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dm log userspace transfer: match wait_for_completion_timeout return type
[mirror_ubuntu-bionic-kernel.git] / drivers / md / dm-log-userspace-base.c
CommitLineData
f5db4af4
JB
1/*
2 * Copyright (C) 2006-2009 Red Hat, Inc.
3 *
4 * This file is released under the LGPL.
5 */
6
7#include <linux/bio.h>
5a0e3ad6 8#include <linux/slab.h>
0f30af98 9#include <linux/jiffies.h>
f5db4af4
JB
10#include <linux/dm-dirty-log.h>
11#include <linux/device-mapper.h>
12#include <linux/dm-log-userspace.h>
056075c7 13#include <linux/module.h>
5066a4df 14#include <linux/workqueue.h>
f5db4af4
JB
15
16#include "dm-log-userspace-transfer.h"
17
5066a4df 18#define DM_LOG_USERSPACE_VSN "1.3.0"
86a54a48 19
ac1f9ef2
MS
20#define FLUSH_ENTRY_POOL_SIZE 16
21
22struct dm_dirty_log_flush_entry {
f5db4af4
JB
23 int type;
24 region_t region;
25 struct list_head list;
26};
27
085ae065
JB
28/*
29 * This limit on the number of mark and clear request is, to a degree,
30 * arbitrary. However, there is some basis for the choice in the limits
31 * imposed on the size of data payload by dm-log-userspace-transfer.c:
32 * dm_consult_userspace().
33 */
34#define MAX_FLUSH_GROUP_COUNT 32
35
f5db4af4
JB
36struct log_c {
37 struct dm_target *ti;
5a25f0eb 38 struct dm_dev *log_dev;
f5db4af4
JB
39
40 char *usr_argv_str;
41 uint32_t usr_argc;
42
ac1f9ef2
MS
43 uint32_t region_size;
44 region_t region_count;
45 uint64_t luid;
46 char uuid[DM_UUID_LEN];
f5db4af4 47
909cc4fb
JB
48 /*
49 * Mark and clear requests are held until a flush is issued
50 * so that we can group, and thereby limit, the amount of
51 * network traffic between kernel and userspace. The 'flush_lock'
52 * is used to protect these lists.
53 */
f5db4af4 54 spinlock_t flush_lock;
909cc4fb
JB
55 struct list_head mark_list;
56 struct list_head clear_list;
5066a4df 57
ac1f9ef2
MS
58 /*
59 * in_sync_hint gets set when doing is_remote_recovering. It
60 * represents the first region that needs recovery. IOW, the
61 * first zero bit of sync_bits. This can be useful for to limit
62 * traffic for calls like is_remote_recovering and get_resync_work,
63 * but be take care in its use for anything else.
64 */
65 uint64_t in_sync_hint;
66
5066a4df
DZ
67 /*
68 * Workqueue for flush of clear region requests.
69 */
70 struct workqueue_struct *dmlog_wq;
71 struct delayed_work flush_log_work;
72 atomic_t sched_flush;
73
74 /*
75 * Combine userspace flush and mark requests for efficiency.
76 */
77 uint32_t integrated_flush;
f5db4af4 78
ac1f9ef2
MS
79 mempool_t *flush_entry_pool;
80};
f5db4af4 81
ac1f9ef2 82static struct kmem_cache *_flush_entry_cache;
f5db4af4
JB
83
84static int userspace_do_request(struct log_c *lc, const char *uuid,
85 int request_type, char *data, size_t data_size,
86 char *rdata, size_t *rdata_size)
87{
88 int r;
89
90 /*
91 * If the server isn't there, -ESRCH is returned,
92 * and we must keep trying until the server is
93 * restored.
94 */
95retry:
7ec23d50 96 r = dm_consult_userspace(uuid, lc->luid, request_type, data,
f5db4af4
JB
97 data_size, rdata, rdata_size);
98
99 if (r != -ESRCH)
100 return r;
101
102 DMERR(" Userspace log server not found.");
103 while (1) {
104 set_current_state(TASK_INTERRUPTIBLE);
105 schedule_timeout(2*HZ);
106 DMWARN("Attempting to contact userspace log server...");
7ec23d50
JB
107 r = dm_consult_userspace(uuid, lc->luid, DM_ULOG_CTR,
108 lc->usr_argv_str,
f5db4af4
JB
109 strlen(lc->usr_argv_str) + 1,
110 NULL, NULL);
111 if (!r)
112 break;
113 }
114 DMINFO("Reconnected to userspace log server... DM_ULOG_CTR complete");
7ec23d50 115 r = dm_consult_userspace(uuid, lc->luid, DM_ULOG_RESUME, NULL,
f5db4af4
JB
116 0, NULL, NULL);
117 if (!r)
118 goto retry;
119
120 DMERR("Error trying to resume userspace log: %d", r);
121
122 return -ESRCH;
123}
124
125static int build_constructor_string(struct dm_target *ti,
126 unsigned argc, char **argv,
127 char **ctr_str)
128{
129 int i, str_size;
130 char *str = NULL;
131
132 *ctr_str = NULL;
133
5066a4df
DZ
134 /*
135 * Determine overall size of the string.
136 */
f5db4af4
JB
137 for (i = 0, str_size = 0; i < argc; i++)
138 str_size += strlen(argv[i]) + 1; /* +1 for space between args */
139
140 str_size += 20; /* Max number of chars in a printed u64 number */
141
142 str = kzalloc(str_size, GFP_KERNEL);
143 if (!str) {
144 DMWARN("Unable to allocate memory for constructor string");
145 return -ENOMEM;
146 }
147
b8313b6d
JB
148 str_size = sprintf(str, "%llu", (unsigned long long)ti->len);
149 for (i = 0; i < argc; i++)
150 str_size += sprintf(str + str_size, " %s", argv[i]);
f5db4af4
JB
151
152 *ctr_str = str;
153 return str_size;
154}
155
5066a4df
DZ
156static void do_flush(struct work_struct *work)
157{
158 int r;
159 struct log_c *lc = container_of(work, struct log_c, flush_log_work.work);
160
161 atomic_set(&lc->sched_flush, 0);
162
163 r = userspace_do_request(lc, lc->uuid, DM_ULOG_FLUSH, NULL, 0, NULL, NULL);
164
165 if (r)
166 dm_table_event(lc->ti->table);
167}
168
f5db4af4
JB
169/*
170 * userspace_ctr
171 *
172 * argv contains:
5066a4df
DZ
173 * <UUID> [integrated_flush] <other args>
174 * Where 'other args' are the userspace implementation-specific log
175 * arguments.
176 *
177 * Example:
178 * <UUID> [integrated_flush] clustered-disk <arg count> <log dev>
179 * <region_size> [[no]sync]
180 *
181 * This module strips off the <UUID> and uses it for identification
182 * purposes when communicating with userspace about a log.
f5db4af4 183 *
5066a4df
DZ
184 * If integrated_flush is defined, the kernel combines flush
185 * and mark requests.
186 *
187 * The rest of the line, beginning with 'clustered-disk', is passed
188 * to the userspace ctr function.
f5db4af4
JB
189 */
190static int userspace_ctr(struct dm_dirty_log *log, struct dm_target *ti,
191 unsigned argc, char **argv)
192{
193 int r = 0;
194 int str_size;
195 char *ctr_str = NULL;
196 struct log_c *lc = NULL;
197 uint64_t rdata;
198 size_t rdata_size = sizeof(rdata);
5a25f0eb
JB
199 char *devices_rdata = NULL;
200 size_t devices_rdata_size = DM_NAME_LEN;
f5db4af4
JB
201
202 if (argc < 3) {
203 DMWARN("Too few arguments to userspace dirty log");
204 return -EINVAL;
205 }
206
5a25f0eb 207 lc = kzalloc(sizeof(*lc), GFP_KERNEL);
f5db4af4
JB
208 if (!lc) {
209 DMWARN("Unable to allocate userspace log context.");
210 return -ENOMEM;
211 }
212
7ec23d50 213 /* The ptr value is sufficient for local unique id */
bca915aa 214 lc->luid = (unsigned long)lc;
7ec23d50 215
f5db4af4
JB
216 lc->ti = ti;
217
218 if (strlen(argv[0]) > (DM_UUID_LEN - 1)) {
219 DMWARN("UUID argument too long.");
220 kfree(lc);
221 return -EINVAL;
222 }
223
5066a4df
DZ
224 lc->usr_argc = argc;
225
f5db4af4 226 strncpy(lc->uuid, argv[0], DM_UUID_LEN);
5066a4df
DZ
227 argc--;
228 argv++;
f5db4af4 229 spin_lock_init(&lc->flush_lock);
909cc4fb
JB
230 INIT_LIST_HEAD(&lc->mark_list);
231 INIT_LIST_HEAD(&lc->clear_list);
f5db4af4 232
5066a4df
DZ
233 if (!strcasecmp(argv[0], "integrated_flush")) {
234 lc->integrated_flush = 1;
235 argc--;
236 argv++;
237 }
238
239 str_size = build_constructor_string(ti, argc, argv, &ctr_str);
f5db4af4
JB
240 if (str_size < 0) {
241 kfree(lc);
242 return str_size;
243 }
244
5a25f0eb
JB
245 devices_rdata = kzalloc(devices_rdata_size, GFP_KERNEL);
246 if (!devices_rdata) {
247 DMERR("Failed to allocate memory for device information");
248 r = -ENOMEM;
249 goto out;
250 }
251
ac1f9ef2
MS
252 lc->flush_entry_pool = mempool_create_slab_pool(FLUSH_ENTRY_POOL_SIZE,
253 _flush_entry_cache);
254 if (!lc->flush_entry_pool) {
255 DMERR("Failed to create flush_entry_pool");
256 r = -ENOMEM;
257 goto out;
258 }
259
5a25f0eb
JB
260 /*
261 * Send table string and get back any opened device.
262 */
7ec23d50 263 r = dm_consult_userspace(lc->uuid, lc->luid, DM_ULOG_CTR,
5a25f0eb
JB
264 ctr_str, str_size,
265 devices_rdata, &devices_rdata_size);
f5db4af4 266
4a038677
JB
267 if (r < 0) {
268 if (r == -ESRCH)
269 DMERR("Userspace log server not found");
270 else
271 DMERR("Userspace log server failed to create log");
f5db4af4
JB
272 goto out;
273 }
274
275 /* Since the region size does not change, get it now */
276 rdata_size = sizeof(rdata);
7ec23d50 277 r = dm_consult_userspace(lc->uuid, lc->luid, DM_ULOG_GET_REGION_SIZE,
f5db4af4
JB
278 NULL, 0, (char *)&rdata, &rdata_size);
279
280 if (r) {
281 DMERR("Failed to get region size of dirty log");
282 goto out;
283 }
284
285 lc->region_size = (uint32_t)rdata;
286 lc->region_count = dm_sector_div_up(ti->len, lc->region_size);
287
5a25f0eb
JB
288 if (devices_rdata_size) {
289 if (devices_rdata[devices_rdata_size - 1] != '\0') {
290 DMERR("DM_ULOG_CTR device return string not properly terminated");
291 r = -EINVAL;
292 goto out;
293 }
294 r = dm_get_device(ti, devices_rdata,
295 dm_table_get_mode(ti->table), &lc->log_dev);
296 if (r)
297 DMERR("Failed to register %s with device-mapper",
298 devices_rdata);
299 }
5066a4df
DZ
300
301 if (lc->integrated_flush) {
302 lc->dmlog_wq = alloc_workqueue("dmlogd", WQ_MEM_RECLAIM, 0);
303 if (!lc->dmlog_wq) {
304 DMERR("couldn't start dmlogd");
305 r = -ENOMEM;
306 goto out;
307 }
308
309 INIT_DELAYED_WORK(&lc->flush_log_work, do_flush);
310 atomic_set(&lc->sched_flush, 0);
311 }
312
f5db4af4 313out:
5a25f0eb 314 kfree(devices_rdata);
f5db4af4 315 if (r) {
ac1f9ef2
MS
316 if (lc->flush_entry_pool)
317 mempool_destroy(lc->flush_entry_pool);
f5db4af4
JB
318 kfree(lc);
319 kfree(ctr_str);
320 } else {
321 lc->usr_argv_str = ctr_str;
f5db4af4
JB
322 log->context = lc;
323 }
324
325 return r;
326}
327
328static void userspace_dtr(struct dm_dirty_log *log)
329{
f5db4af4
JB
330 struct log_c *lc = log->context;
331
5066a4df
DZ
332 if (lc->integrated_flush) {
333 /* flush workqueue */
334 if (atomic_read(&lc->sched_flush))
335 flush_delayed_work(&lc->flush_log_work);
336
337 destroy_workqueue(lc->dmlog_wq);
338 }
339
4a038677 340 (void) dm_consult_userspace(lc->uuid, lc->luid, DM_ULOG_DTR,
5066a4df 341 NULL, 0, NULL, NULL);
f5db4af4 342
5a25f0eb
JB
343 if (lc->log_dev)
344 dm_put_device(lc->ti, lc->log_dev);
345
ac1f9ef2
MS
346 mempool_destroy(lc->flush_entry_pool);
347
f5db4af4
JB
348 kfree(lc->usr_argv_str);
349 kfree(lc);
350
351 return;
352}
353
354static int userspace_presuspend(struct dm_dirty_log *log)
355{
356 int r;
357 struct log_c *lc = log->context;
358
7ec23d50 359 r = dm_consult_userspace(lc->uuid, lc->luid, DM_ULOG_PRESUSPEND,
5066a4df 360 NULL, 0, NULL, NULL);
f5db4af4
JB
361
362 return r;
363}
364
365static int userspace_postsuspend(struct dm_dirty_log *log)
366{
367 int r;
368 struct log_c *lc = log->context;
369
5066a4df
DZ
370 /*
371 * Run planned flush earlier.
372 */
373 if (lc->integrated_flush && atomic_read(&lc->sched_flush))
374 flush_delayed_work(&lc->flush_log_work);
375
7ec23d50 376 r = dm_consult_userspace(lc->uuid, lc->luid, DM_ULOG_POSTSUSPEND,
5066a4df 377 NULL, 0, NULL, NULL);
f5db4af4
JB
378
379 return r;
380}
381
382static int userspace_resume(struct dm_dirty_log *log)
383{
384 int r;
385 struct log_c *lc = log->context;
386
387 lc->in_sync_hint = 0;
7ec23d50 388 r = dm_consult_userspace(lc->uuid, lc->luid, DM_ULOG_RESUME,
5066a4df 389 NULL, 0, NULL, NULL);
f5db4af4
JB
390
391 return r;
392}
393
394static uint32_t userspace_get_region_size(struct dm_dirty_log *log)
395{
396 struct log_c *lc = log->context;
397
398 return lc->region_size;
399}
400
401/*
402 * userspace_is_clean
403 *
404 * Check whether a region is clean. If there is any sort of
405 * failure when consulting the server, we return not clean.
406 *
407 * Returns: 1 if clean, 0 otherwise
408 */
409static int userspace_is_clean(struct dm_dirty_log *log, region_t region)
410{
411 int r;
412 uint64_t region64 = (uint64_t)region;
413 int64_t is_clean;
414 size_t rdata_size;
415 struct log_c *lc = log->context;
416
417 rdata_size = sizeof(is_clean);
418 r = userspace_do_request(lc, lc->uuid, DM_ULOG_IS_CLEAN,
419 (char *)&region64, sizeof(region64),
420 (char *)&is_clean, &rdata_size);
421
422 return (r) ? 0 : (int)is_clean;
423}
424
425/*
426 * userspace_in_sync
427 *
428 * Check if the region is in-sync. If there is any sort
429 * of failure when consulting the server, we assume that
430 * the region is not in sync.
431 *
432 * If 'can_block' is set, return immediately
433 *
434 * Returns: 1 if in-sync, 0 if not-in-sync, -EWOULDBLOCK
435 */
436static int userspace_in_sync(struct dm_dirty_log *log, region_t region,
437 int can_block)
438{
439 int r;
440 uint64_t region64 = region;
441 int64_t in_sync;
442 size_t rdata_size;
443 struct log_c *lc = log->context;
444
445 /*
446 * We can never respond directly - even if in_sync_hint is
447 * set. This is because another machine could see a device
448 * failure and mark the region out-of-sync. If we don't go
449 * to userspace to ask, we might think the region is in-sync
450 * and allow a read to pick up data that is stale. (This is
451 * very unlikely if a device actually fails; but it is very
452 * likely if a connection to one device from one machine fails.)
453 *
454 * There still might be a problem if the mirror caches the region
455 * state as in-sync... but then this call would not be made. So,
456 * that is a mirror problem.
457 */
458 if (!can_block)
459 return -EWOULDBLOCK;
460
461 rdata_size = sizeof(in_sync);
462 r = userspace_do_request(lc, lc->uuid, DM_ULOG_IN_SYNC,
463 (char *)&region64, sizeof(region64),
464 (char *)&in_sync, &rdata_size);
465 return (r) ? 0 : (int)in_sync;
466}
467
085ae065
JB
468static int flush_one_by_one(struct log_c *lc, struct list_head *flush_list)
469{
470 int r = 0;
ac1f9ef2 471 struct dm_dirty_log_flush_entry *fe;
085ae065
JB
472
473 list_for_each_entry(fe, flush_list, list) {
474 r = userspace_do_request(lc, lc->uuid, fe->type,
475 (char *)&fe->region,
476 sizeof(fe->region),
477 NULL, NULL);
478 if (r)
479 break;
480 }
481
482 return r;
483}
484
5066a4df
DZ
485static int flush_by_group(struct log_c *lc, struct list_head *flush_list,
486 int flush_with_payload)
085ae065
JB
487{
488 int r = 0;
489 int count;
490 uint32_t type = 0;
ac1f9ef2 491 struct dm_dirty_log_flush_entry *fe, *tmp_fe;
085ae065
JB
492 LIST_HEAD(tmp_list);
493 uint64_t group[MAX_FLUSH_GROUP_COUNT];
494
495 /*
496 * Group process the requests
497 */
498 while (!list_empty(flush_list)) {
499 count = 0;
500
501 list_for_each_entry_safe(fe, tmp_fe, flush_list, list) {
502 group[count] = fe->region;
503 count++;
504
6c9b27ab 505 list_move(&fe->list, &tmp_list);
085ae065
JB
506
507 type = fe->type;
508 if (count >= MAX_FLUSH_GROUP_COUNT)
509 break;
510 }
511
5066a4df
DZ
512 if (flush_with_payload) {
513 r = userspace_do_request(lc, lc->uuid, DM_ULOG_FLUSH,
514 (char *)(group),
515 count * sizeof(uint64_t),
516 NULL, NULL);
517 /*
518 * Integrated flush failed.
519 */
520 if (r)
521 break;
522 } else {
523 r = userspace_do_request(lc, lc->uuid, type,
524 (char *)(group),
525 count * sizeof(uint64_t),
526 NULL, NULL);
527 if (r) {
528 /*
529 * Group send failed. Attempt one-by-one.
530 */
531 list_splice_init(&tmp_list, flush_list);
532 r = flush_one_by_one(lc, flush_list);
533 break;
534 }
085ae065
JB
535 }
536 }
537
538 /*
539 * Must collect flush_entrys that were successfully processed
540 * as a group so that they will be free'd by the caller.
541 */
542 list_splice_init(&tmp_list, flush_list);
543
544 return r;
545}
546
f5db4af4
JB
547/*
548 * userspace_flush
549 *
550 * This function is ok to block.
551 * The flush happens in two stages. First, it sends all
552 * clear/mark requests that are on the list. Then it
553 * tells the server to commit them. This gives the
554 * server a chance to optimise the commit, instead of
555 * doing it for every request.
556 *
557 * Additionally, we could implement another thread that
558 * sends the requests up to the server - reducing the
559 * load on flush. Then the flush would have less in
560 * the list and be responsible for the finishing commit.
561 *
562 * Returns: 0 on success, < 0 on failure
563 */
564static int userspace_flush(struct dm_dirty_log *log)
565{
566 int r = 0;
567 unsigned long flags;
568 struct log_c *lc = log->context;
909cc4fb
JB
569 LIST_HEAD(mark_list);
570 LIST_HEAD(clear_list);
5066a4df
DZ
571 int mark_list_is_empty;
572 int clear_list_is_empty;
ac1f9ef2
MS
573 struct dm_dirty_log_flush_entry *fe, *tmp_fe;
574 mempool_t *flush_entry_pool = lc->flush_entry_pool;
f5db4af4
JB
575
576 spin_lock_irqsave(&lc->flush_lock, flags);
909cc4fb
JB
577 list_splice_init(&lc->mark_list, &mark_list);
578 list_splice_init(&lc->clear_list, &clear_list);
f5db4af4
JB
579 spin_unlock_irqrestore(&lc->flush_lock, flags);
580
5066a4df
DZ
581 mark_list_is_empty = list_empty(&mark_list);
582 clear_list_is_empty = list_empty(&clear_list);
583
584 if (mark_list_is_empty && clear_list_is_empty)
f5db4af4
JB
585 return 0;
586
5066a4df 587 r = flush_by_group(lc, &clear_list, 0);
085ae065 588 if (r)
5066a4df
DZ
589 goto out;
590
591 if (!lc->integrated_flush) {
592 r = flush_by_group(lc, &mark_list, 0);
593 if (r)
594 goto out;
595 r = userspace_do_request(lc, lc->uuid, DM_ULOG_FLUSH,
596 NULL, 0, NULL, NULL);
597 goto out;
598 }
909cc4fb 599
5066a4df
DZ
600 /*
601 * Send integrated flush request with mark_list as payload.
602 */
603 r = flush_by_group(lc, &mark_list, 1);
085ae065 604 if (r)
5066a4df 605 goto out;
f5db4af4 606
5066a4df
DZ
607 if (mark_list_is_empty && !atomic_read(&lc->sched_flush)) {
608 /*
609 * When there are only clear region requests,
610 * we schedule a flush in the future.
611 */
612 queue_delayed_work(lc->dmlog_wq, &lc->flush_log_work, 3 * HZ);
613 atomic_set(&lc->sched_flush, 1);
614 } else {
615 /*
616 * Cancel pending flush because we
617 * have already flushed in mark_region.
618 */
619 cancel_delayed_work(&lc->flush_log_work);
620 atomic_set(&lc->sched_flush, 0);
621 }
f5db4af4 622
5066a4df 623out:
f5db4af4 624 /*
5066a4df 625 * We can safely remove these entries, even after failure.
f5db4af4
JB
626 * Calling code will receive an error and will know that
627 * the log facility has failed.
628 */
909cc4fb
JB
629 list_for_each_entry_safe(fe, tmp_fe, &mark_list, list) {
630 list_del(&fe->list);
631 mempool_free(fe, flush_entry_pool);
632 }
633 list_for_each_entry_safe(fe, tmp_fe, &clear_list, list) {
f5db4af4
JB
634 list_del(&fe->list);
635 mempool_free(fe, flush_entry_pool);
636 }
637
638 if (r)
639 dm_table_event(lc->ti->table);
640
641 return r;
642}
643
644/*
645 * userspace_mark_region
646 *
647 * This function should avoid blocking unless absolutely required.
648 * (Memory allocation is valid for blocking.)
649 */
650static void userspace_mark_region(struct dm_dirty_log *log, region_t region)
651{
652 unsigned long flags;
653 struct log_c *lc = log->context;
ac1f9ef2 654 struct dm_dirty_log_flush_entry *fe;
f5db4af4
JB
655
656 /* Wait for an allocation, but _never_ fail */
ac1f9ef2 657 fe = mempool_alloc(lc->flush_entry_pool, GFP_NOIO);
f5db4af4
JB
658 BUG_ON(!fe);
659
660 spin_lock_irqsave(&lc->flush_lock, flags);
661 fe->type = DM_ULOG_MARK_REGION;
662 fe->region = region;
909cc4fb 663 list_add(&fe->list, &lc->mark_list);
f5db4af4
JB
664 spin_unlock_irqrestore(&lc->flush_lock, flags);
665
666 return;
667}
668
669/*
670 * userspace_clear_region
671 *
672 * This function must not block.
673 * So, the alloc can't block. In the worst case, it is ok to
674 * fail. It would simply mean we can't clear the region.
675 * Does nothing to current sync context, but does mean
676 * the region will be re-sync'ed on a reload of the mirror
677 * even though it is in-sync.
678 */
679static void userspace_clear_region(struct dm_dirty_log *log, region_t region)
680{
681 unsigned long flags;
682 struct log_c *lc = log->context;
ac1f9ef2 683 struct dm_dirty_log_flush_entry *fe;
f5db4af4
JB
684
685 /*
686 * If we fail to allocate, we skip the clearing of
687 * the region. This doesn't hurt us in any way, except
688 * to cause the region to be resync'ed when the
689 * device is activated next time.
690 */
ac1f9ef2 691 fe = mempool_alloc(lc->flush_entry_pool, GFP_ATOMIC);
f5db4af4
JB
692 if (!fe) {
693 DMERR("Failed to allocate memory to clear region.");
694 return;
695 }
696
697 spin_lock_irqsave(&lc->flush_lock, flags);
698 fe->type = DM_ULOG_CLEAR_REGION;
699 fe->region = region;
909cc4fb 700 list_add(&fe->list, &lc->clear_list);
f5db4af4
JB
701 spin_unlock_irqrestore(&lc->flush_lock, flags);
702
703 return;
704}
705
706/*
707 * userspace_get_resync_work
708 *
709 * Get a region that needs recovery. It is valid to return
710 * an error for this function.
711 *
712 * Returns: 1 if region filled, 0 if no work, <0 on error
713 */
714static int userspace_get_resync_work(struct dm_dirty_log *log, region_t *region)
715{
716 int r;
717 size_t rdata_size;
718 struct log_c *lc = log->context;
719 struct {
720 int64_t i; /* 64-bit for mix arch compatibility */
721 region_t r;
722 } pkg;
723
724 if (lc->in_sync_hint >= lc->region_count)
725 return 0;
726
727 rdata_size = sizeof(pkg);
728 r = userspace_do_request(lc, lc->uuid, DM_ULOG_GET_RESYNC_WORK,
5066a4df 729 NULL, 0, (char *)&pkg, &rdata_size);
f5db4af4
JB
730
731 *region = pkg.r;
732 return (r) ? r : (int)pkg.i;
733}
734
735/*
736 * userspace_set_region_sync
737 *
738 * Set the sync status of a given region. This function
739 * must not fail.
740 */
741static void userspace_set_region_sync(struct dm_dirty_log *log,
742 region_t region, int in_sync)
743{
744 int r;
745 struct log_c *lc = log->context;
746 struct {
747 region_t r;
748 int64_t i;
749 } pkg;
750
751 pkg.r = region;
752 pkg.i = (int64_t)in_sync;
753
754 r = userspace_do_request(lc, lc->uuid, DM_ULOG_SET_REGION_SYNC,
5066a4df 755 (char *)&pkg, sizeof(pkg), NULL, NULL);
f5db4af4
JB
756
757 /*
758 * It would be nice to be able to report failures.
759 * However, it is easy emough to detect and resolve.
760 */
761 return;
762}
763
764/*
765 * userspace_get_sync_count
766 *
767 * If there is any sort of failure when consulting the server,
768 * we assume that the sync count is zero.
769 *
770 * Returns: sync count on success, 0 on failure
771 */
772static region_t userspace_get_sync_count(struct dm_dirty_log *log)
773{
774 int r;
775 size_t rdata_size;
776 uint64_t sync_count;
777 struct log_c *lc = log->context;
778
779 rdata_size = sizeof(sync_count);
780 r = userspace_do_request(lc, lc->uuid, DM_ULOG_GET_SYNC_COUNT,
5066a4df 781 NULL, 0, (char *)&sync_count, &rdata_size);
f5db4af4
JB
782
783 if (r)
784 return 0;
785
786 if (sync_count >= lc->region_count)
787 lc->in_sync_hint = lc->region_count;
788
789 return (region_t)sync_count;
790}
791
792/*
793 * userspace_status
794 *
795 * Returns: amount of space consumed
796 */
797static int userspace_status(struct dm_dirty_log *log, status_type_t status_type,
798 char *result, unsigned maxlen)
799{
800 int r = 0;
b8313b6d 801 char *table_args;
f5db4af4
JB
802 size_t sz = (size_t)maxlen;
803 struct log_c *lc = log->context;
804
805 switch (status_type) {
806 case STATUSTYPE_INFO:
807 r = userspace_do_request(lc, lc->uuid, DM_ULOG_STATUS_INFO,
5066a4df 808 NULL, 0, result, &sz);
f5db4af4
JB
809
810 if (r) {
811 sz = 0;
812 DMEMIT("%s 1 COM_FAILURE", log->type->name);
813 }
814 break;
815 case STATUSTYPE_TABLE:
816 sz = 0;
0d03d59d 817 table_args = strchr(lc->usr_argv_str, ' ');
b8313b6d
JB
818 BUG_ON(!table_args); /* There will always be a ' ' */
819 table_args++;
820
5066a4df
DZ
821 DMEMIT("%s %u %s ", log->type->name, lc->usr_argc, lc->uuid);
822 if (lc->integrated_flush)
823 DMEMIT("integrated_flush ");
824 DMEMIT("%s ", table_args);
f5db4af4
JB
825 break;
826 }
827 return (r) ? 0 : (int)sz;
828}
829
830/*
831 * userspace_is_remote_recovering
832 *
833 * Returns: 1 if region recovering, 0 otherwise
834 */
835static int userspace_is_remote_recovering(struct dm_dirty_log *log,
836 region_t region)
837{
838 int r;
839 uint64_t region64 = region;
840 struct log_c *lc = log->context;
0f30af98 841 static unsigned long limit;
f5db4af4
JB
842 struct {
843 int64_t is_recovering;
844 uint64_t in_sync_hint;
845 } pkg;
846 size_t rdata_size = sizeof(pkg);
847
848 /*
849 * Once the mirror has been reported to be in-sync,
850 * it will never again ask for recovery work. So,
851 * we can safely say there is not a remote machine
852 * recovering if the device is in-sync. (in_sync_hint
853 * must be reset at resume time.)
854 */
855 if (region < lc->in_sync_hint)
856 return 0;
0f30af98 857 else if (time_after(limit, jiffies))
f5db4af4
JB
858 return 1;
859
860 limit = jiffies + (HZ / 4);
861 r = userspace_do_request(lc, lc->uuid, DM_ULOG_IS_REMOTE_RECOVERING,
862 (char *)&region64, sizeof(region64),
863 (char *)&pkg, &rdata_size);
864 if (r)
865 return 1;
866
867 lc->in_sync_hint = pkg.in_sync_hint;
868
869 return (int)pkg.is_recovering;
870}
871
872static struct dm_dirty_log_type _userspace_type = {
873 .name = "userspace",
874 .module = THIS_MODULE,
875 .ctr = userspace_ctr,
876 .dtr = userspace_dtr,
877 .presuspend = userspace_presuspend,
878 .postsuspend = userspace_postsuspend,
879 .resume = userspace_resume,
880 .get_region_size = userspace_get_region_size,
881 .is_clean = userspace_is_clean,
882 .in_sync = userspace_in_sync,
883 .flush = userspace_flush,
884 .mark_region = userspace_mark_region,
885 .clear_region = userspace_clear_region,
886 .get_resync_work = userspace_get_resync_work,
887 .set_region_sync = userspace_set_region_sync,
888 .get_sync_count = userspace_get_sync_count,
889 .status = userspace_status,
890 .is_remote_recovering = userspace_is_remote_recovering,
891};
892
893static int __init userspace_dirty_log_init(void)
894{
895 int r = 0;
896
ac1f9ef2
MS
897 _flush_entry_cache = KMEM_CACHE(dm_dirty_log_flush_entry, 0);
898 if (!_flush_entry_cache) {
899 DMWARN("Unable to create flush_entry_cache: No memory.");
f5db4af4
JB
900 return -ENOMEM;
901 }
902
903 r = dm_ulog_tfr_init();
904 if (r) {
905 DMWARN("Unable to initialize userspace log communications");
ac1f9ef2 906 kmem_cache_destroy(_flush_entry_cache);
f5db4af4
JB
907 return r;
908 }
909
910 r = dm_dirty_log_type_register(&_userspace_type);
911 if (r) {
912 DMWARN("Couldn't register userspace dirty log type");
913 dm_ulog_tfr_exit();
ac1f9ef2 914 kmem_cache_destroy(_flush_entry_cache);
f5db4af4
JB
915 return r;
916 }
917
86a54a48 918 DMINFO("version " DM_LOG_USERSPACE_VSN " loaded");
f5db4af4
JB
919 return 0;
920}
921
922static void __exit userspace_dirty_log_exit(void)
923{
924 dm_dirty_log_type_unregister(&_userspace_type);
925 dm_ulog_tfr_exit();
ac1f9ef2 926 kmem_cache_destroy(_flush_entry_cache);
f5db4af4 927
86a54a48 928 DMINFO("version " DM_LOG_USERSPACE_VSN " unloaded");
f5db4af4
JB
929 return;
930}
931
932module_init(userspace_dirty_log_init);
933module_exit(userspace_dirty_log_exit);
934
935MODULE_DESCRIPTION(DM_NAME " userspace dirty log link");
936MODULE_AUTHOR("Jonathan Brassow <dm-devel@redhat.com>");
937MODULE_LICENSE("GPL");