2 * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved.
3 * Copyright (C) 2004-2008 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/pagemap.h>
16 #include <linux/pagevec.h>
17 #include <linux/mpage.h>
19 #include <linux/writeback.h>
20 #include <linux/swap.h>
21 #include <linux/gfs2_ondisk.h>
22 #include <linux/backing-dev.h>
23 #include <linux/aio.h>
40 static void gfs2_page_add_databufs(struct gfs2_inode
*ip
, struct page
*page
,
41 unsigned int from
, unsigned int to
)
43 struct buffer_head
*head
= page_buffers(page
);
44 unsigned int bsize
= head
->b_size
;
45 struct buffer_head
*bh
;
46 unsigned int start
, end
;
48 for (bh
= head
, start
= 0; bh
!= head
|| !start
;
49 bh
= bh
->b_this_page
, start
= end
) {
51 if (end
<= from
|| start
>= to
)
53 if (gfs2_is_jdata(ip
))
54 set_buffer_uptodate(bh
);
55 gfs2_trans_add_data(ip
->i_gl
, bh
);
60 * gfs2_get_block_noalloc - Fills in a buffer head with details about a block
62 * @lblock: The block number to look up
63 * @bh_result: The buffer head to return the result in
64 * @create: Non-zero if we may add block to the file
69 static int gfs2_get_block_noalloc(struct inode
*inode
, sector_t lblock
,
70 struct buffer_head
*bh_result
, int create
)
74 error
= gfs2_block_map(inode
, lblock
, bh_result
, 0);
77 if (!buffer_mapped(bh_result
))
82 static int gfs2_get_block_direct(struct inode
*inode
, sector_t lblock
,
83 struct buffer_head
*bh_result
, int create
)
85 return gfs2_block_map(inode
, lblock
, bh_result
, 0);
89 * gfs2_writepage_common - Common bits of writepage
90 * @page: The page to be written
91 * @wbc: The writeback control
93 * Returns: 1 if writepage is ok, otherwise an error code or zero if no error.
96 static int gfs2_writepage_common(struct page
*page
,
97 struct writeback_control
*wbc
)
99 struct inode
*inode
= page
->mapping
->host
;
100 struct gfs2_inode
*ip
= GFS2_I(inode
);
101 struct gfs2_sbd
*sdp
= GFS2_SB(inode
);
102 loff_t i_size
= i_size_read(inode
);
103 pgoff_t end_index
= i_size
>> PAGE_CACHE_SHIFT
;
106 if (gfs2_assert_withdraw(sdp
, gfs2_glock_is_held_excl(ip
->i_gl
)))
108 if (current
->journal_info
)
110 /* Is the page fully outside i_size? (truncate in progress) */
111 offset
= i_size
& (PAGE_CACHE_SIZE
-1);
112 if (page
->index
> end_index
|| (page
->index
== end_index
&& !offset
)) {
113 page
->mapping
->a_ops
->invalidatepage(page
, 0);
118 redirty_page_for_writepage(wbc
, page
);
125 * gfs2_writeback_writepage - Write page for writeback mappings
127 * @wbc: The writeback control
131 static int gfs2_writeback_writepage(struct page
*page
,
132 struct writeback_control
*wbc
)
136 ret
= gfs2_writepage_common(page
, wbc
);
140 return nobh_writepage(page
, gfs2_get_block_noalloc
, wbc
);
144 * gfs2_ordered_writepage - Write page for ordered data files
145 * @page: The page to write
146 * @wbc: The writeback control
150 static int gfs2_ordered_writepage(struct page
*page
,
151 struct writeback_control
*wbc
)
153 struct inode
*inode
= page
->mapping
->host
;
154 struct gfs2_inode
*ip
= GFS2_I(inode
);
157 ret
= gfs2_writepage_common(page
, wbc
);
161 if (!page_has_buffers(page
)) {
162 create_empty_buffers(page
, inode
->i_sb
->s_blocksize
,
163 (1 << BH_Dirty
)|(1 << BH_Uptodate
));
165 gfs2_page_add_databufs(ip
, page
, 0, inode
->i_sb
->s_blocksize
-1);
166 return block_write_full_page(page
, gfs2_get_block_noalloc
, wbc
);
170 * __gfs2_jdata_writepage - The core of jdata writepage
171 * @page: The page to write
172 * @wbc: The writeback control
174 * This is shared between writepage and writepages and implements the
175 * core of the writepage operation. If a transaction is required then
176 * PageChecked will have been set and the transaction will have
177 * already been started before this is called.
180 static int __gfs2_jdata_writepage(struct page
*page
, struct writeback_control
*wbc
)
182 struct inode
*inode
= page
->mapping
->host
;
183 struct gfs2_inode
*ip
= GFS2_I(inode
);
184 struct gfs2_sbd
*sdp
= GFS2_SB(inode
);
186 if (PageChecked(page
)) {
187 ClearPageChecked(page
);
188 if (!page_has_buffers(page
)) {
189 create_empty_buffers(page
, inode
->i_sb
->s_blocksize
,
190 (1 << BH_Dirty
)|(1 << BH_Uptodate
));
192 gfs2_page_add_databufs(ip
, page
, 0, sdp
->sd_vfs
->s_blocksize
-1);
194 return block_write_full_page(page
, gfs2_get_block_noalloc
, wbc
);
198 * gfs2_jdata_writepage - Write complete page
199 * @page: Page to write
205 static int gfs2_jdata_writepage(struct page
*page
, struct writeback_control
*wbc
)
207 struct inode
*inode
= page
->mapping
->host
;
208 struct gfs2_sbd
*sdp
= GFS2_SB(inode
);
212 if (PageChecked(page
)) {
213 if (wbc
->sync_mode
!= WB_SYNC_ALL
)
215 ret
= gfs2_trans_begin(sdp
, RES_DINODE
+ 1, 0);
220 ret
= gfs2_writepage_common(page
, wbc
);
222 ret
= __gfs2_jdata_writepage(page
, wbc
);
228 redirty_page_for_writepage(wbc
, page
);
234 * gfs2_writepages - Write a bunch of dirty pages back to disk
235 * @mapping: The mapping to write
236 * @wbc: Write-back control
238 * Used for both ordered and writeback modes.
240 static int gfs2_writepages(struct address_space
*mapping
,
241 struct writeback_control
*wbc
)
243 return mpage_writepages(mapping
, wbc
, gfs2_get_block_noalloc
);
247 * gfs2_write_jdata_pagevec - Write back a pagevec's worth of pages
248 * @mapping: The mapping
249 * @wbc: The writeback control
250 * @writepage: The writepage function to call for each page
251 * @pvec: The vector of pages
252 * @nr_pages: The number of pages to write
254 * Returns: non-zero if loop should terminate, zero otherwise
257 static int gfs2_write_jdata_pagevec(struct address_space
*mapping
,
258 struct writeback_control
*wbc
,
259 struct pagevec
*pvec
,
260 int nr_pages
, pgoff_t end
)
262 struct inode
*inode
= mapping
->host
;
263 struct gfs2_sbd
*sdp
= GFS2_SB(inode
);
264 loff_t i_size
= i_size_read(inode
);
265 pgoff_t end_index
= i_size
>> PAGE_CACHE_SHIFT
;
266 unsigned offset
= i_size
& (PAGE_CACHE_SIZE
-1);
267 unsigned nrblocks
= nr_pages
* (PAGE_CACHE_SIZE
/inode
->i_sb
->s_blocksize
);
271 ret
= gfs2_trans_begin(sdp
, nrblocks
, nrblocks
);
275 for(i
= 0; i
< nr_pages
; i
++) {
276 struct page
*page
= pvec
->pages
[i
];
280 if (unlikely(page
->mapping
!= mapping
)) {
285 if (!wbc
->range_cyclic
&& page
->index
> end
) {
291 if (wbc
->sync_mode
!= WB_SYNC_NONE
)
292 wait_on_page_writeback(page
);
294 if (PageWriteback(page
) ||
295 !clear_page_dirty_for_io(page
)) {
300 /* Is the page fully outside i_size? (truncate in progress) */
301 if (page
->index
> end_index
|| (page
->index
== end_index
&& !offset
)) {
302 page
->mapping
->a_ops
->invalidatepage(page
, 0);
307 ret
= __gfs2_jdata_writepage(page
, wbc
);
309 if (ret
|| (--(wbc
->nr_to_write
) <= 0))
317 * gfs2_write_cache_jdata - Like write_cache_pages but different
318 * @mapping: The mapping to write
319 * @wbc: The writeback control
320 * @writepage: The writepage function to call
321 * @data: The data to pass to writepage
323 * The reason that we use our own function here is that we need to
324 * start transactions before we grab page locks. This allows us
325 * to get the ordering right.
328 static int gfs2_write_cache_jdata(struct address_space
*mapping
,
329 struct writeback_control
*wbc
)
340 pagevec_init(&pvec
, 0);
341 if (wbc
->range_cyclic
) {
342 index
= mapping
->writeback_index
; /* Start from prev offset */
345 index
= wbc
->range_start
>> PAGE_CACHE_SHIFT
;
346 end
= wbc
->range_end
>> PAGE_CACHE_SHIFT
;
347 if (wbc
->range_start
== 0 && wbc
->range_end
== LLONG_MAX
)
353 while (!done
&& (index
<= end
) &&
354 (nr_pages
= pagevec_lookup_tag(&pvec
, mapping
, &index
,
356 min(end
- index
, (pgoff_t
)PAGEVEC_SIZE
-1) + 1))) {
358 ret
= gfs2_write_jdata_pagevec(mapping
, wbc
, &pvec
, nr_pages
, end
);
364 pagevec_release(&pvec
);
368 if (!scanned
&& !done
) {
370 * We hit the last page and there is more work to be done: wrap
371 * back to the start of the file
378 if (wbc
->range_cyclic
|| (range_whole
&& wbc
->nr_to_write
> 0))
379 mapping
->writeback_index
= index
;
385 * gfs2_jdata_writepages - Write a bunch of dirty pages back to disk
386 * @mapping: The mapping to write
387 * @wbc: The writeback control
391 static int gfs2_jdata_writepages(struct address_space
*mapping
,
392 struct writeback_control
*wbc
)
394 struct gfs2_inode
*ip
= GFS2_I(mapping
->host
);
395 struct gfs2_sbd
*sdp
= GFS2_SB(mapping
->host
);
398 ret
= gfs2_write_cache_jdata(mapping
, wbc
);
399 if (ret
== 0 && wbc
->sync_mode
== WB_SYNC_ALL
) {
400 gfs2_log_flush(sdp
, ip
->i_gl
);
401 ret
= gfs2_write_cache_jdata(mapping
, wbc
);
407 * stuffed_readpage - Fill in a Linux page with stuffed file data
414 static int stuffed_readpage(struct gfs2_inode
*ip
, struct page
*page
)
416 struct buffer_head
*dibh
;
417 u64 dsize
= i_size_read(&ip
->i_inode
);
422 * Due to the order of unstuffing files and ->fault(), we can be
423 * asked for a zero page in the case of a stuffed file being extended,
424 * so we need to supply one here. It doesn't happen often.
426 if (unlikely(page
->index
)) {
427 zero_user(page
, 0, PAGE_CACHE_SIZE
);
428 SetPageUptodate(page
);
432 error
= gfs2_meta_inode_buffer(ip
, &dibh
);
436 kaddr
= kmap_atomic(page
);
437 if (dsize
> (dibh
->b_size
- sizeof(struct gfs2_dinode
)))
438 dsize
= (dibh
->b_size
- sizeof(struct gfs2_dinode
));
439 memcpy(kaddr
, dibh
->b_data
+ sizeof(struct gfs2_dinode
), dsize
);
440 memset(kaddr
+ dsize
, 0, PAGE_CACHE_SIZE
- dsize
);
441 kunmap_atomic(kaddr
);
442 flush_dcache_page(page
);
444 SetPageUptodate(page
);
451 * __gfs2_readpage - readpage
452 * @file: The file to read a page for
453 * @page: The page to read
455 * This is the core of gfs2's readpage. Its used by the internal file
456 * reading code as in that case we already hold the glock. Also its
457 * called by gfs2_readpage() once the required lock has been granted.
461 static int __gfs2_readpage(void *file
, struct page
*page
)
463 struct gfs2_inode
*ip
= GFS2_I(page
->mapping
->host
);
464 struct gfs2_sbd
*sdp
= GFS2_SB(page
->mapping
->host
);
467 if (gfs2_is_stuffed(ip
)) {
468 error
= stuffed_readpage(ip
, page
);
471 error
= mpage_readpage(page
, gfs2_block_map
);
474 if (unlikely(test_bit(SDF_SHUTDOWN
, &sdp
->sd_flags
)))
481 * gfs2_readpage - read a page of a file
482 * @file: The file to read
483 * @page: The page of the file
485 * This deals with the locking required. We have to unlock and
486 * relock the page in order to get the locking in the right
490 static int gfs2_readpage(struct file
*file
, struct page
*page
)
492 struct address_space
*mapping
= page
->mapping
;
493 struct gfs2_inode
*ip
= GFS2_I(mapping
->host
);
494 struct gfs2_holder gh
;
498 gfs2_holder_init(ip
->i_gl
, LM_ST_SHARED
, 0, &gh
);
499 error
= gfs2_glock_nq(&gh
);
502 error
= AOP_TRUNCATED_PAGE
;
504 if (page
->mapping
== mapping
&& !PageUptodate(page
))
505 error
= __gfs2_readpage(file
, page
);
510 gfs2_holder_uninit(&gh
);
511 if (error
&& error
!= AOP_TRUNCATED_PAGE
)
517 * gfs2_internal_read - read an internal file
518 * @ip: The gfs2 inode
519 * @buf: The buffer to fill
520 * @pos: The file position
521 * @size: The amount to read
525 int gfs2_internal_read(struct gfs2_inode
*ip
, char *buf
, loff_t
*pos
,
528 struct address_space
*mapping
= ip
->i_inode
.i_mapping
;
529 unsigned long index
= *pos
/ PAGE_CACHE_SIZE
;
530 unsigned offset
= *pos
& (PAGE_CACHE_SIZE
- 1);
538 if (offset
+ size
> PAGE_CACHE_SIZE
)
539 amt
= PAGE_CACHE_SIZE
- offset
;
540 page
= read_cache_page(mapping
, index
, __gfs2_readpage
, NULL
);
542 return PTR_ERR(page
);
543 p
= kmap_atomic(page
);
544 memcpy(buf
+ copied
, p
+ offset
, amt
);
546 mark_page_accessed(page
);
547 page_cache_release(page
);
551 } while(copied
< size
);
557 * gfs2_readpages - Read a bunch of pages at once
560 * 1. This is only for readahead, so we can simply ignore any things
561 * which are slightly inconvenient (such as locking conflicts between
562 * the page lock and the glock) and return having done no I/O. Its
563 * obviously not something we'd want to do on too regular a basis.
564 * Any I/O we ignore at this time will be done via readpage later.
565 * 2. We don't handle stuffed files here we let readpage do the honours.
566 * 3. mpage_readpages() does most of the heavy lifting in the common case.
567 * 4. gfs2_block_map() is relied upon to set BH_Boundary in the right places.
570 static int gfs2_readpages(struct file
*file
, struct address_space
*mapping
,
571 struct list_head
*pages
, unsigned nr_pages
)
573 struct inode
*inode
= mapping
->host
;
574 struct gfs2_inode
*ip
= GFS2_I(inode
);
575 struct gfs2_sbd
*sdp
= GFS2_SB(inode
);
576 struct gfs2_holder gh
;
579 gfs2_holder_init(ip
->i_gl
, LM_ST_SHARED
, 0, &gh
);
580 ret
= gfs2_glock_nq(&gh
);
583 if (!gfs2_is_stuffed(ip
))
584 ret
= mpage_readpages(mapping
, pages
, nr_pages
, gfs2_block_map
);
587 gfs2_holder_uninit(&gh
);
588 if (unlikely(test_bit(SDF_SHUTDOWN
, &sdp
->sd_flags
)))
594 * gfs2_write_begin - Begin to write to a file
595 * @file: The file to write to
596 * @mapping: The mapping in which to write
597 * @pos: The file offset at which to start writing
598 * @len: Length of the write
599 * @flags: Various flags
600 * @pagep: Pointer to return the page
601 * @fsdata: Pointer to return fs data (unused by GFS2)
606 static int gfs2_write_begin(struct file
*file
, struct address_space
*mapping
,
607 loff_t pos
, unsigned len
, unsigned flags
,
608 struct page
**pagep
, void **fsdata
)
610 struct gfs2_inode
*ip
= GFS2_I(mapping
->host
);
611 struct gfs2_sbd
*sdp
= GFS2_SB(mapping
->host
);
612 struct gfs2_inode
*m_ip
= GFS2_I(sdp
->sd_statfs_inode
);
613 unsigned int data_blocks
= 0, ind_blocks
= 0, rblocks
;
614 unsigned requested
= 0;
617 pgoff_t index
= pos
>> PAGE_CACHE_SHIFT
;
618 unsigned from
= pos
& (PAGE_CACHE_SIZE
- 1);
621 gfs2_holder_init(ip
->i_gl
, LM_ST_EXCLUSIVE
, 0, &ip
->i_gh
);
622 error
= gfs2_glock_nq(&ip
->i_gh
);
625 if (&ip
->i_inode
== sdp
->sd_rindex
) {
626 error
= gfs2_glock_nq_init(m_ip
->i_gl
, LM_ST_EXCLUSIVE
,
627 GL_NOCACHE
, &m_ip
->i_gh
);
628 if (unlikely(error
)) {
629 gfs2_glock_dq(&ip
->i_gh
);
634 alloc_required
= gfs2_write_alloc_required(ip
, pos
, len
);
636 if (alloc_required
|| gfs2_is_jdata(ip
))
637 gfs2_write_calc_reserv(ip
, len
, &data_blocks
, &ind_blocks
);
639 if (alloc_required
) {
640 error
= gfs2_quota_lock_check(ip
);
644 requested
= data_blocks
+ ind_blocks
;
645 error
= gfs2_inplace_reserve(ip
, requested
, 0);
650 rblocks
= RES_DINODE
+ ind_blocks
;
651 if (gfs2_is_jdata(ip
))
652 rblocks
+= data_blocks
? data_blocks
: 1;
653 if (ind_blocks
|| data_blocks
)
654 rblocks
+= RES_STATFS
+ RES_QUOTA
;
655 if (&ip
->i_inode
== sdp
->sd_rindex
)
656 rblocks
+= 2 * RES_STATFS
;
658 rblocks
+= gfs2_rg_blocks(ip
, requested
);
660 error
= gfs2_trans_begin(sdp
, rblocks
,
661 PAGE_CACHE_SIZE
/sdp
->sd_sb
.sb_bsize
);
666 flags
|= AOP_FLAG_NOFS
;
667 page
= grab_cache_page_write_begin(mapping
, index
, flags
);
672 if (gfs2_is_stuffed(ip
)) {
674 if (pos
+ len
> sdp
->sd_sb
.sb_bsize
- sizeof(struct gfs2_dinode
)) {
675 error
= gfs2_unstuff_dinode(ip
, page
);
678 } else if (!PageUptodate(page
)) {
679 error
= stuffed_readpage(ip
, page
);
685 error
= __block_write_begin(page
, from
, len
, gfs2_block_map
);
691 page_cache_release(page
);
694 if (pos
+ len
> ip
->i_inode
.i_size
)
695 gfs2_trim_blocks(&ip
->i_inode
);
701 if (alloc_required
) {
702 gfs2_inplace_release(ip
);
704 gfs2_quota_unlock(ip
);
707 if (&ip
->i_inode
== sdp
->sd_rindex
) {
708 gfs2_glock_dq(&m_ip
->i_gh
);
709 gfs2_holder_uninit(&m_ip
->i_gh
);
711 gfs2_glock_dq(&ip
->i_gh
);
713 gfs2_holder_uninit(&ip
->i_gh
);
718 * adjust_fs_space - Adjusts the free space available due to gfs2_grow
719 * @inode: the rindex inode
721 static void adjust_fs_space(struct inode
*inode
)
723 struct gfs2_sbd
*sdp
= inode
->i_sb
->s_fs_info
;
724 struct gfs2_inode
*m_ip
= GFS2_I(sdp
->sd_statfs_inode
);
725 struct gfs2_inode
*l_ip
= GFS2_I(sdp
->sd_sc_inode
);
726 struct gfs2_statfs_change_host
*m_sc
= &sdp
->sd_statfs_master
;
727 struct gfs2_statfs_change_host
*l_sc
= &sdp
->sd_statfs_local
;
728 struct buffer_head
*m_bh
, *l_bh
;
729 u64 fs_total
, new_free
;
731 /* Total up the file system space, according to the latest rindex. */
732 fs_total
= gfs2_ri_total(sdp
);
733 if (gfs2_meta_inode_buffer(m_ip
, &m_bh
) != 0)
736 spin_lock(&sdp
->sd_statfs_spin
);
737 gfs2_statfs_change_in(m_sc
, m_bh
->b_data
+
738 sizeof(struct gfs2_dinode
));
739 if (fs_total
> (m_sc
->sc_total
+ l_sc
->sc_total
))
740 new_free
= fs_total
- (m_sc
->sc_total
+ l_sc
->sc_total
);
743 spin_unlock(&sdp
->sd_statfs_spin
);
744 fs_warn(sdp
, "File system extended by %llu blocks.\n",
745 (unsigned long long)new_free
);
746 gfs2_statfs_change(sdp
, new_free
, new_free
, 0);
748 if (gfs2_meta_inode_buffer(l_ip
, &l_bh
) != 0)
750 update_statfs(sdp
, m_bh
, l_bh
);
757 * gfs2_stuffed_write_end - Write end for stuffed files
759 * @dibh: The buffer_head containing the on-disk inode
760 * @pos: The file position
761 * @len: The length of the write
762 * @copied: How much was actually copied by the VFS
765 * This copies the data from the page into the inode block after
766 * the inode data structure itself.
770 static int gfs2_stuffed_write_end(struct inode
*inode
, struct buffer_head
*dibh
,
771 loff_t pos
, unsigned len
, unsigned copied
,
774 struct gfs2_inode
*ip
= GFS2_I(inode
);
775 struct gfs2_sbd
*sdp
= GFS2_SB(inode
);
776 struct gfs2_inode
*m_ip
= GFS2_I(sdp
->sd_statfs_inode
);
777 u64 to
= pos
+ copied
;
779 unsigned char *buf
= dibh
->b_data
+ sizeof(struct gfs2_dinode
);
781 BUG_ON((pos
+ len
) > (dibh
->b_size
- sizeof(struct gfs2_dinode
)));
782 kaddr
= kmap_atomic(page
);
783 memcpy(buf
+ pos
, kaddr
+ pos
, copied
);
784 memset(kaddr
+ pos
+ copied
, 0, len
- copied
);
785 flush_dcache_page(page
);
786 kunmap_atomic(kaddr
);
788 if (!PageUptodate(page
))
789 SetPageUptodate(page
);
791 page_cache_release(page
);
794 if (inode
->i_size
< to
)
795 i_size_write(inode
, to
);
796 mark_inode_dirty(inode
);
799 if (inode
== sdp
->sd_rindex
) {
800 adjust_fs_space(inode
);
801 sdp
->sd_rindex_uptodate
= 0;
806 if (inode
== sdp
->sd_rindex
) {
807 gfs2_glock_dq(&m_ip
->i_gh
);
808 gfs2_holder_uninit(&m_ip
->i_gh
);
810 gfs2_glock_dq(&ip
->i_gh
);
811 gfs2_holder_uninit(&ip
->i_gh
);
817 * @file: The file to write to
818 * @mapping: The address space to write to
819 * @pos: The file position
820 * @len: The length of the data
822 * @page: The page that has been written
823 * @fsdata: The fsdata (unused in GFS2)
825 * The main write_end function for GFS2. We have a separate one for
826 * stuffed files as they are slightly different, otherwise we just
827 * put our locking around the VFS provided functions.
832 static int gfs2_write_end(struct file
*file
, struct address_space
*mapping
,
833 loff_t pos
, unsigned len
, unsigned copied
,
834 struct page
*page
, void *fsdata
)
836 struct inode
*inode
= page
->mapping
->host
;
837 struct gfs2_inode
*ip
= GFS2_I(inode
);
838 struct gfs2_sbd
*sdp
= GFS2_SB(inode
);
839 struct gfs2_inode
*m_ip
= GFS2_I(sdp
->sd_statfs_inode
);
840 struct buffer_head
*dibh
;
841 unsigned int from
= pos
& (PAGE_CACHE_SIZE
- 1);
842 unsigned int to
= from
+ len
;
845 BUG_ON(gfs2_glock_is_locked_by_me(ip
->i_gl
) == NULL
);
847 ret
= gfs2_meta_inode_buffer(ip
, &dibh
);
850 page_cache_release(page
);
854 gfs2_trans_add_meta(ip
->i_gl
, dibh
);
856 if (gfs2_is_stuffed(ip
))
857 return gfs2_stuffed_write_end(inode
, dibh
, pos
, len
, copied
, page
);
859 if (!gfs2_is_writeback(ip
))
860 gfs2_page_add_databufs(ip
, page
, from
, to
);
862 ret
= generic_write_end(file
, mapping
, pos
, len
, copied
, page
, fsdata
);
864 if (inode
== sdp
->sd_rindex
) {
865 adjust_fs_space(inode
);
866 sdp
->sd_rindex_uptodate
= 0;
872 gfs2_inplace_release(ip
);
873 if (ip
->i_res
->rs_qa_qd_num
)
874 gfs2_quota_unlock(ip
);
875 if (inode
== sdp
->sd_rindex
) {
876 gfs2_glock_dq(&m_ip
->i_gh
);
877 gfs2_holder_uninit(&m_ip
->i_gh
);
879 gfs2_glock_dq(&ip
->i_gh
);
880 gfs2_holder_uninit(&ip
->i_gh
);
885 * gfs2_set_page_dirty - Page dirtying function
886 * @page: The page to dirty
888 * Returns: 1 if it dirtyed the page, or 0 otherwise
891 static int gfs2_set_page_dirty(struct page
*page
)
893 SetPageChecked(page
);
894 return __set_page_dirty_buffers(page
);
898 * gfs2_bmap - Block map function
899 * @mapping: Address space info
900 * @lblock: The block to map
902 * Returns: The disk address for the block or 0 on hole or error
905 static sector_t
gfs2_bmap(struct address_space
*mapping
, sector_t lblock
)
907 struct gfs2_inode
*ip
= GFS2_I(mapping
->host
);
908 struct gfs2_holder i_gh
;
912 error
= gfs2_glock_nq_init(ip
->i_gl
, LM_ST_SHARED
, LM_FLAG_ANY
, &i_gh
);
916 if (!gfs2_is_stuffed(ip
))
917 dblock
= generic_block_bmap(mapping
, lblock
, gfs2_block_map
);
919 gfs2_glock_dq_uninit(&i_gh
);
924 static void gfs2_discard(struct gfs2_sbd
*sdp
, struct buffer_head
*bh
)
926 struct gfs2_bufdata
*bd
;
930 clear_buffer_dirty(bh
);
933 if (!list_empty(&bd
->bd_list
) && !buffer_pinned(bh
))
934 list_del_init(&bd
->bd_list
);
936 gfs2_remove_from_journal(bh
, current
->journal_info
, 0);
939 clear_buffer_mapped(bh
);
940 clear_buffer_req(bh
);
941 clear_buffer_new(bh
);
942 gfs2_log_unlock(sdp
);
946 static void gfs2_invalidatepage(struct page
*page
, unsigned long offset
)
948 struct gfs2_sbd
*sdp
= GFS2_SB(page
->mapping
->host
);
949 struct buffer_head
*bh
, *head
;
950 unsigned long pos
= 0;
952 BUG_ON(!PageLocked(page
));
954 ClearPageChecked(page
);
955 if (!page_has_buffers(page
))
958 bh
= head
= page_buffers(page
);
961 gfs2_discard(sdp
, bh
);
963 bh
= bh
->b_this_page
;
964 } while (bh
!= head
);
967 try_to_release_page(page
, 0);
971 * gfs2_ok_for_dio - check that dio is valid on this file
974 * @offset: The offset at which we are reading or writing
976 * Returns: 0 (to ignore the i/o request and thus fall back to buffered i/o)
977 * 1 (to accept the i/o request)
979 static int gfs2_ok_for_dio(struct gfs2_inode
*ip
, int rw
, loff_t offset
)
982 * Should we return an error here? I can't see that O_DIRECT for
983 * a stuffed file makes any sense. For now we'll silently fall
984 * back to buffered I/O
986 if (gfs2_is_stuffed(ip
))
989 if (offset
>= i_size_read(&ip
->i_inode
))
996 static ssize_t
gfs2_direct_IO(int rw
, struct kiocb
*iocb
,
997 const struct iovec
*iov
, loff_t offset
,
998 unsigned long nr_segs
)
1000 struct file
*file
= iocb
->ki_filp
;
1001 struct inode
*inode
= file
->f_mapping
->host
;
1002 struct gfs2_inode
*ip
= GFS2_I(inode
);
1003 struct gfs2_holder gh
;
1007 * Deferred lock, even if its a write, since we do no allocation
1008 * on this path. All we need change is atime, and this lock mode
1009 * ensures that other nodes have flushed their buffered read caches
1010 * (i.e. their page cache entries for this inode). We do not,
1011 * unfortunately have the option of only flushing a range like
1014 gfs2_holder_init(ip
->i_gl
, LM_ST_DEFERRED
, 0, &gh
);
1015 rv
= gfs2_glock_nq(&gh
);
1018 rv
= gfs2_ok_for_dio(ip
, rw
, offset
);
1020 goto out
; /* dio not valid, fall back to buffered i/o */
1022 rv
= __blockdev_direct_IO(rw
, iocb
, inode
, inode
->i_sb
->s_bdev
, iov
,
1023 offset
, nr_segs
, gfs2_get_block_direct
,
1027 gfs2_holder_uninit(&gh
);
1032 * gfs2_releasepage - free the metadata associated with a page
1033 * @page: the page that's being released
1034 * @gfp_mask: passed from Linux VFS, ignored by us
1036 * Call try_to_free_buffers() if the buffers in this page can be
1042 int gfs2_releasepage(struct page
*page
, gfp_t gfp_mask
)
1044 struct address_space
*mapping
= page
->mapping
;
1045 struct gfs2_sbd
*sdp
= gfs2_mapping2sbd(mapping
);
1046 struct buffer_head
*bh
, *head
;
1047 struct gfs2_bufdata
*bd
;
1049 if (!page_has_buffers(page
))
1053 spin_lock(&sdp
->sd_ail_lock
);
1054 head
= bh
= page_buffers(page
);
1056 if (atomic_read(&bh
->b_count
))
1057 goto cannot_release
;
1059 if (bd
&& bd
->bd_tr
)
1060 goto cannot_release
;
1061 if (buffer_pinned(bh
) || buffer_dirty(bh
))
1063 bh
= bh
->b_this_page
;
1064 } while(bh
!= head
);
1065 spin_unlock(&sdp
->sd_ail_lock
);
1066 gfs2_log_unlock(sdp
);
1068 head
= bh
= page_buffers(page
);
1073 gfs2_assert_warn(sdp
, bd
->bd_bh
== bh
);
1074 if (!list_empty(&bd
->bd_list
)) {
1075 if (!buffer_pinned(bh
))
1076 list_del_init(&bd
->bd_list
);
1082 bh
->b_private
= NULL
;
1084 gfs2_log_unlock(sdp
);
1086 kmem_cache_free(gfs2_bufdata_cachep
, bd
);
1088 bh
= bh
->b_this_page
;
1089 } while (bh
!= head
);
1091 return try_to_free_buffers(page
);
1093 not_possible
: /* Should never happen */
1094 WARN_ON(buffer_dirty(bh
));
1095 WARN_ON(buffer_pinned(bh
));
1097 spin_unlock(&sdp
->sd_ail_lock
);
1098 gfs2_log_unlock(sdp
);
1102 static const struct address_space_operations gfs2_writeback_aops
= {
1103 .writepage
= gfs2_writeback_writepage
,
1104 .writepages
= gfs2_writepages
,
1105 .readpage
= gfs2_readpage
,
1106 .readpages
= gfs2_readpages
,
1107 .write_begin
= gfs2_write_begin
,
1108 .write_end
= gfs2_write_end
,
1110 .invalidatepage
= gfs2_invalidatepage
,
1111 .releasepage
= gfs2_releasepage
,
1112 .direct_IO
= gfs2_direct_IO
,
1113 .migratepage
= buffer_migrate_page
,
1114 .is_partially_uptodate
= block_is_partially_uptodate
,
1115 .error_remove_page
= generic_error_remove_page
,
1118 static const struct address_space_operations gfs2_ordered_aops
= {
1119 .writepage
= gfs2_ordered_writepage
,
1120 .writepages
= gfs2_writepages
,
1121 .readpage
= gfs2_readpage
,
1122 .readpages
= gfs2_readpages
,
1123 .write_begin
= gfs2_write_begin
,
1124 .write_end
= gfs2_write_end
,
1125 .set_page_dirty
= gfs2_set_page_dirty
,
1127 .invalidatepage
= gfs2_invalidatepage
,
1128 .releasepage
= gfs2_releasepage
,
1129 .direct_IO
= gfs2_direct_IO
,
1130 .migratepage
= buffer_migrate_page
,
1131 .is_partially_uptodate
= block_is_partially_uptodate
,
1132 .error_remove_page
= generic_error_remove_page
,
1135 static const struct address_space_operations gfs2_jdata_aops
= {
1136 .writepage
= gfs2_jdata_writepage
,
1137 .writepages
= gfs2_jdata_writepages
,
1138 .readpage
= gfs2_readpage
,
1139 .readpages
= gfs2_readpages
,
1140 .write_begin
= gfs2_write_begin
,
1141 .write_end
= gfs2_write_end
,
1142 .set_page_dirty
= gfs2_set_page_dirty
,
1144 .invalidatepage
= gfs2_invalidatepage
,
1145 .releasepage
= gfs2_releasepage
,
1146 .is_partially_uptodate
= block_is_partially_uptodate
,
1147 .error_remove_page
= generic_error_remove_page
,
1150 void gfs2_set_aops(struct inode
*inode
)
1152 struct gfs2_inode
*ip
= GFS2_I(inode
);
1154 if (gfs2_is_writeback(ip
))
1155 inode
->i_mapping
->a_ops
= &gfs2_writeback_aops
;
1156 else if (gfs2_is_ordered(ip
))
1157 inode
->i_mapping
->a_ops
= &gfs2_ordered_aops
;
1158 else if (gfs2_is_jdata(ip
))
1159 inode
->i_mapping
->a_ops
= &gfs2_jdata_aops
;