1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * Code for manipulating bucket marks for garbage collection. 4 * 5 * Copyright 2014 Datera, Inc. 6 */ 7 8 #include "bcachefs.h" 9 #include "alloc_background.h" 10 #include "backpointers.h" 11 #include "bset.h" 12 #include "btree_gc.h" 13 #include "btree_update.h" 14 #include "buckets.h" 15 #include "buckets_waiting_for_journal.h" 16 #include "disk_accounting.h" 17 #include "ec.h" 18 #include "error.h" 19 #include "inode.h" 20 #include "movinggc.h" 21 #include "rebalance.h" 22 #include "recovery.h" 23 #include "recovery_passes.h" 24 #include "reflink.h" 25 #include "replicas.h" 26 #include "subvolume.h" 27 #include "trace.h" 28 29 #include <linux/preempt.h> 30 31 void bch2_dev_usage_read_fast(struct bch_dev *ca, struct bch_dev_usage *usage) 32 { 33 for (unsigned i = 0; i < BCH_DATA_NR; i++) 34 usage->buckets[i] = percpu_u64_get(&ca->usage->d[i].buckets); 35 } 36 37 void bch2_dev_usage_full_read_fast(struct bch_dev *ca, struct bch_dev_usage_full *usage) 38 { 39 memset(usage, 0, sizeof(*usage)); 40 acc_u64s_percpu((u64 *) usage, (u64 __percpu *) ca->usage, 41 sizeof(struct bch_dev_usage_full) / sizeof(u64)); 42 } 43 44 static u64 reserve_factor(u64 r) 45 { 46 return r + (round_up(r, (1 << RESERVE_FACTOR)) >> RESERVE_FACTOR); 47 } 48 49 static struct bch_fs_usage_short 50 __bch2_fs_usage_read_short(struct bch_fs *c) 51 { 52 struct bch_fs_usage_short ret; 53 u64 data, reserved; 54 55 ret.capacity = c->capacity - 56 percpu_u64_get(&c->usage->hidden); 57 58 data = percpu_u64_get(&c->usage->data) + 59 percpu_u64_get(&c->usage->btree); 60 reserved = percpu_u64_get(&c->usage->reserved) + 61 percpu_u64_get(c->online_reserved); 62 63 ret.used = min(ret.capacity, data + reserve_factor(reserved)); 64 ret.free = ret.capacity - ret.used; 65 66 ret.nr_inodes = percpu_u64_get(&c->usage->nr_inodes); 67 68 return ret; 69 } 70 71 struct bch_fs_usage_short 72 bch2_fs_usage_read_short(struct bch_fs *c) 73 { 74 struct bch_fs_usage_short ret; 75 76 percpu_down_read(&c->mark_lock); 77 ret = __bch2_fs_usage_read_short(c); 78 percpu_up_read(&c->mark_lock); 79 80 return ret; 81 } 82 83 void bch2_dev_usage_to_text(struct printbuf *out, 84 struct bch_dev *ca, 85 struct bch_dev_usage_full *usage) 86 { 87 if (out->nr_tabstops < 5) { 88 printbuf_tabstops_reset(out); 89 printbuf_tabstop_push(out, 12); 90 printbuf_tabstop_push(out, 16); 91 printbuf_tabstop_push(out, 16); 92 printbuf_tabstop_push(out, 16); 93 printbuf_tabstop_push(out, 16); 94 } 95 96 prt_printf(out, "\tbuckets\rsectors\rfragmented\r\n"); 97 98 for (unsigned i = 0; i < BCH_DATA_NR; i++) { 99 bch2_prt_data_type(out, i); 100 prt_printf(out, "\t%llu\r%llu\r%llu\r\n", 101 usage->d[i].buckets, 102 usage->d[i].sectors, 103 usage->d[i].fragmented); 104 } 105 106 prt_printf(out, "capacity\t%llu\r\n", ca->mi.nbuckets); 107 } 108 109 static int bch2_check_fix_ptr(struct btree_trans *trans, 110 struct bkey_s_c k, 111 struct extent_ptr_decoded p, 112 const union bch_extent_entry *entry, 113 bool *do_update) 114 { 115 struct bch_fs *c = trans->c; 116 struct printbuf buf = PRINTBUF; 117 int ret = 0; 118 119 struct bch_dev *ca = bch2_dev_tryget(c, p.ptr.dev); 120 if (!ca) { 121 if (fsck_err_on(p.ptr.dev != BCH_SB_MEMBER_INVALID, 122 trans, ptr_to_invalid_device, 123 "pointer to missing device %u\n" 124 "while marking %s", 125 p.ptr.dev, 126 (printbuf_reset(&buf), 127 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) 128 *do_update = true; 129 return 0; 130 } 131 132 struct bucket *g = PTR_GC_BUCKET(ca, &p.ptr); 133 if (!g) { 134 if (fsck_err(trans, ptr_to_invalid_device, 135 "pointer to invalid bucket on device %u\n" 136 "while marking %s", 137 p.ptr.dev, 138 (printbuf_reset(&buf), 139 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) 140 *do_update = true; 141 goto out; 142 } 143 144 enum bch_data_type data_type = bch2_bkey_ptr_data_type(k, p, entry); 145 146 if (fsck_err_on(!g->gen_valid, 147 trans, ptr_to_missing_alloc_key, 148 "bucket %u:%zu data type %s ptr gen %u missing in alloc btree\n" 149 "while marking %s", 150 p.ptr.dev, PTR_BUCKET_NR(ca, &p.ptr), 151 bch2_data_type_str(ptr_data_type(k.k, &p.ptr)), 152 p.ptr.gen, 153 (printbuf_reset(&buf), 154 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) { 155 if (!p.ptr.cached) { 156 g->gen_valid = true; 157 g->gen = p.ptr.gen; 158 } else { 159 *do_update = true; 160 } 161 } 162 163 if (fsck_err_on(gen_cmp(p.ptr.gen, g->gen) > 0, 164 trans, ptr_gen_newer_than_bucket_gen, 165 "bucket %u:%zu data type %s ptr gen in the future: %u > %u\n" 166 "while marking %s", 167 p.ptr.dev, PTR_BUCKET_NR(ca, &p.ptr), 168 bch2_data_type_str(ptr_data_type(k.k, &p.ptr)), 169 p.ptr.gen, g->gen, 170 (printbuf_reset(&buf), 171 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) { 172 if (!p.ptr.cached && 173 (g->data_type != BCH_DATA_btree || 174 data_type == BCH_DATA_btree)) { 175 g->gen_valid = true; 176 g->gen = p.ptr.gen; 177 g->data_type = 0; 178 g->stripe_sectors = 0; 179 g->dirty_sectors = 0; 180 g->cached_sectors = 0; 181 } else { 182 *do_update = true; 183 } 184 } 185 186 if (fsck_err_on(gen_cmp(g->gen, p.ptr.gen) > BUCKET_GC_GEN_MAX, 187 trans, ptr_gen_newer_than_bucket_gen, 188 "bucket %u:%zu gen %u data type %s: ptr gen %u too stale\n" 189 "while marking %s", 190 p.ptr.dev, PTR_BUCKET_NR(ca, &p.ptr), g->gen, 191 bch2_data_type_str(ptr_data_type(k.k, &p.ptr)), 192 p.ptr.gen, 193 (printbuf_reset(&buf), 194 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) 195 *do_update = true; 196 197 if (fsck_err_on(!p.ptr.cached && gen_cmp(p.ptr.gen, g->gen) < 0, 198 trans, stale_dirty_ptr, 199 "bucket %u:%zu data type %s stale dirty ptr: %u < %u\n" 200 "while marking %s", 201 p.ptr.dev, PTR_BUCKET_NR(ca, &p.ptr), 202 bch2_data_type_str(ptr_data_type(k.k, &p.ptr)), 203 p.ptr.gen, g->gen, 204 (printbuf_reset(&buf), 205 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) 206 *do_update = true; 207 208 if (data_type != BCH_DATA_btree && p.ptr.gen != g->gen) 209 goto out; 210 211 if (fsck_err_on(bucket_data_type_mismatch(g->data_type, data_type), 212 trans, ptr_bucket_data_type_mismatch, 213 "bucket %u:%zu gen %u different types of data in same bucket: %s, %s\n" 214 "while marking %s", 215 p.ptr.dev, PTR_BUCKET_NR(ca, &p.ptr), g->gen, 216 bch2_data_type_str(g->data_type), 217 bch2_data_type_str(data_type), 218 (printbuf_reset(&buf), 219 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) { 220 if (data_type == BCH_DATA_btree) { 221 g->gen_valid = true; 222 g->gen = p.ptr.gen; 223 g->data_type = data_type; 224 g->stripe_sectors = 0; 225 g->dirty_sectors = 0; 226 g->cached_sectors = 0; 227 } else { 228 *do_update = true; 229 } 230 } 231 232 if (p.has_ec) { 233 struct gc_stripe *m = genradix_ptr(&c->gc_stripes, p.ec.idx); 234 235 if (fsck_err_on(!m || !m->alive, 236 trans, ptr_to_missing_stripe, 237 "pointer to nonexistent stripe %llu\n" 238 "while marking %s", 239 (u64) p.ec.idx, 240 (printbuf_reset(&buf), 241 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) 242 *do_update = true; 243 244 if (fsck_err_on(m && m->alive && !bch2_ptr_matches_stripe_m(m, p), 245 trans, ptr_to_incorrect_stripe, 246 "pointer does not match stripe %llu\n" 247 "while marking %s", 248 (u64) p.ec.idx, 249 (printbuf_reset(&buf), 250 bch2_bkey_val_to_text(&buf, c, k), buf.buf))) 251 *do_update = true; 252 } 253 out: 254 fsck_err: 255 bch2_dev_put(ca); 256 printbuf_exit(&buf); 257 return ret; 258 } 259 260 int bch2_check_fix_ptrs(struct btree_trans *trans, 261 enum btree_id btree, unsigned level, struct bkey_s_c k, 262 enum btree_iter_update_trigger_flags flags) 263 { 264 struct bch_fs *c = trans->c; 265 struct bkey_ptrs_c ptrs_c = bch2_bkey_ptrs_c(k); 266 const union bch_extent_entry *entry_c; 267 struct extent_ptr_decoded p = { 0 }; 268 bool do_update = false; 269 struct printbuf buf = PRINTBUF; 270 int ret = 0; 271 272 bkey_for_each_ptr_decode(k.k, ptrs_c, p, entry_c) { 273 ret = bch2_check_fix_ptr(trans, k, p, entry_c, &do_update); 274 if (ret) 275 goto err; 276 } 277 278 if (do_update) { 279 if (flags & BTREE_TRIGGER_is_root) { 280 bch_err(c, "cannot update btree roots yet"); 281 ret = -EINVAL; 282 goto err; 283 } 284 285 struct bkey_i *new = bch2_bkey_make_mut_noupdate(trans, k); 286 ret = PTR_ERR_OR_ZERO(new); 287 if (ret) 288 goto err; 289 290 rcu_read_lock(); 291 bch2_bkey_drop_ptrs(bkey_i_to_s(new), ptr, !bch2_dev_exists(c, ptr->dev)); 292 rcu_read_unlock(); 293 294 if (level) { 295 /* 296 * We don't want to drop btree node pointers - if the 297 * btree node isn't there anymore, the read path will 298 * sort it out: 299 */ 300 struct bkey_ptrs ptrs = bch2_bkey_ptrs(bkey_i_to_s(new)); 301 rcu_read_lock(); 302 bkey_for_each_ptr(ptrs, ptr) { 303 struct bch_dev *ca = bch2_dev_rcu(c, ptr->dev); 304 struct bucket *g = PTR_GC_BUCKET(ca, ptr); 305 306 ptr->gen = g->gen; 307 } 308 rcu_read_unlock(); 309 } else { 310 struct bkey_ptrs ptrs; 311 union bch_extent_entry *entry; 312 313 rcu_read_lock(); 314 restart_drop_ptrs: 315 ptrs = bch2_bkey_ptrs(bkey_i_to_s(new)); 316 bkey_for_each_ptr_decode(bkey_i_to_s(new).k, ptrs, p, entry) { 317 struct bch_dev *ca = bch2_dev_rcu(c, p.ptr.dev); 318 struct bucket *g = PTR_GC_BUCKET(ca, &p.ptr); 319 enum bch_data_type data_type = bch2_bkey_ptr_data_type(bkey_i_to_s_c(new), p, entry); 320 321 if ((p.ptr.cached && 322 (!g->gen_valid || gen_cmp(p.ptr.gen, g->gen) > 0)) || 323 (!p.ptr.cached && 324 gen_cmp(p.ptr.gen, g->gen) < 0) || 325 gen_cmp(g->gen, p.ptr.gen) > BUCKET_GC_GEN_MAX || 326 (g->data_type && 327 g->data_type != data_type)) { 328 bch2_bkey_drop_ptr(bkey_i_to_s(new), &entry->ptr); 329 goto restart_drop_ptrs; 330 } 331 } 332 rcu_read_unlock(); 333 again: 334 ptrs = bch2_bkey_ptrs(bkey_i_to_s(new)); 335 bkey_extent_entry_for_each(ptrs, entry) { 336 if (extent_entry_type(entry) == BCH_EXTENT_ENTRY_stripe_ptr) { 337 struct gc_stripe *m = genradix_ptr(&c->gc_stripes, 338 entry->stripe_ptr.idx); 339 union bch_extent_entry *next_ptr; 340 341 bkey_extent_entry_for_each_from(ptrs, next_ptr, entry) 342 if (extent_entry_type(next_ptr) == BCH_EXTENT_ENTRY_ptr) 343 goto found; 344 next_ptr = NULL; 345 found: 346 if (!next_ptr) { 347 bch_err(c, "aieee, found stripe ptr with no data ptr"); 348 continue; 349 } 350 351 if (!m || !m->alive || 352 !__bch2_ptr_matches_stripe(&m->ptrs[entry->stripe_ptr.block], 353 &next_ptr->ptr, 354 m->sectors)) { 355 bch2_bkey_extent_entry_drop(new, entry); 356 goto again; 357 } 358 } 359 } 360 } 361 362 if (0) { 363 printbuf_reset(&buf); 364 bch2_bkey_val_to_text(&buf, c, k); 365 bch_info(c, "updated %s", buf.buf); 366 367 printbuf_reset(&buf); 368 bch2_bkey_val_to_text(&buf, c, bkey_i_to_s_c(new)); 369 bch_info(c, "new key %s", buf.buf); 370 } 371 372 struct btree_iter iter; 373 bch2_trans_node_iter_init(trans, &iter, btree, new->k.p, 0, level, 374 BTREE_ITER_intent|BTREE_ITER_all_snapshots); 375 ret = bch2_btree_iter_traverse(trans, &iter) ?: 376 bch2_trans_update(trans, &iter, new, 377 BTREE_UPDATE_internal_snapshot_node| 378 BTREE_TRIGGER_norun); 379 bch2_trans_iter_exit(trans, &iter); 380 if (ret) 381 goto err; 382 383 if (level) 384 bch2_btree_node_update_key_early(trans, btree, level - 1, k, new); 385 } 386 err: 387 printbuf_exit(&buf); 388 return ret; 389 } 390 391 static int bucket_ref_update_err(struct btree_trans *trans, struct printbuf *buf, 392 struct bkey_s_c k, bool insert, enum bch_sb_error_id id) 393 { 394 struct bch_fs *c = trans->c; 395 bool repeat = false, print = true, suppress = false; 396 397 prt_printf(buf, "\nwhile marking "); 398 bch2_bkey_val_to_text(buf, c, k); 399 prt_newline(buf); 400 401 __bch2_count_fsck_err(c, id, buf->buf, &repeat, &print, &suppress); 402 403 int ret = bch2_run_explicit_recovery_pass(c, BCH_RECOVERY_PASS_check_allocations); 404 405 if (insert) { 406 print = true; 407 suppress = false; 408 409 bch2_trans_updates_to_text(buf, trans); 410 __bch2_inconsistent_error(c, buf); 411 ret = -BCH_ERR_bucket_ref_update; 412 } 413 414 if (suppress) 415 prt_printf(buf, "Ratelimiting new instances of previous error\n"); 416 if (print) 417 bch2_print_string_as_lines(KERN_ERR, buf->buf); 418 return ret; 419 } 420 421 int bch2_bucket_ref_update(struct btree_trans *trans, struct bch_dev *ca, 422 struct bkey_s_c k, 423 const struct bch_extent_ptr *ptr, 424 s64 sectors, enum bch_data_type ptr_data_type, 425 u8 b_gen, u8 bucket_data_type, 426 u32 *bucket_sectors) 427 { 428 struct bch_fs *c = trans->c; 429 size_t bucket_nr = PTR_BUCKET_NR(ca, ptr); 430 struct printbuf buf = PRINTBUF; 431 bool inserting = sectors > 0; 432 int ret = 0; 433 434 BUG_ON(!sectors); 435 436 if (unlikely(gen_after(ptr->gen, b_gen))) { 437 bch2_log_msg_start(c, &buf); 438 prt_printf(&buf, 439 "bucket %u:%zu gen %u data type %s: ptr gen %u newer than bucket gen", 440 ptr->dev, bucket_nr, b_gen, 441 bch2_data_type_str(bucket_data_type ?: ptr_data_type), 442 ptr->gen); 443 444 ret = bucket_ref_update_err(trans, &buf, k, inserting, 445 BCH_FSCK_ERR_ptr_gen_newer_than_bucket_gen); 446 goto out; 447 } 448 449 if (unlikely(gen_cmp(b_gen, ptr->gen) > BUCKET_GC_GEN_MAX)) { 450 bch2_log_msg_start(c, &buf); 451 prt_printf(&buf, 452 "bucket %u:%zu gen %u data type %s: ptr gen %u too stale", 453 ptr->dev, bucket_nr, b_gen, 454 bch2_data_type_str(bucket_data_type ?: ptr_data_type), 455 ptr->gen); 456 457 ret = bucket_ref_update_err(trans, &buf, k, inserting, 458 BCH_FSCK_ERR_ptr_too_stale); 459 goto out; 460 } 461 462 if (b_gen != ptr->gen && ptr->cached) { 463 ret = 1; 464 goto out; 465 } 466 467 if (unlikely(b_gen != ptr->gen)) { 468 bch2_log_msg_start(c, &buf); 469 prt_printf(&buf, 470 "bucket %u:%zu gen %u (mem gen %u) data type %s: stale dirty ptr (gen %u)", 471 ptr->dev, bucket_nr, b_gen, 472 bucket_gen_get(ca, bucket_nr), 473 bch2_data_type_str(bucket_data_type ?: ptr_data_type), 474 ptr->gen); 475 476 ret = bucket_ref_update_err(trans, &buf, k, inserting, 477 BCH_FSCK_ERR_stale_dirty_ptr); 478 goto out; 479 } 480 481 if (unlikely(bucket_data_type_mismatch(bucket_data_type, ptr_data_type))) { 482 bch2_log_msg_start(c, &buf); 483 prt_printf(&buf, "bucket %u:%zu gen %u different types of data in same bucket: %s, %s", 484 ptr->dev, bucket_nr, b_gen, 485 bch2_data_type_str(bucket_data_type), 486 bch2_data_type_str(ptr_data_type)); 487 488 ret = bucket_ref_update_err(trans, &buf, k, inserting, 489 BCH_FSCK_ERR_ptr_bucket_data_type_mismatch); 490 goto out; 491 } 492 493 if (unlikely((u64) *bucket_sectors + sectors > U32_MAX)) { 494 bch2_log_msg_start(c, &buf); 495 prt_printf(&buf, 496 "bucket %u:%zu gen %u data type %s sector count overflow: %u + %lli > U32_MAX", 497 ptr->dev, bucket_nr, b_gen, 498 bch2_data_type_str(bucket_data_type ?: ptr_data_type), 499 *bucket_sectors, sectors); 500 501 ret = bucket_ref_update_err(trans, &buf, k, inserting, 502 BCH_FSCK_ERR_bucket_sector_count_overflow); 503 sectors = -*bucket_sectors; 504 goto out; 505 } 506 507 *bucket_sectors += sectors; 508 out: 509 printbuf_exit(&buf); 510 return ret; 511 } 512 513 void bch2_trans_account_disk_usage_change(struct btree_trans *trans) 514 { 515 struct bch_fs *c = trans->c; 516 u64 disk_res_sectors = trans->disk_res ? trans->disk_res->sectors : 0; 517 static int warned_disk_usage = 0; 518 bool warn = false; 519 520 percpu_down_read(&c->mark_lock); 521 struct bch_fs_usage_base *src = &trans->fs_usage_delta; 522 523 s64 added = src->btree + src->data + src->reserved; 524 525 /* 526 * Not allowed to reduce sectors_available except by getting a 527 * reservation: 528 */ 529 s64 should_not_have_added = added - (s64) disk_res_sectors; 530 if (unlikely(should_not_have_added > 0)) { 531 u64 old, new; 532 533 old = atomic64_read(&c->sectors_available); 534 do { 535 new = max_t(s64, 0, old - should_not_have_added); 536 } while (!atomic64_try_cmpxchg(&c->sectors_available, 537 &old, new)); 538 539 added -= should_not_have_added; 540 warn = true; 541 } 542 543 if (added > 0) { 544 trans->disk_res->sectors -= added; 545 this_cpu_sub(*c->online_reserved, added); 546 } 547 548 preempt_disable(); 549 struct bch_fs_usage_base *dst = this_cpu_ptr(c->usage); 550 acc_u64s((u64 *) dst, (u64 *) src, sizeof(*src) / sizeof(u64)); 551 preempt_enable(); 552 percpu_up_read(&c->mark_lock); 553 554 if (unlikely(warn) && !xchg(&warned_disk_usage, 1)) 555 bch2_trans_inconsistent(trans, 556 "disk usage increased %lli more than %llu sectors reserved)", 557 should_not_have_added, disk_res_sectors); 558 } 559 560 /* KEY_TYPE_extent: */ 561 562 static int __mark_pointer(struct btree_trans *trans, struct bch_dev *ca, 563 struct bkey_s_c k, 564 const struct extent_ptr_decoded *p, 565 s64 sectors, enum bch_data_type ptr_data_type, 566 struct bch_alloc_v4 *a, 567 bool insert) 568 { 569 u32 *dst_sectors = p->has_ec ? &a->stripe_sectors : 570 !p->ptr.cached ? &a->dirty_sectors : 571 &a->cached_sectors; 572 int ret = bch2_bucket_ref_update(trans, ca, k, &p->ptr, sectors, ptr_data_type, 573 a->gen, a->data_type, dst_sectors); 574 575 if (ret) 576 return ret; 577 if (insert) 578 alloc_data_type_set(a, ptr_data_type); 579 return 0; 580 } 581 582 static int bch2_trigger_pointer(struct btree_trans *trans, 583 enum btree_id btree_id, unsigned level, 584 struct bkey_s_c k, struct extent_ptr_decoded p, 585 const union bch_extent_entry *entry, 586 s64 *sectors, 587 enum btree_iter_update_trigger_flags flags) 588 { 589 struct bch_fs *c = trans->c; 590 bool insert = !(flags & BTREE_TRIGGER_overwrite); 591 struct printbuf buf = PRINTBUF; 592 int ret = 0; 593 594 struct bkey_i_backpointer bp; 595 bch2_extent_ptr_to_bp(c, btree_id, level, k, p, entry, &bp); 596 597 *sectors = insert ? bp.v.bucket_len : -(s64) bp.v.bucket_len; 598 599 struct bch_dev *ca = bch2_dev_tryget(c, p.ptr.dev); 600 if (unlikely(!ca)) { 601 if (insert && p.ptr.dev != BCH_SB_MEMBER_INVALID) 602 ret = -BCH_ERR_trigger_pointer; 603 goto err; 604 } 605 606 struct bpos bucket = PTR_BUCKET_POS(ca, &p.ptr); 607 if (!bucket_valid(ca, bucket.offset)) { 608 if (insert) { 609 bch2_dev_bucket_missing(ca, bucket.offset); 610 ret = -BCH_ERR_trigger_pointer; 611 } 612 goto err; 613 } 614 615 if (flags & BTREE_TRIGGER_transactional) { 616 struct bkey_i_alloc_v4 *a = bch2_trans_start_alloc_update(trans, bucket, 0); 617 ret = PTR_ERR_OR_ZERO(a) ?: 618 __mark_pointer(trans, ca, k, &p, *sectors, bp.v.data_type, &a->v, insert); 619 if (ret) 620 goto err; 621 622 ret = bch2_bucket_backpointer_mod(trans, k, &bp, insert); 623 if (ret) 624 goto err; 625 } 626 627 if (flags & BTREE_TRIGGER_gc) { 628 struct bucket *g = gc_bucket(ca, bucket.offset); 629 if (bch2_fs_inconsistent_on(!g, c, "reference to invalid bucket on device %u\n %s", 630 p.ptr.dev, 631 (bch2_bkey_val_to_text(&buf, c, k), buf.buf))) { 632 ret = -BCH_ERR_trigger_pointer; 633 goto err; 634 } 635 636 bucket_lock(g); 637 struct bch_alloc_v4 old = bucket_m_to_alloc(*g), new = old; 638 ret = __mark_pointer(trans, ca, k, &p, *sectors, bp.v.data_type, &new, insert); 639 alloc_to_bucket(g, new); 640 bucket_unlock(g); 641 642 if (!ret) 643 ret = bch2_alloc_key_to_dev_counters(trans, ca, &old, &new, flags); 644 } 645 err: 646 bch2_dev_put(ca); 647 printbuf_exit(&buf); 648 return ret; 649 } 650 651 static int bch2_trigger_stripe_ptr(struct btree_trans *trans, 652 struct bkey_s_c k, 653 struct extent_ptr_decoded p, 654 enum bch_data_type data_type, 655 s64 sectors, 656 enum btree_iter_update_trigger_flags flags) 657 { 658 if (flags & BTREE_TRIGGER_transactional) { 659 struct btree_iter iter; 660 struct bkey_i_stripe *s = bch2_bkey_get_mut_typed(trans, &iter, 661 BTREE_ID_stripes, POS(0, p.ec.idx), 662 BTREE_ITER_with_updates, stripe); 663 int ret = PTR_ERR_OR_ZERO(s); 664 if (unlikely(ret)) { 665 bch2_trans_inconsistent_on(bch2_err_matches(ret, ENOENT), trans, 666 "pointer to nonexistent stripe %llu", 667 (u64) p.ec.idx); 668 goto err; 669 } 670 671 if (!bch2_ptr_matches_stripe(&s->v, p)) { 672 bch2_trans_inconsistent(trans, 673 "stripe pointer doesn't match stripe %llu", 674 (u64) p.ec.idx); 675 ret = -BCH_ERR_trigger_stripe_pointer; 676 goto err; 677 } 678 679 stripe_blockcount_set(&s->v, p.ec.block, 680 stripe_blockcount_get(&s->v, p.ec.block) + 681 sectors); 682 683 struct disk_accounting_pos acc; 684 memset(&acc, 0, sizeof(acc)); 685 acc.type = BCH_DISK_ACCOUNTING_replicas; 686 bch2_bkey_to_replicas(&acc.replicas, bkey_i_to_s_c(&s->k_i)); 687 acc.replicas.data_type = data_type; 688 ret = bch2_disk_accounting_mod(trans, &acc, §ors, 1, false); 689 err: 690 bch2_trans_iter_exit(trans, &iter); 691 return ret; 692 } 693 694 if (flags & BTREE_TRIGGER_gc) { 695 struct bch_fs *c = trans->c; 696 697 struct gc_stripe *m = genradix_ptr_alloc(&c->gc_stripes, p.ec.idx, GFP_KERNEL); 698 if (!m) { 699 bch_err(c, "error allocating memory for gc_stripes, idx %llu", 700 (u64) p.ec.idx); 701 return -BCH_ERR_ENOMEM_mark_stripe_ptr; 702 } 703 704 gc_stripe_lock(m); 705 706 if (!m || !m->alive) { 707 gc_stripe_unlock(m); 708 struct printbuf buf = PRINTBUF; 709 bch2_log_msg_start(c, &buf); 710 prt_printf(&buf, "pointer to nonexistent stripe %llu\n while marking ", 711 (u64) p.ec.idx); 712 bch2_bkey_val_to_text(&buf, c, k); 713 __bch2_inconsistent_error(c, &buf); 714 bch2_print_string_as_lines(KERN_ERR, buf.buf); 715 printbuf_exit(&buf); 716 return -BCH_ERR_trigger_stripe_pointer; 717 } 718 719 m->block_sectors[p.ec.block] += sectors; 720 721 struct disk_accounting_pos acc; 722 memset(&acc, 0, sizeof(acc)); 723 acc.type = BCH_DISK_ACCOUNTING_replicas; 724 unsafe_memcpy(&acc.replicas, &m->r.e, replicas_entry_bytes(&m->r.e), "VLA"); 725 gc_stripe_unlock(m); 726 727 acc.replicas.data_type = data_type; 728 int ret = bch2_disk_accounting_mod(trans, &acc, §ors, 1, true); 729 if (ret) 730 return ret; 731 } 732 733 return 0; 734 } 735 736 static int __trigger_extent(struct btree_trans *trans, 737 enum btree_id btree_id, unsigned level, 738 struct bkey_s_c k, 739 enum btree_iter_update_trigger_flags flags, 740 s64 *replicas_sectors) 741 { 742 bool gc = flags & BTREE_TRIGGER_gc; 743 struct bkey_ptrs_c ptrs = bch2_bkey_ptrs_c(k); 744 const union bch_extent_entry *entry; 745 struct extent_ptr_decoded p; 746 enum bch_data_type data_type = bkey_is_btree_ptr(k.k) 747 ? BCH_DATA_btree 748 : BCH_DATA_user; 749 int ret = 0; 750 751 struct disk_accounting_pos acc_replicas_key; 752 memset(&acc_replicas_key, 0, sizeof(acc_replicas_key)); 753 acc_replicas_key.type = BCH_DISK_ACCOUNTING_replicas; 754 acc_replicas_key.replicas.data_type = data_type; 755 acc_replicas_key.replicas.nr_devs = 0; 756 acc_replicas_key.replicas.nr_required = 1; 757 758 unsigned cur_compression_type = 0; 759 u64 compression_acct[3] = { 1, 0, 0 }; 760 761 bkey_for_each_ptr_decode(k.k, ptrs, p, entry) { 762 s64 disk_sectors = 0; 763 ret = bch2_trigger_pointer(trans, btree_id, level, k, p, entry, &disk_sectors, flags); 764 if (ret < 0) 765 return ret; 766 767 bool stale = ret > 0; 768 769 if (p.ptr.cached && stale) 770 continue; 771 772 if (p.ptr.cached) { 773 ret = bch2_mod_dev_cached_sectors(trans, p.ptr.dev, disk_sectors, gc); 774 if (ret) 775 return ret; 776 } else if (!p.has_ec) { 777 *replicas_sectors += disk_sectors; 778 replicas_entry_add_dev(&acc_replicas_key.replicas, p.ptr.dev); 779 } else { 780 ret = bch2_trigger_stripe_ptr(trans, k, p, data_type, disk_sectors, flags); 781 if (ret) 782 return ret; 783 784 /* 785 * There may be other dirty pointers in this extent, but 786 * if so they're not required for mounting if we have an 787 * erasure coded pointer in this extent: 788 */ 789 acc_replicas_key.replicas.nr_required = 0; 790 } 791 792 if (cur_compression_type && 793 cur_compression_type != p.crc.compression_type) { 794 if (flags & BTREE_TRIGGER_overwrite) 795 bch2_u64s_neg(compression_acct, ARRAY_SIZE(compression_acct)); 796 797 ret = bch2_disk_accounting_mod2(trans, gc, compression_acct, 798 compression, cur_compression_type); 799 if (ret) 800 return ret; 801 802 compression_acct[0] = 1; 803 compression_acct[1] = 0; 804 compression_acct[2] = 0; 805 } 806 807 cur_compression_type = p.crc.compression_type; 808 if (p.crc.compression_type) { 809 compression_acct[1] += p.crc.uncompressed_size; 810 compression_acct[2] += p.crc.compressed_size; 811 } 812 } 813 814 if (acc_replicas_key.replicas.nr_devs) { 815 ret = bch2_disk_accounting_mod(trans, &acc_replicas_key, replicas_sectors, 1, gc); 816 if (ret) 817 return ret; 818 } 819 820 if (acc_replicas_key.replicas.nr_devs && !level && k.k->p.snapshot) { 821 ret = bch2_disk_accounting_mod2_nr(trans, gc, replicas_sectors, 1, snapshot, k.k->p.snapshot); 822 if (ret) 823 return ret; 824 } 825 826 if (cur_compression_type) { 827 if (flags & BTREE_TRIGGER_overwrite) 828 bch2_u64s_neg(compression_acct, ARRAY_SIZE(compression_acct)); 829 830 ret = bch2_disk_accounting_mod2(trans, gc, compression_acct, 831 compression, cur_compression_type); 832 if (ret) 833 return ret; 834 } 835 836 if (level) { 837 ret = bch2_disk_accounting_mod2_nr(trans, gc, replicas_sectors, 1, btree, btree_id); 838 if (ret) 839 return ret; 840 } else { 841 bool insert = !(flags & BTREE_TRIGGER_overwrite); 842 843 s64 v[3] = { 844 insert ? 1 : -1, 845 insert ? k.k->size : -((s64) k.k->size), 846 *replicas_sectors, 847 }; 848 ret = bch2_disk_accounting_mod2(trans, gc, v, inum, k.k->p.inode); 849 if (ret) 850 return ret; 851 } 852 853 return 0; 854 } 855 856 int bch2_trigger_extent(struct btree_trans *trans, 857 enum btree_id btree, unsigned level, 858 struct bkey_s_c old, struct bkey_s new, 859 enum btree_iter_update_trigger_flags flags) 860 { 861 struct bch_fs *c = trans->c; 862 struct bkey_ptrs_c new_ptrs = bch2_bkey_ptrs_c(new.s_c); 863 struct bkey_ptrs_c old_ptrs = bch2_bkey_ptrs_c(old); 864 unsigned new_ptrs_bytes = (void *) new_ptrs.end - (void *) new_ptrs.start; 865 unsigned old_ptrs_bytes = (void *) old_ptrs.end - (void *) old_ptrs.start; 866 867 if (unlikely(flags & BTREE_TRIGGER_check_repair)) 868 return bch2_check_fix_ptrs(trans, btree, level, new.s_c, flags); 869 870 /* if pointers aren't changing - nothing to do: */ 871 if (new_ptrs_bytes == old_ptrs_bytes && 872 !memcmp(new_ptrs.start, 873 old_ptrs.start, 874 new_ptrs_bytes)) 875 return 0; 876 877 if (flags & (BTREE_TRIGGER_transactional|BTREE_TRIGGER_gc)) { 878 s64 old_replicas_sectors = 0, new_replicas_sectors = 0; 879 880 if (old.k->type) { 881 int ret = __trigger_extent(trans, btree, level, old, 882 flags & ~BTREE_TRIGGER_insert, 883 &old_replicas_sectors); 884 if (ret) 885 return ret; 886 } 887 888 if (new.k->type) { 889 int ret = __trigger_extent(trans, btree, level, new.s_c, 890 flags & ~BTREE_TRIGGER_overwrite, 891 &new_replicas_sectors); 892 if (ret) 893 return ret; 894 } 895 896 int need_rebalance_delta = 0; 897 s64 need_rebalance_sectors_delta[1] = { 0 }; 898 899 s64 s = bch2_bkey_sectors_need_rebalance(c, old); 900 need_rebalance_delta -= s != 0; 901 need_rebalance_sectors_delta[0] -= s; 902 903 s = bch2_bkey_sectors_need_rebalance(c, new.s_c); 904 need_rebalance_delta += s != 0; 905 need_rebalance_sectors_delta[0] += s; 906 907 if ((flags & BTREE_TRIGGER_transactional) && need_rebalance_delta) { 908 int ret = bch2_btree_bit_mod_buffered(trans, BTREE_ID_rebalance_work, 909 new.k->p, need_rebalance_delta > 0); 910 if (ret) 911 return ret; 912 } 913 914 if (need_rebalance_sectors_delta[0]) { 915 int ret = bch2_disk_accounting_mod2(trans, flags & BTREE_TRIGGER_gc, 916 need_rebalance_sectors_delta, rebalance_work); 917 if (ret) 918 return ret; 919 } 920 } 921 922 return 0; 923 } 924 925 /* KEY_TYPE_reservation */ 926 927 static int __trigger_reservation(struct btree_trans *trans, 928 enum btree_id btree_id, unsigned level, struct bkey_s_c k, 929 enum btree_iter_update_trigger_flags flags) 930 { 931 if (flags & (BTREE_TRIGGER_transactional|BTREE_TRIGGER_gc)) { 932 s64 sectors[1] = { k.k->size }; 933 934 if (flags & BTREE_TRIGGER_overwrite) 935 sectors[0] = -sectors[0]; 936 937 return bch2_disk_accounting_mod2(trans, flags & BTREE_TRIGGER_gc, sectors, 938 persistent_reserved, bkey_s_c_to_reservation(k).v->nr_replicas); 939 } 940 941 return 0; 942 } 943 944 int bch2_trigger_reservation(struct btree_trans *trans, 945 enum btree_id btree_id, unsigned level, 946 struct bkey_s_c old, struct bkey_s new, 947 enum btree_iter_update_trigger_flags flags) 948 { 949 return trigger_run_overwrite_then_insert(__trigger_reservation, trans, btree_id, level, old, new, flags); 950 } 951 952 /* Mark superblocks: */ 953 954 static int __bch2_trans_mark_metadata_bucket(struct btree_trans *trans, 955 struct bch_dev *ca, u64 b, 956 enum bch_data_type type, 957 unsigned sectors) 958 { 959 struct bch_fs *c = trans->c; 960 struct btree_iter iter; 961 int ret = 0; 962 963 struct bkey_i_alloc_v4 *a = 964 bch2_trans_start_alloc_update_noupdate(trans, &iter, POS(ca->dev_idx, b)); 965 if (IS_ERR(a)) 966 return PTR_ERR(a); 967 968 if (a->v.data_type && type && a->v.data_type != type) { 969 bch2_run_explicit_recovery_pass(c, BCH_RECOVERY_PASS_check_allocations); 970 log_fsck_err(trans, bucket_metadata_type_mismatch, 971 "bucket %llu:%llu gen %u different types of data in same bucket: %s, %s\n" 972 "while marking %s", 973 iter.pos.inode, iter.pos.offset, a->v.gen, 974 bch2_data_type_str(a->v.data_type), 975 bch2_data_type_str(type), 976 bch2_data_type_str(type)); 977 ret = -BCH_ERR_metadata_bucket_inconsistency; 978 goto err; 979 } 980 981 if (a->v.data_type != type || 982 a->v.dirty_sectors != sectors) { 983 a->v.data_type = type; 984 a->v.dirty_sectors = sectors; 985 ret = bch2_trans_update(trans, &iter, &a->k_i, 0); 986 } 987 err: 988 fsck_err: 989 bch2_trans_iter_exit(trans, &iter); 990 return ret; 991 } 992 993 static int bch2_mark_metadata_bucket(struct btree_trans *trans, struct bch_dev *ca, 994 u64 b, enum bch_data_type data_type, unsigned sectors, 995 enum btree_iter_update_trigger_flags flags) 996 { 997 struct bch_fs *c = trans->c; 998 int ret = 0; 999 1000 struct bucket *g = gc_bucket(ca, b); 1001 if (bch2_fs_inconsistent_on(!g, c, "reference to invalid bucket on device %u when marking metadata type %s", 1002 ca->dev_idx, bch2_data_type_str(data_type))) 1003 goto err; 1004 1005 bucket_lock(g); 1006 struct bch_alloc_v4 old = bucket_m_to_alloc(*g); 1007 1008 if (bch2_fs_inconsistent_on(g->data_type && 1009 g->data_type != data_type, c, 1010 "different types of data in same bucket: %s, %s", 1011 bch2_data_type_str(g->data_type), 1012 bch2_data_type_str(data_type))) 1013 goto err_unlock; 1014 1015 if (bch2_fs_inconsistent_on((u64) g->dirty_sectors + sectors > ca->mi.bucket_size, c, 1016 "bucket %u:%llu gen %u data type %s sector count overflow: %u + %u > bucket size", 1017 ca->dev_idx, b, g->gen, 1018 bch2_data_type_str(g->data_type ?: data_type), 1019 g->dirty_sectors, sectors)) 1020 goto err_unlock; 1021 1022 g->data_type = data_type; 1023 g->dirty_sectors += sectors; 1024 struct bch_alloc_v4 new = bucket_m_to_alloc(*g); 1025 bucket_unlock(g); 1026 ret = bch2_alloc_key_to_dev_counters(trans, ca, &old, &new, flags); 1027 return ret; 1028 err_unlock: 1029 bucket_unlock(g); 1030 err: 1031 return -BCH_ERR_metadata_bucket_inconsistency; 1032 } 1033 1034 int bch2_trans_mark_metadata_bucket(struct btree_trans *trans, 1035 struct bch_dev *ca, u64 b, 1036 enum bch_data_type type, unsigned sectors, 1037 enum btree_iter_update_trigger_flags flags) 1038 { 1039 BUG_ON(type != BCH_DATA_free && 1040 type != BCH_DATA_sb && 1041 type != BCH_DATA_journal); 1042 1043 /* 1044 * Backup superblock might be past the end of our normal usable space: 1045 */ 1046 if (b >= ca->mi.nbuckets) 1047 return 0; 1048 1049 if (flags & BTREE_TRIGGER_gc) 1050 return bch2_mark_metadata_bucket(trans, ca, b, type, sectors, flags); 1051 else if (flags & BTREE_TRIGGER_transactional) 1052 return commit_do(trans, NULL, NULL, 0, 1053 __bch2_trans_mark_metadata_bucket(trans, ca, b, type, sectors)); 1054 else 1055 BUG(); 1056 } 1057 1058 static int bch2_trans_mark_metadata_sectors(struct btree_trans *trans, 1059 struct bch_dev *ca, u64 start, u64 end, 1060 enum bch_data_type type, u64 *bucket, unsigned *bucket_sectors, 1061 enum btree_iter_update_trigger_flags flags) 1062 { 1063 do { 1064 u64 b = sector_to_bucket(ca, start); 1065 unsigned sectors = 1066 min_t(u64, bucket_to_sector(ca, b + 1), end) - start; 1067 1068 if (b != *bucket && *bucket_sectors) { 1069 int ret = bch2_trans_mark_metadata_bucket(trans, ca, *bucket, 1070 type, *bucket_sectors, flags); 1071 if (ret) 1072 return ret; 1073 1074 *bucket_sectors = 0; 1075 } 1076 1077 *bucket = b; 1078 *bucket_sectors += sectors; 1079 start += sectors; 1080 } while (start < end); 1081 1082 return 0; 1083 } 1084 1085 static int __bch2_trans_mark_dev_sb(struct btree_trans *trans, struct bch_dev *ca, 1086 enum btree_iter_update_trigger_flags flags) 1087 { 1088 struct bch_fs *c = trans->c; 1089 1090 mutex_lock(&c->sb_lock); 1091 struct bch_sb_layout layout = ca->disk_sb.sb->layout; 1092 mutex_unlock(&c->sb_lock); 1093 1094 u64 bucket = 0; 1095 unsigned i, bucket_sectors = 0; 1096 int ret; 1097 1098 for (i = 0; i < layout.nr_superblocks; i++) { 1099 u64 offset = le64_to_cpu(layout.sb_offset[i]); 1100 1101 if (offset == BCH_SB_SECTOR) { 1102 ret = bch2_trans_mark_metadata_sectors(trans, ca, 1103 0, BCH_SB_SECTOR, 1104 BCH_DATA_sb, &bucket, &bucket_sectors, flags); 1105 if (ret) 1106 return ret; 1107 } 1108 1109 ret = bch2_trans_mark_metadata_sectors(trans, ca, offset, 1110 offset + (1 << layout.sb_max_size_bits), 1111 BCH_DATA_sb, &bucket, &bucket_sectors, flags); 1112 if (ret) 1113 return ret; 1114 } 1115 1116 if (bucket_sectors) { 1117 ret = bch2_trans_mark_metadata_bucket(trans, ca, 1118 bucket, BCH_DATA_sb, bucket_sectors, flags); 1119 if (ret) 1120 return ret; 1121 } 1122 1123 for (i = 0; i < ca->journal.nr; i++) { 1124 ret = bch2_trans_mark_metadata_bucket(trans, ca, 1125 ca->journal.buckets[i], 1126 BCH_DATA_journal, ca->mi.bucket_size, flags); 1127 if (ret) 1128 return ret; 1129 } 1130 1131 return 0; 1132 } 1133 1134 int bch2_trans_mark_dev_sb(struct bch_fs *c, struct bch_dev *ca, 1135 enum btree_iter_update_trigger_flags flags) 1136 { 1137 int ret = bch2_trans_run(c, 1138 __bch2_trans_mark_dev_sb(trans, ca, flags)); 1139 bch_err_fn(c, ret); 1140 return ret; 1141 } 1142 1143 int bch2_trans_mark_dev_sbs_flags(struct bch_fs *c, 1144 enum btree_iter_update_trigger_flags flags) 1145 { 1146 for_each_online_member(c, ca) { 1147 int ret = bch2_trans_mark_dev_sb(c, ca, flags); 1148 if (ret) { 1149 percpu_ref_put(&ca->io_ref[READ]); 1150 return ret; 1151 } 1152 } 1153 1154 return 0; 1155 } 1156 1157 int bch2_trans_mark_dev_sbs(struct bch_fs *c) 1158 { 1159 return bch2_trans_mark_dev_sbs_flags(c, BTREE_TRIGGER_transactional); 1160 } 1161 1162 bool bch2_is_superblock_bucket(struct bch_dev *ca, u64 b) 1163 { 1164 struct bch_sb_layout *layout = &ca->disk_sb.sb->layout; 1165 u64 b_offset = bucket_to_sector(ca, b); 1166 u64 b_end = bucket_to_sector(ca, b + 1); 1167 unsigned i; 1168 1169 if (!b) 1170 return true; 1171 1172 for (i = 0; i < layout->nr_superblocks; i++) { 1173 u64 offset = le64_to_cpu(layout->sb_offset[i]); 1174 u64 end = offset + (1 << layout->sb_max_size_bits); 1175 1176 if (!(offset >= b_end || end <= b_offset)) 1177 return true; 1178 } 1179 1180 for (i = 0; i < ca->journal.nr; i++) 1181 if (b == ca->journal.buckets[i]) 1182 return true; 1183 1184 return false; 1185 } 1186 1187 /* Disk reservations: */ 1188 1189 #define SECTORS_CACHE 1024 1190 1191 int __bch2_disk_reservation_add(struct bch_fs *c, struct disk_reservation *res, 1192 u64 sectors, enum bch_reservation_flags flags) 1193 { 1194 struct bch_fs_pcpu *pcpu; 1195 u64 old, get; 1196 u64 sectors_available; 1197 int ret; 1198 1199 percpu_down_read(&c->mark_lock); 1200 preempt_disable(); 1201 pcpu = this_cpu_ptr(c->pcpu); 1202 1203 if (sectors <= pcpu->sectors_available) 1204 goto out; 1205 1206 old = atomic64_read(&c->sectors_available); 1207 do { 1208 get = min((u64) sectors + SECTORS_CACHE, old); 1209 1210 if (get < sectors) { 1211 preempt_enable(); 1212 goto recalculate; 1213 } 1214 } while (!atomic64_try_cmpxchg(&c->sectors_available, 1215 &old, old - get)); 1216 1217 pcpu->sectors_available += get; 1218 1219 out: 1220 pcpu->sectors_available -= sectors; 1221 this_cpu_add(*c->online_reserved, sectors); 1222 res->sectors += sectors; 1223 1224 preempt_enable(); 1225 percpu_up_read(&c->mark_lock); 1226 return 0; 1227 1228 recalculate: 1229 mutex_lock(&c->sectors_available_lock); 1230 1231 percpu_u64_set(&c->pcpu->sectors_available, 0); 1232 sectors_available = avail_factor(__bch2_fs_usage_read_short(c).free); 1233 1234 if (sectors_available && (flags & BCH_DISK_RESERVATION_PARTIAL)) 1235 sectors = min(sectors, sectors_available); 1236 1237 if (sectors <= sectors_available || 1238 (flags & BCH_DISK_RESERVATION_NOFAIL)) { 1239 atomic64_set(&c->sectors_available, 1240 max_t(s64, 0, sectors_available - sectors)); 1241 this_cpu_add(*c->online_reserved, sectors); 1242 res->sectors += sectors; 1243 ret = 0; 1244 } else { 1245 atomic64_set(&c->sectors_available, sectors_available); 1246 ret = -BCH_ERR_ENOSPC_disk_reservation; 1247 } 1248 1249 mutex_unlock(&c->sectors_available_lock); 1250 percpu_up_read(&c->mark_lock); 1251 1252 return ret; 1253 } 1254 1255 /* Startup/shutdown: */ 1256 1257 void bch2_buckets_nouse_free(struct bch_fs *c) 1258 { 1259 for_each_member_device(c, ca) { 1260 kvfree_rcu_mightsleep(ca->buckets_nouse); 1261 ca->buckets_nouse = NULL; 1262 } 1263 } 1264 1265 int bch2_buckets_nouse_alloc(struct bch_fs *c) 1266 { 1267 for_each_member_device(c, ca) { 1268 BUG_ON(ca->buckets_nouse); 1269 1270 ca->buckets_nouse = bch2_kvmalloc(BITS_TO_LONGS(ca->mi.nbuckets) * 1271 sizeof(unsigned long), 1272 GFP_KERNEL|__GFP_ZERO); 1273 if (!ca->buckets_nouse) { 1274 bch2_dev_put(ca); 1275 return -BCH_ERR_ENOMEM_buckets_nouse; 1276 } 1277 } 1278 1279 return 0; 1280 } 1281 1282 static void bucket_gens_free_rcu(struct rcu_head *rcu) 1283 { 1284 struct bucket_gens *buckets = 1285 container_of(rcu, struct bucket_gens, rcu); 1286 1287 kvfree(buckets); 1288 } 1289 1290 int bch2_dev_buckets_resize(struct bch_fs *c, struct bch_dev *ca, u64 nbuckets) 1291 { 1292 struct bucket_gens *bucket_gens = NULL, *old_bucket_gens = NULL; 1293 bool resize = ca->bucket_gens != NULL; 1294 int ret; 1295 1296 if (resize) 1297 lockdep_assert_held(&c->state_lock); 1298 1299 if (resize && ca->buckets_nouse) 1300 return -BCH_ERR_no_resize_with_buckets_nouse; 1301 1302 bucket_gens = bch2_kvmalloc(struct_size(bucket_gens, b, nbuckets), 1303 GFP_KERNEL|__GFP_ZERO); 1304 if (!bucket_gens) { 1305 ret = -BCH_ERR_ENOMEM_bucket_gens; 1306 goto err; 1307 } 1308 1309 bucket_gens->first_bucket = ca->mi.first_bucket; 1310 bucket_gens->nbuckets = nbuckets; 1311 bucket_gens->nbuckets_minus_first = 1312 bucket_gens->nbuckets - bucket_gens->first_bucket; 1313 1314 old_bucket_gens = rcu_dereference_protected(ca->bucket_gens, 1); 1315 1316 if (resize) { 1317 u64 copy = min(bucket_gens->nbuckets, 1318 old_bucket_gens->nbuckets); 1319 memcpy(bucket_gens->b, 1320 old_bucket_gens->b, 1321 sizeof(bucket_gens->b[0]) * copy); 1322 } 1323 1324 rcu_assign_pointer(ca->bucket_gens, bucket_gens); 1325 bucket_gens = old_bucket_gens; 1326 1327 nbuckets = ca->mi.nbuckets; 1328 1329 ret = 0; 1330 err: 1331 if (bucket_gens) 1332 call_rcu(&bucket_gens->rcu, bucket_gens_free_rcu); 1333 1334 return ret; 1335 } 1336 1337 void bch2_dev_buckets_free(struct bch_dev *ca) 1338 { 1339 kvfree(ca->buckets_nouse); 1340 kvfree(rcu_dereference_protected(ca->bucket_gens, 1)); 1341 free_percpu(ca->usage); 1342 } 1343 1344 int bch2_dev_buckets_alloc(struct bch_fs *c, struct bch_dev *ca) 1345 { 1346 ca->usage = alloc_percpu(struct bch_dev_usage_full); 1347 if (!ca->usage) 1348 return -BCH_ERR_ENOMEM_usage_init; 1349 1350 return bch2_dev_buckets_resize(c, ca, ca->mi.nbuckets); 1351 } 1352