xref: /kernel/linux/linux-6.6/fs/gfs2/lops.c (revision 62306a36)
1// SPDX-License-Identifier: GPL-2.0-only
2/*
3 * Copyright (C) Sistina Software, Inc.  1997-2003 All rights reserved.
4 * Copyright (C) 2004-2006 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/mempool.h>
13#include <linux/gfs2_ondisk.h>
14#include <linux/bio.h>
15#include <linux/fs.h>
16#include <linux/list_sort.h>
17#include <linux/blkdev.h>
18
19#include "bmap.h"
20#include "dir.h"
21#include "gfs2.h"
22#include "incore.h"
23#include "inode.h"
24#include "glock.h"
25#include "glops.h"
26#include "log.h"
27#include "lops.h"
28#include "meta_io.h"
29#include "recovery.h"
30#include "rgrp.h"
31#include "trans.h"
32#include "util.h"
33#include "trace_gfs2.h"
34
35/**
36 * gfs2_pin - Pin a buffer in memory
37 * @sdp: The superblock
38 * @bh: The buffer to be pinned
39 *
40 * The log lock must be held when calling this function
41 */
42void gfs2_pin(struct gfs2_sbd *sdp, struct buffer_head *bh)
43{
44	struct gfs2_bufdata *bd;
45
46	BUG_ON(!current->journal_info);
47
48	clear_buffer_dirty(bh);
49	if (test_set_buffer_pinned(bh))
50		gfs2_assert_withdraw(sdp, 0);
51	if (!buffer_uptodate(bh))
52		gfs2_io_error_bh_wd(sdp, bh);
53	bd = bh->b_private;
54	/* If this buffer is in the AIL and it has already been written
55	 * to in-place disk block, remove it from the AIL.
56	 */
57	spin_lock(&sdp->sd_ail_lock);
58	if (bd->bd_tr)
59		list_move(&bd->bd_ail_st_list, &bd->bd_tr->tr_ail2_list);
60	spin_unlock(&sdp->sd_ail_lock);
61	get_bh(bh);
62	atomic_inc(&sdp->sd_log_pinned);
63	trace_gfs2_pin(bd, 1);
64}
65
66static bool buffer_is_rgrp(const struct gfs2_bufdata *bd)
67{
68	return bd->bd_gl->gl_name.ln_type == LM_TYPE_RGRP;
69}
70
71static void maybe_release_space(struct gfs2_bufdata *bd)
72{
73	struct gfs2_glock *gl = bd->bd_gl;
74	struct gfs2_sbd *sdp = gl->gl_name.ln_sbd;
75	struct gfs2_rgrpd *rgd = gfs2_glock2rgrp(gl);
76	unsigned int index = bd->bd_bh->b_blocknr - gl->gl_name.ln_number;
77	struct gfs2_bitmap *bi = rgd->rd_bits + index;
78
79	rgrp_lock_local(rgd);
80	if (bi->bi_clone == NULL)
81		goto out;
82	if (sdp->sd_args.ar_discard)
83		gfs2_rgrp_send_discards(sdp, rgd->rd_data0, bd->bd_bh, bi, 1, NULL);
84	memcpy(bi->bi_clone + bi->bi_offset,
85	       bd->bd_bh->b_data + bi->bi_offset, bi->bi_bytes);
86	clear_bit(GBF_FULL, &bi->bi_flags);
87	rgd->rd_free_clone = rgd->rd_free;
88	BUG_ON(rgd->rd_free_clone < rgd->rd_reserved);
89	rgd->rd_extfail_pt = rgd->rd_free;
90
91out:
92	rgrp_unlock_local(rgd);
93}
94
95/**
96 * gfs2_unpin - Unpin a buffer
97 * @sdp: the filesystem the buffer belongs to
98 * @bh: The buffer to unpin
99 * @tr: The system transaction being flushed
100 */
101
102static void gfs2_unpin(struct gfs2_sbd *sdp, struct buffer_head *bh,
103		       struct gfs2_trans *tr)
104{
105	struct gfs2_bufdata *bd = bh->b_private;
106
107	BUG_ON(!buffer_uptodate(bh));
108	BUG_ON(!buffer_pinned(bh));
109
110	lock_buffer(bh);
111	mark_buffer_dirty(bh);
112	clear_buffer_pinned(bh);
113
114	if (buffer_is_rgrp(bd))
115		maybe_release_space(bd);
116
117	spin_lock(&sdp->sd_ail_lock);
118	if (bd->bd_tr) {
119		list_del(&bd->bd_ail_st_list);
120		brelse(bh);
121	} else {
122		struct gfs2_glock *gl = bd->bd_gl;
123		list_add(&bd->bd_ail_gl_list, &gl->gl_ail_list);
124		atomic_inc(&gl->gl_ail_count);
125	}
126	bd->bd_tr = tr;
127	list_add(&bd->bd_ail_st_list, &tr->tr_ail1_list);
128	spin_unlock(&sdp->sd_ail_lock);
129
130	clear_bit(GLF_LFLUSH, &bd->bd_gl->gl_flags);
131	trace_gfs2_pin(bd, 0);
132	unlock_buffer(bh);
133	atomic_dec(&sdp->sd_log_pinned);
134}
135
136void gfs2_log_incr_head(struct gfs2_sbd *sdp)
137{
138	BUG_ON((sdp->sd_log_flush_head == sdp->sd_log_tail) &&
139	       (sdp->sd_log_flush_head != sdp->sd_log_head));
140
141	if (++sdp->sd_log_flush_head == sdp->sd_jdesc->jd_blocks)
142		sdp->sd_log_flush_head = 0;
143}
144
145u64 gfs2_log_bmap(struct gfs2_jdesc *jd, unsigned int lblock)
146{
147	struct gfs2_journal_extent *je;
148
149	list_for_each_entry(je, &jd->extent_list, list) {
150		if (lblock >= je->lblock && lblock < je->lblock + je->blocks)
151			return je->dblock + lblock - je->lblock;
152	}
153
154	return -1;
155}
156
157/**
158 * gfs2_end_log_write_bh - end log write of pagecache data with buffers
159 * @sdp: The superblock
160 * @bvec: The bio_vec
161 * @error: The i/o status
162 *
163 * This finds the relevant buffers and unlocks them and sets the
164 * error flag according to the status of the i/o request. This is
165 * used when the log is writing data which has an in-place version
166 * that is pinned in the pagecache.
167 */
168
169static void gfs2_end_log_write_bh(struct gfs2_sbd *sdp,
170				  struct bio_vec *bvec,
171				  blk_status_t error)
172{
173	struct buffer_head *bh, *next;
174	struct page *page = bvec->bv_page;
175	unsigned size;
176
177	bh = page_buffers(page);
178	size = bvec->bv_len;
179	while (bh_offset(bh) < bvec->bv_offset)
180		bh = bh->b_this_page;
181	do {
182		if (error)
183			mark_buffer_write_io_error(bh);
184		unlock_buffer(bh);
185		next = bh->b_this_page;
186		size -= bh->b_size;
187		brelse(bh);
188		bh = next;
189	} while(bh && size);
190}
191
192/**
193 * gfs2_end_log_write - end of i/o to the log
194 * @bio: The bio
195 *
196 * Each bio_vec contains either data from the pagecache or data
197 * relating to the log itself. Here we iterate over the bio_vec
198 * array, processing both kinds of data.
199 *
200 */
201
202static void gfs2_end_log_write(struct bio *bio)
203{
204	struct gfs2_sbd *sdp = bio->bi_private;
205	struct bio_vec *bvec;
206	struct page *page;
207	struct bvec_iter_all iter_all;
208
209	if (bio->bi_status) {
210		if (!cmpxchg(&sdp->sd_log_error, 0, (int)bio->bi_status))
211			fs_err(sdp, "Error %d writing to journal, jid=%u\n",
212			       bio->bi_status, sdp->sd_jdesc->jd_jid);
213		gfs2_withdraw_delayed(sdp);
214		/* prevent more writes to the journal */
215		clear_bit(SDF_JOURNAL_LIVE, &sdp->sd_flags);
216		wake_up(&sdp->sd_logd_waitq);
217	}
218
219	bio_for_each_segment_all(bvec, bio, iter_all) {
220		page = bvec->bv_page;
221		if (page_has_buffers(page))
222			gfs2_end_log_write_bh(sdp, bvec, bio->bi_status);
223		else
224			mempool_free(page, gfs2_page_pool);
225	}
226
227	bio_put(bio);
228	if (atomic_dec_and_test(&sdp->sd_log_in_flight))
229		wake_up(&sdp->sd_log_flush_wait);
230}
231
232/**
233 * gfs2_log_submit_bio - Submit any pending log bio
234 * @biop: Address of the bio pointer
235 * @opf: REQ_OP | op_flags
236 *
237 * Submit any pending part-built or full bio to the block device. If
238 * there is no pending bio, then this is a no-op.
239 */
240
241void gfs2_log_submit_bio(struct bio **biop, blk_opf_t opf)
242{
243	struct bio *bio = *biop;
244	if (bio) {
245		struct gfs2_sbd *sdp = bio->bi_private;
246		atomic_inc(&sdp->sd_log_in_flight);
247		bio->bi_opf = opf;
248		submit_bio(bio);
249		*biop = NULL;
250	}
251}
252
253/**
254 * gfs2_log_alloc_bio - Allocate a bio
255 * @sdp: The super block
256 * @blkno: The device block number we want to write to
257 * @end_io: The bi_end_io callback
258 *
259 * Allocate a new bio, initialize it with the given parameters and return it.
260 *
261 * Returns: The newly allocated bio
262 */
263
264static struct bio *gfs2_log_alloc_bio(struct gfs2_sbd *sdp, u64 blkno,
265				      bio_end_io_t *end_io)
266{
267	struct super_block *sb = sdp->sd_vfs;
268	struct bio *bio = bio_alloc(sb->s_bdev, BIO_MAX_VECS, 0, GFP_NOIO);
269
270	bio->bi_iter.bi_sector = blkno << sdp->sd_fsb2bb_shift;
271	bio->bi_end_io = end_io;
272	bio->bi_private = sdp;
273
274	return bio;
275}
276
277/**
278 * gfs2_log_get_bio - Get cached log bio, or allocate a new one
279 * @sdp: The super block
280 * @blkno: The device block number we want to write to
281 * @biop: The bio to get or allocate
282 * @op: REQ_OP
283 * @end_io: The bi_end_io callback
284 * @flush: Always flush the current bio and allocate a new one?
285 *
286 * If there is a cached bio, then if the next block number is sequential
287 * with the previous one, return it, otherwise flush the bio to the
288 * device. If there is no cached bio, or we just flushed it, then
289 * allocate a new one.
290 *
291 * Returns: The bio to use for log writes
292 */
293
294static struct bio *gfs2_log_get_bio(struct gfs2_sbd *sdp, u64 blkno,
295				    struct bio **biop, enum req_op op,
296				    bio_end_io_t *end_io, bool flush)
297{
298	struct bio *bio = *biop;
299
300	if (bio) {
301		u64 nblk;
302
303		nblk = bio_end_sector(bio);
304		nblk >>= sdp->sd_fsb2bb_shift;
305		if (blkno == nblk && !flush)
306			return bio;
307		gfs2_log_submit_bio(biop, op);
308	}
309
310	*biop = gfs2_log_alloc_bio(sdp, blkno, end_io);
311	return *biop;
312}
313
314/**
315 * gfs2_log_write - write to log
316 * @sdp: the filesystem
317 * @jd: The journal descriptor
318 * @page: the page to write
319 * @size: the size of the data to write
320 * @offset: the offset within the page
321 * @blkno: block number of the log entry
322 *
323 * Try and add the page segment to the current bio. If that fails,
324 * submit the current bio to the device and create a new one, and
325 * then add the page segment to that.
326 */
327
328void gfs2_log_write(struct gfs2_sbd *sdp, struct gfs2_jdesc *jd,
329		    struct page *page, unsigned size, unsigned offset,
330		    u64 blkno)
331{
332	struct bio *bio;
333	int ret;
334
335	bio = gfs2_log_get_bio(sdp, blkno, &jd->jd_log_bio, REQ_OP_WRITE,
336			       gfs2_end_log_write, false);
337	ret = bio_add_page(bio, page, size, offset);
338	if (ret == 0) {
339		bio = gfs2_log_get_bio(sdp, blkno, &jd->jd_log_bio,
340				       REQ_OP_WRITE, gfs2_end_log_write, true);
341		ret = bio_add_page(bio, page, size, offset);
342		WARN_ON(ret == 0);
343	}
344}
345
346/**
347 * gfs2_log_write_bh - write a buffer's content to the log
348 * @sdp: The super block
349 * @bh: The buffer pointing to the in-place location
350 *
351 * This writes the content of the buffer to the next available location
352 * in the log. The buffer will be unlocked once the i/o to the log has
353 * completed.
354 */
355
356static void gfs2_log_write_bh(struct gfs2_sbd *sdp, struct buffer_head *bh)
357{
358	u64 dblock;
359
360	dblock = gfs2_log_bmap(sdp->sd_jdesc, sdp->sd_log_flush_head);
361	gfs2_log_incr_head(sdp);
362	gfs2_log_write(sdp, sdp->sd_jdesc, bh->b_page, bh->b_size,
363		       bh_offset(bh), dblock);
364}
365
366/**
367 * gfs2_log_write_page - write one block stored in a page, into the log
368 * @sdp: The superblock
369 * @page: The struct page
370 *
371 * This writes the first block-sized part of the page into the log. Note
372 * that the page must have been allocated from the gfs2_page_pool mempool
373 * and that after this has been called, ownership has been transferred and
374 * the page may be freed at any time.
375 */
376
377static void gfs2_log_write_page(struct gfs2_sbd *sdp, struct page *page)
378{
379	struct super_block *sb = sdp->sd_vfs;
380	u64 dblock;
381
382	dblock = gfs2_log_bmap(sdp->sd_jdesc, sdp->sd_log_flush_head);
383	gfs2_log_incr_head(sdp);
384	gfs2_log_write(sdp, sdp->sd_jdesc, page, sb->s_blocksize, 0, dblock);
385}
386
387/**
388 * gfs2_end_log_read - end I/O callback for reads from the log
389 * @bio: The bio
390 *
391 * Simply unlock the pages in the bio. The main thread will wait on them and
392 * process them in order as necessary.
393 */
394
395static void gfs2_end_log_read(struct bio *bio)
396{
397	struct page *page;
398	struct bio_vec *bvec;
399	struct bvec_iter_all iter_all;
400
401	bio_for_each_segment_all(bvec, bio, iter_all) {
402		page = bvec->bv_page;
403		if (bio->bi_status) {
404			int err = blk_status_to_errno(bio->bi_status);
405
406			SetPageError(page);
407			mapping_set_error(page->mapping, err);
408		}
409		unlock_page(page);
410	}
411
412	bio_put(bio);
413}
414
415/**
416 * gfs2_jhead_pg_srch - Look for the journal head in a given page.
417 * @jd: The journal descriptor
418 * @head: The journal head to start from
419 * @page: The page to look in
420 *
421 * Returns: 1 if found, 0 otherwise.
422 */
423
424static bool gfs2_jhead_pg_srch(struct gfs2_jdesc *jd,
425			      struct gfs2_log_header_host *head,
426			      struct page *page)
427{
428	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
429	struct gfs2_log_header_host lh;
430	void *kaddr;
431	unsigned int offset;
432	bool ret = false;
433
434	kaddr = kmap_local_page(page);
435	for (offset = 0; offset < PAGE_SIZE; offset += sdp->sd_sb.sb_bsize) {
436		if (!__get_log_header(sdp, kaddr + offset, 0, &lh)) {
437			if (lh.lh_sequence >= head->lh_sequence)
438				*head = lh;
439			else {
440				ret = true;
441				break;
442			}
443		}
444	}
445	kunmap_local(kaddr);
446	return ret;
447}
448
449/**
450 * gfs2_jhead_process_page - Search/cleanup a page
451 * @jd: The journal descriptor
452 * @index: Index of the page to look into
453 * @head: The journal head to start from
454 * @done: If set, perform only cleanup, else search and set if found.
455 *
456 * Find the folio with 'index' in the journal's mapping. Search the folio for
457 * the journal head if requested (cleanup == false). Release refs on the
458 * folio so the page cache can reclaim it. We grabbed a
459 * reference on this folio twice, first when we did a grab_cache_page()
460 * to obtain the folio to add it to the bio and second when we do a
461 * filemap_get_folio() here to get the folio to wait on while I/O on it is being
462 * completed.
463 * This function is also used to free up a folio we might've grabbed but not
464 * used. Maybe we added it to a bio, but not submitted it for I/O. Or we
465 * submitted the I/O, but we already found the jhead so we only need to drop
466 * our references to the folio.
467 */
468
469static void gfs2_jhead_process_page(struct gfs2_jdesc *jd, unsigned long index,
470				    struct gfs2_log_header_host *head,
471				    bool *done)
472{
473	struct folio *folio;
474
475	folio = filemap_get_folio(jd->jd_inode->i_mapping, index);
476
477	folio_wait_locked(folio);
478	if (folio_test_error(folio))
479		*done = true;
480
481	if (!*done)
482		*done = gfs2_jhead_pg_srch(jd, head, &folio->page);
483
484	/* filemap_get_folio() and the earlier grab_cache_page() */
485	folio_put_refs(folio, 2);
486}
487
488static struct bio *gfs2_chain_bio(struct bio *prev, unsigned int nr_iovecs)
489{
490	struct bio *new;
491
492	new = bio_alloc(prev->bi_bdev, nr_iovecs, prev->bi_opf, GFP_NOIO);
493	bio_clone_blkg_association(new, prev);
494	new->bi_iter.bi_sector = bio_end_sector(prev);
495	bio_chain(new, prev);
496	submit_bio(prev);
497	return new;
498}
499
500/**
501 * gfs2_find_jhead - find the head of a log
502 * @jd: The journal descriptor
503 * @head: The log descriptor for the head of the log is returned here
504 * @keep_cache: If set inode pages will not be truncated
505 *
506 * Do a search of a journal by reading it in large chunks using bios and find
507 * the valid log entry with the highest sequence number.  (i.e. the log head)
508 *
509 * Returns: 0 on success, errno otherwise
510 */
511int gfs2_find_jhead(struct gfs2_jdesc *jd, struct gfs2_log_header_host *head,
512		    bool keep_cache)
513{
514	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
515	struct address_space *mapping = jd->jd_inode->i_mapping;
516	unsigned int block = 0, blocks_submitted = 0, blocks_read = 0;
517	unsigned int bsize = sdp->sd_sb.sb_bsize, off;
518	unsigned int bsize_shift = sdp->sd_sb.sb_bsize_shift;
519	unsigned int shift = PAGE_SHIFT - bsize_shift;
520	unsigned int max_blocks = 2 * 1024 * 1024 >> bsize_shift;
521	struct gfs2_journal_extent *je;
522	int sz, ret = 0;
523	struct bio *bio = NULL;
524	struct page *page = NULL;
525	bool done = false;
526	errseq_t since;
527
528	memset(head, 0, sizeof(*head));
529	if (list_empty(&jd->extent_list))
530		gfs2_map_journal_extents(sdp, jd);
531
532	since = filemap_sample_wb_err(mapping);
533	list_for_each_entry(je, &jd->extent_list, list) {
534		u64 dblock = je->dblock;
535
536		for (; block < je->lblock + je->blocks; block++, dblock++) {
537			if (!page) {
538				page = grab_cache_page(mapping, block >> shift);
539				if (!page) {
540					ret = -ENOMEM;
541					done = true;
542					goto out;
543				}
544				off = 0;
545			}
546
547			if (bio && (off || block < blocks_submitted + max_blocks)) {
548				sector_t sector = dblock << sdp->sd_fsb2bb_shift;
549
550				if (bio_end_sector(bio) == sector) {
551					sz = bio_add_page(bio, page, bsize, off);
552					if (sz == bsize)
553						goto block_added;
554				}
555				if (off) {
556					unsigned int blocks =
557						(PAGE_SIZE - off) >> bsize_shift;
558
559					bio = gfs2_chain_bio(bio, blocks);
560					goto add_block_to_new_bio;
561				}
562			}
563
564			if (bio) {
565				blocks_submitted = block;
566				submit_bio(bio);
567			}
568
569			bio = gfs2_log_alloc_bio(sdp, dblock, gfs2_end_log_read);
570			bio->bi_opf = REQ_OP_READ;
571add_block_to_new_bio:
572			sz = bio_add_page(bio, page, bsize, off);
573			BUG_ON(sz != bsize);
574block_added:
575			off += bsize;
576			if (off == PAGE_SIZE)
577				page = NULL;
578			if (blocks_submitted <= blocks_read + max_blocks) {
579				/* Keep at least one bio in flight */
580				continue;
581			}
582
583			gfs2_jhead_process_page(jd, blocks_read >> shift, head, &done);
584			blocks_read += PAGE_SIZE >> bsize_shift;
585			if (done)
586				goto out;  /* found */
587		}
588	}
589
590out:
591	if (bio)
592		submit_bio(bio);
593	while (blocks_read < block) {
594		gfs2_jhead_process_page(jd, blocks_read >> shift, head, &done);
595		blocks_read += PAGE_SIZE >> bsize_shift;
596	}
597
598	if (!ret)
599		ret = filemap_check_wb_err(mapping, since);
600
601	if (!keep_cache)
602		truncate_inode_pages(mapping, 0);
603
604	return ret;
605}
606
607static struct page *gfs2_get_log_desc(struct gfs2_sbd *sdp, u32 ld_type,
608				      u32 ld_length, u32 ld_data1)
609{
610	struct page *page = mempool_alloc(gfs2_page_pool, GFP_NOIO);
611	struct gfs2_log_descriptor *ld = page_address(page);
612	clear_page(ld);
613	ld->ld_header.mh_magic = cpu_to_be32(GFS2_MAGIC);
614	ld->ld_header.mh_type = cpu_to_be32(GFS2_METATYPE_LD);
615	ld->ld_header.mh_format = cpu_to_be32(GFS2_FORMAT_LD);
616	ld->ld_type = cpu_to_be32(ld_type);
617	ld->ld_length = cpu_to_be32(ld_length);
618	ld->ld_data1 = cpu_to_be32(ld_data1);
619	ld->ld_data2 = 0;
620	return page;
621}
622
623static void gfs2_check_magic(struct buffer_head *bh)
624{
625	void *kaddr;
626	__be32 *ptr;
627
628	clear_buffer_escaped(bh);
629	kaddr = kmap_local_page(bh->b_page);
630	ptr = kaddr + bh_offset(bh);
631	if (*ptr == cpu_to_be32(GFS2_MAGIC))
632		set_buffer_escaped(bh);
633	kunmap_local(kaddr);
634}
635
636static int blocknr_cmp(void *priv, const struct list_head *a,
637		       const struct list_head *b)
638{
639	struct gfs2_bufdata *bda, *bdb;
640
641	bda = list_entry(a, struct gfs2_bufdata, bd_list);
642	bdb = list_entry(b, struct gfs2_bufdata, bd_list);
643
644	if (bda->bd_bh->b_blocknr < bdb->bd_bh->b_blocknr)
645		return -1;
646	if (bda->bd_bh->b_blocknr > bdb->bd_bh->b_blocknr)
647		return 1;
648	return 0;
649}
650
651static void gfs2_before_commit(struct gfs2_sbd *sdp, unsigned int limit,
652				unsigned int total, struct list_head *blist,
653				bool is_databuf)
654{
655	struct gfs2_log_descriptor *ld;
656	struct gfs2_bufdata *bd1 = NULL, *bd2;
657	struct page *page;
658	unsigned int num;
659	unsigned n;
660	__be64 *ptr;
661
662	gfs2_log_lock(sdp);
663	list_sort(NULL, blist, blocknr_cmp);
664	bd1 = bd2 = list_prepare_entry(bd1, blist, bd_list);
665	while(total) {
666		num = total;
667		if (total > limit)
668			num = limit;
669		gfs2_log_unlock(sdp);
670		page = gfs2_get_log_desc(sdp,
671					 is_databuf ? GFS2_LOG_DESC_JDATA :
672					 GFS2_LOG_DESC_METADATA, num + 1, num);
673		ld = page_address(page);
674		gfs2_log_lock(sdp);
675		ptr = (__be64 *)(ld + 1);
676
677		n = 0;
678		list_for_each_entry_continue(bd1, blist, bd_list) {
679			*ptr++ = cpu_to_be64(bd1->bd_bh->b_blocknr);
680			if (is_databuf) {
681				gfs2_check_magic(bd1->bd_bh);
682				*ptr++ = cpu_to_be64(buffer_escaped(bd1->bd_bh) ? 1 : 0);
683			}
684			if (++n >= num)
685				break;
686		}
687
688		gfs2_log_unlock(sdp);
689		gfs2_log_write_page(sdp, page);
690		gfs2_log_lock(sdp);
691
692		n = 0;
693		list_for_each_entry_continue(bd2, blist, bd_list) {
694			get_bh(bd2->bd_bh);
695			gfs2_log_unlock(sdp);
696			lock_buffer(bd2->bd_bh);
697
698			if (buffer_escaped(bd2->bd_bh)) {
699				void *p;
700
701				page = mempool_alloc(gfs2_page_pool, GFP_NOIO);
702				p = page_address(page);
703				memcpy_from_page(p, page, bh_offset(bd2->bd_bh), bd2->bd_bh->b_size);
704				*(__be32 *)p = 0;
705				clear_buffer_escaped(bd2->bd_bh);
706				unlock_buffer(bd2->bd_bh);
707				brelse(bd2->bd_bh);
708				gfs2_log_write_page(sdp, page);
709			} else {
710				gfs2_log_write_bh(sdp, bd2->bd_bh);
711			}
712			gfs2_log_lock(sdp);
713			if (++n >= num)
714				break;
715		}
716
717		BUG_ON(total < num);
718		total -= num;
719	}
720	gfs2_log_unlock(sdp);
721}
722
723static void buf_lo_before_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
724{
725	unsigned int limit = buf_limit(sdp); /* 503 for 4k blocks */
726	unsigned int nbuf;
727	if (tr == NULL)
728		return;
729	nbuf = tr->tr_num_buf_new - tr->tr_num_buf_rm;
730	gfs2_before_commit(sdp, limit, nbuf, &tr->tr_buf, 0);
731}
732
733static void buf_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
734{
735	struct list_head *head;
736	struct gfs2_bufdata *bd;
737
738	if (tr == NULL)
739		return;
740
741	head = &tr->tr_buf;
742	while (!list_empty(head)) {
743		bd = list_first_entry(head, struct gfs2_bufdata, bd_list);
744		list_del_init(&bd->bd_list);
745		gfs2_unpin(sdp, bd->bd_bh, tr);
746	}
747}
748
749static void buf_lo_before_scan(struct gfs2_jdesc *jd,
750			       struct gfs2_log_header_host *head, int pass)
751{
752	if (pass != 0)
753		return;
754
755	jd->jd_found_blocks = 0;
756	jd->jd_replayed_blocks = 0;
757}
758
759#define obsolete_rgrp_replay \
760"Replaying 0x%llx from jid=%d/0x%llx but we already have a bh!\n"
761#define obsolete_rgrp_replay2 \
762"busy:%d, pinned:%d rg_gen:0x%llx, j_gen:0x%llx\n"
763
764static void obsolete_rgrp(struct gfs2_jdesc *jd, struct buffer_head *bh_log,
765			  u64 blkno)
766{
767	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
768	struct gfs2_rgrpd *rgd;
769	struct gfs2_rgrp *jrgd = (struct gfs2_rgrp *)bh_log->b_data;
770
771	rgd = gfs2_blk2rgrpd(sdp, blkno, false);
772	if (rgd && rgd->rd_addr == blkno &&
773	    rgd->rd_bits && rgd->rd_bits->bi_bh) {
774		fs_info(sdp, obsolete_rgrp_replay, (unsigned long long)blkno,
775			jd->jd_jid, bh_log->b_blocknr);
776		fs_info(sdp, obsolete_rgrp_replay2,
777			buffer_busy(rgd->rd_bits->bi_bh) ? 1 : 0,
778			buffer_pinned(rgd->rd_bits->bi_bh),
779			rgd->rd_igeneration,
780			be64_to_cpu(jrgd->rg_igeneration));
781		gfs2_dump_glock(NULL, rgd->rd_gl, true);
782	}
783}
784
785static int buf_lo_scan_elements(struct gfs2_jdesc *jd, u32 start,
786				struct gfs2_log_descriptor *ld, __be64 *ptr,
787				int pass)
788{
789	struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
790	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
791	struct gfs2_glock *gl = ip->i_gl;
792	unsigned int blks = be32_to_cpu(ld->ld_data1);
793	struct buffer_head *bh_log, *bh_ip;
794	u64 blkno;
795	int error = 0;
796
797	if (pass != 1 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_METADATA)
798		return 0;
799
800	gfs2_replay_incr_blk(jd, &start);
801
802	for (; blks; gfs2_replay_incr_blk(jd, &start), blks--) {
803		blkno = be64_to_cpu(*ptr++);
804
805		jd->jd_found_blocks++;
806
807		if (gfs2_revoke_check(jd, blkno, start))
808			continue;
809
810		error = gfs2_replay_read_block(jd, start, &bh_log);
811		if (error)
812			return error;
813
814		bh_ip = gfs2_meta_new(gl, blkno);
815		memcpy(bh_ip->b_data, bh_log->b_data, bh_log->b_size);
816
817		if (gfs2_meta_check(sdp, bh_ip))
818			error = -EIO;
819		else {
820			struct gfs2_meta_header *mh =
821				(struct gfs2_meta_header *)bh_ip->b_data;
822
823			if (mh->mh_type == cpu_to_be32(GFS2_METATYPE_RG))
824				obsolete_rgrp(jd, bh_log, blkno);
825
826			mark_buffer_dirty(bh_ip);
827		}
828		brelse(bh_log);
829		brelse(bh_ip);
830
831		if (error)
832			break;
833
834		jd->jd_replayed_blocks++;
835	}
836
837	return error;
838}
839
840static void buf_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass)
841{
842	struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
843	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
844
845	if (error) {
846		gfs2_inode_metasync(ip->i_gl);
847		return;
848	}
849	if (pass != 1)
850		return;
851
852	gfs2_inode_metasync(ip->i_gl);
853
854	fs_info(sdp, "jid=%u: Replayed %u of %u blocks\n",
855	        jd->jd_jid, jd->jd_replayed_blocks, jd->jd_found_blocks);
856}
857
858static void revoke_lo_before_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
859{
860	struct gfs2_meta_header *mh;
861	unsigned int offset;
862	struct list_head *head = &sdp->sd_log_revokes;
863	struct gfs2_bufdata *bd;
864	struct page *page;
865	unsigned int length;
866
867	gfs2_flush_revokes(sdp);
868	if (!sdp->sd_log_num_revoke)
869		return;
870
871	length = gfs2_struct2blk(sdp, sdp->sd_log_num_revoke);
872	page = gfs2_get_log_desc(sdp, GFS2_LOG_DESC_REVOKE, length, sdp->sd_log_num_revoke);
873	offset = sizeof(struct gfs2_log_descriptor);
874
875	list_for_each_entry(bd, head, bd_list) {
876		sdp->sd_log_num_revoke--;
877
878		if (offset + sizeof(u64) > sdp->sd_sb.sb_bsize) {
879			gfs2_log_write_page(sdp, page);
880			page = mempool_alloc(gfs2_page_pool, GFP_NOIO);
881			mh = page_address(page);
882			clear_page(mh);
883			mh->mh_magic = cpu_to_be32(GFS2_MAGIC);
884			mh->mh_type = cpu_to_be32(GFS2_METATYPE_LB);
885			mh->mh_format = cpu_to_be32(GFS2_FORMAT_LB);
886			offset = sizeof(struct gfs2_meta_header);
887		}
888
889		*(__be64 *)(page_address(page) + offset) = cpu_to_be64(bd->bd_blkno);
890		offset += sizeof(u64);
891	}
892	gfs2_assert_withdraw(sdp, !sdp->sd_log_num_revoke);
893
894	gfs2_log_write_page(sdp, page);
895}
896
897void gfs2_drain_revokes(struct gfs2_sbd *sdp)
898{
899	struct list_head *head = &sdp->sd_log_revokes;
900	struct gfs2_bufdata *bd;
901	struct gfs2_glock *gl;
902
903	while (!list_empty(head)) {
904		bd = list_first_entry(head, struct gfs2_bufdata, bd_list);
905		list_del_init(&bd->bd_list);
906		gl = bd->bd_gl;
907		gfs2_glock_remove_revoke(gl);
908		kmem_cache_free(gfs2_bufdata_cachep, bd);
909	}
910}
911
912static void revoke_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
913{
914	gfs2_drain_revokes(sdp);
915}
916
917static void revoke_lo_before_scan(struct gfs2_jdesc *jd,
918				  struct gfs2_log_header_host *head, int pass)
919{
920	if (pass != 0)
921		return;
922
923	jd->jd_found_revokes = 0;
924	jd->jd_replay_tail = head->lh_tail;
925}
926
927static int revoke_lo_scan_elements(struct gfs2_jdesc *jd, u32 start,
928				   struct gfs2_log_descriptor *ld, __be64 *ptr,
929				   int pass)
930{
931	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
932	unsigned int blks = be32_to_cpu(ld->ld_length);
933	unsigned int revokes = be32_to_cpu(ld->ld_data1);
934	struct buffer_head *bh;
935	unsigned int offset;
936	u64 blkno;
937	int first = 1;
938	int error;
939
940	if (pass != 0 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_REVOKE)
941		return 0;
942
943	offset = sizeof(struct gfs2_log_descriptor);
944
945	for (; blks; gfs2_replay_incr_blk(jd, &start), blks--) {
946		error = gfs2_replay_read_block(jd, start, &bh);
947		if (error)
948			return error;
949
950		if (!first)
951			gfs2_metatype_check(sdp, bh, GFS2_METATYPE_LB);
952
953		while (offset + sizeof(u64) <= sdp->sd_sb.sb_bsize) {
954			blkno = be64_to_cpu(*(__be64 *)(bh->b_data + offset));
955
956			error = gfs2_revoke_add(jd, blkno, start);
957			if (error < 0) {
958				brelse(bh);
959				return error;
960			}
961			else if (error)
962				jd->jd_found_revokes++;
963
964			if (!--revokes)
965				break;
966			offset += sizeof(u64);
967		}
968
969		brelse(bh);
970		offset = sizeof(struct gfs2_meta_header);
971		first = 0;
972	}
973
974	return 0;
975}
976
977static void revoke_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass)
978{
979	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
980
981	if (error) {
982		gfs2_revoke_clean(jd);
983		return;
984	}
985	if (pass != 1)
986		return;
987
988	fs_info(sdp, "jid=%u: Found %u revoke tags\n",
989	        jd->jd_jid, jd->jd_found_revokes);
990
991	gfs2_revoke_clean(jd);
992}
993
994/**
995 * databuf_lo_before_commit - Scan the data buffers, writing as we go
996 * @sdp: The filesystem
997 * @tr: The system transaction being flushed
998 */
999
1000static void databuf_lo_before_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
1001{
1002	unsigned int limit = databuf_limit(sdp);
1003	unsigned int nbuf;
1004	if (tr == NULL)
1005		return;
1006	nbuf = tr->tr_num_databuf_new - tr->tr_num_databuf_rm;
1007	gfs2_before_commit(sdp, limit, nbuf, &tr->tr_databuf, 1);
1008}
1009
1010static int databuf_lo_scan_elements(struct gfs2_jdesc *jd, u32 start,
1011				    struct gfs2_log_descriptor *ld,
1012				    __be64 *ptr, int pass)
1013{
1014	struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
1015	struct gfs2_glock *gl = ip->i_gl;
1016	unsigned int blks = be32_to_cpu(ld->ld_data1);
1017	struct buffer_head *bh_log, *bh_ip;
1018	u64 blkno;
1019	u64 esc;
1020	int error = 0;
1021
1022	if (pass != 1 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_JDATA)
1023		return 0;
1024
1025	gfs2_replay_incr_blk(jd, &start);
1026	for (; blks; gfs2_replay_incr_blk(jd, &start), blks--) {
1027		blkno = be64_to_cpu(*ptr++);
1028		esc = be64_to_cpu(*ptr++);
1029
1030		jd->jd_found_blocks++;
1031
1032		if (gfs2_revoke_check(jd, blkno, start))
1033			continue;
1034
1035		error = gfs2_replay_read_block(jd, start, &bh_log);
1036		if (error)
1037			return error;
1038
1039		bh_ip = gfs2_meta_new(gl, blkno);
1040		memcpy(bh_ip->b_data, bh_log->b_data, bh_log->b_size);
1041
1042		/* Unescape */
1043		if (esc) {
1044			__be32 *eptr = (__be32 *)bh_ip->b_data;
1045			*eptr = cpu_to_be32(GFS2_MAGIC);
1046		}
1047		mark_buffer_dirty(bh_ip);
1048
1049		brelse(bh_log);
1050		brelse(bh_ip);
1051
1052		jd->jd_replayed_blocks++;
1053	}
1054
1055	return error;
1056}
1057
1058/* FIXME: sort out accounting for log blocks etc. */
1059
1060static void databuf_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass)
1061{
1062	struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
1063	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
1064
1065	if (error) {
1066		gfs2_inode_metasync(ip->i_gl);
1067		return;
1068	}
1069	if (pass != 1)
1070		return;
1071
1072	/* data sync? */
1073	gfs2_inode_metasync(ip->i_gl);
1074
1075	fs_info(sdp, "jid=%u: Replayed %u of %u data blocks\n",
1076		jd->jd_jid, jd->jd_replayed_blocks, jd->jd_found_blocks);
1077}
1078
1079static void databuf_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
1080{
1081	struct list_head *head;
1082	struct gfs2_bufdata *bd;
1083
1084	if (tr == NULL)
1085		return;
1086
1087	head = &tr->tr_databuf;
1088	while (!list_empty(head)) {
1089		bd = list_first_entry(head, struct gfs2_bufdata, bd_list);
1090		list_del_init(&bd->bd_list);
1091		gfs2_unpin(sdp, bd->bd_bh, tr);
1092	}
1093}
1094
1095
1096static const struct gfs2_log_operations gfs2_buf_lops = {
1097	.lo_before_commit = buf_lo_before_commit,
1098	.lo_after_commit = buf_lo_after_commit,
1099	.lo_before_scan = buf_lo_before_scan,
1100	.lo_scan_elements = buf_lo_scan_elements,
1101	.lo_after_scan = buf_lo_after_scan,
1102	.lo_name = "buf",
1103};
1104
1105static const struct gfs2_log_operations gfs2_revoke_lops = {
1106	.lo_before_commit = revoke_lo_before_commit,
1107	.lo_after_commit = revoke_lo_after_commit,
1108	.lo_before_scan = revoke_lo_before_scan,
1109	.lo_scan_elements = revoke_lo_scan_elements,
1110	.lo_after_scan = revoke_lo_after_scan,
1111	.lo_name = "revoke",
1112};
1113
1114static const struct gfs2_log_operations gfs2_databuf_lops = {
1115	.lo_before_commit = databuf_lo_before_commit,
1116	.lo_after_commit = databuf_lo_after_commit,
1117	.lo_scan_elements = databuf_lo_scan_elements,
1118	.lo_after_scan = databuf_lo_after_scan,
1119	.lo_name = "databuf",
1120};
1121
1122const struct gfs2_log_operations *gfs2_log_ops[] = {
1123	&gfs2_databuf_lops,
1124	&gfs2_buf_lops,
1125	&gfs2_revoke_lops,
1126	NULL,
1127};
1128
1129