1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * bcachefs journalling code, for btree insertions
4 *
5 * Copyright 2012 Google, Inc.
6 */
7
8 #include "bcachefs.h"
9 #include "alloc_foreground.h"
10 #include "bkey_methods.h"
11 #include "btree_gc.h"
12 #include "btree_update.h"
13 #include "btree_write_buffer.h"
14 #include "buckets.h"
15 #include "enumerated_ref.h"
16 #include "error.h"
17 #include "journal.h"
18 #include "journal_io.h"
19 #include "journal_reclaim.h"
20 #include "journal_sb.h"
21 #include "journal_seq_blacklist.h"
22 #include "trace.h"
23
journal_seq_unwritten(struct journal * j,u64 seq)24 static inline bool journal_seq_unwritten(struct journal *j, u64 seq)
25 {
26 return seq > j->seq_ondisk;
27 }
28
__journal_entry_is_open(union journal_res_state state)29 static bool __journal_entry_is_open(union journal_res_state state)
30 {
31 return state.cur_entry_offset < JOURNAL_ENTRY_CLOSED_VAL;
32 }
33
nr_unwritten_journal_entries(struct journal * j)34 static inline unsigned nr_unwritten_journal_entries(struct journal *j)
35 {
36 return atomic64_read(&j->seq) - j->seq_ondisk;
37 }
38
journal_entry_is_open(struct journal * j)39 static bool journal_entry_is_open(struct journal *j)
40 {
41 return __journal_entry_is_open(j->reservations);
42 }
43
bch2_journal_buf_to_text(struct printbuf * out,struct journal * j,u64 seq)44 static void bch2_journal_buf_to_text(struct printbuf *out, struct journal *j, u64 seq)
45 {
46 union journal_res_state s = READ_ONCE(j->reservations);
47 unsigned i = seq & JOURNAL_BUF_MASK;
48 struct journal_buf *buf = j->buf + i;
49
50 prt_printf(out, "seq:\t%llu\n", seq);
51 printbuf_indent_add(out, 2);
52
53 if (!buf->write_started)
54 prt_printf(out, "refcount:\t%u\n", journal_state_count(s, i & JOURNAL_STATE_BUF_MASK));
55
56 struct closure *cl = &buf->io;
57 int r = atomic_read(&cl->remaining);
58 prt_printf(out, "io:\t%pS r %i\n", cl->fn, r & CLOSURE_REMAINING_MASK);
59
60 if (buf->data) {
61 prt_printf(out, "size:\t");
62 prt_human_readable_u64(out, vstruct_bytes(buf->data));
63 prt_newline(out);
64 }
65
66 prt_printf(out, "expires:\t%li jiffies\n", buf->expires - jiffies);
67
68 prt_printf(out, "flags:\t");
69 if (buf->noflush)
70 prt_str(out, "noflush ");
71 if (buf->must_flush)
72 prt_str(out, "must_flush ");
73 if (buf->separate_flush)
74 prt_str(out, "separate_flush ");
75 if (buf->need_flush_to_write_buffer)
76 prt_str(out, "need_flush_to_write_buffer ");
77 if (buf->write_started)
78 prt_str(out, "write_started ");
79 if (buf->write_allocated)
80 prt_str(out, "write_allocated ");
81 if (buf->write_done)
82 prt_str(out, "write_done");
83 prt_newline(out);
84
85 printbuf_indent_sub(out, 2);
86 }
87
bch2_journal_bufs_to_text(struct printbuf * out,struct journal * j)88 static void bch2_journal_bufs_to_text(struct printbuf *out, struct journal *j)
89 {
90 lockdep_assert_held(&j->lock);
91 out->atomic++;
92
93 if (!out->nr_tabstops)
94 printbuf_tabstop_push(out, 24);
95
96 for (u64 seq = journal_last_unwritten_seq(j);
97 seq <= journal_cur_seq(j);
98 seq++)
99 bch2_journal_buf_to_text(out, j, seq);
100 prt_printf(out, "last buf %s\n", journal_entry_is_open(j) ? "open" : "closed");
101
102 --out->atomic;
103 }
104
105 static inline struct journal_buf *
journal_seq_to_buf(struct journal * j,u64 seq)106 journal_seq_to_buf(struct journal *j, u64 seq)
107 {
108 struct journal_buf *buf = NULL;
109
110 EBUG_ON(seq > journal_cur_seq(j));
111
112 if (journal_seq_unwritten(j, seq))
113 buf = j->buf + (seq & JOURNAL_BUF_MASK);
114 return buf;
115 }
116
journal_pin_list_init(struct journal_entry_pin_list * p,int count)117 static void journal_pin_list_init(struct journal_entry_pin_list *p, int count)
118 {
119 for (unsigned i = 0; i < ARRAY_SIZE(p->unflushed); i++)
120 INIT_LIST_HEAD(&p->unflushed[i]);
121 for (unsigned i = 0; i < ARRAY_SIZE(p->flushed); i++)
122 INIT_LIST_HEAD(&p->flushed[i]);
123 atomic_set(&p->count, count);
124 p->devs.nr = 0;
125 }
126
127 /*
128 * Detect stuck journal conditions and trigger shutdown. Technically the journal
129 * can end up stuck for a variety of reasons, such as a blocked I/O, journal
130 * reservation lockup, etc. Since this is a fatal error with potentially
131 * unpredictable characteristics, we want to be fairly conservative before we
132 * decide to shut things down.
133 *
134 * Consider the journal stuck when it appears full with no ability to commit
135 * btree transactions, to discard journal buckets, nor acquire priority
136 * (reserved watermark) reservation.
137 */
138 static inline bool
journal_error_check_stuck(struct journal * j,int error,unsigned flags)139 journal_error_check_stuck(struct journal *j, int error, unsigned flags)
140 {
141 struct bch_fs *c = container_of(j, struct bch_fs, journal);
142 bool stuck = false;
143 struct printbuf buf = PRINTBUF;
144
145 buf.atomic++;
146
147 if (!(error == -BCH_ERR_journal_full ||
148 error == -BCH_ERR_journal_pin_full) ||
149 nr_unwritten_journal_entries(j) ||
150 (flags & BCH_WATERMARK_MASK) != BCH_WATERMARK_reclaim)
151 return stuck;
152
153 spin_lock(&j->lock);
154
155 if (j->can_discard) {
156 spin_unlock(&j->lock);
157 return stuck;
158 }
159
160 stuck = true;
161
162 /*
163 * The journal shutdown path will set ->err_seq, but do it here first to
164 * serialize against concurrent failures and avoid duplicate error
165 * reports.
166 */
167 if (j->err_seq) {
168 spin_unlock(&j->lock);
169 return stuck;
170 }
171 j->err_seq = journal_cur_seq(j);
172
173 __bch2_journal_debug_to_text(&buf, j);
174 spin_unlock(&j->lock);
175 prt_printf(&buf, bch2_fmt(c, "Journal stuck! Hava a pre-reservation but journal full (error %s)"),
176 bch2_err_str(error));
177 bch2_print_str(c, KERN_ERR, buf.buf);
178
179 printbuf_reset(&buf);
180 bch2_journal_pins_to_text(&buf, j);
181 bch_err(c, "Journal pins:\n%s", buf.buf);
182 printbuf_exit(&buf);
183
184 bch2_fatal_error(c);
185 dump_stack();
186
187 return stuck;
188 }
189
bch2_journal_do_writes(struct journal * j)190 void bch2_journal_do_writes(struct journal *j)
191 {
192 for (u64 seq = journal_last_unwritten_seq(j);
193 seq <= journal_cur_seq(j);
194 seq++) {
195 unsigned idx = seq & JOURNAL_BUF_MASK;
196 struct journal_buf *w = j->buf + idx;
197
198 if (w->write_started && !w->write_allocated)
199 break;
200 if (w->write_started)
201 continue;
202
203 if (!journal_state_seq_count(j, j->reservations, seq)) {
204 j->seq_write_started = seq;
205 w->write_started = true;
206 closure_call(&w->io, bch2_journal_write, j->wq, NULL);
207 }
208
209 break;
210 }
211 }
212
213 /*
214 * Final processing when the last reference of a journal buffer has been
215 * dropped. Drop the pin list reference acquired at journal entry open and write
216 * the buffer, if requested.
217 */
bch2_journal_buf_put_final(struct journal * j,u64 seq)218 void bch2_journal_buf_put_final(struct journal *j, u64 seq)
219 {
220 lockdep_assert_held(&j->lock);
221
222 if (__bch2_journal_pin_put(j, seq))
223 bch2_journal_reclaim_fast(j);
224 bch2_journal_do_writes(j);
225
226 /*
227 * for __bch2_next_write_buffer_flush_journal_buf(), when quiescing an
228 * open journal entry
229 */
230 wake_up(&j->wait);
231 }
232
233 /*
234 * Returns true if journal entry is now closed:
235 *
236 * We don't close a journal_buf until the next journal_buf is finished writing,
237 * and can be opened again - this also initializes the next journal_buf:
238 */
__journal_entry_close(struct journal * j,unsigned closed_val,bool trace)239 static void __journal_entry_close(struct journal *j, unsigned closed_val, bool trace)
240 {
241 struct bch_fs *c = container_of(j, struct bch_fs, journal);
242 struct journal_buf *buf = journal_cur_buf(j);
243 union journal_res_state old, new;
244 unsigned sectors;
245
246 BUG_ON(closed_val != JOURNAL_ENTRY_CLOSED_VAL &&
247 closed_val != JOURNAL_ENTRY_ERROR_VAL);
248
249 lockdep_assert_held(&j->lock);
250
251 old.v = atomic64_read(&j->reservations.counter);
252 do {
253 new.v = old.v;
254 new.cur_entry_offset = closed_val;
255
256 if (old.cur_entry_offset == JOURNAL_ENTRY_ERROR_VAL ||
257 old.cur_entry_offset == new.cur_entry_offset)
258 return;
259 } while (!atomic64_try_cmpxchg(&j->reservations.counter,
260 &old.v, new.v));
261
262 if (!__journal_entry_is_open(old))
263 return;
264
265 if (old.cur_entry_offset == JOURNAL_ENTRY_BLOCKED_VAL)
266 old.cur_entry_offset = j->cur_entry_offset_if_blocked;
267
268 /* Close out old buffer: */
269 buf->data->u64s = cpu_to_le32(old.cur_entry_offset);
270
271 if (trace_journal_entry_close_enabled() && trace) {
272 struct printbuf pbuf = PRINTBUF;
273 pbuf.atomic++;
274
275 prt_str(&pbuf, "entry size: ");
276 prt_human_readable_u64(&pbuf, vstruct_bytes(buf->data));
277 prt_newline(&pbuf);
278 bch2_prt_task_backtrace(&pbuf, current, 1, GFP_NOWAIT);
279 trace_journal_entry_close(c, pbuf.buf);
280 printbuf_exit(&pbuf);
281 }
282
283 sectors = vstruct_blocks_plus(buf->data, c->block_bits,
284 buf->u64s_reserved) << c->block_bits;
285 if (unlikely(sectors > buf->sectors)) {
286 struct printbuf err = PRINTBUF;
287 err.atomic++;
288
289 prt_printf(&err, "journal entry overran reserved space: %u > %u\n",
290 sectors, buf->sectors);
291 prt_printf(&err, "buf u64s %u u64s reserved %u cur_entry_u64s %u block_bits %u\n",
292 le32_to_cpu(buf->data->u64s), buf->u64s_reserved,
293 j->cur_entry_u64s,
294 c->block_bits);
295 prt_printf(&err, "fatal error - emergency read only");
296 bch2_journal_halt_locked(j);
297
298 bch_err(c, "%s", err.buf);
299 printbuf_exit(&err);
300 return;
301 }
302
303 buf->sectors = sectors;
304
305 /*
306 * We have to set last_seq here, _before_ opening a new journal entry:
307 *
308 * A threads may replace an old pin with a new pin on their current
309 * journal reservation - the expectation being that the journal will
310 * contain either what the old pin protected or what the new pin
311 * protects.
312 *
313 * After the old pin is dropped journal_last_seq() won't include the old
314 * pin, so we can only write the updated last_seq on the entry that
315 * contains whatever the new pin protects.
316 *
317 * Restated, we can _not_ update last_seq for a given entry if there
318 * could be a newer entry open with reservations/pins that have been
319 * taken against it.
320 *
321 * Hence, we want update/set last_seq on the current journal entry right
322 * before we open a new one:
323 */
324 buf->last_seq = journal_last_seq(j);
325 buf->data->last_seq = cpu_to_le64(buf->last_seq);
326 BUG_ON(buf->last_seq > le64_to_cpu(buf->data->seq));
327
328 cancel_delayed_work(&j->write_work);
329
330 bch2_journal_space_available(j);
331
332 __bch2_journal_buf_put(j, le64_to_cpu(buf->data->seq));
333 }
334
bch2_journal_halt_locked(struct journal * j)335 void bch2_journal_halt_locked(struct journal *j)
336 {
337 lockdep_assert_held(&j->lock);
338
339 __journal_entry_close(j, JOURNAL_ENTRY_ERROR_VAL, true);
340 if (!j->err_seq)
341 j->err_seq = journal_cur_seq(j);
342 journal_wake(j);
343 }
344
bch2_journal_halt(struct journal * j)345 void bch2_journal_halt(struct journal *j)
346 {
347 spin_lock(&j->lock);
348 bch2_journal_halt_locked(j);
349 spin_unlock(&j->lock);
350 }
351
journal_entry_want_write(struct journal * j)352 static bool journal_entry_want_write(struct journal *j)
353 {
354 bool ret = !journal_entry_is_open(j) ||
355 journal_cur_seq(j) == journal_last_unwritten_seq(j);
356
357 /* Don't close it yet if we already have a write in flight: */
358 if (ret)
359 __journal_entry_close(j, JOURNAL_ENTRY_CLOSED_VAL, true);
360 else if (nr_unwritten_journal_entries(j)) {
361 struct journal_buf *buf = journal_cur_buf(j);
362
363 if (!buf->flush_time) {
364 buf->flush_time = local_clock() ?: 1;
365 buf->expires = jiffies;
366 }
367 }
368
369 return ret;
370 }
371
bch2_journal_entry_close(struct journal * j)372 bool bch2_journal_entry_close(struct journal *j)
373 {
374 bool ret;
375
376 spin_lock(&j->lock);
377 ret = journal_entry_want_write(j);
378 spin_unlock(&j->lock);
379
380 return ret;
381 }
382
383 /*
384 * should _only_ called from journal_res_get() - when we actually want a
385 * journal reservation - journal entry is open means journal is dirty:
386 */
journal_entry_open(struct journal * j)387 static int journal_entry_open(struct journal *j)
388 {
389 struct bch_fs *c = container_of(j, struct bch_fs, journal);
390 struct journal_buf *buf = j->buf +
391 ((journal_cur_seq(j) + 1) & JOURNAL_BUF_MASK);
392 union journal_res_state old, new;
393 int u64s;
394
395 lockdep_assert_held(&j->lock);
396 BUG_ON(journal_entry_is_open(j));
397 BUG_ON(BCH_SB_CLEAN(c->disk_sb.sb));
398
399 if (j->blocked)
400 return bch_err_throw(c, journal_blocked);
401
402 if (j->cur_entry_error)
403 return j->cur_entry_error;
404
405 int ret = bch2_journal_error(j);
406 if (unlikely(ret))
407 return ret;
408
409 if (!fifo_free(&j->pin))
410 return bch_err_throw(c, journal_pin_full);
411
412 if (nr_unwritten_journal_entries(j) == ARRAY_SIZE(j->buf))
413 return bch_err_throw(c, journal_max_in_flight);
414
415 if (atomic64_read(&j->seq) - j->seq_write_started == JOURNAL_STATE_BUF_NR)
416 return bch_err_throw(c, journal_max_open);
417
418 if (unlikely(journal_cur_seq(j) >= JOURNAL_SEQ_MAX)) {
419 bch_err(c, "cannot start: journal seq overflow");
420 if (bch2_fs_emergency_read_only_locked(c))
421 bch_err(c, "fatal error - emergency read only");
422 return bch_err_throw(c, journal_shutdown);
423 }
424
425 if (!j->free_buf && !buf->data)
426 return bch_err_throw(c, journal_buf_enomem); /* will retry after write completion frees up a buf */
427
428 BUG_ON(!j->cur_entry_sectors);
429
430 if (!buf->data) {
431 swap(buf->data, j->free_buf);
432 swap(buf->buf_size, j->free_buf_size);
433 }
434
435 buf->expires =
436 (journal_cur_seq(j) == j->flushed_seq_ondisk
437 ? jiffies
438 : j->last_flush_write) +
439 msecs_to_jiffies(c->opts.journal_flush_delay);
440
441 buf->u64s_reserved = j->entry_u64s_reserved;
442 buf->disk_sectors = j->cur_entry_sectors;
443 buf->sectors = min(buf->disk_sectors, buf->buf_size >> 9);
444
445 u64s = (int) (buf->sectors << 9) / sizeof(u64) -
446 journal_entry_overhead(j);
447 u64s = clamp_t(int, u64s, 0, JOURNAL_ENTRY_CLOSED_VAL - 1);
448
449 if (u64s <= (ssize_t) j->early_journal_entries.nr)
450 return bch_err_throw(c, journal_full);
451
452 if (fifo_empty(&j->pin) && j->reclaim_thread)
453 wake_up_process(j->reclaim_thread);
454
455 /*
456 * The fifo_push() needs to happen at the same time as j->seq is
457 * incremented for journal_last_seq() to be calculated correctly
458 */
459 atomic64_inc(&j->seq);
460 journal_pin_list_init(fifo_push_ref(&j->pin), 1);
461
462 if (unlikely(bch2_journal_seq_is_blacklisted(c, journal_cur_seq(j), false))) {
463 bch_err(c, "attempting to open blacklisted journal seq %llu",
464 journal_cur_seq(j));
465 if (bch2_fs_emergency_read_only_locked(c))
466 bch_err(c, "fatal error - emergency read only");
467 return bch_err_throw(c, journal_shutdown);
468 }
469
470 BUG_ON(j->pin.back - 1 != atomic64_read(&j->seq));
471
472 BUG_ON(j->buf + (journal_cur_seq(j) & JOURNAL_BUF_MASK) != buf);
473
474 bkey_extent_init(&buf->key);
475 buf->noflush = false;
476 buf->must_flush = false;
477 buf->separate_flush = false;
478 buf->flush_time = 0;
479 buf->need_flush_to_write_buffer = true;
480 buf->write_started = false;
481 buf->write_allocated = false;
482 buf->write_done = false;
483
484 memset(buf->data, 0, sizeof(*buf->data));
485 buf->data->seq = cpu_to_le64(journal_cur_seq(j));
486 buf->data->u64s = 0;
487
488 if (j->early_journal_entries.nr) {
489 memcpy(buf->data->_data, j->early_journal_entries.data,
490 j->early_journal_entries.nr * sizeof(u64));
491 le32_add_cpu(&buf->data->u64s, j->early_journal_entries.nr);
492 }
493
494 /*
495 * Must be set before marking the journal entry as open:
496 */
497 j->cur_entry_u64s = u64s;
498
499 old.v = atomic64_read(&j->reservations.counter);
500 do {
501 new.v = old.v;
502
503 BUG_ON(old.cur_entry_offset == JOURNAL_ENTRY_ERROR_VAL);
504
505 new.idx++;
506 BUG_ON(journal_state_count(new, new.idx));
507 BUG_ON(new.idx != (journal_cur_seq(j) & JOURNAL_STATE_BUF_MASK));
508
509 journal_state_inc(&new);
510
511 /* Handle any already added entries */
512 new.cur_entry_offset = le32_to_cpu(buf->data->u64s);
513 } while (!atomic64_try_cmpxchg(&j->reservations.counter,
514 &old.v, new.v));
515
516 if (nr_unwritten_journal_entries(j) == 1)
517 mod_delayed_work(j->wq,
518 &j->write_work,
519 msecs_to_jiffies(c->opts.journal_flush_delay));
520 journal_wake(j);
521
522 if (j->early_journal_entries.nr)
523 darray_exit(&j->early_journal_entries);
524 return 0;
525 }
526
journal_quiesced(struct journal * j)527 static bool journal_quiesced(struct journal *j)
528 {
529 bool ret = atomic64_read(&j->seq) == j->seq_ondisk;
530
531 if (!ret)
532 bch2_journal_entry_close(j);
533 return ret;
534 }
535
journal_quiesce(struct journal * j)536 static void journal_quiesce(struct journal *j)
537 {
538 wait_event(j->wait, journal_quiesced(j));
539 }
540
journal_write_work(struct work_struct * work)541 static void journal_write_work(struct work_struct *work)
542 {
543 struct journal *j = container_of(work, struct journal, write_work.work);
544
545 spin_lock(&j->lock);
546 if (__journal_entry_is_open(j->reservations)) {
547 long delta = journal_cur_buf(j)->expires - jiffies;
548
549 if (delta > 0)
550 mod_delayed_work(j->wq, &j->write_work, delta);
551 else
552 __journal_entry_close(j, JOURNAL_ENTRY_CLOSED_VAL, true);
553 }
554 spin_unlock(&j->lock);
555 }
556
journal_buf_prealloc(struct journal * j)557 static void journal_buf_prealloc(struct journal *j)
558 {
559 if (j->free_buf &&
560 j->free_buf_size >= j->buf_size_want)
561 return;
562
563 unsigned buf_size = j->buf_size_want;
564
565 spin_unlock(&j->lock);
566 void *buf = kvmalloc(buf_size, GFP_NOFS);
567 spin_lock(&j->lock);
568
569 if (buf &&
570 (!j->free_buf ||
571 buf_size > j->free_buf_size)) {
572 swap(buf, j->free_buf);
573 swap(buf_size, j->free_buf_size);
574 }
575
576 if (unlikely(buf)) {
577 spin_unlock(&j->lock);
578 /* kvfree can sleep */
579 kvfree(buf);
580 spin_lock(&j->lock);
581 }
582 }
583
__journal_res_get(struct journal * j,struct journal_res * res,unsigned flags)584 static int __journal_res_get(struct journal *j, struct journal_res *res,
585 unsigned flags)
586 {
587 struct bch_fs *c = container_of(j, struct bch_fs, journal);
588 struct journal_buf *buf;
589 bool can_discard;
590 int ret;
591 retry:
592 if (journal_res_get_fast(j, res, flags))
593 return 0;
594
595 ret = bch2_journal_error(j);
596 if (unlikely(ret))
597 return ret;
598
599 if (j->blocked)
600 return bch_err_throw(c, journal_blocked);
601
602 if ((flags & BCH_WATERMARK_MASK) < j->watermark) {
603 ret = bch_err_throw(c, journal_full);
604 can_discard = j->can_discard;
605 goto out;
606 }
607
608 if (nr_unwritten_journal_entries(j) == ARRAY_SIZE(j->buf) && !journal_entry_is_open(j)) {
609 ret = bch_err_throw(c, journal_max_in_flight);
610 goto out;
611 }
612
613 spin_lock(&j->lock);
614
615 journal_buf_prealloc(j);
616
617 /*
618 * Recheck after taking the lock, so we don't race with another thread
619 * that just did journal_entry_open() and call bch2_journal_entry_close()
620 * unnecessarily
621 */
622 if (journal_res_get_fast(j, res, flags)) {
623 ret = 0;
624 goto unlock;
625 }
626
627 /*
628 * If we couldn't get a reservation because the current buf filled up,
629 * and we had room for a bigger entry on disk, signal that we want to
630 * realloc the journal bufs:
631 */
632 buf = journal_cur_buf(j);
633 if (journal_entry_is_open(j) &&
634 buf->buf_size >> 9 < buf->disk_sectors &&
635 buf->buf_size < JOURNAL_ENTRY_SIZE_MAX)
636 j->buf_size_want = max(j->buf_size_want, buf->buf_size << 1);
637
638 __journal_entry_close(j, JOURNAL_ENTRY_CLOSED_VAL, false);
639 ret = journal_entry_open(j) ?: -BCH_ERR_journal_retry_open;
640 unlock:
641 can_discard = j->can_discard;
642 spin_unlock(&j->lock);
643 out:
644 if (likely(!ret))
645 return 0;
646 if (ret == -BCH_ERR_journal_retry_open)
647 goto retry;
648
649 if (journal_error_check_stuck(j, ret, flags))
650 ret = bch_err_throw(c, journal_stuck);
651
652 if (ret == -BCH_ERR_journal_max_in_flight &&
653 track_event_change(&c->times[BCH_TIME_blocked_journal_max_in_flight], true) &&
654 trace_journal_entry_full_enabled()) {
655 struct printbuf buf = PRINTBUF;
656
657 bch2_printbuf_make_room(&buf, 4096);
658
659 spin_lock(&j->lock);
660 prt_printf(&buf, "seq %llu\n", journal_cur_seq(j));
661 bch2_journal_bufs_to_text(&buf, j);
662 spin_unlock(&j->lock);
663
664 trace_journal_entry_full(c, buf.buf);
665 printbuf_exit(&buf);
666 count_event(c, journal_entry_full);
667 }
668
669 if (ret == -BCH_ERR_journal_max_open &&
670 track_event_change(&c->times[BCH_TIME_blocked_journal_max_open], true) &&
671 trace_journal_entry_full_enabled()) {
672 struct printbuf buf = PRINTBUF;
673
674 bch2_printbuf_make_room(&buf, 4096);
675
676 spin_lock(&j->lock);
677 prt_printf(&buf, "seq %llu\n", journal_cur_seq(j));
678 bch2_journal_bufs_to_text(&buf, j);
679 spin_unlock(&j->lock);
680
681 trace_journal_entry_full(c, buf.buf);
682 printbuf_exit(&buf);
683 count_event(c, journal_entry_full);
684 }
685
686 /*
687 * Journal is full - can't rely on reclaim from work item due to
688 * freezing:
689 */
690 if ((ret == -BCH_ERR_journal_full ||
691 ret == -BCH_ERR_journal_pin_full) &&
692 !(flags & JOURNAL_RES_GET_NONBLOCK)) {
693 if (can_discard) {
694 bch2_journal_do_discards(j);
695 goto retry;
696 }
697
698 if (mutex_trylock(&j->reclaim_lock)) {
699 bch2_journal_reclaim(j);
700 mutex_unlock(&j->reclaim_lock);
701 }
702 }
703
704 return ret;
705 }
706
max_dev_latency(struct bch_fs * c)707 static unsigned max_dev_latency(struct bch_fs *c)
708 {
709 u64 nsecs = 0;
710
711 guard(rcu)();
712 for_each_rw_member_rcu(c, ca)
713 nsecs = max(nsecs, ca->io_latency[WRITE].stats.max_duration);
714
715 return nsecs_to_jiffies(nsecs);
716 }
717
718 /*
719 * Essentially the entry function to the journaling code. When bcachefs is doing
720 * a btree insert, it calls this function to get the current journal write.
721 * Journal write is the structure used set up journal writes. The calling
722 * function will then add its keys to the structure, queuing them for the next
723 * write.
724 *
725 * To ensure forward progress, the current task must not be holding any
726 * btree node write locks.
727 */
bch2_journal_res_get_slowpath(struct journal * j,struct journal_res * res,unsigned flags,struct btree_trans * trans)728 int bch2_journal_res_get_slowpath(struct journal *j, struct journal_res *res,
729 unsigned flags,
730 struct btree_trans *trans)
731 {
732 int ret;
733
734 if (closure_wait_event_timeout(&j->async_wait,
735 !bch2_err_matches(ret = __journal_res_get(j, res, flags), BCH_ERR_operation_blocked) ||
736 (flags & JOURNAL_RES_GET_NONBLOCK),
737 HZ))
738 return ret;
739
740 if (trans)
741 bch2_trans_unlock_long(trans);
742
743 struct bch_fs *c = container_of(j, struct bch_fs, journal);
744 int remaining_wait = max(max_dev_latency(c) * 2, HZ * 10);
745
746 remaining_wait = max(0, remaining_wait - HZ);
747
748 if (closure_wait_event_timeout(&j->async_wait,
749 !bch2_err_matches(ret = __journal_res_get(j, res, flags), BCH_ERR_operation_blocked) ||
750 (flags & JOURNAL_RES_GET_NONBLOCK),
751 remaining_wait))
752 return ret;
753
754 struct printbuf buf = PRINTBUF;
755 bch2_journal_debug_to_text(&buf, j);
756 bch2_print_str(c, KERN_ERR, buf.buf);
757 prt_printf(&buf, bch2_fmt(c, "Journal stuck? Waited for 10 seconds, err %s"), bch2_err_str(ret));
758 printbuf_exit(&buf);
759
760 closure_wait_event(&j->async_wait,
761 !bch2_err_matches(ret = __journal_res_get(j, res, flags), BCH_ERR_operation_blocked) ||
762 (flags & JOURNAL_RES_GET_NONBLOCK));
763 return ret;
764 }
765
766 /* journal_entry_res: */
767
bch2_journal_entry_res_resize(struct journal * j,struct journal_entry_res * res,unsigned new_u64s)768 void bch2_journal_entry_res_resize(struct journal *j,
769 struct journal_entry_res *res,
770 unsigned new_u64s)
771 {
772 union journal_res_state state;
773 int d = new_u64s - res->u64s;
774
775 spin_lock(&j->lock);
776
777 j->entry_u64s_reserved += d;
778 if (d <= 0)
779 goto out;
780
781 j->cur_entry_u64s = max_t(int, 0, j->cur_entry_u64s - d);
782 state = READ_ONCE(j->reservations);
783
784 if (state.cur_entry_offset < JOURNAL_ENTRY_CLOSED_VAL &&
785 state.cur_entry_offset > j->cur_entry_u64s) {
786 j->cur_entry_u64s += d;
787 /*
788 * Not enough room in current journal entry, have to flush it:
789 */
790 __journal_entry_close(j, JOURNAL_ENTRY_CLOSED_VAL, true);
791 } else {
792 journal_cur_buf(j)->u64s_reserved += d;
793 }
794 out:
795 spin_unlock(&j->lock);
796 res->u64s += d;
797 }
798
799 /* journal flushing: */
800
801 /**
802 * bch2_journal_flush_seq_async - wait for a journal entry to be written
803 * @j: journal object
804 * @seq: seq to flush
805 * @parent: closure object to wait with
806 * Returns: 1 if @seq has already been flushed, 0 if @seq is being flushed,
807 * -BCH_ERR_journal_flush_err if @seq will never be flushed
808 *
809 * Like bch2_journal_wait_on_seq, except that it triggers a write immediately if
810 * necessary
811 */
bch2_journal_flush_seq_async(struct journal * j,u64 seq,struct closure * parent)812 int bch2_journal_flush_seq_async(struct journal *j, u64 seq,
813 struct closure *parent)
814 {
815 struct bch_fs *c = container_of(j, struct bch_fs, journal);
816 struct journal_buf *buf;
817 int ret = 0;
818
819 if (seq <= j->flushed_seq_ondisk)
820 return 1;
821
822 spin_lock(&j->lock);
823
824 if (WARN_ONCE(seq > journal_cur_seq(j),
825 "requested to flush journal seq %llu, but currently at %llu",
826 seq, journal_cur_seq(j)))
827 goto out;
828
829 /* Recheck under lock: */
830 if (j->err_seq && seq >= j->err_seq) {
831 ret = bch_err_throw(c, journal_flush_err);
832 goto out;
833 }
834
835 if (seq <= j->flushed_seq_ondisk) {
836 ret = 1;
837 goto out;
838 }
839
840 /* if seq was written, but not flushed - flush a newer one instead */
841 seq = max(seq, journal_last_unwritten_seq(j));
842
843 recheck_need_open:
844 if (seq > journal_cur_seq(j)) {
845 struct journal_res res = { 0 };
846
847 if (journal_entry_is_open(j))
848 __journal_entry_close(j, JOURNAL_ENTRY_CLOSED_VAL, true);
849
850 spin_unlock(&j->lock);
851
852 /*
853 * We're called from bch2_journal_flush_seq() -> wait_event();
854 * but this might block. We won't usually block, so we won't
855 * livelock:
856 */
857 sched_annotate_sleep();
858 ret = bch2_journal_res_get(j, &res, jset_u64s(0), 0, NULL);
859 if (ret)
860 return ret;
861
862 seq = res.seq;
863 buf = journal_seq_to_buf(j, seq);
864 buf->must_flush = true;
865
866 if (!buf->flush_time) {
867 buf->flush_time = local_clock() ?: 1;
868 buf->expires = jiffies;
869 }
870
871 if (parent && !closure_wait(&buf->wait, parent))
872 BUG();
873
874 bch2_journal_res_put(j, &res);
875
876 spin_lock(&j->lock);
877 goto want_write;
878 }
879
880 /*
881 * if write was kicked off without a flush, or if we promised it
882 * wouldn't be a flush, flush the next sequence number instead
883 */
884 buf = journal_seq_to_buf(j, seq);
885 if (buf->noflush) {
886 seq++;
887 goto recheck_need_open;
888 }
889
890 buf->must_flush = true;
891 j->flushing_seq = max(j->flushing_seq, seq);
892
893 if (parent && !closure_wait(&buf->wait, parent))
894 BUG();
895 want_write:
896 if (seq == journal_cur_seq(j))
897 journal_entry_want_write(j);
898 out:
899 spin_unlock(&j->lock);
900 return ret;
901 }
902
bch2_journal_flush_seq(struct journal * j,u64 seq,unsigned task_state)903 int bch2_journal_flush_seq(struct journal *j, u64 seq, unsigned task_state)
904 {
905 u64 start_time = local_clock();
906 int ret, ret2;
907
908 /*
909 * Don't update time_stats when @seq is already flushed:
910 */
911 if (seq <= j->flushed_seq_ondisk)
912 return 0;
913
914 ret = wait_event_state(j->wait,
915 (ret2 = bch2_journal_flush_seq_async(j, seq, NULL)),
916 task_state);
917
918 if (!ret)
919 bch2_time_stats_update(j->flush_seq_time, start_time);
920
921 return ret ?: ret2 < 0 ? ret2 : 0;
922 }
923
924 /*
925 * bch2_journal_flush_async - if there is an open journal entry, or a journal
926 * still being written, write it and wait for the write to complete
927 */
bch2_journal_flush_async(struct journal * j,struct closure * parent)928 void bch2_journal_flush_async(struct journal *j, struct closure *parent)
929 {
930 bch2_journal_flush_seq_async(j, atomic64_read(&j->seq), parent);
931 }
932
bch2_journal_flush(struct journal * j)933 int bch2_journal_flush(struct journal *j)
934 {
935 return bch2_journal_flush_seq(j, atomic64_read(&j->seq), TASK_UNINTERRUPTIBLE);
936 }
937
938 /*
939 * bch2_journal_noflush_seq - ask the journal not to issue any flushes in the
940 * range [start, end)
941 * @seq
942 */
bch2_journal_noflush_seq(struct journal * j,u64 start,u64 end)943 bool bch2_journal_noflush_seq(struct journal *j, u64 start, u64 end)
944 {
945 struct bch_fs *c = container_of(j, struct bch_fs, journal);
946 u64 unwritten_seq;
947 bool ret = false;
948
949 if (!(c->sb.features & (1ULL << BCH_FEATURE_journal_no_flush)))
950 return false;
951
952 if (c->journal.flushed_seq_ondisk >= start)
953 return false;
954
955 spin_lock(&j->lock);
956 if (c->journal.flushed_seq_ondisk >= start)
957 goto out;
958
959 for (unwritten_seq = journal_last_unwritten_seq(j);
960 unwritten_seq < end;
961 unwritten_seq++) {
962 struct journal_buf *buf = journal_seq_to_buf(j, unwritten_seq);
963
964 /* journal flush already in flight, or flush requseted */
965 if (buf->must_flush)
966 goto out;
967
968 buf->noflush = true;
969 }
970
971 ret = true;
972 out:
973 spin_unlock(&j->lock);
974 return ret;
975 }
976
__bch2_journal_meta(struct journal * j)977 static int __bch2_journal_meta(struct journal *j)
978 {
979 struct journal_res res = {};
980 int ret = bch2_journal_res_get(j, &res, jset_u64s(0), 0, NULL);
981 if (ret)
982 return ret;
983
984 struct journal_buf *buf = j->buf + (res.seq & JOURNAL_BUF_MASK);
985 buf->must_flush = true;
986
987 if (!buf->flush_time) {
988 buf->flush_time = local_clock() ?: 1;
989 buf->expires = jiffies;
990 }
991
992 bch2_journal_res_put(j, &res);
993
994 return bch2_journal_flush_seq(j, res.seq, TASK_UNINTERRUPTIBLE);
995 }
996
bch2_journal_meta(struct journal * j)997 int bch2_journal_meta(struct journal *j)
998 {
999 struct bch_fs *c = container_of(j, struct bch_fs, journal);
1000
1001 if (!enumerated_ref_tryget(&c->writes, BCH_WRITE_REF_journal))
1002 return bch_err_throw(c, erofs_no_writes);
1003
1004 int ret = __bch2_journal_meta(j);
1005 enumerated_ref_put(&c->writes, BCH_WRITE_REF_journal);
1006 return ret;
1007 }
1008
1009 /* block/unlock the journal: */
1010
bch2_journal_unblock(struct journal * j)1011 void bch2_journal_unblock(struct journal *j)
1012 {
1013 spin_lock(&j->lock);
1014 if (!--j->blocked &&
1015 j->cur_entry_offset_if_blocked < JOURNAL_ENTRY_CLOSED_VAL &&
1016 j->reservations.cur_entry_offset == JOURNAL_ENTRY_BLOCKED_VAL) {
1017 union journal_res_state old, new;
1018
1019 old.v = atomic64_read(&j->reservations.counter);
1020 do {
1021 new.v = old.v;
1022 new.cur_entry_offset = j->cur_entry_offset_if_blocked;
1023 } while (!atomic64_try_cmpxchg(&j->reservations.counter, &old.v, new.v));
1024 }
1025 spin_unlock(&j->lock);
1026
1027 journal_wake(j);
1028 }
1029
__bch2_journal_block(struct journal * j)1030 static void __bch2_journal_block(struct journal *j)
1031 {
1032 if (!j->blocked++) {
1033 union journal_res_state old, new;
1034
1035 old.v = atomic64_read(&j->reservations.counter);
1036 do {
1037 j->cur_entry_offset_if_blocked = old.cur_entry_offset;
1038
1039 if (j->cur_entry_offset_if_blocked >= JOURNAL_ENTRY_CLOSED_VAL)
1040 break;
1041
1042 new.v = old.v;
1043 new.cur_entry_offset = JOURNAL_ENTRY_BLOCKED_VAL;
1044 } while (!atomic64_try_cmpxchg(&j->reservations.counter, &old.v, new.v));
1045
1046 if (old.cur_entry_offset < JOURNAL_ENTRY_BLOCKED_VAL)
1047 journal_cur_buf(j)->data->u64s = cpu_to_le32(old.cur_entry_offset);
1048 }
1049 }
1050
bch2_journal_block(struct journal * j)1051 void bch2_journal_block(struct journal *j)
1052 {
1053 spin_lock(&j->lock);
1054 __bch2_journal_block(j);
1055 spin_unlock(&j->lock);
1056
1057 journal_quiesce(j);
1058 }
1059
__bch2_next_write_buffer_flush_journal_buf(struct journal * j,u64 max_seq,bool * blocked)1060 static struct journal_buf *__bch2_next_write_buffer_flush_journal_buf(struct journal *j,
1061 u64 max_seq, bool *blocked)
1062 {
1063 struct journal_buf *ret = NULL;
1064
1065 /* We're inside wait_event(), but using mutex_lock(: */
1066 sched_annotate_sleep();
1067 mutex_lock(&j->buf_lock);
1068 spin_lock(&j->lock);
1069 max_seq = min(max_seq, journal_cur_seq(j));
1070
1071 for (u64 seq = journal_last_unwritten_seq(j);
1072 seq <= max_seq;
1073 seq++) {
1074 unsigned idx = seq & JOURNAL_BUF_MASK;
1075 struct journal_buf *buf = j->buf + idx;
1076
1077 if (buf->need_flush_to_write_buffer) {
1078 union journal_res_state s;
1079 s.v = atomic64_read_acquire(&j->reservations.counter);
1080
1081 unsigned open = seq == journal_cur_seq(j) && __journal_entry_is_open(s);
1082
1083 if (open && !*blocked) {
1084 __bch2_journal_block(j);
1085 *blocked = true;
1086 }
1087
1088 ret = journal_state_count(s, idx & JOURNAL_STATE_BUF_MASK) > open
1089 ? ERR_PTR(-EAGAIN)
1090 : buf;
1091 break;
1092 }
1093 }
1094
1095 spin_unlock(&j->lock);
1096 if (IS_ERR_OR_NULL(ret))
1097 mutex_unlock(&j->buf_lock);
1098 return ret;
1099 }
1100
bch2_next_write_buffer_flush_journal_buf(struct journal * j,u64 max_seq,bool * blocked)1101 struct journal_buf *bch2_next_write_buffer_flush_journal_buf(struct journal *j,
1102 u64 max_seq, bool *blocked)
1103 {
1104 struct journal_buf *ret;
1105 *blocked = false;
1106
1107 wait_event(j->wait, (ret = __bch2_next_write_buffer_flush_journal_buf(j,
1108 max_seq, blocked)) != ERR_PTR(-EAGAIN));
1109 if (IS_ERR_OR_NULL(ret) && *blocked)
1110 bch2_journal_unblock(j);
1111
1112 return ret;
1113 }
1114
1115 /* allocate journal on a device: */
1116
bch2_set_nr_journal_buckets_iter(struct bch_dev * ca,unsigned nr,bool new_fs,struct closure * cl)1117 static int bch2_set_nr_journal_buckets_iter(struct bch_dev *ca, unsigned nr,
1118 bool new_fs, struct closure *cl)
1119 {
1120 struct bch_fs *c = ca->fs;
1121 struct journal_device *ja = &ca->journal;
1122 u64 *new_bucket_seq = NULL, *new_buckets = NULL;
1123 struct open_bucket **ob = NULL;
1124 long *bu = NULL;
1125 unsigned i, pos, nr_got = 0, nr_want = nr - ja->nr;
1126 int ret = 0;
1127
1128 BUG_ON(nr <= ja->nr);
1129
1130 bu = kcalloc(nr_want, sizeof(*bu), GFP_KERNEL);
1131 ob = kcalloc(nr_want, sizeof(*ob), GFP_KERNEL);
1132 new_buckets = kcalloc(nr, sizeof(u64), GFP_KERNEL);
1133 new_bucket_seq = kcalloc(nr, sizeof(u64), GFP_KERNEL);
1134 if (!bu || !ob || !new_buckets || !new_bucket_seq) {
1135 ret = bch_err_throw(c, ENOMEM_set_nr_journal_buckets);
1136 goto err_free;
1137 }
1138
1139 for (nr_got = 0; nr_got < nr_want; nr_got++) {
1140 enum bch_watermark watermark = new_fs
1141 ? BCH_WATERMARK_btree
1142 : BCH_WATERMARK_normal;
1143
1144 ob[nr_got] = bch2_bucket_alloc(c, ca, watermark,
1145 BCH_DATA_journal, cl);
1146 ret = PTR_ERR_OR_ZERO(ob[nr_got]);
1147 if (ret)
1148 break;
1149
1150 if (!new_fs) {
1151 ret = bch2_trans_run(c,
1152 bch2_trans_mark_metadata_bucket(trans, ca,
1153 ob[nr_got]->bucket, BCH_DATA_journal,
1154 ca->mi.bucket_size, BTREE_TRIGGER_transactional));
1155 if (ret) {
1156 bch2_open_bucket_put(c, ob[nr_got]);
1157 bch_err_msg(c, ret, "marking new journal buckets");
1158 break;
1159 }
1160 }
1161
1162 bu[nr_got] = ob[nr_got]->bucket;
1163 }
1164
1165 if (!nr_got)
1166 goto err_free;
1167
1168 /* Don't return an error if we successfully allocated some buckets: */
1169 ret = 0;
1170
1171 if (c) {
1172 bch2_journal_flush_all_pins(&c->journal);
1173 bch2_journal_block(&c->journal);
1174 mutex_lock(&c->sb_lock);
1175 }
1176
1177 memcpy(new_buckets, ja->buckets, ja->nr * sizeof(u64));
1178 memcpy(new_bucket_seq, ja->bucket_seq, ja->nr * sizeof(u64));
1179
1180 BUG_ON(ja->discard_idx > ja->nr);
1181
1182 pos = ja->discard_idx ?: ja->nr;
1183
1184 memmove(new_buckets + pos + nr_got,
1185 new_buckets + pos,
1186 sizeof(new_buckets[0]) * (ja->nr - pos));
1187 memmove(new_bucket_seq + pos + nr_got,
1188 new_bucket_seq + pos,
1189 sizeof(new_bucket_seq[0]) * (ja->nr - pos));
1190
1191 for (i = 0; i < nr_got; i++) {
1192 new_buckets[pos + i] = bu[i];
1193 new_bucket_seq[pos + i] = 0;
1194 }
1195
1196 nr = ja->nr + nr_got;
1197
1198 ret = bch2_journal_buckets_to_sb(c, ca, new_buckets, nr);
1199 if (ret)
1200 goto err_unblock;
1201
1202 bch2_write_super(c);
1203
1204 /* Commit: */
1205 if (c)
1206 spin_lock(&c->journal.lock);
1207
1208 swap(new_buckets, ja->buckets);
1209 swap(new_bucket_seq, ja->bucket_seq);
1210 ja->nr = nr;
1211
1212 if (pos <= ja->discard_idx)
1213 ja->discard_idx = (ja->discard_idx + nr_got) % ja->nr;
1214 if (pos <= ja->dirty_idx_ondisk)
1215 ja->dirty_idx_ondisk = (ja->dirty_idx_ondisk + nr_got) % ja->nr;
1216 if (pos <= ja->dirty_idx)
1217 ja->dirty_idx = (ja->dirty_idx + nr_got) % ja->nr;
1218 if (pos <= ja->cur_idx)
1219 ja->cur_idx = (ja->cur_idx + nr_got) % ja->nr;
1220
1221 if (c)
1222 spin_unlock(&c->journal.lock);
1223 err_unblock:
1224 if (c) {
1225 bch2_journal_unblock(&c->journal);
1226 mutex_unlock(&c->sb_lock);
1227 }
1228
1229 if (ret && !new_fs)
1230 for (i = 0; i < nr_got; i++)
1231 bch2_trans_run(c,
1232 bch2_trans_mark_metadata_bucket(trans, ca,
1233 bu[i], BCH_DATA_free, 0,
1234 BTREE_TRIGGER_transactional));
1235 err_free:
1236 for (i = 0; i < nr_got; i++)
1237 bch2_open_bucket_put(c, ob[i]);
1238
1239 kfree(new_bucket_seq);
1240 kfree(new_buckets);
1241 kfree(ob);
1242 kfree(bu);
1243 return ret;
1244 }
1245
bch2_set_nr_journal_buckets_loop(struct bch_fs * c,struct bch_dev * ca,unsigned nr,bool new_fs)1246 static int bch2_set_nr_journal_buckets_loop(struct bch_fs *c, struct bch_dev *ca,
1247 unsigned nr, bool new_fs)
1248 {
1249 struct journal_device *ja = &ca->journal;
1250 int ret = 0;
1251
1252 struct closure cl;
1253 closure_init_stack(&cl);
1254
1255 /* don't handle reducing nr of buckets yet: */
1256 if (nr < ja->nr)
1257 return 0;
1258
1259 while (!ret && ja->nr < nr) {
1260 struct disk_reservation disk_res = { 0, 0, 0 };
1261
1262 /*
1263 * note: journal buckets aren't really counted as _sectors_ used yet, so
1264 * we don't need the disk reservation to avoid the BUG_ON() in buckets.c
1265 * when space used goes up without a reservation - but we do need the
1266 * reservation to ensure we'll actually be able to allocate:
1267 *
1268 * XXX: that's not right, disk reservations only ensure a
1269 * filesystem-wide allocation will succeed, this is a device
1270 * specific allocation - we can hang here:
1271 */
1272 if (!new_fs) {
1273 ret = bch2_disk_reservation_get(c, &disk_res,
1274 bucket_to_sector(ca, nr - ja->nr), 1, 0);
1275 if (ret)
1276 break;
1277 }
1278
1279 ret = bch2_set_nr_journal_buckets_iter(ca, nr, new_fs, &cl);
1280
1281 if (ret == -BCH_ERR_bucket_alloc_blocked ||
1282 ret == -BCH_ERR_open_buckets_empty)
1283 ret = 0; /* wait and retry */
1284
1285 bch2_disk_reservation_put(c, &disk_res);
1286 bch2_wait_on_allocator(c, &cl);
1287 }
1288
1289 return ret;
1290 }
1291
1292 /*
1293 * Allocate more journal space at runtime - not currently making use if it, but
1294 * the code works:
1295 */
bch2_set_nr_journal_buckets(struct bch_fs * c,struct bch_dev * ca,unsigned nr)1296 int bch2_set_nr_journal_buckets(struct bch_fs *c, struct bch_dev *ca,
1297 unsigned nr)
1298 {
1299 down_write(&c->state_lock);
1300 int ret = bch2_set_nr_journal_buckets_loop(c, ca, nr, false);
1301 up_write(&c->state_lock);
1302
1303 bch_err_fn(c, ret);
1304 return ret;
1305 }
1306
bch2_dev_journal_bucket_delete(struct bch_dev * ca,u64 b)1307 int bch2_dev_journal_bucket_delete(struct bch_dev *ca, u64 b)
1308 {
1309 struct bch_fs *c = ca->fs;
1310 struct journal *j = &c->journal;
1311 struct journal_device *ja = &ca->journal;
1312
1313 guard(mutex)(&c->sb_lock);
1314 unsigned pos;
1315 for (pos = 0; pos < ja->nr; pos++)
1316 if (ja->buckets[pos] == b)
1317 break;
1318
1319 if (pos == ja->nr) {
1320 bch_err(ca, "journal bucket %llu not found when deleting", b);
1321 return -EINVAL;
1322 }
1323
1324 u64 *new_buckets = kcalloc(ja->nr, sizeof(u64), GFP_KERNEL);;
1325 if (!new_buckets)
1326 return bch_err_throw(c, ENOMEM_set_nr_journal_buckets);
1327
1328 memcpy(new_buckets, ja->buckets, ja->nr * sizeof(u64));
1329 memmove(&new_buckets[pos],
1330 &new_buckets[pos + 1],
1331 (ja->nr - 1 - pos) * sizeof(new_buckets[0]));
1332
1333 int ret = bch2_journal_buckets_to_sb(c, ca, ja->buckets, ja->nr - 1) ?:
1334 bch2_write_super(c);
1335 if (ret) {
1336 kfree(new_buckets);
1337 return ret;
1338 }
1339
1340 scoped_guard(spinlock, &j->lock) {
1341 if (pos < ja->discard_idx)
1342 --ja->discard_idx;
1343 if (pos < ja->dirty_idx_ondisk)
1344 --ja->dirty_idx_ondisk;
1345 if (pos < ja->dirty_idx)
1346 --ja->dirty_idx;
1347 if (pos < ja->cur_idx)
1348 --ja->cur_idx;
1349
1350 ja->nr--;
1351
1352 memmove(&ja->buckets[pos],
1353 &ja->buckets[pos + 1],
1354 (ja->nr - pos) * sizeof(ja->buckets[0]));
1355
1356 memmove(&ja->bucket_seq[pos],
1357 &ja->bucket_seq[pos + 1],
1358 (ja->nr - pos) * sizeof(ja->bucket_seq[0]));
1359
1360 bch2_journal_space_available(j);
1361 }
1362
1363 kfree(new_buckets);
1364 return 0;
1365 }
1366
bch2_dev_journal_alloc(struct bch_dev * ca,bool new_fs)1367 int bch2_dev_journal_alloc(struct bch_dev *ca, bool new_fs)
1368 {
1369 struct bch_fs *c = ca->fs;
1370
1371 if (!(ca->mi.data_allowed & BIT(BCH_DATA_journal)))
1372 return 0;
1373
1374 if (c->sb.features & BIT_ULL(BCH_FEATURE_small_image)) {
1375 bch_err(c, "cannot allocate journal, filesystem is an unresized image file");
1376 return bch_err_throw(c, erofs_filesystem_full);
1377 }
1378
1379 unsigned nr;
1380 int ret;
1381
1382 if (dynamic_fault("bcachefs:add:journal_alloc")) {
1383 ret = bch_err_throw(c, ENOMEM_set_nr_journal_buckets);
1384 goto err;
1385 }
1386
1387 /* 1/128th of the device by default: */
1388 nr = ca->mi.nbuckets >> 7;
1389
1390 /*
1391 * clamp journal size to 8192 buckets or 8GB (in sectors), whichever
1392 * is smaller:
1393 */
1394 nr = clamp_t(unsigned, nr,
1395 BCH_JOURNAL_BUCKETS_MIN,
1396 min(1 << 13,
1397 (1 << 24) / ca->mi.bucket_size));
1398
1399 ret = bch2_set_nr_journal_buckets_loop(c, ca, nr, new_fs);
1400 err:
1401 bch_err_fn(ca, ret);
1402 return ret;
1403 }
1404
bch2_fs_journal_alloc(struct bch_fs * c)1405 int bch2_fs_journal_alloc(struct bch_fs *c)
1406 {
1407 for_each_online_member(c, ca, BCH_DEV_READ_REF_fs_journal_alloc) {
1408 if (ca->journal.nr)
1409 continue;
1410
1411 int ret = bch2_dev_journal_alloc(ca, true);
1412 if (ret) {
1413 enumerated_ref_put(&ca->io_ref[READ],
1414 BCH_DEV_READ_REF_fs_journal_alloc);
1415 return ret;
1416 }
1417 }
1418
1419 return 0;
1420 }
1421
1422 /* startup/shutdown: */
1423
bch2_journal_writing_to_device(struct journal * j,unsigned dev_idx)1424 static bool bch2_journal_writing_to_device(struct journal *j, unsigned dev_idx)
1425 {
1426 bool ret = false;
1427 u64 seq;
1428
1429 spin_lock(&j->lock);
1430 for (seq = journal_last_unwritten_seq(j);
1431 seq <= journal_cur_seq(j) && !ret;
1432 seq++) {
1433 struct journal_buf *buf = journal_seq_to_buf(j, seq);
1434
1435 if (bch2_bkey_has_device_c(bkey_i_to_s_c(&buf->key), dev_idx))
1436 ret = true;
1437 }
1438 spin_unlock(&j->lock);
1439
1440 return ret;
1441 }
1442
bch2_dev_journal_stop(struct journal * j,struct bch_dev * ca)1443 void bch2_dev_journal_stop(struct journal *j, struct bch_dev *ca)
1444 {
1445 wait_event(j->wait, !bch2_journal_writing_to_device(j, ca->dev_idx));
1446 }
1447
bch2_fs_journal_stop(struct journal * j)1448 void bch2_fs_journal_stop(struct journal *j)
1449 {
1450 if (!test_bit(JOURNAL_running, &j->flags))
1451 return;
1452
1453 bch2_journal_reclaim_stop(j);
1454 bch2_journal_flush_all_pins(j);
1455
1456 wait_event(j->wait, bch2_journal_entry_close(j));
1457
1458 /*
1459 * Always write a new journal entry, to make sure the clock hands are up
1460 * to date (and match the superblock)
1461 */
1462 __bch2_journal_meta(j);
1463
1464 journal_quiesce(j);
1465 cancel_delayed_work_sync(&j->write_work);
1466
1467 WARN(!bch2_journal_error(j) &&
1468 test_bit(JOURNAL_replay_done, &j->flags) &&
1469 j->last_empty_seq != journal_cur_seq(j),
1470 "journal shutdown error: cur seq %llu but last empty seq %llu",
1471 journal_cur_seq(j), j->last_empty_seq);
1472
1473 if (!bch2_journal_error(j))
1474 clear_bit(JOURNAL_running, &j->flags);
1475 }
1476
bch2_fs_journal_start(struct journal * j,u64 last_seq,u64 cur_seq)1477 int bch2_fs_journal_start(struct journal *j, u64 last_seq, u64 cur_seq)
1478 {
1479 struct bch_fs *c = container_of(j, struct bch_fs, journal);
1480 struct journal_entry_pin_list *p;
1481 struct journal_replay *i, **_i;
1482 struct genradix_iter iter;
1483 bool had_entries = false;
1484
1485 /*
1486 *
1487 * XXX pick most recent non blacklisted sequence number
1488 */
1489
1490 cur_seq = max(cur_seq, bch2_journal_last_blacklisted_seq(c));
1491
1492 if (cur_seq >= JOURNAL_SEQ_MAX) {
1493 bch_err(c, "cannot start: journal seq overflow");
1494 return -EINVAL;
1495 }
1496
1497 /* Clean filesystem? */
1498 if (!last_seq)
1499 last_seq = cur_seq;
1500
1501 u64 nr = cur_seq - last_seq;
1502
1503 /*
1504 * Extra fudge factor, in case we crashed when the journal pin fifo was
1505 * nearly or completely full. We'll need to be able to open additional
1506 * journal entries (at least a few) in order for journal replay to get
1507 * going:
1508 */
1509 nr += nr / 4;
1510
1511 nr = max(nr, JOURNAL_PIN);
1512 init_fifo(&j->pin, roundup_pow_of_two(nr), GFP_KERNEL);
1513 if (!j->pin.data) {
1514 bch_err(c, "error reallocating journal fifo (%llu open entries)", nr);
1515 return bch_err_throw(c, ENOMEM_journal_pin_fifo);
1516 }
1517
1518 j->replay_journal_seq = last_seq;
1519 j->replay_journal_seq_end = cur_seq;
1520 j->last_seq_ondisk = last_seq;
1521 j->flushed_seq_ondisk = cur_seq - 1;
1522 j->seq_write_started = cur_seq - 1;
1523 j->seq_ondisk = cur_seq - 1;
1524 j->pin.front = last_seq;
1525 j->pin.back = cur_seq;
1526 atomic64_set(&j->seq, cur_seq - 1);
1527
1528 u64 seq;
1529 fifo_for_each_entry_ptr(p, &j->pin, seq)
1530 journal_pin_list_init(p, 1);
1531
1532 genradix_for_each(&c->journal_entries, iter, _i) {
1533 i = *_i;
1534
1535 if (journal_replay_ignore(i))
1536 continue;
1537
1538 seq = le64_to_cpu(i->j.seq);
1539 BUG_ON(seq >= cur_seq);
1540
1541 if (seq < last_seq)
1542 continue;
1543
1544 if (journal_entry_empty(&i->j))
1545 j->last_empty_seq = le64_to_cpu(i->j.seq);
1546
1547 p = journal_seq_pin(j, seq);
1548
1549 p->devs.nr = 0;
1550 darray_for_each(i->ptrs, ptr)
1551 bch2_dev_list_add_dev(&p->devs, ptr->dev);
1552
1553 had_entries = true;
1554 }
1555
1556 if (!had_entries)
1557 j->last_empty_seq = cur_seq - 1; /* to match j->seq */
1558
1559 spin_lock(&j->lock);
1560 j->last_flush_write = jiffies;
1561
1562 j->reservations.idx = journal_cur_seq(j);
1563
1564 c->last_bucket_seq_cleanup = journal_cur_seq(j);
1565 spin_unlock(&j->lock);
1566
1567 return 0;
1568 }
1569
bch2_journal_set_replay_done(struct journal * j)1570 void bch2_journal_set_replay_done(struct journal *j)
1571 {
1572 /*
1573 * journal_space_available must happen before setting JOURNAL_running
1574 * JOURNAL_running must happen before JOURNAL_replay_done
1575 */
1576 spin_lock(&j->lock);
1577 bch2_journal_space_available(j);
1578
1579 set_bit(JOURNAL_need_flush_write, &j->flags);
1580 set_bit(JOURNAL_running, &j->flags);
1581 set_bit(JOURNAL_replay_done, &j->flags);
1582 spin_unlock(&j->lock);
1583 }
1584
1585 /* init/exit: */
1586
bch2_dev_journal_exit(struct bch_dev * ca)1587 void bch2_dev_journal_exit(struct bch_dev *ca)
1588 {
1589 struct journal_device *ja = &ca->journal;
1590
1591 for (unsigned i = 0; i < ARRAY_SIZE(ja->bio); i++) {
1592 kfree(ja->bio[i]);
1593 ja->bio[i] = NULL;
1594 }
1595
1596 kfree(ja->buckets);
1597 kfree(ja->bucket_seq);
1598 ja->buckets = NULL;
1599 ja->bucket_seq = NULL;
1600 }
1601
bch2_dev_journal_init(struct bch_dev * ca,struct bch_sb * sb)1602 int bch2_dev_journal_init(struct bch_dev *ca, struct bch_sb *sb)
1603 {
1604 struct bch_fs *c = ca->fs;
1605 struct journal_device *ja = &ca->journal;
1606 struct bch_sb_field_journal *journal_buckets =
1607 bch2_sb_field_get(sb, journal);
1608 struct bch_sb_field_journal_v2 *journal_buckets_v2 =
1609 bch2_sb_field_get(sb, journal_v2);
1610
1611 ja->nr = 0;
1612
1613 if (journal_buckets_v2) {
1614 unsigned nr = bch2_sb_field_journal_v2_nr_entries(journal_buckets_v2);
1615
1616 for (unsigned i = 0; i < nr; i++)
1617 ja->nr += le64_to_cpu(journal_buckets_v2->d[i].nr);
1618 } else if (journal_buckets) {
1619 ja->nr = bch2_nr_journal_buckets(journal_buckets);
1620 }
1621
1622 ja->bucket_seq = kcalloc(ja->nr, sizeof(u64), GFP_KERNEL);
1623 if (!ja->bucket_seq)
1624 return bch_err_throw(c, ENOMEM_dev_journal_init);
1625
1626 unsigned nr_bvecs = DIV_ROUND_UP(JOURNAL_ENTRY_SIZE_MAX, PAGE_SIZE);
1627
1628 for (unsigned i = 0; i < ARRAY_SIZE(ja->bio); i++) {
1629 ja->bio[i] = kzalloc(struct_size(ja->bio[i], bio.bi_inline_vecs,
1630 nr_bvecs), GFP_KERNEL);
1631 if (!ja->bio[i])
1632 return bch_err_throw(c, ENOMEM_dev_journal_init);
1633
1634 ja->bio[i]->ca = ca;
1635 ja->bio[i]->buf_idx = i;
1636 bio_init(&ja->bio[i]->bio, NULL, ja->bio[i]->bio.bi_inline_vecs, nr_bvecs, 0);
1637 }
1638
1639 ja->buckets = kcalloc(ja->nr, sizeof(u64), GFP_KERNEL);
1640 if (!ja->buckets)
1641 return bch_err_throw(c, ENOMEM_dev_journal_init);
1642
1643 if (journal_buckets_v2) {
1644 unsigned nr = bch2_sb_field_journal_v2_nr_entries(journal_buckets_v2);
1645 unsigned dst = 0;
1646
1647 for (unsigned i = 0; i < nr; i++)
1648 for (unsigned j = 0; j < le64_to_cpu(journal_buckets_v2->d[i].nr); j++)
1649 ja->buckets[dst++] =
1650 le64_to_cpu(journal_buckets_v2->d[i].start) + j;
1651 } else if (journal_buckets) {
1652 for (unsigned i = 0; i < ja->nr; i++)
1653 ja->buckets[i] = le64_to_cpu(journal_buckets->buckets[i]);
1654 }
1655
1656 return 0;
1657 }
1658
bch2_fs_journal_exit(struct journal * j)1659 void bch2_fs_journal_exit(struct journal *j)
1660 {
1661 if (j->wq)
1662 destroy_workqueue(j->wq);
1663
1664 darray_exit(&j->early_journal_entries);
1665
1666 for (unsigned i = 0; i < ARRAY_SIZE(j->buf); i++)
1667 kvfree(j->buf[i].data);
1668 kvfree(j->free_buf);
1669 free_fifo(&j->pin);
1670 }
1671
bch2_fs_journal_init_early(struct journal * j)1672 void bch2_fs_journal_init_early(struct journal *j)
1673 {
1674 static struct lock_class_key res_key;
1675
1676 mutex_init(&j->buf_lock);
1677 spin_lock_init(&j->lock);
1678 spin_lock_init(&j->err_lock);
1679 init_waitqueue_head(&j->wait);
1680 INIT_DELAYED_WORK(&j->write_work, journal_write_work);
1681 init_waitqueue_head(&j->reclaim_wait);
1682 init_waitqueue_head(&j->pin_flush_wait);
1683 mutex_init(&j->reclaim_lock);
1684 mutex_init(&j->discard_lock);
1685
1686 lockdep_init_map(&j->res_map, "journal res", &res_key, 0);
1687
1688 atomic64_set(&j->reservations.counter,
1689 ((union journal_res_state)
1690 { .cur_entry_offset = JOURNAL_ENTRY_CLOSED_VAL }).v);
1691 }
1692
bch2_fs_journal_init(struct journal * j)1693 int bch2_fs_journal_init(struct journal *j)
1694 {
1695 struct bch_fs *c = container_of(j, struct bch_fs, journal);
1696
1697 j->free_buf_size = j->buf_size_want = JOURNAL_ENTRY_SIZE_MIN;
1698 j->free_buf = kvmalloc(j->free_buf_size, GFP_KERNEL);
1699 if (!j->free_buf)
1700 return bch_err_throw(c, ENOMEM_journal_buf);
1701
1702 for (unsigned i = 0; i < ARRAY_SIZE(j->buf); i++)
1703 j->buf[i].idx = i;
1704
1705 j->wq = alloc_workqueue("bcachefs_journal",
1706 WQ_HIGHPRI|WQ_FREEZABLE|WQ_UNBOUND|WQ_MEM_RECLAIM, 512);
1707 if (!j->wq)
1708 return bch_err_throw(c, ENOMEM_fs_other_alloc);
1709 return 0;
1710 }
1711
1712 /* debug: */
1713
1714 static const char * const bch2_journal_flags_strs[] = {
1715 #define x(n) #n,
1716 JOURNAL_FLAGS()
1717 #undef x
1718 NULL
1719 };
1720
__bch2_journal_debug_to_text(struct printbuf * out,struct journal * j)1721 void __bch2_journal_debug_to_text(struct printbuf *out, struct journal *j)
1722 {
1723 struct bch_fs *c = container_of(j, struct bch_fs, journal);
1724 union journal_res_state s;
1725 unsigned long now = jiffies;
1726 u64 nr_writes = j->nr_flush_writes + j->nr_noflush_writes;
1727
1728 printbuf_tabstops_reset(out);
1729 printbuf_tabstop_push(out, 28);
1730 out->atomic++;
1731
1732 guard(rcu)();
1733 s = READ_ONCE(j->reservations);
1734
1735 prt_printf(out, "flags:\t");
1736 prt_bitflags(out, bch2_journal_flags_strs, j->flags);
1737 prt_newline(out);
1738 prt_printf(out, "dirty journal entries:\t%llu/%llu\n", fifo_used(&j->pin), j->pin.size);
1739 prt_printf(out, "seq:\t%llu\n", journal_cur_seq(j));
1740 prt_printf(out, "seq_ondisk:\t%llu\n", j->seq_ondisk);
1741 prt_printf(out, "last_seq:\t%llu\n", journal_last_seq(j));
1742 prt_printf(out, "last_seq_ondisk:\t%llu\n", j->last_seq_ondisk);
1743 prt_printf(out, "flushed_seq_ondisk:\t%llu\n", j->flushed_seq_ondisk);
1744 prt_printf(out, "watermark:\t%s\n", bch2_watermarks[j->watermark]);
1745 prt_printf(out, "each entry reserved:\t%u\n", j->entry_u64s_reserved);
1746 prt_printf(out, "nr flush writes:\t%llu\n", j->nr_flush_writes);
1747 prt_printf(out, "nr noflush writes:\t%llu\n", j->nr_noflush_writes);
1748 prt_printf(out, "average write size:\t");
1749 prt_human_readable_u64(out, nr_writes ? div64_u64(j->entry_bytes_written, nr_writes) : 0);
1750 prt_newline(out);
1751 prt_printf(out, "free buf:\t%u\n", j->free_buf ? j->free_buf_size : 0);
1752 prt_printf(out, "nr direct reclaim:\t%llu\n", j->nr_direct_reclaim);
1753 prt_printf(out, "nr background reclaim:\t%llu\n", j->nr_background_reclaim);
1754 prt_printf(out, "reclaim kicked:\t%u\n", j->reclaim_kicked);
1755 prt_printf(out, "reclaim runs in:\t%u ms\n", time_after(j->next_reclaim, now)
1756 ? jiffies_to_msecs(j->next_reclaim - jiffies) : 0);
1757 prt_printf(out, "blocked:\t%u\n", j->blocked);
1758 prt_printf(out, "current entry sectors:\t%u\n", j->cur_entry_sectors);
1759 prt_printf(out, "current entry error:\t%s\n", bch2_err_str(j->cur_entry_error));
1760 prt_printf(out, "current entry:\t");
1761
1762 switch (s.cur_entry_offset) {
1763 case JOURNAL_ENTRY_ERROR_VAL:
1764 prt_printf(out, "error\n");
1765 break;
1766 case JOURNAL_ENTRY_CLOSED_VAL:
1767 prt_printf(out, "closed\n");
1768 break;
1769 case JOURNAL_ENTRY_BLOCKED_VAL:
1770 prt_printf(out, "blocked\n");
1771 break;
1772 default:
1773 prt_printf(out, "%u/%u\n", s.cur_entry_offset, j->cur_entry_u64s);
1774 break;
1775 }
1776
1777 prt_printf(out, "unwritten entries:\n");
1778 bch2_journal_bufs_to_text(out, j);
1779
1780 prt_printf(out, "space:\n");
1781 printbuf_indent_add(out, 2);
1782 prt_printf(out, "discarded\t%u:%u\n",
1783 j->space[journal_space_discarded].next_entry,
1784 j->space[journal_space_discarded].total);
1785 prt_printf(out, "clean ondisk\t%u:%u\n",
1786 j->space[journal_space_clean_ondisk].next_entry,
1787 j->space[journal_space_clean_ondisk].total);
1788 prt_printf(out, "clean\t%u:%u\n",
1789 j->space[journal_space_clean].next_entry,
1790 j->space[journal_space_clean].total);
1791 prt_printf(out, "total\t%u:%u\n",
1792 j->space[journal_space_total].next_entry,
1793 j->space[journal_space_total].total);
1794 printbuf_indent_sub(out, 2);
1795
1796 for_each_member_device_rcu(c, ca, &c->rw_devs[BCH_DATA_journal]) {
1797 if (!ca->mi.durability)
1798 continue;
1799
1800 struct journal_device *ja = &ca->journal;
1801
1802 if (!test_bit(ca->dev_idx, c->rw_devs[BCH_DATA_journal].d))
1803 continue;
1804
1805 if (!ja->nr)
1806 continue;
1807
1808 prt_printf(out, "dev %u:\n", ca->dev_idx);
1809 prt_printf(out, "durability %u:\n", ca->mi.durability);
1810 printbuf_indent_add(out, 2);
1811 prt_printf(out, "nr\t%u\n", ja->nr);
1812 prt_printf(out, "bucket size\t%u\n", ca->mi.bucket_size);
1813 prt_printf(out, "available\t%u:%u\n", bch2_journal_dev_buckets_available(j, ja, journal_space_discarded), ja->sectors_free);
1814 prt_printf(out, "discard_idx\t%u\n", ja->discard_idx);
1815 prt_printf(out, "dirty_ondisk\t%u (seq %llu)\n",ja->dirty_idx_ondisk, ja->bucket_seq[ja->dirty_idx_ondisk]);
1816 prt_printf(out, "dirty_idx\t%u (seq %llu)\n", ja->dirty_idx, ja->bucket_seq[ja->dirty_idx]);
1817 prt_printf(out, "cur_idx\t%u (seq %llu)\n", ja->cur_idx, ja->bucket_seq[ja->cur_idx]);
1818 printbuf_indent_sub(out, 2);
1819 }
1820
1821 prt_printf(out, "replicas want %u need %u\n", c->opts.metadata_replicas, c->opts.metadata_replicas_required);
1822
1823 --out->atomic;
1824 }
1825
bch2_journal_debug_to_text(struct printbuf * out,struct journal * j)1826 void bch2_journal_debug_to_text(struct printbuf *out, struct journal *j)
1827 {
1828 spin_lock(&j->lock);
1829 __bch2_journal_debug_to_text(out, j);
1830 spin_unlock(&j->lock);
1831 }
1832