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Arne Jansena2de7332011-03-08 14:14:00 +01001/*
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01002 * Copyright (C) 2011, 2012 STRATO. All rights reserved.
Arne Jansena2de7332011-03-08 14:14:00 +01003 *
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public
6 * License v2 as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * General Public License for more details.
12 *
13 * You should have received a copy of the GNU General Public
14 * License along with this program; if not, write to the
15 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
16 * Boston, MA 021110-1307, USA.
17 */
18
Arne Jansena2de7332011-03-08 14:14:00 +010019#include <linux/blkdev.h>
Jan Schmidt558540c2011-06-13 19:59:12 +020020#include <linux/ratelimit.h>
Arne Jansena2de7332011-03-08 14:14:00 +010021#include "ctree.h"
22#include "volumes.h"
23#include "disk-io.h"
24#include "ordered-data.h"
Jan Schmidt0ef8e452011-06-13 20:04:15 +020025#include "transaction.h"
Jan Schmidt558540c2011-06-13 19:59:12 +020026#include "backref.h"
Jan Schmidt5da6fcb2011-08-04 18:11:04 +020027#include "extent_io.h"
Stefan Behrensff023aa2012-11-06 11:43:11 +010028#include "dev-replace.h"
Stefan Behrens21adbd52011-11-09 13:44:05 +010029#include "check-integrity.h"
Josef Bacik606686e2012-06-04 14:03:51 -040030#include "rcu-string.h"
David Woodhouse53b381b2013-01-29 18:40:14 -050031#include "raid56.h"
Arne Jansena2de7332011-03-08 14:14:00 +010032
33/*
34 * This is only the first step towards a full-features scrub. It reads all
35 * extent and super block and verifies the checksums. In case a bad checksum
36 * is found or the extent cannot be read, good data will be written back if
37 * any can be found.
38 *
39 * Future enhancements:
Arne Jansena2de7332011-03-08 14:14:00 +010040 * - In case an unrepairable extent is encountered, track which files are
41 * affected and report them
Arne Jansena2de7332011-03-08 14:14:00 +010042 * - track and record media errors, throw out bad devices
Arne Jansena2de7332011-03-08 14:14:00 +010043 * - add a mode to also read unallocated space
Arne Jansena2de7332011-03-08 14:14:00 +010044 */
45
Stefan Behrensb5d67f62012-03-27 14:21:27 -040046struct scrub_block;
Stefan Behrensd9d181c2012-11-02 09:58:09 +010047struct scrub_ctx;
Arne Jansena2de7332011-03-08 14:14:00 +010048
Stefan Behrensff023aa2012-11-06 11:43:11 +010049/*
50 * the following three values only influence the performance.
51 * The last one configures the number of parallel and outstanding I/O
52 * operations. The first two values configure an upper limit for the number
53 * of (dynamically allocated) pages that are added to a bio.
54 */
55#define SCRUB_PAGES_PER_RD_BIO 32 /* 128k per bio */
56#define SCRUB_PAGES_PER_WR_BIO 32 /* 128k per bio */
57#define SCRUB_BIOS_PER_SCTX 64 /* 8MB per device in flight */
Stefan Behrens7a9e9982012-11-02 14:58:04 +010058
59/*
60 * the following value times PAGE_SIZE needs to be large enough to match the
61 * largest node/leaf/sector size that shall be supported.
62 * Values larger than BTRFS_STRIPE_LEN are not supported.
63 */
Stefan Behrensb5d67f62012-03-27 14:21:27 -040064#define SCRUB_MAX_PAGES_PER_BLOCK 16 /* 64k per node/leaf/sector */
Arne Jansena2de7332011-03-08 14:14:00 +010065
66struct scrub_page {
Stefan Behrensb5d67f62012-03-27 14:21:27 -040067 struct scrub_block *sblock;
68 struct page *page;
Stefan Behrens442a4f62012-05-25 16:06:08 +020069 struct btrfs_device *dev;
Arne Jansena2de7332011-03-08 14:14:00 +010070 u64 flags; /* extent flags */
71 u64 generation;
Stefan Behrensb5d67f62012-03-27 14:21:27 -040072 u64 logical;
73 u64 physical;
Stefan Behrensff023aa2012-11-06 11:43:11 +010074 u64 physical_for_dev_replace;
Stefan Behrens7a9e9982012-11-02 14:58:04 +010075 atomic_t ref_count;
Stefan Behrensb5d67f62012-03-27 14:21:27 -040076 struct {
77 unsigned int mirror_num:8;
78 unsigned int have_csum:1;
79 unsigned int io_error:1;
80 };
Arne Jansena2de7332011-03-08 14:14:00 +010081 u8 csum[BTRFS_CSUM_SIZE];
82};
83
84struct scrub_bio {
85 int index;
Stefan Behrensd9d181c2012-11-02 09:58:09 +010086 struct scrub_ctx *sctx;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +010087 struct btrfs_device *dev;
Arne Jansena2de7332011-03-08 14:14:00 +010088 struct bio *bio;
89 int err;
90 u64 logical;
91 u64 physical;
Stefan Behrensff023aa2012-11-06 11:43:11 +010092#if SCRUB_PAGES_PER_WR_BIO >= SCRUB_PAGES_PER_RD_BIO
93 struct scrub_page *pagev[SCRUB_PAGES_PER_WR_BIO];
94#else
95 struct scrub_page *pagev[SCRUB_PAGES_PER_RD_BIO];
96#endif
Stefan Behrensb5d67f62012-03-27 14:21:27 -040097 int page_count;
Arne Jansena2de7332011-03-08 14:14:00 +010098 int next_free;
99 struct btrfs_work work;
100};
101
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400102struct scrub_block {
Stefan Behrens7a9e9982012-11-02 14:58:04 +0100103 struct scrub_page *pagev[SCRUB_MAX_PAGES_PER_BLOCK];
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400104 int page_count;
105 atomic_t outstanding_pages;
106 atomic_t ref_count; /* free mem on transition to zero */
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100107 struct scrub_ctx *sctx;
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400108 struct {
109 unsigned int header_error:1;
110 unsigned int checksum_error:1;
111 unsigned int no_io_error_seen:1;
Stefan Behrens442a4f62012-05-25 16:06:08 +0200112 unsigned int generation_error:1; /* also sets header_error */
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400113 };
114};
115
Stefan Behrensff023aa2012-11-06 11:43:11 +0100116struct scrub_wr_ctx {
117 struct scrub_bio *wr_curr_bio;
118 struct btrfs_device *tgtdev;
119 int pages_per_wr_bio; /* <= SCRUB_PAGES_PER_WR_BIO */
120 atomic_t flush_all_writes;
121 struct mutex wr_lock;
122};
123
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100124struct scrub_ctx {
Stefan Behrensff023aa2012-11-06 11:43:11 +0100125 struct scrub_bio *bios[SCRUB_BIOS_PER_SCTX];
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100126 struct btrfs_root *dev_root;
Arne Jansena2de7332011-03-08 14:14:00 +0100127 int first_free;
128 int curr;
Stefan Behrensb6bfebc2012-11-02 16:44:58 +0100129 atomic_t bios_in_flight;
130 atomic_t workers_pending;
Arne Jansena2de7332011-03-08 14:14:00 +0100131 spinlock_t list_lock;
132 wait_queue_head_t list_wait;
133 u16 csum_size;
134 struct list_head csum_list;
135 atomic_t cancel_req;
Arne Jansen86287642011-03-23 16:34:19 +0100136 int readonly;
Stefan Behrensff023aa2012-11-06 11:43:11 +0100137 int pages_per_rd_bio;
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400138 u32 sectorsize;
139 u32 nodesize;
Stefan Behrens63a212a2012-11-05 18:29:28 +0100140
141 int is_dev_replace;
Stefan Behrensff023aa2012-11-06 11:43:11 +0100142 struct scrub_wr_ctx wr_ctx;
Stefan Behrens63a212a2012-11-05 18:29:28 +0100143
Arne Jansena2de7332011-03-08 14:14:00 +0100144 /*
145 * statistics
146 */
147 struct btrfs_scrub_progress stat;
148 spinlock_t stat_lock;
149};
150
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200151struct scrub_fixup_nodatasum {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100152 struct scrub_ctx *sctx;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100153 struct btrfs_device *dev;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200154 u64 logical;
155 struct btrfs_root *root;
156 struct btrfs_work work;
157 int mirror_num;
158};
159
Josef Bacik652f25a2013-09-12 16:58:28 -0400160struct scrub_nocow_inode {
161 u64 inum;
162 u64 offset;
163 u64 root;
164 struct list_head list;
165};
166
Stefan Behrensff023aa2012-11-06 11:43:11 +0100167struct scrub_copy_nocow_ctx {
168 struct scrub_ctx *sctx;
169 u64 logical;
170 u64 len;
171 int mirror_num;
172 u64 physical_for_dev_replace;
Josef Bacik652f25a2013-09-12 16:58:28 -0400173 struct list_head inodes;
Stefan Behrensff023aa2012-11-06 11:43:11 +0100174 struct btrfs_work work;
175};
176
Jan Schmidt558540c2011-06-13 19:59:12 +0200177struct scrub_warning {
178 struct btrfs_path *path;
179 u64 extent_item_size;
180 char *scratch_buf;
181 char *msg_buf;
182 const char *errstr;
183 sector_t sector;
184 u64 logical;
185 struct btrfs_device *dev;
186 int msg_bufsize;
187 int scratch_bufsize;
188};
189
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400190
Stefan Behrensb6bfebc2012-11-02 16:44:58 +0100191static void scrub_pending_bio_inc(struct scrub_ctx *sctx);
192static void scrub_pending_bio_dec(struct scrub_ctx *sctx);
193static void scrub_pending_trans_workers_inc(struct scrub_ctx *sctx);
194static void scrub_pending_trans_workers_dec(struct scrub_ctx *sctx);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400195static int scrub_handle_errored_block(struct scrub_block *sblock_to_check);
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100196static int scrub_setup_recheck_block(struct scrub_ctx *sctx,
Stefan Behrens3ec706c2012-11-05 15:46:42 +0100197 struct btrfs_fs_info *fs_info,
Stefan Behrensff023aa2012-11-06 11:43:11 +0100198 struct scrub_block *original_sblock,
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400199 u64 length, u64 logical,
Stefan Behrensff023aa2012-11-06 11:43:11 +0100200 struct scrub_block *sblocks_for_recheck);
Stefan Behrens34f5c8e2012-11-02 16:16:26 +0100201static void scrub_recheck_block(struct btrfs_fs_info *fs_info,
202 struct scrub_block *sblock, int is_metadata,
203 int have_csum, u8 *csum, u64 generation,
204 u16 csum_size);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400205static void scrub_recheck_block_checksum(struct btrfs_fs_info *fs_info,
206 struct scrub_block *sblock,
207 int is_metadata, int have_csum,
208 const u8 *csum, u64 generation,
209 u16 csum_size);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400210static int scrub_repair_block_from_good_copy(struct scrub_block *sblock_bad,
211 struct scrub_block *sblock_good,
212 int force_write);
213static int scrub_repair_page_from_good_copy(struct scrub_block *sblock_bad,
214 struct scrub_block *sblock_good,
215 int page_num, int force_write);
Stefan Behrensff023aa2012-11-06 11:43:11 +0100216static void scrub_write_block_to_dev_replace(struct scrub_block *sblock);
217static int scrub_write_page_to_dev_replace(struct scrub_block *sblock,
218 int page_num);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400219static int scrub_checksum_data(struct scrub_block *sblock);
220static int scrub_checksum_tree_block(struct scrub_block *sblock);
221static int scrub_checksum_super(struct scrub_block *sblock);
222static void scrub_block_get(struct scrub_block *sblock);
223static void scrub_block_put(struct scrub_block *sblock);
Stefan Behrens7a9e9982012-11-02 14:58:04 +0100224static void scrub_page_get(struct scrub_page *spage);
225static void scrub_page_put(struct scrub_page *spage);
Stefan Behrensff023aa2012-11-06 11:43:11 +0100226static int scrub_add_page_to_rd_bio(struct scrub_ctx *sctx,
227 struct scrub_page *spage);
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100228static int scrub_pages(struct scrub_ctx *sctx, u64 logical, u64 len,
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100229 u64 physical, struct btrfs_device *dev, u64 flags,
Stefan Behrensff023aa2012-11-06 11:43:11 +0100230 u64 gen, int mirror_num, u8 *csum, int force,
231 u64 physical_for_dev_replace);
Stefan Behrens1623ede2012-03-27 14:21:26 -0400232static void scrub_bio_end_io(struct bio *bio, int err);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400233static void scrub_bio_end_io_worker(struct btrfs_work *work);
234static void scrub_block_complete(struct scrub_block *sblock);
Stefan Behrensff023aa2012-11-06 11:43:11 +0100235static void scrub_remap_extent(struct btrfs_fs_info *fs_info,
236 u64 extent_logical, u64 extent_len,
237 u64 *extent_physical,
238 struct btrfs_device **extent_dev,
239 int *extent_mirror_num);
240static int scrub_setup_wr_ctx(struct scrub_ctx *sctx,
241 struct scrub_wr_ctx *wr_ctx,
242 struct btrfs_fs_info *fs_info,
243 struct btrfs_device *dev,
244 int is_dev_replace);
245static void scrub_free_wr_ctx(struct scrub_wr_ctx *wr_ctx);
246static int scrub_add_page_to_wr_bio(struct scrub_ctx *sctx,
247 struct scrub_page *spage);
248static void scrub_wr_submit(struct scrub_ctx *sctx);
249static void scrub_wr_bio_end_io(struct bio *bio, int err);
250static void scrub_wr_bio_end_io_worker(struct btrfs_work *work);
251static int write_page_nocow(struct scrub_ctx *sctx,
252 u64 physical_for_dev_replace, struct page *page);
253static int copy_nocow_pages_for_inode(u64 inum, u64 offset, u64 root,
Josef Bacik652f25a2013-09-12 16:58:28 -0400254 struct scrub_copy_nocow_ctx *ctx);
Stefan Behrensff023aa2012-11-06 11:43:11 +0100255static int copy_nocow_pages(struct scrub_ctx *sctx, u64 logical, u64 len,
256 int mirror_num, u64 physical_for_dev_replace);
257static void copy_nocow_pages_worker(struct btrfs_work *work);
Wang Shilongcb7ab022013-12-04 21:16:53 +0800258static void __scrub_blocked_if_needed(struct btrfs_fs_info *fs_info);
Wang Shilong3cb09292013-12-04 21:15:19 +0800259static void scrub_blocked_if_needed(struct btrfs_fs_info *fs_info);
Stefan Behrens1623ede2012-03-27 14:21:26 -0400260
261
Stefan Behrensb6bfebc2012-11-02 16:44:58 +0100262static void scrub_pending_bio_inc(struct scrub_ctx *sctx)
263{
264 atomic_inc(&sctx->bios_in_flight);
265}
266
267static void scrub_pending_bio_dec(struct scrub_ctx *sctx)
268{
269 atomic_dec(&sctx->bios_in_flight);
270 wake_up(&sctx->list_wait);
271}
272
Wang Shilongcb7ab022013-12-04 21:16:53 +0800273static void __scrub_blocked_if_needed(struct btrfs_fs_info *fs_info)
Wang Shilong3cb09292013-12-04 21:15:19 +0800274{
275 while (atomic_read(&fs_info->scrub_pause_req)) {
276 mutex_unlock(&fs_info->scrub_lock);
277 wait_event(fs_info->scrub_pause_wait,
278 atomic_read(&fs_info->scrub_pause_req) == 0);
279 mutex_lock(&fs_info->scrub_lock);
280 }
281}
282
Wang Shilongcb7ab022013-12-04 21:16:53 +0800283static void scrub_blocked_if_needed(struct btrfs_fs_info *fs_info)
284{
285 atomic_inc(&fs_info->scrubs_paused);
286 wake_up(&fs_info->scrub_pause_wait);
287
288 mutex_lock(&fs_info->scrub_lock);
289 __scrub_blocked_if_needed(fs_info);
290 atomic_dec(&fs_info->scrubs_paused);
291 mutex_unlock(&fs_info->scrub_lock);
292
293 wake_up(&fs_info->scrub_pause_wait);
294}
295
Stefan Behrensb6bfebc2012-11-02 16:44:58 +0100296/*
297 * used for workers that require transaction commits (i.e., for the
298 * NOCOW case)
299 */
300static void scrub_pending_trans_workers_inc(struct scrub_ctx *sctx)
301{
302 struct btrfs_fs_info *fs_info = sctx->dev_root->fs_info;
303
304 /*
305 * increment scrubs_running to prevent cancel requests from
306 * completing as long as a worker is running. we must also
307 * increment scrubs_paused to prevent deadlocking on pause
308 * requests used for transactions commits (as the worker uses a
309 * transaction context). it is safe to regard the worker
310 * as paused for all matters practical. effectively, we only
311 * avoid cancellation requests from completing.
312 */
313 mutex_lock(&fs_info->scrub_lock);
314 atomic_inc(&fs_info->scrubs_running);
315 atomic_inc(&fs_info->scrubs_paused);
316 mutex_unlock(&fs_info->scrub_lock);
Wang Shilong32a44782014-02-19 19:24:19 +0800317
318 /*
319 * check if @scrubs_running=@scrubs_paused condition
320 * inside wait_event() is not an atomic operation.
321 * which means we may inc/dec @scrub_running/paused
322 * at any time. Let's wake up @scrub_pause_wait as
323 * much as we can to let commit transaction blocked less.
324 */
325 wake_up(&fs_info->scrub_pause_wait);
326
Stefan Behrensb6bfebc2012-11-02 16:44:58 +0100327 atomic_inc(&sctx->workers_pending);
328}
329
330/* used for workers that require transaction commits */
331static void scrub_pending_trans_workers_dec(struct scrub_ctx *sctx)
332{
333 struct btrfs_fs_info *fs_info = sctx->dev_root->fs_info;
334
335 /*
336 * see scrub_pending_trans_workers_inc() why we're pretending
337 * to be paused in the scrub counters
338 */
339 mutex_lock(&fs_info->scrub_lock);
340 atomic_dec(&fs_info->scrubs_running);
341 atomic_dec(&fs_info->scrubs_paused);
342 mutex_unlock(&fs_info->scrub_lock);
343 atomic_dec(&sctx->workers_pending);
344 wake_up(&fs_info->scrub_pause_wait);
345 wake_up(&sctx->list_wait);
346}
347
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100348static void scrub_free_csums(struct scrub_ctx *sctx)
Arne Jansena2de7332011-03-08 14:14:00 +0100349{
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100350 while (!list_empty(&sctx->csum_list)) {
Arne Jansena2de7332011-03-08 14:14:00 +0100351 struct btrfs_ordered_sum *sum;
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100352 sum = list_first_entry(&sctx->csum_list,
Arne Jansena2de7332011-03-08 14:14:00 +0100353 struct btrfs_ordered_sum, list);
354 list_del(&sum->list);
355 kfree(sum);
356 }
357}
358
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100359static noinline_for_stack void scrub_free_ctx(struct scrub_ctx *sctx)
Arne Jansena2de7332011-03-08 14:14:00 +0100360{
361 int i;
Arne Jansena2de7332011-03-08 14:14:00 +0100362
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100363 if (!sctx)
Arne Jansena2de7332011-03-08 14:14:00 +0100364 return;
365
Stefan Behrensff023aa2012-11-06 11:43:11 +0100366 scrub_free_wr_ctx(&sctx->wr_ctx);
367
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400368 /* this can happen when scrub is cancelled */
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100369 if (sctx->curr != -1) {
370 struct scrub_bio *sbio = sctx->bios[sctx->curr];
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400371
372 for (i = 0; i < sbio->page_count; i++) {
Stefan Behrensff023aa2012-11-06 11:43:11 +0100373 WARN_ON(!sbio->pagev[i]->page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400374 scrub_block_put(sbio->pagev[i]->sblock);
375 }
376 bio_put(sbio->bio);
377 }
378
Stefan Behrensff023aa2012-11-06 11:43:11 +0100379 for (i = 0; i < SCRUB_BIOS_PER_SCTX; ++i) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100380 struct scrub_bio *sbio = sctx->bios[i];
Arne Jansena2de7332011-03-08 14:14:00 +0100381
382 if (!sbio)
383 break;
Arne Jansena2de7332011-03-08 14:14:00 +0100384 kfree(sbio);
385 }
386
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100387 scrub_free_csums(sctx);
388 kfree(sctx);
Arne Jansena2de7332011-03-08 14:14:00 +0100389}
390
391static noinline_for_stack
Stefan Behrens63a212a2012-11-05 18:29:28 +0100392struct scrub_ctx *scrub_setup_ctx(struct btrfs_device *dev, int is_dev_replace)
Arne Jansena2de7332011-03-08 14:14:00 +0100393{
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100394 struct scrub_ctx *sctx;
Arne Jansena2de7332011-03-08 14:14:00 +0100395 int i;
Arne Jansena2de7332011-03-08 14:14:00 +0100396 struct btrfs_fs_info *fs_info = dev->dev_root->fs_info;
Stefan Behrensff023aa2012-11-06 11:43:11 +0100397 int pages_per_rd_bio;
398 int ret;
Arne Jansena2de7332011-03-08 14:14:00 +0100399
Stefan Behrensff023aa2012-11-06 11:43:11 +0100400 /*
401 * the setting of pages_per_rd_bio is correct for scrub but might
402 * be wrong for the dev_replace code where we might read from
403 * different devices in the initial huge bios. However, that
404 * code is able to correctly handle the case when adding a page
405 * to a bio fails.
406 */
407 if (dev->bdev)
408 pages_per_rd_bio = min_t(int, SCRUB_PAGES_PER_RD_BIO,
409 bio_get_nr_vecs(dev->bdev));
410 else
411 pages_per_rd_bio = SCRUB_PAGES_PER_RD_BIO;
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100412 sctx = kzalloc(sizeof(*sctx), GFP_NOFS);
413 if (!sctx)
Arne Jansena2de7332011-03-08 14:14:00 +0100414 goto nomem;
Stefan Behrens63a212a2012-11-05 18:29:28 +0100415 sctx->is_dev_replace = is_dev_replace;
Stefan Behrensff023aa2012-11-06 11:43:11 +0100416 sctx->pages_per_rd_bio = pages_per_rd_bio;
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100417 sctx->curr = -1;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100418 sctx->dev_root = dev->dev_root;
Stefan Behrensff023aa2012-11-06 11:43:11 +0100419 for (i = 0; i < SCRUB_BIOS_PER_SCTX; ++i) {
Arne Jansena2de7332011-03-08 14:14:00 +0100420 struct scrub_bio *sbio;
421
422 sbio = kzalloc(sizeof(*sbio), GFP_NOFS);
423 if (!sbio)
424 goto nomem;
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100425 sctx->bios[i] = sbio;
Arne Jansena2de7332011-03-08 14:14:00 +0100426
Arne Jansena2de7332011-03-08 14:14:00 +0100427 sbio->index = i;
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100428 sbio->sctx = sctx;
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400429 sbio->page_count = 0;
Liu Bo9e0af232014-08-15 23:36:53 +0800430 btrfs_init_work(&sbio->work, btrfs_scrub_helper,
431 scrub_bio_end_io_worker, NULL, NULL);
Arne Jansena2de7332011-03-08 14:14:00 +0100432
Stefan Behrensff023aa2012-11-06 11:43:11 +0100433 if (i != SCRUB_BIOS_PER_SCTX - 1)
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100434 sctx->bios[i]->next_free = i + 1;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200435 else
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100436 sctx->bios[i]->next_free = -1;
Arne Jansena2de7332011-03-08 14:14:00 +0100437 }
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100438 sctx->first_free = 0;
439 sctx->nodesize = dev->dev_root->nodesize;
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100440 sctx->sectorsize = dev->dev_root->sectorsize;
Stefan Behrensb6bfebc2012-11-02 16:44:58 +0100441 atomic_set(&sctx->bios_in_flight, 0);
442 atomic_set(&sctx->workers_pending, 0);
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100443 atomic_set(&sctx->cancel_req, 0);
444 sctx->csum_size = btrfs_super_csum_size(fs_info->super_copy);
445 INIT_LIST_HEAD(&sctx->csum_list);
Arne Jansena2de7332011-03-08 14:14:00 +0100446
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100447 spin_lock_init(&sctx->list_lock);
448 spin_lock_init(&sctx->stat_lock);
449 init_waitqueue_head(&sctx->list_wait);
Stefan Behrensff023aa2012-11-06 11:43:11 +0100450
451 ret = scrub_setup_wr_ctx(sctx, &sctx->wr_ctx, fs_info,
452 fs_info->dev_replace.tgtdev, is_dev_replace);
453 if (ret) {
454 scrub_free_ctx(sctx);
455 return ERR_PTR(ret);
456 }
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100457 return sctx;
Arne Jansena2de7332011-03-08 14:14:00 +0100458
459nomem:
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100460 scrub_free_ctx(sctx);
Arne Jansena2de7332011-03-08 14:14:00 +0100461 return ERR_PTR(-ENOMEM);
462}
463
Stefan Behrensff023aa2012-11-06 11:43:11 +0100464static int scrub_print_warning_inode(u64 inum, u64 offset, u64 root,
465 void *warn_ctx)
Jan Schmidt558540c2011-06-13 19:59:12 +0200466{
467 u64 isize;
468 u32 nlink;
469 int ret;
470 int i;
471 struct extent_buffer *eb;
472 struct btrfs_inode_item *inode_item;
Stefan Behrensff023aa2012-11-06 11:43:11 +0100473 struct scrub_warning *swarn = warn_ctx;
Jan Schmidt558540c2011-06-13 19:59:12 +0200474 struct btrfs_fs_info *fs_info = swarn->dev->dev_root->fs_info;
475 struct inode_fs_paths *ipath = NULL;
476 struct btrfs_root *local_root;
477 struct btrfs_key root_key;
478
479 root_key.objectid = root;
480 root_key.type = BTRFS_ROOT_ITEM_KEY;
481 root_key.offset = (u64)-1;
482 local_root = btrfs_read_fs_root_no_name(fs_info, &root_key);
483 if (IS_ERR(local_root)) {
484 ret = PTR_ERR(local_root);
485 goto err;
486 }
487
488 ret = inode_item_info(inum, 0, local_root, swarn->path);
489 if (ret) {
490 btrfs_release_path(swarn->path);
491 goto err;
492 }
493
494 eb = swarn->path->nodes[0];
495 inode_item = btrfs_item_ptr(eb, swarn->path->slots[0],
496 struct btrfs_inode_item);
497 isize = btrfs_inode_size(eb, inode_item);
498 nlink = btrfs_inode_nlink(eb, inode_item);
499 btrfs_release_path(swarn->path);
500
501 ipath = init_ipath(4096, local_root, swarn->path);
Dan Carpenter26bdef52011-11-16 11:28:01 +0300502 if (IS_ERR(ipath)) {
503 ret = PTR_ERR(ipath);
504 ipath = NULL;
505 goto err;
506 }
Jan Schmidt558540c2011-06-13 19:59:12 +0200507 ret = paths_from_inode(inum, ipath);
508
509 if (ret < 0)
510 goto err;
511
512 /*
513 * we deliberately ignore the bit ipath might have been too small to
514 * hold all of the paths here
515 */
516 for (i = 0; i < ipath->fspath->elem_cnt; ++i)
Frank Holtonefe120a2013-12-20 11:37:06 -0500517 printk_in_rcu(KERN_WARNING "BTRFS: %s at logical %llu on dev "
Jan Schmidt558540c2011-06-13 19:59:12 +0200518 "%s, sector %llu, root %llu, inode %llu, offset %llu, "
519 "length %llu, links %u (path: %s)\n", swarn->errstr,
Josef Bacik606686e2012-06-04 14:03:51 -0400520 swarn->logical, rcu_str_deref(swarn->dev->name),
Jan Schmidt558540c2011-06-13 19:59:12 +0200521 (unsigned long long)swarn->sector, root, inum, offset,
522 min(isize - offset, (u64)PAGE_SIZE), nlink,
Jeff Mahoney745c4d82011-11-20 07:31:57 -0500523 (char *)(unsigned long)ipath->fspath->val[i]);
Jan Schmidt558540c2011-06-13 19:59:12 +0200524
525 free_ipath(ipath);
526 return 0;
527
528err:
Frank Holtonefe120a2013-12-20 11:37:06 -0500529 printk_in_rcu(KERN_WARNING "BTRFS: %s at logical %llu on dev "
Jan Schmidt558540c2011-06-13 19:59:12 +0200530 "%s, sector %llu, root %llu, inode %llu, offset %llu: path "
531 "resolving failed with ret=%d\n", swarn->errstr,
Josef Bacik606686e2012-06-04 14:03:51 -0400532 swarn->logical, rcu_str_deref(swarn->dev->name),
Jan Schmidt558540c2011-06-13 19:59:12 +0200533 (unsigned long long)swarn->sector, root, inum, offset, ret);
534
535 free_ipath(ipath);
536 return 0;
537}
538
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400539static void scrub_print_warning(const char *errstr, struct scrub_block *sblock)
Jan Schmidt558540c2011-06-13 19:59:12 +0200540{
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100541 struct btrfs_device *dev;
542 struct btrfs_fs_info *fs_info;
Jan Schmidt558540c2011-06-13 19:59:12 +0200543 struct btrfs_path *path;
544 struct btrfs_key found_key;
545 struct extent_buffer *eb;
546 struct btrfs_extent_item *ei;
547 struct scrub_warning swarn;
Jan Schmidt558540c2011-06-13 19:59:12 +0200548 unsigned long ptr = 0;
Jan Schmidt4692cf52011-12-02 14:56:41 +0100549 u64 extent_item_pos;
Liu Bo69917e42012-09-07 20:01:28 -0600550 u64 flags = 0;
551 u64 ref_root;
552 u32 item_size;
553 u8 ref_level;
554 const int bufsize = 4096;
555 int ret;
Jan Schmidt558540c2011-06-13 19:59:12 +0200556
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100557 WARN_ON(sblock->page_count < 1);
Stefan Behrens7a9e9982012-11-02 14:58:04 +0100558 dev = sblock->pagev[0]->dev;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100559 fs_info = sblock->sctx->dev_root->fs_info;
560
Jan Schmidt558540c2011-06-13 19:59:12 +0200561 path = btrfs_alloc_path();
562
563 swarn.scratch_buf = kmalloc(bufsize, GFP_NOFS);
564 swarn.msg_buf = kmalloc(bufsize, GFP_NOFS);
Stefan Behrens7a9e9982012-11-02 14:58:04 +0100565 swarn.sector = (sblock->pagev[0]->physical) >> 9;
566 swarn.logical = sblock->pagev[0]->logical;
Jan Schmidt558540c2011-06-13 19:59:12 +0200567 swarn.errstr = errstr;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100568 swarn.dev = NULL;
Jan Schmidt558540c2011-06-13 19:59:12 +0200569 swarn.msg_bufsize = bufsize;
570 swarn.scratch_bufsize = bufsize;
571
572 if (!path || !swarn.scratch_buf || !swarn.msg_buf)
573 goto out;
574
Liu Bo69917e42012-09-07 20:01:28 -0600575 ret = extent_from_logical(fs_info, swarn.logical, path, &found_key,
576 &flags);
Jan Schmidt558540c2011-06-13 19:59:12 +0200577 if (ret < 0)
578 goto out;
579
Jan Schmidt4692cf52011-12-02 14:56:41 +0100580 extent_item_pos = swarn.logical - found_key.objectid;
Jan Schmidt558540c2011-06-13 19:59:12 +0200581 swarn.extent_item_size = found_key.offset;
582
583 eb = path->nodes[0];
584 ei = btrfs_item_ptr(eb, path->slots[0], struct btrfs_extent_item);
585 item_size = btrfs_item_size_nr(eb, path->slots[0]);
586
Liu Bo69917e42012-09-07 20:01:28 -0600587 if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) {
Jan Schmidt558540c2011-06-13 19:59:12 +0200588 do {
Liu Bo6eda71d2014-06-09 10:54:07 +0800589 ret = tree_backref_for_extent(&ptr, eb, &found_key, ei,
590 item_size, &ref_root,
591 &ref_level);
Josef Bacik606686e2012-06-04 14:03:51 -0400592 printk_in_rcu(KERN_WARNING
Frank Holtonefe120a2013-12-20 11:37:06 -0500593 "BTRFS: %s at logical %llu on dev %s, "
Jan Schmidt558540c2011-06-13 19:59:12 +0200594 "sector %llu: metadata %s (level %d) in tree "
Josef Bacik606686e2012-06-04 14:03:51 -0400595 "%llu\n", errstr, swarn.logical,
596 rcu_str_deref(dev->name),
Jan Schmidt558540c2011-06-13 19:59:12 +0200597 (unsigned long long)swarn.sector,
598 ref_level ? "node" : "leaf",
599 ret < 0 ? -1 : ref_level,
600 ret < 0 ? -1 : ref_root);
601 } while (ret != 1);
Josef Bacikd8fe29e2013-03-29 08:09:34 -0600602 btrfs_release_path(path);
Jan Schmidt558540c2011-06-13 19:59:12 +0200603 } else {
Josef Bacikd8fe29e2013-03-29 08:09:34 -0600604 btrfs_release_path(path);
Jan Schmidt558540c2011-06-13 19:59:12 +0200605 swarn.path = path;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100606 swarn.dev = dev;
Jan Schmidt7a3ae2f2012-03-23 17:32:28 +0100607 iterate_extent_inodes(fs_info, found_key.objectid,
608 extent_item_pos, 1,
Jan Schmidt558540c2011-06-13 19:59:12 +0200609 scrub_print_warning_inode, &swarn);
610 }
611
612out:
613 btrfs_free_path(path);
614 kfree(swarn.scratch_buf);
615 kfree(swarn.msg_buf);
616}
617
Stefan Behrensff023aa2012-11-06 11:43:11 +0100618static int scrub_fixup_readpage(u64 inum, u64 offset, u64 root, void *fixup_ctx)
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200619{
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200620 struct page *page = NULL;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200621 unsigned long index;
Stefan Behrensff023aa2012-11-06 11:43:11 +0100622 struct scrub_fixup_nodatasum *fixup = fixup_ctx;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200623 int ret;
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200624 int corrected = 0;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200625 struct btrfs_key key;
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200626 struct inode *inode = NULL;
Liu Bo6f1c3602013-01-29 03:22:10 +0000627 struct btrfs_fs_info *fs_info;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200628 u64 end = offset + PAGE_SIZE - 1;
629 struct btrfs_root *local_root;
Liu Bo6f1c3602013-01-29 03:22:10 +0000630 int srcu_index;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200631
632 key.objectid = root;
633 key.type = BTRFS_ROOT_ITEM_KEY;
634 key.offset = (u64)-1;
Liu Bo6f1c3602013-01-29 03:22:10 +0000635
636 fs_info = fixup->root->fs_info;
637 srcu_index = srcu_read_lock(&fs_info->subvol_srcu);
638
639 local_root = btrfs_read_fs_root_no_name(fs_info, &key);
640 if (IS_ERR(local_root)) {
641 srcu_read_unlock(&fs_info->subvol_srcu, srcu_index);
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200642 return PTR_ERR(local_root);
Liu Bo6f1c3602013-01-29 03:22:10 +0000643 }
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200644
645 key.type = BTRFS_INODE_ITEM_KEY;
646 key.objectid = inum;
647 key.offset = 0;
Liu Bo6f1c3602013-01-29 03:22:10 +0000648 inode = btrfs_iget(fs_info->sb, &key, local_root, NULL);
649 srcu_read_unlock(&fs_info->subvol_srcu, srcu_index);
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200650 if (IS_ERR(inode))
651 return PTR_ERR(inode);
652
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200653 index = offset >> PAGE_CACHE_SHIFT;
654
655 page = find_or_create_page(inode->i_mapping, index, GFP_NOFS);
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200656 if (!page) {
657 ret = -ENOMEM;
658 goto out;
659 }
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200660
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200661 if (PageUptodate(page)) {
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200662 if (PageDirty(page)) {
663 /*
664 * we need to write the data to the defect sector. the
665 * data that was in that sector is not in memory,
666 * because the page was modified. we must not write the
667 * modified page to that sector.
668 *
669 * TODO: what could be done here: wait for the delalloc
670 * runner to write out that page (might involve
671 * COW) and see whether the sector is still
672 * referenced afterwards.
673 *
674 * For the meantime, we'll treat this error
675 * incorrectable, although there is a chance that a
676 * later scrub will find the bad sector again and that
677 * there's no dirty page in memory, then.
678 */
679 ret = -EIO;
680 goto out;
681 }
Stefan Behrens3ec706c2012-11-05 15:46:42 +0100682 fs_info = BTRFS_I(inode)->root->fs_info;
683 ret = repair_io_failure(fs_info, offset, PAGE_SIZE,
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200684 fixup->logical, page,
Miao Xieffdd2012014-09-12 18:44:00 +0800685 offset - page_offset(page),
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200686 fixup->mirror_num);
687 unlock_page(page);
688 corrected = !ret;
689 } else {
690 /*
691 * we need to get good data first. the general readpage path
692 * will call repair_io_failure for us, we just have to make
693 * sure we read the bad mirror.
694 */
695 ret = set_extent_bits(&BTRFS_I(inode)->io_tree, offset, end,
696 EXTENT_DAMAGED, GFP_NOFS);
697 if (ret) {
698 /* set_extent_bits should give proper error */
699 WARN_ON(ret > 0);
700 if (ret > 0)
701 ret = -EFAULT;
702 goto out;
703 }
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200704
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200705 ret = extent_read_full_page(&BTRFS_I(inode)->io_tree, page,
706 btrfs_get_extent,
707 fixup->mirror_num);
708 wait_on_page_locked(page);
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200709
Jan Schmidt5da6fcb2011-08-04 18:11:04 +0200710 corrected = !test_range_bit(&BTRFS_I(inode)->io_tree, offset,
711 end, EXTENT_DAMAGED, 0, NULL);
712 if (!corrected)
713 clear_extent_bits(&BTRFS_I(inode)->io_tree, offset, end,
714 EXTENT_DAMAGED, GFP_NOFS);
715 }
716
717out:
718 if (page)
719 put_page(page);
Tobias Klauser7fb18a02014-04-25 14:58:05 +0200720
721 iput(inode);
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200722
723 if (ret < 0)
724 return ret;
725
726 if (ret == 0 && corrected) {
727 /*
728 * we only need to call readpage for one of the inodes belonging
729 * to this extent. so make iterate_extent_inodes stop
730 */
731 return 1;
732 }
733
734 return -EIO;
735}
736
737static void scrub_fixup_nodatasum(struct btrfs_work *work)
738{
739 int ret;
740 struct scrub_fixup_nodatasum *fixup;
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100741 struct scrub_ctx *sctx;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200742 struct btrfs_trans_handle *trans = NULL;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200743 struct btrfs_path *path;
744 int uncorrectable = 0;
745
746 fixup = container_of(work, struct scrub_fixup_nodatasum, work);
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100747 sctx = fixup->sctx;
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200748
749 path = btrfs_alloc_path();
750 if (!path) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100751 spin_lock(&sctx->stat_lock);
752 ++sctx->stat.malloc_errors;
753 spin_unlock(&sctx->stat_lock);
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200754 uncorrectable = 1;
755 goto out;
756 }
757
758 trans = btrfs_join_transaction(fixup->root);
759 if (IS_ERR(trans)) {
760 uncorrectable = 1;
761 goto out;
762 }
763
764 /*
765 * the idea is to trigger a regular read through the standard path. we
766 * read a page from the (failed) logical address by specifying the
767 * corresponding copynum of the failed sector. thus, that readpage is
768 * expected to fail.
769 * that is the point where on-the-fly error correction will kick in
770 * (once it's finished) and rewrite the failed sector if a good copy
771 * can be found.
772 */
773 ret = iterate_inodes_from_logical(fixup->logical, fixup->root->fs_info,
774 path, scrub_fixup_readpage,
775 fixup);
776 if (ret < 0) {
777 uncorrectable = 1;
778 goto out;
779 }
780 WARN_ON(ret != 1);
781
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100782 spin_lock(&sctx->stat_lock);
783 ++sctx->stat.corrected_errors;
784 spin_unlock(&sctx->stat_lock);
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200785
786out:
787 if (trans && !IS_ERR(trans))
788 btrfs_end_transaction(trans, fixup->root);
789 if (uncorrectable) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100790 spin_lock(&sctx->stat_lock);
791 ++sctx->stat.uncorrectable_errors;
792 spin_unlock(&sctx->stat_lock);
Stefan Behrensff023aa2012-11-06 11:43:11 +0100793 btrfs_dev_replace_stats_inc(
794 &sctx->dev_root->fs_info->dev_replace.
795 num_uncorrectable_read_errors);
Frank Holtonefe120a2013-12-20 11:37:06 -0500796 printk_ratelimited_in_rcu(KERN_ERR "BTRFS: "
797 "unable to fixup (nodatasum) error at logical %llu on dev %s\n",
Geert Uytterhoevenc1c9ff72013-08-20 13:20:07 +0200798 fixup->logical, rcu_str_deref(fixup->dev->name));
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200799 }
800
801 btrfs_free_path(path);
802 kfree(fixup);
803
Stefan Behrensb6bfebc2012-11-02 16:44:58 +0100804 scrub_pending_trans_workers_dec(sctx);
Jan Schmidt0ef8e452011-06-13 20:04:15 +0200805}
806
Arne Jansena2de7332011-03-08 14:14:00 +0100807/*
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400808 * scrub_handle_errored_block gets called when either verification of the
809 * pages failed or the bio failed to read, e.g. with EIO. In the latter
810 * case, this function handles all pages in the bio, even though only one
811 * may be bad.
812 * The goal of this function is to repair the errored block by using the
813 * contents of one of the mirrors.
Arne Jansena2de7332011-03-08 14:14:00 +0100814 */
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400815static int scrub_handle_errored_block(struct scrub_block *sblock_to_check)
Arne Jansena2de7332011-03-08 14:14:00 +0100816{
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100817 struct scrub_ctx *sctx = sblock_to_check->sctx;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100818 struct btrfs_device *dev;
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400819 struct btrfs_fs_info *fs_info;
Arne Jansena2de7332011-03-08 14:14:00 +0100820 u64 length;
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400821 u64 logical;
822 u64 generation;
823 unsigned int failed_mirror_index;
824 unsigned int is_metadata;
825 unsigned int have_csum;
826 u8 *csum;
827 struct scrub_block *sblocks_for_recheck; /* holds one for each mirror */
828 struct scrub_block *sblock_bad;
Arne Jansena2de7332011-03-08 14:14:00 +0100829 int ret;
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400830 int mirror_index;
831 int page_num;
832 int success;
833 static DEFINE_RATELIMIT_STATE(_rs, DEFAULT_RATELIMIT_INTERVAL,
834 DEFAULT_RATELIMIT_BURST);
Arne Jansena2de7332011-03-08 14:14:00 +0100835
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400836 BUG_ON(sblock_to_check->page_count < 1);
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100837 fs_info = sctx->dev_root->fs_info;
Stefan Behrens4ded4f62012-11-14 18:57:29 +0000838 if (sblock_to_check->pagev[0]->flags & BTRFS_EXTENT_FLAG_SUPER) {
839 /*
840 * if we find an error in a super block, we just report it.
841 * They will get written with the next transaction commit
842 * anyway
843 */
844 spin_lock(&sctx->stat_lock);
845 ++sctx->stat.super_errors;
846 spin_unlock(&sctx->stat_lock);
847 return 0;
848 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400849 length = sblock_to_check->page_count * PAGE_SIZE;
Stefan Behrens7a9e9982012-11-02 14:58:04 +0100850 logical = sblock_to_check->pagev[0]->logical;
851 generation = sblock_to_check->pagev[0]->generation;
852 BUG_ON(sblock_to_check->pagev[0]->mirror_num < 1);
853 failed_mirror_index = sblock_to_check->pagev[0]->mirror_num - 1;
854 is_metadata = !(sblock_to_check->pagev[0]->flags &
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400855 BTRFS_EXTENT_FLAG_DATA);
Stefan Behrens7a9e9982012-11-02 14:58:04 +0100856 have_csum = sblock_to_check->pagev[0]->have_csum;
857 csum = sblock_to_check->pagev[0]->csum;
858 dev = sblock_to_check->pagev[0]->dev;
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400859
Stefan Behrensff023aa2012-11-06 11:43:11 +0100860 if (sctx->is_dev_replace && !is_metadata && !have_csum) {
861 sblocks_for_recheck = NULL;
862 goto nodatasum_case;
863 }
864
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400865 /*
866 * read all mirrors one after the other. This includes to
867 * re-read the extent or metadata block that failed (that was
868 * the cause that this fixup code is called) another time,
869 * page by page this time in order to know which pages
870 * caused I/O errors and which ones are good (for all mirrors).
871 * It is the goal to handle the situation when more than one
872 * mirror contains I/O errors, but the errors do not
873 * overlap, i.e. the data can be repaired by selecting the
874 * pages from those mirrors without I/O error on the
875 * particular pages. One example (with blocks >= 2 * PAGE_SIZE)
876 * would be that mirror #1 has an I/O error on the first page,
877 * the second page is good, and mirror #2 has an I/O error on
878 * the second page, but the first page is good.
879 * Then the first page of the first mirror can be repaired by
880 * taking the first page of the second mirror, and the
881 * second page of the second mirror can be repaired by
882 * copying the contents of the 2nd page of the 1st mirror.
883 * One more note: if the pages of one mirror contain I/O
884 * errors, the checksum cannot be verified. In order to get
885 * the best data for repairing, the first attempt is to find
886 * a mirror without I/O errors and with a validated checksum.
887 * Only if this is not possible, the pages are picked from
888 * mirrors with I/O errors without considering the checksum.
889 * If the latter is the case, at the end, the checksum of the
890 * repaired area is verified in order to correctly maintain
891 * the statistics.
892 */
893
894 sblocks_for_recheck = kzalloc(BTRFS_MAX_MIRRORS *
895 sizeof(*sblocks_for_recheck),
896 GFP_NOFS);
897 if (!sblocks_for_recheck) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100898 spin_lock(&sctx->stat_lock);
899 sctx->stat.malloc_errors++;
900 sctx->stat.read_errors++;
901 sctx->stat.uncorrectable_errors++;
902 spin_unlock(&sctx->stat_lock);
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100903 btrfs_dev_stat_inc_and_print(dev, BTRFS_DEV_STAT_READ_ERRS);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400904 goto out;
905 }
906
907 /* setup the context, map the logical blocks and alloc the pages */
Stefan Behrensff023aa2012-11-06 11:43:11 +0100908 ret = scrub_setup_recheck_block(sctx, fs_info, sblock_to_check, length,
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400909 logical, sblocks_for_recheck);
910 if (ret) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100911 spin_lock(&sctx->stat_lock);
912 sctx->stat.read_errors++;
913 sctx->stat.uncorrectable_errors++;
914 spin_unlock(&sctx->stat_lock);
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100915 btrfs_dev_stat_inc_and_print(dev, BTRFS_DEV_STAT_READ_ERRS);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400916 goto out;
917 }
918 BUG_ON(failed_mirror_index >= BTRFS_MAX_MIRRORS);
919 sblock_bad = sblocks_for_recheck + failed_mirror_index;
920
921 /* build and submit the bios for the failed mirror, check checksums */
Stefan Behrens34f5c8e2012-11-02 16:16:26 +0100922 scrub_recheck_block(fs_info, sblock_bad, is_metadata, have_csum,
923 csum, generation, sctx->csum_size);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400924
925 if (!sblock_bad->header_error && !sblock_bad->checksum_error &&
926 sblock_bad->no_io_error_seen) {
927 /*
928 * the error disappeared after reading page by page, or
929 * the area was part of a huge bio and other parts of the
930 * bio caused I/O errors, or the block layer merged several
931 * read requests into one and the error is caused by a
932 * different bio (usually one of the two latter cases is
933 * the cause)
934 */
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100935 spin_lock(&sctx->stat_lock);
936 sctx->stat.unverified_errors++;
937 spin_unlock(&sctx->stat_lock);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400938
Stefan Behrensff023aa2012-11-06 11:43:11 +0100939 if (sctx->is_dev_replace)
940 scrub_write_block_to_dev_replace(sblock_bad);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400941 goto out;
942 }
943
944 if (!sblock_bad->no_io_error_seen) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100945 spin_lock(&sctx->stat_lock);
946 sctx->stat.read_errors++;
947 spin_unlock(&sctx->stat_lock);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400948 if (__ratelimit(&_rs))
949 scrub_print_warning("i/o error", sblock_to_check);
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100950 btrfs_dev_stat_inc_and_print(dev, BTRFS_DEV_STAT_READ_ERRS);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400951 } else if (sblock_bad->checksum_error) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100952 spin_lock(&sctx->stat_lock);
953 sctx->stat.csum_errors++;
954 spin_unlock(&sctx->stat_lock);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400955 if (__ratelimit(&_rs))
956 scrub_print_warning("checksum error", sblock_to_check);
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100957 btrfs_dev_stat_inc_and_print(dev,
Stefan Behrens442a4f62012-05-25 16:06:08 +0200958 BTRFS_DEV_STAT_CORRUPTION_ERRS);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400959 } else if (sblock_bad->header_error) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100960 spin_lock(&sctx->stat_lock);
961 sctx->stat.verify_errors++;
962 spin_unlock(&sctx->stat_lock);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400963 if (__ratelimit(&_rs))
964 scrub_print_warning("checksum/header error",
965 sblock_to_check);
Stefan Behrens442a4f62012-05-25 16:06:08 +0200966 if (sblock_bad->generation_error)
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100967 btrfs_dev_stat_inc_and_print(dev,
Stefan Behrens442a4f62012-05-25 16:06:08 +0200968 BTRFS_DEV_STAT_GENERATION_ERRS);
969 else
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100970 btrfs_dev_stat_inc_and_print(dev,
Stefan Behrens442a4f62012-05-25 16:06:08 +0200971 BTRFS_DEV_STAT_CORRUPTION_ERRS);
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400972 }
973
Ilya Dryomov33ef30a2013-11-03 19:06:38 +0200974 if (sctx->readonly) {
975 ASSERT(!sctx->is_dev_replace);
976 goto out;
977 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400978
979 if (!is_metadata && !have_csum) {
980 struct scrub_fixup_nodatasum *fixup_nodatasum;
981
Stefan Behrensff023aa2012-11-06 11:43:11 +0100982nodatasum_case:
983 WARN_ON(sctx->is_dev_replace);
984
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400985 /*
986 * !is_metadata and !have_csum, this means that the data
987 * might not be COW'ed, that it might be modified
988 * concurrently. The general strategy to work on the
989 * commit root does not help in the case when COW is not
990 * used.
991 */
992 fixup_nodatasum = kzalloc(sizeof(*fixup_nodatasum), GFP_NOFS);
993 if (!fixup_nodatasum)
994 goto did_not_correct_error;
Stefan Behrensd9d181c2012-11-02 09:58:09 +0100995 fixup_nodatasum->sctx = sctx;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +0100996 fixup_nodatasum->dev = dev;
Stefan Behrensb5d67f62012-03-27 14:21:27 -0400997 fixup_nodatasum->logical = logical;
998 fixup_nodatasum->root = fs_info->extent_root;
999 fixup_nodatasum->mirror_num = failed_mirror_index + 1;
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01001000 scrub_pending_trans_workers_inc(sctx);
Liu Bo9e0af232014-08-15 23:36:53 +08001001 btrfs_init_work(&fixup_nodatasum->work, btrfs_scrub_helper,
1002 scrub_fixup_nodatasum, NULL, NULL);
Qu Wenruo0339ef22014-02-28 10:46:17 +08001003 btrfs_queue_work(fs_info->scrub_workers,
1004 &fixup_nodatasum->work);
Arne Jansena2de7332011-03-08 14:14:00 +01001005 goto out;
1006 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001007
1008 /*
1009 * now build and submit the bios for the other mirrors, check
Stefan Behrenscb2ced72012-11-02 16:14:21 +01001010 * checksums.
1011 * First try to pick the mirror which is completely without I/O
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001012 * errors and also does not have a checksum error.
1013 * If one is found, and if a checksum is present, the full block
1014 * that is known to contain an error is rewritten. Afterwards
1015 * the block is known to be corrected.
1016 * If a mirror is found which is completely correct, and no
1017 * checksum is present, only those pages are rewritten that had
1018 * an I/O error in the block to be repaired, since it cannot be
1019 * determined, which copy of the other pages is better (and it
1020 * could happen otherwise that a correct page would be
1021 * overwritten by a bad one).
1022 */
1023 for (mirror_index = 0;
1024 mirror_index < BTRFS_MAX_MIRRORS &&
1025 sblocks_for_recheck[mirror_index].page_count > 0;
1026 mirror_index++) {
Stefan Behrenscb2ced72012-11-02 16:14:21 +01001027 struct scrub_block *sblock_other;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001028
Stefan Behrenscb2ced72012-11-02 16:14:21 +01001029 if (mirror_index == failed_mirror_index)
1030 continue;
1031 sblock_other = sblocks_for_recheck + mirror_index;
1032
1033 /* build and submit the bios, check checksums */
Stefan Behrens34f5c8e2012-11-02 16:16:26 +01001034 scrub_recheck_block(fs_info, sblock_other, is_metadata,
1035 have_csum, csum, generation,
1036 sctx->csum_size);
1037
1038 if (!sblock_other->header_error &&
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001039 !sblock_other->checksum_error &&
1040 sblock_other->no_io_error_seen) {
Stefan Behrensff023aa2012-11-06 11:43:11 +01001041 if (sctx->is_dev_replace) {
1042 scrub_write_block_to_dev_replace(sblock_other);
1043 } else {
1044 int force_write = is_metadata || have_csum;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001045
Stefan Behrensff023aa2012-11-06 11:43:11 +01001046 ret = scrub_repair_block_from_good_copy(
1047 sblock_bad, sblock_other,
1048 force_write);
1049 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001050 if (0 == ret)
1051 goto corrected_error;
Arne Jansena2de7332011-03-08 14:14:00 +01001052 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001053 }
1054
1055 /*
Stefan Behrensff023aa2012-11-06 11:43:11 +01001056 * for dev_replace, pick good pages and write to the target device.
1057 */
1058 if (sctx->is_dev_replace) {
1059 success = 1;
1060 for (page_num = 0; page_num < sblock_bad->page_count;
1061 page_num++) {
1062 int sub_success;
1063
1064 sub_success = 0;
1065 for (mirror_index = 0;
1066 mirror_index < BTRFS_MAX_MIRRORS &&
1067 sblocks_for_recheck[mirror_index].page_count > 0;
1068 mirror_index++) {
1069 struct scrub_block *sblock_other =
1070 sblocks_for_recheck + mirror_index;
1071 struct scrub_page *page_other =
1072 sblock_other->pagev[page_num];
1073
1074 if (!page_other->io_error) {
1075 ret = scrub_write_page_to_dev_replace(
1076 sblock_other, page_num);
1077 if (ret == 0) {
1078 /* succeeded for this page */
1079 sub_success = 1;
1080 break;
1081 } else {
1082 btrfs_dev_replace_stats_inc(
1083 &sctx->dev_root->
1084 fs_info->dev_replace.
1085 num_write_errors);
1086 }
1087 }
1088 }
1089
1090 if (!sub_success) {
1091 /*
1092 * did not find a mirror to fetch the page
1093 * from. scrub_write_page_to_dev_replace()
1094 * handles this case (page->io_error), by
1095 * filling the block with zeros before
1096 * submitting the write request
1097 */
1098 success = 0;
1099 ret = scrub_write_page_to_dev_replace(
1100 sblock_bad, page_num);
1101 if (ret)
1102 btrfs_dev_replace_stats_inc(
1103 &sctx->dev_root->fs_info->
1104 dev_replace.num_write_errors);
1105 }
1106 }
1107
1108 goto out;
1109 }
1110
1111 /*
1112 * for regular scrub, repair those pages that are errored.
1113 * In case of I/O errors in the area that is supposed to be
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001114 * repaired, continue by picking good copies of those pages.
1115 * Select the good pages from mirrors to rewrite bad pages from
1116 * the area to fix. Afterwards verify the checksum of the block
1117 * that is supposed to be repaired. This verification step is
1118 * only done for the purpose of statistic counting and for the
1119 * final scrub report, whether errors remain.
1120 * A perfect algorithm could make use of the checksum and try
1121 * all possible combinations of pages from the different mirrors
1122 * until the checksum verification succeeds. For example, when
1123 * the 2nd page of mirror #1 faces I/O errors, and the 2nd page
1124 * of mirror #2 is readable but the final checksum test fails,
1125 * then the 2nd page of mirror #3 could be tried, whether now
1126 * the final checksum succeedes. But this would be a rare
1127 * exception and is therefore not implemented. At least it is
1128 * avoided that the good copy is overwritten.
1129 * A more useful improvement would be to pick the sectors
1130 * without I/O error based on sector sizes (512 bytes on legacy
1131 * disks) instead of on PAGE_SIZE. Then maybe 512 byte of one
1132 * mirror could be repaired by taking 512 byte of a different
1133 * mirror, even if other 512 byte sectors in the same PAGE_SIZE
1134 * area are unreadable.
1135 */
1136
1137 /* can only fix I/O errors from here on */
1138 if (sblock_bad->no_io_error_seen)
1139 goto did_not_correct_error;
1140
1141 success = 1;
1142 for (page_num = 0; page_num < sblock_bad->page_count; page_num++) {
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001143 struct scrub_page *page_bad = sblock_bad->pagev[page_num];
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001144
1145 if (!page_bad->io_error)
1146 continue;
1147
1148 for (mirror_index = 0;
1149 mirror_index < BTRFS_MAX_MIRRORS &&
1150 sblocks_for_recheck[mirror_index].page_count > 0;
1151 mirror_index++) {
1152 struct scrub_block *sblock_other = sblocks_for_recheck +
1153 mirror_index;
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001154 struct scrub_page *page_other = sblock_other->pagev[
1155 page_num];
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001156
1157 if (!page_other->io_error) {
1158 ret = scrub_repair_page_from_good_copy(
1159 sblock_bad, sblock_other, page_num, 0);
1160 if (0 == ret) {
1161 page_bad->io_error = 0;
1162 break; /* succeeded for this page */
1163 }
Jan Schmidt13db62b2011-06-13 19:56:13 +02001164 }
1165 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001166
1167 if (page_bad->io_error) {
1168 /* did not find a mirror to copy the page from */
1169 success = 0;
1170 }
1171 }
1172
1173 if (success) {
1174 if (is_metadata || have_csum) {
1175 /*
1176 * need to verify the checksum now that all
1177 * sectors on disk are repaired (the write
1178 * request for data to be repaired is on its way).
1179 * Just be lazy and use scrub_recheck_block()
1180 * which re-reads the data before the checksum
1181 * is verified, but most likely the data comes out
1182 * of the page cache.
1183 */
Stefan Behrens34f5c8e2012-11-02 16:16:26 +01001184 scrub_recheck_block(fs_info, sblock_bad,
1185 is_metadata, have_csum, csum,
1186 generation, sctx->csum_size);
1187 if (!sblock_bad->header_error &&
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001188 !sblock_bad->checksum_error &&
1189 sblock_bad->no_io_error_seen)
1190 goto corrected_error;
1191 else
1192 goto did_not_correct_error;
1193 } else {
1194corrected_error:
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001195 spin_lock(&sctx->stat_lock);
1196 sctx->stat.corrected_errors++;
1197 spin_unlock(&sctx->stat_lock);
Josef Bacik606686e2012-06-04 14:03:51 -04001198 printk_ratelimited_in_rcu(KERN_ERR
Frank Holtonefe120a2013-12-20 11:37:06 -05001199 "BTRFS: fixed up error at logical %llu on dev %s\n",
Geert Uytterhoevenc1c9ff72013-08-20 13:20:07 +02001200 logical, rcu_str_deref(dev->name));
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001201 }
1202 } else {
1203did_not_correct_error:
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001204 spin_lock(&sctx->stat_lock);
1205 sctx->stat.uncorrectable_errors++;
1206 spin_unlock(&sctx->stat_lock);
Josef Bacik606686e2012-06-04 14:03:51 -04001207 printk_ratelimited_in_rcu(KERN_ERR
Frank Holtonefe120a2013-12-20 11:37:06 -05001208 "BTRFS: unable to fixup (regular) error at logical %llu on dev %s\n",
Geert Uytterhoevenc1c9ff72013-08-20 13:20:07 +02001209 logical, rcu_str_deref(dev->name));
Arne Jansena2de7332011-03-08 14:14:00 +01001210 }
1211
1212out:
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001213 if (sblocks_for_recheck) {
1214 for (mirror_index = 0; mirror_index < BTRFS_MAX_MIRRORS;
1215 mirror_index++) {
1216 struct scrub_block *sblock = sblocks_for_recheck +
1217 mirror_index;
1218 int page_index;
1219
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001220 for (page_index = 0; page_index < sblock->page_count;
1221 page_index++) {
1222 sblock->pagev[page_index]->sblock = NULL;
1223 scrub_page_put(sblock->pagev[page_index]);
1224 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001225 }
1226 kfree(sblocks_for_recheck);
1227 }
1228
1229 return 0;
Arne Jansena2de7332011-03-08 14:14:00 +01001230}
1231
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001232static int scrub_setup_recheck_block(struct scrub_ctx *sctx,
Stefan Behrens3ec706c2012-11-05 15:46:42 +01001233 struct btrfs_fs_info *fs_info,
Stefan Behrensff023aa2012-11-06 11:43:11 +01001234 struct scrub_block *original_sblock,
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001235 u64 length, u64 logical,
1236 struct scrub_block *sblocks_for_recheck)
Arne Jansena2de7332011-03-08 14:14:00 +01001237{
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001238 int page_index;
1239 int mirror_index;
1240 int ret;
1241
1242 /*
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001243 * note: the two members ref_count and outstanding_pages
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001244 * are not used (and not set) in the blocks that are used for
1245 * the recheck procedure
1246 */
1247
1248 page_index = 0;
1249 while (length > 0) {
1250 u64 sublen = min_t(u64, length, PAGE_SIZE);
1251 u64 mapped_length = sublen;
1252 struct btrfs_bio *bbio = NULL;
1253
1254 /*
1255 * with a length of PAGE_SIZE, each returned stripe
1256 * represents one mirror
1257 */
Stefan Behrens29a8d9a2012-11-06 14:16:24 +01001258 ret = btrfs_map_block(fs_info, REQ_GET_READ_MIRRORS, logical,
1259 &mapped_length, &bbio, 0);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001260 if (ret || !bbio || mapped_length < sublen) {
1261 kfree(bbio);
1262 return -EIO;
1263 }
1264
Stefan Behrensff023aa2012-11-06 11:43:11 +01001265 BUG_ON(page_index >= SCRUB_PAGES_PER_RD_BIO);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001266 for (mirror_index = 0; mirror_index < (int)bbio->num_stripes;
1267 mirror_index++) {
1268 struct scrub_block *sblock;
1269 struct scrub_page *page;
1270
1271 if (mirror_index >= BTRFS_MAX_MIRRORS)
1272 continue;
1273
1274 sblock = sblocks_for_recheck + mirror_index;
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001275 sblock->sctx = sctx;
1276 page = kzalloc(sizeof(*page), GFP_NOFS);
1277 if (!page) {
1278leave_nomem:
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001279 spin_lock(&sctx->stat_lock);
1280 sctx->stat.malloc_errors++;
1281 spin_unlock(&sctx->stat_lock);
Wei Yongjuncf93dcc2012-09-02 07:44:51 -06001282 kfree(bbio);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001283 return -ENOMEM;
1284 }
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001285 scrub_page_get(page);
1286 sblock->pagev[page_index] = page;
1287 page->logical = logical;
1288 page->physical = bbio->stripes[mirror_index].physical;
Stefan Behrensff023aa2012-11-06 11:43:11 +01001289 BUG_ON(page_index >= original_sblock->page_count);
1290 page->physical_for_dev_replace =
1291 original_sblock->pagev[page_index]->
1292 physical_for_dev_replace;
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001293 /* for missing devices, dev->bdev is NULL */
1294 page->dev = bbio->stripes[mirror_index].dev;
1295 page->mirror_num = mirror_index + 1;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001296 sblock->page_count++;
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001297 page->page = alloc_page(GFP_NOFS);
1298 if (!page->page)
1299 goto leave_nomem;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001300 }
1301 kfree(bbio);
1302 length -= sublen;
1303 logical += sublen;
1304 page_index++;
1305 }
1306
1307 return 0;
1308}
1309
1310/*
1311 * this function will check the on disk data for checksum errors, header
1312 * errors and read I/O errors. If any I/O errors happen, the exact pages
1313 * which are errored are marked as being bad. The goal is to enable scrub
1314 * to take those pages that are not errored from all the mirrors so that
1315 * the pages that are errored in the just handled mirror can be repaired.
1316 */
Stefan Behrens34f5c8e2012-11-02 16:16:26 +01001317static void scrub_recheck_block(struct btrfs_fs_info *fs_info,
1318 struct scrub_block *sblock, int is_metadata,
1319 int have_csum, u8 *csum, u64 generation,
1320 u16 csum_size)
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001321{
1322 int page_num;
1323
1324 sblock->no_io_error_seen = 1;
1325 sblock->header_error = 0;
1326 sblock->checksum_error = 0;
1327
1328 for (page_num = 0; page_num < sblock->page_count; page_num++) {
1329 struct bio *bio;
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001330 struct scrub_page *page = sblock->pagev[page_num];
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001331
Stefan Behrens442a4f62012-05-25 16:06:08 +02001332 if (page->dev->bdev == NULL) {
Stefan Behrensea9947b2012-05-04 15:16:07 -04001333 page->io_error = 1;
1334 sblock->no_io_error_seen = 0;
1335 continue;
1336 }
1337
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001338 WARN_ON(!page->page);
Chris Mason9be33952013-05-17 18:30:14 -04001339 bio = btrfs_io_bio_alloc(GFP_NOFS, 1);
Stefan Behrens34f5c8e2012-11-02 16:16:26 +01001340 if (!bio) {
1341 page->io_error = 1;
1342 sblock->no_io_error_seen = 0;
1343 continue;
1344 }
Stefan Behrens442a4f62012-05-25 16:06:08 +02001345 bio->bi_bdev = page->dev->bdev;
Kent Overstreet4f024f32013-10-11 15:44:27 -07001346 bio->bi_iter.bi_sector = page->physical >> 9;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001347
Stefan Behrens34f5c8e2012-11-02 16:16:26 +01001348 bio_add_page(bio, page->page, PAGE_SIZE, 0);
Kent Overstreet33879d42013-11-23 22:33:32 -08001349 if (btrfsic_submit_bio_wait(READ, bio))
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001350 sblock->no_io_error_seen = 0;
Kent Overstreet33879d42013-11-23 22:33:32 -08001351
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001352 bio_put(bio);
1353 }
1354
1355 if (sblock->no_io_error_seen)
1356 scrub_recheck_block_checksum(fs_info, sblock, is_metadata,
1357 have_csum, csum, generation,
1358 csum_size);
1359
Stefan Behrens34f5c8e2012-11-02 16:16:26 +01001360 return;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001361}
1362
Miao Xie17a9be22014-07-24 11:37:08 +08001363static inline int scrub_check_fsid(u8 fsid[],
1364 struct scrub_page *spage)
1365{
1366 struct btrfs_fs_devices *fs_devices = spage->dev->fs_devices;
1367 int ret;
1368
1369 ret = memcmp(fsid, fs_devices->fsid, BTRFS_UUID_SIZE);
1370 return !ret;
1371}
1372
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001373static void scrub_recheck_block_checksum(struct btrfs_fs_info *fs_info,
1374 struct scrub_block *sblock,
1375 int is_metadata, int have_csum,
1376 const u8 *csum, u64 generation,
1377 u16 csum_size)
1378{
1379 int page_num;
1380 u8 calculated_csum[BTRFS_CSUM_SIZE];
1381 u32 crc = ~(u32)0;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001382 void *mapped_buffer;
1383
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001384 WARN_ON(!sblock->pagev[0]->page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001385 if (is_metadata) {
1386 struct btrfs_header *h;
1387
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001388 mapped_buffer = kmap_atomic(sblock->pagev[0]->page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001389 h = (struct btrfs_header *)mapped_buffer;
1390
Qu Wenruo3cae2102013-07-16 11:19:18 +08001391 if (sblock->pagev[0]->logical != btrfs_stack_header_bytenr(h) ||
Miao Xie17a9be22014-07-24 11:37:08 +08001392 !scrub_check_fsid(h->fsid, sblock->pagev[0]) ||
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001393 memcmp(h->chunk_tree_uuid, fs_info->chunk_tree_uuid,
Stefan Behrens442a4f62012-05-25 16:06:08 +02001394 BTRFS_UUID_SIZE)) {
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001395 sblock->header_error = 1;
Qu Wenruo3cae2102013-07-16 11:19:18 +08001396 } else if (generation != btrfs_stack_header_generation(h)) {
Stefan Behrens442a4f62012-05-25 16:06:08 +02001397 sblock->header_error = 1;
1398 sblock->generation_error = 1;
1399 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001400 csum = h->csum;
1401 } else {
1402 if (!have_csum)
1403 return;
1404
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001405 mapped_buffer = kmap_atomic(sblock->pagev[0]->page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001406 }
1407
1408 for (page_num = 0;;) {
1409 if (page_num == 0 && is_metadata)
Liu Bob0496682013-03-14 14:57:45 +00001410 crc = btrfs_csum_data(
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001411 ((u8 *)mapped_buffer) + BTRFS_CSUM_SIZE,
1412 crc, PAGE_SIZE - BTRFS_CSUM_SIZE);
1413 else
Liu Bob0496682013-03-14 14:57:45 +00001414 crc = btrfs_csum_data(mapped_buffer, crc, PAGE_SIZE);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001415
Linus Torvalds9613beb2012-03-30 12:44:29 -07001416 kunmap_atomic(mapped_buffer);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001417 page_num++;
1418 if (page_num >= sblock->page_count)
1419 break;
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001420 WARN_ON(!sblock->pagev[page_num]->page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001421
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001422 mapped_buffer = kmap_atomic(sblock->pagev[page_num]->page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001423 }
1424
1425 btrfs_csum_final(crc, calculated_csum);
1426 if (memcmp(calculated_csum, csum, csum_size))
1427 sblock->checksum_error = 1;
1428}
1429
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001430static int scrub_repair_block_from_good_copy(struct scrub_block *sblock_bad,
1431 struct scrub_block *sblock_good,
1432 int force_write)
1433{
1434 int page_num;
1435 int ret = 0;
1436
1437 for (page_num = 0; page_num < sblock_bad->page_count; page_num++) {
1438 int ret_sub;
1439
1440 ret_sub = scrub_repair_page_from_good_copy(sblock_bad,
1441 sblock_good,
1442 page_num,
1443 force_write);
1444 if (ret_sub)
1445 ret = ret_sub;
1446 }
1447
1448 return ret;
1449}
1450
1451static int scrub_repair_page_from_good_copy(struct scrub_block *sblock_bad,
1452 struct scrub_block *sblock_good,
1453 int page_num, int force_write)
1454{
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001455 struct scrub_page *page_bad = sblock_bad->pagev[page_num];
1456 struct scrub_page *page_good = sblock_good->pagev[page_num];
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001457
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001458 BUG_ON(page_bad->page == NULL);
1459 BUG_ON(page_good->page == NULL);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001460 if (force_write || sblock_bad->header_error ||
1461 sblock_bad->checksum_error || page_bad->io_error) {
1462 struct bio *bio;
1463 int ret;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001464
Stefan Behrensff023aa2012-11-06 11:43:11 +01001465 if (!page_bad->dev->bdev) {
Frank Holtonefe120a2013-12-20 11:37:06 -05001466 printk_ratelimited(KERN_WARNING "BTRFS: "
1467 "scrub_repair_page_from_good_copy(bdev == NULL) "
1468 "is unexpected!\n");
Stefan Behrensff023aa2012-11-06 11:43:11 +01001469 return -EIO;
1470 }
1471
Chris Mason9be33952013-05-17 18:30:14 -04001472 bio = btrfs_io_bio_alloc(GFP_NOFS, 1);
Tsutomu Itohe627ee72012-04-12 16:03:56 -04001473 if (!bio)
1474 return -EIO;
Stefan Behrens442a4f62012-05-25 16:06:08 +02001475 bio->bi_bdev = page_bad->dev->bdev;
Kent Overstreet4f024f32013-10-11 15:44:27 -07001476 bio->bi_iter.bi_sector = page_bad->physical >> 9;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001477
1478 ret = bio_add_page(bio, page_good->page, PAGE_SIZE, 0);
1479 if (PAGE_SIZE != ret) {
1480 bio_put(bio);
1481 return -EIO;
1482 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001483
Kent Overstreet33879d42013-11-23 22:33:32 -08001484 if (btrfsic_submit_bio_wait(WRITE, bio)) {
Stefan Behrens442a4f62012-05-25 16:06:08 +02001485 btrfs_dev_stat_inc_and_print(page_bad->dev,
1486 BTRFS_DEV_STAT_WRITE_ERRS);
Stefan Behrensff023aa2012-11-06 11:43:11 +01001487 btrfs_dev_replace_stats_inc(
1488 &sblock_bad->sctx->dev_root->fs_info->
1489 dev_replace.num_write_errors);
Stefan Behrens442a4f62012-05-25 16:06:08 +02001490 bio_put(bio);
1491 return -EIO;
1492 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001493 bio_put(bio);
1494 }
1495
1496 return 0;
1497}
1498
Stefan Behrensff023aa2012-11-06 11:43:11 +01001499static void scrub_write_block_to_dev_replace(struct scrub_block *sblock)
1500{
1501 int page_num;
1502
1503 for (page_num = 0; page_num < sblock->page_count; page_num++) {
1504 int ret;
1505
1506 ret = scrub_write_page_to_dev_replace(sblock, page_num);
1507 if (ret)
1508 btrfs_dev_replace_stats_inc(
1509 &sblock->sctx->dev_root->fs_info->dev_replace.
1510 num_write_errors);
1511 }
1512}
1513
1514static int scrub_write_page_to_dev_replace(struct scrub_block *sblock,
1515 int page_num)
1516{
1517 struct scrub_page *spage = sblock->pagev[page_num];
1518
1519 BUG_ON(spage->page == NULL);
1520 if (spage->io_error) {
1521 void *mapped_buffer = kmap_atomic(spage->page);
1522
1523 memset(mapped_buffer, 0, PAGE_CACHE_SIZE);
1524 flush_dcache_page(spage->page);
1525 kunmap_atomic(mapped_buffer);
1526 }
1527 return scrub_add_page_to_wr_bio(sblock->sctx, spage);
1528}
1529
1530static int scrub_add_page_to_wr_bio(struct scrub_ctx *sctx,
1531 struct scrub_page *spage)
1532{
1533 struct scrub_wr_ctx *wr_ctx = &sctx->wr_ctx;
1534 struct scrub_bio *sbio;
1535 int ret;
1536
1537 mutex_lock(&wr_ctx->wr_lock);
1538again:
1539 if (!wr_ctx->wr_curr_bio) {
1540 wr_ctx->wr_curr_bio = kzalloc(sizeof(*wr_ctx->wr_curr_bio),
1541 GFP_NOFS);
1542 if (!wr_ctx->wr_curr_bio) {
1543 mutex_unlock(&wr_ctx->wr_lock);
1544 return -ENOMEM;
1545 }
1546 wr_ctx->wr_curr_bio->sctx = sctx;
1547 wr_ctx->wr_curr_bio->page_count = 0;
1548 }
1549 sbio = wr_ctx->wr_curr_bio;
1550 if (sbio->page_count == 0) {
1551 struct bio *bio;
1552
1553 sbio->physical = spage->physical_for_dev_replace;
1554 sbio->logical = spage->logical;
1555 sbio->dev = wr_ctx->tgtdev;
1556 bio = sbio->bio;
1557 if (!bio) {
Chris Mason9be33952013-05-17 18:30:14 -04001558 bio = btrfs_io_bio_alloc(GFP_NOFS, wr_ctx->pages_per_wr_bio);
Stefan Behrensff023aa2012-11-06 11:43:11 +01001559 if (!bio) {
1560 mutex_unlock(&wr_ctx->wr_lock);
1561 return -ENOMEM;
1562 }
1563 sbio->bio = bio;
1564 }
1565
1566 bio->bi_private = sbio;
1567 bio->bi_end_io = scrub_wr_bio_end_io;
1568 bio->bi_bdev = sbio->dev->bdev;
Kent Overstreet4f024f32013-10-11 15:44:27 -07001569 bio->bi_iter.bi_sector = sbio->physical >> 9;
Stefan Behrensff023aa2012-11-06 11:43:11 +01001570 sbio->err = 0;
1571 } else if (sbio->physical + sbio->page_count * PAGE_SIZE !=
1572 spage->physical_for_dev_replace ||
1573 sbio->logical + sbio->page_count * PAGE_SIZE !=
1574 spage->logical) {
1575 scrub_wr_submit(sctx);
1576 goto again;
1577 }
1578
1579 ret = bio_add_page(sbio->bio, spage->page, PAGE_SIZE, 0);
1580 if (ret != PAGE_SIZE) {
1581 if (sbio->page_count < 1) {
1582 bio_put(sbio->bio);
1583 sbio->bio = NULL;
1584 mutex_unlock(&wr_ctx->wr_lock);
1585 return -EIO;
1586 }
1587 scrub_wr_submit(sctx);
1588 goto again;
1589 }
1590
1591 sbio->pagev[sbio->page_count] = spage;
1592 scrub_page_get(spage);
1593 sbio->page_count++;
1594 if (sbio->page_count == wr_ctx->pages_per_wr_bio)
1595 scrub_wr_submit(sctx);
1596 mutex_unlock(&wr_ctx->wr_lock);
1597
1598 return 0;
1599}
1600
1601static void scrub_wr_submit(struct scrub_ctx *sctx)
1602{
1603 struct scrub_wr_ctx *wr_ctx = &sctx->wr_ctx;
1604 struct scrub_bio *sbio;
1605
1606 if (!wr_ctx->wr_curr_bio)
1607 return;
1608
1609 sbio = wr_ctx->wr_curr_bio;
1610 wr_ctx->wr_curr_bio = NULL;
1611 WARN_ON(!sbio->bio->bi_bdev);
1612 scrub_pending_bio_inc(sctx);
1613 /* process all writes in a single worker thread. Then the block layer
1614 * orders the requests before sending them to the driver which
1615 * doubled the write performance on spinning disks when measured
1616 * with Linux 3.5 */
1617 btrfsic_submit_bio(WRITE, sbio->bio);
1618}
1619
1620static void scrub_wr_bio_end_io(struct bio *bio, int err)
1621{
1622 struct scrub_bio *sbio = bio->bi_private;
1623 struct btrfs_fs_info *fs_info = sbio->dev->dev_root->fs_info;
1624
1625 sbio->err = err;
1626 sbio->bio = bio;
1627
Liu Bo9e0af232014-08-15 23:36:53 +08001628 btrfs_init_work(&sbio->work, btrfs_scrubwrc_helper,
1629 scrub_wr_bio_end_io_worker, NULL, NULL);
Qu Wenruo0339ef22014-02-28 10:46:17 +08001630 btrfs_queue_work(fs_info->scrub_wr_completion_workers, &sbio->work);
Stefan Behrensff023aa2012-11-06 11:43:11 +01001631}
1632
1633static void scrub_wr_bio_end_io_worker(struct btrfs_work *work)
1634{
1635 struct scrub_bio *sbio = container_of(work, struct scrub_bio, work);
1636 struct scrub_ctx *sctx = sbio->sctx;
1637 int i;
1638
1639 WARN_ON(sbio->page_count > SCRUB_PAGES_PER_WR_BIO);
1640 if (sbio->err) {
1641 struct btrfs_dev_replace *dev_replace =
1642 &sbio->sctx->dev_root->fs_info->dev_replace;
1643
1644 for (i = 0; i < sbio->page_count; i++) {
1645 struct scrub_page *spage = sbio->pagev[i];
1646
1647 spage->io_error = 1;
1648 btrfs_dev_replace_stats_inc(&dev_replace->
1649 num_write_errors);
1650 }
1651 }
1652
1653 for (i = 0; i < sbio->page_count; i++)
1654 scrub_page_put(sbio->pagev[i]);
1655
1656 bio_put(sbio->bio);
1657 kfree(sbio);
1658 scrub_pending_bio_dec(sctx);
1659}
1660
1661static int scrub_checksum(struct scrub_block *sblock)
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001662{
1663 u64 flags;
1664 int ret;
1665
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001666 WARN_ON(sblock->page_count < 1);
1667 flags = sblock->pagev[0]->flags;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001668 ret = 0;
1669 if (flags & BTRFS_EXTENT_FLAG_DATA)
1670 ret = scrub_checksum_data(sblock);
1671 else if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK)
1672 ret = scrub_checksum_tree_block(sblock);
1673 else if (flags & BTRFS_EXTENT_FLAG_SUPER)
1674 (void)scrub_checksum_super(sblock);
1675 else
1676 WARN_ON(1);
1677 if (ret)
1678 scrub_handle_errored_block(sblock);
Stefan Behrensff023aa2012-11-06 11:43:11 +01001679
1680 return ret;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001681}
1682
1683static int scrub_checksum_data(struct scrub_block *sblock)
1684{
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001685 struct scrub_ctx *sctx = sblock->sctx;
Arne Jansena2de7332011-03-08 14:14:00 +01001686 u8 csum[BTRFS_CSUM_SIZE];
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001687 u8 *on_disk_csum;
1688 struct page *page;
1689 void *buffer;
Arne Jansena2de7332011-03-08 14:14:00 +01001690 u32 crc = ~(u32)0;
1691 int fail = 0;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001692 u64 len;
1693 int index;
Arne Jansena2de7332011-03-08 14:14:00 +01001694
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001695 BUG_ON(sblock->page_count < 1);
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001696 if (!sblock->pagev[0]->have_csum)
Arne Jansena2de7332011-03-08 14:14:00 +01001697 return 0;
1698
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001699 on_disk_csum = sblock->pagev[0]->csum;
1700 page = sblock->pagev[0]->page;
Linus Torvalds9613beb2012-03-30 12:44:29 -07001701 buffer = kmap_atomic(page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001702
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001703 len = sctx->sectorsize;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001704 index = 0;
1705 for (;;) {
1706 u64 l = min_t(u64, len, PAGE_SIZE);
1707
Liu Bob0496682013-03-14 14:57:45 +00001708 crc = btrfs_csum_data(buffer, crc, l);
Linus Torvalds9613beb2012-03-30 12:44:29 -07001709 kunmap_atomic(buffer);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001710 len -= l;
1711 if (len == 0)
1712 break;
1713 index++;
1714 BUG_ON(index >= sblock->page_count);
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001715 BUG_ON(!sblock->pagev[index]->page);
1716 page = sblock->pagev[index]->page;
Linus Torvalds9613beb2012-03-30 12:44:29 -07001717 buffer = kmap_atomic(page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001718 }
1719
Arne Jansena2de7332011-03-08 14:14:00 +01001720 btrfs_csum_final(crc, csum);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001721 if (memcmp(csum, on_disk_csum, sctx->csum_size))
Arne Jansena2de7332011-03-08 14:14:00 +01001722 fail = 1;
1723
Arne Jansena2de7332011-03-08 14:14:00 +01001724 return fail;
1725}
1726
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001727static int scrub_checksum_tree_block(struct scrub_block *sblock)
Arne Jansena2de7332011-03-08 14:14:00 +01001728{
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001729 struct scrub_ctx *sctx = sblock->sctx;
Arne Jansena2de7332011-03-08 14:14:00 +01001730 struct btrfs_header *h;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01001731 struct btrfs_root *root = sctx->dev_root;
Arne Jansena2de7332011-03-08 14:14:00 +01001732 struct btrfs_fs_info *fs_info = root->fs_info;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001733 u8 calculated_csum[BTRFS_CSUM_SIZE];
1734 u8 on_disk_csum[BTRFS_CSUM_SIZE];
1735 struct page *page;
1736 void *mapped_buffer;
1737 u64 mapped_size;
1738 void *p;
Arne Jansena2de7332011-03-08 14:14:00 +01001739 u32 crc = ~(u32)0;
1740 int fail = 0;
1741 int crc_fail = 0;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001742 u64 len;
1743 int index;
1744
1745 BUG_ON(sblock->page_count < 1);
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001746 page = sblock->pagev[0]->page;
Linus Torvalds9613beb2012-03-30 12:44:29 -07001747 mapped_buffer = kmap_atomic(page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001748 h = (struct btrfs_header *)mapped_buffer;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001749 memcpy(on_disk_csum, h->csum, sctx->csum_size);
Arne Jansena2de7332011-03-08 14:14:00 +01001750
1751 /*
1752 * we don't use the getter functions here, as we
1753 * a) don't have an extent buffer and
1754 * b) the page is already kmapped
1755 */
Arne Jansena2de7332011-03-08 14:14:00 +01001756
Qu Wenruo3cae2102013-07-16 11:19:18 +08001757 if (sblock->pagev[0]->logical != btrfs_stack_header_bytenr(h))
Arne Jansena2de7332011-03-08 14:14:00 +01001758 ++fail;
1759
Qu Wenruo3cae2102013-07-16 11:19:18 +08001760 if (sblock->pagev[0]->generation != btrfs_stack_header_generation(h))
Arne Jansena2de7332011-03-08 14:14:00 +01001761 ++fail;
1762
Miao Xie17a9be22014-07-24 11:37:08 +08001763 if (!scrub_check_fsid(h->fsid, sblock->pagev[0]))
Arne Jansena2de7332011-03-08 14:14:00 +01001764 ++fail;
1765
1766 if (memcmp(h->chunk_tree_uuid, fs_info->chunk_tree_uuid,
1767 BTRFS_UUID_SIZE))
1768 ++fail;
1769
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001770 len = sctx->nodesize - BTRFS_CSUM_SIZE;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001771 mapped_size = PAGE_SIZE - BTRFS_CSUM_SIZE;
1772 p = ((u8 *)mapped_buffer) + BTRFS_CSUM_SIZE;
1773 index = 0;
1774 for (;;) {
1775 u64 l = min_t(u64, len, mapped_size);
1776
Liu Bob0496682013-03-14 14:57:45 +00001777 crc = btrfs_csum_data(p, crc, l);
Linus Torvalds9613beb2012-03-30 12:44:29 -07001778 kunmap_atomic(mapped_buffer);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001779 len -= l;
1780 if (len == 0)
1781 break;
1782 index++;
1783 BUG_ON(index >= sblock->page_count);
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001784 BUG_ON(!sblock->pagev[index]->page);
1785 page = sblock->pagev[index]->page;
Linus Torvalds9613beb2012-03-30 12:44:29 -07001786 mapped_buffer = kmap_atomic(page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001787 mapped_size = PAGE_SIZE;
1788 p = mapped_buffer;
1789 }
1790
1791 btrfs_csum_final(crc, calculated_csum);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001792 if (memcmp(calculated_csum, on_disk_csum, sctx->csum_size))
Arne Jansena2de7332011-03-08 14:14:00 +01001793 ++crc_fail;
1794
Arne Jansena2de7332011-03-08 14:14:00 +01001795 return fail || crc_fail;
1796}
1797
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001798static int scrub_checksum_super(struct scrub_block *sblock)
Arne Jansena2de7332011-03-08 14:14:00 +01001799{
1800 struct btrfs_super_block *s;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001801 struct scrub_ctx *sctx = sblock->sctx;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001802 u8 calculated_csum[BTRFS_CSUM_SIZE];
1803 u8 on_disk_csum[BTRFS_CSUM_SIZE];
1804 struct page *page;
1805 void *mapped_buffer;
1806 u64 mapped_size;
1807 void *p;
Arne Jansena2de7332011-03-08 14:14:00 +01001808 u32 crc = ~(u32)0;
Stefan Behrens442a4f62012-05-25 16:06:08 +02001809 int fail_gen = 0;
1810 int fail_cor = 0;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001811 u64 len;
1812 int index;
Arne Jansena2de7332011-03-08 14:14:00 +01001813
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001814 BUG_ON(sblock->page_count < 1);
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001815 page = sblock->pagev[0]->page;
Linus Torvalds9613beb2012-03-30 12:44:29 -07001816 mapped_buffer = kmap_atomic(page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001817 s = (struct btrfs_super_block *)mapped_buffer;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001818 memcpy(on_disk_csum, s->csum, sctx->csum_size);
Arne Jansena2de7332011-03-08 14:14:00 +01001819
Qu Wenruo3cae2102013-07-16 11:19:18 +08001820 if (sblock->pagev[0]->logical != btrfs_super_bytenr(s))
Stefan Behrens442a4f62012-05-25 16:06:08 +02001821 ++fail_cor;
Arne Jansena2de7332011-03-08 14:14:00 +01001822
Qu Wenruo3cae2102013-07-16 11:19:18 +08001823 if (sblock->pagev[0]->generation != btrfs_super_generation(s))
Stefan Behrens442a4f62012-05-25 16:06:08 +02001824 ++fail_gen;
Arne Jansena2de7332011-03-08 14:14:00 +01001825
Miao Xie17a9be22014-07-24 11:37:08 +08001826 if (!scrub_check_fsid(s->fsid, sblock->pagev[0]))
Stefan Behrens442a4f62012-05-25 16:06:08 +02001827 ++fail_cor;
Arne Jansena2de7332011-03-08 14:14:00 +01001828
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001829 len = BTRFS_SUPER_INFO_SIZE - BTRFS_CSUM_SIZE;
1830 mapped_size = PAGE_SIZE - BTRFS_CSUM_SIZE;
1831 p = ((u8 *)mapped_buffer) + BTRFS_CSUM_SIZE;
1832 index = 0;
1833 for (;;) {
1834 u64 l = min_t(u64, len, mapped_size);
1835
Liu Bob0496682013-03-14 14:57:45 +00001836 crc = btrfs_csum_data(p, crc, l);
Linus Torvalds9613beb2012-03-30 12:44:29 -07001837 kunmap_atomic(mapped_buffer);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001838 len -= l;
1839 if (len == 0)
1840 break;
1841 index++;
1842 BUG_ON(index >= sblock->page_count);
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001843 BUG_ON(!sblock->pagev[index]->page);
1844 page = sblock->pagev[index]->page;
Linus Torvalds9613beb2012-03-30 12:44:29 -07001845 mapped_buffer = kmap_atomic(page);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001846 mapped_size = PAGE_SIZE;
1847 p = mapped_buffer;
1848 }
1849
1850 btrfs_csum_final(crc, calculated_csum);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001851 if (memcmp(calculated_csum, on_disk_csum, sctx->csum_size))
Stefan Behrens442a4f62012-05-25 16:06:08 +02001852 ++fail_cor;
Arne Jansena2de7332011-03-08 14:14:00 +01001853
Stefan Behrens442a4f62012-05-25 16:06:08 +02001854 if (fail_cor + fail_gen) {
Arne Jansena2de7332011-03-08 14:14:00 +01001855 /*
1856 * if we find an error in a super block, we just report it.
1857 * They will get written with the next transaction commit
1858 * anyway
1859 */
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001860 spin_lock(&sctx->stat_lock);
1861 ++sctx->stat.super_errors;
1862 spin_unlock(&sctx->stat_lock);
Stefan Behrens442a4f62012-05-25 16:06:08 +02001863 if (fail_cor)
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001864 btrfs_dev_stat_inc_and_print(sblock->pagev[0]->dev,
Stefan Behrens442a4f62012-05-25 16:06:08 +02001865 BTRFS_DEV_STAT_CORRUPTION_ERRS);
1866 else
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001867 btrfs_dev_stat_inc_and_print(sblock->pagev[0]->dev,
Stefan Behrens442a4f62012-05-25 16:06:08 +02001868 BTRFS_DEV_STAT_GENERATION_ERRS);
Arne Jansena2de7332011-03-08 14:14:00 +01001869 }
1870
Stefan Behrens442a4f62012-05-25 16:06:08 +02001871 return fail_cor + fail_gen;
Arne Jansena2de7332011-03-08 14:14:00 +01001872}
1873
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001874static void scrub_block_get(struct scrub_block *sblock)
1875{
1876 atomic_inc(&sblock->ref_count);
1877}
1878
1879static void scrub_block_put(struct scrub_block *sblock)
1880{
1881 if (atomic_dec_and_test(&sblock->ref_count)) {
1882 int i;
1883
1884 for (i = 0; i < sblock->page_count; i++)
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001885 scrub_page_put(sblock->pagev[i]);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001886 kfree(sblock);
1887 }
1888}
1889
Stefan Behrens7a9e9982012-11-02 14:58:04 +01001890static void scrub_page_get(struct scrub_page *spage)
1891{
1892 atomic_inc(&spage->ref_count);
1893}
1894
1895static void scrub_page_put(struct scrub_page *spage)
1896{
1897 if (atomic_dec_and_test(&spage->ref_count)) {
1898 if (spage->page)
1899 __free_page(spage->page);
1900 kfree(spage);
1901 }
1902}
1903
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001904static void scrub_submit(struct scrub_ctx *sctx)
Arne Jansena2de7332011-03-08 14:14:00 +01001905{
1906 struct scrub_bio *sbio;
1907
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001908 if (sctx->curr == -1)
Stefan Behrens1623ede2012-03-27 14:21:26 -04001909 return;
Arne Jansena2de7332011-03-08 14:14:00 +01001910
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001911 sbio = sctx->bios[sctx->curr];
1912 sctx->curr = -1;
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01001913 scrub_pending_bio_inc(sctx);
Arne Jansena2de7332011-03-08 14:14:00 +01001914
Stefan Behrensff023aa2012-11-06 11:43:11 +01001915 if (!sbio->bio->bi_bdev) {
1916 /*
1917 * this case should not happen. If btrfs_map_block() is
1918 * wrong, it could happen for dev-replace operations on
1919 * missing devices when no mirrors are available, but in
1920 * this case it should already fail the mount.
1921 * This case is handled correctly (but _very_ slowly).
1922 */
1923 printk_ratelimited(KERN_WARNING
Frank Holtonefe120a2013-12-20 11:37:06 -05001924 "BTRFS: scrub_submit(bio bdev == NULL) is unexpected!\n");
Stefan Behrensff023aa2012-11-06 11:43:11 +01001925 bio_endio(sbio->bio, -EIO);
1926 } else {
1927 btrfsic_submit_bio(READ, sbio->bio);
1928 }
Arne Jansena2de7332011-03-08 14:14:00 +01001929}
1930
Stefan Behrensff023aa2012-11-06 11:43:11 +01001931static int scrub_add_page_to_rd_bio(struct scrub_ctx *sctx,
1932 struct scrub_page *spage)
Arne Jansena2de7332011-03-08 14:14:00 +01001933{
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001934 struct scrub_block *sblock = spage->sblock;
Arne Jansena2de7332011-03-08 14:14:00 +01001935 struct scrub_bio *sbio;
Arne Jansen69f4cb52011-11-11 08:17:10 -05001936 int ret;
Arne Jansena2de7332011-03-08 14:14:00 +01001937
1938again:
1939 /*
1940 * grab a fresh bio or wait for one to become available
1941 */
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001942 while (sctx->curr == -1) {
1943 spin_lock(&sctx->list_lock);
1944 sctx->curr = sctx->first_free;
1945 if (sctx->curr != -1) {
1946 sctx->first_free = sctx->bios[sctx->curr]->next_free;
1947 sctx->bios[sctx->curr]->next_free = -1;
1948 sctx->bios[sctx->curr]->page_count = 0;
1949 spin_unlock(&sctx->list_lock);
Arne Jansena2de7332011-03-08 14:14:00 +01001950 } else {
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001951 spin_unlock(&sctx->list_lock);
1952 wait_event(sctx->list_wait, sctx->first_free != -1);
Arne Jansena2de7332011-03-08 14:14:00 +01001953 }
1954 }
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001955 sbio = sctx->bios[sctx->curr];
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001956 if (sbio->page_count == 0) {
Arne Jansen69f4cb52011-11-11 08:17:10 -05001957 struct bio *bio;
1958
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001959 sbio->physical = spage->physical;
1960 sbio->logical = spage->logical;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01001961 sbio->dev = spage->dev;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001962 bio = sbio->bio;
1963 if (!bio) {
Chris Mason9be33952013-05-17 18:30:14 -04001964 bio = btrfs_io_bio_alloc(GFP_NOFS, sctx->pages_per_rd_bio);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001965 if (!bio)
1966 return -ENOMEM;
1967 sbio->bio = bio;
1968 }
Arne Jansen69f4cb52011-11-11 08:17:10 -05001969
1970 bio->bi_private = sbio;
1971 bio->bi_end_io = scrub_bio_end_io;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01001972 bio->bi_bdev = sbio->dev->bdev;
Kent Overstreet4f024f32013-10-11 15:44:27 -07001973 bio->bi_iter.bi_sector = sbio->physical >> 9;
Arne Jansen69f4cb52011-11-11 08:17:10 -05001974 sbio->err = 0;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001975 } else if (sbio->physical + sbio->page_count * PAGE_SIZE !=
1976 spage->physical ||
1977 sbio->logical + sbio->page_count * PAGE_SIZE !=
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01001978 spage->logical ||
1979 sbio->dev != spage->dev) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001980 scrub_submit(sctx);
Arne Jansen69f4cb52011-11-11 08:17:10 -05001981 goto again;
1982 }
1983
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001984 sbio->pagev[sbio->page_count] = spage;
1985 ret = bio_add_page(sbio->bio, spage->page, PAGE_SIZE, 0);
1986 if (ret != PAGE_SIZE) {
1987 if (sbio->page_count < 1) {
1988 bio_put(sbio->bio);
1989 sbio->bio = NULL;
1990 return -EIO;
1991 }
Stefan Behrensd9d181c2012-11-02 09:58:09 +01001992 scrub_submit(sctx);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001993 goto again;
Arne Jansena2de7332011-03-08 14:14:00 +01001994 }
Arne Jansen1bc87792011-05-28 21:57:55 +02001995
Stefan Behrensff023aa2012-11-06 11:43:11 +01001996 scrub_block_get(sblock); /* one for the page added to the bio */
Stefan Behrensb5d67f62012-03-27 14:21:27 -04001997 atomic_inc(&sblock->outstanding_pages);
1998 sbio->page_count++;
Stefan Behrensff023aa2012-11-06 11:43:11 +01001999 if (sbio->page_count == sctx->pages_per_rd_bio)
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002000 scrub_submit(sctx);
Arne Jansena2de7332011-03-08 14:14:00 +01002001
2002 return 0;
2003}
2004
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002005static int scrub_pages(struct scrub_ctx *sctx, u64 logical, u64 len,
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002006 u64 physical, struct btrfs_device *dev, u64 flags,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002007 u64 gen, int mirror_num, u8 *csum, int force,
2008 u64 physical_for_dev_replace)
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002009{
2010 struct scrub_block *sblock;
2011 int index;
2012
2013 sblock = kzalloc(sizeof(*sblock), GFP_NOFS);
2014 if (!sblock) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002015 spin_lock(&sctx->stat_lock);
2016 sctx->stat.malloc_errors++;
2017 spin_unlock(&sctx->stat_lock);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002018 return -ENOMEM;
2019 }
2020
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002021 /* one ref inside this function, plus one for each page added to
2022 * a bio later on */
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002023 atomic_set(&sblock->ref_count, 1);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002024 sblock->sctx = sctx;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002025 sblock->no_io_error_seen = 1;
2026
2027 for (index = 0; len > 0; index++) {
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002028 struct scrub_page *spage;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002029 u64 l = min_t(u64, len, PAGE_SIZE);
2030
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002031 spage = kzalloc(sizeof(*spage), GFP_NOFS);
2032 if (!spage) {
2033leave_nomem:
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002034 spin_lock(&sctx->stat_lock);
2035 sctx->stat.malloc_errors++;
2036 spin_unlock(&sctx->stat_lock);
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002037 scrub_block_put(sblock);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002038 return -ENOMEM;
2039 }
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002040 BUG_ON(index >= SCRUB_MAX_PAGES_PER_BLOCK);
2041 scrub_page_get(spage);
2042 sblock->pagev[index] = spage;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002043 spage->sblock = sblock;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002044 spage->dev = dev;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002045 spage->flags = flags;
2046 spage->generation = gen;
2047 spage->logical = logical;
2048 spage->physical = physical;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002049 spage->physical_for_dev_replace = physical_for_dev_replace;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002050 spage->mirror_num = mirror_num;
2051 if (csum) {
2052 spage->have_csum = 1;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002053 memcpy(spage->csum, csum, sctx->csum_size);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002054 } else {
2055 spage->have_csum = 0;
2056 }
2057 sblock->page_count++;
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002058 spage->page = alloc_page(GFP_NOFS);
2059 if (!spage->page)
2060 goto leave_nomem;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002061 len -= l;
2062 logical += l;
2063 physical += l;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002064 physical_for_dev_replace += l;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002065 }
2066
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002067 WARN_ON(sblock->page_count == 0);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002068 for (index = 0; index < sblock->page_count; index++) {
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002069 struct scrub_page *spage = sblock->pagev[index];
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002070 int ret;
2071
Stefan Behrensff023aa2012-11-06 11:43:11 +01002072 ret = scrub_add_page_to_rd_bio(sctx, spage);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002073 if (ret) {
2074 scrub_block_put(sblock);
2075 return ret;
2076 }
2077 }
2078
2079 if (force)
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002080 scrub_submit(sctx);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002081
2082 /* last one frees, either here or in bio completion for last page */
2083 scrub_block_put(sblock);
2084 return 0;
2085}
2086
2087static void scrub_bio_end_io(struct bio *bio, int err)
2088{
2089 struct scrub_bio *sbio = bio->bi_private;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002090 struct btrfs_fs_info *fs_info = sbio->dev->dev_root->fs_info;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002091
2092 sbio->err = err;
2093 sbio->bio = bio;
2094
Qu Wenruo0339ef22014-02-28 10:46:17 +08002095 btrfs_queue_work(fs_info->scrub_workers, &sbio->work);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002096}
2097
2098static void scrub_bio_end_io_worker(struct btrfs_work *work)
2099{
2100 struct scrub_bio *sbio = container_of(work, struct scrub_bio, work);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002101 struct scrub_ctx *sctx = sbio->sctx;
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002102 int i;
2103
Stefan Behrensff023aa2012-11-06 11:43:11 +01002104 BUG_ON(sbio->page_count > SCRUB_PAGES_PER_RD_BIO);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002105 if (sbio->err) {
2106 for (i = 0; i < sbio->page_count; i++) {
2107 struct scrub_page *spage = sbio->pagev[i];
2108
2109 spage->io_error = 1;
2110 spage->sblock->no_io_error_seen = 0;
2111 }
2112 }
2113
2114 /* now complete the scrub_block items that have all pages completed */
2115 for (i = 0; i < sbio->page_count; i++) {
2116 struct scrub_page *spage = sbio->pagev[i];
2117 struct scrub_block *sblock = spage->sblock;
2118
2119 if (atomic_dec_and_test(&sblock->outstanding_pages))
2120 scrub_block_complete(sblock);
2121 scrub_block_put(sblock);
2122 }
2123
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002124 bio_put(sbio->bio);
2125 sbio->bio = NULL;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002126 spin_lock(&sctx->list_lock);
2127 sbio->next_free = sctx->first_free;
2128 sctx->first_free = sbio->index;
2129 spin_unlock(&sctx->list_lock);
Stefan Behrensff023aa2012-11-06 11:43:11 +01002130
2131 if (sctx->is_dev_replace &&
2132 atomic_read(&sctx->wr_ctx.flush_all_writes)) {
2133 mutex_lock(&sctx->wr_ctx.wr_lock);
2134 scrub_wr_submit(sctx);
2135 mutex_unlock(&sctx->wr_ctx.wr_lock);
2136 }
2137
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01002138 scrub_pending_bio_dec(sctx);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002139}
2140
2141static void scrub_block_complete(struct scrub_block *sblock)
2142{
Stefan Behrensff023aa2012-11-06 11:43:11 +01002143 if (!sblock->no_io_error_seen) {
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002144 scrub_handle_errored_block(sblock);
Stefan Behrensff023aa2012-11-06 11:43:11 +01002145 } else {
2146 /*
2147 * if has checksum error, write via repair mechanism in
2148 * dev replace case, otherwise write here in dev replace
2149 * case.
2150 */
2151 if (!scrub_checksum(sblock) && sblock->sctx->is_dev_replace)
2152 scrub_write_block_to_dev_replace(sblock);
2153 }
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002154}
2155
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002156static int scrub_find_csum(struct scrub_ctx *sctx, u64 logical, u64 len,
Arne Jansena2de7332011-03-08 14:14:00 +01002157 u8 *csum)
2158{
2159 struct btrfs_ordered_sum *sum = NULL;
Miao Xief51a4a12013-06-19 10:36:09 +08002160 unsigned long index;
Arne Jansena2de7332011-03-08 14:14:00 +01002161 unsigned long num_sectors;
Arne Jansena2de7332011-03-08 14:14:00 +01002162
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002163 while (!list_empty(&sctx->csum_list)) {
2164 sum = list_first_entry(&sctx->csum_list,
Arne Jansena2de7332011-03-08 14:14:00 +01002165 struct btrfs_ordered_sum, list);
2166 if (sum->bytenr > logical)
2167 return 0;
2168 if (sum->bytenr + sum->len > logical)
2169 break;
2170
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002171 ++sctx->stat.csum_discards;
Arne Jansena2de7332011-03-08 14:14:00 +01002172 list_del(&sum->list);
2173 kfree(sum);
2174 sum = NULL;
2175 }
2176 if (!sum)
2177 return 0;
2178
Miao Xief51a4a12013-06-19 10:36:09 +08002179 index = ((u32)(logical - sum->bytenr)) / sctx->sectorsize;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002180 num_sectors = sum->len / sctx->sectorsize;
Miao Xief51a4a12013-06-19 10:36:09 +08002181 memcpy(csum, sum->sums + index, sctx->csum_size);
2182 if (index == num_sectors - 1) {
Arne Jansena2de7332011-03-08 14:14:00 +01002183 list_del(&sum->list);
2184 kfree(sum);
2185 }
Miao Xief51a4a12013-06-19 10:36:09 +08002186 return 1;
Arne Jansena2de7332011-03-08 14:14:00 +01002187}
2188
2189/* scrub extent tries to collect up to 64 kB for each bio */
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002190static int scrub_extent(struct scrub_ctx *sctx, u64 logical, u64 len,
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002191 u64 physical, struct btrfs_device *dev, u64 flags,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002192 u64 gen, int mirror_num, u64 physical_for_dev_replace)
Arne Jansena2de7332011-03-08 14:14:00 +01002193{
2194 int ret;
2195 u8 csum[BTRFS_CSUM_SIZE];
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002196 u32 blocksize;
2197
2198 if (flags & BTRFS_EXTENT_FLAG_DATA) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002199 blocksize = sctx->sectorsize;
2200 spin_lock(&sctx->stat_lock);
2201 sctx->stat.data_extents_scrubbed++;
2202 sctx->stat.data_bytes_scrubbed += len;
2203 spin_unlock(&sctx->stat_lock);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002204 } else if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) {
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002205 blocksize = sctx->nodesize;
2206 spin_lock(&sctx->stat_lock);
2207 sctx->stat.tree_extents_scrubbed++;
2208 sctx->stat.tree_bytes_scrubbed += len;
2209 spin_unlock(&sctx->stat_lock);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002210 } else {
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002211 blocksize = sctx->sectorsize;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002212 WARN_ON(1);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002213 }
Arne Jansena2de7332011-03-08 14:14:00 +01002214
2215 while (len) {
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002216 u64 l = min_t(u64, len, blocksize);
Arne Jansena2de7332011-03-08 14:14:00 +01002217 int have_csum = 0;
2218
2219 if (flags & BTRFS_EXTENT_FLAG_DATA) {
2220 /* push csums to sbio */
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002221 have_csum = scrub_find_csum(sctx, logical, l, csum);
Arne Jansena2de7332011-03-08 14:14:00 +01002222 if (have_csum == 0)
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002223 ++sctx->stat.no_csum;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002224 if (sctx->is_dev_replace && !have_csum) {
2225 ret = copy_nocow_pages(sctx, logical, l,
2226 mirror_num,
2227 physical_for_dev_replace);
2228 goto behind_scrub_pages;
2229 }
Arne Jansena2de7332011-03-08 14:14:00 +01002230 }
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002231 ret = scrub_pages(sctx, logical, l, physical, dev, flags, gen,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002232 mirror_num, have_csum ? csum : NULL, 0,
2233 physical_for_dev_replace);
2234behind_scrub_pages:
Arne Jansena2de7332011-03-08 14:14:00 +01002235 if (ret)
2236 return ret;
2237 len -= l;
2238 logical += l;
2239 physical += l;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002240 physical_for_dev_replace += l;
Arne Jansena2de7332011-03-08 14:14:00 +01002241 }
2242 return 0;
2243}
2244
Wang Shilong3b080b22014-04-01 18:01:43 +08002245/*
2246 * Given a physical address, this will calculate it's
2247 * logical offset. if this is a parity stripe, it will return
2248 * the most left data stripe's logical offset.
2249 *
2250 * return 0 if it is a data stripe, 1 means parity stripe.
2251 */
2252static int get_raid56_logic_offset(u64 physical, int num,
2253 struct map_lookup *map, u64 *offset)
2254{
2255 int i;
2256 int j = 0;
2257 u64 stripe_nr;
2258 u64 last_offset;
2259 int stripe_index;
2260 int rot;
2261
2262 last_offset = (physical - map->stripes[num].physical) *
2263 nr_data_stripes(map);
2264 *offset = last_offset;
2265 for (i = 0; i < nr_data_stripes(map); i++) {
2266 *offset = last_offset + i * map->stripe_len;
2267
2268 stripe_nr = *offset;
2269 do_div(stripe_nr, map->stripe_len);
2270 do_div(stripe_nr, nr_data_stripes(map));
2271
2272 /* Work out the disk rotation on this stripe-set */
2273 rot = do_div(stripe_nr, map->num_stripes);
2274 /* calculate which stripe this data locates */
2275 rot += i;
Wang Shilonge4fbaee2014-04-11 18:32:25 +08002276 stripe_index = rot % map->num_stripes;
Wang Shilong3b080b22014-04-01 18:01:43 +08002277 if (stripe_index == num)
2278 return 0;
2279 if (stripe_index < num)
2280 j++;
2281 }
2282 *offset = last_offset + j * map->stripe_len;
2283 return 1;
2284}
2285
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002286static noinline_for_stack int scrub_stripe(struct scrub_ctx *sctx,
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002287 struct map_lookup *map,
2288 struct btrfs_device *scrub_dev,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002289 int num, u64 base, u64 length,
2290 int is_dev_replace)
Arne Jansena2de7332011-03-08 14:14:00 +01002291{
2292 struct btrfs_path *path;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002293 struct btrfs_fs_info *fs_info = sctx->dev_root->fs_info;
Arne Jansena2de7332011-03-08 14:14:00 +01002294 struct btrfs_root *root = fs_info->extent_root;
2295 struct btrfs_root *csum_root = fs_info->csum_root;
2296 struct btrfs_extent_item *extent;
Arne Jansene7786c32011-05-28 20:58:38 +00002297 struct blk_plug plug;
Arne Jansena2de7332011-03-08 14:14:00 +01002298 u64 flags;
2299 int ret;
2300 int slot;
Arne Jansena2de7332011-03-08 14:14:00 +01002301 u64 nstripes;
Arne Jansena2de7332011-03-08 14:14:00 +01002302 struct extent_buffer *l;
2303 struct btrfs_key key;
2304 u64 physical;
2305 u64 logical;
Liu Bo625f1c8d2013-04-27 02:56:57 +00002306 u64 logic_end;
Wang Shilong3b080b22014-04-01 18:01:43 +08002307 u64 physical_end;
Arne Jansena2de7332011-03-08 14:14:00 +01002308 u64 generation;
Jan Schmidte12fa9c2011-06-17 15:55:21 +02002309 int mirror_num;
Arne Jansen7a262852011-06-10 12:39:23 +02002310 struct reada_control *reada1;
2311 struct reada_control *reada2;
2312 struct btrfs_key key_start;
2313 struct btrfs_key key_end;
Arne Jansena2de7332011-03-08 14:14:00 +01002314 u64 increment = map->stripe_len;
2315 u64 offset;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002316 u64 extent_logical;
2317 u64 extent_physical;
2318 u64 extent_len;
2319 struct btrfs_device *extent_dev;
2320 int extent_mirror_num;
Wang Shilong3b080b22014-04-01 18:01:43 +08002321 int stop_loop = 0;
David Woodhouse53b381b2013-01-29 18:40:14 -05002322
Arne Jansena2de7332011-03-08 14:14:00 +01002323 nstripes = length;
Wang Shilong3b080b22014-04-01 18:01:43 +08002324 physical = map->stripes[num].physical;
Arne Jansena2de7332011-03-08 14:14:00 +01002325 offset = 0;
2326 do_div(nstripes, map->stripe_len);
2327 if (map->type & BTRFS_BLOCK_GROUP_RAID0) {
2328 offset = map->stripe_len * num;
2329 increment = map->stripe_len * map->num_stripes;
Jan Schmidt193ea742011-06-13 19:56:54 +02002330 mirror_num = 1;
Arne Jansena2de7332011-03-08 14:14:00 +01002331 } else if (map->type & BTRFS_BLOCK_GROUP_RAID10) {
2332 int factor = map->num_stripes / map->sub_stripes;
2333 offset = map->stripe_len * (num / map->sub_stripes);
2334 increment = map->stripe_len * factor;
Jan Schmidt193ea742011-06-13 19:56:54 +02002335 mirror_num = num % map->sub_stripes + 1;
Arne Jansena2de7332011-03-08 14:14:00 +01002336 } else if (map->type & BTRFS_BLOCK_GROUP_RAID1) {
2337 increment = map->stripe_len;
Jan Schmidt193ea742011-06-13 19:56:54 +02002338 mirror_num = num % map->num_stripes + 1;
Arne Jansena2de7332011-03-08 14:14:00 +01002339 } else if (map->type & BTRFS_BLOCK_GROUP_DUP) {
2340 increment = map->stripe_len;
Jan Schmidt193ea742011-06-13 19:56:54 +02002341 mirror_num = num % map->num_stripes + 1;
Wang Shilong3b080b22014-04-01 18:01:43 +08002342 } else if (map->type & (BTRFS_BLOCK_GROUP_RAID5 |
2343 BTRFS_BLOCK_GROUP_RAID6)) {
2344 get_raid56_logic_offset(physical, num, map, &offset);
2345 increment = map->stripe_len * nr_data_stripes(map);
2346 mirror_num = 1;
Arne Jansena2de7332011-03-08 14:14:00 +01002347 } else {
2348 increment = map->stripe_len;
Jan Schmidt193ea742011-06-13 19:56:54 +02002349 mirror_num = 1;
Arne Jansena2de7332011-03-08 14:14:00 +01002350 }
2351
2352 path = btrfs_alloc_path();
2353 if (!path)
2354 return -ENOMEM;
2355
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002356 /*
2357 * work on commit root. The related disk blocks are static as
2358 * long as COW is applied. This means, it is save to rewrite
2359 * them to repair disk errors without any race conditions
2360 */
Arne Jansena2de7332011-03-08 14:14:00 +01002361 path->search_commit_root = 1;
2362 path->skip_locking = 1;
2363
2364 /*
Arne Jansen7a262852011-06-10 12:39:23 +02002365 * trigger the readahead for extent tree csum tree and wait for
2366 * completion. During readahead, the scrub is officially paused
2367 * to not hold off transaction commits
Arne Jansena2de7332011-03-08 14:14:00 +01002368 */
2369 logical = base + offset;
Wang Shilong3b080b22014-04-01 18:01:43 +08002370 physical_end = physical + nstripes * map->stripe_len;
2371 if (map->type & (BTRFS_BLOCK_GROUP_RAID5 |
2372 BTRFS_BLOCK_GROUP_RAID6)) {
2373 get_raid56_logic_offset(physical_end, num,
2374 map, &logic_end);
2375 logic_end += base;
2376 } else {
2377 logic_end = logical + increment * nstripes;
2378 }
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002379 wait_event(sctx->list_wait,
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01002380 atomic_read(&sctx->bios_in_flight) == 0);
Wang Shilongcb7ab022013-12-04 21:16:53 +08002381 scrub_blocked_if_needed(fs_info);
Arne Jansena2de7332011-03-08 14:14:00 +01002382
Arne Jansen7a262852011-06-10 12:39:23 +02002383 /* FIXME it might be better to start readahead at commit root */
2384 key_start.objectid = logical;
2385 key_start.type = BTRFS_EXTENT_ITEM_KEY;
2386 key_start.offset = (u64)0;
Wang Shilong3b080b22014-04-01 18:01:43 +08002387 key_end.objectid = logic_end;
Josef Bacik3173a182013-03-07 14:22:04 -05002388 key_end.type = BTRFS_METADATA_ITEM_KEY;
2389 key_end.offset = (u64)-1;
Arne Jansen7a262852011-06-10 12:39:23 +02002390 reada1 = btrfs_reada_add(root, &key_start, &key_end);
Arne Jansena2de7332011-03-08 14:14:00 +01002391
Arne Jansen7a262852011-06-10 12:39:23 +02002392 key_start.objectid = BTRFS_EXTENT_CSUM_OBJECTID;
2393 key_start.type = BTRFS_EXTENT_CSUM_KEY;
2394 key_start.offset = logical;
2395 key_end.objectid = BTRFS_EXTENT_CSUM_OBJECTID;
2396 key_end.type = BTRFS_EXTENT_CSUM_KEY;
Wang Shilong3b080b22014-04-01 18:01:43 +08002397 key_end.offset = logic_end;
Arne Jansen7a262852011-06-10 12:39:23 +02002398 reada2 = btrfs_reada_add(csum_root, &key_start, &key_end);
Arne Jansena2de7332011-03-08 14:14:00 +01002399
Arne Jansen7a262852011-06-10 12:39:23 +02002400 if (!IS_ERR(reada1))
2401 btrfs_reada_wait(reada1);
2402 if (!IS_ERR(reada2))
2403 btrfs_reada_wait(reada2);
Arne Jansena2de7332011-03-08 14:14:00 +01002404
Arne Jansena2de7332011-03-08 14:14:00 +01002405
2406 /*
2407 * collect all data csums for the stripe to avoid seeking during
2408 * the scrub. This might currently (crc32) end up to be about 1MB
2409 */
Arne Jansene7786c32011-05-28 20:58:38 +00002410 blk_start_plug(&plug);
Arne Jansena2de7332011-03-08 14:14:00 +01002411
Arne Jansena2de7332011-03-08 14:14:00 +01002412 /*
2413 * now find all extents for each stripe and scrub them
2414 */
Arne Jansena2de7332011-03-08 14:14:00 +01002415 ret = 0;
Wang Shilong3b080b22014-04-01 18:01:43 +08002416 while (physical < physical_end) {
2417 /* for raid56, we skip parity stripe */
2418 if (map->type & (BTRFS_BLOCK_GROUP_RAID5 |
2419 BTRFS_BLOCK_GROUP_RAID6)) {
2420 ret = get_raid56_logic_offset(physical, num,
2421 map, &logical);
2422 logical += base;
2423 if (ret)
2424 goto skip;
2425 }
Arne Jansena2de7332011-03-08 14:14:00 +01002426 /*
2427 * canceled?
2428 */
2429 if (atomic_read(&fs_info->scrub_cancel_req) ||
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002430 atomic_read(&sctx->cancel_req)) {
Arne Jansena2de7332011-03-08 14:14:00 +01002431 ret = -ECANCELED;
2432 goto out;
2433 }
2434 /*
2435 * check to see if we have to pause
2436 */
2437 if (atomic_read(&fs_info->scrub_pause_req)) {
2438 /* push queued extents */
Stefan Behrensff023aa2012-11-06 11:43:11 +01002439 atomic_set(&sctx->wr_ctx.flush_all_writes, 1);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002440 scrub_submit(sctx);
Stefan Behrensff023aa2012-11-06 11:43:11 +01002441 mutex_lock(&sctx->wr_ctx.wr_lock);
2442 scrub_wr_submit(sctx);
2443 mutex_unlock(&sctx->wr_ctx.wr_lock);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002444 wait_event(sctx->list_wait,
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01002445 atomic_read(&sctx->bios_in_flight) == 0);
Stefan Behrensff023aa2012-11-06 11:43:11 +01002446 atomic_set(&sctx->wr_ctx.flush_all_writes, 0);
Wang Shilong3cb09292013-12-04 21:15:19 +08002447 scrub_blocked_if_needed(fs_info);
Arne Jansena2de7332011-03-08 14:14:00 +01002448 }
2449
Wang Shilong7c76edb2014-01-12 21:38:32 +08002450 if (btrfs_fs_incompat(fs_info, SKINNY_METADATA))
2451 key.type = BTRFS_METADATA_ITEM_KEY;
2452 else
2453 key.type = BTRFS_EXTENT_ITEM_KEY;
Arne Jansena2de7332011-03-08 14:14:00 +01002454 key.objectid = logical;
Liu Bo625f1c8d2013-04-27 02:56:57 +00002455 key.offset = (u64)-1;
Arne Jansena2de7332011-03-08 14:14:00 +01002456
2457 ret = btrfs_search_slot(NULL, root, &key, path, 0, 0);
2458 if (ret < 0)
2459 goto out;
Josef Bacik3173a182013-03-07 14:22:04 -05002460
Arne Jansen8c510322011-06-03 10:09:26 +02002461 if (ret > 0) {
Wang Shilongade2e0b2014-01-12 21:38:33 +08002462 ret = btrfs_previous_extent_item(root, path, 0);
Arne Jansena2de7332011-03-08 14:14:00 +01002463 if (ret < 0)
2464 goto out;
Arne Jansen8c510322011-06-03 10:09:26 +02002465 if (ret > 0) {
2466 /* there's no smaller item, so stick with the
2467 * larger one */
2468 btrfs_release_path(path);
2469 ret = btrfs_search_slot(NULL, root, &key,
2470 path, 0, 0);
2471 if (ret < 0)
2472 goto out;
2473 }
Arne Jansena2de7332011-03-08 14:14:00 +01002474 }
2475
Liu Bo625f1c8d2013-04-27 02:56:57 +00002476 stop_loop = 0;
Arne Jansena2de7332011-03-08 14:14:00 +01002477 while (1) {
Josef Bacik3173a182013-03-07 14:22:04 -05002478 u64 bytes;
2479
Arne Jansena2de7332011-03-08 14:14:00 +01002480 l = path->nodes[0];
2481 slot = path->slots[0];
2482 if (slot >= btrfs_header_nritems(l)) {
2483 ret = btrfs_next_leaf(root, path);
2484 if (ret == 0)
2485 continue;
2486 if (ret < 0)
2487 goto out;
2488
Liu Bo625f1c8d2013-04-27 02:56:57 +00002489 stop_loop = 1;
Arne Jansena2de7332011-03-08 14:14:00 +01002490 break;
2491 }
2492 btrfs_item_key_to_cpu(l, &key, slot);
2493
Josef Bacik3173a182013-03-07 14:22:04 -05002494 if (key.type == BTRFS_METADATA_ITEM_KEY)
David Sterba707e8a02014-06-04 19:22:26 +02002495 bytes = root->nodesize;
Josef Bacik3173a182013-03-07 14:22:04 -05002496 else
2497 bytes = key.offset;
2498
2499 if (key.objectid + bytes <= logical)
Arne Jansena2de7332011-03-08 14:14:00 +01002500 goto next;
2501
Liu Bo625f1c8d2013-04-27 02:56:57 +00002502 if (key.type != BTRFS_EXTENT_ITEM_KEY &&
2503 key.type != BTRFS_METADATA_ITEM_KEY)
2504 goto next;
Arne Jansena2de7332011-03-08 14:14:00 +01002505
Liu Bo625f1c8d2013-04-27 02:56:57 +00002506 if (key.objectid >= logical + map->stripe_len) {
2507 /* out of this device extent */
2508 if (key.objectid >= logic_end)
2509 stop_loop = 1;
2510 break;
2511 }
Arne Jansena2de7332011-03-08 14:14:00 +01002512
2513 extent = btrfs_item_ptr(l, slot,
2514 struct btrfs_extent_item);
2515 flags = btrfs_extent_flags(l, extent);
2516 generation = btrfs_extent_generation(l, extent);
2517
2518 if (key.objectid < logical &&
2519 (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK)) {
Frank Holtonefe120a2013-12-20 11:37:06 -05002520 btrfs_err(fs_info,
2521 "scrub: tree block %llu spanning "
2522 "stripes, ignored. logical=%llu",
Geert Uytterhoevenc1c9ff72013-08-20 13:20:07 +02002523 key.objectid, logical);
Arne Jansena2de7332011-03-08 14:14:00 +01002524 goto next;
2525 }
2526
Liu Bo625f1c8d2013-04-27 02:56:57 +00002527again:
2528 extent_logical = key.objectid;
2529 extent_len = bytes;
2530
Arne Jansena2de7332011-03-08 14:14:00 +01002531 /*
2532 * trim extent to this stripe
2533 */
Liu Bo625f1c8d2013-04-27 02:56:57 +00002534 if (extent_logical < logical) {
2535 extent_len -= logical - extent_logical;
2536 extent_logical = logical;
Arne Jansena2de7332011-03-08 14:14:00 +01002537 }
Liu Bo625f1c8d2013-04-27 02:56:57 +00002538 if (extent_logical + extent_len >
Arne Jansena2de7332011-03-08 14:14:00 +01002539 logical + map->stripe_len) {
Liu Bo625f1c8d2013-04-27 02:56:57 +00002540 extent_len = logical + map->stripe_len -
2541 extent_logical;
Arne Jansena2de7332011-03-08 14:14:00 +01002542 }
2543
Liu Bo625f1c8d2013-04-27 02:56:57 +00002544 extent_physical = extent_logical - logical + physical;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002545 extent_dev = scrub_dev;
2546 extent_mirror_num = mirror_num;
2547 if (is_dev_replace)
2548 scrub_remap_extent(fs_info, extent_logical,
2549 extent_len, &extent_physical,
2550 &extent_dev,
2551 &extent_mirror_num);
Liu Bo625f1c8d2013-04-27 02:56:57 +00002552
2553 ret = btrfs_lookup_csums_range(csum_root, logical,
2554 logical + map->stripe_len - 1,
2555 &sctx->csum_list, 1);
Arne Jansena2de7332011-03-08 14:14:00 +01002556 if (ret)
2557 goto out;
2558
Liu Bo625f1c8d2013-04-27 02:56:57 +00002559 ret = scrub_extent(sctx, extent_logical, extent_len,
2560 extent_physical, extent_dev, flags,
2561 generation, extent_mirror_num,
Stefan Behrens115930c2013-07-04 16:14:23 +02002562 extent_logical - logical + physical);
Liu Bo625f1c8d2013-04-27 02:56:57 +00002563 if (ret)
2564 goto out;
2565
Josef Bacikd88d46c2013-06-10 12:59:04 +00002566 scrub_free_csums(sctx);
Liu Bo625f1c8d2013-04-27 02:56:57 +00002567 if (extent_logical + extent_len <
2568 key.objectid + bytes) {
Wang Shilong3b080b22014-04-01 18:01:43 +08002569 if (map->type & (BTRFS_BLOCK_GROUP_RAID5 |
2570 BTRFS_BLOCK_GROUP_RAID6)) {
2571 /*
2572 * loop until we find next data stripe
2573 * or we have finished all stripes.
2574 */
2575 do {
2576 physical += map->stripe_len;
2577 ret = get_raid56_logic_offset(
2578 physical, num,
2579 map, &logical);
2580 logical += base;
2581 } while (physical < physical_end && ret);
2582 } else {
2583 physical += map->stripe_len;
2584 logical += increment;
2585 }
Liu Bo625f1c8d2013-04-27 02:56:57 +00002586 if (logical < key.objectid + bytes) {
2587 cond_resched();
2588 goto again;
2589 }
2590
Wang Shilong3b080b22014-04-01 18:01:43 +08002591 if (physical >= physical_end) {
Liu Bo625f1c8d2013-04-27 02:56:57 +00002592 stop_loop = 1;
2593 break;
2594 }
2595 }
Arne Jansena2de7332011-03-08 14:14:00 +01002596next:
2597 path->slots[0]++;
2598 }
Chris Mason71267332011-05-23 06:30:52 -04002599 btrfs_release_path(path);
Wang Shilong3b080b22014-04-01 18:01:43 +08002600skip:
Arne Jansena2de7332011-03-08 14:14:00 +01002601 logical += increment;
2602 physical += map->stripe_len;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002603 spin_lock(&sctx->stat_lock);
Liu Bo625f1c8d2013-04-27 02:56:57 +00002604 if (stop_loop)
2605 sctx->stat.last_physical = map->stripes[num].physical +
2606 length;
2607 else
2608 sctx->stat.last_physical = physical;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002609 spin_unlock(&sctx->stat_lock);
Liu Bo625f1c8d2013-04-27 02:56:57 +00002610 if (stop_loop)
2611 break;
Arne Jansena2de7332011-03-08 14:14:00 +01002612 }
Stefan Behrensff023aa2012-11-06 11:43:11 +01002613out:
Arne Jansena2de7332011-03-08 14:14:00 +01002614 /* push queued extents */
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002615 scrub_submit(sctx);
Stefan Behrensff023aa2012-11-06 11:43:11 +01002616 mutex_lock(&sctx->wr_ctx.wr_lock);
2617 scrub_wr_submit(sctx);
2618 mutex_unlock(&sctx->wr_ctx.wr_lock);
Arne Jansena2de7332011-03-08 14:14:00 +01002619
Arne Jansene7786c32011-05-28 20:58:38 +00002620 blk_finish_plug(&plug);
Arne Jansena2de7332011-03-08 14:14:00 +01002621 btrfs_free_path(path);
2622 return ret < 0 ? ret : 0;
2623}
2624
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002625static noinline_for_stack int scrub_chunk(struct scrub_ctx *sctx,
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002626 struct btrfs_device *scrub_dev,
2627 u64 chunk_tree, u64 chunk_objectid,
2628 u64 chunk_offset, u64 length,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002629 u64 dev_offset, int is_dev_replace)
Arne Jansena2de7332011-03-08 14:14:00 +01002630{
2631 struct btrfs_mapping_tree *map_tree =
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002632 &sctx->dev_root->fs_info->mapping_tree;
Arne Jansena2de7332011-03-08 14:14:00 +01002633 struct map_lookup *map;
2634 struct extent_map *em;
2635 int i;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002636 int ret = 0;
Arne Jansena2de7332011-03-08 14:14:00 +01002637
2638 read_lock(&map_tree->map_tree.lock);
2639 em = lookup_extent_mapping(&map_tree->map_tree, chunk_offset, 1);
2640 read_unlock(&map_tree->map_tree.lock);
2641
2642 if (!em)
2643 return -EINVAL;
2644
2645 map = (struct map_lookup *)em->bdev;
2646 if (em->start != chunk_offset)
2647 goto out;
2648
2649 if (em->len < length)
2650 goto out;
2651
2652 for (i = 0; i < map->num_stripes; ++i) {
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002653 if (map->stripes[i].dev->bdev == scrub_dev->bdev &&
Arne Jansen859acaf2012-02-09 15:09:02 +01002654 map->stripes[i].physical == dev_offset) {
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002655 ret = scrub_stripe(sctx, map, scrub_dev, i,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002656 chunk_offset, length,
2657 is_dev_replace);
Arne Jansena2de7332011-03-08 14:14:00 +01002658 if (ret)
2659 goto out;
2660 }
2661 }
2662out:
2663 free_extent_map(em);
2664
2665 return ret;
2666}
2667
2668static noinline_for_stack
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002669int scrub_enumerate_chunks(struct scrub_ctx *sctx,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002670 struct btrfs_device *scrub_dev, u64 start, u64 end,
2671 int is_dev_replace)
Arne Jansena2de7332011-03-08 14:14:00 +01002672{
2673 struct btrfs_dev_extent *dev_extent = NULL;
2674 struct btrfs_path *path;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002675 struct btrfs_root *root = sctx->dev_root;
Arne Jansena2de7332011-03-08 14:14:00 +01002676 struct btrfs_fs_info *fs_info = root->fs_info;
2677 u64 length;
2678 u64 chunk_tree;
2679 u64 chunk_objectid;
2680 u64 chunk_offset;
2681 int ret;
2682 int slot;
2683 struct extent_buffer *l;
2684 struct btrfs_key key;
2685 struct btrfs_key found_key;
2686 struct btrfs_block_group_cache *cache;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002687 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
Arne Jansena2de7332011-03-08 14:14:00 +01002688
2689 path = btrfs_alloc_path();
2690 if (!path)
2691 return -ENOMEM;
2692
2693 path->reada = 2;
2694 path->search_commit_root = 1;
2695 path->skip_locking = 1;
2696
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002697 key.objectid = scrub_dev->devid;
Arne Jansena2de7332011-03-08 14:14:00 +01002698 key.offset = 0ull;
2699 key.type = BTRFS_DEV_EXTENT_KEY;
2700
Arne Jansena2de7332011-03-08 14:14:00 +01002701 while (1) {
2702 ret = btrfs_search_slot(NULL, root, &key, path, 0, 0);
2703 if (ret < 0)
Arne Jansen8c510322011-06-03 10:09:26 +02002704 break;
2705 if (ret > 0) {
2706 if (path->slots[0] >=
2707 btrfs_header_nritems(path->nodes[0])) {
2708 ret = btrfs_next_leaf(root, path);
2709 if (ret)
2710 break;
2711 }
2712 }
Arne Jansena2de7332011-03-08 14:14:00 +01002713
2714 l = path->nodes[0];
2715 slot = path->slots[0];
2716
2717 btrfs_item_key_to_cpu(l, &found_key, slot);
2718
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002719 if (found_key.objectid != scrub_dev->devid)
Arne Jansena2de7332011-03-08 14:14:00 +01002720 break;
2721
David Sterba962a2982014-06-04 18:41:45 +02002722 if (found_key.type != BTRFS_DEV_EXTENT_KEY)
Arne Jansena2de7332011-03-08 14:14:00 +01002723 break;
2724
2725 if (found_key.offset >= end)
2726 break;
2727
2728 if (found_key.offset < key.offset)
2729 break;
2730
2731 dev_extent = btrfs_item_ptr(l, slot, struct btrfs_dev_extent);
2732 length = btrfs_dev_extent_length(l, dev_extent);
2733
Qu Wenruoced96ed2014-06-19 10:42:51 +08002734 if (found_key.offset + length <= start)
2735 goto skip;
Arne Jansena2de7332011-03-08 14:14:00 +01002736
2737 chunk_tree = btrfs_dev_extent_chunk_tree(l, dev_extent);
2738 chunk_objectid = btrfs_dev_extent_chunk_objectid(l, dev_extent);
2739 chunk_offset = btrfs_dev_extent_chunk_offset(l, dev_extent);
2740
2741 /*
2742 * get a reference on the corresponding block group to prevent
2743 * the chunk from going away while we scrub it
2744 */
2745 cache = btrfs_lookup_block_group(fs_info, chunk_offset);
Qu Wenruoced96ed2014-06-19 10:42:51 +08002746
2747 /* some chunks are removed but not committed to disk yet,
2748 * continue scrubbing */
2749 if (!cache)
2750 goto skip;
2751
Stefan Behrensff023aa2012-11-06 11:43:11 +01002752 dev_replace->cursor_right = found_key.offset + length;
2753 dev_replace->cursor_left = found_key.offset;
2754 dev_replace->item_needs_writeback = 1;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002755 ret = scrub_chunk(sctx, scrub_dev, chunk_tree, chunk_objectid,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002756 chunk_offset, length, found_key.offset,
2757 is_dev_replace);
2758
2759 /*
2760 * flush, submit all pending read and write bios, afterwards
2761 * wait for them.
2762 * Note that in the dev replace case, a read request causes
2763 * write requests that are submitted in the read completion
2764 * worker. Therefore in the current situation, it is required
2765 * that all write requests are flushed, so that all read and
2766 * write requests are really completed when bios_in_flight
2767 * changes to 0.
2768 */
2769 atomic_set(&sctx->wr_ctx.flush_all_writes, 1);
2770 scrub_submit(sctx);
2771 mutex_lock(&sctx->wr_ctx.wr_lock);
2772 scrub_wr_submit(sctx);
2773 mutex_unlock(&sctx->wr_ctx.wr_lock);
2774
2775 wait_event(sctx->list_wait,
2776 atomic_read(&sctx->bios_in_flight) == 0);
Wang Shilong12cf9372014-02-19 19:24:17 +08002777 atomic_inc(&fs_info->scrubs_paused);
2778 wake_up(&fs_info->scrub_pause_wait);
2779
2780 /*
2781 * must be called before we decrease @scrub_paused.
2782 * make sure we don't block transaction commit while
2783 * we are waiting pending workers finished.
2784 */
Stefan Behrensff023aa2012-11-06 11:43:11 +01002785 wait_event(sctx->list_wait,
2786 atomic_read(&sctx->workers_pending) == 0);
Wang Shilong12cf9372014-02-19 19:24:17 +08002787 atomic_set(&sctx->wr_ctx.flush_all_writes, 0);
2788
2789 mutex_lock(&fs_info->scrub_lock);
2790 __scrub_blocked_if_needed(fs_info);
2791 atomic_dec(&fs_info->scrubs_paused);
2792 mutex_unlock(&fs_info->scrub_lock);
2793 wake_up(&fs_info->scrub_pause_wait);
Stefan Behrensff023aa2012-11-06 11:43:11 +01002794
Arne Jansena2de7332011-03-08 14:14:00 +01002795 btrfs_put_block_group(cache);
2796 if (ret)
2797 break;
Stefan Behrensaf1be4f2012-11-27 17:39:51 +00002798 if (is_dev_replace &&
2799 atomic64_read(&dev_replace->num_write_errors) > 0) {
Stefan Behrensff023aa2012-11-06 11:43:11 +01002800 ret = -EIO;
2801 break;
2802 }
2803 if (sctx->stat.malloc_errors > 0) {
2804 ret = -ENOMEM;
2805 break;
2806 }
Arne Jansena2de7332011-03-08 14:14:00 +01002807
Ilya Dryomov539f3582013-10-07 13:42:57 +03002808 dev_replace->cursor_left = dev_replace->cursor_right;
2809 dev_replace->item_needs_writeback = 1;
Qu Wenruoced96ed2014-06-19 10:42:51 +08002810skip:
Arne Jansena2de7332011-03-08 14:14:00 +01002811 key.offset = found_key.offset + length;
Chris Mason71267332011-05-23 06:30:52 -04002812 btrfs_release_path(path);
Arne Jansena2de7332011-03-08 14:14:00 +01002813 }
2814
Arne Jansena2de7332011-03-08 14:14:00 +01002815 btrfs_free_path(path);
Arne Jansen8c510322011-06-03 10:09:26 +02002816
2817 /*
2818 * ret can still be 1 from search_slot or next_leaf,
2819 * that's not an error
2820 */
2821 return ret < 0 ? ret : 0;
Arne Jansena2de7332011-03-08 14:14:00 +01002822}
2823
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002824static noinline_for_stack int scrub_supers(struct scrub_ctx *sctx,
2825 struct btrfs_device *scrub_dev)
Arne Jansena2de7332011-03-08 14:14:00 +01002826{
2827 int i;
2828 u64 bytenr;
2829 u64 gen;
2830 int ret;
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002831 struct btrfs_root *root = sctx->dev_root;
Arne Jansena2de7332011-03-08 14:14:00 +01002832
Miao Xie87533c42013-01-29 10:14:48 +00002833 if (test_bit(BTRFS_FS_STATE_ERROR, &root->fs_info->fs_state))
Jeff Mahoney79787ea2012-03-12 16:03:00 +01002834 return -EIO;
2835
Miao Xie5f546062014-07-24 11:37:09 +08002836 /* Seed devices of a new filesystem has their own generation. */
2837 if (scrub_dev->fs_devices != root->fs_info->fs_devices)
2838 gen = scrub_dev->generation;
2839 else
2840 gen = root->fs_info->last_trans_committed;
Arne Jansena2de7332011-03-08 14:14:00 +01002841
2842 for (i = 0; i < BTRFS_SUPER_MIRROR_MAX; i++) {
2843 bytenr = btrfs_sb_offset(i);
Miao Xie935e5cc2014-09-03 21:35:33 +08002844 if (bytenr + BTRFS_SUPER_INFO_SIZE >
2845 scrub_dev->commit_total_bytes)
Arne Jansena2de7332011-03-08 14:14:00 +01002846 break;
2847
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002848 ret = scrub_pages(sctx, bytenr, BTRFS_SUPER_INFO_SIZE, bytenr,
Stefan Behrensa36cf8b2012-11-02 13:26:57 +01002849 scrub_dev, BTRFS_EXTENT_FLAG_SUPER, gen, i,
Stefan Behrensff023aa2012-11-06 11:43:11 +01002850 NULL, 1, bytenr);
Arne Jansena2de7332011-03-08 14:14:00 +01002851 if (ret)
2852 return ret;
2853 }
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01002854 wait_event(sctx->list_wait, atomic_read(&sctx->bios_in_flight) == 0);
Arne Jansena2de7332011-03-08 14:14:00 +01002855
2856 return 0;
2857}
2858
2859/*
2860 * get a reference count on fs_info->scrub_workers. start worker if necessary
2861 */
Stefan Behrensff023aa2012-11-06 11:43:11 +01002862static noinline_for_stack int scrub_workers_get(struct btrfs_fs_info *fs_info,
2863 int is_dev_replace)
Arne Jansena2de7332011-03-08 14:14:00 +01002864{
Josef Bacik0dc3b842011-11-18 14:37:27 -05002865 int ret = 0;
Qu Wenruo0339ef22014-02-28 10:46:17 +08002866 int flags = WQ_FREEZABLE | WQ_UNBOUND;
2867 int max_active = fs_info->thread_pool_size;
Arne Jansena2de7332011-03-08 14:14:00 +01002868
Arne Jansen632dd772011-06-10 12:07:07 +02002869 if (fs_info->scrub_workers_refcnt == 0) {
Stefan Behrensff023aa2012-11-06 11:43:11 +01002870 if (is_dev_replace)
Qu Wenruo0339ef22014-02-28 10:46:17 +08002871 fs_info->scrub_workers =
2872 btrfs_alloc_workqueue("btrfs-scrub", flags,
2873 1, 4);
Stefan Behrensff023aa2012-11-06 11:43:11 +01002874 else
Qu Wenruo0339ef22014-02-28 10:46:17 +08002875 fs_info->scrub_workers =
2876 btrfs_alloc_workqueue("btrfs-scrub", flags,
2877 max_active, 4);
2878 if (!fs_info->scrub_workers) {
2879 ret = -ENOMEM;
Josef Bacik0dc3b842011-11-18 14:37:27 -05002880 goto out;
Qu Wenruo0339ef22014-02-28 10:46:17 +08002881 }
2882 fs_info->scrub_wr_completion_workers =
2883 btrfs_alloc_workqueue("btrfs-scrubwrc", flags,
2884 max_active, 2);
2885 if (!fs_info->scrub_wr_completion_workers) {
2886 ret = -ENOMEM;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002887 goto out;
Qu Wenruo0339ef22014-02-28 10:46:17 +08002888 }
2889 fs_info->scrub_nocow_workers =
2890 btrfs_alloc_workqueue("btrfs-scrubnc", flags, 1, 0);
2891 if (!fs_info->scrub_nocow_workers) {
2892 ret = -ENOMEM;
Stefan Behrensff023aa2012-11-06 11:43:11 +01002893 goto out;
Qu Wenruo0339ef22014-02-28 10:46:17 +08002894 }
Arne Jansen632dd772011-06-10 12:07:07 +02002895 }
Arne Jansena2de7332011-03-08 14:14:00 +01002896 ++fs_info->scrub_workers_refcnt;
Josef Bacik0dc3b842011-11-18 14:37:27 -05002897out:
Josef Bacik0dc3b842011-11-18 14:37:27 -05002898 return ret;
Arne Jansena2de7332011-03-08 14:14:00 +01002899}
2900
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002901static noinline_for_stack void scrub_workers_put(struct btrfs_fs_info *fs_info)
Arne Jansena2de7332011-03-08 14:14:00 +01002902{
Stefan Behrensff023aa2012-11-06 11:43:11 +01002903 if (--fs_info->scrub_workers_refcnt == 0) {
Qu Wenruo0339ef22014-02-28 10:46:17 +08002904 btrfs_destroy_workqueue(fs_info->scrub_workers);
2905 btrfs_destroy_workqueue(fs_info->scrub_wr_completion_workers);
2906 btrfs_destroy_workqueue(fs_info->scrub_nocow_workers);
Stefan Behrensff023aa2012-11-06 11:43:11 +01002907 }
Arne Jansena2de7332011-03-08 14:14:00 +01002908 WARN_ON(fs_info->scrub_workers_refcnt < 0);
Arne Jansena2de7332011-03-08 14:14:00 +01002909}
2910
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002911int btrfs_scrub_dev(struct btrfs_fs_info *fs_info, u64 devid, u64 start,
2912 u64 end, struct btrfs_scrub_progress *progress,
Stefan Behrens63a212a2012-11-05 18:29:28 +01002913 int readonly, int is_dev_replace)
Arne Jansena2de7332011-03-08 14:14:00 +01002914{
Stefan Behrensd9d181c2012-11-02 09:58:09 +01002915 struct scrub_ctx *sctx;
Arne Jansena2de7332011-03-08 14:14:00 +01002916 int ret;
2917 struct btrfs_device *dev;
Miao Xie5d68da32014-07-24 11:37:07 +08002918 struct rcu_string *name;
Arne Jansena2de7332011-03-08 14:14:00 +01002919
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002920 if (btrfs_fs_closing(fs_info))
Arne Jansena2de7332011-03-08 14:14:00 +01002921 return -EINVAL;
2922
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002923 if (fs_info->chunk_root->nodesize > BTRFS_STRIPE_LEN) {
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002924 /*
2925 * in this case scrub is unable to calculate the checksum
2926 * the way scrub is implemented. Do not handle this
2927 * situation at all because it won't ever happen.
2928 */
Frank Holtonefe120a2013-12-20 11:37:06 -05002929 btrfs_err(fs_info,
2930 "scrub: size assumption nodesize <= BTRFS_STRIPE_LEN (%d <= %d) fails",
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002931 fs_info->chunk_root->nodesize, BTRFS_STRIPE_LEN);
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002932 return -EINVAL;
2933 }
2934
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002935 if (fs_info->chunk_root->sectorsize != PAGE_SIZE) {
Stefan Behrensb5d67f62012-03-27 14:21:27 -04002936 /* not supported for data w/o checksums */
Frank Holtonefe120a2013-12-20 11:37:06 -05002937 btrfs_err(fs_info,
2938 "scrub: size assumption sectorsize != PAGE_SIZE "
2939 "(%d != %lu) fails",
Geert Uytterhoeven27f9f022013-08-20 13:20:09 +02002940 fs_info->chunk_root->sectorsize, PAGE_SIZE);
Arne Jansena2de7332011-03-08 14:14:00 +01002941 return -EINVAL;
2942 }
2943
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002944 if (fs_info->chunk_root->nodesize >
2945 PAGE_SIZE * SCRUB_MAX_PAGES_PER_BLOCK ||
2946 fs_info->chunk_root->sectorsize >
2947 PAGE_SIZE * SCRUB_MAX_PAGES_PER_BLOCK) {
2948 /*
2949 * would exhaust the array bounds of pagev member in
2950 * struct scrub_block
2951 */
Frank Holtonefe120a2013-12-20 11:37:06 -05002952 btrfs_err(fs_info, "scrub: size assumption nodesize and sectorsize "
2953 "<= SCRUB_MAX_PAGES_PER_BLOCK (%d <= %d && %d <= %d) fails",
Stefan Behrens7a9e9982012-11-02 14:58:04 +01002954 fs_info->chunk_root->nodesize,
2955 SCRUB_MAX_PAGES_PER_BLOCK,
2956 fs_info->chunk_root->sectorsize,
2957 SCRUB_MAX_PAGES_PER_BLOCK);
2958 return -EINVAL;
2959 }
2960
Arne Jansena2de7332011-03-08 14:14:00 +01002961
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002962 mutex_lock(&fs_info->fs_devices->device_list_mutex);
2963 dev = btrfs_find_device(fs_info, devid, NULL, NULL);
Stefan Behrens63a212a2012-11-05 18:29:28 +01002964 if (!dev || (dev->missing && !is_dev_replace)) {
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002965 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
Arne Jansena2de7332011-03-08 14:14:00 +01002966 return -ENODEV;
2967 }
Arne Jansena2de7332011-03-08 14:14:00 +01002968
Miao Xie5d68da32014-07-24 11:37:07 +08002969 if (!is_dev_replace && !readonly && !dev->writeable) {
2970 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
2971 rcu_read_lock();
2972 name = rcu_dereference(dev->name);
2973 btrfs_err(fs_info, "scrub: device %s is not writable",
2974 name->str);
2975 rcu_read_unlock();
2976 return -EROFS;
2977 }
2978
Wang Shilong3b7a0162013-10-12 02:11:12 +08002979 mutex_lock(&fs_info->scrub_lock);
Stefan Behrens63a212a2012-11-05 18:29:28 +01002980 if (!dev->in_fs_metadata || dev->is_tgtdev_for_dev_replace) {
Arne Jansena2de7332011-03-08 14:14:00 +01002981 mutex_unlock(&fs_info->scrub_lock);
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002982 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002983 return -EIO;
Arne Jansena2de7332011-03-08 14:14:00 +01002984 }
2985
Stefan Behrens8dabb742012-11-06 13:15:27 +01002986 btrfs_dev_replace_lock(&fs_info->dev_replace);
2987 if (dev->scrub_device ||
2988 (!is_dev_replace &&
2989 btrfs_dev_replace_is_ongoing(&fs_info->dev_replace))) {
2990 btrfs_dev_replace_unlock(&fs_info->dev_replace);
Arne Jansena2de7332011-03-08 14:14:00 +01002991 mutex_unlock(&fs_info->scrub_lock);
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01002992 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
Arne Jansena2de7332011-03-08 14:14:00 +01002993 return -EINPROGRESS;
2994 }
Stefan Behrens8dabb742012-11-06 13:15:27 +01002995 btrfs_dev_replace_unlock(&fs_info->dev_replace);
Wang Shilong3b7a0162013-10-12 02:11:12 +08002996
2997 ret = scrub_workers_get(fs_info, is_dev_replace);
2998 if (ret) {
2999 mutex_unlock(&fs_info->scrub_lock);
3000 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
3001 return ret;
3002 }
3003
Stefan Behrens63a212a2012-11-05 18:29:28 +01003004 sctx = scrub_setup_ctx(dev, is_dev_replace);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003005 if (IS_ERR(sctx)) {
Arne Jansena2de7332011-03-08 14:14:00 +01003006 mutex_unlock(&fs_info->scrub_lock);
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01003007 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
3008 scrub_workers_put(fs_info);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003009 return PTR_ERR(sctx);
Arne Jansena2de7332011-03-08 14:14:00 +01003010 }
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003011 sctx->readonly = readonly;
3012 dev->scrub_device = sctx;
Wang Shilong3cb09292013-12-04 21:15:19 +08003013 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
Arne Jansena2de7332011-03-08 14:14:00 +01003014
Wang Shilong3cb09292013-12-04 21:15:19 +08003015 /*
3016 * checking @scrub_pause_req here, we can avoid
3017 * race between committing transaction and scrubbing.
3018 */
Wang Shilongcb7ab022013-12-04 21:16:53 +08003019 __scrub_blocked_if_needed(fs_info);
Arne Jansena2de7332011-03-08 14:14:00 +01003020 atomic_inc(&fs_info->scrubs_running);
3021 mutex_unlock(&fs_info->scrub_lock);
Arne Jansena2de7332011-03-08 14:14:00 +01003022
Stefan Behrensff023aa2012-11-06 11:43:11 +01003023 if (!is_dev_replace) {
Wang Shilong9b011ad2013-10-25 19:12:02 +08003024 /*
3025 * by holding device list mutex, we can
3026 * kick off writing super in log tree sync.
3027 */
Wang Shilong3cb09292013-12-04 21:15:19 +08003028 mutex_lock(&fs_info->fs_devices->device_list_mutex);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003029 ret = scrub_supers(sctx, dev);
Wang Shilong3cb09292013-12-04 21:15:19 +08003030 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003031 }
Arne Jansena2de7332011-03-08 14:14:00 +01003032
3033 if (!ret)
Stefan Behrensff023aa2012-11-06 11:43:11 +01003034 ret = scrub_enumerate_chunks(sctx, dev, start, end,
3035 is_dev_replace);
Arne Jansena2de7332011-03-08 14:14:00 +01003036
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01003037 wait_event(sctx->list_wait, atomic_read(&sctx->bios_in_flight) == 0);
Arne Jansena2de7332011-03-08 14:14:00 +01003038 atomic_dec(&fs_info->scrubs_running);
3039 wake_up(&fs_info->scrub_pause_wait);
3040
Stefan Behrensb6bfebc2012-11-02 16:44:58 +01003041 wait_event(sctx->list_wait, atomic_read(&sctx->workers_pending) == 0);
Jan Schmidt0ef8e452011-06-13 20:04:15 +02003042
Arne Jansena2de7332011-03-08 14:14:00 +01003043 if (progress)
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003044 memcpy(progress, &sctx->stat, sizeof(*progress));
Arne Jansena2de7332011-03-08 14:14:00 +01003045
3046 mutex_lock(&fs_info->scrub_lock);
3047 dev->scrub_device = NULL;
Wang Shilong3b7a0162013-10-12 02:11:12 +08003048 scrub_workers_put(fs_info);
Arne Jansena2de7332011-03-08 14:14:00 +01003049 mutex_unlock(&fs_info->scrub_lock);
3050
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003051 scrub_free_ctx(sctx);
Arne Jansena2de7332011-03-08 14:14:00 +01003052
3053 return ret;
3054}
3055
Jeff Mahoney143bede2012-03-01 14:56:26 +01003056void btrfs_scrub_pause(struct btrfs_root *root)
Arne Jansena2de7332011-03-08 14:14:00 +01003057{
3058 struct btrfs_fs_info *fs_info = root->fs_info;
3059
3060 mutex_lock(&fs_info->scrub_lock);
3061 atomic_inc(&fs_info->scrub_pause_req);
3062 while (atomic_read(&fs_info->scrubs_paused) !=
3063 atomic_read(&fs_info->scrubs_running)) {
3064 mutex_unlock(&fs_info->scrub_lock);
3065 wait_event(fs_info->scrub_pause_wait,
3066 atomic_read(&fs_info->scrubs_paused) ==
3067 atomic_read(&fs_info->scrubs_running));
3068 mutex_lock(&fs_info->scrub_lock);
3069 }
3070 mutex_unlock(&fs_info->scrub_lock);
Arne Jansena2de7332011-03-08 14:14:00 +01003071}
3072
Jeff Mahoney143bede2012-03-01 14:56:26 +01003073void btrfs_scrub_continue(struct btrfs_root *root)
Arne Jansena2de7332011-03-08 14:14:00 +01003074{
3075 struct btrfs_fs_info *fs_info = root->fs_info;
3076
3077 atomic_dec(&fs_info->scrub_pause_req);
3078 wake_up(&fs_info->scrub_pause_wait);
Arne Jansena2de7332011-03-08 14:14:00 +01003079}
3080
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01003081int btrfs_scrub_cancel(struct btrfs_fs_info *fs_info)
Arne Jansena2de7332011-03-08 14:14:00 +01003082{
Arne Jansena2de7332011-03-08 14:14:00 +01003083 mutex_lock(&fs_info->scrub_lock);
3084 if (!atomic_read(&fs_info->scrubs_running)) {
3085 mutex_unlock(&fs_info->scrub_lock);
3086 return -ENOTCONN;
3087 }
3088
3089 atomic_inc(&fs_info->scrub_cancel_req);
3090 while (atomic_read(&fs_info->scrubs_running)) {
3091 mutex_unlock(&fs_info->scrub_lock);
3092 wait_event(fs_info->scrub_pause_wait,
3093 atomic_read(&fs_info->scrubs_running) == 0);
3094 mutex_lock(&fs_info->scrub_lock);
3095 }
3096 atomic_dec(&fs_info->scrub_cancel_req);
3097 mutex_unlock(&fs_info->scrub_lock);
3098
3099 return 0;
3100}
3101
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01003102int btrfs_scrub_cancel_dev(struct btrfs_fs_info *fs_info,
3103 struct btrfs_device *dev)
Jeff Mahoney49b25e02012-03-01 17:24:58 +01003104{
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003105 struct scrub_ctx *sctx;
Arne Jansena2de7332011-03-08 14:14:00 +01003106
3107 mutex_lock(&fs_info->scrub_lock);
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003108 sctx = dev->scrub_device;
3109 if (!sctx) {
Arne Jansena2de7332011-03-08 14:14:00 +01003110 mutex_unlock(&fs_info->scrub_lock);
3111 return -ENOTCONN;
3112 }
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003113 atomic_inc(&sctx->cancel_req);
Arne Jansena2de7332011-03-08 14:14:00 +01003114 while (dev->scrub_device) {
3115 mutex_unlock(&fs_info->scrub_lock);
3116 wait_event(fs_info->scrub_pause_wait,
3117 dev->scrub_device == NULL);
3118 mutex_lock(&fs_info->scrub_lock);
3119 }
3120 mutex_unlock(&fs_info->scrub_lock);
3121
3122 return 0;
3123}
Stefan Behrens1623ede2012-03-27 14:21:26 -04003124
Arne Jansena2de7332011-03-08 14:14:00 +01003125int btrfs_scrub_progress(struct btrfs_root *root, u64 devid,
3126 struct btrfs_scrub_progress *progress)
3127{
3128 struct btrfs_device *dev;
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003129 struct scrub_ctx *sctx = NULL;
Arne Jansena2de7332011-03-08 14:14:00 +01003130
3131 mutex_lock(&root->fs_info->fs_devices->device_list_mutex);
Stefan Behrensaa1b8cd2012-11-05 17:03:39 +01003132 dev = btrfs_find_device(root->fs_info, devid, NULL, NULL);
Arne Jansena2de7332011-03-08 14:14:00 +01003133 if (dev)
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003134 sctx = dev->scrub_device;
3135 if (sctx)
3136 memcpy(progress, &sctx->stat, sizeof(*progress));
Arne Jansena2de7332011-03-08 14:14:00 +01003137 mutex_unlock(&root->fs_info->fs_devices->device_list_mutex);
3138
Stefan Behrensd9d181c2012-11-02 09:58:09 +01003139 return dev ? (sctx ? 0 : -ENOTCONN) : -ENODEV;
Arne Jansena2de7332011-03-08 14:14:00 +01003140}
Stefan Behrensff023aa2012-11-06 11:43:11 +01003141
3142static void scrub_remap_extent(struct btrfs_fs_info *fs_info,
3143 u64 extent_logical, u64 extent_len,
3144 u64 *extent_physical,
3145 struct btrfs_device **extent_dev,
3146 int *extent_mirror_num)
3147{
3148 u64 mapped_length;
3149 struct btrfs_bio *bbio = NULL;
3150 int ret;
3151
3152 mapped_length = extent_len;
3153 ret = btrfs_map_block(fs_info, READ, extent_logical,
3154 &mapped_length, &bbio, 0);
3155 if (ret || !bbio || mapped_length < extent_len ||
3156 !bbio->stripes[0].dev->bdev) {
3157 kfree(bbio);
3158 return;
3159 }
3160
3161 *extent_physical = bbio->stripes[0].physical;
3162 *extent_mirror_num = bbio->mirror_num;
3163 *extent_dev = bbio->stripes[0].dev;
3164 kfree(bbio);
3165}
3166
3167static int scrub_setup_wr_ctx(struct scrub_ctx *sctx,
3168 struct scrub_wr_ctx *wr_ctx,
3169 struct btrfs_fs_info *fs_info,
3170 struct btrfs_device *dev,
3171 int is_dev_replace)
3172{
3173 WARN_ON(wr_ctx->wr_curr_bio != NULL);
3174
3175 mutex_init(&wr_ctx->wr_lock);
3176 wr_ctx->wr_curr_bio = NULL;
3177 if (!is_dev_replace)
3178 return 0;
3179
3180 WARN_ON(!dev->bdev);
3181 wr_ctx->pages_per_wr_bio = min_t(int, SCRUB_PAGES_PER_WR_BIO,
3182 bio_get_nr_vecs(dev->bdev));
3183 wr_ctx->tgtdev = dev;
3184 atomic_set(&wr_ctx->flush_all_writes, 0);
3185 return 0;
3186}
3187
3188static void scrub_free_wr_ctx(struct scrub_wr_ctx *wr_ctx)
3189{
3190 mutex_lock(&wr_ctx->wr_lock);
3191 kfree(wr_ctx->wr_curr_bio);
3192 wr_ctx->wr_curr_bio = NULL;
3193 mutex_unlock(&wr_ctx->wr_lock);
3194}
3195
3196static int copy_nocow_pages(struct scrub_ctx *sctx, u64 logical, u64 len,
3197 int mirror_num, u64 physical_for_dev_replace)
3198{
3199 struct scrub_copy_nocow_ctx *nocow_ctx;
3200 struct btrfs_fs_info *fs_info = sctx->dev_root->fs_info;
3201
3202 nocow_ctx = kzalloc(sizeof(*nocow_ctx), GFP_NOFS);
3203 if (!nocow_ctx) {
3204 spin_lock(&sctx->stat_lock);
3205 sctx->stat.malloc_errors++;
3206 spin_unlock(&sctx->stat_lock);
3207 return -ENOMEM;
3208 }
3209
3210 scrub_pending_trans_workers_inc(sctx);
3211
3212 nocow_ctx->sctx = sctx;
3213 nocow_ctx->logical = logical;
3214 nocow_ctx->len = len;
3215 nocow_ctx->mirror_num = mirror_num;
3216 nocow_ctx->physical_for_dev_replace = physical_for_dev_replace;
Liu Bo9e0af232014-08-15 23:36:53 +08003217 btrfs_init_work(&nocow_ctx->work, btrfs_scrubnc_helper,
3218 copy_nocow_pages_worker, NULL, NULL);
Josef Bacik652f25a2013-09-12 16:58:28 -04003219 INIT_LIST_HEAD(&nocow_ctx->inodes);
Qu Wenruo0339ef22014-02-28 10:46:17 +08003220 btrfs_queue_work(fs_info->scrub_nocow_workers,
3221 &nocow_ctx->work);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003222
3223 return 0;
3224}
3225
Josef Bacik652f25a2013-09-12 16:58:28 -04003226static int record_inode_for_nocow(u64 inum, u64 offset, u64 root, void *ctx)
3227{
3228 struct scrub_copy_nocow_ctx *nocow_ctx = ctx;
3229 struct scrub_nocow_inode *nocow_inode;
3230
3231 nocow_inode = kzalloc(sizeof(*nocow_inode), GFP_NOFS);
3232 if (!nocow_inode)
3233 return -ENOMEM;
3234 nocow_inode->inum = inum;
3235 nocow_inode->offset = offset;
3236 nocow_inode->root = root;
3237 list_add_tail(&nocow_inode->list, &nocow_ctx->inodes);
3238 return 0;
3239}
3240
3241#define COPY_COMPLETE 1
3242
Stefan Behrensff023aa2012-11-06 11:43:11 +01003243static void copy_nocow_pages_worker(struct btrfs_work *work)
3244{
3245 struct scrub_copy_nocow_ctx *nocow_ctx =
3246 container_of(work, struct scrub_copy_nocow_ctx, work);
3247 struct scrub_ctx *sctx = nocow_ctx->sctx;
3248 u64 logical = nocow_ctx->logical;
3249 u64 len = nocow_ctx->len;
3250 int mirror_num = nocow_ctx->mirror_num;
3251 u64 physical_for_dev_replace = nocow_ctx->physical_for_dev_replace;
3252 int ret;
3253 struct btrfs_trans_handle *trans = NULL;
3254 struct btrfs_fs_info *fs_info;
3255 struct btrfs_path *path;
3256 struct btrfs_root *root;
3257 int not_written = 0;
3258
3259 fs_info = sctx->dev_root->fs_info;
3260 root = fs_info->extent_root;
3261
3262 path = btrfs_alloc_path();
3263 if (!path) {
3264 spin_lock(&sctx->stat_lock);
3265 sctx->stat.malloc_errors++;
3266 spin_unlock(&sctx->stat_lock);
3267 not_written = 1;
3268 goto out;
3269 }
3270
3271 trans = btrfs_join_transaction(root);
3272 if (IS_ERR(trans)) {
3273 not_written = 1;
3274 goto out;
3275 }
3276
3277 ret = iterate_inodes_from_logical(logical, fs_info, path,
Josef Bacik652f25a2013-09-12 16:58:28 -04003278 record_inode_for_nocow, nocow_ctx);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003279 if (ret != 0 && ret != -ENOENT) {
Frank Holtonefe120a2013-12-20 11:37:06 -05003280 btrfs_warn(fs_info, "iterate_inodes_from_logical() failed: log %llu, "
3281 "phys %llu, len %llu, mir %u, ret %d",
Geert Uytterhoeven118a0a22013-08-20 13:20:10 +02003282 logical, physical_for_dev_replace, len, mirror_num,
3283 ret);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003284 not_written = 1;
3285 goto out;
3286 }
3287
Josef Bacik652f25a2013-09-12 16:58:28 -04003288 btrfs_end_transaction(trans, root);
3289 trans = NULL;
3290 while (!list_empty(&nocow_ctx->inodes)) {
3291 struct scrub_nocow_inode *entry;
3292 entry = list_first_entry(&nocow_ctx->inodes,
3293 struct scrub_nocow_inode,
3294 list);
3295 list_del_init(&entry->list);
3296 ret = copy_nocow_pages_for_inode(entry->inum, entry->offset,
3297 entry->root, nocow_ctx);
3298 kfree(entry);
3299 if (ret == COPY_COMPLETE) {
3300 ret = 0;
3301 break;
3302 } else if (ret) {
3303 break;
3304 }
3305 }
Stefan Behrensff023aa2012-11-06 11:43:11 +01003306out:
Josef Bacik652f25a2013-09-12 16:58:28 -04003307 while (!list_empty(&nocow_ctx->inodes)) {
3308 struct scrub_nocow_inode *entry;
3309 entry = list_first_entry(&nocow_ctx->inodes,
3310 struct scrub_nocow_inode,
3311 list);
3312 list_del_init(&entry->list);
3313 kfree(entry);
3314 }
Stefan Behrensff023aa2012-11-06 11:43:11 +01003315 if (trans && !IS_ERR(trans))
3316 btrfs_end_transaction(trans, root);
3317 if (not_written)
3318 btrfs_dev_replace_stats_inc(&fs_info->dev_replace.
3319 num_uncorrectable_read_errors);
3320
3321 btrfs_free_path(path);
3322 kfree(nocow_ctx);
3323
3324 scrub_pending_trans_workers_dec(sctx);
3325}
3326
Josef Bacik652f25a2013-09-12 16:58:28 -04003327static int copy_nocow_pages_for_inode(u64 inum, u64 offset, u64 root,
3328 struct scrub_copy_nocow_ctx *nocow_ctx)
Stefan Behrensff023aa2012-11-06 11:43:11 +01003329{
Miao Xie826aa0a2013-06-27 18:50:59 +08003330 struct btrfs_fs_info *fs_info = nocow_ctx->sctx->dev_root->fs_info;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003331 struct btrfs_key key;
Miao Xie826aa0a2013-06-27 18:50:59 +08003332 struct inode *inode;
3333 struct page *page;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003334 struct btrfs_root *local_root;
Josef Bacik652f25a2013-09-12 16:58:28 -04003335 struct btrfs_ordered_extent *ordered;
3336 struct extent_map *em;
3337 struct extent_state *cached_state = NULL;
3338 struct extent_io_tree *io_tree;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003339 u64 physical_for_dev_replace;
Josef Bacik652f25a2013-09-12 16:58:28 -04003340 u64 len = nocow_ctx->len;
3341 u64 lockstart = offset, lockend = offset + len - 1;
Miao Xie826aa0a2013-06-27 18:50:59 +08003342 unsigned long index;
Liu Bo6f1c3602013-01-29 03:22:10 +00003343 int srcu_index;
Josef Bacik652f25a2013-09-12 16:58:28 -04003344 int ret = 0;
3345 int err = 0;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003346
3347 key.objectid = root;
3348 key.type = BTRFS_ROOT_ITEM_KEY;
3349 key.offset = (u64)-1;
Liu Bo6f1c3602013-01-29 03:22:10 +00003350
3351 srcu_index = srcu_read_lock(&fs_info->subvol_srcu);
3352
Stefan Behrensff023aa2012-11-06 11:43:11 +01003353 local_root = btrfs_read_fs_root_no_name(fs_info, &key);
Liu Bo6f1c3602013-01-29 03:22:10 +00003354 if (IS_ERR(local_root)) {
3355 srcu_read_unlock(&fs_info->subvol_srcu, srcu_index);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003356 return PTR_ERR(local_root);
Liu Bo6f1c3602013-01-29 03:22:10 +00003357 }
Stefan Behrensff023aa2012-11-06 11:43:11 +01003358
3359 key.type = BTRFS_INODE_ITEM_KEY;
3360 key.objectid = inum;
3361 key.offset = 0;
3362 inode = btrfs_iget(fs_info->sb, &key, local_root, NULL);
Liu Bo6f1c3602013-01-29 03:22:10 +00003363 srcu_read_unlock(&fs_info->subvol_srcu, srcu_index);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003364 if (IS_ERR(inode))
3365 return PTR_ERR(inode);
3366
Miao Xieedd14002013-06-27 18:51:00 +08003367 /* Avoid truncate/dio/punch hole.. */
3368 mutex_lock(&inode->i_mutex);
3369 inode_dio_wait(inode);
3370
Stefan Behrensff023aa2012-11-06 11:43:11 +01003371 physical_for_dev_replace = nocow_ctx->physical_for_dev_replace;
Josef Bacik652f25a2013-09-12 16:58:28 -04003372 io_tree = &BTRFS_I(inode)->io_tree;
3373
3374 lock_extent_bits(io_tree, lockstart, lockend, 0, &cached_state);
3375 ordered = btrfs_lookup_ordered_range(inode, lockstart, len);
3376 if (ordered) {
3377 btrfs_put_ordered_extent(ordered);
3378 goto out_unlock;
3379 }
3380
3381 em = btrfs_get_extent(inode, NULL, 0, lockstart, len, 0);
3382 if (IS_ERR(em)) {
3383 ret = PTR_ERR(em);
3384 goto out_unlock;
3385 }
3386
3387 /*
3388 * This extent does not actually cover the logical extent anymore,
3389 * move on to the next inode.
3390 */
3391 if (em->block_start > nocow_ctx->logical ||
3392 em->block_start + em->block_len < nocow_ctx->logical + len) {
3393 free_extent_map(em);
3394 goto out_unlock;
3395 }
3396 free_extent_map(em);
3397
Stefan Behrensff023aa2012-11-06 11:43:11 +01003398 while (len >= PAGE_CACHE_SIZE) {
Stefan Behrensff023aa2012-11-06 11:43:11 +01003399 index = offset >> PAGE_CACHE_SHIFT;
Miao Xieedd14002013-06-27 18:51:00 +08003400again:
Stefan Behrensff023aa2012-11-06 11:43:11 +01003401 page = find_or_create_page(inode->i_mapping, index, GFP_NOFS);
3402 if (!page) {
Frank Holtonefe120a2013-12-20 11:37:06 -05003403 btrfs_err(fs_info, "find_or_create_page() failed");
Stefan Behrensff023aa2012-11-06 11:43:11 +01003404 ret = -ENOMEM;
Miao Xie826aa0a2013-06-27 18:50:59 +08003405 goto out;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003406 }
3407
3408 if (PageUptodate(page)) {
3409 if (PageDirty(page))
3410 goto next_page;
3411 } else {
3412 ClearPageError(page);
Josef Bacik652f25a2013-09-12 16:58:28 -04003413 err = extent_read_full_page_nolock(io_tree, page,
3414 btrfs_get_extent,
3415 nocow_ctx->mirror_num);
Miao Xie826aa0a2013-06-27 18:50:59 +08003416 if (err) {
3417 ret = err;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003418 goto next_page;
3419 }
Miao Xieedd14002013-06-27 18:51:00 +08003420
Miao Xie26b258912013-06-27 18:50:58 +08003421 lock_page(page);
Miao Xieedd14002013-06-27 18:51:00 +08003422 /*
3423 * If the page has been remove from the page cache,
3424 * the data on it is meaningless, because it may be
3425 * old one, the new data may be written into the new
3426 * page in the page cache.
3427 */
3428 if (page->mapping != inode->i_mapping) {
Josef Bacik652f25a2013-09-12 16:58:28 -04003429 unlock_page(page);
Miao Xieedd14002013-06-27 18:51:00 +08003430 page_cache_release(page);
3431 goto again;
3432 }
Stefan Behrensff023aa2012-11-06 11:43:11 +01003433 if (!PageUptodate(page)) {
3434 ret = -EIO;
3435 goto next_page;
3436 }
3437 }
Miao Xie826aa0a2013-06-27 18:50:59 +08003438 err = write_page_nocow(nocow_ctx->sctx,
3439 physical_for_dev_replace, page);
3440 if (err)
3441 ret = err;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003442next_page:
Miao Xie826aa0a2013-06-27 18:50:59 +08003443 unlock_page(page);
3444 page_cache_release(page);
3445
3446 if (ret)
3447 break;
3448
Stefan Behrensff023aa2012-11-06 11:43:11 +01003449 offset += PAGE_CACHE_SIZE;
3450 physical_for_dev_replace += PAGE_CACHE_SIZE;
3451 len -= PAGE_CACHE_SIZE;
3452 }
Josef Bacik652f25a2013-09-12 16:58:28 -04003453 ret = COPY_COMPLETE;
3454out_unlock:
3455 unlock_extent_cached(io_tree, lockstart, lockend, &cached_state,
3456 GFP_NOFS);
Miao Xie826aa0a2013-06-27 18:50:59 +08003457out:
Miao Xieedd14002013-06-27 18:51:00 +08003458 mutex_unlock(&inode->i_mutex);
Miao Xie826aa0a2013-06-27 18:50:59 +08003459 iput(inode);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003460 return ret;
3461}
3462
3463static int write_page_nocow(struct scrub_ctx *sctx,
3464 u64 physical_for_dev_replace, struct page *page)
3465{
3466 struct bio *bio;
3467 struct btrfs_device *dev;
3468 int ret;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003469
3470 dev = sctx->wr_ctx.tgtdev;
3471 if (!dev)
3472 return -EIO;
3473 if (!dev->bdev) {
3474 printk_ratelimited(KERN_WARNING
Frank Holtonefe120a2013-12-20 11:37:06 -05003475 "BTRFS: scrub write_page_nocow(bdev == NULL) is unexpected!\n");
Stefan Behrensff023aa2012-11-06 11:43:11 +01003476 return -EIO;
3477 }
Chris Mason9be33952013-05-17 18:30:14 -04003478 bio = btrfs_io_bio_alloc(GFP_NOFS, 1);
Stefan Behrensff023aa2012-11-06 11:43:11 +01003479 if (!bio) {
3480 spin_lock(&sctx->stat_lock);
3481 sctx->stat.malloc_errors++;
3482 spin_unlock(&sctx->stat_lock);
3483 return -ENOMEM;
3484 }
Kent Overstreet4f024f32013-10-11 15:44:27 -07003485 bio->bi_iter.bi_size = 0;
3486 bio->bi_iter.bi_sector = physical_for_dev_replace >> 9;
Stefan Behrensff023aa2012-11-06 11:43:11 +01003487 bio->bi_bdev = dev->bdev;
3488 ret = bio_add_page(bio, page, PAGE_CACHE_SIZE, 0);
3489 if (ret != PAGE_CACHE_SIZE) {
3490leave_with_eio:
3491 bio_put(bio);
3492 btrfs_dev_stat_inc_and_print(dev, BTRFS_DEV_STAT_WRITE_ERRS);
3493 return -EIO;
3494 }
Stefan Behrensff023aa2012-11-06 11:43:11 +01003495
Kent Overstreet33879d42013-11-23 22:33:32 -08003496 if (btrfsic_submit_bio_wait(WRITE_SYNC, bio))
Stefan Behrensff023aa2012-11-06 11:43:11 +01003497 goto leave_with_eio;
3498
3499 bio_put(bio);
3500 return 0;
3501}