blob: 074b9c8e4cf0840dd0d64014776dc297c2d82da6 [file] [log] [blame]
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001/*
2 * Copyright (C) 2012 Red Hat. All rights reserved.
3 *
4 * This file is released under the GPL.
5 */
6
7#include "dm.h"
8#include "dm-bio-prison.h"
Darrick J. Wongb844fe62013-04-05 15:36:32 +01009#include "dm-bio-record.h"
Joe Thornberc6b4fcb2013-03-01 22:45:51 +000010#include "dm-cache-metadata.h"
11
12#include <linux/dm-io.h>
13#include <linux/dm-kcopyd.h>
14#include <linux/init.h>
15#include <linux/mempool.h>
16#include <linux/module.h>
17#include <linux/slab.h>
18#include <linux/vmalloc.h>
19
20#define DM_MSG_PREFIX "cache"
21
22DECLARE_DM_KCOPYD_THROTTLE_WITH_MODULE_PARM(cache_copy_throttle,
23 "A percentage of time allocated for copying to and/or from cache");
24
25/*----------------------------------------------------------------*/
26
27/*
28 * Glossary:
29 *
30 * oblock: index of an origin block
31 * cblock: index of a cache block
32 * promotion: movement of a block from origin to cache
33 * demotion: movement of a block from cache to origin
34 * migration: movement of a block between the origin and cache device,
35 * either direction
36 */
37
38/*----------------------------------------------------------------*/
39
40static size_t bitset_size_in_bytes(unsigned nr_entries)
41{
42 return sizeof(unsigned long) * dm_div_up(nr_entries, BITS_PER_LONG);
43}
44
45static unsigned long *alloc_bitset(unsigned nr_entries)
46{
47 size_t s = bitset_size_in_bytes(nr_entries);
48 return vzalloc(s);
49}
50
51static void clear_bitset(void *bitset, unsigned nr_entries)
52{
53 size_t s = bitset_size_in_bytes(nr_entries);
54 memset(bitset, 0, s);
55}
56
57static void free_bitset(unsigned long *bits)
58{
59 vfree(bits);
60}
61
62/*----------------------------------------------------------------*/
63
Joe Thornberc9d28d52013-10-31 13:55:48 -040064/*
65 * There are a couple of places where we let a bio run, but want to do some
66 * work before calling its endio function. We do this by temporarily
67 * changing the endio fn.
68 */
69struct dm_hook_info {
70 bio_end_io_t *bi_end_io;
71 void *bi_private;
72};
73
74static void dm_hook_bio(struct dm_hook_info *h, struct bio *bio,
75 bio_end_io_t *bi_end_io, void *bi_private)
76{
77 h->bi_end_io = bio->bi_end_io;
78 h->bi_private = bio->bi_private;
79
80 bio->bi_end_io = bi_end_io;
81 bio->bi_private = bi_private;
82}
83
84static void dm_unhook_bio(struct dm_hook_info *h, struct bio *bio)
85{
86 bio->bi_end_io = h->bi_end_io;
87 bio->bi_private = h->bi_private;
Mike Snitzer8d307262013-12-03 19:16:04 -070088
89 /*
90 * Must bump bi_remaining to allow bio to complete with
91 * restored bi_end_io.
92 */
93 atomic_inc(&bio->bi_remaining);
Joe Thornberc9d28d52013-10-31 13:55:48 -040094}
95
96/*----------------------------------------------------------------*/
97
Joe Thornberc6b4fcb2013-03-01 22:45:51 +000098#define PRISON_CELLS 1024
99#define MIGRATION_POOL_SIZE 128
100#define COMMIT_PERIOD HZ
101#define MIGRATION_COUNT_WINDOW 10
102
103/*
Mike Snitzer05473042013-08-16 10:54:19 -0400104 * The block size of the device holding cache data must be
105 * between 32KB and 1GB.
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000106 */
107#define DATA_DEV_BLOCK_SIZE_MIN_SECTORS (32 * 1024 >> SECTOR_SHIFT)
Mike Snitzer05473042013-08-16 10:54:19 -0400108#define DATA_DEV_BLOCK_SIZE_MAX_SECTORS (1024 * 1024 * 1024 >> SECTOR_SHIFT)
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000109
110/*
111 * FIXME: the cache is read/write for the time being.
112 */
Joe Thornber2ee57d52013-10-24 14:10:29 -0400113enum cache_metadata_mode {
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000114 CM_WRITE, /* metadata may be changed */
115 CM_READ_ONLY, /* metadata may not be changed */
116};
117
Joe Thornber2ee57d52013-10-24 14:10:29 -0400118enum cache_io_mode {
119 /*
120 * Data is written to cached blocks only. These blocks are marked
121 * dirty. If you lose the cache device you will lose data.
122 * Potential performance increase for both reads and writes.
123 */
124 CM_IO_WRITEBACK,
125
126 /*
127 * Data is written to both cache and origin. Blocks are never
128 * dirty. Potential performance benfit for reads only.
129 */
130 CM_IO_WRITETHROUGH,
131
132 /*
133 * A degraded mode useful for various cache coherency situations
134 * (eg, rolling back snapshots). Reads and writes always go to the
135 * origin. If a write goes to a cached oblock, then the cache
136 * block is invalidated.
137 */
138 CM_IO_PASSTHROUGH
139};
140
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000141struct cache_features {
Joe Thornber2ee57d52013-10-24 14:10:29 -0400142 enum cache_metadata_mode mode;
143 enum cache_io_mode io_mode;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000144};
145
146struct cache_stats {
147 atomic_t read_hit;
148 atomic_t read_miss;
149 atomic_t write_hit;
150 atomic_t write_miss;
151 atomic_t demotion;
152 atomic_t promotion;
153 atomic_t copies_avoided;
154 atomic_t cache_cell_clash;
155 atomic_t commit_count;
156 atomic_t discard_count;
157};
158
Joe Thornber65790ff2013-11-08 16:39:50 +0000159/*
160 * Defines a range of cblocks, begin to (end - 1) are in the range. end is
161 * the one-past-the-end value.
162 */
163struct cblock_range {
164 dm_cblock_t begin;
165 dm_cblock_t end;
166};
167
168struct invalidation_request {
169 struct list_head list;
170 struct cblock_range *cblocks;
171
172 atomic_t complete;
173 int err;
174
175 wait_queue_head_t result_wait;
176};
177
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000178struct cache {
179 struct dm_target *ti;
180 struct dm_target_callbacks callbacks;
181
Mike Snitzerc9ec5d72013-08-16 10:54:21 -0400182 struct dm_cache_metadata *cmd;
183
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000184 /*
185 * Metadata is written to this device.
186 */
187 struct dm_dev *metadata_dev;
188
189 /*
190 * The slower of the two data devices. Typically a spindle.
191 */
192 struct dm_dev *origin_dev;
193
194 /*
195 * The faster of the two data devices. Typically an SSD.
196 */
197 struct dm_dev *cache_dev;
198
199 /*
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000200 * Size of the origin device in _complete_ blocks and native sectors.
201 */
202 dm_oblock_t origin_blocks;
203 sector_t origin_sectors;
204
205 /*
206 * Size of the cache device in blocks.
207 */
208 dm_cblock_t cache_size;
209
210 /*
211 * Fields for converting from sectors to blocks.
212 */
213 uint32_t sectors_per_block;
214 int sectors_per_block_shift;
215
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000216 spinlock_t lock;
217 struct bio_list deferred_bios;
218 struct bio_list deferred_flush_bios;
Joe Thornbere2e74d62013-03-20 17:21:27 +0000219 struct bio_list deferred_writethrough_bios;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000220 struct list_head quiesced_migrations;
221 struct list_head completed_migrations;
222 struct list_head need_commit_migrations;
223 sector_t migration_threshold;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000224 wait_queue_head_t migration_wait;
Mike Snitzerc9ec5d72013-08-16 10:54:21 -0400225 atomic_t nr_migrations;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000226
Joe Thornber66cb1912013-10-30 17:11:58 +0000227 wait_queue_head_t quiescing_wait;
Joe Thornber238f8362013-10-30 17:29:30 +0000228 atomic_t quiescing;
Joe Thornber66cb1912013-10-30 17:11:58 +0000229 atomic_t quiescing_ack;
230
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000231 /*
232 * cache_size entries, dirty if set
233 */
234 dm_cblock_t nr_dirty;
235 unsigned long *dirty_bitset;
236
237 /*
238 * origin_blocks entries, discarded if set.
239 */
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000240 dm_dblock_t discard_nr_blocks;
241 unsigned long *discard_bitset;
Mike Snitzerc9ec5d72013-08-16 10:54:21 -0400242 uint32_t discard_block_size; /* a power of 2 times sectors per block */
243
244 /*
245 * Rather than reconstructing the table line for the status we just
246 * save it and regurgitate.
247 */
248 unsigned nr_ctr_args;
249 const char **ctr_args;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000250
251 struct dm_kcopyd_client *copier;
252 struct workqueue_struct *wq;
253 struct work_struct worker;
254
255 struct delayed_work waker;
256 unsigned long last_commit_jiffies;
257
258 struct dm_bio_prison *prison;
259 struct dm_deferred_set *all_io_ds;
260
261 mempool_t *migration_pool;
262 struct dm_cache_migration *next_migration;
263
264 struct dm_cache_policy *policy;
265 unsigned policy_nr_args;
266
267 bool need_tick_bio:1;
268 bool sized:1;
Joe Thornber65790ff2013-11-08 16:39:50 +0000269 bool invalidate:1;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000270 bool commit_requested:1;
271 bool loaded_mappings:1;
272 bool loaded_discards:1;
273
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000274 /*
Mike Snitzerc9ec5d72013-08-16 10:54:21 -0400275 * Cache features such as write-through.
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000276 */
Mike Snitzerc9ec5d72013-08-16 10:54:21 -0400277 struct cache_features features;
278
279 struct cache_stats stats;
Joe Thornber65790ff2013-11-08 16:39:50 +0000280
281 /*
282 * Invalidation fields.
283 */
284 spinlock_t invalidation_lock;
285 struct list_head invalidation_requests;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000286};
287
288struct per_bio_data {
289 bool tick:1;
290 unsigned req_nr:2;
291 struct dm_deferred_entry *all_io_entry;
Mike Snitzerc6eda5e2014-01-31 14:11:54 -0500292 struct dm_hook_info hook_info;
Joe Thornbere2e74d62013-03-20 17:21:27 +0000293
Mike Snitzer19b00922013-04-05 15:36:34 +0100294 /*
295 * writethrough fields. These MUST remain at the end of this
296 * structure and the 'cache' member must be the first as it
Joe Thornberaeed14202013-05-10 14:37:18 +0100297 * is used to determine the offset of the writethrough fields.
Mike Snitzer19b00922013-04-05 15:36:34 +0100298 */
Joe Thornbere2e74d62013-03-20 17:21:27 +0000299 struct cache *cache;
300 dm_cblock_t cblock;
Darrick J. Wongb844fe62013-04-05 15:36:32 +0100301 struct dm_bio_details bio_details;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000302};
303
304struct dm_cache_migration {
305 struct list_head list;
306 struct cache *cache;
307
308 unsigned long start_jiffies;
309 dm_oblock_t old_oblock;
310 dm_oblock_t new_oblock;
311 dm_cblock_t cblock;
312
313 bool err:1;
314 bool writeback:1;
315 bool demote:1;
316 bool promote:1;
Joe Thornberc9d28d52013-10-31 13:55:48 -0400317 bool requeue_holder:1;
Joe Thornber65790ff2013-11-08 16:39:50 +0000318 bool invalidate:1;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000319
320 struct dm_bio_prison_cell *old_ocell;
321 struct dm_bio_prison_cell *new_ocell;
322};
323
324/*
325 * Processing a bio in the worker thread may require these memory
326 * allocations. We prealloc to avoid deadlocks (the same worker thread
327 * frees them back to the mempool).
328 */
329struct prealloc {
330 struct dm_cache_migration *mg;
331 struct dm_bio_prison_cell *cell1;
332 struct dm_bio_prison_cell *cell2;
333};
334
335static void wake_worker(struct cache *cache)
336{
337 queue_work(cache->wq, &cache->worker);
338}
339
340/*----------------------------------------------------------------*/
341
342static struct dm_bio_prison_cell *alloc_prison_cell(struct cache *cache)
343{
344 /* FIXME: change to use a local slab. */
345 return dm_bio_prison_alloc_cell(cache->prison, GFP_NOWAIT);
346}
347
348static void free_prison_cell(struct cache *cache, struct dm_bio_prison_cell *cell)
349{
350 dm_bio_prison_free_cell(cache->prison, cell);
351}
352
353static int prealloc_data_structs(struct cache *cache, struct prealloc *p)
354{
355 if (!p->mg) {
356 p->mg = mempool_alloc(cache->migration_pool, GFP_NOWAIT);
357 if (!p->mg)
358 return -ENOMEM;
359 }
360
361 if (!p->cell1) {
362 p->cell1 = alloc_prison_cell(cache);
363 if (!p->cell1)
364 return -ENOMEM;
365 }
366
367 if (!p->cell2) {
368 p->cell2 = alloc_prison_cell(cache);
369 if (!p->cell2)
370 return -ENOMEM;
371 }
372
373 return 0;
374}
375
376static void prealloc_free_structs(struct cache *cache, struct prealloc *p)
377{
378 if (p->cell2)
379 free_prison_cell(cache, p->cell2);
380
381 if (p->cell1)
382 free_prison_cell(cache, p->cell1);
383
384 if (p->mg)
385 mempool_free(p->mg, cache->migration_pool);
386}
387
388static struct dm_cache_migration *prealloc_get_migration(struct prealloc *p)
389{
390 struct dm_cache_migration *mg = p->mg;
391
392 BUG_ON(!mg);
393 p->mg = NULL;
394
395 return mg;
396}
397
398/*
399 * You must have a cell within the prealloc struct to return. If not this
400 * function will BUG() rather than returning NULL.
401 */
402static struct dm_bio_prison_cell *prealloc_get_cell(struct prealloc *p)
403{
404 struct dm_bio_prison_cell *r = NULL;
405
406 if (p->cell1) {
407 r = p->cell1;
408 p->cell1 = NULL;
409
410 } else if (p->cell2) {
411 r = p->cell2;
412 p->cell2 = NULL;
413 } else
414 BUG();
415
416 return r;
417}
418
419/*
420 * You can't have more than two cells in a prealloc struct. BUG() will be
421 * called if you try and overfill.
422 */
423static void prealloc_put_cell(struct prealloc *p, struct dm_bio_prison_cell *cell)
424{
425 if (!p->cell2)
426 p->cell2 = cell;
427
428 else if (!p->cell1)
429 p->cell1 = cell;
430
431 else
432 BUG();
433}
434
435/*----------------------------------------------------------------*/
436
437static void build_key(dm_oblock_t oblock, struct dm_cell_key *key)
438{
439 key->virtual = 0;
440 key->dev = 0;
441 key->block = from_oblock(oblock);
442}
443
444/*
445 * The caller hands in a preallocated cell, and a free function for it.
446 * The cell will be freed if there's an error, or if it wasn't used because
447 * a cell with that key already exists.
448 */
449typedef void (*cell_free_fn)(void *context, struct dm_bio_prison_cell *cell);
450
451static int bio_detain(struct cache *cache, dm_oblock_t oblock,
452 struct bio *bio, struct dm_bio_prison_cell *cell_prealloc,
453 cell_free_fn free_fn, void *free_context,
454 struct dm_bio_prison_cell **cell_result)
455{
456 int r;
457 struct dm_cell_key key;
458
459 build_key(oblock, &key);
460 r = dm_bio_detain(cache->prison, &key, bio, cell_prealloc, cell_result);
461 if (r)
462 free_fn(free_context, cell_prealloc);
463
464 return r;
465}
466
467static int get_cell(struct cache *cache,
468 dm_oblock_t oblock,
469 struct prealloc *structs,
470 struct dm_bio_prison_cell **cell_result)
471{
472 int r;
473 struct dm_cell_key key;
474 struct dm_bio_prison_cell *cell_prealloc;
475
476 cell_prealloc = prealloc_get_cell(structs);
477
478 build_key(oblock, &key);
479 r = dm_get_cell(cache->prison, &key, cell_prealloc, cell_result);
480 if (r)
481 prealloc_put_cell(structs, cell_prealloc);
482
483 return r;
484}
485
Joe Thornberaeed14202013-05-10 14:37:18 +0100486/*----------------------------------------------------------------*/
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000487
488static bool is_dirty(struct cache *cache, dm_cblock_t b)
489{
490 return test_bit(from_cblock(b), cache->dirty_bitset);
491}
492
493static void set_dirty(struct cache *cache, dm_oblock_t oblock, dm_cblock_t cblock)
494{
495 if (!test_and_set_bit(from_cblock(cblock), cache->dirty_bitset)) {
496 cache->nr_dirty = to_cblock(from_cblock(cache->nr_dirty) + 1);
497 policy_set_dirty(cache->policy, oblock);
498 }
499}
500
501static void clear_dirty(struct cache *cache, dm_oblock_t oblock, dm_cblock_t cblock)
502{
503 if (test_and_clear_bit(from_cblock(cblock), cache->dirty_bitset)) {
504 policy_clear_dirty(cache->policy, oblock);
505 cache->nr_dirty = to_cblock(from_cblock(cache->nr_dirty) - 1);
506 if (!from_cblock(cache->nr_dirty))
507 dm_table_event(cache->ti->table);
508 }
509}
510
511/*----------------------------------------------------------------*/
Joe Thornberaeed14202013-05-10 14:37:18 +0100512
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000513static bool block_size_is_power_of_two(struct cache *cache)
514{
515 return cache->sectors_per_block_shift >= 0;
516}
517
Mikulas Patocka43aeaa22013-07-10 23:41:17 +0100518/* gcc on ARM generates spurious references to __udivdi3 and __umoddi3 */
519#if defined(CONFIG_ARM) && __GNUC__ == 4 && __GNUC_MINOR__ <= 6
520__always_inline
521#endif
Joe Thornber414dd672013-03-20 17:21:25 +0000522static dm_block_t block_div(dm_block_t b, uint32_t n)
523{
524 do_div(b, n);
525
526 return b;
527}
528
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000529static dm_dblock_t oblock_to_dblock(struct cache *cache, dm_oblock_t oblock)
530{
Joe Thornber414dd672013-03-20 17:21:25 +0000531 uint32_t discard_blocks = cache->discard_block_size;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000532 dm_block_t b = from_oblock(oblock);
533
534 if (!block_size_is_power_of_two(cache))
Joe Thornber414dd672013-03-20 17:21:25 +0000535 discard_blocks = discard_blocks / cache->sectors_per_block;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000536 else
537 discard_blocks >>= cache->sectors_per_block_shift;
538
Joe Thornber414dd672013-03-20 17:21:25 +0000539 b = block_div(b, discard_blocks);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000540
541 return to_dblock(b);
542}
543
544static void set_discard(struct cache *cache, dm_dblock_t b)
545{
546 unsigned long flags;
547
548 atomic_inc(&cache->stats.discard_count);
549
550 spin_lock_irqsave(&cache->lock, flags);
551 set_bit(from_dblock(b), cache->discard_bitset);
552 spin_unlock_irqrestore(&cache->lock, flags);
553}
554
555static void clear_discard(struct cache *cache, dm_dblock_t b)
556{
557 unsigned long flags;
558
559 spin_lock_irqsave(&cache->lock, flags);
560 clear_bit(from_dblock(b), cache->discard_bitset);
561 spin_unlock_irqrestore(&cache->lock, flags);
562}
563
564static bool is_discarded(struct cache *cache, dm_dblock_t b)
565{
566 int r;
567 unsigned long flags;
568
569 spin_lock_irqsave(&cache->lock, flags);
570 r = test_bit(from_dblock(b), cache->discard_bitset);
571 spin_unlock_irqrestore(&cache->lock, flags);
572
573 return r;
574}
575
576static bool is_discarded_oblock(struct cache *cache, dm_oblock_t b)
577{
578 int r;
579 unsigned long flags;
580
581 spin_lock_irqsave(&cache->lock, flags);
582 r = test_bit(from_dblock(oblock_to_dblock(cache, b)),
583 cache->discard_bitset);
584 spin_unlock_irqrestore(&cache->lock, flags);
585
586 return r;
587}
588
589/*----------------------------------------------------------------*/
590
591static void load_stats(struct cache *cache)
592{
593 struct dm_cache_statistics stats;
594
595 dm_cache_metadata_get_stats(cache->cmd, &stats);
596 atomic_set(&cache->stats.read_hit, stats.read_hits);
597 atomic_set(&cache->stats.read_miss, stats.read_misses);
598 atomic_set(&cache->stats.write_hit, stats.write_hits);
599 atomic_set(&cache->stats.write_miss, stats.write_misses);
600}
601
602static void save_stats(struct cache *cache)
603{
604 struct dm_cache_statistics stats;
605
606 stats.read_hits = atomic_read(&cache->stats.read_hit);
607 stats.read_misses = atomic_read(&cache->stats.read_miss);
608 stats.write_hits = atomic_read(&cache->stats.write_hit);
609 stats.write_misses = atomic_read(&cache->stats.write_miss);
610
611 dm_cache_metadata_set_stats(cache->cmd, &stats);
612}
613
614/*----------------------------------------------------------------
615 * Per bio data
616 *--------------------------------------------------------------*/
Mike Snitzer19b00922013-04-05 15:36:34 +0100617
618/*
619 * If using writeback, leave out struct per_bio_data's writethrough fields.
620 */
621#define PB_DATA_SIZE_WB (offsetof(struct per_bio_data, cache))
622#define PB_DATA_SIZE_WT (sizeof(struct per_bio_data))
623
Joe Thornber2ee57d52013-10-24 14:10:29 -0400624static bool writethrough_mode(struct cache_features *f)
625{
626 return f->io_mode == CM_IO_WRITETHROUGH;
627}
628
629static bool writeback_mode(struct cache_features *f)
630{
631 return f->io_mode == CM_IO_WRITEBACK;
632}
633
634static bool passthrough_mode(struct cache_features *f)
635{
636 return f->io_mode == CM_IO_PASSTHROUGH;
637}
638
Mike Snitzer19b00922013-04-05 15:36:34 +0100639static size_t get_per_bio_data_size(struct cache *cache)
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000640{
Joe Thornber2ee57d52013-10-24 14:10:29 -0400641 return writethrough_mode(&cache->features) ? PB_DATA_SIZE_WT : PB_DATA_SIZE_WB;
Mike Snitzer19b00922013-04-05 15:36:34 +0100642}
643
644static struct per_bio_data *get_per_bio_data(struct bio *bio, size_t data_size)
645{
646 struct per_bio_data *pb = dm_per_bio_data(bio, data_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000647 BUG_ON(!pb);
648 return pb;
649}
650
Mike Snitzer19b00922013-04-05 15:36:34 +0100651static struct per_bio_data *init_per_bio_data(struct bio *bio, size_t data_size)
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000652{
Mike Snitzer19b00922013-04-05 15:36:34 +0100653 struct per_bio_data *pb = get_per_bio_data(bio, data_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000654
655 pb->tick = false;
656 pb->req_nr = dm_bio_get_target_bio_nr(bio);
657 pb->all_io_entry = NULL;
658
659 return pb;
660}
661
662/*----------------------------------------------------------------
663 * Remapping
664 *--------------------------------------------------------------*/
665static void remap_to_origin(struct cache *cache, struct bio *bio)
666{
667 bio->bi_bdev = cache->origin_dev->bdev;
668}
669
670static void remap_to_cache(struct cache *cache, struct bio *bio,
671 dm_cblock_t cblock)
672{
Kent Overstreet4f024f32013-10-11 15:44:27 -0700673 sector_t bi_sector = bio->bi_iter.bi_sector;
Heinz Mauelshagene0d849f2014-02-27 22:46:48 +0100674 sector_t block = from_cblock(cblock);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000675
676 bio->bi_bdev = cache->cache_dev->bdev;
677 if (!block_size_is_power_of_two(cache))
Kent Overstreet4f024f32013-10-11 15:44:27 -0700678 bio->bi_iter.bi_sector =
Heinz Mauelshagene0d849f2014-02-27 22:46:48 +0100679 (block * cache->sectors_per_block) +
Kent Overstreet4f024f32013-10-11 15:44:27 -0700680 sector_div(bi_sector, cache->sectors_per_block);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000681 else
Kent Overstreet4f024f32013-10-11 15:44:27 -0700682 bio->bi_iter.bi_sector =
Heinz Mauelshagene0d849f2014-02-27 22:46:48 +0100683 (block << cache->sectors_per_block_shift) |
Kent Overstreet4f024f32013-10-11 15:44:27 -0700684 (bi_sector & (cache->sectors_per_block - 1));
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000685}
686
687static void check_if_tick_bio_needed(struct cache *cache, struct bio *bio)
688{
689 unsigned long flags;
Mike Snitzer19b00922013-04-05 15:36:34 +0100690 size_t pb_data_size = get_per_bio_data_size(cache);
691 struct per_bio_data *pb = get_per_bio_data(bio, pb_data_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000692
693 spin_lock_irqsave(&cache->lock, flags);
694 if (cache->need_tick_bio &&
695 !(bio->bi_rw & (REQ_FUA | REQ_FLUSH | REQ_DISCARD))) {
696 pb->tick = true;
697 cache->need_tick_bio = false;
698 }
699 spin_unlock_irqrestore(&cache->lock, flags);
700}
701
702static void remap_to_origin_clear_discard(struct cache *cache, struct bio *bio,
703 dm_oblock_t oblock)
704{
705 check_if_tick_bio_needed(cache, bio);
706 remap_to_origin(cache, bio);
707 if (bio_data_dir(bio) == WRITE)
708 clear_discard(cache, oblock_to_dblock(cache, oblock));
709}
710
711static void remap_to_cache_dirty(struct cache *cache, struct bio *bio,
712 dm_oblock_t oblock, dm_cblock_t cblock)
713{
Joe Thornberf8e5f012013-10-21 12:51:45 +0100714 check_if_tick_bio_needed(cache, bio);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000715 remap_to_cache(cache, bio, cblock);
716 if (bio_data_dir(bio) == WRITE) {
717 set_dirty(cache, oblock, cblock);
718 clear_discard(cache, oblock_to_dblock(cache, oblock));
719 }
720}
721
722static dm_oblock_t get_bio_block(struct cache *cache, struct bio *bio)
723{
Kent Overstreet4f024f32013-10-11 15:44:27 -0700724 sector_t block_nr = bio->bi_iter.bi_sector;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000725
726 if (!block_size_is_power_of_two(cache))
727 (void) sector_div(block_nr, cache->sectors_per_block);
728 else
729 block_nr >>= cache->sectors_per_block_shift;
730
731 return to_oblock(block_nr);
732}
733
734static int bio_triggers_commit(struct cache *cache, struct bio *bio)
735{
736 return bio->bi_rw & (REQ_FLUSH | REQ_FUA);
737}
738
739static void issue(struct cache *cache, struct bio *bio)
740{
741 unsigned long flags;
742
743 if (!bio_triggers_commit(cache, bio)) {
744 generic_make_request(bio);
745 return;
746 }
747
748 /*
749 * Batch together any bios that trigger commits and then issue a
750 * single commit for them in do_worker().
751 */
752 spin_lock_irqsave(&cache->lock, flags);
753 cache->commit_requested = true;
754 bio_list_add(&cache->deferred_flush_bios, bio);
755 spin_unlock_irqrestore(&cache->lock, flags);
756}
757
Joe Thornbere2e74d62013-03-20 17:21:27 +0000758static void defer_writethrough_bio(struct cache *cache, struct bio *bio)
759{
760 unsigned long flags;
761
762 spin_lock_irqsave(&cache->lock, flags);
763 bio_list_add(&cache->deferred_writethrough_bios, bio);
764 spin_unlock_irqrestore(&cache->lock, flags);
765
766 wake_worker(cache);
767}
768
769static void writethrough_endio(struct bio *bio, int err)
770{
Mike Snitzer19b00922013-04-05 15:36:34 +0100771 struct per_bio_data *pb = get_per_bio_data(bio, PB_DATA_SIZE_WT);
Joe Thornberc9d28d52013-10-31 13:55:48 -0400772
773 dm_unhook_bio(&pb->hook_info, bio);
Joe Thornbere2e74d62013-03-20 17:21:27 +0000774
775 if (err) {
776 bio_endio(bio, err);
777 return;
778 }
779
Darrick J. Wongb844fe62013-04-05 15:36:32 +0100780 dm_bio_restore(&pb->bio_details, bio);
Joe Thornbere2e74d62013-03-20 17:21:27 +0000781 remap_to_cache(pb->cache, bio, pb->cblock);
782
783 /*
784 * We can't issue this bio directly, since we're in interrupt
Joe Thornberaeed14202013-05-10 14:37:18 +0100785 * context. So it gets put on a bio list for processing by the
Joe Thornbere2e74d62013-03-20 17:21:27 +0000786 * worker thread.
787 */
788 defer_writethrough_bio(pb->cache, bio);
789}
790
791/*
792 * When running in writethrough mode we need to send writes to clean blocks
793 * to both the cache and origin devices. In future we'd like to clone the
794 * bio and send them in parallel, but for now we're doing them in
795 * series as this is easier.
796 */
797static void remap_to_origin_then_cache(struct cache *cache, struct bio *bio,
798 dm_oblock_t oblock, dm_cblock_t cblock)
799{
Mike Snitzer19b00922013-04-05 15:36:34 +0100800 struct per_bio_data *pb = get_per_bio_data(bio, PB_DATA_SIZE_WT);
Joe Thornbere2e74d62013-03-20 17:21:27 +0000801
802 pb->cache = cache;
803 pb->cblock = cblock;
Joe Thornberc9d28d52013-10-31 13:55:48 -0400804 dm_hook_bio(&pb->hook_info, bio, writethrough_endio, NULL);
Darrick J. Wongb844fe62013-04-05 15:36:32 +0100805 dm_bio_record(&pb->bio_details, bio);
Joe Thornbere2e74d62013-03-20 17:21:27 +0000806
807 remap_to_origin_clear_discard(pb->cache, bio, oblock);
808}
809
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000810/*----------------------------------------------------------------
811 * Migration processing
812 *
813 * Migration covers moving data from the origin device to the cache, or
814 * vice versa.
815 *--------------------------------------------------------------*/
816static void free_migration(struct dm_cache_migration *mg)
817{
818 mempool_free(mg, mg->cache->migration_pool);
819}
820
821static void inc_nr_migrations(struct cache *cache)
822{
823 atomic_inc(&cache->nr_migrations);
824}
825
826static void dec_nr_migrations(struct cache *cache)
827{
828 atomic_dec(&cache->nr_migrations);
829
830 /*
831 * Wake the worker in case we're suspending the target.
832 */
833 wake_up(&cache->migration_wait);
834}
835
836static void __cell_defer(struct cache *cache, struct dm_bio_prison_cell *cell,
837 bool holder)
838{
839 (holder ? dm_cell_release : dm_cell_release_no_holder)
840 (cache->prison, cell, &cache->deferred_bios);
841 free_prison_cell(cache, cell);
842}
843
844static void cell_defer(struct cache *cache, struct dm_bio_prison_cell *cell,
845 bool holder)
846{
847 unsigned long flags;
848
849 spin_lock_irqsave(&cache->lock, flags);
850 __cell_defer(cache, cell, holder);
851 spin_unlock_irqrestore(&cache->lock, flags);
852
853 wake_worker(cache);
854}
855
856static void cleanup_migration(struct dm_cache_migration *mg)
857{
Joe Thornber66cb1912013-10-30 17:11:58 +0000858 struct cache *cache = mg->cache;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000859 free_migration(mg);
Joe Thornber66cb1912013-10-30 17:11:58 +0000860 dec_nr_migrations(cache);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000861}
862
863static void migration_failure(struct dm_cache_migration *mg)
864{
865 struct cache *cache = mg->cache;
866
867 if (mg->writeback) {
868 DMWARN_LIMIT("writeback failed; couldn't copy block");
869 set_dirty(cache, mg->old_oblock, mg->cblock);
870 cell_defer(cache, mg->old_ocell, false);
871
872 } else if (mg->demote) {
873 DMWARN_LIMIT("demotion failed; couldn't copy block");
874 policy_force_mapping(cache->policy, mg->new_oblock, mg->old_oblock);
875
Heinz Mauelshagen80f659f2013-10-14 17:10:47 +0200876 cell_defer(cache, mg->old_ocell, mg->promote ? false : true);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000877 if (mg->promote)
Heinz Mauelshagen80f659f2013-10-14 17:10:47 +0200878 cell_defer(cache, mg->new_ocell, true);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000879 } else {
880 DMWARN_LIMIT("promotion failed; couldn't copy block");
881 policy_remove_mapping(cache->policy, mg->new_oblock);
Heinz Mauelshagen80f659f2013-10-14 17:10:47 +0200882 cell_defer(cache, mg->new_ocell, true);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000883 }
884
885 cleanup_migration(mg);
886}
887
888static void migration_success_pre_commit(struct dm_cache_migration *mg)
889{
890 unsigned long flags;
891 struct cache *cache = mg->cache;
892
893 if (mg->writeback) {
894 cell_defer(cache, mg->old_ocell, false);
895 clear_dirty(cache, mg->old_oblock, mg->cblock);
896 cleanup_migration(mg);
897 return;
898
899 } else if (mg->demote) {
900 if (dm_cache_remove_mapping(cache->cmd, mg->cblock)) {
901 DMWARN_LIMIT("demotion failed; couldn't update on disk metadata");
902 policy_force_mapping(cache->policy, mg->new_oblock,
903 mg->old_oblock);
904 if (mg->promote)
905 cell_defer(cache, mg->new_ocell, true);
906 cleanup_migration(mg);
907 return;
908 }
909 } else {
910 if (dm_cache_insert_mapping(cache->cmd, mg->cblock, mg->new_oblock)) {
911 DMWARN_LIMIT("promotion failed; couldn't update on disk metadata");
912 policy_remove_mapping(cache->policy, mg->new_oblock);
913 cleanup_migration(mg);
914 return;
915 }
916 }
917
918 spin_lock_irqsave(&cache->lock, flags);
919 list_add_tail(&mg->list, &cache->need_commit_migrations);
920 cache->commit_requested = true;
921 spin_unlock_irqrestore(&cache->lock, flags);
922}
923
924static void migration_success_post_commit(struct dm_cache_migration *mg)
925{
926 unsigned long flags;
927 struct cache *cache = mg->cache;
928
929 if (mg->writeback) {
930 DMWARN("writeback unexpectedly triggered commit");
931 return;
932
933 } else if (mg->demote) {
Heinz Mauelshagen80f659f2013-10-14 17:10:47 +0200934 cell_defer(cache, mg->old_ocell, mg->promote ? false : true);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000935
936 if (mg->promote) {
937 mg->demote = false;
938
939 spin_lock_irqsave(&cache->lock, flags);
940 list_add_tail(&mg->list, &cache->quiesced_migrations);
941 spin_unlock_irqrestore(&cache->lock, flags);
942
Joe Thornber65790ff2013-11-08 16:39:50 +0000943 } else {
944 if (mg->invalidate)
945 policy_remove_mapping(cache->policy, mg->old_oblock);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000946 cleanup_migration(mg);
Joe Thornber65790ff2013-11-08 16:39:50 +0000947 }
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000948
949 } else {
Joe Thornberc9d28d52013-10-31 13:55:48 -0400950 if (mg->requeue_holder)
951 cell_defer(cache, mg->new_ocell, true);
952 else {
953 bio_endio(mg->new_ocell->holder, 0);
954 cell_defer(cache, mg->new_ocell, false);
955 }
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000956 clear_dirty(cache, mg->new_oblock, mg->cblock);
957 cleanup_migration(mg);
958 }
959}
960
961static void copy_complete(int read_err, unsigned long write_err, void *context)
962{
963 unsigned long flags;
964 struct dm_cache_migration *mg = (struct dm_cache_migration *) context;
965 struct cache *cache = mg->cache;
966
967 if (read_err || write_err)
968 mg->err = true;
969
970 spin_lock_irqsave(&cache->lock, flags);
971 list_add_tail(&mg->list, &cache->completed_migrations);
972 spin_unlock_irqrestore(&cache->lock, flags);
973
974 wake_worker(cache);
975}
976
977static void issue_copy_real(struct dm_cache_migration *mg)
978{
979 int r;
980 struct dm_io_region o_region, c_region;
981 struct cache *cache = mg->cache;
Heinz Mauelshagen8b9d9662014-03-12 00:40:05 +0100982 sector_t cblock = from_cblock(mg->cblock);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000983
984 o_region.bdev = cache->origin_dev->bdev;
985 o_region.count = cache->sectors_per_block;
986
987 c_region.bdev = cache->cache_dev->bdev;
Heinz Mauelshagen8b9d9662014-03-12 00:40:05 +0100988 c_region.sector = cblock * cache->sectors_per_block;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +0000989 c_region.count = cache->sectors_per_block;
990
991 if (mg->writeback || mg->demote) {
992 /* demote */
993 o_region.sector = from_oblock(mg->old_oblock) * cache->sectors_per_block;
994 r = dm_kcopyd_copy(cache->copier, &c_region, 1, &o_region, 0, copy_complete, mg);
995 } else {
996 /* promote */
997 o_region.sector = from_oblock(mg->new_oblock) * cache->sectors_per_block;
998 r = dm_kcopyd_copy(cache->copier, &o_region, 1, &c_region, 0, copy_complete, mg);
999 }
1000
Heinz Mauelshagen2c2263c2013-10-14 17:14:45 +02001001 if (r < 0) {
1002 DMERR_LIMIT("issuing migration failed");
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001003 migration_failure(mg);
Heinz Mauelshagen2c2263c2013-10-14 17:14:45 +02001004 }
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001005}
1006
Joe Thornberc9d28d52013-10-31 13:55:48 -04001007static void overwrite_endio(struct bio *bio, int err)
1008{
1009 struct dm_cache_migration *mg = bio->bi_private;
1010 struct cache *cache = mg->cache;
1011 size_t pb_data_size = get_per_bio_data_size(cache);
1012 struct per_bio_data *pb = get_per_bio_data(bio, pb_data_size);
1013 unsigned long flags;
1014
Mike Snitzer80ae49a2014-01-31 14:30:37 -05001015 dm_unhook_bio(&pb->hook_info, bio);
1016
Joe Thornberc9d28d52013-10-31 13:55:48 -04001017 if (err)
1018 mg->err = true;
1019
Mike Snitzer80ae49a2014-01-31 14:30:37 -05001020 mg->requeue_holder = false;
1021
Joe Thornberc9d28d52013-10-31 13:55:48 -04001022 spin_lock_irqsave(&cache->lock, flags);
1023 list_add_tail(&mg->list, &cache->completed_migrations);
Joe Thornberc9d28d52013-10-31 13:55:48 -04001024 spin_unlock_irqrestore(&cache->lock, flags);
1025
1026 wake_worker(cache);
1027}
1028
1029static void issue_overwrite(struct dm_cache_migration *mg, struct bio *bio)
1030{
1031 size_t pb_data_size = get_per_bio_data_size(mg->cache);
1032 struct per_bio_data *pb = get_per_bio_data(bio, pb_data_size);
1033
1034 dm_hook_bio(&pb->hook_info, bio, overwrite_endio, mg);
1035 remap_to_cache_dirty(mg->cache, bio, mg->new_oblock, mg->cblock);
1036 generic_make_request(bio);
1037}
1038
1039static bool bio_writes_complete_block(struct cache *cache, struct bio *bio)
1040{
1041 return (bio_data_dir(bio) == WRITE) &&
Kent Overstreet4f024f32013-10-11 15:44:27 -07001042 (bio->bi_iter.bi_size == (cache->sectors_per_block << SECTOR_SHIFT));
Joe Thornberc9d28d52013-10-31 13:55:48 -04001043}
1044
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001045static void avoid_copy(struct dm_cache_migration *mg)
1046{
1047 atomic_inc(&mg->cache->stats.copies_avoided);
1048 migration_success_pre_commit(mg);
1049}
1050
1051static void issue_copy(struct dm_cache_migration *mg)
1052{
1053 bool avoid;
1054 struct cache *cache = mg->cache;
1055
1056 if (mg->writeback || mg->demote)
1057 avoid = !is_dirty(cache, mg->cblock) ||
1058 is_discarded_oblock(cache, mg->old_oblock);
Joe Thornberc9d28d52013-10-31 13:55:48 -04001059 else {
1060 struct bio *bio = mg->new_ocell->holder;
1061
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001062 avoid = is_discarded_oblock(cache, mg->new_oblock);
1063
Joe Thornberc9d28d52013-10-31 13:55:48 -04001064 if (!avoid && bio_writes_complete_block(cache, bio)) {
1065 issue_overwrite(mg, bio);
1066 return;
1067 }
1068 }
1069
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001070 avoid ? avoid_copy(mg) : issue_copy_real(mg);
1071}
1072
1073static void complete_migration(struct dm_cache_migration *mg)
1074{
1075 if (mg->err)
1076 migration_failure(mg);
1077 else
1078 migration_success_pre_commit(mg);
1079}
1080
1081static void process_migrations(struct cache *cache, struct list_head *head,
1082 void (*fn)(struct dm_cache_migration *))
1083{
1084 unsigned long flags;
1085 struct list_head list;
1086 struct dm_cache_migration *mg, *tmp;
1087
1088 INIT_LIST_HEAD(&list);
1089 spin_lock_irqsave(&cache->lock, flags);
1090 list_splice_init(head, &list);
1091 spin_unlock_irqrestore(&cache->lock, flags);
1092
1093 list_for_each_entry_safe(mg, tmp, &list, list)
1094 fn(mg);
1095}
1096
1097static void __queue_quiesced_migration(struct dm_cache_migration *mg)
1098{
1099 list_add_tail(&mg->list, &mg->cache->quiesced_migrations);
1100}
1101
1102static void queue_quiesced_migration(struct dm_cache_migration *mg)
1103{
1104 unsigned long flags;
1105 struct cache *cache = mg->cache;
1106
1107 spin_lock_irqsave(&cache->lock, flags);
1108 __queue_quiesced_migration(mg);
1109 spin_unlock_irqrestore(&cache->lock, flags);
1110
1111 wake_worker(cache);
1112}
1113
1114static void queue_quiesced_migrations(struct cache *cache, struct list_head *work)
1115{
1116 unsigned long flags;
1117 struct dm_cache_migration *mg, *tmp;
1118
1119 spin_lock_irqsave(&cache->lock, flags);
1120 list_for_each_entry_safe(mg, tmp, work, list)
1121 __queue_quiesced_migration(mg);
1122 spin_unlock_irqrestore(&cache->lock, flags);
1123
1124 wake_worker(cache);
1125}
1126
1127static void check_for_quiesced_migrations(struct cache *cache,
1128 struct per_bio_data *pb)
1129{
1130 struct list_head work;
1131
1132 if (!pb->all_io_entry)
1133 return;
1134
1135 INIT_LIST_HEAD(&work);
1136 if (pb->all_io_entry)
1137 dm_deferred_entry_dec(pb->all_io_entry, &work);
1138
1139 if (!list_empty(&work))
1140 queue_quiesced_migrations(cache, &work);
1141}
1142
1143static void quiesce_migration(struct dm_cache_migration *mg)
1144{
1145 if (!dm_deferred_set_add_work(mg->cache->all_io_ds, &mg->list))
1146 queue_quiesced_migration(mg);
1147}
1148
1149static void promote(struct cache *cache, struct prealloc *structs,
1150 dm_oblock_t oblock, dm_cblock_t cblock,
1151 struct dm_bio_prison_cell *cell)
1152{
1153 struct dm_cache_migration *mg = prealloc_get_migration(structs);
1154
1155 mg->err = false;
1156 mg->writeback = false;
1157 mg->demote = false;
1158 mg->promote = true;
Joe Thornberc9d28d52013-10-31 13:55:48 -04001159 mg->requeue_holder = true;
Joe Thornber65790ff2013-11-08 16:39:50 +00001160 mg->invalidate = false;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001161 mg->cache = cache;
1162 mg->new_oblock = oblock;
1163 mg->cblock = cblock;
1164 mg->old_ocell = NULL;
1165 mg->new_ocell = cell;
1166 mg->start_jiffies = jiffies;
1167
1168 inc_nr_migrations(cache);
1169 quiesce_migration(mg);
1170}
1171
1172static void writeback(struct cache *cache, struct prealloc *structs,
1173 dm_oblock_t oblock, dm_cblock_t cblock,
1174 struct dm_bio_prison_cell *cell)
1175{
1176 struct dm_cache_migration *mg = prealloc_get_migration(structs);
1177
1178 mg->err = false;
1179 mg->writeback = true;
1180 mg->demote = false;
1181 mg->promote = false;
Joe Thornberc9d28d52013-10-31 13:55:48 -04001182 mg->requeue_holder = true;
Joe Thornber65790ff2013-11-08 16:39:50 +00001183 mg->invalidate = false;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001184 mg->cache = cache;
1185 mg->old_oblock = oblock;
1186 mg->cblock = cblock;
1187 mg->old_ocell = cell;
1188 mg->new_ocell = NULL;
1189 mg->start_jiffies = jiffies;
1190
1191 inc_nr_migrations(cache);
1192 quiesce_migration(mg);
1193}
1194
1195static void demote_then_promote(struct cache *cache, struct prealloc *structs,
1196 dm_oblock_t old_oblock, dm_oblock_t new_oblock,
1197 dm_cblock_t cblock,
1198 struct dm_bio_prison_cell *old_ocell,
1199 struct dm_bio_prison_cell *new_ocell)
1200{
1201 struct dm_cache_migration *mg = prealloc_get_migration(structs);
1202
1203 mg->err = false;
1204 mg->writeback = false;
1205 mg->demote = true;
1206 mg->promote = true;
Joe Thornberc9d28d52013-10-31 13:55:48 -04001207 mg->requeue_holder = true;
Joe Thornber65790ff2013-11-08 16:39:50 +00001208 mg->invalidate = false;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001209 mg->cache = cache;
1210 mg->old_oblock = old_oblock;
1211 mg->new_oblock = new_oblock;
1212 mg->cblock = cblock;
1213 mg->old_ocell = old_ocell;
1214 mg->new_ocell = new_ocell;
1215 mg->start_jiffies = jiffies;
1216
1217 inc_nr_migrations(cache);
1218 quiesce_migration(mg);
1219}
1220
Joe Thornber2ee57d52013-10-24 14:10:29 -04001221/*
1222 * Invalidate a cache entry. No writeback occurs; any changes in the cache
1223 * block are thrown away.
1224 */
1225static void invalidate(struct cache *cache, struct prealloc *structs,
1226 dm_oblock_t oblock, dm_cblock_t cblock,
1227 struct dm_bio_prison_cell *cell)
1228{
1229 struct dm_cache_migration *mg = prealloc_get_migration(structs);
1230
1231 mg->err = false;
1232 mg->writeback = false;
1233 mg->demote = true;
1234 mg->promote = false;
1235 mg->requeue_holder = true;
Joe Thornber65790ff2013-11-08 16:39:50 +00001236 mg->invalidate = true;
Joe Thornber2ee57d52013-10-24 14:10:29 -04001237 mg->cache = cache;
1238 mg->old_oblock = oblock;
1239 mg->cblock = cblock;
1240 mg->old_ocell = cell;
1241 mg->new_ocell = NULL;
1242 mg->start_jiffies = jiffies;
1243
1244 inc_nr_migrations(cache);
1245 quiesce_migration(mg);
1246}
1247
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001248/*----------------------------------------------------------------
1249 * bio processing
1250 *--------------------------------------------------------------*/
1251static void defer_bio(struct cache *cache, struct bio *bio)
1252{
1253 unsigned long flags;
1254
1255 spin_lock_irqsave(&cache->lock, flags);
1256 bio_list_add(&cache->deferred_bios, bio);
1257 spin_unlock_irqrestore(&cache->lock, flags);
1258
1259 wake_worker(cache);
1260}
1261
1262static void process_flush_bio(struct cache *cache, struct bio *bio)
1263{
Mike Snitzer19b00922013-04-05 15:36:34 +01001264 size_t pb_data_size = get_per_bio_data_size(cache);
1265 struct per_bio_data *pb = get_per_bio_data(bio, pb_data_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001266
Kent Overstreet4f024f32013-10-11 15:44:27 -07001267 BUG_ON(bio->bi_iter.bi_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001268 if (!pb->req_nr)
1269 remap_to_origin(cache, bio);
1270 else
1271 remap_to_cache(cache, bio, 0);
1272
1273 issue(cache, bio);
1274}
1275
1276/*
1277 * People generally discard large parts of a device, eg, the whole device
1278 * when formatting. Splitting these large discards up into cache block
1279 * sized ios and then quiescing (always neccessary for discard) takes too
1280 * long.
1281 *
1282 * We keep it simple, and allow any size of discard to come in, and just
1283 * mark off blocks on the discard bitset. No passdown occurs!
1284 *
1285 * To implement passdown we need to change the bio_prison such that a cell
1286 * can have a key that spans many blocks.
1287 */
1288static void process_discard_bio(struct cache *cache, struct bio *bio)
1289{
Kent Overstreet4f024f32013-10-11 15:44:27 -07001290 dm_block_t start_block = dm_sector_div_up(bio->bi_iter.bi_sector,
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001291 cache->discard_block_size);
Kent Overstreet4f024f32013-10-11 15:44:27 -07001292 dm_block_t end_block = bio_end_sector(bio);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001293 dm_block_t b;
1294
Joe Thornber414dd672013-03-20 17:21:25 +00001295 end_block = block_div(end_block, cache->discard_block_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001296
1297 for (b = start_block; b < end_block; b++)
1298 set_discard(cache, to_dblock(b));
1299
1300 bio_endio(bio, 0);
1301}
1302
1303static bool spare_migration_bandwidth(struct cache *cache)
1304{
1305 sector_t current_volume = (atomic_read(&cache->nr_migrations) + 1) *
1306 cache->sectors_per_block;
1307 return current_volume < cache->migration_threshold;
1308}
1309
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001310static void inc_hit_counter(struct cache *cache, struct bio *bio)
1311{
1312 atomic_inc(bio_data_dir(bio) == READ ?
1313 &cache->stats.read_hit : &cache->stats.write_hit);
1314}
1315
1316static void inc_miss_counter(struct cache *cache, struct bio *bio)
1317{
1318 atomic_inc(bio_data_dir(bio) == READ ?
1319 &cache->stats.read_miss : &cache->stats.write_miss);
1320}
1321
Joe Thornber2ee57d52013-10-24 14:10:29 -04001322static void issue_cache_bio(struct cache *cache, struct bio *bio,
1323 struct per_bio_data *pb,
1324 dm_oblock_t oblock, dm_cblock_t cblock)
1325{
1326 pb->all_io_entry = dm_deferred_entry_inc(cache->all_io_ds);
1327 remap_to_cache_dirty(cache, bio, oblock, cblock);
1328 issue(cache, bio);
1329}
1330
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001331static void process_bio(struct cache *cache, struct prealloc *structs,
1332 struct bio *bio)
1333{
1334 int r;
1335 bool release_cell = true;
1336 dm_oblock_t block = get_bio_block(cache, bio);
1337 struct dm_bio_prison_cell *cell_prealloc, *old_ocell, *new_ocell;
1338 struct policy_result lookup_result;
Mike Snitzer19b00922013-04-05 15:36:34 +01001339 size_t pb_data_size = get_per_bio_data_size(cache);
1340 struct per_bio_data *pb = get_per_bio_data(bio, pb_data_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001341 bool discarded_block = is_discarded_oblock(cache, block);
Joe Thornber2ee57d52013-10-24 14:10:29 -04001342 bool passthrough = passthrough_mode(&cache->features);
1343 bool can_migrate = !passthrough && (discarded_block || spare_migration_bandwidth(cache));
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001344
1345 /*
1346 * Check to see if that block is currently migrating.
1347 */
1348 cell_prealloc = prealloc_get_cell(structs);
1349 r = bio_detain(cache, block, bio, cell_prealloc,
1350 (cell_free_fn) prealloc_put_cell,
1351 structs, &new_ocell);
1352 if (r > 0)
1353 return;
1354
1355 r = policy_map(cache->policy, block, true, can_migrate, discarded_block,
1356 bio, &lookup_result);
1357
1358 if (r == -EWOULDBLOCK)
1359 /* migration has been denied */
1360 lookup_result.op = POLICY_MISS;
1361
1362 switch (lookup_result.op) {
1363 case POLICY_HIT:
Joe Thornber2ee57d52013-10-24 14:10:29 -04001364 if (passthrough) {
1365 inc_miss_counter(cache, bio);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001366
Joe Thornber2ee57d52013-10-24 14:10:29 -04001367 /*
1368 * Passthrough always maps to the origin,
1369 * invalidating any cache blocks that are written
1370 * to.
1371 */
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001372
Joe Thornber2ee57d52013-10-24 14:10:29 -04001373 if (bio_data_dir(bio) == WRITE) {
1374 atomic_inc(&cache->stats.demotion);
1375 invalidate(cache, structs, block, lookup_result.cblock, new_ocell);
1376 release_cell = false;
1377
1378 } else {
1379 /* FIXME: factor out issue_origin() */
1380 pb->all_io_entry = dm_deferred_entry_inc(cache->all_io_ds);
1381 remap_to_origin_clear_discard(cache, bio, block);
1382 issue(cache, bio);
1383 }
1384 } else {
1385 inc_hit_counter(cache, bio);
1386
1387 if (bio_data_dir(bio) == WRITE &&
1388 writethrough_mode(&cache->features) &&
1389 !is_dirty(cache, lookup_result.cblock)) {
1390 pb->all_io_entry = dm_deferred_entry_inc(cache->all_io_ds);
1391 remap_to_origin_then_cache(cache, bio, block, lookup_result.cblock);
1392 issue(cache, bio);
1393 } else
1394 issue_cache_bio(cache, bio, pb, block, lookup_result.cblock);
1395 }
1396
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001397 break;
1398
1399 case POLICY_MISS:
1400 inc_miss_counter(cache, bio);
1401 pb->all_io_entry = dm_deferred_entry_inc(cache->all_io_ds);
Joe Thornbere2e74d62013-03-20 17:21:27 +00001402 remap_to_origin_clear_discard(cache, bio, block);
1403 issue(cache, bio);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001404 break;
1405
1406 case POLICY_NEW:
1407 atomic_inc(&cache->stats.promotion);
1408 promote(cache, structs, block, lookup_result.cblock, new_ocell);
1409 release_cell = false;
1410 break;
1411
1412 case POLICY_REPLACE:
1413 cell_prealloc = prealloc_get_cell(structs);
1414 r = bio_detain(cache, lookup_result.old_oblock, bio, cell_prealloc,
1415 (cell_free_fn) prealloc_put_cell,
1416 structs, &old_ocell);
1417 if (r > 0) {
1418 /*
1419 * We have to be careful to avoid lock inversion of
1420 * the cells. So we back off, and wait for the
1421 * old_ocell to become free.
1422 */
1423 policy_force_mapping(cache->policy, block,
1424 lookup_result.old_oblock);
1425 atomic_inc(&cache->stats.cache_cell_clash);
1426 break;
1427 }
1428 atomic_inc(&cache->stats.demotion);
1429 atomic_inc(&cache->stats.promotion);
1430
1431 demote_then_promote(cache, structs, lookup_result.old_oblock,
1432 block, lookup_result.cblock,
1433 old_ocell, new_ocell);
1434 release_cell = false;
1435 break;
1436
1437 default:
1438 DMERR_LIMIT("%s: erroring bio, unknown policy op: %u", __func__,
1439 (unsigned) lookup_result.op);
1440 bio_io_error(bio);
1441 }
1442
1443 if (release_cell)
1444 cell_defer(cache, new_ocell, false);
1445}
1446
1447static int need_commit_due_to_time(struct cache *cache)
1448{
1449 return jiffies < cache->last_commit_jiffies ||
1450 jiffies > cache->last_commit_jiffies + COMMIT_PERIOD;
1451}
1452
1453static int commit_if_needed(struct cache *cache)
1454{
Heinz Mauelshagenffcbcb62013-10-14 17:24:43 +02001455 int r = 0;
1456
1457 if ((cache->commit_requested || need_commit_due_to_time(cache)) &&
1458 dm_cache_changed_this_transaction(cache->cmd)) {
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001459 atomic_inc(&cache->stats.commit_count);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001460 cache->commit_requested = false;
Heinz Mauelshagenffcbcb62013-10-14 17:24:43 +02001461 r = dm_cache_commit(cache->cmd, false);
1462 cache->last_commit_jiffies = jiffies;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001463 }
1464
Heinz Mauelshagenffcbcb62013-10-14 17:24:43 +02001465 return r;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001466}
1467
1468static void process_deferred_bios(struct cache *cache)
1469{
1470 unsigned long flags;
1471 struct bio_list bios;
1472 struct bio *bio;
1473 struct prealloc structs;
1474
1475 memset(&structs, 0, sizeof(structs));
1476 bio_list_init(&bios);
1477
1478 spin_lock_irqsave(&cache->lock, flags);
1479 bio_list_merge(&bios, &cache->deferred_bios);
1480 bio_list_init(&cache->deferred_bios);
1481 spin_unlock_irqrestore(&cache->lock, flags);
1482
1483 while (!bio_list_empty(&bios)) {
1484 /*
1485 * If we've got no free migration structs, and processing
1486 * this bio might require one, we pause until there are some
1487 * prepared mappings to process.
1488 */
1489 if (prealloc_data_structs(cache, &structs)) {
1490 spin_lock_irqsave(&cache->lock, flags);
1491 bio_list_merge(&cache->deferred_bios, &bios);
1492 spin_unlock_irqrestore(&cache->lock, flags);
1493 break;
1494 }
1495
1496 bio = bio_list_pop(&bios);
1497
1498 if (bio->bi_rw & REQ_FLUSH)
1499 process_flush_bio(cache, bio);
1500 else if (bio->bi_rw & REQ_DISCARD)
1501 process_discard_bio(cache, bio);
1502 else
1503 process_bio(cache, &structs, bio);
1504 }
1505
1506 prealloc_free_structs(cache, &structs);
1507}
1508
1509static void process_deferred_flush_bios(struct cache *cache, bool submit_bios)
1510{
1511 unsigned long flags;
1512 struct bio_list bios;
1513 struct bio *bio;
1514
1515 bio_list_init(&bios);
1516
1517 spin_lock_irqsave(&cache->lock, flags);
1518 bio_list_merge(&bios, &cache->deferred_flush_bios);
1519 bio_list_init(&cache->deferred_flush_bios);
1520 spin_unlock_irqrestore(&cache->lock, flags);
1521
1522 while ((bio = bio_list_pop(&bios)))
1523 submit_bios ? generic_make_request(bio) : bio_io_error(bio);
1524}
1525
Joe Thornbere2e74d62013-03-20 17:21:27 +00001526static void process_deferred_writethrough_bios(struct cache *cache)
1527{
1528 unsigned long flags;
1529 struct bio_list bios;
1530 struct bio *bio;
1531
1532 bio_list_init(&bios);
1533
1534 spin_lock_irqsave(&cache->lock, flags);
1535 bio_list_merge(&bios, &cache->deferred_writethrough_bios);
1536 bio_list_init(&cache->deferred_writethrough_bios);
1537 spin_unlock_irqrestore(&cache->lock, flags);
1538
1539 while ((bio = bio_list_pop(&bios)))
1540 generic_make_request(bio);
1541}
1542
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001543static void writeback_some_dirty_blocks(struct cache *cache)
1544{
1545 int r = 0;
1546 dm_oblock_t oblock;
1547 dm_cblock_t cblock;
1548 struct prealloc structs;
1549 struct dm_bio_prison_cell *old_ocell;
1550
1551 memset(&structs, 0, sizeof(structs));
1552
1553 while (spare_migration_bandwidth(cache)) {
1554 if (prealloc_data_structs(cache, &structs))
1555 break;
1556
1557 r = policy_writeback_work(cache->policy, &oblock, &cblock);
1558 if (r)
1559 break;
1560
1561 r = get_cell(cache, oblock, &structs, &old_ocell);
1562 if (r) {
1563 policy_set_dirty(cache->policy, oblock);
1564 break;
1565 }
1566
1567 writeback(cache, &structs, oblock, cblock, old_ocell);
1568 }
1569
1570 prealloc_free_structs(cache, &structs);
1571}
1572
1573/*----------------------------------------------------------------
Joe Thornber65790ff2013-11-08 16:39:50 +00001574 * Invalidations.
1575 * Dropping something from the cache *without* writing back.
1576 *--------------------------------------------------------------*/
1577
1578static void process_invalidation_request(struct cache *cache, struct invalidation_request *req)
1579{
1580 int r = 0;
1581 uint64_t begin = from_cblock(req->cblocks->begin);
1582 uint64_t end = from_cblock(req->cblocks->end);
1583
1584 while (begin != end) {
1585 r = policy_remove_cblock(cache->policy, to_cblock(begin));
1586 if (!r) {
1587 r = dm_cache_remove_mapping(cache->cmd, to_cblock(begin));
1588 if (r)
1589 break;
1590
1591 } else if (r == -ENODATA) {
1592 /* harmless, already unmapped */
1593 r = 0;
1594
1595 } else {
1596 DMERR("policy_remove_cblock failed");
1597 break;
1598 }
1599
1600 begin++;
1601 }
1602
1603 cache->commit_requested = true;
1604
1605 req->err = r;
1606 atomic_set(&req->complete, 1);
1607
1608 wake_up(&req->result_wait);
1609}
1610
1611static void process_invalidation_requests(struct cache *cache)
1612{
1613 struct list_head list;
1614 struct invalidation_request *req, *tmp;
1615
1616 INIT_LIST_HEAD(&list);
1617 spin_lock(&cache->invalidation_lock);
1618 list_splice_init(&cache->invalidation_requests, &list);
1619 spin_unlock(&cache->invalidation_lock);
1620
1621 list_for_each_entry_safe (req, tmp, &list, list)
1622 process_invalidation_request(cache, req);
1623}
1624
1625/*----------------------------------------------------------------
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001626 * Main worker loop
1627 *--------------------------------------------------------------*/
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001628static bool is_quiescing(struct cache *cache)
1629{
Joe Thornber238f8362013-10-30 17:29:30 +00001630 return atomic_read(&cache->quiescing);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001631}
1632
Joe Thornber66cb1912013-10-30 17:11:58 +00001633static void ack_quiescing(struct cache *cache)
1634{
1635 if (is_quiescing(cache)) {
1636 atomic_inc(&cache->quiescing_ack);
1637 wake_up(&cache->quiescing_wait);
1638 }
1639}
1640
1641static void wait_for_quiescing_ack(struct cache *cache)
1642{
1643 wait_event(cache->quiescing_wait, atomic_read(&cache->quiescing_ack));
1644}
1645
1646static void start_quiescing(struct cache *cache)
1647{
Joe Thornber238f8362013-10-30 17:29:30 +00001648 atomic_inc(&cache->quiescing);
Joe Thornber66cb1912013-10-30 17:11:58 +00001649 wait_for_quiescing_ack(cache);
1650}
1651
1652static void stop_quiescing(struct cache *cache)
1653{
Joe Thornber238f8362013-10-30 17:29:30 +00001654 atomic_set(&cache->quiescing, 0);
Joe Thornber66cb1912013-10-30 17:11:58 +00001655 atomic_set(&cache->quiescing_ack, 0);
1656}
1657
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001658static void wait_for_migrations(struct cache *cache)
1659{
1660 wait_event(cache->migration_wait, !atomic_read(&cache->nr_migrations));
1661}
1662
1663static void stop_worker(struct cache *cache)
1664{
1665 cancel_delayed_work(&cache->waker);
1666 flush_workqueue(cache->wq);
1667}
1668
1669static void requeue_deferred_io(struct cache *cache)
1670{
1671 struct bio *bio;
1672 struct bio_list bios;
1673
1674 bio_list_init(&bios);
1675 bio_list_merge(&bios, &cache->deferred_bios);
1676 bio_list_init(&cache->deferred_bios);
1677
1678 while ((bio = bio_list_pop(&bios)))
1679 bio_endio(bio, DM_ENDIO_REQUEUE);
1680}
1681
1682static int more_work(struct cache *cache)
1683{
1684 if (is_quiescing(cache))
1685 return !list_empty(&cache->quiesced_migrations) ||
1686 !list_empty(&cache->completed_migrations) ||
1687 !list_empty(&cache->need_commit_migrations);
1688 else
1689 return !bio_list_empty(&cache->deferred_bios) ||
1690 !bio_list_empty(&cache->deferred_flush_bios) ||
Joe Thornbere2e74d62013-03-20 17:21:27 +00001691 !bio_list_empty(&cache->deferred_writethrough_bios) ||
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001692 !list_empty(&cache->quiesced_migrations) ||
1693 !list_empty(&cache->completed_migrations) ||
Joe Thornber65790ff2013-11-08 16:39:50 +00001694 !list_empty(&cache->need_commit_migrations) ||
1695 cache->invalidate;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001696}
1697
1698static void do_worker(struct work_struct *ws)
1699{
1700 struct cache *cache = container_of(ws, struct cache, worker);
1701
1702 do {
Joe Thornber66cb1912013-10-30 17:11:58 +00001703 if (!is_quiescing(cache)) {
1704 writeback_some_dirty_blocks(cache);
1705 process_deferred_writethrough_bios(cache);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001706 process_deferred_bios(cache);
Joe Thornber65790ff2013-11-08 16:39:50 +00001707 process_invalidation_requests(cache);
Joe Thornber66cb1912013-10-30 17:11:58 +00001708 }
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001709
1710 process_migrations(cache, &cache->quiesced_migrations, issue_copy);
1711 process_migrations(cache, &cache->completed_migrations, complete_migration);
1712
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001713 if (commit_if_needed(cache)) {
1714 process_deferred_flush_bios(cache, false);
1715
1716 /*
1717 * FIXME: rollback metadata or just go into a
1718 * failure mode and error everything
1719 */
1720 } else {
1721 process_deferred_flush_bios(cache, true);
1722 process_migrations(cache, &cache->need_commit_migrations,
1723 migration_success_post_commit);
1724 }
Joe Thornber66cb1912013-10-30 17:11:58 +00001725
1726 ack_quiescing(cache);
1727
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001728 } while (more_work(cache));
1729}
1730
1731/*
1732 * We want to commit periodically so that not too much
1733 * unwritten metadata builds up.
1734 */
1735static void do_waker(struct work_struct *ws)
1736{
1737 struct cache *cache = container_of(to_delayed_work(ws), struct cache, waker);
Joe Thornberf8350da2013-05-10 14:37:16 +01001738 policy_tick(cache->policy);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001739 wake_worker(cache);
1740 queue_delayed_work(cache->wq, &cache->waker, COMMIT_PERIOD);
1741}
1742
1743/*----------------------------------------------------------------*/
1744
1745static int is_congested(struct dm_dev *dev, int bdi_bits)
1746{
1747 struct request_queue *q = bdev_get_queue(dev->bdev);
1748 return bdi_congested(&q->backing_dev_info, bdi_bits);
1749}
1750
1751static int cache_is_congested(struct dm_target_callbacks *cb, int bdi_bits)
1752{
1753 struct cache *cache = container_of(cb, struct cache, callbacks);
1754
1755 return is_congested(cache->origin_dev, bdi_bits) ||
1756 is_congested(cache->cache_dev, bdi_bits);
1757}
1758
1759/*----------------------------------------------------------------
1760 * Target methods
1761 *--------------------------------------------------------------*/
1762
1763/*
1764 * This function gets called on the error paths of the constructor, so we
1765 * have to cope with a partially initialised struct.
1766 */
1767static void destroy(struct cache *cache)
1768{
1769 unsigned i;
1770
1771 if (cache->next_migration)
1772 mempool_free(cache->next_migration, cache->migration_pool);
1773
1774 if (cache->migration_pool)
1775 mempool_destroy(cache->migration_pool);
1776
1777 if (cache->all_io_ds)
1778 dm_deferred_set_destroy(cache->all_io_ds);
1779
1780 if (cache->prison)
1781 dm_bio_prison_destroy(cache->prison);
1782
1783 if (cache->wq)
1784 destroy_workqueue(cache->wq);
1785
1786 if (cache->dirty_bitset)
1787 free_bitset(cache->dirty_bitset);
1788
1789 if (cache->discard_bitset)
1790 free_bitset(cache->discard_bitset);
1791
1792 if (cache->copier)
1793 dm_kcopyd_client_destroy(cache->copier);
1794
1795 if (cache->cmd)
1796 dm_cache_metadata_close(cache->cmd);
1797
1798 if (cache->metadata_dev)
1799 dm_put_device(cache->ti, cache->metadata_dev);
1800
1801 if (cache->origin_dev)
1802 dm_put_device(cache->ti, cache->origin_dev);
1803
1804 if (cache->cache_dev)
1805 dm_put_device(cache->ti, cache->cache_dev);
1806
1807 if (cache->policy)
1808 dm_cache_policy_destroy(cache->policy);
1809
1810 for (i = 0; i < cache->nr_ctr_args ; i++)
1811 kfree(cache->ctr_args[i]);
1812 kfree(cache->ctr_args);
1813
1814 kfree(cache);
1815}
1816
1817static void cache_dtr(struct dm_target *ti)
1818{
1819 struct cache *cache = ti->private;
1820
1821 destroy(cache);
1822}
1823
1824static sector_t get_dev_size(struct dm_dev *dev)
1825{
1826 return i_size_read(dev->bdev->bd_inode) >> SECTOR_SHIFT;
1827}
1828
1829/*----------------------------------------------------------------*/
1830
1831/*
1832 * Construct a cache device mapping.
1833 *
1834 * cache <metadata dev> <cache dev> <origin dev> <block size>
1835 * <#feature args> [<feature arg>]*
1836 * <policy> <#policy args> [<policy arg>]*
1837 *
1838 * metadata dev : fast device holding the persistent metadata
1839 * cache dev : fast device holding cached data blocks
1840 * origin dev : slow device holding original data blocks
1841 * block size : cache unit size in sectors
1842 *
1843 * #feature args : number of feature arguments passed
1844 * feature args : writethrough. (The default is writeback.)
1845 *
1846 * policy : the replacement policy to use
1847 * #policy args : an even number of policy arguments corresponding
1848 * to key/value pairs passed to the policy
1849 * policy args : key/value pairs passed to the policy
1850 * E.g. 'sequential_threshold 1024'
1851 * See cache-policies.txt for details.
1852 *
1853 * Optional feature arguments are:
1854 * writethrough : write through caching that prohibits cache block
1855 * content from being different from origin block content.
1856 * Without this argument, the default behaviour is to write
1857 * back cache block contents later for performance reasons,
1858 * so they may differ from the corresponding origin blocks.
1859 */
1860struct cache_args {
1861 struct dm_target *ti;
1862
1863 struct dm_dev *metadata_dev;
1864
1865 struct dm_dev *cache_dev;
1866 sector_t cache_sectors;
1867
1868 struct dm_dev *origin_dev;
1869 sector_t origin_sectors;
1870
1871 uint32_t block_size;
1872
1873 const char *policy_name;
1874 int policy_argc;
1875 const char **policy_argv;
1876
1877 struct cache_features features;
1878};
1879
1880static void destroy_cache_args(struct cache_args *ca)
1881{
1882 if (ca->metadata_dev)
1883 dm_put_device(ca->ti, ca->metadata_dev);
1884
1885 if (ca->cache_dev)
1886 dm_put_device(ca->ti, ca->cache_dev);
1887
1888 if (ca->origin_dev)
1889 dm_put_device(ca->ti, ca->origin_dev);
1890
1891 kfree(ca);
1892}
1893
1894static bool at_least_one_arg(struct dm_arg_set *as, char **error)
1895{
1896 if (!as->argc) {
1897 *error = "Insufficient args";
1898 return false;
1899 }
1900
1901 return true;
1902}
1903
1904static int parse_metadata_dev(struct cache_args *ca, struct dm_arg_set *as,
1905 char **error)
1906{
1907 int r;
1908 sector_t metadata_dev_size;
1909 char b[BDEVNAME_SIZE];
1910
1911 if (!at_least_one_arg(as, error))
1912 return -EINVAL;
1913
1914 r = dm_get_device(ca->ti, dm_shift_arg(as), FMODE_READ | FMODE_WRITE,
1915 &ca->metadata_dev);
1916 if (r) {
1917 *error = "Error opening metadata device";
1918 return r;
1919 }
1920
1921 metadata_dev_size = get_dev_size(ca->metadata_dev);
1922 if (metadata_dev_size > DM_CACHE_METADATA_MAX_SECTORS_WARNING)
1923 DMWARN("Metadata device %s is larger than %u sectors: excess space will not be used.",
1924 bdevname(ca->metadata_dev->bdev, b), THIN_METADATA_MAX_SECTORS);
1925
1926 return 0;
1927}
1928
1929static int parse_cache_dev(struct cache_args *ca, struct dm_arg_set *as,
1930 char **error)
1931{
1932 int r;
1933
1934 if (!at_least_one_arg(as, error))
1935 return -EINVAL;
1936
1937 r = dm_get_device(ca->ti, dm_shift_arg(as), FMODE_READ | FMODE_WRITE,
1938 &ca->cache_dev);
1939 if (r) {
1940 *error = "Error opening cache device";
1941 return r;
1942 }
1943 ca->cache_sectors = get_dev_size(ca->cache_dev);
1944
1945 return 0;
1946}
1947
1948static int parse_origin_dev(struct cache_args *ca, struct dm_arg_set *as,
1949 char **error)
1950{
1951 int r;
1952
1953 if (!at_least_one_arg(as, error))
1954 return -EINVAL;
1955
1956 r = dm_get_device(ca->ti, dm_shift_arg(as), FMODE_READ | FMODE_WRITE,
1957 &ca->origin_dev);
1958 if (r) {
1959 *error = "Error opening origin device";
1960 return r;
1961 }
1962
1963 ca->origin_sectors = get_dev_size(ca->origin_dev);
1964 if (ca->ti->len > ca->origin_sectors) {
1965 *error = "Device size larger than cached device";
1966 return -EINVAL;
1967 }
1968
1969 return 0;
1970}
1971
1972static int parse_block_size(struct cache_args *ca, struct dm_arg_set *as,
1973 char **error)
1974{
Mike Snitzer05473042013-08-16 10:54:19 -04001975 unsigned long block_size;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001976
1977 if (!at_least_one_arg(as, error))
1978 return -EINVAL;
1979
Mike Snitzer05473042013-08-16 10:54:19 -04001980 if (kstrtoul(dm_shift_arg(as), 10, &block_size) || !block_size ||
1981 block_size < DATA_DEV_BLOCK_SIZE_MIN_SECTORS ||
1982 block_size > DATA_DEV_BLOCK_SIZE_MAX_SECTORS ||
1983 block_size & (DATA_DEV_BLOCK_SIZE_MIN_SECTORS - 1)) {
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001984 *error = "Invalid data block size";
1985 return -EINVAL;
1986 }
1987
Mike Snitzer05473042013-08-16 10:54:19 -04001988 if (block_size > ca->cache_sectors) {
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001989 *error = "Data block size is larger than the cache device";
1990 return -EINVAL;
1991 }
1992
Mike Snitzer05473042013-08-16 10:54:19 -04001993 ca->block_size = block_size;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00001994
1995 return 0;
1996}
1997
1998static void init_features(struct cache_features *cf)
1999{
2000 cf->mode = CM_WRITE;
Joe Thornber2ee57d52013-10-24 14:10:29 -04002001 cf->io_mode = CM_IO_WRITEBACK;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002002}
2003
2004static int parse_features(struct cache_args *ca, struct dm_arg_set *as,
2005 char **error)
2006{
2007 static struct dm_arg _args[] = {
2008 {0, 1, "Invalid number of cache feature arguments"},
2009 };
2010
2011 int r;
2012 unsigned argc;
2013 const char *arg;
2014 struct cache_features *cf = &ca->features;
2015
2016 init_features(cf);
2017
2018 r = dm_read_arg_group(_args, as, &argc, error);
2019 if (r)
2020 return -EINVAL;
2021
2022 while (argc--) {
2023 arg = dm_shift_arg(as);
2024
2025 if (!strcasecmp(arg, "writeback"))
Joe Thornber2ee57d52013-10-24 14:10:29 -04002026 cf->io_mode = CM_IO_WRITEBACK;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002027
2028 else if (!strcasecmp(arg, "writethrough"))
Joe Thornber2ee57d52013-10-24 14:10:29 -04002029 cf->io_mode = CM_IO_WRITETHROUGH;
2030
2031 else if (!strcasecmp(arg, "passthrough"))
2032 cf->io_mode = CM_IO_PASSTHROUGH;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002033
2034 else {
2035 *error = "Unrecognised cache feature requested";
2036 return -EINVAL;
2037 }
2038 }
2039
2040 return 0;
2041}
2042
2043static int parse_policy(struct cache_args *ca, struct dm_arg_set *as,
2044 char **error)
2045{
2046 static struct dm_arg _args[] = {
2047 {0, 1024, "Invalid number of policy arguments"},
2048 };
2049
2050 int r;
2051
2052 if (!at_least_one_arg(as, error))
2053 return -EINVAL;
2054
2055 ca->policy_name = dm_shift_arg(as);
2056
2057 r = dm_read_arg_group(_args, as, &ca->policy_argc, error);
2058 if (r)
2059 return -EINVAL;
2060
2061 ca->policy_argv = (const char **)as->argv;
2062 dm_consume_args(as, ca->policy_argc);
2063
2064 return 0;
2065}
2066
2067static int parse_cache_args(struct cache_args *ca, int argc, char **argv,
2068 char **error)
2069{
2070 int r;
2071 struct dm_arg_set as;
2072
2073 as.argc = argc;
2074 as.argv = argv;
2075
2076 r = parse_metadata_dev(ca, &as, error);
2077 if (r)
2078 return r;
2079
2080 r = parse_cache_dev(ca, &as, error);
2081 if (r)
2082 return r;
2083
2084 r = parse_origin_dev(ca, &as, error);
2085 if (r)
2086 return r;
2087
2088 r = parse_block_size(ca, &as, error);
2089 if (r)
2090 return r;
2091
2092 r = parse_features(ca, &as, error);
2093 if (r)
2094 return r;
2095
2096 r = parse_policy(ca, &as, error);
2097 if (r)
2098 return r;
2099
2100 return 0;
2101}
2102
2103/*----------------------------------------------------------------*/
2104
2105static struct kmem_cache *migration_cache;
2106
Alasdair G Kergon2c73c472013-05-10 14:37:21 +01002107#define NOT_CORE_OPTION 1
2108
Joe Thornber2f14f4b2013-05-10 14:37:21 +01002109static int process_config_option(struct cache *cache, const char *key, const char *value)
Alasdair G Kergon2c73c472013-05-10 14:37:21 +01002110{
2111 unsigned long tmp;
2112
Joe Thornber2f14f4b2013-05-10 14:37:21 +01002113 if (!strcasecmp(key, "migration_threshold")) {
2114 if (kstrtoul(value, 10, &tmp))
Alasdair G Kergon2c73c472013-05-10 14:37:21 +01002115 return -EINVAL;
2116
2117 cache->migration_threshold = tmp;
2118 return 0;
2119 }
2120
2121 return NOT_CORE_OPTION;
2122}
2123
Joe Thornber2f14f4b2013-05-10 14:37:21 +01002124static int set_config_value(struct cache *cache, const char *key, const char *value)
2125{
2126 int r = process_config_option(cache, key, value);
2127
2128 if (r == NOT_CORE_OPTION)
2129 r = policy_set_config_value(cache->policy, key, value);
2130
2131 if (r)
2132 DMWARN("bad config value for %s: %s", key, value);
2133
2134 return r;
2135}
2136
2137static int set_config_values(struct cache *cache, int argc, const char **argv)
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002138{
2139 int r = 0;
2140
2141 if (argc & 1) {
2142 DMWARN("Odd number of policy arguments given but they should be <key> <value> pairs.");
2143 return -EINVAL;
2144 }
2145
2146 while (argc) {
Joe Thornber2f14f4b2013-05-10 14:37:21 +01002147 r = set_config_value(cache, argv[0], argv[1]);
2148 if (r)
2149 break;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002150
2151 argc -= 2;
2152 argv += 2;
2153 }
2154
2155 return r;
2156}
2157
2158static int create_cache_policy(struct cache *cache, struct cache_args *ca,
2159 char **error)
2160{
Mikulas Patocka4cb3e1d2013-10-01 18:35:39 -04002161 struct dm_cache_policy *p = dm_cache_policy_create(ca->policy_name,
2162 cache->cache_size,
2163 cache->origin_sectors,
2164 cache->sectors_per_block);
2165 if (IS_ERR(p)) {
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002166 *error = "Error creating cache's policy";
Mikulas Patocka4cb3e1d2013-10-01 18:35:39 -04002167 return PTR_ERR(p);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002168 }
Mikulas Patocka4cb3e1d2013-10-01 18:35:39 -04002169 cache->policy = p;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002170
Joe Thornber2f14f4b2013-05-10 14:37:21 +01002171 return 0;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002172}
2173
2174/*
2175 * We want the discard block size to be a power of two, at least the size
2176 * of the cache block size, and have no more than 2^14 discard blocks
2177 * across the origin.
2178 */
2179#define MAX_DISCARD_BLOCKS (1 << 14)
2180
2181static bool too_many_discard_blocks(sector_t discard_block_size,
2182 sector_t origin_size)
2183{
2184 (void) sector_div(origin_size, discard_block_size);
2185
2186 return origin_size > MAX_DISCARD_BLOCKS;
2187}
2188
2189static sector_t calculate_discard_block_size(sector_t cache_block_size,
2190 sector_t origin_size)
2191{
2192 sector_t discard_block_size;
2193
2194 discard_block_size = roundup_pow_of_two(cache_block_size);
2195
2196 if (origin_size)
2197 while (too_many_discard_blocks(discard_block_size, origin_size))
2198 discard_block_size *= 2;
2199
2200 return discard_block_size;
2201}
2202
Joe Thornberf8350da2013-05-10 14:37:16 +01002203#define DEFAULT_MIGRATION_THRESHOLD 2048
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002204
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002205static int cache_create(struct cache_args *ca, struct cache **result)
2206{
2207 int r = 0;
2208 char **error = &ca->ti->error;
2209 struct cache *cache;
2210 struct dm_target *ti = ca->ti;
2211 dm_block_t origin_blocks;
2212 struct dm_cache_metadata *cmd;
2213 bool may_format = ca->features.mode == CM_WRITE;
2214
2215 cache = kzalloc(sizeof(*cache), GFP_KERNEL);
2216 if (!cache)
2217 return -ENOMEM;
2218
2219 cache->ti = ca->ti;
2220 ti->private = cache;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002221 ti->num_flush_bios = 2;
2222 ti->flush_supported = true;
2223
2224 ti->num_discard_bios = 1;
2225 ti->discards_supported = true;
2226 ti->discard_zeroes_data_unsupported = true;
2227
Joe Thornber8c5008f2013-05-10 14:37:18 +01002228 cache->features = ca->features;
Mike Snitzer19b00922013-04-05 15:36:34 +01002229 ti->per_bio_data_size = get_per_bio_data_size(cache);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002230
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002231 cache->callbacks.congested_fn = cache_is_congested;
2232 dm_table_add_target_callbacks(ti->table, &cache->callbacks);
2233
2234 cache->metadata_dev = ca->metadata_dev;
2235 cache->origin_dev = ca->origin_dev;
2236 cache->cache_dev = ca->cache_dev;
2237
2238 ca->metadata_dev = ca->origin_dev = ca->cache_dev = NULL;
2239
2240 /* FIXME: factor out this whole section */
2241 origin_blocks = cache->origin_sectors = ca->origin_sectors;
Joe Thornber414dd672013-03-20 17:21:25 +00002242 origin_blocks = block_div(origin_blocks, ca->block_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002243 cache->origin_blocks = to_oblock(origin_blocks);
2244
2245 cache->sectors_per_block = ca->block_size;
2246 if (dm_set_target_max_io_len(ti, cache->sectors_per_block)) {
2247 r = -EINVAL;
2248 goto bad;
2249 }
2250
2251 if (ca->block_size & (ca->block_size - 1)) {
2252 dm_block_t cache_size = ca->cache_sectors;
2253
2254 cache->sectors_per_block_shift = -1;
Joe Thornber414dd672013-03-20 17:21:25 +00002255 cache_size = block_div(cache_size, ca->block_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002256 cache->cache_size = to_cblock(cache_size);
2257 } else {
2258 cache->sectors_per_block_shift = __ffs(ca->block_size);
2259 cache->cache_size = to_cblock(ca->cache_sectors >> cache->sectors_per_block_shift);
2260 }
2261
2262 r = create_cache_policy(cache, ca, error);
2263 if (r)
2264 goto bad;
Joe Thornber2f14f4b2013-05-10 14:37:21 +01002265
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002266 cache->policy_nr_args = ca->policy_argc;
Joe Thornber2f14f4b2013-05-10 14:37:21 +01002267 cache->migration_threshold = DEFAULT_MIGRATION_THRESHOLD;
2268
2269 r = set_config_values(cache, ca->policy_argc, ca->policy_argv);
2270 if (r) {
2271 *error = "Error setting cache policy's config values";
2272 goto bad;
2273 }
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002274
2275 cmd = dm_cache_metadata_open(cache->metadata_dev->bdev,
2276 ca->block_size, may_format,
2277 dm_cache_policy_get_hint_size(cache->policy));
2278 if (IS_ERR(cmd)) {
2279 *error = "Error creating metadata object";
2280 r = PTR_ERR(cmd);
2281 goto bad;
2282 }
2283 cache->cmd = cmd;
2284
Joe Thornber2ee57d52013-10-24 14:10:29 -04002285 if (passthrough_mode(&cache->features)) {
2286 bool all_clean;
2287
2288 r = dm_cache_metadata_all_clean(cache->cmd, &all_clean);
2289 if (r) {
2290 *error = "dm_cache_metadata_all_clean() failed";
2291 goto bad;
2292 }
2293
2294 if (!all_clean) {
2295 *error = "Cannot enter passthrough mode unless all blocks are clean";
2296 r = -EINVAL;
2297 goto bad;
2298 }
2299 }
2300
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002301 spin_lock_init(&cache->lock);
2302 bio_list_init(&cache->deferred_bios);
2303 bio_list_init(&cache->deferred_flush_bios);
Joe Thornbere2e74d62013-03-20 17:21:27 +00002304 bio_list_init(&cache->deferred_writethrough_bios);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002305 INIT_LIST_HEAD(&cache->quiesced_migrations);
2306 INIT_LIST_HEAD(&cache->completed_migrations);
2307 INIT_LIST_HEAD(&cache->need_commit_migrations);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002308 atomic_set(&cache->nr_migrations, 0);
2309 init_waitqueue_head(&cache->migration_wait);
2310
Joe Thornber66cb1912013-10-30 17:11:58 +00002311 init_waitqueue_head(&cache->quiescing_wait);
Joe Thornber238f8362013-10-30 17:29:30 +00002312 atomic_set(&cache->quiescing, 0);
Joe Thornber66cb1912013-10-30 17:11:58 +00002313 atomic_set(&cache->quiescing_ack, 0);
2314
Wei Yongjunfa4d6832013-05-10 14:37:14 +01002315 r = -ENOMEM;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002316 cache->nr_dirty = 0;
2317 cache->dirty_bitset = alloc_bitset(from_cblock(cache->cache_size));
2318 if (!cache->dirty_bitset) {
2319 *error = "could not allocate dirty bitset";
2320 goto bad;
2321 }
2322 clear_bitset(cache->dirty_bitset, from_cblock(cache->cache_size));
2323
2324 cache->discard_block_size =
2325 calculate_discard_block_size(cache->sectors_per_block,
2326 cache->origin_sectors);
2327 cache->discard_nr_blocks = oblock_to_dblock(cache, cache->origin_blocks);
2328 cache->discard_bitset = alloc_bitset(from_dblock(cache->discard_nr_blocks));
2329 if (!cache->discard_bitset) {
2330 *error = "could not allocate discard bitset";
2331 goto bad;
2332 }
2333 clear_bitset(cache->discard_bitset, from_dblock(cache->discard_nr_blocks));
2334
2335 cache->copier = dm_kcopyd_client_create(&dm_kcopyd_throttle);
2336 if (IS_ERR(cache->copier)) {
2337 *error = "could not create kcopyd client";
2338 r = PTR_ERR(cache->copier);
2339 goto bad;
2340 }
2341
2342 cache->wq = alloc_ordered_workqueue("dm-" DM_MSG_PREFIX, WQ_MEM_RECLAIM);
2343 if (!cache->wq) {
2344 *error = "could not create workqueue for metadata object";
2345 goto bad;
2346 }
2347 INIT_WORK(&cache->worker, do_worker);
2348 INIT_DELAYED_WORK(&cache->waker, do_waker);
2349 cache->last_commit_jiffies = jiffies;
2350
2351 cache->prison = dm_bio_prison_create(PRISON_CELLS);
2352 if (!cache->prison) {
2353 *error = "could not create bio prison";
2354 goto bad;
2355 }
2356
2357 cache->all_io_ds = dm_deferred_set_create();
2358 if (!cache->all_io_ds) {
2359 *error = "could not create all_io deferred set";
2360 goto bad;
2361 }
2362
2363 cache->migration_pool = mempool_create_slab_pool(MIGRATION_POOL_SIZE,
2364 migration_cache);
2365 if (!cache->migration_pool) {
2366 *error = "Error creating cache's migration mempool";
2367 goto bad;
2368 }
2369
2370 cache->next_migration = NULL;
2371
2372 cache->need_tick_bio = true;
2373 cache->sized = false;
Joe Thornber65790ff2013-11-08 16:39:50 +00002374 cache->invalidate = false;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002375 cache->commit_requested = false;
2376 cache->loaded_mappings = false;
2377 cache->loaded_discards = false;
2378
2379 load_stats(cache);
2380
2381 atomic_set(&cache->stats.demotion, 0);
2382 atomic_set(&cache->stats.promotion, 0);
2383 atomic_set(&cache->stats.copies_avoided, 0);
2384 atomic_set(&cache->stats.cache_cell_clash, 0);
2385 atomic_set(&cache->stats.commit_count, 0);
2386 atomic_set(&cache->stats.discard_count, 0);
2387
Joe Thornber65790ff2013-11-08 16:39:50 +00002388 spin_lock_init(&cache->invalidation_lock);
2389 INIT_LIST_HEAD(&cache->invalidation_requests);
2390
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002391 *result = cache;
2392 return 0;
2393
2394bad:
2395 destroy(cache);
2396 return r;
2397}
2398
2399static int copy_ctr_args(struct cache *cache, int argc, const char **argv)
2400{
2401 unsigned i;
2402 const char **copy;
2403
2404 copy = kcalloc(argc, sizeof(*copy), GFP_KERNEL);
2405 if (!copy)
2406 return -ENOMEM;
2407 for (i = 0; i < argc; i++) {
2408 copy[i] = kstrdup(argv[i], GFP_KERNEL);
2409 if (!copy[i]) {
2410 while (i--)
2411 kfree(copy[i]);
2412 kfree(copy);
2413 return -ENOMEM;
2414 }
2415 }
2416
2417 cache->nr_ctr_args = argc;
2418 cache->ctr_args = copy;
2419
2420 return 0;
2421}
2422
2423static int cache_ctr(struct dm_target *ti, unsigned argc, char **argv)
2424{
2425 int r = -EINVAL;
2426 struct cache_args *ca;
2427 struct cache *cache = NULL;
2428
2429 ca = kzalloc(sizeof(*ca), GFP_KERNEL);
2430 if (!ca) {
2431 ti->error = "Error allocating memory for cache";
2432 return -ENOMEM;
2433 }
2434 ca->ti = ti;
2435
2436 r = parse_cache_args(ca, argc, argv, &ti->error);
2437 if (r)
2438 goto out;
2439
2440 r = cache_create(ca, &cache);
Heinz Mauelshagen617a0b82013-03-20 17:21:26 +00002441 if (r)
2442 goto out;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002443
2444 r = copy_ctr_args(cache, argc - 3, (const char **)argv + 3);
2445 if (r) {
2446 destroy(cache);
2447 goto out;
2448 }
2449
2450 ti->private = cache;
2451
2452out:
2453 destroy_cache_args(ca);
2454 return r;
2455}
2456
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002457static int cache_map(struct dm_target *ti, struct bio *bio)
2458{
2459 struct cache *cache = ti->private;
2460
2461 int r;
2462 dm_oblock_t block = get_bio_block(cache, bio);
Mike Snitzer19b00922013-04-05 15:36:34 +01002463 size_t pb_data_size = get_per_bio_data_size(cache);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002464 bool can_migrate = false;
2465 bool discarded_block;
2466 struct dm_bio_prison_cell *cell;
2467 struct policy_result lookup_result;
Heinz Mauelshagene893fba2014-03-12 16:13:39 +01002468 struct per_bio_data *pb = init_per_bio_data(bio, pb_data_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002469
Heinz Mauelshagene893fba2014-03-12 16:13:39 +01002470 if (unlikely(from_oblock(block) >= from_oblock(cache->origin_blocks))) {
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002471 /*
2472 * This can only occur if the io goes to a partial block at
2473 * the end of the origin device. We don't cache these.
2474 * Just remap to the origin and carry on.
2475 */
Heinz Mauelshagene893fba2014-03-12 16:13:39 +01002476 remap_to_origin(cache, bio);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002477 return DM_MAPIO_REMAPPED;
2478 }
2479
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002480 if (bio->bi_rw & (REQ_FLUSH | REQ_FUA | REQ_DISCARD)) {
2481 defer_bio(cache, bio);
2482 return DM_MAPIO_SUBMITTED;
2483 }
2484
2485 /*
2486 * Check to see if that block is currently migrating.
2487 */
2488 cell = alloc_prison_cell(cache);
2489 if (!cell) {
2490 defer_bio(cache, bio);
2491 return DM_MAPIO_SUBMITTED;
2492 }
2493
2494 r = bio_detain(cache, block, bio, cell,
2495 (cell_free_fn) free_prison_cell,
2496 cache, &cell);
2497 if (r) {
2498 if (r < 0)
2499 defer_bio(cache, bio);
2500
2501 return DM_MAPIO_SUBMITTED;
2502 }
2503
2504 discarded_block = is_discarded_oblock(cache, block);
2505
2506 r = policy_map(cache->policy, block, false, can_migrate, discarded_block,
2507 bio, &lookup_result);
2508 if (r == -EWOULDBLOCK) {
2509 cell_defer(cache, cell, true);
2510 return DM_MAPIO_SUBMITTED;
2511
2512 } else if (r) {
2513 DMERR_LIMIT("Unexpected return from cache replacement policy: %d", r);
2514 bio_io_error(bio);
2515 return DM_MAPIO_SUBMITTED;
2516 }
2517
Joe Thornber2ee57d52013-10-24 14:10:29 -04002518 r = DM_MAPIO_REMAPPED;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002519 switch (lookup_result.op) {
2520 case POLICY_HIT:
Joe Thornber2ee57d52013-10-24 14:10:29 -04002521 if (passthrough_mode(&cache->features)) {
2522 if (bio_data_dir(bio) == WRITE) {
2523 /*
2524 * We need to invalidate this block, so
2525 * defer for the worker thread.
2526 */
2527 cell_defer(cache, cell, true);
2528 r = DM_MAPIO_SUBMITTED;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002529
Joe Thornber2ee57d52013-10-24 14:10:29 -04002530 } else {
2531 pb->all_io_entry = dm_deferred_entry_inc(cache->all_io_ds);
2532 inc_miss_counter(cache, bio);
2533 remap_to_origin_clear_discard(cache, bio, block);
Joe Thornbere2e74d62013-03-20 17:21:27 +00002534
Joe Thornber2ee57d52013-10-24 14:10:29 -04002535 cell_defer(cache, cell, false);
2536 }
2537
2538 } else {
2539 inc_hit_counter(cache, bio);
2540
2541 if (bio_data_dir(bio) == WRITE && writethrough_mode(&cache->features) &&
2542 !is_dirty(cache, lookup_result.cblock))
2543 remap_to_origin_then_cache(cache, bio, block, lookup_result.cblock);
2544 else
2545 remap_to_cache_dirty(cache, bio, block, lookup_result.cblock);
2546
2547 cell_defer(cache, cell, false);
2548 }
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002549 break;
2550
2551 case POLICY_MISS:
2552 inc_miss_counter(cache, bio);
2553 pb->all_io_entry = dm_deferred_entry_inc(cache->all_io_ds);
2554
2555 if (pb->req_nr != 0) {
2556 /*
2557 * This is a duplicate writethrough io that is no
2558 * longer needed because the block has been demoted.
2559 */
2560 bio_endio(bio, 0);
2561 cell_defer(cache, cell, false);
2562 return DM_MAPIO_SUBMITTED;
2563 } else {
2564 remap_to_origin_clear_discard(cache, bio, block);
2565 cell_defer(cache, cell, false);
2566 }
2567 break;
2568
2569 default:
2570 DMERR_LIMIT("%s: erroring bio: unknown policy op: %u", __func__,
2571 (unsigned) lookup_result.op);
2572 bio_io_error(bio);
Joe Thornber2ee57d52013-10-24 14:10:29 -04002573 r = DM_MAPIO_SUBMITTED;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002574 }
2575
Joe Thornber2ee57d52013-10-24 14:10:29 -04002576 return r;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002577}
2578
2579static int cache_end_io(struct dm_target *ti, struct bio *bio, int error)
2580{
2581 struct cache *cache = ti->private;
2582 unsigned long flags;
Mike Snitzer19b00922013-04-05 15:36:34 +01002583 size_t pb_data_size = get_per_bio_data_size(cache);
2584 struct per_bio_data *pb = get_per_bio_data(bio, pb_data_size);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002585
2586 if (pb->tick) {
2587 policy_tick(cache->policy);
2588
2589 spin_lock_irqsave(&cache->lock, flags);
2590 cache->need_tick_bio = true;
2591 spin_unlock_irqrestore(&cache->lock, flags);
2592 }
2593
2594 check_for_quiesced_migrations(cache, pb);
2595
2596 return 0;
2597}
2598
2599static int write_dirty_bitset(struct cache *cache)
2600{
2601 unsigned i, r;
2602
2603 for (i = 0; i < from_cblock(cache->cache_size); i++) {
2604 r = dm_cache_set_dirty(cache->cmd, to_cblock(i),
2605 is_dirty(cache, to_cblock(i)));
2606 if (r)
2607 return r;
2608 }
2609
2610 return 0;
2611}
2612
2613static int write_discard_bitset(struct cache *cache)
2614{
2615 unsigned i, r;
2616
2617 r = dm_cache_discard_bitset_resize(cache->cmd, cache->discard_block_size,
2618 cache->discard_nr_blocks);
2619 if (r) {
2620 DMERR("could not resize on-disk discard bitset");
2621 return r;
2622 }
2623
2624 for (i = 0; i < from_dblock(cache->discard_nr_blocks); i++) {
2625 r = dm_cache_set_discard(cache->cmd, to_dblock(i),
2626 is_discarded(cache, to_dblock(i)));
2627 if (r)
2628 return r;
2629 }
2630
2631 return 0;
2632}
2633
2634static int save_hint(void *context, dm_cblock_t cblock, dm_oblock_t oblock,
2635 uint32_t hint)
2636{
2637 struct cache *cache = context;
2638 return dm_cache_save_hint(cache->cmd, cblock, hint);
2639}
2640
2641static int write_hints(struct cache *cache)
2642{
2643 int r;
2644
2645 r = dm_cache_begin_hints(cache->cmd, cache->policy);
2646 if (r) {
2647 DMERR("dm_cache_begin_hints failed");
2648 return r;
2649 }
2650
2651 r = policy_walk_mappings(cache->policy, save_hint, cache);
2652 if (r)
2653 DMERR("policy_walk_mappings failed");
2654
2655 return r;
2656}
2657
2658/*
2659 * returns true on success
2660 */
2661static bool sync_metadata(struct cache *cache)
2662{
2663 int r1, r2, r3, r4;
2664
2665 r1 = write_dirty_bitset(cache);
2666 if (r1)
2667 DMERR("could not write dirty bitset");
2668
2669 r2 = write_discard_bitset(cache);
2670 if (r2)
2671 DMERR("could not write discard bitset");
2672
2673 save_stats(cache);
2674
2675 r3 = write_hints(cache);
2676 if (r3)
2677 DMERR("could not write hints");
2678
2679 /*
2680 * If writing the above metadata failed, we still commit, but don't
2681 * set the clean shutdown flag. This will effectively force every
2682 * dirty bit to be set on reload.
2683 */
2684 r4 = dm_cache_commit(cache->cmd, !r1 && !r2 && !r3);
2685 if (r4)
2686 DMERR("could not write cache metadata. Data loss may occur.");
2687
2688 return !r1 && !r2 && !r3 && !r4;
2689}
2690
2691static void cache_postsuspend(struct dm_target *ti)
2692{
2693 struct cache *cache = ti->private;
2694
2695 start_quiescing(cache);
2696 wait_for_migrations(cache);
2697 stop_worker(cache);
2698 requeue_deferred_io(cache);
2699 stop_quiescing(cache);
2700
2701 (void) sync_metadata(cache);
2702}
2703
2704static int load_mapping(void *context, dm_oblock_t oblock, dm_cblock_t cblock,
2705 bool dirty, uint32_t hint, bool hint_valid)
2706{
2707 int r;
2708 struct cache *cache = context;
2709
2710 r = policy_load_mapping(cache->policy, oblock, cblock, hint, hint_valid);
2711 if (r)
2712 return r;
2713
2714 if (dirty)
2715 set_dirty(cache, oblock, cblock);
2716 else
2717 clear_dirty(cache, oblock, cblock);
2718
2719 return 0;
2720}
2721
2722static int load_discard(void *context, sector_t discard_block_size,
2723 dm_dblock_t dblock, bool discard)
2724{
2725 struct cache *cache = context;
2726
2727 /* FIXME: handle mis-matched block size */
2728
2729 if (discard)
2730 set_discard(cache, dblock);
2731 else
2732 clear_discard(cache, dblock);
2733
2734 return 0;
2735}
2736
Joe Thornberf494a9c2013-10-31 13:55:49 -04002737static dm_cblock_t get_cache_dev_size(struct cache *cache)
2738{
2739 sector_t size = get_dev_size(cache->cache_dev);
2740 (void) sector_div(size, cache->sectors_per_block);
2741 return to_cblock(size);
2742}
2743
2744static bool can_resize(struct cache *cache, dm_cblock_t new_size)
2745{
2746 if (from_cblock(new_size) > from_cblock(cache->cache_size))
2747 return true;
2748
2749 /*
2750 * We can't drop a dirty block when shrinking the cache.
2751 */
2752 while (from_cblock(new_size) < from_cblock(cache->cache_size)) {
2753 new_size = to_cblock(from_cblock(new_size) + 1);
2754 if (is_dirty(cache, new_size)) {
2755 DMERR("unable to shrink cache; cache block %llu is dirty",
2756 (unsigned long long) from_cblock(new_size));
2757 return false;
2758 }
2759 }
2760
2761 return true;
2762}
2763
2764static int resize_cache_dev(struct cache *cache, dm_cblock_t new_size)
2765{
2766 int r;
2767
Vincent Pelletier08844802013-11-30 12:58:42 +01002768 r = dm_cache_resize(cache->cmd, new_size);
Joe Thornberf494a9c2013-10-31 13:55:49 -04002769 if (r) {
2770 DMERR("could not resize cache metadata");
2771 return r;
2772 }
2773
2774 cache->cache_size = new_size;
2775
2776 return 0;
2777}
2778
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002779static int cache_preresume(struct dm_target *ti)
2780{
2781 int r = 0;
2782 struct cache *cache = ti->private;
Joe Thornberf494a9c2013-10-31 13:55:49 -04002783 dm_cblock_t csize = get_cache_dev_size(cache);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002784
2785 /*
2786 * Check to see if the cache has resized.
2787 */
Joe Thornberf494a9c2013-10-31 13:55:49 -04002788 if (!cache->sized) {
2789 r = resize_cache_dev(cache, csize);
2790 if (r)
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002791 return r;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002792
2793 cache->sized = true;
Joe Thornberf494a9c2013-10-31 13:55:49 -04002794
2795 } else if (csize != cache->cache_size) {
2796 if (!can_resize(cache, csize))
2797 return -EINVAL;
2798
2799 r = resize_cache_dev(cache, csize);
2800 if (r)
2801 return r;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002802 }
2803
2804 if (!cache->loaded_mappings) {
Mike Snitzerea2dd8c2013-03-20 17:21:28 +00002805 r = dm_cache_load_mappings(cache->cmd, cache->policy,
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002806 load_mapping, cache);
2807 if (r) {
2808 DMERR("could not load cache mappings");
2809 return r;
2810 }
2811
2812 cache->loaded_mappings = true;
2813 }
2814
2815 if (!cache->loaded_discards) {
2816 r = dm_cache_load_discards(cache->cmd, load_discard, cache);
2817 if (r) {
2818 DMERR("could not load origin discards");
2819 return r;
2820 }
2821
2822 cache->loaded_discards = true;
2823 }
2824
2825 return r;
2826}
2827
2828static void cache_resume(struct dm_target *ti)
2829{
2830 struct cache *cache = ti->private;
2831
2832 cache->need_tick_bio = true;
2833 do_waker(&cache->waker.work);
2834}
2835
2836/*
2837 * Status format:
2838 *
Mike Snitzer6a388612014-01-09 16:04:12 -05002839 * <metadata block size> <#used metadata blocks>/<#total metadata blocks>
2840 * <cache block size> <#used cache blocks>/<#total cache blocks>
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002841 * <#read hits> <#read misses> <#write hits> <#write misses>
Mike Snitzer6a388612014-01-09 16:04:12 -05002842 * <#demotions> <#promotions> <#dirty>
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002843 * <#features> <features>*
2844 * <#core args> <core args>
Mike Snitzer2e68c4e2014-01-15 21:06:55 -05002845 * <policy name> <#policy args> <policy args>*
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002846 */
2847static void cache_status(struct dm_target *ti, status_type_t type,
2848 unsigned status_flags, char *result, unsigned maxlen)
2849{
2850 int r = 0;
2851 unsigned i;
2852 ssize_t sz = 0;
2853 dm_block_t nr_free_blocks_metadata = 0;
2854 dm_block_t nr_blocks_metadata = 0;
2855 char buf[BDEVNAME_SIZE];
2856 struct cache *cache = ti->private;
2857 dm_cblock_t residency;
2858
2859 switch (type) {
2860 case STATUSTYPE_INFO:
2861 /* Commit to ensure statistics aren't out-of-date */
2862 if (!(status_flags & DM_STATUS_NOFLUSH_FLAG) && !dm_suspended(ti)) {
2863 r = dm_cache_commit(cache->cmd, false);
2864 if (r)
2865 DMERR("could not commit metadata for accurate status");
2866 }
2867
2868 r = dm_cache_get_free_metadata_block_count(cache->cmd,
2869 &nr_free_blocks_metadata);
2870 if (r) {
2871 DMERR("could not get metadata free block count");
2872 goto err;
2873 }
2874
2875 r = dm_cache_get_metadata_dev_size(cache->cmd, &nr_blocks_metadata);
2876 if (r) {
2877 DMERR("could not get metadata device size");
2878 goto err;
2879 }
2880
2881 residency = policy_residency(cache->policy);
2882
Mike Snitzer6a388612014-01-09 16:04:12 -05002883 DMEMIT("%u %llu/%llu %u %llu/%llu %u %u %u %u %u %u %llu ",
2884 (unsigned)(DM_CACHE_METADATA_BLOCK_SIZE >> SECTOR_SHIFT),
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002885 (unsigned long long)(nr_blocks_metadata - nr_free_blocks_metadata),
2886 (unsigned long long)nr_blocks_metadata,
Mike Snitzer6a388612014-01-09 16:04:12 -05002887 cache->sectors_per_block,
2888 (unsigned long long) from_cblock(residency),
2889 (unsigned long long) from_cblock(cache->cache_size),
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002890 (unsigned) atomic_read(&cache->stats.read_hit),
2891 (unsigned) atomic_read(&cache->stats.read_miss),
2892 (unsigned) atomic_read(&cache->stats.write_hit),
2893 (unsigned) atomic_read(&cache->stats.write_miss),
2894 (unsigned) atomic_read(&cache->stats.demotion),
2895 (unsigned) atomic_read(&cache->stats.promotion),
Mike Snitzer6a388612014-01-09 16:04:12 -05002896 (unsigned long long) from_cblock(cache->nr_dirty));
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002897
Joe Thornber2ee57d52013-10-24 14:10:29 -04002898 if (writethrough_mode(&cache->features))
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002899 DMEMIT("1 writethrough ");
Joe Thornber2ee57d52013-10-24 14:10:29 -04002900
2901 else if (passthrough_mode(&cache->features))
2902 DMEMIT("1 passthrough ");
2903
2904 else if (writeback_mode(&cache->features))
2905 DMEMIT("1 writeback ");
2906
2907 else {
2908 DMERR("internal error: unknown io mode: %d", (int) cache->features.io_mode);
2909 goto err;
2910 }
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002911
2912 DMEMIT("2 migration_threshold %llu ", (unsigned long long) cache->migration_threshold);
Mike Snitzer2e68c4e2014-01-15 21:06:55 -05002913
2914 DMEMIT("%s ", dm_cache_policy_get_name(cache->policy));
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002915 if (sz < maxlen) {
2916 r = policy_emit_config_values(cache->policy, result + sz, maxlen - sz);
2917 if (r)
2918 DMERR("policy_emit_config_values returned %d", r);
2919 }
2920
2921 break;
2922
2923 case STATUSTYPE_TABLE:
2924 format_dev_t(buf, cache->metadata_dev->bdev->bd_dev);
2925 DMEMIT("%s ", buf);
2926 format_dev_t(buf, cache->cache_dev->bdev->bd_dev);
2927 DMEMIT("%s ", buf);
2928 format_dev_t(buf, cache->origin_dev->bdev->bd_dev);
2929 DMEMIT("%s", buf);
2930
2931 for (i = 0; i < cache->nr_ctr_args - 1; i++)
2932 DMEMIT(" %s", cache->ctr_args[i]);
2933 if (cache->nr_ctr_args)
2934 DMEMIT(" %s", cache->ctr_args[cache->nr_ctr_args - 1]);
2935 }
2936
2937 return;
2938
2939err:
2940 DMEMIT("Error");
2941}
2942
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00002943/*
Joe Thornber65790ff2013-11-08 16:39:50 +00002944 * A cache block range can take two forms:
2945 *
2946 * i) A single cblock, eg. '3456'
2947 * ii) A begin and end cblock with dots between, eg. 123-234
2948 */
2949static int parse_cblock_range(struct cache *cache, const char *str,
2950 struct cblock_range *result)
2951{
2952 char dummy;
2953 uint64_t b, e;
2954 int r;
2955
2956 /*
2957 * Try and parse form (ii) first.
2958 */
2959 r = sscanf(str, "%llu-%llu%c", &b, &e, &dummy);
2960 if (r < 0)
2961 return r;
2962
2963 if (r == 2) {
2964 result->begin = to_cblock(b);
2965 result->end = to_cblock(e);
2966 return 0;
2967 }
2968
2969 /*
2970 * That didn't work, try form (i).
2971 */
2972 r = sscanf(str, "%llu%c", &b, &dummy);
2973 if (r < 0)
2974 return r;
2975
2976 if (r == 1) {
2977 result->begin = to_cblock(b);
2978 result->end = to_cblock(from_cblock(result->begin) + 1u);
2979 return 0;
2980 }
2981
2982 DMERR("invalid cblock range '%s'", str);
2983 return -EINVAL;
2984}
2985
2986static int validate_cblock_range(struct cache *cache, struct cblock_range *range)
2987{
2988 uint64_t b = from_cblock(range->begin);
2989 uint64_t e = from_cblock(range->end);
2990 uint64_t n = from_cblock(cache->cache_size);
2991
2992 if (b >= n) {
2993 DMERR("begin cblock out of range: %llu >= %llu", b, n);
2994 return -EINVAL;
2995 }
2996
2997 if (e > n) {
2998 DMERR("end cblock out of range: %llu > %llu", e, n);
2999 return -EINVAL;
3000 }
3001
3002 if (b >= e) {
3003 DMERR("invalid cblock range: %llu >= %llu", b, e);
3004 return -EINVAL;
3005 }
3006
3007 return 0;
3008}
3009
3010static int request_invalidation(struct cache *cache, struct cblock_range *range)
3011{
3012 struct invalidation_request req;
3013
3014 INIT_LIST_HEAD(&req.list);
3015 req.cblocks = range;
3016 atomic_set(&req.complete, 0);
3017 req.err = 0;
3018 init_waitqueue_head(&req.result_wait);
3019
3020 spin_lock(&cache->invalidation_lock);
3021 list_add(&req.list, &cache->invalidation_requests);
3022 spin_unlock(&cache->invalidation_lock);
3023 wake_worker(cache);
3024
3025 wait_event(req.result_wait, atomic_read(&req.complete));
3026 return req.err;
3027}
3028
3029static int process_invalidate_cblocks_message(struct cache *cache, unsigned count,
3030 const char **cblock_ranges)
3031{
3032 int r = 0;
3033 unsigned i;
3034 struct cblock_range range;
3035
3036 if (!passthrough_mode(&cache->features)) {
3037 DMERR("cache has to be in passthrough mode for invalidation");
3038 return -EPERM;
3039 }
3040
3041 for (i = 0; i < count; i++) {
3042 r = parse_cblock_range(cache, cblock_ranges[i], &range);
3043 if (r)
3044 break;
3045
3046 r = validate_cblock_range(cache, &range);
3047 if (r)
3048 break;
3049
3050 /*
3051 * Pass begin and end origin blocks to the worker and wake it.
3052 */
3053 r = request_invalidation(cache, &range);
3054 if (r)
3055 break;
3056 }
3057
3058 return r;
3059}
3060
3061/*
3062 * Supports
3063 * "<key> <value>"
3064 * and
3065 * "invalidate_cblocks [(<begin>)|(<begin>-<end>)]*
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00003066 *
3067 * The key migration_threshold is supported by the cache target core.
3068 */
3069static int cache_message(struct dm_target *ti, unsigned argc, char **argv)
3070{
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00003071 struct cache *cache = ti->private;
3072
Joe Thornber65790ff2013-11-08 16:39:50 +00003073 if (!argc)
3074 return -EINVAL;
3075
Mike Snitzer7b6b2bc2013-11-12 12:17:43 -05003076 if (!strcasecmp(argv[0], "invalidate_cblocks"))
Joe Thornber65790ff2013-11-08 16:39:50 +00003077 return process_invalidate_cblocks_message(cache, argc - 1, (const char **) argv + 1);
3078
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00003079 if (argc != 2)
3080 return -EINVAL;
3081
Joe Thornber2f14f4b2013-05-10 14:37:21 +01003082 return set_config_value(cache, argv[0], argv[1]);
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00003083}
3084
3085static int cache_iterate_devices(struct dm_target *ti,
3086 iterate_devices_callout_fn fn, void *data)
3087{
3088 int r = 0;
3089 struct cache *cache = ti->private;
3090
3091 r = fn(ti, cache->cache_dev, 0, get_dev_size(cache->cache_dev), data);
3092 if (!r)
3093 r = fn(ti, cache->origin_dev, 0, ti->len, data);
3094
3095 return r;
3096}
3097
3098/*
3099 * We assume I/O is going to the origin (which is the volume
3100 * more likely to have restrictions e.g. by being striped).
3101 * (Looking up the exact location of the data would be expensive
3102 * and could always be out of date by the time the bio is submitted.)
3103 */
3104static int cache_bvec_merge(struct dm_target *ti,
3105 struct bvec_merge_data *bvm,
3106 struct bio_vec *biovec, int max_size)
3107{
3108 struct cache *cache = ti->private;
3109 struct request_queue *q = bdev_get_queue(cache->origin_dev->bdev);
3110
3111 if (!q->merge_bvec_fn)
3112 return max_size;
3113
3114 bvm->bi_bdev = cache->origin_dev->bdev;
3115 return min(max_size, q->merge_bvec_fn(q, bvm, biovec));
3116}
3117
3118static void set_discard_limits(struct cache *cache, struct queue_limits *limits)
3119{
3120 /*
3121 * FIXME: these limits may be incompatible with the cache device
3122 */
3123 limits->max_discard_sectors = cache->discard_block_size * 1024;
3124 limits->discard_granularity = cache->discard_block_size << SECTOR_SHIFT;
3125}
3126
3127static void cache_io_hints(struct dm_target *ti, struct queue_limits *limits)
3128{
3129 struct cache *cache = ti->private;
Mike Snitzerf6109372013-08-20 15:02:41 -04003130 uint64_t io_opt_sectors = limits->io_opt >> SECTOR_SHIFT;
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00003131
Mike Snitzerf6109372013-08-20 15:02:41 -04003132 /*
3133 * If the system-determined stacked limits are compatible with the
3134 * cache's blocksize (io_opt is a factor) do not override them.
3135 */
3136 if (io_opt_sectors < cache->sectors_per_block ||
3137 do_div(io_opt_sectors, cache->sectors_per_block)) {
3138 blk_limits_io_min(limits, 0);
3139 blk_limits_io_opt(limits, cache->sectors_per_block << SECTOR_SHIFT);
3140 }
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00003141 set_discard_limits(cache, limits);
3142}
3143
3144/*----------------------------------------------------------------*/
3145
3146static struct target_type cache_target = {
3147 .name = "cache",
Mike Snitzer6a388612014-01-09 16:04:12 -05003148 .version = {1, 3, 0},
Joe Thornberc6b4fcb2013-03-01 22:45:51 +00003149 .module = THIS_MODULE,
3150 .ctr = cache_ctr,
3151 .dtr = cache_dtr,
3152 .map = cache_map,
3153 .end_io = cache_end_io,
3154 .postsuspend = cache_postsuspend,
3155 .preresume = cache_preresume,
3156 .resume = cache_resume,
3157 .status = cache_status,
3158 .message = cache_message,
3159 .iterate_devices = cache_iterate_devices,
3160 .merge = cache_bvec_merge,
3161 .io_hints = cache_io_hints,
3162};
3163
3164static int __init dm_cache_init(void)
3165{
3166 int r;
3167
3168 r = dm_register_target(&cache_target);
3169 if (r) {
3170 DMERR("cache target registration failed: %d", r);
3171 return r;
3172 }
3173
3174 migration_cache = KMEM_CACHE(dm_cache_migration, 0);
3175 if (!migration_cache) {
3176 dm_unregister_target(&cache_target);
3177 return -ENOMEM;
3178 }
3179
3180 return 0;
3181}
3182
3183static void __exit dm_cache_exit(void)
3184{
3185 dm_unregister_target(&cache_target);
3186 kmem_cache_destroy(migration_cache);
3187}
3188
3189module_init(dm_cache_init);
3190module_exit(dm_cache_exit);
3191
3192MODULE_DESCRIPTION(DM_NAME " cache target");
3193MODULE_AUTHOR("Joe Thornber <ejt@redhat.com>");
3194MODULE_LICENSE("GPL");