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David Sterba9888c342018-04-03 19:16:55 +02001/* SPDX-License-Identifier: GPL-2.0 */
Chris Mason6cbd5572007-06-12 09:07:21 -04002/*
3 * Copyright (C) 2007 Oracle. All rights reserved.
Chris Mason6cbd5572007-06-12 09:07:21 -04004 */
5
David Sterba9888c342018-04-03 19:16:55 +02006#ifndef BTRFS_INODE_H
7#define BTRFS_INODE_H
Chris Mason2c90e5d62007-04-02 10:50:19 -04008
Filipe David Borba Manana778ba822013-10-06 22:22:33 +01009#include <linux/hash.h>
Omar Sandovale3b318d2020-04-16 14:46:20 -070010#include <linux/refcount.h>
Chris Masona52d9a82007-08-27 16:49:44 -040011#include "extent_map.h"
Chris Masond1310b22008-01-24 16:13:08 -050012#include "extent_io.h"
Chris Masone6dcd2d2008-07-17 12:53:50 -040013#include "ordered-data.h"
Miao Xie16cdcec2011-04-22 18:12:22 +080014#include "delayed-inode.h"
Chris Masona52d9a82007-08-27 16:49:44 -040015
Josef Bacik72ac3c02012-05-23 14:13:11 -040016/*
17 * ordered_data_close is set by truncate when a file that used
18 * to have good data has been truncated to zero. When it is set
19 * the btrfs file release call will add this inode to the
20 * ordered operations list so that we make sure to flush out any
21 * new data the application may have written before commit.
22 */
Omar Sandoval7efc3e32018-05-11 13:13:39 -070023enum {
David Sterbabbe339c2018-11-27 15:25:13 +010024 BTRFS_INODE_ORDERED_DATA_CLOSE,
Omar Sandoval7efc3e32018-05-11 13:13:39 -070025 BTRFS_INODE_DUMMY,
26 BTRFS_INODE_IN_DEFRAG,
27 BTRFS_INODE_HAS_ASYNC_EXTENT,
28 BTRFS_INODE_NEEDS_FULL_SYNC,
29 BTRFS_INODE_COPY_EVERYTHING,
30 BTRFS_INODE_IN_DELALLOC_LIST,
David Sterba8e0fa5d2020-06-09 19:21:48 +020031 BTRFS_INODE_READDIO_NEED_LOCK,
Omar Sandoval7efc3e32018-05-11 13:13:39 -070032 BTRFS_INODE_HAS_PROPS,
Ethan Lien3cd24c62018-11-01 14:49:03 +080033 BTRFS_INODE_SNAPSHOT_FLUSH,
Omar Sandoval7efc3e32018-05-11 13:13:39 -070034};
Josef Bacik72ac3c02012-05-23 14:13:11 -040035
Aneeshf1ace242007-06-13 16:18:26 -040036/* in memory btrfs inode */
Chris Mason2c90e5d62007-04-02 10:50:19 -040037struct btrfs_inode {
Chris Masond352ac62008-09-29 15:18:18 -040038 /* which subvolume this inode belongs to */
Chris Masond6e4a422007-04-06 15:37:36 -040039 struct btrfs_root *root;
Chris Masond352ac62008-09-29 15:18:18 -040040
Chris Masond352ac62008-09-29 15:18:18 -040041 /* key used to find this inode on disk. This is used by the code
42 * to read in roots of subvolumes
43 */
Chris Masond6e4a422007-04-06 15:37:36 -040044 struct btrfs_key location;
Chris Masond352ac62008-09-29 15:18:18 -040045
Filipe Manana2f2ff0e2015-03-20 17:19:46 +000046 /*
47 * Lock for counters and all fields used to determine if the inode is in
48 * the log or not (last_trans, last_sub_trans, last_log_commit,
49 * logged_trans).
50 */
Josef Bacik9e0baf62011-07-15 15:16:44 +000051 spinlock_t lock;
52
Chris Masond352ac62008-09-29 15:18:18 -040053 /* the extent_tree has caches of all the extent mappings to disk */
Chris Masona52d9a82007-08-27 16:49:44 -040054 struct extent_map_tree extent_tree;
Chris Masond352ac62008-09-29 15:18:18 -040055
56 /* the io_tree does range state (DIRTY, LOCKED etc) */
Chris Masond1310b22008-01-24 16:13:08 -050057 struct extent_io_tree io_tree;
Chris Masond352ac62008-09-29 15:18:18 -040058
59 /* special utility tree used to record which mirrors have already been
60 * tried when checksums fail for a given block
61 */
Chris Mason7e383262008-04-09 16:28:12 -040062 struct extent_io_tree io_failure_tree;
Chris Masond352ac62008-09-29 15:18:18 -040063
Josef Bacik41a2ee72020-01-17 09:02:21 -050064 /*
65 * Keep track of where the inode has extent items mapped in order to
66 * make sure the i_size adjustments are accurate
67 */
68 struct extent_io_tree file_extent_tree;
69
Chris Masond352ac62008-09-29 15:18:18 -040070 /* held while logging the inode in tree-log.c */
Chris Masone02119d2008-09-05 16:13:11 -040071 struct mutex log_mutex;
Chris Masond352ac62008-09-29 15:18:18 -040072
73 /* used to order data wrt metadata */
Chris Masone6dcd2d2008-07-17 12:53:50 -040074 struct btrfs_ordered_inode_tree ordered_tree;
Josef Bacik15ee9bc2007-08-10 16:22:09 -040075
Chris Masond352ac62008-09-29 15:18:18 -040076 /* list of all the delalloc inodes in the FS. There are times we need
77 * to write all the delalloc pages to disk, and this list is used
78 * to walk them all.
79 */
Chris Masonea8c2812008-08-04 23:17:27 -040080 struct list_head delalloc_inodes;
81
Yan Zheng5d4f98a2009-06-10 10:45:14 -040082 /* node for the red-black tree that links inodes in subvolume root */
83 struct rb_node rb_node;
84
Josef Bacik72ac3c02012-05-23 14:13:11 -040085 unsigned long runtime_flags;
86
Nathaniel Yazdani9c931c52013-04-15 00:44:02 +000087 /* Keep track of who's O_SYNC/fsyncing currently */
Josef Bacikb812ce22012-11-16 13:56:32 -050088 atomic_t sync_writers;
89
Chris Masond352ac62008-09-29 15:18:18 -040090 /* full 64 bit generation number, struct vfs_inode doesn't have a big
91 * enough field for this.
92 */
Chris Masone02119d2008-09-05 16:13:11 -040093 u64 generation;
94
Josef Bacik15ee9bc2007-08-10 16:22:09 -040095 /*
96 * transid of the trans_handle that last modified this inode
97 */
98 u64 last_trans;
Chris Mason257c62e2009-10-13 13:21:08 -040099
100 /*
Chris Masone02119d2008-09-05 16:13:11 -0400101 * transid that last logged this inode
102 */
103 u64 logged_trans;
Chris Mason49eb7e42008-09-11 15:53:12 -0400104
Miao Xiebb14a592014-02-20 18:08:56 +0800105 /*
106 * log transid when this inode was last modified
107 */
108 int last_sub_trans;
109
110 /* a local copy of root's last_log_commit */
111 int last_log_commit;
112
Chris Masond352ac62008-09-29 15:18:18 -0400113 /* total number of bytes pending delalloc, used by stat to calc the
114 * real block usage of the file
115 */
Chris Mason90692182008-02-08 13:49:28 -0500116 u64 delalloc_bytes;
Chris Masond352ac62008-09-29 15:18:18 -0400117
118 /*
Filipe Mananaa7e3b972017-04-03 10:45:46 +0100119 * Total number of bytes pending delalloc that fall within a file
120 * range that is either a hole or beyond EOF (and no prealloc extent
121 * exists in the range). This is always <= delalloc_bytes.
122 */
123 u64 new_delalloc_bytes;
124
125 /*
Wang Shilong47059d92014-07-03 18:22:07 +0800126 * total number of bytes pending defrag, used by stat to check whether
127 * it needs COW.
128 */
129 u64 defrag_bytes;
130
131 /*
Chris Masond352ac62008-09-29 15:18:18 -0400132 * the size of the file stored in the metadata on disk. data=ordered
133 * means the in-memory i_size might be larger than the size on disk
134 * because not all the blocks are written yet.
135 */
Chris Masondbe674a2008-07-17 12:54:05 -0400136 u64 disk_i_size;
Chris Masond352ac62008-09-29 15:18:18 -0400137
Josef Bacikaec74772008-07-24 12:12:38 -0400138 /*
139 * if this is a directory then index_cnt is the counter for the index
140 * number for new files that are created
141 */
142 u64 index_cnt;
Chris Masond352ac62008-09-29 15:18:18 -0400143
Miao Xie67de1172013-12-26 13:07:06 +0800144 /* Cache the directory index number to speed the dir/file remove */
145 u64 dir_index;
146
Chris Mason12fcfd22009-03-24 10:24:20 -0400147 /* the fsync log has some corner cases that mean we have to check
148 * directories to see if any unlinks have been done before
149 * the directory was logged. See tree-log.c for all the
150 * details
151 */
152 u64 last_unlink_trans;
153
Josef Bacik7709cde2011-08-04 10:25:02 -0400154 /*
155 * Number of bytes outstanding that are going to need csums. This is
156 * used in ENOSPC accounting.
157 */
158 u64 csum_bytes;
159
Josef Bacikf1bdcc02011-07-14 14:28:08 -0400160 /* flags field from the on disk inode */
161 u32 flags;
162
Chris Mason5a3f23d2009-03-31 13:27:11 -0400163 /*
Josef Bacik32c00af2009-10-08 13:34:05 -0400164 * Counters to keep track of the number of extent item's we may use due
165 * to delalloc and such. outstanding_extents is the number of extent
166 * items we think we'll end up using, and reserved_extents is the number
167 * of extent items we've reserved metadata for.
Josef Bacik9ed74f22009-09-11 16:12:44 -0400168 */
Josef Bacik9e0baf62011-07-15 15:16:44 +0000169 unsigned outstanding_extents;
Josef Bacik69fe2d72017-10-19 14:15:57 -0400170
171 struct btrfs_block_rsv block_rsv;
Josef Bacik9ed74f22009-09-11 16:12:44 -0400172
173 /*
David Sterbab52aa8c2017-07-17 19:17:20 +0200174 * Cached values of inode properties
Chris Mason1e701a32010-03-11 09:42:04 -0500175 */
David Sterbab52aa8c2017-07-17 19:17:20 +0200176 unsigned prop_compress; /* per-file compression algorithm */
David Sterbaeec63c62017-07-17 19:41:31 +0200177 /*
178 * Force compression on the file using the defrag ioctl, could be
179 * different from prop_compress and takes precedence if set
180 */
181 unsigned defrag_compress;
Chris Mason1e701a32010-03-11 09:42:04 -0500182
Miao Xie16cdcec2011-04-22 18:12:22 +0800183 struct btrfs_delayed_node *delayed_node;
184
chandan r9cc97d62012-07-04 12:48:07 +0530185 /* File creation time. */
Arnd Bergmannd3c6be6f2018-06-21 18:04:06 +0200186 struct timespec64 i_otime;
chandan r9cc97d62012-07-04 12:48:07 +0530187
David Sterba8089fe62015-11-19 14:15:51 +0100188 /* Hook into fs_info->delayed_iputs */
189 struct list_head delayed_iput;
David Sterba8089fe62015-11-19 14:15:51 +0100190
Filipe Manana5f9a8a52016-05-12 13:53:36 +0100191 /*
192 * To avoid races between lockless (i_mutex not held) direct IO writes
193 * and concurrent fsync requests. Direct IO writes must acquire read
194 * access on this semaphore for creating an extent map and its
195 * corresponding ordered extent. The fast fsync path must acquire write
196 * access on this semaphore before it collects ordered extents and
197 * extent maps.
198 */
199 struct rw_semaphore dio_sem;
200
Chris Masond352ac62008-09-29 15:18:18 -0400201 struct inode vfs_inode;
Chris Mason2c90e5d62007-04-02 10:50:19 -0400202};
Chris Masondbe674a2008-07-17 12:54:05 -0400203
Jeff Mahoney9a35b632017-06-28 21:56:54 -0600204static inline struct btrfs_inode *BTRFS_I(const struct inode *inode)
Chris Mason2c90e5d62007-04-02 10:50:19 -0400205{
206 return container_of(inode, struct btrfs_inode, vfs_inode);
207}
208
Filipe David Borba Manana778ba822013-10-06 22:22:33 +0100209static inline unsigned long btrfs_inode_hash(u64 objectid,
210 const struct btrfs_root *root)
211{
Misono Tomohiro4fd786e2018-08-06 14:25:24 +0900212 u64 h = objectid ^ (root->root_key.objectid * GOLDEN_RATIO_PRIME);
Filipe David Borba Manana778ba822013-10-06 22:22:33 +0100213
214#if BITS_PER_LONG == 32
215 h = (h >> 32) ^ (h & 0xffffffff);
216#endif
217
218 return (unsigned long)h;
219}
220
221static inline void btrfs_insert_inode_hash(struct inode *inode)
222{
223 unsigned long h = btrfs_inode_hash(inode->i_ino, BTRFS_I(inode)->root);
224
225 __insert_inode_hash(inode, h);
226}
227
Jeff Mahoney9a35b632017-06-28 21:56:54 -0600228static inline u64 btrfs_ino(const struct btrfs_inode *inode)
Li Zefan33345d012011-04-20 10:31:50 +0800229{
Nikolay Borisov4a0cc7c2017-01-10 20:35:31 +0200230 u64 ino = inode->location.objectid;
Li Zefan33345d012011-04-20 10:31:50 +0800231
Liu Bo14c7cca2011-09-11 10:52:24 -0400232 /*
233 * !ino: btree_inode
234 * type == BTRFS_ROOT_ITEM_KEY: subvol dir
235 */
Nikolay Borisov4a0cc7c2017-01-10 20:35:31 +0200236 if (!ino || inode->location.type == BTRFS_ROOT_ITEM_KEY)
237 ino = inode->vfs_inode.i_ino;
Li Zefan33345d012011-04-20 10:31:50 +0800238 return ino;
239}
240
Nikolay Borisov6ef06d22017-02-20 13:50:34 +0200241static inline void btrfs_i_size_write(struct btrfs_inode *inode, u64 size)
Chris Masondbe674a2008-07-17 12:54:05 -0400242{
Nikolay Borisov6ef06d22017-02-20 13:50:34 +0200243 i_size_write(&inode->vfs_inode, size);
244 inode->disk_i_size = size;
Chris Masondbe674a2008-07-17 12:54:05 -0400245}
246
Nikolay Borisov70ddc552017-02-20 13:50:35 +0200247static inline bool btrfs_is_free_space_inode(struct btrfs_inode *inode)
Chris Mason2cf85722011-07-26 15:35:09 -0400248{
Nikolay Borisov70ddc552017-02-20 13:50:35 +0200249 struct btrfs_root *root = inode->root;
Liu Bo83eea1f2012-07-10 05:28:39 -0600250
Liu Bo51a8cf92012-07-10 05:28:38 -0600251 if (root == root->fs_info->tree_root &&
Nikolay Borisov70ddc552017-02-20 13:50:35 +0200252 btrfs_ino(inode) != BTRFS_BTREE_INODE_OBJECTID)
Liu Bo51a8cf92012-07-10 05:28:38 -0600253 return true;
Nikolay Borisov70ddc552017-02-20 13:50:35 +0200254 if (inode->location.objectid == BTRFS_FREE_INO_OBJECTID)
Chris Mason2cf85722011-07-26 15:35:09 -0400255 return true;
256 return false;
257}
258
Nikolay Borisov06f25482018-11-09 16:08:30 +0200259static inline bool is_data_inode(struct inode *inode)
260{
261 return btrfs_ino(BTRFS_I(inode)) != BTRFS_BTREE_INODE_OBJECTID;
262}
263
Josef Bacik8b62f87b2017-10-19 14:15:55 -0400264static inline void btrfs_mod_outstanding_extents(struct btrfs_inode *inode,
265 int mod)
266{
267 lockdep_assert_held(&inode->lock);
268 inode->outstanding_extents += mod;
269 if (btrfs_is_free_space_inode(inode))
270 return;
Josef Bacikdd48d402017-10-19 14:15:56 -0400271 trace_btrfs_inode_mod_outstanding_extents(inode->root, btrfs_ino(inode),
272 mod);
Josef Bacik8b62f87b2017-10-19 14:15:55 -0400273}
274
Nikolay Borisov0f8939b2017-01-18 00:31:30 +0200275static inline int btrfs_inode_in_log(struct btrfs_inode *inode, u64 generation)
Josef Bacik22ee6985d2012-05-29 16:57:49 -0400276{
Filipe Manana2f2ff0e2015-03-20 17:19:46 +0000277 int ret = 0;
278
Nikolay Borisov0f8939b2017-01-18 00:31:30 +0200279 spin_lock(&inode->lock);
280 if (inode->logged_trans == generation &&
281 inode->last_sub_trans <= inode->last_log_commit &&
282 inode->last_sub_trans <= inode->root->last_log_commit) {
Filipe Manana125c4cf92014-09-11 21:22:14 +0100283 /*
284 * After a ranged fsync we might have left some extent maps
285 * (that fall outside the fsync's range). So return false
286 * here if the list isn't empty, to make sure btrfs_log_inode()
287 * will be called and process those extent maps.
288 */
289 smp_mb();
Nikolay Borisov0f8939b2017-01-18 00:31:30 +0200290 if (list_empty(&inode->extent_tree.modified_extents))
Filipe Manana2f2ff0e2015-03-20 17:19:46 +0000291 ret = 1;
Filipe Manana125c4cf92014-09-11 21:22:14 +0100292 }
Nikolay Borisov0f8939b2017-01-18 00:31:30 +0200293 spin_unlock(&inode->lock);
Filipe Manana2f2ff0e2015-03-20 17:19:46 +0000294 return ret;
Josef Bacik22ee6985d2012-05-29 16:57:49 -0400295}
296
Miao Xiefacc8a222013-07-25 19:22:34 +0800297struct btrfs_dio_private {
298 struct inode *inode;
299 u64 logical_offset;
300 u64 disk_bytenr;
301 u64 bytes;
Miao Xiefacc8a222013-07-25 19:22:34 +0800302
Omar Sandovale3b318d2020-04-16 14:46:20 -0700303 /*
304 * References to this structure. There is one reference per in-flight
305 * bio plus one while we're still setting up.
306 */
307 refcount_t refs;
Miao Xiefacc8a222013-07-25 19:22:34 +0800308
Miao Xiefacc8a222013-07-25 19:22:34 +0800309 /* dio_bio came from fs/direct-io.c */
310 struct bio *dio_bio;
Miao Xiec1dc0892014-09-12 18:43:56 +0800311
Omar Sandoval85879572020-04-16 14:46:21 -0700312 /* Array of checksums */
313 u8 csums[];
Miao Xiefacc8a222013-07-25 19:22:34 +0800314};
315
David Sterba8e0fa5d2020-06-09 19:21:48 +0200316/*
317 * Disable DIO read nolock optimization, so new dio readers will be forced
318 * to grab i_mutex. It is used to avoid the endless truncate due to
319 * nonlocked dio read.
320 */
321static inline void btrfs_inode_block_unlocked_dio(struct btrfs_inode *inode)
322{
323 set_bit(BTRFS_INODE_READDIO_NEED_LOCK, &inode->runtime_flags);
324 smp_mb();
325}
326
327static inline void btrfs_inode_resume_unlocked_dio(struct btrfs_inode *inode)
328{
329 smp_mb__before_atomic();
330 clear_bit(BTRFS_INODE_READDIO_NEED_LOCK, &inode->runtime_flags);
331}
332
Johannes Thumshirn7ebc7e52019-06-03 16:58:52 +0200333/* Array of bytes with variable length, hexadecimal format 0x1234 */
334#define CSUM_FMT "0x%*phN"
335#define CSUM_FMT_VALUE(size, bytes) size, bytes
336
Nikolay Borisov0970a222017-02-20 13:50:53 +0200337static inline void btrfs_print_data_csum_error(struct btrfs_inode *inode,
Johannes Thumshirnea41d6b2019-06-03 16:58:58 +0200338 u64 logical_start, u8 *csum, u8 *csum_expected, int mirror_num)
Qu Wenruo6f6b6432017-02-09 10:45:06 +0800339{
Nikolay Borisov0970a222017-02-20 13:50:53 +0200340 struct btrfs_root *root = inode->root;
Johannes Thumshirn7ebc7e52019-06-03 16:58:52 +0200341 struct btrfs_super_block *sb = root->fs_info->super_copy;
342 const u16 csum_size = btrfs_super_csum_size(sb);
Qu Wenruo6f6b6432017-02-09 10:45:06 +0800343
344 /* Output minus objectid, which is more meaningful */
Misono Tomohiro4fd786e2018-08-06 14:25:24 +0900345 if (root->root_key.objectid >= BTRFS_LAST_FREE_OBJECTID)
Qu Wenruo6f6b6432017-02-09 10:45:06 +0800346 btrfs_warn_rl(root->fs_info,
Johannes Thumshirn7ebc7e52019-06-03 16:58:52 +0200347"csum failed root %lld ino %lld off %llu csum " CSUM_FMT " expected csum " CSUM_FMT " mirror %d",
Misono Tomohiro4fd786e2018-08-06 14:25:24 +0900348 root->root_key.objectid, btrfs_ino(inode),
Johannes Thumshirn7ebc7e52019-06-03 16:58:52 +0200349 logical_start,
Johannes Thumshirnea41d6b2019-06-03 16:58:58 +0200350 CSUM_FMT_VALUE(csum_size, csum),
351 CSUM_FMT_VALUE(csum_size, csum_expected),
Johannes Thumshirn7ebc7e52019-06-03 16:58:52 +0200352 mirror_num);
Qu Wenruo6f6b6432017-02-09 10:45:06 +0800353 else
354 btrfs_warn_rl(root->fs_info,
Johannes Thumshirn7ebc7e52019-06-03 16:58:52 +0200355"csum failed root %llu ino %llu off %llu csum " CSUM_FMT " expected csum " CSUM_FMT " mirror %d",
Misono Tomohiro4fd786e2018-08-06 14:25:24 +0900356 root->root_key.objectid, btrfs_ino(inode),
Johannes Thumshirn7ebc7e52019-06-03 16:58:52 +0200357 logical_start,
Johannes Thumshirnea41d6b2019-06-03 16:58:58 +0200358 CSUM_FMT_VALUE(csum_size, csum),
359 CSUM_FMT_VALUE(csum_size, csum_expected),
Johannes Thumshirn7ebc7e52019-06-03 16:58:52 +0200360 mirror_num);
Qu Wenruo6f6b6432017-02-09 10:45:06 +0800361}
362
Chris Mason2c90e5d62007-04-02 10:50:19 -0400363#endif