bcache: Refactor journalling flow control
[deliverable/linux.git] / drivers / md / bcache / journal.c
CommitLineData
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1/*
2 * bcache journalling code, for btree insertions
3 *
4 * Copyright 2012 Google, Inc.
5 */
6
7#include "bcache.h"
8#include "btree.h"
9#include "debug.h"
10#include "request.h"
11
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12#include <trace/events/bcache.h>
13
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14/*
15 * Journal replay/recovery:
16 *
17 * This code is all driven from run_cache_set(); we first read the journal
18 * entries, do some other stuff, then we mark all the keys in the journal
19 * entries (same as garbage collection would), then we replay them - reinserting
20 * them into the cache in precisely the same order as they appear in the
21 * journal.
22 *
23 * We only journal keys that go in leaf nodes, which simplifies things quite a
24 * bit.
25 */
26
27static void journal_read_endio(struct bio *bio, int error)
28{
29 struct closure *cl = bio->bi_private;
30 closure_put(cl);
31}
32
33static int journal_read_bucket(struct cache *ca, struct list_head *list,
34 struct btree_op *op, unsigned bucket_index)
35{
36 struct journal_device *ja = &ca->journal;
37 struct bio *bio = &ja->bio;
38
39 struct journal_replay *i;
40 struct jset *j, *data = ca->set->journal.w[0].data;
41 unsigned len, left, offset = 0;
42 int ret = 0;
43 sector_t bucket = bucket_to_sector(ca->set, ca->sb.d[bucket_index]);
44
45 pr_debug("reading %llu", (uint64_t) bucket);
46
47 while (offset < ca->sb.bucket_size) {
48reread: left = ca->sb.bucket_size - offset;
49 len = min_t(unsigned, left, PAGE_SECTORS * 8);
50
51 bio_reset(bio);
52 bio->bi_sector = bucket + offset;
53 bio->bi_bdev = ca->bdev;
54 bio->bi_rw = READ;
55 bio->bi_size = len << 9;
56
57 bio->bi_end_io = journal_read_endio;
58 bio->bi_private = &op->cl;
169ef1cf 59 bch_bio_map(bio, data);
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60
61 closure_bio_submit(bio, &op->cl, ca);
62 closure_sync(&op->cl);
63
64 /* This function could be simpler now since we no longer write
65 * journal entries that overlap bucket boundaries; this means
66 * the start of a bucket will always have a valid journal entry
67 * if it has any journal entries at all.
68 */
69
70 j = data;
71 while (len) {
72 struct list_head *where;
73 size_t blocks, bytes = set_bytes(j);
74
75 if (j->magic != jset_magic(ca->set))
76 return ret;
77
78 if (bytes > left << 9)
79 return ret;
80
81 if (bytes > len << 9)
82 goto reread;
83
84 if (j->csum != csum_set(j))
85 return ret;
86
87 blocks = set_blocks(j, ca->set);
88
89 while (!list_empty(list)) {
90 i = list_first_entry(list,
91 struct journal_replay, list);
92 if (i->j.seq >= j->last_seq)
93 break;
94 list_del(&i->list);
95 kfree(i);
96 }
97
98 list_for_each_entry_reverse(i, list, list) {
99 if (j->seq == i->j.seq)
100 goto next_set;
101
102 if (j->seq < i->j.last_seq)
103 goto next_set;
104
105 if (j->seq > i->j.seq) {
106 where = &i->list;
107 goto add;
108 }
109 }
110
111 where = list;
112add:
113 i = kmalloc(offsetof(struct journal_replay, j) +
114 bytes, GFP_KERNEL);
115 if (!i)
116 return -ENOMEM;
117 memcpy(&i->j, j, bytes);
118 list_add(&i->list, where);
119 ret = 1;
120
121 ja->seq[bucket_index] = j->seq;
122next_set:
123 offset += blocks * ca->sb.block_size;
124 len -= blocks * ca->sb.block_size;
125 j = ((void *) j) + blocks * block_bytes(ca);
126 }
127 }
128
129 return ret;
130}
131
132int bch_journal_read(struct cache_set *c, struct list_head *list,
133 struct btree_op *op)
134{
135#define read_bucket(b) \
136 ({ \
137 int ret = journal_read_bucket(ca, list, op, b); \
138 __set_bit(b, bitmap); \
139 if (ret < 0) \
140 return ret; \
141 ret; \
142 })
143
144 struct cache *ca;
145 unsigned iter;
146
147 for_each_cache(ca, c, iter) {
148 struct journal_device *ja = &ca->journal;
149 unsigned long bitmap[SB_JOURNAL_BUCKETS / BITS_PER_LONG];
150 unsigned i, l, r, m;
151 uint64_t seq;
152
153 bitmap_zero(bitmap, SB_JOURNAL_BUCKETS);
154 pr_debug("%u journal buckets", ca->sb.njournal_buckets);
155
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156 /*
157 * Read journal buckets ordered by golden ratio hash to quickly
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158 * find a sequence of buckets with valid journal entries
159 */
160 for (i = 0; i < ca->sb.njournal_buckets; i++) {
161 l = (i * 2654435769U) % ca->sb.njournal_buckets;
162
163 if (test_bit(l, bitmap))
164 break;
165
166 if (read_bucket(l))
167 goto bsearch;
168 }
169
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170 /*
171 * If that fails, check all the buckets we haven't checked
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172 * already
173 */
174 pr_debug("falling back to linear search");
175
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176 for (l = find_first_zero_bit(bitmap, ca->sb.njournal_buckets);
177 l < ca->sb.njournal_buckets;
178 l = find_next_zero_bit(bitmap, ca->sb.njournal_buckets, l + 1))
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179 if (read_bucket(l))
180 goto bsearch;
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181
182 if (list_empty(list))
183 continue;
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184bsearch:
185 /* Binary search */
186 m = r = find_next_bit(bitmap, ca->sb.njournal_buckets, l + 1);
187 pr_debug("starting binary search, l %u r %u", l, r);
188
189 while (l + 1 < r) {
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190 seq = list_entry(list->prev, struct journal_replay,
191 list)->j.seq;
192
cafe5635 193 m = (l + r) >> 1;
faa56736 194 read_bucket(m);
cafe5635 195
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196 if (seq != list_entry(list->prev, struct journal_replay,
197 list)->j.seq)
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198 l = m;
199 else
200 r = m;
201 }
202
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203 /*
204 * Read buckets in reverse order until we stop finding more
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205 * journal entries
206 */
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207 pr_debug("finishing up: m %u njournal_buckets %u",
208 m, ca->sb.njournal_buckets);
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209 l = m;
210
211 while (1) {
212 if (!l--)
213 l = ca->sb.njournal_buckets - 1;
214
215 if (l == m)
216 break;
217
218 if (test_bit(l, bitmap))
219 continue;
220
221 if (!read_bucket(l))
222 break;
223 }
224
225 seq = 0;
226
227 for (i = 0; i < ca->sb.njournal_buckets; i++)
228 if (ja->seq[i] > seq) {
229 seq = ja->seq[i];
230 ja->cur_idx = ja->discard_idx =
231 ja->last_idx = i;
232
233 }
234 }
235
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236 if (!list_empty(list))
237 c->journal.seq = list_entry(list->prev,
238 struct journal_replay,
239 list)->j.seq;
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240
241 return 0;
242#undef read_bucket
243}
244
245void bch_journal_mark(struct cache_set *c, struct list_head *list)
246{
247 atomic_t p = { 0 };
248 struct bkey *k;
249 struct journal_replay *i;
250 struct journal *j = &c->journal;
251 uint64_t last = j->seq;
252
253 /*
254 * journal.pin should never fill up - we never write a journal
255 * entry when it would fill up. But if for some reason it does, we
256 * iterate over the list in reverse order so that we can just skip that
257 * refcount instead of bugging.
258 */
259
260 list_for_each_entry_reverse(i, list, list) {
261 BUG_ON(last < i->j.seq);
262 i->pin = NULL;
263
264 while (last-- != i->j.seq)
265 if (fifo_free(&j->pin) > 1) {
266 fifo_push_front(&j->pin, p);
267 atomic_set(&fifo_front(&j->pin), 0);
268 }
269
270 if (fifo_free(&j->pin) > 1) {
271 fifo_push_front(&j->pin, p);
272 i->pin = &fifo_front(&j->pin);
273 atomic_set(i->pin, 1);
274 }
275
276 for (k = i->j.start;
277 k < end(&i->j);
278 k = bkey_next(k)) {
279 unsigned j;
280
281 for (j = 0; j < KEY_PTRS(k); j++) {
282 struct bucket *g = PTR_BUCKET(c, k, j);
283 atomic_inc(&g->pin);
284
285 if (g->prio == BTREE_PRIO &&
286 !ptr_stale(c, k, j))
287 g->prio = INITIAL_PRIO;
288 }
289
290 __bch_btree_mark_key(c, 0, k);
291 }
292 }
293}
294
295int bch_journal_replay(struct cache_set *s, struct list_head *list,
296 struct btree_op *op)
297{
298 int ret = 0, keys = 0, entries = 0;
299 struct bkey *k;
300 struct journal_replay *i =
301 list_entry(list->prev, struct journal_replay, list);
302
303 uint64_t start = i->j.last_seq, end = i->j.seq, n = start;
304
305 list_for_each_entry(i, list, list) {
306 BUG_ON(i->pin && atomic_read(i->pin) != 1);
307
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308 cache_set_err_on(n != i->j.seq, s,
309"bcache: journal entries %llu-%llu missing! (replaying %llu-%llu)",
310 n, i->j.seq - 1, start, end);
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311
312 for (k = i->j.start;
313 k < end(&i->j);
314 k = bkey_next(k)) {
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315 trace_bcache_journal_replay_key(k);
316
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317 bkey_copy(op->keys.top, k);
318 bch_keylist_push(&op->keys);
319
320 op->journal = i->pin;
cafe5635 321
4f3d4014 322 ret = bch_btree_insert(op, s, &op->keys);
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323 if (ret)
324 goto err;
325
326 BUG_ON(!bch_keylist_empty(&op->keys));
327 keys++;
328
329 cond_resched();
330 }
331
332 if (i->pin)
333 atomic_dec(i->pin);
334 n = i->j.seq + 1;
335 entries++;
336 }
337
338 pr_info("journal replay done, %i keys in %i entries, seq %llu",
339 keys, entries, end);
340
341 while (!list_empty(list)) {
342 i = list_first_entry(list, struct journal_replay, list);
343 list_del(&i->list);
344 kfree(i);
345 }
346err:
347 closure_sync(&op->cl);
348 return ret;
349}
350
351/* Journalling */
352
353static void btree_flush_write(struct cache_set *c)
354{
355 /*
356 * Try to find the btree node with that references the oldest journal
357 * entry, best is our current candidate and is locked if non NULL:
358 */
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359 struct btree *b, *best;
360 unsigned i;
361retry:
362 best = NULL;
363
364 for_each_cached_btree(b, c, i)
365 if (btree_current_write(b)->journal) {
366 if (!best)
367 best = b;
368 else if (journal_pin_cmp(c,
369 btree_current_write(best),
370 btree_current_write(b))) {
371 best = b;
372 }
373 }
cafe5635 374
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375 b = best;
376 if (b) {
377 rw_lock(true, b, b->level);
cafe5635 378
a34a8bfd 379 if (!btree_current_write(b)->journal) {
cafe5635 380 rw_unlock(true, b);
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381 /* We raced */
382 goto retry;
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383 }
384
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385 bch_btree_node_write(b, NULL);
386 rw_unlock(true, b);
cafe5635 387 }
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388}
389
390#define last_seq(j) ((j)->seq - fifo_used(&(j)->pin) + 1)
391
392static void journal_discard_endio(struct bio *bio, int error)
393{
394 struct journal_device *ja =
395 container_of(bio, struct journal_device, discard_bio);
396 struct cache *ca = container_of(ja, struct cache, journal);
397
398 atomic_set(&ja->discard_in_flight, DISCARD_DONE);
399
400 closure_wake_up(&ca->set->journal.wait);
401 closure_put(&ca->set->cl);
402}
403
404static void journal_discard_work(struct work_struct *work)
405{
406 struct journal_device *ja =
407 container_of(work, struct journal_device, discard_work);
408
409 submit_bio(0, &ja->discard_bio);
410}
411
412static void do_journal_discard(struct cache *ca)
413{
414 struct journal_device *ja = &ca->journal;
415 struct bio *bio = &ja->discard_bio;
416
417 if (!ca->discard) {
418 ja->discard_idx = ja->last_idx;
419 return;
420 }
421
6d9d21e3 422 switch (atomic_read(&ja->discard_in_flight)) {
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423 case DISCARD_IN_FLIGHT:
424 return;
425
426 case DISCARD_DONE:
427 ja->discard_idx = (ja->discard_idx + 1) %
428 ca->sb.njournal_buckets;
429
430 atomic_set(&ja->discard_in_flight, DISCARD_READY);
431 /* fallthrough */
432
433 case DISCARD_READY:
434 if (ja->discard_idx == ja->last_idx)
435 return;
436
437 atomic_set(&ja->discard_in_flight, DISCARD_IN_FLIGHT);
438
439 bio_init(bio);
440 bio->bi_sector = bucket_to_sector(ca->set,
b1a67b0f 441 ca->sb.d[ja->discard_idx]);
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442 bio->bi_bdev = ca->bdev;
443 bio->bi_rw = REQ_WRITE|REQ_DISCARD;
444 bio->bi_max_vecs = 1;
445 bio->bi_io_vec = bio->bi_inline_vecs;
446 bio->bi_size = bucket_bytes(ca);
447 bio->bi_end_io = journal_discard_endio;
448
449 closure_get(&ca->set->cl);
450 INIT_WORK(&ja->discard_work, journal_discard_work);
451 schedule_work(&ja->discard_work);
452 }
453}
454
455static void journal_reclaim(struct cache_set *c)
456{
457 struct bkey *k = &c->journal.key;
458 struct cache *ca;
459 uint64_t last_seq;
460 unsigned iter, n = 0;
461 atomic_t p;
462
463 while (!atomic_read(&fifo_front(&c->journal.pin)))
464 fifo_pop(&c->journal.pin, p);
465
466 last_seq = last_seq(&c->journal);
467
468 /* Update last_idx */
469
470 for_each_cache(ca, c, iter) {
471 struct journal_device *ja = &ca->journal;
472
473 while (ja->last_idx != ja->cur_idx &&
474 ja->seq[ja->last_idx] < last_seq)
475 ja->last_idx = (ja->last_idx + 1) %
476 ca->sb.njournal_buckets;
477 }
478
479 for_each_cache(ca, c, iter)
480 do_journal_discard(ca);
481
482 if (c->journal.blocks_free)
a34a8bfd 483 goto out;
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484
485 /*
486 * Allocate:
487 * XXX: Sort by free journal space
488 */
489
490 for_each_cache(ca, c, iter) {
491 struct journal_device *ja = &ca->journal;
492 unsigned next = (ja->cur_idx + 1) % ca->sb.njournal_buckets;
493
494 /* No space available on this device */
495 if (next == ja->discard_idx)
496 continue;
497
498 ja->cur_idx = next;
499 k->ptr[n++] = PTR(0,
500 bucket_to_sector(c, ca->sb.d[ja->cur_idx]),
501 ca->sb.nr_this_dev);
502 }
503
504 bkey_init(k);
505 SET_KEY_PTRS(k, n);
506
507 if (n)
508 c->journal.blocks_free = c->sb.bucket_size >> c->block_bits;
a34a8bfd 509out:
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510 if (!journal_full(&c->journal))
511 __closure_wake_up(&c->journal.wait);
512}
513
514void bch_journal_next(struct journal *j)
515{
516 atomic_t p = { 1 };
517
518 j->cur = (j->cur == j->w)
519 ? &j->w[1]
520 : &j->w[0];
521
522 /*
523 * The fifo_push() needs to happen at the same time as j->seq is
524 * incremented for last_seq() to be calculated correctly
525 */
526 BUG_ON(!fifo_push(&j->pin, p));
527 atomic_set(&fifo_back(&j->pin), 1);
528
529 j->cur->data->seq = ++j->seq;
530 j->cur->need_write = false;
531 j->cur->data->keys = 0;
532
533 if (fifo_full(&j->pin))
534 pr_debug("journal_pin full (%zu)", fifo_used(&j->pin));
535}
536
537static void journal_write_endio(struct bio *bio, int error)
538{
539 struct journal_write *w = bio->bi_private;
540
541 cache_set_err_on(error, w->c, "journal io error");
7857d5d4 542 closure_put(&w->c->journal.io);
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543}
544
545static void journal_write(struct closure *);
546
547static void journal_write_done(struct closure *cl)
548{
7857d5d4 549 struct journal *j = container_of(cl, struct journal, io);
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550 struct journal_write *w = (j->cur == j->w)
551 ? &j->w[1]
552 : &j->w[0];
553
554 __closure_wake_up(&w->wait);
7857d5d4 555 continue_at_nobarrier(cl, journal_write, system_wq);
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556}
557
558static void journal_write_unlocked(struct closure *cl)
c19ed23a 559 __releases(c->journal.lock)
cafe5635 560{
7857d5d4 561 struct cache_set *c = container_of(cl, struct cache_set, journal.io);
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562 struct cache *ca;
563 struct journal_write *w = c->journal.cur;
564 struct bkey *k = &c->journal.key;
565 unsigned i, sectors = set_blocks(w->data, c) * c->sb.block_size;
566
567 struct bio *bio;
568 struct bio_list list;
569 bio_list_init(&list);
570
571 if (!w->need_write) {
572 /*
573 * XXX: have to unlock closure before we unlock journal lock,
574 * else we race with bch_journal(). But this way we race
575 * against cache set unregister. Doh.
576 */
577 set_closure_fn(cl, NULL, NULL);
578 closure_sub(cl, CLOSURE_RUNNING + 1);
579 spin_unlock(&c->journal.lock);
580 return;
581 } else if (journal_full(&c->journal)) {
582 journal_reclaim(c);
583 spin_unlock(&c->journal.lock);
584
585 btree_flush_write(c);
586 continue_at(cl, journal_write, system_wq);
587 }
588
589 c->journal.blocks_free -= set_blocks(w->data, c);
590
591 w->data->btree_level = c->root->level;
592
593 bkey_copy(&w->data->btree_root, &c->root->key);
594 bkey_copy(&w->data->uuid_bucket, &c->uuid_bucket);
595
596 for_each_cache(ca, c, i)
597 w->data->prio_bucket[ca->sb.nr_this_dev] = ca->prio_buckets[0];
598
599 w->data->magic = jset_magic(c);
600 w->data->version = BCACHE_JSET_VERSION;
601 w->data->last_seq = last_seq(&c->journal);
602 w->data->csum = csum_set(w->data);
603
604 for (i = 0; i < KEY_PTRS(k); i++) {
605 ca = PTR_CACHE(c, k, i);
606 bio = &ca->journal.bio;
607
608 atomic_long_add(sectors, &ca->meta_sectors_written);
609
610 bio_reset(bio);
611 bio->bi_sector = PTR_OFFSET(k, i);
612 bio->bi_bdev = ca->bdev;
e49c7c37 613 bio->bi_rw = REQ_WRITE|REQ_SYNC|REQ_META|REQ_FLUSH|REQ_FUA;
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614 bio->bi_size = sectors << 9;
615
616 bio->bi_end_io = journal_write_endio;
617 bio->bi_private = w;
169ef1cf 618 bch_bio_map(bio, w->data);
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619
620 trace_bcache_journal_write(bio);
621 bio_list_add(&list, bio);
622
623 SET_PTR_OFFSET(k, i, PTR_OFFSET(k, i) + sectors);
624
625 ca->journal.seq[ca->journal.cur_idx] = w->data->seq;
626 }
627
628 atomic_dec_bug(&fifo_back(&c->journal.pin));
629 bch_journal_next(&c->journal);
630 journal_reclaim(c);
631
632 spin_unlock(&c->journal.lock);
633
634 while ((bio = bio_list_pop(&list)))
635 closure_bio_submit(bio, cl, c->cache[0]);
636
637 continue_at(cl, journal_write_done, NULL);
638}
639
640static void journal_write(struct closure *cl)
641{
7857d5d4 642 struct cache_set *c = container_of(cl, struct cache_set, journal.io);
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643
644 spin_lock(&c->journal.lock);
645 journal_write_unlocked(cl);
646}
647
a34a8bfd 648static void journal_try_write(struct cache_set *c)
c19ed23a 649 __releases(c->journal.lock)
cafe5635 650{
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651 struct closure *cl = &c->journal.io;
652 struct journal_write *w = c->journal.cur;
653
654 w->need_write = true;
cafe5635 655
a34a8bfd 656 if (closure_trylock(cl, &c->cl))
cafe5635 657 journal_write_unlocked(cl);
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658 else
659 spin_unlock(&c->journal.lock);
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660}
661
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662static struct journal_write *journal_wait_for_write(struct cache_set *c,
663 unsigned nkeys)
cafe5635 664{
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665 size_t sectors;
666 struct closure cl;
cafe5635 667
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668 closure_init_stack(&cl);
669
670 spin_lock(&c->journal.lock);
671
672 while (1) {
673 struct journal_write *w = c->journal.cur;
674
675 sectors = __set_blocks(w->data, w->data->keys + nkeys,
676 c) * c->sb.block_size;
677
678 if (sectors <= min_t(size_t,
679 c->journal.blocks_free * c->sb.block_size,
680 PAGE_SECTORS << JSET_BITS))
681 return w;
682
683 /* XXX: tracepoint */
684 if (!journal_full(&c->journal)) {
685 trace_bcache_journal_entry_full(c);
686
687 /*
688 * XXX: If we were inserting so many keys that they
689 * won't fit in an _empty_ journal write, we'll
690 * deadlock. For now, handle this in
691 * bch_keylist_realloc() - but something to think about.
692 */
693 BUG_ON(!w->data->keys);
694
695 closure_wait(&w->wait, &cl);
696 journal_try_write(c); /* unlocks */
697 } else {
698 trace_bcache_journal_full(c);
699
700 closure_wait(&c->journal.wait, &cl);
701 journal_reclaim(c);
702 spin_unlock(&c->journal.lock);
cafe5635 703
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704 btree_flush_write(c);
705 }
cafe5635 706
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707 closure_sync(&cl);
708 spin_lock(&c->journal.lock);
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709 }
710}
711
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712static void journal_write_work(struct work_struct *work)
713{
714 struct cache_set *c = container_of(to_delayed_work(work),
715 struct cache_set,
716 journal.work);
717 spin_lock(&c->journal.lock);
718 journal_try_write(c);
719}
720
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721/*
722 * Entry point to the journalling code - bio_insert() and btree_invalidate()
723 * pass bch_journal() a list of keys to be journalled, and then
724 * bch_journal() hands those same keys off to btree_insert_async()
725 */
726
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727atomic_t *bch_journal(struct cache_set *c,
728 struct keylist *keys,
729 struct closure *parent)
cafe5635 730{
cafe5635 731 struct journal_write *w;
a34a8bfd 732 atomic_t *ret;
cafe5635 733
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734 if (!CACHE_SYNC(&c->sb))
735 return NULL;
cafe5635 736
a34a8bfd 737 w = journal_wait_for_write(c, bch_keylist_nkeys(keys));
c37511b8 738
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739 memcpy(end(w->data), keys->keys, bch_keylist_bytes(keys));
740 w->data->keys += bch_keylist_nkeys(keys);
cafe5635 741
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742 ret = &fifo_back(&c->journal.pin);
743 atomic_inc(ret);
cafe5635 744
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745 if (parent) {
746 closure_wait(&w->wait, parent);
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747 journal_try_write(c);
748 } else if (!w->need_write) {
749 schedule_delayed_work(&c->journal.work,
750 msecs_to_jiffies(c->journal_delay_ms));
751 spin_unlock(&c->journal.lock);
752 } else {
753 spin_unlock(&c->journal.lock);
cafe5635 754 }
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755
756
757 return ret;
758}
759
760void bch_journal_meta(struct cache_set *c, struct closure *cl)
761{
762 struct keylist keys;
763 atomic_t *ref;
764
765 bch_keylist_init(&keys);
766
767 ref = bch_journal(c, &keys, cl);
768 if (ref)
769 atomic_dec_bug(ref);
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770}
771
772void bch_journal_free(struct cache_set *c)
773{
774 free_pages((unsigned long) c->journal.w[1].data, JSET_BITS);
775 free_pages((unsigned long) c->journal.w[0].data, JSET_BITS);
776 free_fifo(&c->journal.pin);
777}
778
779int bch_journal_alloc(struct cache_set *c)
780{
781 struct journal *j = &c->journal;
782
783 closure_init_unlocked(&j->io);
784 spin_lock_init(&j->lock);
7857d5d4 785 INIT_DELAYED_WORK(&j->work, journal_write_work);
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786
787 c->journal_delay_ms = 100;
788
789 j->w[0].c = c;
790 j->w[1].c = c;
791
792 if (!(init_fifo(&j->pin, JOURNAL_PIN, GFP_KERNEL)) ||
793 !(j->w[0].data = (void *) __get_free_pages(GFP_KERNEL, JSET_BITS)) ||
794 !(j->w[1].data = (void *) __get_free_pages(GFP_KERNEL, JSET_BITS)))
795 return -ENOMEM;
796
797 return 0;
798}
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