2 * cpfile.c - NILFS checkpoint file.
4 * Copyright (C) 2006-2008 Nippon Telegraph and Telephone Corporation.
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
20 * Written by Koji Sato <koji@osrg.net>.
23 #include <linux/kernel.h>
25 #include <linux/string.h>
26 #include <linux/buffer_head.h>
27 #include <linux/errno.h>
28 #include <linux/nilfs2_fs.h>
33 static inline unsigned long
34 nilfs_cpfile_checkpoints_per_block(const struct inode
*cpfile
)
36 return NILFS_MDT(cpfile
)->mi_entries_per_block
;
39 /* block number from the beginning of the file */
41 nilfs_cpfile_get_blkoff(const struct inode
*cpfile
, __u64 cno
)
43 __u64 tcno
= cno
+ NILFS_MDT(cpfile
)->mi_first_entry_offset
- 1;
44 do_div(tcno
, nilfs_cpfile_checkpoints_per_block(cpfile
));
45 return (unsigned long)tcno
;
50 nilfs_cpfile_get_offset(const struct inode
*cpfile
, __u64 cno
)
52 __u64 tcno
= cno
+ NILFS_MDT(cpfile
)->mi_first_entry_offset
- 1;
53 return do_div(tcno
, nilfs_cpfile_checkpoints_per_block(cpfile
));
56 static __u64
nilfs_cpfile_first_checkpoint_in_block(const struct inode
*cpfile
,
59 return (__u64
)nilfs_cpfile_checkpoints_per_block(cpfile
) * blkoff
60 + 1 - NILFS_MDT(cpfile
)->mi_first_entry_offset
;
64 nilfs_cpfile_checkpoints_in_block(const struct inode
*cpfile
,
69 nilfs_cpfile_checkpoints_per_block(cpfile
) -
70 nilfs_cpfile_get_offset(cpfile
, curr
),
74 static inline int nilfs_cpfile_is_in_first(const struct inode
*cpfile
,
77 return nilfs_cpfile_get_blkoff(cpfile
, cno
) == 0;
81 nilfs_cpfile_block_add_valid_checkpoints(const struct inode
*cpfile
,
82 struct buffer_head
*bh
,
86 struct nilfs_checkpoint
*cp
= kaddr
+ bh_offset(bh
);
89 count
= le32_to_cpu(cp
->cp_checkpoints_count
) + n
;
90 cp
->cp_checkpoints_count
= cpu_to_le32(count
);
95 nilfs_cpfile_block_sub_valid_checkpoints(const struct inode
*cpfile
,
96 struct buffer_head
*bh
,
100 struct nilfs_checkpoint
*cp
= kaddr
+ bh_offset(bh
);
103 WARN_ON(le32_to_cpu(cp
->cp_checkpoints_count
) < n
);
104 count
= le32_to_cpu(cp
->cp_checkpoints_count
) - n
;
105 cp
->cp_checkpoints_count
= cpu_to_le32(count
);
109 static inline struct nilfs_cpfile_header
*
110 nilfs_cpfile_block_get_header(const struct inode
*cpfile
,
111 struct buffer_head
*bh
,
114 return kaddr
+ bh_offset(bh
);
117 static struct nilfs_checkpoint
*
118 nilfs_cpfile_block_get_checkpoint(const struct inode
*cpfile
, __u64 cno
,
119 struct buffer_head
*bh
,
122 return kaddr
+ bh_offset(bh
) + nilfs_cpfile_get_offset(cpfile
, cno
) *
123 NILFS_MDT(cpfile
)->mi_entry_size
;
126 static void nilfs_cpfile_block_init(struct inode
*cpfile
,
127 struct buffer_head
*bh
,
130 struct nilfs_checkpoint
*cp
= kaddr
+ bh_offset(bh
);
131 size_t cpsz
= NILFS_MDT(cpfile
)->mi_entry_size
;
132 int n
= nilfs_cpfile_checkpoints_per_block(cpfile
);
135 nilfs_checkpoint_set_invalid(cp
);
136 cp
= (void *)cp
+ cpsz
;
140 static inline int nilfs_cpfile_get_header_block(struct inode
*cpfile
,
141 struct buffer_head
**bhp
)
143 return nilfs_mdt_get_block(cpfile
, 0, 0, NULL
, bhp
);
146 static inline int nilfs_cpfile_get_checkpoint_block(struct inode
*cpfile
,
149 struct buffer_head
**bhp
)
151 return nilfs_mdt_get_block(cpfile
,
152 nilfs_cpfile_get_blkoff(cpfile
, cno
),
153 create
, nilfs_cpfile_block_init
, bhp
);
157 * nilfs_cpfile_find_checkpoint_block - find and get a buffer on cpfile
158 * @cpfile: inode of cpfile
159 * @start_cno: start checkpoint number (inclusive)
160 * @end_cno: end checkpoint number (inclusive)
161 * @cnop: place to store the next checkpoint number
162 * @bhp: place to store a pointer to buffer_head struct
164 * Return Value: On success, it returns 0. On error, the following negative
165 * error code is returned.
167 * %-ENOMEM - Insufficient memory available.
171 * %-ENOENT - no block exists in the range.
173 static int nilfs_cpfile_find_checkpoint_block(struct inode
*cpfile
,
174 __u64 start_cno
, __u64 end_cno
,
176 struct buffer_head
**bhp
)
178 unsigned long start
, end
, blkoff
;
181 if (unlikely(start_cno
> end_cno
))
184 start
= nilfs_cpfile_get_blkoff(cpfile
, start_cno
);
185 end
= nilfs_cpfile_get_blkoff(cpfile
, end_cno
);
187 ret
= nilfs_mdt_find_block(cpfile
, start
, end
, &blkoff
, bhp
);
189 *cnop
= (blkoff
== start
) ? start_cno
:
190 nilfs_cpfile_first_checkpoint_in_block(cpfile
, blkoff
);
194 static inline int nilfs_cpfile_delete_checkpoint_block(struct inode
*cpfile
,
197 return nilfs_mdt_delete_block(cpfile
,
198 nilfs_cpfile_get_blkoff(cpfile
, cno
));
202 * nilfs_cpfile_get_checkpoint - get a checkpoint
203 * @cpfile: inode of checkpoint file
204 * @cno: checkpoint number
205 * @create: create flag
206 * @cpp: pointer to a checkpoint
207 * @bhp: pointer to a buffer head
209 * Description: nilfs_cpfile_get_checkpoint() acquires the checkpoint
210 * specified by @cno. A new checkpoint will be created if @cno is the current
211 * checkpoint number and @create is nonzero.
213 * Return Value: On success, 0 is returned, and the checkpoint and the
214 * buffer head of the buffer on which the checkpoint is located are stored in
215 * the place pointed by @cpp and @bhp, respectively. On error, one of the
216 * following negative error codes is returned.
220 * %-ENOMEM - Insufficient amount of memory available.
222 * %-ENOENT - No such checkpoint.
224 * %-EINVAL - invalid checkpoint.
226 int nilfs_cpfile_get_checkpoint(struct inode
*cpfile
,
229 struct nilfs_checkpoint
**cpp
,
230 struct buffer_head
**bhp
)
232 struct buffer_head
*header_bh
, *cp_bh
;
233 struct nilfs_cpfile_header
*header
;
234 struct nilfs_checkpoint
*cp
;
238 if (unlikely(cno
< 1 || cno
> nilfs_mdt_cno(cpfile
) ||
239 (cno
< nilfs_mdt_cno(cpfile
) && create
)))
242 down_write(&NILFS_MDT(cpfile
)->mi_sem
);
244 ret
= nilfs_cpfile_get_header_block(cpfile
, &header_bh
);
247 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, cno
, create
, &cp_bh
);
250 kaddr
= kmap(cp_bh
->b_page
);
251 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, cno
, cp_bh
, kaddr
);
252 if (nilfs_checkpoint_invalid(cp
)) {
254 kunmap(cp_bh
->b_page
);
259 /* a newly-created checkpoint */
260 nilfs_checkpoint_clear_invalid(cp
);
261 if (!nilfs_cpfile_is_in_first(cpfile
, cno
))
262 nilfs_cpfile_block_add_valid_checkpoints(cpfile
, cp_bh
,
264 mark_buffer_dirty(cp_bh
);
266 kaddr
= kmap_atomic(header_bh
->b_page
);
267 header
= nilfs_cpfile_block_get_header(cpfile
, header_bh
,
269 le64_add_cpu(&header
->ch_ncheckpoints
, 1);
270 kunmap_atomic(kaddr
);
271 mark_buffer_dirty(header_bh
);
272 nilfs_mdt_mark_dirty(cpfile
);
283 up_write(&NILFS_MDT(cpfile
)->mi_sem
);
288 * nilfs_cpfile_put_checkpoint - put a checkpoint
289 * @cpfile: inode of checkpoint file
290 * @cno: checkpoint number
293 * Description: nilfs_cpfile_put_checkpoint() releases the checkpoint
294 * specified by @cno. @bh must be the buffer head which has been returned by
295 * a previous call to nilfs_cpfile_get_checkpoint() with @cno.
297 void nilfs_cpfile_put_checkpoint(struct inode
*cpfile
, __u64 cno
,
298 struct buffer_head
*bh
)
305 * nilfs_cpfile_delete_checkpoints - delete checkpoints
306 * @cpfile: inode of checkpoint file
307 * @start: start checkpoint number
308 * @end: end checkpoint numer
310 * Description: nilfs_cpfile_delete_checkpoints() deletes the checkpoints in
311 * the period from @start to @end, excluding @end itself. The checkpoints
312 * which have been already deleted are ignored.
314 * Return Value: On success, 0 is returned. On error, one of the following
315 * negative error codes is returned.
319 * %-ENOMEM - Insufficient amount of memory available.
321 * %-EINVAL - invalid checkpoints.
323 int nilfs_cpfile_delete_checkpoints(struct inode
*cpfile
,
327 struct buffer_head
*header_bh
, *cp_bh
;
328 struct nilfs_cpfile_header
*header
;
329 struct nilfs_checkpoint
*cp
;
330 size_t cpsz
= NILFS_MDT(cpfile
)->mi_entry_size
;
333 unsigned long tnicps
;
334 int ret
, ncps
, nicps
, nss
, count
, i
;
336 if (unlikely(start
== 0 || start
> end
)) {
337 printk(KERN_ERR
"%s: invalid range of checkpoint numbers: "
338 "[%llu, %llu)\n", __func__
,
339 (unsigned long long)start
, (unsigned long long)end
);
343 down_write(&NILFS_MDT(cpfile
)->mi_sem
);
345 ret
= nilfs_cpfile_get_header_block(cpfile
, &header_bh
);
351 for (cno
= start
; cno
< end
; cno
+= ncps
) {
352 ncps
= nilfs_cpfile_checkpoints_in_block(cpfile
, cno
, end
);
353 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, cno
, 0, &cp_bh
);
362 kaddr
= kmap_atomic(cp_bh
->b_page
);
363 cp
= nilfs_cpfile_block_get_checkpoint(
364 cpfile
, cno
, cp_bh
, kaddr
);
366 for (i
= 0; i
< ncps
; i
++, cp
= (void *)cp
+ cpsz
) {
367 if (nilfs_checkpoint_snapshot(cp
)) {
369 } else if (!nilfs_checkpoint_invalid(cp
)) {
370 nilfs_checkpoint_set_invalid(cp
);
376 mark_buffer_dirty(cp_bh
);
377 nilfs_mdt_mark_dirty(cpfile
);
378 if (!nilfs_cpfile_is_in_first(cpfile
, cno
)) {
380 nilfs_cpfile_block_sub_valid_checkpoints(
381 cpfile
, cp_bh
, kaddr
, nicps
);
384 kunmap_atomic(kaddr
);
387 nilfs_cpfile_delete_checkpoint_block(
392 "%s: cannot delete block\n",
399 kunmap_atomic(kaddr
);
404 kaddr
= kmap_atomic(header_bh
->b_page
);
405 header
= nilfs_cpfile_block_get_header(cpfile
, header_bh
,
407 le64_add_cpu(&header
->ch_ncheckpoints
, -(u64
)tnicps
);
408 mark_buffer_dirty(header_bh
);
409 nilfs_mdt_mark_dirty(cpfile
);
410 kunmap_atomic(kaddr
);
418 up_write(&NILFS_MDT(cpfile
)->mi_sem
);
422 static void nilfs_cpfile_checkpoint_to_cpinfo(struct inode
*cpfile
,
423 struct nilfs_checkpoint
*cp
,
424 struct nilfs_cpinfo
*ci
)
426 ci
->ci_flags
= le32_to_cpu(cp
->cp_flags
);
427 ci
->ci_cno
= le64_to_cpu(cp
->cp_cno
);
428 ci
->ci_create
= le64_to_cpu(cp
->cp_create
);
429 ci
->ci_nblk_inc
= le64_to_cpu(cp
->cp_nblk_inc
);
430 ci
->ci_inodes_count
= le64_to_cpu(cp
->cp_inodes_count
);
431 ci
->ci_blocks_count
= le64_to_cpu(cp
->cp_blocks_count
);
432 ci
->ci_next
= le64_to_cpu(cp
->cp_snapshot_list
.ssl_next
);
435 static ssize_t
nilfs_cpfile_do_get_cpinfo(struct inode
*cpfile
, __u64
*cnop
,
436 void *buf
, unsigned cisz
, size_t nci
)
438 struct nilfs_checkpoint
*cp
;
439 struct nilfs_cpinfo
*ci
= buf
;
440 struct buffer_head
*bh
;
441 size_t cpsz
= NILFS_MDT(cpfile
)->mi_entry_size
;
442 __u64 cur_cno
= nilfs_mdt_cno(cpfile
), cno
= *cnop
;
448 return -ENOENT
; /* checkpoint number 0 is invalid */
449 down_read(&NILFS_MDT(cpfile
)->mi_sem
);
451 for (n
= 0; n
< nci
; cno
+= ncps
) {
452 ret
= nilfs_cpfile_find_checkpoint_block(
453 cpfile
, cno
, cur_cno
- 1, &cno
, &bh
);
455 if (likely(ret
== -ENOENT
))
459 ncps
= nilfs_cpfile_checkpoints_in_block(cpfile
, cno
, cur_cno
);
461 kaddr
= kmap_atomic(bh
->b_page
);
462 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, cno
, bh
, kaddr
);
463 for (i
= 0; i
< ncps
&& n
< nci
; i
++, cp
= (void *)cp
+ cpsz
) {
464 if (!nilfs_checkpoint_invalid(cp
)) {
465 nilfs_cpfile_checkpoint_to_cpinfo(cpfile
, cp
,
467 ci
= (void *)ci
+ cisz
;
471 kunmap_atomic(kaddr
);
477 ci
= (void *)ci
- cisz
;
478 *cnop
= ci
->ci_cno
+ 1;
482 up_read(&NILFS_MDT(cpfile
)->mi_sem
);
486 static ssize_t
nilfs_cpfile_do_get_ssinfo(struct inode
*cpfile
, __u64
*cnop
,
487 void *buf
, unsigned cisz
, size_t nci
)
489 struct buffer_head
*bh
;
490 struct nilfs_cpfile_header
*header
;
491 struct nilfs_checkpoint
*cp
;
492 struct nilfs_cpinfo
*ci
= buf
;
493 __u64 curr
= *cnop
, next
;
494 unsigned long curr_blkoff
, next_blkoff
;
498 down_read(&NILFS_MDT(cpfile
)->mi_sem
);
501 ret
= nilfs_cpfile_get_header_block(cpfile
, &bh
);
504 kaddr
= kmap_atomic(bh
->b_page
);
505 header
= nilfs_cpfile_block_get_header(cpfile
, bh
, kaddr
);
506 curr
= le64_to_cpu(header
->ch_snapshot_list
.ssl_next
);
507 kunmap_atomic(kaddr
);
513 } else if (unlikely(curr
== ~(__u64
)0)) {
518 curr_blkoff
= nilfs_cpfile_get_blkoff(cpfile
, curr
);
519 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, curr
, 0, &bh
);
520 if (unlikely(ret
< 0)) {
522 ret
= 0; /* No snapshots (started from a hole block) */
525 kaddr
= kmap_atomic(bh
->b_page
);
527 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, curr
, bh
, kaddr
);
528 curr
= ~(__u64
)0; /* Terminator */
529 if (unlikely(nilfs_checkpoint_invalid(cp
) ||
530 !nilfs_checkpoint_snapshot(cp
)))
532 nilfs_cpfile_checkpoint_to_cpinfo(cpfile
, cp
, ci
);
533 ci
= (void *)ci
+ cisz
;
535 next
= le64_to_cpu(cp
->cp_snapshot_list
.ssl_next
);
537 break; /* reach end of the snapshot list */
539 next_blkoff
= nilfs_cpfile_get_blkoff(cpfile
, next
);
540 if (curr_blkoff
!= next_blkoff
) {
541 kunmap_atomic(kaddr
);
543 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, next
,
545 if (unlikely(ret
< 0)) {
546 WARN_ON(ret
== -ENOENT
);
549 kaddr
= kmap_atomic(bh
->b_page
);
552 curr_blkoff
= next_blkoff
;
554 kunmap_atomic(kaddr
);
560 up_read(&NILFS_MDT(cpfile
)->mi_sem
);
565 * nilfs_cpfile_get_cpinfo -
572 ssize_t
nilfs_cpfile_get_cpinfo(struct inode
*cpfile
, __u64
*cnop
, int mode
,
573 void *buf
, unsigned cisz
, size_t nci
)
576 case NILFS_CHECKPOINT
:
577 return nilfs_cpfile_do_get_cpinfo(cpfile
, cnop
, buf
, cisz
, nci
);
579 return nilfs_cpfile_do_get_ssinfo(cpfile
, cnop
, buf
, cisz
, nci
);
586 * nilfs_cpfile_delete_checkpoint -
590 int nilfs_cpfile_delete_checkpoint(struct inode
*cpfile
, __u64 cno
)
592 struct nilfs_cpinfo ci
;
596 nci
= nilfs_cpfile_do_get_cpinfo(cpfile
, &tcno
, &ci
, sizeof(ci
), 1);
599 else if (nci
== 0 || ci
.ci_cno
!= cno
)
601 else if (nilfs_cpinfo_snapshot(&ci
))
604 return nilfs_cpfile_delete_checkpoints(cpfile
, cno
, cno
+ 1);
607 static struct nilfs_snapshot_list
*
608 nilfs_cpfile_block_get_snapshot_list(const struct inode
*cpfile
,
610 struct buffer_head
*bh
,
613 struct nilfs_cpfile_header
*header
;
614 struct nilfs_checkpoint
*cp
;
615 struct nilfs_snapshot_list
*list
;
618 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, cno
, bh
, kaddr
);
619 list
= &cp
->cp_snapshot_list
;
621 header
= nilfs_cpfile_block_get_header(cpfile
, bh
, kaddr
);
622 list
= &header
->ch_snapshot_list
;
627 static int nilfs_cpfile_set_snapshot(struct inode
*cpfile
, __u64 cno
)
629 struct buffer_head
*header_bh
, *curr_bh
, *prev_bh
, *cp_bh
;
630 struct nilfs_cpfile_header
*header
;
631 struct nilfs_checkpoint
*cp
;
632 struct nilfs_snapshot_list
*list
;
634 unsigned long curr_blkoff
, prev_blkoff
;
639 return -ENOENT
; /* checkpoint number 0 is invalid */
640 down_write(&NILFS_MDT(cpfile
)->mi_sem
);
642 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, cno
, 0, &cp_bh
);
645 kaddr
= kmap_atomic(cp_bh
->b_page
);
646 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, cno
, cp_bh
, kaddr
);
647 if (nilfs_checkpoint_invalid(cp
)) {
649 kunmap_atomic(kaddr
);
652 if (nilfs_checkpoint_snapshot(cp
)) {
654 kunmap_atomic(kaddr
);
657 kunmap_atomic(kaddr
);
659 ret
= nilfs_cpfile_get_header_block(cpfile
, &header_bh
);
662 kaddr
= kmap_atomic(header_bh
->b_page
);
663 header
= nilfs_cpfile_block_get_header(cpfile
, header_bh
, kaddr
);
664 list
= &header
->ch_snapshot_list
;
669 prev
= le64_to_cpu(list
->ssl_prev
);
671 prev_blkoff
= nilfs_cpfile_get_blkoff(cpfile
, prev
);
673 if (curr_blkoff
!= prev_blkoff
) {
674 kunmap_atomic(kaddr
);
676 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, curr
,
680 kaddr
= kmap_atomic(curr_bh
->b_page
);
682 curr_blkoff
= prev_blkoff
;
683 cp
= nilfs_cpfile_block_get_checkpoint(
684 cpfile
, curr
, curr_bh
, kaddr
);
685 list
= &cp
->cp_snapshot_list
;
686 prev
= le64_to_cpu(list
->ssl_prev
);
688 kunmap_atomic(kaddr
);
691 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, prev
, 0,
700 kaddr
= kmap_atomic(curr_bh
->b_page
);
701 list
= nilfs_cpfile_block_get_snapshot_list(
702 cpfile
, curr
, curr_bh
, kaddr
);
703 list
->ssl_prev
= cpu_to_le64(cno
);
704 kunmap_atomic(kaddr
);
706 kaddr
= kmap_atomic(cp_bh
->b_page
);
707 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, cno
, cp_bh
, kaddr
);
708 cp
->cp_snapshot_list
.ssl_next
= cpu_to_le64(curr
);
709 cp
->cp_snapshot_list
.ssl_prev
= cpu_to_le64(prev
);
710 nilfs_checkpoint_set_snapshot(cp
);
711 kunmap_atomic(kaddr
);
713 kaddr
= kmap_atomic(prev_bh
->b_page
);
714 list
= nilfs_cpfile_block_get_snapshot_list(
715 cpfile
, prev
, prev_bh
, kaddr
);
716 list
->ssl_next
= cpu_to_le64(cno
);
717 kunmap_atomic(kaddr
);
719 kaddr
= kmap_atomic(header_bh
->b_page
);
720 header
= nilfs_cpfile_block_get_header(cpfile
, header_bh
, kaddr
);
721 le64_add_cpu(&header
->ch_nsnapshots
, 1);
722 kunmap_atomic(kaddr
);
724 mark_buffer_dirty(prev_bh
);
725 mark_buffer_dirty(curr_bh
);
726 mark_buffer_dirty(cp_bh
);
727 mark_buffer_dirty(header_bh
);
728 nilfs_mdt_mark_dirty(cpfile
);
742 up_write(&NILFS_MDT(cpfile
)->mi_sem
);
746 static int nilfs_cpfile_clear_snapshot(struct inode
*cpfile
, __u64 cno
)
748 struct buffer_head
*header_bh
, *next_bh
, *prev_bh
, *cp_bh
;
749 struct nilfs_cpfile_header
*header
;
750 struct nilfs_checkpoint
*cp
;
751 struct nilfs_snapshot_list
*list
;
757 return -ENOENT
; /* checkpoint number 0 is invalid */
758 down_write(&NILFS_MDT(cpfile
)->mi_sem
);
760 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, cno
, 0, &cp_bh
);
763 kaddr
= kmap_atomic(cp_bh
->b_page
);
764 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, cno
, cp_bh
, kaddr
);
765 if (nilfs_checkpoint_invalid(cp
)) {
767 kunmap_atomic(kaddr
);
770 if (!nilfs_checkpoint_snapshot(cp
)) {
772 kunmap_atomic(kaddr
);
776 list
= &cp
->cp_snapshot_list
;
777 next
= le64_to_cpu(list
->ssl_next
);
778 prev
= le64_to_cpu(list
->ssl_prev
);
779 kunmap_atomic(kaddr
);
781 ret
= nilfs_cpfile_get_header_block(cpfile
, &header_bh
);
785 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, next
, 0,
794 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, prev
, 0,
803 kaddr
= kmap_atomic(next_bh
->b_page
);
804 list
= nilfs_cpfile_block_get_snapshot_list(
805 cpfile
, next
, next_bh
, kaddr
);
806 list
->ssl_prev
= cpu_to_le64(prev
);
807 kunmap_atomic(kaddr
);
809 kaddr
= kmap_atomic(prev_bh
->b_page
);
810 list
= nilfs_cpfile_block_get_snapshot_list(
811 cpfile
, prev
, prev_bh
, kaddr
);
812 list
->ssl_next
= cpu_to_le64(next
);
813 kunmap_atomic(kaddr
);
815 kaddr
= kmap_atomic(cp_bh
->b_page
);
816 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, cno
, cp_bh
, kaddr
);
817 cp
->cp_snapshot_list
.ssl_next
= cpu_to_le64(0);
818 cp
->cp_snapshot_list
.ssl_prev
= cpu_to_le64(0);
819 nilfs_checkpoint_clear_snapshot(cp
);
820 kunmap_atomic(kaddr
);
822 kaddr
= kmap_atomic(header_bh
->b_page
);
823 header
= nilfs_cpfile_block_get_header(cpfile
, header_bh
, kaddr
);
824 le64_add_cpu(&header
->ch_nsnapshots
, -1);
825 kunmap_atomic(kaddr
);
827 mark_buffer_dirty(next_bh
);
828 mark_buffer_dirty(prev_bh
);
829 mark_buffer_dirty(cp_bh
);
830 mark_buffer_dirty(header_bh
);
831 nilfs_mdt_mark_dirty(cpfile
);
845 up_write(&NILFS_MDT(cpfile
)->mi_sem
);
850 * nilfs_cpfile_is_snapshot -
851 * @cpfile: inode of checkpoint file
852 * @cno: checkpoint number
856 * Return Value: On success, 1 is returned if the checkpoint specified by
857 * @cno is a snapshot, or 0 if not. On error, one of the following negative
858 * error codes is returned.
862 * %-ENOMEM - Insufficient amount of memory available.
864 * %-ENOENT - No such checkpoint.
866 int nilfs_cpfile_is_snapshot(struct inode
*cpfile
, __u64 cno
)
868 struct buffer_head
*bh
;
869 struct nilfs_checkpoint
*cp
;
873 /* CP number is invalid if it's zero or larger than the
875 if (cno
== 0 || cno
>= nilfs_mdt_cno(cpfile
))
877 down_read(&NILFS_MDT(cpfile
)->mi_sem
);
879 ret
= nilfs_cpfile_get_checkpoint_block(cpfile
, cno
, 0, &bh
);
882 kaddr
= kmap_atomic(bh
->b_page
);
883 cp
= nilfs_cpfile_block_get_checkpoint(cpfile
, cno
, bh
, kaddr
);
884 if (nilfs_checkpoint_invalid(cp
))
887 ret
= nilfs_checkpoint_snapshot(cp
);
888 kunmap_atomic(kaddr
);
892 up_read(&NILFS_MDT(cpfile
)->mi_sem
);
897 * nilfs_cpfile_change_cpmode - change checkpoint mode
898 * @cpfile: inode of checkpoint file
899 * @cno: checkpoint number
900 * @status: mode of checkpoint
902 * Description: nilfs_change_cpmode() changes the mode of the checkpoint
903 * specified by @cno. The mode @mode is NILFS_CHECKPOINT or NILFS_SNAPSHOT.
905 * Return Value: On success, 0 is returned. On error, one of the following
906 * negative error codes is returned.
910 * %-ENOMEM - Insufficient amount of memory available.
912 * %-ENOENT - No such checkpoint.
914 int nilfs_cpfile_change_cpmode(struct inode
*cpfile
, __u64 cno
, int mode
)
919 case NILFS_CHECKPOINT
:
920 if (nilfs_checkpoint_is_mounted(cpfile
->i_sb
, cno
))
922 * Current implementation does not have to protect
923 * plain read-only mounts since they are exclusive
924 * with a read/write mount and are protected from the
929 ret
= nilfs_cpfile_clear_snapshot(cpfile
, cno
);
932 return nilfs_cpfile_set_snapshot(cpfile
, cno
);
939 * nilfs_cpfile_get_stat - get checkpoint statistics
940 * @cpfile: inode of checkpoint file
941 * @stat: pointer to a structure of checkpoint statistics
943 * Description: nilfs_cpfile_get_stat() returns information about checkpoints.
945 * Return Value: On success, 0 is returned, and checkpoints information is
946 * stored in the place pointed by @stat. On error, one of the following
947 * negative error codes is returned.
951 * %-ENOMEM - Insufficient amount of memory available.
953 int nilfs_cpfile_get_stat(struct inode
*cpfile
, struct nilfs_cpstat
*cpstat
)
955 struct buffer_head
*bh
;
956 struct nilfs_cpfile_header
*header
;
960 down_read(&NILFS_MDT(cpfile
)->mi_sem
);
962 ret
= nilfs_cpfile_get_header_block(cpfile
, &bh
);
965 kaddr
= kmap_atomic(bh
->b_page
);
966 header
= nilfs_cpfile_block_get_header(cpfile
, bh
, kaddr
);
967 cpstat
->cs_cno
= nilfs_mdt_cno(cpfile
);
968 cpstat
->cs_ncps
= le64_to_cpu(header
->ch_ncheckpoints
);
969 cpstat
->cs_nsss
= le64_to_cpu(header
->ch_nsnapshots
);
970 kunmap_atomic(kaddr
);
974 up_read(&NILFS_MDT(cpfile
)->mi_sem
);
979 * nilfs_cpfile_read - read or get cpfile inode
980 * @sb: super block instance
981 * @cpsize: size of a checkpoint entry
982 * @raw_inode: on-disk cpfile inode
983 * @inodep: buffer to store the inode
985 int nilfs_cpfile_read(struct super_block
*sb
, size_t cpsize
,
986 struct nilfs_inode
*raw_inode
, struct inode
**inodep
)
988 struct inode
*cpfile
;
991 if (cpsize
> sb
->s_blocksize
) {
993 "NILFS: too large checkpoint size: %zu bytes.\n",
996 } else if (cpsize
< NILFS_MIN_CHECKPOINT_SIZE
) {
998 "NILFS: too small checkpoint size: %zu bytes.\n",
1003 cpfile
= nilfs_iget_locked(sb
, NULL
, NILFS_CPFILE_INO
);
1004 if (unlikely(!cpfile
))
1006 if (!(cpfile
->i_state
& I_NEW
))
1009 err
= nilfs_mdt_init(cpfile
, NILFS_MDT_GFP
, 0);
1013 nilfs_mdt_set_entry_size(cpfile
, cpsize
,
1014 sizeof(struct nilfs_cpfile_header
));
1016 err
= nilfs_read_inode_common(cpfile
, raw_inode
);
1020 unlock_new_inode(cpfile
);
1025 iget_failed(cpfile
);