inode.c 53 KB

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  1. /*
  2. * linux/fs/nfs/inode.c
  3. *
  4. * Copyright (C) 1992 Rick Sladkey
  5. *
  6. * nfs inode and superblock handling functions
  7. *
  8. * Modularised by Alan Cox <alan@lxorguk.ukuu.org.uk>, while hacking some
  9. * experimental NFS changes. Modularisation taken straight from SYS5 fs.
  10. *
  11. * Change to nfs_read_super() to permit NFS mounts to multi-homed hosts.
  12. * J.S.Peatfield@damtp.cam.ac.uk
  13. *
  14. */
  15. #include <linux/module.h>
  16. #include <linux/init.h>
  17. #include <linux/sched.h>
  18. #include <linux/time.h>
  19. #include <linux/kernel.h>
  20. #include <linux/mm.h>
  21. #include <linux/string.h>
  22. #include <linux/stat.h>
  23. #include <linux/errno.h>
  24. #include <linux/unistd.h>
  25. #include <linux/sunrpc/clnt.h>
  26. #include <linux/sunrpc/stats.h>
  27. #include <linux/sunrpc/metrics.h>
  28. #include <linux/nfs_fs.h>
  29. #include <linux/nfs_mount.h>
  30. #include <linux/nfs4_mount.h>
  31. #include <linux/lockd/bind.h>
  32. #include <linux/seq_file.h>
  33. #include <linux/mount.h>
  34. #include <linux/vfs.h>
  35. #include <linux/inet.h>
  36. #include <linux/nfs_xdr.h>
  37. #include <linux/slab.h>
  38. #include <linux/compat.h>
  39. #include <linux/freezer.h>
  40. #include <asm/uaccess.h>
  41. #include "nfs4_fs.h"
  42. #include "callback.h"
  43. #include "delegation.h"
  44. #include "iostat.h"
  45. #include "internal.h"
  46. #include "fscache.h"
  47. #include "pnfs.h"
  48. #include "nfs.h"
  49. #include "netns.h"
  50. #include "nfstrace.h"
  51. #define NFSDBG_FACILITY NFSDBG_VFS
  52. #define NFS_64_BIT_INODE_NUMBERS_ENABLED 1
  53. /* Default is to see 64-bit inode numbers */
  54. static bool enable_ino64 = NFS_64_BIT_INODE_NUMBERS_ENABLED;
  55. static void nfs_invalidate_inode(struct inode *);
  56. static int nfs_update_inode(struct inode *, struct nfs_fattr *);
  57. static struct kmem_cache * nfs_inode_cachep;
  58. static inline unsigned long
  59. nfs_fattr_to_ino_t(struct nfs_fattr *fattr)
  60. {
  61. return nfs_fileid_to_ino_t(fattr->fileid);
  62. }
  63. /**
  64. * nfs_wait_bit_killable - helper for functions that are sleeping on bit locks
  65. * @word: long word containing the bit lock
  66. */
  67. int nfs_wait_bit_killable(struct wait_bit_key *key)
  68. {
  69. if (fatal_signal_pending(current))
  70. return -ERESTARTSYS;
  71. freezable_schedule_unsafe();
  72. return 0;
  73. }
  74. EXPORT_SYMBOL_GPL(nfs_wait_bit_killable);
  75. /**
  76. * nfs_compat_user_ino64 - returns the user-visible inode number
  77. * @fileid: 64-bit fileid
  78. *
  79. * This function returns a 32-bit inode number if the boot parameter
  80. * nfs.enable_ino64 is zero.
  81. */
  82. u64 nfs_compat_user_ino64(u64 fileid)
  83. {
  84. #ifdef CONFIG_COMPAT
  85. compat_ulong_t ino;
  86. #else
  87. unsigned long ino;
  88. #endif
  89. if (enable_ino64)
  90. return fileid;
  91. ino = fileid;
  92. if (sizeof(ino) < sizeof(fileid))
  93. ino ^= fileid >> (sizeof(fileid)-sizeof(ino)) * 8;
  94. return ino;
  95. }
  96. int nfs_drop_inode(struct inode *inode)
  97. {
  98. return NFS_STALE(inode) || generic_drop_inode(inode);
  99. }
  100. EXPORT_SYMBOL_GPL(nfs_drop_inode);
  101. void nfs_clear_inode(struct inode *inode)
  102. {
  103. /*
  104. * The following should never happen...
  105. */
  106. WARN_ON_ONCE(nfs_have_writebacks(inode));
  107. WARN_ON_ONCE(!list_empty(&NFS_I(inode)->open_files));
  108. nfs_zap_acl_cache(inode);
  109. nfs_access_zap_cache(inode);
  110. nfs_fscache_clear_inode(inode);
  111. }
  112. EXPORT_SYMBOL_GPL(nfs_clear_inode);
  113. void nfs_evict_inode(struct inode *inode)
  114. {
  115. truncate_inode_pages_final(&inode->i_data);
  116. clear_inode(inode);
  117. nfs_clear_inode(inode);
  118. }
  119. /**
  120. * nfs_sync_mapping - helper to flush all mmapped dirty data to disk
  121. */
  122. int nfs_sync_mapping(struct address_space *mapping)
  123. {
  124. int ret = 0;
  125. if (mapping->nrpages != 0) {
  126. unmap_mapping_range(mapping, 0, 0, 0);
  127. ret = nfs_wb_all(mapping->host);
  128. }
  129. return ret;
  130. }
  131. static void nfs_set_cache_invalid(struct inode *inode, unsigned long flags)
  132. {
  133. struct nfs_inode *nfsi = NFS_I(inode);
  134. if (inode->i_mapping->nrpages == 0)
  135. flags &= ~NFS_INO_INVALID_DATA;
  136. nfsi->cache_validity |= flags;
  137. if (flags & NFS_INO_INVALID_DATA)
  138. nfs_fscache_invalidate(inode);
  139. }
  140. /*
  141. * Invalidate the local caches
  142. */
  143. static void nfs_zap_caches_locked(struct inode *inode)
  144. {
  145. struct nfs_inode *nfsi = NFS_I(inode);
  146. int mode = inode->i_mode;
  147. nfs_inc_stats(inode, NFSIOS_ATTRINVALIDATE);
  148. nfsi->attrtimeo = NFS_MINATTRTIMEO(inode);
  149. nfsi->attrtimeo_timestamp = jiffies;
  150. memset(NFS_I(inode)->cookieverf, 0, sizeof(NFS_I(inode)->cookieverf));
  151. if (S_ISREG(mode) || S_ISDIR(mode) || S_ISLNK(mode)) {
  152. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR
  153. | NFS_INO_INVALID_DATA
  154. | NFS_INO_INVALID_ACCESS
  155. | NFS_INO_INVALID_ACL
  156. | NFS_INO_REVAL_PAGECACHE);
  157. } else
  158. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR
  159. | NFS_INO_INVALID_ACCESS
  160. | NFS_INO_INVALID_ACL
  161. | NFS_INO_REVAL_PAGECACHE);
  162. nfs_zap_label_cache_locked(nfsi);
  163. }
  164. void nfs_zap_caches(struct inode *inode)
  165. {
  166. spin_lock(&inode->i_lock);
  167. nfs_zap_caches_locked(inode);
  168. spin_unlock(&inode->i_lock);
  169. }
  170. void nfs_zap_mapping(struct inode *inode, struct address_space *mapping)
  171. {
  172. if (mapping->nrpages != 0) {
  173. spin_lock(&inode->i_lock);
  174. nfs_set_cache_invalid(inode, NFS_INO_INVALID_DATA);
  175. spin_unlock(&inode->i_lock);
  176. }
  177. }
  178. void nfs_zap_acl_cache(struct inode *inode)
  179. {
  180. void (*clear_acl_cache)(struct inode *);
  181. clear_acl_cache = NFS_PROTO(inode)->clear_acl_cache;
  182. if (clear_acl_cache != NULL)
  183. clear_acl_cache(inode);
  184. spin_lock(&inode->i_lock);
  185. NFS_I(inode)->cache_validity &= ~NFS_INO_INVALID_ACL;
  186. spin_unlock(&inode->i_lock);
  187. }
  188. EXPORT_SYMBOL_GPL(nfs_zap_acl_cache);
  189. void nfs_invalidate_atime(struct inode *inode)
  190. {
  191. spin_lock(&inode->i_lock);
  192. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATIME);
  193. spin_unlock(&inode->i_lock);
  194. }
  195. EXPORT_SYMBOL_GPL(nfs_invalidate_atime);
  196. /*
  197. * Invalidate, but do not unhash, the inode.
  198. * NB: must be called with inode->i_lock held!
  199. */
  200. static void nfs_invalidate_inode(struct inode *inode)
  201. {
  202. set_bit(NFS_INO_STALE, &NFS_I(inode)->flags);
  203. nfs_zap_caches_locked(inode);
  204. }
  205. struct nfs_find_desc {
  206. struct nfs_fh *fh;
  207. struct nfs_fattr *fattr;
  208. };
  209. /*
  210. * In NFSv3 we can have 64bit inode numbers. In order to support
  211. * this, and re-exported directories (also seen in NFSv2)
  212. * we are forced to allow 2 different inodes to have the same
  213. * i_ino.
  214. */
  215. static int
  216. nfs_find_actor(struct inode *inode, void *opaque)
  217. {
  218. struct nfs_find_desc *desc = (struct nfs_find_desc *)opaque;
  219. struct nfs_fh *fh = desc->fh;
  220. struct nfs_fattr *fattr = desc->fattr;
  221. if (NFS_FILEID(inode) != fattr->fileid)
  222. return 0;
  223. if ((S_IFMT & inode->i_mode) != (S_IFMT & fattr->mode))
  224. return 0;
  225. if (nfs_compare_fh(NFS_FH(inode), fh))
  226. return 0;
  227. if (is_bad_inode(inode) || NFS_STALE(inode))
  228. return 0;
  229. return 1;
  230. }
  231. static int
  232. nfs_init_locked(struct inode *inode, void *opaque)
  233. {
  234. struct nfs_find_desc *desc = (struct nfs_find_desc *)opaque;
  235. struct nfs_fattr *fattr = desc->fattr;
  236. set_nfs_fileid(inode, fattr->fileid);
  237. nfs_copy_fh(NFS_FH(inode), desc->fh);
  238. return 0;
  239. }
  240. #ifdef CONFIG_NFS_V4_SECURITY_LABEL
  241. static void nfs_clear_label_invalid(struct inode *inode)
  242. {
  243. spin_lock(&inode->i_lock);
  244. NFS_I(inode)->cache_validity &= ~NFS_INO_INVALID_LABEL;
  245. spin_unlock(&inode->i_lock);
  246. }
  247. void nfs_setsecurity(struct inode *inode, struct nfs_fattr *fattr,
  248. struct nfs4_label *label)
  249. {
  250. int error;
  251. if (label == NULL)
  252. return;
  253. if ((fattr->valid & NFS_ATTR_FATTR_V4_SECURITY_LABEL) && inode->i_security) {
  254. error = security_inode_notifysecctx(inode, label->label,
  255. label->len);
  256. if (error)
  257. printk(KERN_ERR "%s() %s %d "
  258. "security_inode_notifysecctx() %d\n",
  259. __func__,
  260. (char *)label->label,
  261. label->len, error);
  262. nfs_clear_label_invalid(inode);
  263. }
  264. }
  265. struct nfs4_label *nfs4_label_alloc(struct nfs_server *server, gfp_t flags)
  266. {
  267. struct nfs4_label *label = NULL;
  268. int minor_version = server->nfs_client->cl_minorversion;
  269. if (minor_version < 2)
  270. return label;
  271. if (!(server->caps & NFS_CAP_SECURITY_LABEL))
  272. return label;
  273. label = kzalloc(sizeof(struct nfs4_label), flags);
  274. if (label == NULL)
  275. return ERR_PTR(-ENOMEM);
  276. label->label = kzalloc(NFS4_MAXLABELLEN, flags);
  277. if (label->label == NULL) {
  278. kfree(label);
  279. return ERR_PTR(-ENOMEM);
  280. }
  281. label->len = NFS4_MAXLABELLEN;
  282. return label;
  283. }
  284. EXPORT_SYMBOL_GPL(nfs4_label_alloc);
  285. #else
  286. void nfs_setsecurity(struct inode *inode, struct nfs_fattr *fattr,
  287. struct nfs4_label *label)
  288. {
  289. }
  290. #endif
  291. EXPORT_SYMBOL_GPL(nfs_setsecurity);
  292. /*
  293. * This is our front-end to iget that looks up inodes by file handle
  294. * instead of inode number.
  295. */
  296. struct inode *
  297. nfs_fhget(struct super_block *sb, struct nfs_fh *fh, struct nfs_fattr *fattr, struct nfs4_label *label)
  298. {
  299. struct nfs_find_desc desc = {
  300. .fh = fh,
  301. .fattr = fattr
  302. };
  303. struct inode *inode = ERR_PTR(-ENOENT);
  304. unsigned long hash;
  305. nfs_attr_check_mountpoint(sb, fattr);
  306. if (((fattr->valid & NFS_ATTR_FATTR_FILEID) == 0) &&
  307. !nfs_attr_use_mounted_on_fileid(fattr))
  308. goto out_no_inode;
  309. if ((fattr->valid & NFS_ATTR_FATTR_TYPE) == 0)
  310. goto out_no_inode;
  311. hash = nfs_fattr_to_ino_t(fattr);
  312. inode = iget5_locked(sb, hash, nfs_find_actor, nfs_init_locked, &desc);
  313. if (inode == NULL) {
  314. inode = ERR_PTR(-ENOMEM);
  315. goto out_no_inode;
  316. }
  317. if (inode->i_state & I_NEW) {
  318. struct nfs_inode *nfsi = NFS_I(inode);
  319. unsigned long now = jiffies;
  320. /* We set i_ino for the few things that still rely on it,
  321. * such as stat(2) */
  322. inode->i_ino = hash;
  323. /* We can't support update_atime(), since the server will reset it */
  324. inode->i_flags |= S_NOATIME|S_NOCMTIME;
  325. inode->i_mode = fattr->mode;
  326. if ((fattr->valid & NFS_ATTR_FATTR_MODE) == 0
  327. && nfs_server_capable(inode, NFS_CAP_MODE))
  328. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR);
  329. /* Why so? Because we want revalidate for devices/FIFOs, and
  330. * that's precisely what we have in nfs_file_inode_operations.
  331. */
  332. inode->i_op = NFS_SB(sb)->nfs_client->rpc_ops->file_inode_ops;
  333. if (S_ISREG(inode->i_mode)) {
  334. inode->i_fop = NFS_SB(sb)->nfs_client->rpc_ops->file_ops;
  335. inode->i_data.a_ops = &nfs_file_aops;
  336. inode->i_data.backing_dev_info = &NFS_SB(sb)->backing_dev_info;
  337. } else if (S_ISDIR(inode->i_mode)) {
  338. inode->i_op = NFS_SB(sb)->nfs_client->rpc_ops->dir_inode_ops;
  339. inode->i_fop = &nfs_dir_operations;
  340. inode->i_data.a_ops = &nfs_dir_aops;
  341. /* Deal with crossing mountpoints */
  342. if (fattr->valid & NFS_ATTR_FATTR_MOUNTPOINT ||
  343. fattr->valid & NFS_ATTR_FATTR_V4_REFERRAL) {
  344. if (fattr->valid & NFS_ATTR_FATTR_V4_REFERRAL)
  345. inode->i_op = &nfs_referral_inode_operations;
  346. else
  347. inode->i_op = &nfs_mountpoint_inode_operations;
  348. inode->i_fop = NULL;
  349. inode->i_flags |= S_AUTOMOUNT;
  350. }
  351. } else if (S_ISLNK(inode->i_mode))
  352. inode->i_op = &nfs_symlink_inode_operations;
  353. else
  354. init_special_inode(inode, inode->i_mode, fattr->rdev);
  355. memset(&inode->i_atime, 0, sizeof(inode->i_atime));
  356. memset(&inode->i_mtime, 0, sizeof(inode->i_mtime));
  357. memset(&inode->i_ctime, 0, sizeof(inode->i_ctime));
  358. inode->i_version = 0;
  359. inode->i_size = 0;
  360. clear_nlink(inode);
  361. inode->i_uid = make_kuid(&init_user_ns, -2);
  362. inode->i_gid = make_kgid(&init_user_ns, -2);
  363. inode->i_blocks = 0;
  364. memset(nfsi->cookieverf, 0, sizeof(nfsi->cookieverf));
  365. nfsi->write_io = 0;
  366. nfsi->read_io = 0;
  367. nfsi->read_cache_jiffies = fattr->time_start;
  368. nfsi->attr_gencount = fattr->gencount;
  369. if (fattr->valid & NFS_ATTR_FATTR_ATIME)
  370. inode->i_atime = fattr->atime;
  371. else if (nfs_server_capable(inode, NFS_CAP_ATIME))
  372. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR);
  373. if (fattr->valid & NFS_ATTR_FATTR_MTIME)
  374. inode->i_mtime = fattr->mtime;
  375. else if (nfs_server_capable(inode, NFS_CAP_MTIME))
  376. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR);
  377. if (fattr->valid & NFS_ATTR_FATTR_CTIME)
  378. inode->i_ctime = fattr->ctime;
  379. else if (nfs_server_capable(inode, NFS_CAP_CTIME))
  380. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR);
  381. if (fattr->valid & NFS_ATTR_FATTR_CHANGE)
  382. inode->i_version = fattr->change_attr;
  383. else if (nfs_server_capable(inode, NFS_CAP_CHANGE_ATTR))
  384. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR);
  385. if (fattr->valid & NFS_ATTR_FATTR_SIZE)
  386. inode->i_size = nfs_size_to_loff_t(fattr->size);
  387. else
  388. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR
  389. | NFS_INO_REVAL_PAGECACHE);
  390. if (fattr->valid & NFS_ATTR_FATTR_NLINK)
  391. set_nlink(inode, fattr->nlink);
  392. else if (nfs_server_capable(inode, NFS_CAP_NLINK))
  393. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR);
  394. if (fattr->valid & NFS_ATTR_FATTR_OWNER)
  395. inode->i_uid = fattr->uid;
  396. else if (nfs_server_capable(inode, NFS_CAP_OWNER))
  397. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR);
  398. if (fattr->valid & NFS_ATTR_FATTR_GROUP)
  399. inode->i_gid = fattr->gid;
  400. else if (nfs_server_capable(inode, NFS_CAP_OWNER_GROUP))
  401. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ATTR);
  402. if (fattr->valid & NFS_ATTR_FATTR_BLOCKS_USED)
  403. inode->i_blocks = fattr->du.nfs2.blocks;
  404. if (fattr->valid & NFS_ATTR_FATTR_SPACE_USED) {
  405. /*
  406. * report the blocks in 512byte units
  407. */
  408. inode->i_blocks = nfs_calc_block_size(fattr->du.nfs3.used);
  409. }
  410. nfs_setsecurity(inode, fattr, label);
  411. nfsi->attrtimeo = NFS_MINATTRTIMEO(inode);
  412. nfsi->attrtimeo_timestamp = now;
  413. nfsi->access_cache = RB_ROOT;
  414. nfs_fscache_init_inode(inode);
  415. unlock_new_inode(inode);
  416. } else
  417. nfs_refresh_inode(inode, fattr);
  418. dprintk("NFS: nfs_fhget(%s/%Lu fh_crc=0x%08x ct=%d)\n",
  419. inode->i_sb->s_id,
  420. (unsigned long long)NFS_FILEID(inode),
  421. nfs_display_fhandle_hash(fh),
  422. atomic_read(&inode->i_count));
  423. out:
  424. return inode;
  425. out_no_inode:
  426. dprintk("nfs_fhget: iget failed with error %ld\n", PTR_ERR(inode));
  427. goto out;
  428. }
  429. EXPORT_SYMBOL_GPL(nfs_fhget);
  430. #define NFS_VALID_ATTRS (ATTR_MODE|ATTR_UID|ATTR_GID|ATTR_SIZE|ATTR_ATIME|ATTR_ATIME_SET|ATTR_MTIME|ATTR_MTIME_SET|ATTR_FILE|ATTR_OPEN)
  431. int
  432. nfs_setattr(struct dentry *dentry, struct iattr *attr)
  433. {
  434. struct inode *inode = dentry->d_inode;
  435. struct nfs_fattr *fattr;
  436. int error = -ENOMEM;
  437. nfs_inc_stats(inode, NFSIOS_VFSSETATTR);
  438. /* skip mode change if it's just for clearing setuid/setgid */
  439. if (attr->ia_valid & (ATTR_KILL_SUID | ATTR_KILL_SGID))
  440. attr->ia_valid &= ~ATTR_MODE;
  441. if (attr->ia_valid & ATTR_SIZE) {
  442. if (!S_ISREG(inode->i_mode) || attr->ia_size == i_size_read(inode))
  443. attr->ia_valid &= ~ATTR_SIZE;
  444. }
  445. /* Optimization: if the end result is no change, don't RPC */
  446. attr->ia_valid &= NFS_VALID_ATTRS;
  447. if ((attr->ia_valid & ~(ATTR_FILE|ATTR_OPEN)) == 0)
  448. return 0;
  449. trace_nfs_setattr_enter(inode);
  450. /* Write all dirty data */
  451. if (S_ISREG(inode->i_mode)) {
  452. nfs_inode_dio_wait(inode);
  453. nfs_wb_all(inode);
  454. }
  455. fattr = nfs_alloc_fattr();
  456. if (fattr == NULL)
  457. goto out;
  458. /*
  459. * Return any delegations if we're going to change ACLs
  460. */
  461. if ((attr->ia_valid & (ATTR_MODE|ATTR_UID|ATTR_GID)) != 0)
  462. NFS_PROTO(inode)->return_delegation(inode);
  463. error = NFS_PROTO(inode)->setattr(dentry, fattr, attr);
  464. if (error == 0)
  465. error = nfs_refresh_inode(inode, fattr);
  466. nfs_free_fattr(fattr);
  467. out:
  468. trace_nfs_setattr_exit(inode, error);
  469. return error;
  470. }
  471. EXPORT_SYMBOL_GPL(nfs_setattr);
  472. /**
  473. * nfs_vmtruncate - unmap mappings "freed" by truncate() syscall
  474. * @inode: inode of the file used
  475. * @offset: file offset to start truncating
  476. *
  477. * This is a copy of the common vmtruncate, but with the locking
  478. * corrected to take into account the fact that NFS requires
  479. * inode->i_size to be updated under the inode->i_lock.
  480. */
  481. static int nfs_vmtruncate(struct inode * inode, loff_t offset)
  482. {
  483. int err;
  484. err = inode_newsize_ok(inode, offset);
  485. if (err)
  486. goto out;
  487. spin_lock(&inode->i_lock);
  488. i_size_write(inode, offset);
  489. /* Optimisation */
  490. if (offset == 0)
  491. NFS_I(inode)->cache_validity &= ~NFS_INO_INVALID_DATA;
  492. spin_unlock(&inode->i_lock);
  493. truncate_pagecache(inode, offset);
  494. out:
  495. return err;
  496. }
  497. /**
  498. * nfs_setattr_update_inode - Update inode metadata after a setattr call.
  499. * @inode: pointer to struct inode
  500. * @attr: pointer to struct iattr
  501. *
  502. * Note: we do this in the *proc.c in order to ensure that
  503. * it works for things like exclusive creates too.
  504. */
  505. void nfs_setattr_update_inode(struct inode *inode, struct iattr *attr)
  506. {
  507. if ((attr->ia_valid & (ATTR_MODE|ATTR_UID|ATTR_GID)) != 0) {
  508. spin_lock(&inode->i_lock);
  509. if ((attr->ia_valid & ATTR_MODE) != 0) {
  510. int mode = attr->ia_mode & S_IALLUGO;
  511. mode |= inode->i_mode & ~S_IALLUGO;
  512. inode->i_mode = mode;
  513. }
  514. if ((attr->ia_valid & ATTR_UID) != 0)
  515. inode->i_uid = attr->ia_uid;
  516. if ((attr->ia_valid & ATTR_GID) != 0)
  517. inode->i_gid = attr->ia_gid;
  518. nfs_set_cache_invalid(inode, NFS_INO_INVALID_ACCESS
  519. | NFS_INO_INVALID_ACL);
  520. spin_unlock(&inode->i_lock);
  521. }
  522. if ((attr->ia_valid & ATTR_SIZE) != 0) {
  523. nfs_inc_stats(inode, NFSIOS_SETATTRTRUNC);
  524. nfs_vmtruncate(inode, attr->ia_size);
  525. }
  526. }
  527. EXPORT_SYMBOL_GPL(nfs_setattr_update_inode);
  528. static void nfs_request_parent_use_readdirplus(struct dentry *dentry)
  529. {
  530. struct dentry *parent;
  531. parent = dget_parent(dentry);
  532. nfs_force_use_readdirplus(parent->d_inode);
  533. dput(parent);
  534. }
  535. static bool nfs_need_revalidate_inode(struct inode *inode)
  536. {
  537. if (NFS_I(inode)->cache_validity &
  538. (NFS_INO_INVALID_ATTR|NFS_INO_INVALID_LABEL))
  539. return true;
  540. if (nfs_attribute_cache_expired(inode))
  541. return true;
  542. return false;
  543. }
  544. int nfs_getattr(struct vfsmount *mnt, struct dentry *dentry, struct kstat *stat)
  545. {
  546. struct inode *inode = dentry->d_inode;
  547. int need_atime = NFS_I(inode)->cache_validity & NFS_INO_INVALID_ATIME;
  548. int err;
  549. trace_nfs_getattr_enter(inode);
  550. /* Flush out writes to the server in order to update c/mtime. */
  551. if (S_ISREG(inode->i_mode)) {
  552. nfs_inode_dio_wait(inode);
  553. err = filemap_write_and_wait(inode->i_mapping);
  554. if (err)
  555. goto out;
  556. }
  557. /*
  558. * We may force a getattr if the user cares about atime.
  559. *
  560. * Note that we only have to check the vfsmount flags here:
  561. * - NFS always sets S_NOATIME by so checking it would give a
  562. * bogus result
  563. * - NFS never sets MS_NOATIME or MS_NODIRATIME so there is
  564. * no point in checking those.
  565. */
  566. if ((mnt->mnt_flags & MNT_NOATIME) ||
  567. ((mnt->mnt_flags & MNT_NODIRATIME) && S_ISDIR(inode->i_mode)))
  568. need_atime = 0;
  569. if (need_atime || nfs_need_revalidate_inode(inode)) {
  570. struct nfs_server *server = NFS_SERVER(inode);
  571. if (server->caps & NFS_CAP_READDIRPLUS)
  572. nfs_request_parent_use_readdirplus(dentry);
  573. err = __nfs_revalidate_inode(server, inode);
  574. }
  575. if (!err) {
  576. generic_fillattr(inode, stat);
  577. stat->ino = nfs_compat_user_ino64(NFS_FILEID(inode));
  578. }
  579. out:
  580. trace_nfs_getattr_exit(inode, err);
  581. return err;
  582. }
  583. EXPORT_SYMBOL_GPL(nfs_getattr);
  584. static void nfs_init_lock_context(struct nfs_lock_context *l_ctx)
  585. {
  586. atomic_set(&l_ctx->count, 1);
  587. l_ctx->lockowner.l_owner = current->files;
  588. l_ctx->lockowner.l_pid = current->tgid;
  589. INIT_LIST_HEAD(&l_ctx->list);
  590. nfs_iocounter_init(&l_ctx->io_count);
  591. }
  592. static struct nfs_lock_context *__nfs_find_lock_context(struct nfs_open_context *ctx)
  593. {
  594. struct nfs_lock_context *head = &ctx->lock_context;
  595. struct nfs_lock_context *pos = head;
  596. do {
  597. if (pos->lockowner.l_owner != current->files)
  598. continue;
  599. if (pos->lockowner.l_pid != current->tgid)
  600. continue;
  601. atomic_inc(&pos->count);
  602. return pos;
  603. } while ((pos = list_entry(pos->list.next, typeof(*pos), list)) != head);
  604. return NULL;
  605. }
  606. struct nfs_lock_context *nfs_get_lock_context(struct nfs_open_context *ctx)
  607. {
  608. struct nfs_lock_context *res, *new = NULL;
  609. struct inode *inode = ctx->dentry->d_inode;
  610. spin_lock(&inode->i_lock);
  611. res = __nfs_find_lock_context(ctx);
  612. if (res == NULL) {
  613. spin_unlock(&inode->i_lock);
  614. new = kmalloc(sizeof(*new), GFP_KERNEL);
  615. if (new == NULL)
  616. return ERR_PTR(-ENOMEM);
  617. nfs_init_lock_context(new);
  618. spin_lock(&inode->i_lock);
  619. res = __nfs_find_lock_context(ctx);
  620. if (res == NULL) {
  621. list_add_tail(&new->list, &ctx->lock_context.list);
  622. new->open_context = ctx;
  623. res = new;
  624. new = NULL;
  625. }
  626. }
  627. spin_unlock(&inode->i_lock);
  628. kfree(new);
  629. return res;
  630. }
  631. void nfs_put_lock_context(struct nfs_lock_context *l_ctx)
  632. {
  633. struct nfs_open_context *ctx = l_ctx->open_context;
  634. struct inode *inode = ctx->dentry->d_inode;
  635. if (!atomic_dec_and_lock(&l_ctx->count, &inode->i_lock))
  636. return;
  637. list_del(&l_ctx->list);
  638. spin_unlock(&inode->i_lock);
  639. kfree(l_ctx);
  640. }
  641. /**
  642. * nfs_close_context - Common close_context() routine NFSv2/v3
  643. * @ctx: pointer to context
  644. * @is_sync: is this a synchronous close
  645. *
  646. * always ensure that the attributes are up to date if we're mounted
  647. * with close-to-open semantics
  648. */
  649. void nfs_close_context(struct nfs_open_context *ctx, int is_sync)
  650. {
  651. struct inode *inode;
  652. struct nfs_server *server;
  653. if (!(ctx->mode & FMODE_WRITE))
  654. return;
  655. if (!is_sync)
  656. return;
  657. inode = ctx->dentry->d_inode;
  658. if (!list_empty(&NFS_I(inode)->open_files))
  659. return;
  660. server = NFS_SERVER(inode);
  661. if (server->flags & NFS_MOUNT_NOCTO)
  662. return;
  663. nfs_revalidate_inode(server, inode);
  664. }
  665. EXPORT_SYMBOL_GPL(nfs_close_context);
  666. struct nfs_open_context *alloc_nfs_open_context(struct dentry *dentry, fmode_t f_mode)
  667. {
  668. struct nfs_open_context *ctx;
  669. struct rpc_cred *cred = rpc_lookup_cred();
  670. if (IS_ERR(cred))
  671. return ERR_CAST(cred);
  672. ctx = kmalloc(sizeof(*ctx), GFP_KERNEL);
  673. if (!ctx) {
  674. put_rpccred(cred);
  675. return ERR_PTR(-ENOMEM);
  676. }
  677. nfs_sb_active(dentry->d_sb);
  678. ctx->dentry = dget(dentry);
  679. ctx->cred = cred;
  680. ctx->state = NULL;
  681. ctx->mode = f_mode;
  682. ctx->flags = 0;
  683. ctx->error = 0;
  684. nfs_init_lock_context(&ctx->lock_context);
  685. ctx->lock_context.open_context = ctx;
  686. INIT_LIST_HEAD(&ctx->list);
  687. ctx->mdsthreshold = NULL;
  688. return ctx;
  689. }
  690. EXPORT_SYMBOL_GPL(alloc_nfs_open_context);
  691. struct nfs_open_context *get_nfs_open_context(struct nfs_open_context *ctx)
  692. {
  693. if (ctx != NULL)
  694. atomic_inc(&ctx->lock_context.count);
  695. return ctx;
  696. }
  697. EXPORT_SYMBOL_GPL(get_nfs_open_context);
  698. static void __put_nfs_open_context(struct nfs_open_context *ctx, int is_sync)
  699. {
  700. struct inode *inode = ctx->dentry->d_inode;
  701. struct super_block *sb = ctx->dentry->d_sb;
  702. if (!list_empty(&ctx->list)) {
  703. if (!atomic_dec_and_lock(&ctx->lock_context.count, &inode->i_lock))
  704. return;
  705. list_del(&ctx->list);
  706. spin_unlock(&inode->i_lock);
  707. } else if (!atomic_dec_and_test(&ctx->lock_context.count))
  708. return;
  709. if (inode != NULL)
  710. NFS_PROTO(inode)->close_context(ctx, is_sync);
  711. if (ctx->cred != NULL)
  712. put_rpccred(ctx->cred);
  713. dput(ctx->dentry);
  714. nfs_sb_deactive(sb);
  715. kfree(ctx->mdsthreshold);
  716. kfree(ctx);
  717. }
  718. void put_nfs_open_context(struct nfs_open_context *ctx)
  719. {
  720. __put_nfs_open_context(ctx, 0);
  721. }
  722. EXPORT_SYMBOL_GPL(put_nfs_open_context);
  723. /*
  724. * Ensure that mmap has a recent RPC credential for use when writing out
  725. * shared pages
  726. */
  727. void nfs_inode_attach_open_context(struct nfs_open_context *ctx)
  728. {
  729. struct inode *inode = ctx->dentry->d_inode;
  730. struct nfs_inode *nfsi = NFS_I(inode);
  731. spin_lock(&inode->i_lock);
  732. list_add(&ctx->list, &nfsi->open_files);
  733. spin_unlock(&inode->i_lock);
  734. }
  735. EXPORT_SYMBOL_GPL(nfs_inode_attach_open_context);
  736. void nfs_file_set_open_context(struct file *filp, struct nfs_open_context *ctx)
  737. {
  738. filp->private_data = get_nfs_open_context(ctx);
  739. if (list_empty(&ctx->list))
  740. nfs_inode_attach_open_context(ctx);
  741. }
  742. EXPORT_SYMBOL_GPL(nfs_file_set_open_context);
  743. /*
  744. * Given an inode, search for an open context with the desired characteristics
  745. */
  746. struct nfs_open_context *nfs_find_open_context(struct inode *inode, struct rpc_cred *cred, fmode_t mode)
  747. {
  748. struct nfs_inode *nfsi = NFS_I(inode);
  749. struct nfs_open_context *pos, *ctx = NULL;
  750. spin_lock(&inode->i_lock);
  751. list_for_each_entry(pos, &nfsi->open_files, list) {
  752. if (cred != NULL && pos->cred != cred)
  753. continue;
  754. if ((pos->mode & (FMODE_READ|FMODE_WRITE)) != mode)
  755. continue;
  756. ctx = get_nfs_open_context(pos);
  757. break;
  758. }
  759. spin_unlock(&inode->i_lock);
  760. return ctx;
  761. }
  762. static void nfs_file_clear_open_context(struct file *filp)
  763. {
  764. struct nfs_open_context *ctx = nfs_file_open_context(filp);
  765. if (ctx) {
  766. struct inode *inode = ctx->dentry->d_inode;
  767. filp->private_data = NULL;
  768. spin_lock(&inode->i_lock);
  769. list_move_tail(&ctx->list, &NFS_I(inode)->open_files);
  770. spin_unlock(&inode->i_lock);
  771. __put_nfs_open_context(ctx, filp->f_flags & O_DIRECT ? 0 : 1);
  772. }
  773. }
  774. /*
  775. * These allocate and release file read/write context information.
  776. */
  777. int nfs_open(struct inode *inode, struct file *filp)
  778. {
  779. struct nfs_open_context *ctx;
  780. ctx = alloc_nfs_open_context(filp->f_path.dentry, filp->f_mode);
  781. if (IS_ERR(ctx))
  782. return PTR_ERR(ctx);
  783. nfs_file_set_open_context(filp, ctx);
  784. put_nfs_open_context(ctx);
  785. nfs_fscache_open_file(inode, filp);
  786. return 0;
  787. }
  788. int nfs_release(struct inode *inode, struct file *filp)
  789. {
  790. nfs_file_clear_open_context(filp);
  791. return 0;
  792. }
  793. /*
  794. * This function is called whenever some part of NFS notices that
  795. * the cached attributes have to be refreshed.
  796. */
  797. int
  798. __nfs_revalidate_inode(struct nfs_server *server, struct inode *inode)
  799. {
  800. int status = -ESTALE;
  801. struct nfs4_label *label = NULL;
  802. struct nfs_fattr *fattr = NULL;
  803. struct nfs_inode *nfsi = NFS_I(inode);
  804. dfprintk(PAGECACHE, "NFS: revalidating (%s/%Lu)\n",
  805. inode->i_sb->s_id, (unsigned long long)NFS_FILEID(inode));
  806. trace_nfs_revalidate_inode_enter(inode);
  807. if (is_bad_inode(inode))
  808. goto out;
  809. if (NFS_STALE(inode))
  810. goto out;
  811. status = -ENOMEM;
  812. fattr = nfs_alloc_fattr();
  813. if (fattr == NULL)
  814. goto out;
  815. nfs_inc_stats(inode, NFSIOS_INODEREVALIDATE);
  816. label = nfs4_label_alloc(NFS_SERVER(inode), GFP_KERNEL);
  817. if (IS_ERR(label)) {
  818. status = PTR_ERR(label);
  819. goto out;
  820. }
  821. status = NFS_PROTO(inode)->getattr(server, NFS_FH(inode), fattr, label);
  822. if (status != 0) {
  823. dfprintk(PAGECACHE, "nfs_revalidate_inode: (%s/%Lu) getattr failed, error=%d\n",
  824. inode->i_sb->s_id,
  825. (unsigned long long)NFS_FILEID(inode), status);
  826. if (status == -ESTALE) {
  827. nfs_zap_caches(inode);
  828. if (!S_ISDIR(inode->i_mode))
  829. set_bit(NFS_INO_STALE, &NFS_I(inode)->flags);
  830. }
  831. goto err_out;
  832. }
  833. status = nfs_refresh_inode(inode, fattr);
  834. if (status) {
  835. dfprintk(PAGECACHE, "nfs_revalidate_inode: (%s/%Lu) refresh failed, error=%d\n",
  836. inode->i_sb->s_id,
  837. (unsigned long long)NFS_FILEID(inode), status);
  838. goto err_out;
  839. }
  840. if (nfsi->cache_validity & NFS_INO_INVALID_ACL)
  841. nfs_zap_acl_cache(inode);
  842. nfs_setsecurity(inode, fattr, label);
  843. dfprintk(PAGECACHE, "NFS: (%s/%Lu) revalidation complete\n",
  844. inode->i_sb->s_id,
  845. (unsigned long long)NFS_FILEID(inode));
  846. err_out:
  847. nfs4_label_free(label);
  848. out:
  849. nfs_free_fattr(fattr);
  850. trace_nfs_revalidate_inode_exit(inode, status);
  851. return status;
  852. }
  853. int nfs_attribute_timeout(struct inode *inode)
  854. {
  855. struct nfs_inode *nfsi = NFS_I(inode);
  856. return !time_in_range_open(jiffies, nfsi->read_cache_jiffies, nfsi->read_cache_jiffies + nfsi->attrtimeo);
  857. }
  858. int nfs_attribute_cache_expired(struct inode *inode)
  859. {
  860. if (nfs_have_delegated_attributes(inode))
  861. return 0;
  862. return nfs_attribute_timeout(inode);
  863. }
  864. /**
  865. * nfs_revalidate_inode - Revalidate the inode attributes
  866. * @server - pointer to nfs_server struct
  867. * @inode - pointer to inode struct
  868. *
  869. * Updates inode attribute information by retrieving the data from the server.
  870. */
  871. int nfs_revalidate_inode(struct nfs_server *server, struct inode *inode)
  872. {
  873. if (!nfs_need_revalidate_inode(inode))
  874. return NFS_STALE(inode) ? -ESTALE : 0;
  875. return __nfs_revalidate_inode(server, inode);
  876. }
  877. EXPORT_SYMBOL_GPL(nfs_revalidate_inode);
  878. static int nfs_invalidate_mapping(struct inode *inode, struct address_space *mapping)
  879. {
  880. struct nfs_inode *nfsi = NFS_I(inode);
  881. int ret;
  882. if (mapping->nrpages != 0) {
  883. if (S_ISREG(inode->i_mode)) {
  884. ret = nfs_sync_mapping(mapping);
  885. if (ret < 0)
  886. return ret;
  887. }
  888. ret = invalidate_inode_pages2(mapping);
  889. if (ret < 0)
  890. return ret;
  891. }
  892. if (S_ISDIR(inode->i_mode)) {
  893. spin_lock(&inode->i_lock);
  894. memset(nfsi->cookieverf, 0, sizeof(nfsi->cookieverf));
  895. spin_unlock(&inode->i_lock);
  896. }
  897. nfs_inc_stats(inode, NFSIOS_DATAINVALIDATE);
  898. nfs_fscache_wait_on_invalidate(inode);
  899. dfprintk(PAGECACHE, "NFS: (%s/%Lu) data cache invalidated\n",
  900. inode->i_sb->s_id,
  901. (unsigned long long)NFS_FILEID(inode));
  902. return 0;
  903. }
  904. static bool nfs_mapping_need_revalidate_inode(struct inode *inode)
  905. {
  906. if (nfs_have_delegated_attributes(inode))
  907. return false;
  908. return (NFS_I(inode)->cache_validity & NFS_INO_REVAL_PAGECACHE)
  909. || nfs_attribute_timeout(inode)
  910. || NFS_STALE(inode);
  911. }
  912. /**
  913. * nfs_revalidate_mapping - Revalidate the pagecache
  914. * @inode - pointer to host inode
  915. * @mapping - pointer to mapping
  916. */
  917. int nfs_revalidate_mapping(struct inode *inode, struct address_space *mapping)
  918. {
  919. struct nfs_inode *nfsi = NFS_I(inode);
  920. unsigned long *bitlock = &nfsi->flags;
  921. int ret = 0;
  922. /* swapfiles are not supposed to be shared. */
  923. if (IS_SWAPFILE(inode))
  924. goto out;
  925. if (nfs_mapping_need_revalidate_inode(inode)) {
  926. ret = __nfs_revalidate_inode(NFS_SERVER(inode), inode);
  927. if (ret < 0)
  928. goto out;
  929. }
  930. /*
  931. * We must clear NFS_INO_INVALID_DATA first to ensure that
  932. * invalidations that come in while we're shooting down the mappings
  933. * are respected. But, that leaves a race window where one revalidator
  934. * can clear the flag, and then another checks it before the mapping
  935. * gets invalidated. Fix that by serializing access to this part of
  936. * the function.
  937. *
  938. * At the same time, we need to allow other tasks to see whether we
  939. * might be in the middle of invalidating the pages, so we only set
  940. * the bit lock here if it looks like we're going to be doing that.
  941. */
  942. for (;;) {
  943. ret = wait_on_bit_action(bitlock, NFS_INO_INVALIDATING,
  944. nfs_wait_bit_killable, TASK_KILLABLE);
  945. if (ret)
  946. goto out;
  947. spin_lock(&inode->i_lock);
  948. if (test_bit(NFS_INO_INVALIDATING, bitlock)) {
  949. spin_unlock(&inode->i_lock);
  950. continue;
  951. }
  952. if (nfsi->cache_validity & NFS_INO_INVALID_DATA)
  953. break;
  954. spin_unlock(&inode->i_lock);
  955. goto out;
  956. }
  957. set_bit(NFS_INO_INVALIDATING, bitlock);
  958. smp_wmb();
  959. nfsi->cache_validity &= ~NFS_INO_INVALID_DATA;
  960. spin_unlock(&inode->i_lock);
  961. trace_nfs_invalidate_mapping_enter(inode);
  962. ret = nfs_invalidate_mapping(inode, mapping);
  963. trace_nfs_invalidate_mapping_exit(inode, ret);
  964. clear_bit_unlock(NFS_INO_INVALIDATING, bitlock);
  965. smp_mb__after_atomic();
  966. wake_up_bit(bitlock, NFS_INO_INVALIDATING);
  967. out:
  968. return ret;
  969. }
  970. static unsigned long nfs_wcc_update_inode(struct inode *inode, struct nfs_fattr *fattr)
  971. {
  972. struct nfs_inode *nfsi = NFS_I(inode);
  973. unsigned long ret = 0;
  974. if ((fattr->valid & NFS_ATTR_FATTR_PRECHANGE)
  975. && (fattr->valid & NFS_ATTR_FATTR_CHANGE)
  976. && inode->i_version == fattr->pre_change_attr) {
  977. inode->i_version = fattr->change_attr;
  978. if (S_ISDIR(inode->i_mode))
  979. nfs_set_cache_invalid(inode, NFS_INO_INVALID_DATA);
  980. ret |= NFS_INO_INVALID_ATTR;
  981. }
  982. /* If we have atomic WCC data, we may update some attributes */
  983. if ((fattr->valid & NFS_ATTR_FATTR_PRECTIME)
  984. && (fattr->valid & NFS_ATTR_FATTR_CTIME)
  985. && timespec_equal(&inode->i_ctime, &fattr->pre_ctime)) {
  986. memcpy(&inode->i_ctime, &fattr->ctime, sizeof(inode->i_ctime));
  987. ret |= NFS_INO_INVALID_ATTR;
  988. }
  989. if ((fattr->valid & NFS_ATTR_FATTR_PREMTIME)
  990. && (fattr->valid & NFS_ATTR_FATTR_MTIME)
  991. && timespec_equal(&inode->i_mtime, &fattr->pre_mtime)) {
  992. memcpy(&inode->i_mtime, &fattr->mtime, sizeof(inode->i_mtime));
  993. if (S_ISDIR(inode->i_mode))
  994. nfs_set_cache_invalid(inode, NFS_INO_INVALID_DATA);
  995. ret |= NFS_INO_INVALID_ATTR;
  996. }
  997. if ((fattr->valid & NFS_ATTR_FATTR_PRESIZE)
  998. && (fattr->valid & NFS_ATTR_FATTR_SIZE)
  999. && i_size_read(inode) == nfs_size_to_loff_t(fattr->pre_size)
  1000. && nfsi->npages == 0) {
  1001. i_size_write(inode, nfs_size_to_loff_t(fattr->size));
  1002. ret |= NFS_INO_INVALID_ATTR;
  1003. }
  1004. return ret;
  1005. }
  1006. /**
  1007. * nfs_check_inode_attributes - verify consistency of the inode attribute cache
  1008. * @inode - pointer to inode
  1009. * @fattr - updated attributes
  1010. *
  1011. * Verifies the attribute cache. If we have just changed the attributes,
  1012. * so that fattr carries weak cache consistency data, then it may
  1013. * also update the ctime/mtime/change_attribute.
  1014. */
  1015. static int nfs_check_inode_attributes(struct inode *inode, struct nfs_fattr *fattr)
  1016. {
  1017. struct nfs_inode *nfsi = NFS_I(inode);
  1018. loff_t cur_size, new_isize;
  1019. unsigned long invalid = 0;
  1020. if (nfs_have_delegated_attributes(inode))
  1021. return 0;
  1022. /* Has the inode gone and changed behind our back? */
  1023. if ((fattr->valid & NFS_ATTR_FATTR_FILEID) && nfsi->fileid != fattr->fileid)
  1024. return -EIO;
  1025. if ((fattr->valid & NFS_ATTR_FATTR_TYPE) && (inode->i_mode & S_IFMT) != (fattr->mode & S_IFMT))
  1026. return -EIO;
  1027. if ((fattr->valid & NFS_ATTR_FATTR_CHANGE) != 0 &&
  1028. inode->i_version != fattr->change_attr)
  1029. invalid |= NFS_INO_INVALID_ATTR|NFS_INO_REVAL_PAGECACHE;
  1030. /* Verify a few of the more important attributes */
  1031. if ((fattr->valid & NFS_ATTR_FATTR_MTIME) && !timespec_equal(&inode->i_mtime, &fattr->mtime))
  1032. invalid |= NFS_INO_INVALID_ATTR;
  1033. if (fattr->valid & NFS_ATTR_FATTR_SIZE) {
  1034. cur_size = i_size_read(inode);
  1035. new_isize = nfs_size_to_loff_t(fattr->size);
  1036. if (cur_size != new_isize && nfsi->npages == 0)
  1037. invalid |= NFS_INO_INVALID_ATTR|NFS_INO_REVAL_PAGECACHE;
  1038. }
  1039. /* Have any file permissions changed? */
  1040. if ((fattr->valid & NFS_ATTR_FATTR_MODE) && (inode->i_mode & S_IALLUGO) != (fattr->mode & S_IALLUGO))
  1041. invalid |= NFS_INO_INVALID_ATTR | NFS_INO_INVALID_ACCESS | NFS_INO_INVALID_ACL;
  1042. if ((fattr->valid & NFS_ATTR_FATTR_OWNER) && !uid_eq(inode->i_uid, fattr->uid))
  1043. invalid |= NFS_INO_INVALID_ATTR | NFS_INO_INVALID_ACCESS | NFS_INO_INVALID_ACL;
  1044. if ((fattr->valid & NFS_ATTR_FATTR_GROUP) && !gid_eq(inode->i_gid, fattr->gid))
  1045. invalid |= NFS_INO_INVALID_ATTR | NFS_INO_INVALID_ACCESS | NFS_INO_INVALID_ACL;
  1046. /* Has the link count changed? */
  1047. if ((fattr->valid & NFS_ATTR_FATTR_NLINK) && inode->i_nlink != fattr->nlink)
  1048. invalid |= NFS_INO_INVALID_ATTR;
  1049. if ((fattr->valid & NFS_ATTR_FATTR_ATIME) && !timespec_equal(&inode->i_atime, &fattr->atime))
  1050. invalid |= NFS_INO_INVALID_ATIME;
  1051. if (invalid != 0)
  1052. nfs_set_cache_invalid(inode, invalid);
  1053. nfsi->read_cache_jiffies = fattr->time_start;
  1054. return 0;
  1055. }
  1056. static int nfs_ctime_need_update(const struct inode *inode, const struct nfs_fattr *fattr)
  1057. {
  1058. if (!(fattr->valid & NFS_ATTR_FATTR_CTIME))
  1059. return 0;
  1060. return timespec_compare(&fattr->ctime, &inode->i_ctime) > 0;
  1061. }
  1062. static int nfs_size_need_update(const struct inode *inode, const struct nfs_fattr *fattr)
  1063. {
  1064. if (!(fattr->valid & NFS_ATTR_FATTR_SIZE))
  1065. return 0;
  1066. return nfs_size_to_loff_t(fattr->size) > i_size_read(inode);
  1067. }
  1068. static atomic_long_t nfs_attr_generation_counter;
  1069. static unsigned long nfs_read_attr_generation_counter(void)
  1070. {
  1071. return atomic_long_read(&nfs_attr_generation_counter);
  1072. }
  1073. unsigned long nfs_inc_attr_generation_counter(void)
  1074. {
  1075. return atomic_long_inc_return(&nfs_attr_generation_counter);
  1076. }
  1077. void nfs_fattr_init(struct nfs_fattr *fattr)
  1078. {
  1079. fattr->valid = 0;
  1080. fattr->time_start = jiffies;
  1081. fattr->gencount = nfs_inc_attr_generation_counter();
  1082. fattr->owner_name = NULL;
  1083. fattr->group_name = NULL;
  1084. }
  1085. EXPORT_SYMBOL_GPL(nfs_fattr_init);
  1086. struct nfs_fattr *nfs_alloc_fattr(void)
  1087. {
  1088. struct nfs_fattr *fattr;
  1089. fattr = kmalloc(sizeof(*fattr), GFP_NOFS);
  1090. if (fattr != NULL)
  1091. nfs_fattr_init(fattr);
  1092. return fattr;
  1093. }
  1094. EXPORT_SYMBOL_GPL(nfs_alloc_fattr);
  1095. struct nfs_fh *nfs_alloc_fhandle(void)
  1096. {
  1097. struct nfs_fh *fh;
  1098. fh = kmalloc(sizeof(struct nfs_fh), GFP_NOFS);
  1099. if (fh != NULL)
  1100. fh->size = 0;
  1101. return fh;
  1102. }
  1103. EXPORT_SYMBOL_GPL(nfs_alloc_fhandle);
  1104. #ifdef NFS_DEBUG
  1105. /*
  1106. * _nfs_display_fhandle_hash - calculate the crc32 hash for the filehandle
  1107. * in the same way that wireshark does
  1108. *
  1109. * @fh: file handle
  1110. *
  1111. * For debugging only.
  1112. */
  1113. u32 _nfs_display_fhandle_hash(const struct nfs_fh *fh)
  1114. {
  1115. /* wireshark uses 32-bit AUTODIN crc and does a bitwise
  1116. * not on the result */
  1117. return nfs_fhandle_hash(fh);
  1118. }
  1119. EXPORT_SYMBOL_GPL(_nfs_display_fhandle_hash);
  1120. /*
  1121. * _nfs_display_fhandle - display an NFS file handle on the console
  1122. *
  1123. * @fh: file handle to display
  1124. * @caption: display caption
  1125. *
  1126. * For debugging only.
  1127. */
  1128. void _nfs_display_fhandle(const struct nfs_fh *fh, const char *caption)
  1129. {
  1130. unsigned short i;
  1131. if (fh == NULL || fh->size == 0) {
  1132. printk(KERN_DEFAULT "%s at %p is empty\n", caption, fh);
  1133. return;
  1134. }
  1135. printk(KERN_DEFAULT "%s at %p is %u bytes, crc: 0x%08x:\n",
  1136. caption, fh, fh->size, _nfs_display_fhandle_hash(fh));
  1137. for (i = 0; i < fh->size; i += 16) {
  1138. __be32 *pos = (__be32 *)&fh->data[i];
  1139. switch ((fh->size - i - 1) >> 2) {
  1140. case 0:
  1141. printk(KERN_DEFAULT " %08x\n",
  1142. be32_to_cpup(pos));
  1143. break;
  1144. case 1:
  1145. printk(KERN_DEFAULT " %08x %08x\n",
  1146. be32_to_cpup(pos), be32_to_cpup(pos + 1));
  1147. break;
  1148. case 2:
  1149. printk(KERN_DEFAULT " %08x %08x %08x\n",
  1150. be32_to_cpup(pos), be32_to_cpup(pos + 1),
  1151. be32_to_cpup(pos + 2));
  1152. break;
  1153. default:
  1154. printk(KERN_DEFAULT " %08x %08x %08x %08x\n",
  1155. be32_to_cpup(pos), be32_to_cpup(pos + 1),
  1156. be32_to_cpup(pos + 2), be32_to_cpup(pos + 3));
  1157. }
  1158. }
  1159. }
  1160. EXPORT_SYMBOL_GPL(_nfs_display_fhandle);
  1161. #endif
  1162. /**
  1163. * nfs_inode_attrs_need_update - check if the inode attributes need updating
  1164. * @inode - pointer to inode
  1165. * @fattr - attributes
  1166. *
  1167. * Attempt to divine whether or not an RPC call reply carrying stale
  1168. * attributes got scheduled after another call carrying updated ones.
  1169. *
  1170. * To do so, the function first assumes that a more recent ctime means
  1171. * that the attributes in fattr are newer, however it also attempt to
  1172. * catch the case where ctime either didn't change, or went backwards
  1173. * (if someone reset the clock on the server) by looking at whether
  1174. * or not this RPC call was started after the inode was last updated.
  1175. * Note also the check for wraparound of 'attr_gencount'
  1176. *
  1177. * The function returns 'true' if it thinks the attributes in 'fattr' are
  1178. * more recent than the ones cached in the inode.
  1179. *
  1180. */
  1181. static int nfs_inode_attrs_need_update(const struct inode *inode, const struct nfs_fattr *fattr)
  1182. {
  1183. const struct nfs_inode *nfsi = NFS_I(inode);
  1184. return ((long)fattr->gencount - (long)nfsi->attr_gencount) > 0 ||
  1185. nfs_ctime_need_update(inode, fattr) ||
  1186. nfs_size_need_update(inode, fattr) ||
  1187. ((long)nfsi->attr_gencount - (long)nfs_read_attr_generation_counter() > 0);
  1188. }
  1189. /*
  1190. * Don't trust the change_attribute, mtime, ctime or size if
  1191. * a pnfs LAYOUTCOMMIT is outstanding
  1192. */
  1193. static void nfs_inode_attrs_handle_layoutcommit(struct inode *inode,
  1194. struct nfs_fattr *fattr)
  1195. {
  1196. if (pnfs_layoutcommit_outstanding(inode))
  1197. fattr->valid &= ~(NFS_ATTR_FATTR_CHANGE |
  1198. NFS_ATTR_FATTR_MTIME |
  1199. NFS_ATTR_FATTR_CTIME |
  1200. NFS_ATTR_FATTR_SIZE);
  1201. }
  1202. static int nfs_refresh_inode_locked(struct inode *inode, struct nfs_fattr *fattr)
  1203. {
  1204. int ret;
  1205. trace_nfs_refresh_inode_enter(inode);
  1206. nfs_inode_attrs_handle_layoutcommit(inode, fattr);
  1207. if (nfs_inode_attrs_need_update(inode, fattr))
  1208. ret = nfs_update_inode(inode, fattr);
  1209. else
  1210. ret = nfs_check_inode_attributes(inode, fattr);
  1211. trace_nfs_refresh_inode_exit(inode, ret);
  1212. return ret;
  1213. }
  1214. /**
  1215. * nfs_refresh_inode - try to update the inode attribute cache
  1216. * @inode - pointer to inode
  1217. * @fattr - updated attributes
  1218. *
  1219. * Check that an RPC call that returned attributes has not overlapped with
  1220. * other recent updates of the inode metadata, then decide whether it is
  1221. * safe to do a full update of the inode attributes, or whether just to
  1222. * call nfs_check_inode_attributes.
  1223. */
  1224. int nfs_refresh_inode(struct inode *inode, struct nfs_fattr *fattr)
  1225. {
  1226. int status;
  1227. if ((fattr->valid & NFS_ATTR_FATTR) == 0)
  1228. return 0;
  1229. spin_lock(&inode->i_lock);
  1230. status = nfs_refresh_inode_locked(inode, fattr);
  1231. spin_unlock(&inode->i_lock);
  1232. return status;
  1233. }
  1234. EXPORT_SYMBOL_GPL(nfs_refresh_inode);
  1235. static int nfs_post_op_update_inode_locked(struct inode *inode, struct nfs_fattr *fattr)
  1236. {
  1237. unsigned long invalid = NFS_INO_INVALID_ATTR|NFS_INO_REVAL_PAGECACHE;
  1238. if (S_ISDIR(inode->i_mode))
  1239. invalid |= NFS_INO_INVALID_DATA;
  1240. nfs_set_cache_invalid(inode, invalid);
  1241. if ((fattr->valid & NFS_ATTR_FATTR) == 0)
  1242. return 0;
  1243. return nfs_refresh_inode_locked(inode, fattr);
  1244. }
  1245. /**
  1246. * nfs_post_op_update_inode - try to update the inode attribute cache
  1247. * @inode - pointer to inode
  1248. * @fattr - updated attributes
  1249. *
  1250. * After an operation that has changed the inode metadata, mark the
  1251. * attribute cache as being invalid, then try to update it.
  1252. *
  1253. * NB: if the server didn't return any post op attributes, this
  1254. * function will force the retrieval of attributes before the next
  1255. * NFS request. Thus it should be used only for operations that
  1256. * are expected to change one or more attributes, to avoid
  1257. * unnecessary NFS requests and trips through nfs_update_inode().
  1258. */
  1259. int nfs_post_op_update_inode(struct inode *inode, struct nfs_fattr *fattr)
  1260. {
  1261. int status;
  1262. spin_lock(&inode->i_lock);
  1263. status = nfs_post_op_update_inode_locked(inode, fattr);
  1264. spin_unlock(&inode->i_lock);
  1265. return status;
  1266. }
  1267. EXPORT_SYMBOL_GPL(nfs_post_op_update_inode);
  1268. /**
  1269. * nfs_post_op_update_inode_force_wcc - try to update the inode attribute cache
  1270. * @inode - pointer to inode
  1271. * @fattr - updated attributes
  1272. *
  1273. * After an operation that has changed the inode metadata, mark the
  1274. * attribute cache as being invalid, then try to update it. Fake up
  1275. * weak cache consistency data, if none exist.
  1276. *
  1277. * This function is mainly designed to be used by the ->write_done() functions.
  1278. */
  1279. int nfs_post_op_update_inode_force_wcc(struct inode *inode, struct nfs_fattr *fattr)
  1280. {
  1281. int status;
  1282. spin_lock(&inode->i_lock);
  1283. /* Don't do a WCC update if these attributes are already stale */
  1284. if ((fattr->valid & NFS_ATTR_FATTR) == 0 ||
  1285. !nfs_inode_attrs_need_update(inode, fattr)) {
  1286. fattr->valid &= ~(NFS_ATTR_FATTR_PRECHANGE
  1287. | NFS_ATTR_FATTR_PRESIZE
  1288. | NFS_ATTR_FATTR_PREMTIME
  1289. | NFS_ATTR_FATTR_PRECTIME);
  1290. goto out_noforce;
  1291. }
  1292. if ((fattr->valid & NFS_ATTR_FATTR_CHANGE) != 0 &&
  1293. (fattr->valid & NFS_ATTR_FATTR_PRECHANGE) == 0) {
  1294. fattr->pre_change_attr = inode->i_version;
  1295. fattr->valid |= NFS_ATTR_FATTR_PRECHANGE;
  1296. }
  1297. if ((fattr->valid & NFS_ATTR_FATTR_CTIME) != 0 &&
  1298. (fattr->valid & NFS_ATTR_FATTR_PRECTIME) == 0) {
  1299. memcpy(&fattr->pre_ctime, &inode->i_ctime, sizeof(fattr->pre_ctime));
  1300. fattr->valid |= NFS_ATTR_FATTR_PRECTIME;
  1301. }
  1302. if ((fattr->valid & NFS_ATTR_FATTR_MTIME) != 0 &&
  1303. (fattr->valid & NFS_ATTR_FATTR_PREMTIME) == 0) {
  1304. memcpy(&fattr->pre_mtime, &inode->i_mtime, sizeof(fattr->pre_mtime));
  1305. fattr->valid |= NFS_ATTR_FATTR_PREMTIME;
  1306. }
  1307. if ((fattr->valid & NFS_ATTR_FATTR_SIZE) != 0 &&
  1308. (fattr->valid & NFS_ATTR_FATTR_PRESIZE) == 0) {
  1309. fattr->pre_size = i_size_read(inode);
  1310. fattr->valid |= NFS_ATTR_FATTR_PRESIZE;
  1311. }
  1312. out_noforce:
  1313. status = nfs_post_op_update_inode_locked(inode, fattr);
  1314. spin_unlock(&inode->i_lock);
  1315. return status;
  1316. }
  1317. EXPORT_SYMBOL_GPL(nfs_post_op_update_inode_force_wcc);
  1318. /*
  1319. * Many nfs protocol calls return the new file attributes after
  1320. * an operation. Here we update the inode to reflect the state
  1321. * of the server's inode.
  1322. *
  1323. * This is a bit tricky because we have to make sure all dirty pages
  1324. * have been sent off to the server before calling invalidate_inode_pages.
  1325. * To make sure no other process adds more write requests while we try
  1326. * our best to flush them, we make them sleep during the attribute refresh.
  1327. *
  1328. * A very similar scenario holds for the dir cache.
  1329. */
  1330. static int nfs_update_inode(struct inode *inode, struct nfs_fattr *fattr)
  1331. {
  1332. struct nfs_server *server;
  1333. struct nfs_inode *nfsi = NFS_I(inode);
  1334. loff_t cur_isize, new_isize;
  1335. unsigned long invalid = 0;
  1336. unsigned long now = jiffies;
  1337. unsigned long save_cache_validity;
  1338. dfprintk(VFS, "NFS: %s(%s/%lu fh_crc=0x%08x ct=%d info=0x%x)\n",
  1339. __func__, inode->i_sb->s_id, inode->i_ino,
  1340. nfs_display_fhandle_hash(NFS_FH(inode)),
  1341. atomic_read(&inode->i_count), fattr->valid);
  1342. if ((fattr->valid & NFS_ATTR_FATTR_FILEID) && nfsi->fileid != fattr->fileid) {
  1343. printk(KERN_ERR "NFS: server %s error: fileid changed\n"
  1344. "fsid %s: expected fileid 0x%Lx, got 0x%Lx\n",
  1345. NFS_SERVER(inode)->nfs_client->cl_hostname,
  1346. inode->i_sb->s_id, (long long)nfsi->fileid,
  1347. (long long)fattr->fileid);
  1348. goto out_err;
  1349. }
  1350. /*
  1351. * Make sure the inode's type hasn't changed.
  1352. */
  1353. if ((fattr->valid & NFS_ATTR_FATTR_TYPE) && (inode->i_mode & S_IFMT) != (fattr->mode & S_IFMT)) {
  1354. /*
  1355. * Big trouble! The inode has become a different object.
  1356. */
  1357. printk(KERN_DEBUG "NFS: %s: inode %lu mode changed, %07o to %07o\n",
  1358. __func__, inode->i_ino, inode->i_mode, fattr->mode);
  1359. goto out_err;
  1360. }
  1361. server = NFS_SERVER(inode);
  1362. /* Update the fsid? */
  1363. if (S_ISDIR(inode->i_mode) && (fattr->valid & NFS_ATTR_FATTR_FSID) &&
  1364. !nfs_fsid_equal(&server->fsid, &fattr->fsid) &&
  1365. !IS_AUTOMOUNT(inode))
  1366. server->fsid = fattr->fsid;
  1367. /*
  1368. * Update the read time so we don't revalidate too often.
  1369. */
  1370. nfsi->read_cache_jiffies = fattr->time_start;
  1371. save_cache_validity = nfsi->cache_validity;
  1372. nfsi->cache_validity &= ~(NFS_INO_INVALID_ATTR
  1373. | NFS_INO_INVALID_ATIME
  1374. | NFS_INO_REVAL_FORCED
  1375. | NFS_INO_REVAL_PAGECACHE);
  1376. /* Do atomic weak cache consistency updates */
  1377. invalid |= nfs_wcc_update_inode(inode, fattr);
  1378. /* More cache consistency checks */
  1379. if (fattr->valid & NFS_ATTR_FATTR_CHANGE) {
  1380. if (inode->i_version != fattr->change_attr) {
  1381. dprintk("NFS: change_attr change on server for file %s/%ld\n",
  1382. inode->i_sb->s_id, inode->i_ino);
  1383. invalid |= NFS_INO_INVALID_ATTR
  1384. | NFS_INO_INVALID_DATA
  1385. | NFS_INO_INVALID_ACCESS
  1386. | NFS_INO_INVALID_ACL
  1387. | NFS_INO_REVAL_PAGECACHE;
  1388. if (S_ISDIR(inode->i_mode))
  1389. nfs_force_lookup_revalidate(inode);
  1390. inode->i_version = fattr->change_attr;
  1391. }
  1392. } else if (server->caps & NFS_CAP_CHANGE_ATTR)
  1393. nfsi->cache_validity |= save_cache_validity;
  1394. if (fattr->valid & NFS_ATTR_FATTR_MTIME) {
  1395. memcpy(&inode->i_mtime, &fattr->mtime, sizeof(inode->i_mtime));
  1396. } else if (server->caps & NFS_CAP_MTIME)
  1397. nfsi->cache_validity |= save_cache_validity &
  1398. (NFS_INO_INVALID_ATTR
  1399. | NFS_INO_REVAL_FORCED);
  1400. if (fattr->valid & NFS_ATTR_FATTR_CTIME) {
  1401. memcpy(&inode->i_ctime, &fattr->ctime, sizeof(inode->i_ctime));
  1402. } else if (server->caps & NFS_CAP_CTIME)
  1403. nfsi->cache_validity |= save_cache_validity &
  1404. (NFS_INO_INVALID_ATTR
  1405. | NFS_INO_REVAL_FORCED);
  1406. /* Check if our cached file size is stale */
  1407. if (fattr->valid & NFS_ATTR_FATTR_SIZE) {
  1408. new_isize = nfs_size_to_loff_t(fattr->size);
  1409. cur_isize = i_size_read(inode);
  1410. if (new_isize != cur_isize) {
  1411. /* Do we perhaps have any outstanding writes, or has
  1412. * the file grown beyond our last write? */
  1413. if ((nfsi->npages == 0) || new_isize > cur_isize) {
  1414. i_size_write(inode, new_isize);
  1415. invalid |= NFS_INO_INVALID_ATTR|NFS_INO_INVALID_DATA;
  1416. invalid &= ~NFS_INO_REVAL_PAGECACHE;
  1417. }
  1418. dprintk("NFS: isize change on server for file %s/%ld "
  1419. "(%Ld to %Ld)\n",
  1420. inode->i_sb->s_id,
  1421. inode->i_ino,
  1422. (long long)cur_isize,
  1423. (long long)new_isize);
  1424. }
  1425. } else
  1426. nfsi->cache_validity |= save_cache_validity &
  1427. (NFS_INO_INVALID_ATTR
  1428. | NFS_INO_REVAL_PAGECACHE
  1429. | NFS_INO_REVAL_FORCED);
  1430. if (fattr->valid & NFS_ATTR_FATTR_ATIME)
  1431. memcpy(&inode->i_atime, &fattr->atime, sizeof(inode->i_atime));
  1432. else if (server->caps & NFS_CAP_ATIME)
  1433. nfsi->cache_validity |= save_cache_validity &
  1434. (NFS_INO_INVALID_ATIME
  1435. | NFS_INO_REVAL_FORCED);
  1436. if (fattr->valid & NFS_ATTR_FATTR_MODE) {
  1437. if ((inode->i_mode & S_IALLUGO) != (fattr->mode & S_IALLUGO)) {
  1438. umode_t newmode = inode->i_mode & S_IFMT;
  1439. newmode |= fattr->mode & S_IALLUGO;
  1440. inode->i_mode = newmode;
  1441. invalid |= NFS_INO_INVALID_ATTR|NFS_INO_INVALID_ACCESS|NFS_INO_INVALID_ACL;
  1442. }
  1443. } else if (server->caps & NFS_CAP_MODE)
  1444. nfsi->cache_validity |= save_cache_validity &
  1445. (NFS_INO_INVALID_ATTR
  1446. | NFS_INO_INVALID_ACCESS
  1447. | NFS_INO_INVALID_ACL
  1448. | NFS_INO_REVAL_FORCED);
  1449. if (fattr->valid & NFS_ATTR_FATTR_OWNER) {
  1450. if (!uid_eq(inode->i_uid, fattr->uid)) {
  1451. invalid |= NFS_INO_INVALID_ATTR|NFS_INO_INVALID_ACCESS|NFS_INO_INVALID_ACL;
  1452. inode->i_uid = fattr->uid;
  1453. }
  1454. } else if (server->caps & NFS_CAP_OWNER)
  1455. nfsi->cache_validity |= save_cache_validity &
  1456. (NFS_INO_INVALID_ATTR
  1457. | NFS_INO_INVALID_ACCESS
  1458. | NFS_INO_INVALID_ACL
  1459. | NFS_INO_REVAL_FORCED);
  1460. if (fattr->valid & NFS_ATTR_FATTR_GROUP) {
  1461. if (!gid_eq(inode->i_gid, fattr->gid)) {
  1462. invalid |= NFS_INO_INVALID_ATTR|NFS_INO_INVALID_ACCESS|NFS_INO_INVALID_ACL;
  1463. inode->i_gid = fattr->gid;
  1464. }
  1465. } else if (server->caps & NFS_CAP_OWNER_GROUP)
  1466. nfsi->cache_validity |= save_cache_validity &
  1467. (NFS_INO_INVALID_ATTR
  1468. | NFS_INO_INVALID_ACCESS
  1469. | NFS_INO_INVALID_ACL
  1470. | NFS_INO_REVAL_FORCED);
  1471. if (fattr->valid & NFS_ATTR_FATTR_NLINK) {
  1472. if (inode->i_nlink != fattr->nlink) {
  1473. invalid |= NFS_INO_INVALID_ATTR;
  1474. if (S_ISDIR(inode->i_mode))
  1475. invalid |= NFS_INO_INVALID_DATA;
  1476. set_nlink(inode, fattr->nlink);
  1477. }
  1478. } else if (server->caps & NFS_CAP_NLINK)
  1479. nfsi->cache_validity |= save_cache_validity &
  1480. (NFS_INO_INVALID_ATTR
  1481. | NFS_INO_REVAL_FORCED);
  1482. if (fattr->valid & NFS_ATTR_FATTR_SPACE_USED) {
  1483. /*
  1484. * report the blocks in 512byte units
  1485. */
  1486. inode->i_blocks = nfs_calc_block_size(fattr->du.nfs3.used);
  1487. }
  1488. if (fattr->valid & NFS_ATTR_FATTR_BLOCKS_USED)
  1489. inode->i_blocks = fattr->du.nfs2.blocks;
  1490. /* Update attrtimeo value if we're out of the unstable period */
  1491. if (invalid & NFS_INO_INVALID_ATTR) {
  1492. nfs_inc_stats(inode, NFSIOS_ATTRINVALIDATE);
  1493. nfsi->attrtimeo = NFS_MINATTRTIMEO(inode);
  1494. nfsi->attrtimeo_timestamp = now;
  1495. nfsi->attr_gencount = nfs_inc_attr_generation_counter();
  1496. } else {
  1497. if (!time_in_range_open(now, nfsi->attrtimeo_timestamp, nfsi->attrtimeo_timestamp + nfsi->attrtimeo)) {
  1498. if ((nfsi->attrtimeo <<= 1) > NFS_MAXATTRTIMEO(inode))
  1499. nfsi->attrtimeo = NFS_MAXATTRTIMEO(inode);
  1500. nfsi->attrtimeo_timestamp = now;
  1501. }
  1502. }
  1503. invalid &= ~NFS_INO_INVALID_ATTR;
  1504. /* Don't invalidate the data if we were to blame */
  1505. if (!(S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode)
  1506. || S_ISLNK(inode->i_mode)))
  1507. invalid &= ~NFS_INO_INVALID_DATA;
  1508. if (!NFS_PROTO(inode)->have_delegation(inode, FMODE_READ) ||
  1509. (save_cache_validity & NFS_INO_REVAL_FORCED))
  1510. nfs_set_cache_invalid(inode, invalid);
  1511. return 0;
  1512. out_err:
  1513. /*
  1514. * No need to worry about unhashing the dentry, as the
  1515. * lookup validation will know that the inode is bad.
  1516. * (But we fall through to invalidate the caches.)
  1517. */
  1518. nfs_invalidate_inode(inode);
  1519. return -ESTALE;
  1520. }
  1521. struct inode *nfs_alloc_inode(struct super_block *sb)
  1522. {
  1523. struct nfs_inode *nfsi;
  1524. nfsi = (struct nfs_inode *)kmem_cache_alloc(nfs_inode_cachep, GFP_KERNEL);
  1525. if (!nfsi)
  1526. return NULL;
  1527. nfsi->flags = 0UL;
  1528. nfsi->cache_validity = 0UL;
  1529. #if IS_ENABLED(CONFIG_NFS_V4)
  1530. nfsi->nfs4_acl = NULL;
  1531. #endif /* CONFIG_NFS_V4 */
  1532. return &nfsi->vfs_inode;
  1533. }
  1534. EXPORT_SYMBOL_GPL(nfs_alloc_inode);
  1535. static void nfs_i_callback(struct rcu_head *head)
  1536. {
  1537. struct inode *inode = container_of(head, struct inode, i_rcu);
  1538. kmem_cache_free(nfs_inode_cachep, NFS_I(inode));
  1539. }
  1540. void nfs_destroy_inode(struct inode *inode)
  1541. {
  1542. call_rcu(&inode->i_rcu, nfs_i_callback);
  1543. }
  1544. EXPORT_SYMBOL_GPL(nfs_destroy_inode);
  1545. static inline void nfs4_init_once(struct nfs_inode *nfsi)
  1546. {
  1547. #if IS_ENABLED(CONFIG_NFS_V4)
  1548. INIT_LIST_HEAD(&nfsi->open_states);
  1549. nfsi->delegation = NULL;
  1550. nfsi->delegation_state = 0;
  1551. init_rwsem(&nfsi->rwsem);
  1552. nfsi->layout = NULL;
  1553. #endif
  1554. }
  1555. static void init_once(void *foo)
  1556. {
  1557. struct nfs_inode *nfsi = (struct nfs_inode *) foo;
  1558. inode_init_once(&nfsi->vfs_inode);
  1559. INIT_LIST_HEAD(&nfsi->open_files);
  1560. INIT_LIST_HEAD(&nfsi->access_cache_entry_lru);
  1561. INIT_LIST_HEAD(&nfsi->access_cache_inode_lru);
  1562. INIT_LIST_HEAD(&nfsi->commit_info.list);
  1563. nfsi->npages = 0;
  1564. nfsi->commit_info.ncommit = 0;
  1565. atomic_set(&nfsi->commit_info.rpcs_out, 0);
  1566. atomic_set(&nfsi->silly_count, 1);
  1567. INIT_HLIST_HEAD(&nfsi->silly_list);
  1568. init_waitqueue_head(&nfsi->waitqueue);
  1569. nfs4_init_once(nfsi);
  1570. }
  1571. static int __init nfs_init_inodecache(void)
  1572. {
  1573. nfs_inode_cachep = kmem_cache_create("nfs_inode_cache",
  1574. sizeof(struct nfs_inode),
  1575. 0, (SLAB_RECLAIM_ACCOUNT|
  1576. SLAB_MEM_SPREAD),
  1577. init_once);
  1578. if (nfs_inode_cachep == NULL)
  1579. return -ENOMEM;
  1580. return 0;
  1581. }
  1582. static void nfs_destroy_inodecache(void)
  1583. {
  1584. /*
  1585. * Make sure all delayed rcu free inodes are flushed before we
  1586. * destroy cache.
  1587. */
  1588. rcu_barrier();
  1589. kmem_cache_destroy(nfs_inode_cachep);
  1590. }
  1591. struct workqueue_struct *nfsiod_workqueue;
  1592. EXPORT_SYMBOL_GPL(nfsiod_workqueue);
  1593. /*
  1594. * start up the nfsiod workqueue
  1595. */
  1596. static int nfsiod_start(void)
  1597. {
  1598. struct workqueue_struct *wq;
  1599. dprintk("RPC: creating workqueue nfsiod\n");
  1600. wq = alloc_workqueue("nfsiod", WQ_MEM_RECLAIM, 0);
  1601. if (wq == NULL)
  1602. return -ENOMEM;
  1603. nfsiod_workqueue = wq;
  1604. return 0;
  1605. }
  1606. /*
  1607. * Destroy the nfsiod workqueue
  1608. */
  1609. static void nfsiod_stop(void)
  1610. {
  1611. struct workqueue_struct *wq;
  1612. wq = nfsiod_workqueue;
  1613. if (wq == NULL)
  1614. return;
  1615. nfsiod_workqueue = NULL;
  1616. destroy_workqueue(wq);
  1617. }
  1618. int nfs_net_id;
  1619. EXPORT_SYMBOL_GPL(nfs_net_id);
  1620. static int nfs_net_init(struct net *net)
  1621. {
  1622. nfs_clients_init(net);
  1623. return nfs_fs_proc_net_init(net);
  1624. }
  1625. static void nfs_net_exit(struct net *net)
  1626. {
  1627. nfs_fs_proc_net_exit(net);
  1628. nfs_cleanup_cb_ident_idr(net);
  1629. }
  1630. static struct pernet_operations nfs_net_ops = {
  1631. .init = nfs_net_init,
  1632. .exit = nfs_net_exit,
  1633. .id = &nfs_net_id,
  1634. .size = sizeof(struct nfs_net),
  1635. };
  1636. /*
  1637. * Initialize NFS
  1638. */
  1639. static int __init init_nfs_fs(void)
  1640. {
  1641. int err;
  1642. err = register_pernet_subsys(&nfs_net_ops);
  1643. if (err < 0)
  1644. goto out9;
  1645. err = nfs_fscache_register();
  1646. if (err < 0)
  1647. goto out8;
  1648. err = nfsiod_start();
  1649. if (err)
  1650. goto out7;
  1651. err = nfs_fs_proc_init();
  1652. if (err)
  1653. goto out6;
  1654. err = nfs_init_nfspagecache();
  1655. if (err)
  1656. goto out5;
  1657. err = nfs_init_inodecache();
  1658. if (err)
  1659. goto out4;
  1660. err = nfs_init_readpagecache();
  1661. if (err)
  1662. goto out3;
  1663. err = nfs_init_writepagecache();
  1664. if (err)
  1665. goto out2;
  1666. err = nfs_init_directcache();
  1667. if (err)
  1668. goto out1;
  1669. #ifdef CONFIG_PROC_FS
  1670. rpc_proc_register(&init_net, &nfs_rpcstat);
  1671. #endif
  1672. if ((err = register_nfs_fs()) != 0)
  1673. goto out0;
  1674. return 0;
  1675. out0:
  1676. #ifdef CONFIG_PROC_FS
  1677. rpc_proc_unregister(&init_net, "nfs");
  1678. #endif
  1679. nfs_destroy_directcache();
  1680. out1:
  1681. nfs_destroy_writepagecache();
  1682. out2:
  1683. nfs_destroy_readpagecache();
  1684. out3:
  1685. nfs_destroy_inodecache();
  1686. out4:
  1687. nfs_destroy_nfspagecache();
  1688. out5:
  1689. nfs_fs_proc_exit();
  1690. out6:
  1691. nfsiod_stop();
  1692. out7:
  1693. nfs_fscache_unregister();
  1694. out8:
  1695. unregister_pernet_subsys(&nfs_net_ops);
  1696. out9:
  1697. return err;
  1698. }
  1699. static void __exit exit_nfs_fs(void)
  1700. {
  1701. nfs_destroy_directcache();
  1702. nfs_destroy_writepagecache();
  1703. nfs_destroy_readpagecache();
  1704. nfs_destroy_inodecache();
  1705. nfs_destroy_nfspagecache();
  1706. nfs_fscache_unregister();
  1707. unregister_pernet_subsys(&nfs_net_ops);
  1708. #ifdef CONFIG_PROC_FS
  1709. rpc_proc_unregister(&init_net, "nfs");
  1710. #endif
  1711. unregister_nfs_fs();
  1712. nfs_fs_proc_exit();
  1713. nfsiod_stop();
  1714. }
  1715. /* Not quite true; I just maintain it */
  1716. MODULE_AUTHOR("Olaf Kirch <okir@monad.swb.de>");
  1717. MODULE_LICENSE("GPL");
  1718. module_param(enable_ino64, bool, 0644);
  1719. module_init(init_nfs_fs)
  1720. module_exit(exit_nfs_fs)