ctree.h 141 KB

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  1. /*
  2. * Copyright (C) 2007 Oracle. All rights reserved.
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU General Public
  6. * License v2 as published by the Free Software Foundation.
  7. *
  8. * This program is distributed in the hope that it will be useful,
  9. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  11. * General Public License for more details.
  12. *
  13. * You should have received a copy of the GNU General Public
  14. * License along with this program; if not, write to the
  15. * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
  16. * Boston, MA 021110-1307, USA.
  17. */
  18. #ifndef __BTRFS_CTREE__
  19. #define __BTRFS_CTREE__
  20. #include <linux/mm.h>
  21. #include <linux/highmem.h>
  22. #include <linux/fs.h>
  23. #include <linux/rwsem.h>
  24. #include <linux/semaphore.h>
  25. #include <linux/completion.h>
  26. #include <linux/backing-dev.h>
  27. #include <linux/wait.h>
  28. #include <linux/slab.h>
  29. #include <linux/kobject.h>
  30. #include <trace/events/btrfs.h>
  31. #include <asm/kmap_types.h>
  32. #include <linux/pagemap.h>
  33. #include <linux/btrfs.h>
  34. #include <linux/workqueue.h>
  35. #include <linux/security.h>
  36. #include "extent_io.h"
  37. #include "extent_map.h"
  38. #include "async-thread.h"
  39. struct btrfs_trans_handle;
  40. struct btrfs_transaction;
  41. struct btrfs_pending_snapshot;
  42. extern struct kmem_cache *btrfs_trans_handle_cachep;
  43. extern struct kmem_cache *btrfs_transaction_cachep;
  44. extern struct kmem_cache *btrfs_bit_radix_cachep;
  45. extern struct kmem_cache *btrfs_path_cachep;
  46. extern struct kmem_cache *btrfs_free_space_cachep;
  47. struct btrfs_ordered_sum;
  48. #ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
  49. #define STATIC noinline
  50. #else
  51. #define STATIC static noinline
  52. #endif
  53. #define BTRFS_MAGIC 0x4D5F53665248425FULL /* ascii _BHRfS_M, no null */
  54. #define BTRFS_MAX_MIRRORS 3
  55. #define BTRFS_MAX_LEVEL 8
  56. #define BTRFS_COMPAT_EXTENT_TREE_V0
  57. /* holds pointers to all of the tree roots */
  58. #define BTRFS_ROOT_TREE_OBJECTID 1ULL
  59. /* stores information about which extents are in use, and reference counts */
  60. #define BTRFS_EXTENT_TREE_OBJECTID 2ULL
  61. /*
  62. * chunk tree stores translations from logical -> physical block numbering
  63. * the super block points to the chunk tree
  64. */
  65. #define BTRFS_CHUNK_TREE_OBJECTID 3ULL
  66. /*
  67. * stores information about which areas of a given device are in use.
  68. * one per device. The tree of tree roots points to the device tree
  69. */
  70. #define BTRFS_DEV_TREE_OBJECTID 4ULL
  71. /* one per subvolume, storing files and directories */
  72. #define BTRFS_FS_TREE_OBJECTID 5ULL
  73. /* directory objectid inside the root tree */
  74. #define BTRFS_ROOT_TREE_DIR_OBJECTID 6ULL
  75. /* holds checksums of all the data extents */
  76. #define BTRFS_CSUM_TREE_OBJECTID 7ULL
  77. /* holds quota configuration and tracking */
  78. #define BTRFS_QUOTA_TREE_OBJECTID 8ULL
  79. /* for storing items that use the BTRFS_UUID_KEY* types */
  80. #define BTRFS_UUID_TREE_OBJECTID 9ULL
  81. /* for storing balance parameters in the root tree */
  82. #define BTRFS_BALANCE_OBJECTID -4ULL
  83. /* orhpan objectid for tracking unlinked/truncated files */
  84. #define BTRFS_ORPHAN_OBJECTID -5ULL
  85. /* does write ahead logging to speed up fsyncs */
  86. #define BTRFS_TREE_LOG_OBJECTID -6ULL
  87. #define BTRFS_TREE_LOG_FIXUP_OBJECTID -7ULL
  88. /* for space balancing */
  89. #define BTRFS_TREE_RELOC_OBJECTID -8ULL
  90. #define BTRFS_DATA_RELOC_TREE_OBJECTID -9ULL
  91. /*
  92. * extent checksums all have this objectid
  93. * this allows them to share the logging tree
  94. * for fsyncs
  95. */
  96. #define BTRFS_EXTENT_CSUM_OBJECTID -10ULL
  97. /* For storing free space cache */
  98. #define BTRFS_FREE_SPACE_OBJECTID -11ULL
  99. /*
  100. * The inode number assigned to the special inode for storing
  101. * free ino cache
  102. */
  103. #define BTRFS_FREE_INO_OBJECTID -12ULL
  104. /* dummy objectid represents multiple objectids */
  105. #define BTRFS_MULTIPLE_OBJECTIDS -255ULL
  106. /*
  107. * All files have objectids in this range.
  108. */
  109. #define BTRFS_FIRST_FREE_OBJECTID 256ULL
  110. #define BTRFS_LAST_FREE_OBJECTID -256ULL
  111. #define BTRFS_FIRST_CHUNK_TREE_OBJECTID 256ULL
  112. /*
  113. * the device items go into the chunk tree. The key is in the form
  114. * [ 1 BTRFS_DEV_ITEM_KEY device_id ]
  115. */
  116. #define BTRFS_DEV_ITEMS_OBJECTID 1ULL
  117. #define BTRFS_BTREE_INODE_OBJECTID 1
  118. #define BTRFS_EMPTY_SUBVOL_DIR_OBJECTID 2
  119. #define BTRFS_DEV_REPLACE_DEVID 0ULL
  120. /*
  121. * the max metadata block size. This limit is somewhat artificial,
  122. * but the memmove costs go through the roof for larger blocks.
  123. */
  124. #define BTRFS_MAX_METADATA_BLOCKSIZE 65536
  125. /*
  126. * we can actually store much bigger names, but lets not confuse the rest
  127. * of linux
  128. */
  129. #define BTRFS_NAME_LEN 255
  130. /*
  131. * Theoretical limit is larger, but we keep this down to a sane
  132. * value. That should limit greatly the possibility of collisions on
  133. * inode ref items.
  134. */
  135. #define BTRFS_LINK_MAX 65535U
  136. /* 32 bytes in various csum fields */
  137. #define BTRFS_CSUM_SIZE 32
  138. /* csum types */
  139. #define BTRFS_CSUM_TYPE_CRC32 0
  140. static int btrfs_csum_sizes[] = { 4 };
  141. /* four bytes for CRC32 */
  142. #define BTRFS_EMPTY_DIR_SIZE 0
  143. /* spefic to btrfs_map_block(), therefore not in include/linux/blk_types.h */
  144. #define REQ_GET_READ_MIRRORS (1 << 30)
  145. #define BTRFS_FT_UNKNOWN 0
  146. #define BTRFS_FT_REG_FILE 1
  147. #define BTRFS_FT_DIR 2
  148. #define BTRFS_FT_CHRDEV 3
  149. #define BTRFS_FT_BLKDEV 4
  150. #define BTRFS_FT_FIFO 5
  151. #define BTRFS_FT_SOCK 6
  152. #define BTRFS_FT_SYMLINK 7
  153. #define BTRFS_FT_XATTR 8
  154. #define BTRFS_FT_MAX 9
  155. /* ioprio of readahead is set to idle */
  156. #define BTRFS_IOPRIO_READA (IOPRIO_PRIO_VALUE(IOPRIO_CLASS_IDLE, 0))
  157. #define BTRFS_DIRTY_METADATA_THRESH (32 * 1024 * 1024)
  158. #define BTRFS_MAX_EXTENT_SIZE (128 * 1024 * 1024)
  159. /*
  160. * The key defines the order in the tree, and so it also defines (optimal)
  161. * block layout.
  162. *
  163. * objectid corresponds to the inode number.
  164. *
  165. * type tells us things about the object, and is a kind of stream selector.
  166. * so for a given inode, keys with type of 1 might refer to the inode data,
  167. * type of 2 may point to file data in the btree and type == 3 may point to
  168. * extents.
  169. *
  170. * offset is the starting byte offset for this key in the stream.
  171. *
  172. * btrfs_disk_key is in disk byte order. struct btrfs_key is always
  173. * in cpu native order. Otherwise they are identical and their sizes
  174. * should be the same (ie both packed)
  175. */
  176. struct btrfs_disk_key {
  177. __le64 objectid;
  178. u8 type;
  179. __le64 offset;
  180. } __attribute__ ((__packed__));
  181. struct btrfs_key {
  182. u64 objectid;
  183. u8 type;
  184. u64 offset;
  185. } __attribute__ ((__packed__));
  186. struct btrfs_mapping_tree {
  187. struct extent_map_tree map_tree;
  188. };
  189. struct btrfs_dev_item {
  190. /* the internal btrfs device id */
  191. __le64 devid;
  192. /* size of the device */
  193. __le64 total_bytes;
  194. /* bytes used */
  195. __le64 bytes_used;
  196. /* optimal io alignment for this device */
  197. __le32 io_align;
  198. /* optimal io width for this device */
  199. __le32 io_width;
  200. /* minimal io size for this device */
  201. __le32 sector_size;
  202. /* type and info about this device */
  203. __le64 type;
  204. /* expected generation for this device */
  205. __le64 generation;
  206. /*
  207. * starting byte of this partition on the device,
  208. * to allow for stripe alignment in the future
  209. */
  210. __le64 start_offset;
  211. /* grouping information for allocation decisions */
  212. __le32 dev_group;
  213. /* seek speed 0-100 where 100 is fastest */
  214. u8 seek_speed;
  215. /* bandwidth 0-100 where 100 is fastest */
  216. u8 bandwidth;
  217. /* btrfs generated uuid for this device */
  218. u8 uuid[BTRFS_UUID_SIZE];
  219. /* uuid of FS who owns this device */
  220. u8 fsid[BTRFS_UUID_SIZE];
  221. } __attribute__ ((__packed__));
  222. struct btrfs_stripe {
  223. __le64 devid;
  224. __le64 offset;
  225. u8 dev_uuid[BTRFS_UUID_SIZE];
  226. } __attribute__ ((__packed__));
  227. struct btrfs_chunk {
  228. /* size of this chunk in bytes */
  229. __le64 length;
  230. /* objectid of the root referencing this chunk */
  231. __le64 owner;
  232. __le64 stripe_len;
  233. __le64 type;
  234. /* optimal io alignment for this chunk */
  235. __le32 io_align;
  236. /* optimal io width for this chunk */
  237. __le32 io_width;
  238. /* minimal io size for this chunk */
  239. __le32 sector_size;
  240. /* 2^16 stripes is quite a lot, a second limit is the size of a single
  241. * item in the btree
  242. */
  243. __le16 num_stripes;
  244. /* sub stripes only matter for raid10 */
  245. __le16 sub_stripes;
  246. struct btrfs_stripe stripe;
  247. /* additional stripes go here */
  248. } __attribute__ ((__packed__));
  249. #define BTRFS_FREE_SPACE_EXTENT 1
  250. #define BTRFS_FREE_SPACE_BITMAP 2
  251. struct btrfs_free_space_entry {
  252. __le64 offset;
  253. __le64 bytes;
  254. u8 type;
  255. } __attribute__ ((__packed__));
  256. struct btrfs_free_space_header {
  257. struct btrfs_disk_key location;
  258. __le64 generation;
  259. __le64 num_entries;
  260. __le64 num_bitmaps;
  261. } __attribute__ ((__packed__));
  262. static inline unsigned long btrfs_chunk_item_size(int num_stripes)
  263. {
  264. BUG_ON(num_stripes == 0);
  265. return sizeof(struct btrfs_chunk) +
  266. sizeof(struct btrfs_stripe) * (num_stripes - 1);
  267. }
  268. #define BTRFS_HEADER_FLAG_WRITTEN (1ULL << 0)
  269. #define BTRFS_HEADER_FLAG_RELOC (1ULL << 1)
  270. /*
  271. * File system states
  272. */
  273. #define BTRFS_FS_STATE_ERROR 0
  274. #define BTRFS_FS_STATE_REMOUNTING 1
  275. #define BTRFS_FS_STATE_TRANS_ABORTED 2
  276. #define BTRFS_FS_STATE_DEV_REPLACING 3
  277. /* Super block flags */
  278. /* Errors detected */
  279. #define BTRFS_SUPER_FLAG_ERROR (1ULL << 2)
  280. #define BTRFS_SUPER_FLAG_SEEDING (1ULL << 32)
  281. #define BTRFS_SUPER_FLAG_METADUMP (1ULL << 33)
  282. #define BTRFS_BACKREF_REV_MAX 256
  283. #define BTRFS_BACKREF_REV_SHIFT 56
  284. #define BTRFS_BACKREF_REV_MASK (((u64)BTRFS_BACKREF_REV_MAX - 1) << \
  285. BTRFS_BACKREF_REV_SHIFT)
  286. #define BTRFS_OLD_BACKREF_REV 0
  287. #define BTRFS_MIXED_BACKREF_REV 1
  288. /*
  289. * every tree block (leaf or node) starts with this header.
  290. */
  291. struct btrfs_header {
  292. /* these first four must match the super block */
  293. u8 csum[BTRFS_CSUM_SIZE];
  294. u8 fsid[BTRFS_FSID_SIZE]; /* FS specific uuid */
  295. __le64 bytenr; /* which block this node is supposed to live in */
  296. __le64 flags;
  297. /* allowed to be different from the super from here on down */
  298. u8 chunk_tree_uuid[BTRFS_UUID_SIZE];
  299. __le64 generation;
  300. __le64 owner;
  301. __le32 nritems;
  302. u8 level;
  303. } __attribute__ ((__packed__));
  304. #define BTRFS_NODEPTRS_PER_BLOCK(r) (((r)->nodesize - \
  305. sizeof(struct btrfs_header)) / \
  306. sizeof(struct btrfs_key_ptr))
  307. #define __BTRFS_LEAF_DATA_SIZE(bs) ((bs) - sizeof(struct btrfs_header))
  308. #define BTRFS_LEAF_DATA_SIZE(r) (__BTRFS_LEAF_DATA_SIZE(r->nodesize))
  309. #define BTRFS_FILE_EXTENT_INLINE_DATA_START \
  310. (offsetof(struct btrfs_file_extent_item, disk_bytenr))
  311. #define BTRFS_MAX_INLINE_DATA_SIZE(r) (BTRFS_LEAF_DATA_SIZE(r) - \
  312. sizeof(struct btrfs_item) - \
  313. BTRFS_FILE_EXTENT_INLINE_DATA_START)
  314. #define BTRFS_MAX_XATTR_SIZE(r) (BTRFS_LEAF_DATA_SIZE(r) - \
  315. sizeof(struct btrfs_item) -\
  316. sizeof(struct btrfs_dir_item))
  317. /*
  318. * this is a very generous portion of the super block, giving us
  319. * room to translate 14 chunks with 3 stripes each.
  320. */
  321. #define BTRFS_SYSTEM_CHUNK_ARRAY_SIZE 2048
  322. #define BTRFS_LABEL_SIZE 256
  323. /*
  324. * just in case we somehow lose the roots and are not able to mount,
  325. * we store an array of the roots from previous transactions
  326. * in the super.
  327. */
  328. #define BTRFS_NUM_BACKUP_ROOTS 4
  329. struct btrfs_root_backup {
  330. __le64 tree_root;
  331. __le64 tree_root_gen;
  332. __le64 chunk_root;
  333. __le64 chunk_root_gen;
  334. __le64 extent_root;
  335. __le64 extent_root_gen;
  336. __le64 fs_root;
  337. __le64 fs_root_gen;
  338. __le64 dev_root;
  339. __le64 dev_root_gen;
  340. __le64 csum_root;
  341. __le64 csum_root_gen;
  342. __le64 total_bytes;
  343. __le64 bytes_used;
  344. __le64 num_devices;
  345. /* future */
  346. __le64 unused_64[4];
  347. u8 tree_root_level;
  348. u8 chunk_root_level;
  349. u8 extent_root_level;
  350. u8 fs_root_level;
  351. u8 dev_root_level;
  352. u8 csum_root_level;
  353. /* future and to align */
  354. u8 unused_8[10];
  355. } __attribute__ ((__packed__));
  356. /*
  357. * the super block basically lists the main trees of the FS
  358. * it currently lacks any block count etc etc
  359. */
  360. struct btrfs_super_block {
  361. u8 csum[BTRFS_CSUM_SIZE];
  362. /* the first 4 fields must match struct btrfs_header */
  363. u8 fsid[BTRFS_FSID_SIZE]; /* FS specific uuid */
  364. __le64 bytenr; /* this block number */
  365. __le64 flags;
  366. /* allowed to be different from the btrfs_header from here own down */
  367. __le64 magic;
  368. __le64 generation;
  369. __le64 root;
  370. __le64 chunk_root;
  371. __le64 log_root;
  372. /* this will help find the new super based on the log root */
  373. __le64 log_root_transid;
  374. __le64 total_bytes;
  375. __le64 bytes_used;
  376. __le64 root_dir_objectid;
  377. __le64 num_devices;
  378. __le32 sectorsize;
  379. __le32 nodesize;
  380. __le32 __unused_leafsize;
  381. __le32 stripesize;
  382. __le32 sys_chunk_array_size;
  383. __le64 chunk_root_generation;
  384. __le64 compat_flags;
  385. __le64 compat_ro_flags;
  386. __le64 incompat_flags;
  387. __le16 csum_type;
  388. u8 root_level;
  389. u8 chunk_root_level;
  390. u8 log_root_level;
  391. struct btrfs_dev_item dev_item;
  392. char label[BTRFS_LABEL_SIZE];
  393. __le64 cache_generation;
  394. __le64 uuid_tree_generation;
  395. /* future expansion */
  396. __le64 reserved[30];
  397. u8 sys_chunk_array[BTRFS_SYSTEM_CHUNK_ARRAY_SIZE];
  398. struct btrfs_root_backup super_roots[BTRFS_NUM_BACKUP_ROOTS];
  399. } __attribute__ ((__packed__));
  400. /*
  401. * Compat flags that we support. If any incompat flags are set other than the
  402. * ones specified below then we will fail to mount
  403. */
  404. #define BTRFS_FEATURE_INCOMPAT_MIXED_BACKREF (1ULL << 0)
  405. #define BTRFS_FEATURE_INCOMPAT_DEFAULT_SUBVOL (1ULL << 1)
  406. #define BTRFS_FEATURE_INCOMPAT_MIXED_GROUPS (1ULL << 2)
  407. #define BTRFS_FEATURE_INCOMPAT_COMPRESS_LZO (1ULL << 3)
  408. /*
  409. * some patches floated around with a second compression method
  410. * lets save that incompat here for when they do get in
  411. * Note we don't actually support it, we're just reserving the
  412. * number
  413. */
  414. #define BTRFS_FEATURE_INCOMPAT_COMPRESS_LZOv2 (1ULL << 4)
  415. /*
  416. * older kernels tried to do bigger metadata blocks, but the
  417. * code was pretty buggy. Lets not let them try anymore.
  418. */
  419. #define BTRFS_FEATURE_INCOMPAT_BIG_METADATA (1ULL << 5)
  420. #define BTRFS_FEATURE_INCOMPAT_EXTENDED_IREF (1ULL << 6)
  421. #define BTRFS_FEATURE_INCOMPAT_RAID56 (1ULL << 7)
  422. #define BTRFS_FEATURE_INCOMPAT_SKINNY_METADATA (1ULL << 8)
  423. #define BTRFS_FEATURE_INCOMPAT_NO_HOLES (1ULL << 9)
  424. #define BTRFS_FEATURE_COMPAT_SUPP 0ULL
  425. #define BTRFS_FEATURE_COMPAT_SAFE_SET 0ULL
  426. #define BTRFS_FEATURE_COMPAT_SAFE_CLEAR 0ULL
  427. #define BTRFS_FEATURE_COMPAT_RO_SUPP 0ULL
  428. #define BTRFS_FEATURE_COMPAT_RO_SAFE_SET 0ULL
  429. #define BTRFS_FEATURE_COMPAT_RO_SAFE_CLEAR 0ULL
  430. #define BTRFS_FEATURE_INCOMPAT_SUPP \
  431. (BTRFS_FEATURE_INCOMPAT_MIXED_BACKREF | \
  432. BTRFS_FEATURE_INCOMPAT_DEFAULT_SUBVOL | \
  433. BTRFS_FEATURE_INCOMPAT_MIXED_GROUPS | \
  434. BTRFS_FEATURE_INCOMPAT_BIG_METADATA | \
  435. BTRFS_FEATURE_INCOMPAT_COMPRESS_LZO | \
  436. BTRFS_FEATURE_INCOMPAT_RAID56 | \
  437. BTRFS_FEATURE_INCOMPAT_EXTENDED_IREF | \
  438. BTRFS_FEATURE_INCOMPAT_SKINNY_METADATA | \
  439. BTRFS_FEATURE_INCOMPAT_NO_HOLES)
  440. #define BTRFS_FEATURE_INCOMPAT_SAFE_SET \
  441. (BTRFS_FEATURE_INCOMPAT_EXTENDED_IREF)
  442. #define BTRFS_FEATURE_INCOMPAT_SAFE_CLEAR 0ULL
  443. /*
  444. * A leaf is full of items. offset and size tell us where to find
  445. * the item in the leaf (relative to the start of the data area)
  446. */
  447. struct btrfs_item {
  448. struct btrfs_disk_key key;
  449. __le32 offset;
  450. __le32 size;
  451. } __attribute__ ((__packed__));
  452. /*
  453. * leaves have an item area and a data area:
  454. * [item0, item1....itemN] [free space] [dataN...data1, data0]
  455. *
  456. * The data is separate from the items to get the keys closer together
  457. * during searches.
  458. */
  459. struct btrfs_leaf {
  460. struct btrfs_header header;
  461. struct btrfs_item items[];
  462. } __attribute__ ((__packed__));
  463. /*
  464. * all non-leaf blocks are nodes, they hold only keys and pointers to
  465. * other blocks
  466. */
  467. struct btrfs_key_ptr {
  468. struct btrfs_disk_key key;
  469. __le64 blockptr;
  470. __le64 generation;
  471. } __attribute__ ((__packed__));
  472. struct btrfs_node {
  473. struct btrfs_header header;
  474. struct btrfs_key_ptr ptrs[];
  475. } __attribute__ ((__packed__));
  476. /*
  477. * btrfs_paths remember the path taken from the root down to the leaf.
  478. * level 0 is always the leaf, and nodes[1...BTRFS_MAX_LEVEL] will point
  479. * to any other levels that are present.
  480. *
  481. * The slots array records the index of the item or block pointer
  482. * used while walking the tree.
  483. */
  484. struct btrfs_path {
  485. struct extent_buffer *nodes[BTRFS_MAX_LEVEL];
  486. int slots[BTRFS_MAX_LEVEL];
  487. /* if there is real range locking, this locks field will change */
  488. int locks[BTRFS_MAX_LEVEL];
  489. int reada;
  490. /* keep some upper locks as we walk down */
  491. int lowest_level;
  492. /*
  493. * set by btrfs_split_item, tells search_slot to keep all locks
  494. * and to force calls to keep space in the nodes
  495. */
  496. unsigned int search_for_split:1;
  497. unsigned int keep_locks:1;
  498. unsigned int skip_locking:1;
  499. unsigned int leave_spinning:1;
  500. unsigned int search_commit_root:1;
  501. unsigned int need_commit_sem:1;
  502. unsigned int skip_release_on_error:1;
  503. };
  504. /*
  505. * items in the extent btree are used to record the objectid of the
  506. * owner of the block and the number of references
  507. */
  508. struct btrfs_extent_item {
  509. __le64 refs;
  510. __le64 generation;
  511. __le64 flags;
  512. } __attribute__ ((__packed__));
  513. struct btrfs_extent_item_v0 {
  514. __le32 refs;
  515. } __attribute__ ((__packed__));
  516. #define BTRFS_MAX_EXTENT_ITEM_SIZE(r) ((BTRFS_LEAF_DATA_SIZE(r) >> 4) - \
  517. sizeof(struct btrfs_item))
  518. #define BTRFS_EXTENT_FLAG_DATA (1ULL << 0)
  519. #define BTRFS_EXTENT_FLAG_TREE_BLOCK (1ULL << 1)
  520. /* following flags only apply to tree blocks */
  521. /* use full backrefs for extent pointers in the block */
  522. #define BTRFS_BLOCK_FLAG_FULL_BACKREF (1ULL << 8)
  523. /*
  524. * this flag is only used internally by scrub and may be changed at any time
  525. * it is only declared here to avoid collisions
  526. */
  527. #define BTRFS_EXTENT_FLAG_SUPER (1ULL << 48)
  528. struct btrfs_tree_block_info {
  529. struct btrfs_disk_key key;
  530. u8 level;
  531. } __attribute__ ((__packed__));
  532. struct btrfs_extent_data_ref {
  533. __le64 root;
  534. __le64 objectid;
  535. __le64 offset;
  536. __le32 count;
  537. } __attribute__ ((__packed__));
  538. struct btrfs_shared_data_ref {
  539. __le32 count;
  540. } __attribute__ ((__packed__));
  541. struct btrfs_extent_inline_ref {
  542. u8 type;
  543. __le64 offset;
  544. } __attribute__ ((__packed__));
  545. /* old style backrefs item */
  546. struct btrfs_extent_ref_v0 {
  547. __le64 root;
  548. __le64 generation;
  549. __le64 objectid;
  550. __le32 count;
  551. } __attribute__ ((__packed__));
  552. /* dev extents record free space on individual devices. The owner
  553. * field points back to the chunk allocation mapping tree that allocated
  554. * the extent. The chunk tree uuid field is a way to double check the owner
  555. */
  556. struct btrfs_dev_extent {
  557. __le64 chunk_tree;
  558. __le64 chunk_objectid;
  559. __le64 chunk_offset;
  560. __le64 length;
  561. u8 chunk_tree_uuid[BTRFS_UUID_SIZE];
  562. } __attribute__ ((__packed__));
  563. struct btrfs_inode_ref {
  564. __le64 index;
  565. __le16 name_len;
  566. /* name goes here */
  567. } __attribute__ ((__packed__));
  568. struct btrfs_inode_extref {
  569. __le64 parent_objectid;
  570. __le64 index;
  571. __le16 name_len;
  572. __u8 name[0];
  573. /* name goes here */
  574. } __attribute__ ((__packed__));
  575. struct btrfs_timespec {
  576. __le64 sec;
  577. __le32 nsec;
  578. } __attribute__ ((__packed__));
  579. enum btrfs_compression_type {
  580. BTRFS_COMPRESS_NONE = 0,
  581. BTRFS_COMPRESS_ZLIB = 1,
  582. BTRFS_COMPRESS_LZO = 2,
  583. BTRFS_COMPRESS_TYPES = 2,
  584. BTRFS_COMPRESS_LAST = 3,
  585. };
  586. struct btrfs_inode_item {
  587. /* nfs style generation number */
  588. __le64 generation;
  589. /* transid that last touched this inode */
  590. __le64 transid;
  591. __le64 size;
  592. __le64 nbytes;
  593. __le64 block_group;
  594. __le32 nlink;
  595. __le32 uid;
  596. __le32 gid;
  597. __le32 mode;
  598. __le64 rdev;
  599. __le64 flags;
  600. /* modification sequence number for NFS */
  601. __le64 sequence;
  602. /*
  603. * a little future expansion, for more than this we can
  604. * just grow the inode item and version it
  605. */
  606. __le64 reserved[4];
  607. struct btrfs_timespec atime;
  608. struct btrfs_timespec ctime;
  609. struct btrfs_timespec mtime;
  610. struct btrfs_timespec otime;
  611. } __attribute__ ((__packed__));
  612. struct btrfs_dir_log_item {
  613. __le64 end;
  614. } __attribute__ ((__packed__));
  615. struct btrfs_dir_item {
  616. struct btrfs_disk_key location;
  617. __le64 transid;
  618. __le16 data_len;
  619. __le16 name_len;
  620. u8 type;
  621. } __attribute__ ((__packed__));
  622. #define BTRFS_ROOT_SUBVOL_RDONLY (1ULL << 0)
  623. /*
  624. * Internal in-memory flag that a subvolume has been marked for deletion but
  625. * still visible as a directory
  626. */
  627. #define BTRFS_ROOT_SUBVOL_DEAD (1ULL << 48)
  628. struct btrfs_root_item {
  629. struct btrfs_inode_item inode;
  630. __le64 generation;
  631. __le64 root_dirid;
  632. __le64 bytenr;
  633. __le64 byte_limit;
  634. __le64 bytes_used;
  635. __le64 last_snapshot;
  636. __le64 flags;
  637. __le32 refs;
  638. struct btrfs_disk_key drop_progress;
  639. u8 drop_level;
  640. u8 level;
  641. /*
  642. * The following fields appear after subvol_uuids+subvol_times
  643. * were introduced.
  644. */
  645. /*
  646. * This generation number is used to test if the new fields are valid
  647. * and up to date while reading the root item. Everytime the root item
  648. * is written out, the "generation" field is copied into this field. If
  649. * anyone ever mounted the fs with an older kernel, we will have
  650. * mismatching generation values here and thus must invalidate the
  651. * new fields. See btrfs_update_root and btrfs_find_last_root for
  652. * details.
  653. * the offset of generation_v2 is also used as the start for the memset
  654. * when invalidating the fields.
  655. */
  656. __le64 generation_v2;
  657. u8 uuid[BTRFS_UUID_SIZE];
  658. u8 parent_uuid[BTRFS_UUID_SIZE];
  659. u8 received_uuid[BTRFS_UUID_SIZE];
  660. __le64 ctransid; /* updated when an inode changes */
  661. __le64 otransid; /* trans when created */
  662. __le64 stransid; /* trans when sent. non-zero for received subvol */
  663. __le64 rtransid; /* trans when received. non-zero for received subvol */
  664. struct btrfs_timespec ctime;
  665. struct btrfs_timespec otime;
  666. struct btrfs_timespec stime;
  667. struct btrfs_timespec rtime;
  668. __le64 reserved[8]; /* for future */
  669. } __attribute__ ((__packed__));
  670. /*
  671. * this is used for both forward and backward root refs
  672. */
  673. struct btrfs_root_ref {
  674. __le64 dirid;
  675. __le64 sequence;
  676. __le16 name_len;
  677. } __attribute__ ((__packed__));
  678. struct btrfs_disk_balance_args {
  679. /*
  680. * profiles to operate on, single is denoted by
  681. * BTRFS_AVAIL_ALLOC_BIT_SINGLE
  682. */
  683. __le64 profiles;
  684. /*
  685. * usage filter
  686. * BTRFS_BALANCE_ARGS_USAGE with a single value means '0..N'
  687. * BTRFS_BALANCE_ARGS_USAGE_RANGE - range syntax, min..max
  688. */
  689. union {
  690. __le64 usage;
  691. struct {
  692. __le32 usage_min;
  693. __le32 usage_max;
  694. };
  695. };
  696. /* devid filter */
  697. __le64 devid;
  698. /* devid subset filter [pstart..pend) */
  699. __le64 pstart;
  700. __le64 pend;
  701. /* btrfs virtual address space subset filter [vstart..vend) */
  702. __le64 vstart;
  703. __le64 vend;
  704. /*
  705. * profile to convert to, single is denoted by
  706. * BTRFS_AVAIL_ALLOC_BIT_SINGLE
  707. */
  708. __le64 target;
  709. /* BTRFS_BALANCE_ARGS_* */
  710. __le64 flags;
  711. /*
  712. * BTRFS_BALANCE_ARGS_LIMIT with value 'limit'
  713. * BTRFS_BALANCE_ARGS_LIMIT_RANGE - the extend version can use minimum
  714. * and maximum
  715. */
  716. union {
  717. __le64 limit;
  718. struct {
  719. __le32 limit_min;
  720. __le32 limit_max;
  721. };
  722. };
  723. /*
  724. * Process chunks that cross stripes_min..stripes_max devices,
  725. * BTRFS_BALANCE_ARGS_STRIPES_RANGE
  726. */
  727. __le32 stripes_min;
  728. __le32 stripes_max;
  729. __le64 unused[6];
  730. } __attribute__ ((__packed__));
  731. /*
  732. * store balance parameters to disk so that balance can be properly
  733. * resumed after crash or unmount
  734. */
  735. struct btrfs_balance_item {
  736. /* BTRFS_BALANCE_* */
  737. __le64 flags;
  738. struct btrfs_disk_balance_args data;
  739. struct btrfs_disk_balance_args meta;
  740. struct btrfs_disk_balance_args sys;
  741. __le64 unused[4];
  742. } __attribute__ ((__packed__));
  743. #define BTRFS_FILE_EXTENT_INLINE 0
  744. #define BTRFS_FILE_EXTENT_REG 1
  745. #define BTRFS_FILE_EXTENT_PREALLOC 2
  746. struct btrfs_file_extent_item {
  747. /*
  748. * transaction id that created this extent
  749. */
  750. __le64 generation;
  751. /*
  752. * max number of bytes to hold this extent in ram
  753. * when we split a compressed extent we can't know how big
  754. * each of the resulting pieces will be. So, this is
  755. * an upper limit on the size of the extent in ram instead of
  756. * an exact limit.
  757. */
  758. __le64 ram_bytes;
  759. /*
  760. * 32 bits for the various ways we might encode the data,
  761. * including compression and encryption. If any of these
  762. * are set to something a given disk format doesn't understand
  763. * it is treated like an incompat flag for reading and writing,
  764. * but not for stat.
  765. */
  766. u8 compression;
  767. u8 encryption;
  768. __le16 other_encoding; /* spare for later use */
  769. /* are we inline data or a real extent? */
  770. u8 type;
  771. /*
  772. * disk space consumed by the extent, checksum blocks are included
  773. * in these numbers
  774. *
  775. * At this offset in the structure, the inline extent data start.
  776. */
  777. __le64 disk_bytenr;
  778. __le64 disk_num_bytes;
  779. /*
  780. * the logical offset in file blocks (no csums)
  781. * this extent record is for. This allows a file extent to point
  782. * into the middle of an existing extent on disk, sharing it
  783. * between two snapshots (useful if some bytes in the middle of the
  784. * extent have changed
  785. */
  786. __le64 offset;
  787. /*
  788. * the logical number of file blocks (no csums included). This
  789. * always reflects the size uncompressed and without encoding.
  790. */
  791. __le64 num_bytes;
  792. } __attribute__ ((__packed__));
  793. struct btrfs_csum_item {
  794. u8 csum;
  795. } __attribute__ ((__packed__));
  796. struct btrfs_dev_stats_item {
  797. /*
  798. * grow this item struct at the end for future enhancements and keep
  799. * the existing values unchanged
  800. */
  801. __le64 values[BTRFS_DEV_STAT_VALUES_MAX];
  802. } __attribute__ ((__packed__));
  803. #define BTRFS_DEV_REPLACE_ITEM_CONT_READING_FROM_SRCDEV_MODE_ALWAYS 0
  804. #define BTRFS_DEV_REPLACE_ITEM_CONT_READING_FROM_SRCDEV_MODE_AVOID 1
  805. #define BTRFS_DEV_REPLACE_ITEM_STATE_NEVER_STARTED 0
  806. #define BTRFS_DEV_REPLACE_ITEM_STATE_STARTED 1
  807. #define BTRFS_DEV_REPLACE_ITEM_STATE_SUSPENDED 2
  808. #define BTRFS_DEV_REPLACE_ITEM_STATE_FINISHED 3
  809. #define BTRFS_DEV_REPLACE_ITEM_STATE_CANCELED 4
  810. struct btrfs_dev_replace {
  811. u64 replace_state; /* see #define above */
  812. u64 time_started; /* seconds since 1-Jan-1970 */
  813. u64 time_stopped; /* seconds since 1-Jan-1970 */
  814. atomic64_t num_write_errors;
  815. atomic64_t num_uncorrectable_read_errors;
  816. u64 cursor_left;
  817. u64 committed_cursor_left;
  818. u64 cursor_left_last_write_of_item;
  819. u64 cursor_right;
  820. u64 cont_reading_from_srcdev_mode; /* see #define above */
  821. int is_valid;
  822. int item_needs_writeback;
  823. struct btrfs_device *srcdev;
  824. struct btrfs_device *tgtdev;
  825. pid_t lock_owner;
  826. atomic_t nesting_level;
  827. struct mutex lock_finishing_cancel_unmount;
  828. struct mutex lock_management_lock;
  829. struct mutex lock;
  830. struct btrfs_scrub_progress scrub_progress;
  831. };
  832. struct btrfs_dev_replace_item {
  833. /*
  834. * grow this item struct at the end for future enhancements and keep
  835. * the existing values unchanged
  836. */
  837. __le64 src_devid;
  838. __le64 cursor_left;
  839. __le64 cursor_right;
  840. __le64 cont_reading_from_srcdev_mode;
  841. __le64 replace_state;
  842. __le64 time_started;
  843. __le64 time_stopped;
  844. __le64 num_write_errors;
  845. __le64 num_uncorrectable_read_errors;
  846. } __attribute__ ((__packed__));
  847. /* different types of block groups (and chunks) */
  848. #define BTRFS_BLOCK_GROUP_DATA (1ULL << 0)
  849. #define BTRFS_BLOCK_GROUP_SYSTEM (1ULL << 1)
  850. #define BTRFS_BLOCK_GROUP_METADATA (1ULL << 2)
  851. #define BTRFS_BLOCK_GROUP_RAID0 (1ULL << 3)
  852. #define BTRFS_BLOCK_GROUP_RAID1 (1ULL << 4)
  853. #define BTRFS_BLOCK_GROUP_DUP (1ULL << 5)
  854. #define BTRFS_BLOCK_GROUP_RAID10 (1ULL << 6)
  855. #define BTRFS_BLOCK_GROUP_RAID5 (1ULL << 7)
  856. #define BTRFS_BLOCK_GROUP_RAID6 (1ULL << 8)
  857. #define BTRFS_BLOCK_GROUP_RESERVED (BTRFS_AVAIL_ALLOC_BIT_SINGLE | \
  858. BTRFS_SPACE_INFO_GLOBAL_RSV)
  859. enum btrfs_raid_types {
  860. BTRFS_RAID_RAID10,
  861. BTRFS_RAID_RAID1,
  862. BTRFS_RAID_DUP,
  863. BTRFS_RAID_RAID0,
  864. BTRFS_RAID_SINGLE,
  865. BTRFS_RAID_RAID5,
  866. BTRFS_RAID_RAID6,
  867. BTRFS_NR_RAID_TYPES
  868. };
  869. #define BTRFS_BLOCK_GROUP_TYPE_MASK (BTRFS_BLOCK_GROUP_DATA | \
  870. BTRFS_BLOCK_GROUP_SYSTEM | \
  871. BTRFS_BLOCK_GROUP_METADATA)
  872. #define BTRFS_BLOCK_GROUP_PROFILE_MASK (BTRFS_BLOCK_GROUP_RAID0 | \
  873. BTRFS_BLOCK_GROUP_RAID1 | \
  874. BTRFS_BLOCK_GROUP_RAID5 | \
  875. BTRFS_BLOCK_GROUP_RAID6 | \
  876. BTRFS_BLOCK_GROUP_DUP | \
  877. BTRFS_BLOCK_GROUP_RAID10)
  878. #define BTRFS_BLOCK_GROUP_RAID56_MASK (BTRFS_BLOCK_GROUP_RAID5 | \
  879. BTRFS_BLOCK_GROUP_RAID6)
  880. /*
  881. * We need a bit for restriper to be able to tell when chunks of type
  882. * SINGLE are available. This "extended" profile format is used in
  883. * fs_info->avail_*_alloc_bits (in-memory) and balance item fields
  884. * (on-disk). The corresponding on-disk bit in chunk.type is reserved
  885. * to avoid remappings between two formats in future.
  886. */
  887. #define BTRFS_AVAIL_ALLOC_BIT_SINGLE (1ULL << 48)
  888. /*
  889. * A fake block group type that is used to communicate global block reserve
  890. * size to userspace via the SPACE_INFO ioctl.
  891. */
  892. #define BTRFS_SPACE_INFO_GLOBAL_RSV (1ULL << 49)
  893. #define BTRFS_EXTENDED_PROFILE_MASK (BTRFS_BLOCK_GROUP_PROFILE_MASK | \
  894. BTRFS_AVAIL_ALLOC_BIT_SINGLE)
  895. static inline u64 chunk_to_extended(u64 flags)
  896. {
  897. if ((flags & BTRFS_BLOCK_GROUP_PROFILE_MASK) == 0)
  898. flags |= BTRFS_AVAIL_ALLOC_BIT_SINGLE;
  899. return flags;
  900. }
  901. static inline u64 extended_to_chunk(u64 flags)
  902. {
  903. return flags & ~BTRFS_AVAIL_ALLOC_BIT_SINGLE;
  904. }
  905. struct btrfs_block_group_item {
  906. __le64 used;
  907. __le64 chunk_objectid;
  908. __le64 flags;
  909. } __attribute__ ((__packed__));
  910. #define BTRFS_QGROUP_LEVEL_SHIFT 48
  911. static inline u64 btrfs_qgroup_level(u64 qgroupid)
  912. {
  913. return qgroupid >> BTRFS_QGROUP_LEVEL_SHIFT;
  914. }
  915. /*
  916. * is subvolume quota turned on?
  917. */
  918. #define BTRFS_QGROUP_STATUS_FLAG_ON (1ULL << 0)
  919. /*
  920. * RESCAN is set during the initialization phase
  921. */
  922. #define BTRFS_QGROUP_STATUS_FLAG_RESCAN (1ULL << 1)
  923. /*
  924. * Some qgroup entries are known to be out of date,
  925. * either because the configuration has changed in a way that
  926. * makes a rescan necessary, or because the fs has been mounted
  927. * with a non-qgroup-aware version.
  928. * Turning qouta off and on again makes it inconsistent, too.
  929. */
  930. #define BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT (1ULL << 2)
  931. #define BTRFS_QGROUP_STATUS_VERSION 1
  932. struct btrfs_qgroup_status_item {
  933. __le64 version;
  934. /*
  935. * the generation is updated during every commit. As older
  936. * versions of btrfs are not aware of qgroups, it will be
  937. * possible to detect inconsistencies by checking the
  938. * generation on mount time
  939. */
  940. __le64 generation;
  941. /* flag definitions see above */
  942. __le64 flags;
  943. /*
  944. * only used during scanning to record the progress
  945. * of the scan. It contains a logical address
  946. */
  947. __le64 rescan;
  948. } __attribute__ ((__packed__));
  949. struct btrfs_qgroup_info_item {
  950. __le64 generation;
  951. __le64 rfer;
  952. __le64 rfer_cmpr;
  953. __le64 excl;
  954. __le64 excl_cmpr;
  955. } __attribute__ ((__packed__));
  956. /* flags definition for qgroup limits */
  957. #define BTRFS_QGROUP_LIMIT_MAX_RFER (1ULL << 0)
  958. #define BTRFS_QGROUP_LIMIT_MAX_EXCL (1ULL << 1)
  959. #define BTRFS_QGROUP_LIMIT_RSV_RFER (1ULL << 2)
  960. #define BTRFS_QGROUP_LIMIT_RSV_EXCL (1ULL << 3)
  961. #define BTRFS_QGROUP_LIMIT_RFER_CMPR (1ULL << 4)
  962. #define BTRFS_QGROUP_LIMIT_EXCL_CMPR (1ULL << 5)
  963. struct btrfs_qgroup_limit_item {
  964. /*
  965. * only updated when any of the other values change
  966. */
  967. __le64 flags;
  968. __le64 max_rfer;
  969. __le64 max_excl;
  970. __le64 rsv_rfer;
  971. __le64 rsv_excl;
  972. } __attribute__ ((__packed__));
  973. /* For raid type sysfs entries */
  974. struct raid_kobject {
  975. int raid_type;
  976. struct kobject kobj;
  977. };
  978. struct btrfs_space_info {
  979. spinlock_t lock;
  980. u64 total_bytes; /* total bytes in the space,
  981. this doesn't take mirrors into account */
  982. u64 bytes_used; /* total bytes used,
  983. this doesn't take mirrors into account */
  984. u64 bytes_pinned; /* total bytes pinned, will be freed when the
  985. transaction finishes */
  986. u64 bytes_reserved; /* total bytes the allocator has reserved for
  987. current allocations */
  988. u64 bytes_may_use; /* number of bytes that may be used for
  989. delalloc/allocations */
  990. u64 bytes_readonly; /* total bytes that are read only */
  991. u64 max_extent_size; /* This will hold the maximum extent size of
  992. the space info if we had an ENOSPC in the
  993. allocator. */
  994. unsigned int full:1; /* indicates that we cannot allocate any more
  995. chunks for this space */
  996. unsigned int chunk_alloc:1; /* set if we are allocating a chunk */
  997. unsigned int flush:1; /* set if we are trying to make space */
  998. unsigned int force_alloc; /* set if we need to force a chunk
  999. alloc for this space */
  1000. u64 disk_used; /* total bytes used on disk */
  1001. u64 disk_total; /* total bytes on disk, takes mirrors into
  1002. account */
  1003. u64 flags;
  1004. /*
  1005. * bytes_pinned is kept in line with what is actually pinned, as in
  1006. * we've called update_block_group and dropped the bytes_used counter
  1007. * and increased the bytes_pinned counter. However this means that
  1008. * bytes_pinned does not reflect the bytes that will be pinned once the
  1009. * delayed refs are flushed, so this counter is inc'ed everytime we call
  1010. * btrfs_free_extent so it is a realtime count of what will be freed
  1011. * once the transaction is committed. It will be zero'ed everytime the
  1012. * transaction commits.
  1013. */
  1014. struct percpu_counter total_bytes_pinned;
  1015. struct list_head list;
  1016. /* Protected by the spinlock 'lock'. */
  1017. struct list_head ro_bgs;
  1018. struct rw_semaphore groups_sem;
  1019. /* for block groups in our same type */
  1020. struct list_head block_groups[BTRFS_NR_RAID_TYPES];
  1021. wait_queue_head_t wait;
  1022. struct kobject kobj;
  1023. struct kobject *block_group_kobjs[BTRFS_NR_RAID_TYPES];
  1024. };
  1025. #define BTRFS_BLOCK_RSV_GLOBAL 1
  1026. #define BTRFS_BLOCK_RSV_DELALLOC 2
  1027. #define BTRFS_BLOCK_RSV_TRANS 3
  1028. #define BTRFS_BLOCK_RSV_CHUNK 4
  1029. #define BTRFS_BLOCK_RSV_DELOPS 5
  1030. #define BTRFS_BLOCK_RSV_EMPTY 6
  1031. #define BTRFS_BLOCK_RSV_TEMP 7
  1032. struct btrfs_block_rsv {
  1033. u64 size;
  1034. u64 reserved;
  1035. struct btrfs_space_info *space_info;
  1036. spinlock_t lock;
  1037. unsigned short full;
  1038. unsigned short type;
  1039. unsigned short failfast;
  1040. };
  1041. /*
  1042. * free clusters are used to claim free space in relatively large chunks,
  1043. * allowing us to do less seeky writes. They are used for all metadata
  1044. * allocations and data allocations in ssd mode.
  1045. */
  1046. struct btrfs_free_cluster {
  1047. spinlock_t lock;
  1048. spinlock_t refill_lock;
  1049. struct rb_root root;
  1050. /* largest extent in this cluster */
  1051. u64 max_size;
  1052. /* first extent starting offset */
  1053. u64 window_start;
  1054. /* We did a full search and couldn't create a cluster */
  1055. bool fragmented;
  1056. struct btrfs_block_group_cache *block_group;
  1057. /*
  1058. * when a cluster is allocated from a block group, we put the
  1059. * cluster onto a list in the block group so that it can
  1060. * be freed before the block group is freed.
  1061. */
  1062. struct list_head block_group_list;
  1063. };
  1064. enum btrfs_caching_type {
  1065. BTRFS_CACHE_NO = 0,
  1066. BTRFS_CACHE_STARTED = 1,
  1067. BTRFS_CACHE_FAST = 2,
  1068. BTRFS_CACHE_FINISHED = 3,
  1069. BTRFS_CACHE_ERROR = 4,
  1070. };
  1071. enum btrfs_disk_cache_state {
  1072. BTRFS_DC_WRITTEN = 0,
  1073. BTRFS_DC_ERROR = 1,
  1074. BTRFS_DC_CLEAR = 2,
  1075. BTRFS_DC_SETUP = 3,
  1076. };
  1077. struct btrfs_caching_control {
  1078. struct list_head list;
  1079. struct mutex mutex;
  1080. wait_queue_head_t wait;
  1081. struct btrfs_work work;
  1082. struct btrfs_block_group_cache *block_group;
  1083. u64 progress;
  1084. atomic_t count;
  1085. };
  1086. struct btrfs_io_ctl {
  1087. void *cur, *orig;
  1088. struct page *page;
  1089. struct page **pages;
  1090. struct btrfs_root *root;
  1091. struct inode *inode;
  1092. unsigned long size;
  1093. int index;
  1094. int num_pages;
  1095. int entries;
  1096. int bitmaps;
  1097. unsigned check_crcs:1;
  1098. };
  1099. struct btrfs_block_group_cache {
  1100. struct btrfs_key key;
  1101. struct btrfs_block_group_item item;
  1102. struct btrfs_fs_info *fs_info;
  1103. struct inode *inode;
  1104. spinlock_t lock;
  1105. u64 pinned;
  1106. u64 reserved;
  1107. u64 delalloc_bytes;
  1108. u64 bytes_super;
  1109. u64 flags;
  1110. u64 sectorsize;
  1111. u64 cache_generation;
  1112. /*
  1113. * It is just used for the delayed data space allocation because
  1114. * only the data space allocation and the relative metadata update
  1115. * can be done cross the transaction.
  1116. */
  1117. struct rw_semaphore data_rwsem;
  1118. /* for raid56, this is a full stripe, without parity */
  1119. unsigned long full_stripe_len;
  1120. unsigned int ro;
  1121. unsigned int iref:1;
  1122. unsigned int has_caching_ctl:1;
  1123. unsigned int removed:1;
  1124. int disk_cache_state;
  1125. /* cache tracking stuff */
  1126. int cached;
  1127. struct btrfs_caching_control *caching_ctl;
  1128. u64 last_byte_to_unpin;
  1129. struct btrfs_space_info *space_info;
  1130. /* free space cache stuff */
  1131. struct btrfs_free_space_ctl *free_space_ctl;
  1132. /* block group cache stuff */
  1133. struct rb_node cache_node;
  1134. /* for block groups in the same raid type */
  1135. struct list_head list;
  1136. /* usage count */
  1137. atomic_t count;
  1138. /* List of struct btrfs_free_clusters for this block group.
  1139. * Today it will only have one thing on it, but that may change
  1140. */
  1141. struct list_head cluster_list;
  1142. /* For delayed block group creation or deletion of empty block groups */
  1143. struct list_head bg_list;
  1144. /* For read-only block groups */
  1145. struct list_head ro_list;
  1146. atomic_t trimming;
  1147. /* For dirty block groups */
  1148. struct list_head dirty_list;
  1149. struct list_head io_list;
  1150. struct btrfs_io_ctl io_ctl;
  1151. };
  1152. /* delayed seq elem */
  1153. struct seq_list {
  1154. struct list_head list;
  1155. u64 seq;
  1156. };
  1157. #define SEQ_LIST_INIT(name) { .list = LIST_HEAD_INIT((name).list), .seq = 0 }
  1158. enum btrfs_orphan_cleanup_state {
  1159. ORPHAN_CLEANUP_STARTED = 1,
  1160. ORPHAN_CLEANUP_DONE = 2,
  1161. };
  1162. /* used by the raid56 code to lock stripes for read/modify/write */
  1163. struct btrfs_stripe_hash {
  1164. struct list_head hash_list;
  1165. wait_queue_head_t wait;
  1166. spinlock_t lock;
  1167. };
  1168. /* used by the raid56 code to lock stripes for read/modify/write */
  1169. struct btrfs_stripe_hash_table {
  1170. struct list_head stripe_cache;
  1171. spinlock_t cache_lock;
  1172. int cache_size;
  1173. struct btrfs_stripe_hash table[];
  1174. };
  1175. #define BTRFS_STRIPE_HASH_TABLE_BITS 11
  1176. void btrfs_init_async_reclaim_work(struct work_struct *work);
  1177. /* fs_info */
  1178. struct reloc_control;
  1179. struct btrfs_device;
  1180. struct btrfs_fs_devices;
  1181. struct btrfs_balance_control;
  1182. struct btrfs_delayed_root;
  1183. struct btrfs_fs_info {
  1184. u8 fsid[BTRFS_FSID_SIZE];
  1185. u8 chunk_tree_uuid[BTRFS_UUID_SIZE];
  1186. struct btrfs_root *extent_root;
  1187. struct btrfs_root *tree_root;
  1188. struct btrfs_root *chunk_root;
  1189. struct btrfs_root *dev_root;
  1190. struct btrfs_root *fs_root;
  1191. struct btrfs_root *csum_root;
  1192. struct btrfs_root *quota_root;
  1193. struct btrfs_root *uuid_root;
  1194. /* the log root tree is a directory of all the other log roots */
  1195. struct btrfs_root *log_root_tree;
  1196. spinlock_t fs_roots_radix_lock;
  1197. struct radix_tree_root fs_roots_radix;
  1198. /* block group cache stuff */
  1199. spinlock_t block_group_cache_lock;
  1200. u64 first_logical_byte;
  1201. struct rb_root block_group_cache_tree;
  1202. /* keep track of unallocated space */
  1203. spinlock_t free_chunk_lock;
  1204. u64 free_chunk_space;
  1205. struct extent_io_tree freed_extents[2];
  1206. struct extent_io_tree *pinned_extents;
  1207. /* logical->physical extent mapping */
  1208. struct btrfs_mapping_tree mapping_tree;
  1209. /*
  1210. * block reservation for extent, checksum, root tree and
  1211. * delayed dir index item
  1212. */
  1213. struct btrfs_block_rsv global_block_rsv;
  1214. /* block reservation for delay allocation */
  1215. struct btrfs_block_rsv delalloc_block_rsv;
  1216. /* block reservation for metadata operations */
  1217. struct btrfs_block_rsv trans_block_rsv;
  1218. /* block reservation for chunk tree */
  1219. struct btrfs_block_rsv chunk_block_rsv;
  1220. /* block reservation for delayed operations */
  1221. struct btrfs_block_rsv delayed_block_rsv;
  1222. struct btrfs_block_rsv empty_block_rsv;
  1223. u64 generation;
  1224. u64 last_trans_committed;
  1225. u64 avg_delayed_ref_runtime;
  1226. /*
  1227. * this is updated to the current trans every time a full commit
  1228. * is required instead of the faster short fsync log commits
  1229. */
  1230. u64 last_trans_log_full_commit;
  1231. unsigned long mount_opt;
  1232. /*
  1233. * Track requests for actions that need to be done during transaction
  1234. * commit (like for some mount options).
  1235. */
  1236. unsigned long pending_changes;
  1237. unsigned long compress_type:4;
  1238. int commit_interval;
  1239. /*
  1240. * It is a suggestive number, the read side is safe even it gets a
  1241. * wrong number because we will write out the data into a regular
  1242. * extent. The write side(mount/remount) is under ->s_umount lock,
  1243. * so it is also safe.
  1244. */
  1245. u64 max_inline;
  1246. /*
  1247. * Protected by ->chunk_mutex and sb->s_umount.
  1248. *
  1249. * The reason that we use two lock to protect it is because only
  1250. * remount and mount operations can change it and these two operations
  1251. * are under sb->s_umount, but the read side (chunk allocation) can not
  1252. * acquire sb->s_umount or the deadlock would happen. So we use two
  1253. * locks to protect it. On the write side, we must acquire two locks,
  1254. * and on the read side, we just need acquire one of them.
  1255. */
  1256. u64 alloc_start;
  1257. struct btrfs_transaction *running_transaction;
  1258. wait_queue_head_t transaction_throttle;
  1259. wait_queue_head_t transaction_wait;
  1260. wait_queue_head_t transaction_blocked_wait;
  1261. wait_queue_head_t async_submit_wait;
  1262. /*
  1263. * Used to protect the incompat_flags, compat_flags, compat_ro_flags
  1264. * when they are updated.
  1265. *
  1266. * Because we do not clear the flags for ever, so we needn't use
  1267. * the lock on the read side.
  1268. *
  1269. * We also needn't use the lock when we mount the fs, because
  1270. * there is no other task which will update the flag.
  1271. */
  1272. spinlock_t super_lock;
  1273. struct btrfs_super_block *super_copy;
  1274. struct btrfs_super_block *super_for_commit;
  1275. struct block_device *__bdev;
  1276. struct super_block *sb;
  1277. struct inode *btree_inode;
  1278. struct backing_dev_info bdi;
  1279. struct mutex tree_log_mutex;
  1280. struct mutex transaction_kthread_mutex;
  1281. struct mutex cleaner_mutex;
  1282. struct mutex chunk_mutex;
  1283. struct mutex volume_mutex;
  1284. /*
  1285. * this is taken to make sure we don't set block groups ro after
  1286. * the free space cache has been allocated on them
  1287. */
  1288. struct mutex ro_block_group_mutex;
  1289. /* this is used during read/modify/write to make sure
  1290. * no two ios are trying to mod the same stripe at the same
  1291. * time
  1292. */
  1293. struct btrfs_stripe_hash_table *stripe_hash_table;
  1294. /*
  1295. * this protects the ordered operations list only while we are
  1296. * processing all of the entries on it. This way we make
  1297. * sure the commit code doesn't find the list temporarily empty
  1298. * because another function happens to be doing non-waiting preflush
  1299. * before jumping into the main commit.
  1300. */
  1301. struct mutex ordered_operations_mutex;
  1302. struct rw_semaphore commit_root_sem;
  1303. struct rw_semaphore cleanup_work_sem;
  1304. struct rw_semaphore subvol_sem;
  1305. struct srcu_struct subvol_srcu;
  1306. spinlock_t trans_lock;
  1307. /*
  1308. * the reloc mutex goes with the trans lock, it is taken
  1309. * during commit to protect us from the relocation code
  1310. */
  1311. struct mutex reloc_mutex;
  1312. struct list_head trans_list;
  1313. struct list_head dead_roots;
  1314. struct list_head caching_block_groups;
  1315. spinlock_t delayed_iput_lock;
  1316. struct list_head delayed_iputs;
  1317. struct rw_semaphore delayed_iput_sem;
  1318. /* this protects tree_mod_seq_list */
  1319. spinlock_t tree_mod_seq_lock;
  1320. atomic64_t tree_mod_seq;
  1321. struct list_head tree_mod_seq_list;
  1322. /* this protects tree_mod_log */
  1323. rwlock_t tree_mod_log_lock;
  1324. struct rb_root tree_mod_log;
  1325. atomic_t nr_async_submits;
  1326. atomic_t async_submit_draining;
  1327. atomic_t nr_async_bios;
  1328. atomic_t async_delalloc_pages;
  1329. atomic_t open_ioctl_trans;
  1330. /*
  1331. * this is used to protect the following list -- ordered_roots.
  1332. */
  1333. spinlock_t ordered_root_lock;
  1334. /*
  1335. * all fs/file tree roots in which there are data=ordered extents
  1336. * pending writeback are added into this list.
  1337. *
  1338. * these can span multiple transactions and basically include
  1339. * every dirty data page that isn't from nodatacow
  1340. */
  1341. struct list_head ordered_roots;
  1342. struct mutex delalloc_root_mutex;
  1343. spinlock_t delalloc_root_lock;
  1344. /* all fs/file tree roots that have delalloc inodes. */
  1345. struct list_head delalloc_roots;
  1346. /*
  1347. * there is a pool of worker threads for checksumming during writes
  1348. * and a pool for checksumming after reads. This is because readers
  1349. * can run with FS locks held, and the writers may be waiting for
  1350. * those locks. We don't want ordering in the pending list to cause
  1351. * deadlocks, and so the two are serviced separately.
  1352. *
  1353. * A third pool does submit_bio to avoid deadlocking with the other
  1354. * two
  1355. */
  1356. struct btrfs_workqueue *workers;
  1357. struct btrfs_workqueue *delalloc_workers;
  1358. struct btrfs_workqueue *flush_workers;
  1359. struct btrfs_workqueue *endio_workers;
  1360. struct btrfs_workqueue *endio_meta_workers;
  1361. struct btrfs_workqueue *endio_raid56_workers;
  1362. struct btrfs_workqueue *endio_repair_workers;
  1363. struct btrfs_workqueue *rmw_workers;
  1364. struct btrfs_workqueue *endio_meta_write_workers;
  1365. struct btrfs_workqueue *endio_write_workers;
  1366. struct btrfs_workqueue *endio_freespace_worker;
  1367. struct btrfs_workqueue *submit_workers;
  1368. struct btrfs_workqueue *caching_workers;
  1369. struct btrfs_workqueue *readahead_workers;
  1370. /*
  1371. * fixup workers take dirty pages that didn't properly go through
  1372. * the cow mechanism and make them safe to write. It happens
  1373. * for the sys_munmap function call path
  1374. */
  1375. struct btrfs_workqueue *fixup_workers;
  1376. struct btrfs_workqueue *delayed_workers;
  1377. /* the extent workers do delayed refs on the extent allocation tree */
  1378. struct btrfs_workqueue *extent_workers;
  1379. struct task_struct *transaction_kthread;
  1380. struct task_struct *cleaner_kthread;
  1381. int thread_pool_size;
  1382. struct kobject *space_info_kobj;
  1383. int do_barriers;
  1384. int closing;
  1385. int log_root_recovering;
  1386. int open;
  1387. u64 total_pinned;
  1388. /* used to keep from writing metadata until there is a nice batch */
  1389. struct percpu_counter dirty_metadata_bytes;
  1390. struct percpu_counter delalloc_bytes;
  1391. s32 dirty_metadata_batch;
  1392. s32 delalloc_batch;
  1393. struct list_head dirty_cowonly_roots;
  1394. struct btrfs_fs_devices *fs_devices;
  1395. /*
  1396. * the space_info list is almost entirely read only. It only changes
  1397. * when we add a new raid type to the FS, and that happens
  1398. * very rarely. RCU is used to protect it.
  1399. */
  1400. struct list_head space_info;
  1401. struct btrfs_space_info *data_sinfo;
  1402. struct reloc_control *reloc_ctl;
  1403. /* data_alloc_cluster is only used in ssd mode */
  1404. struct btrfs_free_cluster data_alloc_cluster;
  1405. /* all metadata allocations go through this cluster */
  1406. struct btrfs_free_cluster meta_alloc_cluster;
  1407. /* auto defrag inodes go here */
  1408. spinlock_t defrag_inodes_lock;
  1409. struct rb_root defrag_inodes;
  1410. atomic_t defrag_running;
  1411. /* Used to protect avail_{data, metadata, system}_alloc_bits */
  1412. seqlock_t profiles_lock;
  1413. /*
  1414. * these three are in extended format (availability of single
  1415. * chunks is denoted by BTRFS_AVAIL_ALLOC_BIT_SINGLE bit, other
  1416. * types are denoted by corresponding BTRFS_BLOCK_GROUP_* bits)
  1417. */
  1418. u64 avail_data_alloc_bits;
  1419. u64 avail_metadata_alloc_bits;
  1420. u64 avail_system_alloc_bits;
  1421. /* restriper state */
  1422. spinlock_t balance_lock;
  1423. struct mutex balance_mutex;
  1424. atomic_t balance_running;
  1425. atomic_t balance_pause_req;
  1426. atomic_t balance_cancel_req;
  1427. struct btrfs_balance_control *balance_ctl;
  1428. wait_queue_head_t balance_wait_q;
  1429. unsigned data_chunk_allocations;
  1430. unsigned metadata_ratio;
  1431. void *bdev_holder;
  1432. /* private scrub information */
  1433. struct mutex scrub_lock;
  1434. atomic_t scrubs_running;
  1435. atomic_t scrub_pause_req;
  1436. atomic_t scrubs_paused;
  1437. atomic_t scrub_cancel_req;
  1438. wait_queue_head_t scrub_pause_wait;
  1439. int scrub_workers_refcnt;
  1440. struct btrfs_workqueue *scrub_workers;
  1441. struct btrfs_workqueue *scrub_wr_completion_workers;
  1442. struct btrfs_workqueue *scrub_nocow_workers;
  1443. struct btrfs_workqueue *scrub_parity_workers;
  1444. #ifdef CONFIG_BTRFS_FS_CHECK_INTEGRITY
  1445. u32 check_integrity_print_mask;
  1446. #endif
  1447. /*
  1448. * quota information
  1449. */
  1450. unsigned int quota_enabled:1;
  1451. /*
  1452. * quota_enabled only changes state after a commit. This holds the
  1453. * next state.
  1454. */
  1455. unsigned int pending_quota_state:1;
  1456. /* is qgroup tracking in a consistent state? */
  1457. u64 qgroup_flags;
  1458. /* holds configuration and tracking. Protected by qgroup_lock */
  1459. struct rb_root qgroup_tree;
  1460. struct rb_root qgroup_op_tree;
  1461. spinlock_t qgroup_lock;
  1462. spinlock_t qgroup_op_lock;
  1463. atomic_t qgroup_op_seq;
  1464. /*
  1465. * used to avoid frequently calling ulist_alloc()/ulist_free()
  1466. * when doing qgroup accounting, it must be protected by qgroup_lock.
  1467. */
  1468. struct ulist *qgroup_ulist;
  1469. /* protect user change for quota operations */
  1470. struct mutex qgroup_ioctl_lock;
  1471. /* list of dirty qgroups to be written at next commit */
  1472. struct list_head dirty_qgroups;
  1473. /* used by qgroup for an efficient tree traversal */
  1474. u64 qgroup_seq;
  1475. /* qgroup rescan items */
  1476. struct mutex qgroup_rescan_lock; /* protects the progress item */
  1477. struct btrfs_key qgroup_rescan_progress;
  1478. struct btrfs_workqueue *qgroup_rescan_workers;
  1479. struct completion qgroup_rescan_completion;
  1480. struct btrfs_work qgroup_rescan_work;
  1481. /* filesystem state */
  1482. unsigned long fs_state;
  1483. struct btrfs_delayed_root *delayed_root;
  1484. /* readahead tree */
  1485. spinlock_t reada_lock;
  1486. struct radix_tree_root reada_tree;
  1487. /* Extent buffer radix tree */
  1488. spinlock_t buffer_lock;
  1489. struct radix_tree_root buffer_radix;
  1490. /* next backup root to be overwritten */
  1491. int backup_root_index;
  1492. int num_tolerated_disk_barrier_failures;
  1493. /* device replace state */
  1494. struct btrfs_dev_replace dev_replace;
  1495. atomic_t mutually_exclusive_operation_running;
  1496. struct percpu_counter bio_counter;
  1497. wait_queue_head_t replace_wait;
  1498. struct semaphore uuid_tree_rescan_sem;
  1499. unsigned int update_uuid_tree_gen:1;
  1500. /* Used to reclaim the metadata space in the background. */
  1501. struct work_struct async_reclaim_work;
  1502. spinlock_t unused_bgs_lock;
  1503. struct list_head unused_bgs;
  1504. struct mutex unused_bg_unpin_mutex;
  1505. struct mutex delete_unused_bgs_mutex;
  1506. /* For btrfs to record security options */
  1507. struct security_mnt_opts security_opts;
  1508. /*
  1509. * Chunks that can't be freed yet (under a trim/discard operation)
  1510. * and will be latter freed. Protected by fs_info->chunk_mutex.
  1511. */
  1512. struct list_head pinned_chunks;
  1513. };
  1514. struct btrfs_subvolume_writers {
  1515. struct percpu_counter counter;
  1516. wait_queue_head_t wait;
  1517. };
  1518. /*
  1519. * The state of btrfs root
  1520. */
  1521. /*
  1522. * btrfs_record_root_in_trans is a multi-step process,
  1523. * and it can race with the balancing code. But the
  1524. * race is very small, and only the first time the root
  1525. * is added to each transaction. So IN_TRANS_SETUP
  1526. * is used to tell us when more checks are required
  1527. */
  1528. #define BTRFS_ROOT_IN_TRANS_SETUP 0
  1529. #define BTRFS_ROOT_REF_COWS 1
  1530. #define BTRFS_ROOT_TRACK_DIRTY 2
  1531. #define BTRFS_ROOT_IN_RADIX 3
  1532. #define BTRFS_ROOT_DUMMY_ROOT 4
  1533. #define BTRFS_ROOT_ORPHAN_ITEM_INSERTED 5
  1534. #define BTRFS_ROOT_DEFRAG_RUNNING 6
  1535. #define BTRFS_ROOT_FORCE_COW 7
  1536. #define BTRFS_ROOT_MULTI_LOG_TASKS 8
  1537. #define BTRFS_ROOT_DIRTY 9
  1538. /*
  1539. * in ram representation of the tree. extent_root is used for all allocations
  1540. * and for the extent tree extent_root root.
  1541. */
  1542. struct btrfs_root {
  1543. struct extent_buffer *node;
  1544. struct extent_buffer *commit_root;
  1545. struct btrfs_root *log_root;
  1546. struct btrfs_root *reloc_root;
  1547. unsigned long state;
  1548. struct btrfs_root_item root_item;
  1549. struct btrfs_key root_key;
  1550. struct btrfs_fs_info *fs_info;
  1551. struct extent_io_tree dirty_log_pages;
  1552. struct mutex objectid_mutex;
  1553. spinlock_t accounting_lock;
  1554. struct btrfs_block_rsv *block_rsv;
  1555. /* free ino cache stuff */
  1556. struct btrfs_free_space_ctl *free_ino_ctl;
  1557. enum btrfs_caching_type ino_cache_state;
  1558. spinlock_t ino_cache_lock;
  1559. wait_queue_head_t ino_cache_wait;
  1560. struct btrfs_free_space_ctl *free_ino_pinned;
  1561. u64 ino_cache_progress;
  1562. struct inode *ino_cache_inode;
  1563. struct mutex log_mutex;
  1564. wait_queue_head_t log_writer_wait;
  1565. wait_queue_head_t log_commit_wait[2];
  1566. struct list_head log_ctxs[2];
  1567. atomic_t log_writers;
  1568. atomic_t log_commit[2];
  1569. atomic_t log_batch;
  1570. int log_transid;
  1571. /* No matter the commit succeeds or not*/
  1572. int log_transid_committed;
  1573. /* Just be updated when the commit succeeds. */
  1574. int last_log_commit;
  1575. pid_t log_start_pid;
  1576. u64 objectid;
  1577. u64 last_trans;
  1578. /* data allocations are done in sectorsize units */
  1579. u32 sectorsize;
  1580. /* node allocations are done in nodesize units */
  1581. u32 nodesize;
  1582. u32 stripesize;
  1583. u32 type;
  1584. u64 highest_objectid;
  1585. /* only used with CONFIG_BTRFS_FS_RUN_SANITY_TESTS is enabled */
  1586. u64 alloc_bytenr;
  1587. u64 defrag_trans_start;
  1588. struct btrfs_key defrag_progress;
  1589. struct btrfs_key defrag_max;
  1590. char *name;
  1591. /* the dirty list is only used by non-reference counted roots */
  1592. struct list_head dirty_list;
  1593. struct list_head root_list;
  1594. spinlock_t log_extents_lock[2];
  1595. struct list_head logged_list[2];
  1596. spinlock_t orphan_lock;
  1597. atomic_t orphan_inodes;
  1598. struct btrfs_block_rsv *orphan_block_rsv;
  1599. int orphan_cleanup_state;
  1600. spinlock_t inode_lock;
  1601. /* red-black tree that keeps track of in-memory inodes */
  1602. struct rb_root inode_tree;
  1603. /*
  1604. * radix tree that keeps track of delayed nodes of every inode,
  1605. * protected by inode_lock
  1606. */
  1607. struct radix_tree_root delayed_nodes_tree;
  1608. /*
  1609. * right now this just gets used so that a root has its own devid
  1610. * for stat. It may be used for more later
  1611. */
  1612. dev_t anon_dev;
  1613. spinlock_t root_item_lock;
  1614. atomic_t refs;
  1615. struct mutex delalloc_mutex;
  1616. spinlock_t delalloc_lock;
  1617. /*
  1618. * all of the inodes that have delalloc bytes. It is possible for
  1619. * this list to be empty even when there is still dirty data=ordered
  1620. * extents waiting to finish IO.
  1621. */
  1622. struct list_head delalloc_inodes;
  1623. struct list_head delalloc_root;
  1624. u64 nr_delalloc_inodes;
  1625. struct mutex ordered_extent_mutex;
  1626. /*
  1627. * this is used by the balancing code to wait for all the pending
  1628. * ordered extents
  1629. */
  1630. spinlock_t ordered_extent_lock;
  1631. /*
  1632. * all of the data=ordered extents pending writeback
  1633. * these can span multiple transactions and basically include
  1634. * every dirty data page that isn't from nodatacow
  1635. */
  1636. struct list_head ordered_extents;
  1637. struct list_head ordered_root;
  1638. u64 nr_ordered_extents;
  1639. /*
  1640. * Number of currently running SEND ioctls to prevent
  1641. * manipulation with the read-only status via SUBVOL_SETFLAGS
  1642. */
  1643. int send_in_progress;
  1644. struct btrfs_subvolume_writers *subv_writers;
  1645. atomic_t will_be_snapshoted;
  1646. /* For qgroup metadata space reserve */
  1647. atomic_t qgroup_meta_rsv;
  1648. };
  1649. struct btrfs_ioctl_defrag_range_args {
  1650. /* start of the defrag operation */
  1651. __u64 start;
  1652. /* number of bytes to defrag, use (u64)-1 to say all */
  1653. __u64 len;
  1654. /*
  1655. * flags for the operation, which can include turning
  1656. * on compression for this one defrag
  1657. */
  1658. __u64 flags;
  1659. /*
  1660. * any extent bigger than this will be considered
  1661. * already defragged. Use 0 to take the kernel default
  1662. * Use 1 to say every single extent must be rewritten
  1663. */
  1664. __u32 extent_thresh;
  1665. /*
  1666. * which compression method to use if turning on compression
  1667. * for this defrag operation. If unspecified, zlib will
  1668. * be used
  1669. */
  1670. __u32 compress_type;
  1671. /* spare for later */
  1672. __u32 unused[4];
  1673. };
  1674. /*
  1675. * inode items have the data typically returned from stat and store other
  1676. * info about object characteristics. There is one for every file and dir in
  1677. * the FS
  1678. */
  1679. #define BTRFS_INODE_ITEM_KEY 1
  1680. #define BTRFS_INODE_REF_KEY 12
  1681. #define BTRFS_INODE_EXTREF_KEY 13
  1682. #define BTRFS_XATTR_ITEM_KEY 24
  1683. #define BTRFS_ORPHAN_ITEM_KEY 48
  1684. /* reserve 2-15 close to the inode for later flexibility */
  1685. /*
  1686. * dir items are the name -> inode pointers in a directory. There is one
  1687. * for every name in a directory.
  1688. */
  1689. #define BTRFS_DIR_LOG_ITEM_KEY 60
  1690. #define BTRFS_DIR_LOG_INDEX_KEY 72
  1691. #define BTRFS_DIR_ITEM_KEY 84
  1692. #define BTRFS_DIR_INDEX_KEY 96
  1693. /*
  1694. * extent data is for file data
  1695. */
  1696. #define BTRFS_EXTENT_DATA_KEY 108
  1697. /*
  1698. * extent csums are stored in a separate tree and hold csums for
  1699. * an entire extent on disk.
  1700. */
  1701. #define BTRFS_EXTENT_CSUM_KEY 128
  1702. /*
  1703. * root items point to tree roots. They are typically in the root
  1704. * tree used by the super block to find all the other trees
  1705. */
  1706. #define BTRFS_ROOT_ITEM_KEY 132
  1707. /*
  1708. * root backrefs tie subvols and snapshots to the directory entries that
  1709. * reference them
  1710. */
  1711. #define BTRFS_ROOT_BACKREF_KEY 144
  1712. /*
  1713. * root refs make a fast index for listing all of the snapshots and
  1714. * subvolumes referenced by a given root. They point directly to the
  1715. * directory item in the root that references the subvol
  1716. */
  1717. #define BTRFS_ROOT_REF_KEY 156
  1718. /*
  1719. * extent items are in the extent map tree. These record which blocks
  1720. * are used, and how many references there are to each block
  1721. */
  1722. #define BTRFS_EXTENT_ITEM_KEY 168
  1723. /*
  1724. * The same as the BTRFS_EXTENT_ITEM_KEY, except it's metadata we already know
  1725. * the length, so we save the level in key->offset instead of the length.
  1726. */
  1727. #define BTRFS_METADATA_ITEM_KEY 169
  1728. #define BTRFS_TREE_BLOCK_REF_KEY 176
  1729. #define BTRFS_EXTENT_DATA_REF_KEY 178
  1730. #define BTRFS_EXTENT_REF_V0_KEY 180
  1731. #define BTRFS_SHARED_BLOCK_REF_KEY 182
  1732. #define BTRFS_SHARED_DATA_REF_KEY 184
  1733. /*
  1734. * block groups give us hints into the extent allocation trees. Which
  1735. * blocks are free etc etc
  1736. */
  1737. #define BTRFS_BLOCK_GROUP_ITEM_KEY 192
  1738. #define BTRFS_DEV_EXTENT_KEY 204
  1739. #define BTRFS_DEV_ITEM_KEY 216
  1740. #define BTRFS_CHUNK_ITEM_KEY 228
  1741. /*
  1742. * Records the overall state of the qgroups.
  1743. * There's only one instance of this key present,
  1744. * (0, BTRFS_QGROUP_STATUS_KEY, 0)
  1745. */
  1746. #define BTRFS_QGROUP_STATUS_KEY 240
  1747. /*
  1748. * Records the currently used space of the qgroup.
  1749. * One key per qgroup, (0, BTRFS_QGROUP_INFO_KEY, qgroupid).
  1750. */
  1751. #define BTRFS_QGROUP_INFO_KEY 242
  1752. /*
  1753. * Contains the user configured limits for the qgroup.
  1754. * One key per qgroup, (0, BTRFS_QGROUP_LIMIT_KEY, qgroupid).
  1755. */
  1756. #define BTRFS_QGROUP_LIMIT_KEY 244
  1757. /*
  1758. * Records the child-parent relationship of qgroups. For
  1759. * each relation, 2 keys are present:
  1760. * (childid, BTRFS_QGROUP_RELATION_KEY, parentid)
  1761. * (parentid, BTRFS_QGROUP_RELATION_KEY, childid)
  1762. */
  1763. #define BTRFS_QGROUP_RELATION_KEY 246
  1764. #define BTRFS_BALANCE_ITEM_KEY 248
  1765. /*
  1766. * Persistantly stores the io stats in the device tree.
  1767. * One key for all stats, (0, BTRFS_DEV_STATS_KEY, devid).
  1768. */
  1769. #define BTRFS_DEV_STATS_KEY 249
  1770. /*
  1771. * Persistantly stores the device replace state in the device tree.
  1772. * The key is built like this: (0, BTRFS_DEV_REPLACE_KEY, 0).
  1773. */
  1774. #define BTRFS_DEV_REPLACE_KEY 250
  1775. /*
  1776. * Stores items that allow to quickly map UUIDs to something else.
  1777. * These items are part of the filesystem UUID tree.
  1778. * The key is built like this:
  1779. * (UUID_upper_64_bits, BTRFS_UUID_KEY*, UUID_lower_64_bits).
  1780. */
  1781. #if BTRFS_UUID_SIZE != 16
  1782. #error "UUID items require BTRFS_UUID_SIZE == 16!"
  1783. #endif
  1784. #define BTRFS_UUID_KEY_SUBVOL 251 /* for UUIDs assigned to subvols */
  1785. #define BTRFS_UUID_KEY_RECEIVED_SUBVOL 252 /* for UUIDs assigned to
  1786. * received subvols */
  1787. /*
  1788. * string items are for debugging. They just store a short string of
  1789. * data in the FS
  1790. */
  1791. #define BTRFS_STRING_ITEM_KEY 253
  1792. /*
  1793. * Flags for mount options.
  1794. *
  1795. * Note: don't forget to add new options to btrfs_show_options()
  1796. */
  1797. #define BTRFS_MOUNT_NODATASUM (1 << 0)
  1798. #define BTRFS_MOUNT_NODATACOW (1 << 1)
  1799. #define BTRFS_MOUNT_NOBARRIER (1 << 2)
  1800. #define BTRFS_MOUNT_SSD (1 << 3)
  1801. #define BTRFS_MOUNT_DEGRADED (1 << 4)
  1802. #define BTRFS_MOUNT_COMPRESS (1 << 5)
  1803. #define BTRFS_MOUNT_NOTREELOG (1 << 6)
  1804. #define BTRFS_MOUNT_FLUSHONCOMMIT (1 << 7)
  1805. #define BTRFS_MOUNT_SSD_SPREAD (1 << 8)
  1806. #define BTRFS_MOUNT_NOSSD (1 << 9)
  1807. #define BTRFS_MOUNT_DISCARD (1 << 10)
  1808. #define BTRFS_MOUNT_FORCE_COMPRESS (1 << 11)
  1809. #define BTRFS_MOUNT_SPACE_CACHE (1 << 12)
  1810. #define BTRFS_MOUNT_CLEAR_CACHE (1 << 13)
  1811. #define BTRFS_MOUNT_USER_SUBVOL_RM_ALLOWED (1 << 14)
  1812. #define BTRFS_MOUNT_ENOSPC_DEBUG (1 << 15)
  1813. #define BTRFS_MOUNT_AUTO_DEFRAG (1 << 16)
  1814. #define BTRFS_MOUNT_INODE_MAP_CACHE (1 << 17)
  1815. #define BTRFS_MOUNT_RECOVERY (1 << 18)
  1816. #define BTRFS_MOUNT_SKIP_BALANCE (1 << 19)
  1817. #define BTRFS_MOUNT_CHECK_INTEGRITY (1 << 20)
  1818. #define BTRFS_MOUNT_CHECK_INTEGRITY_INCLUDING_EXTENT_DATA (1 << 21)
  1819. #define BTRFS_MOUNT_PANIC_ON_FATAL_ERROR (1 << 22)
  1820. #define BTRFS_MOUNT_RESCAN_UUID_TREE (1 << 23)
  1821. #define BTRFS_MOUNT_FRAGMENT_DATA (1 << 24)
  1822. #define BTRFS_MOUNT_FRAGMENT_METADATA (1 << 25)
  1823. #define BTRFS_DEFAULT_COMMIT_INTERVAL (30)
  1824. #define BTRFS_DEFAULT_MAX_INLINE (8192)
  1825. #define btrfs_clear_opt(o, opt) ((o) &= ~BTRFS_MOUNT_##opt)
  1826. #define btrfs_set_opt(o, opt) ((o) |= BTRFS_MOUNT_##opt)
  1827. #define btrfs_raw_test_opt(o, opt) ((o) & BTRFS_MOUNT_##opt)
  1828. #define btrfs_test_opt(root, opt) ((root)->fs_info->mount_opt & \
  1829. BTRFS_MOUNT_##opt)
  1830. #define btrfs_set_and_info(root, opt, fmt, args...) \
  1831. { \
  1832. if (!btrfs_test_opt(root, opt)) \
  1833. btrfs_info(root->fs_info, fmt, ##args); \
  1834. btrfs_set_opt(root->fs_info->mount_opt, opt); \
  1835. }
  1836. #define btrfs_clear_and_info(root, opt, fmt, args...) \
  1837. { \
  1838. if (btrfs_test_opt(root, opt)) \
  1839. btrfs_info(root->fs_info, fmt, ##args); \
  1840. btrfs_clear_opt(root->fs_info->mount_opt, opt); \
  1841. }
  1842. #ifdef CONFIG_BTRFS_DEBUG
  1843. static inline int
  1844. btrfs_should_fragment_free_space(struct btrfs_root *root,
  1845. struct btrfs_block_group_cache *block_group)
  1846. {
  1847. return (btrfs_test_opt(root, FRAGMENT_METADATA) &&
  1848. block_group->flags & BTRFS_BLOCK_GROUP_METADATA) ||
  1849. (btrfs_test_opt(root, FRAGMENT_DATA) &&
  1850. block_group->flags & BTRFS_BLOCK_GROUP_DATA);
  1851. }
  1852. #endif
  1853. /*
  1854. * Requests for changes that need to be done during transaction commit.
  1855. *
  1856. * Internal mount options that are used for special handling of the real
  1857. * mount options (eg. cannot be set during remount and have to be set during
  1858. * transaction commit)
  1859. */
  1860. #define BTRFS_PENDING_SET_INODE_MAP_CACHE (0)
  1861. #define BTRFS_PENDING_CLEAR_INODE_MAP_CACHE (1)
  1862. #define BTRFS_PENDING_COMMIT (2)
  1863. #define btrfs_test_pending(info, opt) \
  1864. test_bit(BTRFS_PENDING_##opt, &(info)->pending_changes)
  1865. #define btrfs_set_pending(info, opt) \
  1866. set_bit(BTRFS_PENDING_##opt, &(info)->pending_changes)
  1867. #define btrfs_clear_pending(info, opt) \
  1868. clear_bit(BTRFS_PENDING_##opt, &(info)->pending_changes)
  1869. /*
  1870. * Helpers for setting pending mount option changes.
  1871. *
  1872. * Expects corresponding macros
  1873. * BTRFS_PENDING_SET_ and CLEAR_ + short mount option name
  1874. */
  1875. #define btrfs_set_pending_and_info(info, opt, fmt, args...) \
  1876. do { \
  1877. if (!btrfs_raw_test_opt((info)->mount_opt, opt)) { \
  1878. btrfs_info((info), fmt, ##args); \
  1879. btrfs_set_pending((info), SET_##opt); \
  1880. btrfs_clear_pending((info), CLEAR_##opt); \
  1881. } \
  1882. } while(0)
  1883. #define btrfs_clear_pending_and_info(info, opt, fmt, args...) \
  1884. do { \
  1885. if (btrfs_raw_test_opt((info)->mount_opt, opt)) { \
  1886. btrfs_info((info), fmt, ##args); \
  1887. btrfs_set_pending((info), CLEAR_##opt); \
  1888. btrfs_clear_pending((info), SET_##opt); \
  1889. } \
  1890. } while(0)
  1891. /*
  1892. * Inode flags
  1893. */
  1894. #define BTRFS_INODE_NODATASUM (1 << 0)
  1895. #define BTRFS_INODE_NODATACOW (1 << 1)
  1896. #define BTRFS_INODE_READONLY (1 << 2)
  1897. #define BTRFS_INODE_NOCOMPRESS (1 << 3)
  1898. #define BTRFS_INODE_PREALLOC (1 << 4)
  1899. #define BTRFS_INODE_SYNC (1 << 5)
  1900. #define BTRFS_INODE_IMMUTABLE (1 << 6)
  1901. #define BTRFS_INODE_APPEND (1 << 7)
  1902. #define BTRFS_INODE_NODUMP (1 << 8)
  1903. #define BTRFS_INODE_NOATIME (1 << 9)
  1904. #define BTRFS_INODE_DIRSYNC (1 << 10)
  1905. #define BTRFS_INODE_COMPRESS (1 << 11)
  1906. #define BTRFS_INODE_ROOT_ITEM_INIT (1 << 31)
  1907. struct btrfs_map_token {
  1908. struct extent_buffer *eb;
  1909. char *kaddr;
  1910. unsigned long offset;
  1911. };
  1912. static inline void btrfs_init_map_token (struct btrfs_map_token *token)
  1913. {
  1914. token->kaddr = NULL;
  1915. }
  1916. /* some macros to generate set/get funcs for the struct fields. This
  1917. * assumes there is a lefoo_to_cpu for every type, so lets make a simple
  1918. * one for u8:
  1919. */
  1920. #define le8_to_cpu(v) (v)
  1921. #define cpu_to_le8(v) (v)
  1922. #define __le8 u8
  1923. #define read_eb_member(eb, ptr, type, member, result) ( \
  1924. read_extent_buffer(eb, (char *)(result), \
  1925. ((unsigned long)(ptr)) + \
  1926. offsetof(type, member), \
  1927. sizeof(((type *)0)->member)))
  1928. #define write_eb_member(eb, ptr, type, member, result) ( \
  1929. write_extent_buffer(eb, (char *)(result), \
  1930. ((unsigned long)(ptr)) + \
  1931. offsetof(type, member), \
  1932. sizeof(((type *)0)->member)))
  1933. #define DECLARE_BTRFS_SETGET_BITS(bits) \
  1934. u##bits btrfs_get_token_##bits(struct extent_buffer *eb, void *ptr, \
  1935. unsigned long off, \
  1936. struct btrfs_map_token *token); \
  1937. void btrfs_set_token_##bits(struct extent_buffer *eb, void *ptr, \
  1938. unsigned long off, u##bits val, \
  1939. struct btrfs_map_token *token); \
  1940. static inline u##bits btrfs_get_##bits(struct extent_buffer *eb, void *ptr, \
  1941. unsigned long off) \
  1942. { \
  1943. return btrfs_get_token_##bits(eb, ptr, off, NULL); \
  1944. } \
  1945. static inline void btrfs_set_##bits(struct extent_buffer *eb, void *ptr, \
  1946. unsigned long off, u##bits val) \
  1947. { \
  1948. btrfs_set_token_##bits(eb, ptr, off, val, NULL); \
  1949. }
  1950. DECLARE_BTRFS_SETGET_BITS(8)
  1951. DECLARE_BTRFS_SETGET_BITS(16)
  1952. DECLARE_BTRFS_SETGET_BITS(32)
  1953. DECLARE_BTRFS_SETGET_BITS(64)
  1954. #define BTRFS_SETGET_FUNCS(name, type, member, bits) \
  1955. static inline u##bits btrfs_##name(struct extent_buffer *eb, type *s) \
  1956. { \
  1957. BUILD_BUG_ON(sizeof(u##bits) != sizeof(((type *)0))->member); \
  1958. return btrfs_get_##bits(eb, s, offsetof(type, member)); \
  1959. } \
  1960. static inline void btrfs_set_##name(struct extent_buffer *eb, type *s, \
  1961. u##bits val) \
  1962. { \
  1963. BUILD_BUG_ON(sizeof(u##bits) != sizeof(((type *)0))->member); \
  1964. btrfs_set_##bits(eb, s, offsetof(type, member), val); \
  1965. } \
  1966. static inline u##bits btrfs_token_##name(struct extent_buffer *eb, type *s, \
  1967. struct btrfs_map_token *token) \
  1968. { \
  1969. BUILD_BUG_ON(sizeof(u##bits) != sizeof(((type *)0))->member); \
  1970. return btrfs_get_token_##bits(eb, s, offsetof(type, member), token); \
  1971. } \
  1972. static inline void btrfs_set_token_##name(struct extent_buffer *eb, \
  1973. type *s, u##bits val, \
  1974. struct btrfs_map_token *token) \
  1975. { \
  1976. BUILD_BUG_ON(sizeof(u##bits) != sizeof(((type *)0))->member); \
  1977. btrfs_set_token_##bits(eb, s, offsetof(type, member), val, token); \
  1978. }
  1979. #define BTRFS_SETGET_HEADER_FUNCS(name, type, member, bits) \
  1980. static inline u##bits btrfs_##name(struct extent_buffer *eb) \
  1981. { \
  1982. type *p = page_address(eb->pages[0]); \
  1983. u##bits res = le##bits##_to_cpu(p->member); \
  1984. return res; \
  1985. } \
  1986. static inline void btrfs_set_##name(struct extent_buffer *eb, \
  1987. u##bits val) \
  1988. { \
  1989. type *p = page_address(eb->pages[0]); \
  1990. p->member = cpu_to_le##bits(val); \
  1991. }
  1992. #define BTRFS_SETGET_STACK_FUNCS(name, type, member, bits) \
  1993. static inline u##bits btrfs_##name(type *s) \
  1994. { \
  1995. return le##bits##_to_cpu(s->member); \
  1996. } \
  1997. static inline void btrfs_set_##name(type *s, u##bits val) \
  1998. { \
  1999. s->member = cpu_to_le##bits(val); \
  2000. }
  2001. BTRFS_SETGET_FUNCS(device_type, struct btrfs_dev_item, type, 64);
  2002. BTRFS_SETGET_FUNCS(device_total_bytes, struct btrfs_dev_item, total_bytes, 64);
  2003. BTRFS_SETGET_FUNCS(device_bytes_used, struct btrfs_dev_item, bytes_used, 64);
  2004. BTRFS_SETGET_FUNCS(device_io_align, struct btrfs_dev_item, io_align, 32);
  2005. BTRFS_SETGET_FUNCS(device_io_width, struct btrfs_dev_item, io_width, 32);
  2006. BTRFS_SETGET_FUNCS(device_start_offset, struct btrfs_dev_item,
  2007. start_offset, 64);
  2008. BTRFS_SETGET_FUNCS(device_sector_size, struct btrfs_dev_item, sector_size, 32);
  2009. BTRFS_SETGET_FUNCS(device_id, struct btrfs_dev_item, devid, 64);
  2010. BTRFS_SETGET_FUNCS(device_group, struct btrfs_dev_item, dev_group, 32);
  2011. BTRFS_SETGET_FUNCS(device_seek_speed, struct btrfs_dev_item, seek_speed, 8);
  2012. BTRFS_SETGET_FUNCS(device_bandwidth, struct btrfs_dev_item, bandwidth, 8);
  2013. BTRFS_SETGET_FUNCS(device_generation, struct btrfs_dev_item, generation, 64);
  2014. BTRFS_SETGET_STACK_FUNCS(stack_device_type, struct btrfs_dev_item, type, 64);
  2015. BTRFS_SETGET_STACK_FUNCS(stack_device_total_bytes, struct btrfs_dev_item,
  2016. total_bytes, 64);
  2017. BTRFS_SETGET_STACK_FUNCS(stack_device_bytes_used, struct btrfs_dev_item,
  2018. bytes_used, 64);
  2019. BTRFS_SETGET_STACK_FUNCS(stack_device_io_align, struct btrfs_dev_item,
  2020. io_align, 32);
  2021. BTRFS_SETGET_STACK_FUNCS(stack_device_io_width, struct btrfs_dev_item,
  2022. io_width, 32);
  2023. BTRFS_SETGET_STACK_FUNCS(stack_device_sector_size, struct btrfs_dev_item,
  2024. sector_size, 32);
  2025. BTRFS_SETGET_STACK_FUNCS(stack_device_id, struct btrfs_dev_item, devid, 64);
  2026. BTRFS_SETGET_STACK_FUNCS(stack_device_group, struct btrfs_dev_item,
  2027. dev_group, 32);
  2028. BTRFS_SETGET_STACK_FUNCS(stack_device_seek_speed, struct btrfs_dev_item,
  2029. seek_speed, 8);
  2030. BTRFS_SETGET_STACK_FUNCS(stack_device_bandwidth, struct btrfs_dev_item,
  2031. bandwidth, 8);
  2032. BTRFS_SETGET_STACK_FUNCS(stack_device_generation, struct btrfs_dev_item,
  2033. generation, 64);
  2034. static inline unsigned long btrfs_device_uuid(struct btrfs_dev_item *d)
  2035. {
  2036. return (unsigned long)d + offsetof(struct btrfs_dev_item, uuid);
  2037. }
  2038. static inline unsigned long btrfs_device_fsid(struct btrfs_dev_item *d)
  2039. {
  2040. return (unsigned long)d + offsetof(struct btrfs_dev_item, fsid);
  2041. }
  2042. BTRFS_SETGET_FUNCS(chunk_length, struct btrfs_chunk, length, 64);
  2043. BTRFS_SETGET_FUNCS(chunk_owner, struct btrfs_chunk, owner, 64);
  2044. BTRFS_SETGET_FUNCS(chunk_stripe_len, struct btrfs_chunk, stripe_len, 64);
  2045. BTRFS_SETGET_FUNCS(chunk_io_align, struct btrfs_chunk, io_align, 32);
  2046. BTRFS_SETGET_FUNCS(chunk_io_width, struct btrfs_chunk, io_width, 32);
  2047. BTRFS_SETGET_FUNCS(chunk_sector_size, struct btrfs_chunk, sector_size, 32);
  2048. BTRFS_SETGET_FUNCS(chunk_type, struct btrfs_chunk, type, 64);
  2049. BTRFS_SETGET_FUNCS(chunk_num_stripes, struct btrfs_chunk, num_stripes, 16);
  2050. BTRFS_SETGET_FUNCS(chunk_sub_stripes, struct btrfs_chunk, sub_stripes, 16);
  2051. BTRFS_SETGET_FUNCS(stripe_devid, struct btrfs_stripe, devid, 64);
  2052. BTRFS_SETGET_FUNCS(stripe_offset, struct btrfs_stripe, offset, 64);
  2053. static inline char *btrfs_stripe_dev_uuid(struct btrfs_stripe *s)
  2054. {
  2055. return (char *)s + offsetof(struct btrfs_stripe, dev_uuid);
  2056. }
  2057. BTRFS_SETGET_STACK_FUNCS(stack_chunk_length, struct btrfs_chunk, length, 64);
  2058. BTRFS_SETGET_STACK_FUNCS(stack_chunk_owner, struct btrfs_chunk, owner, 64);
  2059. BTRFS_SETGET_STACK_FUNCS(stack_chunk_stripe_len, struct btrfs_chunk,
  2060. stripe_len, 64);
  2061. BTRFS_SETGET_STACK_FUNCS(stack_chunk_io_align, struct btrfs_chunk,
  2062. io_align, 32);
  2063. BTRFS_SETGET_STACK_FUNCS(stack_chunk_io_width, struct btrfs_chunk,
  2064. io_width, 32);
  2065. BTRFS_SETGET_STACK_FUNCS(stack_chunk_sector_size, struct btrfs_chunk,
  2066. sector_size, 32);
  2067. BTRFS_SETGET_STACK_FUNCS(stack_chunk_type, struct btrfs_chunk, type, 64);
  2068. BTRFS_SETGET_STACK_FUNCS(stack_chunk_num_stripes, struct btrfs_chunk,
  2069. num_stripes, 16);
  2070. BTRFS_SETGET_STACK_FUNCS(stack_chunk_sub_stripes, struct btrfs_chunk,
  2071. sub_stripes, 16);
  2072. BTRFS_SETGET_STACK_FUNCS(stack_stripe_devid, struct btrfs_stripe, devid, 64);
  2073. BTRFS_SETGET_STACK_FUNCS(stack_stripe_offset, struct btrfs_stripe, offset, 64);
  2074. static inline struct btrfs_stripe *btrfs_stripe_nr(struct btrfs_chunk *c,
  2075. int nr)
  2076. {
  2077. unsigned long offset = (unsigned long)c;
  2078. offset += offsetof(struct btrfs_chunk, stripe);
  2079. offset += nr * sizeof(struct btrfs_stripe);
  2080. return (struct btrfs_stripe *)offset;
  2081. }
  2082. static inline char *btrfs_stripe_dev_uuid_nr(struct btrfs_chunk *c, int nr)
  2083. {
  2084. return btrfs_stripe_dev_uuid(btrfs_stripe_nr(c, nr));
  2085. }
  2086. static inline u64 btrfs_stripe_offset_nr(struct extent_buffer *eb,
  2087. struct btrfs_chunk *c, int nr)
  2088. {
  2089. return btrfs_stripe_offset(eb, btrfs_stripe_nr(c, nr));
  2090. }
  2091. static inline u64 btrfs_stripe_devid_nr(struct extent_buffer *eb,
  2092. struct btrfs_chunk *c, int nr)
  2093. {
  2094. return btrfs_stripe_devid(eb, btrfs_stripe_nr(c, nr));
  2095. }
  2096. /* struct btrfs_block_group_item */
  2097. BTRFS_SETGET_STACK_FUNCS(block_group_used, struct btrfs_block_group_item,
  2098. used, 64);
  2099. BTRFS_SETGET_FUNCS(disk_block_group_used, struct btrfs_block_group_item,
  2100. used, 64);
  2101. BTRFS_SETGET_STACK_FUNCS(block_group_chunk_objectid,
  2102. struct btrfs_block_group_item, chunk_objectid, 64);
  2103. BTRFS_SETGET_FUNCS(disk_block_group_chunk_objectid,
  2104. struct btrfs_block_group_item, chunk_objectid, 64);
  2105. BTRFS_SETGET_FUNCS(disk_block_group_flags,
  2106. struct btrfs_block_group_item, flags, 64);
  2107. BTRFS_SETGET_STACK_FUNCS(block_group_flags,
  2108. struct btrfs_block_group_item, flags, 64);
  2109. /* struct btrfs_inode_ref */
  2110. BTRFS_SETGET_FUNCS(inode_ref_name_len, struct btrfs_inode_ref, name_len, 16);
  2111. BTRFS_SETGET_FUNCS(inode_ref_index, struct btrfs_inode_ref, index, 64);
  2112. /* struct btrfs_inode_extref */
  2113. BTRFS_SETGET_FUNCS(inode_extref_parent, struct btrfs_inode_extref,
  2114. parent_objectid, 64);
  2115. BTRFS_SETGET_FUNCS(inode_extref_name_len, struct btrfs_inode_extref,
  2116. name_len, 16);
  2117. BTRFS_SETGET_FUNCS(inode_extref_index, struct btrfs_inode_extref, index, 64);
  2118. /* struct btrfs_inode_item */
  2119. BTRFS_SETGET_FUNCS(inode_generation, struct btrfs_inode_item, generation, 64);
  2120. BTRFS_SETGET_FUNCS(inode_sequence, struct btrfs_inode_item, sequence, 64);
  2121. BTRFS_SETGET_FUNCS(inode_transid, struct btrfs_inode_item, transid, 64);
  2122. BTRFS_SETGET_FUNCS(inode_size, struct btrfs_inode_item, size, 64);
  2123. BTRFS_SETGET_FUNCS(inode_nbytes, struct btrfs_inode_item, nbytes, 64);
  2124. BTRFS_SETGET_FUNCS(inode_block_group, struct btrfs_inode_item, block_group, 64);
  2125. BTRFS_SETGET_FUNCS(inode_nlink, struct btrfs_inode_item, nlink, 32);
  2126. BTRFS_SETGET_FUNCS(inode_uid, struct btrfs_inode_item, uid, 32);
  2127. BTRFS_SETGET_FUNCS(inode_gid, struct btrfs_inode_item, gid, 32);
  2128. BTRFS_SETGET_FUNCS(inode_mode, struct btrfs_inode_item, mode, 32);
  2129. BTRFS_SETGET_FUNCS(inode_rdev, struct btrfs_inode_item, rdev, 64);
  2130. BTRFS_SETGET_FUNCS(inode_flags, struct btrfs_inode_item, flags, 64);
  2131. BTRFS_SETGET_STACK_FUNCS(stack_inode_generation, struct btrfs_inode_item,
  2132. generation, 64);
  2133. BTRFS_SETGET_STACK_FUNCS(stack_inode_sequence, struct btrfs_inode_item,
  2134. sequence, 64);
  2135. BTRFS_SETGET_STACK_FUNCS(stack_inode_transid, struct btrfs_inode_item,
  2136. transid, 64);
  2137. BTRFS_SETGET_STACK_FUNCS(stack_inode_size, struct btrfs_inode_item, size, 64);
  2138. BTRFS_SETGET_STACK_FUNCS(stack_inode_nbytes, struct btrfs_inode_item,
  2139. nbytes, 64);
  2140. BTRFS_SETGET_STACK_FUNCS(stack_inode_block_group, struct btrfs_inode_item,
  2141. block_group, 64);
  2142. BTRFS_SETGET_STACK_FUNCS(stack_inode_nlink, struct btrfs_inode_item, nlink, 32);
  2143. BTRFS_SETGET_STACK_FUNCS(stack_inode_uid, struct btrfs_inode_item, uid, 32);
  2144. BTRFS_SETGET_STACK_FUNCS(stack_inode_gid, struct btrfs_inode_item, gid, 32);
  2145. BTRFS_SETGET_STACK_FUNCS(stack_inode_mode, struct btrfs_inode_item, mode, 32);
  2146. BTRFS_SETGET_STACK_FUNCS(stack_inode_rdev, struct btrfs_inode_item, rdev, 64);
  2147. BTRFS_SETGET_STACK_FUNCS(stack_inode_flags, struct btrfs_inode_item, flags, 64);
  2148. BTRFS_SETGET_FUNCS(timespec_sec, struct btrfs_timespec, sec, 64);
  2149. BTRFS_SETGET_FUNCS(timespec_nsec, struct btrfs_timespec, nsec, 32);
  2150. BTRFS_SETGET_STACK_FUNCS(stack_timespec_sec, struct btrfs_timespec, sec, 64);
  2151. BTRFS_SETGET_STACK_FUNCS(stack_timespec_nsec, struct btrfs_timespec, nsec, 32);
  2152. /* struct btrfs_dev_extent */
  2153. BTRFS_SETGET_FUNCS(dev_extent_chunk_tree, struct btrfs_dev_extent,
  2154. chunk_tree, 64);
  2155. BTRFS_SETGET_FUNCS(dev_extent_chunk_objectid, struct btrfs_dev_extent,
  2156. chunk_objectid, 64);
  2157. BTRFS_SETGET_FUNCS(dev_extent_chunk_offset, struct btrfs_dev_extent,
  2158. chunk_offset, 64);
  2159. BTRFS_SETGET_FUNCS(dev_extent_length, struct btrfs_dev_extent, length, 64);
  2160. static inline unsigned long btrfs_dev_extent_chunk_tree_uuid(struct btrfs_dev_extent *dev)
  2161. {
  2162. unsigned long ptr = offsetof(struct btrfs_dev_extent, chunk_tree_uuid);
  2163. return (unsigned long)dev + ptr;
  2164. }
  2165. BTRFS_SETGET_FUNCS(extent_refs, struct btrfs_extent_item, refs, 64);
  2166. BTRFS_SETGET_FUNCS(extent_generation, struct btrfs_extent_item,
  2167. generation, 64);
  2168. BTRFS_SETGET_FUNCS(extent_flags, struct btrfs_extent_item, flags, 64);
  2169. BTRFS_SETGET_FUNCS(extent_refs_v0, struct btrfs_extent_item_v0, refs, 32);
  2170. BTRFS_SETGET_FUNCS(tree_block_level, struct btrfs_tree_block_info, level, 8);
  2171. static inline void btrfs_tree_block_key(struct extent_buffer *eb,
  2172. struct btrfs_tree_block_info *item,
  2173. struct btrfs_disk_key *key)
  2174. {
  2175. read_eb_member(eb, item, struct btrfs_tree_block_info, key, key);
  2176. }
  2177. static inline void btrfs_set_tree_block_key(struct extent_buffer *eb,
  2178. struct btrfs_tree_block_info *item,
  2179. struct btrfs_disk_key *key)
  2180. {
  2181. write_eb_member(eb, item, struct btrfs_tree_block_info, key, key);
  2182. }
  2183. BTRFS_SETGET_FUNCS(extent_data_ref_root, struct btrfs_extent_data_ref,
  2184. root, 64);
  2185. BTRFS_SETGET_FUNCS(extent_data_ref_objectid, struct btrfs_extent_data_ref,
  2186. objectid, 64);
  2187. BTRFS_SETGET_FUNCS(extent_data_ref_offset, struct btrfs_extent_data_ref,
  2188. offset, 64);
  2189. BTRFS_SETGET_FUNCS(extent_data_ref_count, struct btrfs_extent_data_ref,
  2190. count, 32);
  2191. BTRFS_SETGET_FUNCS(shared_data_ref_count, struct btrfs_shared_data_ref,
  2192. count, 32);
  2193. BTRFS_SETGET_FUNCS(extent_inline_ref_type, struct btrfs_extent_inline_ref,
  2194. type, 8);
  2195. BTRFS_SETGET_FUNCS(extent_inline_ref_offset, struct btrfs_extent_inline_ref,
  2196. offset, 64);
  2197. static inline u32 btrfs_extent_inline_ref_size(int type)
  2198. {
  2199. if (type == BTRFS_TREE_BLOCK_REF_KEY ||
  2200. type == BTRFS_SHARED_BLOCK_REF_KEY)
  2201. return sizeof(struct btrfs_extent_inline_ref);
  2202. if (type == BTRFS_SHARED_DATA_REF_KEY)
  2203. return sizeof(struct btrfs_shared_data_ref) +
  2204. sizeof(struct btrfs_extent_inline_ref);
  2205. if (type == BTRFS_EXTENT_DATA_REF_KEY)
  2206. return sizeof(struct btrfs_extent_data_ref) +
  2207. offsetof(struct btrfs_extent_inline_ref, offset);
  2208. BUG();
  2209. return 0;
  2210. }
  2211. BTRFS_SETGET_FUNCS(ref_root_v0, struct btrfs_extent_ref_v0, root, 64);
  2212. BTRFS_SETGET_FUNCS(ref_generation_v0, struct btrfs_extent_ref_v0,
  2213. generation, 64);
  2214. BTRFS_SETGET_FUNCS(ref_objectid_v0, struct btrfs_extent_ref_v0, objectid, 64);
  2215. BTRFS_SETGET_FUNCS(ref_count_v0, struct btrfs_extent_ref_v0, count, 32);
  2216. /* struct btrfs_node */
  2217. BTRFS_SETGET_FUNCS(key_blockptr, struct btrfs_key_ptr, blockptr, 64);
  2218. BTRFS_SETGET_FUNCS(key_generation, struct btrfs_key_ptr, generation, 64);
  2219. BTRFS_SETGET_STACK_FUNCS(stack_key_blockptr, struct btrfs_key_ptr,
  2220. blockptr, 64);
  2221. BTRFS_SETGET_STACK_FUNCS(stack_key_generation, struct btrfs_key_ptr,
  2222. generation, 64);
  2223. static inline u64 btrfs_node_blockptr(struct extent_buffer *eb, int nr)
  2224. {
  2225. unsigned long ptr;
  2226. ptr = offsetof(struct btrfs_node, ptrs) +
  2227. sizeof(struct btrfs_key_ptr) * nr;
  2228. return btrfs_key_blockptr(eb, (struct btrfs_key_ptr *)ptr);
  2229. }
  2230. static inline void btrfs_set_node_blockptr(struct extent_buffer *eb,
  2231. int nr, u64 val)
  2232. {
  2233. unsigned long ptr;
  2234. ptr = offsetof(struct btrfs_node, ptrs) +
  2235. sizeof(struct btrfs_key_ptr) * nr;
  2236. btrfs_set_key_blockptr(eb, (struct btrfs_key_ptr *)ptr, val);
  2237. }
  2238. static inline u64 btrfs_node_ptr_generation(struct extent_buffer *eb, int nr)
  2239. {
  2240. unsigned long ptr;
  2241. ptr = offsetof(struct btrfs_node, ptrs) +
  2242. sizeof(struct btrfs_key_ptr) * nr;
  2243. return btrfs_key_generation(eb, (struct btrfs_key_ptr *)ptr);
  2244. }
  2245. static inline void btrfs_set_node_ptr_generation(struct extent_buffer *eb,
  2246. int nr, u64 val)
  2247. {
  2248. unsigned long ptr;
  2249. ptr = offsetof(struct btrfs_node, ptrs) +
  2250. sizeof(struct btrfs_key_ptr) * nr;
  2251. btrfs_set_key_generation(eb, (struct btrfs_key_ptr *)ptr, val);
  2252. }
  2253. static inline unsigned long btrfs_node_key_ptr_offset(int nr)
  2254. {
  2255. return offsetof(struct btrfs_node, ptrs) +
  2256. sizeof(struct btrfs_key_ptr) * nr;
  2257. }
  2258. void btrfs_node_key(struct extent_buffer *eb,
  2259. struct btrfs_disk_key *disk_key, int nr);
  2260. static inline void btrfs_set_node_key(struct extent_buffer *eb,
  2261. struct btrfs_disk_key *disk_key, int nr)
  2262. {
  2263. unsigned long ptr;
  2264. ptr = btrfs_node_key_ptr_offset(nr);
  2265. write_eb_member(eb, (struct btrfs_key_ptr *)ptr,
  2266. struct btrfs_key_ptr, key, disk_key);
  2267. }
  2268. /* struct btrfs_item */
  2269. BTRFS_SETGET_FUNCS(item_offset, struct btrfs_item, offset, 32);
  2270. BTRFS_SETGET_FUNCS(item_size, struct btrfs_item, size, 32);
  2271. BTRFS_SETGET_STACK_FUNCS(stack_item_offset, struct btrfs_item, offset, 32);
  2272. BTRFS_SETGET_STACK_FUNCS(stack_item_size, struct btrfs_item, size, 32);
  2273. static inline unsigned long btrfs_item_nr_offset(int nr)
  2274. {
  2275. return offsetof(struct btrfs_leaf, items) +
  2276. sizeof(struct btrfs_item) * nr;
  2277. }
  2278. static inline struct btrfs_item *btrfs_item_nr(int nr)
  2279. {
  2280. return (struct btrfs_item *)btrfs_item_nr_offset(nr);
  2281. }
  2282. static inline u32 btrfs_item_end(struct extent_buffer *eb,
  2283. struct btrfs_item *item)
  2284. {
  2285. return btrfs_item_offset(eb, item) + btrfs_item_size(eb, item);
  2286. }
  2287. static inline u32 btrfs_item_end_nr(struct extent_buffer *eb, int nr)
  2288. {
  2289. return btrfs_item_end(eb, btrfs_item_nr(nr));
  2290. }
  2291. static inline u32 btrfs_item_offset_nr(struct extent_buffer *eb, int nr)
  2292. {
  2293. return btrfs_item_offset(eb, btrfs_item_nr(nr));
  2294. }
  2295. static inline u32 btrfs_item_size_nr(struct extent_buffer *eb, int nr)
  2296. {
  2297. return btrfs_item_size(eb, btrfs_item_nr(nr));
  2298. }
  2299. static inline void btrfs_item_key(struct extent_buffer *eb,
  2300. struct btrfs_disk_key *disk_key, int nr)
  2301. {
  2302. struct btrfs_item *item = btrfs_item_nr(nr);
  2303. read_eb_member(eb, item, struct btrfs_item, key, disk_key);
  2304. }
  2305. static inline void btrfs_set_item_key(struct extent_buffer *eb,
  2306. struct btrfs_disk_key *disk_key, int nr)
  2307. {
  2308. struct btrfs_item *item = btrfs_item_nr(nr);
  2309. write_eb_member(eb, item, struct btrfs_item, key, disk_key);
  2310. }
  2311. BTRFS_SETGET_FUNCS(dir_log_end, struct btrfs_dir_log_item, end, 64);
  2312. /*
  2313. * struct btrfs_root_ref
  2314. */
  2315. BTRFS_SETGET_FUNCS(root_ref_dirid, struct btrfs_root_ref, dirid, 64);
  2316. BTRFS_SETGET_FUNCS(root_ref_sequence, struct btrfs_root_ref, sequence, 64);
  2317. BTRFS_SETGET_FUNCS(root_ref_name_len, struct btrfs_root_ref, name_len, 16);
  2318. /* struct btrfs_dir_item */
  2319. BTRFS_SETGET_FUNCS(dir_data_len, struct btrfs_dir_item, data_len, 16);
  2320. BTRFS_SETGET_FUNCS(dir_type, struct btrfs_dir_item, type, 8);
  2321. BTRFS_SETGET_FUNCS(dir_name_len, struct btrfs_dir_item, name_len, 16);
  2322. BTRFS_SETGET_FUNCS(dir_transid, struct btrfs_dir_item, transid, 64);
  2323. BTRFS_SETGET_STACK_FUNCS(stack_dir_type, struct btrfs_dir_item, type, 8);
  2324. BTRFS_SETGET_STACK_FUNCS(stack_dir_data_len, struct btrfs_dir_item,
  2325. data_len, 16);
  2326. BTRFS_SETGET_STACK_FUNCS(stack_dir_name_len, struct btrfs_dir_item,
  2327. name_len, 16);
  2328. BTRFS_SETGET_STACK_FUNCS(stack_dir_transid, struct btrfs_dir_item,
  2329. transid, 64);
  2330. static inline void btrfs_dir_item_key(struct extent_buffer *eb,
  2331. struct btrfs_dir_item *item,
  2332. struct btrfs_disk_key *key)
  2333. {
  2334. read_eb_member(eb, item, struct btrfs_dir_item, location, key);
  2335. }
  2336. static inline void btrfs_set_dir_item_key(struct extent_buffer *eb,
  2337. struct btrfs_dir_item *item,
  2338. struct btrfs_disk_key *key)
  2339. {
  2340. write_eb_member(eb, item, struct btrfs_dir_item, location, key);
  2341. }
  2342. BTRFS_SETGET_FUNCS(free_space_entries, struct btrfs_free_space_header,
  2343. num_entries, 64);
  2344. BTRFS_SETGET_FUNCS(free_space_bitmaps, struct btrfs_free_space_header,
  2345. num_bitmaps, 64);
  2346. BTRFS_SETGET_FUNCS(free_space_generation, struct btrfs_free_space_header,
  2347. generation, 64);
  2348. static inline void btrfs_free_space_key(struct extent_buffer *eb,
  2349. struct btrfs_free_space_header *h,
  2350. struct btrfs_disk_key *key)
  2351. {
  2352. read_eb_member(eb, h, struct btrfs_free_space_header, location, key);
  2353. }
  2354. static inline void btrfs_set_free_space_key(struct extent_buffer *eb,
  2355. struct btrfs_free_space_header *h,
  2356. struct btrfs_disk_key *key)
  2357. {
  2358. write_eb_member(eb, h, struct btrfs_free_space_header, location, key);
  2359. }
  2360. /* struct btrfs_disk_key */
  2361. BTRFS_SETGET_STACK_FUNCS(disk_key_objectid, struct btrfs_disk_key,
  2362. objectid, 64);
  2363. BTRFS_SETGET_STACK_FUNCS(disk_key_offset, struct btrfs_disk_key, offset, 64);
  2364. BTRFS_SETGET_STACK_FUNCS(disk_key_type, struct btrfs_disk_key, type, 8);
  2365. static inline void btrfs_disk_key_to_cpu(struct btrfs_key *cpu,
  2366. struct btrfs_disk_key *disk)
  2367. {
  2368. cpu->offset = le64_to_cpu(disk->offset);
  2369. cpu->type = disk->type;
  2370. cpu->objectid = le64_to_cpu(disk->objectid);
  2371. }
  2372. static inline void btrfs_cpu_key_to_disk(struct btrfs_disk_key *disk,
  2373. struct btrfs_key *cpu)
  2374. {
  2375. disk->offset = cpu_to_le64(cpu->offset);
  2376. disk->type = cpu->type;
  2377. disk->objectid = cpu_to_le64(cpu->objectid);
  2378. }
  2379. static inline void btrfs_node_key_to_cpu(struct extent_buffer *eb,
  2380. struct btrfs_key *key, int nr)
  2381. {
  2382. struct btrfs_disk_key disk_key;
  2383. btrfs_node_key(eb, &disk_key, nr);
  2384. btrfs_disk_key_to_cpu(key, &disk_key);
  2385. }
  2386. static inline void btrfs_item_key_to_cpu(struct extent_buffer *eb,
  2387. struct btrfs_key *key, int nr)
  2388. {
  2389. struct btrfs_disk_key disk_key;
  2390. btrfs_item_key(eb, &disk_key, nr);
  2391. btrfs_disk_key_to_cpu(key, &disk_key);
  2392. }
  2393. static inline void btrfs_dir_item_key_to_cpu(struct extent_buffer *eb,
  2394. struct btrfs_dir_item *item,
  2395. struct btrfs_key *key)
  2396. {
  2397. struct btrfs_disk_key disk_key;
  2398. btrfs_dir_item_key(eb, item, &disk_key);
  2399. btrfs_disk_key_to_cpu(key, &disk_key);
  2400. }
  2401. static inline u8 btrfs_key_type(struct btrfs_key *key)
  2402. {
  2403. return key->type;
  2404. }
  2405. static inline void btrfs_set_key_type(struct btrfs_key *key, u8 val)
  2406. {
  2407. key->type = val;
  2408. }
  2409. /* struct btrfs_header */
  2410. BTRFS_SETGET_HEADER_FUNCS(header_bytenr, struct btrfs_header, bytenr, 64);
  2411. BTRFS_SETGET_HEADER_FUNCS(header_generation, struct btrfs_header,
  2412. generation, 64);
  2413. BTRFS_SETGET_HEADER_FUNCS(header_owner, struct btrfs_header, owner, 64);
  2414. BTRFS_SETGET_HEADER_FUNCS(header_nritems, struct btrfs_header, nritems, 32);
  2415. BTRFS_SETGET_HEADER_FUNCS(header_flags, struct btrfs_header, flags, 64);
  2416. BTRFS_SETGET_HEADER_FUNCS(header_level, struct btrfs_header, level, 8);
  2417. BTRFS_SETGET_STACK_FUNCS(stack_header_generation, struct btrfs_header,
  2418. generation, 64);
  2419. BTRFS_SETGET_STACK_FUNCS(stack_header_owner, struct btrfs_header, owner, 64);
  2420. BTRFS_SETGET_STACK_FUNCS(stack_header_nritems, struct btrfs_header,
  2421. nritems, 32);
  2422. BTRFS_SETGET_STACK_FUNCS(stack_header_bytenr, struct btrfs_header, bytenr, 64);
  2423. static inline int btrfs_header_flag(struct extent_buffer *eb, u64 flag)
  2424. {
  2425. return (btrfs_header_flags(eb) & flag) == flag;
  2426. }
  2427. static inline int btrfs_set_header_flag(struct extent_buffer *eb, u64 flag)
  2428. {
  2429. u64 flags = btrfs_header_flags(eb);
  2430. btrfs_set_header_flags(eb, flags | flag);
  2431. return (flags & flag) == flag;
  2432. }
  2433. static inline int btrfs_clear_header_flag(struct extent_buffer *eb, u64 flag)
  2434. {
  2435. u64 flags = btrfs_header_flags(eb);
  2436. btrfs_set_header_flags(eb, flags & ~flag);
  2437. return (flags & flag) == flag;
  2438. }
  2439. static inline int btrfs_header_backref_rev(struct extent_buffer *eb)
  2440. {
  2441. u64 flags = btrfs_header_flags(eb);
  2442. return flags >> BTRFS_BACKREF_REV_SHIFT;
  2443. }
  2444. static inline void btrfs_set_header_backref_rev(struct extent_buffer *eb,
  2445. int rev)
  2446. {
  2447. u64 flags = btrfs_header_flags(eb);
  2448. flags &= ~BTRFS_BACKREF_REV_MASK;
  2449. flags |= (u64)rev << BTRFS_BACKREF_REV_SHIFT;
  2450. btrfs_set_header_flags(eb, flags);
  2451. }
  2452. static inline unsigned long btrfs_header_fsid(void)
  2453. {
  2454. return offsetof(struct btrfs_header, fsid);
  2455. }
  2456. static inline unsigned long btrfs_header_chunk_tree_uuid(struct extent_buffer *eb)
  2457. {
  2458. return offsetof(struct btrfs_header, chunk_tree_uuid);
  2459. }
  2460. static inline int btrfs_is_leaf(struct extent_buffer *eb)
  2461. {
  2462. return btrfs_header_level(eb) == 0;
  2463. }
  2464. /* struct btrfs_root_item */
  2465. BTRFS_SETGET_FUNCS(disk_root_generation, struct btrfs_root_item,
  2466. generation, 64);
  2467. BTRFS_SETGET_FUNCS(disk_root_refs, struct btrfs_root_item, refs, 32);
  2468. BTRFS_SETGET_FUNCS(disk_root_bytenr, struct btrfs_root_item, bytenr, 64);
  2469. BTRFS_SETGET_FUNCS(disk_root_level, struct btrfs_root_item, level, 8);
  2470. BTRFS_SETGET_STACK_FUNCS(root_generation, struct btrfs_root_item,
  2471. generation, 64);
  2472. BTRFS_SETGET_STACK_FUNCS(root_bytenr, struct btrfs_root_item, bytenr, 64);
  2473. BTRFS_SETGET_STACK_FUNCS(root_level, struct btrfs_root_item, level, 8);
  2474. BTRFS_SETGET_STACK_FUNCS(root_dirid, struct btrfs_root_item, root_dirid, 64);
  2475. BTRFS_SETGET_STACK_FUNCS(root_refs, struct btrfs_root_item, refs, 32);
  2476. BTRFS_SETGET_STACK_FUNCS(root_flags, struct btrfs_root_item, flags, 64);
  2477. BTRFS_SETGET_STACK_FUNCS(root_used, struct btrfs_root_item, bytes_used, 64);
  2478. BTRFS_SETGET_STACK_FUNCS(root_limit, struct btrfs_root_item, byte_limit, 64);
  2479. BTRFS_SETGET_STACK_FUNCS(root_last_snapshot, struct btrfs_root_item,
  2480. last_snapshot, 64);
  2481. BTRFS_SETGET_STACK_FUNCS(root_generation_v2, struct btrfs_root_item,
  2482. generation_v2, 64);
  2483. BTRFS_SETGET_STACK_FUNCS(root_ctransid, struct btrfs_root_item,
  2484. ctransid, 64);
  2485. BTRFS_SETGET_STACK_FUNCS(root_otransid, struct btrfs_root_item,
  2486. otransid, 64);
  2487. BTRFS_SETGET_STACK_FUNCS(root_stransid, struct btrfs_root_item,
  2488. stransid, 64);
  2489. BTRFS_SETGET_STACK_FUNCS(root_rtransid, struct btrfs_root_item,
  2490. rtransid, 64);
  2491. static inline bool btrfs_root_readonly(struct btrfs_root *root)
  2492. {
  2493. return (root->root_item.flags & cpu_to_le64(BTRFS_ROOT_SUBVOL_RDONLY)) != 0;
  2494. }
  2495. static inline bool btrfs_root_dead(struct btrfs_root *root)
  2496. {
  2497. return (root->root_item.flags & cpu_to_le64(BTRFS_ROOT_SUBVOL_DEAD)) != 0;
  2498. }
  2499. /* struct btrfs_root_backup */
  2500. BTRFS_SETGET_STACK_FUNCS(backup_tree_root, struct btrfs_root_backup,
  2501. tree_root, 64);
  2502. BTRFS_SETGET_STACK_FUNCS(backup_tree_root_gen, struct btrfs_root_backup,
  2503. tree_root_gen, 64);
  2504. BTRFS_SETGET_STACK_FUNCS(backup_tree_root_level, struct btrfs_root_backup,
  2505. tree_root_level, 8);
  2506. BTRFS_SETGET_STACK_FUNCS(backup_chunk_root, struct btrfs_root_backup,
  2507. chunk_root, 64);
  2508. BTRFS_SETGET_STACK_FUNCS(backup_chunk_root_gen, struct btrfs_root_backup,
  2509. chunk_root_gen, 64);
  2510. BTRFS_SETGET_STACK_FUNCS(backup_chunk_root_level, struct btrfs_root_backup,
  2511. chunk_root_level, 8);
  2512. BTRFS_SETGET_STACK_FUNCS(backup_extent_root, struct btrfs_root_backup,
  2513. extent_root, 64);
  2514. BTRFS_SETGET_STACK_FUNCS(backup_extent_root_gen, struct btrfs_root_backup,
  2515. extent_root_gen, 64);
  2516. BTRFS_SETGET_STACK_FUNCS(backup_extent_root_level, struct btrfs_root_backup,
  2517. extent_root_level, 8);
  2518. BTRFS_SETGET_STACK_FUNCS(backup_fs_root, struct btrfs_root_backup,
  2519. fs_root, 64);
  2520. BTRFS_SETGET_STACK_FUNCS(backup_fs_root_gen, struct btrfs_root_backup,
  2521. fs_root_gen, 64);
  2522. BTRFS_SETGET_STACK_FUNCS(backup_fs_root_level, struct btrfs_root_backup,
  2523. fs_root_level, 8);
  2524. BTRFS_SETGET_STACK_FUNCS(backup_dev_root, struct btrfs_root_backup,
  2525. dev_root, 64);
  2526. BTRFS_SETGET_STACK_FUNCS(backup_dev_root_gen, struct btrfs_root_backup,
  2527. dev_root_gen, 64);
  2528. BTRFS_SETGET_STACK_FUNCS(backup_dev_root_level, struct btrfs_root_backup,
  2529. dev_root_level, 8);
  2530. BTRFS_SETGET_STACK_FUNCS(backup_csum_root, struct btrfs_root_backup,
  2531. csum_root, 64);
  2532. BTRFS_SETGET_STACK_FUNCS(backup_csum_root_gen, struct btrfs_root_backup,
  2533. csum_root_gen, 64);
  2534. BTRFS_SETGET_STACK_FUNCS(backup_csum_root_level, struct btrfs_root_backup,
  2535. csum_root_level, 8);
  2536. BTRFS_SETGET_STACK_FUNCS(backup_total_bytes, struct btrfs_root_backup,
  2537. total_bytes, 64);
  2538. BTRFS_SETGET_STACK_FUNCS(backup_bytes_used, struct btrfs_root_backup,
  2539. bytes_used, 64);
  2540. BTRFS_SETGET_STACK_FUNCS(backup_num_devices, struct btrfs_root_backup,
  2541. num_devices, 64);
  2542. /* struct btrfs_balance_item */
  2543. BTRFS_SETGET_FUNCS(balance_flags, struct btrfs_balance_item, flags, 64);
  2544. static inline void btrfs_balance_data(struct extent_buffer *eb,
  2545. struct btrfs_balance_item *bi,
  2546. struct btrfs_disk_balance_args *ba)
  2547. {
  2548. read_eb_member(eb, bi, struct btrfs_balance_item, data, ba);
  2549. }
  2550. static inline void btrfs_set_balance_data(struct extent_buffer *eb,
  2551. struct btrfs_balance_item *bi,
  2552. struct btrfs_disk_balance_args *ba)
  2553. {
  2554. write_eb_member(eb, bi, struct btrfs_balance_item, data, ba);
  2555. }
  2556. static inline void btrfs_balance_meta(struct extent_buffer *eb,
  2557. struct btrfs_balance_item *bi,
  2558. struct btrfs_disk_balance_args *ba)
  2559. {
  2560. read_eb_member(eb, bi, struct btrfs_balance_item, meta, ba);
  2561. }
  2562. static inline void btrfs_set_balance_meta(struct extent_buffer *eb,
  2563. struct btrfs_balance_item *bi,
  2564. struct btrfs_disk_balance_args *ba)
  2565. {
  2566. write_eb_member(eb, bi, struct btrfs_balance_item, meta, ba);
  2567. }
  2568. static inline void btrfs_balance_sys(struct extent_buffer *eb,
  2569. struct btrfs_balance_item *bi,
  2570. struct btrfs_disk_balance_args *ba)
  2571. {
  2572. read_eb_member(eb, bi, struct btrfs_balance_item, sys, ba);
  2573. }
  2574. static inline void btrfs_set_balance_sys(struct extent_buffer *eb,
  2575. struct btrfs_balance_item *bi,
  2576. struct btrfs_disk_balance_args *ba)
  2577. {
  2578. write_eb_member(eb, bi, struct btrfs_balance_item, sys, ba);
  2579. }
  2580. static inline void
  2581. btrfs_disk_balance_args_to_cpu(struct btrfs_balance_args *cpu,
  2582. struct btrfs_disk_balance_args *disk)
  2583. {
  2584. memset(cpu, 0, sizeof(*cpu));
  2585. cpu->profiles = le64_to_cpu(disk->profiles);
  2586. cpu->usage = le64_to_cpu(disk->usage);
  2587. cpu->devid = le64_to_cpu(disk->devid);
  2588. cpu->pstart = le64_to_cpu(disk->pstart);
  2589. cpu->pend = le64_to_cpu(disk->pend);
  2590. cpu->vstart = le64_to_cpu(disk->vstart);
  2591. cpu->vend = le64_to_cpu(disk->vend);
  2592. cpu->target = le64_to_cpu(disk->target);
  2593. cpu->flags = le64_to_cpu(disk->flags);
  2594. cpu->limit = le64_to_cpu(disk->limit);
  2595. }
  2596. static inline void
  2597. btrfs_cpu_balance_args_to_disk(struct btrfs_disk_balance_args *disk,
  2598. struct btrfs_balance_args *cpu)
  2599. {
  2600. memset(disk, 0, sizeof(*disk));
  2601. disk->profiles = cpu_to_le64(cpu->profiles);
  2602. disk->usage = cpu_to_le64(cpu->usage);
  2603. disk->devid = cpu_to_le64(cpu->devid);
  2604. disk->pstart = cpu_to_le64(cpu->pstart);
  2605. disk->pend = cpu_to_le64(cpu->pend);
  2606. disk->vstart = cpu_to_le64(cpu->vstart);
  2607. disk->vend = cpu_to_le64(cpu->vend);
  2608. disk->target = cpu_to_le64(cpu->target);
  2609. disk->flags = cpu_to_le64(cpu->flags);
  2610. disk->limit = cpu_to_le64(cpu->limit);
  2611. }
  2612. /* struct btrfs_super_block */
  2613. BTRFS_SETGET_STACK_FUNCS(super_bytenr, struct btrfs_super_block, bytenr, 64);
  2614. BTRFS_SETGET_STACK_FUNCS(super_flags, struct btrfs_super_block, flags, 64);
  2615. BTRFS_SETGET_STACK_FUNCS(super_generation, struct btrfs_super_block,
  2616. generation, 64);
  2617. BTRFS_SETGET_STACK_FUNCS(super_root, struct btrfs_super_block, root, 64);
  2618. BTRFS_SETGET_STACK_FUNCS(super_sys_array_size,
  2619. struct btrfs_super_block, sys_chunk_array_size, 32);
  2620. BTRFS_SETGET_STACK_FUNCS(super_chunk_root_generation,
  2621. struct btrfs_super_block, chunk_root_generation, 64);
  2622. BTRFS_SETGET_STACK_FUNCS(super_root_level, struct btrfs_super_block,
  2623. root_level, 8);
  2624. BTRFS_SETGET_STACK_FUNCS(super_chunk_root, struct btrfs_super_block,
  2625. chunk_root, 64);
  2626. BTRFS_SETGET_STACK_FUNCS(super_chunk_root_level, struct btrfs_super_block,
  2627. chunk_root_level, 8);
  2628. BTRFS_SETGET_STACK_FUNCS(super_log_root, struct btrfs_super_block,
  2629. log_root, 64);
  2630. BTRFS_SETGET_STACK_FUNCS(super_log_root_transid, struct btrfs_super_block,
  2631. log_root_transid, 64);
  2632. BTRFS_SETGET_STACK_FUNCS(super_log_root_level, struct btrfs_super_block,
  2633. log_root_level, 8);
  2634. BTRFS_SETGET_STACK_FUNCS(super_total_bytes, struct btrfs_super_block,
  2635. total_bytes, 64);
  2636. BTRFS_SETGET_STACK_FUNCS(super_bytes_used, struct btrfs_super_block,
  2637. bytes_used, 64);
  2638. BTRFS_SETGET_STACK_FUNCS(super_sectorsize, struct btrfs_super_block,
  2639. sectorsize, 32);
  2640. BTRFS_SETGET_STACK_FUNCS(super_nodesize, struct btrfs_super_block,
  2641. nodesize, 32);
  2642. BTRFS_SETGET_STACK_FUNCS(super_stripesize, struct btrfs_super_block,
  2643. stripesize, 32);
  2644. BTRFS_SETGET_STACK_FUNCS(super_root_dir, struct btrfs_super_block,
  2645. root_dir_objectid, 64);
  2646. BTRFS_SETGET_STACK_FUNCS(super_num_devices, struct btrfs_super_block,
  2647. num_devices, 64);
  2648. BTRFS_SETGET_STACK_FUNCS(super_compat_flags, struct btrfs_super_block,
  2649. compat_flags, 64);
  2650. BTRFS_SETGET_STACK_FUNCS(super_compat_ro_flags, struct btrfs_super_block,
  2651. compat_ro_flags, 64);
  2652. BTRFS_SETGET_STACK_FUNCS(super_incompat_flags, struct btrfs_super_block,
  2653. incompat_flags, 64);
  2654. BTRFS_SETGET_STACK_FUNCS(super_csum_type, struct btrfs_super_block,
  2655. csum_type, 16);
  2656. BTRFS_SETGET_STACK_FUNCS(super_cache_generation, struct btrfs_super_block,
  2657. cache_generation, 64);
  2658. BTRFS_SETGET_STACK_FUNCS(super_magic, struct btrfs_super_block, magic, 64);
  2659. BTRFS_SETGET_STACK_FUNCS(super_uuid_tree_generation, struct btrfs_super_block,
  2660. uuid_tree_generation, 64);
  2661. static inline int btrfs_super_csum_size(struct btrfs_super_block *s)
  2662. {
  2663. u16 t = btrfs_super_csum_type(s);
  2664. /*
  2665. * csum type is validated at mount time
  2666. */
  2667. return btrfs_csum_sizes[t];
  2668. }
  2669. static inline unsigned long btrfs_leaf_data(struct extent_buffer *l)
  2670. {
  2671. return offsetof(struct btrfs_leaf, items);
  2672. }
  2673. /* struct btrfs_file_extent_item */
  2674. BTRFS_SETGET_FUNCS(file_extent_type, struct btrfs_file_extent_item, type, 8);
  2675. BTRFS_SETGET_STACK_FUNCS(stack_file_extent_disk_bytenr,
  2676. struct btrfs_file_extent_item, disk_bytenr, 64);
  2677. BTRFS_SETGET_STACK_FUNCS(stack_file_extent_offset,
  2678. struct btrfs_file_extent_item, offset, 64);
  2679. BTRFS_SETGET_STACK_FUNCS(stack_file_extent_generation,
  2680. struct btrfs_file_extent_item, generation, 64);
  2681. BTRFS_SETGET_STACK_FUNCS(stack_file_extent_num_bytes,
  2682. struct btrfs_file_extent_item, num_bytes, 64);
  2683. BTRFS_SETGET_STACK_FUNCS(stack_file_extent_disk_num_bytes,
  2684. struct btrfs_file_extent_item, disk_num_bytes, 64);
  2685. BTRFS_SETGET_STACK_FUNCS(stack_file_extent_compression,
  2686. struct btrfs_file_extent_item, compression, 8);
  2687. static inline unsigned long
  2688. btrfs_file_extent_inline_start(struct btrfs_file_extent_item *e)
  2689. {
  2690. return (unsigned long)e + BTRFS_FILE_EXTENT_INLINE_DATA_START;
  2691. }
  2692. static inline u32 btrfs_file_extent_calc_inline_size(u32 datasize)
  2693. {
  2694. return BTRFS_FILE_EXTENT_INLINE_DATA_START + datasize;
  2695. }
  2696. BTRFS_SETGET_FUNCS(file_extent_disk_bytenr, struct btrfs_file_extent_item,
  2697. disk_bytenr, 64);
  2698. BTRFS_SETGET_FUNCS(file_extent_generation, struct btrfs_file_extent_item,
  2699. generation, 64);
  2700. BTRFS_SETGET_FUNCS(file_extent_disk_num_bytes, struct btrfs_file_extent_item,
  2701. disk_num_bytes, 64);
  2702. BTRFS_SETGET_FUNCS(file_extent_offset, struct btrfs_file_extent_item,
  2703. offset, 64);
  2704. BTRFS_SETGET_FUNCS(file_extent_num_bytes, struct btrfs_file_extent_item,
  2705. num_bytes, 64);
  2706. BTRFS_SETGET_FUNCS(file_extent_ram_bytes, struct btrfs_file_extent_item,
  2707. ram_bytes, 64);
  2708. BTRFS_SETGET_FUNCS(file_extent_compression, struct btrfs_file_extent_item,
  2709. compression, 8);
  2710. BTRFS_SETGET_FUNCS(file_extent_encryption, struct btrfs_file_extent_item,
  2711. encryption, 8);
  2712. BTRFS_SETGET_FUNCS(file_extent_other_encoding, struct btrfs_file_extent_item,
  2713. other_encoding, 16);
  2714. /*
  2715. * this returns the number of bytes used by the item on disk, minus the
  2716. * size of any extent headers. If a file is compressed on disk, this is
  2717. * the compressed size
  2718. */
  2719. static inline u32 btrfs_file_extent_inline_item_len(struct extent_buffer *eb,
  2720. struct btrfs_item *e)
  2721. {
  2722. return btrfs_item_size(eb, e) - BTRFS_FILE_EXTENT_INLINE_DATA_START;
  2723. }
  2724. /* this returns the number of file bytes represented by the inline item.
  2725. * If an item is compressed, this is the uncompressed size
  2726. */
  2727. static inline u32 btrfs_file_extent_inline_len(struct extent_buffer *eb,
  2728. int slot,
  2729. struct btrfs_file_extent_item *fi)
  2730. {
  2731. struct btrfs_map_token token;
  2732. btrfs_init_map_token(&token);
  2733. /*
  2734. * return the space used on disk if this item isn't
  2735. * compressed or encoded
  2736. */
  2737. if (btrfs_token_file_extent_compression(eb, fi, &token) == 0 &&
  2738. btrfs_token_file_extent_encryption(eb, fi, &token) == 0 &&
  2739. btrfs_token_file_extent_other_encoding(eb, fi, &token) == 0) {
  2740. return btrfs_file_extent_inline_item_len(eb,
  2741. btrfs_item_nr(slot));
  2742. }
  2743. /* otherwise use the ram bytes field */
  2744. return btrfs_token_file_extent_ram_bytes(eb, fi, &token);
  2745. }
  2746. /* btrfs_dev_stats_item */
  2747. static inline u64 btrfs_dev_stats_value(struct extent_buffer *eb,
  2748. struct btrfs_dev_stats_item *ptr,
  2749. int index)
  2750. {
  2751. u64 val;
  2752. read_extent_buffer(eb, &val,
  2753. offsetof(struct btrfs_dev_stats_item, values) +
  2754. ((unsigned long)ptr) + (index * sizeof(u64)),
  2755. sizeof(val));
  2756. return val;
  2757. }
  2758. static inline void btrfs_set_dev_stats_value(struct extent_buffer *eb,
  2759. struct btrfs_dev_stats_item *ptr,
  2760. int index, u64 val)
  2761. {
  2762. write_extent_buffer(eb, &val,
  2763. offsetof(struct btrfs_dev_stats_item, values) +
  2764. ((unsigned long)ptr) + (index * sizeof(u64)),
  2765. sizeof(val));
  2766. }
  2767. /* btrfs_qgroup_status_item */
  2768. BTRFS_SETGET_FUNCS(qgroup_status_generation, struct btrfs_qgroup_status_item,
  2769. generation, 64);
  2770. BTRFS_SETGET_FUNCS(qgroup_status_version, struct btrfs_qgroup_status_item,
  2771. version, 64);
  2772. BTRFS_SETGET_FUNCS(qgroup_status_flags, struct btrfs_qgroup_status_item,
  2773. flags, 64);
  2774. BTRFS_SETGET_FUNCS(qgroup_status_rescan, struct btrfs_qgroup_status_item,
  2775. rescan, 64);
  2776. /* btrfs_qgroup_info_item */
  2777. BTRFS_SETGET_FUNCS(qgroup_info_generation, struct btrfs_qgroup_info_item,
  2778. generation, 64);
  2779. BTRFS_SETGET_FUNCS(qgroup_info_rfer, struct btrfs_qgroup_info_item, rfer, 64);
  2780. BTRFS_SETGET_FUNCS(qgroup_info_rfer_cmpr, struct btrfs_qgroup_info_item,
  2781. rfer_cmpr, 64);
  2782. BTRFS_SETGET_FUNCS(qgroup_info_excl, struct btrfs_qgroup_info_item, excl, 64);
  2783. BTRFS_SETGET_FUNCS(qgroup_info_excl_cmpr, struct btrfs_qgroup_info_item,
  2784. excl_cmpr, 64);
  2785. BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_generation,
  2786. struct btrfs_qgroup_info_item, generation, 64);
  2787. BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_rfer, struct btrfs_qgroup_info_item,
  2788. rfer, 64);
  2789. BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_rfer_cmpr,
  2790. struct btrfs_qgroup_info_item, rfer_cmpr, 64);
  2791. BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_excl, struct btrfs_qgroup_info_item,
  2792. excl, 64);
  2793. BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_excl_cmpr,
  2794. struct btrfs_qgroup_info_item, excl_cmpr, 64);
  2795. /* btrfs_qgroup_limit_item */
  2796. BTRFS_SETGET_FUNCS(qgroup_limit_flags, struct btrfs_qgroup_limit_item,
  2797. flags, 64);
  2798. BTRFS_SETGET_FUNCS(qgroup_limit_max_rfer, struct btrfs_qgroup_limit_item,
  2799. max_rfer, 64);
  2800. BTRFS_SETGET_FUNCS(qgroup_limit_max_excl, struct btrfs_qgroup_limit_item,
  2801. max_excl, 64);
  2802. BTRFS_SETGET_FUNCS(qgroup_limit_rsv_rfer, struct btrfs_qgroup_limit_item,
  2803. rsv_rfer, 64);
  2804. BTRFS_SETGET_FUNCS(qgroup_limit_rsv_excl, struct btrfs_qgroup_limit_item,
  2805. rsv_excl, 64);
  2806. /* btrfs_dev_replace_item */
  2807. BTRFS_SETGET_FUNCS(dev_replace_src_devid,
  2808. struct btrfs_dev_replace_item, src_devid, 64);
  2809. BTRFS_SETGET_FUNCS(dev_replace_cont_reading_from_srcdev_mode,
  2810. struct btrfs_dev_replace_item, cont_reading_from_srcdev_mode,
  2811. 64);
  2812. BTRFS_SETGET_FUNCS(dev_replace_replace_state, struct btrfs_dev_replace_item,
  2813. replace_state, 64);
  2814. BTRFS_SETGET_FUNCS(dev_replace_time_started, struct btrfs_dev_replace_item,
  2815. time_started, 64);
  2816. BTRFS_SETGET_FUNCS(dev_replace_time_stopped, struct btrfs_dev_replace_item,
  2817. time_stopped, 64);
  2818. BTRFS_SETGET_FUNCS(dev_replace_num_write_errors, struct btrfs_dev_replace_item,
  2819. num_write_errors, 64);
  2820. BTRFS_SETGET_FUNCS(dev_replace_num_uncorrectable_read_errors,
  2821. struct btrfs_dev_replace_item, num_uncorrectable_read_errors,
  2822. 64);
  2823. BTRFS_SETGET_FUNCS(dev_replace_cursor_left, struct btrfs_dev_replace_item,
  2824. cursor_left, 64);
  2825. BTRFS_SETGET_FUNCS(dev_replace_cursor_right, struct btrfs_dev_replace_item,
  2826. cursor_right, 64);
  2827. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_src_devid,
  2828. struct btrfs_dev_replace_item, src_devid, 64);
  2829. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_cont_reading_from_srcdev_mode,
  2830. struct btrfs_dev_replace_item,
  2831. cont_reading_from_srcdev_mode, 64);
  2832. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_replace_state,
  2833. struct btrfs_dev_replace_item, replace_state, 64);
  2834. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_time_started,
  2835. struct btrfs_dev_replace_item, time_started, 64);
  2836. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_time_stopped,
  2837. struct btrfs_dev_replace_item, time_stopped, 64);
  2838. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_num_write_errors,
  2839. struct btrfs_dev_replace_item, num_write_errors, 64);
  2840. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_num_uncorrectable_read_errors,
  2841. struct btrfs_dev_replace_item,
  2842. num_uncorrectable_read_errors, 64);
  2843. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_cursor_left,
  2844. struct btrfs_dev_replace_item, cursor_left, 64);
  2845. BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_cursor_right,
  2846. struct btrfs_dev_replace_item, cursor_right, 64);
  2847. static inline struct btrfs_fs_info *btrfs_sb(struct super_block *sb)
  2848. {
  2849. return sb->s_fs_info;
  2850. }
  2851. /* helper function to cast into the data area of the leaf. */
  2852. #define btrfs_item_ptr(leaf, slot, type) \
  2853. ((type *)(btrfs_leaf_data(leaf) + \
  2854. btrfs_item_offset_nr(leaf, slot)))
  2855. #define btrfs_item_ptr_offset(leaf, slot) \
  2856. ((unsigned long)(btrfs_leaf_data(leaf) + \
  2857. btrfs_item_offset_nr(leaf, slot)))
  2858. static inline bool btrfs_mixed_space_info(struct btrfs_space_info *space_info)
  2859. {
  2860. return ((space_info->flags & BTRFS_BLOCK_GROUP_METADATA) &&
  2861. (space_info->flags & BTRFS_BLOCK_GROUP_DATA));
  2862. }
  2863. static inline gfp_t btrfs_alloc_write_mask(struct address_space *mapping)
  2864. {
  2865. return mapping_gfp_constraint(mapping, ~__GFP_FS);
  2866. }
  2867. /* extent-tree.c */
  2868. u64 btrfs_csum_bytes_to_leaves(struct btrfs_root *root, u64 csum_bytes);
  2869. static inline u64 btrfs_calc_trans_metadata_size(struct btrfs_root *root,
  2870. unsigned num_items)
  2871. {
  2872. return (root->nodesize + root->nodesize * (BTRFS_MAX_LEVEL - 1)) *
  2873. 2 * num_items;
  2874. }
  2875. /*
  2876. * Doing a truncate won't result in new nodes or leaves, just what we need for
  2877. * COW.
  2878. */
  2879. static inline u64 btrfs_calc_trunc_metadata_size(struct btrfs_root *root,
  2880. unsigned num_items)
  2881. {
  2882. return root->nodesize * BTRFS_MAX_LEVEL * num_items;
  2883. }
  2884. int btrfs_should_throttle_delayed_refs(struct btrfs_trans_handle *trans,
  2885. struct btrfs_root *root);
  2886. int btrfs_check_space_for_delayed_refs(struct btrfs_trans_handle *trans,
  2887. struct btrfs_root *root);
  2888. void btrfs_put_block_group(struct btrfs_block_group_cache *cache);
  2889. int btrfs_run_delayed_refs(struct btrfs_trans_handle *trans,
  2890. struct btrfs_root *root, unsigned long count);
  2891. int btrfs_async_run_delayed_refs(struct btrfs_root *root,
  2892. unsigned long count, int wait);
  2893. int btrfs_lookup_data_extent(struct btrfs_root *root, u64 start, u64 len);
  2894. int btrfs_lookup_extent_info(struct btrfs_trans_handle *trans,
  2895. struct btrfs_root *root, u64 bytenr,
  2896. u64 offset, int metadata, u64 *refs, u64 *flags);
  2897. int btrfs_pin_extent(struct btrfs_root *root,
  2898. u64 bytenr, u64 num, int reserved);
  2899. int btrfs_pin_extent_for_log_replay(struct btrfs_root *root,
  2900. u64 bytenr, u64 num_bytes);
  2901. int btrfs_exclude_logged_extents(struct btrfs_root *root,
  2902. struct extent_buffer *eb);
  2903. int btrfs_cross_ref_exist(struct btrfs_trans_handle *trans,
  2904. struct btrfs_root *root,
  2905. u64 objectid, u64 offset, u64 bytenr);
  2906. struct btrfs_block_group_cache *btrfs_lookup_block_group(
  2907. struct btrfs_fs_info *info,
  2908. u64 bytenr);
  2909. void btrfs_put_block_group(struct btrfs_block_group_cache *cache);
  2910. int get_block_group_index(struct btrfs_block_group_cache *cache);
  2911. struct extent_buffer *btrfs_alloc_tree_block(struct btrfs_trans_handle *trans,
  2912. struct btrfs_root *root, u64 parent,
  2913. u64 root_objectid,
  2914. struct btrfs_disk_key *key, int level,
  2915. u64 hint, u64 empty_size);
  2916. void btrfs_free_tree_block(struct btrfs_trans_handle *trans,
  2917. struct btrfs_root *root,
  2918. struct extent_buffer *buf,
  2919. u64 parent, int last_ref);
  2920. int btrfs_alloc_reserved_file_extent(struct btrfs_trans_handle *trans,
  2921. struct btrfs_root *root,
  2922. u64 root_objectid, u64 owner,
  2923. u64 offset, u64 ram_bytes,
  2924. struct btrfs_key *ins);
  2925. int btrfs_alloc_logged_file_extent(struct btrfs_trans_handle *trans,
  2926. struct btrfs_root *root,
  2927. u64 root_objectid, u64 owner, u64 offset,
  2928. struct btrfs_key *ins);
  2929. int btrfs_reserve_extent(struct btrfs_root *root, u64 num_bytes,
  2930. u64 min_alloc_size, u64 empty_size, u64 hint_byte,
  2931. struct btrfs_key *ins, int is_data, int delalloc);
  2932. int btrfs_inc_ref(struct btrfs_trans_handle *trans, struct btrfs_root *root,
  2933. struct extent_buffer *buf, int full_backref);
  2934. int btrfs_dec_ref(struct btrfs_trans_handle *trans, struct btrfs_root *root,
  2935. struct extent_buffer *buf, int full_backref);
  2936. int btrfs_set_disk_extent_flags(struct btrfs_trans_handle *trans,
  2937. struct btrfs_root *root,
  2938. u64 bytenr, u64 num_bytes, u64 flags,
  2939. int level, int is_data);
  2940. int btrfs_free_extent(struct btrfs_trans_handle *trans,
  2941. struct btrfs_root *root,
  2942. u64 bytenr, u64 num_bytes, u64 parent, u64 root_objectid,
  2943. u64 owner, u64 offset);
  2944. int btrfs_free_reserved_extent(struct btrfs_root *root, u64 start, u64 len,
  2945. int delalloc);
  2946. int btrfs_free_and_pin_reserved_extent(struct btrfs_root *root,
  2947. u64 start, u64 len);
  2948. void btrfs_prepare_extent_commit(struct btrfs_trans_handle *trans,
  2949. struct btrfs_root *root);
  2950. int btrfs_finish_extent_commit(struct btrfs_trans_handle *trans,
  2951. struct btrfs_root *root);
  2952. int btrfs_inc_extent_ref(struct btrfs_trans_handle *trans,
  2953. struct btrfs_root *root,
  2954. u64 bytenr, u64 num_bytes, u64 parent,
  2955. u64 root_objectid, u64 owner, u64 offset);
  2956. int btrfs_start_dirty_block_groups(struct btrfs_trans_handle *trans,
  2957. struct btrfs_root *root);
  2958. int btrfs_write_dirty_block_groups(struct btrfs_trans_handle *trans,
  2959. struct btrfs_root *root);
  2960. int btrfs_setup_space_cache(struct btrfs_trans_handle *trans,
  2961. struct btrfs_root *root);
  2962. int btrfs_extent_readonly(struct btrfs_root *root, u64 bytenr);
  2963. int btrfs_free_block_groups(struct btrfs_fs_info *info);
  2964. int btrfs_read_block_groups(struct btrfs_root *root);
  2965. int btrfs_can_relocate(struct btrfs_root *root, u64 bytenr);
  2966. int btrfs_make_block_group(struct btrfs_trans_handle *trans,
  2967. struct btrfs_root *root, u64 bytes_used,
  2968. u64 type, u64 chunk_objectid, u64 chunk_offset,
  2969. u64 size);
  2970. int btrfs_remove_block_group(struct btrfs_trans_handle *trans,
  2971. struct btrfs_root *root, u64 group_start,
  2972. struct extent_map *em);
  2973. void btrfs_delete_unused_bgs(struct btrfs_fs_info *fs_info);
  2974. void btrfs_get_block_group_trimming(struct btrfs_block_group_cache *cache);
  2975. void btrfs_put_block_group_trimming(struct btrfs_block_group_cache *cache);
  2976. void btrfs_create_pending_block_groups(struct btrfs_trans_handle *trans,
  2977. struct btrfs_root *root);
  2978. u64 btrfs_get_alloc_profile(struct btrfs_root *root, int data);
  2979. void btrfs_clear_space_info_full(struct btrfs_fs_info *info);
  2980. enum btrfs_reserve_flush_enum {
  2981. /* If we are in the transaction, we can't flush anything.*/
  2982. BTRFS_RESERVE_NO_FLUSH,
  2983. /*
  2984. * Flushing delalloc may cause deadlock somewhere, in this
  2985. * case, use FLUSH LIMIT
  2986. */
  2987. BTRFS_RESERVE_FLUSH_LIMIT,
  2988. BTRFS_RESERVE_FLUSH_ALL,
  2989. };
  2990. int btrfs_check_data_free_space(struct inode *inode, u64 start, u64 len);
  2991. int btrfs_alloc_data_chunk_ondemand(struct inode *inode, u64 bytes);
  2992. void btrfs_free_reserved_data_space(struct inode *inode, u64 start, u64 len);
  2993. void btrfs_free_reserved_data_space_noquota(struct inode *inode, u64 start,
  2994. u64 len);
  2995. void btrfs_trans_release_metadata(struct btrfs_trans_handle *trans,
  2996. struct btrfs_root *root);
  2997. void btrfs_trans_release_chunk_metadata(struct btrfs_trans_handle *trans);
  2998. int btrfs_orphan_reserve_metadata(struct btrfs_trans_handle *trans,
  2999. struct inode *inode);
  3000. void btrfs_orphan_release_metadata(struct inode *inode);
  3001. int btrfs_subvolume_reserve_metadata(struct btrfs_root *root,
  3002. struct btrfs_block_rsv *rsv,
  3003. int nitems,
  3004. u64 *qgroup_reserved, bool use_global_rsv);
  3005. void btrfs_subvolume_release_metadata(struct btrfs_root *root,
  3006. struct btrfs_block_rsv *rsv,
  3007. u64 qgroup_reserved);
  3008. int btrfs_delalloc_reserve_metadata(struct inode *inode, u64 num_bytes);
  3009. void btrfs_delalloc_release_metadata(struct inode *inode, u64 num_bytes);
  3010. int btrfs_delalloc_reserve_space(struct inode *inode, u64 start, u64 len);
  3011. void btrfs_delalloc_release_space(struct inode *inode, u64 start, u64 len);
  3012. void btrfs_init_block_rsv(struct btrfs_block_rsv *rsv, unsigned short type);
  3013. struct btrfs_block_rsv *btrfs_alloc_block_rsv(struct btrfs_root *root,
  3014. unsigned short type);
  3015. void btrfs_free_block_rsv(struct btrfs_root *root,
  3016. struct btrfs_block_rsv *rsv);
  3017. void __btrfs_free_block_rsv(struct btrfs_block_rsv *rsv);
  3018. int btrfs_block_rsv_add(struct btrfs_root *root,
  3019. struct btrfs_block_rsv *block_rsv, u64 num_bytes,
  3020. enum btrfs_reserve_flush_enum flush);
  3021. int btrfs_block_rsv_check(struct btrfs_root *root,
  3022. struct btrfs_block_rsv *block_rsv, int min_factor);
  3023. int btrfs_block_rsv_refill(struct btrfs_root *root,
  3024. struct btrfs_block_rsv *block_rsv, u64 min_reserved,
  3025. enum btrfs_reserve_flush_enum flush);
  3026. int btrfs_block_rsv_migrate(struct btrfs_block_rsv *src_rsv,
  3027. struct btrfs_block_rsv *dst_rsv,
  3028. u64 num_bytes);
  3029. int btrfs_cond_migrate_bytes(struct btrfs_fs_info *fs_info,
  3030. struct btrfs_block_rsv *dest, u64 num_bytes,
  3031. int min_factor);
  3032. void btrfs_block_rsv_release(struct btrfs_root *root,
  3033. struct btrfs_block_rsv *block_rsv,
  3034. u64 num_bytes);
  3035. int btrfs_inc_block_group_ro(struct btrfs_root *root,
  3036. struct btrfs_block_group_cache *cache);
  3037. void btrfs_dec_block_group_ro(struct btrfs_root *root,
  3038. struct btrfs_block_group_cache *cache);
  3039. void btrfs_put_block_group_cache(struct btrfs_fs_info *info);
  3040. u64 btrfs_account_ro_block_groups_free_space(struct btrfs_space_info *sinfo);
  3041. int btrfs_error_unpin_extent_range(struct btrfs_root *root,
  3042. u64 start, u64 end);
  3043. int btrfs_discard_extent(struct btrfs_root *root, u64 bytenr,
  3044. u64 num_bytes, u64 *actual_bytes);
  3045. int btrfs_force_chunk_alloc(struct btrfs_trans_handle *trans,
  3046. struct btrfs_root *root, u64 type);
  3047. int btrfs_trim_fs(struct btrfs_root *root, struct fstrim_range *range);
  3048. int btrfs_init_space_info(struct btrfs_fs_info *fs_info);
  3049. int btrfs_delayed_refs_qgroup_accounting(struct btrfs_trans_handle *trans,
  3050. struct btrfs_fs_info *fs_info);
  3051. int __get_raid_index(u64 flags);
  3052. int btrfs_start_write_no_snapshoting(struct btrfs_root *root);
  3053. void btrfs_end_write_no_snapshoting(struct btrfs_root *root);
  3054. void check_system_chunk(struct btrfs_trans_handle *trans,
  3055. struct btrfs_root *root,
  3056. const u64 type);
  3057. /* ctree.c */
  3058. int btrfs_bin_search(struct extent_buffer *eb, struct btrfs_key *key,
  3059. int level, int *slot);
  3060. int btrfs_comp_cpu_keys(struct btrfs_key *k1, struct btrfs_key *k2);
  3061. int btrfs_previous_item(struct btrfs_root *root,
  3062. struct btrfs_path *path, u64 min_objectid,
  3063. int type);
  3064. int btrfs_previous_extent_item(struct btrfs_root *root,
  3065. struct btrfs_path *path, u64 min_objectid);
  3066. void btrfs_set_item_key_safe(struct btrfs_fs_info *fs_info,
  3067. struct btrfs_path *path,
  3068. struct btrfs_key *new_key);
  3069. struct extent_buffer *btrfs_root_node(struct btrfs_root *root);
  3070. struct extent_buffer *btrfs_lock_root_node(struct btrfs_root *root);
  3071. int btrfs_find_next_key(struct btrfs_root *root, struct btrfs_path *path,
  3072. struct btrfs_key *key, int lowest_level,
  3073. u64 min_trans);
  3074. int btrfs_search_forward(struct btrfs_root *root, struct btrfs_key *min_key,
  3075. struct btrfs_path *path,
  3076. u64 min_trans);
  3077. enum btrfs_compare_tree_result {
  3078. BTRFS_COMPARE_TREE_NEW,
  3079. BTRFS_COMPARE_TREE_DELETED,
  3080. BTRFS_COMPARE_TREE_CHANGED,
  3081. BTRFS_COMPARE_TREE_SAME,
  3082. };
  3083. typedef int (*btrfs_changed_cb_t)(struct btrfs_root *left_root,
  3084. struct btrfs_root *right_root,
  3085. struct btrfs_path *left_path,
  3086. struct btrfs_path *right_path,
  3087. struct btrfs_key *key,
  3088. enum btrfs_compare_tree_result result,
  3089. void *ctx);
  3090. int btrfs_compare_trees(struct btrfs_root *left_root,
  3091. struct btrfs_root *right_root,
  3092. btrfs_changed_cb_t cb, void *ctx);
  3093. int btrfs_cow_block(struct btrfs_trans_handle *trans,
  3094. struct btrfs_root *root, struct extent_buffer *buf,
  3095. struct extent_buffer *parent, int parent_slot,
  3096. struct extent_buffer **cow_ret);
  3097. int btrfs_copy_root(struct btrfs_trans_handle *trans,
  3098. struct btrfs_root *root,
  3099. struct extent_buffer *buf,
  3100. struct extent_buffer **cow_ret, u64 new_root_objectid);
  3101. int btrfs_block_can_be_shared(struct btrfs_root *root,
  3102. struct extent_buffer *buf);
  3103. void btrfs_extend_item(struct btrfs_root *root, struct btrfs_path *path,
  3104. u32 data_size);
  3105. void btrfs_truncate_item(struct btrfs_root *root, struct btrfs_path *path,
  3106. u32 new_size, int from_end);
  3107. int btrfs_split_item(struct btrfs_trans_handle *trans,
  3108. struct btrfs_root *root,
  3109. struct btrfs_path *path,
  3110. struct btrfs_key *new_key,
  3111. unsigned long split_offset);
  3112. int btrfs_duplicate_item(struct btrfs_trans_handle *trans,
  3113. struct btrfs_root *root,
  3114. struct btrfs_path *path,
  3115. struct btrfs_key *new_key);
  3116. int btrfs_find_item(struct btrfs_root *fs_root, struct btrfs_path *path,
  3117. u64 inum, u64 ioff, u8 key_type, struct btrfs_key *found_key);
  3118. int btrfs_search_slot(struct btrfs_trans_handle *trans, struct btrfs_root
  3119. *root, struct btrfs_key *key, struct btrfs_path *p, int
  3120. ins_len, int cow);
  3121. int btrfs_search_old_slot(struct btrfs_root *root, struct btrfs_key *key,
  3122. struct btrfs_path *p, u64 time_seq);
  3123. int btrfs_search_slot_for_read(struct btrfs_root *root,
  3124. struct btrfs_key *key, struct btrfs_path *p,
  3125. int find_higher, int return_any);
  3126. int btrfs_realloc_node(struct btrfs_trans_handle *trans,
  3127. struct btrfs_root *root, struct extent_buffer *parent,
  3128. int start_slot, u64 *last_ret,
  3129. struct btrfs_key *progress);
  3130. void btrfs_release_path(struct btrfs_path *p);
  3131. struct btrfs_path *btrfs_alloc_path(void);
  3132. void btrfs_free_path(struct btrfs_path *p);
  3133. void btrfs_set_path_blocking(struct btrfs_path *p);
  3134. void btrfs_clear_path_blocking(struct btrfs_path *p,
  3135. struct extent_buffer *held, int held_rw);
  3136. void btrfs_unlock_up_safe(struct btrfs_path *p, int level);
  3137. int btrfs_del_items(struct btrfs_trans_handle *trans, struct btrfs_root *root,
  3138. struct btrfs_path *path, int slot, int nr);
  3139. static inline int btrfs_del_item(struct btrfs_trans_handle *trans,
  3140. struct btrfs_root *root,
  3141. struct btrfs_path *path)
  3142. {
  3143. return btrfs_del_items(trans, root, path, path->slots[0], 1);
  3144. }
  3145. void setup_items_for_insert(struct btrfs_root *root, struct btrfs_path *path,
  3146. struct btrfs_key *cpu_key, u32 *data_size,
  3147. u32 total_data, u32 total_size, int nr);
  3148. int btrfs_insert_item(struct btrfs_trans_handle *trans, struct btrfs_root
  3149. *root, struct btrfs_key *key, void *data, u32 data_size);
  3150. int btrfs_insert_empty_items(struct btrfs_trans_handle *trans,
  3151. struct btrfs_root *root,
  3152. struct btrfs_path *path,
  3153. struct btrfs_key *cpu_key, u32 *data_size, int nr);
  3154. static inline int btrfs_insert_empty_item(struct btrfs_trans_handle *trans,
  3155. struct btrfs_root *root,
  3156. struct btrfs_path *path,
  3157. struct btrfs_key *key,
  3158. u32 data_size)
  3159. {
  3160. return btrfs_insert_empty_items(trans, root, path, key, &data_size, 1);
  3161. }
  3162. int btrfs_next_leaf(struct btrfs_root *root, struct btrfs_path *path);
  3163. int btrfs_prev_leaf(struct btrfs_root *root, struct btrfs_path *path);
  3164. int btrfs_next_old_leaf(struct btrfs_root *root, struct btrfs_path *path,
  3165. u64 time_seq);
  3166. static inline int btrfs_next_old_item(struct btrfs_root *root,
  3167. struct btrfs_path *p, u64 time_seq)
  3168. {
  3169. ++p->slots[0];
  3170. if (p->slots[0] >= btrfs_header_nritems(p->nodes[0]))
  3171. return btrfs_next_old_leaf(root, p, time_seq);
  3172. return 0;
  3173. }
  3174. static inline int btrfs_next_item(struct btrfs_root *root, struct btrfs_path *p)
  3175. {
  3176. return btrfs_next_old_item(root, p, 0);
  3177. }
  3178. int btrfs_leaf_free_space(struct btrfs_root *root, struct extent_buffer *leaf);
  3179. int __must_check btrfs_drop_snapshot(struct btrfs_root *root,
  3180. struct btrfs_block_rsv *block_rsv,
  3181. int update_ref, int for_reloc);
  3182. int btrfs_drop_subtree(struct btrfs_trans_handle *trans,
  3183. struct btrfs_root *root,
  3184. struct extent_buffer *node,
  3185. struct extent_buffer *parent);
  3186. static inline int btrfs_fs_closing(struct btrfs_fs_info *fs_info)
  3187. {
  3188. /*
  3189. * Get synced with close_ctree()
  3190. */
  3191. smp_mb();
  3192. return fs_info->closing;
  3193. }
  3194. /*
  3195. * If we remount the fs to be R/O or umount the fs, the cleaner needn't do
  3196. * anything except sleeping. This function is used to check the status of
  3197. * the fs.
  3198. */
  3199. static inline int btrfs_need_cleaner_sleep(struct btrfs_root *root)
  3200. {
  3201. return (root->fs_info->sb->s_flags & MS_RDONLY ||
  3202. btrfs_fs_closing(root->fs_info));
  3203. }
  3204. static inline void free_fs_info(struct btrfs_fs_info *fs_info)
  3205. {
  3206. kfree(fs_info->balance_ctl);
  3207. kfree(fs_info->delayed_root);
  3208. kfree(fs_info->extent_root);
  3209. kfree(fs_info->tree_root);
  3210. kfree(fs_info->chunk_root);
  3211. kfree(fs_info->dev_root);
  3212. kfree(fs_info->csum_root);
  3213. kfree(fs_info->quota_root);
  3214. kfree(fs_info->uuid_root);
  3215. kfree(fs_info->super_copy);
  3216. kfree(fs_info->super_for_commit);
  3217. security_free_mnt_opts(&fs_info->security_opts);
  3218. kfree(fs_info);
  3219. }
  3220. /* tree mod log functions from ctree.c */
  3221. u64 btrfs_get_tree_mod_seq(struct btrfs_fs_info *fs_info,
  3222. struct seq_list *elem);
  3223. void btrfs_put_tree_mod_seq(struct btrfs_fs_info *fs_info,
  3224. struct seq_list *elem);
  3225. int btrfs_old_root_level(struct btrfs_root *root, u64 time_seq);
  3226. /* root-item.c */
  3227. int btrfs_find_root_ref(struct btrfs_root *tree_root,
  3228. struct btrfs_path *path,
  3229. u64 root_id, u64 ref_id);
  3230. int btrfs_add_root_ref(struct btrfs_trans_handle *trans,
  3231. struct btrfs_root *tree_root,
  3232. u64 root_id, u64 ref_id, u64 dirid, u64 sequence,
  3233. const char *name, int name_len);
  3234. int btrfs_del_root_ref(struct btrfs_trans_handle *trans,
  3235. struct btrfs_root *tree_root,
  3236. u64 root_id, u64 ref_id, u64 dirid, u64 *sequence,
  3237. const char *name, int name_len);
  3238. int btrfs_del_root(struct btrfs_trans_handle *trans, struct btrfs_root *root,
  3239. struct btrfs_key *key);
  3240. int btrfs_insert_root(struct btrfs_trans_handle *trans, struct btrfs_root
  3241. *root, struct btrfs_key *key, struct btrfs_root_item
  3242. *item);
  3243. int __must_check btrfs_update_root(struct btrfs_trans_handle *trans,
  3244. struct btrfs_root *root,
  3245. struct btrfs_key *key,
  3246. struct btrfs_root_item *item);
  3247. int btrfs_find_root(struct btrfs_root *root, struct btrfs_key *search_key,
  3248. struct btrfs_path *path, struct btrfs_root_item *root_item,
  3249. struct btrfs_key *root_key);
  3250. int btrfs_find_orphan_roots(struct btrfs_root *tree_root);
  3251. void btrfs_set_root_node(struct btrfs_root_item *item,
  3252. struct extent_buffer *node);
  3253. void btrfs_check_and_init_root_item(struct btrfs_root_item *item);
  3254. void btrfs_update_root_times(struct btrfs_trans_handle *trans,
  3255. struct btrfs_root *root);
  3256. /* uuid-tree.c */
  3257. int btrfs_uuid_tree_add(struct btrfs_trans_handle *trans,
  3258. struct btrfs_root *uuid_root, u8 *uuid, u8 type,
  3259. u64 subid);
  3260. int btrfs_uuid_tree_rem(struct btrfs_trans_handle *trans,
  3261. struct btrfs_root *uuid_root, u8 *uuid, u8 type,
  3262. u64 subid);
  3263. int btrfs_uuid_tree_iterate(struct btrfs_fs_info *fs_info,
  3264. int (*check_func)(struct btrfs_fs_info *, u8 *, u8,
  3265. u64));
  3266. /* dir-item.c */
  3267. int btrfs_check_dir_item_collision(struct btrfs_root *root, u64 dir,
  3268. const char *name, int name_len);
  3269. int btrfs_insert_dir_item(struct btrfs_trans_handle *trans,
  3270. struct btrfs_root *root, const char *name,
  3271. int name_len, struct inode *dir,
  3272. struct btrfs_key *location, u8 type, u64 index);
  3273. struct btrfs_dir_item *btrfs_lookup_dir_item(struct btrfs_trans_handle *trans,
  3274. struct btrfs_root *root,
  3275. struct btrfs_path *path, u64 dir,
  3276. const char *name, int name_len,
  3277. int mod);
  3278. struct btrfs_dir_item *
  3279. btrfs_lookup_dir_index_item(struct btrfs_trans_handle *trans,
  3280. struct btrfs_root *root,
  3281. struct btrfs_path *path, u64 dir,
  3282. u64 objectid, const char *name, int name_len,
  3283. int mod);
  3284. struct btrfs_dir_item *
  3285. btrfs_search_dir_index_item(struct btrfs_root *root,
  3286. struct btrfs_path *path, u64 dirid,
  3287. const char *name, int name_len);
  3288. int btrfs_delete_one_dir_name(struct btrfs_trans_handle *trans,
  3289. struct btrfs_root *root,
  3290. struct btrfs_path *path,
  3291. struct btrfs_dir_item *di);
  3292. int btrfs_insert_xattr_item(struct btrfs_trans_handle *trans,
  3293. struct btrfs_root *root,
  3294. struct btrfs_path *path, u64 objectid,
  3295. const char *name, u16 name_len,
  3296. const void *data, u16 data_len);
  3297. struct btrfs_dir_item *btrfs_lookup_xattr(struct btrfs_trans_handle *trans,
  3298. struct btrfs_root *root,
  3299. struct btrfs_path *path, u64 dir,
  3300. const char *name, u16 name_len,
  3301. int mod);
  3302. int verify_dir_item(struct btrfs_root *root,
  3303. struct extent_buffer *leaf,
  3304. struct btrfs_dir_item *dir_item);
  3305. struct btrfs_dir_item *btrfs_match_dir_item_name(struct btrfs_root *root,
  3306. struct btrfs_path *path,
  3307. const char *name,
  3308. int name_len);
  3309. /* orphan.c */
  3310. int btrfs_insert_orphan_item(struct btrfs_trans_handle *trans,
  3311. struct btrfs_root *root, u64 offset);
  3312. int btrfs_del_orphan_item(struct btrfs_trans_handle *trans,
  3313. struct btrfs_root *root, u64 offset);
  3314. int btrfs_find_orphan_item(struct btrfs_root *root, u64 offset);
  3315. /* inode-item.c */
  3316. int btrfs_insert_inode_ref(struct btrfs_trans_handle *trans,
  3317. struct btrfs_root *root,
  3318. const char *name, int name_len,
  3319. u64 inode_objectid, u64 ref_objectid, u64 index);
  3320. int btrfs_del_inode_ref(struct btrfs_trans_handle *trans,
  3321. struct btrfs_root *root,
  3322. const char *name, int name_len,
  3323. u64 inode_objectid, u64 ref_objectid, u64 *index);
  3324. int btrfs_insert_empty_inode(struct btrfs_trans_handle *trans,
  3325. struct btrfs_root *root,
  3326. struct btrfs_path *path, u64 objectid);
  3327. int btrfs_lookup_inode(struct btrfs_trans_handle *trans, struct btrfs_root
  3328. *root, struct btrfs_path *path,
  3329. struct btrfs_key *location, int mod);
  3330. struct btrfs_inode_extref *
  3331. btrfs_lookup_inode_extref(struct btrfs_trans_handle *trans,
  3332. struct btrfs_root *root,
  3333. struct btrfs_path *path,
  3334. const char *name, int name_len,
  3335. u64 inode_objectid, u64 ref_objectid, int ins_len,
  3336. int cow);
  3337. int btrfs_find_name_in_ext_backref(struct btrfs_path *path,
  3338. u64 ref_objectid, const char *name,
  3339. int name_len,
  3340. struct btrfs_inode_extref **extref_ret);
  3341. /* file-item.c */
  3342. struct btrfs_dio_private;
  3343. int btrfs_del_csums(struct btrfs_trans_handle *trans,
  3344. struct btrfs_root *root, u64 bytenr, u64 len);
  3345. int btrfs_lookup_bio_sums(struct btrfs_root *root, struct inode *inode,
  3346. struct bio *bio, u32 *dst);
  3347. int btrfs_lookup_bio_sums_dio(struct btrfs_root *root, struct inode *inode,
  3348. struct bio *bio, u64 logical_offset);
  3349. int btrfs_insert_file_extent(struct btrfs_trans_handle *trans,
  3350. struct btrfs_root *root,
  3351. u64 objectid, u64 pos,
  3352. u64 disk_offset, u64 disk_num_bytes,
  3353. u64 num_bytes, u64 offset, u64 ram_bytes,
  3354. u8 compression, u8 encryption, u16 other_encoding);
  3355. int btrfs_lookup_file_extent(struct btrfs_trans_handle *trans,
  3356. struct btrfs_root *root,
  3357. struct btrfs_path *path, u64 objectid,
  3358. u64 bytenr, int mod);
  3359. int btrfs_csum_file_blocks(struct btrfs_trans_handle *trans,
  3360. struct btrfs_root *root,
  3361. struct btrfs_ordered_sum *sums);
  3362. int btrfs_csum_one_bio(struct btrfs_root *root, struct inode *inode,
  3363. struct bio *bio, u64 file_start, int contig);
  3364. int btrfs_lookup_csums_range(struct btrfs_root *root, u64 start, u64 end,
  3365. struct list_head *list, int search_commit);
  3366. void btrfs_extent_item_to_extent_map(struct inode *inode,
  3367. const struct btrfs_path *path,
  3368. struct btrfs_file_extent_item *fi,
  3369. const bool new_inline,
  3370. struct extent_map *em);
  3371. /* inode.c */
  3372. struct btrfs_delalloc_work {
  3373. struct inode *inode;
  3374. int wait;
  3375. int delay_iput;
  3376. struct completion completion;
  3377. struct list_head list;
  3378. struct btrfs_work work;
  3379. };
  3380. struct btrfs_delalloc_work *btrfs_alloc_delalloc_work(struct inode *inode,
  3381. int wait, int delay_iput);
  3382. void btrfs_wait_and_free_delalloc_work(struct btrfs_delalloc_work *work);
  3383. struct extent_map *btrfs_get_extent_fiemap(struct inode *inode, struct page *page,
  3384. size_t pg_offset, u64 start, u64 len,
  3385. int create);
  3386. noinline int can_nocow_extent(struct inode *inode, u64 offset, u64 *len,
  3387. u64 *orig_start, u64 *orig_block_len,
  3388. u64 *ram_bytes);
  3389. /* RHEL and EL kernels have a patch that renames PG_checked to FsMisc */
  3390. #if defined(ClearPageFsMisc) && !defined(ClearPageChecked)
  3391. #define ClearPageChecked ClearPageFsMisc
  3392. #define SetPageChecked SetPageFsMisc
  3393. #define PageChecked PageFsMisc
  3394. #endif
  3395. /* This forces readahead on a given range of bytes in an inode */
  3396. static inline void btrfs_force_ra(struct address_space *mapping,
  3397. struct file_ra_state *ra, struct file *file,
  3398. pgoff_t offset, unsigned long req_size)
  3399. {
  3400. page_cache_sync_readahead(mapping, ra, file, offset, req_size);
  3401. }
  3402. struct inode *btrfs_lookup_dentry(struct inode *dir, struct dentry *dentry);
  3403. int btrfs_set_inode_index(struct inode *dir, u64 *index);
  3404. int btrfs_unlink_inode(struct btrfs_trans_handle *trans,
  3405. struct btrfs_root *root,
  3406. struct inode *dir, struct inode *inode,
  3407. const char *name, int name_len);
  3408. int btrfs_add_link(struct btrfs_trans_handle *trans,
  3409. struct inode *parent_inode, struct inode *inode,
  3410. const char *name, int name_len, int add_backref, u64 index);
  3411. int btrfs_unlink_subvol(struct btrfs_trans_handle *trans,
  3412. struct btrfs_root *root,
  3413. struct inode *dir, u64 objectid,
  3414. const char *name, int name_len);
  3415. int btrfs_truncate_page(struct inode *inode, loff_t from, loff_t len,
  3416. int front);
  3417. int btrfs_truncate_inode_items(struct btrfs_trans_handle *trans,
  3418. struct btrfs_root *root,
  3419. struct inode *inode, u64 new_size,
  3420. u32 min_type);
  3421. int btrfs_start_delalloc_inodes(struct btrfs_root *root, int delay_iput);
  3422. int btrfs_start_delalloc_roots(struct btrfs_fs_info *fs_info, int delay_iput,
  3423. int nr);
  3424. int btrfs_set_extent_delalloc(struct inode *inode, u64 start, u64 end,
  3425. struct extent_state **cached_state);
  3426. int btrfs_create_subvol_root(struct btrfs_trans_handle *trans,
  3427. struct btrfs_root *new_root,
  3428. struct btrfs_root *parent_root,
  3429. u64 new_dirid);
  3430. int btrfs_merge_bio_hook(int rw, struct page *page, unsigned long offset,
  3431. size_t size, struct bio *bio,
  3432. unsigned long bio_flags);
  3433. int btrfs_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf);
  3434. int btrfs_readpage(struct file *file, struct page *page);
  3435. void btrfs_evict_inode(struct inode *inode);
  3436. int btrfs_write_inode(struct inode *inode, struct writeback_control *wbc);
  3437. struct inode *btrfs_alloc_inode(struct super_block *sb);
  3438. void btrfs_destroy_inode(struct inode *inode);
  3439. int btrfs_drop_inode(struct inode *inode);
  3440. int btrfs_init_cachep(void);
  3441. void btrfs_destroy_cachep(void);
  3442. long btrfs_ioctl_trans_end(struct file *file);
  3443. struct inode *btrfs_iget(struct super_block *s, struct btrfs_key *location,
  3444. struct btrfs_root *root, int *was_new);
  3445. struct extent_map *btrfs_get_extent(struct inode *inode, struct page *page,
  3446. size_t pg_offset, u64 start, u64 end,
  3447. int create);
  3448. int btrfs_update_inode(struct btrfs_trans_handle *trans,
  3449. struct btrfs_root *root,
  3450. struct inode *inode);
  3451. int btrfs_update_inode_fallback(struct btrfs_trans_handle *trans,
  3452. struct btrfs_root *root, struct inode *inode);
  3453. int btrfs_orphan_add(struct btrfs_trans_handle *trans, struct inode *inode);
  3454. int btrfs_orphan_cleanup(struct btrfs_root *root);
  3455. void btrfs_orphan_commit_root(struct btrfs_trans_handle *trans,
  3456. struct btrfs_root *root);
  3457. int btrfs_cont_expand(struct inode *inode, loff_t oldsize, loff_t size);
  3458. void btrfs_invalidate_inodes(struct btrfs_root *root);
  3459. void btrfs_add_delayed_iput(struct inode *inode);
  3460. void btrfs_run_delayed_iputs(struct btrfs_root *root);
  3461. int btrfs_prealloc_file_range(struct inode *inode, int mode,
  3462. u64 start, u64 num_bytes, u64 min_size,
  3463. loff_t actual_len, u64 *alloc_hint);
  3464. int btrfs_prealloc_file_range_trans(struct inode *inode,
  3465. struct btrfs_trans_handle *trans, int mode,
  3466. u64 start, u64 num_bytes, u64 min_size,
  3467. loff_t actual_len, u64 *alloc_hint);
  3468. int btrfs_inode_check_errors(struct inode *inode);
  3469. extern const struct dentry_operations btrfs_dentry_operations;
  3470. #ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
  3471. void btrfs_test_inode_set_ops(struct inode *inode);
  3472. #endif
  3473. /* ioctl.c */
  3474. long btrfs_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
  3475. void btrfs_update_iflags(struct inode *inode);
  3476. void btrfs_inherit_iflags(struct inode *inode, struct inode *dir);
  3477. int btrfs_is_empty_uuid(u8 *uuid);
  3478. int btrfs_defrag_file(struct inode *inode, struct file *file,
  3479. struct btrfs_ioctl_defrag_range_args *range,
  3480. u64 newer_than, unsigned long max_pages);
  3481. void btrfs_get_block_group_info(struct list_head *groups_list,
  3482. struct btrfs_ioctl_space_info *space);
  3483. void update_ioctl_balance_args(struct btrfs_fs_info *fs_info, int lock,
  3484. struct btrfs_ioctl_balance_args *bargs);
  3485. /* file.c */
  3486. int btrfs_auto_defrag_init(void);
  3487. void btrfs_auto_defrag_exit(void);
  3488. int btrfs_add_inode_defrag(struct btrfs_trans_handle *trans,
  3489. struct inode *inode);
  3490. int btrfs_run_defrag_inodes(struct btrfs_fs_info *fs_info);
  3491. void btrfs_cleanup_defrag_inodes(struct btrfs_fs_info *fs_info);
  3492. int btrfs_sync_file(struct file *file, loff_t start, loff_t end, int datasync);
  3493. void btrfs_drop_extent_cache(struct inode *inode, u64 start, u64 end,
  3494. int skip_pinned);
  3495. extern const struct file_operations btrfs_file_operations;
  3496. int __btrfs_drop_extents(struct btrfs_trans_handle *trans,
  3497. struct btrfs_root *root, struct inode *inode,
  3498. struct btrfs_path *path, u64 start, u64 end,
  3499. u64 *drop_end, int drop_cache,
  3500. int replace_extent,
  3501. u32 extent_item_size,
  3502. int *key_inserted);
  3503. int btrfs_drop_extents(struct btrfs_trans_handle *trans,
  3504. struct btrfs_root *root, struct inode *inode, u64 start,
  3505. u64 end, int drop_cache);
  3506. int btrfs_mark_extent_written(struct btrfs_trans_handle *trans,
  3507. struct inode *inode, u64 start, u64 end);
  3508. int btrfs_release_file(struct inode *inode, struct file *file);
  3509. int btrfs_dirty_pages(struct btrfs_root *root, struct inode *inode,
  3510. struct page **pages, size_t num_pages,
  3511. loff_t pos, size_t write_bytes,
  3512. struct extent_state **cached);
  3513. int btrfs_fdatawrite_range(struct inode *inode, loff_t start, loff_t end);
  3514. /* tree-defrag.c */
  3515. int btrfs_defrag_leaves(struct btrfs_trans_handle *trans,
  3516. struct btrfs_root *root);
  3517. /* sysfs.c */
  3518. int btrfs_init_sysfs(void);
  3519. void btrfs_exit_sysfs(void);
  3520. int btrfs_sysfs_add_mounted(struct btrfs_fs_info *fs_info);
  3521. void btrfs_sysfs_remove_mounted(struct btrfs_fs_info *fs_info);
  3522. /* xattr.c */
  3523. ssize_t btrfs_listxattr(struct dentry *dentry, char *buffer, size_t size);
  3524. /* super.c */
  3525. int btrfs_parse_options(struct btrfs_root *root, char *options);
  3526. int btrfs_sync_fs(struct super_block *sb, int wait);
  3527. #ifdef CONFIG_PRINTK
  3528. __printf(2, 3)
  3529. void btrfs_printk(const struct btrfs_fs_info *fs_info, const char *fmt, ...);
  3530. #else
  3531. static inline __printf(2, 3)
  3532. void btrfs_printk(const struct btrfs_fs_info *fs_info, const char *fmt, ...)
  3533. {
  3534. }
  3535. #endif
  3536. #define btrfs_emerg(fs_info, fmt, args...) \
  3537. btrfs_printk(fs_info, KERN_EMERG fmt, ##args)
  3538. #define btrfs_alert(fs_info, fmt, args...) \
  3539. btrfs_printk(fs_info, KERN_ALERT fmt, ##args)
  3540. #define btrfs_crit(fs_info, fmt, args...) \
  3541. btrfs_printk(fs_info, KERN_CRIT fmt, ##args)
  3542. #define btrfs_err(fs_info, fmt, args...) \
  3543. btrfs_printk(fs_info, KERN_ERR fmt, ##args)
  3544. #define btrfs_warn(fs_info, fmt, args...) \
  3545. btrfs_printk(fs_info, KERN_WARNING fmt, ##args)
  3546. #define btrfs_notice(fs_info, fmt, args...) \
  3547. btrfs_printk(fs_info, KERN_NOTICE fmt, ##args)
  3548. #define btrfs_info(fs_info, fmt, args...) \
  3549. btrfs_printk(fs_info, KERN_INFO fmt, ##args)
  3550. /*
  3551. * Wrappers that use printk_in_rcu
  3552. */
  3553. #define btrfs_emerg_in_rcu(fs_info, fmt, args...) \
  3554. btrfs_printk_in_rcu(fs_info, KERN_EMERG fmt, ##args)
  3555. #define btrfs_alert_in_rcu(fs_info, fmt, args...) \
  3556. btrfs_printk_in_rcu(fs_info, KERN_ALERT fmt, ##args)
  3557. #define btrfs_crit_in_rcu(fs_info, fmt, args...) \
  3558. btrfs_printk_in_rcu(fs_info, KERN_CRIT fmt, ##args)
  3559. #define btrfs_err_in_rcu(fs_info, fmt, args...) \
  3560. btrfs_printk_in_rcu(fs_info, KERN_ERR fmt, ##args)
  3561. #define btrfs_warn_in_rcu(fs_info, fmt, args...) \
  3562. btrfs_printk_in_rcu(fs_info, KERN_WARNING fmt, ##args)
  3563. #define btrfs_notice_in_rcu(fs_info, fmt, args...) \
  3564. btrfs_printk_in_rcu(fs_info, KERN_NOTICE fmt, ##args)
  3565. #define btrfs_info_in_rcu(fs_info, fmt, args...) \
  3566. btrfs_printk_in_rcu(fs_info, KERN_INFO fmt, ##args)
  3567. /*
  3568. * Wrappers that use a ratelimited printk_in_rcu
  3569. */
  3570. #define btrfs_emerg_rl_in_rcu(fs_info, fmt, args...) \
  3571. btrfs_printk_rl_in_rcu(fs_info, KERN_EMERG fmt, ##args)
  3572. #define btrfs_alert_rl_in_rcu(fs_info, fmt, args...) \
  3573. btrfs_printk_rl_in_rcu(fs_info, KERN_ALERT fmt, ##args)
  3574. #define btrfs_crit_rl_in_rcu(fs_info, fmt, args...) \
  3575. btrfs_printk_rl_in_rcu(fs_info, KERN_CRIT fmt, ##args)
  3576. #define btrfs_err_rl_in_rcu(fs_info, fmt, args...) \
  3577. btrfs_printk_rl_in_rcu(fs_info, KERN_ERR fmt, ##args)
  3578. #define btrfs_warn_rl_in_rcu(fs_info, fmt, args...) \
  3579. btrfs_printk_rl_in_rcu(fs_info, KERN_WARNING fmt, ##args)
  3580. #define btrfs_notice_rl_in_rcu(fs_info, fmt, args...) \
  3581. btrfs_printk_rl_in_rcu(fs_info, KERN_NOTICE fmt, ##args)
  3582. #define btrfs_info_rl_in_rcu(fs_info, fmt, args...) \
  3583. btrfs_printk_rl_in_rcu(fs_info, KERN_INFO fmt, ##args)
  3584. /*
  3585. * Wrappers that use a ratelimited printk
  3586. */
  3587. #define btrfs_emerg_rl(fs_info, fmt, args...) \
  3588. btrfs_printk_ratelimited(fs_info, KERN_EMERG fmt, ##args)
  3589. #define btrfs_alert_rl(fs_info, fmt, args...) \
  3590. btrfs_printk_ratelimited(fs_info, KERN_ALERT fmt, ##args)
  3591. #define btrfs_crit_rl(fs_info, fmt, args...) \
  3592. btrfs_printk_ratelimited(fs_info, KERN_CRIT fmt, ##args)
  3593. #define btrfs_err_rl(fs_info, fmt, args...) \
  3594. btrfs_printk_ratelimited(fs_info, KERN_ERR fmt, ##args)
  3595. #define btrfs_warn_rl(fs_info, fmt, args...) \
  3596. btrfs_printk_ratelimited(fs_info, KERN_WARNING fmt, ##args)
  3597. #define btrfs_notice_rl(fs_info, fmt, args...) \
  3598. btrfs_printk_ratelimited(fs_info, KERN_NOTICE fmt, ##args)
  3599. #define btrfs_info_rl(fs_info, fmt, args...) \
  3600. btrfs_printk_ratelimited(fs_info, KERN_INFO fmt, ##args)
  3601. #ifdef DEBUG
  3602. #define btrfs_debug(fs_info, fmt, args...) \
  3603. btrfs_printk(fs_info, KERN_DEBUG fmt, ##args)
  3604. #define btrfs_debug_in_rcu(fs_info, fmt, args...) \
  3605. btrfs_printk_in_rcu(fs_info, KERN_DEBUG fmt, ##args)
  3606. #define btrfs_debug_rl_in_rcu(fs_info, fmt, args...) \
  3607. btrfs_printk_rl_in_rcu(fs_info, KERN_DEBUG fmt, ##args)
  3608. #define btrfs_debug_rl(fs_info, fmt, args...) \
  3609. btrfs_printk_ratelimited(fs_info, KERN_DEBUG fmt, ##args)
  3610. #else
  3611. #define btrfs_debug(fs_info, fmt, args...) \
  3612. no_printk(KERN_DEBUG fmt, ##args)
  3613. #define btrfs_debug_in_rcu(fs_info, fmt, args...) \
  3614. no_printk(KERN_DEBUG fmt, ##args)
  3615. #define btrfs_debug_rl_in_rcu(fs_info, fmt, args...) \
  3616. no_printk(KERN_DEBUG fmt, ##args)
  3617. #define btrfs_debug_rl(fs_info, fmt, args...) \
  3618. no_printk(KERN_DEBUG fmt, ##args)
  3619. #endif
  3620. #define btrfs_printk_in_rcu(fs_info, fmt, args...) \
  3621. do { \
  3622. rcu_read_lock(); \
  3623. btrfs_printk(fs_info, fmt, ##args); \
  3624. rcu_read_unlock(); \
  3625. } while (0)
  3626. #define btrfs_printk_ratelimited(fs_info, fmt, args...) \
  3627. do { \
  3628. static DEFINE_RATELIMIT_STATE(_rs, \
  3629. DEFAULT_RATELIMIT_INTERVAL, \
  3630. DEFAULT_RATELIMIT_BURST); \
  3631. if (__ratelimit(&_rs)) \
  3632. btrfs_printk(fs_info, fmt, ##args); \
  3633. } while (0)
  3634. #define btrfs_printk_rl_in_rcu(fs_info, fmt, args...) \
  3635. do { \
  3636. rcu_read_lock(); \
  3637. btrfs_printk_ratelimited(fs_info, fmt, ##args); \
  3638. rcu_read_unlock(); \
  3639. } while (0)
  3640. #ifdef CONFIG_BTRFS_ASSERT
  3641. __cold
  3642. static inline void assfail(char *expr, char *file, int line)
  3643. {
  3644. pr_err("BTRFS: assertion failed: %s, file: %s, line: %d",
  3645. expr, file, line);
  3646. BUG();
  3647. }
  3648. #define ASSERT(expr) \
  3649. (likely(expr) ? (void)0 : assfail(#expr, __FILE__, __LINE__))
  3650. #else
  3651. #define ASSERT(expr) ((void)0)
  3652. #endif
  3653. #define btrfs_assert()
  3654. __printf(5, 6)
  3655. __cold
  3656. void __btrfs_std_error(struct btrfs_fs_info *fs_info, const char *function,
  3657. unsigned int line, int errno, const char *fmt, ...);
  3658. const char *btrfs_decode_error(int errno);
  3659. __cold
  3660. void __btrfs_abort_transaction(struct btrfs_trans_handle *trans,
  3661. struct btrfs_root *root, const char *function,
  3662. unsigned int line, int errno);
  3663. #define btrfs_set_fs_incompat(__fs_info, opt) \
  3664. __btrfs_set_fs_incompat((__fs_info), BTRFS_FEATURE_INCOMPAT_##opt)
  3665. static inline void __btrfs_set_fs_incompat(struct btrfs_fs_info *fs_info,
  3666. u64 flag)
  3667. {
  3668. struct btrfs_super_block *disk_super;
  3669. u64 features;
  3670. disk_super = fs_info->super_copy;
  3671. features = btrfs_super_incompat_flags(disk_super);
  3672. if (!(features & flag)) {
  3673. spin_lock(&fs_info->super_lock);
  3674. features = btrfs_super_incompat_flags(disk_super);
  3675. if (!(features & flag)) {
  3676. features |= flag;
  3677. btrfs_set_super_incompat_flags(disk_super, features);
  3678. btrfs_info(fs_info, "setting %llu feature flag",
  3679. flag);
  3680. }
  3681. spin_unlock(&fs_info->super_lock);
  3682. }
  3683. }
  3684. #define btrfs_fs_incompat(fs_info, opt) \
  3685. __btrfs_fs_incompat((fs_info), BTRFS_FEATURE_INCOMPAT_##opt)
  3686. static inline int __btrfs_fs_incompat(struct btrfs_fs_info *fs_info, u64 flag)
  3687. {
  3688. struct btrfs_super_block *disk_super;
  3689. disk_super = fs_info->super_copy;
  3690. return !!(btrfs_super_incompat_flags(disk_super) & flag);
  3691. }
  3692. /*
  3693. * Call btrfs_abort_transaction as early as possible when an error condition is
  3694. * detected, that way the exact line number is reported.
  3695. */
  3696. #define btrfs_abort_transaction(trans, root, errno) \
  3697. do { \
  3698. /* Report first abort since mount */ \
  3699. if (!test_and_set_bit(BTRFS_FS_STATE_TRANS_ABORTED, \
  3700. &((root)->fs_info->fs_state))) { \
  3701. WARN(1, KERN_DEBUG \
  3702. "BTRFS: Transaction aborted (error %d)\n", \
  3703. (errno)); \
  3704. } \
  3705. __btrfs_abort_transaction((trans), (root), __func__, \
  3706. __LINE__, (errno)); \
  3707. } while (0)
  3708. #define btrfs_std_error(fs_info, errno, fmt, args...) \
  3709. do { \
  3710. __btrfs_std_error((fs_info), __func__, __LINE__, \
  3711. (errno), fmt, ##args); \
  3712. } while (0)
  3713. __printf(5, 6)
  3714. __cold
  3715. void __btrfs_panic(struct btrfs_fs_info *fs_info, const char *function,
  3716. unsigned int line, int errno, const char *fmt, ...);
  3717. /*
  3718. * If BTRFS_MOUNT_PANIC_ON_FATAL_ERROR is in mount_opt, __btrfs_panic
  3719. * will panic(). Otherwise we BUG() here.
  3720. */
  3721. #define btrfs_panic(fs_info, errno, fmt, args...) \
  3722. do { \
  3723. __btrfs_panic(fs_info, __func__, __LINE__, errno, fmt, ##args); \
  3724. BUG(); \
  3725. } while (0)
  3726. /* acl.c */
  3727. #ifdef CONFIG_BTRFS_FS_POSIX_ACL
  3728. struct posix_acl *btrfs_get_acl(struct inode *inode, int type);
  3729. int btrfs_set_acl(struct inode *inode, struct posix_acl *acl, int type);
  3730. int btrfs_init_acl(struct btrfs_trans_handle *trans,
  3731. struct inode *inode, struct inode *dir);
  3732. #else
  3733. #define btrfs_get_acl NULL
  3734. #define btrfs_set_acl NULL
  3735. static inline int btrfs_init_acl(struct btrfs_trans_handle *trans,
  3736. struct inode *inode, struct inode *dir)
  3737. {
  3738. return 0;
  3739. }
  3740. #endif
  3741. /* relocation.c */
  3742. int btrfs_relocate_block_group(struct btrfs_root *root, u64 group_start);
  3743. int btrfs_init_reloc_root(struct btrfs_trans_handle *trans,
  3744. struct btrfs_root *root);
  3745. int btrfs_update_reloc_root(struct btrfs_trans_handle *trans,
  3746. struct btrfs_root *root);
  3747. int btrfs_recover_relocation(struct btrfs_root *root);
  3748. int btrfs_reloc_clone_csums(struct inode *inode, u64 file_pos, u64 len);
  3749. int btrfs_reloc_cow_block(struct btrfs_trans_handle *trans,
  3750. struct btrfs_root *root, struct extent_buffer *buf,
  3751. struct extent_buffer *cow);
  3752. void btrfs_reloc_pre_snapshot(struct btrfs_pending_snapshot *pending,
  3753. u64 *bytes_to_reserve);
  3754. int btrfs_reloc_post_snapshot(struct btrfs_trans_handle *trans,
  3755. struct btrfs_pending_snapshot *pending);
  3756. /* scrub.c */
  3757. int btrfs_scrub_dev(struct btrfs_fs_info *fs_info, u64 devid, u64 start,
  3758. u64 end, struct btrfs_scrub_progress *progress,
  3759. int readonly, int is_dev_replace);
  3760. void btrfs_scrub_pause(struct btrfs_root *root);
  3761. void btrfs_scrub_continue(struct btrfs_root *root);
  3762. int btrfs_scrub_cancel(struct btrfs_fs_info *info);
  3763. int btrfs_scrub_cancel_dev(struct btrfs_fs_info *info,
  3764. struct btrfs_device *dev);
  3765. int btrfs_scrub_progress(struct btrfs_root *root, u64 devid,
  3766. struct btrfs_scrub_progress *progress);
  3767. /* dev-replace.c */
  3768. void btrfs_bio_counter_inc_blocked(struct btrfs_fs_info *fs_info);
  3769. void btrfs_bio_counter_inc_noblocked(struct btrfs_fs_info *fs_info);
  3770. void btrfs_bio_counter_sub(struct btrfs_fs_info *fs_info, s64 amount);
  3771. static inline void btrfs_bio_counter_dec(struct btrfs_fs_info *fs_info)
  3772. {
  3773. btrfs_bio_counter_sub(fs_info, 1);
  3774. }
  3775. /* reada.c */
  3776. struct reada_control {
  3777. struct btrfs_root *root; /* tree to prefetch */
  3778. struct btrfs_key key_start;
  3779. struct btrfs_key key_end; /* exclusive */
  3780. atomic_t elems;
  3781. struct kref refcnt;
  3782. wait_queue_head_t wait;
  3783. };
  3784. struct reada_control *btrfs_reada_add(struct btrfs_root *root,
  3785. struct btrfs_key *start, struct btrfs_key *end);
  3786. int btrfs_reada_wait(void *handle);
  3787. void btrfs_reada_detach(void *handle);
  3788. int btree_readahead_hook(struct btrfs_root *root, struct extent_buffer *eb,
  3789. u64 start, int err);
  3790. static inline int is_fstree(u64 rootid)
  3791. {
  3792. if (rootid == BTRFS_FS_TREE_OBJECTID ||
  3793. ((s64)rootid >= (s64)BTRFS_FIRST_FREE_OBJECTID &&
  3794. !btrfs_qgroup_level(rootid)))
  3795. return 1;
  3796. return 0;
  3797. }
  3798. static inline int btrfs_defrag_cancelled(struct btrfs_fs_info *fs_info)
  3799. {
  3800. return signal_pending(current);
  3801. }
  3802. /* Sanity test specific functions */
  3803. #ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
  3804. void btrfs_test_destroy_inode(struct inode *inode);
  3805. #endif
  3806. static inline int btrfs_test_is_dummy_root(struct btrfs_root *root)
  3807. {
  3808. #ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
  3809. if (unlikely(test_bit(BTRFS_ROOT_DUMMY_ROOT, &root->state)))
  3810. return 1;
  3811. #endif
  3812. return 0;
  3813. }
  3814. #endif