dlmthread.c 20 KB

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  1. /* -*- mode: c; c-basic-offset: 8; -*-
  2. * vim: noexpandtab sw=8 ts=8 sts=0:
  3. *
  4. * dlmthread.c
  5. *
  6. * standalone DLM module
  7. *
  8. * Copyright (C) 2004 Oracle. All rights reserved.
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public
  12. * License as published by the Free Software Foundation; either
  13. * version 2 of the License, or (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. * General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public
  21. * License along with this program; if not, write to the
  22. * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
  23. * Boston, MA 021110-1307, USA.
  24. *
  25. */
  26. #include <linux/module.h>
  27. #include <linux/fs.h>
  28. #include <linux/types.h>
  29. #include <linux/slab.h>
  30. #include <linux/highmem.h>
  31. #include <linux/utsname.h>
  32. #include <linux/init.h>
  33. #include <linux/sysctl.h>
  34. #include <linux/random.h>
  35. #include <linux/blkdev.h>
  36. #include <linux/socket.h>
  37. #include <linux/inet.h>
  38. #include <linux/timer.h>
  39. #include <linux/kthread.h>
  40. #include <linux/delay.h>
  41. #include "cluster/heartbeat.h"
  42. #include "cluster/nodemanager.h"
  43. #include "cluster/tcp.h"
  44. #include "dlmapi.h"
  45. #include "dlmcommon.h"
  46. #include "dlmdomain.h"
  47. #define MLOG_MASK_PREFIX (ML_DLM|ML_DLM_THREAD)
  48. #include "cluster/masklog.h"
  49. static int dlm_thread(void *data);
  50. static void dlm_flush_asts(struct dlm_ctxt *dlm);
  51. #define dlm_lock_is_remote(dlm, lock) ((lock)->ml.node != (dlm)->node_num)
  52. /* will exit holding res->spinlock, but may drop in function */
  53. /* waits until flags are cleared on res->state */
  54. void __dlm_wait_on_lockres_flags(struct dlm_lock_resource *res, int flags)
  55. {
  56. DECLARE_WAITQUEUE(wait, current);
  57. assert_spin_locked(&res->spinlock);
  58. add_wait_queue(&res->wq, &wait);
  59. repeat:
  60. set_current_state(TASK_UNINTERRUPTIBLE);
  61. if (res->state & flags) {
  62. spin_unlock(&res->spinlock);
  63. schedule();
  64. spin_lock(&res->spinlock);
  65. goto repeat;
  66. }
  67. remove_wait_queue(&res->wq, &wait);
  68. current->state = TASK_RUNNING;
  69. }
  70. int __dlm_lockres_has_locks(struct dlm_lock_resource *res)
  71. {
  72. if (list_empty(&res->granted) &&
  73. list_empty(&res->converting) &&
  74. list_empty(&res->blocked))
  75. return 0;
  76. return 1;
  77. }
  78. /* "unused": the lockres has no locks, is not on the dirty list,
  79. * has no inflight locks (in the gap between mastery and acquiring
  80. * the first lock), and has no bits in its refmap.
  81. * truly ready to be freed. */
  82. int __dlm_lockres_unused(struct dlm_lock_resource *res)
  83. {
  84. if (!__dlm_lockres_has_locks(res) &&
  85. (list_empty(&res->dirty) && !(res->state & DLM_LOCK_RES_DIRTY))) {
  86. /* try not to scan the bitmap unless the first two
  87. * conditions are already true */
  88. int bit = find_next_bit(res->refmap, O2NM_MAX_NODES, 0);
  89. if (bit >= O2NM_MAX_NODES) {
  90. /* since the bit for dlm->node_num is not
  91. * set, inflight_locks better be zero */
  92. BUG_ON(res->inflight_locks != 0);
  93. return 1;
  94. }
  95. }
  96. return 0;
  97. }
  98. /* Call whenever you may have added or deleted something from one of
  99. * the lockres queue's. This will figure out whether it belongs on the
  100. * unused list or not and does the appropriate thing. */
  101. void __dlm_lockres_calc_usage(struct dlm_ctxt *dlm,
  102. struct dlm_lock_resource *res)
  103. {
  104. mlog_entry("%.*s\n", res->lockname.len, res->lockname.name);
  105. assert_spin_locked(&dlm->spinlock);
  106. assert_spin_locked(&res->spinlock);
  107. if (__dlm_lockres_unused(res)){
  108. if (list_empty(&res->purge)) {
  109. mlog(0, "putting lockres %.*s:%p onto purge list\n",
  110. res->lockname.len, res->lockname.name, res);
  111. res->last_used = jiffies;
  112. dlm_lockres_get(res);
  113. list_add_tail(&res->purge, &dlm->purge_list);
  114. dlm->purge_count++;
  115. }
  116. } else if (!list_empty(&res->purge)) {
  117. mlog(0, "removing lockres %.*s:%p from purge list, owner=%u\n",
  118. res->lockname.len, res->lockname.name, res, res->owner);
  119. list_del_init(&res->purge);
  120. dlm_lockres_put(res);
  121. dlm->purge_count--;
  122. }
  123. }
  124. void dlm_lockres_calc_usage(struct dlm_ctxt *dlm,
  125. struct dlm_lock_resource *res)
  126. {
  127. mlog_entry("%.*s\n", res->lockname.len, res->lockname.name);
  128. spin_lock(&dlm->spinlock);
  129. spin_lock(&res->spinlock);
  130. __dlm_lockres_calc_usage(dlm, res);
  131. spin_unlock(&res->spinlock);
  132. spin_unlock(&dlm->spinlock);
  133. }
  134. static int dlm_purge_lockres(struct dlm_ctxt *dlm,
  135. struct dlm_lock_resource *res)
  136. {
  137. int master;
  138. int ret = 0;
  139. spin_lock(&res->spinlock);
  140. if (!__dlm_lockres_unused(res)) {
  141. spin_unlock(&res->spinlock);
  142. mlog(0, "%s:%.*s: tried to purge but not unused\n",
  143. dlm->name, res->lockname.len, res->lockname.name);
  144. return -ENOTEMPTY;
  145. }
  146. master = (res->owner == dlm->node_num);
  147. if (!master)
  148. res->state |= DLM_LOCK_RES_DROPPING_REF;
  149. spin_unlock(&res->spinlock);
  150. mlog(0, "purging lockres %.*s, master = %d\n", res->lockname.len,
  151. res->lockname.name, master);
  152. if (!master) {
  153. spin_lock(&res->spinlock);
  154. /* This ensures that clear refmap is sent after the set */
  155. __dlm_wait_on_lockres_flags(res, DLM_LOCK_RES_SETREF_INPROG);
  156. spin_unlock(&res->spinlock);
  157. /* drop spinlock to do messaging, retake below */
  158. spin_unlock(&dlm->spinlock);
  159. /* clear our bit from the master's refmap, ignore errors */
  160. ret = dlm_drop_lockres_ref(dlm, res);
  161. if (ret < 0) {
  162. mlog_errno(ret);
  163. if (!dlm_is_host_down(ret))
  164. BUG();
  165. }
  166. mlog(0, "%s:%.*s: dlm_deref_lockres returned %d\n",
  167. dlm->name, res->lockname.len, res->lockname.name, ret);
  168. spin_lock(&dlm->spinlock);
  169. }
  170. if (!list_empty(&res->purge)) {
  171. mlog(0, "removing lockres %.*s:%p from purgelist, "
  172. "master = %d\n", res->lockname.len, res->lockname.name,
  173. res, master);
  174. list_del_init(&res->purge);
  175. dlm_lockres_put(res);
  176. dlm->purge_count--;
  177. }
  178. __dlm_unhash_lockres(res);
  179. /* lockres is not in the hash now. drop the flag and wake up
  180. * any processes waiting in dlm_get_lock_resource. */
  181. if (!master) {
  182. spin_lock(&res->spinlock);
  183. res->state &= ~DLM_LOCK_RES_DROPPING_REF;
  184. spin_unlock(&res->spinlock);
  185. wake_up(&res->wq);
  186. }
  187. return 0;
  188. }
  189. static void dlm_run_purge_list(struct dlm_ctxt *dlm,
  190. int purge_now)
  191. {
  192. unsigned int run_max, unused;
  193. unsigned long purge_jiffies;
  194. struct dlm_lock_resource *lockres;
  195. spin_lock(&dlm->spinlock);
  196. run_max = dlm->purge_count;
  197. while(run_max && !list_empty(&dlm->purge_list)) {
  198. run_max--;
  199. lockres = list_entry(dlm->purge_list.next,
  200. struct dlm_lock_resource, purge);
  201. /* Status of the lockres *might* change so double
  202. * check. If the lockres is unused, holding the dlm
  203. * spinlock will prevent people from getting and more
  204. * refs on it -- there's no need to keep the lockres
  205. * spinlock. */
  206. spin_lock(&lockres->spinlock);
  207. unused = __dlm_lockres_unused(lockres);
  208. spin_unlock(&lockres->spinlock);
  209. if (!unused)
  210. continue;
  211. purge_jiffies = lockres->last_used +
  212. msecs_to_jiffies(DLM_PURGE_INTERVAL_MS);
  213. /* Make sure that we want to be processing this guy at
  214. * this time. */
  215. if (!purge_now && time_after(purge_jiffies, jiffies)) {
  216. /* Since resources are added to the purge list
  217. * in tail order, we can stop at the first
  218. * unpurgable resource -- anyone added after
  219. * him will have a greater last_used value */
  220. break;
  221. }
  222. mlog(0, "removing lockres %.*s:%p from purgelist\n",
  223. lockres->lockname.len, lockres->lockname.name, lockres);
  224. list_del_init(&lockres->purge);
  225. dlm_lockres_put(lockres);
  226. dlm->purge_count--;
  227. /* This may drop and reacquire the dlm spinlock if it
  228. * has to do migration. */
  229. mlog(0, "calling dlm_purge_lockres!\n");
  230. if (dlm_purge_lockres(dlm, lockres))
  231. BUG();
  232. mlog(0, "DONE calling dlm_purge_lockres!\n");
  233. /* Avoid adding any scheduling latencies */
  234. cond_resched_lock(&dlm->spinlock);
  235. }
  236. spin_unlock(&dlm->spinlock);
  237. }
  238. static void dlm_shuffle_lists(struct dlm_ctxt *dlm,
  239. struct dlm_lock_resource *res)
  240. {
  241. struct dlm_lock *lock, *target;
  242. struct list_head *iter;
  243. struct list_head *head;
  244. int can_grant = 1;
  245. //mlog(0, "res->lockname.len=%d\n", res->lockname.len);
  246. //mlog(0, "res->lockname.name=%p\n", res->lockname.name);
  247. //mlog(0, "shuffle res %.*s\n", res->lockname.len,
  248. // res->lockname.name);
  249. /* because this function is called with the lockres
  250. * spinlock, and because we know that it is not migrating/
  251. * recovering/in-progress, it is fine to reserve asts and
  252. * basts right before queueing them all throughout */
  253. assert_spin_locked(&res->spinlock);
  254. BUG_ON((res->state & (DLM_LOCK_RES_MIGRATING|
  255. DLM_LOCK_RES_RECOVERING|
  256. DLM_LOCK_RES_IN_PROGRESS)));
  257. converting:
  258. if (list_empty(&res->converting))
  259. goto blocked;
  260. mlog(0, "res %.*s has locks on a convert queue\n", res->lockname.len,
  261. res->lockname.name);
  262. target = list_entry(res->converting.next, struct dlm_lock, list);
  263. if (target->ml.convert_type == LKM_IVMODE) {
  264. mlog(ML_ERROR, "%.*s: converting a lock with no "
  265. "convert_type!\n", res->lockname.len, res->lockname.name);
  266. BUG();
  267. }
  268. head = &res->granted;
  269. list_for_each(iter, head) {
  270. lock = list_entry(iter, struct dlm_lock, list);
  271. if (lock==target)
  272. continue;
  273. if (!dlm_lock_compatible(lock->ml.type,
  274. target->ml.convert_type)) {
  275. can_grant = 0;
  276. /* queue the BAST if not already */
  277. if (lock->ml.highest_blocked == LKM_IVMODE) {
  278. __dlm_lockres_reserve_ast(res);
  279. dlm_queue_bast(dlm, lock);
  280. }
  281. /* update the highest_blocked if needed */
  282. if (lock->ml.highest_blocked < target->ml.convert_type)
  283. lock->ml.highest_blocked =
  284. target->ml.convert_type;
  285. }
  286. }
  287. head = &res->converting;
  288. list_for_each(iter, head) {
  289. lock = list_entry(iter, struct dlm_lock, list);
  290. if (lock==target)
  291. continue;
  292. if (!dlm_lock_compatible(lock->ml.type,
  293. target->ml.convert_type)) {
  294. can_grant = 0;
  295. if (lock->ml.highest_blocked == LKM_IVMODE) {
  296. __dlm_lockres_reserve_ast(res);
  297. dlm_queue_bast(dlm, lock);
  298. }
  299. if (lock->ml.highest_blocked < target->ml.convert_type)
  300. lock->ml.highest_blocked =
  301. target->ml.convert_type;
  302. }
  303. }
  304. /* we can convert the lock */
  305. if (can_grant) {
  306. spin_lock(&target->spinlock);
  307. BUG_ON(target->ml.highest_blocked != LKM_IVMODE);
  308. mlog(0, "calling ast for converting lock: %.*s, have: %d, "
  309. "granting: %d, node: %u\n", res->lockname.len,
  310. res->lockname.name, target->ml.type,
  311. target->ml.convert_type, target->ml.node);
  312. target->ml.type = target->ml.convert_type;
  313. target->ml.convert_type = LKM_IVMODE;
  314. list_move_tail(&target->list, &res->granted);
  315. BUG_ON(!target->lksb);
  316. target->lksb->status = DLM_NORMAL;
  317. spin_unlock(&target->spinlock);
  318. __dlm_lockres_reserve_ast(res);
  319. dlm_queue_ast(dlm, target);
  320. /* go back and check for more */
  321. goto converting;
  322. }
  323. blocked:
  324. if (list_empty(&res->blocked))
  325. goto leave;
  326. target = list_entry(res->blocked.next, struct dlm_lock, list);
  327. head = &res->granted;
  328. list_for_each(iter, head) {
  329. lock = list_entry(iter, struct dlm_lock, list);
  330. if (lock==target)
  331. continue;
  332. if (!dlm_lock_compatible(lock->ml.type, target->ml.type)) {
  333. can_grant = 0;
  334. if (lock->ml.highest_blocked == LKM_IVMODE) {
  335. __dlm_lockres_reserve_ast(res);
  336. dlm_queue_bast(dlm, lock);
  337. }
  338. if (lock->ml.highest_blocked < target->ml.type)
  339. lock->ml.highest_blocked = target->ml.type;
  340. }
  341. }
  342. head = &res->converting;
  343. list_for_each(iter, head) {
  344. lock = list_entry(iter, struct dlm_lock, list);
  345. if (lock==target)
  346. continue;
  347. if (!dlm_lock_compatible(lock->ml.type, target->ml.type)) {
  348. can_grant = 0;
  349. if (lock->ml.highest_blocked == LKM_IVMODE) {
  350. __dlm_lockres_reserve_ast(res);
  351. dlm_queue_bast(dlm, lock);
  352. }
  353. if (lock->ml.highest_blocked < target->ml.type)
  354. lock->ml.highest_blocked = target->ml.type;
  355. }
  356. }
  357. /* we can grant the blocked lock (only
  358. * possible if converting list empty) */
  359. if (can_grant) {
  360. spin_lock(&target->spinlock);
  361. BUG_ON(target->ml.highest_blocked != LKM_IVMODE);
  362. mlog(0, "calling ast for blocked lock: %.*s, granting: %d, "
  363. "node: %u\n", res->lockname.len, res->lockname.name,
  364. target->ml.type, target->ml.node);
  365. // target->ml.type is already correct
  366. list_move_tail(&target->list, &res->granted);
  367. BUG_ON(!target->lksb);
  368. target->lksb->status = DLM_NORMAL;
  369. spin_unlock(&target->spinlock);
  370. __dlm_lockres_reserve_ast(res);
  371. dlm_queue_ast(dlm, target);
  372. /* go back and check for more */
  373. goto converting;
  374. }
  375. leave:
  376. return;
  377. }
  378. /* must have NO locks when calling this with res !=NULL * */
  379. void dlm_kick_thread(struct dlm_ctxt *dlm, struct dlm_lock_resource *res)
  380. {
  381. mlog_entry("dlm=%p, res=%p\n", dlm, res);
  382. if (res) {
  383. spin_lock(&dlm->spinlock);
  384. spin_lock(&res->spinlock);
  385. __dlm_dirty_lockres(dlm, res);
  386. spin_unlock(&res->spinlock);
  387. spin_unlock(&dlm->spinlock);
  388. }
  389. wake_up(&dlm->dlm_thread_wq);
  390. }
  391. void __dlm_dirty_lockres(struct dlm_ctxt *dlm, struct dlm_lock_resource *res)
  392. {
  393. mlog_entry("dlm=%p, res=%p\n", dlm, res);
  394. assert_spin_locked(&dlm->spinlock);
  395. assert_spin_locked(&res->spinlock);
  396. /* don't shuffle secondary queues */
  397. if ((res->owner == dlm->node_num)) {
  398. if (res->state & (DLM_LOCK_RES_MIGRATING |
  399. DLM_LOCK_RES_BLOCK_DIRTY))
  400. return;
  401. if (list_empty(&res->dirty)) {
  402. /* ref for dirty_list */
  403. dlm_lockres_get(res);
  404. list_add_tail(&res->dirty, &dlm->dirty_list);
  405. res->state |= DLM_LOCK_RES_DIRTY;
  406. }
  407. }
  408. }
  409. /* Launch the NM thread for the mounted volume */
  410. int dlm_launch_thread(struct dlm_ctxt *dlm)
  411. {
  412. mlog(0, "starting dlm thread...\n");
  413. dlm->dlm_thread_task = kthread_run(dlm_thread, dlm, "dlm_thread");
  414. if (IS_ERR(dlm->dlm_thread_task)) {
  415. mlog_errno(PTR_ERR(dlm->dlm_thread_task));
  416. dlm->dlm_thread_task = NULL;
  417. return -EINVAL;
  418. }
  419. return 0;
  420. }
  421. void dlm_complete_thread(struct dlm_ctxt *dlm)
  422. {
  423. if (dlm->dlm_thread_task) {
  424. mlog(ML_KTHREAD, "waiting for dlm thread to exit\n");
  425. kthread_stop(dlm->dlm_thread_task);
  426. dlm->dlm_thread_task = NULL;
  427. }
  428. }
  429. static int dlm_dirty_list_empty(struct dlm_ctxt *dlm)
  430. {
  431. int empty;
  432. spin_lock(&dlm->spinlock);
  433. empty = list_empty(&dlm->dirty_list);
  434. spin_unlock(&dlm->spinlock);
  435. return empty;
  436. }
  437. static void dlm_flush_asts(struct dlm_ctxt *dlm)
  438. {
  439. int ret;
  440. struct dlm_lock *lock;
  441. struct dlm_lock_resource *res;
  442. u8 hi;
  443. spin_lock(&dlm->ast_lock);
  444. while (!list_empty(&dlm->pending_asts)) {
  445. lock = list_entry(dlm->pending_asts.next,
  446. struct dlm_lock, ast_list);
  447. /* get an extra ref on lock */
  448. dlm_lock_get(lock);
  449. res = lock->lockres;
  450. mlog(0, "delivering an ast for this lockres\n");
  451. BUG_ON(!lock->ast_pending);
  452. /* remove from list (including ref) */
  453. list_del_init(&lock->ast_list);
  454. dlm_lock_put(lock);
  455. spin_unlock(&dlm->ast_lock);
  456. if (lock->ml.node != dlm->node_num) {
  457. ret = dlm_do_remote_ast(dlm, res, lock);
  458. if (ret < 0)
  459. mlog_errno(ret);
  460. } else
  461. dlm_do_local_ast(dlm, res, lock);
  462. spin_lock(&dlm->ast_lock);
  463. /* possible that another ast was queued while
  464. * we were delivering the last one */
  465. if (!list_empty(&lock->ast_list)) {
  466. mlog(0, "aha another ast got queued while "
  467. "we were finishing the last one. will "
  468. "keep the ast_pending flag set.\n");
  469. } else
  470. lock->ast_pending = 0;
  471. /* drop the extra ref.
  472. * this may drop it completely. */
  473. dlm_lock_put(lock);
  474. dlm_lockres_release_ast(dlm, res);
  475. }
  476. while (!list_empty(&dlm->pending_basts)) {
  477. lock = list_entry(dlm->pending_basts.next,
  478. struct dlm_lock, bast_list);
  479. /* get an extra ref on lock */
  480. dlm_lock_get(lock);
  481. res = lock->lockres;
  482. BUG_ON(!lock->bast_pending);
  483. /* get the highest blocked lock, and reset */
  484. spin_lock(&lock->spinlock);
  485. BUG_ON(lock->ml.highest_blocked <= LKM_IVMODE);
  486. hi = lock->ml.highest_blocked;
  487. lock->ml.highest_blocked = LKM_IVMODE;
  488. spin_unlock(&lock->spinlock);
  489. /* remove from list (including ref) */
  490. list_del_init(&lock->bast_list);
  491. dlm_lock_put(lock);
  492. spin_unlock(&dlm->ast_lock);
  493. mlog(0, "delivering a bast for this lockres "
  494. "(blocked = %d\n", hi);
  495. if (lock->ml.node != dlm->node_num) {
  496. ret = dlm_send_proxy_bast(dlm, res, lock, hi);
  497. if (ret < 0)
  498. mlog_errno(ret);
  499. } else
  500. dlm_do_local_bast(dlm, res, lock, hi);
  501. spin_lock(&dlm->ast_lock);
  502. /* possible that another bast was queued while
  503. * we were delivering the last one */
  504. if (!list_empty(&lock->bast_list)) {
  505. mlog(0, "aha another bast got queued while "
  506. "we were finishing the last one. will "
  507. "keep the bast_pending flag set.\n");
  508. } else
  509. lock->bast_pending = 0;
  510. /* drop the extra ref.
  511. * this may drop it completely. */
  512. dlm_lock_put(lock);
  513. dlm_lockres_release_ast(dlm, res);
  514. }
  515. wake_up(&dlm->ast_wq);
  516. spin_unlock(&dlm->ast_lock);
  517. }
  518. #define DLM_THREAD_TIMEOUT_MS (4 * 1000)
  519. #define DLM_THREAD_MAX_DIRTY 100
  520. #define DLM_THREAD_MAX_ASTS 10
  521. static int dlm_thread(void *data)
  522. {
  523. struct dlm_lock_resource *res;
  524. struct dlm_ctxt *dlm = data;
  525. unsigned long timeout = msecs_to_jiffies(DLM_THREAD_TIMEOUT_MS);
  526. mlog(0, "dlm thread running for %s...\n", dlm->name);
  527. while (!kthread_should_stop()) {
  528. int n = DLM_THREAD_MAX_DIRTY;
  529. /* dlm_shutting_down is very point-in-time, but that
  530. * doesn't matter as we'll just loop back around if we
  531. * get false on the leading edge of a state
  532. * transition. */
  533. dlm_run_purge_list(dlm, dlm_shutting_down(dlm));
  534. /* We really don't want to hold dlm->spinlock while
  535. * calling dlm_shuffle_lists on each lockres that
  536. * needs to have its queues adjusted and AST/BASTs
  537. * run. So let's pull each entry off the dirty_list
  538. * and drop dlm->spinlock ASAP. Once off the list,
  539. * res->spinlock needs to be taken again to protect
  540. * the queues while calling dlm_shuffle_lists. */
  541. spin_lock(&dlm->spinlock);
  542. while (!list_empty(&dlm->dirty_list)) {
  543. int delay = 0;
  544. res = list_entry(dlm->dirty_list.next,
  545. struct dlm_lock_resource, dirty);
  546. /* peel a lockres off, remove it from the list,
  547. * unset the dirty flag and drop the dlm lock */
  548. BUG_ON(!res);
  549. dlm_lockres_get(res);
  550. spin_lock(&res->spinlock);
  551. /* We clear the DLM_LOCK_RES_DIRTY state once we shuffle lists below */
  552. list_del_init(&res->dirty);
  553. spin_unlock(&res->spinlock);
  554. spin_unlock(&dlm->spinlock);
  555. /* Drop dirty_list ref */
  556. dlm_lockres_put(res);
  557. /* lockres can be re-dirtied/re-added to the
  558. * dirty_list in this gap, but that is ok */
  559. spin_lock(&res->spinlock);
  560. if (res->owner != dlm->node_num) {
  561. __dlm_print_one_lock_resource(res);
  562. mlog(ML_ERROR, "inprog:%s, mig:%s, reco:%s, dirty:%s\n",
  563. res->state & DLM_LOCK_RES_IN_PROGRESS ? "yes" : "no",
  564. res->state & DLM_LOCK_RES_MIGRATING ? "yes" : "no",
  565. res->state & DLM_LOCK_RES_RECOVERING ? "yes" : "no",
  566. res->state & DLM_LOCK_RES_DIRTY ? "yes" : "no");
  567. }
  568. BUG_ON(res->owner != dlm->node_num);
  569. /* it is now ok to move lockreses in these states
  570. * to the dirty list, assuming that they will only be
  571. * dirty for a short while. */
  572. BUG_ON(res->state & DLM_LOCK_RES_MIGRATING);
  573. if (res->state & (DLM_LOCK_RES_IN_PROGRESS |
  574. DLM_LOCK_RES_RECOVERING)) {
  575. /* move it to the tail and keep going */
  576. res->state &= ~DLM_LOCK_RES_DIRTY;
  577. spin_unlock(&res->spinlock);
  578. mlog(0, "delaying list shuffling for in-"
  579. "progress lockres %.*s, state=%d\n",
  580. res->lockname.len, res->lockname.name,
  581. res->state);
  582. delay = 1;
  583. goto in_progress;
  584. }
  585. /* at this point the lockres is not migrating/
  586. * recovering/in-progress. we have the lockres
  587. * spinlock and do NOT have the dlm lock.
  588. * safe to reserve/queue asts and run the lists. */
  589. mlog(0, "calling dlm_shuffle_lists with dlm=%s, "
  590. "res=%.*s\n", dlm->name,
  591. res->lockname.len, res->lockname.name);
  592. /* called while holding lockres lock */
  593. dlm_shuffle_lists(dlm, res);
  594. res->state &= ~DLM_LOCK_RES_DIRTY;
  595. spin_unlock(&res->spinlock);
  596. dlm_lockres_calc_usage(dlm, res);
  597. in_progress:
  598. spin_lock(&dlm->spinlock);
  599. /* if the lock was in-progress, stick
  600. * it on the back of the list */
  601. if (delay) {
  602. spin_lock(&res->spinlock);
  603. __dlm_dirty_lockres(dlm, res);
  604. spin_unlock(&res->spinlock);
  605. }
  606. dlm_lockres_put(res);
  607. /* unlikely, but we may need to give time to
  608. * other tasks */
  609. if (!--n) {
  610. mlog(0, "throttling dlm_thread\n");
  611. break;
  612. }
  613. }
  614. spin_unlock(&dlm->spinlock);
  615. dlm_flush_asts(dlm);
  616. /* yield and continue right away if there is more work to do */
  617. if (!n) {
  618. cond_resched();
  619. continue;
  620. }
  621. wait_event_interruptible_timeout(dlm->dlm_thread_wq,
  622. !dlm_dirty_list_empty(dlm) ||
  623. kthread_should_stop(),
  624. timeout);
  625. }
  626. mlog(0, "quitting DLM thread\n");
  627. return 0;
  628. }