nfs4state.c 25 KB

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  1. /*
  2. * fs/nfs/nfs4state.c
  3. *
  4. * Client-side XDR for NFSv4.
  5. *
  6. * Copyright (c) 2002 The Regents of the University of Michigan.
  7. * All rights reserved.
  8. *
  9. * Kendrick Smith <kmsmith@umich.edu>
  10. *
  11. * Redistribution and use in source and binary forms, with or without
  12. * modification, are permitted provided that the following conditions
  13. * are met:
  14. *
  15. * 1. Redistributions of source code must retain the above copyright
  16. * notice, this list of conditions and the following disclaimer.
  17. * 2. Redistributions in binary form must reproduce the above copyright
  18. * notice, this list of conditions and the following disclaimer in the
  19. * documentation and/or other materials provided with the distribution.
  20. * 3. Neither the name of the University nor the names of its
  21. * contributors may be used to endorse or promote products derived
  22. * from this software without specific prior written permission.
  23. *
  24. * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
  25. * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
  26. * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  27. * DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
  28. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  29. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  30. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  31. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
  32. * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
  33. * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
  34. * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  35. *
  36. * Implementation of the NFSv4 state model. For the time being,
  37. * this is minimal, but will be made much more complex in a
  38. * subsequent patch.
  39. */
  40. #include <linux/config.h>
  41. #include <linux/slab.h>
  42. #include <linux/smp_lock.h>
  43. #include <linux/nfs_fs.h>
  44. #include <linux/nfs_idmap.h>
  45. #include <linux/workqueue.h>
  46. #include <linux/bitops.h>
  47. #include "nfs4_fs.h"
  48. #include "callback.h"
  49. #include "delegation.h"
  50. #define OPENOWNER_POOL_SIZE 8
  51. const nfs4_stateid zero_stateid;
  52. static DEFINE_SPINLOCK(state_spinlock);
  53. static LIST_HEAD(nfs4_clientid_list);
  54. static void nfs4_recover_state(void *);
  55. void
  56. init_nfsv4_state(struct nfs_server *server)
  57. {
  58. server->nfs4_state = NULL;
  59. INIT_LIST_HEAD(&server->nfs4_siblings);
  60. }
  61. void
  62. destroy_nfsv4_state(struct nfs_server *server)
  63. {
  64. if (server->mnt_path) {
  65. kfree(server->mnt_path);
  66. server->mnt_path = NULL;
  67. }
  68. if (server->nfs4_state) {
  69. nfs4_put_client(server->nfs4_state);
  70. server->nfs4_state = NULL;
  71. }
  72. }
  73. /*
  74. * nfs4_get_client(): returns an empty client structure
  75. * nfs4_put_client(): drops reference to client structure
  76. *
  77. * Since these are allocated/deallocated very rarely, we don't
  78. * bother putting them in a slab cache...
  79. */
  80. static struct nfs4_client *
  81. nfs4_alloc_client(struct in_addr *addr)
  82. {
  83. struct nfs4_client *clp;
  84. if (nfs_callback_up() < 0)
  85. return NULL;
  86. if ((clp = kmalloc(sizeof(*clp), GFP_KERNEL)) == NULL) {
  87. nfs_callback_down();
  88. return NULL;
  89. }
  90. memset(clp, 0, sizeof(*clp));
  91. memcpy(&clp->cl_addr, addr, sizeof(clp->cl_addr));
  92. init_rwsem(&clp->cl_sem);
  93. INIT_LIST_HEAD(&clp->cl_delegations);
  94. INIT_LIST_HEAD(&clp->cl_state_owners);
  95. INIT_LIST_HEAD(&clp->cl_unused);
  96. spin_lock_init(&clp->cl_lock);
  97. atomic_set(&clp->cl_count, 1);
  98. INIT_WORK(&clp->cl_recoverd, nfs4_recover_state, clp);
  99. INIT_WORK(&clp->cl_renewd, nfs4_renew_state, clp);
  100. INIT_LIST_HEAD(&clp->cl_superblocks);
  101. init_waitqueue_head(&clp->cl_waitq);
  102. rpc_init_wait_queue(&clp->cl_rpcwaitq, "NFS4 client");
  103. clp->cl_rpcclient = ERR_PTR(-EINVAL);
  104. clp->cl_boot_time = CURRENT_TIME;
  105. clp->cl_state = 1 << NFS4CLNT_OK;
  106. return clp;
  107. }
  108. static void
  109. nfs4_free_client(struct nfs4_client *clp)
  110. {
  111. struct nfs4_state_owner *sp;
  112. while (!list_empty(&clp->cl_unused)) {
  113. sp = list_entry(clp->cl_unused.next,
  114. struct nfs4_state_owner,
  115. so_list);
  116. list_del(&sp->so_list);
  117. kfree(sp);
  118. }
  119. BUG_ON(!list_empty(&clp->cl_state_owners));
  120. if (clp->cl_cred)
  121. put_rpccred(clp->cl_cred);
  122. nfs_idmap_delete(clp);
  123. if (!IS_ERR(clp->cl_rpcclient))
  124. rpc_shutdown_client(clp->cl_rpcclient);
  125. kfree(clp);
  126. nfs_callback_down();
  127. }
  128. static struct nfs4_client *__nfs4_find_client(struct in_addr *addr)
  129. {
  130. struct nfs4_client *clp;
  131. list_for_each_entry(clp, &nfs4_clientid_list, cl_servers) {
  132. if (memcmp(&clp->cl_addr, addr, sizeof(clp->cl_addr)) == 0) {
  133. atomic_inc(&clp->cl_count);
  134. return clp;
  135. }
  136. }
  137. return NULL;
  138. }
  139. struct nfs4_client *nfs4_find_client(struct in_addr *addr)
  140. {
  141. struct nfs4_client *clp;
  142. spin_lock(&state_spinlock);
  143. clp = __nfs4_find_client(addr);
  144. spin_unlock(&state_spinlock);
  145. return clp;
  146. }
  147. struct nfs4_client *
  148. nfs4_get_client(struct in_addr *addr)
  149. {
  150. struct nfs4_client *clp, *new = NULL;
  151. spin_lock(&state_spinlock);
  152. for (;;) {
  153. clp = __nfs4_find_client(addr);
  154. if (clp != NULL)
  155. break;
  156. clp = new;
  157. if (clp != NULL) {
  158. list_add(&clp->cl_servers, &nfs4_clientid_list);
  159. new = NULL;
  160. break;
  161. }
  162. spin_unlock(&state_spinlock);
  163. new = nfs4_alloc_client(addr);
  164. spin_lock(&state_spinlock);
  165. if (new == NULL)
  166. break;
  167. }
  168. spin_unlock(&state_spinlock);
  169. if (new)
  170. nfs4_free_client(new);
  171. return clp;
  172. }
  173. void
  174. nfs4_put_client(struct nfs4_client *clp)
  175. {
  176. if (!atomic_dec_and_lock(&clp->cl_count, &state_spinlock))
  177. return;
  178. list_del(&clp->cl_servers);
  179. spin_unlock(&state_spinlock);
  180. BUG_ON(!list_empty(&clp->cl_superblocks));
  181. wake_up_all(&clp->cl_waitq);
  182. rpc_wake_up(&clp->cl_rpcwaitq);
  183. nfs4_kill_renewd(clp);
  184. nfs4_free_client(clp);
  185. }
  186. static int __nfs4_init_client(struct nfs4_client *clp)
  187. {
  188. int status = nfs4_proc_setclientid(clp, NFS4_CALLBACK, nfs_callback_tcpport);
  189. if (status == 0)
  190. status = nfs4_proc_setclientid_confirm(clp);
  191. if (status == 0)
  192. nfs4_schedule_state_renewal(clp);
  193. return status;
  194. }
  195. int nfs4_init_client(struct nfs4_client *clp)
  196. {
  197. return nfs4_map_errors(__nfs4_init_client(clp));
  198. }
  199. u32
  200. nfs4_alloc_lockowner_id(struct nfs4_client *clp)
  201. {
  202. return clp->cl_lockowner_id ++;
  203. }
  204. static struct nfs4_state_owner *
  205. nfs4_client_grab_unused(struct nfs4_client *clp, struct rpc_cred *cred)
  206. {
  207. struct nfs4_state_owner *sp = NULL;
  208. if (!list_empty(&clp->cl_unused)) {
  209. sp = list_entry(clp->cl_unused.next, struct nfs4_state_owner, so_list);
  210. atomic_inc(&sp->so_count);
  211. sp->so_cred = cred;
  212. list_move(&sp->so_list, &clp->cl_state_owners);
  213. clp->cl_nunused--;
  214. }
  215. return sp;
  216. }
  217. static struct nfs4_state_owner *
  218. nfs4_find_state_owner(struct nfs4_client *clp, struct rpc_cred *cred)
  219. {
  220. struct nfs4_state_owner *sp, *res = NULL;
  221. list_for_each_entry(sp, &clp->cl_state_owners, so_list) {
  222. if (sp->so_cred != cred)
  223. continue;
  224. atomic_inc(&sp->so_count);
  225. /* Move to the head of the list */
  226. list_move(&sp->so_list, &clp->cl_state_owners);
  227. res = sp;
  228. break;
  229. }
  230. return res;
  231. }
  232. /*
  233. * nfs4_alloc_state_owner(): this is called on the OPEN or CREATE path to
  234. * create a new state_owner.
  235. *
  236. */
  237. static struct nfs4_state_owner *
  238. nfs4_alloc_state_owner(void)
  239. {
  240. struct nfs4_state_owner *sp;
  241. sp = kzalloc(sizeof(*sp),GFP_KERNEL);
  242. if (!sp)
  243. return NULL;
  244. INIT_LIST_HEAD(&sp->so_states);
  245. INIT_LIST_HEAD(&sp->so_delegations);
  246. rpc_init_wait_queue(&sp->so_sequence.wait, "Seqid_waitqueue");
  247. sp->so_seqid.sequence = &sp->so_sequence;
  248. spin_lock_init(&sp->so_sequence.lock);
  249. INIT_LIST_HEAD(&sp->so_sequence.list);
  250. atomic_set(&sp->so_count, 1);
  251. return sp;
  252. }
  253. void
  254. nfs4_drop_state_owner(struct nfs4_state_owner *sp)
  255. {
  256. struct nfs4_client *clp = sp->so_client;
  257. spin_lock(&clp->cl_lock);
  258. list_del_init(&sp->so_list);
  259. spin_unlock(&clp->cl_lock);
  260. }
  261. /*
  262. * Note: must be called with clp->cl_sem held in order to prevent races
  263. * with reboot recovery!
  264. */
  265. struct nfs4_state_owner *nfs4_get_state_owner(struct nfs_server *server, struct rpc_cred *cred)
  266. {
  267. struct nfs4_client *clp = server->nfs4_state;
  268. struct nfs4_state_owner *sp, *new;
  269. get_rpccred(cred);
  270. new = nfs4_alloc_state_owner();
  271. spin_lock(&clp->cl_lock);
  272. sp = nfs4_find_state_owner(clp, cred);
  273. if (sp == NULL)
  274. sp = nfs4_client_grab_unused(clp, cred);
  275. if (sp == NULL && new != NULL) {
  276. list_add(&new->so_list, &clp->cl_state_owners);
  277. new->so_client = clp;
  278. new->so_id = nfs4_alloc_lockowner_id(clp);
  279. new->so_cred = cred;
  280. sp = new;
  281. new = NULL;
  282. }
  283. spin_unlock(&clp->cl_lock);
  284. if (new)
  285. kfree(new);
  286. if (sp != NULL)
  287. return sp;
  288. put_rpccred(cred);
  289. return NULL;
  290. }
  291. /*
  292. * Must be called with clp->cl_sem held in order to avoid races
  293. * with state recovery...
  294. */
  295. void nfs4_put_state_owner(struct nfs4_state_owner *sp)
  296. {
  297. struct nfs4_client *clp = sp->so_client;
  298. struct rpc_cred *cred = sp->so_cred;
  299. if (!atomic_dec_and_lock(&sp->so_count, &clp->cl_lock))
  300. return;
  301. if (clp->cl_nunused >= OPENOWNER_POOL_SIZE)
  302. goto out_free;
  303. if (list_empty(&sp->so_list))
  304. goto out_free;
  305. list_move(&sp->so_list, &clp->cl_unused);
  306. clp->cl_nunused++;
  307. spin_unlock(&clp->cl_lock);
  308. put_rpccred(cred);
  309. cred = NULL;
  310. return;
  311. out_free:
  312. list_del(&sp->so_list);
  313. spin_unlock(&clp->cl_lock);
  314. put_rpccred(cred);
  315. kfree(sp);
  316. }
  317. static struct nfs4_state *
  318. nfs4_alloc_open_state(void)
  319. {
  320. struct nfs4_state *state;
  321. state = kmalloc(sizeof(*state), GFP_KERNEL);
  322. if (!state)
  323. return NULL;
  324. state->state = 0;
  325. state->nreaders = 0;
  326. state->nwriters = 0;
  327. state->flags = 0;
  328. memset(state->stateid.data, 0, sizeof(state->stateid.data));
  329. atomic_set(&state->count, 1);
  330. INIT_LIST_HEAD(&state->lock_states);
  331. spin_lock_init(&state->state_lock);
  332. return state;
  333. }
  334. static struct nfs4_state *
  335. __nfs4_find_state(struct inode *inode, struct rpc_cred *cred, mode_t mode)
  336. {
  337. struct nfs_inode *nfsi = NFS_I(inode);
  338. struct nfs4_state *state;
  339. mode &= (FMODE_READ|FMODE_WRITE);
  340. list_for_each_entry(state, &nfsi->open_states, inode_states) {
  341. if (state->owner->so_cred != cred)
  342. continue;
  343. if ((mode & FMODE_READ) != 0 && state->nreaders == 0)
  344. continue;
  345. if ((mode & FMODE_WRITE) != 0 && state->nwriters == 0)
  346. continue;
  347. if ((state->state & mode) != mode)
  348. continue;
  349. atomic_inc(&state->count);
  350. if (mode & FMODE_READ)
  351. state->nreaders++;
  352. if (mode & FMODE_WRITE)
  353. state->nwriters++;
  354. return state;
  355. }
  356. return NULL;
  357. }
  358. static struct nfs4_state *
  359. __nfs4_find_state_byowner(struct inode *inode, struct nfs4_state_owner *owner)
  360. {
  361. struct nfs_inode *nfsi = NFS_I(inode);
  362. struct nfs4_state *state;
  363. list_for_each_entry(state, &nfsi->open_states, inode_states) {
  364. /* Is this in the process of being freed? */
  365. if (state->nreaders == 0 && state->nwriters == 0)
  366. continue;
  367. if (state->owner == owner) {
  368. atomic_inc(&state->count);
  369. return state;
  370. }
  371. }
  372. return NULL;
  373. }
  374. struct nfs4_state *
  375. nfs4_find_state(struct inode *inode, struct rpc_cred *cred, mode_t mode)
  376. {
  377. struct nfs4_state *state;
  378. spin_lock(&inode->i_lock);
  379. state = __nfs4_find_state(inode, cred, mode);
  380. spin_unlock(&inode->i_lock);
  381. return state;
  382. }
  383. static void
  384. nfs4_free_open_state(struct nfs4_state *state)
  385. {
  386. kfree(state);
  387. }
  388. struct nfs4_state *
  389. nfs4_get_open_state(struct inode *inode, struct nfs4_state_owner *owner)
  390. {
  391. struct nfs4_state *state, *new;
  392. struct nfs_inode *nfsi = NFS_I(inode);
  393. spin_lock(&inode->i_lock);
  394. state = __nfs4_find_state_byowner(inode, owner);
  395. spin_unlock(&inode->i_lock);
  396. if (state)
  397. goto out;
  398. new = nfs4_alloc_open_state();
  399. spin_lock(&inode->i_lock);
  400. state = __nfs4_find_state_byowner(inode, owner);
  401. if (state == NULL && new != NULL) {
  402. state = new;
  403. /* Note: The reclaim code dictates that we add stateless
  404. * and read-only stateids to the end of the list */
  405. list_add_tail(&state->open_states, &owner->so_states);
  406. state->owner = owner;
  407. atomic_inc(&owner->so_count);
  408. list_add(&state->inode_states, &nfsi->open_states);
  409. state->inode = igrab(inode);
  410. spin_unlock(&inode->i_lock);
  411. } else {
  412. spin_unlock(&inode->i_lock);
  413. if (new)
  414. nfs4_free_open_state(new);
  415. }
  416. out:
  417. return state;
  418. }
  419. /*
  420. * Beware! Caller must be holding exactly one
  421. * reference to clp->cl_sem!
  422. */
  423. void nfs4_put_open_state(struct nfs4_state *state)
  424. {
  425. struct inode *inode = state->inode;
  426. struct nfs4_state_owner *owner = state->owner;
  427. if (!atomic_dec_and_lock(&state->count, &inode->i_lock))
  428. return;
  429. if (!list_empty(&state->inode_states))
  430. list_del(&state->inode_states);
  431. spin_unlock(&inode->i_lock);
  432. list_del(&state->open_states);
  433. iput(inode);
  434. BUG_ON (state->state != 0);
  435. nfs4_free_open_state(state);
  436. nfs4_put_state_owner(owner);
  437. }
  438. /*
  439. * Close the current file.
  440. */
  441. void nfs4_close_state(struct nfs4_state *state, mode_t mode)
  442. {
  443. struct inode *inode = state->inode;
  444. struct nfs4_state_owner *owner = state->owner;
  445. int newstate;
  446. atomic_inc(&owner->so_count);
  447. /* Protect against nfs4_find_state() */
  448. spin_lock(&inode->i_lock);
  449. if (mode & FMODE_READ)
  450. state->nreaders--;
  451. if (mode & FMODE_WRITE)
  452. state->nwriters--;
  453. if (state->nwriters == 0) {
  454. if (state->nreaders == 0)
  455. list_del_init(&state->inode_states);
  456. /* See reclaim code */
  457. list_move_tail(&state->open_states, &owner->so_states);
  458. }
  459. spin_unlock(&inode->i_lock);
  460. newstate = 0;
  461. if (state->state != 0) {
  462. if (state->nreaders)
  463. newstate |= FMODE_READ;
  464. if (state->nwriters)
  465. newstate |= FMODE_WRITE;
  466. if (state->state == newstate)
  467. goto out;
  468. if (test_bit(NFS_DELEGATED_STATE, &state->flags)) {
  469. state->state = newstate;
  470. goto out;
  471. }
  472. if (nfs4_do_close(inode, state, newstate) == 0)
  473. return;
  474. }
  475. out:
  476. nfs4_put_open_state(state);
  477. nfs4_put_state_owner(owner);
  478. }
  479. /*
  480. * Search the state->lock_states for an existing lock_owner
  481. * that is compatible with current->files
  482. */
  483. static struct nfs4_lock_state *
  484. __nfs4_find_lock_state(struct nfs4_state *state, fl_owner_t fl_owner)
  485. {
  486. struct nfs4_lock_state *pos;
  487. list_for_each_entry(pos, &state->lock_states, ls_locks) {
  488. if (pos->ls_owner != fl_owner)
  489. continue;
  490. atomic_inc(&pos->ls_count);
  491. return pos;
  492. }
  493. return NULL;
  494. }
  495. /*
  496. * Return a compatible lock_state. If no initialized lock_state structure
  497. * exists, return an uninitialized one.
  498. *
  499. */
  500. static struct nfs4_lock_state *nfs4_alloc_lock_state(struct nfs4_state *state, fl_owner_t fl_owner)
  501. {
  502. struct nfs4_lock_state *lsp;
  503. struct nfs4_client *clp = state->owner->so_client;
  504. lsp = kzalloc(sizeof(*lsp), GFP_KERNEL);
  505. if (lsp == NULL)
  506. return NULL;
  507. lsp->ls_seqid.sequence = &state->owner->so_sequence;
  508. atomic_set(&lsp->ls_count, 1);
  509. lsp->ls_owner = fl_owner;
  510. spin_lock(&clp->cl_lock);
  511. lsp->ls_id = nfs4_alloc_lockowner_id(clp);
  512. spin_unlock(&clp->cl_lock);
  513. INIT_LIST_HEAD(&lsp->ls_locks);
  514. return lsp;
  515. }
  516. /*
  517. * Return a compatible lock_state. If no initialized lock_state structure
  518. * exists, return an uninitialized one.
  519. *
  520. * The caller must be holding clp->cl_sem
  521. */
  522. static struct nfs4_lock_state *nfs4_get_lock_state(struct nfs4_state *state, fl_owner_t owner)
  523. {
  524. struct nfs4_lock_state *lsp, *new = NULL;
  525. for(;;) {
  526. spin_lock(&state->state_lock);
  527. lsp = __nfs4_find_lock_state(state, owner);
  528. if (lsp != NULL)
  529. break;
  530. if (new != NULL) {
  531. new->ls_state = state;
  532. list_add(&new->ls_locks, &state->lock_states);
  533. set_bit(LK_STATE_IN_USE, &state->flags);
  534. lsp = new;
  535. new = NULL;
  536. break;
  537. }
  538. spin_unlock(&state->state_lock);
  539. new = nfs4_alloc_lock_state(state, owner);
  540. if (new == NULL)
  541. return NULL;
  542. }
  543. spin_unlock(&state->state_lock);
  544. kfree(new);
  545. return lsp;
  546. }
  547. /*
  548. * Release reference to lock_state, and free it if we see that
  549. * it is no longer in use
  550. */
  551. void nfs4_put_lock_state(struct nfs4_lock_state *lsp)
  552. {
  553. struct nfs4_state *state;
  554. if (lsp == NULL)
  555. return;
  556. state = lsp->ls_state;
  557. if (!atomic_dec_and_lock(&lsp->ls_count, &state->state_lock))
  558. return;
  559. list_del(&lsp->ls_locks);
  560. if (list_empty(&state->lock_states))
  561. clear_bit(LK_STATE_IN_USE, &state->flags);
  562. spin_unlock(&state->state_lock);
  563. kfree(lsp);
  564. }
  565. static void nfs4_fl_copy_lock(struct file_lock *dst, struct file_lock *src)
  566. {
  567. struct nfs4_lock_state *lsp = src->fl_u.nfs4_fl.owner;
  568. dst->fl_u.nfs4_fl.owner = lsp;
  569. atomic_inc(&lsp->ls_count);
  570. }
  571. static void nfs4_fl_release_lock(struct file_lock *fl)
  572. {
  573. nfs4_put_lock_state(fl->fl_u.nfs4_fl.owner);
  574. }
  575. static struct file_lock_operations nfs4_fl_lock_ops = {
  576. .fl_copy_lock = nfs4_fl_copy_lock,
  577. .fl_release_private = nfs4_fl_release_lock,
  578. };
  579. int nfs4_set_lock_state(struct nfs4_state *state, struct file_lock *fl)
  580. {
  581. struct nfs4_lock_state *lsp;
  582. if (fl->fl_ops != NULL)
  583. return 0;
  584. lsp = nfs4_get_lock_state(state, fl->fl_owner);
  585. if (lsp == NULL)
  586. return -ENOMEM;
  587. fl->fl_u.nfs4_fl.owner = lsp;
  588. fl->fl_ops = &nfs4_fl_lock_ops;
  589. return 0;
  590. }
  591. /*
  592. * Byte-range lock aware utility to initialize the stateid of read/write
  593. * requests.
  594. */
  595. void nfs4_copy_stateid(nfs4_stateid *dst, struct nfs4_state *state, fl_owner_t fl_owner)
  596. {
  597. struct nfs4_lock_state *lsp;
  598. memcpy(dst, &state->stateid, sizeof(*dst));
  599. if (test_bit(LK_STATE_IN_USE, &state->flags) == 0)
  600. return;
  601. spin_lock(&state->state_lock);
  602. lsp = __nfs4_find_lock_state(state, fl_owner);
  603. if (lsp != NULL && (lsp->ls_flags & NFS_LOCK_INITIALIZED) != 0)
  604. memcpy(dst, &lsp->ls_stateid, sizeof(*dst));
  605. spin_unlock(&state->state_lock);
  606. nfs4_put_lock_state(lsp);
  607. }
  608. struct nfs_seqid *nfs_alloc_seqid(struct nfs_seqid_counter *counter)
  609. {
  610. struct rpc_sequence *sequence = counter->sequence;
  611. struct nfs_seqid *new;
  612. new = kmalloc(sizeof(*new), GFP_KERNEL);
  613. if (new != NULL) {
  614. new->sequence = counter;
  615. new->task = NULL;
  616. spin_lock(&sequence->lock);
  617. list_add_tail(&new->list, &sequence->list);
  618. spin_unlock(&sequence->lock);
  619. }
  620. return new;
  621. }
  622. void nfs_free_seqid(struct nfs_seqid *seqid)
  623. {
  624. struct rpc_sequence *sequence = seqid->sequence->sequence;
  625. struct rpc_task *next = NULL;
  626. spin_lock(&sequence->lock);
  627. list_del(&seqid->list);
  628. if (!list_empty(&sequence->list)) {
  629. next = list_entry(sequence->list.next, struct nfs_seqid, list)->task;
  630. if (next)
  631. rpc_wake_up_task(next);
  632. }
  633. spin_unlock(&sequence->lock);
  634. kfree(seqid);
  635. }
  636. /*
  637. * Increment the seqid if the OPEN/OPEN_DOWNGRADE/CLOSE succeeded, or
  638. * failed with a seqid incrementing error -
  639. * see comments nfs_fs.h:seqid_mutating_error()
  640. */
  641. static inline void nfs_increment_seqid(int status, struct nfs_seqid *seqid)
  642. {
  643. switch (status) {
  644. case 0:
  645. break;
  646. case -NFS4ERR_BAD_SEQID:
  647. case -NFS4ERR_STALE_CLIENTID:
  648. case -NFS4ERR_STALE_STATEID:
  649. case -NFS4ERR_BAD_STATEID:
  650. case -NFS4ERR_BADXDR:
  651. case -NFS4ERR_RESOURCE:
  652. case -NFS4ERR_NOFILEHANDLE:
  653. /* Non-seqid mutating errors */
  654. return;
  655. };
  656. /*
  657. * Note: no locking needed as we are guaranteed to be first
  658. * on the sequence list
  659. */
  660. seqid->sequence->counter++;
  661. }
  662. void nfs_increment_open_seqid(int status, struct nfs_seqid *seqid)
  663. {
  664. if (status == -NFS4ERR_BAD_SEQID) {
  665. struct nfs4_state_owner *sp = container_of(seqid->sequence,
  666. struct nfs4_state_owner, so_seqid);
  667. nfs4_drop_state_owner(sp);
  668. }
  669. return nfs_increment_seqid(status, seqid);
  670. }
  671. /*
  672. * Increment the seqid if the LOCK/LOCKU succeeded, or
  673. * failed with a seqid incrementing error -
  674. * see comments nfs_fs.h:seqid_mutating_error()
  675. */
  676. void nfs_increment_lock_seqid(int status, struct nfs_seqid *seqid)
  677. {
  678. return nfs_increment_seqid(status, seqid);
  679. }
  680. int nfs_wait_on_sequence(struct nfs_seqid *seqid, struct rpc_task *task)
  681. {
  682. struct rpc_sequence *sequence = seqid->sequence->sequence;
  683. int status = 0;
  684. spin_lock(&sequence->lock);
  685. if (sequence->list.next != &seqid->list) {
  686. seqid->task = task;
  687. rpc_sleep_on(&sequence->wait, task, NULL, NULL);
  688. status = -EAGAIN;
  689. }
  690. spin_unlock(&sequence->lock);
  691. return status;
  692. }
  693. static int reclaimer(void *);
  694. struct reclaimer_args {
  695. struct nfs4_client *clp;
  696. struct completion complete;
  697. };
  698. /*
  699. * State recovery routine
  700. */
  701. void
  702. nfs4_recover_state(void *data)
  703. {
  704. struct nfs4_client *clp = (struct nfs4_client *)data;
  705. struct reclaimer_args args = {
  706. .clp = clp,
  707. };
  708. might_sleep();
  709. init_completion(&args.complete);
  710. if (kernel_thread(reclaimer, &args, CLONE_KERNEL) < 0)
  711. goto out_failed_clear;
  712. wait_for_completion(&args.complete);
  713. return;
  714. out_failed_clear:
  715. set_bit(NFS4CLNT_OK, &clp->cl_state);
  716. wake_up_all(&clp->cl_waitq);
  717. rpc_wake_up(&clp->cl_rpcwaitq);
  718. }
  719. /*
  720. * Schedule a state recovery attempt
  721. */
  722. void
  723. nfs4_schedule_state_recovery(struct nfs4_client *clp)
  724. {
  725. if (!clp)
  726. return;
  727. if (test_and_clear_bit(NFS4CLNT_OK, &clp->cl_state))
  728. schedule_work(&clp->cl_recoverd);
  729. }
  730. static int nfs4_reclaim_locks(struct nfs4_state_recovery_ops *ops, struct nfs4_state *state)
  731. {
  732. struct inode *inode = state->inode;
  733. struct file_lock *fl;
  734. int status = 0;
  735. for (fl = inode->i_flock; fl != 0; fl = fl->fl_next) {
  736. if (!(fl->fl_flags & FL_POSIX))
  737. continue;
  738. if (((struct nfs_open_context *)fl->fl_file->private_data)->state != state)
  739. continue;
  740. status = ops->recover_lock(state, fl);
  741. if (status >= 0)
  742. continue;
  743. switch (status) {
  744. default:
  745. printk(KERN_ERR "%s: unhandled error %d. Zeroing state\n",
  746. __FUNCTION__, status);
  747. case -NFS4ERR_EXPIRED:
  748. case -NFS4ERR_NO_GRACE:
  749. case -NFS4ERR_RECLAIM_BAD:
  750. case -NFS4ERR_RECLAIM_CONFLICT:
  751. /* kill_proc(fl->fl_owner, SIGLOST, 1); */
  752. break;
  753. case -NFS4ERR_STALE_CLIENTID:
  754. goto out_err;
  755. }
  756. }
  757. return 0;
  758. out_err:
  759. return status;
  760. }
  761. static int nfs4_reclaim_open_state(struct nfs4_state_recovery_ops *ops, struct nfs4_state_owner *sp)
  762. {
  763. struct nfs4_state *state;
  764. struct nfs4_lock_state *lock;
  765. int status = 0;
  766. /* Note: we rely on the sp->so_states list being ordered
  767. * so that we always reclaim open(O_RDWR) and/or open(O_WRITE)
  768. * states first.
  769. * This is needed to ensure that the server won't give us any
  770. * read delegations that we have to return if, say, we are
  771. * recovering after a network partition or a reboot from a
  772. * server that doesn't support a grace period.
  773. */
  774. list_for_each_entry(state, &sp->so_states, open_states) {
  775. if (state->state == 0)
  776. continue;
  777. status = ops->recover_open(sp, state);
  778. if (status >= 0) {
  779. status = nfs4_reclaim_locks(ops, state);
  780. if (status < 0)
  781. goto out_err;
  782. list_for_each_entry(lock, &state->lock_states, ls_locks) {
  783. if (!(lock->ls_flags & NFS_LOCK_INITIALIZED))
  784. printk("%s: Lock reclaim failed!\n",
  785. __FUNCTION__);
  786. }
  787. continue;
  788. }
  789. switch (status) {
  790. default:
  791. printk(KERN_ERR "%s: unhandled error %d. Zeroing state\n",
  792. __FUNCTION__, status);
  793. case -ENOENT:
  794. case -NFS4ERR_RECLAIM_BAD:
  795. case -NFS4ERR_RECLAIM_CONFLICT:
  796. /*
  797. * Open state on this file cannot be recovered
  798. * All we can do is revert to using the zero stateid.
  799. */
  800. memset(state->stateid.data, 0,
  801. sizeof(state->stateid.data));
  802. /* Mark the file as being 'closed' */
  803. state->state = 0;
  804. break;
  805. case -NFS4ERR_EXPIRED:
  806. case -NFS4ERR_NO_GRACE:
  807. case -NFS4ERR_STALE_CLIENTID:
  808. goto out_err;
  809. }
  810. }
  811. return 0;
  812. out_err:
  813. return status;
  814. }
  815. static void nfs4_state_mark_reclaim(struct nfs4_client *clp)
  816. {
  817. struct nfs4_state_owner *sp;
  818. struct nfs4_state *state;
  819. struct nfs4_lock_state *lock;
  820. /* Reset all sequence ids to zero */
  821. list_for_each_entry(sp, &clp->cl_state_owners, so_list) {
  822. sp->so_seqid.counter = 0;
  823. sp->so_seqid.flags = 0;
  824. list_for_each_entry(state, &sp->so_states, open_states) {
  825. list_for_each_entry(lock, &state->lock_states, ls_locks) {
  826. lock->ls_seqid.counter = 0;
  827. lock->ls_seqid.flags = 0;
  828. lock->ls_flags &= ~NFS_LOCK_INITIALIZED;
  829. }
  830. }
  831. }
  832. }
  833. static int reclaimer(void *ptr)
  834. {
  835. struct reclaimer_args *args = (struct reclaimer_args *)ptr;
  836. struct nfs4_client *clp = args->clp;
  837. struct nfs4_state_owner *sp;
  838. struct nfs4_state_recovery_ops *ops;
  839. int status = 0;
  840. daemonize("%u.%u.%u.%u-reclaim", NIPQUAD(clp->cl_addr));
  841. allow_signal(SIGKILL);
  842. atomic_inc(&clp->cl_count);
  843. complete(&args->complete);
  844. /* Ensure exclusive access to NFSv4 state */
  845. lock_kernel();
  846. down_write(&clp->cl_sem);
  847. /* Are there any NFS mounts out there? */
  848. if (list_empty(&clp->cl_superblocks))
  849. goto out;
  850. restart_loop:
  851. status = nfs4_proc_renew(clp);
  852. switch (status) {
  853. case 0:
  854. case -NFS4ERR_CB_PATH_DOWN:
  855. goto out;
  856. case -NFS4ERR_STALE_CLIENTID:
  857. case -NFS4ERR_LEASE_MOVED:
  858. ops = &nfs4_reboot_recovery_ops;
  859. break;
  860. default:
  861. ops = &nfs4_network_partition_recovery_ops;
  862. };
  863. nfs4_state_mark_reclaim(clp);
  864. status = __nfs4_init_client(clp);
  865. if (status)
  866. goto out_error;
  867. /* Mark all delegations for reclaim */
  868. nfs_delegation_mark_reclaim(clp);
  869. /* Note: list is protected by exclusive lock on cl->cl_sem */
  870. list_for_each_entry(sp, &clp->cl_state_owners, so_list) {
  871. status = nfs4_reclaim_open_state(ops, sp);
  872. if (status < 0) {
  873. if (status == -NFS4ERR_NO_GRACE) {
  874. ops = &nfs4_network_partition_recovery_ops;
  875. status = nfs4_reclaim_open_state(ops, sp);
  876. }
  877. if (status == -NFS4ERR_STALE_CLIENTID)
  878. goto restart_loop;
  879. if (status == -NFS4ERR_EXPIRED)
  880. goto restart_loop;
  881. }
  882. }
  883. nfs_delegation_reap_unclaimed(clp);
  884. out:
  885. set_bit(NFS4CLNT_OK, &clp->cl_state);
  886. up_write(&clp->cl_sem);
  887. unlock_kernel();
  888. wake_up_all(&clp->cl_waitq);
  889. rpc_wake_up(&clp->cl_rpcwaitq);
  890. if (status == -NFS4ERR_CB_PATH_DOWN)
  891. nfs_handle_cb_pathdown(clp);
  892. nfs4_put_client(clp);
  893. return 0;
  894. out_error:
  895. printk(KERN_WARNING "Error: state recovery failed on NFSv4 server %u.%u.%u.%u with error %d\n",
  896. NIPQUAD(clp->cl_addr.s_addr), -status);
  897. goto out;
  898. }
  899. /*
  900. * Local variables:
  901. * c-basic-offset: 8
  902. * End:
  903. */