the_nilfs.h 10 KB

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  1. /*
  2. * the_nilfs.h - the_nilfs shared structure.
  3. *
  4. * Copyright (C) 2005-2008 Nippon Telegraph and Telephone Corporation.
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  19. *
  20. * Written by Ryusuke Konishi <ryusuke@osrg.net>
  21. *
  22. */
  23. #ifndef _THE_NILFS_H
  24. #define _THE_NILFS_H
  25. #include <linux/types.h>
  26. #include <linux/buffer_head.h>
  27. #include <linux/rbtree.h>
  28. #include <linux/fs.h>
  29. #include <linux/blkdev.h>
  30. #include <linux/backing-dev.h>
  31. #include <linux/slab.h>
  32. #include "sb.h"
  33. /* the_nilfs struct */
  34. enum {
  35. THE_NILFS_INIT = 0, /* Information from super_block is set */
  36. THE_NILFS_DISCONTINUED, /* 'next' pointer chain has broken */
  37. THE_NILFS_GC_RUNNING, /* gc process is running */
  38. THE_NILFS_SB_DIRTY, /* super block is dirty */
  39. };
  40. /**
  41. * struct the_nilfs - struct to supervise multiple nilfs mount points
  42. * @ns_flags: flags
  43. * @ns_bdev: block device
  44. * @ns_sem: semaphore for shared states
  45. * @ns_sbh: buffer heads of on-disk super blocks
  46. * @ns_sbp: pointers to super block data
  47. * @ns_sbwtime: previous write time of super block
  48. * @ns_sbwcount: write count of super block
  49. * @ns_sbsize: size of valid data in super block
  50. * @ns_seg_seq: segment sequence counter
  51. * @ns_segnum: index number of the latest full segment.
  52. * @ns_nextnum: index number of the full segment index to be used next
  53. * @ns_pseg_offset: offset of next partial segment in the current full segment
  54. * @ns_cno: next checkpoint number
  55. * @ns_ctime: write time of the last segment
  56. * @ns_nongc_ctime: write time of the last segment not for cleaner operation
  57. * @ns_ndirtyblks: Number of dirty data blocks
  58. * @ns_last_segment_lock: lock protecting fields for the latest segment
  59. * @ns_last_pseg: start block number of the latest segment
  60. * @ns_last_seq: sequence value of the latest segment
  61. * @ns_last_cno: checkpoint number of the latest segment
  62. * @ns_prot_seq: least sequence number of segments which must not be reclaimed
  63. * @ns_prev_seq: base sequence number used to decide if advance log cursor
  64. * @ns_segctor_sem: segment constructor semaphore
  65. * @ns_dat: DAT file inode
  66. * @ns_cpfile: checkpoint file inode
  67. * @ns_sufile: segusage file inode
  68. * @ns_cptree: rb-tree of all mounted checkpoints (nilfs_root)
  69. * @ns_cptree_lock: lock protecting @ns_cptree
  70. * @ns_gc_inodes: dummy inodes to keep live blocks
  71. * @ns_mount_opt: mount options
  72. * @ns_blocksize_bits: bit length of block size
  73. * @ns_blocksize: block size
  74. * @ns_nsegments: number of segments in filesystem
  75. * @ns_blocks_per_segment: number of blocks per segment
  76. * @ns_r_segments_percentage: reserved segments percentage
  77. * @ns_nrsvsegs: number of reserved segments
  78. * @ns_first_data_block: block number of first data block
  79. * @ns_inode_size: size of on-disk inode
  80. * @ns_first_ino: first not-special inode number
  81. * @ns_crc_seed: seed value of CRC32 calculation
  82. */
  83. struct the_nilfs {
  84. unsigned long ns_flags;
  85. struct block_device *ns_bdev;
  86. struct rw_semaphore ns_sem;
  87. /*
  88. * used for
  89. * - loading the latest checkpoint exclusively.
  90. * - allocating a new full segment.
  91. * - protecting s_dirt in the super_block struct
  92. * (see nilfs_write_super) and the following fields.
  93. */
  94. struct buffer_head *ns_sbh[2];
  95. struct nilfs_super_block *ns_sbp[2];
  96. time_t ns_sbwtime;
  97. unsigned ns_sbwcount;
  98. unsigned ns_sbsize;
  99. unsigned ns_mount_state;
  100. /*
  101. * Following fields are dedicated to a writable FS-instance.
  102. * Except for the period seeking checkpoint, code outside the segment
  103. * constructor must lock a segment semaphore while accessing these
  104. * fields.
  105. * The writable FS-instance is sole during a lifetime of the_nilfs.
  106. */
  107. u64 ns_seg_seq;
  108. __u64 ns_segnum;
  109. __u64 ns_nextnum;
  110. unsigned long ns_pseg_offset;
  111. __u64 ns_cno;
  112. time_t ns_ctime;
  113. time_t ns_nongc_ctime;
  114. atomic_t ns_ndirtyblks;
  115. /*
  116. * The following fields hold information on the latest partial segment
  117. * written to disk with a super root. These fields are protected by
  118. * ns_last_segment_lock.
  119. */
  120. spinlock_t ns_last_segment_lock;
  121. sector_t ns_last_pseg;
  122. u64 ns_last_seq;
  123. __u64 ns_last_cno;
  124. u64 ns_prot_seq;
  125. u64 ns_prev_seq;
  126. struct rw_semaphore ns_segctor_sem;
  127. /*
  128. * Following fields are lock free except for the period before
  129. * the_nilfs is initialized.
  130. */
  131. struct inode *ns_dat;
  132. struct inode *ns_cpfile;
  133. struct inode *ns_sufile;
  134. /* Checkpoint tree */
  135. struct rb_root ns_cptree;
  136. spinlock_t ns_cptree_lock;
  137. /* GC inode list */
  138. struct list_head ns_gc_inodes;
  139. /* Mount options */
  140. unsigned long ns_mount_opt;
  141. /* Disk layout information (static) */
  142. unsigned int ns_blocksize_bits;
  143. unsigned int ns_blocksize;
  144. unsigned long ns_nsegments;
  145. unsigned long ns_blocks_per_segment;
  146. unsigned long ns_r_segments_percentage;
  147. unsigned long ns_nrsvsegs;
  148. unsigned long ns_first_data_block;
  149. int ns_inode_size;
  150. int ns_first_ino;
  151. u32 ns_crc_seed;
  152. };
  153. #define THE_NILFS_FNS(bit, name) \
  154. static inline void set_nilfs_##name(struct the_nilfs *nilfs) \
  155. { \
  156. set_bit(THE_NILFS_##bit, &(nilfs)->ns_flags); \
  157. } \
  158. static inline void clear_nilfs_##name(struct the_nilfs *nilfs) \
  159. { \
  160. clear_bit(THE_NILFS_##bit, &(nilfs)->ns_flags); \
  161. } \
  162. static inline int nilfs_##name(struct the_nilfs *nilfs) \
  163. { \
  164. return test_bit(THE_NILFS_##bit, &(nilfs)->ns_flags); \
  165. }
  166. THE_NILFS_FNS(INIT, init)
  167. THE_NILFS_FNS(DISCONTINUED, discontinued)
  168. THE_NILFS_FNS(GC_RUNNING, gc_running)
  169. THE_NILFS_FNS(SB_DIRTY, sb_dirty)
  170. /*
  171. * Mount option operations
  172. */
  173. #define nilfs_clear_opt(nilfs, opt) \
  174. do { (nilfs)->ns_mount_opt &= ~NILFS_MOUNT_##opt; } while (0)
  175. #define nilfs_set_opt(nilfs, opt) \
  176. do { (nilfs)->ns_mount_opt |= NILFS_MOUNT_##opt; } while (0)
  177. #define nilfs_test_opt(nilfs, opt) ((nilfs)->ns_mount_opt & NILFS_MOUNT_##opt)
  178. #define nilfs_write_opt(nilfs, mask, opt) \
  179. do { (nilfs)->ns_mount_opt = \
  180. (((nilfs)->ns_mount_opt & ~NILFS_MOUNT_##mask) | \
  181. NILFS_MOUNT_##opt); \
  182. } while (0)
  183. /**
  184. * struct nilfs_root - nilfs root object
  185. * @cno: checkpoint number
  186. * @rb_node: red-black tree node
  187. * @count: refcount of this structure
  188. * @nilfs: nilfs object
  189. * @ifile: inode file
  190. * @root: root inode
  191. * @inodes_count: number of inodes
  192. * @blocks_count: number of blocks (Reserved)
  193. */
  194. struct nilfs_root {
  195. __u64 cno;
  196. struct rb_node rb_node;
  197. atomic_t count;
  198. struct the_nilfs *nilfs;
  199. struct inode *ifile;
  200. atomic_t inodes_count;
  201. atomic_t blocks_count;
  202. };
  203. /* Special checkpoint number */
  204. #define NILFS_CPTREE_CURRENT_CNO 0
  205. /* Minimum interval of periodical update of superblocks (in seconds) */
  206. #define NILFS_SB_FREQ 10
  207. static inline int nilfs_sb_need_update(struct the_nilfs *nilfs)
  208. {
  209. u64 t = get_seconds();
  210. return t < nilfs->ns_sbwtime || t > nilfs->ns_sbwtime + NILFS_SB_FREQ;
  211. }
  212. static inline int nilfs_sb_will_flip(struct the_nilfs *nilfs)
  213. {
  214. int flip_bits = nilfs->ns_sbwcount & 0x0FL;
  215. return (flip_bits != 0x08 && flip_bits != 0x0F);
  216. }
  217. void nilfs_set_last_segment(struct the_nilfs *, sector_t, u64, __u64);
  218. struct the_nilfs *alloc_nilfs(struct block_device *bdev);
  219. void destroy_nilfs(struct the_nilfs *nilfs);
  220. int init_nilfs(struct the_nilfs *, struct nilfs_sb_info *, char *);
  221. int load_nilfs(struct the_nilfs *, struct nilfs_sb_info *);
  222. int nilfs_discard_segments(struct the_nilfs *, __u64 *, size_t);
  223. int nilfs_count_free_blocks(struct the_nilfs *, sector_t *);
  224. struct nilfs_root *nilfs_lookup_root(struct the_nilfs *nilfs, __u64 cno);
  225. struct nilfs_root *nilfs_find_or_create_root(struct the_nilfs *nilfs,
  226. __u64 cno);
  227. void nilfs_put_root(struct nilfs_root *root);
  228. struct nilfs_sb_info *nilfs_find_sbinfo(struct the_nilfs *, int, __u64);
  229. int nilfs_near_disk_full(struct the_nilfs *);
  230. void nilfs_fall_back_super_block(struct the_nilfs *);
  231. void nilfs_swap_super_block(struct the_nilfs *);
  232. static inline void nilfs_get_root(struct nilfs_root *root)
  233. {
  234. atomic_inc(&root->count);
  235. }
  236. static inline int nilfs_valid_fs(struct the_nilfs *nilfs)
  237. {
  238. unsigned valid_fs;
  239. down_read(&nilfs->ns_sem);
  240. valid_fs = (nilfs->ns_mount_state & NILFS_VALID_FS);
  241. up_read(&nilfs->ns_sem);
  242. return valid_fs;
  243. }
  244. static inline void
  245. nilfs_get_segment_range(struct the_nilfs *nilfs, __u64 segnum,
  246. sector_t *seg_start, sector_t *seg_end)
  247. {
  248. *seg_start = (sector_t)nilfs->ns_blocks_per_segment * segnum;
  249. *seg_end = *seg_start + nilfs->ns_blocks_per_segment - 1;
  250. if (segnum == 0)
  251. *seg_start = nilfs->ns_first_data_block;
  252. }
  253. static inline sector_t
  254. nilfs_get_segment_start_blocknr(struct the_nilfs *nilfs, __u64 segnum)
  255. {
  256. return (segnum == 0) ? nilfs->ns_first_data_block :
  257. (sector_t)nilfs->ns_blocks_per_segment * segnum;
  258. }
  259. static inline __u64
  260. nilfs_get_segnum_of_block(struct the_nilfs *nilfs, sector_t blocknr)
  261. {
  262. sector_t segnum = blocknr;
  263. sector_div(segnum, nilfs->ns_blocks_per_segment);
  264. return segnum;
  265. }
  266. static inline void
  267. nilfs_terminate_segment(struct the_nilfs *nilfs, sector_t seg_start,
  268. sector_t seg_end)
  269. {
  270. /* terminate the current full segment (used in case of I/O-error) */
  271. nilfs->ns_pseg_offset = seg_end - seg_start + 1;
  272. }
  273. static inline void nilfs_shift_to_next_segment(struct the_nilfs *nilfs)
  274. {
  275. /* move forward with a full segment */
  276. nilfs->ns_segnum = nilfs->ns_nextnum;
  277. nilfs->ns_pseg_offset = 0;
  278. nilfs->ns_seg_seq++;
  279. }
  280. static inline __u64 nilfs_last_cno(struct the_nilfs *nilfs)
  281. {
  282. __u64 cno;
  283. spin_lock(&nilfs->ns_last_segment_lock);
  284. cno = nilfs->ns_last_cno;
  285. spin_unlock(&nilfs->ns_last_segment_lock);
  286. return cno;
  287. }
  288. static inline int nilfs_segment_is_active(struct the_nilfs *nilfs, __u64 n)
  289. {
  290. return n == nilfs->ns_segnum || n == nilfs->ns_nextnum;
  291. }
  292. #endif /* _THE_NILFS_H */