btree.c 61 KB

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  1. /*
  2. * btree.c - NILFS B-tree.
  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 Koji Sato <koji@osrg.net>.
  21. */
  22. #include <linux/slab.h>
  23. #include <linux/string.h>
  24. #include <linux/errno.h>
  25. #include <linux/pagevec.h>
  26. #include "nilfs.h"
  27. #include "page.h"
  28. #include "btnode.h"
  29. #include "btree.h"
  30. #include "alloc.h"
  31. #include "dat.h"
  32. static void __nilfs_btree_init(struct nilfs_bmap *bmap);
  33. static struct nilfs_btree_path *nilfs_btree_alloc_path(void)
  34. {
  35. struct nilfs_btree_path *path;
  36. int level = NILFS_BTREE_LEVEL_DATA;
  37. path = kmem_cache_alloc(nilfs_btree_path_cache, GFP_NOFS);
  38. if (path == NULL)
  39. goto out;
  40. for (; level < NILFS_BTREE_LEVEL_MAX; level++) {
  41. path[level].bp_bh = NULL;
  42. path[level].bp_sib_bh = NULL;
  43. path[level].bp_index = 0;
  44. path[level].bp_oldreq.bpr_ptr = NILFS_BMAP_INVALID_PTR;
  45. path[level].bp_newreq.bpr_ptr = NILFS_BMAP_INVALID_PTR;
  46. path[level].bp_op = NULL;
  47. }
  48. out:
  49. return path;
  50. }
  51. static void nilfs_btree_free_path(struct nilfs_btree_path *path)
  52. {
  53. int level = NILFS_BTREE_LEVEL_DATA;
  54. for (; level < NILFS_BTREE_LEVEL_MAX; level++)
  55. brelse(path[level].bp_bh);
  56. kmem_cache_free(nilfs_btree_path_cache, path);
  57. }
  58. /*
  59. * B-tree node operations
  60. */
  61. static int nilfs_btree_get_new_block(const struct nilfs_bmap *btree,
  62. __u64 ptr, struct buffer_head **bhp)
  63. {
  64. struct address_space *btnc = &NILFS_BMAP_I(btree)->i_btnode_cache;
  65. struct buffer_head *bh;
  66. bh = nilfs_btnode_create_block(btnc, ptr);
  67. if (!bh)
  68. return -ENOMEM;
  69. set_buffer_nilfs_volatile(bh);
  70. *bhp = bh;
  71. return 0;
  72. }
  73. static int nilfs_btree_node_get_flags(const struct nilfs_btree_node *node)
  74. {
  75. return node->bn_flags;
  76. }
  77. static void
  78. nilfs_btree_node_set_flags(struct nilfs_btree_node *node, int flags)
  79. {
  80. node->bn_flags = flags;
  81. }
  82. static int nilfs_btree_node_root(const struct nilfs_btree_node *node)
  83. {
  84. return nilfs_btree_node_get_flags(node) & NILFS_BTREE_NODE_ROOT;
  85. }
  86. static int nilfs_btree_node_get_level(const struct nilfs_btree_node *node)
  87. {
  88. return node->bn_level;
  89. }
  90. static void
  91. nilfs_btree_node_set_level(struct nilfs_btree_node *node, int level)
  92. {
  93. node->bn_level = level;
  94. }
  95. static int nilfs_btree_node_get_nchildren(const struct nilfs_btree_node *node)
  96. {
  97. return le16_to_cpu(node->bn_nchildren);
  98. }
  99. static void
  100. nilfs_btree_node_set_nchildren(struct nilfs_btree_node *node, int nchildren)
  101. {
  102. node->bn_nchildren = cpu_to_le16(nchildren);
  103. }
  104. static int nilfs_btree_node_size(const struct nilfs_bmap *btree)
  105. {
  106. return 1 << btree->b_inode->i_blkbits;
  107. }
  108. static int nilfs_btree_nchildren_per_block(const struct nilfs_bmap *btree)
  109. {
  110. return btree->b_nchildren_per_block;
  111. }
  112. static __le64 *
  113. nilfs_btree_node_dkeys(const struct nilfs_btree_node *node)
  114. {
  115. return (__le64 *)((char *)(node + 1) +
  116. (nilfs_btree_node_root(node) ?
  117. 0 : NILFS_BTREE_NODE_EXTRA_PAD_SIZE));
  118. }
  119. static __le64 *
  120. nilfs_btree_node_dptrs(const struct nilfs_btree_node *node, int ncmax)
  121. {
  122. return (__le64 *)(nilfs_btree_node_dkeys(node) + ncmax);
  123. }
  124. static __u64
  125. nilfs_btree_node_get_key(const struct nilfs_btree_node *node, int index)
  126. {
  127. return le64_to_cpu(*(nilfs_btree_node_dkeys(node) + index));
  128. }
  129. static void
  130. nilfs_btree_node_set_key(struct nilfs_btree_node *node, int index, __u64 key)
  131. {
  132. *(nilfs_btree_node_dkeys(node) + index) = cpu_to_le64(key);
  133. }
  134. static __u64
  135. nilfs_btree_node_get_ptr(const struct nilfs_btree_node *node, int index,
  136. int ncmax)
  137. {
  138. return le64_to_cpu(*(nilfs_btree_node_dptrs(node, ncmax) + index));
  139. }
  140. static void
  141. nilfs_btree_node_set_ptr(struct nilfs_btree_node *node, int index, __u64 ptr,
  142. int ncmax)
  143. {
  144. *(nilfs_btree_node_dptrs(node, ncmax) + index) = cpu_to_le64(ptr);
  145. }
  146. static void nilfs_btree_node_init(struct nilfs_btree_node *node, int flags,
  147. int level, int nchildren, int ncmax,
  148. const __u64 *keys, const __u64 *ptrs)
  149. {
  150. __le64 *dkeys;
  151. __le64 *dptrs;
  152. int i;
  153. nilfs_btree_node_set_flags(node, flags);
  154. nilfs_btree_node_set_level(node, level);
  155. nilfs_btree_node_set_nchildren(node, nchildren);
  156. dkeys = nilfs_btree_node_dkeys(node);
  157. dptrs = nilfs_btree_node_dptrs(node, ncmax);
  158. for (i = 0; i < nchildren; i++) {
  159. dkeys[i] = cpu_to_le64(keys[i]);
  160. dptrs[i] = cpu_to_le64(ptrs[i]);
  161. }
  162. }
  163. /* Assume the buffer heads corresponding to left and right are locked. */
  164. static void nilfs_btree_node_move_left(struct nilfs_btree_node *left,
  165. struct nilfs_btree_node *right,
  166. int n, int lncmax, int rncmax)
  167. {
  168. __le64 *ldkeys, *rdkeys;
  169. __le64 *ldptrs, *rdptrs;
  170. int lnchildren, rnchildren;
  171. ldkeys = nilfs_btree_node_dkeys(left);
  172. ldptrs = nilfs_btree_node_dptrs(left, lncmax);
  173. lnchildren = nilfs_btree_node_get_nchildren(left);
  174. rdkeys = nilfs_btree_node_dkeys(right);
  175. rdptrs = nilfs_btree_node_dptrs(right, rncmax);
  176. rnchildren = nilfs_btree_node_get_nchildren(right);
  177. memcpy(ldkeys + lnchildren, rdkeys, n * sizeof(*rdkeys));
  178. memcpy(ldptrs + lnchildren, rdptrs, n * sizeof(*rdptrs));
  179. memmove(rdkeys, rdkeys + n, (rnchildren - n) * sizeof(*rdkeys));
  180. memmove(rdptrs, rdptrs + n, (rnchildren - n) * sizeof(*rdptrs));
  181. lnchildren += n;
  182. rnchildren -= n;
  183. nilfs_btree_node_set_nchildren(left, lnchildren);
  184. nilfs_btree_node_set_nchildren(right, rnchildren);
  185. }
  186. /* Assume that the buffer heads corresponding to left and right are locked. */
  187. static void nilfs_btree_node_move_right(struct nilfs_btree_node *left,
  188. struct nilfs_btree_node *right,
  189. int n, int lncmax, int rncmax)
  190. {
  191. __le64 *ldkeys, *rdkeys;
  192. __le64 *ldptrs, *rdptrs;
  193. int lnchildren, rnchildren;
  194. ldkeys = nilfs_btree_node_dkeys(left);
  195. ldptrs = nilfs_btree_node_dptrs(left, lncmax);
  196. lnchildren = nilfs_btree_node_get_nchildren(left);
  197. rdkeys = nilfs_btree_node_dkeys(right);
  198. rdptrs = nilfs_btree_node_dptrs(right, rncmax);
  199. rnchildren = nilfs_btree_node_get_nchildren(right);
  200. memmove(rdkeys + n, rdkeys, rnchildren * sizeof(*rdkeys));
  201. memmove(rdptrs + n, rdptrs, rnchildren * sizeof(*rdptrs));
  202. memcpy(rdkeys, ldkeys + lnchildren - n, n * sizeof(*rdkeys));
  203. memcpy(rdptrs, ldptrs + lnchildren - n, n * sizeof(*rdptrs));
  204. lnchildren -= n;
  205. rnchildren += n;
  206. nilfs_btree_node_set_nchildren(left, lnchildren);
  207. nilfs_btree_node_set_nchildren(right, rnchildren);
  208. }
  209. /* Assume that the buffer head corresponding to node is locked. */
  210. static void nilfs_btree_node_insert(struct nilfs_btree_node *node, int index,
  211. __u64 key, __u64 ptr, int ncmax)
  212. {
  213. __le64 *dkeys;
  214. __le64 *dptrs;
  215. int nchildren;
  216. dkeys = nilfs_btree_node_dkeys(node);
  217. dptrs = nilfs_btree_node_dptrs(node, ncmax);
  218. nchildren = nilfs_btree_node_get_nchildren(node);
  219. if (index < nchildren) {
  220. memmove(dkeys + index + 1, dkeys + index,
  221. (nchildren - index) * sizeof(*dkeys));
  222. memmove(dptrs + index + 1, dptrs + index,
  223. (nchildren - index) * sizeof(*dptrs));
  224. }
  225. dkeys[index] = cpu_to_le64(key);
  226. dptrs[index] = cpu_to_le64(ptr);
  227. nchildren++;
  228. nilfs_btree_node_set_nchildren(node, nchildren);
  229. }
  230. /* Assume that the buffer head corresponding to node is locked. */
  231. static void nilfs_btree_node_delete(struct nilfs_btree_node *node, int index,
  232. __u64 *keyp, __u64 *ptrp, int ncmax)
  233. {
  234. __u64 key;
  235. __u64 ptr;
  236. __le64 *dkeys;
  237. __le64 *dptrs;
  238. int nchildren;
  239. dkeys = nilfs_btree_node_dkeys(node);
  240. dptrs = nilfs_btree_node_dptrs(node, ncmax);
  241. key = le64_to_cpu(dkeys[index]);
  242. ptr = le64_to_cpu(dptrs[index]);
  243. nchildren = nilfs_btree_node_get_nchildren(node);
  244. if (keyp != NULL)
  245. *keyp = key;
  246. if (ptrp != NULL)
  247. *ptrp = ptr;
  248. if (index < nchildren - 1) {
  249. memmove(dkeys + index, dkeys + index + 1,
  250. (nchildren - index - 1) * sizeof(*dkeys));
  251. memmove(dptrs + index, dptrs + index + 1,
  252. (nchildren - index - 1) * sizeof(*dptrs));
  253. }
  254. nchildren--;
  255. nilfs_btree_node_set_nchildren(node, nchildren);
  256. }
  257. static int nilfs_btree_node_lookup(const struct nilfs_btree_node *node,
  258. __u64 key, int *indexp)
  259. {
  260. __u64 nkey;
  261. int index, low, high, s;
  262. /* binary search */
  263. low = 0;
  264. high = nilfs_btree_node_get_nchildren(node) - 1;
  265. index = 0;
  266. s = 0;
  267. while (low <= high) {
  268. index = (low + high) / 2;
  269. nkey = nilfs_btree_node_get_key(node, index);
  270. if (nkey == key) {
  271. s = 0;
  272. goto out;
  273. } else if (nkey < key) {
  274. low = index + 1;
  275. s = -1;
  276. } else {
  277. high = index - 1;
  278. s = 1;
  279. }
  280. }
  281. /* adjust index */
  282. if (nilfs_btree_node_get_level(node) > NILFS_BTREE_LEVEL_NODE_MIN) {
  283. if (s > 0 && index > 0)
  284. index--;
  285. } else if (s < 0)
  286. index++;
  287. out:
  288. *indexp = index;
  289. return s == 0;
  290. }
  291. /**
  292. * nilfs_btree_node_broken - verify consistency of btree node
  293. * @node: btree node block to be examined
  294. * @size: node size (in bytes)
  295. * @blocknr: block number
  296. *
  297. * Return Value: If node is broken, 1 is returned. Otherwise, 0 is returned.
  298. */
  299. static int nilfs_btree_node_broken(const struct nilfs_btree_node *node,
  300. size_t size, sector_t blocknr)
  301. {
  302. int level, flags, nchildren;
  303. int ret = 0;
  304. level = nilfs_btree_node_get_level(node);
  305. flags = nilfs_btree_node_get_flags(node);
  306. nchildren = nilfs_btree_node_get_nchildren(node);
  307. if (unlikely(level < NILFS_BTREE_LEVEL_NODE_MIN ||
  308. level >= NILFS_BTREE_LEVEL_MAX ||
  309. (flags & NILFS_BTREE_NODE_ROOT) ||
  310. nchildren < 0 ||
  311. nchildren > NILFS_BTREE_NODE_NCHILDREN_MAX(size))) {
  312. printk(KERN_CRIT "NILFS: bad btree node (blocknr=%llu): "
  313. "level = %d, flags = 0x%x, nchildren = %d\n",
  314. (unsigned long long)blocknr, level, flags, nchildren);
  315. ret = 1;
  316. }
  317. return ret;
  318. }
  319. /**
  320. * nilfs_btree_root_broken - verify consistency of btree root node
  321. * @node: btree root node to be examined
  322. * @ino: inode number
  323. *
  324. * Return Value: If node is broken, 1 is returned. Otherwise, 0 is returned.
  325. */
  326. static int nilfs_btree_root_broken(const struct nilfs_btree_node *node,
  327. unsigned long ino)
  328. {
  329. int level, flags, nchildren;
  330. int ret = 0;
  331. level = nilfs_btree_node_get_level(node);
  332. flags = nilfs_btree_node_get_flags(node);
  333. nchildren = nilfs_btree_node_get_nchildren(node);
  334. if (unlikely(level < NILFS_BTREE_LEVEL_NODE_MIN ||
  335. level > NILFS_BTREE_LEVEL_MAX ||
  336. nchildren < 0 ||
  337. nchildren > NILFS_BTREE_ROOT_NCHILDREN_MAX)) {
  338. pr_crit("NILFS: bad btree root (inode number=%lu): level = %d, flags = 0x%x, nchildren = %d\n",
  339. ino, level, flags, nchildren);
  340. ret = 1;
  341. }
  342. return ret;
  343. }
  344. int nilfs_btree_broken_node_block(struct buffer_head *bh)
  345. {
  346. int ret;
  347. if (buffer_nilfs_checked(bh))
  348. return 0;
  349. ret = nilfs_btree_node_broken((struct nilfs_btree_node *)bh->b_data,
  350. bh->b_size, bh->b_blocknr);
  351. if (likely(!ret))
  352. set_buffer_nilfs_checked(bh);
  353. return ret;
  354. }
  355. static struct nilfs_btree_node *
  356. nilfs_btree_get_root(const struct nilfs_bmap *btree)
  357. {
  358. return (struct nilfs_btree_node *)btree->b_u.u_data;
  359. }
  360. static struct nilfs_btree_node *
  361. nilfs_btree_get_nonroot_node(const struct nilfs_btree_path *path, int level)
  362. {
  363. return (struct nilfs_btree_node *)path[level].bp_bh->b_data;
  364. }
  365. static struct nilfs_btree_node *
  366. nilfs_btree_get_sib_node(const struct nilfs_btree_path *path, int level)
  367. {
  368. return (struct nilfs_btree_node *)path[level].bp_sib_bh->b_data;
  369. }
  370. static int nilfs_btree_height(const struct nilfs_bmap *btree)
  371. {
  372. return nilfs_btree_node_get_level(nilfs_btree_get_root(btree)) + 1;
  373. }
  374. static struct nilfs_btree_node *
  375. nilfs_btree_get_node(const struct nilfs_bmap *btree,
  376. const struct nilfs_btree_path *path,
  377. int level, int *ncmaxp)
  378. {
  379. struct nilfs_btree_node *node;
  380. if (level == nilfs_btree_height(btree) - 1) {
  381. node = nilfs_btree_get_root(btree);
  382. *ncmaxp = NILFS_BTREE_ROOT_NCHILDREN_MAX;
  383. } else {
  384. node = nilfs_btree_get_nonroot_node(path, level);
  385. *ncmaxp = nilfs_btree_nchildren_per_block(btree);
  386. }
  387. return node;
  388. }
  389. static int
  390. nilfs_btree_bad_node(struct nilfs_btree_node *node, int level)
  391. {
  392. if (unlikely(nilfs_btree_node_get_level(node) != level)) {
  393. dump_stack();
  394. printk(KERN_CRIT "NILFS: btree level mismatch: %d != %d\n",
  395. nilfs_btree_node_get_level(node), level);
  396. return 1;
  397. }
  398. return 0;
  399. }
  400. struct nilfs_btree_readahead_info {
  401. struct nilfs_btree_node *node; /* parent node */
  402. int max_ra_blocks; /* max nof blocks to read ahead */
  403. int index; /* current index on the parent node */
  404. int ncmax; /* nof children in the parent node */
  405. };
  406. static int __nilfs_btree_get_block(const struct nilfs_bmap *btree, __u64 ptr,
  407. struct buffer_head **bhp,
  408. const struct nilfs_btree_readahead_info *ra)
  409. {
  410. struct address_space *btnc = &NILFS_BMAP_I(btree)->i_btnode_cache;
  411. struct buffer_head *bh, *ra_bh;
  412. sector_t submit_ptr = 0;
  413. int ret;
  414. ret = nilfs_btnode_submit_block(btnc, ptr, 0, READ, &bh, &submit_ptr);
  415. if (ret) {
  416. if (ret != -EEXIST)
  417. return ret;
  418. goto out_check;
  419. }
  420. if (ra) {
  421. int i, n;
  422. __u64 ptr2;
  423. /* read ahead sibling nodes */
  424. for (n = ra->max_ra_blocks, i = ra->index + 1;
  425. n > 0 && i < ra->ncmax; n--, i++) {
  426. ptr2 = nilfs_btree_node_get_ptr(ra->node, i, ra->ncmax);
  427. ret = nilfs_btnode_submit_block(btnc, ptr2, 0, READA,
  428. &ra_bh, &submit_ptr);
  429. if (likely(!ret || ret == -EEXIST))
  430. brelse(ra_bh);
  431. else if (ret != -EBUSY)
  432. break;
  433. if (!buffer_locked(bh))
  434. goto out_no_wait;
  435. }
  436. }
  437. wait_on_buffer(bh);
  438. out_no_wait:
  439. if (!buffer_uptodate(bh)) {
  440. brelse(bh);
  441. return -EIO;
  442. }
  443. out_check:
  444. if (nilfs_btree_broken_node_block(bh)) {
  445. clear_buffer_uptodate(bh);
  446. brelse(bh);
  447. return -EINVAL;
  448. }
  449. *bhp = bh;
  450. return 0;
  451. }
  452. static int nilfs_btree_get_block(const struct nilfs_bmap *btree, __u64 ptr,
  453. struct buffer_head **bhp)
  454. {
  455. return __nilfs_btree_get_block(btree, ptr, bhp, NULL);
  456. }
  457. static int nilfs_btree_do_lookup(const struct nilfs_bmap *btree,
  458. struct nilfs_btree_path *path,
  459. __u64 key, __u64 *ptrp, int minlevel,
  460. int readahead)
  461. {
  462. struct nilfs_btree_node *node;
  463. struct nilfs_btree_readahead_info p, *ra;
  464. __u64 ptr;
  465. int level, index, found, ncmax, ret;
  466. node = nilfs_btree_get_root(btree);
  467. level = nilfs_btree_node_get_level(node);
  468. if (level < minlevel || nilfs_btree_node_get_nchildren(node) <= 0)
  469. return -ENOENT;
  470. found = nilfs_btree_node_lookup(node, key, &index);
  471. ptr = nilfs_btree_node_get_ptr(node, index,
  472. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  473. path[level].bp_bh = NULL;
  474. path[level].bp_index = index;
  475. ncmax = nilfs_btree_nchildren_per_block(btree);
  476. while (--level >= minlevel) {
  477. ra = NULL;
  478. if (level == NILFS_BTREE_LEVEL_NODE_MIN && readahead) {
  479. p.node = nilfs_btree_get_node(btree, path, level + 1,
  480. &p.ncmax);
  481. p.index = index;
  482. p.max_ra_blocks = 7;
  483. ra = &p;
  484. }
  485. ret = __nilfs_btree_get_block(btree, ptr, &path[level].bp_bh,
  486. ra);
  487. if (ret < 0)
  488. return ret;
  489. node = nilfs_btree_get_nonroot_node(path, level);
  490. if (nilfs_btree_bad_node(node, level))
  491. return -EINVAL;
  492. if (!found)
  493. found = nilfs_btree_node_lookup(node, key, &index);
  494. else
  495. index = 0;
  496. if (index < ncmax) {
  497. ptr = nilfs_btree_node_get_ptr(node, index, ncmax);
  498. } else {
  499. WARN_ON(found || level != NILFS_BTREE_LEVEL_NODE_MIN);
  500. /* insert */
  501. ptr = NILFS_BMAP_INVALID_PTR;
  502. }
  503. path[level].bp_index = index;
  504. }
  505. if (!found)
  506. return -ENOENT;
  507. if (ptrp != NULL)
  508. *ptrp = ptr;
  509. return 0;
  510. }
  511. static int nilfs_btree_do_lookup_last(const struct nilfs_bmap *btree,
  512. struct nilfs_btree_path *path,
  513. __u64 *keyp, __u64 *ptrp)
  514. {
  515. struct nilfs_btree_node *node;
  516. __u64 ptr;
  517. int index, level, ncmax, ret;
  518. node = nilfs_btree_get_root(btree);
  519. index = nilfs_btree_node_get_nchildren(node) - 1;
  520. if (index < 0)
  521. return -ENOENT;
  522. level = nilfs_btree_node_get_level(node);
  523. ptr = nilfs_btree_node_get_ptr(node, index,
  524. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  525. path[level].bp_bh = NULL;
  526. path[level].bp_index = index;
  527. ncmax = nilfs_btree_nchildren_per_block(btree);
  528. for (level--; level > 0; level--) {
  529. ret = nilfs_btree_get_block(btree, ptr, &path[level].bp_bh);
  530. if (ret < 0)
  531. return ret;
  532. node = nilfs_btree_get_nonroot_node(path, level);
  533. if (nilfs_btree_bad_node(node, level))
  534. return -EINVAL;
  535. index = nilfs_btree_node_get_nchildren(node) - 1;
  536. ptr = nilfs_btree_node_get_ptr(node, index, ncmax);
  537. path[level].bp_index = index;
  538. }
  539. if (keyp != NULL)
  540. *keyp = nilfs_btree_node_get_key(node, index);
  541. if (ptrp != NULL)
  542. *ptrp = ptr;
  543. return 0;
  544. }
  545. static int nilfs_btree_lookup(const struct nilfs_bmap *btree,
  546. __u64 key, int level, __u64 *ptrp)
  547. {
  548. struct nilfs_btree_path *path;
  549. int ret;
  550. path = nilfs_btree_alloc_path();
  551. if (path == NULL)
  552. return -ENOMEM;
  553. ret = nilfs_btree_do_lookup(btree, path, key, ptrp, level, 0);
  554. nilfs_btree_free_path(path);
  555. return ret;
  556. }
  557. static int nilfs_btree_lookup_contig(const struct nilfs_bmap *btree,
  558. __u64 key, __u64 *ptrp, unsigned maxblocks)
  559. {
  560. struct nilfs_btree_path *path;
  561. struct nilfs_btree_node *node;
  562. struct inode *dat = NULL;
  563. __u64 ptr, ptr2;
  564. sector_t blocknr;
  565. int level = NILFS_BTREE_LEVEL_NODE_MIN;
  566. int ret, cnt, index, maxlevel, ncmax;
  567. struct nilfs_btree_readahead_info p;
  568. path = nilfs_btree_alloc_path();
  569. if (path == NULL)
  570. return -ENOMEM;
  571. ret = nilfs_btree_do_lookup(btree, path, key, &ptr, level, 1);
  572. if (ret < 0)
  573. goto out;
  574. if (NILFS_BMAP_USE_VBN(btree)) {
  575. dat = nilfs_bmap_get_dat(btree);
  576. ret = nilfs_dat_translate(dat, ptr, &blocknr);
  577. if (ret < 0)
  578. goto out;
  579. ptr = blocknr;
  580. }
  581. cnt = 1;
  582. if (cnt == maxblocks)
  583. goto end;
  584. maxlevel = nilfs_btree_height(btree) - 1;
  585. node = nilfs_btree_get_node(btree, path, level, &ncmax);
  586. index = path[level].bp_index + 1;
  587. for (;;) {
  588. while (index < nilfs_btree_node_get_nchildren(node)) {
  589. if (nilfs_btree_node_get_key(node, index) !=
  590. key + cnt)
  591. goto end;
  592. ptr2 = nilfs_btree_node_get_ptr(node, index, ncmax);
  593. if (dat) {
  594. ret = nilfs_dat_translate(dat, ptr2, &blocknr);
  595. if (ret < 0)
  596. goto out;
  597. ptr2 = blocknr;
  598. }
  599. if (ptr2 != ptr + cnt || ++cnt == maxblocks)
  600. goto end;
  601. index++;
  602. continue;
  603. }
  604. if (level == maxlevel)
  605. break;
  606. /* look-up right sibling node */
  607. p.node = nilfs_btree_get_node(btree, path, level + 1, &p.ncmax);
  608. p.index = path[level + 1].bp_index + 1;
  609. p.max_ra_blocks = 7;
  610. if (p.index >= nilfs_btree_node_get_nchildren(p.node) ||
  611. nilfs_btree_node_get_key(p.node, p.index) != key + cnt)
  612. break;
  613. ptr2 = nilfs_btree_node_get_ptr(p.node, p.index, p.ncmax);
  614. path[level + 1].bp_index = p.index;
  615. brelse(path[level].bp_bh);
  616. path[level].bp_bh = NULL;
  617. ret = __nilfs_btree_get_block(btree, ptr2, &path[level].bp_bh,
  618. &p);
  619. if (ret < 0)
  620. goto out;
  621. node = nilfs_btree_get_nonroot_node(path, level);
  622. ncmax = nilfs_btree_nchildren_per_block(btree);
  623. index = 0;
  624. path[level].bp_index = index;
  625. }
  626. end:
  627. *ptrp = ptr;
  628. ret = cnt;
  629. out:
  630. nilfs_btree_free_path(path);
  631. return ret;
  632. }
  633. static void nilfs_btree_promote_key(struct nilfs_bmap *btree,
  634. struct nilfs_btree_path *path,
  635. int level, __u64 key)
  636. {
  637. if (level < nilfs_btree_height(btree) - 1) {
  638. do {
  639. nilfs_btree_node_set_key(
  640. nilfs_btree_get_nonroot_node(path, level),
  641. path[level].bp_index, key);
  642. if (!buffer_dirty(path[level].bp_bh))
  643. mark_buffer_dirty(path[level].bp_bh);
  644. } while ((path[level].bp_index == 0) &&
  645. (++level < nilfs_btree_height(btree) - 1));
  646. }
  647. /* root */
  648. if (level == nilfs_btree_height(btree) - 1) {
  649. nilfs_btree_node_set_key(nilfs_btree_get_root(btree),
  650. path[level].bp_index, key);
  651. }
  652. }
  653. static void nilfs_btree_do_insert(struct nilfs_bmap *btree,
  654. struct nilfs_btree_path *path,
  655. int level, __u64 *keyp, __u64 *ptrp)
  656. {
  657. struct nilfs_btree_node *node;
  658. int ncblk;
  659. if (level < nilfs_btree_height(btree) - 1) {
  660. node = nilfs_btree_get_nonroot_node(path, level);
  661. ncblk = nilfs_btree_nchildren_per_block(btree);
  662. nilfs_btree_node_insert(node, path[level].bp_index,
  663. *keyp, *ptrp, ncblk);
  664. if (!buffer_dirty(path[level].bp_bh))
  665. mark_buffer_dirty(path[level].bp_bh);
  666. if (path[level].bp_index == 0)
  667. nilfs_btree_promote_key(btree, path, level + 1,
  668. nilfs_btree_node_get_key(node,
  669. 0));
  670. } else {
  671. node = nilfs_btree_get_root(btree);
  672. nilfs_btree_node_insert(node, path[level].bp_index,
  673. *keyp, *ptrp,
  674. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  675. }
  676. }
  677. static void nilfs_btree_carry_left(struct nilfs_bmap *btree,
  678. struct nilfs_btree_path *path,
  679. int level, __u64 *keyp, __u64 *ptrp)
  680. {
  681. struct nilfs_btree_node *node, *left;
  682. int nchildren, lnchildren, n, move, ncblk;
  683. node = nilfs_btree_get_nonroot_node(path, level);
  684. left = nilfs_btree_get_sib_node(path, level);
  685. nchildren = nilfs_btree_node_get_nchildren(node);
  686. lnchildren = nilfs_btree_node_get_nchildren(left);
  687. ncblk = nilfs_btree_nchildren_per_block(btree);
  688. move = 0;
  689. n = (nchildren + lnchildren + 1) / 2 - lnchildren;
  690. if (n > path[level].bp_index) {
  691. /* move insert point */
  692. n--;
  693. move = 1;
  694. }
  695. nilfs_btree_node_move_left(left, node, n, ncblk, ncblk);
  696. if (!buffer_dirty(path[level].bp_bh))
  697. mark_buffer_dirty(path[level].bp_bh);
  698. if (!buffer_dirty(path[level].bp_sib_bh))
  699. mark_buffer_dirty(path[level].bp_sib_bh);
  700. nilfs_btree_promote_key(btree, path, level + 1,
  701. nilfs_btree_node_get_key(node, 0));
  702. if (move) {
  703. brelse(path[level].bp_bh);
  704. path[level].bp_bh = path[level].bp_sib_bh;
  705. path[level].bp_sib_bh = NULL;
  706. path[level].bp_index += lnchildren;
  707. path[level + 1].bp_index--;
  708. } else {
  709. brelse(path[level].bp_sib_bh);
  710. path[level].bp_sib_bh = NULL;
  711. path[level].bp_index -= n;
  712. }
  713. nilfs_btree_do_insert(btree, path, level, keyp, ptrp);
  714. }
  715. static void nilfs_btree_carry_right(struct nilfs_bmap *btree,
  716. struct nilfs_btree_path *path,
  717. int level, __u64 *keyp, __u64 *ptrp)
  718. {
  719. struct nilfs_btree_node *node, *right;
  720. int nchildren, rnchildren, n, move, ncblk;
  721. node = nilfs_btree_get_nonroot_node(path, level);
  722. right = nilfs_btree_get_sib_node(path, level);
  723. nchildren = nilfs_btree_node_get_nchildren(node);
  724. rnchildren = nilfs_btree_node_get_nchildren(right);
  725. ncblk = nilfs_btree_nchildren_per_block(btree);
  726. move = 0;
  727. n = (nchildren + rnchildren + 1) / 2 - rnchildren;
  728. if (n > nchildren - path[level].bp_index) {
  729. /* move insert point */
  730. n--;
  731. move = 1;
  732. }
  733. nilfs_btree_node_move_right(node, right, n, ncblk, ncblk);
  734. if (!buffer_dirty(path[level].bp_bh))
  735. mark_buffer_dirty(path[level].bp_bh);
  736. if (!buffer_dirty(path[level].bp_sib_bh))
  737. mark_buffer_dirty(path[level].bp_sib_bh);
  738. path[level + 1].bp_index++;
  739. nilfs_btree_promote_key(btree, path, level + 1,
  740. nilfs_btree_node_get_key(right, 0));
  741. path[level + 1].bp_index--;
  742. if (move) {
  743. brelse(path[level].bp_bh);
  744. path[level].bp_bh = path[level].bp_sib_bh;
  745. path[level].bp_sib_bh = NULL;
  746. path[level].bp_index -= nilfs_btree_node_get_nchildren(node);
  747. path[level + 1].bp_index++;
  748. } else {
  749. brelse(path[level].bp_sib_bh);
  750. path[level].bp_sib_bh = NULL;
  751. }
  752. nilfs_btree_do_insert(btree, path, level, keyp, ptrp);
  753. }
  754. static void nilfs_btree_split(struct nilfs_bmap *btree,
  755. struct nilfs_btree_path *path,
  756. int level, __u64 *keyp, __u64 *ptrp)
  757. {
  758. struct nilfs_btree_node *node, *right;
  759. __u64 newkey;
  760. __u64 newptr;
  761. int nchildren, n, move, ncblk;
  762. node = nilfs_btree_get_nonroot_node(path, level);
  763. right = nilfs_btree_get_sib_node(path, level);
  764. nchildren = nilfs_btree_node_get_nchildren(node);
  765. ncblk = nilfs_btree_nchildren_per_block(btree);
  766. move = 0;
  767. n = (nchildren + 1) / 2;
  768. if (n > nchildren - path[level].bp_index) {
  769. n--;
  770. move = 1;
  771. }
  772. nilfs_btree_node_move_right(node, right, n, ncblk, ncblk);
  773. if (!buffer_dirty(path[level].bp_bh))
  774. mark_buffer_dirty(path[level].bp_bh);
  775. if (!buffer_dirty(path[level].bp_sib_bh))
  776. mark_buffer_dirty(path[level].bp_sib_bh);
  777. newkey = nilfs_btree_node_get_key(right, 0);
  778. newptr = path[level].bp_newreq.bpr_ptr;
  779. if (move) {
  780. path[level].bp_index -= nilfs_btree_node_get_nchildren(node);
  781. nilfs_btree_node_insert(right, path[level].bp_index,
  782. *keyp, *ptrp, ncblk);
  783. *keyp = nilfs_btree_node_get_key(right, 0);
  784. *ptrp = path[level].bp_newreq.bpr_ptr;
  785. brelse(path[level].bp_bh);
  786. path[level].bp_bh = path[level].bp_sib_bh;
  787. path[level].bp_sib_bh = NULL;
  788. } else {
  789. nilfs_btree_do_insert(btree, path, level, keyp, ptrp);
  790. *keyp = nilfs_btree_node_get_key(right, 0);
  791. *ptrp = path[level].bp_newreq.bpr_ptr;
  792. brelse(path[level].bp_sib_bh);
  793. path[level].bp_sib_bh = NULL;
  794. }
  795. path[level + 1].bp_index++;
  796. }
  797. static void nilfs_btree_grow(struct nilfs_bmap *btree,
  798. struct nilfs_btree_path *path,
  799. int level, __u64 *keyp, __u64 *ptrp)
  800. {
  801. struct nilfs_btree_node *root, *child;
  802. int n, ncblk;
  803. root = nilfs_btree_get_root(btree);
  804. child = nilfs_btree_get_sib_node(path, level);
  805. ncblk = nilfs_btree_nchildren_per_block(btree);
  806. n = nilfs_btree_node_get_nchildren(root);
  807. nilfs_btree_node_move_right(root, child, n,
  808. NILFS_BTREE_ROOT_NCHILDREN_MAX, ncblk);
  809. nilfs_btree_node_set_level(root, level + 1);
  810. if (!buffer_dirty(path[level].bp_sib_bh))
  811. mark_buffer_dirty(path[level].bp_sib_bh);
  812. path[level].bp_bh = path[level].bp_sib_bh;
  813. path[level].bp_sib_bh = NULL;
  814. nilfs_btree_do_insert(btree, path, level, keyp, ptrp);
  815. *keyp = nilfs_btree_node_get_key(child, 0);
  816. *ptrp = path[level].bp_newreq.bpr_ptr;
  817. }
  818. static __u64 nilfs_btree_find_near(const struct nilfs_bmap *btree,
  819. const struct nilfs_btree_path *path)
  820. {
  821. struct nilfs_btree_node *node;
  822. int level, ncmax;
  823. if (path == NULL)
  824. return NILFS_BMAP_INVALID_PTR;
  825. /* left sibling */
  826. level = NILFS_BTREE_LEVEL_NODE_MIN;
  827. if (path[level].bp_index > 0) {
  828. node = nilfs_btree_get_node(btree, path, level, &ncmax);
  829. return nilfs_btree_node_get_ptr(node,
  830. path[level].bp_index - 1,
  831. ncmax);
  832. }
  833. /* parent */
  834. level = NILFS_BTREE_LEVEL_NODE_MIN + 1;
  835. if (level <= nilfs_btree_height(btree) - 1) {
  836. node = nilfs_btree_get_node(btree, path, level, &ncmax);
  837. return nilfs_btree_node_get_ptr(node, path[level].bp_index,
  838. ncmax);
  839. }
  840. return NILFS_BMAP_INVALID_PTR;
  841. }
  842. static __u64 nilfs_btree_find_target_v(const struct nilfs_bmap *btree,
  843. const struct nilfs_btree_path *path,
  844. __u64 key)
  845. {
  846. __u64 ptr;
  847. ptr = nilfs_bmap_find_target_seq(btree, key);
  848. if (ptr != NILFS_BMAP_INVALID_PTR)
  849. /* sequential access */
  850. return ptr;
  851. else {
  852. ptr = nilfs_btree_find_near(btree, path);
  853. if (ptr != NILFS_BMAP_INVALID_PTR)
  854. /* near */
  855. return ptr;
  856. }
  857. /* block group */
  858. return nilfs_bmap_find_target_in_group(btree);
  859. }
  860. static int nilfs_btree_prepare_insert(struct nilfs_bmap *btree,
  861. struct nilfs_btree_path *path,
  862. int *levelp, __u64 key, __u64 ptr,
  863. struct nilfs_bmap_stats *stats)
  864. {
  865. struct buffer_head *bh;
  866. struct nilfs_btree_node *node, *parent, *sib;
  867. __u64 sibptr;
  868. int pindex, level, ncmax, ncblk, ret;
  869. struct inode *dat = NULL;
  870. stats->bs_nblocks = 0;
  871. level = NILFS_BTREE_LEVEL_DATA;
  872. /* allocate a new ptr for data block */
  873. if (NILFS_BMAP_USE_VBN(btree)) {
  874. path[level].bp_newreq.bpr_ptr =
  875. nilfs_btree_find_target_v(btree, path, key);
  876. dat = nilfs_bmap_get_dat(btree);
  877. }
  878. ret = nilfs_bmap_prepare_alloc_ptr(btree, &path[level].bp_newreq, dat);
  879. if (ret < 0)
  880. goto err_out_data;
  881. ncblk = nilfs_btree_nchildren_per_block(btree);
  882. for (level = NILFS_BTREE_LEVEL_NODE_MIN;
  883. level < nilfs_btree_height(btree) - 1;
  884. level++) {
  885. node = nilfs_btree_get_nonroot_node(path, level);
  886. if (nilfs_btree_node_get_nchildren(node) < ncblk) {
  887. path[level].bp_op = nilfs_btree_do_insert;
  888. stats->bs_nblocks++;
  889. goto out;
  890. }
  891. parent = nilfs_btree_get_node(btree, path, level + 1, &ncmax);
  892. pindex = path[level + 1].bp_index;
  893. /* left sibling */
  894. if (pindex > 0) {
  895. sibptr = nilfs_btree_node_get_ptr(parent, pindex - 1,
  896. ncmax);
  897. ret = nilfs_btree_get_block(btree, sibptr, &bh);
  898. if (ret < 0)
  899. goto err_out_child_node;
  900. sib = (struct nilfs_btree_node *)bh->b_data;
  901. if (nilfs_btree_node_get_nchildren(sib) < ncblk) {
  902. path[level].bp_sib_bh = bh;
  903. path[level].bp_op = nilfs_btree_carry_left;
  904. stats->bs_nblocks++;
  905. goto out;
  906. } else {
  907. brelse(bh);
  908. }
  909. }
  910. /* right sibling */
  911. if (pindex < nilfs_btree_node_get_nchildren(parent) - 1) {
  912. sibptr = nilfs_btree_node_get_ptr(parent, pindex + 1,
  913. ncmax);
  914. ret = nilfs_btree_get_block(btree, sibptr, &bh);
  915. if (ret < 0)
  916. goto err_out_child_node;
  917. sib = (struct nilfs_btree_node *)bh->b_data;
  918. if (nilfs_btree_node_get_nchildren(sib) < ncblk) {
  919. path[level].bp_sib_bh = bh;
  920. path[level].bp_op = nilfs_btree_carry_right;
  921. stats->bs_nblocks++;
  922. goto out;
  923. } else {
  924. brelse(bh);
  925. }
  926. }
  927. /* split */
  928. path[level].bp_newreq.bpr_ptr =
  929. path[level - 1].bp_newreq.bpr_ptr + 1;
  930. ret = nilfs_bmap_prepare_alloc_ptr(btree,
  931. &path[level].bp_newreq, dat);
  932. if (ret < 0)
  933. goto err_out_child_node;
  934. ret = nilfs_btree_get_new_block(btree,
  935. path[level].bp_newreq.bpr_ptr,
  936. &bh);
  937. if (ret < 0)
  938. goto err_out_curr_node;
  939. stats->bs_nblocks++;
  940. sib = (struct nilfs_btree_node *)bh->b_data;
  941. nilfs_btree_node_init(sib, 0, level, 0, ncblk, NULL, NULL);
  942. path[level].bp_sib_bh = bh;
  943. path[level].bp_op = nilfs_btree_split;
  944. }
  945. /* root */
  946. node = nilfs_btree_get_root(btree);
  947. if (nilfs_btree_node_get_nchildren(node) <
  948. NILFS_BTREE_ROOT_NCHILDREN_MAX) {
  949. path[level].bp_op = nilfs_btree_do_insert;
  950. stats->bs_nblocks++;
  951. goto out;
  952. }
  953. /* grow */
  954. path[level].bp_newreq.bpr_ptr = path[level - 1].bp_newreq.bpr_ptr + 1;
  955. ret = nilfs_bmap_prepare_alloc_ptr(btree, &path[level].bp_newreq, dat);
  956. if (ret < 0)
  957. goto err_out_child_node;
  958. ret = nilfs_btree_get_new_block(btree, path[level].bp_newreq.bpr_ptr,
  959. &bh);
  960. if (ret < 0)
  961. goto err_out_curr_node;
  962. nilfs_btree_node_init((struct nilfs_btree_node *)bh->b_data,
  963. 0, level, 0, ncblk, NULL, NULL);
  964. path[level].bp_sib_bh = bh;
  965. path[level].bp_op = nilfs_btree_grow;
  966. level++;
  967. path[level].bp_op = nilfs_btree_do_insert;
  968. /* a newly-created node block and a data block are added */
  969. stats->bs_nblocks += 2;
  970. /* success */
  971. out:
  972. *levelp = level;
  973. return ret;
  974. /* error */
  975. err_out_curr_node:
  976. nilfs_bmap_abort_alloc_ptr(btree, &path[level].bp_newreq, dat);
  977. err_out_child_node:
  978. for (level--; level > NILFS_BTREE_LEVEL_DATA; level--) {
  979. nilfs_btnode_delete(path[level].bp_sib_bh);
  980. nilfs_bmap_abort_alloc_ptr(btree, &path[level].bp_newreq, dat);
  981. }
  982. nilfs_bmap_abort_alloc_ptr(btree, &path[level].bp_newreq, dat);
  983. err_out_data:
  984. *levelp = level;
  985. stats->bs_nblocks = 0;
  986. return ret;
  987. }
  988. static void nilfs_btree_commit_insert(struct nilfs_bmap *btree,
  989. struct nilfs_btree_path *path,
  990. int maxlevel, __u64 key, __u64 ptr)
  991. {
  992. struct inode *dat = NULL;
  993. int level;
  994. set_buffer_nilfs_volatile((struct buffer_head *)((unsigned long)ptr));
  995. ptr = path[NILFS_BTREE_LEVEL_DATA].bp_newreq.bpr_ptr;
  996. if (NILFS_BMAP_USE_VBN(btree)) {
  997. nilfs_bmap_set_target_v(btree, key, ptr);
  998. dat = nilfs_bmap_get_dat(btree);
  999. }
  1000. for (level = NILFS_BTREE_LEVEL_NODE_MIN; level <= maxlevel; level++) {
  1001. nilfs_bmap_commit_alloc_ptr(btree,
  1002. &path[level - 1].bp_newreq, dat);
  1003. path[level].bp_op(btree, path, level, &key, &ptr);
  1004. }
  1005. if (!nilfs_bmap_dirty(btree))
  1006. nilfs_bmap_set_dirty(btree);
  1007. }
  1008. static int nilfs_btree_insert(struct nilfs_bmap *btree, __u64 key, __u64 ptr)
  1009. {
  1010. struct nilfs_btree_path *path;
  1011. struct nilfs_bmap_stats stats;
  1012. int level, ret;
  1013. path = nilfs_btree_alloc_path();
  1014. if (path == NULL)
  1015. return -ENOMEM;
  1016. ret = nilfs_btree_do_lookup(btree, path, key, NULL,
  1017. NILFS_BTREE_LEVEL_NODE_MIN, 0);
  1018. if (ret != -ENOENT) {
  1019. if (ret == 0)
  1020. ret = -EEXIST;
  1021. goto out;
  1022. }
  1023. ret = nilfs_btree_prepare_insert(btree, path, &level, key, ptr, &stats);
  1024. if (ret < 0)
  1025. goto out;
  1026. nilfs_btree_commit_insert(btree, path, level, key, ptr);
  1027. nilfs_inode_add_blocks(btree->b_inode, stats.bs_nblocks);
  1028. out:
  1029. nilfs_btree_free_path(path);
  1030. return ret;
  1031. }
  1032. static void nilfs_btree_do_delete(struct nilfs_bmap *btree,
  1033. struct nilfs_btree_path *path,
  1034. int level, __u64 *keyp, __u64 *ptrp)
  1035. {
  1036. struct nilfs_btree_node *node;
  1037. int ncblk;
  1038. if (level < nilfs_btree_height(btree) - 1) {
  1039. node = nilfs_btree_get_nonroot_node(path, level);
  1040. ncblk = nilfs_btree_nchildren_per_block(btree);
  1041. nilfs_btree_node_delete(node, path[level].bp_index,
  1042. keyp, ptrp, ncblk);
  1043. if (!buffer_dirty(path[level].bp_bh))
  1044. mark_buffer_dirty(path[level].bp_bh);
  1045. if (path[level].bp_index == 0)
  1046. nilfs_btree_promote_key(btree, path, level + 1,
  1047. nilfs_btree_node_get_key(node, 0));
  1048. } else {
  1049. node = nilfs_btree_get_root(btree);
  1050. nilfs_btree_node_delete(node, path[level].bp_index,
  1051. keyp, ptrp,
  1052. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  1053. }
  1054. }
  1055. static void nilfs_btree_borrow_left(struct nilfs_bmap *btree,
  1056. struct nilfs_btree_path *path,
  1057. int level, __u64 *keyp, __u64 *ptrp)
  1058. {
  1059. struct nilfs_btree_node *node, *left;
  1060. int nchildren, lnchildren, n, ncblk;
  1061. nilfs_btree_do_delete(btree, path, level, keyp, ptrp);
  1062. node = nilfs_btree_get_nonroot_node(path, level);
  1063. left = nilfs_btree_get_sib_node(path, level);
  1064. nchildren = nilfs_btree_node_get_nchildren(node);
  1065. lnchildren = nilfs_btree_node_get_nchildren(left);
  1066. ncblk = nilfs_btree_nchildren_per_block(btree);
  1067. n = (nchildren + lnchildren) / 2 - nchildren;
  1068. nilfs_btree_node_move_right(left, node, n, ncblk, ncblk);
  1069. if (!buffer_dirty(path[level].bp_bh))
  1070. mark_buffer_dirty(path[level].bp_bh);
  1071. if (!buffer_dirty(path[level].bp_sib_bh))
  1072. mark_buffer_dirty(path[level].bp_sib_bh);
  1073. nilfs_btree_promote_key(btree, path, level + 1,
  1074. nilfs_btree_node_get_key(node, 0));
  1075. brelse(path[level].bp_sib_bh);
  1076. path[level].bp_sib_bh = NULL;
  1077. path[level].bp_index += n;
  1078. }
  1079. static void nilfs_btree_borrow_right(struct nilfs_bmap *btree,
  1080. struct nilfs_btree_path *path,
  1081. int level, __u64 *keyp, __u64 *ptrp)
  1082. {
  1083. struct nilfs_btree_node *node, *right;
  1084. int nchildren, rnchildren, n, ncblk;
  1085. nilfs_btree_do_delete(btree, path, level, keyp, ptrp);
  1086. node = nilfs_btree_get_nonroot_node(path, level);
  1087. right = nilfs_btree_get_sib_node(path, level);
  1088. nchildren = nilfs_btree_node_get_nchildren(node);
  1089. rnchildren = nilfs_btree_node_get_nchildren(right);
  1090. ncblk = nilfs_btree_nchildren_per_block(btree);
  1091. n = (nchildren + rnchildren) / 2 - nchildren;
  1092. nilfs_btree_node_move_left(node, right, n, ncblk, ncblk);
  1093. if (!buffer_dirty(path[level].bp_bh))
  1094. mark_buffer_dirty(path[level].bp_bh);
  1095. if (!buffer_dirty(path[level].bp_sib_bh))
  1096. mark_buffer_dirty(path[level].bp_sib_bh);
  1097. path[level + 1].bp_index++;
  1098. nilfs_btree_promote_key(btree, path, level + 1,
  1099. nilfs_btree_node_get_key(right, 0));
  1100. path[level + 1].bp_index--;
  1101. brelse(path[level].bp_sib_bh);
  1102. path[level].bp_sib_bh = NULL;
  1103. }
  1104. static void nilfs_btree_concat_left(struct nilfs_bmap *btree,
  1105. struct nilfs_btree_path *path,
  1106. int level, __u64 *keyp, __u64 *ptrp)
  1107. {
  1108. struct nilfs_btree_node *node, *left;
  1109. int n, ncblk;
  1110. nilfs_btree_do_delete(btree, path, level, keyp, ptrp);
  1111. node = nilfs_btree_get_nonroot_node(path, level);
  1112. left = nilfs_btree_get_sib_node(path, level);
  1113. ncblk = nilfs_btree_nchildren_per_block(btree);
  1114. n = nilfs_btree_node_get_nchildren(node);
  1115. nilfs_btree_node_move_left(left, node, n, ncblk, ncblk);
  1116. if (!buffer_dirty(path[level].bp_sib_bh))
  1117. mark_buffer_dirty(path[level].bp_sib_bh);
  1118. nilfs_btnode_delete(path[level].bp_bh);
  1119. path[level].bp_bh = path[level].bp_sib_bh;
  1120. path[level].bp_sib_bh = NULL;
  1121. path[level].bp_index += nilfs_btree_node_get_nchildren(left);
  1122. }
  1123. static void nilfs_btree_concat_right(struct nilfs_bmap *btree,
  1124. struct nilfs_btree_path *path,
  1125. int level, __u64 *keyp, __u64 *ptrp)
  1126. {
  1127. struct nilfs_btree_node *node, *right;
  1128. int n, ncblk;
  1129. nilfs_btree_do_delete(btree, path, level, keyp, ptrp);
  1130. node = nilfs_btree_get_nonroot_node(path, level);
  1131. right = nilfs_btree_get_sib_node(path, level);
  1132. ncblk = nilfs_btree_nchildren_per_block(btree);
  1133. n = nilfs_btree_node_get_nchildren(right);
  1134. nilfs_btree_node_move_left(node, right, n, ncblk, ncblk);
  1135. if (!buffer_dirty(path[level].bp_bh))
  1136. mark_buffer_dirty(path[level].bp_bh);
  1137. nilfs_btnode_delete(path[level].bp_sib_bh);
  1138. path[level].bp_sib_bh = NULL;
  1139. path[level + 1].bp_index++;
  1140. }
  1141. static void nilfs_btree_shrink(struct nilfs_bmap *btree,
  1142. struct nilfs_btree_path *path,
  1143. int level, __u64 *keyp, __u64 *ptrp)
  1144. {
  1145. struct nilfs_btree_node *root, *child;
  1146. int n, ncblk;
  1147. nilfs_btree_do_delete(btree, path, level, keyp, ptrp);
  1148. root = nilfs_btree_get_root(btree);
  1149. child = nilfs_btree_get_nonroot_node(path, level);
  1150. ncblk = nilfs_btree_nchildren_per_block(btree);
  1151. nilfs_btree_node_delete(root, 0, NULL, NULL,
  1152. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  1153. nilfs_btree_node_set_level(root, level);
  1154. n = nilfs_btree_node_get_nchildren(child);
  1155. nilfs_btree_node_move_left(root, child, n,
  1156. NILFS_BTREE_ROOT_NCHILDREN_MAX, ncblk);
  1157. nilfs_btnode_delete(path[level].bp_bh);
  1158. path[level].bp_bh = NULL;
  1159. }
  1160. static void nilfs_btree_nop(struct nilfs_bmap *btree,
  1161. struct nilfs_btree_path *path,
  1162. int level, __u64 *keyp, __u64 *ptrp)
  1163. {
  1164. }
  1165. static int nilfs_btree_prepare_delete(struct nilfs_bmap *btree,
  1166. struct nilfs_btree_path *path,
  1167. int *levelp,
  1168. struct nilfs_bmap_stats *stats,
  1169. struct inode *dat)
  1170. {
  1171. struct buffer_head *bh;
  1172. struct nilfs_btree_node *node, *parent, *sib;
  1173. __u64 sibptr;
  1174. int pindex, dindex, level, ncmin, ncmax, ncblk, ret;
  1175. ret = 0;
  1176. stats->bs_nblocks = 0;
  1177. ncmin = NILFS_BTREE_NODE_NCHILDREN_MIN(nilfs_btree_node_size(btree));
  1178. ncblk = nilfs_btree_nchildren_per_block(btree);
  1179. for (level = NILFS_BTREE_LEVEL_NODE_MIN, dindex = path[level].bp_index;
  1180. level < nilfs_btree_height(btree) - 1;
  1181. level++) {
  1182. node = nilfs_btree_get_nonroot_node(path, level);
  1183. path[level].bp_oldreq.bpr_ptr =
  1184. nilfs_btree_node_get_ptr(node, dindex, ncblk);
  1185. ret = nilfs_bmap_prepare_end_ptr(btree,
  1186. &path[level].bp_oldreq, dat);
  1187. if (ret < 0)
  1188. goto err_out_child_node;
  1189. if (nilfs_btree_node_get_nchildren(node) > ncmin) {
  1190. path[level].bp_op = nilfs_btree_do_delete;
  1191. stats->bs_nblocks++;
  1192. goto out;
  1193. }
  1194. parent = nilfs_btree_get_node(btree, path, level + 1, &ncmax);
  1195. pindex = path[level + 1].bp_index;
  1196. dindex = pindex;
  1197. if (pindex > 0) {
  1198. /* left sibling */
  1199. sibptr = nilfs_btree_node_get_ptr(parent, pindex - 1,
  1200. ncmax);
  1201. ret = nilfs_btree_get_block(btree, sibptr, &bh);
  1202. if (ret < 0)
  1203. goto err_out_curr_node;
  1204. sib = (struct nilfs_btree_node *)bh->b_data;
  1205. if (nilfs_btree_node_get_nchildren(sib) > ncmin) {
  1206. path[level].bp_sib_bh = bh;
  1207. path[level].bp_op = nilfs_btree_borrow_left;
  1208. stats->bs_nblocks++;
  1209. goto out;
  1210. } else {
  1211. path[level].bp_sib_bh = bh;
  1212. path[level].bp_op = nilfs_btree_concat_left;
  1213. stats->bs_nblocks++;
  1214. /* continue; */
  1215. }
  1216. } else if (pindex <
  1217. nilfs_btree_node_get_nchildren(parent) - 1) {
  1218. /* right sibling */
  1219. sibptr = nilfs_btree_node_get_ptr(parent, pindex + 1,
  1220. ncmax);
  1221. ret = nilfs_btree_get_block(btree, sibptr, &bh);
  1222. if (ret < 0)
  1223. goto err_out_curr_node;
  1224. sib = (struct nilfs_btree_node *)bh->b_data;
  1225. if (nilfs_btree_node_get_nchildren(sib) > ncmin) {
  1226. path[level].bp_sib_bh = bh;
  1227. path[level].bp_op = nilfs_btree_borrow_right;
  1228. stats->bs_nblocks++;
  1229. goto out;
  1230. } else {
  1231. path[level].bp_sib_bh = bh;
  1232. path[level].bp_op = nilfs_btree_concat_right;
  1233. stats->bs_nblocks++;
  1234. /*
  1235. * When merging right sibling node
  1236. * into the current node, pointer to
  1237. * the right sibling node must be
  1238. * terminated instead. The adjustment
  1239. * below is required for that.
  1240. */
  1241. dindex = pindex + 1;
  1242. /* continue; */
  1243. }
  1244. } else {
  1245. /* no siblings */
  1246. /* the only child of the root node */
  1247. WARN_ON(level != nilfs_btree_height(btree) - 2);
  1248. if (nilfs_btree_node_get_nchildren(node) - 1 <=
  1249. NILFS_BTREE_ROOT_NCHILDREN_MAX) {
  1250. path[level].bp_op = nilfs_btree_shrink;
  1251. stats->bs_nblocks += 2;
  1252. level++;
  1253. path[level].bp_op = nilfs_btree_nop;
  1254. goto shrink_root_child;
  1255. } else {
  1256. path[level].bp_op = nilfs_btree_do_delete;
  1257. stats->bs_nblocks++;
  1258. goto out;
  1259. }
  1260. }
  1261. }
  1262. /* child of the root node is deleted */
  1263. path[level].bp_op = nilfs_btree_do_delete;
  1264. stats->bs_nblocks++;
  1265. shrink_root_child:
  1266. node = nilfs_btree_get_root(btree);
  1267. path[level].bp_oldreq.bpr_ptr =
  1268. nilfs_btree_node_get_ptr(node, dindex,
  1269. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  1270. ret = nilfs_bmap_prepare_end_ptr(btree, &path[level].bp_oldreq, dat);
  1271. if (ret < 0)
  1272. goto err_out_child_node;
  1273. /* success */
  1274. out:
  1275. *levelp = level;
  1276. return ret;
  1277. /* error */
  1278. err_out_curr_node:
  1279. nilfs_bmap_abort_end_ptr(btree, &path[level].bp_oldreq, dat);
  1280. err_out_child_node:
  1281. for (level--; level >= NILFS_BTREE_LEVEL_NODE_MIN; level--) {
  1282. brelse(path[level].bp_sib_bh);
  1283. nilfs_bmap_abort_end_ptr(btree, &path[level].bp_oldreq, dat);
  1284. }
  1285. *levelp = level;
  1286. stats->bs_nblocks = 0;
  1287. return ret;
  1288. }
  1289. static void nilfs_btree_commit_delete(struct nilfs_bmap *btree,
  1290. struct nilfs_btree_path *path,
  1291. int maxlevel, struct inode *dat)
  1292. {
  1293. int level;
  1294. for (level = NILFS_BTREE_LEVEL_NODE_MIN; level <= maxlevel; level++) {
  1295. nilfs_bmap_commit_end_ptr(btree, &path[level].bp_oldreq, dat);
  1296. path[level].bp_op(btree, path, level, NULL, NULL);
  1297. }
  1298. if (!nilfs_bmap_dirty(btree))
  1299. nilfs_bmap_set_dirty(btree);
  1300. }
  1301. static int nilfs_btree_delete(struct nilfs_bmap *btree, __u64 key)
  1302. {
  1303. struct nilfs_btree_path *path;
  1304. struct nilfs_bmap_stats stats;
  1305. struct inode *dat;
  1306. int level, ret;
  1307. path = nilfs_btree_alloc_path();
  1308. if (path == NULL)
  1309. return -ENOMEM;
  1310. ret = nilfs_btree_do_lookup(btree, path, key, NULL,
  1311. NILFS_BTREE_LEVEL_NODE_MIN, 0);
  1312. if (ret < 0)
  1313. goto out;
  1314. dat = NILFS_BMAP_USE_VBN(btree) ? nilfs_bmap_get_dat(btree) : NULL;
  1315. ret = nilfs_btree_prepare_delete(btree, path, &level, &stats, dat);
  1316. if (ret < 0)
  1317. goto out;
  1318. nilfs_btree_commit_delete(btree, path, level, dat);
  1319. nilfs_inode_sub_blocks(btree->b_inode, stats.bs_nblocks);
  1320. out:
  1321. nilfs_btree_free_path(path);
  1322. return ret;
  1323. }
  1324. static int nilfs_btree_last_key(const struct nilfs_bmap *btree, __u64 *keyp)
  1325. {
  1326. struct nilfs_btree_path *path;
  1327. int ret;
  1328. path = nilfs_btree_alloc_path();
  1329. if (path == NULL)
  1330. return -ENOMEM;
  1331. ret = nilfs_btree_do_lookup_last(btree, path, keyp, NULL);
  1332. nilfs_btree_free_path(path);
  1333. return ret;
  1334. }
  1335. static int nilfs_btree_check_delete(struct nilfs_bmap *btree, __u64 key)
  1336. {
  1337. struct buffer_head *bh;
  1338. struct nilfs_btree_node *root, *node;
  1339. __u64 maxkey, nextmaxkey;
  1340. __u64 ptr;
  1341. int nchildren, ret;
  1342. root = nilfs_btree_get_root(btree);
  1343. switch (nilfs_btree_height(btree)) {
  1344. case 2:
  1345. bh = NULL;
  1346. node = root;
  1347. break;
  1348. case 3:
  1349. nchildren = nilfs_btree_node_get_nchildren(root);
  1350. if (nchildren > 1)
  1351. return 0;
  1352. ptr = nilfs_btree_node_get_ptr(root, nchildren - 1,
  1353. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  1354. ret = nilfs_btree_get_block(btree, ptr, &bh);
  1355. if (ret < 0)
  1356. return ret;
  1357. node = (struct nilfs_btree_node *)bh->b_data;
  1358. break;
  1359. default:
  1360. return 0;
  1361. }
  1362. nchildren = nilfs_btree_node_get_nchildren(node);
  1363. maxkey = nilfs_btree_node_get_key(node, nchildren - 1);
  1364. nextmaxkey = (nchildren > 1) ?
  1365. nilfs_btree_node_get_key(node, nchildren - 2) : 0;
  1366. if (bh != NULL)
  1367. brelse(bh);
  1368. return (maxkey == key) && (nextmaxkey < NILFS_BMAP_LARGE_LOW);
  1369. }
  1370. static int nilfs_btree_gather_data(struct nilfs_bmap *btree,
  1371. __u64 *keys, __u64 *ptrs, int nitems)
  1372. {
  1373. struct buffer_head *bh;
  1374. struct nilfs_btree_node *node, *root;
  1375. __le64 *dkeys;
  1376. __le64 *dptrs;
  1377. __u64 ptr;
  1378. int nchildren, ncmax, i, ret;
  1379. root = nilfs_btree_get_root(btree);
  1380. switch (nilfs_btree_height(btree)) {
  1381. case 2:
  1382. bh = NULL;
  1383. node = root;
  1384. ncmax = NILFS_BTREE_ROOT_NCHILDREN_MAX;
  1385. break;
  1386. case 3:
  1387. nchildren = nilfs_btree_node_get_nchildren(root);
  1388. WARN_ON(nchildren > 1);
  1389. ptr = nilfs_btree_node_get_ptr(root, nchildren - 1,
  1390. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  1391. ret = nilfs_btree_get_block(btree, ptr, &bh);
  1392. if (ret < 0)
  1393. return ret;
  1394. node = (struct nilfs_btree_node *)bh->b_data;
  1395. ncmax = nilfs_btree_nchildren_per_block(btree);
  1396. break;
  1397. default:
  1398. node = NULL;
  1399. return -EINVAL;
  1400. }
  1401. nchildren = nilfs_btree_node_get_nchildren(node);
  1402. if (nchildren < nitems)
  1403. nitems = nchildren;
  1404. dkeys = nilfs_btree_node_dkeys(node);
  1405. dptrs = nilfs_btree_node_dptrs(node, ncmax);
  1406. for (i = 0; i < nitems; i++) {
  1407. keys[i] = le64_to_cpu(dkeys[i]);
  1408. ptrs[i] = le64_to_cpu(dptrs[i]);
  1409. }
  1410. if (bh != NULL)
  1411. brelse(bh);
  1412. return nitems;
  1413. }
  1414. static int
  1415. nilfs_btree_prepare_convert_and_insert(struct nilfs_bmap *btree, __u64 key,
  1416. union nilfs_bmap_ptr_req *dreq,
  1417. union nilfs_bmap_ptr_req *nreq,
  1418. struct buffer_head **bhp,
  1419. struct nilfs_bmap_stats *stats)
  1420. {
  1421. struct buffer_head *bh;
  1422. struct inode *dat = NULL;
  1423. int ret;
  1424. stats->bs_nblocks = 0;
  1425. /* for data */
  1426. /* cannot find near ptr */
  1427. if (NILFS_BMAP_USE_VBN(btree)) {
  1428. dreq->bpr_ptr = nilfs_btree_find_target_v(btree, NULL, key);
  1429. dat = nilfs_bmap_get_dat(btree);
  1430. }
  1431. ret = nilfs_bmap_prepare_alloc_ptr(btree, dreq, dat);
  1432. if (ret < 0)
  1433. return ret;
  1434. *bhp = NULL;
  1435. stats->bs_nblocks++;
  1436. if (nreq != NULL) {
  1437. nreq->bpr_ptr = dreq->bpr_ptr + 1;
  1438. ret = nilfs_bmap_prepare_alloc_ptr(btree, nreq, dat);
  1439. if (ret < 0)
  1440. goto err_out_dreq;
  1441. ret = nilfs_btree_get_new_block(btree, nreq->bpr_ptr, &bh);
  1442. if (ret < 0)
  1443. goto err_out_nreq;
  1444. *bhp = bh;
  1445. stats->bs_nblocks++;
  1446. }
  1447. /* success */
  1448. return 0;
  1449. /* error */
  1450. err_out_nreq:
  1451. nilfs_bmap_abort_alloc_ptr(btree, nreq, dat);
  1452. err_out_dreq:
  1453. nilfs_bmap_abort_alloc_ptr(btree, dreq, dat);
  1454. stats->bs_nblocks = 0;
  1455. return ret;
  1456. }
  1457. static void
  1458. nilfs_btree_commit_convert_and_insert(struct nilfs_bmap *btree,
  1459. __u64 key, __u64 ptr,
  1460. const __u64 *keys, const __u64 *ptrs,
  1461. int n,
  1462. union nilfs_bmap_ptr_req *dreq,
  1463. union nilfs_bmap_ptr_req *nreq,
  1464. struct buffer_head *bh)
  1465. {
  1466. struct nilfs_btree_node *node;
  1467. struct inode *dat;
  1468. __u64 tmpptr;
  1469. int ncblk;
  1470. /* free resources */
  1471. if (btree->b_ops->bop_clear != NULL)
  1472. btree->b_ops->bop_clear(btree);
  1473. /* ptr must be a pointer to a buffer head. */
  1474. set_buffer_nilfs_volatile((struct buffer_head *)((unsigned long)ptr));
  1475. /* convert and insert */
  1476. dat = NILFS_BMAP_USE_VBN(btree) ? nilfs_bmap_get_dat(btree) : NULL;
  1477. __nilfs_btree_init(btree);
  1478. if (nreq != NULL) {
  1479. nilfs_bmap_commit_alloc_ptr(btree, dreq, dat);
  1480. nilfs_bmap_commit_alloc_ptr(btree, nreq, dat);
  1481. /* create child node at level 1 */
  1482. node = (struct nilfs_btree_node *)bh->b_data;
  1483. ncblk = nilfs_btree_nchildren_per_block(btree);
  1484. nilfs_btree_node_init(node, 0, 1, n, ncblk, keys, ptrs);
  1485. nilfs_btree_node_insert(node, n, key, dreq->bpr_ptr, ncblk);
  1486. if (!buffer_dirty(bh))
  1487. mark_buffer_dirty(bh);
  1488. if (!nilfs_bmap_dirty(btree))
  1489. nilfs_bmap_set_dirty(btree);
  1490. brelse(bh);
  1491. /* create root node at level 2 */
  1492. node = nilfs_btree_get_root(btree);
  1493. tmpptr = nreq->bpr_ptr;
  1494. nilfs_btree_node_init(node, NILFS_BTREE_NODE_ROOT, 2, 1,
  1495. NILFS_BTREE_ROOT_NCHILDREN_MAX,
  1496. &keys[0], &tmpptr);
  1497. } else {
  1498. nilfs_bmap_commit_alloc_ptr(btree, dreq, dat);
  1499. /* create root node at level 1 */
  1500. node = nilfs_btree_get_root(btree);
  1501. nilfs_btree_node_init(node, NILFS_BTREE_NODE_ROOT, 1, n,
  1502. NILFS_BTREE_ROOT_NCHILDREN_MAX,
  1503. keys, ptrs);
  1504. nilfs_btree_node_insert(node, n, key, dreq->bpr_ptr,
  1505. NILFS_BTREE_ROOT_NCHILDREN_MAX);
  1506. if (!nilfs_bmap_dirty(btree))
  1507. nilfs_bmap_set_dirty(btree);
  1508. }
  1509. if (NILFS_BMAP_USE_VBN(btree))
  1510. nilfs_bmap_set_target_v(btree, key, dreq->bpr_ptr);
  1511. }
  1512. /**
  1513. * nilfs_btree_convert_and_insert -
  1514. * @bmap:
  1515. * @key:
  1516. * @ptr:
  1517. * @keys:
  1518. * @ptrs:
  1519. * @n:
  1520. */
  1521. int nilfs_btree_convert_and_insert(struct nilfs_bmap *btree,
  1522. __u64 key, __u64 ptr,
  1523. const __u64 *keys, const __u64 *ptrs, int n)
  1524. {
  1525. struct buffer_head *bh;
  1526. union nilfs_bmap_ptr_req dreq, nreq, *di, *ni;
  1527. struct nilfs_bmap_stats stats;
  1528. int ret;
  1529. if (n + 1 <= NILFS_BTREE_ROOT_NCHILDREN_MAX) {
  1530. di = &dreq;
  1531. ni = NULL;
  1532. } else if ((n + 1) <= NILFS_BTREE_NODE_NCHILDREN_MAX(
  1533. 1 << btree->b_inode->i_blkbits)) {
  1534. di = &dreq;
  1535. ni = &nreq;
  1536. } else {
  1537. di = NULL;
  1538. ni = NULL;
  1539. BUG();
  1540. }
  1541. ret = nilfs_btree_prepare_convert_and_insert(btree, key, di, ni, &bh,
  1542. &stats);
  1543. if (ret < 0)
  1544. return ret;
  1545. nilfs_btree_commit_convert_and_insert(btree, key, ptr, keys, ptrs, n,
  1546. di, ni, bh);
  1547. nilfs_inode_add_blocks(btree->b_inode, stats.bs_nblocks);
  1548. return 0;
  1549. }
  1550. static int nilfs_btree_propagate_p(struct nilfs_bmap *btree,
  1551. struct nilfs_btree_path *path,
  1552. int level,
  1553. struct buffer_head *bh)
  1554. {
  1555. while ((++level < nilfs_btree_height(btree) - 1) &&
  1556. !buffer_dirty(path[level].bp_bh))
  1557. mark_buffer_dirty(path[level].bp_bh);
  1558. return 0;
  1559. }
  1560. static int nilfs_btree_prepare_update_v(struct nilfs_bmap *btree,
  1561. struct nilfs_btree_path *path,
  1562. int level, struct inode *dat)
  1563. {
  1564. struct nilfs_btree_node *parent;
  1565. int ncmax, ret;
  1566. parent = nilfs_btree_get_node(btree, path, level + 1, &ncmax);
  1567. path[level].bp_oldreq.bpr_ptr =
  1568. nilfs_btree_node_get_ptr(parent, path[level + 1].bp_index,
  1569. ncmax);
  1570. path[level].bp_newreq.bpr_ptr = path[level].bp_oldreq.bpr_ptr + 1;
  1571. ret = nilfs_dat_prepare_update(dat, &path[level].bp_oldreq.bpr_req,
  1572. &path[level].bp_newreq.bpr_req);
  1573. if (ret < 0)
  1574. return ret;
  1575. if (buffer_nilfs_node(path[level].bp_bh)) {
  1576. path[level].bp_ctxt.oldkey = path[level].bp_oldreq.bpr_ptr;
  1577. path[level].bp_ctxt.newkey = path[level].bp_newreq.bpr_ptr;
  1578. path[level].bp_ctxt.bh = path[level].bp_bh;
  1579. ret = nilfs_btnode_prepare_change_key(
  1580. &NILFS_BMAP_I(btree)->i_btnode_cache,
  1581. &path[level].bp_ctxt);
  1582. if (ret < 0) {
  1583. nilfs_dat_abort_update(dat,
  1584. &path[level].bp_oldreq.bpr_req,
  1585. &path[level].bp_newreq.bpr_req);
  1586. return ret;
  1587. }
  1588. }
  1589. return 0;
  1590. }
  1591. static void nilfs_btree_commit_update_v(struct nilfs_bmap *btree,
  1592. struct nilfs_btree_path *path,
  1593. int level, struct inode *dat)
  1594. {
  1595. struct nilfs_btree_node *parent;
  1596. int ncmax;
  1597. nilfs_dat_commit_update(dat, &path[level].bp_oldreq.bpr_req,
  1598. &path[level].bp_newreq.bpr_req,
  1599. btree->b_ptr_type == NILFS_BMAP_PTR_VS);
  1600. if (buffer_nilfs_node(path[level].bp_bh)) {
  1601. nilfs_btnode_commit_change_key(
  1602. &NILFS_BMAP_I(btree)->i_btnode_cache,
  1603. &path[level].bp_ctxt);
  1604. path[level].bp_bh = path[level].bp_ctxt.bh;
  1605. }
  1606. set_buffer_nilfs_volatile(path[level].bp_bh);
  1607. parent = nilfs_btree_get_node(btree, path, level + 1, &ncmax);
  1608. nilfs_btree_node_set_ptr(parent, path[level + 1].bp_index,
  1609. path[level].bp_newreq.bpr_ptr, ncmax);
  1610. }
  1611. static void nilfs_btree_abort_update_v(struct nilfs_bmap *btree,
  1612. struct nilfs_btree_path *path,
  1613. int level, struct inode *dat)
  1614. {
  1615. nilfs_dat_abort_update(dat, &path[level].bp_oldreq.bpr_req,
  1616. &path[level].bp_newreq.bpr_req);
  1617. if (buffer_nilfs_node(path[level].bp_bh))
  1618. nilfs_btnode_abort_change_key(
  1619. &NILFS_BMAP_I(btree)->i_btnode_cache,
  1620. &path[level].bp_ctxt);
  1621. }
  1622. static int nilfs_btree_prepare_propagate_v(struct nilfs_bmap *btree,
  1623. struct nilfs_btree_path *path,
  1624. int minlevel, int *maxlevelp,
  1625. struct inode *dat)
  1626. {
  1627. int level, ret;
  1628. level = minlevel;
  1629. if (!buffer_nilfs_volatile(path[level].bp_bh)) {
  1630. ret = nilfs_btree_prepare_update_v(btree, path, level, dat);
  1631. if (ret < 0)
  1632. return ret;
  1633. }
  1634. while ((++level < nilfs_btree_height(btree) - 1) &&
  1635. !buffer_dirty(path[level].bp_bh)) {
  1636. WARN_ON(buffer_nilfs_volatile(path[level].bp_bh));
  1637. ret = nilfs_btree_prepare_update_v(btree, path, level, dat);
  1638. if (ret < 0)
  1639. goto out;
  1640. }
  1641. /* success */
  1642. *maxlevelp = level - 1;
  1643. return 0;
  1644. /* error */
  1645. out:
  1646. while (--level > minlevel)
  1647. nilfs_btree_abort_update_v(btree, path, level, dat);
  1648. if (!buffer_nilfs_volatile(path[level].bp_bh))
  1649. nilfs_btree_abort_update_v(btree, path, level, dat);
  1650. return ret;
  1651. }
  1652. static void nilfs_btree_commit_propagate_v(struct nilfs_bmap *btree,
  1653. struct nilfs_btree_path *path,
  1654. int minlevel, int maxlevel,
  1655. struct buffer_head *bh,
  1656. struct inode *dat)
  1657. {
  1658. int level;
  1659. if (!buffer_nilfs_volatile(path[minlevel].bp_bh))
  1660. nilfs_btree_commit_update_v(btree, path, minlevel, dat);
  1661. for (level = minlevel + 1; level <= maxlevel; level++)
  1662. nilfs_btree_commit_update_v(btree, path, level, dat);
  1663. }
  1664. static int nilfs_btree_propagate_v(struct nilfs_bmap *btree,
  1665. struct nilfs_btree_path *path,
  1666. int level, struct buffer_head *bh)
  1667. {
  1668. int maxlevel = 0, ret;
  1669. struct nilfs_btree_node *parent;
  1670. struct inode *dat = nilfs_bmap_get_dat(btree);
  1671. __u64 ptr;
  1672. int ncmax;
  1673. get_bh(bh);
  1674. path[level].bp_bh = bh;
  1675. ret = nilfs_btree_prepare_propagate_v(btree, path, level, &maxlevel,
  1676. dat);
  1677. if (ret < 0)
  1678. goto out;
  1679. if (buffer_nilfs_volatile(path[level].bp_bh)) {
  1680. parent = nilfs_btree_get_node(btree, path, level + 1, &ncmax);
  1681. ptr = nilfs_btree_node_get_ptr(parent,
  1682. path[level + 1].bp_index,
  1683. ncmax);
  1684. ret = nilfs_dat_mark_dirty(dat, ptr);
  1685. if (ret < 0)
  1686. goto out;
  1687. }
  1688. nilfs_btree_commit_propagate_v(btree, path, level, maxlevel, bh, dat);
  1689. out:
  1690. brelse(path[level].bp_bh);
  1691. path[level].bp_bh = NULL;
  1692. return ret;
  1693. }
  1694. static int nilfs_btree_propagate(struct nilfs_bmap *btree,
  1695. struct buffer_head *bh)
  1696. {
  1697. struct nilfs_btree_path *path;
  1698. struct nilfs_btree_node *node;
  1699. __u64 key;
  1700. int level, ret;
  1701. WARN_ON(!buffer_dirty(bh));
  1702. path = nilfs_btree_alloc_path();
  1703. if (path == NULL)
  1704. return -ENOMEM;
  1705. if (buffer_nilfs_node(bh)) {
  1706. node = (struct nilfs_btree_node *)bh->b_data;
  1707. key = nilfs_btree_node_get_key(node, 0);
  1708. level = nilfs_btree_node_get_level(node);
  1709. } else {
  1710. key = nilfs_bmap_data_get_key(btree, bh);
  1711. level = NILFS_BTREE_LEVEL_DATA;
  1712. }
  1713. ret = nilfs_btree_do_lookup(btree, path, key, NULL, level + 1, 0);
  1714. if (ret < 0) {
  1715. if (unlikely(ret == -ENOENT))
  1716. printk(KERN_CRIT "%s: key = %llu, level == %d\n",
  1717. __func__, (unsigned long long)key, level);
  1718. goto out;
  1719. }
  1720. ret = NILFS_BMAP_USE_VBN(btree) ?
  1721. nilfs_btree_propagate_v(btree, path, level, bh) :
  1722. nilfs_btree_propagate_p(btree, path, level, bh);
  1723. out:
  1724. nilfs_btree_free_path(path);
  1725. return ret;
  1726. }
  1727. static int nilfs_btree_propagate_gc(struct nilfs_bmap *btree,
  1728. struct buffer_head *bh)
  1729. {
  1730. return nilfs_dat_mark_dirty(nilfs_bmap_get_dat(btree), bh->b_blocknr);
  1731. }
  1732. static void nilfs_btree_add_dirty_buffer(struct nilfs_bmap *btree,
  1733. struct list_head *lists,
  1734. struct buffer_head *bh)
  1735. {
  1736. struct list_head *head;
  1737. struct buffer_head *cbh;
  1738. struct nilfs_btree_node *node, *cnode;
  1739. __u64 key, ckey;
  1740. int level;
  1741. get_bh(bh);
  1742. node = (struct nilfs_btree_node *)bh->b_data;
  1743. key = nilfs_btree_node_get_key(node, 0);
  1744. level = nilfs_btree_node_get_level(node);
  1745. if (level < NILFS_BTREE_LEVEL_NODE_MIN ||
  1746. level >= NILFS_BTREE_LEVEL_MAX) {
  1747. dump_stack();
  1748. printk(KERN_WARNING
  1749. "%s: invalid btree level: %d (key=%llu, ino=%lu, "
  1750. "blocknr=%llu)\n",
  1751. __func__, level, (unsigned long long)key,
  1752. NILFS_BMAP_I(btree)->vfs_inode.i_ino,
  1753. (unsigned long long)bh->b_blocknr);
  1754. return;
  1755. }
  1756. list_for_each(head, &lists[level]) {
  1757. cbh = list_entry(head, struct buffer_head, b_assoc_buffers);
  1758. cnode = (struct nilfs_btree_node *)cbh->b_data;
  1759. ckey = nilfs_btree_node_get_key(cnode, 0);
  1760. if (key < ckey)
  1761. break;
  1762. }
  1763. list_add_tail(&bh->b_assoc_buffers, head);
  1764. }
  1765. static void nilfs_btree_lookup_dirty_buffers(struct nilfs_bmap *btree,
  1766. struct list_head *listp)
  1767. {
  1768. struct address_space *btcache = &NILFS_BMAP_I(btree)->i_btnode_cache;
  1769. struct list_head lists[NILFS_BTREE_LEVEL_MAX];
  1770. struct pagevec pvec;
  1771. struct buffer_head *bh, *head;
  1772. pgoff_t index = 0;
  1773. int level, i;
  1774. for (level = NILFS_BTREE_LEVEL_NODE_MIN;
  1775. level < NILFS_BTREE_LEVEL_MAX;
  1776. level++)
  1777. INIT_LIST_HEAD(&lists[level]);
  1778. pagevec_init(&pvec, 0);
  1779. while (pagevec_lookup_tag(&pvec, btcache, &index, PAGECACHE_TAG_DIRTY,
  1780. PAGEVEC_SIZE)) {
  1781. for (i = 0; i < pagevec_count(&pvec); i++) {
  1782. bh = head = page_buffers(pvec.pages[i]);
  1783. do {
  1784. if (buffer_dirty(bh))
  1785. nilfs_btree_add_dirty_buffer(btree,
  1786. lists, bh);
  1787. } while ((bh = bh->b_this_page) != head);
  1788. }
  1789. pagevec_release(&pvec);
  1790. cond_resched();
  1791. }
  1792. for (level = NILFS_BTREE_LEVEL_NODE_MIN;
  1793. level < NILFS_BTREE_LEVEL_MAX;
  1794. level++)
  1795. list_splice_tail(&lists[level], listp);
  1796. }
  1797. static int nilfs_btree_assign_p(struct nilfs_bmap *btree,
  1798. struct nilfs_btree_path *path,
  1799. int level,
  1800. struct buffer_head **bh,
  1801. sector_t blocknr,
  1802. union nilfs_binfo *binfo)
  1803. {
  1804. struct nilfs_btree_node *parent;
  1805. __u64 key;
  1806. __u64 ptr;
  1807. int ncmax, ret;
  1808. parent = nilfs_btree_get_node(btree, path, level + 1, &ncmax);
  1809. ptr = nilfs_btree_node_get_ptr(parent, path[level + 1].bp_index,
  1810. ncmax);
  1811. if (buffer_nilfs_node(*bh)) {
  1812. path[level].bp_ctxt.oldkey = ptr;
  1813. path[level].bp_ctxt.newkey = blocknr;
  1814. path[level].bp_ctxt.bh = *bh;
  1815. ret = nilfs_btnode_prepare_change_key(
  1816. &NILFS_BMAP_I(btree)->i_btnode_cache,
  1817. &path[level].bp_ctxt);
  1818. if (ret < 0)
  1819. return ret;
  1820. nilfs_btnode_commit_change_key(
  1821. &NILFS_BMAP_I(btree)->i_btnode_cache,
  1822. &path[level].bp_ctxt);
  1823. *bh = path[level].bp_ctxt.bh;
  1824. }
  1825. nilfs_btree_node_set_ptr(parent, path[level + 1].bp_index, blocknr,
  1826. ncmax);
  1827. key = nilfs_btree_node_get_key(parent, path[level + 1].bp_index);
  1828. /* on-disk format */
  1829. binfo->bi_dat.bi_blkoff = cpu_to_le64(key);
  1830. binfo->bi_dat.bi_level = level;
  1831. return 0;
  1832. }
  1833. static int nilfs_btree_assign_v(struct nilfs_bmap *btree,
  1834. struct nilfs_btree_path *path,
  1835. int level,
  1836. struct buffer_head **bh,
  1837. sector_t blocknr,
  1838. union nilfs_binfo *binfo)
  1839. {
  1840. struct nilfs_btree_node *parent;
  1841. struct inode *dat = nilfs_bmap_get_dat(btree);
  1842. __u64 key;
  1843. __u64 ptr;
  1844. union nilfs_bmap_ptr_req req;
  1845. int ncmax, ret;
  1846. parent = nilfs_btree_get_node(btree, path, level + 1, &ncmax);
  1847. ptr = nilfs_btree_node_get_ptr(parent, path[level + 1].bp_index,
  1848. ncmax);
  1849. req.bpr_ptr = ptr;
  1850. ret = nilfs_dat_prepare_start(dat, &req.bpr_req);
  1851. if (ret < 0)
  1852. return ret;
  1853. nilfs_dat_commit_start(dat, &req.bpr_req, blocknr);
  1854. key = nilfs_btree_node_get_key(parent, path[level + 1].bp_index);
  1855. /* on-disk format */
  1856. binfo->bi_v.bi_vblocknr = cpu_to_le64(ptr);
  1857. binfo->bi_v.bi_blkoff = cpu_to_le64(key);
  1858. return 0;
  1859. }
  1860. static int nilfs_btree_assign(struct nilfs_bmap *btree,
  1861. struct buffer_head **bh,
  1862. sector_t blocknr,
  1863. union nilfs_binfo *binfo)
  1864. {
  1865. struct nilfs_btree_path *path;
  1866. struct nilfs_btree_node *node;
  1867. __u64 key;
  1868. int level, ret;
  1869. path = nilfs_btree_alloc_path();
  1870. if (path == NULL)
  1871. return -ENOMEM;
  1872. if (buffer_nilfs_node(*bh)) {
  1873. node = (struct nilfs_btree_node *)(*bh)->b_data;
  1874. key = nilfs_btree_node_get_key(node, 0);
  1875. level = nilfs_btree_node_get_level(node);
  1876. } else {
  1877. key = nilfs_bmap_data_get_key(btree, *bh);
  1878. level = NILFS_BTREE_LEVEL_DATA;
  1879. }
  1880. ret = nilfs_btree_do_lookup(btree, path, key, NULL, level + 1, 0);
  1881. if (ret < 0) {
  1882. WARN_ON(ret == -ENOENT);
  1883. goto out;
  1884. }
  1885. ret = NILFS_BMAP_USE_VBN(btree) ?
  1886. nilfs_btree_assign_v(btree, path, level, bh, blocknr, binfo) :
  1887. nilfs_btree_assign_p(btree, path, level, bh, blocknr, binfo);
  1888. out:
  1889. nilfs_btree_free_path(path);
  1890. return ret;
  1891. }
  1892. static int nilfs_btree_assign_gc(struct nilfs_bmap *btree,
  1893. struct buffer_head **bh,
  1894. sector_t blocknr,
  1895. union nilfs_binfo *binfo)
  1896. {
  1897. struct nilfs_btree_node *node;
  1898. __u64 key;
  1899. int ret;
  1900. ret = nilfs_dat_move(nilfs_bmap_get_dat(btree), (*bh)->b_blocknr,
  1901. blocknr);
  1902. if (ret < 0)
  1903. return ret;
  1904. if (buffer_nilfs_node(*bh)) {
  1905. node = (struct nilfs_btree_node *)(*bh)->b_data;
  1906. key = nilfs_btree_node_get_key(node, 0);
  1907. } else
  1908. key = nilfs_bmap_data_get_key(btree, *bh);
  1909. /* on-disk format */
  1910. binfo->bi_v.bi_vblocknr = cpu_to_le64((*bh)->b_blocknr);
  1911. binfo->bi_v.bi_blkoff = cpu_to_le64(key);
  1912. return 0;
  1913. }
  1914. static int nilfs_btree_mark(struct nilfs_bmap *btree, __u64 key, int level)
  1915. {
  1916. struct buffer_head *bh;
  1917. struct nilfs_btree_path *path;
  1918. __u64 ptr;
  1919. int ret;
  1920. path = nilfs_btree_alloc_path();
  1921. if (path == NULL)
  1922. return -ENOMEM;
  1923. ret = nilfs_btree_do_lookup(btree, path, key, &ptr, level + 1, 0);
  1924. if (ret < 0) {
  1925. WARN_ON(ret == -ENOENT);
  1926. goto out;
  1927. }
  1928. ret = nilfs_btree_get_block(btree, ptr, &bh);
  1929. if (ret < 0) {
  1930. WARN_ON(ret == -ENOENT);
  1931. goto out;
  1932. }
  1933. if (!buffer_dirty(bh))
  1934. mark_buffer_dirty(bh);
  1935. brelse(bh);
  1936. if (!nilfs_bmap_dirty(btree))
  1937. nilfs_bmap_set_dirty(btree);
  1938. out:
  1939. nilfs_btree_free_path(path);
  1940. return ret;
  1941. }
  1942. static const struct nilfs_bmap_operations nilfs_btree_ops = {
  1943. .bop_lookup = nilfs_btree_lookup,
  1944. .bop_lookup_contig = nilfs_btree_lookup_contig,
  1945. .bop_insert = nilfs_btree_insert,
  1946. .bop_delete = nilfs_btree_delete,
  1947. .bop_clear = NULL,
  1948. .bop_propagate = nilfs_btree_propagate,
  1949. .bop_lookup_dirty_buffers = nilfs_btree_lookup_dirty_buffers,
  1950. .bop_assign = nilfs_btree_assign,
  1951. .bop_mark = nilfs_btree_mark,
  1952. .bop_last_key = nilfs_btree_last_key,
  1953. .bop_check_insert = NULL,
  1954. .bop_check_delete = nilfs_btree_check_delete,
  1955. .bop_gather_data = nilfs_btree_gather_data,
  1956. };
  1957. static const struct nilfs_bmap_operations nilfs_btree_ops_gc = {
  1958. .bop_lookup = NULL,
  1959. .bop_lookup_contig = NULL,
  1960. .bop_insert = NULL,
  1961. .bop_delete = NULL,
  1962. .bop_clear = NULL,
  1963. .bop_propagate = nilfs_btree_propagate_gc,
  1964. .bop_lookup_dirty_buffers = nilfs_btree_lookup_dirty_buffers,
  1965. .bop_assign = nilfs_btree_assign_gc,
  1966. .bop_mark = NULL,
  1967. .bop_last_key = NULL,
  1968. .bop_check_insert = NULL,
  1969. .bop_check_delete = NULL,
  1970. .bop_gather_data = NULL,
  1971. };
  1972. static void __nilfs_btree_init(struct nilfs_bmap *bmap)
  1973. {
  1974. bmap->b_ops = &nilfs_btree_ops;
  1975. bmap->b_nchildren_per_block =
  1976. NILFS_BTREE_NODE_NCHILDREN_MAX(nilfs_btree_node_size(bmap));
  1977. }
  1978. int nilfs_btree_init(struct nilfs_bmap *bmap)
  1979. {
  1980. int ret = 0;
  1981. __nilfs_btree_init(bmap);
  1982. if (nilfs_btree_root_broken(nilfs_btree_get_root(bmap),
  1983. bmap->b_inode->i_ino))
  1984. ret = -EIO;
  1985. return ret;
  1986. }
  1987. void nilfs_btree_init_gc(struct nilfs_bmap *bmap)
  1988. {
  1989. bmap->b_ops = &nilfs_btree_ops_gc;
  1990. bmap->b_nchildren_per_block =
  1991. NILFS_BTREE_NODE_NCHILDREN_MAX(nilfs_btree_node_size(bmap));
  1992. }