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