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0a8165d7 1/*
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2 * fs/f2fs/f2fs.h
3 *
4 * Copyright (c) 2012 Samsung Electronics Co., Ltd.
5 * http://www.samsung.com/
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 */
11#ifndef _LINUX_F2FS_H
12#define _LINUX_F2FS_H
13
14#include <linux/types.h>
15#include <linux/page-flags.h>
16#include <linux/buffer_head.h>
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17#include <linux/slab.h>
18#include <linux/crc32.h>
19#include <linux/magic.h>
c2d715d1 20#include <linux/kobject.h>
7bd59381 21#include <linux/sched.h>
39307a8e 22#include <linux/vmalloc.h>
740432f8 23#include <linux/bio.h>
d0239e1b 24#include <linux/blkdev.h>
0abd675e 25#include <linux/quotaops.h>
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26#ifdef CONFIG_F2FS_FS_ENCRYPTION
27#include <linux/fscrypt_supp.h>
28#else
29#include <linux/fscrypt_notsupp.h>
30#endif
43b6573b 31#include <crypto/hash.h>
39a53e0c 32
5d56b671 33#ifdef CONFIG_F2FS_CHECK_FS
9850cf4a 34#define f2fs_bug_on(sbi, condition) BUG_ON(condition)
5d56b671 35#else
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36#define f2fs_bug_on(sbi, condition) \
37 do { \
38 if (unlikely(condition)) { \
39 WARN_ON(1); \
caf0047e 40 set_sbi_flag(sbi, SBI_NEED_FSCK); \
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41 } \
42 } while (0)
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43#endif
44
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45#ifdef CONFIG_F2FS_FAULT_INJECTION
46enum {
47 FAULT_KMALLOC,
c41f3cc3 48 FAULT_PAGE_ALLOC,
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49 FAULT_ALLOC_NID,
50 FAULT_ORPHAN,
51 FAULT_BLOCK,
52 FAULT_DIR_DEPTH,
53aa6bbf 53 FAULT_EVICT_INODE,
14b44d23 54 FAULT_TRUNCATE,
8b038c70 55 FAULT_IO,
0f348028 56 FAULT_CHECKPOINT,
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57 FAULT_MAX,
58};
59
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60struct f2fs_fault_info {
61 atomic_t inject_ops;
62 unsigned int inject_rate;
63 unsigned int inject_type;
64};
65
2c63fead 66extern char *fault_name[FAULT_MAX];
68afcf2d 67#define IS_FAULT_SET(fi, type) ((fi)->inject_type & (1 << (type)))
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68#endif
69
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70/*
71 * For mount options
72 */
73#define F2FS_MOUNT_BG_GC 0x00000001
74#define F2FS_MOUNT_DISABLE_ROLL_FORWARD 0x00000002
75#define F2FS_MOUNT_DISCARD 0x00000004
76#define F2FS_MOUNT_NOHEAP 0x00000008
77#define F2FS_MOUNT_XATTR_USER 0x00000010
78#define F2FS_MOUNT_POSIX_ACL 0x00000020
79#define F2FS_MOUNT_DISABLE_EXT_IDENTIFY 0x00000040
444c580f 80#define F2FS_MOUNT_INLINE_XATTR 0x00000080
1001b347 81#define F2FS_MOUNT_INLINE_DATA 0x00000100
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82#define F2FS_MOUNT_INLINE_DENTRY 0x00000200
83#define F2FS_MOUNT_FLUSH_MERGE 0x00000400
84#define F2FS_MOUNT_NOBARRIER 0x00000800
d5053a34 85#define F2FS_MOUNT_FASTBOOT 0x00001000
89672159 86#define F2FS_MOUNT_EXTENT_CACHE 0x00002000
6aefd93b 87#define F2FS_MOUNT_FORCE_FG_GC 0x00004000
343f40f0 88#define F2FS_MOUNT_DATA_FLUSH 0x00008000
73faec4d 89#define F2FS_MOUNT_FAULT_INJECTION 0x00010000
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90#define F2FS_MOUNT_ADAPTIVE 0x00020000
91#define F2FS_MOUNT_LFS 0x00040000
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92#define F2FS_MOUNT_USRQUOTA 0x00080000
93#define F2FS_MOUNT_GRPQUOTA 0x00100000
5c57132e 94#define F2FS_MOUNT_PRJQUOTA 0x00200000
4b2414d0 95#define F2FS_MOUNT_QUOTA 0x00400000
39a53e0c 96
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97#define clear_opt(sbi, option) ((sbi)->mount_opt.opt &= ~F2FS_MOUNT_##option)
98#define set_opt(sbi, option) ((sbi)->mount_opt.opt |= F2FS_MOUNT_##option)
99#define test_opt(sbi, option) ((sbi)->mount_opt.opt & F2FS_MOUNT_##option)
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100
101#define ver_after(a, b) (typecheck(unsigned long long, a) && \
102 typecheck(unsigned long long, b) && \
103 ((long long)((a) - (b)) > 0))
104
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105typedef u32 block_t; /*
106 * should not change u32, since it is the on-disk block
107 * address format, __le32.
108 */
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109typedef u32 nid_t;
110
111struct f2fs_mount_info {
112 unsigned int opt;
113};
114
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115#define F2FS_FEATURE_ENCRYPT 0x0001
116#define F2FS_FEATURE_BLKZONED 0x0002
117#define F2FS_FEATURE_ATOMIC_WRITE 0x0004
118#define F2FS_FEATURE_EXTRA_ATTR 0x0008
5c57132e 119#define F2FS_FEATURE_PRJQUOTA 0x0010
704956ec 120#define F2FS_FEATURE_INODE_CHKSUM 0x0020
cde4de12 121
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122#define F2FS_HAS_FEATURE(sb, mask) \
123 ((F2FS_SB(sb)->raw_super->feature & cpu_to_le32(mask)) != 0)
124#define F2FS_SET_FEATURE(sb, mask) \
c64ab12e 125 (F2FS_SB(sb)->raw_super->feature |= cpu_to_le32(mask))
76f105a2 126#define F2FS_CLEAR_FEATURE(sb, mask) \
c64ab12e 127 (F2FS_SB(sb)->raw_super->feature &= ~cpu_to_le32(mask))
76f105a2 128
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129/*
130 * For checkpoint manager
131 */
132enum {
133 NAT_BITMAP,
134 SIT_BITMAP
135};
136
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137#define CP_UMOUNT 0x00000001
138#define CP_FASTBOOT 0x00000002
139#define CP_SYNC 0x00000004
140#define CP_RECOVERY 0x00000008
141#define CP_DISCARD 0x00000010
1f43e2ad 142#define CP_TRIMMED 0x00000020
75ab4cb8 143
47b89808 144#define DEF_BATCHED_TRIM_SECTIONS 2048
bba681cb 145#define BATCHED_TRIM_SEGMENTS(sbi) \
4ddb1a4d 146 (GET_SEG_FROM_SEC(sbi, SM_I(sbi)->trim_sections))
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147#define BATCHED_TRIM_BLOCKS(sbi) \
148 (BATCHED_TRIM_SEGMENTS(sbi) << (sbi)->log_blocks_per_seg)
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149#define MAX_DISCARD_BLOCKS(sbi) BLKS_PER_SEC(sbi)
150#define DISCARD_ISSUE_RATE 8
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151#define DEF_MIN_DISCARD_ISSUE_TIME 50 /* 50 ms, if exists */
152#define DEF_MAX_DISCARD_ISSUE_TIME 60000 /* 60 s, if no candidates */
60b99b48 153#define DEF_CP_INTERVAL 60 /* 60 secs */
dcf25fe8 154#define DEF_IDLE_INTERVAL 5 /* 5 secs */
bba681cb 155
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156struct cp_control {
157 int reason;
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158 __u64 trim_start;
159 __u64 trim_end;
160 __u64 trim_minlen;
161 __u64 trimmed;
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162};
163
662befda 164/*
81c1a0f1 165 * For CP/NAT/SIT/SSA readahead
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166 */
167enum {
168 META_CP,
169 META_NAT,
81c1a0f1 170 META_SIT,
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171 META_SSA,
172 META_POR,
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173};
174
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175/* for the list of ino */
176enum {
177 ORPHAN_INO, /* for orphan ino list */
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178 APPEND_INO, /* for append ino list */
179 UPDATE_INO, /* for update ino list */
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180 MAX_INO_ENTRY, /* max. list */
181};
182
183struct ino_entry {
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184 struct list_head list; /* list head */
185 nid_t ino; /* inode number */
186};
187
2710fd7e 188/* for the list of inodes to be GCed */
06292073 189struct inode_entry {
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190 struct list_head list; /* list head */
191 struct inode *inode; /* vfs inode pointer */
192};
193
a7eeb823 194/* for the bitmap indicate blocks to be discarded */
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195struct discard_entry {
196 struct list_head list; /* list head */
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197 block_t start_blkaddr; /* start blockaddr of current segment */
198 unsigned char discard_map[SIT_VBLOCK_MAP_SIZE]; /* segment discard bitmap */
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199};
200
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201/* default discard granularity of inner discard thread, unit: block count */
202#define DEFAULT_DISCARD_GRANULARITY 16
203
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204/* max discard pend list number */
205#define MAX_PLIST_NUM 512
206#define plist_idx(blk_num) ((blk_num) >= MAX_PLIST_NUM ? \
207 (MAX_PLIST_NUM - 1) : (blk_num - 1))
208
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209#define P_ACTIVE 0x01
210#define P_TRIM 0x02
211#define plist_issue(tag) (((tag) & P_ACTIVE) || ((tag) & P_TRIM))
212
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213enum {
214 D_PREP,
215 D_SUBMIT,
216 D_DONE,
217};
218
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219struct discard_info {
220 block_t lstart; /* logical start address */
221 block_t len; /* length */
222 block_t start; /* actual start address in dev */
223};
224
b01a9201 225struct discard_cmd {
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226 struct rb_node rb_node; /* rb node located in rb-tree */
227 union {
228 struct {
229 block_t lstart; /* logical start address */
230 block_t len; /* length */
231 block_t start; /* actual start address in dev */
232 };
233 struct discard_info di; /* discard info */
234
235 };
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236 struct list_head list; /* command list */
237 struct completion wait; /* compleation */
c81abe34 238 struct block_device *bdev; /* bdev */
ec9895ad 239 unsigned short ref; /* reference count */
9a744b92 240 unsigned char state; /* state */
c81abe34 241 int error; /* bio error */
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242};
243
0b54fb84 244struct discard_cmd_control {
15469963 245 struct task_struct *f2fs_issue_discard; /* discard thread */
46f84c2c 246 struct list_head entry_list; /* 4KB discard entry list */
ba48a33e 247 struct list_head pend_list[MAX_PLIST_NUM];/* store pending entries */
969d1b18 248 unsigned char pend_list_tag[MAX_PLIST_NUM];/* tag for pending entries */
46f84c2c 249 struct list_head wait_list; /* store on-flushing entries */
15469963 250 wait_queue_head_t discard_wait_queue; /* waiting queue for wake-up */
969d1b18 251 unsigned int discard_wake; /* to wake up discard thread */
15469963 252 struct mutex cmd_lock;
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253 unsigned int nr_discards; /* # of discards in the list */
254 unsigned int max_discards; /* max. discards to be issued */
969d1b18 255 unsigned int discard_granularity; /* discard granularity */
d84d1cbd 256 unsigned int undiscard_blks; /* # of undiscard blocks */
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257 atomic_t issued_discard; /* # of issued discard */
258 atomic_t issing_discard; /* # of issing discard */
5f32366a 259 atomic_t discard_cmd_cnt; /* # of cached cmd count */
004b6862 260 struct rb_root root; /* root of discard rb-tree */
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261};
262
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263/* for the list of fsync inodes, used only during recovery */
264struct fsync_inode_entry {
265 struct list_head list; /* list head */
266 struct inode *inode; /* vfs inode pointer */
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267 block_t blkaddr; /* block address locating the last fsync */
268 block_t last_dentry; /* block address locating the last dentry */
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269};
270
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271#define nats_in_cursum(jnl) (le16_to_cpu((jnl)->n_nats))
272#define sits_in_cursum(jnl) (le16_to_cpu((jnl)->n_sits))
39a53e0c 273
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274#define nat_in_journal(jnl, i) ((jnl)->nat_j.entries[i].ne)
275#define nid_in_journal(jnl, i) ((jnl)->nat_j.entries[i].nid)
276#define sit_in_journal(jnl, i) ((jnl)->sit_j.entries[i].se)
277#define segno_in_journal(jnl, i) ((jnl)->sit_j.entries[i].segno)
39a53e0c 278
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279#define MAX_NAT_JENTRIES(jnl) (NAT_JOURNAL_ENTRIES - nats_in_cursum(jnl))
280#define MAX_SIT_JENTRIES(jnl) (SIT_JOURNAL_ENTRIES - sits_in_cursum(jnl))
309cc2b6 281
dfc08a12 282static inline int update_nats_in_cursum(struct f2fs_journal *journal, int i)
39a53e0c 283{
dfc08a12 284 int before = nats_in_cursum(journal);
cac5a3d8 285
dfc08a12 286 journal->n_nats = cpu_to_le16(before + i);
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287 return before;
288}
289
dfc08a12 290static inline int update_sits_in_cursum(struct f2fs_journal *journal, int i)
39a53e0c 291{
dfc08a12 292 int before = sits_in_cursum(journal);
cac5a3d8 293
dfc08a12 294 journal->n_sits = cpu_to_le16(before + i);
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295 return before;
296}
297
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298static inline bool __has_cursum_space(struct f2fs_journal *journal,
299 int size, int type)
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300{
301 if (type == NAT_JOURNAL)
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302 return size <= MAX_NAT_JENTRIES(journal);
303 return size <= MAX_SIT_JENTRIES(journal);
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304}
305
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306/*
307 * ioctl commands
308 */
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309#define F2FS_IOC_GETFLAGS FS_IOC_GETFLAGS
310#define F2FS_IOC_SETFLAGS FS_IOC_SETFLAGS
d49f3e89 311#define F2FS_IOC_GETVERSION FS_IOC_GETVERSION
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312
313#define F2FS_IOCTL_MAGIC 0xf5
314#define F2FS_IOC_START_ATOMIC_WRITE _IO(F2FS_IOCTL_MAGIC, 1)
315#define F2FS_IOC_COMMIT_ATOMIC_WRITE _IO(F2FS_IOCTL_MAGIC, 2)
02a1335f 316#define F2FS_IOC_START_VOLATILE_WRITE _IO(F2FS_IOCTL_MAGIC, 3)
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317#define F2FS_IOC_RELEASE_VOLATILE_WRITE _IO(F2FS_IOCTL_MAGIC, 4)
318#define F2FS_IOC_ABORT_VOLATILE_WRITE _IO(F2FS_IOCTL_MAGIC, 5)
d07efb50 319#define F2FS_IOC_GARBAGE_COLLECT _IOW(F2FS_IOCTL_MAGIC, 6, __u32)
456b88e4 320#define F2FS_IOC_WRITE_CHECKPOINT _IO(F2FS_IOCTL_MAGIC, 7)
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321#define F2FS_IOC_DEFRAGMENT _IOWR(F2FS_IOCTL_MAGIC, 8, \
322 struct f2fs_defragment)
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323#define F2FS_IOC_MOVE_RANGE _IOWR(F2FS_IOCTL_MAGIC, 9, \
324 struct f2fs_move_range)
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325#define F2FS_IOC_FLUSH_DEVICE _IOW(F2FS_IOCTL_MAGIC, 10, \
326 struct f2fs_flush_device)
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327#define F2FS_IOC_GARBAGE_COLLECT_RANGE _IOW(F2FS_IOCTL_MAGIC, 11, \
328 struct f2fs_gc_range)
e65ef207 329#define F2FS_IOC_GET_FEATURES _IOR(F2FS_IOCTL_MAGIC, 12, __u32)
e9750824 330
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331#define F2FS_IOC_SET_ENCRYPTION_POLICY FS_IOC_SET_ENCRYPTION_POLICY
332#define F2FS_IOC_GET_ENCRYPTION_POLICY FS_IOC_GET_ENCRYPTION_POLICY
333#define F2FS_IOC_GET_ENCRYPTION_PWSALT FS_IOC_GET_ENCRYPTION_PWSALT
f424f664 334
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335/*
336 * should be same as XFS_IOC_GOINGDOWN.
337 * Flags for going down operation used by FS_IOC_GOINGDOWN
338 */
339#define F2FS_IOC_SHUTDOWN _IOR('X', 125, __u32) /* Shutdown */
340#define F2FS_GOING_DOWN_FULLSYNC 0x0 /* going down with full sync */
341#define F2FS_GOING_DOWN_METASYNC 0x1 /* going down with metadata */
342#define F2FS_GOING_DOWN_NOSYNC 0x2 /* going down */
c912a829 343#define F2FS_GOING_DOWN_METAFLUSH 0x3 /* going down with meta flush */
1abff93d 344
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345#if defined(__KERNEL__) && defined(CONFIG_COMPAT)
346/*
347 * ioctl commands in 32 bit emulation
348 */
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349#define F2FS_IOC32_GETFLAGS FS_IOC32_GETFLAGS
350#define F2FS_IOC32_SETFLAGS FS_IOC32_SETFLAGS
351#define F2FS_IOC32_GETVERSION FS_IOC32_GETVERSION
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352#endif
353
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354#define F2FS_IOC_FSGETXATTR FS_IOC_FSGETXATTR
355#define F2FS_IOC_FSSETXATTR FS_IOC_FSSETXATTR
356
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357struct f2fs_gc_range {
358 u32 sync;
359 u64 start;
360 u64 len;
361};
362
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363struct f2fs_defragment {
364 u64 start;
365 u64 len;
366};
367
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368struct f2fs_move_range {
369 u32 dst_fd; /* destination fd */
370 u64 pos_in; /* start position in src_fd */
371 u64 pos_out; /* start position in dst_fd */
372 u64 len; /* size to move */
373};
374
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375struct f2fs_flush_device {
376 u32 dev_num; /* device number to flush */
377 u32 segments; /* # of segments to flush */
378};
379
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380/* for inline stuff */
381#define DEF_INLINE_RESERVED_SIZE 1
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382static inline int get_extra_isize(struct inode *inode);
383#define MAX_INLINE_DATA(inode) (sizeof(__le32) * \
384 (CUR_ADDRS_PER_INODE(inode) - \
385 DEF_INLINE_RESERVED_SIZE - \
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386 F2FS_INLINE_XATTR_ADDRS))
387
388/* for inline dir */
389#define NR_INLINE_DENTRY(inode) (MAX_INLINE_DATA(inode) * BITS_PER_BYTE / \
390 ((SIZE_OF_DIR_ENTRY + F2FS_SLOT_LEN) * \
391 BITS_PER_BYTE + 1))
392#define INLINE_DENTRY_BITMAP_SIZE(inode) ((NR_INLINE_DENTRY(inode) + \
393 BITS_PER_BYTE - 1) / BITS_PER_BYTE)
394#define INLINE_RESERVED_SIZE(inode) (MAX_INLINE_DATA(inode) - \
395 ((SIZE_OF_DIR_ENTRY + F2FS_SLOT_LEN) * \
396 NR_INLINE_DENTRY(inode) + \
397 INLINE_DENTRY_BITMAP_SIZE(inode)))
398
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399/*
400 * For INODE and NODE manager
401 */
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402/* for directory operations */
403struct f2fs_dentry_ptr {
d8c6822a 404 struct inode *inode;
76a9dd85 405 void *bitmap;
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406 struct f2fs_dir_entry *dentry;
407 __u8 (*filename)[F2FS_SLOT_LEN];
408 int max;
76a9dd85 409 int nr_bitmap;
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410};
411
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412static inline void make_dentry_ptr_block(struct inode *inode,
413 struct f2fs_dentry_ptr *d, struct f2fs_dentry_block *t)
7b3cd7d6 414{
d8c6822a 415 d->inode = inode;
64c24ecb 416 d->max = NR_DENTRY_IN_BLOCK;
76a9dd85 417 d->nr_bitmap = SIZE_OF_DENTRY_BITMAP;
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418 d->bitmap = &t->dentry_bitmap;
419 d->dentry = t->dentry;
420 d->filename = t->filename;
421}
d8c6822a 422
64c24ecb 423static inline void make_dentry_ptr_inline(struct inode *inode,
f2470371 424 struct f2fs_dentry_ptr *d, void *t)
64c24ecb 425{
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426 int entry_cnt = NR_INLINE_DENTRY(inode);
427 int bitmap_size = INLINE_DENTRY_BITMAP_SIZE(inode);
428 int reserved_size = INLINE_RESERVED_SIZE(inode);
429
64c24ecb 430 d->inode = inode;
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431 d->max = entry_cnt;
432 d->nr_bitmap = bitmap_size;
433 d->bitmap = t;
434 d->dentry = t + bitmap_size + reserved_size;
435 d->filename = t + bitmap_size + reserved_size +
436 SIZE_OF_DIR_ENTRY * entry_cnt;
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437}
438
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439/*
440 * XATTR_NODE_OFFSET stores xattrs to one node block per file keeping -1
441 * as its node offset to distinguish from index node blocks.
442 * But some bits are used to mark the node block.
443 */
444#define XATTR_NODE_OFFSET ((((unsigned int)-1) << OFFSET_BIT_SHIFT) \
445 >> OFFSET_BIT_SHIFT)
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446enum {
447 ALLOC_NODE, /* allocate a new node page if needed */
448 LOOKUP_NODE, /* look up a node without readahead */
449 LOOKUP_NODE_RA, /*
450 * look up a node with readahead called
4f4124d0 451 * by get_data_block.
39a53e0c 452 */
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453};
454
a6db67f0 455#define F2FS_LINK_MAX 0xffffffff /* maximum link count per file */
39a53e0c 456
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457#define MAX_DIR_RA_PAGES 4 /* maximum ra pages of dir */
458
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459/* vector size for gang look-up from extent cache that consists of radix tree */
460#define EXT_TREE_VEC_SIZE 64
461
39a53e0c 462/* for in-memory extent cache entry */
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463#define F2FS_MIN_EXTENT_LEN 64 /* minimum extent length */
464
465/* number of extent info in extent cache we try to shrink */
466#define EXTENT_CACHE_SHRINK_NUMBER 128
c11abd1a 467
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468struct rb_entry {
469 struct rb_node rb_node; /* rb node located in rb-tree */
470 unsigned int ofs; /* start offset of the entry */
471 unsigned int len; /* length of the entry */
472};
473
39a53e0c 474struct extent_info {
13054c54 475 unsigned int fofs; /* start offset in a file */
13054c54 476 unsigned int len; /* length of the extent */
54c2258c 477 u32 blk; /* start block address of the extent */
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478};
479
480struct extent_node {
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481 struct rb_node rb_node;
482 union {
483 struct {
484 unsigned int fofs;
485 unsigned int len;
486 u32 blk;
487 };
488 struct extent_info ei; /* extent info */
489
490 };
13054c54 491 struct list_head list; /* node in global extent list of sbi */
201ef5e0 492 struct extent_tree *et; /* extent tree pointer */
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493};
494
495struct extent_tree {
496 nid_t ino; /* inode number */
497 struct rb_root root; /* root of extent info rb-tree */
62c8af65 498 struct extent_node *cached_en; /* recently accessed extent node */
3e72f721 499 struct extent_info largest; /* largested extent info */
137d09f0 500 struct list_head list; /* to be used by sbi->zombie_list */
13054c54 501 rwlock_t lock; /* protect extent info rb-tree */
68e35385 502 atomic_t node_cnt; /* # of extent node in rb-tree*/
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503};
504
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505/*
506 * This structure is taken from ext4_map_blocks.
507 *
508 * Note that, however, f2fs uses NEW and MAPPED flags for f2fs_map_blocks().
509 */
510#define F2FS_MAP_NEW (1 << BH_New)
511#define F2FS_MAP_MAPPED (1 << BH_Mapped)
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512#define F2FS_MAP_UNWRITTEN (1 << BH_Unwritten)
513#define F2FS_MAP_FLAGS (F2FS_MAP_NEW | F2FS_MAP_MAPPED |\
514 F2FS_MAP_UNWRITTEN)
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515
516struct f2fs_map_blocks {
517 block_t m_pblk;
518 block_t m_lblk;
519 unsigned int m_len;
520 unsigned int m_flags;
da85985c 521 pgoff_t *m_next_pgofs; /* point next possible non-hole pgofs */
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522};
523
e2b4e2bc 524/* for flag in get_data_block */
f2220c7f
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525enum {
526 F2FS_GET_BLOCK_DEFAULT,
527 F2FS_GET_BLOCK_FIEMAP,
528 F2FS_GET_BLOCK_BMAP,
529 F2FS_GET_BLOCK_PRE_DIO,
530 F2FS_GET_BLOCK_PRE_AIO,
531};
e2b4e2bc 532
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533/*
534 * i_advise uses FADVISE_XXX_BIT. We can add additional hints later.
535 */
536#define FADVISE_COLD_BIT 0x01
354a3399 537#define FADVISE_LOST_PINO_BIT 0x02
cde4de12 538#define FADVISE_ENCRYPT_BIT 0x04
e7d55452 539#define FADVISE_ENC_NAME_BIT 0x08
26787236 540#define FADVISE_KEEP_SIZE_BIT 0x10
39a53e0c 541
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542#define file_is_cold(inode) is_file(inode, FADVISE_COLD_BIT)
543#define file_wrong_pino(inode) is_file(inode, FADVISE_LOST_PINO_BIT)
544#define file_set_cold(inode) set_file(inode, FADVISE_COLD_BIT)
545#define file_lost_pino(inode) set_file(inode, FADVISE_LOST_PINO_BIT)
546#define file_clear_cold(inode) clear_file(inode, FADVISE_COLD_BIT)
547#define file_got_pino(inode) clear_file(inode, FADVISE_LOST_PINO_BIT)
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548#define file_is_encrypt(inode) is_file(inode, FADVISE_ENCRYPT_BIT)
549#define file_set_encrypt(inode) set_file(inode, FADVISE_ENCRYPT_BIT)
550#define file_clear_encrypt(inode) clear_file(inode, FADVISE_ENCRYPT_BIT)
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551#define file_enc_name(inode) is_file(inode, FADVISE_ENC_NAME_BIT)
552#define file_set_enc_name(inode) set_file(inode, FADVISE_ENC_NAME_BIT)
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553#define file_keep_isize(inode) is_file(inode, FADVISE_KEEP_SIZE_BIT)
554#define file_set_keep_isize(inode) set_file(inode, FADVISE_KEEP_SIZE_BIT)
cde4de12 555
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556#define DEF_DIR_LEVEL 0
557
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558struct f2fs_inode_info {
559 struct inode vfs_inode; /* serve a vfs inode */
560 unsigned long i_flags; /* keep an inode flags for ioctl */
561 unsigned char i_advise; /* use to give file attribute hints */
38431545 562 unsigned char i_dir_level; /* use for dentry level for large dir */
39a53e0c 563 unsigned int i_current_depth; /* use only in directory structure */
6666e6aa 564 unsigned int i_pino; /* parent inode number */
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565 umode_t i_acl_mode; /* keep file acl mode temporarily */
566
567 /* Use below internally in f2fs*/
568 unsigned long flags; /* use to pass per-file flags */
d928bfbf 569 struct rw_semaphore i_sem; /* protect fi info */
204706c7 570 atomic_t dirty_pages; /* # of dirty pages */
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571 f2fs_hash_t chash; /* hash value of given file name */
572 unsigned int clevel; /* maximum level of given file name */
88c5c13a 573 struct task_struct *task; /* lookup and create consistency */
b0af6d49 574 struct task_struct *cp_task; /* separate cp/wb IO stats*/
39a53e0c 575 nid_t i_xattr_nid; /* node id that contains xattrs */
26de9b11 576 loff_t last_disk_size; /* lastly written file size */
88b88a66 577
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578#ifdef CONFIG_QUOTA
579 struct dquot *i_dquot[MAXQUOTAS];
580
581 /* quota space reservation, managed internally by quota code */
582 qsize_t i_reserved_quota;
583#endif
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584 struct list_head dirty_list; /* dirty list for dirs and files */
585 struct list_head gdirty_list; /* linked in global dirty list */
88b88a66 586 struct list_head inmem_pages; /* inmemory pages managed by f2fs */
7a10f017 587 struct task_struct *inmem_task; /* store inmemory task */
88b88a66 588 struct mutex inmem_lock; /* lock for inmemory pages */
3e72f721 589 struct extent_tree *extent_tree; /* cached extent_tree entry */
82e0a5aa 590 struct rw_semaphore dio_rwsem[2];/* avoid racing between dio and gc */
5a3a2d83 591 struct rw_semaphore i_mmap_sem;
f2470371 592
7a2af766 593 int i_extra_isize; /* size of extra space located in i_addr */
5c57132e 594 kprojid_t i_projid; /* id for project quota */
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595};
596
597static inline void get_extent_info(struct extent_info *ext,
bd933d4f 598 struct f2fs_extent *i_ext)
39a53e0c 599{
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600 ext->fofs = le32_to_cpu(i_ext->fofs);
601 ext->blk = le32_to_cpu(i_ext->blk);
602 ext->len = le32_to_cpu(i_ext->len);
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603}
604
605static inline void set_raw_extent(struct extent_info *ext,
606 struct f2fs_extent *i_ext)
607{
39a53e0c 608 i_ext->fofs = cpu_to_le32(ext->fofs);
4d0b0bd4 609 i_ext->blk = cpu_to_le32(ext->blk);
39a53e0c 610 i_ext->len = cpu_to_le32(ext->len);
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611}
612
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613static inline void set_extent_info(struct extent_info *ei, unsigned int fofs,
614 u32 blk, unsigned int len)
615{
616 ei->fofs = fofs;
617 ei->blk = blk;
618 ei->len = len;
619}
620
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621static inline bool __is_discard_mergeable(struct discard_info *back,
622 struct discard_info *front)
623{
624 return back->lstart + back->len == front->lstart;
625}
626
627static inline bool __is_discard_back_mergeable(struct discard_info *cur,
628 struct discard_info *back)
629{
630 return __is_discard_mergeable(back, cur);
631}
632
633static inline bool __is_discard_front_mergeable(struct discard_info *cur,
634 struct discard_info *front)
635{
636 return __is_discard_mergeable(cur, front);
637}
638
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639static inline bool __is_extent_mergeable(struct extent_info *back,
640 struct extent_info *front)
641{
642 return (back->fofs + back->len == front->fofs &&
643 back->blk + back->len == front->blk);
644}
645
646static inline bool __is_back_mergeable(struct extent_info *cur,
647 struct extent_info *back)
648{
649 return __is_extent_mergeable(back, cur);
650}
651
652static inline bool __is_front_mergeable(struct extent_info *cur,
653 struct extent_info *front)
654{
655 return __is_extent_mergeable(cur, front);
656}
657
cac5a3d8 658extern void f2fs_mark_inode_dirty_sync(struct inode *inode, bool sync);
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659static inline void __try_update_largest_extent(struct inode *inode,
660 struct extent_tree *et, struct extent_node *en)
4abd3f5a 661{
205b9822 662 if (en->ei.len > et->largest.len) {
4abd3f5a 663 et->largest = en->ei;
7c45729a 664 f2fs_mark_inode_dirty_sync(inode, true);
205b9822 665 }
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666}
667
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668enum nid_list {
669 FREE_NID_LIST,
670 ALLOC_NID_LIST,
671 MAX_NID_LIST,
672};
673
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674struct f2fs_nm_info {
675 block_t nat_blkaddr; /* base disk address of NAT */
676 nid_t max_nid; /* maximum possible node ids */
04d47e67 677 nid_t available_nids; /* # of available node ids */
39a53e0c 678 nid_t next_scan_nid; /* the next nid to be scanned */
cdfc41c1 679 unsigned int ram_thresh; /* control the memory footprint */
ea1a29a0 680 unsigned int ra_nid_pages; /* # of nid pages to be readaheaded */
2304cb0c 681 unsigned int dirty_nats_ratio; /* control dirty nats ratio threshold */
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682
683 /* NAT cache management */
684 struct radix_tree_root nat_root;/* root of the nat entry cache */
309cc2b6 685 struct radix_tree_root nat_set_root;/* root of the nat set cache */
b873b798 686 struct rw_semaphore nat_tree_lock; /* protect nat_tree_lock */
39a53e0c 687 struct list_head nat_entries; /* cached nat entry list (clean) */
309cc2b6 688 unsigned int nat_cnt; /* the # of cached nat entries */
aec71382 689 unsigned int dirty_nat_cnt; /* total num of nat entries in set */
22ad0b6a 690 unsigned int nat_blocks; /* # of nat blocks */
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691
692 /* free node ids management */
8a7ed66a 693 struct radix_tree_root free_nid_root;/* root of the free_nid cache */
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694 struct list_head nid_list[MAX_NID_LIST];/* lists for free nids */
695 unsigned int nid_cnt[MAX_NID_LIST]; /* the number of free node id */
696 spinlock_t nid_list_lock; /* protect nid lists ops */
39a53e0c 697 struct mutex build_lock; /* lock for build free nids */
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698 unsigned char (*free_nid_bitmap)[NAT_ENTRY_BITMAP_SIZE];
699 unsigned char *nat_block_bitmap;
586d1492 700 unsigned short *free_nid_count; /* free nid count of NAT block */
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701
702 /* for checkpoint */
703 char *nat_bitmap; /* NAT bitmap pointer */
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704
705 unsigned int nat_bits_blocks; /* # of nat bits blocks */
706 unsigned char *nat_bits; /* NAT bits blocks */
707 unsigned char *full_nat_bits; /* full NAT pages */
708 unsigned char *empty_nat_bits; /* empty NAT pages */
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709#ifdef CONFIG_F2FS_CHECK_FS
710 char *nat_bitmap_mir; /* NAT bitmap mirror */
711#endif
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712 int bitmap_size; /* bitmap size */
713};
714
715/*
716 * this structure is used as one of function parameters.
717 * all the information are dedicated to a given direct node block determined
718 * by the data offset in a file.
719 */
720struct dnode_of_data {
721 struct inode *inode; /* vfs inode pointer */
722 struct page *inode_page; /* its inode page, NULL is possible */
723 struct page *node_page; /* cached direct node page */
724 nid_t nid; /* node id of the direct node block */
725 unsigned int ofs_in_node; /* data offset in the node page */
726 bool inode_page_locked; /* inode page is locked or not */
93bae099 727 bool node_changed; /* is node block changed */
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728 char cur_level; /* level of hole node page */
729 char max_level; /* level of current page located */
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730 block_t data_blkaddr; /* block address of the node block */
731};
732
733static inline void set_new_dnode(struct dnode_of_data *dn, struct inode *inode,
734 struct page *ipage, struct page *npage, nid_t nid)
735{
d66d1f76 736 memset(dn, 0, sizeof(*dn));
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737 dn->inode = inode;
738 dn->inode_page = ipage;
739 dn->node_page = npage;
740 dn->nid = nid;
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741}
742
743/*
744 * For SIT manager
745 *
746 * By default, there are 6 active log areas across the whole main area.
747 * When considering hot and cold data separation to reduce cleaning overhead,
748 * we split 3 for data logs and 3 for node logs as hot, warm, and cold types,
749 * respectively.
750 * In the current design, you should not change the numbers intentionally.
751 * Instead, as a mount option such as active_logs=x, you can use 2, 4, and 6
752 * logs individually according to the underlying devices. (default: 6)
753 * Just in case, on-disk layout covers maximum 16 logs that consist of 8 for
754 * data and 8 for node logs.
755 */
756#define NR_CURSEG_DATA_TYPE (3)
757#define NR_CURSEG_NODE_TYPE (3)
758#define NR_CURSEG_TYPE (NR_CURSEG_DATA_TYPE + NR_CURSEG_NODE_TYPE)
759
760enum {
761 CURSEG_HOT_DATA = 0, /* directory entry blocks */
762 CURSEG_WARM_DATA, /* data blocks */
763 CURSEG_COLD_DATA, /* multimedia or GCed data blocks */
764 CURSEG_HOT_NODE, /* direct node blocks of directory files */
765 CURSEG_WARM_NODE, /* direct node blocks of normal files */
766 CURSEG_COLD_NODE, /* indirect node blocks */
38aa0889 767 NO_CHECK_TYPE,
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768};
769
6b4afdd7 770struct flush_cmd {
6b4afdd7 771 struct completion wait;
721bd4d5 772 struct llist_node llnode;
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773 int ret;
774};
775
a688b9d9
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776struct flush_cmd_control {
777 struct task_struct *f2fs_issue_flush; /* flush thread */
778 wait_queue_head_t flush_wait_queue; /* waiting queue for wake-up */
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CY
779 atomic_t issued_flush; /* # of issued flushes */
780 atomic_t issing_flush; /* # of issing flushes */
721bd4d5
GZ
781 struct llist_head issue_list; /* list for command issue */
782 struct llist_node *dispatch_list; /* list for command dispatch */
a688b9d9
GZ
783};
784
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785struct f2fs_sm_info {
786 struct sit_info *sit_info; /* whole segment information */
787 struct free_segmap_info *free_info; /* free segment information */
788 struct dirty_seglist_info *dirty_info; /* dirty segment information */
789 struct curseg_info *curseg_array; /* active segment information */
790
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JK
791 block_t seg0_blkaddr; /* block address of 0'th segment */
792 block_t main_blkaddr; /* start block address of main area */
793 block_t ssa_blkaddr; /* start block address of SSA area */
794
795 unsigned int segment_count; /* total # of segments */
796 unsigned int main_segments; /* # of segments in main area */
797 unsigned int reserved_segments; /* # of reserved segments */
798 unsigned int ovp_segments; /* # of overprovision segments */
81eb8d6e
JK
799
800 /* a threshold to reclaim prefree segments */
801 unsigned int rec_prefree_segments;
7fd9e544 802
bba681cb
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803 /* for batched trimming */
804 unsigned int trim_sections; /* # of sections to trim */
805
184a5cd2
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806 struct list_head sit_entry_set; /* sit entry set list */
807
216fbd64
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808 unsigned int ipu_policy; /* in-place-update policy */
809 unsigned int min_ipu_util; /* in-place-update threshold */
c1ce1b02 810 unsigned int min_fsync_blocks; /* threshold for fsync */
ef095d19 811 unsigned int min_hot_blocks; /* threshold for hot block allocation */
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812
813 /* for flush command control */
b01a9201 814 struct flush_cmd_control *fcc_info;
a688b9d9 815
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816 /* for discard command control */
817 struct discard_cmd_control *dcc_info;
39a53e0c
JK
818};
819
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820/*
821 * For superblock
822 */
823/*
824 * COUNT_TYPE for monitoring
825 *
826 * f2fs monitors the number of several block types such as on-writeback,
827 * dirty dentry blocks, dirty node blocks, and dirty meta blocks.
828 */
36951b38 829#define WB_DATA_TYPE(p) (__is_cp_guaranteed(p) ? F2FS_WB_CP_DATA : F2FS_WB_DATA)
39a53e0c 830enum count_type {
39a53e0c 831 F2FS_DIRTY_DENTS,
c227f912 832 F2FS_DIRTY_DATA,
39a53e0c
JK
833 F2FS_DIRTY_NODES,
834 F2FS_DIRTY_META,
8dcf2ff7 835 F2FS_INMEM_PAGES,
0f18b462 836 F2FS_DIRTY_IMETA,
36951b38
CY
837 F2FS_WB_CP_DATA,
838 F2FS_WB_DATA,
39a53e0c
JK
839 NR_COUNT_TYPE,
840};
841
39a53e0c 842/*
e1c42045 843 * The below are the page types of bios used in submit_bio().
39a53e0c
JK
844 * The available types are:
845 * DATA User data pages. It operates as async mode.
846 * NODE Node pages. It operates as async mode.
847 * META FS metadata pages such as SIT, NAT, CP.
848 * NR_PAGE_TYPE The number of page types.
849 * META_FLUSH Make sure the previous pages are written
850 * with waiting the bio's completion
851 * ... Only can be used with META.
852 */
7d5e5109 853#define PAGE_TYPE_OF_BIO(type) ((type) > META ? META : (type))
39a53e0c
JK
854enum page_type {
855 DATA,
856 NODE,
857 META,
858 NR_PAGE_TYPE,
859 META_FLUSH,
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860 INMEM, /* the below types are used by tracepoints only. */
861 INMEM_DROP,
8c242db9 862 INMEM_INVALIDATE,
28bc106b 863 INMEM_REVOKE,
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864 IPU,
865 OPU,
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866};
867
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868enum temp_type {
869 HOT = 0, /* must be zero for meta bio */
870 WARM,
871 COLD,
872 NR_TEMP_TYPE,
873};
874
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875enum need_lock_type {
876 LOCK_REQ = 0,
877 LOCK_DONE,
878 LOCK_RETRY,
879};
880
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881enum iostat_type {
882 APP_DIRECT_IO, /* app direct IOs */
883 APP_BUFFERED_IO, /* app buffered IOs */
884 APP_WRITE_IO, /* app write IOs */
885 APP_MAPPED_IO, /* app mapped IOs */
886 FS_DATA_IO, /* data IOs from kworker/fsync/reclaimer */
887 FS_NODE_IO, /* node IOs from kworker/fsync/reclaimer */
888 FS_META_IO, /* meta IOs from kworker/reclaimer */
889 FS_GC_DATA_IO, /* data IOs from forground gc */
890 FS_GC_NODE_IO, /* node IOs from forground gc */
891 FS_CP_DATA_IO, /* data IOs from checkpoint */
892 FS_CP_NODE_IO, /* node IOs from checkpoint */
893 FS_CP_META_IO, /* meta IOs from checkpoint */
894 FS_DISCARD, /* discard */
895 NR_IO_TYPE,
896};
897
458e6197 898struct f2fs_io_info {
05ca3632 899 struct f2fs_sb_info *sbi; /* f2fs_sb_info pointer */
7e8f2308 900 enum page_type type; /* contains DATA/NODE/META/META_FLUSH */
a912b54d 901 enum temp_type temp; /* contains HOT/WARM/COLD */
04d328de 902 int op; /* contains REQ_OP_ */
ef295ecf 903 int op_flags; /* req_flag_bits */
7a9d7548 904 block_t new_blkaddr; /* new block address to be written */
28bc106b 905 block_t old_blkaddr; /* old block address before Cow */
05ca3632 906 struct page *page; /* page to be written */
4375a336 907 struct page *encrypted_page; /* encrypted page */
fb830fc5 908 struct list_head list; /* serialize IOs */
d68f735b 909 bool submitted; /* indicate IO submission */
cc15620b 910 int need_lock; /* indicate we need to lock cp_rwsem */
fb830fc5 911 bool in_list; /* indicate fio is in io_list */
b0af6d49 912 enum iostat_type io_type; /* io type */
458e6197
JK
913};
914
68afcf2d 915#define is_read_io(rw) ((rw) == READ)
1ff7bd3b 916struct f2fs_bio_info {
458e6197 917 struct f2fs_sb_info *sbi; /* f2fs superblock */
1ff7bd3b
JK
918 struct bio *bio; /* bios to merge */
919 sector_t last_block_in_bio; /* last block number */
458e6197 920 struct f2fs_io_info fio; /* store buffered io info. */
df0f8dc0 921 struct rw_semaphore io_rwsem; /* blocking op for bio */
fb830fc5
CY
922 spinlock_t io_lock; /* serialize DATA/NODE IOs */
923 struct list_head io_list; /* track fios */
1ff7bd3b
JK
924};
925
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JK
926#define FDEV(i) (sbi->devs[i])
927#define RDEV(i) (raw_super->devs[i])
928struct f2fs_dev_info {
929 struct block_device *bdev;
930 char path[MAX_PATH_LEN];
931 unsigned int total_segments;
932 block_t start_blk;
933 block_t end_blk;
934#ifdef CONFIG_BLK_DEV_ZONED
935 unsigned int nr_blkz; /* Total number of zones */
936 u8 *blkz_type; /* Array of zones type */
937#endif
938};
939
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CY
940enum inode_type {
941 DIR_INODE, /* for dirty dir inode */
942 FILE_INODE, /* for dirty regular/symlink inode */
0f18b462 943 DIRTY_META, /* for all dirtied inode metadata */
c227f912
CY
944 NR_INODE_TYPE,
945};
946
67298804
CY
947/* for inner inode cache management */
948struct inode_management {
949 struct radix_tree_root ino_root; /* ino entry array */
950 spinlock_t ino_lock; /* for ino entry lock */
951 struct list_head ino_list; /* inode list head */
952 unsigned long ino_num; /* number of entries */
953};
954
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955/* For s_flag in struct f2fs_sb_info */
956enum {
957 SBI_IS_DIRTY, /* dirty flag for checkpoint */
958 SBI_IS_CLOSE, /* specify unmounting */
959 SBI_NEED_FSCK, /* need fsck.f2fs to fix */
960 SBI_POR_DOING, /* recovery is doing or not */
df728b0f 961 SBI_NEED_SB_WRITE, /* need to recover superblock */
bbf156f7 962 SBI_NEED_CP, /* need to checkpoint */
caf0047e
CY
963};
964
6beceb54
JK
965enum {
966 CP_TIME,
d0239e1b 967 REQ_TIME,
6beceb54
JK
968 MAX_TIME,
969};
970
39a53e0c
JK
971struct f2fs_sb_info {
972 struct super_block *sb; /* pointer to VFS super block */
5e176d54 973 struct proc_dir_entry *s_proc; /* proc entry */
39a53e0c 974 struct f2fs_super_block *raw_super; /* raw super block pointer */
e8240f65 975 int valid_super_block; /* valid super block no */
fadb2fb8 976 unsigned long s_flag; /* flags for sbi */
39a53e0c 977
178053e2 978#ifdef CONFIG_BLK_DEV_ZONED
178053e2
DLM
979 unsigned int blocks_per_blkz; /* F2FS blocks per zone */
980 unsigned int log_blocks_per_blkz; /* log2 F2FS blocks per zone */
178053e2
DLM
981#endif
982
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JK
983 /* for node-related operations */
984 struct f2fs_nm_info *nm_info; /* node manager */
985 struct inode *node_inode; /* cache node blocks */
986
987 /* for segment-related operations */
988 struct f2fs_sm_info *sm_info; /* segment manager */
1ff7bd3b
JK
989
990 /* for bio operations */
a912b54d 991 struct f2fs_bio_info *write_io[NR_PAGE_TYPE]; /* for write bios */
e41e6d75
CY
992 struct mutex wio_mutex[NR_PAGE_TYPE - 1][NR_TEMP_TYPE];
993 /* bio ordering for NODE/DATA */
0a595eba
JK
994 int write_io_size_bits; /* Write IO size bits */
995 mempool_t *write_io_dummy; /* Dummy pages */
39a53e0c
JK
996
997 /* for checkpoint */
998 struct f2fs_checkpoint *ckpt; /* raw checkpoint pointer */
8508e44a 999 int cur_cp_pack; /* remain current cp pack */
aaec2b1d 1000 spinlock_t cp_lock; /* for flag in ckpt */
39a53e0c 1001 struct inode *meta_inode; /* cache meta blocks */
39936837 1002 struct mutex cp_mutex; /* checkpoint procedure lock */
b873b798 1003 struct rw_semaphore cp_rwsem; /* blocking FS operations */
b3582c68 1004 struct rw_semaphore node_write; /* locking node writes */
59c9081b 1005 struct rw_semaphore node_change; /* locking node change */
fb51b5ef 1006 wait_queue_head_t cp_wait;
6beceb54
JK
1007 unsigned long last_time[MAX_TIME]; /* to store time in jiffies */
1008 long interval_time[MAX_TIME]; /* to store thresholds */
39a53e0c 1009
67298804 1010 struct inode_management im[MAX_INO_ENTRY]; /* manage inode cache */
6451e041
JK
1011
1012 /* for orphan inode, use 0'th array */
0d47c1ad 1013 unsigned int max_orphans; /* max orphan inodes */
39a53e0c 1014
c227f912
CY
1015 /* for inode management */
1016 struct list_head inode_list[NR_INODE_TYPE]; /* dirty inode list */
1017 spinlock_t inode_lock[NR_INODE_TYPE]; /* for dirty inode list lock */
39a53e0c 1018
13054c54
CY
1019 /* for extent tree cache */
1020 struct radix_tree_root extent_tree_root;/* cache extent cache entries */
5e8256ac 1021 struct mutex extent_tree_lock; /* locking extent radix tree */
13054c54
CY
1022 struct list_head extent_list; /* lru list for shrinker */
1023 spinlock_t extent_lock; /* locking extent lru list */
7441ccef 1024 atomic_t total_ext_tree; /* extent tree count */
137d09f0 1025 struct list_head zombie_list; /* extent zombie tree list */
74fd8d99 1026 atomic_t total_zombie_tree; /* extent zombie tree count */
13054c54
CY
1027 atomic_t total_ext_node; /* extent info count */
1028
e1c42045 1029 /* basic filesystem units */
39a53e0c
JK
1030 unsigned int log_sectors_per_block; /* log2 sectors per block */
1031 unsigned int log_blocksize; /* log2 block size */
1032 unsigned int blocksize; /* block size */
1033 unsigned int root_ino_num; /* root inode number*/
1034 unsigned int node_ino_num; /* node inode number*/
1035 unsigned int meta_ino_num; /* meta inode number*/
1036 unsigned int log_blocks_per_seg; /* log2 blocks per segment */
1037 unsigned int blocks_per_seg; /* blocks per segment */
1038 unsigned int segs_per_sec; /* segments per section */
1039 unsigned int secs_per_zone; /* sections per zone */
1040 unsigned int total_sections; /* total section count */
1041 unsigned int total_node_count; /* total node block count */
1042 unsigned int total_valid_node_count; /* valid node block count */
e0afc4d6 1043 loff_t max_file_blocks; /* max block index of file */
39a53e0c 1044 int active_logs; /* # of active logs */
ab9fa662 1045 int dir_level; /* directory level */
39a53e0c
JK
1046
1047 block_t user_block_count; /* # of user blocks */
1048 block_t total_valid_block_count; /* # of valid blocks */
a66cdd98 1049 block_t discard_blks; /* discard command candidats */
39a53e0c 1050 block_t last_valid_block_count; /* for recovery */
daeb433e
CY
1051 block_t reserved_blocks; /* configurable reserved blocks */
1052
39a53e0c 1053 u32 s_next_generation; /* for NFS support */
523be8a6
JK
1054
1055 /* # of pages, see count_type */
35782b23 1056 atomic_t nr_pages[NR_COUNT_TYPE];
41382ec4
JK
1057 /* # of allocated blocks */
1058 struct percpu_counter alloc_valid_block_count;
39a53e0c 1059
687de7f1
JK
1060 /* writeback control */
1061 atomic_t wb_sync_req; /* count # of WB_SYNC threads */
1062
513c5f37
JK
1063 /* valid inode count */
1064 struct percpu_counter total_valid_inode_count;
1065
39a53e0c
JK
1066 struct f2fs_mount_info mount_opt; /* mount options */
1067
1068 /* for cleaning operations */
1069 struct mutex gc_mutex; /* mutex for GC */
1070 struct f2fs_gc_kthread *gc_thread; /* GC thread */
5ec4e49f 1071 unsigned int cur_victim_sec; /* current victim section num */
39a53e0c 1072
e93b9865
HP
1073 /* threshold for converting bg victims for fg */
1074 u64 fggc_threshold;
1075
b1c57c1c
JK
1076 /* maximum # of trials to find a victim segment for SSR and GC */
1077 unsigned int max_victim_search;
1078
39a53e0c
JK
1079 /*
1080 * for stat information.
1081 * one is for the LFS mode, and the other is for the SSR mode.
1082 */
35b09d82 1083#ifdef CONFIG_F2FS_STAT_FS
39a53e0c
JK
1084 struct f2fs_stat_info *stat_info; /* FS status information */
1085 unsigned int segment_count[2]; /* # of allocated segments */
1086 unsigned int block_count[2]; /* # of allocated blocks */
b9a2c252 1087 atomic_t inplace_count; /* # of inplace update */
5b7ee374
CY
1088 atomic64_t total_hit_ext; /* # of lookup extent cache */
1089 atomic64_t read_hit_rbtree; /* # of hit rbtree extent node */
1090 atomic64_t read_hit_largest; /* # of hit largest extent node */
1091 atomic64_t read_hit_cached; /* # of hit cached extent node */
d5e8f6c9 1092 atomic_t inline_xattr; /* # of inline_xattr inodes */
03e14d52
CY
1093 atomic_t inline_inode; /* # of inline_data inodes */
1094 atomic_t inline_dir; /* # of inline_dentry inodes */
26a28a0c 1095 atomic_t aw_cnt; /* # of atomic writes */
648d50ba 1096 atomic_t vw_cnt; /* # of volatile writes */
26a28a0c 1097 atomic_t max_aw_cnt; /* max # of atomic writes */
648d50ba 1098 atomic_t max_vw_cnt; /* max # of volatile writes */
39a53e0c 1099 int bg_gc; /* background gc calls */
33fbd510 1100 unsigned int ndirty_inode[NR_INODE_TYPE]; /* # of dirty inodes */
35b09d82 1101#endif
39a53e0c 1102 spinlock_t stat_lock; /* lock for stat operations */
b59d0bae 1103
b0af6d49
CY
1104 /* For app/fs IO statistics */
1105 spinlock_t iostat_lock;
1106 unsigned long long write_iostat[NR_IO_TYPE];
1107 bool iostat_enable;
1108
b59d0bae
NJ
1109 /* For sysfs suppport */
1110 struct kobject s_kobj;
1111 struct completion s_kobj_unregister;
2658e50d
JK
1112
1113 /* For shrinker support */
1114 struct list_head s_list;
3c62be17
JK
1115 int s_ndevs; /* number of devices */
1116 struct f2fs_dev_info *devs; /* for device list */
2658e50d
JK
1117 struct mutex umount_mutex;
1118 unsigned int shrinker_run_no;
8f1dbbbb
SL
1119
1120 /* For write statistics */
1121 u64 sectors_written_start;
1122 u64 kbytes_written;
43b6573b
KM
1123
1124 /* Reference to checksum algorithm driver via cryptoapi */
1125 struct crypto_shash *s_chksum_driver;
1ecc0c5c 1126
704956ec
CY
1127 /* Precomputed FS UUID checksum for seeding other checksums */
1128 __u32 s_chksum_seed;
1129
1ecc0c5c
CY
1130 /* For fault injection */
1131#ifdef CONFIG_F2FS_FAULT_INJECTION
1132 struct f2fs_fault_info fault_info;
1133#endif
4b2414d0
CY
1134
1135#ifdef CONFIG_QUOTA
1136 /* Names of quota files with journalled quota */
1137 char *s_qf_names[MAXQUOTAS];
1138 int s_jquota_fmt; /* Format of quota to use */
1139#endif
39a53e0c
JK
1140};
1141
1ecc0c5c 1142#ifdef CONFIG_F2FS_FAULT_INJECTION
55523519
CY
1143#define f2fs_show_injection_info(type) \
1144 printk("%sF2FS-fs : inject %s in %s of %pF\n", \
1145 KERN_INFO, fault_name[type], \
1146 __func__, __builtin_return_address(0))
1ecc0c5c
CY
1147static inline bool time_to_inject(struct f2fs_sb_info *sbi, int type)
1148{
1149 struct f2fs_fault_info *ffi = &sbi->fault_info;
1150
1151 if (!ffi->inject_rate)
1152 return false;
1153
1154 if (!IS_FAULT_SET(ffi, type))
1155 return false;
1156
1157 atomic_inc(&ffi->inject_ops);
1158 if (atomic_read(&ffi->inject_ops) >= ffi->inject_rate) {
1159 atomic_set(&ffi->inject_ops, 0);
1ecc0c5c
CY
1160 return true;
1161 }
1162 return false;
1163}
1164#endif
1165
8f1dbbbb
SL
1166/* For write statistics. Suppose sector size is 512 bytes,
1167 * and the return value is in kbytes. s is of struct f2fs_sb_info.
1168 */
1169#define BD_PART_WRITTEN(s) \
68afcf2d
TK
1170(((u64)part_stat_read((s)->sb->s_bdev->bd_part, sectors[1]) - \
1171 (s)->sectors_written_start) >> 1)
8f1dbbbb 1172
6beceb54
JK
1173static inline void f2fs_update_time(struct f2fs_sb_info *sbi, int type)
1174{
1175 sbi->last_time[type] = jiffies;
1176}
1177
1178static inline bool f2fs_time_over(struct f2fs_sb_info *sbi, int type)
1179{
1180 struct timespec ts = {sbi->interval_time[type], 0};
1181 unsigned long interval = timespec_to_jiffies(&ts);
1182
1183 return time_after(jiffies, sbi->last_time[type] + interval);
1184}
1185
d0239e1b
JK
1186static inline bool is_idle(struct f2fs_sb_info *sbi)
1187{
1188 struct block_device *bdev = sbi->sb->s_bdev;
1189 struct request_queue *q = bdev_get_queue(bdev);
1190 struct request_list *rl = &q->root_rl;
1191
1192 if (rl->count[BLK_RW_SYNC] || rl->count[BLK_RW_ASYNC])
1193 return 0;
1194
1195 return f2fs_time_over(sbi, REQ_TIME);
1196}
1197
39a53e0c
JK
1198/*
1199 * Inline functions
1200 */
43b6573b
KM
1201static inline u32 f2fs_crc32(struct f2fs_sb_info *sbi, const void *address,
1202 unsigned int length)
1203{
1204 SHASH_DESC_ON_STACK(shash, sbi->s_chksum_driver);
1205 u32 *ctx = (u32 *)shash_desc_ctx(shash);
d41519a6 1206 u32 retval;
43b6573b
KM
1207 int err;
1208
1209 shash->tfm = sbi->s_chksum_driver;
1210 shash->flags = 0;
1211 *ctx = F2FS_SUPER_MAGIC;
1212
1213 err = crypto_shash_update(shash, address, length);
1214 BUG_ON(err);
1215
d41519a6
DM
1216 retval = *ctx;
1217 barrier_data(ctx);
1218 return retval;
43b6573b
KM
1219}
1220
1221static inline bool f2fs_crc_valid(struct f2fs_sb_info *sbi, __u32 blk_crc,
1222 void *buf, size_t buf_size)
1223{
1224 return f2fs_crc32(sbi, buf, buf_size) == blk_crc;
1225}
1226
704956ec
CY
1227static inline u32 f2fs_chksum(struct f2fs_sb_info *sbi, u32 crc,
1228 const void *address, unsigned int length)
1229{
1230 struct {
1231 struct shash_desc shash;
1232 char ctx[4];
1233 } desc;
1234 int err;
1235
1236 BUG_ON(crypto_shash_descsize(sbi->s_chksum_driver) != sizeof(desc.ctx));
1237
1238 desc.shash.tfm = sbi->s_chksum_driver;
1239 desc.shash.flags = 0;
1240 *(u32 *)desc.ctx = crc;
1241
1242 err = crypto_shash_update(&desc.shash, address, length);
1243 BUG_ON(err);
1244
1245 return *(u32 *)desc.ctx;
1246}
1247
39a53e0c
JK
1248static inline struct f2fs_inode_info *F2FS_I(struct inode *inode)
1249{
1250 return container_of(inode, struct f2fs_inode_info, vfs_inode);
1251}
1252
1253static inline struct f2fs_sb_info *F2FS_SB(struct super_block *sb)
1254{
1255 return sb->s_fs_info;
1256}
1257
4081363f
JK
1258static inline struct f2fs_sb_info *F2FS_I_SB(struct inode *inode)
1259{
1260 return F2FS_SB(inode->i_sb);
1261}
1262
1263static inline struct f2fs_sb_info *F2FS_M_SB(struct address_space *mapping)
1264{
1265 return F2FS_I_SB(mapping->host);
1266}
1267
1268static inline struct f2fs_sb_info *F2FS_P_SB(struct page *page)
1269{
1270 return F2FS_M_SB(page->mapping);
1271}
1272
39a53e0c
JK
1273static inline struct f2fs_super_block *F2FS_RAW_SUPER(struct f2fs_sb_info *sbi)
1274{
1275 return (struct f2fs_super_block *)(sbi->raw_super);
1276}
1277
1278static inline struct f2fs_checkpoint *F2FS_CKPT(struct f2fs_sb_info *sbi)
1279{
1280 return (struct f2fs_checkpoint *)(sbi->ckpt);
1281}
1282
45590710
GZ
1283static inline struct f2fs_node *F2FS_NODE(struct page *page)
1284{
1285 return (struct f2fs_node *)page_address(page);
1286}
1287
58bfaf44
JK
1288static inline struct f2fs_inode *F2FS_INODE(struct page *page)
1289{
1290 return &((struct f2fs_node *)page_address(page))->i;
1291}
1292
39a53e0c
JK
1293static inline struct f2fs_nm_info *NM_I(struct f2fs_sb_info *sbi)
1294{
1295 return (struct f2fs_nm_info *)(sbi->nm_info);
1296}
1297
1298static inline struct f2fs_sm_info *SM_I(struct f2fs_sb_info *sbi)
1299{
1300 return (struct f2fs_sm_info *)(sbi->sm_info);
1301}
1302
1303static inline struct sit_info *SIT_I(struct f2fs_sb_info *sbi)
1304{
1305 return (struct sit_info *)(SM_I(sbi)->sit_info);
1306}
1307
1308static inline struct free_segmap_info *FREE_I(struct f2fs_sb_info *sbi)
1309{
1310 return (struct free_segmap_info *)(SM_I(sbi)->free_info);
1311}
1312
1313static inline struct dirty_seglist_info *DIRTY_I(struct f2fs_sb_info *sbi)
1314{
1315 return (struct dirty_seglist_info *)(SM_I(sbi)->dirty_info);
1316}
1317
9df27d98
GZ
1318static inline struct address_space *META_MAPPING(struct f2fs_sb_info *sbi)
1319{
1320 return sbi->meta_inode->i_mapping;
1321}
1322
4ef51a8f
JK
1323static inline struct address_space *NODE_MAPPING(struct f2fs_sb_info *sbi)
1324{
1325 return sbi->node_inode->i_mapping;
1326}
1327
caf0047e
CY
1328static inline bool is_sbi_flag_set(struct f2fs_sb_info *sbi, unsigned int type)
1329{
fadb2fb8 1330 return test_bit(type, &sbi->s_flag);
caf0047e
CY
1331}
1332
1333static inline void set_sbi_flag(struct f2fs_sb_info *sbi, unsigned int type)
39a53e0c 1334{
fadb2fb8 1335 set_bit(type, &sbi->s_flag);
39a53e0c
JK
1336}
1337
caf0047e 1338static inline void clear_sbi_flag(struct f2fs_sb_info *sbi, unsigned int type)
39a53e0c 1339{
fadb2fb8 1340 clear_bit(type, &sbi->s_flag);
39a53e0c
JK
1341}
1342
d71b5564
JK
1343static inline unsigned long long cur_cp_version(struct f2fs_checkpoint *cp)
1344{
1345 return le64_to_cpu(cp->checkpoint_ver);
1346}
1347
ced2c7ea
KM
1348static inline __u64 cur_cp_crc(struct f2fs_checkpoint *cp)
1349{
1350 size_t crc_offset = le32_to_cpu(cp->checksum_offset);
1351 return le32_to_cpu(*((__le32 *)((unsigned char *)cp + crc_offset)));
1352}
1353
aaec2b1d 1354static inline bool __is_set_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
25ca923b
JK
1355{
1356 unsigned int ckpt_flags = le32_to_cpu(cp->ckpt_flags);
aaec2b1d 1357
25ca923b
JK
1358 return ckpt_flags & f;
1359}
1360
aaec2b1d 1361static inline bool is_set_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
25ca923b 1362{
aaec2b1d
CY
1363 return __is_set_ckpt_flags(F2FS_CKPT(sbi), f);
1364}
1365
1366static inline void __set_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
1367{
1368 unsigned int ckpt_flags;
1369
1370 ckpt_flags = le32_to_cpu(cp->ckpt_flags);
25ca923b
JK
1371 ckpt_flags |= f;
1372 cp->ckpt_flags = cpu_to_le32(ckpt_flags);
1373}
1374
aaec2b1d 1375static inline void set_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
25ca923b 1376{
d1aa2453
CY
1377 unsigned long flags;
1378
1379 spin_lock_irqsave(&sbi->cp_lock, flags);
aaec2b1d 1380 __set_ckpt_flags(F2FS_CKPT(sbi), f);
d1aa2453 1381 spin_unlock_irqrestore(&sbi->cp_lock, flags);
aaec2b1d
CY
1382}
1383
1384static inline void __clear_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
1385{
1386 unsigned int ckpt_flags;
1387
1388 ckpt_flags = le32_to_cpu(cp->ckpt_flags);
25ca923b
JK
1389 ckpt_flags &= (~f);
1390 cp->ckpt_flags = cpu_to_le32(ckpt_flags);
1391}
1392
aaec2b1d
CY
1393static inline void clear_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
1394{
d1aa2453
CY
1395 unsigned long flags;
1396
1397 spin_lock_irqsave(&sbi->cp_lock, flags);
aaec2b1d 1398 __clear_ckpt_flags(F2FS_CKPT(sbi), f);
d1aa2453 1399 spin_unlock_irqrestore(&sbi->cp_lock, flags);
aaec2b1d
CY
1400}
1401
22ad0b6a
JK
1402static inline void disable_nat_bits(struct f2fs_sb_info *sbi, bool lock)
1403{
d1aa2453
CY
1404 unsigned long flags;
1405
22ad0b6a
JK
1406 set_sbi_flag(sbi, SBI_NEED_FSCK);
1407
1408 if (lock)
d1aa2453 1409 spin_lock_irqsave(&sbi->cp_lock, flags);
22ad0b6a
JK
1410 __clear_ckpt_flags(F2FS_CKPT(sbi), CP_NAT_BITS_FLAG);
1411 kfree(NM_I(sbi)->nat_bits);
1412 NM_I(sbi)->nat_bits = NULL;
1413 if (lock)
d1aa2453 1414 spin_unlock_irqrestore(&sbi->cp_lock, flags);
22ad0b6a
JK
1415}
1416
1417static inline bool enabled_nat_bits(struct f2fs_sb_info *sbi,
1418 struct cp_control *cpc)
1419{
1420 bool set = is_set_ckpt_flags(sbi, CP_NAT_BITS_FLAG);
1421
c473f1a9 1422 return (cpc) ? (cpc->reason & CP_UMOUNT) && set : set;
22ad0b6a
JK
1423}
1424
e479556b 1425static inline void f2fs_lock_op(struct f2fs_sb_info *sbi)
39936837 1426{
b873b798 1427 down_read(&sbi->cp_rwsem);
39936837
JK
1428}
1429
cc15620b
JK
1430static inline int f2fs_trylock_op(struct f2fs_sb_info *sbi)
1431{
1432 return down_read_trylock(&sbi->cp_rwsem);
1433}
1434
e479556b 1435static inline void f2fs_unlock_op(struct f2fs_sb_info *sbi)
39a53e0c 1436{
b873b798 1437 up_read(&sbi->cp_rwsem);
39a53e0c
JK
1438}
1439
e479556b 1440static inline void f2fs_lock_all(struct f2fs_sb_info *sbi)
39a53e0c 1441{
b873b798 1442 down_write(&sbi->cp_rwsem);
39936837
JK
1443}
1444
e479556b 1445static inline void f2fs_unlock_all(struct f2fs_sb_info *sbi)
39936837 1446{
b873b798 1447 up_write(&sbi->cp_rwsem);
39a53e0c
JK
1448}
1449
119ee914
JK
1450static inline int __get_cp_reason(struct f2fs_sb_info *sbi)
1451{
1452 int reason = CP_SYNC;
1453
1454 if (test_opt(sbi, FASTBOOT))
1455 reason = CP_FASTBOOT;
1456 if (is_sbi_flag_set(sbi, SBI_IS_CLOSE))
1457 reason = CP_UMOUNT;
1458 return reason;
1459}
1460
1461static inline bool __remain_node_summaries(int reason)
1462{
c473f1a9 1463 return (reason & (CP_UMOUNT | CP_FASTBOOT));
119ee914
JK
1464}
1465
1466static inline bool __exist_node_summaries(struct f2fs_sb_info *sbi)
1467{
aaec2b1d
CY
1468 return (is_set_ckpt_flags(sbi, CP_UMOUNT_FLAG) ||
1469 is_set_ckpt_flags(sbi, CP_FASTBOOT_FLAG));
119ee914
JK
1470}
1471
39a53e0c
JK
1472/*
1473 * Check whether the given nid is within node id range.
1474 */
064e0823 1475static inline int check_nid_range(struct f2fs_sb_info *sbi, nid_t nid)
39a53e0c 1476{
d6b7d4b3
CY
1477 if (unlikely(nid < F2FS_ROOT_INO(sbi)))
1478 return -EINVAL;
cfb271d4 1479 if (unlikely(nid >= NM_I(sbi)->max_nid))
064e0823
NJ
1480 return -EINVAL;
1481 return 0;
39a53e0c
JK
1482}
1483
39a53e0c
JK
1484/*
1485 * Check whether the inode has blocks or not
1486 */
1487static inline int F2FS_HAS_BLOCKS(struct inode *inode)
1488{
0eb0adad
CY
1489 block_t xattr_block = F2FS_I(inode)->i_xattr_nid ? 1 : 0;
1490
000519f2 1491 return (inode->i_blocks >> F2FS_LOG_SECTORS_PER_BLOCK) > xattr_block;
39a53e0c
JK
1492}
1493
4bc8e9bc
CY
1494static inline bool f2fs_has_xattr_block(unsigned int ofs)
1495{
1496 return ofs == XATTR_NODE_OFFSET;
1497}
1498
0abd675e
CY
1499static inline void f2fs_i_blocks_write(struct inode *, block_t, bool, bool);
1500static inline int inc_valid_block_count(struct f2fs_sb_info *sbi,
46008c6d 1501 struct inode *inode, blkcnt_t *count)
39a53e0c 1502{
0abd675e 1503 blkcnt_t diff = 0, release = 0;
daeb433e 1504 block_t avail_user_block_count;
0abd675e
CY
1505 int ret;
1506
1507 ret = dquot_reserve_block(inode, *count);
1508 if (ret)
1509 return ret;
39a53e0c 1510
cb78942b 1511#ifdef CONFIG_F2FS_FAULT_INJECTION
55523519
CY
1512 if (time_to_inject(sbi, FAULT_BLOCK)) {
1513 f2fs_show_injection_info(FAULT_BLOCK);
0abd675e
CY
1514 release = *count;
1515 goto enospc;
55523519 1516 }
cb78942b 1517#endif
dd11a5df
JK
1518 /*
1519 * let's increase this in prior to actual block count change in order
1520 * for f2fs_sync_file to avoid data races when deciding checkpoint.
1521 */
1522 percpu_counter_add(&sbi->alloc_valid_block_count, (*count));
1523
2555a2d5
JK
1524 spin_lock(&sbi->stat_lock);
1525 sbi->total_valid_block_count += (block_t)(*count);
daeb433e
CY
1526 avail_user_block_count = sbi->user_block_count - sbi->reserved_blocks;
1527 if (unlikely(sbi->total_valid_block_count > avail_user_block_count)) {
1528 diff = sbi->total_valid_block_count - avail_user_block_count;
dd11a5df 1529 *count -= diff;
0abd675e 1530 release = diff;
daeb433e 1531 sbi->total_valid_block_count = avail_user_block_count;
46008c6d
CY
1532 if (!*count) {
1533 spin_unlock(&sbi->stat_lock);
dd11a5df 1534 percpu_counter_sub(&sbi->alloc_valid_block_count, diff);
0abd675e 1535 goto enospc;
46008c6d 1536 }
39a53e0c 1537 }
39a53e0c 1538 spin_unlock(&sbi->stat_lock);
41382ec4 1539
0abd675e
CY
1540 if (release)
1541 dquot_release_reservation_block(inode, release);
1542 f2fs_i_blocks_write(inode, *count, true, true);
1543 return 0;
1544
1545enospc:
1546 dquot_release_reservation_block(inode, release);
1547 return -ENOSPC;
39a53e0c
JK
1548}
1549
da19b0dc 1550static inline void dec_valid_block_count(struct f2fs_sb_info *sbi,
39a53e0c 1551 struct inode *inode,
0eb0adad 1552 block_t count)
39a53e0c 1553{
0eb0adad
CY
1554 blkcnt_t sectors = count << F2FS_LOG_SECTORS_PER_BLOCK;
1555
39a53e0c 1556 spin_lock(&sbi->stat_lock);
9850cf4a 1557 f2fs_bug_on(sbi, sbi->total_valid_block_count < (block_t) count);
0eb0adad 1558 f2fs_bug_on(sbi, inode->i_blocks < sectors);
39a53e0c
JK
1559 sbi->total_valid_block_count -= (block_t)count;
1560 spin_unlock(&sbi->stat_lock);
0abd675e 1561 f2fs_i_blocks_write(inode, count, false, true);
39a53e0c
JK
1562}
1563
1564static inline void inc_page_count(struct f2fs_sb_info *sbi, int count_type)
1565{
35782b23 1566 atomic_inc(&sbi->nr_pages[count_type]);
7c4abcbe 1567
36951b38
CY
1568 if (count_type == F2FS_DIRTY_DATA || count_type == F2FS_INMEM_PAGES ||
1569 count_type == F2FS_WB_CP_DATA || count_type == F2FS_WB_DATA)
7c4abcbe
CY
1570 return;
1571
caf0047e 1572 set_sbi_flag(sbi, SBI_IS_DIRTY);
39a53e0c
JK
1573}
1574
a7ffdbe2 1575static inline void inode_inc_dirty_pages(struct inode *inode)
39a53e0c 1576{
204706c7 1577 atomic_inc(&F2FS_I(inode)->dirty_pages);
c227f912
CY
1578 inc_page_count(F2FS_I_SB(inode), S_ISDIR(inode->i_mode) ?
1579 F2FS_DIRTY_DENTS : F2FS_DIRTY_DATA);
39a53e0c
JK
1580}
1581
1582static inline void dec_page_count(struct f2fs_sb_info *sbi, int count_type)
1583{
35782b23 1584 atomic_dec(&sbi->nr_pages[count_type]);
39a53e0c
JK
1585}
1586
a7ffdbe2 1587static inline void inode_dec_dirty_pages(struct inode *inode)
39a53e0c 1588{
5ac9f36f
CY
1589 if (!S_ISDIR(inode->i_mode) && !S_ISREG(inode->i_mode) &&
1590 !S_ISLNK(inode->i_mode))
1fe54f9d
JK
1591 return;
1592
204706c7 1593 atomic_dec(&F2FS_I(inode)->dirty_pages);
c227f912
CY
1594 dec_page_count(F2FS_I_SB(inode), S_ISDIR(inode->i_mode) ?
1595 F2FS_DIRTY_DENTS : F2FS_DIRTY_DATA);
39a53e0c
JK
1596}
1597
523be8a6 1598static inline s64 get_pages(struct f2fs_sb_info *sbi, int count_type)
39a53e0c 1599{
35782b23 1600 return atomic_read(&sbi->nr_pages[count_type]);
39a53e0c
JK
1601}
1602
204706c7 1603static inline int get_dirty_pages(struct inode *inode)
f8b2c1f9 1604{
204706c7 1605 return atomic_read(&F2FS_I(inode)->dirty_pages);
f8b2c1f9
JK
1606}
1607
5ac206cf
NJ
1608static inline int get_blocktype_secs(struct f2fs_sb_info *sbi, int block_type)
1609{
3519e3f9 1610 unsigned int pages_per_sec = sbi->segs_per_sec * sbi->blocks_per_seg;
523be8a6
JK
1611 unsigned int segs = (get_pages(sbi, block_type) + pages_per_sec - 1) >>
1612 sbi->log_blocks_per_seg;
1613
1614 return segs / sbi->segs_per_sec;
5ac206cf
NJ
1615}
1616
39a53e0c
JK
1617static inline block_t valid_user_blocks(struct f2fs_sb_info *sbi)
1618{
8b8343fa 1619 return sbi->total_valid_block_count;
39a53e0c
JK
1620}
1621
f83a2584
YH
1622static inline block_t discard_blocks(struct f2fs_sb_info *sbi)
1623{
1624 return sbi->discard_blks;
1625}
1626
39a53e0c
JK
1627static inline unsigned long __bitmap_size(struct f2fs_sb_info *sbi, int flag)
1628{
1629 struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
1630
1631 /* return NAT or SIT bitmap */
1632 if (flag == NAT_BITMAP)
1633 return le32_to_cpu(ckpt->nat_ver_bitmap_bytesize);
1634 else if (flag == SIT_BITMAP)
1635 return le32_to_cpu(ckpt->sit_ver_bitmap_bytesize);
1636
1637 return 0;
1638}
1639
55141486
WL
1640static inline block_t __cp_payload(struct f2fs_sb_info *sbi)
1641{
1642 return le32_to_cpu(F2FS_RAW_SUPER(sbi)->cp_payload);
1643}
1644
39a53e0c
JK
1645static inline void *__bitmap_ptr(struct f2fs_sb_info *sbi, int flag)
1646{
1647 struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
1dbe4152
CL
1648 int offset;
1649
55141486 1650 if (__cp_payload(sbi) > 0) {
1dbe4152
CL
1651 if (flag == NAT_BITMAP)
1652 return &ckpt->sit_nat_version_bitmap;
1653 else
65b85ccc 1654 return (unsigned char *)ckpt + F2FS_BLKSIZE;
1dbe4152
CL
1655 } else {
1656 offset = (flag == NAT_BITMAP) ?
25ca923b 1657 le32_to_cpu(ckpt->sit_ver_bitmap_bytesize) : 0;
1dbe4152
CL
1658 return &ckpt->sit_nat_version_bitmap + offset;
1659 }
39a53e0c
JK
1660}
1661
1662static inline block_t __start_cp_addr(struct f2fs_sb_info *sbi)
1663{
8508e44a 1664 block_t start_addr = le32_to_cpu(F2FS_RAW_SUPER(sbi)->cp_blkaddr);
39a53e0c 1665
8508e44a 1666 if (sbi->cur_cp_pack == 2)
39a53e0c 1667 start_addr += sbi->blocks_per_seg;
8508e44a
JK
1668 return start_addr;
1669}
39a53e0c 1670
8508e44a
JK
1671static inline block_t __start_cp_next_addr(struct f2fs_sb_info *sbi)
1672{
1673 block_t start_addr = le32_to_cpu(F2FS_RAW_SUPER(sbi)->cp_blkaddr);
39a53e0c 1674
8508e44a
JK
1675 if (sbi->cur_cp_pack == 1)
1676 start_addr += sbi->blocks_per_seg;
39a53e0c
JK
1677 return start_addr;
1678}
1679
8508e44a
JK
1680static inline void __set_cp_next_pack(struct f2fs_sb_info *sbi)
1681{
1682 sbi->cur_cp_pack = (sbi->cur_cp_pack == 1) ? 2 : 1;
1683}
1684
39a53e0c
JK
1685static inline block_t __start_sum_addr(struct f2fs_sb_info *sbi)
1686{
1687 return le32_to_cpu(F2FS_CKPT(sbi)->cp_pack_start_sum);
1688}
1689
0abd675e 1690static inline int inc_valid_node_count(struct f2fs_sb_info *sbi,
000519f2 1691 struct inode *inode, bool is_inode)
39a53e0c
JK
1692{
1693 block_t valid_block_count;
1694 unsigned int valid_node_count;
0abd675e
CY
1695 bool quota = inode && !is_inode;
1696
1697 if (quota) {
1698 int ret = dquot_reserve_block(inode, 1);
1699 if (ret)
1700 return ret;
1701 }
39a53e0c
JK
1702
1703 spin_lock(&sbi->stat_lock);
1704
ef86d709 1705 valid_block_count = sbi->total_valid_block_count + 1;
daeb433e
CY
1706 if (unlikely(valid_block_count + sbi->reserved_blocks >
1707 sbi->user_block_count)) {
39a53e0c 1708 spin_unlock(&sbi->stat_lock);
0abd675e 1709 goto enospc;
39a53e0c
JK
1710 }
1711
ef86d709 1712 valid_node_count = sbi->total_valid_node_count + 1;
cfb271d4 1713 if (unlikely(valid_node_count > sbi->total_node_count)) {
39a53e0c 1714 spin_unlock(&sbi->stat_lock);
0abd675e 1715 goto enospc;
39a53e0c
JK
1716 }
1717
ef86d709
GZ
1718 sbi->total_valid_node_count++;
1719 sbi->total_valid_block_count++;
39a53e0c
JK
1720 spin_unlock(&sbi->stat_lock);
1721
000519f2
CY
1722 if (inode) {
1723 if (is_inode)
1724 f2fs_mark_inode_dirty_sync(inode, true);
1725 else
0abd675e 1726 f2fs_i_blocks_write(inode, 1, true, true);
000519f2 1727 }
ef86d709 1728
41382ec4 1729 percpu_counter_inc(&sbi->alloc_valid_block_count);
0abd675e
CY
1730 return 0;
1731
1732enospc:
1733 if (quota)
1734 dquot_release_reservation_block(inode, 1);
1735 return -ENOSPC;
39a53e0c
JK
1736}
1737
1738static inline void dec_valid_node_count(struct f2fs_sb_info *sbi,
000519f2 1739 struct inode *inode, bool is_inode)
39a53e0c
JK
1740{
1741 spin_lock(&sbi->stat_lock);
1742
9850cf4a
JK
1743 f2fs_bug_on(sbi, !sbi->total_valid_block_count);
1744 f2fs_bug_on(sbi, !sbi->total_valid_node_count);
000519f2 1745 f2fs_bug_on(sbi, !is_inode && !inode->i_blocks);
39a53e0c 1746
ef86d709
GZ
1747 sbi->total_valid_node_count--;
1748 sbi->total_valid_block_count--;
39a53e0c
JK
1749
1750 spin_unlock(&sbi->stat_lock);
0abd675e
CY
1751
1752 if (!is_inode)
1753 f2fs_i_blocks_write(inode, 1, false, true);
39a53e0c
JK
1754}
1755
1756static inline unsigned int valid_node_count(struct f2fs_sb_info *sbi)
1757{
8b8343fa 1758 return sbi->total_valid_node_count;
39a53e0c
JK
1759}
1760
1761static inline void inc_valid_inode_count(struct f2fs_sb_info *sbi)
1762{
513c5f37 1763 percpu_counter_inc(&sbi->total_valid_inode_count);
39a53e0c
JK
1764}
1765
0e80220a 1766static inline void dec_valid_inode_count(struct f2fs_sb_info *sbi)
39a53e0c 1767{
513c5f37 1768 percpu_counter_dec(&sbi->total_valid_inode_count);
39a53e0c
JK
1769}
1770
513c5f37 1771static inline s64 valid_inode_count(struct f2fs_sb_info *sbi)
39a53e0c 1772{
513c5f37 1773 return percpu_counter_sum_positive(&sbi->total_valid_inode_count);
39a53e0c
JK
1774}
1775
a56c7c6f
JK
1776static inline struct page *f2fs_grab_cache_page(struct address_space *mapping,
1777 pgoff_t index, bool for_write)
1778{
c41f3cc3
JK
1779#ifdef CONFIG_F2FS_FAULT_INJECTION
1780 struct page *page = find_lock_page(mapping, index);
cac5a3d8 1781
c41f3cc3
JK
1782 if (page)
1783 return page;
1784
55523519
CY
1785 if (time_to_inject(F2FS_M_SB(mapping), FAULT_PAGE_ALLOC)) {
1786 f2fs_show_injection_info(FAULT_PAGE_ALLOC);
c41f3cc3 1787 return NULL;
55523519 1788 }
c41f3cc3 1789#endif
a56c7c6f
JK
1790 if (!for_write)
1791 return grab_cache_page(mapping, index);
1792 return grab_cache_page_write_begin(mapping, index, AOP_FLAG_NOFS);
1793}
1794
6e2c64ad
JK
1795static inline void f2fs_copy_page(struct page *src, struct page *dst)
1796{
1797 char *src_kaddr = kmap(src);
1798 char *dst_kaddr = kmap(dst);
1799
1800 memcpy(dst_kaddr, src_kaddr, PAGE_SIZE);
1801 kunmap(dst);
1802 kunmap(src);
1803}
1804
39a53e0c
JK
1805static inline void f2fs_put_page(struct page *page, int unlock)
1806{
031fa8cc 1807 if (!page)
39a53e0c
JK
1808 return;
1809
1810 if (unlock) {
9850cf4a 1811 f2fs_bug_on(F2FS_P_SB(page), !PageLocked(page));
39a53e0c
JK
1812 unlock_page(page);
1813 }
09cbfeaf 1814 put_page(page);
39a53e0c
JK
1815}
1816
1817static inline void f2fs_put_dnode(struct dnode_of_data *dn)
1818{
1819 if (dn->node_page)
1820 f2fs_put_page(dn->node_page, 1);
1821 if (dn->inode_page && dn->node_page != dn->inode_page)
1822 f2fs_put_page(dn->inode_page, 0);
1823 dn->node_page = NULL;
1824 dn->inode_page = NULL;
1825}
1826
1827static inline struct kmem_cache *f2fs_kmem_cache_create(const char *name,
e8512d2e 1828 size_t size)
39a53e0c 1829{
e8512d2e 1830 return kmem_cache_create(name, size, 0, SLAB_RECLAIM_ACCOUNT, NULL);
39a53e0c
JK
1831}
1832
7bd59381
GZ
1833static inline void *f2fs_kmem_cache_alloc(struct kmem_cache *cachep,
1834 gfp_t flags)
1835{
1836 void *entry;
7bd59381 1837
80c54505
JK
1838 entry = kmem_cache_alloc(cachep, flags);
1839 if (!entry)
1840 entry = kmem_cache_alloc(cachep, flags | __GFP_NOFAIL);
7bd59381
GZ
1841 return entry;
1842}
1843
740432f8
JK
1844static inline struct bio *f2fs_bio_alloc(int npages)
1845{
1846 struct bio *bio;
1847
1848 /* No failure on bio allocation */
740432f8 1849 bio = bio_alloc(GFP_NOIO, npages);
80c54505
JK
1850 if (!bio)
1851 bio = bio_alloc(GFP_NOIO | __GFP_NOFAIL, npages);
740432f8
JK
1852 return bio;
1853}
1854
9be32d72
JK
1855static inline void f2fs_radix_tree_insert(struct radix_tree_root *root,
1856 unsigned long index, void *item)
1857{
1858 while (radix_tree_insert(root, index, item))
1859 cond_resched();
1860}
1861
39a53e0c
JK
1862#define RAW_IS_INODE(p) ((p)->footer.nid == (p)->footer.ino)
1863
1864static inline bool IS_INODE(struct page *page)
1865{
45590710 1866 struct f2fs_node *p = F2FS_NODE(page);
cac5a3d8 1867
39a53e0c
JK
1868 return RAW_IS_INODE(p);
1869}
1870
7a2af766
CY
1871static inline int offset_in_addr(struct f2fs_inode *i)
1872{
1873 return (i->i_inline & F2FS_EXTRA_ATTR) ?
1874 (le16_to_cpu(i->i_extra_isize) / sizeof(__le32)) : 0;
1875}
1876
39a53e0c
JK
1877static inline __le32 *blkaddr_in_node(struct f2fs_node *node)
1878{
1879 return RAW_IS_INODE(node) ? node->i.i_addr : node->dn.addr;
1880}
1881
7a2af766
CY
1882static inline int f2fs_has_extra_attr(struct inode *inode);
1883static inline block_t datablock_addr(struct inode *inode,
1884 struct page *node_page, unsigned int offset)
39a53e0c
JK
1885{
1886 struct f2fs_node *raw_node;
1887 __le32 *addr_array;
7a2af766
CY
1888 int base = 0;
1889 bool is_inode = IS_INODE(node_page);
cac5a3d8 1890
45590710 1891 raw_node = F2FS_NODE(node_page);
7a2af766
CY
1892
1893 /* from GC path only */
1894 if (!inode) {
1895 if (is_inode)
1896 base = offset_in_addr(&raw_node->i);
1897 } else if (f2fs_has_extra_attr(inode) && is_inode) {
1898 base = get_extra_isize(inode);
1899 }
1900
39a53e0c 1901 addr_array = blkaddr_in_node(raw_node);
7a2af766 1902 return le32_to_cpu(addr_array[base + offset]);
39a53e0c
JK
1903}
1904
1905static inline int f2fs_test_bit(unsigned int nr, char *addr)
1906{
1907 int mask;
1908
1909 addr += (nr >> 3);
1910 mask = 1 << (7 - (nr & 0x07));
1911 return mask & *addr;
1912}
1913
a66cdd98
JK
1914static inline void f2fs_set_bit(unsigned int nr, char *addr)
1915{
1916 int mask;
1917
1918 addr += (nr >> 3);
1919 mask = 1 << (7 - (nr & 0x07));
1920 *addr |= mask;
1921}
1922
1923static inline void f2fs_clear_bit(unsigned int nr, char *addr)
1924{
1925 int mask;
1926
1927 addr += (nr >> 3);
1928 mask = 1 << (7 - (nr & 0x07));
1929 *addr &= ~mask;
1930}
1931
52aca074 1932static inline int f2fs_test_and_set_bit(unsigned int nr, char *addr)
39a53e0c
JK
1933{
1934 int mask;
1935 int ret;
1936
1937 addr += (nr >> 3);
1938 mask = 1 << (7 - (nr & 0x07));
1939 ret = mask & *addr;
1940 *addr |= mask;
1941 return ret;
1942}
1943
52aca074 1944static inline int f2fs_test_and_clear_bit(unsigned int nr, char *addr)
39a53e0c
JK
1945{
1946 int mask;
1947 int ret;
1948
1949 addr += (nr >> 3);
1950 mask = 1 << (7 - (nr & 0x07));
1951 ret = mask & *addr;
1952 *addr &= ~mask;
1953 return ret;
1954}
1955
c6ac4c0e
GZ
1956static inline void f2fs_change_bit(unsigned int nr, char *addr)
1957{
1958 int mask;
1959
1960 addr += (nr >> 3);
1961 mask = 1 << (7 - (nr & 0x07));
1962 *addr ^= mask;
1963}
1964
5c57132e
CY
1965#define F2FS_REG_FLMASK (~(FS_DIRSYNC_FL | FS_TOPDIR_FL))
1966#define F2FS_OTHER_FLMASK (FS_NODUMP_FL | FS_NOATIME_FL)
1967#define F2FS_FL_INHERITED (FS_PROJINHERIT_FL)
1968
1969static inline __u32 f2fs_mask_flags(umode_t mode, __u32 flags)
1970{
1971 if (S_ISDIR(mode))
1972 return flags;
1973 else if (S_ISREG(mode))
1974 return flags & F2FS_REG_FLMASK;
1975 else
1976 return flags & F2FS_OTHER_FLMASK;
1977}
1978
39a53e0c
JK
1979/* used for f2fs_inode_info->flags */
1980enum {
1981 FI_NEW_INODE, /* indicate newly allocated inode */
b3783873 1982 FI_DIRTY_INODE, /* indicate inode is dirty or not */
26de9b11 1983 FI_AUTO_RECOVER, /* indicate inode is recoverable */
ed57c27f 1984 FI_DIRTY_DIR, /* indicate directory has dirty pages */
39a53e0c
JK
1985 FI_INC_LINK, /* need to increment i_nlink */
1986 FI_ACL_MODE, /* indicate acl mode */
1987 FI_NO_ALLOC, /* should not allocate any blocks */
c9b63bd0 1988 FI_FREE_NID, /* free allocated nide */
c11abd1a 1989 FI_NO_EXTENT, /* not to use the extent cache */
444c580f 1990 FI_INLINE_XATTR, /* used for inline xattr */
1001b347 1991 FI_INLINE_DATA, /* used for inline data*/
34d67deb 1992 FI_INLINE_DENTRY, /* used for inline dentry */
fff04f90
JK
1993 FI_APPEND_WRITE, /* inode has appended data */
1994 FI_UPDATE_WRITE, /* inode has in-place-update data */
88b88a66
JK
1995 FI_NEED_IPU, /* used for ipu per file */
1996 FI_ATOMIC_FILE, /* indicate atomic file */
5fe45743 1997 FI_ATOMIC_COMMIT, /* indicate the state of atomical committing */
02a1335f 1998 FI_VOLATILE_FILE, /* indicate volatile file */
3c6c2beb 1999 FI_FIRST_BLOCK_WRITTEN, /* indicate #0 data block was written */
1e84371f 2000 FI_DROP_CACHE, /* drop dirty page cache */
b3d208f9 2001 FI_DATA_EXIST, /* indicate data exists */
510022a8 2002 FI_INLINE_DOTS, /* indicate inline dot dentries */
d323d005 2003 FI_DO_DEFRAG, /* indicate defragment is running */
c227f912 2004 FI_DIRTY_FILE, /* indicate regular/symlink has dirty pages */
dc91de78 2005 FI_NO_PREALLOC, /* indicate skipped preallocated blocks */
ef095d19 2006 FI_HOT_DATA, /* indicate file is hot */
7a2af766 2007 FI_EXTRA_ATTR, /* indicate file has extra attribute */
5c57132e 2008 FI_PROJ_INHERIT, /* indicate file inherits projectid */
39a53e0c
JK
2009};
2010
205b9822
JK
2011static inline void __mark_inode_dirty_flag(struct inode *inode,
2012 int flag, bool set)
2013{
2014 switch (flag) {
2015 case FI_INLINE_XATTR:
2016 case FI_INLINE_DATA:
2017 case FI_INLINE_DENTRY:
2018 if (set)
2019 return;
2020 case FI_DATA_EXIST:
2021 case FI_INLINE_DOTS:
7c45729a 2022 f2fs_mark_inode_dirty_sync(inode, true);
205b9822
JK
2023 }
2024}
2025
91942321 2026static inline void set_inode_flag(struct inode *inode, int flag)
39a53e0c 2027{
91942321
JK
2028 if (!test_bit(flag, &F2FS_I(inode)->flags))
2029 set_bit(flag, &F2FS_I(inode)->flags);
205b9822 2030 __mark_inode_dirty_flag(inode, flag, true);
39a53e0c
JK
2031}
2032
91942321 2033static inline int is_inode_flag_set(struct inode *inode, int flag)
39a53e0c 2034{
91942321 2035 return test_bit(flag, &F2FS_I(inode)->flags);
39a53e0c
JK
2036}
2037
91942321 2038static inline void clear_inode_flag(struct inode *inode, int flag)
39a53e0c 2039{
91942321
JK
2040 if (test_bit(flag, &F2FS_I(inode)->flags))
2041 clear_bit(flag, &F2FS_I(inode)->flags);
205b9822 2042 __mark_inode_dirty_flag(inode, flag, false);
39a53e0c
JK
2043}
2044
91942321 2045static inline void set_acl_inode(struct inode *inode, umode_t mode)
39a53e0c 2046{
91942321
JK
2047 F2FS_I(inode)->i_acl_mode = mode;
2048 set_inode_flag(inode, FI_ACL_MODE);
7c45729a 2049 f2fs_mark_inode_dirty_sync(inode, false);
39a53e0c
JK
2050}
2051
a1961246 2052static inline void f2fs_i_links_write(struct inode *inode, bool inc)
39a53e0c 2053{
a1961246
JK
2054 if (inc)
2055 inc_nlink(inode);
2056 else
2057 drop_nlink(inode);
7c45729a 2058 f2fs_mark_inode_dirty_sync(inode, true);
a1961246
JK
2059}
2060
8edd03c8 2061static inline void f2fs_i_blocks_write(struct inode *inode,
0abd675e 2062 block_t diff, bool add, bool claim)
8edd03c8 2063{
26de9b11
JK
2064 bool clean = !is_inode_flag_set(inode, FI_DIRTY_INODE);
2065 bool recover = is_inode_flag_set(inode, FI_AUTO_RECOVER);
2066
0abd675e
CY
2067 /* add = 1, claim = 1 should be dquot_reserve_block in pair */
2068 if (add) {
2069 if (claim)
2070 dquot_claim_block(inode, diff);
2071 else
2072 dquot_alloc_block_nofail(inode, diff);
2073 } else {
2074 dquot_free_block(inode, diff);
2075 }
2076
7c45729a 2077 f2fs_mark_inode_dirty_sync(inode, true);
26de9b11
JK
2078 if (clean || recover)
2079 set_inode_flag(inode, FI_AUTO_RECOVER);
8edd03c8
JK
2080}
2081
fc9581c8
JK
2082static inline void f2fs_i_size_write(struct inode *inode, loff_t i_size)
2083{
26de9b11
JK
2084 bool clean = !is_inode_flag_set(inode, FI_DIRTY_INODE);
2085 bool recover = is_inode_flag_set(inode, FI_AUTO_RECOVER);
2086
fc9581c8
JK
2087 if (i_size_read(inode) == i_size)
2088 return;
2089
2090 i_size_write(inode, i_size);
7c45729a 2091 f2fs_mark_inode_dirty_sync(inode, true);
26de9b11
JK
2092 if (clean || recover)
2093 set_inode_flag(inode, FI_AUTO_RECOVER);
39a53e0c
JK
2094}
2095
205b9822 2096static inline void f2fs_i_depth_write(struct inode *inode, unsigned int depth)
39a53e0c 2097{
205b9822 2098 F2FS_I(inode)->i_current_depth = depth;
7c45729a 2099 f2fs_mark_inode_dirty_sync(inode, true);
39a53e0c
JK
2100}
2101
205b9822 2102static inline void f2fs_i_xnid_write(struct inode *inode, nid_t xnid)
444c580f 2103{
205b9822 2104 F2FS_I(inode)->i_xattr_nid = xnid;
7c45729a 2105 f2fs_mark_inode_dirty_sync(inode, true);
205b9822
JK
2106}
2107
2108static inline void f2fs_i_pino_write(struct inode *inode, nid_t pino)
2109{
2110 F2FS_I(inode)->i_pino = pino;
7c45729a 2111 f2fs_mark_inode_dirty_sync(inode, true);
205b9822
JK
2112}
2113
91942321 2114static inline void get_inline_info(struct inode *inode, struct f2fs_inode *ri)
444c580f 2115{
205b9822
JK
2116 struct f2fs_inode_info *fi = F2FS_I(inode);
2117
444c580f 2118 if (ri->i_inline & F2FS_INLINE_XATTR)
205b9822 2119 set_bit(FI_INLINE_XATTR, &fi->flags);
1001b347 2120 if (ri->i_inline & F2FS_INLINE_DATA)
205b9822 2121 set_bit(FI_INLINE_DATA, &fi->flags);
34d67deb 2122 if (ri->i_inline & F2FS_INLINE_DENTRY)
205b9822 2123 set_bit(FI_INLINE_DENTRY, &fi->flags);
b3d208f9 2124 if (ri->i_inline & F2FS_DATA_EXIST)
205b9822 2125 set_bit(FI_DATA_EXIST, &fi->flags);
510022a8 2126 if (ri->i_inline & F2FS_INLINE_DOTS)
205b9822 2127 set_bit(FI_INLINE_DOTS, &fi->flags);
7a2af766
CY
2128 if (ri->i_inline & F2FS_EXTRA_ATTR)
2129 set_bit(FI_EXTRA_ATTR, &fi->flags);
444c580f
JK
2130}
2131
91942321 2132static inline void set_raw_inline(struct inode *inode, struct f2fs_inode *ri)
444c580f
JK
2133{
2134 ri->i_inline = 0;
2135
91942321 2136 if (is_inode_flag_set(inode, FI_INLINE_XATTR))
444c580f 2137 ri->i_inline |= F2FS_INLINE_XATTR;
91942321 2138 if (is_inode_flag_set(inode, FI_INLINE_DATA))
1001b347 2139 ri->i_inline |= F2FS_INLINE_DATA;
91942321 2140 if (is_inode_flag_set(inode, FI_INLINE_DENTRY))
34d67deb 2141 ri->i_inline |= F2FS_INLINE_DENTRY;
91942321 2142 if (is_inode_flag_set(inode, FI_DATA_EXIST))
b3d208f9 2143 ri->i_inline |= F2FS_DATA_EXIST;
91942321 2144 if (is_inode_flag_set(inode, FI_INLINE_DOTS))
510022a8 2145 ri->i_inline |= F2FS_INLINE_DOTS;
7a2af766
CY
2146 if (is_inode_flag_set(inode, FI_EXTRA_ATTR))
2147 ri->i_inline |= F2FS_EXTRA_ATTR;
2148}
2149
2150static inline int f2fs_has_extra_attr(struct inode *inode)
2151{
2152 return is_inode_flag_set(inode, FI_EXTRA_ATTR);
444c580f
JK
2153}
2154
987c7c31
CY
2155static inline int f2fs_has_inline_xattr(struct inode *inode)
2156{
91942321 2157 return is_inode_flag_set(inode, FI_INLINE_XATTR);
987c7c31
CY
2158}
2159
81ca7350 2160static inline unsigned int addrs_per_inode(struct inode *inode)
de93653f 2161{
81ca7350 2162 if (f2fs_has_inline_xattr(inode))
7a2af766
CY
2163 return CUR_ADDRS_PER_INODE(inode) - F2FS_INLINE_XATTR_ADDRS;
2164 return CUR_ADDRS_PER_INODE(inode);
de93653f
JK
2165}
2166
65985d93
JK
2167static inline void *inline_xattr_addr(struct page *page)
2168{
695fd1ed 2169 struct f2fs_inode *ri = F2FS_INODE(page);
cac5a3d8 2170
65985d93
JK
2171 return (void *)&(ri->i_addr[DEF_ADDRS_PER_INODE -
2172 F2FS_INLINE_XATTR_ADDRS]);
2173}
2174
2175static inline int inline_xattr_size(struct inode *inode)
2176{
987c7c31 2177 if (f2fs_has_inline_xattr(inode))
65985d93
JK
2178 return F2FS_INLINE_XATTR_ADDRS << 2;
2179 else
2180 return 0;
2181}
2182
0dbdc2ae
JK
2183static inline int f2fs_has_inline_data(struct inode *inode)
2184{
91942321 2185 return is_inode_flag_set(inode, FI_INLINE_DATA);
0dbdc2ae
JK
2186}
2187
b3d208f9
JK
2188static inline int f2fs_exist_data(struct inode *inode)
2189{
91942321 2190 return is_inode_flag_set(inode, FI_DATA_EXIST);
b3d208f9
JK
2191}
2192
510022a8
JK
2193static inline int f2fs_has_inline_dots(struct inode *inode)
2194{
91942321 2195 return is_inode_flag_set(inode, FI_INLINE_DOTS);
510022a8
JK
2196}
2197
88b88a66
JK
2198static inline bool f2fs_is_atomic_file(struct inode *inode)
2199{
91942321 2200 return is_inode_flag_set(inode, FI_ATOMIC_FILE);
88b88a66
JK
2201}
2202
5fe45743
CY
2203static inline bool f2fs_is_commit_atomic_write(struct inode *inode)
2204{
2205 return is_inode_flag_set(inode, FI_ATOMIC_COMMIT);
2206}
2207
02a1335f
JK
2208static inline bool f2fs_is_volatile_file(struct inode *inode)
2209{
91942321 2210 return is_inode_flag_set(inode, FI_VOLATILE_FILE);
02a1335f
JK
2211}
2212
3c6c2beb
JK
2213static inline bool f2fs_is_first_block_written(struct inode *inode)
2214{
91942321 2215 return is_inode_flag_set(inode, FI_FIRST_BLOCK_WRITTEN);
3c6c2beb
JK
2216}
2217
1e84371f
JK
2218static inline bool f2fs_is_drop_cache(struct inode *inode)
2219{
91942321 2220 return is_inode_flag_set(inode, FI_DROP_CACHE);
1e84371f
JK
2221}
2222
f2470371 2223static inline void *inline_data_addr(struct inode *inode, struct page *page)
1001b347 2224{
695fd1ed 2225 struct f2fs_inode *ri = F2FS_INODE(page);
7a2af766 2226 int extra_size = get_extra_isize(inode);
cac5a3d8 2227
7a2af766 2228 return (void *)&(ri->i_addr[extra_size + DEF_INLINE_RESERVED_SIZE]);
1001b347
HL
2229}
2230
34d67deb
CY
2231static inline int f2fs_has_inline_dentry(struct inode *inode)
2232{
91942321 2233 return is_inode_flag_set(inode, FI_INLINE_DENTRY);
34d67deb
CY
2234}
2235
9486ba44
JK
2236static inline void f2fs_dentry_kunmap(struct inode *dir, struct page *page)
2237{
2238 if (!f2fs_has_inline_dentry(dir))
2239 kunmap(page);
2240}
2241
b5492af7
JK
2242static inline int is_file(struct inode *inode, int type)
2243{
2244 return F2FS_I(inode)->i_advise & type;
2245}
2246
2247static inline void set_file(struct inode *inode, int type)
2248{
2249 F2FS_I(inode)->i_advise |= type;
7c45729a 2250 f2fs_mark_inode_dirty_sync(inode, true);
b5492af7
JK
2251}
2252
2253static inline void clear_file(struct inode *inode, int type)
2254{
2255 F2FS_I(inode)->i_advise &= ~type;
7c45729a 2256 f2fs_mark_inode_dirty_sync(inode, true);
b5492af7
JK
2257}
2258
26787236
JK
2259static inline bool f2fs_skip_inode_update(struct inode *inode, int dsync)
2260{
2261 if (dsync) {
2262 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
2263 bool ret;
2264
2265 spin_lock(&sbi->inode_lock[DIRTY_META]);
2266 ret = list_empty(&F2FS_I(inode)->gdirty_list);
2267 spin_unlock(&sbi->inode_lock[DIRTY_META]);
2268 return ret;
2269 }
2270 if (!is_inode_flag_set(inode, FI_AUTO_RECOVER) ||
2271 file_keep_isize(inode) ||
2272 i_size_read(inode) & PAGE_MASK)
2273 return false;
2274 return F2FS_I(inode)->last_disk_size == i_size_read(inode);
b5492af7
JK
2275}
2276
77888c1e
JK
2277static inline int f2fs_readonly(struct super_block *sb)
2278{
2279 return sb->s_flags & MS_RDONLY;
2280}
2281
1e968fdf
JK
2282static inline bool f2fs_cp_error(struct f2fs_sb_info *sbi)
2283{
aaec2b1d 2284 return is_set_ckpt_flags(sbi, CP_ERROR_FLAG);
1e968fdf
JK
2285}
2286
eaa693f4
JK
2287static inline bool is_dot_dotdot(const struct qstr *str)
2288{
2289 if (str->len == 1 && str->name[0] == '.')
2290 return true;
2291
2292 if (str->len == 2 && str->name[0] == '.' && str->name[1] == '.')
2293 return true;
2294
2295 return false;
2296}
2297
3e72f721
JK
2298static inline bool f2fs_may_extent_tree(struct inode *inode)
2299{
3e72f721 2300 if (!test_opt(F2FS_I_SB(inode), EXTENT_CACHE) ||
91942321 2301 is_inode_flag_set(inode, FI_NO_EXTENT))
3e72f721
JK
2302 return false;
2303
886f56f9 2304 return S_ISREG(inode->i_mode);
3e72f721
JK
2305}
2306
1ecc0c5c
CY
2307static inline void *f2fs_kmalloc(struct f2fs_sb_info *sbi,
2308 size_t size, gfp_t flags)
0414b004 2309{
2c63fead 2310#ifdef CONFIG_F2FS_FAULT_INJECTION
55523519
CY
2311 if (time_to_inject(sbi, FAULT_KMALLOC)) {
2312 f2fs_show_injection_info(FAULT_KMALLOC);
2c63fead 2313 return NULL;
55523519 2314 }
2c63fead 2315#endif
0414b004
JK
2316 return kmalloc(size, flags);
2317}
2318
7a2af766 2319static inline int get_extra_isize(struct inode *inode)
f2470371 2320{
7a2af766 2321 return F2FS_I(inode)->i_extra_isize / sizeof(__le32);
f2470371
CY
2322}
2323
a6dda0e6 2324#define get_inode_mode(i) \
91942321 2325 ((is_inode_flag_set(i, FI_ACL_MODE)) ? \
a6dda0e6
CH
2326 (F2FS_I(i)->i_acl_mode) : ((i)->i_mode))
2327
7a2af766
CY
2328#define F2FS_TOTAL_EXTRA_ATTR_SIZE \
2329 (offsetof(struct f2fs_inode, i_extra_end) - \
2330 offsetof(struct f2fs_inode, i_extra_isize)) \
2331
5c57132e
CY
2332#define F2FS_OLD_ATTRIBUTE_SIZE (offsetof(struct f2fs_inode, i_addr))
2333#define F2FS_FITS_IN_INODE(f2fs_inode, extra_isize, field) \
2334 ((offsetof(typeof(*f2fs_inode), field) + \
2335 sizeof((f2fs_inode)->field)) \
2336 <= (F2FS_OLD_ATTRIBUTE_SIZE + extra_isize)) \
2337
b0af6d49
CY
2338static inline void f2fs_reset_iostat(struct f2fs_sb_info *sbi)
2339{
2340 int i;
2341
2342 spin_lock(&sbi->iostat_lock);
2343 for (i = 0; i < NR_IO_TYPE; i++)
2344 sbi->write_iostat[i] = 0;
2345 spin_unlock(&sbi->iostat_lock);
2346}
2347
2348static inline void f2fs_update_iostat(struct f2fs_sb_info *sbi,
2349 enum iostat_type type, unsigned long long io_bytes)
2350{
2351 if (!sbi->iostat_enable)
2352 return;
2353 spin_lock(&sbi->iostat_lock);
2354 sbi->write_iostat[type] += io_bytes;
2355
2356 if (type == APP_WRITE_IO || type == APP_DIRECT_IO)
2357 sbi->write_iostat[APP_BUFFERED_IO] =
2358 sbi->write_iostat[APP_WRITE_IO] -
2359 sbi->write_iostat[APP_DIRECT_IO];
2360 spin_unlock(&sbi->iostat_lock);
2361}
2362
39a53e0c
JK
2363/*
2364 * file.c
2365 */
cac5a3d8
DS
2366int f2fs_sync_file(struct file *file, loff_t start, loff_t end, int datasync);
2367void truncate_data_blocks(struct dnode_of_data *dn);
2368int truncate_blocks(struct inode *inode, u64 from, bool lock);
2369int f2fs_truncate(struct inode *inode);
a528d35e
DH
2370int f2fs_getattr(const struct path *path, struct kstat *stat,
2371 u32 request_mask, unsigned int flags);
cac5a3d8
DS
2372int f2fs_setattr(struct dentry *dentry, struct iattr *attr);
2373int truncate_hole(struct inode *inode, pgoff_t pg_start, pgoff_t pg_end);
2374int truncate_data_blocks_range(struct dnode_of_data *dn, int count);
2375long f2fs_ioctl(struct file *filp, unsigned int cmd, unsigned long arg);
2376long f2fs_compat_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
39a53e0c
JK
2377
2378/*
2379 * inode.c
2380 */
cac5a3d8 2381void f2fs_set_inode_flags(struct inode *inode);
704956ec
CY
2382bool f2fs_inode_chksum_verify(struct f2fs_sb_info *sbi, struct page *page);
2383void f2fs_inode_chksum_set(struct f2fs_sb_info *sbi, struct page *page);
cac5a3d8
DS
2384struct inode *f2fs_iget(struct super_block *sb, unsigned long ino);
2385struct inode *f2fs_iget_retry(struct super_block *sb, unsigned long ino);
2386int try_to_free_nats(struct f2fs_sb_info *sbi, int nr_shrink);
2387int update_inode(struct inode *inode, struct page *node_page);
2388int update_inode_page(struct inode *inode);
2389int f2fs_write_inode(struct inode *inode, struct writeback_control *wbc);
2390void f2fs_evict_inode(struct inode *inode);
2391void handle_failed_inode(struct inode *inode);
39a53e0c
JK
2392
2393/*
2394 * namei.c
2395 */
2396struct dentry *f2fs_get_parent(struct dentry *child);
2397
2398/*
2399 * dir.c
2400 */
cac5a3d8
DS
2401void set_de_type(struct f2fs_dir_entry *de, umode_t mode);
2402unsigned char get_de_type(struct f2fs_dir_entry *de);
2403struct f2fs_dir_entry *find_target_dentry(struct fscrypt_name *fname,
2404 f2fs_hash_t namehash, int *max_slots,
2405 struct f2fs_dentry_ptr *d);
2406int f2fs_fill_dentries(struct dir_context *ctx, struct f2fs_dentry_ptr *d,
2407 unsigned int start_pos, struct fscrypt_str *fstr);
2408void do_make_empty_dir(struct inode *inode, struct inode *parent,
2409 struct f2fs_dentry_ptr *d);
2410struct page *init_inode_metadata(struct inode *inode, struct inode *dir,
2411 const struct qstr *new_name,
2412 const struct qstr *orig_name, struct page *dpage);
2413void update_parent_metadata(struct inode *dir, struct inode *inode,
2414 unsigned int current_depth);
2415int room_for_filename(const void *bitmap, int slots, int max_slots);
2416void f2fs_drop_nlink(struct inode *dir, struct inode *inode);
2417struct f2fs_dir_entry *__f2fs_find_entry(struct inode *dir,
2418 struct fscrypt_name *fname, struct page **res_page);
2419struct f2fs_dir_entry *f2fs_find_entry(struct inode *dir,
2420 const struct qstr *child, struct page **res_page);
2421struct f2fs_dir_entry *f2fs_parent_dir(struct inode *dir, struct page **p);
2422ino_t f2fs_inode_by_name(struct inode *dir, const struct qstr *qstr,
2423 struct page **page);
2424void f2fs_set_link(struct inode *dir, struct f2fs_dir_entry *de,
2425 struct page *page, struct inode *inode);
cac5a3d8
DS
2426void f2fs_update_dentry(nid_t ino, umode_t mode, struct f2fs_dentry_ptr *d,
2427 const struct qstr *name, f2fs_hash_t name_hash,
2428 unsigned int bit_pos);
2429int f2fs_add_regular_entry(struct inode *dir, const struct qstr *new_name,
2430 const struct qstr *orig_name,
2431 struct inode *inode, nid_t ino, umode_t mode);
2432int __f2fs_do_add_link(struct inode *dir, struct fscrypt_name *fname,
2433 struct inode *inode, nid_t ino, umode_t mode);
2434int __f2fs_add_link(struct inode *dir, const struct qstr *name,
2435 struct inode *inode, nid_t ino, umode_t mode);
2436void f2fs_delete_entry(struct f2fs_dir_entry *dentry, struct page *page,
2437 struct inode *dir, struct inode *inode);
2438int f2fs_do_tmpfile(struct inode *inode, struct inode *dir);
2439bool f2fs_empty_dir(struct inode *dir);
39a53e0c 2440
b7f7a5e0
AV
2441static inline int f2fs_add_link(struct dentry *dentry, struct inode *inode)
2442{
2b0143b5 2443 return __f2fs_add_link(d_inode(dentry->d_parent), &dentry->d_name,
510022a8 2444 inode, inode->i_ino, inode->i_mode);
b7f7a5e0
AV
2445}
2446
39a53e0c
JK
2447/*
2448 * super.c
2449 */
cac5a3d8
DS
2450int f2fs_inode_dirtied(struct inode *inode, bool sync);
2451void f2fs_inode_synced(struct inode *inode);
4b2414d0
CY
2452void f2fs_enable_quota_files(struct f2fs_sb_info *sbi);
2453void f2fs_quota_off_umount(struct super_block *sb);
cac5a3d8
DS
2454int f2fs_commit_super(struct f2fs_sb_info *sbi, bool recover);
2455int f2fs_sync_fs(struct super_block *sb, int sync);
a07ef784 2456extern __printf(3, 4)
cac5a3d8 2457void f2fs_msg(struct super_block *sb, const char *level, const char *fmt, ...);
984ec63c 2458int sanity_check_ckpt(struct f2fs_sb_info *sbi);
39a53e0c
JK
2459
2460/*
2461 * hash.c
2462 */
6332cd32
JK
2463f2fs_hash_t f2fs_dentry_hash(const struct qstr *name_info,
2464 struct fscrypt_name *fname);
39a53e0c
JK
2465
2466/*
2467 * node.c
2468 */
2469struct dnode_of_data;
2470struct node_info;
2471
cac5a3d8
DS
2472bool available_free_memory(struct f2fs_sb_info *sbi, int type);
2473int need_dentry_mark(struct f2fs_sb_info *sbi, nid_t nid);
2474bool is_checkpointed_node(struct f2fs_sb_info *sbi, nid_t nid);
2475bool need_inode_block_update(struct f2fs_sb_info *sbi, nid_t ino);
2476void get_node_info(struct f2fs_sb_info *sbi, nid_t nid, struct node_info *ni);
2477pgoff_t get_next_page_offset(struct dnode_of_data *dn, pgoff_t pgofs);
2478int get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode);
2479int truncate_inode_blocks(struct inode *inode, pgoff_t from);
2480int truncate_xattr_node(struct inode *inode, struct page *page);
2481int wait_on_node_pages_writeback(struct f2fs_sb_info *sbi, nid_t ino);
2482int remove_inode_page(struct inode *inode);
2483struct page *new_inode_page(struct inode *inode);
5f4ce6ab 2484struct page *new_node_page(struct dnode_of_data *dn, unsigned int ofs);
cac5a3d8
DS
2485void ra_node_page(struct f2fs_sb_info *sbi, nid_t nid);
2486struct page *get_node_page(struct f2fs_sb_info *sbi, pgoff_t nid);
2487struct page *get_node_page_ra(struct page *parent, int start);
2488void move_node_page(struct page *node_page, int gc_type);
2489int fsync_node_pages(struct f2fs_sb_info *sbi, struct inode *inode,
2490 struct writeback_control *wbc, bool atomic);
401db79f 2491int sync_node_pages(struct f2fs_sb_info *sbi, struct writeback_control *wbc,
b0af6d49 2492 bool do_balance, enum iostat_type io_type);
22ad0b6a 2493void build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount);
cac5a3d8
DS
2494bool alloc_nid(struct f2fs_sb_info *sbi, nid_t *nid);
2495void alloc_nid_done(struct f2fs_sb_info *sbi, nid_t nid);
2496void alloc_nid_failed(struct f2fs_sb_info *sbi, nid_t nid);
2497int try_to_free_nids(struct f2fs_sb_info *sbi, int nr_shrink);
2498void recover_inline_xattr(struct inode *inode, struct page *page);
d260081c 2499int recover_xattr_data(struct inode *inode, struct page *page,
cac5a3d8
DS
2500 block_t blkaddr);
2501int recover_inode_page(struct f2fs_sb_info *sbi, struct page *page);
2502int restore_node_summary(struct f2fs_sb_info *sbi,
2503 unsigned int segno, struct f2fs_summary_block *sum);
22ad0b6a 2504void flush_nat_entries(struct f2fs_sb_info *sbi, struct cp_control *cpc);
cac5a3d8
DS
2505int build_node_manager(struct f2fs_sb_info *sbi);
2506void destroy_node_manager(struct f2fs_sb_info *sbi);
6e6093a8 2507int __init create_node_manager_caches(void);
39a53e0c
JK
2508void destroy_node_manager_caches(void);
2509
2510/*
2511 * segment.c
2512 */
cac5a3d8
DS
2513void register_inmem_page(struct inode *inode, struct page *page);
2514void drop_inmem_pages(struct inode *inode);
8c242db9 2515void drop_inmem_page(struct inode *inode, struct page *page);
cac5a3d8
DS
2516int commit_inmem_pages(struct inode *inode);
2517void f2fs_balance_fs(struct f2fs_sb_info *sbi, bool need);
2518void f2fs_balance_fs_bg(struct f2fs_sb_info *sbi);
2519int f2fs_issue_flush(struct f2fs_sb_info *sbi);
2520int create_flush_cmd_control(struct f2fs_sb_info *sbi);
2521void destroy_flush_cmd_control(struct f2fs_sb_info *sbi, bool free);
2522void invalidate_blocks(struct f2fs_sb_info *sbi, block_t addr);
2523bool is_checkpointed_data(struct f2fs_sb_info *sbi, block_t blkaddr);
2524void refresh_sit_entry(struct f2fs_sb_info *sbi, block_t old, block_t new);
cce13252 2525void stop_discard_thread(struct f2fs_sb_info *sbi);
d431413f 2526void f2fs_wait_discard_bios(struct f2fs_sb_info *sbi);
cac5a3d8
DS
2527void clear_prefree_segments(struct f2fs_sb_info *sbi, struct cp_control *cpc);
2528void release_discard_addrs(struct f2fs_sb_info *sbi);
2529int npages_for_summary_flush(struct f2fs_sb_info *sbi, bool for_ra);
2530void allocate_new_segments(struct f2fs_sb_info *sbi);
2531int f2fs_trim_fs(struct f2fs_sb_info *sbi, struct fstrim_range *range);
2532bool exist_trim_candidates(struct f2fs_sb_info *sbi, struct cp_control *cpc);
2533struct page *get_sum_page(struct f2fs_sb_info *sbi, unsigned int segno);
2534void update_meta_page(struct f2fs_sb_info *sbi, void *src, block_t blk_addr);
b0af6d49
CY
2535void write_meta_page(struct f2fs_sb_info *sbi, struct page *page,
2536 enum iostat_type io_type);
cac5a3d8
DS
2537void write_node_page(unsigned int nid, struct f2fs_io_info *fio);
2538void write_data_page(struct dnode_of_data *dn, struct f2fs_io_info *fio);
d1b3e72d 2539int rewrite_data_page(struct f2fs_io_info *fio);
cac5a3d8
DS
2540void __f2fs_replace_block(struct f2fs_sb_info *sbi, struct f2fs_summary *sum,
2541 block_t old_blkaddr, block_t new_blkaddr,
2542 bool recover_curseg, bool recover_newaddr);
2543void f2fs_replace_block(struct f2fs_sb_info *sbi, struct dnode_of_data *dn,
2544 block_t old_addr, block_t new_addr,
2545 unsigned char version, bool recover_curseg,
2546 bool recover_newaddr);
2547void allocate_data_block(struct f2fs_sb_info *sbi, struct page *page,
2548 block_t old_blkaddr, block_t *new_blkaddr,
fb830fc5
CY
2549 struct f2fs_summary *sum, int type,
2550 struct f2fs_io_info *fio, bool add_list);
cac5a3d8
DS
2551void f2fs_wait_on_page_writeback(struct page *page,
2552 enum page_type type, bool ordered);
2553void f2fs_wait_on_encrypted_page_writeback(struct f2fs_sb_info *sbi,
2554 block_t blkaddr);
2555void write_data_summaries(struct f2fs_sb_info *sbi, block_t start_blk);
2556void write_node_summaries(struct f2fs_sb_info *sbi, block_t start_blk);
2557int lookup_journal_in_cursum(struct f2fs_journal *journal, int type,
2558 unsigned int val, int alloc);
2559void flush_sit_entries(struct f2fs_sb_info *sbi, struct cp_control *cpc);
2560int build_segment_manager(struct f2fs_sb_info *sbi);
2561void destroy_segment_manager(struct f2fs_sb_info *sbi);
7fd9e544
JK
2562int __init create_segment_manager_caches(void);
2563void destroy_segment_manager_caches(void);
39a53e0c
JK
2564
2565/*
2566 * checkpoint.c
2567 */
cac5a3d8
DS
2568void f2fs_stop_checkpoint(struct f2fs_sb_info *sbi, bool end_io);
2569struct page *grab_meta_page(struct f2fs_sb_info *sbi, pgoff_t index);
2570struct page *get_meta_page(struct f2fs_sb_info *sbi, pgoff_t index);
2571struct page *get_tmp_page(struct f2fs_sb_info *sbi, pgoff_t index);
2572bool is_valid_blkaddr(struct f2fs_sb_info *sbi, block_t blkaddr, int type);
2573int ra_meta_pages(struct f2fs_sb_info *sbi, block_t start, int nrpages,
2574 int type, bool sync);
2575void ra_meta_pages_cond(struct f2fs_sb_info *sbi, pgoff_t index);
2576long sync_meta_pages(struct f2fs_sb_info *sbi, enum page_type type,
b0af6d49 2577 long nr_to_write, enum iostat_type io_type);
cac5a3d8
DS
2578void add_ino_entry(struct f2fs_sb_info *sbi, nid_t ino, int type);
2579void remove_ino_entry(struct f2fs_sb_info *sbi, nid_t ino, int type);
2580void release_ino_entry(struct f2fs_sb_info *sbi, bool all);
2581bool exist_written_data(struct f2fs_sb_info *sbi, nid_t ino, int mode);
2582int f2fs_sync_inode_meta(struct f2fs_sb_info *sbi);
2583int acquire_orphan_inode(struct f2fs_sb_info *sbi);
2584void release_orphan_inode(struct f2fs_sb_info *sbi);
2585void add_orphan_inode(struct inode *inode);
2586void remove_orphan_inode(struct f2fs_sb_info *sbi, nid_t ino);
2587int recover_orphan_inodes(struct f2fs_sb_info *sbi);
2588int get_valid_checkpoint(struct f2fs_sb_info *sbi);
2589void update_dirty_page(struct inode *inode, struct page *page);
2590void remove_dirty_inode(struct inode *inode);
2591int sync_dirty_inodes(struct f2fs_sb_info *sbi, enum inode_type type);
2592int write_checkpoint(struct f2fs_sb_info *sbi, struct cp_control *cpc);
2593void init_ino_entry_info(struct f2fs_sb_info *sbi);
6e6093a8 2594int __init create_checkpoint_caches(void);
39a53e0c
JK
2595void destroy_checkpoint_caches(void);
2596
2597/*
2598 * data.c
2599 */
b9109b0e
JK
2600void f2fs_submit_merged_write(struct f2fs_sb_info *sbi, enum page_type type);
2601void f2fs_submit_merged_write_cond(struct f2fs_sb_info *sbi,
942fd319 2602 struct inode *inode, nid_t ino, pgoff_t idx,
b9109b0e
JK
2603 enum page_type type);
2604void f2fs_flush_merged_writes(struct f2fs_sb_info *sbi);
cac5a3d8 2605int f2fs_submit_page_bio(struct f2fs_io_info *fio);
b9109b0e 2606int f2fs_submit_page_write(struct f2fs_io_info *fio);
cac5a3d8
DS
2607struct block_device *f2fs_target_device(struct f2fs_sb_info *sbi,
2608 block_t blk_addr, struct bio *bio);
2609int f2fs_target_device_index(struct f2fs_sb_info *sbi, block_t blkaddr);
2610void set_data_blkaddr(struct dnode_of_data *dn);
2611void f2fs_update_data_blkaddr(struct dnode_of_data *dn, block_t blkaddr);
2612int reserve_new_blocks(struct dnode_of_data *dn, blkcnt_t count);
2613int reserve_new_block(struct dnode_of_data *dn);
2614int f2fs_get_block(struct dnode_of_data *dn, pgoff_t index);
2615int f2fs_preallocate_blocks(struct kiocb *iocb, struct iov_iter *from);
2616int f2fs_reserve_block(struct dnode_of_data *dn, pgoff_t index);
2617struct page *get_read_data_page(struct inode *inode, pgoff_t index,
2618 int op_flags, bool for_write);
2619struct page *find_data_page(struct inode *inode, pgoff_t index);
2620struct page *get_lock_data_page(struct inode *inode, pgoff_t index,
2621 bool for_write);
2622struct page *get_new_data_page(struct inode *inode,
2623 struct page *ipage, pgoff_t index, bool new_i_size);
2624int do_write_data_page(struct f2fs_io_info *fio);
2625int f2fs_map_blocks(struct inode *inode, struct f2fs_map_blocks *map,
2626 int create, int flag);
2627int f2fs_fiemap(struct inode *inode, struct fiemap_extent_info *fieinfo,
2628 u64 start, u64 len);
2629void f2fs_set_page_dirty_nobuffers(struct page *page);
b0af6d49
CY
2630int __f2fs_write_data_pages(struct address_space *mapping,
2631 struct writeback_control *wbc,
2632 enum iostat_type io_type);
cac5a3d8
DS
2633void f2fs_invalidate_page(struct page *page, unsigned int offset,
2634 unsigned int length);
2635int f2fs_release_page(struct page *page, gfp_t wait);
5b7a487c 2636#ifdef CONFIG_MIGRATION
cac5a3d8
DS
2637int f2fs_migrate_page(struct address_space *mapping, struct page *newpage,
2638 struct page *page, enum migrate_mode mode);
5b7a487c 2639#endif
39a53e0c
JK
2640
2641/*
2642 * gc.c
2643 */
cac5a3d8
DS
2644int start_gc_thread(struct f2fs_sb_info *sbi);
2645void stop_gc_thread(struct f2fs_sb_info *sbi);
2646block_t start_bidx_of_node(unsigned int node_ofs, struct inode *inode);
e066b83c
JK
2647int f2fs_gc(struct f2fs_sb_info *sbi, bool sync, bool background,
2648 unsigned int segno);
cac5a3d8 2649void build_gc_manager(struct f2fs_sb_info *sbi);
39a53e0c
JK
2650
2651/*
2652 * recovery.c
2653 */
cac5a3d8
DS
2654int recover_fsync_data(struct f2fs_sb_info *sbi, bool check_only);
2655bool space_for_roll_forward(struct f2fs_sb_info *sbi);
39a53e0c
JK
2656
2657/*
2658 * debug.c
2659 */
2660#ifdef CONFIG_F2FS_STAT_FS
2661struct f2fs_stat_info {
2662 struct list_head stat_list;
2663 struct f2fs_sb_info *sbi;
39a53e0c
JK
2664 int all_area_segs, sit_area_segs, nat_area_segs, ssa_area_segs;
2665 int main_area_segs, main_area_sections, main_area_zones;
5b7ee374
CY
2666 unsigned long long hit_largest, hit_cached, hit_rbtree;
2667 unsigned long long hit_total, total_ext;
c00ba554 2668 int ext_tree, zombie_tree, ext_node;
35782b23
JK
2669 int ndirty_node, ndirty_dent, ndirty_meta, ndirty_data, ndirty_imeta;
2670 int inmem_pages;
0f18b462 2671 unsigned int ndirty_dirs, ndirty_files, ndirty_all;
5b0ef73c
JK
2672 int nats, dirty_nats, sits, dirty_sits;
2673 int free_nids, avail_nids, alloc_nids;
39a53e0c 2674 int total_count, utilization;
8b8dd65f
CY
2675 int bg_gc, nr_wb_cp_data, nr_wb_data;
2676 int nr_flushing, nr_flushed, nr_discarding, nr_discarded;
5f32366a 2677 int nr_discard_cmd;
d84d1cbd 2678 unsigned int undiscard_blks;
a00861db 2679 int inline_xattr, inline_inode, inline_dir, append, update, orphans;
648d50ba 2680 int aw_cnt, max_aw_cnt, vw_cnt, max_vw_cnt;
f83a2584 2681 unsigned int valid_count, valid_node_count, valid_inode_count, discard_blks;
39a53e0c
JK
2682 unsigned int bimodal, avg_vblocks;
2683 int util_free, util_valid, util_invalid;
2684 int rsvd_segs, overp_segs;
2685 int dirty_count, node_pages, meta_pages;
42190d2a 2686 int prefree_count, call_count, cp_count, bg_cp_count;
39a53e0c 2687 int tot_segs, node_segs, data_segs, free_segs, free_secs;
e1235983 2688 int bg_node_segs, bg_data_segs;
39a53e0c 2689 int tot_blks, data_blks, node_blks;
e1235983 2690 int bg_data_blks, bg_node_blks;
39a53e0c
JK
2691 int curseg[NR_CURSEG_TYPE];
2692 int cursec[NR_CURSEG_TYPE];
2693 int curzone[NR_CURSEG_TYPE];
2694
2695 unsigned int segment_count[2];
2696 unsigned int block_count[2];
b9a2c252 2697 unsigned int inplace_count;
9edcdabf 2698 unsigned long long base_mem, cache_mem, page_mem;
39a53e0c
JK
2699};
2700
963d4f7d
GZ
2701static inline struct f2fs_stat_info *F2FS_STAT(struct f2fs_sb_info *sbi)
2702{
6c311ec6 2703 return (struct f2fs_stat_info *)sbi->stat_info;
963d4f7d
GZ
2704}
2705
942e0be6 2706#define stat_inc_cp_count(si) ((si)->cp_count++)
42190d2a 2707#define stat_inc_bg_cp_count(si) ((si)->bg_cp_count++)
dcdfff65
JK
2708#define stat_inc_call_count(si) ((si)->call_count++)
2709#define stat_inc_bggc_count(sbi) ((sbi)->bg_gc++)
33fbd510
CY
2710#define stat_inc_dirty_inode(sbi, type) ((sbi)->ndirty_inode[type]++)
2711#define stat_dec_dirty_inode(sbi, type) ((sbi)->ndirty_inode[type]--)
5b7ee374
CY
2712#define stat_inc_total_hit(sbi) (atomic64_inc(&(sbi)->total_hit_ext))
2713#define stat_inc_rbtree_node_hit(sbi) (atomic64_inc(&(sbi)->read_hit_rbtree))
2714#define stat_inc_largest_node_hit(sbi) (atomic64_inc(&(sbi)->read_hit_largest))
2715#define stat_inc_cached_node_hit(sbi) (atomic64_inc(&(sbi)->read_hit_cached))
d5e8f6c9
CY
2716#define stat_inc_inline_xattr(inode) \
2717 do { \
2718 if (f2fs_has_inline_xattr(inode)) \
2719 (atomic_inc(&F2FS_I_SB(inode)->inline_xattr)); \
2720 } while (0)
2721#define stat_dec_inline_xattr(inode) \
2722 do { \
2723 if (f2fs_has_inline_xattr(inode)) \
2724 (atomic_dec(&F2FS_I_SB(inode)->inline_xattr)); \
2725 } while (0)
0dbdc2ae
JK
2726#define stat_inc_inline_inode(inode) \
2727 do { \
2728 if (f2fs_has_inline_data(inode)) \
03e14d52 2729 (atomic_inc(&F2FS_I_SB(inode)->inline_inode)); \
0dbdc2ae
JK
2730 } while (0)
2731#define stat_dec_inline_inode(inode) \
2732 do { \
2733 if (f2fs_has_inline_data(inode)) \
03e14d52 2734 (atomic_dec(&F2FS_I_SB(inode)->inline_inode)); \
0dbdc2ae 2735 } while (0)
3289c061
JK
2736#define stat_inc_inline_dir(inode) \
2737 do { \
2738 if (f2fs_has_inline_dentry(inode)) \
03e14d52 2739 (atomic_inc(&F2FS_I_SB(inode)->inline_dir)); \
3289c061
JK
2740 } while (0)
2741#define stat_dec_inline_dir(inode) \
2742 do { \
2743 if (f2fs_has_inline_dentry(inode)) \
03e14d52 2744 (atomic_dec(&F2FS_I_SB(inode)->inline_dir)); \
3289c061 2745 } while (0)
dcdfff65
JK
2746#define stat_inc_seg_type(sbi, curseg) \
2747 ((sbi)->segment_count[(curseg)->alloc_type]++)
2748#define stat_inc_block_count(sbi, curseg) \
2749 ((sbi)->block_count[(curseg)->alloc_type]++)
b9a2c252
CL
2750#define stat_inc_inplace_blocks(sbi) \
2751 (atomic_inc(&(sbi)->inplace_count))
26a28a0c 2752#define stat_inc_atomic_write(inode) \
cac5a3d8 2753 (atomic_inc(&F2FS_I_SB(inode)->aw_cnt))
26a28a0c 2754#define stat_dec_atomic_write(inode) \
cac5a3d8 2755 (atomic_dec(&F2FS_I_SB(inode)->aw_cnt))
26a28a0c
JK
2756#define stat_update_max_atomic_write(inode) \
2757 do { \
2758 int cur = atomic_read(&F2FS_I_SB(inode)->aw_cnt); \
2759 int max = atomic_read(&F2FS_I_SB(inode)->max_aw_cnt); \
2760 if (cur > max) \
2761 atomic_set(&F2FS_I_SB(inode)->max_aw_cnt, cur); \
2762 } while (0)
648d50ba
CY
2763#define stat_inc_volatile_write(inode) \
2764 (atomic_inc(&F2FS_I_SB(inode)->vw_cnt))
2765#define stat_dec_volatile_write(inode) \
2766 (atomic_dec(&F2FS_I_SB(inode)->vw_cnt))
2767#define stat_update_max_volatile_write(inode) \
2768 do { \
2769 int cur = atomic_read(&F2FS_I_SB(inode)->vw_cnt); \
2770 int max = atomic_read(&F2FS_I_SB(inode)->max_vw_cnt); \
2771 if (cur > max) \
2772 atomic_set(&F2FS_I_SB(inode)->max_vw_cnt, cur); \
2773 } while (0)
e1235983 2774#define stat_inc_seg_count(sbi, type, gc_type) \
39a53e0c 2775 do { \
963d4f7d 2776 struct f2fs_stat_info *si = F2FS_STAT(sbi); \
68afcf2d
TK
2777 si->tot_segs++; \
2778 if ((type) == SUM_TYPE_DATA) { \
39a53e0c 2779 si->data_segs++; \
e1235983
CL
2780 si->bg_data_segs += (gc_type == BG_GC) ? 1 : 0; \
2781 } else { \
39a53e0c 2782 si->node_segs++; \
e1235983
CL
2783 si->bg_node_segs += (gc_type == BG_GC) ? 1 : 0; \
2784 } \
39a53e0c
JK
2785 } while (0)
2786
2787#define stat_inc_tot_blk_count(si, blks) \
68afcf2d 2788 ((si)->tot_blks += (blks))
39a53e0c 2789
e1235983 2790#define stat_inc_data_blk_count(sbi, blks, gc_type) \
39a53e0c 2791 do { \
963d4f7d 2792 struct f2fs_stat_info *si = F2FS_STAT(sbi); \
39a53e0c
JK
2793 stat_inc_tot_blk_count(si, blks); \
2794 si->data_blks += (blks); \
68afcf2d 2795 si->bg_data_blks += ((gc_type) == BG_GC) ? (blks) : 0; \
39a53e0c
JK
2796 } while (0)
2797
e1235983 2798#define stat_inc_node_blk_count(sbi, blks, gc_type) \
39a53e0c 2799 do { \
963d4f7d 2800 struct f2fs_stat_info *si = F2FS_STAT(sbi); \
39a53e0c
JK
2801 stat_inc_tot_blk_count(si, blks); \
2802 si->node_blks += (blks); \
68afcf2d 2803 si->bg_node_blks += ((gc_type) == BG_GC) ? (blks) : 0; \
39a53e0c
JK
2804 } while (0)
2805
cac5a3d8
DS
2806int f2fs_build_stats(struct f2fs_sb_info *sbi);
2807void f2fs_destroy_stats(struct f2fs_sb_info *sbi);
787c7b8c 2808int __init f2fs_create_root_stats(void);
4589d25d 2809void f2fs_destroy_root_stats(void);
39a53e0c 2810#else
d66450e7
AB
2811#define stat_inc_cp_count(si) do { } while (0)
2812#define stat_inc_bg_cp_count(si) do { } while (0)
2813#define stat_inc_call_count(si) do { } while (0)
2814#define stat_inc_bggc_count(si) do { } while (0)
2815#define stat_inc_dirty_inode(sbi, type) do { } while (0)
2816#define stat_dec_dirty_inode(sbi, type) do { } while (0)
2817#define stat_inc_total_hit(sb) do { } while (0)
2818#define stat_inc_rbtree_node_hit(sb) do { } while (0)
2819#define stat_inc_largest_node_hit(sbi) do { } while (0)
2820#define stat_inc_cached_node_hit(sbi) do { } while (0)
2821#define stat_inc_inline_xattr(inode) do { } while (0)
2822#define stat_dec_inline_xattr(inode) do { } while (0)
2823#define stat_inc_inline_inode(inode) do { } while (0)
2824#define stat_dec_inline_inode(inode) do { } while (0)
2825#define stat_inc_inline_dir(inode) do { } while (0)
2826#define stat_dec_inline_dir(inode) do { } while (0)
2827#define stat_inc_atomic_write(inode) do { } while (0)
2828#define stat_dec_atomic_write(inode) do { } while (0)
2829#define stat_update_max_atomic_write(inode) do { } while (0)
2830#define stat_inc_volatile_write(inode) do { } while (0)
2831#define stat_dec_volatile_write(inode) do { } while (0)
2832#define stat_update_max_volatile_write(inode) do { } while (0)
2833#define stat_inc_seg_type(sbi, curseg) do { } while (0)
2834#define stat_inc_block_count(sbi, curseg) do { } while (0)
2835#define stat_inc_inplace_blocks(sbi) do { } while (0)
2836#define stat_inc_seg_count(sbi, type, gc_type) do { } while (0)
2837#define stat_inc_tot_blk_count(si, blks) do { } while (0)
2838#define stat_inc_data_blk_count(sbi, blks, gc_type) do { } while (0)
2839#define stat_inc_node_blk_count(sbi, blks, gc_type) do { } while (0)
39a53e0c
JK
2840
2841static inline int f2fs_build_stats(struct f2fs_sb_info *sbi) { return 0; }
2842static inline void f2fs_destroy_stats(struct f2fs_sb_info *sbi) { }
787c7b8c 2843static inline int __init f2fs_create_root_stats(void) { return 0; }
4589d25d 2844static inline void f2fs_destroy_root_stats(void) { }
39a53e0c
JK
2845#endif
2846
2847extern const struct file_operations f2fs_dir_operations;
2848extern const struct file_operations f2fs_file_operations;
2849extern const struct inode_operations f2fs_file_inode_operations;
2850extern const struct address_space_operations f2fs_dblock_aops;
2851extern const struct address_space_operations f2fs_node_aops;
2852extern const struct address_space_operations f2fs_meta_aops;
2853extern const struct inode_operations f2fs_dir_inode_operations;
2854extern const struct inode_operations f2fs_symlink_inode_operations;
cbaf042a 2855extern const struct inode_operations f2fs_encrypted_symlink_inode_operations;
39a53e0c 2856extern const struct inode_operations f2fs_special_inode_operations;
29e7043f 2857extern struct kmem_cache *inode_entry_slab;
1001b347 2858
e18c65b2
HL
2859/*
2860 * inline.c
2861 */
cac5a3d8
DS
2862bool f2fs_may_inline_data(struct inode *inode);
2863bool f2fs_may_inline_dentry(struct inode *inode);
2864void read_inline_data(struct page *page, struct page *ipage);
bd4667cb 2865void truncate_inline_inode(struct inode *inode, struct page *ipage, u64 from);
cac5a3d8
DS
2866int f2fs_read_inline_data(struct inode *inode, struct page *page);
2867int f2fs_convert_inline_page(struct dnode_of_data *dn, struct page *page);
2868int f2fs_convert_inline_inode(struct inode *inode);
2869int f2fs_write_inline_data(struct inode *inode, struct page *page);
2870bool recover_inline_data(struct inode *inode, struct page *npage);
2871struct f2fs_dir_entry *find_in_inline_dir(struct inode *dir,
2872 struct fscrypt_name *fname, struct page **res_page);
2873int make_empty_inline_dir(struct inode *inode, struct inode *parent,
2874 struct page *ipage);
2875int f2fs_add_inline_entry(struct inode *dir, const struct qstr *new_name,
2876 const struct qstr *orig_name,
2877 struct inode *inode, nid_t ino, umode_t mode);
2878void f2fs_delete_inline_entry(struct f2fs_dir_entry *dentry, struct page *page,
2879 struct inode *dir, struct inode *inode);
2880bool f2fs_empty_inline_dir(struct inode *dir);
2881int f2fs_read_inline_dir(struct file *file, struct dir_context *ctx,
2882 struct fscrypt_str *fstr);
2883int f2fs_inline_data_fiemap(struct inode *inode,
2884 struct fiemap_extent_info *fieinfo,
2885 __u64 start, __u64 len);
cde4de12 2886
2658e50d
JK
2887/*
2888 * shrinker.c
2889 */
cac5a3d8
DS
2890unsigned long f2fs_shrink_count(struct shrinker *shrink,
2891 struct shrink_control *sc);
2892unsigned long f2fs_shrink_scan(struct shrinker *shrink,
2893 struct shrink_control *sc);
2894void f2fs_join_shrinker(struct f2fs_sb_info *sbi);
2895void f2fs_leave_shrinker(struct f2fs_sb_info *sbi);
2658e50d 2896
a28ef1f5
CY
2897/*
2898 * extent_cache.c
2899 */
004b6862
CY
2900struct rb_entry *__lookup_rb_tree(struct rb_root *root,
2901 struct rb_entry *cached_re, unsigned int ofs);
2902struct rb_node **__lookup_rb_tree_for_insert(struct f2fs_sb_info *sbi,
2903 struct rb_root *root, struct rb_node **parent,
2904 unsigned int ofs);
2905struct rb_entry *__lookup_rb_tree_ret(struct rb_root *root,
2906 struct rb_entry *cached_re, unsigned int ofs,
2907 struct rb_entry **prev_entry, struct rb_entry **next_entry,
2908 struct rb_node ***insert_p, struct rb_node **insert_parent,
2909 bool force);
df0f6b44
CY
2910bool __check_rb_tree_consistence(struct f2fs_sb_info *sbi,
2911 struct rb_root *root);
cac5a3d8
DS
2912unsigned int f2fs_shrink_extent_tree(struct f2fs_sb_info *sbi, int nr_shrink);
2913bool f2fs_init_extent_tree(struct inode *inode, struct f2fs_extent *i_ext);
2914void f2fs_drop_extent_tree(struct inode *inode);
2915unsigned int f2fs_destroy_extent_node(struct inode *inode);
2916void f2fs_destroy_extent_tree(struct inode *inode);
2917bool f2fs_lookup_extent_cache(struct inode *inode, pgoff_t pgofs,
2918 struct extent_info *ei);
2919void f2fs_update_extent_cache(struct dnode_of_data *dn);
19b2c30d 2920void f2fs_update_extent_cache_range(struct dnode_of_data *dn,
cac5a3d8
DS
2921 pgoff_t fofs, block_t blkaddr, unsigned int len);
2922void init_extent_cache_info(struct f2fs_sb_info *sbi);
a28ef1f5
CY
2923int __init create_extent_cache(void);
2924void destroy_extent_cache(void);
2925
8ceffcb2
CY
2926/*
2927 * sysfs.c
2928 */
dc6b2055
JK
2929int __init f2fs_init_sysfs(void);
2930void f2fs_exit_sysfs(void);
2931int f2fs_register_sysfs(struct f2fs_sb_info *sbi);
2932void f2fs_unregister_sysfs(struct f2fs_sb_info *sbi);
8ceffcb2 2933
cde4de12
JK
2934/*
2935 * crypto support
2936 */
0b81d077 2937static inline bool f2fs_encrypted_inode(struct inode *inode)
cde4de12 2938{
cde4de12 2939 return file_is_encrypt(inode);
cde4de12
JK
2940}
2941
2942static inline void f2fs_set_encrypted_inode(struct inode *inode)
2943{
2944#ifdef CONFIG_F2FS_FS_ENCRYPTION
2945 file_set_encrypt(inode);
2946#endif
2947}
2948
2949static inline bool f2fs_bio_encrypted(struct bio *bio)
2950{
0b81d077 2951 return bio->bi_private != NULL;
cde4de12
JK
2952}
2953
2954static inline int f2fs_sb_has_crypto(struct super_block *sb)
2955{
cde4de12 2956 return F2FS_HAS_FEATURE(sb, F2FS_FEATURE_ENCRYPT);
cde4de12 2957}
f424f664 2958
0bfd7a09 2959static inline int f2fs_sb_mounted_blkzoned(struct super_block *sb)
52763a4b 2960{
0bfd7a09 2961 return F2FS_HAS_FEATURE(sb, F2FS_FEATURE_BLKZONED);
52763a4b
JK
2962}
2963
7a2af766
CY
2964static inline int f2fs_sb_has_extra_attr(struct super_block *sb)
2965{
2966 return F2FS_HAS_FEATURE(sb, F2FS_FEATURE_EXTRA_ATTR);
2967}
2968
5c57132e
CY
2969static inline int f2fs_sb_has_project_quota(struct super_block *sb)
2970{
2971 return F2FS_HAS_FEATURE(sb, F2FS_FEATURE_PRJQUOTA);
2972}
2973
704956ec
CY
2974static inline int f2fs_sb_has_inode_chksum(struct super_block *sb)
2975{
2976 return F2FS_HAS_FEATURE(sb, F2FS_FEATURE_INODE_CHKSUM);
2977}
2978
178053e2
DLM
2979#ifdef CONFIG_BLK_DEV_ZONED
2980static inline int get_blkz_type(struct f2fs_sb_info *sbi,
3c62be17 2981 struct block_device *bdev, block_t blkaddr)
178053e2
DLM
2982{
2983 unsigned int zno = blkaddr >> sbi->log_blocks_per_blkz;
3c62be17 2984 int i;
178053e2 2985
3c62be17
JK
2986 for (i = 0; i < sbi->s_ndevs; i++)
2987 if (FDEV(i).bdev == bdev)
2988 return FDEV(i).blkz_type[zno];
2989 return -EINVAL;
178053e2
DLM
2990}
2991#endif
2992
96ba2dec 2993static inline bool f2fs_discard_en(struct f2fs_sb_info *sbi)
52763a4b 2994{
96ba2dec
DLM
2995 struct request_queue *q = bdev_get_queue(sbi->sb->s_bdev);
2996
2997 return blk_queue_discard(q) || f2fs_sb_mounted_blkzoned(sbi->sb);
52763a4b
JK
2998}
2999
3000static inline void set_opt_mode(struct f2fs_sb_info *sbi, unsigned int mt)
3001{
3002 clear_opt(sbi, ADAPTIVE);
3003 clear_opt(sbi, LFS);
3004
3005 switch (mt) {
3006 case F2FS_MOUNT_ADAPTIVE:
3007 set_opt(sbi, ADAPTIVE);
3008 break;
3009 case F2FS_MOUNT_LFS:
3010 set_opt(sbi, LFS);
3011 break;
3012 }
3013}
3014
fcc85a4d
JK
3015static inline bool f2fs_may_encrypt(struct inode *inode)
3016{
3017#ifdef CONFIG_F2FS_FS_ENCRYPTION
886f56f9 3018 umode_t mode = inode->i_mode;
fcc85a4d
JK
3019
3020 return (S_ISREG(mode) || S_ISDIR(mode) || S_ISLNK(mode));
3021#else
3022 return 0;
3023#endif
3024}
3025
39a53e0c 3026#endif