localalloc.c 34 KB

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  1. /* -*- mode: c; c-basic-offset: 8; -*-
  2. * vim: noexpandtab sw=8 ts=8 sts=0:
  3. *
  4. * localalloc.c
  5. *
  6. * Node local data allocation
  7. *
  8. * Copyright (C) 2002, 2004 Oracle. All rights reserved.
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public
  12. * License as published by the Free Software Foundation; either
  13. * version 2 of the License, or (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. * General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public
  21. * License along with this program; if not, write to the
  22. * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
  23. * Boston, MA 021110-1307, USA.
  24. */
  25. #include <linux/fs.h>
  26. #include <linux/types.h>
  27. #include <linux/slab.h>
  28. #include <linux/highmem.h>
  29. #include <linux/bitops.h>
  30. #include <cluster/masklog.h>
  31. #include "ocfs2.h"
  32. #include "alloc.h"
  33. #include "blockcheck.h"
  34. #include "dlmglue.h"
  35. #include "inode.h"
  36. #include "journal.h"
  37. #include "localalloc.h"
  38. #include "suballoc.h"
  39. #include "super.h"
  40. #include "sysfile.h"
  41. #include "ocfs2_trace.h"
  42. #include "buffer_head_io.h"
  43. #define OCFS2_LOCAL_ALLOC(dinode) (&((dinode)->id2.i_lab))
  44. static u32 ocfs2_local_alloc_count_bits(struct ocfs2_dinode *alloc);
  45. static int ocfs2_local_alloc_find_clear_bits(struct ocfs2_super *osb,
  46. struct ocfs2_dinode *alloc,
  47. u32 *numbits,
  48. struct ocfs2_alloc_reservation *resv);
  49. static void ocfs2_clear_local_alloc(struct ocfs2_dinode *alloc);
  50. static int ocfs2_sync_local_to_main(struct ocfs2_super *osb,
  51. handle_t *handle,
  52. struct ocfs2_dinode *alloc,
  53. struct inode *main_bm_inode,
  54. struct buffer_head *main_bm_bh);
  55. static int ocfs2_local_alloc_reserve_for_window(struct ocfs2_super *osb,
  56. struct ocfs2_alloc_context **ac,
  57. struct inode **bitmap_inode,
  58. struct buffer_head **bitmap_bh);
  59. static int ocfs2_local_alloc_new_window(struct ocfs2_super *osb,
  60. handle_t *handle,
  61. struct ocfs2_alloc_context *ac);
  62. static int ocfs2_local_alloc_slide_window(struct ocfs2_super *osb,
  63. struct inode *local_alloc_inode);
  64. /*
  65. * ocfs2_la_default_mb() - determine a default size, in megabytes of
  66. * the local alloc.
  67. *
  68. * Generally, we'd like to pick as large a local alloc as
  69. * possible. Performance on large workloads tends to scale
  70. * proportionally to la size. In addition to that, the reservations
  71. * code functions more efficiently as it can reserve more windows for
  72. * write.
  73. *
  74. * Some things work against us when trying to choose a large local alloc:
  75. *
  76. * - We need to ensure our sizing is picked to leave enough space in
  77. * group descriptors for other allocations (such as block groups,
  78. * etc). Picking default sizes which are a multiple of 4 could help
  79. * - block groups are allocated in 2mb and 4mb chunks.
  80. *
  81. * - Likewise, we don't want to starve other nodes of bits on small
  82. * file systems. This can easily be taken care of by limiting our
  83. * default to a reasonable size (256M) on larger cluster sizes.
  84. *
  85. * - Some file systems can't support very large sizes - 4k and 8k in
  86. * particular are limited to less than 128 and 256 megabytes respectively.
  87. *
  88. * The following reference table shows group descriptor and local
  89. * alloc maximums at various cluster sizes (4k blocksize)
  90. *
  91. * csize: 4K group: 126M la: 121M
  92. * csize: 8K group: 252M la: 243M
  93. * csize: 16K group: 504M la: 486M
  94. * csize: 32K group: 1008M la: 972M
  95. * csize: 64K group: 2016M la: 1944M
  96. * csize: 128K group: 4032M la: 3888M
  97. * csize: 256K group: 8064M la: 7776M
  98. * csize: 512K group: 16128M la: 15552M
  99. * csize: 1024K group: 32256M la: 31104M
  100. */
  101. #define OCFS2_LA_MAX_DEFAULT_MB 256
  102. #define OCFS2_LA_OLD_DEFAULT 8
  103. unsigned int ocfs2_la_default_mb(struct ocfs2_super *osb)
  104. {
  105. unsigned int la_mb;
  106. unsigned int gd_mb;
  107. unsigned int la_max_mb;
  108. unsigned int megs_per_slot;
  109. struct super_block *sb = osb->sb;
  110. gd_mb = ocfs2_clusters_to_megabytes(osb->sb,
  111. 8 * ocfs2_group_bitmap_size(sb, 0, osb->s_feature_incompat));
  112. /*
  113. * This takes care of files systems with very small group
  114. * descriptors - 512 byte blocksize at cluster sizes lower
  115. * than 16K and also 1k blocksize with 4k cluster size.
  116. */
  117. if ((sb->s_blocksize == 512 && osb->s_clustersize <= 8192)
  118. || (sb->s_blocksize == 1024 && osb->s_clustersize == 4096))
  119. return OCFS2_LA_OLD_DEFAULT;
  120. /*
  121. * Leave enough room for some block groups and make the final
  122. * value we work from a multiple of 4.
  123. */
  124. gd_mb -= 16;
  125. gd_mb &= 0xFFFFFFFB;
  126. la_mb = gd_mb;
  127. /*
  128. * Keep window sizes down to a reasonable default
  129. */
  130. if (la_mb > OCFS2_LA_MAX_DEFAULT_MB) {
  131. /*
  132. * Some clustersize / blocksize combinations will have
  133. * given us a larger than OCFS2_LA_MAX_DEFAULT_MB
  134. * default size, but get poor distribution when
  135. * limited to exactly 256 megabytes.
  136. *
  137. * As an example, 16K clustersize at 4K blocksize
  138. * gives us a cluster group size of 504M. Paring the
  139. * local alloc size down to 256 however, would give us
  140. * only one window and around 200MB left in the
  141. * cluster group. Instead, find the first size below
  142. * 256 which would give us an even distribution.
  143. *
  144. * Larger cluster group sizes actually work out pretty
  145. * well when pared to 256, so we don't have to do this
  146. * for any group that fits more than two
  147. * OCFS2_LA_MAX_DEFAULT_MB windows.
  148. */
  149. if (gd_mb > (2 * OCFS2_LA_MAX_DEFAULT_MB))
  150. la_mb = 256;
  151. else {
  152. unsigned int gd_mult = gd_mb;
  153. while (gd_mult > 256)
  154. gd_mult = gd_mult >> 1;
  155. la_mb = gd_mult;
  156. }
  157. }
  158. megs_per_slot = osb->osb_clusters_at_boot / osb->max_slots;
  159. megs_per_slot = ocfs2_clusters_to_megabytes(osb->sb, megs_per_slot);
  160. /* Too many nodes, too few disk clusters. */
  161. if (megs_per_slot < la_mb)
  162. la_mb = megs_per_slot;
  163. /* We can't store more bits than we can in a block. */
  164. la_max_mb = ocfs2_clusters_to_megabytes(osb->sb,
  165. ocfs2_local_alloc_size(sb) * 8);
  166. if (la_mb > la_max_mb)
  167. la_mb = la_max_mb;
  168. return la_mb;
  169. }
  170. void ocfs2_la_set_sizes(struct ocfs2_super *osb, int requested_mb)
  171. {
  172. struct super_block *sb = osb->sb;
  173. unsigned int la_default_mb = ocfs2_la_default_mb(osb);
  174. unsigned int la_max_mb;
  175. la_max_mb = ocfs2_clusters_to_megabytes(sb,
  176. ocfs2_local_alloc_size(sb) * 8);
  177. trace_ocfs2_la_set_sizes(requested_mb, la_max_mb, la_default_mb);
  178. if (requested_mb == -1) {
  179. /* No user request - use defaults */
  180. osb->local_alloc_default_bits =
  181. ocfs2_megabytes_to_clusters(sb, la_default_mb);
  182. } else if (requested_mb > la_max_mb) {
  183. /* Request is too big, we give the maximum available */
  184. osb->local_alloc_default_bits =
  185. ocfs2_megabytes_to_clusters(sb, la_max_mb);
  186. } else {
  187. osb->local_alloc_default_bits =
  188. ocfs2_megabytes_to_clusters(sb, requested_mb);
  189. }
  190. osb->local_alloc_bits = osb->local_alloc_default_bits;
  191. }
  192. static inline int ocfs2_la_state_enabled(struct ocfs2_super *osb)
  193. {
  194. return (osb->local_alloc_state == OCFS2_LA_THROTTLED ||
  195. osb->local_alloc_state == OCFS2_LA_ENABLED);
  196. }
  197. void ocfs2_local_alloc_seen_free_bits(struct ocfs2_super *osb,
  198. unsigned int num_clusters)
  199. {
  200. spin_lock(&osb->osb_lock);
  201. if (osb->local_alloc_state == OCFS2_LA_DISABLED ||
  202. osb->local_alloc_state == OCFS2_LA_THROTTLED)
  203. if (num_clusters >= osb->local_alloc_default_bits) {
  204. cancel_delayed_work(&osb->la_enable_wq);
  205. osb->local_alloc_state = OCFS2_LA_ENABLED;
  206. }
  207. spin_unlock(&osb->osb_lock);
  208. }
  209. void ocfs2_la_enable_worker(struct work_struct *work)
  210. {
  211. struct ocfs2_super *osb =
  212. container_of(work, struct ocfs2_super,
  213. la_enable_wq.work);
  214. spin_lock(&osb->osb_lock);
  215. osb->local_alloc_state = OCFS2_LA_ENABLED;
  216. spin_unlock(&osb->osb_lock);
  217. }
  218. /*
  219. * Tell us whether a given allocation should use the local alloc
  220. * file. Otherwise, it has to go to the main bitmap.
  221. *
  222. * This function does semi-dirty reads of local alloc size and state!
  223. * This is ok however, as the values are re-checked once under mutex.
  224. */
  225. int ocfs2_alloc_should_use_local(struct ocfs2_super *osb, u64 bits)
  226. {
  227. int ret = 0;
  228. int la_bits;
  229. spin_lock(&osb->osb_lock);
  230. la_bits = osb->local_alloc_bits;
  231. if (!ocfs2_la_state_enabled(osb))
  232. goto bail;
  233. /* la_bits should be at least twice the size (in clusters) of
  234. * a new block group. We want to be sure block group
  235. * allocations go through the local alloc, so allow an
  236. * allocation to take up to half the bitmap. */
  237. if (bits > (la_bits / 2))
  238. goto bail;
  239. ret = 1;
  240. bail:
  241. trace_ocfs2_alloc_should_use_local(
  242. (unsigned long long)bits, osb->local_alloc_state, la_bits, ret);
  243. spin_unlock(&osb->osb_lock);
  244. return ret;
  245. }
  246. int ocfs2_load_local_alloc(struct ocfs2_super *osb)
  247. {
  248. int status = 0;
  249. struct ocfs2_dinode *alloc = NULL;
  250. struct buffer_head *alloc_bh = NULL;
  251. u32 num_used;
  252. struct inode *inode = NULL;
  253. struct ocfs2_local_alloc *la;
  254. if (osb->local_alloc_bits == 0)
  255. goto bail;
  256. if (osb->local_alloc_bits >= osb->bitmap_cpg) {
  257. mlog(ML_NOTICE, "Requested local alloc window %d is larger "
  258. "than max possible %u. Using defaults.\n",
  259. osb->local_alloc_bits, (osb->bitmap_cpg - 1));
  260. osb->local_alloc_bits =
  261. ocfs2_megabytes_to_clusters(osb->sb,
  262. ocfs2_la_default_mb(osb));
  263. }
  264. /* read the alloc off disk */
  265. inode = ocfs2_get_system_file_inode(osb, LOCAL_ALLOC_SYSTEM_INODE,
  266. osb->slot_num);
  267. if (!inode) {
  268. status = -EINVAL;
  269. mlog_errno(status);
  270. goto bail;
  271. }
  272. status = ocfs2_read_inode_block_full(inode, &alloc_bh,
  273. OCFS2_BH_IGNORE_CACHE);
  274. if (status < 0) {
  275. mlog_errno(status);
  276. goto bail;
  277. }
  278. alloc = (struct ocfs2_dinode *) alloc_bh->b_data;
  279. la = OCFS2_LOCAL_ALLOC(alloc);
  280. if (!(le32_to_cpu(alloc->i_flags) &
  281. (OCFS2_LOCAL_ALLOC_FL|OCFS2_BITMAP_FL))) {
  282. mlog(ML_ERROR, "Invalid local alloc inode, %llu\n",
  283. (unsigned long long)OCFS2_I(inode)->ip_blkno);
  284. status = -EINVAL;
  285. goto bail;
  286. }
  287. if ((la->la_size == 0) ||
  288. (le16_to_cpu(la->la_size) > ocfs2_local_alloc_size(inode->i_sb))) {
  289. mlog(ML_ERROR, "Local alloc size is invalid (la_size = %u)\n",
  290. le16_to_cpu(la->la_size));
  291. status = -EINVAL;
  292. goto bail;
  293. }
  294. /* do a little verification. */
  295. num_used = ocfs2_local_alloc_count_bits(alloc);
  296. /* hopefully the local alloc has always been recovered before
  297. * we load it. */
  298. if (num_used
  299. || alloc->id1.bitmap1.i_used
  300. || alloc->id1.bitmap1.i_total
  301. || la->la_bm_off)
  302. mlog(ML_ERROR, "Local alloc hasn't been recovered!\n"
  303. "found = %u, set = %u, taken = %u, off = %u\n",
  304. num_used, le32_to_cpu(alloc->id1.bitmap1.i_used),
  305. le32_to_cpu(alloc->id1.bitmap1.i_total),
  306. OCFS2_LOCAL_ALLOC(alloc)->la_bm_off);
  307. osb->local_alloc_bh = alloc_bh;
  308. osb->local_alloc_state = OCFS2_LA_ENABLED;
  309. bail:
  310. if (status < 0)
  311. brelse(alloc_bh);
  312. if (inode)
  313. iput(inode);
  314. trace_ocfs2_load_local_alloc(osb->local_alloc_bits);
  315. if (status)
  316. mlog_errno(status);
  317. return status;
  318. }
  319. /*
  320. * return any unused bits to the bitmap and write out a clean
  321. * local_alloc.
  322. *
  323. * local_alloc_bh is optional. If not passed, we will simply use the
  324. * one off osb. If you do pass it however, be warned that it *will* be
  325. * returned brelse'd and NULL'd out.*/
  326. void ocfs2_shutdown_local_alloc(struct ocfs2_super *osb)
  327. {
  328. int status;
  329. handle_t *handle;
  330. struct inode *local_alloc_inode = NULL;
  331. struct buffer_head *bh = NULL;
  332. struct buffer_head *main_bm_bh = NULL;
  333. struct inode *main_bm_inode = NULL;
  334. struct ocfs2_dinode *alloc_copy = NULL;
  335. struct ocfs2_dinode *alloc = NULL;
  336. cancel_delayed_work(&osb->la_enable_wq);
  337. flush_workqueue(ocfs2_wq);
  338. if (osb->local_alloc_state == OCFS2_LA_UNUSED)
  339. goto out;
  340. local_alloc_inode =
  341. ocfs2_get_system_file_inode(osb,
  342. LOCAL_ALLOC_SYSTEM_INODE,
  343. osb->slot_num);
  344. if (!local_alloc_inode) {
  345. status = -ENOENT;
  346. mlog_errno(status);
  347. goto out;
  348. }
  349. osb->local_alloc_state = OCFS2_LA_DISABLED;
  350. ocfs2_resmap_uninit(&osb->osb_la_resmap);
  351. main_bm_inode = ocfs2_get_system_file_inode(osb,
  352. GLOBAL_BITMAP_SYSTEM_INODE,
  353. OCFS2_INVALID_SLOT);
  354. if (!main_bm_inode) {
  355. status = -EINVAL;
  356. mlog_errno(status);
  357. goto out;
  358. }
  359. mutex_lock(&main_bm_inode->i_mutex);
  360. status = ocfs2_inode_lock(main_bm_inode, &main_bm_bh, 1);
  361. if (status < 0) {
  362. mlog_errno(status);
  363. goto out_mutex;
  364. }
  365. /* WINDOW_MOVE_CREDITS is a bit heavy... */
  366. handle = ocfs2_start_trans(osb, OCFS2_WINDOW_MOVE_CREDITS);
  367. if (IS_ERR(handle)) {
  368. mlog_errno(PTR_ERR(handle));
  369. handle = NULL;
  370. goto out_unlock;
  371. }
  372. bh = osb->local_alloc_bh;
  373. alloc = (struct ocfs2_dinode *) bh->b_data;
  374. alloc_copy = kmalloc(bh->b_size, GFP_NOFS);
  375. if (!alloc_copy) {
  376. status = -ENOMEM;
  377. goto out_commit;
  378. }
  379. memcpy(alloc_copy, alloc, bh->b_size);
  380. status = ocfs2_journal_access_di(handle, INODE_CACHE(local_alloc_inode),
  381. bh, OCFS2_JOURNAL_ACCESS_WRITE);
  382. if (status < 0) {
  383. mlog_errno(status);
  384. goto out_commit;
  385. }
  386. ocfs2_clear_local_alloc(alloc);
  387. ocfs2_journal_dirty(handle, bh);
  388. brelse(bh);
  389. osb->local_alloc_bh = NULL;
  390. osb->local_alloc_state = OCFS2_LA_UNUSED;
  391. status = ocfs2_sync_local_to_main(osb, handle, alloc_copy,
  392. main_bm_inode, main_bm_bh);
  393. if (status < 0)
  394. mlog_errno(status);
  395. out_commit:
  396. ocfs2_commit_trans(osb, handle);
  397. out_unlock:
  398. brelse(main_bm_bh);
  399. ocfs2_inode_unlock(main_bm_inode, 1);
  400. out_mutex:
  401. mutex_unlock(&main_bm_inode->i_mutex);
  402. iput(main_bm_inode);
  403. out:
  404. if (local_alloc_inode)
  405. iput(local_alloc_inode);
  406. kfree(alloc_copy);
  407. }
  408. /*
  409. * We want to free the bitmap bits outside of any recovery context as
  410. * we'll need a cluster lock to do so, but we must clear the local
  411. * alloc before giving up the recovered nodes journal. To solve this,
  412. * we kmalloc a copy of the local alloc before it's change for the
  413. * caller to process with ocfs2_complete_local_alloc_recovery
  414. */
  415. int ocfs2_begin_local_alloc_recovery(struct ocfs2_super *osb,
  416. int slot_num,
  417. struct ocfs2_dinode **alloc_copy)
  418. {
  419. int status = 0;
  420. struct buffer_head *alloc_bh = NULL;
  421. struct inode *inode = NULL;
  422. struct ocfs2_dinode *alloc;
  423. trace_ocfs2_begin_local_alloc_recovery(slot_num);
  424. *alloc_copy = NULL;
  425. inode = ocfs2_get_system_file_inode(osb,
  426. LOCAL_ALLOC_SYSTEM_INODE,
  427. slot_num);
  428. if (!inode) {
  429. status = -EINVAL;
  430. mlog_errno(status);
  431. goto bail;
  432. }
  433. mutex_lock(&inode->i_mutex);
  434. status = ocfs2_read_inode_block_full(inode, &alloc_bh,
  435. OCFS2_BH_IGNORE_CACHE);
  436. if (status < 0) {
  437. mlog_errno(status);
  438. goto bail;
  439. }
  440. *alloc_copy = kmalloc(alloc_bh->b_size, GFP_KERNEL);
  441. if (!(*alloc_copy)) {
  442. status = -ENOMEM;
  443. goto bail;
  444. }
  445. memcpy((*alloc_copy), alloc_bh->b_data, alloc_bh->b_size);
  446. alloc = (struct ocfs2_dinode *) alloc_bh->b_data;
  447. ocfs2_clear_local_alloc(alloc);
  448. ocfs2_compute_meta_ecc(osb->sb, alloc_bh->b_data, &alloc->i_check);
  449. status = ocfs2_write_block(osb, alloc_bh, INODE_CACHE(inode));
  450. if (status < 0)
  451. mlog_errno(status);
  452. bail:
  453. if (status < 0) {
  454. kfree(*alloc_copy);
  455. *alloc_copy = NULL;
  456. }
  457. brelse(alloc_bh);
  458. if (inode) {
  459. mutex_unlock(&inode->i_mutex);
  460. iput(inode);
  461. }
  462. if (status)
  463. mlog_errno(status);
  464. return status;
  465. }
  466. /*
  467. * Step 2: By now, we've completed the journal recovery, we've stamped
  468. * a clean local alloc on disk and dropped the node out of the
  469. * recovery map. Dlm locks will no longer stall, so lets clear out the
  470. * main bitmap.
  471. */
  472. int ocfs2_complete_local_alloc_recovery(struct ocfs2_super *osb,
  473. struct ocfs2_dinode *alloc)
  474. {
  475. int status;
  476. handle_t *handle;
  477. struct buffer_head *main_bm_bh = NULL;
  478. struct inode *main_bm_inode;
  479. main_bm_inode = ocfs2_get_system_file_inode(osb,
  480. GLOBAL_BITMAP_SYSTEM_INODE,
  481. OCFS2_INVALID_SLOT);
  482. if (!main_bm_inode) {
  483. status = -EINVAL;
  484. mlog_errno(status);
  485. goto out;
  486. }
  487. mutex_lock(&main_bm_inode->i_mutex);
  488. status = ocfs2_inode_lock(main_bm_inode, &main_bm_bh, 1);
  489. if (status < 0) {
  490. mlog_errno(status);
  491. goto out_mutex;
  492. }
  493. handle = ocfs2_start_trans(osb, OCFS2_WINDOW_MOVE_CREDITS);
  494. if (IS_ERR(handle)) {
  495. status = PTR_ERR(handle);
  496. handle = NULL;
  497. mlog_errno(status);
  498. goto out_unlock;
  499. }
  500. /* we want the bitmap change to be recorded on disk asap */
  501. handle->h_sync = 1;
  502. status = ocfs2_sync_local_to_main(osb, handle, alloc,
  503. main_bm_inode, main_bm_bh);
  504. if (status < 0)
  505. mlog_errno(status);
  506. ocfs2_commit_trans(osb, handle);
  507. out_unlock:
  508. ocfs2_inode_unlock(main_bm_inode, 1);
  509. out_mutex:
  510. mutex_unlock(&main_bm_inode->i_mutex);
  511. brelse(main_bm_bh);
  512. iput(main_bm_inode);
  513. out:
  514. if (!status)
  515. ocfs2_init_steal_slots(osb);
  516. if (status)
  517. mlog_errno(status);
  518. return status;
  519. }
  520. /*
  521. * make sure we've got at least bits_wanted contiguous bits in the
  522. * local alloc. You lose them when you drop i_mutex.
  523. *
  524. * We will add ourselves to the transaction passed in, but may start
  525. * our own in order to shift windows.
  526. */
  527. int ocfs2_reserve_local_alloc_bits(struct ocfs2_super *osb,
  528. u32 bits_wanted,
  529. struct ocfs2_alloc_context *ac)
  530. {
  531. int status;
  532. struct ocfs2_dinode *alloc;
  533. struct inode *local_alloc_inode;
  534. unsigned int free_bits;
  535. BUG_ON(!ac);
  536. local_alloc_inode =
  537. ocfs2_get_system_file_inode(osb,
  538. LOCAL_ALLOC_SYSTEM_INODE,
  539. osb->slot_num);
  540. if (!local_alloc_inode) {
  541. status = -ENOENT;
  542. mlog_errno(status);
  543. goto bail;
  544. }
  545. mutex_lock(&local_alloc_inode->i_mutex);
  546. /*
  547. * We must double check state and allocator bits because
  548. * another process may have changed them while holding i_mutex.
  549. */
  550. spin_lock(&osb->osb_lock);
  551. if (!ocfs2_la_state_enabled(osb) ||
  552. (bits_wanted > osb->local_alloc_bits)) {
  553. spin_unlock(&osb->osb_lock);
  554. status = -ENOSPC;
  555. goto bail;
  556. }
  557. spin_unlock(&osb->osb_lock);
  558. alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
  559. #ifdef CONFIG_OCFS2_DEBUG_FS
  560. if (le32_to_cpu(alloc->id1.bitmap1.i_used) !=
  561. ocfs2_local_alloc_count_bits(alloc)) {
  562. ocfs2_error(osb->sb, "local alloc inode %llu says it has %u used bits, but a count shows %u\n",
  563. (unsigned long long)le64_to_cpu(alloc->i_blkno),
  564. le32_to_cpu(alloc->id1.bitmap1.i_used),
  565. ocfs2_local_alloc_count_bits(alloc));
  566. status = -EIO;
  567. goto bail;
  568. }
  569. #endif
  570. free_bits = le32_to_cpu(alloc->id1.bitmap1.i_total) -
  571. le32_to_cpu(alloc->id1.bitmap1.i_used);
  572. if (bits_wanted > free_bits) {
  573. /* uhoh, window change time. */
  574. status =
  575. ocfs2_local_alloc_slide_window(osb, local_alloc_inode);
  576. if (status < 0) {
  577. if (status != -ENOSPC)
  578. mlog_errno(status);
  579. goto bail;
  580. }
  581. /*
  582. * Under certain conditions, the window slide code
  583. * might have reduced the number of bits available or
  584. * disabled the the local alloc entirely. Re-check
  585. * here and return -ENOSPC if necessary.
  586. */
  587. status = -ENOSPC;
  588. if (!ocfs2_la_state_enabled(osb))
  589. goto bail;
  590. free_bits = le32_to_cpu(alloc->id1.bitmap1.i_total) -
  591. le32_to_cpu(alloc->id1.bitmap1.i_used);
  592. if (bits_wanted > free_bits)
  593. goto bail;
  594. }
  595. ac->ac_inode = local_alloc_inode;
  596. /* We should never use localalloc from another slot */
  597. ac->ac_alloc_slot = osb->slot_num;
  598. ac->ac_which = OCFS2_AC_USE_LOCAL;
  599. get_bh(osb->local_alloc_bh);
  600. ac->ac_bh = osb->local_alloc_bh;
  601. status = 0;
  602. bail:
  603. if (status < 0 && local_alloc_inode) {
  604. mutex_unlock(&local_alloc_inode->i_mutex);
  605. iput(local_alloc_inode);
  606. }
  607. trace_ocfs2_reserve_local_alloc_bits(
  608. (unsigned long long)ac->ac_max_block,
  609. bits_wanted, osb->slot_num, status);
  610. if (status)
  611. mlog_errno(status);
  612. return status;
  613. }
  614. int ocfs2_claim_local_alloc_bits(struct ocfs2_super *osb,
  615. handle_t *handle,
  616. struct ocfs2_alloc_context *ac,
  617. u32 bits_wanted,
  618. u32 *bit_off,
  619. u32 *num_bits)
  620. {
  621. int status, start;
  622. struct inode *local_alloc_inode;
  623. void *bitmap;
  624. struct ocfs2_dinode *alloc;
  625. struct ocfs2_local_alloc *la;
  626. BUG_ON(ac->ac_which != OCFS2_AC_USE_LOCAL);
  627. local_alloc_inode = ac->ac_inode;
  628. alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
  629. la = OCFS2_LOCAL_ALLOC(alloc);
  630. start = ocfs2_local_alloc_find_clear_bits(osb, alloc, &bits_wanted,
  631. ac->ac_resv);
  632. if (start == -1) {
  633. /* TODO: Shouldn't we just BUG here? */
  634. status = -ENOSPC;
  635. mlog_errno(status);
  636. goto bail;
  637. }
  638. bitmap = la->la_bitmap;
  639. *bit_off = le32_to_cpu(la->la_bm_off) + start;
  640. *num_bits = bits_wanted;
  641. status = ocfs2_journal_access_di(handle,
  642. INODE_CACHE(local_alloc_inode),
  643. osb->local_alloc_bh,
  644. OCFS2_JOURNAL_ACCESS_WRITE);
  645. if (status < 0) {
  646. mlog_errno(status);
  647. goto bail;
  648. }
  649. ocfs2_resmap_claimed_bits(&osb->osb_la_resmap, ac->ac_resv, start,
  650. bits_wanted);
  651. while(bits_wanted--)
  652. ocfs2_set_bit(start++, bitmap);
  653. le32_add_cpu(&alloc->id1.bitmap1.i_used, *num_bits);
  654. ocfs2_journal_dirty(handle, osb->local_alloc_bh);
  655. bail:
  656. if (status)
  657. mlog_errno(status);
  658. return status;
  659. }
  660. int ocfs2_free_local_alloc_bits(struct ocfs2_super *osb,
  661. handle_t *handle,
  662. struct ocfs2_alloc_context *ac,
  663. u32 bit_off,
  664. u32 num_bits)
  665. {
  666. int status, start;
  667. u32 clear_bits;
  668. struct inode *local_alloc_inode;
  669. void *bitmap;
  670. struct ocfs2_dinode *alloc;
  671. struct ocfs2_local_alloc *la;
  672. BUG_ON(ac->ac_which != OCFS2_AC_USE_LOCAL);
  673. local_alloc_inode = ac->ac_inode;
  674. alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
  675. la = OCFS2_LOCAL_ALLOC(alloc);
  676. bitmap = la->la_bitmap;
  677. start = bit_off - le32_to_cpu(la->la_bm_off);
  678. clear_bits = num_bits;
  679. status = ocfs2_journal_access_di(handle,
  680. INODE_CACHE(local_alloc_inode),
  681. osb->local_alloc_bh,
  682. OCFS2_JOURNAL_ACCESS_WRITE);
  683. if (status < 0) {
  684. mlog_errno(status);
  685. goto bail;
  686. }
  687. while (clear_bits--)
  688. ocfs2_clear_bit(start++, bitmap);
  689. le32_add_cpu(&alloc->id1.bitmap1.i_used, -num_bits);
  690. ocfs2_journal_dirty(handle, osb->local_alloc_bh);
  691. bail:
  692. return status;
  693. }
  694. static u32 ocfs2_local_alloc_count_bits(struct ocfs2_dinode *alloc)
  695. {
  696. u32 count;
  697. struct ocfs2_local_alloc *la = OCFS2_LOCAL_ALLOC(alloc);
  698. count = memweight(la->la_bitmap, le16_to_cpu(la->la_size));
  699. trace_ocfs2_local_alloc_count_bits(count);
  700. return count;
  701. }
  702. static int ocfs2_local_alloc_find_clear_bits(struct ocfs2_super *osb,
  703. struct ocfs2_dinode *alloc,
  704. u32 *numbits,
  705. struct ocfs2_alloc_reservation *resv)
  706. {
  707. int numfound = 0, bitoff, left, startoff, lastzero;
  708. int local_resv = 0;
  709. struct ocfs2_alloc_reservation r;
  710. void *bitmap = NULL;
  711. struct ocfs2_reservation_map *resmap = &osb->osb_la_resmap;
  712. if (!alloc->id1.bitmap1.i_total) {
  713. bitoff = -1;
  714. goto bail;
  715. }
  716. if (!resv) {
  717. local_resv = 1;
  718. ocfs2_resv_init_once(&r);
  719. ocfs2_resv_set_type(&r, OCFS2_RESV_FLAG_TMP);
  720. resv = &r;
  721. }
  722. numfound = *numbits;
  723. if (ocfs2_resmap_resv_bits(resmap, resv, &bitoff, &numfound) == 0) {
  724. if (numfound < *numbits)
  725. *numbits = numfound;
  726. goto bail;
  727. }
  728. /*
  729. * Code error. While reservations are enabled, local
  730. * allocation should _always_ go through them.
  731. */
  732. BUG_ON(osb->osb_resv_level != 0);
  733. /*
  734. * Reservations are disabled. Handle this the old way.
  735. */
  736. bitmap = OCFS2_LOCAL_ALLOC(alloc)->la_bitmap;
  737. numfound = bitoff = startoff = 0;
  738. lastzero = -1;
  739. left = le32_to_cpu(alloc->id1.bitmap1.i_total);
  740. while ((bitoff = ocfs2_find_next_zero_bit(bitmap, left, startoff)) != -1) {
  741. if (bitoff == left) {
  742. /* mlog(0, "bitoff (%d) == left", bitoff); */
  743. break;
  744. }
  745. /* mlog(0, "Found a zero: bitoff = %d, startoff = %d, "
  746. "numfound = %d\n", bitoff, startoff, numfound);*/
  747. /* Ok, we found a zero bit... is it contig. or do we
  748. * start over?*/
  749. if (bitoff == startoff) {
  750. /* we found a zero */
  751. numfound++;
  752. startoff++;
  753. } else {
  754. /* got a zero after some ones */
  755. numfound = 1;
  756. startoff = bitoff+1;
  757. }
  758. /* we got everything we needed */
  759. if (numfound == *numbits) {
  760. /* mlog(0, "Found it all!\n"); */
  761. break;
  762. }
  763. }
  764. trace_ocfs2_local_alloc_find_clear_bits_search_bitmap(bitoff, numfound);
  765. if (numfound == *numbits)
  766. bitoff = startoff - numfound;
  767. else
  768. bitoff = -1;
  769. bail:
  770. if (local_resv)
  771. ocfs2_resv_discard(resmap, resv);
  772. trace_ocfs2_local_alloc_find_clear_bits(*numbits,
  773. le32_to_cpu(alloc->id1.bitmap1.i_total),
  774. bitoff, numfound);
  775. return bitoff;
  776. }
  777. static void ocfs2_clear_local_alloc(struct ocfs2_dinode *alloc)
  778. {
  779. struct ocfs2_local_alloc *la = OCFS2_LOCAL_ALLOC(alloc);
  780. int i;
  781. alloc->id1.bitmap1.i_total = 0;
  782. alloc->id1.bitmap1.i_used = 0;
  783. la->la_bm_off = 0;
  784. for(i = 0; i < le16_to_cpu(la->la_size); i++)
  785. la->la_bitmap[i] = 0;
  786. }
  787. #if 0
  788. /* turn this on and uncomment below to aid debugging window shifts. */
  789. static void ocfs2_verify_zero_bits(unsigned long *bitmap,
  790. unsigned int start,
  791. unsigned int count)
  792. {
  793. unsigned int tmp = count;
  794. while(tmp--) {
  795. if (ocfs2_test_bit(start + tmp, bitmap)) {
  796. printk("ocfs2_verify_zero_bits: start = %u, count = "
  797. "%u\n", start, count);
  798. printk("ocfs2_verify_zero_bits: bit %u is set!",
  799. start + tmp);
  800. BUG();
  801. }
  802. }
  803. }
  804. #endif
  805. /*
  806. * sync the local alloc to main bitmap.
  807. *
  808. * assumes you've already locked the main bitmap -- the bitmap inode
  809. * passed is used for caching.
  810. */
  811. static int ocfs2_sync_local_to_main(struct ocfs2_super *osb,
  812. handle_t *handle,
  813. struct ocfs2_dinode *alloc,
  814. struct inode *main_bm_inode,
  815. struct buffer_head *main_bm_bh)
  816. {
  817. int status = 0;
  818. int bit_off, left, count, start;
  819. u64 la_start_blk;
  820. u64 blkno;
  821. void *bitmap;
  822. struct ocfs2_local_alloc *la = OCFS2_LOCAL_ALLOC(alloc);
  823. trace_ocfs2_sync_local_to_main(
  824. le32_to_cpu(alloc->id1.bitmap1.i_total),
  825. le32_to_cpu(alloc->id1.bitmap1.i_used));
  826. if (!alloc->id1.bitmap1.i_total) {
  827. goto bail;
  828. }
  829. if (le32_to_cpu(alloc->id1.bitmap1.i_used) ==
  830. le32_to_cpu(alloc->id1.bitmap1.i_total)) {
  831. goto bail;
  832. }
  833. la_start_blk = ocfs2_clusters_to_blocks(osb->sb,
  834. le32_to_cpu(la->la_bm_off));
  835. bitmap = la->la_bitmap;
  836. start = count = bit_off = 0;
  837. left = le32_to_cpu(alloc->id1.bitmap1.i_total);
  838. while ((bit_off = ocfs2_find_next_zero_bit(bitmap, left, start))
  839. != -1) {
  840. if ((bit_off < left) && (bit_off == start)) {
  841. count++;
  842. start++;
  843. continue;
  844. }
  845. if (count) {
  846. blkno = la_start_blk +
  847. ocfs2_clusters_to_blocks(osb->sb,
  848. start - count);
  849. trace_ocfs2_sync_local_to_main_free(
  850. count, start - count,
  851. (unsigned long long)la_start_blk,
  852. (unsigned long long)blkno);
  853. status = ocfs2_release_clusters(handle,
  854. main_bm_inode,
  855. main_bm_bh, blkno,
  856. count);
  857. if (status < 0) {
  858. mlog_errno(status);
  859. goto bail;
  860. }
  861. }
  862. if (bit_off >= left)
  863. break;
  864. count = 1;
  865. start = bit_off + 1;
  866. }
  867. bail:
  868. if (status)
  869. mlog_errno(status);
  870. return status;
  871. }
  872. enum ocfs2_la_event {
  873. OCFS2_LA_EVENT_SLIDE, /* Normal window slide. */
  874. OCFS2_LA_EVENT_FRAGMENTED, /* The global bitmap has
  875. * enough bits theoretically
  876. * free, but a contiguous
  877. * allocation could not be
  878. * found. */
  879. OCFS2_LA_EVENT_ENOSPC, /* Global bitmap doesn't have
  880. * enough bits free to satisfy
  881. * our request. */
  882. };
  883. #define OCFS2_LA_ENABLE_INTERVAL (30 * HZ)
  884. /*
  885. * Given an event, calculate the size of our next local alloc window.
  886. *
  887. * This should always be called under i_mutex of the local alloc inode
  888. * so that local alloc disabling doesn't race with processes trying to
  889. * use the allocator.
  890. *
  891. * Returns the state which the local alloc was left in. This value can
  892. * be ignored by some paths.
  893. */
  894. static int ocfs2_recalc_la_window(struct ocfs2_super *osb,
  895. enum ocfs2_la_event event)
  896. {
  897. unsigned int bits;
  898. int state;
  899. spin_lock(&osb->osb_lock);
  900. if (osb->local_alloc_state == OCFS2_LA_DISABLED) {
  901. WARN_ON_ONCE(osb->local_alloc_state == OCFS2_LA_DISABLED);
  902. goto out_unlock;
  903. }
  904. /*
  905. * ENOSPC and fragmentation are treated similarly for now.
  906. */
  907. if (event == OCFS2_LA_EVENT_ENOSPC ||
  908. event == OCFS2_LA_EVENT_FRAGMENTED) {
  909. /*
  910. * We ran out of contiguous space in the primary
  911. * bitmap. Drastically reduce the number of bits used
  912. * by local alloc until we have to disable it.
  913. */
  914. bits = osb->local_alloc_bits >> 1;
  915. if (bits > ocfs2_megabytes_to_clusters(osb->sb, 1)) {
  916. /*
  917. * By setting state to THROTTLED, we'll keep
  918. * the number of local alloc bits used down
  919. * until an event occurs which would give us
  920. * reason to assume the bitmap situation might
  921. * have changed.
  922. */
  923. osb->local_alloc_state = OCFS2_LA_THROTTLED;
  924. osb->local_alloc_bits = bits;
  925. } else {
  926. osb->local_alloc_state = OCFS2_LA_DISABLED;
  927. }
  928. queue_delayed_work(ocfs2_wq, &osb->la_enable_wq,
  929. OCFS2_LA_ENABLE_INTERVAL);
  930. goto out_unlock;
  931. }
  932. /*
  933. * Don't increase the size of the local alloc window until we
  934. * know we might be able to fulfill the request. Otherwise, we
  935. * risk bouncing around the global bitmap during periods of
  936. * low space.
  937. */
  938. if (osb->local_alloc_state != OCFS2_LA_THROTTLED)
  939. osb->local_alloc_bits = osb->local_alloc_default_bits;
  940. out_unlock:
  941. state = osb->local_alloc_state;
  942. spin_unlock(&osb->osb_lock);
  943. return state;
  944. }
  945. static int ocfs2_local_alloc_reserve_for_window(struct ocfs2_super *osb,
  946. struct ocfs2_alloc_context **ac,
  947. struct inode **bitmap_inode,
  948. struct buffer_head **bitmap_bh)
  949. {
  950. int status;
  951. *ac = kzalloc(sizeof(struct ocfs2_alloc_context), GFP_KERNEL);
  952. if (!(*ac)) {
  953. status = -ENOMEM;
  954. mlog_errno(status);
  955. goto bail;
  956. }
  957. retry_enospc:
  958. (*ac)->ac_bits_wanted = osb->local_alloc_bits;
  959. status = ocfs2_reserve_cluster_bitmap_bits(osb, *ac);
  960. if (status == -ENOSPC) {
  961. if (ocfs2_recalc_la_window(osb, OCFS2_LA_EVENT_ENOSPC) ==
  962. OCFS2_LA_DISABLED)
  963. goto bail;
  964. ocfs2_free_ac_resource(*ac);
  965. memset(*ac, 0, sizeof(struct ocfs2_alloc_context));
  966. goto retry_enospc;
  967. }
  968. if (status < 0) {
  969. mlog_errno(status);
  970. goto bail;
  971. }
  972. *bitmap_inode = (*ac)->ac_inode;
  973. igrab(*bitmap_inode);
  974. *bitmap_bh = (*ac)->ac_bh;
  975. get_bh(*bitmap_bh);
  976. status = 0;
  977. bail:
  978. if ((status < 0) && *ac) {
  979. ocfs2_free_alloc_context(*ac);
  980. *ac = NULL;
  981. }
  982. if (status)
  983. mlog_errno(status);
  984. return status;
  985. }
  986. /*
  987. * pass it the bitmap lock in lock_bh if you have it.
  988. */
  989. static int ocfs2_local_alloc_new_window(struct ocfs2_super *osb,
  990. handle_t *handle,
  991. struct ocfs2_alloc_context *ac)
  992. {
  993. int status = 0;
  994. u32 cluster_off, cluster_count;
  995. struct ocfs2_dinode *alloc = NULL;
  996. struct ocfs2_local_alloc *la;
  997. alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
  998. la = OCFS2_LOCAL_ALLOC(alloc);
  999. trace_ocfs2_local_alloc_new_window(
  1000. le32_to_cpu(alloc->id1.bitmap1.i_total),
  1001. osb->local_alloc_bits);
  1002. /* Instruct the allocation code to try the most recently used
  1003. * cluster group. We'll re-record the group used this pass
  1004. * below. */
  1005. ac->ac_last_group = osb->la_last_gd;
  1006. /* we used the generic suballoc reserve function, but we set
  1007. * everything up nicely, so there's no reason why we can't use
  1008. * the more specific cluster api to claim bits. */
  1009. status = ocfs2_claim_clusters(handle, ac, osb->local_alloc_bits,
  1010. &cluster_off, &cluster_count);
  1011. if (status == -ENOSPC) {
  1012. retry_enospc:
  1013. /*
  1014. * Note: We could also try syncing the journal here to
  1015. * allow use of any free bits which the current
  1016. * transaction can't give us access to. --Mark
  1017. */
  1018. if (ocfs2_recalc_la_window(osb, OCFS2_LA_EVENT_FRAGMENTED) ==
  1019. OCFS2_LA_DISABLED)
  1020. goto bail;
  1021. ac->ac_bits_wanted = osb->local_alloc_bits;
  1022. status = ocfs2_claim_clusters(handle, ac,
  1023. osb->local_alloc_bits,
  1024. &cluster_off,
  1025. &cluster_count);
  1026. if (status == -ENOSPC)
  1027. goto retry_enospc;
  1028. /*
  1029. * We only shrunk the *minimum* number of in our
  1030. * request - it's entirely possible that the allocator
  1031. * might give us more than we asked for.
  1032. */
  1033. if (status == 0) {
  1034. spin_lock(&osb->osb_lock);
  1035. osb->local_alloc_bits = cluster_count;
  1036. spin_unlock(&osb->osb_lock);
  1037. }
  1038. }
  1039. if (status < 0) {
  1040. if (status != -ENOSPC)
  1041. mlog_errno(status);
  1042. goto bail;
  1043. }
  1044. osb->la_last_gd = ac->ac_last_group;
  1045. la->la_bm_off = cpu_to_le32(cluster_off);
  1046. alloc->id1.bitmap1.i_total = cpu_to_le32(cluster_count);
  1047. /* just in case... In the future when we find space ourselves,
  1048. * we don't have to get all contiguous -- but we'll have to
  1049. * set all previously used bits in bitmap and update
  1050. * la_bits_set before setting the bits in the main bitmap. */
  1051. alloc->id1.bitmap1.i_used = 0;
  1052. memset(OCFS2_LOCAL_ALLOC(alloc)->la_bitmap, 0,
  1053. le16_to_cpu(la->la_size));
  1054. ocfs2_resmap_restart(&osb->osb_la_resmap, cluster_count,
  1055. OCFS2_LOCAL_ALLOC(alloc)->la_bitmap);
  1056. trace_ocfs2_local_alloc_new_window_result(
  1057. OCFS2_LOCAL_ALLOC(alloc)->la_bm_off,
  1058. le32_to_cpu(alloc->id1.bitmap1.i_total));
  1059. bail:
  1060. if (status)
  1061. mlog_errno(status);
  1062. return status;
  1063. }
  1064. /* Note that we do *NOT* lock the local alloc inode here as
  1065. * it's been locked already for us. */
  1066. static int ocfs2_local_alloc_slide_window(struct ocfs2_super *osb,
  1067. struct inode *local_alloc_inode)
  1068. {
  1069. int status = 0;
  1070. struct buffer_head *main_bm_bh = NULL;
  1071. struct inode *main_bm_inode = NULL;
  1072. handle_t *handle = NULL;
  1073. struct ocfs2_dinode *alloc;
  1074. struct ocfs2_dinode *alloc_copy = NULL;
  1075. struct ocfs2_alloc_context *ac = NULL;
  1076. ocfs2_recalc_la_window(osb, OCFS2_LA_EVENT_SLIDE);
  1077. /* This will lock the main bitmap for us. */
  1078. status = ocfs2_local_alloc_reserve_for_window(osb,
  1079. &ac,
  1080. &main_bm_inode,
  1081. &main_bm_bh);
  1082. if (status < 0) {
  1083. if (status != -ENOSPC)
  1084. mlog_errno(status);
  1085. goto bail;
  1086. }
  1087. handle = ocfs2_start_trans(osb, OCFS2_WINDOW_MOVE_CREDITS);
  1088. if (IS_ERR(handle)) {
  1089. status = PTR_ERR(handle);
  1090. handle = NULL;
  1091. mlog_errno(status);
  1092. goto bail;
  1093. }
  1094. alloc = (struct ocfs2_dinode *) osb->local_alloc_bh->b_data;
  1095. /* We want to clear the local alloc before doing anything
  1096. * else, so that if we error later during this operation,
  1097. * local alloc shutdown won't try to double free main bitmap
  1098. * bits. Make a copy so the sync function knows which bits to
  1099. * free. */
  1100. alloc_copy = kmalloc(osb->local_alloc_bh->b_size, GFP_NOFS);
  1101. if (!alloc_copy) {
  1102. status = -ENOMEM;
  1103. mlog_errno(status);
  1104. goto bail;
  1105. }
  1106. memcpy(alloc_copy, alloc, osb->local_alloc_bh->b_size);
  1107. status = ocfs2_journal_access_di(handle,
  1108. INODE_CACHE(local_alloc_inode),
  1109. osb->local_alloc_bh,
  1110. OCFS2_JOURNAL_ACCESS_WRITE);
  1111. if (status < 0) {
  1112. mlog_errno(status);
  1113. goto bail;
  1114. }
  1115. ocfs2_clear_local_alloc(alloc);
  1116. ocfs2_journal_dirty(handle, osb->local_alloc_bh);
  1117. status = ocfs2_sync_local_to_main(osb, handle, alloc_copy,
  1118. main_bm_inode, main_bm_bh);
  1119. if (status < 0) {
  1120. mlog_errno(status);
  1121. goto bail;
  1122. }
  1123. status = ocfs2_local_alloc_new_window(osb, handle, ac);
  1124. if (status < 0) {
  1125. if (status != -ENOSPC)
  1126. mlog_errno(status);
  1127. goto bail;
  1128. }
  1129. atomic_inc(&osb->alloc_stats.moves);
  1130. bail:
  1131. if (handle)
  1132. ocfs2_commit_trans(osb, handle);
  1133. brelse(main_bm_bh);
  1134. if (main_bm_inode)
  1135. iput(main_bm_inode);
  1136. kfree(alloc_copy);
  1137. if (ac)
  1138. ocfs2_free_alloc_context(ac);
  1139. if (status)
  1140. mlog_errno(status);
  1141. return status;
  1142. }