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Update bcachefs sources to fd381c355c bcachefs: Fix a null ptr deref in fsck check_ex...
[bcachefs-tools-debian] / libbcachefs / super-io.c
1 // SPDX-License-Identifier: GPL-2.0
2
3 #include "bcachefs.h"
4 #include "btree_update_interior.h"
5 #include "buckets.h"
6 #include "checksum.h"
7 #include "disk_groups.h"
8 #include "ec.h"
9 #include "error.h"
10 #include "io.h"
11 #include "journal.h"
12 #include "journal_io.h"
13 #include "journal_sb.h"
14 #include "journal_seq_blacklist.h"
15 #include "replicas.h"
16 #include "quota.h"
17 #include "super-io.h"
18 #include "super.h"
19 #include "vstructs.h"
20 #include "counters.h"
21
22 #include <linux/backing-dev.h>
23 #include <linux/sort.h>
24
25 #include <trace/events/bcachefs.h>
26
27 const char * const bch2_sb_fields[] = {
28 #define x(name, nr)     #name,
29         BCH_SB_FIELDS()
30 #undef x
31         NULL
32 };
33
34 static int bch2_sb_field_validate(struct bch_sb *, struct bch_sb_field *,
35                                   struct printbuf *);
36
37 struct bch_sb_field *bch2_sb_field_get(struct bch_sb *sb,
38                                       enum bch_sb_field_type type)
39 {
40         struct bch_sb_field *f;
41
42         /* XXX: need locking around superblock to access optional fields */
43
44         vstruct_for_each(sb, f)
45                 if (le32_to_cpu(f->type) == type)
46                         return f;
47         return NULL;
48 }
49
50 static struct bch_sb_field *__bch2_sb_field_resize(struct bch_sb_handle *sb,
51                                                    struct bch_sb_field *f,
52                                                    unsigned u64s)
53 {
54         unsigned old_u64s = f ? le32_to_cpu(f->u64s) : 0;
55         unsigned sb_u64s = le32_to_cpu(sb->sb->u64s) + u64s - old_u64s;
56
57         BUG_ON(__vstruct_bytes(struct bch_sb, sb_u64s) > sb->buffer_size);
58
59         if (!f && !u64s) {
60                 /* nothing to do: */
61         } else if (!f) {
62                 f = vstruct_last(sb->sb);
63                 memset(f, 0, sizeof(u64) * u64s);
64                 f->u64s = cpu_to_le32(u64s);
65                 f->type = 0;
66         } else {
67                 void *src, *dst;
68
69                 src = vstruct_end(f);
70
71                 if (u64s) {
72                         f->u64s = cpu_to_le32(u64s);
73                         dst = vstruct_end(f);
74                 } else {
75                         dst = f;
76                 }
77
78                 memmove(dst, src, vstruct_end(sb->sb) - src);
79
80                 if (dst > src)
81                         memset(src, 0, dst - src);
82         }
83
84         sb->sb->u64s = cpu_to_le32(sb_u64s);
85
86         return u64s ? f : NULL;
87 }
88
89 void bch2_sb_field_delete(struct bch_sb_handle *sb,
90                           enum bch_sb_field_type type)
91 {
92         struct bch_sb_field *f = bch2_sb_field_get(sb->sb, type);
93
94         if (f)
95                 __bch2_sb_field_resize(sb, f, 0);
96 }
97
98 /* Superblock realloc/free: */
99
100 void bch2_free_super(struct bch_sb_handle *sb)
101 {
102         kfree(sb->bio);
103         if (!IS_ERR_OR_NULL(sb->bdev))
104                 blkdev_put(sb->bdev, sb->mode);
105
106         kfree(sb->sb);
107         memset(sb, 0, sizeof(*sb));
108 }
109
110 int bch2_sb_realloc(struct bch_sb_handle *sb, unsigned u64s)
111 {
112         size_t new_bytes = __vstruct_bytes(struct bch_sb, u64s);
113         size_t new_buffer_size;
114         struct bch_sb *new_sb;
115         struct bio *bio;
116
117         if (sb->bdev)
118                 new_bytes = max_t(size_t, new_bytes, bdev_logical_block_size(sb->bdev));
119
120         new_buffer_size = roundup_pow_of_two(new_bytes);
121
122         if (sb->sb && sb->buffer_size >= new_buffer_size)
123                 return 0;
124
125         if (sb->have_layout) {
126                 u64 max_bytes = 512 << sb->sb->layout.sb_max_size_bits;
127
128                 if (new_bytes > max_bytes) {
129                         pr_err("%pg: superblock too big: want %zu but have %llu",
130                                sb->bdev, new_bytes, max_bytes);
131                         return -BCH_ERR_ENOSPC_sb;
132                 }
133         }
134
135         if (sb->buffer_size >= new_buffer_size && sb->sb)
136                 return 0;
137
138         if (dynamic_fault("bcachefs:add:super_realloc"))
139                 return -BCH_ERR_ENOMEM_sb_realloc_injected;
140
141         if (sb->have_bio) {
142                 unsigned nr_bvecs = DIV_ROUND_UP(new_buffer_size, PAGE_SIZE);
143
144                 bio = bio_kmalloc(nr_bvecs, GFP_KERNEL);
145                 if (!bio)
146                         return -BCH_ERR_ENOMEM_sb_bio_realloc;
147
148                 bio_init(bio, NULL, bio->bi_inline_vecs, nr_bvecs, 0);
149
150                 kfree(sb->bio);
151                 sb->bio = bio;
152         }
153
154         new_sb = krealloc(sb->sb, new_buffer_size, GFP_NOFS|__GFP_ZERO);
155         if (!new_sb)
156                 return -BCH_ERR_ENOMEM_sb_buf_realloc;
157
158         sb->sb = new_sb;
159         sb->buffer_size = new_buffer_size;
160
161         return 0;
162 }
163
164 struct bch_sb_field *bch2_sb_field_resize(struct bch_sb_handle *sb,
165                                           enum bch_sb_field_type type,
166                                           unsigned u64s)
167 {
168         struct bch_sb_field *f = bch2_sb_field_get(sb->sb, type);
169         ssize_t old_u64s = f ? le32_to_cpu(f->u64s) : 0;
170         ssize_t d = -old_u64s + u64s;
171
172         if (bch2_sb_realloc(sb, le32_to_cpu(sb->sb->u64s) + d))
173                 return NULL;
174
175         if (sb->fs_sb) {
176                 struct bch_fs *c = container_of(sb, struct bch_fs, disk_sb);
177                 struct bch_dev *ca;
178                 unsigned i;
179
180                 lockdep_assert_held(&c->sb_lock);
181
182                 /* XXX: we're not checking that offline device have enough space */
183
184                 for_each_online_member(ca, c, i) {
185                         struct bch_sb_handle *sb = &ca->disk_sb;
186
187                         if (bch2_sb_realloc(sb, le32_to_cpu(sb->sb->u64s) + d)) {
188                                 percpu_ref_put(&ca->ref);
189                                 return NULL;
190                         }
191                 }
192         }
193
194         f = bch2_sb_field_get(sb->sb, type);
195         f = __bch2_sb_field_resize(sb, f, u64s);
196         if (f)
197                 f->type = cpu_to_le32(type);
198         return f;
199 }
200
201 /* Superblock validate: */
202
203 static inline void __bch2_sb_layout_size_assert(void)
204 {
205         BUILD_BUG_ON(sizeof(struct bch_sb_layout) != 512);
206 }
207
208 static int validate_sb_layout(struct bch_sb_layout *layout, struct printbuf *out)
209 {
210         u64 offset, prev_offset, max_sectors;
211         unsigned i;
212
213         if (uuid_le_cmp(layout->magic, BCACHE_MAGIC) &&
214             uuid_le_cmp(layout->magic, BCHFS_MAGIC)) {
215                 prt_printf(out, "Not a bcachefs superblock layout");
216                 return -BCH_ERR_invalid_sb_layout;
217         }
218
219         if (layout->layout_type != 0) {
220                 prt_printf(out, "Invalid superblock layout type %u",
221                        layout->layout_type);
222                 return -BCH_ERR_invalid_sb_layout_type;
223         }
224
225         if (!layout->nr_superblocks) {
226                 prt_printf(out, "Invalid superblock layout: no superblocks");
227                 return -BCH_ERR_invalid_sb_layout_nr_superblocks;
228         }
229
230         if (layout->nr_superblocks > ARRAY_SIZE(layout->sb_offset)) {
231                 prt_printf(out, "Invalid superblock layout: too many superblocks");
232                 return -BCH_ERR_invalid_sb_layout_nr_superblocks;
233         }
234
235         max_sectors = 1 << layout->sb_max_size_bits;
236
237         prev_offset = le64_to_cpu(layout->sb_offset[0]);
238
239         for (i = 1; i < layout->nr_superblocks; i++) {
240                 offset = le64_to_cpu(layout->sb_offset[i]);
241
242                 if (offset < prev_offset + max_sectors) {
243                         prt_printf(out, "Invalid superblock layout: superblocks overlap\n"
244                                "  (sb %u ends at %llu next starts at %llu",
245                                i - 1, prev_offset + max_sectors, offset);
246                         return -BCH_ERR_invalid_sb_layout_superblocks_overlap;
247                 }
248                 prev_offset = offset;
249         }
250
251         return 0;
252 }
253
254 static int bch2_sb_validate(struct bch_sb_handle *disk_sb, struct printbuf *out,
255                             int rw)
256 {
257         struct bch_sb *sb = disk_sb->sb;
258         struct bch_sb_field *f;
259         struct bch_sb_field_members *mi;
260         enum bch_opt_id opt_id;
261         u32 version, version_min;
262         u16 block_size;
263         int ret;
264
265         version         = le16_to_cpu(sb->version);
266         version_min     = version >= bcachefs_metadata_version_bkey_renumber
267                 ? le16_to_cpu(sb->version_min)
268                 : version;
269
270         if (version    >= bcachefs_metadata_version_max) {
271                 prt_printf(out, "Unsupported superblock version %u (min %u, max %u)",
272                        version, bcachefs_metadata_version_min, bcachefs_metadata_version_max);
273                 return -BCH_ERR_invalid_sb_version;
274         }
275
276         if (version_min < bcachefs_metadata_version_min) {
277                 prt_printf(out, "Unsupported superblock version %u (min %u, max %u)",
278                        version_min, bcachefs_metadata_version_min, bcachefs_metadata_version_max);
279                 return -BCH_ERR_invalid_sb_version;
280         }
281
282         if (version_min > version) {
283                 prt_printf(out, "Bad minimum version %u, greater than version field %u",
284                        version_min, version);
285                 return -BCH_ERR_invalid_sb_version;
286         }
287
288         if (sb->features[1] ||
289             (le64_to_cpu(sb->features[0]) & (~0ULL << BCH_FEATURE_NR))) {
290                 prt_printf(out, "Filesystem has incompatible features");
291                 return -BCH_ERR_invalid_sb_features;
292         }
293
294         block_size = le16_to_cpu(sb->block_size);
295
296         if (block_size > PAGE_SECTORS) {
297                 prt_printf(out, "Block size too big (got %u, max %u)",
298                        block_size, PAGE_SECTORS);
299                 return -BCH_ERR_invalid_sb_block_size;
300         }
301
302         if (bch2_is_zero(sb->user_uuid.b, sizeof(uuid_le))) {
303                 prt_printf(out, "Bad user UUID (got zeroes)");
304                 return -BCH_ERR_invalid_sb_uuid;
305         }
306
307         if (bch2_is_zero(sb->uuid.b, sizeof(uuid_le))) {
308                 prt_printf(out, "Bad intenal UUID (got zeroes)");
309                 return -BCH_ERR_invalid_sb_uuid;
310         }
311
312         if (!sb->nr_devices ||
313             sb->nr_devices > BCH_SB_MEMBERS_MAX) {
314                 prt_printf(out, "Bad number of member devices %u (max %u)",
315                        sb->nr_devices, BCH_SB_MEMBERS_MAX);
316                 return -BCH_ERR_invalid_sb_too_many_members;
317         }
318
319         if (sb->dev_idx >= sb->nr_devices) {
320                 prt_printf(out, "Bad dev_idx (got %u, nr_devices %u)",
321                        sb->dev_idx, sb->nr_devices);
322                 return -BCH_ERR_invalid_sb_dev_idx;
323         }
324
325         if (!sb->time_precision ||
326             le32_to_cpu(sb->time_precision) > NSEC_PER_SEC) {
327                 prt_printf(out, "Invalid time precision: %u (min 1, max %lu)",
328                        le32_to_cpu(sb->time_precision), NSEC_PER_SEC);
329                 return -BCH_ERR_invalid_sb_time_precision;
330         }
331
332         if (rw == READ) {
333                 /*
334                  * Been seeing a bug where these are getting inexplicably
335                  * zeroed, so we'r now validating them, but we have to be
336                  * careful not to preven people's filesystems from mounting:
337                  */
338                 if (!BCH_SB_JOURNAL_FLUSH_DELAY(sb))
339                         SET_BCH_SB_JOURNAL_FLUSH_DELAY(sb, 1000);
340                 if (!BCH_SB_JOURNAL_RECLAIM_DELAY(sb))
341                         SET_BCH_SB_JOURNAL_RECLAIM_DELAY(sb, 1000);
342         }
343
344         for (opt_id = 0; opt_id < bch2_opts_nr; opt_id++) {
345                 const struct bch_option *opt = bch2_opt_table + opt_id;
346
347                 if (opt->get_sb != BCH2_NO_SB_OPT) {
348                         u64 v = bch2_opt_from_sb(sb, opt_id);
349
350                         prt_printf(out, "Invalid option ");
351                         ret = bch2_opt_validate(opt, v, out);
352                         if (ret)
353                                 return ret;
354
355                         printbuf_reset(out);
356                 }
357         }
358
359         /* validate layout */
360         ret = validate_sb_layout(&sb->layout, out);
361         if (ret)
362                 return ret;
363
364         vstruct_for_each(sb, f) {
365                 if (!f->u64s) {
366                         prt_printf(out, "Invalid superblock: optional field with size 0 (type %u)",
367                                le32_to_cpu(f->type));
368                         return -BCH_ERR_invalid_sb_field_size;
369                 }
370
371                 if (vstruct_next(f) > vstruct_last(sb)) {
372                         prt_printf(out, "Invalid superblock: optional field extends past end of superblock (type %u)",
373                                le32_to_cpu(f->type));
374                         return -BCH_ERR_invalid_sb_field_size;
375                 }
376         }
377
378         /* members must be validated first: */
379         mi = bch2_sb_get_members(sb);
380         if (!mi) {
381                 prt_printf(out, "Invalid superblock: member info area missing");
382                 return -BCH_ERR_invalid_sb_members_missing;
383         }
384
385         ret = bch2_sb_field_validate(sb, &mi->field, out);
386         if (ret)
387                 return ret;
388
389         vstruct_for_each(sb, f) {
390                 if (le32_to_cpu(f->type) == BCH_SB_FIELD_members)
391                         continue;
392
393                 ret = bch2_sb_field_validate(sb, f, out);
394                 if (ret)
395                         return ret;
396         }
397
398         return 0;
399 }
400
401 /* device open: */
402
403 static void bch2_sb_update(struct bch_fs *c)
404 {
405         struct bch_sb *src = c->disk_sb.sb;
406         struct bch_sb_field_members *mi = bch2_sb_get_members(src);
407         struct bch_dev *ca;
408         unsigned i;
409
410         lockdep_assert_held(&c->sb_lock);
411
412         c->sb.uuid              = src->uuid;
413         c->sb.user_uuid         = src->user_uuid;
414         c->sb.version           = le16_to_cpu(src->version);
415         c->sb.version_min       = le16_to_cpu(src->version_min);
416         c->sb.nr_devices        = src->nr_devices;
417         c->sb.clean             = BCH_SB_CLEAN(src);
418         c->sb.encryption_type   = BCH_SB_ENCRYPTION_TYPE(src);
419
420         c->sb.nsec_per_time_unit = le32_to_cpu(src->time_precision);
421         c->sb.time_units_per_sec = NSEC_PER_SEC / c->sb.nsec_per_time_unit;
422
423         /* XXX this is wrong, we need a 96 or 128 bit integer type */
424         c->sb.time_base_lo      = div_u64(le64_to_cpu(src->time_base_lo),
425                                           c->sb.nsec_per_time_unit);
426         c->sb.time_base_hi      = le32_to_cpu(src->time_base_hi);
427
428         c->sb.features          = le64_to_cpu(src->features[0]);
429         c->sb.compat            = le64_to_cpu(src->compat[0]);
430
431         for_each_member_device(ca, c, i)
432                 ca->mi = bch2_mi_to_cpu(mi->members + i);
433 }
434
435 static int __copy_super(struct bch_sb_handle *dst_handle, struct bch_sb *src)
436 {
437         struct bch_sb_field *src_f, *dst_f;
438         struct bch_sb *dst = dst_handle->sb;
439         unsigned i;
440
441         dst->version            = src->version;
442         dst->version_min        = src->version_min;
443         dst->seq                = src->seq;
444         dst->uuid               = src->uuid;
445         dst->user_uuid          = src->user_uuid;
446         memcpy(dst->label,      src->label, sizeof(dst->label));
447
448         dst->block_size         = src->block_size;
449         dst->nr_devices         = src->nr_devices;
450
451         dst->time_base_lo       = src->time_base_lo;
452         dst->time_base_hi       = src->time_base_hi;
453         dst->time_precision     = src->time_precision;
454
455         memcpy(dst->flags,      src->flags,     sizeof(dst->flags));
456         memcpy(dst->features,   src->features,  sizeof(dst->features));
457         memcpy(dst->compat,     src->compat,    sizeof(dst->compat));
458
459         for (i = 0; i < BCH_SB_FIELD_NR; i++) {
460                 int d;
461
462                 if ((1U << i) & BCH_SINGLE_DEVICE_SB_FIELDS)
463                         continue;
464
465                 src_f = bch2_sb_field_get(src, i);
466                 dst_f = bch2_sb_field_get(dst, i);
467
468                 d = (src_f ? le32_to_cpu(src_f->u64s) : 0) -
469                     (dst_f ? le32_to_cpu(dst_f->u64s) : 0);
470                 if (d > 0) {
471                         int ret = bch2_sb_realloc(dst_handle, le32_to_cpu(dst_handle->sb->u64s) + d);
472                         if (ret)
473                                 return ret;
474
475                         dst = dst_handle->sb;
476                         dst_f = bch2_sb_field_get(dst, i);
477                 }
478
479                 dst_f = __bch2_sb_field_resize(dst_handle, dst_f,
480                                 src_f ? le32_to_cpu(src_f->u64s) : 0);
481
482                 if (src_f)
483                         memcpy(dst_f, src_f, vstruct_bytes(src_f));
484         }
485
486         return 0;
487 }
488
489 int bch2_sb_to_fs(struct bch_fs *c, struct bch_sb *src)
490 {
491         int ret;
492
493         lockdep_assert_held(&c->sb_lock);
494
495         ret =   bch2_sb_realloc(&c->disk_sb, 0) ?:
496                 __copy_super(&c->disk_sb, src) ?:
497                 bch2_sb_replicas_to_cpu_replicas(c) ?:
498                 bch2_sb_disk_groups_to_cpu(c);
499         if (ret)
500                 return ret;
501
502         bch2_sb_update(c);
503         return 0;
504 }
505
506 int bch2_sb_from_fs(struct bch_fs *c, struct bch_dev *ca)
507 {
508         return __copy_super(&ca->disk_sb, c->disk_sb.sb);
509 }
510
511 /* read superblock: */
512
513 static int read_one_super(struct bch_sb_handle *sb, u64 offset, struct printbuf *err)
514 {
515         struct bch_csum csum;
516         u32 version, version_min;
517         size_t bytes;
518         int ret;
519 reread:
520         bio_reset(sb->bio, sb->bdev, REQ_OP_READ|REQ_SYNC|REQ_META);
521         sb->bio->bi_iter.bi_sector = offset;
522         bch2_bio_map(sb->bio, sb->sb, sb->buffer_size);
523
524         ret = submit_bio_wait(sb->bio);
525         if (ret) {
526                 prt_printf(err, "IO error: %i", ret);
527                 return ret;
528         }
529
530         if (uuid_le_cmp(sb->sb->magic, BCACHE_MAGIC) &&
531             uuid_le_cmp(sb->sb->magic, BCHFS_MAGIC)) {
532                 prt_printf(err, "Not a bcachefs superblock");
533                 return -BCH_ERR_invalid_sb_magic;
534         }
535
536         version         = le16_to_cpu(sb->sb->version);
537         version_min     = version >= bcachefs_metadata_version_bkey_renumber
538                 ? le16_to_cpu(sb->sb->version_min)
539                 : version;
540
541         if (version    >= bcachefs_metadata_version_max) {
542                 prt_printf(err, "Unsupported superblock version %u (min %u, max %u)",
543                        version, bcachefs_metadata_version_min, bcachefs_metadata_version_max);
544                 return -BCH_ERR_invalid_sb_version;
545         }
546
547         if (version_min < bcachefs_metadata_version_min) {
548                 prt_printf(err, "Unsupported superblock version %u (min %u, max %u)",
549                        version_min, bcachefs_metadata_version_min, bcachefs_metadata_version_max);
550                 return -BCH_ERR_invalid_sb_version;
551         }
552
553         bytes = vstruct_bytes(sb->sb);
554
555         if (bytes > 512 << sb->sb->layout.sb_max_size_bits) {
556                 prt_printf(err, "Invalid superblock: too big (got %zu bytes, layout max %lu)",
557                        bytes, 512UL << sb->sb->layout.sb_max_size_bits);
558                 return -BCH_ERR_invalid_sb_too_big;
559         }
560
561         if (bytes > sb->buffer_size) {
562                 ret = bch2_sb_realloc(sb, le32_to_cpu(sb->sb->u64s));
563                 if (ret)
564                         return ret;
565                 goto reread;
566         }
567
568         if (BCH_SB_CSUM_TYPE(sb->sb) >= BCH_CSUM_NR) {
569                 prt_printf(err, "unknown checksum type %llu", BCH_SB_CSUM_TYPE(sb->sb));
570                 return -BCH_ERR_invalid_sb_csum_type;
571         }
572
573         /* XXX: verify MACs */
574         csum = csum_vstruct(NULL, BCH_SB_CSUM_TYPE(sb->sb),
575                             null_nonce(), sb->sb);
576
577         if (bch2_crc_cmp(csum, sb->sb->csum)) {
578                 prt_printf(err, "bad checksum");
579                 return -BCH_ERR_invalid_sb_csum;
580         }
581
582         sb->seq = le64_to_cpu(sb->sb->seq);
583
584         return 0;
585 }
586
587 int bch2_read_super(const char *path, struct bch_opts *opts,
588                     struct bch_sb_handle *sb)
589 {
590         u64 offset = opt_get(*opts, sb);
591         struct bch_sb_layout layout;
592         struct printbuf err = PRINTBUF;
593         __le64 *i;
594         int ret;
595
596         pr_verbose_init(*opts, "");
597
598         memset(sb, 0, sizeof(*sb));
599         sb->mode        = FMODE_READ;
600         sb->have_bio    = true;
601
602         if (!opt_get(*opts, noexcl))
603                 sb->mode |= FMODE_EXCL;
604
605         if (!opt_get(*opts, nochanges))
606                 sb->mode |= FMODE_WRITE;
607
608         sb->bdev = blkdev_get_by_path(path, sb->mode, sb);
609         if (IS_ERR(sb->bdev) &&
610             PTR_ERR(sb->bdev) == -EACCES &&
611             opt_get(*opts, read_only)) {
612                 sb->mode &= ~FMODE_WRITE;
613
614                 sb->bdev = blkdev_get_by_path(path, sb->mode, sb);
615                 if (!IS_ERR(sb->bdev))
616                         opt_set(*opts, nochanges, true);
617         }
618
619         if (IS_ERR(sb->bdev)) {
620                 ret = PTR_ERR(sb->bdev);
621                 goto out;
622         }
623
624         ret = bch2_sb_realloc(sb, 0);
625         if (ret) {
626                 prt_printf(&err, "error allocating memory for superblock");
627                 goto err;
628         }
629
630         if (bch2_fs_init_fault("read_super")) {
631                 prt_printf(&err, "dynamic fault");
632                 ret = -EFAULT;
633                 goto err;
634         }
635
636         ret = read_one_super(sb, offset, &err);
637         if (!ret)
638                 goto got_super;
639
640         if (opt_defined(*opts, sb))
641                 goto err;
642
643         printk(KERN_ERR "bcachefs (%s): error reading default superblock: %s",
644                path, err.buf);
645         printbuf_reset(&err);
646
647         /*
648          * Error reading primary superblock - read location of backup
649          * superblocks:
650          */
651         bio_reset(sb->bio, sb->bdev, REQ_OP_READ|REQ_SYNC|REQ_META);
652         sb->bio->bi_iter.bi_sector = BCH_SB_LAYOUT_SECTOR;
653         /*
654          * use sb buffer to read layout, since sb buffer is page aligned but
655          * layout won't be:
656          */
657         bch2_bio_map(sb->bio, sb->sb, sizeof(struct bch_sb_layout));
658
659         ret = submit_bio_wait(sb->bio);
660         if (ret) {
661                 prt_printf(&err, "IO error: %i", ret);
662                 goto err;
663         }
664
665         memcpy(&layout, sb->sb, sizeof(layout));
666         ret = validate_sb_layout(&layout, &err);
667         if (ret)
668                 goto err;
669
670         for (i = layout.sb_offset;
671              i < layout.sb_offset + layout.nr_superblocks; i++) {
672                 offset = le64_to_cpu(*i);
673
674                 if (offset == opt_get(*opts, sb))
675                         continue;
676
677                 ret = read_one_super(sb, offset, &err);
678                 if (!ret)
679                         goto got_super;
680         }
681
682         goto err;
683
684 got_super:
685         if (le16_to_cpu(sb->sb->block_size) << 9 <
686             bdev_logical_block_size(sb->bdev)) {
687                 prt_printf(&err, "block size (%u) smaller than device block size (%u)",
688                        le16_to_cpu(sb->sb->block_size) << 9,
689                        bdev_logical_block_size(sb->bdev));
690                 ret = -BCH_ERR_block_size_too_small;
691                 goto err;
692         }
693
694         ret = 0;
695         sb->have_layout = true;
696
697         ret = bch2_sb_validate(sb, &err, READ);
698         if (ret) {
699                 printk(KERN_ERR "bcachefs (%s): error validating superblock: %s",
700                        path, err.buf);
701                 goto err_no_print;
702         }
703 out:
704         pr_verbose_init(*opts, "ret %i", ret);
705         printbuf_exit(&err);
706         return ret;
707 err:
708         printk(KERN_ERR "bcachefs (%s): error reading superblock: %s",
709                path, err.buf);
710 err_no_print:
711         bch2_free_super(sb);
712         goto out;
713 }
714
715 /* write superblock: */
716
717 static void write_super_endio(struct bio *bio)
718 {
719         struct bch_dev *ca = bio->bi_private;
720
721         /* XXX: return errors directly */
722
723         if (bch2_dev_io_err_on(bio->bi_status, ca, "superblock write error: %s",
724                                bch2_blk_status_to_str(bio->bi_status)))
725                 ca->sb_write_error = 1;
726
727         closure_put(&ca->fs->sb_write);
728         percpu_ref_put(&ca->io_ref);
729 }
730
731 static void read_back_super(struct bch_fs *c, struct bch_dev *ca)
732 {
733         struct bch_sb *sb = ca->disk_sb.sb;
734         struct bio *bio = ca->disk_sb.bio;
735
736         bio_reset(bio, ca->disk_sb.bdev, REQ_OP_READ|REQ_SYNC|REQ_META);
737         bio->bi_iter.bi_sector  = le64_to_cpu(sb->layout.sb_offset[0]);
738         bio->bi_end_io          = write_super_endio;
739         bio->bi_private         = ca;
740         bch2_bio_map(bio, ca->sb_read_scratch, PAGE_SIZE);
741
742         this_cpu_add(ca->io_done->sectors[READ][BCH_DATA_sb],
743                      bio_sectors(bio));
744
745         percpu_ref_get(&ca->io_ref);
746         closure_bio_submit(bio, &c->sb_write);
747 }
748
749 static void write_one_super(struct bch_fs *c, struct bch_dev *ca, unsigned idx)
750 {
751         struct bch_sb *sb = ca->disk_sb.sb;
752         struct bio *bio = ca->disk_sb.bio;
753
754         sb->offset = sb->layout.sb_offset[idx];
755
756         SET_BCH_SB_CSUM_TYPE(sb, bch2_csum_opt_to_type(c->opts.metadata_checksum, false));
757         sb->csum = csum_vstruct(c, BCH_SB_CSUM_TYPE(sb),
758                                 null_nonce(), sb);
759
760         bio_reset(bio, ca->disk_sb.bdev, REQ_OP_WRITE|REQ_SYNC|REQ_META);
761         bio->bi_iter.bi_sector  = le64_to_cpu(sb->offset);
762         bio->bi_end_io          = write_super_endio;
763         bio->bi_private         = ca;
764         bch2_bio_map(bio, sb,
765                      roundup((size_t) vstruct_bytes(sb),
766                              bdev_logical_block_size(ca->disk_sb.bdev)));
767
768         this_cpu_add(ca->io_done->sectors[WRITE][BCH_DATA_sb],
769                      bio_sectors(bio));
770
771         percpu_ref_get(&ca->io_ref);
772         closure_bio_submit(bio, &c->sb_write);
773 }
774
775 int bch2_write_super(struct bch_fs *c)
776 {
777         struct closure *cl = &c->sb_write;
778         struct bch_dev *ca;
779         struct printbuf err = PRINTBUF;
780         unsigned i, sb = 0, nr_wrote;
781         struct bch_devs_mask sb_written;
782         bool wrote, can_mount_without_written, can_mount_with_written;
783         unsigned degraded_flags = BCH_FORCE_IF_DEGRADED;
784         int ret = 0;
785
786         trace_and_count(c, write_super, c, _RET_IP_);
787
788         if (c->opts.very_degraded)
789                 degraded_flags |= BCH_FORCE_IF_LOST;
790
791         lockdep_assert_held(&c->sb_lock);
792
793         closure_init_stack(cl);
794         memset(&sb_written, 0, sizeof(sb_written));
795
796         if (c->opts.version_upgrade) {
797                 c->disk_sb.sb->magic = BCHFS_MAGIC;
798                 c->disk_sb.sb->layout.magic = BCHFS_MAGIC;
799         }
800
801         le64_add_cpu(&c->disk_sb.sb->seq, 1);
802
803         if (test_bit(BCH_FS_ERROR, &c->flags))
804                 SET_BCH_SB_HAS_ERRORS(c->disk_sb.sb, 1);
805         if (test_bit(BCH_FS_TOPOLOGY_ERROR, &c->flags))
806                 SET_BCH_SB_HAS_TOPOLOGY_ERRORS(c->disk_sb.sb, 1);
807
808         SET_BCH_SB_BIG_ENDIAN(c->disk_sb.sb, CPU_BIG_ENDIAN);
809
810         bch2_sb_counters_from_cpu(c);
811
812         for_each_online_member(ca, c, i)
813                 bch2_sb_from_fs(c, ca);
814
815         for_each_online_member(ca, c, i) {
816                 printbuf_reset(&err);
817
818                 ret = bch2_sb_validate(&ca->disk_sb, &err, WRITE);
819                 if (ret) {
820                         bch2_fs_inconsistent(c, "sb invalid before write: %s", err.buf);
821                         percpu_ref_put(&ca->io_ref);
822                         goto out;
823                 }
824         }
825
826         if (c->opts.nochanges)
827                 goto out;
828
829         /*
830          * Defer writing the superblock until filesystem initialization is
831          * complete - don't write out a partly initialized superblock:
832          */
833         if (!BCH_SB_INITIALIZED(c->disk_sb.sb))
834                 goto out;
835
836         for_each_online_member(ca, c, i) {
837                 __set_bit(ca->dev_idx, sb_written.d);
838                 ca->sb_write_error = 0;
839         }
840
841         for_each_online_member(ca, c, i)
842                 read_back_super(c, ca);
843         closure_sync(cl);
844
845         for_each_online_member(ca, c, i) {
846                 if (ca->sb_write_error)
847                         continue;
848
849                 if (le64_to_cpu(ca->sb_read_scratch->seq) < ca->disk_sb.seq) {
850                         bch2_fs_fatal_error(c,
851                                 "Superblock write was silently dropped! (seq %llu expected %llu)",
852                                 le64_to_cpu(ca->sb_read_scratch->seq),
853                                 ca->disk_sb.seq);
854                         percpu_ref_put(&ca->io_ref);
855                         ret = -BCH_ERR_erofs_sb_err;
856                         goto out;
857                 }
858
859                 if (le64_to_cpu(ca->sb_read_scratch->seq) > ca->disk_sb.seq) {
860                         bch2_fs_fatal_error(c,
861                                 "Superblock modified by another process (seq %llu expected %llu)",
862                                 le64_to_cpu(ca->sb_read_scratch->seq),
863                                 ca->disk_sb.seq);
864                         percpu_ref_put(&ca->io_ref);
865                         ret = -BCH_ERR_erofs_sb_err;
866                         goto out;
867                 }
868         }
869
870         do {
871                 wrote = false;
872                 for_each_online_member(ca, c, i)
873                         if (!ca->sb_write_error &&
874                             sb < ca->disk_sb.sb->layout.nr_superblocks) {
875                                 write_one_super(c, ca, sb);
876                                 wrote = true;
877                         }
878                 closure_sync(cl);
879                 sb++;
880         } while (wrote);
881
882         for_each_online_member(ca, c, i) {
883                 if (ca->sb_write_error)
884                         __clear_bit(ca->dev_idx, sb_written.d);
885                 else
886                         ca->disk_sb.seq = le64_to_cpu(ca->disk_sb.sb->seq);
887         }
888
889         nr_wrote = dev_mask_nr(&sb_written);
890
891         can_mount_with_written =
892                 bch2_have_enough_devs(c, sb_written, degraded_flags, false);
893
894         for (i = 0; i < ARRAY_SIZE(sb_written.d); i++)
895                 sb_written.d[i] = ~sb_written.d[i];
896
897         can_mount_without_written =
898                 bch2_have_enough_devs(c, sb_written, degraded_flags, false);
899
900         /*
901          * If we would be able to mount _without_ the devices we successfully
902          * wrote superblocks to, we weren't able to write to enough devices:
903          *
904          * Exception: if we can mount without the successes because we haven't
905          * written anything (new filesystem), we continue if we'd be able to
906          * mount with the devices we did successfully write to:
907          */
908         if (bch2_fs_fatal_err_on(!nr_wrote ||
909                                  !can_mount_with_written ||
910                                  (can_mount_without_written &&
911                                   !can_mount_with_written), c,
912                 "Unable to write superblock to sufficient devices (from %ps)",
913                 (void *) _RET_IP_))
914                 ret = -1;
915 out:
916         /* Make new options visible after they're persistent: */
917         bch2_sb_update(c);
918         printbuf_exit(&err);
919         return ret;
920 }
921
922 void __bch2_check_set_feature(struct bch_fs *c, unsigned feat)
923 {
924         mutex_lock(&c->sb_lock);
925         if (!(c->sb.features & (1ULL << feat))) {
926                 c->disk_sb.sb->features[0] |= cpu_to_le64(1ULL << feat);
927
928                 bch2_write_super(c);
929         }
930         mutex_unlock(&c->sb_lock);
931 }
932
933 /* BCH_SB_FIELD_members: */
934
935 static int bch2_sb_members_validate(struct bch_sb *sb,
936                                     struct bch_sb_field *f,
937                                     struct printbuf *err)
938 {
939         struct bch_sb_field_members *mi = field_to_type(f, members);
940         unsigned i;
941
942         if ((void *) (mi->members + sb->nr_devices) >
943             vstruct_end(&mi->field)) {
944                 prt_printf(err, "too many devices for section size");
945                 return -BCH_ERR_invalid_sb_members;
946         }
947
948         for (i = 0; i < sb->nr_devices; i++) {
949                 struct bch_member *m = mi->members + i;
950
951                 if (!bch2_member_exists(m))
952                         continue;
953
954                 if (le64_to_cpu(m->nbuckets) > LONG_MAX) {
955                         prt_printf(err, "device %u: too many buckets (got %llu, max %lu)",
956                                i, le64_to_cpu(m->nbuckets), LONG_MAX);
957                         return -BCH_ERR_invalid_sb_members;
958                 }
959
960                 if (le64_to_cpu(m->nbuckets) -
961                     le16_to_cpu(m->first_bucket) < BCH_MIN_NR_NBUCKETS) {
962                         prt_printf(err, "device %u: not enough buckets (got %llu, max %u)",
963                                i, le64_to_cpu(m->nbuckets), BCH_MIN_NR_NBUCKETS);
964                         return -BCH_ERR_invalid_sb_members;
965                 }
966
967                 if (le16_to_cpu(m->bucket_size) <
968                     le16_to_cpu(sb->block_size)) {
969                         prt_printf(err, "device %u: bucket size %u smaller than block size %u",
970                                i, le16_to_cpu(m->bucket_size), le16_to_cpu(sb->block_size));
971                         return -BCH_ERR_invalid_sb_members;
972                 }
973
974                 if (le16_to_cpu(m->bucket_size) <
975                     BCH_SB_BTREE_NODE_SIZE(sb)) {
976                         prt_printf(err, "device %u: bucket size %u smaller than btree node size %llu",
977                                i, le16_to_cpu(m->bucket_size), BCH_SB_BTREE_NODE_SIZE(sb));
978                         return -BCH_ERR_invalid_sb_members;
979                 }
980         }
981
982         return 0;
983 }
984
985 static void bch2_sb_members_to_text(struct printbuf *out, struct bch_sb *sb,
986                                     struct bch_sb_field *f)
987 {
988         struct bch_sb_field_members *mi = field_to_type(f, members);
989         struct bch_sb_field_disk_groups *gi = bch2_sb_get_disk_groups(sb);
990         unsigned i;
991
992         for (i = 0; i < sb->nr_devices; i++) {
993                 struct bch_member *m = mi->members + i;
994                 unsigned data_have = bch2_sb_dev_has_data(sb, i);
995                 u64 bucket_size = le16_to_cpu(m->bucket_size);
996                 u64 device_size = le64_to_cpu(m->nbuckets) * bucket_size;
997
998                 if (!bch2_member_exists(m))
999                         continue;
1000
1001                 prt_printf(out, "Device:");
1002                 prt_tab(out);
1003                 prt_printf(out, "%u", i);
1004                 prt_newline(out);
1005
1006                 printbuf_indent_add(out, 2);
1007
1008                 prt_printf(out, "UUID:");
1009                 prt_tab(out);
1010                 pr_uuid(out, m->uuid.b);
1011                 prt_newline(out);
1012
1013                 prt_printf(out, "Size:");
1014                 prt_tab(out);
1015                 prt_units_u64(out, device_size << 9);
1016                 prt_newline(out);
1017
1018                 prt_printf(out, "Bucket size:");
1019                 prt_tab(out);
1020                 prt_units_u64(out, bucket_size << 9);
1021                 prt_newline(out);
1022
1023                 prt_printf(out, "First bucket:");
1024                 prt_tab(out);
1025                 prt_printf(out, "%u", le16_to_cpu(m->first_bucket));
1026                 prt_newline(out);
1027
1028                 prt_printf(out, "Buckets:");
1029                 prt_tab(out);
1030                 prt_printf(out, "%llu", le64_to_cpu(m->nbuckets));
1031                 prt_newline(out);
1032
1033                 prt_printf(out, "Last mount:");
1034                 prt_tab(out);
1035                 if (m->last_mount)
1036                         pr_time(out, le64_to_cpu(m->last_mount));
1037                 else
1038                         prt_printf(out, "(never)");
1039                 prt_newline(out);
1040
1041                 prt_printf(out, "State:");
1042                 prt_tab(out);
1043                 prt_printf(out, "%s",
1044                        BCH_MEMBER_STATE(m) < BCH_MEMBER_STATE_NR
1045                        ? bch2_member_states[BCH_MEMBER_STATE(m)]
1046                        : "unknown");
1047                 prt_newline(out);
1048
1049                 prt_printf(out, "Label:");
1050                 prt_tab(out);
1051                 if (BCH_MEMBER_GROUP(m)) {
1052                         unsigned idx = BCH_MEMBER_GROUP(m) - 1;
1053
1054                         if (idx < disk_groups_nr(gi))
1055                                 prt_printf(out, "%s (%u)",
1056                                        gi->entries[idx].label, idx);
1057                         else
1058                                 prt_printf(out, "(bad disk labels section)");
1059                 } else {
1060                         prt_printf(out, "(none)");
1061                 }
1062                 prt_newline(out);
1063
1064                 prt_printf(out, "Data allowed:");
1065                 prt_tab(out);
1066                 if (BCH_MEMBER_DATA_ALLOWED(m))
1067                         prt_bitflags(out, bch2_data_types, BCH_MEMBER_DATA_ALLOWED(m));
1068                 else
1069                         prt_printf(out, "(none)");
1070                 prt_newline(out);
1071
1072                 prt_printf(out, "Has data:");
1073                 prt_tab(out);
1074                 if (data_have)
1075                         prt_bitflags(out, bch2_data_types, data_have);
1076                 else
1077                         prt_printf(out, "(none)");
1078                 prt_newline(out);
1079
1080                 prt_printf(out, "Discard:");
1081                 prt_tab(out);
1082                 prt_printf(out, "%llu", BCH_MEMBER_DISCARD(m));
1083                 prt_newline(out);
1084
1085                 prt_printf(out, "Freespace initialized:");
1086                 prt_tab(out);
1087                 prt_printf(out, "%llu", BCH_MEMBER_FREESPACE_INITIALIZED(m));
1088                 prt_newline(out);
1089
1090                 printbuf_indent_sub(out, 2);
1091         }
1092 }
1093
1094 static const struct bch_sb_field_ops bch_sb_field_ops_members = {
1095         .validate       = bch2_sb_members_validate,
1096         .to_text        = bch2_sb_members_to_text,
1097 };
1098
1099 /* BCH_SB_FIELD_crypt: */
1100
1101 static int bch2_sb_crypt_validate(struct bch_sb *sb,
1102                                   struct bch_sb_field *f,
1103                                   struct printbuf *err)
1104 {
1105         struct bch_sb_field_crypt *crypt = field_to_type(f, crypt);
1106
1107         if (vstruct_bytes(&crypt->field) < sizeof(*crypt)) {
1108                 prt_printf(err, "wrong size (got %zu should be %zu)",
1109                        vstruct_bytes(&crypt->field), sizeof(*crypt));
1110                 return -BCH_ERR_invalid_sb_crypt;
1111         }
1112
1113         if (BCH_CRYPT_KDF_TYPE(crypt)) {
1114                 prt_printf(err, "bad kdf type %llu", BCH_CRYPT_KDF_TYPE(crypt));
1115                 return -BCH_ERR_invalid_sb_crypt;
1116         }
1117
1118         return 0;
1119 }
1120
1121 static void bch2_sb_crypt_to_text(struct printbuf *out, struct bch_sb *sb,
1122                                   struct bch_sb_field *f)
1123 {
1124         struct bch_sb_field_crypt *crypt = field_to_type(f, crypt);
1125
1126         prt_printf(out, "KFD:               %llu", BCH_CRYPT_KDF_TYPE(crypt));
1127         prt_newline(out);
1128         prt_printf(out, "scrypt n:          %llu", BCH_KDF_SCRYPT_N(crypt));
1129         prt_newline(out);
1130         prt_printf(out, "scrypt r:          %llu", BCH_KDF_SCRYPT_R(crypt));
1131         prt_newline(out);
1132         prt_printf(out, "scrypt p:          %llu", BCH_KDF_SCRYPT_P(crypt));
1133         prt_newline(out);
1134 }
1135
1136 static const struct bch_sb_field_ops bch_sb_field_ops_crypt = {
1137         .validate       = bch2_sb_crypt_validate,
1138         .to_text        = bch2_sb_crypt_to_text,
1139 };
1140
1141 /* BCH_SB_FIELD_clean: */
1142
1143 int bch2_sb_clean_validate_late(struct bch_fs *c, struct bch_sb_field_clean *clean, int write)
1144 {
1145         struct jset_entry *entry;
1146         int ret;
1147
1148         for (entry = clean->start;
1149              entry < (struct jset_entry *) vstruct_end(&clean->field);
1150              entry = vstruct_next(entry)) {
1151                 ret = bch2_journal_entry_validate(c, NULL, entry,
1152                                                   le16_to_cpu(c->disk_sb.sb->version),
1153                                                   BCH_SB_BIG_ENDIAN(c->disk_sb.sb),
1154                                                   write);
1155                 if (ret)
1156                         return ret;
1157         }
1158
1159         return 0;
1160 }
1161
1162 int bch2_fs_mark_dirty(struct bch_fs *c)
1163 {
1164         int ret;
1165
1166         /*
1167          * Unconditionally write superblock, to verify it hasn't changed before
1168          * we go rw:
1169          */
1170
1171         mutex_lock(&c->sb_lock);
1172         SET_BCH_SB_CLEAN(c->disk_sb.sb, false);
1173         c->disk_sb.sb->features[0] |= cpu_to_le64(BCH_SB_FEATURES_ALWAYS);
1174         c->disk_sb.sb->compat[0] &= cpu_to_le64((1ULL << BCH_COMPAT_NR) - 1);
1175         ret = bch2_write_super(c);
1176         mutex_unlock(&c->sb_lock);
1177
1178         return ret;
1179 }
1180
1181 static struct jset_entry *jset_entry_init(struct jset_entry **end, size_t size)
1182 {
1183         struct jset_entry *entry = *end;
1184         unsigned u64s = DIV_ROUND_UP(size, sizeof(u64));
1185
1186         memset(entry, 0, u64s * sizeof(u64));
1187         /*
1188          * The u64s field counts from the start of data, ignoring the shared
1189          * fields.
1190          */
1191         entry->u64s = cpu_to_le16(u64s - 1);
1192
1193         *end = vstruct_next(*end);
1194         return entry;
1195 }
1196
1197 void bch2_journal_super_entries_add_common(struct bch_fs *c,
1198                                            struct jset_entry **end,
1199                                            u64 journal_seq)
1200 {
1201         struct bch_dev *ca;
1202         unsigned i, dev;
1203
1204         percpu_down_read(&c->mark_lock);
1205
1206         if (!journal_seq) {
1207                 for (i = 0; i < ARRAY_SIZE(c->usage); i++)
1208                         bch2_fs_usage_acc_to_base(c, i);
1209         } else {
1210                 bch2_fs_usage_acc_to_base(c, journal_seq & JOURNAL_BUF_MASK);
1211         }
1212
1213         {
1214                 struct jset_entry_usage *u =
1215                         container_of(jset_entry_init(end, sizeof(*u)),
1216                                      struct jset_entry_usage, entry);
1217
1218                 u->entry.type   = BCH_JSET_ENTRY_usage;
1219                 u->entry.btree_id = BCH_FS_USAGE_inodes;
1220                 u->v            = cpu_to_le64(c->usage_base->nr_inodes);
1221         }
1222
1223         {
1224                 struct jset_entry_usage *u =
1225                         container_of(jset_entry_init(end, sizeof(*u)),
1226                                      struct jset_entry_usage, entry);
1227
1228                 u->entry.type   = BCH_JSET_ENTRY_usage;
1229                 u->entry.btree_id = BCH_FS_USAGE_key_version;
1230                 u->v            = cpu_to_le64(atomic64_read(&c->key_version));
1231         }
1232
1233         for (i = 0; i < BCH_REPLICAS_MAX; i++) {
1234                 struct jset_entry_usage *u =
1235                         container_of(jset_entry_init(end, sizeof(*u)),
1236                                      struct jset_entry_usage, entry);
1237
1238                 u->entry.type   = BCH_JSET_ENTRY_usage;
1239                 u->entry.btree_id = BCH_FS_USAGE_reserved;
1240                 u->entry.level  = i;
1241                 u->v            = cpu_to_le64(c->usage_base->persistent_reserved[i]);
1242         }
1243
1244         for (i = 0; i < c->replicas.nr; i++) {
1245                 struct bch_replicas_entry *e =
1246                         cpu_replicas_entry(&c->replicas, i);
1247                 struct jset_entry_data_usage *u =
1248                         container_of(jset_entry_init(end, sizeof(*u) + e->nr_devs),
1249                                      struct jset_entry_data_usage, entry);
1250
1251                 u->entry.type   = BCH_JSET_ENTRY_data_usage;
1252                 u->v            = cpu_to_le64(c->usage_base->replicas[i]);
1253                 unsafe_memcpy(&u->r, e, replicas_entry_bytes(e),
1254                               "embedded variable length struct");
1255         }
1256
1257         for_each_member_device(ca, c, dev) {
1258                 unsigned b = sizeof(struct jset_entry_dev_usage) +
1259                         sizeof(struct jset_entry_dev_usage_type) * BCH_DATA_NR;
1260                 struct jset_entry_dev_usage *u =
1261                         container_of(jset_entry_init(end, b),
1262                                      struct jset_entry_dev_usage, entry);
1263
1264                 u->entry.type = BCH_JSET_ENTRY_dev_usage;
1265                 u->dev = cpu_to_le32(dev);
1266                 u->buckets_ec           = cpu_to_le64(ca->usage_base->buckets_ec);
1267
1268                 for (i = 0; i < BCH_DATA_NR; i++) {
1269                         u->d[i].buckets = cpu_to_le64(ca->usage_base->d[i].buckets);
1270                         u->d[i].sectors = cpu_to_le64(ca->usage_base->d[i].sectors);
1271                         u->d[i].fragmented = cpu_to_le64(ca->usage_base->d[i].fragmented);
1272                 }
1273         }
1274
1275         percpu_up_read(&c->mark_lock);
1276
1277         for (i = 0; i < 2; i++) {
1278                 struct jset_entry_clock *clock =
1279                         container_of(jset_entry_init(end, sizeof(*clock)),
1280                                      struct jset_entry_clock, entry);
1281
1282                 clock->entry.type = BCH_JSET_ENTRY_clock;
1283                 clock->rw       = i;
1284                 clock->time     = cpu_to_le64(atomic64_read(&c->io_clock[i].now));
1285         }
1286 }
1287
1288 void bch2_fs_mark_clean(struct bch_fs *c)
1289 {
1290         struct bch_sb_field_clean *sb_clean;
1291         struct jset_entry *entry;
1292         unsigned u64s;
1293         int ret;
1294
1295         mutex_lock(&c->sb_lock);
1296         if (BCH_SB_CLEAN(c->disk_sb.sb))
1297                 goto out;
1298
1299         SET_BCH_SB_CLEAN(c->disk_sb.sb, true);
1300
1301         c->disk_sb.sb->compat[0] |= cpu_to_le64(1ULL << BCH_COMPAT_alloc_info);
1302         c->disk_sb.sb->compat[0] |= cpu_to_le64(1ULL << BCH_COMPAT_alloc_metadata);
1303         c->disk_sb.sb->features[0] &= cpu_to_le64(~(1ULL << BCH_FEATURE_extents_above_btree_updates));
1304         c->disk_sb.sb->features[0] &= cpu_to_le64(~(1ULL << BCH_FEATURE_btree_updates_journalled));
1305
1306         u64s = sizeof(*sb_clean) / sizeof(u64) + c->journal.entry_u64s_reserved;
1307
1308         sb_clean = bch2_sb_resize_clean(&c->disk_sb, u64s);
1309         if (!sb_clean) {
1310                 bch_err(c, "error resizing superblock while setting filesystem clean");
1311                 goto out;
1312         }
1313
1314         sb_clean->flags         = 0;
1315         sb_clean->journal_seq   = cpu_to_le64(atomic64_read(&c->journal.seq));
1316
1317         /* Trying to catch outstanding bug: */
1318         BUG_ON(le64_to_cpu(sb_clean->journal_seq) > S64_MAX);
1319
1320         entry = sb_clean->start;
1321         bch2_journal_super_entries_add_common(c, &entry, 0);
1322         entry = bch2_btree_roots_to_journal_entries(c, entry, entry);
1323         BUG_ON((void *) entry > vstruct_end(&sb_clean->field));
1324
1325         memset(entry, 0,
1326                vstruct_end(&sb_clean->field) - (void *) entry);
1327
1328         /*
1329          * this should be in the write path, and we should be validating every
1330          * superblock section:
1331          */
1332         ret = bch2_sb_clean_validate_late(c, sb_clean, WRITE);
1333         if (ret) {
1334                 bch_err(c, "error writing marking filesystem clean: validate error");
1335                 goto out;
1336         }
1337
1338         bch2_write_super(c);
1339 out:
1340         mutex_unlock(&c->sb_lock);
1341 }
1342
1343 static int bch2_sb_clean_validate(struct bch_sb *sb,
1344                                   struct bch_sb_field *f,
1345                                   struct printbuf *err)
1346 {
1347         struct bch_sb_field_clean *clean = field_to_type(f, clean);
1348
1349         if (vstruct_bytes(&clean->field) < sizeof(*clean)) {
1350                 prt_printf(err, "wrong size (got %zu should be %zu)",
1351                        vstruct_bytes(&clean->field), sizeof(*clean));
1352                 return -BCH_ERR_invalid_sb_clean;
1353         }
1354
1355         return 0;
1356 }
1357
1358 static void bch2_sb_clean_to_text(struct printbuf *out, struct bch_sb *sb,
1359                                   struct bch_sb_field *f)
1360 {
1361         struct bch_sb_field_clean *clean = field_to_type(f, clean);
1362         struct jset_entry *entry;
1363
1364         prt_printf(out, "flags:          %x",   le32_to_cpu(clean->flags));
1365         prt_newline(out);
1366         prt_printf(out, "journal_seq:    %llu", le64_to_cpu(clean->journal_seq));
1367         prt_newline(out);
1368
1369         for (entry = clean->start;
1370              entry != vstruct_end(&clean->field);
1371              entry = vstruct_next(entry)) {
1372                 if (entry->type == BCH_JSET_ENTRY_btree_keys &&
1373                     !entry->u64s)
1374                         continue;
1375
1376                 bch2_journal_entry_to_text(out, NULL, entry);
1377                 prt_newline(out);
1378         }
1379 }
1380
1381 static const struct bch_sb_field_ops bch_sb_field_ops_clean = {
1382         .validate       = bch2_sb_clean_validate,
1383         .to_text        = bch2_sb_clean_to_text,
1384 };
1385
1386 static const struct bch_sb_field_ops *bch2_sb_field_ops[] = {
1387 #define x(f, nr)                                        \
1388         [BCH_SB_FIELD_##f] = &bch_sb_field_ops_##f,
1389         BCH_SB_FIELDS()
1390 #undef x
1391 };
1392
1393 static int bch2_sb_field_validate(struct bch_sb *sb, struct bch_sb_field *f,
1394                                   struct printbuf *err)
1395 {
1396         unsigned type = le32_to_cpu(f->type);
1397         struct printbuf field_err = PRINTBUF;
1398         int ret;
1399
1400         if (type >= BCH_SB_FIELD_NR)
1401                 return 0;
1402
1403         ret = bch2_sb_field_ops[type]->validate(sb, f, &field_err);
1404         if (ret) {
1405                 prt_printf(err, "Invalid superblock section %s: %s",
1406                        bch2_sb_fields[type],
1407                        field_err.buf);
1408                 prt_newline(err);
1409                 bch2_sb_field_to_text(err, sb, f);
1410         }
1411
1412         printbuf_exit(&field_err);
1413         return ret;
1414 }
1415
1416 void bch2_sb_field_to_text(struct printbuf *out, struct bch_sb *sb,
1417                            struct bch_sb_field *f)
1418 {
1419         unsigned type = le32_to_cpu(f->type);
1420         const struct bch_sb_field_ops *ops = type < BCH_SB_FIELD_NR
1421                 ? bch2_sb_field_ops[type] : NULL;
1422
1423         if (!out->nr_tabstops)
1424                 printbuf_tabstop_push(out, 32);
1425
1426         if (ops)
1427                 prt_printf(out, "%s", bch2_sb_fields[type]);
1428         else
1429                 prt_printf(out, "(unknown field %u)", type);
1430
1431         prt_printf(out, " (size %zu):", vstruct_bytes(f));
1432         prt_newline(out);
1433
1434         if (ops && ops->to_text) {
1435                 printbuf_indent_add(out, 2);
1436                 bch2_sb_field_ops[type]->to_text(out, sb, f);
1437                 printbuf_indent_sub(out, 2);
1438         }
1439 }
1440
1441 void bch2_sb_layout_to_text(struct printbuf *out, struct bch_sb_layout *l)
1442 {
1443         unsigned i;
1444
1445         prt_printf(out, "Type:                    %u", l->layout_type);
1446         prt_newline(out);
1447
1448         prt_str(out, "Superblock max size:     ");
1449         prt_units_u64(out, 512 << l->sb_max_size_bits);
1450         prt_newline(out);
1451
1452         prt_printf(out, "Nr superblocks:          %u", l->nr_superblocks);
1453         prt_newline(out);
1454
1455         prt_str(out, "Offsets:                 ");
1456         for (i = 0; i < l->nr_superblocks; i++) {
1457                 if (i)
1458                         prt_str(out, ", ");
1459                 prt_printf(out, "%llu", le64_to_cpu(l->sb_offset[i]));
1460         }
1461         prt_newline(out);
1462 }
1463
1464 void bch2_sb_to_text(struct printbuf *out, struct bch_sb *sb,
1465                      bool print_layout, unsigned fields)
1466 {
1467         struct bch_sb_field_members *mi;
1468         struct bch_sb_field *f;
1469         u64 fields_have = 0;
1470         unsigned nr_devices = 0;
1471
1472         if (!out->nr_tabstops)
1473                 printbuf_tabstop_push(out, 44);
1474
1475         mi = bch2_sb_get_members(sb);
1476         if (mi) {
1477                 struct bch_member *m;
1478
1479                 for (m = mi->members;
1480                      m < mi->members + sb->nr_devices;
1481                      m++)
1482                         nr_devices += bch2_member_exists(m);
1483         }
1484
1485         prt_printf(out, "External UUID:");
1486         prt_tab(out);
1487         pr_uuid(out, sb->user_uuid.b);
1488         prt_newline(out);
1489
1490         prt_printf(out, "Internal UUID:");
1491         prt_tab(out);
1492         pr_uuid(out, sb->uuid.b);
1493         prt_newline(out);
1494
1495         prt_str(out, "Device index:");
1496         prt_tab(out);
1497         prt_printf(out, "%u", sb->dev_idx);
1498         prt_newline(out);
1499
1500         prt_str(out, "Label:");
1501         prt_tab(out);
1502         prt_printf(out, "%.*s", (int) sizeof(sb->label), sb->label);
1503         prt_newline(out);
1504
1505         prt_str(out, "Version:");
1506         prt_tab(out);
1507         prt_printf(out, "%s", bch2_metadata_versions[le16_to_cpu(sb->version)]);
1508         prt_newline(out);
1509
1510         prt_printf(out, "Oldest version on disk:");
1511         prt_tab(out);
1512         prt_printf(out, "%s", bch2_metadata_versions[le16_to_cpu(sb->version_min)]);
1513         prt_newline(out);
1514
1515         prt_printf(out, "Created:");
1516         prt_tab(out);
1517         if (sb->time_base_lo)
1518                 pr_time(out, div_u64(le64_to_cpu(sb->time_base_lo), NSEC_PER_SEC));
1519         else
1520                 prt_printf(out, "(not set)");
1521         prt_newline(out);
1522
1523         prt_printf(out, "Sequence number:");
1524         prt_tab(out);
1525         prt_printf(out, "%llu", le64_to_cpu(sb->seq));
1526         prt_newline(out);
1527
1528         prt_printf(out, "Superblock size:");
1529         prt_tab(out);
1530         prt_printf(out, "%zu", vstruct_bytes(sb));
1531         prt_newline(out);
1532
1533         prt_printf(out, "Clean:");
1534         prt_tab(out);
1535         prt_printf(out, "%llu", BCH_SB_CLEAN(sb));
1536         prt_newline(out);
1537
1538         prt_printf(out, "Devices:");
1539         prt_tab(out);
1540         prt_printf(out, "%u", nr_devices);
1541         prt_newline(out);
1542
1543         prt_printf(out, "Sections:");
1544         vstruct_for_each(sb, f)
1545                 fields_have |= 1 << le32_to_cpu(f->type);
1546         prt_tab(out);
1547         prt_bitflags(out, bch2_sb_fields, fields_have);
1548         prt_newline(out);
1549
1550         prt_printf(out, "Features:");
1551         prt_tab(out);
1552         prt_bitflags(out, bch2_sb_features, le64_to_cpu(sb->features[0]));
1553         prt_newline(out);
1554
1555         prt_printf(out, "Compat features:");
1556         prt_tab(out);
1557         prt_bitflags(out, bch2_sb_compat, le64_to_cpu(sb->compat[0]));
1558         prt_newline(out);
1559
1560         prt_newline(out);
1561         prt_printf(out, "Options:");
1562         prt_newline(out);
1563         printbuf_indent_add(out, 2);
1564         {
1565                 enum bch_opt_id id;
1566
1567                 for (id = 0; id < bch2_opts_nr; id++) {
1568                         const struct bch_option *opt = bch2_opt_table + id;
1569
1570                         if (opt->get_sb != BCH2_NO_SB_OPT) {
1571                                 u64 v = bch2_opt_from_sb(sb, id);
1572
1573                                 prt_printf(out, "%s:", opt->attr.name);
1574                                 prt_tab(out);
1575                                 bch2_opt_to_text(out, NULL, sb, opt, v,
1576                                                  OPT_HUMAN_READABLE|OPT_SHOW_FULL_LIST);
1577                                 prt_newline(out);
1578                         }
1579                 }
1580         }
1581
1582         printbuf_indent_sub(out, 2);
1583
1584         if (print_layout) {
1585                 prt_newline(out);
1586                 prt_printf(out, "layout:");
1587                 prt_newline(out);
1588                 printbuf_indent_add(out, 2);
1589                 bch2_sb_layout_to_text(out, &sb->layout);
1590                 printbuf_indent_sub(out, 2);
1591         }
1592
1593         vstruct_for_each(sb, f)
1594                 if (fields & (1 << le32_to_cpu(f->type))) {
1595                         prt_newline(out);
1596                         bch2_sb_field_to_text(out, sb, f);
1597                 }
1598 }