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b2441318 1// SPDX-License-Identifier: GPL-2.0
1da177e4 2/*
098297b2
JM
3 * Write ahead logging implementation copyright Chris Mason 2000
4 *
5 * The background commits make this code very interrelated, and
6 * overly complex. I need to rethink things a bit....The major players:
7 *
8 * journal_begin -- call with the number of blocks you expect to log.
9 * If the current transaction is too
10 * old, it will block until the current transaction is
11 * finished, and then start a new one.
12 * Usually, your transaction will get joined in with
13 * previous ones for speed.
14 *
15 * journal_join -- same as journal_begin, but won't block on the current
16 * transaction regardless of age. Don't ever call
17 * this. Ever. There are only two places it should be
18 * called from, and they are both inside this file.
19 *
20 * journal_mark_dirty -- adds blocks into this transaction. clears any flags
21 * that might make them get sent to disk
22 * and then marks them BH_JDirty. Puts the buffer head
23 * into the current transaction hash.
24 *
25 * journal_end -- if the current transaction is batchable, it does nothing
26 * otherwise, it could do an async/synchronous commit, or
27 * a full flush of all log and real blocks in the
28 * transaction.
29 *
30 * flush_old_commits -- if the current transaction is too old, it is ended and
31 * commit blocks are sent to disk. Forces commit blocks
32 * to disk for all backgrounded commits that have been
33 * around too long.
34 * -- Note, if you call this as an immediate flush from
9436fb4d 35 * within kupdate, it will ignore the immediate flag
098297b2 36 */
1da177e4 37
1da177e4 38#include <linux/time.h>
6188e10d 39#include <linux/semaphore.h>
1da177e4 40#include <linux/vmalloc.h>
f466c6fd 41#include "reiserfs.h"
1da177e4
LT
42#include <linux/kernel.h>
43#include <linux/errno.h>
44#include <linux/fcntl.h>
45#include <linux/stat.h>
46#include <linux/string.h>
1da177e4
LT
47#include <linux/buffer_head.h>
48#include <linux/workqueue.h>
49#include <linux/writeback.h>
50#include <linux/blkdev.h>
3fcfab16 51#include <linux/backing-dev.h>
90415dea 52#include <linux/uaccess.h>
5a0e3ad6 53#include <linux/slab.h>
90415dea 54
1da177e4 55
1da177e4
LT
56/* gets a struct reiserfs_journal_list * from a list head */
57#define JOURNAL_LIST_ENTRY(h) (list_entry((h), struct reiserfs_journal_list, \
58 j_list))
1da177e4 59
098297b2
JM
60/* must be correct to keep the desc and commit structs at 4k */
61#define JOURNAL_TRANS_HALF 1018
bd4c625c 62#define BUFNR 64 /*read ahead */
1da177e4
LT
63
64/* cnode stat bits. Move these into reiserfs_fs.h */
65
098297b2
JM
66/* this block was freed, and can't be written. */
67#define BLOCK_FREED 2
68/* this block was freed during this transaction, and can't be written */
69#define BLOCK_FREED_HOLDER 3
1da177e4 70
098297b2
JM
71/* used in flush_journal_list */
72#define BLOCK_NEEDS_FLUSH 4
1da177e4
LT
73#define BLOCK_DIRTIED 5
74
1da177e4
LT
75/* journal list state bits */
76#define LIST_TOUCHED 1
77#define LIST_DIRTY 2
bd4c625c 78#define LIST_COMMIT_PENDING 4 /* someone will commit this list */
1da177e4
LT
79
80/* flags for do_journal_end */
81#define FLUSH_ALL 1 /* flush commit and real blocks */
82#define COMMIT_NOW 2 /* end and commit this transaction */
bd4c625c
LT
83#define WAIT 4 /* wait for the log blocks to hit the disk */
84
58d85426 85static int do_journal_end(struct reiserfs_transaction_handle *, int flags);
bd4c625c
LT
86static int flush_journal_list(struct super_block *s,
87 struct reiserfs_journal_list *jl, int flushall);
88static int flush_commit_list(struct super_block *s,
89 struct reiserfs_journal_list *jl, int flushall);
90static int can_dirty(struct reiserfs_journal_cnode *cn);
91static int journal_join(struct reiserfs_transaction_handle *th,
b491dd17 92 struct super_block *sb);
4385bab1 93static void release_journal_dev(struct super_block *super,
bd4c625c 94 struct reiserfs_journal *journal);
dc0dde61 95static void dirty_one_transaction(struct super_block *s,
bd4c625c 96 struct reiserfs_journal_list *jl);
c4028958 97static void flush_async_commits(struct work_struct *work);
1da177e4
LT
98static void queue_log_writer(struct super_block *s);
99
100/* values for join in do_journal_begin_r */
101enum {
bd4c625c 102 JBEGIN_REG = 0, /* regular journal begin */
098297b2
JM
103 /* join the running transaction if at all possible */
104 JBEGIN_JOIN = 1,
105 /* called from cleanup code, ignores aborted flag */
106 JBEGIN_ABORT = 2,
1da177e4
LT
107};
108
109static int do_journal_begin_r(struct reiserfs_transaction_handle *th,
a9dd3643 110 struct super_block *sb,
bd4c625c 111 unsigned long nblocks, int join);
1da177e4 112
a9dd3643 113static void init_journal_hash(struct super_block *sb)
bd4c625c 114{
a9dd3643 115 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
116 memset(journal->j_hash_table, 0,
117 JOURNAL_HASH_SIZE * sizeof(struct reiserfs_journal_cnode *));
1da177e4
LT
118}
119
120/*
098297b2
JM
121 * clears BH_Dirty and sticks the buffer on the clean list. Called because
122 * I can't allow refile_buffer to make schedule happen after I've freed a
123 * block. Look at remove_from_transaction and journal_mark_freed for
124 * more details.
125 */
bd4c625c
LT
126static int reiserfs_clean_and_file_buffer(struct buffer_head *bh)
127{
128 if (bh) {
129 clear_buffer_dirty(bh);
130 clear_buffer_journal_test(bh);
131 }
132 return 0;
1da177e4
LT
133}
134
bd4c625c 135static struct reiserfs_bitmap_node *allocate_bitmap_node(struct super_block
a9dd3643 136 *sb)
bd4c625c
LT
137{
138 struct reiserfs_bitmap_node *bn;
139 static int id;
140
d739b42b 141 bn = kmalloc(sizeof(struct reiserfs_bitmap_node), GFP_NOFS);
bd4c625c
LT
142 if (!bn) {
143 return NULL;
144 }
a9dd3643 145 bn->data = kzalloc(sb->s_blocksize, GFP_NOFS);
bd4c625c 146 if (!bn->data) {
d739b42b 147 kfree(bn);
bd4c625c
LT
148 return NULL;
149 }
150 bn->id = id++;
bd4c625c
LT
151 INIT_LIST_HEAD(&bn->list);
152 return bn;
153}
154
a9dd3643 155static struct reiserfs_bitmap_node *get_bitmap_node(struct super_block *sb)
bd4c625c 156{
a9dd3643 157 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
158 struct reiserfs_bitmap_node *bn = NULL;
159 struct list_head *entry = journal->j_bitmap_nodes.next;
160
161 journal->j_used_bitmap_nodes++;
cf776a7a 162repeat:
bd4c625c
LT
163
164 if (entry != &journal->j_bitmap_nodes) {
165 bn = list_entry(entry, struct reiserfs_bitmap_node, list);
166 list_del(entry);
a9dd3643 167 memset(bn->data, 0, sb->s_blocksize);
bd4c625c
LT
168 journal->j_free_bitmap_nodes--;
169 return bn;
170 }
a9dd3643 171 bn = allocate_bitmap_node(sb);
bd4c625c
LT
172 if (!bn) {
173 yield();
174 goto repeat;
175 }
176 return bn;
1da177e4 177}
a9dd3643 178static inline void free_bitmap_node(struct super_block *sb,
bd4c625c
LT
179 struct reiserfs_bitmap_node *bn)
180{
a9dd3643 181 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
182 journal->j_used_bitmap_nodes--;
183 if (journal->j_free_bitmap_nodes > REISERFS_MAX_BITMAP_NODES) {
d739b42b
PE
184 kfree(bn->data);
185 kfree(bn);
bd4c625c
LT
186 } else {
187 list_add(&bn->list, &journal->j_bitmap_nodes);
188 journal->j_free_bitmap_nodes++;
189 }
190}
191
a9dd3643 192static void allocate_bitmap_nodes(struct super_block *sb)
bd4c625c
LT
193{
194 int i;
a9dd3643 195 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
196 struct reiserfs_bitmap_node *bn = NULL;
197 for (i = 0; i < REISERFS_MIN_BITMAP_NODES; i++) {
a9dd3643 198 bn = allocate_bitmap_node(sb);
bd4c625c
LT
199 if (bn) {
200 list_add(&bn->list, &journal->j_bitmap_nodes);
201 journal->j_free_bitmap_nodes++;
202 } else {
098297b2
JM
203 /* this is ok, we'll try again when more are needed */
204 break;
bd4c625c
LT
205 }
206 }
1da177e4
LT
207}
208
a9dd3643 209static int set_bit_in_list_bitmap(struct super_block *sb,
3ee16670 210 b_blocknr_t block,
bd4c625c
LT
211 struct reiserfs_list_bitmap *jb)
212{
a9dd3643
JM
213 unsigned int bmap_nr = block / (sb->s_blocksize << 3);
214 unsigned int bit_nr = block % (sb->s_blocksize << 3);
1da177e4 215
bd4c625c 216 if (!jb->bitmaps[bmap_nr]) {
a9dd3643 217 jb->bitmaps[bmap_nr] = get_bitmap_node(sb);
bd4c625c
LT
218 }
219 set_bit(bit_nr, (unsigned long *)jb->bitmaps[bmap_nr]->data);
220 return 0;
1da177e4
LT
221}
222
a9dd3643 223static void cleanup_bitmap_list(struct super_block *sb,
bd4c625c
LT
224 struct reiserfs_list_bitmap *jb)
225{
226 int i;
227 if (jb->bitmaps == NULL)
228 return;
229
a9dd3643 230 for (i = 0; i < reiserfs_bmap_count(sb); i++) {
bd4c625c 231 if (jb->bitmaps[i]) {
a9dd3643 232 free_bitmap_node(sb, jb->bitmaps[i]);
bd4c625c
LT
233 jb->bitmaps[i] = NULL;
234 }
235 }
1da177e4
LT
236}
237
238/*
098297b2
JM
239 * only call this on FS unmount.
240 */
a9dd3643 241static int free_list_bitmaps(struct super_block *sb,
bd4c625c
LT
242 struct reiserfs_list_bitmap *jb_array)
243{
244 int i;
245 struct reiserfs_list_bitmap *jb;
246 for (i = 0; i < JOURNAL_NUM_BITMAPS; i++) {
247 jb = jb_array + i;
248 jb->journal_list = NULL;
a9dd3643 249 cleanup_bitmap_list(sb, jb);
bd4c625c
LT
250 vfree(jb->bitmaps);
251 jb->bitmaps = NULL;
252 }
253 return 0;
254}
255
a9dd3643 256static int free_bitmap_nodes(struct super_block *sb)
bd4c625c 257{
a9dd3643 258 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
259 struct list_head *next = journal->j_bitmap_nodes.next;
260 struct reiserfs_bitmap_node *bn;
261
262 while (next != &journal->j_bitmap_nodes) {
263 bn = list_entry(next, struct reiserfs_bitmap_node, list);
264 list_del(next);
d739b42b
PE
265 kfree(bn->data);
266 kfree(bn);
bd4c625c
LT
267 next = journal->j_bitmap_nodes.next;
268 journal->j_free_bitmap_nodes--;
269 }
270
271 return 0;
1da177e4
LT
272}
273
274/*
098297b2
JM
275 * get memory for JOURNAL_NUM_BITMAPS worth of bitmaps.
276 * jb_array is the array to be filled in.
277 */
a9dd3643 278int reiserfs_allocate_list_bitmaps(struct super_block *sb,
bd4c625c 279 struct reiserfs_list_bitmap *jb_array,
3ee16670 280 unsigned int bmap_nr)
bd4c625c
LT
281{
282 int i;
283 int failed = 0;
284 struct reiserfs_list_bitmap *jb;
285 int mem = bmap_nr * sizeof(struct reiserfs_bitmap_node *);
286
287 for (i = 0; i < JOURNAL_NUM_BITMAPS; i++) {
288 jb = jb_array + i;
289 jb->journal_list = NULL;
558feb08 290 jb->bitmaps = vzalloc(mem);
bd4c625c 291 if (!jb->bitmaps) {
a9dd3643 292 reiserfs_warning(sb, "clm-2000", "unable to "
45b03d5e 293 "allocate bitmaps for journal lists");
bd4c625c
LT
294 failed = 1;
295 break;
296 }
bd4c625c
LT
297 }
298 if (failed) {
a9dd3643 299 free_list_bitmaps(sb, jb_array);
bd4c625c
LT
300 return -1;
301 }
302 return 0;
1da177e4
LT
303}
304
305/*
098297b2
JM
306 * find an available list bitmap. If you can't find one, flush a commit list
307 * and try again
308 */
a9dd3643 309static struct reiserfs_list_bitmap *get_list_bitmap(struct super_block *sb,
bd4c625c
LT
310 struct reiserfs_journal_list
311 *jl)
312{
313 int i, j;
a9dd3643 314 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
315 struct reiserfs_list_bitmap *jb = NULL;
316
317 for (j = 0; j < (JOURNAL_NUM_BITMAPS * 3); j++) {
318 i = journal->j_list_bitmap_index;
319 journal->j_list_bitmap_index = (i + 1) % JOURNAL_NUM_BITMAPS;
320 jb = journal->j_list_bitmap + i;
321 if (journal->j_list_bitmap[i].journal_list) {
a9dd3643 322 flush_commit_list(sb,
bd4c625c
LT
323 journal->j_list_bitmap[i].
324 journal_list, 1);
325 if (!journal->j_list_bitmap[i].journal_list) {
326 break;
327 }
328 } else {
329 break;
330 }
331 }
098297b2
JM
332 /* double check to make sure if flushed correctly */
333 if (jb->journal_list)
bd4c625c 334 return NULL;
bd4c625c
LT
335 jb->journal_list = jl;
336 return jb;
1da177e4
LT
337}
338
0222e657 339/*
098297b2
JM
340 * allocates a new chunk of X nodes, and links them all together as a list.
341 * Uses the cnode->next and cnode->prev pointers
342 * returns NULL on failure
343 */
bd4c625c
LT
344static struct reiserfs_journal_cnode *allocate_cnodes(int num_cnodes)
345{
346 struct reiserfs_journal_cnode *head;
347 int i;
348 if (num_cnodes <= 0) {
349 return NULL;
350 }
fad953ce
KC
351 head = vzalloc(array_size(num_cnodes,
352 sizeof(struct reiserfs_journal_cnode)));
bd4c625c
LT
353 if (!head) {
354 return NULL;
355 }
bd4c625c
LT
356 head[0].prev = NULL;
357 head[0].next = head + 1;
358 for (i = 1; i < num_cnodes; i++) {
359 head[i].prev = head + (i - 1);
360 head[i].next = head + (i + 1); /* if last one, overwrite it after the if */
361 }
362 head[num_cnodes - 1].next = NULL;
363 return head;
1da177e4
LT
364}
365
098297b2 366/* pulls a cnode off the free list, or returns NULL on failure */
a9dd3643 367static struct reiserfs_journal_cnode *get_cnode(struct super_block *sb)
bd4c625c
LT
368{
369 struct reiserfs_journal_cnode *cn;
a9dd3643 370 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c 371
a9dd3643 372 reiserfs_check_lock_depth(sb, "get_cnode");
bd4c625c
LT
373
374 if (journal->j_cnode_free <= 0) {
375 return NULL;
376 }
377 journal->j_cnode_used++;
378 journal->j_cnode_free--;
379 cn = journal->j_cnode_free_list;
380 if (!cn) {
381 return cn;
382 }
383 if (cn->next) {
384 cn->next->prev = NULL;
385 }
386 journal->j_cnode_free_list = cn->next;
387 memset(cn, 0, sizeof(struct reiserfs_journal_cnode));
388 return cn;
1da177e4
LT
389}
390
391/*
098297b2
JM
392 * returns a cnode to the free list
393 */
a9dd3643 394static void free_cnode(struct super_block *sb,
bd4c625c
LT
395 struct reiserfs_journal_cnode *cn)
396{
a9dd3643 397 struct reiserfs_journal *journal = SB_JOURNAL(sb);
1da177e4 398
a9dd3643 399 reiserfs_check_lock_depth(sb, "free_cnode");
1da177e4 400
bd4c625c
LT
401 journal->j_cnode_used--;
402 journal->j_cnode_free++;
403 /* memset(cn, 0, sizeof(struct reiserfs_journal_cnode)) ; */
404 cn->next = journal->j_cnode_free_list;
405 if (journal->j_cnode_free_list) {
406 journal->j_cnode_free_list->prev = cn;
407 }
408 cn->prev = NULL; /* not needed with the memset, but I might kill the memset, and forget to do this */
409 journal->j_cnode_free_list = cn;
1da177e4
LT
410}
411
bd4c625c
LT
412static void clear_prepared_bits(struct buffer_head *bh)
413{
414 clear_buffer_journal_prepared(bh);
415 clear_buffer_journal_restore_dirty(bh);
1da177e4
LT
416}
417
098297b2
JM
418/*
419 * return a cnode with same dev, block number and size in table,
420 * or null if not found
421 */
bd4c625c
LT
422static inline struct reiserfs_journal_cnode *get_journal_hash_dev(struct
423 super_block
424 *sb,
425 struct
426 reiserfs_journal_cnode
427 **table,
428 long bl)
1da177e4 429{
bd4c625c
LT
430 struct reiserfs_journal_cnode *cn;
431 cn = journal_hash(table, sb, bl);
432 while (cn) {
433 if (cn->blocknr == bl && cn->sb == sb)
434 return cn;
435 cn = cn->hnext;
436 }
437 return (struct reiserfs_journal_cnode *)0;
1da177e4
LT
438}
439
440/*
098297b2
JM
441 * this actually means 'can this block be reallocated yet?'. If you set
442 * search_all, a block can only be allocated if it is not in the current
443 * transaction, was not freed by the current transaction, and has no chance
444 * of ever being overwritten by a replay after crashing.
445 *
446 * If you don't set search_all, a block can only be allocated if it is not
447 * in the current transaction. Since deleting a block removes it from the
448 * current transaction, this case should never happen. If you don't set
449 * search_all, make sure you never write the block without logging it.
450 *
451 * next_zero_bit is a suggestion about the next block to try for find_forward.
452 * when bl is rejected because it is set in a journal list bitmap, we search
453 * for the next zero bit in the bitmap that rejected bl. Then, we return
454 * that through next_zero_bit for find_forward to try.
455 *
456 * Just because we return something in next_zero_bit does not mean we won't
457 * reject it on the next call to reiserfs_in_journal
458 */
a9dd3643 459int reiserfs_in_journal(struct super_block *sb,
3ee16670 460 unsigned int bmap_nr, int bit_nr, int search_all,
bd4c625c
LT
461 b_blocknr_t * next_zero_bit)
462{
a9dd3643 463 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
464 struct reiserfs_list_bitmap *jb;
465 int i;
466 unsigned long bl;
467
468 *next_zero_bit = 0; /* always start this at zero. */
469
a9dd3643 470 PROC_INFO_INC(sb, journal.in_journal);
098297b2
JM
471 /*
472 * If we aren't doing a search_all, this is a metablock, and it
473 * will be logged before use. if we crash before the transaction
474 * that freed it commits, this transaction won't have committed
475 * either, and the block will never be written
bd4c625c
LT
476 */
477 if (search_all) {
478 for (i = 0; i < JOURNAL_NUM_BITMAPS; i++) {
a9dd3643 479 PROC_INFO_INC(sb, journal.in_journal_bitmap);
bd4c625c
LT
480 jb = journal->j_list_bitmap + i;
481 if (jb->journal_list && jb->bitmaps[bmap_nr] &&
482 test_bit(bit_nr,
483 (unsigned long *)jb->bitmaps[bmap_nr]->
484 data)) {
485 *next_zero_bit =
486 find_next_zero_bit((unsigned long *)
487 (jb->bitmaps[bmap_nr]->
488 data),
a9dd3643 489 sb->s_blocksize << 3,
bd4c625c
LT
490 bit_nr + 1);
491 return 1;
492 }
493 }
494 }
495
a9dd3643 496 bl = bmap_nr * (sb->s_blocksize << 3) + bit_nr;
bd4c625c
LT
497 /* is it in any old transactions? */
498 if (search_all
a3cc754a 499 && (get_journal_hash_dev(sb, journal->j_list_hash_table, bl))) {
bd4c625c
LT
500 return 1;
501 }
502
503 /* is it in the current transaction. This should never happen */
a3cc754a 504 if ((get_journal_hash_dev(sb, journal->j_hash_table, bl))) {
bd4c625c
LT
505 BUG();
506 return 1;
507 }
508
a9dd3643 509 PROC_INFO_INC(sb, journal.in_journal_reusable);
bd4c625c
LT
510 /* safe for reuse */
511 return 0;
1da177e4
LT
512}
513
098297b2 514/* insert cn into table */
bd4c625c
LT
515static inline void insert_journal_hash(struct reiserfs_journal_cnode **table,
516 struct reiserfs_journal_cnode *cn)
517{
518 struct reiserfs_journal_cnode *cn_orig;
1da177e4 519
bd4c625c
LT
520 cn_orig = journal_hash(table, cn->sb, cn->blocknr);
521 cn->hnext = cn_orig;
522 cn->hprev = NULL;
523 if (cn_orig) {
524 cn_orig->hprev = cn;
525 }
526 journal_hash(table, cn->sb, cn->blocknr) = cn;
1da177e4
LT
527}
528
529/* lock the current transaction */
a9dd3643 530static inline void lock_journal(struct super_block *sb)
bd4c625c 531{
a9dd3643 532 PROC_INFO_INC(sb, journal.lock_journal);
8ebc4232
FW
533
534 reiserfs_mutex_lock_safe(&SB_JOURNAL(sb)->j_mutex, sb);
1da177e4
LT
535}
536
537/* unlock the current transaction */
a9dd3643 538static inline void unlock_journal(struct super_block *sb)
bd4c625c 539{
a9dd3643 540 mutex_unlock(&SB_JOURNAL(sb)->j_mutex);
1da177e4
LT
541}
542
543static inline void get_journal_list(struct reiserfs_journal_list *jl)
544{
bd4c625c 545 jl->j_refcount++;
1da177e4
LT
546}
547
548static inline void put_journal_list(struct super_block *s,
bd4c625c 549 struct reiserfs_journal_list *jl)
1da177e4 550{
bd4c625c 551 if (jl->j_refcount < 1) {
c3a9c210 552 reiserfs_panic(s, "journal-2", "trans id %u, refcount at %d",
bd4c625c
LT
553 jl->j_trans_id, jl->j_refcount);
554 }
555 if (--jl->j_refcount == 0)
d739b42b 556 kfree(jl);
1da177e4
LT
557}
558
559/*
098297b2
JM
560 * this used to be much more involved, and I'm keeping it just in case
561 * things get ugly again. it gets called by flush_commit_list, and
562 * cleans up any data stored about blocks freed during a transaction.
563 */
a9dd3643 564static void cleanup_freed_for_journal_list(struct super_block *sb,
bd4c625c
LT
565 struct reiserfs_journal_list *jl)
566{
1da177e4 567
bd4c625c
LT
568 struct reiserfs_list_bitmap *jb = jl->j_list_bitmap;
569 if (jb) {
a9dd3643 570 cleanup_bitmap_list(sb, jb);
bd4c625c
LT
571 }
572 jl->j_list_bitmap->journal_list = NULL;
573 jl->j_list_bitmap = NULL;
1da177e4
LT
574}
575
576static int journal_list_still_alive(struct super_block *s,
600ed416 577 unsigned int trans_id)
bd4c625c
LT
578{
579 struct reiserfs_journal *journal = SB_JOURNAL(s);
580 struct list_head *entry = &journal->j_journal_list;
581 struct reiserfs_journal_list *jl;
582
583 if (!list_empty(entry)) {
584 jl = JOURNAL_LIST_ENTRY(entry->next);
585 if (jl->j_trans_id <= trans_id) {
586 return 1;
587 }
588 }
589 return 0;
590}
591
398c95bd
CM
592/*
593 * If page->mapping was null, we failed to truncate this page for
594 * some reason. Most likely because it was truncated after being
595 * logged via data=journal.
596 *
597 * This does a check to see if the buffer belongs to one of these
598 * lost pages before doing the final put_bh. If page->mapping was
599 * null, it tries to free buffers on the page, which should make the
ea1754a0 600 * final put_page drop the page from the lru.
398c95bd
CM
601 */
602static void release_buffer_page(struct buffer_head *bh)
603{
604 struct page *page = bh->b_page;
529ae9aa 605 if (!page->mapping && trylock_page(page)) {
09cbfeaf 606 get_page(page);
398c95bd
CM
607 put_bh(bh);
608 if (!page->mapping)
609 try_to_free_buffers(page);
610 unlock_page(page);
09cbfeaf 611 put_page(page);
398c95bd
CM
612 } else {
613 put_bh(bh);
614 }
615}
616
bd4c625c
LT
617static void reiserfs_end_buffer_io_sync(struct buffer_head *bh, int uptodate)
618{
bd4c625c 619 if (buffer_journaled(bh)) {
45b03d5e 620 reiserfs_warning(NULL, "clm-2084",
a1c6f057
DM
621 "pinned buffer %lu:%pg sent to disk",
622 bh->b_blocknr, bh->b_bdev);
bd4c625c
LT
623 }
624 if (uptodate)
625 set_buffer_uptodate(bh);
626 else
627 clear_buffer_uptodate(bh);
398c95bd 628
bd4c625c 629 unlock_buffer(bh);
398c95bd 630 release_buffer_page(bh);
bd4c625c
LT
631}
632
633static void reiserfs_end_ordered_io(struct buffer_head *bh, int uptodate)
634{
635 if (uptodate)
636 set_buffer_uptodate(bh);
637 else
638 clear_buffer_uptodate(bh);
639 unlock_buffer(bh);
640 put_bh(bh);
641}
642
643static void submit_logged_buffer(struct buffer_head *bh)
644{
645 get_bh(bh);
646 bh->b_end_io = reiserfs_end_buffer_io_sync;
647 clear_buffer_journal_new(bh);
648 clear_buffer_dirty(bh);
649 if (!test_clear_buffer_journal_test(bh))
650 BUG();
651 if (!buffer_uptodate(bh))
652 BUG();
2a222ca9 653 submit_bh(REQ_OP_WRITE, 0, bh);
bd4c625c
LT
654}
655
656static void submit_ordered_buffer(struct buffer_head *bh)
657{
658 get_bh(bh);
659 bh->b_end_io = reiserfs_end_ordered_io;
660 clear_buffer_dirty(bh);
661 if (!buffer_uptodate(bh))
662 BUG();
2a222ca9 663 submit_bh(REQ_OP_WRITE, 0, bh);
bd4c625c
LT
664}
665
1da177e4
LT
666#define CHUNK_SIZE 32
667struct buffer_chunk {
bd4c625c
LT
668 struct buffer_head *bh[CHUNK_SIZE];
669 int nr;
1da177e4
LT
670};
671
bd4c625c
LT
672static void write_chunk(struct buffer_chunk *chunk)
673{
674 int i;
bd4c625c
LT
675 for (i = 0; i < chunk->nr; i++) {
676 submit_logged_buffer(chunk->bh[i]);
677 }
678 chunk->nr = 0;
1da177e4
LT
679}
680
bd4c625c
LT
681static void write_ordered_chunk(struct buffer_chunk *chunk)
682{
683 int i;
bd4c625c
LT
684 for (i = 0; i < chunk->nr; i++) {
685 submit_ordered_buffer(chunk->bh[i]);
686 }
687 chunk->nr = 0;
1da177e4
LT
688}
689
690static int add_to_chunk(struct buffer_chunk *chunk, struct buffer_head *bh,
bd4c625c 691 spinlock_t * lock, void (fn) (struct buffer_chunk *))
1da177e4 692{
bd4c625c 693 int ret = 0;
14a61442 694 BUG_ON(chunk->nr >= CHUNK_SIZE);
bd4c625c
LT
695 chunk->bh[chunk->nr++] = bh;
696 if (chunk->nr >= CHUNK_SIZE) {
697 ret = 1;
54cc6cea 698 if (lock) {
bd4c625c 699 spin_unlock(lock);
54cc6cea 700 fn(chunk);
bd4c625c 701 spin_lock(lock);
54cc6cea
FF
702 } else {
703 fn(chunk);
704 }
bd4c625c
LT
705 }
706 return ret;
1da177e4
LT
707}
708
1da177e4 709static atomic_t nr_reiserfs_jh = ATOMIC_INIT(0);
bd4c625c
LT
710static struct reiserfs_jh *alloc_jh(void)
711{
712 struct reiserfs_jh *jh;
713 while (1) {
714 jh = kmalloc(sizeof(*jh), GFP_NOFS);
715 if (jh) {
716 atomic_inc(&nr_reiserfs_jh);
717 return jh;
718 }
719 yield();
1da177e4 720 }
1da177e4
LT
721}
722
723/*
724 * we want to free the jh when the buffer has been written
725 * and waited on
726 */
bd4c625c
LT
727void reiserfs_free_jh(struct buffer_head *bh)
728{
729 struct reiserfs_jh *jh;
730
731 jh = bh->b_private;
732 if (jh) {
733 bh->b_private = NULL;
734 jh->bh = NULL;
735 list_del_init(&jh->list);
736 kfree(jh);
737 if (atomic_read(&nr_reiserfs_jh) <= 0)
738 BUG();
739 atomic_dec(&nr_reiserfs_jh);
740 put_bh(bh);
741 }
1da177e4
LT
742}
743
744static inline int __add_jh(struct reiserfs_journal *j, struct buffer_head *bh,
bd4c625c 745 int tail)
1da177e4 746{
bd4c625c 747 struct reiserfs_jh *jh;
1da177e4 748
bd4c625c
LT
749 if (bh->b_private) {
750 spin_lock(&j->j_dirty_buffers_lock);
751 if (!bh->b_private) {
752 spin_unlock(&j->j_dirty_buffers_lock);
753 goto no_jh;
754 }
755 jh = bh->b_private;
756 list_del_init(&jh->list);
757 } else {
cf776a7a 758no_jh:
bd4c625c
LT
759 get_bh(bh);
760 jh = alloc_jh();
761 spin_lock(&j->j_dirty_buffers_lock);
098297b2
JM
762 /*
763 * buffer must be locked for __add_jh, should be able to have
bd4c625c
LT
764 * two adds at the same time
765 */
14a61442 766 BUG_ON(bh->b_private);
bd4c625c
LT
767 jh->bh = bh;
768 bh->b_private = jh;
1da177e4 769 }
bd4c625c
LT
770 jh->jl = j->j_current_jl;
771 if (tail)
772 list_add_tail(&jh->list, &jh->jl->j_tail_bh_list);
773 else {
774 list_add_tail(&jh->list, &jh->jl->j_bh_list);
775 }
776 spin_unlock(&j->j_dirty_buffers_lock);
777 return 0;
1da177e4
LT
778}
779
bd4c625c
LT
780int reiserfs_add_tail_list(struct inode *inode, struct buffer_head *bh)
781{
782 return __add_jh(SB_JOURNAL(inode->i_sb), bh, 1);
1da177e4 783}
bd4c625c
LT
784int reiserfs_add_ordered_list(struct inode *inode, struct buffer_head *bh)
785{
786 return __add_jh(SB_JOURNAL(inode->i_sb), bh, 0);
1da177e4
LT
787}
788
789#define JH_ENTRY(l) list_entry((l), struct reiserfs_jh, list)
bd4c625c 790static int write_ordered_buffers(spinlock_t * lock,
1da177e4 791 struct reiserfs_journal *j,
bd4c625c 792 struct reiserfs_journal_list *jl,
1da177e4
LT
793 struct list_head *list)
794{
bd4c625c
LT
795 struct buffer_head *bh;
796 struct reiserfs_jh *jh;
797 int ret = j->j_errno;
798 struct buffer_chunk chunk;
799 struct list_head tmp;
800 INIT_LIST_HEAD(&tmp);
801
802 chunk.nr = 0;
803 spin_lock(lock);
804 while (!list_empty(list)) {
805 jh = JH_ENTRY(list->next);
806 bh = jh->bh;
807 get_bh(bh);
ca5de404 808 if (!trylock_buffer(bh)) {
bd4c625c 809 if (!buffer_dirty(bh)) {
f116629d 810 list_move(&jh->list, &tmp);
bd4c625c
LT
811 goto loop_next;
812 }
813 spin_unlock(lock);
814 if (chunk.nr)
815 write_ordered_chunk(&chunk);
816 wait_on_buffer(bh);
817 cond_resched();
818 spin_lock(lock);
819 goto loop_next;
820 }
098297b2
JM
821 /*
822 * in theory, dirty non-uptodate buffers should never get here,
3d4492f8
CM
823 * but the upper layer io error paths still have a few quirks.
824 * Handle them here as gracefully as we can
825 */
826 if (!buffer_uptodate(bh) && buffer_dirty(bh)) {
827 clear_buffer_dirty(bh);
828 ret = -EIO;
829 }
bd4c625c 830 if (buffer_dirty(bh)) {
f116629d 831 list_move(&jh->list, &tmp);
bd4c625c
LT
832 add_to_chunk(&chunk, bh, lock, write_ordered_chunk);
833 } else {
834 reiserfs_free_jh(bh);
835 unlock_buffer(bh);
836 }
cf776a7a 837loop_next:
bd4c625c
LT
838 put_bh(bh);
839 cond_resched_lock(lock);
840 }
841 if (chunk.nr) {
842 spin_unlock(lock);
1da177e4 843 write_ordered_chunk(&chunk);
bd4c625c 844 spin_lock(lock);
1da177e4 845 }
bd4c625c
LT
846 while (!list_empty(&tmp)) {
847 jh = JH_ENTRY(tmp.prev);
848 bh = jh->bh;
849 get_bh(bh);
850 reiserfs_free_jh(bh);
851
852 if (buffer_locked(bh)) {
853 spin_unlock(lock);
854 wait_on_buffer(bh);
855 spin_lock(lock);
856 }
857 if (!buffer_uptodate(bh)) {
858 ret = -EIO;
859 }
098297b2
JM
860 /*
861 * ugly interaction with invalidatepage here.
862 * reiserfs_invalidate_page will pin any buffer that has a
863 * valid journal head from an older transaction. If someone
864 * else sets our buffer dirty after we write it in the first
865 * loop, and then someone truncates the page away, nobody
866 * will ever write the buffer. We're safe if we write the
867 * page one last time after freeing the journal header.
d62b1b87
CM
868 */
869 if (buffer_dirty(bh) && unlikely(bh->b_page->mapping == NULL)) {
870 spin_unlock(lock);
dfec8a14 871 ll_rw_block(REQ_OP_WRITE, 0, 1, &bh);
d62b1b87
CM
872 spin_lock(lock);
873 }
bd4c625c
LT
874 put_bh(bh);
875 cond_resched_lock(lock);
1da177e4 876 }
bd4c625c
LT
877 spin_unlock(lock);
878 return ret;
879}
1da177e4 880
bd4c625c
LT
881static int flush_older_commits(struct super_block *s,
882 struct reiserfs_journal_list *jl)
883{
884 struct reiserfs_journal *journal = SB_JOURNAL(s);
885 struct reiserfs_journal_list *other_jl;
886 struct reiserfs_journal_list *first_jl;
887 struct list_head *entry;
600ed416
JM
888 unsigned int trans_id = jl->j_trans_id;
889 unsigned int other_trans_id;
bd4c625c 890
cf776a7a 891find_first:
bd4c625c
LT
892 /*
893 * first we walk backwards to find the oldest uncommitted transation
894 */
895 first_jl = jl;
896 entry = jl->j_list.prev;
897 while (1) {
898 other_jl = JOURNAL_LIST_ENTRY(entry);
899 if (entry == &journal->j_journal_list ||
900 atomic_read(&other_jl->j_older_commits_done))
901 break;
1da177e4 902
bd4c625c
LT
903 first_jl = other_jl;
904 entry = other_jl->j_list.prev;
905 }
1da177e4 906
bd4c625c
LT
907 /* if we didn't find any older uncommitted transactions, return now */
908 if (first_jl == jl) {
909 return 0;
910 }
1da177e4 911
bd4c625c
LT
912 entry = &first_jl->j_list;
913 while (1) {
914 other_jl = JOURNAL_LIST_ENTRY(entry);
915 other_trans_id = other_jl->j_trans_id;
916
917 if (other_trans_id < trans_id) {
918 if (atomic_read(&other_jl->j_commit_left) != 0) {
919 flush_commit_list(s, other_jl, 0);
920
921 /* list we were called with is gone, return */
922 if (!journal_list_still_alive(s, trans_id))
923 return 1;
924
098297b2
JM
925 /*
926 * the one we just flushed is gone, this means
927 * all older lists are also gone, so first_jl
928 * is no longer valid either. Go back to the
929 * beginning.
bd4c625c
LT
930 */
931 if (!journal_list_still_alive
932 (s, other_trans_id)) {
933 goto find_first;
934 }
935 }
936 entry = entry->next;
937 if (entry == &journal->j_journal_list)
938 return 0;
939 } else {
940 return 0;
1da177e4 941 }
1da177e4 942 }
bd4c625c 943 return 0;
1da177e4 944}
deba0f49
AB
945
946static int reiserfs_async_progress_wait(struct super_block *s)
bd4c625c 947{
bd4c625c 948 struct reiserfs_journal *j = SB_JOURNAL(s);
8ebc4232
FW
949
950 if (atomic_read(&j->j_async_throttle)) {
278f6679
JM
951 int depth;
952
953 depth = reiserfs_write_unlock_nested(s);
8aa7e847 954 congestion_wait(BLK_RW_ASYNC, HZ / 10);
278f6679 955 reiserfs_write_lock_nested(s, depth);
8ebc4232
FW
956 }
957
bd4c625c 958 return 0;
1da177e4
LT
959}
960
961/*
098297b2
JM
962 * if this journal list still has commit blocks unflushed, send them to disk.
963 *
964 * log areas must be flushed in order (transaction 2 can't commit before
965 * transaction 1) Before the commit block can by written, every other log
966 * block must be safely on disk
967 */
bd4c625c
LT
968static int flush_commit_list(struct super_block *s,
969 struct reiserfs_journal_list *jl, int flushall)
970{
971 int i;
3ee16670 972 b_blocknr_t bn;
bd4c625c 973 struct buffer_head *tbh = NULL;
600ed416 974 unsigned int trans_id = jl->j_trans_id;
bd4c625c 975 struct reiserfs_journal *journal = SB_JOURNAL(s);
bd4c625c 976 int retval = 0;
e0e851cf 977 int write_len;
278f6679 978 int depth;
bd4c625c
LT
979
980 reiserfs_check_lock_depth(s, "flush_commit_list");
981
982 if (atomic_read(&jl->j_older_commits_done)) {
983 return 0;
984 }
985
098297b2
JM
986 /*
987 * before we can put our commit blocks on disk, we have to make
988 * sure everyone older than us is on disk too
bd4c625c
LT
989 */
990 BUG_ON(jl->j_len <= 0);
991 BUG_ON(trans_id == journal->j_trans_id);
992
993 get_journal_list(jl);
994 if (flushall) {
995 if (flush_older_commits(s, jl) == 1) {
098297b2
JM
996 /*
997 * list disappeared during flush_older_commits.
998 * return
999 */
bd4c625c
LT
1000 goto put_jl;
1001 }
1002 }
1003
1004 /* make sure nobody is trying to flush this one at the same time */
8ebc4232
FW
1005 reiserfs_mutex_lock_safe(&jl->j_commit_mutex, s);
1006
bd4c625c 1007 if (!journal_list_still_alive(s, trans_id)) {
90415dea 1008 mutex_unlock(&jl->j_commit_mutex);
bd4c625c
LT
1009 goto put_jl;
1010 }
1011 BUG_ON(jl->j_trans_id == 0);
1012
1013 /* this commit is done, exit */
a228bf8f 1014 if (atomic_read(&jl->j_commit_left) <= 0) {
bd4c625c 1015 if (flushall) {
a228bf8f 1016 atomic_set(&jl->j_older_commits_done, 1);
bd4c625c 1017 }
90415dea 1018 mutex_unlock(&jl->j_commit_mutex);
bd4c625c
LT
1019 goto put_jl;
1020 }
1021
1022 if (!list_empty(&jl->j_bh_list)) {
3d4492f8 1023 int ret;
8ebc4232
FW
1024
1025 /*
1026 * We might sleep in numerous places inside
1027 * write_ordered_buffers. Relax the write lock.
1028 */
278f6679 1029 depth = reiserfs_write_unlock_nested(s);
3d4492f8
CM
1030 ret = write_ordered_buffers(&journal->j_dirty_buffers_lock,
1031 journal, jl, &jl->j_bh_list);
1032 if (ret < 0 && retval == 0)
1033 retval = ret;
278f6679 1034 reiserfs_write_lock_nested(s, depth);
bd4c625c
LT
1035 }
1036 BUG_ON(!list_empty(&jl->j_bh_list));
1037 /*
1038 * for the description block and all the log blocks, submit any buffers
e0e851cf
CM
1039 * that haven't already reached the disk. Try to write at least 256
1040 * log blocks. later on, we will only wait on blocks that correspond
1041 * to this transaction, but while we're unplugging we might as well
1042 * get a chunk of data on there.
bd4c625c
LT
1043 */
1044 atomic_inc(&journal->j_async_throttle);
e0e851cf
CM
1045 write_len = jl->j_len + 1;
1046 if (write_len < 256)
1047 write_len = 256;
1048 for (i = 0 ; i < write_len ; i++) {
bd4c625c
LT
1049 bn = SB_ONDISK_JOURNAL_1st_BLOCK(s) + (jl->j_start + i) %
1050 SB_ONDISK_JOURNAL_SIZE(s);
1051 tbh = journal_find_get_block(s, bn);
e0e851cf 1052 if (tbh) {
6e3647ac 1053 if (buffer_dirty(tbh)) {
278f6679 1054 depth = reiserfs_write_unlock_nested(s);
dfec8a14 1055 ll_rw_block(REQ_OP_WRITE, 0, 1, &tbh);
278f6679 1056 reiserfs_write_lock_nested(s, depth);
6e3647ac 1057 }
e0e851cf
CM
1058 put_bh(tbh) ;
1059 }
bd4c625c
LT
1060 }
1061 atomic_dec(&journal->j_async_throttle);
1062
bd4c625c
LT
1063 for (i = 0; i < (jl->j_len + 1); i++) {
1064 bn = SB_ONDISK_JOURNAL_1st_BLOCK(s) +
1065 (jl->j_start + i) % SB_ONDISK_JOURNAL_SIZE(s);
1066 tbh = journal_find_get_block(s, bn);
8ebc4232 1067
278f6679
JM
1068 depth = reiserfs_write_unlock_nested(s);
1069 __wait_on_buffer(tbh);
1070 reiserfs_write_lock_nested(s, depth);
098297b2
JM
1071 /*
1072 * since we're using ll_rw_blk above, it might have skipped
1073 * over a locked buffer. Double check here
1074 */
8ebc4232
FW
1075 /* redundant, sync_dirty_buffer() checks */
1076 if (buffer_dirty(tbh)) {
278f6679 1077 depth = reiserfs_write_unlock_nested(s);
bd4c625c 1078 sync_dirty_buffer(tbh);
278f6679 1079 reiserfs_write_lock_nested(s, depth);
8ebc4232 1080 }
bd4c625c 1081 if (unlikely(!buffer_uptodate(tbh))) {
1da177e4 1082#ifdef CONFIG_REISERFS_CHECK
45b03d5e
JM
1083 reiserfs_warning(s, "journal-601",
1084 "buffer write failed");
1da177e4 1085#endif
bd4c625c
LT
1086 retval = -EIO;
1087 }
098297b2
JM
1088 /* once for journal_find_get_block */
1089 put_bh(tbh);
1090 /* once due to original getblk in do_journal_end */
1091 put_bh(tbh);
a228bf8f 1092 atomic_dec(&jl->j_commit_left);
bd4c625c
LT
1093 }
1094
a228bf8f 1095 BUG_ON(atomic_read(&jl->j_commit_left) != 1);
bd4c625c 1096
098297b2
JM
1097 /*
1098 * If there was a write error in the journal - we can't commit
7cd33ad2
CH
1099 * this transaction - it will be invalid and, if successful,
1100 * will just end up propagating the write error out to
098297b2
JM
1101 * the file system.
1102 */
7cd33ad2
CH
1103 if (likely(!retval && !reiserfs_is_journal_aborted (journal))) {
1104 if (buffer_dirty(jl->j_commit_bh))
1105 BUG();
1106 mark_buffer_dirty(jl->j_commit_bh) ;
278f6679 1107 depth = reiserfs_write_unlock_nested(s);
7cd33ad2 1108 if (reiserfs_barrier_flush(s))
70fd7614 1109 __sync_dirty_buffer(jl->j_commit_bh,
d8747d64 1110 REQ_SYNC | REQ_PREFLUSH | REQ_FUA);
7cd33ad2
CH
1111 else
1112 sync_dirty_buffer(jl->j_commit_bh);
278f6679 1113 reiserfs_write_lock_nested(s, depth);
8ebc4232 1114 }
bd4c625c 1115
098297b2
JM
1116 /*
1117 * If there was a write error in the journal - we can't commit this
bd4c625c 1118 * transaction - it will be invalid and, if successful, will just end
098297b2
JM
1119 * up propagating the write error out to the filesystem.
1120 */
bd4c625c 1121 if (unlikely(!buffer_uptodate(jl->j_commit_bh))) {
1da177e4 1122#ifdef CONFIG_REISERFS_CHECK
45b03d5e 1123 reiserfs_warning(s, "journal-615", "buffer write failed");
1da177e4 1124#endif
bd4c625c
LT
1125 retval = -EIO;
1126 }
1127 bforget(jl->j_commit_bh);
1128 if (journal->j_last_commit_id != 0 &&
1129 (jl->j_trans_id - journal->j_last_commit_id) != 1) {
45b03d5e 1130 reiserfs_warning(s, "clm-2200", "last commit %lu, current %lu",
bd4c625c
LT
1131 journal->j_last_commit_id, jl->j_trans_id);
1132 }
1133 journal->j_last_commit_id = jl->j_trans_id;
1134
098297b2
JM
1135 /*
1136 * now, every commit block is on the disk. It is safe to allow
1137 * blocks freed during this transaction to be reallocated
1138 */
bd4c625c
LT
1139 cleanup_freed_for_journal_list(s, jl);
1140
1141 retval = retval ? retval : journal->j_errno;
1142
1143 /* mark the metadata dirty */
1144 if (!retval)
1145 dirty_one_transaction(s, jl);
a228bf8f 1146 atomic_dec(&jl->j_commit_left);
bd4c625c
LT
1147
1148 if (flushall) {
a228bf8f 1149 atomic_set(&jl->j_older_commits_done, 1);
bd4c625c 1150 }
90415dea 1151 mutex_unlock(&jl->j_commit_mutex);
cf776a7a 1152put_jl:
bd4c625c
LT
1153 put_journal_list(s, jl);
1154
1155 if (retval)
1156 reiserfs_abort(s, retval, "Journal write error in %s",
fbe5498b 1157 __func__);
bd4c625c 1158 return retval;
1da177e4
LT
1159}
1160
1161/*
098297b2
JM
1162 * flush_journal_list frequently needs to find a newer transaction for a
1163 * given block. This does that, or returns NULL if it can't find anything
1164 */
bd4c625c
LT
1165static struct reiserfs_journal_list *find_newer_jl_for_cn(struct
1166 reiserfs_journal_cnode
1167 *cn)
1168{
1169 struct super_block *sb = cn->sb;
1170 b_blocknr_t blocknr = cn->blocknr;
1da177e4 1171
bd4c625c
LT
1172 cn = cn->hprev;
1173 while (cn) {
1174 if (cn->sb == sb && cn->blocknr == blocknr && cn->jlist) {
1175 return cn->jlist;
1176 }
1177 cn = cn->hprev;
1178 }
1179 return NULL;
1da177e4
LT
1180}
1181
bd4c625c
LT
1182static void remove_journal_hash(struct super_block *,
1183 struct reiserfs_journal_cnode **,
1184 struct reiserfs_journal_list *, unsigned long,
1185 int);
1da177e4
LT
1186
1187/*
098297b2
JM
1188 * once all the real blocks have been flushed, it is safe to remove them
1189 * from the journal list for this transaction. Aside from freeing the
1190 * cnode, this also allows the block to be reallocated for data blocks
1191 * if it had been deleted.
1192 */
a9dd3643 1193static void remove_all_from_journal_list(struct super_block *sb,
bd4c625c
LT
1194 struct reiserfs_journal_list *jl,
1195 int debug)
1196{
a9dd3643 1197 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
1198 struct reiserfs_journal_cnode *cn, *last;
1199 cn = jl->j_realblock;
1200
098297b2
JM
1201 /*
1202 * which is better, to lock once around the whole loop, or
1203 * to lock for each call to remove_journal_hash?
bd4c625c
LT
1204 */
1205 while (cn) {
1206 if (cn->blocknr != 0) {
1207 if (debug) {
a9dd3643 1208 reiserfs_warning(sb, "reiserfs-2201",
bd4c625c
LT
1209 "block %u, bh is %d, state %ld",
1210 cn->blocknr, cn->bh ? 1 : 0,
1211 cn->state);
1212 }
1213 cn->state = 0;
a9dd3643 1214 remove_journal_hash(sb, journal->j_list_hash_table,
bd4c625c
LT
1215 jl, cn->blocknr, 1);
1216 }
1217 last = cn;
1218 cn = cn->next;
a9dd3643 1219 free_cnode(sb, last);
bd4c625c
LT
1220 }
1221 jl->j_realblock = NULL;
1da177e4
LT
1222}
1223
1224/*
098297b2
JM
1225 * if this timestamp is greater than the timestamp we wrote last to the
1226 * header block, write it to the header block. once this is done, I can
1227 * safely say the log area for this transaction won't ever be replayed,
1228 * and I can start releasing blocks in this transaction for reuse as data
1229 * blocks. called by flush_journal_list, before it calls
1230 * remove_all_from_journal_list
1231 */
a9dd3643 1232static int _update_journal_header_block(struct super_block *sb,
bd4c625c 1233 unsigned long offset,
600ed416 1234 unsigned int trans_id)
bd4c625c
LT
1235{
1236 struct reiserfs_journal_header *jh;
a9dd3643 1237 struct reiserfs_journal *journal = SB_JOURNAL(sb);
278f6679 1238 int depth;
1da177e4 1239
bd4c625c
LT
1240 if (reiserfs_is_journal_aborted(journal))
1241 return -EIO;
1da177e4 1242
bd4c625c
LT
1243 if (trans_id >= journal->j_last_flush_trans_id) {
1244 if (buffer_locked((journal->j_header_bh))) {
278f6679
JM
1245 depth = reiserfs_write_unlock_nested(sb);
1246 __wait_on_buffer(journal->j_header_bh);
1247 reiserfs_write_lock_nested(sb, depth);
bd4c625c 1248 if (unlikely(!buffer_uptodate(journal->j_header_bh))) {
1da177e4 1249#ifdef CONFIG_REISERFS_CHECK
a9dd3643 1250 reiserfs_warning(sb, "journal-699",
45b03d5e 1251 "buffer write failed");
1da177e4 1252#endif
bd4c625c
LT
1253 return -EIO;
1254 }
1255 }
1256 journal->j_last_flush_trans_id = trans_id;
1257 journal->j_first_unflushed_offset = offset;
1258 jh = (struct reiserfs_journal_header *)(journal->j_header_bh->
1259 b_data);
1260 jh->j_last_flush_trans_id = cpu_to_le32(trans_id);
1261 jh->j_first_unflushed_offset = cpu_to_le32(offset);
1262 jh->j_mount_id = cpu_to_le32(journal->j_mount_id);
1263
7cd33ad2 1264 set_buffer_dirty(journal->j_header_bh);
278f6679 1265 depth = reiserfs_write_unlock_nested(sb);
7cd33ad2
CH
1266
1267 if (reiserfs_barrier_flush(sb))
70fd7614 1268 __sync_dirty_buffer(journal->j_header_bh,
d8747d64 1269 REQ_SYNC | REQ_PREFLUSH | REQ_FUA);
7cd33ad2 1270 else
bd4c625c 1271 sync_dirty_buffer(journal->j_header_bh);
7cd33ad2 1272
278f6679 1273 reiserfs_write_lock_nested(sb, depth);
bd4c625c 1274 if (!buffer_uptodate(journal->j_header_bh)) {
a9dd3643 1275 reiserfs_warning(sb, "journal-837",
45b03d5e 1276 "IO error during journal replay");
bd4c625c
LT
1277 return -EIO;
1278 }
1279 }
1280 return 0;
1281}
1282
a9dd3643 1283static int update_journal_header_block(struct super_block *sb,
bd4c625c 1284 unsigned long offset,
600ed416 1285 unsigned int trans_id)
bd4c625c 1286{
a9dd3643 1287 return _update_journal_header_block(sb, offset, trans_id);
1da177e4 1288}
bd4c625c 1289
0222e657
JM
1290/*
1291** flush any and all journal lists older than you are
1da177e4
LT
1292** can only be called from flush_journal_list
1293*/
a9dd3643 1294static int flush_older_journal_lists(struct super_block *sb,
bd4c625c
LT
1295 struct reiserfs_journal_list *jl)
1296{
1297 struct list_head *entry;
1298 struct reiserfs_journal_list *other_jl;
a9dd3643 1299 struct reiserfs_journal *journal = SB_JOURNAL(sb);
600ed416 1300 unsigned int trans_id = jl->j_trans_id;
bd4c625c 1301
098297b2
JM
1302 /*
1303 * we know we are the only ones flushing things, no extra race
bd4c625c
LT
1304 * protection is required.
1305 */
cf776a7a 1306restart:
bd4c625c
LT
1307 entry = journal->j_journal_list.next;
1308 /* Did we wrap? */
1309 if (entry == &journal->j_journal_list)
1310 return 0;
1311 other_jl = JOURNAL_LIST_ENTRY(entry);
1312 if (other_jl->j_trans_id < trans_id) {
1313 BUG_ON(other_jl->j_refcount <= 0);
1314 /* do not flush all */
a9dd3643 1315 flush_journal_list(sb, other_jl, 0);
bd4c625c
LT
1316
1317 /* other_jl is now deleted from the list */
1318 goto restart;
1319 }
1320 return 0;
1da177e4
LT
1321}
1322
1323static void del_from_work_list(struct super_block *s,
bd4c625c
LT
1324 struct reiserfs_journal_list *jl)
1325{
1326 struct reiserfs_journal *journal = SB_JOURNAL(s);
1327 if (!list_empty(&jl->j_working_list)) {
1328 list_del_init(&jl->j_working_list);
1329 journal->j_num_work_lists--;
1330 }
1da177e4
LT
1331}
1332
098297b2
JM
1333/*
1334 * flush a journal list, both commit and real blocks
1335 *
1336 * always set flushall to 1, unless you are calling from inside
1337 * flush_journal_list
1338 *
1339 * IMPORTANT. This can only be called while there are no journal writers,
1340 * and the journal is locked. That means it can only be called from
1341 * do_journal_end, or by journal_release
1342 */
bd4c625c
LT
1343static int flush_journal_list(struct super_block *s,
1344 struct reiserfs_journal_list *jl, int flushall)
1da177e4 1345{
bd4c625c 1346 struct reiserfs_journal_list *pjl;
6e9ca45f 1347 struct reiserfs_journal_cnode *cn;
bd4c625c
LT
1348 int count;
1349 int was_jwait = 0;
1350 int was_dirty = 0;
1351 struct buffer_head *saved_bh;
1352 unsigned long j_len_saved = jl->j_len;
1353 struct reiserfs_journal *journal = SB_JOURNAL(s);
1354 int err = 0;
278f6679 1355 int depth;
bd4c625c
LT
1356
1357 BUG_ON(j_len_saved <= 0);
1358
1359 if (atomic_read(&journal->j_wcount) != 0) {
45b03d5e 1360 reiserfs_warning(s, "clm-2048", "called with wcount %d",
bd4c625c
LT
1361 atomic_read(&journal->j_wcount));
1362 }
1da177e4 1363
bd4c625c
LT
1364 /* if flushall == 0, the lock is already held */
1365 if (flushall) {
8ebc4232 1366 reiserfs_mutex_lock_safe(&journal->j_flush_mutex, s);
afe70259 1367 } else if (mutex_trylock(&journal->j_flush_mutex)) {
bd4c625c
LT
1368 BUG();
1369 }
1da177e4 1370
bd4c625c
LT
1371 count = 0;
1372 if (j_len_saved > journal->j_trans_max) {
c3a9c210 1373 reiserfs_panic(s, "journal-715", "length is %lu, trans id %lu",
bd4c625c
LT
1374 j_len_saved, jl->j_trans_id);
1375 return 0;
1376 }
1da177e4 1377
bd4c625c 1378 /* if all the work is already done, get out of here */
a228bf8f
JM
1379 if (atomic_read(&jl->j_nonzerolen) <= 0 &&
1380 atomic_read(&jl->j_commit_left) <= 0) {
bd4c625c
LT
1381 goto flush_older_and_return;
1382 }
1383
098297b2
JM
1384 /*
1385 * start by putting the commit list on disk. This will also flush
1386 * the commit lists of any olders transactions
bd4c625c
LT
1387 */
1388 flush_commit_list(s, jl, 1);
1389
1390 if (!(jl->j_state & LIST_DIRTY)
1391 && !reiserfs_is_journal_aborted(journal))
1392 BUG();
1393
1394 /* are we done now? */
a228bf8f
JM
1395 if (atomic_read(&jl->j_nonzerolen) <= 0 &&
1396 atomic_read(&jl->j_commit_left) <= 0) {
bd4c625c
LT
1397 goto flush_older_and_return;
1398 }
1399
098297b2
JM
1400 /*
1401 * loop through each cnode, see if we need to write it,
1402 * or wait on a more recent transaction, or just ignore it
bd4c625c 1403 */
a228bf8f 1404 if (atomic_read(&journal->j_wcount) != 0) {
c3a9c210
JM
1405 reiserfs_panic(s, "journal-844", "journal list is flushing, "
1406 "wcount is not 0");
bd4c625c
LT
1407 }
1408 cn = jl->j_realblock;
1409 while (cn) {
1410 was_jwait = 0;
1411 was_dirty = 0;
1412 saved_bh = NULL;
1413 /* blocknr of 0 is no longer in the hash, ignore it */
1414 if (cn->blocknr == 0) {
1415 goto free_cnode;
1416 }
1417
098297b2
JM
1418 /*
1419 * This transaction failed commit.
1420 * Don't write out to the disk
1421 */
bd4c625c
LT
1422 if (!(jl->j_state & LIST_DIRTY))
1423 goto free_cnode;
1424
1425 pjl = find_newer_jl_for_cn(cn);
098297b2
JM
1426 /*
1427 * the order is important here. We check pjl to make sure we
1428 * don't clear BH_JDirty_wait if we aren't the one writing this
1429 * block to disk
bd4c625c
LT
1430 */
1431 if (!pjl && cn->bh) {
1432 saved_bh = cn->bh;
1433
098297b2
JM
1434 /*
1435 * we do this to make sure nobody releases the
1436 * buffer while we are working with it
bd4c625c
LT
1437 */
1438 get_bh(saved_bh);
1439
1440 if (buffer_journal_dirty(saved_bh)) {
1441 BUG_ON(!can_dirty(cn));
1442 was_jwait = 1;
1443 was_dirty = 1;
1444 } else if (can_dirty(cn)) {
098297b2
JM
1445 /*
1446 * everything with !pjl && jwait
1447 * should be writable
1448 */
bd4c625c
LT
1449 BUG();
1450 }
1451 }
1452
098297b2
JM
1453 /*
1454 * if someone has this block in a newer transaction, just make
1455 * sure they are committed, and don't try writing it to disk
bd4c625c
LT
1456 */
1457 if (pjl) {
1458 if (atomic_read(&pjl->j_commit_left))
1459 flush_commit_list(s, pjl, 1);
1460 goto free_cnode;
1461 }
1462
098297b2
JM
1463 /*
1464 * bh == NULL when the block got to disk on its own, OR,
1465 * the block got freed in a future transaction
bd4c625c
LT
1466 */
1467 if (saved_bh == NULL) {
1468 goto free_cnode;
1469 }
1470
098297b2
JM
1471 /*
1472 * this should never happen. kupdate_one_transaction has
1473 * this list locked while it works, so we should never see a
1474 * buffer here that is not marked JDirty_wait
bd4c625c
LT
1475 */
1476 if ((!was_jwait) && !buffer_locked(saved_bh)) {
45b03d5e
JM
1477 reiserfs_warning(s, "journal-813",
1478 "BAD! buffer %llu %cdirty %cjwait, "
65f2b263 1479 "not in a newer transaction",
bd4c625c
LT
1480 (unsigned long long)saved_bh->
1481 b_blocknr, was_dirty ? ' ' : '!',
1482 was_jwait ? ' ' : '!');
1483 }
1484 if (was_dirty) {
098297b2
JM
1485 /*
1486 * we inc again because saved_bh gets decremented
1487 * at free_cnode
1488 */
bd4c625c
LT
1489 get_bh(saved_bh);
1490 set_bit(BLOCK_NEEDS_FLUSH, &cn->state);
1491 lock_buffer(saved_bh);
1492 BUG_ON(cn->blocknr != saved_bh->b_blocknr);
1493 if (buffer_dirty(saved_bh))
1494 submit_logged_buffer(saved_bh);
1495 else
1496 unlock_buffer(saved_bh);
1497 count++;
1498 } else {
45b03d5e
JM
1499 reiserfs_warning(s, "clm-2082",
1500 "Unable to flush buffer %llu in %s",
bd4c625c 1501 (unsigned long long)saved_bh->
fbe5498b 1502 b_blocknr, __func__);
bd4c625c 1503 }
cf776a7a 1504free_cnode:
bd4c625c
LT
1505 cn = cn->next;
1506 if (saved_bh) {
098297b2
JM
1507 /*
1508 * we incremented this to keep others from
1509 * taking the buffer head away
1510 */
bd4c625c 1511 put_bh(saved_bh);
a228bf8f 1512 if (atomic_read(&saved_bh->b_count) < 0) {
45b03d5e
JM
1513 reiserfs_warning(s, "journal-945",
1514 "saved_bh->b_count < 0");
bd4c625c
LT
1515 }
1516 }
1517 }
1518 if (count > 0) {
1519 cn = jl->j_realblock;
1520 while (cn) {
1521 if (test_bit(BLOCK_NEEDS_FLUSH, &cn->state)) {
1522 if (!cn->bh) {
c3a9c210
JM
1523 reiserfs_panic(s, "journal-1011",
1524 "cn->bh is NULL");
bd4c625c 1525 }
8ebc4232 1526
278f6679
JM
1527 depth = reiserfs_write_unlock_nested(s);
1528 __wait_on_buffer(cn->bh);
1529 reiserfs_write_lock_nested(s, depth);
8ebc4232 1530
bd4c625c 1531 if (!cn->bh) {
c3a9c210
JM
1532 reiserfs_panic(s, "journal-1012",
1533 "cn->bh is NULL");
bd4c625c
LT
1534 }
1535 if (unlikely(!buffer_uptodate(cn->bh))) {
1536#ifdef CONFIG_REISERFS_CHECK
45b03d5e
JM
1537 reiserfs_warning(s, "journal-949",
1538 "buffer write failed");
bd4c625c
LT
1539#endif
1540 err = -EIO;
1541 }
098297b2
JM
1542 /*
1543 * note, we must clear the JDirty_wait bit
1544 * after the up to date check, otherwise we
1545 * race against our flushpage routine
bd4c625c
LT
1546 */
1547 BUG_ON(!test_clear_buffer_journal_dirty
1548 (cn->bh));
1549
398c95bd 1550 /* drop one ref for us */
bd4c625c 1551 put_bh(cn->bh);
398c95bd
CM
1552 /* drop one ref for journal_mark_dirty */
1553 release_buffer_page(cn->bh);
bd4c625c
LT
1554 }
1555 cn = cn->next;
1556 }
1557 }
1558
1559 if (err)
1560 reiserfs_abort(s, -EIO,
1561 "Write error while pushing transaction to disk in %s",
fbe5498b 1562 __func__);
cf776a7a 1563flush_older_and_return:
bd4c625c 1564
098297b2
JM
1565 /*
1566 * before we can update the journal header block, we _must_ flush all
1567 * real blocks from all older transactions to disk. This is because
1568 * once the header block is updated, this transaction will not be
1569 * replayed after a crash
bd4c625c
LT
1570 */
1571 if (flushall) {
1572 flush_older_journal_lists(s, jl);
1573 }
1574
1575 err = journal->j_errno;
098297b2
JM
1576 /*
1577 * before we can remove everything from the hash tables for this
1578 * transaction, we must make sure it can never be replayed
1579 *
1580 * since we are only called from do_journal_end, we know for sure there
1581 * are no allocations going on while we are flushing journal lists. So,
1582 * we only need to update the journal header block for the last list
1583 * being flushed
bd4c625c
LT
1584 */
1585 if (!err && flushall) {
1586 err =
1587 update_journal_header_block(s,
1588 (jl->j_start + jl->j_len +
1589 2) % SB_ONDISK_JOURNAL_SIZE(s),
1590 jl->j_trans_id);
1591 if (err)
1592 reiserfs_abort(s, -EIO,
1593 "Write error while updating journal header in %s",
fbe5498b 1594 __func__);
bd4c625c
LT
1595 }
1596 remove_all_from_journal_list(s, jl, 0);
1597 list_del_init(&jl->j_list);
1598 journal->j_num_lists--;
1599 del_from_work_list(s, jl);
1600
1601 if (journal->j_last_flush_id != 0 &&
1602 (jl->j_trans_id - journal->j_last_flush_id) != 1) {
45b03d5e 1603 reiserfs_warning(s, "clm-2201", "last flush %lu, current %lu",
bd4c625c
LT
1604 journal->j_last_flush_id, jl->j_trans_id);
1605 }
1606 journal->j_last_flush_id = jl->j_trans_id;
1607
098297b2
JM
1608 /*
1609 * not strictly required since we are freeing the list, but it should
bd4c625c
LT
1610 * help find code using dead lists later on
1611 */
1612 jl->j_len = 0;
a228bf8f 1613 atomic_set(&jl->j_nonzerolen, 0);
bd4c625c
LT
1614 jl->j_start = 0;
1615 jl->j_realblock = NULL;
1616 jl->j_commit_bh = NULL;
1617 jl->j_trans_id = 0;
1618 jl->j_state = 0;
1619 put_journal_list(s, jl);
1620 if (flushall)
afe70259 1621 mutex_unlock(&journal->j_flush_mutex);
bd4c625c
LT
1622 return err;
1623}
1624
1625static int write_one_transaction(struct super_block *s,
1626 struct reiserfs_journal_list *jl,
1627 struct buffer_chunk *chunk)
1628{
1629 struct reiserfs_journal_cnode *cn;
1630 int ret = 0;
1631
1632 jl->j_state |= LIST_TOUCHED;
1633 del_from_work_list(s, jl);
1634 if (jl->j_len == 0 || atomic_read(&jl->j_nonzerolen) == 0) {
1635 return 0;
1636 }
1637
1638 cn = jl->j_realblock;
1639 while (cn) {
098297b2
JM
1640 /*
1641 * if the blocknr == 0, this has been cleared from the hash,
1642 * skip it
bd4c625c
LT
1643 */
1644 if (cn->blocknr == 0) {
1645 goto next;
1646 }
1647 if (cn->bh && can_dirty(cn) && buffer_dirty(cn->bh)) {
1648 struct buffer_head *tmp_bh;
098297b2
JM
1649 /*
1650 * we can race against journal_mark_freed when we try
bd4c625c
LT
1651 * to lock_buffer(cn->bh), so we have to inc the buffer
1652 * count, and recheck things after locking
1653 */
1654 tmp_bh = cn->bh;
1655 get_bh(tmp_bh);
1656 lock_buffer(tmp_bh);
1657 if (cn->bh && can_dirty(cn) && buffer_dirty(tmp_bh)) {
1658 if (!buffer_journal_dirty(tmp_bh) ||
1659 buffer_journal_prepared(tmp_bh))
1660 BUG();
1661 add_to_chunk(chunk, tmp_bh, NULL, write_chunk);
1662 ret++;
1663 } else {
1664 /* note, cn->bh might be null now */
1665 unlock_buffer(tmp_bh);
1666 }
1667 put_bh(tmp_bh);
1668 }
cf776a7a 1669next:
bd4c625c
LT
1670 cn = cn->next;
1671 cond_resched();
1672 }
1673 return ret;
1674}
1675
1676/* used by flush_commit_list */
dc0dde61 1677static void dirty_one_transaction(struct super_block *s,
bd4c625c
LT
1678 struct reiserfs_journal_list *jl)
1679{
1680 struct reiserfs_journal_cnode *cn;
1681 struct reiserfs_journal_list *pjl;
bd4c625c
LT
1682
1683 jl->j_state |= LIST_DIRTY;
1684 cn = jl->j_realblock;
1685 while (cn) {
098297b2
JM
1686 /*
1687 * look for a more recent transaction that logged this
1688 * buffer. Only the most recent transaction with a buffer in
1689 * it is allowed to send that buffer to disk
bd4c625c
LT
1690 */
1691 pjl = find_newer_jl_for_cn(cn);
1692 if (!pjl && cn->blocknr && cn->bh
1693 && buffer_journal_dirty(cn->bh)) {
1694 BUG_ON(!can_dirty(cn));
098297b2
JM
1695 /*
1696 * if the buffer is prepared, it will either be logged
bd4c625c
LT
1697 * or restored. If restored, we need to make sure
1698 * it actually gets marked dirty
1699 */
1700 clear_buffer_journal_new(cn->bh);
1701 if (buffer_journal_prepared(cn->bh)) {
1702 set_buffer_journal_restore_dirty(cn->bh);
1703 } else {
1704 set_buffer_journal_test(cn->bh);
1705 mark_buffer_dirty(cn->bh);
1706 }
1707 }
1708 cn = cn->next;
1709 }
bd4c625c
LT
1710}
1711
1712static int kupdate_transactions(struct super_block *s,
1713 struct reiserfs_journal_list *jl,
1714 struct reiserfs_journal_list **next_jl,
600ed416 1715 unsigned int *next_trans_id,
bd4c625c
LT
1716 int num_blocks, int num_trans)
1717{
1718 int ret = 0;
1719 int written = 0;
1720 int transactions_flushed = 0;
600ed416 1721 unsigned int orig_trans_id = jl->j_trans_id;
bd4c625c
LT
1722 struct buffer_chunk chunk;
1723 struct list_head *entry;
1724 struct reiserfs_journal *journal = SB_JOURNAL(s);
1725 chunk.nr = 0;
1726
a412f9ef 1727 reiserfs_mutex_lock_safe(&journal->j_flush_mutex, s);
bd4c625c
LT
1728 if (!journal_list_still_alive(s, orig_trans_id)) {
1729 goto done;
1730 }
1731
098297b2
JM
1732 /*
1733 * we've got j_flush_mutex held, nobody is going to delete any
bd4c625c
LT
1734 * of these lists out from underneath us
1735 */
1736 while ((num_trans && transactions_flushed < num_trans) ||
1737 (!num_trans && written < num_blocks)) {
1738
1739 if (jl->j_len == 0 || (jl->j_state & LIST_TOUCHED) ||
1740 atomic_read(&jl->j_commit_left)
1741 || !(jl->j_state & LIST_DIRTY)) {
1742 del_from_work_list(s, jl);
1743 break;
1744 }
1745 ret = write_one_transaction(s, jl, &chunk);
1746
1747 if (ret < 0)
1748 goto done;
1749 transactions_flushed++;
1750 written += ret;
1751 entry = jl->j_list.next;
1752
1753 /* did we wrap? */
1754 if (entry == &journal->j_journal_list) {
1755 break;
1756 }
1757 jl = JOURNAL_LIST_ENTRY(entry);
1758
1759 /* don't bother with older transactions */
1760 if (jl->j_trans_id <= orig_trans_id)
1761 break;
1762 }
1763 if (chunk.nr) {
1764 write_chunk(&chunk);
1765 }
1766
cf776a7a 1767done:
afe70259 1768 mutex_unlock(&journal->j_flush_mutex);
bd4c625c
LT
1769 return ret;
1770}
1771
098297b2
JM
1772/*
1773 * for o_sync and fsync heavy applications, they tend to use
1774 * all the journa list slots with tiny transactions. These
1775 * trigger lots and lots of calls to update the header block, which
1776 * adds seeks and slows things down.
1777 *
1778 * This function tries to clear out a large chunk of the journal lists
1779 * at once, which makes everything faster since only the newest journal
1780 * list updates the header block
1781 */
1da177e4 1782static int flush_used_journal_lists(struct super_block *s,
bd4c625c
LT
1783 struct reiserfs_journal_list *jl)
1784{
1785 unsigned long len = 0;
1786 unsigned long cur_len;
bd4c625c
LT
1787 int i;
1788 int limit = 256;
1789 struct reiserfs_journal_list *tjl;
1790 struct reiserfs_journal_list *flush_jl;
600ed416 1791 unsigned int trans_id;
bd4c625c
LT
1792 struct reiserfs_journal *journal = SB_JOURNAL(s);
1793
1794 flush_jl = tjl = jl;
1795
1796 /* in data logging mode, try harder to flush a lot of blocks */
1797 if (reiserfs_data_log(s))
1798 limit = 1024;
1799 /* flush for 256 transactions or limit blocks, whichever comes first */
1800 for (i = 0; i < 256 && len < limit; i++) {
1801 if (atomic_read(&tjl->j_commit_left) ||
1802 tjl->j_trans_id < jl->j_trans_id) {
1803 break;
1804 }
1805 cur_len = atomic_read(&tjl->j_nonzerolen);
1806 if (cur_len > 0) {
1807 tjl->j_state &= ~LIST_TOUCHED;
1808 }
1809 len += cur_len;
1810 flush_jl = tjl;
1811 if (tjl->j_list.next == &journal->j_journal_list)
1812 break;
1813 tjl = JOURNAL_LIST_ENTRY(tjl->j_list.next);
1814 }
721a769c
JM
1815 get_journal_list(jl);
1816 get_journal_list(flush_jl);
098297b2
JM
1817
1818 /*
1819 * try to find a group of blocks we can flush across all the
1820 * transactions, but only bother if we've actually spanned
1821 * across multiple lists
bd4c625c 1822 */
3e9fd5a4
JY
1823 if (flush_jl != jl)
1824 kupdate_transactions(s, jl, &tjl, &trans_id, len, i);
1825
bd4c625c 1826 flush_journal_list(s, flush_jl, 1);
721a769c
JM
1827 put_journal_list(s, flush_jl);
1828 put_journal_list(s, jl);
bd4c625c 1829 return 0;
1da177e4
LT
1830}
1831
1832/*
098297b2
JM
1833 * removes any nodes in table with name block and dev as bh.
1834 * only touchs the hnext and hprev pointers.
1835 */
5d552ad7 1836static void remove_journal_hash(struct super_block *sb,
bd4c625c
LT
1837 struct reiserfs_journal_cnode **table,
1838 struct reiserfs_journal_list *jl,
1839 unsigned long block, int remove_freed)
1840{
1841 struct reiserfs_journal_cnode *cur;
1842 struct reiserfs_journal_cnode **head;
1843
1844 head = &(journal_hash(table, sb, block));
1845 if (!head) {
1846 return;
1847 }
1848 cur = *head;
1849 while (cur) {
1850 if (cur->blocknr == block && cur->sb == sb
1851 && (jl == NULL || jl == cur->jlist)
1852 && (!test_bit(BLOCK_FREED, &cur->state) || remove_freed)) {
1853 if (cur->hnext) {
1854 cur->hnext->hprev = cur->hprev;
1855 }
1856 if (cur->hprev) {
1857 cur->hprev->hnext = cur->hnext;
1858 } else {
1859 *head = cur->hnext;
1860 }
1861 cur->blocknr = 0;
1862 cur->sb = NULL;
1863 cur->state = 0;
098297b2
JM
1864 /*
1865 * anybody who clears the cur->bh will also
1866 * dec the nonzerolen
1867 */
1868 if (cur->bh && cur->jlist)
a228bf8f 1869 atomic_dec(&cur->jlist->j_nonzerolen);
bd4c625c
LT
1870 cur->bh = NULL;
1871 cur->jlist = NULL;
1872 }
1873 cur = cur->hnext;
1874 }
1875}
1876
a9dd3643 1877static void free_journal_ram(struct super_block *sb)
bd4c625c 1878{
a9dd3643 1879 struct reiserfs_journal *journal = SB_JOURNAL(sb);
d739b42b 1880 kfree(journal->j_current_jl);
bd4c625c
LT
1881 journal->j_num_lists--;
1882
1883 vfree(journal->j_cnode_free_orig);
a9dd3643
JM
1884 free_list_bitmaps(sb, journal->j_list_bitmap);
1885 free_bitmap_nodes(sb); /* must be after free_list_bitmaps */
bd4c625c
LT
1886 if (journal->j_header_bh) {
1887 brelse(journal->j_header_bh);
1888 }
098297b2
JM
1889 /*
1890 * j_header_bh is on the journal dev, make sure
1891 * not to release the journal dev until we brelse j_header_bh
bd4c625c 1892 */
a9dd3643 1893 release_journal_dev(sb, journal);
bd4c625c 1894 vfree(journal);
1da177e4
LT
1895}
1896
1897/*
098297b2
JM
1898 * call on unmount. Only set error to 1 if you haven't made your way out
1899 * of read_super() yet. Any other caller must keep error at 0.
1900 */
bd4c625c 1901static int do_journal_release(struct reiserfs_transaction_handle *th,
a9dd3643 1902 struct super_block *sb, int error)
bd4c625c
LT
1903{
1904 struct reiserfs_transaction_handle myth;
a9dd3643 1905 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c 1906
098297b2
JM
1907 /*
1908 * we only want to flush out transactions if we were
1909 * called with error == 0
bd4c625c 1910 */
bc98a42c 1911 if (!error && !sb_rdonly(sb)) {
bd4c625c
LT
1912 /* end the current trans */
1913 BUG_ON(!th->t_trans_id);
58d85426 1914 do_journal_end(th, FLUSH_ALL);
bd4c625c 1915
098297b2
JM
1916 /*
1917 * make sure something gets logged to force
1918 * our way into the flush code
1919 */
b491dd17 1920 if (!journal_join(&myth, sb)) {
a9dd3643
JM
1921 reiserfs_prepare_for_journal(sb,
1922 SB_BUFFER_WITH_SB(sb),
bd4c625c 1923 1);
09f1b80b 1924 journal_mark_dirty(&myth, SB_BUFFER_WITH_SB(sb));
58d85426 1925 do_journal_end(&myth, FLUSH_ALL);
bd4c625c
LT
1926 }
1927 }
1928
1929 /* this also catches errors during the do_journal_end above */
1930 if (!error && reiserfs_is_journal_aborted(journal)) {
1931 memset(&myth, 0, sizeof(myth));
b491dd17 1932 if (!journal_join_abort(&myth, sb)) {
a9dd3643
JM
1933 reiserfs_prepare_for_journal(sb,
1934 SB_BUFFER_WITH_SB(sb),
bd4c625c 1935 1);
09f1b80b 1936 journal_mark_dirty(&myth, SB_BUFFER_WITH_SB(sb));
58d85426 1937 do_journal_end(&myth, FLUSH_ALL);
bd4c625c
LT
1938 }
1939 }
1940
8ebc4232
FW
1941
1942 /*
1943 * We must release the write lock here because
1944 * the workqueue job (flush_async_commit) needs this lock
1945 */
1946 reiserfs_write_unlock(sb);
033369d1 1947
01777836
JK
1948 /*
1949 * Cancel flushing of old commits. Note that neither of these works
1950 * will be requeued because superblock is being shutdown and doesn't
1751e8a6 1951 * have SB_ACTIVE set.
01777836 1952 */
71b0576b 1953 reiserfs_cancel_old_flush(sb);
01777836
JK
1954 /* wait for all commits to finish */
1955 cancel_delayed_work_sync(&SB_JOURNAL(sb)->j_work);
bd4c625c 1956
a9dd3643 1957 free_journal_ram(sb);
bd4c625c 1958
0523676d
FW
1959 reiserfs_write_lock(sb);
1960
bd4c625c 1961 return 0;
1da177e4
LT
1962}
1963
098297b2 1964/* * call on unmount. flush all journal trans, release all alloc'd ram */
bd4c625c 1965int journal_release(struct reiserfs_transaction_handle *th,
a9dd3643 1966 struct super_block *sb)
bd4c625c 1967{
a9dd3643 1968 return do_journal_release(th, sb, 0);
1da177e4 1969}
bd4c625c 1970
098297b2 1971/* only call from an error condition inside reiserfs_read_super! */
bd4c625c 1972int journal_release_error(struct reiserfs_transaction_handle *th,
a9dd3643 1973 struct super_block *sb)
bd4c625c 1974{
a9dd3643 1975 return do_journal_release(th, sb, 1);
1da177e4
LT
1976}
1977
098297b2
JM
1978/*
1979 * compares description block with commit block.
1980 * returns 1 if they differ, 0 if they are the same
1981 */
a9dd3643 1982static int journal_compare_desc_commit(struct super_block *sb,
bd4c625c
LT
1983 struct reiserfs_journal_desc *desc,
1984 struct reiserfs_journal_commit *commit)
1985{
1986 if (get_commit_trans_id(commit) != get_desc_trans_id(desc) ||
1987 get_commit_trans_len(commit) != get_desc_trans_len(desc) ||
a9dd3643 1988 get_commit_trans_len(commit) > SB_JOURNAL(sb)->j_trans_max ||
bd4c625c
LT
1989 get_commit_trans_len(commit) <= 0) {
1990 return 1;
1991 }
1992 return 0;
1da177e4 1993}
bd4c625c 1994
098297b2
JM
1995/*
1996 * returns 0 if it did not find a description block
1997 * returns -1 if it found a corrupt commit block
1998 * returns 1 if both desc and commit were valid
1999 * NOTE: only called during fs mount
2000 */
a9dd3643 2001static int journal_transaction_is_valid(struct super_block *sb,
bd4c625c 2002 struct buffer_head *d_bh,
600ed416 2003 unsigned int *oldest_invalid_trans_id,
bd4c625c
LT
2004 unsigned long *newest_mount_id)
2005{
2006 struct reiserfs_journal_desc *desc;
2007 struct reiserfs_journal_commit *commit;
2008 struct buffer_head *c_bh;
2009 unsigned long offset;
2010
2011 if (!d_bh)
2012 return 0;
2013
2014 desc = (struct reiserfs_journal_desc *)d_bh->b_data;
2015 if (get_desc_trans_len(desc) > 0
2016 && !memcmp(get_journal_desc_magic(d_bh), JOURNAL_DESC_MAGIC, 8)) {
2017 if (oldest_invalid_trans_id && *oldest_invalid_trans_id
2018 && get_desc_trans_id(desc) > *oldest_invalid_trans_id) {
a9dd3643 2019 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2020 "journal-986: transaction "
2021 "is valid returning because trans_id %d is greater than "
2022 "oldest_invalid %lu",
2023 get_desc_trans_id(desc),
2024 *oldest_invalid_trans_id);
2025 return 0;
2026 }
2027 if (newest_mount_id
2028 && *newest_mount_id > get_desc_mount_id(desc)) {
a9dd3643 2029 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2030 "journal-1087: transaction "
2031 "is valid returning because mount_id %d is less than "
2032 "newest_mount_id %lu",
2033 get_desc_mount_id(desc),
2034 *newest_mount_id);
2035 return -1;
2036 }
a9dd3643
JM
2037 if (get_desc_trans_len(desc) > SB_JOURNAL(sb)->j_trans_max) {
2038 reiserfs_warning(sb, "journal-2018",
45b03d5e
JM
2039 "Bad transaction length %d "
2040 "encountered, ignoring transaction",
bd4c625c
LT
2041 get_desc_trans_len(desc));
2042 return -1;
2043 }
a9dd3643 2044 offset = d_bh->b_blocknr - SB_ONDISK_JOURNAL_1st_BLOCK(sb);
bd4c625c 2045
098297b2
JM
2046 /*
2047 * ok, we have a journal description block,
2048 * let's see if the transaction was valid
2049 */
bd4c625c 2050 c_bh =
a9dd3643
JM
2051 journal_bread(sb,
2052 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c 2053 ((offset + get_desc_trans_len(desc) +
a9dd3643 2054 1) % SB_ONDISK_JOURNAL_SIZE(sb)));
bd4c625c
LT
2055 if (!c_bh)
2056 return 0;
2057 commit = (struct reiserfs_journal_commit *)c_bh->b_data;
a9dd3643
JM
2058 if (journal_compare_desc_commit(sb, desc, commit)) {
2059 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2060 "journal_transaction_is_valid, commit offset %ld had bad "
2061 "time %d or length %d",
2062 c_bh->b_blocknr -
a9dd3643 2063 SB_ONDISK_JOURNAL_1st_BLOCK(sb),
bd4c625c
LT
2064 get_commit_trans_id(commit),
2065 get_commit_trans_len(commit));
2066 brelse(c_bh);
2067 if (oldest_invalid_trans_id) {
2068 *oldest_invalid_trans_id =
2069 get_desc_trans_id(desc);
a9dd3643 2070 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2071 "journal-1004: "
2072 "transaction_is_valid setting oldest invalid trans_id "
2073 "to %d",
2074 get_desc_trans_id(desc));
2075 }
2076 return -1;
2077 }
2078 brelse(c_bh);
a9dd3643 2079 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2080 "journal-1006: found valid "
2081 "transaction start offset %llu, len %d id %d",
2082 d_bh->b_blocknr -
a9dd3643 2083 SB_ONDISK_JOURNAL_1st_BLOCK(sb),
bd4c625c
LT
2084 get_desc_trans_len(desc),
2085 get_desc_trans_id(desc));
2086 return 1;
2087 } else {
2088 return 0;
2089 }
2090}
2091
2092static void brelse_array(struct buffer_head **heads, int num)
2093{
2094 int i;
2095 for (i = 0; i < num; i++) {
2096 brelse(heads[i]);
2097 }
1da177e4
LT
2098}
2099
2100/*
098297b2
JM
2101 * given the start, and values for the oldest acceptable transactions,
2102 * this either reads in a replays a transaction, or returns because the
2103 * transaction is invalid, or too old.
2104 * NOTE: only called during fs mount
2105 */
a9dd3643 2106static int journal_read_transaction(struct super_block *sb,
bd4c625c
LT
2107 unsigned long cur_dblock,
2108 unsigned long oldest_start,
600ed416 2109 unsigned int oldest_trans_id,
bd4c625c
LT
2110 unsigned long newest_mount_id)
2111{
a9dd3643 2112 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
2113 struct reiserfs_journal_desc *desc;
2114 struct reiserfs_journal_commit *commit;
600ed416 2115 unsigned int trans_id = 0;
bd4c625c
LT
2116 struct buffer_head *c_bh;
2117 struct buffer_head *d_bh;
2118 struct buffer_head **log_blocks = NULL;
2119 struct buffer_head **real_blocks = NULL;
600ed416 2120 unsigned int trans_offset;
bd4c625c
LT
2121 int i;
2122 int trans_half;
2123
a9dd3643 2124 d_bh = journal_bread(sb, cur_dblock);
bd4c625c
LT
2125 if (!d_bh)
2126 return 1;
2127 desc = (struct reiserfs_journal_desc *)d_bh->b_data;
a9dd3643
JM
2128 trans_offset = d_bh->b_blocknr - SB_ONDISK_JOURNAL_1st_BLOCK(sb);
2129 reiserfs_debug(sb, REISERFS_DEBUG_CODE, "journal-1037: "
bd4c625c 2130 "journal_read_transaction, offset %llu, len %d mount_id %d",
a9dd3643 2131 d_bh->b_blocknr - SB_ONDISK_JOURNAL_1st_BLOCK(sb),
bd4c625c
LT
2132 get_desc_trans_len(desc), get_desc_mount_id(desc));
2133 if (get_desc_trans_id(desc) < oldest_trans_id) {
a9dd3643 2134 reiserfs_debug(sb, REISERFS_DEBUG_CODE, "journal-1039: "
bd4c625c
LT
2135 "journal_read_trans skipping because %lu is too old",
2136 cur_dblock -
a9dd3643 2137 SB_ONDISK_JOURNAL_1st_BLOCK(sb));
bd4c625c
LT
2138 brelse(d_bh);
2139 return 1;
2140 }
2141 if (get_desc_mount_id(desc) != newest_mount_id) {
a9dd3643 2142 reiserfs_debug(sb, REISERFS_DEBUG_CODE, "journal-1146: "
bd4c625c
LT
2143 "journal_read_trans skipping because %d is != "
2144 "newest_mount_id %lu", get_desc_mount_id(desc),
2145 newest_mount_id);
2146 brelse(d_bh);
2147 return 1;
2148 }
a9dd3643 2149 c_bh = journal_bread(sb, SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c 2150 ((trans_offset + get_desc_trans_len(desc) + 1) %
a9dd3643 2151 SB_ONDISK_JOURNAL_SIZE(sb)));
bd4c625c
LT
2152 if (!c_bh) {
2153 brelse(d_bh);
2154 return 1;
2155 }
2156 commit = (struct reiserfs_journal_commit *)c_bh->b_data;
a9dd3643
JM
2157 if (journal_compare_desc_commit(sb, desc, commit)) {
2158 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2159 "journal_read_transaction, "
2160 "commit offset %llu had bad time %d or length %d",
2161 c_bh->b_blocknr -
a9dd3643 2162 SB_ONDISK_JOURNAL_1st_BLOCK(sb),
bd4c625c
LT
2163 get_commit_trans_id(commit),
2164 get_commit_trans_len(commit));
2165 brelse(c_bh);
2166 brelse(d_bh);
2167 return 1;
2168 }
3f8b5ee3
JM
2169
2170 if (bdev_read_only(sb->s_bdev)) {
2171 reiserfs_warning(sb, "clm-2076",
2172 "device is readonly, unable to replay log");
2173 brelse(c_bh);
2174 brelse(d_bh);
2175 return -EROFS;
2176 }
2177
bd4c625c 2178 trans_id = get_desc_trans_id(desc);
098297b2
JM
2179 /*
2180 * now we know we've got a good transaction, and it was
2181 * inside the valid time ranges
2182 */
6da2ec56
KC
2183 log_blocks = kmalloc_array(get_desc_trans_len(desc),
2184 sizeof(struct buffer_head *),
2185 GFP_NOFS);
2186 real_blocks = kmalloc_array(get_desc_trans_len(desc),
2187 sizeof(struct buffer_head *),
2188 GFP_NOFS);
bd4c625c
LT
2189 if (!log_blocks || !real_blocks) {
2190 brelse(c_bh);
2191 brelse(d_bh);
d739b42b
PE
2192 kfree(log_blocks);
2193 kfree(real_blocks);
a9dd3643 2194 reiserfs_warning(sb, "journal-1169",
45b03d5e 2195 "kmalloc failed, unable to mount FS");
bd4c625c
LT
2196 return -1;
2197 }
2198 /* get all the buffer heads */
a9dd3643 2199 trans_half = journal_trans_half(sb->s_blocksize);
bd4c625c
LT
2200 for (i = 0; i < get_desc_trans_len(desc); i++) {
2201 log_blocks[i] =
a9dd3643
JM
2202 journal_getblk(sb,
2203 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c 2204 (trans_offset + 1 +
a9dd3643 2205 i) % SB_ONDISK_JOURNAL_SIZE(sb));
bd4c625c
LT
2206 if (i < trans_half) {
2207 real_blocks[i] =
a9dd3643 2208 sb_getblk(sb,
bd4c625c
LT
2209 le32_to_cpu(desc->j_realblock[i]));
2210 } else {
2211 real_blocks[i] =
a9dd3643 2212 sb_getblk(sb,
bd4c625c
LT
2213 le32_to_cpu(commit->
2214 j_realblock[i - trans_half]));
2215 }
a9dd3643
JM
2216 if (real_blocks[i]->b_blocknr > SB_BLOCK_COUNT(sb)) {
2217 reiserfs_warning(sb, "journal-1207",
45b03d5e
JM
2218 "REPLAY FAILURE fsck required! "
2219 "Block to replay is outside of "
2220 "filesystem");
bd4c625c
LT
2221 goto abort_replay;
2222 }
2223 /* make sure we don't try to replay onto log or reserved area */
2224 if (is_block_in_log_or_reserved_area
a9dd3643
JM
2225 (sb, real_blocks[i]->b_blocknr)) {
2226 reiserfs_warning(sb, "journal-1204",
45b03d5e
JM
2227 "REPLAY FAILURE fsck required! "
2228 "Trying to replay onto a log block");
cf776a7a 2229abort_replay:
bd4c625c
LT
2230 brelse_array(log_blocks, i);
2231 brelse_array(real_blocks, i);
2232 brelse(c_bh);
2233 brelse(d_bh);
d739b42b
PE
2234 kfree(log_blocks);
2235 kfree(real_blocks);
bd4c625c
LT
2236 return -1;
2237 }
2238 }
2239 /* read in the log blocks, memcpy to the corresponding real block */
dfec8a14 2240 ll_rw_block(REQ_OP_READ, 0, get_desc_trans_len(desc), log_blocks);
bd4c625c 2241 for (i = 0; i < get_desc_trans_len(desc); i++) {
8ebc4232 2242
bd4c625c
LT
2243 wait_on_buffer(log_blocks[i]);
2244 if (!buffer_uptodate(log_blocks[i])) {
a9dd3643 2245 reiserfs_warning(sb, "journal-1212",
45b03d5e
JM
2246 "REPLAY FAILURE fsck required! "
2247 "buffer write failed");
bd4c625c
LT
2248 brelse_array(log_blocks + i,
2249 get_desc_trans_len(desc) - i);
2250 brelse_array(real_blocks, get_desc_trans_len(desc));
2251 brelse(c_bh);
2252 brelse(d_bh);
d739b42b
PE
2253 kfree(log_blocks);
2254 kfree(real_blocks);
bd4c625c
LT
2255 return -1;
2256 }
2257 memcpy(real_blocks[i]->b_data, log_blocks[i]->b_data,
2258 real_blocks[i]->b_size);
2259 set_buffer_uptodate(real_blocks[i]);
2260 brelse(log_blocks[i]);
2261 }
2262 /* flush out the real blocks */
2263 for (i = 0; i < get_desc_trans_len(desc); i++) {
2264 set_buffer_dirty(real_blocks[i]);
2a222ca9 2265 write_dirty_buffer(real_blocks[i], 0);
bd4c625c
LT
2266 }
2267 for (i = 0; i < get_desc_trans_len(desc); i++) {
2268 wait_on_buffer(real_blocks[i]);
2269 if (!buffer_uptodate(real_blocks[i])) {
a9dd3643 2270 reiserfs_warning(sb, "journal-1226",
45b03d5e
JM
2271 "REPLAY FAILURE, fsck required! "
2272 "buffer write failed");
bd4c625c
LT
2273 brelse_array(real_blocks + i,
2274 get_desc_trans_len(desc) - i);
2275 brelse(c_bh);
2276 brelse(d_bh);
d739b42b
PE
2277 kfree(log_blocks);
2278 kfree(real_blocks);
bd4c625c
LT
2279 return -1;
2280 }
2281 brelse(real_blocks[i]);
2282 }
2283 cur_dblock =
a9dd3643 2284 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c 2285 ((trans_offset + get_desc_trans_len(desc) +
a9dd3643
JM
2286 2) % SB_ONDISK_JOURNAL_SIZE(sb));
2287 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c 2288 "journal-1095: setting journal " "start to offset %ld",
a9dd3643 2289 cur_dblock - SB_ONDISK_JOURNAL_1st_BLOCK(sb));
bd4c625c 2290
098297b2
JM
2291 /*
2292 * init starting values for the first transaction, in case
2293 * this is the last transaction to be replayed.
2294 */
a9dd3643 2295 journal->j_start = cur_dblock - SB_ONDISK_JOURNAL_1st_BLOCK(sb);
bd4c625c
LT
2296 journal->j_last_flush_trans_id = trans_id;
2297 journal->j_trans_id = trans_id + 1;
a44c94a7
AZ
2298 /* check for trans_id overflow */
2299 if (journal->j_trans_id == 0)
2300 journal->j_trans_id = 10;
bd4c625c
LT
2301 brelse(c_bh);
2302 brelse(d_bh);
d739b42b
PE
2303 kfree(log_blocks);
2304 kfree(real_blocks);
bd4c625c 2305 return 0;
1da177e4
LT
2306}
2307
098297b2
JM
2308/*
2309 * This function reads blocks starting from block and to max_block of bufsize
2310 * size (but no more than BUFNR blocks at a time). This proved to improve
2311 * mounting speed on self-rebuilding raid5 arrays at least.
2312 * Right now it is only used from journal code. But later we might use it
2313 * from other places.
2314 * Note: Do not use journal_getblk/sb_getblk functions here!
2315 */
3ee16670
JM
2316static struct buffer_head *reiserfs_breada(struct block_device *dev,
2317 b_blocknr_t block, int bufsize,
2318 b_blocknr_t max_block)
1da177e4 2319{
bd4c625c 2320 struct buffer_head *bhlist[BUFNR];
1da177e4 2321 unsigned int blocks = BUFNR;
bd4c625c 2322 struct buffer_head *bh;
1da177e4 2323 int i, j;
bd4c625c
LT
2324
2325 bh = __getblk(dev, block, bufsize);
2326 if (buffer_uptodate(bh))
2327 return (bh);
2328
1da177e4
LT
2329 if (block + BUFNR > max_block) {
2330 blocks = max_block - block;
2331 }
2332 bhlist[0] = bh;
2333 j = 1;
2334 for (i = 1; i < blocks; i++) {
bd4c625c
LT
2335 bh = __getblk(dev, block + i, bufsize);
2336 if (buffer_uptodate(bh)) {
2337 brelse(bh);
1da177e4 2338 break;
bd4c625c
LT
2339 } else
2340 bhlist[j++] = bh;
1da177e4 2341 }
dfec8a14 2342 ll_rw_block(REQ_OP_READ, 0, j, bhlist);
bd4c625c
LT
2343 for (i = 1; i < j; i++)
2344 brelse(bhlist[i]);
1da177e4 2345 bh = bhlist[0];
bd4c625c
LT
2346 wait_on_buffer(bh);
2347 if (buffer_uptodate(bh))
1da177e4 2348 return bh;
bd4c625c 2349 brelse(bh);
1da177e4
LT
2350 return NULL;
2351}
2352
2353/*
098297b2
JM
2354 * read and replay the log
2355 * on a clean unmount, the journal header's next unflushed pointer will be
2356 * to an invalid transaction. This tests that before finding all the
2357 * transactions in the log, which makes normal mount times fast.
2358 *
2359 * After a crash, this starts with the next unflushed transaction, and
2360 * replays until it finds one too old, or invalid.
2361 *
2362 * On exit, it sets things up so the first transaction will work correctly.
2363 * NOTE: only called during fs mount
2364 */
a9dd3643 2365static int journal_read(struct super_block *sb)
bd4c625c 2366{
a9dd3643 2367 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c 2368 struct reiserfs_journal_desc *desc;
600ed416
JM
2369 unsigned int oldest_trans_id = 0;
2370 unsigned int oldest_invalid_trans_id = 0;
34d08260 2371 time64_t start;
bd4c625c
LT
2372 unsigned long oldest_start = 0;
2373 unsigned long cur_dblock = 0;
2374 unsigned long newest_mount_id = 9;
2375 struct buffer_head *d_bh;
2376 struct reiserfs_journal_header *jh;
2377 int valid_journal_header = 0;
2378 int replay_count = 0;
2379 int continue_replay = 1;
2380 int ret;
bd4c625c 2381
a9dd3643 2382 cur_dblock = SB_ONDISK_JOURNAL_1st_BLOCK(sb);
a1c6f057
DM
2383 reiserfs_info(sb, "checking transaction log (%pg)\n",
2384 journal->j_dev_bd);
34d08260 2385 start = ktime_get_seconds();
bd4c625c 2386
098297b2
JM
2387 /*
2388 * step 1, read in the journal header block. Check the transaction
2389 * it says is the first unflushed, and if that transaction is not
2390 * valid, replay is done
bd4c625c 2391 */
a9dd3643
JM
2392 journal->j_header_bh = journal_bread(sb,
2393 SB_ONDISK_JOURNAL_1st_BLOCK(sb)
2394 + SB_ONDISK_JOURNAL_SIZE(sb));
bd4c625c
LT
2395 if (!journal->j_header_bh) {
2396 return 1;
2397 }
2398 jh = (struct reiserfs_journal_header *)(journal->j_header_bh->b_data);
c499ec24 2399 if (le32_to_cpu(jh->j_first_unflushed_offset) <
a9dd3643 2400 SB_ONDISK_JOURNAL_SIZE(sb)
bd4c625c
LT
2401 && le32_to_cpu(jh->j_last_flush_trans_id) > 0) {
2402 oldest_start =
a9dd3643 2403 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c
LT
2404 le32_to_cpu(jh->j_first_unflushed_offset);
2405 oldest_trans_id = le32_to_cpu(jh->j_last_flush_trans_id) + 1;
2406 newest_mount_id = le32_to_cpu(jh->j_mount_id);
a9dd3643 2407 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2408 "journal-1153: found in "
2409 "header: first_unflushed_offset %d, last_flushed_trans_id "
2410 "%lu", le32_to_cpu(jh->j_first_unflushed_offset),
2411 le32_to_cpu(jh->j_last_flush_trans_id));
2412 valid_journal_header = 1;
2413
098297b2
JM
2414 /*
2415 * now, we try to read the first unflushed offset. If it
2416 * is not valid, there is nothing more we can do, and it
2417 * makes no sense to read through the whole log.
bd4c625c
LT
2418 */
2419 d_bh =
a9dd3643
JM
2420 journal_bread(sb,
2421 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c 2422 le32_to_cpu(jh->j_first_unflushed_offset));
a9dd3643 2423 ret = journal_transaction_is_valid(sb, d_bh, NULL, NULL);
bd4c625c
LT
2424 if (!ret) {
2425 continue_replay = 0;
2426 }
2427 brelse(d_bh);
2428 goto start_log_replay;
2429 }
2430
098297b2
JM
2431 /*
2432 * ok, there are transactions that need to be replayed. start
2433 * with the first log block, find all the valid transactions, and
2434 * pick out the oldest.
bd4c625c
LT
2435 */
2436 while (continue_replay
2437 && cur_dblock <
a9dd3643
JM
2438 (SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
2439 SB_ONDISK_JOURNAL_SIZE(sb))) {
098297b2
JM
2440 /*
2441 * Note that it is required for blocksize of primary fs
2442 * device and journal device to be the same
2443 */
bd4c625c
LT
2444 d_bh =
2445 reiserfs_breada(journal->j_dev_bd, cur_dblock,
a9dd3643
JM
2446 sb->s_blocksize,
2447 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
2448 SB_ONDISK_JOURNAL_SIZE(sb));
bd4c625c 2449 ret =
a9dd3643 2450 journal_transaction_is_valid(sb, d_bh,
bd4c625c
LT
2451 &oldest_invalid_trans_id,
2452 &newest_mount_id);
2453 if (ret == 1) {
2454 desc = (struct reiserfs_journal_desc *)d_bh->b_data;
2455 if (oldest_start == 0) { /* init all oldest_ values */
2456 oldest_trans_id = get_desc_trans_id(desc);
2457 oldest_start = d_bh->b_blocknr;
2458 newest_mount_id = get_desc_mount_id(desc);
a9dd3643 2459 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2460 "journal-1179: Setting "
2461 "oldest_start to offset %llu, trans_id %lu",
2462 oldest_start -
2463 SB_ONDISK_JOURNAL_1st_BLOCK
a9dd3643 2464 (sb), oldest_trans_id);
bd4c625c
LT
2465 } else if (oldest_trans_id > get_desc_trans_id(desc)) {
2466 /* one we just read was older */
2467 oldest_trans_id = get_desc_trans_id(desc);
2468 oldest_start = d_bh->b_blocknr;
a9dd3643 2469 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2470 "journal-1180: Resetting "
2471 "oldest_start to offset %lu, trans_id %lu",
2472 oldest_start -
2473 SB_ONDISK_JOURNAL_1st_BLOCK
a9dd3643 2474 (sb), oldest_trans_id);
bd4c625c
LT
2475 }
2476 if (newest_mount_id < get_desc_mount_id(desc)) {
2477 newest_mount_id = get_desc_mount_id(desc);
a9dd3643 2478 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2479 "journal-1299: Setting "
2480 "newest_mount_id to %d",
2481 get_desc_mount_id(desc));
2482 }
2483 cur_dblock += get_desc_trans_len(desc) + 2;
2484 } else {
2485 cur_dblock++;
2486 }
2487 brelse(d_bh);
2488 }
2489
cf776a7a 2490start_log_replay:
bd4c625c
LT
2491 cur_dblock = oldest_start;
2492 if (oldest_trans_id) {
a9dd3643 2493 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2494 "journal-1206: Starting replay "
2495 "from offset %llu, trans_id %lu",
a9dd3643 2496 cur_dblock - SB_ONDISK_JOURNAL_1st_BLOCK(sb),
bd4c625c
LT
2497 oldest_trans_id);
2498
2499 }
2500 replay_count = 0;
2501 while (continue_replay && oldest_trans_id > 0) {
2502 ret =
a9dd3643 2503 journal_read_transaction(sb, cur_dblock, oldest_start,
bd4c625c
LT
2504 oldest_trans_id, newest_mount_id);
2505 if (ret < 0) {
2506 return ret;
2507 } else if (ret != 0) {
2508 break;
2509 }
2510 cur_dblock =
a9dd3643 2511 SB_ONDISK_JOURNAL_1st_BLOCK(sb) + journal->j_start;
bd4c625c
LT
2512 replay_count++;
2513 if (cur_dblock == oldest_start)
2514 break;
2515 }
2516
2517 if (oldest_trans_id == 0) {
a9dd3643 2518 reiserfs_debug(sb, REISERFS_DEBUG_CODE,
bd4c625c
LT
2519 "journal-1225: No valid " "transactions found");
2520 }
098297b2
JM
2521 /*
2522 * j_start does not get set correctly if we don't replay any
2523 * transactions. if we had a valid journal_header, set j_start
2524 * to the first unflushed transaction value, copy the trans_id
2525 * from the header
bd4c625c
LT
2526 */
2527 if (valid_journal_header && replay_count == 0) {
2528 journal->j_start = le32_to_cpu(jh->j_first_unflushed_offset);
2529 journal->j_trans_id =
2530 le32_to_cpu(jh->j_last_flush_trans_id) + 1;
a44c94a7
AZ
2531 /* check for trans_id overflow */
2532 if (journal->j_trans_id == 0)
2533 journal->j_trans_id = 10;
bd4c625c
LT
2534 journal->j_last_flush_trans_id =
2535 le32_to_cpu(jh->j_last_flush_trans_id);
2536 journal->j_mount_id = le32_to_cpu(jh->j_mount_id) + 1;
2537 } else {
2538 journal->j_mount_id = newest_mount_id + 1;
2539 }
a9dd3643 2540 reiserfs_debug(sb, REISERFS_DEBUG_CODE, "journal-1299: Setting "
bd4c625c
LT
2541 "newest_mount_id to %lu", journal->j_mount_id);
2542 journal->j_first_unflushed_offset = journal->j_start;
2543 if (replay_count > 0) {
a9dd3643 2544 reiserfs_info(sb,
bd4c625c 2545 "replayed %d transactions in %lu seconds\n",
34d08260 2546 replay_count, ktime_get_seconds() - start);
bd4c625c 2547 }
278f6679
JM
2548 /* needed to satisfy the locking in _update_journal_header_block */
2549 reiserfs_write_lock(sb);
a9dd3643
JM
2550 if (!bdev_read_only(sb->s_bdev) &&
2551 _update_journal_header_block(sb, journal->j_start,
bd4c625c 2552 journal->j_last_flush_trans_id)) {
278f6679 2553 reiserfs_write_unlock(sb);
098297b2
JM
2554 /*
2555 * replay failed, caller must call free_journal_ram and abort
2556 * the mount
bd4c625c
LT
2557 */
2558 return -1;
2559 }
278f6679 2560 reiserfs_write_unlock(sb);
bd4c625c 2561 return 0;
1da177e4
LT
2562}
2563
2564static struct reiserfs_journal_list *alloc_journal_list(struct super_block *s)
2565{
bd4c625c 2566 struct reiserfs_journal_list *jl;
8c777cc4
PE
2567 jl = kzalloc(sizeof(struct reiserfs_journal_list),
2568 GFP_NOFS | __GFP_NOFAIL);
bd4c625c
LT
2569 INIT_LIST_HEAD(&jl->j_list);
2570 INIT_LIST_HEAD(&jl->j_working_list);
2571 INIT_LIST_HEAD(&jl->j_tail_bh_list);
2572 INIT_LIST_HEAD(&jl->j_bh_list);
90415dea 2573 mutex_init(&jl->j_commit_mutex);
bd4c625c
LT
2574 SB_JOURNAL(s)->j_num_lists++;
2575 get_journal_list(jl);
2576 return jl;
2577}
2578
a9dd3643 2579static void journal_list_init(struct super_block *sb)
bd4c625c 2580{
a9dd3643 2581 SB_JOURNAL(sb)->j_current_jl = alloc_journal_list(sb);
bd4c625c
LT
2582}
2583
4385bab1 2584static void release_journal_dev(struct super_block *super,
bd4c625c
LT
2585 struct reiserfs_journal *journal)
2586{
86098fa0 2587 if (journal->j_dev_bd != NULL) {
4385bab1 2588 blkdev_put(journal->j_dev_bd, journal->j_dev_mode);
bd4c625c
LT
2589 journal->j_dev_bd = NULL;
2590 }
bd4c625c
LT
2591}
2592
2593static int journal_init_dev(struct super_block *super,
2594 struct reiserfs_journal *journal,
2595 const char *jdev_name)
1da177e4
LT
2596{
2597 int result;
2598 dev_t jdev;
e525fd89 2599 fmode_t blkdev_mode = FMODE_READ | FMODE_WRITE | FMODE_EXCL;
1da177e4
LT
2600
2601 result = 0;
2602
bd4c625c 2603 journal->j_dev_bd = NULL;
bd4c625c
LT
2604 jdev = SB_ONDISK_JOURNAL_DEVICE(super) ?
2605 new_decode_dev(SB_ONDISK_JOURNAL_DEVICE(super)) : super->s_dev;
1da177e4
LT
2606
2607 if (bdev_read_only(super->s_bdev))
bd4c625c 2608 blkdev_mode = FMODE_READ;
1da177e4
LT
2609
2610 /* there is no "jdev" option and journal is on separate device */
bd4c625c 2611 if ((!jdev_name || !jdev_name[0])) {
e525fd89
TH
2612 if (jdev == super->s_dev)
2613 blkdev_mode &= ~FMODE_EXCL;
d4d77629
TH
2614 journal->j_dev_bd = blkdev_get_by_dev(jdev, blkdev_mode,
2615 journal);
e5eb8caa 2616 journal->j_dev_mode = blkdev_mode;
1da177e4
LT
2617 if (IS_ERR(journal->j_dev_bd)) {
2618 result = PTR_ERR(journal->j_dev_bd);
2619 journal->j_dev_bd = NULL;
45b03d5e 2620 reiserfs_warning(super, "sh-458",
ea3edd4d
CH
2621 "cannot init journal device unknown-block(%u,%u): %i",
2622 MAJOR(jdev), MINOR(jdev), result);
1da177e4 2623 return result;
e525fd89 2624 } else if (jdev != super->s_dev)
1da177e4 2625 set_blocksize(journal->j_dev_bd, super->s_blocksize);
86098fa0 2626
1da177e4
LT
2627 return 0;
2628 }
2629
e5eb8caa 2630 journal->j_dev_mode = blkdev_mode;
d4d77629 2631 journal->j_dev_bd = blkdev_get_by_path(jdev_name, blkdev_mode, journal);
86098fa0
CH
2632 if (IS_ERR(journal->j_dev_bd)) {
2633 result = PTR_ERR(journal->j_dev_bd);
2634 journal->j_dev_bd = NULL;
9ad553ab 2635 reiserfs_warning(super, "sh-457",
bd4c625c
LT
2636 "journal_init_dev: Cannot open '%s': %i",
2637 jdev_name, result);
86098fa0 2638 return result;
1da177e4 2639 }
86098fa0
CH
2640
2641 set_blocksize(journal->j_dev_bd, super->s_blocksize);
2642 reiserfs_info(super,
a1c6f057
DM
2643 "journal_init_dev: journal device: %pg\n",
2644 journal->j_dev_bd);
86098fa0 2645 return 0;
1da177e4
LT
2646}
2647
098297b2 2648/*
cf3d0b81
ES
2649 * When creating/tuning a file system user can assign some
2650 * journal params within boundaries which depend on the ratio
2651 * blocksize/standard_blocksize.
2652 *
2653 * For blocks >= standard_blocksize transaction size should
2654 * be not less then JOURNAL_TRANS_MIN_DEFAULT, and not more
2655 * then JOURNAL_TRANS_MAX_DEFAULT.
2656 *
2657 * For blocks < standard_blocksize these boundaries should be
2658 * decreased proportionally.
2659 */
2660#define REISERFS_STANDARD_BLKSIZE (4096)
2661
a9dd3643 2662static int check_advise_trans_params(struct super_block *sb,
cf3d0b81
ES
2663 struct reiserfs_journal *journal)
2664{
2665 if (journal->j_trans_max) {
098297b2 2666 /* Non-default journal params. Do sanity check for them. */
cf3d0b81 2667 int ratio = 1;
a9dd3643
JM
2668 if (sb->s_blocksize < REISERFS_STANDARD_BLKSIZE)
2669 ratio = REISERFS_STANDARD_BLKSIZE / sb->s_blocksize;
cf3d0b81
ES
2670
2671 if (journal->j_trans_max > JOURNAL_TRANS_MAX_DEFAULT / ratio ||
2672 journal->j_trans_max < JOURNAL_TRANS_MIN_DEFAULT / ratio ||
a9dd3643 2673 SB_ONDISK_JOURNAL_SIZE(sb) / journal->j_trans_max <
cf3d0b81 2674 JOURNAL_MIN_RATIO) {
a9dd3643 2675 reiserfs_warning(sb, "sh-462",
45b03d5e
JM
2676 "bad transaction max size (%u). "
2677 "FSCK?", journal->j_trans_max);
cf3d0b81
ES
2678 return 1;
2679 }
2680 if (journal->j_max_batch != (journal->j_trans_max) *
2681 JOURNAL_MAX_BATCH_DEFAULT/JOURNAL_TRANS_MAX_DEFAULT) {
a9dd3643 2682 reiserfs_warning(sb, "sh-463",
45b03d5e
JM
2683 "bad transaction max batch (%u). "
2684 "FSCK?", journal->j_max_batch);
cf3d0b81
ES
2685 return 1;
2686 }
2687 } else {
098297b2
JM
2688 /*
2689 * Default journal params.
2690 * The file system was created by old version
2691 * of mkreiserfs, so some fields contain zeros,
2692 * and we need to advise proper values for them
2693 */
a9dd3643
JM
2694 if (sb->s_blocksize != REISERFS_STANDARD_BLKSIZE) {
2695 reiserfs_warning(sb, "sh-464", "bad blocksize (%u)",
2696 sb->s_blocksize);
45b03d5e
JM
2697 return 1;
2698 }
cf3d0b81
ES
2699 journal->j_trans_max = JOURNAL_TRANS_MAX_DEFAULT;
2700 journal->j_max_batch = JOURNAL_MAX_BATCH_DEFAULT;
2701 journal->j_max_commit_age = JOURNAL_MAX_COMMIT_AGE;
2702 }
2703 return 0;
2704}
2705
098297b2 2706/* must be called once on fs mount. calls journal_read for you */
a9dd3643 2707int journal_init(struct super_block *sb, const char *j_dev_name,
bd4c625c
LT
2708 int old_format, unsigned int commit_max_age)
2709{
a9dd3643 2710 int num_cnodes = SB_ONDISK_JOURNAL_SIZE(sb) * 2;
bd4c625c
LT
2711 struct buffer_head *bhjh;
2712 struct reiserfs_super_block *rs;
2713 struct reiserfs_journal_header *jh;
2714 struct reiserfs_journal *journal;
2715 struct reiserfs_journal_list *jl;
98ea3f50 2716 int ret;
bd4c625c 2717
558feb08 2718 journal = SB_JOURNAL(sb) = vzalloc(sizeof(struct reiserfs_journal));
bd4c625c 2719 if (!journal) {
a9dd3643 2720 reiserfs_warning(sb, "journal-1256",
45b03d5e 2721 "unable to get memory for journal structure");
bd4c625c
LT
2722 return 1;
2723 }
bd4c625c
LT
2724 INIT_LIST_HEAD(&journal->j_bitmap_nodes);
2725 INIT_LIST_HEAD(&journal->j_prealloc_list);
2726 INIT_LIST_HEAD(&journal->j_working_list);
2727 INIT_LIST_HEAD(&journal->j_journal_list);
2728 journal->j_persistent_trans = 0;
37c69b98
FW
2729 if (reiserfs_allocate_list_bitmaps(sb, journal->j_list_bitmap,
2730 reiserfs_bmap_count(sb)))
bd4c625c 2731 goto free_and_return;
98ea3f50 2732
a9dd3643 2733 allocate_bitmap_nodes(sb);
bd4c625c
LT
2734
2735 /* reserved for journal area support */
a9dd3643 2736 SB_JOURNAL_1st_RESERVED_BLOCK(sb) = (old_format ?
bd4c625c 2737 REISERFS_OLD_DISK_OFFSET_IN_BYTES
a9dd3643
JM
2738 / sb->s_blocksize +
2739 reiserfs_bmap_count(sb) +
bd4c625c
LT
2740 1 :
2741 REISERFS_DISK_OFFSET_IN_BYTES /
a9dd3643 2742 sb->s_blocksize + 2);
bd4c625c 2743
098297b2
JM
2744 /*
2745 * Sanity check to see is the standard journal fitting
2746 * within first bitmap (actual for small blocksizes)
2747 */
a9dd3643
JM
2748 if (!SB_ONDISK_JOURNAL_DEVICE(sb) &&
2749 (SB_JOURNAL_1st_RESERVED_BLOCK(sb) +
2750 SB_ONDISK_JOURNAL_SIZE(sb) > sb->s_blocksize * 8)) {
2751 reiserfs_warning(sb, "journal-1393",
45b03d5e
JM
2752 "journal does not fit for area addressed "
2753 "by first of bitmap blocks. It starts at "
bd4c625c 2754 "%u and its size is %u. Block size %ld",
a9dd3643
JM
2755 SB_JOURNAL_1st_RESERVED_BLOCK(sb),
2756 SB_ONDISK_JOURNAL_SIZE(sb),
2757 sb->s_blocksize);
bd4c625c
LT
2758 goto free_and_return;
2759 }
2760
a149127b
PS
2761 /*
2762 * Sanity check to see if journal first block is correct.
2763 * If journal first block is invalid it can cause
2764 * zeroing important superblock members.
2765 */
2766 if (!SB_ONDISK_JOURNAL_DEVICE(sb) &&
2767 SB_ONDISK_JOURNAL_1st_BLOCK(sb) < SB_JOURNAL_1st_RESERVED_BLOCK(sb)) {
2768 reiserfs_warning(sb, "journal-1393",
2769 "journal 1st super block is invalid: 1st reserved block %d, but actual 1st block is %d",
2770 SB_JOURNAL_1st_RESERVED_BLOCK(sb),
2771 SB_ONDISK_JOURNAL_1st_BLOCK(sb));
2772 goto free_and_return;
2773 }
2774
a9dd3643
JM
2775 if (journal_init_dev(sb, journal, j_dev_name) != 0) {
2776 reiserfs_warning(sb, "sh-462",
6774def6 2777 "unable to initialize journal device");
bd4c625c
LT
2778 goto free_and_return;
2779 }
2780
a9dd3643 2781 rs = SB_DISK_SUPER_BLOCK(sb);
bd4c625c
LT
2782
2783 /* read journal header */
a9dd3643
JM
2784 bhjh = journal_bread(sb,
2785 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
2786 SB_ONDISK_JOURNAL_SIZE(sb));
bd4c625c 2787 if (!bhjh) {
a9dd3643 2788 reiserfs_warning(sb, "sh-459",
45b03d5e 2789 "unable to read journal header");
bd4c625c
LT
2790 goto free_and_return;
2791 }
2792 jh = (struct reiserfs_journal_header *)(bhjh->b_data);
2793
2794 /* make sure that journal matches to the super block */
2795 if (is_reiserfs_jr(rs)
2796 && (le32_to_cpu(jh->jh_journal.jp_journal_magic) !=
2797 sb_jp_journal_magic(rs))) {
a9dd3643 2798 reiserfs_warning(sb, "sh-460",
a1c6f057 2799 "journal header magic %x (device %pg) does "
45b03d5e
JM
2800 "not match to magic found in super block %x",
2801 jh->jh_journal.jp_journal_magic,
a1c6f057 2802 journal->j_dev_bd,
bd4c625c
LT
2803 sb_jp_journal_magic(rs));
2804 brelse(bhjh);
2805 goto free_and_return;
2806 }
2807
2808 journal->j_trans_max = le32_to_cpu(jh->jh_journal.jp_journal_trans_max);
2809 journal->j_max_batch = le32_to_cpu(jh->jh_journal.jp_journal_max_batch);
2810 journal->j_max_commit_age =
2811 le32_to_cpu(jh->jh_journal.jp_journal_max_commit_age);
2812 journal->j_max_trans_age = JOURNAL_MAX_TRANS_AGE;
2813
a9dd3643 2814 if (check_advise_trans_params(sb, journal) != 0)
cf3d0b81 2815 goto free_and_return;
bd4c625c
LT
2816 journal->j_default_max_commit_age = journal->j_max_commit_age;
2817
2818 if (commit_max_age != 0) {
2819 journal->j_max_commit_age = commit_max_age;
2820 journal->j_max_trans_age = commit_max_age;
2821 }
2822
a1c6f057 2823 reiserfs_info(sb, "journal params: device %pg, size %u, "
bd4c625c
LT
2824 "journal first block %u, max trans len %u, max batch %u, "
2825 "max commit age %u, max trans age %u\n",
a1c6f057 2826 journal->j_dev_bd,
a9dd3643
JM
2827 SB_ONDISK_JOURNAL_SIZE(sb),
2828 SB_ONDISK_JOURNAL_1st_BLOCK(sb),
bd4c625c
LT
2829 journal->j_trans_max,
2830 journal->j_max_batch,
2831 journal->j_max_commit_age, journal->j_max_trans_age);
2832
2833 brelse(bhjh);
2834
2835 journal->j_list_bitmap_index = 0;
a9dd3643 2836 journal_list_init(sb);
bd4c625c
LT
2837
2838 memset(journal->j_list_hash_table, 0,
2839 JOURNAL_HASH_SIZE * sizeof(struct reiserfs_journal_cnode *));
2840
2841 INIT_LIST_HEAD(&journal->j_dirty_buffers);
2842 spin_lock_init(&journal->j_dirty_buffers_lock);
2843
2844 journal->j_start = 0;
2845 journal->j_len = 0;
2846 journal->j_len_alloc = 0;
a228bf8f
JM
2847 atomic_set(&journal->j_wcount, 0);
2848 atomic_set(&journal->j_async_throttle, 0);
bd4c625c
LT
2849 journal->j_bcount = 0;
2850 journal->j_trans_start_time = 0;
2851 journal->j_last = NULL;
2852 journal->j_first = NULL;
a228bf8f 2853 init_waitqueue_head(&journal->j_join_wait);
f68215c4 2854 mutex_init(&journal->j_mutex);
afe70259 2855 mutex_init(&journal->j_flush_mutex);
bd4c625c
LT
2856
2857 journal->j_trans_id = 10;
2858 journal->j_mount_id = 10;
2859 journal->j_state = 0;
a228bf8f 2860 atomic_set(&journal->j_jlock, 0);
bd4c625c
LT
2861 journal->j_cnode_free_list = allocate_cnodes(num_cnodes);
2862 journal->j_cnode_free_orig = journal->j_cnode_free_list;
2863 journal->j_cnode_free = journal->j_cnode_free_list ? num_cnodes : 0;
2864 journal->j_cnode_used = 0;
2865 journal->j_must_wait = 0;
2866
576f6d79 2867 if (journal->j_cnode_free == 0) {
a9dd3643 2868 reiserfs_warning(sb, "journal-2004", "Journal cnode memory "
576f6d79
JM
2869 "allocation failed (%ld bytes). Journal is "
2870 "too large for available memory. Usually "
2871 "this is due to a journal that is too large.",
2872 sizeof (struct reiserfs_journal_cnode) * num_cnodes);
2873 goto free_and_return;
2874 }
2875
a9dd3643 2876 init_journal_hash(sb);
bd4c625c 2877 jl = journal->j_current_jl;
37c69b98
FW
2878
2879 /*
2880 * get_list_bitmap() may call flush_commit_list() which
2881 * requires the lock. Calling flush_commit_list() shouldn't happen
2882 * this early but I like to be paranoid.
2883 */
2884 reiserfs_write_lock(sb);
a9dd3643 2885 jl->j_list_bitmap = get_list_bitmap(sb, jl);
37c69b98 2886 reiserfs_write_unlock(sb);
bd4c625c 2887 if (!jl->j_list_bitmap) {
a9dd3643 2888 reiserfs_warning(sb, "journal-2005",
45b03d5e 2889 "get_list_bitmap failed for journal list 0");
bd4c625c
LT
2890 goto free_and_return;
2891 }
37c69b98 2892
37c69b98 2893 ret = journal_read(sb);
37c69b98 2894 if (ret < 0) {
a9dd3643 2895 reiserfs_warning(sb, "reiserfs-2006",
45b03d5e 2896 "Replay Failure, unable to mount");
bd4c625c
LT
2897 goto free_and_return;
2898 }
2899
c4028958 2900 INIT_DELAYED_WORK(&journal->j_work, flush_async_commits);
a9dd3643 2901 journal->j_work_sb = sb;
bd4c625c 2902 return 0;
cf776a7a 2903free_and_return:
a9dd3643 2904 free_journal_ram(sb);
bd4c625c 2905 return 1;
1da177e4
LT
2906}
2907
2908/*
098297b2
JM
2909 * test for a polite end of the current transaction. Used by file_write,
2910 * and should be used by delete to make sure they don't write more than
2911 * can fit inside a single transaction
2912 */
bd4c625c
LT
2913int journal_transaction_should_end(struct reiserfs_transaction_handle *th,
2914 int new_alloc)
2915{
2916 struct reiserfs_journal *journal = SB_JOURNAL(th->t_super);
34d08260 2917 time64_t now = ktime_get_seconds();
bd4c625c
LT
2918 /* cannot restart while nested */
2919 BUG_ON(!th->t_trans_id);
2920 if (th->t_refcount > 1)
2921 return 0;
2922 if (journal->j_must_wait > 0 ||
2923 (journal->j_len_alloc + new_alloc) >= journal->j_max_batch ||
a228bf8f 2924 atomic_read(&journal->j_jlock) ||
bd4c625c
LT
2925 (now - journal->j_trans_start_time) > journal->j_max_trans_age ||
2926 journal->j_cnode_free < (journal->j_trans_max * 3)) {
2927 return 1;
2928 }
b18c1c6e 2929
6ae1ea44
CM
2930 journal->j_len_alloc += new_alloc;
2931 th->t_blocks_allocated += new_alloc ;
bd4c625c 2932 return 0;
1da177e4
LT
2933}
2934
098297b2 2935/* this must be called inside a transaction */
bd4c625c
LT
2936void reiserfs_block_writes(struct reiserfs_transaction_handle *th)
2937{
2938 struct reiserfs_journal *journal = SB_JOURNAL(th->t_super);
2939 BUG_ON(!th->t_trans_id);
2940 journal->j_must_wait = 1;
2941 set_bit(J_WRITERS_BLOCKED, &journal->j_state);
2942 return;
1da177e4
LT
2943}
2944
098297b2 2945/* this must be called without a transaction started */
bd4c625c
LT
2946void reiserfs_allow_writes(struct super_block *s)
2947{
2948 struct reiserfs_journal *journal = SB_JOURNAL(s);
2949 clear_bit(J_WRITERS_BLOCKED, &journal->j_state);
2950 wake_up(&journal->j_join_wait);
1da177e4
LT
2951}
2952
098297b2 2953/* this must be called without a transaction started */
bd4c625c
LT
2954void reiserfs_wait_on_write_block(struct super_block *s)
2955{
2956 struct reiserfs_journal *journal = SB_JOURNAL(s);
2957 wait_event(journal->j_join_wait,
2958 !test_bit(J_WRITERS_BLOCKED, &journal->j_state));
2959}
2960
2961static void queue_log_writer(struct super_block *s)
2962{
ac6424b9 2963 wait_queue_entry_t wait;
bd4c625c
LT
2964 struct reiserfs_journal *journal = SB_JOURNAL(s);
2965 set_bit(J_WRITERS_QUEUED, &journal->j_state);
2966
2967 /*
2968 * we don't want to use wait_event here because
2969 * we only want to wait once.
2970 */
2971 init_waitqueue_entry(&wait, current);
2972 add_wait_queue(&journal->j_join_wait, &wait);
1da177e4 2973 set_current_state(TASK_UNINTERRUPTIBLE);
8ebc4232 2974 if (test_bit(J_WRITERS_QUEUED, &journal->j_state)) {
278f6679 2975 int depth = reiserfs_write_unlock_nested(s);
bd4c625c 2976 schedule();
278f6679 2977 reiserfs_write_lock_nested(s, depth);
8ebc4232 2978 }
5ab2f7e0 2979 __set_current_state(TASK_RUNNING);
bd4c625c
LT
2980 remove_wait_queue(&journal->j_join_wait, &wait);
2981}
2982
2983static void wake_queued_writers(struct super_block *s)
2984{
2985 struct reiserfs_journal *journal = SB_JOURNAL(s);
2986 if (test_and_clear_bit(J_WRITERS_QUEUED, &journal->j_state))
2987 wake_up(&journal->j_join_wait);
2988}
2989
600ed416 2990static void let_transaction_grow(struct super_block *sb, unsigned int trans_id)
bd4c625c
LT
2991{
2992 struct reiserfs_journal *journal = SB_JOURNAL(sb);
2993 unsigned long bcount = journal->j_bcount;
2994 while (1) {
278f6679
JM
2995 int depth;
2996
2997 depth = reiserfs_write_unlock_nested(sb);
041e0e3b 2998 schedule_timeout_uninterruptible(1);
278f6679
JM
2999 reiserfs_write_lock_nested(sb, depth);
3000
bd4c625c
LT
3001 journal->j_current_jl->j_state |= LIST_COMMIT_PENDING;
3002 while ((atomic_read(&journal->j_wcount) > 0 ||
3003 atomic_read(&journal->j_jlock)) &&
3004 journal->j_trans_id == trans_id) {
3005 queue_log_writer(sb);
3006 }
3007 if (journal->j_trans_id != trans_id)
3008 break;
3009 if (bcount == journal->j_bcount)
3010 break;
3011 bcount = journal->j_bcount;
1da177e4 3012 }
1da177e4
LT
3013}
3014
098297b2
JM
3015/*
3016 * join == true if you must join an existing transaction.
3017 * join == false if you can deal with waiting for others to finish
3018 *
3019 * this will block until the transaction is joinable. send the number of
3020 * blocks you expect to use in nblocks.
1da177e4 3021*/
bd4c625c 3022static int do_journal_begin_r(struct reiserfs_transaction_handle *th,
a9dd3643 3023 struct super_block *sb, unsigned long nblocks,
bd4c625c
LT
3024 int join)
3025{
34d08260 3026 time64_t now = ktime_get_seconds();
600ed416 3027 unsigned int old_trans_id;
a9dd3643 3028 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
3029 struct reiserfs_transaction_handle myth;
3030 int sched_count = 0;
3031 int retval;
278f6679 3032 int depth;
bd4c625c 3033
a9dd3643 3034 reiserfs_check_lock_depth(sb, "journal_begin");
14a61442 3035 BUG_ON(nblocks > journal->j_trans_max);
bd4c625c 3036
a9dd3643 3037 PROC_INFO_INC(sb, journal.journal_being);
bd4c625c
LT
3038 /* set here for journal_join */
3039 th->t_refcount = 1;
a9dd3643 3040 th->t_super = sb;
bd4c625c 3041
cf776a7a 3042relock:
a9dd3643 3043 lock_journal(sb);
bd4c625c 3044 if (join != JBEGIN_ABORT && reiserfs_is_journal_aborted(journal)) {
a9dd3643 3045 unlock_journal(sb);
bd4c625c
LT
3046 retval = journal->j_errno;
3047 goto out_fail;
3048 }
3049 journal->j_bcount++;
3050
3051 if (test_bit(J_WRITERS_BLOCKED, &journal->j_state)) {
a9dd3643 3052 unlock_journal(sb);
278f6679 3053 depth = reiserfs_write_unlock_nested(sb);
a9dd3643 3054 reiserfs_wait_on_write_block(sb);
278f6679 3055 reiserfs_write_lock_nested(sb, depth);
a9dd3643 3056 PROC_INFO_INC(sb, journal.journal_relock_writers);
bd4c625c
LT
3057 goto relock;
3058 }
34d08260 3059 now = ktime_get_seconds();
bd4c625c 3060
098297b2
JM
3061 /*
3062 * if there is no room in the journal OR
3063 * if this transaction is too old, and we weren't called joinable,
3064 * wait for it to finish before beginning we don't sleep if there
3065 * aren't other writers
bd4c625c
LT
3066 */
3067
3068 if ((!join && journal->j_must_wait > 0) ||
3069 (!join
3070 && (journal->j_len_alloc + nblocks + 2) >= journal->j_max_batch)
3071 || (!join && atomic_read(&journal->j_wcount) > 0
3072 && journal->j_trans_start_time > 0
3073 && (now - journal->j_trans_start_time) >
3074 journal->j_max_trans_age) || (!join
3075 && atomic_read(&journal->j_jlock))
3076 || (!join && journal->j_cnode_free < (journal->j_trans_max * 3))) {
3077
3078 old_trans_id = journal->j_trans_id;
098297b2
JM
3079 /* allow others to finish this transaction */
3080 unlock_journal(sb);
bd4c625c
LT
3081
3082 if (!join && (journal->j_len_alloc + nblocks + 2) >=
3083 journal->j_max_batch &&
3084 ((journal->j_len + nblocks + 2) * 100) <
3085 (journal->j_len_alloc * 75)) {
3086 if (atomic_read(&journal->j_wcount) > 10) {
3087 sched_count++;
a9dd3643 3088 queue_log_writer(sb);
bd4c625c
LT
3089 goto relock;
3090 }
3091 }
098297b2
JM
3092 /*
3093 * don't mess with joining the transaction if all we
3094 * have to do is wait for someone else to do a commit
bd4c625c
LT
3095 */
3096 if (atomic_read(&journal->j_jlock)) {
3097 while (journal->j_trans_id == old_trans_id &&
3098 atomic_read(&journal->j_jlock)) {
a9dd3643 3099 queue_log_writer(sb);
bd4c625c
LT
3100 }
3101 goto relock;
3102 }
b491dd17 3103 retval = journal_join(&myth, sb);
bd4c625c
LT
3104 if (retval)
3105 goto out_fail;
3106
3107 /* someone might have ended the transaction while we joined */
3108 if (old_trans_id != journal->j_trans_id) {
58d85426 3109 retval = do_journal_end(&myth, 0);
bd4c625c 3110 } else {
58d85426 3111 retval = do_journal_end(&myth, COMMIT_NOW);
bd4c625c
LT
3112 }
3113
3114 if (retval)
3115 goto out_fail;
3116
a9dd3643 3117 PROC_INFO_INC(sb, journal.journal_relock_wcount);
bd4c625c
LT
3118 goto relock;
3119 }
3120 /* we are the first writer, set trans_id */
3121 if (journal->j_trans_start_time == 0) {
34d08260 3122 journal->j_trans_start_time = ktime_get_seconds();
bd4c625c 3123 }
a228bf8f 3124 atomic_inc(&journal->j_wcount);
bd4c625c
LT
3125 journal->j_len_alloc += nblocks;
3126 th->t_blocks_logged = 0;
3127 th->t_blocks_allocated = nblocks;
3128 th->t_trans_id = journal->j_trans_id;
a9dd3643 3129 unlock_journal(sb);
bd4c625c 3130 INIT_LIST_HEAD(&th->t_list);
bd4c625c
LT
3131 return 0;
3132
cf776a7a 3133out_fail:
bd4c625c 3134 memset(th, 0, sizeof(*th));
098297b2
JM
3135 /*
3136 * Re-set th->t_super, so we can properly keep track of how many
bd4c625c 3137 * persistent transactions there are. We need to do this so if this
098297b2
JM
3138 * call is part of a failed restart_transaction, we can free it later
3139 */
a9dd3643 3140 th->t_super = sb;
bd4c625c
LT
3141 return retval;
3142}
3143
3144struct reiserfs_transaction_handle *reiserfs_persistent_transaction(struct
3145 super_block
3146 *s,
3147 int nblocks)
3148{
3149 int ret;
3150 struct reiserfs_transaction_handle *th;
3151
098297b2
JM
3152 /*
3153 * if we're nesting into an existing transaction. It will be
3154 * persistent on its own
bd4c625c
LT
3155 */
3156 if (reiserfs_transaction_running(s)) {
3157 th = current->journal_info;
3158 th->t_refcount++;
14a61442 3159 BUG_ON(th->t_refcount < 2);
098297b2 3160
bd4c625c
LT
3161 return th;
3162 }
d739b42b 3163 th = kmalloc(sizeof(struct reiserfs_transaction_handle), GFP_NOFS);
bd4c625c
LT
3164 if (!th)
3165 return NULL;
3166 ret = journal_begin(th, s, nblocks);
3167 if (ret) {
d739b42b 3168 kfree(th);
bd4c625c
LT
3169 return NULL;
3170 }
3171
3172 SB_JOURNAL(s)->j_persistent_trans++;
3173 return th;
3174}
3175
3176int reiserfs_end_persistent_transaction(struct reiserfs_transaction_handle *th)
3177{
3178 struct super_block *s = th->t_super;
3179 int ret = 0;
3180 if (th->t_trans_id)
58d85426 3181 ret = journal_end(th);
bd4c625c
LT
3182 else
3183 ret = -EIO;
3184 if (th->t_refcount == 0) {
3185 SB_JOURNAL(s)->j_persistent_trans--;
d739b42b 3186 kfree(th);
bd4c625c
LT
3187 }
3188 return ret;
3189}
3190
3191static int journal_join(struct reiserfs_transaction_handle *th,
b491dd17 3192 struct super_block *sb)
bd4c625c
LT
3193{
3194 struct reiserfs_transaction_handle *cur_th = current->journal_info;
3195
098297b2
JM
3196 /*
3197 * this keeps do_journal_end from NULLing out the
3198 * current->journal_info pointer
bd4c625c
LT
3199 */
3200 th->t_handle_save = cur_th;
14a61442 3201 BUG_ON(cur_th && cur_th->t_refcount > 1);
b491dd17 3202 return do_journal_begin_r(th, sb, 1, JBEGIN_JOIN);
bd4c625c
LT
3203}
3204
3205int journal_join_abort(struct reiserfs_transaction_handle *th,
b491dd17 3206 struct super_block *sb)
bd4c625c
LT
3207{
3208 struct reiserfs_transaction_handle *cur_th = current->journal_info;
3209
098297b2
JM
3210 /*
3211 * this keeps do_journal_end from NULLing out the
3212 * current->journal_info pointer
bd4c625c
LT
3213 */
3214 th->t_handle_save = cur_th;
14a61442 3215 BUG_ON(cur_th && cur_th->t_refcount > 1);
b491dd17 3216 return do_journal_begin_r(th, sb, 1, JBEGIN_ABORT);
bd4c625c
LT
3217}
3218
3219int journal_begin(struct reiserfs_transaction_handle *th,
a9dd3643 3220 struct super_block *sb, unsigned long nblocks)
bd4c625c
LT
3221{
3222 struct reiserfs_transaction_handle *cur_th = current->journal_info;
3223 int ret;
3224
3225 th->t_handle_save = NULL;
3226 if (cur_th) {
3227 /* we are nesting into the current transaction */
a9dd3643 3228 if (cur_th->t_super == sb) {
bd4c625c
LT
3229 BUG_ON(!cur_th->t_refcount);
3230 cur_th->t_refcount++;
3231 memcpy(th, cur_th, sizeof(*th));
3232 if (th->t_refcount <= 1)
a9dd3643 3233 reiserfs_warning(sb, "reiserfs-2005",
45b03d5e
JM
3234 "BAD: refcount <= 1, but "
3235 "journal_info != 0");
bd4c625c
LT
3236 return 0;
3237 } else {
098297b2
JM
3238 /*
3239 * we've ended up with a handle from a different
3240 * filesystem. save it and restore on journal_end.
3241 * This should never really happen...
bd4c625c 3242 */
a9dd3643 3243 reiserfs_warning(sb, "clm-2100",
45b03d5e 3244 "nesting info a different FS");
bd4c625c
LT
3245 th->t_handle_save = current->journal_info;
3246 current->journal_info = th;
3247 }
1da177e4 3248 } else {
bd4c625c
LT
3249 current->journal_info = th;
3250 }
a9dd3643 3251 ret = do_journal_begin_r(th, sb, nblocks, JBEGIN_REG);
14a61442 3252 BUG_ON(current->journal_info != th);
1da177e4 3253
098297b2
JM
3254 /*
3255 * I guess this boils down to being the reciprocal of clm-2100 above.
3256 * If do_journal_begin_r fails, we need to put it back, since
3257 * journal_end won't be called to do it. */
bd4c625c
LT
3258 if (ret)
3259 current->journal_info = th->t_handle_save;
3260 else
3261 BUG_ON(!th->t_refcount);
1da177e4 3262
bd4c625c 3263 return ret;
1da177e4
LT
3264}
3265
3266/*
098297b2
JM
3267 * puts bh into the current transaction. If it was already there, reorders
3268 * removes the old pointers from the hash, and puts new ones in (to make
3269 * sure replay happen in the right order).
3270 *
3271 * if it was dirty, cleans and files onto the clean list. I can't let it
3272 * be dirty again until the transaction is committed.
3273 *
3274 * if j_len, is bigger than j_len_alloc, it pushes j_len_alloc to 10 + j_len.
3275 */
bd4c625c 3276int journal_mark_dirty(struct reiserfs_transaction_handle *th,
09f1b80b 3277 struct buffer_head *bh)
bd4c625c 3278{
09f1b80b 3279 struct super_block *sb = th->t_super;
a9dd3643 3280 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
3281 struct reiserfs_journal_cnode *cn = NULL;
3282 int count_already_incd = 0;
3283 int prepared = 0;
3284 BUG_ON(!th->t_trans_id);
3285
a9dd3643 3286 PROC_INFO_INC(sb, journal.mark_dirty);
bd4c625c 3287 if (th->t_trans_id != journal->j_trans_id) {
c3a9c210
JM
3288 reiserfs_panic(th->t_super, "journal-1577",
3289 "handle trans id %ld != current trans id %ld",
bd4c625c
LT
3290 th->t_trans_id, journal->j_trans_id);
3291 }
3292
bd4c625c
LT
3293 prepared = test_clear_buffer_journal_prepared(bh);
3294 clear_buffer_journal_restore_dirty(bh);
3295 /* already in this transaction, we are done */
3296 if (buffer_journaled(bh)) {
a9dd3643 3297 PROC_INFO_INC(sb, journal.mark_dirty_already);
bd4c625c
LT
3298 return 0;
3299 }
3300
098297b2
JM
3301 /*
3302 * this must be turned into a panic instead of a warning. We can't
3303 * allow a dirty or journal_dirty or locked buffer to be logged, as
3304 * some changes could get to disk too early. NOT GOOD.
bd4c625c
LT
3305 */
3306 if (!prepared || buffer_dirty(bh)) {
a9dd3643 3307 reiserfs_warning(sb, "journal-1777",
45b03d5e 3308 "buffer %llu bad state "
bd4c625c
LT
3309 "%cPREPARED %cLOCKED %cDIRTY %cJDIRTY_WAIT",
3310 (unsigned long long)bh->b_blocknr,
3311 prepared ? ' ' : '!',
3312 buffer_locked(bh) ? ' ' : '!',
3313 buffer_dirty(bh) ? ' ' : '!',
3314 buffer_journal_dirty(bh) ? ' ' : '!');
3315 }
3316
a228bf8f 3317 if (atomic_read(&journal->j_wcount) <= 0) {
a9dd3643 3318 reiserfs_warning(sb, "journal-1409",
45b03d5e 3319 "returning because j_wcount was %d",
a228bf8f 3320 atomic_read(&journal->j_wcount));
bd4c625c
LT
3321 return 1;
3322 }
098297b2
JM
3323 /*
3324 * this error means I've screwed up, and we've overflowed
3325 * the transaction. Nothing can be done here, except make the
3326 * FS readonly or panic.
bd4c625c
LT
3327 */
3328 if (journal->j_len >= journal->j_trans_max) {
c3a9c210
JM
3329 reiserfs_panic(th->t_super, "journal-1413",
3330 "j_len (%lu) is too big",
bd4c625c
LT
3331 journal->j_len);
3332 }
3333
3334 if (buffer_journal_dirty(bh)) {
3335 count_already_incd = 1;
a9dd3643 3336 PROC_INFO_INC(sb, journal.mark_dirty_notjournal);
bd4c625c
LT
3337 clear_buffer_journal_dirty(bh);
3338 }
3339
3340 if (journal->j_len > journal->j_len_alloc) {
3341 journal->j_len_alloc = journal->j_len + JOURNAL_PER_BALANCE_CNT;
3342 }
3343
3344 set_buffer_journaled(bh);
3345
3346 /* now put this guy on the end */
3347 if (!cn) {
a9dd3643 3348 cn = get_cnode(sb);
bd4c625c 3349 if (!cn) {
a9dd3643 3350 reiserfs_panic(sb, "journal-4", "get_cnode failed!");
bd4c625c
LT
3351 }
3352
3353 if (th->t_blocks_logged == th->t_blocks_allocated) {
3354 th->t_blocks_allocated += JOURNAL_PER_BALANCE_CNT;
3355 journal->j_len_alloc += JOURNAL_PER_BALANCE_CNT;
3356 }
3357 th->t_blocks_logged++;
3358 journal->j_len++;
3359
3360 cn->bh = bh;
3361 cn->blocknr = bh->b_blocknr;
a9dd3643 3362 cn->sb = sb;
bd4c625c
LT
3363 cn->jlist = NULL;
3364 insert_journal_hash(journal->j_hash_table, cn);
3365 if (!count_already_incd) {
3366 get_bh(bh);
3367 }
3368 }
3369 cn->next = NULL;
3370 cn->prev = journal->j_last;
3371 cn->bh = bh;
3372 if (journal->j_last) {
3373 journal->j_last->next = cn;
3374 journal->j_last = cn;
3375 } else {
3376 journal->j_first = cn;
3377 journal->j_last = cn;
3378 }
033369d1 3379 reiserfs_schedule_old_flush(sb);
bd4c625c
LT
3380 return 0;
3381}
3382
58d85426 3383int journal_end(struct reiserfs_transaction_handle *th)
bd4c625c 3384{
58d85426 3385 struct super_block *sb = th->t_super;
bd4c625c 3386 if (!current->journal_info && th->t_refcount > 1)
a9dd3643 3387 reiserfs_warning(sb, "REISER-NESTING",
45b03d5e 3388 "th NULL, refcount %d", th->t_refcount);
bd4c625c
LT
3389
3390 if (!th->t_trans_id) {
3391 WARN_ON(1);
3392 return -EIO;
3393 }
3394
3395 th->t_refcount--;
3396 if (th->t_refcount > 0) {
3397 struct reiserfs_transaction_handle *cur_th =
3398 current->journal_info;
3399
098297b2
JM
3400 /*
3401 * we aren't allowed to close a nested transaction on a
3402 * different filesystem from the one in the task struct
bd4c625c 3403 */
14a61442 3404 BUG_ON(cur_th->t_super != th->t_super);
bd4c625c
LT
3405
3406 if (th != cur_th) {
3407 memcpy(current->journal_info, th, sizeof(*th));
3408 th->t_trans_id = 0;
3409 }
3410 return 0;
3411 } else {
58d85426 3412 return do_journal_end(th, 0);
bd4c625c 3413 }
1da177e4
LT
3414}
3415
098297b2
JM
3416/*
3417 * removes from the current transaction, relsing and descrementing any counters.
3418 * also files the removed buffer directly onto the clean list
3419 *
3420 * called by journal_mark_freed when a block has been deleted
3421 *
3422 * returns 1 if it cleaned and relsed the buffer. 0 otherwise
3423 */
a9dd3643 3424static int remove_from_transaction(struct super_block *sb,
bd4c625c
LT
3425 b_blocknr_t blocknr, int already_cleaned)
3426{
3427 struct buffer_head *bh;
3428 struct reiserfs_journal_cnode *cn;
a9dd3643 3429 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
3430 int ret = 0;
3431
a9dd3643 3432 cn = get_journal_hash_dev(sb, journal->j_hash_table, blocknr);
bd4c625c
LT
3433 if (!cn || !cn->bh) {
3434 return ret;
3435 }
3436 bh = cn->bh;
3437 if (cn->prev) {
3438 cn->prev->next = cn->next;
3439 }
3440 if (cn->next) {
3441 cn->next->prev = cn->prev;
3442 }
3443 if (cn == journal->j_first) {
3444 journal->j_first = cn->next;
3445 }
3446 if (cn == journal->j_last) {
3447 journal->j_last = cn->prev;
3448 }
d256085b
JJB
3449 remove_journal_hash(sb, journal->j_hash_table, NULL,
3450 bh->b_blocknr, 0);
bd4c625c
LT
3451 clear_buffer_journaled(bh); /* don't log this one */
3452
3453 if (!already_cleaned) {
3454 clear_buffer_journal_dirty(bh);
3455 clear_buffer_dirty(bh);
3456 clear_buffer_journal_test(bh);
3457 put_bh(bh);
a228bf8f 3458 if (atomic_read(&bh->b_count) < 0) {
a9dd3643 3459 reiserfs_warning(sb, "journal-1752",
45b03d5e 3460 "b_count < 0");
bd4c625c
LT
3461 }
3462 ret = 1;
3463 }
3464 journal->j_len--;
3465 journal->j_len_alloc--;
a9dd3643 3466 free_cnode(sb, cn);
bd4c625c 3467 return ret;
1da177e4
LT
3468}
3469
3470/*
098297b2
JM
3471 * for any cnode in a journal list, it can only be dirtied of all the
3472 * transactions that include it are committed to disk.
3473 * this checks through each transaction, and returns 1 if you are allowed
3474 * to dirty, and 0 if you aren't
3475 *
3476 * it is called by dirty_journal_list, which is called after
3477 * flush_commit_list has gotten all the log blocks for a given
3478 * transaction on disk
3479 *
3480 */
bd4c625c
LT
3481static int can_dirty(struct reiserfs_journal_cnode *cn)
3482{
3483 struct super_block *sb = cn->sb;
3484 b_blocknr_t blocknr = cn->blocknr;
3485 struct reiserfs_journal_cnode *cur = cn->hprev;
3486 int can_dirty = 1;
3487
098297b2
JM
3488 /*
3489 * first test hprev. These are all newer than cn, so any node here
3490 * with the same block number and dev means this node can't be sent
3491 * to disk right now.
bd4c625c
LT
3492 */
3493 while (cur && can_dirty) {
3494 if (cur->jlist && cur->bh && cur->blocknr && cur->sb == sb &&
3495 cur->blocknr == blocknr) {
3496 can_dirty = 0;
3497 }
3498 cur = cur->hprev;
3499 }
098297b2
JM
3500 /*
3501 * then test hnext. These are all older than cn. As long as they
3502 * are committed to the log, it is safe to write cn to disk
bd4c625c
LT
3503 */
3504 cur = cn->hnext;
3505 while (cur && can_dirty) {
3506 if (cur->jlist && cur->jlist->j_len > 0 &&
a228bf8f 3507 atomic_read(&cur->jlist->j_commit_left) > 0 && cur->bh &&
bd4c625c
LT
3508 cur->blocknr && cur->sb == sb && cur->blocknr == blocknr) {
3509 can_dirty = 0;
3510 }
3511 cur = cur->hnext;
3512 }
3513 return can_dirty;
1da177e4
LT
3514}
3515
098297b2
JM
3516/*
3517 * syncs the commit blocks, but does not force the real buffers to disk
3518 * will wait until the current transaction is done/committed before returning
3519 */
58d85426 3520int journal_end_sync(struct reiserfs_transaction_handle *th)
bd4c625c 3521{
58d85426 3522 struct super_block *sb = th->t_super;
a9dd3643 3523 struct reiserfs_journal *journal = SB_JOURNAL(sb);
1da177e4 3524
bd4c625c
LT
3525 BUG_ON(!th->t_trans_id);
3526 /* you can sync while nested, very, very bad */
14a61442 3527 BUG_ON(th->t_refcount > 1);
bd4c625c 3528 if (journal->j_len == 0) {
a9dd3643 3529 reiserfs_prepare_for_journal(sb, SB_BUFFER_WITH_SB(sb),
bd4c625c 3530 1);
09f1b80b 3531 journal_mark_dirty(th, SB_BUFFER_WITH_SB(sb));
bd4c625c 3532 }
58d85426 3533 return do_journal_end(th, COMMIT_NOW | WAIT);
1da177e4
LT
3534}
3535
098297b2 3536/* writeback the pending async commits to disk */
c4028958 3537static void flush_async_commits(struct work_struct *work)
bd4c625c 3538{
c4028958
DH
3539 struct reiserfs_journal *journal =
3540 container_of(work, struct reiserfs_journal, j_work.work);
a9dd3643 3541 struct super_block *sb = journal->j_work_sb;
bd4c625c
LT
3542 struct reiserfs_journal_list *jl;
3543 struct list_head *entry;
3544
8ebc4232 3545 reiserfs_write_lock(sb);
bd4c625c
LT
3546 if (!list_empty(&journal->j_journal_list)) {
3547 /* last entry is the youngest, commit it and you get everything */
3548 entry = journal->j_journal_list.prev;
3549 jl = JOURNAL_LIST_ENTRY(entry);
a9dd3643 3550 flush_commit_list(sb, jl, 1);
bd4c625c 3551 }
8ebc4232 3552 reiserfs_write_unlock(sb);
1da177e4
LT
3553}
3554
3555/*
098297b2
JM
3556 * flushes any old transactions to disk
3557 * ends the current transaction if it is too old
3558 */
25729b0e 3559void reiserfs_flush_old_commits(struct super_block *sb)
bd4c625c 3560{
34d08260 3561 time64_t now;
bd4c625c 3562 struct reiserfs_transaction_handle th;
a9dd3643 3563 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c 3564
34d08260 3565 now = ktime_get_seconds();
098297b2
JM
3566 /*
3567 * safety check so we don't flush while we are replaying the log during
bd4c625c
LT
3568 * mount
3569 */
25729b0e
AB
3570 if (list_empty(&journal->j_journal_list))
3571 return;
bd4c625c 3572
098297b2
JM
3573 /*
3574 * check the current transaction. If there are no writers, and it is
bd4c625c
LT
3575 * too old, finish it, and force the commit blocks to disk
3576 */
3577 if (atomic_read(&journal->j_wcount) <= 0 &&
3578 journal->j_trans_start_time > 0 &&
3579 journal->j_len > 0 &&
3580 (now - journal->j_trans_start_time) > journal->j_max_trans_age) {
b491dd17 3581 if (!journal_join(&th, sb)) {
a9dd3643
JM
3582 reiserfs_prepare_for_journal(sb,
3583 SB_BUFFER_WITH_SB(sb),
bd4c625c 3584 1);
09f1b80b 3585 journal_mark_dirty(&th, SB_BUFFER_WITH_SB(sb));
bd4c625c 3586
098297b2
JM
3587 /*
3588 * we're only being called from kreiserfsd, it makes
3589 * no sense to do an async commit so that kreiserfsd
3590 * can do it later
bd4c625c 3591 */
58d85426 3592 do_journal_end(&th, COMMIT_NOW | WAIT);
bd4c625c
LT
3593 }
3594 }
1da177e4
LT
3595}
3596
3597/*
098297b2
JM
3598 * returns 0 if do_journal_end should return right away, returns 1 if
3599 * do_journal_end should finish the commit
3600 *
3601 * if the current transaction is too old, but still has writers, this will
3602 * wait on j_join_wait until all the writers are done. By the time it
3603 * wakes up, the transaction it was called has already ended, so it just
3604 * flushes the commit list and returns 0.
3605 *
3606 * Won't batch when flush or commit_now is set. Also won't batch when
3607 * others are waiting on j_join_wait.
3608 *
3609 * Note, we can't allow the journal_end to proceed while there are still
3610 * writers in the log.
3611 */
58d85426 3612static int check_journal_end(struct reiserfs_transaction_handle *th, int flags)
bd4c625c
LT
3613{
3614
34d08260 3615 time64_t now;
bd4c625c
LT
3616 int flush = flags & FLUSH_ALL;
3617 int commit_now = flags & COMMIT_NOW;
3618 int wait_on_commit = flags & WAIT;
3619 struct reiserfs_journal_list *jl;
58d85426 3620 struct super_block *sb = th->t_super;
a9dd3643 3621 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
3622
3623 BUG_ON(!th->t_trans_id);
3624
3625 if (th->t_trans_id != journal->j_trans_id) {
c3a9c210
JM
3626 reiserfs_panic(th->t_super, "journal-1577",
3627 "handle trans id %ld != current trans id %ld",
bd4c625c
LT
3628 th->t_trans_id, journal->j_trans_id);
3629 }
3630
3631 journal->j_len_alloc -= (th->t_blocks_allocated - th->t_blocks_logged);
098297b2 3632 /* <= 0 is allowed. unmounting might not call begin */
a228bf8f
JM
3633 if (atomic_read(&journal->j_wcount) > 0)
3634 atomic_dec(&journal->j_wcount);
bd4c625c 3635
098297b2
JM
3636 /*
3637 * BUG, deal with case where j_len is 0, but people previously
3638 * freed blocks need to be released will be dealt with by next
3639 * transaction that actually writes something, but should be taken
3640 * care of in this trans
bd4c625c 3641 */
14a61442
ES
3642 BUG_ON(journal->j_len == 0);
3643
098297b2
JM
3644 /*
3645 * if wcount > 0, and we are called to with flush or commit_now,
3646 * we wait on j_join_wait. We will wake up when the last writer has
3647 * finished the transaction, and started it on its way to the disk.
3648 * Then, we flush the commit or journal list, and just return 0
3649 * because the rest of journal end was already done for this
3650 * transaction.
bd4c625c 3651 */
a228bf8f 3652 if (atomic_read(&journal->j_wcount) > 0) {
bd4c625c
LT
3653 if (flush || commit_now) {
3654 unsigned trans_id;
3655
3656 jl = journal->j_current_jl;
3657 trans_id = jl->j_trans_id;
3658 if (wait_on_commit)
3659 jl->j_state |= LIST_COMMIT_PENDING;
a228bf8f 3660 atomic_set(&journal->j_jlock, 1);
bd4c625c
LT
3661 if (flush) {
3662 journal->j_next_full_flush = 1;
3663 }
a9dd3643 3664 unlock_journal(sb);
bd4c625c 3665
098297b2
JM
3666 /*
3667 * sleep while the current transaction is
3668 * still j_jlocked
3669 */
bd4c625c
LT
3670 while (journal->j_trans_id == trans_id) {
3671 if (atomic_read(&journal->j_jlock)) {
a9dd3643 3672 queue_log_writer(sb);
bd4c625c 3673 } else {
a9dd3643 3674 lock_journal(sb);
bd4c625c 3675 if (journal->j_trans_id == trans_id) {
a228bf8f 3676 atomic_set(&journal->j_jlock,
bd4c625c
LT
3677 1);
3678 }
a9dd3643 3679 unlock_journal(sb);
bd4c625c
LT
3680 }
3681 }
14a61442 3682 BUG_ON(journal->j_trans_id == trans_id);
098297b2 3683
bd4c625c 3684 if (commit_now
a9dd3643 3685 && journal_list_still_alive(sb, trans_id)
bd4c625c 3686 && wait_on_commit) {
a9dd3643 3687 flush_commit_list(sb, jl, 1);
bd4c625c
LT
3688 }
3689 return 0;
3690 }
a9dd3643 3691 unlock_journal(sb);
bd4c625c
LT
3692 return 0;
3693 }
3694
3695 /* deal with old transactions where we are the last writers */
34d08260 3696 now = ktime_get_seconds();
bd4c625c
LT
3697 if ((now - journal->j_trans_start_time) > journal->j_max_trans_age) {
3698 commit_now = 1;
3699 journal->j_next_async_flush = 1;
3700 }
3701 /* don't batch when someone is waiting on j_join_wait */
3702 /* don't batch when syncing the commit or flushing the whole trans */
a228bf8f 3703 if (!(journal->j_must_wait > 0) && !(atomic_read(&journal->j_jlock))
bd4c625c
LT
3704 && !flush && !commit_now && (journal->j_len < journal->j_max_batch)
3705 && journal->j_len_alloc < journal->j_max_batch
3706 && journal->j_cnode_free > (journal->j_trans_max * 3)) {
3707 journal->j_bcount++;
a9dd3643 3708 unlock_journal(sb);
bd4c625c
LT
3709 return 0;
3710 }
3711
a9dd3643
JM
3712 if (journal->j_start > SB_ONDISK_JOURNAL_SIZE(sb)) {
3713 reiserfs_panic(sb, "journal-003",
c3a9c210 3714 "j_start (%ld) is too high",
bd4c625c
LT
3715 journal->j_start);
3716 }
3717 return 1;
1da177e4
LT
3718}
3719
3720/*
098297b2
JM
3721 * Does all the work that makes deleting blocks safe.
3722 * when deleting a block mark BH_JNew, just remove it from the current
3723 * transaction, clean it's buffer_head and move on.
3724 *
3725 * otherwise:
3726 * set a bit for the block in the journal bitmap. That will prevent it from
3727 * being allocated for unformatted nodes before this transaction has finished.
3728 *
3729 * mark any cnodes for this block as BLOCK_FREED, and clear their bh pointers.
3730 * That will prevent any old transactions with this block from trying to flush
3731 * to the real location. Since we aren't removing the cnode from the
3732 * journal_list_hash, *the block can't be reallocated yet.
3733 *
3734 * Then remove it from the current transaction, decrementing any counters and
3735 * filing it on the clean list.
3736 */
bd4c625c 3737int journal_mark_freed(struct reiserfs_transaction_handle *th,
a9dd3643 3738 struct super_block *sb, b_blocknr_t blocknr)
bd4c625c 3739{
a9dd3643 3740 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
3741 struct reiserfs_journal_cnode *cn = NULL;
3742 struct buffer_head *bh = NULL;
3743 struct reiserfs_list_bitmap *jb = NULL;
3744 int cleaned = 0;
3745 BUG_ON(!th->t_trans_id);
3746
a9dd3643 3747 cn = get_journal_hash_dev(sb, journal->j_hash_table, blocknr);
bd4c625c
LT
3748 if (cn && cn->bh) {
3749 bh = cn->bh;
3750 get_bh(bh);
3751 }
3752 /* if it is journal new, we just remove it from this transaction */
3753 if (bh && buffer_journal_new(bh)) {
3754 clear_buffer_journal_new(bh);
3755 clear_prepared_bits(bh);
3756 reiserfs_clean_and_file_buffer(bh);
a9dd3643 3757 cleaned = remove_from_transaction(sb, blocknr, cleaned);
bd4c625c 3758 } else {
098297b2
JM
3759 /*
3760 * set the bit for this block in the journal bitmap
3761 * for this transaction
3762 */
bd4c625c
LT
3763 jb = journal->j_current_jl->j_list_bitmap;
3764 if (!jb) {
a9dd3643 3765 reiserfs_panic(sb, "journal-1702",
c3a9c210 3766 "journal_list_bitmap is NULL");
bd4c625c 3767 }
a9dd3643 3768 set_bit_in_list_bitmap(sb, blocknr, jb);
bd4c625c
LT
3769
3770 /* Note, the entire while loop is not allowed to schedule. */
3771
3772 if (bh) {
3773 clear_prepared_bits(bh);
3774 reiserfs_clean_and_file_buffer(bh);
3775 }
a9dd3643 3776 cleaned = remove_from_transaction(sb, blocknr, cleaned);
bd4c625c 3777
098297b2
JM
3778 /*
3779 * find all older transactions with this block,
3780 * make sure they don't try to write it out
3781 */
a9dd3643 3782 cn = get_journal_hash_dev(sb, journal->j_list_hash_table,
bd4c625c
LT
3783 blocknr);
3784 while (cn) {
a9dd3643 3785 if (sb == cn->sb && blocknr == cn->blocknr) {
bd4c625c
LT
3786 set_bit(BLOCK_FREED, &cn->state);
3787 if (cn->bh) {
098297b2
JM
3788 /*
3789 * remove_from_transaction will brelse
3790 * the buffer if it was in the current
3791 * trans
3792 */
bd4c625c 3793 if (!cleaned) {
bd4c625c
LT
3794 clear_buffer_journal_dirty(cn->
3795 bh);
3796 clear_buffer_dirty(cn->bh);
3797 clear_buffer_journal_test(cn->
3798 bh);
3799 cleaned = 1;
3800 put_bh(cn->bh);
3801 if (atomic_read
a228bf8f 3802 (&cn->bh->b_count) < 0) {
a9dd3643 3803 reiserfs_warning(sb,
45b03d5e
JM
3804 "journal-2138",
3805 "cn->bh->b_count < 0");
bd4c625c
LT
3806 }
3807 }
098297b2
JM
3808 /*
3809 * since we are clearing the bh,
3810 * we MUST dec nonzerolen
3811 */
3812 if (cn->jlist) {
a228bf8f
JM
3813 atomic_dec(&cn->jlist->
3814 j_nonzerolen);
bd4c625c
LT
3815 }
3816 cn->bh = NULL;
3817 }
3818 }
3819 cn = cn->hnext;
3820 }
3821 }
3822
398c95bd
CM
3823 if (bh)
3824 release_buffer_page(bh); /* get_hash grabs the buffer */
bd4c625c
LT
3825 return 0;
3826}
3827
3828void reiserfs_update_inode_transaction(struct inode *inode)
3829{
3830 struct reiserfs_journal *journal = SB_JOURNAL(inode->i_sb);
3831 REISERFS_I(inode)->i_jl = journal->j_current_jl;
3832 REISERFS_I(inode)->i_trans_id = journal->j_trans_id;
1da177e4
LT
3833}
3834
3835/*
3836 * returns -1 on error, 0 if no commits/barriers were done and 1
3837 * if a transaction was actually committed and the barrier was done
3838 */
3839static int __commit_trans_jl(struct inode *inode, unsigned long id,
bd4c625c 3840 struct reiserfs_journal_list *jl)
1da177e4 3841{
bd4c625c
LT
3842 struct reiserfs_transaction_handle th;
3843 struct super_block *sb = inode->i_sb;
3844 struct reiserfs_journal *journal = SB_JOURNAL(sb);
3845 int ret = 0;
3846
098297b2
JM
3847 /*
3848 * is it from the current transaction,
3849 * or from an unknown transaction?
3850 */
bd4c625c
LT
3851 if (id == journal->j_trans_id) {
3852 jl = journal->j_current_jl;
098297b2
JM
3853 /*
3854 * try to let other writers come in and
3855 * grow this transaction
3856 */
bd4c625c
LT
3857 let_transaction_grow(sb, id);
3858 if (journal->j_trans_id != id) {
3859 goto flush_commit_only;
3860 }
1da177e4 3861
bd4c625c
LT
3862 ret = journal_begin(&th, sb, 1);
3863 if (ret)
3864 return ret;
3865
3866 /* someone might have ended this transaction while we joined */
3867 if (journal->j_trans_id != id) {
3868 reiserfs_prepare_for_journal(sb, SB_BUFFER_WITH_SB(sb),
3869 1);
09f1b80b 3870 journal_mark_dirty(&th, SB_BUFFER_WITH_SB(sb));
58d85426 3871 ret = journal_end(&th);
bd4c625c
LT
3872 goto flush_commit_only;
3873 }
1da177e4 3874
58d85426 3875 ret = journal_end_sync(&th);
bd4c625c
LT
3876 if (!ret)
3877 ret = 1;
1da177e4 3878
bd4c625c 3879 } else {
098297b2
JM
3880 /*
3881 * this gets tricky, we have to make sure the journal list in
bd4c625c
LT
3882 * the inode still exists. We know the list is still around
3883 * if we've got a larger transaction id than the oldest list
3884 */
cf776a7a 3885flush_commit_only:
bd4c625c
LT
3886 if (journal_list_still_alive(inode->i_sb, id)) {
3887 /*
3888 * we only set ret to 1 when we know for sure
3889 * the barrier hasn't been started yet on the commit
3890 * block.
3891 */
3892 if (atomic_read(&jl->j_commit_left) > 1)
3893 ret = 1;
3894 flush_commit_list(sb, jl, 1);
3895 if (journal->j_errno)
3896 ret = journal->j_errno;
3897 }
1da177e4 3898 }
bd4c625c
LT
3899 /* otherwise the list is gone, and long since committed */
3900 return ret;
3901}
1da177e4 3902
bd4c625c
LT
3903int reiserfs_commit_for_inode(struct inode *inode)
3904{
600ed416 3905 unsigned int id = REISERFS_I(inode)->i_trans_id;
bd4c625c 3906 struct reiserfs_journal_list *jl = REISERFS_I(inode)->i_jl;
1da177e4 3907
098297b2
JM
3908 /*
3909 * for the whole inode, assume unset id means it was
bd4c625c 3910 * changed in the current transaction. More conservative
1da177e4 3911 */
bd4c625c
LT
3912 if (!id || !jl) {
3913 reiserfs_update_inode_transaction(inode);
3914 id = REISERFS_I(inode)->i_trans_id;
3915 /* jl will be updated in __commit_trans_jl */
3916 }
3917
3918 return __commit_trans_jl(inode, id, jl);
3919}
3920
a9dd3643 3921void reiserfs_restore_prepared_buffer(struct super_block *sb,
bd4c625c
LT
3922 struct buffer_head *bh)
3923{
a9dd3643
JM
3924 struct reiserfs_journal *journal = SB_JOURNAL(sb);
3925 PROC_INFO_INC(sb, journal.restore_prepared);
bd4c625c
LT
3926 if (!bh) {
3927 return;
3928 }
3929 if (test_clear_buffer_journal_restore_dirty(bh) &&
3930 buffer_journal_dirty(bh)) {
3931 struct reiserfs_journal_cnode *cn;
278f6679 3932 reiserfs_write_lock(sb);
a9dd3643 3933 cn = get_journal_hash_dev(sb,
bd4c625c
LT
3934 journal->j_list_hash_table,
3935 bh->b_blocknr);
3936 if (cn && can_dirty(cn)) {
3937 set_buffer_journal_test(bh);
3938 mark_buffer_dirty(bh);
3939 }
278f6679 3940 reiserfs_write_unlock(sb);
bd4c625c
LT
3941 }
3942 clear_buffer_journal_prepared(bh);
3943}
3944
3945extern struct tree_balance *cur_tb;
1da177e4 3946/*
098297b2
JM
3947 * before we can change a metadata block, we have to make sure it won't
3948 * be written to disk while we are altering it. So, we must:
3949 * clean it
3950 * wait on it.
3951 */
a9dd3643 3952int reiserfs_prepare_for_journal(struct super_block *sb,
bd4c625c
LT
3953 struct buffer_head *bh, int wait)
3954{
a9dd3643 3955 PROC_INFO_INC(sb, journal.prepare);
bd4c625c 3956
ca5de404 3957 if (!trylock_buffer(bh)) {
bd4c625c
LT
3958 if (!wait)
3959 return 0;
3960 lock_buffer(bh);
3961 }
3962 set_buffer_journal_prepared(bh);
3963 if (test_clear_buffer_dirty(bh) && buffer_journal_dirty(bh)) {
3964 clear_buffer_journal_test(bh);
3965 set_buffer_journal_restore_dirty(bh);
3966 }
3967 unlock_buffer(bh);
3968 return 1;
3969}
3970
0222e657 3971/*
098297b2
JM
3972 * long and ugly. If flush, will not return until all commit
3973 * blocks and all real buffers in the trans are on disk.
3974 * If no_async, won't return until all commit blocks are on disk.
3975 *
3976 * keep reading, there are comments as you go along
3977 *
3978 * If the journal is aborted, we just clean up. Things like flushing
3979 * journal lists, etc just won't happen.
3980 */
58d85426 3981static int do_journal_end(struct reiserfs_transaction_handle *th, int flags)
bd4c625c 3982{
58d85426 3983 struct super_block *sb = th->t_super;
a9dd3643 3984 struct reiserfs_journal *journal = SB_JOURNAL(sb);
bd4c625c
LT
3985 struct reiserfs_journal_cnode *cn, *next, *jl_cn;
3986 struct reiserfs_journal_cnode *last_cn = NULL;
3987 struct reiserfs_journal_desc *desc;
3988 struct reiserfs_journal_commit *commit;
3989 struct buffer_head *c_bh; /* commit bh */
3990 struct buffer_head *d_bh; /* desc bh */
3991 int cur_write_start = 0; /* start index of current log write */
bd4c625c 3992 int i;
a44c94a7
AZ
3993 int flush;
3994 int wait_on_commit;
bd4c625c
LT
3995 struct reiserfs_journal_list *jl, *temp_jl;
3996 struct list_head *entry, *safe;
3997 unsigned long jindex;
600ed416 3998 unsigned int commit_trans_id;
bd4c625c 3999 int trans_half;
278f6679 4000 int depth;
bd4c625c
LT
4001
4002 BUG_ON(th->t_refcount > 1);
4003 BUG_ON(!th->t_trans_id);
58d85426 4004 BUG_ON(!th->t_super);
bd4c625c 4005
098297b2
JM
4006 /*
4007 * protect flush_older_commits from doing mistakes if the
4008 * transaction ID counter gets overflowed.
4009 */
600ed416 4010 if (th->t_trans_id == ~0U)
a44c94a7
AZ
4011 flags |= FLUSH_ALL | COMMIT_NOW | WAIT;
4012 flush = flags & FLUSH_ALL;
4013 wait_on_commit = flags & WAIT;
4014
bd4c625c 4015 current->journal_info = th->t_handle_save;
a9dd3643 4016 reiserfs_check_lock_depth(sb, "journal end");
bd4c625c 4017 if (journal->j_len == 0) {
a9dd3643 4018 reiserfs_prepare_for_journal(sb, SB_BUFFER_WITH_SB(sb),
bd4c625c 4019 1);
09f1b80b 4020 journal_mark_dirty(th, SB_BUFFER_WITH_SB(sb));
bd4c625c 4021 }
1da177e4 4022
a9dd3643 4023 lock_journal(sb);
bd4c625c
LT
4024 if (journal->j_next_full_flush) {
4025 flags |= FLUSH_ALL;
4026 flush = 1;
4027 }
4028 if (journal->j_next_async_flush) {
4029 flags |= COMMIT_NOW | WAIT;
4030 wait_on_commit = 1;
4031 }
4032
098297b2
JM
4033 /*
4034 * check_journal_end locks the journal, and unlocks if it does
4035 * not return 1 it tells us if we should continue with the
4036 * journal_end, or just return
bd4c625c 4037 */
58d85426 4038 if (!check_journal_end(th, flags)) {
033369d1 4039 reiserfs_schedule_old_flush(sb);
a9dd3643
JM
4040 wake_queued_writers(sb);
4041 reiserfs_async_progress_wait(sb);
bd4c625c
LT
4042 goto out;
4043 }
4044
4045 /* check_journal_end might set these, check again */
4046 if (journal->j_next_full_flush) {
4047 flush = 1;
4048 }
4049
4050 /*
098297b2
JM
4051 * j must wait means we have to flush the log blocks, and the
4052 * real blocks for this transaction
bd4c625c
LT
4053 */
4054 if (journal->j_must_wait > 0) {
4055 flush = 1;
4056 }
1da177e4 4057#ifdef REISERFS_PREALLOCATE
098297b2
JM
4058 /*
4059 * quota ops might need to nest, setup the journal_info pointer
4060 * for them and raise the refcount so that it is > 0.
4061 */
bd4c625c 4062 current->journal_info = th;
ef43bc4f 4063 th->t_refcount++;
098297b2
JM
4064
4065 /* it should not involve new blocks into the transaction */
4066 reiserfs_discard_all_prealloc(th);
4067
ef43bc4f 4068 th->t_refcount--;
bd4c625c 4069 current->journal_info = th->t_handle_save;
1da177e4 4070#endif
bd4c625c
LT
4071
4072 /* setup description block */
4073 d_bh =
a9dd3643
JM
4074 journal_getblk(sb,
4075 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c
LT
4076 journal->j_start);
4077 set_buffer_uptodate(d_bh);
4078 desc = (struct reiserfs_journal_desc *)(d_bh)->b_data;
4079 memset(d_bh->b_data, 0, d_bh->b_size);
4080 memcpy(get_journal_desc_magic(d_bh), JOURNAL_DESC_MAGIC, 8);
4081 set_desc_trans_id(desc, journal->j_trans_id);
4082
098297b2
JM
4083 /*
4084 * setup commit block. Don't write (keep it clean too) this one
4085 * until after everyone else is written
4086 */
a9dd3643 4087 c_bh = journal_getblk(sb, SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c 4088 ((journal->j_start + journal->j_len +
a9dd3643 4089 1) % SB_ONDISK_JOURNAL_SIZE(sb)));
bd4c625c
LT
4090 commit = (struct reiserfs_journal_commit *)c_bh->b_data;
4091 memset(c_bh->b_data, 0, c_bh->b_size);
4092 set_commit_trans_id(commit, journal->j_trans_id);
4093 set_buffer_uptodate(c_bh);
4094
4095 /* init this journal list */
4096 jl = journal->j_current_jl;
4097
098297b2
JM
4098 /*
4099 * we lock the commit before doing anything because
bd4c625c
LT
4100 * we want to make sure nobody tries to run flush_commit_list until
4101 * the new transaction is fully setup, and we've already flushed the
4102 * ordered bh list
4103 */
8ebc4232 4104 reiserfs_mutex_lock_safe(&jl->j_commit_mutex, sb);
bd4c625c
LT
4105
4106 /* save the transaction id in case we need to commit it later */
4107 commit_trans_id = jl->j_trans_id;
4108
4109 atomic_set(&jl->j_older_commits_done, 0);
4110 jl->j_trans_id = journal->j_trans_id;
4111 jl->j_timestamp = journal->j_trans_start_time;
4112 jl->j_commit_bh = c_bh;
4113 jl->j_start = journal->j_start;
4114 jl->j_len = journal->j_len;
4115 atomic_set(&jl->j_nonzerolen, journal->j_len);
4116 atomic_set(&jl->j_commit_left, journal->j_len + 2);
4117 jl->j_realblock = NULL;
4118
098297b2
JM
4119 /*
4120 * The ENTIRE FOR LOOP MUST not cause schedule to occur.
4121 * for each real block, add it to the journal list hash,
4122 * copy into real block index array in the commit or desc block
bd4c625c 4123 */
a9dd3643 4124 trans_half = journal_trans_half(sb->s_blocksize);
bd4c625c
LT
4125 for (i = 0, cn = journal->j_first; cn; cn = cn->next, i++) {
4126 if (buffer_journaled(cn->bh)) {
a9dd3643 4127 jl_cn = get_cnode(sb);
bd4c625c 4128 if (!jl_cn) {
a9dd3643 4129 reiserfs_panic(sb, "journal-1676",
c3a9c210 4130 "get_cnode returned NULL");
bd4c625c
LT
4131 }
4132 if (i == 0) {
4133 jl->j_realblock = jl_cn;
4134 }
4135 jl_cn->prev = last_cn;
4136 jl_cn->next = NULL;
4137 if (last_cn) {
4138 last_cn->next = jl_cn;
4139 }
4140 last_cn = jl_cn;
098297b2
JM
4141 /*
4142 * make sure the block we are trying to log
4143 * is not a block of journal or reserved area
4144 */
bd4c625c 4145 if (is_block_in_log_or_reserved_area
a9dd3643
JM
4146 (sb, cn->bh->b_blocknr)) {
4147 reiserfs_panic(sb, "journal-2332",
c3a9c210
JM
4148 "Trying to log block %lu, "
4149 "which is a log block",
bd4c625c
LT
4150 cn->bh->b_blocknr);
4151 }
4152 jl_cn->blocknr = cn->bh->b_blocknr;
4153 jl_cn->state = 0;
a9dd3643 4154 jl_cn->sb = sb;
bd4c625c
LT
4155 jl_cn->bh = cn->bh;
4156 jl_cn->jlist = jl;
4157 insert_journal_hash(journal->j_list_hash_table, jl_cn);
4158 if (i < trans_half) {
4159 desc->j_realblock[i] =
4160 cpu_to_le32(cn->bh->b_blocknr);
4161 } else {
4162 commit->j_realblock[i - trans_half] =
4163 cpu_to_le32(cn->bh->b_blocknr);
4164 }
4165 } else {
4166 i--;
4167 }
4168 }
4169 set_desc_trans_len(desc, journal->j_len);
4170 set_desc_mount_id(desc, journal->j_mount_id);
4171 set_desc_trans_id(desc, journal->j_trans_id);
4172 set_commit_trans_len(commit, journal->j_len);
4173
098297b2
JM
4174 /*
4175 * special check in case all buffers in the journal
4176 * were marked for not logging
4177 */
14a61442 4178 BUG_ON(journal->j_len == 0);
bd4c625c 4179
098297b2
JM
4180 /*
4181 * we're about to dirty all the log blocks, mark the description block
bd4c625c
LT
4182 * dirty now too. Don't mark the commit block dirty until all the
4183 * others are on disk
4184 */
4185 mark_buffer_dirty(d_bh);
4186
098297b2
JM
4187 /*
4188 * first data block is j_start + 1, so add one to
4189 * cur_write_start wherever you use it
4190 */
bd4c625c
LT
4191 cur_write_start = journal->j_start;
4192 cn = journal->j_first;
098297b2 4193 jindex = 1; /* start at one so we don't get the desc again */
bd4c625c
LT
4194 while (cn) {
4195 clear_buffer_journal_new(cn->bh);
4196 /* copy all the real blocks into log area. dirty log blocks */
4197 if (buffer_journaled(cn->bh)) {
4198 struct buffer_head *tmp_bh;
4199 char *addr;
4200 struct page *page;
4201 tmp_bh =
a9dd3643
JM
4202 journal_getblk(sb,
4203 SB_ONDISK_JOURNAL_1st_BLOCK(sb) +
bd4c625c
LT
4204 ((cur_write_start +
4205 jindex) %
a9dd3643 4206 SB_ONDISK_JOURNAL_SIZE(sb)));
bd4c625c
LT
4207 set_buffer_uptodate(tmp_bh);
4208 page = cn->bh->b_page;
4209 addr = kmap(page);
4210 memcpy(tmp_bh->b_data,
4211 addr + offset_in_page(cn->bh->b_data),
4212 cn->bh->b_size);
4213 kunmap(page);
4214 mark_buffer_dirty(tmp_bh);
4215 jindex++;
4216 set_buffer_journal_dirty(cn->bh);
4217 clear_buffer_journaled(cn->bh);
4218 } else {
098297b2
JM
4219 /*
4220 * JDirty cleared sometime during transaction.
4221 * don't log this one
4222 */
a9dd3643 4223 reiserfs_warning(sb, "journal-2048",
45b03d5e
JM
4224 "BAD, buffer in journal hash, "
4225 "but not JDirty!");
bd4c625c
LT
4226 brelse(cn->bh);
4227 }
4228 next = cn->next;
a9dd3643 4229 free_cnode(sb, cn);
bd4c625c 4230 cn = next;
278f6679 4231 reiserfs_cond_resched(sb);
bd4c625c
LT
4232 }
4233
098297b2
JM
4234 /*
4235 * we are done with both the c_bh and d_bh, but
4236 * c_bh must be written after all other commit blocks,
4237 * so we dirty/relse c_bh in flush_commit_list, with commit_left <= 1.
bd4c625c
LT
4238 */
4239
a9dd3643 4240 journal->j_current_jl = alloc_journal_list(sb);
bd4c625c
LT
4241
4242 /* now it is safe to insert this transaction on the main list */
4243 list_add_tail(&jl->j_list, &journal->j_journal_list);
4244 list_add_tail(&jl->j_working_list, &journal->j_working_list);
4245 journal->j_num_work_lists++;
4246
4247 /* reset journal values for the next transaction */
bd4c625c
LT
4248 journal->j_start =
4249 (journal->j_start + journal->j_len +
a9dd3643 4250 2) % SB_ONDISK_JOURNAL_SIZE(sb);
a228bf8f 4251 atomic_set(&journal->j_wcount, 0);
bd4c625c
LT
4252 journal->j_bcount = 0;
4253 journal->j_last = NULL;
4254 journal->j_first = NULL;
4255 journal->j_len = 0;
4256 journal->j_trans_start_time = 0;
a44c94a7
AZ
4257 /* check for trans_id overflow */
4258 if (++journal->j_trans_id == 0)
4259 journal->j_trans_id = 10;
bd4c625c
LT
4260 journal->j_current_jl->j_trans_id = journal->j_trans_id;
4261 journal->j_must_wait = 0;
4262 journal->j_len_alloc = 0;
4263 journal->j_next_full_flush = 0;
4264 journal->j_next_async_flush = 0;
a9dd3643 4265 init_journal_hash(sb);
bd4c625c 4266
098297b2
JM
4267 /*
4268 * make sure reiserfs_add_jh sees the new current_jl before we
4269 * write out the tails
4270 */
bd4c625c
LT
4271 smp_mb();
4272
098297b2
JM
4273 /*
4274 * tail conversion targets have to hit the disk before we end the
bd4c625c 4275 * transaction. Otherwise a later transaction might repack the tail
098297b2
JM
4276 * before this transaction commits, leaving the data block unflushed
4277 * and clean, if we crash before the later transaction commits, the
4278 * data block is lost.
bd4c625c
LT
4279 */
4280 if (!list_empty(&jl->j_tail_bh_list)) {
278f6679 4281 depth = reiserfs_write_unlock_nested(sb);
bd4c625c
LT
4282 write_ordered_buffers(&journal->j_dirty_buffers_lock,
4283 journal, jl, &jl->j_tail_bh_list);
278f6679 4284 reiserfs_write_lock_nested(sb, depth);
bd4c625c 4285 }
14a61442 4286 BUG_ON(!list_empty(&jl->j_tail_bh_list));
90415dea 4287 mutex_unlock(&jl->j_commit_mutex);
bd4c625c 4288
098297b2
JM
4289 /*
4290 * honor the flush wishes from the caller, simple commits can
4291 * be done outside the journal lock, they are done below
4292 *
4293 * if we don't flush the commit list right now, we put it into
4294 * the work queue so the people waiting on the async progress work
4295 * queue don't wait for this proc to flush journal lists and such.
bd4c625c
LT
4296 */
4297 if (flush) {
a9dd3643
JM
4298 flush_commit_list(sb, jl, 1);
4299 flush_journal_list(sb, jl, 1);
01777836
JK
4300 } else if (!(jl->j_state & LIST_COMMIT_PENDING)) {
4301 /*
4302 * Avoid queueing work when sb is being shut down. Transaction
4303 * will be flushed on journal shutdown.
4304 */
1751e8a6 4305 if (sb->s_flags & SB_ACTIVE)
01777836
JK
4306 queue_delayed_work(REISERFS_SB(sb)->commit_wq,
4307 &journal->j_work, HZ / 10);
4308 }
bd4c625c 4309
098297b2
JM
4310 /*
4311 * if the next transaction has any chance of wrapping, flush
4312 * transactions that might get overwritten. If any journal lists
4313 * are very old flush them as well.
bd4c625c 4314 */
cf776a7a 4315first_jl:
bd4c625c
LT
4316 list_for_each_safe(entry, safe, &journal->j_journal_list) {
4317 temp_jl = JOURNAL_LIST_ENTRY(entry);
4318 if (journal->j_start <= temp_jl->j_start) {
4319 if ((journal->j_start + journal->j_trans_max + 1) >=
4320 temp_jl->j_start) {
a9dd3643 4321 flush_used_journal_lists(sb, temp_jl);
bd4c625c
LT
4322 goto first_jl;
4323 } else if ((journal->j_start +
4324 journal->j_trans_max + 1) <
a9dd3643 4325 SB_ONDISK_JOURNAL_SIZE(sb)) {
098297b2
JM
4326 /*
4327 * if we don't cross into the next
4328 * transaction and we don't wrap, there is
4329 * no way we can overlap any later transactions
bd4c625c
LT
4330 * break now
4331 */
4332 break;
4333 }
4334 } else if ((journal->j_start +
4335 journal->j_trans_max + 1) >
a9dd3643 4336 SB_ONDISK_JOURNAL_SIZE(sb)) {
bd4c625c 4337 if (((journal->j_start + journal->j_trans_max + 1) %
a9dd3643 4338 SB_ONDISK_JOURNAL_SIZE(sb)) >=
bd4c625c 4339 temp_jl->j_start) {
a9dd3643 4340 flush_used_journal_lists(sb, temp_jl);
bd4c625c
LT
4341 goto first_jl;
4342 } else {
098297b2
JM
4343 /*
4344 * we don't overlap anything from out start
4345 * to the end of the log, and our wrapped
4346 * portion doesn't overlap anything at
4347 * the start of the log. We can break
4348 */
bd4c625c
LT
4349 break;
4350 }
4351 }
4352 }
bd4c625c
LT
4353
4354 journal->j_current_jl->j_list_bitmap =
a9dd3643 4355 get_list_bitmap(sb, journal->j_current_jl);
bd4c625c
LT
4356
4357 if (!(journal->j_current_jl->j_list_bitmap)) {
a9dd3643 4358 reiserfs_panic(sb, "journal-1996",
c3a9c210 4359 "could not get a list bitmap");
bd4c625c
LT
4360 }
4361
a228bf8f 4362 atomic_set(&journal->j_jlock, 0);
a9dd3643 4363 unlock_journal(sb);
bd4c625c
LT
4364 /* wake up any body waiting to join. */
4365 clear_bit(J_WRITERS_QUEUED, &journal->j_state);
a228bf8f 4366 wake_up(&journal->j_join_wait);
bd4c625c
LT
4367
4368 if (!flush && wait_on_commit &&
a9dd3643
JM
4369 journal_list_still_alive(sb, commit_trans_id)) {
4370 flush_commit_list(sb, jl, 1);
bd4c625c 4371 }
cf776a7a 4372out:
a9dd3643 4373 reiserfs_check_lock_depth(sb, "journal end2");
bd4c625c
LT
4374
4375 memset(th, 0, sizeof(*th));
098297b2
JM
4376 /*
4377 * Re-set th->t_super, so we can properly keep track of how many
bd4c625c 4378 * persistent transactions there are. We need to do this so if this
098297b2
JM
4379 * call is part of a failed restart_transaction, we can free it later
4380 */
a9dd3643 4381 th->t_super = sb;
bd4c625c
LT
4382
4383 return journal->j_errno;
4384}
4385
32e8b106
JM
4386/* Send the file system read only and refuse new transactions */
4387void reiserfs_abort_journal(struct super_block *sb, int errno)
bd4c625c
LT
4388{
4389 struct reiserfs_journal *journal = SB_JOURNAL(sb);
4390 if (test_bit(J_ABORTED, &journal->j_state))
4391 return;
4392
32e8b106
JM
4393 if (!journal->j_errno)
4394 journal->j_errno = errno;
bd4c625c 4395
1751e8a6 4396 sb->s_flags |= SB_RDONLY;
bd4c625c 4397 set_bit(J_ABORTED, &journal->j_state);
1da177e4
LT
4398
4399#ifdef CONFIG_REISERFS_CHECK
bd4c625c 4400 dump_stack();
1da177e4
LT
4401#endif
4402}