file-item.c 22 KB

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  1. /*
  2. * Copyright (C) 2007 Oracle. All rights reserved.
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU General Public
  6. * License v2 as published by the Free Software Foundation.
  7. *
  8. * This program is distributed in the hope that it will be useful,
  9. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  11. * General Public License for more details.
  12. *
  13. * You should have received a copy of the GNU General Public
  14. * License along with this program; if not, write to the
  15. * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
  16. * Boston, MA 021110-1307, USA.
  17. */
  18. #include <linux/bio.h>
  19. #include <linux/slab.h>
  20. #include <linux/pagemap.h>
  21. #include <linux/highmem.h>
  22. #include "ctree.h"
  23. #include "disk-io.h"
  24. #include "transaction.h"
  25. #include "print-tree.h"
  26. #define MAX_CSUM_ITEMS(r, size) ((((BTRFS_LEAF_DATA_SIZE(r) - \
  27. sizeof(struct btrfs_item) * 2) / \
  28. size) - 1))
  29. #define MAX_ORDERED_SUM_BYTES(r) ((PAGE_SIZE - \
  30. sizeof(struct btrfs_ordered_sum)) / \
  31. sizeof(struct btrfs_sector_sum) * \
  32. (r)->sectorsize - (r)->sectorsize)
  33. int btrfs_insert_file_extent(struct btrfs_trans_handle *trans,
  34. struct btrfs_root *root,
  35. u64 objectid, u64 pos,
  36. u64 disk_offset, u64 disk_num_bytes,
  37. u64 num_bytes, u64 offset, u64 ram_bytes,
  38. u8 compression, u8 encryption, u16 other_encoding)
  39. {
  40. int ret = 0;
  41. struct btrfs_file_extent_item *item;
  42. struct btrfs_key file_key;
  43. struct btrfs_path *path;
  44. struct extent_buffer *leaf;
  45. path = btrfs_alloc_path();
  46. if (!path)
  47. return -ENOMEM;
  48. file_key.objectid = objectid;
  49. file_key.offset = pos;
  50. btrfs_set_key_type(&file_key, BTRFS_EXTENT_DATA_KEY);
  51. path->leave_spinning = 1;
  52. ret = btrfs_insert_empty_item(trans, root, path, &file_key,
  53. sizeof(*item));
  54. if (ret < 0)
  55. goto out;
  56. BUG_ON(ret);
  57. leaf = path->nodes[0];
  58. item = btrfs_item_ptr(leaf, path->slots[0],
  59. struct btrfs_file_extent_item);
  60. btrfs_set_file_extent_disk_bytenr(leaf, item, disk_offset);
  61. btrfs_set_file_extent_disk_num_bytes(leaf, item, disk_num_bytes);
  62. btrfs_set_file_extent_offset(leaf, item, offset);
  63. btrfs_set_file_extent_num_bytes(leaf, item, num_bytes);
  64. btrfs_set_file_extent_ram_bytes(leaf, item, ram_bytes);
  65. btrfs_set_file_extent_generation(leaf, item, trans->transid);
  66. btrfs_set_file_extent_type(leaf, item, BTRFS_FILE_EXTENT_REG);
  67. btrfs_set_file_extent_compression(leaf, item, compression);
  68. btrfs_set_file_extent_encryption(leaf, item, encryption);
  69. btrfs_set_file_extent_other_encoding(leaf, item, other_encoding);
  70. btrfs_mark_buffer_dirty(leaf);
  71. out:
  72. btrfs_free_path(path);
  73. return ret;
  74. }
  75. struct btrfs_csum_item *btrfs_lookup_csum(struct btrfs_trans_handle *trans,
  76. struct btrfs_root *root,
  77. struct btrfs_path *path,
  78. u64 bytenr, int cow)
  79. {
  80. int ret;
  81. struct btrfs_key file_key;
  82. struct btrfs_key found_key;
  83. struct btrfs_csum_item *item;
  84. struct extent_buffer *leaf;
  85. u64 csum_offset = 0;
  86. u16 csum_size = btrfs_super_csum_size(root->fs_info->super_copy);
  87. int csums_in_item;
  88. file_key.objectid = BTRFS_EXTENT_CSUM_OBJECTID;
  89. file_key.offset = bytenr;
  90. btrfs_set_key_type(&file_key, BTRFS_EXTENT_CSUM_KEY);
  91. ret = btrfs_search_slot(trans, root, &file_key, path, 0, cow);
  92. if (ret < 0)
  93. goto fail;
  94. leaf = path->nodes[0];
  95. if (ret > 0) {
  96. ret = 1;
  97. if (path->slots[0] == 0)
  98. goto fail;
  99. path->slots[0]--;
  100. btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]);
  101. if (btrfs_key_type(&found_key) != BTRFS_EXTENT_CSUM_KEY)
  102. goto fail;
  103. csum_offset = (bytenr - found_key.offset) >>
  104. root->fs_info->sb->s_blocksize_bits;
  105. csums_in_item = btrfs_item_size_nr(leaf, path->slots[0]);
  106. csums_in_item /= csum_size;
  107. if (csum_offset >= csums_in_item) {
  108. ret = -EFBIG;
  109. goto fail;
  110. }
  111. }
  112. item = btrfs_item_ptr(leaf, path->slots[0], struct btrfs_csum_item);
  113. item = (struct btrfs_csum_item *)((unsigned char *)item +
  114. csum_offset * csum_size);
  115. return item;
  116. fail:
  117. if (ret > 0)
  118. ret = -ENOENT;
  119. return ERR_PTR(ret);
  120. }
  121. int btrfs_lookup_file_extent(struct btrfs_trans_handle *trans,
  122. struct btrfs_root *root,
  123. struct btrfs_path *path, u64 objectid,
  124. u64 offset, int mod)
  125. {
  126. int ret;
  127. struct btrfs_key file_key;
  128. int ins_len = mod < 0 ? -1 : 0;
  129. int cow = mod != 0;
  130. file_key.objectid = objectid;
  131. file_key.offset = offset;
  132. btrfs_set_key_type(&file_key, BTRFS_EXTENT_DATA_KEY);
  133. ret = btrfs_search_slot(trans, root, &file_key, path, ins_len, cow);
  134. return ret;
  135. }
  136. static int __btrfs_lookup_bio_sums(struct btrfs_root *root,
  137. struct inode *inode, struct bio *bio,
  138. u64 logical_offset, u32 *dst, int dio)
  139. {
  140. u32 sum;
  141. struct bio_vec *bvec = bio->bi_io_vec;
  142. int bio_index = 0;
  143. u64 offset = 0;
  144. u64 item_start_offset = 0;
  145. u64 item_last_offset = 0;
  146. u64 disk_bytenr;
  147. u32 diff;
  148. u16 csum_size = btrfs_super_csum_size(root->fs_info->super_copy);
  149. int ret;
  150. struct btrfs_path *path;
  151. struct btrfs_csum_item *item = NULL;
  152. struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree;
  153. path = btrfs_alloc_path();
  154. if (!path)
  155. return -ENOMEM;
  156. if (bio->bi_size > PAGE_CACHE_SIZE * 8)
  157. path->reada = 2;
  158. WARN_ON(bio->bi_vcnt <= 0);
  159. /*
  160. * the free space stuff is only read when it hasn't been
  161. * updated in the current transaction. So, we can safely
  162. * read from the commit root and sidestep a nasty deadlock
  163. * between reading the free space cache and updating the csum tree.
  164. */
  165. if (btrfs_is_free_space_inode(root, inode)) {
  166. path->search_commit_root = 1;
  167. path->skip_locking = 1;
  168. }
  169. disk_bytenr = (u64)bio->bi_sector << 9;
  170. if (dio)
  171. offset = logical_offset;
  172. while (bio_index < bio->bi_vcnt) {
  173. if (!dio)
  174. offset = page_offset(bvec->bv_page) + bvec->bv_offset;
  175. ret = btrfs_find_ordered_sum(inode, offset, disk_bytenr, &sum);
  176. if (ret == 0)
  177. goto found;
  178. if (!item || disk_bytenr < item_start_offset ||
  179. disk_bytenr >= item_last_offset) {
  180. struct btrfs_key found_key;
  181. u32 item_size;
  182. if (item)
  183. btrfs_release_path(path);
  184. item = btrfs_lookup_csum(NULL, root->fs_info->csum_root,
  185. path, disk_bytenr, 0);
  186. if (IS_ERR(item)) {
  187. ret = PTR_ERR(item);
  188. if (ret == -ENOENT || ret == -EFBIG)
  189. ret = 0;
  190. sum = 0;
  191. if (BTRFS_I(inode)->root->root_key.objectid ==
  192. BTRFS_DATA_RELOC_TREE_OBJECTID) {
  193. set_extent_bits(io_tree, offset,
  194. offset + bvec->bv_len - 1,
  195. EXTENT_NODATASUM, GFP_NOFS);
  196. } else {
  197. printk(KERN_INFO "btrfs no csum found "
  198. "for inode %llu start %llu\n",
  199. (unsigned long long)
  200. btrfs_ino(inode),
  201. (unsigned long long)offset);
  202. }
  203. item = NULL;
  204. btrfs_release_path(path);
  205. goto found;
  206. }
  207. btrfs_item_key_to_cpu(path->nodes[0], &found_key,
  208. path->slots[0]);
  209. item_start_offset = found_key.offset;
  210. item_size = btrfs_item_size_nr(path->nodes[0],
  211. path->slots[0]);
  212. item_last_offset = item_start_offset +
  213. (item_size / csum_size) *
  214. root->sectorsize;
  215. item = btrfs_item_ptr(path->nodes[0], path->slots[0],
  216. struct btrfs_csum_item);
  217. }
  218. /*
  219. * this byte range must be able to fit inside
  220. * a single leaf so it will also fit inside a u32
  221. */
  222. diff = disk_bytenr - item_start_offset;
  223. diff = diff / root->sectorsize;
  224. diff = diff * csum_size;
  225. read_extent_buffer(path->nodes[0], &sum,
  226. ((unsigned long)item) + diff,
  227. csum_size);
  228. found:
  229. if (dst)
  230. *dst++ = sum;
  231. else
  232. set_state_private(io_tree, offset, sum);
  233. disk_bytenr += bvec->bv_len;
  234. offset += bvec->bv_len;
  235. bio_index++;
  236. bvec++;
  237. }
  238. btrfs_free_path(path);
  239. return 0;
  240. }
  241. int btrfs_lookup_bio_sums(struct btrfs_root *root, struct inode *inode,
  242. struct bio *bio, u32 *dst)
  243. {
  244. return __btrfs_lookup_bio_sums(root, inode, bio, 0, dst, 0);
  245. }
  246. int btrfs_lookup_bio_sums_dio(struct btrfs_root *root, struct inode *inode,
  247. struct bio *bio, u64 offset, u32 *dst)
  248. {
  249. return __btrfs_lookup_bio_sums(root, inode, bio, offset, dst, 1);
  250. }
  251. int btrfs_lookup_csums_range(struct btrfs_root *root, u64 start, u64 end,
  252. struct list_head *list, int search_commit)
  253. {
  254. struct btrfs_key key;
  255. struct btrfs_path *path;
  256. struct extent_buffer *leaf;
  257. struct btrfs_ordered_sum *sums;
  258. struct btrfs_sector_sum *sector_sum;
  259. struct btrfs_csum_item *item;
  260. unsigned long offset;
  261. int ret;
  262. size_t size;
  263. u64 csum_end;
  264. u16 csum_size = btrfs_super_csum_size(root->fs_info->super_copy);
  265. path = btrfs_alloc_path();
  266. if (!path)
  267. return -ENOMEM;
  268. if (search_commit) {
  269. path->skip_locking = 1;
  270. path->reada = 2;
  271. path->search_commit_root = 1;
  272. }
  273. key.objectid = BTRFS_EXTENT_CSUM_OBJECTID;
  274. key.offset = start;
  275. key.type = BTRFS_EXTENT_CSUM_KEY;
  276. ret = btrfs_search_slot(NULL, root, &key, path, 0, 0);
  277. if (ret < 0)
  278. goto fail;
  279. if (ret > 0 && path->slots[0] > 0) {
  280. leaf = path->nodes[0];
  281. btrfs_item_key_to_cpu(leaf, &key, path->slots[0] - 1);
  282. if (key.objectid == BTRFS_EXTENT_CSUM_OBJECTID &&
  283. key.type == BTRFS_EXTENT_CSUM_KEY) {
  284. offset = (start - key.offset) >>
  285. root->fs_info->sb->s_blocksize_bits;
  286. if (offset * csum_size <
  287. btrfs_item_size_nr(leaf, path->slots[0] - 1))
  288. path->slots[0]--;
  289. }
  290. }
  291. while (start <= end) {
  292. leaf = path->nodes[0];
  293. if (path->slots[0] >= btrfs_header_nritems(leaf)) {
  294. ret = btrfs_next_leaf(root, path);
  295. if (ret < 0)
  296. goto fail;
  297. if (ret > 0)
  298. break;
  299. leaf = path->nodes[0];
  300. }
  301. btrfs_item_key_to_cpu(leaf, &key, path->slots[0]);
  302. if (key.objectid != BTRFS_EXTENT_CSUM_OBJECTID ||
  303. key.type != BTRFS_EXTENT_CSUM_KEY)
  304. break;
  305. btrfs_item_key_to_cpu(leaf, &key, path->slots[0]);
  306. if (key.offset > end)
  307. break;
  308. if (key.offset > start)
  309. start = key.offset;
  310. size = btrfs_item_size_nr(leaf, path->slots[0]);
  311. csum_end = key.offset + (size / csum_size) * root->sectorsize;
  312. if (csum_end <= start) {
  313. path->slots[0]++;
  314. continue;
  315. }
  316. csum_end = min(csum_end, end + 1);
  317. item = btrfs_item_ptr(path->nodes[0], path->slots[0],
  318. struct btrfs_csum_item);
  319. while (start < csum_end) {
  320. size = min_t(size_t, csum_end - start,
  321. MAX_ORDERED_SUM_BYTES(root));
  322. sums = kzalloc(btrfs_ordered_sum_size(root, size),
  323. GFP_NOFS);
  324. BUG_ON(!sums);
  325. sector_sum = sums->sums;
  326. sums->bytenr = start;
  327. sums->len = size;
  328. offset = (start - key.offset) >>
  329. root->fs_info->sb->s_blocksize_bits;
  330. offset *= csum_size;
  331. while (size > 0) {
  332. read_extent_buffer(path->nodes[0],
  333. &sector_sum->sum,
  334. ((unsigned long)item) +
  335. offset, csum_size);
  336. sector_sum->bytenr = start;
  337. size -= root->sectorsize;
  338. start += root->sectorsize;
  339. offset += csum_size;
  340. sector_sum++;
  341. }
  342. list_add_tail(&sums->list, list);
  343. }
  344. path->slots[0]++;
  345. }
  346. ret = 0;
  347. fail:
  348. btrfs_free_path(path);
  349. return ret;
  350. }
  351. int btrfs_csum_one_bio(struct btrfs_root *root, struct inode *inode,
  352. struct bio *bio, u64 file_start, int contig)
  353. {
  354. struct btrfs_ordered_sum *sums;
  355. struct btrfs_sector_sum *sector_sum;
  356. struct btrfs_ordered_extent *ordered;
  357. char *data;
  358. struct bio_vec *bvec = bio->bi_io_vec;
  359. int bio_index = 0;
  360. unsigned long total_bytes = 0;
  361. unsigned long this_sum_bytes = 0;
  362. u64 offset;
  363. u64 disk_bytenr;
  364. WARN_ON(bio->bi_vcnt <= 0);
  365. sums = kzalloc(btrfs_ordered_sum_size(root, bio->bi_size), GFP_NOFS);
  366. if (!sums)
  367. return -ENOMEM;
  368. sector_sum = sums->sums;
  369. disk_bytenr = (u64)bio->bi_sector << 9;
  370. sums->len = bio->bi_size;
  371. INIT_LIST_HEAD(&sums->list);
  372. if (contig)
  373. offset = file_start;
  374. else
  375. offset = page_offset(bvec->bv_page) + bvec->bv_offset;
  376. ordered = btrfs_lookup_ordered_extent(inode, offset);
  377. BUG_ON(!ordered);
  378. sums->bytenr = ordered->start;
  379. while (bio_index < bio->bi_vcnt) {
  380. if (!contig)
  381. offset = page_offset(bvec->bv_page) + bvec->bv_offset;
  382. if (!contig && (offset >= ordered->file_offset + ordered->len ||
  383. offset < ordered->file_offset)) {
  384. unsigned long bytes_left;
  385. sums->len = this_sum_bytes;
  386. this_sum_bytes = 0;
  387. btrfs_add_ordered_sum(inode, ordered, sums);
  388. btrfs_put_ordered_extent(ordered);
  389. bytes_left = bio->bi_size - total_bytes;
  390. sums = kzalloc(btrfs_ordered_sum_size(root, bytes_left),
  391. GFP_NOFS);
  392. BUG_ON(!sums);
  393. sector_sum = sums->sums;
  394. sums->len = bytes_left;
  395. ordered = btrfs_lookup_ordered_extent(inode, offset);
  396. BUG_ON(!ordered);
  397. sums->bytenr = ordered->start;
  398. }
  399. data = kmap_atomic(bvec->bv_page, KM_USER0);
  400. sector_sum->sum = ~(u32)0;
  401. sector_sum->sum = btrfs_csum_data(root,
  402. data + bvec->bv_offset,
  403. sector_sum->sum,
  404. bvec->bv_len);
  405. kunmap_atomic(data, KM_USER0);
  406. btrfs_csum_final(sector_sum->sum,
  407. (char *)&sector_sum->sum);
  408. sector_sum->bytenr = disk_bytenr;
  409. sector_sum++;
  410. bio_index++;
  411. total_bytes += bvec->bv_len;
  412. this_sum_bytes += bvec->bv_len;
  413. disk_bytenr += bvec->bv_len;
  414. offset += bvec->bv_len;
  415. bvec++;
  416. }
  417. this_sum_bytes = 0;
  418. btrfs_add_ordered_sum(inode, ordered, sums);
  419. btrfs_put_ordered_extent(ordered);
  420. return 0;
  421. }
  422. /*
  423. * helper function for csum removal, this expects the
  424. * key to describe the csum pointed to by the path, and it expects
  425. * the csum to overlap the range [bytenr, len]
  426. *
  427. * The csum should not be entirely contained in the range and the
  428. * range should not be entirely contained in the csum.
  429. *
  430. * This calls btrfs_truncate_item with the correct args based on the
  431. * overlap, and fixes up the key as required.
  432. */
  433. static noinline int truncate_one_csum(struct btrfs_trans_handle *trans,
  434. struct btrfs_root *root,
  435. struct btrfs_path *path,
  436. struct btrfs_key *key,
  437. u64 bytenr, u64 len)
  438. {
  439. struct extent_buffer *leaf;
  440. u16 csum_size = btrfs_super_csum_size(root->fs_info->super_copy);
  441. u64 csum_end;
  442. u64 end_byte = bytenr + len;
  443. u32 blocksize_bits = root->fs_info->sb->s_blocksize_bits;
  444. int ret;
  445. leaf = path->nodes[0];
  446. csum_end = btrfs_item_size_nr(leaf, path->slots[0]) / csum_size;
  447. csum_end <<= root->fs_info->sb->s_blocksize_bits;
  448. csum_end += key->offset;
  449. if (key->offset < bytenr && csum_end <= end_byte) {
  450. /*
  451. * [ bytenr - len ]
  452. * [ ]
  453. * [csum ]
  454. * A simple truncate off the end of the item
  455. */
  456. u32 new_size = (bytenr - key->offset) >> blocksize_bits;
  457. new_size *= csum_size;
  458. ret = btrfs_truncate_item(trans, root, path, new_size, 1);
  459. } else if (key->offset >= bytenr && csum_end > end_byte &&
  460. end_byte > key->offset) {
  461. /*
  462. * [ bytenr - len ]
  463. * [ ]
  464. * [csum ]
  465. * we need to truncate from the beginning of the csum
  466. */
  467. u32 new_size = (csum_end - end_byte) >> blocksize_bits;
  468. new_size *= csum_size;
  469. ret = btrfs_truncate_item(trans, root, path, new_size, 0);
  470. key->offset = end_byte;
  471. ret = btrfs_set_item_key_safe(trans, root, path, key);
  472. BUG_ON(ret);
  473. } else {
  474. BUG();
  475. }
  476. return 0;
  477. }
  478. /*
  479. * deletes the csum items from the csum tree for a given
  480. * range of bytes.
  481. */
  482. int btrfs_del_csums(struct btrfs_trans_handle *trans,
  483. struct btrfs_root *root, u64 bytenr, u64 len)
  484. {
  485. struct btrfs_path *path;
  486. struct btrfs_key key;
  487. u64 end_byte = bytenr + len;
  488. u64 csum_end;
  489. struct extent_buffer *leaf;
  490. int ret;
  491. u16 csum_size = btrfs_super_csum_size(root->fs_info->super_copy);
  492. int blocksize_bits = root->fs_info->sb->s_blocksize_bits;
  493. root = root->fs_info->csum_root;
  494. path = btrfs_alloc_path();
  495. if (!path)
  496. return -ENOMEM;
  497. while (1) {
  498. key.objectid = BTRFS_EXTENT_CSUM_OBJECTID;
  499. key.offset = end_byte - 1;
  500. key.type = BTRFS_EXTENT_CSUM_KEY;
  501. path->leave_spinning = 1;
  502. ret = btrfs_search_slot(trans, root, &key, path, -1, 1);
  503. if (ret > 0) {
  504. if (path->slots[0] == 0)
  505. break;
  506. path->slots[0]--;
  507. } else if (ret < 0) {
  508. break;
  509. }
  510. leaf = path->nodes[0];
  511. btrfs_item_key_to_cpu(leaf, &key, path->slots[0]);
  512. if (key.objectid != BTRFS_EXTENT_CSUM_OBJECTID ||
  513. key.type != BTRFS_EXTENT_CSUM_KEY) {
  514. break;
  515. }
  516. if (key.offset >= end_byte)
  517. break;
  518. csum_end = btrfs_item_size_nr(leaf, path->slots[0]) / csum_size;
  519. csum_end <<= blocksize_bits;
  520. csum_end += key.offset;
  521. /* this csum ends before we start, we're done */
  522. if (csum_end <= bytenr)
  523. break;
  524. /* delete the entire item, it is inside our range */
  525. if (key.offset >= bytenr && csum_end <= end_byte) {
  526. ret = btrfs_del_item(trans, root, path);
  527. if (ret)
  528. goto out;
  529. if (key.offset == bytenr)
  530. break;
  531. } else if (key.offset < bytenr && csum_end > end_byte) {
  532. unsigned long offset;
  533. unsigned long shift_len;
  534. unsigned long item_offset;
  535. /*
  536. * [ bytenr - len ]
  537. * [csum ]
  538. *
  539. * Our bytes are in the middle of the csum,
  540. * we need to split this item and insert a new one.
  541. *
  542. * But we can't drop the path because the
  543. * csum could change, get removed, extended etc.
  544. *
  545. * The trick here is the max size of a csum item leaves
  546. * enough room in the tree block for a single
  547. * item header. So, we split the item in place,
  548. * adding a new header pointing to the existing
  549. * bytes. Then we loop around again and we have
  550. * a nicely formed csum item that we can neatly
  551. * truncate.
  552. */
  553. offset = (bytenr - key.offset) >> blocksize_bits;
  554. offset *= csum_size;
  555. shift_len = (len >> blocksize_bits) * csum_size;
  556. item_offset = btrfs_item_ptr_offset(leaf,
  557. path->slots[0]);
  558. memset_extent_buffer(leaf, 0, item_offset + offset,
  559. shift_len);
  560. key.offset = bytenr;
  561. /*
  562. * btrfs_split_item returns -EAGAIN when the
  563. * item changed size or key
  564. */
  565. ret = btrfs_split_item(trans, root, path, &key, offset);
  566. BUG_ON(ret && ret != -EAGAIN);
  567. key.offset = end_byte - 1;
  568. } else {
  569. ret = truncate_one_csum(trans, root, path,
  570. &key, bytenr, len);
  571. BUG_ON(ret);
  572. if (key.offset < bytenr)
  573. break;
  574. }
  575. btrfs_release_path(path);
  576. }
  577. ret = 0;
  578. out:
  579. btrfs_free_path(path);
  580. return ret;
  581. }
  582. int btrfs_csum_file_blocks(struct btrfs_trans_handle *trans,
  583. struct btrfs_root *root,
  584. struct btrfs_ordered_sum *sums)
  585. {
  586. u64 bytenr;
  587. int ret;
  588. struct btrfs_key file_key;
  589. struct btrfs_key found_key;
  590. u64 next_offset;
  591. u64 total_bytes = 0;
  592. int found_next;
  593. struct btrfs_path *path;
  594. struct btrfs_csum_item *item;
  595. struct btrfs_csum_item *item_end;
  596. struct extent_buffer *leaf = NULL;
  597. u64 csum_offset;
  598. struct btrfs_sector_sum *sector_sum;
  599. u32 nritems;
  600. u32 ins_size;
  601. u16 csum_size = btrfs_super_csum_size(root->fs_info->super_copy);
  602. path = btrfs_alloc_path();
  603. if (!path)
  604. return -ENOMEM;
  605. sector_sum = sums->sums;
  606. again:
  607. next_offset = (u64)-1;
  608. found_next = 0;
  609. file_key.objectid = BTRFS_EXTENT_CSUM_OBJECTID;
  610. file_key.offset = sector_sum->bytenr;
  611. bytenr = sector_sum->bytenr;
  612. btrfs_set_key_type(&file_key, BTRFS_EXTENT_CSUM_KEY);
  613. item = btrfs_lookup_csum(trans, root, path, sector_sum->bytenr, 1);
  614. if (!IS_ERR(item)) {
  615. leaf = path->nodes[0];
  616. ret = 0;
  617. goto found;
  618. }
  619. ret = PTR_ERR(item);
  620. if (ret != -EFBIG && ret != -ENOENT)
  621. goto fail_unlock;
  622. if (ret == -EFBIG) {
  623. u32 item_size;
  624. /* we found one, but it isn't big enough yet */
  625. leaf = path->nodes[0];
  626. item_size = btrfs_item_size_nr(leaf, path->slots[0]);
  627. if ((item_size / csum_size) >=
  628. MAX_CSUM_ITEMS(root, csum_size)) {
  629. /* already at max size, make a new one */
  630. goto insert;
  631. }
  632. } else {
  633. int slot = path->slots[0] + 1;
  634. /* we didn't find a csum item, insert one */
  635. nritems = btrfs_header_nritems(path->nodes[0]);
  636. if (path->slots[0] >= nritems - 1) {
  637. ret = btrfs_next_leaf(root, path);
  638. if (ret == 1)
  639. found_next = 1;
  640. if (ret != 0)
  641. goto insert;
  642. slot = 0;
  643. }
  644. btrfs_item_key_to_cpu(path->nodes[0], &found_key, slot);
  645. if (found_key.objectid != BTRFS_EXTENT_CSUM_OBJECTID ||
  646. found_key.type != BTRFS_EXTENT_CSUM_KEY) {
  647. found_next = 1;
  648. goto insert;
  649. }
  650. next_offset = found_key.offset;
  651. found_next = 1;
  652. goto insert;
  653. }
  654. /*
  655. * at this point, we know the tree has an item, but it isn't big
  656. * enough yet to put our csum in. Grow it
  657. */
  658. btrfs_release_path(path);
  659. ret = btrfs_search_slot(trans, root, &file_key, path,
  660. csum_size, 1);
  661. if (ret < 0)
  662. goto fail_unlock;
  663. if (ret > 0) {
  664. if (path->slots[0] == 0)
  665. goto insert;
  666. path->slots[0]--;
  667. }
  668. leaf = path->nodes[0];
  669. btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]);
  670. csum_offset = (bytenr - found_key.offset) >>
  671. root->fs_info->sb->s_blocksize_bits;
  672. if (btrfs_key_type(&found_key) != BTRFS_EXTENT_CSUM_KEY ||
  673. found_key.objectid != BTRFS_EXTENT_CSUM_OBJECTID ||
  674. csum_offset >= MAX_CSUM_ITEMS(root, csum_size)) {
  675. goto insert;
  676. }
  677. if (csum_offset >= btrfs_item_size_nr(leaf, path->slots[0]) /
  678. csum_size) {
  679. u32 diff = (csum_offset + 1) * csum_size;
  680. /*
  681. * is the item big enough already? we dropped our lock
  682. * before and need to recheck
  683. */
  684. if (diff < btrfs_item_size_nr(leaf, path->slots[0]))
  685. goto csum;
  686. diff = diff - btrfs_item_size_nr(leaf, path->slots[0]);
  687. if (diff != csum_size)
  688. goto insert;
  689. ret = btrfs_extend_item(trans, root, path, diff);
  690. goto csum;
  691. }
  692. insert:
  693. btrfs_release_path(path);
  694. csum_offset = 0;
  695. if (found_next) {
  696. u64 tmp = total_bytes + root->sectorsize;
  697. u64 next_sector = sector_sum->bytenr;
  698. struct btrfs_sector_sum *next = sector_sum + 1;
  699. while (tmp < sums->len) {
  700. if (next_sector + root->sectorsize != next->bytenr)
  701. break;
  702. tmp += root->sectorsize;
  703. next_sector = next->bytenr;
  704. next++;
  705. }
  706. tmp = min(tmp, next_offset - file_key.offset);
  707. tmp >>= root->fs_info->sb->s_blocksize_bits;
  708. tmp = max((u64)1, tmp);
  709. tmp = min(tmp, (u64)MAX_CSUM_ITEMS(root, csum_size));
  710. ins_size = csum_size * tmp;
  711. } else {
  712. ins_size = csum_size;
  713. }
  714. path->leave_spinning = 1;
  715. ret = btrfs_insert_empty_item(trans, root, path, &file_key,
  716. ins_size);
  717. path->leave_spinning = 0;
  718. if (ret < 0)
  719. goto fail_unlock;
  720. if (ret != 0) {
  721. WARN_ON(1);
  722. goto fail_unlock;
  723. }
  724. csum:
  725. leaf = path->nodes[0];
  726. item = btrfs_item_ptr(leaf, path->slots[0], struct btrfs_csum_item);
  727. ret = 0;
  728. item = (struct btrfs_csum_item *)((unsigned char *)item +
  729. csum_offset * csum_size);
  730. found:
  731. item_end = btrfs_item_ptr(leaf, path->slots[0], struct btrfs_csum_item);
  732. item_end = (struct btrfs_csum_item *)((unsigned char *)item_end +
  733. btrfs_item_size_nr(leaf, path->slots[0]));
  734. next_sector:
  735. write_extent_buffer(leaf, &sector_sum->sum, (unsigned long)item, csum_size);
  736. total_bytes += root->sectorsize;
  737. sector_sum++;
  738. if (total_bytes < sums->len) {
  739. item = (struct btrfs_csum_item *)((char *)item +
  740. csum_size);
  741. if (item < item_end && bytenr + PAGE_CACHE_SIZE ==
  742. sector_sum->bytenr) {
  743. bytenr = sector_sum->bytenr;
  744. goto next_sector;
  745. }
  746. }
  747. btrfs_mark_buffer_dirty(path->nodes[0]);
  748. if (total_bytes < sums->len) {
  749. btrfs_release_path(path);
  750. cond_resched();
  751. goto again;
  752. }
  753. out:
  754. btrfs_free_path(path);
  755. return ret;
  756. fail_unlock:
  757. goto out;
  758. }