qgroup.c 98 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * Copyright (C) 2011 STRATO. All rights reserved.
  4. */
  5. #include <linux/sched.h>
  6. #include <linux/pagemap.h>
  7. #include <linux/writeback.h>
  8. #include <linux/blkdev.h>
  9. #include <linux/rbtree.h>
  10. #include <linux/slab.h>
  11. #include <linux/workqueue.h>
  12. #include <linux/btrfs.h>
  13. #include <linux/sizes.h>
  14. #include "ctree.h"
  15. #include "transaction.h"
  16. #include "disk-io.h"
  17. #include "locking.h"
  18. #include "ulist.h"
  19. #include "backref.h"
  20. #include "extent_io.h"
  21. #include "qgroup.h"
  22. /* TODO XXX FIXME
  23. * - subvol delete -> delete when ref goes to 0? delete limits also?
  24. * - reorganize keys
  25. * - compressed
  26. * - sync
  27. * - copy also limits on subvol creation
  28. * - limit
  29. * - caches fuer ulists
  30. * - performance benchmarks
  31. * - check all ioctl parameters
  32. */
  33. /*
  34. * Helpers to access qgroup reservation
  35. *
  36. * Callers should ensure the lock context and type are valid
  37. */
  38. static u64 qgroup_rsv_total(const struct btrfs_qgroup *qgroup)
  39. {
  40. u64 ret = 0;
  41. int i;
  42. for (i = 0; i < BTRFS_QGROUP_RSV_LAST; i++)
  43. ret += qgroup->rsv.values[i];
  44. return ret;
  45. }
  46. #ifdef CONFIG_BTRFS_DEBUG
  47. static const char *qgroup_rsv_type_str(enum btrfs_qgroup_rsv_type type)
  48. {
  49. if (type == BTRFS_QGROUP_RSV_DATA)
  50. return "data";
  51. if (type == BTRFS_QGROUP_RSV_META_PERTRANS)
  52. return "meta_pertrans";
  53. if (type == BTRFS_QGROUP_RSV_META_PREALLOC)
  54. return "meta_prealloc";
  55. return NULL;
  56. }
  57. #endif
  58. static void qgroup_rsv_add(struct btrfs_fs_info *fs_info,
  59. struct btrfs_qgroup *qgroup, u64 num_bytes,
  60. enum btrfs_qgroup_rsv_type type)
  61. {
  62. trace_qgroup_update_reserve(fs_info, qgroup, num_bytes, type);
  63. qgroup->rsv.values[type] += num_bytes;
  64. }
  65. static void qgroup_rsv_release(struct btrfs_fs_info *fs_info,
  66. struct btrfs_qgroup *qgroup, u64 num_bytes,
  67. enum btrfs_qgroup_rsv_type type)
  68. {
  69. trace_qgroup_update_reserve(fs_info, qgroup, -(s64)num_bytes, type);
  70. if (qgroup->rsv.values[type] >= num_bytes) {
  71. qgroup->rsv.values[type] -= num_bytes;
  72. return;
  73. }
  74. #ifdef CONFIG_BTRFS_DEBUG
  75. WARN_RATELIMIT(1,
  76. "qgroup %llu %s reserved space underflow, have %llu to free %llu",
  77. qgroup->qgroupid, qgroup_rsv_type_str(type),
  78. qgroup->rsv.values[type], num_bytes);
  79. #endif
  80. qgroup->rsv.values[type] = 0;
  81. }
  82. static void qgroup_rsv_add_by_qgroup(struct btrfs_fs_info *fs_info,
  83. struct btrfs_qgroup *dest,
  84. struct btrfs_qgroup *src)
  85. {
  86. int i;
  87. for (i = 0; i < BTRFS_QGROUP_RSV_LAST; i++)
  88. qgroup_rsv_add(fs_info, dest, src->rsv.values[i], i);
  89. }
  90. static void qgroup_rsv_release_by_qgroup(struct btrfs_fs_info *fs_info,
  91. struct btrfs_qgroup *dest,
  92. struct btrfs_qgroup *src)
  93. {
  94. int i;
  95. for (i = 0; i < BTRFS_QGROUP_RSV_LAST; i++)
  96. qgroup_rsv_release(fs_info, dest, src->rsv.values[i], i);
  97. }
  98. static void btrfs_qgroup_update_old_refcnt(struct btrfs_qgroup *qg, u64 seq,
  99. int mod)
  100. {
  101. if (qg->old_refcnt < seq)
  102. qg->old_refcnt = seq;
  103. qg->old_refcnt += mod;
  104. }
  105. static void btrfs_qgroup_update_new_refcnt(struct btrfs_qgroup *qg, u64 seq,
  106. int mod)
  107. {
  108. if (qg->new_refcnt < seq)
  109. qg->new_refcnt = seq;
  110. qg->new_refcnt += mod;
  111. }
  112. static inline u64 btrfs_qgroup_get_old_refcnt(struct btrfs_qgroup *qg, u64 seq)
  113. {
  114. if (qg->old_refcnt < seq)
  115. return 0;
  116. return qg->old_refcnt - seq;
  117. }
  118. static inline u64 btrfs_qgroup_get_new_refcnt(struct btrfs_qgroup *qg, u64 seq)
  119. {
  120. if (qg->new_refcnt < seq)
  121. return 0;
  122. return qg->new_refcnt - seq;
  123. }
  124. /*
  125. * glue structure to represent the relations between qgroups.
  126. */
  127. struct btrfs_qgroup_list {
  128. struct list_head next_group;
  129. struct list_head next_member;
  130. struct btrfs_qgroup *group;
  131. struct btrfs_qgroup *member;
  132. };
  133. static inline u64 qgroup_to_aux(struct btrfs_qgroup *qg)
  134. {
  135. return (u64)(uintptr_t)qg;
  136. }
  137. static inline struct btrfs_qgroup* unode_aux_to_qgroup(struct ulist_node *n)
  138. {
  139. return (struct btrfs_qgroup *)(uintptr_t)n->aux;
  140. }
  141. static int
  142. qgroup_rescan_init(struct btrfs_fs_info *fs_info, u64 progress_objectid,
  143. int init_flags);
  144. static void qgroup_rescan_zero_tracking(struct btrfs_fs_info *fs_info);
  145. /* must be called with qgroup_ioctl_lock held */
  146. static struct btrfs_qgroup *find_qgroup_rb(struct btrfs_fs_info *fs_info,
  147. u64 qgroupid)
  148. {
  149. struct rb_node *n = fs_info->qgroup_tree.rb_node;
  150. struct btrfs_qgroup *qgroup;
  151. while (n) {
  152. qgroup = rb_entry(n, struct btrfs_qgroup, node);
  153. if (qgroup->qgroupid < qgroupid)
  154. n = n->rb_left;
  155. else if (qgroup->qgroupid > qgroupid)
  156. n = n->rb_right;
  157. else
  158. return qgroup;
  159. }
  160. return NULL;
  161. }
  162. /* must be called with qgroup_lock held */
  163. static struct btrfs_qgroup *add_qgroup_rb(struct btrfs_fs_info *fs_info,
  164. u64 qgroupid)
  165. {
  166. struct rb_node **p = &fs_info->qgroup_tree.rb_node;
  167. struct rb_node *parent = NULL;
  168. struct btrfs_qgroup *qgroup;
  169. while (*p) {
  170. parent = *p;
  171. qgroup = rb_entry(parent, struct btrfs_qgroup, node);
  172. if (qgroup->qgroupid < qgroupid)
  173. p = &(*p)->rb_left;
  174. else if (qgroup->qgroupid > qgroupid)
  175. p = &(*p)->rb_right;
  176. else
  177. return qgroup;
  178. }
  179. qgroup = kzalloc(sizeof(*qgroup), GFP_ATOMIC);
  180. if (!qgroup)
  181. return ERR_PTR(-ENOMEM);
  182. qgroup->qgroupid = qgroupid;
  183. INIT_LIST_HEAD(&qgroup->groups);
  184. INIT_LIST_HEAD(&qgroup->members);
  185. INIT_LIST_HEAD(&qgroup->dirty);
  186. rb_link_node(&qgroup->node, parent, p);
  187. rb_insert_color(&qgroup->node, &fs_info->qgroup_tree);
  188. return qgroup;
  189. }
  190. static void __del_qgroup_rb(struct btrfs_qgroup *qgroup)
  191. {
  192. struct btrfs_qgroup_list *list;
  193. list_del(&qgroup->dirty);
  194. while (!list_empty(&qgroup->groups)) {
  195. list = list_first_entry(&qgroup->groups,
  196. struct btrfs_qgroup_list, next_group);
  197. list_del(&list->next_group);
  198. list_del(&list->next_member);
  199. kfree(list);
  200. }
  201. while (!list_empty(&qgroup->members)) {
  202. list = list_first_entry(&qgroup->members,
  203. struct btrfs_qgroup_list, next_member);
  204. list_del(&list->next_group);
  205. list_del(&list->next_member);
  206. kfree(list);
  207. }
  208. kfree(qgroup);
  209. }
  210. /* must be called with qgroup_lock held */
  211. static int del_qgroup_rb(struct btrfs_fs_info *fs_info, u64 qgroupid)
  212. {
  213. struct btrfs_qgroup *qgroup = find_qgroup_rb(fs_info, qgroupid);
  214. if (!qgroup)
  215. return -ENOENT;
  216. rb_erase(&qgroup->node, &fs_info->qgroup_tree);
  217. __del_qgroup_rb(qgroup);
  218. return 0;
  219. }
  220. /* must be called with qgroup_lock held */
  221. static int add_relation_rb(struct btrfs_fs_info *fs_info,
  222. u64 memberid, u64 parentid)
  223. {
  224. struct btrfs_qgroup *member;
  225. struct btrfs_qgroup *parent;
  226. struct btrfs_qgroup_list *list;
  227. member = find_qgroup_rb(fs_info, memberid);
  228. parent = find_qgroup_rb(fs_info, parentid);
  229. if (!member || !parent)
  230. return -ENOENT;
  231. list = kzalloc(sizeof(*list), GFP_ATOMIC);
  232. if (!list)
  233. return -ENOMEM;
  234. list->group = parent;
  235. list->member = member;
  236. list_add_tail(&list->next_group, &member->groups);
  237. list_add_tail(&list->next_member, &parent->members);
  238. return 0;
  239. }
  240. /* must be called with qgroup_lock held */
  241. static int del_relation_rb(struct btrfs_fs_info *fs_info,
  242. u64 memberid, u64 parentid)
  243. {
  244. struct btrfs_qgroup *member;
  245. struct btrfs_qgroup *parent;
  246. struct btrfs_qgroup_list *list;
  247. member = find_qgroup_rb(fs_info, memberid);
  248. parent = find_qgroup_rb(fs_info, parentid);
  249. if (!member || !parent)
  250. return -ENOENT;
  251. list_for_each_entry(list, &member->groups, next_group) {
  252. if (list->group == parent) {
  253. list_del(&list->next_group);
  254. list_del(&list->next_member);
  255. kfree(list);
  256. return 0;
  257. }
  258. }
  259. return -ENOENT;
  260. }
  261. #ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
  262. int btrfs_verify_qgroup_counts(struct btrfs_fs_info *fs_info, u64 qgroupid,
  263. u64 rfer, u64 excl)
  264. {
  265. struct btrfs_qgroup *qgroup;
  266. qgroup = find_qgroup_rb(fs_info, qgroupid);
  267. if (!qgroup)
  268. return -EINVAL;
  269. if (qgroup->rfer != rfer || qgroup->excl != excl)
  270. return -EINVAL;
  271. return 0;
  272. }
  273. #endif
  274. /*
  275. * The full config is read in one go, only called from open_ctree()
  276. * It doesn't use any locking, as at this point we're still single-threaded
  277. */
  278. int btrfs_read_qgroup_config(struct btrfs_fs_info *fs_info)
  279. {
  280. struct btrfs_key key;
  281. struct btrfs_key found_key;
  282. struct btrfs_root *quota_root = fs_info->quota_root;
  283. struct btrfs_path *path = NULL;
  284. struct extent_buffer *l;
  285. int slot;
  286. int ret = 0;
  287. u64 flags = 0;
  288. u64 rescan_progress = 0;
  289. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags))
  290. return 0;
  291. fs_info->qgroup_ulist = ulist_alloc(GFP_KERNEL);
  292. if (!fs_info->qgroup_ulist) {
  293. ret = -ENOMEM;
  294. goto out;
  295. }
  296. path = btrfs_alloc_path();
  297. if (!path) {
  298. ret = -ENOMEM;
  299. goto out;
  300. }
  301. /* default this to quota off, in case no status key is found */
  302. fs_info->qgroup_flags = 0;
  303. /*
  304. * pass 1: read status, all qgroup infos and limits
  305. */
  306. key.objectid = 0;
  307. key.type = 0;
  308. key.offset = 0;
  309. ret = btrfs_search_slot_for_read(quota_root, &key, path, 1, 1);
  310. if (ret)
  311. goto out;
  312. while (1) {
  313. struct btrfs_qgroup *qgroup;
  314. slot = path->slots[0];
  315. l = path->nodes[0];
  316. btrfs_item_key_to_cpu(l, &found_key, slot);
  317. if (found_key.type == BTRFS_QGROUP_STATUS_KEY) {
  318. struct btrfs_qgroup_status_item *ptr;
  319. ptr = btrfs_item_ptr(l, slot,
  320. struct btrfs_qgroup_status_item);
  321. if (btrfs_qgroup_status_version(l, ptr) !=
  322. BTRFS_QGROUP_STATUS_VERSION) {
  323. btrfs_err(fs_info,
  324. "old qgroup version, quota disabled");
  325. goto out;
  326. }
  327. if (btrfs_qgroup_status_generation(l, ptr) !=
  328. fs_info->generation) {
  329. flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  330. btrfs_err(fs_info,
  331. "qgroup generation mismatch, marked as inconsistent");
  332. }
  333. fs_info->qgroup_flags = btrfs_qgroup_status_flags(l,
  334. ptr);
  335. rescan_progress = btrfs_qgroup_status_rescan(l, ptr);
  336. goto next1;
  337. }
  338. if (found_key.type != BTRFS_QGROUP_INFO_KEY &&
  339. found_key.type != BTRFS_QGROUP_LIMIT_KEY)
  340. goto next1;
  341. qgroup = find_qgroup_rb(fs_info, found_key.offset);
  342. if ((qgroup && found_key.type == BTRFS_QGROUP_INFO_KEY) ||
  343. (!qgroup && found_key.type == BTRFS_QGROUP_LIMIT_KEY)) {
  344. btrfs_err(fs_info, "inconsistent qgroup config");
  345. flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  346. }
  347. if (!qgroup) {
  348. qgroup = add_qgroup_rb(fs_info, found_key.offset);
  349. if (IS_ERR(qgroup)) {
  350. ret = PTR_ERR(qgroup);
  351. goto out;
  352. }
  353. }
  354. switch (found_key.type) {
  355. case BTRFS_QGROUP_INFO_KEY: {
  356. struct btrfs_qgroup_info_item *ptr;
  357. ptr = btrfs_item_ptr(l, slot,
  358. struct btrfs_qgroup_info_item);
  359. qgroup->rfer = btrfs_qgroup_info_rfer(l, ptr);
  360. qgroup->rfer_cmpr = btrfs_qgroup_info_rfer_cmpr(l, ptr);
  361. qgroup->excl = btrfs_qgroup_info_excl(l, ptr);
  362. qgroup->excl_cmpr = btrfs_qgroup_info_excl_cmpr(l, ptr);
  363. /* generation currently unused */
  364. break;
  365. }
  366. case BTRFS_QGROUP_LIMIT_KEY: {
  367. struct btrfs_qgroup_limit_item *ptr;
  368. ptr = btrfs_item_ptr(l, slot,
  369. struct btrfs_qgroup_limit_item);
  370. qgroup->lim_flags = btrfs_qgroup_limit_flags(l, ptr);
  371. qgroup->max_rfer = btrfs_qgroup_limit_max_rfer(l, ptr);
  372. qgroup->max_excl = btrfs_qgroup_limit_max_excl(l, ptr);
  373. qgroup->rsv_rfer = btrfs_qgroup_limit_rsv_rfer(l, ptr);
  374. qgroup->rsv_excl = btrfs_qgroup_limit_rsv_excl(l, ptr);
  375. break;
  376. }
  377. }
  378. next1:
  379. ret = btrfs_next_item(quota_root, path);
  380. if (ret < 0)
  381. goto out;
  382. if (ret)
  383. break;
  384. }
  385. btrfs_release_path(path);
  386. /*
  387. * pass 2: read all qgroup relations
  388. */
  389. key.objectid = 0;
  390. key.type = BTRFS_QGROUP_RELATION_KEY;
  391. key.offset = 0;
  392. ret = btrfs_search_slot_for_read(quota_root, &key, path, 1, 0);
  393. if (ret)
  394. goto out;
  395. while (1) {
  396. slot = path->slots[0];
  397. l = path->nodes[0];
  398. btrfs_item_key_to_cpu(l, &found_key, slot);
  399. if (found_key.type != BTRFS_QGROUP_RELATION_KEY)
  400. goto next2;
  401. if (found_key.objectid > found_key.offset) {
  402. /* parent <- member, not needed to build config */
  403. /* FIXME should we omit the key completely? */
  404. goto next2;
  405. }
  406. ret = add_relation_rb(fs_info, found_key.objectid,
  407. found_key.offset);
  408. if (ret == -ENOENT) {
  409. btrfs_warn(fs_info,
  410. "orphan qgroup relation 0x%llx->0x%llx",
  411. found_key.objectid, found_key.offset);
  412. ret = 0; /* ignore the error */
  413. }
  414. if (ret)
  415. goto out;
  416. next2:
  417. ret = btrfs_next_item(quota_root, path);
  418. if (ret < 0)
  419. goto out;
  420. if (ret)
  421. break;
  422. }
  423. out:
  424. fs_info->qgroup_flags |= flags;
  425. if (!(fs_info->qgroup_flags & BTRFS_QGROUP_STATUS_FLAG_ON))
  426. clear_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags);
  427. else if (fs_info->qgroup_flags & BTRFS_QGROUP_STATUS_FLAG_RESCAN &&
  428. ret >= 0)
  429. ret = qgroup_rescan_init(fs_info, rescan_progress, 0);
  430. btrfs_free_path(path);
  431. if (ret < 0) {
  432. ulist_free(fs_info->qgroup_ulist);
  433. fs_info->qgroup_ulist = NULL;
  434. fs_info->qgroup_flags &= ~BTRFS_QGROUP_STATUS_FLAG_RESCAN;
  435. }
  436. return ret < 0 ? ret : 0;
  437. }
  438. /*
  439. * This is called from close_ctree() or open_ctree() or btrfs_quota_disable(),
  440. * first two are in single-threaded paths.And for the third one, we have set
  441. * quota_root to be null with qgroup_lock held before, so it is safe to clean
  442. * up the in-memory structures without qgroup_lock held.
  443. */
  444. void btrfs_free_qgroup_config(struct btrfs_fs_info *fs_info)
  445. {
  446. struct rb_node *n;
  447. struct btrfs_qgroup *qgroup;
  448. while ((n = rb_first(&fs_info->qgroup_tree))) {
  449. qgroup = rb_entry(n, struct btrfs_qgroup, node);
  450. rb_erase(n, &fs_info->qgroup_tree);
  451. __del_qgroup_rb(qgroup);
  452. }
  453. /*
  454. * we call btrfs_free_qgroup_config() when umounting
  455. * filesystem and disabling quota, so we set qgroup_ulist
  456. * to be null here to avoid double free.
  457. */
  458. ulist_free(fs_info->qgroup_ulist);
  459. fs_info->qgroup_ulist = NULL;
  460. }
  461. static int add_qgroup_relation_item(struct btrfs_trans_handle *trans, u64 src,
  462. u64 dst)
  463. {
  464. int ret;
  465. struct btrfs_root *quota_root = trans->fs_info->quota_root;
  466. struct btrfs_path *path;
  467. struct btrfs_key key;
  468. path = btrfs_alloc_path();
  469. if (!path)
  470. return -ENOMEM;
  471. key.objectid = src;
  472. key.type = BTRFS_QGROUP_RELATION_KEY;
  473. key.offset = dst;
  474. ret = btrfs_insert_empty_item(trans, quota_root, path, &key, 0);
  475. btrfs_mark_buffer_dirty(path->nodes[0]);
  476. btrfs_free_path(path);
  477. return ret;
  478. }
  479. static int del_qgroup_relation_item(struct btrfs_trans_handle *trans, u64 src,
  480. u64 dst)
  481. {
  482. int ret;
  483. struct btrfs_root *quota_root = trans->fs_info->quota_root;
  484. struct btrfs_path *path;
  485. struct btrfs_key key;
  486. path = btrfs_alloc_path();
  487. if (!path)
  488. return -ENOMEM;
  489. key.objectid = src;
  490. key.type = BTRFS_QGROUP_RELATION_KEY;
  491. key.offset = dst;
  492. ret = btrfs_search_slot(trans, quota_root, &key, path, -1, 1);
  493. if (ret < 0)
  494. goto out;
  495. if (ret > 0) {
  496. ret = -ENOENT;
  497. goto out;
  498. }
  499. ret = btrfs_del_item(trans, quota_root, path);
  500. out:
  501. btrfs_free_path(path);
  502. return ret;
  503. }
  504. static int add_qgroup_item(struct btrfs_trans_handle *trans,
  505. struct btrfs_root *quota_root, u64 qgroupid)
  506. {
  507. int ret;
  508. struct btrfs_path *path;
  509. struct btrfs_qgroup_info_item *qgroup_info;
  510. struct btrfs_qgroup_limit_item *qgroup_limit;
  511. struct extent_buffer *leaf;
  512. struct btrfs_key key;
  513. if (btrfs_is_testing(quota_root->fs_info))
  514. return 0;
  515. path = btrfs_alloc_path();
  516. if (!path)
  517. return -ENOMEM;
  518. key.objectid = 0;
  519. key.type = BTRFS_QGROUP_INFO_KEY;
  520. key.offset = qgroupid;
  521. /*
  522. * Avoid a transaction abort by catching -EEXIST here. In that
  523. * case, we proceed by re-initializing the existing structure
  524. * on disk.
  525. */
  526. ret = btrfs_insert_empty_item(trans, quota_root, path, &key,
  527. sizeof(*qgroup_info));
  528. if (ret && ret != -EEXIST)
  529. goto out;
  530. leaf = path->nodes[0];
  531. qgroup_info = btrfs_item_ptr(leaf, path->slots[0],
  532. struct btrfs_qgroup_info_item);
  533. btrfs_set_qgroup_info_generation(leaf, qgroup_info, trans->transid);
  534. btrfs_set_qgroup_info_rfer(leaf, qgroup_info, 0);
  535. btrfs_set_qgroup_info_rfer_cmpr(leaf, qgroup_info, 0);
  536. btrfs_set_qgroup_info_excl(leaf, qgroup_info, 0);
  537. btrfs_set_qgroup_info_excl_cmpr(leaf, qgroup_info, 0);
  538. btrfs_mark_buffer_dirty(leaf);
  539. btrfs_release_path(path);
  540. key.type = BTRFS_QGROUP_LIMIT_KEY;
  541. ret = btrfs_insert_empty_item(trans, quota_root, path, &key,
  542. sizeof(*qgroup_limit));
  543. if (ret && ret != -EEXIST)
  544. goto out;
  545. leaf = path->nodes[0];
  546. qgroup_limit = btrfs_item_ptr(leaf, path->slots[0],
  547. struct btrfs_qgroup_limit_item);
  548. btrfs_set_qgroup_limit_flags(leaf, qgroup_limit, 0);
  549. btrfs_set_qgroup_limit_max_rfer(leaf, qgroup_limit, 0);
  550. btrfs_set_qgroup_limit_max_excl(leaf, qgroup_limit, 0);
  551. btrfs_set_qgroup_limit_rsv_rfer(leaf, qgroup_limit, 0);
  552. btrfs_set_qgroup_limit_rsv_excl(leaf, qgroup_limit, 0);
  553. btrfs_mark_buffer_dirty(leaf);
  554. ret = 0;
  555. out:
  556. btrfs_free_path(path);
  557. return ret;
  558. }
  559. static int del_qgroup_item(struct btrfs_trans_handle *trans, u64 qgroupid)
  560. {
  561. int ret;
  562. struct btrfs_root *quota_root = trans->fs_info->quota_root;
  563. struct btrfs_path *path;
  564. struct btrfs_key key;
  565. path = btrfs_alloc_path();
  566. if (!path)
  567. return -ENOMEM;
  568. key.objectid = 0;
  569. key.type = BTRFS_QGROUP_INFO_KEY;
  570. key.offset = qgroupid;
  571. ret = btrfs_search_slot(trans, quota_root, &key, path, -1, 1);
  572. if (ret < 0)
  573. goto out;
  574. if (ret > 0) {
  575. ret = -ENOENT;
  576. goto out;
  577. }
  578. ret = btrfs_del_item(trans, quota_root, path);
  579. if (ret)
  580. goto out;
  581. btrfs_release_path(path);
  582. key.type = BTRFS_QGROUP_LIMIT_KEY;
  583. ret = btrfs_search_slot(trans, quota_root, &key, path, -1, 1);
  584. if (ret < 0)
  585. goto out;
  586. if (ret > 0) {
  587. ret = -ENOENT;
  588. goto out;
  589. }
  590. ret = btrfs_del_item(trans, quota_root, path);
  591. out:
  592. btrfs_free_path(path);
  593. return ret;
  594. }
  595. static int update_qgroup_limit_item(struct btrfs_trans_handle *trans,
  596. struct btrfs_qgroup *qgroup)
  597. {
  598. struct btrfs_root *quota_root = trans->fs_info->quota_root;
  599. struct btrfs_path *path;
  600. struct btrfs_key key;
  601. struct extent_buffer *l;
  602. struct btrfs_qgroup_limit_item *qgroup_limit;
  603. int ret;
  604. int slot;
  605. key.objectid = 0;
  606. key.type = BTRFS_QGROUP_LIMIT_KEY;
  607. key.offset = qgroup->qgroupid;
  608. path = btrfs_alloc_path();
  609. if (!path)
  610. return -ENOMEM;
  611. ret = btrfs_search_slot(trans, quota_root, &key, path, 0, 1);
  612. if (ret > 0)
  613. ret = -ENOENT;
  614. if (ret)
  615. goto out;
  616. l = path->nodes[0];
  617. slot = path->slots[0];
  618. qgroup_limit = btrfs_item_ptr(l, slot, struct btrfs_qgroup_limit_item);
  619. btrfs_set_qgroup_limit_flags(l, qgroup_limit, qgroup->lim_flags);
  620. btrfs_set_qgroup_limit_max_rfer(l, qgroup_limit, qgroup->max_rfer);
  621. btrfs_set_qgroup_limit_max_excl(l, qgroup_limit, qgroup->max_excl);
  622. btrfs_set_qgroup_limit_rsv_rfer(l, qgroup_limit, qgroup->rsv_rfer);
  623. btrfs_set_qgroup_limit_rsv_excl(l, qgroup_limit, qgroup->rsv_excl);
  624. btrfs_mark_buffer_dirty(l);
  625. out:
  626. btrfs_free_path(path);
  627. return ret;
  628. }
  629. static int update_qgroup_info_item(struct btrfs_trans_handle *trans,
  630. struct btrfs_qgroup *qgroup)
  631. {
  632. struct btrfs_fs_info *fs_info = trans->fs_info;
  633. struct btrfs_root *quota_root = fs_info->quota_root;
  634. struct btrfs_path *path;
  635. struct btrfs_key key;
  636. struct extent_buffer *l;
  637. struct btrfs_qgroup_info_item *qgroup_info;
  638. int ret;
  639. int slot;
  640. if (btrfs_is_testing(fs_info))
  641. return 0;
  642. key.objectid = 0;
  643. key.type = BTRFS_QGROUP_INFO_KEY;
  644. key.offset = qgroup->qgroupid;
  645. path = btrfs_alloc_path();
  646. if (!path)
  647. return -ENOMEM;
  648. ret = btrfs_search_slot(trans, quota_root, &key, path, 0, 1);
  649. if (ret > 0)
  650. ret = -ENOENT;
  651. if (ret)
  652. goto out;
  653. l = path->nodes[0];
  654. slot = path->slots[0];
  655. qgroup_info = btrfs_item_ptr(l, slot, struct btrfs_qgroup_info_item);
  656. btrfs_set_qgroup_info_generation(l, qgroup_info, trans->transid);
  657. btrfs_set_qgroup_info_rfer(l, qgroup_info, qgroup->rfer);
  658. btrfs_set_qgroup_info_rfer_cmpr(l, qgroup_info, qgroup->rfer_cmpr);
  659. btrfs_set_qgroup_info_excl(l, qgroup_info, qgroup->excl);
  660. btrfs_set_qgroup_info_excl_cmpr(l, qgroup_info, qgroup->excl_cmpr);
  661. btrfs_mark_buffer_dirty(l);
  662. out:
  663. btrfs_free_path(path);
  664. return ret;
  665. }
  666. static int update_qgroup_status_item(struct btrfs_trans_handle *trans)
  667. {
  668. struct btrfs_fs_info *fs_info = trans->fs_info;
  669. struct btrfs_root *quota_root = fs_info->quota_root;
  670. struct btrfs_path *path;
  671. struct btrfs_key key;
  672. struct extent_buffer *l;
  673. struct btrfs_qgroup_status_item *ptr;
  674. int ret;
  675. int slot;
  676. key.objectid = 0;
  677. key.type = BTRFS_QGROUP_STATUS_KEY;
  678. key.offset = 0;
  679. path = btrfs_alloc_path();
  680. if (!path)
  681. return -ENOMEM;
  682. ret = btrfs_search_slot(trans, quota_root, &key, path, 0, 1);
  683. if (ret > 0)
  684. ret = -ENOENT;
  685. if (ret)
  686. goto out;
  687. l = path->nodes[0];
  688. slot = path->slots[0];
  689. ptr = btrfs_item_ptr(l, slot, struct btrfs_qgroup_status_item);
  690. btrfs_set_qgroup_status_flags(l, ptr, fs_info->qgroup_flags);
  691. btrfs_set_qgroup_status_generation(l, ptr, trans->transid);
  692. btrfs_set_qgroup_status_rescan(l, ptr,
  693. fs_info->qgroup_rescan_progress.objectid);
  694. btrfs_mark_buffer_dirty(l);
  695. out:
  696. btrfs_free_path(path);
  697. return ret;
  698. }
  699. /*
  700. * called with qgroup_lock held
  701. */
  702. static int btrfs_clean_quota_tree(struct btrfs_trans_handle *trans,
  703. struct btrfs_root *root)
  704. {
  705. struct btrfs_path *path;
  706. struct btrfs_key key;
  707. struct extent_buffer *leaf = NULL;
  708. int ret;
  709. int nr = 0;
  710. path = btrfs_alloc_path();
  711. if (!path)
  712. return -ENOMEM;
  713. path->leave_spinning = 1;
  714. key.objectid = 0;
  715. key.offset = 0;
  716. key.type = 0;
  717. while (1) {
  718. ret = btrfs_search_slot(trans, root, &key, path, -1, 1);
  719. if (ret < 0)
  720. goto out;
  721. leaf = path->nodes[0];
  722. nr = btrfs_header_nritems(leaf);
  723. if (!nr)
  724. break;
  725. /*
  726. * delete the leaf one by one
  727. * since the whole tree is going
  728. * to be deleted.
  729. */
  730. path->slots[0] = 0;
  731. ret = btrfs_del_items(trans, root, path, 0, nr);
  732. if (ret)
  733. goto out;
  734. btrfs_release_path(path);
  735. }
  736. ret = 0;
  737. out:
  738. btrfs_free_path(path);
  739. return ret;
  740. }
  741. int btrfs_quota_enable(struct btrfs_fs_info *fs_info)
  742. {
  743. struct btrfs_root *quota_root;
  744. struct btrfs_root *tree_root = fs_info->tree_root;
  745. struct btrfs_path *path = NULL;
  746. struct btrfs_qgroup_status_item *ptr;
  747. struct extent_buffer *leaf;
  748. struct btrfs_key key;
  749. struct btrfs_key found_key;
  750. struct btrfs_qgroup *qgroup = NULL;
  751. struct btrfs_trans_handle *trans = NULL;
  752. int ret = 0;
  753. int slot;
  754. mutex_lock(&fs_info->qgroup_ioctl_lock);
  755. if (fs_info->quota_root)
  756. goto out;
  757. /*
  758. * 1 for quota root item
  759. * 1 for BTRFS_QGROUP_STATUS item
  760. *
  761. * Yet we also need 2*n items for a QGROUP_INFO/QGROUP_LIMIT items
  762. * per subvolume. However those are not currently reserved since it
  763. * would be a lot of overkill.
  764. */
  765. trans = btrfs_start_transaction(tree_root, 2);
  766. if (IS_ERR(trans)) {
  767. ret = PTR_ERR(trans);
  768. trans = NULL;
  769. goto out;
  770. }
  771. fs_info->qgroup_ulist = ulist_alloc(GFP_KERNEL);
  772. if (!fs_info->qgroup_ulist) {
  773. ret = -ENOMEM;
  774. btrfs_abort_transaction(trans, ret);
  775. goto out;
  776. }
  777. /*
  778. * initially create the quota tree
  779. */
  780. quota_root = btrfs_create_tree(trans, fs_info,
  781. BTRFS_QUOTA_TREE_OBJECTID);
  782. if (IS_ERR(quota_root)) {
  783. ret = PTR_ERR(quota_root);
  784. btrfs_abort_transaction(trans, ret);
  785. goto out;
  786. }
  787. path = btrfs_alloc_path();
  788. if (!path) {
  789. ret = -ENOMEM;
  790. btrfs_abort_transaction(trans, ret);
  791. goto out_free_root;
  792. }
  793. key.objectid = 0;
  794. key.type = BTRFS_QGROUP_STATUS_KEY;
  795. key.offset = 0;
  796. ret = btrfs_insert_empty_item(trans, quota_root, path, &key,
  797. sizeof(*ptr));
  798. if (ret) {
  799. btrfs_abort_transaction(trans, ret);
  800. goto out_free_path;
  801. }
  802. leaf = path->nodes[0];
  803. ptr = btrfs_item_ptr(leaf, path->slots[0],
  804. struct btrfs_qgroup_status_item);
  805. btrfs_set_qgroup_status_generation(leaf, ptr, trans->transid);
  806. btrfs_set_qgroup_status_version(leaf, ptr, BTRFS_QGROUP_STATUS_VERSION);
  807. fs_info->qgroup_flags = BTRFS_QGROUP_STATUS_FLAG_ON |
  808. BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  809. btrfs_set_qgroup_status_flags(leaf, ptr, fs_info->qgroup_flags);
  810. btrfs_set_qgroup_status_rescan(leaf, ptr, 0);
  811. btrfs_mark_buffer_dirty(leaf);
  812. key.objectid = 0;
  813. key.type = BTRFS_ROOT_REF_KEY;
  814. key.offset = 0;
  815. btrfs_release_path(path);
  816. ret = btrfs_search_slot_for_read(tree_root, &key, path, 1, 0);
  817. if (ret > 0)
  818. goto out_add_root;
  819. if (ret < 0) {
  820. btrfs_abort_transaction(trans, ret);
  821. goto out_free_path;
  822. }
  823. while (1) {
  824. slot = path->slots[0];
  825. leaf = path->nodes[0];
  826. btrfs_item_key_to_cpu(leaf, &found_key, slot);
  827. if (found_key.type == BTRFS_ROOT_REF_KEY) {
  828. ret = add_qgroup_item(trans, quota_root,
  829. found_key.offset);
  830. if (ret) {
  831. btrfs_abort_transaction(trans, ret);
  832. goto out_free_path;
  833. }
  834. qgroup = add_qgroup_rb(fs_info, found_key.offset);
  835. if (IS_ERR(qgroup)) {
  836. ret = PTR_ERR(qgroup);
  837. btrfs_abort_transaction(trans, ret);
  838. goto out_free_path;
  839. }
  840. }
  841. ret = btrfs_next_item(tree_root, path);
  842. if (ret < 0) {
  843. btrfs_abort_transaction(trans, ret);
  844. goto out_free_path;
  845. }
  846. if (ret)
  847. break;
  848. }
  849. out_add_root:
  850. btrfs_release_path(path);
  851. ret = add_qgroup_item(trans, quota_root, BTRFS_FS_TREE_OBJECTID);
  852. if (ret) {
  853. btrfs_abort_transaction(trans, ret);
  854. goto out_free_path;
  855. }
  856. qgroup = add_qgroup_rb(fs_info, BTRFS_FS_TREE_OBJECTID);
  857. if (IS_ERR(qgroup)) {
  858. ret = PTR_ERR(qgroup);
  859. btrfs_abort_transaction(trans, ret);
  860. goto out_free_path;
  861. }
  862. spin_lock(&fs_info->qgroup_lock);
  863. fs_info->quota_root = quota_root;
  864. set_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags);
  865. spin_unlock(&fs_info->qgroup_lock);
  866. ret = btrfs_commit_transaction(trans);
  867. trans = NULL;
  868. if (ret)
  869. goto out_free_path;
  870. ret = qgroup_rescan_init(fs_info, 0, 1);
  871. if (!ret) {
  872. qgroup_rescan_zero_tracking(fs_info);
  873. btrfs_queue_work(fs_info->qgroup_rescan_workers,
  874. &fs_info->qgroup_rescan_work);
  875. }
  876. out_free_path:
  877. btrfs_free_path(path);
  878. out_free_root:
  879. if (ret) {
  880. free_extent_buffer(quota_root->node);
  881. free_extent_buffer(quota_root->commit_root);
  882. kfree(quota_root);
  883. }
  884. out:
  885. if (ret) {
  886. ulist_free(fs_info->qgroup_ulist);
  887. fs_info->qgroup_ulist = NULL;
  888. if (trans)
  889. btrfs_end_transaction(trans);
  890. }
  891. mutex_unlock(&fs_info->qgroup_ioctl_lock);
  892. return ret;
  893. }
  894. int btrfs_quota_disable(struct btrfs_fs_info *fs_info)
  895. {
  896. struct btrfs_root *quota_root;
  897. struct btrfs_trans_handle *trans = NULL;
  898. int ret = 0;
  899. mutex_lock(&fs_info->qgroup_ioctl_lock);
  900. if (!fs_info->quota_root)
  901. goto out;
  902. /*
  903. * 1 For the root item
  904. *
  905. * We should also reserve enough items for the quota tree deletion in
  906. * btrfs_clean_quota_tree but this is not done.
  907. */
  908. trans = btrfs_start_transaction(fs_info->tree_root, 1);
  909. if (IS_ERR(trans)) {
  910. ret = PTR_ERR(trans);
  911. goto out;
  912. }
  913. clear_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags);
  914. btrfs_qgroup_wait_for_completion(fs_info, false);
  915. spin_lock(&fs_info->qgroup_lock);
  916. quota_root = fs_info->quota_root;
  917. fs_info->quota_root = NULL;
  918. fs_info->qgroup_flags &= ~BTRFS_QGROUP_STATUS_FLAG_ON;
  919. spin_unlock(&fs_info->qgroup_lock);
  920. btrfs_free_qgroup_config(fs_info);
  921. ret = btrfs_clean_quota_tree(trans, quota_root);
  922. if (ret) {
  923. btrfs_abort_transaction(trans, ret);
  924. goto end_trans;
  925. }
  926. ret = btrfs_del_root(trans, &quota_root->root_key);
  927. if (ret) {
  928. btrfs_abort_transaction(trans, ret);
  929. goto end_trans;
  930. }
  931. list_del(&quota_root->dirty_list);
  932. btrfs_tree_lock(quota_root->node);
  933. clean_tree_block(fs_info, quota_root->node);
  934. btrfs_tree_unlock(quota_root->node);
  935. btrfs_free_tree_block(trans, quota_root, quota_root->node, 0, 1);
  936. free_extent_buffer(quota_root->node);
  937. free_extent_buffer(quota_root->commit_root);
  938. kfree(quota_root);
  939. end_trans:
  940. ret = btrfs_end_transaction(trans);
  941. out:
  942. mutex_unlock(&fs_info->qgroup_ioctl_lock);
  943. return ret;
  944. }
  945. static void qgroup_dirty(struct btrfs_fs_info *fs_info,
  946. struct btrfs_qgroup *qgroup)
  947. {
  948. if (list_empty(&qgroup->dirty))
  949. list_add(&qgroup->dirty, &fs_info->dirty_qgroups);
  950. }
  951. /*
  952. * The easy accounting, we're updating qgroup relationship whose child qgroup
  953. * only has exclusive extents.
  954. *
  955. * In this case, all exclsuive extents will also be exlusive for parent, so
  956. * excl/rfer just get added/removed.
  957. *
  958. * So is qgroup reservation space, which should also be added/removed to
  959. * parent.
  960. * Or when child tries to release reservation space, parent will underflow its
  961. * reservation (for relationship adding case).
  962. *
  963. * Caller should hold fs_info->qgroup_lock.
  964. */
  965. static int __qgroup_excl_accounting(struct btrfs_fs_info *fs_info,
  966. struct ulist *tmp, u64 ref_root,
  967. struct btrfs_qgroup *src, int sign)
  968. {
  969. struct btrfs_qgroup *qgroup;
  970. struct btrfs_qgroup_list *glist;
  971. struct ulist_node *unode;
  972. struct ulist_iterator uiter;
  973. u64 num_bytes = src->excl;
  974. int ret = 0;
  975. qgroup = find_qgroup_rb(fs_info, ref_root);
  976. if (!qgroup)
  977. goto out;
  978. qgroup->rfer += sign * num_bytes;
  979. qgroup->rfer_cmpr += sign * num_bytes;
  980. WARN_ON(sign < 0 && qgroup->excl < num_bytes);
  981. qgroup->excl += sign * num_bytes;
  982. qgroup->excl_cmpr += sign * num_bytes;
  983. if (sign > 0)
  984. qgroup_rsv_add_by_qgroup(fs_info, qgroup, src);
  985. else
  986. qgroup_rsv_release_by_qgroup(fs_info, qgroup, src);
  987. qgroup_dirty(fs_info, qgroup);
  988. /* Get all of the parent groups that contain this qgroup */
  989. list_for_each_entry(glist, &qgroup->groups, next_group) {
  990. ret = ulist_add(tmp, glist->group->qgroupid,
  991. qgroup_to_aux(glist->group), GFP_ATOMIC);
  992. if (ret < 0)
  993. goto out;
  994. }
  995. /* Iterate all of the parents and adjust their reference counts */
  996. ULIST_ITER_INIT(&uiter);
  997. while ((unode = ulist_next(tmp, &uiter))) {
  998. qgroup = unode_aux_to_qgroup(unode);
  999. qgroup->rfer += sign * num_bytes;
  1000. qgroup->rfer_cmpr += sign * num_bytes;
  1001. WARN_ON(sign < 0 && qgroup->excl < num_bytes);
  1002. qgroup->excl += sign * num_bytes;
  1003. if (sign > 0)
  1004. qgroup_rsv_add_by_qgroup(fs_info, qgroup, src);
  1005. else
  1006. qgroup_rsv_release_by_qgroup(fs_info, qgroup, src);
  1007. qgroup->excl_cmpr += sign * num_bytes;
  1008. qgroup_dirty(fs_info, qgroup);
  1009. /* Add any parents of the parents */
  1010. list_for_each_entry(glist, &qgroup->groups, next_group) {
  1011. ret = ulist_add(tmp, glist->group->qgroupid,
  1012. qgroup_to_aux(glist->group), GFP_ATOMIC);
  1013. if (ret < 0)
  1014. goto out;
  1015. }
  1016. }
  1017. ret = 0;
  1018. out:
  1019. return ret;
  1020. }
  1021. /*
  1022. * Quick path for updating qgroup with only excl refs.
  1023. *
  1024. * In that case, just update all parent will be enough.
  1025. * Or we needs to do a full rescan.
  1026. * Caller should also hold fs_info->qgroup_lock.
  1027. *
  1028. * Return 0 for quick update, return >0 for need to full rescan
  1029. * and mark INCONSISTENT flag.
  1030. * Return < 0 for other error.
  1031. */
  1032. static int quick_update_accounting(struct btrfs_fs_info *fs_info,
  1033. struct ulist *tmp, u64 src, u64 dst,
  1034. int sign)
  1035. {
  1036. struct btrfs_qgroup *qgroup;
  1037. int ret = 1;
  1038. int err = 0;
  1039. qgroup = find_qgroup_rb(fs_info, src);
  1040. if (!qgroup)
  1041. goto out;
  1042. if (qgroup->excl == qgroup->rfer) {
  1043. ret = 0;
  1044. err = __qgroup_excl_accounting(fs_info, tmp, dst,
  1045. qgroup, sign);
  1046. if (err < 0) {
  1047. ret = err;
  1048. goto out;
  1049. }
  1050. }
  1051. out:
  1052. if (ret)
  1053. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  1054. return ret;
  1055. }
  1056. int btrfs_add_qgroup_relation(struct btrfs_trans_handle *trans, u64 src,
  1057. u64 dst)
  1058. {
  1059. struct btrfs_fs_info *fs_info = trans->fs_info;
  1060. struct btrfs_root *quota_root;
  1061. struct btrfs_qgroup *parent;
  1062. struct btrfs_qgroup *member;
  1063. struct btrfs_qgroup_list *list;
  1064. struct ulist *tmp;
  1065. int ret = 0;
  1066. /* Check the level of src and dst first */
  1067. if (btrfs_qgroup_level(src) >= btrfs_qgroup_level(dst))
  1068. return -EINVAL;
  1069. tmp = ulist_alloc(GFP_KERNEL);
  1070. if (!tmp)
  1071. return -ENOMEM;
  1072. mutex_lock(&fs_info->qgroup_ioctl_lock);
  1073. quota_root = fs_info->quota_root;
  1074. if (!quota_root) {
  1075. ret = -EINVAL;
  1076. goto out;
  1077. }
  1078. member = find_qgroup_rb(fs_info, src);
  1079. parent = find_qgroup_rb(fs_info, dst);
  1080. if (!member || !parent) {
  1081. ret = -EINVAL;
  1082. goto out;
  1083. }
  1084. /* check if such qgroup relation exist firstly */
  1085. list_for_each_entry(list, &member->groups, next_group) {
  1086. if (list->group == parent) {
  1087. ret = -EEXIST;
  1088. goto out;
  1089. }
  1090. }
  1091. ret = add_qgroup_relation_item(trans, src, dst);
  1092. if (ret)
  1093. goto out;
  1094. ret = add_qgroup_relation_item(trans, dst, src);
  1095. if (ret) {
  1096. del_qgroup_relation_item(trans, src, dst);
  1097. goto out;
  1098. }
  1099. spin_lock(&fs_info->qgroup_lock);
  1100. ret = add_relation_rb(fs_info, src, dst);
  1101. if (ret < 0) {
  1102. spin_unlock(&fs_info->qgroup_lock);
  1103. goto out;
  1104. }
  1105. ret = quick_update_accounting(fs_info, tmp, src, dst, 1);
  1106. spin_unlock(&fs_info->qgroup_lock);
  1107. out:
  1108. mutex_unlock(&fs_info->qgroup_ioctl_lock);
  1109. ulist_free(tmp);
  1110. return ret;
  1111. }
  1112. static int __del_qgroup_relation(struct btrfs_trans_handle *trans, u64 src,
  1113. u64 dst)
  1114. {
  1115. struct btrfs_fs_info *fs_info = trans->fs_info;
  1116. struct btrfs_root *quota_root;
  1117. struct btrfs_qgroup *parent;
  1118. struct btrfs_qgroup *member;
  1119. struct btrfs_qgroup_list *list;
  1120. struct ulist *tmp;
  1121. int ret = 0;
  1122. int err;
  1123. tmp = ulist_alloc(GFP_KERNEL);
  1124. if (!tmp)
  1125. return -ENOMEM;
  1126. quota_root = fs_info->quota_root;
  1127. if (!quota_root) {
  1128. ret = -EINVAL;
  1129. goto out;
  1130. }
  1131. member = find_qgroup_rb(fs_info, src);
  1132. parent = find_qgroup_rb(fs_info, dst);
  1133. if (!member || !parent) {
  1134. ret = -EINVAL;
  1135. goto out;
  1136. }
  1137. /* check if such qgroup relation exist firstly */
  1138. list_for_each_entry(list, &member->groups, next_group) {
  1139. if (list->group == parent)
  1140. goto exist;
  1141. }
  1142. ret = -ENOENT;
  1143. goto out;
  1144. exist:
  1145. ret = del_qgroup_relation_item(trans, src, dst);
  1146. err = del_qgroup_relation_item(trans, dst, src);
  1147. if (err && !ret)
  1148. ret = err;
  1149. spin_lock(&fs_info->qgroup_lock);
  1150. del_relation_rb(fs_info, src, dst);
  1151. ret = quick_update_accounting(fs_info, tmp, src, dst, -1);
  1152. spin_unlock(&fs_info->qgroup_lock);
  1153. out:
  1154. ulist_free(tmp);
  1155. return ret;
  1156. }
  1157. int btrfs_del_qgroup_relation(struct btrfs_trans_handle *trans, u64 src,
  1158. u64 dst)
  1159. {
  1160. struct btrfs_fs_info *fs_info = trans->fs_info;
  1161. int ret = 0;
  1162. mutex_lock(&fs_info->qgroup_ioctl_lock);
  1163. ret = __del_qgroup_relation(trans, src, dst);
  1164. mutex_unlock(&fs_info->qgroup_ioctl_lock);
  1165. return ret;
  1166. }
  1167. int btrfs_create_qgroup(struct btrfs_trans_handle *trans, u64 qgroupid)
  1168. {
  1169. struct btrfs_fs_info *fs_info = trans->fs_info;
  1170. struct btrfs_root *quota_root;
  1171. struct btrfs_qgroup *qgroup;
  1172. int ret = 0;
  1173. mutex_lock(&fs_info->qgroup_ioctl_lock);
  1174. quota_root = fs_info->quota_root;
  1175. if (!quota_root) {
  1176. ret = -EINVAL;
  1177. goto out;
  1178. }
  1179. qgroup = find_qgroup_rb(fs_info, qgroupid);
  1180. if (qgroup) {
  1181. ret = -EEXIST;
  1182. goto out;
  1183. }
  1184. ret = add_qgroup_item(trans, quota_root, qgroupid);
  1185. if (ret)
  1186. goto out;
  1187. spin_lock(&fs_info->qgroup_lock);
  1188. qgroup = add_qgroup_rb(fs_info, qgroupid);
  1189. spin_unlock(&fs_info->qgroup_lock);
  1190. if (IS_ERR(qgroup))
  1191. ret = PTR_ERR(qgroup);
  1192. out:
  1193. mutex_unlock(&fs_info->qgroup_ioctl_lock);
  1194. return ret;
  1195. }
  1196. int btrfs_remove_qgroup(struct btrfs_trans_handle *trans, u64 qgroupid)
  1197. {
  1198. struct btrfs_fs_info *fs_info = trans->fs_info;
  1199. struct btrfs_root *quota_root;
  1200. struct btrfs_qgroup *qgroup;
  1201. struct btrfs_qgroup_list *list;
  1202. int ret = 0;
  1203. mutex_lock(&fs_info->qgroup_ioctl_lock);
  1204. quota_root = fs_info->quota_root;
  1205. if (!quota_root) {
  1206. ret = -EINVAL;
  1207. goto out;
  1208. }
  1209. qgroup = find_qgroup_rb(fs_info, qgroupid);
  1210. if (!qgroup) {
  1211. ret = -ENOENT;
  1212. goto out;
  1213. }
  1214. /* Check if there are no children of this qgroup */
  1215. if (!list_empty(&qgroup->members)) {
  1216. ret = -EBUSY;
  1217. goto out;
  1218. }
  1219. ret = del_qgroup_item(trans, qgroupid);
  1220. if (ret && ret != -ENOENT)
  1221. goto out;
  1222. while (!list_empty(&qgroup->groups)) {
  1223. list = list_first_entry(&qgroup->groups,
  1224. struct btrfs_qgroup_list, next_group);
  1225. ret = __del_qgroup_relation(trans, qgroupid,
  1226. list->group->qgroupid);
  1227. if (ret)
  1228. goto out;
  1229. }
  1230. spin_lock(&fs_info->qgroup_lock);
  1231. del_qgroup_rb(fs_info, qgroupid);
  1232. spin_unlock(&fs_info->qgroup_lock);
  1233. out:
  1234. mutex_unlock(&fs_info->qgroup_ioctl_lock);
  1235. return ret;
  1236. }
  1237. int btrfs_limit_qgroup(struct btrfs_trans_handle *trans, u64 qgroupid,
  1238. struct btrfs_qgroup_limit *limit)
  1239. {
  1240. struct btrfs_fs_info *fs_info = trans->fs_info;
  1241. struct btrfs_root *quota_root;
  1242. struct btrfs_qgroup *qgroup;
  1243. int ret = 0;
  1244. /* Sometimes we would want to clear the limit on this qgroup.
  1245. * To meet this requirement, we treat the -1 as a special value
  1246. * which tell kernel to clear the limit on this qgroup.
  1247. */
  1248. const u64 CLEAR_VALUE = -1;
  1249. mutex_lock(&fs_info->qgroup_ioctl_lock);
  1250. quota_root = fs_info->quota_root;
  1251. if (!quota_root) {
  1252. ret = -EINVAL;
  1253. goto out;
  1254. }
  1255. qgroup = find_qgroup_rb(fs_info, qgroupid);
  1256. if (!qgroup) {
  1257. ret = -ENOENT;
  1258. goto out;
  1259. }
  1260. spin_lock(&fs_info->qgroup_lock);
  1261. if (limit->flags & BTRFS_QGROUP_LIMIT_MAX_RFER) {
  1262. if (limit->max_rfer == CLEAR_VALUE) {
  1263. qgroup->lim_flags &= ~BTRFS_QGROUP_LIMIT_MAX_RFER;
  1264. limit->flags &= ~BTRFS_QGROUP_LIMIT_MAX_RFER;
  1265. qgroup->max_rfer = 0;
  1266. } else {
  1267. qgroup->max_rfer = limit->max_rfer;
  1268. }
  1269. }
  1270. if (limit->flags & BTRFS_QGROUP_LIMIT_MAX_EXCL) {
  1271. if (limit->max_excl == CLEAR_VALUE) {
  1272. qgroup->lim_flags &= ~BTRFS_QGROUP_LIMIT_MAX_EXCL;
  1273. limit->flags &= ~BTRFS_QGROUP_LIMIT_MAX_EXCL;
  1274. qgroup->max_excl = 0;
  1275. } else {
  1276. qgroup->max_excl = limit->max_excl;
  1277. }
  1278. }
  1279. if (limit->flags & BTRFS_QGROUP_LIMIT_RSV_RFER) {
  1280. if (limit->rsv_rfer == CLEAR_VALUE) {
  1281. qgroup->lim_flags &= ~BTRFS_QGROUP_LIMIT_RSV_RFER;
  1282. limit->flags &= ~BTRFS_QGROUP_LIMIT_RSV_RFER;
  1283. qgroup->rsv_rfer = 0;
  1284. } else {
  1285. qgroup->rsv_rfer = limit->rsv_rfer;
  1286. }
  1287. }
  1288. if (limit->flags & BTRFS_QGROUP_LIMIT_RSV_EXCL) {
  1289. if (limit->rsv_excl == CLEAR_VALUE) {
  1290. qgroup->lim_flags &= ~BTRFS_QGROUP_LIMIT_RSV_EXCL;
  1291. limit->flags &= ~BTRFS_QGROUP_LIMIT_RSV_EXCL;
  1292. qgroup->rsv_excl = 0;
  1293. } else {
  1294. qgroup->rsv_excl = limit->rsv_excl;
  1295. }
  1296. }
  1297. qgroup->lim_flags |= limit->flags;
  1298. spin_unlock(&fs_info->qgroup_lock);
  1299. ret = update_qgroup_limit_item(trans, qgroup);
  1300. if (ret) {
  1301. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  1302. btrfs_info(fs_info, "unable to update quota limit for %llu",
  1303. qgroupid);
  1304. }
  1305. out:
  1306. mutex_unlock(&fs_info->qgroup_ioctl_lock);
  1307. return ret;
  1308. }
  1309. int btrfs_qgroup_trace_extent_nolock(struct btrfs_fs_info *fs_info,
  1310. struct btrfs_delayed_ref_root *delayed_refs,
  1311. struct btrfs_qgroup_extent_record *record)
  1312. {
  1313. struct rb_node **p = &delayed_refs->dirty_extent_root.rb_node;
  1314. struct rb_node *parent_node = NULL;
  1315. struct btrfs_qgroup_extent_record *entry;
  1316. u64 bytenr = record->bytenr;
  1317. lockdep_assert_held(&delayed_refs->lock);
  1318. trace_btrfs_qgroup_trace_extent(fs_info, record);
  1319. while (*p) {
  1320. parent_node = *p;
  1321. entry = rb_entry(parent_node, struct btrfs_qgroup_extent_record,
  1322. node);
  1323. if (bytenr < entry->bytenr)
  1324. p = &(*p)->rb_left;
  1325. else if (bytenr > entry->bytenr)
  1326. p = &(*p)->rb_right;
  1327. else
  1328. return 1;
  1329. }
  1330. rb_link_node(&record->node, parent_node, p);
  1331. rb_insert_color(&record->node, &delayed_refs->dirty_extent_root);
  1332. return 0;
  1333. }
  1334. int btrfs_qgroup_trace_extent_post(struct btrfs_fs_info *fs_info,
  1335. struct btrfs_qgroup_extent_record *qrecord)
  1336. {
  1337. struct ulist *old_root;
  1338. u64 bytenr = qrecord->bytenr;
  1339. int ret;
  1340. ret = btrfs_find_all_roots(NULL, fs_info, bytenr, 0, &old_root, false);
  1341. if (ret < 0) {
  1342. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  1343. btrfs_warn(fs_info,
  1344. "error accounting new delayed refs extent (err code: %d), quota inconsistent",
  1345. ret);
  1346. return 0;
  1347. }
  1348. /*
  1349. * Here we don't need to get the lock of
  1350. * trans->transaction->delayed_refs, since inserted qrecord won't
  1351. * be deleted, only qrecord->node may be modified (new qrecord insert)
  1352. *
  1353. * So modifying qrecord->old_roots is safe here
  1354. */
  1355. qrecord->old_roots = old_root;
  1356. return 0;
  1357. }
  1358. int btrfs_qgroup_trace_extent(struct btrfs_trans_handle *trans, u64 bytenr,
  1359. u64 num_bytes, gfp_t gfp_flag)
  1360. {
  1361. struct btrfs_fs_info *fs_info = trans->fs_info;
  1362. struct btrfs_qgroup_extent_record *record;
  1363. struct btrfs_delayed_ref_root *delayed_refs;
  1364. int ret;
  1365. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags)
  1366. || bytenr == 0 || num_bytes == 0)
  1367. return 0;
  1368. record = kmalloc(sizeof(*record), gfp_flag);
  1369. if (!record)
  1370. return -ENOMEM;
  1371. delayed_refs = &trans->transaction->delayed_refs;
  1372. record->bytenr = bytenr;
  1373. record->num_bytes = num_bytes;
  1374. record->old_roots = NULL;
  1375. spin_lock(&delayed_refs->lock);
  1376. ret = btrfs_qgroup_trace_extent_nolock(fs_info, delayed_refs, record);
  1377. spin_unlock(&delayed_refs->lock);
  1378. if (ret > 0) {
  1379. kfree(record);
  1380. return 0;
  1381. }
  1382. return btrfs_qgroup_trace_extent_post(fs_info, record);
  1383. }
  1384. int btrfs_qgroup_trace_leaf_items(struct btrfs_trans_handle *trans,
  1385. struct extent_buffer *eb)
  1386. {
  1387. struct btrfs_fs_info *fs_info = trans->fs_info;
  1388. int nr = btrfs_header_nritems(eb);
  1389. int i, extent_type, ret;
  1390. struct btrfs_key key;
  1391. struct btrfs_file_extent_item *fi;
  1392. u64 bytenr, num_bytes;
  1393. /* We can be called directly from walk_up_proc() */
  1394. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags))
  1395. return 0;
  1396. for (i = 0; i < nr; i++) {
  1397. btrfs_item_key_to_cpu(eb, &key, i);
  1398. if (key.type != BTRFS_EXTENT_DATA_KEY)
  1399. continue;
  1400. fi = btrfs_item_ptr(eb, i, struct btrfs_file_extent_item);
  1401. /* filter out non qgroup-accountable extents */
  1402. extent_type = btrfs_file_extent_type(eb, fi);
  1403. if (extent_type == BTRFS_FILE_EXTENT_INLINE)
  1404. continue;
  1405. bytenr = btrfs_file_extent_disk_bytenr(eb, fi);
  1406. if (!bytenr)
  1407. continue;
  1408. num_bytes = btrfs_file_extent_disk_num_bytes(eb, fi);
  1409. ret = btrfs_qgroup_trace_extent(trans, bytenr, num_bytes,
  1410. GFP_NOFS);
  1411. if (ret)
  1412. return ret;
  1413. }
  1414. cond_resched();
  1415. return 0;
  1416. }
  1417. /*
  1418. * Walk up the tree from the bottom, freeing leaves and any interior
  1419. * nodes which have had all slots visited. If a node (leaf or
  1420. * interior) is freed, the node above it will have it's slot
  1421. * incremented. The root node will never be freed.
  1422. *
  1423. * At the end of this function, we should have a path which has all
  1424. * slots incremented to the next position for a search. If we need to
  1425. * read a new node it will be NULL and the node above it will have the
  1426. * correct slot selected for a later read.
  1427. *
  1428. * If we increment the root nodes slot counter past the number of
  1429. * elements, 1 is returned to signal completion of the search.
  1430. */
  1431. static int adjust_slots_upwards(struct btrfs_path *path, int root_level)
  1432. {
  1433. int level = 0;
  1434. int nr, slot;
  1435. struct extent_buffer *eb;
  1436. if (root_level == 0)
  1437. return 1;
  1438. while (level <= root_level) {
  1439. eb = path->nodes[level];
  1440. nr = btrfs_header_nritems(eb);
  1441. path->slots[level]++;
  1442. slot = path->slots[level];
  1443. if (slot >= nr || level == 0) {
  1444. /*
  1445. * Don't free the root - we will detect this
  1446. * condition after our loop and return a
  1447. * positive value for caller to stop walking the tree.
  1448. */
  1449. if (level != root_level) {
  1450. btrfs_tree_unlock_rw(eb, path->locks[level]);
  1451. path->locks[level] = 0;
  1452. free_extent_buffer(eb);
  1453. path->nodes[level] = NULL;
  1454. path->slots[level] = 0;
  1455. }
  1456. } else {
  1457. /*
  1458. * We have a valid slot to walk back down
  1459. * from. Stop here so caller can process these
  1460. * new nodes.
  1461. */
  1462. break;
  1463. }
  1464. level++;
  1465. }
  1466. eb = path->nodes[root_level];
  1467. if (path->slots[root_level] >= btrfs_header_nritems(eb))
  1468. return 1;
  1469. return 0;
  1470. }
  1471. /*
  1472. * Helper function to trace a subtree tree block swap.
  1473. *
  1474. * The swap will happen in highest tree block, but there may be a lot of
  1475. * tree blocks involved.
  1476. *
  1477. * For example:
  1478. * OO = Old tree blocks
  1479. * NN = New tree blocks allocated during balance
  1480. *
  1481. * File tree (257) Reloc tree for 257
  1482. * L2 OO NN
  1483. * / \ / \
  1484. * L1 OO OO (a) OO NN (a)
  1485. * / \ / \ / \ / \
  1486. * L0 OO OO OO OO OO OO NN NN
  1487. * (b) (c) (b) (c)
  1488. *
  1489. * When calling qgroup_trace_extent_swap(), we will pass:
  1490. * @src_eb = OO(a)
  1491. * @dst_path = [ nodes[1] = NN(a), nodes[0] = NN(c) ]
  1492. * @dst_level = 0
  1493. * @root_level = 1
  1494. *
  1495. * In that case, qgroup_trace_extent_swap() will search from OO(a) to
  1496. * reach OO(c), then mark both OO(c) and NN(c) as qgroup dirty.
  1497. *
  1498. * The main work of qgroup_trace_extent_swap() can be split into 3 parts:
  1499. *
  1500. * 1) Tree search from @src_eb
  1501. * It should acts as a simplified btrfs_search_slot().
  1502. * The key for search can be extracted from @dst_path->nodes[dst_level]
  1503. * (first key).
  1504. *
  1505. * 2) Mark the final tree blocks in @src_path and @dst_path qgroup dirty
  1506. * NOTE: In above case, OO(a) and NN(a) won't be marked qgroup dirty.
  1507. * They should be marked during preivous (@dst_level = 1) iteration.
  1508. *
  1509. * 3) Mark file extents in leaves dirty
  1510. * We don't have good way to pick out new file extents only.
  1511. * So we still follow the old method by scanning all file extents in
  1512. * the leave.
  1513. *
  1514. * This function can free us from keeping two pathes, thus later we only need
  1515. * to care about how to iterate all new tree blocks in reloc tree.
  1516. */
  1517. static int qgroup_trace_extent_swap(struct btrfs_trans_handle* trans,
  1518. struct extent_buffer *src_eb,
  1519. struct btrfs_path *dst_path,
  1520. int dst_level, int root_level,
  1521. bool trace_leaf)
  1522. {
  1523. struct btrfs_key key;
  1524. struct btrfs_path *src_path;
  1525. struct btrfs_fs_info *fs_info = trans->fs_info;
  1526. u32 nodesize = fs_info->nodesize;
  1527. int cur_level = root_level;
  1528. int ret;
  1529. BUG_ON(dst_level > root_level);
  1530. /* Level mismatch */
  1531. if (btrfs_header_level(src_eb) != root_level)
  1532. return -EINVAL;
  1533. src_path = btrfs_alloc_path();
  1534. if (!src_path) {
  1535. ret = -ENOMEM;
  1536. goto out;
  1537. }
  1538. if (dst_level)
  1539. btrfs_node_key_to_cpu(dst_path->nodes[dst_level], &key, 0);
  1540. else
  1541. btrfs_item_key_to_cpu(dst_path->nodes[dst_level], &key, 0);
  1542. /* For src_path */
  1543. extent_buffer_get(src_eb);
  1544. src_path->nodes[root_level] = src_eb;
  1545. src_path->slots[root_level] = dst_path->slots[root_level];
  1546. src_path->locks[root_level] = 0;
  1547. /* A simplified version of btrfs_search_slot() */
  1548. while (cur_level >= dst_level) {
  1549. struct btrfs_key src_key;
  1550. struct btrfs_key dst_key;
  1551. if (src_path->nodes[cur_level] == NULL) {
  1552. struct btrfs_key first_key;
  1553. struct extent_buffer *eb;
  1554. int parent_slot;
  1555. u64 child_gen;
  1556. u64 child_bytenr;
  1557. eb = src_path->nodes[cur_level + 1];
  1558. parent_slot = src_path->slots[cur_level + 1];
  1559. child_bytenr = btrfs_node_blockptr(eb, parent_slot);
  1560. child_gen = btrfs_node_ptr_generation(eb, parent_slot);
  1561. btrfs_node_key_to_cpu(eb, &first_key, parent_slot);
  1562. eb = read_tree_block(fs_info, child_bytenr, child_gen,
  1563. cur_level, &first_key);
  1564. if (IS_ERR(eb)) {
  1565. ret = PTR_ERR(eb);
  1566. goto out;
  1567. } else if (!extent_buffer_uptodate(eb)) {
  1568. free_extent_buffer(eb);
  1569. ret = -EIO;
  1570. goto out;
  1571. }
  1572. src_path->nodes[cur_level] = eb;
  1573. btrfs_tree_read_lock(eb);
  1574. btrfs_set_lock_blocking_rw(eb, BTRFS_READ_LOCK);
  1575. src_path->locks[cur_level] = BTRFS_READ_LOCK_BLOCKING;
  1576. }
  1577. src_path->slots[cur_level] = dst_path->slots[cur_level];
  1578. if (cur_level) {
  1579. btrfs_node_key_to_cpu(dst_path->nodes[cur_level],
  1580. &dst_key, dst_path->slots[cur_level]);
  1581. btrfs_node_key_to_cpu(src_path->nodes[cur_level],
  1582. &src_key, src_path->slots[cur_level]);
  1583. } else {
  1584. btrfs_item_key_to_cpu(dst_path->nodes[cur_level],
  1585. &dst_key, dst_path->slots[cur_level]);
  1586. btrfs_item_key_to_cpu(src_path->nodes[cur_level],
  1587. &src_key, src_path->slots[cur_level]);
  1588. }
  1589. /* Content mismatch, something went wrong */
  1590. if (btrfs_comp_cpu_keys(&dst_key, &src_key)) {
  1591. ret = -ENOENT;
  1592. goto out;
  1593. }
  1594. cur_level--;
  1595. }
  1596. /*
  1597. * Now both @dst_path and @src_path have been populated, record the tree
  1598. * blocks for qgroup accounting.
  1599. */
  1600. ret = btrfs_qgroup_trace_extent(trans, src_path->nodes[dst_level]->start,
  1601. nodesize, GFP_NOFS);
  1602. if (ret < 0)
  1603. goto out;
  1604. ret = btrfs_qgroup_trace_extent(trans,
  1605. dst_path->nodes[dst_level]->start,
  1606. nodesize, GFP_NOFS);
  1607. if (ret < 0)
  1608. goto out;
  1609. /* Record leaf file extents */
  1610. if (dst_level == 0 && trace_leaf) {
  1611. ret = btrfs_qgroup_trace_leaf_items(trans, src_path->nodes[0]);
  1612. if (ret < 0)
  1613. goto out;
  1614. ret = btrfs_qgroup_trace_leaf_items(trans, dst_path->nodes[0]);
  1615. }
  1616. out:
  1617. btrfs_free_path(src_path);
  1618. return ret;
  1619. }
  1620. /*
  1621. * Helper function to do recursive generation-aware depth-first search, to
  1622. * locate all new tree blocks in a subtree of reloc tree.
  1623. *
  1624. * E.g. (OO = Old tree blocks, NN = New tree blocks, whose gen == last_snapshot)
  1625. * reloc tree
  1626. * L2 NN (a)
  1627. * / \
  1628. * L1 OO NN (b)
  1629. * / \ / \
  1630. * L0 OO OO OO NN
  1631. * (c) (d)
  1632. * If we pass:
  1633. * @dst_path = [ nodes[1] = NN(b), nodes[0] = NULL ],
  1634. * @cur_level = 1
  1635. * @root_level = 1
  1636. *
  1637. * We will iterate through tree blocks NN(b), NN(d) and info qgroup to trace
  1638. * above tree blocks along with their counter parts in file tree.
  1639. * While during search, old tree blocsk OO(c) will be skiped as tree block swap
  1640. * won't affect OO(c).
  1641. */
  1642. static int qgroup_trace_new_subtree_blocks(struct btrfs_trans_handle* trans,
  1643. struct extent_buffer *src_eb,
  1644. struct btrfs_path *dst_path,
  1645. int cur_level, int root_level,
  1646. u64 last_snapshot, bool trace_leaf)
  1647. {
  1648. struct btrfs_fs_info *fs_info = trans->fs_info;
  1649. struct extent_buffer *eb;
  1650. bool need_cleanup = false;
  1651. int ret = 0;
  1652. int i;
  1653. /* Level sanity check */
  1654. if (cur_level < 0 || cur_level >= BTRFS_MAX_LEVEL ||
  1655. root_level < 0 || root_level >= BTRFS_MAX_LEVEL ||
  1656. root_level < cur_level) {
  1657. btrfs_err_rl(fs_info,
  1658. "%s: bad levels, cur_level=%d root_level=%d",
  1659. __func__, cur_level, root_level);
  1660. return -EUCLEAN;
  1661. }
  1662. /* Read the tree block if needed */
  1663. if (dst_path->nodes[cur_level] == NULL) {
  1664. struct btrfs_key first_key;
  1665. int parent_slot;
  1666. u64 child_gen;
  1667. u64 child_bytenr;
  1668. /*
  1669. * dst_path->nodes[root_level] must be initialized before
  1670. * calling this function.
  1671. */
  1672. if (cur_level == root_level) {
  1673. btrfs_err_rl(fs_info,
  1674. "%s: dst_path->nodes[%d] not initialized, root_level=%d cur_level=%d",
  1675. __func__, root_level, root_level, cur_level);
  1676. return -EUCLEAN;
  1677. }
  1678. /*
  1679. * We need to get child blockptr/gen from parent before we can
  1680. * read it.
  1681. */
  1682. eb = dst_path->nodes[cur_level + 1];
  1683. parent_slot = dst_path->slots[cur_level + 1];
  1684. child_bytenr = btrfs_node_blockptr(eb, parent_slot);
  1685. child_gen = btrfs_node_ptr_generation(eb, parent_slot);
  1686. btrfs_node_key_to_cpu(eb, &first_key, parent_slot);
  1687. /* This node is old, no need to trace */
  1688. if (child_gen < last_snapshot)
  1689. goto out;
  1690. eb = read_tree_block(fs_info, child_bytenr, child_gen,
  1691. cur_level, &first_key);
  1692. if (IS_ERR(eb)) {
  1693. ret = PTR_ERR(eb);
  1694. goto out;
  1695. } else if (!extent_buffer_uptodate(eb)) {
  1696. free_extent_buffer(eb);
  1697. ret = -EIO;
  1698. goto out;
  1699. }
  1700. dst_path->nodes[cur_level] = eb;
  1701. dst_path->slots[cur_level] = 0;
  1702. btrfs_tree_read_lock(eb);
  1703. btrfs_set_lock_blocking_rw(eb, BTRFS_READ_LOCK);
  1704. dst_path->locks[cur_level] = BTRFS_READ_LOCK_BLOCKING;
  1705. need_cleanup = true;
  1706. }
  1707. /* Now record this tree block and its counter part for qgroups */
  1708. ret = qgroup_trace_extent_swap(trans, src_eb, dst_path, cur_level,
  1709. root_level, trace_leaf);
  1710. if (ret < 0)
  1711. goto cleanup;
  1712. eb = dst_path->nodes[cur_level];
  1713. if (cur_level > 0) {
  1714. /* Iterate all child tree blocks */
  1715. for (i = 0; i < btrfs_header_nritems(eb); i++) {
  1716. /* Skip old tree blocks as they won't be swapped */
  1717. if (btrfs_node_ptr_generation(eb, i) < last_snapshot)
  1718. continue;
  1719. dst_path->slots[cur_level] = i;
  1720. /* Recursive call (at most 7 times) */
  1721. ret = qgroup_trace_new_subtree_blocks(trans, src_eb,
  1722. dst_path, cur_level - 1, root_level,
  1723. last_snapshot, trace_leaf);
  1724. if (ret < 0)
  1725. goto cleanup;
  1726. }
  1727. }
  1728. cleanup:
  1729. if (need_cleanup) {
  1730. /* Clean up */
  1731. btrfs_tree_unlock_rw(dst_path->nodes[cur_level],
  1732. dst_path->locks[cur_level]);
  1733. free_extent_buffer(dst_path->nodes[cur_level]);
  1734. dst_path->nodes[cur_level] = NULL;
  1735. dst_path->slots[cur_level] = 0;
  1736. dst_path->locks[cur_level] = 0;
  1737. }
  1738. out:
  1739. return ret;
  1740. }
  1741. /*
  1742. * Inform qgroup to trace subtree swap used in balance.
  1743. *
  1744. * Unlike btrfs_qgroup_trace_subtree(), this function will only trace
  1745. * new tree blocks whose generation is equal to (or larger than) @last_snapshot.
  1746. *
  1747. * Will go down the tree block pointed by @dst_eb (pointed by @dst_parent and
  1748. * @dst_slot), and find any tree blocks whose generation is at @last_snapshot,
  1749. * and then go down @src_eb (pointed by @src_parent and @src_slot) to find
  1750. * the conterpart of the tree block, then mark both tree blocks as qgroup dirty,
  1751. * and skip all tree blocks whose generation is smaller than last_snapshot.
  1752. *
  1753. * This would skip tons of tree blocks of original btrfs_qgroup_trace_subtree(),
  1754. * which could be the cause of very slow balance if the file tree is large.
  1755. *
  1756. * @src_parent, @src_slot: pointer to src (file tree) eb.
  1757. * @dst_parent, @dst_slot: pointer to dst (reloc tree) eb.
  1758. */
  1759. int btrfs_qgroup_trace_subtree_swap(struct btrfs_trans_handle *trans,
  1760. struct btrfs_block_group_cache *bg_cache,
  1761. struct extent_buffer *src_parent, int src_slot,
  1762. struct extent_buffer *dst_parent, int dst_slot,
  1763. u64 last_snapshot)
  1764. {
  1765. struct btrfs_fs_info *fs_info = trans->fs_info;
  1766. struct btrfs_path *dst_path = NULL;
  1767. struct btrfs_key first_key;
  1768. struct extent_buffer *src_eb = NULL;
  1769. struct extent_buffer *dst_eb = NULL;
  1770. bool trace_leaf = false;
  1771. u64 child_gen;
  1772. u64 child_bytenr;
  1773. int level;
  1774. int ret;
  1775. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags))
  1776. return 0;
  1777. /* Check parameter order */
  1778. if (btrfs_node_ptr_generation(src_parent, src_slot) >
  1779. btrfs_node_ptr_generation(dst_parent, dst_slot)) {
  1780. btrfs_err_rl(fs_info,
  1781. "%s: bad parameter order, src_gen=%llu dst_gen=%llu", __func__,
  1782. btrfs_node_ptr_generation(src_parent, src_slot),
  1783. btrfs_node_ptr_generation(dst_parent, dst_slot));
  1784. return -EUCLEAN;
  1785. }
  1786. /*
  1787. * Only trace leaf if we're relocating data block groups, this could
  1788. * reduce tons of data extents tracing for meta/sys bg relocation.
  1789. */
  1790. if (bg_cache->flags & BTRFS_BLOCK_GROUP_DATA)
  1791. trace_leaf = true;
  1792. /* Read out real @src_eb, pointed by @src_parent and @src_slot */
  1793. child_bytenr = btrfs_node_blockptr(src_parent, src_slot);
  1794. child_gen = btrfs_node_ptr_generation(src_parent, src_slot);
  1795. btrfs_node_key_to_cpu(src_parent, &first_key, src_slot);
  1796. src_eb = read_tree_block(fs_info, child_bytenr, child_gen,
  1797. btrfs_header_level(src_parent) - 1, &first_key);
  1798. if (IS_ERR(src_eb)) {
  1799. ret = PTR_ERR(src_eb);
  1800. goto out;
  1801. }
  1802. /* Read out real @dst_eb, pointed by @src_parent and @src_slot */
  1803. child_bytenr = btrfs_node_blockptr(dst_parent, dst_slot);
  1804. child_gen = btrfs_node_ptr_generation(dst_parent, dst_slot);
  1805. btrfs_node_key_to_cpu(dst_parent, &first_key, dst_slot);
  1806. dst_eb = read_tree_block(fs_info, child_bytenr, child_gen,
  1807. btrfs_header_level(dst_parent) - 1, &first_key);
  1808. if (IS_ERR(dst_eb)) {
  1809. ret = PTR_ERR(dst_eb);
  1810. goto out;
  1811. }
  1812. if (!extent_buffer_uptodate(src_eb) || !extent_buffer_uptodate(dst_eb)) {
  1813. ret = -EINVAL;
  1814. goto out;
  1815. }
  1816. level = btrfs_header_level(dst_eb);
  1817. dst_path = btrfs_alloc_path();
  1818. if (!dst_path) {
  1819. ret = -ENOMEM;
  1820. goto out;
  1821. }
  1822. /* For dst_path */
  1823. extent_buffer_get(dst_eb);
  1824. dst_path->nodes[level] = dst_eb;
  1825. dst_path->slots[level] = 0;
  1826. dst_path->locks[level] = 0;
  1827. /* Do the generation-aware breadth-first search */
  1828. ret = qgroup_trace_new_subtree_blocks(trans, src_eb, dst_path, level,
  1829. level, last_snapshot, trace_leaf);
  1830. if (ret < 0)
  1831. goto out;
  1832. ret = 0;
  1833. out:
  1834. free_extent_buffer(src_eb);
  1835. free_extent_buffer(dst_eb);
  1836. btrfs_free_path(dst_path);
  1837. if (ret < 0)
  1838. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  1839. return ret;
  1840. }
  1841. int btrfs_qgroup_trace_subtree(struct btrfs_trans_handle *trans,
  1842. struct extent_buffer *root_eb,
  1843. u64 root_gen, int root_level)
  1844. {
  1845. struct btrfs_fs_info *fs_info = trans->fs_info;
  1846. int ret = 0;
  1847. int level;
  1848. struct extent_buffer *eb = root_eb;
  1849. struct btrfs_path *path = NULL;
  1850. BUG_ON(root_level < 0 || root_level >= BTRFS_MAX_LEVEL);
  1851. BUG_ON(root_eb == NULL);
  1852. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags))
  1853. return 0;
  1854. if (!extent_buffer_uptodate(root_eb)) {
  1855. ret = btrfs_read_buffer(root_eb, root_gen, root_level, NULL);
  1856. if (ret)
  1857. goto out;
  1858. }
  1859. if (root_level == 0) {
  1860. ret = btrfs_qgroup_trace_leaf_items(trans, root_eb);
  1861. goto out;
  1862. }
  1863. path = btrfs_alloc_path();
  1864. if (!path)
  1865. return -ENOMEM;
  1866. /*
  1867. * Walk down the tree. Missing extent blocks are filled in as
  1868. * we go. Metadata is accounted every time we read a new
  1869. * extent block.
  1870. *
  1871. * When we reach a leaf, we account for file extent items in it,
  1872. * walk back up the tree (adjusting slot pointers as we go)
  1873. * and restart the search process.
  1874. */
  1875. extent_buffer_get(root_eb); /* For path */
  1876. path->nodes[root_level] = root_eb;
  1877. path->slots[root_level] = 0;
  1878. path->locks[root_level] = 0; /* so release_path doesn't try to unlock */
  1879. walk_down:
  1880. level = root_level;
  1881. while (level >= 0) {
  1882. if (path->nodes[level] == NULL) {
  1883. struct btrfs_key first_key;
  1884. int parent_slot;
  1885. u64 child_gen;
  1886. u64 child_bytenr;
  1887. /*
  1888. * We need to get child blockptr/gen from parent before
  1889. * we can read it.
  1890. */
  1891. eb = path->nodes[level + 1];
  1892. parent_slot = path->slots[level + 1];
  1893. child_bytenr = btrfs_node_blockptr(eb, parent_slot);
  1894. child_gen = btrfs_node_ptr_generation(eb, parent_slot);
  1895. btrfs_node_key_to_cpu(eb, &first_key, parent_slot);
  1896. eb = read_tree_block(fs_info, child_bytenr, child_gen,
  1897. level, &first_key);
  1898. if (IS_ERR(eb)) {
  1899. ret = PTR_ERR(eb);
  1900. goto out;
  1901. } else if (!extent_buffer_uptodate(eb)) {
  1902. free_extent_buffer(eb);
  1903. ret = -EIO;
  1904. goto out;
  1905. }
  1906. path->nodes[level] = eb;
  1907. path->slots[level] = 0;
  1908. btrfs_tree_read_lock(eb);
  1909. btrfs_set_lock_blocking_rw(eb, BTRFS_READ_LOCK);
  1910. path->locks[level] = BTRFS_READ_LOCK_BLOCKING;
  1911. ret = btrfs_qgroup_trace_extent(trans, child_bytenr,
  1912. fs_info->nodesize,
  1913. GFP_NOFS);
  1914. if (ret)
  1915. goto out;
  1916. }
  1917. if (level == 0) {
  1918. ret = btrfs_qgroup_trace_leaf_items(trans,
  1919. path->nodes[level]);
  1920. if (ret)
  1921. goto out;
  1922. /* Nonzero return here means we completed our search */
  1923. ret = adjust_slots_upwards(path, root_level);
  1924. if (ret)
  1925. break;
  1926. /* Restart search with new slots */
  1927. goto walk_down;
  1928. }
  1929. level--;
  1930. }
  1931. ret = 0;
  1932. out:
  1933. btrfs_free_path(path);
  1934. return ret;
  1935. }
  1936. #define UPDATE_NEW 0
  1937. #define UPDATE_OLD 1
  1938. /*
  1939. * Walk all of the roots that points to the bytenr and adjust their refcnts.
  1940. */
  1941. static int qgroup_update_refcnt(struct btrfs_fs_info *fs_info,
  1942. struct ulist *roots, struct ulist *tmp,
  1943. struct ulist *qgroups, u64 seq, int update_old)
  1944. {
  1945. struct ulist_node *unode;
  1946. struct ulist_iterator uiter;
  1947. struct ulist_node *tmp_unode;
  1948. struct ulist_iterator tmp_uiter;
  1949. struct btrfs_qgroup *qg;
  1950. int ret = 0;
  1951. if (!roots)
  1952. return 0;
  1953. ULIST_ITER_INIT(&uiter);
  1954. while ((unode = ulist_next(roots, &uiter))) {
  1955. qg = find_qgroup_rb(fs_info, unode->val);
  1956. if (!qg)
  1957. continue;
  1958. ulist_reinit(tmp);
  1959. ret = ulist_add(qgroups, qg->qgroupid, qgroup_to_aux(qg),
  1960. GFP_ATOMIC);
  1961. if (ret < 0)
  1962. return ret;
  1963. ret = ulist_add(tmp, qg->qgroupid, qgroup_to_aux(qg), GFP_ATOMIC);
  1964. if (ret < 0)
  1965. return ret;
  1966. ULIST_ITER_INIT(&tmp_uiter);
  1967. while ((tmp_unode = ulist_next(tmp, &tmp_uiter))) {
  1968. struct btrfs_qgroup_list *glist;
  1969. qg = unode_aux_to_qgroup(tmp_unode);
  1970. if (update_old)
  1971. btrfs_qgroup_update_old_refcnt(qg, seq, 1);
  1972. else
  1973. btrfs_qgroup_update_new_refcnt(qg, seq, 1);
  1974. list_for_each_entry(glist, &qg->groups, next_group) {
  1975. ret = ulist_add(qgroups, glist->group->qgroupid,
  1976. qgroup_to_aux(glist->group),
  1977. GFP_ATOMIC);
  1978. if (ret < 0)
  1979. return ret;
  1980. ret = ulist_add(tmp, glist->group->qgroupid,
  1981. qgroup_to_aux(glist->group),
  1982. GFP_ATOMIC);
  1983. if (ret < 0)
  1984. return ret;
  1985. }
  1986. }
  1987. }
  1988. return 0;
  1989. }
  1990. /*
  1991. * Update qgroup rfer/excl counters.
  1992. * Rfer update is easy, codes can explain themselves.
  1993. *
  1994. * Excl update is tricky, the update is split into 2 part.
  1995. * Part 1: Possible exclusive <-> sharing detect:
  1996. * | A | !A |
  1997. * -------------------------------------
  1998. * B | * | - |
  1999. * -------------------------------------
  2000. * !B | + | ** |
  2001. * -------------------------------------
  2002. *
  2003. * Conditions:
  2004. * A: cur_old_roots < nr_old_roots (not exclusive before)
  2005. * !A: cur_old_roots == nr_old_roots (possible exclusive before)
  2006. * B: cur_new_roots < nr_new_roots (not exclusive now)
  2007. * !B: cur_new_roots == nr_new_roots (possible exclusive now)
  2008. *
  2009. * Results:
  2010. * +: Possible sharing -> exclusive -: Possible exclusive -> sharing
  2011. * *: Definitely not changed. **: Possible unchanged.
  2012. *
  2013. * For !A and !B condition, the exception is cur_old/new_roots == 0 case.
  2014. *
  2015. * To make the logic clear, we first use condition A and B to split
  2016. * combination into 4 results.
  2017. *
  2018. * Then, for result "+" and "-", check old/new_roots == 0 case, as in them
  2019. * only on variant maybe 0.
  2020. *
  2021. * Lastly, check result **, since there are 2 variants maybe 0, split them
  2022. * again(2x2).
  2023. * But this time we don't need to consider other things, the codes and logic
  2024. * is easy to understand now.
  2025. */
  2026. static int qgroup_update_counters(struct btrfs_fs_info *fs_info,
  2027. struct ulist *qgroups,
  2028. u64 nr_old_roots,
  2029. u64 nr_new_roots,
  2030. u64 num_bytes, u64 seq)
  2031. {
  2032. struct ulist_node *unode;
  2033. struct ulist_iterator uiter;
  2034. struct btrfs_qgroup *qg;
  2035. u64 cur_new_count, cur_old_count;
  2036. ULIST_ITER_INIT(&uiter);
  2037. while ((unode = ulist_next(qgroups, &uiter))) {
  2038. bool dirty = false;
  2039. qg = unode_aux_to_qgroup(unode);
  2040. cur_old_count = btrfs_qgroup_get_old_refcnt(qg, seq);
  2041. cur_new_count = btrfs_qgroup_get_new_refcnt(qg, seq);
  2042. trace_qgroup_update_counters(fs_info, qg, cur_old_count,
  2043. cur_new_count);
  2044. /* Rfer update part */
  2045. if (cur_old_count == 0 && cur_new_count > 0) {
  2046. qg->rfer += num_bytes;
  2047. qg->rfer_cmpr += num_bytes;
  2048. dirty = true;
  2049. }
  2050. if (cur_old_count > 0 && cur_new_count == 0) {
  2051. qg->rfer -= num_bytes;
  2052. qg->rfer_cmpr -= num_bytes;
  2053. dirty = true;
  2054. }
  2055. /* Excl update part */
  2056. /* Exclusive/none -> shared case */
  2057. if (cur_old_count == nr_old_roots &&
  2058. cur_new_count < nr_new_roots) {
  2059. /* Exclusive -> shared */
  2060. if (cur_old_count != 0) {
  2061. qg->excl -= num_bytes;
  2062. qg->excl_cmpr -= num_bytes;
  2063. dirty = true;
  2064. }
  2065. }
  2066. /* Shared -> exclusive/none case */
  2067. if (cur_old_count < nr_old_roots &&
  2068. cur_new_count == nr_new_roots) {
  2069. /* Shared->exclusive */
  2070. if (cur_new_count != 0) {
  2071. qg->excl += num_bytes;
  2072. qg->excl_cmpr += num_bytes;
  2073. dirty = true;
  2074. }
  2075. }
  2076. /* Exclusive/none -> exclusive/none case */
  2077. if (cur_old_count == nr_old_roots &&
  2078. cur_new_count == nr_new_roots) {
  2079. if (cur_old_count == 0) {
  2080. /* None -> exclusive/none */
  2081. if (cur_new_count != 0) {
  2082. /* None -> exclusive */
  2083. qg->excl += num_bytes;
  2084. qg->excl_cmpr += num_bytes;
  2085. dirty = true;
  2086. }
  2087. /* None -> none, nothing changed */
  2088. } else {
  2089. /* Exclusive -> exclusive/none */
  2090. if (cur_new_count == 0) {
  2091. /* Exclusive -> none */
  2092. qg->excl -= num_bytes;
  2093. qg->excl_cmpr -= num_bytes;
  2094. dirty = true;
  2095. }
  2096. /* Exclusive -> exclusive, nothing changed */
  2097. }
  2098. }
  2099. if (dirty)
  2100. qgroup_dirty(fs_info, qg);
  2101. }
  2102. return 0;
  2103. }
  2104. /*
  2105. * Check if the @roots potentially is a list of fs tree roots
  2106. *
  2107. * Return 0 for definitely not a fs/subvol tree roots ulist
  2108. * Return 1 for possible fs/subvol tree roots in the list (considering an empty
  2109. * one as well)
  2110. */
  2111. static int maybe_fs_roots(struct ulist *roots)
  2112. {
  2113. struct ulist_node *unode;
  2114. struct ulist_iterator uiter;
  2115. /* Empty one, still possible for fs roots */
  2116. if (!roots || roots->nnodes == 0)
  2117. return 1;
  2118. ULIST_ITER_INIT(&uiter);
  2119. unode = ulist_next(roots, &uiter);
  2120. if (!unode)
  2121. return 1;
  2122. /*
  2123. * If it contains fs tree roots, then it must belong to fs/subvol
  2124. * trees.
  2125. * If it contains a non-fs tree, it won't be shared with fs/subvol trees.
  2126. */
  2127. return is_fstree(unode->val);
  2128. }
  2129. int btrfs_qgroup_account_extent(struct btrfs_trans_handle *trans, u64 bytenr,
  2130. u64 num_bytes, struct ulist *old_roots,
  2131. struct ulist *new_roots)
  2132. {
  2133. struct btrfs_fs_info *fs_info = trans->fs_info;
  2134. struct ulist *qgroups = NULL;
  2135. struct ulist *tmp = NULL;
  2136. u64 seq;
  2137. u64 nr_new_roots = 0;
  2138. u64 nr_old_roots = 0;
  2139. int ret = 0;
  2140. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags))
  2141. return 0;
  2142. if (new_roots) {
  2143. if (!maybe_fs_roots(new_roots))
  2144. goto out_free;
  2145. nr_new_roots = new_roots->nnodes;
  2146. }
  2147. if (old_roots) {
  2148. if (!maybe_fs_roots(old_roots))
  2149. goto out_free;
  2150. nr_old_roots = old_roots->nnodes;
  2151. }
  2152. /* Quick exit, either not fs tree roots, or won't affect any qgroup */
  2153. if (nr_old_roots == 0 && nr_new_roots == 0)
  2154. goto out_free;
  2155. BUG_ON(!fs_info->quota_root);
  2156. trace_btrfs_qgroup_account_extent(fs_info, trans->transid, bytenr,
  2157. num_bytes, nr_old_roots, nr_new_roots);
  2158. qgroups = ulist_alloc(GFP_NOFS);
  2159. if (!qgroups) {
  2160. ret = -ENOMEM;
  2161. goto out_free;
  2162. }
  2163. tmp = ulist_alloc(GFP_NOFS);
  2164. if (!tmp) {
  2165. ret = -ENOMEM;
  2166. goto out_free;
  2167. }
  2168. mutex_lock(&fs_info->qgroup_rescan_lock);
  2169. if (fs_info->qgroup_flags & BTRFS_QGROUP_STATUS_FLAG_RESCAN) {
  2170. if (fs_info->qgroup_rescan_progress.objectid <= bytenr) {
  2171. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2172. ret = 0;
  2173. goto out_free;
  2174. }
  2175. }
  2176. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2177. spin_lock(&fs_info->qgroup_lock);
  2178. seq = fs_info->qgroup_seq;
  2179. /* Update old refcnts using old_roots */
  2180. ret = qgroup_update_refcnt(fs_info, old_roots, tmp, qgroups, seq,
  2181. UPDATE_OLD);
  2182. if (ret < 0)
  2183. goto out;
  2184. /* Update new refcnts using new_roots */
  2185. ret = qgroup_update_refcnt(fs_info, new_roots, tmp, qgroups, seq,
  2186. UPDATE_NEW);
  2187. if (ret < 0)
  2188. goto out;
  2189. qgroup_update_counters(fs_info, qgroups, nr_old_roots, nr_new_roots,
  2190. num_bytes, seq);
  2191. /*
  2192. * Bump qgroup_seq to avoid seq overlap
  2193. */
  2194. fs_info->qgroup_seq += max(nr_old_roots, nr_new_roots) + 1;
  2195. out:
  2196. spin_unlock(&fs_info->qgroup_lock);
  2197. out_free:
  2198. ulist_free(tmp);
  2199. ulist_free(qgroups);
  2200. ulist_free(old_roots);
  2201. ulist_free(new_roots);
  2202. return ret;
  2203. }
  2204. int btrfs_qgroup_account_extents(struct btrfs_trans_handle *trans)
  2205. {
  2206. struct btrfs_fs_info *fs_info = trans->fs_info;
  2207. struct btrfs_qgroup_extent_record *record;
  2208. struct btrfs_delayed_ref_root *delayed_refs;
  2209. struct ulist *new_roots = NULL;
  2210. struct rb_node *node;
  2211. u64 num_dirty_extents = 0;
  2212. u64 qgroup_to_skip;
  2213. int ret = 0;
  2214. delayed_refs = &trans->transaction->delayed_refs;
  2215. qgroup_to_skip = delayed_refs->qgroup_to_skip;
  2216. while ((node = rb_first(&delayed_refs->dirty_extent_root))) {
  2217. record = rb_entry(node, struct btrfs_qgroup_extent_record,
  2218. node);
  2219. num_dirty_extents++;
  2220. trace_btrfs_qgroup_account_extents(fs_info, record);
  2221. if (!ret) {
  2222. /*
  2223. * Old roots should be searched when inserting qgroup
  2224. * extent record
  2225. */
  2226. if (WARN_ON(!record->old_roots)) {
  2227. /* Search commit root to find old_roots */
  2228. ret = btrfs_find_all_roots(NULL, fs_info,
  2229. record->bytenr, 0,
  2230. &record->old_roots, false);
  2231. if (ret < 0)
  2232. goto cleanup;
  2233. }
  2234. /*
  2235. * Use SEQ_LAST as time_seq to do special search, which
  2236. * doesn't lock tree or delayed_refs and search current
  2237. * root. It's safe inside commit_transaction().
  2238. */
  2239. ret = btrfs_find_all_roots(trans, fs_info,
  2240. record->bytenr, SEQ_LAST, &new_roots, false);
  2241. if (ret < 0)
  2242. goto cleanup;
  2243. if (qgroup_to_skip) {
  2244. ulist_del(new_roots, qgroup_to_skip, 0);
  2245. ulist_del(record->old_roots, qgroup_to_skip,
  2246. 0);
  2247. }
  2248. ret = btrfs_qgroup_account_extent(trans, record->bytenr,
  2249. record->num_bytes,
  2250. record->old_roots,
  2251. new_roots);
  2252. record->old_roots = NULL;
  2253. new_roots = NULL;
  2254. }
  2255. cleanup:
  2256. ulist_free(record->old_roots);
  2257. ulist_free(new_roots);
  2258. new_roots = NULL;
  2259. rb_erase(node, &delayed_refs->dirty_extent_root);
  2260. kfree(record);
  2261. }
  2262. trace_qgroup_num_dirty_extents(fs_info, trans->transid,
  2263. num_dirty_extents);
  2264. return ret;
  2265. }
  2266. /*
  2267. * called from commit_transaction. Writes all changed qgroups to disk.
  2268. */
  2269. int btrfs_run_qgroups(struct btrfs_trans_handle *trans)
  2270. {
  2271. struct btrfs_fs_info *fs_info = trans->fs_info;
  2272. struct btrfs_root *quota_root = fs_info->quota_root;
  2273. int ret = 0;
  2274. if (!quota_root)
  2275. return ret;
  2276. spin_lock(&fs_info->qgroup_lock);
  2277. while (!list_empty(&fs_info->dirty_qgroups)) {
  2278. struct btrfs_qgroup *qgroup;
  2279. qgroup = list_first_entry(&fs_info->dirty_qgroups,
  2280. struct btrfs_qgroup, dirty);
  2281. list_del_init(&qgroup->dirty);
  2282. spin_unlock(&fs_info->qgroup_lock);
  2283. ret = update_qgroup_info_item(trans, qgroup);
  2284. if (ret)
  2285. fs_info->qgroup_flags |=
  2286. BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  2287. ret = update_qgroup_limit_item(trans, qgroup);
  2288. if (ret)
  2289. fs_info->qgroup_flags |=
  2290. BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  2291. spin_lock(&fs_info->qgroup_lock);
  2292. }
  2293. if (test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags))
  2294. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_ON;
  2295. else
  2296. fs_info->qgroup_flags &= ~BTRFS_QGROUP_STATUS_FLAG_ON;
  2297. spin_unlock(&fs_info->qgroup_lock);
  2298. ret = update_qgroup_status_item(trans);
  2299. if (ret)
  2300. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  2301. return ret;
  2302. }
  2303. /*
  2304. * Copy the accounting information between qgroups. This is necessary
  2305. * when a snapshot or a subvolume is created. Throwing an error will
  2306. * cause a transaction abort so we take extra care here to only error
  2307. * when a readonly fs is a reasonable outcome.
  2308. */
  2309. int btrfs_qgroup_inherit(struct btrfs_trans_handle *trans, u64 srcid,
  2310. u64 objectid, struct btrfs_qgroup_inherit *inherit)
  2311. {
  2312. int ret = 0;
  2313. int i;
  2314. u64 *i_qgroups;
  2315. struct btrfs_fs_info *fs_info = trans->fs_info;
  2316. struct btrfs_root *quota_root;
  2317. struct btrfs_qgroup *srcgroup;
  2318. struct btrfs_qgroup *dstgroup;
  2319. u32 level_size = 0;
  2320. u64 nums;
  2321. mutex_lock(&fs_info->qgroup_ioctl_lock);
  2322. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags))
  2323. goto out;
  2324. quota_root = fs_info->quota_root;
  2325. if (!quota_root) {
  2326. ret = -EINVAL;
  2327. goto out;
  2328. }
  2329. if (inherit) {
  2330. i_qgroups = (u64 *)(inherit + 1);
  2331. nums = inherit->num_qgroups + 2 * inherit->num_ref_copies +
  2332. 2 * inherit->num_excl_copies;
  2333. for (i = 0; i < nums; ++i) {
  2334. srcgroup = find_qgroup_rb(fs_info, *i_qgroups);
  2335. /*
  2336. * Zero out invalid groups so we can ignore
  2337. * them later.
  2338. */
  2339. if (!srcgroup ||
  2340. ((srcgroup->qgroupid >> 48) <= (objectid >> 48)))
  2341. *i_qgroups = 0ULL;
  2342. ++i_qgroups;
  2343. }
  2344. }
  2345. /*
  2346. * create a tracking group for the subvol itself
  2347. */
  2348. ret = add_qgroup_item(trans, quota_root, objectid);
  2349. if (ret)
  2350. goto out;
  2351. /*
  2352. * add qgroup to all inherited groups
  2353. */
  2354. if (inherit) {
  2355. i_qgroups = (u64 *)(inherit + 1);
  2356. for (i = 0; i < inherit->num_qgroups; ++i, ++i_qgroups) {
  2357. if (*i_qgroups == 0)
  2358. continue;
  2359. ret = add_qgroup_relation_item(trans, objectid,
  2360. *i_qgroups);
  2361. if (ret && ret != -EEXIST)
  2362. goto out;
  2363. ret = add_qgroup_relation_item(trans, *i_qgroups,
  2364. objectid);
  2365. if (ret && ret != -EEXIST)
  2366. goto out;
  2367. }
  2368. ret = 0;
  2369. }
  2370. spin_lock(&fs_info->qgroup_lock);
  2371. dstgroup = add_qgroup_rb(fs_info, objectid);
  2372. if (IS_ERR(dstgroup)) {
  2373. ret = PTR_ERR(dstgroup);
  2374. goto unlock;
  2375. }
  2376. if (inherit && inherit->flags & BTRFS_QGROUP_INHERIT_SET_LIMITS) {
  2377. dstgroup->lim_flags = inherit->lim.flags;
  2378. dstgroup->max_rfer = inherit->lim.max_rfer;
  2379. dstgroup->max_excl = inherit->lim.max_excl;
  2380. dstgroup->rsv_rfer = inherit->lim.rsv_rfer;
  2381. dstgroup->rsv_excl = inherit->lim.rsv_excl;
  2382. ret = update_qgroup_limit_item(trans, dstgroup);
  2383. if (ret) {
  2384. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  2385. btrfs_info(fs_info,
  2386. "unable to update quota limit for %llu",
  2387. dstgroup->qgroupid);
  2388. goto unlock;
  2389. }
  2390. }
  2391. if (srcid) {
  2392. srcgroup = find_qgroup_rb(fs_info, srcid);
  2393. if (!srcgroup)
  2394. goto unlock;
  2395. /*
  2396. * We call inherit after we clone the root in order to make sure
  2397. * our counts don't go crazy, so at this point the only
  2398. * difference between the two roots should be the root node.
  2399. */
  2400. level_size = fs_info->nodesize;
  2401. dstgroup->rfer = srcgroup->rfer;
  2402. dstgroup->rfer_cmpr = srcgroup->rfer_cmpr;
  2403. dstgroup->excl = level_size;
  2404. dstgroup->excl_cmpr = level_size;
  2405. srcgroup->excl = level_size;
  2406. srcgroup->excl_cmpr = level_size;
  2407. /* inherit the limit info */
  2408. dstgroup->lim_flags = srcgroup->lim_flags;
  2409. dstgroup->max_rfer = srcgroup->max_rfer;
  2410. dstgroup->max_excl = srcgroup->max_excl;
  2411. dstgroup->rsv_rfer = srcgroup->rsv_rfer;
  2412. dstgroup->rsv_excl = srcgroup->rsv_excl;
  2413. qgroup_dirty(fs_info, dstgroup);
  2414. qgroup_dirty(fs_info, srcgroup);
  2415. }
  2416. if (!inherit)
  2417. goto unlock;
  2418. i_qgroups = (u64 *)(inherit + 1);
  2419. for (i = 0; i < inherit->num_qgroups; ++i) {
  2420. if (*i_qgroups) {
  2421. ret = add_relation_rb(fs_info, objectid, *i_qgroups);
  2422. if (ret)
  2423. goto unlock;
  2424. }
  2425. ++i_qgroups;
  2426. }
  2427. for (i = 0; i < inherit->num_ref_copies; ++i, i_qgroups += 2) {
  2428. struct btrfs_qgroup *src;
  2429. struct btrfs_qgroup *dst;
  2430. if (!i_qgroups[0] || !i_qgroups[1])
  2431. continue;
  2432. src = find_qgroup_rb(fs_info, i_qgroups[0]);
  2433. dst = find_qgroup_rb(fs_info, i_qgroups[1]);
  2434. if (!src || !dst) {
  2435. ret = -EINVAL;
  2436. goto unlock;
  2437. }
  2438. dst->rfer = src->rfer - level_size;
  2439. dst->rfer_cmpr = src->rfer_cmpr - level_size;
  2440. }
  2441. for (i = 0; i < inherit->num_excl_copies; ++i, i_qgroups += 2) {
  2442. struct btrfs_qgroup *src;
  2443. struct btrfs_qgroup *dst;
  2444. if (!i_qgroups[0] || !i_qgroups[1])
  2445. continue;
  2446. src = find_qgroup_rb(fs_info, i_qgroups[0]);
  2447. dst = find_qgroup_rb(fs_info, i_qgroups[1]);
  2448. if (!src || !dst) {
  2449. ret = -EINVAL;
  2450. goto unlock;
  2451. }
  2452. dst->excl = src->excl + level_size;
  2453. dst->excl_cmpr = src->excl_cmpr + level_size;
  2454. }
  2455. unlock:
  2456. spin_unlock(&fs_info->qgroup_lock);
  2457. out:
  2458. mutex_unlock(&fs_info->qgroup_ioctl_lock);
  2459. return ret;
  2460. }
  2461. /*
  2462. * Two limits to commit transaction in advance.
  2463. *
  2464. * For RATIO, it will be 1/RATIO of the remaining limit
  2465. * (excluding data and prealloc meta) as threshold.
  2466. * For SIZE, it will be in byte unit as threshold.
  2467. */
  2468. #define QGROUP_PERTRANS_RATIO 32
  2469. #define QGROUP_PERTRANS_SIZE SZ_32M
  2470. static bool qgroup_check_limits(struct btrfs_fs_info *fs_info,
  2471. const struct btrfs_qgroup *qg, u64 num_bytes)
  2472. {
  2473. u64 limit;
  2474. u64 threshold;
  2475. if ((qg->lim_flags & BTRFS_QGROUP_LIMIT_MAX_RFER) &&
  2476. qgroup_rsv_total(qg) + (s64)qg->rfer + num_bytes > qg->max_rfer)
  2477. return false;
  2478. if ((qg->lim_flags & BTRFS_QGROUP_LIMIT_MAX_EXCL) &&
  2479. qgroup_rsv_total(qg) + (s64)qg->excl + num_bytes > qg->max_excl)
  2480. return false;
  2481. /*
  2482. * Even if we passed the check, it's better to check if reservation
  2483. * for meta_pertrans is pushing us near limit.
  2484. * If there is too much pertrans reservation or it's near the limit,
  2485. * let's try commit transaction to free some, using transaction_kthread
  2486. */
  2487. if ((qg->lim_flags & (BTRFS_QGROUP_LIMIT_MAX_RFER |
  2488. BTRFS_QGROUP_LIMIT_MAX_EXCL))) {
  2489. if (qg->lim_flags & BTRFS_QGROUP_LIMIT_MAX_EXCL)
  2490. limit = qg->max_excl;
  2491. else
  2492. limit = qg->max_rfer;
  2493. threshold = (limit - qg->rsv.values[BTRFS_QGROUP_RSV_DATA] -
  2494. qg->rsv.values[BTRFS_QGROUP_RSV_META_PREALLOC]) /
  2495. QGROUP_PERTRANS_RATIO;
  2496. threshold = min_t(u64, threshold, QGROUP_PERTRANS_SIZE);
  2497. /*
  2498. * Use transaction_kthread to commit transaction, so we no
  2499. * longer need to bother nested transaction nor lock context.
  2500. */
  2501. if (qg->rsv.values[BTRFS_QGROUP_RSV_META_PERTRANS] > threshold)
  2502. btrfs_commit_transaction_locksafe(fs_info);
  2503. }
  2504. return true;
  2505. }
  2506. static int qgroup_reserve(struct btrfs_root *root, u64 num_bytes, bool enforce,
  2507. enum btrfs_qgroup_rsv_type type)
  2508. {
  2509. struct btrfs_root *quota_root;
  2510. struct btrfs_qgroup *qgroup;
  2511. struct btrfs_fs_info *fs_info = root->fs_info;
  2512. u64 ref_root = root->root_key.objectid;
  2513. int ret = 0;
  2514. struct ulist_node *unode;
  2515. struct ulist_iterator uiter;
  2516. if (!is_fstree(ref_root))
  2517. return 0;
  2518. if (num_bytes == 0)
  2519. return 0;
  2520. if (test_bit(BTRFS_FS_QUOTA_OVERRIDE, &fs_info->flags) &&
  2521. capable(CAP_SYS_RESOURCE))
  2522. enforce = false;
  2523. spin_lock(&fs_info->qgroup_lock);
  2524. quota_root = fs_info->quota_root;
  2525. if (!quota_root)
  2526. goto out;
  2527. qgroup = find_qgroup_rb(fs_info, ref_root);
  2528. if (!qgroup)
  2529. goto out;
  2530. /*
  2531. * in a first step, we check all affected qgroups if any limits would
  2532. * be exceeded
  2533. */
  2534. ulist_reinit(fs_info->qgroup_ulist);
  2535. ret = ulist_add(fs_info->qgroup_ulist, qgroup->qgroupid,
  2536. qgroup_to_aux(qgroup), GFP_ATOMIC);
  2537. if (ret < 0)
  2538. goto out;
  2539. ULIST_ITER_INIT(&uiter);
  2540. while ((unode = ulist_next(fs_info->qgroup_ulist, &uiter))) {
  2541. struct btrfs_qgroup *qg;
  2542. struct btrfs_qgroup_list *glist;
  2543. qg = unode_aux_to_qgroup(unode);
  2544. if (enforce && !qgroup_check_limits(fs_info, qg, num_bytes)) {
  2545. ret = -EDQUOT;
  2546. goto out;
  2547. }
  2548. list_for_each_entry(glist, &qg->groups, next_group) {
  2549. ret = ulist_add(fs_info->qgroup_ulist,
  2550. glist->group->qgroupid,
  2551. qgroup_to_aux(glist->group), GFP_ATOMIC);
  2552. if (ret < 0)
  2553. goto out;
  2554. }
  2555. }
  2556. ret = 0;
  2557. /*
  2558. * no limits exceeded, now record the reservation into all qgroups
  2559. */
  2560. ULIST_ITER_INIT(&uiter);
  2561. while ((unode = ulist_next(fs_info->qgroup_ulist, &uiter))) {
  2562. struct btrfs_qgroup *qg;
  2563. qg = unode_aux_to_qgroup(unode);
  2564. trace_qgroup_update_reserve(fs_info, qg, num_bytes, type);
  2565. qgroup_rsv_add(fs_info, qg, num_bytes, type);
  2566. }
  2567. out:
  2568. spin_unlock(&fs_info->qgroup_lock);
  2569. return ret;
  2570. }
  2571. /*
  2572. * Free @num_bytes of reserved space with @type for qgroup. (Normally level 0
  2573. * qgroup).
  2574. *
  2575. * Will handle all higher level qgroup too.
  2576. *
  2577. * NOTE: If @num_bytes is (u64)-1, this means to free all bytes of this qgroup.
  2578. * This special case is only used for META_PERTRANS type.
  2579. */
  2580. void btrfs_qgroup_free_refroot(struct btrfs_fs_info *fs_info,
  2581. u64 ref_root, u64 num_bytes,
  2582. enum btrfs_qgroup_rsv_type type)
  2583. {
  2584. struct btrfs_root *quota_root;
  2585. struct btrfs_qgroup *qgroup;
  2586. struct ulist_node *unode;
  2587. struct ulist_iterator uiter;
  2588. int ret = 0;
  2589. if (!is_fstree(ref_root))
  2590. return;
  2591. if (num_bytes == 0)
  2592. return;
  2593. if (num_bytes == (u64)-1 && type != BTRFS_QGROUP_RSV_META_PERTRANS) {
  2594. WARN(1, "%s: Invalid type to free", __func__);
  2595. return;
  2596. }
  2597. spin_lock(&fs_info->qgroup_lock);
  2598. quota_root = fs_info->quota_root;
  2599. if (!quota_root)
  2600. goto out;
  2601. qgroup = find_qgroup_rb(fs_info, ref_root);
  2602. if (!qgroup)
  2603. goto out;
  2604. if (num_bytes == (u64)-1)
  2605. /*
  2606. * We're freeing all pertrans rsv, get reserved value from
  2607. * level 0 qgroup as real num_bytes to free.
  2608. */
  2609. num_bytes = qgroup->rsv.values[type];
  2610. ulist_reinit(fs_info->qgroup_ulist);
  2611. ret = ulist_add(fs_info->qgroup_ulist, qgroup->qgroupid,
  2612. qgroup_to_aux(qgroup), GFP_ATOMIC);
  2613. if (ret < 0)
  2614. goto out;
  2615. ULIST_ITER_INIT(&uiter);
  2616. while ((unode = ulist_next(fs_info->qgroup_ulist, &uiter))) {
  2617. struct btrfs_qgroup *qg;
  2618. struct btrfs_qgroup_list *glist;
  2619. qg = unode_aux_to_qgroup(unode);
  2620. trace_qgroup_update_reserve(fs_info, qg, -(s64)num_bytes, type);
  2621. qgroup_rsv_release(fs_info, qg, num_bytes, type);
  2622. list_for_each_entry(glist, &qg->groups, next_group) {
  2623. ret = ulist_add(fs_info->qgroup_ulist,
  2624. glist->group->qgroupid,
  2625. qgroup_to_aux(glist->group), GFP_ATOMIC);
  2626. if (ret < 0)
  2627. goto out;
  2628. }
  2629. }
  2630. out:
  2631. spin_unlock(&fs_info->qgroup_lock);
  2632. }
  2633. /*
  2634. * Check if the leaf is the last leaf. Which means all node pointers
  2635. * are at their last position.
  2636. */
  2637. static bool is_last_leaf(struct btrfs_path *path)
  2638. {
  2639. int i;
  2640. for (i = 1; i < BTRFS_MAX_LEVEL && path->nodes[i]; i++) {
  2641. if (path->slots[i] != btrfs_header_nritems(path->nodes[i]) - 1)
  2642. return false;
  2643. }
  2644. return true;
  2645. }
  2646. /*
  2647. * returns < 0 on error, 0 when more leafs are to be scanned.
  2648. * returns 1 when done.
  2649. */
  2650. static int qgroup_rescan_leaf(struct btrfs_trans_handle *trans,
  2651. struct btrfs_path *path)
  2652. {
  2653. struct btrfs_fs_info *fs_info = trans->fs_info;
  2654. struct btrfs_key found;
  2655. struct extent_buffer *scratch_leaf = NULL;
  2656. struct ulist *roots = NULL;
  2657. u64 num_bytes;
  2658. bool done;
  2659. int slot;
  2660. int ret;
  2661. mutex_lock(&fs_info->qgroup_rescan_lock);
  2662. ret = btrfs_search_slot_for_read(fs_info->extent_root,
  2663. &fs_info->qgroup_rescan_progress,
  2664. path, 1, 0);
  2665. btrfs_debug(fs_info,
  2666. "current progress key (%llu %u %llu), search_slot ret %d",
  2667. fs_info->qgroup_rescan_progress.objectid,
  2668. fs_info->qgroup_rescan_progress.type,
  2669. fs_info->qgroup_rescan_progress.offset, ret);
  2670. if (ret) {
  2671. /*
  2672. * The rescan is about to end, we will not be scanning any
  2673. * further blocks. We cannot unset the RESCAN flag here, because
  2674. * we want to commit the transaction if everything went well.
  2675. * To make the live accounting work in this phase, we set our
  2676. * scan progress pointer such that every real extent objectid
  2677. * will be smaller.
  2678. */
  2679. fs_info->qgroup_rescan_progress.objectid = (u64)-1;
  2680. btrfs_release_path(path);
  2681. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2682. return ret;
  2683. }
  2684. done = is_last_leaf(path);
  2685. btrfs_item_key_to_cpu(path->nodes[0], &found,
  2686. btrfs_header_nritems(path->nodes[0]) - 1);
  2687. fs_info->qgroup_rescan_progress.objectid = found.objectid + 1;
  2688. scratch_leaf = btrfs_clone_extent_buffer(path->nodes[0]);
  2689. if (!scratch_leaf) {
  2690. ret = -ENOMEM;
  2691. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2692. goto out;
  2693. }
  2694. extent_buffer_get(scratch_leaf);
  2695. btrfs_tree_read_lock(scratch_leaf);
  2696. btrfs_set_lock_blocking_rw(scratch_leaf, BTRFS_READ_LOCK);
  2697. slot = path->slots[0];
  2698. btrfs_release_path(path);
  2699. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2700. for (; slot < btrfs_header_nritems(scratch_leaf); ++slot) {
  2701. btrfs_item_key_to_cpu(scratch_leaf, &found, slot);
  2702. if (found.type != BTRFS_EXTENT_ITEM_KEY &&
  2703. found.type != BTRFS_METADATA_ITEM_KEY)
  2704. continue;
  2705. if (found.type == BTRFS_METADATA_ITEM_KEY)
  2706. num_bytes = fs_info->nodesize;
  2707. else
  2708. num_bytes = found.offset;
  2709. ret = btrfs_find_all_roots(NULL, fs_info, found.objectid, 0,
  2710. &roots, false);
  2711. if (ret < 0)
  2712. goto out;
  2713. /* For rescan, just pass old_roots as NULL */
  2714. ret = btrfs_qgroup_account_extent(trans, found.objectid,
  2715. num_bytes, NULL, roots);
  2716. if (ret < 0)
  2717. goto out;
  2718. }
  2719. out:
  2720. if (scratch_leaf) {
  2721. btrfs_tree_read_unlock_blocking(scratch_leaf);
  2722. free_extent_buffer(scratch_leaf);
  2723. }
  2724. if (done && !ret) {
  2725. ret = 1;
  2726. fs_info->qgroup_rescan_progress.objectid = (u64)-1;
  2727. }
  2728. return ret;
  2729. }
  2730. static void btrfs_qgroup_rescan_worker(struct btrfs_work *work)
  2731. {
  2732. struct btrfs_fs_info *fs_info = container_of(work, struct btrfs_fs_info,
  2733. qgroup_rescan_work);
  2734. struct btrfs_path *path;
  2735. struct btrfs_trans_handle *trans = NULL;
  2736. int err = -ENOMEM;
  2737. int ret = 0;
  2738. path = btrfs_alloc_path();
  2739. if (!path)
  2740. goto out;
  2741. /*
  2742. * Rescan should only search for commit root, and any later difference
  2743. * should be recorded by qgroup
  2744. */
  2745. path->search_commit_root = 1;
  2746. path->skip_locking = 1;
  2747. err = 0;
  2748. while (!err && !btrfs_fs_closing(fs_info)) {
  2749. trans = btrfs_start_transaction(fs_info->fs_root, 0);
  2750. if (IS_ERR(trans)) {
  2751. err = PTR_ERR(trans);
  2752. break;
  2753. }
  2754. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags)) {
  2755. err = -EINTR;
  2756. } else {
  2757. err = qgroup_rescan_leaf(trans, path);
  2758. }
  2759. if (err > 0)
  2760. btrfs_commit_transaction(trans);
  2761. else
  2762. btrfs_end_transaction(trans);
  2763. }
  2764. out:
  2765. btrfs_free_path(path);
  2766. mutex_lock(&fs_info->qgroup_rescan_lock);
  2767. if (!btrfs_fs_closing(fs_info))
  2768. fs_info->qgroup_flags &= ~BTRFS_QGROUP_STATUS_FLAG_RESCAN;
  2769. if (err > 0 &&
  2770. fs_info->qgroup_flags & BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT) {
  2771. fs_info->qgroup_flags &= ~BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  2772. } else if (err < 0) {
  2773. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_INCONSISTENT;
  2774. }
  2775. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2776. /*
  2777. * only update status, since the previous part has already updated the
  2778. * qgroup info.
  2779. */
  2780. trans = btrfs_start_transaction(fs_info->quota_root, 1);
  2781. if (IS_ERR(trans)) {
  2782. err = PTR_ERR(trans);
  2783. btrfs_err(fs_info,
  2784. "fail to start transaction for status update: %d",
  2785. err);
  2786. goto done;
  2787. }
  2788. ret = update_qgroup_status_item(trans);
  2789. if (ret < 0) {
  2790. err = ret;
  2791. btrfs_err(fs_info, "fail to update qgroup status: %d", err);
  2792. }
  2793. btrfs_end_transaction(trans);
  2794. if (btrfs_fs_closing(fs_info)) {
  2795. btrfs_info(fs_info, "qgroup scan paused");
  2796. } else if (err >= 0) {
  2797. btrfs_info(fs_info, "qgroup scan completed%s",
  2798. err > 0 ? " (inconsistency flag cleared)" : "");
  2799. } else {
  2800. btrfs_err(fs_info, "qgroup scan failed with %d", err);
  2801. }
  2802. done:
  2803. mutex_lock(&fs_info->qgroup_rescan_lock);
  2804. fs_info->qgroup_rescan_running = false;
  2805. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2806. complete_all(&fs_info->qgroup_rescan_completion);
  2807. }
  2808. /*
  2809. * Checks that (a) no rescan is running and (b) quota is enabled. Allocates all
  2810. * memory required for the rescan context.
  2811. */
  2812. static int
  2813. qgroup_rescan_init(struct btrfs_fs_info *fs_info, u64 progress_objectid,
  2814. int init_flags)
  2815. {
  2816. int ret = 0;
  2817. if (!init_flags) {
  2818. /* we're resuming qgroup rescan at mount time */
  2819. if (!(fs_info->qgroup_flags &
  2820. BTRFS_QGROUP_STATUS_FLAG_RESCAN)) {
  2821. btrfs_warn(fs_info,
  2822. "qgroup rescan init failed, qgroup is not enabled");
  2823. ret = -EINVAL;
  2824. } else if (!(fs_info->qgroup_flags &
  2825. BTRFS_QGROUP_STATUS_FLAG_ON)) {
  2826. btrfs_warn(fs_info,
  2827. "qgroup rescan init failed, qgroup rescan is not queued");
  2828. ret = -EINVAL;
  2829. }
  2830. if (ret)
  2831. return ret;
  2832. }
  2833. mutex_lock(&fs_info->qgroup_rescan_lock);
  2834. spin_lock(&fs_info->qgroup_lock);
  2835. if (init_flags) {
  2836. if (fs_info->qgroup_flags & BTRFS_QGROUP_STATUS_FLAG_RESCAN) {
  2837. btrfs_warn(fs_info,
  2838. "qgroup rescan is already in progress");
  2839. ret = -EINPROGRESS;
  2840. } else if (!(fs_info->qgroup_flags &
  2841. BTRFS_QGROUP_STATUS_FLAG_ON)) {
  2842. btrfs_warn(fs_info,
  2843. "qgroup rescan init failed, qgroup is not enabled");
  2844. ret = -EINVAL;
  2845. }
  2846. if (ret) {
  2847. spin_unlock(&fs_info->qgroup_lock);
  2848. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2849. return ret;
  2850. }
  2851. fs_info->qgroup_flags |= BTRFS_QGROUP_STATUS_FLAG_RESCAN;
  2852. }
  2853. memset(&fs_info->qgroup_rescan_progress, 0,
  2854. sizeof(fs_info->qgroup_rescan_progress));
  2855. fs_info->qgroup_rescan_progress.objectid = progress_objectid;
  2856. init_completion(&fs_info->qgroup_rescan_completion);
  2857. fs_info->qgroup_rescan_running = true;
  2858. spin_unlock(&fs_info->qgroup_lock);
  2859. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2860. memset(&fs_info->qgroup_rescan_work, 0,
  2861. sizeof(fs_info->qgroup_rescan_work));
  2862. btrfs_init_work(&fs_info->qgroup_rescan_work,
  2863. btrfs_qgroup_rescan_helper,
  2864. btrfs_qgroup_rescan_worker, NULL, NULL);
  2865. return 0;
  2866. }
  2867. static void
  2868. qgroup_rescan_zero_tracking(struct btrfs_fs_info *fs_info)
  2869. {
  2870. struct rb_node *n;
  2871. struct btrfs_qgroup *qgroup;
  2872. spin_lock(&fs_info->qgroup_lock);
  2873. /* clear all current qgroup tracking information */
  2874. for (n = rb_first(&fs_info->qgroup_tree); n; n = rb_next(n)) {
  2875. qgroup = rb_entry(n, struct btrfs_qgroup, node);
  2876. qgroup->rfer = 0;
  2877. qgroup->rfer_cmpr = 0;
  2878. qgroup->excl = 0;
  2879. qgroup->excl_cmpr = 0;
  2880. qgroup_dirty(fs_info, qgroup);
  2881. }
  2882. spin_unlock(&fs_info->qgroup_lock);
  2883. }
  2884. int
  2885. btrfs_qgroup_rescan(struct btrfs_fs_info *fs_info)
  2886. {
  2887. int ret = 0;
  2888. struct btrfs_trans_handle *trans;
  2889. ret = qgroup_rescan_init(fs_info, 0, 1);
  2890. if (ret)
  2891. return ret;
  2892. /*
  2893. * We have set the rescan_progress to 0, which means no more
  2894. * delayed refs will be accounted by btrfs_qgroup_account_ref.
  2895. * However, btrfs_qgroup_account_ref may be right after its call
  2896. * to btrfs_find_all_roots, in which case it would still do the
  2897. * accounting.
  2898. * To solve this, we're committing the transaction, which will
  2899. * ensure we run all delayed refs and only after that, we are
  2900. * going to clear all tracking information for a clean start.
  2901. */
  2902. trans = btrfs_join_transaction(fs_info->fs_root);
  2903. if (IS_ERR(trans)) {
  2904. fs_info->qgroup_flags &= ~BTRFS_QGROUP_STATUS_FLAG_RESCAN;
  2905. return PTR_ERR(trans);
  2906. }
  2907. ret = btrfs_commit_transaction(trans);
  2908. if (ret) {
  2909. fs_info->qgroup_flags &= ~BTRFS_QGROUP_STATUS_FLAG_RESCAN;
  2910. return ret;
  2911. }
  2912. qgroup_rescan_zero_tracking(fs_info);
  2913. btrfs_queue_work(fs_info->qgroup_rescan_workers,
  2914. &fs_info->qgroup_rescan_work);
  2915. return 0;
  2916. }
  2917. int btrfs_qgroup_wait_for_completion(struct btrfs_fs_info *fs_info,
  2918. bool interruptible)
  2919. {
  2920. int running;
  2921. int ret = 0;
  2922. mutex_lock(&fs_info->qgroup_rescan_lock);
  2923. spin_lock(&fs_info->qgroup_lock);
  2924. running = fs_info->qgroup_rescan_running;
  2925. spin_unlock(&fs_info->qgroup_lock);
  2926. mutex_unlock(&fs_info->qgroup_rescan_lock);
  2927. if (!running)
  2928. return 0;
  2929. if (interruptible)
  2930. ret = wait_for_completion_interruptible(
  2931. &fs_info->qgroup_rescan_completion);
  2932. else
  2933. wait_for_completion(&fs_info->qgroup_rescan_completion);
  2934. return ret;
  2935. }
  2936. /*
  2937. * this is only called from open_ctree where we're still single threaded, thus
  2938. * locking is omitted here.
  2939. */
  2940. void
  2941. btrfs_qgroup_rescan_resume(struct btrfs_fs_info *fs_info)
  2942. {
  2943. if (fs_info->qgroup_flags & BTRFS_QGROUP_STATUS_FLAG_RESCAN)
  2944. btrfs_queue_work(fs_info->qgroup_rescan_workers,
  2945. &fs_info->qgroup_rescan_work);
  2946. }
  2947. /*
  2948. * Reserve qgroup space for range [start, start + len).
  2949. *
  2950. * This function will either reserve space from related qgroups or doing
  2951. * nothing if the range is already reserved.
  2952. *
  2953. * Return 0 for successful reserve
  2954. * Return <0 for error (including -EQUOT)
  2955. *
  2956. * NOTE: this function may sleep for memory allocation.
  2957. * if btrfs_qgroup_reserve_data() is called multiple times with
  2958. * same @reserved, caller must ensure when error happens it's OK
  2959. * to free *ALL* reserved space.
  2960. */
  2961. int btrfs_qgroup_reserve_data(struct inode *inode,
  2962. struct extent_changeset **reserved_ret, u64 start,
  2963. u64 len)
  2964. {
  2965. struct btrfs_root *root = BTRFS_I(inode)->root;
  2966. struct ulist_node *unode;
  2967. struct ulist_iterator uiter;
  2968. struct extent_changeset *reserved;
  2969. u64 orig_reserved;
  2970. u64 to_reserve;
  2971. int ret;
  2972. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &root->fs_info->flags) ||
  2973. !is_fstree(root->root_key.objectid) || len == 0)
  2974. return 0;
  2975. /* @reserved parameter is mandatory for qgroup */
  2976. if (WARN_ON(!reserved_ret))
  2977. return -EINVAL;
  2978. if (!*reserved_ret) {
  2979. *reserved_ret = extent_changeset_alloc();
  2980. if (!*reserved_ret)
  2981. return -ENOMEM;
  2982. }
  2983. reserved = *reserved_ret;
  2984. /* Record already reserved space */
  2985. orig_reserved = reserved->bytes_changed;
  2986. ret = set_record_extent_bits(&BTRFS_I(inode)->io_tree, start,
  2987. start + len -1, EXTENT_QGROUP_RESERVED, reserved);
  2988. /* Newly reserved space */
  2989. to_reserve = reserved->bytes_changed - orig_reserved;
  2990. trace_btrfs_qgroup_reserve_data(inode, start, len,
  2991. to_reserve, QGROUP_RESERVE);
  2992. if (ret < 0)
  2993. goto cleanup;
  2994. ret = qgroup_reserve(root, to_reserve, true, BTRFS_QGROUP_RSV_DATA);
  2995. if (ret < 0)
  2996. goto cleanup;
  2997. return ret;
  2998. cleanup:
  2999. /* cleanup *ALL* already reserved ranges */
  3000. ULIST_ITER_INIT(&uiter);
  3001. while ((unode = ulist_next(&reserved->range_changed, &uiter)))
  3002. clear_extent_bit(&BTRFS_I(inode)->io_tree, unode->val,
  3003. unode->aux, EXTENT_QGROUP_RESERVED, 0, 0, NULL);
  3004. extent_changeset_release(reserved);
  3005. return ret;
  3006. }
  3007. /* Free ranges specified by @reserved, normally in error path */
  3008. static int qgroup_free_reserved_data(struct inode *inode,
  3009. struct extent_changeset *reserved, u64 start, u64 len)
  3010. {
  3011. struct btrfs_root *root = BTRFS_I(inode)->root;
  3012. struct ulist_node *unode;
  3013. struct ulist_iterator uiter;
  3014. struct extent_changeset changeset;
  3015. int freed = 0;
  3016. int ret;
  3017. extent_changeset_init(&changeset);
  3018. len = round_up(start + len, root->fs_info->sectorsize);
  3019. start = round_down(start, root->fs_info->sectorsize);
  3020. ULIST_ITER_INIT(&uiter);
  3021. while ((unode = ulist_next(&reserved->range_changed, &uiter))) {
  3022. u64 range_start = unode->val;
  3023. /* unode->aux is the inclusive end */
  3024. u64 range_len = unode->aux - range_start + 1;
  3025. u64 free_start;
  3026. u64 free_len;
  3027. extent_changeset_release(&changeset);
  3028. /* Only free range in range [start, start + len) */
  3029. if (range_start >= start + len ||
  3030. range_start + range_len <= start)
  3031. continue;
  3032. free_start = max(range_start, start);
  3033. free_len = min(start + len, range_start + range_len) -
  3034. free_start;
  3035. /*
  3036. * TODO: To also modify reserved->ranges_reserved to reflect
  3037. * the modification.
  3038. *
  3039. * However as long as we free qgroup reserved according to
  3040. * EXTENT_QGROUP_RESERVED, we won't double free.
  3041. * So not need to rush.
  3042. */
  3043. ret = clear_record_extent_bits(&BTRFS_I(inode)->io_failure_tree,
  3044. free_start, free_start + free_len - 1,
  3045. EXTENT_QGROUP_RESERVED, &changeset);
  3046. if (ret < 0)
  3047. goto out;
  3048. freed += changeset.bytes_changed;
  3049. }
  3050. btrfs_qgroup_free_refroot(root->fs_info, root->root_key.objectid, freed,
  3051. BTRFS_QGROUP_RSV_DATA);
  3052. ret = freed;
  3053. out:
  3054. extent_changeset_release(&changeset);
  3055. return ret;
  3056. }
  3057. static int __btrfs_qgroup_release_data(struct inode *inode,
  3058. struct extent_changeset *reserved, u64 start, u64 len,
  3059. int free)
  3060. {
  3061. struct extent_changeset changeset;
  3062. int trace_op = QGROUP_RELEASE;
  3063. int ret;
  3064. if (!test_bit(BTRFS_FS_QUOTA_ENABLED,
  3065. &BTRFS_I(inode)->root->fs_info->flags))
  3066. return 0;
  3067. /* In release case, we shouldn't have @reserved */
  3068. WARN_ON(!free && reserved);
  3069. if (free && reserved)
  3070. return qgroup_free_reserved_data(inode, reserved, start, len);
  3071. extent_changeset_init(&changeset);
  3072. ret = clear_record_extent_bits(&BTRFS_I(inode)->io_tree, start,
  3073. start + len -1, EXTENT_QGROUP_RESERVED, &changeset);
  3074. if (ret < 0)
  3075. goto out;
  3076. if (free)
  3077. trace_op = QGROUP_FREE;
  3078. trace_btrfs_qgroup_release_data(inode, start, len,
  3079. changeset.bytes_changed, trace_op);
  3080. if (free)
  3081. btrfs_qgroup_free_refroot(BTRFS_I(inode)->root->fs_info,
  3082. BTRFS_I(inode)->root->root_key.objectid,
  3083. changeset.bytes_changed, BTRFS_QGROUP_RSV_DATA);
  3084. ret = changeset.bytes_changed;
  3085. out:
  3086. extent_changeset_release(&changeset);
  3087. return ret;
  3088. }
  3089. /*
  3090. * Free a reserved space range from io_tree and related qgroups
  3091. *
  3092. * Should be called when a range of pages get invalidated before reaching disk.
  3093. * Or for error cleanup case.
  3094. * if @reserved is given, only reserved range in [@start, @start + @len) will
  3095. * be freed.
  3096. *
  3097. * For data written to disk, use btrfs_qgroup_release_data().
  3098. *
  3099. * NOTE: This function may sleep for memory allocation.
  3100. */
  3101. int btrfs_qgroup_free_data(struct inode *inode,
  3102. struct extent_changeset *reserved, u64 start, u64 len)
  3103. {
  3104. return __btrfs_qgroup_release_data(inode, reserved, start, len, 1);
  3105. }
  3106. /*
  3107. * Release a reserved space range from io_tree only.
  3108. *
  3109. * Should be called when a range of pages get written to disk and corresponding
  3110. * FILE_EXTENT is inserted into corresponding root.
  3111. *
  3112. * Since new qgroup accounting framework will only update qgroup numbers at
  3113. * commit_transaction() time, its reserved space shouldn't be freed from
  3114. * related qgroups.
  3115. *
  3116. * But we should release the range from io_tree, to allow further write to be
  3117. * COWed.
  3118. *
  3119. * NOTE: This function may sleep for memory allocation.
  3120. */
  3121. int btrfs_qgroup_release_data(struct inode *inode, u64 start, u64 len)
  3122. {
  3123. return __btrfs_qgroup_release_data(inode, NULL, start, len, 0);
  3124. }
  3125. static void add_root_meta_rsv(struct btrfs_root *root, int num_bytes,
  3126. enum btrfs_qgroup_rsv_type type)
  3127. {
  3128. if (type != BTRFS_QGROUP_RSV_META_PREALLOC &&
  3129. type != BTRFS_QGROUP_RSV_META_PERTRANS)
  3130. return;
  3131. if (num_bytes == 0)
  3132. return;
  3133. spin_lock(&root->qgroup_meta_rsv_lock);
  3134. if (type == BTRFS_QGROUP_RSV_META_PREALLOC)
  3135. root->qgroup_meta_rsv_prealloc += num_bytes;
  3136. else
  3137. root->qgroup_meta_rsv_pertrans += num_bytes;
  3138. spin_unlock(&root->qgroup_meta_rsv_lock);
  3139. }
  3140. static int sub_root_meta_rsv(struct btrfs_root *root, int num_bytes,
  3141. enum btrfs_qgroup_rsv_type type)
  3142. {
  3143. if (type != BTRFS_QGROUP_RSV_META_PREALLOC &&
  3144. type != BTRFS_QGROUP_RSV_META_PERTRANS)
  3145. return 0;
  3146. if (num_bytes == 0)
  3147. return 0;
  3148. spin_lock(&root->qgroup_meta_rsv_lock);
  3149. if (type == BTRFS_QGROUP_RSV_META_PREALLOC) {
  3150. num_bytes = min_t(u64, root->qgroup_meta_rsv_prealloc,
  3151. num_bytes);
  3152. root->qgroup_meta_rsv_prealloc -= num_bytes;
  3153. } else {
  3154. num_bytes = min_t(u64, root->qgroup_meta_rsv_pertrans,
  3155. num_bytes);
  3156. root->qgroup_meta_rsv_pertrans -= num_bytes;
  3157. }
  3158. spin_unlock(&root->qgroup_meta_rsv_lock);
  3159. return num_bytes;
  3160. }
  3161. int __btrfs_qgroup_reserve_meta(struct btrfs_root *root, int num_bytes,
  3162. enum btrfs_qgroup_rsv_type type, bool enforce)
  3163. {
  3164. struct btrfs_fs_info *fs_info = root->fs_info;
  3165. int ret;
  3166. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags) ||
  3167. !is_fstree(root->root_key.objectid) || num_bytes == 0)
  3168. return 0;
  3169. BUG_ON(num_bytes != round_down(num_bytes, fs_info->nodesize));
  3170. trace_qgroup_meta_reserve(root, type, (s64)num_bytes);
  3171. ret = qgroup_reserve(root, num_bytes, enforce, type);
  3172. if (ret < 0)
  3173. return ret;
  3174. /*
  3175. * Record what we have reserved into root.
  3176. *
  3177. * To avoid quota disabled->enabled underflow.
  3178. * In that case, we may try to free space we haven't reserved
  3179. * (since quota was disabled), so record what we reserved into root.
  3180. * And ensure later release won't underflow this number.
  3181. */
  3182. add_root_meta_rsv(root, num_bytes, type);
  3183. return ret;
  3184. }
  3185. void btrfs_qgroup_free_meta_all_pertrans(struct btrfs_root *root)
  3186. {
  3187. struct btrfs_fs_info *fs_info = root->fs_info;
  3188. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags) ||
  3189. !is_fstree(root->root_key.objectid))
  3190. return;
  3191. /* TODO: Update trace point to handle such free */
  3192. trace_qgroup_meta_free_all_pertrans(root);
  3193. /* Special value -1 means to free all reserved space */
  3194. btrfs_qgroup_free_refroot(fs_info, root->root_key.objectid, (u64)-1,
  3195. BTRFS_QGROUP_RSV_META_PERTRANS);
  3196. }
  3197. void __btrfs_qgroup_free_meta(struct btrfs_root *root, int num_bytes,
  3198. enum btrfs_qgroup_rsv_type type)
  3199. {
  3200. struct btrfs_fs_info *fs_info = root->fs_info;
  3201. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags) ||
  3202. !is_fstree(root->root_key.objectid))
  3203. return;
  3204. /*
  3205. * reservation for META_PREALLOC can happen before quota is enabled,
  3206. * which can lead to underflow.
  3207. * Here ensure we will only free what we really have reserved.
  3208. */
  3209. num_bytes = sub_root_meta_rsv(root, num_bytes, type);
  3210. BUG_ON(num_bytes != round_down(num_bytes, fs_info->nodesize));
  3211. trace_qgroup_meta_reserve(root, type, -(s64)num_bytes);
  3212. btrfs_qgroup_free_refroot(fs_info, root->root_key.objectid,
  3213. num_bytes, type);
  3214. }
  3215. static void qgroup_convert_meta(struct btrfs_fs_info *fs_info, u64 ref_root,
  3216. int num_bytes)
  3217. {
  3218. struct btrfs_root *quota_root = fs_info->quota_root;
  3219. struct btrfs_qgroup *qgroup;
  3220. struct ulist_node *unode;
  3221. struct ulist_iterator uiter;
  3222. int ret = 0;
  3223. if (num_bytes == 0)
  3224. return;
  3225. if (!quota_root)
  3226. return;
  3227. spin_lock(&fs_info->qgroup_lock);
  3228. qgroup = find_qgroup_rb(fs_info, ref_root);
  3229. if (!qgroup)
  3230. goto out;
  3231. ulist_reinit(fs_info->qgroup_ulist);
  3232. ret = ulist_add(fs_info->qgroup_ulist, qgroup->qgroupid,
  3233. qgroup_to_aux(qgroup), GFP_ATOMIC);
  3234. if (ret < 0)
  3235. goto out;
  3236. ULIST_ITER_INIT(&uiter);
  3237. while ((unode = ulist_next(fs_info->qgroup_ulist, &uiter))) {
  3238. struct btrfs_qgroup *qg;
  3239. struct btrfs_qgroup_list *glist;
  3240. qg = unode_aux_to_qgroup(unode);
  3241. qgroup_rsv_release(fs_info, qg, num_bytes,
  3242. BTRFS_QGROUP_RSV_META_PREALLOC);
  3243. qgroup_rsv_add(fs_info, qg, num_bytes,
  3244. BTRFS_QGROUP_RSV_META_PERTRANS);
  3245. list_for_each_entry(glist, &qg->groups, next_group) {
  3246. ret = ulist_add(fs_info->qgroup_ulist,
  3247. glist->group->qgroupid,
  3248. qgroup_to_aux(glist->group), GFP_ATOMIC);
  3249. if (ret < 0)
  3250. goto out;
  3251. }
  3252. }
  3253. out:
  3254. spin_unlock(&fs_info->qgroup_lock);
  3255. }
  3256. void btrfs_qgroup_convert_reserved_meta(struct btrfs_root *root, int num_bytes)
  3257. {
  3258. struct btrfs_fs_info *fs_info = root->fs_info;
  3259. if (!test_bit(BTRFS_FS_QUOTA_ENABLED, &fs_info->flags) ||
  3260. !is_fstree(root->root_key.objectid))
  3261. return;
  3262. /* Same as btrfs_qgroup_free_meta_prealloc() */
  3263. num_bytes = sub_root_meta_rsv(root, num_bytes,
  3264. BTRFS_QGROUP_RSV_META_PREALLOC);
  3265. trace_qgroup_meta_convert(root, num_bytes);
  3266. qgroup_convert_meta(fs_info, root->root_key.objectid, num_bytes);
  3267. }
  3268. /*
  3269. * Check qgroup reserved space leaking, normally at destroy inode
  3270. * time
  3271. */
  3272. void btrfs_qgroup_check_reserved_leak(struct inode *inode)
  3273. {
  3274. struct extent_changeset changeset;
  3275. struct ulist_node *unode;
  3276. struct ulist_iterator iter;
  3277. int ret;
  3278. extent_changeset_init(&changeset);
  3279. ret = clear_record_extent_bits(&BTRFS_I(inode)->io_tree, 0, (u64)-1,
  3280. EXTENT_QGROUP_RESERVED, &changeset);
  3281. WARN_ON(ret < 0);
  3282. if (WARN_ON(changeset.bytes_changed)) {
  3283. ULIST_ITER_INIT(&iter);
  3284. while ((unode = ulist_next(&changeset.range_changed, &iter))) {
  3285. btrfs_warn(BTRFS_I(inode)->root->fs_info,
  3286. "leaking qgroup reserved space, ino: %lu, start: %llu, end: %llu",
  3287. inode->i_ino, unode->val, unode->aux);
  3288. }
  3289. btrfs_qgroup_free_refroot(BTRFS_I(inode)->root->fs_info,
  3290. BTRFS_I(inode)->root->root_key.objectid,
  3291. changeset.bytes_changed, BTRFS_QGROUP_RSV_DATA);
  3292. }
  3293. extent_changeset_release(&changeset);
  3294. }