nfs4state.c 88 KB

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  1. /*
  2. * linux/fs/nfsd/nfs4state.c
  3. *
  4. * Copyright (c) 2001 The Regents of the University of Michigan.
  5. * All rights reserved.
  6. *
  7. * Kendrick Smith <kmsmith@umich.edu>
  8. * Andy Adamson <kandros@umich.edu>
  9. *
  10. * Redistribution and use in source and binary forms, with or without
  11. * modification, are permitted provided that the following conditions
  12. * are met:
  13. *
  14. * 1. Redistributions of source code must retain the above copyright
  15. * notice, this list of conditions and the following disclaimer.
  16. * 2. Redistributions in binary form must reproduce the above copyright
  17. * notice, this list of conditions and the following disclaimer in the
  18. * documentation and/or other materials provided with the distribution.
  19. * 3. Neither the name of the University nor the names of its
  20. * contributors may be used to endorse or promote products derived
  21. * from this software without specific prior written permission.
  22. *
  23. * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
  24. * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
  25. * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  26. * DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
  27. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  28. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  29. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  30. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
  31. * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
  32. * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
  33. * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  34. *
  35. */
  36. #include <linux/param.h>
  37. #include <linux/major.h>
  38. #include <linux/slab.h>
  39. #include <linux/sunrpc/svc.h>
  40. #include <linux/nfsd/nfsd.h>
  41. #include <linux/nfsd/cache.h>
  42. #include <linux/mount.h>
  43. #include <linux/workqueue.h>
  44. #include <linux/smp_lock.h>
  45. #include <linux/kthread.h>
  46. #include <linux/nfs4.h>
  47. #include <linux/nfsd/state.h>
  48. #include <linux/nfsd/xdr4.h>
  49. #include <linux/namei.h>
  50. #define NFSDDBG_FACILITY NFSDDBG_PROC
  51. /* Globals */
  52. static time_t lease_time = 90; /* default lease time */
  53. static time_t user_lease_time = 90;
  54. static time_t boot_time;
  55. static int in_grace = 1;
  56. static u32 current_clientid = 1;
  57. static u32 current_ownerid = 1;
  58. static u32 current_fileid = 1;
  59. static u32 current_delegid = 1;
  60. static u32 nfs4_init;
  61. static stateid_t zerostateid; /* bits all 0 */
  62. static stateid_t onestateid; /* bits all 1 */
  63. #define ZERO_STATEID(stateid) (!memcmp((stateid), &zerostateid, sizeof(stateid_t)))
  64. #define ONE_STATEID(stateid) (!memcmp((stateid), &onestateid, sizeof(stateid_t)))
  65. /* forward declarations */
  66. static struct nfs4_stateid * find_stateid(stateid_t *stid, int flags);
  67. static struct nfs4_delegation * find_delegation_stateid(struct inode *ino, stateid_t *stid);
  68. static void release_stateid_lockowners(struct nfs4_stateid *open_stp);
  69. static char user_recovery_dirname[PATH_MAX] = "/var/lib/nfs/v4recovery";
  70. static void nfs4_set_recdir(char *recdir);
  71. /* Locking:
  72. *
  73. * client_sema:
  74. * protects clientid_hashtbl[], clientstr_hashtbl[],
  75. * unconfstr_hashtbl[], uncofid_hashtbl[].
  76. */
  77. static DECLARE_MUTEX(client_sema);
  78. static kmem_cache_t *stateowner_slab = NULL;
  79. static kmem_cache_t *file_slab = NULL;
  80. static kmem_cache_t *stateid_slab = NULL;
  81. static kmem_cache_t *deleg_slab = NULL;
  82. void
  83. nfs4_lock_state(void)
  84. {
  85. down(&client_sema);
  86. }
  87. void
  88. nfs4_unlock_state(void)
  89. {
  90. up(&client_sema);
  91. }
  92. static inline u32
  93. opaque_hashval(const void *ptr, int nbytes)
  94. {
  95. unsigned char *cptr = (unsigned char *) ptr;
  96. u32 x = 0;
  97. while (nbytes--) {
  98. x *= 37;
  99. x += *cptr++;
  100. }
  101. return x;
  102. }
  103. /* forward declarations */
  104. static void release_stateowner(struct nfs4_stateowner *sop);
  105. static void release_stateid(struct nfs4_stateid *stp, int flags);
  106. /*
  107. * Delegation state
  108. */
  109. /* recall_lock protects the del_recall_lru */
  110. static spinlock_t recall_lock = SPIN_LOCK_UNLOCKED;
  111. static struct list_head del_recall_lru;
  112. static void
  113. free_nfs4_file(struct kref *kref)
  114. {
  115. struct nfs4_file *fp = container_of(kref, struct nfs4_file, fi_ref);
  116. list_del(&fp->fi_hash);
  117. iput(fp->fi_inode);
  118. kmem_cache_free(file_slab, fp);
  119. }
  120. static inline void
  121. put_nfs4_file(struct nfs4_file *fi)
  122. {
  123. kref_put(&fi->fi_ref, free_nfs4_file);
  124. }
  125. static inline void
  126. get_nfs4_file(struct nfs4_file *fi)
  127. {
  128. kref_get(&fi->fi_ref);
  129. }
  130. static struct nfs4_delegation *
  131. alloc_init_deleg(struct nfs4_client *clp, struct nfs4_stateid *stp, struct svc_fh *current_fh, u32 type)
  132. {
  133. struct nfs4_delegation *dp;
  134. struct nfs4_file *fp = stp->st_file;
  135. struct nfs4_callback *cb = &stp->st_stateowner->so_client->cl_callback;
  136. dprintk("NFSD alloc_init_deleg\n");
  137. dp = kmem_cache_alloc(deleg_slab, GFP_KERNEL);
  138. if (dp == NULL)
  139. return dp;
  140. INIT_LIST_HEAD(&dp->dl_perfile);
  141. INIT_LIST_HEAD(&dp->dl_perclnt);
  142. INIT_LIST_HEAD(&dp->dl_recall_lru);
  143. dp->dl_client = clp;
  144. get_nfs4_file(fp);
  145. dp->dl_file = fp;
  146. dp->dl_flock = NULL;
  147. get_file(stp->st_vfs_file);
  148. dp->dl_vfs_file = stp->st_vfs_file;
  149. dp->dl_type = type;
  150. dp->dl_recall.cbr_dp = NULL;
  151. dp->dl_recall.cbr_ident = cb->cb_ident;
  152. dp->dl_recall.cbr_trunc = 0;
  153. dp->dl_stateid.si_boot = boot_time;
  154. dp->dl_stateid.si_stateownerid = current_delegid++;
  155. dp->dl_stateid.si_fileid = 0;
  156. dp->dl_stateid.si_generation = 0;
  157. dp->dl_fhlen = current_fh->fh_handle.fh_size;
  158. memcpy(dp->dl_fhval, &current_fh->fh_handle.fh_base,
  159. current_fh->fh_handle.fh_size);
  160. dp->dl_time = 0;
  161. atomic_set(&dp->dl_count, 1);
  162. list_add(&dp->dl_perfile, &fp->fi_delegations);
  163. list_add(&dp->dl_perclnt, &clp->cl_delegations);
  164. return dp;
  165. }
  166. void
  167. nfs4_put_delegation(struct nfs4_delegation *dp)
  168. {
  169. if (atomic_dec_and_test(&dp->dl_count)) {
  170. dprintk("NFSD: freeing dp %p\n",dp);
  171. put_nfs4_file(dp->dl_file);
  172. kmem_cache_free(deleg_slab, dp);
  173. }
  174. }
  175. /* Remove the associated file_lock first, then remove the delegation.
  176. * lease_modify() is called to remove the FS_LEASE file_lock from
  177. * the i_flock list, eventually calling nfsd's lock_manager
  178. * fl_release_callback.
  179. */
  180. static void
  181. nfs4_close_delegation(struct nfs4_delegation *dp)
  182. {
  183. struct file *filp = dp->dl_vfs_file;
  184. dprintk("NFSD: close_delegation dp %p\n",dp);
  185. dp->dl_vfs_file = NULL;
  186. /* The following nfsd_close may not actually close the file,
  187. * but we want to remove the lease in any case. */
  188. if (dp->dl_flock)
  189. setlease(filp, F_UNLCK, &dp->dl_flock);
  190. nfsd_close(filp);
  191. }
  192. /* Called under the state lock. */
  193. static void
  194. unhash_delegation(struct nfs4_delegation *dp)
  195. {
  196. list_del_init(&dp->dl_perfile);
  197. list_del_init(&dp->dl_perclnt);
  198. spin_lock(&recall_lock);
  199. list_del_init(&dp->dl_recall_lru);
  200. spin_unlock(&recall_lock);
  201. nfs4_close_delegation(dp);
  202. nfs4_put_delegation(dp);
  203. }
  204. /*
  205. * SETCLIENTID state
  206. */
  207. /* Hash tables for nfs4_clientid state */
  208. #define CLIENT_HASH_BITS 4
  209. #define CLIENT_HASH_SIZE (1 << CLIENT_HASH_BITS)
  210. #define CLIENT_HASH_MASK (CLIENT_HASH_SIZE - 1)
  211. #define clientid_hashval(id) \
  212. ((id) & CLIENT_HASH_MASK)
  213. #define clientstr_hashval(name) \
  214. (opaque_hashval((name), 8) & CLIENT_HASH_MASK)
  215. /*
  216. * reclaim_str_hashtbl[] holds known client info from previous reset/reboot
  217. * used in reboot/reset lease grace period processing
  218. *
  219. * conf_id_hashtbl[], and conf_str_hashtbl[] hold confirmed
  220. * setclientid_confirmed info.
  221. *
  222. * unconf_str_hastbl[] and unconf_id_hashtbl[] hold unconfirmed
  223. * setclientid info.
  224. *
  225. * client_lru holds client queue ordered by nfs4_client.cl_time
  226. * for lease renewal.
  227. *
  228. * close_lru holds (open) stateowner queue ordered by nfs4_stateowner.so_time
  229. * for last close replay.
  230. */
  231. static struct list_head reclaim_str_hashtbl[CLIENT_HASH_SIZE];
  232. static int reclaim_str_hashtbl_size = 0;
  233. static struct list_head conf_id_hashtbl[CLIENT_HASH_SIZE];
  234. static struct list_head conf_str_hashtbl[CLIENT_HASH_SIZE];
  235. static struct list_head unconf_str_hashtbl[CLIENT_HASH_SIZE];
  236. static struct list_head unconf_id_hashtbl[CLIENT_HASH_SIZE];
  237. static struct list_head client_lru;
  238. static struct list_head close_lru;
  239. static inline void
  240. renew_client(struct nfs4_client *clp)
  241. {
  242. /*
  243. * Move client to the end to the LRU list.
  244. */
  245. dprintk("renewing client (clientid %08x/%08x)\n",
  246. clp->cl_clientid.cl_boot,
  247. clp->cl_clientid.cl_id);
  248. list_move_tail(&clp->cl_lru, &client_lru);
  249. clp->cl_time = get_seconds();
  250. }
  251. /* SETCLIENTID and SETCLIENTID_CONFIRM Helper functions */
  252. static int
  253. STALE_CLIENTID(clientid_t *clid)
  254. {
  255. if (clid->cl_boot == boot_time)
  256. return 0;
  257. dprintk("NFSD stale clientid (%08x/%08x)\n",
  258. clid->cl_boot, clid->cl_id);
  259. return 1;
  260. }
  261. /*
  262. * XXX Should we use a slab cache ?
  263. * This type of memory management is somewhat inefficient, but we use it
  264. * anyway since SETCLIENTID is not a common operation.
  265. */
  266. static inline struct nfs4_client *
  267. alloc_client(struct xdr_netobj name)
  268. {
  269. struct nfs4_client *clp;
  270. if ((clp = kmalloc(sizeof(struct nfs4_client), GFP_KERNEL))!= NULL) {
  271. memset(clp, 0, sizeof(*clp));
  272. if ((clp->cl_name.data = kmalloc(name.len, GFP_KERNEL)) != NULL) {
  273. memcpy(clp->cl_name.data, name.data, name.len);
  274. clp->cl_name.len = name.len;
  275. }
  276. else {
  277. kfree(clp);
  278. clp = NULL;
  279. }
  280. }
  281. return clp;
  282. }
  283. static inline void
  284. free_client(struct nfs4_client *clp)
  285. {
  286. if (clp->cl_cred.cr_group_info)
  287. put_group_info(clp->cl_cred.cr_group_info);
  288. kfree(clp->cl_name.data);
  289. kfree(clp);
  290. }
  291. void
  292. put_nfs4_client(struct nfs4_client *clp)
  293. {
  294. if (atomic_dec_and_test(&clp->cl_count))
  295. free_client(clp);
  296. }
  297. static void
  298. expire_client(struct nfs4_client *clp)
  299. {
  300. struct nfs4_stateowner *sop;
  301. struct nfs4_delegation *dp;
  302. struct nfs4_callback *cb = &clp->cl_callback;
  303. struct rpc_clnt *clnt = clp->cl_callback.cb_client;
  304. struct list_head reaplist;
  305. dprintk("NFSD: expire_client cl_count %d\n",
  306. atomic_read(&clp->cl_count));
  307. /* shutdown rpc client, ending any outstanding recall rpcs */
  308. if (atomic_read(&cb->cb_set) == 1 && clnt) {
  309. rpc_shutdown_client(clnt);
  310. clnt = clp->cl_callback.cb_client = NULL;
  311. }
  312. INIT_LIST_HEAD(&reaplist);
  313. spin_lock(&recall_lock);
  314. while (!list_empty(&clp->cl_delegations)) {
  315. dp = list_entry(clp->cl_delegations.next, struct nfs4_delegation, dl_perclnt);
  316. dprintk("NFSD: expire client. dp %p, fp %p\n", dp,
  317. dp->dl_flock);
  318. list_del_init(&dp->dl_perclnt);
  319. list_move(&dp->dl_recall_lru, &reaplist);
  320. }
  321. spin_unlock(&recall_lock);
  322. while (!list_empty(&reaplist)) {
  323. dp = list_entry(reaplist.next, struct nfs4_delegation, dl_recall_lru);
  324. list_del_init(&dp->dl_recall_lru);
  325. unhash_delegation(dp);
  326. }
  327. list_del(&clp->cl_idhash);
  328. list_del(&clp->cl_strhash);
  329. list_del(&clp->cl_lru);
  330. while (!list_empty(&clp->cl_openowners)) {
  331. sop = list_entry(clp->cl_openowners.next, struct nfs4_stateowner, so_perclient);
  332. release_stateowner(sop);
  333. }
  334. put_nfs4_client(clp);
  335. }
  336. static struct nfs4_client *
  337. create_client(struct xdr_netobj name, char *recdir) {
  338. struct nfs4_client *clp;
  339. if (!(clp = alloc_client(name)))
  340. goto out;
  341. memcpy(clp->cl_recdir, recdir, HEXDIR_LEN);
  342. atomic_set(&clp->cl_count, 1);
  343. atomic_set(&clp->cl_callback.cb_set, 0);
  344. INIT_LIST_HEAD(&clp->cl_idhash);
  345. INIT_LIST_HEAD(&clp->cl_strhash);
  346. INIT_LIST_HEAD(&clp->cl_openowners);
  347. INIT_LIST_HEAD(&clp->cl_delegations);
  348. INIT_LIST_HEAD(&clp->cl_lru);
  349. out:
  350. return clp;
  351. }
  352. static void
  353. copy_verf(struct nfs4_client *target, nfs4_verifier *source) {
  354. memcpy(target->cl_verifier.data, source->data, sizeof(target->cl_verifier.data));
  355. }
  356. static void
  357. copy_clid(struct nfs4_client *target, struct nfs4_client *source) {
  358. target->cl_clientid.cl_boot = source->cl_clientid.cl_boot;
  359. target->cl_clientid.cl_id = source->cl_clientid.cl_id;
  360. }
  361. static void
  362. copy_cred(struct svc_cred *target, struct svc_cred *source) {
  363. target->cr_uid = source->cr_uid;
  364. target->cr_gid = source->cr_gid;
  365. target->cr_group_info = source->cr_group_info;
  366. get_group_info(target->cr_group_info);
  367. }
  368. static inline int
  369. same_name(const char *n1, const char *n2) {
  370. return 0 == memcmp(n1, n2, HEXDIR_LEN);
  371. }
  372. static int
  373. cmp_verf(nfs4_verifier *v1, nfs4_verifier *v2) {
  374. return(!memcmp(v1->data,v2->data,sizeof(v1->data)));
  375. }
  376. static int
  377. cmp_clid(clientid_t * cl1, clientid_t * cl2) {
  378. return((cl1->cl_boot == cl2->cl_boot) &&
  379. (cl1->cl_id == cl2->cl_id));
  380. }
  381. /* XXX what about NGROUP */
  382. static int
  383. cmp_creds(struct svc_cred *cr1, struct svc_cred *cr2){
  384. return(cr1->cr_uid == cr2->cr_uid);
  385. }
  386. static void
  387. gen_clid(struct nfs4_client *clp) {
  388. clp->cl_clientid.cl_boot = boot_time;
  389. clp->cl_clientid.cl_id = current_clientid++;
  390. }
  391. static void
  392. gen_confirm(struct nfs4_client *clp) {
  393. struct timespec tv;
  394. u32 * p;
  395. tv = CURRENT_TIME;
  396. p = (u32 *)clp->cl_confirm.data;
  397. *p++ = tv.tv_sec;
  398. *p++ = tv.tv_nsec;
  399. }
  400. static int
  401. check_name(struct xdr_netobj name) {
  402. if (name.len == 0)
  403. return 0;
  404. if (name.len > NFS4_OPAQUE_LIMIT) {
  405. printk("NFSD: check_name: name too long(%d)!\n", name.len);
  406. return 0;
  407. }
  408. return 1;
  409. }
  410. static void
  411. add_to_unconfirmed(struct nfs4_client *clp, unsigned int strhashval)
  412. {
  413. unsigned int idhashval;
  414. list_add(&clp->cl_strhash, &unconf_str_hashtbl[strhashval]);
  415. idhashval = clientid_hashval(clp->cl_clientid.cl_id);
  416. list_add(&clp->cl_idhash, &unconf_id_hashtbl[idhashval]);
  417. list_add_tail(&clp->cl_lru, &client_lru);
  418. clp->cl_time = get_seconds();
  419. }
  420. static void
  421. move_to_confirmed(struct nfs4_client *clp)
  422. {
  423. unsigned int idhashval = clientid_hashval(clp->cl_clientid.cl_id);
  424. unsigned int strhashval;
  425. dprintk("NFSD: move_to_confirm nfs4_client %p\n", clp);
  426. list_del_init(&clp->cl_strhash);
  427. list_del_init(&clp->cl_idhash);
  428. list_add(&clp->cl_idhash, &conf_id_hashtbl[idhashval]);
  429. strhashval = clientstr_hashval(clp->cl_recdir);
  430. list_add(&clp->cl_strhash, &conf_str_hashtbl[strhashval]);
  431. renew_client(clp);
  432. }
  433. static struct nfs4_client *
  434. find_confirmed_client(clientid_t *clid)
  435. {
  436. struct nfs4_client *clp;
  437. unsigned int idhashval = clientid_hashval(clid->cl_id);
  438. list_for_each_entry(clp, &conf_id_hashtbl[idhashval], cl_idhash) {
  439. if (cmp_clid(&clp->cl_clientid, clid))
  440. return clp;
  441. }
  442. return NULL;
  443. }
  444. static struct nfs4_client *
  445. find_unconfirmed_client(clientid_t *clid)
  446. {
  447. struct nfs4_client *clp;
  448. unsigned int idhashval = clientid_hashval(clid->cl_id);
  449. list_for_each_entry(clp, &unconf_id_hashtbl[idhashval], cl_idhash) {
  450. if (cmp_clid(&clp->cl_clientid, clid))
  451. return clp;
  452. }
  453. return NULL;
  454. }
  455. static struct nfs4_client *
  456. find_confirmed_client_by_str(const char *dname, unsigned int hashval)
  457. {
  458. struct nfs4_client *clp;
  459. list_for_each_entry(clp, &conf_str_hashtbl[hashval], cl_strhash) {
  460. if (same_name(clp->cl_recdir, dname))
  461. return clp;
  462. }
  463. return NULL;
  464. }
  465. static struct nfs4_client *
  466. find_unconfirmed_client_by_str(const char *dname, unsigned int hashval)
  467. {
  468. struct nfs4_client *clp;
  469. list_for_each_entry(clp, &unconf_str_hashtbl[hashval], cl_strhash) {
  470. if (same_name(clp->cl_recdir, dname))
  471. return clp;
  472. }
  473. return NULL;
  474. }
  475. /* a helper function for parse_callback */
  476. static int
  477. parse_octet(unsigned int *lenp, char **addrp)
  478. {
  479. unsigned int len = *lenp;
  480. char *p = *addrp;
  481. int n = -1;
  482. char c;
  483. for (;;) {
  484. if (!len)
  485. break;
  486. len--;
  487. c = *p++;
  488. if (c == '.')
  489. break;
  490. if ((c < '0') || (c > '9')) {
  491. n = -1;
  492. break;
  493. }
  494. if (n < 0)
  495. n = 0;
  496. n = (n * 10) + (c - '0');
  497. if (n > 255) {
  498. n = -1;
  499. break;
  500. }
  501. }
  502. *lenp = len;
  503. *addrp = p;
  504. return n;
  505. }
  506. /* parse and set the setclientid ipv4 callback address */
  507. static int
  508. parse_ipv4(unsigned int addr_len, char *addr_val, unsigned int *cbaddrp, unsigned short *cbportp)
  509. {
  510. int temp = 0;
  511. u32 cbaddr = 0;
  512. u16 cbport = 0;
  513. u32 addrlen = addr_len;
  514. char *addr = addr_val;
  515. int i, shift;
  516. /* ipaddress */
  517. shift = 24;
  518. for(i = 4; i > 0 ; i--) {
  519. if ((temp = parse_octet(&addrlen, &addr)) < 0) {
  520. return 0;
  521. }
  522. cbaddr |= (temp << shift);
  523. if (shift > 0)
  524. shift -= 8;
  525. }
  526. *cbaddrp = cbaddr;
  527. /* port */
  528. shift = 8;
  529. for(i = 2; i > 0 ; i--) {
  530. if ((temp = parse_octet(&addrlen, &addr)) < 0) {
  531. return 0;
  532. }
  533. cbport |= (temp << shift);
  534. if (shift > 0)
  535. shift -= 8;
  536. }
  537. *cbportp = cbport;
  538. return 1;
  539. }
  540. static void
  541. gen_callback(struct nfs4_client *clp, struct nfsd4_setclientid *se)
  542. {
  543. struct nfs4_callback *cb = &clp->cl_callback;
  544. /* Currently, we only support tcp for the callback channel */
  545. if ((se->se_callback_netid_len != 3) || memcmp((char *)se->se_callback_netid_val, "tcp", 3))
  546. goto out_err;
  547. if ( !(parse_ipv4(se->se_callback_addr_len, se->se_callback_addr_val,
  548. &cb->cb_addr, &cb->cb_port)))
  549. goto out_err;
  550. cb->cb_prog = se->se_callback_prog;
  551. cb->cb_ident = se->se_callback_ident;
  552. return;
  553. out_err:
  554. printk(KERN_INFO "NFSD: this client (clientid %08x/%08x) "
  555. "will not receive delegations\n",
  556. clp->cl_clientid.cl_boot, clp->cl_clientid.cl_id);
  557. return;
  558. }
  559. /*
  560. * RFC 3010 has a complex implmentation description of processing a
  561. * SETCLIENTID request consisting of 5 bullets, labeled as
  562. * CASE0 - CASE4 below.
  563. *
  564. * NOTES:
  565. * callback information will be processed in a future patch
  566. *
  567. * an unconfirmed record is added when:
  568. * NORMAL (part of CASE 4): there is no confirmed nor unconfirmed record.
  569. * CASE 1: confirmed record found with matching name, principal,
  570. * verifier, and clientid.
  571. * CASE 2: confirmed record found with matching name, principal,
  572. * and there is no unconfirmed record with matching
  573. * name and principal
  574. *
  575. * an unconfirmed record is replaced when:
  576. * CASE 3: confirmed record found with matching name, principal,
  577. * and an unconfirmed record is found with matching
  578. * name, principal, and with clientid and
  579. * confirm that does not match the confirmed record.
  580. * CASE 4: there is no confirmed record with matching name and
  581. * principal. there is an unconfirmed record with
  582. * matching name, principal.
  583. *
  584. * an unconfirmed record is deleted when:
  585. * CASE 1: an unconfirmed record that matches input name, verifier,
  586. * and confirmed clientid.
  587. * CASE 4: any unconfirmed records with matching name and principal
  588. * that exist after an unconfirmed record has been replaced
  589. * as described above.
  590. *
  591. */
  592. int
  593. nfsd4_setclientid(struct svc_rqst *rqstp, struct nfsd4_setclientid *setclid)
  594. {
  595. u32 ip_addr = rqstp->rq_addr.sin_addr.s_addr;
  596. struct xdr_netobj clname = {
  597. .len = setclid->se_namelen,
  598. .data = setclid->se_name,
  599. };
  600. nfs4_verifier clverifier = setclid->se_verf;
  601. unsigned int strhashval;
  602. struct nfs4_client *conf, *unconf, *new;
  603. int status;
  604. char dname[HEXDIR_LEN];
  605. status = nfserr_inval;
  606. if (!check_name(clname))
  607. goto out;
  608. status = nfs4_make_rec_clidname(dname, &clname);
  609. if (status)
  610. goto out;
  611. /*
  612. * XXX The Duplicate Request Cache (DRC) has been checked (??)
  613. * We get here on a DRC miss.
  614. */
  615. strhashval = clientstr_hashval(dname);
  616. nfs4_lock_state();
  617. conf = find_confirmed_client_by_str(dname, strhashval);
  618. if (conf) {
  619. /*
  620. * CASE 0:
  621. * clname match, confirmed, different principal
  622. * or different ip_address
  623. */
  624. status = nfserr_clid_inuse;
  625. if (!cmp_creds(&conf->cl_cred, &rqstp->rq_cred)
  626. || conf->cl_addr != ip_addr) {
  627. printk("NFSD: setclientid: string in use by client"
  628. "(clientid %08x/%08x)\n",
  629. conf->cl_clientid.cl_boot, conf->cl_clientid.cl_id);
  630. goto out;
  631. }
  632. }
  633. unconf = find_unconfirmed_client_by_str(dname, strhashval);
  634. status = nfserr_resource;
  635. if (!conf) {
  636. /*
  637. * CASE 4:
  638. * placed first, because it is the normal case.
  639. */
  640. if (unconf)
  641. expire_client(unconf);
  642. new = create_client(clname, dname);
  643. if (new == NULL)
  644. goto out;
  645. copy_verf(new, &clverifier);
  646. new->cl_addr = ip_addr;
  647. copy_cred(&new->cl_cred,&rqstp->rq_cred);
  648. gen_clid(new);
  649. gen_confirm(new);
  650. gen_callback(new, setclid);
  651. add_to_unconfirmed(new, strhashval);
  652. } else if (cmp_verf(&conf->cl_verifier, &clverifier)) {
  653. /*
  654. * CASE 1:
  655. * cl_name match, confirmed, principal match
  656. * verifier match: probable callback update
  657. *
  658. * remove any unconfirmed nfs4_client with
  659. * matching cl_name, cl_verifier, and cl_clientid
  660. *
  661. * create and insert an unconfirmed nfs4_client with same
  662. * cl_name, cl_verifier, and cl_clientid as existing
  663. * nfs4_client, but with the new callback info and a
  664. * new cl_confirm
  665. */
  666. if (unconf) {
  667. /* Note this is removing unconfirmed {*x***},
  668. * which is stronger than RFC recommended {vxc**}.
  669. * This has the advantage that there is at most
  670. * one {*x***} in either list at any time.
  671. */
  672. expire_client(unconf);
  673. }
  674. new = create_client(clname, dname);
  675. if (new == NULL)
  676. goto out;
  677. copy_verf(new,&conf->cl_verifier);
  678. new->cl_addr = ip_addr;
  679. copy_cred(&new->cl_cred,&rqstp->rq_cred);
  680. copy_clid(new, conf);
  681. gen_confirm(new);
  682. gen_callback(new, setclid);
  683. add_to_unconfirmed(new,strhashval);
  684. } else if (!unconf) {
  685. /*
  686. * CASE 2:
  687. * clname match, confirmed, principal match
  688. * verfier does not match
  689. * no unconfirmed. create a new unconfirmed nfs4_client
  690. * using input clverifier, clname, and callback info
  691. * and generate a new cl_clientid and cl_confirm.
  692. */
  693. new = create_client(clname, dname);
  694. if (new == NULL)
  695. goto out;
  696. copy_verf(new,&clverifier);
  697. new->cl_addr = ip_addr;
  698. copy_cred(&new->cl_cred,&rqstp->rq_cred);
  699. gen_clid(new);
  700. gen_confirm(new);
  701. gen_callback(new, setclid);
  702. add_to_unconfirmed(new, strhashval);
  703. } else if (!cmp_verf(&conf->cl_confirm, &unconf->cl_confirm)) {
  704. /*
  705. * CASE3:
  706. * confirmed found (name, principal match)
  707. * confirmed verifier does not match input clverifier
  708. *
  709. * unconfirmed found (name match)
  710. * confirmed->cl_confirm != unconfirmed->cl_confirm
  711. *
  712. * remove unconfirmed.
  713. *
  714. * create an unconfirmed nfs4_client
  715. * with same cl_name as existing confirmed nfs4_client,
  716. * but with new callback info, new cl_clientid,
  717. * new cl_verifier and a new cl_confirm
  718. */
  719. expire_client(unconf);
  720. new = create_client(clname, dname);
  721. if (new == NULL)
  722. goto out;
  723. copy_verf(new,&clverifier);
  724. new->cl_addr = ip_addr;
  725. copy_cred(&new->cl_cred,&rqstp->rq_cred);
  726. gen_clid(new);
  727. gen_confirm(new);
  728. gen_callback(new, setclid);
  729. add_to_unconfirmed(new, strhashval);
  730. } else {
  731. /* No cases hit !!! */
  732. status = nfserr_inval;
  733. goto out;
  734. }
  735. setclid->se_clientid.cl_boot = new->cl_clientid.cl_boot;
  736. setclid->se_clientid.cl_id = new->cl_clientid.cl_id;
  737. memcpy(setclid->se_confirm.data, new->cl_confirm.data, sizeof(setclid->se_confirm.data));
  738. status = nfs_ok;
  739. out:
  740. nfs4_unlock_state();
  741. return status;
  742. }
  743. /*
  744. * RFC 3010 has a complex implmentation description of processing a
  745. * SETCLIENTID_CONFIRM request consisting of 4 bullets describing
  746. * processing on a DRC miss, labeled as CASE1 - CASE4 below.
  747. *
  748. * NOTE: callback information will be processed here in a future patch
  749. */
  750. int
  751. nfsd4_setclientid_confirm(struct svc_rqst *rqstp, struct nfsd4_setclientid_confirm *setclientid_confirm)
  752. {
  753. u32 ip_addr = rqstp->rq_addr.sin_addr.s_addr;
  754. struct nfs4_client *conf, *unconf;
  755. nfs4_verifier confirm = setclientid_confirm->sc_confirm;
  756. clientid_t * clid = &setclientid_confirm->sc_clientid;
  757. int status;
  758. if (STALE_CLIENTID(clid))
  759. return nfserr_stale_clientid;
  760. /*
  761. * XXX The Duplicate Request Cache (DRC) has been checked (??)
  762. * We get here on a DRC miss.
  763. */
  764. nfs4_lock_state();
  765. conf = find_confirmed_client(clid);
  766. unconf = find_unconfirmed_client(clid);
  767. status = nfserr_clid_inuse;
  768. if (conf && conf->cl_addr != ip_addr)
  769. goto out;
  770. if (unconf && unconf->cl_addr != ip_addr)
  771. goto out;
  772. if ((conf && unconf) &&
  773. (cmp_verf(&unconf->cl_confirm, &confirm)) &&
  774. (cmp_verf(&conf->cl_verifier, &unconf->cl_verifier)) &&
  775. (same_name(conf->cl_recdir,unconf->cl_recdir)) &&
  776. (!cmp_verf(&conf->cl_confirm, &unconf->cl_confirm))) {
  777. /* CASE 1:
  778. * unconf record that matches input clientid and input confirm.
  779. * conf record that matches input clientid.
  780. * conf and unconf records match names, verifiers
  781. */
  782. if (!cmp_creds(&conf->cl_cred, &unconf->cl_cred))
  783. status = nfserr_clid_inuse;
  784. else {
  785. /* XXX: We just turn off callbacks until we can handle
  786. * change request correctly. */
  787. atomic_set(&conf->cl_callback.cb_set, 0);
  788. gen_confirm(conf);
  789. nfsd4_remove_clid_dir(unconf);
  790. expire_client(unconf);
  791. status = nfs_ok;
  792. }
  793. } else if ((conf && !unconf) ||
  794. ((conf && unconf) &&
  795. (!cmp_verf(&conf->cl_verifier, &unconf->cl_verifier) ||
  796. !same_name(conf->cl_recdir, unconf->cl_recdir)))) {
  797. /* CASE 2:
  798. * conf record that matches input clientid.
  799. * if unconf record matches input clientid, then
  800. * unconf->cl_name or unconf->cl_verifier don't match the
  801. * conf record.
  802. */
  803. if (!cmp_creds(&conf->cl_cred,&rqstp->rq_cred))
  804. status = nfserr_clid_inuse;
  805. else
  806. status = nfs_ok;
  807. } else if (!conf && unconf
  808. && cmp_verf(&unconf->cl_confirm, &confirm)) {
  809. /* CASE 3:
  810. * conf record not found.
  811. * unconf record found.
  812. * unconf->cl_confirm matches input confirm
  813. */
  814. if (!cmp_creds(&unconf->cl_cred, &rqstp->rq_cred)) {
  815. status = nfserr_clid_inuse;
  816. } else {
  817. unsigned int hash =
  818. clientstr_hashval(unconf->cl_recdir);
  819. conf = find_confirmed_client_by_str(unconf->cl_recdir,
  820. hash);
  821. if (conf) {
  822. nfsd4_remove_clid_dir(conf);
  823. expire_client(conf);
  824. }
  825. move_to_confirmed(unconf);
  826. conf = unconf;
  827. status = nfs_ok;
  828. }
  829. } else if ((!conf || (conf && !cmp_verf(&conf->cl_confirm, &confirm)))
  830. && (!unconf || (unconf && !cmp_verf(&unconf->cl_confirm,
  831. &confirm)))) {
  832. /* CASE 4:
  833. * conf record not found, or if conf, conf->cl_confirm does not
  834. * match input confirm.
  835. * unconf record not found, or if unconf, unconf->cl_confirm
  836. * does not match input confirm.
  837. */
  838. status = nfserr_stale_clientid;
  839. } else {
  840. /* check that we have hit one of the cases...*/
  841. status = nfserr_clid_inuse;
  842. }
  843. out:
  844. if (!status)
  845. nfsd4_probe_callback(conf);
  846. nfs4_unlock_state();
  847. return status;
  848. }
  849. /*
  850. * Open owner state (share locks)
  851. */
  852. /* hash tables for nfs4_stateowner */
  853. #define OWNER_HASH_BITS 8
  854. #define OWNER_HASH_SIZE (1 << OWNER_HASH_BITS)
  855. #define OWNER_HASH_MASK (OWNER_HASH_SIZE - 1)
  856. #define ownerid_hashval(id) \
  857. ((id) & OWNER_HASH_MASK)
  858. #define ownerstr_hashval(clientid, ownername) \
  859. (((clientid) + opaque_hashval((ownername.data), (ownername.len))) & OWNER_HASH_MASK)
  860. static struct list_head ownerid_hashtbl[OWNER_HASH_SIZE];
  861. static struct list_head ownerstr_hashtbl[OWNER_HASH_SIZE];
  862. /* hash table for nfs4_file */
  863. #define FILE_HASH_BITS 8
  864. #define FILE_HASH_SIZE (1 << FILE_HASH_BITS)
  865. #define FILE_HASH_MASK (FILE_HASH_SIZE - 1)
  866. /* hash table for (open)nfs4_stateid */
  867. #define STATEID_HASH_BITS 10
  868. #define STATEID_HASH_SIZE (1 << STATEID_HASH_BITS)
  869. #define STATEID_HASH_MASK (STATEID_HASH_SIZE - 1)
  870. #define file_hashval(x) \
  871. hash_ptr(x, FILE_HASH_BITS)
  872. #define stateid_hashval(owner_id, file_id) \
  873. (((owner_id) + (file_id)) & STATEID_HASH_MASK)
  874. static struct list_head file_hashtbl[FILE_HASH_SIZE];
  875. static struct list_head stateid_hashtbl[STATEID_HASH_SIZE];
  876. /* OPEN Share state helper functions */
  877. static inline struct nfs4_file *
  878. alloc_init_file(struct inode *ino)
  879. {
  880. struct nfs4_file *fp;
  881. unsigned int hashval = file_hashval(ino);
  882. fp = kmem_cache_alloc(file_slab, GFP_KERNEL);
  883. if (fp) {
  884. kref_init(&fp->fi_ref);
  885. INIT_LIST_HEAD(&fp->fi_hash);
  886. INIT_LIST_HEAD(&fp->fi_stateids);
  887. INIT_LIST_HEAD(&fp->fi_delegations);
  888. list_add(&fp->fi_hash, &file_hashtbl[hashval]);
  889. fp->fi_inode = igrab(ino);
  890. fp->fi_id = current_fileid++;
  891. return fp;
  892. }
  893. return NULL;
  894. }
  895. static void
  896. nfsd4_free_slab(kmem_cache_t **slab)
  897. {
  898. int status;
  899. if (*slab == NULL)
  900. return;
  901. status = kmem_cache_destroy(*slab);
  902. *slab = NULL;
  903. WARN_ON(status);
  904. }
  905. static void
  906. nfsd4_free_slabs(void)
  907. {
  908. nfsd4_free_slab(&stateowner_slab);
  909. nfsd4_free_slab(&file_slab);
  910. nfsd4_free_slab(&stateid_slab);
  911. nfsd4_free_slab(&deleg_slab);
  912. }
  913. static int
  914. nfsd4_init_slabs(void)
  915. {
  916. stateowner_slab = kmem_cache_create("nfsd4_stateowners",
  917. sizeof(struct nfs4_stateowner), 0, 0, NULL, NULL);
  918. if (stateowner_slab == NULL)
  919. goto out_nomem;
  920. file_slab = kmem_cache_create("nfsd4_files",
  921. sizeof(struct nfs4_file), 0, 0, NULL, NULL);
  922. if (file_slab == NULL)
  923. goto out_nomem;
  924. stateid_slab = kmem_cache_create("nfsd4_stateids",
  925. sizeof(struct nfs4_stateid), 0, 0, NULL, NULL);
  926. if (stateid_slab == NULL)
  927. goto out_nomem;
  928. deleg_slab = kmem_cache_create("nfsd4_delegations",
  929. sizeof(struct nfs4_delegation), 0, 0, NULL, NULL);
  930. if (deleg_slab == NULL)
  931. goto out_nomem;
  932. return 0;
  933. out_nomem:
  934. nfsd4_free_slabs();
  935. dprintk("nfsd4: out of memory while initializing nfsv4\n");
  936. return -ENOMEM;
  937. }
  938. void
  939. nfs4_free_stateowner(struct kref *kref)
  940. {
  941. struct nfs4_stateowner *sop =
  942. container_of(kref, struct nfs4_stateowner, so_ref);
  943. kfree(sop->so_owner.data);
  944. kmem_cache_free(stateowner_slab, sop);
  945. }
  946. static inline struct nfs4_stateowner *
  947. alloc_stateowner(struct xdr_netobj *owner)
  948. {
  949. struct nfs4_stateowner *sop;
  950. if ((sop = kmem_cache_alloc(stateowner_slab, GFP_KERNEL))) {
  951. if ((sop->so_owner.data = kmalloc(owner->len, GFP_KERNEL))) {
  952. memcpy(sop->so_owner.data, owner->data, owner->len);
  953. sop->so_owner.len = owner->len;
  954. kref_init(&sop->so_ref);
  955. return sop;
  956. }
  957. kmem_cache_free(stateowner_slab, sop);
  958. }
  959. return NULL;
  960. }
  961. static struct nfs4_stateowner *
  962. alloc_init_open_stateowner(unsigned int strhashval, struct nfs4_client *clp, struct nfsd4_open *open) {
  963. struct nfs4_stateowner *sop;
  964. struct nfs4_replay *rp;
  965. unsigned int idhashval;
  966. if (!(sop = alloc_stateowner(&open->op_owner)))
  967. return NULL;
  968. idhashval = ownerid_hashval(current_ownerid);
  969. INIT_LIST_HEAD(&sop->so_idhash);
  970. INIT_LIST_HEAD(&sop->so_strhash);
  971. INIT_LIST_HEAD(&sop->so_perclient);
  972. INIT_LIST_HEAD(&sop->so_stateids);
  973. INIT_LIST_HEAD(&sop->so_perstateid); /* not used */
  974. INIT_LIST_HEAD(&sop->so_close_lru);
  975. sop->so_time = 0;
  976. list_add(&sop->so_idhash, &ownerid_hashtbl[idhashval]);
  977. list_add(&sop->so_strhash, &ownerstr_hashtbl[strhashval]);
  978. list_add(&sop->so_perclient, &clp->cl_openowners);
  979. sop->so_is_open_owner = 1;
  980. sop->so_id = current_ownerid++;
  981. sop->so_client = clp;
  982. sop->so_seqid = open->op_seqid;
  983. sop->so_confirmed = 0;
  984. rp = &sop->so_replay;
  985. rp->rp_status = NFSERR_SERVERFAULT;
  986. rp->rp_buflen = 0;
  987. rp->rp_buf = rp->rp_ibuf;
  988. return sop;
  989. }
  990. static void
  991. release_stateid_lockowners(struct nfs4_stateid *open_stp)
  992. {
  993. struct nfs4_stateowner *lock_sop;
  994. while (!list_empty(&open_stp->st_lockowners)) {
  995. lock_sop = list_entry(open_stp->st_lockowners.next,
  996. struct nfs4_stateowner, so_perstateid);
  997. /* list_del(&open_stp->st_lockowners); */
  998. BUG_ON(lock_sop->so_is_open_owner);
  999. release_stateowner(lock_sop);
  1000. }
  1001. }
  1002. static void
  1003. unhash_stateowner(struct nfs4_stateowner *sop)
  1004. {
  1005. struct nfs4_stateid *stp;
  1006. list_del(&sop->so_idhash);
  1007. list_del(&sop->so_strhash);
  1008. if (sop->so_is_open_owner)
  1009. list_del(&sop->so_perclient);
  1010. list_del(&sop->so_perstateid);
  1011. while (!list_empty(&sop->so_stateids)) {
  1012. stp = list_entry(sop->so_stateids.next,
  1013. struct nfs4_stateid, st_perstateowner);
  1014. if (sop->so_is_open_owner)
  1015. release_stateid(stp, OPEN_STATE);
  1016. else
  1017. release_stateid(stp, LOCK_STATE);
  1018. }
  1019. }
  1020. static void
  1021. release_stateowner(struct nfs4_stateowner *sop)
  1022. {
  1023. unhash_stateowner(sop);
  1024. list_del(&sop->so_close_lru);
  1025. nfs4_put_stateowner(sop);
  1026. }
  1027. static inline void
  1028. init_stateid(struct nfs4_stateid *stp, struct nfs4_file *fp, struct nfsd4_open *open) {
  1029. struct nfs4_stateowner *sop = open->op_stateowner;
  1030. unsigned int hashval = stateid_hashval(sop->so_id, fp->fi_id);
  1031. INIT_LIST_HEAD(&stp->st_hash);
  1032. INIT_LIST_HEAD(&stp->st_perstateowner);
  1033. INIT_LIST_HEAD(&stp->st_lockowners);
  1034. INIT_LIST_HEAD(&stp->st_perfile);
  1035. list_add(&stp->st_hash, &stateid_hashtbl[hashval]);
  1036. list_add(&stp->st_perstateowner, &sop->so_stateids);
  1037. list_add(&stp->st_perfile, &fp->fi_stateids);
  1038. stp->st_stateowner = sop;
  1039. get_nfs4_file(fp);
  1040. stp->st_file = fp;
  1041. stp->st_stateid.si_boot = boot_time;
  1042. stp->st_stateid.si_stateownerid = sop->so_id;
  1043. stp->st_stateid.si_fileid = fp->fi_id;
  1044. stp->st_stateid.si_generation = 0;
  1045. stp->st_access_bmap = 0;
  1046. stp->st_deny_bmap = 0;
  1047. __set_bit(open->op_share_access, &stp->st_access_bmap);
  1048. __set_bit(open->op_share_deny, &stp->st_deny_bmap);
  1049. }
  1050. static void
  1051. release_stateid(struct nfs4_stateid *stp, int flags)
  1052. {
  1053. struct file *filp = stp->st_vfs_file;
  1054. list_del(&stp->st_hash);
  1055. list_del(&stp->st_perfile);
  1056. list_del(&stp->st_perstateowner);
  1057. if (flags & OPEN_STATE) {
  1058. release_stateid_lockowners(stp);
  1059. stp->st_vfs_file = NULL;
  1060. nfsd_close(filp);
  1061. } else if (flags & LOCK_STATE)
  1062. locks_remove_posix(filp, (fl_owner_t) stp->st_stateowner);
  1063. put_nfs4_file(stp->st_file);
  1064. kmem_cache_free(stateid_slab, stp);
  1065. stp = NULL;
  1066. }
  1067. static void
  1068. move_to_close_lru(struct nfs4_stateowner *sop)
  1069. {
  1070. dprintk("NFSD: move_to_close_lru nfs4_stateowner %p\n", sop);
  1071. unhash_stateowner(sop);
  1072. list_add_tail(&sop->so_close_lru, &close_lru);
  1073. sop->so_time = get_seconds();
  1074. }
  1075. static void
  1076. release_state_owner(struct nfs4_stateid *stp, int flag)
  1077. {
  1078. struct nfs4_stateowner *sop = stp->st_stateowner;
  1079. dprintk("NFSD: release_state_owner\n");
  1080. release_stateid(stp, flag);
  1081. /* place unused nfs4_stateowners on so_close_lru list to be
  1082. * released by the laundromat service after the lease period
  1083. * to enable us to handle CLOSE replay
  1084. */
  1085. if (sop->so_confirmed && list_empty(&sop->so_stateids))
  1086. move_to_close_lru(sop);
  1087. }
  1088. static int
  1089. cmp_owner_str(struct nfs4_stateowner *sop, struct xdr_netobj *owner, clientid_t *clid) {
  1090. return ((sop->so_owner.len == owner->len) &&
  1091. !memcmp(sop->so_owner.data, owner->data, owner->len) &&
  1092. (sop->so_client->cl_clientid.cl_id == clid->cl_id));
  1093. }
  1094. static struct nfs4_stateowner *
  1095. find_openstateowner_str(unsigned int hashval, struct nfsd4_open *open)
  1096. {
  1097. struct nfs4_stateowner *so = NULL;
  1098. list_for_each_entry(so, &ownerstr_hashtbl[hashval], so_strhash) {
  1099. if (cmp_owner_str(so, &open->op_owner, &open->op_clientid))
  1100. return so;
  1101. }
  1102. return NULL;
  1103. }
  1104. /* search file_hashtbl[] for file */
  1105. static struct nfs4_file *
  1106. find_file(struct inode *ino)
  1107. {
  1108. unsigned int hashval = file_hashval(ino);
  1109. struct nfs4_file *fp;
  1110. list_for_each_entry(fp, &file_hashtbl[hashval], fi_hash) {
  1111. if (fp->fi_inode == ino) {
  1112. get_nfs4_file(fp);
  1113. return fp;
  1114. }
  1115. }
  1116. return NULL;
  1117. }
  1118. #define TEST_ACCESS(x) ((x > 0 || x < 4)?1:0)
  1119. #define TEST_DENY(x) ((x >= 0 || x < 5)?1:0)
  1120. static void
  1121. set_access(unsigned int *access, unsigned long bmap) {
  1122. int i;
  1123. *access = 0;
  1124. for (i = 1; i < 4; i++) {
  1125. if (test_bit(i, &bmap))
  1126. *access |= i;
  1127. }
  1128. }
  1129. static void
  1130. set_deny(unsigned int *deny, unsigned long bmap) {
  1131. int i;
  1132. *deny = 0;
  1133. for (i = 0; i < 4; i++) {
  1134. if (test_bit(i, &bmap))
  1135. *deny |= i ;
  1136. }
  1137. }
  1138. static int
  1139. test_share(struct nfs4_stateid *stp, struct nfsd4_open *open) {
  1140. unsigned int access, deny;
  1141. set_access(&access, stp->st_access_bmap);
  1142. set_deny(&deny, stp->st_deny_bmap);
  1143. if ((access & open->op_share_deny) || (deny & open->op_share_access))
  1144. return 0;
  1145. return 1;
  1146. }
  1147. /*
  1148. * Called to check deny when READ with all zero stateid or
  1149. * WRITE with all zero or all one stateid
  1150. */
  1151. static int
  1152. nfs4_share_conflict(struct svc_fh *current_fh, unsigned int deny_type)
  1153. {
  1154. struct inode *ino = current_fh->fh_dentry->d_inode;
  1155. struct nfs4_file *fp;
  1156. struct nfs4_stateid *stp;
  1157. int ret;
  1158. dprintk("NFSD: nfs4_share_conflict\n");
  1159. fp = find_file(ino);
  1160. if (!fp)
  1161. return nfs_ok;
  1162. ret = nfserr_share_denied;
  1163. /* Search for conflicting share reservations */
  1164. list_for_each_entry(stp, &fp->fi_stateids, st_perfile) {
  1165. if (test_bit(deny_type, &stp->st_deny_bmap) ||
  1166. test_bit(NFS4_SHARE_DENY_BOTH, &stp->st_deny_bmap))
  1167. goto out;
  1168. }
  1169. ret = nfs_ok;
  1170. out:
  1171. put_nfs4_file(fp);
  1172. return ret;
  1173. }
  1174. static inline void
  1175. nfs4_file_downgrade(struct file *filp, unsigned int share_access)
  1176. {
  1177. if (share_access & NFS4_SHARE_ACCESS_WRITE) {
  1178. put_write_access(filp->f_dentry->d_inode);
  1179. filp->f_mode = (filp->f_mode | FMODE_READ) & ~FMODE_WRITE;
  1180. }
  1181. }
  1182. /*
  1183. * Recall a delegation
  1184. */
  1185. static int
  1186. do_recall(void *__dp)
  1187. {
  1188. struct nfs4_delegation *dp = __dp;
  1189. daemonize("nfsv4-recall");
  1190. nfsd4_cb_recall(dp);
  1191. return 0;
  1192. }
  1193. /*
  1194. * Spawn a thread to perform a recall on the delegation represented
  1195. * by the lease (file_lock)
  1196. *
  1197. * Called from break_lease() with lock_kernel() held.
  1198. * Note: we assume break_lease will only call this *once* for any given
  1199. * lease.
  1200. */
  1201. static
  1202. void nfsd_break_deleg_cb(struct file_lock *fl)
  1203. {
  1204. struct nfs4_delegation *dp= (struct nfs4_delegation *)fl->fl_owner;
  1205. struct task_struct *t;
  1206. dprintk("NFSD nfsd_break_deleg_cb: dp %p fl %p\n",dp,fl);
  1207. if (!dp)
  1208. return;
  1209. /* We're assuming the state code never drops its reference
  1210. * without first removing the lease. Since we're in this lease
  1211. * callback (and since the lease code is serialized by the kernel
  1212. * lock) we know the server hasn't removed the lease yet, we know
  1213. * it's safe to take a reference: */
  1214. atomic_inc(&dp->dl_count);
  1215. spin_lock(&recall_lock);
  1216. list_add_tail(&dp->dl_recall_lru, &del_recall_lru);
  1217. spin_unlock(&recall_lock);
  1218. /* only place dl_time is set. protected by lock_kernel*/
  1219. dp->dl_time = get_seconds();
  1220. /* XXX need to merge NFSD_LEASE_TIME with fs/locks.c:lease_break_time */
  1221. fl->fl_break_time = jiffies + NFSD_LEASE_TIME * HZ;
  1222. t = kthread_run(do_recall, dp, "%s", "nfs4_cb_recall");
  1223. if (IS_ERR(t)) {
  1224. struct nfs4_client *clp = dp->dl_client;
  1225. printk(KERN_INFO "NFSD: Callback thread failed for "
  1226. "for client (clientid %08x/%08x)\n",
  1227. clp->cl_clientid.cl_boot, clp->cl_clientid.cl_id);
  1228. nfs4_put_delegation(dp);
  1229. }
  1230. }
  1231. /*
  1232. * The file_lock is being reapd.
  1233. *
  1234. * Called by locks_free_lock() with lock_kernel() held.
  1235. */
  1236. static
  1237. void nfsd_release_deleg_cb(struct file_lock *fl)
  1238. {
  1239. struct nfs4_delegation *dp = (struct nfs4_delegation *)fl->fl_owner;
  1240. dprintk("NFSD nfsd_release_deleg_cb: fl %p dp %p dl_count %d\n", fl,dp, atomic_read(&dp->dl_count));
  1241. if (!(fl->fl_flags & FL_LEASE) || !dp)
  1242. return;
  1243. dp->dl_flock = NULL;
  1244. }
  1245. /*
  1246. * Set the delegation file_lock back pointer.
  1247. *
  1248. * Called from __setlease() with lock_kernel() held.
  1249. */
  1250. static
  1251. void nfsd_copy_lock_deleg_cb(struct file_lock *new, struct file_lock *fl)
  1252. {
  1253. struct nfs4_delegation *dp = (struct nfs4_delegation *)new->fl_owner;
  1254. dprintk("NFSD: nfsd_copy_lock_deleg_cb: new fl %p dp %p\n", new, dp);
  1255. if (!dp)
  1256. return;
  1257. dp->dl_flock = new;
  1258. }
  1259. /*
  1260. * Called from __setlease() with lock_kernel() held
  1261. */
  1262. static
  1263. int nfsd_same_client_deleg_cb(struct file_lock *onlist, struct file_lock *try)
  1264. {
  1265. struct nfs4_delegation *onlistd =
  1266. (struct nfs4_delegation *)onlist->fl_owner;
  1267. struct nfs4_delegation *tryd =
  1268. (struct nfs4_delegation *)try->fl_owner;
  1269. if (onlist->fl_lmops != try->fl_lmops)
  1270. return 0;
  1271. return onlistd->dl_client == tryd->dl_client;
  1272. }
  1273. static
  1274. int nfsd_change_deleg_cb(struct file_lock **onlist, int arg)
  1275. {
  1276. if (arg & F_UNLCK)
  1277. return lease_modify(onlist, arg);
  1278. else
  1279. return -EAGAIN;
  1280. }
  1281. static struct lock_manager_operations nfsd_lease_mng_ops = {
  1282. .fl_break = nfsd_break_deleg_cb,
  1283. .fl_release_private = nfsd_release_deleg_cb,
  1284. .fl_copy_lock = nfsd_copy_lock_deleg_cb,
  1285. .fl_mylease = nfsd_same_client_deleg_cb,
  1286. .fl_change = nfsd_change_deleg_cb,
  1287. };
  1288. /*
  1289. * nfsd4_process_open1()
  1290. * lookup stateowner.
  1291. * found:
  1292. * check confirmed
  1293. * confirmed:
  1294. * check seqid
  1295. * not confirmed:
  1296. * delete owner
  1297. * create new owner
  1298. * notfound:
  1299. * verify clientid
  1300. * create new owner
  1301. *
  1302. * called with nfs4_lock_state() held.
  1303. */
  1304. int
  1305. nfsd4_process_open1(struct nfsd4_open *open)
  1306. {
  1307. int status;
  1308. clientid_t *clientid = &open->op_clientid;
  1309. struct nfs4_client *clp = NULL;
  1310. unsigned int strhashval;
  1311. struct nfs4_stateowner *sop = NULL;
  1312. status = nfserr_inval;
  1313. if (!check_name(open->op_owner))
  1314. goto out;
  1315. if (STALE_CLIENTID(&open->op_clientid))
  1316. return nfserr_stale_clientid;
  1317. strhashval = ownerstr_hashval(clientid->cl_id, open->op_owner);
  1318. sop = find_openstateowner_str(strhashval, open);
  1319. if (sop) {
  1320. open->op_stateowner = sop;
  1321. /* check for replay */
  1322. if (open->op_seqid == sop->so_seqid - 1){
  1323. if (sop->so_replay.rp_buflen)
  1324. return NFSERR_REPLAY_ME;
  1325. else {
  1326. /* The original OPEN failed so spectacularly
  1327. * that we don't even have replay data saved!
  1328. * Therefore, we have no choice but to continue
  1329. * processing this OPEN; presumably, we'll
  1330. * fail again for the same reason.
  1331. */
  1332. dprintk("nfsd4_process_open1:"
  1333. " replay with no replay cache\n");
  1334. goto renew;
  1335. }
  1336. } else if (sop->so_confirmed) {
  1337. if (open->op_seqid == sop->so_seqid)
  1338. goto renew;
  1339. status = nfserr_bad_seqid;
  1340. goto out;
  1341. } else {
  1342. /* If we get here, we received an OPEN for an
  1343. * unconfirmed nfs4_stateowner. Since the seqid's are
  1344. * different, purge the existing nfs4_stateowner, and
  1345. * instantiate a new one.
  1346. */
  1347. clp = sop->so_client;
  1348. release_stateowner(sop);
  1349. }
  1350. } else {
  1351. /* nfs4_stateowner not found.
  1352. * Verify clientid and instantiate new nfs4_stateowner.
  1353. * If verify fails this is presumably the result of the
  1354. * client's lease expiring.
  1355. */
  1356. status = nfserr_expired;
  1357. clp = find_confirmed_client(clientid);
  1358. if (clp == NULL)
  1359. goto out;
  1360. }
  1361. status = nfserr_resource;
  1362. sop = alloc_init_open_stateowner(strhashval, clp, open);
  1363. if (sop == NULL)
  1364. goto out;
  1365. open->op_stateowner = sop;
  1366. renew:
  1367. status = nfs_ok;
  1368. renew_client(sop->so_client);
  1369. out:
  1370. return status;
  1371. }
  1372. static inline int
  1373. nfs4_check_delegmode(struct nfs4_delegation *dp, int flags)
  1374. {
  1375. if ((flags & WR_STATE) && (dp->dl_type == NFS4_OPEN_DELEGATE_READ))
  1376. return nfserr_openmode;
  1377. else
  1378. return nfs_ok;
  1379. }
  1380. static struct nfs4_delegation *
  1381. find_delegation_file(struct nfs4_file *fp, stateid_t *stid)
  1382. {
  1383. struct nfs4_delegation *dp;
  1384. list_for_each_entry(dp, &fp->fi_delegations, dl_perfile) {
  1385. if (dp->dl_stateid.si_stateownerid == stid->si_stateownerid)
  1386. return dp;
  1387. }
  1388. return NULL;
  1389. }
  1390. static int
  1391. nfs4_check_deleg(struct nfs4_file *fp, struct nfsd4_open *open,
  1392. struct nfs4_delegation **dp)
  1393. {
  1394. int flags;
  1395. int status = nfserr_bad_stateid;
  1396. *dp = find_delegation_file(fp, &open->op_delegate_stateid);
  1397. if (*dp == NULL)
  1398. goto out;
  1399. flags = open->op_share_access == NFS4_SHARE_ACCESS_READ ?
  1400. RD_STATE : WR_STATE;
  1401. status = nfs4_check_delegmode(*dp, flags);
  1402. if (status)
  1403. *dp = NULL;
  1404. out:
  1405. if (open->op_claim_type != NFS4_OPEN_CLAIM_DELEGATE_CUR)
  1406. return nfs_ok;
  1407. if (status)
  1408. return status;
  1409. open->op_stateowner->so_confirmed = 1;
  1410. return nfs_ok;
  1411. }
  1412. static int
  1413. nfs4_check_open(struct nfs4_file *fp, struct nfsd4_open *open, struct nfs4_stateid **stpp)
  1414. {
  1415. struct nfs4_stateid *local;
  1416. int status = nfserr_share_denied;
  1417. struct nfs4_stateowner *sop = open->op_stateowner;
  1418. list_for_each_entry(local, &fp->fi_stateids, st_perfile) {
  1419. /* ignore lock owners */
  1420. if (local->st_stateowner->so_is_open_owner == 0)
  1421. continue;
  1422. /* remember if we have seen this open owner */
  1423. if (local->st_stateowner == sop)
  1424. *stpp = local;
  1425. /* check for conflicting share reservations */
  1426. if (!test_share(local, open))
  1427. goto out;
  1428. }
  1429. status = 0;
  1430. out:
  1431. return status;
  1432. }
  1433. static inline struct nfs4_stateid *
  1434. nfs4_alloc_stateid(void)
  1435. {
  1436. return kmem_cache_alloc(stateid_slab, GFP_KERNEL);
  1437. }
  1438. static int
  1439. nfs4_new_open(struct svc_rqst *rqstp, struct nfs4_stateid **stpp,
  1440. struct nfs4_delegation *dp,
  1441. struct svc_fh *cur_fh, int flags)
  1442. {
  1443. struct nfs4_stateid *stp;
  1444. stp = nfs4_alloc_stateid();
  1445. if (stp == NULL)
  1446. return nfserr_resource;
  1447. if (dp) {
  1448. get_file(dp->dl_vfs_file);
  1449. stp->st_vfs_file = dp->dl_vfs_file;
  1450. } else {
  1451. int status;
  1452. status = nfsd_open(rqstp, cur_fh, S_IFREG, flags,
  1453. &stp->st_vfs_file);
  1454. if (status) {
  1455. if (status == nfserr_dropit)
  1456. status = nfserr_jukebox;
  1457. kmem_cache_free(stateid_slab, stp);
  1458. return status;
  1459. }
  1460. }
  1461. *stpp = stp;
  1462. return 0;
  1463. }
  1464. static inline int
  1465. nfsd4_truncate(struct svc_rqst *rqstp, struct svc_fh *fh,
  1466. struct nfsd4_open *open)
  1467. {
  1468. struct iattr iattr = {
  1469. .ia_valid = ATTR_SIZE,
  1470. .ia_size = 0,
  1471. };
  1472. if (!open->op_truncate)
  1473. return 0;
  1474. if (!(open->op_share_access & NFS4_SHARE_ACCESS_WRITE))
  1475. return -EINVAL;
  1476. return nfsd_setattr(rqstp, fh, &iattr, 0, (time_t)0);
  1477. }
  1478. static int
  1479. nfs4_upgrade_open(struct svc_rqst *rqstp, struct svc_fh *cur_fh, struct nfs4_stateid *stp, struct nfsd4_open *open)
  1480. {
  1481. struct file *filp = stp->st_vfs_file;
  1482. struct inode *inode = filp->f_dentry->d_inode;
  1483. unsigned int share_access;
  1484. int status;
  1485. set_access(&share_access, stp->st_access_bmap);
  1486. share_access = ~share_access;
  1487. share_access &= open->op_share_access;
  1488. if (!(share_access & NFS4_SHARE_ACCESS_WRITE))
  1489. return nfsd4_truncate(rqstp, cur_fh, open);
  1490. status = get_write_access(inode);
  1491. if (status)
  1492. return nfserrno(status);
  1493. status = nfsd4_truncate(rqstp, cur_fh, open);
  1494. if (status) {
  1495. put_write_access(inode);
  1496. return status;
  1497. }
  1498. /* remember the open */
  1499. filp->f_mode = (filp->f_mode | FMODE_WRITE) & ~FMODE_READ;
  1500. set_bit(open->op_share_access, &stp->st_access_bmap);
  1501. set_bit(open->op_share_deny, &stp->st_deny_bmap);
  1502. return nfs_ok;
  1503. }
  1504. static void
  1505. nfs4_set_claim_prev(struct nfsd4_open *open)
  1506. {
  1507. open->op_stateowner->so_confirmed = 1;
  1508. open->op_stateowner->so_client->cl_firststate = 1;
  1509. }
  1510. /*
  1511. * Attempt to hand out a delegation.
  1512. */
  1513. static void
  1514. nfs4_open_delegation(struct svc_fh *fh, struct nfsd4_open *open, struct nfs4_stateid *stp)
  1515. {
  1516. struct nfs4_delegation *dp;
  1517. struct nfs4_stateowner *sop = stp->st_stateowner;
  1518. struct nfs4_callback *cb = &sop->so_client->cl_callback;
  1519. struct file_lock fl, *flp = &fl;
  1520. int status, flag = 0;
  1521. flag = NFS4_OPEN_DELEGATE_NONE;
  1522. open->op_recall = 0;
  1523. switch (open->op_claim_type) {
  1524. case NFS4_OPEN_CLAIM_PREVIOUS:
  1525. if (!atomic_read(&cb->cb_set))
  1526. open->op_recall = 1;
  1527. flag = open->op_delegate_type;
  1528. if (flag == NFS4_OPEN_DELEGATE_NONE)
  1529. goto out;
  1530. break;
  1531. case NFS4_OPEN_CLAIM_NULL:
  1532. /* Let's not give out any delegations till everyone's
  1533. * had the chance to reclaim theirs.... */
  1534. if (nfs4_in_grace())
  1535. goto out;
  1536. if (!atomic_read(&cb->cb_set) || !sop->so_confirmed)
  1537. goto out;
  1538. if (open->op_share_access & NFS4_SHARE_ACCESS_WRITE)
  1539. flag = NFS4_OPEN_DELEGATE_WRITE;
  1540. else
  1541. flag = NFS4_OPEN_DELEGATE_READ;
  1542. break;
  1543. default:
  1544. goto out;
  1545. }
  1546. dp = alloc_init_deleg(sop->so_client, stp, fh, flag);
  1547. if (dp == NULL) {
  1548. flag = NFS4_OPEN_DELEGATE_NONE;
  1549. goto out;
  1550. }
  1551. locks_init_lock(&fl);
  1552. fl.fl_lmops = &nfsd_lease_mng_ops;
  1553. fl.fl_flags = FL_LEASE;
  1554. fl.fl_end = OFFSET_MAX;
  1555. fl.fl_owner = (fl_owner_t)dp;
  1556. fl.fl_file = stp->st_vfs_file;
  1557. fl.fl_pid = current->tgid;
  1558. /* setlease checks to see if delegation should be handed out.
  1559. * the lock_manager callbacks fl_mylease and fl_change are used
  1560. */
  1561. if ((status = setlease(stp->st_vfs_file,
  1562. flag == NFS4_OPEN_DELEGATE_READ? F_RDLCK: F_WRLCK, &flp))) {
  1563. dprintk("NFSD: setlease failed [%d], no delegation\n", status);
  1564. unhash_delegation(dp);
  1565. flag = NFS4_OPEN_DELEGATE_NONE;
  1566. goto out;
  1567. }
  1568. memcpy(&open->op_delegate_stateid, &dp->dl_stateid, sizeof(dp->dl_stateid));
  1569. dprintk("NFSD: delegation stateid=(%08x/%08x/%08x/%08x)\n\n",
  1570. dp->dl_stateid.si_boot,
  1571. dp->dl_stateid.si_stateownerid,
  1572. dp->dl_stateid.si_fileid,
  1573. dp->dl_stateid.si_generation);
  1574. out:
  1575. if (open->op_claim_type == NFS4_OPEN_CLAIM_PREVIOUS
  1576. && flag == NFS4_OPEN_DELEGATE_NONE
  1577. && open->op_delegate_type != NFS4_OPEN_DELEGATE_NONE)
  1578. printk("NFSD: WARNING: refusing delegation reclaim\n");
  1579. open->op_delegate_type = flag;
  1580. }
  1581. /*
  1582. * called with nfs4_lock_state() held.
  1583. */
  1584. int
  1585. nfsd4_process_open2(struct svc_rqst *rqstp, struct svc_fh *current_fh, struct nfsd4_open *open)
  1586. {
  1587. struct nfs4_file *fp = NULL;
  1588. struct inode *ino = current_fh->fh_dentry->d_inode;
  1589. struct nfs4_stateid *stp = NULL;
  1590. struct nfs4_delegation *dp = NULL;
  1591. int status;
  1592. if (nfs4_in_grace() && open->op_claim_type != NFS4_OPEN_CLAIM_PREVIOUS)
  1593. return nfserr_grace;
  1594. if (!nfs4_in_grace() && open->op_claim_type == NFS4_OPEN_CLAIM_PREVIOUS)
  1595. return nfserr_no_grace;
  1596. status = nfserr_inval;
  1597. if (!TEST_ACCESS(open->op_share_access) || !TEST_DENY(open->op_share_deny))
  1598. goto out;
  1599. /*
  1600. * Lookup file; if found, lookup stateid and check open request,
  1601. * and check for delegations in the process of being recalled.
  1602. * If not found, create the nfs4_file struct
  1603. */
  1604. fp = find_file(ino);
  1605. if (fp) {
  1606. if ((status = nfs4_check_open(fp, open, &stp)))
  1607. goto out;
  1608. status = nfs4_check_deleg(fp, open, &dp);
  1609. if (status)
  1610. goto out;
  1611. } else {
  1612. status = nfserr_bad_stateid;
  1613. if (open->op_claim_type == NFS4_OPEN_CLAIM_DELEGATE_CUR)
  1614. goto out;
  1615. status = nfserr_resource;
  1616. fp = alloc_init_file(ino);
  1617. if (fp == NULL)
  1618. goto out;
  1619. }
  1620. /*
  1621. * OPEN the file, or upgrade an existing OPEN.
  1622. * If truncate fails, the OPEN fails.
  1623. */
  1624. if (stp) {
  1625. /* Stateid was found, this is an OPEN upgrade */
  1626. status = nfs4_upgrade_open(rqstp, current_fh, stp, open);
  1627. if (status)
  1628. goto out;
  1629. } else {
  1630. /* Stateid was not found, this is a new OPEN */
  1631. int flags = 0;
  1632. if (open->op_share_access & NFS4_SHARE_ACCESS_WRITE)
  1633. flags = MAY_WRITE;
  1634. else
  1635. flags = MAY_READ;
  1636. status = nfs4_new_open(rqstp, &stp, dp, current_fh, flags);
  1637. if (status)
  1638. goto out;
  1639. init_stateid(stp, fp, open);
  1640. status = nfsd4_truncate(rqstp, current_fh, open);
  1641. if (status) {
  1642. release_stateid(stp, OPEN_STATE);
  1643. goto out;
  1644. }
  1645. }
  1646. memcpy(&open->op_stateid, &stp->st_stateid, sizeof(stateid_t));
  1647. /*
  1648. * Attempt to hand out a delegation. No error return, because the
  1649. * OPEN succeeds even if we fail.
  1650. */
  1651. nfs4_open_delegation(current_fh, open, stp);
  1652. status = nfs_ok;
  1653. dprintk("nfs4_process_open2: stateid=(%08x/%08x/%08x/%08x)\n",
  1654. stp->st_stateid.si_boot, stp->st_stateid.si_stateownerid,
  1655. stp->st_stateid.si_fileid, stp->st_stateid.si_generation);
  1656. out:
  1657. if (fp)
  1658. put_nfs4_file(fp);
  1659. if (status == 0 && open->op_claim_type == NFS4_OPEN_CLAIM_PREVIOUS)
  1660. nfs4_set_claim_prev(open);
  1661. /*
  1662. * To finish the open response, we just need to set the rflags.
  1663. */
  1664. open->op_rflags = NFS4_OPEN_RESULT_LOCKTYPE_POSIX;
  1665. if (!open->op_stateowner->so_confirmed)
  1666. open->op_rflags |= NFS4_OPEN_RESULT_CONFIRM;
  1667. return status;
  1668. }
  1669. static struct workqueue_struct *laundry_wq;
  1670. static struct work_struct laundromat_work;
  1671. static void laundromat_main(void *);
  1672. static DECLARE_WORK(laundromat_work, laundromat_main, NULL);
  1673. int
  1674. nfsd4_renew(clientid_t *clid)
  1675. {
  1676. struct nfs4_client *clp;
  1677. int status;
  1678. nfs4_lock_state();
  1679. dprintk("process_renew(%08x/%08x): starting\n",
  1680. clid->cl_boot, clid->cl_id);
  1681. status = nfserr_stale_clientid;
  1682. if (STALE_CLIENTID(clid))
  1683. goto out;
  1684. clp = find_confirmed_client(clid);
  1685. status = nfserr_expired;
  1686. if (clp == NULL) {
  1687. /* We assume the client took too long to RENEW. */
  1688. dprintk("nfsd4_renew: clientid not found!\n");
  1689. goto out;
  1690. }
  1691. renew_client(clp);
  1692. status = nfserr_cb_path_down;
  1693. if (!list_empty(&clp->cl_delegations)
  1694. && !atomic_read(&clp->cl_callback.cb_set))
  1695. goto out;
  1696. status = nfs_ok;
  1697. out:
  1698. nfs4_unlock_state();
  1699. return status;
  1700. }
  1701. static void
  1702. end_grace(void)
  1703. {
  1704. dprintk("NFSD: end of grace period\n");
  1705. nfsd4_recdir_purge_old();
  1706. in_grace = 0;
  1707. }
  1708. static time_t
  1709. nfs4_laundromat(void)
  1710. {
  1711. struct nfs4_client *clp;
  1712. struct nfs4_stateowner *sop;
  1713. struct nfs4_delegation *dp;
  1714. struct list_head *pos, *next, reaplist;
  1715. time_t cutoff = get_seconds() - NFSD_LEASE_TIME;
  1716. time_t t, clientid_val = NFSD_LEASE_TIME;
  1717. time_t u, test_val = NFSD_LEASE_TIME;
  1718. nfs4_lock_state();
  1719. dprintk("NFSD: laundromat service - starting\n");
  1720. if (in_grace)
  1721. end_grace();
  1722. list_for_each_safe(pos, next, &client_lru) {
  1723. clp = list_entry(pos, struct nfs4_client, cl_lru);
  1724. if (time_after((unsigned long)clp->cl_time, (unsigned long)cutoff)) {
  1725. t = clp->cl_time - cutoff;
  1726. if (clientid_val > t)
  1727. clientid_val = t;
  1728. break;
  1729. }
  1730. dprintk("NFSD: purging unused client (clientid %08x)\n",
  1731. clp->cl_clientid.cl_id);
  1732. nfsd4_remove_clid_dir(clp);
  1733. expire_client(clp);
  1734. }
  1735. INIT_LIST_HEAD(&reaplist);
  1736. spin_lock(&recall_lock);
  1737. list_for_each_safe(pos, next, &del_recall_lru) {
  1738. dp = list_entry (pos, struct nfs4_delegation, dl_recall_lru);
  1739. if (time_after((unsigned long)dp->dl_time, (unsigned long)cutoff)) {
  1740. u = dp->dl_time - cutoff;
  1741. if (test_val > u)
  1742. test_val = u;
  1743. break;
  1744. }
  1745. dprintk("NFSD: purging unused delegation dp %p, fp %p\n",
  1746. dp, dp->dl_flock);
  1747. list_move(&dp->dl_recall_lru, &reaplist);
  1748. }
  1749. spin_unlock(&recall_lock);
  1750. list_for_each_safe(pos, next, &reaplist) {
  1751. dp = list_entry (pos, struct nfs4_delegation, dl_recall_lru);
  1752. list_del_init(&dp->dl_recall_lru);
  1753. unhash_delegation(dp);
  1754. }
  1755. test_val = NFSD_LEASE_TIME;
  1756. list_for_each_safe(pos, next, &close_lru) {
  1757. sop = list_entry(pos, struct nfs4_stateowner, so_close_lru);
  1758. if (time_after((unsigned long)sop->so_time, (unsigned long)cutoff)) {
  1759. u = sop->so_time - cutoff;
  1760. if (test_val > u)
  1761. test_val = u;
  1762. break;
  1763. }
  1764. dprintk("NFSD: purging unused open stateowner (so_id %d)\n",
  1765. sop->so_id);
  1766. list_del(&sop->so_close_lru);
  1767. nfs4_put_stateowner(sop);
  1768. }
  1769. if (clientid_val < NFSD_LAUNDROMAT_MINTIMEOUT)
  1770. clientid_val = NFSD_LAUNDROMAT_MINTIMEOUT;
  1771. nfs4_unlock_state();
  1772. return clientid_val;
  1773. }
  1774. void
  1775. laundromat_main(void *not_used)
  1776. {
  1777. time_t t;
  1778. t = nfs4_laundromat();
  1779. dprintk("NFSD: laundromat_main - sleeping for %ld seconds\n", t);
  1780. queue_delayed_work(laundry_wq, &laundromat_work, t*HZ);
  1781. }
  1782. /* search ownerid_hashtbl[] and close_lru for stateid owner
  1783. * (stateid->si_stateownerid)
  1784. */
  1785. static struct nfs4_stateowner *
  1786. find_openstateowner_id(u32 st_id, int flags) {
  1787. struct nfs4_stateowner *local = NULL;
  1788. dprintk("NFSD: find_openstateowner_id %d\n", st_id);
  1789. if (flags & CLOSE_STATE) {
  1790. list_for_each_entry(local, &close_lru, so_close_lru) {
  1791. if (local->so_id == st_id)
  1792. return local;
  1793. }
  1794. }
  1795. return NULL;
  1796. }
  1797. static inline int
  1798. nfs4_check_fh(struct svc_fh *fhp, struct nfs4_stateid *stp)
  1799. {
  1800. return fhp->fh_dentry->d_inode != stp->st_vfs_file->f_dentry->d_inode;
  1801. }
  1802. static int
  1803. STALE_STATEID(stateid_t *stateid)
  1804. {
  1805. if (stateid->si_boot == boot_time)
  1806. return 0;
  1807. printk("NFSD: stale stateid (%08x/%08x/%08x/%08x)!\n",
  1808. stateid->si_boot, stateid->si_stateownerid, stateid->si_fileid,
  1809. stateid->si_generation);
  1810. return 1;
  1811. }
  1812. static inline int
  1813. access_permit_read(unsigned long access_bmap)
  1814. {
  1815. return test_bit(NFS4_SHARE_ACCESS_READ, &access_bmap) ||
  1816. test_bit(NFS4_SHARE_ACCESS_BOTH, &access_bmap) ||
  1817. test_bit(NFS4_SHARE_ACCESS_WRITE, &access_bmap);
  1818. }
  1819. static inline int
  1820. access_permit_write(unsigned long access_bmap)
  1821. {
  1822. return test_bit(NFS4_SHARE_ACCESS_WRITE, &access_bmap) ||
  1823. test_bit(NFS4_SHARE_ACCESS_BOTH, &access_bmap);
  1824. }
  1825. static
  1826. int nfs4_check_openmode(struct nfs4_stateid *stp, int flags)
  1827. {
  1828. int status = nfserr_openmode;
  1829. if ((flags & WR_STATE) && (!access_permit_write(stp->st_access_bmap)))
  1830. goto out;
  1831. if ((flags & RD_STATE) && (!access_permit_read(stp->st_access_bmap)))
  1832. goto out;
  1833. status = nfs_ok;
  1834. out:
  1835. return status;
  1836. }
  1837. static inline int
  1838. check_special_stateids(svc_fh *current_fh, stateid_t *stateid, int flags)
  1839. {
  1840. /* Trying to call delegreturn with a special stateid? Yuch: */
  1841. if (!(flags & (RD_STATE | WR_STATE)))
  1842. return nfserr_bad_stateid;
  1843. else if (ONE_STATEID(stateid) && (flags & RD_STATE))
  1844. return nfs_ok;
  1845. else if (nfs4_in_grace()) {
  1846. /* Answer in remaining cases depends on existance of
  1847. * conflicting state; so we must wait out the grace period. */
  1848. return nfserr_grace;
  1849. } else if (flags & WR_STATE)
  1850. return nfs4_share_conflict(current_fh,
  1851. NFS4_SHARE_DENY_WRITE);
  1852. else /* (flags & RD_STATE) && ZERO_STATEID(stateid) */
  1853. return nfs4_share_conflict(current_fh,
  1854. NFS4_SHARE_DENY_READ);
  1855. }
  1856. /*
  1857. * Allow READ/WRITE during grace period on recovered state only for files
  1858. * that are not able to provide mandatory locking.
  1859. */
  1860. static inline int
  1861. io_during_grace_disallowed(struct inode *inode, int flags)
  1862. {
  1863. return nfs4_in_grace() && (flags & (RD_STATE | WR_STATE))
  1864. && MANDATORY_LOCK(inode);
  1865. }
  1866. /*
  1867. * Checks for stateid operations
  1868. */
  1869. int
  1870. nfs4_preprocess_stateid_op(struct svc_fh *current_fh, stateid_t *stateid, int flags, struct file **filpp)
  1871. {
  1872. struct nfs4_stateid *stp = NULL;
  1873. struct nfs4_delegation *dp = NULL;
  1874. stateid_t *stidp;
  1875. struct inode *ino = current_fh->fh_dentry->d_inode;
  1876. int status;
  1877. dprintk("NFSD: preprocess_stateid_op: stateid = (%08x/%08x/%08x/%08x)\n",
  1878. stateid->si_boot, stateid->si_stateownerid,
  1879. stateid->si_fileid, stateid->si_generation);
  1880. if (filpp)
  1881. *filpp = NULL;
  1882. if (io_during_grace_disallowed(ino, flags))
  1883. return nfserr_grace;
  1884. if (ZERO_STATEID(stateid) || ONE_STATEID(stateid))
  1885. return check_special_stateids(current_fh, stateid, flags);
  1886. /* STALE STATEID */
  1887. status = nfserr_stale_stateid;
  1888. if (STALE_STATEID(stateid))
  1889. goto out;
  1890. /* BAD STATEID */
  1891. status = nfserr_bad_stateid;
  1892. if (!stateid->si_fileid) { /* delegation stateid */
  1893. if(!(dp = find_delegation_stateid(ino, stateid))) {
  1894. dprintk("NFSD: delegation stateid not found\n");
  1895. if (nfs4_in_grace())
  1896. status = nfserr_grace;
  1897. goto out;
  1898. }
  1899. stidp = &dp->dl_stateid;
  1900. } else { /* open or lock stateid */
  1901. if (!(stp = find_stateid(stateid, flags))) {
  1902. dprintk("NFSD: open or lock stateid not found\n");
  1903. if (nfs4_in_grace())
  1904. status = nfserr_grace;
  1905. goto out;
  1906. }
  1907. if ((flags & CHECK_FH) && nfs4_check_fh(current_fh, stp))
  1908. goto out;
  1909. if (!stp->st_stateowner->so_confirmed)
  1910. goto out;
  1911. stidp = &stp->st_stateid;
  1912. }
  1913. if (stateid->si_generation > stidp->si_generation)
  1914. goto out;
  1915. /* OLD STATEID */
  1916. status = nfserr_old_stateid;
  1917. if (stateid->si_generation < stidp->si_generation)
  1918. goto out;
  1919. if (stp) {
  1920. if ((status = nfs4_check_openmode(stp,flags)))
  1921. goto out;
  1922. renew_client(stp->st_stateowner->so_client);
  1923. if (filpp)
  1924. *filpp = stp->st_vfs_file;
  1925. } else if (dp) {
  1926. if ((status = nfs4_check_delegmode(dp, flags)))
  1927. goto out;
  1928. renew_client(dp->dl_client);
  1929. if (flags & DELEG_RET)
  1930. unhash_delegation(dp);
  1931. if (filpp)
  1932. *filpp = dp->dl_vfs_file;
  1933. }
  1934. status = nfs_ok;
  1935. out:
  1936. return status;
  1937. }
  1938. /*
  1939. * Checks for sequence id mutating operations.
  1940. */
  1941. static int
  1942. nfs4_preprocess_seqid_op(struct svc_fh *current_fh, u32 seqid, stateid_t *stateid, int flags, struct nfs4_stateowner **sopp, struct nfs4_stateid **stpp, clientid_t *lockclid)
  1943. {
  1944. int status;
  1945. struct nfs4_stateid *stp;
  1946. struct nfs4_stateowner *sop;
  1947. dprintk("NFSD: preprocess_seqid_op: seqid=%d "
  1948. "stateid = (%08x/%08x/%08x/%08x)\n", seqid,
  1949. stateid->si_boot, stateid->si_stateownerid, stateid->si_fileid,
  1950. stateid->si_generation);
  1951. *stpp = NULL;
  1952. *sopp = NULL;
  1953. status = nfserr_bad_stateid;
  1954. if (ZERO_STATEID(stateid) || ONE_STATEID(stateid)) {
  1955. printk("NFSD: preprocess_seqid_op: magic stateid!\n");
  1956. goto out;
  1957. }
  1958. status = nfserr_stale_stateid;
  1959. if (STALE_STATEID(stateid))
  1960. goto out;
  1961. /*
  1962. * We return BAD_STATEID if filehandle doesn't match stateid,
  1963. * the confirmed flag is incorrecly set, or the generation
  1964. * number is incorrect.
  1965. * If there is no entry in the openfile table for this id,
  1966. * we can't always return BAD_STATEID;
  1967. * this might be a retransmitted CLOSE which has arrived after
  1968. * the openfile has been released.
  1969. */
  1970. if (!(stp = find_stateid(stateid, flags)))
  1971. goto no_nfs4_stateid;
  1972. status = nfserr_bad_stateid;
  1973. /* for new lock stateowners:
  1974. * check that the lock->v.new.open_stateid
  1975. * refers to an open stateowner
  1976. *
  1977. * check that the lockclid (nfs4_lock->v.new.clientid) is the same
  1978. * as the open_stateid->st_stateowner->so_client->clientid
  1979. */
  1980. if (lockclid) {
  1981. struct nfs4_stateowner *sop = stp->st_stateowner;
  1982. struct nfs4_client *clp = sop->so_client;
  1983. if (!sop->so_is_open_owner)
  1984. goto out;
  1985. if (!cmp_clid(&clp->cl_clientid, lockclid))
  1986. goto out;
  1987. }
  1988. if ((flags & CHECK_FH) && nfs4_check_fh(current_fh, stp)) {
  1989. printk("NFSD: preprocess_seqid_op: fh-stateid mismatch!\n");
  1990. goto out;
  1991. }
  1992. *stpp = stp;
  1993. *sopp = sop = stp->st_stateowner;
  1994. /*
  1995. * We now validate the seqid and stateid generation numbers.
  1996. * For the moment, we ignore the possibility of
  1997. * generation number wraparound.
  1998. */
  1999. if (seqid != sop->so_seqid)
  2000. goto check_replay;
  2001. if (sop->so_confirmed) {
  2002. if (flags & CONFIRM) {
  2003. printk("NFSD: preprocess_seqid_op: expected unconfirmed stateowner!\n");
  2004. goto out;
  2005. }
  2006. }
  2007. else {
  2008. if (!(flags & CONFIRM)) {
  2009. printk("NFSD: preprocess_seqid_op: stateowner not confirmed yet!\n");
  2010. goto out;
  2011. }
  2012. }
  2013. if (stateid->si_generation > stp->st_stateid.si_generation) {
  2014. printk("NFSD: preprocess_seqid_op: future stateid?!\n");
  2015. goto out;
  2016. }
  2017. status = nfserr_old_stateid;
  2018. if (stateid->si_generation < stp->st_stateid.si_generation) {
  2019. printk("NFSD: preprocess_seqid_op: old stateid!\n");
  2020. goto out;
  2021. }
  2022. /* XXX renew the client lease here */
  2023. status = nfs_ok;
  2024. out:
  2025. return status;
  2026. no_nfs4_stateid:
  2027. /*
  2028. * We determine whether this is a bad stateid or a replay,
  2029. * starting by trying to look up the stateowner.
  2030. * If stateowner is not found - stateid is bad.
  2031. */
  2032. if (!(sop = find_openstateowner_id(stateid->si_stateownerid, flags))) {
  2033. printk("NFSD: preprocess_seqid_op: no stateowner or nfs4_stateid!\n");
  2034. status = nfserr_bad_stateid;
  2035. goto out;
  2036. }
  2037. *sopp = sop;
  2038. check_replay:
  2039. if (seqid == sop->so_seqid - 1) {
  2040. printk("NFSD: preprocess_seqid_op: retransmission?\n");
  2041. /* indicate replay to calling function */
  2042. status = NFSERR_REPLAY_ME;
  2043. } else {
  2044. printk("NFSD: preprocess_seqid_op: bad seqid (expected %d, got %d\n", sop->so_seqid, seqid);
  2045. *sopp = NULL;
  2046. status = nfserr_bad_seqid;
  2047. }
  2048. goto out;
  2049. }
  2050. int
  2051. nfsd4_open_confirm(struct svc_rqst *rqstp, struct svc_fh *current_fh, struct nfsd4_open_confirm *oc)
  2052. {
  2053. int status;
  2054. struct nfs4_stateowner *sop;
  2055. struct nfs4_stateid *stp;
  2056. dprintk("NFSD: nfsd4_open_confirm on file %.*s\n",
  2057. (int)current_fh->fh_dentry->d_name.len,
  2058. current_fh->fh_dentry->d_name.name);
  2059. if ((status = fh_verify(rqstp, current_fh, S_IFREG, 0)))
  2060. goto out;
  2061. nfs4_lock_state();
  2062. if ((status = nfs4_preprocess_seqid_op(current_fh, oc->oc_seqid,
  2063. &oc->oc_req_stateid,
  2064. CHECK_FH | CONFIRM | OPEN_STATE,
  2065. &oc->oc_stateowner, &stp, NULL)))
  2066. goto out;
  2067. sop = oc->oc_stateowner;
  2068. sop->so_confirmed = 1;
  2069. update_stateid(&stp->st_stateid);
  2070. memcpy(&oc->oc_resp_stateid, &stp->st_stateid, sizeof(stateid_t));
  2071. dprintk("NFSD: nfsd4_open_confirm: success, seqid=%d "
  2072. "stateid=(%08x/%08x/%08x/%08x)\n", oc->oc_seqid,
  2073. stp->st_stateid.si_boot,
  2074. stp->st_stateid.si_stateownerid,
  2075. stp->st_stateid.si_fileid,
  2076. stp->st_stateid.si_generation);
  2077. nfsd4_create_clid_dir(sop->so_client);
  2078. out:
  2079. if (oc->oc_stateowner)
  2080. nfs4_get_stateowner(oc->oc_stateowner);
  2081. nfs4_unlock_state();
  2082. return status;
  2083. }
  2084. /*
  2085. * unset all bits in union bitmap (bmap) that
  2086. * do not exist in share (from successful OPEN_DOWNGRADE)
  2087. */
  2088. static void
  2089. reset_union_bmap_access(unsigned long access, unsigned long *bmap)
  2090. {
  2091. int i;
  2092. for (i = 1; i < 4; i++) {
  2093. if ((i & access) != i)
  2094. __clear_bit(i, bmap);
  2095. }
  2096. }
  2097. static void
  2098. reset_union_bmap_deny(unsigned long deny, unsigned long *bmap)
  2099. {
  2100. int i;
  2101. for (i = 0; i < 4; i++) {
  2102. if ((i & deny) != i)
  2103. __clear_bit(i, bmap);
  2104. }
  2105. }
  2106. int
  2107. nfsd4_open_downgrade(struct svc_rqst *rqstp, struct svc_fh *current_fh, struct nfsd4_open_downgrade *od)
  2108. {
  2109. int status;
  2110. struct nfs4_stateid *stp;
  2111. unsigned int share_access;
  2112. dprintk("NFSD: nfsd4_open_downgrade on file %.*s\n",
  2113. (int)current_fh->fh_dentry->d_name.len,
  2114. current_fh->fh_dentry->d_name.name);
  2115. if (!TEST_ACCESS(od->od_share_access) || !TEST_DENY(od->od_share_deny))
  2116. return nfserr_inval;
  2117. nfs4_lock_state();
  2118. if ((status = nfs4_preprocess_seqid_op(current_fh, od->od_seqid,
  2119. &od->od_stateid,
  2120. CHECK_FH | OPEN_STATE,
  2121. &od->od_stateowner, &stp, NULL)))
  2122. goto out;
  2123. status = nfserr_inval;
  2124. if (!test_bit(od->od_share_access, &stp->st_access_bmap)) {
  2125. dprintk("NFSD:access not a subset current bitmap: 0x%lx, input access=%08x\n",
  2126. stp->st_access_bmap, od->od_share_access);
  2127. goto out;
  2128. }
  2129. if (!test_bit(od->od_share_deny, &stp->st_deny_bmap)) {
  2130. dprintk("NFSD:deny not a subset current bitmap: 0x%lx, input deny=%08x\n",
  2131. stp->st_deny_bmap, od->od_share_deny);
  2132. goto out;
  2133. }
  2134. set_access(&share_access, stp->st_access_bmap);
  2135. nfs4_file_downgrade(stp->st_vfs_file,
  2136. share_access & ~od->od_share_access);
  2137. reset_union_bmap_access(od->od_share_access, &stp->st_access_bmap);
  2138. reset_union_bmap_deny(od->od_share_deny, &stp->st_deny_bmap);
  2139. update_stateid(&stp->st_stateid);
  2140. memcpy(&od->od_stateid, &stp->st_stateid, sizeof(stateid_t));
  2141. status = nfs_ok;
  2142. out:
  2143. if (od->od_stateowner)
  2144. nfs4_get_stateowner(od->od_stateowner);
  2145. nfs4_unlock_state();
  2146. return status;
  2147. }
  2148. /*
  2149. * nfs4_unlock_state() called after encode
  2150. */
  2151. int
  2152. nfsd4_close(struct svc_rqst *rqstp, struct svc_fh *current_fh, struct nfsd4_close *close)
  2153. {
  2154. int status;
  2155. struct nfs4_stateid *stp;
  2156. dprintk("NFSD: nfsd4_close on file %.*s\n",
  2157. (int)current_fh->fh_dentry->d_name.len,
  2158. current_fh->fh_dentry->d_name.name);
  2159. nfs4_lock_state();
  2160. /* check close_lru for replay */
  2161. if ((status = nfs4_preprocess_seqid_op(current_fh, close->cl_seqid,
  2162. &close->cl_stateid,
  2163. CHECK_FH | OPEN_STATE | CLOSE_STATE,
  2164. &close->cl_stateowner, &stp, NULL)))
  2165. goto out;
  2166. /*
  2167. * Return success, but first update the stateid.
  2168. */
  2169. status = nfs_ok;
  2170. update_stateid(&stp->st_stateid);
  2171. memcpy(&close->cl_stateid, &stp->st_stateid, sizeof(stateid_t));
  2172. /* release_state_owner() calls nfsd_close() if needed */
  2173. release_state_owner(stp, OPEN_STATE);
  2174. out:
  2175. if (close->cl_stateowner)
  2176. nfs4_get_stateowner(close->cl_stateowner);
  2177. nfs4_unlock_state();
  2178. return status;
  2179. }
  2180. int
  2181. nfsd4_delegreturn(struct svc_rqst *rqstp, struct svc_fh *current_fh, struct nfsd4_delegreturn *dr)
  2182. {
  2183. int status;
  2184. if ((status = fh_verify(rqstp, current_fh, S_IFREG, 0)))
  2185. goto out;
  2186. nfs4_lock_state();
  2187. status = nfs4_preprocess_stateid_op(current_fh, &dr->dr_stateid, DELEG_RET, NULL);
  2188. nfs4_unlock_state();
  2189. out:
  2190. return status;
  2191. }
  2192. /*
  2193. * Lock owner state (byte-range locks)
  2194. */
  2195. #define LOFF_OVERFLOW(start, len) ((u64)(len) > ~(u64)(start))
  2196. #define LOCK_HASH_BITS 8
  2197. #define LOCK_HASH_SIZE (1 << LOCK_HASH_BITS)
  2198. #define LOCK_HASH_MASK (LOCK_HASH_SIZE - 1)
  2199. #define lockownerid_hashval(id) \
  2200. ((id) & LOCK_HASH_MASK)
  2201. static inline unsigned int
  2202. lock_ownerstr_hashval(struct inode *inode, u32 cl_id,
  2203. struct xdr_netobj *ownername)
  2204. {
  2205. return (file_hashval(inode) + cl_id
  2206. + opaque_hashval(ownername->data, ownername->len))
  2207. & LOCK_HASH_MASK;
  2208. }
  2209. static struct list_head lock_ownerid_hashtbl[LOCK_HASH_SIZE];
  2210. static struct list_head lock_ownerstr_hashtbl[LOCK_HASH_SIZE];
  2211. static struct list_head lockstateid_hashtbl[STATEID_HASH_SIZE];
  2212. static struct nfs4_stateid *
  2213. find_stateid(stateid_t *stid, int flags)
  2214. {
  2215. struct nfs4_stateid *local = NULL;
  2216. u32 st_id = stid->si_stateownerid;
  2217. u32 f_id = stid->si_fileid;
  2218. unsigned int hashval;
  2219. dprintk("NFSD: find_stateid flags 0x%x\n",flags);
  2220. if ((flags & LOCK_STATE) || (flags & RD_STATE) || (flags & WR_STATE)) {
  2221. hashval = stateid_hashval(st_id, f_id);
  2222. list_for_each_entry(local, &lockstateid_hashtbl[hashval], st_hash) {
  2223. if ((local->st_stateid.si_stateownerid == st_id) &&
  2224. (local->st_stateid.si_fileid == f_id))
  2225. return local;
  2226. }
  2227. }
  2228. if ((flags & OPEN_STATE) || (flags & RD_STATE) || (flags & WR_STATE)) {
  2229. hashval = stateid_hashval(st_id, f_id);
  2230. list_for_each_entry(local, &stateid_hashtbl[hashval], st_hash) {
  2231. if ((local->st_stateid.si_stateownerid == st_id) &&
  2232. (local->st_stateid.si_fileid == f_id))
  2233. return local;
  2234. }
  2235. } else
  2236. printk("NFSD: find_stateid: ERROR: no state flag\n");
  2237. return NULL;
  2238. }
  2239. static struct nfs4_delegation *
  2240. find_delegation_stateid(struct inode *ino, stateid_t *stid)
  2241. {
  2242. struct nfs4_file *fp;
  2243. struct nfs4_delegation *dl;
  2244. dprintk("NFSD:find_delegation_stateid stateid=(%08x/%08x/%08x/%08x)\n",
  2245. stid->si_boot, stid->si_stateownerid,
  2246. stid->si_fileid, stid->si_generation);
  2247. fp = find_file(ino);
  2248. if (!fp)
  2249. return NULL;
  2250. dl = find_delegation_file(fp, stid);
  2251. put_nfs4_file(fp);
  2252. return dl;
  2253. }
  2254. /*
  2255. * TODO: Linux file offsets are _signed_ 64-bit quantities, which means that
  2256. * we can't properly handle lock requests that go beyond the (2^63 - 1)-th
  2257. * byte, because of sign extension problems. Since NFSv4 calls for 64-bit
  2258. * locking, this prevents us from being completely protocol-compliant. The
  2259. * real solution to this problem is to start using unsigned file offsets in
  2260. * the VFS, but this is a very deep change!
  2261. */
  2262. static inline void
  2263. nfs4_transform_lock_offset(struct file_lock *lock)
  2264. {
  2265. if (lock->fl_start < 0)
  2266. lock->fl_start = OFFSET_MAX;
  2267. if (lock->fl_end < 0)
  2268. lock->fl_end = OFFSET_MAX;
  2269. }
  2270. static int
  2271. nfs4_verify_lock_stateowner(struct nfs4_stateowner *sop, unsigned int hashval)
  2272. {
  2273. struct nfs4_stateowner *local = NULL;
  2274. int status = 0;
  2275. if (hashval >= LOCK_HASH_SIZE)
  2276. goto out;
  2277. list_for_each_entry(local, &lock_ownerid_hashtbl[hashval], so_idhash) {
  2278. if (local == sop) {
  2279. status = 1;
  2280. goto out;
  2281. }
  2282. }
  2283. out:
  2284. return status;
  2285. }
  2286. static inline void
  2287. nfs4_set_lock_denied(struct file_lock *fl, struct nfsd4_lock_denied *deny)
  2288. {
  2289. struct nfs4_stateowner *sop = (struct nfs4_stateowner *) fl->fl_owner;
  2290. unsigned int hval = lockownerid_hashval(sop->so_id);
  2291. deny->ld_sop = NULL;
  2292. if (nfs4_verify_lock_stateowner(sop, hval)) {
  2293. kref_get(&sop->so_ref);
  2294. deny->ld_sop = sop;
  2295. deny->ld_clientid = sop->so_client->cl_clientid;
  2296. }
  2297. deny->ld_start = fl->fl_start;
  2298. deny->ld_length = ~(u64)0;
  2299. if (fl->fl_end != ~(u64)0)
  2300. deny->ld_length = fl->fl_end - fl->fl_start + 1;
  2301. deny->ld_type = NFS4_READ_LT;
  2302. if (fl->fl_type != F_RDLCK)
  2303. deny->ld_type = NFS4_WRITE_LT;
  2304. }
  2305. static struct nfs4_stateowner *
  2306. find_lockstateowner_str(struct inode *inode, clientid_t *clid,
  2307. struct xdr_netobj *owner)
  2308. {
  2309. unsigned int hashval = lock_ownerstr_hashval(inode, clid->cl_id, owner);
  2310. struct nfs4_stateowner *op;
  2311. list_for_each_entry(op, &lock_ownerstr_hashtbl[hashval], so_strhash) {
  2312. if (cmp_owner_str(op, owner, clid))
  2313. return op;
  2314. }
  2315. return NULL;
  2316. }
  2317. /*
  2318. * Alloc a lock owner structure.
  2319. * Called in nfsd4_lock - therefore, OPEN and OPEN_CONFIRM (if needed) has
  2320. * occured.
  2321. *
  2322. * strhashval = lock_ownerstr_hashval
  2323. */
  2324. static struct nfs4_stateowner *
  2325. alloc_init_lock_stateowner(unsigned int strhashval, struct nfs4_client *clp, struct nfs4_stateid *open_stp, struct nfsd4_lock *lock) {
  2326. struct nfs4_stateowner *sop;
  2327. struct nfs4_replay *rp;
  2328. unsigned int idhashval;
  2329. if (!(sop = alloc_stateowner(&lock->lk_new_owner)))
  2330. return NULL;
  2331. idhashval = lockownerid_hashval(current_ownerid);
  2332. INIT_LIST_HEAD(&sop->so_idhash);
  2333. INIT_LIST_HEAD(&sop->so_strhash);
  2334. INIT_LIST_HEAD(&sop->so_perclient);
  2335. INIT_LIST_HEAD(&sop->so_stateids);
  2336. INIT_LIST_HEAD(&sop->so_perstateid);
  2337. INIT_LIST_HEAD(&sop->so_close_lru); /* not used */
  2338. sop->so_time = 0;
  2339. list_add(&sop->so_idhash, &lock_ownerid_hashtbl[idhashval]);
  2340. list_add(&sop->so_strhash, &lock_ownerstr_hashtbl[strhashval]);
  2341. list_add(&sop->so_perstateid, &open_stp->st_lockowners);
  2342. sop->so_is_open_owner = 0;
  2343. sop->so_id = current_ownerid++;
  2344. sop->so_client = clp;
  2345. sop->so_seqid = lock->lk_new_lock_seqid;
  2346. sop->so_confirmed = 1;
  2347. rp = &sop->so_replay;
  2348. rp->rp_status = NFSERR_SERVERFAULT;
  2349. rp->rp_buflen = 0;
  2350. rp->rp_buf = rp->rp_ibuf;
  2351. return sop;
  2352. }
  2353. static struct nfs4_stateid *
  2354. alloc_init_lock_stateid(struct nfs4_stateowner *sop, struct nfs4_file *fp, struct nfs4_stateid *open_stp)
  2355. {
  2356. struct nfs4_stateid *stp;
  2357. unsigned int hashval = stateid_hashval(sop->so_id, fp->fi_id);
  2358. stp = nfs4_alloc_stateid();
  2359. if (stp == NULL)
  2360. goto out;
  2361. INIT_LIST_HEAD(&stp->st_hash);
  2362. INIT_LIST_HEAD(&stp->st_perfile);
  2363. INIT_LIST_HEAD(&stp->st_perstateowner);
  2364. INIT_LIST_HEAD(&stp->st_lockowners); /* not used */
  2365. list_add(&stp->st_hash, &lockstateid_hashtbl[hashval]);
  2366. list_add(&stp->st_perfile, &fp->fi_stateids);
  2367. list_add(&stp->st_perstateowner, &sop->so_stateids);
  2368. stp->st_stateowner = sop;
  2369. get_nfs4_file(fp);
  2370. stp->st_file = fp;
  2371. stp->st_stateid.si_boot = boot_time;
  2372. stp->st_stateid.si_stateownerid = sop->so_id;
  2373. stp->st_stateid.si_fileid = fp->fi_id;
  2374. stp->st_stateid.si_generation = 0;
  2375. stp->st_vfs_file = open_stp->st_vfs_file; /* FIXME refcount?? */
  2376. stp->st_access_bmap = open_stp->st_access_bmap;
  2377. stp->st_deny_bmap = open_stp->st_deny_bmap;
  2378. out:
  2379. return stp;
  2380. }
  2381. static int
  2382. check_lock_length(u64 offset, u64 length)
  2383. {
  2384. return ((length == 0) || ((length != ~(u64)0) &&
  2385. LOFF_OVERFLOW(offset, length)));
  2386. }
  2387. /*
  2388. * LOCK operation
  2389. */
  2390. int
  2391. nfsd4_lock(struct svc_rqst *rqstp, struct svc_fh *current_fh, struct nfsd4_lock *lock)
  2392. {
  2393. struct nfs4_stateowner *open_sop = NULL;
  2394. struct nfs4_stateid *lock_stp;
  2395. struct file *filp;
  2396. struct file_lock file_lock;
  2397. struct file_lock *conflock;
  2398. int status = 0;
  2399. unsigned int strhashval;
  2400. dprintk("NFSD: nfsd4_lock: start=%Ld length=%Ld\n",
  2401. (long long) lock->lk_offset,
  2402. (long long) lock->lk_length);
  2403. if (check_lock_length(lock->lk_offset, lock->lk_length))
  2404. return nfserr_inval;
  2405. nfs4_lock_state();
  2406. if (lock->lk_is_new) {
  2407. /*
  2408. * Client indicates that this is a new lockowner.
  2409. * Use open owner and open stateid to create lock owner and
  2410. * lock stateid.
  2411. */
  2412. struct nfs4_stateid *open_stp = NULL;
  2413. struct nfs4_file *fp;
  2414. status = nfserr_stale_clientid;
  2415. if (STALE_CLIENTID(&lock->lk_new_clientid)) {
  2416. printk("NFSD: nfsd4_lock: clientid is stale!\n");
  2417. goto out;
  2418. }
  2419. /* validate and update open stateid and open seqid */
  2420. status = nfs4_preprocess_seqid_op(current_fh,
  2421. lock->lk_new_open_seqid,
  2422. &lock->lk_new_open_stateid,
  2423. CHECK_FH | OPEN_STATE,
  2424. &open_sop, &open_stp,
  2425. &lock->v.new.clientid);
  2426. if (status)
  2427. goto out;
  2428. /* create lockowner and lock stateid */
  2429. fp = open_stp->st_file;
  2430. strhashval = lock_ownerstr_hashval(fp->fi_inode,
  2431. open_sop->so_client->cl_clientid.cl_id,
  2432. &lock->v.new.owner);
  2433. /* XXX: Do we need to check for duplicate stateowners on
  2434. * the same file, or should they just be allowed (and
  2435. * create new stateids)? */
  2436. status = nfserr_resource;
  2437. if (!(lock->lk_stateowner = alloc_init_lock_stateowner(strhashval, open_sop->so_client, open_stp, lock)))
  2438. goto out;
  2439. if ((lock_stp = alloc_init_lock_stateid(lock->lk_stateowner,
  2440. fp, open_stp)) == NULL) {
  2441. release_stateowner(lock->lk_stateowner);
  2442. lock->lk_stateowner = NULL;
  2443. goto out;
  2444. }
  2445. /* bump the open seqid used to create the lock */
  2446. open_sop->so_seqid++;
  2447. } else {
  2448. /* lock (lock owner + lock stateid) already exists */
  2449. status = nfs4_preprocess_seqid_op(current_fh,
  2450. lock->lk_old_lock_seqid,
  2451. &lock->lk_old_lock_stateid,
  2452. CHECK_FH | LOCK_STATE,
  2453. &lock->lk_stateowner, &lock_stp, NULL);
  2454. if (status)
  2455. goto out;
  2456. }
  2457. /* lock->lk_stateowner and lock_stp have been created or found */
  2458. filp = lock_stp->st_vfs_file;
  2459. if ((status = fh_verify(rqstp, current_fh, S_IFREG, MAY_LOCK))) {
  2460. printk("NFSD: nfsd4_lock: permission denied!\n");
  2461. goto out;
  2462. }
  2463. status = nfserr_grace;
  2464. if (nfs4_in_grace() && !lock->lk_reclaim)
  2465. goto out;
  2466. status = nfserr_no_grace;
  2467. if (!nfs4_in_grace() && lock->lk_reclaim)
  2468. goto out;
  2469. locks_init_lock(&file_lock);
  2470. switch (lock->lk_type) {
  2471. case NFS4_READ_LT:
  2472. case NFS4_READW_LT:
  2473. file_lock.fl_type = F_RDLCK;
  2474. break;
  2475. case NFS4_WRITE_LT:
  2476. case NFS4_WRITEW_LT:
  2477. file_lock.fl_type = F_WRLCK;
  2478. break;
  2479. default:
  2480. status = nfserr_inval;
  2481. goto out;
  2482. }
  2483. file_lock.fl_owner = (fl_owner_t) lock->lk_stateowner;
  2484. file_lock.fl_pid = current->tgid;
  2485. file_lock.fl_file = filp;
  2486. file_lock.fl_flags = FL_POSIX;
  2487. file_lock.fl_start = lock->lk_offset;
  2488. if ((lock->lk_length == ~(u64)0) ||
  2489. LOFF_OVERFLOW(lock->lk_offset, lock->lk_length))
  2490. file_lock.fl_end = ~(u64)0;
  2491. else
  2492. file_lock.fl_end = lock->lk_offset + lock->lk_length - 1;
  2493. nfs4_transform_lock_offset(&file_lock);
  2494. /*
  2495. * Try to lock the file in the VFS.
  2496. * Note: locks.c uses the BKL to protect the inode's lock list.
  2497. */
  2498. status = posix_lock_file(filp, &file_lock);
  2499. if (file_lock.fl_ops && file_lock.fl_ops->fl_release_private)
  2500. file_lock.fl_ops->fl_release_private(&file_lock);
  2501. dprintk("NFSD: nfsd4_lock: posix_lock_file status %d\n",status);
  2502. switch (-status) {
  2503. case 0: /* success! */
  2504. update_stateid(&lock_stp->st_stateid);
  2505. memcpy(&lock->lk_resp_stateid, &lock_stp->st_stateid,
  2506. sizeof(stateid_t));
  2507. goto out;
  2508. case (EAGAIN):
  2509. goto conflicting_lock;
  2510. case (EDEADLK):
  2511. status = nfserr_deadlock;
  2512. default:
  2513. dprintk("NFSD: nfsd4_lock: posix_lock_file() failed! status %d\n",status);
  2514. goto out_destroy_new_stateid;
  2515. }
  2516. conflicting_lock:
  2517. dprintk("NFSD: nfsd4_lock: conflicting lock found!\n");
  2518. status = nfserr_denied;
  2519. /* XXX There is a race here. Future patch needed to provide
  2520. * an atomic posix_lock_and_test_file
  2521. */
  2522. if (!(conflock = posix_test_lock(filp, &file_lock))) {
  2523. status = nfserr_serverfault;
  2524. goto out;
  2525. }
  2526. nfs4_set_lock_denied(conflock, &lock->lk_denied);
  2527. out_destroy_new_stateid:
  2528. if (lock->lk_is_new) {
  2529. dprintk("NFSD: nfsd4_lock: destroy new stateid!\n");
  2530. /*
  2531. * An error encountered after instantiation of the new
  2532. * stateid has forced us to destroy it.
  2533. */
  2534. if (!seqid_mutating_err(status))
  2535. open_sop->so_seqid--;
  2536. release_state_owner(lock_stp, LOCK_STATE);
  2537. }
  2538. out:
  2539. if (lock->lk_stateowner)
  2540. nfs4_get_stateowner(lock->lk_stateowner);
  2541. nfs4_unlock_state();
  2542. return status;
  2543. }
  2544. /*
  2545. * LOCKT operation
  2546. */
  2547. int
  2548. nfsd4_lockt(struct svc_rqst *rqstp, struct svc_fh *current_fh, struct nfsd4_lockt *lockt)
  2549. {
  2550. struct inode *inode;
  2551. struct file file;
  2552. struct file_lock file_lock;
  2553. struct file_lock *conflicting_lock;
  2554. int status;
  2555. if (nfs4_in_grace())
  2556. return nfserr_grace;
  2557. if (check_lock_length(lockt->lt_offset, lockt->lt_length))
  2558. return nfserr_inval;
  2559. lockt->lt_stateowner = NULL;
  2560. nfs4_lock_state();
  2561. status = nfserr_stale_clientid;
  2562. if (STALE_CLIENTID(&lockt->lt_clientid)) {
  2563. printk("NFSD: nfsd4_lockt: clientid is stale!\n");
  2564. goto out;
  2565. }
  2566. if ((status = fh_verify(rqstp, current_fh, S_IFREG, 0))) {
  2567. printk("NFSD: nfsd4_lockt: fh_verify() failed!\n");
  2568. if (status == nfserr_symlink)
  2569. status = nfserr_inval;
  2570. goto out;
  2571. }
  2572. inode = current_fh->fh_dentry->d_inode;
  2573. locks_init_lock(&file_lock);
  2574. switch (lockt->lt_type) {
  2575. case NFS4_READ_LT:
  2576. case NFS4_READW_LT:
  2577. file_lock.fl_type = F_RDLCK;
  2578. break;
  2579. case NFS4_WRITE_LT:
  2580. case NFS4_WRITEW_LT:
  2581. file_lock.fl_type = F_WRLCK;
  2582. break;
  2583. default:
  2584. printk("NFSD: nfs4_lockt: bad lock type!\n");
  2585. status = nfserr_inval;
  2586. goto out;
  2587. }
  2588. lockt->lt_stateowner = find_lockstateowner_str(inode,
  2589. &lockt->lt_clientid, &lockt->lt_owner);
  2590. if (lockt->lt_stateowner)
  2591. file_lock.fl_owner = (fl_owner_t)lockt->lt_stateowner;
  2592. file_lock.fl_pid = current->tgid;
  2593. file_lock.fl_flags = FL_POSIX;
  2594. file_lock.fl_start = lockt->lt_offset;
  2595. if ((lockt->lt_length == ~(u64)0) || LOFF_OVERFLOW(lockt->lt_offset, lockt->lt_length))
  2596. file_lock.fl_end = ~(u64)0;
  2597. else
  2598. file_lock.fl_end = lockt->lt_offset + lockt->lt_length - 1;
  2599. nfs4_transform_lock_offset(&file_lock);
  2600. /* posix_test_lock uses the struct file _only_ to resolve the inode.
  2601. * since LOCKT doesn't require an OPEN, and therefore a struct
  2602. * file may not exist, pass posix_test_lock a struct file with
  2603. * only the dentry:inode set.
  2604. */
  2605. memset(&file, 0, sizeof (struct file));
  2606. file.f_dentry = current_fh->fh_dentry;
  2607. status = nfs_ok;
  2608. conflicting_lock = posix_test_lock(&file, &file_lock);
  2609. if (conflicting_lock) {
  2610. status = nfserr_denied;
  2611. nfs4_set_lock_denied(conflicting_lock, &lockt->lt_denied);
  2612. }
  2613. out:
  2614. nfs4_unlock_state();
  2615. return status;
  2616. }
  2617. int
  2618. nfsd4_locku(struct svc_rqst *rqstp, struct svc_fh *current_fh, struct nfsd4_locku *locku)
  2619. {
  2620. struct nfs4_stateid *stp;
  2621. struct file *filp = NULL;
  2622. struct file_lock file_lock;
  2623. int status;
  2624. dprintk("NFSD: nfsd4_locku: start=%Ld length=%Ld\n",
  2625. (long long) locku->lu_offset,
  2626. (long long) locku->lu_length);
  2627. if (check_lock_length(locku->lu_offset, locku->lu_length))
  2628. return nfserr_inval;
  2629. nfs4_lock_state();
  2630. if ((status = nfs4_preprocess_seqid_op(current_fh,
  2631. locku->lu_seqid,
  2632. &locku->lu_stateid,
  2633. CHECK_FH | LOCK_STATE,
  2634. &locku->lu_stateowner, &stp, NULL)))
  2635. goto out;
  2636. filp = stp->st_vfs_file;
  2637. BUG_ON(!filp);
  2638. locks_init_lock(&file_lock);
  2639. file_lock.fl_type = F_UNLCK;
  2640. file_lock.fl_owner = (fl_owner_t) locku->lu_stateowner;
  2641. file_lock.fl_pid = current->tgid;
  2642. file_lock.fl_file = filp;
  2643. file_lock.fl_flags = FL_POSIX;
  2644. file_lock.fl_start = locku->lu_offset;
  2645. if ((locku->lu_length == ~(u64)0) || LOFF_OVERFLOW(locku->lu_offset, locku->lu_length))
  2646. file_lock.fl_end = ~(u64)0;
  2647. else
  2648. file_lock.fl_end = locku->lu_offset + locku->lu_length - 1;
  2649. nfs4_transform_lock_offset(&file_lock);
  2650. /*
  2651. * Try to unlock the file in the VFS.
  2652. */
  2653. status = posix_lock_file(filp, &file_lock);
  2654. if (file_lock.fl_ops && file_lock.fl_ops->fl_release_private)
  2655. file_lock.fl_ops->fl_release_private(&file_lock);
  2656. if (status) {
  2657. printk("NFSD: nfs4_locku: posix_lock_file failed!\n");
  2658. goto out_nfserr;
  2659. }
  2660. /*
  2661. * OK, unlock succeeded; the only thing left to do is update the stateid.
  2662. */
  2663. update_stateid(&stp->st_stateid);
  2664. memcpy(&locku->lu_stateid, &stp->st_stateid, sizeof(stateid_t));
  2665. out:
  2666. if (locku->lu_stateowner)
  2667. nfs4_get_stateowner(locku->lu_stateowner);
  2668. nfs4_unlock_state();
  2669. return status;
  2670. out_nfserr:
  2671. status = nfserrno(status);
  2672. goto out;
  2673. }
  2674. /*
  2675. * returns
  2676. * 1: locks held by lockowner
  2677. * 0: no locks held by lockowner
  2678. */
  2679. static int
  2680. check_for_locks(struct file *filp, struct nfs4_stateowner *lowner)
  2681. {
  2682. struct file_lock **flpp;
  2683. struct inode *inode = filp->f_dentry->d_inode;
  2684. int status = 0;
  2685. lock_kernel();
  2686. for (flpp = &inode->i_flock; *flpp != NULL; flpp = &(*flpp)->fl_next) {
  2687. if ((*flpp)->fl_owner == (fl_owner_t)lowner)
  2688. status = 1;
  2689. goto out;
  2690. }
  2691. out:
  2692. unlock_kernel();
  2693. return status;
  2694. }
  2695. int
  2696. nfsd4_release_lockowner(struct svc_rqst *rqstp, struct nfsd4_release_lockowner *rlockowner)
  2697. {
  2698. clientid_t *clid = &rlockowner->rl_clientid;
  2699. struct nfs4_stateowner *sop;
  2700. struct nfs4_stateid *stp;
  2701. struct xdr_netobj *owner = &rlockowner->rl_owner;
  2702. struct list_head matches;
  2703. int i;
  2704. int status;
  2705. dprintk("nfsd4_release_lockowner clientid: (%08x/%08x):\n",
  2706. clid->cl_boot, clid->cl_id);
  2707. /* XXX check for lease expiration */
  2708. status = nfserr_stale_clientid;
  2709. if (STALE_CLIENTID(clid)) {
  2710. printk("NFSD: nfsd4_release_lockowner: clientid is stale!\n");
  2711. return status;
  2712. }
  2713. nfs4_lock_state();
  2714. status = nfserr_locks_held;
  2715. /* XXX: we're doing a linear search through all the lockowners.
  2716. * Yipes! For now we'll just hope clients aren't really using
  2717. * release_lockowner much, but eventually we have to fix these
  2718. * data structures. */
  2719. INIT_LIST_HEAD(&matches);
  2720. for (i = 0; i < LOCK_HASH_SIZE; i++) {
  2721. list_for_each_entry(sop, &lock_ownerid_hashtbl[i], so_idhash) {
  2722. if (!cmp_owner_str(sop, owner, clid))
  2723. continue;
  2724. list_for_each_entry(stp, &sop->so_stateids,
  2725. st_perstateowner) {
  2726. if (check_for_locks(stp->st_vfs_file, sop))
  2727. goto out;
  2728. /* Note: so_perclient unused for lockowners,
  2729. * so it's OK to fool with here. */
  2730. list_add(&sop->so_perclient, &matches);
  2731. }
  2732. }
  2733. }
  2734. /* Clients probably won't expect us to return with some (but not all)
  2735. * of the lockowner state released; so don't release any until all
  2736. * have been checked. */
  2737. status = nfs_ok;
  2738. while (!list_empty(&matches)) {
  2739. sop = list_entry(matches.next, struct nfs4_stateowner,
  2740. so_perclient);
  2741. /* unhash_stateowner deletes so_perclient only
  2742. * for openowners. */
  2743. list_del(&sop->so_perclient);
  2744. release_stateowner(sop);
  2745. }
  2746. out:
  2747. nfs4_unlock_state();
  2748. return status;
  2749. }
  2750. static inline struct nfs4_client_reclaim *
  2751. alloc_reclaim(void)
  2752. {
  2753. return kmalloc(sizeof(struct nfs4_client_reclaim), GFP_KERNEL);
  2754. }
  2755. int
  2756. nfs4_has_reclaimed_state(const char *name)
  2757. {
  2758. unsigned int strhashval = clientstr_hashval(name);
  2759. struct nfs4_client *clp;
  2760. clp = find_confirmed_client_by_str(name, strhashval);
  2761. return clp ? 1 : 0;
  2762. }
  2763. /*
  2764. * failure => all reset bets are off, nfserr_no_grace...
  2765. */
  2766. int
  2767. nfs4_client_to_reclaim(const char *name)
  2768. {
  2769. unsigned int strhashval;
  2770. struct nfs4_client_reclaim *crp = NULL;
  2771. dprintk("NFSD nfs4_client_to_reclaim NAME: %.*s\n", HEXDIR_LEN, name);
  2772. crp = alloc_reclaim();
  2773. if (!crp)
  2774. return 0;
  2775. strhashval = clientstr_hashval(name);
  2776. INIT_LIST_HEAD(&crp->cr_strhash);
  2777. list_add(&crp->cr_strhash, &reclaim_str_hashtbl[strhashval]);
  2778. memcpy(crp->cr_recdir, name, HEXDIR_LEN);
  2779. reclaim_str_hashtbl_size++;
  2780. return 1;
  2781. }
  2782. static void
  2783. nfs4_release_reclaim(void)
  2784. {
  2785. struct nfs4_client_reclaim *crp = NULL;
  2786. int i;
  2787. for (i = 0; i < CLIENT_HASH_SIZE; i++) {
  2788. while (!list_empty(&reclaim_str_hashtbl[i])) {
  2789. crp = list_entry(reclaim_str_hashtbl[i].next,
  2790. struct nfs4_client_reclaim, cr_strhash);
  2791. list_del(&crp->cr_strhash);
  2792. kfree(crp);
  2793. reclaim_str_hashtbl_size--;
  2794. }
  2795. }
  2796. BUG_ON(reclaim_str_hashtbl_size);
  2797. }
  2798. /*
  2799. * called from OPEN, CLAIM_PREVIOUS with a new clientid. */
  2800. static struct nfs4_client_reclaim *
  2801. nfs4_find_reclaim_client(clientid_t *clid)
  2802. {
  2803. unsigned int strhashval;
  2804. struct nfs4_client *clp;
  2805. struct nfs4_client_reclaim *crp = NULL;
  2806. /* find clientid in conf_id_hashtbl */
  2807. clp = find_confirmed_client(clid);
  2808. if (clp == NULL)
  2809. return NULL;
  2810. dprintk("NFSD: nfs4_find_reclaim_client for %.*s with recdir %s\n",
  2811. clp->cl_name.len, clp->cl_name.data,
  2812. clp->cl_recdir);
  2813. /* find clp->cl_name in reclaim_str_hashtbl */
  2814. strhashval = clientstr_hashval(clp->cl_recdir);
  2815. list_for_each_entry(crp, &reclaim_str_hashtbl[strhashval], cr_strhash) {
  2816. if (same_name(crp->cr_recdir, clp->cl_recdir)) {
  2817. return crp;
  2818. }
  2819. }
  2820. return NULL;
  2821. }
  2822. /*
  2823. * Called from OPEN. Look for clientid in reclaim list.
  2824. */
  2825. int
  2826. nfs4_check_open_reclaim(clientid_t *clid)
  2827. {
  2828. return nfs4_find_reclaim_client(clid) ? nfs_ok : nfserr_reclaim_bad;
  2829. }
  2830. /* initialization to perform at module load time: */
  2831. void
  2832. nfs4_state_init(void)
  2833. {
  2834. int i;
  2835. for (i = 0; i < CLIENT_HASH_SIZE; i++) {
  2836. INIT_LIST_HEAD(&conf_id_hashtbl[i]);
  2837. INIT_LIST_HEAD(&conf_str_hashtbl[i]);
  2838. INIT_LIST_HEAD(&unconf_str_hashtbl[i]);
  2839. INIT_LIST_HEAD(&unconf_id_hashtbl[i]);
  2840. }
  2841. for (i = 0; i < FILE_HASH_SIZE; i++) {
  2842. INIT_LIST_HEAD(&file_hashtbl[i]);
  2843. }
  2844. for (i = 0; i < OWNER_HASH_SIZE; i++) {
  2845. INIT_LIST_HEAD(&ownerstr_hashtbl[i]);
  2846. INIT_LIST_HEAD(&ownerid_hashtbl[i]);
  2847. }
  2848. for (i = 0; i < STATEID_HASH_SIZE; i++) {
  2849. INIT_LIST_HEAD(&stateid_hashtbl[i]);
  2850. INIT_LIST_HEAD(&lockstateid_hashtbl[i]);
  2851. }
  2852. for (i = 0; i < LOCK_HASH_SIZE; i++) {
  2853. INIT_LIST_HEAD(&lock_ownerid_hashtbl[i]);
  2854. INIT_LIST_HEAD(&lock_ownerstr_hashtbl[i]);
  2855. }
  2856. memset(&onestateid, ~0, sizeof(stateid_t));
  2857. INIT_LIST_HEAD(&close_lru);
  2858. INIT_LIST_HEAD(&client_lru);
  2859. INIT_LIST_HEAD(&del_recall_lru);
  2860. for (i = 0; i < CLIENT_HASH_SIZE; i++)
  2861. INIT_LIST_HEAD(&reclaim_str_hashtbl[i]);
  2862. reclaim_str_hashtbl_size = 0;
  2863. }
  2864. static void
  2865. nfsd4_load_reboot_recovery_data(void)
  2866. {
  2867. int status;
  2868. nfs4_lock_state();
  2869. nfsd4_init_recdir(user_recovery_dirname);
  2870. status = nfsd4_recdir_load();
  2871. nfs4_unlock_state();
  2872. if (status)
  2873. printk("NFSD: Failure reading reboot recovery data\n");
  2874. }
  2875. /* initialization to perform when the nfsd service is started: */
  2876. static void
  2877. __nfs4_state_start(void)
  2878. {
  2879. time_t grace_time;
  2880. boot_time = get_seconds();
  2881. grace_time = max(user_lease_time, lease_time);
  2882. lease_time = user_lease_time;
  2883. in_grace = 1;
  2884. printk("NFSD: starting %ld-second grace period\n", grace_time);
  2885. laundry_wq = create_singlethread_workqueue("nfsd4");
  2886. queue_delayed_work(laundry_wq, &laundromat_work, grace_time*HZ);
  2887. }
  2888. int
  2889. nfs4_state_start(void)
  2890. {
  2891. int status;
  2892. if (nfs4_init)
  2893. return 0;
  2894. status = nfsd4_init_slabs();
  2895. if (status)
  2896. return status;
  2897. nfsd4_load_reboot_recovery_data();
  2898. __nfs4_state_start();
  2899. nfs4_init = 1;
  2900. return 0;
  2901. }
  2902. int
  2903. nfs4_in_grace(void)
  2904. {
  2905. return in_grace;
  2906. }
  2907. time_t
  2908. nfs4_lease_time(void)
  2909. {
  2910. return lease_time;
  2911. }
  2912. static void
  2913. __nfs4_state_shutdown(void)
  2914. {
  2915. int i;
  2916. struct nfs4_client *clp = NULL;
  2917. struct nfs4_delegation *dp = NULL;
  2918. struct nfs4_stateowner *sop = NULL;
  2919. struct list_head *pos, *next, reaplist;
  2920. list_for_each_safe(pos, next, &close_lru) {
  2921. sop = list_entry(pos, struct nfs4_stateowner, so_close_lru);
  2922. list_del(&sop->so_close_lru);
  2923. nfs4_put_stateowner(sop);
  2924. }
  2925. for (i = 0; i < CLIENT_HASH_SIZE; i++) {
  2926. while (!list_empty(&conf_id_hashtbl[i])) {
  2927. clp = list_entry(conf_id_hashtbl[i].next, struct nfs4_client, cl_idhash);
  2928. expire_client(clp);
  2929. }
  2930. while (!list_empty(&unconf_str_hashtbl[i])) {
  2931. clp = list_entry(unconf_str_hashtbl[i].next, struct nfs4_client, cl_strhash);
  2932. expire_client(clp);
  2933. }
  2934. }
  2935. INIT_LIST_HEAD(&reaplist);
  2936. spin_lock(&recall_lock);
  2937. list_for_each_safe(pos, next, &del_recall_lru) {
  2938. dp = list_entry (pos, struct nfs4_delegation, dl_recall_lru);
  2939. list_move(&dp->dl_recall_lru, &reaplist);
  2940. }
  2941. spin_unlock(&recall_lock);
  2942. list_for_each_safe(pos, next, &reaplist) {
  2943. dp = list_entry (pos, struct nfs4_delegation, dl_recall_lru);
  2944. list_del_init(&dp->dl_recall_lru);
  2945. unhash_delegation(dp);
  2946. }
  2947. cancel_delayed_work(&laundromat_work);
  2948. flush_workqueue(laundry_wq);
  2949. destroy_workqueue(laundry_wq);
  2950. nfsd4_shutdown_recdir();
  2951. nfs4_init = 0;
  2952. }
  2953. void
  2954. nfs4_state_shutdown(void)
  2955. {
  2956. nfs4_lock_state();
  2957. nfs4_release_reclaim();
  2958. __nfs4_state_shutdown();
  2959. nfsd4_free_slabs();
  2960. nfs4_unlock_state();
  2961. }
  2962. static void
  2963. nfs4_set_recdir(char *recdir)
  2964. {
  2965. nfs4_lock_state();
  2966. strcpy(user_recovery_dirname, recdir);
  2967. nfs4_unlock_state();
  2968. }
  2969. /*
  2970. * Change the NFSv4 recovery directory to recdir.
  2971. */
  2972. int
  2973. nfs4_reset_recoverydir(char *recdir)
  2974. {
  2975. int status;
  2976. struct nameidata nd;
  2977. status = path_lookup(recdir, LOOKUP_FOLLOW, &nd);
  2978. if (status)
  2979. return status;
  2980. status = -ENOTDIR;
  2981. if (S_ISDIR(nd.dentry->d_inode->i_mode)) {
  2982. nfs4_set_recdir(recdir);
  2983. status = 0;
  2984. }
  2985. path_release(&nd);
  2986. return status;
  2987. }
  2988. /*
  2989. * Called when leasetime is changed.
  2990. *
  2991. * The only way the protocol gives us to handle on-the-fly lease changes is to
  2992. * simulate a reboot. Instead of doing that, we just wait till the next time
  2993. * we start to register any changes in lease time. If the administrator
  2994. * really wants to change the lease time *now*, they can go ahead and bring
  2995. * nfsd down and then back up again after changing the lease time.
  2996. */
  2997. void
  2998. nfs4_reset_lease(time_t leasetime)
  2999. {
  3000. lock_kernel();
  3001. user_lease_time = leasetime;
  3002. unlock_kernel();
  3003. }