journal.c 124 KB

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  1. /*
  2. ** Write ahead logging implementation copyright Chris Mason 2000
  3. **
  4. ** The background commits make this code very interelated, and
  5. ** overly complex. I need to rethink things a bit....The major players:
  6. **
  7. ** journal_begin -- call with the number of blocks you expect to log.
  8. ** If the current transaction is too
  9. ** old, it will block until the current transaction is
  10. ** finished, and then start a new one.
  11. ** Usually, your transaction will get joined in with
  12. ** previous ones for speed.
  13. **
  14. ** journal_join -- same as journal_begin, but won't block on the current
  15. ** transaction regardless of age. Don't ever call
  16. ** this. Ever. There are only two places it should be
  17. ** called from, and they are both inside this file.
  18. **
  19. ** journal_mark_dirty -- adds blocks into this transaction. clears any flags
  20. ** that might make them get sent to disk
  21. ** and then marks them BH_JDirty. Puts the buffer head
  22. ** into the current transaction hash.
  23. **
  24. ** journal_end -- if the current transaction is batchable, it does nothing
  25. ** otherwise, it could do an async/synchronous commit, or
  26. ** a full flush of all log and real blocks in the
  27. ** transaction.
  28. **
  29. ** flush_old_commits -- if the current transaction is too old, it is ended and
  30. ** commit blocks are sent to disk. Forces commit blocks
  31. ** to disk for all backgrounded commits that have been
  32. ** around too long.
  33. ** -- Note, if you call this as an immediate flush from
  34. ** from within kupdate, it will ignore the immediate flag
  35. */
  36. #include <linux/time.h>
  37. #include <linux/semaphore.h>
  38. #include <linux/vmalloc.h>
  39. #include <linux/reiserfs_fs.h>
  40. #include <linux/kernel.h>
  41. #include <linux/errno.h>
  42. #include <linux/fcntl.h>
  43. #include <linux/stat.h>
  44. #include <linux/string.h>
  45. #include <linux/smp_lock.h>
  46. #include <linux/buffer_head.h>
  47. #include <linux/workqueue.h>
  48. #include <linux/writeback.h>
  49. #include <linux/blkdev.h>
  50. #include <linux/backing-dev.h>
  51. #include <linux/uaccess.h>
  52. #include <linux/slab.h>
  53. #include <asm/system.h>
  54. /* gets a struct reiserfs_journal_list * from a list head */
  55. #define JOURNAL_LIST_ENTRY(h) (list_entry((h), struct reiserfs_journal_list, \
  56. j_list))
  57. #define JOURNAL_WORK_ENTRY(h) (list_entry((h), struct reiserfs_journal_list, \
  58. j_working_list))
  59. /* the number of mounted filesystems. This is used to decide when to
  60. ** start and kill the commit workqueue
  61. */
  62. static int reiserfs_mounted_fs_count;
  63. static struct workqueue_struct *commit_wq;
  64. #define JOURNAL_TRANS_HALF 1018 /* must be correct to keep the desc and commit
  65. structs at 4k */
  66. #define BUFNR 64 /*read ahead */
  67. /* cnode stat bits. Move these into reiserfs_fs.h */
  68. #define BLOCK_FREED 2 /* this block was freed, and can't be written. */
  69. #define BLOCK_FREED_HOLDER 3 /* this block was freed during this transaction, and can't be written */
  70. #define BLOCK_NEEDS_FLUSH 4 /* used in flush_journal_list */
  71. #define BLOCK_DIRTIED 5
  72. /* journal list state bits */
  73. #define LIST_TOUCHED 1
  74. #define LIST_DIRTY 2
  75. #define LIST_COMMIT_PENDING 4 /* someone will commit this list */
  76. /* flags for do_journal_end */
  77. #define FLUSH_ALL 1 /* flush commit and real blocks */
  78. #define COMMIT_NOW 2 /* end and commit this transaction */
  79. #define WAIT 4 /* wait for the log blocks to hit the disk */
  80. static int do_journal_end(struct reiserfs_transaction_handle *,
  81. struct super_block *, unsigned long nblocks,
  82. int flags);
  83. static int flush_journal_list(struct super_block *s,
  84. struct reiserfs_journal_list *jl, int flushall);
  85. static int flush_commit_list(struct super_block *s,
  86. struct reiserfs_journal_list *jl, int flushall);
  87. static int can_dirty(struct reiserfs_journal_cnode *cn);
  88. static int journal_join(struct reiserfs_transaction_handle *th,
  89. struct super_block *sb, unsigned long nblocks);
  90. static int release_journal_dev(struct super_block *super,
  91. struct reiserfs_journal *journal);
  92. static int dirty_one_transaction(struct super_block *s,
  93. struct reiserfs_journal_list *jl);
  94. static void flush_async_commits(struct work_struct *work);
  95. static void queue_log_writer(struct super_block *s);
  96. /* values for join in do_journal_begin_r */
  97. enum {
  98. JBEGIN_REG = 0, /* regular journal begin */
  99. JBEGIN_JOIN = 1, /* join the running transaction if at all possible */
  100. JBEGIN_ABORT = 2, /* called from cleanup code, ignores aborted flag */
  101. };
  102. static int do_journal_begin_r(struct reiserfs_transaction_handle *th,
  103. struct super_block *sb,
  104. unsigned long nblocks, int join);
  105. static void init_journal_hash(struct super_block *sb)
  106. {
  107. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  108. memset(journal->j_hash_table, 0,
  109. JOURNAL_HASH_SIZE * sizeof(struct reiserfs_journal_cnode *));
  110. }
  111. /*
  112. ** clears BH_Dirty and sticks the buffer on the clean list. Called because I can't allow refile_buffer to
  113. ** make schedule happen after I've freed a block. Look at remove_from_transaction and journal_mark_freed for
  114. ** more details.
  115. */
  116. static int reiserfs_clean_and_file_buffer(struct buffer_head *bh)
  117. {
  118. if (bh) {
  119. clear_buffer_dirty(bh);
  120. clear_buffer_journal_test(bh);
  121. }
  122. return 0;
  123. }
  124. static void disable_barrier(struct super_block *s)
  125. {
  126. REISERFS_SB(s)->s_mount_opt &= ~(1 << REISERFS_BARRIER_FLUSH);
  127. printk("reiserfs: disabling flush barriers on %s\n",
  128. reiserfs_bdevname(s));
  129. }
  130. static struct reiserfs_bitmap_node *allocate_bitmap_node(struct super_block
  131. *sb)
  132. {
  133. struct reiserfs_bitmap_node *bn;
  134. static int id;
  135. bn = kmalloc(sizeof(struct reiserfs_bitmap_node), GFP_NOFS);
  136. if (!bn) {
  137. return NULL;
  138. }
  139. bn->data = kzalloc(sb->s_blocksize, GFP_NOFS);
  140. if (!bn->data) {
  141. kfree(bn);
  142. return NULL;
  143. }
  144. bn->id = id++;
  145. INIT_LIST_HEAD(&bn->list);
  146. return bn;
  147. }
  148. static struct reiserfs_bitmap_node *get_bitmap_node(struct super_block *sb)
  149. {
  150. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  151. struct reiserfs_bitmap_node *bn = NULL;
  152. struct list_head *entry = journal->j_bitmap_nodes.next;
  153. journal->j_used_bitmap_nodes++;
  154. repeat:
  155. if (entry != &journal->j_bitmap_nodes) {
  156. bn = list_entry(entry, struct reiserfs_bitmap_node, list);
  157. list_del(entry);
  158. memset(bn->data, 0, sb->s_blocksize);
  159. journal->j_free_bitmap_nodes--;
  160. return bn;
  161. }
  162. bn = allocate_bitmap_node(sb);
  163. if (!bn) {
  164. yield();
  165. goto repeat;
  166. }
  167. return bn;
  168. }
  169. static inline void free_bitmap_node(struct super_block *sb,
  170. struct reiserfs_bitmap_node *bn)
  171. {
  172. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  173. journal->j_used_bitmap_nodes--;
  174. if (journal->j_free_bitmap_nodes > REISERFS_MAX_BITMAP_NODES) {
  175. kfree(bn->data);
  176. kfree(bn);
  177. } else {
  178. list_add(&bn->list, &journal->j_bitmap_nodes);
  179. journal->j_free_bitmap_nodes++;
  180. }
  181. }
  182. static void allocate_bitmap_nodes(struct super_block *sb)
  183. {
  184. int i;
  185. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  186. struct reiserfs_bitmap_node *bn = NULL;
  187. for (i = 0; i < REISERFS_MIN_BITMAP_NODES; i++) {
  188. bn = allocate_bitmap_node(sb);
  189. if (bn) {
  190. list_add(&bn->list, &journal->j_bitmap_nodes);
  191. journal->j_free_bitmap_nodes++;
  192. } else {
  193. break; /* this is ok, we'll try again when more are needed */
  194. }
  195. }
  196. }
  197. static int set_bit_in_list_bitmap(struct super_block *sb,
  198. b_blocknr_t block,
  199. struct reiserfs_list_bitmap *jb)
  200. {
  201. unsigned int bmap_nr = block / (sb->s_blocksize << 3);
  202. unsigned int bit_nr = block % (sb->s_blocksize << 3);
  203. if (!jb->bitmaps[bmap_nr]) {
  204. jb->bitmaps[bmap_nr] = get_bitmap_node(sb);
  205. }
  206. set_bit(bit_nr, (unsigned long *)jb->bitmaps[bmap_nr]->data);
  207. return 0;
  208. }
  209. static void cleanup_bitmap_list(struct super_block *sb,
  210. struct reiserfs_list_bitmap *jb)
  211. {
  212. int i;
  213. if (jb->bitmaps == NULL)
  214. return;
  215. for (i = 0; i < reiserfs_bmap_count(sb); i++) {
  216. if (jb->bitmaps[i]) {
  217. free_bitmap_node(sb, jb->bitmaps[i]);
  218. jb->bitmaps[i] = NULL;
  219. }
  220. }
  221. }
  222. /*
  223. ** only call this on FS unmount.
  224. */
  225. static int free_list_bitmaps(struct super_block *sb,
  226. struct reiserfs_list_bitmap *jb_array)
  227. {
  228. int i;
  229. struct reiserfs_list_bitmap *jb;
  230. for (i = 0; i < JOURNAL_NUM_BITMAPS; i++) {
  231. jb = jb_array + i;
  232. jb->journal_list = NULL;
  233. cleanup_bitmap_list(sb, jb);
  234. vfree(jb->bitmaps);
  235. jb->bitmaps = NULL;
  236. }
  237. return 0;
  238. }
  239. static int free_bitmap_nodes(struct super_block *sb)
  240. {
  241. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  242. struct list_head *next = journal->j_bitmap_nodes.next;
  243. struct reiserfs_bitmap_node *bn;
  244. while (next != &journal->j_bitmap_nodes) {
  245. bn = list_entry(next, struct reiserfs_bitmap_node, list);
  246. list_del(next);
  247. kfree(bn->data);
  248. kfree(bn);
  249. next = journal->j_bitmap_nodes.next;
  250. journal->j_free_bitmap_nodes--;
  251. }
  252. return 0;
  253. }
  254. /*
  255. ** get memory for JOURNAL_NUM_BITMAPS worth of bitmaps.
  256. ** jb_array is the array to be filled in.
  257. */
  258. int reiserfs_allocate_list_bitmaps(struct super_block *sb,
  259. struct reiserfs_list_bitmap *jb_array,
  260. unsigned int bmap_nr)
  261. {
  262. int i;
  263. int failed = 0;
  264. struct reiserfs_list_bitmap *jb;
  265. int mem = bmap_nr * sizeof(struct reiserfs_bitmap_node *);
  266. for (i = 0; i < JOURNAL_NUM_BITMAPS; i++) {
  267. jb = jb_array + i;
  268. jb->journal_list = NULL;
  269. jb->bitmaps = vmalloc(mem);
  270. if (!jb->bitmaps) {
  271. reiserfs_warning(sb, "clm-2000", "unable to "
  272. "allocate bitmaps for journal lists");
  273. failed = 1;
  274. break;
  275. }
  276. memset(jb->bitmaps, 0, mem);
  277. }
  278. if (failed) {
  279. free_list_bitmaps(sb, jb_array);
  280. return -1;
  281. }
  282. return 0;
  283. }
  284. /*
  285. ** find an available list bitmap. If you can't find one, flush a commit list
  286. ** and try again
  287. */
  288. static struct reiserfs_list_bitmap *get_list_bitmap(struct super_block *sb,
  289. struct reiserfs_journal_list
  290. *jl)
  291. {
  292. int i, j;
  293. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  294. struct reiserfs_list_bitmap *jb = NULL;
  295. for (j = 0; j < (JOURNAL_NUM_BITMAPS * 3); j++) {
  296. i = journal->j_list_bitmap_index;
  297. journal->j_list_bitmap_index = (i + 1) % JOURNAL_NUM_BITMAPS;
  298. jb = journal->j_list_bitmap + i;
  299. if (journal->j_list_bitmap[i].journal_list) {
  300. flush_commit_list(sb,
  301. journal->j_list_bitmap[i].
  302. journal_list, 1);
  303. if (!journal->j_list_bitmap[i].journal_list) {
  304. break;
  305. }
  306. } else {
  307. break;
  308. }
  309. }
  310. if (jb->journal_list) { /* double check to make sure if flushed correctly */
  311. return NULL;
  312. }
  313. jb->journal_list = jl;
  314. return jb;
  315. }
  316. /*
  317. ** allocates a new chunk of X nodes, and links them all together as a list.
  318. ** Uses the cnode->next and cnode->prev pointers
  319. ** returns NULL on failure
  320. */
  321. static struct reiserfs_journal_cnode *allocate_cnodes(int num_cnodes)
  322. {
  323. struct reiserfs_journal_cnode *head;
  324. int i;
  325. if (num_cnodes <= 0) {
  326. return NULL;
  327. }
  328. head = vmalloc(num_cnodes * sizeof(struct reiserfs_journal_cnode));
  329. if (!head) {
  330. return NULL;
  331. }
  332. memset(head, 0, num_cnodes * sizeof(struct reiserfs_journal_cnode));
  333. head[0].prev = NULL;
  334. head[0].next = head + 1;
  335. for (i = 1; i < num_cnodes; i++) {
  336. head[i].prev = head + (i - 1);
  337. head[i].next = head + (i + 1); /* if last one, overwrite it after the if */
  338. }
  339. head[num_cnodes - 1].next = NULL;
  340. return head;
  341. }
  342. /*
  343. ** pulls a cnode off the free list, or returns NULL on failure
  344. */
  345. static struct reiserfs_journal_cnode *get_cnode(struct super_block *sb)
  346. {
  347. struct reiserfs_journal_cnode *cn;
  348. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  349. reiserfs_check_lock_depth(sb, "get_cnode");
  350. if (journal->j_cnode_free <= 0) {
  351. return NULL;
  352. }
  353. journal->j_cnode_used++;
  354. journal->j_cnode_free--;
  355. cn = journal->j_cnode_free_list;
  356. if (!cn) {
  357. return cn;
  358. }
  359. if (cn->next) {
  360. cn->next->prev = NULL;
  361. }
  362. journal->j_cnode_free_list = cn->next;
  363. memset(cn, 0, sizeof(struct reiserfs_journal_cnode));
  364. return cn;
  365. }
  366. /*
  367. ** returns a cnode to the free list
  368. */
  369. static void free_cnode(struct super_block *sb,
  370. struct reiserfs_journal_cnode *cn)
  371. {
  372. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  373. reiserfs_check_lock_depth(sb, "free_cnode");
  374. journal->j_cnode_used--;
  375. journal->j_cnode_free++;
  376. /* memset(cn, 0, sizeof(struct reiserfs_journal_cnode)) ; */
  377. cn->next = journal->j_cnode_free_list;
  378. if (journal->j_cnode_free_list) {
  379. journal->j_cnode_free_list->prev = cn;
  380. }
  381. cn->prev = NULL; /* not needed with the memset, but I might kill the memset, and forget to do this */
  382. journal->j_cnode_free_list = cn;
  383. }
  384. static void clear_prepared_bits(struct buffer_head *bh)
  385. {
  386. clear_buffer_journal_prepared(bh);
  387. clear_buffer_journal_restore_dirty(bh);
  388. }
  389. /* return a cnode with same dev, block number and size in table, or null if not found */
  390. static inline struct reiserfs_journal_cnode *get_journal_hash_dev(struct
  391. super_block
  392. *sb,
  393. struct
  394. reiserfs_journal_cnode
  395. **table,
  396. long bl)
  397. {
  398. struct reiserfs_journal_cnode *cn;
  399. cn = journal_hash(table, sb, bl);
  400. while (cn) {
  401. if (cn->blocknr == bl && cn->sb == sb)
  402. return cn;
  403. cn = cn->hnext;
  404. }
  405. return (struct reiserfs_journal_cnode *)0;
  406. }
  407. /*
  408. ** this actually means 'can this block be reallocated yet?'. If you set search_all, a block can only be allocated
  409. ** if it is not in the current transaction, was not freed by the current transaction, and has no chance of ever
  410. ** being overwritten by a replay after crashing.
  411. **
  412. ** If you don't set search_all, a block can only be allocated if it is not in the current transaction. Since deleting
  413. ** a block removes it from the current transaction, this case should never happen. If you don't set search_all, make
  414. ** sure you never write the block without logging it.
  415. **
  416. ** next_zero_bit is a suggestion about the next block to try for find_forward.
  417. ** when bl is rejected because it is set in a journal list bitmap, we search
  418. ** for the next zero bit in the bitmap that rejected bl. Then, we return that
  419. ** through next_zero_bit for find_forward to try.
  420. **
  421. ** Just because we return something in next_zero_bit does not mean we won't
  422. ** reject it on the next call to reiserfs_in_journal
  423. **
  424. */
  425. int reiserfs_in_journal(struct super_block *sb,
  426. unsigned int bmap_nr, int bit_nr, int search_all,
  427. b_blocknr_t * next_zero_bit)
  428. {
  429. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  430. struct reiserfs_journal_cnode *cn;
  431. struct reiserfs_list_bitmap *jb;
  432. int i;
  433. unsigned long bl;
  434. *next_zero_bit = 0; /* always start this at zero. */
  435. PROC_INFO_INC(sb, journal.in_journal);
  436. /* If we aren't doing a search_all, this is a metablock, and it will be logged before use.
  437. ** if we crash before the transaction that freed it commits, this transaction won't
  438. ** have committed either, and the block will never be written
  439. */
  440. if (search_all) {
  441. for (i = 0; i < JOURNAL_NUM_BITMAPS; i++) {
  442. PROC_INFO_INC(sb, journal.in_journal_bitmap);
  443. jb = journal->j_list_bitmap + i;
  444. if (jb->journal_list && jb->bitmaps[bmap_nr] &&
  445. test_bit(bit_nr,
  446. (unsigned long *)jb->bitmaps[bmap_nr]->
  447. data)) {
  448. *next_zero_bit =
  449. find_next_zero_bit((unsigned long *)
  450. (jb->bitmaps[bmap_nr]->
  451. data),
  452. sb->s_blocksize << 3,
  453. bit_nr + 1);
  454. return 1;
  455. }
  456. }
  457. }
  458. bl = bmap_nr * (sb->s_blocksize << 3) + bit_nr;
  459. /* is it in any old transactions? */
  460. if (search_all
  461. && (cn =
  462. get_journal_hash_dev(sb, journal->j_list_hash_table, bl))) {
  463. return 1;
  464. }
  465. /* is it in the current transaction. This should never happen */
  466. if ((cn = get_journal_hash_dev(sb, journal->j_hash_table, bl))) {
  467. BUG();
  468. return 1;
  469. }
  470. PROC_INFO_INC(sb, journal.in_journal_reusable);
  471. /* safe for reuse */
  472. return 0;
  473. }
  474. /* insert cn into table
  475. */
  476. static inline void insert_journal_hash(struct reiserfs_journal_cnode **table,
  477. struct reiserfs_journal_cnode *cn)
  478. {
  479. struct reiserfs_journal_cnode *cn_orig;
  480. cn_orig = journal_hash(table, cn->sb, cn->blocknr);
  481. cn->hnext = cn_orig;
  482. cn->hprev = NULL;
  483. if (cn_orig) {
  484. cn_orig->hprev = cn;
  485. }
  486. journal_hash(table, cn->sb, cn->blocknr) = cn;
  487. }
  488. /* lock the current transaction */
  489. static inline void lock_journal(struct super_block *sb)
  490. {
  491. PROC_INFO_INC(sb, journal.lock_journal);
  492. reiserfs_mutex_lock_safe(&SB_JOURNAL(sb)->j_mutex, sb);
  493. }
  494. /* unlock the current transaction */
  495. static inline void unlock_journal(struct super_block *sb)
  496. {
  497. mutex_unlock(&SB_JOURNAL(sb)->j_mutex);
  498. }
  499. static inline void get_journal_list(struct reiserfs_journal_list *jl)
  500. {
  501. jl->j_refcount++;
  502. }
  503. static inline void put_journal_list(struct super_block *s,
  504. struct reiserfs_journal_list *jl)
  505. {
  506. if (jl->j_refcount < 1) {
  507. reiserfs_panic(s, "journal-2", "trans id %u, refcount at %d",
  508. jl->j_trans_id, jl->j_refcount);
  509. }
  510. if (--jl->j_refcount == 0)
  511. kfree(jl);
  512. }
  513. /*
  514. ** this used to be much more involved, and I'm keeping it just in case things get ugly again.
  515. ** it gets called by flush_commit_list, and cleans up any data stored about blocks freed during a
  516. ** transaction.
  517. */
  518. static void cleanup_freed_for_journal_list(struct super_block *sb,
  519. struct reiserfs_journal_list *jl)
  520. {
  521. struct reiserfs_list_bitmap *jb = jl->j_list_bitmap;
  522. if (jb) {
  523. cleanup_bitmap_list(sb, jb);
  524. }
  525. jl->j_list_bitmap->journal_list = NULL;
  526. jl->j_list_bitmap = NULL;
  527. }
  528. static int journal_list_still_alive(struct super_block *s,
  529. unsigned int trans_id)
  530. {
  531. struct reiserfs_journal *journal = SB_JOURNAL(s);
  532. struct list_head *entry = &journal->j_journal_list;
  533. struct reiserfs_journal_list *jl;
  534. if (!list_empty(entry)) {
  535. jl = JOURNAL_LIST_ENTRY(entry->next);
  536. if (jl->j_trans_id <= trans_id) {
  537. return 1;
  538. }
  539. }
  540. return 0;
  541. }
  542. /*
  543. * If page->mapping was null, we failed to truncate this page for
  544. * some reason. Most likely because it was truncated after being
  545. * logged via data=journal.
  546. *
  547. * This does a check to see if the buffer belongs to one of these
  548. * lost pages before doing the final put_bh. If page->mapping was
  549. * null, it tries to free buffers on the page, which should make the
  550. * final page_cache_release drop the page from the lru.
  551. */
  552. static void release_buffer_page(struct buffer_head *bh)
  553. {
  554. struct page *page = bh->b_page;
  555. if (!page->mapping && trylock_page(page)) {
  556. page_cache_get(page);
  557. put_bh(bh);
  558. if (!page->mapping)
  559. try_to_free_buffers(page);
  560. unlock_page(page);
  561. page_cache_release(page);
  562. } else {
  563. put_bh(bh);
  564. }
  565. }
  566. static void reiserfs_end_buffer_io_sync(struct buffer_head *bh, int uptodate)
  567. {
  568. char b[BDEVNAME_SIZE];
  569. if (buffer_journaled(bh)) {
  570. reiserfs_warning(NULL, "clm-2084",
  571. "pinned buffer %lu:%s sent to disk",
  572. bh->b_blocknr, bdevname(bh->b_bdev, b));
  573. }
  574. if (uptodate)
  575. set_buffer_uptodate(bh);
  576. else
  577. clear_buffer_uptodate(bh);
  578. unlock_buffer(bh);
  579. release_buffer_page(bh);
  580. }
  581. static void reiserfs_end_ordered_io(struct buffer_head *bh, int uptodate)
  582. {
  583. if (uptodate)
  584. set_buffer_uptodate(bh);
  585. else
  586. clear_buffer_uptodate(bh);
  587. unlock_buffer(bh);
  588. put_bh(bh);
  589. }
  590. static void submit_logged_buffer(struct buffer_head *bh)
  591. {
  592. get_bh(bh);
  593. bh->b_end_io = reiserfs_end_buffer_io_sync;
  594. clear_buffer_journal_new(bh);
  595. clear_buffer_dirty(bh);
  596. if (!test_clear_buffer_journal_test(bh))
  597. BUG();
  598. if (!buffer_uptodate(bh))
  599. BUG();
  600. submit_bh(WRITE, bh);
  601. }
  602. static void submit_ordered_buffer(struct buffer_head *bh)
  603. {
  604. get_bh(bh);
  605. bh->b_end_io = reiserfs_end_ordered_io;
  606. clear_buffer_dirty(bh);
  607. if (!buffer_uptodate(bh))
  608. BUG();
  609. submit_bh(WRITE, bh);
  610. }
  611. static int submit_barrier_buffer(struct buffer_head *bh)
  612. {
  613. get_bh(bh);
  614. bh->b_end_io = reiserfs_end_ordered_io;
  615. clear_buffer_dirty(bh);
  616. if (!buffer_uptodate(bh))
  617. BUG();
  618. return submit_bh(WRITE_BARRIER, bh);
  619. }
  620. static void check_barrier_completion(struct super_block *s,
  621. struct buffer_head *bh)
  622. {
  623. if (buffer_eopnotsupp(bh)) {
  624. clear_buffer_eopnotsupp(bh);
  625. disable_barrier(s);
  626. set_buffer_uptodate(bh);
  627. set_buffer_dirty(bh);
  628. reiserfs_write_unlock(s);
  629. sync_dirty_buffer(bh);
  630. reiserfs_write_lock(s);
  631. }
  632. }
  633. #define CHUNK_SIZE 32
  634. struct buffer_chunk {
  635. struct buffer_head *bh[CHUNK_SIZE];
  636. int nr;
  637. };
  638. static void write_chunk(struct buffer_chunk *chunk)
  639. {
  640. int i;
  641. get_fs_excl();
  642. for (i = 0; i < chunk->nr; i++) {
  643. submit_logged_buffer(chunk->bh[i]);
  644. }
  645. chunk->nr = 0;
  646. put_fs_excl();
  647. }
  648. static void write_ordered_chunk(struct buffer_chunk *chunk)
  649. {
  650. int i;
  651. get_fs_excl();
  652. for (i = 0; i < chunk->nr; i++) {
  653. submit_ordered_buffer(chunk->bh[i]);
  654. }
  655. chunk->nr = 0;
  656. put_fs_excl();
  657. }
  658. static int add_to_chunk(struct buffer_chunk *chunk, struct buffer_head *bh,
  659. spinlock_t * lock, void (fn) (struct buffer_chunk *))
  660. {
  661. int ret = 0;
  662. BUG_ON(chunk->nr >= CHUNK_SIZE);
  663. chunk->bh[chunk->nr++] = bh;
  664. if (chunk->nr >= CHUNK_SIZE) {
  665. ret = 1;
  666. if (lock)
  667. spin_unlock(lock);
  668. fn(chunk);
  669. if (lock)
  670. spin_lock(lock);
  671. }
  672. return ret;
  673. }
  674. static atomic_t nr_reiserfs_jh = ATOMIC_INIT(0);
  675. static struct reiserfs_jh *alloc_jh(void)
  676. {
  677. struct reiserfs_jh *jh;
  678. while (1) {
  679. jh = kmalloc(sizeof(*jh), GFP_NOFS);
  680. if (jh) {
  681. atomic_inc(&nr_reiserfs_jh);
  682. return jh;
  683. }
  684. yield();
  685. }
  686. }
  687. /*
  688. * we want to free the jh when the buffer has been written
  689. * and waited on
  690. */
  691. void reiserfs_free_jh(struct buffer_head *bh)
  692. {
  693. struct reiserfs_jh *jh;
  694. jh = bh->b_private;
  695. if (jh) {
  696. bh->b_private = NULL;
  697. jh->bh = NULL;
  698. list_del_init(&jh->list);
  699. kfree(jh);
  700. if (atomic_read(&nr_reiserfs_jh) <= 0)
  701. BUG();
  702. atomic_dec(&nr_reiserfs_jh);
  703. put_bh(bh);
  704. }
  705. }
  706. static inline int __add_jh(struct reiserfs_journal *j, struct buffer_head *bh,
  707. int tail)
  708. {
  709. struct reiserfs_jh *jh;
  710. if (bh->b_private) {
  711. spin_lock(&j->j_dirty_buffers_lock);
  712. if (!bh->b_private) {
  713. spin_unlock(&j->j_dirty_buffers_lock);
  714. goto no_jh;
  715. }
  716. jh = bh->b_private;
  717. list_del_init(&jh->list);
  718. } else {
  719. no_jh:
  720. get_bh(bh);
  721. jh = alloc_jh();
  722. spin_lock(&j->j_dirty_buffers_lock);
  723. /* buffer must be locked for __add_jh, should be able to have
  724. * two adds at the same time
  725. */
  726. BUG_ON(bh->b_private);
  727. jh->bh = bh;
  728. bh->b_private = jh;
  729. }
  730. jh->jl = j->j_current_jl;
  731. if (tail)
  732. list_add_tail(&jh->list, &jh->jl->j_tail_bh_list);
  733. else {
  734. list_add_tail(&jh->list, &jh->jl->j_bh_list);
  735. }
  736. spin_unlock(&j->j_dirty_buffers_lock);
  737. return 0;
  738. }
  739. int reiserfs_add_tail_list(struct inode *inode, struct buffer_head *bh)
  740. {
  741. return __add_jh(SB_JOURNAL(inode->i_sb), bh, 1);
  742. }
  743. int reiserfs_add_ordered_list(struct inode *inode, struct buffer_head *bh)
  744. {
  745. return __add_jh(SB_JOURNAL(inode->i_sb), bh, 0);
  746. }
  747. #define JH_ENTRY(l) list_entry((l), struct reiserfs_jh, list)
  748. static int write_ordered_buffers(spinlock_t * lock,
  749. struct reiserfs_journal *j,
  750. struct reiserfs_journal_list *jl,
  751. struct list_head *list)
  752. {
  753. struct buffer_head *bh;
  754. struct reiserfs_jh *jh;
  755. int ret = j->j_errno;
  756. struct buffer_chunk chunk;
  757. struct list_head tmp;
  758. INIT_LIST_HEAD(&tmp);
  759. chunk.nr = 0;
  760. spin_lock(lock);
  761. while (!list_empty(list)) {
  762. jh = JH_ENTRY(list->next);
  763. bh = jh->bh;
  764. get_bh(bh);
  765. if (!trylock_buffer(bh)) {
  766. if (!buffer_dirty(bh)) {
  767. list_move(&jh->list, &tmp);
  768. goto loop_next;
  769. }
  770. spin_unlock(lock);
  771. if (chunk.nr)
  772. write_ordered_chunk(&chunk);
  773. wait_on_buffer(bh);
  774. cond_resched();
  775. spin_lock(lock);
  776. goto loop_next;
  777. }
  778. /* in theory, dirty non-uptodate buffers should never get here,
  779. * but the upper layer io error paths still have a few quirks.
  780. * Handle them here as gracefully as we can
  781. */
  782. if (!buffer_uptodate(bh) && buffer_dirty(bh)) {
  783. clear_buffer_dirty(bh);
  784. ret = -EIO;
  785. }
  786. if (buffer_dirty(bh)) {
  787. list_move(&jh->list, &tmp);
  788. add_to_chunk(&chunk, bh, lock, write_ordered_chunk);
  789. } else {
  790. reiserfs_free_jh(bh);
  791. unlock_buffer(bh);
  792. }
  793. loop_next:
  794. put_bh(bh);
  795. cond_resched_lock(lock);
  796. }
  797. if (chunk.nr) {
  798. spin_unlock(lock);
  799. write_ordered_chunk(&chunk);
  800. spin_lock(lock);
  801. }
  802. while (!list_empty(&tmp)) {
  803. jh = JH_ENTRY(tmp.prev);
  804. bh = jh->bh;
  805. get_bh(bh);
  806. reiserfs_free_jh(bh);
  807. if (buffer_locked(bh)) {
  808. spin_unlock(lock);
  809. wait_on_buffer(bh);
  810. spin_lock(lock);
  811. }
  812. if (!buffer_uptodate(bh)) {
  813. ret = -EIO;
  814. }
  815. /* ugly interaction with invalidatepage here.
  816. * reiserfs_invalidate_page will pin any buffer that has a valid
  817. * journal head from an older transaction. If someone else sets
  818. * our buffer dirty after we write it in the first loop, and
  819. * then someone truncates the page away, nobody will ever write
  820. * the buffer. We're safe if we write the page one last time
  821. * after freeing the journal header.
  822. */
  823. if (buffer_dirty(bh) && unlikely(bh->b_page->mapping == NULL)) {
  824. spin_unlock(lock);
  825. ll_rw_block(WRITE, 1, &bh);
  826. spin_lock(lock);
  827. }
  828. put_bh(bh);
  829. cond_resched_lock(lock);
  830. }
  831. spin_unlock(lock);
  832. return ret;
  833. }
  834. static int flush_older_commits(struct super_block *s,
  835. struct reiserfs_journal_list *jl)
  836. {
  837. struct reiserfs_journal *journal = SB_JOURNAL(s);
  838. struct reiserfs_journal_list *other_jl;
  839. struct reiserfs_journal_list *first_jl;
  840. struct list_head *entry;
  841. unsigned int trans_id = jl->j_trans_id;
  842. unsigned int other_trans_id;
  843. unsigned int first_trans_id;
  844. find_first:
  845. /*
  846. * first we walk backwards to find the oldest uncommitted transation
  847. */
  848. first_jl = jl;
  849. entry = jl->j_list.prev;
  850. while (1) {
  851. other_jl = JOURNAL_LIST_ENTRY(entry);
  852. if (entry == &journal->j_journal_list ||
  853. atomic_read(&other_jl->j_older_commits_done))
  854. break;
  855. first_jl = other_jl;
  856. entry = other_jl->j_list.prev;
  857. }
  858. /* if we didn't find any older uncommitted transactions, return now */
  859. if (first_jl == jl) {
  860. return 0;
  861. }
  862. first_trans_id = first_jl->j_trans_id;
  863. entry = &first_jl->j_list;
  864. while (1) {
  865. other_jl = JOURNAL_LIST_ENTRY(entry);
  866. other_trans_id = other_jl->j_trans_id;
  867. if (other_trans_id < trans_id) {
  868. if (atomic_read(&other_jl->j_commit_left) != 0) {
  869. flush_commit_list(s, other_jl, 0);
  870. /* list we were called with is gone, return */
  871. if (!journal_list_still_alive(s, trans_id))
  872. return 1;
  873. /* the one we just flushed is gone, this means all
  874. * older lists are also gone, so first_jl is no longer
  875. * valid either. Go back to the beginning.
  876. */
  877. if (!journal_list_still_alive
  878. (s, other_trans_id)) {
  879. goto find_first;
  880. }
  881. }
  882. entry = entry->next;
  883. if (entry == &journal->j_journal_list)
  884. return 0;
  885. } else {
  886. return 0;
  887. }
  888. }
  889. return 0;
  890. }
  891. static int reiserfs_async_progress_wait(struct super_block *s)
  892. {
  893. struct reiserfs_journal *j = SB_JOURNAL(s);
  894. if (atomic_read(&j->j_async_throttle)) {
  895. reiserfs_write_unlock(s);
  896. congestion_wait(BLK_RW_ASYNC, HZ / 10);
  897. reiserfs_write_lock(s);
  898. }
  899. return 0;
  900. }
  901. /*
  902. ** if this journal list still has commit blocks unflushed, send them to disk.
  903. **
  904. ** log areas must be flushed in order (transaction 2 can't commit before transaction 1)
  905. ** Before the commit block can by written, every other log block must be safely on disk
  906. **
  907. */
  908. static int flush_commit_list(struct super_block *s,
  909. struct reiserfs_journal_list *jl, int flushall)
  910. {
  911. int i;
  912. b_blocknr_t bn;
  913. struct buffer_head *tbh = NULL;
  914. unsigned int trans_id = jl->j_trans_id;
  915. struct reiserfs_journal *journal = SB_JOURNAL(s);
  916. int barrier = 0;
  917. int retval = 0;
  918. int write_len;
  919. reiserfs_check_lock_depth(s, "flush_commit_list");
  920. if (atomic_read(&jl->j_older_commits_done)) {
  921. return 0;
  922. }
  923. get_fs_excl();
  924. /* before we can put our commit blocks on disk, we have to make sure everyone older than
  925. ** us is on disk too
  926. */
  927. BUG_ON(jl->j_len <= 0);
  928. BUG_ON(trans_id == journal->j_trans_id);
  929. get_journal_list(jl);
  930. if (flushall) {
  931. if (flush_older_commits(s, jl) == 1) {
  932. /* list disappeared during flush_older_commits. return */
  933. goto put_jl;
  934. }
  935. }
  936. /* make sure nobody is trying to flush this one at the same time */
  937. reiserfs_mutex_lock_safe(&jl->j_commit_mutex, s);
  938. if (!journal_list_still_alive(s, trans_id)) {
  939. mutex_unlock(&jl->j_commit_mutex);
  940. goto put_jl;
  941. }
  942. BUG_ON(jl->j_trans_id == 0);
  943. /* this commit is done, exit */
  944. if (atomic_read(&(jl->j_commit_left)) <= 0) {
  945. if (flushall) {
  946. atomic_set(&(jl->j_older_commits_done), 1);
  947. }
  948. mutex_unlock(&jl->j_commit_mutex);
  949. goto put_jl;
  950. }
  951. if (!list_empty(&jl->j_bh_list)) {
  952. int ret;
  953. /*
  954. * We might sleep in numerous places inside
  955. * write_ordered_buffers. Relax the write lock.
  956. */
  957. reiserfs_write_unlock(s);
  958. ret = write_ordered_buffers(&journal->j_dirty_buffers_lock,
  959. journal, jl, &jl->j_bh_list);
  960. if (ret < 0 && retval == 0)
  961. retval = ret;
  962. reiserfs_write_lock(s);
  963. }
  964. BUG_ON(!list_empty(&jl->j_bh_list));
  965. /*
  966. * for the description block and all the log blocks, submit any buffers
  967. * that haven't already reached the disk. Try to write at least 256
  968. * log blocks. later on, we will only wait on blocks that correspond
  969. * to this transaction, but while we're unplugging we might as well
  970. * get a chunk of data on there.
  971. */
  972. atomic_inc(&journal->j_async_throttle);
  973. write_len = jl->j_len + 1;
  974. if (write_len < 256)
  975. write_len = 256;
  976. for (i = 0 ; i < write_len ; i++) {
  977. bn = SB_ONDISK_JOURNAL_1st_BLOCK(s) + (jl->j_start + i) %
  978. SB_ONDISK_JOURNAL_SIZE(s);
  979. tbh = journal_find_get_block(s, bn);
  980. if (tbh) {
  981. if (buffer_dirty(tbh)) {
  982. reiserfs_write_unlock(s);
  983. ll_rw_block(WRITE, 1, &tbh);
  984. reiserfs_write_lock(s);
  985. }
  986. put_bh(tbh) ;
  987. }
  988. }
  989. atomic_dec(&journal->j_async_throttle);
  990. /* We're skipping the commit if there's an error */
  991. if (retval || reiserfs_is_journal_aborted(journal))
  992. barrier = 0;
  993. /* wait on everything written so far before writing the commit
  994. * if we are in barrier mode, send the commit down now
  995. */
  996. barrier = reiserfs_barrier_flush(s);
  997. if (barrier) {
  998. int ret;
  999. lock_buffer(jl->j_commit_bh);
  1000. ret = submit_barrier_buffer(jl->j_commit_bh);
  1001. if (ret == -EOPNOTSUPP) {
  1002. set_buffer_uptodate(jl->j_commit_bh);
  1003. disable_barrier(s);
  1004. barrier = 0;
  1005. }
  1006. }
  1007. for (i = 0; i < (jl->j_len + 1); i++) {
  1008. bn = SB_ONDISK_JOURNAL_1st_BLOCK(s) +
  1009. (jl->j_start + i) % SB_ONDISK_JOURNAL_SIZE(s);
  1010. tbh = journal_find_get_block(s, bn);
  1011. reiserfs_write_unlock(s);
  1012. wait_on_buffer(tbh);
  1013. reiserfs_write_lock(s);
  1014. // since we're using ll_rw_blk above, it might have skipped over
  1015. // a locked buffer. Double check here
  1016. //
  1017. /* redundant, sync_dirty_buffer() checks */
  1018. if (buffer_dirty(tbh)) {
  1019. reiserfs_write_unlock(s);
  1020. sync_dirty_buffer(tbh);
  1021. reiserfs_write_lock(s);
  1022. }
  1023. if (unlikely(!buffer_uptodate(tbh))) {
  1024. #ifdef CONFIG_REISERFS_CHECK
  1025. reiserfs_warning(s, "journal-601",
  1026. "buffer write failed");
  1027. #endif
  1028. retval = -EIO;
  1029. }
  1030. put_bh(tbh); /* once for journal_find_get_block */
  1031. put_bh(tbh); /* once due to original getblk in do_journal_end */
  1032. atomic_dec(&(jl->j_commit_left));
  1033. }
  1034. BUG_ON(atomic_read(&(jl->j_commit_left)) != 1);
  1035. if (!barrier) {
  1036. /* If there was a write error in the journal - we can't commit
  1037. * this transaction - it will be invalid and, if successful,
  1038. * will just end up propagating the write error out to
  1039. * the file system. */
  1040. if (likely(!retval && !reiserfs_is_journal_aborted (journal))) {
  1041. if (buffer_dirty(jl->j_commit_bh))
  1042. BUG();
  1043. mark_buffer_dirty(jl->j_commit_bh) ;
  1044. reiserfs_write_unlock(s);
  1045. sync_dirty_buffer(jl->j_commit_bh) ;
  1046. reiserfs_write_lock(s);
  1047. }
  1048. } else {
  1049. reiserfs_write_unlock(s);
  1050. wait_on_buffer(jl->j_commit_bh);
  1051. reiserfs_write_lock(s);
  1052. }
  1053. check_barrier_completion(s, jl->j_commit_bh);
  1054. /* If there was a write error in the journal - we can't commit this
  1055. * transaction - it will be invalid and, if successful, will just end
  1056. * up propagating the write error out to the filesystem. */
  1057. if (unlikely(!buffer_uptodate(jl->j_commit_bh))) {
  1058. #ifdef CONFIG_REISERFS_CHECK
  1059. reiserfs_warning(s, "journal-615", "buffer write failed");
  1060. #endif
  1061. retval = -EIO;
  1062. }
  1063. bforget(jl->j_commit_bh);
  1064. if (journal->j_last_commit_id != 0 &&
  1065. (jl->j_trans_id - journal->j_last_commit_id) != 1) {
  1066. reiserfs_warning(s, "clm-2200", "last commit %lu, current %lu",
  1067. journal->j_last_commit_id, jl->j_trans_id);
  1068. }
  1069. journal->j_last_commit_id = jl->j_trans_id;
  1070. /* now, every commit block is on the disk. It is safe to allow blocks freed during this transaction to be reallocated */
  1071. cleanup_freed_for_journal_list(s, jl);
  1072. retval = retval ? retval : journal->j_errno;
  1073. /* mark the metadata dirty */
  1074. if (!retval)
  1075. dirty_one_transaction(s, jl);
  1076. atomic_dec(&(jl->j_commit_left));
  1077. if (flushall) {
  1078. atomic_set(&(jl->j_older_commits_done), 1);
  1079. }
  1080. mutex_unlock(&jl->j_commit_mutex);
  1081. put_jl:
  1082. put_journal_list(s, jl);
  1083. if (retval)
  1084. reiserfs_abort(s, retval, "Journal write error in %s",
  1085. __func__);
  1086. put_fs_excl();
  1087. return retval;
  1088. }
  1089. /*
  1090. ** flush_journal_list frequently needs to find a newer transaction for a given block. This does that, or
  1091. ** returns NULL if it can't find anything
  1092. */
  1093. static struct reiserfs_journal_list *find_newer_jl_for_cn(struct
  1094. reiserfs_journal_cnode
  1095. *cn)
  1096. {
  1097. struct super_block *sb = cn->sb;
  1098. b_blocknr_t blocknr = cn->blocknr;
  1099. cn = cn->hprev;
  1100. while (cn) {
  1101. if (cn->sb == sb && cn->blocknr == blocknr && cn->jlist) {
  1102. return cn->jlist;
  1103. }
  1104. cn = cn->hprev;
  1105. }
  1106. return NULL;
  1107. }
  1108. static int newer_jl_done(struct reiserfs_journal_cnode *cn)
  1109. {
  1110. struct super_block *sb = cn->sb;
  1111. b_blocknr_t blocknr = cn->blocknr;
  1112. cn = cn->hprev;
  1113. while (cn) {
  1114. if (cn->sb == sb && cn->blocknr == blocknr && cn->jlist &&
  1115. atomic_read(&cn->jlist->j_commit_left) != 0)
  1116. return 0;
  1117. cn = cn->hprev;
  1118. }
  1119. return 1;
  1120. }
  1121. static void remove_journal_hash(struct super_block *,
  1122. struct reiserfs_journal_cnode **,
  1123. struct reiserfs_journal_list *, unsigned long,
  1124. int);
  1125. /*
  1126. ** once all the real blocks have been flushed, it is safe to remove them from the
  1127. ** journal list for this transaction. Aside from freeing the cnode, this also allows the
  1128. ** block to be reallocated for data blocks if it had been deleted.
  1129. */
  1130. static void remove_all_from_journal_list(struct super_block *sb,
  1131. struct reiserfs_journal_list *jl,
  1132. int debug)
  1133. {
  1134. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  1135. struct reiserfs_journal_cnode *cn, *last;
  1136. cn = jl->j_realblock;
  1137. /* which is better, to lock once around the whole loop, or
  1138. ** to lock for each call to remove_journal_hash?
  1139. */
  1140. while (cn) {
  1141. if (cn->blocknr != 0) {
  1142. if (debug) {
  1143. reiserfs_warning(sb, "reiserfs-2201",
  1144. "block %u, bh is %d, state %ld",
  1145. cn->blocknr, cn->bh ? 1 : 0,
  1146. cn->state);
  1147. }
  1148. cn->state = 0;
  1149. remove_journal_hash(sb, journal->j_list_hash_table,
  1150. jl, cn->blocknr, 1);
  1151. }
  1152. last = cn;
  1153. cn = cn->next;
  1154. free_cnode(sb, last);
  1155. }
  1156. jl->j_realblock = NULL;
  1157. }
  1158. /*
  1159. ** if this timestamp is greater than the timestamp we wrote last to the header block, write it to the header block.
  1160. ** once this is done, I can safely say the log area for this transaction won't ever be replayed, and I can start
  1161. ** releasing blocks in this transaction for reuse as data blocks.
  1162. ** called by flush_journal_list, before it calls remove_all_from_journal_list
  1163. **
  1164. */
  1165. static int _update_journal_header_block(struct super_block *sb,
  1166. unsigned long offset,
  1167. unsigned int trans_id)
  1168. {
  1169. struct reiserfs_journal_header *jh;
  1170. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  1171. if (reiserfs_is_journal_aborted(journal))
  1172. return -EIO;
  1173. if (trans_id >= journal->j_last_flush_trans_id) {
  1174. if (buffer_locked((journal->j_header_bh))) {
  1175. reiserfs_write_unlock(sb);
  1176. wait_on_buffer((journal->j_header_bh));
  1177. reiserfs_write_lock(sb);
  1178. if (unlikely(!buffer_uptodate(journal->j_header_bh))) {
  1179. #ifdef CONFIG_REISERFS_CHECK
  1180. reiserfs_warning(sb, "journal-699",
  1181. "buffer write failed");
  1182. #endif
  1183. return -EIO;
  1184. }
  1185. }
  1186. journal->j_last_flush_trans_id = trans_id;
  1187. journal->j_first_unflushed_offset = offset;
  1188. jh = (struct reiserfs_journal_header *)(journal->j_header_bh->
  1189. b_data);
  1190. jh->j_last_flush_trans_id = cpu_to_le32(trans_id);
  1191. jh->j_first_unflushed_offset = cpu_to_le32(offset);
  1192. jh->j_mount_id = cpu_to_le32(journal->j_mount_id);
  1193. if (reiserfs_barrier_flush(sb)) {
  1194. int ret;
  1195. lock_buffer(journal->j_header_bh);
  1196. ret = submit_barrier_buffer(journal->j_header_bh);
  1197. if (ret == -EOPNOTSUPP) {
  1198. set_buffer_uptodate(journal->j_header_bh);
  1199. disable_barrier(sb);
  1200. goto sync;
  1201. }
  1202. reiserfs_write_unlock(sb);
  1203. wait_on_buffer(journal->j_header_bh);
  1204. reiserfs_write_lock(sb);
  1205. check_barrier_completion(sb, journal->j_header_bh);
  1206. } else {
  1207. sync:
  1208. set_buffer_dirty(journal->j_header_bh);
  1209. reiserfs_write_unlock(sb);
  1210. sync_dirty_buffer(journal->j_header_bh);
  1211. reiserfs_write_lock(sb);
  1212. }
  1213. if (!buffer_uptodate(journal->j_header_bh)) {
  1214. reiserfs_warning(sb, "journal-837",
  1215. "IO error during journal replay");
  1216. return -EIO;
  1217. }
  1218. }
  1219. return 0;
  1220. }
  1221. static int update_journal_header_block(struct super_block *sb,
  1222. unsigned long offset,
  1223. unsigned int trans_id)
  1224. {
  1225. return _update_journal_header_block(sb, offset, trans_id);
  1226. }
  1227. /*
  1228. ** flush any and all journal lists older than you are
  1229. ** can only be called from flush_journal_list
  1230. */
  1231. static int flush_older_journal_lists(struct super_block *sb,
  1232. struct reiserfs_journal_list *jl)
  1233. {
  1234. struct list_head *entry;
  1235. struct reiserfs_journal_list *other_jl;
  1236. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  1237. unsigned int trans_id = jl->j_trans_id;
  1238. /* we know we are the only ones flushing things, no extra race
  1239. * protection is required.
  1240. */
  1241. restart:
  1242. entry = journal->j_journal_list.next;
  1243. /* Did we wrap? */
  1244. if (entry == &journal->j_journal_list)
  1245. return 0;
  1246. other_jl = JOURNAL_LIST_ENTRY(entry);
  1247. if (other_jl->j_trans_id < trans_id) {
  1248. BUG_ON(other_jl->j_refcount <= 0);
  1249. /* do not flush all */
  1250. flush_journal_list(sb, other_jl, 0);
  1251. /* other_jl is now deleted from the list */
  1252. goto restart;
  1253. }
  1254. return 0;
  1255. }
  1256. static void del_from_work_list(struct super_block *s,
  1257. struct reiserfs_journal_list *jl)
  1258. {
  1259. struct reiserfs_journal *journal = SB_JOURNAL(s);
  1260. if (!list_empty(&jl->j_working_list)) {
  1261. list_del_init(&jl->j_working_list);
  1262. journal->j_num_work_lists--;
  1263. }
  1264. }
  1265. /* flush a journal list, both commit and real blocks
  1266. **
  1267. ** always set flushall to 1, unless you are calling from inside
  1268. ** flush_journal_list
  1269. **
  1270. ** IMPORTANT. This can only be called while there are no journal writers,
  1271. ** and the journal is locked. That means it can only be called from
  1272. ** do_journal_end, or by journal_release
  1273. */
  1274. static int flush_journal_list(struct super_block *s,
  1275. struct reiserfs_journal_list *jl, int flushall)
  1276. {
  1277. struct reiserfs_journal_list *pjl;
  1278. struct reiserfs_journal_cnode *cn, *last;
  1279. int count;
  1280. int was_jwait = 0;
  1281. int was_dirty = 0;
  1282. struct buffer_head *saved_bh;
  1283. unsigned long j_len_saved = jl->j_len;
  1284. struct reiserfs_journal *journal = SB_JOURNAL(s);
  1285. int err = 0;
  1286. BUG_ON(j_len_saved <= 0);
  1287. if (atomic_read(&journal->j_wcount) != 0) {
  1288. reiserfs_warning(s, "clm-2048", "called with wcount %d",
  1289. atomic_read(&journal->j_wcount));
  1290. }
  1291. BUG_ON(jl->j_trans_id == 0);
  1292. /* if flushall == 0, the lock is already held */
  1293. if (flushall) {
  1294. reiserfs_mutex_lock_safe(&journal->j_flush_mutex, s);
  1295. } else if (mutex_trylock(&journal->j_flush_mutex)) {
  1296. BUG();
  1297. }
  1298. count = 0;
  1299. if (j_len_saved > journal->j_trans_max) {
  1300. reiserfs_panic(s, "journal-715", "length is %lu, trans id %lu",
  1301. j_len_saved, jl->j_trans_id);
  1302. return 0;
  1303. }
  1304. get_fs_excl();
  1305. /* if all the work is already done, get out of here */
  1306. if (atomic_read(&(jl->j_nonzerolen)) <= 0 &&
  1307. atomic_read(&(jl->j_commit_left)) <= 0) {
  1308. goto flush_older_and_return;
  1309. }
  1310. /* start by putting the commit list on disk. This will also flush
  1311. ** the commit lists of any olders transactions
  1312. */
  1313. flush_commit_list(s, jl, 1);
  1314. if (!(jl->j_state & LIST_DIRTY)
  1315. && !reiserfs_is_journal_aborted(journal))
  1316. BUG();
  1317. /* are we done now? */
  1318. if (atomic_read(&(jl->j_nonzerolen)) <= 0 &&
  1319. atomic_read(&(jl->j_commit_left)) <= 0) {
  1320. goto flush_older_and_return;
  1321. }
  1322. /* loop through each cnode, see if we need to write it,
  1323. ** or wait on a more recent transaction, or just ignore it
  1324. */
  1325. if (atomic_read(&(journal->j_wcount)) != 0) {
  1326. reiserfs_panic(s, "journal-844", "journal list is flushing, "
  1327. "wcount is not 0");
  1328. }
  1329. cn = jl->j_realblock;
  1330. while (cn) {
  1331. was_jwait = 0;
  1332. was_dirty = 0;
  1333. saved_bh = NULL;
  1334. /* blocknr of 0 is no longer in the hash, ignore it */
  1335. if (cn->blocknr == 0) {
  1336. goto free_cnode;
  1337. }
  1338. /* This transaction failed commit. Don't write out to the disk */
  1339. if (!(jl->j_state & LIST_DIRTY))
  1340. goto free_cnode;
  1341. pjl = find_newer_jl_for_cn(cn);
  1342. /* the order is important here. We check pjl to make sure we
  1343. ** don't clear BH_JDirty_wait if we aren't the one writing this
  1344. ** block to disk
  1345. */
  1346. if (!pjl && cn->bh) {
  1347. saved_bh = cn->bh;
  1348. /* we do this to make sure nobody releases the buffer while
  1349. ** we are working with it
  1350. */
  1351. get_bh(saved_bh);
  1352. if (buffer_journal_dirty(saved_bh)) {
  1353. BUG_ON(!can_dirty(cn));
  1354. was_jwait = 1;
  1355. was_dirty = 1;
  1356. } else if (can_dirty(cn)) {
  1357. /* everything with !pjl && jwait should be writable */
  1358. BUG();
  1359. }
  1360. }
  1361. /* if someone has this block in a newer transaction, just make
  1362. ** sure they are committed, and don't try writing it to disk
  1363. */
  1364. if (pjl) {
  1365. if (atomic_read(&pjl->j_commit_left))
  1366. flush_commit_list(s, pjl, 1);
  1367. goto free_cnode;
  1368. }
  1369. /* bh == NULL when the block got to disk on its own, OR,
  1370. ** the block got freed in a future transaction
  1371. */
  1372. if (saved_bh == NULL) {
  1373. goto free_cnode;
  1374. }
  1375. /* this should never happen. kupdate_one_transaction has this list
  1376. ** locked while it works, so we should never see a buffer here that
  1377. ** is not marked JDirty_wait
  1378. */
  1379. if ((!was_jwait) && !buffer_locked(saved_bh)) {
  1380. reiserfs_warning(s, "journal-813",
  1381. "BAD! buffer %llu %cdirty %cjwait, "
  1382. "not in a newer tranasction",
  1383. (unsigned long long)saved_bh->
  1384. b_blocknr, was_dirty ? ' ' : '!',
  1385. was_jwait ? ' ' : '!');
  1386. }
  1387. if (was_dirty) {
  1388. /* we inc again because saved_bh gets decremented at free_cnode */
  1389. get_bh(saved_bh);
  1390. set_bit(BLOCK_NEEDS_FLUSH, &cn->state);
  1391. lock_buffer(saved_bh);
  1392. BUG_ON(cn->blocknr != saved_bh->b_blocknr);
  1393. if (buffer_dirty(saved_bh))
  1394. submit_logged_buffer(saved_bh);
  1395. else
  1396. unlock_buffer(saved_bh);
  1397. count++;
  1398. } else {
  1399. reiserfs_warning(s, "clm-2082",
  1400. "Unable to flush buffer %llu in %s",
  1401. (unsigned long long)saved_bh->
  1402. b_blocknr, __func__);
  1403. }
  1404. free_cnode:
  1405. last = cn;
  1406. cn = cn->next;
  1407. if (saved_bh) {
  1408. /* we incremented this to keep others from taking the buffer head away */
  1409. put_bh(saved_bh);
  1410. if (atomic_read(&(saved_bh->b_count)) < 0) {
  1411. reiserfs_warning(s, "journal-945",
  1412. "saved_bh->b_count < 0");
  1413. }
  1414. }
  1415. }
  1416. if (count > 0) {
  1417. cn = jl->j_realblock;
  1418. while (cn) {
  1419. if (test_bit(BLOCK_NEEDS_FLUSH, &cn->state)) {
  1420. if (!cn->bh) {
  1421. reiserfs_panic(s, "journal-1011",
  1422. "cn->bh is NULL");
  1423. }
  1424. reiserfs_write_unlock(s);
  1425. wait_on_buffer(cn->bh);
  1426. reiserfs_write_lock(s);
  1427. if (!cn->bh) {
  1428. reiserfs_panic(s, "journal-1012",
  1429. "cn->bh is NULL");
  1430. }
  1431. if (unlikely(!buffer_uptodate(cn->bh))) {
  1432. #ifdef CONFIG_REISERFS_CHECK
  1433. reiserfs_warning(s, "journal-949",
  1434. "buffer write failed");
  1435. #endif
  1436. err = -EIO;
  1437. }
  1438. /* note, we must clear the JDirty_wait bit after the up to date
  1439. ** check, otherwise we race against our flushpage routine
  1440. */
  1441. BUG_ON(!test_clear_buffer_journal_dirty
  1442. (cn->bh));
  1443. /* drop one ref for us */
  1444. put_bh(cn->bh);
  1445. /* drop one ref for journal_mark_dirty */
  1446. release_buffer_page(cn->bh);
  1447. }
  1448. cn = cn->next;
  1449. }
  1450. }
  1451. if (err)
  1452. reiserfs_abort(s, -EIO,
  1453. "Write error while pushing transaction to disk in %s",
  1454. __func__);
  1455. flush_older_and_return:
  1456. /* before we can update the journal header block, we _must_ flush all
  1457. ** real blocks from all older transactions to disk. This is because
  1458. ** once the header block is updated, this transaction will not be
  1459. ** replayed after a crash
  1460. */
  1461. if (flushall) {
  1462. flush_older_journal_lists(s, jl);
  1463. }
  1464. err = journal->j_errno;
  1465. /* before we can remove everything from the hash tables for this
  1466. ** transaction, we must make sure it can never be replayed
  1467. **
  1468. ** since we are only called from do_journal_end, we know for sure there
  1469. ** are no allocations going on while we are flushing journal lists. So,
  1470. ** we only need to update the journal header block for the last list
  1471. ** being flushed
  1472. */
  1473. if (!err && flushall) {
  1474. err =
  1475. update_journal_header_block(s,
  1476. (jl->j_start + jl->j_len +
  1477. 2) % SB_ONDISK_JOURNAL_SIZE(s),
  1478. jl->j_trans_id);
  1479. if (err)
  1480. reiserfs_abort(s, -EIO,
  1481. "Write error while updating journal header in %s",
  1482. __func__);
  1483. }
  1484. remove_all_from_journal_list(s, jl, 0);
  1485. list_del_init(&jl->j_list);
  1486. journal->j_num_lists--;
  1487. del_from_work_list(s, jl);
  1488. if (journal->j_last_flush_id != 0 &&
  1489. (jl->j_trans_id - journal->j_last_flush_id) != 1) {
  1490. reiserfs_warning(s, "clm-2201", "last flush %lu, current %lu",
  1491. journal->j_last_flush_id, jl->j_trans_id);
  1492. }
  1493. journal->j_last_flush_id = jl->j_trans_id;
  1494. /* not strictly required since we are freeing the list, but it should
  1495. * help find code using dead lists later on
  1496. */
  1497. jl->j_len = 0;
  1498. atomic_set(&(jl->j_nonzerolen), 0);
  1499. jl->j_start = 0;
  1500. jl->j_realblock = NULL;
  1501. jl->j_commit_bh = NULL;
  1502. jl->j_trans_id = 0;
  1503. jl->j_state = 0;
  1504. put_journal_list(s, jl);
  1505. if (flushall)
  1506. mutex_unlock(&journal->j_flush_mutex);
  1507. put_fs_excl();
  1508. return err;
  1509. }
  1510. static int test_transaction(struct super_block *s,
  1511. struct reiserfs_journal_list *jl)
  1512. {
  1513. struct reiserfs_journal_cnode *cn;
  1514. if (jl->j_len == 0 || atomic_read(&jl->j_nonzerolen) == 0)
  1515. return 1;
  1516. cn = jl->j_realblock;
  1517. while (cn) {
  1518. /* if the blocknr == 0, this has been cleared from the hash,
  1519. ** skip it
  1520. */
  1521. if (cn->blocknr == 0) {
  1522. goto next;
  1523. }
  1524. if (cn->bh && !newer_jl_done(cn))
  1525. return 0;
  1526. next:
  1527. cn = cn->next;
  1528. cond_resched();
  1529. }
  1530. return 0;
  1531. }
  1532. static int write_one_transaction(struct super_block *s,
  1533. struct reiserfs_journal_list *jl,
  1534. struct buffer_chunk *chunk)
  1535. {
  1536. struct reiserfs_journal_cnode *cn;
  1537. int ret = 0;
  1538. jl->j_state |= LIST_TOUCHED;
  1539. del_from_work_list(s, jl);
  1540. if (jl->j_len == 0 || atomic_read(&jl->j_nonzerolen) == 0) {
  1541. return 0;
  1542. }
  1543. cn = jl->j_realblock;
  1544. while (cn) {
  1545. /* if the blocknr == 0, this has been cleared from the hash,
  1546. ** skip it
  1547. */
  1548. if (cn->blocknr == 0) {
  1549. goto next;
  1550. }
  1551. if (cn->bh && can_dirty(cn) && buffer_dirty(cn->bh)) {
  1552. struct buffer_head *tmp_bh;
  1553. /* we can race against journal_mark_freed when we try
  1554. * to lock_buffer(cn->bh), so we have to inc the buffer
  1555. * count, and recheck things after locking
  1556. */
  1557. tmp_bh = cn->bh;
  1558. get_bh(tmp_bh);
  1559. lock_buffer(tmp_bh);
  1560. if (cn->bh && can_dirty(cn) && buffer_dirty(tmp_bh)) {
  1561. if (!buffer_journal_dirty(tmp_bh) ||
  1562. buffer_journal_prepared(tmp_bh))
  1563. BUG();
  1564. add_to_chunk(chunk, tmp_bh, NULL, write_chunk);
  1565. ret++;
  1566. } else {
  1567. /* note, cn->bh might be null now */
  1568. unlock_buffer(tmp_bh);
  1569. }
  1570. put_bh(tmp_bh);
  1571. }
  1572. next:
  1573. cn = cn->next;
  1574. cond_resched();
  1575. }
  1576. return ret;
  1577. }
  1578. /* used by flush_commit_list */
  1579. static int dirty_one_transaction(struct super_block *s,
  1580. struct reiserfs_journal_list *jl)
  1581. {
  1582. struct reiserfs_journal_cnode *cn;
  1583. struct reiserfs_journal_list *pjl;
  1584. int ret = 0;
  1585. jl->j_state |= LIST_DIRTY;
  1586. cn = jl->j_realblock;
  1587. while (cn) {
  1588. /* look for a more recent transaction that logged this
  1589. ** buffer. Only the most recent transaction with a buffer in
  1590. ** it is allowed to send that buffer to disk
  1591. */
  1592. pjl = find_newer_jl_for_cn(cn);
  1593. if (!pjl && cn->blocknr && cn->bh
  1594. && buffer_journal_dirty(cn->bh)) {
  1595. BUG_ON(!can_dirty(cn));
  1596. /* if the buffer is prepared, it will either be logged
  1597. * or restored. If restored, we need to make sure
  1598. * it actually gets marked dirty
  1599. */
  1600. clear_buffer_journal_new(cn->bh);
  1601. if (buffer_journal_prepared(cn->bh)) {
  1602. set_buffer_journal_restore_dirty(cn->bh);
  1603. } else {
  1604. set_buffer_journal_test(cn->bh);
  1605. mark_buffer_dirty(cn->bh);
  1606. }
  1607. }
  1608. cn = cn->next;
  1609. }
  1610. return ret;
  1611. }
  1612. static int kupdate_transactions(struct super_block *s,
  1613. struct reiserfs_journal_list *jl,
  1614. struct reiserfs_journal_list **next_jl,
  1615. unsigned int *next_trans_id,
  1616. int num_blocks, int num_trans)
  1617. {
  1618. int ret = 0;
  1619. int written = 0;
  1620. int transactions_flushed = 0;
  1621. unsigned int orig_trans_id = jl->j_trans_id;
  1622. struct buffer_chunk chunk;
  1623. struct list_head *entry;
  1624. struct reiserfs_journal *journal = SB_JOURNAL(s);
  1625. chunk.nr = 0;
  1626. reiserfs_mutex_lock_safe(&journal->j_flush_mutex, s);
  1627. if (!journal_list_still_alive(s, orig_trans_id)) {
  1628. goto done;
  1629. }
  1630. /* we've got j_flush_mutex held, nobody is going to delete any
  1631. * of these lists out from underneath us
  1632. */
  1633. while ((num_trans && transactions_flushed < num_trans) ||
  1634. (!num_trans && written < num_blocks)) {
  1635. if (jl->j_len == 0 || (jl->j_state & LIST_TOUCHED) ||
  1636. atomic_read(&jl->j_commit_left)
  1637. || !(jl->j_state & LIST_DIRTY)) {
  1638. del_from_work_list(s, jl);
  1639. break;
  1640. }
  1641. ret = write_one_transaction(s, jl, &chunk);
  1642. if (ret < 0)
  1643. goto done;
  1644. transactions_flushed++;
  1645. written += ret;
  1646. entry = jl->j_list.next;
  1647. /* did we wrap? */
  1648. if (entry == &journal->j_journal_list) {
  1649. break;
  1650. }
  1651. jl = JOURNAL_LIST_ENTRY(entry);
  1652. /* don't bother with older transactions */
  1653. if (jl->j_trans_id <= orig_trans_id)
  1654. break;
  1655. }
  1656. if (chunk.nr) {
  1657. write_chunk(&chunk);
  1658. }
  1659. done:
  1660. mutex_unlock(&journal->j_flush_mutex);
  1661. return ret;
  1662. }
  1663. /* for o_sync and fsync heavy applications, they tend to use
  1664. ** all the journa list slots with tiny transactions. These
  1665. ** trigger lots and lots of calls to update the header block, which
  1666. ** adds seeks and slows things down.
  1667. **
  1668. ** This function tries to clear out a large chunk of the journal lists
  1669. ** at once, which makes everything faster since only the newest journal
  1670. ** list updates the header block
  1671. */
  1672. static int flush_used_journal_lists(struct super_block *s,
  1673. struct reiserfs_journal_list *jl)
  1674. {
  1675. unsigned long len = 0;
  1676. unsigned long cur_len;
  1677. int ret;
  1678. int i;
  1679. int limit = 256;
  1680. struct reiserfs_journal_list *tjl;
  1681. struct reiserfs_journal_list *flush_jl;
  1682. unsigned int trans_id;
  1683. struct reiserfs_journal *journal = SB_JOURNAL(s);
  1684. flush_jl = tjl = jl;
  1685. /* in data logging mode, try harder to flush a lot of blocks */
  1686. if (reiserfs_data_log(s))
  1687. limit = 1024;
  1688. /* flush for 256 transactions or limit blocks, whichever comes first */
  1689. for (i = 0; i < 256 && len < limit; i++) {
  1690. if (atomic_read(&tjl->j_commit_left) ||
  1691. tjl->j_trans_id < jl->j_trans_id) {
  1692. break;
  1693. }
  1694. cur_len = atomic_read(&tjl->j_nonzerolen);
  1695. if (cur_len > 0) {
  1696. tjl->j_state &= ~LIST_TOUCHED;
  1697. }
  1698. len += cur_len;
  1699. flush_jl = tjl;
  1700. if (tjl->j_list.next == &journal->j_journal_list)
  1701. break;
  1702. tjl = JOURNAL_LIST_ENTRY(tjl->j_list.next);
  1703. }
  1704. /* try to find a group of blocks we can flush across all the
  1705. ** transactions, but only bother if we've actually spanned
  1706. ** across multiple lists
  1707. */
  1708. if (flush_jl != jl) {
  1709. ret = kupdate_transactions(s, jl, &tjl, &trans_id, len, i);
  1710. }
  1711. flush_journal_list(s, flush_jl, 1);
  1712. return 0;
  1713. }
  1714. /*
  1715. ** removes any nodes in table with name block and dev as bh.
  1716. ** only touchs the hnext and hprev pointers.
  1717. */
  1718. void remove_journal_hash(struct super_block *sb,
  1719. struct reiserfs_journal_cnode **table,
  1720. struct reiserfs_journal_list *jl,
  1721. unsigned long block, int remove_freed)
  1722. {
  1723. struct reiserfs_journal_cnode *cur;
  1724. struct reiserfs_journal_cnode **head;
  1725. head = &(journal_hash(table, sb, block));
  1726. if (!head) {
  1727. return;
  1728. }
  1729. cur = *head;
  1730. while (cur) {
  1731. if (cur->blocknr == block && cur->sb == sb
  1732. && (jl == NULL || jl == cur->jlist)
  1733. && (!test_bit(BLOCK_FREED, &cur->state) || remove_freed)) {
  1734. if (cur->hnext) {
  1735. cur->hnext->hprev = cur->hprev;
  1736. }
  1737. if (cur->hprev) {
  1738. cur->hprev->hnext = cur->hnext;
  1739. } else {
  1740. *head = cur->hnext;
  1741. }
  1742. cur->blocknr = 0;
  1743. cur->sb = NULL;
  1744. cur->state = 0;
  1745. if (cur->bh && cur->jlist) /* anybody who clears the cur->bh will also dec the nonzerolen */
  1746. atomic_dec(&(cur->jlist->j_nonzerolen));
  1747. cur->bh = NULL;
  1748. cur->jlist = NULL;
  1749. }
  1750. cur = cur->hnext;
  1751. }
  1752. }
  1753. static void free_journal_ram(struct super_block *sb)
  1754. {
  1755. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  1756. kfree(journal->j_current_jl);
  1757. journal->j_num_lists--;
  1758. vfree(journal->j_cnode_free_orig);
  1759. free_list_bitmaps(sb, journal->j_list_bitmap);
  1760. free_bitmap_nodes(sb); /* must be after free_list_bitmaps */
  1761. if (journal->j_header_bh) {
  1762. brelse(journal->j_header_bh);
  1763. }
  1764. /* j_header_bh is on the journal dev, make sure not to release the journal
  1765. * dev until we brelse j_header_bh
  1766. */
  1767. release_journal_dev(sb, journal);
  1768. vfree(journal);
  1769. }
  1770. /*
  1771. ** call on unmount. Only set error to 1 if you haven't made your way out
  1772. ** of read_super() yet. Any other caller must keep error at 0.
  1773. */
  1774. static int do_journal_release(struct reiserfs_transaction_handle *th,
  1775. struct super_block *sb, int error)
  1776. {
  1777. struct reiserfs_transaction_handle myth;
  1778. int flushed = 0;
  1779. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  1780. /* we only want to flush out transactions if we were called with error == 0
  1781. */
  1782. if (!error && !(sb->s_flags & MS_RDONLY)) {
  1783. /* end the current trans */
  1784. BUG_ON(!th->t_trans_id);
  1785. do_journal_end(th, sb, 10, FLUSH_ALL);
  1786. /* make sure something gets logged to force our way into the flush code */
  1787. if (!journal_join(&myth, sb, 1)) {
  1788. reiserfs_prepare_for_journal(sb,
  1789. SB_BUFFER_WITH_SB(sb),
  1790. 1);
  1791. journal_mark_dirty(&myth, sb,
  1792. SB_BUFFER_WITH_SB(sb));
  1793. do_journal_end(&myth, sb, 1, FLUSH_ALL);
  1794. flushed = 1;
  1795. }
  1796. }
  1797. /* this also catches errors during the do_journal_end above */
  1798. if (!error && reiserfs_is_journal_aborted(journal)) {
  1799. memset(&myth, 0, sizeof(myth));
  1800. if (!journal_join_abort(&myth, sb, 1)) {
  1801. reiserfs_prepare_for_journal(sb,
  1802. SB_BUFFER_WITH_SB(sb),
  1803. 1);
  1804. journal_mark_dirty(&myth, sb,
  1805. SB_BUFFER_WITH_SB(sb));
  1806. do_journal_end(&myth, sb, 1, FLUSH_ALL);
  1807. }
  1808. }
  1809. reiserfs_mounted_fs_count--;
  1810. /* wait for all commits to finish */
  1811. cancel_delayed_work(&SB_JOURNAL(sb)->j_work);
  1812. /*
  1813. * We must release the write lock here because
  1814. * the workqueue job (flush_async_commit) needs this lock
  1815. */
  1816. reiserfs_write_unlock(sb);
  1817. flush_workqueue(commit_wq);
  1818. if (!reiserfs_mounted_fs_count) {
  1819. destroy_workqueue(commit_wq);
  1820. commit_wq = NULL;
  1821. }
  1822. free_journal_ram(sb);
  1823. reiserfs_write_lock(sb);
  1824. return 0;
  1825. }
  1826. /*
  1827. ** call on unmount. flush all journal trans, release all alloc'd ram
  1828. */
  1829. int journal_release(struct reiserfs_transaction_handle *th,
  1830. struct super_block *sb)
  1831. {
  1832. return do_journal_release(th, sb, 0);
  1833. }
  1834. /*
  1835. ** only call from an error condition inside reiserfs_read_super!
  1836. */
  1837. int journal_release_error(struct reiserfs_transaction_handle *th,
  1838. struct super_block *sb)
  1839. {
  1840. return do_journal_release(th, sb, 1);
  1841. }
  1842. /* compares description block with commit block. returns 1 if they differ, 0 if they are the same */
  1843. static int journal_compare_desc_commit(struct super_block *sb,
  1844. struct reiserfs_journal_desc *desc,
  1845. struct reiserfs_journal_commit *commit)
  1846. {
  1847. if (get_commit_trans_id(commit) != get_desc_trans_id(desc) ||
  1848. get_commit_trans_len(commit) != get_desc_trans_len(desc) ||
  1849. get_commit_trans_len(commit) > SB_JOURNAL(sb)->j_trans_max ||
  1850. get_commit_trans_len(commit) <= 0) {
  1851. return 1;
  1852. }
  1853. return 0;
  1854. }
  1855. /* returns 0 if it did not find a description block
  1856. ** returns -1 if it found a corrupt commit block
  1857. ** returns 1 if both desc and commit were valid
  1858. */
  1859. static int journal_transaction_is_valid(struct super_block *sb,
  1860. struct buffer_head *d_bh,
  1861. unsigned int *oldest_invalid_trans_id,
  1862. unsigned long *newest_mount_id)
  1863. {
  1864. struct reiserfs_journal_desc *desc;
  1865. struct reiserfs_journal_commit *commit;
  1866. struct buffer_head *c_bh;
  1867. unsigned long offset;
  1868. if (!d_bh)
  1869. return 0;
  1870. desc = (struct reiserfs_journal_desc *)d_bh->b_data;
  1871. if (get_desc_trans_len(desc) > 0
  1872. && !memcmp(get_journal_desc_magic(d_bh), JOURNAL_DESC_MAGIC, 8)) {
  1873. if (oldest_invalid_trans_id && *oldest_invalid_trans_id
  1874. && get_desc_trans_id(desc) > *oldest_invalid_trans_id) {
  1875. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  1876. "journal-986: transaction "
  1877. "is valid returning because trans_id %d is greater than "
  1878. "oldest_invalid %lu",
  1879. get_desc_trans_id(desc),
  1880. *oldest_invalid_trans_id);
  1881. return 0;
  1882. }
  1883. if (newest_mount_id
  1884. && *newest_mount_id > get_desc_mount_id(desc)) {
  1885. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  1886. "journal-1087: transaction "
  1887. "is valid returning because mount_id %d is less than "
  1888. "newest_mount_id %lu",
  1889. get_desc_mount_id(desc),
  1890. *newest_mount_id);
  1891. return -1;
  1892. }
  1893. if (get_desc_trans_len(desc) > SB_JOURNAL(sb)->j_trans_max) {
  1894. reiserfs_warning(sb, "journal-2018",
  1895. "Bad transaction length %d "
  1896. "encountered, ignoring transaction",
  1897. get_desc_trans_len(desc));
  1898. return -1;
  1899. }
  1900. offset = d_bh->b_blocknr - SB_ONDISK_JOURNAL_1st_BLOCK(sb);
  1901. /* ok, we have a journal description block, lets see if the transaction was valid */
  1902. c_bh =
  1903. journal_bread(sb,
  1904. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  1905. ((offset + get_desc_trans_len(desc) +
  1906. 1) % SB_ONDISK_JOURNAL_SIZE(sb)));
  1907. if (!c_bh)
  1908. return 0;
  1909. commit = (struct reiserfs_journal_commit *)c_bh->b_data;
  1910. if (journal_compare_desc_commit(sb, desc, commit)) {
  1911. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  1912. "journal_transaction_is_valid, commit offset %ld had bad "
  1913. "time %d or length %d",
  1914. c_bh->b_blocknr -
  1915. SB_ONDISK_JOURNAL_1st_BLOCK(sb),
  1916. get_commit_trans_id(commit),
  1917. get_commit_trans_len(commit));
  1918. brelse(c_bh);
  1919. if (oldest_invalid_trans_id) {
  1920. *oldest_invalid_trans_id =
  1921. get_desc_trans_id(desc);
  1922. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  1923. "journal-1004: "
  1924. "transaction_is_valid setting oldest invalid trans_id "
  1925. "to %d",
  1926. get_desc_trans_id(desc));
  1927. }
  1928. return -1;
  1929. }
  1930. brelse(c_bh);
  1931. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  1932. "journal-1006: found valid "
  1933. "transaction start offset %llu, len %d id %d",
  1934. d_bh->b_blocknr -
  1935. SB_ONDISK_JOURNAL_1st_BLOCK(sb),
  1936. get_desc_trans_len(desc),
  1937. get_desc_trans_id(desc));
  1938. return 1;
  1939. } else {
  1940. return 0;
  1941. }
  1942. }
  1943. static void brelse_array(struct buffer_head **heads, int num)
  1944. {
  1945. int i;
  1946. for (i = 0; i < num; i++) {
  1947. brelse(heads[i]);
  1948. }
  1949. }
  1950. /*
  1951. ** given the start, and values for the oldest acceptable transactions,
  1952. ** this either reads in a replays a transaction, or returns because the transaction
  1953. ** is invalid, or too old.
  1954. */
  1955. static int journal_read_transaction(struct super_block *sb,
  1956. unsigned long cur_dblock,
  1957. unsigned long oldest_start,
  1958. unsigned int oldest_trans_id,
  1959. unsigned long newest_mount_id)
  1960. {
  1961. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  1962. struct reiserfs_journal_desc *desc;
  1963. struct reiserfs_journal_commit *commit;
  1964. unsigned int trans_id = 0;
  1965. struct buffer_head *c_bh;
  1966. struct buffer_head *d_bh;
  1967. struct buffer_head **log_blocks = NULL;
  1968. struct buffer_head **real_blocks = NULL;
  1969. unsigned int trans_offset;
  1970. int i;
  1971. int trans_half;
  1972. d_bh = journal_bread(sb, cur_dblock);
  1973. if (!d_bh)
  1974. return 1;
  1975. desc = (struct reiserfs_journal_desc *)d_bh->b_data;
  1976. trans_offset = d_bh->b_blocknr - SB_ONDISK_JOURNAL_1st_BLOCK(sb);
  1977. reiserfs_debug(sb, REISERFS_DEBUG_CODE, "journal-1037: "
  1978. "journal_read_transaction, offset %llu, len %d mount_id %d",
  1979. d_bh->b_blocknr - SB_ONDISK_JOURNAL_1st_BLOCK(sb),
  1980. get_desc_trans_len(desc), get_desc_mount_id(desc));
  1981. if (get_desc_trans_id(desc) < oldest_trans_id) {
  1982. reiserfs_debug(sb, REISERFS_DEBUG_CODE, "journal-1039: "
  1983. "journal_read_trans skipping because %lu is too old",
  1984. cur_dblock -
  1985. SB_ONDISK_JOURNAL_1st_BLOCK(sb));
  1986. brelse(d_bh);
  1987. return 1;
  1988. }
  1989. if (get_desc_mount_id(desc) != newest_mount_id) {
  1990. reiserfs_debug(sb, REISERFS_DEBUG_CODE, "journal-1146: "
  1991. "journal_read_trans skipping because %d is != "
  1992. "newest_mount_id %lu", get_desc_mount_id(desc),
  1993. newest_mount_id);
  1994. brelse(d_bh);
  1995. return 1;
  1996. }
  1997. c_bh = journal_bread(sb, SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  1998. ((trans_offset + get_desc_trans_len(desc) + 1) %
  1999. SB_ONDISK_JOURNAL_SIZE(sb)));
  2000. if (!c_bh) {
  2001. brelse(d_bh);
  2002. return 1;
  2003. }
  2004. commit = (struct reiserfs_journal_commit *)c_bh->b_data;
  2005. if (journal_compare_desc_commit(sb, desc, commit)) {
  2006. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  2007. "journal_read_transaction, "
  2008. "commit offset %llu had bad time %d or length %d",
  2009. c_bh->b_blocknr -
  2010. SB_ONDISK_JOURNAL_1st_BLOCK(sb),
  2011. get_commit_trans_id(commit),
  2012. get_commit_trans_len(commit));
  2013. brelse(c_bh);
  2014. brelse(d_bh);
  2015. return 1;
  2016. }
  2017. if (bdev_read_only(sb->s_bdev)) {
  2018. reiserfs_warning(sb, "clm-2076",
  2019. "device is readonly, unable to replay log");
  2020. brelse(c_bh);
  2021. brelse(d_bh);
  2022. return -EROFS;
  2023. }
  2024. trans_id = get_desc_trans_id(desc);
  2025. /* now we know we've got a good transaction, and it was inside the valid time ranges */
  2026. log_blocks = kmalloc(get_desc_trans_len(desc) *
  2027. sizeof(struct buffer_head *), GFP_NOFS);
  2028. real_blocks = kmalloc(get_desc_trans_len(desc) *
  2029. sizeof(struct buffer_head *), GFP_NOFS);
  2030. if (!log_blocks || !real_blocks) {
  2031. brelse(c_bh);
  2032. brelse(d_bh);
  2033. kfree(log_blocks);
  2034. kfree(real_blocks);
  2035. reiserfs_warning(sb, "journal-1169",
  2036. "kmalloc failed, unable to mount FS");
  2037. return -1;
  2038. }
  2039. /* get all the buffer heads */
  2040. trans_half = journal_trans_half(sb->s_blocksize);
  2041. for (i = 0; i < get_desc_trans_len(desc); i++) {
  2042. log_blocks[i] =
  2043. journal_getblk(sb,
  2044. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  2045. (trans_offset + 1 +
  2046. i) % SB_ONDISK_JOURNAL_SIZE(sb));
  2047. if (i < trans_half) {
  2048. real_blocks[i] =
  2049. sb_getblk(sb,
  2050. le32_to_cpu(desc->j_realblock[i]));
  2051. } else {
  2052. real_blocks[i] =
  2053. sb_getblk(sb,
  2054. le32_to_cpu(commit->
  2055. j_realblock[i - trans_half]));
  2056. }
  2057. if (real_blocks[i]->b_blocknr > SB_BLOCK_COUNT(sb)) {
  2058. reiserfs_warning(sb, "journal-1207",
  2059. "REPLAY FAILURE fsck required! "
  2060. "Block to replay is outside of "
  2061. "filesystem");
  2062. goto abort_replay;
  2063. }
  2064. /* make sure we don't try to replay onto log or reserved area */
  2065. if (is_block_in_log_or_reserved_area
  2066. (sb, real_blocks[i]->b_blocknr)) {
  2067. reiserfs_warning(sb, "journal-1204",
  2068. "REPLAY FAILURE fsck required! "
  2069. "Trying to replay onto a log block");
  2070. abort_replay:
  2071. brelse_array(log_blocks, i);
  2072. brelse_array(real_blocks, i);
  2073. brelse(c_bh);
  2074. brelse(d_bh);
  2075. kfree(log_blocks);
  2076. kfree(real_blocks);
  2077. return -1;
  2078. }
  2079. }
  2080. /* read in the log blocks, memcpy to the corresponding real block */
  2081. ll_rw_block(READ, get_desc_trans_len(desc), log_blocks);
  2082. for (i = 0; i < get_desc_trans_len(desc); i++) {
  2083. reiserfs_write_unlock(sb);
  2084. wait_on_buffer(log_blocks[i]);
  2085. reiserfs_write_lock(sb);
  2086. if (!buffer_uptodate(log_blocks[i])) {
  2087. reiserfs_warning(sb, "journal-1212",
  2088. "REPLAY FAILURE fsck required! "
  2089. "buffer write failed");
  2090. brelse_array(log_blocks + i,
  2091. get_desc_trans_len(desc) - i);
  2092. brelse_array(real_blocks, get_desc_trans_len(desc));
  2093. brelse(c_bh);
  2094. brelse(d_bh);
  2095. kfree(log_blocks);
  2096. kfree(real_blocks);
  2097. return -1;
  2098. }
  2099. memcpy(real_blocks[i]->b_data, log_blocks[i]->b_data,
  2100. real_blocks[i]->b_size);
  2101. set_buffer_uptodate(real_blocks[i]);
  2102. brelse(log_blocks[i]);
  2103. }
  2104. /* flush out the real blocks */
  2105. for (i = 0; i < get_desc_trans_len(desc); i++) {
  2106. set_buffer_dirty(real_blocks[i]);
  2107. write_dirty_buffer(real_blocks[i], WRITE);
  2108. }
  2109. for (i = 0; i < get_desc_trans_len(desc); i++) {
  2110. wait_on_buffer(real_blocks[i]);
  2111. if (!buffer_uptodate(real_blocks[i])) {
  2112. reiserfs_warning(sb, "journal-1226",
  2113. "REPLAY FAILURE, fsck required! "
  2114. "buffer write failed");
  2115. brelse_array(real_blocks + i,
  2116. get_desc_trans_len(desc) - i);
  2117. brelse(c_bh);
  2118. brelse(d_bh);
  2119. kfree(log_blocks);
  2120. kfree(real_blocks);
  2121. return -1;
  2122. }
  2123. brelse(real_blocks[i]);
  2124. }
  2125. cur_dblock =
  2126. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  2127. ((trans_offset + get_desc_trans_len(desc) +
  2128. 2) % SB_ONDISK_JOURNAL_SIZE(sb));
  2129. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  2130. "journal-1095: setting journal " "start to offset %ld",
  2131. cur_dblock - SB_ONDISK_JOURNAL_1st_BLOCK(sb));
  2132. /* init starting values for the first transaction, in case this is the last transaction to be replayed. */
  2133. journal->j_start = cur_dblock - SB_ONDISK_JOURNAL_1st_BLOCK(sb);
  2134. journal->j_last_flush_trans_id = trans_id;
  2135. journal->j_trans_id = trans_id + 1;
  2136. /* check for trans_id overflow */
  2137. if (journal->j_trans_id == 0)
  2138. journal->j_trans_id = 10;
  2139. brelse(c_bh);
  2140. brelse(d_bh);
  2141. kfree(log_blocks);
  2142. kfree(real_blocks);
  2143. return 0;
  2144. }
  2145. /* This function reads blocks starting from block and to max_block of bufsize
  2146. size (but no more than BUFNR blocks at a time). This proved to improve
  2147. mounting speed on self-rebuilding raid5 arrays at least.
  2148. Right now it is only used from journal code. But later we might use it
  2149. from other places.
  2150. Note: Do not use journal_getblk/sb_getblk functions here! */
  2151. static struct buffer_head *reiserfs_breada(struct block_device *dev,
  2152. b_blocknr_t block, int bufsize,
  2153. b_blocknr_t max_block)
  2154. {
  2155. struct buffer_head *bhlist[BUFNR];
  2156. unsigned int blocks = BUFNR;
  2157. struct buffer_head *bh;
  2158. int i, j;
  2159. bh = __getblk(dev, block, bufsize);
  2160. if (buffer_uptodate(bh))
  2161. return (bh);
  2162. if (block + BUFNR > max_block) {
  2163. blocks = max_block - block;
  2164. }
  2165. bhlist[0] = bh;
  2166. j = 1;
  2167. for (i = 1; i < blocks; i++) {
  2168. bh = __getblk(dev, block + i, bufsize);
  2169. if (buffer_uptodate(bh)) {
  2170. brelse(bh);
  2171. break;
  2172. } else
  2173. bhlist[j++] = bh;
  2174. }
  2175. ll_rw_block(READ, j, bhlist);
  2176. for (i = 1; i < j; i++)
  2177. brelse(bhlist[i]);
  2178. bh = bhlist[0];
  2179. wait_on_buffer(bh);
  2180. if (buffer_uptodate(bh))
  2181. return bh;
  2182. brelse(bh);
  2183. return NULL;
  2184. }
  2185. /*
  2186. ** read and replay the log
  2187. ** on a clean unmount, the journal header's next unflushed pointer will be to an invalid
  2188. ** transaction. This tests that before finding all the transactions in the log, which makes normal mount times fast.
  2189. **
  2190. ** After a crash, this starts with the next unflushed transaction, and replays until it finds one too old, or invalid.
  2191. **
  2192. ** On exit, it sets things up so the first transaction will work correctly.
  2193. */
  2194. static int journal_read(struct super_block *sb)
  2195. {
  2196. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  2197. struct reiserfs_journal_desc *desc;
  2198. unsigned int oldest_trans_id = 0;
  2199. unsigned int oldest_invalid_trans_id = 0;
  2200. time_t start;
  2201. unsigned long oldest_start = 0;
  2202. unsigned long cur_dblock = 0;
  2203. unsigned long newest_mount_id = 9;
  2204. struct buffer_head *d_bh;
  2205. struct reiserfs_journal_header *jh;
  2206. int valid_journal_header = 0;
  2207. int replay_count = 0;
  2208. int continue_replay = 1;
  2209. int ret;
  2210. char b[BDEVNAME_SIZE];
  2211. cur_dblock = SB_ONDISK_JOURNAL_1st_BLOCK(sb);
  2212. reiserfs_info(sb, "checking transaction log (%s)\n",
  2213. bdevname(journal->j_dev_bd, b));
  2214. start = get_seconds();
  2215. /* step 1, read in the journal header block. Check the transaction it says
  2216. ** is the first unflushed, and if that transaction is not valid,
  2217. ** replay is done
  2218. */
  2219. journal->j_header_bh = journal_bread(sb,
  2220. SB_ONDISK_JOURNAL_1st_BLOCK(sb)
  2221. + SB_ONDISK_JOURNAL_SIZE(sb));
  2222. if (!journal->j_header_bh) {
  2223. return 1;
  2224. }
  2225. jh = (struct reiserfs_journal_header *)(journal->j_header_bh->b_data);
  2226. if (le32_to_cpu(jh->j_first_unflushed_offset) <
  2227. SB_ONDISK_JOURNAL_SIZE(sb)
  2228. && le32_to_cpu(jh->j_last_flush_trans_id) > 0) {
  2229. oldest_start =
  2230. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  2231. le32_to_cpu(jh->j_first_unflushed_offset);
  2232. oldest_trans_id = le32_to_cpu(jh->j_last_flush_trans_id) + 1;
  2233. newest_mount_id = le32_to_cpu(jh->j_mount_id);
  2234. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  2235. "journal-1153: found in "
  2236. "header: first_unflushed_offset %d, last_flushed_trans_id "
  2237. "%lu", le32_to_cpu(jh->j_first_unflushed_offset),
  2238. le32_to_cpu(jh->j_last_flush_trans_id));
  2239. valid_journal_header = 1;
  2240. /* now, we try to read the first unflushed offset. If it is not valid,
  2241. ** there is nothing more we can do, and it makes no sense to read
  2242. ** through the whole log.
  2243. */
  2244. d_bh =
  2245. journal_bread(sb,
  2246. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  2247. le32_to_cpu(jh->j_first_unflushed_offset));
  2248. ret = journal_transaction_is_valid(sb, d_bh, NULL, NULL);
  2249. if (!ret) {
  2250. continue_replay = 0;
  2251. }
  2252. brelse(d_bh);
  2253. goto start_log_replay;
  2254. }
  2255. /* ok, there are transactions that need to be replayed. start with the first log block, find
  2256. ** all the valid transactions, and pick out the oldest.
  2257. */
  2258. while (continue_replay
  2259. && cur_dblock <
  2260. (SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  2261. SB_ONDISK_JOURNAL_SIZE(sb))) {
  2262. /* Note that it is required for blocksize of primary fs device and journal
  2263. device to be the same */
  2264. d_bh =
  2265. reiserfs_breada(journal->j_dev_bd, cur_dblock,
  2266. sb->s_blocksize,
  2267. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  2268. SB_ONDISK_JOURNAL_SIZE(sb));
  2269. ret =
  2270. journal_transaction_is_valid(sb, d_bh,
  2271. &oldest_invalid_trans_id,
  2272. &newest_mount_id);
  2273. if (ret == 1) {
  2274. desc = (struct reiserfs_journal_desc *)d_bh->b_data;
  2275. if (oldest_start == 0) { /* init all oldest_ values */
  2276. oldest_trans_id = get_desc_trans_id(desc);
  2277. oldest_start = d_bh->b_blocknr;
  2278. newest_mount_id = get_desc_mount_id(desc);
  2279. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  2280. "journal-1179: Setting "
  2281. "oldest_start to offset %llu, trans_id %lu",
  2282. oldest_start -
  2283. SB_ONDISK_JOURNAL_1st_BLOCK
  2284. (sb), oldest_trans_id);
  2285. } else if (oldest_trans_id > get_desc_trans_id(desc)) {
  2286. /* one we just read was older */
  2287. oldest_trans_id = get_desc_trans_id(desc);
  2288. oldest_start = d_bh->b_blocknr;
  2289. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  2290. "journal-1180: Resetting "
  2291. "oldest_start to offset %lu, trans_id %lu",
  2292. oldest_start -
  2293. SB_ONDISK_JOURNAL_1st_BLOCK
  2294. (sb), oldest_trans_id);
  2295. }
  2296. if (newest_mount_id < get_desc_mount_id(desc)) {
  2297. newest_mount_id = get_desc_mount_id(desc);
  2298. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  2299. "journal-1299: Setting "
  2300. "newest_mount_id to %d",
  2301. get_desc_mount_id(desc));
  2302. }
  2303. cur_dblock += get_desc_trans_len(desc) + 2;
  2304. } else {
  2305. cur_dblock++;
  2306. }
  2307. brelse(d_bh);
  2308. }
  2309. start_log_replay:
  2310. cur_dblock = oldest_start;
  2311. if (oldest_trans_id) {
  2312. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  2313. "journal-1206: Starting replay "
  2314. "from offset %llu, trans_id %lu",
  2315. cur_dblock - SB_ONDISK_JOURNAL_1st_BLOCK(sb),
  2316. oldest_trans_id);
  2317. }
  2318. replay_count = 0;
  2319. while (continue_replay && oldest_trans_id > 0) {
  2320. ret =
  2321. journal_read_transaction(sb, cur_dblock, oldest_start,
  2322. oldest_trans_id, newest_mount_id);
  2323. if (ret < 0) {
  2324. return ret;
  2325. } else if (ret != 0) {
  2326. break;
  2327. }
  2328. cur_dblock =
  2329. SB_ONDISK_JOURNAL_1st_BLOCK(sb) + journal->j_start;
  2330. replay_count++;
  2331. if (cur_dblock == oldest_start)
  2332. break;
  2333. }
  2334. if (oldest_trans_id == 0) {
  2335. reiserfs_debug(sb, REISERFS_DEBUG_CODE,
  2336. "journal-1225: No valid " "transactions found");
  2337. }
  2338. /* j_start does not get set correctly if we don't replay any transactions.
  2339. ** if we had a valid journal_header, set j_start to the first unflushed transaction value,
  2340. ** copy the trans_id from the header
  2341. */
  2342. if (valid_journal_header && replay_count == 0) {
  2343. journal->j_start = le32_to_cpu(jh->j_first_unflushed_offset);
  2344. journal->j_trans_id =
  2345. le32_to_cpu(jh->j_last_flush_trans_id) + 1;
  2346. /* check for trans_id overflow */
  2347. if (journal->j_trans_id == 0)
  2348. journal->j_trans_id = 10;
  2349. journal->j_last_flush_trans_id =
  2350. le32_to_cpu(jh->j_last_flush_trans_id);
  2351. journal->j_mount_id = le32_to_cpu(jh->j_mount_id) + 1;
  2352. } else {
  2353. journal->j_mount_id = newest_mount_id + 1;
  2354. }
  2355. reiserfs_debug(sb, REISERFS_DEBUG_CODE, "journal-1299: Setting "
  2356. "newest_mount_id to %lu", journal->j_mount_id);
  2357. journal->j_first_unflushed_offset = journal->j_start;
  2358. if (replay_count > 0) {
  2359. reiserfs_info(sb,
  2360. "replayed %d transactions in %lu seconds\n",
  2361. replay_count, get_seconds() - start);
  2362. }
  2363. if (!bdev_read_only(sb->s_bdev) &&
  2364. _update_journal_header_block(sb, journal->j_start,
  2365. journal->j_last_flush_trans_id)) {
  2366. /* replay failed, caller must call free_journal_ram and abort
  2367. ** the mount
  2368. */
  2369. return -1;
  2370. }
  2371. return 0;
  2372. }
  2373. static struct reiserfs_journal_list *alloc_journal_list(struct super_block *s)
  2374. {
  2375. struct reiserfs_journal_list *jl;
  2376. jl = kzalloc(sizeof(struct reiserfs_journal_list),
  2377. GFP_NOFS | __GFP_NOFAIL);
  2378. INIT_LIST_HEAD(&jl->j_list);
  2379. INIT_LIST_HEAD(&jl->j_working_list);
  2380. INIT_LIST_HEAD(&jl->j_tail_bh_list);
  2381. INIT_LIST_HEAD(&jl->j_bh_list);
  2382. mutex_init(&jl->j_commit_mutex);
  2383. SB_JOURNAL(s)->j_num_lists++;
  2384. get_journal_list(jl);
  2385. return jl;
  2386. }
  2387. static void journal_list_init(struct super_block *sb)
  2388. {
  2389. SB_JOURNAL(sb)->j_current_jl = alloc_journal_list(sb);
  2390. }
  2391. static int release_journal_dev(struct super_block *super,
  2392. struct reiserfs_journal *journal)
  2393. {
  2394. int result;
  2395. result = 0;
  2396. if (journal->j_dev_bd != NULL) {
  2397. if (journal->j_dev_bd->bd_dev != super->s_dev)
  2398. bd_release(journal->j_dev_bd);
  2399. result = blkdev_put(journal->j_dev_bd, journal->j_dev_mode);
  2400. journal->j_dev_bd = NULL;
  2401. }
  2402. if (result != 0) {
  2403. reiserfs_warning(super, "sh-457",
  2404. "Cannot release journal device: %i", result);
  2405. }
  2406. return result;
  2407. }
  2408. static int journal_init_dev(struct super_block *super,
  2409. struct reiserfs_journal *journal,
  2410. const char *jdev_name)
  2411. {
  2412. int result;
  2413. dev_t jdev;
  2414. fmode_t blkdev_mode = FMODE_READ | FMODE_WRITE;
  2415. char b[BDEVNAME_SIZE];
  2416. result = 0;
  2417. journal->j_dev_bd = NULL;
  2418. jdev = SB_ONDISK_JOURNAL_DEVICE(super) ?
  2419. new_decode_dev(SB_ONDISK_JOURNAL_DEVICE(super)) : super->s_dev;
  2420. if (bdev_read_only(super->s_bdev))
  2421. blkdev_mode = FMODE_READ;
  2422. /* there is no "jdev" option and journal is on separate device */
  2423. if ((!jdev_name || !jdev_name[0])) {
  2424. journal->j_dev_bd = open_by_devnum(jdev, blkdev_mode);
  2425. journal->j_dev_mode = blkdev_mode;
  2426. if (IS_ERR(journal->j_dev_bd)) {
  2427. result = PTR_ERR(journal->j_dev_bd);
  2428. journal->j_dev_bd = NULL;
  2429. reiserfs_warning(super, "sh-458",
  2430. "cannot init journal device '%s': %i",
  2431. __bdevname(jdev, b), result);
  2432. return result;
  2433. } else if (jdev != super->s_dev) {
  2434. result = bd_claim(journal->j_dev_bd, journal);
  2435. if (result) {
  2436. blkdev_put(journal->j_dev_bd, blkdev_mode);
  2437. return result;
  2438. }
  2439. set_blocksize(journal->j_dev_bd, super->s_blocksize);
  2440. }
  2441. return 0;
  2442. }
  2443. journal->j_dev_mode = blkdev_mode;
  2444. journal->j_dev_bd = open_bdev_exclusive(jdev_name,
  2445. blkdev_mode, journal);
  2446. if (IS_ERR(journal->j_dev_bd)) {
  2447. result = PTR_ERR(journal->j_dev_bd);
  2448. journal->j_dev_bd = NULL;
  2449. reiserfs_warning(super,
  2450. "journal_init_dev: Cannot open '%s': %i",
  2451. jdev_name, result);
  2452. return result;
  2453. }
  2454. set_blocksize(journal->j_dev_bd, super->s_blocksize);
  2455. reiserfs_info(super,
  2456. "journal_init_dev: journal device: %s\n",
  2457. bdevname(journal->j_dev_bd, b));
  2458. return 0;
  2459. }
  2460. /**
  2461. * When creating/tuning a file system user can assign some
  2462. * journal params within boundaries which depend on the ratio
  2463. * blocksize/standard_blocksize.
  2464. *
  2465. * For blocks >= standard_blocksize transaction size should
  2466. * be not less then JOURNAL_TRANS_MIN_DEFAULT, and not more
  2467. * then JOURNAL_TRANS_MAX_DEFAULT.
  2468. *
  2469. * For blocks < standard_blocksize these boundaries should be
  2470. * decreased proportionally.
  2471. */
  2472. #define REISERFS_STANDARD_BLKSIZE (4096)
  2473. static int check_advise_trans_params(struct super_block *sb,
  2474. struct reiserfs_journal *journal)
  2475. {
  2476. if (journal->j_trans_max) {
  2477. /* Non-default journal params.
  2478. Do sanity check for them. */
  2479. int ratio = 1;
  2480. if (sb->s_blocksize < REISERFS_STANDARD_BLKSIZE)
  2481. ratio = REISERFS_STANDARD_BLKSIZE / sb->s_blocksize;
  2482. if (journal->j_trans_max > JOURNAL_TRANS_MAX_DEFAULT / ratio ||
  2483. journal->j_trans_max < JOURNAL_TRANS_MIN_DEFAULT / ratio ||
  2484. SB_ONDISK_JOURNAL_SIZE(sb) / journal->j_trans_max <
  2485. JOURNAL_MIN_RATIO) {
  2486. reiserfs_warning(sb, "sh-462",
  2487. "bad transaction max size (%u). "
  2488. "FSCK?", journal->j_trans_max);
  2489. return 1;
  2490. }
  2491. if (journal->j_max_batch != (journal->j_trans_max) *
  2492. JOURNAL_MAX_BATCH_DEFAULT/JOURNAL_TRANS_MAX_DEFAULT) {
  2493. reiserfs_warning(sb, "sh-463",
  2494. "bad transaction max batch (%u). "
  2495. "FSCK?", journal->j_max_batch);
  2496. return 1;
  2497. }
  2498. } else {
  2499. /* Default journal params.
  2500. The file system was created by old version
  2501. of mkreiserfs, so some fields contain zeros,
  2502. and we need to advise proper values for them */
  2503. if (sb->s_blocksize != REISERFS_STANDARD_BLKSIZE) {
  2504. reiserfs_warning(sb, "sh-464", "bad blocksize (%u)",
  2505. sb->s_blocksize);
  2506. return 1;
  2507. }
  2508. journal->j_trans_max = JOURNAL_TRANS_MAX_DEFAULT;
  2509. journal->j_max_batch = JOURNAL_MAX_BATCH_DEFAULT;
  2510. journal->j_max_commit_age = JOURNAL_MAX_COMMIT_AGE;
  2511. }
  2512. return 0;
  2513. }
  2514. /*
  2515. ** must be called once on fs mount. calls journal_read for you
  2516. */
  2517. int journal_init(struct super_block *sb, const char *j_dev_name,
  2518. int old_format, unsigned int commit_max_age)
  2519. {
  2520. int num_cnodes = SB_ONDISK_JOURNAL_SIZE(sb) * 2;
  2521. struct buffer_head *bhjh;
  2522. struct reiserfs_super_block *rs;
  2523. struct reiserfs_journal_header *jh;
  2524. struct reiserfs_journal *journal;
  2525. struct reiserfs_journal_list *jl;
  2526. char b[BDEVNAME_SIZE];
  2527. int ret;
  2528. /*
  2529. * Unlock here to avoid various RECLAIM-FS-ON <-> IN-RECLAIM-FS
  2530. * dependency inversion warnings.
  2531. */
  2532. reiserfs_write_unlock(sb);
  2533. journal = SB_JOURNAL(sb) = vmalloc(sizeof(struct reiserfs_journal));
  2534. if (!journal) {
  2535. reiserfs_warning(sb, "journal-1256",
  2536. "unable to get memory for journal structure");
  2537. reiserfs_write_lock(sb);
  2538. return 1;
  2539. }
  2540. memset(journal, 0, sizeof(struct reiserfs_journal));
  2541. INIT_LIST_HEAD(&journal->j_bitmap_nodes);
  2542. INIT_LIST_HEAD(&journal->j_prealloc_list);
  2543. INIT_LIST_HEAD(&journal->j_working_list);
  2544. INIT_LIST_HEAD(&journal->j_journal_list);
  2545. journal->j_persistent_trans = 0;
  2546. ret = reiserfs_allocate_list_bitmaps(sb, journal->j_list_bitmap,
  2547. reiserfs_bmap_count(sb));
  2548. reiserfs_write_lock(sb);
  2549. if (ret)
  2550. goto free_and_return;
  2551. allocate_bitmap_nodes(sb);
  2552. /* reserved for journal area support */
  2553. SB_JOURNAL_1st_RESERVED_BLOCK(sb) = (old_format ?
  2554. REISERFS_OLD_DISK_OFFSET_IN_BYTES
  2555. / sb->s_blocksize +
  2556. reiserfs_bmap_count(sb) +
  2557. 1 :
  2558. REISERFS_DISK_OFFSET_IN_BYTES /
  2559. sb->s_blocksize + 2);
  2560. /* Sanity check to see is the standard journal fitting withing first bitmap
  2561. (actual for small blocksizes) */
  2562. if (!SB_ONDISK_JOURNAL_DEVICE(sb) &&
  2563. (SB_JOURNAL_1st_RESERVED_BLOCK(sb) +
  2564. SB_ONDISK_JOURNAL_SIZE(sb) > sb->s_blocksize * 8)) {
  2565. reiserfs_warning(sb, "journal-1393",
  2566. "journal does not fit for area addressed "
  2567. "by first of bitmap blocks. It starts at "
  2568. "%u and its size is %u. Block size %ld",
  2569. SB_JOURNAL_1st_RESERVED_BLOCK(sb),
  2570. SB_ONDISK_JOURNAL_SIZE(sb),
  2571. sb->s_blocksize);
  2572. goto free_and_return;
  2573. }
  2574. /*
  2575. * We need to unlock here to avoid creating the following
  2576. * dependency:
  2577. * reiserfs_lock -> sysfs_mutex
  2578. * Because the reiserfs mmap path creates the following dependency:
  2579. * mm->mmap -> reiserfs_lock, hence we have
  2580. * mm->mmap -> reiserfs_lock ->sysfs_mutex
  2581. * This would ends up in a circular dependency with sysfs readdir path
  2582. * which does sysfs_mutex -> mm->mmap_sem
  2583. * This is fine because the reiserfs lock is useless in mount path,
  2584. * at least until we call journal_begin. We keep it for paranoid
  2585. * reasons.
  2586. */
  2587. reiserfs_write_unlock(sb);
  2588. if (journal_init_dev(sb, journal, j_dev_name) != 0) {
  2589. reiserfs_write_lock(sb);
  2590. reiserfs_warning(sb, "sh-462",
  2591. "unable to initialize jornal device");
  2592. goto free_and_return;
  2593. }
  2594. reiserfs_write_lock(sb);
  2595. rs = SB_DISK_SUPER_BLOCK(sb);
  2596. /* read journal header */
  2597. bhjh = journal_bread(sb,
  2598. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  2599. SB_ONDISK_JOURNAL_SIZE(sb));
  2600. if (!bhjh) {
  2601. reiserfs_warning(sb, "sh-459",
  2602. "unable to read journal header");
  2603. goto free_and_return;
  2604. }
  2605. jh = (struct reiserfs_journal_header *)(bhjh->b_data);
  2606. /* make sure that journal matches to the super block */
  2607. if (is_reiserfs_jr(rs)
  2608. && (le32_to_cpu(jh->jh_journal.jp_journal_magic) !=
  2609. sb_jp_journal_magic(rs))) {
  2610. reiserfs_warning(sb, "sh-460",
  2611. "journal header magic %x (device %s) does "
  2612. "not match to magic found in super block %x",
  2613. jh->jh_journal.jp_journal_magic,
  2614. bdevname(journal->j_dev_bd, b),
  2615. sb_jp_journal_magic(rs));
  2616. brelse(bhjh);
  2617. goto free_and_return;
  2618. }
  2619. journal->j_trans_max = le32_to_cpu(jh->jh_journal.jp_journal_trans_max);
  2620. journal->j_max_batch = le32_to_cpu(jh->jh_journal.jp_journal_max_batch);
  2621. journal->j_max_commit_age =
  2622. le32_to_cpu(jh->jh_journal.jp_journal_max_commit_age);
  2623. journal->j_max_trans_age = JOURNAL_MAX_TRANS_AGE;
  2624. if (check_advise_trans_params(sb, journal) != 0)
  2625. goto free_and_return;
  2626. journal->j_default_max_commit_age = journal->j_max_commit_age;
  2627. if (commit_max_age != 0) {
  2628. journal->j_max_commit_age = commit_max_age;
  2629. journal->j_max_trans_age = commit_max_age;
  2630. }
  2631. reiserfs_info(sb, "journal params: device %s, size %u, "
  2632. "journal first block %u, max trans len %u, max batch %u, "
  2633. "max commit age %u, max trans age %u\n",
  2634. bdevname(journal->j_dev_bd, b),
  2635. SB_ONDISK_JOURNAL_SIZE(sb),
  2636. SB_ONDISK_JOURNAL_1st_BLOCK(sb),
  2637. journal->j_trans_max,
  2638. journal->j_max_batch,
  2639. journal->j_max_commit_age, journal->j_max_trans_age);
  2640. brelse(bhjh);
  2641. journal->j_list_bitmap_index = 0;
  2642. journal_list_init(sb);
  2643. memset(journal->j_list_hash_table, 0,
  2644. JOURNAL_HASH_SIZE * sizeof(struct reiserfs_journal_cnode *));
  2645. INIT_LIST_HEAD(&journal->j_dirty_buffers);
  2646. spin_lock_init(&journal->j_dirty_buffers_lock);
  2647. journal->j_start = 0;
  2648. journal->j_len = 0;
  2649. journal->j_len_alloc = 0;
  2650. atomic_set(&(journal->j_wcount), 0);
  2651. atomic_set(&(journal->j_async_throttle), 0);
  2652. journal->j_bcount = 0;
  2653. journal->j_trans_start_time = 0;
  2654. journal->j_last = NULL;
  2655. journal->j_first = NULL;
  2656. init_waitqueue_head(&(journal->j_join_wait));
  2657. mutex_init(&journal->j_mutex);
  2658. mutex_init(&journal->j_flush_mutex);
  2659. journal->j_trans_id = 10;
  2660. journal->j_mount_id = 10;
  2661. journal->j_state = 0;
  2662. atomic_set(&(journal->j_jlock), 0);
  2663. reiserfs_write_unlock(sb);
  2664. journal->j_cnode_free_list = allocate_cnodes(num_cnodes);
  2665. reiserfs_write_lock(sb);
  2666. journal->j_cnode_free_orig = journal->j_cnode_free_list;
  2667. journal->j_cnode_free = journal->j_cnode_free_list ? num_cnodes : 0;
  2668. journal->j_cnode_used = 0;
  2669. journal->j_must_wait = 0;
  2670. if (journal->j_cnode_free == 0) {
  2671. reiserfs_warning(sb, "journal-2004", "Journal cnode memory "
  2672. "allocation failed (%ld bytes). Journal is "
  2673. "too large for available memory. Usually "
  2674. "this is due to a journal that is too large.",
  2675. sizeof (struct reiserfs_journal_cnode) * num_cnodes);
  2676. goto free_and_return;
  2677. }
  2678. init_journal_hash(sb);
  2679. jl = journal->j_current_jl;
  2680. jl->j_list_bitmap = get_list_bitmap(sb, jl);
  2681. if (!jl->j_list_bitmap) {
  2682. reiserfs_warning(sb, "journal-2005",
  2683. "get_list_bitmap failed for journal list 0");
  2684. goto free_and_return;
  2685. }
  2686. if (journal_read(sb) < 0) {
  2687. reiserfs_warning(sb, "reiserfs-2006",
  2688. "Replay Failure, unable to mount");
  2689. goto free_and_return;
  2690. }
  2691. reiserfs_mounted_fs_count++;
  2692. if (reiserfs_mounted_fs_count <= 1) {
  2693. reiserfs_write_unlock(sb);
  2694. commit_wq = create_workqueue("reiserfs");
  2695. reiserfs_write_lock(sb);
  2696. }
  2697. INIT_DELAYED_WORK(&journal->j_work, flush_async_commits);
  2698. journal->j_work_sb = sb;
  2699. return 0;
  2700. free_and_return:
  2701. free_journal_ram(sb);
  2702. return 1;
  2703. }
  2704. /*
  2705. ** test for a polite end of the current transaction. Used by file_write, and should
  2706. ** be used by delete to make sure they don't write more than can fit inside a single
  2707. ** transaction
  2708. */
  2709. int journal_transaction_should_end(struct reiserfs_transaction_handle *th,
  2710. int new_alloc)
  2711. {
  2712. struct reiserfs_journal *journal = SB_JOURNAL(th->t_super);
  2713. time_t now = get_seconds();
  2714. /* cannot restart while nested */
  2715. BUG_ON(!th->t_trans_id);
  2716. if (th->t_refcount > 1)
  2717. return 0;
  2718. if (journal->j_must_wait > 0 ||
  2719. (journal->j_len_alloc + new_alloc) >= journal->j_max_batch ||
  2720. atomic_read(&(journal->j_jlock)) ||
  2721. (now - journal->j_trans_start_time) > journal->j_max_trans_age ||
  2722. journal->j_cnode_free < (journal->j_trans_max * 3)) {
  2723. return 1;
  2724. }
  2725. /* protected by the BKL here */
  2726. journal->j_len_alloc += new_alloc;
  2727. th->t_blocks_allocated += new_alloc ;
  2728. return 0;
  2729. }
  2730. /* this must be called inside a transaction, and requires the
  2731. ** kernel_lock to be held
  2732. */
  2733. void reiserfs_block_writes(struct reiserfs_transaction_handle *th)
  2734. {
  2735. struct reiserfs_journal *journal = SB_JOURNAL(th->t_super);
  2736. BUG_ON(!th->t_trans_id);
  2737. journal->j_must_wait = 1;
  2738. set_bit(J_WRITERS_BLOCKED, &journal->j_state);
  2739. return;
  2740. }
  2741. /* this must be called without a transaction started, and does not
  2742. ** require BKL
  2743. */
  2744. void reiserfs_allow_writes(struct super_block *s)
  2745. {
  2746. struct reiserfs_journal *journal = SB_JOURNAL(s);
  2747. clear_bit(J_WRITERS_BLOCKED, &journal->j_state);
  2748. wake_up(&journal->j_join_wait);
  2749. }
  2750. /* this must be called without a transaction started, and does not
  2751. ** require BKL
  2752. */
  2753. void reiserfs_wait_on_write_block(struct super_block *s)
  2754. {
  2755. struct reiserfs_journal *journal = SB_JOURNAL(s);
  2756. wait_event(journal->j_join_wait,
  2757. !test_bit(J_WRITERS_BLOCKED, &journal->j_state));
  2758. }
  2759. static void queue_log_writer(struct super_block *s)
  2760. {
  2761. wait_queue_t wait;
  2762. struct reiserfs_journal *journal = SB_JOURNAL(s);
  2763. set_bit(J_WRITERS_QUEUED, &journal->j_state);
  2764. /*
  2765. * we don't want to use wait_event here because
  2766. * we only want to wait once.
  2767. */
  2768. init_waitqueue_entry(&wait, current);
  2769. add_wait_queue(&journal->j_join_wait, &wait);
  2770. set_current_state(TASK_UNINTERRUPTIBLE);
  2771. if (test_bit(J_WRITERS_QUEUED, &journal->j_state)) {
  2772. reiserfs_write_unlock(s);
  2773. schedule();
  2774. reiserfs_write_lock(s);
  2775. }
  2776. __set_current_state(TASK_RUNNING);
  2777. remove_wait_queue(&journal->j_join_wait, &wait);
  2778. }
  2779. static void wake_queued_writers(struct super_block *s)
  2780. {
  2781. struct reiserfs_journal *journal = SB_JOURNAL(s);
  2782. if (test_and_clear_bit(J_WRITERS_QUEUED, &journal->j_state))
  2783. wake_up(&journal->j_join_wait);
  2784. }
  2785. static void let_transaction_grow(struct super_block *sb, unsigned int trans_id)
  2786. {
  2787. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  2788. unsigned long bcount = journal->j_bcount;
  2789. while (1) {
  2790. reiserfs_write_unlock(sb);
  2791. schedule_timeout_uninterruptible(1);
  2792. reiserfs_write_lock(sb);
  2793. journal->j_current_jl->j_state |= LIST_COMMIT_PENDING;
  2794. while ((atomic_read(&journal->j_wcount) > 0 ||
  2795. atomic_read(&journal->j_jlock)) &&
  2796. journal->j_trans_id == trans_id) {
  2797. queue_log_writer(sb);
  2798. }
  2799. if (journal->j_trans_id != trans_id)
  2800. break;
  2801. if (bcount == journal->j_bcount)
  2802. break;
  2803. bcount = journal->j_bcount;
  2804. }
  2805. }
  2806. /* join == true if you must join an existing transaction.
  2807. ** join == false if you can deal with waiting for others to finish
  2808. **
  2809. ** this will block until the transaction is joinable. send the number of blocks you
  2810. ** expect to use in nblocks.
  2811. */
  2812. static int do_journal_begin_r(struct reiserfs_transaction_handle *th,
  2813. struct super_block *sb, unsigned long nblocks,
  2814. int join)
  2815. {
  2816. time_t now = get_seconds();
  2817. unsigned int old_trans_id;
  2818. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  2819. struct reiserfs_transaction_handle myth;
  2820. int sched_count = 0;
  2821. int retval;
  2822. reiserfs_check_lock_depth(sb, "journal_begin");
  2823. BUG_ON(nblocks > journal->j_trans_max);
  2824. PROC_INFO_INC(sb, journal.journal_being);
  2825. /* set here for journal_join */
  2826. th->t_refcount = 1;
  2827. th->t_super = sb;
  2828. relock:
  2829. lock_journal(sb);
  2830. if (join != JBEGIN_ABORT && reiserfs_is_journal_aborted(journal)) {
  2831. unlock_journal(sb);
  2832. retval = journal->j_errno;
  2833. goto out_fail;
  2834. }
  2835. journal->j_bcount++;
  2836. if (test_bit(J_WRITERS_BLOCKED, &journal->j_state)) {
  2837. unlock_journal(sb);
  2838. reiserfs_write_unlock(sb);
  2839. reiserfs_wait_on_write_block(sb);
  2840. reiserfs_write_lock(sb);
  2841. PROC_INFO_INC(sb, journal.journal_relock_writers);
  2842. goto relock;
  2843. }
  2844. now = get_seconds();
  2845. /* if there is no room in the journal OR
  2846. ** if this transaction is too old, and we weren't called joinable, wait for it to finish before beginning
  2847. ** we don't sleep if there aren't other writers
  2848. */
  2849. if ((!join && journal->j_must_wait > 0) ||
  2850. (!join
  2851. && (journal->j_len_alloc + nblocks + 2) >= journal->j_max_batch)
  2852. || (!join && atomic_read(&journal->j_wcount) > 0
  2853. && journal->j_trans_start_time > 0
  2854. && (now - journal->j_trans_start_time) >
  2855. journal->j_max_trans_age) || (!join
  2856. && atomic_read(&journal->j_jlock))
  2857. || (!join && journal->j_cnode_free < (journal->j_trans_max * 3))) {
  2858. old_trans_id = journal->j_trans_id;
  2859. unlock_journal(sb); /* allow others to finish this transaction */
  2860. if (!join && (journal->j_len_alloc + nblocks + 2) >=
  2861. journal->j_max_batch &&
  2862. ((journal->j_len + nblocks + 2) * 100) <
  2863. (journal->j_len_alloc * 75)) {
  2864. if (atomic_read(&journal->j_wcount) > 10) {
  2865. sched_count++;
  2866. queue_log_writer(sb);
  2867. goto relock;
  2868. }
  2869. }
  2870. /* don't mess with joining the transaction if all we have to do is
  2871. * wait for someone else to do a commit
  2872. */
  2873. if (atomic_read(&journal->j_jlock)) {
  2874. while (journal->j_trans_id == old_trans_id &&
  2875. atomic_read(&journal->j_jlock)) {
  2876. queue_log_writer(sb);
  2877. }
  2878. goto relock;
  2879. }
  2880. retval = journal_join(&myth, sb, 1);
  2881. if (retval)
  2882. goto out_fail;
  2883. /* someone might have ended the transaction while we joined */
  2884. if (old_trans_id != journal->j_trans_id) {
  2885. retval = do_journal_end(&myth, sb, 1, 0);
  2886. } else {
  2887. retval = do_journal_end(&myth, sb, 1, COMMIT_NOW);
  2888. }
  2889. if (retval)
  2890. goto out_fail;
  2891. PROC_INFO_INC(sb, journal.journal_relock_wcount);
  2892. goto relock;
  2893. }
  2894. /* we are the first writer, set trans_id */
  2895. if (journal->j_trans_start_time == 0) {
  2896. journal->j_trans_start_time = get_seconds();
  2897. }
  2898. atomic_inc(&(journal->j_wcount));
  2899. journal->j_len_alloc += nblocks;
  2900. th->t_blocks_logged = 0;
  2901. th->t_blocks_allocated = nblocks;
  2902. th->t_trans_id = journal->j_trans_id;
  2903. unlock_journal(sb);
  2904. INIT_LIST_HEAD(&th->t_list);
  2905. get_fs_excl();
  2906. return 0;
  2907. out_fail:
  2908. memset(th, 0, sizeof(*th));
  2909. /* Re-set th->t_super, so we can properly keep track of how many
  2910. * persistent transactions there are. We need to do this so if this
  2911. * call is part of a failed restart_transaction, we can free it later */
  2912. th->t_super = sb;
  2913. return retval;
  2914. }
  2915. struct reiserfs_transaction_handle *reiserfs_persistent_transaction(struct
  2916. super_block
  2917. *s,
  2918. int nblocks)
  2919. {
  2920. int ret;
  2921. struct reiserfs_transaction_handle *th;
  2922. /* if we're nesting into an existing transaction. It will be
  2923. ** persistent on its own
  2924. */
  2925. if (reiserfs_transaction_running(s)) {
  2926. th = current->journal_info;
  2927. th->t_refcount++;
  2928. BUG_ON(th->t_refcount < 2);
  2929. return th;
  2930. }
  2931. th = kmalloc(sizeof(struct reiserfs_transaction_handle), GFP_NOFS);
  2932. if (!th)
  2933. return NULL;
  2934. ret = journal_begin(th, s, nblocks);
  2935. if (ret) {
  2936. kfree(th);
  2937. return NULL;
  2938. }
  2939. SB_JOURNAL(s)->j_persistent_trans++;
  2940. return th;
  2941. }
  2942. int reiserfs_end_persistent_transaction(struct reiserfs_transaction_handle *th)
  2943. {
  2944. struct super_block *s = th->t_super;
  2945. int ret = 0;
  2946. if (th->t_trans_id)
  2947. ret = journal_end(th, th->t_super, th->t_blocks_allocated);
  2948. else
  2949. ret = -EIO;
  2950. if (th->t_refcount == 0) {
  2951. SB_JOURNAL(s)->j_persistent_trans--;
  2952. kfree(th);
  2953. }
  2954. return ret;
  2955. }
  2956. static int journal_join(struct reiserfs_transaction_handle *th,
  2957. struct super_block *sb, unsigned long nblocks)
  2958. {
  2959. struct reiserfs_transaction_handle *cur_th = current->journal_info;
  2960. /* this keeps do_journal_end from NULLing out the current->journal_info
  2961. ** pointer
  2962. */
  2963. th->t_handle_save = cur_th;
  2964. BUG_ON(cur_th && cur_th->t_refcount > 1);
  2965. return do_journal_begin_r(th, sb, nblocks, JBEGIN_JOIN);
  2966. }
  2967. int journal_join_abort(struct reiserfs_transaction_handle *th,
  2968. struct super_block *sb, unsigned long nblocks)
  2969. {
  2970. struct reiserfs_transaction_handle *cur_th = current->journal_info;
  2971. /* this keeps do_journal_end from NULLing out the current->journal_info
  2972. ** pointer
  2973. */
  2974. th->t_handle_save = cur_th;
  2975. BUG_ON(cur_th && cur_th->t_refcount > 1);
  2976. return do_journal_begin_r(th, sb, nblocks, JBEGIN_ABORT);
  2977. }
  2978. int journal_begin(struct reiserfs_transaction_handle *th,
  2979. struct super_block *sb, unsigned long nblocks)
  2980. {
  2981. struct reiserfs_transaction_handle *cur_th = current->journal_info;
  2982. int ret;
  2983. th->t_handle_save = NULL;
  2984. if (cur_th) {
  2985. /* we are nesting into the current transaction */
  2986. if (cur_th->t_super == sb) {
  2987. BUG_ON(!cur_th->t_refcount);
  2988. cur_th->t_refcount++;
  2989. memcpy(th, cur_th, sizeof(*th));
  2990. if (th->t_refcount <= 1)
  2991. reiserfs_warning(sb, "reiserfs-2005",
  2992. "BAD: refcount <= 1, but "
  2993. "journal_info != 0");
  2994. return 0;
  2995. } else {
  2996. /* we've ended up with a handle from a different filesystem.
  2997. ** save it and restore on journal_end. This should never
  2998. ** really happen...
  2999. */
  3000. reiserfs_warning(sb, "clm-2100",
  3001. "nesting info a different FS");
  3002. th->t_handle_save = current->journal_info;
  3003. current->journal_info = th;
  3004. }
  3005. } else {
  3006. current->journal_info = th;
  3007. }
  3008. ret = do_journal_begin_r(th, sb, nblocks, JBEGIN_REG);
  3009. BUG_ON(current->journal_info != th);
  3010. /* I guess this boils down to being the reciprocal of clm-2100 above.
  3011. * If do_journal_begin_r fails, we need to put it back, since journal_end
  3012. * won't be called to do it. */
  3013. if (ret)
  3014. current->journal_info = th->t_handle_save;
  3015. else
  3016. BUG_ON(!th->t_refcount);
  3017. return ret;
  3018. }
  3019. /*
  3020. ** puts bh into the current transaction. If it was already there, reorders removes the
  3021. ** old pointers from the hash, and puts new ones in (to make sure replay happen in the right order).
  3022. **
  3023. ** if it was dirty, cleans and files onto the clean list. I can't let it be dirty again until the
  3024. ** transaction is committed.
  3025. **
  3026. ** if j_len, is bigger than j_len_alloc, it pushes j_len_alloc to 10 + j_len.
  3027. */
  3028. int journal_mark_dirty(struct reiserfs_transaction_handle *th,
  3029. struct super_block *sb, struct buffer_head *bh)
  3030. {
  3031. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3032. struct reiserfs_journal_cnode *cn = NULL;
  3033. int count_already_incd = 0;
  3034. int prepared = 0;
  3035. BUG_ON(!th->t_trans_id);
  3036. PROC_INFO_INC(sb, journal.mark_dirty);
  3037. if (th->t_trans_id != journal->j_trans_id) {
  3038. reiserfs_panic(th->t_super, "journal-1577",
  3039. "handle trans id %ld != current trans id %ld",
  3040. th->t_trans_id, journal->j_trans_id);
  3041. }
  3042. sb->s_dirt = 1;
  3043. prepared = test_clear_buffer_journal_prepared(bh);
  3044. clear_buffer_journal_restore_dirty(bh);
  3045. /* already in this transaction, we are done */
  3046. if (buffer_journaled(bh)) {
  3047. PROC_INFO_INC(sb, journal.mark_dirty_already);
  3048. return 0;
  3049. }
  3050. /* this must be turned into a panic instead of a warning. We can't allow
  3051. ** a dirty or journal_dirty or locked buffer to be logged, as some changes
  3052. ** could get to disk too early. NOT GOOD.
  3053. */
  3054. if (!prepared || buffer_dirty(bh)) {
  3055. reiserfs_warning(sb, "journal-1777",
  3056. "buffer %llu bad state "
  3057. "%cPREPARED %cLOCKED %cDIRTY %cJDIRTY_WAIT",
  3058. (unsigned long long)bh->b_blocknr,
  3059. prepared ? ' ' : '!',
  3060. buffer_locked(bh) ? ' ' : '!',
  3061. buffer_dirty(bh) ? ' ' : '!',
  3062. buffer_journal_dirty(bh) ? ' ' : '!');
  3063. }
  3064. if (atomic_read(&(journal->j_wcount)) <= 0) {
  3065. reiserfs_warning(sb, "journal-1409",
  3066. "returning because j_wcount was %d",
  3067. atomic_read(&(journal->j_wcount)));
  3068. return 1;
  3069. }
  3070. /* this error means I've screwed up, and we've overflowed the transaction.
  3071. ** Nothing can be done here, except make the FS readonly or panic.
  3072. */
  3073. if (journal->j_len >= journal->j_trans_max) {
  3074. reiserfs_panic(th->t_super, "journal-1413",
  3075. "j_len (%lu) is too big",
  3076. journal->j_len);
  3077. }
  3078. if (buffer_journal_dirty(bh)) {
  3079. count_already_incd = 1;
  3080. PROC_INFO_INC(sb, journal.mark_dirty_notjournal);
  3081. clear_buffer_journal_dirty(bh);
  3082. }
  3083. if (journal->j_len > journal->j_len_alloc) {
  3084. journal->j_len_alloc = journal->j_len + JOURNAL_PER_BALANCE_CNT;
  3085. }
  3086. set_buffer_journaled(bh);
  3087. /* now put this guy on the end */
  3088. if (!cn) {
  3089. cn = get_cnode(sb);
  3090. if (!cn) {
  3091. reiserfs_panic(sb, "journal-4", "get_cnode failed!");
  3092. }
  3093. if (th->t_blocks_logged == th->t_blocks_allocated) {
  3094. th->t_blocks_allocated += JOURNAL_PER_BALANCE_CNT;
  3095. journal->j_len_alloc += JOURNAL_PER_BALANCE_CNT;
  3096. }
  3097. th->t_blocks_logged++;
  3098. journal->j_len++;
  3099. cn->bh = bh;
  3100. cn->blocknr = bh->b_blocknr;
  3101. cn->sb = sb;
  3102. cn->jlist = NULL;
  3103. insert_journal_hash(journal->j_hash_table, cn);
  3104. if (!count_already_incd) {
  3105. get_bh(bh);
  3106. }
  3107. }
  3108. cn->next = NULL;
  3109. cn->prev = journal->j_last;
  3110. cn->bh = bh;
  3111. if (journal->j_last) {
  3112. journal->j_last->next = cn;
  3113. journal->j_last = cn;
  3114. } else {
  3115. journal->j_first = cn;
  3116. journal->j_last = cn;
  3117. }
  3118. return 0;
  3119. }
  3120. int journal_end(struct reiserfs_transaction_handle *th,
  3121. struct super_block *sb, unsigned long nblocks)
  3122. {
  3123. if (!current->journal_info && th->t_refcount > 1)
  3124. reiserfs_warning(sb, "REISER-NESTING",
  3125. "th NULL, refcount %d", th->t_refcount);
  3126. if (!th->t_trans_id) {
  3127. WARN_ON(1);
  3128. return -EIO;
  3129. }
  3130. th->t_refcount--;
  3131. if (th->t_refcount > 0) {
  3132. struct reiserfs_transaction_handle *cur_th =
  3133. current->journal_info;
  3134. /* we aren't allowed to close a nested transaction on a different
  3135. ** filesystem from the one in the task struct
  3136. */
  3137. BUG_ON(cur_th->t_super != th->t_super);
  3138. if (th != cur_th) {
  3139. memcpy(current->journal_info, th, sizeof(*th));
  3140. th->t_trans_id = 0;
  3141. }
  3142. return 0;
  3143. } else {
  3144. return do_journal_end(th, sb, nblocks, 0);
  3145. }
  3146. }
  3147. /* removes from the current transaction, relsing and descrementing any counters.
  3148. ** also files the removed buffer directly onto the clean list
  3149. **
  3150. ** called by journal_mark_freed when a block has been deleted
  3151. **
  3152. ** returns 1 if it cleaned and relsed the buffer. 0 otherwise
  3153. */
  3154. static int remove_from_transaction(struct super_block *sb,
  3155. b_blocknr_t blocknr, int already_cleaned)
  3156. {
  3157. struct buffer_head *bh;
  3158. struct reiserfs_journal_cnode *cn;
  3159. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3160. int ret = 0;
  3161. cn = get_journal_hash_dev(sb, journal->j_hash_table, blocknr);
  3162. if (!cn || !cn->bh) {
  3163. return ret;
  3164. }
  3165. bh = cn->bh;
  3166. if (cn->prev) {
  3167. cn->prev->next = cn->next;
  3168. }
  3169. if (cn->next) {
  3170. cn->next->prev = cn->prev;
  3171. }
  3172. if (cn == journal->j_first) {
  3173. journal->j_first = cn->next;
  3174. }
  3175. if (cn == journal->j_last) {
  3176. journal->j_last = cn->prev;
  3177. }
  3178. if (bh)
  3179. remove_journal_hash(sb, journal->j_hash_table, NULL,
  3180. bh->b_blocknr, 0);
  3181. clear_buffer_journaled(bh); /* don't log this one */
  3182. if (!already_cleaned) {
  3183. clear_buffer_journal_dirty(bh);
  3184. clear_buffer_dirty(bh);
  3185. clear_buffer_journal_test(bh);
  3186. put_bh(bh);
  3187. if (atomic_read(&(bh->b_count)) < 0) {
  3188. reiserfs_warning(sb, "journal-1752",
  3189. "b_count < 0");
  3190. }
  3191. ret = 1;
  3192. }
  3193. journal->j_len--;
  3194. journal->j_len_alloc--;
  3195. free_cnode(sb, cn);
  3196. return ret;
  3197. }
  3198. /*
  3199. ** for any cnode in a journal list, it can only be dirtied of all the
  3200. ** transactions that include it are committed to disk.
  3201. ** this checks through each transaction, and returns 1 if you are allowed to dirty,
  3202. ** and 0 if you aren't
  3203. **
  3204. ** it is called by dirty_journal_list, which is called after flush_commit_list has gotten all the log
  3205. ** blocks for a given transaction on disk
  3206. **
  3207. */
  3208. static int can_dirty(struct reiserfs_journal_cnode *cn)
  3209. {
  3210. struct super_block *sb = cn->sb;
  3211. b_blocknr_t blocknr = cn->blocknr;
  3212. struct reiserfs_journal_cnode *cur = cn->hprev;
  3213. int can_dirty = 1;
  3214. /* first test hprev. These are all newer than cn, so any node here
  3215. ** with the same block number and dev means this node can't be sent
  3216. ** to disk right now.
  3217. */
  3218. while (cur && can_dirty) {
  3219. if (cur->jlist && cur->bh && cur->blocknr && cur->sb == sb &&
  3220. cur->blocknr == blocknr) {
  3221. can_dirty = 0;
  3222. }
  3223. cur = cur->hprev;
  3224. }
  3225. /* then test hnext. These are all older than cn. As long as they
  3226. ** are committed to the log, it is safe to write cn to disk
  3227. */
  3228. cur = cn->hnext;
  3229. while (cur && can_dirty) {
  3230. if (cur->jlist && cur->jlist->j_len > 0 &&
  3231. atomic_read(&(cur->jlist->j_commit_left)) > 0 && cur->bh &&
  3232. cur->blocknr && cur->sb == sb && cur->blocknr == blocknr) {
  3233. can_dirty = 0;
  3234. }
  3235. cur = cur->hnext;
  3236. }
  3237. return can_dirty;
  3238. }
  3239. /* syncs the commit blocks, but does not force the real buffers to disk
  3240. ** will wait until the current transaction is done/committed before returning
  3241. */
  3242. int journal_end_sync(struct reiserfs_transaction_handle *th,
  3243. struct super_block *sb, unsigned long nblocks)
  3244. {
  3245. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3246. BUG_ON(!th->t_trans_id);
  3247. /* you can sync while nested, very, very bad */
  3248. BUG_ON(th->t_refcount > 1);
  3249. if (journal->j_len == 0) {
  3250. reiserfs_prepare_for_journal(sb, SB_BUFFER_WITH_SB(sb),
  3251. 1);
  3252. journal_mark_dirty(th, sb, SB_BUFFER_WITH_SB(sb));
  3253. }
  3254. return do_journal_end(th, sb, nblocks, COMMIT_NOW | WAIT);
  3255. }
  3256. /*
  3257. ** writeback the pending async commits to disk
  3258. */
  3259. static void flush_async_commits(struct work_struct *work)
  3260. {
  3261. struct reiserfs_journal *journal =
  3262. container_of(work, struct reiserfs_journal, j_work.work);
  3263. struct super_block *sb = journal->j_work_sb;
  3264. struct reiserfs_journal_list *jl;
  3265. struct list_head *entry;
  3266. reiserfs_write_lock(sb);
  3267. if (!list_empty(&journal->j_journal_list)) {
  3268. /* last entry is the youngest, commit it and you get everything */
  3269. entry = journal->j_journal_list.prev;
  3270. jl = JOURNAL_LIST_ENTRY(entry);
  3271. flush_commit_list(sb, jl, 1);
  3272. }
  3273. reiserfs_write_unlock(sb);
  3274. }
  3275. /*
  3276. ** flushes any old transactions to disk
  3277. ** ends the current transaction if it is too old
  3278. */
  3279. int reiserfs_flush_old_commits(struct super_block *sb)
  3280. {
  3281. time_t now;
  3282. struct reiserfs_transaction_handle th;
  3283. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3284. now = get_seconds();
  3285. /* safety check so we don't flush while we are replaying the log during
  3286. * mount
  3287. */
  3288. if (list_empty(&journal->j_journal_list)) {
  3289. return 0;
  3290. }
  3291. /* check the current transaction. If there are no writers, and it is
  3292. * too old, finish it, and force the commit blocks to disk
  3293. */
  3294. if (atomic_read(&journal->j_wcount) <= 0 &&
  3295. journal->j_trans_start_time > 0 &&
  3296. journal->j_len > 0 &&
  3297. (now - journal->j_trans_start_time) > journal->j_max_trans_age) {
  3298. if (!journal_join(&th, sb, 1)) {
  3299. reiserfs_prepare_for_journal(sb,
  3300. SB_BUFFER_WITH_SB(sb),
  3301. 1);
  3302. journal_mark_dirty(&th, sb,
  3303. SB_BUFFER_WITH_SB(sb));
  3304. /* we're only being called from kreiserfsd, it makes no sense to do
  3305. ** an async commit so that kreiserfsd can do it later
  3306. */
  3307. do_journal_end(&th, sb, 1, COMMIT_NOW | WAIT);
  3308. }
  3309. }
  3310. return sb->s_dirt;
  3311. }
  3312. /*
  3313. ** returns 0 if do_journal_end should return right away, returns 1 if do_journal_end should finish the commit
  3314. **
  3315. ** if the current transaction is too old, but still has writers, this will wait on j_join_wait until all
  3316. ** the writers are done. By the time it wakes up, the transaction it was called has already ended, so it just
  3317. ** flushes the commit list and returns 0.
  3318. **
  3319. ** Won't batch when flush or commit_now is set. Also won't batch when others are waiting on j_join_wait.
  3320. **
  3321. ** Note, we can't allow the journal_end to proceed while there are still writers in the log.
  3322. */
  3323. static int check_journal_end(struct reiserfs_transaction_handle *th,
  3324. struct super_block *sb, unsigned long nblocks,
  3325. int flags)
  3326. {
  3327. time_t now;
  3328. int flush = flags & FLUSH_ALL;
  3329. int commit_now = flags & COMMIT_NOW;
  3330. int wait_on_commit = flags & WAIT;
  3331. struct reiserfs_journal_list *jl;
  3332. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3333. BUG_ON(!th->t_trans_id);
  3334. if (th->t_trans_id != journal->j_trans_id) {
  3335. reiserfs_panic(th->t_super, "journal-1577",
  3336. "handle trans id %ld != current trans id %ld",
  3337. th->t_trans_id, journal->j_trans_id);
  3338. }
  3339. journal->j_len_alloc -= (th->t_blocks_allocated - th->t_blocks_logged);
  3340. if (atomic_read(&(journal->j_wcount)) > 0) { /* <= 0 is allowed. unmounting might not call begin */
  3341. atomic_dec(&(journal->j_wcount));
  3342. }
  3343. /* BUG, deal with case where j_len is 0, but people previously freed blocks need to be released
  3344. ** will be dealt with by next transaction that actually writes something, but should be taken
  3345. ** care of in this trans
  3346. */
  3347. BUG_ON(journal->j_len == 0);
  3348. /* if wcount > 0, and we are called to with flush or commit_now,
  3349. ** we wait on j_join_wait. We will wake up when the last writer has
  3350. ** finished the transaction, and started it on its way to the disk.
  3351. ** Then, we flush the commit or journal list, and just return 0
  3352. ** because the rest of journal end was already done for this transaction.
  3353. */
  3354. if (atomic_read(&(journal->j_wcount)) > 0) {
  3355. if (flush || commit_now) {
  3356. unsigned trans_id;
  3357. jl = journal->j_current_jl;
  3358. trans_id = jl->j_trans_id;
  3359. if (wait_on_commit)
  3360. jl->j_state |= LIST_COMMIT_PENDING;
  3361. atomic_set(&(journal->j_jlock), 1);
  3362. if (flush) {
  3363. journal->j_next_full_flush = 1;
  3364. }
  3365. unlock_journal(sb);
  3366. /* sleep while the current transaction is still j_jlocked */
  3367. while (journal->j_trans_id == trans_id) {
  3368. if (atomic_read(&journal->j_jlock)) {
  3369. queue_log_writer(sb);
  3370. } else {
  3371. lock_journal(sb);
  3372. if (journal->j_trans_id == trans_id) {
  3373. atomic_set(&(journal->j_jlock),
  3374. 1);
  3375. }
  3376. unlock_journal(sb);
  3377. }
  3378. }
  3379. BUG_ON(journal->j_trans_id == trans_id);
  3380. if (commit_now
  3381. && journal_list_still_alive(sb, trans_id)
  3382. && wait_on_commit) {
  3383. flush_commit_list(sb, jl, 1);
  3384. }
  3385. return 0;
  3386. }
  3387. unlock_journal(sb);
  3388. return 0;
  3389. }
  3390. /* deal with old transactions where we are the last writers */
  3391. now = get_seconds();
  3392. if ((now - journal->j_trans_start_time) > journal->j_max_trans_age) {
  3393. commit_now = 1;
  3394. journal->j_next_async_flush = 1;
  3395. }
  3396. /* don't batch when someone is waiting on j_join_wait */
  3397. /* don't batch when syncing the commit or flushing the whole trans */
  3398. if (!(journal->j_must_wait > 0) && !(atomic_read(&(journal->j_jlock)))
  3399. && !flush && !commit_now && (journal->j_len < journal->j_max_batch)
  3400. && journal->j_len_alloc < journal->j_max_batch
  3401. && journal->j_cnode_free > (journal->j_trans_max * 3)) {
  3402. journal->j_bcount++;
  3403. unlock_journal(sb);
  3404. return 0;
  3405. }
  3406. if (journal->j_start > SB_ONDISK_JOURNAL_SIZE(sb)) {
  3407. reiserfs_panic(sb, "journal-003",
  3408. "j_start (%ld) is too high",
  3409. journal->j_start);
  3410. }
  3411. return 1;
  3412. }
  3413. /*
  3414. ** Does all the work that makes deleting blocks safe.
  3415. ** when deleting a block mark BH_JNew, just remove it from the current transaction, clean it's buffer_head and move on.
  3416. **
  3417. ** otherwise:
  3418. ** set a bit for the block in the journal bitmap. That will prevent it from being allocated for unformatted nodes
  3419. ** before this transaction has finished.
  3420. **
  3421. ** mark any cnodes for this block as BLOCK_FREED, and clear their bh pointers. That will prevent any old transactions with
  3422. ** this block from trying to flush to the real location. Since we aren't removing the cnode from the journal_list_hash,
  3423. ** the block can't be reallocated yet.
  3424. **
  3425. ** Then remove it from the current transaction, decrementing any counters and filing it on the clean list.
  3426. */
  3427. int journal_mark_freed(struct reiserfs_transaction_handle *th,
  3428. struct super_block *sb, b_blocknr_t blocknr)
  3429. {
  3430. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3431. struct reiserfs_journal_cnode *cn = NULL;
  3432. struct buffer_head *bh = NULL;
  3433. struct reiserfs_list_bitmap *jb = NULL;
  3434. int cleaned = 0;
  3435. BUG_ON(!th->t_trans_id);
  3436. cn = get_journal_hash_dev(sb, journal->j_hash_table, blocknr);
  3437. if (cn && cn->bh) {
  3438. bh = cn->bh;
  3439. get_bh(bh);
  3440. }
  3441. /* if it is journal new, we just remove it from this transaction */
  3442. if (bh && buffer_journal_new(bh)) {
  3443. clear_buffer_journal_new(bh);
  3444. clear_prepared_bits(bh);
  3445. reiserfs_clean_and_file_buffer(bh);
  3446. cleaned = remove_from_transaction(sb, blocknr, cleaned);
  3447. } else {
  3448. /* set the bit for this block in the journal bitmap for this transaction */
  3449. jb = journal->j_current_jl->j_list_bitmap;
  3450. if (!jb) {
  3451. reiserfs_panic(sb, "journal-1702",
  3452. "journal_list_bitmap is NULL");
  3453. }
  3454. set_bit_in_list_bitmap(sb, blocknr, jb);
  3455. /* Note, the entire while loop is not allowed to schedule. */
  3456. if (bh) {
  3457. clear_prepared_bits(bh);
  3458. reiserfs_clean_and_file_buffer(bh);
  3459. }
  3460. cleaned = remove_from_transaction(sb, blocknr, cleaned);
  3461. /* find all older transactions with this block, make sure they don't try to write it out */
  3462. cn = get_journal_hash_dev(sb, journal->j_list_hash_table,
  3463. blocknr);
  3464. while (cn) {
  3465. if (sb == cn->sb && blocknr == cn->blocknr) {
  3466. set_bit(BLOCK_FREED, &cn->state);
  3467. if (cn->bh) {
  3468. if (!cleaned) {
  3469. /* remove_from_transaction will brelse the buffer if it was
  3470. ** in the current trans
  3471. */
  3472. clear_buffer_journal_dirty(cn->
  3473. bh);
  3474. clear_buffer_dirty(cn->bh);
  3475. clear_buffer_journal_test(cn->
  3476. bh);
  3477. cleaned = 1;
  3478. put_bh(cn->bh);
  3479. if (atomic_read
  3480. (&(cn->bh->b_count)) < 0) {
  3481. reiserfs_warning(sb,
  3482. "journal-2138",
  3483. "cn->bh->b_count < 0");
  3484. }
  3485. }
  3486. if (cn->jlist) { /* since we are clearing the bh, we MUST dec nonzerolen */
  3487. atomic_dec(&
  3488. (cn->jlist->
  3489. j_nonzerolen));
  3490. }
  3491. cn->bh = NULL;
  3492. }
  3493. }
  3494. cn = cn->hnext;
  3495. }
  3496. }
  3497. if (bh)
  3498. release_buffer_page(bh); /* get_hash grabs the buffer */
  3499. return 0;
  3500. }
  3501. void reiserfs_update_inode_transaction(struct inode *inode)
  3502. {
  3503. struct reiserfs_journal *journal = SB_JOURNAL(inode->i_sb);
  3504. REISERFS_I(inode)->i_jl = journal->j_current_jl;
  3505. REISERFS_I(inode)->i_trans_id = journal->j_trans_id;
  3506. }
  3507. /*
  3508. * returns -1 on error, 0 if no commits/barriers were done and 1
  3509. * if a transaction was actually committed and the barrier was done
  3510. */
  3511. static int __commit_trans_jl(struct inode *inode, unsigned long id,
  3512. struct reiserfs_journal_list *jl)
  3513. {
  3514. struct reiserfs_transaction_handle th;
  3515. struct super_block *sb = inode->i_sb;
  3516. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3517. int ret = 0;
  3518. /* is it from the current transaction, or from an unknown transaction? */
  3519. if (id == journal->j_trans_id) {
  3520. jl = journal->j_current_jl;
  3521. /* try to let other writers come in and grow this transaction */
  3522. let_transaction_grow(sb, id);
  3523. if (journal->j_trans_id != id) {
  3524. goto flush_commit_only;
  3525. }
  3526. ret = journal_begin(&th, sb, 1);
  3527. if (ret)
  3528. return ret;
  3529. /* someone might have ended this transaction while we joined */
  3530. if (journal->j_trans_id != id) {
  3531. reiserfs_prepare_for_journal(sb, SB_BUFFER_WITH_SB(sb),
  3532. 1);
  3533. journal_mark_dirty(&th, sb, SB_BUFFER_WITH_SB(sb));
  3534. ret = journal_end(&th, sb, 1);
  3535. goto flush_commit_only;
  3536. }
  3537. ret = journal_end_sync(&th, sb, 1);
  3538. if (!ret)
  3539. ret = 1;
  3540. } else {
  3541. /* this gets tricky, we have to make sure the journal list in
  3542. * the inode still exists. We know the list is still around
  3543. * if we've got a larger transaction id than the oldest list
  3544. */
  3545. flush_commit_only:
  3546. if (journal_list_still_alive(inode->i_sb, id)) {
  3547. /*
  3548. * we only set ret to 1 when we know for sure
  3549. * the barrier hasn't been started yet on the commit
  3550. * block.
  3551. */
  3552. if (atomic_read(&jl->j_commit_left) > 1)
  3553. ret = 1;
  3554. flush_commit_list(sb, jl, 1);
  3555. if (journal->j_errno)
  3556. ret = journal->j_errno;
  3557. }
  3558. }
  3559. /* otherwise the list is gone, and long since committed */
  3560. return ret;
  3561. }
  3562. int reiserfs_commit_for_inode(struct inode *inode)
  3563. {
  3564. unsigned int id = REISERFS_I(inode)->i_trans_id;
  3565. struct reiserfs_journal_list *jl = REISERFS_I(inode)->i_jl;
  3566. /* for the whole inode, assume unset id means it was
  3567. * changed in the current transaction. More conservative
  3568. */
  3569. if (!id || !jl) {
  3570. reiserfs_update_inode_transaction(inode);
  3571. id = REISERFS_I(inode)->i_trans_id;
  3572. /* jl will be updated in __commit_trans_jl */
  3573. }
  3574. return __commit_trans_jl(inode, id, jl);
  3575. }
  3576. void reiserfs_restore_prepared_buffer(struct super_block *sb,
  3577. struct buffer_head *bh)
  3578. {
  3579. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3580. PROC_INFO_INC(sb, journal.restore_prepared);
  3581. if (!bh) {
  3582. return;
  3583. }
  3584. if (test_clear_buffer_journal_restore_dirty(bh) &&
  3585. buffer_journal_dirty(bh)) {
  3586. struct reiserfs_journal_cnode *cn;
  3587. cn = get_journal_hash_dev(sb,
  3588. journal->j_list_hash_table,
  3589. bh->b_blocknr);
  3590. if (cn && can_dirty(cn)) {
  3591. set_buffer_journal_test(bh);
  3592. mark_buffer_dirty(bh);
  3593. }
  3594. }
  3595. clear_buffer_journal_prepared(bh);
  3596. }
  3597. extern struct tree_balance *cur_tb;
  3598. /*
  3599. ** before we can change a metadata block, we have to make sure it won't
  3600. ** be written to disk while we are altering it. So, we must:
  3601. ** clean it
  3602. ** wait on it.
  3603. **
  3604. */
  3605. int reiserfs_prepare_for_journal(struct super_block *sb,
  3606. struct buffer_head *bh, int wait)
  3607. {
  3608. PROC_INFO_INC(sb, journal.prepare);
  3609. if (!trylock_buffer(bh)) {
  3610. if (!wait)
  3611. return 0;
  3612. lock_buffer(bh);
  3613. }
  3614. set_buffer_journal_prepared(bh);
  3615. if (test_clear_buffer_dirty(bh) && buffer_journal_dirty(bh)) {
  3616. clear_buffer_journal_test(bh);
  3617. set_buffer_journal_restore_dirty(bh);
  3618. }
  3619. unlock_buffer(bh);
  3620. return 1;
  3621. }
  3622. static void flush_old_journal_lists(struct super_block *s)
  3623. {
  3624. struct reiserfs_journal *journal = SB_JOURNAL(s);
  3625. struct reiserfs_journal_list *jl;
  3626. struct list_head *entry;
  3627. time_t now = get_seconds();
  3628. while (!list_empty(&journal->j_journal_list)) {
  3629. entry = journal->j_journal_list.next;
  3630. jl = JOURNAL_LIST_ENTRY(entry);
  3631. /* this check should always be run, to send old lists to disk */
  3632. if (jl->j_timestamp < (now - (JOURNAL_MAX_TRANS_AGE * 4)) &&
  3633. atomic_read(&jl->j_commit_left) == 0 &&
  3634. test_transaction(s, jl)) {
  3635. flush_used_journal_lists(s, jl);
  3636. } else {
  3637. break;
  3638. }
  3639. }
  3640. }
  3641. /*
  3642. ** long and ugly. If flush, will not return until all commit
  3643. ** blocks and all real buffers in the trans are on disk.
  3644. ** If no_async, won't return until all commit blocks are on disk.
  3645. **
  3646. ** keep reading, there are comments as you go along
  3647. **
  3648. ** If the journal is aborted, we just clean up. Things like flushing
  3649. ** journal lists, etc just won't happen.
  3650. */
  3651. static int do_journal_end(struct reiserfs_transaction_handle *th,
  3652. struct super_block *sb, unsigned long nblocks,
  3653. int flags)
  3654. {
  3655. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3656. struct reiserfs_journal_cnode *cn, *next, *jl_cn;
  3657. struct reiserfs_journal_cnode *last_cn = NULL;
  3658. struct reiserfs_journal_desc *desc;
  3659. struct reiserfs_journal_commit *commit;
  3660. struct buffer_head *c_bh; /* commit bh */
  3661. struct buffer_head *d_bh; /* desc bh */
  3662. int cur_write_start = 0; /* start index of current log write */
  3663. int old_start;
  3664. int i;
  3665. int flush;
  3666. int wait_on_commit;
  3667. struct reiserfs_journal_list *jl, *temp_jl;
  3668. struct list_head *entry, *safe;
  3669. unsigned long jindex;
  3670. unsigned int commit_trans_id;
  3671. int trans_half;
  3672. BUG_ON(th->t_refcount > 1);
  3673. BUG_ON(!th->t_trans_id);
  3674. /* protect flush_older_commits from doing mistakes if the
  3675. transaction ID counter gets overflowed. */
  3676. if (th->t_trans_id == ~0U)
  3677. flags |= FLUSH_ALL | COMMIT_NOW | WAIT;
  3678. flush = flags & FLUSH_ALL;
  3679. wait_on_commit = flags & WAIT;
  3680. put_fs_excl();
  3681. current->journal_info = th->t_handle_save;
  3682. reiserfs_check_lock_depth(sb, "journal end");
  3683. if (journal->j_len == 0) {
  3684. reiserfs_prepare_for_journal(sb, SB_BUFFER_WITH_SB(sb),
  3685. 1);
  3686. journal_mark_dirty(th, sb, SB_BUFFER_WITH_SB(sb));
  3687. }
  3688. lock_journal(sb);
  3689. if (journal->j_next_full_flush) {
  3690. flags |= FLUSH_ALL;
  3691. flush = 1;
  3692. }
  3693. if (journal->j_next_async_flush) {
  3694. flags |= COMMIT_NOW | WAIT;
  3695. wait_on_commit = 1;
  3696. }
  3697. /* check_journal_end locks the journal, and unlocks if it does not return 1
  3698. ** it tells us if we should continue with the journal_end, or just return
  3699. */
  3700. if (!check_journal_end(th, sb, nblocks, flags)) {
  3701. sb->s_dirt = 1;
  3702. wake_queued_writers(sb);
  3703. reiserfs_async_progress_wait(sb);
  3704. goto out;
  3705. }
  3706. /* check_journal_end might set these, check again */
  3707. if (journal->j_next_full_flush) {
  3708. flush = 1;
  3709. }
  3710. /*
  3711. ** j must wait means we have to flush the log blocks, and the real blocks for
  3712. ** this transaction
  3713. */
  3714. if (journal->j_must_wait > 0) {
  3715. flush = 1;
  3716. }
  3717. #ifdef REISERFS_PREALLOCATE
  3718. /* quota ops might need to nest, setup the journal_info pointer for them
  3719. * and raise the refcount so that it is > 0. */
  3720. current->journal_info = th;
  3721. th->t_refcount++;
  3722. reiserfs_discard_all_prealloc(th); /* it should not involve new blocks into
  3723. * the transaction */
  3724. th->t_refcount--;
  3725. current->journal_info = th->t_handle_save;
  3726. #endif
  3727. /* setup description block */
  3728. d_bh =
  3729. journal_getblk(sb,
  3730. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  3731. journal->j_start);
  3732. set_buffer_uptodate(d_bh);
  3733. desc = (struct reiserfs_journal_desc *)(d_bh)->b_data;
  3734. memset(d_bh->b_data, 0, d_bh->b_size);
  3735. memcpy(get_journal_desc_magic(d_bh), JOURNAL_DESC_MAGIC, 8);
  3736. set_desc_trans_id(desc, journal->j_trans_id);
  3737. /* setup commit block. Don't write (keep it clean too) this one until after everyone else is written */
  3738. c_bh = journal_getblk(sb, SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  3739. ((journal->j_start + journal->j_len +
  3740. 1) % SB_ONDISK_JOURNAL_SIZE(sb)));
  3741. commit = (struct reiserfs_journal_commit *)c_bh->b_data;
  3742. memset(c_bh->b_data, 0, c_bh->b_size);
  3743. set_commit_trans_id(commit, journal->j_trans_id);
  3744. set_buffer_uptodate(c_bh);
  3745. /* init this journal list */
  3746. jl = journal->j_current_jl;
  3747. /* we lock the commit before doing anything because
  3748. * we want to make sure nobody tries to run flush_commit_list until
  3749. * the new transaction is fully setup, and we've already flushed the
  3750. * ordered bh list
  3751. */
  3752. reiserfs_mutex_lock_safe(&jl->j_commit_mutex, sb);
  3753. /* save the transaction id in case we need to commit it later */
  3754. commit_trans_id = jl->j_trans_id;
  3755. atomic_set(&jl->j_older_commits_done, 0);
  3756. jl->j_trans_id = journal->j_trans_id;
  3757. jl->j_timestamp = journal->j_trans_start_time;
  3758. jl->j_commit_bh = c_bh;
  3759. jl->j_start = journal->j_start;
  3760. jl->j_len = journal->j_len;
  3761. atomic_set(&jl->j_nonzerolen, journal->j_len);
  3762. atomic_set(&jl->j_commit_left, journal->j_len + 2);
  3763. jl->j_realblock = NULL;
  3764. /* The ENTIRE FOR LOOP MUST not cause schedule to occur.
  3765. ** for each real block, add it to the journal list hash,
  3766. ** copy into real block index array in the commit or desc block
  3767. */
  3768. trans_half = journal_trans_half(sb->s_blocksize);
  3769. for (i = 0, cn = journal->j_first; cn; cn = cn->next, i++) {
  3770. if (buffer_journaled(cn->bh)) {
  3771. jl_cn = get_cnode(sb);
  3772. if (!jl_cn) {
  3773. reiserfs_panic(sb, "journal-1676",
  3774. "get_cnode returned NULL");
  3775. }
  3776. if (i == 0) {
  3777. jl->j_realblock = jl_cn;
  3778. }
  3779. jl_cn->prev = last_cn;
  3780. jl_cn->next = NULL;
  3781. if (last_cn) {
  3782. last_cn->next = jl_cn;
  3783. }
  3784. last_cn = jl_cn;
  3785. /* make sure the block we are trying to log is not a block
  3786. of journal or reserved area */
  3787. if (is_block_in_log_or_reserved_area
  3788. (sb, cn->bh->b_blocknr)) {
  3789. reiserfs_panic(sb, "journal-2332",
  3790. "Trying to log block %lu, "
  3791. "which is a log block",
  3792. cn->bh->b_blocknr);
  3793. }
  3794. jl_cn->blocknr = cn->bh->b_blocknr;
  3795. jl_cn->state = 0;
  3796. jl_cn->sb = sb;
  3797. jl_cn->bh = cn->bh;
  3798. jl_cn->jlist = jl;
  3799. insert_journal_hash(journal->j_list_hash_table, jl_cn);
  3800. if (i < trans_half) {
  3801. desc->j_realblock[i] =
  3802. cpu_to_le32(cn->bh->b_blocknr);
  3803. } else {
  3804. commit->j_realblock[i - trans_half] =
  3805. cpu_to_le32(cn->bh->b_blocknr);
  3806. }
  3807. } else {
  3808. i--;
  3809. }
  3810. }
  3811. set_desc_trans_len(desc, journal->j_len);
  3812. set_desc_mount_id(desc, journal->j_mount_id);
  3813. set_desc_trans_id(desc, journal->j_trans_id);
  3814. set_commit_trans_len(commit, journal->j_len);
  3815. /* special check in case all buffers in the journal were marked for not logging */
  3816. BUG_ON(journal->j_len == 0);
  3817. /* we're about to dirty all the log blocks, mark the description block
  3818. * dirty now too. Don't mark the commit block dirty until all the
  3819. * others are on disk
  3820. */
  3821. mark_buffer_dirty(d_bh);
  3822. /* first data block is j_start + 1, so add one to cur_write_start wherever you use it */
  3823. cur_write_start = journal->j_start;
  3824. cn = journal->j_first;
  3825. jindex = 1; /* start at one so we don't get the desc again */
  3826. while (cn) {
  3827. clear_buffer_journal_new(cn->bh);
  3828. /* copy all the real blocks into log area. dirty log blocks */
  3829. if (buffer_journaled(cn->bh)) {
  3830. struct buffer_head *tmp_bh;
  3831. char *addr;
  3832. struct page *page;
  3833. tmp_bh =
  3834. journal_getblk(sb,
  3835. SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
  3836. ((cur_write_start +
  3837. jindex) %
  3838. SB_ONDISK_JOURNAL_SIZE(sb)));
  3839. set_buffer_uptodate(tmp_bh);
  3840. page = cn->bh->b_page;
  3841. addr = kmap(page);
  3842. memcpy(tmp_bh->b_data,
  3843. addr + offset_in_page(cn->bh->b_data),
  3844. cn->bh->b_size);
  3845. kunmap(page);
  3846. mark_buffer_dirty(tmp_bh);
  3847. jindex++;
  3848. set_buffer_journal_dirty(cn->bh);
  3849. clear_buffer_journaled(cn->bh);
  3850. } else {
  3851. /* JDirty cleared sometime during transaction. don't log this one */
  3852. reiserfs_warning(sb, "journal-2048",
  3853. "BAD, buffer in journal hash, "
  3854. "but not JDirty!");
  3855. brelse(cn->bh);
  3856. }
  3857. next = cn->next;
  3858. free_cnode(sb, cn);
  3859. cn = next;
  3860. reiserfs_write_unlock(sb);
  3861. cond_resched();
  3862. reiserfs_write_lock(sb);
  3863. }
  3864. /* we are done with both the c_bh and d_bh, but
  3865. ** c_bh must be written after all other commit blocks,
  3866. ** so we dirty/relse c_bh in flush_commit_list, with commit_left <= 1.
  3867. */
  3868. journal->j_current_jl = alloc_journal_list(sb);
  3869. /* now it is safe to insert this transaction on the main list */
  3870. list_add_tail(&jl->j_list, &journal->j_journal_list);
  3871. list_add_tail(&jl->j_working_list, &journal->j_working_list);
  3872. journal->j_num_work_lists++;
  3873. /* reset journal values for the next transaction */
  3874. old_start = journal->j_start;
  3875. journal->j_start =
  3876. (journal->j_start + journal->j_len +
  3877. 2) % SB_ONDISK_JOURNAL_SIZE(sb);
  3878. atomic_set(&(journal->j_wcount), 0);
  3879. journal->j_bcount = 0;
  3880. journal->j_last = NULL;
  3881. journal->j_first = NULL;
  3882. journal->j_len = 0;
  3883. journal->j_trans_start_time = 0;
  3884. /* check for trans_id overflow */
  3885. if (++journal->j_trans_id == 0)
  3886. journal->j_trans_id = 10;
  3887. journal->j_current_jl->j_trans_id = journal->j_trans_id;
  3888. journal->j_must_wait = 0;
  3889. journal->j_len_alloc = 0;
  3890. journal->j_next_full_flush = 0;
  3891. journal->j_next_async_flush = 0;
  3892. init_journal_hash(sb);
  3893. // make sure reiserfs_add_jh sees the new current_jl before we
  3894. // write out the tails
  3895. smp_mb();
  3896. /* tail conversion targets have to hit the disk before we end the
  3897. * transaction. Otherwise a later transaction might repack the tail
  3898. * before this transaction commits, leaving the data block unflushed and
  3899. * clean, if we crash before the later transaction commits, the data block
  3900. * is lost.
  3901. */
  3902. if (!list_empty(&jl->j_tail_bh_list)) {
  3903. reiserfs_write_unlock(sb);
  3904. write_ordered_buffers(&journal->j_dirty_buffers_lock,
  3905. journal, jl, &jl->j_tail_bh_list);
  3906. reiserfs_write_lock(sb);
  3907. }
  3908. BUG_ON(!list_empty(&jl->j_tail_bh_list));
  3909. mutex_unlock(&jl->j_commit_mutex);
  3910. /* honor the flush wishes from the caller, simple commits can
  3911. ** be done outside the journal lock, they are done below
  3912. **
  3913. ** if we don't flush the commit list right now, we put it into
  3914. ** the work queue so the people waiting on the async progress work
  3915. ** queue don't wait for this proc to flush journal lists and such.
  3916. */
  3917. if (flush) {
  3918. flush_commit_list(sb, jl, 1);
  3919. flush_journal_list(sb, jl, 1);
  3920. } else if (!(jl->j_state & LIST_COMMIT_PENDING))
  3921. queue_delayed_work(commit_wq, &journal->j_work, HZ / 10);
  3922. /* if the next transaction has any chance of wrapping, flush
  3923. ** transactions that might get overwritten. If any journal lists are very
  3924. ** old flush them as well.
  3925. */
  3926. first_jl:
  3927. list_for_each_safe(entry, safe, &journal->j_journal_list) {
  3928. temp_jl = JOURNAL_LIST_ENTRY(entry);
  3929. if (journal->j_start <= temp_jl->j_start) {
  3930. if ((journal->j_start + journal->j_trans_max + 1) >=
  3931. temp_jl->j_start) {
  3932. flush_used_journal_lists(sb, temp_jl);
  3933. goto first_jl;
  3934. } else if ((journal->j_start +
  3935. journal->j_trans_max + 1) <
  3936. SB_ONDISK_JOURNAL_SIZE(sb)) {
  3937. /* if we don't cross into the next transaction and we don't
  3938. * wrap, there is no way we can overlap any later transactions
  3939. * break now
  3940. */
  3941. break;
  3942. }
  3943. } else if ((journal->j_start +
  3944. journal->j_trans_max + 1) >
  3945. SB_ONDISK_JOURNAL_SIZE(sb)) {
  3946. if (((journal->j_start + journal->j_trans_max + 1) %
  3947. SB_ONDISK_JOURNAL_SIZE(sb)) >=
  3948. temp_jl->j_start) {
  3949. flush_used_journal_lists(sb, temp_jl);
  3950. goto first_jl;
  3951. } else {
  3952. /* we don't overlap anything from out start to the end of the
  3953. * log, and our wrapped portion doesn't overlap anything at
  3954. * the start of the log. We can break
  3955. */
  3956. break;
  3957. }
  3958. }
  3959. }
  3960. flush_old_journal_lists(sb);
  3961. journal->j_current_jl->j_list_bitmap =
  3962. get_list_bitmap(sb, journal->j_current_jl);
  3963. if (!(journal->j_current_jl->j_list_bitmap)) {
  3964. reiserfs_panic(sb, "journal-1996",
  3965. "could not get a list bitmap");
  3966. }
  3967. atomic_set(&(journal->j_jlock), 0);
  3968. unlock_journal(sb);
  3969. /* wake up any body waiting to join. */
  3970. clear_bit(J_WRITERS_QUEUED, &journal->j_state);
  3971. wake_up(&(journal->j_join_wait));
  3972. if (!flush && wait_on_commit &&
  3973. journal_list_still_alive(sb, commit_trans_id)) {
  3974. flush_commit_list(sb, jl, 1);
  3975. }
  3976. out:
  3977. reiserfs_check_lock_depth(sb, "journal end2");
  3978. memset(th, 0, sizeof(*th));
  3979. /* Re-set th->t_super, so we can properly keep track of how many
  3980. * persistent transactions there are. We need to do this so if this
  3981. * call is part of a failed restart_transaction, we can free it later */
  3982. th->t_super = sb;
  3983. return journal->j_errno;
  3984. }
  3985. /* Send the file system read only and refuse new transactions */
  3986. void reiserfs_abort_journal(struct super_block *sb, int errno)
  3987. {
  3988. struct reiserfs_journal *journal = SB_JOURNAL(sb);
  3989. if (test_bit(J_ABORTED, &journal->j_state))
  3990. return;
  3991. if (!journal->j_errno)
  3992. journal->j_errno = errno;
  3993. sb->s_flags |= MS_RDONLY;
  3994. set_bit(J_ABORTED, &journal->j_state);
  3995. #ifdef CONFIG_REISERFS_CHECK
  3996. dump_stack();
  3997. #endif
  3998. }