewriter task started");
  877. set_user_nice(current, 19);
  878. do {
  879. schedule_timeout_uninterruptible(1 + rcu_random(&rand)%10);
  880. udelay(rcu_random(&rand) & 0x3ff);
  881. cur_ops->sync();
  882. rcu_stutter_wait("rcu_torture_fakewriter");
  883. } while (!kthread_should_stop() && fullstop == FULLSTOP_DONTSTOP);
  884. VERBOSE_PRINTK_STRING("rcu_torture_fakewriter task stopping");
  885. rcutorture_shutdown_absorb("rcu_torture_fakewriter");
  886. while (!kthread_should_stop())
  887. schedule_timeout_uninterruptible(1);
  888. return 0;
  889. }
  890. void rcutorture_trace_dump(void)
  891. {
  892. static atomic_t beenhere = ATOMIC_INIT(0);
  893. if (atomic_read(&beenhere))
  894. return;
  895. if (atomic_xchg(&beenhere, 1) != 0)
  896. return;
  897. do_trace_rcu_torture_read(cur_ops->name, (struct rcu_head *)~0UL);
  898. ftrace_dump(DUMP_ALL);
  899. }
  900. /*
  901. * RCU torture reader from timer handler. Dereferences rcu_torture_current,
  902. * incrementing the corresponding element of the pipeline array. The
  903. * counter in the element should never be greater than 1, otherwise, the
  904. * RCU implementation is broken.
  905. */
  906. static void rcu_torture_timer(unsigned long unused)
  907. {
  908. int idx;
  909. int completed;
  910. static DEFINE_RCU_RANDOM(rand);
  911. static DEFINE_SPINLOCK(rand_lock);
  912. struct rcu_torture *p;
  913. int pipe_count;
  914. idx = cur_ops->readlock();
  915. completed = cur_ops->completed();
  916. p = rcu_dereference_check(rcu_torture_current,
  917. rcu_read_lock_bh_held() ||
  918. rcu_read_lock_sched_held() ||
  919. srcu_read_lock_held(&srcu_ctl));
  920. if (p == NULL) {
  921. /* Leave because rcu_torture_writer is not yet underway */
  922. cur_ops->readunlock(idx);
  923. return;
  924. }
  925. do_trace_rcu_torture_read(cur_ops->name, &p->rtort_rcu);
  926. if (p->rtort_mbtest == 0)
  927. atomic_inc(&n_rcu_torture_mberror);
  928. spin_lock(&rand_lock);
  929. cur_ops->read_delay(&rand);
  930. n_rcu_torture_timers++;
  931. spin_unlock(&rand_lock);
  932. preempt_disable();
  933. pipe_count = p->rtort_pipe_count;
  934. if (pipe_count > RCU_TORTURE_PIPE_LEN) {
  935. /* Should not happen, but... */
  936. pipe_count = RCU_TORTURE_PIPE_LEN;
  937. }
  938. if (pipe_count > 1)
  939. rcutorture_trace_dump();
  940. __this_cpu_inc(rcu_torture_count[pipe_count]);
  941. completed = cur_ops->completed() - completed;
  942. if (completed > RCU_TORTURE_PIPE_LEN) {
  943. /* Should not happen, but... */
  944. completed = RCU_TORTURE_PIPE_LEN;
  945. }
  946. __this_cpu_inc(rcu_torture_batch[completed]);
  947. preempt_enable();
  948. cur_ops->readunlock(idx);
  949. }
  950. /*
  951. * RCU torture reader kthread. Repeatedly dereferences rcu_torture_current,
  952. * incrementing the corresponding element of the pipeline array. The
  953. * counter in the element should never be greater than 1, otherwise, the
  954. * RCU implementation is broken.
  955. */
  956. static int
  957. rcu_torture_reader(void *arg)
  958. {
  959. int completed;
  960. int idx;
  961. DEFINE_RCU_RANDOM(rand);
  962. struct rcu_torture *p;
  963. int pipe_count;
  964. struct timer_list t;
  965. VERBOSE_PRINTK_STRING("rcu_torture_reader task started");
  966. set_user_nice(current, 19);
  967. if (irqreader && cur_ops->irq_capable)
  968. setup_timer_on_stack(&t, rcu_torture_timer, 0);
  969. do {
  970. if (irqreader && cur_ops->irq_capable) {
  971. if (!timer_pending(&t))
  972. mod_timer(&t, jiffies + 1);
  973. }
  974. idx = cur_ops->readlock();
  975. completed = cur_ops->completed();
  976. p = rcu_dereference_check(rcu_torture_current,
  977. rcu_read_lock_bh_held() ||
  978. rcu_read_lock_sched_held() ||
  979. srcu_read_lock_held(&srcu_ctl));
  980. if (p == NULL) {
  981. /* Wait for rcu_torture_writer to get underway */
  982. cur_ops->readunlock(idx);
  983. schedule_timeout_interruptible(HZ);
  984. continue;
  985. }
  986. do_trace_rcu_torture_read(cur_ops->name, &p->rtort_rcu);
  987. if (p->rtort_mbtest == 0)
  988. atomic_inc(&n_rcu_torture_mberror);
  989. cur_ops->read_delay(&rand);
  990. preempt_disable();
  991. pipe_count = p->rtort_pipe_count;
  992. if (pipe_count > RCU_TORTURE_PIPE_LEN) {
  993. /* Should not happen, but... */
  994. pipe_count = RCU_TORTURE_PIPE_LEN;
  995. }
  996. if (pipe_count > 1)
  997. rcutorture_trace_dump();
  998. __this_cpu_inc(rcu_torture_count[pipe_count]);
  999. completed = cur_ops->completed() - completed;
  1000. if (completed > RCU_TORTURE_PIPE_LEN) {
  1001. /* Should not happen, but... */
  1002. completed = RCU_TORTURE_PIPE_LEN;
  1003. }
  1004. __this_cpu_inc(rcu_torture_batch[completed]);
  1005. preempt_enable();
  1006. cur_ops->readunlock(idx);
  1007. schedule();
  1008. rcu_stutter_wait("rcu_torture_reader");
  1009. } while (!kthread_should_stop() && fullstop == FULLSTOP_DONTSTOP);
  1010. VERBOSE_PRINTK_STRING("rcu_torture_reader task stopping");
  1011. rcutorture_shutdown_absorb("rcu_torture_reader");
  1012. if (irqreader && cur_ops->irq_capable)
  1013. del_timer_sync(&t);
  1014. while (!kthread_should_stop())
  1015. schedule_timeout_uninterruptible(1);
  1016. return 0;
  1017. }
  1018. /*
  1019. * Create an RCU-torture statistics message in the specified buffer.
  1020. */
  1021. static int
  1022. rcu_torture_printk(char *page)
  1023. {
  1024. int cnt = 0;
  1025. int cpu;
  1026. int i;
  1027. long pipesummary[RCU_TORTURE_PIPE_LEN + 1] = { 0 };
  1028. long batchsummary[RCU_TORTURE_PIPE_LEN + 1] = { 0 };
  1029. for_each_possible_cpu(cpu) {
  1030. for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
  1031. pipesummary[i] += per_cpu(rcu_torture_count, cpu)[i];
  1032. batchsummary[i] += per_cpu(rcu_torture_batch, cpu)[i];
  1033. }
  1034. }
  1035. for (i = RCU_TORTURE_PIPE_LEN - 1; i >= 0; i--) {
  1036. if (pipesummary[i] != 0)
  1037. break;
  1038. }
  1039. cnt += sprintf(&page[cnt], "%s%s ", torture_type, TORTURE_FLAG);
  1040. cnt += sprintf(&page[cnt],
  1041. "rtc: %p ver: %lu tfle: %d rta: %d rtaf: %d rtf: %d "
  1042. "rtmbe: %d rtbke: %ld rtbre: %ld "
  1043. "rtbf: %ld rtb: %ld nt: %ld "
  1044. "onoff: %ld/%ld:%ld/%ld "
  1045. "barrier: %ld/%ld:%ld",
  1046. rcu_torture_current,
  1047. rcu_torture_current_version,
  1048. list_empty(&rcu_torture_freelist),
  1049. atomic_read(&n_rcu_torture_alloc),
  1050. atomic_read(&n_rcu_torture_alloc_fail),
  1051. atomic_read(&n_rcu_torture_free),
  1052. atomic_read(&n_rcu_torture_mberror),
  1053. n_rcu_torture_boost_ktrerror,
  1054. n_rcu_torture_boost_rterror,
  1055. n_rcu_torture_boost_failure,
  1056. n_rcu_torture_boosts,
  1057. n_rcu_torture_timers,
  1058. n_online_successes,
  1059. n_online_attempts,
  1060. n_offline_successes,
  1061. n_offline_attempts,
  1062. n_barrier_successes,
  1063. n_barrier_attempts,
  1064. n_rcu_torture_barrier_error);
  1065. cnt += sprintf(&page[cnt], "\n%s%s ", torture_type, TORTURE_FLAG);
  1066. if (atomic_read(&n_rcu_torture_mberror) != 0 ||
  1067. n_rcu_torture_barrier_error != 0 ||
  1068. n_rcu_torture_boost_ktrerror != 0 ||
  1069. n_rcu_torture_boost_rterror != 0 ||
  1070. n_rcu_torture_boost_failure != 0 ||
  1071. i > 1) {
  1072. cnt += sprintf(&page[cnt], "!!! ");
  1073. atomic_inc(&n_rcu_torture_error);
  1074. WARN_ON_ONCE(1);
  1075. }
  1076. cnt += sprintf(&page[cnt], "Reader Pipe: ");
  1077. for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
  1078. cnt += sprintf(&page[cnt], " %ld", pipesummary[i]);
  1079. cnt += sprintf(&page[cnt], "\n%s%s ", torture_type, TORTURE_FLAG);
  1080. cnt += sprintf(&page[cnt], "Reader Batch: ");
  1081. for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
  1082. cnt += sprintf(&page[cnt], " %ld", batchsummary[i]);
  1083. cnt += sprintf(&page[cnt], "\n%s%s ", torture_type, TORTURE_FLAG);
  1084. cnt += sprintf(&page[cnt], "Free-Block Circulation: ");
  1085. for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
  1086. cnt += sprintf(&page[cnt], " %d",
  1087. atomic_read(&rcu_torture_wcount[i]));
  1088. }
  1089. cnt += sprintf(&page[cnt], "\n");
  1090. if (cur_ops->stats)
  1091. cnt += cur_ops->stats(&page[cnt]);
  1092. return cnt;
  1093. }
  1094. /*
  1095. * Print torture statistics. Caller must ensure that there is only
  1096. * one call to this function at a given time!!! This is normally
  1097. * accomplished by relying on the module system to only have one copy
  1098. * of the module loaded, and then by giving the rcu_torture_stats
  1099. * kthread full control (or the init/cleanup functions when rcu_torture_stats
  1100. * thread is not running).
  1101. */
  1102. static void
  1103. rcu_torture_stats_print(void)
  1104. {
  1105. int cnt;
  1106. cnt = rcu_torture_printk(printk_buf);
  1107. printk(KERN_ALERT "%s", printk_buf);
  1108. }
  1109. /*
  1110. * Periodically prints torture statistics, if periodic statistics printing
  1111. * was specified via the stat_interval module parameter.
  1112. *
  1113. * No need to worry about fullstop here, since this one doesn't reference
  1114. * volatile state or register callbacks.
  1115. */
  1116. static int
  1117. rcu_torture_stats(void *arg)
  1118. {
  1119. VERBOSE_PRINTK_STRING("rcu_torture_stats task started");
  1120. do {
  1121. schedule_timeout_interruptible(stat_interval * HZ);
  1122. rcu_torture_stats_print();
  1123. rcutorture_shutdown_absorb("rcu_torture_stats");
  1124. } while (!kthread_should_stop());
  1125. VERBOSE_PRINTK_STRING("rcu_torture_stats task stopping");
  1126. return 0;
  1127. }
  1128. static int rcu_idle_cpu; /* Force all torture tasks off this CPU */
  1129. /* Shuffle tasks such that we allow @rcu_idle_cpu to become idle. A special case
  1130. * is when @rcu_idle_cpu = -1, when we allow the tasks to run on all CPUs.
  1131. */
  1132. static void rcu_torture_shuffle_tasks(void)
  1133. {
  1134. int i;
  1135. cpumask_setall(shuffle_tmp_mask);
  1136. get_online_cpus();
  1137. /* No point in shuffling if there is only one online CPU (ex: UP) */
  1138. if (num_online_cpus() == 1) {
  1139. put_online_cpus();
  1140. return;
  1141. }
  1142. if (rcu_idle_cpu != -1)
  1143. cpumask_clear_cpu(rcu_idle_cpu, shuffle_tmp_mask);
  1144. set_cpus_allowed_ptr(current, shuffle_tmp_mask);
  1145. if (reader_tasks) {
  1146. for (i = 0; i < nrealreaders; i++)
  1147. if (reader_tasks[i])
  1148. set_cpus_allowed_ptr(reader_tasks[i],
  1149. shuffle_tmp_mask);
  1150. }
  1151. if (fakewriter_tasks) {
  1152. for (i = 0; i < nfakewriters; i++)
  1153. if (fakewriter_tasks[i])
  1154. set_cpus_allowed_ptr(fakewriter_tasks[i],
  1155. shuffle_tmp_mask);
  1156. }
  1157. if (writer_task)
  1158. set_cpus_allowed_ptr(writer_task, shuffle_tmp_mask);
  1159. if (stats_task)
  1160. set_cpus_allowed_ptr(stats_task, shuffle_tmp_mask);
  1161. if (rcu_idle_cpu == -1)
  1162. rcu_idle_cpu = num_online_cpus() - 1;
  1163. else
  1164. rcu_idle_cpu--;
  1165. put_online_cpus();
  1166. }
  1167. /* Shuffle tasks across CPUs, with the intent of allowing each CPU in the
  1168. * system to become idle at a time and cut off its timer ticks. This is meant
  1169. * to test the support for such tickless idle CPU in RCU.
  1170. */
  1171. static int
  1172. rcu_torture_shuffle(void *arg)
  1173. {
  1174. VERBOSE_PRINTK_STRING("rcu_torture_shuffle task started");
  1175. do {
  1176. schedule_timeout_interruptible(shuffle_interval * HZ);
  1177. rcu_torture_shuffle_tasks();
  1178. rcutorture_shutdown_absorb("rcu_torture_shuffle");
  1179. } while (!kthread_should_stop());
  1180. VERBOSE_PRINTK_STRING("rcu_torture_shuffle task stopping");
  1181. return 0;
  1182. }
  1183. /* Cause the rcutorture test to "stutter", starting and stopping all
  1184. * threads periodically.
  1185. */
  1186. static int
  1187. rcu_torture_stutter(void *arg)
  1188. {
  1189. VERBOSE_PRINTK_STRING("rcu_torture_stutter task started");
  1190. do {
  1191. schedule_timeout_interruptible(stutter * HZ);
  1192. stutter_pause_test = 1;
  1193. if (!kthread_should_stop())
  1194. schedule_timeout_interruptible(stutter * HZ);
  1195. stutter_pause_test = 0;
  1196. rcutorture_shutdown_absorb("rcu_torture_stutter");
  1197. } while (!kthread_should_stop());
  1198. VERBOSE_PRINTK_STRING("rcu_torture_stutter task stopping");
  1199. return 0;
  1200. }
  1201. static inline void
  1202. rcu_torture_print_module_parms(struct rcu_torture_ops *cur_ops, char *tag)
  1203. {
  1204. printk(KERN_ALERT "%s" TORTURE_FLAG
  1205. "--- %s: nreaders=%d nfakewriters=%d "
  1206. "stat_interval=%d verbose=%d test_no_idle_hz=%d "
  1207. "shuffle_interval=%d stutter=%d irqreader=%d "
  1208. "fqs_duration=%d fqs_holdoff=%d fqs_stutter=%d "
  1209. "test_boost=%d/%d test_boost_interval=%d "
  1210. "test_boost_duration=%d shutdown_secs=%d "
  1211. "onoff_interval=%d onoff_holdoff=%d\n",
  1212. torture_type, tag, nrealreaders, nfakewriters,
  1213. stat_interval, verbose, test_no_idle_hz, shuffle_interval,
  1214. stutter, irqreader, fqs_duration, fqs_holdoff, fqs_stutter,
  1215. test_boost, cur_ops->can_boost,
  1216. test_boost_interval, test_boost_duration, shutdown_secs,
  1217. onoff_interval, onoff_holdoff);
  1218. }
  1219. static struct notifier_block rcutorture_shutdown_nb = {
  1220. .notifier_call = rcutorture_shutdown_notify,
  1221. };
  1222. static void rcutorture_booster_cleanup(int cpu)
  1223. {
  1224. struct task_struct *t;
  1225. if (boost_tasks[cpu] == NULL)
  1226. return;
  1227. mutex_lock(&boost_mutex);
  1228. VERBOSE_PRINTK_STRING("Stopping rcu_torture_boost task");
  1229. t = boost_tasks[cpu];
  1230. boost_tasks[cpu] = NULL;
  1231. mutex_unlock(&boost_mutex);
  1232. /* This must be outside of the mutex, otherwise deadlock! */
  1233. kthread_stop(t);
  1234. boost_tasks[cpu] = NULL;
  1235. }
  1236. static int rcutorture_booster_init(int cpu)
  1237. {
  1238. int retval;
  1239. if (boost_tasks[cpu] != NULL)
  1240. return 0; /* Already created, nothing more to do. */
  1241. /* Don't allow time recalculation while creating a new task. */
  1242. mutex_lock(&boost_mutex);
  1243. VERBOSE_PRINTK_STRING("Creating rcu_torture_boost task");
  1244. boost_tasks[cpu] = kthread_create_on_node(rcu_torture_boost, NULL,
  1245. cpu_to_node(cpu),
  1246. "rcu_torture_boost");
  1247. if (IS_ERR(boost_tasks[cpu])) {
  1248. retval = PTR_ERR(boost_tasks[cpu]);
  1249. VERBOSE_PRINTK_STRING("rcu_torture_boost task create failed");
  1250. n_rcu_torture_boost_ktrerror++;
  1251. boost_tasks[cpu] = NULL;
  1252. mutex_unlock(&boost_mutex);
  1253. return retval;
  1254. }
  1255. kthread_bind(boost_tasks[cpu], cpu);
  1256. wake_up_process(boost_tasks[cpu]);
  1257. mutex_unlock(&boost_mutex);
  1258. return 0;
  1259. }
  1260. /*
  1261. * Cause the rcutorture test to shutdown the system after the test has
  1262. * run for the time specified by the shutdown_secs module parameter.
  1263. */
  1264. static int
  1265. rcu_torture_shutdown(void *arg)
  1266. {
  1267. long delta;
  1268. unsigned long jiffies_snap;
  1269. VERBOSE_PRINTK_STRING("rcu_torture_shutdown task started");
  1270. jiffies_snap = ACCESS_ONCE(jiffies);
  1271. while (ULONG_CMP_LT(jiffies_snap, shutdown_time) &&
  1272. !kthread_should_stop()) {
  1273. delta = shutdown_time - jiffies_snap;
  1274. if (verbose)
  1275. printk(KERN_ALERT "%s" TORTURE_FLAG
  1276. "rcu_torture_shutdown task: %lu "
  1277. "jiffies remaining\n",
  1278. torture_type, delta);
  1279. schedule_timeout_interruptible(delta);
  1280. jiffies_snap = ACCESS_ONCE(jiffies);
  1281. }
  1282. if (kthread_should_stop()) {
  1283. VERBOSE_PRINTK_STRING("rcu_torture_shutdown task stopping");
  1284. return 0;
  1285. }
  1286. /* OK, shut down the system. */
  1287. VERBOSE_PRINTK_STRING("rcu_torture_shutdown task shutting down system");
  1288. shutdown_task = NULL; /* Avoid self-kill deadlock. */
  1289. rcu_torture_cleanup(); /* Get the success/failure message. */
  1290. kernel_power_off(); /* Shut down the system. */
  1291. return 0;
  1292. }
  1293. #ifdef CONFIG_HOTPLUG_CPU
  1294. /*
  1295. * Execute random CPU-hotplug operations at the interval specified
  1296. * by the onoff_interval.
  1297. */
  1298. static int __cpuinit
  1299. rcu_torture_onoff(void *arg)
  1300. {
  1301. int cpu;
  1302. int maxcpu = -1;
  1303. DEFINE_RCU_RANDOM(rand);
  1304. VERBOSE_PRINTK_STRING("rcu_torture_onoff task started");
  1305. for_each_online_cpu(cpu)
  1306. maxcpu = cpu;
  1307. WARN_ON(maxcpu < 0);
  1308. if (onoff_holdoff > 0) {
  1309. VERBOSE_PRINTK_STRING("rcu_torture_onoff begin holdoff");
  1310. schedule_timeout_interruptible(onoff_holdoff * HZ);
  1311. VERBOSE_PRINTK_STRING("rcu_torture_onoff end holdoff");
  1312. }
  1313. while (!kthread_should_stop()) {
  1314. cpu = (rcu_random(&rand) >> 4) % (maxcpu + 1);
  1315. if (cpu_online(cpu) && cpu_is_hotpluggable(cpu)) {
  1316. if (verbose)
  1317. printk(KERN_ALERT "%s" TORTURE_FLAG
  1318. "rcu_torture_onoff task: offlining %d\n",
  1319. torture_type, cpu);
  1320. n_offline_attempts++;
  1321. if (cpu_down(cpu) == 0) {
  1322. if (verbose)
  1323. printk(KERN_ALERT "%s" TORTURE_FLAG
  1324. "rcu_torture_onoff task: "
  1325. "offlined %d\n",
  1326. torture_type, cpu);
  1327. n_offline_successes++;
  1328. }
  1329. } else if (cpu_is_hotpluggable(cpu)) {
  1330. if (verbose)
  1331. printk(KERN_ALERT "%s" TORTURE_FLAG
  1332. "rcu_torture_onoff task: onlining %d\n",
  1333. torture_type, cpu);
  1334. n_online_attempts++;
  1335. if (cpu_up(cpu) == 0) {
  1336. if (verbose)
  1337. printk(KERN_ALERT "%s" TORTURE_FLAG
  1338. "rcu_torture_onoff task: "
  1339. "onlined %d\n",
  1340. torture_type, cpu);
  1341. n_online_successes++;
  1342. }
  1343. }
  1344. schedule_timeout_interruptible(onoff_interval * HZ);
  1345. }
  1346. VERBOSE_PRINTK_STRING("rcu_torture_onoff task stopping");
  1347. return 0;
  1348. }
  1349. static int __cpuinit
  1350. rcu_torture_onoff_init(void)
  1351. {
  1352. int ret;
  1353. if (onoff_interval <= 0)
  1354. return 0;
  1355. onoff_task = kthread_run(rcu_torture_onoff, NULL, "rcu_torture_onoff");
  1356. if (IS_ERR(onoff_task)) {
  1357. ret = PTR_ERR(onoff_task);
  1358. onoff_task = NULL;
  1359. return ret;
  1360. }
  1361. return 0;
  1362. }
  1363. static void rcu_torture_onoff_cleanup(void)
  1364. {
  1365. if (onoff_task == NULL)
  1366. return;
  1367. VERBOSE_PRINTK_STRING("Stopping rcu_torture_onoff task");
  1368. kthread_stop(onoff_task);
  1369. onoff_task = NULL;
  1370. }
  1371. #else /* #ifdef CONFIG_HOTPLUG_CPU */
  1372. static int
  1373. rcu_torture_onoff_init(void)
  1374. {
  1375. return 0;
  1376. }
  1377. static void rcu_torture_onoff_cleanup(void)
  1378. {
  1379. }
  1380. #endif /* #else #ifdef CONFIG_HOTPLUG_CPU */
  1381. /*
  1382. * CPU-stall kthread. It waits as specified by stall_cpu_holdoff, then
  1383. * induces a CPU stall for the time specified by stall_cpu.
  1384. */
  1385. static int __cpuinit rcu_torture_stall(void *args)
  1386. {
  1387. unsigned long stop_at;
  1388. VERBOSE_PRINTK_STRING("rcu_torture_stall task started");
  1389. if (stall_cpu_holdoff > 0) {
  1390. VERBOSE_PRINTK_STRING("rcu_torture_stall begin holdoff");
  1391. schedule_timeout_interruptible(stall_cpu_holdoff * HZ);
  1392. VERBOSE_PRINTK_STRING("rcu_torture_stall end holdoff");
  1393. }
  1394. if (!kthread_should_stop()) {
  1395. stop_at = get_seconds() + stall_cpu;
  1396. /* RCU CPU stall is expected behavior in following code. */
  1397. printk(KERN_ALERT "rcu_torture_stall start.\n");
  1398. rcu_read_lock();
  1399. preempt_disable();
  1400. while (ULONG_CMP_LT(get_seconds(), stop_at))
  1401. continue; /* Induce RCU CPU stall warning. */
  1402. preempt_enable();
  1403. rcu_read_unlock();
  1404. printk(KERN_ALERT "rcu_torture_stall end.\n");
  1405. }
  1406. rcutorture_shutdown_absorb("rcu_torture_stall");
  1407. while (!kthread_should_stop())
  1408. schedule_timeout_interruptible(10 * HZ);
  1409. return 0;
  1410. }
  1411. /* Spawn CPU-stall kthread, if stall_cpu specified. */
  1412. static int __init rcu_torture_stall_init(void)
  1413. {
  1414. int ret;
  1415. if (stall_cpu <= 0)
  1416. return 0;
  1417. stall_task = kthread_run(rcu_torture_stall, NULL, "rcu_torture_stall");
  1418. if (IS_ERR(stall_task)) {
  1419. ret = PTR_ERR(stall_task);
  1420. stall_task = NULL;
  1421. return ret;
  1422. }
  1423. return 0;
  1424. }
  1425. /* Clean up after the CPU-stall kthread, if one was spawned. */
  1426. static void rcu_torture_stall_cleanup(void)
  1427. {
  1428. if (stall_task == NULL)
  1429. return;
  1430. VERBOSE_PRINTK_STRING("Stopping rcu_torture_stall_task.");
  1431. kthread_stop(stall_task);
  1432. stall_task = NULL;
  1433. }
  1434. /* Callback function for RCU barrier testing. */
  1435. void rcu_torture_barrier_cbf(struct rcu_head *rcu)
  1436. {
  1437. atomic_inc(&barrier_cbs_invoked);
  1438. }
  1439. /* kthread function to register callbacks used to test RCU barriers. */
  1440. static int rcu_torture_barrier_cbs(void *arg)
  1441. {
  1442. long myid = (long)arg;
  1443. struct rcu_head rcu;
  1444. init_rcu_head_on_stack(&rcu);
  1445. VERBOSE_PRINTK_STRING("rcu_torture_barrier_cbs task started");
  1446. set_user_nice(current, 19);
  1447. do {
  1448. wait_event(barrier_cbs_wq[myid],
  1449. atomic_read(&barrier_cbs_count) == n_barrier_cbs ||
  1450. kthread_should_stop() ||
  1451. fullstop != FULLSTOP_DONTSTOP);
  1452. if (kthread_should_stop() || fullstop != FULLSTOP_DONTSTOP)
  1453. break;
  1454. cur_ops->call(&rcu, rcu_torture_barrier_cbf);
  1455. if (atomic_dec_and_test(&barrier_cbs_count))
  1456. wake_up(&barrier_wq);
  1457. } while (!kthread_should_stop() && fullstop == FULLSTOP_DONTSTOP);
  1458. VERBOSE_PRINTK_STRING("rcu_torture_barrier_cbs task stopping");
  1459. rcutorture_shutdown_absorb("rcu_torture_barrier_cbs");
  1460. while (!kthread_should_stop())
  1461. schedule_timeout_interruptible(1);
  1462. cur_ops->cb_barrier();
  1463. destroy_rcu_head_on_stack(&rcu);
  1464. return 0;
  1465. }
  1466. /* kthread function to drive and coordinate RCU barrier testing. */
  1467. static int rcu_torture_barrier(void *arg)
  1468. {
  1469. int i;
  1470. VERBOSE_PRINTK_STRING("rcu_torture_barrier task starting");
  1471. do {
  1472. atomic_set(&barrier_cbs_invoked, 0);
  1473. atomic_set(&barrier_cbs_count, n_barrier_cbs);
  1474. /* wake_up() path contains the required barriers. */
  1475. for (i = 0; i < n_barrier_cbs; i++)
  1476. wake_up(&barrier_cbs_wq[i]);
  1477. wait_event(barrier_wq,
  1478. atomic_read(&barrier_cbs_count) == 0 ||
  1479. kthread_should_stop() ||
  1480. fullstop != FULLSTOP_DONTSTOP);
  1481. if (kthread_should_stop() || fullstop != FULLSTOP_DONTSTOP)
  1482. break;
  1483. n_barrier_attempts++;
  1484. cur_ops->cb_barrier();
  1485. if (atomic_read(&barrier_cbs_invoked) != n_barrier_cbs) {
  1486. n_rcu_torture_barrier_error++;
  1487. WARN_ON_ONCE(1);
  1488. }
  1489. n_barrier_successes++;
  1490. schedule_timeout_interruptible(HZ / 10);
  1491. } while (!kthread_should_stop() && fullstop == FULLSTOP_DONTSTOP);
  1492. VERBOSE_PRINTK_STRING("rcu_torture_barrier task stopping");
  1493. rcutorture_shutdown_absorb("rcu_torture_barrier_cbs");
  1494. while (!kthread_should_stop())
  1495. schedule_timeout_interruptible(1);
  1496. return 0;
  1497. }
  1498. /* Initialize RCU barrier testing. */
  1499. static int rcu_torture_barrier_init(void)
  1500. {
  1501. int i;
  1502. int ret;
  1503. if (n_barrier_cbs == 0)
  1504. return 0;
  1505. if (cur_ops->call == NULL || cur_ops->cb_barrier == NULL) {
  1506. printk(KERN_ALERT "%s" TORTURE_FLAG
  1507. " Call or barrier ops missing for %s,\n",
  1508. torture_type, cur_ops->name);
  1509. printk(KERN_ALERT "%s" TORTURE_FLAG
  1510. " RCU barrier testing omitted from run.\n",
  1511. torture_type);
  1512. return 0;
  1513. }
  1514. atomic_set(&barrier_cbs_count, 0);
  1515. atomic_set(&barrier_cbs_invoked, 0);
  1516. barrier_cbs_tasks =
  1517. kzalloc(n_barrier_cbs * sizeof(barrier_cbs_tasks[0]),
  1518. GFP_KERNEL);
  1519. barrier_cbs_wq =
  1520. kzalloc(n_barrier_cbs * sizeof(barrier_cbs_wq[0]),
  1521. GFP_KERNEL);
  1522. if (barrier_cbs_tasks == NULL || barrier_cbs_wq == 0)
  1523. return -ENOMEM;
  1524. for (i = 0; i < n_barrier_cbs; i++) {
  1525. init_waitqueue_head(&barrier_cbs_wq[i]);
  1526. barrier_cbs_tasks[i] = kthread_run(rcu_torture_barrier_cbs,
  1527. (void *)i,
  1528. "rcu_torture_barrier_cbs");
  1529. if (IS_ERR(barrier_cbs_tasks[i])) {
  1530. ret = PTR_ERR(barrier_cbs_tasks[i]);
  1531. VERBOSE_PRINTK_ERRSTRING("Failed to create rcu_torture_barrier_cbs");
  1532. barrier_cbs_tasks[i] = NULL;
  1533. return ret;
  1534. }
  1535. }
  1536. barrier_task = kthread_run(rcu_torture_barrier, NULL,
  1537. "rcu_torture_barrier");
  1538. if (IS_ERR(barrier_task)) {
  1539. ret = PTR_ERR(barrier_task);
  1540. VERBOSE_PRINTK_ERRSTRING("Failed to create rcu_torture_barrier");
  1541. barrier_task = NULL;
  1542. }
  1543. return 0;
  1544. }
  1545. /* Clean up after RCU barrier testing. */
  1546. static void rcu_torture_barrier_cleanup(void)
  1547. {
  1548. int i;
  1549. if (barrier_task != NULL) {
  1550. VERBOSE_PRINTK_STRING("Stopping rcu_torture_barrier task");
  1551. kthread_stop(barrier_task);
  1552. barrier_task = NULL;
  1553. }
  1554. if (barrier_cbs_tasks != NULL) {
  1555. for (i = 0; i < n_barrier_cbs; i++) {
  1556. if (barrier_cbs_tasks[i] != NULL) {
  1557. VERBOSE_PRINTK_STRING("Stopping rcu_torture_barrier_cbs task");
  1558. kthread_stop(barrier_cbs_tasks[i]);
  1559. barrier_cbs_tasks[i] = NULL;
  1560. }
  1561. }
  1562. kfree(barrier_cbs_tasks);
  1563. barrier_cbs_tasks = NULL;
  1564. }
  1565. if (barrier_cbs_wq != NULL) {
  1566. kfree(barrier_cbs_wq);
  1567. barrier_cbs_wq = NULL;
  1568. }
  1569. }
  1570. static int rcutorture_cpu_notify(struct notifier_block *self,
  1571. unsigned long action, void *hcpu)
  1572. {
  1573. long cpu = (long)hcpu;
  1574. switch (action) {
  1575. case CPU_ONLINE:
  1576. case CPU_DOWN_FAILED:
  1577. (void)rcutorture_booster_init(cpu);
  1578. break;
  1579. case CPU_DOWN_PREPARE:
  1580. rcutorture_booster_cleanup(cpu);
  1581. break;
  1582. default:
  1583. break;
  1584. }
  1585. return NOTIFY_OK;
  1586. }
  1587. static struct notifier_block rcutorture_cpu_nb = {
  1588. .notifier_call = rcutorture_cpu_notify,
  1589. };
  1590. static void
  1591. rcu_torture_cleanup(void)
  1592. {
  1593. int i;
  1594. mutex_lock(&fullstop_mutex);
  1595. rcutorture_record_test_transition();
  1596. if (fullstop == FULLSTOP_SHUTDOWN) {
  1597. printk(KERN_WARNING /* but going down anyway, so... */
  1598. "Concurrent 'rmmod rcutorture' and shutdown illegal!\n");
  1599. mutex_unlock(&fullstop_mutex);
  1600. schedule_timeout_uninterruptible(10);
  1601. if (cur_ops->cb_barrier != NULL)
  1602. cur_ops->cb_barrier();
  1603. return;
  1604. }
  1605. fullstop = FULLSTOP_RMMOD;
  1606. mutex_unlock(&fullstop_mutex);
  1607. unregister_reboot_notifier(&rcutorture_shutdown_nb);
  1608. rcu_torture_barrier_cleanup();
  1609. rcu_torture_stall_cleanup();
  1610. if (stutter_task) {
  1611. VERBOSE_PRINTK_STRING("Stopping rcu_torture_stutter task");
  1612. kthread_stop(stutter_task);
  1613. }
  1614. stutter_task = NULL;
  1615. if (shuffler_task) {
  1616. VERBOSE_PRINTK_STRING("Stopping rcu_torture_shuffle task");
  1617. kthread_stop(shuffler_task);
  1618. free_cpumask_var(shuffle_tmp_mask);
  1619. }
  1620. shuffler_task = NULL;
  1621. if (writer_task) {
  1622. VERBOSE_PRINTK_STRING("Stopping rcu_torture_writer task");
  1623. kthread_stop(writer_task);
  1624. }
  1625. writer_task = NULL;
  1626. if (reader_tasks) {
  1627. for (i = 0; i < nrealreaders; i++) {
  1628. if (reader_tasks[i]) {
  1629. VERBOSE_PRINTK_STRING(
  1630. "Stopping rcu_torture_reader task");
  1631. kthread_stop(reader_tasks[i]);
  1632. }
  1633. reader_tasks[i] = NULL;
  1634. }
  1635. kfree(reader_tasks);
  1636. reader_tasks = NULL;
  1637. }
  1638. rcu_torture_current = NULL;
  1639. if (fakewriter_tasks) {
  1640. for (i = 0; i < nfakewriters; i++) {
  1641. if (fakewriter_tasks[i]) {
  1642. VERBOSE_PRINTK_STRING(
  1643. "Stopping rcu_torture_fakewriter task");
  1644. kthread_stop(fakewriter_tasks[i]);
  1645. }
  1646. fakewriter_tasks[i] = NULL;
  1647. }
  1648. kfree(fakewriter_tasks);
  1649. fakewriter_tasks = NULL;
  1650. }
  1651. if (stats_task) {
  1652. VERBOSE_PRINTK_STRING("Stopping rcu_torture_stats task");
  1653. kthread_stop(stats_task);
  1654. }
  1655. stats_task = NULL;
  1656. if (fqs_task) {
  1657. VERBOSE_PRINTK_STRING("Stopping rcu_torture_fqs task");
  1658. kthread_stop(fqs_task);
  1659. }
  1660. fqs_task = NULL;
  1661. if ((test_boost == 1 && cur_ops->can_boost) ||
  1662. test_boost == 2) {
  1663. unregister_cpu_notifier(&rcutorture_cpu_nb);
  1664. for_each_possible_cpu(i)
  1665. rcutorture_booster_cleanup(i);
  1666. }
  1667. if (shutdown_task != NULL) {
  1668. VERBOSE_PRINTK_STRING("Stopping rcu_torture_shutdown task");
  1669. kthread_stop(shutdown_task);
  1670. }
  1671. shutdown_task = NULL;
  1672. rcu_torture_onoff_cleanup();
  1673. /* Wait for all RCU callbacks to fire. */
  1674. if (cur_ops->cb_barrier != NULL)
  1675. cur_ops->cb_barrier();
  1676. rcu_torture_stats_print(); /* -After- the stats thread is stopped! */
  1677. if (cur_ops->cleanup)
  1678. cur_ops->cleanup();
  1679. if (atomic_read(&n_rcu_torture_error) || n_rcu_torture_barrier_error)
  1680. rcu_torture_print_module_parms(cur_ops, "End of test: FAILURE");
  1681. else if (n_online_successes != n_online_attempts ||
  1682. n_offline_successes != n_offline_attempts)
  1683. rcu_torture_print_module_parms(cur_ops,
  1684. "End of test: RCU_HOTPLUG");
  1685. else
  1686. rcu_torture_print_module_parms(cur_ops, "End of test: SUCCESS");
  1687. }
  1688. static int __init
  1689. rcu_torture_init(void)
  1690. {
  1691. int i;
  1692. int cpu;
  1693. int firsterr = 0;
  1694. int retval;
  1695. static struct rcu_torture_ops *torture_ops[] =
  1696. { &rcu_ops, &rcu_sync_ops, &rcu_expedited_ops,
  1697. &rcu_bh_ops, &rcu_bh_sync_ops, &rcu_bh_expedited_ops,
  1698. &srcu_ops, &srcu_raw_ops, &srcu_expedited_ops,
  1699. &sched_ops, &sched_sync_ops, &sched_expedited_ops, };
  1700. mutex_lock(&fullstop_mutex);
  1701. /* Process args and tell the world that the torturer is on the job. */
  1702. for (i = 0; i < ARRAY_SIZE(torture_ops); i++) {
  1703. cur_ops = torture_ops[i];
  1704. if (strcmp(torture_type, cur_ops->name) == 0)
  1705. break;
  1706. }
  1707. if (i == ARRAY_SIZE(torture_ops)) {
  1708. printk(KERN_ALERT "rcu-torture: invalid torture type: \"%s\"\n",
  1709. torture_type);
  1710. printk(KERN_ALERT "rcu-torture types:");
  1711. for (i = 0; i < ARRAY_SIZE(torture_ops); i++)
  1712. printk(KERN_ALERT " %s", torture_ops[i]->name);
  1713. printk(KERN_ALERT "\n");
  1714. mutex_unlock(&fullstop_mutex);
  1715. return -EINVAL;
  1716. }
  1717. if (cur_ops->fqs == NULL && fqs_duration != 0) {
  1718. printk(KERN_ALERT "rcu-torture: ->fqs NULL and non-zero "
  1719. "fqs_duration, fqs disabled.\n");
  1720. fqs_duration = 0;
  1721. }
  1722. if (cur_ops->init)
  1723. cur_ops->init(); /* no "goto unwind" prior to this point!!! */
  1724. if (nreaders >= 0)
  1725. nrealreaders = nreaders;
  1726. else
  1727. nrealreaders = 2 * num_online_cpus();
  1728. rcu_torture_print_module_parms(cur_ops, "Start of test");
  1729. fullstop = FULLSTOP_DONTSTOP;
  1730. /* Set up the freelist. */
  1731. INIT_LIST_HEAD(&rcu_torture_freelist);
  1732. for (i = 0; i < ARRAY_SIZE(rcu_tortures); i++) {
  1733. rcu_tortures[i].rtort_mbtest = 0;
  1734. list_add_tail(&rcu_tortures[i].rtort_free,
  1735. &rcu_torture_freelist);
  1736. }
  1737. /* Initialize the statistics so that each run gets its own numbers. */
  1738. rcu_torture_current = NULL;
  1739. rcu_torture_current_version = 0;
  1740. atomic_set(&n_rcu_torture_alloc, 0);
  1741. atomic_set(&n_rcu_torture_alloc_fail, 0);
  1742. atomic_set(&n_rcu_torture_free, 0);
  1743. atomic_set(&n_rcu_torture_mberror, 0);
  1744. atomic_set(&n_rcu_torture_error, 0);
  1745. n_rcu_torture_barrier_error = 0;
  1746. n_rcu_torture_boost_ktrerror = 0;
  1747. n_rcu_torture_boost_rterror = 0;
  1748. n_rcu_torture_boost_failure = 0;
  1749. n_rcu_torture_boosts = 0;
  1750. for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
  1751. atomic_set(&rcu_torture_wcount[i], 0);
  1752. for_each_possible_cpu(cpu) {
  1753. for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
  1754. per_cpu(rcu_torture_count, cpu)[i] = 0;
  1755. per_cpu(rcu_torture_batch, cpu)[i] = 0;
  1756. }
  1757. }
  1758. /* Start up the kthreads. */
  1759. VERBOSE_PRINTK_STRING("Creating rcu_torture_writer task");
  1760. writer_task = kthread_run(rcu_torture_writer, NULL,
  1761. "rcu_torture_writer");
  1762. if (IS_ERR(writer_task)) {
  1763. firsterr = PTR_ERR(writer_task);
  1764. VERBOSE_PRINTK_ERRSTRING("Failed to create writer");
  1765. writer_task = NULL;
  1766. goto unwind;
  1767. }
  1768. fakewriter_tasks = kzalloc(nfakewriters * sizeof(fakewriter_tasks[0]),
  1769. GFP_KERNEL);
  1770. if (fakewriter_tasks == NULL) {
  1771. VERBOSE_PRINTK_ERRSTRING("out of memory");
  1772. firsterr = -ENOMEM;
  1773. goto unwind;
  1774. }
  1775. for (i = 0; i < nfakewriters; i++) {
  1776. VERBOSE_PRINTK_STRING("Creating rcu_torture_fakewriter task");
  1777. fakewriter_tasks[i] = kthread_run(rcu_torture_fakewriter, NULL,
  1778. "rcu_torture_fakewriter");
  1779. if (IS_ERR(fakewriter_tasks[i])) {
  1780. firsterr = PTR_ERR(fakewriter_tasks[i]);
  1781. VERBOSE_PRINTK_ERRSTRING("Failed to create fakewriter");
  1782. fakewriter_tasks[i] = NULL;
  1783. goto unwind;
  1784. }
  1785. }
  1786. reader_tasks = kzalloc(nrealreaders * sizeof(reader_tasks[0]),
  1787. GFP_KERNEL);
  1788. if (reader_tasks == NULL) {
  1789. VERBOSE_PRINTK_ERRSTRING("out of memory");
  1790. firsterr = -ENOMEM;
  1791. goto unwind;
  1792. }
  1793. for (i = 0; i < nrealreaders; i++) {
  1794. VERBOSE_PRINTK_STRING("Creating rcu_torture_reader task");
  1795. reader_tasks[i] = kthread_run(rcu_torture_reader, NULL,
  1796. "rcu_torture_reader");
  1797. if (IS_ERR(reader_tasks[i])) {
  1798. firsterr = PTR_ERR(reader_tasks[i]);
  1799. VERBOSE_PRINTK_ERRSTRING("Failed to create reader");
  1800. reader_tasks[i] = NULL;
  1801. goto unwind;
  1802. }
  1803. }
  1804. if (stat_interval > 0) {
  1805. VERBOSE_PRINTK_STRING("Creating rcu_torture_stats task");
  1806. stats_task = kthread_run(rcu_torture_stats, NULL,
  1807. "rcu_torture_stats");
  1808. if (IS_ERR(stats_task)) {
  1809. firsterr = PTR_ERR(stats_task);
  1810. VERBOSE_PRINTK_ERRSTRING("Failed to create stats");
  1811. stats_task = NULL;
  1812. goto unwind;
  1813. }
  1814. }
  1815. if (test_no_idle_hz) {
  1816. rcu_idle_cpu = num_online_cpus() - 1;
  1817. if (!alloc_cpumask_var(&shuffle_tmp_mask, GFP_KERNEL)) {
  1818. firsterr = -ENOMEM;
  1819. VERBOSE_PRINTK_ERRSTRING("Failed to alloc mask");
  1820. goto unwind;
  1821. }
  1822. /* Create the shuffler thread */
  1823. shuffler_task = kthread_run(rcu_torture_shuffle, NULL,
  1824. "rcu_torture_shuffle");
  1825. if (IS_ERR(shuffler_task)) {
  1826. free_cpumask_var(shuffle_tmp_mask);
  1827. firsterr = PTR_ERR(shuffler_task);
  1828. VERBOSE_PRINTK_ERRSTRING("Failed to create shuffler");
  1829. shuffler_task = NULL;
  1830. goto unwind;
  1831. }
  1832. }
  1833. if (stutter < 0)
  1834. stutter = 0;
  1835. if (stutter) {
  1836. /* Create the stutter thread */
  1837. stutter_task = kthread_run(rcu_torture_stutter, NULL,
  1838. "rcu_torture_stutter");
  1839. if (IS_ERR(stutter_task)) {
  1840. firsterr = PTR_ERR(stutter_task);
  1841. VERBOSE_PRINTK_ERRSTRING("Failed to create stutter");
  1842. stutter_task = NULL;
  1843. goto unwind;
  1844. }
  1845. }
  1846. if (fqs_duration < 0)
  1847. fqs_duration = 0;
  1848. if (fqs_duration) {
  1849. /* Create the stutter thread */
  1850. fqs_task = kthread_run(rcu_torture_fqs, NULL,
  1851. "rcu_torture_fqs");
  1852. if (IS_ERR(fqs_task)) {
  1853. firsterr = PTR_ERR(fqs_task);
  1854. VERBOSE_PRINTK_ERRSTRING("Failed to create fqs");
  1855. fqs_task = NULL;
  1856. goto unwind;
  1857. }
  1858. }
  1859. if (test_boost_interval < 1)
  1860. test_boost_interval = 1;
  1861. if (test_boost_duration < 2)
  1862. test_boost_duration = 2;
  1863. if ((test_boost == 1 && cur_ops->can_boost) ||
  1864. test_boost == 2) {
  1865. boost_starttime = jiffies + test_boost_interval * HZ;
  1866. register_cpu_notifier(&rcutorture_cpu_nb);
  1867. for_each_possible_cpu(i) {
  1868. if (cpu_is_offline(i))
  1869. continue; /* Heuristic: CPU can go offline. */
  1870. retval = rcutorture_booster_init(i);
  1871. if (retval < 0) {
  1872. firsterr = retval;
  1873. goto unwind;
  1874. }
  1875. }
  1876. }
  1877. if (shutdown_secs > 0) {
  1878. shutdown_time = jiffies + shutdown_secs * HZ;
  1879. shutdown_task = kthread_run(rcu_torture_shutdown, NULL,
  1880. "rcu_torture_shutdown");
  1881. if (IS_ERR(shutdown_task)) {
  1882. firsterr = PTR_ERR(shutdown_task);
  1883. VERBOSE_PRINTK_ERRSTRING("Failed to create shutdown");
  1884. shutdown_task = NULL;
  1885. goto unwind;
  1886. }
  1887. }
  1888. i = rcu_torture_onoff_init();
  1889. if (i != 0) {
  1890. firsterr = i;
  1891. goto unwind;
  1892. }
  1893. register_reboot_notifier(&rcutorture_shutdown_nb);
  1894. i = rcu_torture_stall_init();
  1895. if (i != 0) {
  1896. firsterr = i;
  1897. goto unwind;
  1898. }
  1899. retval = rcu_torture_barrier_init();
  1900. if (retval != 0) {
  1901. firsterr = retval;
  1902. goto unwind;
  1903. }
  1904. rcutorture_record_test_transition();
  1905. mutex_unlock(&fullstop_mutex);
  1906. return 0;
  1907. unwind:
  1908. mutex_unlock(&fullstop_mutex);
  1909. rcu_torture_cleanup();
  1910. return firsterr;
  1911. }
  1912. module_init(rcu_torture_init);
  1913. module_exit(rcu_torture_cleanup);