ialloc.c 31 KB

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  1. /*
  2. * linux/fs/ext4/ialloc.c
  3. *
  4. * Copyright (C) 1992, 1993, 1994, 1995
  5. * Remy Card (card@masi.ibp.fr)
  6. * Laboratoire MASI - Institut Blaise Pascal
  7. * Universite Pierre et Marie Curie (Paris VI)
  8. *
  9. * BSD ufs-inspired inode and directory allocation by
  10. * Stephen Tweedie (sct@redhat.com), 1993
  11. * Big-endian to little-endian byte-swapping/bitmaps by
  12. * David S. Miller (davem@caip.rutgers.edu), 1995
  13. */
  14. #include <linux/time.h>
  15. #include <linux/fs.h>
  16. #include <linux/jbd2.h>
  17. #include <linux/stat.h>
  18. #include <linux/string.h>
  19. #include <linux/quotaops.h>
  20. #include <linux/buffer_head.h>
  21. #include <linux/random.h>
  22. #include <linux/bitops.h>
  23. #include <linux/blkdev.h>
  24. #include <asm/byteorder.h>
  25. #include "ext4.h"
  26. #include "ext4_jbd2.h"
  27. #include "xattr.h"
  28. #include "acl.h"
  29. #include "group.h"
  30. /*
  31. * ialloc.c contains the inodes allocation and deallocation routines
  32. */
  33. /*
  34. * The free inodes are managed by bitmaps. A file system contains several
  35. * blocks groups. Each group contains 1 bitmap block for blocks, 1 bitmap
  36. * block for inodes, N blocks for the inode table and data blocks.
  37. *
  38. * The file system contains group descriptors which are located after the
  39. * super block. Each descriptor contains the number of the bitmap block and
  40. * the free blocks count in the block.
  41. */
  42. /*
  43. * To avoid calling the atomic setbit hundreds or thousands of times, we only
  44. * need to use it within a single byte (to ensure we get endianness right).
  45. * We can use memset for the rest of the bitmap as there are no other users.
  46. */
  47. void mark_bitmap_end(int start_bit, int end_bit, char *bitmap)
  48. {
  49. int i;
  50. if (start_bit >= end_bit)
  51. return;
  52. ext4_debug("mark end bits +%d through +%d used\n", start_bit, end_bit);
  53. for (i = start_bit; i < ((start_bit + 7) & ~7UL); i++)
  54. ext4_set_bit(i, bitmap);
  55. if (i < end_bit)
  56. memset(bitmap + (i >> 3), 0xff, (end_bit - i) >> 3);
  57. }
  58. /* Initializes an uninitialized inode bitmap */
  59. unsigned ext4_init_inode_bitmap(struct super_block *sb, struct buffer_head *bh,
  60. ext4_group_t block_group,
  61. struct ext4_group_desc *gdp)
  62. {
  63. struct ext4_sb_info *sbi = EXT4_SB(sb);
  64. J_ASSERT_BH(bh, buffer_locked(bh));
  65. /* If checksum is bad mark all blocks and inodes use to prevent
  66. * allocation, essentially implementing a per-group read-only flag. */
  67. if (!ext4_group_desc_csum_verify(sbi, block_group, gdp)) {
  68. ext4_error(sb, __func__, "Checksum bad for group %u",
  69. block_group);
  70. ext4_free_blks_set(sb, gdp, 0);
  71. ext4_free_inodes_set(sb, gdp, 0);
  72. ext4_itable_unused_set(sb, gdp, 0);
  73. memset(bh->b_data, 0xff, sb->s_blocksize);
  74. return 0;
  75. }
  76. memset(bh->b_data, 0, (EXT4_INODES_PER_GROUP(sb) + 7) / 8);
  77. mark_bitmap_end(EXT4_INODES_PER_GROUP(sb), sb->s_blocksize * 8,
  78. bh->b_data);
  79. return EXT4_INODES_PER_GROUP(sb);
  80. }
  81. /*
  82. * Read the inode allocation bitmap for a given block_group, reading
  83. * into the specified slot in the superblock's bitmap cache.
  84. *
  85. * Return buffer_head of bitmap on success or NULL.
  86. */
  87. static struct buffer_head *
  88. ext4_read_inode_bitmap(struct super_block *sb, ext4_group_t block_group)
  89. {
  90. struct ext4_group_desc *desc;
  91. struct buffer_head *bh = NULL;
  92. ext4_fsblk_t bitmap_blk;
  93. desc = ext4_get_group_desc(sb, block_group, NULL);
  94. if (!desc)
  95. return NULL;
  96. bitmap_blk = ext4_inode_bitmap(sb, desc);
  97. bh = sb_getblk(sb, bitmap_blk);
  98. if (unlikely(!bh)) {
  99. ext4_error(sb, __func__,
  100. "Cannot read inode bitmap - "
  101. "block_group = %u, inode_bitmap = %llu",
  102. block_group, bitmap_blk);
  103. return NULL;
  104. }
  105. if (bitmap_uptodate(bh))
  106. return bh;
  107. lock_buffer(bh);
  108. if (bitmap_uptodate(bh)) {
  109. unlock_buffer(bh);
  110. return bh;
  111. }
  112. spin_lock(sb_bgl_lock(EXT4_SB(sb), block_group));
  113. if (desc->bg_flags & cpu_to_le16(EXT4_BG_INODE_UNINIT)) {
  114. ext4_init_inode_bitmap(sb, bh, block_group, desc);
  115. set_bitmap_uptodate(bh);
  116. set_buffer_uptodate(bh);
  117. spin_unlock(sb_bgl_lock(EXT4_SB(sb), block_group));
  118. unlock_buffer(bh);
  119. return bh;
  120. }
  121. spin_unlock(sb_bgl_lock(EXT4_SB(sb), block_group));
  122. if (buffer_uptodate(bh)) {
  123. /*
  124. * if not uninit if bh is uptodate,
  125. * bitmap is also uptodate
  126. */
  127. set_bitmap_uptodate(bh);
  128. unlock_buffer(bh);
  129. return bh;
  130. }
  131. /*
  132. * submit the buffer_head for read. We can
  133. * safely mark the bitmap as uptodate now.
  134. * We do it here so the bitmap uptodate bit
  135. * get set with buffer lock held.
  136. */
  137. set_bitmap_uptodate(bh);
  138. if (bh_submit_read(bh) < 0) {
  139. put_bh(bh);
  140. ext4_error(sb, __func__,
  141. "Cannot read inode bitmap - "
  142. "block_group = %u, inode_bitmap = %llu",
  143. block_group, bitmap_blk);
  144. return NULL;
  145. }
  146. return bh;
  147. }
  148. /*
  149. * NOTE! When we get the inode, we're the only people
  150. * that have access to it, and as such there are no
  151. * race conditions we have to worry about. The inode
  152. * is not on the hash-lists, and it cannot be reached
  153. * through the filesystem because the directory entry
  154. * has been deleted earlier.
  155. *
  156. * HOWEVER: we must make sure that we get no aliases,
  157. * which means that we have to call "clear_inode()"
  158. * _before_ we mark the inode not in use in the inode
  159. * bitmaps. Otherwise a newly created file might use
  160. * the same inode number (not actually the same pointer
  161. * though), and then we'd have two inodes sharing the
  162. * same inode number and space on the harddisk.
  163. */
  164. void ext4_free_inode(handle_t *handle, struct inode *inode)
  165. {
  166. struct super_block *sb = inode->i_sb;
  167. int is_directory;
  168. unsigned long ino;
  169. struct buffer_head *bitmap_bh = NULL;
  170. struct buffer_head *bh2;
  171. ext4_group_t block_group;
  172. unsigned long bit;
  173. struct ext4_group_desc *gdp;
  174. struct ext4_super_block *es;
  175. struct ext4_sb_info *sbi;
  176. int fatal = 0, err, count, cleared;
  177. ext4_group_t flex_group;
  178. if (atomic_read(&inode->i_count) > 1) {
  179. printk(KERN_ERR "ext4_free_inode: inode has count=%d\n",
  180. atomic_read(&inode->i_count));
  181. return;
  182. }
  183. if (inode->i_nlink) {
  184. printk(KERN_ERR "ext4_free_inode: inode has nlink=%d\n",
  185. inode->i_nlink);
  186. return;
  187. }
  188. if (!sb) {
  189. printk(KERN_ERR "ext4_free_inode: inode on "
  190. "nonexistent device\n");
  191. return;
  192. }
  193. sbi = EXT4_SB(sb);
  194. ino = inode->i_ino;
  195. ext4_debug("freeing inode %lu\n", ino);
  196. trace_mark(ext4_free_inode,
  197. "dev %s ino %lu mode %d uid %lu gid %lu bocks %llu",
  198. sb->s_id, inode->i_ino, inode->i_mode,
  199. (unsigned long) inode->i_uid, (unsigned long) inode->i_gid,
  200. (unsigned long long) inode->i_blocks);
  201. /*
  202. * Note: we must free any quota before locking the superblock,
  203. * as writing the quota to disk may need the lock as well.
  204. */
  205. vfs_dq_init(inode);
  206. ext4_xattr_delete_inode(handle, inode);
  207. vfs_dq_free_inode(inode);
  208. vfs_dq_drop(inode);
  209. is_directory = S_ISDIR(inode->i_mode);
  210. /* Do this BEFORE marking the inode not in use or returning an error */
  211. clear_inode(inode);
  212. es = EXT4_SB(sb)->s_es;
  213. if (ino < EXT4_FIRST_INO(sb) || ino > le32_to_cpu(es->s_inodes_count)) {
  214. ext4_error(sb, "ext4_free_inode",
  215. "reserved or nonexistent inode %lu", ino);
  216. goto error_return;
  217. }
  218. block_group = (ino - 1) / EXT4_INODES_PER_GROUP(sb);
  219. bit = (ino - 1) % EXT4_INODES_PER_GROUP(sb);
  220. bitmap_bh = ext4_read_inode_bitmap(sb, block_group);
  221. if (!bitmap_bh)
  222. goto error_return;
  223. BUFFER_TRACE(bitmap_bh, "get_write_access");
  224. fatal = ext4_journal_get_write_access(handle, bitmap_bh);
  225. if (fatal)
  226. goto error_return;
  227. /* Ok, now we can actually update the inode bitmaps.. */
  228. spin_lock(sb_bgl_lock(sbi, block_group));
  229. cleared = ext4_clear_bit(bit, bitmap_bh->b_data);
  230. spin_unlock(sb_bgl_lock(sbi, block_group));
  231. if (!cleared)
  232. ext4_error(sb, "ext4_free_inode",
  233. "bit already cleared for inode %lu", ino);
  234. else {
  235. gdp = ext4_get_group_desc(sb, block_group, &bh2);
  236. BUFFER_TRACE(bh2, "get_write_access");
  237. fatal = ext4_journal_get_write_access(handle, bh2);
  238. if (fatal) goto error_return;
  239. if (gdp) {
  240. spin_lock(sb_bgl_lock(sbi, block_group));
  241. count = ext4_free_inodes_count(sb, gdp) + 1;
  242. ext4_free_inodes_set(sb, gdp, count);
  243. if (is_directory) {
  244. count = ext4_used_dirs_count(sb, gdp) - 1;
  245. ext4_used_dirs_set(sb, gdp, count);
  246. }
  247. gdp->bg_checksum = ext4_group_desc_csum(sbi,
  248. block_group, gdp);
  249. spin_unlock(sb_bgl_lock(sbi, block_group));
  250. percpu_counter_inc(&sbi->s_freeinodes_counter);
  251. if (is_directory)
  252. percpu_counter_dec(&sbi->s_dirs_counter);
  253. if (sbi->s_log_groups_per_flex) {
  254. flex_group = ext4_flex_group(sbi, block_group);
  255. spin_lock(sb_bgl_lock(sbi, flex_group));
  256. sbi->s_flex_groups[flex_group].free_inodes++;
  257. spin_unlock(sb_bgl_lock(sbi, flex_group));
  258. }
  259. }
  260. BUFFER_TRACE(bh2, "call ext4_handle_dirty_metadata");
  261. err = ext4_handle_dirty_metadata(handle, NULL, bh2);
  262. if (!fatal) fatal = err;
  263. }
  264. BUFFER_TRACE(bitmap_bh, "call ext4_handle_dirty_metadata");
  265. err = ext4_handle_dirty_metadata(handle, NULL, bitmap_bh);
  266. if (!fatal)
  267. fatal = err;
  268. sb->s_dirt = 1;
  269. error_return:
  270. brelse(bitmap_bh);
  271. ext4_std_error(sb, fatal);
  272. }
  273. /*
  274. * There are two policies for allocating an inode. If the new inode is
  275. * a directory, then a forward search is made for a block group with both
  276. * free space and a low directory-to-inode ratio; if that fails, then of
  277. * the groups with above-average free space, that group with the fewest
  278. * directories already is chosen.
  279. *
  280. * For other inodes, search forward from the parent directory\'s block
  281. * group to find a free inode.
  282. */
  283. static int find_group_dir(struct super_block *sb, struct inode *parent,
  284. ext4_group_t *best_group)
  285. {
  286. ext4_group_t ngroups = EXT4_SB(sb)->s_groups_count;
  287. unsigned int freei, avefreei;
  288. struct ext4_group_desc *desc, *best_desc = NULL;
  289. ext4_group_t group;
  290. int ret = -1;
  291. freei = percpu_counter_read_positive(&EXT4_SB(sb)->s_freeinodes_counter);
  292. avefreei = freei / ngroups;
  293. for (group = 0; group < ngroups; group++) {
  294. desc = ext4_get_group_desc(sb, group, NULL);
  295. if (!desc || !ext4_free_inodes_count(sb, desc))
  296. continue;
  297. if (ext4_free_inodes_count(sb, desc) < avefreei)
  298. continue;
  299. if (!best_desc ||
  300. (ext4_free_blks_count(sb, desc) >
  301. ext4_free_blks_count(sb, best_desc))) {
  302. *best_group = group;
  303. best_desc = desc;
  304. ret = 0;
  305. }
  306. }
  307. return ret;
  308. }
  309. #define free_block_ratio 10
  310. static int find_group_flex(struct super_block *sb, struct inode *parent,
  311. ext4_group_t *best_group)
  312. {
  313. struct ext4_sb_info *sbi = EXT4_SB(sb);
  314. struct ext4_group_desc *desc;
  315. struct buffer_head *bh;
  316. struct flex_groups *flex_group = sbi->s_flex_groups;
  317. ext4_group_t parent_group = EXT4_I(parent)->i_block_group;
  318. ext4_group_t parent_fbg_group = ext4_flex_group(sbi, parent_group);
  319. ext4_group_t ngroups = sbi->s_groups_count;
  320. int flex_size = ext4_flex_bg_size(sbi);
  321. ext4_group_t best_flex = parent_fbg_group;
  322. int blocks_per_flex = sbi->s_blocks_per_group * flex_size;
  323. int flexbg_free_blocks;
  324. int flex_freeb_ratio;
  325. ext4_group_t n_fbg_groups;
  326. ext4_group_t i;
  327. n_fbg_groups = (sbi->s_groups_count + flex_size - 1) >>
  328. sbi->s_log_groups_per_flex;
  329. find_close_to_parent:
  330. flexbg_free_blocks = flex_group[best_flex].free_blocks;
  331. flex_freeb_ratio = flexbg_free_blocks * 100 / blocks_per_flex;
  332. if (flex_group[best_flex].free_inodes &&
  333. flex_freeb_ratio > free_block_ratio)
  334. goto found_flexbg;
  335. if (best_flex && best_flex == parent_fbg_group) {
  336. best_flex--;
  337. goto find_close_to_parent;
  338. }
  339. for (i = 0; i < n_fbg_groups; i++) {
  340. if (i == parent_fbg_group || i == parent_fbg_group - 1)
  341. continue;
  342. flexbg_free_blocks = flex_group[i].free_blocks;
  343. flex_freeb_ratio = flexbg_free_blocks * 100 / blocks_per_flex;
  344. if (flex_freeb_ratio > free_block_ratio &&
  345. flex_group[i].free_inodes) {
  346. best_flex = i;
  347. goto found_flexbg;
  348. }
  349. if (flex_group[best_flex].free_inodes == 0 ||
  350. (flex_group[i].free_blocks >
  351. flex_group[best_flex].free_blocks &&
  352. flex_group[i].free_inodes))
  353. best_flex = i;
  354. }
  355. if (!flex_group[best_flex].free_inodes ||
  356. !flex_group[best_flex].free_blocks)
  357. return -1;
  358. found_flexbg:
  359. for (i = best_flex * flex_size; i < ngroups &&
  360. i < (best_flex + 1) * flex_size; i++) {
  361. desc = ext4_get_group_desc(sb, i, &bh);
  362. if (ext4_free_inodes_count(sb, desc)) {
  363. *best_group = i;
  364. goto out;
  365. }
  366. }
  367. return -1;
  368. out:
  369. return 0;
  370. }
  371. /*
  372. * Orlov's allocator for directories.
  373. *
  374. * We always try to spread first-level directories.
  375. *
  376. * If there are blockgroups with both free inodes and free blocks counts
  377. * not worse than average we return one with smallest directory count.
  378. * Otherwise we simply return a random group.
  379. *
  380. * For the rest rules look so:
  381. *
  382. * It's OK to put directory into a group unless
  383. * it has too many directories already (max_dirs) or
  384. * it has too few free inodes left (min_inodes) or
  385. * it has too few free blocks left (min_blocks) or
  386. * it's already running too large debt (max_debt).
  387. * Parent's group is preferred, if it doesn't satisfy these
  388. * conditions we search cyclically through the rest. If none
  389. * of the groups look good we just look for a group with more
  390. * free inodes than average (starting at parent's group).
  391. *
  392. * Debt is incremented each time we allocate a directory and decremented
  393. * when we allocate an inode, within 0--255.
  394. */
  395. #define INODE_COST 64
  396. #define BLOCK_COST 256
  397. static int find_group_orlov(struct super_block *sb, struct inode *parent,
  398. ext4_group_t *group)
  399. {
  400. ext4_group_t parent_group = EXT4_I(parent)->i_block_group;
  401. struct ext4_sb_info *sbi = EXT4_SB(sb);
  402. struct ext4_super_block *es = sbi->s_es;
  403. ext4_group_t ngroups = sbi->s_groups_count;
  404. int inodes_per_group = EXT4_INODES_PER_GROUP(sb);
  405. unsigned int freei, avefreei;
  406. ext4_fsblk_t freeb, avefreeb;
  407. ext4_fsblk_t blocks_per_dir;
  408. unsigned int ndirs;
  409. int max_debt, max_dirs, min_inodes;
  410. ext4_grpblk_t min_blocks;
  411. ext4_group_t i;
  412. struct ext4_group_desc *desc;
  413. freei = percpu_counter_read_positive(&sbi->s_freeinodes_counter);
  414. avefreei = freei / ngroups;
  415. freeb = percpu_counter_read_positive(&sbi->s_freeblocks_counter);
  416. avefreeb = freeb;
  417. do_div(avefreeb, ngroups);
  418. ndirs = percpu_counter_read_positive(&sbi->s_dirs_counter);
  419. if ((parent == sb->s_root->d_inode) ||
  420. (EXT4_I(parent)->i_flags & EXT4_TOPDIR_FL)) {
  421. int best_ndir = inodes_per_group;
  422. ext4_group_t grp;
  423. int ret = -1;
  424. get_random_bytes(&grp, sizeof(grp));
  425. parent_group = (unsigned)grp % ngroups;
  426. for (i = 0; i < ngroups; i++) {
  427. grp = (parent_group + i) % ngroups;
  428. desc = ext4_get_group_desc(sb, grp, NULL);
  429. if (!desc || !ext4_free_inodes_count(sb, desc))
  430. continue;
  431. if (ext4_used_dirs_count(sb, desc) >= best_ndir)
  432. continue;
  433. if (ext4_free_inodes_count(sb, desc) < avefreei)
  434. continue;
  435. if (ext4_free_blks_count(sb, desc) < avefreeb)
  436. continue;
  437. *group = grp;
  438. ret = 0;
  439. best_ndir = ext4_used_dirs_count(sb, desc);
  440. }
  441. if (ret == 0)
  442. return ret;
  443. goto fallback;
  444. }
  445. blocks_per_dir = ext4_blocks_count(es) - freeb;
  446. do_div(blocks_per_dir, ndirs);
  447. max_dirs = ndirs / ngroups + inodes_per_group / 16;
  448. min_inodes = avefreei - inodes_per_group / 4;
  449. min_blocks = avefreeb - EXT4_BLOCKS_PER_GROUP(sb) / 4;
  450. max_debt = EXT4_BLOCKS_PER_GROUP(sb);
  451. max_debt /= max_t(int, blocks_per_dir, BLOCK_COST);
  452. if (max_debt * INODE_COST > inodes_per_group)
  453. max_debt = inodes_per_group / INODE_COST;
  454. if (max_debt > 255)
  455. max_debt = 255;
  456. if (max_debt == 0)
  457. max_debt = 1;
  458. for (i = 0; i < ngroups; i++) {
  459. *group = (parent_group + i) % ngroups;
  460. desc = ext4_get_group_desc(sb, *group, NULL);
  461. if (!desc || !ext4_free_inodes_count(sb, desc))
  462. continue;
  463. if (ext4_used_dirs_count(sb, desc) >= max_dirs)
  464. continue;
  465. if (ext4_free_inodes_count(sb, desc) < min_inodes)
  466. continue;
  467. if (ext4_free_blks_count(sb, desc) < min_blocks)
  468. continue;
  469. return 0;
  470. }
  471. fallback:
  472. for (i = 0; i < ngroups; i++) {
  473. *group = (parent_group + i) % ngroups;
  474. desc = ext4_get_group_desc(sb, *group, NULL);
  475. if (desc && ext4_free_inodes_count(sb, desc) &&
  476. ext4_free_inodes_count(sb, desc) >= avefreei)
  477. return 0;
  478. }
  479. if (avefreei) {
  480. /*
  481. * The free-inodes counter is approximate, and for really small
  482. * filesystems the above test can fail to find any blockgroups
  483. */
  484. avefreei = 0;
  485. goto fallback;
  486. }
  487. return -1;
  488. }
  489. static int find_group_other(struct super_block *sb, struct inode *parent,
  490. ext4_group_t *group)
  491. {
  492. ext4_group_t parent_group = EXT4_I(parent)->i_block_group;
  493. ext4_group_t ngroups = EXT4_SB(sb)->s_groups_count;
  494. struct ext4_group_desc *desc;
  495. ext4_group_t i;
  496. /*
  497. * Try to place the inode in its parent directory
  498. */
  499. *group = parent_group;
  500. desc = ext4_get_group_desc(sb, *group, NULL);
  501. if (desc && ext4_free_inodes_count(sb, desc) &&
  502. ext4_free_blks_count(sb, desc))
  503. return 0;
  504. /*
  505. * We're going to place this inode in a different blockgroup from its
  506. * parent. We want to cause files in a common directory to all land in
  507. * the same blockgroup. But we want files which are in a different
  508. * directory which shares a blockgroup with our parent to land in a
  509. * different blockgroup.
  510. *
  511. * So add our directory's i_ino into the starting point for the hash.
  512. */
  513. *group = (*group + parent->i_ino) % ngroups;
  514. /*
  515. * Use a quadratic hash to find a group with a free inode and some free
  516. * blocks.
  517. */
  518. for (i = 1; i < ngroups; i <<= 1) {
  519. *group += i;
  520. if (*group >= ngroups)
  521. *group -= ngroups;
  522. desc = ext4_get_group_desc(sb, *group, NULL);
  523. if (desc && ext4_free_inodes_count(sb, desc) &&
  524. ext4_free_blks_count(sb, desc))
  525. return 0;
  526. }
  527. /*
  528. * That failed: try linear search for a free inode, even if that group
  529. * has no free blocks.
  530. */
  531. *group = parent_group;
  532. for (i = 0; i < ngroups; i++) {
  533. if (++*group >= ngroups)
  534. *group = 0;
  535. desc = ext4_get_group_desc(sb, *group, NULL);
  536. if (desc && ext4_free_inodes_count(sb, desc))
  537. return 0;
  538. }
  539. return -1;
  540. }
  541. /*
  542. * claim the inode from the inode bitmap. If the group
  543. * is uninit we need to take the groups's sb_bgl_lock
  544. * and clear the uninit flag. The inode bitmap update
  545. * and group desc uninit flag clear should be done
  546. * after holding sb_bgl_lock so that ext4_read_inode_bitmap
  547. * doesn't race with the ext4_claim_inode
  548. */
  549. static int ext4_claim_inode(struct super_block *sb,
  550. struct buffer_head *inode_bitmap_bh,
  551. unsigned long ino, ext4_group_t group, int mode)
  552. {
  553. int free = 0, retval = 0, count;
  554. struct ext4_sb_info *sbi = EXT4_SB(sb);
  555. struct ext4_group_desc *gdp = ext4_get_group_desc(sb, group, NULL);
  556. spin_lock(sb_bgl_lock(sbi, group));
  557. if (ext4_set_bit(ino, inode_bitmap_bh->b_data)) {
  558. /* not a free inode */
  559. retval = 1;
  560. goto err_ret;
  561. }
  562. ino++;
  563. if ((group == 0 && ino < EXT4_FIRST_INO(sb)) ||
  564. ino > EXT4_INODES_PER_GROUP(sb)) {
  565. spin_unlock(sb_bgl_lock(sbi, group));
  566. ext4_error(sb, __func__,
  567. "reserved inode or inode > inodes count - "
  568. "block_group = %u, inode=%lu", group,
  569. ino + group * EXT4_INODES_PER_GROUP(sb));
  570. return 1;
  571. }
  572. /* If we didn't allocate from within the initialized part of the inode
  573. * table then we need to initialize up to this inode. */
  574. if (EXT4_HAS_RO_COMPAT_FEATURE(sb, EXT4_FEATURE_RO_COMPAT_GDT_CSUM)) {
  575. if (gdp->bg_flags & cpu_to_le16(EXT4_BG_INODE_UNINIT)) {
  576. gdp->bg_flags &= cpu_to_le16(~EXT4_BG_INODE_UNINIT);
  577. /* When marking the block group with
  578. * ~EXT4_BG_INODE_UNINIT we don't want to depend
  579. * on the value of bg_itable_unused even though
  580. * mke2fs could have initialized the same for us.
  581. * Instead we calculated the value below
  582. */
  583. free = 0;
  584. } else {
  585. free = EXT4_INODES_PER_GROUP(sb) -
  586. ext4_itable_unused_count(sb, gdp);
  587. }
  588. /*
  589. * Check the relative inode number against the last used
  590. * relative inode number in this group. if it is greater
  591. * we need to update the bg_itable_unused count
  592. *
  593. */
  594. if (ino > free)
  595. ext4_itable_unused_set(sb, gdp,
  596. (EXT4_INODES_PER_GROUP(sb) - ino));
  597. }
  598. count = ext4_free_inodes_count(sb, gdp) - 1;
  599. ext4_free_inodes_set(sb, gdp, count);
  600. if (S_ISDIR(mode)) {
  601. count = ext4_used_dirs_count(sb, gdp) + 1;
  602. ext4_used_dirs_set(sb, gdp, count);
  603. }
  604. gdp->bg_checksum = ext4_group_desc_csum(sbi, group, gdp);
  605. err_ret:
  606. spin_unlock(sb_bgl_lock(sbi, group));
  607. return retval;
  608. }
  609. /*
  610. * There are two policies for allocating an inode. If the new inode is
  611. * a directory, then a forward search is made for a block group with both
  612. * free space and a low directory-to-inode ratio; if that fails, then of
  613. * the groups with above-average free space, that group with the fewest
  614. * directories already is chosen.
  615. *
  616. * For other inodes, search forward from the parent directory's block
  617. * group to find a free inode.
  618. */
  619. struct inode *ext4_new_inode(handle_t *handle, struct inode *dir, int mode)
  620. {
  621. struct super_block *sb;
  622. struct buffer_head *inode_bitmap_bh = NULL;
  623. struct buffer_head *group_desc_bh;
  624. ext4_group_t group = 0;
  625. unsigned long ino = 0;
  626. struct inode *inode;
  627. struct ext4_group_desc *gdp = NULL;
  628. struct ext4_super_block *es;
  629. struct ext4_inode_info *ei;
  630. struct ext4_sb_info *sbi;
  631. int ret2, err = 0;
  632. struct inode *ret;
  633. ext4_group_t i;
  634. int free = 0;
  635. static int once = 1;
  636. ext4_group_t flex_group;
  637. /* Cannot create files in a deleted directory */
  638. if (!dir || !dir->i_nlink)
  639. return ERR_PTR(-EPERM);
  640. sb = dir->i_sb;
  641. trace_mark(ext4_request_inode, "dev %s dir %lu mode %d", sb->s_id,
  642. dir->i_ino, mode);
  643. inode = new_inode(sb);
  644. if (!inode)
  645. return ERR_PTR(-ENOMEM);
  646. ei = EXT4_I(inode);
  647. sbi = EXT4_SB(sb);
  648. es = sbi->s_es;
  649. if (sbi->s_log_groups_per_flex) {
  650. ret2 = find_group_flex(sb, dir, &group);
  651. if (ret2 == -1) {
  652. ret2 = find_group_other(sb, dir, &group);
  653. if (ret2 == 0 && once)
  654. once = 0;
  655. printk(KERN_NOTICE "ext4: find_group_flex "
  656. "failed, fallback succeeded dir %lu\n",
  657. dir->i_ino);
  658. }
  659. goto got_group;
  660. }
  661. if (S_ISDIR(mode)) {
  662. if (test_opt(sb, OLDALLOC))
  663. ret2 = find_group_dir(sb, dir, &group);
  664. else
  665. ret2 = find_group_orlov(sb, dir, &group);
  666. } else
  667. ret2 = find_group_other(sb, dir, &group);
  668. got_group:
  669. err = -ENOSPC;
  670. if (ret2 == -1)
  671. goto out;
  672. for (i = 0; i < sbi->s_groups_count; i++) {
  673. err = -EIO;
  674. gdp = ext4_get_group_desc(sb, group, &group_desc_bh);
  675. if (!gdp)
  676. goto fail;
  677. brelse(inode_bitmap_bh);
  678. inode_bitmap_bh = ext4_read_inode_bitmap(sb, group);
  679. if (!inode_bitmap_bh)
  680. goto fail;
  681. ino = 0;
  682. repeat_in_this_group:
  683. ino = ext4_find_next_zero_bit((unsigned long *)
  684. inode_bitmap_bh->b_data,
  685. EXT4_INODES_PER_GROUP(sb), ino);
  686. if (ino < EXT4_INODES_PER_GROUP(sb)) {
  687. BUFFER_TRACE(inode_bitmap_bh, "get_write_access");
  688. err = ext4_journal_get_write_access(handle,
  689. inode_bitmap_bh);
  690. if (err)
  691. goto fail;
  692. BUFFER_TRACE(group_desc_bh, "get_write_access");
  693. err = ext4_journal_get_write_access(handle,
  694. group_desc_bh);
  695. if (err)
  696. goto fail;
  697. if (!ext4_claim_inode(sb, inode_bitmap_bh,
  698. ino, group, mode)) {
  699. /* we won it */
  700. BUFFER_TRACE(inode_bitmap_bh,
  701. "call ext4_handle_dirty_metadata");
  702. err = ext4_handle_dirty_metadata(handle,
  703. inode,
  704. inode_bitmap_bh);
  705. if (err)
  706. goto fail;
  707. /* zero bit is inode number 1*/
  708. ino++;
  709. goto got;
  710. }
  711. /* we lost it */
  712. ext4_handle_release_buffer(handle, inode_bitmap_bh);
  713. ext4_handle_release_buffer(handle, group_desc_bh);
  714. if (++ino < EXT4_INODES_PER_GROUP(sb))
  715. goto repeat_in_this_group;
  716. }
  717. /*
  718. * This case is possible in concurrent environment. It is very
  719. * rare. We cannot repeat the find_group_xxx() call because
  720. * that will simply return the same blockgroup, because the
  721. * group descriptor metadata has not yet been updated.
  722. * So we just go onto the next blockgroup.
  723. */
  724. if (++group == sbi->s_groups_count)
  725. group = 0;
  726. }
  727. err = -ENOSPC;
  728. goto out;
  729. got:
  730. /* We may have to initialize the block bitmap if it isn't already */
  731. if (EXT4_HAS_RO_COMPAT_FEATURE(sb, EXT4_FEATURE_RO_COMPAT_GDT_CSUM) &&
  732. gdp->bg_flags & cpu_to_le16(EXT4_BG_BLOCK_UNINIT)) {
  733. struct buffer_head *block_bitmap_bh;
  734. block_bitmap_bh = ext4_read_block_bitmap(sb, group);
  735. BUFFER_TRACE(block_bitmap_bh, "get block bitmap access");
  736. err = ext4_journal_get_write_access(handle, block_bitmap_bh);
  737. if (err) {
  738. brelse(block_bitmap_bh);
  739. goto fail;
  740. }
  741. free = 0;
  742. spin_lock(sb_bgl_lock(sbi, group));
  743. /* recheck and clear flag under lock if we still need to */
  744. if (gdp->bg_flags & cpu_to_le16(EXT4_BG_BLOCK_UNINIT)) {
  745. free = ext4_free_blocks_after_init(sb, group, gdp);
  746. gdp->bg_flags &= cpu_to_le16(~EXT4_BG_BLOCK_UNINIT);
  747. ext4_free_blks_set(sb, gdp, free);
  748. gdp->bg_checksum = ext4_group_desc_csum(sbi, group,
  749. gdp);
  750. }
  751. spin_unlock(sb_bgl_lock(sbi, group));
  752. /* Don't need to dirty bitmap block if we didn't change it */
  753. if (free) {
  754. BUFFER_TRACE(block_bitmap_bh, "dirty block bitmap");
  755. err = ext4_handle_dirty_metadata(handle,
  756. NULL, block_bitmap_bh);
  757. }
  758. brelse(block_bitmap_bh);
  759. if (err)
  760. goto fail;
  761. }
  762. BUFFER_TRACE(group_desc_bh, "call ext4_handle_dirty_metadata");
  763. err = ext4_handle_dirty_metadata(handle, NULL, group_desc_bh);
  764. if (err)
  765. goto fail;
  766. percpu_counter_dec(&sbi->s_freeinodes_counter);
  767. if (S_ISDIR(mode))
  768. percpu_counter_inc(&sbi->s_dirs_counter);
  769. sb->s_dirt = 1;
  770. if (sbi->s_log_groups_per_flex) {
  771. flex_group = ext4_flex_group(sbi, group);
  772. spin_lock(sb_bgl_lock(sbi, flex_group));
  773. sbi->s_flex_groups[flex_group].free_inodes--;
  774. spin_unlock(sb_bgl_lock(sbi, flex_group));
  775. }
  776. inode->i_uid = current_fsuid();
  777. if (test_opt(sb, GRPID))
  778. inode->i_gid = dir->i_gid;
  779. else if (dir->i_mode & S_ISGID) {
  780. inode->i_gid = dir->i_gid;
  781. if (S_ISDIR(mode))
  782. mode |= S_ISGID;
  783. } else
  784. inode->i_gid = current_fsgid();
  785. inode->i_mode = mode;
  786. inode->i_ino = ino + group * EXT4_INODES_PER_GROUP(sb);
  787. /* This is the optimal IO size (for stat), not the fs block size */
  788. inode->i_blocks = 0;
  789. inode->i_mtime = inode->i_atime = inode->i_ctime = ei->i_crtime =
  790. ext4_current_time(inode);
  791. memset(ei->i_data, 0, sizeof(ei->i_data));
  792. ei->i_dir_start_lookup = 0;
  793. ei->i_disksize = 0;
  794. /*
  795. * Don't inherit extent flag from directory. We set extent flag on
  796. * newly created directory and file only if -o extent mount option is
  797. * specified
  798. */
  799. ei->i_flags = EXT4_I(dir)->i_flags & ~(EXT4_INDEX_FL|EXT4_EXTENTS_FL);
  800. if (S_ISLNK(mode))
  801. ei->i_flags &= ~(EXT4_IMMUTABLE_FL|EXT4_APPEND_FL);
  802. /* dirsync only applies to directories */
  803. if (!S_ISDIR(mode))
  804. ei->i_flags &= ~EXT4_DIRSYNC_FL;
  805. ei->i_file_acl = 0;
  806. ei->i_dtime = 0;
  807. ei->i_block_group = group;
  808. ext4_set_inode_flags(inode);
  809. if (IS_DIRSYNC(inode))
  810. ext4_handle_sync(handle);
  811. if (insert_inode_locked(inode) < 0) {
  812. err = -EINVAL;
  813. goto fail_drop;
  814. }
  815. spin_lock(&sbi->s_next_gen_lock);
  816. inode->i_generation = sbi->s_next_generation++;
  817. spin_unlock(&sbi->s_next_gen_lock);
  818. ei->i_state = EXT4_STATE_NEW;
  819. ei->i_extra_isize = EXT4_SB(sb)->s_want_extra_isize;
  820. ret = inode;
  821. if (vfs_dq_alloc_inode(inode)) {
  822. err = -EDQUOT;
  823. goto fail_drop;
  824. }
  825. err = ext4_init_acl(handle, inode, dir);
  826. if (err)
  827. goto fail_free_drop;
  828. err = ext4_init_security(handle, inode, dir);
  829. if (err)
  830. goto fail_free_drop;
  831. if (EXT4_HAS_INCOMPAT_FEATURE(sb, EXT4_FEATURE_INCOMPAT_EXTENTS)) {
  832. /* set extent flag only for directory, file and normal symlink*/
  833. if (S_ISDIR(mode) || S_ISREG(mode) || S_ISLNK(mode)) {
  834. EXT4_I(inode)->i_flags |= EXT4_EXTENTS_FL;
  835. ext4_ext_tree_init(handle, inode);
  836. }
  837. }
  838. err = ext4_mark_inode_dirty(handle, inode);
  839. if (err) {
  840. ext4_std_error(sb, err);
  841. goto fail_free_drop;
  842. }
  843. ext4_debug("allocating inode %lu\n", inode->i_ino);
  844. trace_mark(ext4_allocate_inode, "dev %s ino %lu dir %lu mode %d",
  845. sb->s_id, inode->i_ino, dir->i_ino, mode);
  846. goto really_out;
  847. fail:
  848. ext4_std_error(sb, err);
  849. out:
  850. iput(inode);
  851. ret = ERR_PTR(err);
  852. really_out:
  853. brelse(inode_bitmap_bh);
  854. return ret;
  855. fail_free_drop:
  856. vfs_dq_free_inode(inode);
  857. fail_drop:
  858. vfs_dq_drop(inode);
  859. inode->i_flags |= S_NOQUOTA;
  860. inode->i_nlink = 0;
  861. unlock_new_inode(inode);
  862. iput(inode);
  863. brelse(inode_bitmap_bh);
  864. return ERR_PTR(err);
  865. }
  866. /* Verify that we are loading a valid orphan from disk */
  867. struct inode *ext4_orphan_get(struct super_block *sb, unsigned long ino)
  868. {
  869. unsigned long max_ino = le32_to_cpu(EXT4_SB(sb)->s_es->s_inodes_count);
  870. ext4_group_t block_group;
  871. int bit;
  872. struct buffer_head *bitmap_bh;
  873. struct inode *inode = NULL;
  874. long err = -EIO;
  875. /* Error cases - e2fsck has already cleaned up for us */
  876. if (ino > max_ino) {
  877. ext4_warning(sb, __func__,
  878. "bad orphan ino %lu! e2fsck was run?", ino);
  879. goto error;
  880. }
  881. block_group = (ino - 1) / EXT4_INODES_PER_GROUP(sb);
  882. bit = (ino - 1) % EXT4_INODES_PER_GROUP(sb);
  883. bitmap_bh = ext4_read_inode_bitmap(sb, block_group);
  884. if (!bitmap_bh) {
  885. ext4_warning(sb, __func__,
  886. "inode bitmap error for orphan %lu", ino);
  887. goto error;
  888. }
  889. /* Having the inode bit set should be a 100% indicator that this
  890. * is a valid orphan (no e2fsck run on fs). Orphans also include
  891. * inodes that were being truncated, so we can't check i_nlink==0.
  892. */
  893. if (!ext4_test_bit(bit, bitmap_bh->b_data))
  894. goto bad_orphan;
  895. inode = ext4_iget(sb, ino);
  896. if (IS_ERR(inode))
  897. goto iget_failed;
  898. /*
  899. * If the orphans has i_nlinks > 0 then it should be able to be
  900. * truncated, otherwise it won't be removed from the orphan list
  901. * during processing and an infinite loop will result.
  902. */
  903. if (inode->i_nlink && !ext4_can_truncate(inode))
  904. goto bad_orphan;
  905. if (NEXT_ORPHAN(inode) > max_ino)
  906. goto bad_orphan;
  907. brelse(bitmap_bh);
  908. return inode;
  909. iget_failed:
  910. err = PTR_ERR(inode);
  911. inode = NULL;
  912. bad_orphan:
  913. ext4_warning(sb, __func__,
  914. "bad orphan inode %lu! e2fsck was run?", ino);
  915. printk(KERN_NOTICE "ext4_test_bit(bit=%d, block=%llu) = %d\n",
  916. bit, (unsigned long long)bitmap_bh->b_blocknr,
  917. ext4_test_bit(bit, bitmap_bh->b_data));
  918. printk(KERN_NOTICE "inode=%p\n", inode);
  919. if (inode) {
  920. printk(KERN_NOTICE "is_bad_inode(inode)=%d\n",
  921. is_bad_inode(inode));
  922. printk(KERN_NOTICE "NEXT_ORPHAN(inode)=%u\n",
  923. NEXT_ORPHAN(inode));
  924. printk(KERN_NOTICE "max_ino=%lu\n", max_ino);
  925. printk(KERN_NOTICE "i_nlink=%u\n", inode->i_nlink);
  926. /* Avoid freeing blocks if we got a bad deleted inode */
  927. if (inode->i_nlink == 0)
  928. inode->i_blocks = 0;
  929. iput(inode);
  930. }
  931. brelse(bitmap_bh);
  932. error:
  933. return ERR_PTR(err);
  934. }
  935. unsigned long ext4_count_free_inodes(struct super_block *sb)
  936. {
  937. unsigned long desc_count;
  938. struct ext4_group_desc *gdp;
  939. ext4_group_t i;
  940. #ifdef EXT4FS_DEBUG
  941. struct ext4_super_block *es;
  942. unsigned long bitmap_count, x;
  943. struct buffer_head *bitmap_bh = NULL;
  944. es = EXT4_SB(sb)->s_es;
  945. desc_count = 0;
  946. bitmap_count = 0;
  947. gdp = NULL;
  948. for (i = 0; i < EXT4_SB(sb)->s_groups_count; i++) {
  949. gdp = ext4_get_group_desc(sb, i, NULL);
  950. if (!gdp)
  951. continue;
  952. desc_count += ext4_free_inodes_count(sb, gdp);
  953. brelse(bitmap_bh);
  954. bitmap_bh = ext4_read_inode_bitmap(sb, i);
  955. if (!bitmap_bh)
  956. continue;
  957. x = ext4_count_free(bitmap_bh, EXT4_INODES_PER_GROUP(sb) / 8);
  958. printk(KERN_DEBUG "group %lu: stored = %d, counted = %lu\n",
  959. i, ext4_free_inodes_count(sb, gdp), x);
  960. bitmap_count += x;
  961. }
  962. brelse(bitmap_bh);
  963. printk(KERN_DEBUG "ext4_count_free_inodes: "
  964. "stored = %u, computed = %lu, %lu\n",
  965. le32_to_cpu(es->s_free_inodes_count), desc_count, bitmap_count);
  966. return desc_count;
  967. #else
  968. desc_count = 0;
  969. for (i = 0; i < EXT4_SB(sb)->s_groups_count; i++) {
  970. gdp = ext4_get_group_desc(sb, i, NULL);
  971. if (!gdp)
  972. continue;
  973. desc_count += ext4_free_inodes_count(sb, gdp);
  974. cond_resched();
  975. }
  976. return desc_count;
  977. #endif
  978. }
  979. /* Called at mount-time, super-block is locked */
  980. unsigned long ext4_count_dirs(struct super_block * sb)
  981. {
  982. unsigned long count = 0;
  983. ext4_group_t i;
  984. for (i = 0; i < EXT4_SB(sb)->s_groups_count; i++) {
  985. struct ext4_group_desc *gdp = ext4_get_group_desc(sb, i, NULL);
  986. if (!gdp)
  987. continue;
  988. count += ext4_used_dirs_count(sb, gdp);
  989. }
  990. return count;
  991. }