1 // SPDX-License-Identifier: GPL-2.0
2 
3 #include "bcachefs.h"
4 #include "alloc_foreground.h"
5 #include "btree_gc.h"
6 #include "btree_io.h"
7 #include "btree_iter.h"
8 #include "btree_journal_iter.h"
9 #include "btree_key_cache.h"
10 #include "btree_update_interior.h"
11 #include "btree_write_buffer.h"
12 #include "buckets.h"
13 #include "disk_accounting.h"
14 #include "errcode.h"
15 #include "error.h"
16 #include "journal.h"
17 #include "journal_io.h"
18 #include "journal_reclaim.h"
19 #include "replicas.h"
20 #include "snapshot.h"
21 
22 #include <linux/prefetch.h>
23 
24 static const char * const trans_commit_flags_strs[] = {
25 #define x(n, ...) #n,
26 	BCH_TRANS_COMMIT_FLAGS()
27 #undef x
28 	NULL
29 };
30 
31 void bch2_trans_commit_flags_to_text(struct printbuf *out, enum bch_trans_commit_flags flags)
32 {
33 	enum bch_watermark watermark = flags & BCH_WATERMARK_MASK;
34 
35 	prt_printf(out, "watermark=%s", bch2_watermarks[watermark]);
36 
37 	flags >>= BCH_WATERMARK_BITS;
38 	if (flags) {
39 		prt_char(out, ' ');
40 		bch2_prt_bitflags(out, trans_commit_flags_strs, flags);
41 	}
42 }
43 
44 static void verify_update_old_key(struct btree_trans *trans, struct btree_insert_entry *i)
45 {
46 #ifdef CONFIG_BCACHEFS_DEBUG
47 	struct bch_fs *c = trans->c;
48 	struct bkey u;
49 	struct bkey_s_c k = bch2_btree_path_peek_slot_exact(trans->paths + i->path, &u);
50 
51 	if (unlikely(trans->journal_replay_not_finished)) {
52 		struct bkey_i *j_k =
53 			bch2_journal_keys_peek_slot(c, i->btree_id, i->level, i->k->k.p);
54 
55 		if (j_k)
56 			k = bkey_i_to_s_c(j_k);
57 	}
58 
59 	u = *k.k;
60 	u.needs_whiteout = i->old_k.needs_whiteout;
61 
62 	BUG_ON(memcmp(&i->old_k, &u, sizeof(struct bkey)));
63 	BUG_ON(i->old_v != k.v);
64 #endif
65 }
66 
67 static inline struct btree_path_level *insert_l(struct btree_trans *trans, struct btree_insert_entry *i)
68 {
69 	return (trans->paths + i->path)->l + i->level;
70 }
71 
72 static inline bool same_leaf_as_prev(struct btree_trans *trans,
73 				     struct btree_insert_entry *i)
74 {
75 	return i != trans->updates &&
76 		insert_l(trans, &i[0])->b == insert_l(trans, &i[-1])->b;
77 }
78 
79 static inline bool same_leaf_as_next(struct btree_trans *trans,
80 				     struct btree_insert_entry *i)
81 {
82 	return i + 1 < trans->updates + trans->nr_updates &&
83 		insert_l(trans, &i[0])->b == insert_l(trans, &i[1])->b;
84 }
85 
86 inline void bch2_btree_node_prep_for_write(struct btree_trans *trans,
87 					   struct btree_path *path,
88 					   struct btree *b)
89 {
90 	struct bch_fs *c = trans->c;
91 
92 	if (unlikely(btree_node_just_written(b)) &&
93 	    bch2_btree_post_write_cleanup(c, b))
94 		bch2_trans_node_reinit_iter(trans, b);
95 
96 	/*
97 	 * If the last bset has been written, or if it's gotten too big - start
98 	 * a new bset to insert into:
99 	 */
100 	if (want_new_bset(c, b))
101 		bch2_btree_init_next(trans, b);
102 }
103 
104 static noinline int trans_lock_write_fail(struct btree_trans *trans, struct btree_insert_entry *i)
105 {
106 	while (--i >= trans->updates) {
107 		if (same_leaf_as_prev(trans, i))
108 			continue;
109 
110 		bch2_btree_node_unlock_write(trans, trans->paths + i->path, insert_l(trans, i)->b);
111 	}
112 
113 	trace_and_count(trans->c, trans_restart_would_deadlock_write, trans);
114 	return btree_trans_restart(trans, BCH_ERR_transaction_restart_would_deadlock_write);
115 }
116 
117 static inline int bch2_trans_lock_write(struct btree_trans *trans)
118 {
119 	EBUG_ON(trans->write_locked);
120 
121 	trans_for_each_update(trans, i) {
122 		if (same_leaf_as_prev(trans, i))
123 			continue;
124 
125 		if (bch2_btree_node_lock_write(trans, trans->paths + i->path, &insert_l(trans, i)->b->c))
126 			return trans_lock_write_fail(trans, i);
127 
128 		if (!i->cached)
129 			bch2_btree_node_prep_for_write(trans, trans->paths + i->path, insert_l(trans, i)->b);
130 	}
131 
132 	trans->write_locked = true;
133 	return 0;
134 }
135 
136 static inline void bch2_trans_unlock_updates_write(struct btree_trans *trans)
137 {
138 	if (likely(trans->write_locked)) {
139 		trans_for_each_update(trans, i)
140 			if (btree_node_locked_type(trans->paths + i->path, i->level) ==
141 			    BTREE_NODE_WRITE_LOCKED)
142 				bch2_btree_node_unlock_write_inlined(trans,
143 						trans->paths + i->path, insert_l(trans, i)->b);
144 		trans->write_locked = false;
145 	}
146 }
147 
148 /* Inserting into a given leaf node (last stage of insert): */
149 
150 /* Handle overwrites and do insert, for non extents: */
151 bool bch2_btree_bset_insert_key(struct btree_trans *trans,
152 				struct btree_path *path,
153 				struct btree *b,
154 				struct btree_node_iter *node_iter,
155 				struct bkey_i *insert)
156 {
157 	struct bkey_packed *k;
158 	unsigned clobber_u64s = 0, new_u64s = 0;
159 
160 	EBUG_ON(btree_node_just_written(b));
161 	EBUG_ON(bset_written(b, btree_bset_last(b)));
162 	EBUG_ON(bkey_deleted(&insert->k) && bkey_val_u64s(&insert->k));
163 	EBUG_ON(bpos_lt(insert->k.p, b->data->min_key));
164 	EBUG_ON(bpos_gt(insert->k.p, b->data->max_key));
165 	EBUG_ON(insert->k.u64s > bch2_btree_keys_u64s_remaining(b));
166 	EBUG_ON(!b->c.level && !bpos_eq(insert->k.p, path->pos));
167 
168 	k = bch2_btree_node_iter_peek_all(node_iter, b);
169 	if (k && bkey_cmp_left_packed(b, k, &insert->k.p))
170 		k = NULL;
171 
172 	/* @k is the key being overwritten/deleted, if any: */
173 	EBUG_ON(k && bkey_deleted(k));
174 
175 	/* Deleting, but not found? nothing to do: */
176 	if (bkey_deleted(&insert->k) && !k)
177 		return false;
178 
179 	if (bkey_deleted(&insert->k)) {
180 		/* Deleting: */
181 		btree_account_key_drop(b, k);
182 		k->type = KEY_TYPE_deleted;
183 
184 		if (k->needs_whiteout)
185 			push_whiteout(b, insert->k.p);
186 		k->needs_whiteout = false;
187 
188 		if (k >= btree_bset_last(b)->start) {
189 			clobber_u64s = k->u64s;
190 			bch2_bset_delete(b, k, clobber_u64s);
191 			goto fix_iter;
192 		} else {
193 			bch2_btree_path_fix_key_modified(trans, b, k);
194 		}
195 
196 		return true;
197 	}
198 
199 	if (k) {
200 		/* Overwriting: */
201 		btree_account_key_drop(b, k);
202 		k->type = KEY_TYPE_deleted;
203 
204 		insert->k.needs_whiteout = k->needs_whiteout;
205 		k->needs_whiteout = false;
206 
207 		if (k >= btree_bset_last(b)->start) {
208 			clobber_u64s = k->u64s;
209 			goto overwrite;
210 		} else {
211 			bch2_btree_path_fix_key_modified(trans, b, k);
212 		}
213 	}
214 
215 	k = bch2_btree_node_iter_bset_pos(node_iter, b, bset_tree_last(b));
216 overwrite:
217 	bch2_bset_insert(b, k, insert, clobber_u64s);
218 	new_u64s = k->u64s;
219 fix_iter:
220 	if (clobber_u64s != new_u64s)
221 		bch2_btree_node_iter_fix(trans, path, b, node_iter, k,
222 					 clobber_u64s, new_u64s);
223 	return true;
224 }
225 
226 static int __btree_node_flush(struct journal *j, struct journal_entry_pin *pin,
227 			       unsigned i, u64 seq)
228 {
229 	struct bch_fs *c = container_of(j, struct bch_fs, journal);
230 	struct btree_write *w = container_of(pin, struct btree_write, journal);
231 	struct btree *b = container_of(w, struct btree, writes[i]);
232 	struct btree_trans *trans = bch2_trans_get(c);
233 	unsigned long old, new;
234 	unsigned idx = w - b->writes;
235 
236 	btree_node_lock_nopath_nofail(trans, &b->c, SIX_LOCK_read);
237 
238 	old = READ_ONCE(b->flags);
239 	do {
240 		new = old;
241 
242 		if (!(old & (1 << BTREE_NODE_dirty)) ||
243 		    !!(old & (1 << BTREE_NODE_write_idx)) != idx ||
244 		    w->journal.seq != seq)
245 			break;
246 
247 		new &= ~BTREE_WRITE_TYPE_MASK;
248 		new |= BTREE_WRITE_journal_reclaim;
249 		new |= 1 << BTREE_NODE_need_write;
250 	} while (!try_cmpxchg(&b->flags, &old, new));
251 
252 	btree_node_write_if_need(trans, b, SIX_LOCK_read);
253 	six_unlock_read(&b->c.lock);
254 
255 	bch2_trans_put(trans);
256 	return 0;
257 }
258 
259 int bch2_btree_node_flush0(struct journal *j, struct journal_entry_pin *pin, u64 seq)
260 {
261 	return __btree_node_flush(j, pin, 0, seq);
262 }
263 
264 int bch2_btree_node_flush1(struct journal *j, struct journal_entry_pin *pin, u64 seq)
265 {
266 	return __btree_node_flush(j, pin, 1, seq);
267 }
268 
269 inline void bch2_btree_add_journal_pin(struct bch_fs *c,
270 				       struct btree *b, u64 seq)
271 {
272 	struct btree_write *w = btree_current_write(b);
273 
274 	bch2_journal_pin_add(&c->journal, seq, &w->journal,
275 			     btree_node_write_idx(b) == 0
276 			     ? bch2_btree_node_flush0
277 			     : bch2_btree_node_flush1);
278 }
279 
280 /**
281  * bch2_btree_insert_key_leaf() - insert a key one key into a leaf node
282  * @trans:		btree transaction object
283  * @path:		path pointing to @insert's pos
284  * @insert:		key to insert
285  * @journal_seq:	sequence number of journal reservation
286  */
287 inline void bch2_btree_insert_key_leaf(struct btree_trans *trans,
288 				       struct btree_path *path,
289 				       struct bkey_i *insert,
290 				       u64 journal_seq)
291 {
292 	struct bch_fs *c = trans->c;
293 	struct btree *b = path_l(path)->b;
294 	struct bset_tree *t = bset_tree_last(b);
295 	struct bset *i = bset(b, t);
296 	int old_u64s = bset_u64s(t);
297 	int old_live_u64s = b->nr.live_u64s;
298 	int live_u64s_added, u64s_added;
299 
300 	if (unlikely(!bch2_btree_bset_insert_key(trans, path, b,
301 					&path_l(path)->iter, insert)))
302 		return;
303 
304 	i->journal_seq = cpu_to_le64(max(journal_seq, le64_to_cpu(i->journal_seq)));
305 
306 	bch2_btree_add_journal_pin(c, b, journal_seq);
307 
308 	if (unlikely(!btree_node_dirty(b))) {
309 		EBUG_ON(test_bit(BCH_FS_clean_shutdown, &c->flags));
310 		set_btree_node_dirty_acct(c, b);
311 	}
312 
313 	live_u64s_added = (int) b->nr.live_u64s - old_live_u64s;
314 	u64s_added = (int) bset_u64s(t) - old_u64s;
315 
316 	if (b->sib_u64s[0] != U16_MAX && live_u64s_added < 0)
317 		b->sib_u64s[0] = max(0, (int) b->sib_u64s[0] + live_u64s_added);
318 	if (b->sib_u64s[1] != U16_MAX && live_u64s_added < 0)
319 		b->sib_u64s[1] = max(0, (int) b->sib_u64s[1] + live_u64s_added);
320 
321 	if (u64s_added > live_u64s_added &&
322 	    bch2_maybe_compact_whiteouts(c, b))
323 		bch2_trans_node_reinit_iter(trans, b);
324 }
325 
326 /* Cached btree updates: */
327 
328 /* Normal update interface: */
329 
330 static inline void btree_insert_entry_checks(struct btree_trans *trans,
331 					     struct btree_insert_entry *i)
332 {
333 	struct btree_path *path = trans->paths + i->path;
334 
335 	BUG_ON(!bpos_eq(i->k->k.p, path->pos));
336 	BUG_ON(i->cached	!= path->cached);
337 	BUG_ON(i->level		!= path->level);
338 	BUG_ON(i->btree_id	!= path->btree_id);
339 	BUG_ON(i->bkey_type	!= __btree_node_type(path->level, path->btree_id));
340 	EBUG_ON(!i->level &&
341 		btree_type_has_snapshots(i->btree_id) &&
342 		!(i->flags & BTREE_UPDATE_internal_snapshot_node) &&
343 		test_bit(JOURNAL_replay_done, &trans->c->journal.flags) &&
344 		i->k->k.p.snapshot &&
345 		bch2_snapshot_is_internal_node(trans->c, i->k->k.p.snapshot) > 0);
346 }
347 
348 static __always_inline int bch2_trans_journal_res_get(struct btree_trans *trans,
349 						      unsigned flags)
350 {
351 	return bch2_journal_res_get(&trans->c->journal, &trans->journal_res,
352 				    trans->journal_u64s, flags, trans);
353 }
354 
355 #define JSET_ENTRY_LOG_U64s		4
356 
357 static noinline void journal_transaction_name(struct btree_trans *trans)
358 {
359 	struct bch_fs *c = trans->c;
360 	struct journal *j = &c->journal;
361 	struct jset_entry *entry =
362 		bch2_journal_add_entry(j, &trans->journal_res,
363 				       BCH_JSET_ENTRY_log, 0, 0,
364 				       JSET_ENTRY_LOG_U64s);
365 	struct jset_entry_log *l =
366 		container_of(entry, struct jset_entry_log, entry);
367 
368 	strncpy(l->d, trans->fn, JSET_ENTRY_LOG_U64s * sizeof(u64));
369 }
370 
371 static inline int btree_key_can_insert(struct btree_trans *trans,
372 				       struct btree *b, unsigned u64s)
373 {
374 	if (!bch2_btree_node_insert_fits(b, u64s))
375 		return -BCH_ERR_btree_insert_btree_node_full;
376 
377 	return 0;
378 }
379 
380 noinline static int
381 btree_key_can_insert_cached_slowpath(struct btree_trans *trans, unsigned flags,
382 				     struct btree_path *path, unsigned new_u64s)
383 {
384 	struct bkey_cached *ck = (void *) path->l[0].b;
385 	struct bkey_i *new_k;
386 	int ret;
387 
388 	bch2_trans_unlock_updates_write(trans);
389 	bch2_trans_unlock(trans);
390 
391 	new_k = kmalloc(new_u64s * sizeof(u64), GFP_KERNEL);
392 	if (!new_k) {
393 		bch_err(trans->c, "error allocating memory for key cache key, btree %s u64s %u",
394 			bch2_btree_id_str(path->btree_id), new_u64s);
395 		return -BCH_ERR_ENOMEM_btree_key_cache_insert;
396 	}
397 
398 	ret =   bch2_trans_relock(trans) ?:
399 		bch2_trans_lock_write(trans);
400 	if (unlikely(ret)) {
401 		kfree(new_k);
402 		return ret;
403 	}
404 
405 	memcpy(new_k, ck->k, ck->u64s * sizeof(u64));
406 
407 	trans_for_each_update(trans, i)
408 		if (i->old_v == &ck->k->v)
409 			i->old_v = &new_k->v;
410 
411 	kfree(ck->k);
412 	ck->u64s	= new_u64s;
413 	ck->k		= new_k;
414 	return 0;
415 }
416 
417 static int btree_key_can_insert_cached(struct btree_trans *trans, unsigned flags,
418 				       struct btree_path *path, unsigned u64s)
419 {
420 	struct bch_fs *c = trans->c;
421 	struct bkey_cached *ck = (void *) path->l[0].b;
422 	unsigned new_u64s;
423 	struct bkey_i *new_k;
424 	unsigned watermark = flags & BCH_WATERMARK_MASK;
425 
426 	EBUG_ON(path->level);
427 
428 	if (watermark < BCH_WATERMARK_reclaim &&
429 	    !test_bit(BKEY_CACHED_DIRTY, &ck->flags) &&
430 	    bch2_btree_key_cache_must_wait(c))
431 		return -BCH_ERR_btree_insert_need_journal_reclaim;
432 
433 	/*
434 	 * bch2_varint_decode can read past the end of the buffer by at most 7
435 	 * bytes (it won't be used):
436 	 */
437 	u64s += 1;
438 
439 	if (u64s <= ck->u64s)
440 		return 0;
441 
442 	new_u64s	= roundup_pow_of_two(u64s);
443 	new_k		= krealloc(ck->k, new_u64s * sizeof(u64), GFP_NOWAIT|__GFP_NOWARN);
444 	if (unlikely(!new_k))
445 		return btree_key_can_insert_cached_slowpath(trans, flags, path, new_u64s);
446 
447 	trans_for_each_update(trans, i)
448 		if (i->old_v == &ck->k->v)
449 			i->old_v = &new_k->v;
450 
451 	ck->u64s	= new_u64s;
452 	ck->k		= new_k;
453 	return 0;
454 }
455 
456 /* Triggers: */
457 
458 static int run_one_mem_trigger(struct btree_trans *trans,
459 			       struct btree_insert_entry *i,
460 			       unsigned flags)
461 {
462 	verify_update_old_key(trans, i);
463 
464 	if (unlikely(flags & BTREE_TRIGGER_norun))
465 		return 0;
466 
467 	struct bkey_s_c old = { &i->old_k, i->old_v };
468 	struct bkey_i *new = i->k;
469 	const struct bkey_ops *old_ops = bch2_bkey_type_ops(old.k->type);
470 	const struct bkey_ops *new_ops = bch2_bkey_type_ops(i->k->k.type);
471 
472 	if (old_ops->trigger == new_ops->trigger)
473 		return bch2_key_trigger(trans, i->btree_id, i->level,
474 				old, bkey_i_to_s(new),
475 				BTREE_TRIGGER_insert|BTREE_TRIGGER_overwrite|flags);
476 	else
477 		return bch2_key_trigger_new(trans, i->btree_id, i->level,
478 				bkey_i_to_s(new), flags) ?:
479 		       bch2_key_trigger_old(trans, i->btree_id, i->level,
480 				old, flags);
481 }
482 
483 static int run_one_trans_trigger(struct btree_trans *trans, struct btree_insert_entry *i)
484 {
485 	verify_update_old_key(trans, i);
486 
487 	if ((i->flags & BTREE_TRIGGER_norun) ||
488 	    !btree_node_type_has_trans_triggers(i->bkey_type))
489 		return 0;
490 
491 	/*
492 	 * Transactional triggers create new btree_insert_entries, so we can't
493 	 * pass them a pointer to a btree_insert_entry, that memory is going to
494 	 * move:
495 	 */
496 	struct bkey old_k = i->old_k;
497 	struct bkey_s_c old = { &old_k, i->old_v };
498 	const struct bkey_ops *old_ops = bch2_bkey_type_ops(old.k->type);
499 	const struct bkey_ops *new_ops = bch2_bkey_type_ops(i->k->k.type);
500 	unsigned flags = i->flags|BTREE_TRIGGER_transactional;
501 
502 	if (!i->insert_trigger_run &&
503 	    !i->overwrite_trigger_run &&
504 	    old_ops->trigger == new_ops->trigger) {
505 		i->overwrite_trigger_run = true;
506 		i->insert_trigger_run = true;
507 		return bch2_key_trigger(trans, i->btree_id, i->level, old, bkey_i_to_s(i->k),
508 					BTREE_TRIGGER_insert|
509 					BTREE_TRIGGER_overwrite|flags) ?: 1;
510 	} else if (!i->overwrite_trigger_run) {
511 		i->overwrite_trigger_run = true;
512 		return bch2_key_trigger_old(trans, i->btree_id, i->level, old, flags) ?: 1;
513 	} else if (!i->insert_trigger_run) {
514 		i->insert_trigger_run = true;
515 		return bch2_key_trigger_new(trans, i->btree_id, i->level, bkey_i_to_s(i->k), flags) ?: 1;
516 	} else {
517 		return 0;
518 	}
519 }
520 
521 static int bch2_trans_commit_run_triggers(struct btree_trans *trans)
522 {
523 	unsigned sort_id_start = 0;
524 
525 	while (sort_id_start < trans->nr_updates) {
526 		unsigned i, sort_id = trans->updates[sort_id_start].sort_order;
527 		bool trans_trigger_run;
528 
529 		/*
530 		 * For a given btree, this algorithm runs insert triggers before
531 		 * overwrite triggers: this is so that when extents are being
532 		 * moved (e.g. by FALLOCATE_FL_INSERT_RANGE), we don't drop
533 		 * references before they are re-added.
534 		 *
535 		 * Running triggers will append more updates to the list of
536 		 * updates as we're walking it:
537 		 */
538 		do {
539 			trans_trigger_run = false;
540 
541 			for (i = sort_id_start;
542 			     i < trans->nr_updates && trans->updates[i].sort_order <= sort_id;
543 			     i++) {
544 				if (trans->updates[i].sort_order < sort_id) {
545 					sort_id_start = i;
546 					continue;
547 				}
548 
549 				int ret = run_one_trans_trigger(trans, trans->updates + i);
550 				if (ret < 0)
551 					return ret;
552 				if (ret)
553 					trans_trigger_run = true;
554 			}
555 		} while (trans_trigger_run);
556 
557 		sort_id_start = i;
558 	}
559 
560 #ifdef CONFIG_BCACHEFS_DEBUG
561 	trans_for_each_update(trans, i)
562 		BUG_ON(!(i->flags & BTREE_TRIGGER_norun) &&
563 		       btree_node_type_has_trans_triggers(i->bkey_type) &&
564 		       (!i->insert_trigger_run || !i->overwrite_trigger_run));
565 #endif
566 	return 0;
567 }
568 
569 static noinline int bch2_trans_commit_run_gc_triggers(struct btree_trans *trans)
570 {
571 	trans_for_each_update(trans, i)
572 		if (btree_node_type_has_triggers(i->bkey_type) &&
573 		    gc_visited(trans->c, gc_pos_btree(i->btree_id, i->level, i->k->k.p))) {
574 			int ret = run_one_mem_trigger(trans, i, i->flags|BTREE_TRIGGER_gc);
575 			if (ret)
576 				return ret;
577 		}
578 
579 	return 0;
580 }
581 
582 static inline int
583 bch2_trans_commit_write_locked(struct btree_trans *trans, unsigned flags,
584 			       struct btree_insert_entry **stopped_at,
585 			       unsigned long trace_ip)
586 {
587 	struct bch_fs *c = trans->c;
588 	struct btree_trans_commit_hook *h;
589 	unsigned u64s = 0;
590 	int ret = 0;
591 
592 	bch2_trans_verify_not_unlocked_or_in_restart(trans);
593 
594 	if (race_fault()) {
595 		trace_and_count(c, trans_restart_fault_inject, trans, trace_ip);
596 		return btree_trans_restart(trans, BCH_ERR_transaction_restart_fault_inject);
597 	}
598 
599 	/*
600 	 * Check if the insert will fit in the leaf node with the write lock
601 	 * held, otherwise another thread could write the node changing the
602 	 * amount of space available:
603 	 */
604 
605 	prefetch(&trans->c->journal.flags);
606 
607 	trans_for_each_update(trans, i) {
608 		/* Multiple inserts might go to same leaf: */
609 		if (!same_leaf_as_prev(trans, i))
610 			u64s = 0;
611 
612 		u64s += i->k->k.u64s;
613 		ret = !i->cached
614 			? btree_key_can_insert(trans, insert_l(trans, i)->b, u64s)
615 			: btree_key_can_insert_cached(trans, flags, trans->paths + i->path, u64s);
616 		if (ret) {
617 			*stopped_at = i;
618 			return ret;
619 		}
620 
621 		i->k->k.needs_whiteout = false;
622 	}
623 
624 	/*
625 	 * Don't get journal reservation until after we know insert will
626 	 * succeed:
627 	 */
628 	if (likely(!(flags & BCH_TRANS_COMMIT_no_journal_res))) {
629 		ret = bch2_trans_journal_res_get(trans,
630 				(flags & BCH_WATERMARK_MASK)|
631 				JOURNAL_RES_GET_NONBLOCK);
632 		if (ret)
633 			return ret;
634 
635 		if (unlikely(trans->journal_transaction_names))
636 			journal_transaction_name(trans);
637 	}
638 
639 	/*
640 	 * Not allowed to fail after we've gotten our journal reservation - we
641 	 * have to use it:
642 	 */
643 
644 	if (IS_ENABLED(CONFIG_BCACHEFS_DEBUG) &&
645 	    !(flags & BCH_TRANS_COMMIT_no_journal_res)) {
646 		if (bch2_journal_seq_verify)
647 			trans_for_each_update(trans, i)
648 				i->k->k.bversion.lo = trans->journal_res.seq;
649 		else if (bch2_inject_invalid_keys)
650 			trans_for_each_update(trans, i)
651 				i->k->k.bversion = MAX_VERSION;
652 	}
653 
654 	h = trans->hooks;
655 	while (h) {
656 		ret = h->fn(trans, h);
657 		if (ret)
658 			return ret;
659 		h = h->next;
660 	}
661 
662 	struct jset_entry *entry = trans->journal_entries;
663 
664 	percpu_down_read(&c->mark_lock);
665 	for (entry = trans->journal_entries;
666 	     entry != (void *) ((u64 *) trans->journal_entries + trans->journal_entries_u64s);
667 	     entry = vstruct_next(entry))
668 		if (entry->type == BCH_JSET_ENTRY_write_buffer_keys &&
669 		    entry->start->k.type == KEY_TYPE_accounting) {
670 			ret = bch2_accounting_trans_commit_hook(trans, bkey_i_to_accounting(entry->start), flags);
671 			if (ret)
672 				goto revert_fs_usage;
673 		}
674 	percpu_up_read(&c->mark_lock);
675 
676 	/* XXX: we only want to run this if deltas are nonzero */
677 	bch2_trans_account_disk_usage_change(trans);
678 
679 	trans_for_each_update(trans, i)
680 		if (btree_node_type_has_atomic_triggers(i->bkey_type)) {
681 			ret = run_one_mem_trigger(trans, i, BTREE_TRIGGER_atomic|i->flags);
682 			if (ret)
683 				goto fatal_err;
684 		}
685 
686 	if (unlikely(c->gc_pos.phase)) {
687 		ret = bch2_trans_commit_run_gc_triggers(trans);
688 		if  (ret)
689 			goto fatal_err;
690 	}
691 
692 	struct bkey_validate_context validate_context = { .from	= BKEY_VALIDATE_commit };
693 
694 	if (!(flags & BCH_TRANS_COMMIT_no_journal_res))
695 		validate_context.flags = BCH_VALIDATE_write|BCH_VALIDATE_commit;
696 
697 	for (struct jset_entry *i = trans->journal_entries;
698 	     i != (void *) ((u64 *) trans->journal_entries + trans->journal_entries_u64s);
699 	     i = vstruct_next(i)) {
700 		ret = bch2_journal_entry_validate(c, NULL, i,
701 						  bcachefs_metadata_version_current,
702 						  CPU_BIG_ENDIAN, validate_context);
703 		if (unlikely(ret)) {
704 			bch2_trans_inconsistent(trans, "invalid journal entry on insert from %s\n",
705 						trans->fn);
706 			goto fatal_err;
707 		}
708 	}
709 
710 	trans_for_each_update(trans, i) {
711 		validate_context.level	= i->level;
712 		validate_context.btree	= i->btree_id;
713 
714 		ret = bch2_bkey_validate(c, bkey_i_to_s_c(i->k), validate_context);
715 		if (unlikely(ret)){
716 			bch2_trans_inconsistent(trans, "invalid bkey on insert from %s -> %ps\n",
717 						trans->fn, (void *) i->ip_allocated);
718 			goto fatal_err;
719 		}
720 		btree_insert_entry_checks(trans, i);
721 	}
722 
723 	if (likely(!(flags & BCH_TRANS_COMMIT_no_journal_res))) {
724 		struct journal *j = &c->journal;
725 		struct jset_entry *entry;
726 
727 		trans_for_each_update(trans, i) {
728 			if (i->key_cache_already_flushed)
729 				continue;
730 
731 			if (i->flags & BTREE_UPDATE_nojournal)
732 				continue;
733 
734 			verify_update_old_key(trans, i);
735 
736 			if (trans->journal_transaction_names) {
737 				entry = bch2_journal_add_entry(j, &trans->journal_res,
738 						       BCH_JSET_ENTRY_overwrite,
739 						       i->btree_id, i->level,
740 						       i->old_k.u64s);
741 				bkey_reassemble((struct bkey_i *) entry->start,
742 						(struct bkey_s_c) { &i->old_k, i->old_v });
743 			}
744 
745 			entry = bch2_journal_add_entry(j, &trans->journal_res,
746 					       BCH_JSET_ENTRY_btree_keys,
747 					       i->btree_id, i->level,
748 					       i->k->k.u64s);
749 			bkey_copy((struct bkey_i *) entry->start, i->k);
750 		}
751 
752 		memcpy_u64s_small(journal_res_entry(&c->journal, &trans->journal_res),
753 				  trans->journal_entries,
754 				  trans->journal_entries_u64s);
755 
756 		trans->journal_res.offset	+= trans->journal_entries_u64s;
757 		trans->journal_res.u64s		-= trans->journal_entries_u64s;
758 
759 		if (trans->journal_seq)
760 			*trans->journal_seq = trans->journal_res.seq;
761 	}
762 
763 	trans_for_each_update(trans, i) {
764 		struct btree_path *path = trans->paths + i->path;
765 
766 		if (!i->cached)
767 			bch2_btree_insert_key_leaf(trans, path, i->k, trans->journal_res.seq);
768 		else if (!i->key_cache_already_flushed)
769 			bch2_btree_insert_key_cached(trans, flags, i);
770 		else
771 			bch2_btree_key_cache_drop(trans, path);
772 	}
773 
774 	return 0;
775 fatal_err:
776 	bch2_fs_fatal_error(c, "fatal error in transaction commit: %s", bch2_err_str(ret));
777 	percpu_down_read(&c->mark_lock);
778 revert_fs_usage:
779 	for (struct jset_entry *entry2 = trans->journal_entries;
780 	     entry2 != entry;
781 	     entry2 = vstruct_next(entry2))
782 		if (entry2->type == BCH_JSET_ENTRY_write_buffer_keys &&
783 		    entry2->start->k.type == KEY_TYPE_accounting)
784 			bch2_accounting_trans_commit_revert(trans,
785 					bkey_i_to_accounting(entry2->start), flags);
786 	percpu_up_read(&c->mark_lock);
787 	return ret;
788 }
789 
790 static noinline void bch2_drop_overwrites_from_journal(struct btree_trans *trans)
791 {
792 	/*
793 	 * Accounting keys aren't deduped in the journal: we have to compare
794 	 * each individual update against what's in the btree to see if it has
795 	 * been applied yet, and accounting updates also don't overwrite,
796 	 * they're deltas that accumulate.
797 	 */
798 	trans_for_each_update(trans, i)
799 		if (i->k->k.type != KEY_TYPE_accounting)
800 			bch2_journal_key_overwritten(trans->c, i->btree_id, i->level, i->k->k.p);
801 }
802 
803 static int bch2_trans_commit_journal_pin_flush(struct journal *j,
804 				struct journal_entry_pin *_pin, u64 seq)
805 {
806 	return 0;
807 }
808 
809 /*
810  * Get journal reservation, take write locks, and attempt to do btree update(s):
811  */
812 static inline int do_bch2_trans_commit(struct btree_trans *trans, unsigned flags,
813 				       struct btree_insert_entry **stopped_at,
814 				       unsigned long trace_ip)
815 {
816 	struct bch_fs *c = trans->c;
817 	int ret = 0, u64s_delta = 0;
818 
819 	for (unsigned idx = 0; idx < trans->nr_updates; idx++) {
820 		struct btree_insert_entry *i = trans->updates + idx;
821 		if (i->cached)
822 			continue;
823 
824 		u64s_delta += !bkey_deleted(&i->k->k) ? i->k->k.u64s : 0;
825 		u64s_delta -= i->old_btree_u64s;
826 
827 		if (!same_leaf_as_next(trans, i)) {
828 			if (u64s_delta <= 0) {
829 				ret = bch2_foreground_maybe_merge(trans, i->path,
830 							i->level, flags);
831 				if (unlikely(ret))
832 					return ret;
833 			}
834 
835 			u64s_delta = 0;
836 		}
837 	}
838 
839 	ret = bch2_trans_lock_write(trans);
840 	if (unlikely(ret))
841 		return ret;
842 
843 	ret = bch2_trans_commit_write_locked(trans, flags, stopped_at, trace_ip);
844 
845 	if (!ret && unlikely(trans->journal_replay_not_finished))
846 		bch2_drop_overwrites_from_journal(trans);
847 
848 	bch2_trans_unlock_updates_write(trans);
849 
850 	if (!ret && trans->journal_pin)
851 		bch2_journal_pin_add(&c->journal, trans->journal_res.seq,
852 				     trans->journal_pin,
853 				     bch2_trans_commit_journal_pin_flush);
854 
855 	/*
856 	 * Drop journal reservation after dropping write locks, since dropping
857 	 * the journal reservation may kick off a journal write:
858 	 */
859 	if (likely(!(flags & BCH_TRANS_COMMIT_no_journal_res)))
860 		bch2_journal_res_put(&c->journal, &trans->journal_res);
861 
862 	return ret;
863 }
864 
865 static int journal_reclaim_wait_done(struct bch_fs *c)
866 {
867 	int ret = bch2_journal_error(&c->journal) ?:
868 		bch2_btree_key_cache_wait_done(c);
869 
870 	if (!ret)
871 		journal_reclaim_kick(&c->journal);
872 	return ret;
873 }
874 
875 static noinline
876 int bch2_trans_commit_error(struct btree_trans *trans, unsigned flags,
877 			    struct btree_insert_entry *i,
878 			    int ret, unsigned long trace_ip)
879 {
880 	struct bch_fs *c = trans->c;
881 	enum bch_watermark watermark = flags & BCH_WATERMARK_MASK;
882 
883 	switch (ret) {
884 	case -BCH_ERR_btree_insert_btree_node_full:
885 		ret = bch2_btree_split_leaf(trans, i->path, flags);
886 		if (bch2_err_matches(ret, BCH_ERR_transaction_restart))
887 			trace_and_count(c, trans_restart_btree_node_split, trans,
888 					trace_ip, trans->paths + i->path);
889 		break;
890 	case -BCH_ERR_btree_insert_need_mark_replicas:
891 		ret = drop_locks_do(trans,
892 			bch2_accounting_update_sb(trans));
893 		break;
894 	case -BCH_ERR_journal_res_get_blocked:
895 		/*
896 		 * XXX: this should probably be a separate BTREE_INSERT_NONBLOCK
897 		 * flag
898 		 */
899 		if ((flags & BCH_TRANS_COMMIT_journal_reclaim) &&
900 		    watermark < BCH_WATERMARK_reclaim) {
901 			ret = -BCH_ERR_journal_reclaim_would_deadlock;
902 			break;
903 		}
904 
905 		ret = drop_locks_do(trans,
906 			bch2_trans_journal_res_get(trans,
907 					(flags & BCH_WATERMARK_MASK)|
908 					JOURNAL_RES_GET_CHECK));
909 		break;
910 	case -BCH_ERR_btree_insert_need_journal_reclaim:
911 		bch2_trans_unlock(trans);
912 
913 		trace_and_count(c, trans_blocked_journal_reclaim, trans, trace_ip);
914 		track_event_change(&c->times[BCH_TIME_blocked_key_cache_flush], true);
915 
916 		wait_event_freezable(c->journal.reclaim_wait,
917 				     (ret = journal_reclaim_wait_done(c)));
918 
919 		track_event_change(&c->times[BCH_TIME_blocked_key_cache_flush], false);
920 
921 		if (ret < 0)
922 			break;
923 
924 		ret = bch2_trans_relock(trans);
925 		break;
926 	default:
927 		BUG_ON(ret >= 0);
928 		break;
929 	}
930 
931 	BUG_ON(bch2_err_matches(ret, BCH_ERR_transaction_restart) != !!trans->restarted);
932 
933 	bch2_fs_inconsistent_on(bch2_err_matches(ret, ENOSPC) &&
934 				(flags & BCH_TRANS_COMMIT_no_enospc), c,
935 		"%s: incorrectly got %s\n", __func__, bch2_err_str(ret));
936 
937 	return ret;
938 }
939 
940 /*
941  * This is for updates done in the early part of fsck - btree_gc - before we've
942  * gone RW. we only add the new key to the list of keys for journal replay to
943  * do.
944  */
945 static noinline int
946 do_bch2_trans_commit_to_journal_replay(struct btree_trans *trans)
947 {
948 	struct bch_fs *c = trans->c;
949 
950 	BUG_ON(current != c->recovery_task);
951 
952 	trans_for_each_update(trans, i) {
953 		int ret = bch2_journal_key_insert(c, i->btree_id, i->level, i->k);
954 		if (ret)
955 			return ret;
956 	}
957 
958 	for (struct jset_entry *i = trans->journal_entries;
959 	     i != (void *) ((u64 *) trans->journal_entries + trans->journal_entries_u64s);
960 	     i = vstruct_next(i))
961 		if (i->type == BCH_JSET_ENTRY_btree_keys ||
962 		    i->type == BCH_JSET_ENTRY_write_buffer_keys) {
963 			int ret = bch2_journal_key_insert(c, i->btree_id, i->level, i->start);
964 			if (ret)
965 				return ret;
966 		}
967 
968 	return 0;
969 }
970 
971 int __bch2_trans_commit(struct btree_trans *trans, unsigned flags)
972 {
973 	struct btree_insert_entry *errored_at = NULL;
974 	struct bch_fs *c = trans->c;
975 	int ret = 0;
976 
977 	bch2_trans_verify_not_unlocked_or_in_restart(trans);
978 
979 	ret = trans_maybe_inject_restart(trans, _RET_IP_);
980 	if (unlikely(ret))
981 		goto out_reset;
982 
983 	if (!trans->nr_updates &&
984 	    !trans->journal_entries_u64s)
985 		goto out_reset;
986 
987 	ret = bch2_trans_commit_run_triggers(trans);
988 	if (ret)
989 		goto out_reset;
990 
991 	if (!(flags & BCH_TRANS_COMMIT_no_check_rw) &&
992 	    unlikely(!bch2_write_ref_tryget(c, BCH_WRITE_REF_trans))) {
993 		if (unlikely(!test_bit(BCH_FS_may_go_rw, &c->flags)))
994 			ret = do_bch2_trans_commit_to_journal_replay(trans);
995 		else
996 			ret = -BCH_ERR_erofs_trans_commit;
997 		goto out_reset;
998 	}
999 
1000 	EBUG_ON(test_bit(BCH_FS_clean_shutdown, &c->flags));
1001 
1002 	trans->journal_u64s		= trans->journal_entries_u64s;
1003 	trans->journal_transaction_names = READ_ONCE(c->opts.journal_transaction_names);
1004 	if (trans->journal_transaction_names)
1005 		trans->journal_u64s += jset_u64s(JSET_ENTRY_LOG_U64s);
1006 
1007 	trans_for_each_update(trans, i) {
1008 		struct btree_path *path = trans->paths + i->path;
1009 
1010 		EBUG_ON(!path->should_be_locked);
1011 
1012 		ret = bch2_btree_path_upgrade(trans, path, i->level + 1);
1013 		if (unlikely(ret))
1014 			goto out;
1015 
1016 		EBUG_ON(!btree_node_intent_locked(path, i->level));
1017 
1018 		if (i->key_cache_already_flushed)
1019 			continue;
1020 
1021 		if (i->flags & BTREE_UPDATE_nojournal)
1022 			continue;
1023 
1024 		/* we're going to journal the key being updated: */
1025 		trans->journal_u64s += jset_u64s(i->k->k.u64s);
1026 
1027 		/* and we're also going to log the overwrite: */
1028 		if (trans->journal_transaction_names)
1029 			trans->journal_u64s += jset_u64s(i->old_k.u64s);
1030 	}
1031 
1032 	if (trans->extra_disk_res) {
1033 		ret = bch2_disk_reservation_add(c, trans->disk_res,
1034 				trans->extra_disk_res,
1035 				(flags & BCH_TRANS_COMMIT_no_enospc)
1036 				? BCH_DISK_RESERVATION_NOFAIL : 0);
1037 		if (ret)
1038 			goto err;
1039 	}
1040 retry:
1041 	errored_at = NULL;
1042 	bch2_trans_verify_not_unlocked_or_in_restart(trans);
1043 	if (likely(!(flags & BCH_TRANS_COMMIT_no_journal_res)))
1044 		memset(&trans->journal_res, 0, sizeof(trans->journal_res));
1045 	memset(&trans->fs_usage_delta, 0, sizeof(trans->fs_usage_delta));
1046 
1047 	ret = do_bch2_trans_commit(trans, flags, &errored_at, _RET_IP_);
1048 
1049 	/* make sure we didn't drop or screw up locks: */
1050 	bch2_trans_verify_locks(trans);
1051 
1052 	if (ret)
1053 		goto err;
1054 
1055 	trace_and_count(c, transaction_commit, trans, _RET_IP_);
1056 out:
1057 	if (likely(!(flags & BCH_TRANS_COMMIT_no_check_rw)))
1058 		bch2_write_ref_put(c, BCH_WRITE_REF_trans);
1059 out_reset:
1060 	if (!ret)
1061 		bch2_trans_downgrade(trans);
1062 	bch2_trans_reset_updates(trans);
1063 
1064 	return ret;
1065 err:
1066 	ret = bch2_trans_commit_error(trans, flags, errored_at, ret, _RET_IP_);
1067 	if (ret)
1068 		goto out;
1069 
1070 	/*
1071 	 * We might have done another transaction commit in the error path -
1072 	 * i.e. btree write buffer flush - which will have made use of
1073 	 * trans->journal_res, but with BCH_TRANS_COMMIT_no_journal_res that is
1074 	 * how the journal sequence number to pin is passed in - so we must
1075 	 * restart:
1076 	 */
1077 	if (flags & BCH_TRANS_COMMIT_no_journal_res) {
1078 		ret = -BCH_ERR_transaction_restart_nested;
1079 		goto out;
1080 	}
1081 
1082 	goto retry;
1083 }
1084