Linux kernel mirror (for testing)
git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
kernel
os
linux
1// SPDX-License-Identifier: GPL-2.0
2/*
3 * Assorted bcachefs debug code
4 *
5 * Copyright 2010, 2011 Kent Overstreet <kent.overstreet@gmail.com>
6 * Copyright 2012 Google, Inc.
7 */
8
9#include "bcachefs.h"
10#include "bkey_methods.h"
11#include "btree_cache.h"
12#include "btree_io.h"
13#include "btree_iter.h"
14#include "btree_locking.h"
15#include "btree_update.h"
16#include "btree_update_interior.h"
17#include "buckets.h"
18#include "debug.h"
19#include "error.h"
20#include "extents.h"
21#include "fsck.h"
22#include "inode.h"
23#include "super.h"
24
25#include <linux/console.h>
26#include <linux/debugfs.h>
27#include <linux/module.h>
28#include <linux/random.h>
29#include <linux/seq_file.h>
30
31static struct dentry *bch_debug;
32
33static bool bch2_btree_verify_replica(struct bch_fs *c, struct btree *b,
34 struct extent_ptr_decoded pick)
35{
36 struct btree *v = c->verify_data;
37 struct btree_node *n_ondisk = c->verify_ondisk;
38 struct btree_node *n_sorted = c->verify_data->data;
39 struct bset *sorted, *inmemory = &b->data->keys;
40 struct bio *bio;
41 bool failed = false, saw_error = false;
42
43 struct bch_dev *ca = bch2_dev_get_ioref(c, pick.ptr.dev, READ);
44 if (!ca)
45 return false;
46
47 bio = bio_alloc_bioset(ca->disk_sb.bdev,
48 buf_pages(n_sorted, btree_buf_bytes(b)),
49 REQ_OP_READ|REQ_META,
50 GFP_NOFS,
51 &c->btree_bio);
52 bio->bi_iter.bi_sector = pick.ptr.offset;
53 bch2_bio_map(bio, n_sorted, btree_buf_bytes(b));
54
55 submit_bio_wait(bio);
56
57 bio_put(bio);
58 percpu_ref_put(&ca->io_ref);
59
60 memcpy(n_ondisk, n_sorted, btree_buf_bytes(b));
61
62 v->written = 0;
63 if (bch2_btree_node_read_done(c, ca, v, false, &saw_error) || saw_error)
64 return false;
65
66 n_sorted = c->verify_data->data;
67 sorted = &n_sorted->keys;
68
69 if (inmemory->u64s != sorted->u64s ||
70 memcmp(inmemory->start,
71 sorted->start,
72 vstruct_end(inmemory) - (void *) inmemory->start)) {
73 unsigned offset = 0, sectors;
74 struct bset *i;
75 unsigned j;
76
77 console_lock();
78
79 printk(KERN_ERR "*** in memory:\n");
80 bch2_dump_bset(c, b, inmemory, 0);
81
82 printk(KERN_ERR "*** read back in:\n");
83 bch2_dump_bset(c, v, sorted, 0);
84
85 while (offset < v->written) {
86 if (!offset) {
87 i = &n_ondisk->keys;
88 sectors = vstruct_blocks(n_ondisk, c->block_bits) <<
89 c->block_bits;
90 } else {
91 struct btree_node_entry *bne =
92 (void *) n_ondisk + (offset << 9);
93 i = &bne->keys;
94
95 sectors = vstruct_blocks(bne, c->block_bits) <<
96 c->block_bits;
97 }
98
99 printk(KERN_ERR "*** on disk block %u:\n", offset);
100 bch2_dump_bset(c, b, i, offset);
101
102 offset += sectors;
103 }
104
105 for (j = 0; j < le16_to_cpu(inmemory->u64s); j++)
106 if (inmemory->_data[j] != sorted->_data[j])
107 break;
108
109 console_unlock();
110 bch_err(c, "verify failed at key %u", j);
111
112 failed = true;
113 }
114
115 if (v->written != b->written) {
116 bch_err(c, "written wrong: expected %u, got %u",
117 b->written, v->written);
118 failed = true;
119 }
120
121 return failed;
122}
123
124void __bch2_btree_verify(struct bch_fs *c, struct btree *b)
125{
126 struct bkey_ptrs_c ptrs;
127 struct extent_ptr_decoded p;
128 const union bch_extent_entry *entry;
129 struct btree *v;
130 struct bset *inmemory = &b->data->keys;
131 struct bkey_packed *k;
132 bool failed = false;
133
134 if (c->opts.nochanges)
135 return;
136
137 bch2_btree_node_io_lock(b);
138 mutex_lock(&c->verify_lock);
139
140 if (!c->verify_ondisk) {
141 c->verify_ondisk = kvmalloc(btree_buf_bytes(b), GFP_KERNEL);
142 if (!c->verify_ondisk)
143 goto out;
144 }
145
146 if (!c->verify_data) {
147 c->verify_data = __bch2_btree_node_mem_alloc(c);
148 if (!c->verify_data)
149 goto out;
150
151 list_del_init(&c->verify_data->list);
152 }
153
154 BUG_ON(b->nsets != 1);
155
156 for (k = inmemory->start; k != vstruct_last(inmemory); k = bkey_p_next(k))
157 if (k->type == KEY_TYPE_btree_ptr_v2)
158 ((struct bch_btree_ptr_v2 *) bkeyp_val(&b->format, k))->mem_ptr = 0;
159
160 v = c->verify_data;
161 bkey_copy(&v->key, &b->key);
162 v->c.level = b->c.level;
163 v->c.btree_id = b->c.btree_id;
164 bch2_btree_keys_init(v);
165
166 ptrs = bch2_bkey_ptrs_c(bkey_i_to_s_c(&b->key));
167 bkey_for_each_ptr_decode(&b->key.k, ptrs, p, entry)
168 failed |= bch2_btree_verify_replica(c, b, p);
169
170 if (failed) {
171 struct printbuf buf = PRINTBUF;
172
173 bch2_bkey_val_to_text(&buf, c, bkey_i_to_s_c(&b->key));
174 bch2_fs_fatal_error(c, ": btree node verify failed for: %s\n", buf.buf);
175 printbuf_exit(&buf);
176 }
177out:
178 mutex_unlock(&c->verify_lock);
179 bch2_btree_node_io_unlock(b);
180}
181
182void bch2_btree_node_ondisk_to_text(struct printbuf *out, struct bch_fs *c,
183 const struct btree *b)
184{
185 struct btree_node *n_ondisk = NULL;
186 struct extent_ptr_decoded pick;
187 struct bch_dev *ca;
188 struct bio *bio = NULL;
189 unsigned offset = 0;
190 int ret;
191
192 if (bch2_bkey_pick_read_device(c, bkey_i_to_s_c(&b->key), NULL, &pick) <= 0) {
193 prt_printf(out, "error getting device to read from: invalid device\n");
194 return;
195 }
196
197 ca = bch2_dev_get_ioref(c, pick.ptr.dev, READ);
198 if (!ca) {
199 prt_printf(out, "error getting device to read from: not online\n");
200 return;
201 }
202
203 n_ondisk = kvmalloc(btree_buf_bytes(b), GFP_KERNEL);
204 if (!n_ondisk) {
205 prt_printf(out, "memory allocation failure\n");
206 goto out;
207 }
208
209 bio = bio_alloc_bioset(ca->disk_sb.bdev,
210 buf_pages(n_ondisk, btree_buf_bytes(b)),
211 REQ_OP_READ|REQ_META,
212 GFP_NOFS,
213 &c->btree_bio);
214 bio->bi_iter.bi_sector = pick.ptr.offset;
215 bch2_bio_map(bio, n_ondisk, btree_buf_bytes(b));
216
217 ret = submit_bio_wait(bio);
218 if (ret) {
219 prt_printf(out, "IO error reading btree node: %s\n", bch2_err_str(ret));
220 goto out;
221 }
222
223 while (offset < btree_sectors(c)) {
224 struct bset *i;
225 struct nonce nonce;
226 struct bch_csum csum;
227 struct bkey_packed *k;
228 unsigned sectors;
229
230 if (!offset) {
231 i = &n_ondisk->keys;
232
233 if (!bch2_checksum_type_valid(c, BSET_CSUM_TYPE(i))) {
234 prt_printf(out, "unknown checksum type at offset %u: %llu\n",
235 offset, BSET_CSUM_TYPE(i));
236 goto out;
237 }
238
239 nonce = btree_nonce(i, offset << 9);
240 csum = csum_vstruct(c, BSET_CSUM_TYPE(i), nonce, n_ondisk);
241
242 if (bch2_crc_cmp(csum, n_ondisk->csum)) {
243 prt_printf(out, "invalid checksum\n");
244 goto out;
245 }
246
247 bset_encrypt(c, i, offset << 9);
248
249 sectors = vstruct_sectors(n_ondisk, c->block_bits);
250 } else {
251 struct btree_node_entry *bne = (void *) n_ondisk + (offset << 9);
252
253 i = &bne->keys;
254
255 if (i->seq != n_ondisk->keys.seq)
256 break;
257
258 if (!bch2_checksum_type_valid(c, BSET_CSUM_TYPE(i))) {
259 prt_printf(out, "unknown checksum type at offset %u: %llu\n",
260 offset, BSET_CSUM_TYPE(i));
261 goto out;
262 }
263
264 nonce = btree_nonce(i, offset << 9);
265 csum = csum_vstruct(c, BSET_CSUM_TYPE(i), nonce, bne);
266
267 if (bch2_crc_cmp(csum, bne->csum)) {
268 prt_printf(out, "invalid checksum");
269 goto out;
270 }
271
272 bset_encrypt(c, i, offset << 9);
273
274 sectors = vstruct_sectors(bne, c->block_bits);
275 }
276
277 prt_printf(out, " offset %u version %u, journal seq %llu\n",
278 offset,
279 le16_to_cpu(i->version),
280 le64_to_cpu(i->journal_seq));
281 offset += sectors;
282
283 printbuf_indent_add(out, 4);
284
285 for (k = i->start; k != vstruct_last(i); k = bkey_p_next(k)) {
286 struct bkey u;
287
288 bch2_bkey_val_to_text(out, c, bkey_disassemble(b, k, &u));
289 prt_newline(out);
290 }
291
292 printbuf_indent_sub(out, 4);
293 }
294out:
295 if (bio)
296 bio_put(bio);
297 kvfree(n_ondisk);
298 percpu_ref_put(&ca->io_ref);
299}
300
301#ifdef CONFIG_DEBUG_FS
302
303/* XXX: bch_fs refcounting */
304
305struct dump_iter {
306 struct bch_fs *c;
307 enum btree_id id;
308 struct bpos from;
309 struct bpos prev_node;
310 u64 iter;
311
312 struct printbuf buf;
313
314 char __user *ubuf; /* destination user buffer */
315 size_t size; /* size of requested read */
316 ssize_t ret; /* bytes read so far */
317};
318
319static ssize_t flush_buf(struct dump_iter *i)
320{
321 if (i->buf.pos) {
322 size_t bytes = min_t(size_t, i->buf.pos, i->size);
323 int copied = bytes - copy_to_user(i->ubuf, i->buf.buf, bytes);
324
325 i->ret += copied;
326 i->ubuf += copied;
327 i->size -= copied;
328 i->buf.pos -= copied;
329 memmove(i->buf.buf, i->buf.buf + copied, i->buf.pos);
330
331 if (copied != bytes)
332 return -EFAULT;
333 }
334
335 return i->size ? 0 : i->ret;
336}
337
338static int bch2_dump_open(struct inode *inode, struct file *file)
339{
340 struct btree_debug *bd = inode->i_private;
341 struct dump_iter *i;
342
343 i = kzalloc(sizeof(struct dump_iter), GFP_KERNEL);
344 if (!i)
345 return -ENOMEM;
346
347 file->private_data = i;
348 i->from = POS_MIN;
349 i->iter = 0;
350 i->c = container_of(bd, struct bch_fs, btree_debug[bd->id]);
351 i->id = bd->id;
352 i->buf = PRINTBUF;
353
354 return 0;
355}
356
357static int bch2_dump_release(struct inode *inode, struct file *file)
358{
359 struct dump_iter *i = file->private_data;
360
361 printbuf_exit(&i->buf);
362 kfree(i);
363 return 0;
364}
365
366static ssize_t bch2_read_btree(struct file *file, char __user *buf,
367 size_t size, loff_t *ppos)
368{
369 struct dump_iter *i = file->private_data;
370
371 i->ubuf = buf;
372 i->size = size;
373 i->ret = 0;
374
375 return flush_buf(i) ?:
376 bch2_trans_run(i->c,
377 for_each_btree_key(trans, iter, i->id, i->from,
378 BTREE_ITER_prefetch|
379 BTREE_ITER_all_snapshots, k, ({
380 bch2_bkey_val_to_text(&i->buf, i->c, k);
381 prt_newline(&i->buf);
382 bch2_trans_unlock(trans);
383 i->from = bpos_successor(iter.pos);
384 flush_buf(i);
385 }))) ?:
386 i->ret;
387}
388
389static const struct file_operations btree_debug_ops = {
390 .owner = THIS_MODULE,
391 .open = bch2_dump_open,
392 .release = bch2_dump_release,
393 .read = bch2_read_btree,
394};
395
396static ssize_t bch2_read_btree_formats(struct file *file, char __user *buf,
397 size_t size, loff_t *ppos)
398{
399 struct dump_iter *i = file->private_data;
400 struct btree_trans *trans;
401 struct btree_iter iter;
402 struct btree *b;
403 ssize_t ret;
404
405 i->ubuf = buf;
406 i->size = size;
407 i->ret = 0;
408
409 ret = flush_buf(i);
410 if (ret)
411 return ret;
412
413 if (bpos_eq(SPOS_MAX, i->from))
414 return i->ret;
415
416 trans = bch2_trans_get(i->c);
417retry:
418 bch2_trans_begin(trans);
419
420 for_each_btree_node(trans, iter, i->id, i->from, 0, b, ret) {
421 bch2_btree_node_to_text(&i->buf, i->c, b);
422 i->from = !bpos_eq(SPOS_MAX, b->key.k.p)
423 ? bpos_successor(b->key.k.p)
424 : b->key.k.p;
425
426 ret = drop_locks_do(trans, flush_buf(i));
427 if (ret)
428 break;
429 }
430 bch2_trans_iter_exit(trans, &iter);
431
432 if (bch2_err_matches(ret, BCH_ERR_transaction_restart))
433 goto retry;
434
435 bch2_trans_put(trans);
436
437 if (!ret)
438 ret = flush_buf(i);
439
440 return ret ?: i->ret;
441}
442
443static const struct file_operations btree_format_debug_ops = {
444 .owner = THIS_MODULE,
445 .open = bch2_dump_open,
446 .release = bch2_dump_release,
447 .read = bch2_read_btree_formats,
448};
449
450static ssize_t bch2_read_bfloat_failed(struct file *file, char __user *buf,
451 size_t size, loff_t *ppos)
452{
453 struct dump_iter *i = file->private_data;
454
455 i->ubuf = buf;
456 i->size = size;
457 i->ret = 0;
458
459 return flush_buf(i) ?:
460 bch2_trans_run(i->c,
461 for_each_btree_key(trans, iter, i->id, i->from,
462 BTREE_ITER_prefetch|
463 BTREE_ITER_all_snapshots, k, ({
464 struct btree_path_level *l =
465 &btree_iter_path(trans, &iter)->l[0];
466 struct bkey_packed *_k =
467 bch2_btree_node_iter_peek(&l->iter, l->b);
468
469 if (bpos_gt(l->b->key.k.p, i->prev_node)) {
470 bch2_btree_node_to_text(&i->buf, i->c, l->b);
471 i->prev_node = l->b->key.k.p;
472 }
473
474 bch2_bfloat_to_text(&i->buf, l->b, _k);
475 bch2_trans_unlock(trans);
476 i->from = bpos_successor(iter.pos);
477 flush_buf(i);
478 }))) ?:
479 i->ret;
480}
481
482static const struct file_operations bfloat_failed_debug_ops = {
483 .owner = THIS_MODULE,
484 .open = bch2_dump_open,
485 .release = bch2_dump_release,
486 .read = bch2_read_bfloat_failed,
487};
488
489static void bch2_cached_btree_node_to_text(struct printbuf *out, struct bch_fs *c,
490 struct btree *b)
491{
492 if (!out->nr_tabstops)
493 printbuf_tabstop_push(out, 32);
494
495 prt_printf(out, "%px btree=%s l=%u\n", b, bch2_btree_id_str(b->c.btree_id), b->c.level);
496
497 printbuf_indent_add(out, 2);
498
499 bch2_bkey_val_to_text(out, c, bkey_i_to_s_c(&b->key));
500 prt_newline(out);
501
502 prt_printf(out, "flags:\t");
503 prt_bitflags(out, bch2_btree_node_flags, b->flags);
504 prt_newline(out);
505
506 prt_printf(out, "pcpu read locks:\t%u\n", b->c.lock.readers != NULL);
507 prt_printf(out, "written:\t%u\n", b->written);
508 prt_printf(out, "writes blocked:\t%u\n", !list_empty_careful(&b->write_blocked));
509 prt_printf(out, "will make reachable:\t%lx\n", b->will_make_reachable);
510
511 prt_printf(out, "journal pin %px:\t%llu\n",
512 &b->writes[0].journal, b->writes[0].journal.seq);
513 prt_printf(out, "journal pin %px:\t%llu\n",
514 &b->writes[1].journal, b->writes[1].journal.seq);
515
516 printbuf_indent_sub(out, 2);
517}
518
519static ssize_t bch2_cached_btree_nodes_read(struct file *file, char __user *buf,
520 size_t size, loff_t *ppos)
521{
522 struct dump_iter *i = file->private_data;
523 struct bch_fs *c = i->c;
524 bool done = false;
525 ssize_t ret = 0;
526
527 i->ubuf = buf;
528 i->size = size;
529 i->ret = 0;
530
531 do {
532 struct bucket_table *tbl;
533 struct rhash_head *pos;
534 struct btree *b;
535
536 ret = flush_buf(i);
537 if (ret)
538 return ret;
539
540 rcu_read_lock();
541 i->buf.atomic++;
542 tbl = rht_dereference_rcu(c->btree_cache.table.tbl,
543 &c->btree_cache.table);
544 if (i->iter < tbl->size) {
545 rht_for_each_entry_rcu(b, pos, tbl, i->iter, hash)
546 bch2_cached_btree_node_to_text(&i->buf, c, b);
547 i->iter++;
548 } else {
549 done = true;
550 }
551 --i->buf.atomic;
552 rcu_read_unlock();
553 } while (!done);
554
555 if (i->buf.allocation_failure)
556 ret = -ENOMEM;
557
558 if (!ret)
559 ret = flush_buf(i);
560
561 return ret ?: i->ret;
562}
563
564static const struct file_operations cached_btree_nodes_ops = {
565 .owner = THIS_MODULE,
566 .open = bch2_dump_open,
567 .release = bch2_dump_release,
568 .read = bch2_cached_btree_nodes_read,
569};
570
571static ssize_t bch2_btree_transactions_read(struct file *file, char __user *buf,
572 size_t size, loff_t *ppos)
573{
574 struct dump_iter *i = file->private_data;
575 struct bch_fs *c = i->c;
576 struct btree_trans *trans;
577 ssize_t ret = 0;
578 u32 seq;
579
580 i->ubuf = buf;
581 i->size = size;
582 i->ret = 0;
583restart:
584 seqmutex_lock(&c->btree_trans_lock);
585 list_for_each_entry(trans, &c->btree_trans_list, list) {
586 struct task_struct *task = READ_ONCE(trans->locking_wait.task);
587
588 if (!task || task->pid <= i->iter)
589 continue;
590
591 closure_get(&trans->ref);
592 seq = seqmutex_seq(&c->btree_trans_lock);
593 seqmutex_unlock(&c->btree_trans_lock);
594
595 ret = flush_buf(i);
596 if (ret) {
597 closure_put(&trans->ref);
598 goto unlocked;
599 }
600
601 bch2_btree_trans_to_text(&i->buf, trans);
602
603 prt_printf(&i->buf, "backtrace:\n");
604 printbuf_indent_add(&i->buf, 2);
605 bch2_prt_task_backtrace(&i->buf, task, 0, GFP_KERNEL);
606 printbuf_indent_sub(&i->buf, 2);
607 prt_newline(&i->buf);
608
609 i->iter = task->pid;
610
611 closure_put(&trans->ref);
612
613 if (!seqmutex_relock(&c->btree_trans_lock, seq))
614 goto restart;
615 }
616 seqmutex_unlock(&c->btree_trans_lock);
617unlocked:
618 if (i->buf.allocation_failure)
619 ret = -ENOMEM;
620
621 if (!ret)
622 ret = flush_buf(i);
623
624 return ret ?: i->ret;
625}
626
627static const struct file_operations btree_transactions_ops = {
628 .owner = THIS_MODULE,
629 .open = bch2_dump_open,
630 .release = bch2_dump_release,
631 .read = bch2_btree_transactions_read,
632};
633
634static ssize_t bch2_journal_pins_read(struct file *file, char __user *buf,
635 size_t size, loff_t *ppos)
636{
637 struct dump_iter *i = file->private_data;
638 struct bch_fs *c = i->c;
639 bool done = false;
640 int err;
641
642 i->ubuf = buf;
643 i->size = size;
644 i->ret = 0;
645
646 while (1) {
647 err = flush_buf(i);
648 if (err)
649 return err;
650
651 if (!i->size)
652 break;
653
654 if (done)
655 break;
656
657 done = bch2_journal_seq_pins_to_text(&i->buf, &c->journal, &i->iter);
658 i->iter++;
659 }
660
661 if (i->buf.allocation_failure)
662 return -ENOMEM;
663
664 return i->ret;
665}
666
667static const struct file_operations journal_pins_ops = {
668 .owner = THIS_MODULE,
669 .open = bch2_dump_open,
670 .release = bch2_dump_release,
671 .read = bch2_journal_pins_read,
672};
673
674static ssize_t bch2_btree_updates_read(struct file *file, char __user *buf,
675 size_t size, loff_t *ppos)
676{
677 struct dump_iter *i = file->private_data;
678 struct bch_fs *c = i->c;
679 int err;
680
681 i->ubuf = buf;
682 i->size = size;
683 i->ret = 0;
684
685 if (!i->iter) {
686 bch2_btree_updates_to_text(&i->buf, c);
687 i->iter++;
688 }
689
690 err = flush_buf(i);
691 if (err)
692 return err;
693
694 if (i->buf.allocation_failure)
695 return -ENOMEM;
696
697 return i->ret;
698}
699
700static const struct file_operations btree_updates_ops = {
701 .owner = THIS_MODULE,
702 .open = bch2_dump_open,
703 .release = bch2_dump_release,
704 .read = bch2_btree_updates_read,
705};
706
707static int btree_transaction_stats_open(struct inode *inode, struct file *file)
708{
709 struct bch_fs *c = inode->i_private;
710 struct dump_iter *i;
711
712 i = kzalloc(sizeof(struct dump_iter), GFP_KERNEL);
713 if (!i)
714 return -ENOMEM;
715
716 i->iter = 1;
717 i->c = c;
718 i->buf = PRINTBUF;
719 file->private_data = i;
720
721 return 0;
722}
723
724static int btree_transaction_stats_release(struct inode *inode, struct file *file)
725{
726 struct dump_iter *i = file->private_data;
727
728 printbuf_exit(&i->buf);
729 kfree(i);
730
731 return 0;
732}
733
734static ssize_t btree_transaction_stats_read(struct file *file, char __user *buf,
735 size_t size, loff_t *ppos)
736{
737 struct dump_iter *i = file->private_data;
738 struct bch_fs *c = i->c;
739 int err;
740
741 i->ubuf = buf;
742 i->size = size;
743 i->ret = 0;
744
745 while (1) {
746 struct btree_transaction_stats *s = &c->btree_transaction_stats[i->iter];
747
748 err = flush_buf(i);
749 if (err)
750 return err;
751
752 if (!i->size)
753 break;
754
755 if (i->iter == ARRAY_SIZE(bch2_btree_transaction_fns) ||
756 !bch2_btree_transaction_fns[i->iter])
757 break;
758
759 prt_printf(&i->buf, "%s:\n", bch2_btree_transaction_fns[i->iter]);
760 printbuf_indent_add(&i->buf, 2);
761
762 mutex_lock(&s->lock);
763
764 prt_printf(&i->buf, "Max mem used: %u\n", s->max_mem);
765 prt_printf(&i->buf, "Transaction duration:\n");
766
767 printbuf_indent_add(&i->buf, 2);
768 bch2_time_stats_to_text(&i->buf, &s->duration);
769 printbuf_indent_sub(&i->buf, 2);
770
771 if (IS_ENABLED(CONFIG_BCACHEFS_LOCK_TIME_STATS)) {
772 prt_printf(&i->buf, "Lock hold times:\n");
773
774 printbuf_indent_add(&i->buf, 2);
775 bch2_time_stats_to_text(&i->buf, &s->lock_hold_times);
776 printbuf_indent_sub(&i->buf, 2);
777 }
778
779 if (s->max_paths_text) {
780 prt_printf(&i->buf, "Maximum allocated btree paths (%u):\n", s->nr_max_paths);
781
782 printbuf_indent_add(&i->buf, 2);
783 prt_str_indented(&i->buf, s->max_paths_text);
784 printbuf_indent_sub(&i->buf, 2);
785 }
786
787 mutex_unlock(&s->lock);
788
789 printbuf_indent_sub(&i->buf, 2);
790 prt_newline(&i->buf);
791 i->iter++;
792 }
793
794 if (i->buf.allocation_failure)
795 return -ENOMEM;
796
797 return i->ret;
798}
799
800static const struct file_operations btree_transaction_stats_op = {
801 .owner = THIS_MODULE,
802 .open = btree_transaction_stats_open,
803 .release = btree_transaction_stats_release,
804 .read = btree_transaction_stats_read,
805};
806
807static ssize_t bch2_btree_deadlock_read(struct file *file, char __user *buf,
808 size_t size, loff_t *ppos)
809{
810 struct dump_iter *i = file->private_data;
811 struct bch_fs *c = i->c;
812 struct btree_trans *trans;
813 ssize_t ret = 0;
814 u32 seq;
815
816 i->ubuf = buf;
817 i->size = size;
818 i->ret = 0;
819
820 if (i->iter)
821 goto out;
822restart:
823 seqmutex_lock(&c->btree_trans_lock);
824 list_for_each_entry(trans, &c->btree_trans_list, list) {
825 struct task_struct *task = READ_ONCE(trans->locking_wait.task);
826
827 if (!task || task->pid <= i->iter)
828 continue;
829
830 closure_get(&trans->ref);
831 seq = seqmutex_seq(&c->btree_trans_lock);
832 seqmutex_unlock(&c->btree_trans_lock);
833
834 ret = flush_buf(i);
835 if (ret) {
836 closure_put(&trans->ref);
837 goto out;
838 }
839
840 bch2_check_for_deadlock(trans, &i->buf);
841
842 i->iter = task->pid;
843
844 closure_put(&trans->ref);
845
846 if (!seqmutex_relock(&c->btree_trans_lock, seq))
847 goto restart;
848 }
849 seqmutex_unlock(&c->btree_trans_lock);
850out:
851 if (i->buf.allocation_failure)
852 ret = -ENOMEM;
853
854 if (!ret)
855 ret = flush_buf(i);
856
857 return ret ?: i->ret;
858}
859
860static const struct file_operations btree_deadlock_ops = {
861 .owner = THIS_MODULE,
862 .open = bch2_dump_open,
863 .release = bch2_dump_release,
864 .read = bch2_btree_deadlock_read,
865};
866
867void bch2_fs_debug_exit(struct bch_fs *c)
868{
869 if (!IS_ERR_OR_NULL(c->fs_debug_dir))
870 debugfs_remove_recursive(c->fs_debug_dir);
871}
872
873static void bch2_fs_debug_btree_init(struct bch_fs *c, struct btree_debug *bd)
874{
875 struct dentry *d;
876
877 d = debugfs_create_dir(bch2_btree_id_str(bd->id), c->btree_debug_dir);
878
879 debugfs_create_file("keys", 0400, d, bd, &btree_debug_ops);
880
881 debugfs_create_file("formats", 0400, d, bd, &btree_format_debug_ops);
882
883 debugfs_create_file("bfloat-failed", 0400, d, bd,
884 &bfloat_failed_debug_ops);
885}
886
887void bch2_fs_debug_init(struct bch_fs *c)
888{
889 struct btree_debug *bd;
890 char name[100];
891
892 if (IS_ERR_OR_NULL(bch_debug))
893 return;
894
895 snprintf(name, sizeof(name), "%pU", c->sb.user_uuid.b);
896 c->fs_debug_dir = debugfs_create_dir(name, bch_debug);
897 if (IS_ERR_OR_NULL(c->fs_debug_dir))
898 return;
899
900 debugfs_create_file("cached_btree_nodes", 0400, c->fs_debug_dir,
901 c->btree_debug, &cached_btree_nodes_ops);
902
903 debugfs_create_file("btree_transactions", 0400, c->fs_debug_dir,
904 c->btree_debug, &btree_transactions_ops);
905
906 debugfs_create_file("journal_pins", 0400, c->fs_debug_dir,
907 c->btree_debug, &journal_pins_ops);
908
909 debugfs_create_file("btree_updates", 0400, c->fs_debug_dir,
910 c->btree_debug, &btree_updates_ops);
911
912 debugfs_create_file("btree_transaction_stats", 0400, c->fs_debug_dir,
913 c, &btree_transaction_stats_op);
914
915 debugfs_create_file("btree_deadlock", 0400, c->fs_debug_dir,
916 c->btree_debug, &btree_deadlock_ops);
917
918 c->btree_debug_dir = debugfs_create_dir("btrees", c->fs_debug_dir);
919 if (IS_ERR_OR_NULL(c->btree_debug_dir))
920 return;
921
922 for (bd = c->btree_debug;
923 bd < c->btree_debug + ARRAY_SIZE(c->btree_debug);
924 bd++) {
925 bd->id = bd - c->btree_debug;
926 bch2_fs_debug_btree_init(c, bd);
927 }
928}
929
930#endif
931
932void bch2_debug_exit(void)
933{
934 if (!IS_ERR_OR_NULL(bch_debug))
935 debugfs_remove_recursive(bch_debug);
936}
937
938int __init bch2_debug_init(void)
939{
940 bch_debug = debugfs_create_dir("bcachefs", NULL);
941 return 0;
942}