1 // SPDX-License-Identifier: GPL-2.0 2 3 #include "bcachefs.h" 4 #include "bkey_methods.h" 5 #include "bkey_buf.h" 6 #include "btree_cache.h" 7 #include "btree_iter.h" 8 #include "btree_journal_iter.h" 9 #include "btree_key_cache.h" 10 #include "btree_locking.h" 11 #include "btree_update.h" 12 #include "debug.h" 13 #include "error.h" 14 #include "extents.h" 15 #include "journal.h" 16 #include "journal_io.h" 17 #include "replicas.h" 18 #include "snapshot.h" 19 #include "super.h" 20 #include "trace.h" 21 22 #include <linux/random.h> 23 #include <linux/prefetch.h> 24 25 static inline void btree_path_list_remove(struct btree_trans *, struct btree_path *); 26 static inline void btree_path_list_add(struct btree_trans *, 27 btree_path_idx_t, btree_path_idx_t); 28 29 static inline unsigned long btree_iter_ip_allocated(struct btree_iter *iter) 30 { 31 #ifdef TRACK_PATH_ALLOCATED 32 return iter->ip_allocated; 33 #else 34 return 0; 35 #endif 36 } 37 38 static btree_path_idx_t btree_path_alloc(struct btree_trans *, btree_path_idx_t); 39 static void bch2_trans_srcu_lock(struct btree_trans *); 40 41 static inline int __btree_path_cmp(const struct btree_path *l, 42 enum btree_id r_btree_id, 43 bool r_cached, 44 struct bpos r_pos, 45 unsigned r_level) 46 { 47 /* 48 * Must match lock ordering as defined by __bch2_btree_node_lock: 49 */ 50 return cmp_int(l->btree_id, r_btree_id) ?: 51 cmp_int((int) l->cached, (int) r_cached) ?: 52 bpos_cmp(l->pos, r_pos) ?: 53 -cmp_int(l->level, r_level); 54 } 55 56 static inline int btree_path_cmp(const struct btree_path *l, 57 const struct btree_path *r) 58 { 59 return __btree_path_cmp(l, r->btree_id, r->cached, r->pos, r->level); 60 } 61 62 static inline struct bpos bkey_successor(struct btree_iter *iter, struct bpos p) 63 { 64 /* Are we iterating over keys in all snapshots? */ 65 if (iter->flags & BTREE_ITER_all_snapshots) { 66 p = bpos_successor(p); 67 } else { 68 p = bpos_nosnap_successor(p); 69 p.snapshot = iter->snapshot; 70 } 71 72 return p; 73 } 74 75 static inline struct bpos bkey_predecessor(struct btree_iter *iter, struct bpos p) 76 { 77 /* Are we iterating over keys in all snapshots? */ 78 if (iter->flags & BTREE_ITER_all_snapshots) { 79 p = bpos_predecessor(p); 80 } else { 81 p = bpos_nosnap_predecessor(p); 82 p.snapshot = iter->snapshot; 83 } 84 85 return p; 86 } 87 88 static inline struct bpos btree_iter_search_key(struct btree_iter *iter) 89 { 90 struct bpos pos = iter->pos; 91 92 if ((iter->flags & BTREE_ITER_is_extents) && 93 !bkey_eq(pos, POS_MAX)) 94 pos = bkey_successor(iter, pos); 95 return pos; 96 } 97 98 static inline bool btree_path_pos_before_node(struct btree_path *path, 99 struct btree *b) 100 { 101 return bpos_lt(path->pos, b->data->min_key); 102 } 103 104 static inline bool btree_path_pos_after_node(struct btree_path *path, 105 struct btree *b) 106 { 107 return bpos_gt(path->pos, b->key.k.p); 108 } 109 110 static inline bool btree_path_pos_in_node(struct btree_path *path, 111 struct btree *b) 112 { 113 return path->btree_id == b->c.btree_id && 114 !btree_path_pos_before_node(path, b) && 115 !btree_path_pos_after_node(path, b); 116 } 117 118 /* Debug: */ 119 120 static void __bch2_btree_path_verify_cached(struct btree_trans *trans, 121 struct btree_path *path) 122 { 123 struct bkey_cached *ck; 124 bool locked = btree_node_locked(path, 0); 125 126 if (!bch2_btree_node_relock(trans, path, 0)) 127 return; 128 129 ck = (void *) path->l[0].b; 130 BUG_ON(ck->key.btree_id != path->btree_id || 131 !bkey_eq(ck->key.pos, path->pos)); 132 133 if (!locked) 134 btree_node_unlock(trans, path, 0); 135 } 136 137 static void __bch2_btree_path_verify_level(struct btree_trans *trans, 138 struct btree_path *path, unsigned level) 139 { 140 struct btree_path_level *l; 141 struct btree_node_iter tmp; 142 bool locked; 143 struct bkey_packed *p, *k; 144 struct printbuf buf1 = PRINTBUF; 145 struct printbuf buf2 = PRINTBUF; 146 struct printbuf buf3 = PRINTBUF; 147 const char *msg; 148 149 l = &path->l[level]; 150 tmp = l->iter; 151 locked = btree_node_locked(path, level); 152 153 if (path->cached) { 154 if (!level) 155 __bch2_btree_path_verify_cached(trans, path); 156 return; 157 } 158 159 if (!btree_path_node(path, level)) 160 return; 161 162 if (!bch2_btree_node_relock_notrace(trans, path, level)) 163 return; 164 165 BUG_ON(!btree_path_pos_in_node(path, l->b)); 166 167 bch2_btree_node_iter_verify(&l->iter, l->b); 168 169 /* 170 * For interior nodes, the iterator will have skipped past deleted keys: 171 */ 172 p = level 173 ? bch2_btree_node_iter_prev(&tmp, l->b) 174 : bch2_btree_node_iter_prev_all(&tmp, l->b); 175 k = bch2_btree_node_iter_peek_all(&l->iter, l->b); 176 177 if (p && bkey_iter_pos_cmp(l->b, p, &path->pos) >= 0) { 178 msg = "before"; 179 goto err; 180 } 181 182 if (k && bkey_iter_pos_cmp(l->b, k, &path->pos) < 0) { 183 msg = "after"; 184 goto err; 185 } 186 187 if (!locked) 188 btree_node_unlock(trans, path, level); 189 return; 190 err: 191 bch2_bpos_to_text(&buf1, path->pos); 192 193 if (p) { 194 struct bkey uk = bkey_unpack_key(l->b, p); 195 196 bch2_bkey_to_text(&buf2, &uk); 197 } else { 198 prt_printf(&buf2, "(none)"); 199 } 200 201 if (k) { 202 struct bkey uk = bkey_unpack_key(l->b, k); 203 204 bch2_bkey_to_text(&buf3, &uk); 205 } else { 206 prt_printf(&buf3, "(none)"); 207 } 208 209 panic("path should be %s key at level %u:\n" 210 "path pos %s\n" 211 "prev key %s\n" 212 "cur key %s\n", 213 msg, level, buf1.buf, buf2.buf, buf3.buf); 214 } 215 216 static void __bch2_btree_path_verify(struct btree_trans *trans, 217 struct btree_path *path) 218 { 219 struct bch_fs *c = trans->c; 220 221 for (unsigned i = 0; i < (!path->cached ? BTREE_MAX_DEPTH : 1); i++) { 222 if (!path->l[i].b) { 223 BUG_ON(!path->cached && 224 bch2_btree_id_root(c, path->btree_id)->b->c.level > i); 225 break; 226 } 227 228 __bch2_btree_path_verify_level(trans, path, i); 229 } 230 231 bch2_btree_path_verify_locks(trans, path); 232 } 233 234 void __bch2_trans_verify_paths(struct btree_trans *trans) 235 { 236 struct btree_path *path; 237 unsigned iter; 238 239 trans_for_each_path(trans, path, iter) 240 __bch2_btree_path_verify(trans, path); 241 } 242 243 static void __bch2_btree_iter_verify(struct btree_trans *trans, struct btree_iter *iter) 244 { 245 BUG_ON(!!(iter->flags & BTREE_ITER_cached) != btree_iter_path(trans, iter)->cached); 246 247 BUG_ON((iter->flags & BTREE_ITER_is_extents) && 248 (iter->flags & BTREE_ITER_all_snapshots)); 249 250 BUG_ON(!(iter->flags & BTREE_ITER_snapshot_field) && 251 (iter->flags & BTREE_ITER_all_snapshots) && 252 !btree_type_has_snapshot_field(iter->btree_id)); 253 254 if (iter->update_path) 255 __bch2_btree_path_verify(trans, &trans->paths[iter->update_path]); 256 __bch2_btree_path_verify(trans, btree_iter_path(trans, iter)); 257 } 258 259 static void __bch2_btree_iter_verify_entry_exit(struct btree_iter *iter) 260 { 261 BUG_ON((iter->flags & BTREE_ITER_filter_snapshots) && 262 !iter->pos.snapshot); 263 264 BUG_ON(!(iter->flags & BTREE_ITER_all_snapshots) && 265 iter->pos.snapshot != iter->snapshot); 266 267 BUG_ON(iter->flags & BTREE_ITER_all_snapshots ? !bpos_eq(iter->pos, iter->k.p) : 268 !(iter->flags & BTREE_ITER_is_extents) ? !bkey_eq(iter->pos, iter->k.p) : 269 (bkey_lt(iter->pos, bkey_start_pos(&iter->k)) || 270 bkey_gt(iter->pos, iter->k.p))); 271 } 272 273 static int __bch2_btree_iter_verify_ret(struct btree_trans *trans, 274 struct btree_iter *iter, struct bkey_s_c k) 275 { 276 struct btree_iter copy; 277 struct bkey_s_c prev; 278 int ret = 0; 279 280 if (!(iter->flags & BTREE_ITER_filter_snapshots)) 281 return 0; 282 283 if (bkey_err(k) || !k.k) 284 return 0; 285 286 BUG_ON(!bch2_snapshot_is_ancestor(trans->c, 287 iter->snapshot, 288 k.k->p.snapshot)); 289 290 bch2_trans_iter_init(trans, ©, iter->btree_id, iter->pos, 291 BTREE_ITER_nopreserve| 292 BTREE_ITER_all_snapshots); 293 prev = bch2_btree_iter_prev(trans, ©); 294 if (!prev.k) 295 goto out; 296 297 ret = bkey_err(prev); 298 if (ret) 299 goto out; 300 301 if (bkey_eq(prev.k->p, k.k->p) && 302 bch2_snapshot_is_ancestor(trans->c, iter->snapshot, 303 prev.k->p.snapshot) > 0) { 304 struct printbuf buf1 = PRINTBUF, buf2 = PRINTBUF; 305 306 bch2_bkey_to_text(&buf1, k.k); 307 bch2_bkey_to_text(&buf2, prev.k); 308 309 panic("iter snap %u\n" 310 "k %s\n" 311 "prev %s\n", 312 iter->snapshot, 313 buf1.buf, buf2.buf); 314 } 315 out: 316 bch2_trans_iter_exit(trans, ©); 317 return ret; 318 } 319 320 void __bch2_assert_pos_locked(struct btree_trans *trans, enum btree_id id, 321 struct bpos pos) 322 { 323 bch2_trans_verify_not_unlocked_or_in_restart(trans); 324 325 struct btree_path *path; 326 struct trans_for_each_path_inorder_iter iter; 327 struct printbuf buf = PRINTBUF; 328 329 btree_trans_sort_paths(trans); 330 331 trans_for_each_path_inorder(trans, path, iter) { 332 if (path->btree_id != id || 333 !btree_node_locked(path, 0) || 334 !path->should_be_locked) 335 continue; 336 337 if (!path->cached) { 338 if (bkey_ge(pos, path->l[0].b->data->min_key) && 339 bkey_le(pos, path->l[0].b->key.k.p)) 340 return; 341 } else { 342 if (bkey_eq(pos, path->pos)) 343 return; 344 } 345 } 346 347 bch2_dump_trans_paths_updates(trans); 348 bch2_bpos_to_text(&buf, pos); 349 350 panic("not locked: %s %s\n", bch2_btree_id_str(id), buf.buf); 351 } 352 353 static inline void bch2_btree_path_verify_level(struct btree_trans *trans, 354 struct btree_path *path, unsigned l) 355 { 356 if (static_branch_unlikely(&bch2_debug_check_iterators)) 357 __bch2_btree_path_verify_level(trans, path, l); 358 } 359 360 static inline void bch2_btree_path_verify(struct btree_trans *trans, 361 struct btree_path *path) 362 { 363 if (static_branch_unlikely(&bch2_debug_check_iterators)) 364 __bch2_btree_path_verify(trans, path); 365 } 366 367 static inline void bch2_btree_iter_verify(struct btree_trans *trans, 368 struct btree_iter *iter) 369 { 370 if (static_branch_unlikely(&bch2_debug_check_iterators)) 371 __bch2_btree_iter_verify(trans, iter); 372 } 373 374 static inline void bch2_btree_iter_verify_entry_exit(struct btree_iter *iter) 375 { 376 if (static_branch_unlikely(&bch2_debug_check_iterators)) 377 __bch2_btree_iter_verify_entry_exit(iter); 378 } 379 380 static inline int bch2_btree_iter_verify_ret(struct btree_trans *trans, struct btree_iter *iter, 381 struct bkey_s_c k) 382 { 383 return static_branch_unlikely(&bch2_debug_check_iterators) 384 ? __bch2_btree_iter_verify_ret(trans, iter, k) 385 : 0; 386 } 387 388 /* Btree path: fixups after btree updates */ 389 390 static void btree_node_iter_set_set_pos(struct btree_node_iter *iter, 391 struct btree *b, 392 struct bset_tree *t, 393 struct bkey_packed *k) 394 { 395 struct btree_node_iter_set *set; 396 397 btree_node_iter_for_each(iter, set) 398 if (set->end == t->end_offset) { 399 set->k = __btree_node_key_to_offset(b, k); 400 bch2_btree_node_iter_sort(iter, b); 401 return; 402 } 403 404 bch2_btree_node_iter_push(iter, b, k, btree_bkey_last(b, t)); 405 } 406 407 static void __bch2_btree_path_fix_key_modified(struct btree_path *path, 408 struct btree *b, 409 struct bkey_packed *where) 410 { 411 struct btree_path_level *l = &path->l[b->c.level]; 412 413 if (where != bch2_btree_node_iter_peek_all(&l->iter, l->b)) 414 return; 415 416 if (bkey_iter_pos_cmp(l->b, where, &path->pos) < 0) 417 bch2_btree_node_iter_advance(&l->iter, l->b); 418 } 419 420 void bch2_btree_path_fix_key_modified(struct btree_trans *trans, 421 struct btree *b, 422 struct bkey_packed *where) 423 { 424 struct btree_path *path; 425 unsigned i; 426 427 trans_for_each_path_with_node(trans, b, path, i) { 428 __bch2_btree_path_fix_key_modified(path, b, where); 429 bch2_btree_path_verify_level(trans, path, b->c.level); 430 } 431 } 432 433 static void __bch2_btree_node_iter_fix(struct btree_path *path, 434 struct btree *b, 435 struct btree_node_iter *node_iter, 436 struct bset_tree *t, 437 struct bkey_packed *where, 438 unsigned clobber_u64s, 439 unsigned new_u64s) 440 { 441 const struct bkey_packed *end = btree_bkey_last(b, t); 442 struct btree_node_iter_set *set; 443 unsigned offset = __btree_node_key_to_offset(b, where); 444 int shift = new_u64s - clobber_u64s; 445 unsigned old_end = t->end_offset - shift; 446 unsigned orig_iter_pos = node_iter->data[0].k; 447 bool iter_current_key_modified = 448 orig_iter_pos >= offset && 449 orig_iter_pos <= offset + clobber_u64s; 450 451 btree_node_iter_for_each(node_iter, set) 452 if (set->end == old_end) 453 goto found; 454 455 /* didn't find the bset in the iterator - might have to readd it: */ 456 if (new_u64s && 457 bkey_iter_pos_cmp(b, where, &path->pos) >= 0) { 458 bch2_btree_node_iter_push(node_iter, b, where, end); 459 goto fixup_done; 460 } else { 461 /* Iterator is after key that changed */ 462 return; 463 } 464 found: 465 set->end = t->end_offset; 466 467 /* Iterator hasn't gotten to the key that changed yet: */ 468 if (set->k < offset) 469 return; 470 471 if (new_u64s && 472 bkey_iter_pos_cmp(b, where, &path->pos) >= 0) { 473 set->k = offset; 474 } else if (set->k < offset + clobber_u64s) { 475 set->k = offset + new_u64s; 476 if (set->k == set->end) 477 bch2_btree_node_iter_set_drop(node_iter, set); 478 } else { 479 /* Iterator is after key that changed */ 480 set->k = (int) set->k + shift; 481 return; 482 } 483 484 bch2_btree_node_iter_sort(node_iter, b); 485 fixup_done: 486 if (node_iter->data[0].k != orig_iter_pos) 487 iter_current_key_modified = true; 488 489 /* 490 * When a new key is added, and the node iterator now points to that 491 * key, the iterator might have skipped past deleted keys that should 492 * come after the key the iterator now points to. We have to rewind to 493 * before those deleted keys - otherwise 494 * bch2_btree_node_iter_prev_all() breaks: 495 */ 496 if (!bch2_btree_node_iter_end(node_iter) && 497 iter_current_key_modified && 498 b->c.level) { 499 struct bkey_packed *k, *k2, *p; 500 501 k = bch2_btree_node_iter_peek_all(node_iter, b); 502 503 for_each_bset(b, t) { 504 bool set_pos = false; 505 506 if (node_iter->data[0].end == t->end_offset) 507 continue; 508 509 k2 = bch2_btree_node_iter_bset_pos(node_iter, b, t); 510 511 while ((p = bch2_bkey_prev_all(b, t, k2)) && 512 bkey_iter_cmp(b, k, p) < 0) { 513 k2 = p; 514 set_pos = true; 515 } 516 517 if (set_pos) 518 btree_node_iter_set_set_pos(node_iter, 519 b, t, k2); 520 } 521 } 522 } 523 524 void bch2_btree_node_iter_fix(struct btree_trans *trans, 525 struct btree_path *path, 526 struct btree *b, 527 struct btree_node_iter *node_iter, 528 struct bkey_packed *where, 529 unsigned clobber_u64s, 530 unsigned new_u64s) 531 { 532 struct bset_tree *t = bch2_bkey_to_bset_inlined(b, where); 533 struct btree_path *linked; 534 unsigned i; 535 536 if (node_iter != &path->l[b->c.level].iter) { 537 __bch2_btree_node_iter_fix(path, b, node_iter, t, 538 where, clobber_u64s, new_u64s); 539 540 if (static_branch_unlikely(&bch2_debug_check_iterators)) 541 bch2_btree_node_iter_verify(node_iter, b); 542 } 543 544 trans_for_each_path_with_node(trans, b, linked, i) { 545 __bch2_btree_node_iter_fix(linked, b, 546 &linked->l[b->c.level].iter, t, 547 where, clobber_u64s, new_u64s); 548 bch2_btree_path_verify_level(trans, linked, b->c.level); 549 } 550 } 551 552 /* Btree path level: pointer to a particular btree node and node iter */ 553 554 static inline struct bkey_s_c __btree_iter_unpack(struct bch_fs *c, 555 struct btree_path_level *l, 556 struct bkey *u, 557 struct bkey_packed *k) 558 { 559 if (unlikely(!k)) { 560 /* 561 * signal to bch2_btree_iter_peek_slot() that we're currently at 562 * a hole 563 */ 564 u->type = KEY_TYPE_deleted; 565 return bkey_s_c_null; 566 } 567 568 return bkey_disassemble(l->b, k, u); 569 } 570 571 static inline struct bkey_s_c btree_path_level_peek_all(struct bch_fs *c, 572 struct btree_path_level *l, 573 struct bkey *u) 574 { 575 return __btree_iter_unpack(c, l, u, 576 bch2_btree_node_iter_peek_all(&l->iter, l->b)); 577 } 578 579 static inline struct bkey_s_c btree_path_level_prev(struct btree_trans *trans, 580 struct btree_path *path, 581 struct btree_path_level *l, 582 struct bkey *u) 583 { 584 struct bkey_s_c k = __btree_iter_unpack(trans->c, l, u, 585 bch2_btree_node_iter_prev(&l->iter, l->b)); 586 587 path->pos = k.k ? k.k->p : l->b->data->min_key; 588 trans->paths_sorted = false; 589 bch2_btree_path_verify_level(trans, path, l - path->l); 590 return k; 591 } 592 593 static inline bool btree_path_advance_to_pos(struct btree_path *path, 594 struct btree_path_level *l, 595 int max_advance) 596 { 597 struct bkey_packed *k; 598 int nr_advanced = 0; 599 600 while ((k = bch2_btree_node_iter_peek_all(&l->iter, l->b)) && 601 bkey_iter_pos_cmp(l->b, k, &path->pos) < 0) { 602 if (max_advance > 0 && nr_advanced >= max_advance) 603 return false; 604 605 bch2_btree_node_iter_advance(&l->iter, l->b); 606 nr_advanced++; 607 } 608 609 return true; 610 } 611 612 static inline void __btree_path_level_init(struct btree_path *path, 613 unsigned level) 614 { 615 struct btree_path_level *l = &path->l[level]; 616 617 bch2_btree_node_iter_init(&l->iter, l->b, &path->pos); 618 619 /* 620 * Iterators to interior nodes should always be pointed at the first non 621 * whiteout: 622 */ 623 if (level) 624 bch2_btree_node_iter_peek(&l->iter, l->b); 625 } 626 627 void bch2_btree_path_level_init(struct btree_trans *trans, 628 struct btree_path *path, 629 struct btree *b) 630 { 631 BUG_ON(path->cached); 632 633 EBUG_ON(!btree_path_pos_in_node(path, b)); 634 635 path->l[b->c.level].lock_seq = six_lock_seq(&b->c.lock); 636 path->l[b->c.level].b = b; 637 __btree_path_level_init(path, b->c.level); 638 } 639 640 /* Btree path: fixups after btree node updates: */ 641 642 static void bch2_trans_revalidate_updates_in_node(struct btree_trans *trans, struct btree *b) 643 { 644 struct bch_fs *c = trans->c; 645 646 trans_for_each_update(trans, i) 647 if (!i->cached && 648 i->level == b->c.level && 649 i->btree_id == b->c.btree_id && 650 bpos_cmp(i->k->k.p, b->data->min_key) >= 0 && 651 bpos_cmp(i->k->k.p, b->data->max_key) <= 0) { 652 i->old_v = bch2_btree_path_peek_slot(trans->paths + i->path, &i->old_k).v; 653 654 if (unlikely(trans->journal_replay_not_finished)) { 655 struct bkey_i *j_k = 656 bch2_journal_keys_peek_slot(c, i->btree_id, i->level, 657 i->k->k.p); 658 659 if (j_k) { 660 i->old_k = j_k->k; 661 i->old_v = &j_k->v; 662 } 663 } 664 } 665 } 666 667 /* 668 * A btree node is being replaced - update the iterator to point to the new 669 * node: 670 */ 671 void bch2_trans_node_add(struct btree_trans *trans, 672 struct btree_path *path, 673 struct btree *b) 674 { 675 struct btree_path *prev; 676 677 BUG_ON(!btree_path_pos_in_node(path, b)); 678 679 while ((prev = prev_btree_path(trans, path)) && 680 btree_path_pos_in_node(prev, b)) 681 path = prev; 682 683 for (; 684 path && btree_path_pos_in_node(path, b); 685 path = next_btree_path(trans, path)) 686 if (path->uptodate == BTREE_ITER_UPTODATE && !path->cached) { 687 enum btree_node_locked_type t = 688 btree_lock_want(path, b->c.level); 689 690 if (t != BTREE_NODE_UNLOCKED) { 691 btree_node_unlock(trans, path, b->c.level); 692 six_lock_increment(&b->c.lock, (enum six_lock_type) t); 693 mark_btree_node_locked(trans, path, b->c.level, t); 694 } 695 696 bch2_btree_path_level_init(trans, path, b); 697 } 698 699 bch2_trans_revalidate_updates_in_node(trans, b); 700 } 701 702 void bch2_trans_node_drop(struct btree_trans *trans, 703 struct btree *b) 704 { 705 struct btree_path *path; 706 unsigned i, level = b->c.level; 707 708 trans_for_each_path(trans, path, i) 709 if (path->l[level].b == b) { 710 btree_node_unlock(trans, path, level); 711 path->l[level].b = ERR_PTR(-BCH_ERR_no_btree_node_init); 712 } 713 } 714 715 /* 716 * A btree node has been modified in such a way as to invalidate iterators - fix 717 * them: 718 */ 719 void bch2_trans_node_reinit_iter(struct btree_trans *trans, struct btree *b) 720 { 721 struct btree_path *path; 722 unsigned i; 723 724 trans_for_each_path_with_node(trans, b, path, i) 725 __btree_path_level_init(path, b->c.level); 726 727 bch2_trans_revalidate_updates_in_node(trans, b); 728 } 729 730 /* Btree path: traverse, set_pos: */ 731 732 static inline int btree_path_lock_root(struct btree_trans *trans, 733 struct btree_path *path, 734 unsigned depth_want, 735 unsigned long trace_ip) 736 { 737 struct bch_fs *c = trans->c; 738 struct btree_root *r = bch2_btree_id_root(c, path->btree_id); 739 enum six_lock_type lock_type; 740 unsigned i; 741 int ret; 742 743 EBUG_ON(path->nodes_locked); 744 745 while (1) { 746 struct btree *b = READ_ONCE(r->b); 747 if (unlikely(!b)) { 748 BUG_ON(!r->error); 749 return r->error; 750 } 751 752 path->level = READ_ONCE(b->c.level); 753 754 if (unlikely(path->level < depth_want)) { 755 /* 756 * the root is at a lower depth than the depth we want: 757 * got to the end of the btree, or we're walking nodes 758 * greater than some depth and there are no nodes >= 759 * that depth 760 */ 761 path->level = depth_want; 762 for (i = path->level; i < BTREE_MAX_DEPTH; i++) 763 path->l[i].b = NULL; 764 return 1; 765 } 766 767 lock_type = __btree_lock_want(path, path->level); 768 ret = btree_node_lock(trans, path, &b->c, 769 path->level, lock_type, trace_ip); 770 if (unlikely(ret)) { 771 if (bch2_err_matches(ret, BCH_ERR_transaction_restart)) 772 return ret; 773 BUG(); 774 } 775 776 if (likely(b == READ_ONCE(r->b) && 777 b->c.level == path->level && 778 !race_fault())) { 779 for (i = 0; i < path->level; i++) 780 path->l[i].b = ERR_PTR(-BCH_ERR_no_btree_node_lock_root); 781 path->l[path->level].b = b; 782 for (i = path->level + 1; i < BTREE_MAX_DEPTH; i++) 783 path->l[i].b = NULL; 784 785 mark_btree_node_locked(trans, path, path->level, 786 (enum btree_node_locked_type) lock_type); 787 bch2_btree_path_level_init(trans, path, b); 788 return 0; 789 } 790 791 six_unlock_type(&b->c.lock, lock_type); 792 } 793 } 794 795 noinline 796 static int btree_path_prefetch(struct btree_trans *trans, struct btree_path *path) 797 { 798 struct bch_fs *c = trans->c; 799 struct btree_path_level *l = path_l(path); 800 struct btree_node_iter node_iter = l->iter; 801 struct bkey_packed *k; 802 struct bkey_buf tmp; 803 unsigned nr = test_bit(BCH_FS_started, &c->flags) 804 ? (path->level > 1 ? 0 : 2) 805 : (path->level > 1 ? 1 : 16); 806 bool was_locked = btree_node_locked(path, path->level); 807 int ret = 0; 808 809 bch2_bkey_buf_init(&tmp); 810 811 while (nr-- && !ret) { 812 if (!bch2_btree_node_relock(trans, path, path->level)) 813 break; 814 815 bch2_btree_node_iter_advance(&node_iter, l->b); 816 k = bch2_btree_node_iter_peek(&node_iter, l->b); 817 if (!k) 818 break; 819 820 bch2_bkey_buf_unpack(&tmp, c, l->b, k); 821 ret = bch2_btree_node_prefetch(trans, path, tmp.k, path->btree_id, 822 path->level - 1); 823 } 824 825 if (!was_locked) 826 btree_node_unlock(trans, path, path->level); 827 828 bch2_bkey_buf_exit(&tmp, c); 829 return ret; 830 } 831 832 static int btree_path_prefetch_j(struct btree_trans *trans, struct btree_path *path, 833 struct btree_and_journal_iter *jiter) 834 { 835 struct bch_fs *c = trans->c; 836 struct bkey_s_c k; 837 struct bkey_buf tmp; 838 unsigned nr = test_bit(BCH_FS_started, &c->flags) 839 ? (path->level > 1 ? 0 : 2) 840 : (path->level > 1 ? 1 : 16); 841 bool was_locked = btree_node_locked(path, path->level); 842 int ret = 0; 843 844 bch2_bkey_buf_init(&tmp); 845 846 jiter->fail_if_too_many_whiteouts = true; 847 848 while (nr-- && !ret) { 849 if (!bch2_btree_node_relock(trans, path, path->level)) 850 break; 851 852 bch2_btree_and_journal_iter_advance(jiter); 853 k = bch2_btree_and_journal_iter_peek(jiter); 854 if (!k.k) 855 break; 856 857 bch2_bkey_buf_reassemble(&tmp, c, k); 858 ret = bch2_btree_node_prefetch(trans, path, tmp.k, path->btree_id, 859 path->level - 1); 860 } 861 862 if (!was_locked) 863 btree_node_unlock(trans, path, path->level); 864 865 bch2_bkey_buf_exit(&tmp, c); 866 return ret; 867 } 868 869 static noinline void btree_node_mem_ptr_set(struct btree_trans *trans, 870 struct btree_path *path, 871 unsigned plevel, struct btree *b) 872 { 873 struct btree_path_level *l = &path->l[plevel]; 874 bool locked = btree_node_locked(path, plevel); 875 struct bkey_packed *k; 876 struct bch_btree_ptr_v2 *bp; 877 878 if (!bch2_btree_node_relock(trans, path, plevel)) 879 return; 880 881 k = bch2_btree_node_iter_peek_all(&l->iter, l->b); 882 BUG_ON(k->type != KEY_TYPE_btree_ptr_v2); 883 884 bp = (void *) bkeyp_val(&l->b->format, k); 885 bp->mem_ptr = (unsigned long)b; 886 887 if (!locked) 888 btree_node_unlock(trans, path, plevel); 889 } 890 891 static noinline int btree_node_iter_and_journal_peek(struct btree_trans *trans, 892 struct btree_path *path, 893 unsigned flags) 894 { 895 struct bch_fs *c = trans->c; 896 struct btree_path_level *l = path_l(path); 897 struct btree_and_journal_iter jiter; 898 struct bkey_s_c k; 899 int ret = 0; 900 901 __bch2_btree_and_journal_iter_init_node_iter(trans, &jiter, l->b, l->iter, path->pos); 902 903 k = bch2_btree_and_journal_iter_peek(&jiter); 904 if (!k.k) { 905 struct printbuf buf = PRINTBUF; 906 907 prt_str(&buf, "node not found at pos "); 908 bch2_bpos_to_text(&buf, path->pos); 909 prt_str(&buf, " at btree "); 910 bch2_btree_pos_to_text(&buf, c, l->b); 911 912 ret = bch2_fs_topology_error(c, "%s", buf.buf); 913 printbuf_exit(&buf); 914 goto err; 915 } 916 917 bkey_reassemble(&trans->btree_path_down, k); 918 919 if ((flags & BTREE_ITER_prefetch) && 920 c->opts.btree_node_prefetch) 921 ret = btree_path_prefetch_j(trans, path, &jiter); 922 923 err: 924 bch2_btree_and_journal_iter_exit(&jiter); 925 return ret; 926 } 927 928 static noinline_for_stack int btree_node_missing_err(struct btree_trans *trans, 929 struct btree_path *path) 930 { 931 struct bch_fs *c = trans->c; 932 struct printbuf buf = PRINTBUF; 933 934 prt_str(&buf, "node not found at pos "); 935 bch2_bpos_to_text(&buf, path->pos); 936 prt_str(&buf, " within parent node "); 937 bch2_bkey_val_to_text(&buf, c, bkey_i_to_s_c(&path_l(path)->b->key)); 938 939 bch2_fs_fatal_error(c, "%s", buf.buf); 940 printbuf_exit(&buf); 941 return bch_err_throw(c, btree_need_topology_repair); 942 } 943 944 static __always_inline int btree_path_down(struct btree_trans *trans, 945 struct btree_path *path, 946 unsigned flags, 947 unsigned long trace_ip) 948 { 949 struct bch_fs *c = trans->c; 950 struct btree_path_level *l = path_l(path); 951 struct btree *b; 952 unsigned level = path->level - 1; 953 enum six_lock_type lock_type = __btree_lock_want(path, level); 954 int ret; 955 956 EBUG_ON(!btree_node_locked(path, path->level)); 957 958 if (unlikely(trans->journal_replay_not_finished)) { 959 ret = btree_node_iter_and_journal_peek(trans, path, flags); 960 if (ret) 961 return ret; 962 } else { 963 struct bkey_packed *k = bch2_btree_node_iter_peek(&l->iter, l->b); 964 if (unlikely(!k)) 965 return btree_node_missing_err(trans, path); 966 967 bch2_bkey_unpack(l->b, &trans->btree_path_down, k); 968 969 if (unlikely((flags & BTREE_ITER_prefetch)) && 970 c->opts.btree_node_prefetch) { 971 ret = btree_path_prefetch(trans, path); 972 if (ret) 973 return ret; 974 } 975 } 976 977 b = bch2_btree_node_get(trans, path, &trans->btree_path_down, 978 level, lock_type, trace_ip); 979 ret = PTR_ERR_OR_ZERO(b); 980 if (unlikely(ret)) 981 return ret; 982 983 if (unlikely(b != btree_node_mem_ptr(&trans->btree_path_down)) && 984 likely(!trans->journal_replay_not_finished && 985 trans->btree_path_down.k.type == KEY_TYPE_btree_ptr_v2)) 986 btree_node_mem_ptr_set(trans, path, level + 1, b); 987 988 if (btree_node_read_locked(path, level + 1)) 989 btree_node_unlock(trans, path, level + 1); 990 991 mark_btree_node_locked(trans, path, level, 992 (enum btree_node_locked_type) lock_type); 993 path->level = level; 994 bch2_btree_path_level_init(trans, path, b); 995 996 bch2_btree_path_verify_locks(trans, path); 997 return 0; 998 } 999 1000 static int bch2_btree_path_traverse_all(struct btree_trans *trans) 1001 { 1002 struct bch_fs *c = trans->c; 1003 struct btree_path *path; 1004 unsigned long trace_ip = _RET_IP_; 1005 unsigned i; 1006 int ret = 0; 1007 1008 if (trans->in_traverse_all) 1009 return bch_err_throw(c, transaction_restart_in_traverse_all); 1010 1011 trans->in_traverse_all = true; 1012 retry_all: 1013 trans->restarted = 0; 1014 trans->last_restarted_ip = 0; 1015 1016 trans_for_each_path(trans, path, i) 1017 path->should_be_locked = false; 1018 1019 btree_trans_sort_paths(trans); 1020 1021 bch2_trans_unlock(trans); 1022 cond_resched(); 1023 trans_set_locked(trans, false); 1024 1025 if (unlikely(trans->memory_allocation_failure)) { 1026 struct closure cl; 1027 1028 closure_init_stack(&cl); 1029 1030 do { 1031 ret = bch2_btree_cache_cannibalize_lock(trans, &cl); 1032 closure_sync(&cl); 1033 } while (ret); 1034 } 1035 1036 /* Now, redo traversals in correct order: */ 1037 i = 0; 1038 while (i < trans->nr_sorted) { 1039 btree_path_idx_t idx = trans->sorted[i]; 1040 1041 /* 1042 * Traversing a path can cause another path to be added at about 1043 * the same position: 1044 */ 1045 if (trans->paths[idx].uptodate) { 1046 __btree_path_get(trans, &trans->paths[idx], false); 1047 ret = bch2_btree_path_traverse_one(trans, idx, 0, _THIS_IP_); 1048 __btree_path_put(trans, &trans->paths[idx], false); 1049 1050 if (bch2_err_matches(ret, BCH_ERR_transaction_restart) || 1051 bch2_err_matches(ret, ENOMEM)) 1052 goto retry_all; 1053 if (ret) 1054 goto err; 1055 } else { 1056 i++; 1057 } 1058 } 1059 1060 /* 1061 * We used to assert that all paths had been traversed here 1062 * (path->uptodate < BTREE_ITER_NEED_TRAVERSE); however, since 1063 * path->should_be_locked is not set yet, we might have unlocked and 1064 * then failed to relock a path - that's fine. 1065 */ 1066 err: 1067 bch2_btree_cache_cannibalize_unlock(trans); 1068 1069 trans->in_traverse_all = false; 1070 1071 trace_and_count(c, trans_traverse_all, trans, trace_ip); 1072 return ret; 1073 } 1074 1075 static inline bool btree_path_check_pos_in_node(struct btree_path *path, 1076 unsigned l, int check_pos) 1077 { 1078 if (check_pos < 0 && btree_path_pos_before_node(path, path->l[l].b)) 1079 return false; 1080 if (check_pos > 0 && btree_path_pos_after_node(path, path->l[l].b)) 1081 return false; 1082 return true; 1083 } 1084 1085 static inline bool btree_path_good_node(struct btree_trans *trans, 1086 struct btree_path *path, 1087 unsigned l, int check_pos) 1088 { 1089 return is_btree_node(path, l) && 1090 bch2_btree_node_relock(trans, path, l) && 1091 btree_path_check_pos_in_node(path, l, check_pos); 1092 } 1093 1094 static void btree_path_set_level_down(struct btree_trans *trans, 1095 struct btree_path *path, 1096 unsigned new_level) 1097 { 1098 unsigned l; 1099 1100 path->level = new_level; 1101 1102 for (l = path->level + 1; l < BTREE_MAX_DEPTH; l++) 1103 if (btree_lock_want(path, l) == BTREE_NODE_UNLOCKED) 1104 btree_node_unlock(trans, path, l); 1105 1106 btree_path_set_dirty(trans, path, BTREE_ITER_NEED_TRAVERSE); 1107 bch2_btree_path_verify(trans, path); 1108 } 1109 1110 static noinline unsigned __btree_path_up_until_good_node(struct btree_trans *trans, 1111 struct btree_path *path, 1112 int check_pos) 1113 { 1114 unsigned i, l = path->level; 1115 again: 1116 while (btree_path_node(path, l) && 1117 !btree_path_good_node(trans, path, l, check_pos)) 1118 __btree_path_set_level_up(trans, path, l++); 1119 1120 /* If we need intent locks, take them too: */ 1121 for (i = l + 1; 1122 i < path->locks_want && btree_path_node(path, i); 1123 i++) 1124 if (!bch2_btree_node_relock(trans, path, i)) { 1125 while (l <= i) 1126 __btree_path_set_level_up(trans, path, l++); 1127 goto again; 1128 } 1129 1130 return l; 1131 } 1132 1133 static inline unsigned btree_path_up_until_good_node(struct btree_trans *trans, 1134 struct btree_path *path, 1135 int check_pos) 1136 { 1137 return likely(btree_node_locked(path, path->level) && 1138 btree_path_check_pos_in_node(path, path->level, check_pos)) 1139 ? path->level 1140 : __btree_path_up_until_good_node(trans, path, check_pos); 1141 } 1142 1143 /* 1144 * This is the main state machine for walking down the btree - walks down to a 1145 * specified depth 1146 * 1147 * Returns 0 on success, -EIO on error (error reading in a btree node). 1148 * 1149 * On error, caller (peek_node()/peek_key()) must return NULL; the error is 1150 * stashed in the iterator and returned from bch2_trans_exit(). 1151 */ 1152 int bch2_btree_path_traverse_one(struct btree_trans *trans, 1153 btree_path_idx_t path_idx, 1154 unsigned flags, 1155 unsigned long trace_ip) 1156 { 1157 struct btree_path *path = &trans->paths[path_idx]; 1158 unsigned depth_want = path->level; 1159 int ret = -((int) trans->restarted); 1160 1161 if (unlikely(ret)) 1162 goto out; 1163 1164 if (unlikely(!trans->srcu_held)) 1165 bch2_trans_srcu_lock(trans); 1166 1167 trace_btree_path_traverse_start(trans, path); 1168 1169 /* 1170 * Ensure we obey path->should_be_locked: if it's set, we can't unlock 1171 * and re-traverse the path without a transaction restart: 1172 */ 1173 if (path->should_be_locked) { 1174 ret = bch2_btree_path_relock(trans, path, trace_ip); 1175 goto out; 1176 } 1177 1178 if (path->cached) { 1179 ret = bch2_btree_path_traverse_cached(trans, path_idx, flags); 1180 goto out; 1181 } 1182 1183 path = &trans->paths[path_idx]; 1184 1185 if (unlikely(path->level >= BTREE_MAX_DEPTH)) 1186 goto out_uptodate; 1187 1188 path->level = btree_path_up_until_good_node(trans, path, 0); 1189 unsigned max_level = path->level; 1190 1191 EBUG_ON(btree_path_node(path, path->level) && 1192 !btree_node_locked(path, path->level)); 1193 1194 /* 1195 * Note: path->nodes[path->level] may be temporarily NULL here - that 1196 * would indicate to other code that we got to the end of the btree, 1197 * here it indicates that relocking the root failed - it's critical that 1198 * btree_path_lock_root() comes next and that it can't fail 1199 */ 1200 while (path->level > depth_want) { 1201 ret = btree_path_node(path, path->level) 1202 ? btree_path_down(trans, path, flags, trace_ip) 1203 : btree_path_lock_root(trans, path, depth_want, trace_ip); 1204 if (unlikely(ret)) { 1205 if (ret == 1) { 1206 /* 1207 * No nodes at this level - got to the end of 1208 * the btree: 1209 */ 1210 ret = 0; 1211 goto out; 1212 } 1213 1214 __bch2_btree_path_unlock(trans, path); 1215 path->level = depth_want; 1216 path->l[path->level].b = ERR_PTR(ret); 1217 goto out; 1218 } 1219 } 1220 1221 if (unlikely(max_level > path->level)) { 1222 struct btree_path *linked; 1223 unsigned iter; 1224 1225 trans_for_each_path_with_node(trans, path_l(path)->b, linked, iter) 1226 for (unsigned j = path->level + 1; j < max_level; j++) 1227 linked->l[j] = path->l[j]; 1228 } 1229 1230 out_uptodate: 1231 path->uptodate = BTREE_ITER_UPTODATE; 1232 trace_btree_path_traverse_end(trans, path); 1233 out: 1234 if (bch2_err_matches(ret, BCH_ERR_transaction_restart) != !!trans->restarted) 1235 panic("ret %s (%i) trans->restarted %s (%i)\n", 1236 bch2_err_str(ret), ret, 1237 bch2_err_str(trans->restarted), trans->restarted); 1238 bch2_btree_path_verify(trans, path); 1239 return ret; 1240 } 1241 1242 static inline void btree_path_copy(struct btree_trans *trans, struct btree_path *dst, 1243 struct btree_path *src) 1244 { 1245 unsigned i, offset = offsetof(struct btree_path, pos); 1246 1247 memcpy((void *) dst + offset, 1248 (void *) src + offset, 1249 sizeof(struct btree_path) - offset); 1250 1251 for (i = 0; i < BTREE_MAX_DEPTH; i++) { 1252 unsigned t = btree_node_locked_type(dst, i); 1253 1254 if (t != BTREE_NODE_UNLOCKED) 1255 six_lock_increment(&dst->l[i].b->c.lock, t); 1256 } 1257 } 1258 1259 static btree_path_idx_t btree_path_clone(struct btree_trans *trans, btree_path_idx_t src, 1260 bool intent, unsigned long ip) 1261 { 1262 btree_path_idx_t new = btree_path_alloc(trans, src); 1263 btree_path_copy(trans, trans->paths + new, trans->paths + src); 1264 __btree_path_get(trans, trans->paths + new, intent); 1265 #ifdef TRACK_PATH_ALLOCATED 1266 trans->paths[new].ip_allocated = ip; 1267 #endif 1268 return new; 1269 } 1270 1271 __flatten 1272 btree_path_idx_t __bch2_btree_path_make_mut(struct btree_trans *trans, 1273 btree_path_idx_t path, bool intent, unsigned long ip) 1274 { 1275 struct btree_path *old = trans->paths + path; 1276 __btree_path_put(trans, trans->paths + path, intent); 1277 path = btree_path_clone(trans, path, intent, ip); 1278 trace_btree_path_clone(trans, old, trans->paths + path); 1279 trans->paths[path].preserve = false; 1280 return path; 1281 } 1282 1283 btree_path_idx_t __must_check 1284 __bch2_btree_path_set_pos(struct btree_trans *trans, 1285 btree_path_idx_t path_idx, struct bpos new_pos, 1286 bool intent, unsigned long ip) 1287 { 1288 int cmp = bpos_cmp(new_pos, trans->paths[path_idx].pos); 1289 1290 bch2_trans_verify_not_unlocked_or_in_restart(trans); 1291 EBUG_ON(!trans->paths[path_idx].ref); 1292 1293 trace_btree_path_set_pos(trans, trans->paths + path_idx, &new_pos); 1294 1295 path_idx = bch2_btree_path_make_mut(trans, path_idx, intent, ip); 1296 1297 struct btree_path *path = trans->paths + path_idx; 1298 path->pos = new_pos; 1299 trans->paths_sorted = false; 1300 1301 if (unlikely(path->cached)) { 1302 btree_node_unlock(trans, path, 0); 1303 path->l[0].b = ERR_PTR(-BCH_ERR_no_btree_node_up); 1304 btree_path_set_dirty(trans, path, BTREE_ITER_NEED_TRAVERSE); 1305 goto out; 1306 } 1307 1308 unsigned level = btree_path_up_until_good_node(trans, path, cmp); 1309 1310 if (btree_path_node(path, level)) { 1311 struct btree_path_level *l = &path->l[level]; 1312 1313 BUG_ON(!btree_node_locked(path, level)); 1314 /* 1315 * We might have to skip over many keys, or just a few: try 1316 * advancing the node iterator, and if we have to skip over too 1317 * many keys just reinit it (or if we're rewinding, since that 1318 * is expensive). 1319 */ 1320 if (cmp < 0 || 1321 !btree_path_advance_to_pos(path, l, 8)) 1322 bch2_btree_node_iter_init(&l->iter, l->b, &path->pos); 1323 1324 /* 1325 * Iterators to interior nodes should always be pointed at the first non 1326 * whiteout: 1327 */ 1328 if (unlikely(level)) 1329 bch2_btree_node_iter_peek(&l->iter, l->b); 1330 } 1331 1332 if (unlikely(level != path->level)) { 1333 btree_path_set_dirty(trans, path, BTREE_ITER_NEED_TRAVERSE); 1334 __bch2_btree_path_unlock(trans, path); 1335 } 1336 out: 1337 bch2_btree_path_verify(trans, path); 1338 return path_idx; 1339 } 1340 1341 /* Btree path: main interface: */ 1342 1343 static struct btree_path *have_path_at_pos(struct btree_trans *trans, struct btree_path *path) 1344 { 1345 struct btree_path *sib; 1346 1347 sib = prev_btree_path(trans, path); 1348 if (sib && !btree_path_cmp(sib, path)) 1349 return sib; 1350 1351 sib = next_btree_path(trans, path); 1352 if (sib && !btree_path_cmp(sib, path)) 1353 return sib; 1354 1355 return NULL; 1356 } 1357 1358 static struct btree_path *have_node_at_pos(struct btree_trans *trans, struct btree_path *path) 1359 { 1360 struct btree_path *sib; 1361 1362 sib = prev_btree_path(trans, path); 1363 if (sib && sib->level == path->level && path_l(sib)->b == path_l(path)->b) 1364 return sib; 1365 1366 sib = next_btree_path(trans, path); 1367 if (sib && sib->level == path->level && path_l(sib)->b == path_l(path)->b) 1368 return sib; 1369 1370 return NULL; 1371 } 1372 1373 static inline void __bch2_path_free(struct btree_trans *trans, btree_path_idx_t path) 1374 { 1375 __bch2_btree_path_unlock(trans, trans->paths + path); 1376 btree_path_list_remove(trans, trans->paths + path); 1377 __clear_bit(path, trans->paths_allocated); 1378 } 1379 1380 static bool bch2_btree_path_can_relock(struct btree_trans *trans, struct btree_path *path) 1381 { 1382 unsigned l = path->level; 1383 1384 do { 1385 if (!btree_path_node(path, l)) 1386 break; 1387 1388 if (!is_btree_node(path, l)) 1389 return false; 1390 1391 if (path->l[l].lock_seq != path->l[l].b->c.lock.seq) 1392 return false; 1393 1394 l++; 1395 } while (l < path->locks_want); 1396 1397 return true; 1398 } 1399 1400 void bch2_path_put(struct btree_trans *trans, btree_path_idx_t path_idx, bool intent) 1401 { 1402 struct btree_path *path = trans->paths + path_idx, *dup = NULL; 1403 1404 if (!__btree_path_put(trans, path, intent)) 1405 return; 1406 1407 if (!path->preserve && !path->should_be_locked) 1408 goto free; 1409 1410 dup = path->preserve 1411 ? have_path_at_pos(trans, path) 1412 : have_node_at_pos(trans, path); 1413 if (!dup) 1414 return; 1415 1416 /* 1417 * If we need this path locked, the duplicate also has te be locked 1418 * before we free this one: 1419 */ 1420 if (path->should_be_locked && 1421 !dup->should_be_locked && 1422 !trans->restarted) { 1423 if (!(trans->locked 1424 ? bch2_btree_path_relock_norestart(trans, dup) 1425 : bch2_btree_path_can_relock(trans, dup))) 1426 return; 1427 1428 dup->should_be_locked = true; 1429 } 1430 1431 BUG_ON(path->should_be_locked && 1432 !trans->restarted && 1433 trans->locked && 1434 !btree_node_locked(dup, dup->level)); 1435 1436 path->should_be_locked = false; 1437 dup->preserve |= path->preserve; 1438 free: 1439 trace_btree_path_free(trans, path_idx, dup); 1440 __bch2_path_free(trans, path_idx); 1441 } 1442 1443 void __noreturn bch2_trans_restart_error(struct btree_trans *trans, u32 restart_count) 1444 { 1445 panic("trans->restart_count %u, should be %u, last restarted by %pS\n", 1446 trans->restart_count, restart_count, 1447 (void *) trans->last_begin_ip); 1448 } 1449 1450 static void __noreturn bch2_trans_in_restart_error(struct btree_trans *trans) 1451 { 1452 #ifdef CONFIG_BCACHEFS_DEBUG 1453 struct printbuf buf = PRINTBUF; 1454 bch2_prt_backtrace(&buf, &trans->last_restarted_trace); 1455 panic("in transaction restart: %s, last restarted by\n%s", 1456 bch2_err_str(trans->restarted), 1457 buf.buf); 1458 #else 1459 panic("in transaction restart: %s, last restarted by %pS\n", 1460 bch2_err_str(trans->restarted), 1461 (void *) trans->last_restarted_ip); 1462 #endif 1463 } 1464 1465 void __noreturn bch2_trans_unlocked_or_in_restart_error(struct btree_trans *trans) 1466 { 1467 if (trans->restarted) 1468 bch2_trans_in_restart_error(trans); 1469 1470 if (!trans->locked) 1471 panic("trans should be locked, unlocked by %pS\n", 1472 (void *) trans->last_unlock_ip); 1473 1474 BUG(); 1475 } 1476 1477 noinline __cold 1478 void bch2_trans_updates_to_text(struct printbuf *buf, struct btree_trans *trans) 1479 { 1480 prt_printf(buf, "%u transaction updates for %s journal seq %llu\n", 1481 trans->nr_updates, trans->fn, trans->journal_res.seq); 1482 printbuf_indent_add(buf, 2); 1483 1484 trans_for_each_update(trans, i) { 1485 struct bkey_s_c old = { &i->old_k, i->old_v }; 1486 1487 prt_str(buf, "update: btree="); 1488 bch2_btree_id_to_text(buf, i->btree_id); 1489 prt_printf(buf, " cached=%u %pS\n", 1490 i->cached, 1491 (void *) i->ip_allocated); 1492 1493 prt_printf(buf, " old "); 1494 bch2_bkey_val_to_text(buf, trans->c, old); 1495 prt_newline(buf); 1496 1497 prt_printf(buf, " new "); 1498 bch2_bkey_val_to_text(buf, trans->c, bkey_i_to_s_c(i->k)); 1499 prt_newline(buf); 1500 } 1501 1502 for (struct jset_entry *e = btree_trans_journal_entries_start(trans); 1503 e != btree_trans_journal_entries_top(trans); 1504 e = vstruct_next(e)) { 1505 bch2_journal_entry_to_text(buf, trans->c, e); 1506 prt_newline(buf); 1507 } 1508 1509 printbuf_indent_sub(buf, 2); 1510 } 1511 1512 static void bch2_btree_path_to_text_short(struct printbuf *out, struct btree_trans *trans, btree_path_idx_t path_idx) 1513 { 1514 struct btree_path *path = trans->paths + path_idx; 1515 1516 prt_printf(out, "path: idx %3u ref %u:%u %c %c %c ", 1517 path_idx, path->ref, path->intent_ref, 1518 path->preserve ? 'P' : ' ', 1519 path->should_be_locked ? 'S' : ' ', 1520 path->cached ? 'C' : 'B'); 1521 bch2_btree_id_level_to_text(out, path->btree_id, path->level); 1522 prt_str(out, " pos "); 1523 bch2_bpos_to_text(out, path->pos); 1524 1525 if (!path->cached && btree_node_locked(path, path->level)) { 1526 prt_char(out, ' '); 1527 struct btree *b = path_l(path)->b; 1528 bch2_bpos_to_text(out, b->data->min_key); 1529 prt_char(out, '-'); 1530 bch2_bpos_to_text(out, b->key.k.p); 1531 } 1532 1533 #ifdef TRACK_PATH_ALLOCATED 1534 prt_printf(out, " %pS", (void *) path->ip_allocated); 1535 #endif 1536 } 1537 1538 static const char *btree_node_locked_str(enum btree_node_locked_type t) 1539 { 1540 switch (t) { 1541 case BTREE_NODE_UNLOCKED: 1542 return "unlocked"; 1543 case BTREE_NODE_READ_LOCKED: 1544 return "read"; 1545 case BTREE_NODE_INTENT_LOCKED: 1546 return "intent"; 1547 case BTREE_NODE_WRITE_LOCKED: 1548 return "write"; 1549 default: 1550 return NULL; 1551 } 1552 } 1553 1554 void bch2_btree_path_to_text(struct printbuf *out, struct btree_trans *trans, btree_path_idx_t path_idx) 1555 { 1556 bch2_btree_path_to_text_short(out, trans, path_idx); 1557 1558 struct btree_path *path = trans->paths + path_idx; 1559 1560 prt_printf(out, " uptodate %u locks_want %u", path->uptodate, path->locks_want); 1561 prt_newline(out); 1562 1563 printbuf_indent_add(out, 2); 1564 for (unsigned l = 0; l < BTREE_MAX_DEPTH; l++) { 1565 prt_printf(out, "l=%u locks %s seq %u node ", l, 1566 btree_node_locked_str(btree_node_locked_type(path, l)), 1567 path->l[l].lock_seq); 1568 1569 int ret = PTR_ERR_OR_ZERO(path->l[l].b); 1570 if (ret) 1571 prt_str(out, bch2_err_str(ret)); 1572 else 1573 prt_printf(out, "%px", path->l[l].b); 1574 prt_newline(out); 1575 } 1576 printbuf_indent_sub(out, 2); 1577 } 1578 1579 static noinline __cold 1580 void __bch2_trans_paths_to_text(struct printbuf *out, struct btree_trans *trans, 1581 bool nosort) 1582 { 1583 struct trans_for_each_path_inorder_iter iter; 1584 1585 if (!nosort) 1586 btree_trans_sort_paths(trans); 1587 1588 trans_for_each_path_idx_inorder(trans, iter) { 1589 bch2_btree_path_to_text_short(out, trans, iter.path_idx); 1590 prt_newline(out); 1591 } 1592 } 1593 1594 noinline __cold 1595 void bch2_trans_paths_to_text(struct printbuf *out, struct btree_trans *trans) 1596 { 1597 __bch2_trans_paths_to_text(out, trans, false); 1598 } 1599 1600 static noinline __cold 1601 void __bch2_dump_trans_paths_updates(struct btree_trans *trans, bool nosort) 1602 { 1603 struct printbuf buf = PRINTBUF; 1604 1605 __bch2_trans_paths_to_text(&buf, trans, nosort); 1606 bch2_trans_updates_to_text(&buf, trans); 1607 1608 bch2_print_str(trans->c, KERN_ERR, buf.buf); 1609 printbuf_exit(&buf); 1610 } 1611 1612 noinline __cold 1613 void bch2_dump_trans_paths_updates(struct btree_trans *trans) 1614 { 1615 __bch2_dump_trans_paths_updates(trans, false); 1616 } 1617 1618 noinline __cold 1619 static void bch2_trans_update_max_paths(struct btree_trans *trans) 1620 { 1621 struct btree_transaction_stats *s = btree_trans_stats(trans); 1622 struct printbuf buf = PRINTBUF; 1623 size_t nr = bitmap_weight(trans->paths_allocated, trans->nr_paths); 1624 1625 bch2_trans_paths_to_text(&buf, trans); 1626 1627 if (!buf.allocation_failure) { 1628 mutex_lock(&s->lock); 1629 if (nr > s->nr_max_paths) { 1630 s->nr_max_paths = nr; 1631 swap(s->max_paths_text, buf.buf); 1632 } 1633 mutex_unlock(&s->lock); 1634 } 1635 1636 printbuf_exit(&buf); 1637 1638 trans->nr_paths_max = nr; 1639 } 1640 1641 noinline __cold 1642 int __bch2_btree_trans_too_many_iters(struct btree_trans *trans) 1643 { 1644 if (trace_trans_restart_too_many_iters_enabled()) { 1645 struct printbuf buf = PRINTBUF; 1646 1647 bch2_trans_paths_to_text(&buf, trans); 1648 trace_trans_restart_too_many_iters(trans, _THIS_IP_, buf.buf); 1649 printbuf_exit(&buf); 1650 } 1651 1652 count_event(trans->c, trans_restart_too_many_iters); 1653 1654 return btree_trans_restart(trans, BCH_ERR_transaction_restart_too_many_iters); 1655 } 1656 1657 static noinline void btree_path_overflow(struct btree_trans *trans) 1658 { 1659 bch2_dump_trans_paths_updates(trans); 1660 bch_err(trans->c, "trans path overflow"); 1661 } 1662 1663 static noinline void btree_paths_realloc(struct btree_trans *trans) 1664 { 1665 unsigned nr = trans->nr_paths * 2; 1666 1667 void *p = kvzalloc(BITS_TO_LONGS(nr) * sizeof(unsigned long) + 1668 sizeof(struct btree_trans_paths) + 1669 nr * sizeof(struct btree_path) + 1670 nr * sizeof(btree_path_idx_t) + 8 + 1671 nr * sizeof(struct btree_insert_entry), GFP_KERNEL|__GFP_NOFAIL); 1672 1673 unsigned long *paths_allocated = p; 1674 memcpy(paths_allocated, trans->paths_allocated, BITS_TO_LONGS(trans->nr_paths) * sizeof(unsigned long)); 1675 p += BITS_TO_LONGS(nr) * sizeof(unsigned long); 1676 1677 p += sizeof(struct btree_trans_paths); 1678 struct btree_path *paths = p; 1679 *trans_paths_nr(paths) = nr; 1680 memcpy(paths, trans->paths, trans->nr_paths * sizeof(struct btree_path)); 1681 p += nr * sizeof(struct btree_path); 1682 1683 btree_path_idx_t *sorted = p; 1684 memcpy(sorted, trans->sorted, trans->nr_sorted * sizeof(btree_path_idx_t)); 1685 p += nr * sizeof(btree_path_idx_t) + 8; 1686 1687 struct btree_insert_entry *updates = p; 1688 memcpy(updates, trans->updates, trans->nr_paths * sizeof(struct btree_insert_entry)); 1689 1690 unsigned long *old = trans->paths_allocated; 1691 1692 rcu_assign_pointer(trans->paths_allocated, paths_allocated); 1693 rcu_assign_pointer(trans->paths, paths); 1694 rcu_assign_pointer(trans->sorted, sorted); 1695 rcu_assign_pointer(trans->updates, updates); 1696 1697 trans->nr_paths = nr; 1698 1699 if (old != trans->_paths_allocated) 1700 kfree_rcu_mightsleep(old); 1701 } 1702 1703 static inline btree_path_idx_t btree_path_alloc(struct btree_trans *trans, 1704 btree_path_idx_t pos) 1705 { 1706 btree_path_idx_t idx = find_first_zero_bit(trans->paths_allocated, trans->nr_paths); 1707 1708 if (unlikely(idx == trans->nr_paths)) { 1709 if (trans->nr_paths == BTREE_ITER_MAX) { 1710 btree_path_overflow(trans); 1711 return 0; 1712 } 1713 1714 btree_paths_realloc(trans); 1715 } 1716 1717 /* 1718 * Do this before marking the new path as allocated, since it won't be 1719 * initialized yet: 1720 */ 1721 if (unlikely(idx > trans->nr_paths_max)) 1722 bch2_trans_update_max_paths(trans); 1723 1724 __set_bit(idx, trans->paths_allocated); 1725 1726 struct btree_path *path = &trans->paths[idx]; 1727 path->ref = 0; 1728 path->intent_ref = 0; 1729 path->nodes_locked = 0; 1730 1731 btree_path_list_add(trans, pos, idx); 1732 trans->paths_sorted = false; 1733 return idx; 1734 } 1735 1736 btree_path_idx_t bch2_path_get(struct btree_trans *trans, 1737 enum btree_id btree_id, struct bpos pos, 1738 unsigned locks_want, unsigned level, 1739 unsigned flags, unsigned long ip) 1740 { 1741 struct btree_path *path; 1742 bool cached = flags & BTREE_ITER_cached; 1743 bool intent = flags & BTREE_ITER_intent; 1744 struct trans_for_each_path_inorder_iter iter; 1745 btree_path_idx_t path_pos = 0, path_idx; 1746 1747 bch2_trans_verify_not_unlocked_or_in_restart(trans); 1748 bch2_trans_verify_locks(trans); 1749 1750 btree_trans_sort_paths(trans); 1751 1752 if (intent) 1753 locks_want = max(locks_want, level + 1); 1754 locks_want = min(locks_want, BTREE_MAX_DEPTH); 1755 1756 trans_for_each_path_inorder(trans, path, iter) { 1757 if (__btree_path_cmp(path, 1758 btree_id, 1759 cached, 1760 pos, 1761 level) > 0) 1762 break; 1763 1764 path_pos = iter.path_idx; 1765 } 1766 1767 if (path_pos && 1768 trans->paths[path_pos].cached == cached && 1769 trans->paths[path_pos].btree_id == btree_id && 1770 trans->paths[path_pos].level == level && 1771 bch2_btree_path_upgrade_norestart(trans, trans->paths + path_pos, locks_want)) { 1772 trace_btree_path_get(trans, trans->paths + path_pos, &pos); 1773 1774 __btree_path_get(trans, trans->paths + path_pos, intent); 1775 path_idx = bch2_btree_path_set_pos(trans, path_pos, pos, intent, ip); 1776 path = trans->paths + path_idx; 1777 } else { 1778 path_idx = btree_path_alloc(trans, path_pos); 1779 path = trans->paths + path_idx; 1780 1781 __btree_path_get(trans, path, intent); 1782 path->pos = pos; 1783 path->btree_id = btree_id; 1784 path->cached = cached; 1785 path->uptodate = BTREE_ITER_NEED_TRAVERSE; 1786 path->should_be_locked = false; 1787 path->level = level; 1788 path->locks_want = locks_want; 1789 path->nodes_locked = 0; 1790 for (unsigned i = 0; i < ARRAY_SIZE(path->l); i++) 1791 path->l[i].b = ERR_PTR(-BCH_ERR_no_btree_node_init); 1792 #ifdef TRACK_PATH_ALLOCATED 1793 path->ip_allocated = ip; 1794 #endif 1795 trans->paths_sorted = false; 1796 1797 trace_btree_path_alloc(trans, path); 1798 } 1799 1800 if (!(flags & BTREE_ITER_nopreserve)) 1801 path->preserve = true; 1802 1803 /* 1804 * If the path has locks_want greater than requested, we don't downgrade 1805 * it here - on transaction restart because btree node split needs to 1806 * upgrade locks, we might be putting/getting the iterator again. 1807 * Downgrading iterators only happens via bch2_trans_downgrade(), after 1808 * a successful transaction commit. 1809 */ 1810 1811 return path_idx; 1812 } 1813 1814 btree_path_idx_t bch2_path_get_unlocked_mut(struct btree_trans *trans, 1815 enum btree_id btree_id, 1816 unsigned level, 1817 struct bpos pos) 1818 { 1819 btree_path_idx_t path_idx = bch2_path_get(trans, btree_id, pos, level + 1, level, 1820 BTREE_ITER_nopreserve| 1821 BTREE_ITER_intent, _RET_IP_); 1822 path_idx = bch2_btree_path_make_mut(trans, path_idx, true, _RET_IP_); 1823 1824 struct btree_path *path = trans->paths + path_idx; 1825 bch2_btree_path_downgrade(trans, path); 1826 __bch2_btree_path_unlock(trans, path); 1827 return path_idx; 1828 } 1829 1830 struct bkey_s_c bch2_btree_path_peek_slot(struct btree_path *path, struct bkey *u) 1831 { 1832 1833 struct btree_path_level *l = path_l(path); 1834 struct bkey_packed *_k; 1835 struct bkey_s_c k; 1836 1837 if (unlikely(!l->b)) 1838 return bkey_s_c_null; 1839 1840 EBUG_ON(path->uptodate != BTREE_ITER_UPTODATE); 1841 EBUG_ON(!btree_node_locked(path, path->level)); 1842 1843 if (!path->cached) { 1844 _k = bch2_btree_node_iter_peek_all(&l->iter, l->b); 1845 k = _k ? bkey_disassemble(l->b, _k, u) : bkey_s_c_null; 1846 1847 EBUG_ON(k.k && bkey_deleted(k.k) && bpos_eq(k.k->p, path->pos)); 1848 1849 if (!k.k || !bpos_eq(path->pos, k.k->p)) 1850 goto hole; 1851 } else { 1852 struct bkey_cached *ck = (void *) path->l[0].b; 1853 if (!ck) 1854 return bkey_s_c_null; 1855 1856 EBUG_ON(path->btree_id != ck->key.btree_id || 1857 !bkey_eq(path->pos, ck->key.pos)); 1858 1859 *u = ck->k->k; 1860 k = (struct bkey_s_c) { u, &ck->k->v }; 1861 } 1862 1863 return k; 1864 hole: 1865 bkey_init(u); 1866 u->p = path->pos; 1867 return (struct bkey_s_c) { u, NULL }; 1868 } 1869 1870 void bch2_set_btree_iter_dontneed(struct btree_trans *trans, struct btree_iter *iter) 1871 { 1872 if (!iter->path || trans->restarted) 1873 return; 1874 1875 struct btree_path *path = btree_iter_path(trans, iter); 1876 path->preserve = false; 1877 if (path->ref == 1) 1878 path->should_be_locked = false; 1879 } 1880 /* Btree iterators: */ 1881 1882 int __must_check 1883 __bch2_btree_iter_traverse(struct btree_trans *trans, struct btree_iter *iter) 1884 { 1885 return bch2_btree_path_traverse(trans, iter->path, iter->flags); 1886 } 1887 1888 int __must_check 1889 bch2_btree_iter_traverse(struct btree_trans *trans, struct btree_iter *iter) 1890 { 1891 bch2_trans_verify_not_unlocked_or_in_restart(trans); 1892 1893 iter->path = bch2_btree_path_set_pos(trans, iter->path, 1894 btree_iter_search_key(iter), 1895 iter->flags & BTREE_ITER_intent, 1896 btree_iter_ip_allocated(iter)); 1897 1898 int ret = bch2_btree_path_traverse(trans, iter->path, iter->flags); 1899 if (ret) 1900 return ret; 1901 1902 struct btree_path *path = btree_iter_path(trans, iter); 1903 if (btree_path_node(path, path->level)) 1904 btree_path_set_should_be_locked(trans, path); 1905 return 0; 1906 } 1907 1908 /* Iterate across nodes (leaf and interior nodes) */ 1909 1910 struct btree *bch2_btree_iter_peek_node(struct btree_trans *trans, 1911 struct btree_iter *iter) 1912 { 1913 struct btree *b = NULL; 1914 int ret; 1915 1916 EBUG_ON(trans->paths[iter->path].cached); 1917 bch2_btree_iter_verify(trans, iter); 1918 1919 ret = bch2_btree_path_traverse(trans, iter->path, iter->flags); 1920 if (ret) 1921 goto err; 1922 1923 struct btree_path *path = btree_iter_path(trans, iter); 1924 b = btree_path_node(path, path->level); 1925 if (!b) 1926 goto out; 1927 1928 BUG_ON(bpos_lt(b->key.k.p, iter->pos)); 1929 1930 bkey_init(&iter->k); 1931 iter->k.p = iter->pos = b->key.k.p; 1932 1933 iter->path = bch2_btree_path_set_pos(trans, iter->path, b->key.k.p, 1934 iter->flags & BTREE_ITER_intent, 1935 btree_iter_ip_allocated(iter)); 1936 btree_path_set_should_be_locked(trans, btree_iter_path(trans, iter)); 1937 out: 1938 bch2_btree_iter_verify_entry_exit(iter); 1939 bch2_btree_iter_verify(trans, iter); 1940 1941 return b; 1942 err: 1943 b = ERR_PTR(ret); 1944 goto out; 1945 } 1946 1947 /* Only kept for -tools */ 1948 struct btree *bch2_btree_iter_peek_node_and_restart(struct btree_trans *trans, 1949 struct btree_iter *iter) 1950 { 1951 struct btree *b; 1952 1953 while (b = bch2_btree_iter_peek_node(trans, iter), 1954 bch2_err_matches(PTR_ERR_OR_ZERO(b), BCH_ERR_transaction_restart)) 1955 bch2_trans_begin(trans); 1956 1957 return b; 1958 } 1959 1960 struct btree *bch2_btree_iter_next_node(struct btree_trans *trans, struct btree_iter *iter) 1961 { 1962 struct btree *b = NULL; 1963 int ret; 1964 1965 EBUG_ON(trans->paths[iter->path].cached); 1966 bch2_trans_verify_not_unlocked_or_in_restart(trans); 1967 bch2_btree_iter_verify(trans, iter); 1968 1969 ret = bch2_btree_path_traverse(trans, iter->path, iter->flags); 1970 if (ret) 1971 goto err; 1972 1973 1974 struct btree_path *path = btree_iter_path(trans, iter); 1975 1976 /* already at end? */ 1977 if (!btree_path_node(path, path->level)) 1978 return NULL; 1979 1980 /* got to end? */ 1981 if (!btree_path_node(path, path->level + 1)) { 1982 path->should_be_locked = false; 1983 btree_path_set_level_up(trans, path); 1984 return NULL; 1985 } 1986 1987 /* 1988 * We don't correctly handle nodes with extra intent locks here: 1989 * downgrade so we don't violate locking invariants 1990 */ 1991 bch2_btree_path_downgrade(trans, path); 1992 1993 if (!bch2_btree_node_relock(trans, path, path->level + 1)) { 1994 trace_and_count(trans->c, trans_restart_relock_next_node, trans, _THIS_IP_, path); 1995 ret = btree_trans_restart(trans, BCH_ERR_transaction_restart_relock); 1996 __bch2_btree_path_unlock(trans, path); 1997 path->l[path->level].b = ERR_PTR(-BCH_ERR_no_btree_node_relock); 1998 path->l[path->level + 1].b = ERR_PTR(-BCH_ERR_no_btree_node_relock); 1999 btree_path_set_dirty(trans, path, BTREE_ITER_NEED_TRAVERSE); 2000 goto err; 2001 } 2002 2003 b = btree_path_node(path, path->level + 1); 2004 2005 if (bpos_eq(iter->pos, b->key.k.p)) { 2006 __btree_path_set_level_up(trans, path, path->level++); 2007 } else { 2008 if (btree_lock_want(path, path->level + 1) == BTREE_NODE_UNLOCKED) 2009 btree_node_unlock(trans, path, path->level + 1); 2010 2011 /* 2012 * Haven't gotten to the end of the parent node: go back down to 2013 * the next child node 2014 */ 2015 iter->path = bch2_btree_path_set_pos(trans, iter->path, 2016 bpos_successor(iter->pos), 2017 iter->flags & BTREE_ITER_intent, 2018 btree_iter_ip_allocated(iter)); 2019 2020 path = btree_iter_path(trans, iter); 2021 btree_path_set_level_down(trans, path, iter->min_depth); 2022 2023 ret = bch2_btree_path_traverse(trans, iter->path, iter->flags); 2024 if (ret) 2025 goto err; 2026 2027 path = btree_iter_path(trans, iter); 2028 b = path->l[path->level].b; 2029 } 2030 2031 bkey_init(&iter->k); 2032 iter->k.p = iter->pos = b->key.k.p; 2033 2034 iter->path = bch2_btree_path_set_pos(trans, iter->path, b->key.k.p, 2035 iter->flags & BTREE_ITER_intent, 2036 btree_iter_ip_allocated(iter)); 2037 btree_path_set_should_be_locked(trans, btree_iter_path(trans, iter)); 2038 EBUG_ON(btree_iter_path(trans, iter)->uptodate); 2039 out: 2040 bch2_btree_iter_verify_entry_exit(iter); 2041 bch2_btree_iter_verify(trans, iter); 2042 2043 return b; 2044 err: 2045 b = ERR_PTR(ret); 2046 goto out; 2047 } 2048 2049 /* Iterate across keys (in leaf nodes only) */ 2050 2051 inline bool bch2_btree_iter_advance(struct btree_trans *trans, struct btree_iter *iter) 2052 { 2053 struct bpos pos = iter->k.p; 2054 bool ret = !(iter->flags & BTREE_ITER_all_snapshots 2055 ? bpos_eq(pos, SPOS_MAX) 2056 : bkey_eq(pos, SPOS_MAX)); 2057 2058 if (ret && !(iter->flags & BTREE_ITER_is_extents)) 2059 pos = bkey_successor(iter, pos); 2060 bch2_btree_iter_set_pos(trans, iter, pos); 2061 return ret; 2062 } 2063 2064 inline bool bch2_btree_iter_rewind(struct btree_trans *trans, struct btree_iter *iter) 2065 { 2066 struct bpos pos = bkey_start_pos(&iter->k); 2067 bool ret = !(iter->flags & BTREE_ITER_all_snapshots 2068 ? bpos_eq(pos, POS_MIN) 2069 : bkey_eq(pos, POS_MIN)); 2070 2071 if (ret && !(iter->flags & BTREE_ITER_is_extents)) 2072 pos = bkey_predecessor(iter, pos); 2073 bch2_btree_iter_set_pos(trans, iter, pos); 2074 return ret; 2075 } 2076 2077 static noinline 2078 void bch2_btree_trans_peek_prev_updates(struct btree_trans *trans, struct btree_iter *iter, 2079 struct bpos search_key, struct bkey_s_c *k) 2080 { 2081 struct bpos end = path_l(btree_iter_path(trans, iter))->b->data->min_key; 2082 2083 trans_for_each_update(trans, i) 2084 if (!i->key_cache_already_flushed && 2085 i->btree_id == iter->btree_id && 2086 bpos_le(i->k->k.p, search_key) && 2087 bpos_ge(i->k->k.p, k->k ? k->k->p : end)) { 2088 iter->k = i->k->k; 2089 *k = bkey_i_to_s_c(i->k); 2090 } 2091 } 2092 2093 static noinline 2094 void bch2_btree_trans_peek_updates(struct btree_trans *trans, struct btree_iter *iter, 2095 struct bpos search_key, 2096 struct bkey_s_c *k) 2097 { 2098 struct btree_path *path = btree_iter_path(trans, iter); 2099 struct bpos end = path_l(path)->b->key.k.p; 2100 2101 trans_for_each_update(trans, i) 2102 if (!i->key_cache_already_flushed && 2103 i->btree_id == iter->btree_id && 2104 bpos_ge(i->k->k.p, search_key) && 2105 bpos_le(i->k->k.p, k->k ? k->k->p : end)) { 2106 iter->k = i->k->k; 2107 *k = bkey_i_to_s_c(i->k); 2108 } 2109 } 2110 2111 static noinline 2112 void bch2_btree_trans_peek_slot_updates(struct btree_trans *trans, struct btree_iter *iter, 2113 struct bkey_s_c *k) 2114 { 2115 trans_for_each_update(trans, i) 2116 if (!i->key_cache_already_flushed && 2117 i->btree_id == iter->btree_id && 2118 bpos_eq(i->k->k.p, iter->pos)) { 2119 iter->k = i->k->k; 2120 *k = bkey_i_to_s_c(i->k); 2121 } 2122 } 2123 2124 static struct bkey_i *bch2_btree_journal_peek(struct btree_trans *trans, 2125 struct btree_iter *iter, 2126 struct bpos search_pos, 2127 struct bpos end_pos) 2128 { 2129 struct btree_path *path = btree_iter_path(trans, iter); 2130 2131 return bch2_journal_keys_peek_max(trans->c, iter->btree_id, 2132 path->level, 2133 search_pos, 2134 end_pos, 2135 &iter->journal_idx); 2136 } 2137 2138 static noinline 2139 struct bkey_s_c btree_trans_peek_slot_journal(struct btree_trans *trans, 2140 struct btree_iter *iter) 2141 { 2142 struct btree_path *path = btree_iter_path(trans, iter); 2143 struct bkey_i *k = bch2_btree_journal_peek(trans, iter, path->pos, path->pos); 2144 2145 if (k) { 2146 iter->k = k->k; 2147 return bkey_i_to_s_c(k); 2148 } else { 2149 return bkey_s_c_null; 2150 } 2151 } 2152 2153 static noinline 2154 void btree_trans_peek_journal(struct btree_trans *trans, 2155 struct btree_iter *iter, 2156 struct bpos search_key, 2157 struct bkey_s_c *k) 2158 { 2159 struct btree_path *path = btree_iter_path(trans, iter); 2160 struct bkey_i *next_journal = 2161 bch2_btree_journal_peek(trans, iter, search_key, 2162 k->k ? k->k->p : path_l(path)->b->key.k.p); 2163 if (next_journal) { 2164 iter->k = next_journal->k; 2165 *k = bkey_i_to_s_c(next_journal); 2166 } 2167 } 2168 2169 static struct bkey_i *bch2_btree_journal_peek_prev(struct btree_trans *trans, 2170 struct btree_iter *iter, 2171 struct bpos search_key, 2172 struct bpos end_pos) 2173 { 2174 struct btree_path *path = btree_iter_path(trans, iter); 2175 2176 return bch2_journal_keys_peek_prev_min(trans->c, iter->btree_id, 2177 path->level, 2178 search_key, 2179 end_pos, 2180 &iter->journal_idx); 2181 } 2182 2183 static noinline 2184 void btree_trans_peek_prev_journal(struct btree_trans *trans, 2185 struct btree_iter *iter, 2186 struct bpos search_key, 2187 struct bkey_s_c *k) 2188 { 2189 struct btree_path *path = btree_iter_path(trans, iter); 2190 struct bkey_i *next_journal = 2191 bch2_btree_journal_peek_prev(trans, iter, search_key, 2192 k->k ? k->k->p : path_l(path)->b->key.k.p); 2193 2194 if (next_journal) { 2195 iter->k = next_journal->k; 2196 *k = bkey_i_to_s_c(next_journal); 2197 } 2198 } 2199 2200 /* 2201 * Checks btree key cache for key at iter->pos and returns it if present, or 2202 * bkey_s_c_null: 2203 */ 2204 static noinline 2205 struct bkey_s_c btree_trans_peek_key_cache(struct btree_trans *trans, struct btree_iter *iter, 2206 struct bpos pos) 2207 { 2208 struct bch_fs *c = trans->c; 2209 struct bkey u; 2210 struct bkey_s_c k; 2211 int ret; 2212 2213 bch2_trans_verify_not_unlocked_or_in_restart(trans); 2214 2215 if ((iter->flags & BTREE_ITER_key_cache_fill) && 2216 bpos_eq(iter->pos, pos)) 2217 return bkey_s_c_null; 2218 2219 if (!bch2_btree_key_cache_find(c, iter->btree_id, pos)) 2220 return bkey_s_c_null; 2221 2222 if (!iter->key_cache_path) 2223 iter->key_cache_path = bch2_path_get(trans, iter->btree_id, pos, 2224 iter->flags & BTREE_ITER_intent, 0, 2225 iter->flags|BTREE_ITER_cached| 2226 BTREE_ITER_cached_nofill, 2227 _THIS_IP_); 2228 2229 iter->key_cache_path = bch2_btree_path_set_pos(trans, iter->key_cache_path, pos, 2230 iter->flags & BTREE_ITER_intent, 2231 btree_iter_ip_allocated(iter)); 2232 2233 ret = bch2_btree_path_traverse(trans, iter->key_cache_path, 2234 iter->flags|BTREE_ITER_cached) ?: 2235 bch2_btree_path_relock(trans, btree_iter_path(trans, iter), _THIS_IP_); 2236 if (unlikely(ret)) 2237 return bkey_s_c_err(ret); 2238 2239 k = bch2_btree_path_peek_slot(trans->paths + iter->key_cache_path, &u); 2240 if (!k.k) 2241 return k; 2242 2243 if ((iter->flags & BTREE_ITER_all_snapshots) && 2244 !bpos_eq(pos, k.k->p)) 2245 return bkey_s_c_null; 2246 2247 iter->k = u; 2248 k.k = &iter->k; 2249 btree_path_set_should_be_locked(trans, trans->paths + iter->key_cache_path); 2250 return k; 2251 } 2252 2253 static struct bkey_s_c __bch2_btree_iter_peek(struct btree_trans *trans, struct btree_iter *iter, 2254 struct bpos search_key) 2255 { 2256 struct bkey_s_c k, k2; 2257 int ret; 2258 2259 EBUG_ON(btree_iter_path(trans, iter)->cached); 2260 bch2_btree_iter_verify(trans, iter); 2261 2262 while (1) { 2263 iter->path = bch2_btree_path_set_pos(trans, iter->path, search_key, 2264 iter->flags & BTREE_ITER_intent, 2265 btree_iter_ip_allocated(iter)); 2266 2267 ret = bch2_btree_path_traverse(trans, iter->path, iter->flags); 2268 if (unlikely(ret)) { 2269 /* ensure that iter->k is consistent with iter->pos: */ 2270 bch2_btree_iter_set_pos(trans, iter, iter->pos); 2271 k = bkey_s_c_err(ret); 2272 break; 2273 } 2274 2275 struct btree_path *path = btree_iter_path(trans, iter); 2276 struct btree_path_level *l = path_l(path); 2277 2278 if (unlikely(!l->b)) { 2279 /* No btree nodes at requested level: */ 2280 bch2_btree_iter_set_pos(trans, iter, SPOS_MAX); 2281 k = bkey_s_c_null; 2282 break; 2283 } 2284 2285 btree_path_set_should_be_locked(trans, path); 2286 2287 k = btree_path_level_peek_all(trans->c, l, &iter->k); 2288 2289 if (unlikely(iter->flags & BTREE_ITER_with_key_cache) && 2290 k.k && 2291 (k2 = btree_trans_peek_key_cache(trans, iter, k.k->p)).k) { 2292 k = k2; 2293 if (bkey_err(k)) { 2294 bch2_btree_iter_set_pos(trans, iter, iter->pos); 2295 break; 2296 } 2297 } 2298 2299 if (unlikely(iter->flags & BTREE_ITER_with_journal)) 2300 btree_trans_peek_journal(trans, iter, search_key, &k); 2301 2302 if (unlikely((iter->flags & BTREE_ITER_with_updates) && 2303 trans->nr_updates)) 2304 bch2_btree_trans_peek_updates(trans, iter, search_key, &k); 2305 2306 if (k.k && bkey_deleted(k.k)) { 2307 /* 2308 * If we've got a whiteout, and it's after the search 2309 * key, advance the search key to the whiteout instead 2310 * of just after the whiteout - it might be a btree 2311 * whiteout, with a real key at the same position, since 2312 * in the btree deleted keys sort before non deleted. 2313 */ 2314 search_key = !bpos_eq(search_key, k.k->p) 2315 ? k.k->p 2316 : bpos_successor(k.k->p); 2317 continue; 2318 } 2319 2320 if (likely(k.k)) { 2321 break; 2322 } else if (likely(!bpos_eq(l->b->key.k.p, SPOS_MAX))) { 2323 /* Advance to next leaf node: */ 2324 search_key = bpos_successor(l->b->key.k.p); 2325 } else { 2326 /* End of btree: */ 2327 bch2_btree_iter_set_pos(trans, iter, SPOS_MAX); 2328 k = bkey_s_c_null; 2329 break; 2330 } 2331 } 2332 2333 bch2_btree_iter_verify(trans, iter); 2334 2335 if (trace___btree_iter_peek_enabled()) { 2336 CLASS(printbuf, buf)(); 2337 2338 int ret = bkey_err(k); 2339 if (ret) 2340 prt_str(&buf, bch2_err_str(ret)); 2341 else if (k.k) 2342 bch2_bkey_val_to_text(&buf, trans->c, k); 2343 else 2344 prt_str(&buf, "(null)"); 2345 trace___btree_iter_peek(trans->c, buf.buf); 2346 } 2347 2348 return k; 2349 } 2350 2351 /** 2352 * bch2_btree_iter_peek_max() - returns first key greater than or equal to 2353 * iterator's current position 2354 * @trans: btree transaction object 2355 * @iter: iterator to peek from 2356 * @end: search limit: returns keys less than or equal to @end 2357 * 2358 * Returns: key if found, or an error extractable with bkey_err(). 2359 */ 2360 struct bkey_s_c bch2_btree_iter_peek_max(struct btree_trans *trans, struct btree_iter *iter, 2361 struct bpos end) 2362 { 2363 struct bpos search_key = btree_iter_search_key(iter); 2364 struct bkey_s_c k; 2365 struct bpos iter_pos = iter->pos; 2366 int ret; 2367 2368 bch2_trans_verify_not_unlocked_or_in_restart(trans); 2369 bch2_btree_iter_verify_entry_exit(iter); 2370 EBUG_ON((iter->flags & BTREE_ITER_filter_snapshots) && bkey_eq(end, POS_MAX)); 2371 2372 ret = trans_maybe_inject_restart(trans, _RET_IP_); 2373 if (unlikely(ret)) { 2374 k = bkey_s_c_err(ret); 2375 goto out_no_locked; 2376 } 2377 2378 if (iter->update_path) { 2379 bch2_path_put(trans, iter->update_path, iter->flags & BTREE_ITER_intent); 2380 iter->update_path = 0; 2381 } 2382 2383 while (1) { 2384 k = __bch2_btree_iter_peek(trans, iter, search_key); 2385 if (unlikely(!k.k)) 2386 goto end; 2387 if (unlikely(bkey_err(k))) 2388 goto out_no_locked; 2389 2390 if (iter->flags & BTREE_ITER_filter_snapshots) { 2391 /* 2392 * We need to check against @end before FILTER_SNAPSHOTS because 2393 * if we get to a different inode that requested we might be 2394 * seeing keys for a different snapshot tree that will all be 2395 * filtered out. 2396 * 2397 * But we can't do the full check here, because bkey_start_pos() 2398 * isn't monotonically increasing before FILTER_SNAPSHOTS, and 2399 * that's what we check against in extents mode: 2400 */ 2401 if (unlikely(!(iter->flags & BTREE_ITER_is_extents) 2402 ? bkey_gt(k.k->p, end) 2403 : k.k->p.inode > end.inode)) 2404 goto end; 2405 2406 if (iter->update_path && 2407 !bkey_eq(trans->paths[iter->update_path].pos, k.k->p)) { 2408 bch2_path_put(trans, iter->update_path, 2409 iter->flags & BTREE_ITER_intent); 2410 iter->update_path = 0; 2411 } 2412 2413 if ((iter->flags & BTREE_ITER_intent) && 2414 !(iter->flags & BTREE_ITER_is_extents) && 2415 !iter->update_path) { 2416 struct bpos pos = k.k->p; 2417 2418 if (pos.snapshot < iter->snapshot) { 2419 search_key = bpos_successor(k.k->p); 2420 continue; 2421 } 2422 2423 pos.snapshot = iter->snapshot; 2424 2425 /* 2426 * advance, same as on exit for iter->path, but only up 2427 * to snapshot 2428 */ 2429 __btree_path_get(trans, trans->paths + iter->path, iter->flags & BTREE_ITER_intent); 2430 iter->update_path = iter->path; 2431 2432 iter->update_path = bch2_btree_path_set_pos(trans, 2433 iter->update_path, pos, 2434 iter->flags & BTREE_ITER_intent, 2435 _THIS_IP_); 2436 ret = bch2_btree_path_traverse(trans, iter->update_path, iter->flags); 2437 if (unlikely(ret)) { 2438 k = bkey_s_c_err(ret); 2439 goto out_no_locked; 2440 } 2441 } 2442 2443 /* 2444 * We can never have a key in a leaf node at POS_MAX, so 2445 * we don't have to check these successor() calls: 2446 */ 2447 if (!bch2_snapshot_is_ancestor(trans->c, 2448 iter->snapshot, 2449 k.k->p.snapshot)) { 2450 search_key = bpos_successor(k.k->p); 2451 continue; 2452 } 2453 2454 if (bkey_whiteout(k.k) && 2455 !(iter->flags & BTREE_ITER_key_cache_fill)) { 2456 search_key = bkey_successor(iter, k.k->p); 2457 continue; 2458 } 2459 } 2460 2461 /* 2462 * iter->pos should be mononotically increasing, and always be 2463 * equal to the key we just returned - except extents can 2464 * straddle iter->pos: 2465 */ 2466 if (!(iter->flags & BTREE_ITER_is_extents)) 2467 iter_pos = k.k->p; 2468 else 2469 iter_pos = bkey_max(iter->pos, bkey_start_pos(k.k)); 2470 2471 if (unlikely(iter->flags & BTREE_ITER_all_snapshots ? bpos_gt(iter_pos, end) : 2472 iter->flags & BTREE_ITER_is_extents ? bkey_ge(iter_pos, end) : 2473 bkey_gt(iter_pos, end))) 2474 goto end; 2475 2476 break; 2477 } 2478 2479 iter->pos = iter_pos; 2480 2481 iter->path = bch2_btree_path_set_pos(trans, iter->path, k.k->p, 2482 iter->flags & BTREE_ITER_intent, 2483 btree_iter_ip_allocated(iter)); 2484 2485 btree_path_set_should_be_locked(trans, btree_iter_path(trans, iter)); 2486 out_no_locked: 2487 if (iter->update_path) { 2488 ret = bch2_btree_path_relock(trans, trans->paths + iter->update_path, _THIS_IP_); 2489 if (unlikely(ret)) 2490 k = bkey_s_c_err(ret); 2491 else 2492 btree_path_set_should_be_locked(trans, trans->paths + iter->update_path); 2493 } 2494 2495 if (!(iter->flags & BTREE_ITER_all_snapshots)) 2496 iter->pos.snapshot = iter->snapshot; 2497 2498 ret = bch2_btree_iter_verify_ret(trans, iter, k); 2499 if (unlikely(ret)) { 2500 bch2_btree_iter_set_pos(trans, iter, iter->pos); 2501 k = bkey_s_c_err(ret); 2502 } 2503 2504 bch2_btree_iter_verify_entry_exit(iter); 2505 2506 if (trace_btree_iter_peek_max_enabled()) { 2507 CLASS(printbuf, buf)(); 2508 2509 int ret = bkey_err(k); 2510 if (ret) 2511 prt_str(&buf, bch2_err_str(ret)); 2512 else if (k.k) 2513 bch2_bkey_val_to_text(&buf, trans->c, k); 2514 else 2515 prt_str(&buf, "(null)"); 2516 trace_btree_iter_peek_max(trans->c, buf.buf); 2517 } 2518 2519 return k; 2520 end: 2521 bch2_btree_iter_set_pos(trans, iter, end); 2522 k = bkey_s_c_null; 2523 goto out_no_locked; 2524 } 2525 2526 /** 2527 * bch2_btree_iter_next() - returns first key greater than iterator's current 2528 * position 2529 * @trans: btree transaction object 2530 * @iter: iterator to peek from 2531 * 2532 * Returns: key if found, or an error extractable with bkey_err(). 2533 */ 2534 struct bkey_s_c bch2_btree_iter_next(struct btree_trans *trans, struct btree_iter *iter) 2535 { 2536 if (!bch2_btree_iter_advance(trans, iter)) 2537 return bkey_s_c_null; 2538 2539 return bch2_btree_iter_peek(trans, iter); 2540 } 2541 2542 static struct bkey_s_c __bch2_btree_iter_peek_prev(struct btree_trans *trans, struct btree_iter *iter, 2543 struct bpos search_key) 2544 { 2545 struct bkey_s_c k, k2; 2546 2547 bch2_btree_iter_verify(trans, iter); 2548 2549 while (1) { 2550 iter->path = bch2_btree_path_set_pos(trans, iter->path, search_key, 2551 iter->flags & BTREE_ITER_intent, 2552 btree_iter_ip_allocated(iter)); 2553 2554 int ret = bch2_btree_path_traverse(trans, iter->path, iter->flags); 2555 if (unlikely(ret)) { 2556 /* ensure that iter->k is consistent with iter->pos: */ 2557 bch2_btree_iter_set_pos(trans, iter, iter->pos); 2558 k = bkey_s_c_err(ret); 2559 break; 2560 } 2561 2562 struct btree_path *path = btree_iter_path(trans, iter); 2563 struct btree_path_level *l = path_l(path); 2564 2565 if (unlikely(!l->b)) { 2566 /* No btree nodes at requested level: */ 2567 bch2_btree_iter_set_pos(trans, iter, SPOS_MAX); 2568 k = bkey_s_c_null; 2569 break; 2570 } 2571 2572 btree_path_set_should_be_locked(trans, path); 2573 2574 k = btree_path_level_peek_all(trans->c, l, &iter->k); 2575 if (!k.k || bpos_gt(k.k->p, search_key)) { 2576 k = btree_path_level_prev(trans, path, l, &iter->k); 2577 2578 BUG_ON(k.k && bpos_gt(k.k->p, search_key)); 2579 } 2580 2581 if (unlikely(iter->flags & BTREE_ITER_with_key_cache) && 2582 k.k && 2583 (k2 = btree_trans_peek_key_cache(trans, iter, k.k->p)).k) { 2584 k = k2; 2585 if (bkey_err(k2)) { 2586 bch2_btree_iter_set_pos(trans, iter, iter->pos); 2587 break; 2588 } 2589 } 2590 2591 if (unlikely(iter->flags & BTREE_ITER_with_journal)) 2592 btree_trans_peek_prev_journal(trans, iter, search_key, &k); 2593 2594 if (unlikely((iter->flags & BTREE_ITER_with_updates) && 2595 trans->nr_updates)) 2596 bch2_btree_trans_peek_prev_updates(trans, iter, search_key, &k); 2597 2598 if (likely(k.k && !bkey_deleted(k.k))) { 2599 break; 2600 } else if (k.k) { 2601 search_key = bpos_predecessor(k.k->p); 2602 } else if (likely(!bpos_eq(path->l[0].b->data->min_key, POS_MIN))) { 2603 /* Advance to previous leaf node: */ 2604 search_key = bpos_predecessor(path->l[0].b->data->min_key); 2605 } else { 2606 /* Start of btree: */ 2607 bch2_btree_iter_set_pos(trans, iter, POS_MIN); 2608 k = bkey_s_c_null; 2609 break; 2610 } 2611 } 2612 2613 bch2_btree_iter_verify(trans, iter); 2614 return k; 2615 } 2616 2617 /** 2618 * bch2_btree_iter_peek_prev_min() - returns first key less than or equal to 2619 * iterator's current position 2620 * @trans: btree transaction object 2621 * @iter: iterator to peek from 2622 * @end: search limit: returns keys greater than or equal to @end 2623 * 2624 * Returns: key if found, or an error extractable with bkey_err(). 2625 */ 2626 struct bkey_s_c bch2_btree_iter_peek_prev_min(struct btree_trans *trans, struct btree_iter *iter, 2627 struct bpos end) 2628 { 2629 if ((iter->flags & (BTREE_ITER_is_extents|BTREE_ITER_filter_snapshots)) && 2630 !bkey_eq(iter->pos, POS_MAX) && 2631 !((iter->flags & BTREE_ITER_is_extents) && 2632 iter->pos.offset == U64_MAX)) { 2633 2634 /* 2635 * bkey_start_pos(), for extents, is not monotonically 2636 * increasing until after filtering for snapshots: 2637 * 2638 * Thus, for extents we need to search forward until we find a 2639 * real visible extents - easiest to just use peek_slot() (which 2640 * internally uses peek() for extents) 2641 */ 2642 struct bkey_s_c k = bch2_btree_iter_peek_slot(trans, iter); 2643 if (bkey_err(k)) 2644 return k; 2645 2646 if (!bkey_deleted(k.k) && 2647 (!(iter->flags & BTREE_ITER_is_extents) || 2648 bkey_lt(bkey_start_pos(k.k), iter->pos))) 2649 return k; 2650 } 2651 2652 struct bpos search_key = iter->pos; 2653 struct bkey_s_c k; 2654 btree_path_idx_t saved_path = 0; 2655 2656 bch2_trans_verify_not_unlocked_or_in_restart(trans); 2657 bch2_btree_iter_verify_entry_exit(iter); 2658 EBUG_ON((iter->flags & BTREE_ITER_filter_snapshots) && iter->pos.inode != end.inode); 2659 2660 int ret = trans_maybe_inject_restart(trans, _RET_IP_); 2661 if (unlikely(ret)) { 2662 k = bkey_s_c_err(ret); 2663 goto out_no_locked; 2664 } 2665 2666 while (1) { 2667 k = __bch2_btree_iter_peek_prev(trans, iter, search_key); 2668 if (unlikely(!k.k)) 2669 goto end; 2670 if (unlikely(bkey_err(k))) 2671 goto out_no_locked; 2672 2673 if (iter->flags & BTREE_ITER_filter_snapshots) { 2674 struct btree_path *s = saved_path ? trans->paths + saved_path : NULL; 2675 if (s && bpos_lt(k.k->p, SPOS(s->pos.inode, s->pos.offset, iter->snapshot))) { 2676 /* 2677 * If we have a saved candidate, and we're past 2678 * the last possible snapshot overwrite, return 2679 * it: 2680 */ 2681 bch2_path_put(trans, iter->path, 2682 iter->flags & BTREE_ITER_intent); 2683 iter->path = saved_path; 2684 saved_path = 0; 2685 k = bch2_btree_path_peek_slot(btree_iter_path(trans, iter), &iter->k); 2686 break; 2687 } 2688 2689 /* 2690 * We need to check against @end before FILTER_SNAPSHOTS because 2691 * if we get to a different inode that requested we might be 2692 * seeing keys for a different snapshot tree that will all be 2693 * filtered out. 2694 */ 2695 if (unlikely(bkey_lt(k.k->p, end))) 2696 goto end; 2697 2698 if (!bch2_snapshot_is_ancestor(trans->c, iter->snapshot, k.k->p.snapshot)) { 2699 search_key = bpos_predecessor(k.k->p); 2700 continue; 2701 } 2702 2703 if (k.k->p.snapshot != iter->snapshot) { 2704 /* 2705 * Have a key visible in iter->snapshot, but 2706 * might have overwrites: - save it and keep 2707 * searching. Unless it's a whiteout - then drop 2708 * our previous saved candidate: 2709 */ 2710 if (saved_path) { 2711 bch2_path_put(trans, saved_path, 2712 iter->flags & BTREE_ITER_intent); 2713 saved_path = 0; 2714 } 2715 2716 if (!bkey_whiteout(k.k)) { 2717 saved_path = btree_path_clone(trans, iter->path, 2718 iter->flags & BTREE_ITER_intent, 2719 _THIS_IP_); 2720 trace_btree_path_save_pos(trans, 2721 trans->paths + iter->path, 2722 trans->paths + saved_path); 2723 } 2724 2725 search_key = bpos_predecessor(k.k->p); 2726 continue; 2727 } 2728 2729 if (bkey_whiteout(k.k)) { 2730 search_key = bkey_predecessor(iter, k.k->p); 2731 search_key.snapshot = U32_MAX; 2732 continue; 2733 } 2734 } 2735 2736 EBUG_ON(iter->flags & BTREE_ITER_all_snapshots ? bpos_gt(k.k->p, iter->pos) : 2737 iter->flags & BTREE_ITER_is_extents ? bkey_ge(bkey_start_pos(k.k), iter->pos) : 2738 bkey_gt(k.k->p, iter->pos)); 2739 2740 if (unlikely(iter->flags & BTREE_ITER_all_snapshots ? bpos_lt(k.k->p, end) : 2741 iter->flags & BTREE_ITER_is_extents ? bkey_le(k.k->p, end) : 2742 bkey_lt(k.k->p, end))) 2743 goto end; 2744 2745 break; 2746 } 2747 2748 /* Extents can straddle iter->pos: */ 2749 iter->pos = bpos_min(iter->pos, k.k->p);; 2750 2751 if (iter->flags & BTREE_ITER_filter_snapshots) 2752 iter->pos.snapshot = iter->snapshot; 2753 out_no_locked: 2754 if (saved_path) 2755 bch2_path_put(trans, saved_path, iter->flags & BTREE_ITER_intent); 2756 2757 bch2_btree_iter_verify_entry_exit(iter); 2758 bch2_btree_iter_verify(trans, iter); 2759 2760 if (trace_btree_iter_peek_prev_min_enabled()) { 2761 CLASS(printbuf, buf)(); 2762 2763 int ret = bkey_err(k); 2764 if (ret) 2765 prt_str(&buf, bch2_err_str(ret)); 2766 else if (k.k) 2767 bch2_bkey_val_to_text(&buf, trans->c, k); 2768 else 2769 prt_str(&buf, "(null)"); 2770 trace_btree_iter_peek_prev_min(trans->c, buf.buf); 2771 } 2772 return k; 2773 end: 2774 bch2_btree_iter_set_pos(trans, iter, end); 2775 k = bkey_s_c_null; 2776 goto out_no_locked; 2777 } 2778 2779 /** 2780 * bch2_btree_iter_prev() - returns first key less than iterator's current 2781 * position 2782 * @trans: btree transaction object 2783 * @iter: iterator to peek from 2784 * 2785 * Returns: key if found, or an error extractable with bkey_err(). 2786 */ 2787 struct bkey_s_c bch2_btree_iter_prev(struct btree_trans *trans, struct btree_iter *iter) 2788 { 2789 if (!bch2_btree_iter_rewind(trans, iter)) 2790 return bkey_s_c_null; 2791 2792 return bch2_btree_iter_peek_prev(trans, iter); 2793 } 2794 2795 struct bkey_s_c bch2_btree_iter_peek_slot(struct btree_trans *trans, struct btree_iter *iter) 2796 { 2797 struct bpos search_key; 2798 struct bkey_s_c k; 2799 int ret; 2800 2801 bch2_trans_verify_not_unlocked_or_in_restart(trans); 2802 bch2_btree_iter_verify(trans, iter); 2803 bch2_btree_iter_verify_entry_exit(iter); 2804 EBUG_ON(btree_iter_path(trans, iter)->level && (iter->flags & BTREE_ITER_with_key_cache)); 2805 2806 ret = trans_maybe_inject_restart(trans, _RET_IP_); 2807 if (unlikely(ret)) { 2808 k = bkey_s_c_err(ret); 2809 goto out; 2810 } 2811 2812 /* extents can't span inode numbers: */ 2813 if ((iter->flags & BTREE_ITER_is_extents) && 2814 unlikely(iter->pos.offset == KEY_OFFSET_MAX)) { 2815 if (iter->pos.inode == KEY_INODE_MAX) { 2816 k = bkey_s_c_null; 2817 goto out2; 2818 } 2819 2820 bch2_btree_iter_set_pos(trans, iter, bpos_nosnap_successor(iter->pos)); 2821 } 2822 2823 search_key = btree_iter_search_key(iter); 2824 iter->path = bch2_btree_path_set_pos(trans, iter->path, search_key, 2825 iter->flags & BTREE_ITER_intent, 2826 btree_iter_ip_allocated(iter)); 2827 2828 ret = bch2_btree_path_traverse(trans, iter->path, iter->flags); 2829 if (unlikely(ret)) { 2830 k = bkey_s_c_err(ret); 2831 goto out; 2832 } 2833 2834 struct btree_path *path = btree_iter_path(trans, iter); 2835 if (unlikely(!btree_path_node(path, path->level))) { 2836 k = bkey_s_c_null; 2837 goto out2; 2838 } 2839 2840 btree_path_set_should_be_locked(trans, path); 2841 2842 if ((iter->flags & BTREE_ITER_cached) || 2843 !(iter->flags & (BTREE_ITER_is_extents|BTREE_ITER_filter_snapshots))) { 2844 k = bkey_s_c_null; 2845 2846 if (unlikely((iter->flags & BTREE_ITER_with_updates) && 2847 trans->nr_updates)) { 2848 bch2_btree_trans_peek_slot_updates(trans, iter, &k); 2849 if (k.k) 2850 goto out; 2851 } 2852 2853 if (unlikely(iter->flags & BTREE_ITER_with_journal) && 2854 (k = btree_trans_peek_slot_journal(trans, iter)).k) 2855 goto out; 2856 2857 if (unlikely(iter->flags & BTREE_ITER_with_key_cache) && 2858 (k = btree_trans_peek_key_cache(trans, iter, iter->pos)).k) { 2859 if (!bkey_err(k)) 2860 iter->k = *k.k; 2861 /* We're not returning a key from iter->path: */ 2862 goto out; 2863 } 2864 2865 k = bch2_btree_path_peek_slot(btree_iter_path(trans, iter), &iter->k); 2866 if (unlikely(!k.k)) 2867 goto out; 2868 2869 if (unlikely(k.k->type == KEY_TYPE_whiteout && 2870 (iter->flags & BTREE_ITER_filter_snapshots) && 2871 !(iter->flags & BTREE_ITER_key_cache_fill))) 2872 iter->k.type = KEY_TYPE_deleted; 2873 } else { 2874 struct bpos next; 2875 struct bpos end = iter->pos; 2876 2877 if (iter->flags & BTREE_ITER_is_extents) 2878 end.offset = U64_MAX; 2879 2880 EBUG_ON(btree_iter_path(trans, iter)->level); 2881 2882 if (iter->flags & BTREE_ITER_intent) { 2883 struct btree_iter iter2; 2884 2885 bch2_trans_copy_iter(trans, &iter2, iter); 2886 k = bch2_btree_iter_peek_max(trans, &iter2, end); 2887 2888 if (k.k && !bkey_err(k)) { 2889 swap(iter->key_cache_path, iter2.key_cache_path); 2890 iter->k = iter2.k; 2891 k.k = &iter->k; 2892 } 2893 bch2_trans_iter_exit(trans, &iter2); 2894 } else { 2895 struct bpos pos = iter->pos; 2896 2897 k = bch2_btree_iter_peek_max(trans, iter, end); 2898 if (unlikely(bkey_err(k))) 2899 bch2_btree_iter_set_pos(trans, iter, pos); 2900 else 2901 iter->pos = pos; 2902 } 2903 2904 if (unlikely(bkey_err(k))) 2905 goto out; 2906 2907 next = k.k ? bkey_start_pos(k.k) : POS_MAX; 2908 2909 if (bkey_lt(iter->pos, next)) { 2910 bkey_init(&iter->k); 2911 iter->k.p = iter->pos; 2912 2913 if (iter->flags & BTREE_ITER_is_extents) { 2914 bch2_key_resize(&iter->k, 2915 min_t(u64, KEY_SIZE_MAX, 2916 (next.inode == iter->pos.inode 2917 ? next.offset 2918 : KEY_OFFSET_MAX) - 2919 iter->pos.offset)); 2920 EBUG_ON(!iter->k.size); 2921 } 2922 2923 k = (struct bkey_s_c) { &iter->k, NULL }; 2924 } 2925 } 2926 out: 2927 bch2_btree_iter_verify_entry_exit(iter); 2928 bch2_btree_iter_verify(trans, iter); 2929 ret = bch2_btree_iter_verify_ret(trans, iter, k); 2930 if (unlikely(ret)) 2931 k = bkey_s_c_err(ret); 2932 out2: 2933 if (trace_btree_iter_peek_slot_enabled()) { 2934 CLASS(printbuf, buf)(); 2935 2936 int ret = bkey_err(k); 2937 if (ret) 2938 prt_str(&buf, bch2_err_str(ret)); 2939 else if (k.k) 2940 bch2_bkey_val_to_text(&buf, trans->c, k); 2941 else 2942 prt_str(&buf, "(null)"); 2943 trace_btree_iter_peek_slot(trans->c, buf.buf); 2944 } 2945 2946 return k; 2947 } 2948 2949 struct bkey_s_c bch2_btree_iter_next_slot(struct btree_trans *trans, struct btree_iter *iter) 2950 { 2951 if (!bch2_btree_iter_advance(trans, iter)) 2952 return bkey_s_c_null; 2953 2954 return bch2_btree_iter_peek_slot(trans, iter); 2955 } 2956 2957 struct bkey_s_c bch2_btree_iter_prev_slot(struct btree_trans *trans, struct btree_iter *iter) 2958 { 2959 if (!bch2_btree_iter_rewind(trans, iter)) 2960 return bkey_s_c_null; 2961 2962 return bch2_btree_iter_peek_slot(trans, iter); 2963 } 2964 2965 /* Obsolete, but still used by rust wrapper in -tools */ 2966 struct bkey_s_c bch2_btree_iter_peek_and_restart_outlined(struct btree_trans *trans, struct btree_iter *iter) 2967 { 2968 struct bkey_s_c k; 2969 2970 while (btree_trans_too_many_iters(trans) || 2971 (k = bch2_btree_iter_peek_type(trans, iter, iter->flags), 2972 bch2_err_matches(bkey_err(k), BCH_ERR_transaction_restart))) 2973 bch2_trans_begin(trans); 2974 2975 return k; 2976 } 2977 2978 /* new transactional stuff: */ 2979 2980 #ifdef CONFIG_BCACHEFS_DEBUG 2981 static void btree_trans_verify_sorted_refs(struct btree_trans *trans) 2982 { 2983 struct btree_path *path; 2984 unsigned i; 2985 2986 BUG_ON(trans->nr_sorted != bitmap_weight(trans->paths_allocated, trans->nr_paths) - 1); 2987 2988 trans_for_each_path(trans, path, i) { 2989 BUG_ON(path->sorted_idx >= trans->nr_sorted); 2990 BUG_ON(trans->sorted[path->sorted_idx] != i); 2991 } 2992 2993 for (i = 0; i < trans->nr_sorted; i++) { 2994 unsigned idx = trans->sorted[i]; 2995 2996 BUG_ON(!test_bit(idx, trans->paths_allocated)); 2997 BUG_ON(trans->paths[idx].sorted_idx != i); 2998 } 2999 } 3000 3001 static void btree_trans_verify_sorted(struct btree_trans *trans) 3002 { 3003 struct btree_path *path, *prev = NULL; 3004 struct trans_for_each_path_inorder_iter iter; 3005 3006 if (!static_branch_unlikely(&bch2_debug_check_iterators)) 3007 return; 3008 3009 trans_for_each_path_inorder(trans, path, iter) { 3010 if (prev && btree_path_cmp(prev, path) > 0) { 3011 __bch2_dump_trans_paths_updates(trans, true); 3012 panic("trans paths out of order!\n"); 3013 } 3014 prev = path; 3015 } 3016 } 3017 #else 3018 static inline void btree_trans_verify_sorted_refs(struct btree_trans *trans) {} 3019 static inline void btree_trans_verify_sorted(struct btree_trans *trans) {} 3020 #endif 3021 3022 void __bch2_btree_trans_sort_paths(struct btree_trans *trans) 3023 { 3024 int i, l = 0, r = trans->nr_sorted, inc = 1; 3025 bool swapped; 3026 3027 btree_trans_verify_sorted_refs(trans); 3028 3029 if (trans->paths_sorted) 3030 goto out; 3031 3032 /* 3033 * Cocktail shaker sort: this is efficient because iterators will be 3034 * mostly sorted. 3035 */ 3036 do { 3037 swapped = false; 3038 3039 for (i = inc > 0 ? l : r - 2; 3040 i + 1 < r && i >= l; 3041 i += inc) { 3042 if (btree_path_cmp(trans->paths + trans->sorted[i], 3043 trans->paths + trans->sorted[i + 1]) > 0) { 3044 swap(trans->sorted[i], trans->sorted[i + 1]); 3045 trans->paths[trans->sorted[i]].sorted_idx = i; 3046 trans->paths[trans->sorted[i + 1]].sorted_idx = i + 1; 3047 swapped = true; 3048 } 3049 } 3050 3051 if (inc > 0) 3052 --r; 3053 else 3054 l++; 3055 inc = -inc; 3056 } while (swapped); 3057 3058 trans->paths_sorted = true; 3059 out: 3060 btree_trans_verify_sorted(trans); 3061 } 3062 3063 static inline void btree_path_list_remove(struct btree_trans *trans, 3064 struct btree_path *path) 3065 { 3066 EBUG_ON(path->sorted_idx >= trans->nr_sorted); 3067 #ifdef CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS 3068 trans->nr_sorted--; 3069 memmove_u64s_down_small(trans->sorted + path->sorted_idx, 3070 trans->sorted + path->sorted_idx + 1, 3071 DIV_ROUND_UP(trans->nr_sorted - path->sorted_idx, 3072 sizeof(u64) / sizeof(btree_path_idx_t))); 3073 #else 3074 array_remove_item(trans->sorted, trans->nr_sorted, path->sorted_idx); 3075 #endif 3076 for (unsigned i = path->sorted_idx; i < trans->nr_sorted; i++) 3077 trans->paths[trans->sorted[i]].sorted_idx = i; 3078 } 3079 3080 static inline void btree_path_list_add(struct btree_trans *trans, 3081 btree_path_idx_t pos, 3082 btree_path_idx_t path_idx) 3083 { 3084 struct btree_path *path = trans->paths + path_idx; 3085 3086 path->sorted_idx = pos ? trans->paths[pos].sorted_idx + 1 : trans->nr_sorted; 3087 3088 #ifdef CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS 3089 memmove_u64s_up_small(trans->sorted + path->sorted_idx + 1, 3090 trans->sorted + path->sorted_idx, 3091 DIV_ROUND_UP(trans->nr_sorted - path->sorted_idx, 3092 sizeof(u64) / sizeof(btree_path_idx_t))); 3093 trans->nr_sorted++; 3094 trans->sorted[path->sorted_idx] = path_idx; 3095 #else 3096 array_insert_item(trans->sorted, trans->nr_sorted, path->sorted_idx, path_idx); 3097 #endif 3098 3099 for (unsigned i = path->sorted_idx; i < trans->nr_sorted; i++) 3100 trans->paths[trans->sorted[i]].sorted_idx = i; 3101 3102 btree_trans_verify_sorted_refs(trans); 3103 } 3104 3105 void bch2_trans_iter_exit(struct btree_trans *trans, struct btree_iter *iter) 3106 { 3107 if (iter->update_path) 3108 bch2_path_put(trans, iter->update_path, 3109 iter->flags & BTREE_ITER_intent); 3110 if (iter->path) 3111 bch2_path_put(trans, iter->path, 3112 iter->flags & BTREE_ITER_intent); 3113 if (iter->key_cache_path) 3114 bch2_path_put(trans, iter->key_cache_path, 3115 iter->flags & BTREE_ITER_intent); 3116 iter->path = 0; 3117 iter->update_path = 0; 3118 iter->key_cache_path = 0; 3119 } 3120 3121 void bch2_trans_iter_init_outlined(struct btree_trans *trans, 3122 struct btree_iter *iter, 3123 enum btree_id btree_id, struct bpos pos, 3124 unsigned flags) 3125 { 3126 bch2_trans_iter_init_common(trans, iter, btree_id, pos, 0, 0, 3127 bch2_btree_iter_flags(trans, btree_id, 0, flags), 3128 _RET_IP_); 3129 } 3130 3131 void bch2_trans_node_iter_init(struct btree_trans *trans, 3132 struct btree_iter *iter, 3133 enum btree_id btree_id, 3134 struct bpos pos, 3135 unsigned locks_want, 3136 unsigned depth, 3137 unsigned flags) 3138 { 3139 flags |= BTREE_ITER_not_extents; 3140 flags |= BTREE_ITER_snapshot_field; 3141 flags |= BTREE_ITER_all_snapshots; 3142 3143 if (!depth && btree_id_cached(trans->c, btree_id)) 3144 flags |= BTREE_ITER_with_key_cache; 3145 3146 bch2_trans_iter_init_common(trans, iter, btree_id, pos, locks_want, depth, 3147 bch2_btree_iter_flags(trans, btree_id, depth, flags), 3148 _RET_IP_); 3149 3150 iter->min_depth = depth; 3151 3152 struct btree_path *path = btree_iter_path(trans, iter); 3153 BUG_ON(path->locks_want < min(locks_want, BTREE_MAX_DEPTH)); 3154 BUG_ON(path->level != depth); 3155 BUG_ON(iter->min_depth != depth); 3156 } 3157 3158 void bch2_trans_copy_iter(struct btree_trans *trans, 3159 struct btree_iter *dst, struct btree_iter *src) 3160 { 3161 *dst = *src; 3162 #ifdef TRACK_PATH_ALLOCATED 3163 dst->ip_allocated = _RET_IP_; 3164 #endif 3165 if (src->path) 3166 __btree_path_get(trans, trans->paths + src->path, src->flags & BTREE_ITER_intent); 3167 if (src->update_path) 3168 __btree_path_get(trans, trans->paths + src->update_path, src->flags & BTREE_ITER_intent); 3169 dst->key_cache_path = 0; 3170 } 3171 3172 #ifdef CONFIG_BCACHEFS_TRANS_KMALLOC_TRACE 3173 void bch2_trans_kmalloc_trace_to_text(struct printbuf *out, 3174 darray_trans_kmalloc_trace *trace) 3175 { 3176 printbuf_tabstops_reset(out); 3177 printbuf_tabstop_push(out, 60); 3178 3179 darray_for_each(*trace, i) 3180 prt_printf(out, "%pS\t%zu\n", (void *) i->ip, i->bytes); 3181 } 3182 #endif 3183 3184 void *__bch2_trans_kmalloc(struct btree_trans *trans, size_t size, unsigned long ip) 3185 { 3186 struct bch_fs *c = trans->c; 3187 unsigned new_top = trans->mem_top + size; 3188 unsigned old_bytes = trans->mem_bytes; 3189 unsigned new_bytes = roundup_pow_of_two(new_top); 3190 int ret; 3191 void *new_mem; 3192 void *p; 3193 3194 if (WARN_ON_ONCE(new_bytes > BTREE_TRANS_MEM_MAX)) { 3195 #ifdef CONFIG_BCACHEFS_TRANS_KMALLOC_TRACE 3196 struct printbuf buf = PRINTBUF; 3197 bch2_log_msg_start(c, &buf); 3198 prt_printf(&buf, "bump allocator exceeded BTREE_TRANS_MEM_MAX (%u)\n", 3199 BTREE_TRANS_MEM_MAX); 3200 3201 bch2_trans_kmalloc_trace_to_text(&buf, &trans->trans_kmalloc_trace); 3202 bch2_print_str(c, KERN_ERR, buf.buf); 3203 printbuf_exit(&buf); 3204 #endif 3205 } 3206 3207 ret = trans_maybe_inject_restart(trans, _RET_IP_); 3208 if (ret) 3209 return ERR_PTR(ret); 3210 3211 struct btree_transaction_stats *s = btree_trans_stats(trans); 3212 if (new_bytes > s->max_mem) { 3213 mutex_lock(&s->lock); 3214 #ifdef CONFIG_BCACHEFS_TRANS_KMALLOC_TRACE 3215 darray_resize(&s->trans_kmalloc_trace, trans->trans_kmalloc_trace.nr); 3216 s->trans_kmalloc_trace.nr = min(s->trans_kmalloc_trace.size, 3217 trans->trans_kmalloc_trace.nr); 3218 3219 memcpy(s->trans_kmalloc_trace.data, 3220 trans->trans_kmalloc_trace.data, 3221 sizeof(s->trans_kmalloc_trace.data[0]) * 3222 s->trans_kmalloc_trace.nr); 3223 #endif 3224 s->max_mem = new_bytes; 3225 mutex_unlock(&s->lock); 3226 } 3227 3228 if (trans->used_mempool || new_bytes > BTREE_TRANS_MEM_MAX) { 3229 EBUG_ON(trans->mem_bytes >= new_bytes); 3230 return ERR_PTR(-BCH_ERR_ENOMEM_trans_kmalloc); 3231 } 3232 3233 if (old_bytes) { 3234 trans->realloc_bytes_required = new_bytes; 3235 trace_and_count(c, trans_restart_mem_realloced, trans, _RET_IP_, new_bytes); 3236 return ERR_PTR(btree_trans_restart_ip(trans, 3237 BCH_ERR_transaction_restart_mem_realloced, _RET_IP_)); 3238 } 3239 3240 EBUG_ON(trans->mem); 3241 3242 new_mem = kmalloc(new_bytes, GFP_NOWAIT|__GFP_NOWARN); 3243 if (unlikely(!new_mem)) { 3244 bch2_trans_unlock(trans); 3245 3246 new_mem = kmalloc(new_bytes, GFP_KERNEL); 3247 if (!new_mem && new_bytes <= BTREE_TRANS_MEM_MAX) { 3248 new_mem = mempool_alloc(&c->btree_trans_mem_pool, GFP_KERNEL); 3249 new_bytes = BTREE_TRANS_MEM_MAX; 3250 trans->used_mempool = true; 3251 } 3252 3253 EBUG_ON(!new_mem); 3254 3255 trans->mem = new_mem; 3256 trans->mem_bytes = new_bytes; 3257 3258 ret = bch2_trans_relock(trans); 3259 if (ret) 3260 return ERR_PTR(ret); 3261 } 3262 3263 trans->mem = new_mem; 3264 trans->mem_bytes = new_bytes; 3265 3266 p = trans->mem + trans->mem_top; 3267 trans->mem_top += size; 3268 memset(p, 0, size); 3269 return p; 3270 } 3271 3272 static inline void check_srcu_held_too_long(struct btree_trans *trans) 3273 { 3274 WARN(trans->srcu_held && time_after(jiffies, trans->srcu_lock_time + HZ * 10), 3275 "btree trans held srcu lock (delaying memory reclaim) for %lu seconds", 3276 (jiffies - trans->srcu_lock_time) / HZ); 3277 } 3278 3279 void bch2_trans_srcu_unlock(struct btree_trans *trans) 3280 { 3281 if (trans->srcu_held) { 3282 struct bch_fs *c = trans->c; 3283 struct btree_path *path; 3284 unsigned i; 3285 3286 trans_for_each_path(trans, path, i) 3287 if (path->cached && !btree_node_locked(path, 0)) 3288 path->l[0].b = ERR_PTR(-BCH_ERR_no_btree_node_srcu_reset); 3289 3290 check_srcu_held_too_long(trans); 3291 srcu_read_unlock(&c->btree_trans_barrier, trans->srcu_idx); 3292 trans->srcu_held = false; 3293 } 3294 } 3295 3296 static void bch2_trans_srcu_lock(struct btree_trans *trans) 3297 { 3298 if (!trans->srcu_held) { 3299 trans->srcu_idx = srcu_read_lock(&trans->c->btree_trans_barrier); 3300 trans->srcu_lock_time = jiffies; 3301 trans->srcu_held = true; 3302 } 3303 } 3304 3305 /** 3306 * bch2_trans_begin() - reset a transaction after a interrupted attempt 3307 * @trans: transaction to reset 3308 * 3309 * Returns: current restart counter, to be used with trans_was_restarted() 3310 * 3311 * While iterating over nodes or updating nodes a attempt to lock a btree node 3312 * may return BCH_ERR_transaction_restart when the trylock fails. When this 3313 * occurs bch2_trans_begin() should be called and the transaction retried. 3314 */ 3315 u32 bch2_trans_begin(struct btree_trans *trans) 3316 { 3317 struct btree_path *path; 3318 unsigned i; 3319 u64 now; 3320 3321 bch2_trans_reset_updates(trans); 3322 3323 trans->restart_count++; 3324 trans->mem_top = 0; 3325 3326 if (trans->restarted == BCH_ERR_transaction_restart_mem_realloced) { 3327 EBUG_ON(!trans->mem || !trans->mem_bytes); 3328 unsigned new_bytes = trans->realloc_bytes_required; 3329 void *new_mem = krealloc(trans->mem, new_bytes, GFP_NOWAIT|__GFP_NOWARN); 3330 if (unlikely(!new_mem)) { 3331 bch2_trans_unlock(trans); 3332 new_mem = krealloc(trans->mem, new_bytes, GFP_KERNEL); 3333 3334 EBUG_ON(new_bytes > BTREE_TRANS_MEM_MAX); 3335 3336 if (!new_mem) { 3337 new_mem = mempool_alloc(&trans->c->btree_trans_mem_pool, GFP_KERNEL); 3338 new_bytes = BTREE_TRANS_MEM_MAX; 3339 trans->used_mempool = true; 3340 kfree(trans->mem); 3341 } 3342 } 3343 trans->mem = new_mem; 3344 trans->mem_bytes = new_bytes; 3345 } 3346 3347 trans_for_each_path(trans, path, i) { 3348 path->should_be_locked = false; 3349 3350 /* 3351 * If the transaction wasn't restarted, we're presuming to be 3352 * doing something new: dont keep iterators excpt the ones that 3353 * are in use - except for the subvolumes btree: 3354 */ 3355 if (!trans->restarted && path->btree_id != BTREE_ID_subvolumes) 3356 path->preserve = false; 3357 3358 /* 3359 * XXX: we probably shouldn't be doing this if the transaction 3360 * was restarted, but currently we still overflow transaction 3361 * iterators if we do that 3362 */ 3363 if (!path->ref && !path->preserve) 3364 __bch2_path_free(trans, i); 3365 else 3366 path->preserve = false; 3367 } 3368 3369 now = local_clock(); 3370 3371 if (!IS_ENABLED(CONFIG_BCACHEFS_NO_LATENCY_ACCT) && 3372 time_after64(now, trans->last_begin_time + 10)) 3373 __bch2_time_stats_update(&btree_trans_stats(trans)->duration, 3374 trans->last_begin_time, now); 3375 3376 if (!trans->restarted && 3377 (need_resched() || 3378 time_after64(now, trans->last_begin_time + BTREE_TRANS_MAX_LOCK_HOLD_TIME_NS))) { 3379 bch2_trans_unlock(trans); 3380 cond_resched(); 3381 now = local_clock(); 3382 } 3383 trans->last_begin_time = now; 3384 3385 if (unlikely(trans->srcu_held && 3386 time_after(jiffies, trans->srcu_lock_time + msecs_to_jiffies(10)))) 3387 bch2_trans_srcu_unlock(trans); 3388 3389 trans->last_begin_ip = _RET_IP_; 3390 3391 #ifdef CONFIG_BCACHEFS_INJECT_TRANSACTION_RESTARTS 3392 if (trans->restarted) { 3393 trans->restart_count_this_trans++; 3394 } else { 3395 trans->restart_count_this_trans = 0; 3396 } 3397 #endif 3398 3399 #ifdef CONFIG_BCACHEFS_TRANS_KMALLOC_TRACE 3400 trans->trans_kmalloc_trace.nr = 0; 3401 #endif 3402 3403 trans_set_locked(trans, false); 3404 3405 if (trans->restarted) { 3406 bch2_btree_path_traverse_all(trans); 3407 trans->notrace_relock_fail = false; 3408 } 3409 3410 bch2_trans_verify_not_unlocked_or_in_restart(trans); 3411 return trans->restart_count; 3412 } 3413 3414 const char *bch2_btree_transaction_fns[BCH_TRANSACTIONS_NR] = { "(unknown)" }; 3415 3416 unsigned bch2_trans_get_fn_idx(const char *fn) 3417 { 3418 for (unsigned i = 0; i < ARRAY_SIZE(bch2_btree_transaction_fns); i++) 3419 if (!bch2_btree_transaction_fns[i] || 3420 bch2_btree_transaction_fns[i] == fn) { 3421 bch2_btree_transaction_fns[i] = fn; 3422 return i; 3423 } 3424 3425 pr_warn_once("BCH_TRANSACTIONS_NR not big enough!"); 3426 return 0; 3427 } 3428 3429 struct btree_trans *__bch2_trans_get(struct bch_fs *c, unsigned fn_idx) 3430 __acquires(&c->btree_trans_barrier) 3431 { 3432 struct btree_trans *trans; 3433 3434 if (IS_ENABLED(__KERNEL__)) { 3435 trans = this_cpu_xchg(c->btree_trans_bufs->trans, NULL); 3436 if (trans) { 3437 memset(trans, 0, offsetof(struct btree_trans, list)); 3438 goto got_trans; 3439 } 3440 } 3441 3442 trans = mempool_alloc(&c->btree_trans_pool, GFP_NOFS); 3443 memset(trans, 0, sizeof(*trans)); 3444 3445 seqmutex_lock(&c->btree_trans_lock); 3446 if (IS_ENABLED(CONFIG_BCACHEFS_DEBUG)) { 3447 struct btree_trans *pos; 3448 pid_t pid = current->pid; 3449 3450 trans->locking_wait.task = current; 3451 3452 list_for_each_entry(pos, &c->btree_trans_list, list) { 3453 struct task_struct *pos_task = READ_ONCE(pos->locking_wait.task); 3454 /* 3455 * We'd much prefer to be stricter here and completely 3456 * disallow multiple btree_trans in the same thread - 3457 * but the data move path calls bch2_write when we 3458 * already have a btree_trans initialized. 3459 */ 3460 BUG_ON(pos_task && 3461 pid == pos_task->pid && 3462 pos->locked); 3463 } 3464 } 3465 3466 list_add(&trans->list, &c->btree_trans_list); 3467 seqmutex_unlock(&c->btree_trans_lock); 3468 got_trans: 3469 trans->c = c; 3470 trans->last_begin_time = local_clock(); 3471 trans->fn_idx = fn_idx; 3472 trans->locking_wait.task = current; 3473 trans->journal_replay_not_finished = 3474 unlikely(!test_bit(JOURNAL_replay_done, &c->journal.flags)) && 3475 atomic_inc_not_zero(&c->journal_keys.ref); 3476 trans->nr_paths = ARRAY_SIZE(trans->_paths); 3477 trans->paths_allocated = trans->_paths_allocated; 3478 trans->sorted = trans->_sorted; 3479 trans->paths = trans->_paths; 3480 trans->updates = trans->_updates; 3481 3482 *trans_paths_nr(trans->paths) = BTREE_ITER_INITIAL; 3483 3484 trans->paths_allocated[0] = 1; 3485 3486 static struct lock_class_key lockdep_key; 3487 lockdep_init_map(&trans->dep_map, "bcachefs_btree", &lockdep_key, 0); 3488 3489 if (fn_idx < BCH_TRANSACTIONS_NR) { 3490 trans->fn = bch2_btree_transaction_fns[fn_idx]; 3491 3492 struct btree_transaction_stats *s = &c->btree_transaction_stats[fn_idx]; 3493 3494 if (s->max_mem) { 3495 unsigned expected_mem_bytes = roundup_pow_of_two(s->max_mem); 3496 3497 trans->mem = kmalloc(expected_mem_bytes, GFP_KERNEL); 3498 if (likely(trans->mem)) 3499 trans->mem_bytes = expected_mem_bytes; 3500 } 3501 3502 trans->nr_paths_max = s->nr_max_paths; 3503 } 3504 3505 trans->srcu_idx = srcu_read_lock(&c->btree_trans_barrier); 3506 trans->srcu_lock_time = jiffies; 3507 trans->srcu_held = true; 3508 trans_set_locked(trans, false); 3509 3510 closure_init_stack_release(&trans->ref); 3511 return trans; 3512 } 3513 3514 #ifdef CONFIG_BCACHEFS_DEBUG 3515 3516 static bool btree_paths_leaked(struct btree_trans *trans) 3517 { 3518 struct btree_path *path; 3519 unsigned i; 3520 3521 trans_for_each_path(trans, path, i) 3522 if (path->ref) 3523 return true; 3524 return false; 3525 } 3526 3527 static void check_btree_paths_leaked(struct btree_trans *trans) 3528 { 3529 if (btree_paths_leaked(trans)) { 3530 struct bch_fs *c = trans->c; 3531 struct btree_path *path; 3532 unsigned i; 3533 3534 struct printbuf buf = PRINTBUF; 3535 bch2_log_msg_start(c, &buf); 3536 3537 prt_printf(&buf, "btree paths leaked from %s!\n", trans->fn); 3538 trans_for_each_path(trans, path, i) 3539 if (path->ref) 3540 prt_printf(&buf, "btree %s %pS\n", 3541 bch2_btree_id_str(path->btree_id), 3542 (void *) path->ip_allocated); 3543 3544 bch2_fs_emergency_read_only2(c, &buf); 3545 bch2_print_str(c, KERN_ERR, buf.buf); 3546 printbuf_exit(&buf); 3547 } 3548 } 3549 #else 3550 static inline void check_btree_paths_leaked(struct btree_trans *trans) {} 3551 #endif 3552 3553 void bch2_trans_put(struct btree_trans *trans) 3554 __releases(&c->btree_trans_barrier) 3555 { 3556 struct bch_fs *c = trans->c; 3557 3558 if (trans->restarted) 3559 bch2_trans_in_restart_error(trans); 3560 3561 bch2_trans_unlock(trans); 3562 3563 trans_for_each_update(trans, i) 3564 __btree_path_put(trans, trans->paths + i->path, true); 3565 trans->nr_updates = 0; 3566 3567 check_btree_paths_leaked(trans); 3568 3569 if (trans->srcu_held) { 3570 check_srcu_held_too_long(trans); 3571 srcu_read_unlock(&c->btree_trans_barrier, trans->srcu_idx); 3572 } 3573 3574 if (unlikely(trans->journal_replay_not_finished)) 3575 bch2_journal_keys_put(c); 3576 3577 /* 3578 * trans->ref protects trans->locking_wait.task, btree_paths array; used 3579 * by cycle detector 3580 */ 3581 closure_return_sync(&trans->ref); 3582 trans->locking_wait.task = NULL; 3583 3584 #ifdef CONFIG_BCACHEFS_DEBUG 3585 darray_exit(&trans->last_restarted_trace); 3586 #endif 3587 #ifdef CONFIG_BCACHEFS_TRANS_KMALLOC_TRACE 3588 darray_exit(&trans->trans_kmalloc_trace); 3589 #endif 3590 3591 unsigned long *paths_allocated = trans->paths_allocated; 3592 trans->paths_allocated = NULL; 3593 trans->paths = NULL; 3594 3595 if (paths_allocated != trans->_paths_allocated) 3596 kvfree_rcu_mightsleep(paths_allocated); 3597 3598 if (trans->used_mempool) 3599 mempool_free(trans->mem, &c->btree_trans_mem_pool); 3600 else 3601 kfree(trans->mem); 3602 3603 /* Userspace doesn't have a real percpu implementation: */ 3604 if (IS_ENABLED(__KERNEL__)) 3605 trans = this_cpu_xchg(c->btree_trans_bufs->trans, trans); 3606 3607 if (trans) { 3608 seqmutex_lock(&c->btree_trans_lock); 3609 list_del(&trans->list); 3610 seqmutex_unlock(&c->btree_trans_lock); 3611 3612 mempool_free(trans, &c->btree_trans_pool); 3613 } 3614 } 3615 3616 bool bch2_current_has_btree_trans(struct bch_fs *c) 3617 { 3618 seqmutex_lock(&c->btree_trans_lock); 3619 struct btree_trans *trans; 3620 bool ret = false; 3621 list_for_each_entry(trans, &c->btree_trans_list, list) 3622 if (trans->locking_wait.task == current && 3623 trans->locked) { 3624 ret = true; 3625 break; 3626 } 3627 seqmutex_unlock(&c->btree_trans_lock); 3628 return ret; 3629 } 3630 3631 static void __maybe_unused 3632 bch2_btree_bkey_cached_common_to_text(struct printbuf *out, 3633 struct btree_bkey_cached_common *b) 3634 { 3635 struct six_lock_count c = six_lock_counts(&b->lock); 3636 pid_t pid; 3637 3638 scoped_guard(rcu) { 3639 struct task_struct *owner = READ_ONCE(b->lock.owner); 3640 pid = owner ? owner->pid : 0; 3641 } 3642 3643 prt_printf(out, "\t%px %c ", b, b->cached ? 'c' : 'b'); 3644 bch2_btree_id_to_text(out, b->btree_id); 3645 prt_printf(out, " l=%u:", b->level); 3646 bch2_bpos_to_text(out, btree_node_pos(b)); 3647 3648 prt_printf(out, "\t locks %u:%u:%u held by pid %u", 3649 c.n[0], c.n[1], c.n[2], pid); 3650 } 3651 3652 void bch2_btree_trans_to_text(struct printbuf *out, struct btree_trans *trans) 3653 { 3654 struct btree_bkey_cached_common *b; 3655 static char lock_types[] = { 'r', 'i', 'w' }; 3656 struct task_struct *task = READ_ONCE(trans->locking_wait.task); 3657 unsigned l, idx; 3658 3659 /* before rcu_read_lock(): */ 3660 bch2_printbuf_make_room(out, 4096); 3661 3662 if (!out->nr_tabstops) { 3663 printbuf_tabstop_push(out, 16); 3664 printbuf_tabstop_push(out, 32); 3665 } 3666 3667 prt_printf(out, "%i %s\n", task ? task->pid : 0, trans->fn); 3668 3669 /* trans->paths is rcu protected vs. freeing */ 3670 guard(rcu)(); 3671 out->atomic++; 3672 3673 struct btree_path *paths = rcu_dereference(trans->paths); 3674 if (!paths) 3675 goto out; 3676 3677 unsigned long *paths_allocated = trans_paths_allocated(paths); 3678 3679 trans_for_each_path_idx_from(paths_allocated, *trans_paths_nr(paths), idx, 1) { 3680 struct btree_path *path = paths + idx; 3681 if (!path->nodes_locked) 3682 continue; 3683 3684 prt_printf(out, " path %u %c ", 3685 idx, 3686 path->cached ? 'c' : 'b'); 3687 bch2_btree_id_to_text(out, path->btree_id); 3688 prt_printf(out, " l=%u:", path->level); 3689 bch2_bpos_to_text(out, path->pos); 3690 prt_newline(out); 3691 3692 for (l = 0; l < BTREE_MAX_DEPTH; l++) { 3693 if (btree_node_locked(path, l) && 3694 !IS_ERR_OR_NULL(b = (void *) READ_ONCE(path->l[l].b))) { 3695 prt_printf(out, " %c l=%u ", 3696 lock_types[btree_node_locked_type(path, l)], l); 3697 bch2_btree_bkey_cached_common_to_text(out, b); 3698 prt_newline(out); 3699 } 3700 } 3701 } 3702 3703 b = READ_ONCE(trans->locking); 3704 if (b) { 3705 prt_printf(out, " blocked for %lluus on\n", 3706 div_u64(local_clock() - trans->locking_wait.start_time, 1000)); 3707 prt_printf(out, " %c", lock_types[trans->locking_wait.lock_want]); 3708 bch2_btree_bkey_cached_common_to_text(out, b); 3709 prt_newline(out); 3710 } 3711 out: 3712 --out->atomic; 3713 } 3714 3715 void bch2_fs_btree_iter_exit(struct bch_fs *c) 3716 { 3717 struct btree_transaction_stats *s; 3718 struct btree_trans *trans; 3719 int cpu; 3720 3721 if (c->btree_trans_bufs) 3722 for_each_possible_cpu(cpu) { 3723 struct btree_trans *trans = 3724 per_cpu_ptr(c->btree_trans_bufs, cpu)->trans; 3725 3726 if (trans) { 3727 seqmutex_lock(&c->btree_trans_lock); 3728 list_del(&trans->list); 3729 seqmutex_unlock(&c->btree_trans_lock); 3730 } 3731 kfree(trans); 3732 } 3733 free_percpu(c->btree_trans_bufs); 3734 3735 trans = list_first_entry_or_null(&c->btree_trans_list, struct btree_trans, list); 3736 if (trans) 3737 panic("%s leaked btree_trans\n", trans->fn); 3738 3739 for (s = c->btree_transaction_stats; 3740 s < c->btree_transaction_stats + ARRAY_SIZE(c->btree_transaction_stats); 3741 s++) { 3742 #ifdef CONFIG_BCACHEFS_TRANS_KMALLOC_TRACE 3743 darray_exit(&s->trans_kmalloc_trace); 3744 #endif 3745 kfree(s->max_paths_text); 3746 bch2_time_stats_exit(&s->lock_hold_times); 3747 } 3748 3749 if (c->btree_trans_barrier_initialized) { 3750 synchronize_srcu_expedited(&c->btree_trans_barrier); 3751 cleanup_srcu_struct(&c->btree_trans_barrier); 3752 } 3753 mempool_exit(&c->btree_trans_mem_pool); 3754 mempool_exit(&c->btree_trans_pool); 3755 } 3756 3757 void bch2_fs_btree_iter_init_early(struct bch_fs *c) 3758 { 3759 struct btree_transaction_stats *s; 3760 3761 for (s = c->btree_transaction_stats; 3762 s < c->btree_transaction_stats + ARRAY_SIZE(c->btree_transaction_stats); 3763 s++) { 3764 bch2_time_stats_init(&s->duration); 3765 bch2_time_stats_init(&s->lock_hold_times); 3766 mutex_init(&s->lock); 3767 } 3768 3769 INIT_LIST_HEAD(&c->btree_trans_list); 3770 seqmutex_init(&c->btree_trans_lock); 3771 } 3772 3773 int bch2_fs_btree_iter_init(struct bch_fs *c) 3774 { 3775 int ret; 3776 3777 c->btree_trans_bufs = alloc_percpu(struct btree_trans_buf); 3778 if (!c->btree_trans_bufs) 3779 return -ENOMEM; 3780 3781 ret = mempool_init_kmalloc_pool(&c->btree_trans_pool, 1, 3782 sizeof(struct btree_trans)) ?: 3783 mempool_init_kmalloc_pool(&c->btree_trans_mem_pool, 1, 3784 BTREE_TRANS_MEM_MAX) ?: 3785 init_srcu_struct(&c->btree_trans_barrier); 3786 if (ret) 3787 return ret; 3788 3789 /* 3790 * static annotation (hackily done) for lock ordering of reclaim vs. 3791 * btree node locks: 3792 */ 3793 #ifdef CONFIG_LOCKDEP 3794 fs_reclaim_acquire(GFP_KERNEL); 3795 struct btree_trans *trans = bch2_trans_get(c); 3796 trans_set_locked(trans, false); 3797 bch2_trans_put(trans); 3798 fs_reclaim_release(GFP_KERNEL); 3799 #endif 3800 3801 c->btree_trans_barrier_initialized = true; 3802 return 0; 3803 3804 } 3805