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Merge branch 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/jikos/hid
[mirror_ubuntu-zesty-kernel.git] / drivers / md / dm-log.c
CommitLineData
1da177e4
LT
1/*
2 * Copyright (C) 2003 Sistina Software
b7fd54a7 3 * Copyright (C) 2004-2008 Red Hat, Inc. All rights reserved.
1da177e4
LT
4 *
5 * This file is released under the LGPL.
6 */
7
8#include <linux/init.h>
9#include <linux/slab.h>
10#include <linux/module.h>
11#include <linux/vmalloc.h>
a765e20e
AK
12#include <linux/dm-io.h>
13#include <linux/dm-dirty-log.h>
1da177e4 14
586e80e6 15#include <linux/device-mapper.h>
1da177e4 16
b7fd54a7 17#define DM_MSG_PREFIX "dirty region log"
72d94861 18
1da177e4
LT
19static LIST_HEAD(_log_types);
20static DEFINE_SPINLOCK(_lock);
21
ec44ab9d 22static struct dm_dirty_log_type *__find_dirty_log_type(const char *name)
1da177e4 23{
ec44ab9d 24 struct dm_dirty_log_type *log_type;
2a23aa1d
JB
25
26 list_for_each_entry(log_type, &_log_types, list)
ec44ab9d 27 if (!strcmp(name, log_type->name))
2a23aa1d
JB
28 return log_type;
29
30 return NULL;
31}
32
ec44ab9d 33static struct dm_dirty_log_type *_get_dirty_log_type(const char *name)
2a23aa1d 34{
ec44ab9d 35 struct dm_dirty_log_type *log_type;
1da177e4
LT
36
37 spin_lock(&_lock);
2a23aa1d
JB
38
39 log_type = __find_dirty_log_type(name);
ec44ab9d 40 if (log_type && !try_module_get(log_type->module))
84e67c93 41 log_type = NULL;
1da177e4
LT
42
43 spin_unlock(&_lock);
2a23aa1d
JB
44
45 return log_type;
1da177e4
LT
46}
47
fb8b2848
JB
48/*
49 * get_type
50 * @type_name
51 *
2a23aa1d 52 * Attempt to retrieve the dm_dirty_log_type by name. If not already
fb8b2848
JB
53 * available, attempt to load the appropriate module.
54 *
55 * Log modules are named "dm-log-" followed by the 'type_name'.
56 * Modules may contain multiple types.
57 * This function will first try the module "dm-log-<type_name>",
58 * then truncate 'type_name' on the last '-' and try again.
59 *
60 * For example, if type_name was "clustered-disk", it would search
61 * 'dm-log-clustered-disk' then 'dm-log-clustered'.
62 *
63 * Returns: dirty_log_type* on success, NULL on failure
64 */
416cd17b 65static struct dm_dirty_log_type *get_type(const char *type_name)
fb8b2848
JB
66{
67 char *p, *type_name_dup;
ec44ab9d 68 struct dm_dirty_log_type *log_type;
fb8b2848 69
2a23aa1d
JB
70 if (!type_name)
71 return NULL;
72
73 log_type = _get_dirty_log_type(type_name);
74 if (log_type)
ec44ab9d 75 return log_type;
fb8b2848
JB
76
77 type_name_dup = kstrdup(type_name, GFP_KERNEL);
78 if (!type_name_dup) {
79 DMWARN("No memory left to attempt log module load for \"%s\"",
80 type_name);
81 return NULL;
82 }
83
84 while (request_module("dm-log-%s", type_name_dup) ||
2a23aa1d 85 !(log_type = _get_dirty_log_type(type_name))) {
fb8b2848
JB
86 p = strrchr(type_name_dup, '-');
87 if (!p)
88 break;
89 p[0] = '\0';
90 }
91
2a23aa1d 92 if (!log_type)
fb8b2848
JB
93 DMWARN("Module for logging type \"%s\" not found.", type_name);
94
95 kfree(type_name_dup);
96
ec44ab9d 97 return log_type;
fb8b2848
JB
98}
99
416cd17b 100static void put_type(struct dm_dirty_log_type *type)
1da177e4 101{
2a23aa1d
JB
102 if (!type)
103 return;
104
1da177e4 105 spin_lock(&_lock);
ec44ab9d 106 if (!__find_dirty_log_type(type->name))
2a23aa1d
JB
107 goto out;
108
84e67c93 109 module_put(type->module);
2a23aa1d
JB
110
111out:
1da177e4
LT
112 spin_unlock(&_lock);
113}
114
b8206bc3
AK
115int dm_dirty_log_type_register(struct dm_dirty_log_type *type)
116{
2a23aa1d
JB
117 int r = 0;
118
b8206bc3 119 spin_lock(&_lock);
2a23aa1d 120 if (!__find_dirty_log_type(type->name))
ec44ab9d
MS
121 list_add(&type->list, &_log_types);
122 else
2a23aa1d 123 r = -EEXIST;
b8206bc3
AK
124 spin_unlock(&_lock);
125
2a23aa1d 126 return r;
b8206bc3
AK
127}
128EXPORT_SYMBOL(dm_dirty_log_type_register);
129
130int dm_dirty_log_type_unregister(struct dm_dirty_log_type *type)
131{
132 spin_lock(&_lock);
133
ec44ab9d 134 if (!__find_dirty_log_type(type->name)) {
2a23aa1d
JB
135 spin_unlock(&_lock);
136 return -EINVAL;
137 }
138
ec44ab9d 139 list_del(&type->list);
b8206bc3
AK
140
141 spin_unlock(&_lock);
142
143 return 0;
144}
145EXPORT_SYMBOL(dm_dirty_log_type_unregister);
146
416cd17b
HM
147struct dm_dirty_log *dm_dirty_log_create(const char *type_name,
148 struct dm_target *ti,
149 unsigned int argc, char **argv)
1da177e4 150{
416cd17b
HM
151 struct dm_dirty_log_type *type;
152 struct dm_dirty_log *log;
1da177e4
LT
153
154 log = kmalloc(sizeof(*log), GFP_KERNEL);
155 if (!log)
156 return NULL;
157
158 type = get_type(type_name);
159 if (!type) {
160 kfree(log);
161 return NULL;
162 }
163
164 log->type = type;
165 if (type->ctr(log, ti, argc, argv)) {
166 kfree(log);
167 put_type(type);
168 return NULL;
169 }
170
171 return log;
172}
416cd17b 173EXPORT_SYMBOL(dm_dirty_log_create);
1da177e4 174
416cd17b 175void dm_dirty_log_destroy(struct dm_dirty_log *log)
1da177e4
LT
176{
177 log->type->dtr(log);
178 put_type(log->type);
179 kfree(log);
180}
416cd17b 181EXPORT_SYMBOL(dm_dirty_log_destroy);
1da177e4
LT
182
183/*-----------------------------------------------------------------
184 * Persistent and core logs share a lot of their implementation.
185 * FIXME: need a reload method to be called from a resume
186 *---------------------------------------------------------------*/
187/*
188 * Magic for persistent mirrors: "MiRr"
189 */
190#define MIRROR_MAGIC 0x4D695272
191
192/*
193 * The on-disk version of the metadata.
194 */
a4fc4717 195#define MIRROR_DISK_VERSION 2
1da177e4
LT
196#define LOG_OFFSET 2
197
198struct log_header {
199 uint32_t magic;
200
201 /*
202 * Simple, incrementing version. no backward
203 * compatibility.
204 */
205 uint32_t version;
206 sector_t nr_regions;
207};
208
209struct log_c {
210 struct dm_target *ti;
211 int touched;
212 uint32_t region_size;
213 unsigned int region_count;
214 region_t sync_count;
215
216 unsigned bitset_uint32_count;
217 uint32_t *clean_bits;
218 uint32_t *sync_bits;
219 uint32_t *recovering_bits; /* FIXME: this seems excessive */
220
221 int sync_search;
222
223 /* Resync flag */
224 enum sync {
225 DEFAULTSYNC, /* Synchronize if necessary */
226 NOSYNC, /* Devices known to be already in sync */
227 FORCESYNC, /* Force a sync to happen */
228 } sync;
229
5d234d1e
HM
230 struct dm_io_request io_req;
231
1da177e4
LT
232 /*
233 * Disk log fields
234 */
01d03a66 235 int log_dev_failed;
1da177e4
LT
236 struct dm_dev *log_dev;
237 struct log_header header;
238
22a1ceb1 239 struct dm_io_region header_location;
1da177e4 240 struct log_header *disk_header;
1da177e4
LT
241};
242
243/*
244 * The touched member needs to be updated every time we access
245 * one of the bitsets.
246 */
416cd17b 247static inline int log_test_bit(uint32_t *bs, unsigned bit)
1da177e4 248{
a4fc4717 249 return ext2_test_bit(bit, (unsigned long *) bs) ? 1 : 0;
1da177e4
LT
250}
251
252static inline void log_set_bit(struct log_c *l,
253 uint32_t *bs, unsigned bit)
254{
a4fc4717 255 ext2_set_bit(bit, (unsigned long *) bs);
1da177e4
LT
256 l->touched = 1;
257}
258
259static inline void log_clear_bit(struct log_c *l,
260 uint32_t *bs, unsigned bit)
261{
a4fc4717 262 ext2_clear_bit(bit, (unsigned long *) bs);
1da177e4
LT
263 l->touched = 1;
264}
265
266/*----------------------------------------------------------------
267 * Header IO
268 *--------------------------------------------------------------*/
269static void header_to_disk(struct log_header *core, struct log_header *disk)
270{
271 disk->magic = cpu_to_le32(core->magic);
272 disk->version = cpu_to_le32(core->version);
273 disk->nr_regions = cpu_to_le64(core->nr_regions);
274}
275
276static void header_from_disk(struct log_header *core, struct log_header *disk)
277{
278 core->magic = le32_to_cpu(disk->magic);
279 core->version = le32_to_cpu(disk->version);
280 core->nr_regions = le64_to_cpu(disk->nr_regions);
281}
282
5d234d1e
HM
283static int rw_header(struct log_c *lc, int rw)
284{
285 lc->io_req.bi_rw = rw;
5d234d1e
HM
286
287 return dm_io(&lc->io_req, 1, &lc->header_location, NULL);
288}
289
1da177e4
LT
290static int read_header(struct log_c *log)
291{
292 int r;
1da177e4 293
5d234d1e 294 r = rw_header(log, READ);
1da177e4
LT
295 if (r)
296 return r;
297
298 header_from_disk(&log->header, log->disk_header);
299
300 /* New log required? */
301 if (log->sync != DEFAULTSYNC || log->header.magic != MIRROR_MAGIC) {
302 log->header.magic = MIRROR_MAGIC;
303 log->header.version = MIRROR_DISK_VERSION;
304 log->header.nr_regions = 0;
305 }
306
a4fc4717
PC
307#ifdef __LITTLE_ENDIAN
308 if (log->header.version == 1)
309 log->header.version = 2;
310#endif
311
1da177e4
LT
312 if (log->header.version != MIRROR_DISK_VERSION) {
313 DMWARN("incompatible disk log version");
314 return -EINVAL;
315 }
316
317 return 0;
318}
319
2045e88e
MB
320static int _check_region_size(struct dm_target *ti, uint32_t region_size)
321{
322 if (region_size < 2 || region_size > ti->len)
323 return 0;
324
325 if (!is_power_of_2(region_size))
326 return 0;
327
328 return 1;
329}
330
1da177e4
LT
331/*----------------------------------------------------------------
332 * core log constructor/destructor
333 *
334 * argv contains region_size followed optionally by [no]sync
335 *--------------------------------------------------------------*/
336#define BYTE_SHIFT 3
416cd17b 337static int create_log_context(struct dm_dirty_log *log, struct dm_target *ti,
b7cca195
AK
338 unsigned int argc, char **argv,
339 struct dm_dev *dev)
1da177e4
LT
340{
341 enum sync sync = DEFAULTSYNC;
342
343 struct log_c *lc;
344 uint32_t region_size;
345 unsigned int region_count;
b7cca195 346 size_t bitset_size, buf_size;
5d234d1e 347 int r;
1da177e4
LT
348
349 if (argc < 1 || argc > 2) {
b7fd54a7 350 DMWARN("wrong number of arguments to dirty region log");
1da177e4
LT
351 return -EINVAL;
352 }
353
354 if (argc > 1) {
355 if (!strcmp(argv[1], "sync"))
356 sync = FORCESYNC;
357 else if (!strcmp(argv[1], "nosync"))
358 sync = NOSYNC;
359 else {
b7fd54a7
HM
360 DMWARN("unrecognised sync argument to "
361 "dirty region log: %s", argv[1]);
1da177e4
LT
362 return -EINVAL;
363 }
364 }
365
2045e88e
MB
366 if (sscanf(argv[0], "%u", &region_size) != 1 ||
367 !_check_region_size(ti, region_size)) {
368 DMWARN("invalid region size %s", argv[0]);
1da177e4
LT
369 return -EINVAL;
370 }
371
372 region_count = dm_sector_div_up(ti->len, region_size);
373
374 lc = kmalloc(sizeof(*lc), GFP_KERNEL);
375 if (!lc) {
376 DMWARN("couldn't allocate core log");
377 return -ENOMEM;
378 }
379
380 lc->ti = ti;
381 lc->touched = 0;
382 lc->region_size = region_size;
383 lc->region_count = region_count;
384 lc->sync = sync;
385
386 /*
0e56822d 387 * Work out how many "unsigned long"s we need to hold the bitset.
1da177e4
LT
388 */
389 bitset_size = dm_round_up(region_count,
29121bd0 390 sizeof(*lc->clean_bits) << BYTE_SHIFT);
1da177e4
LT
391 bitset_size >>= BYTE_SHIFT;
392
29121bd0 393 lc->bitset_uint32_count = bitset_size / sizeof(*lc->clean_bits);
b7cca195
AK
394
395 /*
396 * Disk log?
397 */
398 if (!dev) {
399 lc->clean_bits = vmalloc(bitset_size);
400 if (!lc->clean_bits) {
401 DMWARN("couldn't allocate clean bitset");
402 kfree(lc);
403 return -ENOMEM;
404 }
405 lc->disk_header = NULL;
406 } else {
407 lc->log_dev = dev;
01d03a66 408 lc->log_dev_failed = 0;
b7cca195
AK
409 lc->header_location.bdev = lc->log_dev->bdev;
410 lc->header_location.sector = 0;
411
412 /*
413 * Buffer holds both header and bitset.
414 */
18d8594d
MS
415 buf_size =
416 dm_round_up((LOG_OFFSET << SECTOR_SHIFT) + bitset_size,
417 bdev_logical_block_size(lc->header_location.
418 bdev));
ac1f0ac2 419
5657e8fa 420 if (buf_size > i_size_read(dev->bdev->bd_inode)) {
ac1f0ac2
MB
421 DMWARN("log device %s too small: need %llu bytes",
422 dev->name, (unsigned long long)buf_size);
423 kfree(lc);
424 return -EINVAL;
425 }
426
b7cca195 427 lc->header_location.count = buf_size >> SECTOR_SHIFT;
6f3af01c 428
5d234d1e 429 lc->io_req.mem.type = DM_IO_VMA;
6f3af01c 430 lc->io_req.notify.fn = NULL;
5d234d1e
HM
431 lc->io_req.client = dm_io_client_create(dm_div_up(buf_size,
432 PAGE_SIZE));
433 if (IS_ERR(lc->io_req.client)) {
434 r = PTR_ERR(lc->io_req.client);
435 DMWARN("couldn't allocate disk io client");
436 kfree(lc);
437 return -ENOMEM;
438 }
b7cca195
AK
439
440 lc->disk_header = vmalloc(buf_size);
441 if (!lc->disk_header) {
442 DMWARN("couldn't allocate disk log buffer");
c7a2bd19 443 dm_io_client_destroy(lc->io_req.client);
b7cca195
AK
444 kfree(lc);
445 return -ENOMEM;
446 }
447
6f3af01c 448 lc->io_req.mem.ptr.vma = lc->disk_header;
b7cca195
AK
449 lc->clean_bits = (void *)lc->disk_header +
450 (LOG_OFFSET << SECTOR_SHIFT);
1da177e4 451 }
b7cca195 452
1da177e4
LT
453 memset(lc->clean_bits, -1, bitset_size);
454
455 lc->sync_bits = vmalloc(bitset_size);
456 if (!lc->sync_bits) {
457 DMWARN("couldn't allocate sync bitset");
b7cca195
AK
458 if (!dev)
459 vfree(lc->clean_bits);
c7a2bd19
TY
460 else
461 dm_io_client_destroy(lc->io_req.client);
b7cca195 462 vfree(lc->disk_header);
1da177e4
LT
463 kfree(lc);
464 return -ENOMEM;
465 }
466 memset(lc->sync_bits, (sync == NOSYNC) ? -1 : 0, bitset_size);
467 lc->sync_count = (sync == NOSYNC) ? region_count : 0;
468
469 lc->recovering_bits = vmalloc(bitset_size);
470 if (!lc->recovering_bits) {
471 DMWARN("couldn't allocate sync bitset");
472 vfree(lc->sync_bits);
b7cca195
AK
473 if (!dev)
474 vfree(lc->clean_bits);
c7a2bd19
TY
475 else
476 dm_io_client_destroy(lc->io_req.client);
b7cca195 477 vfree(lc->disk_header);
1da177e4
LT
478 kfree(lc);
479 return -ENOMEM;
480 }
481 memset(lc->recovering_bits, 0, bitset_size);
482 lc->sync_search = 0;
483 log->context = lc;
b7cca195 484
1da177e4
LT
485 return 0;
486}
487
416cd17b 488static int core_ctr(struct dm_dirty_log *log, struct dm_target *ti,
b7cca195
AK
489 unsigned int argc, char **argv)
490{
491 return create_log_context(log, ti, argc, argv, NULL);
492}
493
494static void destroy_log_context(struct log_c *lc)
1da177e4 495{
1da177e4
LT
496 vfree(lc->sync_bits);
497 vfree(lc->recovering_bits);
498 kfree(lc);
499}
500
416cd17b 501static void core_dtr(struct dm_dirty_log *log)
b7cca195
AK
502{
503 struct log_c *lc = (struct log_c *) log->context;
504
505 vfree(lc->clean_bits);
506 destroy_log_context(lc);
507}
508
1da177e4
LT
509/*----------------------------------------------------------------
510 * disk log constructor/destructor
511 *
512 * argv contains log_device region_size followed optionally by [no]sync
513 *--------------------------------------------------------------*/
416cd17b 514static int disk_ctr(struct dm_dirty_log *log, struct dm_target *ti,
1da177e4
LT
515 unsigned int argc, char **argv)
516{
517 int r;
1da177e4
LT
518 struct dm_dev *dev;
519
520 if (argc < 2 || argc > 3) {
b7fd54a7 521 DMWARN("wrong number of arguments to disk dirty region log");
1da177e4
LT
522 return -EINVAL;
523 }
524
525 r = dm_get_device(ti, argv[0], 0, 0 /* FIXME */,
526 FMODE_READ | FMODE_WRITE, &dev);
527 if (r)
528 return r;
529
b7cca195 530 r = create_log_context(log, ti, argc - 1, argv + 1, dev);
1da177e4
LT
531 if (r) {
532 dm_put_device(ti, dev);
533 return r;
534 }
535
1da177e4 536 return 0;
1da177e4
LT
537}
538
416cd17b 539static void disk_dtr(struct dm_dirty_log *log)
1da177e4
LT
540{
541 struct log_c *lc = (struct log_c *) log->context;
b7cca195 542
1da177e4
LT
543 dm_put_device(lc->ti, lc->log_dev);
544 vfree(lc->disk_header);
5d234d1e 545 dm_io_client_destroy(lc->io_req.client);
b7cca195 546 destroy_log_context(lc);
1da177e4
LT
547}
548
549static int count_bits32(uint32_t *addr, unsigned size)
550{
551 int count = 0, i;
552
553 for (i = 0; i < size; i++) {
554 count += hweight32(*(addr+i));
555 }
556 return count;
557}
558
01d03a66
JB
559static void fail_log_device(struct log_c *lc)
560{
561 if (lc->log_dev_failed)
562 return;
563
564 lc->log_dev_failed = 1;
565 dm_table_event(lc->ti->table);
566}
567
416cd17b 568static int disk_resume(struct dm_dirty_log *log)
1da177e4
LT
569{
570 int r;
571 unsigned i;
572 struct log_c *lc = (struct log_c *) log->context;
573 size_t size = lc->bitset_uint32_count * sizeof(uint32_t);
574
575 /* read the disk header */
576 r = read_header(lc);
01d03a66 577 if (r) {
b7fd54a7 578 DMWARN("%s: Failed to read header on dirty region log device",
01d03a66
JB
579 lc->log_dev->name);
580 fail_log_device(lc);
ba8b45ce
JB
581 /*
582 * If the log device cannot be read, we must assume
583 * all regions are out-of-sync. If we simply return
584 * here, the state will be uninitialized and could
585 * lead us to return 'in-sync' status for regions
586 * that are actually 'out-of-sync'.
587 */
588 lc->header.nr_regions = 0;
01d03a66 589 }
1da177e4 590
8a835f11 591 /* set or clear any new bits -- device has grown */
1da177e4
LT
592 if (lc->sync == NOSYNC)
593 for (i = lc->header.nr_regions; i < lc->region_count; i++)
594 /* FIXME: amazingly inefficient */
595 log_set_bit(lc, lc->clean_bits, i);
596 else
597 for (i = lc->header.nr_regions; i < lc->region_count; i++)
598 /* FIXME: amazingly inefficient */
599 log_clear_bit(lc, lc->clean_bits, i);
600
8a835f11
AK
601 /* clear any old bits -- device has shrunk */
602 for (i = lc->region_count; i % (sizeof(*lc->clean_bits) << BYTE_SHIFT); i++)
603 log_clear_bit(lc, lc->clean_bits, i);
604
1da177e4
LT
605 /* copy clean across to sync */
606 memcpy(lc->sync_bits, lc->clean_bits, size);
607 lc->sync_count = count_bits32(lc->clean_bits, lc->bitset_uint32_count);
88b20a1a 608 lc->sync_search = 0;
1da177e4 609
1da177e4
LT
610 /* set the correct number of regions in the header */
611 lc->header.nr_regions = lc->region_count;
612
6f3af01c
TY
613 header_to_disk(&lc->header, lc->disk_header);
614
1da177e4 615 /* write the new header */
6f3af01c 616 r = rw_header(lc, WRITE);
01d03a66 617 if (r) {
b7fd54a7 618 DMWARN("%s: Failed to write header on dirty region log device",
01d03a66
JB
619 lc->log_dev->name);
620 fail_log_device(lc);
621 }
622
623 return r;
1da177e4
LT
624}
625
416cd17b 626static uint32_t core_get_region_size(struct dm_dirty_log *log)
1da177e4
LT
627{
628 struct log_c *lc = (struct log_c *) log->context;
629 return lc->region_size;
630}
631
416cd17b 632static int core_resume(struct dm_dirty_log *log)
88b20a1a
JB
633{
634 struct log_c *lc = (struct log_c *) log->context;
635 lc->sync_search = 0;
636 return 0;
637}
638
416cd17b 639static int core_is_clean(struct dm_dirty_log *log, region_t region)
1da177e4
LT
640{
641 struct log_c *lc = (struct log_c *) log->context;
642 return log_test_bit(lc->clean_bits, region);
643}
644
416cd17b 645static int core_in_sync(struct dm_dirty_log *log, region_t region, int block)
1da177e4
LT
646{
647 struct log_c *lc = (struct log_c *) log->context;
648 return log_test_bit(lc->sync_bits, region);
649}
650
416cd17b 651static int core_flush(struct dm_dirty_log *log)
1da177e4
LT
652{
653 /* no op */
654 return 0;
655}
656
416cd17b 657static int disk_flush(struct dm_dirty_log *log)
1da177e4
LT
658{
659 int r;
660 struct log_c *lc = (struct log_c *) log->context;
661
662 /* only write if the log has changed */
663 if (!lc->touched)
664 return 0;
665
6f3af01c 666 r = rw_header(lc, WRITE);
01d03a66
JB
667 if (r)
668 fail_log_device(lc);
669 else
1da177e4
LT
670 lc->touched = 0;
671
672 return r;
673}
674
416cd17b 675static void core_mark_region(struct dm_dirty_log *log, region_t region)
1da177e4
LT
676{
677 struct log_c *lc = (struct log_c *) log->context;
678 log_clear_bit(lc, lc->clean_bits, region);
679}
680
416cd17b 681static void core_clear_region(struct dm_dirty_log *log, region_t region)
1da177e4
LT
682{
683 struct log_c *lc = (struct log_c *) log->context;
684 log_set_bit(lc, lc->clean_bits, region);
685}
686
416cd17b 687static int core_get_resync_work(struct dm_dirty_log *log, region_t *region)
1da177e4
LT
688{
689 struct log_c *lc = (struct log_c *) log->context;
690
691 if (lc->sync_search >= lc->region_count)
692 return 0;
693
694 do {
1113a7e9
SB
695 *region = ext2_find_next_zero_bit(
696 (unsigned long *) lc->sync_bits,
1da177e4
LT
697 lc->region_count,
698 lc->sync_search);
699 lc->sync_search = *region + 1;
700
ac81b2ee 701 if (*region >= lc->region_count)
1da177e4
LT
702 return 0;
703
704 } while (log_test_bit(lc->recovering_bits, *region));
705
706 log_set_bit(lc, lc->recovering_bits, *region);
707 return 1;
708}
709
416cd17b 710static void core_set_region_sync(struct dm_dirty_log *log, region_t region,
f3ee6b2f 711 int in_sync)
1da177e4
LT
712{
713 struct log_c *lc = (struct log_c *) log->context;
714
715 log_clear_bit(lc, lc->recovering_bits, region);
f3ee6b2f 716 if (in_sync) {
1da177e4
LT
717 log_set_bit(lc, lc->sync_bits, region);
718 lc->sync_count++;
f3ee6b2f
JB
719 } else if (log_test_bit(lc->sync_bits, region)) {
720 lc->sync_count--;
721 log_clear_bit(lc, lc->sync_bits, region);
722 }
1da177e4
LT
723}
724
416cd17b 725static region_t core_get_sync_count(struct dm_dirty_log *log)
1da177e4
LT
726{
727 struct log_c *lc = (struct log_c *) log->context;
728
729 return lc->sync_count;
730}
731
732#define DMEMIT_SYNC \
733 if (lc->sync != DEFAULTSYNC) \
734 DMEMIT("%ssync ", lc->sync == NOSYNC ? "no" : "")
735
416cd17b 736static int core_status(struct dm_dirty_log *log, status_type_t status,
1da177e4
LT
737 char *result, unsigned int maxlen)
738{
739 int sz = 0;
740 struct log_c *lc = log->context;
741
742 switch(status) {
743 case STATUSTYPE_INFO:
315dcc22 744 DMEMIT("1 %s", log->type->name);
1da177e4
LT
745 break;
746
747 case STATUSTYPE_TABLE:
748 DMEMIT("%s %u %u ", log->type->name,
749 lc->sync == DEFAULTSYNC ? 1 : 2, lc->region_size);
750 DMEMIT_SYNC;
751 }
752
753 return sz;
754}
755
416cd17b 756static int disk_status(struct dm_dirty_log *log, status_type_t status,
1da177e4
LT
757 char *result, unsigned int maxlen)
758{
759 int sz = 0;
1da177e4
LT
760 struct log_c *lc = log->context;
761
762 switch(status) {
763 case STATUSTYPE_INFO:
315dcc22
JB
764 DMEMIT("3 %s %s %c", log->type->name, lc->log_dev->name,
765 lc->log_dev_failed ? 'D' : 'A');
1da177e4
LT
766 break;
767
768 case STATUSTYPE_TABLE:
1da177e4 769 DMEMIT("%s %u %s %u ", log->type->name,
315dcc22 770 lc->sync == DEFAULTSYNC ? 2 : 3, lc->log_dev->name,
1da177e4
LT
771 lc->region_size);
772 DMEMIT_SYNC;
773 }
774
775 return sz;
776}
777
416cd17b 778static struct dm_dirty_log_type _core_type = {
1da177e4
LT
779 .name = "core",
780 .module = THIS_MODULE,
781 .ctr = core_ctr,
782 .dtr = core_dtr,
88b20a1a 783 .resume = core_resume,
1da177e4
LT
784 .get_region_size = core_get_region_size,
785 .is_clean = core_is_clean,
786 .in_sync = core_in_sync,
787 .flush = core_flush,
788 .mark_region = core_mark_region,
789 .clear_region = core_clear_region,
790 .get_resync_work = core_get_resync_work,
f3ee6b2f 791 .set_region_sync = core_set_region_sync,
1da177e4
LT
792 .get_sync_count = core_get_sync_count,
793 .status = core_status,
794};
795
416cd17b 796static struct dm_dirty_log_type _disk_type = {
1da177e4
LT
797 .name = "disk",
798 .module = THIS_MODULE,
799 .ctr = disk_ctr,
800 .dtr = disk_dtr,
6b3df0d7 801 .postsuspend = disk_flush,
1da177e4
LT
802 .resume = disk_resume,
803 .get_region_size = core_get_region_size,
804 .is_clean = core_is_clean,
805 .in_sync = core_in_sync,
806 .flush = disk_flush,
807 .mark_region = core_mark_region,
808 .clear_region = core_clear_region,
809 .get_resync_work = core_get_resync_work,
f3ee6b2f 810 .set_region_sync = core_set_region_sync,
1da177e4
LT
811 .get_sync_count = core_get_sync_count,
812 .status = disk_status,
813};
814
c8da2f8d 815static int __init dm_dirty_log_init(void)
1da177e4
LT
816{
817 int r;
818
416cd17b 819 r = dm_dirty_log_type_register(&_core_type);
1da177e4
LT
820 if (r)
821 DMWARN("couldn't register core log");
822
416cd17b 823 r = dm_dirty_log_type_register(&_disk_type);
1da177e4
LT
824 if (r) {
825 DMWARN("couldn't register disk type");
416cd17b 826 dm_dirty_log_type_unregister(&_core_type);
1da177e4
LT
827 }
828
829 return r;
830}
831
c8da2f8d 832static void __exit dm_dirty_log_exit(void)
1da177e4 833{
416cd17b
HM
834 dm_dirty_log_type_unregister(&_disk_type);
835 dm_dirty_log_type_unregister(&_core_type);
1da177e4
LT
836}
837
769aef30
HM
838module_init(dm_dirty_log_init);
839module_exit(dm_dirty_log_exit);
840
841MODULE_DESCRIPTION(DM_NAME " dirty region log");
842MODULE_AUTHOR("Joe Thornber, Heinz Mauelshagen <dm-devel@redhat.com>");
843MODULE_LICENSE("GPL");