jbd2: fix sending of data flush on journal commit
[deliverable/linux.git] / fs / jbd2 / commit.c
CommitLineData
470decc6 1/*
f7f4bccb 2 * linux/fs/jbd2/commit.c
470decc6
DK
3 *
4 * Written by Stephen C. Tweedie <sct@redhat.com>, 1998
5 *
6 * Copyright 1998 Red Hat corp --- All Rights Reserved
7 *
8 * This file is part of the Linux kernel and is made available under
9 * the terms of the GNU General Public License, version 2, or at your
10 * option, any later version, incorporated herein by reference.
11 *
12 * Journal commit routines for the generic filesystem journaling code;
13 * part of the ext2fs journaling system.
14 */
15
16#include <linux/time.h>
17#include <linux/fs.h>
f7f4bccb 18#include <linux/jbd2.h>
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19#include <linux/errno.h>
20#include <linux/slab.h>
21#include <linux/mm.h>
22#include <linux/pagemap.h>
8e85fb3f 23#include <linux/jiffies.h>
818d276c 24#include <linux/crc32.h>
cd1aac32
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25#include <linux/writeback.h>
26#include <linux/backing-dev.h>
fd98496f 27#include <linux/bio.h>
0e3d2a63 28#include <linux/blkdev.h>
39e3ac25 29#include <linux/bitops.h>
879c5e6b 30#include <trace/events/jbd2.h>
39e3ac25 31#include <asm/system.h>
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32
33/*
34 * Default IO end handler for temporary BJ_IO buffer_heads.
35 */
36static void journal_end_buffer_io_sync(struct buffer_head *bh, int uptodate)
37{
38 BUFFER_TRACE(bh, "");
39 if (uptodate)
40 set_buffer_uptodate(bh);
41 else
42 clear_buffer_uptodate(bh);
43 unlock_buffer(bh);
44}
45
46/*
87c89c23
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47 * When an ext4 file is truncated, it is possible that some pages are not
48 * successfully freed, because they are attached to a committing transaction.
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49 * After the transaction commits, these pages are left on the LRU, with no
50 * ->mapping, and with attached buffers. These pages are trivially reclaimable
51 * by the VM, but their apparent absence upsets the VM accounting, and it makes
52 * the numbers in /proc/meminfo look odd.
53 *
54 * So here, we have a buffer which has just come off the forget list. Look to
55 * see if we can strip all buffers from the backing page.
56 *
57 * Called under lock_journal(), and possibly under journal_datalist_lock. The
58 * caller provided us with a ref against the buffer, and we drop that here.
59 */
60static void release_buffer_page(struct buffer_head *bh)
61{
62 struct page *page;
63
64 if (buffer_dirty(bh))
65 goto nope;
66 if (atomic_read(&bh->b_count) != 1)
67 goto nope;
68 page = bh->b_page;
69 if (!page)
70 goto nope;
71 if (page->mapping)
72 goto nope;
73
74 /* OK, it's a truncated page */
529ae9aa 75 if (!trylock_page(page))
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76 goto nope;
77
78 page_cache_get(page);
79 __brelse(bh);
80 try_to_free_buffers(page);
81 unlock_page(page);
82 page_cache_release(page);
83 return;
84
85nope:
86 __brelse(bh);
87}
88
818d276c
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89/*
90 * Done it all: now submit the commit record. We should have
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91 * cleaned up our previous buffers by now, so if we are in abort
92 * mode we can now just skip the rest of the journal write
93 * entirely.
94 *
95 * Returns 1 if the journal needs to be aborted or 0 on success
96 */
818d276c
GS
97static int journal_submit_commit_record(journal_t *journal,
98 transaction_t *commit_transaction,
99 struct buffer_head **cbh,
100 __u32 crc32_sum)
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101{
102 struct journal_head *descriptor;
818d276c 103 struct commit_header *tmp;
470decc6 104 struct buffer_head *bh;
818d276c 105 int ret;
736603ab 106 struct timespec now = current_kernel_time();
470decc6 107
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108 *cbh = NULL;
109
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110 if (is_journal_aborted(journal))
111 return 0;
112
f7f4bccb 113 descriptor = jbd2_journal_get_descriptor_buffer(journal);
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114 if (!descriptor)
115 return 1;
116
117 bh = jh2bh(descriptor);
118
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119 tmp = (struct commit_header *)bh->b_data;
120 tmp->h_magic = cpu_to_be32(JBD2_MAGIC_NUMBER);
121 tmp->h_blocktype = cpu_to_be32(JBD2_COMMIT_BLOCK);
122 tmp->h_sequence = cpu_to_be32(commit_transaction->t_tid);
736603ab
TT
123 tmp->h_commit_sec = cpu_to_be64(now.tv_sec);
124 tmp->h_commit_nsec = cpu_to_be32(now.tv_nsec);
818d276c
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125
126 if (JBD2_HAS_COMPAT_FEATURE(journal,
127 JBD2_FEATURE_COMPAT_CHECKSUM)) {
128 tmp->h_chksum_type = JBD2_CRC32_CHKSUM;
129 tmp->h_chksum_size = JBD2_CRC32_CHKSUM_SIZE;
130 tmp->h_chksum[0] = cpu_to_be32(crc32_sum);
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131 }
132
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133 JBUFFER_TRACE(descriptor, "submit commit block");
134 lock_buffer(bh);
45a90bfd 135 clear_buffer_dirty(bh);
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136 set_buffer_uptodate(bh);
137 bh->b_end_io = journal_end_buffer_io_sync;
138
139 if (journal->j_flags & JBD2_BARRIER &&
0e3d2a63 140 !JBD2_HAS_INCOMPAT_FEATURE(journal,
9c35575b 141 JBD2_FEATURE_INCOMPAT_ASYNC_COMMIT))
721a9602 142 ret = submit_bh(WRITE_SYNC | WRITE_FLUSH_FUA, bh);
9c35575b 143 else
721a9602 144 ret = submit_bh(WRITE_SYNC, bh);
9c35575b 145
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146 *cbh = bh;
147 return ret;
148}
149
150/*
151 * This function along with journal_submit_commit_record
152 * allows to write the commit record asynchronously.
153 */
fd98496f
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154static int journal_wait_on_commit_record(journal_t *journal,
155 struct buffer_head *bh)
818d276c
GS
156{
157 int ret = 0;
158
159 clear_buffer_dirty(bh);
160 wait_on_buffer(bh);
470decc6 161
818d276c
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162 if (unlikely(!buffer_uptodate(bh)))
163 ret = -EIO;
164 put_bh(bh); /* One for getblk() */
165 jbd2_journal_put_journal_head(bh2jh(bh));
166
167 return ret;
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168}
169
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170/*
171 * write the filemap data using writepage() address_space_operations.
172 * We don't do block allocation here even for delalloc. We don't
173 * use writepages() because with dealyed allocation we may be doing
174 * block allocation in writepages().
175 */
176static int journal_submit_inode_data_buffers(struct address_space *mapping)
177{
178 int ret;
179 struct writeback_control wbc = {
180 .sync_mode = WB_SYNC_ALL,
181 .nr_to_write = mapping->nrpages * 2,
182 .range_start = 0,
183 .range_end = i_size_read(mapping->host),
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184 };
185
186 ret = generic_writepages(mapping, &wbc);
187 return ret;
188}
189
c851ed54
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190/*
191 * Submit all the data buffers of inode associated with the transaction to
192 * disk.
193 *
194 * We are in a committing transaction. Therefore no new inode can be added to
195 * our inode list. We use JI_COMMIT_RUNNING flag to protect inode we currently
196 * operate on from being released while we write out pages.
197 */
cd1aac32 198static int journal_submit_data_buffers(journal_t *journal,
c851ed54
JK
199 transaction_t *commit_transaction)
200{
201 struct jbd2_inode *jinode;
202 int err, ret = 0;
203 struct address_space *mapping;
204
205 spin_lock(&journal->j_list_lock);
206 list_for_each_entry(jinode, &commit_transaction->t_inode_list, i_list) {
207 mapping = jinode->i_vfs_inode->i_mapping;
39e3ac25 208 set_bit(__JI_COMMIT_RUNNING, &jinode->i_flags);
c851ed54 209 spin_unlock(&journal->j_list_lock);
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210 /*
211 * submit the inode data buffers. We use writepage
212 * instead of writepages. Because writepages can do
213 * block allocation with delalloc. We need to write
214 * only allocated blocks here.
215 */
879c5e6b 216 trace_jbd2_submit_inode_data(jinode->i_vfs_inode);
cd1aac32 217 err = journal_submit_inode_data_buffers(mapping);
c851ed54
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218 if (!ret)
219 ret = err;
220 spin_lock(&journal->j_list_lock);
221 J_ASSERT(jinode->i_transaction == commit_transaction);
39e3ac25
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222 clear_bit(__JI_COMMIT_RUNNING, &jinode->i_flags);
223 smp_mb__after_clear_bit();
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224 wake_up_bit(&jinode->i_flags, __JI_COMMIT_RUNNING);
225 }
226 spin_unlock(&journal->j_list_lock);
227 return ret;
228}
229
230/*
231 * Wait for data submitted for writeout, refile inodes to proper
232 * transaction if needed.
233 *
234 */
235static int journal_finish_inode_data_buffers(journal_t *journal,
236 transaction_t *commit_transaction)
237{
238 struct jbd2_inode *jinode, *next_i;
239 int err, ret = 0;
240
cd1aac32 241 /* For locking, see the comment in journal_submit_data_buffers() */
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242 spin_lock(&journal->j_list_lock);
243 list_for_each_entry(jinode, &commit_transaction->t_inode_list, i_list) {
39e3ac25 244 set_bit(__JI_COMMIT_RUNNING, &jinode->i_flags);
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245 spin_unlock(&journal->j_list_lock);
246 err = filemap_fdatawait(jinode->i_vfs_inode->i_mapping);
e9e34f4e
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247 if (err) {
248 /*
249 * Because AS_EIO is cleared by
94004ed7 250 * filemap_fdatawait_range(), set it again so
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251 * that user process can get -EIO from fsync().
252 */
253 set_bit(AS_EIO,
254 &jinode->i_vfs_inode->i_mapping->flags);
255
256 if (!ret)
257 ret = err;
258 }
c851ed54 259 spin_lock(&journal->j_list_lock);
39e3ac25
BK
260 clear_bit(__JI_COMMIT_RUNNING, &jinode->i_flags);
261 smp_mb__after_clear_bit();
c851ed54
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262 wake_up_bit(&jinode->i_flags, __JI_COMMIT_RUNNING);
263 }
264
265 /* Now refile inode to proper lists */
266 list_for_each_entry_safe(jinode, next_i,
267 &commit_transaction->t_inode_list, i_list) {
268 list_del(&jinode->i_list);
269 if (jinode->i_next_transaction) {
270 jinode->i_transaction = jinode->i_next_transaction;
271 jinode->i_next_transaction = NULL;
272 list_add(&jinode->i_list,
273 &jinode->i_transaction->t_inode_list);
274 } else {
275 jinode->i_transaction = NULL;
276 }
277 }
278 spin_unlock(&journal->j_list_lock);
279
280 return ret;
281}
282
818d276c
GS
283static __u32 jbd2_checksum_data(__u32 crc32_sum, struct buffer_head *bh)
284{
285 struct page *page = bh->b_page;
286 char *addr;
287 __u32 checksum;
288
289 addr = kmap_atomic(page, KM_USER0);
290 checksum = crc32_be(crc32_sum,
291 (void *)(addr + offset_in_page(bh->b_data)), bh->b_size);
292 kunmap_atomic(addr, KM_USER0);
293
294 return checksum;
295}
296
297static void write_tag_block(int tag_bytes, journal_block_tag_t *tag,
18eba7aa 298 unsigned long long block)
b517bea1
ZB
299{
300 tag->t_blocknr = cpu_to_be32(block & (u32)~0);
cd02ff0b 301 if (tag_bytes > JBD2_TAG_SIZE32)
b517bea1
ZB
302 tag->t_blocknr_high = cpu_to_be32((block >> 31) >> 1);
303}
304
470decc6 305/*
f7f4bccb 306 * jbd2_journal_commit_transaction
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307 *
308 * The primary function for committing a transaction to the log. This
309 * function is called by the journal thread to begin a complete commit.
310 */
f7f4bccb 311void jbd2_journal_commit_transaction(journal_t *journal)
470decc6 312{
8e85fb3f 313 struct transaction_stats_s stats;
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314 transaction_t *commit_transaction;
315 struct journal_head *jh, *new_jh, *descriptor;
316 struct buffer_head **wbuf = journal->j_wbuf;
317 int bufs;
318 int flags;
319 int err;
18eba7aa 320 unsigned long long blocknr;
e07f7183
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321 ktime_t start_time;
322 u64 commit_time;
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323 char *tagp = NULL;
324 journal_header_t *header;
325 journal_block_tag_t *tag = NULL;
326 int space_left = 0;
327 int first_tag = 0;
328 int tag_flag;
fb68407b 329 int i, to_free = 0;
b517bea1 330 int tag_bytes = journal_tag_bytes(journal);
818d276c
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331 struct buffer_head *cbh = NULL; /* For transactional checksums */
332 __u32 crc32_sum = ~0;
82f04ab4 333 struct blk_plug plug;
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334
335 /*
336 * First job: lock down the current transaction and wait for
337 * all outstanding updates to complete.
338 */
339
340#ifdef COMMIT_STATS
341 spin_lock(&journal->j_list_lock);
342 summarise_journal_usage(journal);
343 spin_unlock(&journal->j_list_lock);
344#endif
345
f7f4bccb
MC
346 /* Do we need to erase the effects of a prior jbd2_journal_flush? */
347 if (journal->j_flags & JBD2_FLUSHED) {
470decc6 348 jbd_debug(3, "super block updated\n");
f7f4bccb 349 jbd2_journal_update_superblock(journal, 1);
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DK
350 } else {
351 jbd_debug(3, "superblock not updated\n");
352 }
353
354 J_ASSERT(journal->j_running_transaction != NULL);
355 J_ASSERT(journal->j_committing_transaction == NULL);
356
357 commit_transaction = journal->j_running_transaction;
358 J_ASSERT(commit_transaction->t_state == T_RUNNING);
359
879c5e6b 360 trace_jbd2_start_commit(journal, commit_transaction);
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361 jbd_debug(1, "JBD: starting commit of transaction %d\n",
362 commit_transaction->t_tid);
363
a931da6a 364 write_lock(&journal->j_state_lock);
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365 commit_transaction->t_state = T_LOCKED;
366
879c5e6b 367 trace_jbd2_commit_locking(journal, commit_transaction);
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TT
368 stats.run.rs_wait = commit_transaction->t_max_wait;
369 stats.run.rs_locked = jiffies;
370 stats.run.rs_running = jbd2_time_diff(commit_transaction->t_start,
371 stats.run.rs_locked);
8e85fb3f 372
470decc6 373 spin_lock(&commit_transaction->t_handle_lock);
a51dca9c 374 while (atomic_read(&commit_transaction->t_updates)) {
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DK
375 DEFINE_WAIT(wait);
376
377 prepare_to_wait(&journal->j_wait_updates, &wait,
378 TASK_UNINTERRUPTIBLE);
a51dca9c 379 if (atomic_read(&commit_transaction->t_updates)) {
470decc6 380 spin_unlock(&commit_transaction->t_handle_lock);
a931da6a 381 write_unlock(&journal->j_state_lock);
470decc6 382 schedule();
a931da6a 383 write_lock(&journal->j_state_lock);
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384 spin_lock(&commit_transaction->t_handle_lock);
385 }
386 finish_wait(&journal->j_wait_updates, &wait);
387 }
388 spin_unlock(&commit_transaction->t_handle_lock);
389
a51dca9c 390 J_ASSERT (atomic_read(&commit_transaction->t_outstanding_credits) <=
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DK
391 journal->j_max_transaction_buffers);
392
393 /*
394 * First thing we are allowed to do is to discard any remaining
395 * BJ_Reserved buffers. Note, it is _not_ permissible to assume
396 * that there are no such buffers: if a large filesystem
397 * operation like a truncate needs to split itself over multiple
f7f4bccb 398 * transactions, then it may try to do a jbd2_journal_restart() while
470decc6
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399 * there are still BJ_Reserved buffers outstanding. These must
400 * be released cleanly from the current transaction.
401 *
402 * In this case, the filesystem must still reserve write access
403 * again before modifying the buffer in the new transaction, but
404 * we do not require it to remember exactly which old buffers it
405 * has reserved. This is consistent with the existing behaviour
f7f4bccb 406 * that multiple jbd2_journal_get_write_access() calls to the same
25985edc 407 * buffer are perfectly permissible.
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DK
408 */
409 while (commit_transaction->t_reserved_list) {
410 jh = commit_transaction->t_reserved_list;
411 JBUFFER_TRACE(jh, "reserved, unused: refile");
412 /*
f7f4bccb 413 * A jbd2_journal_get_undo_access()+jbd2_journal_release_buffer() may
470decc6
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414 * leave undo-committed data.
415 */
416 if (jh->b_committed_data) {
417 struct buffer_head *bh = jh2bh(jh);
418
419 jbd_lock_bh_state(bh);
af1e76d6 420 jbd2_free(jh->b_committed_data, bh->b_size);
470decc6
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421 jh->b_committed_data = NULL;
422 jbd_unlock_bh_state(bh);
423 }
f7f4bccb 424 jbd2_journal_refile_buffer(journal, jh);
470decc6
DK
425 }
426
427 /*
428 * Now try to drop any written-back buffers from the journal's
429 * checkpoint lists. We do this *before* commit because it potentially
430 * frees some memory
431 */
432 spin_lock(&journal->j_list_lock);
f7f4bccb 433 __jbd2_journal_clean_checkpoint_list(journal);
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434 spin_unlock(&journal->j_list_lock);
435
436 jbd_debug (3, "JBD: commit phase 1\n");
437
438 /*
439 * Switch to a new revoke table.
440 */
f7f4bccb 441 jbd2_journal_switch_revoke_table(journal);
470decc6 442
879c5e6b 443 trace_jbd2_commit_flushing(journal, commit_transaction);
bf699327
TT
444 stats.run.rs_flushing = jiffies;
445 stats.run.rs_locked = jbd2_time_diff(stats.run.rs_locked,
446 stats.run.rs_flushing);
8e85fb3f 447
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DK
448 commit_transaction->t_state = T_FLUSH;
449 journal->j_committing_transaction = commit_transaction;
450 journal->j_running_transaction = NULL;
e07f7183 451 start_time = ktime_get();
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452 commit_transaction->t_log_start = journal->j_head;
453 wake_up(&journal->j_wait_transaction_locked);
a931da6a 454 write_unlock(&journal->j_state_lock);
470decc6
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455
456 jbd_debug (3, "JBD: commit phase 2\n");
457
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458 /*
459 * Now start flushing things to disk, in the order they appear
460 * on the transaction lists. Data blocks go first.
461 */
cd1aac32 462 err = journal_submit_data_buffers(journal, commit_transaction);
470decc6 463 if (err)
a7fa2baf 464 jbd2_journal_abort(journal, err);
470decc6 465
82f04ab4 466 blk_start_plug(&plug);
67c457a8 467 jbd2_journal_write_revoke_records(journal, commit_transaction,
82f04ab4
JA
468 WRITE_SYNC);
469 blk_finish_plug(&plug);
470decc6
DK
470
471 jbd_debug(3, "JBD: commit phase 2\n");
472
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473 /*
474 * Way to go: we have now written out all of the data for a
475 * transaction! Now comes the tricky part: we need to write out
476 * metadata. Loop over the transaction's entire buffer list:
477 */
a931da6a 478 write_lock(&journal->j_state_lock);
470decc6 479 commit_transaction->t_state = T_COMMIT;
a931da6a 480 write_unlock(&journal->j_state_lock);
470decc6 481
879c5e6b 482 trace_jbd2_commit_logging(journal, commit_transaction);
bf699327
TT
483 stats.run.rs_logging = jiffies;
484 stats.run.rs_flushing = jbd2_time_diff(stats.run.rs_flushing,
485 stats.run.rs_logging);
a51dca9c
TT
486 stats.run.rs_blocks =
487 atomic_read(&commit_transaction->t_outstanding_credits);
bf699327 488 stats.run.rs_blocks_logged = 0;
8e85fb3f 489
1dfc3220 490 J_ASSERT(commit_transaction->t_nr_buffers <=
a51dca9c 491 atomic_read(&commit_transaction->t_outstanding_credits));
1dfc3220 492
87c89c23 493 err = 0;
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494 descriptor = NULL;
495 bufs = 0;
82f04ab4 496 blk_start_plug(&plug);
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497 while (commit_transaction->t_buffers) {
498
499 /* Find the next buffer to be journaled... */
500
501 jh = commit_transaction->t_buffers;
502
503 /* If we're in abort mode, we just un-journal the buffer and
7ad7445f 504 release it. */
470decc6
DK
505
506 if (is_journal_aborted(journal)) {
7ad7445f 507 clear_buffer_jbddirty(jh2bh(jh));
470decc6 508 JBUFFER_TRACE(jh, "journal is aborting: refile");
e06c8227
JB
509 jbd2_buffer_abort_trigger(jh,
510 jh->b_frozen_data ?
511 jh->b_frozen_triggers :
512 jh->b_triggers);
f7f4bccb 513 jbd2_journal_refile_buffer(journal, jh);
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514 /* If that was the last one, we need to clean up
515 * any descriptor buffers which may have been
516 * already allocated, even if we are now
517 * aborting. */
518 if (!commit_transaction->t_buffers)
519 goto start_journal_io;
520 continue;
521 }
522
523 /* Make sure we have a descriptor block in which to
524 record the metadata buffer. */
525
526 if (!descriptor) {
527 struct buffer_head *bh;
528
529 J_ASSERT (bufs == 0);
530
531 jbd_debug(4, "JBD: get descriptor\n");
532
f7f4bccb 533 descriptor = jbd2_journal_get_descriptor_buffer(journal);
470decc6 534 if (!descriptor) {
a7fa2baf 535 jbd2_journal_abort(journal, -EIO);
470decc6
DK
536 continue;
537 }
538
539 bh = jh2bh(descriptor);
540 jbd_debug(4, "JBD: got buffer %llu (%p)\n",
541 (unsigned long long)bh->b_blocknr, bh->b_data);
542 header = (journal_header_t *)&bh->b_data[0];
f7f4bccb
MC
543 header->h_magic = cpu_to_be32(JBD2_MAGIC_NUMBER);
544 header->h_blocktype = cpu_to_be32(JBD2_DESCRIPTOR_BLOCK);
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545 header->h_sequence = cpu_to_be32(commit_transaction->t_tid);
546
547 tagp = &bh->b_data[sizeof(journal_header_t)];
548 space_left = bh->b_size - sizeof(journal_header_t);
549 first_tag = 1;
550 set_buffer_jwrite(bh);
551 set_buffer_dirty(bh);
552 wbuf[bufs++] = bh;
553
554 /* Record it so that we can wait for IO
555 completion later */
556 BUFFER_TRACE(bh, "ph3: file as descriptor");
f7f4bccb 557 jbd2_journal_file_buffer(descriptor, commit_transaction,
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DK
558 BJ_LogCtl);
559 }
560
561 /* Where is the buffer to be written? */
562
f7f4bccb 563 err = jbd2_journal_next_log_block(journal, &blocknr);
470decc6
DK
564 /* If the block mapping failed, just abandon the buffer
565 and repeat this loop: we'll fall into the
566 refile-on-abort condition above. */
567 if (err) {
a7fa2baf 568 jbd2_journal_abort(journal, err);
470decc6
DK
569 continue;
570 }
571
572 /*
573 * start_this_handle() uses t_outstanding_credits to determine
574 * the free space in the log, but this counter is changed
f7f4bccb 575 * by jbd2_journal_next_log_block() also.
470decc6 576 */
a51dca9c 577 atomic_dec(&commit_transaction->t_outstanding_credits);
470decc6
DK
578
579 /* Bump b_count to prevent truncate from stumbling over
580 the shadowed buffer! @@@ This can go if we ever get
581 rid of the BJ_IO/BJ_Shadow pairing of buffers. */
582 atomic_inc(&jh2bh(jh)->b_count);
583
584 /* Make a temporary IO buffer with which to write it out
585 (this will requeue both the metadata buffer and the
586 temporary IO buffer). new_bh goes on BJ_IO*/
587
588 set_bit(BH_JWrite, &jh2bh(jh)->b_state);
589 /*
f7f4bccb 590 * akpm: jbd2_journal_write_metadata_buffer() sets
470decc6
DK
591 * new_bh->b_transaction to commit_transaction.
592 * We need to clean this up before we release new_bh
593 * (which is of type BJ_IO)
594 */
595 JBUFFER_TRACE(jh, "ph3: write metadata");
f7f4bccb 596 flags = jbd2_journal_write_metadata_buffer(commit_transaction,
470decc6 597 jh, &new_jh, blocknr);
e6ec116b
TT
598 if (flags < 0) {
599 jbd2_journal_abort(journal, flags);
600 continue;
601 }
470decc6
DK
602 set_bit(BH_JWrite, &jh2bh(new_jh)->b_state);
603 wbuf[bufs++] = jh2bh(new_jh);
604
605 /* Record the new block's tag in the current descriptor
606 buffer */
607
608 tag_flag = 0;
609 if (flags & 1)
f7f4bccb 610 tag_flag |= JBD2_FLAG_ESCAPE;
470decc6 611 if (!first_tag)
f7f4bccb 612 tag_flag |= JBD2_FLAG_SAME_UUID;
470decc6
DK
613
614 tag = (journal_block_tag_t *) tagp;
b517bea1 615 write_tag_block(tag_bytes, tag, jh2bh(jh)->b_blocknr);
470decc6 616 tag->t_flags = cpu_to_be32(tag_flag);
b517bea1
ZB
617 tagp += tag_bytes;
618 space_left -= tag_bytes;
470decc6
DK
619
620 if (first_tag) {
621 memcpy (tagp, journal->j_uuid, 16);
622 tagp += 16;
623 space_left -= 16;
624 first_tag = 0;
625 }
626
627 /* If there's no more to do, or if the descriptor is full,
628 let the IO rip! */
629
630 if (bufs == journal->j_wbufsize ||
631 commit_transaction->t_buffers == NULL ||
b517bea1 632 space_left < tag_bytes + 16) {
470decc6
DK
633
634 jbd_debug(4, "JBD: Submit %d IOs\n", bufs);
635
636 /* Write an end-of-descriptor marker before
637 submitting the IOs. "tag" still points to
638 the last tag we set up. */
639
f7f4bccb 640 tag->t_flags |= cpu_to_be32(JBD2_FLAG_LAST_TAG);
470decc6
DK
641
642start_journal_io:
643 for (i = 0; i < bufs; i++) {
644 struct buffer_head *bh = wbuf[i];
818d276c
GS
645 /*
646 * Compute checksum.
647 */
648 if (JBD2_HAS_COMPAT_FEATURE(journal,
649 JBD2_FEATURE_COMPAT_CHECKSUM)) {
650 crc32_sum =
651 jbd2_checksum_data(crc32_sum, bh);
652 }
653
470decc6
DK
654 lock_buffer(bh);
655 clear_buffer_dirty(bh);
656 set_buffer_uptodate(bh);
657 bh->b_end_io = journal_end_buffer_io_sync;
82f04ab4 658 submit_bh(WRITE_SYNC, bh);
470decc6
DK
659 }
660 cond_resched();
bf699327 661 stats.run.rs_blocks_logged += bufs;
470decc6
DK
662
663 /* Force a new descriptor to be generated next
664 time round the loop. */
665 descriptor = NULL;
666 bufs = 0;
667 }
668 }
669
f73bee49
JK
670 err = journal_finish_inode_data_buffers(journal, commit_transaction);
671 if (err) {
672 printk(KERN_WARNING
673 "JBD2: Detected IO errors while flushing file data "
674 "on %s\n", journal->j_devname);
675 if (journal->j_flags & JBD2_ABORT_ON_SYNCDATA_ERR)
676 jbd2_journal_abort(journal, err);
677 err = 0;
678 }
679
cc3e1bea
TT
680 /*
681 * If the journal is not located on the file system device,
682 * then we must flush the file system device before we issue
683 * the commit record
684 */
81be12c8 685 if (commit_transaction->t_need_data_flush &&
cc3e1bea
TT
686 (journal->j_fs_dev != journal->j_dev) &&
687 (journal->j_flags & JBD2_BARRIER))
dd3932ed 688 blkdev_issue_flush(journal->j_fs_dev, GFP_KERNEL, NULL);
818d276c 689
cc3e1bea 690 /* Done it all: now write the commit record asynchronously. */
818d276c 691 if (JBD2_HAS_INCOMPAT_FEATURE(journal,
0e3d2a63 692 JBD2_FEATURE_INCOMPAT_ASYNC_COMMIT)) {
818d276c
GS
693 err = journal_submit_commit_record(journal, commit_transaction,
694 &cbh, crc32_sum);
695 if (err)
696 __jbd2_journal_abort_hard(journal);
e9e34f4e 697 }
c851ed54 698
82f04ab4
JA
699 blk_finish_plug(&plug);
700
470decc6
DK
701 /* Lo and behold: we have just managed to send a transaction to
702 the log. Before we can commit it, wait for the IO so far to
703 complete. Control buffers being written are on the
704 transaction's t_log_list queue, and metadata buffers are on
705 the t_iobuf_list queue.
706
707 Wait for the buffers in reverse order. That way we are
708 less likely to be woken up until all IOs have completed, and
709 so we incur less scheduling load.
710 */
711
87c89c23 712 jbd_debug(3, "JBD: commit phase 3\n");
470decc6
DK
713
714 /*
715 * akpm: these are BJ_IO, and j_list_lock is not needed.
716 * See __journal_try_to_free_buffer.
717 */
718wait_for_iobuf:
719 while (commit_transaction->t_iobuf_list != NULL) {
720 struct buffer_head *bh;
721
722 jh = commit_transaction->t_iobuf_list->b_tprev;
723 bh = jh2bh(jh);
724 if (buffer_locked(bh)) {
725 wait_on_buffer(bh);
726 goto wait_for_iobuf;
727 }
728 if (cond_resched())
729 goto wait_for_iobuf;
730
731 if (unlikely(!buffer_uptodate(bh)))
732 err = -EIO;
733
734 clear_buffer_jwrite(bh);
735
736 JBUFFER_TRACE(jh, "ph4: unfile after journal write");
f7f4bccb 737 jbd2_journal_unfile_buffer(journal, jh);
470decc6
DK
738
739 /*
740 * ->t_iobuf_list should contain only dummy buffer_heads
f7f4bccb 741 * which were created by jbd2_journal_write_metadata_buffer().
470decc6
DK
742 */
743 BUFFER_TRACE(bh, "dumping temporary bh");
f7f4bccb 744 jbd2_journal_put_journal_head(jh);
470decc6
DK
745 __brelse(bh);
746 J_ASSERT_BH(bh, atomic_read(&bh->b_count) == 0);
747 free_buffer_head(bh);
748
749 /* We also have to unlock and free the corresponding
750 shadowed buffer */
751 jh = commit_transaction->t_shadow_list->b_tprev;
752 bh = jh2bh(jh);
753 clear_bit(BH_JWrite, &bh->b_state);
754 J_ASSERT_BH(bh, buffer_jbddirty(bh));
755
756 /* The metadata is now released for reuse, but we need
757 to remember it against this transaction so that when
758 we finally commit, we can do any checkpointing
759 required. */
760 JBUFFER_TRACE(jh, "file as BJ_Forget");
f7f4bccb 761 jbd2_journal_file_buffer(jh, commit_transaction, BJ_Forget);
229309ca
JK
762 /*
763 * Wake up any transactions which were waiting for this IO to
764 * complete. The barrier must be here so that changes by
765 * jbd2_journal_file_buffer() take effect before wake_up_bit()
766 * does the waitqueue check.
767 */
768 smp_mb();
470decc6
DK
769 wake_up_bit(&bh->b_state, BH_Unshadow);
770 JBUFFER_TRACE(jh, "brelse shadowed buffer");
771 __brelse(bh);
772 }
773
774 J_ASSERT (commit_transaction->t_shadow_list == NULL);
775
87c89c23 776 jbd_debug(3, "JBD: commit phase 4\n");
470decc6
DK
777
778 /* Here we wait for the revoke record and descriptor record buffers */
779 wait_for_ctlbuf:
780 while (commit_transaction->t_log_list != NULL) {
781 struct buffer_head *bh;
782
783 jh = commit_transaction->t_log_list->b_tprev;
784 bh = jh2bh(jh);
785 if (buffer_locked(bh)) {
786 wait_on_buffer(bh);
787 goto wait_for_ctlbuf;
788 }
789 if (cond_resched())
790 goto wait_for_ctlbuf;
791
792 if (unlikely(!buffer_uptodate(bh)))
793 err = -EIO;
794
795 BUFFER_TRACE(bh, "ph5: control buffer writeout done: unfile");
796 clear_buffer_jwrite(bh);
f7f4bccb
MC
797 jbd2_journal_unfile_buffer(journal, jh);
798 jbd2_journal_put_journal_head(jh);
470decc6
DK
799 __brelse(bh); /* One for getblk */
800 /* AKPM: bforget here */
801 }
802
77e841de
HK
803 if (err)
804 jbd2_journal_abort(journal, err);
805
87c89c23 806 jbd_debug(3, "JBD: commit phase 5\n");
470decc6 807
818d276c 808 if (!JBD2_HAS_INCOMPAT_FEATURE(journal,
0e3d2a63 809 JBD2_FEATURE_INCOMPAT_ASYNC_COMMIT)) {
818d276c
GS
810 err = journal_submit_commit_record(journal, commit_transaction,
811 &cbh, crc32_sum);
812 if (err)
813 __jbd2_journal_abort_hard(journal);
814 }
6cba611e 815 if (cbh)
fd98496f 816 err = journal_wait_on_commit_record(journal, cbh);
f73bee49
JK
817 if (JBD2_HAS_INCOMPAT_FEATURE(journal,
818 JBD2_FEATURE_INCOMPAT_ASYNC_COMMIT) &&
819 journal->j_flags & JBD2_BARRIER) {
dd3932ed 820 blkdev_issue_flush(journal->j_dev, GFP_KERNEL, NULL);
f73bee49 821 }
470decc6
DK
822
823 if (err)
a7fa2baf 824 jbd2_journal_abort(journal, err);
470decc6
DK
825
826 /* End of a transaction! Finally, we can do checkpoint
827 processing: any buffers committed as a result of this
828 transaction can be removed from any checkpoint list it was on
829 before. */
830
87c89c23 831 jbd_debug(3, "JBD: commit phase 6\n");
470decc6 832
c851ed54 833 J_ASSERT(list_empty(&commit_transaction->t_inode_list));
470decc6
DK
834 J_ASSERT(commit_transaction->t_buffers == NULL);
835 J_ASSERT(commit_transaction->t_checkpoint_list == NULL);
836 J_ASSERT(commit_transaction->t_iobuf_list == NULL);
837 J_ASSERT(commit_transaction->t_shadow_list == NULL);
838 J_ASSERT(commit_transaction->t_log_list == NULL);
839
840restart_loop:
841 /*
842 * As there are other places (journal_unmap_buffer()) adding buffers
843 * to this list we have to be careful and hold the j_list_lock.
844 */
845 spin_lock(&journal->j_list_lock);
846 while (commit_transaction->t_forget) {
847 transaction_t *cp_transaction;
848 struct buffer_head *bh;
849
850 jh = commit_transaction->t_forget;
851 spin_unlock(&journal->j_list_lock);
852 bh = jh2bh(jh);
853 jbd_lock_bh_state(bh);
23e2af35 854 J_ASSERT_JH(jh, jh->b_transaction == commit_transaction);
470decc6
DK
855
856 /*
857 * If there is undo-protected committed data against
858 * this buffer, then we can remove it now. If it is a
859 * buffer needing such protection, the old frozen_data
860 * field now points to a committed version of the
861 * buffer, so rotate that field to the new committed
862 * data.
863 *
864 * Otherwise, we can just throw away the frozen data now.
e06c8227
JB
865 *
866 * We also know that the frozen data has already fired
867 * its triggers if they exist, so we can clear that too.
470decc6
DK
868 */
869 if (jh->b_committed_data) {
af1e76d6 870 jbd2_free(jh->b_committed_data, bh->b_size);
470decc6
DK
871 jh->b_committed_data = NULL;
872 if (jh->b_frozen_data) {
873 jh->b_committed_data = jh->b_frozen_data;
874 jh->b_frozen_data = NULL;
e06c8227 875 jh->b_frozen_triggers = NULL;
470decc6
DK
876 }
877 } else if (jh->b_frozen_data) {
af1e76d6 878 jbd2_free(jh->b_frozen_data, bh->b_size);
470decc6 879 jh->b_frozen_data = NULL;
e06c8227 880 jh->b_frozen_triggers = NULL;
470decc6
DK
881 }
882
883 spin_lock(&journal->j_list_lock);
884 cp_transaction = jh->b_cp_transaction;
885 if (cp_transaction) {
886 JBUFFER_TRACE(jh, "remove from old cp transaction");
8e85fb3f 887 cp_transaction->t_chp_stats.cs_dropped++;
f7f4bccb 888 __jbd2_journal_remove_checkpoint(jh);
470decc6
DK
889 }
890
891 /* Only re-checkpoint the buffer_head if it is marked
892 * dirty. If the buffer was added to the BJ_Forget list
f7f4bccb 893 * by jbd2_journal_forget, it may no longer be dirty and
470decc6
DK
894 * there's no point in keeping a checkpoint record for
895 * it. */
896
897 /* A buffer which has been freed while still being
898 * journaled by a previous transaction may end up still
899 * being dirty here, but we want to avoid writing back
ba869023 900 * that buffer in the future after the "add to orphan"
901 * operation been committed, That's not only a performance
902 * gain, it also stops aliasing problems if the buffer is
903 * left behind for writeback and gets reallocated for another
470decc6 904 * use in a different page. */
ba869023 905 if (buffer_freed(bh) && !jh->b_next_transaction) {
470decc6
DK
906 clear_buffer_freed(bh);
907 clear_buffer_jbddirty(bh);
908 }
909
910 if (buffer_jbddirty(bh)) {
911 JBUFFER_TRACE(jh, "add to new checkpointing trans");
f7f4bccb 912 __jbd2_journal_insert_checkpoint(jh, commit_transaction);
7ad7445f
HK
913 if (is_journal_aborted(journal))
914 clear_buffer_jbddirty(bh);
470decc6 915 JBUFFER_TRACE(jh, "refile for checkpoint writeback");
f7f4bccb 916 __jbd2_journal_refile_buffer(jh);
470decc6
DK
917 jbd_unlock_bh_state(bh);
918 } else {
919 J_ASSERT_BH(bh, !buffer_dirty(bh));
920 /* The buffer on BJ_Forget list and not jbddirty means
921 * it has been freed by this transaction and hence it
922 * could not have been reallocated until this
923 * transaction has committed. *BUT* it could be
924 * reallocated once we have written all the data to
925 * disk and before we process the buffer on BJ_Forget
926 * list. */
927 JBUFFER_TRACE(jh, "refile or unfile freed buffer");
f7f4bccb 928 __jbd2_journal_refile_buffer(jh);
470decc6
DK
929 if (!jh->b_transaction) {
930 jbd_unlock_bh_state(bh);
931 /* needs a brelse */
f7f4bccb 932 jbd2_journal_remove_journal_head(bh);
470decc6
DK
933 release_buffer_page(bh);
934 } else
935 jbd_unlock_bh_state(bh);
936 }
937 cond_resched_lock(&journal->j_list_lock);
938 }
939 spin_unlock(&journal->j_list_lock);
940 /*
f5a7a6b0
JK
941 * This is a bit sleazy. We use j_list_lock to protect transition
942 * of a transaction into T_FINISHED state and calling
943 * __jbd2_journal_drop_transaction(). Otherwise we could race with
944 * other checkpointing code processing the transaction...
470decc6 945 */
a931da6a 946 write_lock(&journal->j_state_lock);
470decc6
DK
947 spin_lock(&journal->j_list_lock);
948 /*
949 * Now recheck if some buffers did not get attached to the transaction
950 * while the lock was dropped...
951 */
952 if (commit_transaction->t_forget) {
953 spin_unlock(&journal->j_list_lock);
a931da6a 954 write_unlock(&journal->j_state_lock);
470decc6
DK
955 goto restart_loop;
956 }
957
958 /* Done with this transaction! */
959
87c89c23 960 jbd_debug(3, "JBD: commit phase 7\n");
470decc6
DK
961
962 J_ASSERT(commit_transaction->t_state == T_COMMIT);
963
8e85fb3f 964 commit_transaction->t_start = jiffies;
bf699327
TT
965 stats.run.rs_logging = jbd2_time_diff(stats.run.rs_logging,
966 commit_transaction->t_start);
8e85fb3f
JL
967
968 /*
bf699327 969 * File the transaction statistics
8e85fb3f 970 */
8e85fb3f 971 stats.ts_tid = commit_transaction->t_tid;
8dd42046
TT
972 stats.run.rs_handle_count =
973 atomic_read(&commit_transaction->t_handle_count);
bf699327
TT
974 trace_jbd2_run_stats(journal->j_fs_dev->bd_dev,
975 commit_transaction->t_tid, &stats.run);
8e85fb3f
JL
976
977 /*
978 * Calculate overall stats
979 */
bf699327 980 spin_lock(&journal->j_history_lock);
8e85fb3f 981 journal->j_stats.ts_tid++;
bf699327
TT
982 journal->j_stats.run.rs_wait += stats.run.rs_wait;
983 journal->j_stats.run.rs_running += stats.run.rs_running;
984 journal->j_stats.run.rs_locked += stats.run.rs_locked;
985 journal->j_stats.run.rs_flushing += stats.run.rs_flushing;
986 journal->j_stats.run.rs_logging += stats.run.rs_logging;
987 journal->j_stats.run.rs_handle_count += stats.run.rs_handle_count;
988 journal->j_stats.run.rs_blocks += stats.run.rs_blocks;
989 journal->j_stats.run.rs_blocks_logged += stats.run.rs_blocks_logged;
8e85fb3f
JL
990 spin_unlock(&journal->j_history_lock);
991
470decc6
DK
992 commit_transaction->t_state = T_FINISHED;
993 J_ASSERT(commit_transaction == journal->j_committing_transaction);
994 journal->j_commit_sequence = commit_transaction->t_tid;
995 journal->j_committing_transaction = NULL;
e07f7183 996 commit_time = ktime_to_ns(ktime_sub(ktime_get(), start_time));
470decc6 997
e07f7183
JB
998 /*
999 * weight the commit time higher than the average time so we don't
1000 * react too strongly to vast changes in the commit time
1001 */
1002 if (likely(journal->j_average_commit_time))
1003 journal->j_average_commit_time = (commit_time +
1004 journal->j_average_commit_time*3) / 4;
1005 else
1006 journal->j_average_commit_time = commit_time;
a931da6a 1007 write_unlock(&journal->j_state_lock);
6c20ec85 1008
f89b7795
JK
1009 if (commit_transaction->t_checkpoint_list == NULL &&
1010 commit_transaction->t_checkpoint_io_list == NULL) {
f7f4bccb 1011 __jbd2_journal_drop_transaction(journal, commit_transaction);
fb68407b 1012 to_free = 1;
470decc6
DK
1013 } else {
1014 if (journal->j_checkpoint_transactions == NULL) {
1015 journal->j_checkpoint_transactions = commit_transaction;
1016 commit_transaction->t_cpnext = commit_transaction;
1017 commit_transaction->t_cpprev = commit_transaction;
1018 } else {
1019 commit_transaction->t_cpnext =
1020 journal->j_checkpoint_transactions;
1021 commit_transaction->t_cpprev =
1022 commit_transaction->t_cpnext->t_cpprev;
1023 commit_transaction->t_cpnext->t_cpprev =
1024 commit_transaction;
1025 commit_transaction->t_cpprev->t_cpnext =
1026 commit_transaction;
1027 }
1028 }
1029 spin_unlock(&journal->j_list_lock);
1030
fb68407b
AK
1031 if (journal->j_commit_callback)
1032 journal->j_commit_callback(journal, commit_transaction);
1033
879c5e6b 1034 trace_jbd2_end_commit(journal, commit_transaction);
470decc6
DK
1035 jbd_debug(1, "JBD: commit %d complete, head %d\n",
1036 journal->j_commit_sequence, journal->j_tail_sequence);
fb68407b
AK
1037 if (to_free)
1038 kfree(commit_transaction);
470decc6
DK
1039
1040 wake_up(&journal->j_wait_done_commit);
1041}
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