Linux kernel mirror (for testing)
git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
kernel
os
linux
1/* SPDX-License-Identifier: GPL-2.0 */
2#ifndef _BCACHEFS_BTREE_ITER_H
3#define _BCACHEFS_BTREE_ITER_H
4
5#include "bset.h"
6#include "btree_types.h"
7#include "trace.h"
8
9void bch2_trans_updates_to_text(struct printbuf *, struct btree_trans *);
10void bch2_btree_path_to_text(struct printbuf *, struct btree_trans *, btree_path_idx_t);
11void bch2_trans_paths_to_text(struct printbuf *, struct btree_trans *);
12void bch2_dump_trans_paths_updates(struct btree_trans *);
13
14static inline int __bkey_err(const struct bkey *k)
15{
16 return PTR_ERR_OR_ZERO(k);
17}
18
19#define bkey_err(_k) __bkey_err((_k).k)
20
21static inline void __btree_path_get(struct btree_trans *trans, struct btree_path *path, bool intent)
22{
23 unsigned idx = path - trans->paths;
24
25 EBUG_ON(idx >= trans->nr_paths);
26 EBUG_ON(!test_bit(idx, trans->paths_allocated));
27 if (unlikely(path->ref == U8_MAX)) {
28 bch2_dump_trans_paths_updates(trans);
29 panic("path %u refcount overflow\n", idx);
30 }
31
32 path->ref++;
33 path->intent_ref += intent;
34 trace_btree_path_get_ll(trans, path);
35}
36
37static inline bool __btree_path_put(struct btree_trans *trans, struct btree_path *path, bool intent)
38{
39 EBUG_ON(path - trans->paths >= trans->nr_paths);
40 EBUG_ON(!test_bit(path - trans->paths, trans->paths_allocated));
41 EBUG_ON(!path->ref);
42 EBUG_ON(!path->intent_ref && intent);
43
44 trace_btree_path_put_ll(trans, path);
45 path->intent_ref -= intent;
46 return --path->ref == 0;
47}
48
49static inline void btree_path_set_dirty(struct btree_path *path,
50 enum btree_path_uptodate u)
51{
52 path->uptodate = max_t(unsigned, path->uptodate, u);
53}
54
55static inline struct btree *btree_path_node(struct btree_path *path,
56 unsigned level)
57{
58 return level < BTREE_MAX_DEPTH ? path->l[level].b : NULL;
59}
60
61static inline bool btree_node_lock_seq_matches(const struct btree_path *path,
62 const struct btree *b, unsigned level)
63{
64 return path->l[level].lock_seq == six_lock_seq(&b->c.lock);
65}
66
67static inline struct btree *btree_node_parent(struct btree_path *path,
68 struct btree *b)
69{
70 return btree_path_node(path, b->c.level + 1);
71}
72
73/* Iterate over paths within a transaction: */
74
75void __bch2_btree_trans_sort_paths(struct btree_trans *);
76
77static inline void btree_trans_sort_paths(struct btree_trans *trans)
78{
79 if (!IS_ENABLED(CONFIG_BCACHEFS_DEBUG) &&
80 trans->paths_sorted)
81 return;
82 __bch2_btree_trans_sort_paths(trans);
83}
84
85static inline unsigned long *trans_paths_nr(struct btree_path *paths)
86{
87 return &container_of(paths, struct btree_trans_paths, paths[0])->nr_paths;
88}
89
90static inline unsigned long *trans_paths_allocated(struct btree_path *paths)
91{
92 unsigned long *v = trans_paths_nr(paths);
93 return v - BITS_TO_LONGS(*v);
94}
95
96#define trans_for_each_path_idx_from(_paths_allocated, _nr, _idx, _start)\
97 for (_idx = _start; \
98 (_idx = find_next_bit(_paths_allocated, _nr, _idx)) < _nr; \
99 _idx++)
100
101static inline struct btree_path *
102__trans_next_path(struct btree_trans *trans, unsigned *idx)
103{
104 unsigned long *w = trans->paths_allocated + *idx / BITS_PER_LONG;
105 /*
106 * Open coded find_next_bit(), because
107 * - this is fast path, we can't afford the function call
108 * - and we know that nr_paths is a multiple of BITS_PER_LONG,
109 */
110 while (*idx < trans->nr_paths) {
111 unsigned long v = *w >> (*idx & (BITS_PER_LONG - 1));
112 if (v) {
113 *idx += __ffs(v);
114 return trans->paths + *idx;
115 }
116
117 *idx += BITS_PER_LONG;
118 *idx &= ~(BITS_PER_LONG - 1);
119 w++;
120 }
121
122 return NULL;
123}
124
125/*
126 * This version is intended to be safe for use on a btree_trans that is owned by
127 * another thread, for bch2_btree_trans_to_text();
128 */
129#define trans_for_each_path_from(_trans, _path, _idx, _start) \
130 for (_idx = _start; \
131 (_path = __trans_next_path((_trans), &_idx)); \
132 _idx++)
133
134#define trans_for_each_path(_trans, _path, _idx) \
135 trans_for_each_path_from(_trans, _path, _idx, 1)
136
137static inline struct btree_path *next_btree_path(struct btree_trans *trans, struct btree_path *path)
138{
139 unsigned idx = path ? path->sorted_idx + 1 : 0;
140
141 EBUG_ON(idx > trans->nr_sorted);
142
143 return idx < trans->nr_sorted
144 ? trans->paths + trans->sorted[idx]
145 : NULL;
146}
147
148static inline struct btree_path *prev_btree_path(struct btree_trans *trans, struct btree_path *path)
149{
150 unsigned idx = path ? path->sorted_idx : trans->nr_sorted;
151
152 return idx
153 ? trans->paths + trans->sorted[idx - 1]
154 : NULL;
155}
156
157#define trans_for_each_path_idx_inorder(_trans, _iter) \
158 for (_iter = (struct trans_for_each_path_inorder_iter) { 0 }; \
159 (_iter.path_idx = trans->sorted[_iter.sorted_idx], \
160 _iter.sorted_idx < (_trans)->nr_sorted); \
161 _iter.sorted_idx++)
162
163struct trans_for_each_path_inorder_iter {
164 btree_path_idx_t sorted_idx;
165 btree_path_idx_t path_idx;
166};
167
168#define trans_for_each_path_inorder(_trans, _path, _iter) \
169 for (_iter = (struct trans_for_each_path_inorder_iter) { 0 }; \
170 (_iter.path_idx = trans->sorted[_iter.sorted_idx], \
171 _path = (_trans)->paths + _iter.path_idx, \
172 _iter.sorted_idx < (_trans)->nr_sorted); \
173 _iter.sorted_idx++)
174
175#define trans_for_each_path_inorder_reverse(_trans, _path, _i) \
176 for (_i = trans->nr_sorted - 1; \
177 ((_path) = (_trans)->paths + trans->sorted[_i]), (_i) >= 0;\
178 --_i)
179
180static inline bool __path_has_node(const struct btree_path *path,
181 const struct btree *b)
182{
183 return path->l[b->c.level].b == b &&
184 btree_node_lock_seq_matches(path, b, b->c.level);
185}
186
187static inline struct btree_path *
188__trans_next_path_with_node(struct btree_trans *trans, struct btree *b,
189 unsigned *idx)
190{
191 struct btree_path *path;
192
193 while ((path = __trans_next_path(trans, idx)) &&
194 !__path_has_node(path, b))
195 (*idx)++;
196
197 return path;
198}
199
200#define trans_for_each_path_with_node(_trans, _b, _path, _iter) \
201 for (_iter = 1; \
202 (_path = __trans_next_path_with_node((_trans), (_b), &_iter));\
203 _iter++)
204
205btree_path_idx_t __bch2_btree_path_make_mut(struct btree_trans *, btree_path_idx_t,
206 bool, unsigned long);
207
208static inline btree_path_idx_t __must_check
209bch2_btree_path_make_mut(struct btree_trans *trans,
210 btree_path_idx_t path, bool intent,
211 unsigned long ip)
212{
213 if (trans->paths[path].ref > 1 ||
214 trans->paths[path].preserve)
215 path = __bch2_btree_path_make_mut(trans, path, intent, ip);
216 trans->paths[path].should_be_locked = false;
217 return path;
218}
219
220btree_path_idx_t __must_check
221__bch2_btree_path_set_pos(struct btree_trans *, btree_path_idx_t,
222 struct bpos, bool, unsigned long);
223
224static inline btree_path_idx_t __must_check
225bch2_btree_path_set_pos(struct btree_trans *trans,
226 btree_path_idx_t path, struct bpos new_pos,
227 bool intent, unsigned long ip)
228{
229 return !bpos_eq(new_pos, trans->paths[path].pos)
230 ? __bch2_btree_path_set_pos(trans, path, new_pos, intent, ip)
231 : path;
232}
233
234int __must_check bch2_btree_path_traverse_one(struct btree_trans *,
235 btree_path_idx_t,
236 unsigned, unsigned long);
237
238static inline void bch2_trans_verify_not_unlocked_or_in_restart(struct btree_trans *);
239
240static inline int __must_check bch2_btree_path_traverse(struct btree_trans *trans,
241 btree_path_idx_t path, unsigned flags)
242{
243 bch2_trans_verify_not_unlocked_or_in_restart(trans);
244
245 if (trans->paths[path].uptodate < BTREE_ITER_NEED_RELOCK)
246 return 0;
247
248 return bch2_btree_path_traverse_one(trans, path, flags, _RET_IP_);
249}
250
251btree_path_idx_t bch2_path_get(struct btree_trans *, enum btree_id, struct bpos,
252 unsigned, unsigned, unsigned, unsigned long);
253btree_path_idx_t bch2_path_get_unlocked_mut(struct btree_trans *, enum btree_id,
254 unsigned, struct bpos);
255
256struct bkey_s_c bch2_btree_path_peek_slot(struct btree_path *, struct bkey *);
257
258/*
259 * bch2_btree_path_peek_slot() for a cached iterator might return a key in a
260 * different snapshot:
261 */
262static inline struct bkey_s_c bch2_btree_path_peek_slot_exact(struct btree_path *path, struct bkey *u)
263{
264 struct bkey_s_c k = bch2_btree_path_peek_slot(path, u);
265
266 if (k.k && bpos_eq(path->pos, k.k->p))
267 return k;
268
269 bkey_init(u);
270 u->p = path->pos;
271 return (struct bkey_s_c) { u, NULL };
272}
273
274struct bkey_i *bch2_btree_journal_peek_slot(struct btree_trans *,
275 struct btree_iter *, struct bpos);
276
277void bch2_btree_path_level_init(struct btree_trans *, struct btree_path *, struct btree *);
278
279int __bch2_trans_mutex_lock(struct btree_trans *, struct mutex *);
280
281static inline int bch2_trans_mutex_lock(struct btree_trans *trans, struct mutex *lock)
282{
283 return mutex_trylock(lock)
284 ? 0
285 : __bch2_trans_mutex_lock(trans, lock);
286}
287
288#ifdef CONFIG_BCACHEFS_DEBUG
289void bch2_trans_verify_paths(struct btree_trans *);
290void bch2_assert_pos_locked(struct btree_trans *, enum btree_id, struct bpos);
291#else
292static inline void bch2_trans_verify_paths(struct btree_trans *trans) {}
293static inline void bch2_assert_pos_locked(struct btree_trans *trans, enum btree_id id,
294 struct bpos pos) {}
295#endif
296
297void bch2_btree_path_fix_key_modified(struct btree_trans *trans,
298 struct btree *, struct bkey_packed *);
299void bch2_btree_node_iter_fix(struct btree_trans *trans, struct btree_path *,
300 struct btree *, struct btree_node_iter *,
301 struct bkey_packed *, unsigned, unsigned);
302
303int bch2_btree_path_relock_intent(struct btree_trans *, struct btree_path *);
304
305void bch2_path_put(struct btree_trans *, btree_path_idx_t, bool);
306
307int bch2_trans_relock(struct btree_trans *);
308int bch2_trans_relock_notrace(struct btree_trans *);
309void bch2_trans_unlock(struct btree_trans *);
310void bch2_trans_unlock_long(struct btree_trans *);
311
312static inline int trans_was_restarted(struct btree_trans *trans, u32 restart_count)
313{
314 return restart_count != trans->restart_count
315 ? -BCH_ERR_transaction_restart_nested
316 : 0;
317}
318
319void __noreturn bch2_trans_restart_error(struct btree_trans *, u32);
320
321static inline void bch2_trans_verify_not_restarted(struct btree_trans *trans,
322 u32 restart_count)
323{
324 if (trans_was_restarted(trans, restart_count))
325 bch2_trans_restart_error(trans, restart_count);
326}
327
328void __noreturn bch2_trans_unlocked_or_in_restart_error(struct btree_trans *);
329
330static inline void bch2_trans_verify_not_unlocked_or_in_restart(struct btree_trans *trans)
331{
332 if (trans->restarted || !trans->locked)
333 bch2_trans_unlocked_or_in_restart_error(trans);
334}
335
336__always_inline
337static int btree_trans_restart_foreign_task(struct btree_trans *trans, int err, unsigned long ip)
338{
339 BUG_ON(err <= 0);
340 BUG_ON(!bch2_err_matches(-err, BCH_ERR_transaction_restart));
341
342 trans->restarted = err;
343 trans->last_restarted_ip = ip;
344 return -err;
345}
346
347__always_inline
348static int btree_trans_restart_ip(struct btree_trans *trans, int err, unsigned long ip)
349{
350 btree_trans_restart_foreign_task(trans, err, ip);
351#ifdef CONFIG_BCACHEFS_DEBUG
352 darray_exit(&trans->last_restarted_trace);
353 bch2_save_backtrace(&trans->last_restarted_trace, current, 0, GFP_NOWAIT);
354#endif
355 return -err;
356}
357
358__always_inline
359static int btree_trans_restart(struct btree_trans *trans, int err)
360{
361 return btree_trans_restart_ip(trans, err, _THIS_IP_);
362}
363
364static inline int trans_maybe_inject_restart(struct btree_trans *trans, unsigned long ip)
365{
366#ifdef CONFIG_BCACHEFS_INJECT_TRANSACTION_RESTARTS
367 if (!(ktime_get_ns() & ~(~0ULL << min(63, (10 + trans->restart_count_this_trans))))) {
368 trace_and_count(trans->c, trans_restart_injected, trans, ip);
369 return btree_trans_restart_ip(trans,
370 BCH_ERR_transaction_restart_fault_inject, ip);
371 }
372#endif
373 return 0;
374}
375
376bool bch2_btree_node_upgrade(struct btree_trans *,
377 struct btree_path *, unsigned);
378
379void __bch2_btree_path_downgrade(struct btree_trans *, struct btree_path *, unsigned);
380
381static inline void bch2_btree_path_downgrade(struct btree_trans *trans,
382 struct btree_path *path)
383{
384 unsigned new_locks_want = path->level + !!path->intent_ref;
385
386 if (path->locks_want > new_locks_want)
387 __bch2_btree_path_downgrade(trans, path, new_locks_want);
388}
389
390void bch2_trans_downgrade(struct btree_trans *);
391
392void bch2_trans_node_add(struct btree_trans *trans, struct btree_path *, struct btree *);
393void bch2_trans_node_drop(struct btree_trans *trans, struct btree *);
394void bch2_trans_node_reinit_iter(struct btree_trans *, struct btree *);
395
396int __must_check __bch2_btree_iter_traverse(struct btree_trans *, struct btree_iter *);
397int __must_check bch2_btree_iter_traverse(struct btree_trans *, struct btree_iter *);
398
399struct btree *bch2_btree_iter_peek_node(struct btree_trans *, struct btree_iter *);
400struct btree *bch2_btree_iter_peek_node_and_restart(struct btree_trans *, struct btree_iter *);
401struct btree *bch2_btree_iter_next_node(struct btree_trans *, struct btree_iter *);
402
403struct bkey_s_c bch2_btree_iter_peek_max(struct btree_trans *, struct btree_iter *, struct bpos);
404struct bkey_s_c bch2_btree_iter_next(struct btree_trans *, struct btree_iter *);
405
406static inline struct bkey_s_c bch2_btree_iter_peek(struct btree_trans *trans,
407 struct btree_iter *iter)
408{
409 return bch2_btree_iter_peek_max(trans, iter, SPOS_MAX);
410}
411
412struct bkey_s_c bch2_btree_iter_peek_prev_min(struct btree_trans *, struct btree_iter *, struct bpos);
413
414static inline struct bkey_s_c bch2_btree_iter_peek_prev(struct btree_trans *trans, struct btree_iter *iter)
415{
416 return bch2_btree_iter_peek_prev_min(trans, iter, POS_MIN);
417}
418
419struct bkey_s_c bch2_btree_iter_prev(struct btree_trans *, struct btree_iter *);
420
421struct bkey_s_c bch2_btree_iter_peek_slot(struct btree_trans *, struct btree_iter *);
422struct bkey_s_c bch2_btree_iter_next_slot(struct btree_trans *, struct btree_iter *);
423struct bkey_s_c bch2_btree_iter_prev_slot(struct btree_trans *, struct btree_iter *);
424
425bool bch2_btree_iter_advance(struct btree_trans *, struct btree_iter *);
426bool bch2_btree_iter_rewind(struct btree_trans *, struct btree_iter *);
427
428static inline void __bch2_btree_iter_set_pos(struct btree_iter *iter, struct bpos new_pos)
429{
430 iter->k.type = KEY_TYPE_deleted;
431 iter->k.p.inode = iter->pos.inode = new_pos.inode;
432 iter->k.p.offset = iter->pos.offset = new_pos.offset;
433 iter->k.p.snapshot = iter->pos.snapshot = new_pos.snapshot;
434 iter->k.size = 0;
435}
436
437static inline void bch2_btree_iter_set_pos(struct btree_trans *trans,
438 struct btree_iter *iter, struct bpos new_pos)
439{
440 if (unlikely(iter->update_path))
441 bch2_path_put(trans, iter->update_path,
442 iter->flags & BTREE_ITER_intent);
443 iter->update_path = 0;
444
445 if (!(iter->flags & BTREE_ITER_all_snapshots))
446 new_pos.snapshot = iter->snapshot;
447
448 __bch2_btree_iter_set_pos(iter, new_pos);
449}
450
451static inline void bch2_btree_iter_set_pos_to_extent_start(struct btree_iter *iter)
452{
453 BUG_ON(!(iter->flags & BTREE_ITER_is_extents));
454 iter->pos = bkey_start_pos(&iter->k);
455}
456
457static inline void bch2_btree_iter_set_snapshot(struct btree_trans *trans,
458 struct btree_iter *iter, u32 snapshot)
459{
460 struct bpos pos = iter->pos;
461
462 iter->snapshot = snapshot;
463 pos.snapshot = snapshot;
464 bch2_btree_iter_set_pos(trans, iter, pos);
465}
466
467void bch2_trans_iter_exit(struct btree_trans *, struct btree_iter *);
468
469static inline unsigned bch2_btree_iter_flags(struct btree_trans *trans,
470 unsigned btree_id,
471 unsigned level,
472 unsigned flags)
473{
474 if (level || !btree_id_cached(trans->c, btree_id)) {
475 flags &= ~BTREE_ITER_cached;
476 flags &= ~BTREE_ITER_with_key_cache;
477 } else if (!(flags & BTREE_ITER_cached))
478 flags |= BTREE_ITER_with_key_cache;
479
480 if (!(flags & (BTREE_ITER_all_snapshots|BTREE_ITER_not_extents)) &&
481 btree_id_is_extents(btree_id))
482 flags |= BTREE_ITER_is_extents;
483
484 if (!(flags & BTREE_ITER_snapshot_field) &&
485 !btree_type_has_snapshot_field(btree_id))
486 flags &= ~BTREE_ITER_all_snapshots;
487
488 if (!(flags & BTREE_ITER_all_snapshots) &&
489 btree_type_has_snapshots(btree_id))
490 flags |= BTREE_ITER_filter_snapshots;
491
492 if (trans->journal_replay_not_finished)
493 flags |= BTREE_ITER_with_journal;
494
495 return flags;
496}
497
498static inline void bch2_trans_iter_init_common(struct btree_trans *trans,
499 struct btree_iter *iter,
500 unsigned btree_id, struct bpos pos,
501 unsigned locks_want,
502 unsigned depth,
503 unsigned flags,
504 unsigned long ip)
505{
506 iter->update_path = 0;
507 iter->key_cache_path = 0;
508 iter->btree_id = btree_id;
509 iter->min_depth = 0;
510 iter->flags = flags;
511 iter->snapshot = pos.snapshot;
512 iter->pos = pos;
513 iter->k = POS_KEY(pos);
514 iter->journal_idx = 0;
515#ifdef CONFIG_BCACHEFS_DEBUG
516 iter->ip_allocated = ip;
517#endif
518 iter->path = bch2_path_get(trans, btree_id, iter->pos,
519 locks_want, depth, flags, ip);
520}
521
522void bch2_trans_iter_init_outlined(struct btree_trans *, struct btree_iter *,
523 enum btree_id, struct bpos, unsigned);
524
525static inline void bch2_trans_iter_init(struct btree_trans *trans,
526 struct btree_iter *iter,
527 unsigned btree_id, struct bpos pos,
528 unsigned flags)
529{
530 if (__builtin_constant_p(btree_id) &&
531 __builtin_constant_p(flags))
532 bch2_trans_iter_init_common(trans, iter, btree_id, pos, 0, 0,
533 bch2_btree_iter_flags(trans, btree_id, 0, flags),
534 _THIS_IP_);
535 else
536 bch2_trans_iter_init_outlined(trans, iter, btree_id, pos, flags);
537}
538
539void bch2_trans_node_iter_init(struct btree_trans *, struct btree_iter *,
540 enum btree_id, struct bpos,
541 unsigned, unsigned, unsigned);
542void bch2_trans_copy_iter(struct btree_trans *, struct btree_iter *, struct btree_iter *);
543
544void bch2_set_btree_iter_dontneed(struct btree_trans *, struct btree_iter *);
545
546void *__bch2_trans_kmalloc(struct btree_trans *, size_t);
547
548/**
549 * bch2_trans_kmalloc - allocate memory for use by the current transaction
550 *
551 * Must be called after bch2_trans_begin, which on second and further calls
552 * frees all memory allocated in this transaction
553 */
554static inline void *bch2_trans_kmalloc(struct btree_trans *trans, size_t size)
555{
556 size = roundup(size, 8);
557
558 if (likely(trans->mem_top + size <= trans->mem_bytes)) {
559 void *p = trans->mem + trans->mem_top;
560
561 trans->mem_top += size;
562 memset(p, 0, size);
563 return p;
564 } else {
565 return __bch2_trans_kmalloc(trans, size);
566 }
567}
568
569static inline void *bch2_trans_kmalloc_nomemzero(struct btree_trans *trans, size_t size)
570{
571 size = round_up(size, 8);
572
573 if (likely(trans->mem_top + size <= trans->mem_bytes)) {
574 void *p = trans->mem + trans->mem_top;
575
576 trans->mem_top += size;
577 return p;
578 } else {
579 return __bch2_trans_kmalloc(trans, size);
580 }
581}
582
583static inline struct bkey_s_c __bch2_bkey_get_iter(struct btree_trans *trans,
584 struct btree_iter *iter,
585 unsigned btree_id, struct bpos pos,
586 unsigned flags, unsigned type)
587{
588 struct bkey_s_c k;
589
590 bch2_trans_iter_init(trans, iter, btree_id, pos, flags);
591 k = bch2_btree_iter_peek_slot(trans, iter);
592
593 if (!bkey_err(k) && type && k.k->type != type)
594 k = bkey_s_c_err(-BCH_ERR_ENOENT_bkey_type_mismatch);
595 if (unlikely(bkey_err(k)))
596 bch2_trans_iter_exit(trans, iter);
597 return k;
598}
599
600static inline struct bkey_s_c bch2_bkey_get_iter(struct btree_trans *trans,
601 struct btree_iter *iter,
602 unsigned btree_id, struct bpos pos,
603 unsigned flags)
604{
605 return __bch2_bkey_get_iter(trans, iter, btree_id, pos, flags, 0);
606}
607
608#define bch2_bkey_get_iter_typed(_trans, _iter, _btree_id, _pos, _flags, _type)\
609 bkey_s_c_to_##_type(__bch2_bkey_get_iter(_trans, _iter, \
610 _btree_id, _pos, _flags, KEY_TYPE_##_type))
611
612static inline void __bkey_val_copy(void *dst_v, unsigned dst_size, struct bkey_s_c src_k)
613{
614 unsigned b = min_t(unsigned, dst_size, bkey_val_bytes(src_k.k));
615 memcpy(dst_v, src_k.v, b);
616 if (unlikely(b < dst_size))
617 memset(dst_v + b, 0, dst_size - b);
618}
619
620#define bkey_val_copy(_dst_v, _src_k) \
621do { \
622 BUILD_BUG_ON(!__typecheck(*_dst_v, *_src_k.v)); \
623 __bkey_val_copy(_dst_v, sizeof(*_dst_v), _src_k.s_c); \
624} while (0)
625
626static inline int __bch2_bkey_get_val_typed(struct btree_trans *trans,
627 unsigned btree_id, struct bpos pos,
628 unsigned flags, unsigned type,
629 unsigned val_size, void *val)
630{
631 struct btree_iter iter;
632 struct bkey_s_c k = __bch2_bkey_get_iter(trans, &iter, btree_id, pos, flags, type);
633 int ret = bkey_err(k);
634 if (!ret) {
635 __bkey_val_copy(val, val_size, k);
636 bch2_trans_iter_exit(trans, &iter);
637 }
638
639 return ret;
640}
641
642#define bch2_bkey_get_val_typed(_trans, _btree_id, _pos, _flags, _type, _val)\
643 __bch2_bkey_get_val_typed(_trans, _btree_id, _pos, _flags, \
644 KEY_TYPE_##_type, sizeof(*_val), _val)
645
646void bch2_trans_srcu_unlock(struct btree_trans *);
647
648u32 bch2_trans_begin(struct btree_trans *);
649
650#define __for_each_btree_node(_trans, _iter, _btree_id, _start, \
651 _locks_want, _depth, _flags, _b, _do) \
652({ \
653 bch2_trans_begin((_trans)); \
654 \
655 struct btree_iter _iter; \
656 bch2_trans_node_iter_init((_trans), &_iter, (_btree_id), \
657 _start, _locks_want, _depth, _flags); \
658 int _ret3 = 0; \
659 do { \
660 _ret3 = lockrestart_do((_trans), ({ \
661 struct btree *_b = bch2_btree_iter_peek_node(_trans, &_iter);\
662 if (!_b) \
663 break; \
664 \
665 PTR_ERR_OR_ZERO(_b) ?: (_do); \
666 })) ?: \
667 lockrestart_do((_trans), \
668 PTR_ERR_OR_ZERO(bch2_btree_iter_next_node(_trans, &_iter)));\
669 } while (!_ret3); \
670 \
671 bch2_trans_iter_exit((_trans), &(_iter)); \
672 _ret3; \
673})
674
675#define for_each_btree_node(_trans, _iter, _btree_id, _start, \
676 _flags, _b, _do) \
677 __for_each_btree_node(_trans, _iter, _btree_id, _start, \
678 0, 0, _flags, _b, _do)
679
680static inline struct bkey_s_c bch2_btree_iter_peek_prev_type(struct btree_trans *trans,
681 struct btree_iter *iter,
682 unsigned flags)
683{
684 return flags & BTREE_ITER_slots ? bch2_btree_iter_peek_slot(trans, iter) :
685 bch2_btree_iter_peek_prev(trans, iter);
686}
687
688static inline struct bkey_s_c bch2_btree_iter_peek_type(struct btree_trans *trans,
689 struct btree_iter *iter,
690 unsigned flags)
691{
692 return flags & BTREE_ITER_slots ? bch2_btree_iter_peek_slot(trans, iter) :
693 bch2_btree_iter_peek(trans, iter);
694}
695
696static inline struct bkey_s_c bch2_btree_iter_peek_max_type(struct btree_trans *trans,
697 struct btree_iter *iter,
698 struct bpos end,
699 unsigned flags)
700{
701 if (!(flags & BTREE_ITER_slots))
702 return bch2_btree_iter_peek_max(trans, iter, end);
703
704 if (bkey_gt(iter->pos, end))
705 return bkey_s_c_null;
706
707 return bch2_btree_iter_peek_slot(trans, iter);
708}
709
710int __bch2_btree_trans_too_many_iters(struct btree_trans *);
711
712static inline int btree_trans_too_many_iters(struct btree_trans *trans)
713{
714 if (bitmap_weight(trans->paths_allocated, trans->nr_paths) > BTREE_ITER_NORMAL_LIMIT - 8)
715 return __bch2_btree_trans_too_many_iters(trans);
716
717 return 0;
718}
719
720/*
721 * goto instead of loop, so that when used inside for_each_btree_key2()
722 * break/continue work correctly
723 */
724#define lockrestart_do(_trans, _do) \
725({ \
726 __label__ transaction_restart; \
727 u32 _restart_count; \
728 int _ret2; \
729transaction_restart: \
730 _restart_count = bch2_trans_begin(_trans); \
731 _ret2 = (_do); \
732 \
733 if (bch2_err_matches(_ret2, BCH_ERR_transaction_restart)) \
734 goto transaction_restart; \
735 \
736 if (!_ret2) \
737 bch2_trans_verify_not_restarted(_trans, _restart_count);\
738 _ret2; \
739})
740
741/*
742 * nested_lockrestart_do(), nested_commit_do():
743 *
744 * These are like lockrestart_do() and commit_do(), with two differences:
745 *
746 * - We don't call bch2_trans_begin() unless we had a transaction restart
747 * - We return -BCH_ERR_transaction_restart_nested if we succeeded after a
748 * transaction restart
749 */
750#define nested_lockrestart_do(_trans, _do) \
751({ \
752 u32 _restart_count, _orig_restart_count; \
753 int _ret2; \
754 \
755 _restart_count = _orig_restart_count = (_trans)->restart_count; \
756 \
757 while (bch2_err_matches(_ret2 = (_do), BCH_ERR_transaction_restart))\
758 _restart_count = bch2_trans_begin(_trans); \
759 \
760 if (!_ret2) \
761 bch2_trans_verify_not_restarted(_trans, _restart_count);\
762 \
763 _ret2 ?: trans_was_restarted(_trans, _orig_restart_count); \
764})
765
766#define for_each_btree_key_max_continue(_trans, _iter, \
767 _end, _flags, _k, _do) \
768({ \
769 struct bkey_s_c _k; \
770 int _ret3 = 0; \
771 \
772 do { \
773 _ret3 = lockrestart_do(_trans, ({ \
774 (_k) = bch2_btree_iter_peek_max_type(_trans, &(_iter), \
775 _end, (_flags)); \
776 if (!(_k).k) \
777 break; \
778 \
779 bkey_err(_k) ?: (_do); \
780 })); \
781 } while (!_ret3 && bch2_btree_iter_advance(_trans, &(_iter))); \
782 \
783 bch2_trans_iter_exit((_trans), &(_iter)); \
784 _ret3; \
785})
786
787#define for_each_btree_key_continue(_trans, _iter, _flags, _k, _do) \
788 for_each_btree_key_max_continue(_trans, _iter, SPOS_MAX, _flags, _k, _do)
789
790#define for_each_btree_key_max(_trans, _iter, _btree_id, \
791 _start, _end, _flags, _k, _do) \
792({ \
793 bch2_trans_begin(trans); \
794 \
795 struct btree_iter _iter; \
796 bch2_trans_iter_init((_trans), &(_iter), (_btree_id), \
797 (_start), (_flags)); \
798 \
799 for_each_btree_key_max_continue(_trans, _iter, _end, _flags, _k, _do);\
800})
801
802#define for_each_btree_key(_trans, _iter, _btree_id, \
803 _start, _flags, _k, _do) \
804 for_each_btree_key_max(_trans, _iter, _btree_id, _start, \
805 SPOS_MAX, _flags, _k, _do)
806
807#define for_each_btree_key_reverse(_trans, _iter, _btree_id, \
808 _start, _flags, _k, _do) \
809({ \
810 struct btree_iter _iter; \
811 struct bkey_s_c _k; \
812 int _ret3 = 0; \
813 \
814 bch2_trans_iter_init((_trans), &(_iter), (_btree_id), \
815 (_start), (_flags)); \
816 \
817 do { \
818 _ret3 = lockrestart_do(_trans, ({ \
819 (_k) = bch2_btree_iter_peek_prev_type(_trans, &(_iter), \
820 (_flags)); \
821 if (!(_k).k) \
822 break; \
823 \
824 bkey_err(_k) ?: (_do); \
825 })); \
826 } while (!_ret3 && bch2_btree_iter_rewind(_trans, &(_iter))); \
827 \
828 bch2_trans_iter_exit((_trans), &(_iter)); \
829 _ret3; \
830})
831
832#define for_each_btree_key_commit(_trans, _iter, _btree_id, \
833 _start, _iter_flags, _k, \
834 _disk_res, _journal_seq, _commit_flags,\
835 _do) \
836 for_each_btree_key(_trans, _iter, _btree_id, _start, _iter_flags, _k,\
837 (_do) ?: bch2_trans_commit(_trans, (_disk_res),\
838 (_journal_seq), (_commit_flags)))
839
840#define for_each_btree_key_reverse_commit(_trans, _iter, _btree_id, \
841 _start, _iter_flags, _k, \
842 _disk_res, _journal_seq, _commit_flags,\
843 _do) \
844 for_each_btree_key_reverse(_trans, _iter, _btree_id, _start, _iter_flags, _k,\
845 (_do) ?: bch2_trans_commit(_trans, (_disk_res),\
846 (_journal_seq), (_commit_flags)))
847
848#define for_each_btree_key_max_commit(_trans, _iter, _btree_id, \
849 _start, _end, _iter_flags, _k, \
850 _disk_res, _journal_seq, _commit_flags,\
851 _do) \
852 for_each_btree_key_max(_trans, _iter, _btree_id, _start, _end, _iter_flags, _k,\
853 (_do) ?: bch2_trans_commit(_trans, (_disk_res),\
854 (_journal_seq), (_commit_flags)))
855
856struct bkey_s_c bch2_btree_iter_peek_and_restart_outlined(struct btree_trans *,
857 struct btree_iter *);
858
859#define for_each_btree_key_max_norestart(_trans, _iter, _btree_id, \
860 _start, _end, _flags, _k, _ret) \
861 for (bch2_trans_iter_init((_trans), &(_iter), (_btree_id), \
862 (_start), (_flags)); \
863 (_k) = bch2_btree_iter_peek_max_type(_trans, &(_iter), _end, _flags),\
864 !((_ret) = bkey_err(_k)) && (_k).k; \
865 bch2_btree_iter_advance(_trans, &(_iter)))
866
867#define for_each_btree_key_max_continue_norestart(_trans, _iter, _end, _flags, _k, _ret)\
868 for (; \
869 (_k) = bch2_btree_iter_peek_max_type(_trans, &(_iter), _end, _flags), \
870 !((_ret) = bkey_err(_k)) && (_k).k; \
871 bch2_btree_iter_advance(_trans, &(_iter)))
872
873#define for_each_btree_key_norestart(_trans, _iter, _btree_id, \
874 _start, _flags, _k, _ret) \
875 for_each_btree_key_max_norestart(_trans, _iter, _btree_id, _start,\
876 SPOS_MAX, _flags, _k, _ret)
877
878#define for_each_btree_key_reverse_norestart(_trans, _iter, _btree_id, \
879 _start, _flags, _k, _ret) \
880 for (bch2_trans_iter_init((_trans), &(_iter), (_btree_id), \
881 (_start), (_flags)); \
882 (_k) = bch2_btree_iter_peek_prev_type(_trans, &(_iter), _flags), \
883 !((_ret) = bkey_err(_k)) && (_k).k; \
884 bch2_btree_iter_rewind(_trans, &(_iter)))
885
886#define for_each_btree_key_continue_norestart(_trans, _iter, _flags, _k, _ret) \
887 for_each_btree_key_max_continue_norestart(_trans, _iter, SPOS_MAX, _flags, _k, _ret)
888
889/*
890 * This should not be used in a fastpath, without first trying _do in
891 * nonblocking mode - it will cause excessive transaction restarts and
892 * potentially livelocking:
893 */
894#define drop_locks_do(_trans, _do) \
895({ \
896 bch2_trans_unlock(_trans); \
897 (_do) ?: bch2_trans_relock(_trans); \
898})
899
900#define allocate_dropping_locks_errcode(_trans, _do) \
901({ \
902 gfp_t _gfp = GFP_NOWAIT|__GFP_NOWARN; \
903 int _ret = _do; \
904 \
905 if (bch2_err_matches(_ret, ENOMEM)) { \
906 _gfp = GFP_KERNEL; \
907 _ret = drop_locks_do(_trans, _do); \
908 } \
909 _ret; \
910})
911
912#define allocate_dropping_locks(_trans, _ret, _do) \
913({ \
914 gfp_t _gfp = GFP_NOWAIT|__GFP_NOWARN; \
915 typeof(_do) _p = _do; \
916 \
917 _ret = 0; \
918 if (unlikely(!_p)) { \
919 _gfp = GFP_KERNEL; \
920 _ret = drop_locks_do(_trans, ((_p = _do), 0)); \
921 } \
922 _p; \
923})
924
925#define bch2_trans_run(_c, _do) \
926({ \
927 struct btree_trans *trans = bch2_trans_get(_c); \
928 int _ret = (_do); \
929 bch2_trans_put(trans); \
930 _ret; \
931})
932
933#define bch2_trans_do(_c, _do) bch2_trans_run(_c, lockrestart_do(trans, _do))
934
935struct btree_trans *__bch2_trans_get(struct bch_fs *, unsigned);
936void bch2_trans_put(struct btree_trans *);
937
938bool bch2_current_has_btree_trans(struct bch_fs *);
939
940extern const char *bch2_btree_transaction_fns[BCH_TRANSACTIONS_NR];
941unsigned bch2_trans_get_fn_idx(const char *);
942
943#define bch2_trans_get(_c) \
944({ \
945 static unsigned trans_fn_idx; \
946 \
947 if (unlikely(!trans_fn_idx)) \
948 trans_fn_idx = bch2_trans_get_fn_idx(__func__); \
949 __bch2_trans_get(_c, trans_fn_idx); \
950})
951
952void bch2_btree_trans_to_text(struct printbuf *, struct btree_trans *);
953
954void bch2_fs_btree_iter_exit(struct bch_fs *);
955void bch2_fs_btree_iter_init_early(struct bch_fs *);
956int bch2_fs_btree_iter_init(struct bch_fs *);
957
958#endif /* _BCACHEFS_BTREE_ITER_H */