xref: /openbmc/linux/fs/gfs2/aops.c (revision cbb60951)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright (C) Sistina Software, Inc.  1997-2003 All rights reserved.
4  * Copyright (C) 2004-2008 Red Hat, Inc.  All rights reserved.
5  */
6 
7 #include <linux/sched.h>
8 #include <linux/slab.h>
9 #include <linux/spinlock.h>
10 #include <linux/completion.h>
11 #include <linux/buffer_head.h>
12 #include <linux/pagemap.h>
13 #include <linux/pagevec.h>
14 #include <linux/mpage.h>
15 #include <linux/fs.h>
16 #include <linux/writeback.h>
17 #include <linux/swap.h>
18 #include <linux/gfs2_ondisk.h>
19 #include <linux/backing-dev.h>
20 #include <linux/uio.h>
21 #include <trace/events/writeback.h>
22 #include <linux/sched/signal.h>
23 
24 #include "gfs2.h"
25 #include "incore.h"
26 #include "bmap.h"
27 #include "glock.h"
28 #include "inode.h"
29 #include "log.h"
30 #include "meta_io.h"
31 #include "quota.h"
32 #include "trans.h"
33 #include "rgrp.h"
34 #include "super.h"
35 #include "util.h"
36 #include "glops.h"
37 #include "aops.h"
38 
39 
40 void gfs2_page_add_databufs(struct gfs2_inode *ip, struct page *page,
41 			    unsigned int from, unsigned int len)
42 {
43 	struct buffer_head *head = page_buffers(page);
44 	unsigned int bsize = head->b_size;
45 	struct buffer_head *bh;
46 	unsigned int to = from + len;
47 	unsigned int start, end;
48 
49 	for (bh = head, start = 0; bh != head || !start;
50 	     bh = bh->b_this_page, start = end) {
51 		end = start + bsize;
52 		if (end <= from)
53 			continue;
54 		if (start >= to)
55 			break;
56 		set_buffer_uptodate(bh);
57 		gfs2_trans_add_data(ip->i_gl, bh);
58 	}
59 }
60 
61 /**
62  * gfs2_get_block_noalloc - Fills in a buffer head with details about a block
63  * @inode: The inode
64  * @lblock: The block number to look up
65  * @bh_result: The buffer head to return the result in
66  * @create: Non-zero if we may add block to the file
67  *
68  * Returns: errno
69  */
70 
71 static int gfs2_get_block_noalloc(struct inode *inode, sector_t lblock,
72 				  struct buffer_head *bh_result, int create)
73 {
74 	int error;
75 
76 	error = gfs2_block_map(inode, lblock, bh_result, 0);
77 	if (error)
78 		return error;
79 	if (!buffer_mapped(bh_result))
80 		return -ENODATA;
81 	return 0;
82 }
83 
84 /**
85  * gfs2_write_jdata_page - gfs2 jdata-specific version of block_write_full_page
86  * @page: The page to write
87  * @wbc: The writeback control
88  *
89  * This is the same as calling block_write_full_page, but it also
90  * writes pages outside of i_size
91  */
92 static int gfs2_write_jdata_page(struct page *page,
93 				 struct writeback_control *wbc)
94 {
95 	struct inode * const inode = page->mapping->host;
96 	loff_t i_size = i_size_read(inode);
97 	const pgoff_t end_index = i_size >> PAGE_SHIFT;
98 	unsigned offset;
99 
100 	/*
101 	 * The page straddles i_size.  It must be zeroed out on each and every
102 	 * writepage invocation because it may be mmapped.  "A file is mapped
103 	 * in multiples of the page size.  For a file that is not a multiple of
104 	 * the  page size, the remaining memory is zeroed when mapped, and
105 	 * writes to that region are not written out to the file."
106 	 */
107 	offset = i_size & (PAGE_SIZE - 1);
108 	if (page->index == end_index && offset)
109 		zero_user_segment(page, offset, PAGE_SIZE);
110 
111 	return __block_write_full_page(inode, page, gfs2_get_block_noalloc, wbc,
112 				       end_buffer_async_write);
113 }
114 
115 /**
116  * __gfs2_jdata_writepage - The core of jdata writepage
117  * @page: The page to write
118  * @wbc: The writeback control
119  *
120  * This is shared between writepage and writepages and implements the
121  * core of the writepage operation. If a transaction is required then
122  * PageChecked will have been set and the transaction will have
123  * already been started before this is called.
124  */
125 
126 static int __gfs2_jdata_writepage(struct page *page, struct writeback_control *wbc)
127 {
128 	struct inode *inode = page->mapping->host;
129 	struct gfs2_inode *ip = GFS2_I(inode);
130 
131 	if (PageChecked(page)) {
132 		ClearPageChecked(page);
133 		if (!page_has_buffers(page)) {
134 			create_empty_buffers(page, inode->i_sb->s_blocksize,
135 					     BIT(BH_Dirty)|BIT(BH_Uptodate));
136 		}
137 		gfs2_page_add_databufs(ip, page, 0, PAGE_SIZE);
138 	}
139 	return gfs2_write_jdata_page(page, wbc);
140 }
141 
142 /**
143  * gfs2_jdata_writepage - Write complete page
144  * @page: Page to write
145  * @wbc: The writeback control
146  *
147  * Returns: errno
148  *
149  */
150 
151 static int gfs2_jdata_writepage(struct page *page, struct writeback_control *wbc)
152 {
153 	struct inode *inode = page->mapping->host;
154 	struct gfs2_inode *ip = GFS2_I(inode);
155 	struct gfs2_sbd *sdp = GFS2_SB(inode);
156 
157 	if (gfs2_assert_withdraw(sdp, gfs2_glock_is_held_excl(ip->i_gl)))
158 		goto out;
159 	if (PageChecked(page) || current->journal_info)
160 		goto out_ignore;
161 	return __gfs2_jdata_writepage(page, wbc);
162 
163 out_ignore:
164 	redirty_page_for_writepage(wbc, page);
165 out:
166 	unlock_page(page);
167 	return 0;
168 }
169 
170 /**
171  * gfs2_writepages - Write a bunch of dirty pages back to disk
172  * @mapping: The mapping to write
173  * @wbc: Write-back control
174  *
175  * Used for both ordered and writeback modes.
176  */
177 static int gfs2_writepages(struct address_space *mapping,
178 			   struct writeback_control *wbc)
179 {
180 	struct gfs2_sbd *sdp = gfs2_mapping2sbd(mapping);
181 	struct iomap_writepage_ctx wpc = { };
182 	int ret;
183 
184 	/*
185 	 * Even if we didn't write any pages here, we might still be holding
186 	 * dirty pages in the ail. We forcibly flush the ail because we don't
187 	 * want balance_dirty_pages() to loop indefinitely trying to write out
188 	 * pages held in the ail that it can't find.
189 	 */
190 	ret = iomap_writepages(mapping, wbc, &wpc, &gfs2_writeback_ops);
191 	if (ret == 0)
192 		set_bit(SDF_FORCE_AIL_FLUSH, &sdp->sd_flags);
193 	return ret;
194 }
195 
196 /**
197  * gfs2_write_jdata_pagevec - Write back a pagevec's worth of pages
198  * @mapping: The mapping
199  * @wbc: The writeback control
200  * @pvec: The vector of pages
201  * @nr_pages: The number of pages to write
202  * @done_index: Page index
203  *
204  * Returns: non-zero if loop should terminate, zero otherwise
205  */
206 
207 static int gfs2_write_jdata_pagevec(struct address_space *mapping,
208 				    struct writeback_control *wbc,
209 				    struct pagevec *pvec,
210 				    int nr_pages,
211 				    pgoff_t *done_index)
212 {
213 	struct inode *inode = mapping->host;
214 	struct gfs2_sbd *sdp = GFS2_SB(inode);
215 	unsigned nrblocks = nr_pages * (PAGE_SIZE >> inode->i_blkbits);
216 	int i;
217 	int ret;
218 
219 	ret = gfs2_trans_begin(sdp, nrblocks, nrblocks);
220 	if (ret < 0)
221 		return ret;
222 
223 	for(i = 0; i < nr_pages; i++) {
224 		struct page *page = pvec->pages[i];
225 
226 		*done_index = page->index;
227 
228 		lock_page(page);
229 
230 		if (unlikely(page->mapping != mapping)) {
231 continue_unlock:
232 			unlock_page(page);
233 			continue;
234 		}
235 
236 		if (!PageDirty(page)) {
237 			/* someone wrote it for us */
238 			goto continue_unlock;
239 		}
240 
241 		if (PageWriteback(page)) {
242 			if (wbc->sync_mode != WB_SYNC_NONE)
243 				wait_on_page_writeback(page);
244 			else
245 				goto continue_unlock;
246 		}
247 
248 		BUG_ON(PageWriteback(page));
249 		if (!clear_page_dirty_for_io(page))
250 			goto continue_unlock;
251 
252 		trace_wbc_writepage(wbc, inode_to_bdi(inode));
253 
254 		ret = __gfs2_jdata_writepage(page, wbc);
255 		if (unlikely(ret)) {
256 			if (ret == AOP_WRITEPAGE_ACTIVATE) {
257 				unlock_page(page);
258 				ret = 0;
259 			} else {
260 
261 				/*
262 				 * done_index is set past this page,
263 				 * so media errors will not choke
264 				 * background writeout for the entire
265 				 * file. This has consequences for
266 				 * range_cyclic semantics (ie. it may
267 				 * not be suitable for data integrity
268 				 * writeout).
269 				 */
270 				*done_index = page->index + 1;
271 				ret = 1;
272 				break;
273 			}
274 		}
275 
276 		/*
277 		 * We stop writing back only if we are not doing
278 		 * integrity sync. In case of integrity sync we have to
279 		 * keep going until we have written all the pages
280 		 * we tagged for writeback prior to entering this loop.
281 		 */
282 		if (--wbc->nr_to_write <= 0 && wbc->sync_mode == WB_SYNC_NONE) {
283 			ret = 1;
284 			break;
285 		}
286 
287 	}
288 	gfs2_trans_end(sdp);
289 	return ret;
290 }
291 
292 /**
293  * gfs2_write_cache_jdata - Like write_cache_pages but different
294  * @mapping: The mapping to write
295  * @wbc: The writeback control
296  *
297  * The reason that we use our own function here is that we need to
298  * start transactions before we grab page locks. This allows us
299  * to get the ordering right.
300  */
301 
302 static int gfs2_write_cache_jdata(struct address_space *mapping,
303 				  struct writeback_control *wbc)
304 {
305 	int ret = 0;
306 	int done = 0;
307 	struct pagevec pvec;
308 	int nr_pages;
309 	pgoff_t writeback_index;
310 	pgoff_t index;
311 	pgoff_t end;
312 	pgoff_t done_index;
313 	int cycled;
314 	int range_whole = 0;
315 	xa_mark_t tag;
316 
317 	pagevec_init(&pvec);
318 	if (wbc->range_cyclic) {
319 		writeback_index = mapping->writeback_index; /* prev offset */
320 		index = writeback_index;
321 		if (index == 0)
322 			cycled = 1;
323 		else
324 			cycled = 0;
325 		end = -1;
326 	} else {
327 		index = wbc->range_start >> PAGE_SHIFT;
328 		end = wbc->range_end >> PAGE_SHIFT;
329 		if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX)
330 			range_whole = 1;
331 		cycled = 1; /* ignore range_cyclic tests */
332 	}
333 	if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages)
334 		tag = PAGECACHE_TAG_TOWRITE;
335 	else
336 		tag = PAGECACHE_TAG_DIRTY;
337 
338 retry:
339 	if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages)
340 		tag_pages_for_writeback(mapping, index, end);
341 	done_index = index;
342 	while (!done && (index <= end)) {
343 		nr_pages = pagevec_lookup_range_tag(&pvec, mapping, &index, end,
344 				tag);
345 		if (nr_pages == 0)
346 			break;
347 
348 		ret = gfs2_write_jdata_pagevec(mapping, wbc, &pvec, nr_pages, &done_index);
349 		if (ret)
350 			done = 1;
351 		if (ret > 0)
352 			ret = 0;
353 		pagevec_release(&pvec);
354 		cond_resched();
355 	}
356 
357 	if (!cycled && !done) {
358 		/*
359 		 * range_cyclic:
360 		 * We hit the last page and there is more work to be done: wrap
361 		 * back to the start of the file
362 		 */
363 		cycled = 1;
364 		index = 0;
365 		end = writeback_index - 1;
366 		goto retry;
367 	}
368 
369 	if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0))
370 		mapping->writeback_index = done_index;
371 
372 	return ret;
373 }
374 
375 
376 /**
377  * gfs2_jdata_writepages - Write a bunch of dirty pages back to disk
378  * @mapping: The mapping to write
379  * @wbc: The writeback control
380  *
381  */
382 
383 static int gfs2_jdata_writepages(struct address_space *mapping,
384 				 struct writeback_control *wbc)
385 {
386 	struct gfs2_inode *ip = GFS2_I(mapping->host);
387 	struct gfs2_sbd *sdp = GFS2_SB(mapping->host);
388 	int ret;
389 
390 	ret = gfs2_write_cache_jdata(mapping, wbc);
391 	if (ret == 0 && wbc->sync_mode == WB_SYNC_ALL) {
392 		gfs2_log_flush(sdp, ip->i_gl, GFS2_LOG_HEAD_FLUSH_NORMAL |
393 			       GFS2_LFC_JDATA_WPAGES);
394 		ret = gfs2_write_cache_jdata(mapping, wbc);
395 	}
396 	return ret;
397 }
398 
399 /**
400  * stuffed_readpage - Fill in a Linux page with stuffed file data
401  * @ip: the inode
402  * @page: the page
403  *
404  * Returns: errno
405  */
406 static int stuffed_readpage(struct gfs2_inode *ip, struct page *page)
407 {
408 	struct buffer_head *dibh;
409 	u64 dsize = i_size_read(&ip->i_inode);
410 	void *kaddr;
411 	int error;
412 
413 	/*
414 	 * Due to the order of unstuffing files and ->fault(), we can be
415 	 * asked for a zero page in the case of a stuffed file being extended,
416 	 * so we need to supply one here. It doesn't happen often.
417 	 */
418 	if (unlikely(page->index)) {
419 		zero_user(page, 0, PAGE_SIZE);
420 		SetPageUptodate(page);
421 		return 0;
422 	}
423 
424 	error = gfs2_meta_inode_buffer(ip, &dibh);
425 	if (error)
426 		return error;
427 
428 	kaddr = kmap_atomic(page);
429 	memcpy(kaddr, dibh->b_data + sizeof(struct gfs2_dinode), dsize);
430 	memset(kaddr + dsize, 0, PAGE_SIZE - dsize);
431 	kunmap_atomic(kaddr);
432 	flush_dcache_page(page);
433 	brelse(dibh);
434 	SetPageUptodate(page);
435 
436 	return 0;
437 }
438 
439 /**
440  * gfs2_read_folio - read a folio from a file
441  * @file: The file to read
442  * @folio: The folio in the file
443  */
444 static int gfs2_read_folio(struct file *file, struct folio *folio)
445 {
446 	struct inode *inode = folio->mapping->host;
447 	struct gfs2_inode *ip = GFS2_I(inode);
448 	struct gfs2_sbd *sdp = GFS2_SB(inode);
449 	int error;
450 
451 	if (!gfs2_is_jdata(ip) ||
452 	    (i_blocksize(inode) == PAGE_SIZE && !folio_buffers(folio))) {
453 		error = iomap_read_folio(folio, &gfs2_iomap_ops);
454 	} else if (gfs2_is_stuffed(ip)) {
455 		error = stuffed_readpage(ip, &folio->page);
456 		folio_unlock(folio);
457 	} else {
458 		error = mpage_read_folio(folio, gfs2_block_map);
459 	}
460 
461 	if (unlikely(gfs2_withdrawn(sdp)))
462 		return -EIO;
463 
464 	return error;
465 }
466 
467 /**
468  * gfs2_internal_read - read an internal file
469  * @ip: The gfs2 inode
470  * @buf: The buffer to fill
471  * @pos: The file position
472  * @size: The amount to read
473  *
474  */
475 
476 int gfs2_internal_read(struct gfs2_inode *ip, char *buf, loff_t *pos,
477                        unsigned size)
478 {
479 	struct address_space *mapping = ip->i_inode.i_mapping;
480 	unsigned long index = *pos >> PAGE_SHIFT;
481 	unsigned offset = *pos & (PAGE_SIZE - 1);
482 	unsigned copied = 0;
483 	unsigned amt;
484 	struct page *page;
485 	void *p;
486 
487 	do {
488 		amt = size - copied;
489 		if (offset + size > PAGE_SIZE)
490 			amt = PAGE_SIZE - offset;
491 		page = read_cache_page(mapping, index, gfs2_read_folio, NULL);
492 		if (IS_ERR(page))
493 			return PTR_ERR(page);
494 		p = kmap_atomic(page);
495 		memcpy(buf + copied, p + offset, amt);
496 		kunmap_atomic(p);
497 		put_page(page);
498 		copied += amt;
499 		index++;
500 		offset = 0;
501 	} while(copied < size);
502 	(*pos) += size;
503 	return size;
504 }
505 
506 /**
507  * gfs2_readahead - Read a bunch of pages at once
508  * @rac: Read-ahead control structure
509  *
510  * Some notes:
511  * 1. This is only for readahead, so we can simply ignore any things
512  *    which are slightly inconvenient (such as locking conflicts between
513  *    the page lock and the glock) and return having done no I/O. Its
514  *    obviously not something we'd want to do on too regular a basis.
515  *    Any I/O we ignore at this time will be done via readpage later.
516  * 2. We don't handle stuffed files here we let readpage do the honours.
517  * 3. mpage_readahead() does most of the heavy lifting in the common case.
518  * 4. gfs2_block_map() is relied upon to set BH_Boundary in the right places.
519  */
520 
521 static void gfs2_readahead(struct readahead_control *rac)
522 {
523 	struct inode *inode = rac->mapping->host;
524 	struct gfs2_inode *ip = GFS2_I(inode);
525 
526 	if (gfs2_is_stuffed(ip))
527 		;
528 	else if (gfs2_is_jdata(ip))
529 		mpage_readahead(rac, gfs2_block_map);
530 	else
531 		iomap_readahead(rac, &gfs2_iomap_ops);
532 }
533 
534 /**
535  * adjust_fs_space - Adjusts the free space available due to gfs2_grow
536  * @inode: the rindex inode
537  */
538 void adjust_fs_space(struct inode *inode)
539 {
540 	struct gfs2_sbd *sdp = GFS2_SB(inode);
541 	struct gfs2_inode *m_ip = GFS2_I(sdp->sd_statfs_inode);
542 	struct gfs2_statfs_change_host *m_sc = &sdp->sd_statfs_master;
543 	struct gfs2_statfs_change_host *l_sc = &sdp->sd_statfs_local;
544 	struct buffer_head *m_bh;
545 	u64 fs_total, new_free;
546 
547 	if (gfs2_trans_begin(sdp, 2 * RES_STATFS, 0) != 0)
548 		return;
549 
550 	/* Total up the file system space, according to the latest rindex. */
551 	fs_total = gfs2_ri_total(sdp);
552 	if (gfs2_meta_inode_buffer(m_ip, &m_bh) != 0)
553 		goto out;
554 
555 	spin_lock(&sdp->sd_statfs_spin);
556 	gfs2_statfs_change_in(m_sc, m_bh->b_data +
557 			      sizeof(struct gfs2_dinode));
558 	if (fs_total > (m_sc->sc_total + l_sc->sc_total))
559 		new_free = fs_total - (m_sc->sc_total + l_sc->sc_total);
560 	else
561 		new_free = 0;
562 	spin_unlock(&sdp->sd_statfs_spin);
563 	fs_warn(sdp, "File system extended by %llu blocks.\n",
564 		(unsigned long long)new_free);
565 	gfs2_statfs_change(sdp, new_free, new_free, 0);
566 
567 	update_statfs(sdp, m_bh);
568 	brelse(m_bh);
569 out:
570 	sdp->sd_rindex_uptodate = 0;
571 	gfs2_trans_end(sdp);
572 }
573 
574 static bool jdata_dirty_folio(struct address_space *mapping,
575 		struct folio *folio)
576 {
577 	if (current->journal_info)
578 		folio_set_checked(folio);
579 	return block_dirty_folio(mapping, folio);
580 }
581 
582 /**
583  * gfs2_bmap - Block map function
584  * @mapping: Address space info
585  * @lblock: The block to map
586  *
587  * Returns: The disk address for the block or 0 on hole or error
588  */
589 
590 static sector_t gfs2_bmap(struct address_space *mapping, sector_t lblock)
591 {
592 	struct gfs2_inode *ip = GFS2_I(mapping->host);
593 	struct gfs2_holder i_gh;
594 	sector_t dblock = 0;
595 	int error;
596 
597 	error = gfs2_glock_nq_init(ip->i_gl, LM_ST_SHARED, LM_FLAG_ANY, &i_gh);
598 	if (error)
599 		return 0;
600 
601 	if (!gfs2_is_stuffed(ip))
602 		dblock = iomap_bmap(mapping, lblock, &gfs2_iomap_ops);
603 
604 	gfs2_glock_dq_uninit(&i_gh);
605 
606 	return dblock;
607 }
608 
609 static void gfs2_discard(struct gfs2_sbd *sdp, struct buffer_head *bh)
610 {
611 	struct gfs2_bufdata *bd;
612 
613 	lock_buffer(bh);
614 	gfs2_log_lock(sdp);
615 	clear_buffer_dirty(bh);
616 	bd = bh->b_private;
617 	if (bd) {
618 		if (!list_empty(&bd->bd_list) && !buffer_pinned(bh))
619 			list_del_init(&bd->bd_list);
620 		else {
621 			spin_lock(&sdp->sd_ail_lock);
622 			gfs2_remove_from_journal(bh, REMOVE_JDATA);
623 			spin_unlock(&sdp->sd_ail_lock);
624 		}
625 	}
626 	bh->b_bdev = NULL;
627 	clear_buffer_mapped(bh);
628 	clear_buffer_req(bh);
629 	clear_buffer_new(bh);
630 	gfs2_log_unlock(sdp);
631 	unlock_buffer(bh);
632 }
633 
634 static void gfs2_invalidate_folio(struct folio *folio, size_t offset,
635 				size_t length)
636 {
637 	struct gfs2_sbd *sdp = GFS2_SB(folio->mapping->host);
638 	size_t stop = offset + length;
639 	int partial_page = (offset || length < folio_size(folio));
640 	struct buffer_head *bh, *head;
641 	unsigned long pos = 0;
642 
643 	BUG_ON(!folio_test_locked(folio));
644 	if (!partial_page)
645 		folio_clear_checked(folio);
646 	head = folio_buffers(folio);
647 	if (!head)
648 		goto out;
649 
650 	bh = head;
651 	do {
652 		if (pos + bh->b_size > stop)
653 			return;
654 
655 		if (offset <= pos)
656 			gfs2_discard(sdp, bh);
657 		pos += bh->b_size;
658 		bh = bh->b_this_page;
659 	} while (bh != head);
660 out:
661 	if (!partial_page)
662 		filemap_release_folio(folio, 0);
663 }
664 
665 /**
666  * gfs2_release_folio - free the metadata associated with a folio
667  * @folio: the folio that's being released
668  * @gfp_mask: passed from Linux VFS, ignored by us
669  *
670  * Calls try_to_free_buffers() to free the buffers and put the folio if the
671  * buffers can be released.
672  *
673  * Returns: true if the folio was put or else false
674  */
675 
676 bool gfs2_release_folio(struct folio *folio, gfp_t gfp_mask)
677 {
678 	struct address_space *mapping = folio->mapping;
679 	struct gfs2_sbd *sdp = gfs2_mapping2sbd(mapping);
680 	struct buffer_head *bh, *head;
681 	struct gfs2_bufdata *bd;
682 
683 	head = folio_buffers(folio);
684 	if (!head)
685 		return false;
686 
687 	/*
688 	 * mm accommodates an old ext3 case where clean folios might
689 	 * not have had the dirty bit cleared.	Thus, it can send actual
690 	 * dirty folios to ->release_folio() via shrink_active_list().
691 	 *
692 	 * As a workaround, we skip folios that contain dirty buffers
693 	 * below.  Once ->release_folio isn't called on dirty folios
694 	 * anymore, we can warn on dirty buffers like we used to here
695 	 * again.
696 	 */
697 
698 	gfs2_log_lock(sdp);
699 	bh = head;
700 	do {
701 		if (atomic_read(&bh->b_count))
702 			goto cannot_release;
703 		bd = bh->b_private;
704 		if (bd && bd->bd_tr)
705 			goto cannot_release;
706 		if (buffer_dirty(bh) || WARN_ON(buffer_pinned(bh)))
707 			goto cannot_release;
708 		bh = bh->b_this_page;
709 	} while (bh != head);
710 
711 	bh = head;
712 	do {
713 		bd = bh->b_private;
714 		if (bd) {
715 			gfs2_assert_warn(sdp, bd->bd_bh == bh);
716 			bd->bd_bh = NULL;
717 			bh->b_private = NULL;
718 			/*
719 			 * The bd may still be queued as a revoke, in which
720 			 * case we must not dequeue nor free it.
721 			 */
722 			if (!bd->bd_blkno && !list_empty(&bd->bd_list))
723 				list_del_init(&bd->bd_list);
724 			if (list_empty(&bd->bd_list))
725 				kmem_cache_free(gfs2_bufdata_cachep, bd);
726 		}
727 
728 		bh = bh->b_this_page;
729 	} while (bh != head);
730 	gfs2_log_unlock(sdp);
731 
732 	return try_to_free_buffers(folio);
733 
734 cannot_release:
735 	gfs2_log_unlock(sdp);
736 	return false;
737 }
738 
739 static const struct address_space_operations gfs2_aops = {
740 	.writepages = gfs2_writepages,
741 	.read_folio = gfs2_read_folio,
742 	.readahead = gfs2_readahead,
743 	.dirty_folio = filemap_dirty_folio,
744 	.release_folio = iomap_release_folio,
745 	.invalidate_folio = iomap_invalidate_folio,
746 	.bmap = gfs2_bmap,
747 	.direct_IO = noop_direct_IO,
748 	.migrate_folio = filemap_migrate_folio,
749 	.is_partially_uptodate = iomap_is_partially_uptodate,
750 	.error_remove_page = generic_error_remove_page,
751 };
752 
753 static const struct address_space_operations gfs2_jdata_aops = {
754 	.writepage = gfs2_jdata_writepage,
755 	.writepages = gfs2_jdata_writepages,
756 	.read_folio = gfs2_read_folio,
757 	.readahead = gfs2_readahead,
758 	.dirty_folio = jdata_dirty_folio,
759 	.bmap = gfs2_bmap,
760 	.invalidate_folio = gfs2_invalidate_folio,
761 	.release_folio = gfs2_release_folio,
762 	.is_partially_uptodate = block_is_partially_uptodate,
763 	.error_remove_page = generic_error_remove_page,
764 };
765 
766 void gfs2_set_aops(struct inode *inode)
767 {
768 	if (gfs2_is_jdata(GFS2_I(inode)))
769 		inode->i_mapping->a_ops = &gfs2_jdata_aops;
770 	else
771 		inode->i_mapping->a_ops = &gfs2_aops;
772 }
773