btrfs: new ioctls for scrub
[deliverable/linux.git] / fs / btrfs / ctree.h
CommitLineData
6cbd5570
CM
1/*
2 * Copyright (C) 2007 Oracle. All rights reserved.
3 *
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public
6 * License v2 as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * General Public License for more details.
12 *
13 * You should have received a copy of the GNU General Public
14 * License along with this program; if not, write to the
15 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
16 * Boston, MA 021110-1307, USA.
17 */
18
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19#ifndef __BTRFS_CTREE__
20#define __BTRFS_CTREE__
eb60ceac 21
6da6abae 22#include <linux/version.h>
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CM
23#include <linux/mm.h>
24#include <linux/highmem.h>
e20d96d6 25#include <linux/fs.h>
a2de733c 26#include <linux/rwsem.h>
58176a96 27#include <linux/completion.h>
04160088 28#include <linux/backing-dev.h>
e6dcd2dc 29#include <linux/wait.h>
5a0e3ad6 30#include <linux/slab.h>
f8b18087 31#include <linux/kobject.h>
1abe9b8a 32#include <trace/events/btrfs.h>
479965d6 33#include <asm/kmap_types.h>
d1310b2e 34#include "extent_io.h"
5f39d397 35#include "extent_map.h"
8b712842 36#include "async-thread.h"
a2de733c 37#include "ioctl.h"
e20d96d6 38
e089f05c 39struct btrfs_trans_handle;
79154b1b 40struct btrfs_transaction;
a22285a6 41struct btrfs_pending_snapshot;
35b7e476
CM
42extern struct kmem_cache *btrfs_trans_handle_cachep;
43extern struct kmem_cache *btrfs_transaction_cachep;
44extern struct kmem_cache *btrfs_bit_radix_cachep;
2c90e5d6 45extern struct kmem_cache *btrfs_path_cachep;
dc89e982 46extern struct kmem_cache *btrfs_free_space_cachep;
e6dcd2dc 47struct btrfs_ordered_sum;
e089f05c 48
2a7108ad 49#define BTRFS_MAGIC "_BHRfS_M"
eb60ceac 50
4008c04a 51#define BTRFS_MAX_LEVEL 8
0b86a832 52
5d4f98a2
YZ
53#define BTRFS_COMPAT_EXTENT_TREE_V0
54
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CM
55/*
56 * files bigger than this get some pre-flushing when they are added
57 * to the ordered operations list. That way we limit the total
58 * work done by the commit
59 */
60#define BTRFS_ORDERED_OPERATIONS_FLUSH_LIMIT (8 * 1024 * 1024)
61
0b86a832 62/* holds pointers to all of the tree roots */
6407bf6d 63#define BTRFS_ROOT_TREE_OBJECTID 1ULL
0b86a832
CM
64
65/* stores information about which extents are in use, and reference counts */
0cf6c620 66#define BTRFS_EXTENT_TREE_OBJECTID 2ULL
0b86a832 67
0b86a832
CM
68/*
69 * chunk tree stores translations from logical -> physical block numbering
70 * the super block points to the chunk tree
71 */
e085def2 72#define BTRFS_CHUNK_TREE_OBJECTID 3ULL
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CM
73
74/*
75 * stores information about which areas of a given device are in use.
76 * one per device. The tree of tree roots points to the device tree
77 */
e085def2
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78#define BTRFS_DEV_TREE_OBJECTID 4ULL
79
80/* one per subvolume, storing files and directories */
81#define BTRFS_FS_TREE_OBJECTID 5ULL
82
83/* directory objectid inside the root tree */
84#define BTRFS_ROOT_TREE_DIR_OBJECTID 6ULL
0b86a832 85
d20f7043
CM
86/* holds checksums of all the data extents */
87#define BTRFS_CSUM_TREE_OBJECTID 7ULL
88
7b128766
JB
89/* orhpan objectid for tracking unlinked/truncated files */
90#define BTRFS_ORPHAN_OBJECTID -5ULL
91
e02119d5
CM
92/* does write ahead logging to speed up fsyncs */
93#define BTRFS_TREE_LOG_OBJECTID -6ULL
94#define BTRFS_TREE_LOG_FIXUP_OBJECTID -7ULL
95
e4657689
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96/* for space balancing */
97#define BTRFS_TREE_RELOC_OBJECTID -8ULL
98#define BTRFS_DATA_RELOC_TREE_OBJECTID -9ULL
99
d20f7043
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100/*
101 * extent checksums all have this objectid
102 * this allows them to share the logging tree
103 * for fsyncs
104 */
105#define BTRFS_EXTENT_CSUM_OBJECTID -10ULL
106
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JB
107/* For storing free space cache */
108#define BTRFS_FREE_SPACE_OBJECTID -11ULL
109
31840ae1
ZY
110/* dummy objectid represents multiple objectids */
111#define BTRFS_MULTIPLE_OBJECTIDS -255ULL
112
0b86a832 113/*
6527cdbe 114 * All files have objectids in this range.
0b86a832 115 */
f6dbff55 116#define BTRFS_FIRST_FREE_OBJECTID 256ULL
6527cdbe 117#define BTRFS_LAST_FREE_OBJECTID -256ULL
e17cade2 118#define BTRFS_FIRST_CHUNK_TREE_OBJECTID 256ULL
3768f368 119
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120
121/*
122 * the device items go into the chunk tree. The key is in the form
123 * [ 1 BTRFS_DEV_ITEM_KEY device_id ]
124 */
125#define BTRFS_DEV_ITEMS_OBJECTID 1ULL
126
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127#define BTRFS_BTREE_INODE_OBJECTID 1
128
129#define BTRFS_EMPTY_SUBVOL_DIR_OBJECTID 2
130
e20d96d6
CM
131/*
132 * we can actually store much bigger names, but lets not confuse the rest
133 * of linux
134 */
135#define BTRFS_NAME_LEN 255
136
f254e52c
CM
137/* 32 bytes in various csum fields */
138#define BTRFS_CSUM_SIZE 32
607d432d
JB
139
140/* csum types */
141#define BTRFS_CSUM_TYPE_CRC32 0
142
143static int btrfs_csum_sizes[] = { 4, 0 };
144
509659cd 145/* four bytes for CRC32 */
3954401f 146#define BTRFS_EMPTY_DIR_SIZE 0
f254e52c 147
fabb5681
CM
148#define BTRFS_FT_UNKNOWN 0
149#define BTRFS_FT_REG_FILE 1
150#define BTRFS_FT_DIR 2
151#define BTRFS_FT_CHRDEV 3
152#define BTRFS_FT_BLKDEV 4
153#define BTRFS_FT_FIFO 5
154#define BTRFS_FT_SOCK 6
155#define BTRFS_FT_SYMLINK 7
5103e947
JB
156#define BTRFS_FT_XATTR 8
157#define BTRFS_FT_MAX 9
fabb5681 158
fec577fb 159/*
d4a78947
WF
160 * The key defines the order in the tree, and so it also defines (optimal)
161 * block layout.
162 *
163 * objectid corresponds to the inode number.
164 *
165 * type tells us things about the object, and is a kind of stream selector.
166 * so for a given inode, keys with type of 1 might refer to the inode data,
167 * type of 2 may point to file data in the btree and type == 3 may point to
168 * extents.
fec577fb
CM
169 *
170 * offset is the starting byte offset for this key in the stream.
e2fa7227
CM
171 *
172 * btrfs_disk_key is in disk byte order. struct btrfs_key is always
173 * in cpu native order. Otherwise they are identical and their sizes
174 * should be the same (ie both packed)
fec577fb 175 */
e2fa7227
CM
176struct btrfs_disk_key {
177 __le64 objectid;
5f39d397 178 u8 type;
70b2befd 179 __le64 offset;
e2fa7227
CM
180} __attribute__ ((__packed__));
181
182struct btrfs_key {
eb60ceac 183 u64 objectid;
5f39d397 184 u8 type;
70b2befd 185 u64 offset;
eb60ceac
CM
186} __attribute__ ((__packed__));
187
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188struct btrfs_mapping_tree {
189 struct extent_map_tree map_tree;
190};
191
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CM
192struct btrfs_dev_item {
193 /* the internal btrfs device id */
194 __le64 devid;
195
196 /* size of the device */
197 __le64 total_bytes;
198
199 /* bytes used */
200 __le64 bytes_used;
201
202 /* optimal io alignment for this device */
203 __le32 io_align;
204
205 /* optimal io width for this device */
206 __le32 io_width;
207
208 /* minimal io size for this device */
209 __le32 sector_size;
210
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CM
211 /* type and info about this device */
212 __le64 type;
213
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214 /* expected generation for this device */
215 __le64 generation;
216
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CM
217 /*
218 * starting byte of this partition on the device,
d4a78947 219 * to allow for stripe alignment in the future
c3027eb5
CM
220 */
221 __le64 start_offset;
222
e17cade2
CM
223 /* grouping information for allocation decisions */
224 __le32 dev_group;
225
226 /* seek speed 0-100 where 100 is fastest */
227 u8 seek_speed;
228
229 /* bandwidth 0-100 where 100 is fastest */
230 u8 bandwidth;
231
0d81ba5d 232 /* btrfs generated uuid for this device */
e17cade2 233 u8 uuid[BTRFS_UUID_SIZE];
2b82032c
YZ
234
235 /* uuid of FS who owns this device */
236 u8 fsid[BTRFS_UUID_SIZE];
0b86a832
CM
237} __attribute__ ((__packed__));
238
239struct btrfs_stripe {
240 __le64 devid;
241 __le64 offset;
e17cade2 242 u8 dev_uuid[BTRFS_UUID_SIZE];
0b86a832
CM
243} __attribute__ ((__packed__));
244
245struct btrfs_chunk {
e17cade2
CM
246 /* size of this chunk in bytes */
247 __le64 length;
248
249 /* objectid of the root referencing this chunk */
0b86a832 250 __le64 owner;
e17cade2 251
0b86a832
CM
252 __le64 stripe_len;
253 __le64 type;
254
255 /* optimal io alignment for this chunk */
256 __le32 io_align;
257
258 /* optimal io width for this chunk */
259 __le32 io_width;
260
261 /* minimal io size for this chunk */
262 __le32 sector_size;
263
264 /* 2^16 stripes is quite a lot, a second limit is the size of a single
265 * item in the btree
266 */
267 __le16 num_stripes;
321aecc6
CM
268
269 /* sub stripes only matter for raid10 */
270 __le16 sub_stripes;
0b86a832
CM
271 struct btrfs_stripe stripe;
272 /* additional stripes go here */
273} __attribute__ ((__packed__));
274
0af3d00b
JB
275#define BTRFS_FREE_SPACE_EXTENT 1
276#define BTRFS_FREE_SPACE_BITMAP 2
277
278struct btrfs_free_space_entry {
279 __le64 offset;
280 __le64 bytes;
281 u8 type;
282} __attribute__ ((__packed__));
283
284struct btrfs_free_space_header {
285 struct btrfs_disk_key location;
286 __le64 generation;
287 __le64 num_entries;
288 __le64 num_bitmaps;
289} __attribute__ ((__packed__));
290
0b86a832
CM
291static inline unsigned long btrfs_chunk_item_size(int num_stripes)
292{
293 BUG_ON(num_stripes == 0);
294 return sizeof(struct btrfs_chunk) +
295 sizeof(struct btrfs_stripe) * (num_stripes - 1);
296}
297
5d4f98a2
YZ
298#define BTRFS_HEADER_FLAG_WRITTEN (1ULL << 0)
299#define BTRFS_HEADER_FLAG_RELOC (1ULL << 1)
acce952b 300
301/*
302 * File system states
303 */
304
305/* Errors detected */
306#define BTRFS_SUPER_FLAG_ERROR (1ULL << 2)
307
5d4f98a2
YZ
308#define BTRFS_SUPER_FLAG_SEEDING (1ULL << 32)
309#define BTRFS_SUPER_FLAG_METADUMP (1ULL << 33)
310
311#define BTRFS_BACKREF_REV_MAX 256
312#define BTRFS_BACKREF_REV_SHIFT 56
313#define BTRFS_BACKREF_REV_MASK (((u64)BTRFS_BACKREF_REV_MAX - 1) << \
314 BTRFS_BACKREF_REV_SHIFT)
315
316#define BTRFS_OLD_BACKREF_REV 0
317#define BTRFS_MIXED_BACKREF_REV 1
63b10fc4 318
fec577fb
CM
319/*
320 * every tree block (leaf or node) starts with this header.
321 */
bb492bb0 322struct btrfs_header {
e17cade2 323 /* these first four must match the super block */
f254e52c 324 u8 csum[BTRFS_CSUM_SIZE];
5f39d397 325 u8 fsid[BTRFS_FSID_SIZE]; /* FS specific uuid */
db94535d 326 __le64 bytenr; /* which block this node is supposed to live in */
63b10fc4 327 __le64 flags;
e17cade2
CM
328
329 /* allowed to be different from the super from here on down */
330 u8 chunk_tree_uuid[BTRFS_UUID_SIZE];
7f5c1516 331 __le64 generation;
4d775673 332 __le64 owner;
5f39d397 333 __le32 nritems;
9a6f11ed 334 u8 level;
eb60ceac
CM
335} __attribute__ ((__packed__));
336
5f39d397 337#define BTRFS_NODEPTRS_PER_BLOCK(r) (((r)->nodesize - \
d397712b
CM
338 sizeof(struct btrfs_header)) / \
339 sizeof(struct btrfs_key_ptr))
123abc88 340#define __BTRFS_LEAF_DATA_SIZE(bs) ((bs) - sizeof(struct btrfs_header))
5f39d397 341#define BTRFS_LEAF_DATA_SIZE(r) (__BTRFS_LEAF_DATA_SIZE(r->leafsize))
236454df
CM
342#define BTRFS_MAX_INLINE_DATA_SIZE(r) (BTRFS_LEAF_DATA_SIZE(r) - \
343 sizeof(struct btrfs_item) - \
344 sizeof(struct btrfs_file_extent_item))
f34f57a3
YZ
345#define BTRFS_MAX_XATTR_SIZE(r) (BTRFS_LEAF_DATA_SIZE(r) - \
346 sizeof(struct btrfs_item) -\
347 sizeof(struct btrfs_dir_item))
eb60ceac 348
0b86a832
CM
349
350/*
351 * this is a very generous portion of the super block, giving us
352 * room to translate 14 chunks with 3 stripes each.
353 */
354#define BTRFS_SYSTEM_CHUNK_ARRAY_SIZE 2048
7ae9c09d 355#define BTRFS_LABEL_SIZE 256
0b86a832 356
fec577fb
CM
357/*
358 * the super block basically lists the main trees of the FS
359 * it currently lacks any block count etc etc
360 */
234b63a0 361struct btrfs_super_block {
f254e52c 362 u8 csum[BTRFS_CSUM_SIZE];
63b10fc4 363 /* the first 4 fields must match struct btrfs_header */
2b82032c 364 u8 fsid[BTRFS_FSID_SIZE]; /* FS specific uuid */
db94535d 365 __le64 bytenr; /* this block number */
63b10fc4 366 __le64 flags;
e17cade2
CM
367
368 /* allowed to be different from the btrfs_header from here own down */
3768f368 369 __le64 magic;
3768f368
CM
370 __le64 generation;
371 __le64 root;
0b86a832 372 __le64 chunk_root;
e02119d5 373 __le64 log_root;
c3027eb5
CM
374
375 /* this will help find the new super based on the log root */
376 __le64 log_root_transid;
db94535d
CM
377 __le64 total_bytes;
378 __le64 bytes_used;
2e635a27 379 __le64 root_dir_objectid;
8a4b83cc 380 __le64 num_devices;
5f39d397
CM
381 __le32 sectorsize;
382 __le32 nodesize;
383 __le32 leafsize;
87ee04eb 384 __le32 stripesize;
0b86a832 385 __le32 sys_chunk_array_size;
84234f3a 386 __le64 chunk_root_generation;
f2b636e8
JB
387 __le64 compat_flags;
388 __le64 compat_ro_flags;
389 __le64 incompat_flags;
607d432d 390 __le16 csum_type;
db94535d 391 u8 root_level;
0b86a832 392 u8 chunk_root_level;
e02119d5 393 u8 log_root_level;
0d81ba5d 394 struct btrfs_dev_item dev_item;
c3027eb5 395
7ae9c09d 396 char label[BTRFS_LABEL_SIZE];
c3027eb5 397
0af3d00b
JB
398 __le64 cache_generation;
399
c3027eb5 400 /* future expansion */
0af3d00b 401 __le64 reserved[31];
0b86a832 402 u8 sys_chunk_array[BTRFS_SYSTEM_CHUNK_ARRAY_SIZE];
cfaa7295
CM
403} __attribute__ ((__packed__));
404
f2b636e8
JB
405/*
406 * Compat flags that we support. If any incompat flags are set other than the
407 * ones specified below then we will fail to mount
408 */
5d4f98a2 409#define BTRFS_FEATURE_INCOMPAT_MIXED_BACKREF (1ULL << 0)
0af3d00b 410#define BTRFS_FEATURE_INCOMPAT_DEFAULT_SUBVOL (1ULL << 1)
67377734 411#define BTRFS_FEATURE_INCOMPAT_MIXED_GROUPS (1ULL << 2)
a6fa6fae 412#define BTRFS_FEATURE_INCOMPAT_COMPRESS_LZO (1ULL << 3)
5d4f98a2
YZ
413
414#define BTRFS_FEATURE_COMPAT_SUPP 0ULL
415#define BTRFS_FEATURE_COMPAT_RO_SUPP 0ULL
0af3d00b
JB
416#define BTRFS_FEATURE_INCOMPAT_SUPP \
417 (BTRFS_FEATURE_INCOMPAT_MIXED_BACKREF | \
67377734 418 BTRFS_FEATURE_INCOMPAT_DEFAULT_SUBVOL | \
a6fa6fae
LZ
419 BTRFS_FEATURE_INCOMPAT_MIXED_GROUPS | \
420 BTRFS_FEATURE_INCOMPAT_COMPRESS_LZO)
f2b636e8 421
fec577fb 422/*
62e2749e 423 * A leaf is full of items. offset and size tell us where to find
fec577fb
CM
424 * the item in the leaf (relative to the start of the data area)
425 */
0783fcfc 426struct btrfs_item {
e2fa7227 427 struct btrfs_disk_key key;
123abc88 428 __le32 offset;
5f39d397 429 __le32 size;
eb60ceac
CM
430} __attribute__ ((__packed__));
431
fec577fb
CM
432/*
433 * leaves have an item area and a data area:
434 * [item0, item1....itemN] [free space] [dataN...data1, data0]
435 *
436 * The data is separate from the items to get the keys closer together
437 * during searches.
438 */
234b63a0 439struct btrfs_leaf {
bb492bb0 440 struct btrfs_header header;
123abc88 441 struct btrfs_item items[];
eb60ceac
CM
442} __attribute__ ((__packed__));
443
fec577fb
CM
444/*
445 * all non-leaf blocks are nodes, they hold only keys and pointers to
446 * other blocks
447 */
123abc88
CM
448struct btrfs_key_ptr {
449 struct btrfs_disk_key key;
450 __le64 blockptr;
74493f7a 451 __le64 generation;
123abc88
CM
452} __attribute__ ((__packed__));
453
234b63a0 454struct btrfs_node {
bb492bb0 455 struct btrfs_header header;
123abc88 456 struct btrfs_key_ptr ptrs[];
eb60ceac
CM
457} __attribute__ ((__packed__));
458
fec577fb 459/*
234b63a0
CM
460 * btrfs_paths remember the path taken from the root down to the leaf.
461 * level 0 is always the leaf, and nodes[1...BTRFS_MAX_LEVEL] will point
fec577fb
CM
462 * to any other levels that are present.
463 *
464 * The slots array records the index of the item or block pointer
465 * used while walking the tree.
466 */
234b63a0 467struct btrfs_path {
5f39d397 468 struct extent_buffer *nodes[BTRFS_MAX_LEVEL];
234b63a0 469 int slots[BTRFS_MAX_LEVEL];
925baedd
CM
470 /* if there is real range locking, this locks field will change */
471 int locks[BTRFS_MAX_LEVEL];
3c69faec 472 int reada;
925baedd 473 /* keep some upper locks as we walk down */
6702ed49 474 int lowest_level;
459931ec
CM
475
476 /*
477 * set by btrfs_split_item, tells search_slot to keep all locks
478 * and to force calls to keep space in the nodes
479 */
b9473439
CM
480 unsigned int search_for_split:1;
481 unsigned int keep_locks:1;
482 unsigned int skip_locking:1;
483 unsigned int leave_spinning:1;
5d4f98a2 484 unsigned int search_commit_root:1;
eb60ceac 485};
5de08d7d 486
62e2749e
CM
487/*
488 * items in the extent btree are used to record the objectid of the
489 * owner of the block and the number of references
490 */
5d4f98a2 491
62e2749e 492struct btrfs_extent_item {
5d4f98a2
YZ
493 __le64 refs;
494 __le64 generation;
495 __le64 flags;
496} __attribute__ ((__packed__));
497
498struct btrfs_extent_item_v0 {
62e2749e 499 __le32 refs;
74493f7a
CM
500} __attribute__ ((__packed__));
501
5d4f98a2
YZ
502#define BTRFS_MAX_EXTENT_ITEM_SIZE(r) ((BTRFS_LEAF_DATA_SIZE(r) >> 4) - \
503 sizeof(struct btrfs_item))
504
505#define BTRFS_EXTENT_FLAG_DATA (1ULL << 0)
506#define BTRFS_EXTENT_FLAG_TREE_BLOCK (1ULL << 1)
507
508/* following flags only apply to tree blocks */
509
510/* use full backrefs for extent pointers in the block */
511#define BTRFS_BLOCK_FLAG_FULL_BACKREF (1ULL << 8)
512
a2de733c
AJ
513/*
514 * this flag is only used internally by scrub and may be changed at any time
515 * it is only declared here to avoid collisions
516 */
517#define BTRFS_EXTENT_FLAG_SUPER (1ULL << 48)
518
5d4f98a2
YZ
519struct btrfs_tree_block_info {
520 struct btrfs_disk_key key;
521 u8 level;
522} __attribute__ ((__packed__));
523
524struct btrfs_extent_data_ref {
525 __le64 root;
526 __le64 objectid;
527 __le64 offset;
528 __le32 count;
529} __attribute__ ((__packed__));
530
531struct btrfs_shared_data_ref {
532 __le32 count;
533} __attribute__ ((__packed__));
534
535struct btrfs_extent_inline_ref {
536 u8 type;
1bec1aed 537 __le64 offset;
5d4f98a2
YZ
538} __attribute__ ((__packed__));
539
540/* old style backrefs item */
541struct btrfs_extent_ref_v0 {
74493f7a
CM
542 __le64 root;
543 __le64 generation;
544 __le64 objectid;
5d4f98a2 545 __le32 count;
62e2749e
CM
546} __attribute__ ((__packed__));
547
5d4f98a2 548
0b86a832
CM
549/* dev extents record free space on individual devices. The owner
550 * field points back to the chunk allocation mapping tree that allocated
e17cade2 551 * the extent. The chunk tree uuid field is a way to double check the owner
0b86a832
CM
552 */
553struct btrfs_dev_extent {
e17cade2
CM
554 __le64 chunk_tree;
555 __le64 chunk_objectid;
556 __le64 chunk_offset;
0b86a832 557 __le64 length;
e17cade2 558 u8 chunk_tree_uuid[BTRFS_UUID_SIZE];
0b86a832
CM
559} __attribute__ ((__packed__));
560
3954401f 561struct btrfs_inode_ref {
aec7477b 562 __le64 index;
3954401f
CM
563 __le16 name_len;
564 /* name goes here */
565} __attribute__ ((__packed__));
566
0b86a832 567struct btrfs_timespec {
f254e52c 568 __le64 sec;
1e1d2701
CM
569 __le32 nsec;
570} __attribute__ ((__packed__));
571
95029d7d 572enum btrfs_compression_type {
261507a0
LZ
573 BTRFS_COMPRESS_NONE = 0,
574 BTRFS_COMPRESS_ZLIB = 1,
a6fa6fae
LZ
575 BTRFS_COMPRESS_LZO = 2,
576 BTRFS_COMPRESS_TYPES = 2,
577 BTRFS_COMPRESS_LAST = 3,
95029d7d 578};
c8b97818 579
1e1d2701 580struct btrfs_inode_item {
e02119d5 581 /* nfs style generation number */
1e1d2701 582 __le64 generation;
e02119d5
CM
583 /* transid that last touched this inode */
584 __le64 transid;
1e1d2701 585 __le64 size;
a76a3cd4 586 __le64 nbytes;
31f3c99b 587 __le64 block_group;
1e1d2701
CM
588 __le32 nlink;
589 __le32 uid;
590 __le32 gid;
591 __le32 mode;
0b86a832 592 __le64 rdev;
f2b636e8 593 __le64 flags;
c8b97818 594
c3027eb5
CM
595 /* modification sequence number for NFS */
596 __le64 sequence;
597
598 /*
599 * a little future expansion, for more than this we can
600 * just grow the inode item and version it
601 */
602 __le64 reserved[4];
0b86a832
CM
603 struct btrfs_timespec atime;
604 struct btrfs_timespec ctime;
605 struct btrfs_timespec mtime;
606 struct btrfs_timespec otime;
1e1d2701
CM
607} __attribute__ ((__packed__));
608
e02119d5
CM
609struct btrfs_dir_log_item {
610 __le64 end;
611} __attribute__ ((__packed__));
612
62e2749e 613struct btrfs_dir_item {
d6e4a428 614 struct btrfs_disk_key location;
e02119d5 615 __le64 transid;
5103e947 616 __le16 data_len;
a8a2ee0c 617 __le16 name_len;
62e2749e
CM
618 u8 type;
619} __attribute__ ((__packed__));
620
b83cc969
LZ
621#define BTRFS_ROOT_SUBVOL_RDONLY (1ULL << 0)
622
62e2749e 623struct btrfs_root_item {
d6e4a428 624 struct btrfs_inode_item inode;
84234f3a 625 __le64 generation;
d6e4a428 626 __le64 root_dirid;
db94535d
CM
627 __le64 bytenr;
628 __le64 byte_limit;
629 __le64 bytes_used;
80ff3856 630 __le64 last_snapshot;
f2b636e8 631 __le64 flags;
62e2749e 632 __le32 refs;
5eda7b5e
CM
633 struct btrfs_disk_key drop_progress;
634 u8 drop_level;
db94535d 635 u8 level;
9f5fae2f 636} __attribute__ ((__packed__));
62e2749e 637
0660b5af
CM
638/*
639 * this is used for both forward and backward root refs
640 */
641struct btrfs_root_ref {
642 __le64 dirid;
643 __le64 sequence;
644 __le16 name_len;
645} __attribute__ ((__packed__));
646
d899e052
YZ
647#define BTRFS_FILE_EXTENT_INLINE 0
648#define BTRFS_FILE_EXTENT_REG 1
649#define BTRFS_FILE_EXTENT_PREALLOC 2
236454df 650
9f5fae2f 651struct btrfs_file_extent_item {
c8b97818
CM
652 /*
653 * transaction id that created this extent
654 */
71951f35 655 __le64 generation;
c8b97818
CM
656 /*
657 * max number of bytes to hold this extent in ram
658 * when we split a compressed extent we can't know how big
659 * each of the resulting pieces will be. So, this is
660 * an upper limit on the size of the extent in ram instead of
661 * an exact limit.
662 */
663 __le64 ram_bytes;
664
665 /*
666 * 32 bits for the various ways we might encode the data,
667 * including compression and encryption. If any of these
668 * are set to something a given disk format doesn't understand
669 * it is treated like an incompat flag for reading and writing,
670 * but not for stat.
671 */
672 u8 compression;
673 u8 encryption;
674 __le16 other_encoding; /* spare for later use */
675
676 /* are we inline data or a real extent? */
236454df 677 u8 type;
c8b97818 678
9f5fae2f
CM
679 /*
680 * disk space consumed by the extent, checksum blocks are included
681 * in these numbers
682 */
db94535d
CM
683 __le64 disk_bytenr;
684 __le64 disk_num_bytes;
9f5fae2f 685 /*
dee26a9f 686 * the logical offset in file blocks (no csums)
9f5fae2f
CM
687 * this extent record is for. This allows a file extent to point
688 * into the middle of an existing extent on disk, sharing it
689 * between two snapshots (useful if some bytes in the middle of the
690 * extent have changed
691 */
692 __le64 offset;
693 /*
c8b97818
CM
694 * the logical number of file blocks (no csums included). This
695 * always reflects the size uncompressed and without encoding.
9f5fae2f 696 */
db94535d 697 __le64 num_bytes;
c8b97818 698
9f5fae2f
CM
699} __attribute__ ((__packed__));
700
f254e52c 701struct btrfs_csum_item {
509659cd 702 u8 csum;
f254e52c
CM
703} __attribute__ ((__packed__));
704
0b86a832
CM
705/* different types of block groups (and chunks) */
706#define BTRFS_BLOCK_GROUP_DATA (1 << 0)
707#define BTRFS_BLOCK_GROUP_SYSTEM (1 << 1)
708#define BTRFS_BLOCK_GROUP_METADATA (1 << 2)
593060d7 709#define BTRFS_BLOCK_GROUP_RAID0 (1 << 3)
8790d502 710#define BTRFS_BLOCK_GROUP_RAID1 (1 << 4)
611f0e00 711#define BTRFS_BLOCK_GROUP_DUP (1 << 5)
321aecc6 712#define BTRFS_BLOCK_GROUP_RAID10 (1 << 6)
b742bb82 713#define BTRFS_NR_RAID_TYPES 5
1e2677e0 714
9078a3e1
CM
715struct btrfs_block_group_item {
716 __le64 used;
0b86a832
CM
717 __le64 chunk_objectid;
718 __le64 flags;
9078a3e1
CM
719} __attribute__ ((__packed__));
720
6324fbf3
CM
721struct btrfs_space_info {
722 u64 flags;
6a63209f 723
89a55897
JB
724 u64 total_bytes; /* total bytes in the space,
725 this doesn't take mirrors into account */
b742bb82
YZ
726 u64 bytes_used; /* total bytes used,
727 this does't take mirrors into account */
6a63209f
JB
728 u64 bytes_pinned; /* total bytes pinned, will be freed when the
729 transaction finishes */
730 u64 bytes_reserved; /* total bytes the allocator has reserved for
731 current allocations */
732 u64 bytes_readonly; /* total bytes that are read only */
8929ecfa 733
6a63209f 734 u64 bytes_may_use; /* number of bytes that may be used for
9ed74f2d 735 delalloc/allocations */
b742bb82 736 u64 disk_used; /* total bytes used on disk */
89a55897
JB
737 u64 disk_total; /* total bytes on disk, takes mirrors into
738 account */
6a63209f 739
36e39c40
CM
740 /*
741 * we bump reservation progress every time we decrement
742 * bytes_reserved. This way people waiting for reservations
743 * know something good has happened and they can check
744 * for progress. The number here isn't to be trusted, it
745 * just shows reclaim activity
746 */
747 unsigned long reservation_progress;
748
6d74119f 749 int full:1; /* indicates that we cannot allocate any more
6a63209f 750 chunks for this space */
6d74119f
JB
751 int chunk_alloc:1; /* set if we are allocating a chunk */
752
6a63209f
JB
753 int force_alloc; /* set if we need to force a chunk alloc for
754 this space */
755
6324fbf3 756 struct list_head list;
0f9dd46c
JB
757
758 /* for block groups in our same type */
b742bb82 759 struct list_head block_groups[BTRFS_NR_RAID_TYPES];
0f9dd46c 760 spinlock_t lock;
80eb234a 761 struct rw_semaphore groups_sem;
817d52f8 762 atomic_t caching_threads;
0f9dd46c
JB
763};
764
f0486c68
YZ
765struct btrfs_block_rsv {
766 u64 size;
767 u64 reserved;
768 u64 freed[2];
769 struct btrfs_space_info *space_info;
770 struct list_head list;
771 spinlock_t lock;
772 atomic_t usage;
773 unsigned int priority:8;
774 unsigned int durable:1;
775 unsigned int refill_used:1;
776 unsigned int full:1;
777};
778
fa9c0d79
CM
779/*
780 * free clusters are used to claim free space in relatively large chunks,
781 * allowing us to do less seeky writes. They are used for all metadata
782 * allocations and data allocations in ssd mode.
783 */
784struct btrfs_free_cluster {
785 spinlock_t lock;
786 spinlock_t refill_lock;
787 struct rb_root root;
788
789 /* largest extent in this cluster */
790 u64 max_size;
791
792 /* first extent starting offset */
793 u64 window_start;
794
795 struct btrfs_block_group_cache *block_group;
796 /*
797 * when a cluster is allocated from a block group, we put the
798 * cluster onto a list in the block group so that it can
799 * be freed before the block group is freed.
800 */
801 struct list_head block_group_list;
6324fbf3
CM
802};
803
817d52f8
JB
804enum btrfs_caching_type {
805 BTRFS_CACHE_NO = 0,
806 BTRFS_CACHE_STARTED = 1,
807 BTRFS_CACHE_FINISHED = 2,
808};
809
0af3d00b
JB
810enum btrfs_disk_cache_state {
811 BTRFS_DC_WRITTEN = 0,
812 BTRFS_DC_ERROR = 1,
813 BTRFS_DC_CLEAR = 2,
814 BTRFS_DC_SETUP = 3,
815 BTRFS_DC_NEED_WRITE = 4,
816};
817
11833d66
YZ
818struct btrfs_caching_control {
819 struct list_head list;
820 struct mutex mutex;
821 wait_queue_head_t wait;
822 struct btrfs_block_group_cache *block_group;
823 u64 progress;
824 atomic_t count;
825};
826
9078a3e1
CM
827struct btrfs_block_group_cache {
828 struct btrfs_key key;
829 struct btrfs_block_group_item item;
817d52f8 830 struct btrfs_fs_info *fs_info;
0af3d00b 831 struct inode *inode;
c286ac48 832 spinlock_t lock;
324ae4df 833 u64 pinned;
e8569813 834 u64 reserved;
f0486c68 835 u64 reserved_pinned;
1b2da372 836 u64 bytes_super;
0b86a832 837 u64 flags;
96303081
JB
838 u64 sectorsize;
839 int extents_thresh;
840 int free_extents;
841 int total_bitmaps;
0410c94a
MK
842 unsigned int ro:1;
843 unsigned int dirty:1;
844 unsigned int iref:1;
0af3d00b
JB
845
846 int disk_cache_state;
0f9dd46c 847
817d52f8 848 /* cache tracking stuff */
817d52f8 849 int cached;
11833d66
YZ
850 struct btrfs_caching_control *caching_ctl;
851 u64 last_byte_to_unpin;
817d52f8 852
0f9dd46c
JB
853 struct btrfs_space_info *space_info;
854
855 /* free space cache stuff */
6226cb0a 856 spinlock_t tree_lock;
0f9dd46c 857 struct rb_root free_space_offset;
817d52f8 858 u64 free_space;
0f9dd46c
JB
859
860 /* block group cache stuff */
861 struct rb_node cache_node;
862
863 /* for block groups in the same raid type */
864 struct list_head list;
d2fb3437
YZ
865
866 /* usage count */
867 atomic_t count;
fa9c0d79
CM
868
869 /* List of struct btrfs_free_clusters for this block group.
870 * Today it will only have one thing on it, but that may change
871 */
872 struct list_head cluster_list;
9078a3e1 873};
0b86a832 874
5d4f98a2 875struct reloc_control;
0b86a832 876struct btrfs_device;
8a4b83cc 877struct btrfs_fs_devices;
9f5fae2f 878struct btrfs_fs_info {
5f39d397 879 u8 fsid[BTRFS_FSID_SIZE];
e17cade2 880 u8 chunk_tree_uuid[BTRFS_UUID_SIZE];
62e2749e
CM
881 struct btrfs_root *extent_root;
882 struct btrfs_root *tree_root;
0b86a832
CM
883 struct btrfs_root *chunk_root;
884 struct btrfs_root *dev_root;
3de4586c 885 struct btrfs_root *fs_root;
d20f7043 886 struct btrfs_root *csum_root;
e02119d5
CM
887
888 /* the log root tree is a directory of all the other log roots */
889 struct btrfs_root *log_root_tree;
4df27c4d
YZ
890
891 spinlock_t fs_roots_radix_lock;
0f7d52f4 892 struct radix_tree_root fs_roots_radix;
1a5bc167 893
0f9dd46c
JB
894 /* block group cache stuff */
895 spinlock_t block_group_cache_lock;
896 struct rb_root block_group_cache_tree;
897
11833d66
YZ
898 struct extent_io_tree freed_extents[2];
899 struct extent_io_tree *pinned_extents;
1a5bc167 900
0b86a832
CM
901 /* logical->physical extent mapping */
902 struct btrfs_mapping_tree mapping_tree;
903
f0486c68
YZ
904 /* block reservation for extent, checksum and root tree */
905 struct btrfs_block_rsv global_block_rsv;
906 /* block reservation for delay allocation */
907 struct btrfs_block_rsv delalloc_block_rsv;
908 /* block reservation for metadata operations */
909 struct btrfs_block_rsv trans_block_rsv;
910 /* block reservation for chunk tree */
911 struct btrfs_block_rsv chunk_block_rsv;
912
913 struct btrfs_block_rsv empty_block_rsv;
914
915 /* list of block reservations that cross multiple transactions */
916 struct list_head durable_block_rsv_list;
917
918 struct mutex durable_block_rsv_mutex;
919
293ffd5f 920 u64 generation;
15ee9bc7 921 u64 last_trans_committed;
12fcfd22
CM
922
923 /*
924 * this is updated to the current trans every time a full commit
925 * is required instead of the faster short fsync log commits
926 */
927 u64 last_trans_log_full_commit;
9ca9ee09 928 u64 open_ioctl_trans;
261507a0
LZ
929 unsigned long mount_opt:20;
930 unsigned long compress_type:4;
6f568d35 931 u64 max_inline;
8f662a76 932 u64 alloc_start;
79154b1b 933 struct btrfs_transaction *running_transaction;
e6dcd2dc 934 wait_queue_head_t transaction_throttle;
f9295749 935 wait_queue_head_t transaction_wait;
bb9c12c9 936 wait_queue_head_t transaction_blocked_wait;
771ed689 937 wait_queue_head_t async_submit_wait;
e02119d5 938
4b52dff6 939 struct btrfs_super_block super_copy;
a061fc8d 940 struct btrfs_super_block super_for_commit;
0b86a832 941 struct block_device *__bdev;
e20d96d6 942 struct super_block *sb;
d98237b3 943 struct inode *btree_inode;
04160088 944 struct backing_dev_info bdi;
79154b1b 945 struct mutex trans_mutex;
e02119d5 946 struct mutex tree_log_mutex;
a74a4b97
CM
947 struct mutex transaction_kthread_mutex;
948 struct mutex cleaner_mutex;
925baedd 949 struct mutex chunk_mutex;
7d9eb12c 950 struct mutex volume_mutex;
5a3f23d5
CM
951 /*
952 * this protects the ordered operations list only while we are
953 * processing all of the entries on it. This way we make
954 * sure the commit code doesn't find the list temporarily empty
955 * because another function happens to be doing non-waiting preflush
956 * before jumping into the main commit.
957 */
958 struct mutex ordered_operations_mutex;
11833d66 959 struct rw_semaphore extent_commit_sem;
5a3f23d5 960
c71bf099 961 struct rw_semaphore cleanup_work_sem;
76dda93c 962
c71bf099 963 struct rw_semaphore subvol_sem;
76dda93c
YZ
964 struct srcu_struct subvol_srcu;
965
8fd17795 966 struct list_head trans_list;
19c00ddc 967 struct list_head hashers;
facda1e7 968 struct list_head dead_roots;
11833d66 969 struct list_head caching_block_groups;
e02119d5 970
24bbcf04
YZ
971 spinlock_t delayed_iput_lock;
972 struct list_head delayed_iputs;
973
cb03c743 974 atomic_t nr_async_submits;
8c8bee1d 975 atomic_t async_submit_draining;
0986fe9e 976 atomic_t nr_async_bios;
771ed689 977 atomic_t async_delalloc_pages;
ce9adaa5 978
3eaa2885
CM
979 /*
980 * this is used by the balancing code to wait for all the pending
981 * ordered extents
982 */
983 spinlock_t ordered_extent_lock;
5a3f23d5
CM
984
985 /*
986 * all of the data=ordered extents pending writeback
987 * these can span multiple transactions and basically include
988 * every dirty data page that isn't from nodatacow
989 */
3eaa2885 990 struct list_head ordered_extents;
5a3f23d5
CM
991
992 /*
993 * all of the inodes that have delalloc bytes. It is possible for
994 * this list to be empty even when there is still dirty data=ordered
995 * extents waiting to finish IO.
996 */
ea8c2819 997 struct list_head delalloc_inodes;
3eaa2885 998
5a3f23d5
CM
999 /*
1000 * special rename and truncate targets that must be on disk before
1001 * we're allowed to commit. This is basically the ext3 style
1002 * data=ordered list.
1003 */
1004 struct list_head ordered_operations;
1005
8b712842
CM
1006 /*
1007 * there is a pool of worker threads for checksumming during writes
1008 * and a pool for checksumming after reads. This is because readers
1009 * can run with FS locks held, and the writers may be waiting for
1010 * those locks. We don't want ordering in the pending list to cause
1011 * deadlocks, and so the two are serviced separately.
1cc127b5
CM
1012 *
1013 * A third pool does submit_bio to avoid deadlocking with the other
1014 * two
8b712842 1015 */
61d92c32 1016 struct btrfs_workers generic_worker;
8b712842 1017 struct btrfs_workers workers;
771ed689 1018 struct btrfs_workers delalloc_workers;
8b712842 1019 struct btrfs_workers endio_workers;
d20f7043 1020 struct btrfs_workers endio_meta_workers;
cad321ad 1021 struct btrfs_workers endio_meta_write_workers;
e6dcd2dc 1022 struct btrfs_workers endio_write_workers;
0cb59c99 1023 struct btrfs_workers endio_freespace_worker;
1cc127b5 1024 struct btrfs_workers submit_workers;
247e743c
CM
1025 /*
1026 * fixup workers take dirty pages that didn't properly go through
1027 * the cow mechanism and make them safe to write. It happens
1028 * for the sys_munmap function call path
1029 */
1030 struct btrfs_workers fixup_workers;
a74a4b97
CM
1031 struct task_struct *transaction_kthread;
1032 struct task_struct *cleaner_kthread;
4543df7e 1033 int thread_pool_size;
8b712842 1034
58176a96
JB
1035 struct kobject super_kobj;
1036 struct completion kobj_unregister;
e66f709b 1037 int do_barriers;
facda1e7 1038 int closing;
e02119d5 1039 int log_root_recovering;
a22285a6 1040 int enospc_unlink;
9f5fae2f 1041
324ae4df 1042 u64 total_pinned;
b9473439
CM
1043
1044 /* protected by the delalloc lock, used to keep from writing
1045 * metadata until there is a nice batch
1046 */
1047 u64 dirty_metadata_bytes;
0b86a832
CM
1048 struct list_head dirty_cowonly_roots;
1049
8a4b83cc 1050 struct btrfs_fs_devices *fs_devices;
4184ea7f
CM
1051
1052 /*
1053 * the space_info list is almost entirely read only. It only changes
1054 * when we add a new raid type to the FS, and that happens
1055 * very rarely. RCU is used to protect it.
1056 */
6324fbf3 1057 struct list_head space_info;
4184ea7f 1058
5d4f98a2
YZ
1059 struct reloc_control *reloc_ctl;
1060
1832a6d5 1061 spinlock_t delalloc_lock;
cee36a03 1062 spinlock_t new_trans_lock;
1832a6d5 1063 u64 delalloc_bytes;
fa9c0d79
CM
1064
1065 /* data_alloc_cluster is only used in ssd mode */
1066 struct btrfs_free_cluster data_alloc_cluster;
1067
1068 /* all metadata allocations go through this cluster */
1069 struct btrfs_free_cluster meta_alloc_cluster;
d18a2c44 1070
31153d81
YZ
1071 spinlock_t ref_cache_lock;
1072 u64 total_ref_cache_size;
31153d81 1073
d18a2c44
CM
1074 u64 avail_data_alloc_bits;
1075 u64 avail_metadata_alloc_bits;
1076 u64 avail_system_alloc_bits;
1077 u64 data_alloc_profile;
1078 u64 metadata_alloc_profile;
1079 u64 system_alloc_profile;
788f20eb 1080
97e728d4
JB
1081 unsigned data_chunk_allocations;
1082 unsigned metadata_ratio;
1083
788f20eb 1084 void *bdev_holder;
acce952b 1085
a2de733c
AJ
1086 /* private scrub information */
1087 struct mutex scrub_lock;
1088 atomic_t scrubs_running;
1089 atomic_t scrub_pause_req;
1090 atomic_t scrubs_paused;
1091 atomic_t scrub_cancel_req;
1092 wait_queue_head_t scrub_pause_wait;
1093 struct rw_semaphore scrub_super_lock;
1094 int scrub_workers_refcnt;
1095 struct btrfs_workers scrub_workers;
1096
acce952b 1097 /* filesystem state */
1098 u64 fs_state;
324ae4df 1099};
0b86a832 1100
9f5fae2f
CM
1101/*
1102 * in ram representation of the tree. extent_root is used for all allocations
f2458e1d 1103 * and for the extent tree extent_root root.
9f5fae2f
CM
1104 */
1105struct btrfs_root {
5f39d397 1106 struct extent_buffer *node;
925baedd
CM
1107
1108 /* the node lock is held while changing the node pointer */
1109 spinlock_t node_lock;
1110
5f39d397 1111 struct extent_buffer *commit_root;
e02119d5 1112 struct btrfs_root *log_root;
1a40e23b 1113 struct btrfs_root *reloc_root;
31153d81 1114
62e2749e
CM
1115 struct btrfs_root_item root_item;
1116 struct btrfs_key root_key;
9f5fae2f 1117 struct btrfs_fs_info *fs_info;
d0c803c4
CM
1118 struct extent_io_tree dirty_log_pages;
1119
58176a96
JB
1120 struct kobject root_kobj;
1121 struct completion kobj_unregister;
a2135011 1122 struct mutex objectid_mutex;
7237f183 1123
f0486c68
YZ
1124 spinlock_t accounting_lock;
1125 struct btrfs_block_rsv *block_rsv;
1126
e02119d5 1127 struct mutex log_mutex;
7237f183
YZ
1128 wait_queue_head_t log_writer_wait;
1129 wait_queue_head_t log_commit_wait[2];
1130 atomic_t log_writers;
1131 atomic_t log_commit[2];
1132 unsigned long log_transid;
257c62e1 1133 unsigned long last_log_commit;
7237f183 1134 unsigned long log_batch;
ff782e0a
JB
1135 pid_t log_start_pid;
1136 bool log_multiple_pids;
ea8c2819 1137
0f7d52f4
CM
1138 u64 objectid;
1139 u64 last_trans;
5f39d397
CM
1140
1141 /* data allocations are done in sectorsize units */
1142 u32 sectorsize;
1143
1144 /* node allocations are done in nodesize units */
1145 u32 nodesize;
1146
1147 /* leaf allocations are done in leafsize units */
1148 u32 leafsize;
1149
87ee04eb
CM
1150 u32 stripesize;
1151
9f5fae2f 1152 u32 type;
13a8a7c8
YZ
1153
1154 u64 highest_objectid;
9f3a7427 1155 int ref_cows;
0b86a832 1156 int track_dirty;
4df27c4d
YZ
1157 int in_radix;
1158
3f157a2f 1159 u64 defrag_trans_start;
6702ed49 1160 struct btrfs_key defrag_progress;
0ef3e66b 1161 struct btrfs_key defrag_max;
6702ed49 1162 int defrag_running;
58176a96 1163 char *name;
4313b399 1164 int in_sysfs;
0b86a832
CM
1165
1166 /* the dirty list is only used by non-reference counted roots */
1167 struct list_head dirty_list;
7b128766 1168
5d4f98a2
YZ
1169 struct list_head root_list;
1170
d68fc57b 1171 spinlock_t orphan_lock;
7b128766 1172 struct list_head orphan_list;
d68fc57b
YZ
1173 struct btrfs_block_rsv *orphan_block_rsv;
1174 int orphan_item_inserted;
1175 int orphan_cleanup_state;
3394e160 1176
5d4f98a2
YZ
1177 spinlock_t inode_lock;
1178 /* red-black tree that keeps track of in-memory inodes */
1179 struct rb_root inode_tree;
1180
3394e160
CM
1181 /*
1182 * right now this just gets used so that a root has its own devid
1183 * for stat. It may be used for more later
1184 */
1185 struct super_block anon_super;
62e2749e
CM
1186};
1187
1e1d2701
CM
1188/*
1189 * inode items have the data typically returned from stat and store other
1190 * info about object characteristics. There is one for every file and dir in
1191 * the FS
1192 */
9078a3e1 1193#define BTRFS_INODE_ITEM_KEY 1
0660b5af
CM
1194#define BTRFS_INODE_REF_KEY 12
1195#define BTRFS_XATTR_ITEM_KEY 24
1196#define BTRFS_ORPHAN_ITEM_KEY 48
9078a3e1 1197/* reserve 2-15 close to the inode for later flexibility */
1e1d2701
CM
1198
1199/*
1200 * dir items are the name -> inode pointers in a directory. There is one
1201 * for every name in a directory.
1202 */
0660b5af
CM
1203#define BTRFS_DIR_LOG_ITEM_KEY 60
1204#define BTRFS_DIR_LOG_INDEX_KEY 72
1205#define BTRFS_DIR_ITEM_KEY 84
1206#define BTRFS_DIR_INDEX_KEY 96
1e1d2701 1207/*
9078a3e1 1208 * extent data is for file data
1e1d2701 1209 */
0660b5af 1210#define BTRFS_EXTENT_DATA_KEY 108
d20f7043 1211
f254e52c 1212/*
d20f7043
CM
1213 * extent csums are stored in a separate tree and hold csums for
1214 * an entire extent on disk.
f254e52c 1215 */
d20f7043 1216#define BTRFS_EXTENT_CSUM_KEY 128
f254e52c 1217
1e1d2701 1218/*
d4a78947 1219 * root items point to tree roots. They are typically in the root
1e1d2701
CM
1220 * tree used by the super block to find all the other trees
1221 */
0660b5af
CM
1222#define BTRFS_ROOT_ITEM_KEY 132
1223
1224/*
1225 * root backrefs tie subvols and snapshots to the directory entries that
1226 * reference them
1227 */
1228#define BTRFS_ROOT_BACKREF_KEY 144
1229
1230/*
1231 * root refs make a fast index for listing all of the snapshots and
1232 * subvolumes referenced by a given root. They point directly to the
1233 * directory item in the root that references the subvol
1234 */
1235#define BTRFS_ROOT_REF_KEY 156
1236
1e1d2701
CM
1237/*
1238 * extent items are in the extent map tree. These record which blocks
1239 * are used, and how many references there are to each block
1240 */
0660b5af 1241#define BTRFS_EXTENT_ITEM_KEY 168
5d4f98a2
YZ
1242
1243#define BTRFS_TREE_BLOCK_REF_KEY 176
1244
1245#define BTRFS_EXTENT_DATA_REF_KEY 178
1246
1247#define BTRFS_EXTENT_REF_V0_KEY 180
1248
1249#define BTRFS_SHARED_BLOCK_REF_KEY 182
1250
1251#define BTRFS_SHARED_DATA_REF_KEY 184
9078a3e1
CM
1252
1253/*
1254 * block groups give us hints into the extent allocation trees. Which
1255 * blocks are free etc etc
1256 */
0660b5af 1257#define BTRFS_BLOCK_GROUP_ITEM_KEY 192
9f5fae2f 1258
0660b5af
CM
1259#define BTRFS_DEV_EXTENT_KEY 204
1260#define BTRFS_DEV_ITEM_KEY 216
1261#define BTRFS_CHUNK_ITEM_KEY 228
0b86a832 1262
1e1d2701
CM
1263/*
1264 * string items are for debugging. They just store a short string of
1265 * data in the FS
1266 */
9078a3e1
CM
1267#define BTRFS_STRING_ITEM_KEY 253
1268
21ad10cf
CM
1269#define BTRFS_MOUNT_NODATASUM (1 << 0)
1270#define BTRFS_MOUNT_NODATACOW (1 << 1)
1271#define BTRFS_MOUNT_NOBARRIER (1 << 2)
e18e4809 1272#define BTRFS_MOUNT_SSD (1 << 3)
dfe25020 1273#define BTRFS_MOUNT_DEGRADED (1 << 4)
c8b97818 1274#define BTRFS_MOUNT_COMPRESS (1 << 5)
3a5e1404 1275#define BTRFS_MOUNT_NOTREELOG (1 << 6)
dccae999 1276#define BTRFS_MOUNT_FLUSHONCOMMIT (1 << 7)
451d7585 1277#define BTRFS_MOUNT_SSD_SPREAD (1 << 8)
c289811c 1278#define BTRFS_MOUNT_NOSSD (1 << 9)
e244a0ae 1279#define BTRFS_MOUNT_DISCARD (1 << 10)
a555f810 1280#define BTRFS_MOUNT_FORCE_COMPRESS (1 << 11)
0af3d00b 1281#define BTRFS_MOUNT_SPACE_CACHE (1 << 12)
88c2ba3b 1282#define BTRFS_MOUNT_CLEAR_CACHE (1 << 13)
4260f7c7 1283#define BTRFS_MOUNT_USER_SUBVOL_RM_ALLOWED (1 << 14)
91435650 1284#define BTRFS_MOUNT_ENOSPC_DEBUG (1 << 15)
b6cda9bc
CM
1285
1286#define btrfs_clear_opt(o, opt) ((o) &= ~BTRFS_MOUNT_##opt)
1287#define btrfs_set_opt(o, opt) ((o) |= BTRFS_MOUNT_##opt)
1288#define btrfs_test_opt(root, opt) ((root)->fs_info->mount_opt & \
1289 BTRFS_MOUNT_##opt)
b98b6767
Y
1290/*
1291 * Inode flags
1292 */
fdebe2bd
Y
1293#define BTRFS_INODE_NODATASUM (1 << 0)
1294#define BTRFS_INODE_NODATACOW (1 << 1)
1295#define BTRFS_INODE_READONLY (1 << 2)
c8b97818 1296#define BTRFS_INODE_NOCOMPRESS (1 << 3)
d899e052 1297#define BTRFS_INODE_PREALLOC (1 << 4)
6cbff00f
CH
1298#define BTRFS_INODE_SYNC (1 << 5)
1299#define BTRFS_INODE_IMMUTABLE (1 << 6)
1300#define BTRFS_INODE_APPEND (1 << 7)
1301#define BTRFS_INODE_NODUMP (1 << 8)
1302#define BTRFS_INODE_NOATIME (1 << 9)
1303#define BTRFS_INODE_DIRSYNC (1 << 10)
75e7cb7f 1304#define BTRFS_INODE_COMPRESS (1 << 11)
6cbff00f 1305
08fe4db1
LZ
1306#define BTRFS_INODE_ROOT_ITEM_INIT (1 << 31)
1307
5f39d397
CM
1308/* some macros to generate set/get funcs for the struct fields. This
1309 * assumes there is a lefoo_to_cpu for every type, so lets make a simple
1310 * one for u8:
1311 */
1312#define le8_to_cpu(v) (v)
1313#define cpu_to_le8(v) (v)
1314#define __le8 u8
1315
1316#define read_eb_member(eb, ptr, type, member, result) ( \
1317 read_extent_buffer(eb, (char *)(result), \
1318 ((unsigned long)(ptr)) + \
1319 offsetof(type, member), \
1320 sizeof(((type *)0)->member)))
1321
1322#define write_eb_member(eb, ptr, type, member, result) ( \
1323 write_extent_buffer(eb, (char *)(result), \
1324 ((unsigned long)(ptr)) + \
1325 offsetof(type, member), \
1326 sizeof(((type *)0)->member)))
1327
0f82731f 1328#ifndef BTRFS_SETGET_FUNCS
5f39d397 1329#define BTRFS_SETGET_FUNCS(name, type, member, bits) \
0f82731f
CM
1330u##bits btrfs_##name(struct extent_buffer *eb, type *s); \
1331void btrfs_set_##name(struct extent_buffer *eb, type *s, u##bits val);
1332#endif
5f39d397
CM
1333
1334#define BTRFS_SETGET_HEADER_FUNCS(name, type, member, bits) \
1335static inline u##bits btrfs_##name(struct extent_buffer *eb) \
1336{ \
df68b8a7
DM
1337 type *p = kmap_atomic(eb->first_page, KM_USER0); \
1338 u##bits res = le##bits##_to_cpu(p->member); \
1339 kunmap_atomic(p, KM_USER0); \
810191ff 1340 return res; \
5f39d397
CM
1341} \
1342static inline void btrfs_set_##name(struct extent_buffer *eb, \
1343 u##bits val) \
1344{ \
df68b8a7
DM
1345 type *p = kmap_atomic(eb->first_page, KM_USER0); \
1346 p->member = cpu_to_le##bits(val); \
1347 kunmap_atomic(p, KM_USER0); \
5f39d397 1348}
9078a3e1 1349
5f39d397
CM
1350#define BTRFS_SETGET_STACK_FUNCS(name, type, member, bits) \
1351static inline u##bits btrfs_##name(type *s) \
1352{ \
1353 return le##bits##_to_cpu(s->member); \
1354} \
1355static inline void btrfs_set_##name(type *s, u##bits val) \
1356{ \
1357 s->member = cpu_to_le##bits(val); \
1e1d2701
CM
1358}
1359
0b86a832
CM
1360BTRFS_SETGET_FUNCS(device_type, struct btrfs_dev_item, type, 64);
1361BTRFS_SETGET_FUNCS(device_total_bytes, struct btrfs_dev_item, total_bytes, 64);
1362BTRFS_SETGET_FUNCS(device_bytes_used, struct btrfs_dev_item, bytes_used, 64);
1363BTRFS_SETGET_FUNCS(device_io_align, struct btrfs_dev_item, io_align, 32);
1364BTRFS_SETGET_FUNCS(device_io_width, struct btrfs_dev_item, io_width, 32);
c3027eb5
CM
1365BTRFS_SETGET_FUNCS(device_start_offset, struct btrfs_dev_item,
1366 start_offset, 64);
0b86a832
CM
1367BTRFS_SETGET_FUNCS(device_sector_size, struct btrfs_dev_item, sector_size, 32);
1368BTRFS_SETGET_FUNCS(device_id, struct btrfs_dev_item, devid, 64);
e17cade2
CM
1369BTRFS_SETGET_FUNCS(device_group, struct btrfs_dev_item, dev_group, 32);
1370BTRFS_SETGET_FUNCS(device_seek_speed, struct btrfs_dev_item, seek_speed, 8);
1371BTRFS_SETGET_FUNCS(device_bandwidth, struct btrfs_dev_item, bandwidth, 8);
2b82032c 1372BTRFS_SETGET_FUNCS(device_generation, struct btrfs_dev_item, generation, 64);
0b86a832 1373
8a4b83cc
CM
1374BTRFS_SETGET_STACK_FUNCS(stack_device_type, struct btrfs_dev_item, type, 64);
1375BTRFS_SETGET_STACK_FUNCS(stack_device_total_bytes, struct btrfs_dev_item,
1376 total_bytes, 64);
1377BTRFS_SETGET_STACK_FUNCS(stack_device_bytes_used, struct btrfs_dev_item,
1378 bytes_used, 64);
1379BTRFS_SETGET_STACK_FUNCS(stack_device_io_align, struct btrfs_dev_item,
1380 io_align, 32);
1381BTRFS_SETGET_STACK_FUNCS(stack_device_io_width, struct btrfs_dev_item,
1382 io_width, 32);
1383BTRFS_SETGET_STACK_FUNCS(stack_device_sector_size, struct btrfs_dev_item,
1384 sector_size, 32);
1385BTRFS_SETGET_STACK_FUNCS(stack_device_id, struct btrfs_dev_item, devid, 64);
e17cade2
CM
1386BTRFS_SETGET_STACK_FUNCS(stack_device_group, struct btrfs_dev_item,
1387 dev_group, 32);
1388BTRFS_SETGET_STACK_FUNCS(stack_device_seek_speed, struct btrfs_dev_item,
1389 seek_speed, 8);
1390BTRFS_SETGET_STACK_FUNCS(stack_device_bandwidth, struct btrfs_dev_item,
1391 bandwidth, 8);
2b82032c
YZ
1392BTRFS_SETGET_STACK_FUNCS(stack_device_generation, struct btrfs_dev_item,
1393 generation, 64);
8a4b83cc 1394
0b86a832
CM
1395static inline char *btrfs_device_uuid(struct btrfs_dev_item *d)
1396{
1397 return (char *)d + offsetof(struct btrfs_dev_item, uuid);
1398}
1399
2b82032c
YZ
1400static inline char *btrfs_device_fsid(struct btrfs_dev_item *d)
1401{
1402 return (char *)d + offsetof(struct btrfs_dev_item, fsid);
1403}
1404
e17cade2 1405BTRFS_SETGET_FUNCS(chunk_length, struct btrfs_chunk, length, 64);
0b86a832
CM
1406BTRFS_SETGET_FUNCS(chunk_owner, struct btrfs_chunk, owner, 64);
1407BTRFS_SETGET_FUNCS(chunk_stripe_len, struct btrfs_chunk, stripe_len, 64);
1408BTRFS_SETGET_FUNCS(chunk_io_align, struct btrfs_chunk, io_align, 32);
1409BTRFS_SETGET_FUNCS(chunk_io_width, struct btrfs_chunk, io_width, 32);
1410BTRFS_SETGET_FUNCS(chunk_sector_size, struct btrfs_chunk, sector_size, 32);
1411BTRFS_SETGET_FUNCS(chunk_type, struct btrfs_chunk, type, 64);
1412BTRFS_SETGET_FUNCS(chunk_num_stripes, struct btrfs_chunk, num_stripes, 16);
321aecc6 1413BTRFS_SETGET_FUNCS(chunk_sub_stripes, struct btrfs_chunk, sub_stripes, 16);
0b86a832
CM
1414BTRFS_SETGET_FUNCS(stripe_devid, struct btrfs_stripe, devid, 64);
1415BTRFS_SETGET_FUNCS(stripe_offset, struct btrfs_stripe, offset, 64);
1416
e17cade2
CM
1417static inline char *btrfs_stripe_dev_uuid(struct btrfs_stripe *s)
1418{
1419 return (char *)s + offsetof(struct btrfs_stripe, dev_uuid);
1420}
1421
1422BTRFS_SETGET_STACK_FUNCS(stack_chunk_length, struct btrfs_chunk, length, 64);
0b86a832
CM
1423BTRFS_SETGET_STACK_FUNCS(stack_chunk_owner, struct btrfs_chunk, owner, 64);
1424BTRFS_SETGET_STACK_FUNCS(stack_chunk_stripe_len, struct btrfs_chunk,
1425 stripe_len, 64);
1426BTRFS_SETGET_STACK_FUNCS(stack_chunk_io_align, struct btrfs_chunk,
1427 io_align, 32);
1428BTRFS_SETGET_STACK_FUNCS(stack_chunk_io_width, struct btrfs_chunk,
1429 io_width, 32);
1430BTRFS_SETGET_STACK_FUNCS(stack_chunk_sector_size, struct btrfs_chunk,
1431 sector_size, 32);
1432BTRFS_SETGET_STACK_FUNCS(stack_chunk_type, struct btrfs_chunk, type, 64);
1433BTRFS_SETGET_STACK_FUNCS(stack_chunk_num_stripes, struct btrfs_chunk,
1434 num_stripes, 16);
321aecc6
CM
1435BTRFS_SETGET_STACK_FUNCS(stack_chunk_sub_stripes, struct btrfs_chunk,
1436 sub_stripes, 16);
0b86a832
CM
1437BTRFS_SETGET_STACK_FUNCS(stack_stripe_devid, struct btrfs_stripe, devid, 64);
1438BTRFS_SETGET_STACK_FUNCS(stack_stripe_offset, struct btrfs_stripe, offset, 64);
1439
1440static inline struct btrfs_stripe *btrfs_stripe_nr(struct btrfs_chunk *c,
1441 int nr)
1442{
1443 unsigned long offset = (unsigned long)c;
1444 offset += offsetof(struct btrfs_chunk, stripe);
1445 offset += nr * sizeof(struct btrfs_stripe);
1446 return (struct btrfs_stripe *)offset;
1447}
1448
a443755f
CM
1449static inline char *btrfs_stripe_dev_uuid_nr(struct btrfs_chunk *c, int nr)
1450{
1451 return btrfs_stripe_dev_uuid(btrfs_stripe_nr(c, nr));
1452}
1453
0b86a832
CM
1454static inline u64 btrfs_stripe_offset_nr(struct extent_buffer *eb,
1455 struct btrfs_chunk *c, int nr)
1456{
1457 return btrfs_stripe_offset(eb, btrfs_stripe_nr(c, nr));
1458}
1459
1460static inline void btrfs_set_stripe_offset_nr(struct extent_buffer *eb,
1461 struct btrfs_chunk *c, int nr,
1462 u64 val)
1463{
1464 btrfs_set_stripe_offset(eb, btrfs_stripe_nr(c, nr), val);
1465}
1466
1467static inline u64 btrfs_stripe_devid_nr(struct extent_buffer *eb,
1468 struct btrfs_chunk *c, int nr)
1469{
1470 return btrfs_stripe_devid(eb, btrfs_stripe_nr(c, nr));
1471}
1472
1473static inline void btrfs_set_stripe_devid_nr(struct extent_buffer *eb,
1474 struct btrfs_chunk *c, int nr,
1475 u64 val)
1476{
1477 btrfs_set_stripe_devid(eb, btrfs_stripe_nr(c, nr), val);
1478}
1479
5f39d397
CM
1480/* struct btrfs_block_group_item */
1481BTRFS_SETGET_STACK_FUNCS(block_group_used, struct btrfs_block_group_item,
1482 used, 64);
1483BTRFS_SETGET_FUNCS(disk_block_group_used, struct btrfs_block_group_item,
1484 used, 64);
0b86a832
CM
1485BTRFS_SETGET_STACK_FUNCS(block_group_chunk_objectid,
1486 struct btrfs_block_group_item, chunk_objectid, 64);
e17cade2
CM
1487
1488BTRFS_SETGET_FUNCS(disk_block_group_chunk_objectid,
0b86a832
CM
1489 struct btrfs_block_group_item, chunk_objectid, 64);
1490BTRFS_SETGET_FUNCS(disk_block_group_flags,
1491 struct btrfs_block_group_item, flags, 64);
1492BTRFS_SETGET_STACK_FUNCS(block_group_flags,
1493 struct btrfs_block_group_item, flags, 64);
1e1d2701 1494
3954401f
CM
1495/* struct btrfs_inode_ref */
1496BTRFS_SETGET_FUNCS(inode_ref_name_len, struct btrfs_inode_ref, name_len, 16);
aec7477b 1497BTRFS_SETGET_FUNCS(inode_ref_index, struct btrfs_inode_ref, index, 64);
3954401f 1498
5f39d397
CM
1499/* struct btrfs_inode_item */
1500BTRFS_SETGET_FUNCS(inode_generation, struct btrfs_inode_item, generation, 64);
c3027eb5 1501BTRFS_SETGET_FUNCS(inode_sequence, struct btrfs_inode_item, sequence, 64);
e02119d5 1502BTRFS_SETGET_FUNCS(inode_transid, struct btrfs_inode_item, transid, 64);
5f39d397 1503BTRFS_SETGET_FUNCS(inode_size, struct btrfs_inode_item, size, 64);
a76a3cd4 1504BTRFS_SETGET_FUNCS(inode_nbytes, struct btrfs_inode_item, nbytes, 64);
5f39d397
CM
1505BTRFS_SETGET_FUNCS(inode_block_group, struct btrfs_inode_item, block_group, 64);
1506BTRFS_SETGET_FUNCS(inode_nlink, struct btrfs_inode_item, nlink, 32);
1507BTRFS_SETGET_FUNCS(inode_uid, struct btrfs_inode_item, uid, 32);
1508BTRFS_SETGET_FUNCS(inode_gid, struct btrfs_inode_item, gid, 32);
1509BTRFS_SETGET_FUNCS(inode_mode, struct btrfs_inode_item, mode, 32);
0b86a832 1510BTRFS_SETGET_FUNCS(inode_rdev, struct btrfs_inode_item, rdev, 64);
f2b636e8 1511BTRFS_SETGET_FUNCS(inode_flags, struct btrfs_inode_item, flags, 64);
1e1d2701 1512
0b86a832 1513static inline struct btrfs_timespec *
5f39d397 1514btrfs_inode_atime(struct btrfs_inode_item *inode_item)
1e1d2701 1515{
5f39d397
CM
1516 unsigned long ptr = (unsigned long)inode_item;
1517 ptr += offsetof(struct btrfs_inode_item, atime);
0b86a832 1518 return (struct btrfs_timespec *)ptr;
1e1d2701
CM
1519}
1520
0b86a832 1521static inline struct btrfs_timespec *
5f39d397 1522btrfs_inode_mtime(struct btrfs_inode_item *inode_item)
1e1d2701 1523{
5f39d397
CM
1524 unsigned long ptr = (unsigned long)inode_item;
1525 ptr += offsetof(struct btrfs_inode_item, mtime);
0b86a832 1526 return (struct btrfs_timespec *)ptr;
1e1d2701
CM
1527}
1528
0b86a832 1529static inline struct btrfs_timespec *
5f39d397 1530btrfs_inode_ctime(struct btrfs_inode_item *inode_item)
1e1d2701 1531{
5f39d397
CM
1532 unsigned long ptr = (unsigned long)inode_item;
1533 ptr += offsetof(struct btrfs_inode_item, ctime);
0b86a832 1534 return (struct btrfs_timespec *)ptr;
1e1d2701
CM
1535}
1536
0b86a832 1537static inline struct btrfs_timespec *
5f39d397 1538btrfs_inode_otime(struct btrfs_inode_item *inode_item)
1e1d2701 1539{
5f39d397
CM
1540 unsigned long ptr = (unsigned long)inode_item;
1541 ptr += offsetof(struct btrfs_inode_item, otime);
0b86a832 1542 return (struct btrfs_timespec *)ptr;
1e1d2701
CM
1543}
1544
0b86a832
CM
1545BTRFS_SETGET_FUNCS(timespec_sec, struct btrfs_timespec, sec, 64);
1546BTRFS_SETGET_FUNCS(timespec_nsec, struct btrfs_timespec, nsec, 32);
e20d96d6 1547
0b86a832 1548/* struct btrfs_dev_extent */
e17cade2
CM
1549BTRFS_SETGET_FUNCS(dev_extent_chunk_tree, struct btrfs_dev_extent,
1550 chunk_tree, 64);
1551BTRFS_SETGET_FUNCS(dev_extent_chunk_objectid, struct btrfs_dev_extent,
1552 chunk_objectid, 64);
1553BTRFS_SETGET_FUNCS(dev_extent_chunk_offset, struct btrfs_dev_extent,
1554 chunk_offset, 64);
0b86a832
CM
1555BTRFS_SETGET_FUNCS(dev_extent_length, struct btrfs_dev_extent, length, 64);
1556
e17cade2
CM
1557static inline u8 *btrfs_dev_extent_chunk_tree_uuid(struct btrfs_dev_extent *dev)
1558{
1559 unsigned long ptr = offsetof(struct btrfs_dev_extent, chunk_tree_uuid);
1560 return (u8 *)((unsigned long)dev + ptr);
1561}
1562
5d4f98a2
YZ
1563BTRFS_SETGET_FUNCS(extent_refs, struct btrfs_extent_item, refs, 64);
1564BTRFS_SETGET_FUNCS(extent_generation, struct btrfs_extent_item,
1565 generation, 64);
1566BTRFS_SETGET_FUNCS(extent_flags, struct btrfs_extent_item, flags, 64);
74493f7a 1567
5d4f98a2
YZ
1568BTRFS_SETGET_FUNCS(extent_refs_v0, struct btrfs_extent_item_v0, refs, 32);
1569
1570
1571BTRFS_SETGET_FUNCS(tree_block_level, struct btrfs_tree_block_info, level, 8);
1572
1573static inline void btrfs_tree_block_key(struct extent_buffer *eb,
1574 struct btrfs_tree_block_info *item,
1575 struct btrfs_disk_key *key)
1576{
1577 read_eb_member(eb, item, struct btrfs_tree_block_info, key, key);
1578}
1579
1580static inline void btrfs_set_tree_block_key(struct extent_buffer *eb,
1581 struct btrfs_tree_block_info *item,
1582 struct btrfs_disk_key *key)
1583{
1584 write_eb_member(eb, item, struct btrfs_tree_block_info, key, key);
1585}
e20d96d6 1586
5d4f98a2
YZ
1587BTRFS_SETGET_FUNCS(extent_data_ref_root, struct btrfs_extent_data_ref,
1588 root, 64);
1589BTRFS_SETGET_FUNCS(extent_data_ref_objectid, struct btrfs_extent_data_ref,
1590 objectid, 64);
1591BTRFS_SETGET_FUNCS(extent_data_ref_offset, struct btrfs_extent_data_ref,
1592 offset, 64);
1593BTRFS_SETGET_FUNCS(extent_data_ref_count, struct btrfs_extent_data_ref,
1594 count, 32);
1595
1596BTRFS_SETGET_FUNCS(shared_data_ref_count, struct btrfs_shared_data_ref,
1597 count, 32);
1598
1599BTRFS_SETGET_FUNCS(extent_inline_ref_type, struct btrfs_extent_inline_ref,
1600 type, 8);
1601BTRFS_SETGET_FUNCS(extent_inline_ref_offset, struct btrfs_extent_inline_ref,
1602 offset, 64);
1603
1604static inline u32 btrfs_extent_inline_ref_size(int type)
1605{
1606 if (type == BTRFS_TREE_BLOCK_REF_KEY ||
1607 type == BTRFS_SHARED_BLOCK_REF_KEY)
1608 return sizeof(struct btrfs_extent_inline_ref);
1609 if (type == BTRFS_SHARED_DATA_REF_KEY)
1610 return sizeof(struct btrfs_shared_data_ref) +
1611 sizeof(struct btrfs_extent_inline_ref);
1612 if (type == BTRFS_EXTENT_DATA_REF_KEY)
1613 return sizeof(struct btrfs_extent_data_ref) +
1614 offsetof(struct btrfs_extent_inline_ref, offset);
1615 BUG();
1616 return 0;
1617}
1618
1619BTRFS_SETGET_FUNCS(ref_root_v0, struct btrfs_extent_ref_v0, root, 64);
1620BTRFS_SETGET_FUNCS(ref_generation_v0, struct btrfs_extent_ref_v0,
1621 generation, 64);
1622BTRFS_SETGET_FUNCS(ref_objectid_v0, struct btrfs_extent_ref_v0, objectid, 64);
1623BTRFS_SETGET_FUNCS(ref_count_v0, struct btrfs_extent_ref_v0, count, 32);
e20d96d6 1624
5f39d397
CM
1625/* struct btrfs_node */
1626BTRFS_SETGET_FUNCS(key_blockptr, struct btrfs_key_ptr, blockptr, 64);
74493f7a 1627BTRFS_SETGET_FUNCS(key_generation, struct btrfs_key_ptr, generation, 64);
e20d96d6 1628
5f39d397 1629static inline u64 btrfs_node_blockptr(struct extent_buffer *eb, int nr)
cf27e1ee 1630{
5f39d397
CM
1631 unsigned long ptr;
1632 ptr = offsetof(struct btrfs_node, ptrs) +
1633 sizeof(struct btrfs_key_ptr) * nr;
1634 return btrfs_key_blockptr(eb, (struct btrfs_key_ptr *)ptr);
cf27e1ee
CM
1635}
1636
5f39d397
CM
1637static inline void btrfs_set_node_blockptr(struct extent_buffer *eb,
1638 int nr, u64 val)
cf27e1ee 1639{
5f39d397
CM
1640 unsigned long ptr;
1641 ptr = offsetof(struct btrfs_node, ptrs) +
1642 sizeof(struct btrfs_key_ptr) * nr;
1643 btrfs_set_key_blockptr(eb, (struct btrfs_key_ptr *)ptr, val);
cf27e1ee
CM
1644}
1645
74493f7a
CM
1646static inline u64 btrfs_node_ptr_generation(struct extent_buffer *eb, int nr)
1647{
1648 unsigned long ptr;
1649 ptr = offsetof(struct btrfs_node, ptrs) +
1650 sizeof(struct btrfs_key_ptr) * nr;
1651 return btrfs_key_generation(eb, (struct btrfs_key_ptr *)ptr);
1652}
1653
1654static inline void btrfs_set_node_ptr_generation(struct extent_buffer *eb,
1655 int nr, u64 val)
1656{
1657 unsigned long ptr;
1658 ptr = offsetof(struct btrfs_node, ptrs) +
1659 sizeof(struct btrfs_key_ptr) * nr;
1660 btrfs_set_key_generation(eb, (struct btrfs_key_ptr *)ptr, val);
1661}
1662
810191ff 1663static inline unsigned long btrfs_node_key_ptr_offset(int nr)
4d775673 1664{
5f39d397
CM
1665 return offsetof(struct btrfs_node, ptrs) +
1666 sizeof(struct btrfs_key_ptr) * nr;
4d775673
CM
1667}
1668
e644d021
CM
1669void btrfs_node_key(struct extent_buffer *eb,
1670 struct btrfs_disk_key *disk_key, int nr);
1671
5f39d397
CM
1672static inline void btrfs_set_node_key(struct extent_buffer *eb,
1673 struct btrfs_disk_key *disk_key, int nr)
1d4f8a0c 1674{
5f39d397
CM
1675 unsigned long ptr;
1676 ptr = btrfs_node_key_ptr_offset(nr);
1677 write_eb_member(eb, (struct btrfs_key_ptr *)ptr,
1678 struct btrfs_key_ptr, key, disk_key);
1d4f8a0c
CM
1679}
1680
5f39d397
CM
1681/* struct btrfs_item */
1682BTRFS_SETGET_FUNCS(item_offset, struct btrfs_item, offset, 32);
1683BTRFS_SETGET_FUNCS(item_size, struct btrfs_item, size, 32);
4d775673 1684
5f39d397 1685static inline unsigned long btrfs_item_nr_offset(int nr)
1d4f8a0c 1686{
5f39d397
CM
1687 return offsetof(struct btrfs_leaf, items) +
1688 sizeof(struct btrfs_item) * nr;
1d4f8a0c
CM
1689}
1690
5f39d397
CM
1691static inline struct btrfs_item *btrfs_item_nr(struct extent_buffer *eb,
1692 int nr)
0783fcfc 1693{
5f39d397 1694 return (struct btrfs_item *)btrfs_item_nr_offset(nr);
0783fcfc
CM
1695}
1696
5f39d397
CM
1697static inline u32 btrfs_item_end(struct extent_buffer *eb,
1698 struct btrfs_item *item)
0783fcfc 1699{
5f39d397 1700 return btrfs_item_offset(eb, item) + btrfs_item_size(eb, item);
0783fcfc
CM
1701}
1702
5f39d397 1703static inline u32 btrfs_item_end_nr(struct extent_buffer *eb, int nr)
0783fcfc 1704{
5f39d397 1705 return btrfs_item_end(eb, btrfs_item_nr(eb, nr));
0783fcfc
CM
1706}
1707
5f39d397 1708static inline u32 btrfs_item_offset_nr(struct extent_buffer *eb, int nr)
0783fcfc 1709{
5f39d397 1710 return btrfs_item_offset(eb, btrfs_item_nr(eb, nr));
0783fcfc
CM
1711}
1712
5f39d397 1713static inline u32 btrfs_item_size_nr(struct extent_buffer *eb, int nr)
0783fcfc 1714{
5f39d397 1715 return btrfs_item_size(eb, btrfs_item_nr(eb, nr));
0783fcfc
CM
1716}
1717
5f39d397
CM
1718static inline void btrfs_item_key(struct extent_buffer *eb,
1719 struct btrfs_disk_key *disk_key, int nr)
1d4f6404 1720{
5f39d397
CM
1721 struct btrfs_item *item = btrfs_item_nr(eb, nr);
1722 read_eb_member(eb, item, struct btrfs_item, key, disk_key);
1d4f6404
CM
1723}
1724
5f39d397
CM
1725static inline void btrfs_set_item_key(struct extent_buffer *eb,
1726 struct btrfs_disk_key *disk_key, int nr)
1d4f6404 1727{
5f39d397
CM
1728 struct btrfs_item *item = btrfs_item_nr(eb, nr);
1729 write_eb_member(eb, item, struct btrfs_item, key, disk_key);
1d4f6404
CM
1730}
1731
e02119d5
CM
1732BTRFS_SETGET_FUNCS(dir_log_end, struct btrfs_dir_log_item, end, 64);
1733
0660b5af
CM
1734/*
1735 * struct btrfs_root_ref
1736 */
1737BTRFS_SETGET_FUNCS(root_ref_dirid, struct btrfs_root_ref, dirid, 64);
1738BTRFS_SETGET_FUNCS(root_ref_sequence, struct btrfs_root_ref, sequence, 64);
1739BTRFS_SETGET_FUNCS(root_ref_name_len, struct btrfs_root_ref, name_len, 16);
1740
5f39d397 1741/* struct btrfs_dir_item */
5103e947 1742BTRFS_SETGET_FUNCS(dir_data_len, struct btrfs_dir_item, data_len, 16);
5f39d397
CM
1743BTRFS_SETGET_FUNCS(dir_type, struct btrfs_dir_item, type, 8);
1744BTRFS_SETGET_FUNCS(dir_name_len, struct btrfs_dir_item, name_len, 16);
e02119d5 1745BTRFS_SETGET_FUNCS(dir_transid, struct btrfs_dir_item, transid, 64);
1d4f6404 1746
5f39d397
CM
1747static inline void btrfs_dir_item_key(struct extent_buffer *eb,
1748 struct btrfs_dir_item *item,
1749 struct btrfs_disk_key *key)
1d4f6404 1750{
5f39d397 1751 read_eb_member(eb, item, struct btrfs_dir_item, location, key);
1d4f6404
CM
1752}
1753
5f39d397
CM
1754static inline void btrfs_set_dir_item_key(struct extent_buffer *eb,
1755 struct btrfs_dir_item *item,
1756 struct btrfs_disk_key *key)
a8a2ee0c 1757{
5f39d397 1758 write_eb_member(eb, item, struct btrfs_dir_item, location, key);
a8a2ee0c
CM
1759}
1760
0af3d00b
JB
1761BTRFS_SETGET_FUNCS(free_space_entries, struct btrfs_free_space_header,
1762 num_entries, 64);
1763BTRFS_SETGET_FUNCS(free_space_bitmaps, struct btrfs_free_space_header,
1764 num_bitmaps, 64);
1765BTRFS_SETGET_FUNCS(free_space_generation, struct btrfs_free_space_header,
1766 generation, 64);
1767
1768static inline void btrfs_free_space_key(struct extent_buffer *eb,
1769 struct btrfs_free_space_header *h,
1770 struct btrfs_disk_key *key)
1771{
1772 read_eb_member(eb, h, struct btrfs_free_space_header, location, key);
1773}
1774
1775static inline void btrfs_set_free_space_key(struct extent_buffer *eb,
1776 struct btrfs_free_space_header *h,
1777 struct btrfs_disk_key *key)
1778{
1779 write_eb_member(eb, h, struct btrfs_free_space_header, location, key);
1780}
1781
5f39d397
CM
1782/* struct btrfs_disk_key */
1783BTRFS_SETGET_STACK_FUNCS(disk_key_objectid, struct btrfs_disk_key,
1784 objectid, 64);
1785BTRFS_SETGET_STACK_FUNCS(disk_key_offset, struct btrfs_disk_key, offset, 64);
1786BTRFS_SETGET_STACK_FUNCS(disk_key_type, struct btrfs_disk_key, type, 8);
1d4f6404 1787
e2fa7227
CM
1788static inline void btrfs_disk_key_to_cpu(struct btrfs_key *cpu,
1789 struct btrfs_disk_key *disk)
1790{
1791 cpu->offset = le64_to_cpu(disk->offset);
5f39d397 1792 cpu->type = disk->type;
e2fa7227
CM
1793 cpu->objectid = le64_to_cpu(disk->objectid);
1794}
1795
1796static inline void btrfs_cpu_key_to_disk(struct btrfs_disk_key *disk,
1797 struct btrfs_key *cpu)
1798{
1799 disk->offset = cpu_to_le64(cpu->offset);
5f39d397 1800 disk->type = cpu->type;
e2fa7227
CM
1801 disk->objectid = cpu_to_le64(cpu->objectid);
1802}
1803
5f39d397
CM
1804static inline void btrfs_node_key_to_cpu(struct extent_buffer *eb,
1805 struct btrfs_key *key, int nr)
7f5c1516 1806{
5f39d397
CM
1807 struct btrfs_disk_key disk_key;
1808 btrfs_node_key(eb, &disk_key, nr);
1809 btrfs_disk_key_to_cpu(key, &disk_key);
7f5c1516
CM
1810}
1811
5f39d397
CM
1812static inline void btrfs_item_key_to_cpu(struct extent_buffer *eb,
1813 struct btrfs_key *key, int nr)
7f5c1516 1814{
5f39d397
CM
1815 struct btrfs_disk_key disk_key;
1816 btrfs_item_key(eb, &disk_key, nr);
1817 btrfs_disk_key_to_cpu(key, &disk_key);
7f5c1516
CM
1818}
1819
5f39d397
CM
1820static inline void btrfs_dir_item_key_to_cpu(struct extent_buffer *eb,
1821 struct btrfs_dir_item *item,
1822 struct btrfs_key *key)
4d775673 1823{
5f39d397
CM
1824 struct btrfs_disk_key disk_key;
1825 btrfs_dir_item_key(eb, item, &disk_key);
1826 btrfs_disk_key_to_cpu(key, &disk_key);
4d775673
CM
1827}
1828
58176a96 1829
5f39d397 1830static inline u8 btrfs_key_type(struct btrfs_key *key)
3768f368 1831{
5f39d397 1832 return key->type;
3768f368
CM
1833}
1834
5f39d397 1835static inline void btrfs_set_key_type(struct btrfs_key *key, u8 val)
3768f368 1836{
5f39d397 1837 key->type = val;
3768f368
CM
1838}
1839
5f39d397 1840/* struct btrfs_header */
db94535d 1841BTRFS_SETGET_HEADER_FUNCS(header_bytenr, struct btrfs_header, bytenr, 64);
5f39d397
CM
1842BTRFS_SETGET_HEADER_FUNCS(header_generation, struct btrfs_header,
1843 generation, 64);
1844BTRFS_SETGET_HEADER_FUNCS(header_owner, struct btrfs_header, owner, 64);
1845BTRFS_SETGET_HEADER_FUNCS(header_nritems, struct btrfs_header, nritems, 32);
63b10fc4 1846BTRFS_SETGET_HEADER_FUNCS(header_flags, struct btrfs_header, flags, 64);
5f39d397 1847BTRFS_SETGET_HEADER_FUNCS(header_level, struct btrfs_header, level, 8);
0f7d52f4 1848
63b10fc4
CM
1849static inline int btrfs_header_flag(struct extent_buffer *eb, u64 flag)
1850{
1851 return (btrfs_header_flags(eb) & flag) == flag;
1852}
1853
1854static inline int btrfs_set_header_flag(struct extent_buffer *eb, u64 flag)
1855{
1856 u64 flags = btrfs_header_flags(eb);
1857 btrfs_set_header_flags(eb, flags | flag);
1858 return (flags & flag) == flag;
1859}
1860
1861static inline int btrfs_clear_header_flag(struct extent_buffer *eb, u64 flag)
1862{
1863 u64 flags = btrfs_header_flags(eb);
1864 btrfs_set_header_flags(eb, flags & ~flag);
1865 return (flags & flag) == flag;
1866}
1867
5d4f98a2
YZ
1868static inline int btrfs_header_backref_rev(struct extent_buffer *eb)
1869{
1870 u64 flags = btrfs_header_flags(eb);
1871 return flags >> BTRFS_BACKREF_REV_SHIFT;
1872}
1873
1874static inline void btrfs_set_header_backref_rev(struct extent_buffer *eb,
1875 int rev)
1876{
1877 u64 flags = btrfs_header_flags(eb);
1878 flags &= ~BTRFS_BACKREF_REV_MASK;
1879 flags |= (u64)rev << BTRFS_BACKREF_REV_SHIFT;
1880 btrfs_set_header_flags(eb, flags);
1881}
1882
5f39d397 1883static inline u8 *btrfs_header_fsid(struct extent_buffer *eb)
0f7d52f4 1884{
5f39d397
CM
1885 unsigned long ptr = offsetof(struct btrfs_header, fsid);
1886 return (u8 *)ptr;
0f7d52f4
CM
1887}
1888
e17cade2
CM
1889static inline u8 *btrfs_header_chunk_tree_uuid(struct extent_buffer *eb)
1890{
1891 unsigned long ptr = offsetof(struct btrfs_header, chunk_tree_uuid);
1892 return (u8 *)ptr;
1893}
1894
5f39d397 1895static inline u8 *btrfs_super_fsid(struct extent_buffer *eb)
3768f368 1896{
5f39d397
CM
1897 unsigned long ptr = offsetof(struct btrfs_super_block, fsid);
1898 return (u8 *)ptr;
3768f368
CM
1899}
1900
5f39d397 1901static inline u8 *btrfs_header_csum(struct extent_buffer *eb)
3768f368 1902{
5f39d397
CM
1903 unsigned long ptr = offsetof(struct btrfs_header, csum);
1904 return (u8 *)ptr;
3768f368
CM
1905}
1906
5f39d397 1907static inline struct btrfs_node *btrfs_buffer_node(struct extent_buffer *eb)
3768f368 1908{
5f39d397 1909 return NULL;
3768f368
CM
1910}
1911
5f39d397 1912static inline struct btrfs_leaf *btrfs_buffer_leaf(struct extent_buffer *eb)
3768f368 1913{
5f39d397 1914 return NULL;
3768f368
CM
1915}
1916
5f39d397 1917static inline struct btrfs_header *btrfs_buffer_header(struct extent_buffer *eb)
3768f368 1918{
5f39d397 1919 return NULL;
3768f368
CM
1920}
1921
5f39d397 1922static inline int btrfs_is_leaf(struct extent_buffer *eb)
3768f368 1923{
d397712b 1924 return btrfs_header_level(eb) == 0;
3768f368
CM
1925}
1926
5f39d397 1927/* struct btrfs_root_item */
84234f3a
YZ
1928BTRFS_SETGET_FUNCS(disk_root_generation, struct btrfs_root_item,
1929 generation, 64);
5f39d397 1930BTRFS_SETGET_FUNCS(disk_root_refs, struct btrfs_root_item, refs, 32);
db94535d
CM
1931BTRFS_SETGET_FUNCS(disk_root_bytenr, struct btrfs_root_item, bytenr, 64);
1932BTRFS_SETGET_FUNCS(disk_root_level, struct btrfs_root_item, level, 8);
3768f368 1933
84234f3a
YZ
1934BTRFS_SETGET_STACK_FUNCS(root_generation, struct btrfs_root_item,
1935 generation, 64);
db94535d
CM
1936BTRFS_SETGET_STACK_FUNCS(root_bytenr, struct btrfs_root_item, bytenr, 64);
1937BTRFS_SETGET_STACK_FUNCS(root_level, struct btrfs_root_item, level, 8);
5f39d397
CM
1938BTRFS_SETGET_STACK_FUNCS(root_dirid, struct btrfs_root_item, root_dirid, 64);
1939BTRFS_SETGET_STACK_FUNCS(root_refs, struct btrfs_root_item, refs, 32);
f2b636e8 1940BTRFS_SETGET_STACK_FUNCS(root_flags, struct btrfs_root_item, flags, 64);
db94535d
CM
1941BTRFS_SETGET_STACK_FUNCS(root_used, struct btrfs_root_item, bytes_used, 64);
1942BTRFS_SETGET_STACK_FUNCS(root_limit, struct btrfs_root_item, byte_limit, 64);
80ff3856
YZ
1943BTRFS_SETGET_STACK_FUNCS(root_last_snapshot, struct btrfs_root_item,
1944 last_snapshot, 64);
123abc88 1945
b83cc969
LZ
1946static inline bool btrfs_root_readonly(struct btrfs_root *root)
1947{
1948 return root->root_item.flags & BTRFS_ROOT_SUBVOL_RDONLY;
1949}
1950
5f39d397 1951/* struct btrfs_super_block */
607d432d 1952
db94535d 1953BTRFS_SETGET_STACK_FUNCS(super_bytenr, struct btrfs_super_block, bytenr, 64);
a061fc8d 1954BTRFS_SETGET_STACK_FUNCS(super_flags, struct btrfs_super_block, flags, 64);
5f39d397
CM
1955BTRFS_SETGET_STACK_FUNCS(super_generation, struct btrfs_super_block,
1956 generation, 64);
1957BTRFS_SETGET_STACK_FUNCS(super_root, struct btrfs_super_block, root, 64);
0b86a832
CM
1958BTRFS_SETGET_STACK_FUNCS(super_sys_array_size,
1959 struct btrfs_super_block, sys_chunk_array_size, 32);
84234f3a
YZ
1960BTRFS_SETGET_STACK_FUNCS(super_chunk_root_generation,
1961 struct btrfs_super_block, chunk_root_generation, 64);
db94535d
CM
1962BTRFS_SETGET_STACK_FUNCS(super_root_level, struct btrfs_super_block,
1963 root_level, 8);
0b86a832
CM
1964BTRFS_SETGET_STACK_FUNCS(super_chunk_root, struct btrfs_super_block,
1965 chunk_root, 64);
1966BTRFS_SETGET_STACK_FUNCS(super_chunk_root_level, struct btrfs_super_block,
e02119d5
CM
1967 chunk_root_level, 8);
1968BTRFS_SETGET_STACK_FUNCS(super_log_root, struct btrfs_super_block,
1969 log_root, 64);
c3027eb5
CM
1970BTRFS_SETGET_STACK_FUNCS(super_log_root_transid, struct btrfs_super_block,
1971 log_root_transid, 64);
e02119d5
CM
1972BTRFS_SETGET_STACK_FUNCS(super_log_root_level, struct btrfs_super_block,
1973 log_root_level, 8);
db94535d
CM
1974BTRFS_SETGET_STACK_FUNCS(super_total_bytes, struct btrfs_super_block,
1975 total_bytes, 64);
1976BTRFS_SETGET_STACK_FUNCS(super_bytes_used, struct btrfs_super_block,
1977 bytes_used, 64);
5f39d397
CM
1978BTRFS_SETGET_STACK_FUNCS(super_sectorsize, struct btrfs_super_block,
1979 sectorsize, 32);
1980BTRFS_SETGET_STACK_FUNCS(super_nodesize, struct btrfs_super_block,
1981 nodesize, 32);
1982BTRFS_SETGET_STACK_FUNCS(super_leafsize, struct btrfs_super_block,
1983 leafsize, 32);
87ee04eb
CM
1984BTRFS_SETGET_STACK_FUNCS(super_stripesize, struct btrfs_super_block,
1985 stripesize, 32);
5f39d397
CM
1986BTRFS_SETGET_STACK_FUNCS(super_root_dir, struct btrfs_super_block,
1987 root_dir_objectid, 64);
8a4b83cc
CM
1988BTRFS_SETGET_STACK_FUNCS(super_num_devices, struct btrfs_super_block,
1989 num_devices, 64);
f2b636e8
JB
1990BTRFS_SETGET_STACK_FUNCS(super_compat_flags, struct btrfs_super_block,
1991 compat_flags, 64);
1992BTRFS_SETGET_STACK_FUNCS(super_compat_ro_flags, struct btrfs_super_block,
12534832 1993 compat_ro_flags, 64);
f2b636e8
JB
1994BTRFS_SETGET_STACK_FUNCS(super_incompat_flags, struct btrfs_super_block,
1995 incompat_flags, 64);
607d432d
JB
1996BTRFS_SETGET_STACK_FUNCS(super_csum_type, struct btrfs_super_block,
1997 csum_type, 16);
0af3d00b
JB
1998BTRFS_SETGET_STACK_FUNCS(super_cache_generation, struct btrfs_super_block,
1999 cache_generation, 64);
607d432d
JB
2000
2001static inline int btrfs_super_csum_size(struct btrfs_super_block *s)
2002{
2003 int t = btrfs_super_csum_type(s);
2004 BUG_ON(t >= ARRAY_SIZE(btrfs_csum_sizes));
2005 return btrfs_csum_sizes[t];
2006}
2e635a27 2007
5f39d397 2008static inline unsigned long btrfs_leaf_data(struct extent_buffer *l)
2e635a27 2009{
5f39d397 2010 return offsetof(struct btrfs_leaf, items);
2e635a27
CM
2011}
2012
5f39d397
CM
2013/* struct btrfs_file_extent_item */
2014BTRFS_SETGET_FUNCS(file_extent_type, struct btrfs_file_extent_item, type, 8);
9f5fae2f 2015
d397712b
CM
2016static inline unsigned long
2017btrfs_file_extent_inline_start(struct btrfs_file_extent_item *e)
236454df 2018{
5f39d397 2019 unsigned long offset = (unsigned long)e;
db94535d 2020 offset += offsetof(struct btrfs_file_extent_item, disk_bytenr);
5f39d397 2021 return offset;
236454df
CM
2022}
2023
2024static inline u32 btrfs_file_extent_calc_inline_size(u32 datasize)
2025{
db94535d 2026 return offsetof(struct btrfs_file_extent_item, disk_bytenr) + datasize;
9f5fae2f
CM
2027}
2028
db94535d
CM
2029BTRFS_SETGET_FUNCS(file_extent_disk_bytenr, struct btrfs_file_extent_item,
2030 disk_bytenr, 64);
5f39d397
CM
2031BTRFS_SETGET_FUNCS(file_extent_generation, struct btrfs_file_extent_item,
2032 generation, 64);
db94535d
CM
2033BTRFS_SETGET_FUNCS(file_extent_disk_num_bytes, struct btrfs_file_extent_item,
2034 disk_num_bytes, 64);
5f39d397
CM
2035BTRFS_SETGET_FUNCS(file_extent_offset, struct btrfs_file_extent_item,
2036 offset, 64);
db94535d
CM
2037BTRFS_SETGET_FUNCS(file_extent_num_bytes, struct btrfs_file_extent_item,
2038 num_bytes, 64);
c8b97818
CM
2039BTRFS_SETGET_FUNCS(file_extent_ram_bytes, struct btrfs_file_extent_item,
2040 ram_bytes, 64);
2041BTRFS_SETGET_FUNCS(file_extent_compression, struct btrfs_file_extent_item,
2042 compression, 8);
2043BTRFS_SETGET_FUNCS(file_extent_encryption, struct btrfs_file_extent_item,
2044 encryption, 8);
2045BTRFS_SETGET_FUNCS(file_extent_other_encoding, struct btrfs_file_extent_item,
2046 other_encoding, 16);
2047
2048/* this returns the number of file bytes represented by the inline item.
2049 * If an item is compressed, this is the uncompressed size
2050 */
2051static inline u32 btrfs_file_extent_inline_len(struct extent_buffer *eb,
2052 struct btrfs_file_extent_item *e)
2053{
2054 return btrfs_file_extent_ram_bytes(eb, e);
2055}
2056
2057/*
2058 * this returns the number of bytes used by the item on disk, minus the
2059 * size of any extent headers. If a file is compressed on disk, this is
2060 * the compressed size
2061 */
2062static inline u32 btrfs_file_extent_inline_item_len(struct extent_buffer *eb,
2063 struct btrfs_item *e)
2064{
2065 unsigned long offset;
2066 offset = offsetof(struct btrfs_file_extent_item, disk_bytenr);
2067 return btrfs_item_size(eb, e) - offset;
2068}
9f5fae2f 2069
e20d96d6
CM
2070static inline struct btrfs_root *btrfs_sb(struct super_block *sb)
2071{
2072 return sb->s_fs_info;
2073}
2074
58176a96
JB
2075static inline int btrfs_set_root_name(struct btrfs_root *root,
2076 const char *name, int len)
2077{
2078 /* if we already have a name just free it */
d397712b 2079 kfree(root->name);
58176a96
JB
2080
2081 root->name = kmalloc(len+1, GFP_KERNEL);
2082 if (!root->name)
2083 return -ENOMEM;
2084
2085 memcpy(root->name, name, len);
d397712b 2086 root->name[len] = '\0';
58176a96
JB
2087
2088 return 0;
2089}
2090
d397712b
CM
2091static inline u32 btrfs_level_size(struct btrfs_root *root, int level)
2092{
db94535d
CM
2093 if (level == 0)
2094 return root->leafsize;
2095 return root->nodesize;
2096}
2097
4beb1b8b
CM
2098/* helper function to cast into the data area of the leaf. */
2099#define btrfs_item_ptr(leaf, slot, type) \
123abc88 2100 ((type *)(btrfs_leaf_data(leaf) + \
5f39d397
CM
2101 btrfs_item_offset_nr(leaf, slot)))
2102
2103#define btrfs_item_ptr_offset(leaf, slot) \
2104 ((unsigned long)(btrfs_leaf_data(leaf) + \
2105 btrfs_item_offset_nr(leaf, slot)))
4beb1b8b 2106
2b1f55b0
CM
2107static inline struct dentry *fdentry(struct file *file)
2108{
6da6abae 2109 return file->f_path.dentry;
6da6abae
CM
2110}
2111
67377734
JB
2112static inline bool btrfs_mixed_space_info(struct btrfs_space_info *space_info)
2113{
2114 return ((space_info->flags & BTRFS_BLOCK_GROUP_METADATA) &&
2115 (space_info->flags & BTRFS_BLOCK_GROUP_DATA));
2116}
2117
b18c6685 2118/* extent-tree.c */
fa9c0d79 2119void btrfs_put_block_group(struct btrfs_block_group_cache *cache);
56bec294
CM
2120int btrfs_run_delayed_refs(struct btrfs_trans_handle *trans,
2121 struct btrfs_root *root, unsigned long count);
31840ae1 2122int btrfs_lookup_extent(struct btrfs_root *root, u64 start, u64 len);
a22285a6
YZ
2123int btrfs_lookup_extent_info(struct btrfs_trans_handle *trans,
2124 struct btrfs_root *root, u64 bytenr,
2125 u64 num_bytes, u64 *refs, u64 *flags);
11833d66
YZ
2126int btrfs_pin_extent(struct btrfs_root *root,
2127 u64 bytenr, u64 num, int reserved);
e02119d5
CM
2128int btrfs_drop_leaf_ref(struct btrfs_trans_handle *trans,
2129 struct btrfs_root *root, struct extent_buffer *leaf);
80ff3856 2130int btrfs_cross_ref_exist(struct btrfs_trans_handle *trans,
5d4f98a2
YZ
2131 struct btrfs_root *root,
2132 u64 objectid, u64 offset, u64 bytenr);
d1310b2e 2133int btrfs_copy_pinned(struct btrfs_root *root, struct extent_io_tree *copy);
d397712b
CM
2134struct btrfs_block_group_cache *btrfs_lookup_block_group(
2135 struct btrfs_fs_info *info,
2136 u64 bytenr);
5d4f98a2 2137void btrfs_put_block_group(struct btrfs_block_group_cache *cache);
d2fb3437
YZ
2138u64 btrfs_find_block_group(struct btrfs_root *root,
2139 u64 search_start, u64 search_hint, int owner);
5f39d397 2140struct extent_buffer *btrfs_alloc_free_block(struct btrfs_trans_handle *trans,
5d4f98a2
YZ
2141 struct btrfs_root *root, u32 blocksize,
2142 u64 parent, u64 root_objectid,
2143 struct btrfs_disk_key *key, int level,
2144 u64 hint, u64 empty_size);
f0486c68
YZ
2145void btrfs_free_tree_block(struct btrfs_trans_handle *trans,
2146 struct btrfs_root *root,
2147 struct extent_buffer *buf,
2148 u64 parent, int last_ref);
65b51a00
CM
2149struct extent_buffer *btrfs_init_new_buffer(struct btrfs_trans_handle *trans,
2150 struct btrfs_root *root,
4008c04a
CM
2151 u64 bytenr, u32 blocksize,
2152 int level);
5d4f98a2
YZ
2153int btrfs_alloc_reserved_file_extent(struct btrfs_trans_handle *trans,
2154 struct btrfs_root *root,
2155 u64 root_objectid, u64 owner,
2156 u64 offset, struct btrfs_key *ins);
2157int btrfs_alloc_logged_file_extent(struct btrfs_trans_handle *trans,
2158 struct btrfs_root *root,
2159 u64 root_objectid, u64 owner, u64 offset,
2160 struct btrfs_key *ins);
e6dcd2dc
CM
2161int btrfs_reserve_extent(struct btrfs_trans_handle *trans,
2162 struct btrfs_root *root,
2163 u64 num_bytes, u64 min_alloc_size,
2164 u64 empty_size, u64 hint_byte,
2165 u64 search_end, struct btrfs_key *ins,
2166 u64 data);
e089f05c 2167int btrfs_inc_ref(struct btrfs_trans_handle *trans, struct btrfs_root *root,
5d4f98a2
YZ
2168 struct extent_buffer *buf, int full_backref);
2169int btrfs_dec_ref(struct btrfs_trans_handle *trans, struct btrfs_root *root,
2170 struct extent_buffer *buf, int full_backref);
2171int btrfs_set_disk_extent_flags(struct btrfs_trans_handle *trans,
2172 struct btrfs_root *root,
2173 u64 bytenr, u64 num_bytes, u64 flags,
2174 int is_data);
31840ae1
ZY
2175int btrfs_free_extent(struct btrfs_trans_handle *trans,
2176 struct btrfs_root *root,
2177 u64 bytenr, u64 num_bytes, u64 parent,
5d4f98a2
YZ
2178 u64 root_objectid, u64 owner, u64 offset);
2179
65b51a00 2180int btrfs_free_reserved_extent(struct btrfs_root *root, u64 start, u64 len);
b4d00d56
LD
2181int btrfs_update_reserved_bytes(struct btrfs_block_group_cache *cache,
2182 u64 num_bytes, int reserve, int sinfo);
11833d66
YZ
2183int btrfs_prepare_extent_commit(struct btrfs_trans_handle *trans,
2184 struct btrfs_root *root);
ccd467d6 2185int btrfs_finish_extent_commit(struct btrfs_trans_handle *trans,
11833d66 2186 struct btrfs_root *root);
b18c6685 2187int btrfs_inc_extent_ref(struct btrfs_trans_handle *trans,
31840ae1
ZY
2188 struct btrfs_root *root,
2189 u64 bytenr, u64 num_bytes, u64 parent,
5d4f98a2
YZ
2190 u64 root_objectid, u64 owner, u64 offset);
2191
9078a3e1
CM
2192int btrfs_write_dirty_block_groups(struct btrfs_trans_handle *trans,
2193 struct btrfs_root *root);
d2fb3437 2194int btrfs_extent_readonly(struct btrfs_root *root, u64 bytenr);
9078a3e1
CM
2195int btrfs_free_block_groups(struct btrfs_fs_info *info);
2196int btrfs_read_block_groups(struct btrfs_root *root);
ba1bf481 2197int btrfs_can_relocate(struct btrfs_root *root, u64 bytenr);
0b86a832
CM
2198int btrfs_make_block_group(struct btrfs_trans_handle *trans,
2199 struct btrfs_root *root, u64 bytes_used,
e17cade2 2200 u64 type, u64 chunk_objectid, u64 chunk_offset,
0b86a832 2201 u64 size);
1a40e23b
ZY
2202int btrfs_remove_block_group(struct btrfs_trans_handle *trans,
2203 struct btrfs_root *root, u64 group_start);
2b82032c 2204u64 btrfs_reduce_alloc_profile(struct btrfs_root *root, u64 flags);
6d07bcec 2205u64 btrfs_get_alloc_profile(struct btrfs_root *root, int data);
6a63209f 2206void btrfs_set_inode_space_info(struct btrfs_root *root, struct inode *ionde);
4184ea7f 2207void btrfs_clear_space_info_full(struct btrfs_fs_info *info);
0ca1f7ce
YZ
2208int btrfs_check_data_free_space(struct inode *inode, u64 bytes);
2209void btrfs_free_reserved_data_space(struct inode *inode, u64 bytes);
a22285a6
YZ
2210int btrfs_trans_reserve_metadata(struct btrfs_trans_handle *trans,
2211 struct btrfs_root *root,
8bb8ab2e 2212 int num_items);
a22285a6
YZ
2213void btrfs_trans_release_metadata(struct btrfs_trans_handle *trans,
2214 struct btrfs_root *root);
d68fc57b
YZ
2215int btrfs_orphan_reserve_metadata(struct btrfs_trans_handle *trans,
2216 struct inode *inode);
2217void btrfs_orphan_release_metadata(struct inode *inode);
a22285a6
YZ
2218int btrfs_snap_reserve_metadata(struct btrfs_trans_handle *trans,
2219 struct btrfs_pending_snapshot *pending);
0ca1f7ce
YZ
2220int btrfs_delalloc_reserve_metadata(struct inode *inode, u64 num_bytes);
2221void btrfs_delalloc_release_metadata(struct inode *inode, u64 num_bytes);
2222int btrfs_delalloc_reserve_space(struct inode *inode, u64 num_bytes);
2223void btrfs_delalloc_release_space(struct inode *inode, u64 num_bytes);
f0486c68
YZ
2224void btrfs_init_block_rsv(struct btrfs_block_rsv *rsv);
2225struct btrfs_block_rsv *btrfs_alloc_block_rsv(struct btrfs_root *root);
2226void btrfs_free_block_rsv(struct btrfs_root *root,
2227 struct btrfs_block_rsv *rsv);
2228void btrfs_add_durable_block_rsv(struct btrfs_fs_info *fs_info,
2229 struct btrfs_block_rsv *rsv);
2230int btrfs_block_rsv_add(struct btrfs_trans_handle *trans,
2231 struct btrfs_root *root,
2232 struct btrfs_block_rsv *block_rsv,
8bb8ab2e 2233 u64 num_bytes);
f0486c68
YZ
2234int btrfs_block_rsv_check(struct btrfs_trans_handle *trans,
2235 struct btrfs_root *root,
2236 struct btrfs_block_rsv *block_rsv,
2237 u64 min_reserved, int min_factor);
2238int btrfs_block_rsv_migrate(struct btrfs_block_rsv *src_rsv,
2239 struct btrfs_block_rsv *dst_rsv,
2240 u64 num_bytes);
2241void btrfs_block_rsv_release(struct btrfs_root *root,
2242 struct btrfs_block_rsv *block_rsv,
2243 u64 num_bytes);
2244int btrfs_set_block_group_ro(struct btrfs_root *root,
2245 struct btrfs_block_group_cache *cache);
2246int btrfs_set_block_group_rw(struct btrfs_root *root,
2247 struct btrfs_block_group_cache *cache);
0af3d00b 2248void btrfs_put_block_group_cache(struct btrfs_fs_info *info);
6d07bcec 2249u64 btrfs_account_ro_block_groups_free_space(struct btrfs_space_info *sinfo);
acce952b 2250int btrfs_error_unpin_extent_range(struct btrfs_root *root,
2251 u64 start, u64 end);
2252int btrfs_error_discard_extent(struct btrfs_root *root, u64 bytenr,
5378e607 2253 u64 num_bytes, u64 *actual_bytes);
c87f08ca
CM
2254int btrfs_force_chunk_alloc(struct btrfs_trans_handle *trans,
2255 struct btrfs_root *root, u64 type);
f7039b1d 2256int btrfs_trim_fs(struct btrfs_root *root, struct fstrim_range *range);
acce952b 2257
c59021f8 2258int btrfs_init_space_info(struct btrfs_fs_info *fs_info);
dee26a9f 2259/* ctree.c */
5d4f98a2
YZ
2260int btrfs_bin_search(struct extent_buffer *eb, struct btrfs_key *key,
2261 int level, int *slot);
2262int btrfs_comp_cpu_keys(struct btrfs_key *k1, struct btrfs_key *k2);
0b86a832
CM
2263int btrfs_previous_item(struct btrfs_root *root,
2264 struct btrfs_path *path, u64 min_objectid,
2265 int type);
31840ae1
ZY
2266int btrfs_set_item_key_safe(struct btrfs_trans_handle *trans,
2267 struct btrfs_root *root, struct btrfs_path *path,
2268 struct btrfs_key *new_key);
925baedd
CM
2269struct extent_buffer *btrfs_root_node(struct btrfs_root *root);
2270struct extent_buffer *btrfs_lock_root_node(struct btrfs_root *root);
e7a84565 2271int btrfs_find_next_key(struct btrfs_root *root, struct btrfs_path *path,
3f157a2f
CM
2272 struct btrfs_key *key, int lowest_level,
2273 int cache_only, u64 min_trans);
2274int btrfs_search_forward(struct btrfs_root *root, struct btrfs_key *min_key,
e02119d5 2275 struct btrfs_key *max_key,
3f157a2f
CM
2276 struct btrfs_path *path, int cache_only,
2277 u64 min_trans);
5f39d397
CM
2278int btrfs_cow_block(struct btrfs_trans_handle *trans,
2279 struct btrfs_root *root, struct extent_buffer *buf,
2280 struct extent_buffer *parent, int parent_slot,
9fa8cfe7 2281 struct extent_buffer **cow_ret);
be20aa9d
CM
2282int btrfs_copy_root(struct btrfs_trans_handle *trans,
2283 struct btrfs_root *root,
2284 struct extent_buffer *buf,
2285 struct extent_buffer **cow_ret, u64 new_root_objectid);
5d4f98a2
YZ
2286int btrfs_block_can_be_shared(struct btrfs_root *root,
2287 struct extent_buffer *buf);
6567e837
CM
2288int btrfs_extend_item(struct btrfs_trans_handle *trans, struct btrfs_root
2289 *root, struct btrfs_path *path, u32 data_size);
b18c6685
CM
2290int btrfs_truncate_item(struct btrfs_trans_handle *trans,
2291 struct btrfs_root *root,
2292 struct btrfs_path *path,
179e29e4 2293 u32 new_size, int from_end);
459931ec
CM
2294int btrfs_split_item(struct btrfs_trans_handle *trans,
2295 struct btrfs_root *root,
2296 struct btrfs_path *path,
2297 struct btrfs_key *new_key,
2298 unsigned long split_offset);
ad48fd75
YZ
2299int btrfs_duplicate_item(struct btrfs_trans_handle *trans,
2300 struct btrfs_root *root,
2301 struct btrfs_path *path,
2302 struct btrfs_key *new_key);
e089f05c
CM
2303int btrfs_search_slot(struct btrfs_trans_handle *trans, struct btrfs_root
2304 *root, struct btrfs_key *key, struct btrfs_path *p, int
2305 ins_len, int cow);
6702ed49 2306int btrfs_realloc_node(struct btrfs_trans_handle *trans,
5f39d397 2307 struct btrfs_root *root, struct extent_buffer *parent,
a6b6e75e
CM
2308 int start_slot, int cache_only, u64 *last_ret,
2309 struct btrfs_key *progress);
234b63a0 2310void btrfs_release_path(struct btrfs_root *root, struct btrfs_path *p);
2c90e5d6
CM
2311struct btrfs_path *btrfs_alloc_path(void);
2312void btrfs_free_path(struct btrfs_path *p);
b4ce94de 2313void btrfs_set_path_blocking(struct btrfs_path *p);
b4ce94de
CM
2314void btrfs_unlock_up_safe(struct btrfs_path *p, int level);
2315
85e21bac
CM
2316int btrfs_del_items(struct btrfs_trans_handle *trans, struct btrfs_root *root,
2317 struct btrfs_path *path, int slot, int nr);
85e21bac
CM
2318static inline int btrfs_del_item(struct btrfs_trans_handle *trans,
2319 struct btrfs_root *root,
2320 struct btrfs_path *path)
2321{
2322 return btrfs_del_items(trans, root, path, path->slots[0], 1);
2323}
2324
e089f05c
CM
2325int btrfs_insert_item(struct btrfs_trans_handle *trans, struct btrfs_root
2326 *root, struct btrfs_key *key, void *data, u32 data_size);
f3465ca4
JB
2327int btrfs_insert_some_items(struct btrfs_trans_handle *trans,
2328 struct btrfs_root *root,
2329 struct btrfs_path *path,
2330 struct btrfs_key *cpu_key, u32 *data_size,
2331 int nr);
9c58309d
CM
2332int btrfs_insert_empty_items(struct btrfs_trans_handle *trans,
2333 struct btrfs_root *root,
2334 struct btrfs_path *path,
2335 struct btrfs_key *cpu_key, u32 *data_size, int nr);
2336
2337static inline int btrfs_insert_empty_item(struct btrfs_trans_handle *trans,
2338 struct btrfs_root *root,
2339 struct btrfs_path *path,
2340 struct btrfs_key *key,
2341 u32 data_size)
2342{
2343 return btrfs_insert_empty_items(trans, root, path, key, &data_size, 1);
2344}
2345
234b63a0 2346int btrfs_next_leaf(struct btrfs_root *root, struct btrfs_path *path);
7bb86316 2347int btrfs_prev_leaf(struct btrfs_root *root, struct btrfs_path *path);
5f39d397 2348int btrfs_leaf_free_space(struct btrfs_root *root, struct extent_buffer *leaf);
3fd0a558
YZ
2349int btrfs_drop_snapshot(struct btrfs_root *root,
2350 struct btrfs_block_rsv *block_rsv, int update_ref);
f82d02d9
YZ
2351int btrfs_drop_subtree(struct btrfs_trans_handle *trans,
2352 struct btrfs_root *root,
2353 struct extent_buffer *node,
2354 struct extent_buffer *parent);
dee26a9f 2355/* root-item.c */
ea9e8b11 2356int btrfs_find_root_ref(struct btrfs_root *tree_root,
4df27c4d
YZ
2357 struct btrfs_path *path,
2358 u64 root_id, u64 ref_id);
0660b5af
CM
2359int btrfs_add_root_ref(struct btrfs_trans_handle *trans,
2360 struct btrfs_root *tree_root,
4df27c4d
YZ
2361 u64 root_id, u64 ref_id, u64 dirid, u64 sequence,
2362 const char *name, int name_len);
2363int btrfs_del_root_ref(struct btrfs_trans_handle *trans,
2364 struct btrfs_root *tree_root,
2365 u64 root_id, u64 ref_id, u64 dirid, u64 *sequence,
0660b5af 2366 const char *name, int name_len);
e089f05c
CM
2367int btrfs_del_root(struct btrfs_trans_handle *trans, struct btrfs_root *root,
2368 struct btrfs_key *key);
2369int btrfs_insert_root(struct btrfs_trans_handle *trans, struct btrfs_root
2370 *root, struct btrfs_key *key, struct btrfs_root_item
2371 *item);
2372int btrfs_update_root(struct btrfs_trans_handle *trans, struct btrfs_root
2373 *root, struct btrfs_key *key, struct btrfs_root_item
2374 *item);
2375int btrfs_find_last_root(struct btrfs_root *root, u64 objectid, struct
2376 btrfs_root_item *item, struct btrfs_key *key);
bf4ef679
CM
2377int btrfs_search_root(struct btrfs_root *root, u64 search_start,
2378 u64 *found_objectid);
5d4f98a2 2379int btrfs_find_dead_roots(struct btrfs_root *root, u64 objectid);
76dda93c 2380int btrfs_find_orphan_roots(struct btrfs_root *tree_root);
5d4f98a2
YZ
2381int btrfs_set_root_node(struct btrfs_root_item *item,
2382 struct extent_buffer *node);
08fe4db1
LZ
2383void btrfs_check_and_init_root_item(struct btrfs_root_item *item);
2384
dee26a9f 2385/* dir-item.c */
d397712b
CM
2386int btrfs_insert_dir_item(struct btrfs_trans_handle *trans,
2387 struct btrfs_root *root, const char *name,
2388 int name_len, u64 dir,
aec7477b 2389 struct btrfs_key *location, u8 type, u64 index);
7e38180e
CM
2390struct btrfs_dir_item *btrfs_lookup_dir_item(struct btrfs_trans_handle *trans,
2391 struct btrfs_root *root,
2392 struct btrfs_path *path, u64 dir,
2393 const char *name, int name_len,
2394 int mod);
2395struct btrfs_dir_item *
2396btrfs_lookup_dir_index_item(struct btrfs_trans_handle *trans,
2397 struct btrfs_root *root,
2398 struct btrfs_path *path, u64 dir,
2399 u64 objectid, const char *name, int name_len,
2400 int mod);
4df27c4d
YZ
2401struct btrfs_dir_item *
2402btrfs_search_dir_index_item(struct btrfs_root *root,
2403 struct btrfs_path *path, u64 dirid,
2404 const char *name, int name_len);
7e38180e
CM
2405struct btrfs_dir_item *btrfs_match_dir_item_name(struct btrfs_root *root,
2406 struct btrfs_path *path,
7f5c1516 2407 const char *name, int name_len);
7e38180e
CM
2408int btrfs_delete_one_dir_name(struct btrfs_trans_handle *trans,
2409 struct btrfs_root *root,
2410 struct btrfs_path *path,
2411 struct btrfs_dir_item *di);
5103e947 2412int btrfs_insert_xattr_item(struct btrfs_trans_handle *trans,
f34f57a3
YZ
2413 struct btrfs_root *root,
2414 struct btrfs_path *path, u64 objectid,
2415 const char *name, u16 name_len,
2416 const void *data, u16 data_len);
5103e947
JB
2417struct btrfs_dir_item *btrfs_lookup_xattr(struct btrfs_trans_handle *trans,
2418 struct btrfs_root *root,
2419 struct btrfs_path *path, u64 dir,
2420 const char *name, u16 name_len,
2421 int mod);
22a94d44
JB
2422int verify_dir_item(struct btrfs_root *root,
2423 struct extent_buffer *leaf,
2424 struct btrfs_dir_item *dir_item);
7b128766
JB
2425
2426/* orphan.c */
2427int btrfs_insert_orphan_item(struct btrfs_trans_handle *trans,
2428 struct btrfs_root *root, u64 offset);
2429int btrfs_del_orphan_item(struct btrfs_trans_handle *trans,
2430 struct btrfs_root *root, u64 offset);
4df27c4d 2431int btrfs_find_orphan_item(struct btrfs_root *root, u64 offset);
7b128766 2432
dee26a9f 2433/* inode-map.c */
9f5fae2f
CM
2434int btrfs_find_free_objectid(struct btrfs_trans_handle *trans,
2435 struct btrfs_root *fs_root,
2436 u64 dirid, u64 *objectid);
5be6f7f1
CM
2437int btrfs_find_highest_inode(struct btrfs_root *fs_root, u64 *objectid);
2438
dee26a9f 2439/* inode-item.c */
3954401f
CM
2440int btrfs_insert_inode_ref(struct btrfs_trans_handle *trans,
2441 struct btrfs_root *root,
2442 const char *name, int name_len,
aec7477b 2443 u64 inode_objectid, u64 ref_objectid, u64 index);
3954401f
CM
2444int btrfs_del_inode_ref(struct btrfs_trans_handle *trans,
2445 struct btrfs_root *root,
2446 const char *name, int name_len,
aec7477b 2447 u64 inode_objectid, u64 ref_objectid, u64 *index);
a22285a6
YZ
2448struct btrfs_inode_ref *
2449btrfs_lookup_inode_ref(struct btrfs_trans_handle *trans,
2450 struct btrfs_root *root,
2451 struct btrfs_path *path,
2452 const char *name, int name_len,
2453 u64 inode_objectid, u64 ref_objectid, int mod);
5f39d397
CM
2454int btrfs_insert_empty_inode(struct btrfs_trans_handle *trans,
2455 struct btrfs_root *root,
2456 struct btrfs_path *path, u64 objectid);
293ffd5f 2457int btrfs_lookup_inode(struct btrfs_trans_handle *trans, struct btrfs_root
d6e4a428
CM
2458 *root, struct btrfs_path *path,
2459 struct btrfs_key *location, int mod);
dee26a9f
CM
2460
2461/* file-item.c */
459931ec
CM
2462int btrfs_del_csums(struct btrfs_trans_handle *trans,
2463 struct btrfs_root *root, u64 bytenr, u64 len);
61b49440 2464int btrfs_lookup_bio_sums(struct btrfs_root *root, struct inode *inode,
d20f7043 2465 struct bio *bio, u32 *dst);
4b46fce2
JB
2466int btrfs_lookup_bio_sums_dio(struct btrfs_root *root, struct inode *inode,
2467 struct bio *bio, u64 logical_offset, u32 *dst);
b18c6685 2468int btrfs_insert_file_extent(struct btrfs_trans_handle *trans,
c8b97818
CM
2469 struct btrfs_root *root,
2470 u64 objectid, u64 pos,
2471 u64 disk_offset, u64 disk_num_bytes,
2472 u64 num_bytes, u64 offset, u64 ram_bytes,
2473 u8 compression, u8 encryption, u16 other_encoding);
dee26a9f
CM
2474int btrfs_lookup_file_extent(struct btrfs_trans_handle *trans,
2475 struct btrfs_root *root,
2476 struct btrfs_path *path, u64 objectid,
db94535d 2477 u64 bytenr, int mod);
065631f6 2478int btrfs_csum_file_blocks(struct btrfs_trans_handle *trans,
d20f7043 2479 struct btrfs_root *root,
e6dcd2dc 2480 struct btrfs_ordered_sum *sums);
3edf7d33 2481int btrfs_csum_one_bio(struct btrfs_root *root, struct inode *inode,
d20f7043 2482 struct bio *bio, u64 file_start, int contig);
c8b97818
CM
2483int btrfs_csum_file_bytes(struct btrfs_root *root, struct inode *inode,
2484 u64 start, unsigned long len);
b18c6685
CM
2485struct btrfs_csum_item *btrfs_lookup_csum(struct btrfs_trans_handle *trans,
2486 struct btrfs_root *root,
2487 struct btrfs_path *path,
d20f7043 2488 u64 bytenr, int cow);
1de037a4
CM
2489int btrfs_csum_truncate(struct btrfs_trans_handle *trans,
2490 struct btrfs_root *root, struct btrfs_path *path,
2491 u64 isize);
a2de733c
AJ
2492int btrfs_lookup_csums_range(struct btrfs_root *root, u64 start, u64 end,
2493 struct list_head *list, int search_commit);
39279cc3 2494/* inode.c */
4881ee5a
CM
2495
2496/* RHEL and EL kernels have a patch that renames PG_checked to FsMisc */
5036f538 2497#if defined(ClearPageFsMisc) && !defined(ClearPageChecked)
4881ee5a
CM
2498#define ClearPageChecked ClearPageFsMisc
2499#define SetPageChecked SetPageFsMisc
2500#define PageChecked PageFsMisc
2501#endif
2502
3de4586c
CM
2503struct inode *btrfs_lookup_dentry(struct inode *dir, struct dentry *dentry);
2504int btrfs_set_inode_index(struct inode *dir, u64 *index);
e02119d5
CM
2505int btrfs_unlink_inode(struct btrfs_trans_handle *trans,
2506 struct btrfs_root *root,
2507 struct inode *dir, struct inode *inode,
2508 const char *name, int name_len);
2509int btrfs_add_link(struct btrfs_trans_handle *trans,
2510 struct inode *parent_inode, struct inode *inode,
2511 const char *name, int name_len, int add_backref, u64 index);
4df27c4d
YZ
2512int btrfs_unlink_subvol(struct btrfs_trans_handle *trans,
2513 struct btrfs_root *root,
2514 struct inode *dir, u64 objectid,
2515 const char *name, int name_len);
e02119d5
CM
2516int btrfs_truncate_inode_items(struct btrfs_trans_handle *trans,
2517 struct btrfs_root *root,
2518 struct inode *inode, u64 new_size,
2519 u32 min_type);
2520
24bbcf04 2521int btrfs_start_delalloc_inodes(struct btrfs_root *root, int delay_iput);
0019f10d
JB
2522int btrfs_start_one_delalloc_inode(struct btrfs_root *root, int delay_iput,
2523 int sync);
2ac55d41
JB
2524int btrfs_set_extent_delalloc(struct inode *inode, u64 start, u64 end,
2525 struct extent_state **cached_state);
f421950f
CM
2526int btrfs_writepages(struct address_space *mapping,
2527 struct writeback_control *wbc);
d2fb3437 2528int btrfs_create_subvol_root(struct btrfs_trans_handle *trans,
76dda93c 2529 struct btrfs_root *new_root,
d2fb3437 2530 u64 new_dirid, u64 alloc_hint);
239b14b3 2531int btrfs_merge_bio_hook(struct page *page, unsigned long offset,
c8b97818 2532 size_t size, struct bio *bio, unsigned long bio_flags);
239b14b3 2533
edbd8d4e
CM
2534unsigned long btrfs_force_ra(struct address_space *mapping,
2535 struct file_ra_state *ra, struct file *file,
2536 pgoff_t offset, pgoff_t last_index);
c2ec175c 2537int btrfs_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf);
9ebefb18 2538int btrfs_readpage(struct file *file, struct page *page);
bd555975 2539void btrfs_evict_inode(struct inode *inode);
2da98f00 2540void btrfs_put_inode(struct inode *inode);
a9185b41 2541int btrfs_write_inode(struct inode *inode, struct writeback_control *wbc);
39279cc3
CM
2542void btrfs_dirty_inode(struct inode *inode);
2543struct inode *btrfs_alloc_inode(struct super_block *sb);
2544void btrfs_destroy_inode(struct inode *inode);
45321ac5 2545int btrfs_drop_inode(struct inode *inode);
39279cc3
CM
2546int btrfs_init_cachep(void);
2547void btrfs_destroy_cachep(void);
6bf13c0c 2548long btrfs_ioctl_trans_end(struct file *file);
1a54ef8c 2549struct inode *btrfs_iget(struct super_block *s, struct btrfs_key *location,
73f73415 2550 struct btrfs_root *root, int *was_new);
39279cc3
CM
2551int btrfs_commit_write(struct file *file, struct page *page,
2552 unsigned from, unsigned to);
a52d9a80
CM
2553struct extent_map *btrfs_get_extent(struct inode *inode, struct page *page,
2554 size_t page_offset, u64 start, u64 end,
2555 int create);
2556int btrfs_update_inode(struct btrfs_trans_handle *trans,
2557 struct btrfs_root *root,
2558 struct inode *inode);
5b21f2ed
ZY
2559int btrfs_orphan_add(struct btrfs_trans_handle *trans, struct inode *inode);
2560int btrfs_orphan_del(struct btrfs_trans_handle *trans, struct inode *inode);
66b4ffd1 2561int btrfs_orphan_cleanup(struct btrfs_root *root);
d68fc57b
YZ
2562void btrfs_orphan_pre_snapshot(struct btrfs_trans_handle *trans,
2563 struct btrfs_pending_snapshot *pending,
2564 u64 *bytes_to_reserve);
2565void btrfs_orphan_post_snapshot(struct btrfs_trans_handle *trans,
2566 struct btrfs_pending_snapshot *pending);
2567void btrfs_orphan_commit_root(struct btrfs_trans_handle *trans,
2568 struct btrfs_root *root);
a41ad394 2569int btrfs_cont_expand(struct inode *inode, loff_t oldsize, loff_t size);
76dda93c 2570int btrfs_invalidate_inodes(struct btrfs_root *root);
24bbcf04
YZ
2571void btrfs_add_delayed_iput(struct inode *inode);
2572void btrfs_run_delayed_iputs(struct btrfs_root *root);
efa56464
YZ
2573int btrfs_prealloc_file_range(struct inode *inode, int mode,
2574 u64 start, u64 num_bytes, u64 min_size,
2575 loff_t actual_len, u64 *alloc_hint);
0af3d00b
JB
2576int btrfs_prealloc_file_range_trans(struct inode *inode,
2577 struct btrfs_trans_handle *trans, int mode,
2578 u64 start, u64 num_bytes, u64 min_size,
2579 loff_t actual_len, u64 *alloc_hint);
82d339d9 2580extern const struct dentry_operations btrfs_dentry_operations;
f46b5a66
CH
2581
2582/* ioctl.c */
2583long btrfs_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
6cbff00f
CH
2584void btrfs_update_iflags(struct inode *inode);
2585void btrfs_inherit_iflags(struct inode *inode, struct inode *dir);
f46b5a66 2586
39279cc3 2587/* file.c */
7ea80859 2588int btrfs_sync_file(struct file *file, int datasync);
5b21f2ed
ZY
2589int btrfs_drop_extent_cache(struct inode *inode, u64 start, u64 end,
2590 int skip_pinned);
5f56406a 2591int btrfs_check_file(struct btrfs_root *root, struct inode *inode);
828c0950 2592extern const struct file_operations btrfs_file_operations;
920bbbfb
YZ
2593int btrfs_drop_extents(struct btrfs_trans_handle *trans, struct inode *inode,
2594 u64 start, u64 end, u64 *hint_byte, int drop_cache);
d899e052 2595int btrfs_mark_extent_written(struct btrfs_trans_handle *trans,
d899e052 2596 struct inode *inode, u64 start, u64 end);
6bf13c0c 2597int btrfs_release_file(struct inode *inode, struct file *file);
be1a12a0
JB
2598void btrfs_drop_pages(struct page **pages, size_t num_pages);
2599int btrfs_dirty_pages(struct btrfs_root *root, struct inode *inode,
2600 struct page **pages, size_t num_pages,
2601 loff_t pos, size_t write_bytes,
2602 struct extent_state **cached);
6bf13c0c 2603
6702ed49
CM
2604/* tree-defrag.c */
2605int btrfs_defrag_leaves(struct btrfs_trans_handle *trans,
2606 struct btrfs_root *root, int cache_only);
58176a96
JB
2607
2608/* sysfs.c */
2609int btrfs_init_sysfs(void);
2610void btrfs_exit_sysfs(void);
2611int btrfs_sysfs_add_super(struct btrfs_fs_info *fs);
2612int btrfs_sysfs_add_root(struct btrfs_root *root);
2613void btrfs_sysfs_del_root(struct btrfs_root *root);
2614void btrfs_sysfs_del_super(struct btrfs_fs_info *root);
2615
5103e947
JB
2616/* xattr.c */
2617ssize_t btrfs_listxattr(struct dentry *dentry, char *buffer, size_t size);
6099afe8 2618
edbd8d4e 2619/* super.c */
edf24abe 2620int btrfs_parse_options(struct btrfs_root *root, char *options);
6bf13c0c 2621int btrfs_sync_fs(struct super_block *sb, int wait);
acce952b 2622void __btrfs_std_error(struct btrfs_fs_info *fs_info, const char *function,
2623 unsigned int line, int errno);
2624
2625#define btrfs_std_error(fs_info, errno) \
2626do { \
2627 if ((errno)) \
2628 __btrfs_std_error((fs_info), __func__, __LINE__, (errno));\
2629} while (0)
33268eaf
JB
2630
2631/* acl.c */
0eda294d 2632#ifdef CONFIG_BTRFS_FS_POSIX_ACL
b74c79e9 2633int btrfs_check_acl(struct inode *inode, int mask, unsigned int flags);
7df336ec
AV
2634#else
2635#define btrfs_check_acl NULL
2636#endif
f34f57a3
YZ
2637int btrfs_init_acl(struct btrfs_trans_handle *trans,
2638 struct inode *inode, struct inode *dir);
33268eaf 2639int btrfs_acl_chmod(struct inode *inode);
0f9dd46c 2640
5d4f98a2
YZ
2641/* relocation.c */
2642int btrfs_relocate_block_group(struct btrfs_root *root, u64 group_start);
2643int btrfs_init_reloc_root(struct btrfs_trans_handle *trans,
2644 struct btrfs_root *root);
2645int btrfs_update_reloc_root(struct btrfs_trans_handle *trans,
2646 struct btrfs_root *root);
2647int btrfs_recover_relocation(struct btrfs_root *root);
2648int btrfs_reloc_clone_csums(struct inode *inode, u64 file_pos, u64 len);
3fd0a558
YZ
2649void btrfs_reloc_cow_block(struct btrfs_trans_handle *trans,
2650 struct btrfs_root *root, struct extent_buffer *buf,
2651 struct extent_buffer *cow);
2652void btrfs_reloc_pre_snapshot(struct btrfs_trans_handle *trans,
2653 struct btrfs_pending_snapshot *pending,
2654 u64 *bytes_to_reserve);
2655void btrfs_reloc_post_snapshot(struct btrfs_trans_handle *trans,
2656 struct btrfs_pending_snapshot *pending);
a2de733c
AJ
2657
2658/* scrub.c */
2659int btrfs_scrub_dev(struct btrfs_root *root, u64 devid, u64 start, u64 end,
2660 struct btrfs_scrub_progress *progress);
2661int btrfs_scrub_pause(struct btrfs_root *root);
2662int btrfs_scrub_pause_super(struct btrfs_root *root);
2663int btrfs_scrub_continue(struct btrfs_root *root);
2664int btrfs_scrub_continue_super(struct btrfs_root *root);
2665int btrfs_scrub_cancel(struct btrfs_root *root);
2666int btrfs_scrub_cancel_dev(struct btrfs_root *root, struct btrfs_device *dev);
2667int btrfs_scrub_cancel_devid(struct btrfs_root *root, u64 devid);
2668int btrfs_scrub_progress(struct btrfs_root *root, u64 devid,
2669 struct btrfs_scrub_progress *progress);
2670
eb60ceac 2671#endif
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