1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Buffer/page management specific to NILFS
4  *
5  * Copyright (C) 2005-2008 Nippon Telegraph and Telephone Corporation.
6  *
7  * Written by Ryusuke Konishi and Seiji Kihara.
8  */
9 
10 #include <linux/pagemap.h>
11 #include <linux/writeback.h>
12 #include <linux/swap.h>
13 #include <linux/bitops.h>
14 #include <linux/page-flags.h>
15 #include <linux/list.h>
16 #include <linux/highmem.h>
17 #include <linux/pagevec.h>
18 #include <linux/gfp.h>
19 #include "nilfs.h"
20 #include "page.h"
21 #include "mdt.h"
22 
23 
24 #define NILFS_BUFFER_INHERENT_BITS					\
25 	(BIT(BH_Uptodate) | BIT(BH_Mapped) | BIT(BH_NILFS_Node) |	\
26 	 BIT(BH_NILFS_Volatile) | BIT(BH_NILFS_Checked))
27 
__nilfs_get_folio_block(struct folio * folio,unsigned long block,pgoff_t index,int blkbits,unsigned long b_state)28 static struct buffer_head *__nilfs_get_folio_block(struct folio *folio,
29 		unsigned long block, pgoff_t index, int blkbits,
30 		unsigned long b_state)
31 
32 {
33 	unsigned long first_block;
34 	struct buffer_head *bh = folio_buffers(folio);
35 
36 	if (!bh)
37 		bh = create_empty_buffers(folio, 1 << blkbits, b_state);
38 
39 	first_block = (unsigned long)index << (PAGE_SHIFT - blkbits);
40 	bh = get_nth_bh(bh, block - first_block);
41 
42 	wait_on_buffer(bh);
43 	return bh;
44 }
45 
nilfs_grab_buffer(struct inode * inode,struct address_space * mapping,unsigned long blkoff,unsigned long b_state)46 struct buffer_head *nilfs_grab_buffer(struct inode *inode,
47 				      struct address_space *mapping,
48 				      unsigned long blkoff,
49 				      unsigned long b_state)
50 {
51 	int blkbits = inode->i_blkbits;
52 	pgoff_t index = blkoff >> (PAGE_SHIFT - blkbits);
53 	struct folio *folio;
54 	struct buffer_head *bh;
55 
56 	folio = filemap_grab_folio(mapping, index);
57 	if (IS_ERR(folio))
58 		return NULL;
59 
60 	bh = __nilfs_get_folio_block(folio, blkoff, index, blkbits, b_state);
61 	if (unlikely(!bh)) {
62 		folio_unlock(folio);
63 		folio_put(folio);
64 		return NULL;
65 	}
66 	bh->b_bdev = inode->i_sb->s_bdev;
67 	return bh;
68 }
69 
70 /**
71  * nilfs_forget_buffer - discard dirty state
72  * @bh: buffer head of the buffer to be discarded
73  */
nilfs_forget_buffer(struct buffer_head * bh)74 void nilfs_forget_buffer(struct buffer_head *bh)
75 {
76 	struct folio *folio = bh->b_folio;
77 	const unsigned long clear_bits =
78 		(BIT(BH_Uptodate) | BIT(BH_Dirty) | BIT(BH_Mapped) |
79 		 BIT(BH_Async_Write) | BIT(BH_NILFS_Volatile) |
80 		 BIT(BH_NILFS_Checked) | BIT(BH_NILFS_Redirected) |
81 		 BIT(BH_Delay));
82 
83 	lock_buffer(bh);
84 	set_mask_bits(&bh->b_state, clear_bits, 0);
85 	if (nilfs_folio_buffers_clean(folio))
86 		__nilfs_clear_folio_dirty(folio);
87 
88 	bh->b_blocknr = -1;
89 	folio_clear_uptodate(folio);
90 	folio_clear_mappedtodisk(folio);
91 	unlock_buffer(bh);
92 	brelse(bh);
93 }
94 
95 /**
96  * nilfs_copy_buffer -- copy buffer data and flags
97  * @dbh: destination buffer
98  * @sbh: source buffer
99  */
nilfs_copy_buffer(struct buffer_head * dbh,struct buffer_head * sbh)100 void nilfs_copy_buffer(struct buffer_head *dbh, struct buffer_head *sbh)
101 {
102 	void *saddr, *daddr;
103 	unsigned long bits;
104 	struct folio *sfolio = sbh->b_folio, *dfolio = dbh->b_folio;
105 	struct buffer_head *bh;
106 
107 	saddr = kmap_local_folio(sfolio, bh_offset(sbh));
108 	daddr = kmap_local_folio(dfolio, bh_offset(dbh));
109 	memcpy(daddr, saddr, sbh->b_size);
110 	kunmap_local(daddr);
111 	kunmap_local(saddr);
112 
113 	dbh->b_state = sbh->b_state & NILFS_BUFFER_INHERENT_BITS;
114 	dbh->b_blocknr = sbh->b_blocknr;
115 	dbh->b_bdev = sbh->b_bdev;
116 
117 	bh = dbh;
118 	bits = sbh->b_state & (BIT(BH_Uptodate) | BIT(BH_Mapped));
119 	while ((bh = bh->b_this_page) != dbh) {
120 		lock_buffer(bh);
121 		bits &= bh->b_state;
122 		unlock_buffer(bh);
123 	}
124 	if (bits & BIT(BH_Uptodate))
125 		folio_mark_uptodate(dfolio);
126 	else
127 		folio_clear_uptodate(dfolio);
128 	if (bits & BIT(BH_Mapped))
129 		folio_set_mappedtodisk(dfolio);
130 	else
131 		folio_clear_mappedtodisk(dfolio);
132 }
133 
134 /**
135  * nilfs_folio_buffers_clean - Check if a folio has dirty buffers or not.
136  * @folio: Folio to be checked.
137  *
138  * Return: false if the folio has dirty buffers, true otherwise.
139  */
nilfs_folio_buffers_clean(struct folio * folio)140 bool nilfs_folio_buffers_clean(struct folio *folio)
141 {
142 	struct buffer_head *bh, *head;
143 
144 	bh = head = folio_buffers(folio);
145 	do {
146 		if (buffer_dirty(bh))
147 			return false;
148 		bh = bh->b_this_page;
149 	} while (bh != head);
150 	return true;
151 }
152 
nilfs_folio_bug(struct folio * folio)153 void nilfs_folio_bug(struct folio *folio)
154 {
155 	struct buffer_head *bh, *head;
156 	struct address_space *m;
157 	unsigned long ino;
158 
159 	if (unlikely(!folio)) {
160 		printk(KERN_CRIT "NILFS_FOLIO_BUG(NULL)\n");
161 		return;
162 	}
163 
164 	m = folio->mapping;
165 	ino = m ? m->host->i_ino : 0;
166 
167 	printk(KERN_CRIT "NILFS_FOLIO_BUG(%p): cnt=%d index#=%llu flags=0x%lx "
168 	       "mapping=%p ino=%lu\n",
169 	       folio, folio_ref_count(folio),
170 	       (unsigned long long)folio->index, folio->flags, m, ino);
171 
172 	head = folio_buffers(folio);
173 	if (head) {
174 		int i = 0;
175 
176 		bh = head;
177 		do {
178 			printk(KERN_CRIT
179 			       " BH[%d] %p: cnt=%d block#=%llu state=0x%lx\n",
180 			       i++, bh, atomic_read(&bh->b_count),
181 			       (unsigned long long)bh->b_blocknr, bh->b_state);
182 			bh = bh->b_this_page;
183 		} while (bh != head);
184 	}
185 }
186 
187 /**
188  * nilfs_copy_folio -- copy the folio with buffers
189  * @dst: destination folio
190  * @src: source folio
191  * @copy_dirty: flag whether to copy dirty states on the folio's buffer heads.
192  *
193  * This function is for both data folios and btnode folios.  The dirty flag
194  * should be treated by caller.  The folio must not be under i/o.
195  * Both src and dst folio must be locked
196  */
nilfs_copy_folio(struct folio * dst,struct folio * src,bool copy_dirty)197 static void nilfs_copy_folio(struct folio *dst, struct folio *src,
198 		bool copy_dirty)
199 {
200 	struct buffer_head *dbh, *dbufs, *sbh;
201 	unsigned long mask = NILFS_BUFFER_INHERENT_BITS;
202 
203 	BUG_ON(folio_test_writeback(dst));
204 
205 	sbh = folio_buffers(src);
206 	dbh = folio_buffers(dst);
207 	if (!dbh)
208 		dbh = create_empty_buffers(dst, sbh->b_size, 0);
209 
210 	if (copy_dirty)
211 		mask |= BIT(BH_Dirty);
212 
213 	dbufs = dbh;
214 	do {
215 		lock_buffer(sbh);
216 		lock_buffer(dbh);
217 		dbh->b_state = sbh->b_state & mask;
218 		dbh->b_blocknr = sbh->b_blocknr;
219 		dbh->b_bdev = sbh->b_bdev;
220 		sbh = sbh->b_this_page;
221 		dbh = dbh->b_this_page;
222 	} while (dbh != dbufs);
223 
224 	folio_copy(dst, src);
225 
226 	if (folio_test_uptodate(src) && !folio_test_uptodate(dst))
227 		folio_mark_uptodate(dst);
228 	else if (!folio_test_uptodate(src) && folio_test_uptodate(dst))
229 		folio_clear_uptodate(dst);
230 	if (folio_test_mappedtodisk(src) && !folio_test_mappedtodisk(dst))
231 		folio_set_mappedtodisk(dst);
232 	else if (!folio_test_mappedtodisk(src) && folio_test_mappedtodisk(dst))
233 		folio_clear_mappedtodisk(dst);
234 
235 	do {
236 		unlock_buffer(sbh);
237 		unlock_buffer(dbh);
238 		sbh = sbh->b_this_page;
239 		dbh = dbh->b_this_page;
240 	} while (dbh != dbufs);
241 }
242 
nilfs_copy_dirty_pages(struct address_space * dmap,struct address_space * smap)243 int nilfs_copy_dirty_pages(struct address_space *dmap,
244 			   struct address_space *smap)
245 {
246 	struct folio_batch fbatch;
247 	unsigned int i;
248 	pgoff_t index = 0;
249 	int err = 0;
250 
251 	folio_batch_init(&fbatch);
252 repeat:
253 	if (!filemap_get_folios_tag(smap, &index, (pgoff_t)-1,
254 				PAGECACHE_TAG_DIRTY, &fbatch))
255 		return 0;
256 
257 	for (i = 0; i < folio_batch_count(&fbatch); i++) {
258 		struct folio *folio = fbatch.folios[i], *dfolio;
259 
260 		folio_lock(folio);
261 		if (unlikely(!folio_test_dirty(folio)))
262 			NILFS_FOLIO_BUG(folio, "inconsistent dirty state");
263 
264 		dfolio = filemap_grab_folio(dmap, folio->index);
265 		if (IS_ERR(dfolio)) {
266 			/* No empty page is added to the page cache */
267 			folio_unlock(folio);
268 			err = PTR_ERR(dfolio);
269 			break;
270 		}
271 		if (unlikely(!folio_buffers(folio)))
272 			NILFS_FOLIO_BUG(folio,
273 				       "found empty page in dat page cache");
274 
275 		nilfs_copy_folio(dfolio, folio, true);
276 		filemap_dirty_folio(folio_mapping(dfolio), dfolio);
277 
278 		folio_unlock(dfolio);
279 		folio_put(dfolio);
280 		folio_unlock(folio);
281 	}
282 	folio_batch_release(&fbatch);
283 	cond_resched();
284 
285 	if (likely(!err))
286 		goto repeat;
287 	return err;
288 }
289 
290 /**
291  * nilfs_copy_back_pages -- copy back pages to original cache from shadow cache
292  * @dmap: destination page cache
293  * @smap: source page cache
294  *
295  * No pages must be added to the cache during this process.
296  * This must be ensured by the caller.
297  */
nilfs_copy_back_pages(struct address_space * dmap,struct address_space * smap)298 void nilfs_copy_back_pages(struct address_space *dmap,
299 			   struct address_space *smap)
300 {
301 	struct folio_batch fbatch;
302 	unsigned int i, n;
303 	pgoff_t start = 0;
304 
305 	folio_batch_init(&fbatch);
306 repeat:
307 	n = filemap_get_folios(smap, &start, ~0UL, &fbatch);
308 	if (!n)
309 		return;
310 
311 	for (i = 0; i < folio_batch_count(&fbatch); i++) {
312 		struct folio *folio = fbatch.folios[i], *dfolio;
313 		pgoff_t index = folio->index;
314 
315 		folio_lock(folio);
316 		dfolio = filemap_lock_folio(dmap, index);
317 		if (!IS_ERR(dfolio)) {
318 			/* overwrite existing folio in the destination cache */
319 			WARN_ON(folio_test_dirty(dfolio));
320 			nilfs_copy_folio(dfolio, folio, false);
321 			folio_unlock(dfolio);
322 			folio_put(dfolio);
323 			/* Do we not need to remove folio from smap here? */
324 		} else {
325 			struct folio *f;
326 
327 			/* move the folio to the destination cache */
328 			xa_lock_irq(&smap->i_pages);
329 			f = __xa_erase(&smap->i_pages, index);
330 			WARN_ON(folio != f);
331 			smap->nrpages--;
332 			xa_unlock_irq(&smap->i_pages);
333 
334 			xa_lock_irq(&dmap->i_pages);
335 			f = __xa_store(&dmap->i_pages, index, folio, GFP_NOFS);
336 			if (unlikely(f)) {
337 				/* Probably -ENOMEM */
338 				folio->mapping = NULL;
339 				folio_put(folio);
340 			} else {
341 				folio->mapping = dmap;
342 				dmap->nrpages++;
343 				if (folio_test_dirty(folio))
344 					__xa_set_mark(&dmap->i_pages, index,
345 							PAGECACHE_TAG_DIRTY);
346 			}
347 			xa_unlock_irq(&dmap->i_pages);
348 		}
349 		folio_unlock(folio);
350 	}
351 	folio_batch_release(&fbatch);
352 	cond_resched();
353 
354 	goto repeat;
355 }
356 
357 /**
358  * nilfs_clear_dirty_pages - discard dirty pages in address space
359  * @mapping: address space with dirty pages for discarding
360  */
nilfs_clear_dirty_pages(struct address_space * mapping)361 void nilfs_clear_dirty_pages(struct address_space *mapping)
362 {
363 	struct folio_batch fbatch;
364 	unsigned int i;
365 	pgoff_t index = 0;
366 
367 	folio_batch_init(&fbatch);
368 
369 	while (filemap_get_folios_tag(mapping, &index, (pgoff_t)-1,
370 				PAGECACHE_TAG_DIRTY, &fbatch)) {
371 		for (i = 0; i < folio_batch_count(&fbatch); i++) {
372 			struct folio *folio = fbatch.folios[i];
373 
374 			folio_lock(folio);
375 
376 			/*
377 			 * This folio may have been removed from the address
378 			 * space by truncation or invalidation when the lock
379 			 * was acquired.  Skip processing in that case.
380 			 */
381 			if (likely(folio->mapping == mapping))
382 				nilfs_clear_folio_dirty(folio);
383 
384 			folio_unlock(folio);
385 		}
386 		folio_batch_release(&fbatch);
387 		cond_resched();
388 	}
389 }
390 
391 /**
392  * nilfs_clear_folio_dirty - discard dirty folio
393  * @folio: dirty folio that will be discarded
394  *
395  * nilfs_clear_folio_dirty() clears working states including dirty state for
396  * the folio and its buffers.  If the folio has buffers, clear only if it is
397  * confirmed that none of the buffer heads are busy (none have valid
398  * references and none are locked).
399  */
nilfs_clear_folio_dirty(struct folio * folio)400 void nilfs_clear_folio_dirty(struct folio *folio)
401 {
402 	struct buffer_head *bh, *head;
403 
404 	BUG_ON(!folio_test_locked(folio));
405 
406 	head = folio_buffers(folio);
407 	if (head) {
408 		const unsigned long clear_bits =
409 			(BIT(BH_Uptodate) | BIT(BH_Dirty) | BIT(BH_Mapped) |
410 			 BIT(BH_Async_Write) | BIT(BH_NILFS_Volatile) |
411 			 BIT(BH_NILFS_Checked) | BIT(BH_NILFS_Redirected) |
412 			 BIT(BH_Delay));
413 		bool busy, invalidated = false;
414 
415 recheck_buffers:
416 		busy = false;
417 		bh = head;
418 		do {
419 			if (atomic_read(&bh->b_count) | buffer_locked(bh)) {
420 				busy = true;
421 				break;
422 			}
423 		} while (bh = bh->b_this_page, bh != head);
424 
425 		if (busy) {
426 			if (invalidated)
427 				return;
428 			invalidate_bh_lrus();
429 			invalidated = true;
430 			goto recheck_buffers;
431 		}
432 
433 		bh = head;
434 		do {
435 			lock_buffer(bh);
436 			set_mask_bits(&bh->b_state, clear_bits, 0);
437 			unlock_buffer(bh);
438 		} while (bh = bh->b_this_page, bh != head);
439 	}
440 
441 	folio_clear_uptodate(folio);
442 	folio_clear_mappedtodisk(folio);
443 	folio_clear_checked(folio);
444 	__nilfs_clear_folio_dirty(folio);
445 }
446 
nilfs_page_count_clean_buffers(struct folio * folio,unsigned int from,unsigned int to)447 unsigned int nilfs_page_count_clean_buffers(struct folio *folio,
448 					    unsigned int from, unsigned int to)
449 {
450 	unsigned int block_start, block_end;
451 	struct buffer_head *bh, *head;
452 	unsigned int nc = 0;
453 
454 	for (bh = head = folio_buffers(folio), block_start = 0;
455 	     bh != head || !block_start;
456 	     block_start = block_end, bh = bh->b_this_page) {
457 		block_end = block_start + bh->b_size;
458 		if (block_end > from && block_start < to && !buffer_dirty(bh))
459 			nc++;
460 	}
461 	return nc;
462 }
463 
464 /*
465  * NILFS2 needs clear_page_dirty() in the following two cases:
466  *
467  * 1) For B-tree node pages and data pages of DAT file, NILFS2 clears dirty
468  *    flag of pages when it copies back pages from shadow cache to the
469  *    original cache.
470  *
471  * 2) Some B-tree operations like insertion or deletion may dispose buffers
472  *    in dirty state, and this needs to cancel the dirty state of their pages.
473  */
__nilfs_clear_folio_dirty(struct folio * folio)474 void __nilfs_clear_folio_dirty(struct folio *folio)
475 {
476 	struct address_space *mapping = folio->mapping;
477 
478 	if (mapping) {
479 		xa_lock_irq(&mapping->i_pages);
480 		if (folio_test_dirty(folio)) {
481 			__xa_clear_mark(&mapping->i_pages, folio->index,
482 					     PAGECACHE_TAG_DIRTY);
483 			xa_unlock_irq(&mapping->i_pages);
484 			folio_clear_dirty_for_io(folio);
485 			return;
486 		}
487 		xa_unlock_irq(&mapping->i_pages);
488 		return;
489 	}
490 	folio_clear_dirty(folio);
491 }
492 
493 /**
494  * nilfs_find_uncommitted_extent - find extent of uncommitted data
495  * @inode: inode
496  * @start_blk: start block offset (in)
497  * @blkoff: start offset of the found extent (out)
498  *
499  * This function searches an extent of buffers marked "delayed" which
500  * starts from a block offset equal to or larger than @start_blk.  If
501  * such an extent was found, this will store the start offset in
502  * @blkoff and return its length in blocks.
503  *
504  * Return: Length in blocks of found extent, 0 otherwise.
505  */
nilfs_find_uncommitted_extent(struct inode * inode,sector_t start_blk,sector_t * blkoff)506 unsigned long nilfs_find_uncommitted_extent(struct inode *inode,
507 					    sector_t start_blk,
508 					    sector_t *blkoff)
509 {
510 	unsigned int i, nr_folios;
511 	pgoff_t index;
512 	unsigned long length = 0;
513 	struct folio_batch fbatch;
514 	struct folio *folio;
515 
516 	if (inode->i_mapping->nrpages == 0)
517 		return 0;
518 
519 	index = start_blk >> (PAGE_SHIFT - inode->i_blkbits);
520 
521 	folio_batch_init(&fbatch);
522 
523 repeat:
524 	nr_folios = filemap_get_folios_contig(inode->i_mapping, &index, ULONG_MAX,
525 			&fbatch);
526 	if (nr_folios == 0)
527 		return length;
528 
529 	i = 0;
530 	do {
531 		folio = fbatch.folios[i];
532 
533 		folio_lock(folio);
534 		if (folio_buffers(folio)) {
535 			struct buffer_head *bh, *head;
536 			sector_t b;
537 
538 			b = folio->index << (PAGE_SHIFT - inode->i_blkbits);
539 			bh = head = folio_buffers(folio);
540 			do {
541 				if (b < start_blk)
542 					continue;
543 				if (buffer_delay(bh)) {
544 					if (length == 0)
545 						*blkoff = b;
546 					length++;
547 				} else if (length > 0) {
548 					goto out_locked;
549 				}
550 			} while (++b, bh = bh->b_this_page, bh != head);
551 		} else {
552 			if (length > 0)
553 				goto out_locked;
554 		}
555 		folio_unlock(folio);
556 
557 	} while (++i < nr_folios);
558 
559 	folio_batch_release(&fbatch);
560 	cond_resched();
561 	goto repeat;
562 
563 out_locked:
564 	folio_unlock(folio);
565 	folio_batch_release(&fbatch);
566 	return length;
567 }
568