Btrfs: only fua the first superblock when writting supers
[deliverable/linux.git] / fs / btrfs / super.c
CommitLineData
6cbd5570
CM
1/*
2 * Copyright (C) 2007 Oracle. All rights reserved.
3 *
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public
6 * License v2 as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * General Public License for more details.
12 *
13 * You should have received a copy of the GNU General Public
14 * License along with this program; if not, write to the
15 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
16 * Boston, MA 021110-1307, USA.
17 */
18
4b82d6e4 19#include <linux/blkdev.h>
2e635a27 20#include <linux/module.h>
e20d96d6 21#include <linux/buffer_head.h>
2e635a27
CM
22#include <linux/fs.h>
23#include <linux/pagemap.h>
24#include <linux/highmem.h>
25#include <linux/time.h>
26#include <linux/init.h>
a9572a15 27#include <linux/seq_file.h>
2e635a27 28#include <linux/string.h>
2e635a27 29#include <linux/backing-dev.h>
4b82d6e4 30#include <linux/mount.h>
dee26a9f 31#include <linux/mpage.h>
75dfe396
CM
32#include <linux/swap.h>
33#include <linux/writeback.h>
8fd17795 34#include <linux/statfs.h>
08607c1b 35#include <linux/compat.h>
95e05289 36#include <linux/parser.h>
c59f8951 37#include <linux/ctype.h>
6da6abae 38#include <linux/namei.h>
a9218f6b 39#include <linux/miscdevice.h>
1bcbf313 40#include <linux/magic.h>
5a0e3ad6 41#include <linux/slab.h>
90a887c9 42#include <linux/cleancache.h>
22c44fe6 43#include <linux/ratelimit.h>
55e301fd 44#include <linux/btrfs.h>
16cdcec7 45#include "delayed-inode.h"
2e635a27 46#include "ctree.h"
e20d96d6 47#include "disk-io.h"
d5719762 48#include "transaction.h"
2c90e5d6 49#include "btrfs_inode.h"
3a686375 50#include "print-tree.h"
5103e947 51#include "xattr.h"
8a4b83cc 52#include "volumes.h"
be6e8dc0 53#include "export.h"
c8b97818 54#include "compression.h"
9c5085c1 55#include "rcu-string.h"
8dabb742 56#include "dev-replace.h"
74255aa0 57#include "free-space-cache.h"
b9e9a6cb 58#include "backref.h"
dc11dd5d 59#include "tests/btrfs-tests.h"
2e635a27 60
1abe9b8a 61#define CREATE_TRACE_POINTS
62#include <trace/events/btrfs.h>
63
b87221de 64static const struct super_operations btrfs_super_ops;
830c4adb 65static struct file_system_type btrfs_fs_type;
75dfe396 66
08748810 67static const char *btrfs_decode_error(int errno)
acce952b 68{
08748810 69 char *errstr = "unknown";
acce952b 70
71 switch (errno) {
72 case -EIO:
73 errstr = "IO failure";
74 break;
75 case -ENOMEM:
76 errstr = "Out of memory";
77 break;
78 case -EROFS:
79 errstr = "Readonly filesystem";
80 break;
8c342930
JM
81 case -EEXIST:
82 errstr = "Object already exists";
83 break;
94ef7280
DS
84 case -ENOSPC:
85 errstr = "No space left";
86 break;
87 case -ENOENT:
88 errstr = "No such entry";
89 break;
acce952b 90 }
91
92 return errstr;
93}
94
bbece8a3 95static void save_error_info(struct btrfs_fs_info *fs_info)
acce952b 96{
97 /*
98 * today we only save the error info into ram. Long term we'll
99 * also send it down to the disk
100 */
87533c47 101 set_bit(BTRFS_FS_STATE_ERROR, &fs_info->fs_state);
acce952b 102}
103
acce952b 104/* btrfs handle error by forcing the filesystem readonly */
105static void btrfs_handle_error(struct btrfs_fs_info *fs_info)
106{
107 struct super_block *sb = fs_info->sb;
108
109 if (sb->s_flags & MS_RDONLY)
110 return;
111
87533c47 112 if (test_bit(BTRFS_FS_STATE_ERROR, &fs_info->fs_state)) {
acce952b 113 sb->s_flags |= MS_RDONLY;
c2cf52eb 114 btrfs_info(fs_info, "forced readonly");
1acd6831
SB
115 /*
116 * Note that a running device replace operation is not
117 * canceled here although there is no way to update
118 * the progress. It would add the risk of a deadlock,
119 * therefore the canceling is ommited. The only penalty
120 * is that some I/O remains active until the procedure
121 * completes. The next time when the filesystem is
122 * mounted writeable again, the device replace
123 * operation continues.
124 */
acce952b 125 }
126}
127
533574c6 128#ifdef CONFIG_PRINTK
acce952b 129/*
130 * __btrfs_std_error decodes expected errors from the caller and
131 * invokes the approciate error response.
132 */
133void __btrfs_std_error(struct btrfs_fs_info *fs_info, const char *function,
4da35113 134 unsigned int line, int errno, const char *fmt, ...)
acce952b 135{
136 struct super_block *sb = fs_info->sb;
acce952b 137 const char *errstr;
138
139 /*
140 * Special case: if the error is EROFS, and we're already
141 * under MS_RDONLY, then it is safe here.
142 */
143 if (errno == -EROFS && (sb->s_flags & MS_RDONLY))
4da35113
JM
144 return;
145
08748810 146 errstr = btrfs_decode_error(errno);
4da35113 147 if (fmt) {
37252a66
ES
148 struct va_format vaf;
149 va_list args;
150
151 va_start(args, fmt);
152 vaf.fmt = fmt;
153 vaf.va = &args;
4da35113 154
efe120a0
FH
155 printk(KERN_CRIT
156 "BTRFS: error (device %s) in %s:%d: errno=%d %s (%pV)\n",
08748810 157 sb->s_id, function, line, errno, errstr, &vaf);
37252a66 158 va_end(args);
4da35113 159 } else {
efe120a0 160 printk(KERN_CRIT "BTRFS: error (device %s) in %s:%d: errno=%d %s\n",
08748810 161 sb->s_id, function, line, errno, errstr);
4da35113 162 }
acce952b 163
4da35113 164 /* Don't go through full error handling during mount */
cf79ffb5
JB
165 save_error_info(fs_info);
166 if (sb->s_flags & MS_BORN)
4da35113 167 btrfs_handle_error(fs_info);
4da35113 168}
acce952b 169
533574c6 170static const char * const logtypes[] = {
4da35113
JM
171 "emergency",
172 "alert",
173 "critical",
174 "error",
175 "warning",
176 "notice",
177 "info",
178 "debug",
179};
180
c2cf52eb 181void btrfs_printk(const struct btrfs_fs_info *fs_info, const char *fmt, ...)
4da35113
JM
182{
183 struct super_block *sb = fs_info->sb;
184 char lvl[4];
185 struct va_format vaf;
186 va_list args;
187 const char *type = logtypes[4];
533574c6 188 int kern_level;
4da35113
JM
189
190 va_start(args, fmt);
191
533574c6
JP
192 kern_level = printk_get_level(fmt);
193 if (kern_level) {
194 size_t size = printk_skip_level(fmt) - fmt;
195 memcpy(lvl, fmt, size);
196 lvl[size] = '\0';
197 fmt += size;
198 type = logtypes[kern_level - '0'];
4da35113
JM
199 } else
200 *lvl = '\0';
201
202 vaf.fmt = fmt;
203 vaf.va = &args;
533574c6 204
c2cf52eb 205 printk("%sBTRFS %s (device %s): %pV\n", lvl, type, sb->s_id, &vaf);
533574c6
JP
206
207 va_end(args);
208}
209
210#else
211
212void __btrfs_std_error(struct btrfs_fs_info *fs_info, const char *function,
213 unsigned int line, int errno, const char *fmt, ...)
214{
215 struct super_block *sb = fs_info->sb;
216
217 /*
218 * Special case: if the error is EROFS, and we're already
219 * under MS_RDONLY, then it is safe here.
220 */
221 if (errno == -EROFS && (sb->s_flags & MS_RDONLY))
222 return;
223
224 /* Don't go through full error handling during mount */
225 if (sb->s_flags & MS_BORN) {
226 save_error_info(fs_info);
227 btrfs_handle_error(fs_info);
228 }
acce952b 229}
533574c6 230#endif
acce952b 231
49b25e05
JM
232/*
233 * We only mark the transaction aborted and then set the file system read-only.
234 * This will prevent new transactions from starting or trying to join this
235 * one.
236 *
237 * This means that error recovery at the call site is limited to freeing
238 * any local memory allocations and passing the error code up without
239 * further cleanup. The transaction should complete as it normally would
240 * in the call path but will return -EIO.
241 *
242 * We'll complete the cleanup in btrfs_end_transaction and
243 * btrfs_commit_transaction.
244 */
245void __btrfs_abort_transaction(struct btrfs_trans_handle *trans,
246 struct btrfs_root *root, const char *function,
247 unsigned int line, int errno)
248{
08748810
DS
249 /*
250 * Report first abort since mount
251 */
252 if (!test_and_set_bit(BTRFS_FS_STATE_TRANS_ABORTED,
253 &root->fs_info->fs_state)) {
efe120a0 254 WARN(1, KERN_DEBUG "BTRFS: Transaction aborted (error %d)\n",
08748810
DS
255 errno);
256 }
49b25e05
JM
257 trans->aborted = errno;
258 /* Nothing used. The other threads that have joined this
259 * transaction may be able to continue. */
260 if (!trans->blocks_used) {
69ce977a
MX
261 const char *errstr;
262
08748810 263 errstr = btrfs_decode_error(errno);
c2cf52eb
SK
264 btrfs_warn(root->fs_info,
265 "%s:%d: Aborting unused transaction(%s).",
266 function, line, errstr);
acce952b 267 return;
49b25e05 268 }
8d25a086 269 ACCESS_ONCE(trans->transaction->aborted) = errno;
501407aa
JB
270 /* Wake up anybody who may be waiting on this transaction */
271 wake_up(&root->fs_info->transaction_wait);
272 wake_up(&root->fs_info->transaction_blocked_wait);
49b25e05
JM
273 __btrfs_std_error(root->fs_info, function, line, errno, NULL);
274}
8c342930
JM
275/*
276 * __btrfs_panic decodes unexpected, fatal errors from the caller,
277 * issues an alert, and either panics or BUGs, depending on mount options.
278 */
279void __btrfs_panic(struct btrfs_fs_info *fs_info, const char *function,
280 unsigned int line, int errno, const char *fmt, ...)
281{
8c342930
JM
282 char *s_id = "<unknown>";
283 const char *errstr;
284 struct va_format vaf = { .fmt = fmt };
285 va_list args;
acce952b 286
8c342930
JM
287 if (fs_info)
288 s_id = fs_info->sb->s_id;
acce952b 289
8c342930
JM
290 va_start(args, fmt);
291 vaf.va = &args;
292
08748810 293 errstr = btrfs_decode_error(errno);
aa43a17c 294 if (fs_info && (fs_info->mount_opt & BTRFS_MOUNT_PANIC_ON_FATAL_ERROR))
08748810
DS
295 panic(KERN_CRIT "BTRFS panic (device %s) in %s:%d: %pV (errno=%d %s)\n",
296 s_id, function, line, &vaf, errno, errstr);
8c342930 297
efe120a0
FH
298 btrfs_crit(fs_info, "panic in %s:%d: %pV (errno=%d %s)",
299 function, line, &vaf, errno, errstr);
8c342930
JM
300 va_end(args);
301 /* Caller calls BUG() */
acce952b 302}
303
d397712b 304static void btrfs_put_super(struct super_block *sb)
b18c6685 305{
815745cf 306 (void)close_ctree(btrfs_sb(sb)->tree_root);
aea52e19
AV
307 /* FIXME: need to fix VFS to return error? */
308 /* AV: return it _where_? ->put_super() can be triggered by any number
309 * of async events, up to and including delivery of SIGKILL to the
310 * last process that kept it busy. Or segfault in the aforementioned
311 * process... Whom would you report that to?
312 */
75dfe396
CM
313}
314
95e05289 315enum {
73f73415 316 Opt_degraded, Opt_subvol, Opt_subvolid, Opt_device, Opt_nodatasum,
287a0ab9
JB
317 Opt_nodatacow, Opt_max_inline, Opt_alloc_start, Opt_nobarrier, Opt_ssd,
318 Opt_nossd, Opt_ssd_spread, Opt_thread_pool, Opt_noacl, Opt_compress,
261507a0
LZ
319 Opt_compress_type, Opt_compress_force, Opt_compress_force_type,
320 Opt_notreelog, Opt_ratio, Opt_flushoncommit, Opt_discard,
91435650 321 Opt_space_cache, Opt_clear_cache, Opt_user_subvol_rm_allowed,
9555c6c1
ID
322 Opt_enospc_debug, Opt_subvolrootid, Opt_defrag, Opt_inode_cache,
323 Opt_no_space_cache, Opt_recovery, Opt_skip_balance,
21adbd5c 324 Opt_check_integrity, Opt_check_integrity_including_extent_data,
f420ee1e 325 Opt_check_integrity_print_mask, Opt_fatal_errors, Opt_rescan_uuid_tree,
8b87dc17 326 Opt_commit_interval,
9555c6c1 327 Opt_err,
95e05289
CM
328};
329
330static match_table_t tokens = {
dfe25020 331 {Opt_degraded, "degraded"},
95e05289 332 {Opt_subvol, "subvol=%s"},
1493381f 333 {Opt_subvolid, "subvolid=%s"},
43e570b0 334 {Opt_device, "device=%s"},
b6cda9bc 335 {Opt_nodatasum, "nodatasum"},
be20aa9d 336 {Opt_nodatacow, "nodatacow"},
21ad10cf 337 {Opt_nobarrier, "nobarrier"},
6f568d35 338 {Opt_max_inline, "max_inline=%s"},
8f662a76 339 {Opt_alloc_start, "alloc_start=%s"},
4543df7e 340 {Opt_thread_pool, "thread_pool=%d"},
c8b97818 341 {Opt_compress, "compress"},
261507a0 342 {Opt_compress_type, "compress=%s"},
a555f810 343 {Opt_compress_force, "compress-force"},
261507a0 344 {Opt_compress_force_type, "compress-force=%s"},
e18e4809 345 {Opt_ssd, "ssd"},
451d7585 346 {Opt_ssd_spread, "ssd_spread"},
3b30c22f 347 {Opt_nossd, "nossd"},
33268eaf 348 {Opt_noacl, "noacl"},
3a5e1404 349 {Opt_notreelog, "notreelog"},
dccae999 350 {Opt_flushoncommit, "flushoncommit"},
97e728d4 351 {Opt_ratio, "metadata_ratio=%d"},
e244a0ae 352 {Opt_discard, "discard"},
0af3d00b 353 {Opt_space_cache, "space_cache"},
88c2ba3b 354 {Opt_clear_cache, "clear_cache"},
4260f7c7 355 {Opt_user_subvol_rm_allowed, "user_subvol_rm_allowed"},
91435650 356 {Opt_enospc_debug, "enospc_debug"},
e15d0542 357 {Opt_subvolrootid, "subvolrootid=%d"},
4cb5300b 358 {Opt_defrag, "autodefrag"},
4b9465cb 359 {Opt_inode_cache, "inode_cache"},
8965593e 360 {Opt_no_space_cache, "nospace_cache"},
af31f5e5 361 {Opt_recovery, "recovery"},
9555c6c1 362 {Opt_skip_balance, "skip_balance"},
21adbd5c
SB
363 {Opt_check_integrity, "check_int"},
364 {Opt_check_integrity_including_extent_data, "check_int_data"},
365 {Opt_check_integrity_print_mask, "check_int_print_mask=%d"},
f420ee1e 366 {Opt_rescan_uuid_tree, "rescan_uuid_tree"},
8c342930 367 {Opt_fatal_errors, "fatal_errors=%s"},
8b87dc17 368 {Opt_commit_interval, "commit=%d"},
33268eaf 369 {Opt_err, NULL},
95e05289
CM
370};
371
edf24abe
CH
372/*
373 * Regular mount options parser. Everything that is needed only when
374 * reading in a new superblock is parsed here.
49b25e05 375 * XXX JDM: This needs to be cleaned up for remount.
edf24abe
CH
376 */
377int btrfs_parse_options(struct btrfs_root *root, char *options)
95e05289 378{
edf24abe 379 struct btrfs_fs_info *info = root->fs_info;
95e05289 380 substring_t args[MAX_OPT_ARGS];
73bc1876
JB
381 char *p, *num, *orig = NULL;
382 u64 cache_gen;
4543df7e 383 int intarg;
a7a3f7ca 384 int ret = 0;
261507a0
LZ
385 char *compress_type;
386 bool compress_force = false;
b6cda9bc 387
6c41761f 388 cache_gen = btrfs_super_cache_generation(root->fs_info->super_copy);
73bc1876
JB
389 if (cache_gen)
390 btrfs_set_opt(info->mount_opt, SPACE_CACHE);
391
95e05289 392 if (!options)
73bc1876 393 goto out;
95e05289 394
be20aa9d
CM
395 /*
396 * strsep changes the string, duplicate it because parse_options
397 * gets called twice
398 */
399 options = kstrdup(options, GFP_NOFS);
400 if (!options)
401 return -ENOMEM;
402
da495ecc 403 orig = options;
be20aa9d 404
edf24abe 405 while ((p = strsep(&options, ",")) != NULL) {
95e05289
CM
406 int token;
407 if (!*p)
408 continue;
409
410 token = match_token(p, tokens, args);
411 switch (token) {
dfe25020 412 case Opt_degraded:
efe120a0 413 btrfs_info(root->fs_info, "allowing degraded mounts");
edf24abe 414 btrfs_set_opt(info->mount_opt, DEGRADED);
dfe25020 415 break;
95e05289 416 case Opt_subvol:
73f73415 417 case Opt_subvolid:
e15d0542 418 case Opt_subvolrootid:
43e570b0 419 case Opt_device:
edf24abe 420 /*
43e570b0 421 * These are parsed by btrfs_parse_early_options
edf24abe
CH
422 * and can be happily ignored here.
423 */
b6cda9bc
CM
424 break;
425 case Opt_nodatasum:
efe120a0 426 btrfs_info(root->fs_info, "setting nodatasum");
edf24abe 427 btrfs_set_opt(info->mount_opt, NODATASUM);
be20aa9d
CM
428 break;
429 case Opt_nodatacow:
bedb2cca
AP
430 if (!btrfs_test_opt(root, COMPRESS) ||
431 !btrfs_test_opt(root, FORCE_COMPRESS)) {
efe120a0
FH
432 btrfs_info(root->fs_info,
433 "setting nodatacow, compression disabled");
bedb2cca 434 } else {
efe120a0 435 btrfs_info(root->fs_info, "setting nodatacow");
bedb2cca 436 }
bedb2cca
AP
437 btrfs_clear_opt(info->mount_opt, COMPRESS);
438 btrfs_clear_opt(info->mount_opt, FORCE_COMPRESS);
edf24abe
CH
439 btrfs_set_opt(info->mount_opt, NODATACOW);
440 btrfs_set_opt(info->mount_opt, NODATASUM);
95e05289 441 break;
a555f810 442 case Opt_compress_force:
261507a0
LZ
443 case Opt_compress_force_type:
444 compress_force = true;
1c697d4a 445 /* Fallthrough */
261507a0
LZ
446 case Opt_compress:
447 case Opt_compress_type:
448 if (token == Opt_compress ||
449 token == Opt_compress_force ||
450 strcmp(args[0].from, "zlib") == 0) {
451 compress_type = "zlib";
452 info->compress_type = BTRFS_COMPRESS_ZLIB;
063849ea 453 btrfs_set_opt(info->mount_opt, COMPRESS);
bedb2cca
AP
454 btrfs_clear_opt(info->mount_opt, NODATACOW);
455 btrfs_clear_opt(info->mount_opt, NODATASUM);
a6fa6fae
LZ
456 } else if (strcmp(args[0].from, "lzo") == 0) {
457 compress_type = "lzo";
458 info->compress_type = BTRFS_COMPRESS_LZO;
063849ea 459 btrfs_set_opt(info->mount_opt, COMPRESS);
bedb2cca
AP
460 btrfs_clear_opt(info->mount_opt, NODATACOW);
461 btrfs_clear_opt(info->mount_opt, NODATASUM);
2b0ce2c2 462 btrfs_set_fs_incompat(info, COMPRESS_LZO);
063849ea
AH
463 } else if (strncmp(args[0].from, "no", 2) == 0) {
464 compress_type = "no";
063849ea
AH
465 btrfs_clear_opt(info->mount_opt, COMPRESS);
466 btrfs_clear_opt(info->mount_opt, FORCE_COMPRESS);
467 compress_force = false;
261507a0
LZ
468 } else {
469 ret = -EINVAL;
470 goto out;
471 }
472
261507a0
LZ
473 if (compress_force) {
474 btrfs_set_opt(info->mount_opt, FORCE_COMPRESS);
efe120a0 475 btrfs_info(root->fs_info, "force %s compression",
261507a0 476 compress_type);
a7e252af 477 } else if (btrfs_test_opt(root, COMPRESS)) {
261507a0
LZ
478 pr_info("btrfs: use %s compression\n",
479 compress_type);
a7e252af 480 }
a555f810 481 break;
e18e4809 482 case Opt_ssd:
efe120a0 483 btrfs_info(root->fs_info, "use ssd allocation scheme");
edf24abe 484 btrfs_set_opt(info->mount_opt, SSD);
e18e4809 485 break;
451d7585 486 case Opt_ssd_spread:
efe120a0 487 btrfs_info(root->fs_info, "use spread ssd allocation scheme");
451d7585
CM
488 btrfs_set_opt(info->mount_opt, SSD);
489 btrfs_set_opt(info->mount_opt, SSD_SPREAD);
490 break;
3b30c22f 491 case Opt_nossd:
efe120a0 492 btrfs_info(root->fs_info, "not using ssd allocation scheme");
c289811c 493 btrfs_set_opt(info->mount_opt, NOSSD);
3b30c22f 494 btrfs_clear_opt(info->mount_opt, SSD);
451d7585 495 btrfs_clear_opt(info->mount_opt, SSD_SPREAD);
3b30c22f 496 break;
21ad10cf 497 case Opt_nobarrier:
efe120a0 498 btrfs_info(root->fs_info, "turning off barriers");
edf24abe 499 btrfs_set_opt(info->mount_opt, NOBARRIER);
21ad10cf 500 break;
4543df7e 501 case Opt_thread_pool:
2c334e87
WS
502 ret = match_int(&args[0], &intarg);
503 if (ret) {
504 goto out;
505 } else if (intarg > 0) {
4543df7e 506 info->thread_pool_size = intarg;
2c334e87
WS
507 } else {
508 ret = -EINVAL;
509 goto out;
510 }
4543df7e 511 break;
6f568d35 512 case Opt_max_inline:
edf24abe
CH
513 num = match_strdup(&args[0]);
514 if (num) {
91748467 515 info->max_inline = memparse(num, NULL);
edf24abe
CH
516 kfree(num);
517
15ada040
CM
518 if (info->max_inline) {
519 info->max_inline = max_t(u64,
520 info->max_inline,
521 root->sectorsize);
522 }
efe120a0 523 btrfs_info(root->fs_info, "max_inline at %llu",
c1c9ff7c 524 info->max_inline);
2c334e87
WS
525 } else {
526 ret = -ENOMEM;
527 goto out;
6f568d35
CM
528 }
529 break;
8f662a76 530 case Opt_alloc_start:
edf24abe
CH
531 num = match_strdup(&args[0]);
532 if (num) {
c018daec 533 mutex_lock(&info->chunk_mutex);
91748467 534 info->alloc_start = memparse(num, NULL);
c018daec 535 mutex_unlock(&info->chunk_mutex);
edf24abe 536 kfree(num);
efe120a0 537 btrfs_info(root->fs_info, "allocations start at %llu",
c1c9ff7c 538 info->alloc_start);
2c334e87
WS
539 } else {
540 ret = -ENOMEM;
541 goto out;
8f662a76
CM
542 }
543 break;
33268eaf
JB
544 case Opt_noacl:
545 root->fs_info->sb->s_flags &= ~MS_POSIXACL;
546 break;
3a5e1404 547 case Opt_notreelog:
efe120a0 548 btrfs_info(root->fs_info, "disabling tree log");
3a5e1404
SW
549 btrfs_set_opt(info->mount_opt, NOTREELOG);
550 break;
dccae999 551 case Opt_flushoncommit:
efe120a0 552 btrfs_info(root->fs_info, "turning on flush-on-commit");
dccae999
SW
553 btrfs_set_opt(info->mount_opt, FLUSHONCOMMIT);
554 break;
97e728d4 555 case Opt_ratio:
2c334e87
WS
556 ret = match_int(&args[0], &intarg);
557 if (ret) {
558 goto out;
559 } else if (intarg >= 0) {
97e728d4 560 info->metadata_ratio = intarg;
efe120a0 561 btrfs_info(root->fs_info, "metadata ratio %d",
97e728d4 562 info->metadata_ratio);
2c334e87
WS
563 } else {
564 ret = -EINVAL;
565 goto out;
97e728d4
JB
566 }
567 break;
e244a0ae
CH
568 case Opt_discard:
569 btrfs_set_opt(info->mount_opt, DISCARD);
570 break;
0af3d00b 571 case Opt_space_cache:
0af3d00b 572 btrfs_set_opt(info->mount_opt, SPACE_CACHE);
0de90876 573 break;
f420ee1e
SB
574 case Opt_rescan_uuid_tree:
575 btrfs_set_opt(info->mount_opt, RESCAN_UUID_TREE);
576 break;
73bc1876 577 case Opt_no_space_cache:
efe120a0 578 btrfs_info(root->fs_info, "disabling disk space caching");
73bc1876
JB
579 btrfs_clear_opt(info->mount_opt, SPACE_CACHE);
580 break;
4b9465cb 581 case Opt_inode_cache:
efe120a0 582 btrfs_info(root->fs_info, "enabling inode map caching");
4b9465cb
CM
583 btrfs_set_opt(info->mount_opt, INODE_MAP_CACHE);
584 break;
88c2ba3b 585 case Opt_clear_cache:
efe120a0 586 btrfs_info(root->fs_info, "force clearing of disk cache");
88c2ba3b 587 btrfs_set_opt(info->mount_opt, CLEAR_CACHE);
0af3d00b 588 break;
4260f7c7
SW
589 case Opt_user_subvol_rm_allowed:
590 btrfs_set_opt(info->mount_opt, USER_SUBVOL_RM_ALLOWED);
591 break;
91435650
CM
592 case Opt_enospc_debug:
593 btrfs_set_opt(info->mount_opt, ENOSPC_DEBUG);
594 break;
4cb5300b 595 case Opt_defrag:
efe120a0 596 btrfs_info(root->fs_info, "enabling auto defrag");
4cb5300b
CM
597 btrfs_set_opt(info->mount_opt, AUTO_DEFRAG);
598 break;
af31f5e5 599 case Opt_recovery:
efe120a0 600 btrfs_info(root->fs_info, "enabling auto recovery");
af31f5e5
CM
601 btrfs_set_opt(info->mount_opt, RECOVERY);
602 break;
9555c6c1
ID
603 case Opt_skip_balance:
604 btrfs_set_opt(info->mount_opt, SKIP_BALANCE);
605 break;
21adbd5c
SB
606#ifdef CONFIG_BTRFS_FS_CHECK_INTEGRITY
607 case Opt_check_integrity_including_extent_data:
efe120a0
FH
608 btrfs_info(root->fs_info,
609 "enabling check integrity including extent data");
21adbd5c
SB
610 btrfs_set_opt(info->mount_opt,
611 CHECK_INTEGRITY_INCLUDING_EXTENT_DATA);
612 btrfs_set_opt(info->mount_opt, CHECK_INTEGRITY);
613 break;
614 case Opt_check_integrity:
efe120a0 615 btrfs_info(root->fs_info, "enabling check integrity");
21adbd5c
SB
616 btrfs_set_opt(info->mount_opt, CHECK_INTEGRITY);
617 break;
618 case Opt_check_integrity_print_mask:
2c334e87
WS
619 ret = match_int(&args[0], &intarg);
620 if (ret) {
621 goto out;
622 } else if (intarg >= 0) {
21adbd5c 623 info->check_integrity_print_mask = intarg;
efe120a0 624 btrfs_info(root->fs_info, "check_integrity_print_mask 0x%x",
21adbd5c 625 info->check_integrity_print_mask);
2c334e87
WS
626 } else {
627 ret = -EINVAL;
628 goto out;
21adbd5c
SB
629 }
630 break;
631#else
632 case Opt_check_integrity_including_extent_data:
633 case Opt_check_integrity:
634 case Opt_check_integrity_print_mask:
efe120a0
FH
635 btrfs_err(root->fs_info,
636 "support for check_integrity* not compiled in!");
21adbd5c
SB
637 ret = -EINVAL;
638 goto out;
639#endif
8c342930
JM
640 case Opt_fatal_errors:
641 if (strcmp(args[0].from, "panic") == 0)
642 btrfs_set_opt(info->mount_opt,
643 PANIC_ON_FATAL_ERROR);
644 else if (strcmp(args[0].from, "bug") == 0)
645 btrfs_clear_opt(info->mount_opt,
646 PANIC_ON_FATAL_ERROR);
647 else {
648 ret = -EINVAL;
649 goto out;
650 }
651 break;
8b87dc17
DS
652 case Opt_commit_interval:
653 intarg = 0;
654 ret = match_int(&args[0], &intarg);
655 if (ret < 0) {
efe120a0 656 btrfs_err(root->fs_info, "invalid commit interval");
8b87dc17
DS
657 ret = -EINVAL;
658 goto out;
659 }
660 if (intarg > 0) {
661 if (intarg > 300) {
efe120a0 662 btrfs_warn(root->fs_info, "excessive commit interval %d",
8b87dc17
DS
663 intarg);
664 }
665 info->commit_interval = intarg;
666 } else {
efe120a0 667 btrfs_info(root->fs_info, "using default commit interval %ds",
8b87dc17
DS
668 BTRFS_DEFAULT_COMMIT_INTERVAL);
669 info->commit_interval = BTRFS_DEFAULT_COMMIT_INTERVAL;
670 }
671 break;
a7a3f7ca 672 case Opt_err:
efe120a0 673 btrfs_info(root->fs_info, "unrecognized mount option '%s'", p);
a7a3f7ca
SW
674 ret = -EINVAL;
675 goto out;
95e05289 676 default:
be20aa9d 677 break;
95e05289
CM
678 }
679 }
a7a3f7ca 680out:
73bc1876 681 if (!ret && btrfs_test_opt(root, SPACE_CACHE))
efe120a0 682 btrfs_info(root->fs_info, "disk space caching is enabled");
da495ecc 683 kfree(orig);
a7a3f7ca 684 return ret;
edf24abe
CH
685}
686
687/*
688 * Parse mount options that are required early in the mount process.
689 *
690 * All other options will be parsed on much later in the mount process and
691 * only when we need to allocate a new super block.
692 */
97288f2c 693static int btrfs_parse_early_options(const char *options, fmode_t flags,
73f73415 694 void *holder, char **subvol_name, u64 *subvol_objectid,
5e2a4b25 695 struct btrfs_fs_devices **fs_devices)
edf24abe
CH
696{
697 substring_t args[MAX_OPT_ARGS];
83c8c9bd 698 char *device_name, *opts, *orig, *p;
1493381f 699 char *num = NULL;
edf24abe
CH
700 int error = 0;
701
702 if (!options)
830c4adb 703 return 0;
edf24abe
CH
704
705 /*
706 * strsep changes the string, duplicate it because parse_options
707 * gets called twice
708 */
709 opts = kstrdup(options, GFP_KERNEL);
710 if (!opts)
711 return -ENOMEM;
3f3d0bc0 712 orig = opts;
edf24abe
CH
713
714 while ((p = strsep(&opts, ",")) != NULL) {
715 int token;
716 if (!*p)
717 continue;
718
719 token = match_token(p, tokens, args);
720 switch (token) {
721 case Opt_subvol:
a90e8b6f 722 kfree(*subvol_name);
edf24abe 723 *subvol_name = match_strdup(&args[0]);
2c334e87
WS
724 if (!*subvol_name) {
725 error = -ENOMEM;
726 goto out;
727 }
edf24abe 728 break;
73f73415 729 case Opt_subvolid:
1493381f
WS
730 num = match_strdup(&args[0]);
731 if (num) {
732 *subvol_objectid = memparse(num, NULL);
733 kfree(num);
4849f01d 734 /* we want the original fs_tree */
1493381f 735 if (!*subvol_objectid)
4849f01d
JB
736 *subvol_objectid =
737 BTRFS_FS_TREE_OBJECTID;
2c334e87
WS
738 } else {
739 error = -EINVAL;
740 goto out;
4849f01d 741 }
73f73415 742 break;
e15d0542 743 case Opt_subvolrootid:
5e2a4b25 744 printk(KERN_WARNING
efe120a0
FH
745 "BTRFS: 'subvolrootid' mount option is deprecated and has "
746 "no effect\n");
e15d0542 747 break;
43e570b0 748 case Opt_device:
83c8c9bd
JL
749 device_name = match_strdup(&args[0]);
750 if (!device_name) {
751 error = -ENOMEM;
752 goto out;
753 }
754 error = btrfs_scan_one_device(device_name,
43e570b0 755 flags, holder, fs_devices);
83c8c9bd 756 kfree(device_name);
43e570b0 757 if (error)
830c4adb 758 goto out;
43e570b0 759 break;
edf24abe
CH
760 default:
761 break;
762 }
763 }
764
830c4adb 765out:
3f3d0bc0 766 kfree(orig);
edf24abe 767 return error;
95e05289
CM
768}
769
73f73415
JB
770static struct dentry *get_default_root(struct super_block *sb,
771 u64 subvol_objectid)
772{
815745cf
AV
773 struct btrfs_fs_info *fs_info = btrfs_sb(sb);
774 struct btrfs_root *root = fs_info->tree_root;
73f73415
JB
775 struct btrfs_root *new_root;
776 struct btrfs_dir_item *di;
777 struct btrfs_path *path;
778 struct btrfs_key location;
779 struct inode *inode;
73f73415
JB
780 u64 dir_id;
781 int new = 0;
782
783 /*
784 * We have a specific subvol we want to mount, just setup location and
785 * go look up the root.
786 */
787 if (subvol_objectid) {
788 location.objectid = subvol_objectid;
789 location.type = BTRFS_ROOT_ITEM_KEY;
790 location.offset = (u64)-1;
791 goto find_root;
792 }
793
794 path = btrfs_alloc_path();
795 if (!path)
796 return ERR_PTR(-ENOMEM);
797 path->leave_spinning = 1;
798
799 /*
800 * Find the "default" dir item which points to the root item that we
801 * will mount by default if we haven't been given a specific subvolume
802 * to mount.
803 */
815745cf 804 dir_id = btrfs_super_root_dir(fs_info->super_copy);
73f73415 805 di = btrfs_lookup_dir_item(NULL, root, path, dir_id, "default", 7, 0);
b0839166
JL
806 if (IS_ERR(di)) {
807 btrfs_free_path(path);
fb4f6f91 808 return ERR_CAST(di);
b0839166 809 }
73f73415
JB
810 if (!di) {
811 /*
812 * Ok the default dir item isn't there. This is weird since
813 * it's always been there, but don't freak out, just try and
814 * mount to root most subvolume.
815 */
816 btrfs_free_path(path);
817 dir_id = BTRFS_FIRST_FREE_OBJECTID;
815745cf 818 new_root = fs_info->fs_root;
73f73415
JB
819 goto setup_root;
820 }
821
822 btrfs_dir_item_key_to_cpu(path->nodes[0], di, &location);
823 btrfs_free_path(path);
824
825find_root:
815745cf 826 new_root = btrfs_read_fs_root_no_name(fs_info, &location);
73f73415 827 if (IS_ERR(new_root))
d0b678cb 828 return ERR_CAST(new_root);
73f73415 829
73f73415
JB
830 dir_id = btrfs_root_dirid(&new_root->root_item);
831setup_root:
832 location.objectid = dir_id;
833 location.type = BTRFS_INODE_ITEM_KEY;
834 location.offset = 0;
835
836 inode = btrfs_iget(sb, &location, new_root, &new);
4cbd1149
DC
837 if (IS_ERR(inode))
838 return ERR_CAST(inode);
73f73415
JB
839
840 /*
841 * If we're just mounting the root most subvol put the inode and return
842 * a reference to the dentry. We will have already gotten a reference
843 * to the inode in btrfs_fill_super so we're good to go.
844 */
845 if (!new && sb->s_root->d_inode == inode) {
846 iput(inode);
847 return dget(sb->s_root);
848 }
849
ba5b8958 850 return d_obtain_alias(inode);
73f73415
JB
851}
852
d397712b 853static int btrfs_fill_super(struct super_block *sb,
8a4b83cc 854 struct btrfs_fs_devices *fs_devices,
d397712b 855 void *data, int silent)
75dfe396 856{
d397712b 857 struct inode *inode;
815745cf 858 struct btrfs_fs_info *fs_info = btrfs_sb(sb);
5d4f98a2 859 struct btrfs_key key;
39279cc3 860 int err;
a429e513 861
39279cc3
CM
862 sb->s_maxbytes = MAX_LFS_FILESIZE;
863 sb->s_magic = BTRFS_SUPER_MAGIC;
864 sb->s_op = &btrfs_super_ops;
af53d29a 865 sb->s_d_op = &btrfs_dentry_operations;
be6e8dc0 866 sb->s_export_op = &btrfs_export_ops;
5103e947 867 sb->s_xattr = btrfs_xattr_handlers;
39279cc3 868 sb->s_time_gran = 1;
0eda294d 869#ifdef CONFIG_BTRFS_FS_POSIX_ACL
33268eaf 870 sb->s_flags |= MS_POSIXACL;
49cf6f45 871#endif
0c4d2d95 872 sb->s_flags |= MS_I_VERSION;
ad2b2c80
AV
873 err = open_ctree(sb, fs_devices, (char *)data);
874 if (err) {
efe120a0 875 printk(KERN_ERR "BTRFS: open_ctree failed\n");
ad2b2c80 876 return err;
a429e513
CM
877 }
878
5d4f98a2
YZ
879 key.objectid = BTRFS_FIRST_FREE_OBJECTID;
880 key.type = BTRFS_INODE_ITEM_KEY;
881 key.offset = 0;
98c7089c 882 inode = btrfs_iget(sb, &key, fs_info->fs_root, NULL);
5d4f98a2
YZ
883 if (IS_ERR(inode)) {
884 err = PTR_ERR(inode);
39279cc3 885 goto fail_close;
f254e52c 886 }
f254e52c 887
48fde701
AV
888 sb->s_root = d_make_root(inode);
889 if (!sb->s_root) {
39279cc3
CM
890 err = -ENOMEM;
891 goto fail_close;
f254e52c 892 }
58176a96 893
6885f308 894 save_mount_options(sb, data);
90a887c9 895 cleancache_init_fs(sb);
59553edf 896 sb->s_flags |= MS_ACTIVE;
2619ba1f 897 return 0;
39279cc3
CM
898
899fail_close:
815745cf 900 close_ctree(fs_info->tree_root);
39279cc3 901 return err;
2619ba1f
CM
902}
903
6bf13c0c 904int btrfs_sync_fs(struct super_block *sb, int wait)
c5739bba
CM
905{
906 struct btrfs_trans_handle *trans;
815745cf
AV
907 struct btrfs_fs_info *fs_info = btrfs_sb(sb);
908 struct btrfs_root *root = fs_info->tree_root;
2619ba1f 909
1abe9b8a 910 trace_btrfs_sync_fs(wait);
911
39279cc3 912 if (!wait) {
815745cf 913 filemap_flush(fs_info->btree_inode->i_mapping);
39279cc3
CM
914 return 0;
915 }
771ed689 916
b0244199 917 btrfs_wait_ordered_roots(fs_info, -1);
771ed689 918
d4edf39b 919 trans = btrfs_attach_transaction_barrier(root);
60376ce4 920 if (IS_ERR(trans)) {
354aa0fb
MX
921 /* no transaction, don't bother */
922 if (PTR_ERR(trans) == -ENOENT)
60376ce4 923 return 0;
98d5dc13 924 return PTR_ERR(trans);
60376ce4 925 }
bd7de2c9 926 return btrfs_commit_transaction(trans, root);
2c90e5d6
CM
927}
928
34c80b1d 929static int btrfs_show_options(struct seq_file *seq, struct dentry *dentry)
a9572a15 930{
815745cf
AV
931 struct btrfs_fs_info *info = btrfs_sb(dentry->d_sb);
932 struct btrfs_root *root = info->tree_root;
200da64e 933 char *compress_type;
a9572a15
EP
934
935 if (btrfs_test_opt(root, DEGRADED))
936 seq_puts(seq, ",degraded");
937 if (btrfs_test_opt(root, NODATASUM))
938 seq_puts(seq, ",nodatasum");
939 if (btrfs_test_opt(root, NODATACOW))
940 seq_puts(seq, ",nodatacow");
941 if (btrfs_test_opt(root, NOBARRIER))
942 seq_puts(seq, ",nobarrier");
a9572a15 943 if (info->max_inline != 8192 * 1024)
c1c9ff7c 944 seq_printf(seq, ",max_inline=%llu", info->max_inline);
a9572a15 945 if (info->alloc_start != 0)
c1c9ff7c 946 seq_printf(seq, ",alloc_start=%llu", info->alloc_start);
a9572a15
EP
947 if (info->thread_pool_size != min_t(unsigned long,
948 num_online_cpus() + 2, 8))
949 seq_printf(seq, ",thread_pool=%d", info->thread_pool_size);
200da64e
TI
950 if (btrfs_test_opt(root, COMPRESS)) {
951 if (info->compress_type == BTRFS_COMPRESS_ZLIB)
952 compress_type = "zlib";
953 else
954 compress_type = "lzo";
955 if (btrfs_test_opt(root, FORCE_COMPRESS))
956 seq_printf(seq, ",compress-force=%s", compress_type);
957 else
958 seq_printf(seq, ",compress=%s", compress_type);
959 }
c289811c
CM
960 if (btrfs_test_opt(root, NOSSD))
961 seq_puts(seq, ",nossd");
451d7585
CM
962 if (btrfs_test_opt(root, SSD_SPREAD))
963 seq_puts(seq, ",ssd_spread");
964 else if (btrfs_test_opt(root, SSD))
a9572a15 965 seq_puts(seq, ",ssd");
3a5e1404 966 if (btrfs_test_opt(root, NOTREELOG))
6b65c5c6 967 seq_puts(seq, ",notreelog");
dccae999 968 if (btrfs_test_opt(root, FLUSHONCOMMIT))
6b65c5c6 969 seq_puts(seq, ",flushoncommit");
20a5239a
MW
970 if (btrfs_test_opt(root, DISCARD))
971 seq_puts(seq, ",discard");
a9572a15
EP
972 if (!(root->fs_info->sb->s_flags & MS_POSIXACL))
973 seq_puts(seq, ",noacl");
200da64e
TI
974 if (btrfs_test_opt(root, SPACE_CACHE))
975 seq_puts(seq, ",space_cache");
73bc1876 976 else
8965593e 977 seq_puts(seq, ",nospace_cache");
f420ee1e
SB
978 if (btrfs_test_opt(root, RESCAN_UUID_TREE))
979 seq_puts(seq, ",rescan_uuid_tree");
200da64e
TI
980 if (btrfs_test_opt(root, CLEAR_CACHE))
981 seq_puts(seq, ",clear_cache");
982 if (btrfs_test_opt(root, USER_SUBVOL_RM_ALLOWED))
983 seq_puts(seq, ",user_subvol_rm_allowed");
0942caa3
DS
984 if (btrfs_test_opt(root, ENOSPC_DEBUG))
985 seq_puts(seq, ",enospc_debug");
986 if (btrfs_test_opt(root, AUTO_DEFRAG))
987 seq_puts(seq, ",autodefrag");
988 if (btrfs_test_opt(root, INODE_MAP_CACHE))
989 seq_puts(seq, ",inode_cache");
9555c6c1
ID
990 if (btrfs_test_opt(root, SKIP_BALANCE))
991 seq_puts(seq, ",skip_balance");
8507d216
WS
992 if (btrfs_test_opt(root, RECOVERY))
993 seq_puts(seq, ",recovery");
994#ifdef CONFIG_BTRFS_FS_CHECK_INTEGRITY
995 if (btrfs_test_opt(root, CHECK_INTEGRITY_INCLUDING_EXTENT_DATA))
996 seq_puts(seq, ",check_int_data");
997 else if (btrfs_test_opt(root, CHECK_INTEGRITY))
998 seq_puts(seq, ",check_int");
999 if (info->check_integrity_print_mask)
1000 seq_printf(seq, ",check_int_print_mask=%d",
1001 info->check_integrity_print_mask);
1002#endif
1003 if (info->metadata_ratio)
1004 seq_printf(seq, ",metadata_ratio=%d",
1005 info->metadata_ratio);
8c342930
JM
1006 if (btrfs_test_opt(root, PANIC_ON_FATAL_ERROR))
1007 seq_puts(seq, ",fatal_errors=panic");
8b87dc17
DS
1008 if (info->commit_interval != BTRFS_DEFAULT_COMMIT_INTERVAL)
1009 seq_printf(seq, ",commit=%d", info->commit_interval);
a9572a15
EP
1010 return 0;
1011}
1012
a061fc8d 1013static int btrfs_test_super(struct super_block *s, void *data)
4b82d6e4 1014{
815745cf
AV
1015 struct btrfs_fs_info *p = data;
1016 struct btrfs_fs_info *fs_info = btrfs_sb(s);
4b82d6e4 1017
815745cf 1018 return fs_info->fs_devices == p->fs_devices;
4b82d6e4
Y
1019}
1020
450ba0ea
JB
1021static int btrfs_set_super(struct super_block *s, void *data)
1022{
6de1d09d
AV
1023 int err = set_anon_super(s, data);
1024 if (!err)
1025 s->s_fs_info = data;
1026 return err;
4b82d6e4
Y
1027}
1028
f9d9ef62
DS
1029/*
1030 * subvolumes are identified by ino 256
1031 */
1032static inline int is_subvolume_inode(struct inode *inode)
1033{
1034 if (inode && inode->i_ino == BTRFS_FIRST_FREE_OBJECTID)
1035 return 1;
1036 return 0;
1037}
1038
830c4adb
JB
1039/*
1040 * This will strip out the subvol=%s argument for an argument string and add
1041 * subvolid=0 to make sure we get the actual tree root for path walking to the
1042 * subvol we want.
1043 */
1044static char *setup_root_args(char *args)
1045{
f60d16a8
JM
1046 unsigned len = strlen(args) + 2 + 1;
1047 char *src, *dst, *buf;
830c4adb
JB
1048
1049 /*
f60d16a8
JM
1050 * We need the same args as before, but with this substitution:
1051 * s!subvol=[^,]+!subvolid=0!
830c4adb 1052 *
f60d16a8
JM
1053 * Since the replacement string is up to 2 bytes longer than the
1054 * original, allocate strlen(args) + 2 + 1 bytes.
830c4adb 1055 */
830c4adb 1056
f60d16a8 1057 src = strstr(args, "subvol=");
830c4adb 1058 /* This shouldn't happen, but just in case.. */
f60d16a8
JM
1059 if (!src)
1060 return NULL;
1061
1062 buf = dst = kmalloc(len, GFP_NOFS);
1063 if (!buf)
830c4adb 1064 return NULL;
830c4adb
JB
1065
1066 /*
f60d16a8
JM
1067 * If the subvol= arg is not at the start of the string,
1068 * copy whatever precedes it into buf.
830c4adb 1069 */
f60d16a8
JM
1070 if (src != args) {
1071 *src++ = '\0';
1072 strcpy(buf, args);
1073 dst += strlen(args);
830c4adb
JB
1074 }
1075
f60d16a8
JM
1076 strcpy(dst, "subvolid=0");
1077 dst += strlen("subvolid=0");
830c4adb
JB
1078
1079 /*
f60d16a8
JM
1080 * If there is a "," after the original subvol=... string,
1081 * copy that suffix into our buffer. Otherwise, we're done.
830c4adb 1082 */
f60d16a8
JM
1083 src = strchr(src, ',');
1084 if (src)
1085 strcpy(dst, src);
830c4adb 1086
f60d16a8 1087 return buf;
830c4adb
JB
1088}
1089
1090static struct dentry *mount_subvol(const char *subvol_name, int flags,
1091 const char *device_name, char *data)
1092{
830c4adb
JB
1093 struct dentry *root;
1094 struct vfsmount *mnt;
830c4adb 1095 char *newargs;
830c4adb
JB
1096
1097 newargs = setup_root_args(data);
1098 if (!newargs)
1099 return ERR_PTR(-ENOMEM);
1100 mnt = vfs_kern_mount(&btrfs_fs_type, flags, device_name,
1101 newargs);
1102 kfree(newargs);
1103 if (IS_ERR(mnt))
1104 return ERR_CAST(mnt);
1105
ea441d11 1106 root = mount_subtree(mnt, subvol_name);
830c4adb 1107
ea441d11
AV
1108 if (!IS_ERR(root) && !is_subvolume_inode(root->d_inode)) {
1109 struct super_block *s = root->d_sb;
1110 dput(root);
1111 root = ERR_PTR(-EINVAL);
1112 deactivate_locked_super(s);
efe120a0 1113 printk(KERN_ERR "BTRFS: '%s' is not a valid subvolume\n",
f9d9ef62 1114 subvol_name);
f9d9ef62
DS
1115 }
1116
830c4adb
JB
1117 return root;
1118}
450ba0ea 1119
edf24abe
CH
1120/*
1121 * Find a superblock for the given device / mount point.
1122 *
1123 * Note: This is based on get_sb_bdev from fs/super.c with a few additions
1124 * for multiple device setup. Make sure to keep it in sync.
1125 */
061dbc6b 1126static struct dentry *btrfs_mount(struct file_system_type *fs_type, int flags,
306e16ce 1127 const char *device_name, void *data)
4b82d6e4
Y
1128{
1129 struct block_device *bdev = NULL;
1130 struct super_block *s;
1131 struct dentry *root;
8a4b83cc 1132 struct btrfs_fs_devices *fs_devices = NULL;
450ba0ea 1133 struct btrfs_fs_info *fs_info = NULL;
97288f2c 1134 fmode_t mode = FMODE_READ;
73f73415
JB
1135 char *subvol_name = NULL;
1136 u64 subvol_objectid = 0;
4b82d6e4
Y
1137 int error = 0;
1138
97288f2c
CH
1139 if (!(flags & MS_RDONLY))
1140 mode |= FMODE_WRITE;
1141
1142 error = btrfs_parse_early_options(data, mode, fs_type,
73f73415 1143 &subvol_name, &subvol_objectid,
5e2a4b25 1144 &fs_devices);
f23c8af8
ID
1145 if (error) {
1146 kfree(subvol_name);
061dbc6b 1147 return ERR_PTR(error);
f23c8af8 1148 }
edf24abe 1149
830c4adb
JB
1150 if (subvol_name) {
1151 root = mount_subvol(subvol_name, flags, device_name, data);
1152 kfree(subvol_name);
1153 return root;
1154 }
1155
306e16ce 1156 error = btrfs_scan_one_device(device_name, mode, fs_type, &fs_devices);
8a4b83cc 1157 if (error)
830c4adb 1158 return ERR_PTR(error);
4b82d6e4 1159
450ba0ea
JB
1160 /*
1161 * Setup a dummy root and fs_info for test/set super. This is because
1162 * we don't actually fill this stuff out until open_ctree, but we need
1163 * it for searching for existing supers, so this lets us do that and
1164 * then open_ctree will properly initialize everything later.
1165 */
1166 fs_info = kzalloc(sizeof(struct btrfs_fs_info), GFP_NOFS);
04d21a24
ID
1167 if (!fs_info)
1168 return ERR_PTR(-ENOMEM);
1169
450ba0ea 1170 fs_info->fs_devices = fs_devices;
450ba0ea 1171
6c41761f
DS
1172 fs_info->super_copy = kzalloc(BTRFS_SUPER_INFO_SIZE, GFP_NOFS);
1173 fs_info->super_for_commit = kzalloc(BTRFS_SUPER_INFO_SIZE, GFP_NOFS);
1174 if (!fs_info->super_copy || !fs_info->super_for_commit) {
1175 error = -ENOMEM;
04d21a24
ID
1176 goto error_fs_info;
1177 }
1178
1179 error = btrfs_open_devices(fs_devices, mode, fs_type);
1180 if (error)
1181 goto error_fs_info;
1182
1183 if (!(flags & MS_RDONLY) && fs_devices->rw_devices == 0) {
1184 error = -EACCES;
6c41761f
DS
1185 goto error_close_devices;
1186 }
1187
dfe25020 1188 bdev = fs_devices->latest_bdev;
9249e17f
DH
1189 s = sget(fs_type, btrfs_test_super, btrfs_set_super, flags | MS_NOSEC,
1190 fs_info);
830c4adb
JB
1191 if (IS_ERR(s)) {
1192 error = PTR_ERR(s);
1193 goto error_close_devices;
1194 }
4b82d6e4
Y
1195
1196 if (s->s_root) {
2b82032c 1197 btrfs_close_devices(fs_devices);
6c41761f 1198 free_fs_info(fs_info);
59553edf
AV
1199 if ((flags ^ s->s_flags) & MS_RDONLY)
1200 error = -EBUSY;
4b82d6e4
Y
1201 } else {
1202 char b[BDEVNAME_SIZE];
1203
4b82d6e4 1204 strlcpy(s->s_id, bdevname(bdev, b), sizeof(s->s_id));
815745cf 1205 btrfs_sb(s)->bdev_holder = fs_type;
8a4b83cc
CM
1206 error = btrfs_fill_super(s, fs_devices, data,
1207 flags & MS_SILENT ? 1 : 0);
4b82d6e4
Y
1208 }
1209
59553edf
AV
1210 root = !error ? get_default_root(s, subvol_objectid) : ERR_PTR(error);
1211 if (IS_ERR(root))
830c4adb 1212 deactivate_locked_super(s);
4b82d6e4 1213
061dbc6b 1214 return root;
4b82d6e4 1215
c146afad 1216error_close_devices:
8a4b83cc 1217 btrfs_close_devices(fs_devices);
04d21a24 1218error_fs_info:
6c41761f 1219 free_fs_info(fs_info);
061dbc6b 1220 return ERR_PTR(error);
4b82d6e4 1221}
2e635a27 1222
0d2450ab
ST
1223static void btrfs_set_max_workers(struct btrfs_workers *workers, int new_limit)
1224{
1225 spin_lock_irq(&workers->lock);
1226 workers->max_workers = new_limit;
1227 spin_unlock_irq(&workers->lock);
1228}
1229
1230static void btrfs_resize_thread_pool(struct btrfs_fs_info *fs_info,
1231 int new_pool_size, int old_pool_size)
1232{
1233 if (new_pool_size == old_pool_size)
1234 return;
1235
1236 fs_info->thread_pool_size = new_pool_size;
1237
efe120a0 1238 btrfs_info(fs_info, "resize thread pool %d -> %d",
0d2450ab
ST
1239 old_pool_size, new_pool_size);
1240
1241 btrfs_set_max_workers(&fs_info->generic_worker, new_pool_size);
1242 btrfs_set_max_workers(&fs_info->workers, new_pool_size);
1243 btrfs_set_max_workers(&fs_info->delalloc_workers, new_pool_size);
1244 btrfs_set_max_workers(&fs_info->submit_workers, new_pool_size);
1245 btrfs_set_max_workers(&fs_info->caching_workers, new_pool_size);
1246 btrfs_set_max_workers(&fs_info->fixup_workers, new_pool_size);
1247 btrfs_set_max_workers(&fs_info->endio_workers, new_pool_size);
1248 btrfs_set_max_workers(&fs_info->endio_meta_workers, new_pool_size);
1249 btrfs_set_max_workers(&fs_info->endio_meta_write_workers, new_pool_size);
1250 btrfs_set_max_workers(&fs_info->endio_write_workers, new_pool_size);
1251 btrfs_set_max_workers(&fs_info->endio_freespace_worker, new_pool_size);
1252 btrfs_set_max_workers(&fs_info->delayed_workers, new_pool_size);
1253 btrfs_set_max_workers(&fs_info->readahead_workers, new_pool_size);
ff023aac
SB
1254 btrfs_set_max_workers(&fs_info->scrub_wr_completion_workers,
1255 new_pool_size);
0d2450ab
ST
1256}
1257
f42a34b2 1258static inline void btrfs_remount_prepare(struct btrfs_fs_info *fs_info)
dc81cdc5
MX
1259{
1260 set_bit(BTRFS_FS_STATE_REMOUNTING, &fs_info->fs_state);
f42a34b2 1261}
dc81cdc5 1262
f42a34b2
MX
1263static inline void btrfs_remount_begin(struct btrfs_fs_info *fs_info,
1264 unsigned long old_opts, int flags)
1265{
dc81cdc5
MX
1266 if (btrfs_raw_test_opt(old_opts, AUTO_DEFRAG) &&
1267 (!btrfs_raw_test_opt(fs_info->mount_opt, AUTO_DEFRAG) ||
1268 (flags & MS_RDONLY))) {
1269 /* wait for any defraggers to finish */
1270 wait_event(fs_info->transaction_wait,
1271 (atomic_read(&fs_info->defrag_running) == 0));
1272 if (flags & MS_RDONLY)
1273 sync_filesystem(fs_info->sb);
1274 }
1275}
1276
1277static inline void btrfs_remount_cleanup(struct btrfs_fs_info *fs_info,
1278 unsigned long old_opts)
1279{
1280 /*
1281 * We need cleanup all defragable inodes if the autodefragment is
1282 * close or the fs is R/O.
1283 */
1284 if (btrfs_raw_test_opt(old_opts, AUTO_DEFRAG) &&
1285 (!btrfs_raw_test_opt(fs_info->mount_opt, AUTO_DEFRAG) ||
1286 (fs_info->sb->s_flags & MS_RDONLY))) {
1287 btrfs_cleanup_defrag_inodes(fs_info);
1288 }
1289
1290 clear_bit(BTRFS_FS_STATE_REMOUNTING, &fs_info->fs_state);
1291}
1292
c146afad
YZ
1293static int btrfs_remount(struct super_block *sb, int *flags, char *data)
1294{
815745cf
AV
1295 struct btrfs_fs_info *fs_info = btrfs_sb(sb);
1296 struct btrfs_root *root = fs_info->tree_root;
49b25e05
JM
1297 unsigned old_flags = sb->s_flags;
1298 unsigned long old_opts = fs_info->mount_opt;
1299 unsigned long old_compress_type = fs_info->compress_type;
1300 u64 old_max_inline = fs_info->max_inline;
1301 u64 old_alloc_start = fs_info->alloc_start;
1302 int old_thread_pool_size = fs_info->thread_pool_size;
1303 unsigned int old_metadata_ratio = fs_info->metadata_ratio;
c146afad
YZ
1304 int ret;
1305
f42a34b2 1306 btrfs_remount_prepare(fs_info);
dc81cdc5 1307
b288052e 1308 ret = btrfs_parse_options(root, data);
49b25e05
JM
1309 if (ret) {
1310 ret = -EINVAL;
1311 goto restore;
1312 }
b288052e 1313
f42a34b2 1314 btrfs_remount_begin(fs_info, old_opts, *flags);
0d2450ab
ST
1315 btrfs_resize_thread_pool(fs_info,
1316 fs_info->thread_pool_size, old_thread_pool_size);
1317
c146afad 1318 if ((*flags & MS_RDONLY) == (sb->s_flags & MS_RDONLY))
dc81cdc5 1319 goto out;
c146afad
YZ
1320
1321 if (*flags & MS_RDONLY) {
8dabb742
SB
1322 /*
1323 * this also happens on 'umount -rf' or on shutdown, when
1324 * the filesystem is busy.
1325 */
361c093d
SB
1326
1327 /* wait for the uuid_scan task to finish */
1328 down(&fs_info->uuid_tree_rescan_sem);
1329 /* avoid complains from lockdep et al. */
1330 up(&fs_info->uuid_tree_rescan_sem);
1331
c146afad
YZ
1332 sb->s_flags |= MS_RDONLY;
1333
8dabb742
SB
1334 btrfs_dev_replace_suspend_for_unmount(fs_info);
1335 btrfs_scrub_cancel(fs_info);
061594ef 1336 btrfs_pause_balance(fs_info);
8dabb742 1337
49b25e05
JM
1338 ret = btrfs_commit_super(root);
1339 if (ret)
1340 goto restore;
c146afad 1341 } else {
6ef3de9c
DS
1342 if (test_bit(BTRFS_FS_STATE_ERROR, &root->fs_info->fs_state)) {
1343 btrfs_err(fs_info,
efe120a0 1344 "Remounting read-write after error is not allowed");
6ef3de9c
DS
1345 ret = -EINVAL;
1346 goto restore;
1347 }
8a3db184 1348 if (fs_info->fs_devices->rw_devices == 0) {
49b25e05
JM
1349 ret = -EACCES;
1350 goto restore;
8a3db184 1351 }
2b82032c 1352
292fd7fc
SB
1353 if (fs_info->fs_devices->missing_devices >
1354 fs_info->num_tolerated_disk_barrier_failures &&
1355 !(*flags & MS_RDONLY)) {
efe120a0
FH
1356 btrfs_warn(fs_info,
1357 "too many missing devices, writeable remount is not allowed");
292fd7fc
SB
1358 ret = -EACCES;
1359 goto restore;
1360 }
1361
8a3db184 1362 if (btrfs_super_log_root(fs_info->super_copy) != 0) {
49b25e05
JM
1363 ret = -EINVAL;
1364 goto restore;
8a3db184 1365 }
c146afad 1366
815745cf 1367 ret = btrfs_cleanup_fs_roots(fs_info);
49b25e05
JM
1368 if (ret)
1369 goto restore;
c146afad 1370
d68fc57b
YZ
1371 /* recover relocation */
1372 ret = btrfs_recover_relocation(root);
49b25e05
JM
1373 if (ret)
1374 goto restore;
c146afad 1375
2b6ba629
ID
1376 ret = btrfs_resume_balance_async(fs_info);
1377 if (ret)
1378 goto restore;
1379
8dabb742
SB
1380 ret = btrfs_resume_dev_replace_async(fs_info);
1381 if (ret) {
efe120a0 1382 btrfs_warn(fs_info, "failed to resume dev_replace");
8dabb742
SB
1383 goto restore;
1384 }
94aebfb2
JB
1385
1386 if (!fs_info->uuid_root) {
efe120a0 1387 btrfs_info(fs_info, "creating UUID tree");
94aebfb2
JB
1388 ret = btrfs_create_uuid_tree(fs_info);
1389 if (ret) {
efe120a0 1390 btrfs_warn(fs_info, "failed to create the UUID tree %d", ret);
94aebfb2
JB
1391 goto restore;
1392 }
1393 }
c146afad
YZ
1394 sb->s_flags &= ~MS_RDONLY;
1395 }
dc81cdc5
MX
1396out:
1397 btrfs_remount_cleanup(fs_info, old_opts);
c146afad 1398 return 0;
49b25e05
JM
1399
1400restore:
1401 /* We've hit an error - don't reset MS_RDONLY */
1402 if (sb->s_flags & MS_RDONLY)
1403 old_flags |= MS_RDONLY;
1404 sb->s_flags = old_flags;
1405 fs_info->mount_opt = old_opts;
1406 fs_info->compress_type = old_compress_type;
1407 fs_info->max_inline = old_max_inline;
c018daec 1408 mutex_lock(&fs_info->chunk_mutex);
49b25e05 1409 fs_info->alloc_start = old_alloc_start;
c018daec 1410 mutex_unlock(&fs_info->chunk_mutex);
0d2450ab
ST
1411 btrfs_resize_thread_pool(fs_info,
1412 old_thread_pool_size, fs_info->thread_pool_size);
49b25e05 1413 fs_info->metadata_ratio = old_metadata_ratio;
dc81cdc5 1414 btrfs_remount_cleanup(fs_info, old_opts);
49b25e05 1415 return ret;
c146afad
YZ
1416}
1417
bcd53741
AJ
1418/* Used to sort the devices by max_avail(descending sort) */
1419static int btrfs_cmp_device_free_bytes(const void *dev_info1,
1420 const void *dev_info2)
1421{
1422 if (((struct btrfs_device_info *)dev_info1)->max_avail >
1423 ((struct btrfs_device_info *)dev_info2)->max_avail)
1424 return -1;
1425 else if (((struct btrfs_device_info *)dev_info1)->max_avail <
1426 ((struct btrfs_device_info *)dev_info2)->max_avail)
1427 return 1;
1428 else
1429 return 0;
1430}
1431
1432/*
1433 * sort the devices by max_avail, in which max free extent size of each device
1434 * is stored.(Descending Sort)
1435 */
1436static inline void btrfs_descending_sort_devices(
1437 struct btrfs_device_info *devices,
1438 size_t nr_devices)
1439{
1440 sort(devices, nr_devices, sizeof(struct btrfs_device_info),
1441 btrfs_cmp_device_free_bytes, NULL);
1442}
1443
6d07bcec
MX
1444/*
1445 * The helper to calc the free space on the devices that can be used to store
1446 * file data.
1447 */
1448static int btrfs_calc_avail_data_space(struct btrfs_root *root, u64 *free_bytes)
1449{
1450 struct btrfs_fs_info *fs_info = root->fs_info;
1451 struct btrfs_device_info *devices_info;
1452 struct btrfs_fs_devices *fs_devices = fs_info->fs_devices;
1453 struct btrfs_device *device;
1454 u64 skip_space;
1455 u64 type;
1456 u64 avail_space;
1457 u64 used_space;
1458 u64 min_stripe_size;
39fb26c3 1459 int min_stripes = 1, num_stripes = 1;
6d07bcec
MX
1460 int i = 0, nr_devices;
1461 int ret;
1462
b772a86e 1463 nr_devices = fs_info->fs_devices->open_devices;
6d07bcec
MX
1464 BUG_ON(!nr_devices);
1465
d9b0d9ba 1466 devices_info = kmalloc_array(nr_devices, sizeof(*devices_info),
6d07bcec
MX
1467 GFP_NOFS);
1468 if (!devices_info)
1469 return -ENOMEM;
1470
1471 /* calc min stripe number for data space alloction */
1472 type = btrfs_get_alloc_profile(root, 1);
39fb26c3 1473 if (type & BTRFS_BLOCK_GROUP_RAID0) {
6d07bcec 1474 min_stripes = 2;
39fb26c3
MX
1475 num_stripes = nr_devices;
1476 } else if (type & BTRFS_BLOCK_GROUP_RAID1) {
6d07bcec 1477 min_stripes = 2;
39fb26c3
MX
1478 num_stripes = 2;
1479 } else if (type & BTRFS_BLOCK_GROUP_RAID10) {
6d07bcec 1480 min_stripes = 4;
39fb26c3
MX
1481 num_stripes = 4;
1482 }
6d07bcec
MX
1483
1484 if (type & BTRFS_BLOCK_GROUP_DUP)
1485 min_stripe_size = 2 * BTRFS_STRIPE_LEN;
1486 else
1487 min_stripe_size = BTRFS_STRIPE_LEN;
1488
b772a86e 1489 list_for_each_entry(device, &fs_devices->devices, dev_list) {
63a212ab
SB
1490 if (!device->in_fs_metadata || !device->bdev ||
1491 device->is_tgtdev_for_dev_replace)
6d07bcec
MX
1492 continue;
1493
1494 avail_space = device->total_bytes - device->bytes_used;
1495
1496 /* align with stripe_len */
1497 do_div(avail_space, BTRFS_STRIPE_LEN);
1498 avail_space *= BTRFS_STRIPE_LEN;
1499
1500 /*
1501 * In order to avoid overwritting the superblock on the drive,
1502 * btrfs starts at an offset of at least 1MB when doing chunk
1503 * allocation.
1504 */
1505 skip_space = 1024 * 1024;
1506
1507 /* user can set the offset in fs_info->alloc_start. */
1508 if (fs_info->alloc_start + BTRFS_STRIPE_LEN <=
1509 device->total_bytes)
1510 skip_space = max(fs_info->alloc_start, skip_space);
1511
1512 /*
1513 * btrfs can not use the free space in [0, skip_space - 1],
1514 * we must subtract it from the total. In order to implement
1515 * it, we account the used space in this range first.
1516 */
1517 ret = btrfs_account_dev_extents_size(device, 0, skip_space - 1,
1518 &used_space);
1519 if (ret) {
1520 kfree(devices_info);
1521 return ret;
1522 }
1523
1524 /* calc the free space in [0, skip_space - 1] */
1525 skip_space -= used_space;
1526
1527 /*
1528 * we can use the free space in [0, skip_space - 1], subtract
1529 * it from the total.
1530 */
1531 if (avail_space && avail_space >= skip_space)
1532 avail_space -= skip_space;
1533 else
1534 avail_space = 0;
1535
1536 if (avail_space < min_stripe_size)
1537 continue;
1538
1539 devices_info[i].dev = device;
1540 devices_info[i].max_avail = avail_space;
1541
1542 i++;
1543 }
1544
1545 nr_devices = i;
1546
1547 btrfs_descending_sort_devices(devices_info, nr_devices);
1548
1549 i = nr_devices - 1;
1550 avail_space = 0;
1551 while (nr_devices >= min_stripes) {
39fb26c3
MX
1552 if (num_stripes > nr_devices)
1553 num_stripes = nr_devices;
1554
6d07bcec
MX
1555 if (devices_info[i].max_avail >= min_stripe_size) {
1556 int j;
1557 u64 alloc_size;
1558
39fb26c3 1559 avail_space += devices_info[i].max_avail * num_stripes;
6d07bcec 1560 alloc_size = devices_info[i].max_avail;
39fb26c3 1561 for (j = i + 1 - num_stripes; j <= i; j++)
6d07bcec
MX
1562 devices_info[j].max_avail -= alloc_size;
1563 }
1564 i--;
1565 nr_devices--;
1566 }
1567
1568 kfree(devices_info);
1569 *free_bytes = avail_space;
1570 return 0;
1571}
1572
8fd17795
CM
1573static int btrfs_statfs(struct dentry *dentry, struct kstatfs *buf)
1574{
815745cf
AV
1575 struct btrfs_fs_info *fs_info = btrfs_sb(dentry->d_sb);
1576 struct btrfs_super_block *disk_super = fs_info->super_copy;
1577 struct list_head *head = &fs_info->space_info;
bd4d1088
JB
1578 struct btrfs_space_info *found;
1579 u64 total_used = 0;
6d07bcec 1580 u64 total_free_data = 0;
db94535d 1581 int bits = dentry->d_sb->s_blocksize_bits;
815745cf 1582 __be32 *fsid = (__be32 *)fs_info->fsid;
6d07bcec 1583 int ret;
8fd17795 1584
6d07bcec 1585 /* holding chunk_muext to avoid allocating new chunks */
815745cf 1586 mutex_lock(&fs_info->chunk_mutex);
bd4d1088 1587 rcu_read_lock();
89a55897 1588 list_for_each_entry_rcu(found, head, list) {
6d07bcec
MX
1589 if (found->flags & BTRFS_BLOCK_GROUP_DATA) {
1590 total_free_data += found->disk_total - found->disk_used;
1591 total_free_data -=
1592 btrfs_account_ro_block_groups_free_space(found);
1593 }
1594
b742bb82 1595 total_used += found->disk_used;
89a55897 1596 }
bd4d1088
JB
1597 rcu_read_unlock();
1598
8fd17795 1599 buf->f_namelen = BTRFS_NAME_LEN;
db94535d 1600 buf->f_blocks = btrfs_super_total_bytes(disk_super) >> bits;
bd4d1088 1601 buf->f_bfree = buf->f_blocks - (total_used >> bits);
8fd17795
CM
1602 buf->f_bsize = dentry->d_sb->s_blocksize;
1603 buf->f_type = BTRFS_SUPER_MAGIC;
6d07bcec 1604 buf->f_bavail = total_free_data;
815745cf 1605 ret = btrfs_calc_avail_data_space(fs_info->tree_root, &total_free_data);
6d07bcec 1606 if (ret) {
815745cf 1607 mutex_unlock(&fs_info->chunk_mutex);
6d07bcec
MX
1608 return ret;
1609 }
1610 buf->f_bavail += total_free_data;
1611 buf->f_bavail = buf->f_bavail >> bits;
815745cf 1612 mutex_unlock(&fs_info->chunk_mutex);
d397712b 1613
9d03632e 1614 /* We treat it as constant endianness (it doesn't matter _which_)
d397712b 1615 because we want the fsid to come out the same whether mounted
9d03632e
DW
1616 on a big-endian or little-endian host */
1617 buf->f_fsid.val[0] = be32_to_cpu(fsid[0]) ^ be32_to_cpu(fsid[2]);
1618 buf->f_fsid.val[1] = be32_to_cpu(fsid[1]) ^ be32_to_cpu(fsid[3]);
32d48fa1
DW
1619 /* Mask in the root object ID too, to disambiguate subvols */
1620 buf->f_fsid.val[0] ^= BTRFS_I(dentry->d_inode)->root->objectid >> 32;
1621 buf->f_fsid.val[1] ^= BTRFS_I(dentry->d_inode)->root->objectid;
1622
8fd17795
CM
1623 return 0;
1624}
b5133862 1625
aea52e19
AV
1626static void btrfs_kill_super(struct super_block *sb)
1627{
815745cf 1628 struct btrfs_fs_info *fs_info = btrfs_sb(sb);
aea52e19 1629 kill_anon_super(sb);
d22ca7de 1630 free_fs_info(fs_info);
aea52e19
AV
1631}
1632
2e635a27
CM
1633static struct file_system_type btrfs_fs_type = {
1634 .owner = THIS_MODULE,
1635 .name = "btrfs",
061dbc6b 1636 .mount = btrfs_mount,
aea52e19 1637 .kill_sb = btrfs_kill_super,
2e635a27
CM
1638 .fs_flags = FS_REQUIRES_DEV,
1639};
7f78e035 1640MODULE_ALIAS_FS("btrfs");
a9218f6b 1641
d352ac68
CM
1642/*
1643 * used by btrfsctl to scan devices when no FS is mounted
1644 */
8a4b83cc
CM
1645static long btrfs_control_ioctl(struct file *file, unsigned int cmd,
1646 unsigned long arg)
1647{
1648 struct btrfs_ioctl_vol_args *vol;
1649 struct btrfs_fs_devices *fs_devices;
c071fcfd 1650 int ret = -ENOTTY;
8a4b83cc 1651
e441d54d
CM
1652 if (!capable(CAP_SYS_ADMIN))
1653 return -EPERM;
1654
dae7b665
LZ
1655 vol = memdup_user((void __user *)arg, sizeof(*vol));
1656 if (IS_ERR(vol))
1657 return PTR_ERR(vol);
c071fcfd 1658
8a4b83cc
CM
1659 switch (cmd) {
1660 case BTRFS_IOC_SCAN_DEV:
97288f2c 1661 ret = btrfs_scan_one_device(vol->name, FMODE_READ,
8a4b83cc
CM
1662 &btrfs_fs_type, &fs_devices);
1663 break;
02db0844
JB
1664 case BTRFS_IOC_DEVICES_READY:
1665 ret = btrfs_scan_one_device(vol->name, FMODE_READ,
1666 &btrfs_fs_type, &fs_devices);
1667 if (ret)
1668 break;
1669 ret = !(fs_devices->num_devices == fs_devices->total_devices);
1670 break;
8a4b83cc 1671 }
dae7b665 1672
8a4b83cc 1673 kfree(vol);
f819d837 1674 return ret;
8a4b83cc
CM
1675}
1676
0176260f 1677static int btrfs_freeze(struct super_block *sb)
ed0dab6b 1678{
354aa0fb
MX
1679 struct btrfs_trans_handle *trans;
1680 struct btrfs_root *root = btrfs_sb(sb)->tree_root;
1681
d4edf39b 1682 trans = btrfs_attach_transaction_barrier(root);
354aa0fb
MX
1683 if (IS_ERR(trans)) {
1684 /* no transaction, don't bother */
1685 if (PTR_ERR(trans) == -ENOENT)
1686 return 0;
1687 return PTR_ERR(trans);
1688 }
1689 return btrfs_commit_transaction(trans, root);
ed0dab6b
Y
1690}
1691
0176260f 1692static int btrfs_unfreeze(struct super_block *sb)
ed0dab6b 1693{
0176260f 1694 return 0;
ed0dab6b 1695}
2e635a27 1696
9c5085c1
JB
1697static int btrfs_show_devname(struct seq_file *m, struct dentry *root)
1698{
1699 struct btrfs_fs_info *fs_info = btrfs_sb(root->d_sb);
1700 struct btrfs_fs_devices *cur_devices;
1701 struct btrfs_device *dev, *first_dev = NULL;
1702 struct list_head *head;
1703 struct rcu_string *name;
1704
1705 mutex_lock(&fs_info->fs_devices->device_list_mutex);
1706 cur_devices = fs_info->fs_devices;
1707 while (cur_devices) {
1708 head = &cur_devices->devices;
1709 list_for_each_entry(dev, head, dev_list) {
aa9ddcd4
JB
1710 if (dev->missing)
1711 continue;
9c5085c1
JB
1712 if (!first_dev || dev->devid < first_dev->devid)
1713 first_dev = dev;
1714 }
1715 cur_devices = cur_devices->seed;
1716 }
1717
1718 if (first_dev) {
1719 rcu_read_lock();
1720 name = rcu_dereference(first_dev->name);
1721 seq_escape(m, name->str, " \t\n\\");
1722 rcu_read_unlock();
1723 } else {
1724 WARN_ON(1);
1725 }
1726 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
1727 return 0;
1728}
1729
b87221de 1730static const struct super_operations btrfs_super_ops = {
76dda93c 1731 .drop_inode = btrfs_drop_inode,
bd555975 1732 .evict_inode = btrfs_evict_inode,
e20d96d6 1733 .put_super = btrfs_put_super,
d5719762 1734 .sync_fs = btrfs_sync_fs,
a9572a15 1735 .show_options = btrfs_show_options,
9c5085c1 1736 .show_devname = btrfs_show_devname,
4730a4bc 1737 .write_inode = btrfs_write_inode,
2c90e5d6
CM
1738 .alloc_inode = btrfs_alloc_inode,
1739 .destroy_inode = btrfs_destroy_inode,
8fd17795 1740 .statfs = btrfs_statfs,
c146afad 1741 .remount_fs = btrfs_remount,
0176260f
LT
1742 .freeze_fs = btrfs_freeze,
1743 .unfreeze_fs = btrfs_unfreeze,
e20d96d6 1744};
a9218f6b
CM
1745
1746static const struct file_operations btrfs_ctl_fops = {
1747 .unlocked_ioctl = btrfs_control_ioctl,
1748 .compat_ioctl = btrfs_control_ioctl,
1749 .owner = THIS_MODULE,
6038f373 1750 .llseek = noop_llseek,
a9218f6b
CM
1751};
1752
1753static struct miscdevice btrfs_misc = {
578454ff 1754 .minor = BTRFS_MINOR,
a9218f6b
CM
1755 .name = "btrfs-control",
1756 .fops = &btrfs_ctl_fops
1757};
1758
578454ff
KS
1759MODULE_ALIAS_MISCDEV(BTRFS_MINOR);
1760MODULE_ALIAS("devname:btrfs-control");
1761
a9218f6b
CM
1762static int btrfs_interface_init(void)
1763{
1764 return misc_register(&btrfs_misc);
1765}
1766
b2950863 1767static void btrfs_interface_exit(void)
a9218f6b
CM
1768{
1769 if (misc_deregister(&btrfs_misc) < 0)
efe120a0 1770 printk(KERN_INFO "BTRFS: misc_deregister failed for control device\n");
a9218f6b
CM
1771}
1772
85965600
DS
1773static void btrfs_print_info(void)
1774{
1775 printk(KERN_INFO "Btrfs loaded"
1776#ifdef CONFIG_BTRFS_DEBUG
1777 ", debug=on"
1778#endif
79556c3d
SB
1779#ifdef CONFIG_BTRFS_ASSERT
1780 ", assert=on"
1781#endif
85965600
DS
1782#ifdef CONFIG_BTRFS_FS_CHECK_INTEGRITY
1783 ", integrity-checker=on"
1784#endif
1785 "\n");
1786}
1787
dc11dd5d
JB
1788static int btrfs_run_sanity_tests(void)
1789{
06ea65a3
JB
1790 int ret;
1791
294e30fe 1792 ret = btrfs_init_test_fs();
06ea65a3
JB
1793 if (ret)
1794 return ret;
294e30fe
JB
1795
1796 ret = btrfs_test_free_space_cache();
1797 if (ret)
1798 goto out;
1799 ret = btrfs_test_extent_buffer_operations();
1800 if (ret)
1801 goto out;
1802 ret = btrfs_test_extent_io();
aaedb55b
JB
1803 if (ret)
1804 goto out;
1805 ret = btrfs_test_inodes();
294e30fe
JB
1806out:
1807 btrfs_destroy_test_fs();
1808 return ret;
dc11dd5d
JB
1809}
1810
2e635a27
CM
1811static int __init init_btrfs_fs(void)
1812{
2c90e5d6 1813 int err;
58176a96
JB
1814
1815 err = btrfs_init_sysfs();
1816 if (err)
1817 return err;
1818
143bede5 1819 btrfs_init_compress();
d1310b2e 1820
261507a0
LZ
1821 err = btrfs_init_cachep();
1822 if (err)
1823 goto free_compress;
1824
d1310b2e 1825 err = extent_io_init();
2f4cbe64
WB
1826 if (err)
1827 goto free_cachep;
1828
d1310b2e
CM
1829 err = extent_map_init();
1830 if (err)
1831 goto free_extent_io;
1832
6352b91d 1833 err = ordered_data_init();
2f4cbe64
WB
1834 if (err)
1835 goto free_extent_map;
c8b97818 1836
6352b91d
MX
1837 err = btrfs_delayed_inode_init();
1838 if (err)
1839 goto free_ordered_data;
1840
9247f317 1841 err = btrfs_auto_defrag_init();
16cdcec7
MX
1842 if (err)
1843 goto free_delayed_inode;
1844
78a6184a 1845 err = btrfs_delayed_ref_init();
9247f317
MX
1846 if (err)
1847 goto free_auto_defrag;
1848
b9e9a6cb
WS
1849 err = btrfs_prelim_ref_init();
1850 if (err)
1851 goto free_prelim_ref;
1852
78a6184a
MX
1853 err = btrfs_interface_init();
1854 if (err)
1855 goto free_delayed_ref;
1856
e565d4b9
JS
1857 btrfs_init_lockdep();
1858
85965600 1859 btrfs_print_info();
dc11dd5d
JB
1860
1861 err = btrfs_run_sanity_tests();
1862 if (err)
1863 goto unregister_ioctl;
1864
1865 err = register_filesystem(&btrfs_fs_type);
1866 if (err)
1867 goto unregister_ioctl;
74255aa0 1868
2f4cbe64
WB
1869 return 0;
1870
a9218f6b
CM
1871unregister_ioctl:
1872 btrfs_interface_exit();
b9e9a6cb
WS
1873free_prelim_ref:
1874 btrfs_prelim_ref_exit();
78a6184a
MX
1875free_delayed_ref:
1876 btrfs_delayed_ref_exit();
9247f317
MX
1877free_auto_defrag:
1878 btrfs_auto_defrag_exit();
16cdcec7
MX
1879free_delayed_inode:
1880 btrfs_delayed_inode_exit();
6352b91d
MX
1881free_ordered_data:
1882 ordered_data_exit();
2f4cbe64
WB
1883free_extent_map:
1884 extent_map_exit();
d1310b2e
CM
1885free_extent_io:
1886 extent_io_exit();
2f4cbe64
WB
1887free_cachep:
1888 btrfs_destroy_cachep();
261507a0
LZ
1889free_compress:
1890 btrfs_exit_compress();
2f4cbe64
WB
1891 btrfs_exit_sysfs();
1892 return err;
2e635a27
CM
1893}
1894
1895static void __exit exit_btrfs_fs(void)
1896{
39279cc3 1897 btrfs_destroy_cachep();
78a6184a 1898 btrfs_delayed_ref_exit();
9247f317 1899 btrfs_auto_defrag_exit();
16cdcec7 1900 btrfs_delayed_inode_exit();
b9e9a6cb 1901 btrfs_prelim_ref_exit();
6352b91d 1902 ordered_data_exit();
a52d9a80 1903 extent_map_exit();
d1310b2e 1904 extent_io_exit();
a9218f6b 1905 btrfs_interface_exit();
2e635a27 1906 unregister_filesystem(&btrfs_fs_type);
58176a96 1907 btrfs_exit_sysfs();
8a4b83cc 1908 btrfs_cleanup_fs_uuids();
261507a0 1909 btrfs_exit_compress();
2e635a27
CM
1910}
1911
1912module_init(init_btrfs_fs)
1913module_exit(exit_btrfs_fs)
1914
1915MODULE_LICENSE("GPL");
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