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btrfs: prevent copying too big compressed lzo segment
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c1d7c514 1// SPDX-License-Identifier: GPL-2.0
f46b5a66
CH
2/*
3 * Copyright (C) 2007 Oracle. All rights reserved.
f46b5a66
CH
4 */
5
6#include <linux/kernel.h>
7#include <linux/bio.h>
f46b5a66
CH
8#include <linux/file.h>
9#include <linux/fs.h>
cb8e7090 10#include <linux/fsnotify.h>
f46b5a66
CH
11#include <linux/pagemap.h>
12#include <linux/highmem.h>
13#include <linux/time.h>
f46b5a66 14#include <linux/string.h>
f46b5a66 15#include <linux/backing-dev.h>
cb8e7090 16#include <linux/mount.h>
cb8e7090 17#include <linux/namei.h>
f46b5a66 18#include <linux/writeback.h>
f46b5a66 19#include <linux/compat.h>
cb8e7090 20#include <linux/security.h>
f46b5a66 21#include <linux/xattr.h>
f54de068 22#include <linux/mm.h>
5a0e3ad6 23#include <linux/slab.h>
f7039b1d 24#include <linux/blkdev.h>
8ea05e3a 25#include <linux/uuid.h>
55e301fd 26#include <linux/btrfs.h>
416161db 27#include <linux/uaccess.h>
ae5e165d 28#include <linux/iversion.h>
97fc2977 29#include <linux/fileattr.h>
14605409 30#include <linux/fsverity.h>
f46b5a66
CH
31#include "ctree.h"
32#include "disk-io.h"
949964c9 33#include "export.h"
f46b5a66
CH
34#include "transaction.h"
35#include "btrfs_inode.h"
f46b5a66
CH
36#include "print-tree.h"
37#include "volumes.h"
925baedd 38#include "locking.h"
d7728c96 39#include "backref.h"
606686ee 40#include "rcu-string.h"
31db9f7c 41#include "send.h"
3f6bcfbd 42#include "dev-replace.h"
63541927 43#include "props.h"
3b02a68a 44#include "sysfs.h"
fcebe456 45#include "qgroup.h"
1ec9a1ae 46#include "tree-log.h"
ebb8765b 47#include "compression.h"
8719aaae 48#include "space-info.h"
86736342 49#include "delalloc-space.h"
aac0023c 50#include "block-group.h"
22b398ee 51#include "subpage.h"
f46b5a66 52
abccd00f
HM
53#ifdef CONFIG_64BIT
54/* If we have a 32-bit userspace and 64-bit kernel, then the UAPI
55 * structures are incorrect, as the timespec structure from userspace
56 * is 4 bytes too small. We define these alternatives here to teach
57 * the kernel about the 32-bit struct packing.
58 */
59struct btrfs_ioctl_timespec_32 {
60 __u64 sec;
61 __u32 nsec;
62} __attribute__ ((__packed__));
63
64struct btrfs_ioctl_received_subvol_args_32 {
65 char uuid[BTRFS_UUID_SIZE]; /* in */
66 __u64 stransid; /* in */
67 __u64 rtransid; /* out */
68 struct btrfs_ioctl_timespec_32 stime; /* in */
69 struct btrfs_ioctl_timespec_32 rtime; /* out */
70 __u64 flags; /* in */
71 __u64 reserved[16]; /* in */
72} __attribute__ ((__packed__));
73
74#define BTRFS_IOC_SET_RECEIVED_SUBVOL_32 _IOWR(BTRFS_IOCTL_MAGIC, 37, \
75 struct btrfs_ioctl_received_subvol_args_32)
76#endif
77
2351f431
JB
78#if defined(CONFIG_64BIT) && defined(CONFIG_COMPAT)
79struct btrfs_ioctl_send_args_32 {
80 __s64 send_fd; /* in */
81 __u64 clone_sources_count; /* in */
82 compat_uptr_t clone_sources; /* in */
83 __u64 parent_root; /* in */
84 __u64 flags; /* in */
e77fbf99
DS
85 __u32 version; /* in */
86 __u8 reserved[28]; /* in */
2351f431
JB
87} __attribute__ ((__packed__));
88
89#define BTRFS_IOC_SEND_32 _IOW(BTRFS_IOCTL_MAGIC, 38, \
90 struct btrfs_ioctl_send_args_32)
91#endif
abccd00f 92
6cbff00f 93/* Mask out flags that are inappropriate for the given type of inode. */
1905a0f7
DS
94static unsigned int btrfs_mask_fsflags_for_type(struct inode *inode,
95 unsigned int flags)
6cbff00f 96{
1905a0f7 97 if (S_ISDIR(inode->i_mode))
6cbff00f 98 return flags;
1905a0f7 99 else if (S_ISREG(inode->i_mode))
6cbff00f
CH
100 return flags & ~FS_DIRSYNC_FL;
101 else
102 return flags & (FS_NODUMP_FL | FS_NOATIME_FL);
103}
104
105/*
a157d4fd
DS
106 * Export internal inode flags to the format expected by the FS_IOC_GETFLAGS
107 * ioctl.
6cbff00f 108 */
77eea05e 109static unsigned int btrfs_inode_flags_to_fsflags(struct btrfs_inode *binode)
6cbff00f
CH
110{
111 unsigned int iflags = 0;
77eea05e 112 u32 flags = binode->flags;
14605409 113 u32 ro_flags = binode->ro_flags;
6cbff00f
CH
114
115 if (flags & BTRFS_INODE_SYNC)
116 iflags |= FS_SYNC_FL;
117 if (flags & BTRFS_INODE_IMMUTABLE)
118 iflags |= FS_IMMUTABLE_FL;
119 if (flags & BTRFS_INODE_APPEND)
120 iflags |= FS_APPEND_FL;
121 if (flags & BTRFS_INODE_NODUMP)
122 iflags |= FS_NODUMP_FL;
123 if (flags & BTRFS_INODE_NOATIME)
124 iflags |= FS_NOATIME_FL;
125 if (flags & BTRFS_INODE_DIRSYNC)
126 iflags |= FS_DIRSYNC_FL;
d0092bdd
LZ
127 if (flags & BTRFS_INODE_NODATACOW)
128 iflags |= FS_NOCOW_FL;
14605409
BB
129 if (ro_flags & BTRFS_INODE_RO_VERITY)
130 iflags |= FS_VERITY_FL;
d0092bdd 131
13f48dc9 132 if (flags & BTRFS_INODE_NOCOMPRESS)
d0092bdd 133 iflags |= FS_NOCOMP_FL;
13f48dc9
ST
134 else if (flags & BTRFS_INODE_COMPRESS)
135 iflags |= FS_COMPR_FL;
6cbff00f
CH
136
137 return iflags;
138}
139
140/*
141 * Update inode->i_flags based on the btrfs internal flags.
142 */
7b6a221e 143void btrfs_sync_inode_flags_to_i_flags(struct inode *inode)
6cbff00f 144{
5c57b8b6 145 struct btrfs_inode *binode = BTRFS_I(inode);
3cc79392 146 unsigned int new_fl = 0;
6cbff00f 147
5c57b8b6 148 if (binode->flags & BTRFS_INODE_SYNC)
3cc79392 149 new_fl |= S_SYNC;
5c57b8b6 150 if (binode->flags & BTRFS_INODE_IMMUTABLE)
3cc79392 151 new_fl |= S_IMMUTABLE;
5c57b8b6 152 if (binode->flags & BTRFS_INODE_APPEND)
3cc79392 153 new_fl |= S_APPEND;
5c57b8b6 154 if (binode->flags & BTRFS_INODE_NOATIME)
3cc79392 155 new_fl |= S_NOATIME;
5c57b8b6 156 if (binode->flags & BTRFS_INODE_DIRSYNC)
3cc79392 157 new_fl |= S_DIRSYNC;
14605409
BB
158 if (binode->ro_flags & BTRFS_INODE_RO_VERITY)
159 new_fl |= S_VERITY;
3cc79392
FM
160
161 set_mask_bits(&inode->i_flags,
14605409
BB
162 S_SYNC | S_APPEND | S_IMMUTABLE | S_NOATIME | S_DIRSYNC |
163 S_VERITY, new_fl);
6cbff00f
CH
164}
165
f37c563b
DS
166/*
167 * Check if @flags are a supported and valid set of FS_*_FL flags and that
168 * the old and new flags are not conflicting
169 */
170static int check_fsflags(unsigned int old_flags, unsigned int flags)
75e7cb7f
LB
171{
172 if (flags & ~(FS_IMMUTABLE_FL | FS_APPEND_FL | \
173 FS_NOATIME_FL | FS_NODUMP_FL | \
174 FS_SYNC_FL | FS_DIRSYNC_FL | \
e1e8fb6a
LZ
175 FS_NOCOMP_FL | FS_COMPR_FL |
176 FS_NOCOW_FL))
75e7cb7f
LB
177 return -EOPNOTSUPP;
178
f37c563b 179 /* COMPR and NOCOMP on new/old are valid */
75e7cb7f
LB
180 if ((flags & FS_NOCOMP_FL) && (flags & FS_COMPR_FL))
181 return -EINVAL;
182
f37c563b
DS
183 if ((flags & FS_COMPR_FL) && (flags & FS_NOCOW_FL))
184 return -EINVAL;
185
186 /* NOCOW and compression options are mutually exclusive */
187 if ((old_flags & FS_NOCOW_FL) && (flags & (FS_COMPR_FL | FS_NOCOMP_FL)))
188 return -EINVAL;
189 if ((flags & FS_NOCOW_FL) && (old_flags & (FS_COMPR_FL | FS_NOCOMP_FL)))
190 return -EINVAL;
191
75e7cb7f
LB
192 return 0;
193}
194
d206e9c9
NA
195static int check_fsflags_compatible(struct btrfs_fs_info *fs_info,
196 unsigned int flags)
197{
198 if (btrfs_is_zoned(fs_info) && (flags & FS_NOCOW_FL))
199 return -EPERM;
200
201 return 0;
202}
203
97fc2977
MS
204/*
205 * Set flags/xflags from the internal inode flags. The remaining items of
206 * fsxattr are zeroed.
207 */
208int btrfs_fileattr_get(struct dentry *dentry, struct fileattr *fa)
6cbff00f 209{
97fc2977
MS
210 struct btrfs_inode *binode = BTRFS_I(d_inode(dentry));
211
77eea05e 212 fileattr_fill_flags(fa, btrfs_inode_flags_to_fsflags(binode));
97fc2977
MS
213 return 0;
214}
215
216int btrfs_fileattr_set(struct user_namespace *mnt_userns,
217 struct dentry *dentry, struct fileattr *fa)
218{
219 struct inode *inode = d_inode(dentry);
0b246afa 220 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
5c57b8b6
DS
221 struct btrfs_inode *binode = BTRFS_I(inode);
222 struct btrfs_root *root = binode->root;
6cbff00f 223 struct btrfs_trans_handle *trans;
5aca2842 224 unsigned int fsflags, old_fsflags;
6cbff00f 225 int ret;
ff9fef55 226 const char *comp = NULL;
f37c563b 227 u32 binode_flags;
6cbff00f 228
b83cc969
LZ
229 if (btrfs_root_readonly(root))
230 return -EROFS;
231
97fc2977
MS
232 if (fileattr_has_fsx(fa))
233 return -EOPNOTSUPP;
e7848683 234
97fc2977 235 fsflags = btrfs_mask_fsflags_for_type(inode, fa->flags);
77eea05e 236 old_fsflags = btrfs_inode_flags_to_fsflags(binode);
f37c563b
DS
237 ret = check_fsflags(old_fsflags, fsflags);
238 if (ret)
97fc2977 239 return ret;
f37c563b 240
d206e9c9
NA
241 ret = check_fsflags_compatible(fs_info, fsflags);
242 if (ret)
97fc2977 243 return ret;
d206e9c9 244
f37c563b 245 binode_flags = binode->flags;
5c57b8b6 246 if (fsflags & FS_SYNC_FL)
d2b8fcfe 247 binode_flags |= BTRFS_INODE_SYNC;
6cbff00f 248 else
d2b8fcfe 249 binode_flags &= ~BTRFS_INODE_SYNC;
5c57b8b6 250 if (fsflags & FS_IMMUTABLE_FL)
d2b8fcfe 251 binode_flags |= BTRFS_INODE_IMMUTABLE;
6cbff00f 252 else
d2b8fcfe 253 binode_flags &= ~BTRFS_INODE_IMMUTABLE;
5c57b8b6 254 if (fsflags & FS_APPEND_FL)
d2b8fcfe 255 binode_flags |= BTRFS_INODE_APPEND;
6cbff00f 256 else
d2b8fcfe 257 binode_flags &= ~BTRFS_INODE_APPEND;
5c57b8b6 258 if (fsflags & FS_NODUMP_FL)
d2b8fcfe 259 binode_flags |= BTRFS_INODE_NODUMP;
6cbff00f 260 else
d2b8fcfe 261 binode_flags &= ~BTRFS_INODE_NODUMP;
5c57b8b6 262 if (fsflags & FS_NOATIME_FL)
d2b8fcfe 263 binode_flags |= BTRFS_INODE_NOATIME;
6cbff00f 264 else
d2b8fcfe 265 binode_flags &= ~BTRFS_INODE_NOATIME;
97fc2977
MS
266
267 /* If coming from FS_IOC_FSSETXATTR then skip unconverted flags */
268 if (!fa->flags_valid) {
269 /* 1 item for the inode */
270 trans = btrfs_start_transaction(root, 1);
9b8a233b
RH
271 if (IS_ERR(trans))
272 return PTR_ERR(trans);
97fc2977
MS
273 goto update_flags;
274 }
275
5c57b8b6 276 if (fsflags & FS_DIRSYNC_FL)
d2b8fcfe 277 binode_flags |= BTRFS_INODE_DIRSYNC;
6cbff00f 278 else
d2b8fcfe 279 binode_flags &= ~BTRFS_INODE_DIRSYNC;
5c57b8b6 280 if (fsflags & FS_NOCOW_FL) {
44e5194b 281 if (S_ISREG(inode->i_mode)) {
7e97b8da
DS
282 /*
283 * It's safe to turn csums off here, no extents exist.
284 * Otherwise we want the flag to reflect the real COW
285 * status of the file and will not set it.
286 */
287 if (inode->i_size == 0)
d2b8fcfe
AJ
288 binode_flags |= BTRFS_INODE_NODATACOW |
289 BTRFS_INODE_NODATASUM;
7e97b8da 290 } else {
d2b8fcfe 291 binode_flags |= BTRFS_INODE_NODATACOW;
7e97b8da
DS
292 }
293 } else {
294 /*
01327610 295 * Revert back under same assumptions as above
7e97b8da 296 */
44e5194b 297 if (S_ISREG(inode->i_mode)) {
7e97b8da 298 if (inode->i_size == 0)
d2b8fcfe
AJ
299 binode_flags &= ~(BTRFS_INODE_NODATACOW |
300 BTRFS_INODE_NODATASUM);
7e97b8da 301 } else {
d2b8fcfe 302 binode_flags &= ~BTRFS_INODE_NODATACOW;
7e97b8da
DS
303 }
304 }
6cbff00f 305
75e7cb7f
LB
306 /*
307 * The COMPRESS flag can only be changed by users, while the NOCOMPRESS
308 * flag may be changed automatically if compression code won't make
309 * things smaller.
310 */
5c57b8b6 311 if (fsflags & FS_NOCOMP_FL) {
d2b8fcfe
AJ
312 binode_flags &= ~BTRFS_INODE_COMPRESS;
313 binode_flags |= BTRFS_INODE_NOCOMPRESS;
5c57b8b6 314 } else if (fsflags & FS_COMPR_FL) {
63541927 315
97fc2977
MS
316 if (IS_SWAPFILE(inode))
317 return -ETXTBSY;
eede2bf3 318
d2b8fcfe
AJ
319 binode_flags |= BTRFS_INODE_COMPRESS;
320 binode_flags &= ~BTRFS_INODE_NOCOMPRESS;
63541927 321
93370509
DS
322 comp = btrfs_compress_type2str(fs_info->compress_type);
323 if (!comp || comp[0] == 0)
324 comp = btrfs_compress_type2str(BTRFS_COMPRESS_ZLIB);
ebcb904d 325 } else {
d2b8fcfe 326 binode_flags &= ~(BTRFS_INODE_COMPRESS | BTRFS_INODE_NOCOMPRESS);
75e7cb7f 327 }
6cbff00f 328
ff9fef55
AJ
329 /*
330 * 1 for inode item
331 * 2 for properties
332 */
333 trans = btrfs_start_transaction(root, 3);
97fc2977
MS
334 if (IS_ERR(trans))
335 return PTR_ERR(trans);
6cbff00f 336
ff9fef55
AJ
337 if (comp) {
338 ret = btrfs_set_prop(trans, inode, "btrfs.compression", comp,
339 strlen(comp), 0);
340 if (ret) {
341 btrfs_abort_transaction(trans, ret);
342 goto out_end_trans;
343 }
ff9fef55
AJ
344 } else {
345 ret = btrfs_set_prop(trans, inode, "btrfs.compression", NULL,
346 0, 0);
347 if (ret && ret != -ENODATA) {
348 btrfs_abort_transaction(trans, ret);
349 goto out_end_trans;
350 }
351 }
352
97fc2977 353update_flags:
d2b8fcfe 354 binode->flags = binode_flags;
7b6a221e 355 btrfs_sync_inode_flags_to_i_flags(inode);
0c4d2d95 356 inode_inc_iversion(inode);
c2050a45 357 inode->i_ctime = current_time(inode);
9a56fcd1 358 ret = btrfs_update_inode(trans, root, BTRFS_I(inode));
6cbff00f 359
ff9fef55 360 out_end_trans:
3a45bb20 361 btrfs_end_transaction(trans);
2d4e6f6a 362 return ret;
6cbff00f
CH
363}
364
0d7ed32c
DS
365/*
366 * Start exclusive operation @type, return true on success
367 */
c3e1f96c
GR
368bool btrfs_exclop_start(struct btrfs_fs_info *fs_info,
369 enum btrfs_exclusive_operation type)
370{
0d7ed32c
DS
371 bool ret = false;
372
373 spin_lock(&fs_info->super_lock);
374 if (fs_info->exclusive_operation == BTRFS_EXCLOP_NONE) {
375 fs_info->exclusive_operation = type;
376 ret = true;
377 }
378 spin_unlock(&fs_info->super_lock);
379
380 return ret;
c3e1f96c
GR
381}
382
578bda9e
DS
383/*
384 * Conditionally allow to enter the exclusive operation in case it's compatible
385 * with the running one. This must be paired with btrfs_exclop_start_unlock and
386 * btrfs_exclop_finish.
387 *
388 * Compatibility:
389 * - the same type is already running
621a1ee1 390 * - when trying to add a device and balance has been paused
578bda9e
DS
391 * - not BTRFS_EXCLOP_NONE - this is intentionally incompatible and the caller
392 * must check the condition first that would allow none -> @type
393 */
394bool btrfs_exclop_start_try_lock(struct btrfs_fs_info *fs_info,
395 enum btrfs_exclusive_operation type)
396{
397 spin_lock(&fs_info->super_lock);
621a1ee1
NB
398 if (fs_info->exclusive_operation == type ||
399 (fs_info->exclusive_operation == BTRFS_EXCLOP_BALANCE_PAUSED &&
400 type == BTRFS_EXCLOP_DEV_ADD))
578bda9e
DS
401 return true;
402
403 spin_unlock(&fs_info->super_lock);
404 return false;
405}
406
407void btrfs_exclop_start_unlock(struct btrfs_fs_info *fs_info)
408{
409 spin_unlock(&fs_info->super_lock);
410}
411
c3e1f96c
GR
412void btrfs_exclop_finish(struct btrfs_fs_info *fs_info)
413{
0d7ed32c 414 spin_lock(&fs_info->super_lock);
c3e1f96c 415 WRITE_ONCE(fs_info->exclusive_operation, BTRFS_EXCLOP_NONE);
0d7ed32c 416 spin_unlock(&fs_info->super_lock);
66a2823c 417 sysfs_notify(&fs_info->fs_devices->fsid_kobj, NULL, "exclusive_operation");
c3e1f96c
GR
418}
419
efc0e69c
NB
420void btrfs_exclop_balance(struct btrfs_fs_info *fs_info,
421 enum btrfs_exclusive_operation op)
422{
423 switch (op) {
424 case BTRFS_EXCLOP_BALANCE_PAUSED:
425 spin_lock(&fs_info->super_lock);
426 ASSERT(fs_info->exclusive_operation == BTRFS_EXCLOP_BALANCE ||
427 fs_info->exclusive_operation == BTRFS_EXCLOP_DEV_ADD);
428 fs_info->exclusive_operation = BTRFS_EXCLOP_BALANCE_PAUSED;
429 spin_unlock(&fs_info->super_lock);
430 break;
431 case BTRFS_EXCLOP_BALANCE:
432 spin_lock(&fs_info->super_lock);
433 ASSERT(fs_info->exclusive_operation == BTRFS_EXCLOP_BALANCE_PAUSED);
434 fs_info->exclusive_operation = BTRFS_EXCLOP_BALANCE;
435 spin_unlock(&fs_info->super_lock);
436 break;
437 default:
438 btrfs_warn(fs_info,
439 "invalid exclop balance operation %d requested", op);
440 }
441}
442
6cbff00f
CH
443static int btrfs_ioctl_getversion(struct file *file, int __user *arg)
444{
496ad9aa 445 struct inode *inode = file_inode(file);
6cbff00f
CH
446
447 return put_user(inode->i_generation, arg);
448}
f46b5a66 449
b929c1d8
MPS
450static noinline int btrfs_ioctl_fitrim(struct btrfs_fs_info *fs_info,
451 void __user *arg)
f7039b1d 452{
f7039b1d
LD
453 struct btrfs_device *device;
454 struct request_queue *q;
455 struct fstrim_range range;
456 u64 minlen = ULLONG_MAX;
457 u64 num_devices = 0;
458 int ret;
459
460 if (!capable(CAP_SYS_ADMIN))
461 return -EPERM;
462
1cb3dc3f
NA
463 /*
464 * btrfs_trim_block_group() depends on space cache, which is not
465 * available in zoned filesystem. So, disallow fitrim on a zoned
466 * filesystem for now.
467 */
468 if (btrfs_is_zoned(fs_info))
469 return -EOPNOTSUPP;
470
f35f06c3
FM
471 /*
472 * If the fs is mounted with nologreplay, which requires it to be
473 * mounted in RO mode as well, we can not allow discard on free space
474 * inside block groups, because log trees refer to extents that are not
475 * pinned in a block group's free space cache (pinning the extents is
476 * precisely the first phase of replaying a log tree).
477 */
478 if (btrfs_test_opt(fs_info, NOLOGREPLAY))
479 return -EROFS;
480
1f78160c
XG
481 rcu_read_lock();
482 list_for_each_entry_rcu(device, &fs_info->fs_devices->devices,
483 dev_list) {
f7039b1d
LD
484 if (!device->bdev)
485 continue;
486 q = bdev_get_queue(device->bdev);
487 if (blk_queue_discard(q)) {
488 num_devices++;
50d0446e 489 minlen = min_t(u64, q->limits.discard_granularity,
f7039b1d
LD
490 minlen);
491 }
492 }
1f78160c 493 rcu_read_unlock();
f4c697e6 494
f7039b1d
LD
495 if (!num_devices)
496 return -EOPNOTSUPP;
f7039b1d
LD
497 if (copy_from_user(&range, arg, sizeof(range)))
498 return -EFAULT;
6ba9fc8e
QW
499
500 /*
501 * NOTE: Don't truncate the range using super->total_bytes. Bytenr of
502 * block group is in the logical address space, which can be any
503 * sectorsize aligned bytenr in the range [0, U64_MAX].
504 */
505 if (range.len < fs_info->sb->s_blocksize)
f4c697e6 506 return -EINVAL;
f7039b1d
LD
507
508 range.minlen = max(range.minlen, minlen);
2ff7e61e 509 ret = btrfs_trim_fs(fs_info, &range);
f7039b1d
LD
510 if (ret < 0)
511 return ret;
512
513 if (copy_to_user(arg, &range, sizeof(range)))
514 return -EFAULT;
515
516 return 0;
517}
518
e1f60a65 519int __pure btrfs_is_empty_uuid(u8 *uuid)
dd5f9615 520{
46e0f66a
CM
521 int i;
522
523 for (i = 0; i < BTRFS_UUID_SIZE; i++) {
524 if (uuid[i])
525 return 0;
526 }
527 return 1;
dd5f9615
SB
528}
529
4d4340c9
CB
530static noinline int create_subvol(struct user_namespace *mnt_userns,
531 struct inode *dir, struct dentry *dentry,
52f75f4f 532 const char *name, int namelen,
8696c533 533 struct btrfs_qgroup_inherit *inherit)
f46b5a66 534{
0b246afa 535 struct btrfs_fs_info *fs_info = btrfs_sb(dir->i_sb);
f46b5a66
CH
536 struct btrfs_trans_handle *trans;
537 struct btrfs_key key;
49a3c4d9 538 struct btrfs_root_item *root_item;
f46b5a66
CH
539 struct btrfs_inode_item *inode_item;
540 struct extent_buffer *leaf;
d5c12070 541 struct btrfs_root *root = BTRFS_I(dir)->root;
76dda93c 542 struct btrfs_root *new_root;
d5c12070 543 struct btrfs_block_rsv block_rsv;
95582b00 544 struct timespec64 cur_time = current_time(dir);
5662344b 545 struct inode *inode;
f46b5a66 546 int ret;
2dfb1e43 547 dev_t anon_dev = 0;
f46b5a66 548 u64 objectid;
3de4586c 549 u64 index = 0;
f46b5a66 550
49a3c4d9
DS
551 root_item = kzalloc(sizeof(*root_item), GFP_KERNEL);
552 if (!root_item)
553 return -ENOMEM;
554
543068a2 555 ret = btrfs_get_free_objectid(fs_info->tree_root, &objectid);
2fbe8c8a 556 if (ret)
49a3c4d9 557 goto fail_free;
6a912213 558
2dfb1e43
QW
559 ret = get_anon_bdev(&anon_dev);
560 if (ret < 0)
561 goto fail_free;
562
e09fe2d2
QW
563 /*
564 * Don't create subvolume whose level is not zero. Or qgroup will be
01327610 565 * screwed up since it assumes subvolume qgroup's level to be 0.
e09fe2d2 566 */
49a3c4d9
DS
567 if (btrfs_qgroup_level(objectid)) {
568 ret = -ENOSPC;
569 goto fail_free;
570 }
e09fe2d2 571
d5c12070 572 btrfs_init_block_rsv(&block_rsv, BTRFS_BLOCK_RSV_TEMP);
9ed74f2d 573 /*
d5c12070
MX
574 * The same as the snapshot creation, please see the comment
575 * of create_snapshot().
9ed74f2d 576 */
c4c129db 577 ret = btrfs_subvolume_reserve_metadata(root, &block_rsv, 8, false);
d5c12070 578 if (ret)
49a3c4d9 579 goto fail_free;
d5c12070
MX
580
581 trans = btrfs_start_transaction(root, 0);
582 if (IS_ERR(trans)) {
583 ret = PTR_ERR(trans);
e85fde51 584 btrfs_subvolume_release_metadata(root, &block_rsv);
49a3c4d9 585 goto fail_free;
d5c12070
MX
586 }
587 trans->block_rsv = &block_rsv;
588 trans->bytes_reserved = block_rsv.size;
f46b5a66 589
a9377422 590 ret = btrfs_qgroup_inherit(trans, 0, objectid, inherit);
6f72c7e2
AJ
591 if (ret)
592 goto fail;
593
9631e4cc
JB
594 leaf = btrfs_alloc_tree_block(trans, root, 0, objectid, NULL, 0, 0, 0,
595 BTRFS_NESTING_NORMAL);
8e8a1e31
JB
596 if (IS_ERR(leaf)) {
597 ret = PTR_ERR(leaf);
598 goto fail;
599 }
f46b5a66 600
f46b5a66
CH
601 btrfs_mark_buffer_dirty(leaf);
602
49a3c4d9 603 inode_item = &root_item->inode;
3cae210f
QW
604 btrfs_set_stack_inode_generation(inode_item, 1);
605 btrfs_set_stack_inode_size(inode_item, 3);
606 btrfs_set_stack_inode_nlink(inode_item, 1);
da17066c 607 btrfs_set_stack_inode_nbytes(inode_item,
0b246afa 608 fs_info->nodesize);
3cae210f 609 btrfs_set_stack_inode_mode(inode_item, S_IFDIR | 0755);
f46b5a66 610
49a3c4d9
DS
611 btrfs_set_root_flags(root_item, 0);
612 btrfs_set_root_limit(root_item, 0);
3cae210f 613 btrfs_set_stack_inode_flags(inode_item, BTRFS_INODE_ROOT_ITEM_INIT);
08fe4db1 614
49a3c4d9
DS
615 btrfs_set_root_bytenr(root_item, leaf->start);
616 btrfs_set_root_generation(root_item, trans->transid);
617 btrfs_set_root_level(root_item, 0);
618 btrfs_set_root_refs(root_item, 1);
619 btrfs_set_root_used(root_item, leaf->len);
620 btrfs_set_root_last_snapshot(root_item, 0);
f46b5a66 621
49a3c4d9
DS
622 btrfs_set_root_generation_v2(root_item,
623 btrfs_root_generation(root_item));
807fc790 624 generate_random_guid(root_item->uuid);
49a3c4d9
DS
625 btrfs_set_stack_timespec_sec(&root_item->otime, cur_time.tv_sec);
626 btrfs_set_stack_timespec_nsec(&root_item->otime, cur_time.tv_nsec);
627 root_item->ctime = root_item->otime;
628 btrfs_set_root_ctransid(root_item, trans->transid);
629 btrfs_set_root_otransid(root_item, trans->transid);
f46b5a66 630
925baedd 631 btrfs_tree_unlock(leaf);
f46b5a66 632
69948022 633 btrfs_set_root_dirid(root_item, BTRFS_FIRST_FREE_OBJECTID);
f46b5a66
CH
634
635 key.objectid = objectid;
5d4f98a2 636 key.offset = 0;
962a298f 637 key.type = BTRFS_ROOT_ITEM_KEY;
0b246afa 638 ret = btrfs_insert_root(trans, fs_info->tree_root, &key,
49a3c4d9 639 root_item);
67addf29
FM
640 if (ret) {
641 /*
642 * Since we don't abort the transaction in this case, free the
643 * tree block so that we don't leak space and leave the
644 * filesystem in an inconsistent state (an extent item in the
7a163608 645 * extent tree with a backreference for a root that does not
212a58fd 646 * exists).
67addf29 647 */
212a58fd
FM
648 btrfs_tree_lock(leaf);
649 btrfs_clean_tree_block(leaf);
650 btrfs_tree_unlock(leaf);
7a163608 651 btrfs_free_tree_block(trans, objectid, leaf, 0, 1);
67addf29 652 free_extent_buffer(leaf);
f46b5a66 653 goto fail;
67addf29
FM
654 }
655
656 free_extent_buffer(leaf);
657 leaf = NULL;
f46b5a66 658
76dda93c 659 key.offset = (u64)-1;
2dfb1e43 660 new_root = btrfs_get_new_fs_root(fs_info, objectid, anon_dev);
79787eaa 661 if (IS_ERR(new_root)) {
2dfb1e43 662 free_anon_bdev(anon_dev);
79787eaa 663 ret = PTR_ERR(new_root);
66642832 664 btrfs_abort_transaction(trans, ret);
79787eaa
JM
665 goto fail;
666 }
2dfb1e43
QW
667 /* Freeing will be done in btrfs_put_root() of new_root */
668 anon_dev = 0;
76dda93c 669
221581e4
JB
670 ret = btrfs_record_root_in_trans(trans, new_root);
671 if (ret) {
672 btrfs_put_root(new_root);
673 btrfs_abort_transaction(trans, ret);
674 goto fail;
675 }
76dda93c 676
4d4340c9 677 ret = btrfs_create_subvol_root(trans, new_root, root, mnt_userns);
00246528 678 btrfs_put_root(new_root);
ce598979
MF
679 if (ret) {
680 /* We potentially lose an unused inode item here */
66642832 681 btrfs_abort_transaction(trans, ret);
ce598979
MF
682 goto fail;
683 }
684
f46b5a66
CH
685 /*
686 * insert the directory item
687 */
877574e2 688 ret = btrfs_set_inode_index(BTRFS_I(dir), &index);
79787eaa 689 if (ret) {
66642832 690 btrfs_abort_transaction(trans, ret);
79787eaa
JM
691 goto fail;
692 }
3de4586c 693
684572df 694 ret = btrfs_insert_dir_item(trans, name, namelen, BTRFS_I(dir), &key,
3de4586c 695 BTRFS_FT_DIR, index);
79787eaa 696 if (ret) {
66642832 697 btrfs_abort_transaction(trans, ret);
f46b5a66 698 goto fail;
79787eaa 699 }
0660b5af 700
6ef06d27 701 btrfs_i_size_write(BTRFS_I(dir), dir->i_size + namelen * 2);
9a56fcd1 702 ret = btrfs_update_inode(trans, root, BTRFS_I(dir));
c7e54b51
JB
703 if (ret) {
704 btrfs_abort_transaction(trans, ret);
705 goto fail;
706 }
52c26179 707
6025c19f 708 ret = btrfs_add_root_ref(trans, objectid, root->root_key.objectid,
4a0cc7ca 709 btrfs_ino(BTRFS_I(dir)), index, name, namelen);
c7e54b51
JB
710 if (ret) {
711 btrfs_abort_transaction(trans, ret);
712 goto fail;
713 }
f46b5a66 714
cdb345a8 715 ret = btrfs_uuid_tree_add(trans, root_item->uuid,
6bccf3ab 716 BTRFS_UUID_KEY_SUBVOL, objectid);
dd5f9615 717 if (ret)
66642832 718 btrfs_abort_transaction(trans, ret);
dd5f9615 719
f46b5a66 720fail:
49a3c4d9 721 kfree(root_item);
d5c12070
MX
722 trans->block_rsv = NULL;
723 trans->bytes_reserved = 0;
e85fde51 724 btrfs_subvolume_release_metadata(root, &block_rsv);
de6e8200 725
1b58ae0e
FM
726 if (ret)
727 btrfs_end_transaction(trans);
728 else
729 ret = btrfs_commit_transaction(trans);
1a65e24b 730
5662344b
TI
731 if (!ret) {
732 inode = btrfs_lookup_dentry(dir, dentry);
de6e8200
LB
733 if (IS_ERR(inode))
734 return PTR_ERR(inode);
5662344b
TI
735 d_instantiate(dentry, inode);
736 }
f46b5a66 737 return ret;
49a3c4d9
DS
738
739fail_free:
2dfb1e43
QW
740 if (anon_dev)
741 free_anon_bdev(anon_dev);
49a3c4d9
DS
742 kfree(root_item);
743 return ret;
f46b5a66
CH
744}
745
e9662f70 746static int create_snapshot(struct btrfs_root *root, struct inode *dir,
9babda9f 747 struct dentry *dentry, bool readonly,
e9662f70 748 struct btrfs_qgroup_inherit *inherit)
f46b5a66 749{
0b246afa 750 struct btrfs_fs_info *fs_info = btrfs_sb(dir->i_sb);
2e4bfab9 751 struct inode *inode;
f46b5a66
CH
752 struct btrfs_pending_snapshot *pending_snapshot;
753 struct btrfs_trans_handle *trans;
2e4bfab9 754 int ret;
f46b5a66 755
92a7cc42 756 if (!test_bit(BTRFS_ROOT_SHAREABLE, &root->state))
f46b5a66
CH
757 return -EINVAL;
758
eede2bf3
OS
759 if (atomic_read(&root->nr_swapfiles)) {
760 btrfs_warn(fs_info,
761 "cannot snapshot subvolume with active swapfile");
762 return -ETXTBSY;
763 }
764
23269bf5 765 pending_snapshot = kzalloc(sizeof(*pending_snapshot), GFP_KERNEL);
a1ee7362
DS
766 if (!pending_snapshot)
767 return -ENOMEM;
768
2dfb1e43
QW
769 ret = get_anon_bdev(&pending_snapshot->anon_dev);
770 if (ret < 0)
771 goto free_pending;
b0c0ea63 772 pending_snapshot->root_item = kzalloc(sizeof(struct btrfs_root_item),
23269bf5 773 GFP_KERNEL);
8546b570
DS
774 pending_snapshot->path = btrfs_alloc_path();
775 if (!pending_snapshot->root_item || !pending_snapshot->path) {
b0c0ea63
DS
776 ret = -ENOMEM;
777 goto free_pending;
778 }
779
66d8f3dd
MX
780 btrfs_init_block_rsv(&pending_snapshot->block_rsv,
781 BTRFS_BLOCK_RSV_TEMP);
d5c12070
MX
782 /*
783 * 1 - parent dir inode
784 * 2 - dir entries
785 * 1 - root item
786 * 2 - root ref/backref
787 * 1 - root of snapshot
dd5f9615 788 * 1 - UUID item
d5c12070
MX
789 */
790 ret = btrfs_subvolume_reserve_metadata(BTRFS_I(dir)->root,
dd5f9615 791 &pending_snapshot->block_rsv, 8,
ee3441b4 792 false);
d5c12070 793 if (ret)
c11fbb6e 794 goto free_pending;
d5c12070 795
3de4586c 796 pending_snapshot->dentry = dentry;
f46b5a66 797 pending_snapshot->root = root;
b83cc969 798 pending_snapshot->readonly = readonly;
e9662f70 799 pending_snapshot->dir = dir;
8696c533 800 pending_snapshot->inherit = inherit;
a22285a6 801
d5c12070 802 trans = btrfs_start_transaction(root, 0);
a22285a6
YZ
803 if (IS_ERR(trans)) {
804 ret = PTR_ERR(trans);
805 goto fail;
806 }
807
28b21c55 808 trans->pending_snapshot = pending_snapshot;
9babda9f
NB
809
810 ret = btrfs_commit_transaction(trans);
aec8030a 811 if (ret)
c37b2b62 812 goto fail;
a22285a6
YZ
813
814 ret = pending_snapshot->error;
815 if (ret)
816 goto fail;
817
d3797308
CM
818 ret = btrfs_orphan_cleanup(pending_snapshot->snap);
819 if (ret)
820 goto fail;
821
2b0143b5 822 inode = btrfs_lookup_dentry(d_inode(dentry->d_parent), dentry);
2e4bfab9
YZ
823 if (IS_ERR(inode)) {
824 ret = PTR_ERR(inode);
825 goto fail;
826 }
5662344b 827
2e4bfab9
YZ
828 d_instantiate(dentry, inode);
829 ret = 0;
2dfb1e43 830 pending_snapshot->anon_dev = 0;
2e4bfab9 831fail:
2dfb1e43
QW
832 /* Prevent double freeing of anon_dev */
833 if (ret && pending_snapshot->snap)
834 pending_snapshot->snap->anon_dev = 0;
00246528 835 btrfs_put_root(pending_snapshot->snap);
e85fde51 836 btrfs_subvolume_release_metadata(root, &pending_snapshot->block_rsv);
b0c0ea63 837free_pending:
2dfb1e43
QW
838 if (pending_snapshot->anon_dev)
839 free_anon_bdev(pending_snapshot->anon_dev);
b0c0ea63 840 kfree(pending_snapshot->root_item);
8546b570 841 btrfs_free_path(pending_snapshot->path);
a1ee7362
DS
842 kfree(pending_snapshot);
843
f46b5a66
CH
844 return ret;
845}
846
4260f7c7
SW
847/* copy of may_delete in fs/namei.c()
848 * Check whether we can remove a link victim from directory dir, check
849 * whether the type of victim is right.
850 * 1. We can't do it if dir is read-only (done in permission())
851 * 2. We should have write and exec permissions on dir
852 * 3. We can't remove anything from append-only dir
853 * 4. We can't do anything with immutable dir (done in permission())
854 * 5. If the sticky bit on dir is set we should either
855 * a. be owner of dir, or
856 * b. be owner of victim, or
857 * c. have CAP_FOWNER capability
01327610 858 * 6. If the victim is append-only or immutable we can't do anything with
4260f7c7
SW
859 * links pointing to it.
860 * 7. If we were asked to remove a directory and victim isn't one - ENOTDIR.
861 * 8. If we were asked to remove a non-directory and victim isn't one - EISDIR.
862 * 9. We can't remove a root or mountpoint.
863 * 10. We don't allow removal of NFS sillyrenamed files; it's handled by
864 * nfs_async_unlink().
865 */
866
c4ed533b
CB
867static int btrfs_may_delete(struct user_namespace *mnt_userns,
868 struct inode *dir, struct dentry *victim, int isdir)
4260f7c7
SW
869{
870 int error;
871
2b0143b5 872 if (d_really_is_negative(victim))
4260f7c7
SW
873 return -ENOENT;
874
2b0143b5 875 BUG_ON(d_inode(victim->d_parent) != dir);
4fa6b5ec 876 audit_inode_child(dir, victim, AUDIT_TYPE_CHILD_DELETE);
4260f7c7 877
c4ed533b 878 error = inode_permission(mnt_userns, dir, MAY_WRITE | MAY_EXEC);
4260f7c7
SW
879 if (error)
880 return error;
881 if (IS_APPEND(dir))
882 return -EPERM;
c4ed533b 883 if (check_sticky(mnt_userns, dir, d_inode(victim)) ||
ba73d987
CB
884 IS_APPEND(d_inode(victim)) || IS_IMMUTABLE(d_inode(victim)) ||
885 IS_SWAPFILE(d_inode(victim)))
4260f7c7
SW
886 return -EPERM;
887 if (isdir) {
e36cb0b8 888 if (!d_is_dir(victim))
4260f7c7
SW
889 return -ENOTDIR;
890 if (IS_ROOT(victim))
891 return -EBUSY;
e36cb0b8 892 } else if (d_is_dir(victim))
4260f7c7
SW
893 return -EISDIR;
894 if (IS_DEADDIR(dir))
895 return -ENOENT;
896 if (victim->d_flags & DCACHE_NFSFS_RENAMED)
897 return -EBUSY;
898 return 0;
899}
900
cb8e7090 901/* copy of may_create in fs/namei.c() */
4d4340c9
CB
902static inline int btrfs_may_create(struct user_namespace *mnt_userns,
903 struct inode *dir, struct dentry *child)
cb8e7090 904{
2b0143b5 905 if (d_really_is_positive(child))
cb8e7090
CH
906 return -EEXIST;
907 if (IS_DEADDIR(dir))
908 return -ENOENT;
4d4340c9 909 if (!fsuidgid_has_mapping(dir->i_sb, mnt_userns))
5474bf40 910 return -EOVERFLOW;
4d4340c9 911 return inode_permission(mnt_userns, dir, MAY_WRITE | MAY_EXEC);
cb8e7090
CH
912}
913
914/*
915 * Create a new subvolume below @parent. This is largely modeled after
916 * sys_mkdirat and vfs_mkdir, but we only do a single component lookup
917 * inside this filesystem so it's quite a bit simpler.
918 */
92872094 919static noinline int btrfs_mksubvol(const struct path *parent,
4d4340c9 920 struct user_namespace *mnt_userns,
52f75f4f 921 const char *name, int namelen,
72fd032e 922 struct btrfs_root *snap_src,
9babda9f 923 bool readonly,
8696c533 924 struct btrfs_qgroup_inherit *inherit)
cb8e7090 925{
0b246afa
JM
926 struct inode *dir = d_inode(parent->dentry);
927 struct btrfs_fs_info *fs_info = btrfs_sb(dir->i_sb);
cb8e7090
CH
928 struct dentry *dentry;
929 int error;
930
00235411
AV
931 error = down_write_killable_nested(&dir->i_rwsem, I_MUTEX_PARENT);
932 if (error == -EINTR)
933 return error;
cb8e7090 934
4d4340c9 935 dentry = lookup_one(mnt_userns, name, parent->dentry, namelen);
cb8e7090
CH
936 error = PTR_ERR(dentry);
937 if (IS_ERR(dentry))
938 goto out_unlock;
939
4d4340c9 940 error = btrfs_may_create(mnt_userns, dir, dentry);
cb8e7090 941 if (error)
a874a63e 942 goto out_dput;
cb8e7090 943
9c52057c
CM
944 /*
945 * even if this name doesn't exist, we may get hash collisions.
946 * check for them now when we can safely fail
947 */
948 error = btrfs_check_dir_item_collision(BTRFS_I(dir)->root,
949 dir->i_ino, name,
950 namelen);
951 if (error)
952 goto out_dput;
953
0b246afa 954 down_read(&fs_info->subvol_sem);
76dda93c
YZ
955
956 if (btrfs_root_refs(&BTRFS_I(dir)->root->root_item) == 0)
957 goto out_up_read;
958
9babda9f
NB
959 if (snap_src)
960 error = create_snapshot(snap_src, dir, dentry, readonly, inherit);
961 else
4d4340c9 962 error = create_subvol(mnt_userns, dir, dentry, name, namelen, inherit);
9babda9f 963
76dda93c
YZ
964 if (!error)
965 fsnotify_mkdir(dir, dentry);
966out_up_read:
0b246afa 967 up_read(&fs_info->subvol_sem);
cb8e7090
CH
968out_dput:
969 dput(dentry);
970out_unlock:
64708539 971 btrfs_inode_unlock(dir, 0);
cb8e7090
CH
972 return error;
973}
974
c11fbb6e 975static noinline int btrfs_mksnapshot(const struct path *parent,
4d4340c9 976 struct user_namespace *mnt_userns,
c11fbb6e
RK
977 const char *name, int namelen,
978 struct btrfs_root *root,
979 bool readonly,
980 struct btrfs_qgroup_inherit *inherit)
981{
982 int ret;
983 bool snapshot_force_cow = false;
984
985 /*
986 * Force new buffered writes to reserve space even when NOCOW is
987 * possible. This is to avoid later writeback (running dealloc) to
988 * fallback to COW mode and unexpectedly fail with ENOSPC.
989 */
990 btrfs_drew_read_lock(&root->snapshot_lock);
991
f9baa501 992 ret = btrfs_start_delalloc_snapshot(root, false);
c11fbb6e
RK
993 if (ret)
994 goto out;
995
996 /*
997 * All previous writes have started writeback in NOCOW mode, so now
998 * we force future writes to fallback to COW mode during snapshot
999 * creation.
1000 */
1001 atomic_inc(&root->snapshot_force_cow);
1002 snapshot_force_cow = true;
1003
1004 btrfs_wait_ordered_extents(root, U64_MAX, 0, (u64)-1);
1005
4d4340c9 1006 ret = btrfs_mksubvol(parent, mnt_userns, name, namelen,
c11fbb6e
RK
1007 root, readonly, inherit);
1008out:
1009 if (snapshot_force_cow)
1010 atomic_dec(&root->snapshot_force_cow);
1011 btrfs_drew_read_unlock(&root->snapshot_lock);
1012 return ret;
1013}
1014
e9eec721
QW
1015static struct extent_map *defrag_lookup_extent(struct inode *inode, u64 start,
1016 bool locked)
17ce6ef8
LB
1017{
1018 struct extent_map_tree *em_tree = &BTRFS_I(inode)->extent_tree;
6c282eb4
LZ
1019 struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree;
1020 struct extent_map *em;
76068cae 1021 const u32 sectorsize = BTRFS_I(inode)->root->fs_info->sectorsize;
17ce6ef8 1022
6c282eb4
LZ
1023 /*
1024 * hopefully we have this extent in the tree already, try without
1025 * the full extent lock
1026 */
17ce6ef8 1027 read_lock(&em_tree->lock);
76068cae 1028 em = lookup_extent_mapping(em_tree, start, sectorsize);
17ce6ef8
LB
1029 read_unlock(&em_tree->lock);
1030
6c282eb4 1031 if (!em) {
308d9800 1032 struct extent_state *cached = NULL;
76068cae 1033 u64 end = start + sectorsize - 1;
308d9800 1034
6c282eb4 1035 /* get the big lock and read metadata off disk */
e9eec721
QW
1036 if (!locked)
1037 lock_extent_bits(io_tree, start, end, &cached);
76068cae 1038 em = btrfs_get_extent(BTRFS_I(inode), NULL, 0, start, sectorsize);
e9eec721
QW
1039 if (!locked)
1040 unlock_extent_cached(io_tree, start, end, &cached);
6c282eb4
LZ
1041
1042 if (IS_ERR(em))
1043 return NULL;
1044 }
1045
1046 return em;
1047}
17ce6ef8 1048
e9eec721
QW
1049static bool defrag_check_next_extent(struct inode *inode, struct extent_map *em,
1050 bool locked)
6c282eb4
LZ
1051{
1052 struct extent_map *next;
1053 bool ret = true;
1054
1055 /* this is the last extent */
1056 if (em->start + em->len >= i_size_read(inode))
1057 return false;
1058
e9eec721 1059 next = defrag_lookup_extent(inode, em->start + em->len, locked);
e9512d72
CM
1060 if (!next || next->block_start >= EXTENT_MAP_LAST_BYTE)
1061 ret = false;
1062 else if ((em->block_start + em->block_len == next->block_start) &&
ee22184b 1063 (em->block_len > SZ_128K && next->block_len > SZ_128K))
6c282eb4
LZ
1064 ret = false;
1065
1066 free_extent_map(next);
17ce6ef8
LB
1067 return ret;
1068}
1069
5767b50c
QW
1070/*
1071 * Prepare one page to be defragged.
1072 *
1073 * This will ensure:
1074 *
1075 * - Returned page is locked and has been set up properly.
1076 * - No ordered extent exists in the page.
1077 * - The page is uptodate.
1078 *
1079 * NOTE: Caller should also wait for page writeback after the cluster is
1080 * prepared, here we don't do writeback wait for each page.
1081 */
1082static struct page *defrag_prepare_one_page(struct btrfs_inode *inode,
1083 pgoff_t index)
940100a4 1084{
5767b50c
QW
1085 struct address_space *mapping = inode->vfs_inode.i_mapping;
1086 gfp_t mask = btrfs_alloc_write_mask(mapping);
1087 u64 page_start = (u64)index << PAGE_SHIFT;
1088 u64 page_end = page_start + PAGE_SIZE - 1;
1089 struct extent_state *cached_state = NULL;
1090 struct page *page;
1091 int ret;
1092
1093again:
1094 page = find_or_create_page(mapping, index, mask);
1095 if (!page)
1096 return ERR_PTR(-ENOMEM);
940100a4
CM
1097
1098 /*
24bcb454
OS
1099 * Since we can defragment files opened read-only, we can encounter
1100 * transparent huge pages here (see CONFIG_READ_ONLY_THP_FOR_FS). We
1101 * can't do I/O using huge pages yet, so return an error for now.
1102 * Filesystem transparent huge pages are typically only used for
1103 * executables that explicitly enable them, so this isn't very
1104 * restrictive.
940100a4 1105 */
24bcb454
OS
1106 if (PageCompound(page)) {
1107 unlock_page(page);
1108 put_page(page);
1109 return ERR_PTR(-ETXTBSY);
1110 }
940100a4 1111
5767b50c
QW
1112 ret = set_page_extent_mapped(page);
1113 if (ret < 0) {
1114 unlock_page(page);
1115 put_page(page);
1116 return ERR_PTR(ret);
1117 }
940100a4 1118
5767b50c
QW
1119 /* Wait for any existing ordered extent in the range */
1120 while (1) {
1121 struct btrfs_ordered_extent *ordered;
940100a4 1122
5767b50c
QW
1123 lock_extent_bits(&inode->io_tree, page_start, page_end, &cached_state);
1124 ordered = btrfs_lookup_ordered_range(inode, page_start, PAGE_SIZE);
1125 unlock_extent_cached(&inode->io_tree, page_start, page_end,
1126 &cached_state);
1127 if (!ordered)
1128 break;
17ce6ef8 1129
5767b50c
QW
1130 unlock_page(page);
1131 btrfs_start_ordered_extent(ordered, 1);
1132 btrfs_put_ordered_extent(ordered);
1133 lock_page(page);
1134 /*
1135 * We unlocked the page above, so we need check if it was
1136 * released or not.
1137 */
1138 if (page->mapping != mapping || !PagePrivate(page)) {
1139 unlock_page(page);
1140 put_page(page);
1141 goto again;
1142 }
1143 }
4a3560c4 1144
940100a4 1145 /*
5767b50c
QW
1146 * Now the page range has no ordered extent any more. Read the page to
1147 * make it uptodate.
940100a4 1148 */
5767b50c
QW
1149 if (!PageUptodate(page)) {
1150 btrfs_readpage(NULL, page);
1151 lock_page(page);
1152 if (page->mapping != mapping || !PagePrivate(page)) {
1153 unlock_page(page);
1154 put_page(page);
1155 goto again;
1156 }
1157 if (!PageUptodate(page)) {
1158 unlock_page(page);
1159 put_page(page);
1160 return ERR_PTR(-EIO);
1161 }
940100a4 1162 }
5767b50c 1163 return page;
940100a4
CM
1164}
1165
eb793cf8
QW
1166struct defrag_target_range {
1167 struct list_head list;
1168 u64 start;
1169 u64 len;
1170};
1171
4cb5300b 1172/*
eb793cf8 1173 * Collect all valid target extents.
4cb5300b 1174 *
eb793cf8
QW
1175 * @start: file offset to lookup
1176 * @len: length to lookup
1177 * @extent_thresh: file extent size threshold, any extent size >= this value
1178 * will be ignored
1179 * @newer_than: only defrag extents newer than this value
1180 * @do_compress: whether the defrag is doing compression
1181 * if true, @extent_thresh will be ignored and all regular
1182 * file extents meeting @newer_than will be targets.
e9eec721 1183 * @locked: if the range has already held extent lock
eb793cf8 1184 * @target_list: list of targets file extents
4cb5300b 1185 */
eb793cf8
QW
1186static int defrag_collect_targets(struct btrfs_inode *inode,
1187 u64 start, u64 len, u32 extent_thresh,
1188 u64 newer_than, bool do_compress,
e9eec721 1189 bool locked, struct list_head *target_list)
f46b5a66 1190{
eb793cf8
QW
1191 u64 cur = start;
1192 int ret = 0;
4cb5300b 1193
eb793cf8
QW
1194 while (cur < start + len) {
1195 struct extent_map *em;
1196 struct defrag_target_range *new;
1197 bool next_mergeable = true;
1198 u64 range_len;
1f12bd06 1199
e9eec721 1200 em = defrag_lookup_extent(&inode->vfs_inode, cur, locked);
eb793cf8
QW
1201 if (!em)
1202 break;
4cb5300b 1203
eb793cf8
QW
1204 /* Skip hole/inline/preallocated extents */
1205 if (em->block_start >= EXTENT_MAP_LAST_BYTE ||
1206 test_bit(EXTENT_FLAG_PREALLOC, &em->flags))
1207 goto next;
4cb5300b 1208
eb793cf8
QW
1209 /* Skip older extent */
1210 if (em->generation < newer_than)
1211 goto next;
4cb5300b 1212
0d1ffa22
QW
1213 /* This em is under writeback, no need to defrag */
1214 if (em->generation == (u64)-1)
1215 goto next;
1216
0cb5950f
FM
1217 /*
1218 * Our start offset might be in the middle of an existing extent
1219 * map, so take that into account.
1220 */
1221 range_len = em->len - (cur - em->start);
1222 /*
1223 * If this range of the extent map is already flagged for delalloc,
1224 * skip it, because:
1225 *
1226 * 1) We could deadlock later, when trying to reserve space for
1227 * delalloc, because in case we can't immediately reserve space
1228 * the flusher can start delalloc and wait for the respective
1229 * ordered extents to complete. The deadlock would happen
1230 * because we do the space reservation while holding the range
1231 * locked, and starting writeback, or finishing an ordered
1232 * extent, requires locking the range;
1233 *
1234 * 2) If there's delalloc there, it means there's dirty pages for
1235 * which writeback has not started yet (we clean the delalloc
1236 * flag when starting writeback and after creating an ordered
1237 * extent). If we mark pages in an adjacent range for defrag,
1238 * then we will have a larger contiguous range for delalloc,
1239 * very likely resulting in a larger extent after writeback is
1240 * triggered (except in a case of free space fragmentation).
1241 */
1242 if (test_range_bit(&inode->io_tree, cur, cur + range_len - 1,
1243 EXTENT_DELALLOC, 0, NULL))
1244 goto next;
1245
eb793cf8
QW
1246 /*
1247 * For do_compress case, we want to compress all valid file
1248 * extents, thus no @extent_thresh or mergeable check.
1249 */
1250 if (do_compress)
1251 goto add;
1252
1253 /* Skip too large extent */
0cb5950f 1254 if (range_len >= extent_thresh)
eb793cf8
QW
1255 goto next;
1256
e9eec721
QW
1257 next_mergeable = defrag_check_next_extent(&inode->vfs_inode, em,
1258 locked);
eb793cf8
QW
1259 if (!next_mergeable) {
1260 struct defrag_target_range *last;
1261
1262 /* Empty target list, no way to merge with last entry */
1263 if (list_empty(target_list))
1264 goto next;
1265 last = list_entry(target_list->prev,
1266 struct defrag_target_range, list);
1267 /* Not mergeable with last entry */
1268 if (last->start + last->len != cur)
1269 goto next;
1270
1271 /* Mergeable, fall through to add it to @target_list. */
32443de3
QW
1272 }
1273
eb793cf8
QW
1274add:
1275 range_len = min(extent_map_end(em), start + len) - cur;
1276 /*
1277 * This one is a good target, check if it can be merged into
1278 * last range of the target list.
1279 */
1280 if (!list_empty(target_list)) {
1281 struct defrag_target_range *last;
1282
1283 last = list_entry(target_list->prev,
1284 struct defrag_target_range, list);
1285 ASSERT(last->start + last->len <= cur);
1286 if (last->start + last->len == cur) {
1287 /* Mergeable, enlarge the last entry */
1288 last->len += range_len;
1289 goto next;
1f12bd06 1290 }
eb793cf8 1291 /* Fall through to allocate a new entry */
600a45e1
MX
1292 }
1293
eb793cf8
QW
1294 /* Allocate new defrag_target_range */
1295 new = kmalloc(sizeof(*new), GFP_NOFS);
1296 if (!new) {
1297 free_extent_map(em);
1298 ret = -ENOMEM;
1299 break;
4cb5300b 1300 }
eb793cf8
QW
1301 new->start = cur;
1302 new->len = range_len;
1303 list_add_tail(&new->list, target_list);
600a45e1 1304
eb793cf8
QW
1305next:
1306 cur = extent_map_end(em);
1307 free_extent_map(em);
1308 }
1309 if (ret < 0) {
1310 struct defrag_target_range *entry;
1311 struct defrag_target_range *tmp;
1312
1313 list_for_each_entry_safe(entry, tmp, target_list, list) {
1314 list_del_init(&entry->list);
1315 kfree(entry);
600a45e1 1316 }
eb793cf8
QW
1317 }
1318 return ret;
1319}
1320
22b398ee
QW
1321#define CLUSTER_SIZE (SZ_256K)
1322
1323/*
1324 * Defrag one contiguous target range.
1325 *
1326 * @inode: target inode
1327 * @target: target range to defrag
1328 * @pages: locked pages covering the defrag range
1329 * @nr_pages: number of locked pages
1330 *
1331 * Caller should ensure:
1332 *
1333 * - Pages are prepared
1334 * Pages should be locked, no ordered extent in the pages range,
1335 * no writeback.
1336 *
1337 * - Extent bits are locked
1338 */
1339static int defrag_one_locked_target(struct btrfs_inode *inode,
1340 struct defrag_target_range *target,
1341 struct page **pages, int nr_pages,
1342 struct extent_state **cached_state)
1343{
1344 struct btrfs_fs_info *fs_info = inode->root->fs_info;
1345 struct extent_changeset *data_reserved = NULL;
1346 const u64 start = target->start;
1347 const u64 len = target->len;
1348 unsigned long last_index = (start + len - 1) >> PAGE_SHIFT;
1349 unsigned long start_index = start >> PAGE_SHIFT;
1350 unsigned long first_index = page_index(pages[0]);
1351 int ret = 0;
1352 int i;
1353
1354 ASSERT(last_index - first_index + 1 <= nr_pages);
1355
1356 ret = btrfs_delalloc_reserve_space(inode, &data_reserved, start, len);
1357 if (ret < 0)
1358 return ret;
1359 clear_extent_bit(&inode->io_tree, start, start + len - 1,
1360 EXTENT_DELALLOC | EXTENT_DO_ACCOUNTING |
1361 EXTENT_DEFRAG, 0, 0, cached_state);
1362 set_extent_defrag(&inode->io_tree, start, start + len - 1, cached_state);
600a45e1 1363
22b398ee
QW
1364 /* Update the page status */
1365 for (i = start_index - first_index; i <= last_index - first_index; i++) {
1366 ClearPageChecked(pages[i]);
1367 btrfs_page_clamp_set_dirty(fs_info, pages[i], start, len);
4cb5300b 1368 }
22b398ee
QW
1369 btrfs_delalloc_release_extents(inode, len);
1370 extent_changeset_free(data_reserved);
4cb5300b 1371
22b398ee
QW
1372 return ret;
1373}
4cb5300b 1374
e9eec721
QW
1375static int defrag_one_range(struct btrfs_inode *inode, u64 start, u32 len,
1376 u32 extent_thresh, u64 newer_than, bool do_compress)
1377{
1378 struct extent_state *cached_state = NULL;
1379 struct defrag_target_range *entry;
1380 struct defrag_target_range *tmp;
1381 LIST_HEAD(target_list);
1382 struct page **pages;
1383 const u32 sectorsize = inode->root->fs_info->sectorsize;
1384 u64 last_index = (start + len - 1) >> PAGE_SHIFT;
1385 u64 start_index = start >> PAGE_SHIFT;
1386 unsigned int nr_pages = last_index - start_index + 1;
1387 int ret = 0;
1388 int i;
4cb5300b 1389
e9eec721
QW
1390 ASSERT(nr_pages <= CLUSTER_SIZE / PAGE_SIZE);
1391 ASSERT(IS_ALIGNED(start, sectorsize) && IS_ALIGNED(len, sectorsize));
4cb5300b 1392
e9eec721
QW
1393 pages = kcalloc(nr_pages, sizeof(struct page *), GFP_NOFS);
1394 if (!pages)
1395 return -ENOMEM;
7f458a38 1396
e9eec721
QW
1397 /* Prepare all pages */
1398 for (i = 0; i < nr_pages; i++) {
1399 pages[i] = defrag_prepare_one_page(inode, start_index + i);
1400 if (IS_ERR(pages[i])) {
1401 ret = PTR_ERR(pages[i]);
1402 pages[i] = NULL;
1403 goto free_pages;
1404 }
1405 }
1406 for (i = 0; i < nr_pages; i++)
1407 wait_on_page_writeback(pages[i]);
1408
1409 /* Lock the pages range */
1410 lock_extent_bits(&inode->io_tree, start_index << PAGE_SHIFT,
1411 (last_index << PAGE_SHIFT) + PAGE_SIZE - 1,
1412 &cached_state);
7f458a38 1413 /*
e9eec721
QW
1414 * Now we have a consistent view about the extent map, re-check
1415 * which range really needs to be defragged.
1416 *
1417 * And this time we have extent locked already, pass @locked = true
1418 * so that we won't relock the extent range and cause deadlock.
7f458a38 1419 */
e9eec721
QW
1420 ret = defrag_collect_targets(inode, start, len, extent_thresh,
1421 newer_than, do_compress, true,
1422 &target_list);
1423 if (ret < 0)
1424 goto unlock_extent;
7f458a38 1425
e9eec721
QW
1426 list_for_each_entry(entry, &target_list, list) {
1427 ret = defrag_one_locked_target(inode, entry, pages, nr_pages,
1428 &cached_state);
1429 if (ret < 0)
1430 break;
1431 }
1432
1433 list_for_each_entry_safe(entry, tmp, &target_list, list) {
1434 list_del_init(&entry->list);
1435 kfree(entry);
1436 }
1437unlock_extent:
1438 unlock_extent_cached(&inode->io_tree, start_index << PAGE_SHIFT,
1439 (last_index << PAGE_SHIFT) + PAGE_SIZE - 1,
1440 &cached_state);
1441free_pages:
1442 for (i = 0; i < nr_pages; i++) {
1443 if (pages[i]) {
1444 unlock_page(pages[i]);
1445 put_page(pages[i]);
7f458a38 1446 }
7f458a38 1447 }
e9eec721
QW
1448 kfree(pages);
1449 return ret;
1450}
7f458a38 1451
b18c3ab2
QW
1452static int defrag_one_cluster(struct btrfs_inode *inode,
1453 struct file_ra_state *ra,
1454 u64 start, u32 len, u32 extent_thresh,
1455 u64 newer_than, bool do_compress,
1456 unsigned long *sectors_defragged,
1457 unsigned long max_sectors)
1458{
1459 const u32 sectorsize = inode->root->fs_info->sectorsize;
1460 struct defrag_target_range *entry;
1461 struct defrag_target_range *tmp;
1462 LIST_HEAD(target_list);
1463 int ret;
4cb5300b 1464
b18c3ab2
QW
1465 BUILD_BUG_ON(!IS_ALIGNED(CLUSTER_SIZE, PAGE_SIZE));
1466 ret = defrag_collect_targets(inode, start, len, extent_thresh,
1467 newer_than, do_compress, false,
1468 &target_list);
1469 if (ret < 0)
1470 goto out;
4cb5300b 1471
b18c3ab2
QW
1472 list_for_each_entry(entry, &target_list, list) {
1473 u32 range_len = entry->len;
4cb5300b 1474
484167da 1475 /* Reached or beyond the limit */
c080b414
QW
1476 if (max_sectors && *sectors_defragged >= max_sectors) {
1477 ret = 1;
b18c3ab2 1478 break;
c080b414 1479 }
4cb5300b 1480
b18c3ab2
QW
1481 if (max_sectors)
1482 range_len = min_t(u32, range_len,
1483 (max_sectors - *sectors_defragged) * sectorsize);
4cb5300b 1484
b18c3ab2
QW
1485 if (ra)
1486 page_cache_sync_readahead(inode->vfs_inode.i_mapping,
1487 ra, NULL, entry->start >> PAGE_SHIFT,
1488 ((entry->start + range_len - 1) >> PAGE_SHIFT) -
1489 (entry->start >> PAGE_SHIFT) + 1);
1490 /*
1491 * Here we may not defrag any range if holes are punched before
1492 * we locked the pages.
1493 * But that's fine, it only affects the @sectors_defragged
1494 * accounting.
1495 */
1496 ret = defrag_one_range(inode, entry->start, range_len,
1497 extent_thresh, newer_than, do_compress);
1498 if (ret < 0)
1499 break;
484167da
QW
1500 *sectors_defragged += range_len >>
1501 inode->root->fs_info->sectorsize_bits;
4cb5300b 1502 }
4cb5300b 1503out:
b18c3ab2
QW
1504 list_for_each_entry_safe(entry, tmp, &target_list, list) {
1505 list_del_init(&entry->list);
1506 kfree(entry);
4cb5300b 1507 }
4cb5300b 1508 return ret;
4cb5300b
CM
1509}
1510
1ccc2e8a
QW
1511/*
1512 * Entry point to file defragmentation.
1513 *
1514 * @inode: inode to be defragged
1515 * @ra: readahead state (can be NUL)
1516 * @range: defrag options including range and flags
1517 * @newer_than: minimum transid to defrag
1518 * @max_to_defrag: max number of sectors to be defragged, if 0, the whole inode
1519 * will be defragged.
484167da
QW
1520 *
1521 * Return <0 for error.
c080b414
QW
1522 * Return >=0 for the number of sectors defragged, and range->start will be updated
1523 * to indicate the file offset where next defrag should be started at.
1524 * (Mostly for autodefrag, which sets @max_to_defrag thus we may exit early without
1525 * defragging all the range).
1ccc2e8a
QW
1526 */
1527int btrfs_defrag_file(struct inode *inode, struct file_ra_state *ra,
4cb5300b
CM
1528 struct btrfs_ioctl_defrag_range_args *range,
1529 u64 newer_than, unsigned long max_to_defrag)
1530{
0b246afa 1531 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
7b508037 1532 unsigned long sectors_defragged = 0;
151a31b2 1533 u64 isize = i_size_read(inode);
7b508037
QW
1534 u64 cur;
1535 u64 last_byte;
1e2ef46d 1536 bool do_compress = range->flags & BTRFS_DEFRAG_RANGE_COMPRESS;
1ccc2e8a 1537 bool ra_allocated = false;
1a419d85 1538 int compress_type = BTRFS_COMPRESS_ZLIB;
7b508037 1539 int ret = 0;
aab110ab 1540 u32 extent_thresh = range->extent_thresh;
27cdfde1 1541 pgoff_t start_index;
4cb5300b 1542
0abd5b17
LB
1543 if (isize == 0)
1544 return 0;
1545
1546 if (range->start >= isize)
1547 return -EINVAL;
1a419d85 1548
1e2ef46d 1549 if (do_compress) {
ce96b7ff 1550 if (range->compress_type >= BTRFS_NR_COMPRESS_TYPES)
1a419d85
LZ
1551 return -EINVAL;
1552 if (range->compress_type)
1553 compress_type = range->compress_type;
1554 }
f46b5a66 1555
0abd5b17 1556 if (extent_thresh == 0)
ee22184b 1557 extent_thresh = SZ_256K;
940100a4 1558
7b508037
QW
1559 if (range->start + range->len > range->start) {
1560 /* Got a specific range */
6b34cd8e 1561 last_byte = min(isize, range->start + range->len);
7b508037
QW
1562 } else {
1563 /* Defrag until file end */
6b34cd8e 1564 last_byte = isize;
7b508037
QW
1565 }
1566
6b34cd8e
FM
1567 /* Align the range */
1568 cur = round_down(range->start, fs_info->sectorsize);
1569 last_byte = round_up(last_byte, fs_info->sectorsize) - 1;
1570
4cb5300b 1571 /*
1ccc2e8a 1572 * If we were not given a ra, allocate a readahead context. As
0a52d108
DS
1573 * readahead is just an optimization, defrag will work without it so
1574 * we don't error out.
4cb5300b 1575 */
1ccc2e8a
QW
1576 if (!ra) {
1577 ra_allocated = true;
63e727ec 1578 ra = kzalloc(sizeof(*ra), GFP_KERNEL);
0a52d108
DS
1579 if (ra)
1580 file_ra_state_init(ra, inode->i_mapping);
4cb5300b 1581 }
4cb5300b 1582
27cdfde1
FM
1583 /*
1584 * Make writeback start from the beginning of the range, so that the
1585 * defrag range can be written sequentially.
1586 */
1587 start_index = cur >> PAGE_SHIFT;
1588 if (start_index < inode->i_mapping->writeback_index)
1589 inode->i_mapping->writeback_index = start_index;
1590
7b508037 1591 while (cur < last_byte) {
3c9d31c7 1592 const unsigned long prev_sectors_defragged = sectors_defragged;
7b508037 1593 u64 cluster_end;
008873ea 1594
7b508037
QW
1595 /* The cluster size 256K should always be page aligned */
1596 BUILD_BUG_ON(!IS_ALIGNED(CLUSTER_SIZE, PAGE_SIZE));
008873ea 1597
b767c2fc
FM
1598 if (btrfs_defrag_cancelled(fs_info)) {
1599 ret = -EAGAIN;
1600 break;
1601 }
1602
7b508037
QW
1603 /* We want the cluster end at page boundary when possible */
1604 cluster_end = (((cur >> PAGE_SHIFT) +
1605 (SZ_256K >> PAGE_SHIFT)) << PAGE_SHIFT) - 1;
1606 cluster_end = min(cluster_end, last_byte);
940100a4 1607
64708539 1608 btrfs_inode_lock(inode, 0);
eede2bf3
OS
1609 if (IS_SWAPFILE(inode)) {
1610 ret = -ETXTBSY;
7b508037
QW
1611 btrfs_inode_unlock(inode, 0);
1612 break;
eede2bf3 1613 }
7b508037 1614 if (!(inode->i_sb->s_flags & SB_ACTIVE)) {
64708539 1615 btrfs_inode_unlock(inode, 0);
7b508037 1616 break;
ecb8bea8 1617 }
7b508037
QW
1618 if (do_compress)
1619 BTRFS_I(inode)->defrag_compress = compress_type;
1620 ret = defrag_one_cluster(BTRFS_I(inode), ra, cur,
1621 cluster_end + 1 - cur, extent_thresh,
1622 newer_than, do_compress,
1623 &sectors_defragged, max_to_defrag);
3c9d31c7
FM
1624
1625 if (sectors_defragged > prev_sectors_defragged)
1626 balance_dirty_pages_ratelimited(inode->i_mapping);
1627
64708539 1628 btrfs_inode_unlock(inode, 0);
7b508037
QW
1629 if (ret < 0)
1630 break;
1631 cur = cluster_end + 1;
c080b414
QW
1632 if (ret > 0) {
1633 ret = 0;
1634 break;
1635 }
ea0eba69 1636 cond_resched();
f46b5a66
CH
1637 }
1638
7b508037
QW
1639 if (ra_allocated)
1640 kfree(ra);
c080b414
QW
1641 /*
1642 * Update range.start for autodefrag, this will indicate where to start
1643 * in next run.
1644 */
1645 range->start = cur;
7b508037
QW
1646 if (sectors_defragged) {
1647 /*
1648 * We have defragged some sectors, for compression case they
1649 * need to be written back immediately.
1650 */
1651 if (range->flags & BTRFS_DEFRAG_RANGE_START_IO) {
dec8ef90 1652 filemap_flush(inode->i_mapping);
7b508037
QW
1653 if (test_bit(BTRFS_INODE_HAS_ASYNC_EXTENT,
1654 &BTRFS_I(inode)->runtime_flags))
1655 filemap_flush(inode->i_mapping);
1656 }
1657 if (range->compress_type == BTRFS_COMPRESS_LZO)
1658 btrfs_set_fs_incompat(fs_info, COMPRESS_LZO);
1659 else if (range->compress_type == BTRFS_COMPRESS_ZSTD)
1660 btrfs_set_fs_incompat(fs_info, COMPRESS_ZSTD);
1661 ret = sectors_defragged;
dec8ef90 1662 }
1e2ef46d 1663 if (do_compress) {
64708539 1664 btrfs_inode_lock(inode, 0);
eec63c65 1665 BTRFS_I(inode)->defrag_compress = BTRFS_COMPRESS_NONE;
64708539 1666 btrfs_inode_unlock(inode, 0);
633085c7 1667 }
940100a4 1668 return ret;
f46b5a66
CH
1669}
1670
17aaa434
DS
1671/*
1672 * Try to start exclusive operation @type or cancel it if it's running.
1673 *
1674 * Return:
1675 * 0 - normal mode, newly claimed op started
1676 * >0 - normal mode, something else is running,
1677 * return BTRFS_ERROR_DEV_EXCL_RUN_IN_PROGRESS to user space
1678 * ECANCELED - cancel mode, successful cancel
1679 * ENOTCONN - cancel mode, operation not running anymore
1680 */
1681static int exclop_start_or_cancel_reloc(struct btrfs_fs_info *fs_info,
1682 enum btrfs_exclusive_operation type, bool cancel)
1683{
1684 if (!cancel) {
1685 /* Start normal op */
1686 if (!btrfs_exclop_start(fs_info, type))
1687 return BTRFS_ERROR_DEV_EXCL_RUN_IN_PROGRESS;
1688 /* Exclusive operation is now claimed */
1689 return 0;
1690 }
1691
1692 /* Cancel running op */
1693 if (btrfs_exclop_start_try_lock(fs_info, type)) {
1694 /*
1695 * This blocks any exclop finish from setting it to NONE, so we
1696 * request cancellation. Either it runs and we will wait for it,
1697 * or it has finished and no waiting will happen.
1698 */
1699 atomic_inc(&fs_info->reloc_cancel_req);
1700 btrfs_exclop_start_unlock(fs_info);
1701
1702 if (test_bit(BTRFS_FS_RELOC_RUNNING, &fs_info->flags))
1703 wait_on_bit(&fs_info->flags, BTRFS_FS_RELOC_RUNNING,
1704 TASK_INTERRUPTIBLE);
1705
1706 return -ECANCELED;
1707 }
1708
1709 /* Something else is running or none */
1710 return -ENOTCONN;
1711}
1712
198605a8 1713static noinline int btrfs_ioctl_resize(struct file *file,
76dda93c 1714 void __user *arg)
f46b5a66 1715{
562d7b15 1716 BTRFS_DEV_LOOKUP_ARGS(args);
0b246afa
JM
1717 struct inode *inode = file_inode(file);
1718 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
f46b5a66
CH
1719 u64 new_size;
1720 u64 old_size;
1721 u64 devid = 1;
0b246afa 1722 struct btrfs_root *root = BTRFS_I(inode)->root;
f46b5a66
CH
1723 struct btrfs_ioctl_vol_args *vol_args;
1724 struct btrfs_trans_handle *trans;
1725 struct btrfs_device *device = NULL;
1726 char *sizestr;
9a40f122 1727 char *retptr;
f46b5a66
CH
1728 char *devstr = NULL;
1729 int ret = 0;
f46b5a66 1730 int mod = 0;
bb059a37 1731 bool cancel;
f46b5a66 1732
e441d54d
CM
1733 if (!capable(CAP_SYS_ADMIN))
1734 return -EPERM;
1735
198605a8
MX
1736 ret = mnt_want_write_file(file);
1737 if (ret)
1738 return ret;
1739
bb059a37
DS
1740 /*
1741 * Read the arguments before checking exclusivity to be able to
1742 * distinguish regular resize and cancel
1743 */
dae7b665 1744 vol_args = memdup_user(arg, sizeof(*vol_args));
c9e9f97b
ID
1745 if (IS_ERR(vol_args)) {
1746 ret = PTR_ERR(vol_args);
bb059a37 1747 goto out_drop;
c9e9f97b 1748 }
5516e595 1749 vol_args->name[BTRFS_PATH_NAME_MAX] = '\0';
f46b5a66 1750 sizestr = vol_args->name;
bb059a37
DS
1751 cancel = (strcmp("cancel", sizestr) == 0);
1752 ret = exclop_start_or_cancel_reloc(fs_info, BTRFS_EXCLOP_RESIZE, cancel);
1753 if (ret)
1754 goto out_free;
1755 /* Exclusive operation is now claimed */
1756
f46b5a66
CH
1757 devstr = strchr(sizestr, ':');
1758 if (devstr) {
f46b5a66
CH
1759 sizestr = devstr + 1;
1760 *devstr = '\0';
1761 devstr = vol_args->name;
58dfae63
Z
1762 ret = kstrtoull(devstr, 10, &devid);
1763 if (ret)
bb059a37 1764 goto out_finish;
dfd79829
MX
1765 if (!devid) {
1766 ret = -EINVAL;
bb059a37 1767 goto out_finish;
dfd79829 1768 }
0b246afa 1769 btrfs_info(fs_info, "resizing devid %llu", devid);
f46b5a66 1770 }
dba60f3f 1771
562d7b15
JB
1772 args.devid = devid;
1773 device = btrfs_find_device(fs_info->fs_devices, &args);
f46b5a66 1774 if (!device) {
0b246afa
JM
1775 btrfs_info(fs_info, "resizer unable to find device %llu",
1776 devid);
dfd79829 1777 ret = -ENODEV;
bb059a37 1778 goto out_finish;
f46b5a66 1779 }
dba60f3f 1780
ebbede42 1781 if (!test_bit(BTRFS_DEV_STATE_WRITEABLE, &device->dev_state)) {
0b246afa 1782 btrfs_info(fs_info,
efe120a0 1783 "resizer unable to apply on readonly device %llu",
c1c9ff7c 1784 devid);
dfd79829 1785 ret = -EPERM;
bb059a37 1786 goto out_finish;
4e42ae1b
LB
1787 }
1788
f46b5a66 1789 if (!strcmp(sizestr, "max"))
cda00eba 1790 new_size = bdev_nr_bytes(device->bdev);
f46b5a66
CH
1791 else {
1792 if (sizestr[0] == '-') {
1793 mod = -1;
1794 sizestr++;
1795 } else if (sizestr[0] == '+') {
1796 mod = 1;
1797 sizestr++;
1798 }
9a40f122
GH
1799 new_size = memparse(sizestr, &retptr);
1800 if (*retptr != '\0' || new_size == 0) {
f46b5a66 1801 ret = -EINVAL;
bb059a37 1802 goto out_finish;
f46b5a66
CH
1803 }
1804 }
1805
401e29c1 1806 if (test_bit(BTRFS_DEV_STATE_REPLACE_TGT, &device->dev_state)) {
dfd79829 1807 ret = -EPERM;
bb059a37 1808 goto out_finish;
63a212ab
SB
1809 }
1810
7cc8e58d 1811 old_size = btrfs_device_get_total_bytes(device);
f46b5a66
CH
1812
1813 if (mod < 0) {
1814 if (new_size > old_size) {
1815 ret = -EINVAL;
bb059a37 1816 goto out_finish;
f46b5a66
CH
1817 }
1818 new_size = old_size - new_size;
1819 } else if (mod > 0) {
eb8052e0 1820 if (new_size > ULLONG_MAX - old_size) {
902c68a4 1821 ret = -ERANGE;
bb059a37 1822 goto out_finish;
eb8052e0 1823 }
f46b5a66
CH
1824 new_size = old_size + new_size;
1825 }
1826
ee22184b 1827 if (new_size < SZ_256M) {
f46b5a66 1828 ret = -EINVAL;
bb059a37 1829 goto out_finish;
f46b5a66 1830 }
cda00eba 1831 if (new_size > bdev_nr_bytes(device->bdev)) {
f46b5a66 1832 ret = -EFBIG;
bb059a37 1833 goto out_finish;
f46b5a66
CH
1834 }
1835
47f08b96 1836 new_size = round_down(new_size, fs_info->sectorsize);
f46b5a66 1837
f46b5a66 1838 if (new_size > old_size) {
a22285a6 1839 trans = btrfs_start_transaction(root, 0);
98d5dc13
TI
1840 if (IS_ERR(trans)) {
1841 ret = PTR_ERR(trans);
bb059a37 1842 goto out_finish;
98d5dc13 1843 }
f46b5a66 1844 ret = btrfs_grow_device(trans, device, new_size);
3a45bb20 1845 btrfs_commit_transaction(trans);
ece7d20e 1846 } else if (new_size < old_size) {
f46b5a66 1847 ret = btrfs_shrink_device(device, new_size);
0253f40e 1848 } /* equal, nothing need to do */
f46b5a66 1849
faf8f7b9
MPS
1850 if (ret == 0 && new_size != old_size)
1851 btrfs_info_in_rcu(fs_info,
1852 "resize device %s (devid %llu) from %llu to %llu",
1853 rcu_str_deref(device->name), device->devid,
1854 old_size, new_size);
bb059a37
DS
1855out_finish:
1856 btrfs_exclop_finish(fs_info);
c9e9f97b 1857out_free:
f46b5a66 1858 kfree(vol_args);
bb059a37 1859out_drop:
18f39c41 1860 mnt_drop_write_file(file);
f46b5a66
CH
1861 return ret;
1862}
1863
5d54c67e 1864static noinline int __btrfs_ioctl_snap_create(struct file *file,
4d4340c9 1865 struct user_namespace *mnt_userns,
52f75f4f 1866 const char *name, unsigned long fd, int subvol,
5d54c67e 1867 bool readonly,
8696c533 1868 struct btrfs_qgroup_inherit *inherit)
f46b5a66 1869{
f46b5a66 1870 int namelen;
3de4586c 1871 int ret = 0;
f46b5a66 1872
325c50e3
JM
1873 if (!S_ISDIR(file_inode(file)->i_mode))
1874 return -ENOTDIR;
1875
a874a63e
LB
1876 ret = mnt_want_write_file(file);
1877 if (ret)
1878 goto out;
1879
72fd032e
SW
1880 namelen = strlen(name);
1881 if (strchr(name, '/')) {
f46b5a66 1882 ret = -EINVAL;
a874a63e 1883 goto out_drop_write;
f46b5a66
CH
1884 }
1885
16780cab
CM
1886 if (name[0] == '.' &&
1887 (namelen == 1 || (name[1] == '.' && namelen == 2))) {
1888 ret = -EEXIST;
a874a63e 1889 goto out_drop_write;
16780cab
CM
1890 }
1891
3de4586c 1892 if (subvol) {
4d4340c9
CB
1893 ret = btrfs_mksubvol(&file->f_path, mnt_userns, name,
1894 namelen, NULL, readonly, inherit);
cb8e7090 1895 } else {
2903ff01 1896 struct fd src = fdget(fd);
3de4586c 1897 struct inode *src_inode;
2903ff01 1898 if (!src.file) {
3de4586c 1899 ret = -EINVAL;
a874a63e 1900 goto out_drop_write;
3de4586c
CM
1901 }
1902
496ad9aa
AV
1903 src_inode = file_inode(src.file);
1904 if (src_inode->i_sb != file_inode(file)->i_sb) {
c79b4713 1905 btrfs_info(BTRFS_I(file_inode(file))->root->fs_info,
efe120a0 1906 "Snapshot src from another FS");
23ad5b17 1907 ret = -EXDEV;
4d4340c9 1908 } else if (!inode_owner_or_capable(mnt_userns, src_inode)) {
d0242061
DS
1909 /*
1910 * Subvolume creation is not restricted, but snapshots
1911 * are limited to own subvolumes only
1912 */
1913 ret = -EPERM;
ecd18815 1914 } else {
4d4340c9
CB
1915 ret = btrfs_mksnapshot(&file->f_path, mnt_userns,
1916 name, namelen,
1917 BTRFS_I(src_inode)->root,
1918 readonly, inherit);
3de4586c 1919 }
2903ff01 1920 fdput(src);
cb8e7090 1921 }
a874a63e
LB
1922out_drop_write:
1923 mnt_drop_write_file(file);
f46b5a66 1924out:
72fd032e
SW
1925 return ret;
1926}
1927
1928static noinline int btrfs_ioctl_snap_create(struct file *file,
fa0d2b9b 1929 void __user *arg, int subvol)
72fd032e 1930{
fa0d2b9b 1931 struct btrfs_ioctl_vol_args *vol_args;
72fd032e
SW
1932 int ret;
1933
325c50e3
JM
1934 if (!S_ISDIR(file_inode(file)->i_mode))
1935 return -ENOTDIR;
1936
fa0d2b9b
LZ
1937 vol_args = memdup_user(arg, sizeof(*vol_args));
1938 if (IS_ERR(vol_args))
1939 return PTR_ERR(vol_args);
1940 vol_args->name[BTRFS_PATH_NAME_MAX] = '\0';
72fd032e 1941
4d4340c9
CB
1942 ret = __btrfs_ioctl_snap_create(file, file_mnt_user_ns(file),
1943 vol_args->name, vol_args->fd, subvol,
1944 false, NULL);
fdfb1e4f 1945
fa0d2b9b
LZ
1946 kfree(vol_args);
1947 return ret;
1948}
fdfb1e4f 1949
fa0d2b9b
LZ
1950static noinline int btrfs_ioctl_snap_create_v2(struct file *file,
1951 void __user *arg, int subvol)
1952{
1953 struct btrfs_ioctl_vol_args_v2 *vol_args;
1954 int ret;
b83cc969 1955 bool readonly = false;
6f72c7e2 1956 struct btrfs_qgroup_inherit *inherit = NULL;
75eaa0e2 1957
325c50e3
JM
1958 if (!S_ISDIR(file_inode(file)->i_mode))
1959 return -ENOTDIR;
1960
fa0d2b9b
LZ
1961 vol_args = memdup_user(arg, sizeof(*vol_args));
1962 if (IS_ERR(vol_args))
1963 return PTR_ERR(vol_args);
1964 vol_args->name[BTRFS_SUBVOL_NAME_MAX] = '\0';
75eaa0e2 1965
673990db 1966 if (vol_args->flags & ~BTRFS_SUBVOL_CREATE_ARGS_MASK) {
b83cc969 1967 ret = -EOPNOTSUPP;
c47ca32d 1968 goto free_args;
72fd032e 1969 }
fa0d2b9b 1970
b83cc969
LZ
1971 if (vol_args->flags & BTRFS_SUBVOL_RDONLY)
1972 readonly = true;
6f72c7e2 1973 if (vol_args->flags & BTRFS_SUBVOL_QGROUP_INHERIT) {
5011c5a6
DC
1974 u64 nums;
1975
1976 if (vol_args->size < sizeof(*inherit) ||
1977 vol_args->size > PAGE_SIZE) {
6f72c7e2 1978 ret = -EINVAL;
c47ca32d 1979 goto free_args;
6f72c7e2
AJ
1980 }
1981 inherit = memdup_user(vol_args->qgroup_inherit, vol_args->size);
1982 if (IS_ERR(inherit)) {
1983 ret = PTR_ERR(inherit);
c47ca32d 1984 goto free_args;
6f72c7e2 1985 }
5011c5a6
DC
1986
1987 if (inherit->num_qgroups > PAGE_SIZE ||
1988 inherit->num_ref_copies > PAGE_SIZE ||
1989 inherit->num_excl_copies > PAGE_SIZE) {
1990 ret = -EINVAL;
1991 goto free_inherit;
1992 }
1993
1994 nums = inherit->num_qgroups + 2 * inherit->num_ref_copies +
1995 2 * inherit->num_excl_copies;
1996 if (vol_args->size != struct_size(inherit, qgroups, nums)) {
1997 ret = -EINVAL;
1998 goto free_inherit;
1999 }
6f72c7e2 2000 }
fa0d2b9b 2001
4d4340c9
CB
2002 ret = __btrfs_ioctl_snap_create(file, file_mnt_user_ns(file),
2003 vol_args->name, vol_args->fd, subvol,
2004 readonly, inherit);
c47ca32d
DC
2005 if (ret)
2006 goto free_inherit;
c47ca32d 2007free_inherit:
6f72c7e2 2008 kfree(inherit);
c47ca32d
DC
2009free_args:
2010 kfree(vol_args);
f46b5a66
CH
2011 return ret;
2012}
2013
0caa102d
LZ
2014static noinline int btrfs_ioctl_subvol_getflags(struct file *file,
2015 void __user *arg)
2016{
496ad9aa 2017 struct inode *inode = file_inode(file);
0b246afa 2018 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
0caa102d
LZ
2019 struct btrfs_root *root = BTRFS_I(inode)->root;
2020 int ret = 0;
2021 u64 flags = 0;
2022
4a0cc7ca 2023 if (btrfs_ino(BTRFS_I(inode)) != BTRFS_FIRST_FREE_OBJECTID)
0caa102d
LZ
2024 return -EINVAL;
2025
0b246afa 2026 down_read(&fs_info->subvol_sem);
0caa102d
LZ
2027 if (btrfs_root_readonly(root))
2028 flags |= BTRFS_SUBVOL_RDONLY;
0b246afa 2029 up_read(&fs_info->subvol_sem);
0caa102d
LZ
2030
2031 if (copy_to_user(arg, &flags, sizeof(flags)))
2032 ret = -EFAULT;
2033
2034 return ret;
2035}
2036
2037static noinline int btrfs_ioctl_subvol_setflags(struct file *file,
2038 void __user *arg)
2039{
496ad9aa 2040 struct inode *inode = file_inode(file);
0b246afa 2041 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
0caa102d
LZ
2042 struct btrfs_root *root = BTRFS_I(inode)->root;
2043 struct btrfs_trans_handle *trans;
2044 u64 root_flags;
2045 u64 flags;
2046 int ret = 0;
2047
39e1674f 2048 if (!inode_owner_or_capable(file_mnt_user_ns(file), inode))
bd60ea0f
DS
2049 return -EPERM;
2050
b9ca0664
LB
2051 ret = mnt_want_write_file(file);
2052 if (ret)
2053 goto out;
0caa102d 2054
4a0cc7ca 2055 if (btrfs_ino(BTRFS_I(inode)) != BTRFS_FIRST_FREE_OBJECTID) {
b9ca0664
LB
2056 ret = -EINVAL;
2057 goto out_drop_write;
2058 }
0caa102d 2059
b9ca0664
LB
2060 if (copy_from_user(&flags, arg, sizeof(flags))) {
2061 ret = -EFAULT;
2062 goto out_drop_write;
2063 }
0caa102d 2064
b9ca0664
LB
2065 if (flags & ~BTRFS_SUBVOL_RDONLY) {
2066 ret = -EOPNOTSUPP;
2067 goto out_drop_write;
2068 }
0caa102d 2069
0b246afa 2070 down_write(&fs_info->subvol_sem);
0caa102d
LZ
2071
2072 /* nothing to do */
2073 if (!!(flags & BTRFS_SUBVOL_RDONLY) == btrfs_root_readonly(root))
b9ca0664 2074 goto out_drop_sem;
0caa102d
LZ
2075
2076 root_flags = btrfs_root_flags(&root->root_item);
2c686537 2077 if (flags & BTRFS_SUBVOL_RDONLY) {
0caa102d
LZ
2078 btrfs_set_root_flags(&root->root_item,
2079 root_flags | BTRFS_ROOT_SUBVOL_RDONLY);
2c686537
DS
2080 } else {
2081 /*
2082 * Block RO -> RW transition if this subvolume is involved in
2083 * send
2084 */
2085 spin_lock(&root->root_item_lock);
2086 if (root->send_in_progress == 0) {
2087 btrfs_set_root_flags(&root->root_item,
0caa102d 2088 root_flags & ~BTRFS_ROOT_SUBVOL_RDONLY);
2c686537
DS
2089 spin_unlock(&root->root_item_lock);
2090 } else {
2091 spin_unlock(&root->root_item_lock);
0b246afa
JM
2092 btrfs_warn(fs_info,
2093 "Attempt to set subvolume %llu read-write during send",
2094 root->root_key.objectid);
2c686537
DS
2095 ret = -EPERM;
2096 goto out_drop_sem;
2097 }
2098 }
0caa102d
LZ
2099
2100 trans = btrfs_start_transaction(root, 1);
2101 if (IS_ERR(trans)) {
2102 ret = PTR_ERR(trans);
2103 goto out_reset;
2104 }
2105
0b246afa 2106 ret = btrfs_update_root(trans, fs_info->tree_root,
0caa102d 2107 &root->root_key, &root->root_item);
9417ebc8
NB
2108 if (ret < 0) {
2109 btrfs_end_transaction(trans);
2110 goto out_reset;
2111 }
2112
2113 ret = btrfs_commit_transaction(trans);
0caa102d 2114
0caa102d
LZ
2115out_reset:
2116 if (ret)
2117 btrfs_set_root_flags(&root->root_item, root_flags);
b9ca0664 2118out_drop_sem:
0b246afa 2119 up_write(&fs_info->subvol_sem);
b9ca0664
LB
2120out_drop_write:
2121 mnt_drop_write_file(file);
2122out:
0caa102d
LZ
2123 return ret;
2124}
2125
ac8e9819
CM
2126static noinline int key_in_sk(struct btrfs_key *key,
2127 struct btrfs_ioctl_search_key *sk)
2128{
abc6e134
CM
2129 struct btrfs_key test;
2130 int ret;
2131
2132 test.objectid = sk->min_objectid;
2133 test.type = sk->min_type;
2134 test.offset = sk->min_offset;
2135
2136 ret = btrfs_comp_cpu_keys(key, &test);
2137 if (ret < 0)
ac8e9819 2138 return 0;
abc6e134
CM
2139
2140 test.objectid = sk->max_objectid;
2141 test.type = sk->max_type;
2142 test.offset = sk->max_offset;
2143
2144 ret = btrfs_comp_cpu_keys(key, &test);
2145 if (ret > 0)
ac8e9819
CM
2146 return 0;
2147 return 1;
2148}
2149
df397565 2150static noinline int copy_to_sk(struct btrfs_path *path,
ac8e9819
CM
2151 struct btrfs_key *key,
2152 struct btrfs_ioctl_search_key *sk,
9b6e817d 2153 size_t *buf_size,
ba346b35 2154 char __user *ubuf,
ac8e9819
CM
2155 unsigned long *sk_offset,
2156 int *num_found)
2157{
2158 u64 found_transid;
2159 struct extent_buffer *leaf;
2160 struct btrfs_ioctl_search_header sh;
dd81d459 2161 struct btrfs_key test;
ac8e9819
CM
2162 unsigned long item_off;
2163 unsigned long item_len;
2164 int nritems;
2165 int i;
2166 int slot;
ac8e9819
CM
2167 int ret = 0;
2168
2169 leaf = path->nodes[0];
2170 slot = path->slots[0];
2171 nritems = btrfs_header_nritems(leaf);
2172
2173 if (btrfs_header_generation(leaf) > sk->max_transid) {
2174 i = nritems;
2175 goto advance_key;
2176 }
2177 found_transid = btrfs_header_generation(leaf);
2178
2179 for (i = slot; i < nritems; i++) {
2180 item_off = btrfs_item_ptr_offset(leaf, i);
3212fa14 2181 item_len = btrfs_item_size(leaf, i);
ac8e9819 2182
03b71c6c
GP
2183 btrfs_item_key_to_cpu(leaf, key, i);
2184 if (!key_in_sk(key, sk))
2185 continue;
2186
9b6e817d 2187 if (sizeof(sh) + item_len > *buf_size) {
8f5f6178
GH
2188 if (*num_found) {
2189 ret = 1;
2190 goto out;
2191 }
2192
2193 /*
2194 * return one empty item back for v1, which does not
2195 * handle -EOVERFLOW
2196 */
2197
9b6e817d 2198 *buf_size = sizeof(sh) + item_len;
ac8e9819 2199 item_len = 0;
8f5f6178
GH
2200 ret = -EOVERFLOW;
2201 }
ac8e9819 2202
9b6e817d 2203 if (sizeof(sh) + item_len + *sk_offset > *buf_size) {
ac8e9819 2204 ret = 1;
25c9bc2e 2205 goto out;
ac8e9819
CM
2206 }
2207
ac8e9819
CM
2208 sh.objectid = key->objectid;
2209 sh.offset = key->offset;
2210 sh.type = key->type;
2211 sh.len = item_len;
2212 sh.transid = found_transid;
2213
a48b73ec
JB
2214 /*
2215 * Copy search result header. If we fault then loop again so we
2216 * can fault in the pages and -EFAULT there if there's a
2217 * problem. Otherwise we'll fault and then copy the buffer in
2218 * properly this next time through
2219 */
2220 if (copy_to_user_nofault(ubuf + *sk_offset, &sh, sizeof(sh))) {
2221 ret = 0;
ba346b35
GH
2222 goto out;
2223 }
2224
ac8e9819
CM
2225 *sk_offset += sizeof(sh);
2226
2227 if (item_len) {
ba346b35 2228 char __user *up = ubuf + *sk_offset;
a48b73ec
JB
2229 /*
2230 * Copy the item, same behavior as above, but reset the
2231 * * sk_offset so we copy the full thing again.
2232 */
2233 if (read_extent_buffer_to_user_nofault(leaf, up,
2234 item_off, item_len)) {
2235 ret = 0;
2236 *sk_offset -= sizeof(sh);
ba346b35
GH
2237 goto out;
2238 }
2239
ac8e9819 2240 *sk_offset += item_len;
ac8e9819 2241 }
e2156867 2242 (*num_found)++;
ac8e9819 2243
8f5f6178
GH
2244 if (ret) /* -EOVERFLOW from above */
2245 goto out;
2246
25c9bc2e
GH
2247 if (*num_found >= sk->nr_items) {
2248 ret = 1;
2249 goto out;
2250 }
ac8e9819
CM
2251 }
2252advance_key:
abc6e134 2253 ret = 0;
dd81d459
NA
2254 test.objectid = sk->max_objectid;
2255 test.type = sk->max_type;
2256 test.offset = sk->max_offset;
2257 if (btrfs_comp_cpu_keys(key, &test) >= 0)
2258 ret = 1;
2259 else if (key->offset < (u64)-1)
ac8e9819 2260 key->offset++;
dd81d459 2261 else if (key->type < (u8)-1) {
abc6e134 2262 key->offset = 0;
ac8e9819 2263 key->type++;
dd81d459 2264 } else if (key->objectid < (u64)-1) {
abc6e134
CM
2265 key->offset = 0;
2266 key->type = 0;
ac8e9819 2267 key->objectid++;
abc6e134
CM
2268 } else
2269 ret = 1;
25c9bc2e 2270out:
ba346b35
GH
2271 /*
2272 * 0: all items from this leaf copied, continue with next
2273 * 1: * more items can be copied, but unused buffer is too small
2274 * * all items were found
2275 * Either way, it will stops the loop which iterates to the next
2276 * leaf
2277 * -EOVERFLOW: item was to large for buffer
2278 * -EFAULT: could not copy extent buffer back to userspace
2279 */
ac8e9819
CM
2280 return ret;
2281}
2282
2283static noinline int search_ioctl(struct inode *inode,
12544442 2284 struct btrfs_ioctl_search_key *sk,
9b6e817d 2285 size_t *buf_size,
ba346b35 2286 char __user *ubuf)
ac8e9819 2287{
0b246afa 2288 struct btrfs_fs_info *info = btrfs_sb(inode->i_sb);
ac8e9819
CM
2289 struct btrfs_root *root;
2290 struct btrfs_key key;
ac8e9819 2291 struct btrfs_path *path;
ac8e9819
CM
2292 int ret;
2293 int num_found = 0;
2294 unsigned long sk_offset = 0;
2295
9b6e817d
GH
2296 if (*buf_size < sizeof(struct btrfs_ioctl_search_header)) {
2297 *buf_size = sizeof(struct btrfs_ioctl_search_header);
12544442 2298 return -EOVERFLOW;
9b6e817d 2299 }
12544442 2300
ac8e9819
CM
2301 path = btrfs_alloc_path();
2302 if (!path)
2303 return -ENOMEM;
2304
2305 if (sk->tree_id == 0) {
2306 /* search the root of the inode that was passed */
00246528 2307 root = btrfs_grab_root(BTRFS_I(inode)->root);
ac8e9819 2308 } else {
56e9357a 2309 root = btrfs_get_fs_root(info, sk->tree_id, true);
ac8e9819 2310 if (IS_ERR(root)) {
ac8e9819 2311 btrfs_free_path(path);
ad1e3d56 2312 return PTR_ERR(root);
ac8e9819
CM
2313 }
2314 }
2315
2316 key.objectid = sk->min_objectid;
2317 key.type = sk->min_type;
2318 key.offset = sk->min_offset;
2319
67871254 2320 while (1) {
bb523b40
AG
2321 ret = -EFAULT;
2322 if (fault_in_writeable(ubuf + sk_offset, *buf_size - sk_offset))
a48b73ec
JB
2323 break;
2324
6174d3cb 2325 ret = btrfs_search_forward(root, &key, path, sk->min_transid);
ac8e9819
CM
2326 if (ret != 0) {
2327 if (ret > 0)
2328 ret = 0;
2329 goto err;
2330 }
df397565 2331 ret = copy_to_sk(path, &key, sk, buf_size, ubuf,
ac8e9819 2332 &sk_offset, &num_found);
b3b4aa74 2333 btrfs_release_path(path);
25c9bc2e 2334 if (ret)
ac8e9819
CM
2335 break;
2336
2337 }
8f5f6178
GH
2338 if (ret > 0)
2339 ret = 0;
ac8e9819
CM
2340err:
2341 sk->nr_items = num_found;
00246528 2342 btrfs_put_root(root);
ac8e9819
CM
2343 btrfs_free_path(path);
2344 return ret;
2345}
2346
2347static noinline int btrfs_ioctl_tree_search(struct file *file,
2348 void __user *argp)
2349{
ba346b35
GH
2350 struct btrfs_ioctl_search_args __user *uargs;
2351 struct btrfs_ioctl_search_key sk;
9b6e817d
GH
2352 struct inode *inode;
2353 int ret;
2354 size_t buf_size;
ac8e9819
CM
2355
2356 if (!capable(CAP_SYS_ADMIN))
2357 return -EPERM;
2358
ba346b35
GH
2359 uargs = (struct btrfs_ioctl_search_args __user *)argp;
2360
2361 if (copy_from_user(&sk, &uargs->key, sizeof(sk)))
2362 return -EFAULT;
ac8e9819 2363
ba346b35 2364 buf_size = sizeof(uargs->buf);
ac8e9819 2365
496ad9aa 2366 inode = file_inode(file);
ba346b35 2367 ret = search_ioctl(inode, &sk, &buf_size, uargs->buf);
8f5f6178
GH
2368
2369 /*
2370 * In the origin implementation an overflow is handled by returning a
2371 * search header with a len of zero, so reset ret.
2372 */
2373 if (ret == -EOVERFLOW)
2374 ret = 0;
2375
ba346b35 2376 if (ret == 0 && copy_to_user(&uargs->key, &sk, sizeof(sk)))
ac8e9819 2377 ret = -EFAULT;
ac8e9819
CM
2378 return ret;
2379}
2380
cc68a8a5
GH
2381static noinline int btrfs_ioctl_tree_search_v2(struct file *file,
2382 void __user *argp)
2383{
2384 struct btrfs_ioctl_search_args_v2 __user *uarg;
2385 struct btrfs_ioctl_search_args_v2 args;
2386 struct inode *inode;
2387 int ret;
2388 size_t buf_size;
ee22184b 2389 const size_t buf_limit = SZ_16M;
cc68a8a5
GH
2390
2391 if (!capable(CAP_SYS_ADMIN))
2392 return -EPERM;
2393
2394 /* copy search header and buffer size */
2395 uarg = (struct btrfs_ioctl_search_args_v2 __user *)argp;
2396 if (copy_from_user(&args, uarg, sizeof(args)))
2397 return -EFAULT;
2398
2399 buf_size = args.buf_size;
2400
cc68a8a5
GH
2401 /* limit result size to 16MB */
2402 if (buf_size > buf_limit)
2403 buf_size = buf_limit;
2404
2405 inode = file_inode(file);
2406 ret = search_ioctl(inode, &args.key, &buf_size,
718dc5fa 2407 (char __user *)(&uarg->buf[0]));
cc68a8a5
GH
2408 if (ret == 0 && copy_to_user(&uarg->key, &args.key, sizeof(args.key)))
2409 ret = -EFAULT;
2410 else if (ret == -EOVERFLOW &&
2411 copy_to_user(&uarg->buf_size, &buf_size, sizeof(buf_size)))
2412 ret = -EFAULT;
2413
ac8e9819
CM
2414 return ret;
2415}
2416
98d377a0 2417/*
ac8e9819
CM
2418 * Search INODE_REFs to identify path name of 'dirid' directory
2419 * in a 'tree_id' tree. and sets path name to 'name'.
2420 */
98d377a0
TH
2421static noinline int btrfs_search_path_in_tree(struct btrfs_fs_info *info,
2422 u64 tree_id, u64 dirid, char *name)
2423{
2424 struct btrfs_root *root;
2425 struct btrfs_key key;
ac8e9819 2426 char *ptr;
98d377a0
TH
2427 int ret = -1;
2428 int slot;
2429 int len;
2430 int total_len = 0;
2431 struct btrfs_inode_ref *iref;
2432 struct extent_buffer *l;
2433 struct btrfs_path *path;
2434
2435 if (dirid == BTRFS_FIRST_FREE_OBJECTID) {
2436 name[0]='\0';
2437 return 0;
2438 }
2439
2440 path = btrfs_alloc_path();
2441 if (!path)
2442 return -ENOMEM;
2443
c8bcbfbd 2444 ptr = &name[BTRFS_INO_LOOKUP_PATH_MAX - 1];
98d377a0 2445
56e9357a 2446 root = btrfs_get_fs_root(info, tree_id, true);
98d377a0 2447 if (IS_ERR(root)) {
ad1e3d56 2448 ret = PTR_ERR(root);
88234012
JB
2449 root = NULL;
2450 goto out;
2451 }
98d377a0
TH
2452
2453 key.objectid = dirid;
2454 key.type = BTRFS_INODE_REF_KEY;
8ad6fcab 2455 key.offset = (u64)-1;
98d377a0 2456
67871254 2457 while (1) {
0ff40a91 2458 ret = btrfs_search_backwards(root, &key, path);
98d377a0
TH
2459 if (ret < 0)
2460 goto out;
18674c6c 2461 else if (ret > 0) {
0ff40a91
MPS
2462 ret = -ENOENT;
2463 goto out;
18674c6c 2464 }
98d377a0
TH
2465
2466 l = path->nodes[0];
2467 slot = path->slots[0];
98d377a0 2468
98d377a0
TH
2469 iref = btrfs_item_ptr(l, slot, struct btrfs_inode_ref);
2470 len = btrfs_inode_ref_name_len(l, iref);
2471 ptr -= len + 1;
2472 total_len += len + 1;
a696cf35
FDBM
2473 if (ptr < name) {
2474 ret = -ENAMETOOLONG;
98d377a0 2475 goto out;
a696cf35 2476 }
98d377a0
TH
2477
2478 *(ptr + len) = '/';
67871254 2479 read_extent_buffer(l, ptr, (unsigned long)(iref + 1), len);
98d377a0
TH
2480
2481 if (key.offset == BTRFS_FIRST_FREE_OBJECTID)
2482 break;
2483
b3b4aa74 2484 btrfs_release_path(path);
98d377a0 2485 key.objectid = key.offset;
8ad6fcab 2486 key.offset = (u64)-1;
98d377a0 2487 dirid = key.objectid;
98d377a0 2488 }
77906a50 2489 memmove(name, ptr, total_len);
67871254 2490 name[total_len] = '\0';
98d377a0
TH
2491 ret = 0;
2492out:
00246528 2493 btrfs_put_root(root);
98d377a0 2494 btrfs_free_path(path);
ac8e9819
CM
2495 return ret;
2496}
2497
6623d9a0
CB
2498static int btrfs_search_path_in_tree_user(struct user_namespace *mnt_userns,
2499 struct inode *inode,
23d0b79d
TM
2500 struct btrfs_ioctl_ino_lookup_user_args *args)
2501{
2502 struct btrfs_fs_info *fs_info = BTRFS_I(inode)->root->fs_info;
2503 struct super_block *sb = inode->i_sb;
2504 struct btrfs_key upper_limit = BTRFS_I(inode)->location;
2505 u64 treeid = BTRFS_I(inode)->root->root_key.objectid;
2506 u64 dirid = args->dirid;
2507 unsigned long item_off;
2508 unsigned long item_len;
2509 struct btrfs_inode_ref *iref;
2510 struct btrfs_root_ref *rref;
b8a49ae1 2511 struct btrfs_root *root = NULL;
23d0b79d
TM
2512 struct btrfs_path *path;
2513 struct btrfs_key key, key2;
2514 struct extent_buffer *leaf;
2515 struct inode *temp_inode;
2516 char *ptr;
2517 int slot;
2518 int len;
2519 int total_len = 0;
2520 int ret;
2521
2522 path = btrfs_alloc_path();
2523 if (!path)
2524 return -ENOMEM;
2525
2526 /*
2527 * If the bottom subvolume does not exist directly under upper_limit,
2528 * construct the path in from the bottom up.
2529 */
2530 if (dirid != upper_limit.objectid) {
2531 ptr = &args->path[BTRFS_INO_LOOKUP_USER_PATH_MAX - 1];
2532
56e9357a 2533 root = btrfs_get_fs_root(fs_info, treeid, true);
23d0b79d
TM
2534 if (IS_ERR(root)) {
2535 ret = PTR_ERR(root);
2536 goto out;
2537 }
2538
2539 key.objectid = dirid;
2540 key.type = BTRFS_INODE_REF_KEY;
2541 key.offset = (u64)-1;
2542 while (1) {
0ff40a91
MPS
2543 ret = btrfs_search_backwards(root, &key, path);
2544 if (ret < 0)
2545 goto out_put;
2546 else if (ret > 0) {
2547 ret = -ENOENT;
b8a49ae1 2548 goto out_put;
23d0b79d
TM
2549 }
2550
2551 leaf = path->nodes[0];
2552 slot = path->slots[0];
23d0b79d
TM
2553
2554 iref = btrfs_item_ptr(leaf, slot, struct btrfs_inode_ref);
2555 len = btrfs_inode_ref_name_len(leaf, iref);
2556 ptr -= len + 1;
2557 total_len += len + 1;
2558 if (ptr < args->path) {
2559 ret = -ENAMETOOLONG;
b8a49ae1 2560 goto out_put;
23d0b79d
TM
2561 }
2562
2563 *(ptr + len) = '/';
2564 read_extent_buffer(leaf, ptr,
2565 (unsigned long)(iref + 1), len);
2566
2567 /* Check the read+exec permission of this directory */
2568 ret = btrfs_previous_item(root, path, dirid,
2569 BTRFS_INODE_ITEM_KEY);
2570 if (ret < 0) {
b8a49ae1 2571 goto out_put;
23d0b79d
TM
2572 } else if (ret > 0) {
2573 ret = -ENOENT;
b8a49ae1 2574 goto out_put;
23d0b79d
TM
2575 }
2576
2577 leaf = path->nodes[0];
2578 slot = path->slots[0];
2579 btrfs_item_key_to_cpu(leaf, &key2, slot);
2580 if (key2.objectid != dirid) {
2581 ret = -ENOENT;
b8a49ae1 2582 goto out_put;
23d0b79d
TM
2583 }
2584
0202e83f 2585 temp_inode = btrfs_iget(sb, key2.objectid, root);
3ca57bd6
MT
2586 if (IS_ERR(temp_inode)) {
2587 ret = PTR_ERR(temp_inode);
b8a49ae1 2588 goto out_put;
3ca57bd6 2589 }
6623d9a0 2590 ret = inode_permission(mnt_userns, temp_inode,
47291baa 2591 MAY_READ | MAY_EXEC);
23d0b79d
TM
2592 iput(temp_inode);
2593 if (ret) {
2594 ret = -EACCES;
b8a49ae1 2595 goto out_put;
23d0b79d
TM
2596 }
2597
2598 if (key.offset == upper_limit.objectid)
2599 break;
2600 if (key.objectid == BTRFS_FIRST_FREE_OBJECTID) {
2601 ret = -EACCES;
b8a49ae1 2602 goto out_put;
23d0b79d
TM
2603 }
2604
2605 btrfs_release_path(path);
2606 key.objectid = key.offset;
2607 key.offset = (u64)-1;
2608 dirid = key.objectid;
2609 }
2610
2611 memmove(args->path, ptr, total_len);
2612 args->path[total_len] = '\0';
00246528 2613 btrfs_put_root(root);
b8a49ae1 2614 root = NULL;
23d0b79d
TM
2615 btrfs_release_path(path);
2616 }
2617
2618 /* Get the bottom subvolume's name from ROOT_REF */
23d0b79d
TM
2619 key.objectid = treeid;
2620 key.type = BTRFS_ROOT_REF_KEY;
2621 key.offset = args->treeid;
b8a49ae1 2622 ret = btrfs_search_slot(NULL, fs_info->tree_root, &key, path, 0, 0);
23d0b79d
TM
2623 if (ret < 0) {
2624 goto out;
2625 } else if (ret > 0) {
2626 ret = -ENOENT;
2627 goto out;
2628 }
2629
2630 leaf = path->nodes[0];
2631 slot = path->slots[0];
2632 btrfs_item_key_to_cpu(leaf, &key, slot);
2633
2634 item_off = btrfs_item_ptr_offset(leaf, slot);
3212fa14 2635 item_len = btrfs_item_size(leaf, slot);
23d0b79d
TM
2636 /* Check if dirid in ROOT_REF corresponds to passed dirid */
2637 rref = btrfs_item_ptr(leaf, slot, struct btrfs_root_ref);
2638 if (args->dirid != btrfs_root_ref_dirid(leaf, rref)) {
2639 ret = -EINVAL;
2640 goto out;
2641 }
2642
2643 /* Copy subvolume's name */
2644 item_off += sizeof(struct btrfs_root_ref);
2645 item_len -= sizeof(struct btrfs_root_ref);
2646 read_extent_buffer(leaf, args->name, item_off, item_len);
2647 args->name[item_len] = 0;
2648
b8a49ae1 2649out_put:
00246528 2650 btrfs_put_root(root);
23d0b79d
TM
2651out:
2652 btrfs_free_path(path);
2653 return ret;
2654}
2655
ac8e9819
CM
2656static noinline int btrfs_ioctl_ino_lookup(struct file *file,
2657 void __user *argp)
2658{
bece2e82
BVA
2659 struct btrfs_ioctl_ino_lookup_args *args;
2660 struct inode *inode;
01b810b8 2661 int ret = 0;
ac8e9819 2662
2354d08f
JL
2663 args = memdup_user(argp, sizeof(*args));
2664 if (IS_ERR(args))
2665 return PTR_ERR(args);
c2b96929 2666
496ad9aa 2667 inode = file_inode(file);
ac8e9819 2668
01b810b8
DS
2669 /*
2670 * Unprivileged query to obtain the containing subvolume root id. The
2671 * path is reset so it's consistent with btrfs_search_path_in_tree.
2672 */
1b53ac4d
CM
2673 if (args->treeid == 0)
2674 args->treeid = BTRFS_I(inode)->root->root_key.objectid;
2675
01b810b8
DS
2676 if (args->objectid == BTRFS_FIRST_FREE_OBJECTID) {
2677 args->name[0] = 0;
2678 goto out;
2679 }
2680
2681 if (!capable(CAP_SYS_ADMIN)) {
2682 ret = -EPERM;
2683 goto out;
2684 }
2685
ac8e9819
CM
2686 ret = btrfs_search_path_in_tree(BTRFS_I(inode)->root->fs_info,
2687 args->treeid, args->objectid,
2688 args->name);
2689
01b810b8 2690out:
ac8e9819
CM
2691 if (ret == 0 && copy_to_user(argp, args, sizeof(*args)))
2692 ret = -EFAULT;
2693
2694 kfree(args);
98d377a0
TH
2695 return ret;
2696}
2697
23d0b79d
TM
2698/*
2699 * Version of ino_lookup ioctl (unprivileged)
2700 *
2701 * The main differences from ino_lookup ioctl are:
2702 *
2703 * 1. Read + Exec permission will be checked using inode_permission() during
2704 * path construction. -EACCES will be returned in case of failure.
2705 * 2. Path construction will be stopped at the inode number which corresponds
2706 * to the fd with which this ioctl is called. If constructed path does not
2707 * exist under fd's inode, -EACCES will be returned.
2708 * 3. The name of bottom subvolume is also searched and filled.
2709 */
2710static int btrfs_ioctl_ino_lookup_user(struct file *file, void __user *argp)
2711{
2712 struct btrfs_ioctl_ino_lookup_user_args *args;
2713 struct inode *inode;
2714 int ret;
2715
2716 args = memdup_user(argp, sizeof(*args));
2717 if (IS_ERR(args))
2718 return PTR_ERR(args);
2719
2720 inode = file_inode(file);
2721
2722 if (args->dirid == BTRFS_FIRST_FREE_OBJECTID &&
2723 BTRFS_I(inode)->location.objectid != BTRFS_FIRST_FREE_OBJECTID) {
2724 /*
2725 * The subvolume does not exist under fd with which this is
2726 * called
2727 */
2728 kfree(args);
2729 return -EACCES;
2730 }
2731
6623d9a0 2732 ret = btrfs_search_path_in_tree_user(file_mnt_user_ns(file), inode, args);
23d0b79d
TM
2733
2734 if (ret == 0 && copy_to_user(argp, args, sizeof(*args)))
2735 ret = -EFAULT;
2736
2737 kfree(args);
2738 return ret;
2739}
2740
b64ec075
TM
2741/* Get the subvolume information in BTRFS_ROOT_ITEM and BTRFS_ROOT_BACKREF */
2742static int btrfs_ioctl_get_subvol_info(struct file *file, void __user *argp)
2743{
2744 struct btrfs_ioctl_get_subvol_info_args *subvol_info;
2745 struct btrfs_fs_info *fs_info;
2746 struct btrfs_root *root;
2747 struct btrfs_path *path;
2748 struct btrfs_key key;
2749 struct btrfs_root_item *root_item;
2750 struct btrfs_root_ref *rref;
2751 struct extent_buffer *leaf;
2752 unsigned long item_off;
2753 unsigned long item_len;
2754 struct inode *inode;
2755 int slot;
2756 int ret = 0;
2757
2758 path = btrfs_alloc_path();
2759 if (!path)
2760 return -ENOMEM;
2761
2762 subvol_info = kzalloc(sizeof(*subvol_info), GFP_KERNEL);
2763 if (!subvol_info) {
2764 btrfs_free_path(path);
2765 return -ENOMEM;
2766 }
2767
2768 inode = file_inode(file);
2769 fs_info = BTRFS_I(inode)->root->fs_info;
2770
2771 /* Get root_item of inode's subvolume */
2772 key.objectid = BTRFS_I(inode)->root->root_key.objectid;
56e9357a 2773 root = btrfs_get_fs_root(fs_info, key.objectid, true);
b64ec075
TM
2774 if (IS_ERR(root)) {
2775 ret = PTR_ERR(root);
04734e84
JB
2776 goto out_free;
2777 }
b64ec075
TM
2778 root_item = &root->root_item;
2779
2780 subvol_info->treeid = key.objectid;
2781
2782 subvol_info->generation = btrfs_root_generation(root_item);
2783 subvol_info->flags = btrfs_root_flags(root_item);
2784
2785 memcpy(subvol_info->uuid, root_item->uuid, BTRFS_UUID_SIZE);
2786 memcpy(subvol_info->parent_uuid, root_item->parent_uuid,
2787 BTRFS_UUID_SIZE);
2788 memcpy(subvol_info->received_uuid, root_item->received_uuid,
2789 BTRFS_UUID_SIZE);
2790
2791 subvol_info->ctransid = btrfs_root_ctransid(root_item);
2792 subvol_info->ctime.sec = btrfs_stack_timespec_sec(&root_item->ctime);
2793 subvol_info->ctime.nsec = btrfs_stack_timespec_nsec(&root_item->ctime);
2794
2795 subvol_info->otransid = btrfs_root_otransid(root_item);
2796 subvol_info->otime.sec = btrfs_stack_timespec_sec(&root_item->otime);
2797 subvol_info->otime.nsec = btrfs_stack_timespec_nsec(&root_item->otime);
2798
2799 subvol_info->stransid = btrfs_root_stransid(root_item);
2800 subvol_info->stime.sec = btrfs_stack_timespec_sec(&root_item->stime);
2801 subvol_info->stime.nsec = btrfs_stack_timespec_nsec(&root_item->stime);
2802
2803 subvol_info->rtransid = btrfs_root_rtransid(root_item);
2804 subvol_info->rtime.sec = btrfs_stack_timespec_sec(&root_item->rtime);
2805 subvol_info->rtime.nsec = btrfs_stack_timespec_nsec(&root_item->rtime);
2806
2807 if (key.objectid != BTRFS_FS_TREE_OBJECTID) {
2808 /* Search root tree for ROOT_BACKREF of this subvolume */
b64ec075
TM
2809 key.type = BTRFS_ROOT_BACKREF_KEY;
2810 key.offset = 0;
04734e84 2811 ret = btrfs_search_slot(NULL, fs_info->tree_root, &key, path, 0, 0);
b64ec075
TM
2812 if (ret < 0) {
2813 goto out;
2814 } else if (path->slots[0] >=
2815 btrfs_header_nritems(path->nodes[0])) {
04734e84 2816 ret = btrfs_next_leaf(fs_info->tree_root, path);
b64ec075
TM
2817 if (ret < 0) {
2818 goto out;
2819 } else if (ret > 0) {
2820 ret = -EUCLEAN;
2821 goto out;
2822 }
2823 }
2824
2825 leaf = path->nodes[0];
2826 slot = path->slots[0];
2827 btrfs_item_key_to_cpu(leaf, &key, slot);
2828 if (key.objectid == subvol_info->treeid &&
2829 key.type == BTRFS_ROOT_BACKREF_KEY) {
2830 subvol_info->parent_id = key.offset;
2831
2832 rref = btrfs_item_ptr(leaf, slot, struct btrfs_root_ref);
2833 subvol_info->dirid = btrfs_root_ref_dirid(leaf, rref);
2834
2835 item_off = btrfs_item_ptr_offset(leaf, slot)
2836 + sizeof(struct btrfs_root_ref);
3212fa14 2837 item_len = btrfs_item_size(leaf, slot)
b64ec075
TM
2838 - sizeof(struct btrfs_root_ref);
2839 read_extent_buffer(leaf, subvol_info->name,
2840 item_off, item_len);
2841 } else {
2842 ret = -ENOENT;
2843 goto out;
2844 }
2845 }
2846
2847 if (copy_to_user(argp, subvol_info, sizeof(*subvol_info)))
2848 ret = -EFAULT;
2849
2850out:
00246528 2851 btrfs_put_root(root);
04734e84 2852out_free:
b64ec075 2853 btrfs_free_path(path);
b091f7fe 2854 kfree(subvol_info);
b64ec075
TM
2855 return ret;
2856}
2857
42e4b520
TM
2858/*
2859 * Return ROOT_REF information of the subvolume containing this inode
2860 * except the subvolume name.
2861 */
2862static int btrfs_ioctl_get_subvol_rootref(struct file *file, void __user *argp)
2863{
2864 struct btrfs_ioctl_get_subvol_rootref_args *rootrefs;
2865 struct btrfs_root_ref *rref;
2866 struct btrfs_root *root;
2867 struct btrfs_path *path;
2868 struct btrfs_key key;
2869 struct extent_buffer *leaf;
2870 struct inode *inode;
2871 u64 objectid;
2872 int slot;
2873 int ret;
2874 u8 found;
2875
2876 path = btrfs_alloc_path();
2877 if (!path)
2878 return -ENOMEM;
2879
2880 rootrefs = memdup_user(argp, sizeof(*rootrefs));
2881 if (IS_ERR(rootrefs)) {
2882 btrfs_free_path(path);
2883 return PTR_ERR(rootrefs);
2884 }
2885
2886 inode = file_inode(file);
2887 root = BTRFS_I(inode)->root->fs_info->tree_root;
2888 objectid = BTRFS_I(inode)->root->root_key.objectid;
2889
2890 key.objectid = objectid;
2891 key.type = BTRFS_ROOT_REF_KEY;
2892 key.offset = rootrefs->min_treeid;
2893 found = 0;
2894
2895 ret = btrfs_search_slot(NULL, root, &key, path, 0, 0);
2896 if (ret < 0) {
2897 goto out;
2898 } else if (path->slots[0] >=
2899 btrfs_header_nritems(path->nodes[0])) {
2900 ret = btrfs_next_leaf(root, path);
2901 if (ret < 0) {
2902 goto out;
2903 } else if (ret > 0) {
2904 ret = -EUCLEAN;
2905 goto out;
2906 }
2907 }
2908 while (1) {
2909 leaf = path->nodes[0];
2910 slot = path->slots[0];
2911
2912 btrfs_item_key_to_cpu(leaf, &key, slot);
2913 if (key.objectid != objectid || key.type != BTRFS_ROOT_REF_KEY) {
2914 ret = 0;
2915 goto out;
2916 }
2917
2918 if (found == BTRFS_MAX_ROOTREF_BUFFER_NUM) {
2919 ret = -EOVERFLOW;
2920 goto out;
2921 }
2922
2923 rref = btrfs_item_ptr(leaf, slot, struct btrfs_root_ref);
2924 rootrefs->rootref[found].treeid = key.offset;
2925 rootrefs->rootref[found].dirid =
2926 btrfs_root_ref_dirid(leaf, rref);
2927 found++;
2928
2929 ret = btrfs_next_item(root, path);
2930 if (ret < 0) {
2931 goto out;
2932 } else if (ret > 0) {
2933 ret = -EUCLEAN;
2934 goto out;
2935 }
2936 }
2937
2938out:
2939 if (!ret || ret == -EOVERFLOW) {
2940 rootrefs->num_items = found;
2941 /* update min_treeid for next search */
2942 if (found)
2943 rootrefs->min_treeid =
2944 rootrefs->rootref[found - 1].treeid + 1;
2945 if (copy_to_user(argp, rootrefs, sizeof(*rootrefs)))
2946 ret = -EFAULT;
2947 }
2948
2949 kfree(rootrefs);
2950 btrfs_free_path(path);
2951
2952 return ret;
2953}
2954
76dda93c 2955static noinline int btrfs_ioctl_snap_destroy(struct file *file,
949964c9
MPS
2956 void __user *arg,
2957 bool destroy_v2)
76dda93c 2958{
54563d41 2959 struct dentry *parent = file->f_path.dentry;
0b246afa 2960 struct btrfs_fs_info *fs_info = btrfs_sb(parent->d_sb);
76dda93c 2961 struct dentry *dentry;
2b0143b5 2962 struct inode *dir = d_inode(parent);
76dda93c
YZ
2963 struct inode *inode;
2964 struct btrfs_root *root = BTRFS_I(dir)->root;
2965 struct btrfs_root *dest = NULL;
949964c9
MPS
2966 struct btrfs_ioctl_vol_args *vol_args = NULL;
2967 struct btrfs_ioctl_vol_args_v2 *vol_args2 = NULL;
c4ed533b 2968 struct user_namespace *mnt_userns = file_mnt_user_ns(file);
949964c9
MPS
2969 char *subvol_name, *subvol_name_ptr = NULL;
2970 int subvol_namelen;
76dda93c 2971 int err = 0;
949964c9 2972 bool destroy_parent = false;
76dda93c 2973
949964c9
MPS
2974 if (destroy_v2) {
2975 vol_args2 = memdup_user(arg, sizeof(*vol_args2));
2976 if (IS_ERR(vol_args2))
2977 return PTR_ERR(vol_args2);
325c50e3 2978
949964c9
MPS
2979 if (vol_args2->flags & ~BTRFS_SUBVOL_DELETE_ARGS_MASK) {
2980 err = -EOPNOTSUPP;
2981 goto out;
2982 }
76dda93c 2983
949964c9
MPS
2984 /*
2985 * If SPEC_BY_ID is not set, we are looking for the subvolume by
2986 * name, same as v1 currently does.
2987 */
2988 if (!(vol_args2->flags & BTRFS_SUBVOL_SPEC_BY_ID)) {
2989 vol_args2->name[BTRFS_SUBVOL_NAME_MAX] = 0;
2990 subvol_name = vol_args2->name;
2991
2992 err = mnt_want_write_file(file);
2993 if (err)
2994 goto out;
2995 } else {
aabb34e7 2996 struct inode *old_dir;
c4ed533b 2997
949964c9
MPS
2998 if (vol_args2->subvolid < BTRFS_FIRST_FREE_OBJECTID) {
2999 err = -EINVAL;
3000 goto out;
3001 }
3002
3003 err = mnt_want_write_file(file);
3004 if (err)
3005 goto out;
3006
3007 dentry = btrfs_get_dentry(fs_info->sb,
3008 BTRFS_FIRST_FREE_OBJECTID,
3009 vol_args2->subvolid, 0, 0);
3010 if (IS_ERR(dentry)) {
3011 err = PTR_ERR(dentry);
3012 goto out_drop_write;
3013 }
3014
3015 /*
3016 * Change the default parent since the subvolume being
3017 * deleted can be outside of the current mount point.
3018 */
3019 parent = btrfs_get_parent(dentry);
3020
3021 /*
3022 * At this point dentry->d_name can point to '/' if the
3023 * subvolume we want to destroy is outsite of the
3024 * current mount point, so we need to release the
3025 * current dentry and execute the lookup to return a new
3026 * one with ->d_name pointing to the
3027 * <mount point>/subvol_name.
3028 */
3029 dput(dentry);
3030 if (IS_ERR(parent)) {
3031 err = PTR_ERR(parent);
3032 goto out_drop_write;
3033 }
aabb34e7 3034 old_dir = dir;
949964c9
MPS
3035 dir = d_inode(parent);
3036
3037 /*
3038 * If v2 was used with SPEC_BY_ID, a new parent was
3039 * allocated since the subvolume can be outside of the
3040 * current mount point. Later on we need to release this
3041 * new parent dentry.
3042 */
3043 destroy_parent = true;
3044
aabb34e7
CB
3045 /*
3046 * On idmapped mounts, deletion via subvolid is
3047 * restricted to subvolumes that are immediate
3048 * ancestors of the inode referenced by the file
3049 * descriptor in the ioctl. Otherwise the idmapping
3050 * could potentially be abused to delete subvolumes
3051 * anywhere in the filesystem the user wouldn't be able
3052 * to delete without an idmapped mount.
3053 */
3054 if (old_dir != dir && mnt_userns != &init_user_ns) {
3055 err = -EOPNOTSUPP;
3056 goto free_parent;
3057 }
3058
949964c9
MPS
3059 subvol_name_ptr = btrfs_get_subvol_name_from_objectid(
3060 fs_info, vol_args2->subvolid);
3061 if (IS_ERR(subvol_name_ptr)) {
3062 err = PTR_ERR(subvol_name_ptr);
3063 goto free_parent;
3064 }
1a9fd417 3065 /* subvol_name_ptr is already nul terminated */
949964c9
MPS
3066 subvol_name = (char *)kbasename(subvol_name_ptr);
3067 }
3068 } else {
3069 vol_args = memdup_user(arg, sizeof(*vol_args));
3070 if (IS_ERR(vol_args))
3071 return PTR_ERR(vol_args);
3072
3073 vol_args->name[BTRFS_PATH_NAME_MAX] = 0;
3074 subvol_name = vol_args->name;
3075
3076 err = mnt_want_write_file(file);
3077 if (err)
3078 goto out;
76dda93c
YZ
3079 }
3080
949964c9 3081 subvol_namelen = strlen(subvol_name);
76dda93c 3082
949964c9
MPS
3083 if (strchr(subvol_name, '/') ||
3084 strncmp(subvol_name, "..", subvol_namelen) == 0) {
3085 err = -EINVAL;
3086 goto free_subvol_name;
3087 }
3088
3089 if (!S_ISDIR(dir->i_mode)) {
3090 err = -ENOTDIR;
3091 goto free_subvol_name;
3092 }
521e0546 3093
00235411
AV
3094 err = down_write_killable_nested(&dir->i_rwsem, I_MUTEX_PARENT);
3095 if (err == -EINTR)
949964c9 3096 goto free_subvol_name;
c4ed533b 3097 dentry = lookup_one(mnt_userns, subvol_name, parent, subvol_namelen);
76dda93c
YZ
3098 if (IS_ERR(dentry)) {
3099 err = PTR_ERR(dentry);
3100 goto out_unlock_dir;
3101 }
3102
2b0143b5 3103 if (d_really_is_negative(dentry)) {
76dda93c
YZ
3104 err = -ENOENT;
3105 goto out_dput;
3106 }
3107
2b0143b5 3108 inode = d_inode(dentry);
4260f7c7 3109 dest = BTRFS_I(inode)->root;
67871254 3110 if (!capable(CAP_SYS_ADMIN)) {
4260f7c7
SW
3111 /*
3112 * Regular user. Only allow this with a special mount
3113 * option, when the user has write+exec access to the
3114 * subvol root, and when rmdir(2) would have been
3115 * allowed.
3116 *
3117 * Note that this is _not_ check that the subvol is
3118 * empty or doesn't contain data that we wouldn't
3119 * otherwise be able to delete.
3120 *
3121 * Users who want to delete empty subvols should try
3122 * rmdir(2).
3123 */
3124 err = -EPERM;
0b246afa 3125 if (!btrfs_test_opt(fs_info, USER_SUBVOL_RM_ALLOWED))
4260f7c7
SW
3126 goto out_dput;
3127
3128 /*
3129 * Do not allow deletion if the parent dir is the same
3130 * as the dir to be deleted. That means the ioctl
3131 * must be called on the dentry referencing the root
3132 * of the subvol, not a random directory contained
3133 * within it.
3134 */
3135 err = -EINVAL;
3136 if (root == dest)
3137 goto out_dput;
3138
c4ed533b 3139 err = inode_permission(mnt_userns, inode, MAY_WRITE | MAY_EXEC);
4260f7c7
SW
3140 if (err)
3141 goto out_dput;
4260f7c7
SW
3142 }
3143
5c39da5b 3144 /* check if subvolume may be deleted by a user */
c4ed533b 3145 err = btrfs_may_delete(mnt_userns, dir, dentry, 1);
5c39da5b
MX
3146 if (err)
3147 goto out_dput;
3148
4a0cc7ca 3149 if (btrfs_ino(BTRFS_I(inode)) != BTRFS_FIRST_FREE_OBJECTID) {
76dda93c
YZ
3150 err = -EINVAL;
3151 goto out_dput;
3152 }
3153
64708539 3154 btrfs_inode_lock(inode, 0);
f60a2364 3155 err = btrfs_delete_subvolume(dir, dentry);
64708539 3156 btrfs_inode_unlock(inode, 0);
46008d9d
AG
3157 if (!err) {
3158 fsnotify_rmdir(dir, dentry);
76dda93c 3159 d_delete(dentry);
46008d9d 3160 }
fa6ac876 3161
76dda93c
YZ
3162out_dput:
3163 dput(dentry);
3164out_unlock_dir:
64708539 3165 btrfs_inode_unlock(dir, 0);
949964c9
MPS
3166free_subvol_name:
3167 kfree(subvol_name_ptr);
3168free_parent:
3169 if (destroy_parent)
3170 dput(parent);
00235411 3171out_drop_write:
2a79f17e 3172 mnt_drop_write_file(file);
76dda93c 3173out:
949964c9 3174 kfree(vol_args2);
76dda93c
YZ
3175 kfree(vol_args);
3176 return err;
3177}
3178
1e701a32 3179static int btrfs_ioctl_defrag(struct file *file, void __user *argp)
f46b5a66 3180{
496ad9aa 3181 struct inode *inode = file_inode(file);
f46b5a66 3182 struct btrfs_root *root = BTRFS_I(inode)->root;
c853a578 3183 struct btrfs_ioctl_defrag_range_args range = {0};
c146afad
YZ
3184 int ret;
3185
25122d15
ID
3186 ret = mnt_want_write_file(file);
3187 if (ret)
3188 return ret;
b83cc969 3189
25122d15
ID
3190 if (btrfs_root_readonly(root)) {
3191 ret = -EROFS;
3192 goto out;
5ac00add 3193 }
f46b5a66
CH
3194
3195 switch (inode->i_mode & S_IFMT) {
3196 case S_IFDIR:
e441d54d
CM
3197 if (!capable(CAP_SYS_ADMIN)) {
3198 ret = -EPERM;
3199 goto out;
3200 }
de78b51a 3201 ret = btrfs_defrag_root(root);
f46b5a66
CH
3202 break;
3203 case S_IFREG:
616d374e
AB
3204 /*
3205 * Note that this does not check the file descriptor for write
3206 * access. This prevents defragmenting executables that are
3207 * running and allows defrag on files open in read-only mode.
3208 */
3209 if (!capable(CAP_SYS_ADMIN) &&
47291baa 3210 inode_permission(&init_user_ns, inode, MAY_WRITE)) {
616d374e 3211 ret = -EPERM;
e441d54d
CM
3212 goto out;
3213 }
1e701a32 3214
1e701a32 3215 if (argp) {
c853a578 3216 if (copy_from_user(&range, argp, sizeof(range))) {
1e701a32 3217 ret = -EFAULT;
683be16e 3218 goto out;
1e701a32
CM
3219 }
3220 /* compression requires us to start the IO */
c853a578
GR
3221 if ((range.flags & BTRFS_DEFRAG_RANGE_COMPRESS)) {
3222 range.flags |= BTRFS_DEFRAG_RANGE_START_IO;
3223 range.extent_thresh = (u32)-1;
1e701a32
CM
3224 }
3225 } else {
3226 /* the rest are all set to zero by kzalloc */
c853a578 3227 range.len = (u64)-1;
1e701a32 3228 }
1ccc2e8a 3229 ret = btrfs_defrag_file(file_inode(file), &file->f_ra,
c853a578 3230 &range, BTRFS_OLDEST_GENERATION, 0);
4cb5300b
CM
3231 if (ret > 0)
3232 ret = 0;
f46b5a66 3233 break;
8929ecfa
YZ
3234 default:
3235 ret = -EINVAL;
f46b5a66 3236 }
e441d54d 3237out:
25122d15 3238 mnt_drop_write_file(file);
e441d54d 3239 return ret;
f46b5a66
CH
3240}
3241
2ff7e61e 3242static long btrfs_ioctl_add_dev(struct btrfs_fs_info *fs_info, void __user *arg)
f46b5a66
CH
3243{
3244 struct btrfs_ioctl_vol_args *vol_args;
a174c0a2 3245 bool restore_op = false;
f46b5a66
CH
3246 int ret;
3247
e441d54d
CM
3248 if (!capable(CAP_SYS_ADMIN))
3249 return -EPERM;
3250
a174c0a2
NB
3251 if (!btrfs_exclop_start(fs_info, BTRFS_EXCLOP_DEV_ADD)) {
3252 if (!btrfs_exclop_start_try_lock(fs_info, BTRFS_EXCLOP_DEV_ADD))
3253 return BTRFS_ERROR_DEV_EXCL_RUN_IN_PROGRESS;
3254
3255 /*
3256 * We can do the device add because we have a paused balanced,
3257 * change the exclusive op type and remember we should bring
3258 * back the paused balance
3259 */
3260 fs_info->exclusive_operation = BTRFS_EXCLOP_DEV_ADD;
3261 btrfs_exclop_start_unlock(fs_info);
3262 restore_op = true;
3263 }
c9e9f97b 3264
dae7b665 3265 vol_args = memdup_user(arg, sizeof(*vol_args));
c9e9f97b
ID
3266 if (IS_ERR(vol_args)) {
3267 ret = PTR_ERR(vol_args);
3268 goto out;
3269 }
f46b5a66 3270
5516e595 3271 vol_args->name[BTRFS_PATH_NAME_MAX] = '\0';
2ff7e61e 3272 ret = btrfs_init_new_device(fs_info, vol_args->name);
f46b5a66 3273
43d20761 3274 if (!ret)
0b246afa 3275 btrfs_info(fs_info, "disk added %s", vol_args->name);
43d20761 3276
f46b5a66 3277 kfree(vol_args);
c9e9f97b 3278out:
a174c0a2
NB
3279 if (restore_op)
3280 btrfs_exclop_balance(fs_info, BTRFS_EXCLOP_BALANCE_PAUSED);
3281 else
3282 btrfs_exclop_finish(fs_info);
f46b5a66
CH
3283 return ret;
3284}
3285
6b526ed7 3286static long btrfs_ioctl_rm_dev_v2(struct file *file, void __user *arg)
f46b5a66 3287{
1a15eb72 3288 BTRFS_DEV_LOOKUP_ARGS(args);
0b246afa
JM
3289 struct inode *inode = file_inode(file);
3290 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
6b526ed7 3291 struct btrfs_ioctl_vol_args_v2 *vol_args;
3fa421de
JB
3292 struct block_device *bdev = NULL;
3293 fmode_t mode;
f46b5a66 3294 int ret;
67ae34b6 3295 bool cancel = false;
f46b5a66 3296
e441d54d
CM
3297 if (!capable(CAP_SYS_ADMIN))
3298 return -EPERM;
3299
dae7b665 3300 vol_args = memdup_user(arg, sizeof(*vol_args));
d815b3f2
DC
3301 if (IS_ERR(vol_args))
3302 return PTR_ERR(vol_args);
f46b5a66 3303
748449cd 3304 if (vol_args->flags & ~BTRFS_DEVICE_REMOVE_ARGS_MASK) {
fd4e994b
OS
3305 ret = -EOPNOTSUPP;
3306 goto out;
3307 }
1a15eb72 3308
67ae34b6 3309 vol_args->name[BTRFS_SUBVOL_NAME_MAX] = '\0';
1a15eb72
JB
3310 if (vol_args->flags & BTRFS_DEVICE_SPEC_BY_ID) {
3311 args.devid = vol_args->devid;
3312 } else if (!strcmp("cancel", vol_args->name)) {
67ae34b6 3313 cancel = true;
1a15eb72
JB
3314 } else {
3315 ret = btrfs_get_dev_args_from_path(fs_info, &args, vol_args->name);
3316 if (ret)
3317 goto out;
3318 }
3319
3320 ret = mnt_want_write_file(file);
3321 if (ret)
3322 goto out;
f46b5a66 3323
67ae34b6
DS
3324 ret = exclop_start_or_cancel_reloc(fs_info, BTRFS_EXCLOP_DEV_REMOVE,
3325 cancel);
3326 if (ret)
1a15eb72 3327 goto err_drop;
183860f6 3328
1a15eb72
JB
3329 /* Exclusive operation is now claimed */
3330 ret = btrfs_rm_device(fs_info, &args, &bdev, &mode);
67ae34b6 3331
c3e1f96c 3332 btrfs_exclop_finish(fs_info);
183860f6 3333
6b526ed7 3334 if (!ret) {
735654ea 3335 if (vol_args->flags & BTRFS_DEVICE_SPEC_BY_ID)
0b246afa 3336 btrfs_info(fs_info, "device deleted: id %llu",
6b526ed7
AJ
3337 vol_args->devid);
3338 else
0b246afa 3339 btrfs_info(fs_info, "device deleted: %s",
6b526ed7
AJ
3340 vol_args->name);
3341 }
c47ca32d 3342err_drop:
4ac20c70 3343 mnt_drop_write_file(file);
3fa421de
JB
3344 if (bdev)
3345 blkdev_put(bdev, mode);
1a15eb72
JB
3346out:
3347 btrfs_put_dev_args_from_path(&args);
3348 kfree(vol_args);
f46b5a66
CH
3349 return ret;
3350}
3351
da24927b 3352static long btrfs_ioctl_rm_dev(struct file *file, void __user *arg)
f46b5a66 3353{
1a15eb72 3354 BTRFS_DEV_LOOKUP_ARGS(args);
0b246afa
JM
3355 struct inode *inode = file_inode(file);
3356 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
f46b5a66 3357 struct btrfs_ioctl_vol_args *vol_args;
3fa421de
JB
3358 struct block_device *bdev = NULL;
3359 fmode_t mode;
f46b5a66 3360 int ret;
37b45995 3361 bool cancel = false;
f46b5a66 3362
e441d54d
CM
3363 if (!capable(CAP_SYS_ADMIN))
3364 return -EPERM;
3365
58d7bbf8 3366 vol_args = memdup_user(arg, sizeof(*vol_args));
1a15eb72
JB
3367 if (IS_ERR(vol_args))
3368 return PTR_ERR(vol_args);
3369
58d7bbf8 3370 vol_args->name[BTRFS_PATH_NAME_MAX] = '\0';
1a15eb72
JB
3371 if (!strcmp("cancel", vol_args->name)) {
3372 cancel = true;
3373 } else {
3374 ret = btrfs_get_dev_args_from_path(fs_info, &args, vol_args->name);
3375 if (ret)
3376 goto out;
3377 }
3378
3379 ret = mnt_want_write_file(file);
3380 if (ret)
3381 goto out;
67ae34b6
DS
3382
3383 ret = exclop_start_or_cancel_reloc(fs_info, BTRFS_EXCLOP_DEV_REMOVE,
3384 cancel);
3385 if (ret == 0) {
1a15eb72 3386 ret = btrfs_rm_device(fs_info, &args, &bdev, &mode);
67ae34b6
DS
3387 if (!ret)
3388 btrfs_info(fs_info, "disk deleted %s", vol_args->name);
3389 btrfs_exclop_finish(fs_info);
3390 }
183860f6 3391
4ac20c70 3392 mnt_drop_write_file(file);
3fa421de
JB
3393 if (bdev)
3394 blkdev_put(bdev, mode);
1a15eb72
JB
3395out:
3396 btrfs_put_dev_args_from_path(&args);
3397 kfree(vol_args);
f46b5a66
CH
3398 return ret;
3399}
3400
2ff7e61e
JM
3401static long btrfs_ioctl_fs_info(struct btrfs_fs_info *fs_info,
3402 void __user *arg)
475f6387 3403{
027ed2f0 3404 struct btrfs_ioctl_fs_info_args *fi_args;
475f6387 3405 struct btrfs_device *device;
0b246afa 3406 struct btrfs_fs_devices *fs_devices = fs_info->fs_devices;
137c5418 3407 u64 flags_in;
027ed2f0 3408 int ret = 0;
475f6387 3409
137c5418
JT
3410 fi_args = memdup_user(arg, sizeof(*fi_args));
3411 if (IS_ERR(fi_args))
3412 return PTR_ERR(fi_args);
3413
3414 flags_in = fi_args->flags;
3415 memset(fi_args, 0, sizeof(*fi_args));
027ed2f0 3416
d03262c7 3417 rcu_read_lock();
027ed2f0 3418 fi_args->num_devices = fs_devices->num_devices;
475f6387 3419
d03262c7 3420 list_for_each_entry_rcu(device, &fs_devices->devices, dev_list) {
027ed2f0
LZ
3421 if (device->devid > fi_args->max_id)
3422 fi_args->max_id = device->devid;
475f6387 3423 }
d03262c7 3424 rcu_read_unlock();
475f6387 3425
de37aa51 3426 memcpy(&fi_args->fsid, fs_devices->fsid, sizeof(fi_args->fsid));
bea7eafd
OS
3427 fi_args->nodesize = fs_info->nodesize;
3428 fi_args->sectorsize = fs_info->sectorsize;
3429 fi_args->clone_alignment = fs_info->sectorsize;
80a773fb 3430
137c5418
JT
3431 if (flags_in & BTRFS_FS_INFO_FLAG_CSUM_INFO) {
3432 fi_args->csum_type = btrfs_super_csum_type(fs_info->super_copy);
3433 fi_args->csum_size = btrfs_super_csum_size(fs_info->super_copy);
3434 fi_args->flags |= BTRFS_FS_INFO_FLAG_CSUM_INFO;
3435 }
3436
0fb408a5
JT
3437 if (flags_in & BTRFS_FS_INFO_FLAG_GENERATION) {
3438 fi_args->generation = fs_info->generation;
3439 fi_args->flags |= BTRFS_FS_INFO_FLAG_GENERATION;
3440 }
3441
49bac897
JT
3442 if (flags_in & BTRFS_FS_INFO_FLAG_METADATA_UUID) {
3443 memcpy(&fi_args->metadata_uuid, fs_devices->metadata_uuid,
3444 sizeof(fi_args->metadata_uuid));
3445 fi_args->flags |= BTRFS_FS_INFO_FLAG_METADATA_UUID;
3446 }
3447
027ed2f0
LZ
3448 if (copy_to_user(arg, fi_args, sizeof(*fi_args)))
3449 ret = -EFAULT;
475f6387 3450
027ed2f0
LZ
3451 kfree(fi_args);
3452 return ret;
475f6387
JS
3453}
3454
2ff7e61e
JM
3455static long btrfs_ioctl_dev_info(struct btrfs_fs_info *fs_info,
3456 void __user *arg)
475f6387 3457{
562d7b15 3458 BTRFS_DEV_LOOKUP_ARGS(args);
475f6387
JS
3459 struct btrfs_ioctl_dev_info_args *di_args;
3460 struct btrfs_device *dev;
475f6387 3461 int ret = 0;
475f6387 3462
475f6387
JS
3463 di_args = memdup_user(arg, sizeof(*di_args));
3464 if (IS_ERR(di_args))
3465 return PTR_ERR(di_args);
3466
562d7b15 3467 args.devid = di_args->devid;
dd5f9615 3468 if (!btrfs_is_empty_uuid(di_args->uuid))
562d7b15 3469 args.uuid = di_args->uuid;
475f6387 3470
c5593ca3 3471 rcu_read_lock();
562d7b15 3472 dev = btrfs_find_device(fs_info->fs_devices, &args);
475f6387
JS
3473 if (!dev) {
3474 ret = -ENODEV;
3475 goto out;
3476 }
3477
3478 di_args->devid = dev->devid;
7cc8e58d
MX
3479 di_args->bytes_used = btrfs_device_get_bytes_used(dev);
3480 di_args->total_bytes = btrfs_device_get_total_bytes(dev);
475f6387 3481 memcpy(di_args->uuid, dev->uuid, sizeof(di_args->uuid));
a27202fb 3482 if (dev->name) {
672d5990
MT
3483 strncpy(di_args->path, rcu_str_deref(dev->name),
3484 sizeof(di_args->path) - 1);
a27202fb
JM
3485 di_args->path[sizeof(di_args->path) - 1] = 0;
3486 } else {
99ba55ad 3487 di_args->path[0] = '\0';
a27202fb 3488 }
475f6387
JS
3489
3490out:
c5593ca3 3491 rcu_read_unlock();
475f6387
JS
3492 if (ret == 0 && copy_to_user(arg, di_args, sizeof(*di_args)))
3493 ret = -EFAULT;
3494
3495 kfree(di_args);
3496 return ret;
3497}
3498
6ef5ed0d
JB
3499static long btrfs_ioctl_default_subvol(struct file *file, void __user *argp)
3500{
496ad9aa 3501 struct inode *inode = file_inode(file);
0b246afa 3502 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
6ef5ed0d
JB
3503 struct btrfs_root *root = BTRFS_I(inode)->root;
3504 struct btrfs_root *new_root;
3505 struct btrfs_dir_item *di;
3506 struct btrfs_trans_handle *trans;
2a2b5d62 3507 struct btrfs_path *path = NULL;
6ef5ed0d 3508 struct btrfs_disk_key disk_key;
6ef5ed0d
JB
3509 u64 objectid = 0;
3510 u64 dir_id;
3c04ce01 3511 int ret;
6ef5ed0d
JB
3512
3513 if (!capable(CAP_SYS_ADMIN))
3514 return -EPERM;
3515
3c04ce01
MX
3516 ret = mnt_want_write_file(file);
3517 if (ret)
3518 return ret;
3519
3520 if (copy_from_user(&objectid, argp, sizeof(objectid))) {
3521 ret = -EFAULT;
3522 goto out;
3523 }
6ef5ed0d
JB
3524
3525 if (!objectid)
1cecf579 3526 objectid = BTRFS_FS_TREE_OBJECTID;
6ef5ed0d 3527
56e9357a 3528 new_root = btrfs_get_fs_root(fs_info, objectid, true);
3c04ce01
MX
3529 if (IS_ERR(new_root)) {
3530 ret = PTR_ERR(new_root);
3531 goto out;
3532 }
2a2b5d62
JB
3533 if (!is_fstree(new_root->root_key.objectid)) {
3534 ret = -ENOENT;
3535 goto out_free;
3536 }
6ef5ed0d 3537
6ef5ed0d 3538 path = btrfs_alloc_path();
3c04ce01
MX
3539 if (!path) {
3540 ret = -ENOMEM;
2a2b5d62 3541 goto out_free;
3c04ce01 3542 }
6ef5ed0d
JB
3543
3544 trans = btrfs_start_transaction(root, 1);
98d5dc13 3545 if (IS_ERR(trans)) {
3c04ce01 3546 ret = PTR_ERR(trans);
2a2b5d62 3547 goto out_free;
6ef5ed0d
JB
3548 }
3549
0b246afa
JM
3550 dir_id = btrfs_super_root_dir(fs_info->super_copy);
3551 di = btrfs_lookup_dir_item(trans, fs_info->tree_root, path,
6ef5ed0d 3552 dir_id, "default", 7, 1);
cf1e99a4 3553 if (IS_ERR_OR_NULL(di)) {
2a2b5d62 3554 btrfs_release_path(path);
3a45bb20 3555 btrfs_end_transaction(trans);
0b246afa 3556 btrfs_err(fs_info,
5d163e0e 3557 "Umm, you don't have the default diritem, this isn't going to work");
3c04ce01 3558 ret = -ENOENT;
2a2b5d62 3559 goto out_free;
6ef5ed0d
JB
3560 }
3561
3562 btrfs_cpu_key_to_disk(&disk_key, &new_root->root_key);
3563 btrfs_set_dir_item_key(path->nodes[0], di, &disk_key);
3564 btrfs_mark_buffer_dirty(path->nodes[0]);
2a2b5d62 3565 btrfs_release_path(path);
6ef5ed0d 3566
0b246afa 3567 btrfs_set_fs_incompat(fs_info, DEFAULT_SUBVOL);
3a45bb20 3568 btrfs_end_transaction(trans);
2a2b5d62 3569out_free:
00246528 3570 btrfs_put_root(new_root);
2a2b5d62 3571 btrfs_free_path(path);
3c04ce01
MX
3572out:
3573 mnt_drop_write_file(file);
3574 return ret;
6ef5ed0d
JB
3575}
3576
c065f5b1
SY
3577static void get_block_group_info(struct list_head *groups_list,
3578 struct btrfs_ioctl_space_info *space)
bf5fc093 3579{
32da5386 3580 struct btrfs_block_group *block_group;
bf5fc093
JB
3581
3582 space->total_bytes = 0;
3583 space->used_bytes = 0;
3584 space->flags = 0;
3585 list_for_each_entry(block_group, groups_list, list) {
3586 space->flags = block_group->flags;
b3470b5d 3587 space->total_bytes += block_group->length;
bf38be65 3588 space->used_bytes += block_group->used;
bf5fc093
JB
3589 }
3590}
3591
2ff7e61e
JM
3592static long btrfs_ioctl_space_info(struct btrfs_fs_info *fs_info,
3593 void __user *arg)
1406e432
JB
3594{
3595 struct btrfs_ioctl_space_args space_args;
3596 struct btrfs_ioctl_space_info space;
3597 struct btrfs_ioctl_space_info *dest;
7fde62bf 3598 struct btrfs_ioctl_space_info *dest_orig;
13f2696f 3599 struct btrfs_ioctl_space_info __user *user_dest;
1406e432 3600 struct btrfs_space_info *info;
315d8e98
CIK
3601 static const u64 types[] = {
3602 BTRFS_BLOCK_GROUP_DATA,
3603 BTRFS_BLOCK_GROUP_SYSTEM,
3604 BTRFS_BLOCK_GROUP_METADATA,
3605 BTRFS_BLOCK_GROUP_DATA | BTRFS_BLOCK_GROUP_METADATA
3606 };
bf5fc093 3607 int num_types = 4;
7fde62bf 3608 int alloc_size;
1406e432 3609 int ret = 0;
51788b1b 3610 u64 slot_count = 0;
bf5fc093 3611 int i, c;
1406e432
JB
3612
3613 if (copy_from_user(&space_args,
3614 (struct btrfs_ioctl_space_args __user *)arg,
3615 sizeof(space_args)))
3616 return -EFAULT;
3617
bf5fc093
JB
3618 for (i = 0; i < num_types; i++) {
3619 struct btrfs_space_info *tmp;
3620
3621 info = NULL;
72804905 3622 list_for_each_entry(tmp, &fs_info->space_info, list) {
bf5fc093
JB
3623 if (tmp->flags == types[i]) {
3624 info = tmp;
3625 break;
3626 }
3627 }
bf5fc093
JB
3628
3629 if (!info)
3630 continue;
3631
3632 down_read(&info->groups_sem);
3633 for (c = 0; c < BTRFS_NR_RAID_TYPES; c++) {
3634 if (!list_empty(&info->block_groups[c]))
3635 slot_count++;
3636 }
3637 up_read(&info->groups_sem);
3638 }
7fde62bf 3639
36523e95
DS
3640 /*
3641 * Global block reserve, exported as a space_info
3642 */
3643 slot_count++;
3644
7fde62bf
CM
3645 /* space_slots == 0 means they are asking for a count */
3646 if (space_args.space_slots == 0) {
3647 space_args.total_spaces = slot_count;
3648 goto out;
3649 }
bf5fc093 3650
51788b1b 3651 slot_count = min_t(u64, space_args.space_slots, slot_count);
bf5fc093 3652
7fde62bf 3653 alloc_size = sizeof(*dest) * slot_count;
bf5fc093 3654
7fde62bf
CM
3655 /* we generally have at most 6 or so space infos, one for each raid
3656 * level. So, a whole page should be more than enough for everyone
3657 */
09cbfeaf 3658 if (alloc_size > PAGE_SIZE)
7fde62bf
CM
3659 return -ENOMEM;
3660
1406e432 3661 space_args.total_spaces = 0;
8d2db785 3662 dest = kmalloc(alloc_size, GFP_KERNEL);
7fde62bf
CM
3663 if (!dest)
3664 return -ENOMEM;
3665 dest_orig = dest;
1406e432 3666
7fde62bf 3667 /* now we have a buffer to copy into */
bf5fc093
JB
3668 for (i = 0; i < num_types; i++) {
3669 struct btrfs_space_info *tmp;
3670
51788b1b
DR
3671 if (!slot_count)
3672 break;
3673
bf5fc093 3674 info = NULL;
72804905 3675 list_for_each_entry(tmp, &fs_info->space_info, list) {
bf5fc093
JB
3676 if (tmp->flags == types[i]) {
3677 info = tmp;
3678 break;
3679 }
3680 }
7fde62bf 3681
bf5fc093
JB
3682 if (!info)
3683 continue;
3684 down_read(&info->groups_sem);
3685 for (c = 0; c < BTRFS_NR_RAID_TYPES; c++) {
3686 if (!list_empty(&info->block_groups[c])) {
c065f5b1
SY
3687 get_block_group_info(&info->block_groups[c],
3688 &space);
bf5fc093
JB
3689 memcpy(dest, &space, sizeof(space));
3690 dest++;
3691 space_args.total_spaces++;
51788b1b 3692 slot_count--;
bf5fc093 3693 }
51788b1b
DR
3694 if (!slot_count)
3695 break;
bf5fc093
JB
3696 }
3697 up_read(&info->groups_sem);
1406e432 3698 }
1406e432 3699
36523e95
DS
3700 /*
3701 * Add global block reserve
3702 */
3703 if (slot_count) {
0b246afa 3704 struct btrfs_block_rsv *block_rsv = &fs_info->global_block_rsv;
36523e95
DS
3705
3706 spin_lock(&block_rsv->lock);
3707 space.total_bytes = block_rsv->size;
3708 space.used_bytes = block_rsv->size - block_rsv->reserved;
3709 spin_unlock(&block_rsv->lock);
3710 space.flags = BTRFS_SPACE_INFO_GLOBAL_RSV;
3711 memcpy(dest, &space, sizeof(space));
3712 space_args.total_spaces++;
3713 }
3714
2eec6c81 3715 user_dest = (struct btrfs_ioctl_space_info __user *)
7fde62bf
CM
3716 (arg + sizeof(struct btrfs_ioctl_space_args));
3717
3718 if (copy_to_user(user_dest, dest_orig, alloc_size))
3719 ret = -EFAULT;
3720
3721 kfree(dest_orig);
3722out:
3723 if (ret == 0 && copy_to_user(arg, &space_args, sizeof(space_args)))
1406e432
JB
3724 ret = -EFAULT;
3725
3726 return ret;
3727}
3728
9a8c28be
MX
3729static noinline long btrfs_ioctl_start_sync(struct btrfs_root *root,
3730 void __user *argp)
46204592 3731{
46204592
SW
3732 struct btrfs_trans_handle *trans;
3733 u64 transid;
3734
d4edf39b 3735 trans = btrfs_attach_transaction_barrier(root);
ff7c1d33
MX
3736 if (IS_ERR(trans)) {
3737 if (PTR_ERR(trans) != -ENOENT)
3738 return PTR_ERR(trans);
3739
3740 /* No running transaction, don't bother */
3741 transid = root->fs_info->last_trans_committed;
3742 goto out;
3743 }
46204592 3744 transid = trans->transid;
fdfbf020 3745 btrfs_commit_transaction_async(trans);
ff7c1d33 3746out:
46204592
SW
3747 if (argp)
3748 if (copy_to_user(argp, &transid, sizeof(transid)))
3749 return -EFAULT;
3750 return 0;
3751}
3752
2ff7e61e 3753static noinline long btrfs_ioctl_wait_sync(struct btrfs_fs_info *fs_info,
9a8c28be 3754 void __user *argp)
46204592 3755{
46204592
SW
3756 u64 transid;
3757
3758 if (argp) {
3759 if (copy_from_user(&transid, argp, sizeof(transid)))
3760 return -EFAULT;
3761 } else {
3762 transid = 0; /* current trans */
3763 }
2ff7e61e 3764 return btrfs_wait_for_commit(fs_info, transid);
46204592
SW
3765}
3766
b8e95489 3767static long btrfs_ioctl_scrub(struct file *file, void __user *arg)
475f6387 3768{
0b246afa 3769 struct btrfs_fs_info *fs_info = btrfs_sb(file_inode(file)->i_sb);
475f6387 3770 struct btrfs_ioctl_scrub_args *sa;
b8e95489 3771 int ret;
475f6387
JS
3772
3773 if (!capable(CAP_SYS_ADMIN))
3774 return -EPERM;
3775
3776 sa = memdup_user(arg, sizeof(*sa));
3777 if (IS_ERR(sa))
3778 return PTR_ERR(sa);
3779
b8e95489
MX
3780 if (!(sa->flags & BTRFS_SCRUB_READONLY)) {
3781 ret = mnt_want_write_file(file);
3782 if (ret)
3783 goto out;
3784 }
3785
0b246afa 3786 ret = btrfs_scrub_dev(fs_info, sa->devid, sa->start, sa->end,
63a212ab
SB
3787 &sa->progress, sa->flags & BTRFS_SCRUB_READONLY,
3788 0);
475f6387 3789
5afe6ce7
FM
3790 /*
3791 * Copy scrub args to user space even if btrfs_scrub_dev() returned an
3792 * error. This is important as it allows user space to know how much
3793 * progress scrub has done. For example, if scrub is canceled we get
3794 * -ECANCELED from btrfs_scrub_dev() and return that error back to user
3795 * space. Later user space can inspect the progress from the structure
3796 * btrfs_ioctl_scrub_args and resume scrub from where it left off
3797 * previously (btrfs-progs does this).
3798 * If we fail to copy the btrfs_ioctl_scrub_args structure to user space
3799 * then return -EFAULT to signal the structure was not copied or it may
3800 * be corrupt and unreliable due to a partial copy.
3801 */
3802 if (copy_to_user(arg, sa, sizeof(*sa)))
475f6387
JS
3803 ret = -EFAULT;
3804
b8e95489
MX
3805 if (!(sa->flags & BTRFS_SCRUB_READONLY))
3806 mnt_drop_write_file(file);
3807out:
475f6387
JS
3808 kfree(sa);
3809 return ret;
3810}
3811
2ff7e61e 3812static long btrfs_ioctl_scrub_cancel(struct btrfs_fs_info *fs_info)
475f6387
JS
3813{
3814 if (!capable(CAP_SYS_ADMIN))
3815 return -EPERM;
3816
2ff7e61e 3817 return btrfs_scrub_cancel(fs_info);
475f6387
JS
3818}
3819
2ff7e61e 3820static long btrfs_ioctl_scrub_progress(struct btrfs_fs_info *fs_info,
475f6387
JS
3821 void __user *arg)
3822{
3823 struct btrfs_ioctl_scrub_args *sa;
3824 int ret;
3825
3826 if (!capable(CAP_SYS_ADMIN))
3827 return -EPERM;
3828
3829 sa = memdup_user(arg, sizeof(*sa));
3830 if (IS_ERR(sa))
3831 return PTR_ERR(sa);
3832
2ff7e61e 3833 ret = btrfs_scrub_progress(fs_info, sa->devid, &sa->progress);
475f6387 3834
4fa99b00 3835 if (ret == 0 && copy_to_user(arg, sa, sizeof(*sa)))
475f6387
JS
3836 ret = -EFAULT;
3837
3838 kfree(sa);
3839 return ret;
3840}
3841
2ff7e61e 3842static long btrfs_ioctl_get_dev_stats(struct btrfs_fs_info *fs_info,
b27f7c0c 3843 void __user *arg)
c11d2c23
SB
3844{
3845 struct btrfs_ioctl_get_dev_stats *sa;
3846 int ret;
3847
c11d2c23
SB
3848 sa = memdup_user(arg, sizeof(*sa));
3849 if (IS_ERR(sa))
3850 return PTR_ERR(sa);
3851
b27f7c0c
DS
3852 if ((sa->flags & BTRFS_DEV_STATS_RESET) && !capable(CAP_SYS_ADMIN)) {
3853 kfree(sa);
3854 return -EPERM;
3855 }
3856
2ff7e61e 3857 ret = btrfs_get_dev_stats(fs_info, sa);
c11d2c23 3858
eee99577 3859 if (ret == 0 && copy_to_user(arg, sa, sizeof(*sa)))
c11d2c23
SB
3860 ret = -EFAULT;
3861
3862 kfree(sa);
3863 return ret;
3864}
3865
2ff7e61e
JM
3866static long btrfs_ioctl_dev_replace(struct btrfs_fs_info *fs_info,
3867 void __user *arg)
3f6bcfbd
SB
3868{
3869 struct btrfs_ioctl_dev_replace_args *p;
3870 int ret;
3871
3872 if (!capable(CAP_SYS_ADMIN))
3873 return -EPERM;
3874
3875 p = memdup_user(arg, sizeof(*p));
3876 if (IS_ERR(p))
3877 return PTR_ERR(p);
3878
3879 switch (p->cmd) {
3880 case BTRFS_IOCTL_DEV_REPLACE_CMD_START:
bc98a42c 3881 if (sb_rdonly(fs_info->sb)) {
adfa97cb
ID
3882 ret = -EROFS;
3883 goto out;
3884 }
c3e1f96c 3885 if (!btrfs_exclop_start(fs_info, BTRFS_EXCLOP_DEV_REPLACE)) {
e57138b3 3886 ret = BTRFS_ERROR_DEV_EXCL_RUN_IN_PROGRESS;
3f6bcfbd 3887 } else {
2ff7e61e 3888 ret = btrfs_dev_replace_by_ioctl(fs_info, p);
c3e1f96c 3889 btrfs_exclop_finish(fs_info);
3f6bcfbd
SB
3890 }
3891 break;
3892 case BTRFS_IOCTL_DEV_REPLACE_CMD_STATUS:
0b246afa 3893 btrfs_dev_replace_status(fs_info, p);
3f6bcfbd
SB
3894 ret = 0;
3895 break;
3896 case BTRFS_IOCTL_DEV_REPLACE_CMD_CANCEL:
17d202b9 3897 p->result = btrfs_dev_replace_cancel(fs_info);
97282031 3898 ret = 0;
3f6bcfbd
SB
3899 break;
3900 default:
3901 ret = -EINVAL;
3902 break;
3903 }
3904
d3a53286 3905 if ((ret == 0 || ret == -ECANCELED) && copy_to_user(arg, p, sizeof(*p)))
3f6bcfbd 3906 ret = -EFAULT;
adfa97cb 3907out:
3f6bcfbd
SB
3908 kfree(p);
3909 return ret;
3910}
3911
d7728c96
JS
3912static long btrfs_ioctl_ino_to_path(struct btrfs_root *root, void __user *arg)
3913{
3914 int ret = 0;
3915 int i;
740c3d22 3916 u64 rel_ptr;
d7728c96 3917 int size;
806468f8 3918 struct btrfs_ioctl_ino_path_args *ipa = NULL;
d7728c96
JS
3919 struct inode_fs_paths *ipath = NULL;
3920 struct btrfs_path *path;
3921
82b22ac8 3922 if (!capable(CAP_DAC_READ_SEARCH))
d7728c96
JS
3923 return -EPERM;
3924
3925 path = btrfs_alloc_path();
3926 if (!path) {
3927 ret = -ENOMEM;
3928 goto out;
3929 }
3930
3931 ipa = memdup_user(arg, sizeof(*ipa));
3932 if (IS_ERR(ipa)) {
3933 ret = PTR_ERR(ipa);
3934 ipa = NULL;
3935 goto out;
3936 }
3937
3938 size = min_t(u32, ipa->size, 4096);
3939 ipath = init_ipath(size, root, path);
3940 if (IS_ERR(ipath)) {
3941 ret = PTR_ERR(ipath);
3942 ipath = NULL;
3943 goto out;
3944 }
3945
3946 ret = paths_from_inode(ipa->inum, ipath);
3947 if (ret < 0)
3948 goto out;
3949
3950 for (i = 0; i < ipath->fspath->elem_cnt; ++i) {
745c4d8e
JM
3951 rel_ptr = ipath->fspath->val[i] -
3952 (u64)(unsigned long)ipath->fspath->val;
740c3d22 3953 ipath->fspath->val[i] = rel_ptr;
d7728c96
JS
3954 }
3955
718dc5fa
OS
3956 ret = copy_to_user((void __user *)(unsigned long)ipa->fspath,
3957 ipath->fspath, size);
d7728c96
JS
3958 if (ret) {
3959 ret = -EFAULT;
3960 goto out;
3961 }
3962
3963out:
3964 btrfs_free_path(path);
3965 free_ipath(ipath);
3966 kfree(ipa);
3967
3968 return ret;
3969}
3970
3971static int build_ino_list(u64 inum, u64 offset, u64 root, void *ctx)
3972{
3973 struct btrfs_data_container *inodes = ctx;
3974 const size_t c = 3 * sizeof(u64);
3975
3976 if (inodes->bytes_left >= c) {
3977 inodes->bytes_left -= c;
3978 inodes->val[inodes->elem_cnt] = inum;
3979 inodes->val[inodes->elem_cnt + 1] = offset;
3980 inodes->val[inodes->elem_cnt + 2] = root;
3981 inodes->elem_cnt += 3;
3982 } else {
3983 inodes->bytes_missing += c - inodes->bytes_left;
3984 inodes->bytes_left = 0;
3985 inodes->elem_missed += 3;
3986 }
3987
3988 return 0;
3989}
3990
2ff7e61e 3991static long btrfs_ioctl_logical_to_ino(struct btrfs_fs_info *fs_info,
d24a67b2 3992 void __user *arg, int version)
d7728c96
JS
3993{
3994 int ret = 0;
3995 int size;
d7728c96
JS
3996 struct btrfs_ioctl_logical_ino_args *loi;
3997 struct btrfs_data_container *inodes = NULL;
3998 struct btrfs_path *path = NULL;
d24a67b2 3999 bool ignore_offset;
d7728c96
JS
4000
4001 if (!capable(CAP_SYS_ADMIN))
4002 return -EPERM;
4003
4004 loi = memdup_user(arg, sizeof(*loi));
7b9ea627
SV
4005 if (IS_ERR(loi))
4006 return PTR_ERR(loi);
d7728c96 4007
d24a67b2
ZB
4008 if (version == 1) {
4009 ignore_offset = false;
b115e3bc 4010 size = min_t(u32, loi->size, SZ_64K);
d24a67b2
ZB
4011 } else {
4012 /* All reserved bits must be 0 for now */
4013 if (memchr_inv(loi->reserved, 0, sizeof(loi->reserved))) {
4014 ret = -EINVAL;
4015 goto out_loi;
4016 }
4017 /* Only accept flags we have defined so far */
4018 if (loi->flags & ~(BTRFS_LOGICAL_INO_ARGS_IGNORE_OFFSET)) {
4019 ret = -EINVAL;
4020 goto out_loi;
4021 }
4022 ignore_offset = loi->flags & BTRFS_LOGICAL_INO_ARGS_IGNORE_OFFSET;
b115e3bc 4023 size = min_t(u32, loi->size, SZ_16M);
d24a67b2
ZB
4024 }
4025
d7728c96
JS
4026 path = btrfs_alloc_path();
4027 if (!path) {
4028 ret = -ENOMEM;
4029 goto out;
4030 }
4031
d7728c96
JS
4032 inodes = init_data_container(size);
4033 if (IS_ERR(inodes)) {
4034 ret = PTR_ERR(inodes);
4035 inodes = NULL;
4036 goto out;
4037 }
4038
2ff7e61e 4039 ret = iterate_inodes_from_logical(loi->logical, fs_info, path,
d24a67b2 4040 build_ino_list, inodes, ignore_offset);
df031f07 4041 if (ret == -EINVAL)
d7728c96
JS
4042 ret = -ENOENT;
4043 if (ret < 0)
4044 goto out;
4045
718dc5fa
OS
4046 ret = copy_to_user((void __user *)(unsigned long)loi->inodes, inodes,
4047 size);
d7728c96
JS
4048 if (ret)
4049 ret = -EFAULT;
4050
4051out:
4052 btrfs_free_path(path);
f54de068 4053 kvfree(inodes);
d24a67b2 4054out_loi:
d7728c96
JS
4055 kfree(loi);
4056
4057 return ret;
4058}
4059
008ef096 4060void btrfs_update_ioctl_balance_args(struct btrfs_fs_info *fs_info,
c9e9f97b
ID
4061 struct btrfs_ioctl_balance_args *bargs)
4062{
4063 struct btrfs_balance_control *bctl = fs_info->balance_ctl;
4064
4065 bargs->flags = bctl->flags;
4066
3009a62f 4067 if (test_bit(BTRFS_FS_BALANCE_RUNNING, &fs_info->flags))
837d5b6e
ID
4068 bargs->state |= BTRFS_BALANCE_STATE_RUNNING;
4069 if (atomic_read(&fs_info->balance_pause_req))
4070 bargs->state |= BTRFS_BALANCE_STATE_PAUSE_REQ;
a7e99c69
ID
4071 if (atomic_read(&fs_info->balance_cancel_req))
4072 bargs->state |= BTRFS_BALANCE_STATE_CANCEL_REQ;
837d5b6e 4073
c9e9f97b
ID
4074 memcpy(&bargs->data, &bctl->data, sizeof(bargs->data));
4075 memcpy(&bargs->meta, &bctl->meta, sizeof(bargs->meta));
4076 memcpy(&bargs->sys, &bctl->sys, sizeof(bargs->sys));
19a39dce 4077
008ef096
DS
4078 spin_lock(&fs_info->balance_lock);
4079 memcpy(&bargs->stat, &bctl->stat, sizeof(bargs->stat));
4080 spin_unlock(&fs_info->balance_lock);
c9e9f97b
ID
4081}
4082
9ba1f6e4 4083static long btrfs_ioctl_balance(struct file *file, void __user *arg)
c9e9f97b 4084{
496ad9aa 4085 struct btrfs_root *root = BTRFS_I(file_inode(file))->root;
c9e9f97b
ID
4086 struct btrfs_fs_info *fs_info = root->fs_info;
4087 struct btrfs_ioctl_balance_args *bargs;
4088 struct btrfs_balance_control *bctl;
ed0fb78f 4089 bool need_unlock; /* for mut. excl. ops lock */
c9e9f97b
ID
4090 int ret;
4091
6c405b24
NB
4092 if (!arg)
4093 btrfs_warn(fs_info,
4094 "IOC_BALANCE ioctl (v1) is deprecated and will be removed in kernel 5.18");
4095
c9e9f97b
ID
4096 if (!capable(CAP_SYS_ADMIN))
4097 return -EPERM;
4098
e54bfa31 4099 ret = mnt_want_write_file(file);
9ba1f6e4
LB
4100 if (ret)
4101 return ret;
4102
ed0fb78f 4103again:
c3e1f96c 4104 if (btrfs_exclop_start(fs_info, BTRFS_EXCLOP_BALANCE)) {
ed0fb78f
ID
4105 mutex_lock(&fs_info->balance_mutex);
4106 need_unlock = true;
4107 goto locked;
4108 }
4109
4110 /*
01327610 4111 * mut. excl. ops lock is locked. Three possibilities:
ed0fb78f
ID
4112 * (1) some other op is running
4113 * (2) balance is running
4114 * (3) balance is paused -- special case (think resume)
4115 */
c9e9f97b 4116 mutex_lock(&fs_info->balance_mutex);
ed0fb78f
ID
4117 if (fs_info->balance_ctl) {
4118 /* this is either (2) or (3) */
3009a62f 4119 if (!test_bit(BTRFS_FS_BALANCE_RUNNING, &fs_info->flags)) {
ed0fb78f 4120 mutex_unlock(&fs_info->balance_mutex);
dccdb07b
DS
4121 /*
4122 * Lock released to allow other waiters to continue,
4123 * we'll reexamine the status again.
4124 */
ed0fb78f
ID
4125 mutex_lock(&fs_info->balance_mutex);
4126
4127 if (fs_info->balance_ctl &&
3009a62f 4128 !test_bit(BTRFS_FS_BALANCE_RUNNING, &fs_info->flags)) {
ed0fb78f
ID
4129 /* this is (3) */
4130 need_unlock = false;
4131 goto locked;
4132 }
4133
4134 mutex_unlock(&fs_info->balance_mutex);
ed0fb78f
ID
4135 goto again;
4136 } else {
4137 /* this is (2) */
4138 mutex_unlock(&fs_info->balance_mutex);
4139 ret = -EINPROGRESS;
4140 goto out;
4141 }
4142 } else {
4143 /* this is (1) */
4144 mutex_unlock(&fs_info->balance_mutex);
e57138b3 4145 ret = BTRFS_ERROR_DEV_EXCL_RUN_IN_PROGRESS;
ed0fb78f
ID
4146 goto out;
4147 }
4148
4149locked:
c9e9f97b
ID
4150
4151 if (arg) {
4152 bargs = memdup_user(arg, sizeof(*bargs));
4153 if (IS_ERR(bargs)) {
4154 ret = PTR_ERR(bargs);
ed0fb78f 4155 goto out_unlock;
c9e9f97b 4156 }
de322263
ID
4157
4158 if (bargs->flags & BTRFS_BALANCE_RESUME) {
4159 if (!fs_info->balance_ctl) {
4160 ret = -ENOTCONN;
4161 goto out_bargs;
4162 }
4163
4164 bctl = fs_info->balance_ctl;
4165 spin_lock(&fs_info->balance_lock);
4166 bctl->flags |= BTRFS_BALANCE_RESUME;
4167 spin_unlock(&fs_info->balance_lock);
efc0e69c 4168 btrfs_exclop_balance(fs_info, BTRFS_EXCLOP_BALANCE);
de322263
ID
4169
4170 goto do_balance;
4171 }
c9e9f97b
ID
4172 } else {
4173 bargs = NULL;
4174 }
4175
ed0fb78f 4176 if (fs_info->balance_ctl) {
837d5b6e
ID
4177 ret = -EINPROGRESS;
4178 goto out_bargs;
4179 }
4180
8d2db785 4181 bctl = kzalloc(sizeof(*bctl), GFP_KERNEL);
c9e9f97b
ID
4182 if (!bctl) {
4183 ret = -ENOMEM;
4184 goto out_bargs;
4185 }
4186
c9e9f97b
ID
4187 if (arg) {
4188 memcpy(&bctl->data, &bargs->data, sizeof(bctl->data));
4189 memcpy(&bctl->meta, &bargs->meta, sizeof(bctl->meta));
4190 memcpy(&bctl->sys, &bargs->sys, sizeof(bctl->sys));
4191
4192 bctl->flags = bargs->flags;
f43ffb60
ID
4193 } else {
4194 /* balance everything - no filters */
4195 bctl->flags |= BTRFS_BALANCE_TYPE_MASK;
c9e9f97b
ID
4196 }
4197
8eb93459
DS
4198 if (bctl->flags & ~(BTRFS_BALANCE_ARGS_MASK | BTRFS_BALANCE_TYPE_MASK)) {
4199 ret = -EINVAL;
0f89abf5 4200 goto out_bctl;
8eb93459
DS
4201 }
4202
de322263 4203do_balance:
c9e9f97b 4204 /*
c3e1f96c
GR
4205 * Ownership of bctl and exclusive operation goes to btrfs_balance.
4206 * bctl is freed in reset_balance_state, or, if restriper was paused
4207 * all the way until unmount, in free_fs_info. The flag should be
4208 * cleared after reset_balance_state.
c9e9f97b 4209 */
ed0fb78f
ID
4210 need_unlock = false;
4211
6fcf6e2b 4212 ret = btrfs_balance(fs_info, bctl, bargs);
0f89abf5 4213 bctl = NULL;
ed0fb78f 4214
d00c2d9c 4215 if ((ret == 0 || ret == -ECANCELED) && arg) {
c9e9f97b
ID
4216 if (copy_to_user(arg, bargs, sizeof(*bargs)))
4217 ret = -EFAULT;
4218 }
4219
0f89abf5
CE
4220out_bctl:
4221 kfree(bctl);
c9e9f97b
ID
4222out_bargs:
4223 kfree(bargs);
ed0fb78f 4224out_unlock:
c9e9f97b 4225 mutex_unlock(&fs_info->balance_mutex);
ed0fb78f 4226 if (need_unlock)
c3e1f96c 4227 btrfs_exclop_finish(fs_info);
ed0fb78f 4228out:
e54bfa31 4229 mnt_drop_write_file(file);
c9e9f97b
ID
4230 return ret;
4231}
4232
2ff7e61e 4233static long btrfs_ioctl_balance_ctl(struct btrfs_fs_info *fs_info, int cmd)
837d5b6e
ID
4234{
4235 if (!capable(CAP_SYS_ADMIN))
4236 return -EPERM;
4237
4238 switch (cmd) {
4239 case BTRFS_BALANCE_CTL_PAUSE:
0b246afa 4240 return btrfs_pause_balance(fs_info);
a7e99c69 4241 case BTRFS_BALANCE_CTL_CANCEL:
0b246afa 4242 return btrfs_cancel_balance(fs_info);
837d5b6e
ID
4243 }
4244
4245 return -EINVAL;
4246}
4247
2ff7e61e 4248static long btrfs_ioctl_balance_progress(struct btrfs_fs_info *fs_info,
19a39dce
ID
4249 void __user *arg)
4250{
19a39dce
ID
4251 struct btrfs_ioctl_balance_args *bargs;
4252 int ret = 0;
4253
4254 if (!capable(CAP_SYS_ADMIN))
4255 return -EPERM;
4256
4257 mutex_lock(&fs_info->balance_mutex);
4258 if (!fs_info->balance_ctl) {
4259 ret = -ENOTCONN;
4260 goto out;
4261 }
4262
8d2db785 4263 bargs = kzalloc(sizeof(*bargs), GFP_KERNEL);
19a39dce
ID
4264 if (!bargs) {
4265 ret = -ENOMEM;
4266 goto out;
4267 }
4268
008ef096 4269 btrfs_update_ioctl_balance_args(fs_info, bargs);
19a39dce
ID
4270
4271 if (copy_to_user(arg, bargs, sizeof(*bargs)))
4272 ret = -EFAULT;
4273
4274 kfree(bargs);
4275out:
4276 mutex_unlock(&fs_info->balance_mutex);
4277 return ret;
4278}
4279
905b0dda 4280static long btrfs_ioctl_quota_ctl(struct file *file, void __user *arg)
5d13a37b 4281{
0b246afa
JM
4282 struct inode *inode = file_inode(file);
4283 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
5d13a37b 4284 struct btrfs_ioctl_quota_ctl_args *sa;
5d13a37b 4285 int ret;
5d13a37b
AJ
4286
4287 if (!capable(CAP_SYS_ADMIN))
4288 return -EPERM;
4289
905b0dda
MX
4290 ret = mnt_want_write_file(file);
4291 if (ret)
4292 return ret;
5d13a37b
AJ
4293
4294 sa = memdup_user(arg, sizeof(*sa));
905b0dda
MX
4295 if (IS_ERR(sa)) {
4296 ret = PTR_ERR(sa);
4297 goto drop_write;
4298 }
5d13a37b 4299
0b246afa 4300 down_write(&fs_info->subvol_sem);
5d13a37b
AJ
4301
4302 switch (sa->cmd) {
4303 case BTRFS_QUOTA_CTL_ENABLE:
340f1aa2 4304 ret = btrfs_quota_enable(fs_info);
5d13a37b
AJ
4305 break;
4306 case BTRFS_QUOTA_CTL_DISABLE:
340f1aa2 4307 ret = btrfs_quota_disable(fs_info);
5d13a37b 4308 break;
5d13a37b
AJ
4309 default:
4310 ret = -EINVAL;
4311 break;
4312 }
4313
5d13a37b 4314 kfree(sa);
0b246afa 4315 up_write(&fs_info->subvol_sem);
905b0dda
MX
4316drop_write:
4317 mnt_drop_write_file(file);
5d13a37b
AJ
4318 return ret;
4319}
4320
905b0dda 4321static long btrfs_ioctl_qgroup_assign(struct file *file, void __user *arg)
5d13a37b 4322{
0b246afa
JM
4323 struct inode *inode = file_inode(file);
4324 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
4325 struct btrfs_root *root = BTRFS_I(inode)->root;
5d13a37b
AJ
4326 struct btrfs_ioctl_qgroup_assign_args *sa;
4327 struct btrfs_trans_handle *trans;
4328 int ret;
4329 int err;
4330
4331 if (!capable(CAP_SYS_ADMIN))
4332 return -EPERM;
4333
905b0dda
MX
4334 ret = mnt_want_write_file(file);
4335 if (ret)
4336 return ret;
5d13a37b
AJ
4337
4338 sa = memdup_user(arg, sizeof(*sa));
905b0dda
MX
4339 if (IS_ERR(sa)) {
4340 ret = PTR_ERR(sa);
4341 goto drop_write;
4342 }
5d13a37b
AJ
4343
4344 trans = btrfs_join_transaction(root);
4345 if (IS_ERR(trans)) {
4346 ret = PTR_ERR(trans);
4347 goto out;
4348 }
4349
5d13a37b 4350 if (sa->assign) {
9f8a6ce6 4351 ret = btrfs_add_qgroup_relation(trans, sa->src, sa->dst);
5d13a37b 4352 } else {
39616c27 4353 ret = btrfs_del_qgroup_relation(trans, sa->src, sa->dst);
5d13a37b
AJ
4354 }
4355
e082f563 4356 /* update qgroup status and info */
280f8bd2 4357 err = btrfs_run_qgroups(trans);
e082f563 4358 if (err < 0)
0b246afa
JM
4359 btrfs_handle_fs_error(fs_info, err,
4360 "failed to update qgroup status and info");
3a45bb20 4361 err = btrfs_end_transaction(trans);
5d13a37b
AJ
4362 if (err && !ret)
4363 ret = err;
4364
4365out:
4366 kfree(sa);
905b0dda
MX
4367drop_write:
4368 mnt_drop_write_file(file);
5d13a37b
AJ
4369 return ret;
4370}
4371
905b0dda 4372static long btrfs_ioctl_qgroup_create(struct file *file, void __user *arg)
5d13a37b 4373{
0b246afa 4374 struct inode *inode = file_inode(file);
0b246afa 4375 struct btrfs_root *root = BTRFS_I(inode)->root;
5d13a37b
AJ
4376 struct btrfs_ioctl_qgroup_create_args *sa;
4377 struct btrfs_trans_handle *trans;
4378 int ret;
4379 int err;
4380
4381 if (!capable(CAP_SYS_ADMIN))
4382 return -EPERM;
4383
905b0dda
MX
4384 ret = mnt_want_write_file(file);
4385 if (ret)
4386 return ret;
5d13a37b
AJ
4387
4388 sa = memdup_user(arg, sizeof(*sa));
905b0dda
MX
4389 if (IS_ERR(sa)) {
4390 ret = PTR_ERR(sa);
4391 goto drop_write;
4392 }
5d13a37b 4393
d86e56cf
MX
4394 if (!sa->qgroupid) {
4395 ret = -EINVAL;
4396 goto out;
4397 }
4398
5d13a37b
AJ
4399 trans = btrfs_join_transaction(root);
4400 if (IS_ERR(trans)) {
4401 ret = PTR_ERR(trans);
4402 goto out;
4403 }
4404
5d13a37b 4405 if (sa->create) {
49a05ecd 4406 ret = btrfs_create_qgroup(trans, sa->qgroupid);
5d13a37b 4407 } else {
3efbee1d 4408 ret = btrfs_remove_qgroup(trans, sa->qgroupid);
5d13a37b
AJ
4409 }
4410
3a45bb20 4411 err = btrfs_end_transaction(trans);
5d13a37b
AJ
4412 if (err && !ret)
4413 ret = err;
4414
4415out:
4416 kfree(sa);
905b0dda
MX
4417drop_write:
4418 mnt_drop_write_file(file);
5d13a37b
AJ
4419 return ret;
4420}
4421
905b0dda 4422static long btrfs_ioctl_qgroup_limit(struct file *file, void __user *arg)
5d13a37b 4423{
0b246afa 4424 struct inode *inode = file_inode(file);
0b246afa 4425 struct btrfs_root *root = BTRFS_I(inode)->root;
5d13a37b
AJ
4426 struct btrfs_ioctl_qgroup_limit_args *sa;
4427 struct btrfs_trans_handle *trans;
4428 int ret;
4429 int err;
4430 u64 qgroupid;
4431
4432 if (!capable(CAP_SYS_ADMIN))
4433 return -EPERM;
4434
905b0dda
MX
4435 ret = mnt_want_write_file(file);
4436 if (ret)
4437 return ret;
5d13a37b
AJ
4438
4439 sa = memdup_user(arg, sizeof(*sa));
905b0dda
MX
4440 if (IS_ERR(sa)) {
4441 ret = PTR_ERR(sa);
4442 goto drop_write;
4443 }
5d13a37b
AJ
4444
4445 trans = btrfs_join_transaction(root);
4446 if (IS_ERR(trans)) {
4447 ret = PTR_ERR(trans);
4448 goto out;
4449 }
4450
4451 qgroupid = sa->qgroupid;
4452 if (!qgroupid) {
4453 /* take the current subvol as qgroup */
4454 qgroupid = root->root_key.objectid;
4455 }
4456
f0042d5e 4457 ret = btrfs_limit_qgroup(trans, qgroupid, &sa->lim);
5d13a37b 4458
3a45bb20 4459 err = btrfs_end_transaction(trans);
5d13a37b
AJ
4460 if (err && !ret)
4461 ret = err;
4462
4463out:
4464 kfree(sa);
905b0dda
MX
4465drop_write:
4466 mnt_drop_write_file(file);
5d13a37b
AJ
4467 return ret;
4468}
4469
2f232036
JS
4470static long btrfs_ioctl_quota_rescan(struct file *file, void __user *arg)
4471{
0b246afa
JM
4472 struct inode *inode = file_inode(file);
4473 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
2f232036
JS
4474 struct btrfs_ioctl_quota_rescan_args *qsa;
4475 int ret;
4476
4477 if (!capable(CAP_SYS_ADMIN))
4478 return -EPERM;
4479
4480 ret = mnt_want_write_file(file);
4481 if (ret)
4482 return ret;
4483
4484 qsa = memdup_user(arg, sizeof(*qsa));
4485 if (IS_ERR(qsa)) {
4486 ret = PTR_ERR(qsa);
4487 goto drop_write;
4488 }
4489
4490 if (qsa->flags) {
4491 ret = -EINVAL;
4492 goto out;
4493 }
4494
0b246afa 4495 ret = btrfs_qgroup_rescan(fs_info);
2f232036
JS
4496
4497out:
4498 kfree(qsa);
4499drop_write:
4500 mnt_drop_write_file(file);
4501 return ret;
4502}
4503
b929c1d8
MPS
4504static long btrfs_ioctl_quota_rescan_status(struct btrfs_fs_info *fs_info,
4505 void __user *arg)
2f232036 4506{
0afb603a 4507 struct btrfs_ioctl_quota_rescan_args qsa = {0};
2f232036
JS
4508
4509 if (!capable(CAP_SYS_ADMIN))
4510 return -EPERM;
4511
0b246afa 4512 if (fs_info->qgroup_flags & BTRFS_QGROUP_STATUS_FLAG_RESCAN) {
0afb603a
GR
4513 qsa.flags = 1;
4514 qsa.progress = fs_info->qgroup_rescan_progress.objectid;
2f232036
JS
4515 }
4516
0afb603a 4517 if (copy_to_user(arg, &qsa, sizeof(qsa)))
991a3dae 4518 return -EFAULT;
2f232036 4519
991a3dae 4520 return 0;
2f232036
JS
4521}
4522
b929c1d8
MPS
4523static long btrfs_ioctl_quota_rescan_wait(struct btrfs_fs_info *fs_info,
4524 void __user *arg)
57254b6e 4525{
57254b6e
JS
4526 if (!capable(CAP_SYS_ADMIN))
4527 return -EPERM;
4528
0b246afa 4529 return btrfs_qgroup_wait_for_completion(fs_info, true);
57254b6e
JS
4530}
4531
abccd00f 4532static long _btrfs_ioctl_set_received_subvol(struct file *file,
e4fed17a 4533 struct user_namespace *mnt_userns,
abccd00f 4534 struct btrfs_ioctl_received_subvol_args *sa)
8ea05e3a 4535{
496ad9aa 4536 struct inode *inode = file_inode(file);
0b246afa 4537 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
8ea05e3a
AB
4538 struct btrfs_root *root = BTRFS_I(inode)->root;
4539 struct btrfs_root_item *root_item = &root->root_item;
4540 struct btrfs_trans_handle *trans;
95582b00 4541 struct timespec64 ct = current_time(inode);
8ea05e3a 4542 int ret = 0;
dd5f9615 4543 int received_uuid_changed;
8ea05e3a 4544
e4fed17a 4545 if (!inode_owner_or_capable(mnt_userns, inode))
bd60ea0f
DS
4546 return -EPERM;
4547
8ea05e3a
AB
4548 ret = mnt_want_write_file(file);
4549 if (ret < 0)
4550 return ret;
4551
0b246afa 4552 down_write(&fs_info->subvol_sem);
8ea05e3a 4553
4a0cc7ca 4554 if (btrfs_ino(BTRFS_I(inode)) != BTRFS_FIRST_FREE_OBJECTID) {
8ea05e3a
AB
4555 ret = -EINVAL;
4556 goto out;
4557 }
4558
4559 if (btrfs_root_readonly(root)) {
4560 ret = -EROFS;
4561 goto out;
4562 }
4563
dd5f9615
SB
4564 /*
4565 * 1 - root item
4566 * 2 - uuid items (received uuid + subvol uuid)
4567 */
4568 trans = btrfs_start_transaction(root, 3);
8ea05e3a
AB
4569 if (IS_ERR(trans)) {
4570 ret = PTR_ERR(trans);
4571 trans = NULL;
4572 goto out;
4573 }
4574
4575 sa->rtransid = trans->transid;
4576 sa->rtime.sec = ct.tv_sec;
4577 sa->rtime.nsec = ct.tv_nsec;
4578
dd5f9615
SB
4579 received_uuid_changed = memcmp(root_item->received_uuid, sa->uuid,
4580 BTRFS_UUID_SIZE);
4581 if (received_uuid_changed &&
d87ff758 4582 !btrfs_is_empty_uuid(root_item->received_uuid)) {
d1957791 4583 ret = btrfs_uuid_tree_remove(trans, root_item->received_uuid,
d87ff758
NB
4584 BTRFS_UUID_KEY_RECEIVED_SUBVOL,
4585 root->root_key.objectid);
4586 if (ret && ret != -ENOENT) {
4587 btrfs_abort_transaction(trans, ret);
4588 btrfs_end_transaction(trans);
4589 goto out;
4590 }
4591 }
8ea05e3a
AB
4592 memcpy(root_item->received_uuid, sa->uuid, BTRFS_UUID_SIZE);
4593 btrfs_set_root_stransid(root_item, sa->stransid);
4594 btrfs_set_root_rtransid(root_item, sa->rtransid);
3cae210f
QW
4595 btrfs_set_stack_timespec_sec(&root_item->stime, sa->stime.sec);
4596 btrfs_set_stack_timespec_nsec(&root_item->stime, sa->stime.nsec);
4597 btrfs_set_stack_timespec_sec(&root_item->rtime, sa->rtime.sec);
4598 btrfs_set_stack_timespec_nsec(&root_item->rtime, sa->rtime.nsec);
8ea05e3a 4599
0b246afa 4600 ret = btrfs_update_root(trans, fs_info->tree_root,
8ea05e3a
AB
4601 &root->root_key, &root->root_item);
4602 if (ret < 0) {
3a45bb20 4603 btrfs_end_transaction(trans);
8ea05e3a 4604 goto out;
dd5f9615
SB
4605 }
4606 if (received_uuid_changed && !btrfs_is_empty_uuid(sa->uuid)) {
cdb345a8 4607 ret = btrfs_uuid_tree_add(trans, sa->uuid,
dd5f9615
SB
4608 BTRFS_UUID_KEY_RECEIVED_SUBVOL,
4609 root->root_key.objectid);
4610 if (ret < 0 && ret != -EEXIST) {
66642832 4611 btrfs_abort_transaction(trans, ret);
efd38150 4612 btrfs_end_transaction(trans);
8ea05e3a 4613 goto out;
dd5f9615
SB
4614 }
4615 }
3a45bb20 4616 ret = btrfs_commit_transaction(trans);
abccd00f 4617out:
0b246afa 4618 up_write(&fs_info->subvol_sem);
abccd00f
HM
4619 mnt_drop_write_file(file);
4620 return ret;
4621}
4622
4623#ifdef CONFIG_64BIT
4624static long btrfs_ioctl_set_received_subvol_32(struct file *file,
4625 void __user *arg)
4626{
4627 struct btrfs_ioctl_received_subvol_args_32 *args32 = NULL;
4628 struct btrfs_ioctl_received_subvol_args *args64 = NULL;
4629 int ret = 0;
4630
4631 args32 = memdup_user(arg, sizeof(*args32));
7b9ea627
SV
4632 if (IS_ERR(args32))
4633 return PTR_ERR(args32);
abccd00f 4634
8d2db785 4635 args64 = kmalloc(sizeof(*args64), GFP_KERNEL);
84dbeb87
DC
4636 if (!args64) {
4637 ret = -ENOMEM;
abccd00f
HM
4638 goto out;
4639 }
4640
4641 memcpy(args64->uuid, args32->uuid, BTRFS_UUID_SIZE);
4642 args64->stransid = args32->stransid;
4643 args64->rtransid = args32->rtransid;
4644 args64->stime.sec = args32->stime.sec;
4645 args64->stime.nsec = args32->stime.nsec;
4646 args64->rtime.sec = args32->rtime.sec;
4647 args64->rtime.nsec = args32->rtime.nsec;
4648 args64->flags = args32->flags;
4649
e4fed17a 4650 ret = _btrfs_ioctl_set_received_subvol(file, file_mnt_user_ns(file), args64);
abccd00f
HM
4651 if (ret)
4652 goto out;
4653
4654 memcpy(args32->uuid, args64->uuid, BTRFS_UUID_SIZE);
4655 args32->stransid = args64->stransid;
4656 args32->rtransid = args64->rtransid;
4657 args32->stime.sec = args64->stime.sec;
4658 args32->stime.nsec = args64->stime.nsec;
4659 args32->rtime.sec = args64->rtime.sec;
4660 args32->rtime.nsec = args64->rtime.nsec;
4661 args32->flags = args64->flags;
4662
4663 ret = copy_to_user(arg, args32, sizeof(*args32));
4664 if (ret)
4665 ret = -EFAULT;
4666
4667out:
4668 kfree(args32);
4669 kfree(args64);
4670 return ret;
4671}
4672#endif
4673
4674static long btrfs_ioctl_set_received_subvol(struct file *file,
4675 void __user *arg)
4676{
4677 struct btrfs_ioctl_received_subvol_args *sa = NULL;
4678 int ret = 0;
4679
4680 sa = memdup_user(arg, sizeof(*sa));
7b9ea627
SV
4681 if (IS_ERR(sa))
4682 return PTR_ERR(sa);
abccd00f 4683
e4fed17a 4684 ret = _btrfs_ioctl_set_received_subvol(file, file_mnt_user_ns(file), sa);
abccd00f
HM
4685
4686 if (ret)
4687 goto out;
4688
8ea05e3a
AB
4689 ret = copy_to_user(arg, sa, sizeof(*sa));
4690 if (ret)
4691 ret = -EFAULT;
4692
4693out:
4694 kfree(sa);
8ea05e3a
AB
4695 return ret;
4696}
4697
b929c1d8
MPS
4698static int btrfs_ioctl_get_fslabel(struct btrfs_fs_info *fs_info,
4699 void __user *arg)
867ab667 4700{
a1b83ac5 4701 size_t len;
867ab667 4702 int ret;
a1b83ac5
AJ
4703 char label[BTRFS_LABEL_SIZE];
4704
0b246afa
JM
4705 spin_lock(&fs_info->super_lock);
4706 memcpy(label, fs_info->super_copy->label, BTRFS_LABEL_SIZE);
4707 spin_unlock(&fs_info->super_lock);
a1b83ac5
AJ
4708
4709 len = strnlen(label, BTRFS_LABEL_SIZE);
867ab667 4710
4711 if (len == BTRFS_LABEL_SIZE) {
0b246afa
JM
4712 btrfs_warn(fs_info,
4713 "label is too long, return the first %zu bytes",
4714 --len);
867ab667 4715 }
4716
867ab667 4717 ret = copy_to_user(arg, label, len);
867ab667 4718
4719 return ret ? -EFAULT : 0;
4720}
4721
a8bfd4ab 4722static int btrfs_ioctl_set_fslabel(struct file *file, void __user *arg)
4723{
0b246afa
JM
4724 struct inode *inode = file_inode(file);
4725 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
4726 struct btrfs_root *root = BTRFS_I(inode)->root;
4727 struct btrfs_super_block *super_block = fs_info->super_copy;
a8bfd4ab 4728 struct btrfs_trans_handle *trans;
4729 char label[BTRFS_LABEL_SIZE];
4730 int ret;
4731
4732 if (!capable(CAP_SYS_ADMIN))
4733 return -EPERM;
4734
4735 if (copy_from_user(label, arg, sizeof(label)))
4736 return -EFAULT;
4737
4738 if (strnlen(label, BTRFS_LABEL_SIZE) == BTRFS_LABEL_SIZE) {
0b246afa 4739 btrfs_err(fs_info,
5d163e0e
JM
4740 "unable to set label with more than %d bytes",
4741 BTRFS_LABEL_SIZE - 1);
a8bfd4ab 4742 return -EINVAL;
4743 }
4744
4745 ret = mnt_want_write_file(file);
4746 if (ret)
4747 return ret;
4748
a8bfd4ab 4749 trans = btrfs_start_transaction(root, 0);
4750 if (IS_ERR(trans)) {
4751 ret = PTR_ERR(trans);
4752 goto out_unlock;
4753 }
4754
0b246afa 4755 spin_lock(&fs_info->super_lock);
a8bfd4ab 4756 strcpy(super_block->label, label);
0b246afa 4757 spin_unlock(&fs_info->super_lock);
3a45bb20 4758 ret = btrfs_commit_transaction(trans);
a8bfd4ab 4759
4760out_unlock:
a8bfd4ab 4761 mnt_drop_write_file(file);
4762 return ret;
4763}
4764
2eaa055f
JM
4765#define INIT_FEATURE_FLAGS(suffix) \
4766 { .compat_flags = BTRFS_FEATURE_COMPAT_##suffix, \
4767 .compat_ro_flags = BTRFS_FEATURE_COMPAT_RO_##suffix, \
4768 .incompat_flags = BTRFS_FEATURE_INCOMPAT_##suffix }
4769
d5131b65 4770int btrfs_ioctl_get_supported_features(void __user *arg)
2eaa055f 4771{
4d4ab6d6 4772 static const struct btrfs_ioctl_feature_flags features[3] = {
2eaa055f
JM
4773 INIT_FEATURE_FLAGS(SUPP),
4774 INIT_FEATURE_FLAGS(SAFE_SET),
4775 INIT_FEATURE_FLAGS(SAFE_CLEAR)
4776 };
4777
4778 if (copy_to_user(arg, &features, sizeof(features)))
4779 return -EFAULT;
4780
4781 return 0;
4782}
4783
b929c1d8
MPS
4784static int btrfs_ioctl_get_features(struct btrfs_fs_info *fs_info,
4785 void __user *arg)
2eaa055f 4786{
0b246afa 4787 struct btrfs_super_block *super_block = fs_info->super_copy;
2eaa055f
JM
4788 struct btrfs_ioctl_feature_flags features;
4789
4790 features.compat_flags = btrfs_super_compat_flags(super_block);
4791 features.compat_ro_flags = btrfs_super_compat_ro_flags(super_block);
4792 features.incompat_flags = btrfs_super_incompat_flags(super_block);
4793
4794 if (copy_to_user(arg, &features, sizeof(features)))
4795 return -EFAULT;
4796
4797 return 0;
4798}
4799
2ff7e61e 4800static int check_feature_bits(struct btrfs_fs_info *fs_info,
3b02a68a 4801 enum btrfs_feature_set set,
2eaa055f
JM
4802 u64 change_mask, u64 flags, u64 supported_flags,
4803 u64 safe_set, u64 safe_clear)
4804{
f10152bc 4805 const char *type = btrfs_feature_set_name(set);
3b02a68a 4806 char *names;
2eaa055f
JM
4807 u64 disallowed, unsupported;
4808 u64 set_mask = flags & change_mask;
4809 u64 clear_mask = ~flags & change_mask;
4810
4811 unsupported = set_mask & ~supported_flags;
4812 if (unsupported) {
3b02a68a
JM
4813 names = btrfs_printable_features(set, unsupported);
4814 if (names) {
0b246afa
JM
4815 btrfs_warn(fs_info,
4816 "this kernel does not support the %s feature bit%s",
4817 names, strchr(names, ',') ? "s" : "");
3b02a68a
JM
4818 kfree(names);
4819 } else
0b246afa
JM
4820 btrfs_warn(fs_info,
4821 "this kernel does not support %s bits 0x%llx",
4822 type, unsupported);
2eaa055f
JM
4823 return -EOPNOTSUPP;
4824 }
4825
4826 disallowed = set_mask & ~safe_set;
4827 if (disallowed) {
3b02a68a
JM
4828 names = btrfs_printable_features(set, disallowed);
4829 if (names) {
0b246afa
JM
4830 btrfs_warn(fs_info,
4831 "can't set the %s feature bit%s while mounted",
4832 names, strchr(names, ',') ? "s" : "");
3b02a68a
JM
4833 kfree(names);
4834 } else
0b246afa
JM
4835 btrfs_warn(fs_info,
4836 "can't set %s bits 0x%llx while mounted",
4837 type, disallowed);
2eaa055f
JM
4838 return -EPERM;
4839 }
4840
4841 disallowed = clear_mask & ~safe_clear;
4842 if (disallowed) {
3b02a68a
JM
4843 names = btrfs_printable_features(set, disallowed);
4844 if (names) {
0b246afa
JM
4845 btrfs_warn(fs_info,
4846 "can't clear the %s feature bit%s while mounted",
4847 names, strchr(names, ',') ? "s" : "");
3b02a68a
JM
4848 kfree(names);
4849 } else
0b246afa
JM
4850 btrfs_warn(fs_info,
4851 "can't clear %s bits 0x%llx while mounted",
4852 type, disallowed);
2eaa055f
JM
4853 return -EPERM;
4854 }
4855
4856 return 0;
4857}
4858
2ff7e61e
JM
4859#define check_feature(fs_info, change_mask, flags, mask_base) \
4860check_feature_bits(fs_info, FEAT_##mask_base, change_mask, flags, \
2eaa055f
JM
4861 BTRFS_FEATURE_ ## mask_base ## _SUPP, \
4862 BTRFS_FEATURE_ ## mask_base ## _SAFE_SET, \
4863 BTRFS_FEATURE_ ## mask_base ## _SAFE_CLEAR)
4864
4865static int btrfs_ioctl_set_features(struct file *file, void __user *arg)
4866{
0b246afa
JM
4867 struct inode *inode = file_inode(file);
4868 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
4869 struct btrfs_root *root = BTRFS_I(inode)->root;
4870 struct btrfs_super_block *super_block = fs_info->super_copy;
2eaa055f
JM
4871 struct btrfs_ioctl_feature_flags flags[2];
4872 struct btrfs_trans_handle *trans;
4873 u64 newflags;
4874 int ret;
4875
4876 if (!capable(CAP_SYS_ADMIN))
4877 return -EPERM;
4878
4879 if (copy_from_user(flags, arg, sizeof(flags)))
4880 return -EFAULT;
4881
4882 /* Nothing to do */
4883 if (!flags[0].compat_flags && !flags[0].compat_ro_flags &&
4884 !flags[0].incompat_flags)
4885 return 0;
4886
2ff7e61e 4887 ret = check_feature(fs_info, flags[0].compat_flags,
2eaa055f
JM
4888 flags[1].compat_flags, COMPAT);
4889 if (ret)
4890 return ret;
4891
2ff7e61e 4892 ret = check_feature(fs_info, flags[0].compat_ro_flags,
2eaa055f
JM
4893 flags[1].compat_ro_flags, COMPAT_RO);
4894 if (ret)
4895 return ret;
4896
2ff7e61e 4897 ret = check_feature(fs_info, flags[0].incompat_flags,
2eaa055f
JM
4898 flags[1].incompat_flags, INCOMPAT);
4899 if (ret)
4900 return ret;
4901
7ab19625
DS
4902 ret = mnt_want_write_file(file);
4903 if (ret)
4904 return ret;
4905
8051aa1a 4906 trans = btrfs_start_transaction(root, 0);
7ab19625
DS
4907 if (IS_ERR(trans)) {
4908 ret = PTR_ERR(trans);
4909 goto out_drop_write;
4910 }
2eaa055f 4911
0b246afa 4912 spin_lock(&fs_info->super_lock);
2eaa055f
JM
4913 newflags = btrfs_super_compat_flags(super_block);
4914 newflags |= flags[0].compat_flags & flags[1].compat_flags;
4915 newflags &= ~(flags[0].compat_flags & ~flags[1].compat_flags);
4916 btrfs_set_super_compat_flags(super_block, newflags);
4917
4918 newflags = btrfs_super_compat_ro_flags(super_block);
4919 newflags |= flags[0].compat_ro_flags & flags[1].compat_ro_flags;
4920 newflags &= ~(flags[0].compat_ro_flags & ~flags[1].compat_ro_flags);
4921 btrfs_set_super_compat_ro_flags(super_block, newflags);
4922
4923 newflags = btrfs_super_incompat_flags(super_block);
4924 newflags |= flags[0].incompat_flags & flags[1].incompat_flags;
4925 newflags &= ~(flags[0].incompat_flags & ~flags[1].incompat_flags);
4926 btrfs_set_super_incompat_flags(super_block, newflags);
0b246afa 4927 spin_unlock(&fs_info->super_lock);
2eaa055f 4928
3a45bb20 4929 ret = btrfs_commit_transaction(trans);
7ab19625
DS
4930out_drop_write:
4931 mnt_drop_write_file(file);
4932
4933 return ret;
2eaa055f
JM
4934}
4935
2351f431
JB
4936static int _btrfs_ioctl_send(struct file *file, void __user *argp, bool compat)
4937{
4938 struct btrfs_ioctl_send_args *arg;
4939 int ret;
4940
4941 if (compat) {
4942#if defined(CONFIG_64BIT) && defined(CONFIG_COMPAT)
4943 struct btrfs_ioctl_send_args_32 args32;
4944
4945 ret = copy_from_user(&args32, argp, sizeof(args32));
4946 if (ret)
4947 return -EFAULT;
4948 arg = kzalloc(sizeof(*arg), GFP_KERNEL);
4949 if (!arg)
4950 return -ENOMEM;
4951 arg->send_fd = args32.send_fd;
4952 arg->clone_sources_count = args32.clone_sources_count;
4953 arg->clone_sources = compat_ptr(args32.clone_sources);
4954 arg->parent_root = args32.parent_root;
4955 arg->flags = args32.flags;
4956 memcpy(arg->reserved, args32.reserved,
4957 sizeof(args32.reserved));
4958#else
4959 return -ENOTTY;
4960#endif
4961 } else {
4962 arg = memdup_user(argp, sizeof(*arg));
4963 if (IS_ERR(arg))
4964 return PTR_ERR(arg);
4965 }
4966 ret = btrfs_ioctl_send(file, arg);
4967 kfree(arg);
4968 return ret;
4969}
4970
f46b5a66
CH
4971long btrfs_ioctl(struct file *file, unsigned int
4972 cmd, unsigned long arg)
4973{
0b246afa
JM
4974 struct inode *inode = file_inode(file);
4975 struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
4976 struct btrfs_root *root = BTRFS_I(inode)->root;
4bcabaa3 4977 void __user *argp = (void __user *)arg;
f46b5a66
CH
4978
4979 switch (cmd) {
6cbff00f
CH
4980 case FS_IOC_GETVERSION:
4981 return btrfs_ioctl_getversion(file, argp);
40cf931f 4982 case FS_IOC_GETFSLABEL:
b929c1d8 4983 return btrfs_ioctl_get_fslabel(fs_info, argp);
40cf931f
ES
4984 case FS_IOC_SETFSLABEL:
4985 return btrfs_ioctl_set_fslabel(file, argp);
f7039b1d 4986 case FITRIM:
b929c1d8 4987 return btrfs_ioctl_fitrim(fs_info, argp);
f46b5a66 4988 case BTRFS_IOC_SNAP_CREATE:
fa0d2b9b 4989 return btrfs_ioctl_snap_create(file, argp, 0);
fdfb1e4f 4990 case BTRFS_IOC_SNAP_CREATE_V2:
fa0d2b9b 4991 return btrfs_ioctl_snap_create_v2(file, argp, 0);
3de4586c 4992 case BTRFS_IOC_SUBVOL_CREATE:
fa0d2b9b 4993 return btrfs_ioctl_snap_create(file, argp, 1);
6f72c7e2
AJ
4994 case BTRFS_IOC_SUBVOL_CREATE_V2:
4995 return btrfs_ioctl_snap_create_v2(file, argp, 1);
76dda93c 4996 case BTRFS_IOC_SNAP_DESTROY:
949964c9
MPS
4997 return btrfs_ioctl_snap_destroy(file, argp, false);
4998 case BTRFS_IOC_SNAP_DESTROY_V2:
4999 return btrfs_ioctl_snap_destroy(file, argp, true);
0caa102d
LZ
5000 case BTRFS_IOC_SUBVOL_GETFLAGS:
5001 return btrfs_ioctl_subvol_getflags(file, argp);
5002 case BTRFS_IOC_SUBVOL_SETFLAGS:
5003 return btrfs_ioctl_subvol_setflags(file, argp);
6ef5ed0d
JB
5004 case BTRFS_IOC_DEFAULT_SUBVOL:
5005 return btrfs_ioctl_default_subvol(file, argp);
f46b5a66 5006 case BTRFS_IOC_DEFRAG:
1e701a32
CM
5007 return btrfs_ioctl_defrag(file, NULL);
5008 case BTRFS_IOC_DEFRAG_RANGE:
5009 return btrfs_ioctl_defrag(file, argp);
f46b5a66 5010 case BTRFS_IOC_RESIZE:
198605a8 5011 return btrfs_ioctl_resize(file, argp);
f46b5a66 5012 case BTRFS_IOC_ADD_DEV:
2ff7e61e 5013 return btrfs_ioctl_add_dev(fs_info, argp);
f46b5a66 5014 case BTRFS_IOC_RM_DEV:
da24927b 5015 return btrfs_ioctl_rm_dev(file, argp);
6b526ed7
AJ
5016 case BTRFS_IOC_RM_DEV_V2:
5017 return btrfs_ioctl_rm_dev_v2(file, argp);
475f6387 5018 case BTRFS_IOC_FS_INFO:
2ff7e61e 5019 return btrfs_ioctl_fs_info(fs_info, argp);
475f6387 5020 case BTRFS_IOC_DEV_INFO:
2ff7e61e 5021 return btrfs_ioctl_dev_info(fs_info, argp);
f46b5a66 5022 case BTRFS_IOC_BALANCE:
9ba1f6e4 5023 return btrfs_ioctl_balance(file, NULL);
ac8e9819
CM
5024 case BTRFS_IOC_TREE_SEARCH:
5025 return btrfs_ioctl_tree_search(file, argp);
cc68a8a5
GH
5026 case BTRFS_IOC_TREE_SEARCH_V2:
5027 return btrfs_ioctl_tree_search_v2(file, argp);
ac8e9819
CM
5028 case BTRFS_IOC_INO_LOOKUP:
5029 return btrfs_ioctl_ino_lookup(file, argp);
d7728c96
JS
5030 case BTRFS_IOC_INO_PATHS:
5031 return btrfs_ioctl_ino_to_path(root, argp);
5032 case BTRFS_IOC_LOGICAL_INO:
d24a67b2
ZB
5033 return btrfs_ioctl_logical_to_ino(fs_info, argp, 1);
5034 case BTRFS_IOC_LOGICAL_INO_V2:
5035 return btrfs_ioctl_logical_to_ino(fs_info, argp, 2);
1406e432 5036 case BTRFS_IOC_SPACE_INFO:
2ff7e61e 5037 return btrfs_ioctl_space_info(fs_info, argp);
9b199859
FDBM
5038 case BTRFS_IOC_SYNC: {
5039 int ret;
5040
9db4dc24 5041 ret = btrfs_start_delalloc_roots(fs_info, LONG_MAX, false);
9b199859
FDBM
5042 if (ret)
5043 return ret;
0b246afa 5044 ret = btrfs_sync_fs(inode->i_sb, 1);
2fad4e83
DS
5045 /*
5046 * The transaction thread may want to do more work,
01327610 5047 * namely it pokes the cleaner kthread that will start
2fad4e83
DS
5048 * processing uncleaned subvols.
5049 */
0b246afa 5050 wake_up_process(fs_info->transaction_kthread);
9b199859
FDBM
5051 return ret;
5052 }
46204592 5053 case BTRFS_IOC_START_SYNC:
9a8c28be 5054 return btrfs_ioctl_start_sync(root, argp);
46204592 5055 case BTRFS_IOC_WAIT_SYNC:
2ff7e61e 5056 return btrfs_ioctl_wait_sync(fs_info, argp);
475f6387 5057 case BTRFS_IOC_SCRUB:
b8e95489 5058 return btrfs_ioctl_scrub(file, argp);
475f6387 5059 case BTRFS_IOC_SCRUB_CANCEL:
2ff7e61e 5060 return btrfs_ioctl_scrub_cancel(fs_info);
475f6387 5061 case BTRFS_IOC_SCRUB_PROGRESS:
2ff7e61e 5062 return btrfs_ioctl_scrub_progress(fs_info, argp);
c9e9f97b 5063 case BTRFS_IOC_BALANCE_V2:
9ba1f6e4 5064 return btrfs_ioctl_balance(file, argp);
837d5b6e 5065 case BTRFS_IOC_BALANCE_CTL:
2ff7e61e 5066 return btrfs_ioctl_balance_ctl(fs_info, arg);
19a39dce 5067 case BTRFS_IOC_BALANCE_PROGRESS:
2ff7e61e 5068 return btrfs_ioctl_balance_progress(fs_info, argp);
8ea05e3a
AB
5069 case BTRFS_IOC_SET_RECEIVED_SUBVOL:
5070 return btrfs_ioctl_set_received_subvol(file, argp);
abccd00f
HM
5071#ifdef CONFIG_64BIT
5072 case BTRFS_IOC_SET_RECEIVED_SUBVOL_32:
5073 return btrfs_ioctl_set_received_subvol_32(file, argp);
5074#endif
31db9f7c 5075 case BTRFS_IOC_SEND:
2351f431
JB
5076 return _btrfs_ioctl_send(file, argp, false);
5077#if defined(CONFIG_64BIT) && defined(CONFIG_COMPAT)
5078 case BTRFS_IOC_SEND_32:
5079 return _btrfs_ioctl_send(file, argp, true);
5080#endif
c11d2c23 5081 case BTRFS_IOC_GET_DEV_STATS:
2ff7e61e 5082 return btrfs_ioctl_get_dev_stats(fs_info, argp);
5d13a37b 5083 case BTRFS_IOC_QUOTA_CTL:
905b0dda 5084 return btrfs_ioctl_quota_ctl(file, argp);
5d13a37b 5085 case BTRFS_IOC_QGROUP_ASSIGN:
905b0dda 5086 return btrfs_ioctl_qgroup_assign(file, argp);
5d13a37b 5087 case BTRFS_IOC_QGROUP_CREATE:
905b0dda 5088 return btrfs_ioctl_qgroup_create(file, argp);
5d13a37b 5089 case BTRFS_IOC_QGROUP_LIMIT:
905b0dda 5090 return btrfs_ioctl_qgroup_limit(file, argp);
2f232036
JS
5091 case BTRFS_IOC_QUOTA_RESCAN:
5092 return btrfs_ioctl_quota_rescan(file, argp);
5093 case BTRFS_IOC_QUOTA_RESCAN_STATUS:
b929c1d8 5094 return btrfs_ioctl_quota_rescan_status(fs_info, argp);
57254b6e 5095 case BTRFS_IOC_QUOTA_RESCAN_WAIT:
b929c1d8 5096 return btrfs_ioctl_quota_rescan_wait(fs_info, argp);
3f6bcfbd 5097 case BTRFS_IOC_DEV_REPLACE:
2ff7e61e 5098 return btrfs_ioctl_dev_replace(fs_info, argp);
2eaa055f 5099 case BTRFS_IOC_GET_SUPPORTED_FEATURES:
d5131b65 5100 return btrfs_ioctl_get_supported_features(argp);
2eaa055f 5101 case BTRFS_IOC_GET_FEATURES:
b929c1d8 5102 return btrfs_ioctl_get_features(fs_info, argp);
2eaa055f
JM
5103 case BTRFS_IOC_SET_FEATURES:
5104 return btrfs_ioctl_set_features(file, argp);
b64ec075
TM
5105 case BTRFS_IOC_GET_SUBVOL_INFO:
5106 return btrfs_ioctl_get_subvol_info(file, argp);
42e4b520
TM
5107 case BTRFS_IOC_GET_SUBVOL_ROOTREF:
5108 return btrfs_ioctl_get_subvol_rootref(file, argp);
23d0b79d
TM
5109 case BTRFS_IOC_INO_LOOKUP_USER:
5110 return btrfs_ioctl_ino_lookup_user(file, argp);
14605409
BB
5111 case FS_IOC_ENABLE_VERITY:
5112 return fsverity_ioctl_enable(file, (const void __user *)argp);
5113 case FS_IOC_MEASURE_VERITY:
5114 return fsverity_ioctl_measure(file, argp);
f46b5a66
CH
5115 }
5116
5117 return -ENOTTY;
5118}
4c63c245
LD
5119
5120#ifdef CONFIG_COMPAT
5121long btrfs_compat_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
5122{
2a362249
JM
5123 /*
5124 * These all access 32-bit values anyway so no further
5125 * handling is necessary.
5126 */
4c63c245 5127 switch (cmd) {
4c63c245
LD
5128 case FS_IOC32_GETVERSION:
5129 cmd = FS_IOC_GETVERSION;
5130 break;
4c63c245
LD
5131 }
5132
5133 return btrfs_ioctl(file, cmd, (unsigned long) compat_ptr(arg));
5134}
5135#endif