2 * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved.
3 * Copyright (C) 2004-2007 Red Hat, Inc. All rights reserved.
5 * This copyrighted material is made available to anyone wishing to use,
6 * modify, copy, or redistribute it subject to the terms and conditions
7 * of the GNU General Public License version 2.
10 #include <linux/sched.h>
11 #include <linux/slab.h>
12 #include <linux/spinlock.h>
13 #include <linux/completion.h>
14 #include <linux/buffer_head.h>
15 #include <linux/gfs2_ondisk.h>
16 #include <linux/crc32.h>
17 #include <linux/crc32c.h>
18 #include <linux/delay.h>
19 #include <linux/kthread.h>
20 #include <linux/freezer.h>
21 #include <linux/bio.h>
22 #include <linux/blkdev.h>
23 #include <linux/writeback.h>
24 #include <linux/list_sort.h>
35 #include "trace_gfs2.h"
38 * gfs2_struct2blk - compute stuff
39 * @sdp: the filesystem
40 * @nstruct: the number of structures
41 * @ssize: the size of the structures
43 * Compute the number of log descriptor blocks needed to hold a certain number
44 * of structures of a certain size.
46 * Returns: the number of blocks needed (minimum is always 1)
49 unsigned int gfs2_struct2blk(struct gfs2_sbd
*sdp
, unsigned int nstruct
,
53 unsigned int first
, second
;
56 first
= (sdp
->sd_sb
.sb_bsize
- sizeof(struct gfs2_log_descriptor
)) / ssize
;
58 if (nstruct
> first
) {
59 second
= (sdp
->sd_sb
.sb_bsize
-
60 sizeof(struct gfs2_meta_header
)) / ssize
;
61 blks
+= DIV_ROUND_UP(nstruct
- first
, second
);
68 * gfs2_remove_from_ail - Remove an entry from the ail lists, updating counters
69 * @mapping: The associated mapping (maybe NULL)
70 * @bd: The gfs2_bufdata to remove
72 * The ail lock _must_ be held when calling this function
76 static void gfs2_remove_from_ail(struct gfs2_bufdata
*bd
)
79 list_del_init(&bd
->bd_ail_st_list
);
80 list_del_init(&bd
->bd_ail_gl_list
);
81 atomic_dec(&bd
->bd_gl
->gl_ail_count
);
86 * gfs2_ail1_start_one - Start I/O on a part of the AIL
87 * @sdp: the filesystem
88 * @wbc: The writeback control structure
89 * @ai: The ail structure
93 static int gfs2_ail1_start_one(struct gfs2_sbd
*sdp
,
94 struct writeback_control
*wbc
,
95 struct gfs2_trans
*tr
,
97 __releases(&sdp
->sd_ail_lock
)
98 __acquires(&sdp
->sd_ail_lock
)
100 struct gfs2_glock
*gl
= NULL
;
101 struct address_space
*mapping
;
102 struct gfs2_bufdata
*bd
, *s
;
103 struct buffer_head
*bh
;
105 list_for_each_entry_safe_reverse(bd
, s
, &tr
->tr_ail1_list
, bd_ail_st_list
) {
108 gfs2_assert(sdp
, bd
->bd_tr
== tr
);
110 if (!buffer_busy(bh
)) {
111 if (!buffer_uptodate(bh
) &&
112 !test_and_set_bit(SDF_AIL1_IO_ERROR
,
114 gfs2_io_error_bh(sdp
, bh
);
117 list_move(&bd
->bd_ail_st_list
, &tr
->tr_ail2_list
);
121 if (!buffer_dirty(bh
))
126 list_move(&bd
->bd_ail_st_list
, &tr
->tr_ail1_list
);
127 mapping
= bh
->b_page
->mapping
;
130 spin_unlock(&sdp
->sd_ail_lock
);
131 generic_writepages(mapping
, wbc
);
132 spin_lock(&sdp
->sd_ail_lock
);
133 if (wbc
->nr_to_write
<= 0)
143 * gfs2_ail1_flush - start writeback of some ail1 entries
144 * @sdp: The super block
145 * @wbc: The writeback control structure
147 * Writes back some ail1 entries, according to the limits in the
148 * writeback control structure
151 void gfs2_ail1_flush(struct gfs2_sbd
*sdp
, struct writeback_control
*wbc
)
153 struct list_head
*head
= &sdp
->sd_ail1_list
;
154 struct gfs2_trans
*tr
;
155 struct blk_plug plug
;
156 bool withdraw
= false;
158 trace_gfs2_ail_flush(sdp
, wbc
, 1);
159 blk_start_plug(&plug
);
160 spin_lock(&sdp
->sd_ail_lock
);
162 list_for_each_entry_reverse(tr
, head
, tr_list
) {
163 if (wbc
->nr_to_write
<= 0)
165 if (gfs2_ail1_start_one(sdp
, wbc
, tr
, &withdraw
))
168 spin_unlock(&sdp
->sd_ail_lock
);
169 blk_finish_plug(&plug
);
171 gfs2_lm_withdraw(sdp
, NULL
);
172 trace_gfs2_ail_flush(sdp
, wbc
, 0);
176 * gfs2_ail1_start - start writeback of all ail1 entries
177 * @sdp: The superblock
180 static void gfs2_ail1_start(struct gfs2_sbd
*sdp
)
182 struct writeback_control wbc
= {
183 .sync_mode
= WB_SYNC_NONE
,
184 .nr_to_write
= LONG_MAX
,
186 .range_end
= LLONG_MAX
,
189 return gfs2_ail1_flush(sdp
, &wbc
);
193 * gfs2_ail1_empty_one - Check whether or not a trans in the AIL has been synced
194 * @sdp: the filesystem
199 static void gfs2_ail1_empty_one(struct gfs2_sbd
*sdp
, struct gfs2_trans
*tr
,
202 struct gfs2_bufdata
*bd
, *s
;
203 struct buffer_head
*bh
;
205 list_for_each_entry_safe_reverse(bd
, s
, &tr
->tr_ail1_list
,
208 gfs2_assert(sdp
, bd
->bd_tr
== tr
);
211 if (!buffer_uptodate(bh
) &&
212 !test_and_set_bit(SDF_AIL1_IO_ERROR
, &sdp
->sd_flags
)) {
213 gfs2_io_error_bh(sdp
, bh
);
216 list_move(&bd
->bd_ail_st_list
, &tr
->tr_ail2_list
);
221 * gfs2_ail1_empty - Try to empty the ail1 lists
222 * @sdp: The superblock
224 * Tries to empty the ail1 lists, starting with the oldest first
227 static int gfs2_ail1_empty(struct gfs2_sbd
*sdp
)
229 struct gfs2_trans
*tr
, *s
;
232 bool withdraw
= false;
234 spin_lock(&sdp
->sd_ail_lock
);
235 list_for_each_entry_safe_reverse(tr
, s
, &sdp
->sd_ail1_list
, tr_list
) {
236 gfs2_ail1_empty_one(sdp
, tr
, &withdraw
);
237 if (list_empty(&tr
->tr_ail1_list
) && oldest_tr
)
238 list_move(&tr
->tr_list
, &sdp
->sd_ail2_list
);
242 ret
= list_empty(&sdp
->sd_ail1_list
);
243 spin_unlock(&sdp
->sd_ail_lock
);
246 gfs2_lm_withdraw(sdp
, "fatal: I/O error(s)\n");
251 static void gfs2_ail1_wait(struct gfs2_sbd
*sdp
)
253 struct gfs2_trans
*tr
;
254 struct gfs2_bufdata
*bd
;
255 struct buffer_head
*bh
;
257 spin_lock(&sdp
->sd_ail_lock
);
258 list_for_each_entry_reverse(tr
, &sdp
->sd_ail1_list
, tr_list
) {
259 list_for_each_entry(bd
, &tr
->tr_ail1_list
, bd_ail_st_list
) {
261 if (!buffer_locked(bh
))
264 spin_unlock(&sdp
->sd_ail_lock
);
270 spin_unlock(&sdp
->sd_ail_lock
);
274 * gfs2_ail2_empty_one - Check whether or not a trans in the AIL has been synced
275 * @sdp: the filesystem
280 static void gfs2_ail2_empty_one(struct gfs2_sbd
*sdp
, struct gfs2_trans
*tr
)
282 struct list_head
*head
= &tr
->tr_ail2_list
;
283 struct gfs2_bufdata
*bd
;
285 while (!list_empty(head
)) {
286 bd
= list_entry(head
->prev
, struct gfs2_bufdata
,
288 gfs2_assert(sdp
, bd
->bd_tr
== tr
);
289 gfs2_remove_from_ail(bd
);
293 static void ail2_empty(struct gfs2_sbd
*sdp
, unsigned int new_tail
)
295 struct gfs2_trans
*tr
, *safe
;
296 unsigned int old_tail
= sdp
->sd_log_tail
;
297 int wrap
= (new_tail
< old_tail
);
300 spin_lock(&sdp
->sd_ail_lock
);
302 list_for_each_entry_safe(tr
, safe
, &sdp
->sd_ail2_list
, tr_list
) {
303 a
= (old_tail
<= tr
->tr_first
);
304 b
= (tr
->tr_first
< new_tail
);
305 rm
= (wrap
) ? (a
|| b
) : (a
&& b
);
309 gfs2_ail2_empty_one(sdp
, tr
);
310 list_del(&tr
->tr_list
);
311 gfs2_assert_warn(sdp
, list_empty(&tr
->tr_ail1_list
));
312 gfs2_assert_warn(sdp
, list_empty(&tr
->tr_ail2_list
));
316 spin_unlock(&sdp
->sd_ail_lock
);
320 * gfs2_log_release - Release a given number of log blocks
321 * @sdp: The GFS2 superblock
322 * @blks: The number of blocks
326 void gfs2_log_release(struct gfs2_sbd
*sdp
, unsigned int blks
)
329 atomic_add(blks
, &sdp
->sd_log_blks_free
);
330 trace_gfs2_log_blocks(sdp
, blks
);
331 gfs2_assert_withdraw(sdp
, atomic_read(&sdp
->sd_log_blks_free
) <=
332 sdp
->sd_jdesc
->jd_blocks
);
333 up_read(&sdp
->sd_log_flush_lock
);
337 * gfs2_log_reserve - Make a log reservation
338 * @sdp: The GFS2 superblock
339 * @blks: The number of blocks to reserve
341 * Note that we never give out the last few blocks of the journal. Thats
342 * due to the fact that there is a small number of header blocks
343 * associated with each log flush. The exact number can't be known until
344 * flush time, so we ensure that we have just enough free blocks at all
345 * times to avoid running out during a log flush.
347 * We no longer flush the log here, instead we wake up logd to do that
348 * for us. To avoid the thundering herd and to ensure that we deal fairly
349 * with queued waiters, we use an exclusive wait. This means that when we
350 * get woken with enough journal space to get our reservation, we need to
351 * wake the next waiter on the list.
356 int gfs2_log_reserve(struct gfs2_sbd
*sdp
, unsigned int blks
)
359 unsigned reserved_blks
= 7 * (4096 / sdp
->sd_vfs
->s_blocksize
);
360 unsigned wanted
= blks
+ reserved_blks
;
363 unsigned int free_blocks
;
365 if (gfs2_assert_warn(sdp
, blks
) ||
366 gfs2_assert_warn(sdp
, blks
<= sdp
->sd_jdesc
->jd_blocks
))
368 atomic_add(blks
, &sdp
->sd_log_blks_needed
);
370 free_blocks
= atomic_read(&sdp
->sd_log_blks_free
);
371 if (unlikely(free_blocks
<= wanted
)) {
373 prepare_to_wait_exclusive(&sdp
->sd_log_waitq
, &wait
,
374 TASK_UNINTERRUPTIBLE
);
375 wake_up(&sdp
->sd_logd_waitq
);
377 if (atomic_read(&sdp
->sd_log_blks_free
) <= wanted
)
379 free_blocks
= atomic_read(&sdp
->sd_log_blks_free
);
380 } while(free_blocks
<= wanted
);
381 finish_wait(&sdp
->sd_log_waitq
, &wait
);
383 atomic_inc(&sdp
->sd_reserving_log
);
384 if (atomic_cmpxchg(&sdp
->sd_log_blks_free
, free_blocks
,
385 free_blocks
- blks
) != free_blocks
) {
386 if (atomic_dec_and_test(&sdp
->sd_reserving_log
))
387 wake_up(&sdp
->sd_reserving_log_wait
);
390 atomic_sub(blks
, &sdp
->sd_log_blks_needed
);
391 trace_gfs2_log_blocks(sdp
, -blks
);
394 * If we waited, then so might others, wake them up _after_ we get
395 * our share of the log.
397 if (unlikely(did_wait
))
398 wake_up(&sdp
->sd_log_waitq
);
400 down_read(&sdp
->sd_log_flush_lock
);
401 if (unlikely(!test_bit(SDF_JOURNAL_LIVE
, &sdp
->sd_flags
))) {
402 gfs2_log_release(sdp
, blks
);
405 if (atomic_dec_and_test(&sdp
->sd_reserving_log
))
406 wake_up(&sdp
->sd_reserving_log_wait
);
411 * log_distance - Compute distance between two journal blocks
412 * @sdp: The GFS2 superblock
413 * @newer: The most recent journal block of the pair
414 * @older: The older journal block of the pair
416 * Compute the distance (in the journal direction) between two
417 * blocks in the journal
419 * Returns: the distance in blocks
422 static inline unsigned int log_distance(struct gfs2_sbd
*sdp
, unsigned int newer
,
427 dist
= newer
- older
;
429 dist
+= sdp
->sd_jdesc
->jd_blocks
;
435 * calc_reserved - Calculate the number of blocks to reserve when
436 * refunding a transaction's unused buffers.
437 * @sdp: The GFS2 superblock
439 * This is complex. We need to reserve room for all our currently used
440 * metadata buffers (e.g. normal file I/O rewriting file time stamps) and
441 * all our journaled data buffers for journaled files (e.g. files in the
442 * meta_fs like rindex, or files for which chattr +j was done.)
443 * If we don't reserve enough space, gfs2_log_refund and gfs2_log_flush
444 * will count it as free space (sd_log_blks_free) and corruption will follow.
446 * We can have metadata bufs and jdata bufs in the same journal. So each
447 * type gets its own log header, for which we need to reserve a block.
448 * In fact, each type has the potential for needing more than one header
449 * in cases where we have more buffers than will fit on a journal page.
450 * Metadata journal entries take up half the space of journaled buffer entries.
451 * Thus, metadata entries have buf_limit (502) and journaled buffers have
452 * databuf_limit (251) before they cause a wrap around.
454 * Also, we need to reserve blocks for revoke journal entries and one for an
455 * overall header for the lot.
457 * Returns: the number of blocks reserved
459 static unsigned int calc_reserved(struct gfs2_sbd
*sdp
)
461 unsigned int reserved
= 0;
464 struct gfs2_trans
*tr
= sdp
->sd_log_tr
;
467 mbuf
= tr
->tr_num_buf_new
- tr
->tr_num_buf_rm
;
468 dbuf
= tr
->tr_num_databuf_new
- tr
->tr_num_databuf_rm
;
469 reserved
= mbuf
+ dbuf
;
470 /* Account for header blocks */
471 reserved
+= DIV_ROUND_UP(mbuf
, buf_limit(sdp
));
472 reserved
+= DIV_ROUND_UP(dbuf
, databuf_limit(sdp
));
475 if (sdp
->sd_log_commited_revoke
> 0)
476 reserved
+= gfs2_struct2blk(sdp
, sdp
->sd_log_commited_revoke
,
478 /* One for the overall header */
484 static unsigned int current_tail(struct gfs2_sbd
*sdp
)
486 struct gfs2_trans
*tr
;
489 spin_lock(&sdp
->sd_ail_lock
);
491 if (list_empty(&sdp
->sd_ail1_list
)) {
492 tail
= sdp
->sd_log_head
;
494 tr
= list_entry(sdp
->sd_ail1_list
.prev
, struct gfs2_trans
,
499 spin_unlock(&sdp
->sd_ail_lock
);
504 static void log_pull_tail(struct gfs2_sbd
*sdp
, unsigned int new_tail
)
506 unsigned int dist
= log_distance(sdp
, new_tail
, sdp
->sd_log_tail
);
508 ail2_empty(sdp
, new_tail
);
510 atomic_add(dist
, &sdp
->sd_log_blks_free
);
511 trace_gfs2_log_blocks(sdp
, dist
);
512 gfs2_assert_withdraw(sdp
, atomic_read(&sdp
->sd_log_blks_free
) <=
513 sdp
->sd_jdesc
->jd_blocks
);
515 sdp
->sd_log_tail
= new_tail
;
519 static void log_flush_wait(struct gfs2_sbd
*sdp
)
523 if (atomic_read(&sdp
->sd_log_in_flight
)) {
525 prepare_to_wait(&sdp
->sd_log_flush_wait
, &wait
,
526 TASK_UNINTERRUPTIBLE
);
527 if (atomic_read(&sdp
->sd_log_in_flight
))
529 } while(atomic_read(&sdp
->sd_log_in_flight
));
530 finish_wait(&sdp
->sd_log_flush_wait
, &wait
);
534 static int ip_cmp(void *priv
, struct list_head
*a
, struct list_head
*b
)
536 struct gfs2_inode
*ipa
, *ipb
;
538 ipa
= list_entry(a
, struct gfs2_inode
, i_ordered
);
539 ipb
= list_entry(b
, struct gfs2_inode
, i_ordered
);
541 if (ipa
->i_no_addr
< ipb
->i_no_addr
)
543 if (ipa
->i_no_addr
> ipb
->i_no_addr
)
548 static void gfs2_ordered_write(struct gfs2_sbd
*sdp
)
550 struct gfs2_inode
*ip
;
553 spin_lock(&sdp
->sd_ordered_lock
);
554 list_sort(NULL
, &sdp
->sd_log_le_ordered
, &ip_cmp
);
555 while (!list_empty(&sdp
->sd_log_le_ordered
)) {
556 ip
= list_entry(sdp
->sd_log_le_ordered
.next
, struct gfs2_inode
, i_ordered
);
557 if (ip
->i_inode
.i_mapping
->nrpages
== 0) {
558 test_and_clear_bit(GIF_ORDERED
, &ip
->i_flags
);
559 list_del(&ip
->i_ordered
);
562 list_move(&ip
->i_ordered
, &written
);
563 spin_unlock(&sdp
->sd_ordered_lock
);
564 filemap_fdatawrite(ip
->i_inode
.i_mapping
);
565 spin_lock(&sdp
->sd_ordered_lock
);
567 list_splice(&written
, &sdp
->sd_log_le_ordered
);
568 spin_unlock(&sdp
->sd_ordered_lock
);
571 static void gfs2_ordered_wait(struct gfs2_sbd
*sdp
)
573 struct gfs2_inode
*ip
;
575 spin_lock(&sdp
->sd_ordered_lock
);
576 while (!list_empty(&sdp
->sd_log_le_ordered
)) {
577 ip
= list_entry(sdp
->sd_log_le_ordered
.next
, struct gfs2_inode
, i_ordered
);
578 list_del(&ip
->i_ordered
);
579 WARN_ON(!test_and_clear_bit(GIF_ORDERED
, &ip
->i_flags
));
580 if (ip
->i_inode
.i_mapping
->nrpages
== 0)
582 spin_unlock(&sdp
->sd_ordered_lock
);
583 filemap_fdatawait(ip
->i_inode
.i_mapping
);
584 spin_lock(&sdp
->sd_ordered_lock
);
586 spin_unlock(&sdp
->sd_ordered_lock
);
589 void gfs2_ordered_del_inode(struct gfs2_inode
*ip
)
591 struct gfs2_sbd
*sdp
= GFS2_SB(&ip
->i_inode
);
593 spin_lock(&sdp
->sd_ordered_lock
);
594 if (test_and_clear_bit(GIF_ORDERED
, &ip
->i_flags
))
595 list_del(&ip
->i_ordered
);
596 spin_unlock(&sdp
->sd_ordered_lock
);
599 void gfs2_add_revoke(struct gfs2_sbd
*sdp
, struct gfs2_bufdata
*bd
)
601 struct buffer_head
*bh
= bd
->bd_bh
;
602 struct gfs2_glock
*gl
= bd
->bd_gl
;
604 bh
->b_private
= NULL
;
605 bd
->bd_blkno
= bh
->b_blocknr
;
606 gfs2_remove_from_ail(bd
); /* drops ref on bh */
608 sdp
->sd_log_num_revoke
++;
609 atomic_inc(&gl
->gl_revokes
);
610 set_bit(GLF_LFLUSH
, &gl
->gl_flags
);
611 list_add(&bd
->bd_list
, &sdp
->sd_log_le_revoke
);
614 void gfs2_write_revokes(struct gfs2_sbd
*sdp
)
616 struct gfs2_trans
*tr
;
617 struct gfs2_bufdata
*bd
, *tmp
;
618 int have_revokes
= 0;
619 int max_revokes
= (sdp
->sd_sb
.sb_bsize
- sizeof(struct gfs2_log_descriptor
)) / sizeof(u64
);
621 gfs2_ail1_empty(sdp
);
622 spin_lock(&sdp
->sd_ail_lock
);
623 list_for_each_entry_reverse(tr
, &sdp
->sd_ail1_list
, tr_list
) {
624 list_for_each_entry(bd
, &tr
->tr_ail2_list
, bd_ail_st_list
) {
625 if (list_empty(&bd
->bd_list
)) {
632 spin_unlock(&sdp
->sd_ail_lock
);
633 if (have_revokes
== 0)
635 while (sdp
->sd_log_num_revoke
> max_revokes
)
636 max_revokes
+= (sdp
->sd_sb
.sb_bsize
- sizeof(struct gfs2_meta_header
)) / sizeof(u64
);
637 max_revokes
-= sdp
->sd_log_num_revoke
;
638 if (!sdp
->sd_log_num_revoke
) {
639 atomic_dec(&sdp
->sd_log_blks_free
);
640 /* If no blocks have been reserved, we need to also
641 * reserve a block for the header */
642 if (!sdp
->sd_log_blks_reserved
)
643 atomic_dec(&sdp
->sd_log_blks_free
);
646 spin_lock(&sdp
->sd_ail_lock
);
647 list_for_each_entry_reverse(tr
, &sdp
->sd_ail1_list
, tr_list
) {
648 list_for_each_entry_safe(bd
, tmp
, &tr
->tr_ail2_list
, bd_ail_st_list
) {
649 if (max_revokes
== 0)
651 if (!list_empty(&bd
->bd_list
))
653 gfs2_add_revoke(sdp
, bd
);
658 spin_unlock(&sdp
->sd_ail_lock
);
659 gfs2_log_unlock(sdp
);
661 if (!sdp
->sd_log_num_revoke
) {
662 atomic_inc(&sdp
->sd_log_blks_free
);
663 if (!sdp
->sd_log_blks_reserved
)
664 atomic_inc(&sdp
->sd_log_blks_free
);
669 * write_log_header - Write a journal log header buffer at sd_log_flush_head
670 * @sdp: The GFS2 superblock
671 * @jd: journal descriptor of the journal to which we are writing
672 * @seq: sequence number
673 * @tail: tail of the log
674 * @flags: log header flags GFS2_LOG_HEAD_*
675 * @op_flags: flags to pass to the bio
677 * Returns: the initialized log buffer descriptor
680 void gfs2_write_log_header(struct gfs2_sbd
*sdp
, struct gfs2_jdesc
*jd
,
681 u64 seq
, u32 tail
, u32 flags
, int op_flags
)
683 struct gfs2_log_header
*lh
;
685 struct page
*page
= mempool_alloc(gfs2_page_pool
, GFP_NOIO
);
686 struct gfs2_statfs_change_host
*l_sc
= &sdp
->sd_statfs_local
;
687 struct timespec64 tv
;
688 struct super_block
*sb
= sdp
->sd_vfs
;
691 lh
= page_address(page
);
694 lh
->lh_header
.mh_magic
= cpu_to_be32(GFS2_MAGIC
);
695 lh
->lh_header
.mh_type
= cpu_to_be32(GFS2_METATYPE_LH
);
696 lh
->lh_header
.__pad0
= cpu_to_be64(0);
697 lh
->lh_header
.mh_format
= cpu_to_be32(GFS2_FORMAT_LH
);
698 lh
->lh_header
.mh_jid
= cpu_to_be32(sdp
->sd_jdesc
->jd_jid
);
699 lh
->lh_sequence
= cpu_to_be64(seq
);
700 lh
->lh_flags
= cpu_to_be32(flags
);
701 lh
->lh_tail
= cpu_to_be32(tail
);
702 lh
->lh_blkno
= cpu_to_be32(sdp
->sd_log_flush_head
);
703 hash
= ~crc32(~0, lh
, LH_V1_SIZE
);
704 lh
->lh_hash
= cpu_to_be32(hash
);
706 ktime_get_coarse_real_ts64(&tv
);
707 lh
->lh_nsec
= cpu_to_be32(tv
.tv_nsec
);
708 lh
->lh_sec
= cpu_to_be64(tv
.tv_sec
);
709 addr
= gfs2_log_bmap(sdp
);
710 lh
->lh_addr
= cpu_to_be64(addr
);
711 lh
->lh_jinode
= cpu_to_be64(GFS2_I(jd
->jd_inode
)->i_no_addr
);
713 /* We may only write local statfs, quota, etc., when writing to our
714 own journal. The values are left 0 when recovering a journal
715 different from our own. */
716 if (!(flags
& GFS2_LOG_HEAD_RECOVERY
)) {
718 cpu_to_be64(GFS2_I(sdp
->sd_sc_inode
)->i_no_addr
);
720 cpu_to_be64(GFS2_I(sdp
->sd_qc_inode
)->i_no_addr
);
722 spin_lock(&sdp
->sd_statfs_spin
);
723 lh
->lh_local_total
= cpu_to_be64(l_sc
->sc_total
);
724 lh
->lh_local_free
= cpu_to_be64(l_sc
->sc_free
);
725 lh
->lh_local_dinodes
= cpu_to_be64(l_sc
->sc_dinodes
);
726 spin_unlock(&sdp
->sd_statfs_spin
);
729 BUILD_BUG_ON(offsetof(struct gfs2_log_header
, lh_crc
) != LH_V1_SIZE
);
731 crc
= crc32c(~0, (void *)lh
+ LH_V1_SIZE
+ 4,
732 sb
->s_blocksize
- LH_V1_SIZE
- 4);
733 lh
->lh_crc
= cpu_to_be32(crc
);
735 gfs2_log_write(sdp
, page
, sb
->s_blocksize
, 0, addr
);
736 gfs2_log_submit_bio(&sdp
->sd_log_bio
, REQ_OP_WRITE
| op_flags
);
741 * log_write_header - Get and initialize a journal header buffer
742 * @sdp: The GFS2 superblock
743 * @flags: The log header flags, including log header origin
745 * Returns: the initialized log buffer descriptor
748 static void log_write_header(struct gfs2_sbd
*sdp
, u32 flags
)
751 int op_flags
= REQ_PREFLUSH
| REQ_FUA
| REQ_META
| REQ_SYNC
;
752 enum gfs2_freeze_state state
= atomic_read(&sdp
->sd_freeze_state
);
754 gfs2_assert_withdraw(sdp
, (state
!= SFS_FROZEN
));
755 tail
= current_tail(sdp
);
757 if (test_bit(SDF_NOBARRIERS
, &sdp
->sd_flags
)) {
758 gfs2_ordered_wait(sdp
);
760 op_flags
= REQ_SYNC
| REQ_META
| REQ_PRIO
;
762 sdp
->sd_log_idle
= (tail
== sdp
->sd_log_flush_head
);
763 gfs2_write_log_header(sdp
, sdp
->sd_jdesc
, sdp
->sd_log_sequence
++, tail
,
766 if (sdp
->sd_log_tail
!= tail
)
767 log_pull_tail(sdp
, tail
);
771 * gfs2_log_flush - flush incore transaction(s)
772 * @sdp: the filesystem
773 * @gl: The glock structure to flush. If NULL, flush the whole incore log
774 * @flags: The log header flags: GFS2_LOG_HEAD_FLUSH_* and debug flags
778 void gfs2_log_flush(struct gfs2_sbd
*sdp
, struct gfs2_glock
*gl
, u32 flags
)
780 struct gfs2_trans
*tr
;
781 enum gfs2_freeze_state state
= atomic_read(&sdp
->sd_freeze_state
);
783 down_write(&sdp
->sd_log_flush_lock
);
785 /* Log might have been flushed while we waited for the flush lock */
786 if (gl
&& !test_bit(GLF_LFLUSH
, &gl
->gl_flags
)) {
787 up_write(&sdp
->sd_log_flush_lock
);
790 trace_gfs2_log_flush(sdp
, 1, flags
);
792 if (flags
& GFS2_LOG_HEAD_FLUSH_SHUTDOWN
)
793 clear_bit(SDF_JOURNAL_LIVE
, &sdp
->sd_flags
);
795 sdp
->sd_log_flush_head
= sdp
->sd_log_head
;
798 sdp
->sd_log_tr
= NULL
;
799 INIT_LIST_HEAD(&tr
->tr_ail1_list
);
800 INIT_LIST_HEAD(&tr
->tr_ail2_list
);
801 tr
->tr_first
= sdp
->sd_log_flush_head
;
802 if (unlikely (state
== SFS_FROZEN
))
803 gfs2_assert_withdraw(sdp
, !tr
->tr_num_buf_new
&& !tr
->tr_num_databuf_new
);
806 if (unlikely(state
== SFS_FROZEN
))
807 gfs2_assert_withdraw(sdp
, !sdp
->sd_log_num_revoke
);
808 gfs2_assert_withdraw(sdp
,
809 sdp
->sd_log_num_revoke
== sdp
->sd_log_commited_revoke
);
811 gfs2_ordered_write(sdp
);
812 lops_before_commit(sdp
, tr
);
813 gfs2_log_submit_bio(&sdp
->sd_log_bio
, REQ_OP_WRITE
);
815 if (sdp
->sd_log_head
!= sdp
->sd_log_flush_head
) {
817 log_write_header(sdp
, flags
);
818 } else if (sdp
->sd_log_tail
!= current_tail(sdp
) && !sdp
->sd_log_idle
){
819 atomic_dec(&sdp
->sd_log_blks_free
); /* Adjust for unreserved buffer */
820 trace_gfs2_log_blocks(sdp
, -1);
821 log_write_header(sdp
, flags
);
823 lops_after_commit(sdp
, tr
);
826 sdp
->sd_log_head
= sdp
->sd_log_flush_head
;
827 sdp
->sd_log_blks_reserved
= 0;
828 sdp
->sd_log_commited_revoke
= 0;
830 spin_lock(&sdp
->sd_ail_lock
);
831 if (tr
&& !list_empty(&tr
->tr_ail1_list
)) {
832 list_add(&tr
->tr_list
, &sdp
->sd_ail1_list
);
835 spin_unlock(&sdp
->sd_ail_lock
);
836 gfs2_log_unlock(sdp
);
838 if (!(flags
& GFS2_LOG_HEAD_FLUSH_NORMAL
)) {
839 if (!sdp
->sd_log_idle
) {
841 gfs2_ail1_start(sdp
);
843 if (gfs2_ail1_empty(sdp
))
846 atomic_dec(&sdp
->sd_log_blks_free
); /* Adjust for unreserved buffer */
847 trace_gfs2_log_blocks(sdp
, -1);
848 log_write_header(sdp
, flags
);
849 sdp
->sd_log_head
= sdp
->sd_log_flush_head
;
851 if (flags
& (GFS2_LOG_HEAD_FLUSH_SHUTDOWN
|
852 GFS2_LOG_HEAD_FLUSH_FREEZE
))
853 gfs2_log_shutdown(sdp
);
854 if (flags
& GFS2_LOG_HEAD_FLUSH_FREEZE
)
855 atomic_set(&sdp
->sd_freeze_state
, SFS_FROZEN
);
858 trace_gfs2_log_flush(sdp
, 0, flags
);
859 up_write(&sdp
->sd_log_flush_lock
);
865 * gfs2_merge_trans - Merge a new transaction into a cached transaction
866 * @old: Original transaction to be expanded
867 * @new: New transaction to be merged
870 static void gfs2_merge_trans(struct gfs2_trans
*old
, struct gfs2_trans
*new)
872 WARN_ON_ONCE(!test_bit(TR_ATTACHED
, &old
->tr_flags
));
874 old
->tr_num_buf_new
+= new->tr_num_buf_new
;
875 old
->tr_num_databuf_new
+= new->tr_num_databuf_new
;
876 old
->tr_num_buf_rm
+= new->tr_num_buf_rm
;
877 old
->tr_num_databuf_rm
+= new->tr_num_databuf_rm
;
878 old
->tr_num_revoke
+= new->tr_num_revoke
;
879 old
->tr_num_revoke_rm
+= new->tr_num_revoke_rm
;
881 list_splice_tail_init(&new->tr_databuf
, &old
->tr_databuf
);
882 list_splice_tail_init(&new->tr_buf
, &old
->tr_buf
);
885 static void log_refund(struct gfs2_sbd
*sdp
, struct gfs2_trans
*tr
)
887 unsigned int reserved
;
893 if (sdp
->sd_log_tr
) {
894 gfs2_merge_trans(sdp
->sd_log_tr
, tr
);
895 } else if (tr
->tr_num_buf_new
|| tr
->tr_num_databuf_new
) {
896 gfs2_assert_withdraw(sdp
, test_bit(TR_ALLOCED
, &tr
->tr_flags
));
898 set_bit(TR_ATTACHED
, &tr
->tr_flags
);
901 sdp
->sd_log_commited_revoke
+= tr
->tr_num_revoke
- tr
->tr_num_revoke_rm
;
902 reserved
= calc_reserved(sdp
);
903 maxres
= sdp
->sd_log_blks_reserved
+ tr
->tr_reserved
;
904 gfs2_assert_withdraw(sdp
, maxres
>= reserved
);
905 unused
= maxres
- reserved
;
906 atomic_add(unused
, &sdp
->sd_log_blks_free
);
907 trace_gfs2_log_blocks(sdp
, unused
);
908 gfs2_assert_withdraw(sdp
, atomic_read(&sdp
->sd_log_blks_free
) <=
909 sdp
->sd_jdesc
->jd_blocks
);
910 sdp
->sd_log_blks_reserved
= reserved
;
912 gfs2_log_unlock(sdp
);
916 * gfs2_log_commit - Commit a transaction to the log
917 * @sdp: the filesystem
918 * @tr: the transaction
920 * We wake up gfs2_logd if the number of pinned blocks exceed thresh1
921 * or the total number of used blocks (pinned blocks plus AIL blocks)
922 * is greater than thresh2.
924 * At mount time thresh1 is 1/3rd of journal size, thresh2 is 2/3rd of
930 void gfs2_log_commit(struct gfs2_sbd
*sdp
, struct gfs2_trans
*tr
)
934 if (atomic_read(&sdp
->sd_log_pinned
) > atomic_read(&sdp
->sd_log_thresh1
) ||
935 ((sdp
->sd_jdesc
->jd_blocks
- atomic_read(&sdp
->sd_log_blks_free
)) >
936 atomic_read(&sdp
->sd_log_thresh2
)))
937 wake_up(&sdp
->sd_logd_waitq
);
941 * gfs2_log_shutdown - write a shutdown header into a journal
942 * @sdp: the filesystem
946 void gfs2_log_shutdown(struct gfs2_sbd
*sdp
)
948 gfs2_assert_withdraw(sdp
, !sdp
->sd_log_blks_reserved
);
949 gfs2_assert_withdraw(sdp
, !sdp
->sd_log_num_revoke
);
950 gfs2_assert_withdraw(sdp
, list_empty(&sdp
->sd_ail1_list
));
952 sdp
->sd_log_flush_head
= sdp
->sd_log_head
;
954 log_write_header(sdp
, GFS2_LOG_HEAD_UNMOUNT
| GFS2_LFC_SHUTDOWN
);
956 gfs2_assert_warn(sdp
, sdp
->sd_log_head
== sdp
->sd_log_tail
);
957 gfs2_assert_warn(sdp
, list_empty(&sdp
->sd_ail2_list
));
959 sdp
->sd_log_head
= sdp
->sd_log_flush_head
;
960 sdp
->sd_log_tail
= sdp
->sd_log_head
;
963 static inline int gfs2_jrnl_flush_reqd(struct gfs2_sbd
*sdp
)
965 return (atomic_read(&sdp
->sd_log_pinned
) +
966 atomic_read(&sdp
->sd_log_blks_needed
) >=
967 atomic_read(&sdp
->sd_log_thresh1
));
970 static inline int gfs2_ail_flush_reqd(struct gfs2_sbd
*sdp
)
972 unsigned int used_blocks
= sdp
->sd_jdesc
->jd_blocks
- atomic_read(&sdp
->sd_log_blks_free
);
974 if (test_and_clear_bit(SDF_FORCE_AIL_FLUSH
, &sdp
->sd_flags
))
977 return used_blocks
+ atomic_read(&sdp
->sd_log_blks_needed
) >=
978 atomic_read(&sdp
->sd_log_thresh2
);
982 * gfs2_logd - Update log tail as Active Items get flushed to in-place blocks
983 * @sdp: Pointer to GFS2 superblock
985 * Also, periodically check to make sure that we're using the most recent
989 int gfs2_logd(void *data
)
991 struct gfs2_sbd
*sdp
= data
;
996 while (!kthread_should_stop()) {
998 /* Check for errors writing to the journal */
999 if (sdp
->sd_log_error
) {
1000 gfs2_lm_withdraw(sdp
,
1001 "GFS2: fsid=%s: error %d: "
1002 "withdrawing the file system to "
1003 "prevent further damage.\n",
1004 sdp
->sd_fsname
, sdp
->sd_log_error
);
1008 if (gfs2_jrnl_flush_reqd(sdp
) || t
== 0) {
1009 gfs2_ail1_empty(sdp
);
1010 gfs2_log_flush(sdp
, NULL
, GFS2_LOG_HEAD_FLUSH_NORMAL
|
1011 GFS2_LFC_LOGD_JFLUSH_REQD
);
1015 if (gfs2_ail_flush_reqd(sdp
)) {
1016 gfs2_ail1_start(sdp
);
1017 gfs2_ail1_wait(sdp
);
1018 gfs2_ail1_empty(sdp
);
1019 gfs2_log_flush(sdp
, NULL
, GFS2_LOG_HEAD_FLUSH_NORMAL
|
1020 GFS2_LFC_LOGD_AIL_FLUSH_REQD
);
1024 if (!gfs2_ail_flush_reqd(sdp
) || did_flush
)
1025 wake_up(&sdp
->sd_log_waitq
);
1027 t
= gfs2_tune_get(sdp
, gt_logd_secs
) * HZ
;
1032 prepare_to_wait(&sdp
->sd_logd_waitq
, &wait
,
1033 TASK_INTERRUPTIBLE
);
1034 if (!gfs2_ail_flush_reqd(sdp
) &&
1035 !gfs2_jrnl_flush_reqd(sdp
) &&
1036 !kthread_should_stop())
1037 t
= schedule_timeout(t
);
1038 } while(t
&& !gfs2_ail_flush_reqd(sdp
) &&
1039 !gfs2_jrnl_flush_reqd(sdp
) &&
1040 !kthread_should_stop());
1041 finish_wait(&sdp
->sd_logd_waitq
, &wait
);