btrfs.h 46 KB

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  1. #undef TRACE_SYSTEM
  2. #define TRACE_SYSTEM btrfs
  3. #if !defined(_TRACE_BTRFS_H) || defined(TRACE_HEADER_MULTI_READ)
  4. #define _TRACE_BTRFS_H
  5. #include <linux/writeback.h>
  6. #include <linux/tracepoint.h>
  7. #include <trace/events/mmflags.h>
  8. struct btrfs_root;
  9. struct btrfs_fs_info;
  10. struct btrfs_inode;
  11. struct extent_map;
  12. struct btrfs_file_extent_item;
  13. struct btrfs_ordered_extent;
  14. struct btrfs_delayed_ref_node;
  15. struct btrfs_delayed_tree_ref;
  16. struct btrfs_delayed_data_ref;
  17. struct btrfs_delayed_ref_head;
  18. struct btrfs_block_group_cache;
  19. struct btrfs_free_cluster;
  20. struct map_lookup;
  21. struct extent_buffer;
  22. struct btrfs_work;
  23. struct __btrfs_workqueue;
  24. struct btrfs_qgroup_extent_record;
  25. struct btrfs_qgroup;
  26. struct prelim_ref;
  27. #define show_ref_type(type) \
  28. __print_symbolic(type, \
  29. { BTRFS_TREE_BLOCK_REF_KEY, "TREE_BLOCK_REF" }, \
  30. { BTRFS_EXTENT_DATA_REF_KEY, "EXTENT_DATA_REF" }, \
  31. { BTRFS_EXTENT_REF_V0_KEY, "EXTENT_REF_V0" }, \
  32. { BTRFS_SHARED_BLOCK_REF_KEY, "SHARED_BLOCK_REF" }, \
  33. { BTRFS_SHARED_DATA_REF_KEY, "SHARED_DATA_REF" })
  34. #define __show_root_type(obj) \
  35. __print_symbolic_u64(obj, \
  36. { BTRFS_ROOT_TREE_OBJECTID, "ROOT_TREE" }, \
  37. { BTRFS_EXTENT_TREE_OBJECTID, "EXTENT_TREE" }, \
  38. { BTRFS_CHUNK_TREE_OBJECTID, "CHUNK_TREE" }, \
  39. { BTRFS_DEV_TREE_OBJECTID, "DEV_TREE" }, \
  40. { BTRFS_FS_TREE_OBJECTID, "FS_TREE" }, \
  41. { BTRFS_ROOT_TREE_DIR_OBJECTID, "ROOT_TREE_DIR" }, \
  42. { BTRFS_CSUM_TREE_OBJECTID, "CSUM_TREE" }, \
  43. { BTRFS_TREE_LOG_OBJECTID, "TREE_LOG" }, \
  44. { BTRFS_QUOTA_TREE_OBJECTID, "QUOTA_TREE" }, \
  45. { BTRFS_TREE_RELOC_OBJECTID, "TREE_RELOC" }, \
  46. { BTRFS_UUID_TREE_OBJECTID, "UUID_TREE" }, \
  47. { BTRFS_FREE_SPACE_TREE_OBJECTID, "FREE_SPACE_TREE" }, \
  48. { BTRFS_DATA_RELOC_TREE_OBJECTID, "DATA_RELOC_TREE" })
  49. #define show_root_type(obj) \
  50. obj, ((obj >= BTRFS_DATA_RELOC_TREE_OBJECTID) || \
  51. (obj >= BTRFS_ROOT_TREE_OBJECTID && \
  52. obj <= BTRFS_QUOTA_TREE_OBJECTID)) ? __show_root_type(obj) : "-"
  53. #define show_fi_type(type) \
  54. __print_symbolic(type, \
  55. { BTRFS_FILE_EXTENT_INLINE, "INLINE" }, \
  56. { BTRFS_FILE_EXTENT_REG, "REG" }, \
  57. { BTRFS_FILE_EXTENT_PREALLOC, "PREALLOC"})
  58. #define BTRFS_GROUP_FLAGS \
  59. { BTRFS_BLOCK_GROUP_DATA, "DATA"}, \
  60. { BTRFS_BLOCK_GROUP_SYSTEM, "SYSTEM"}, \
  61. { BTRFS_BLOCK_GROUP_METADATA, "METADATA"}, \
  62. { BTRFS_BLOCK_GROUP_RAID0, "RAID0"}, \
  63. { BTRFS_BLOCK_GROUP_RAID1, "RAID1"}, \
  64. { BTRFS_BLOCK_GROUP_DUP, "DUP"}, \
  65. { BTRFS_BLOCK_GROUP_RAID10, "RAID10"}, \
  66. { BTRFS_BLOCK_GROUP_RAID5, "RAID5"}, \
  67. { BTRFS_BLOCK_GROUP_RAID6, "RAID6"}
  68. #define BTRFS_FSID_SIZE 16
  69. #define TP_STRUCT__entry_fsid __array(u8, fsid, BTRFS_FSID_SIZE)
  70. #define TP_fast_assign_fsid(fs_info) \
  71. memcpy(__entry->fsid, fs_info->fsid, BTRFS_FSID_SIZE)
  72. #define TP_STRUCT__entry_btrfs(args...) \
  73. TP_STRUCT__entry( \
  74. TP_STRUCT__entry_fsid \
  75. args)
  76. #define TP_fast_assign_btrfs(fs_info, args...) \
  77. TP_fast_assign( \
  78. TP_fast_assign_fsid(fs_info); \
  79. args)
  80. #define TP_printk_btrfs(fmt, args...) \
  81. TP_printk("%pU: " fmt, __entry->fsid, args)
  82. TRACE_EVENT(btrfs_transaction_commit,
  83. TP_PROTO(const struct btrfs_root *root),
  84. TP_ARGS(root),
  85. TP_STRUCT__entry_btrfs(
  86. __field( u64, generation )
  87. __field( u64, root_objectid )
  88. ),
  89. TP_fast_assign_btrfs(root->fs_info,
  90. __entry->generation = root->fs_info->generation;
  91. __entry->root_objectid = root->root_key.objectid;
  92. ),
  93. TP_printk_btrfs("root = %llu(%s), gen = %llu",
  94. show_root_type(__entry->root_objectid),
  95. (unsigned long long)__entry->generation)
  96. );
  97. DECLARE_EVENT_CLASS(btrfs__inode,
  98. TP_PROTO(const struct inode *inode),
  99. TP_ARGS(inode),
  100. TP_STRUCT__entry_btrfs(
  101. __field( ino_t, ino )
  102. __field( blkcnt_t, blocks )
  103. __field( u64, disk_i_size )
  104. __field( u64, generation )
  105. __field( u64, last_trans )
  106. __field( u64, logged_trans )
  107. __field( u64, root_objectid )
  108. ),
  109. TP_fast_assign_btrfs(btrfs_sb(inode->i_sb),
  110. __entry->ino = inode->i_ino;
  111. __entry->blocks = inode->i_blocks;
  112. __entry->disk_i_size = BTRFS_I(inode)->disk_i_size;
  113. __entry->generation = BTRFS_I(inode)->generation;
  114. __entry->last_trans = BTRFS_I(inode)->last_trans;
  115. __entry->logged_trans = BTRFS_I(inode)->logged_trans;
  116. __entry->root_objectid =
  117. BTRFS_I(inode)->root->root_key.objectid;
  118. ),
  119. TP_printk_btrfs("root=%llu(%s) gen=%llu ino=%lu blocks=%llu "
  120. "disk_i_size=%llu last_trans=%llu logged_trans=%llu",
  121. show_root_type(__entry->root_objectid),
  122. (unsigned long long)__entry->generation,
  123. (unsigned long)__entry->ino,
  124. (unsigned long long)__entry->blocks,
  125. (unsigned long long)__entry->disk_i_size,
  126. (unsigned long long)__entry->last_trans,
  127. (unsigned long long)__entry->logged_trans)
  128. );
  129. DEFINE_EVENT(btrfs__inode, btrfs_inode_new,
  130. TP_PROTO(const struct inode *inode),
  131. TP_ARGS(inode)
  132. );
  133. DEFINE_EVENT(btrfs__inode, btrfs_inode_request,
  134. TP_PROTO(const struct inode *inode),
  135. TP_ARGS(inode)
  136. );
  137. DEFINE_EVENT(btrfs__inode, btrfs_inode_evict,
  138. TP_PROTO(const struct inode *inode),
  139. TP_ARGS(inode)
  140. );
  141. #define __show_map_type(type) \
  142. __print_symbolic_u64(type, \
  143. { EXTENT_MAP_LAST_BYTE, "LAST_BYTE" }, \
  144. { EXTENT_MAP_HOLE, "HOLE" }, \
  145. { EXTENT_MAP_INLINE, "INLINE" }, \
  146. { EXTENT_MAP_DELALLOC, "DELALLOC" })
  147. #define show_map_type(type) \
  148. type, (type >= EXTENT_MAP_LAST_BYTE) ? "-" : __show_map_type(type)
  149. #define show_map_flags(flag) \
  150. __print_flags(flag, "|", \
  151. { (1 << EXTENT_FLAG_PINNED), "PINNED" },\
  152. { (1 << EXTENT_FLAG_COMPRESSED), "COMPRESSED" },\
  153. { (1 << EXTENT_FLAG_VACANCY), "VACANCY" },\
  154. { (1 << EXTENT_FLAG_PREALLOC), "PREALLOC" },\
  155. { (1 << EXTENT_FLAG_LOGGING), "LOGGING" },\
  156. { (1 << EXTENT_FLAG_FILLING), "FILLING" },\
  157. { (1 << EXTENT_FLAG_FS_MAPPING), "FS_MAPPING" })
  158. TRACE_EVENT_CONDITION(btrfs_get_extent,
  159. TP_PROTO(const struct btrfs_root *root, const struct btrfs_inode *inode,
  160. const struct extent_map *map),
  161. TP_ARGS(root, inode, map),
  162. TP_CONDITION(map),
  163. TP_STRUCT__entry_btrfs(
  164. __field( u64, root_objectid )
  165. __field( u64, ino )
  166. __field( u64, start )
  167. __field( u64, len )
  168. __field( u64, orig_start )
  169. __field( u64, block_start )
  170. __field( u64, block_len )
  171. __field( unsigned long, flags )
  172. __field( int, refs )
  173. __field( unsigned int, compress_type )
  174. ),
  175. TP_fast_assign_btrfs(root->fs_info,
  176. __entry->root_objectid = root->root_key.objectid;
  177. __entry->ino = btrfs_ino(inode);
  178. __entry->start = map->start;
  179. __entry->len = map->len;
  180. __entry->orig_start = map->orig_start;
  181. __entry->block_start = map->block_start;
  182. __entry->block_len = map->block_len;
  183. __entry->flags = map->flags;
  184. __entry->refs = refcount_read(&map->refs);
  185. __entry->compress_type = map->compress_type;
  186. ),
  187. TP_printk_btrfs("root=%llu(%s) ino=%llu start=%llu len=%llu "
  188. "orig_start=%llu block_start=%llu(%s) "
  189. "block_len=%llu flags=%s refs=%u "
  190. "compress_type=%u",
  191. show_root_type(__entry->root_objectid),
  192. (unsigned long long)__entry->ino,
  193. (unsigned long long)__entry->start,
  194. (unsigned long long)__entry->len,
  195. (unsigned long long)__entry->orig_start,
  196. show_map_type(__entry->block_start),
  197. (unsigned long long)__entry->block_len,
  198. show_map_flags(__entry->flags),
  199. __entry->refs, __entry->compress_type)
  200. );
  201. /* file extent item */
  202. DECLARE_EVENT_CLASS(btrfs__file_extent_item_regular,
  203. TP_PROTO(struct btrfs_inode *bi, struct extent_buffer *l,
  204. struct btrfs_file_extent_item *fi, u64 start),
  205. TP_ARGS(bi, l, fi, start),
  206. TP_STRUCT__entry_btrfs(
  207. __field( u64, root_obj )
  208. __field( u64, ino )
  209. __field( loff_t, isize )
  210. __field( u64, disk_isize )
  211. __field( u64, num_bytes )
  212. __field( u64, ram_bytes )
  213. __field( u64, disk_bytenr )
  214. __field( u64, disk_num_bytes )
  215. __field( u64, extent_offset )
  216. __field( u8, extent_type )
  217. __field( u8, compression )
  218. __field( u64, extent_start )
  219. __field( u64, extent_end )
  220. ),
  221. TP_fast_assign_btrfs(bi->root->fs_info,
  222. __entry->root_obj = bi->root->objectid;
  223. __entry->ino = btrfs_ino(bi);
  224. __entry->isize = bi->vfs_inode.i_size;
  225. __entry->disk_isize = bi->disk_i_size;
  226. __entry->num_bytes = btrfs_file_extent_num_bytes(l, fi);
  227. __entry->ram_bytes = btrfs_file_extent_ram_bytes(l, fi);
  228. __entry->disk_bytenr = btrfs_file_extent_disk_bytenr(l, fi);
  229. __entry->disk_num_bytes = btrfs_file_extent_disk_num_bytes(l, fi);
  230. __entry->extent_offset = btrfs_file_extent_offset(l, fi);
  231. __entry->extent_type = btrfs_file_extent_type(l, fi);
  232. __entry->compression = btrfs_file_extent_compression(l, fi);
  233. __entry->extent_start = start;
  234. __entry->extent_end = (start + __entry->num_bytes);
  235. ),
  236. TP_printk_btrfs(
  237. "root=%llu(%s) inode=%llu size=%llu disk_isize=%llu "
  238. "file extent range=[%llu %llu] "
  239. "(num_bytes=%llu ram_bytes=%llu disk_bytenr=%llu "
  240. "disk_num_bytes=%llu extent_offset=%llu type=%s "
  241. "compression=%u",
  242. show_root_type(__entry->root_obj), __entry->ino,
  243. __entry->isize,
  244. __entry->disk_isize, __entry->extent_start,
  245. __entry->extent_end, __entry->num_bytes, __entry->ram_bytes,
  246. __entry->disk_bytenr, __entry->disk_num_bytes,
  247. __entry->extent_offset, show_fi_type(__entry->extent_type),
  248. __entry->compression)
  249. );
  250. DECLARE_EVENT_CLASS(
  251. btrfs__file_extent_item_inline,
  252. TP_PROTO(struct btrfs_inode *bi, struct extent_buffer *l,
  253. struct btrfs_file_extent_item *fi, int slot, u64 start),
  254. TP_ARGS(bi, l, fi, slot, start),
  255. TP_STRUCT__entry_btrfs(
  256. __field( u64, root_obj )
  257. __field( u64, ino )
  258. __field( loff_t, isize )
  259. __field( u64, disk_isize )
  260. __field( u8, extent_type )
  261. __field( u8, compression )
  262. __field( u64, extent_start )
  263. __field( u64, extent_end )
  264. ),
  265. TP_fast_assign_btrfs(
  266. bi->root->fs_info,
  267. __entry->root_obj = bi->root->objectid;
  268. __entry->ino = btrfs_ino(bi);
  269. __entry->isize = bi->vfs_inode.i_size;
  270. __entry->disk_isize = bi->disk_i_size;
  271. __entry->extent_type = btrfs_file_extent_type(l, fi);
  272. __entry->compression = btrfs_file_extent_compression(l, fi);
  273. __entry->extent_start = start;
  274. __entry->extent_end = (start + btrfs_file_extent_inline_len(l, slot, fi));
  275. ),
  276. TP_printk_btrfs(
  277. "root=%llu(%s) inode=%llu size=%llu disk_isize=%llu "
  278. "file extent range=[%llu %llu] "
  279. "extent_type=%s compression=%u",
  280. show_root_type(__entry->root_obj), __entry->ino, __entry->isize,
  281. __entry->disk_isize, __entry->extent_start,
  282. __entry->extent_end, show_fi_type(__entry->extent_type),
  283. __entry->compression)
  284. );
  285. DEFINE_EVENT(
  286. btrfs__file_extent_item_regular, btrfs_get_extent_show_fi_regular,
  287. TP_PROTO(struct btrfs_inode *bi, struct extent_buffer *l,
  288. struct btrfs_file_extent_item *fi, u64 start),
  289. TP_ARGS(bi, l, fi, start)
  290. );
  291. DEFINE_EVENT(
  292. btrfs__file_extent_item_regular, btrfs_truncate_show_fi_regular,
  293. TP_PROTO(struct btrfs_inode *bi, struct extent_buffer *l,
  294. struct btrfs_file_extent_item *fi, u64 start),
  295. TP_ARGS(bi, l, fi, start)
  296. );
  297. DEFINE_EVENT(
  298. btrfs__file_extent_item_inline, btrfs_get_extent_show_fi_inline,
  299. TP_PROTO(struct btrfs_inode *bi, struct extent_buffer *l,
  300. struct btrfs_file_extent_item *fi, int slot, u64 start),
  301. TP_ARGS(bi, l, fi, slot, start)
  302. );
  303. DEFINE_EVENT(
  304. btrfs__file_extent_item_inline, btrfs_truncate_show_fi_inline,
  305. TP_PROTO(struct btrfs_inode *bi, struct extent_buffer *l,
  306. struct btrfs_file_extent_item *fi, int slot, u64 start),
  307. TP_ARGS(bi, l, fi, slot, start)
  308. );
  309. #define show_ordered_flags(flags) \
  310. __print_flags(flags, "|", \
  311. { (1 << BTRFS_ORDERED_IO_DONE), "IO_DONE" }, \
  312. { (1 << BTRFS_ORDERED_COMPLETE), "COMPLETE" }, \
  313. { (1 << BTRFS_ORDERED_NOCOW), "NOCOW" }, \
  314. { (1 << BTRFS_ORDERED_COMPRESSED), "COMPRESSED" }, \
  315. { (1 << BTRFS_ORDERED_PREALLOC), "PREALLOC" }, \
  316. { (1 << BTRFS_ORDERED_DIRECT), "DIRECT" }, \
  317. { (1 << BTRFS_ORDERED_IOERR), "IOERR" }, \
  318. { (1 << BTRFS_ORDERED_UPDATED_ISIZE), "UPDATED_ISIZE" }, \
  319. { (1 << BTRFS_ORDERED_LOGGED_CSUM), "LOGGED_CSUM" }, \
  320. { (1 << BTRFS_ORDERED_TRUNCATED), "TRUNCATED" })
  321. DECLARE_EVENT_CLASS(btrfs__ordered_extent,
  322. TP_PROTO(const struct inode *inode,
  323. const struct btrfs_ordered_extent *ordered),
  324. TP_ARGS(inode, ordered),
  325. TP_STRUCT__entry_btrfs(
  326. __field( ino_t, ino )
  327. __field( u64, file_offset )
  328. __field( u64, start )
  329. __field( u64, len )
  330. __field( u64, disk_len )
  331. __field( u64, bytes_left )
  332. __field( unsigned long, flags )
  333. __field( int, compress_type )
  334. __field( int, refs )
  335. __field( u64, root_objectid )
  336. __field( u64, truncated_len )
  337. ),
  338. TP_fast_assign_btrfs(btrfs_sb(inode->i_sb),
  339. __entry->ino = inode->i_ino;
  340. __entry->file_offset = ordered->file_offset;
  341. __entry->start = ordered->start;
  342. __entry->len = ordered->len;
  343. __entry->disk_len = ordered->disk_len;
  344. __entry->bytes_left = ordered->bytes_left;
  345. __entry->flags = ordered->flags;
  346. __entry->compress_type = ordered->compress_type;
  347. __entry->refs = refcount_read(&ordered->refs);
  348. __entry->root_objectid =
  349. BTRFS_I(inode)->root->root_key.objectid;
  350. __entry->truncated_len = ordered->truncated_len;
  351. ),
  352. TP_printk_btrfs("root=%llu(%s) ino=%llu file_offset=%llu "
  353. "start=%llu len=%llu disk_len=%llu "
  354. "truncated_len=%llu "
  355. "bytes_left=%llu flags=%s compress_type=%d "
  356. "refs=%d",
  357. show_root_type(__entry->root_objectid),
  358. (unsigned long long)__entry->ino,
  359. (unsigned long long)__entry->file_offset,
  360. (unsigned long long)__entry->start,
  361. (unsigned long long)__entry->len,
  362. (unsigned long long)__entry->disk_len,
  363. (unsigned long long)__entry->truncated_len,
  364. (unsigned long long)__entry->bytes_left,
  365. show_ordered_flags(__entry->flags),
  366. __entry->compress_type, __entry->refs)
  367. );
  368. DEFINE_EVENT(btrfs__ordered_extent, btrfs_ordered_extent_add,
  369. TP_PROTO(const struct inode *inode,
  370. const struct btrfs_ordered_extent *ordered),
  371. TP_ARGS(inode, ordered)
  372. );
  373. DEFINE_EVENT(btrfs__ordered_extent, btrfs_ordered_extent_remove,
  374. TP_PROTO(const struct inode *inode,
  375. const struct btrfs_ordered_extent *ordered),
  376. TP_ARGS(inode, ordered)
  377. );
  378. DEFINE_EVENT(btrfs__ordered_extent, btrfs_ordered_extent_start,
  379. TP_PROTO(const struct inode *inode,
  380. const struct btrfs_ordered_extent *ordered),
  381. TP_ARGS(inode, ordered)
  382. );
  383. DEFINE_EVENT(btrfs__ordered_extent, btrfs_ordered_extent_put,
  384. TP_PROTO(const struct inode *inode,
  385. const struct btrfs_ordered_extent *ordered),
  386. TP_ARGS(inode, ordered)
  387. );
  388. DECLARE_EVENT_CLASS(btrfs__writepage,
  389. TP_PROTO(const struct page *page, const struct inode *inode,
  390. const struct writeback_control *wbc),
  391. TP_ARGS(page, inode, wbc),
  392. TP_STRUCT__entry_btrfs(
  393. __field( ino_t, ino )
  394. __field( pgoff_t, index )
  395. __field( long, nr_to_write )
  396. __field( long, pages_skipped )
  397. __field( loff_t, range_start )
  398. __field( loff_t, range_end )
  399. __field( char, for_kupdate )
  400. __field( char, for_reclaim )
  401. __field( char, range_cyclic )
  402. __field( pgoff_t, writeback_index )
  403. __field( u64, root_objectid )
  404. ),
  405. TP_fast_assign_btrfs(btrfs_sb(inode->i_sb),
  406. __entry->ino = inode->i_ino;
  407. __entry->index = page->index;
  408. __entry->nr_to_write = wbc->nr_to_write;
  409. __entry->pages_skipped = wbc->pages_skipped;
  410. __entry->range_start = wbc->range_start;
  411. __entry->range_end = wbc->range_end;
  412. __entry->for_kupdate = wbc->for_kupdate;
  413. __entry->for_reclaim = wbc->for_reclaim;
  414. __entry->range_cyclic = wbc->range_cyclic;
  415. __entry->writeback_index = inode->i_mapping->writeback_index;
  416. __entry->root_objectid =
  417. BTRFS_I(inode)->root->root_key.objectid;
  418. ),
  419. TP_printk_btrfs("root=%llu(%s) ino=%lu page_index=%lu "
  420. "nr_to_write=%ld pages_skipped=%ld range_start=%llu "
  421. "range_end=%llu for_kupdate=%d "
  422. "for_reclaim=%d range_cyclic=%d writeback_index=%lu",
  423. show_root_type(__entry->root_objectid),
  424. (unsigned long)__entry->ino, __entry->index,
  425. __entry->nr_to_write, __entry->pages_skipped,
  426. __entry->range_start, __entry->range_end,
  427. __entry->for_kupdate,
  428. __entry->for_reclaim, __entry->range_cyclic,
  429. (unsigned long)__entry->writeback_index)
  430. );
  431. DEFINE_EVENT(btrfs__writepage, __extent_writepage,
  432. TP_PROTO(const struct page *page, const struct inode *inode,
  433. const struct writeback_control *wbc),
  434. TP_ARGS(page, inode, wbc)
  435. );
  436. TRACE_EVENT(btrfs_writepage_end_io_hook,
  437. TP_PROTO(const struct page *page, u64 start, u64 end, int uptodate),
  438. TP_ARGS(page, start, end, uptodate),
  439. TP_STRUCT__entry_btrfs(
  440. __field( ino_t, ino )
  441. __field( pgoff_t, index )
  442. __field( u64, start )
  443. __field( u64, end )
  444. __field( int, uptodate )
  445. __field( u64, root_objectid )
  446. ),
  447. TP_fast_assign_btrfs(btrfs_sb(page->mapping->host->i_sb),
  448. __entry->ino = page->mapping->host->i_ino;
  449. __entry->index = page->index;
  450. __entry->start = start;
  451. __entry->end = end;
  452. __entry->uptodate = uptodate;
  453. __entry->root_objectid =
  454. BTRFS_I(page->mapping->host)->root->root_key.objectid;
  455. ),
  456. TP_printk_btrfs("root=%llu(%s) ino=%lu page_index=%lu start=%llu "
  457. "end=%llu uptodate=%d",
  458. show_root_type(__entry->root_objectid),
  459. (unsigned long)__entry->ino, (unsigned long)__entry->index,
  460. (unsigned long long)__entry->start,
  461. (unsigned long long)__entry->end, __entry->uptodate)
  462. );
  463. TRACE_EVENT(btrfs_sync_file,
  464. TP_PROTO(const struct file *file, int datasync),
  465. TP_ARGS(file, datasync),
  466. TP_STRUCT__entry_btrfs(
  467. __field( ino_t, ino )
  468. __field( ino_t, parent )
  469. __field( int, datasync )
  470. __field( u64, root_objectid )
  471. ),
  472. TP_fast_assign(
  473. const struct dentry *dentry = file->f_path.dentry;
  474. const struct inode *inode = d_inode(dentry);
  475. TP_fast_assign_fsid(btrfs_sb(file->f_path.dentry->d_sb));
  476. __entry->ino = inode->i_ino;
  477. __entry->parent = d_inode(dentry->d_parent)->i_ino;
  478. __entry->datasync = datasync;
  479. __entry->root_objectid =
  480. BTRFS_I(inode)->root->root_key.objectid;
  481. ),
  482. TP_printk_btrfs("root=%llu(%s) ino=%ld parent=%ld datasync=%d",
  483. show_root_type(__entry->root_objectid),
  484. (unsigned long)__entry->ino, (unsigned long)__entry->parent,
  485. __entry->datasync)
  486. );
  487. TRACE_EVENT(btrfs_sync_fs,
  488. TP_PROTO(const struct btrfs_fs_info *fs_info, int wait),
  489. TP_ARGS(fs_info, wait),
  490. TP_STRUCT__entry_btrfs(
  491. __field( int, wait )
  492. ),
  493. TP_fast_assign_btrfs(fs_info,
  494. __entry->wait = wait;
  495. ),
  496. TP_printk_btrfs("wait = %d", __entry->wait)
  497. );
  498. TRACE_EVENT(btrfs_add_block_group,
  499. TP_PROTO(const struct btrfs_fs_info *fs_info,
  500. const struct btrfs_block_group_cache *block_group, int create),
  501. TP_ARGS(fs_info, block_group, create),
  502. TP_STRUCT__entry(
  503. __array( u8, fsid, BTRFS_FSID_SIZE )
  504. __field( u64, offset )
  505. __field( u64, size )
  506. __field( u64, flags )
  507. __field( u64, bytes_used )
  508. __field( u64, bytes_super )
  509. __field( int, create )
  510. ),
  511. TP_fast_assign(
  512. memcpy(__entry->fsid, fs_info->fsid, BTRFS_FSID_SIZE);
  513. __entry->offset = block_group->key.objectid;
  514. __entry->size = block_group->key.offset;
  515. __entry->flags = block_group->flags;
  516. __entry->bytes_used =
  517. btrfs_block_group_used(&block_group->item);
  518. __entry->bytes_super = block_group->bytes_super;
  519. __entry->create = create;
  520. ),
  521. TP_printk("%pU: block_group offset=%llu size=%llu "
  522. "flags=%llu(%s) bytes_used=%llu bytes_super=%llu "
  523. "create=%d", __entry->fsid,
  524. (unsigned long long)__entry->offset,
  525. (unsigned long long)__entry->size,
  526. (unsigned long long)__entry->flags,
  527. __print_flags((unsigned long)__entry->flags, "|",
  528. BTRFS_GROUP_FLAGS),
  529. (unsigned long long)__entry->bytes_used,
  530. (unsigned long long)__entry->bytes_super, __entry->create)
  531. );
  532. #define show_ref_action(action) \
  533. __print_symbolic(action, \
  534. { BTRFS_ADD_DELAYED_REF, "ADD_DELAYED_REF" }, \
  535. { BTRFS_DROP_DELAYED_REF, "DROP_DELAYED_REF" }, \
  536. { BTRFS_ADD_DELAYED_EXTENT, "ADD_DELAYED_EXTENT" }, \
  537. { BTRFS_UPDATE_DELAYED_HEAD, "UPDATE_DELAYED_HEAD" })
  538. DECLARE_EVENT_CLASS(btrfs_delayed_tree_ref,
  539. TP_PROTO(const struct btrfs_fs_info *fs_info,
  540. const struct btrfs_delayed_ref_node *ref,
  541. const struct btrfs_delayed_tree_ref *full_ref,
  542. int action),
  543. TP_ARGS(fs_info, ref, full_ref, action),
  544. TP_STRUCT__entry_btrfs(
  545. __field( u64, bytenr )
  546. __field( u64, num_bytes )
  547. __field( int, action )
  548. __field( u64, parent )
  549. __field( u64, ref_root )
  550. __field( int, level )
  551. __field( int, type )
  552. __field( u64, seq )
  553. ),
  554. TP_fast_assign_btrfs(fs_info,
  555. __entry->bytenr = ref->bytenr;
  556. __entry->num_bytes = ref->num_bytes;
  557. __entry->action = action;
  558. __entry->parent = full_ref->parent;
  559. __entry->ref_root = full_ref->root;
  560. __entry->level = full_ref->level;
  561. __entry->type = ref->type;
  562. __entry->seq = ref->seq;
  563. ),
  564. TP_printk_btrfs("bytenr=%llu num_bytes=%llu action=%s "
  565. "parent=%llu(%s) ref_root=%llu(%s) level=%d "
  566. "type=%s seq=%llu",
  567. (unsigned long long)__entry->bytenr,
  568. (unsigned long long)__entry->num_bytes,
  569. show_ref_action(__entry->action),
  570. show_root_type(__entry->parent),
  571. show_root_type(__entry->ref_root),
  572. __entry->level, show_ref_type(__entry->type),
  573. (unsigned long long)__entry->seq)
  574. );
  575. DEFINE_EVENT(btrfs_delayed_tree_ref, add_delayed_tree_ref,
  576. TP_PROTO(const struct btrfs_fs_info *fs_info,
  577. const struct btrfs_delayed_ref_node *ref,
  578. const struct btrfs_delayed_tree_ref *full_ref,
  579. int action),
  580. TP_ARGS(fs_info, ref, full_ref, action)
  581. );
  582. DEFINE_EVENT(btrfs_delayed_tree_ref, run_delayed_tree_ref,
  583. TP_PROTO(const struct btrfs_fs_info *fs_info,
  584. const struct btrfs_delayed_ref_node *ref,
  585. const struct btrfs_delayed_tree_ref *full_ref,
  586. int action),
  587. TP_ARGS(fs_info, ref, full_ref, action)
  588. );
  589. DECLARE_EVENT_CLASS(btrfs_delayed_data_ref,
  590. TP_PROTO(const struct btrfs_fs_info *fs_info,
  591. const struct btrfs_delayed_ref_node *ref,
  592. const struct btrfs_delayed_data_ref *full_ref,
  593. int action),
  594. TP_ARGS(fs_info, ref, full_ref, action),
  595. TP_STRUCT__entry_btrfs(
  596. __field( u64, bytenr )
  597. __field( u64, num_bytes )
  598. __field( int, action )
  599. __field( u64, parent )
  600. __field( u64, ref_root )
  601. __field( u64, owner )
  602. __field( u64, offset )
  603. __field( int, type )
  604. __field( u64, seq )
  605. ),
  606. TP_fast_assign_btrfs(fs_info,
  607. __entry->bytenr = ref->bytenr;
  608. __entry->num_bytes = ref->num_bytes;
  609. __entry->action = action;
  610. __entry->parent = full_ref->parent;
  611. __entry->ref_root = full_ref->root;
  612. __entry->owner = full_ref->objectid;
  613. __entry->offset = full_ref->offset;
  614. __entry->type = ref->type;
  615. __entry->seq = ref->seq;
  616. ),
  617. TP_printk_btrfs("bytenr=%llu num_bytes=%llu action=%s "
  618. "parent=%llu(%s) ref_root=%llu(%s) owner=%llu "
  619. "offset=%llu type=%s seq=%llu",
  620. (unsigned long long)__entry->bytenr,
  621. (unsigned long long)__entry->num_bytes,
  622. show_ref_action(__entry->action),
  623. show_root_type(__entry->parent),
  624. show_root_type(__entry->ref_root),
  625. (unsigned long long)__entry->owner,
  626. (unsigned long long)__entry->offset,
  627. show_ref_type(__entry->type),
  628. (unsigned long long)__entry->seq)
  629. );
  630. DEFINE_EVENT(btrfs_delayed_data_ref, add_delayed_data_ref,
  631. TP_PROTO(const struct btrfs_fs_info *fs_info,
  632. const struct btrfs_delayed_ref_node *ref,
  633. const struct btrfs_delayed_data_ref *full_ref,
  634. int action),
  635. TP_ARGS(fs_info, ref, full_ref, action)
  636. );
  637. DEFINE_EVENT(btrfs_delayed_data_ref, run_delayed_data_ref,
  638. TP_PROTO(const struct btrfs_fs_info *fs_info,
  639. const struct btrfs_delayed_ref_node *ref,
  640. const struct btrfs_delayed_data_ref *full_ref,
  641. int action),
  642. TP_ARGS(fs_info, ref, full_ref, action)
  643. );
  644. DECLARE_EVENT_CLASS(btrfs_delayed_ref_head,
  645. TP_PROTO(const struct btrfs_fs_info *fs_info,
  646. const struct btrfs_delayed_ref_node *ref,
  647. const struct btrfs_delayed_ref_head *head_ref,
  648. int action),
  649. TP_ARGS(fs_info, ref, head_ref, action),
  650. TP_STRUCT__entry_btrfs(
  651. __field( u64, bytenr )
  652. __field( u64, num_bytes )
  653. __field( int, action )
  654. __field( int, is_data )
  655. ),
  656. TP_fast_assign_btrfs(fs_info,
  657. __entry->bytenr = ref->bytenr;
  658. __entry->num_bytes = ref->num_bytes;
  659. __entry->action = action;
  660. __entry->is_data = head_ref->is_data;
  661. ),
  662. TP_printk_btrfs("bytenr=%llu num_bytes=%llu action=%s is_data=%d",
  663. (unsigned long long)__entry->bytenr,
  664. (unsigned long long)__entry->num_bytes,
  665. show_ref_action(__entry->action),
  666. __entry->is_data)
  667. );
  668. DEFINE_EVENT(btrfs_delayed_ref_head, add_delayed_ref_head,
  669. TP_PROTO(const struct btrfs_fs_info *fs_info,
  670. const struct btrfs_delayed_ref_node *ref,
  671. const struct btrfs_delayed_ref_head *head_ref,
  672. int action),
  673. TP_ARGS(fs_info, ref, head_ref, action)
  674. );
  675. DEFINE_EVENT(btrfs_delayed_ref_head, run_delayed_ref_head,
  676. TP_PROTO(const struct btrfs_fs_info *fs_info,
  677. const struct btrfs_delayed_ref_node *ref,
  678. const struct btrfs_delayed_ref_head *head_ref,
  679. int action),
  680. TP_ARGS(fs_info, ref, head_ref, action)
  681. );
  682. #define show_chunk_type(type) \
  683. __print_flags(type, "|", \
  684. { BTRFS_BLOCK_GROUP_DATA, "DATA" }, \
  685. { BTRFS_BLOCK_GROUP_SYSTEM, "SYSTEM"}, \
  686. { BTRFS_BLOCK_GROUP_METADATA, "METADATA"}, \
  687. { BTRFS_BLOCK_GROUP_RAID0, "RAID0" }, \
  688. { BTRFS_BLOCK_GROUP_RAID1, "RAID1" }, \
  689. { BTRFS_BLOCK_GROUP_DUP, "DUP" }, \
  690. { BTRFS_BLOCK_GROUP_RAID10, "RAID10"}, \
  691. { BTRFS_BLOCK_GROUP_RAID5, "RAID5" }, \
  692. { BTRFS_BLOCK_GROUP_RAID6, "RAID6" })
  693. DECLARE_EVENT_CLASS(btrfs__chunk,
  694. TP_PROTO(const struct btrfs_fs_info *fs_info,
  695. const struct map_lookup *map, u64 offset, u64 size),
  696. TP_ARGS(fs_info, map, offset, size),
  697. TP_STRUCT__entry_btrfs(
  698. __field( int, num_stripes )
  699. __field( u64, type )
  700. __field( int, sub_stripes )
  701. __field( u64, offset )
  702. __field( u64, size )
  703. __field( u64, root_objectid )
  704. ),
  705. TP_fast_assign_btrfs(fs_info,
  706. __entry->num_stripes = map->num_stripes;
  707. __entry->type = map->type;
  708. __entry->sub_stripes = map->sub_stripes;
  709. __entry->offset = offset;
  710. __entry->size = size;
  711. __entry->root_objectid = fs_info->chunk_root->root_key.objectid;
  712. ),
  713. TP_printk_btrfs("root=%llu(%s) offset=%llu size=%llu "
  714. "num_stripes=%d sub_stripes=%d type=%s",
  715. show_root_type(__entry->root_objectid),
  716. (unsigned long long)__entry->offset,
  717. (unsigned long long)__entry->size,
  718. __entry->num_stripes, __entry->sub_stripes,
  719. show_chunk_type(__entry->type))
  720. );
  721. DEFINE_EVENT(btrfs__chunk, btrfs_chunk_alloc,
  722. TP_PROTO(const struct btrfs_fs_info *fs_info,
  723. const struct map_lookup *map, u64 offset, u64 size),
  724. TP_ARGS(fs_info, map, offset, size)
  725. );
  726. DEFINE_EVENT(btrfs__chunk, btrfs_chunk_free,
  727. TP_PROTO(const struct btrfs_fs_info *fs_info,
  728. const struct map_lookup *map, u64 offset, u64 size),
  729. TP_ARGS(fs_info, map, offset, size)
  730. );
  731. TRACE_EVENT(btrfs_cow_block,
  732. TP_PROTO(const struct btrfs_root *root, const struct extent_buffer *buf,
  733. const struct extent_buffer *cow),
  734. TP_ARGS(root, buf, cow),
  735. TP_STRUCT__entry_btrfs(
  736. __field( u64, root_objectid )
  737. __field( u64, buf_start )
  738. __field( int, refs )
  739. __field( u64, cow_start )
  740. __field( int, buf_level )
  741. __field( int, cow_level )
  742. ),
  743. TP_fast_assign_btrfs(root->fs_info,
  744. __entry->root_objectid = root->root_key.objectid;
  745. __entry->buf_start = buf->start;
  746. __entry->refs = atomic_read(&buf->refs);
  747. __entry->cow_start = cow->start;
  748. __entry->buf_level = btrfs_header_level(buf);
  749. __entry->cow_level = btrfs_header_level(cow);
  750. ),
  751. TP_printk_btrfs("root=%llu(%s) refs=%d orig_buf=%llu "
  752. "(orig_level=%d) cow_buf=%llu (cow_level=%d)",
  753. show_root_type(__entry->root_objectid),
  754. __entry->refs,
  755. (unsigned long long)__entry->buf_start,
  756. __entry->buf_level,
  757. (unsigned long long)__entry->cow_start,
  758. __entry->cow_level)
  759. );
  760. TRACE_EVENT(btrfs_space_reservation,
  761. TP_PROTO(const struct btrfs_fs_info *fs_info, char *type, u64 val,
  762. u64 bytes, int reserve),
  763. TP_ARGS(fs_info, type, val, bytes, reserve),
  764. TP_STRUCT__entry_btrfs(
  765. __string( type, type )
  766. __field( u64, val )
  767. __field( u64, bytes )
  768. __field( int, reserve )
  769. ),
  770. TP_fast_assign_btrfs(fs_info,
  771. __assign_str(type, type);
  772. __entry->val = val;
  773. __entry->bytes = bytes;
  774. __entry->reserve = reserve;
  775. ),
  776. TP_printk_btrfs("%s: %Lu %s %Lu", __get_str(type), __entry->val,
  777. __entry->reserve ? "reserve" : "release",
  778. __entry->bytes)
  779. );
  780. #define show_flush_action(action) \
  781. __print_symbolic(action, \
  782. { BTRFS_RESERVE_NO_FLUSH, "BTRFS_RESERVE_NO_FLUSH"}, \
  783. { BTRFS_RESERVE_FLUSH_LIMIT, "BTRFS_RESERVE_FLUSH_LIMIT"}, \
  784. { BTRFS_RESERVE_FLUSH_ALL, "BTRFS_RESERVE_FLUSH_ALL"})
  785. TRACE_EVENT(btrfs_trigger_flush,
  786. TP_PROTO(const struct btrfs_fs_info *fs_info, u64 flags, u64 bytes,
  787. int flush, char *reason),
  788. TP_ARGS(fs_info, flags, bytes, flush, reason),
  789. TP_STRUCT__entry(
  790. __array( u8, fsid, BTRFS_FSID_SIZE )
  791. __field( u64, flags )
  792. __field( u64, bytes )
  793. __field( int, flush )
  794. __string( reason, reason )
  795. ),
  796. TP_fast_assign(
  797. memcpy(__entry->fsid, fs_info->fsid, BTRFS_FSID_SIZE);
  798. __entry->flags = flags;
  799. __entry->bytes = bytes;
  800. __entry->flush = flush;
  801. __assign_str(reason, reason)
  802. ),
  803. TP_printk("%pU: %s: flush=%d(%s) flags=%llu(%s) bytes=%llu",
  804. __entry->fsid, __get_str(reason), __entry->flush,
  805. show_flush_action(__entry->flush),
  806. (unsigned long long)__entry->flags,
  807. __print_flags((unsigned long)__entry->flags, "|",
  808. BTRFS_GROUP_FLAGS),
  809. (unsigned long long)__entry->bytes)
  810. );
  811. #define show_flush_state(state) \
  812. __print_symbolic(state, \
  813. { FLUSH_DELAYED_ITEMS_NR, "FLUSH_DELAYED_ITEMS_NR"}, \
  814. { FLUSH_DELAYED_ITEMS, "FLUSH_DELAYED_ITEMS"}, \
  815. { FLUSH_DELALLOC, "FLUSH_DELALLOC"}, \
  816. { FLUSH_DELALLOC_WAIT, "FLUSH_DELALLOC_WAIT"}, \
  817. { ALLOC_CHUNK, "ALLOC_CHUNK"}, \
  818. { COMMIT_TRANS, "COMMIT_TRANS"})
  819. TRACE_EVENT(btrfs_flush_space,
  820. TP_PROTO(const struct btrfs_fs_info *fs_info, u64 flags, u64 num_bytes,
  821. int state, int ret),
  822. TP_ARGS(fs_info, flags, num_bytes, state, ret),
  823. TP_STRUCT__entry(
  824. __array( u8, fsid, BTRFS_FSID_SIZE )
  825. __field( u64, flags )
  826. __field( u64, num_bytes )
  827. __field( int, state )
  828. __field( int, ret )
  829. ),
  830. TP_fast_assign(
  831. memcpy(__entry->fsid, fs_info->fsid, BTRFS_FSID_SIZE);
  832. __entry->flags = flags;
  833. __entry->num_bytes = num_bytes;
  834. __entry->state = state;
  835. __entry->ret = ret;
  836. ),
  837. TP_printk("%pU: state=%d(%s) flags=%llu(%s) num_bytes=%llu ret=%d",
  838. __entry->fsid, __entry->state,
  839. show_flush_state(__entry->state),
  840. (unsigned long long)__entry->flags,
  841. __print_flags((unsigned long)__entry->flags, "|",
  842. BTRFS_GROUP_FLAGS),
  843. (unsigned long long)__entry->num_bytes, __entry->ret)
  844. );
  845. DECLARE_EVENT_CLASS(btrfs__reserved_extent,
  846. TP_PROTO(const struct btrfs_fs_info *fs_info, u64 start, u64 len),
  847. TP_ARGS(fs_info, start, len),
  848. TP_STRUCT__entry_btrfs(
  849. __field( u64, start )
  850. __field( u64, len )
  851. ),
  852. TP_fast_assign_btrfs(fs_info,
  853. __entry->start = start;
  854. __entry->len = len;
  855. ),
  856. TP_printk_btrfs("root=%llu(%s) start=%llu len=%llu",
  857. show_root_type(BTRFS_EXTENT_TREE_OBJECTID),
  858. (unsigned long long)__entry->start,
  859. (unsigned long long)__entry->len)
  860. );
  861. DEFINE_EVENT(btrfs__reserved_extent, btrfs_reserved_extent_alloc,
  862. TP_PROTO(const struct btrfs_fs_info *fs_info, u64 start, u64 len),
  863. TP_ARGS(fs_info, start, len)
  864. );
  865. DEFINE_EVENT(btrfs__reserved_extent, btrfs_reserved_extent_free,
  866. TP_PROTO(const struct btrfs_fs_info *fs_info, u64 start, u64 len),
  867. TP_ARGS(fs_info, start, len)
  868. );
  869. TRACE_EVENT(find_free_extent,
  870. TP_PROTO(const struct btrfs_fs_info *fs_info, u64 num_bytes,
  871. u64 empty_size, u64 data),
  872. TP_ARGS(fs_info, num_bytes, empty_size, data),
  873. TP_STRUCT__entry_btrfs(
  874. __field( u64, num_bytes )
  875. __field( u64, empty_size )
  876. __field( u64, data )
  877. ),
  878. TP_fast_assign_btrfs(fs_info,
  879. __entry->num_bytes = num_bytes;
  880. __entry->empty_size = empty_size;
  881. __entry->data = data;
  882. ),
  883. TP_printk_btrfs("root=%Lu(%s) len=%Lu empty_size=%Lu flags=%Lu(%s)",
  884. show_root_type(BTRFS_EXTENT_TREE_OBJECTID),
  885. __entry->num_bytes, __entry->empty_size, __entry->data,
  886. __print_flags((unsigned long)__entry->data, "|",
  887. BTRFS_GROUP_FLAGS))
  888. );
  889. DECLARE_EVENT_CLASS(btrfs__reserve_extent,
  890. TP_PROTO(const struct btrfs_fs_info *fs_info,
  891. const struct btrfs_block_group_cache *block_group, u64 start,
  892. u64 len),
  893. TP_ARGS(fs_info, block_group, start, len),
  894. TP_STRUCT__entry_btrfs(
  895. __field( u64, bg_objectid )
  896. __field( u64, flags )
  897. __field( u64, start )
  898. __field( u64, len )
  899. ),
  900. TP_fast_assign_btrfs(fs_info,
  901. __entry->bg_objectid = block_group->key.objectid;
  902. __entry->flags = block_group->flags;
  903. __entry->start = start;
  904. __entry->len = len;
  905. ),
  906. TP_printk_btrfs("root=%Lu(%s) block_group=%Lu flags=%Lu(%s) "
  907. "start=%Lu len=%Lu",
  908. show_root_type(BTRFS_EXTENT_TREE_OBJECTID),
  909. __entry->bg_objectid,
  910. __entry->flags, __print_flags((unsigned long)__entry->flags,
  911. "|", BTRFS_GROUP_FLAGS),
  912. __entry->start, __entry->len)
  913. );
  914. DEFINE_EVENT(btrfs__reserve_extent, btrfs_reserve_extent,
  915. TP_PROTO(const struct btrfs_fs_info *fs_info,
  916. const struct btrfs_block_group_cache *block_group, u64 start,
  917. u64 len),
  918. TP_ARGS(fs_info, block_group, start, len)
  919. );
  920. DEFINE_EVENT(btrfs__reserve_extent, btrfs_reserve_extent_cluster,
  921. TP_PROTO(const struct btrfs_fs_info *fs_info,
  922. const struct btrfs_block_group_cache *block_group, u64 start,
  923. u64 len),
  924. TP_ARGS(fs_info, block_group, start, len)
  925. );
  926. TRACE_EVENT(btrfs_find_cluster,
  927. TP_PROTO(const struct btrfs_block_group_cache *block_group, u64 start,
  928. u64 bytes, u64 empty_size, u64 min_bytes),
  929. TP_ARGS(block_group, start, bytes, empty_size, min_bytes),
  930. TP_STRUCT__entry_btrfs(
  931. __field( u64, bg_objectid )
  932. __field( u64, flags )
  933. __field( u64, start )
  934. __field( u64, bytes )
  935. __field( u64, empty_size )
  936. __field( u64, min_bytes )
  937. ),
  938. TP_fast_assign_btrfs(block_group->fs_info,
  939. __entry->bg_objectid = block_group->key.objectid;
  940. __entry->flags = block_group->flags;
  941. __entry->start = start;
  942. __entry->bytes = bytes;
  943. __entry->empty_size = empty_size;
  944. __entry->min_bytes = min_bytes;
  945. ),
  946. TP_printk_btrfs("block_group=%Lu flags=%Lu(%s) start=%Lu len=%Lu "
  947. "empty_size=%Lu min_bytes=%Lu", __entry->bg_objectid,
  948. __entry->flags,
  949. __print_flags((unsigned long)__entry->flags, "|",
  950. BTRFS_GROUP_FLAGS), __entry->start,
  951. __entry->bytes, __entry->empty_size, __entry->min_bytes)
  952. );
  953. TRACE_EVENT(btrfs_failed_cluster_setup,
  954. TP_PROTO(const struct btrfs_block_group_cache *block_group),
  955. TP_ARGS(block_group),
  956. TP_STRUCT__entry_btrfs(
  957. __field( u64, bg_objectid )
  958. ),
  959. TP_fast_assign_btrfs(block_group->fs_info,
  960. __entry->bg_objectid = block_group->key.objectid;
  961. ),
  962. TP_printk_btrfs("block_group=%Lu", __entry->bg_objectid)
  963. );
  964. TRACE_EVENT(btrfs_setup_cluster,
  965. TP_PROTO(const struct btrfs_block_group_cache *block_group,
  966. const struct btrfs_free_cluster *cluster,
  967. u64 size, int bitmap),
  968. TP_ARGS(block_group, cluster, size, bitmap),
  969. TP_STRUCT__entry_btrfs(
  970. __field( u64, bg_objectid )
  971. __field( u64, flags )
  972. __field( u64, start )
  973. __field( u64, max_size )
  974. __field( u64, size )
  975. __field( int, bitmap )
  976. ),
  977. TP_fast_assign_btrfs(block_group->fs_info,
  978. __entry->bg_objectid = block_group->key.objectid;
  979. __entry->flags = block_group->flags;
  980. __entry->start = cluster->window_start;
  981. __entry->max_size = cluster->max_size;
  982. __entry->size = size;
  983. __entry->bitmap = bitmap;
  984. ),
  985. TP_printk_btrfs("block_group=%Lu flags=%Lu(%s) window_start=%Lu "
  986. "size=%Lu max_size=%Lu bitmap=%d",
  987. __entry->bg_objectid,
  988. __entry->flags,
  989. __print_flags((unsigned long)__entry->flags, "|",
  990. BTRFS_GROUP_FLAGS), __entry->start,
  991. __entry->size, __entry->max_size, __entry->bitmap)
  992. );
  993. struct extent_state;
  994. TRACE_EVENT(alloc_extent_state,
  995. TP_PROTO(const struct extent_state *state,
  996. gfp_t mask, unsigned long IP),
  997. TP_ARGS(state, mask, IP),
  998. TP_STRUCT__entry(
  999. __field(const struct extent_state *, state)
  1000. __field(gfp_t, mask)
  1001. __field(unsigned long, ip)
  1002. ),
  1003. TP_fast_assign(
  1004. __entry->state = state,
  1005. __entry->mask = mask,
  1006. __entry->ip = IP
  1007. ),
  1008. TP_printk("state=%p mask=%s caller=%pS", __entry->state,
  1009. show_gfp_flags(__entry->mask), (const void *)__entry->ip)
  1010. );
  1011. TRACE_EVENT(free_extent_state,
  1012. TP_PROTO(const struct extent_state *state, unsigned long IP),
  1013. TP_ARGS(state, IP),
  1014. TP_STRUCT__entry(
  1015. __field(const struct extent_state *, state)
  1016. __field(unsigned long, ip)
  1017. ),
  1018. TP_fast_assign(
  1019. __entry->state = state,
  1020. __entry->ip = IP
  1021. ),
  1022. TP_printk("state=%p caller=%pS", __entry->state,
  1023. (const void *)__entry->ip)
  1024. );
  1025. DECLARE_EVENT_CLASS(btrfs__work,
  1026. TP_PROTO(const struct btrfs_work *work),
  1027. TP_ARGS(work),
  1028. TP_STRUCT__entry_btrfs(
  1029. __field( const void *, work )
  1030. __field( const void *, wq )
  1031. __field( const void *, func )
  1032. __field( const void *, ordered_func )
  1033. __field( const void *, ordered_free )
  1034. __field( const void *, normal_work )
  1035. ),
  1036. TP_fast_assign_btrfs(btrfs_work_owner(work),
  1037. __entry->work = work;
  1038. __entry->wq = work->wq;
  1039. __entry->func = work->func;
  1040. __entry->ordered_func = work->ordered_func;
  1041. __entry->ordered_free = work->ordered_free;
  1042. __entry->normal_work = &work->normal_work;
  1043. ),
  1044. TP_printk_btrfs("work=%p (normal_work=%p) wq=%p func=%pf ordered_func=%p "
  1045. "ordered_free=%p",
  1046. __entry->work, __entry->normal_work, __entry->wq,
  1047. __entry->func, __entry->ordered_func, __entry->ordered_free)
  1048. );
  1049. /*
  1050. * For situiations when the work is freed, we pass fs_info and a tag that that
  1051. * matches address of the work structure so it can be paired with the
  1052. * scheduling event.
  1053. */
  1054. DECLARE_EVENT_CLASS(btrfs__work__done,
  1055. TP_PROTO(const struct btrfs_fs_info *fs_info, const void *wtag),
  1056. TP_ARGS(fs_info, wtag),
  1057. TP_STRUCT__entry_btrfs(
  1058. __field( const void *, wtag )
  1059. ),
  1060. TP_fast_assign_btrfs(fs_info,
  1061. __entry->wtag = wtag;
  1062. ),
  1063. TP_printk_btrfs("work->%p", __entry->wtag)
  1064. );
  1065. DEFINE_EVENT(btrfs__work, btrfs_work_queued,
  1066. TP_PROTO(const struct btrfs_work *work),
  1067. TP_ARGS(work)
  1068. );
  1069. DEFINE_EVENT(btrfs__work, btrfs_work_sched,
  1070. TP_PROTO(const struct btrfs_work *work),
  1071. TP_ARGS(work)
  1072. );
  1073. DEFINE_EVENT(btrfs__work__done, btrfs_all_work_done,
  1074. TP_PROTO(const struct btrfs_fs_info *fs_info, const void *wtag),
  1075. TP_ARGS(fs_info, wtag)
  1076. );
  1077. DEFINE_EVENT(btrfs__work, btrfs_ordered_sched,
  1078. TP_PROTO(const struct btrfs_work *work),
  1079. TP_ARGS(work)
  1080. );
  1081. DECLARE_EVENT_CLASS(btrfs__workqueue,
  1082. TP_PROTO(const struct __btrfs_workqueue *wq,
  1083. const char *name, int high),
  1084. TP_ARGS(wq, name, high),
  1085. TP_STRUCT__entry_btrfs(
  1086. __field( const void *, wq )
  1087. __string( name, name )
  1088. __field( int , high )
  1089. ),
  1090. TP_fast_assign_btrfs(btrfs_workqueue_owner(wq),
  1091. __entry->wq = wq;
  1092. __assign_str(name, name);
  1093. __entry->high = high;
  1094. ),
  1095. TP_printk_btrfs("name=%s%s wq=%p", __get_str(name),
  1096. __print_flags(__entry->high, "",
  1097. {(WQ_HIGHPRI), "-high"}),
  1098. __entry->wq)
  1099. );
  1100. DEFINE_EVENT(btrfs__workqueue, btrfs_workqueue_alloc,
  1101. TP_PROTO(const struct __btrfs_workqueue *wq,
  1102. const char *name, int high),
  1103. TP_ARGS(wq, name, high)
  1104. );
  1105. DECLARE_EVENT_CLASS(btrfs__workqueue_done,
  1106. TP_PROTO(const struct __btrfs_workqueue *wq),
  1107. TP_ARGS(wq),
  1108. TP_STRUCT__entry_btrfs(
  1109. __field( const void *, wq )
  1110. ),
  1111. TP_fast_assign_btrfs(btrfs_workqueue_owner(wq),
  1112. __entry->wq = wq;
  1113. ),
  1114. TP_printk_btrfs("wq=%p", __entry->wq)
  1115. );
  1116. DEFINE_EVENT(btrfs__workqueue_done, btrfs_workqueue_destroy,
  1117. TP_PROTO(const struct __btrfs_workqueue *wq),
  1118. TP_ARGS(wq)
  1119. );
  1120. #define BTRFS_QGROUP_OPERATIONS \
  1121. { QGROUP_RESERVE, "reserve" }, \
  1122. { QGROUP_RELEASE, "release" }, \
  1123. { QGROUP_FREE, "free" }
  1124. DECLARE_EVENT_CLASS(btrfs__qgroup_rsv_data,
  1125. TP_PROTO(const struct inode *inode, u64 start, u64 len,
  1126. u64 reserved, int op),
  1127. TP_ARGS(inode, start, len, reserved, op),
  1128. TP_STRUCT__entry_btrfs(
  1129. __field( u64, rootid )
  1130. __field( unsigned long, ino )
  1131. __field( u64, start )
  1132. __field( u64, len )
  1133. __field( u64, reserved )
  1134. __field( int, op )
  1135. ),
  1136. TP_fast_assign_btrfs(btrfs_sb(inode->i_sb),
  1137. __entry->rootid = BTRFS_I(inode)->root->objectid;
  1138. __entry->ino = inode->i_ino;
  1139. __entry->start = start;
  1140. __entry->len = len;
  1141. __entry->reserved = reserved;
  1142. __entry->op = op;
  1143. ),
  1144. TP_printk_btrfs("root=%llu ino=%lu start=%llu len=%llu reserved=%llu op=%s",
  1145. __entry->rootid, __entry->ino, __entry->start, __entry->len,
  1146. __entry->reserved,
  1147. __print_flags((unsigned long)__entry->op, "",
  1148. BTRFS_QGROUP_OPERATIONS)
  1149. )
  1150. );
  1151. DEFINE_EVENT(btrfs__qgroup_rsv_data, btrfs_qgroup_reserve_data,
  1152. TP_PROTO(const struct inode *inode, u64 start, u64 len,
  1153. u64 reserved, int op),
  1154. TP_ARGS(inode, start, len, reserved, op)
  1155. );
  1156. DEFINE_EVENT(btrfs__qgroup_rsv_data, btrfs_qgroup_release_data,
  1157. TP_PROTO(const struct inode *inode, u64 start, u64 len,
  1158. u64 reserved, int op),
  1159. TP_ARGS(inode, start, len, reserved, op)
  1160. );
  1161. DECLARE_EVENT_CLASS(btrfs__qgroup_delayed_ref,
  1162. TP_PROTO(const struct btrfs_fs_info *fs_info,
  1163. u64 ref_root, u64 reserved),
  1164. TP_ARGS(fs_info, ref_root, reserved),
  1165. TP_STRUCT__entry_btrfs(
  1166. __field( u64, ref_root )
  1167. __field( u64, reserved )
  1168. ),
  1169. TP_fast_assign_btrfs(fs_info,
  1170. __entry->ref_root = ref_root;
  1171. __entry->reserved = reserved;
  1172. ),
  1173. TP_printk_btrfs("root=%llu reserved=%llu op=free",
  1174. __entry->ref_root, __entry->reserved)
  1175. );
  1176. DEFINE_EVENT(btrfs__qgroup_delayed_ref, btrfs_qgroup_free_delayed_ref,
  1177. TP_PROTO(const struct btrfs_fs_info *fs_info,
  1178. u64 ref_root, u64 reserved),
  1179. TP_ARGS(fs_info, ref_root, reserved)
  1180. );
  1181. DECLARE_EVENT_CLASS(btrfs_qgroup_extent,
  1182. TP_PROTO(const struct btrfs_fs_info *fs_info,
  1183. const struct btrfs_qgroup_extent_record *rec),
  1184. TP_ARGS(fs_info, rec),
  1185. TP_STRUCT__entry_btrfs(
  1186. __field( u64, bytenr )
  1187. __field( u64, num_bytes )
  1188. ),
  1189. TP_fast_assign_btrfs(fs_info,
  1190. __entry->bytenr = rec->bytenr,
  1191. __entry->num_bytes = rec->num_bytes;
  1192. ),
  1193. TP_printk_btrfs("bytenr=%llu num_bytes=%llu",
  1194. (unsigned long long)__entry->bytenr,
  1195. (unsigned long long)__entry->num_bytes)
  1196. );
  1197. DEFINE_EVENT(btrfs_qgroup_extent, btrfs_qgroup_account_extents,
  1198. TP_PROTO(const struct btrfs_fs_info *fs_info,
  1199. const struct btrfs_qgroup_extent_record *rec),
  1200. TP_ARGS(fs_info, rec)
  1201. );
  1202. DEFINE_EVENT(btrfs_qgroup_extent, btrfs_qgroup_trace_extent,
  1203. TP_PROTO(const struct btrfs_fs_info *fs_info,
  1204. const struct btrfs_qgroup_extent_record *rec),
  1205. TP_ARGS(fs_info, rec)
  1206. );
  1207. TRACE_EVENT(btrfs_qgroup_account_extent,
  1208. TP_PROTO(const struct btrfs_fs_info *fs_info, u64 bytenr,
  1209. u64 num_bytes, u64 nr_old_roots, u64 nr_new_roots),
  1210. TP_ARGS(fs_info, bytenr, num_bytes, nr_old_roots, nr_new_roots),
  1211. TP_STRUCT__entry_btrfs(
  1212. __field( u64, bytenr )
  1213. __field( u64, num_bytes )
  1214. __field( u64, nr_old_roots )
  1215. __field( u64, nr_new_roots )
  1216. ),
  1217. TP_fast_assign_btrfs(fs_info,
  1218. __entry->bytenr = bytenr;
  1219. __entry->num_bytes = num_bytes;
  1220. __entry->nr_old_roots = nr_old_roots;
  1221. __entry->nr_new_roots = nr_new_roots;
  1222. ),
  1223. TP_printk_btrfs("bytenr=%llu num_bytes=%llu nr_old_roots=%llu "
  1224. "nr_new_roots=%llu",
  1225. __entry->bytenr,
  1226. __entry->num_bytes,
  1227. __entry->nr_old_roots,
  1228. __entry->nr_new_roots)
  1229. );
  1230. TRACE_EVENT(qgroup_update_counters,
  1231. TP_PROTO(const struct btrfs_fs_info *fs_info, u64 qgid,
  1232. u64 cur_old_count, u64 cur_new_count),
  1233. TP_ARGS(fs_info, qgid, cur_old_count, cur_new_count),
  1234. TP_STRUCT__entry_btrfs(
  1235. __field( u64, qgid )
  1236. __field( u64, cur_old_count )
  1237. __field( u64, cur_new_count )
  1238. ),
  1239. TP_fast_assign_btrfs(fs_info,
  1240. __entry->qgid = qgid;
  1241. __entry->cur_old_count = cur_old_count;
  1242. __entry->cur_new_count = cur_new_count;
  1243. ),
  1244. TP_printk_btrfs("qgid=%llu cur_old_count=%llu cur_new_count=%llu",
  1245. __entry->qgid,
  1246. __entry->cur_old_count,
  1247. __entry->cur_new_count)
  1248. );
  1249. TRACE_EVENT(qgroup_update_reserve,
  1250. TP_PROTO(struct btrfs_fs_info *fs_info, struct btrfs_qgroup *qgroup,
  1251. s64 diff),
  1252. TP_ARGS(fs_info, qgroup, diff),
  1253. TP_STRUCT__entry_btrfs(
  1254. __field( u64, qgid )
  1255. __field( u64, cur_reserved )
  1256. __field( s64, diff )
  1257. ),
  1258. TP_fast_assign_btrfs(fs_info,
  1259. __entry->qgid = qgroup->qgroupid;
  1260. __entry->cur_reserved = qgroup->reserved;
  1261. __entry->diff = diff;
  1262. ),
  1263. TP_printk_btrfs("qgid=%llu cur_reserved=%llu diff=%lld",
  1264. __entry->qgid, __entry->cur_reserved, __entry->diff)
  1265. );
  1266. TRACE_EVENT(qgroup_meta_reserve,
  1267. TP_PROTO(struct btrfs_root *root, s64 diff),
  1268. TP_ARGS(root, diff),
  1269. TP_STRUCT__entry_btrfs(
  1270. __field( u64, refroot )
  1271. __field( s64, diff )
  1272. ),
  1273. TP_fast_assign_btrfs(root->fs_info,
  1274. __entry->refroot = root->objectid;
  1275. __entry->diff = diff;
  1276. ),
  1277. TP_printk_btrfs("refroot=%llu(%s) diff=%lld",
  1278. show_root_type(__entry->refroot), __entry->diff)
  1279. );
  1280. DECLARE_EVENT_CLASS(btrfs__prelim_ref,
  1281. TP_PROTO(const struct btrfs_fs_info *fs_info,
  1282. const struct prelim_ref *oldref,
  1283. const struct prelim_ref *newref, u64 tree_size),
  1284. TP_ARGS(fs_info, newref, oldref, tree_size),
  1285. TP_STRUCT__entry_btrfs(
  1286. __field( u64, root_id )
  1287. __field( u64, objectid )
  1288. __field( u8, type )
  1289. __field( u64, offset )
  1290. __field( int, level )
  1291. __field( int, old_count )
  1292. __field( u64, parent )
  1293. __field( u64, bytenr )
  1294. __field( int, mod_count )
  1295. __field( u64, tree_size )
  1296. ),
  1297. TP_fast_assign_btrfs(fs_info,
  1298. __entry->root_id = oldref->root_id;
  1299. __entry->objectid = oldref->key_for_search.objectid;
  1300. __entry->type = oldref->key_for_search.type;
  1301. __entry->offset = oldref->key_for_search.offset;
  1302. __entry->level = oldref->level;
  1303. __entry->old_count = oldref->count;
  1304. __entry->parent = oldref->parent;
  1305. __entry->bytenr = oldref->wanted_disk_byte;
  1306. __entry->mod_count = newref ? newref->count : 0;
  1307. __entry->tree_size = tree_size;
  1308. ),
  1309. TP_printk_btrfs("root_id=%llu key=[%llu,%u,%llu] level=%d count=[%d+%d=%d] parent=%llu wanted_disk_byte=%llu nodes=%llu",
  1310. (unsigned long long)__entry->root_id,
  1311. (unsigned long long)__entry->objectid, __entry->type,
  1312. (unsigned long long)__entry->offset, __entry->level,
  1313. __entry->old_count, __entry->mod_count,
  1314. __entry->old_count + __entry->mod_count,
  1315. (unsigned long long)__entry->parent,
  1316. (unsigned long long)__entry->bytenr,
  1317. (unsigned long long)__entry->tree_size)
  1318. );
  1319. DEFINE_EVENT(btrfs__prelim_ref, btrfs_prelim_ref_merge,
  1320. TP_PROTO(const struct btrfs_fs_info *fs_info,
  1321. const struct prelim_ref *oldref,
  1322. const struct prelim_ref *newref, u64 tree_size),
  1323. TP_ARGS(fs_info, oldref, newref, tree_size)
  1324. );
  1325. DEFINE_EVENT(btrfs__prelim_ref, btrfs_prelim_ref_insert,
  1326. TP_PROTO(const struct btrfs_fs_info *fs_info,
  1327. const struct prelim_ref *oldref,
  1328. const struct prelim_ref *newref, u64 tree_size),
  1329. TP_ARGS(fs_info, oldref, newref, tree_size)
  1330. );
  1331. #endif /* _TRACE_BTRFS_H */
  1332. /* This part must be outside protection */
  1333. #include <trace/define_trace.h>