dir.c 36 KB

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  1. #include <linux/ceph/ceph_debug.h>
  2. #include <linux/spinlock.h>
  3. #include <linux/fs_struct.h>
  4. #include <linux/namei.h>
  5. #include <linux/slab.h>
  6. #include <linux/sched.h>
  7. #include "super.h"
  8. #include "mds_client.h"
  9. /*
  10. * Directory operations: readdir, lookup, create, link, unlink,
  11. * rename, etc.
  12. */
  13. /*
  14. * Ceph MDS operations are specified in terms of a base ino and
  15. * relative path. Thus, the client can specify an operation on a
  16. * specific inode (e.g., a getattr due to fstat(2)), or as a path
  17. * relative to, say, the root directory.
  18. *
  19. * Normally, we limit ourselves to strict inode ops (no path component)
  20. * or dentry operations (a single path component relative to an ino). The
  21. * exception to this is open_root_dentry(), which will open the mount
  22. * point by name.
  23. */
  24. const struct dentry_operations ceph_dentry_ops;
  25. /*
  26. * Initialize ceph dentry state.
  27. */
  28. int ceph_init_dentry(struct dentry *dentry)
  29. {
  30. struct ceph_dentry_info *di;
  31. if (dentry->d_fsdata)
  32. return 0;
  33. di = kmem_cache_alloc(ceph_dentry_cachep, GFP_NOFS | __GFP_ZERO);
  34. if (!di)
  35. return -ENOMEM; /* oh well */
  36. spin_lock(&dentry->d_lock);
  37. if (dentry->d_fsdata) {
  38. /* lost a race */
  39. kmem_cache_free(ceph_dentry_cachep, di);
  40. goto out_unlock;
  41. }
  42. if (ceph_snap(dentry->d_parent->d_inode) == CEPH_NOSNAP)
  43. d_set_d_op(dentry, &ceph_dentry_ops);
  44. else if (ceph_snap(dentry->d_parent->d_inode) == CEPH_SNAPDIR)
  45. d_set_d_op(dentry, &ceph_snapdir_dentry_ops);
  46. else
  47. d_set_d_op(dentry, &ceph_snap_dentry_ops);
  48. di->dentry = dentry;
  49. di->lease_session = NULL;
  50. dentry->d_time = jiffies;
  51. /* avoid reordering d_fsdata setup so that the check above is safe */
  52. smp_mb();
  53. dentry->d_fsdata = di;
  54. ceph_dentry_lru_add(dentry);
  55. out_unlock:
  56. spin_unlock(&dentry->d_lock);
  57. return 0;
  58. }
  59. struct inode *ceph_get_dentry_parent_inode(struct dentry *dentry)
  60. {
  61. struct inode *inode = NULL;
  62. if (!dentry)
  63. return NULL;
  64. spin_lock(&dentry->d_lock);
  65. if (!IS_ROOT(dentry)) {
  66. inode = dentry->d_parent->d_inode;
  67. ihold(inode);
  68. }
  69. spin_unlock(&dentry->d_lock);
  70. return inode;
  71. }
  72. /*
  73. * for readdir, we encode the directory frag and offset within that
  74. * frag into f_pos.
  75. */
  76. static unsigned fpos_frag(loff_t p)
  77. {
  78. return p >> 32;
  79. }
  80. static unsigned fpos_off(loff_t p)
  81. {
  82. return p & 0xffffffff;
  83. }
  84. static int fpos_cmp(loff_t l, loff_t r)
  85. {
  86. int v = ceph_frag_compare(fpos_frag(l), fpos_frag(r));
  87. if (v)
  88. return v;
  89. return (int)(fpos_off(l) - fpos_off(r));
  90. }
  91. /*
  92. * When possible, we try to satisfy a readdir by peeking at the
  93. * dcache. We make this work by carefully ordering dentries on
  94. * d_child when we initially get results back from the MDS, and
  95. * falling back to a "normal" sync readdir if any dentries in the dir
  96. * are dropped.
  97. *
  98. * Complete dir indicates that we have all dentries in the dir. It is
  99. * defined IFF we hold CEPH_CAP_FILE_SHARED (which will be revoked by
  100. * the MDS if/when the directory is modified).
  101. */
  102. static int __dcache_readdir(struct file *file, struct dir_context *ctx,
  103. u32 shared_gen)
  104. {
  105. struct ceph_file_info *fi = file->private_data;
  106. struct dentry *parent = file->f_path.dentry;
  107. struct inode *dir = parent->d_inode;
  108. struct list_head *p;
  109. struct dentry *dentry, *last;
  110. struct ceph_dentry_info *di;
  111. int err = 0;
  112. /* claim ref on last dentry we returned */
  113. last = fi->dentry;
  114. fi->dentry = NULL;
  115. dout("__dcache_readdir %p v%u at %llu (last %p)\n",
  116. dir, shared_gen, ctx->pos, last);
  117. spin_lock(&parent->d_lock);
  118. /* start at beginning? */
  119. if (ctx->pos == 2 || last == NULL ||
  120. fpos_cmp(ctx->pos, ceph_dentry(last)->offset) < 0) {
  121. if (list_empty(&parent->d_subdirs))
  122. goto out_unlock;
  123. p = parent->d_subdirs.prev;
  124. dout(" initial p %p/%p\n", p->prev, p->next);
  125. } else {
  126. p = last->d_child.prev;
  127. }
  128. more:
  129. dentry = list_entry(p, struct dentry, d_child);
  130. di = ceph_dentry(dentry);
  131. while (1) {
  132. dout(" p %p/%p %s d_subdirs %p/%p\n", p->prev, p->next,
  133. d_unhashed(dentry) ? "!hashed" : "hashed",
  134. parent->d_subdirs.prev, parent->d_subdirs.next);
  135. if (p == &parent->d_subdirs) {
  136. fi->flags |= CEPH_F_ATEND;
  137. goto out_unlock;
  138. }
  139. spin_lock_nested(&dentry->d_lock, DENTRY_D_LOCK_NESTED);
  140. if (di->lease_shared_gen == shared_gen &&
  141. !d_unhashed(dentry) && dentry->d_inode &&
  142. ceph_snap(dentry->d_inode) != CEPH_SNAPDIR &&
  143. ceph_ino(dentry->d_inode) != CEPH_INO_CEPH &&
  144. fpos_cmp(ctx->pos, di->offset) <= 0)
  145. break;
  146. dout(" skipping %p %pd at %llu (%llu)%s%s\n", dentry,
  147. dentry, di->offset,
  148. ctx->pos, d_unhashed(dentry) ? " unhashed" : "",
  149. !dentry->d_inode ? " null" : "");
  150. spin_unlock(&dentry->d_lock);
  151. p = p->prev;
  152. dentry = list_entry(p, struct dentry, d_child);
  153. di = ceph_dentry(dentry);
  154. }
  155. dget_dlock(dentry);
  156. spin_unlock(&dentry->d_lock);
  157. spin_unlock(&parent->d_lock);
  158. /* make sure a dentry wasn't dropped while we didn't have parent lock */
  159. if (!ceph_dir_is_complete_ordered(dir)) {
  160. dout(" lost dir complete on %p; falling back to mds\n", dir);
  161. dput(dentry);
  162. err = -EAGAIN;
  163. goto out;
  164. }
  165. dout(" %llu (%llu) dentry %p %pd %p\n", di->offset, ctx->pos,
  166. dentry, dentry, dentry->d_inode);
  167. if (!dir_emit(ctx, dentry->d_name.name,
  168. dentry->d_name.len,
  169. ceph_translate_ino(dentry->d_sb, dentry->d_inode->i_ino),
  170. dentry->d_inode->i_mode >> 12)) {
  171. if (last) {
  172. /* remember our position */
  173. fi->dentry = last;
  174. fi->next_offset = fpos_off(di->offset);
  175. }
  176. dput(dentry);
  177. return 0;
  178. }
  179. ctx->pos = di->offset + 1;
  180. if (last)
  181. dput(last);
  182. last = dentry;
  183. spin_lock(&parent->d_lock);
  184. p = p->prev; /* advance to next dentry */
  185. goto more;
  186. out_unlock:
  187. spin_unlock(&parent->d_lock);
  188. out:
  189. if (last)
  190. dput(last);
  191. return err;
  192. }
  193. /*
  194. * make note of the last dentry we read, so we can
  195. * continue at the same lexicographical point,
  196. * regardless of what dir changes take place on the
  197. * server.
  198. */
  199. static int note_last_dentry(struct ceph_file_info *fi, const char *name,
  200. int len)
  201. {
  202. kfree(fi->last_name);
  203. fi->last_name = kmalloc(len+1, GFP_NOFS);
  204. if (!fi->last_name)
  205. return -ENOMEM;
  206. memcpy(fi->last_name, name, len);
  207. fi->last_name[len] = 0;
  208. dout("note_last_dentry '%s'\n", fi->last_name);
  209. return 0;
  210. }
  211. static int ceph_readdir(struct file *file, struct dir_context *ctx)
  212. {
  213. struct ceph_file_info *fi = file->private_data;
  214. struct inode *inode = file_inode(file);
  215. struct ceph_inode_info *ci = ceph_inode(inode);
  216. struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
  217. struct ceph_mds_client *mdsc = fsc->mdsc;
  218. unsigned frag = fpos_frag(ctx->pos);
  219. int off = fpos_off(ctx->pos);
  220. int err;
  221. u32 ftype;
  222. struct ceph_mds_reply_info_parsed *rinfo;
  223. dout("readdir %p file %p frag %u off %u\n", inode, file, frag, off);
  224. if (fi->flags & CEPH_F_ATEND)
  225. return 0;
  226. /* always start with . and .. */
  227. if (ctx->pos == 0) {
  228. dout("readdir off 0 -> '.'\n");
  229. if (!dir_emit(ctx, ".", 1,
  230. ceph_translate_ino(inode->i_sb, inode->i_ino),
  231. inode->i_mode >> 12))
  232. return 0;
  233. ctx->pos = 1;
  234. off = 1;
  235. }
  236. if (ctx->pos == 1) {
  237. ino_t ino = parent_ino(file->f_path.dentry);
  238. dout("readdir off 1 -> '..'\n");
  239. if (!dir_emit(ctx, "..", 2,
  240. ceph_translate_ino(inode->i_sb, ino),
  241. inode->i_mode >> 12))
  242. return 0;
  243. ctx->pos = 2;
  244. off = 2;
  245. }
  246. /* can we use the dcache? */
  247. spin_lock(&ci->i_ceph_lock);
  248. if ((ctx->pos == 2 || fi->dentry) &&
  249. !ceph_test_mount_opt(fsc, NOASYNCREADDIR) &&
  250. ceph_snap(inode) != CEPH_SNAPDIR &&
  251. __ceph_dir_is_complete_ordered(ci) &&
  252. __ceph_caps_issued_mask(ci, CEPH_CAP_FILE_SHARED, 1)) {
  253. u32 shared_gen = ci->i_shared_gen;
  254. spin_unlock(&ci->i_ceph_lock);
  255. err = __dcache_readdir(file, ctx, shared_gen);
  256. if (err != -EAGAIN)
  257. return err;
  258. frag = fpos_frag(ctx->pos);
  259. off = fpos_off(ctx->pos);
  260. } else {
  261. spin_unlock(&ci->i_ceph_lock);
  262. }
  263. if (fi->dentry) {
  264. err = note_last_dentry(fi, fi->dentry->d_name.name,
  265. fi->dentry->d_name.len);
  266. if (err)
  267. return err;
  268. dput(fi->dentry);
  269. fi->dentry = NULL;
  270. }
  271. /* proceed with a normal readdir */
  272. if (ctx->pos == 2) {
  273. /* note dir version at start of readdir so we can tell
  274. * if any dentries get dropped */
  275. fi->dir_release_count = atomic_read(&ci->i_release_count);
  276. fi->dir_ordered_count = ci->i_ordered_count;
  277. }
  278. more:
  279. /* do we have the correct frag content buffered? */
  280. if (fi->frag != frag || fi->last_readdir == NULL) {
  281. struct ceph_mds_request *req;
  282. int op = ceph_snap(inode) == CEPH_SNAPDIR ?
  283. CEPH_MDS_OP_LSSNAP : CEPH_MDS_OP_READDIR;
  284. /* discard old result, if any */
  285. if (fi->last_readdir) {
  286. ceph_mdsc_put_request(fi->last_readdir);
  287. fi->last_readdir = NULL;
  288. }
  289. dout("readdir fetching %llx.%llx frag %x offset '%s'\n",
  290. ceph_vinop(inode), frag, fi->last_name);
  291. req = ceph_mdsc_create_request(mdsc, op, USE_AUTH_MDS);
  292. if (IS_ERR(req))
  293. return PTR_ERR(req);
  294. err = ceph_alloc_readdir_reply_buffer(req, inode);
  295. if (err) {
  296. ceph_mdsc_put_request(req);
  297. return err;
  298. }
  299. req->r_inode = inode;
  300. ihold(inode);
  301. req->r_dentry = dget(file->f_path.dentry);
  302. /* hints to request -> mds selection code */
  303. req->r_direct_mode = USE_AUTH_MDS;
  304. req->r_direct_hash = ceph_frag_value(frag);
  305. req->r_direct_is_hash = true;
  306. req->r_path2 = kstrdup(fi->last_name, GFP_NOFS);
  307. req->r_readdir_offset = fi->next_offset;
  308. req->r_args.readdir.frag = cpu_to_le32(frag);
  309. err = ceph_mdsc_do_request(mdsc, NULL, req);
  310. if (err < 0) {
  311. ceph_mdsc_put_request(req);
  312. return err;
  313. }
  314. dout("readdir got and parsed readdir result=%d"
  315. " on frag %x, end=%d, complete=%d\n", err, frag,
  316. (int)req->r_reply_info.dir_end,
  317. (int)req->r_reply_info.dir_complete);
  318. if (!req->r_did_prepopulate) {
  319. dout("readdir !did_prepopulate");
  320. /* preclude from marking dir complete */
  321. fi->dir_release_count--;
  322. }
  323. /* note next offset and last dentry name */
  324. rinfo = &req->r_reply_info;
  325. if (le32_to_cpu(rinfo->dir_dir->frag) != frag) {
  326. frag = le32_to_cpu(rinfo->dir_dir->frag);
  327. if (ceph_frag_is_leftmost(frag))
  328. fi->next_offset = 2;
  329. else
  330. fi->next_offset = 0;
  331. off = fi->next_offset;
  332. }
  333. fi->frag = frag;
  334. fi->offset = fi->next_offset;
  335. fi->last_readdir = req;
  336. if (req->r_reply_info.dir_end) {
  337. kfree(fi->last_name);
  338. fi->last_name = NULL;
  339. if (ceph_frag_is_rightmost(frag))
  340. fi->next_offset = 2;
  341. else
  342. fi->next_offset = 0;
  343. } else {
  344. err = note_last_dentry(fi,
  345. rinfo->dir_dname[rinfo->dir_nr-1],
  346. rinfo->dir_dname_len[rinfo->dir_nr-1]);
  347. if (err)
  348. return err;
  349. fi->next_offset += rinfo->dir_nr;
  350. }
  351. }
  352. rinfo = &fi->last_readdir->r_reply_info;
  353. dout("readdir frag %x num %d off %d chunkoff %d\n", frag,
  354. rinfo->dir_nr, off, fi->offset);
  355. ctx->pos = ceph_make_fpos(frag, off);
  356. while (off >= fi->offset && off - fi->offset < rinfo->dir_nr) {
  357. struct ceph_mds_reply_inode *in =
  358. rinfo->dir_in[off - fi->offset].in;
  359. struct ceph_vino vino;
  360. ino_t ino;
  361. dout("readdir off %d (%d/%d) -> %lld '%.*s' %p\n",
  362. off, off - fi->offset, rinfo->dir_nr, ctx->pos,
  363. rinfo->dir_dname_len[off - fi->offset],
  364. rinfo->dir_dname[off - fi->offset], in);
  365. BUG_ON(!in);
  366. ftype = le32_to_cpu(in->mode) >> 12;
  367. vino.ino = le64_to_cpu(in->ino);
  368. vino.snap = le64_to_cpu(in->snapid);
  369. ino = ceph_vino_to_ino(vino);
  370. if (!dir_emit(ctx,
  371. rinfo->dir_dname[off - fi->offset],
  372. rinfo->dir_dname_len[off - fi->offset],
  373. ceph_translate_ino(inode->i_sb, ino), ftype)) {
  374. dout("filldir stopping us...\n");
  375. return 0;
  376. }
  377. off++;
  378. ctx->pos++;
  379. }
  380. if (fi->last_name) {
  381. ceph_mdsc_put_request(fi->last_readdir);
  382. fi->last_readdir = NULL;
  383. goto more;
  384. }
  385. /* more frags? */
  386. if (!ceph_frag_is_rightmost(frag)) {
  387. frag = ceph_frag_next(frag);
  388. off = 0;
  389. ctx->pos = ceph_make_fpos(frag, off);
  390. dout("readdir next frag is %x\n", frag);
  391. goto more;
  392. }
  393. fi->flags |= CEPH_F_ATEND;
  394. /*
  395. * if dir_release_count still matches the dir, no dentries
  396. * were released during the whole readdir, and we should have
  397. * the complete dir contents in our cache.
  398. */
  399. spin_lock(&ci->i_ceph_lock);
  400. if (atomic_read(&ci->i_release_count) == fi->dir_release_count) {
  401. if (ci->i_ordered_count == fi->dir_ordered_count)
  402. dout(" marking %p complete and ordered\n", inode);
  403. else
  404. dout(" marking %p complete\n", inode);
  405. __ceph_dir_set_complete(ci, fi->dir_release_count,
  406. fi->dir_ordered_count);
  407. }
  408. spin_unlock(&ci->i_ceph_lock);
  409. dout("readdir %p file %p done.\n", inode, file);
  410. return 0;
  411. }
  412. static void reset_readdir(struct ceph_file_info *fi, unsigned frag)
  413. {
  414. if (fi->last_readdir) {
  415. ceph_mdsc_put_request(fi->last_readdir);
  416. fi->last_readdir = NULL;
  417. }
  418. kfree(fi->last_name);
  419. fi->last_name = NULL;
  420. if (ceph_frag_is_leftmost(frag))
  421. fi->next_offset = 2; /* compensate for . and .. */
  422. else
  423. fi->next_offset = 0;
  424. if (fi->dentry) {
  425. dput(fi->dentry);
  426. fi->dentry = NULL;
  427. }
  428. fi->flags &= ~CEPH_F_ATEND;
  429. }
  430. static loff_t ceph_dir_llseek(struct file *file, loff_t offset, int whence)
  431. {
  432. struct ceph_file_info *fi = file->private_data;
  433. struct inode *inode = file->f_mapping->host;
  434. loff_t old_offset = ceph_make_fpos(fi->frag, fi->next_offset);
  435. loff_t retval;
  436. mutex_lock(&inode->i_mutex);
  437. retval = -EINVAL;
  438. switch (whence) {
  439. case SEEK_END:
  440. offset += inode->i_size + 2; /* FIXME */
  441. break;
  442. case SEEK_CUR:
  443. offset += file->f_pos;
  444. case SEEK_SET:
  445. break;
  446. default:
  447. goto out;
  448. }
  449. if (offset >= 0) {
  450. if (offset != file->f_pos) {
  451. file->f_pos = offset;
  452. file->f_version = 0;
  453. fi->flags &= ~CEPH_F_ATEND;
  454. }
  455. retval = offset;
  456. /*
  457. * discard buffered readdir content on seekdir(0), or
  458. * seek to new frag, or seek prior to current chunk.
  459. */
  460. if (offset == 0 ||
  461. fpos_frag(offset) != fi->frag ||
  462. fpos_off(offset) < fi->offset) {
  463. dout("dir_llseek dropping %p content\n", file);
  464. reset_readdir(fi, fpos_frag(offset));
  465. }
  466. /* bump dir_release_count if we did a forward seek */
  467. if (fpos_cmp(offset, old_offset) > 0)
  468. fi->dir_release_count--;
  469. }
  470. out:
  471. mutex_unlock(&inode->i_mutex);
  472. return retval;
  473. }
  474. /*
  475. * Handle lookups for the hidden .snap directory.
  476. */
  477. int ceph_handle_snapdir(struct ceph_mds_request *req,
  478. struct dentry *dentry, int err)
  479. {
  480. struct ceph_fs_client *fsc = ceph_sb_to_client(dentry->d_sb);
  481. struct inode *parent = dentry->d_parent->d_inode; /* we hold i_mutex */
  482. /* .snap dir? */
  483. if (err == -ENOENT &&
  484. ceph_snap(parent) == CEPH_NOSNAP &&
  485. strcmp(dentry->d_name.name,
  486. fsc->mount_options->snapdir_name) == 0) {
  487. struct inode *inode = ceph_get_snapdir(parent);
  488. dout("ENOENT on snapdir %p '%pd', linking to snapdir %p\n",
  489. dentry, dentry, inode);
  490. BUG_ON(!d_unhashed(dentry));
  491. d_add(dentry, inode);
  492. err = 0;
  493. }
  494. return err;
  495. }
  496. /*
  497. * Figure out final result of a lookup/open request.
  498. *
  499. * Mainly, make sure we return the final req->r_dentry (if it already
  500. * existed) in place of the original VFS-provided dentry when they
  501. * differ.
  502. *
  503. * Gracefully handle the case where the MDS replies with -ENOENT and
  504. * no trace (which it may do, at its discretion, e.g., if it doesn't
  505. * care to issue a lease on the negative dentry).
  506. */
  507. struct dentry *ceph_finish_lookup(struct ceph_mds_request *req,
  508. struct dentry *dentry, int err)
  509. {
  510. if (err == -ENOENT) {
  511. /* no trace? */
  512. err = 0;
  513. if (!req->r_reply_info.head->is_dentry) {
  514. dout("ENOENT and no trace, dentry %p inode %p\n",
  515. dentry, dentry->d_inode);
  516. if (dentry->d_inode) {
  517. d_drop(dentry);
  518. err = -ENOENT;
  519. } else {
  520. d_add(dentry, NULL);
  521. }
  522. }
  523. }
  524. if (err)
  525. dentry = ERR_PTR(err);
  526. else if (dentry != req->r_dentry)
  527. dentry = dget(req->r_dentry); /* we got spliced */
  528. else
  529. dentry = NULL;
  530. return dentry;
  531. }
  532. static int is_root_ceph_dentry(struct inode *inode, struct dentry *dentry)
  533. {
  534. return ceph_ino(inode) == CEPH_INO_ROOT &&
  535. strncmp(dentry->d_name.name, ".ceph", 5) == 0;
  536. }
  537. /*
  538. * Look up a single dir entry. If there is a lookup intent, inform
  539. * the MDS so that it gets our 'caps wanted' value in a single op.
  540. */
  541. static struct dentry *ceph_lookup(struct inode *dir, struct dentry *dentry,
  542. unsigned int flags)
  543. {
  544. struct ceph_fs_client *fsc = ceph_sb_to_client(dir->i_sb);
  545. struct ceph_mds_client *mdsc = fsc->mdsc;
  546. struct ceph_mds_request *req;
  547. int op;
  548. int err;
  549. dout("lookup %p dentry %p '%pd'\n",
  550. dir, dentry, dentry);
  551. if (dentry->d_name.len > NAME_MAX)
  552. return ERR_PTR(-ENAMETOOLONG);
  553. err = ceph_init_dentry(dentry);
  554. if (err < 0)
  555. return ERR_PTR(err);
  556. /* can we conclude ENOENT locally? */
  557. if (dentry->d_inode == NULL) {
  558. struct ceph_inode_info *ci = ceph_inode(dir);
  559. struct ceph_dentry_info *di = ceph_dentry(dentry);
  560. spin_lock(&ci->i_ceph_lock);
  561. dout(" dir %p flags are %d\n", dir, ci->i_ceph_flags);
  562. if (strncmp(dentry->d_name.name,
  563. fsc->mount_options->snapdir_name,
  564. dentry->d_name.len) &&
  565. !is_root_ceph_dentry(dir, dentry) &&
  566. __ceph_dir_is_complete(ci) &&
  567. (__ceph_caps_issued_mask(ci, CEPH_CAP_FILE_SHARED, 1))) {
  568. spin_unlock(&ci->i_ceph_lock);
  569. dout(" dir %p complete, -ENOENT\n", dir);
  570. d_add(dentry, NULL);
  571. di->lease_shared_gen = ci->i_shared_gen;
  572. return NULL;
  573. }
  574. spin_unlock(&ci->i_ceph_lock);
  575. }
  576. op = ceph_snap(dir) == CEPH_SNAPDIR ?
  577. CEPH_MDS_OP_LOOKUPSNAP : CEPH_MDS_OP_LOOKUP;
  578. req = ceph_mdsc_create_request(mdsc, op, USE_ANY_MDS);
  579. if (IS_ERR(req))
  580. return ERR_CAST(req);
  581. req->r_dentry = dget(dentry);
  582. req->r_num_caps = 2;
  583. /* we only need inode linkage */
  584. req->r_args.getattr.mask = cpu_to_le32(CEPH_STAT_CAP_INODE);
  585. req->r_locked_dir = dir;
  586. err = ceph_mdsc_do_request(mdsc, NULL, req);
  587. err = ceph_handle_snapdir(req, dentry, err);
  588. dentry = ceph_finish_lookup(req, dentry, err);
  589. ceph_mdsc_put_request(req); /* will dput(dentry) */
  590. dout("lookup result=%p\n", dentry);
  591. return dentry;
  592. }
  593. /*
  594. * If we do a create but get no trace back from the MDS, follow up with
  595. * a lookup (the VFS expects us to link up the provided dentry).
  596. */
  597. int ceph_handle_notrace_create(struct inode *dir, struct dentry *dentry)
  598. {
  599. struct dentry *result = ceph_lookup(dir, dentry, 0);
  600. if (result && !IS_ERR(result)) {
  601. /*
  602. * We created the item, then did a lookup, and found
  603. * it was already linked to another inode we already
  604. * had in our cache (and thus got spliced). To not
  605. * confuse VFS (especially when inode is a directory),
  606. * we don't link our dentry to that inode, return an
  607. * error instead.
  608. *
  609. * This event should be rare and it happens only when
  610. * we talk to old MDS. Recent MDS does not send traceless
  611. * reply for request that creates new inode.
  612. */
  613. d_drop(result);
  614. return -ESTALE;
  615. }
  616. return PTR_ERR(result);
  617. }
  618. static int ceph_mknod(struct inode *dir, struct dentry *dentry,
  619. umode_t mode, dev_t rdev)
  620. {
  621. struct ceph_fs_client *fsc = ceph_sb_to_client(dir->i_sb);
  622. struct ceph_mds_client *mdsc = fsc->mdsc;
  623. struct ceph_mds_request *req;
  624. struct ceph_acls_info acls = {};
  625. int err;
  626. if (ceph_snap(dir) != CEPH_NOSNAP)
  627. return -EROFS;
  628. err = ceph_pre_init_acls(dir, &mode, &acls);
  629. if (err < 0)
  630. return err;
  631. dout("mknod in dir %p dentry %p mode 0%ho rdev %d\n",
  632. dir, dentry, mode, rdev);
  633. req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_MKNOD, USE_AUTH_MDS);
  634. if (IS_ERR(req)) {
  635. err = PTR_ERR(req);
  636. goto out;
  637. }
  638. req->r_dentry = dget(dentry);
  639. req->r_num_caps = 2;
  640. req->r_locked_dir = dir;
  641. req->r_args.mknod.mode = cpu_to_le32(mode);
  642. req->r_args.mknod.rdev = cpu_to_le32(rdev);
  643. req->r_dentry_drop = CEPH_CAP_FILE_SHARED;
  644. req->r_dentry_unless = CEPH_CAP_FILE_EXCL;
  645. if (acls.pagelist) {
  646. req->r_pagelist = acls.pagelist;
  647. acls.pagelist = NULL;
  648. }
  649. err = ceph_mdsc_do_request(mdsc, dir, req);
  650. if (!err && !req->r_reply_info.head->is_dentry)
  651. err = ceph_handle_notrace_create(dir, dentry);
  652. ceph_mdsc_put_request(req);
  653. out:
  654. if (!err)
  655. ceph_init_inode_acls(dentry->d_inode, &acls);
  656. else
  657. d_drop(dentry);
  658. ceph_release_acls_info(&acls);
  659. return err;
  660. }
  661. static int ceph_create(struct inode *dir, struct dentry *dentry, umode_t mode,
  662. bool excl)
  663. {
  664. return ceph_mknod(dir, dentry, mode, 0);
  665. }
  666. static int ceph_symlink(struct inode *dir, struct dentry *dentry,
  667. const char *dest)
  668. {
  669. struct ceph_fs_client *fsc = ceph_sb_to_client(dir->i_sb);
  670. struct ceph_mds_client *mdsc = fsc->mdsc;
  671. struct ceph_mds_request *req;
  672. int err;
  673. if (ceph_snap(dir) != CEPH_NOSNAP)
  674. return -EROFS;
  675. dout("symlink in dir %p dentry %p to '%s'\n", dir, dentry, dest);
  676. req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_SYMLINK, USE_AUTH_MDS);
  677. if (IS_ERR(req)) {
  678. err = PTR_ERR(req);
  679. goto out;
  680. }
  681. req->r_dentry = dget(dentry);
  682. req->r_num_caps = 2;
  683. req->r_path2 = kstrdup(dest, GFP_NOFS);
  684. req->r_locked_dir = dir;
  685. req->r_dentry_drop = CEPH_CAP_FILE_SHARED;
  686. req->r_dentry_unless = CEPH_CAP_FILE_EXCL;
  687. err = ceph_mdsc_do_request(mdsc, dir, req);
  688. if (!err && !req->r_reply_info.head->is_dentry)
  689. err = ceph_handle_notrace_create(dir, dentry);
  690. ceph_mdsc_put_request(req);
  691. out:
  692. if (err)
  693. d_drop(dentry);
  694. return err;
  695. }
  696. static int ceph_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode)
  697. {
  698. struct ceph_fs_client *fsc = ceph_sb_to_client(dir->i_sb);
  699. struct ceph_mds_client *mdsc = fsc->mdsc;
  700. struct ceph_mds_request *req;
  701. struct ceph_acls_info acls = {};
  702. int err = -EROFS;
  703. int op;
  704. if (ceph_snap(dir) == CEPH_SNAPDIR) {
  705. /* mkdir .snap/foo is a MKSNAP */
  706. op = CEPH_MDS_OP_MKSNAP;
  707. dout("mksnap dir %p snap '%pd' dn %p\n", dir,
  708. dentry, dentry);
  709. } else if (ceph_snap(dir) == CEPH_NOSNAP) {
  710. dout("mkdir dir %p dn %p mode 0%ho\n", dir, dentry, mode);
  711. op = CEPH_MDS_OP_MKDIR;
  712. } else {
  713. goto out;
  714. }
  715. mode |= S_IFDIR;
  716. err = ceph_pre_init_acls(dir, &mode, &acls);
  717. if (err < 0)
  718. goto out;
  719. req = ceph_mdsc_create_request(mdsc, op, USE_AUTH_MDS);
  720. if (IS_ERR(req)) {
  721. err = PTR_ERR(req);
  722. goto out;
  723. }
  724. req->r_dentry = dget(dentry);
  725. req->r_num_caps = 2;
  726. req->r_locked_dir = dir;
  727. req->r_args.mkdir.mode = cpu_to_le32(mode);
  728. req->r_dentry_drop = CEPH_CAP_FILE_SHARED;
  729. req->r_dentry_unless = CEPH_CAP_FILE_EXCL;
  730. if (acls.pagelist) {
  731. req->r_pagelist = acls.pagelist;
  732. acls.pagelist = NULL;
  733. }
  734. err = ceph_mdsc_do_request(mdsc, dir, req);
  735. if (!err &&
  736. !req->r_reply_info.head->is_target &&
  737. !req->r_reply_info.head->is_dentry)
  738. err = ceph_handle_notrace_create(dir, dentry);
  739. ceph_mdsc_put_request(req);
  740. out:
  741. if (!err)
  742. ceph_init_inode_acls(dentry->d_inode, &acls);
  743. else
  744. d_drop(dentry);
  745. ceph_release_acls_info(&acls);
  746. return err;
  747. }
  748. static int ceph_link(struct dentry *old_dentry, struct inode *dir,
  749. struct dentry *dentry)
  750. {
  751. struct ceph_fs_client *fsc = ceph_sb_to_client(dir->i_sb);
  752. struct ceph_mds_client *mdsc = fsc->mdsc;
  753. struct ceph_mds_request *req;
  754. int err;
  755. if (ceph_snap(dir) != CEPH_NOSNAP)
  756. return -EROFS;
  757. dout("link in dir %p old_dentry %p dentry %p\n", dir,
  758. old_dentry, dentry);
  759. req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_LINK, USE_AUTH_MDS);
  760. if (IS_ERR(req)) {
  761. d_drop(dentry);
  762. return PTR_ERR(req);
  763. }
  764. req->r_dentry = dget(dentry);
  765. req->r_num_caps = 2;
  766. req->r_old_dentry = dget(old_dentry);
  767. req->r_locked_dir = dir;
  768. req->r_dentry_drop = CEPH_CAP_FILE_SHARED;
  769. req->r_dentry_unless = CEPH_CAP_FILE_EXCL;
  770. /* release LINK_SHARED on source inode (mds will lock it) */
  771. req->r_old_inode_drop = CEPH_CAP_LINK_SHARED;
  772. err = ceph_mdsc_do_request(mdsc, dir, req);
  773. if (err) {
  774. d_drop(dentry);
  775. } else if (!req->r_reply_info.head->is_dentry) {
  776. ihold(old_dentry->d_inode);
  777. d_instantiate(dentry, old_dentry->d_inode);
  778. }
  779. ceph_mdsc_put_request(req);
  780. return err;
  781. }
  782. /*
  783. * For a soon-to-be unlinked file, drop the AUTH_RDCACHE caps. If it
  784. * looks like the link count will hit 0, drop any other caps (other
  785. * than PIN) we don't specifically want (due to the file still being
  786. * open).
  787. */
  788. static int drop_caps_for_unlink(struct inode *inode)
  789. {
  790. struct ceph_inode_info *ci = ceph_inode(inode);
  791. int drop = CEPH_CAP_LINK_SHARED | CEPH_CAP_LINK_EXCL;
  792. spin_lock(&ci->i_ceph_lock);
  793. if (inode->i_nlink == 1) {
  794. drop |= ~(__ceph_caps_wanted(ci) | CEPH_CAP_PIN);
  795. ci->i_ceph_flags |= CEPH_I_NODELAY;
  796. }
  797. spin_unlock(&ci->i_ceph_lock);
  798. return drop;
  799. }
  800. /*
  801. * rmdir and unlink are differ only by the metadata op code
  802. */
  803. static int ceph_unlink(struct inode *dir, struct dentry *dentry)
  804. {
  805. struct ceph_fs_client *fsc = ceph_sb_to_client(dir->i_sb);
  806. struct ceph_mds_client *mdsc = fsc->mdsc;
  807. struct inode *inode = dentry->d_inode;
  808. struct ceph_mds_request *req;
  809. int err = -EROFS;
  810. int op;
  811. if (ceph_snap(dir) == CEPH_SNAPDIR) {
  812. /* rmdir .snap/foo is RMSNAP */
  813. dout("rmsnap dir %p '%pd' dn %p\n", dir, dentry, dentry);
  814. op = CEPH_MDS_OP_RMSNAP;
  815. } else if (ceph_snap(dir) == CEPH_NOSNAP) {
  816. dout("unlink/rmdir dir %p dn %p inode %p\n",
  817. dir, dentry, inode);
  818. op = d_is_dir(dentry) ?
  819. CEPH_MDS_OP_RMDIR : CEPH_MDS_OP_UNLINK;
  820. } else
  821. goto out;
  822. req = ceph_mdsc_create_request(mdsc, op, USE_AUTH_MDS);
  823. if (IS_ERR(req)) {
  824. err = PTR_ERR(req);
  825. goto out;
  826. }
  827. req->r_dentry = dget(dentry);
  828. req->r_num_caps = 2;
  829. req->r_locked_dir = dir;
  830. req->r_dentry_drop = CEPH_CAP_FILE_SHARED;
  831. req->r_dentry_unless = CEPH_CAP_FILE_EXCL;
  832. req->r_inode_drop = drop_caps_for_unlink(inode);
  833. err = ceph_mdsc_do_request(mdsc, dir, req);
  834. if (!err && !req->r_reply_info.head->is_dentry)
  835. d_delete(dentry);
  836. ceph_mdsc_put_request(req);
  837. out:
  838. return err;
  839. }
  840. static int ceph_rename(struct inode *old_dir, struct dentry *old_dentry,
  841. struct inode *new_dir, struct dentry *new_dentry)
  842. {
  843. struct ceph_fs_client *fsc = ceph_sb_to_client(old_dir->i_sb);
  844. struct ceph_mds_client *mdsc = fsc->mdsc;
  845. struct ceph_mds_request *req;
  846. int err;
  847. if (ceph_snap(old_dir) != ceph_snap(new_dir))
  848. return -EXDEV;
  849. if (ceph_snap(old_dir) != CEPH_NOSNAP ||
  850. ceph_snap(new_dir) != CEPH_NOSNAP)
  851. return -EROFS;
  852. dout("rename dir %p dentry %p to dir %p dentry %p\n",
  853. old_dir, old_dentry, new_dir, new_dentry);
  854. req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_RENAME, USE_AUTH_MDS);
  855. if (IS_ERR(req))
  856. return PTR_ERR(req);
  857. ihold(old_dir);
  858. req->r_dentry = dget(new_dentry);
  859. req->r_num_caps = 2;
  860. req->r_old_dentry = dget(old_dentry);
  861. req->r_old_dentry_dir = old_dir;
  862. req->r_locked_dir = new_dir;
  863. req->r_old_dentry_drop = CEPH_CAP_FILE_SHARED;
  864. req->r_old_dentry_unless = CEPH_CAP_FILE_EXCL;
  865. req->r_dentry_drop = CEPH_CAP_FILE_SHARED;
  866. req->r_dentry_unless = CEPH_CAP_FILE_EXCL;
  867. /* release LINK_RDCACHE on source inode (mds will lock it) */
  868. req->r_old_inode_drop = CEPH_CAP_LINK_SHARED;
  869. if (new_dentry->d_inode)
  870. req->r_inode_drop = drop_caps_for_unlink(new_dentry->d_inode);
  871. err = ceph_mdsc_do_request(mdsc, old_dir, req);
  872. if (!err && !req->r_reply_info.head->is_dentry) {
  873. /*
  874. * Normally d_move() is done by fill_trace (called by
  875. * do_request, above). If there is no trace, we need
  876. * to do it here.
  877. */
  878. d_move(old_dentry, new_dentry);
  879. /* ensure target dentry is invalidated, despite
  880. rehashing bug in vfs_rename_dir */
  881. ceph_invalidate_dentry_lease(new_dentry);
  882. /* d_move screws up sibling dentries' offsets */
  883. ceph_dir_clear_complete(old_dir);
  884. ceph_dir_clear_complete(new_dir);
  885. }
  886. ceph_mdsc_put_request(req);
  887. return err;
  888. }
  889. /*
  890. * Ensure a dentry lease will no longer revalidate.
  891. */
  892. void ceph_invalidate_dentry_lease(struct dentry *dentry)
  893. {
  894. spin_lock(&dentry->d_lock);
  895. dentry->d_time = jiffies;
  896. ceph_dentry(dentry)->lease_shared_gen = 0;
  897. spin_unlock(&dentry->d_lock);
  898. }
  899. /*
  900. * Check if dentry lease is valid. If not, delete the lease. Try to
  901. * renew if the least is more than half up.
  902. */
  903. static int dentry_lease_is_valid(struct dentry *dentry)
  904. {
  905. struct ceph_dentry_info *di;
  906. struct ceph_mds_session *s;
  907. int valid = 0;
  908. u32 gen;
  909. unsigned long ttl;
  910. struct ceph_mds_session *session = NULL;
  911. struct inode *dir = NULL;
  912. u32 seq = 0;
  913. spin_lock(&dentry->d_lock);
  914. di = ceph_dentry(dentry);
  915. if (di->lease_session) {
  916. s = di->lease_session;
  917. spin_lock(&s->s_gen_ttl_lock);
  918. gen = s->s_cap_gen;
  919. ttl = s->s_cap_ttl;
  920. spin_unlock(&s->s_gen_ttl_lock);
  921. if (di->lease_gen == gen &&
  922. time_before(jiffies, dentry->d_time) &&
  923. time_before(jiffies, ttl)) {
  924. valid = 1;
  925. if (di->lease_renew_after &&
  926. time_after(jiffies, di->lease_renew_after)) {
  927. /* we should renew */
  928. dir = dentry->d_parent->d_inode;
  929. session = ceph_get_mds_session(s);
  930. seq = di->lease_seq;
  931. di->lease_renew_after = 0;
  932. di->lease_renew_from = jiffies;
  933. }
  934. }
  935. }
  936. spin_unlock(&dentry->d_lock);
  937. if (session) {
  938. ceph_mdsc_lease_send_msg(session, dir, dentry,
  939. CEPH_MDS_LEASE_RENEW, seq);
  940. ceph_put_mds_session(session);
  941. }
  942. dout("dentry_lease_is_valid - dentry %p = %d\n", dentry, valid);
  943. return valid;
  944. }
  945. /*
  946. * Check if directory-wide content lease/cap is valid.
  947. */
  948. static int dir_lease_is_valid(struct inode *dir, struct dentry *dentry)
  949. {
  950. struct ceph_inode_info *ci = ceph_inode(dir);
  951. struct ceph_dentry_info *di = ceph_dentry(dentry);
  952. int valid = 0;
  953. spin_lock(&ci->i_ceph_lock);
  954. if (ci->i_shared_gen == di->lease_shared_gen)
  955. valid = __ceph_caps_issued_mask(ci, CEPH_CAP_FILE_SHARED, 1);
  956. spin_unlock(&ci->i_ceph_lock);
  957. dout("dir_lease_is_valid dir %p v%u dentry %p v%u = %d\n",
  958. dir, (unsigned)ci->i_shared_gen, dentry,
  959. (unsigned)di->lease_shared_gen, valid);
  960. return valid;
  961. }
  962. /*
  963. * Check if cached dentry can be trusted.
  964. */
  965. static int ceph_d_revalidate(struct dentry *dentry, unsigned int flags)
  966. {
  967. int valid = 0;
  968. struct inode *dir;
  969. if (flags & LOOKUP_RCU)
  970. return -ECHILD;
  971. dout("d_revalidate %p '%pd' inode %p offset %lld\n", dentry,
  972. dentry, dentry->d_inode, ceph_dentry(dentry)->offset);
  973. dir = ceph_get_dentry_parent_inode(dentry);
  974. /* always trust cached snapped dentries, snapdir dentry */
  975. if (ceph_snap(dir) != CEPH_NOSNAP) {
  976. dout("d_revalidate %p '%pd' inode %p is SNAPPED\n", dentry,
  977. dentry, dentry->d_inode);
  978. valid = 1;
  979. } else if (dentry->d_inode &&
  980. ceph_snap(dentry->d_inode) == CEPH_SNAPDIR) {
  981. valid = 1;
  982. } else if (dentry_lease_is_valid(dentry) ||
  983. dir_lease_is_valid(dir, dentry)) {
  984. if (dentry->d_inode)
  985. valid = ceph_is_any_caps(dentry->d_inode);
  986. else
  987. valid = 1;
  988. }
  989. dout("d_revalidate %p %s\n", dentry, valid ? "valid" : "invalid");
  990. if (valid) {
  991. ceph_dentry_lru_touch(dentry);
  992. } else {
  993. ceph_dir_clear_complete(dir);
  994. }
  995. iput(dir);
  996. return valid;
  997. }
  998. /*
  999. * Release our ceph_dentry_info.
  1000. */
  1001. static void ceph_d_release(struct dentry *dentry)
  1002. {
  1003. struct ceph_dentry_info *di = ceph_dentry(dentry);
  1004. dout("d_release %p\n", dentry);
  1005. ceph_dentry_lru_del(dentry);
  1006. if (di->lease_session)
  1007. ceph_put_mds_session(di->lease_session);
  1008. kmem_cache_free(ceph_dentry_cachep, di);
  1009. dentry->d_fsdata = NULL;
  1010. }
  1011. static int ceph_snapdir_d_revalidate(struct dentry *dentry,
  1012. unsigned int flags)
  1013. {
  1014. /*
  1015. * Eventually, we'll want to revalidate snapped metadata
  1016. * too... probably...
  1017. */
  1018. return 1;
  1019. }
  1020. /*
  1021. * When the VFS prunes a dentry from the cache, we need to clear the
  1022. * complete flag on the parent directory.
  1023. *
  1024. * Called under dentry->d_lock.
  1025. */
  1026. static void ceph_d_prune(struct dentry *dentry)
  1027. {
  1028. dout("ceph_d_prune %p\n", dentry);
  1029. /* do we have a valid parent? */
  1030. if (IS_ROOT(dentry))
  1031. return;
  1032. /* if we are not hashed, we don't affect dir's completeness */
  1033. if (d_unhashed(dentry))
  1034. return;
  1035. /*
  1036. * we hold d_lock, so d_parent is stable, and d_fsdata is never
  1037. * cleared until d_release
  1038. */
  1039. ceph_dir_clear_complete(dentry->d_parent->d_inode);
  1040. }
  1041. /*
  1042. * read() on a dir. This weird interface hack only works if mounted
  1043. * with '-o dirstat'.
  1044. */
  1045. static ssize_t ceph_read_dir(struct file *file, char __user *buf, size_t size,
  1046. loff_t *ppos)
  1047. {
  1048. struct ceph_file_info *cf = file->private_data;
  1049. struct inode *inode = file_inode(file);
  1050. struct ceph_inode_info *ci = ceph_inode(inode);
  1051. int left;
  1052. const int bufsize = 1024;
  1053. if (!ceph_test_mount_opt(ceph_sb_to_client(inode->i_sb), DIRSTAT))
  1054. return -EISDIR;
  1055. if (!cf->dir_info) {
  1056. cf->dir_info = kmalloc(bufsize, GFP_NOFS);
  1057. if (!cf->dir_info)
  1058. return -ENOMEM;
  1059. cf->dir_info_len =
  1060. snprintf(cf->dir_info, bufsize,
  1061. "entries: %20lld\n"
  1062. " files: %20lld\n"
  1063. " subdirs: %20lld\n"
  1064. "rentries: %20lld\n"
  1065. " rfiles: %20lld\n"
  1066. " rsubdirs: %20lld\n"
  1067. "rbytes: %20lld\n"
  1068. "rctime: %10ld.%09ld\n",
  1069. ci->i_files + ci->i_subdirs,
  1070. ci->i_files,
  1071. ci->i_subdirs,
  1072. ci->i_rfiles + ci->i_rsubdirs,
  1073. ci->i_rfiles,
  1074. ci->i_rsubdirs,
  1075. ci->i_rbytes,
  1076. (long)ci->i_rctime.tv_sec,
  1077. (long)ci->i_rctime.tv_nsec);
  1078. }
  1079. if (*ppos >= cf->dir_info_len)
  1080. return 0;
  1081. size = min_t(unsigned, size, cf->dir_info_len-*ppos);
  1082. left = copy_to_user(buf, cf->dir_info + *ppos, size);
  1083. if (left == size)
  1084. return -EFAULT;
  1085. *ppos += (size - left);
  1086. return size - left;
  1087. }
  1088. /*
  1089. * an fsync() on a dir will wait for any uncommitted directory
  1090. * operations to commit.
  1091. */
  1092. static int ceph_dir_fsync(struct file *file, loff_t start, loff_t end,
  1093. int datasync)
  1094. {
  1095. struct inode *inode = file_inode(file);
  1096. struct ceph_inode_info *ci = ceph_inode(inode);
  1097. struct list_head *head = &ci->i_unsafe_dirops;
  1098. struct ceph_mds_request *req;
  1099. u64 last_tid;
  1100. int ret = 0;
  1101. dout("dir_fsync %p\n", inode);
  1102. ret = filemap_write_and_wait_range(inode->i_mapping, start, end);
  1103. if (ret)
  1104. return ret;
  1105. mutex_lock(&inode->i_mutex);
  1106. spin_lock(&ci->i_unsafe_lock);
  1107. if (list_empty(head))
  1108. goto out;
  1109. req = list_entry(head->prev,
  1110. struct ceph_mds_request, r_unsafe_dir_item);
  1111. last_tid = req->r_tid;
  1112. do {
  1113. ceph_mdsc_get_request(req);
  1114. spin_unlock(&ci->i_unsafe_lock);
  1115. dout("dir_fsync %p wait on tid %llu (until %llu)\n",
  1116. inode, req->r_tid, last_tid);
  1117. if (req->r_timeout) {
  1118. ret = wait_for_completion_timeout(
  1119. &req->r_safe_completion, req->r_timeout);
  1120. if (ret > 0)
  1121. ret = 0;
  1122. else if (ret == 0)
  1123. ret = -EIO; /* timed out */
  1124. } else {
  1125. wait_for_completion(&req->r_safe_completion);
  1126. }
  1127. ceph_mdsc_put_request(req);
  1128. spin_lock(&ci->i_unsafe_lock);
  1129. if (ret || list_empty(head))
  1130. break;
  1131. req = list_entry(head->next,
  1132. struct ceph_mds_request, r_unsafe_dir_item);
  1133. } while (req->r_tid < last_tid);
  1134. out:
  1135. spin_unlock(&ci->i_unsafe_lock);
  1136. mutex_unlock(&inode->i_mutex);
  1137. return ret;
  1138. }
  1139. /*
  1140. * We maintain a private dentry LRU.
  1141. *
  1142. * FIXME: this needs to be changed to a per-mds lru to be useful.
  1143. */
  1144. void ceph_dentry_lru_add(struct dentry *dn)
  1145. {
  1146. struct ceph_dentry_info *di = ceph_dentry(dn);
  1147. struct ceph_mds_client *mdsc;
  1148. dout("dentry_lru_add %p %p '%pd'\n", di, dn, dn);
  1149. mdsc = ceph_sb_to_client(dn->d_sb)->mdsc;
  1150. spin_lock(&mdsc->dentry_lru_lock);
  1151. list_add_tail(&di->lru, &mdsc->dentry_lru);
  1152. mdsc->num_dentry++;
  1153. spin_unlock(&mdsc->dentry_lru_lock);
  1154. }
  1155. void ceph_dentry_lru_touch(struct dentry *dn)
  1156. {
  1157. struct ceph_dentry_info *di = ceph_dentry(dn);
  1158. struct ceph_mds_client *mdsc;
  1159. dout("dentry_lru_touch %p %p '%pd' (offset %lld)\n", di, dn, dn,
  1160. di->offset);
  1161. mdsc = ceph_sb_to_client(dn->d_sb)->mdsc;
  1162. spin_lock(&mdsc->dentry_lru_lock);
  1163. list_move_tail(&di->lru, &mdsc->dentry_lru);
  1164. spin_unlock(&mdsc->dentry_lru_lock);
  1165. }
  1166. void ceph_dentry_lru_del(struct dentry *dn)
  1167. {
  1168. struct ceph_dentry_info *di = ceph_dentry(dn);
  1169. struct ceph_mds_client *mdsc;
  1170. dout("dentry_lru_del %p %p '%pd'\n", di, dn, dn);
  1171. mdsc = ceph_sb_to_client(dn->d_sb)->mdsc;
  1172. spin_lock(&mdsc->dentry_lru_lock);
  1173. list_del_init(&di->lru);
  1174. mdsc->num_dentry--;
  1175. spin_unlock(&mdsc->dentry_lru_lock);
  1176. }
  1177. /*
  1178. * Return name hash for a given dentry. This is dependent on
  1179. * the parent directory's hash function.
  1180. */
  1181. unsigned ceph_dentry_hash(struct inode *dir, struct dentry *dn)
  1182. {
  1183. struct ceph_inode_info *dci = ceph_inode(dir);
  1184. switch (dci->i_dir_layout.dl_dir_hash) {
  1185. case 0: /* for backward compat */
  1186. case CEPH_STR_HASH_LINUX:
  1187. return dn->d_name.hash;
  1188. default:
  1189. return ceph_str_hash(dci->i_dir_layout.dl_dir_hash,
  1190. dn->d_name.name, dn->d_name.len);
  1191. }
  1192. }
  1193. const struct file_operations ceph_dir_fops = {
  1194. .read = ceph_read_dir,
  1195. .iterate = ceph_readdir,
  1196. .llseek = ceph_dir_llseek,
  1197. .open = ceph_open,
  1198. .release = ceph_release,
  1199. .unlocked_ioctl = ceph_ioctl,
  1200. .fsync = ceph_dir_fsync,
  1201. };
  1202. const struct file_operations ceph_snapdir_fops = {
  1203. .iterate = ceph_readdir,
  1204. .llseek = ceph_dir_llseek,
  1205. .open = ceph_open,
  1206. .release = ceph_release,
  1207. };
  1208. const struct inode_operations ceph_dir_iops = {
  1209. .lookup = ceph_lookup,
  1210. .permission = ceph_permission,
  1211. .getattr = ceph_getattr,
  1212. .setattr = ceph_setattr,
  1213. .setxattr = ceph_setxattr,
  1214. .getxattr = ceph_getxattr,
  1215. .listxattr = ceph_listxattr,
  1216. .removexattr = ceph_removexattr,
  1217. .get_acl = ceph_get_acl,
  1218. .set_acl = ceph_set_acl,
  1219. .mknod = ceph_mknod,
  1220. .symlink = ceph_symlink,
  1221. .mkdir = ceph_mkdir,
  1222. .link = ceph_link,
  1223. .unlink = ceph_unlink,
  1224. .rmdir = ceph_unlink,
  1225. .rename = ceph_rename,
  1226. .create = ceph_create,
  1227. .atomic_open = ceph_atomic_open,
  1228. };
  1229. const struct inode_operations ceph_snapdir_iops = {
  1230. .lookup = ceph_lookup,
  1231. .permission = ceph_permission,
  1232. .getattr = ceph_getattr,
  1233. .mkdir = ceph_mkdir,
  1234. .rmdir = ceph_unlink,
  1235. };
  1236. const struct dentry_operations ceph_dentry_ops = {
  1237. .d_revalidate = ceph_d_revalidate,
  1238. .d_release = ceph_d_release,
  1239. .d_prune = ceph_d_prune,
  1240. };
  1241. const struct dentry_operations ceph_snapdir_dentry_ops = {
  1242. .d_revalidate = ceph_snapdir_d_revalidate,
  1243. .d_release = ceph_d_release,
  1244. };
  1245. const struct dentry_operations ceph_snap_dentry_ops = {
  1246. .d_release = ceph_d_release,
  1247. .d_prune = ceph_d_prune,
  1248. };