sysfs.c 23 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * Copyright (C) 2007 Oracle. All rights reserved.
  4. */
  5. #include <linux/sched.h>
  6. #include <linux/slab.h>
  7. #include <linux/spinlock.h>
  8. #include <linux/completion.h>
  9. #include <linux/buffer_head.h>
  10. #include <linux/kobject.h>
  11. #include <linux/bug.h>
  12. #include <linux/genhd.h>
  13. #include <linux/debugfs.h>
  14. #include "ctree.h"
  15. #include "disk-io.h"
  16. #include "transaction.h"
  17. #include "sysfs.h"
  18. #include "volumes.h"
  19. static inline struct btrfs_fs_info *to_fs_info(struct kobject *kobj);
  20. static inline struct btrfs_fs_devices *to_fs_devs(struct kobject *kobj);
  21. static u64 get_features(struct btrfs_fs_info *fs_info,
  22. enum btrfs_feature_set set)
  23. {
  24. struct btrfs_super_block *disk_super = fs_info->super_copy;
  25. if (set == FEAT_COMPAT)
  26. return btrfs_super_compat_flags(disk_super);
  27. else if (set == FEAT_COMPAT_RO)
  28. return btrfs_super_compat_ro_flags(disk_super);
  29. else
  30. return btrfs_super_incompat_flags(disk_super);
  31. }
  32. static void set_features(struct btrfs_fs_info *fs_info,
  33. enum btrfs_feature_set set, u64 features)
  34. {
  35. struct btrfs_super_block *disk_super = fs_info->super_copy;
  36. if (set == FEAT_COMPAT)
  37. btrfs_set_super_compat_flags(disk_super, features);
  38. else if (set == FEAT_COMPAT_RO)
  39. btrfs_set_super_compat_ro_flags(disk_super, features);
  40. else
  41. btrfs_set_super_incompat_flags(disk_super, features);
  42. }
  43. static int can_modify_feature(struct btrfs_feature_attr *fa)
  44. {
  45. int val = 0;
  46. u64 set, clear;
  47. switch (fa->feature_set) {
  48. case FEAT_COMPAT:
  49. set = BTRFS_FEATURE_COMPAT_SAFE_SET;
  50. clear = BTRFS_FEATURE_COMPAT_SAFE_CLEAR;
  51. break;
  52. case FEAT_COMPAT_RO:
  53. set = BTRFS_FEATURE_COMPAT_RO_SAFE_SET;
  54. clear = BTRFS_FEATURE_COMPAT_RO_SAFE_CLEAR;
  55. break;
  56. case FEAT_INCOMPAT:
  57. set = BTRFS_FEATURE_INCOMPAT_SAFE_SET;
  58. clear = BTRFS_FEATURE_INCOMPAT_SAFE_CLEAR;
  59. break;
  60. default:
  61. pr_warn("btrfs: sysfs: unknown feature set %d\n",
  62. fa->feature_set);
  63. return 0;
  64. }
  65. if (set & fa->feature_bit)
  66. val |= 1;
  67. if (clear & fa->feature_bit)
  68. val |= 2;
  69. return val;
  70. }
  71. static ssize_t btrfs_feature_attr_show(struct kobject *kobj,
  72. struct kobj_attribute *a, char *buf)
  73. {
  74. int val = 0;
  75. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  76. struct btrfs_feature_attr *fa = to_btrfs_feature_attr(a);
  77. if (fs_info) {
  78. u64 features = get_features(fs_info, fa->feature_set);
  79. if (features & fa->feature_bit)
  80. val = 1;
  81. } else
  82. val = can_modify_feature(fa);
  83. return snprintf(buf, PAGE_SIZE, "%d\n", val);
  84. }
  85. static ssize_t btrfs_feature_attr_store(struct kobject *kobj,
  86. struct kobj_attribute *a,
  87. const char *buf, size_t count)
  88. {
  89. struct btrfs_fs_info *fs_info;
  90. struct btrfs_feature_attr *fa = to_btrfs_feature_attr(a);
  91. u64 features, set, clear;
  92. unsigned long val;
  93. int ret;
  94. fs_info = to_fs_info(kobj);
  95. if (!fs_info)
  96. return -EPERM;
  97. if (sb_rdonly(fs_info->sb))
  98. return -EROFS;
  99. ret = kstrtoul(skip_spaces(buf), 0, &val);
  100. if (ret)
  101. return ret;
  102. if (fa->feature_set == FEAT_COMPAT) {
  103. set = BTRFS_FEATURE_COMPAT_SAFE_SET;
  104. clear = BTRFS_FEATURE_COMPAT_SAFE_CLEAR;
  105. } else if (fa->feature_set == FEAT_COMPAT_RO) {
  106. set = BTRFS_FEATURE_COMPAT_RO_SAFE_SET;
  107. clear = BTRFS_FEATURE_COMPAT_RO_SAFE_CLEAR;
  108. } else {
  109. set = BTRFS_FEATURE_INCOMPAT_SAFE_SET;
  110. clear = BTRFS_FEATURE_INCOMPAT_SAFE_CLEAR;
  111. }
  112. features = get_features(fs_info, fa->feature_set);
  113. /* Nothing to do */
  114. if ((val && (features & fa->feature_bit)) ||
  115. (!val && !(features & fa->feature_bit)))
  116. return count;
  117. if ((val && !(set & fa->feature_bit)) ||
  118. (!val && !(clear & fa->feature_bit))) {
  119. btrfs_info(fs_info,
  120. "%sabling feature %s on mounted fs is not supported.",
  121. val ? "En" : "Dis", fa->kobj_attr.attr.name);
  122. return -EPERM;
  123. }
  124. btrfs_info(fs_info, "%s %s feature flag",
  125. val ? "Setting" : "Clearing", fa->kobj_attr.attr.name);
  126. spin_lock(&fs_info->super_lock);
  127. features = get_features(fs_info, fa->feature_set);
  128. if (val)
  129. features |= fa->feature_bit;
  130. else
  131. features &= ~fa->feature_bit;
  132. set_features(fs_info, fa->feature_set, features);
  133. spin_unlock(&fs_info->super_lock);
  134. /*
  135. * We don't want to do full transaction commit from inside sysfs
  136. */
  137. btrfs_set_pending(fs_info, COMMIT);
  138. wake_up_process(fs_info->transaction_kthread);
  139. return count;
  140. }
  141. static umode_t btrfs_feature_visible(struct kobject *kobj,
  142. struct attribute *attr, int unused)
  143. {
  144. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  145. umode_t mode = attr->mode;
  146. if (fs_info) {
  147. struct btrfs_feature_attr *fa;
  148. u64 features;
  149. fa = attr_to_btrfs_feature_attr(attr);
  150. features = get_features(fs_info, fa->feature_set);
  151. if (can_modify_feature(fa))
  152. mode |= S_IWUSR;
  153. else if (!(features & fa->feature_bit))
  154. mode = 0;
  155. }
  156. return mode;
  157. }
  158. BTRFS_FEAT_ATTR_INCOMPAT(mixed_backref, MIXED_BACKREF);
  159. BTRFS_FEAT_ATTR_INCOMPAT(default_subvol, DEFAULT_SUBVOL);
  160. BTRFS_FEAT_ATTR_INCOMPAT(mixed_groups, MIXED_GROUPS);
  161. BTRFS_FEAT_ATTR_INCOMPAT(compress_lzo, COMPRESS_LZO);
  162. BTRFS_FEAT_ATTR_INCOMPAT(compress_zstd, COMPRESS_ZSTD);
  163. BTRFS_FEAT_ATTR_INCOMPAT(big_metadata, BIG_METADATA);
  164. BTRFS_FEAT_ATTR_INCOMPAT(extended_iref, EXTENDED_IREF);
  165. BTRFS_FEAT_ATTR_INCOMPAT(raid56, RAID56);
  166. BTRFS_FEAT_ATTR_INCOMPAT(skinny_metadata, SKINNY_METADATA);
  167. BTRFS_FEAT_ATTR_INCOMPAT(no_holes, NO_HOLES);
  168. BTRFS_FEAT_ATTR_COMPAT_RO(free_space_tree, FREE_SPACE_TREE);
  169. static struct attribute *btrfs_supported_feature_attrs[] = {
  170. BTRFS_FEAT_ATTR_PTR(mixed_backref),
  171. BTRFS_FEAT_ATTR_PTR(default_subvol),
  172. BTRFS_FEAT_ATTR_PTR(mixed_groups),
  173. BTRFS_FEAT_ATTR_PTR(compress_lzo),
  174. BTRFS_FEAT_ATTR_PTR(compress_zstd),
  175. BTRFS_FEAT_ATTR_PTR(big_metadata),
  176. BTRFS_FEAT_ATTR_PTR(extended_iref),
  177. BTRFS_FEAT_ATTR_PTR(raid56),
  178. BTRFS_FEAT_ATTR_PTR(skinny_metadata),
  179. BTRFS_FEAT_ATTR_PTR(no_holes),
  180. BTRFS_FEAT_ATTR_PTR(free_space_tree),
  181. NULL
  182. };
  183. static const struct attribute_group btrfs_feature_attr_group = {
  184. .name = "features",
  185. .is_visible = btrfs_feature_visible,
  186. .attrs = btrfs_supported_feature_attrs,
  187. };
  188. static ssize_t btrfs_show_u64(u64 *value_ptr, spinlock_t *lock, char *buf)
  189. {
  190. u64 val;
  191. if (lock)
  192. spin_lock(lock);
  193. val = *value_ptr;
  194. if (lock)
  195. spin_unlock(lock);
  196. return snprintf(buf, PAGE_SIZE, "%llu\n", val);
  197. }
  198. static ssize_t global_rsv_size_show(struct kobject *kobj,
  199. struct kobj_attribute *ka, char *buf)
  200. {
  201. struct btrfs_fs_info *fs_info = to_fs_info(kobj->parent);
  202. struct btrfs_block_rsv *block_rsv = &fs_info->global_block_rsv;
  203. return btrfs_show_u64(&block_rsv->size, &block_rsv->lock, buf);
  204. }
  205. BTRFS_ATTR(allocation, global_rsv_size, global_rsv_size_show);
  206. static ssize_t global_rsv_reserved_show(struct kobject *kobj,
  207. struct kobj_attribute *a, char *buf)
  208. {
  209. struct btrfs_fs_info *fs_info = to_fs_info(kobj->parent);
  210. struct btrfs_block_rsv *block_rsv = &fs_info->global_block_rsv;
  211. return btrfs_show_u64(&block_rsv->reserved, &block_rsv->lock, buf);
  212. }
  213. BTRFS_ATTR(allocation, global_rsv_reserved, global_rsv_reserved_show);
  214. #define to_space_info(_kobj) container_of(_kobj, struct btrfs_space_info, kobj)
  215. #define to_raid_kobj(_kobj) container_of(_kobj, struct raid_kobject, kobj)
  216. static ssize_t raid_bytes_show(struct kobject *kobj,
  217. struct kobj_attribute *attr, char *buf);
  218. BTRFS_ATTR(raid, total_bytes, raid_bytes_show);
  219. BTRFS_ATTR(raid, used_bytes, raid_bytes_show);
  220. static ssize_t raid_bytes_show(struct kobject *kobj,
  221. struct kobj_attribute *attr, char *buf)
  222. {
  223. struct btrfs_space_info *sinfo = to_space_info(kobj->parent);
  224. struct btrfs_block_group_cache *block_group;
  225. int index = btrfs_bg_flags_to_raid_index(to_raid_kobj(kobj)->flags);
  226. u64 val = 0;
  227. down_read(&sinfo->groups_sem);
  228. list_for_each_entry(block_group, &sinfo->block_groups[index], list) {
  229. if (&attr->attr == BTRFS_ATTR_PTR(raid, total_bytes))
  230. val += block_group->key.offset;
  231. else
  232. val += btrfs_block_group_used(&block_group->item);
  233. }
  234. up_read(&sinfo->groups_sem);
  235. return snprintf(buf, PAGE_SIZE, "%llu\n", val);
  236. }
  237. static struct attribute *raid_attributes[] = {
  238. BTRFS_ATTR_PTR(raid, total_bytes),
  239. BTRFS_ATTR_PTR(raid, used_bytes),
  240. NULL
  241. };
  242. static void release_raid_kobj(struct kobject *kobj)
  243. {
  244. kfree(to_raid_kobj(kobj));
  245. }
  246. struct kobj_type btrfs_raid_ktype = {
  247. .sysfs_ops = &kobj_sysfs_ops,
  248. .release = release_raid_kobj,
  249. .default_attrs = raid_attributes,
  250. };
  251. #define SPACE_INFO_ATTR(field) \
  252. static ssize_t btrfs_space_info_show_##field(struct kobject *kobj, \
  253. struct kobj_attribute *a, \
  254. char *buf) \
  255. { \
  256. struct btrfs_space_info *sinfo = to_space_info(kobj); \
  257. return btrfs_show_u64(&sinfo->field, &sinfo->lock, buf); \
  258. } \
  259. BTRFS_ATTR(space_info, field, btrfs_space_info_show_##field)
  260. static ssize_t btrfs_space_info_show_total_bytes_pinned(struct kobject *kobj,
  261. struct kobj_attribute *a,
  262. char *buf)
  263. {
  264. struct btrfs_space_info *sinfo = to_space_info(kobj);
  265. s64 val = percpu_counter_sum(&sinfo->total_bytes_pinned);
  266. return snprintf(buf, PAGE_SIZE, "%lld\n", val);
  267. }
  268. SPACE_INFO_ATTR(flags);
  269. SPACE_INFO_ATTR(total_bytes);
  270. SPACE_INFO_ATTR(bytes_used);
  271. SPACE_INFO_ATTR(bytes_pinned);
  272. SPACE_INFO_ATTR(bytes_reserved);
  273. SPACE_INFO_ATTR(bytes_may_use);
  274. SPACE_INFO_ATTR(bytes_readonly);
  275. SPACE_INFO_ATTR(disk_used);
  276. SPACE_INFO_ATTR(disk_total);
  277. BTRFS_ATTR(space_info, total_bytes_pinned,
  278. btrfs_space_info_show_total_bytes_pinned);
  279. static struct attribute *space_info_attrs[] = {
  280. BTRFS_ATTR_PTR(space_info, flags),
  281. BTRFS_ATTR_PTR(space_info, total_bytes),
  282. BTRFS_ATTR_PTR(space_info, bytes_used),
  283. BTRFS_ATTR_PTR(space_info, bytes_pinned),
  284. BTRFS_ATTR_PTR(space_info, bytes_reserved),
  285. BTRFS_ATTR_PTR(space_info, bytes_may_use),
  286. BTRFS_ATTR_PTR(space_info, bytes_readonly),
  287. BTRFS_ATTR_PTR(space_info, disk_used),
  288. BTRFS_ATTR_PTR(space_info, disk_total),
  289. BTRFS_ATTR_PTR(space_info, total_bytes_pinned),
  290. NULL,
  291. };
  292. static void space_info_release(struct kobject *kobj)
  293. {
  294. struct btrfs_space_info *sinfo = to_space_info(kobj);
  295. percpu_counter_destroy(&sinfo->total_bytes_pinned);
  296. kfree(sinfo);
  297. }
  298. struct kobj_type space_info_ktype = {
  299. .sysfs_ops = &kobj_sysfs_ops,
  300. .release = space_info_release,
  301. .default_attrs = space_info_attrs,
  302. };
  303. static const struct attribute *allocation_attrs[] = {
  304. BTRFS_ATTR_PTR(allocation, global_rsv_reserved),
  305. BTRFS_ATTR_PTR(allocation, global_rsv_size),
  306. NULL,
  307. };
  308. static ssize_t btrfs_label_show(struct kobject *kobj,
  309. struct kobj_attribute *a, char *buf)
  310. {
  311. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  312. char *label = fs_info->super_copy->label;
  313. ssize_t ret;
  314. spin_lock(&fs_info->super_lock);
  315. ret = snprintf(buf, PAGE_SIZE, label[0] ? "%s\n" : "%s", label);
  316. spin_unlock(&fs_info->super_lock);
  317. return ret;
  318. }
  319. static ssize_t btrfs_label_store(struct kobject *kobj,
  320. struct kobj_attribute *a,
  321. const char *buf, size_t len)
  322. {
  323. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  324. size_t p_len;
  325. if (!fs_info)
  326. return -EPERM;
  327. if (sb_rdonly(fs_info->sb))
  328. return -EROFS;
  329. /*
  330. * p_len is the len until the first occurrence of either
  331. * '\n' or '\0'
  332. */
  333. p_len = strcspn(buf, "\n");
  334. if (p_len >= BTRFS_LABEL_SIZE)
  335. return -EINVAL;
  336. spin_lock(&fs_info->super_lock);
  337. memset(fs_info->super_copy->label, 0, BTRFS_LABEL_SIZE);
  338. memcpy(fs_info->super_copy->label, buf, p_len);
  339. spin_unlock(&fs_info->super_lock);
  340. /*
  341. * We don't want to do full transaction commit from inside sysfs
  342. */
  343. btrfs_set_pending(fs_info, COMMIT);
  344. wake_up_process(fs_info->transaction_kthread);
  345. return len;
  346. }
  347. BTRFS_ATTR_RW(, label, btrfs_label_show, btrfs_label_store);
  348. static ssize_t btrfs_nodesize_show(struct kobject *kobj,
  349. struct kobj_attribute *a, char *buf)
  350. {
  351. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  352. return snprintf(buf, PAGE_SIZE, "%u\n", fs_info->super_copy->nodesize);
  353. }
  354. BTRFS_ATTR(, nodesize, btrfs_nodesize_show);
  355. static ssize_t btrfs_sectorsize_show(struct kobject *kobj,
  356. struct kobj_attribute *a, char *buf)
  357. {
  358. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  359. return snprintf(buf, PAGE_SIZE, "%u\n",
  360. fs_info->super_copy->sectorsize);
  361. }
  362. BTRFS_ATTR(, sectorsize, btrfs_sectorsize_show);
  363. static ssize_t btrfs_clone_alignment_show(struct kobject *kobj,
  364. struct kobj_attribute *a, char *buf)
  365. {
  366. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  367. return snprintf(buf, PAGE_SIZE, "%u\n",
  368. fs_info->super_copy->sectorsize);
  369. }
  370. BTRFS_ATTR(, clone_alignment, btrfs_clone_alignment_show);
  371. static ssize_t quota_override_show(struct kobject *kobj,
  372. struct kobj_attribute *a, char *buf)
  373. {
  374. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  375. int quota_override;
  376. quota_override = test_bit(BTRFS_FS_QUOTA_OVERRIDE, &fs_info->flags);
  377. return snprintf(buf, PAGE_SIZE, "%d\n", quota_override);
  378. }
  379. static ssize_t quota_override_store(struct kobject *kobj,
  380. struct kobj_attribute *a,
  381. const char *buf, size_t len)
  382. {
  383. struct btrfs_fs_info *fs_info = to_fs_info(kobj);
  384. unsigned long knob;
  385. int err;
  386. if (!fs_info)
  387. return -EPERM;
  388. if (!capable(CAP_SYS_RESOURCE))
  389. return -EPERM;
  390. err = kstrtoul(buf, 10, &knob);
  391. if (err)
  392. return err;
  393. if (knob > 1)
  394. return -EINVAL;
  395. if (knob)
  396. set_bit(BTRFS_FS_QUOTA_OVERRIDE, &fs_info->flags);
  397. else
  398. clear_bit(BTRFS_FS_QUOTA_OVERRIDE, &fs_info->flags);
  399. return len;
  400. }
  401. BTRFS_ATTR_RW(, quota_override, quota_override_show, quota_override_store);
  402. static const struct attribute *btrfs_attrs[] = {
  403. BTRFS_ATTR_PTR(, label),
  404. BTRFS_ATTR_PTR(, nodesize),
  405. BTRFS_ATTR_PTR(, sectorsize),
  406. BTRFS_ATTR_PTR(, clone_alignment),
  407. BTRFS_ATTR_PTR(, quota_override),
  408. NULL,
  409. };
  410. static void btrfs_release_fsid_kobj(struct kobject *kobj)
  411. {
  412. struct btrfs_fs_devices *fs_devs = to_fs_devs(kobj);
  413. memset(&fs_devs->fsid_kobj, 0, sizeof(struct kobject));
  414. complete(&fs_devs->kobj_unregister);
  415. }
  416. static struct kobj_type btrfs_ktype = {
  417. .sysfs_ops = &kobj_sysfs_ops,
  418. .release = btrfs_release_fsid_kobj,
  419. };
  420. static inline struct btrfs_fs_devices *to_fs_devs(struct kobject *kobj)
  421. {
  422. if (kobj->ktype != &btrfs_ktype)
  423. return NULL;
  424. return container_of(kobj, struct btrfs_fs_devices, fsid_kobj);
  425. }
  426. static inline struct btrfs_fs_info *to_fs_info(struct kobject *kobj)
  427. {
  428. if (kobj->ktype != &btrfs_ktype)
  429. return NULL;
  430. return to_fs_devs(kobj)->fs_info;
  431. }
  432. #define NUM_FEATURE_BITS 64
  433. static char btrfs_unknown_feature_names[3][NUM_FEATURE_BITS][13];
  434. static struct btrfs_feature_attr btrfs_feature_attrs[3][NUM_FEATURE_BITS];
  435. static const u64 supported_feature_masks[3] = {
  436. [FEAT_COMPAT] = BTRFS_FEATURE_COMPAT_SUPP,
  437. [FEAT_COMPAT_RO] = BTRFS_FEATURE_COMPAT_RO_SUPP,
  438. [FEAT_INCOMPAT] = BTRFS_FEATURE_INCOMPAT_SUPP,
  439. };
  440. static int addrm_unknown_feature_attrs(struct btrfs_fs_info *fs_info, bool add)
  441. {
  442. int set;
  443. for (set = 0; set < FEAT_MAX; set++) {
  444. int i;
  445. struct attribute *attrs[2];
  446. struct attribute_group agroup = {
  447. .name = "features",
  448. .attrs = attrs,
  449. };
  450. u64 features = get_features(fs_info, set);
  451. features &= ~supported_feature_masks[set];
  452. if (!features)
  453. continue;
  454. attrs[1] = NULL;
  455. for (i = 0; i < NUM_FEATURE_BITS; i++) {
  456. struct btrfs_feature_attr *fa;
  457. if (!(features & (1ULL << i)))
  458. continue;
  459. fa = &btrfs_feature_attrs[set][i];
  460. attrs[0] = &fa->kobj_attr.attr;
  461. if (add) {
  462. int ret;
  463. ret = sysfs_merge_group(&fs_info->fs_devices->fsid_kobj,
  464. &agroup);
  465. if (ret)
  466. return ret;
  467. } else
  468. sysfs_unmerge_group(&fs_info->fs_devices->fsid_kobj,
  469. &agroup);
  470. }
  471. }
  472. return 0;
  473. }
  474. static void __btrfs_sysfs_remove_fsid(struct btrfs_fs_devices *fs_devs)
  475. {
  476. if (fs_devs->device_dir_kobj) {
  477. kobject_del(fs_devs->device_dir_kobj);
  478. kobject_put(fs_devs->device_dir_kobj);
  479. fs_devs->device_dir_kobj = NULL;
  480. }
  481. if (fs_devs->fsid_kobj.state_initialized) {
  482. kobject_del(&fs_devs->fsid_kobj);
  483. kobject_put(&fs_devs->fsid_kobj);
  484. wait_for_completion(&fs_devs->kobj_unregister);
  485. }
  486. }
  487. /* when fs_devs is NULL it will remove all fsid kobject */
  488. void btrfs_sysfs_remove_fsid(struct btrfs_fs_devices *fs_devs)
  489. {
  490. struct list_head *fs_uuids = btrfs_get_fs_uuids();
  491. if (fs_devs) {
  492. __btrfs_sysfs_remove_fsid(fs_devs);
  493. return;
  494. }
  495. list_for_each_entry(fs_devs, fs_uuids, fs_list) {
  496. __btrfs_sysfs_remove_fsid(fs_devs);
  497. }
  498. }
  499. void btrfs_sysfs_remove_mounted(struct btrfs_fs_info *fs_info)
  500. {
  501. btrfs_reset_fs_info_ptr(fs_info);
  502. if (fs_info->space_info_kobj) {
  503. sysfs_remove_files(fs_info->space_info_kobj, allocation_attrs);
  504. kobject_del(fs_info->space_info_kobj);
  505. kobject_put(fs_info->space_info_kobj);
  506. }
  507. addrm_unknown_feature_attrs(fs_info, false);
  508. sysfs_remove_group(&fs_info->fs_devices->fsid_kobj, &btrfs_feature_attr_group);
  509. sysfs_remove_files(&fs_info->fs_devices->fsid_kobj, btrfs_attrs);
  510. btrfs_sysfs_rm_device_link(fs_info->fs_devices, NULL);
  511. }
  512. const char * const btrfs_feature_set_names[3] = {
  513. [FEAT_COMPAT] = "compat",
  514. [FEAT_COMPAT_RO] = "compat_ro",
  515. [FEAT_INCOMPAT] = "incompat",
  516. };
  517. char *btrfs_printable_features(enum btrfs_feature_set set, u64 flags)
  518. {
  519. size_t bufsize = 4096; /* safe max, 64 names * 64 bytes */
  520. int len = 0;
  521. int i;
  522. char *str;
  523. str = kmalloc(bufsize, GFP_KERNEL);
  524. if (!str)
  525. return str;
  526. for (i = 0; i < ARRAY_SIZE(btrfs_feature_attrs[set]); i++) {
  527. const char *name;
  528. if (!(flags & (1ULL << i)))
  529. continue;
  530. name = btrfs_feature_attrs[set][i].kobj_attr.attr.name;
  531. len += snprintf(str + len, bufsize - len, "%s%s",
  532. len ? "," : "", name);
  533. }
  534. return str;
  535. }
  536. static void init_feature_attrs(void)
  537. {
  538. struct btrfs_feature_attr *fa;
  539. int set, i;
  540. BUILD_BUG_ON(ARRAY_SIZE(btrfs_unknown_feature_names) !=
  541. ARRAY_SIZE(btrfs_feature_attrs));
  542. BUILD_BUG_ON(ARRAY_SIZE(btrfs_unknown_feature_names[0]) !=
  543. ARRAY_SIZE(btrfs_feature_attrs[0]));
  544. memset(btrfs_feature_attrs, 0, sizeof(btrfs_feature_attrs));
  545. memset(btrfs_unknown_feature_names, 0,
  546. sizeof(btrfs_unknown_feature_names));
  547. for (i = 0; btrfs_supported_feature_attrs[i]; i++) {
  548. struct btrfs_feature_attr *sfa;
  549. struct attribute *a = btrfs_supported_feature_attrs[i];
  550. int bit;
  551. sfa = attr_to_btrfs_feature_attr(a);
  552. bit = ilog2(sfa->feature_bit);
  553. fa = &btrfs_feature_attrs[sfa->feature_set][bit];
  554. fa->kobj_attr.attr.name = sfa->kobj_attr.attr.name;
  555. }
  556. for (set = 0; set < FEAT_MAX; set++) {
  557. for (i = 0; i < ARRAY_SIZE(btrfs_feature_attrs[set]); i++) {
  558. char *name = btrfs_unknown_feature_names[set][i];
  559. fa = &btrfs_feature_attrs[set][i];
  560. if (fa->kobj_attr.attr.name)
  561. continue;
  562. snprintf(name, 13, "%s:%u",
  563. btrfs_feature_set_names[set], i);
  564. fa->kobj_attr.attr.name = name;
  565. fa->kobj_attr.attr.mode = S_IRUGO;
  566. fa->feature_set = set;
  567. fa->feature_bit = 1ULL << i;
  568. }
  569. }
  570. }
  571. /* when one_device is NULL, it removes all device links */
  572. int btrfs_sysfs_rm_device_link(struct btrfs_fs_devices *fs_devices,
  573. struct btrfs_device *one_device)
  574. {
  575. struct hd_struct *disk;
  576. struct kobject *disk_kobj;
  577. if (!fs_devices->device_dir_kobj)
  578. return -EINVAL;
  579. if (one_device && one_device->bdev) {
  580. disk = one_device->bdev->bd_part;
  581. disk_kobj = &part_to_dev(disk)->kobj;
  582. sysfs_remove_link(fs_devices->device_dir_kobj,
  583. disk_kobj->name);
  584. }
  585. if (one_device)
  586. return 0;
  587. list_for_each_entry(one_device,
  588. &fs_devices->devices, dev_list) {
  589. if (!one_device->bdev)
  590. continue;
  591. disk = one_device->bdev->bd_part;
  592. disk_kobj = &part_to_dev(disk)->kobj;
  593. sysfs_remove_link(fs_devices->device_dir_kobj,
  594. disk_kobj->name);
  595. }
  596. return 0;
  597. }
  598. int btrfs_sysfs_add_device(struct btrfs_fs_devices *fs_devs)
  599. {
  600. if (!fs_devs->device_dir_kobj)
  601. fs_devs->device_dir_kobj = kobject_create_and_add("devices",
  602. &fs_devs->fsid_kobj);
  603. if (!fs_devs->device_dir_kobj)
  604. return -ENOMEM;
  605. return 0;
  606. }
  607. int btrfs_sysfs_add_device_link(struct btrfs_fs_devices *fs_devices,
  608. struct btrfs_device *one_device)
  609. {
  610. int error = 0;
  611. struct btrfs_device *dev;
  612. list_for_each_entry(dev, &fs_devices->devices, dev_list) {
  613. struct hd_struct *disk;
  614. struct kobject *disk_kobj;
  615. if (!dev->bdev)
  616. continue;
  617. if (one_device && one_device != dev)
  618. continue;
  619. disk = dev->bdev->bd_part;
  620. disk_kobj = &part_to_dev(disk)->kobj;
  621. error = sysfs_create_link(fs_devices->device_dir_kobj,
  622. disk_kobj, disk_kobj->name);
  623. if (error)
  624. break;
  625. }
  626. return error;
  627. }
  628. /* /sys/fs/btrfs/ entry */
  629. static struct kset *btrfs_kset;
  630. /* /sys/kernel/debug/btrfs */
  631. static struct dentry *btrfs_debugfs_root_dentry;
  632. /* Debugging tunables and exported data */
  633. u64 btrfs_debugfs_test;
  634. /*
  635. * Can be called by the device discovery thread.
  636. * And parent can be specified for seed device
  637. */
  638. int btrfs_sysfs_add_fsid(struct btrfs_fs_devices *fs_devs,
  639. struct kobject *parent)
  640. {
  641. int error;
  642. init_completion(&fs_devs->kobj_unregister);
  643. fs_devs->fsid_kobj.kset = btrfs_kset;
  644. error = kobject_init_and_add(&fs_devs->fsid_kobj,
  645. &btrfs_ktype, parent, "%pU", fs_devs->fsid);
  646. return error;
  647. }
  648. int btrfs_sysfs_add_mounted(struct btrfs_fs_info *fs_info)
  649. {
  650. int error;
  651. struct btrfs_fs_devices *fs_devs = fs_info->fs_devices;
  652. struct kobject *fsid_kobj = &fs_devs->fsid_kobj;
  653. btrfs_set_fs_info_ptr(fs_info);
  654. error = btrfs_sysfs_add_device_link(fs_devs, NULL);
  655. if (error)
  656. return error;
  657. error = sysfs_create_files(fsid_kobj, btrfs_attrs);
  658. if (error) {
  659. btrfs_sysfs_rm_device_link(fs_devs, NULL);
  660. return error;
  661. }
  662. error = sysfs_create_group(fsid_kobj,
  663. &btrfs_feature_attr_group);
  664. if (error)
  665. goto failure;
  666. error = addrm_unknown_feature_attrs(fs_info, true);
  667. if (error)
  668. goto failure;
  669. fs_info->space_info_kobj = kobject_create_and_add("allocation",
  670. fsid_kobj);
  671. if (!fs_info->space_info_kobj) {
  672. error = -ENOMEM;
  673. goto failure;
  674. }
  675. error = sysfs_create_files(fs_info->space_info_kobj, allocation_attrs);
  676. if (error)
  677. goto failure;
  678. return 0;
  679. failure:
  680. btrfs_sysfs_remove_mounted(fs_info);
  681. return error;
  682. }
  683. /*
  684. * Change per-fs features in /sys/fs/btrfs/UUID/features to match current
  685. * values in superblock. Call after any changes to incompat/compat_ro flags
  686. */
  687. void btrfs_sysfs_feature_update(struct btrfs_fs_info *fs_info,
  688. u64 bit, enum btrfs_feature_set set)
  689. {
  690. struct btrfs_fs_devices *fs_devs;
  691. struct kobject *fsid_kobj;
  692. u64 features;
  693. int ret;
  694. if (!fs_info)
  695. return;
  696. features = get_features(fs_info, set);
  697. ASSERT(bit & supported_feature_masks[set]);
  698. fs_devs = fs_info->fs_devices;
  699. fsid_kobj = &fs_devs->fsid_kobj;
  700. if (!fsid_kobj->state_initialized)
  701. return;
  702. /*
  703. * FIXME: this is too heavy to update just one value, ideally we'd like
  704. * to use sysfs_update_group but some refactoring is needed first.
  705. */
  706. sysfs_remove_group(fsid_kobj, &btrfs_feature_attr_group);
  707. ret = sysfs_create_group(fsid_kobj, &btrfs_feature_attr_group);
  708. }
  709. static int btrfs_init_debugfs(void)
  710. {
  711. #ifdef CONFIG_DEBUG_FS
  712. btrfs_debugfs_root_dentry = debugfs_create_dir("btrfs", NULL);
  713. if (!btrfs_debugfs_root_dentry)
  714. return -ENOMEM;
  715. /*
  716. * Example code, how to export data through debugfs.
  717. *
  718. * file: /sys/kernel/debug/btrfs/test
  719. * contents of: btrfs_debugfs_test
  720. */
  721. #ifdef CONFIG_BTRFS_DEBUG
  722. debugfs_create_u64("test", S_IRUGO | S_IWUSR, btrfs_debugfs_root_dentry,
  723. &btrfs_debugfs_test);
  724. #endif
  725. #endif
  726. return 0;
  727. }
  728. int __init btrfs_init_sysfs(void)
  729. {
  730. int ret;
  731. btrfs_kset = kset_create_and_add("btrfs", NULL, fs_kobj);
  732. if (!btrfs_kset)
  733. return -ENOMEM;
  734. ret = btrfs_init_debugfs();
  735. if (ret)
  736. goto out1;
  737. init_feature_attrs();
  738. ret = sysfs_create_group(&btrfs_kset->kobj, &btrfs_feature_attr_group);
  739. if (ret)
  740. goto out2;
  741. return 0;
  742. out2:
  743. debugfs_remove_recursive(btrfs_debugfs_root_dentry);
  744. out1:
  745. kset_unregister(btrfs_kset);
  746. return ret;
  747. }
  748. void __cold btrfs_exit_sysfs(void)
  749. {
  750. sysfs_remove_group(&btrfs_kset->kobj, &btrfs_feature_attr_group);
  751. kset_unregister(btrfs_kset);
  752. debugfs_remove_recursive(btrfs_debugfs_root_dentry);
  753. }