super.h 27 KB

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  1. #ifndef _FS_CEPH_SUPER_H
  2. #define _FS_CEPH_SUPER_H
  3. #include <linux/ceph/ceph_debug.h>
  4. #include <asm/unaligned.h>
  5. #include <linux/backing-dev.h>
  6. #include <linux/completion.h>
  7. #include <linux/exportfs.h>
  8. #include <linux/fs.h>
  9. #include <linux/mempool.h>
  10. #include <linux/pagemap.h>
  11. #include <linux/wait.h>
  12. #include <linux/writeback.h>
  13. #include <linux/slab.h>
  14. #include <linux/ceph/libceph.h>
  15. /* f_type in struct statfs */
  16. #define CEPH_SUPER_MAGIC 0x00c36400
  17. /* large granularity for statfs utilization stats to facilitate
  18. * large volume sizes on 32-bit machines. */
  19. #define CEPH_BLOCK_SHIFT 22 /* 4 MB */
  20. #define CEPH_BLOCK (1 << CEPH_BLOCK_SHIFT)
  21. #define CEPH_MOUNT_OPT_DIRSTAT (1<<4) /* `cat dirname` for stats */
  22. #define CEPH_MOUNT_OPT_RBYTES (1<<5) /* dir st_bytes = rbytes */
  23. #define CEPH_MOUNT_OPT_NOASYNCREADDIR (1<<7) /* no dcache readdir */
  24. #define CEPH_MOUNT_OPT_INO32 (1<<8) /* 32 bit inos */
  25. #define CEPH_MOUNT_OPT_DCACHE (1<<9) /* use dcache for readdir etc */
  26. #define CEPH_MOUNT_OPT_DEFAULT (CEPH_MOUNT_OPT_RBYTES)
  27. #define ceph_set_mount_opt(fsc, opt) \
  28. (fsc)->mount_options->flags |= CEPH_MOUNT_OPT_##opt;
  29. #define ceph_test_mount_opt(fsc, opt) \
  30. (!!((fsc)->mount_options->flags & CEPH_MOUNT_OPT_##opt))
  31. #define CEPH_RSIZE_DEFAULT 0 /* max read size */
  32. #define CEPH_RASIZE_DEFAULT (8192*1024) /* readahead */
  33. #define CEPH_MAX_READDIR_DEFAULT 1024
  34. #define CEPH_MAX_READDIR_BYTES_DEFAULT (512*1024)
  35. #define CEPH_SNAPDIRNAME_DEFAULT ".snap"
  36. struct ceph_mount_options {
  37. int flags;
  38. int sb_flags;
  39. int wsize; /* max write size */
  40. int rsize; /* max read size */
  41. int rasize; /* max readahead */
  42. int congestion_kb; /* max writeback in flight */
  43. int caps_wanted_delay_min, caps_wanted_delay_max;
  44. int cap_release_safety;
  45. int max_readdir; /* max readdir result (entires) */
  46. int max_readdir_bytes; /* max readdir result (bytes) */
  47. /*
  48. * everything above this point can be memcmp'd; everything below
  49. * is handled in compare_mount_options()
  50. */
  51. char *snapdir_name; /* default ".snap" */
  52. };
  53. struct ceph_fs_client {
  54. struct super_block *sb;
  55. struct ceph_mount_options *mount_options;
  56. struct ceph_client *client;
  57. unsigned long mount_state;
  58. int min_caps; /* min caps i added */
  59. struct ceph_mds_client *mdsc;
  60. /* writeback */
  61. mempool_t *wb_pagevec_pool;
  62. struct workqueue_struct *wb_wq;
  63. struct workqueue_struct *pg_inv_wq;
  64. struct workqueue_struct *trunc_wq;
  65. atomic_long_t writeback_count;
  66. struct backing_dev_info backing_dev_info;
  67. #ifdef CONFIG_DEBUG_FS
  68. struct dentry *debugfs_dentry_lru, *debugfs_caps;
  69. struct dentry *debugfs_congestion_kb;
  70. struct dentry *debugfs_bdi;
  71. struct dentry *debugfs_mdsc, *debugfs_mdsmap;
  72. #endif
  73. };
  74. /*
  75. * File i/o capability. This tracks shared state with the metadata
  76. * server that allows us to cache or writeback attributes or to read
  77. * and write data. For any given inode, we should have one or more
  78. * capabilities, one issued by each metadata server, and our
  79. * cumulative access is the OR of all issued capabilities.
  80. *
  81. * Each cap is referenced by the inode's i_caps rbtree and by per-mds
  82. * session capability lists.
  83. */
  84. struct ceph_cap {
  85. struct ceph_inode_info *ci;
  86. struct rb_node ci_node; /* per-ci cap tree */
  87. struct ceph_mds_session *session;
  88. struct list_head session_caps; /* per-session caplist */
  89. int mds;
  90. u64 cap_id; /* unique cap id (mds provided) */
  91. int issued; /* latest, from the mds */
  92. int implemented; /* implemented superset of issued (for revocation) */
  93. int mds_wanted;
  94. u32 seq, issue_seq, mseq;
  95. u32 cap_gen; /* active/stale cycle */
  96. unsigned long last_used;
  97. struct list_head caps_item;
  98. };
  99. #define CHECK_CAPS_NODELAY 1 /* do not delay any further */
  100. #define CHECK_CAPS_AUTHONLY 2 /* only check auth cap */
  101. #define CHECK_CAPS_FLUSH 4 /* flush any dirty caps */
  102. /*
  103. * Snapped cap state that is pending flush to mds. When a snapshot occurs,
  104. * we first complete any in-process sync writes and writeback any dirty
  105. * data before flushing the snapped state (tracked here) back to the MDS.
  106. */
  107. struct ceph_cap_snap {
  108. atomic_t nref;
  109. struct ceph_inode_info *ci;
  110. struct list_head ci_item, flushing_item;
  111. u64 follows, flush_tid;
  112. int issued, dirty;
  113. struct ceph_snap_context *context;
  114. umode_t mode;
  115. uid_t uid;
  116. gid_t gid;
  117. struct ceph_buffer *xattr_blob;
  118. u64 xattr_version;
  119. u64 size;
  120. struct timespec mtime, atime, ctime;
  121. u64 time_warp_seq;
  122. int writing; /* a sync write is still in progress */
  123. int dirty_pages; /* dirty pages awaiting writeback */
  124. };
  125. static inline void ceph_put_cap_snap(struct ceph_cap_snap *capsnap)
  126. {
  127. if (atomic_dec_and_test(&capsnap->nref)) {
  128. if (capsnap->xattr_blob)
  129. ceph_buffer_put(capsnap->xattr_blob);
  130. kfree(capsnap);
  131. }
  132. }
  133. /*
  134. * The frag tree describes how a directory is fragmented, potentially across
  135. * multiple metadata servers. It is also used to indicate points where
  136. * metadata authority is delegated, and whether/where metadata is replicated.
  137. *
  138. * A _leaf_ frag will be present in the i_fragtree IFF there is
  139. * delegation info. That is, if mds >= 0 || ndist > 0.
  140. */
  141. #define CEPH_MAX_DIRFRAG_REP 4
  142. struct ceph_inode_frag {
  143. struct rb_node node;
  144. /* fragtree state */
  145. u32 frag;
  146. int split_by; /* i.e. 2^(split_by) children */
  147. /* delegation and replication info */
  148. int mds; /* -1 if same authority as parent */
  149. int ndist; /* >0 if replicated */
  150. int dist[CEPH_MAX_DIRFRAG_REP];
  151. };
  152. /*
  153. * We cache inode xattrs as an encoded blob until they are first used,
  154. * at which point we parse them into an rbtree.
  155. */
  156. struct ceph_inode_xattr {
  157. struct rb_node node;
  158. const char *name;
  159. int name_len;
  160. const char *val;
  161. int val_len;
  162. int dirty;
  163. int should_free_name;
  164. int should_free_val;
  165. };
  166. /*
  167. * Ceph dentry state
  168. */
  169. struct ceph_dentry_info {
  170. unsigned long flags;
  171. struct ceph_mds_session *lease_session;
  172. u32 lease_gen, lease_shared_gen;
  173. u32 lease_seq;
  174. unsigned long lease_renew_after, lease_renew_from;
  175. struct list_head lru;
  176. struct dentry *dentry;
  177. u64 time;
  178. u64 offset;
  179. };
  180. /*
  181. * dentry flags
  182. *
  183. * The locking for D_COMPLETE is a bit odd:
  184. * - we can clear it at almost any time (see ceph_d_prune)
  185. * - it is only meaningful if:
  186. * - we hold dir inode i_ceph_lock
  187. * - we hold dir FILE_SHARED caps
  188. * - the dentry D_COMPLETE is set
  189. */
  190. #define CEPH_D_COMPLETE 1 /* if set, d_u.d_subdirs is complete directory */
  191. struct ceph_inode_xattrs_info {
  192. /*
  193. * (still encoded) xattr blob. we avoid the overhead of parsing
  194. * this until someone actually calls getxattr, etc.
  195. *
  196. * blob->vec.iov_len == 4 implies there are no xattrs; blob ==
  197. * NULL means we don't know.
  198. */
  199. struct ceph_buffer *blob, *prealloc_blob;
  200. struct rb_root index;
  201. bool dirty;
  202. int count;
  203. int names_size;
  204. int vals_size;
  205. u64 version, index_version;
  206. };
  207. /*
  208. * Ceph inode.
  209. */
  210. struct ceph_inode_info {
  211. struct ceph_vino i_vino; /* ceph ino + snap */
  212. spinlock_t i_ceph_lock;
  213. u64 i_version;
  214. u32 i_time_warp_seq;
  215. unsigned i_ceph_flags;
  216. unsigned long i_release_count;
  217. struct ceph_dir_layout i_dir_layout;
  218. struct ceph_file_layout i_layout;
  219. char *i_symlink;
  220. /* for dirs */
  221. struct timespec i_rctime;
  222. u64 i_rbytes, i_rfiles, i_rsubdirs;
  223. u64 i_files, i_subdirs;
  224. u64 i_max_offset; /* largest readdir offset, set with D_COMPLETE */
  225. struct rb_root i_fragtree;
  226. struct mutex i_fragtree_mutex;
  227. struct ceph_inode_xattrs_info i_xattrs;
  228. /* capabilities. protected _both_ by i_ceph_lock and cap->session's
  229. * s_mutex. */
  230. struct rb_root i_caps; /* cap list */
  231. struct ceph_cap *i_auth_cap; /* authoritative cap, if any */
  232. unsigned i_dirty_caps, i_flushing_caps; /* mask of dirtied fields */
  233. struct list_head i_dirty_item, i_flushing_item;
  234. u64 i_cap_flush_seq;
  235. /* we need to track cap writeback on a per-cap-bit basis, to allow
  236. * overlapping, pipelined cap flushes to the mds. we can probably
  237. * reduce the tid to 8 bits if we're concerned about inode size. */
  238. u16 i_cap_flush_last_tid, i_cap_flush_tid[CEPH_CAP_BITS];
  239. wait_queue_head_t i_cap_wq; /* threads waiting on a capability */
  240. unsigned long i_hold_caps_min; /* jiffies */
  241. unsigned long i_hold_caps_max; /* jiffies */
  242. struct list_head i_cap_delay_list; /* for delayed cap release to mds */
  243. int i_cap_exporting_mds; /* to handle cap migration between */
  244. unsigned i_cap_exporting_mseq; /* mds's. */
  245. unsigned i_cap_exporting_issued;
  246. struct ceph_cap_reservation i_cap_migration_resv;
  247. struct list_head i_cap_snaps; /* snapped state pending flush to mds */
  248. struct ceph_snap_context *i_head_snapc; /* set if wr_buffer_head > 0 or
  249. dirty|flushing caps */
  250. unsigned i_snap_caps; /* cap bits for snapped files */
  251. int i_nr_by_mode[CEPH_FILE_MODE_NUM]; /* open file counts */
  252. u32 i_truncate_seq; /* last truncate to smaller size */
  253. u64 i_truncate_size; /* and the size we last truncated down to */
  254. int i_truncate_pending; /* still need to call vmtruncate */
  255. u64 i_max_size; /* max file size authorized by mds */
  256. u64 i_reported_size; /* (max_)size reported to or requested of mds */
  257. u64 i_wanted_max_size; /* offset we'd like to write too */
  258. u64 i_requested_max_size; /* max_size we've requested */
  259. /* held references to caps */
  260. int i_pin_ref;
  261. int i_rd_ref, i_rdcache_ref, i_wr_ref, i_wb_ref;
  262. int i_wrbuffer_ref, i_wrbuffer_ref_head;
  263. u32 i_shared_gen; /* increment each time we get FILE_SHARED */
  264. u32 i_rdcache_gen; /* incremented each time we get FILE_CACHE. */
  265. u32 i_rdcache_revoking; /* RDCACHE gen to async invalidate, if any */
  266. struct list_head i_unsafe_writes; /* uncommitted sync writes */
  267. struct list_head i_unsafe_dirops; /* uncommitted mds dir ops */
  268. spinlock_t i_unsafe_lock;
  269. struct ceph_snap_realm *i_snap_realm; /* snap realm (if caps) */
  270. int i_snap_realm_counter; /* snap realm (if caps) */
  271. struct list_head i_snap_realm_item;
  272. struct list_head i_snap_flush_item;
  273. struct work_struct i_wb_work; /* writeback work */
  274. struct work_struct i_pg_inv_work; /* page invalidation work */
  275. struct work_struct i_vmtruncate_work;
  276. struct inode vfs_inode; /* at end */
  277. };
  278. static inline struct ceph_inode_info *ceph_inode(struct inode *inode)
  279. {
  280. return container_of(inode, struct ceph_inode_info, vfs_inode);
  281. }
  282. static inline struct ceph_fs_client *ceph_inode_to_client(struct inode *inode)
  283. {
  284. return (struct ceph_fs_client *)inode->i_sb->s_fs_info;
  285. }
  286. static inline struct ceph_fs_client *ceph_sb_to_client(struct super_block *sb)
  287. {
  288. return (struct ceph_fs_client *)sb->s_fs_info;
  289. }
  290. static inline struct ceph_vino ceph_vino(struct inode *inode)
  291. {
  292. return ceph_inode(inode)->i_vino;
  293. }
  294. /*
  295. * ino_t is <64 bits on many architectures, blech.
  296. *
  297. * i_ino (kernel inode) st_ino (userspace)
  298. * i386 32 32
  299. * x86_64+ino32 64 32
  300. * x86_64 64 64
  301. */
  302. static inline u32 ceph_ino_to_ino32(__u64 vino)
  303. {
  304. u32 ino = vino & 0xffffffff;
  305. ino ^= vino >> 32;
  306. if (!ino)
  307. ino = 2;
  308. return ino;
  309. }
  310. /*
  311. * kernel i_ino value
  312. */
  313. static inline ino_t ceph_vino_to_ino(struct ceph_vino vino)
  314. {
  315. #if BITS_PER_LONG == 32
  316. return ceph_ino_to_ino32(vino.ino);
  317. #else
  318. return (ino_t)vino.ino;
  319. #endif
  320. }
  321. /*
  322. * user-visible ino (stat, filldir)
  323. */
  324. #if BITS_PER_LONG == 32
  325. static inline ino_t ceph_translate_ino(struct super_block *sb, ino_t ino)
  326. {
  327. return ino;
  328. }
  329. #else
  330. static inline ino_t ceph_translate_ino(struct super_block *sb, ino_t ino)
  331. {
  332. if (ceph_test_mount_opt(ceph_sb_to_client(sb), INO32))
  333. ino = ceph_ino_to_ino32(ino);
  334. return ino;
  335. }
  336. #endif
  337. /* for printf-style formatting */
  338. #define ceph_vinop(i) ceph_inode(i)->i_vino.ino, ceph_inode(i)->i_vino.snap
  339. static inline u64 ceph_ino(struct inode *inode)
  340. {
  341. return ceph_inode(inode)->i_vino.ino;
  342. }
  343. static inline u64 ceph_snap(struct inode *inode)
  344. {
  345. return ceph_inode(inode)->i_vino.snap;
  346. }
  347. static inline int ceph_ino_compare(struct inode *inode, void *data)
  348. {
  349. struct ceph_vino *pvino = (struct ceph_vino *)data;
  350. struct ceph_inode_info *ci = ceph_inode(inode);
  351. return ci->i_vino.ino == pvino->ino &&
  352. ci->i_vino.snap == pvino->snap;
  353. }
  354. static inline struct inode *ceph_find_inode(struct super_block *sb,
  355. struct ceph_vino vino)
  356. {
  357. ino_t t = ceph_vino_to_ino(vino);
  358. return ilookup5(sb, t, ceph_ino_compare, &vino);
  359. }
  360. /*
  361. * Ceph inode.
  362. */
  363. #define CEPH_I_NODELAY 4 /* do not delay cap release */
  364. #define CEPH_I_FLUSH 8 /* do not delay flush of dirty metadata */
  365. #define CEPH_I_NOFLUSH 16 /* do not flush dirty caps */
  366. static inline void ceph_i_clear(struct inode *inode, unsigned mask)
  367. {
  368. struct ceph_inode_info *ci = ceph_inode(inode);
  369. spin_lock(&ci->i_ceph_lock);
  370. ci->i_ceph_flags &= ~mask;
  371. spin_unlock(&ci->i_ceph_lock);
  372. }
  373. static inline void ceph_i_set(struct inode *inode, unsigned mask)
  374. {
  375. struct ceph_inode_info *ci = ceph_inode(inode);
  376. spin_lock(&ci->i_ceph_lock);
  377. ci->i_ceph_flags |= mask;
  378. spin_unlock(&ci->i_ceph_lock);
  379. }
  380. static inline bool ceph_i_test(struct inode *inode, unsigned mask)
  381. {
  382. struct ceph_inode_info *ci = ceph_inode(inode);
  383. bool r;
  384. spin_lock(&ci->i_ceph_lock);
  385. r = (ci->i_ceph_flags & mask) == mask;
  386. spin_unlock(&ci->i_ceph_lock);
  387. return r;
  388. }
  389. /* find a specific frag @f */
  390. extern struct ceph_inode_frag *__ceph_find_frag(struct ceph_inode_info *ci,
  391. u32 f);
  392. /*
  393. * choose fragment for value @v. copy frag content to pfrag, if leaf
  394. * exists
  395. */
  396. extern u32 ceph_choose_frag(struct ceph_inode_info *ci, u32 v,
  397. struct ceph_inode_frag *pfrag,
  398. int *found);
  399. static inline struct ceph_dentry_info *ceph_dentry(struct dentry *dentry)
  400. {
  401. return (struct ceph_dentry_info *)dentry->d_fsdata;
  402. }
  403. static inline loff_t ceph_make_fpos(unsigned frag, unsigned off)
  404. {
  405. return ((loff_t)frag << 32) | (loff_t)off;
  406. }
  407. /*
  408. * set/clear directory D_COMPLETE flag
  409. */
  410. void ceph_dir_set_complete(struct inode *inode);
  411. void ceph_dir_clear_complete(struct inode *inode);
  412. bool ceph_dir_test_complete(struct inode *inode);
  413. /*
  414. * caps helpers
  415. */
  416. static inline bool __ceph_is_any_real_caps(struct ceph_inode_info *ci)
  417. {
  418. return !RB_EMPTY_ROOT(&ci->i_caps);
  419. }
  420. extern int __ceph_caps_issued(struct ceph_inode_info *ci, int *implemented);
  421. extern int __ceph_caps_issued_mask(struct ceph_inode_info *ci, int mask, int t);
  422. extern int __ceph_caps_issued_other(struct ceph_inode_info *ci,
  423. struct ceph_cap *cap);
  424. static inline int ceph_caps_issued(struct ceph_inode_info *ci)
  425. {
  426. int issued;
  427. spin_lock(&ci->i_ceph_lock);
  428. issued = __ceph_caps_issued(ci, NULL);
  429. spin_unlock(&ci->i_ceph_lock);
  430. return issued;
  431. }
  432. static inline int ceph_caps_issued_mask(struct ceph_inode_info *ci, int mask,
  433. int touch)
  434. {
  435. int r;
  436. spin_lock(&ci->i_ceph_lock);
  437. r = __ceph_caps_issued_mask(ci, mask, touch);
  438. spin_unlock(&ci->i_ceph_lock);
  439. return r;
  440. }
  441. static inline int __ceph_caps_dirty(struct ceph_inode_info *ci)
  442. {
  443. return ci->i_dirty_caps | ci->i_flushing_caps;
  444. }
  445. extern int __ceph_mark_dirty_caps(struct ceph_inode_info *ci, int mask);
  446. extern int ceph_caps_revoking(struct ceph_inode_info *ci, int mask);
  447. extern int __ceph_caps_used(struct ceph_inode_info *ci);
  448. extern int __ceph_caps_file_wanted(struct ceph_inode_info *ci);
  449. /*
  450. * wanted, by virtue of open file modes AND cap refs (buffered/cached data)
  451. */
  452. static inline int __ceph_caps_wanted(struct ceph_inode_info *ci)
  453. {
  454. int w = __ceph_caps_file_wanted(ci) | __ceph_caps_used(ci);
  455. if (w & CEPH_CAP_FILE_BUFFER)
  456. w |= CEPH_CAP_FILE_EXCL; /* we want EXCL if dirty data */
  457. return w;
  458. }
  459. /* what the mds thinks we want */
  460. extern int __ceph_caps_mds_wanted(struct ceph_inode_info *ci);
  461. extern void ceph_caps_init(struct ceph_mds_client *mdsc);
  462. extern void ceph_caps_finalize(struct ceph_mds_client *mdsc);
  463. extern void ceph_adjust_min_caps(struct ceph_mds_client *mdsc, int delta);
  464. extern int ceph_reserve_caps(struct ceph_mds_client *mdsc,
  465. struct ceph_cap_reservation *ctx, int need);
  466. extern int ceph_unreserve_caps(struct ceph_mds_client *mdsc,
  467. struct ceph_cap_reservation *ctx);
  468. extern void ceph_reservation_status(struct ceph_fs_client *client,
  469. int *total, int *avail, int *used,
  470. int *reserved, int *min);
  471. /*
  472. * we keep buffered readdir results attached to file->private_data
  473. */
  474. #define CEPH_F_SYNC 1
  475. #define CEPH_F_ATEND 2
  476. struct ceph_file_info {
  477. short fmode; /* initialized on open */
  478. short flags; /* CEPH_F_* */
  479. /* readdir: position within the dir */
  480. u32 frag;
  481. struct ceph_mds_request *last_readdir;
  482. /* readdir: position within a frag */
  483. unsigned offset; /* offset of last chunk, adjusted for . and .. */
  484. u64 next_offset; /* offset of next chunk (last_name's + 1) */
  485. char *last_name; /* last entry in previous chunk */
  486. struct dentry *dentry; /* next dentry (for dcache readdir) */
  487. unsigned long dir_release_count;
  488. /* used for -o dirstat read() on directory thing */
  489. char *dir_info;
  490. int dir_info_len;
  491. };
  492. /*
  493. * A "snap realm" describes a subset of the file hierarchy sharing
  494. * the same set of snapshots that apply to it. The realms themselves
  495. * are organized into a hierarchy, such that children inherit (some of)
  496. * the snapshots of their parents.
  497. *
  498. * All inodes within the realm that have capabilities are linked into a
  499. * per-realm list.
  500. */
  501. struct ceph_snap_realm {
  502. u64 ino;
  503. atomic_t nref;
  504. struct rb_node node;
  505. u64 created, seq;
  506. u64 parent_ino;
  507. u64 parent_since; /* snapid when our current parent became so */
  508. u64 *prior_parent_snaps; /* snaps inherited from any parents we */
  509. int num_prior_parent_snaps; /* had prior to parent_since */
  510. u64 *snaps; /* snaps specific to this realm */
  511. int num_snaps;
  512. struct ceph_snap_realm *parent;
  513. struct list_head children; /* list of child realms */
  514. struct list_head child_item;
  515. struct list_head empty_item; /* if i have ref==0 */
  516. struct list_head dirty_item; /* if realm needs new context */
  517. /* the current set of snaps for this realm */
  518. struct ceph_snap_context *cached_context;
  519. struct list_head inodes_with_caps;
  520. spinlock_t inodes_with_caps_lock;
  521. };
  522. static inline int default_congestion_kb(void)
  523. {
  524. int congestion_kb;
  525. /*
  526. * Copied from NFS
  527. *
  528. * congestion size, scale with available memory.
  529. *
  530. * 64MB: 8192k
  531. * 128MB: 11585k
  532. * 256MB: 16384k
  533. * 512MB: 23170k
  534. * 1GB: 32768k
  535. * 2GB: 46340k
  536. * 4GB: 65536k
  537. * 8GB: 92681k
  538. * 16GB: 131072k
  539. *
  540. * This allows larger machines to have larger/more transfers.
  541. * Limit the default to 256M
  542. */
  543. congestion_kb = (16*int_sqrt(totalram_pages)) << (PAGE_SHIFT-10);
  544. if (congestion_kb > 256*1024)
  545. congestion_kb = 256*1024;
  546. return congestion_kb;
  547. }
  548. /* snap.c */
  549. struct ceph_snap_realm *ceph_lookup_snap_realm(struct ceph_mds_client *mdsc,
  550. u64 ino);
  551. extern void ceph_get_snap_realm(struct ceph_mds_client *mdsc,
  552. struct ceph_snap_realm *realm);
  553. extern void ceph_put_snap_realm(struct ceph_mds_client *mdsc,
  554. struct ceph_snap_realm *realm);
  555. extern int ceph_update_snap_trace(struct ceph_mds_client *m,
  556. void *p, void *e, bool deletion);
  557. extern void ceph_handle_snap(struct ceph_mds_client *mdsc,
  558. struct ceph_mds_session *session,
  559. struct ceph_msg *msg);
  560. extern void ceph_queue_cap_snap(struct ceph_inode_info *ci);
  561. extern int __ceph_finish_cap_snap(struct ceph_inode_info *ci,
  562. struct ceph_cap_snap *capsnap);
  563. extern void ceph_cleanup_empty_realms(struct ceph_mds_client *mdsc);
  564. /*
  565. * a cap_snap is "pending" if it is still awaiting an in-progress
  566. * sync write (that may/may not still update size, mtime, etc.).
  567. */
  568. static inline bool __ceph_have_pending_cap_snap(struct ceph_inode_info *ci)
  569. {
  570. return !list_empty(&ci->i_cap_snaps) &&
  571. list_entry(ci->i_cap_snaps.prev, struct ceph_cap_snap,
  572. ci_item)->writing;
  573. }
  574. /* inode.c */
  575. extern const struct inode_operations ceph_file_iops;
  576. extern struct inode *ceph_alloc_inode(struct super_block *sb);
  577. extern void ceph_destroy_inode(struct inode *inode);
  578. extern struct inode *ceph_get_inode(struct super_block *sb,
  579. struct ceph_vino vino);
  580. extern struct inode *ceph_get_snapdir(struct inode *parent);
  581. extern int ceph_fill_file_size(struct inode *inode, int issued,
  582. u32 truncate_seq, u64 truncate_size, u64 size);
  583. extern void ceph_fill_file_time(struct inode *inode, int issued,
  584. u64 time_warp_seq, struct timespec *ctime,
  585. struct timespec *mtime, struct timespec *atime);
  586. extern int ceph_fill_trace(struct super_block *sb,
  587. struct ceph_mds_request *req,
  588. struct ceph_mds_session *session);
  589. extern int ceph_readdir_prepopulate(struct ceph_mds_request *req,
  590. struct ceph_mds_session *session);
  591. extern int ceph_inode_holds_cap(struct inode *inode, int mask);
  592. extern int ceph_inode_set_size(struct inode *inode, loff_t size);
  593. extern void __ceph_do_pending_vmtruncate(struct inode *inode);
  594. extern void ceph_queue_vmtruncate(struct inode *inode);
  595. extern void ceph_queue_invalidate(struct inode *inode);
  596. extern void ceph_queue_writeback(struct inode *inode);
  597. extern int ceph_do_getattr(struct inode *inode, int mask);
  598. extern int ceph_permission(struct inode *inode, int mask);
  599. extern int ceph_setattr(struct dentry *dentry, struct iattr *attr);
  600. extern int ceph_getattr(struct vfsmount *mnt, struct dentry *dentry,
  601. struct kstat *stat);
  602. /* xattr.c */
  603. extern int ceph_setxattr(struct dentry *, const char *, const void *,
  604. size_t, int);
  605. extern ssize_t ceph_getxattr(struct dentry *, const char *, void *, size_t);
  606. extern ssize_t ceph_listxattr(struct dentry *, char *, size_t);
  607. extern int ceph_removexattr(struct dentry *, const char *);
  608. extern void __ceph_build_xattrs_blob(struct ceph_inode_info *ci);
  609. extern void __ceph_destroy_xattrs(struct ceph_inode_info *ci);
  610. extern void __init ceph_xattr_init(void);
  611. extern void ceph_xattr_exit(void);
  612. /* caps.c */
  613. extern const char *ceph_cap_string(int c);
  614. extern void ceph_handle_caps(struct ceph_mds_session *session,
  615. struct ceph_msg *msg);
  616. extern int ceph_add_cap(struct inode *inode,
  617. struct ceph_mds_session *session, u64 cap_id,
  618. int fmode, unsigned issued, unsigned wanted,
  619. unsigned cap, unsigned seq, u64 realmino, int flags,
  620. struct ceph_cap_reservation *caps_reservation);
  621. extern void __ceph_remove_cap(struct ceph_cap *cap);
  622. static inline void ceph_remove_cap(struct ceph_cap *cap)
  623. {
  624. spin_lock(&cap->ci->i_ceph_lock);
  625. __ceph_remove_cap(cap);
  626. spin_unlock(&cap->ci->i_ceph_lock);
  627. }
  628. extern void ceph_put_cap(struct ceph_mds_client *mdsc,
  629. struct ceph_cap *cap);
  630. extern void ceph_queue_caps_release(struct inode *inode);
  631. extern int ceph_write_inode(struct inode *inode, struct writeback_control *wbc);
  632. extern int ceph_fsync(struct file *file, loff_t start, loff_t end,
  633. int datasync);
  634. extern void ceph_kick_flushing_caps(struct ceph_mds_client *mdsc,
  635. struct ceph_mds_session *session);
  636. extern struct ceph_cap *ceph_get_cap_for_mds(struct ceph_inode_info *ci,
  637. int mds);
  638. extern int ceph_get_cap_mds(struct inode *inode);
  639. extern void ceph_get_cap_refs(struct ceph_inode_info *ci, int caps);
  640. extern void ceph_put_cap_refs(struct ceph_inode_info *ci, int had);
  641. extern void ceph_put_wrbuffer_cap_refs(struct ceph_inode_info *ci, int nr,
  642. struct ceph_snap_context *snapc);
  643. extern void __ceph_flush_snaps(struct ceph_inode_info *ci,
  644. struct ceph_mds_session **psession,
  645. int again);
  646. extern void ceph_check_caps(struct ceph_inode_info *ci, int flags,
  647. struct ceph_mds_session *session);
  648. extern void ceph_check_delayed_caps(struct ceph_mds_client *mdsc);
  649. extern void ceph_flush_dirty_caps(struct ceph_mds_client *mdsc);
  650. extern int ceph_encode_inode_release(void **p, struct inode *inode,
  651. int mds, int drop, int unless, int force);
  652. extern int ceph_encode_dentry_release(void **p, struct dentry *dn,
  653. int mds, int drop, int unless);
  654. extern int ceph_get_caps(struct ceph_inode_info *ci, int need, int want,
  655. int *got, loff_t endoff);
  656. /* for counting open files by mode */
  657. static inline void __ceph_get_fmode(struct ceph_inode_info *ci, int mode)
  658. {
  659. ci->i_nr_by_mode[mode]++;
  660. }
  661. extern void ceph_put_fmode(struct ceph_inode_info *ci, int mode);
  662. /* addr.c */
  663. extern const struct address_space_operations ceph_aops;
  664. extern int ceph_mmap(struct file *file, struct vm_area_struct *vma);
  665. /* file.c */
  666. extern const struct file_operations ceph_file_fops;
  667. extern const struct address_space_operations ceph_aops;
  668. extern int ceph_copy_to_page_vector(struct page **pages,
  669. const char *data,
  670. loff_t off, size_t len);
  671. extern int ceph_copy_from_page_vector(struct page **pages,
  672. char *data,
  673. loff_t off, size_t len);
  674. extern struct page **ceph_alloc_page_vector(int num_pages, gfp_t flags);
  675. extern int ceph_open(struct inode *inode, struct file *file);
  676. extern struct dentry *ceph_lookup_open(struct inode *dir, struct dentry *dentry,
  677. struct nameidata *nd, int mode,
  678. int locked_dir);
  679. extern int ceph_release(struct inode *inode, struct file *filp);
  680. /* dir.c */
  681. extern const struct file_operations ceph_dir_fops;
  682. extern const struct inode_operations ceph_dir_iops;
  683. extern const struct dentry_operations ceph_dentry_ops, ceph_snap_dentry_ops,
  684. ceph_snapdir_dentry_ops;
  685. extern int ceph_handle_notrace_create(struct inode *dir, struct dentry *dentry);
  686. extern int ceph_handle_snapdir(struct ceph_mds_request *req,
  687. struct dentry *dentry, int err);
  688. extern struct dentry *ceph_finish_lookup(struct ceph_mds_request *req,
  689. struct dentry *dentry, int err);
  690. extern void ceph_dentry_lru_add(struct dentry *dn);
  691. extern void ceph_dentry_lru_touch(struct dentry *dn);
  692. extern void ceph_dentry_lru_del(struct dentry *dn);
  693. extern void ceph_invalidate_dentry_lease(struct dentry *dentry);
  694. extern unsigned ceph_dentry_hash(struct inode *dir, struct dentry *dn);
  695. extern struct inode *ceph_get_dentry_parent_inode(struct dentry *dentry);
  696. /*
  697. * our d_ops vary depending on whether the inode is live,
  698. * snapshotted (read-only), or a virtual ".snap" directory.
  699. */
  700. int ceph_init_dentry(struct dentry *dentry);
  701. /* ioctl.c */
  702. extern long ceph_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
  703. /* export.c */
  704. extern const struct export_operations ceph_export_ops;
  705. /* locks.c */
  706. extern int ceph_lock(struct file *file, int cmd, struct file_lock *fl);
  707. extern int ceph_flock(struct file *file, int cmd, struct file_lock *fl);
  708. extern void ceph_count_locks(struct inode *inode, int *p_num, int *f_num);
  709. extern int ceph_encode_locks_to_buffer(struct inode *inode,
  710. struct ceph_filelock *flocks,
  711. int num_fcntl_locks,
  712. int num_flock_locks);
  713. extern int ceph_locks_to_pagelist(struct ceph_filelock *flocks,
  714. struct ceph_pagelist *pagelist,
  715. int num_fcntl_locks, int num_flock_locks);
  716. extern int lock_to_ceph_filelock(struct file_lock *fl, struct ceph_filelock *c);
  717. /* debugfs.c */
  718. extern int ceph_fs_debugfs_init(struct ceph_fs_client *client);
  719. extern void ceph_fs_debugfs_cleanup(struct ceph_fs_client *client);
  720. #endif /* _FS_CEPH_SUPER_H */