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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>
0b81d077 25#include <linux/fscrypto.h>
43b6573b 26#include <crypto/hash.h>
39a53e0c 27
5d56b671 28#ifdef CONFIG_F2FS_CHECK_FS
9850cf4a 29#define f2fs_bug_on(sbi, condition) BUG_ON(condition)
5d56b671 30#else
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31#define f2fs_bug_on(sbi, condition) \
32 do { \
33 if (unlikely(condition)) { \
34 WARN_ON(1); \
caf0047e 35 set_sbi_flag(sbi, SBI_NEED_FSCK); \
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36 } \
37 } while (0)
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38#endif
39
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40#ifdef CONFIG_F2FS_FAULT_INJECTION
41enum {
42 FAULT_KMALLOC,
c41f3cc3 43 FAULT_PAGE_ALLOC,
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44 FAULT_ALLOC_NID,
45 FAULT_ORPHAN,
46 FAULT_BLOCK,
47 FAULT_DIR_DEPTH,
53aa6bbf 48 FAULT_EVICT_INODE,
8b038c70 49 FAULT_IO,
0f348028 50 FAULT_CHECKPOINT,
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51 FAULT_MAX,
52};
53
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54struct f2fs_fault_info {
55 atomic_t inject_ops;
56 unsigned int inject_rate;
57 unsigned int inject_type;
58};
59
2c63fead 60extern char *fault_name[FAULT_MAX];
1ecc0c5c 61#define IS_FAULT_SET(fi, type) (fi->inject_type & (1 << (type)))
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62#endif
63
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64/*
65 * For mount options
66 */
67#define F2FS_MOUNT_BG_GC 0x00000001
68#define F2FS_MOUNT_DISABLE_ROLL_FORWARD 0x00000002
69#define F2FS_MOUNT_DISCARD 0x00000004
70#define F2FS_MOUNT_NOHEAP 0x00000008
71#define F2FS_MOUNT_XATTR_USER 0x00000010
72#define F2FS_MOUNT_POSIX_ACL 0x00000020
73#define F2FS_MOUNT_DISABLE_EXT_IDENTIFY 0x00000040
444c580f 74#define F2FS_MOUNT_INLINE_XATTR 0x00000080
1001b347 75#define F2FS_MOUNT_INLINE_DATA 0x00000100
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76#define F2FS_MOUNT_INLINE_DENTRY 0x00000200
77#define F2FS_MOUNT_FLUSH_MERGE 0x00000400
78#define F2FS_MOUNT_NOBARRIER 0x00000800
d5053a34 79#define F2FS_MOUNT_FASTBOOT 0x00001000
89672159 80#define F2FS_MOUNT_EXTENT_CACHE 0x00002000
6aefd93b 81#define F2FS_MOUNT_FORCE_FG_GC 0x00004000
343f40f0 82#define F2FS_MOUNT_DATA_FLUSH 0x00008000
73faec4d 83#define F2FS_MOUNT_FAULT_INJECTION 0x00010000
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84#define F2FS_MOUNT_ADAPTIVE 0x00020000
85#define F2FS_MOUNT_LFS 0x00040000
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86
87#define clear_opt(sbi, option) (sbi->mount_opt.opt &= ~F2FS_MOUNT_##option)
88#define set_opt(sbi, option) (sbi->mount_opt.opt |= F2FS_MOUNT_##option)
89#define test_opt(sbi, option) (sbi->mount_opt.opt & F2FS_MOUNT_##option)
90
91#define ver_after(a, b) (typecheck(unsigned long long, a) && \
92 typecheck(unsigned long long, b) && \
93 ((long long)((a) - (b)) > 0))
94
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95typedef u32 block_t; /*
96 * should not change u32, since it is the on-disk block
97 * address format, __le32.
98 */
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99typedef u32 nid_t;
100
101struct f2fs_mount_info {
102 unsigned int opt;
103};
104
cde4de12 105#define F2FS_FEATURE_ENCRYPT 0x0001
52763a4b 106#define F2FS_FEATURE_HMSMR 0x0002
cde4de12 107
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108#define F2FS_HAS_FEATURE(sb, mask) \
109 ((F2FS_SB(sb)->raw_super->feature & cpu_to_le32(mask)) != 0)
110#define F2FS_SET_FEATURE(sb, mask) \
111 F2FS_SB(sb)->raw_super->feature |= cpu_to_le32(mask)
112#define F2FS_CLEAR_FEATURE(sb, mask) \
113 F2FS_SB(sb)->raw_super->feature &= ~cpu_to_le32(mask)
114
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115/*
116 * For checkpoint manager
117 */
118enum {
119 NAT_BITMAP,
120 SIT_BITMAP
121};
122
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123enum {
124 CP_UMOUNT,
119ee914 125 CP_FASTBOOT,
75ab4cb8 126 CP_SYNC,
10027551 127 CP_RECOVERY,
4b2fecc8 128 CP_DISCARD,
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129};
130
2d9e9c32 131#define DEF_BATCHED_TRIM_SECTIONS 2
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132#define BATCHED_TRIM_SEGMENTS(sbi) \
133 (SM_I(sbi)->trim_sections * (sbi)->segs_per_sec)
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134#define BATCHED_TRIM_BLOCKS(sbi) \
135 (BATCHED_TRIM_SEGMENTS(sbi) << (sbi)->log_blocks_per_seg)
60b99b48 136#define DEF_CP_INTERVAL 60 /* 60 secs */
dcf25fe8 137#define DEF_IDLE_INTERVAL 5 /* 5 secs */
bba681cb 138
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139struct cp_control {
140 int reason;
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141 __u64 trim_start;
142 __u64 trim_end;
143 __u64 trim_minlen;
144 __u64 trimmed;
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145};
146
662befda 147/*
81c1a0f1 148 * For CP/NAT/SIT/SSA readahead
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149 */
150enum {
151 META_CP,
152 META_NAT,
81c1a0f1 153 META_SIT,
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154 META_SSA,
155 META_POR,
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156};
157
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158/* for the list of ino */
159enum {
160 ORPHAN_INO, /* for orphan ino list */
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161 APPEND_INO, /* for append ino list */
162 UPDATE_INO, /* for update ino list */
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163 MAX_INO_ENTRY, /* max. list */
164};
165
166struct ino_entry {
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167 struct list_head list; /* list head */
168 nid_t ino; /* inode number */
169};
170
2710fd7e 171/* for the list of inodes to be GCed */
06292073 172struct inode_entry {
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173 struct list_head list; /* list head */
174 struct inode *inode; /* vfs inode pointer */
175};
176
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177/* for the list of blockaddresses to be discarded */
178struct discard_entry {
179 struct list_head list; /* list head */
180 block_t blkaddr; /* block address to be discarded */
181 int len; /* # of consecutive blocks of the discard */
182};
183
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184struct bio_entry {
185 struct list_head list;
186 struct bio *bio;
187 struct completion event;
188 int error;
189};
190
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191/* for the list of fsync inodes, used only during recovery */
192struct fsync_inode_entry {
193 struct list_head list; /* list head */
194 struct inode *inode; /* vfs inode pointer */
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195 block_t blkaddr; /* block address locating the last fsync */
196 block_t last_dentry; /* block address locating the last dentry */
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197};
198
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199#define nats_in_cursum(jnl) (le16_to_cpu(jnl->n_nats))
200#define sits_in_cursum(jnl) (le16_to_cpu(jnl->n_sits))
39a53e0c 201
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202#define nat_in_journal(jnl, i) (jnl->nat_j.entries[i].ne)
203#define nid_in_journal(jnl, i) (jnl->nat_j.entries[i].nid)
204#define sit_in_journal(jnl, i) (jnl->sit_j.entries[i].se)
205#define segno_in_journal(jnl, i) (jnl->sit_j.entries[i].segno)
39a53e0c 206
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207#define MAX_NAT_JENTRIES(jnl) (NAT_JOURNAL_ENTRIES - nats_in_cursum(jnl))
208#define MAX_SIT_JENTRIES(jnl) (SIT_JOURNAL_ENTRIES - sits_in_cursum(jnl))
309cc2b6 209
dfc08a12 210static inline int update_nats_in_cursum(struct f2fs_journal *journal, int i)
39a53e0c 211{
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212 int before = nats_in_cursum(journal);
213 journal->n_nats = cpu_to_le16(before + i);
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214 return before;
215}
216
dfc08a12 217static inline int update_sits_in_cursum(struct f2fs_journal *journal, int i)
39a53e0c 218{
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219 int before = sits_in_cursum(journal);
220 journal->n_sits = cpu_to_le16(before + i);
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221 return before;
222}
223
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224static inline bool __has_cursum_space(struct f2fs_journal *journal,
225 int size, int type)
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226{
227 if (type == NAT_JOURNAL)
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228 return size <= MAX_NAT_JENTRIES(journal);
229 return size <= MAX_SIT_JENTRIES(journal);
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230}
231
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232/*
233 * ioctl commands
234 */
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235#define F2FS_IOC_GETFLAGS FS_IOC_GETFLAGS
236#define F2FS_IOC_SETFLAGS FS_IOC_SETFLAGS
d49f3e89 237#define F2FS_IOC_GETVERSION FS_IOC_GETVERSION
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238
239#define F2FS_IOCTL_MAGIC 0xf5
240#define F2FS_IOC_START_ATOMIC_WRITE _IO(F2FS_IOCTL_MAGIC, 1)
241#define F2FS_IOC_COMMIT_ATOMIC_WRITE _IO(F2FS_IOCTL_MAGIC, 2)
02a1335f 242#define F2FS_IOC_START_VOLATILE_WRITE _IO(F2FS_IOCTL_MAGIC, 3)
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243#define F2FS_IOC_RELEASE_VOLATILE_WRITE _IO(F2FS_IOCTL_MAGIC, 4)
244#define F2FS_IOC_ABORT_VOLATILE_WRITE _IO(F2FS_IOCTL_MAGIC, 5)
c1c1b583 245#define F2FS_IOC_GARBAGE_COLLECT _IO(F2FS_IOCTL_MAGIC, 6)
456b88e4 246#define F2FS_IOC_WRITE_CHECKPOINT _IO(F2FS_IOCTL_MAGIC, 7)
d323d005 247#define F2FS_IOC_DEFRAGMENT _IO(F2FS_IOCTL_MAGIC, 8)
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248#define F2FS_IOC_MOVE_RANGE _IOWR(F2FS_IOCTL_MAGIC, 9, \
249 struct f2fs_move_range)
e9750824 250
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251#define F2FS_IOC_SET_ENCRYPTION_POLICY FS_IOC_SET_ENCRYPTION_POLICY
252#define F2FS_IOC_GET_ENCRYPTION_POLICY FS_IOC_GET_ENCRYPTION_POLICY
253#define F2FS_IOC_GET_ENCRYPTION_PWSALT FS_IOC_GET_ENCRYPTION_PWSALT
f424f664 254
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255/*
256 * should be same as XFS_IOC_GOINGDOWN.
257 * Flags for going down operation used by FS_IOC_GOINGDOWN
258 */
259#define F2FS_IOC_SHUTDOWN _IOR('X', 125, __u32) /* Shutdown */
260#define F2FS_GOING_DOWN_FULLSYNC 0x0 /* going down with full sync */
261#define F2FS_GOING_DOWN_METASYNC 0x1 /* going down with metadata */
262#define F2FS_GOING_DOWN_NOSYNC 0x2 /* going down */
c912a829 263#define F2FS_GOING_DOWN_METAFLUSH 0x3 /* going down with meta flush */
1abff93d 264
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265#if defined(__KERNEL__) && defined(CONFIG_COMPAT)
266/*
267 * ioctl commands in 32 bit emulation
268 */
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269#define F2FS_IOC32_GETFLAGS FS_IOC32_GETFLAGS
270#define F2FS_IOC32_SETFLAGS FS_IOC32_SETFLAGS
271#define F2FS_IOC32_GETVERSION FS_IOC32_GETVERSION
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272#endif
273
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274struct f2fs_defragment {
275 u64 start;
276 u64 len;
277};
278
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279struct f2fs_move_range {
280 u32 dst_fd; /* destination fd */
281 u64 pos_in; /* start position in src_fd */
282 u64 pos_out; /* start position in dst_fd */
283 u64 len; /* size to move */
284};
285
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286/*
287 * For INODE and NODE manager
288 */
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289/* for directory operations */
290struct f2fs_dentry_ptr {
d8c6822a 291 struct inode *inode;
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292 const void *bitmap;
293 struct f2fs_dir_entry *dentry;
294 __u8 (*filename)[F2FS_SLOT_LEN];
295 int max;
296};
297
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298static inline void make_dentry_ptr(struct inode *inode,
299 struct f2fs_dentry_ptr *d, void *src, int type)
7b3cd7d6 300{
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301 d->inode = inode;
302
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303 if (type == 1) {
304 struct f2fs_dentry_block *t = (struct f2fs_dentry_block *)src;
305 d->max = NR_DENTRY_IN_BLOCK;
306 d->bitmap = &t->dentry_bitmap;
307 d->dentry = t->dentry;
308 d->filename = t->filename;
309 } else {
310 struct f2fs_inline_dentry *t = (struct f2fs_inline_dentry *)src;
311 d->max = NR_INLINE_DENTRY;
312 d->bitmap = &t->dentry_bitmap;
313 d->dentry = t->dentry;
314 d->filename = t->filename;
315 }
316}
317
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318/*
319 * XATTR_NODE_OFFSET stores xattrs to one node block per file keeping -1
320 * as its node offset to distinguish from index node blocks.
321 * But some bits are used to mark the node block.
322 */
323#define XATTR_NODE_OFFSET ((((unsigned int)-1) << OFFSET_BIT_SHIFT) \
324 >> OFFSET_BIT_SHIFT)
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325enum {
326 ALLOC_NODE, /* allocate a new node page if needed */
327 LOOKUP_NODE, /* look up a node without readahead */
328 LOOKUP_NODE_RA, /*
329 * look up a node with readahead called
4f4124d0 330 * by get_data_block.
39a53e0c 331 */
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332};
333
a6db67f0 334#define F2FS_LINK_MAX 0xffffffff /* maximum link count per file */
39a53e0c 335
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336#define MAX_DIR_RA_PAGES 4 /* maximum ra pages of dir */
337
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338/* vector size for gang look-up from extent cache that consists of radix tree */
339#define EXT_TREE_VEC_SIZE 64
340
39a53e0c 341/* for in-memory extent cache entry */
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342#define F2FS_MIN_EXTENT_LEN 64 /* minimum extent length */
343
344/* number of extent info in extent cache we try to shrink */
345#define EXTENT_CACHE_SHRINK_NUMBER 128
c11abd1a 346
39a53e0c 347struct extent_info {
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348 unsigned int fofs; /* start offset in a file */
349 u32 blk; /* start block address of the extent */
350 unsigned int len; /* length of the extent */
351};
352
353struct extent_node {
354 struct rb_node rb_node; /* rb node located in rb-tree */
355 struct list_head list; /* node in global extent list of sbi */
356 struct extent_info ei; /* extent info */
201ef5e0 357 struct extent_tree *et; /* extent tree pointer */
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358};
359
360struct extent_tree {
361 nid_t ino; /* inode number */
362 struct rb_root root; /* root of extent info rb-tree */
62c8af65 363 struct extent_node *cached_en; /* recently accessed extent node */
3e72f721 364 struct extent_info largest; /* largested extent info */
137d09f0 365 struct list_head list; /* to be used by sbi->zombie_list */
13054c54 366 rwlock_t lock; /* protect extent info rb-tree */
68e35385 367 atomic_t node_cnt; /* # of extent node in rb-tree*/
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368};
369
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370/*
371 * This structure is taken from ext4_map_blocks.
372 *
373 * Note that, however, f2fs uses NEW and MAPPED flags for f2fs_map_blocks().
374 */
375#define F2FS_MAP_NEW (1 << BH_New)
376#define F2FS_MAP_MAPPED (1 << BH_Mapped)
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377#define F2FS_MAP_UNWRITTEN (1 << BH_Unwritten)
378#define F2FS_MAP_FLAGS (F2FS_MAP_NEW | F2FS_MAP_MAPPED |\
379 F2FS_MAP_UNWRITTEN)
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380
381struct f2fs_map_blocks {
382 block_t m_pblk;
383 block_t m_lblk;
384 unsigned int m_len;
385 unsigned int m_flags;
da85985c 386 pgoff_t *m_next_pgofs; /* point next possible non-hole pgofs */
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387};
388
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389/* for flag in get_data_block */
390#define F2FS_GET_BLOCK_READ 0
391#define F2FS_GET_BLOCK_DIO 1
392#define F2FS_GET_BLOCK_FIEMAP 2
393#define F2FS_GET_BLOCK_BMAP 3
b439b103 394#define F2FS_GET_BLOCK_PRE_DIO 4
24b84912 395#define F2FS_GET_BLOCK_PRE_AIO 5
e2b4e2bc 396
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397/*
398 * i_advise uses FADVISE_XXX_BIT. We can add additional hints later.
399 */
400#define FADVISE_COLD_BIT 0x01
354a3399 401#define FADVISE_LOST_PINO_BIT 0x02
cde4de12 402#define FADVISE_ENCRYPT_BIT 0x04
e7d55452 403#define FADVISE_ENC_NAME_BIT 0x08
39a53e0c 404
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405#define file_is_cold(inode) is_file(inode, FADVISE_COLD_BIT)
406#define file_wrong_pino(inode) is_file(inode, FADVISE_LOST_PINO_BIT)
407#define file_set_cold(inode) set_file(inode, FADVISE_COLD_BIT)
408#define file_lost_pino(inode) set_file(inode, FADVISE_LOST_PINO_BIT)
409#define file_clear_cold(inode) clear_file(inode, FADVISE_COLD_BIT)
410#define file_got_pino(inode) clear_file(inode, FADVISE_LOST_PINO_BIT)
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411#define file_is_encrypt(inode) is_file(inode, FADVISE_ENCRYPT_BIT)
412#define file_set_encrypt(inode) set_file(inode, FADVISE_ENCRYPT_BIT)
413#define file_clear_encrypt(inode) clear_file(inode, FADVISE_ENCRYPT_BIT)
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414#define file_enc_name(inode) is_file(inode, FADVISE_ENC_NAME_BIT)
415#define file_set_enc_name(inode) set_file(inode, FADVISE_ENC_NAME_BIT)
cde4de12 416
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417#define DEF_DIR_LEVEL 0
418
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419struct f2fs_inode_info {
420 struct inode vfs_inode; /* serve a vfs inode */
421 unsigned long i_flags; /* keep an inode flags for ioctl */
422 unsigned char i_advise; /* use to give file attribute hints */
38431545 423 unsigned char i_dir_level; /* use for dentry level for large dir */
39a53e0c 424 unsigned int i_current_depth; /* use only in directory structure */
6666e6aa 425 unsigned int i_pino; /* parent inode number */
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426 umode_t i_acl_mode; /* keep file acl mode temporarily */
427
428 /* Use below internally in f2fs*/
429 unsigned long flags; /* use to pass per-file flags */
d928bfbf 430 struct rw_semaphore i_sem; /* protect fi info */
1beba1b3 431 struct percpu_counter dirty_pages; /* # of dirty pages */
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432 f2fs_hash_t chash; /* hash value of given file name */
433 unsigned int clevel; /* maximum level of given file name */
434 nid_t i_xattr_nid; /* node id that contains xattrs */
e518ff81 435 unsigned long long xattr_ver; /* cp version of xattr modification */
26de9b11 436 loff_t last_disk_size; /* lastly written file size */
88b88a66 437
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438 struct list_head dirty_list; /* dirty list for dirs and files */
439 struct list_head gdirty_list; /* linked in global dirty list */
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440 struct list_head inmem_pages; /* inmemory pages managed by f2fs */
441 struct mutex inmem_lock; /* lock for inmemory pages */
3e72f721 442 struct extent_tree *extent_tree; /* cached extent_tree entry */
82e0a5aa 443 struct rw_semaphore dio_rwsem[2];/* avoid racing between dio and gc */
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444};
445
446static inline void get_extent_info(struct extent_info *ext,
bd933d4f 447 struct f2fs_extent *i_ext)
39a53e0c 448{
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449 ext->fofs = le32_to_cpu(i_ext->fofs);
450 ext->blk = le32_to_cpu(i_ext->blk);
451 ext->len = le32_to_cpu(i_ext->len);
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452}
453
454static inline void set_raw_extent(struct extent_info *ext,
455 struct f2fs_extent *i_ext)
456{
39a53e0c 457 i_ext->fofs = cpu_to_le32(ext->fofs);
4d0b0bd4 458 i_ext->blk = cpu_to_le32(ext->blk);
39a53e0c 459 i_ext->len = cpu_to_le32(ext->len);
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460}
461
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462static inline void set_extent_info(struct extent_info *ei, unsigned int fofs,
463 u32 blk, unsigned int len)
464{
465 ei->fofs = fofs;
466 ei->blk = blk;
467 ei->len = len;
468}
469
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470static inline bool __is_extent_same(struct extent_info *ei1,
471 struct extent_info *ei2)
472{
473 return (ei1->fofs == ei2->fofs && ei1->blk == ei2->blk &&
474 ei1->len == ei2->len);
475}
476
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477static inline bool __is_extent_mergeable(struct extent_info *back,
478 struct extent_info *front)
479{
480 return (back->fofs + back->len == front->fofs &&
481 back->blk + back->len == front->blk);
482}
483
484static inline bool __is_back_mergeable(struct extent_info *cur,
485 struct extent_info *back)
486{
487 return __is_extent_mergeable(back, cur);
488}
489
490static inline bool __is_front_mergeable(struct extent_info *cur,
491 struct extent_info *front)
492{
493 return __is_extent_mergeable(cur, front);
494}
495
b56ab837 496extern void f2fs_mark_inode_dirty_sync(struct inode *);
205b9822
JK
497static inline void __try_update_largest_extent(struct inode *inode,
498 struct extent_tree *et, struct extent_node *en)
4abd3f5a 499{
205b9822 500 if (en->ei.len > et->largest.len) {
4abd3f5a 501 et->largest = en->ei;
b56ab837 502 f2fs_mark_inode_dirty_sync(inode);
205b9822 503 }
4abd3f5a
CY
504}
505
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506struct f2fs_nm_info {
507 block_t nat_blkaddr; /* base disk address of NAT */
508 nid_t max_nid; /* maximum possible node ids */
7ee0eeab 509 nid_t available_nids; /* maximum available node ids */
39a53e0c 510 nid_t next_scan_nid; /* the next nid to be scanned */
cdfc41c1 511 unsigned int ram_thresh; /* control the memory footprint */
ea1a29a0 512 unsigned int ra_nid_pages; /* # of nid pages to be readaheaded */
2304cb0c 513 unsigned int dirty_nats_ratio; /* control dirty nats ratio threshold */
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514
515 /* NAT cache management */
516 struct radix_tree_root nat_root;/* root of the nat entry cache */
309cc2b6 517 struct radix_tree_root nat_set_root;/* root of the nat set cache */
b873b798 518 struct rw_semaphore nat_tree_lock; /* protect nat_tree_lock */
39a53e0c 519 struct list_head nat_entries; /* cached nat entry list (clean) */
309cc2b6 520 unsigned int nat_cnt; /* the # of cached nat entries */
aec71382 521 unsigned int dirty_nat_cnt; /* total num of nat entries in set */
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522
523 /* free node ids management */
8a7ed66a 524 struct radix_tree_root free_nid_root;/* root of the free_nid cache */
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525 struct list_head free_nid_list; /* a list for free nids */
526 spinlock_t free_nid_list_lock; /* protect free nid list */
527 unsigned int fcnt; /* the number of free node id */
528 struct mutex build_lock; /* lock for build free nids */
529
530 /* for checkpoint */
531 char *nat_bitmap; /* NAT bitmap pointer */
532 int bitmap_size; /* bitmap size */
533};
534
535/*
536 * this structure is used as one of function parameters.
537 * all the information are dedicated to a given direct node block determined
538 * by the data offset in a file.
539 */
540struct dnode_of_data {
541 struct inode *inode; /* vfs inode pointer */
542 struct page *inode_page; /* its inode page, NULL is possible */
543 struct page *node_page; /* cached direct node page */
544 nid_t nid; /* node id of the direct node block */
545 unsigned int ofs_in_node; /* data offset in the node page */
546 bool inode_page_locked; /* inode page is locked or not */
93bae099 547 bool node_changed; /* is node block changed */
3cf45747
CY
548 char cur_level; /* level of hole node page */
549 char max_level; /* level of current page located */
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550 block_t data_blkaddr; /* block address of the node block */
551};
552
553static inline void set_new_dnode(struct dnode_of_data *dn, struct inode *inode,
554 struct page *ipage, struct page *npage, nid_t nid)
555{
d66d1f76 556 memset(dn, 0, sizeof(*dn));
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557 dn->inode = inode;
558 dn->inode_page = ipage;
559 dn->node_page = npage;
560 dn->nid = nid;
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561}
562
563/*
564 * For SIT manager
565 *
566 * By default, there are 6 active log areas across the whole main area.
567 * When considering hot and cold data separation to reduce cleaning overhead,
568 * we split 3 for data logs and 3 for node logs as hot, warm, and cold types,
569 * respectively.
570 * In the current design, you should not change the numbers intentionally.
571 * Instead, as a mount option such as active_logs=x, you can use 2, 4, and 6
572 * logs individually according to the underlying devices. (default: 6)
573 * Just in case, on-disk layout covers maximum 16 logs that consist of 8 for
574 * data and 8 for node logs.
575 */
576#define NR_CURSEG_DATA_TYPE (3)
577#define NR_CURSEG_NODE_TYPE (3)
578#define NR_CURSEG_TYPE (NR_CURSEG_DATA_TYPE + NR_CURSEG_NODE_TYPE)
579
580enum {
581 CURSEG_HOT_DATA = 0, /* directory entry blocks */
582 CURSEG_WARM_DATA, /* data blocks */
583 CURSEG_COLD_DATA, /* multimedia or GCed data blocks */
584 CURSEG_HOT_NODE, /* direct node blocks of directory files */
585 CURSEG_WARM_NODE, /* direct node blocks of normal files */
586 CURSEG_COLD_NODE, /* indirect node blocks */
38aa0889
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587 NO_CHECK_TYPE,
588 CURSEG_DIRECT_IO, /* to use for the direct IO path */
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589};
590
6b4afdd7 591struct flush_cmd {
6b4afdd7 592 struct completion wait;
721bd4d5 593 struct llist_node llnode;
6b4afdd7
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594 int ret;
595};
596
a688b9d9
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597struct flush_cmd_control {
598 struct task_struct *f2fs_issue_flush; /* flush thread */
599 wait_queue_head_t flush_wait_queue; /* waiting queue for wake-up */
0a87f664 600 atomic_t submit_flush; /* # of issued flushes */
721bd4d5
GZ
601 struct llist_head issue_list; /* list for command issue */
602 struct llist_node *dispatch_list; /* list for command dispatch */
a688b9d9
GZ
603};
604
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605struct f2fs_sm_info {
606 struct sit_info *sit_info; /* whole segment information */
607 struct free_segmap_info *free_info; /* free segment information */
608 struct dirty_seglist_info *dirty_info; /* dirty segment information */
609 struct curseg_info *curseg_array; /* active segment information */
610
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611 block_t seg0_blkaddr; /* block address of 0'th segment */
612 block_t main_blkaddr; /* start block address of main area */
613 block_t ssa_blkaddr; /* start block address of SSA area */
614
615 unsigned int segment_count; /* total # of segments */
616 unsigned int main_segments; /* # of segments in main area */
617 unsigned int reserved_segments; /* # of reserved segments */
618 unsigned int ovp_segments; /* # of overprovision segments */
81eb8d6e
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619
620 /* a threshold to reclaim prefree segments */
621 unsigned int rec_prefree_segments;
7fd9e544
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622
623 /* for small discard management */
624 struct list_head discard_list; /* 4KB discard list */
275b66b0 625 struct list_head wait_list; /* linked with issued discard bio */
7fd9e544
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626 int nr_discards; /* # of discards in the list */
627 int max_discards; /* max. discards to be issued */
216fbd64 628
bba681cb
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629 /* for batched trimming */
630 unsigned int trim_sections; /* # of sections to trim */
631
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632 struct list_head sit_entry_set; /* sit entry set list */
633
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634 unsigned int ipu_policy; /* in-place-update policy */
635 unsigned int min_ipu_util; /* in-place-update threshold */
c1ce1b02 636 unsigned int min_fsync_blocks; /* threshold for fsync */
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637
638 /* for flush command control */
a688b9d9
GZ
639 struct flush_cmd_control *cmd_control_info;
640
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641};
642
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643/*
644 * For superblock
645 */
646/*
647 * COUNT_TYPE for monitoring
648 *
649 * f2fs monitors the number of several block types such as on-writeback,
650 * dirty dentry blocks, dirty node blocks, and dirty meta blocks.
651 */
652enum count_type {
39a53e0c 653 F2FS_DIRTY_DENTS,
c227f912 654 F2FS_DIRTY_DATA,
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655 F2FS_DIRTY_NODES,
656 F2FS_DIRTY_META,
8dcf2ff7 657 F2FS_INMEM_PAGES,
0f18b462 658 F2FS_DIRTY_IMETA,
39a53e0c
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659 NR_COUNT_TYPE,
660};
661
39a53e0c 662/*
e1c42045 663 * The below are the page types of bios used in submit_bio().
39a53e0c
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664 * The available types are:
665 * DATA User data pages. It operates as async mode.
666 * NODE Node pages. It operates as async mode.
667 * META FS metadata pages such as SIT, NAT, CP.
668 * NR_PAGE_TYPE The number of page types.
669 * META_FLUSH Make sure the previous pages are written
670 * with waiting the bio's completion
671 * ... Only can be used with META.
672 */
7d5e5109 673#define PAGE_TYPE_OF_BIO(type) ((type) > META ? META : (type))
39a53e0c
JK
674enum page_type {
675 DATA,
676 NODE,
677 META,
678 NR_PAGE_TYPE,
679 META_FLUSH,
8ce67cb0
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680 INMEM, /* the below types are used by tracepoints only. */
681 INMEM_DROP,
28bc106b 682 INMEM_REVOKE,
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683 IPU,
684 OPU,
39a53e0c
JK
685};
686
458e6197 687struct f2fs_io_info {
05ca3632 688 struct f2fs_sb_info *sbi; /* f2fs_sb_info pointer */
7e8f2308 689 enum page_type type; /* contains DATA/NODE/META/META_FLUSH */
04d328de
MC
690 int op; /* contains REQ_OP_ */
691 int op_flags; /* rq_flag_bits */
7a9d7548 692 block_t new_blkaddr; /* new block address to be written */
28bc106b 693 block_t old_blkaddr; /* old block address before Cow */
05ca3632 694 struct page *page; /* page to be written */
4375a336 695 struct page *encrypted_page; /* encrypted page */
458e6197
JK
696};
697
04d328de 698#define is_read_io(rw) (rw == READ)
1ff7bd3b 699struct f2fs_bio_info {
458e6197 700 struct f2fs_sb_info *sbi; /* f2fs superblock */
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701 struct bio *bio; /* bios to merge */
702 sector_t last_block_in_bio; /* last block number */
458e6197 703 struct f2fs_io_info fio; /* store buffered io info. */
df0f8dc0 704 struct rw_semaphore io_rwsem; /* blocking op for bio */
1ff7bd3b
JK
705};
706
c227f912
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707enum inode_type {
708 DIR_INODE, /* for dirty dir inode */
709 FILE_INODE, /* for dirty regular/symlink inode */
0f18b462 710 DIRTY_META, /* for all dirtied inode metadata */
c227f912
CY
711 NR_INODE_TYPE,
712};
713
67298804
CY
714/* for inner inode cache management */
715struct inode_management {
716 struct radix_tree_root ino_root; /* ino entry array */
717 spinlock_t ino_lock; /* for ino entry lock */
718 struct list_head ino_list; /* inode list head */
719 unsigned long ino_num; /* number of entries */
720};
721
caf0047e
CY
722/* For s_flag in struct f2fs_sb_info */
723enum {
724 SBI_IS_DIRTY, /* dirty flag for checkpoint */
725 SBI_IS_CLOSE, /* specify unmounting */
726 SBI_NEED_FSCK, /* need fsck.f2fs to fix */
727 SBI_POR_DOING, /* recovery is doing or not */
df728b0f 728 SBI_NEED_SB_WRITE, /* need to recover superblock */
bbf156f7 729 SBI_NEED_CP, /* need to checkpoint */
caf0047e
CY
730};
731
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732enum {
733 CP_TIME,
d0239e1b 734 REQ_TIME,
6beceb54
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735 MAX_TIME,
736};
737
b5a7aef1
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738#ifdef CONFIG_F2FS_FS_ENCRYPTION
739#define F2FS_KEY_DESC_PREFIX "f2fs:"
740#define F2FS_KEY_DESC_PREFIX_SIZE 5
741#endif
39a53e0c
JK
742struct f2fs_sb_info {
743 struct super_block *sb; /* pointer to VFS super block */
5e176d54 744 struct proc_dir_entry *s_proc; /* proc entry */
39a53e0c 745 struct f2fs_super_block *raw_super; /* raw super block pointer */
e8240f65 746 int valid_super_block; /* valid super block no */
fadb2fb8 747 unsigned long s_flag; /* flags for sbi */
39a53e0c 748
b5a7aef1
JK
749#ifdef CONFIG_F2FS_FS_ENCRYPTION
750 u8 key_prefix[F2FS_KEY_DESC_PREFIX_SIZE];
751 u8 key_prefix_size;
752#endif
39a53e0c
JK
753 /* for node-related operations */
754 struct f2fs_nm_info *nm_info; /* node manager */
755 struct inode *node_inode; /* cache node blocks */
756
757 /* for segment-related operations */
758 struct f2fs_sm_info *sm_info; /* segment manager */
1ff7bd3b
JK
759
760 /* for bio operations */
924b720b 761 struct f2fs_bio_info read_io; /* for read bios */
1ff7bd3b 762 struct f2fs_bio_info write_io[NR_PAGE_TYPE]; /* for write bios */
7dfeaa32 763 struct mutex wio_mutex[NODE + 1]; /* bio ordering for NODE/DATA */
39a53e0c
JK
764
765 /* for checkpoint */
766 struct f2fs_checkpoint *ckpt; /* raw checkpoint pointer */
aaec2b1d 767 spinlock_t cp_lock; /* for flag in ckpt */
39a53e0c 768 struct inode *meta_inode; /* cache meta blocks */
39936837 769 struct mutex cp_mutex; /* checkpoint procedure lock */
b873b798 770 struct rw_semaphore cp_rwsem; /* blocking FS operations */
b3582c68 771 struct rw_semaphore node_write; /* locking node writes */
fb51b5ef 772 wait_queue_head_t cp_wait;
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773 unsigned long last_time[MAX_TIME]; /* to store time in jiffies */
774 long interval_time[MAX_TIME]; /* to store thresholds */
39a53e0c 775
67298804 776 struct inode_management im[MAX_INO_ENTRY]; /* manage inode cache */
6451e041
JK
777
778 /* for orphan inode, use 0'th array */
0d47c1ad 779 unsigned int max_orphans; /* max orphan inodes */
39a53e0c 780
c227f912
CY
781 /* for inode management */
782 struct list_head inode_list[NR_INODE_TYPE]; /* dirty inode list */
783 spinlock_t inode_lock[NR_INODE_TYPE]; /* for dirty inode list lock */
39a53e0c 784
13054c54
CY
785 /* for extent tree cache */
786 struct radix_tree_root extent_tree_root;/* cache extent cache entries */
787 struct rw_semaphore extent_tree_lock; /* locking extent radix tree */
788 struct list_head extent_list; /* lru list for shrinker */
789 spinlock_t extent_lock; /* locking extent lru list */
7441ccef 790 atomic_t total_ext_tree; /* extent tree count */
137d09f0 791 struct list_head zombie_list; /* extent zombie tree list */
74fd8d99 792 atomic_t total_zombie_tree; /* extent zombie tree count */
13054c54
CY
793 atomic_t total_ext_node; /* extent info count */
794
e1c42045 795 /* basic filesystem units */
39a53e0c
JK
796 unsigned int log_sectors_per_block; /* log2 sectors per block */
797 unsigned int log_blocksize; /* log2 block size */
798 unsigned int blocksize; /* block size */
799 unsigned int root_ino_num; /* root inode number*/
800 unsigned int node_ino_num; /* node inode number*/
801 unsigned int meta_ino_num; /* meta inode number*/
802 unsigned int log_blocks_per_seg; /* log2 blocks per segment */
803 unsigned int blocks_per_seg; /* blocks per segment */
804 unsigned int segs_per_sec; /* segments per section */
805 unsigned int secs_per_zone; /* sections per zone */
806 unsigned int total_sections; /* total section count */
807 unsigned int total_node_count; /* total node block count */
808 unsigned int total_valid_node_count; /* valid node block count */
e0afc4d6 809 loff_t max_file_blocks; /* max block index of file */
39a53e0c 810 int active_logs; /* # of active logs */
ab9fa662 811 int dir_level; /* directory level */
39a53e0c
JK
812
813 block_t user_block_count; /* # of user blocks */
814 block_t total_valid_block_count; /* # of valid blocks */
a66cdd98 815 block_t discard_blks; /* discard command candidats */
39a53e0c
JK
816 block_t last_valid_block_count; /* for recovery */
817 u32 s_next_generation; /* for NFS support */
f5730184 818 atomic_t nr_wb_bios; /* # of writeback bios */
523be8a6
JK
819
820 /* # of pages, see count_type */
821 struct percpu_counter nr_pages[NR_COUNT_TYPE];
41382ec4
JK
822 /* # of allocated blocks */
823 struct percpu_counter alloc_valid_block_count;
39a53e0c 824
513c5f37
JK
825 /* valid inode count */
826 struct percpu_counter total_valid_inode_count;
827
39a53e0c
JK
828 struct f2fs_mount_info mount_opt; /* mount options */
829
830 /* for cleaning operations */
831 struct mutex gc_mutex; /* mutex for GC */
832 struct f2fs_gc_kthread *gc_thread; /* GC thread */
5ec4e49f 833 unsigned int cur_victim_sec; /* current victim section num */
39a53e0c 834
b1c57c1c
JK
835 /* maximum # of trials to find a victim segment for SSR and GC */
836 unsigned int max_victim_search;
837
39a53e0c
JK
838 /*
839 * for stat information.
840 * one is for the LFS mode, and the other is for the SSR mode.
841 */
35b09d82 842#ifdef CONFIG_F2FS_STAT_FS
39a53e0c
JK
843 struct f2fs_stat_info *stat_info; /* FS status information */
844 unsigned int segment_count[2]; /* # of allocated segments */
845 unsigned int block_count[2]; /* # of allocated blocks */
b9a2c252 846 atomic_t inplace_count; /* # of inplace update */
5b7ee374
CY
847 atomic64_t total_hit_ext; /* # of lookup extent cache */
848 atomic64_t read_hit_rbtree; /* # of hit rbtree extent node */
849 atomic64_t read_hit_largest; /* # of hit largest extent node */
850 atomic64_t read_hit_cached; /* # of hit cached extent node */
d5e8f6c9 851 atomic_t inline_xattr; /* # of inline_xattr inodes */
03e14d52
CY
852 atomic_t inline_inode; /* # of inline_data inodes */
853 atomic_t inline_dir; /* # of inline_dentry inodes */
39a53e0c 854 int bg_gc; /* background gc calls */
33fbd510 855 unsigned int ndirty_inode[NR_INODE_TYPE]; /* # of dirty inodes */
35b09d82
NJ
856#endif
857 unsigned int last_victim[2]; /* last victim segment # */
39a53e0c 858 spinlock_t stat_lock; /* lock for stat operations */
b59d0bae
NJ
859
860 /* For sysfs suppport */
861 struct kobject s_kobj;
862 struct completion s_kobj_unregister;
2658e50d
JK
863
864 /* For shrinker support */
865 struct list_head s_list;
866 struct mutex umount_mutex;
867 unsigned int shrinker_run_no;
8f1dbbbb
SL
868
869 /* For write statistics */
870 u64 sectors_written_start;
871 u64 kbytes_written;
43b6573b
KM
872
873 /* Reference to checksum algorithm driver via cryptoapi */
874 struct crypto_shash *s_chksum_driver;
1ecc0c5c
CY
875
876 /* For fault injection */
877#ifdef CONFIG_F2FS_FAULT_INJECTION
878 struct f2fs_fault_info fault_info;
879#endif
39a53e0c
JK
880};
881
1ecc0c5c
CY
882#ifdef CONFIG_F2FS_FAULT_INJECTION
883static inline bool time_to_inject(struct f2fs_sb_info *sbi, int type)
884{
885 struct f2fs_fault_info *ffi = &sbi->fault_info;
886
887 if (!ffi->inject_rate)
888 return false;
889
890 if (!IS_FAULT_SET(ffi, type))
891 return false;
892
893 atomic_inc(&ffi->inject_ops);
894 if (atomic_read(&ffi->inject_ops) >= ffi->inject_rate) {
895 atomic_set(&ffi->inject_ops, 0);
896 printk("%sF2FS-fs : inject %s in %pF\n",
897 KERN_INFO,
898 fault_name[type],
899 __builtin_return_address(0));
900 return true;
901 }
902 return false;
903}
904#endif
905
8f1dbbbb
SL
906/* For write statistics. Suppose sector size is 512 bytes,
907 * and the return value is in kbytes. s is of struct f2fs_sb_info.
908 */
909#define BD_PART_WRITTEN(s) \
910(((u64)part_stat_read(s->sb->s_bdev->bd_part, sectors[1]) - \
911 s->sectors_written_start) >> 1)
912
6beceb54
JK
913static inline void f2fs_update_time(struct f2fs_sb_info *sbi, int type)
914{
915 sbi->last_time[type] = jiffies;
916}
917
918static inline bool f2fs_time_over(struct f2fs_sb_info *sbi, int type)
919{
920 struct timespec ts = {sbi->interval_time[type], 0};
921 unsigned long interval = timespec_to_jiffies(&ts);
922
923 return time_after(jiffies, sbi->last_time[type] + interval);
924}
925
d0239e1b
JK
926static inline bool is_idle(struct f2fs_sb_info *sbi)
927{
928 struct block_device *bdev = sbi->sb->s_bdev;
929 struct request_queue *q = bdev_get_queue(bdev);
930 struct request_list *rl = &q->root_rl;
931
932 if (rl->count[BLK_RW_SYNC] || rl->count[BLK_RW_ASYNC])
933 return 0;
934
935 return f2fs_time_over(sbi, REQ_TIME);
936}
937
39a53e0c
JK
938/*
939 * Inline functions
940 */
43b6573b
KM
941static inline u32 f2fs_crc32(struct f2fs_sb_info *sbi, const void *address,
942 unsigned int length)
943{
944 SHASH_DESC_ON_STACK(shash, sbi->s_chksum_driver);
945 u32 *ctx = (u32 *)shash_desc_ctx(shash);
946 int err;
947
948 shash->tfm = sbi->s_chksum_driver;
949 shash->flags = 0;
950 *ctx = F2FS_SUPER_MAGIC;
951
952 err = crypto_shash_update(shash, address, length);
953 BUG_ON(err);
954
955 return *ctx;
956}
957
958static inline bool f2fs_crc_valid(struct f2fs_sb_info *sbi, __u32 blk_crc,
959 void *buf, size_t buf_size)
960{
961 return f2fs_crc32(sbi, buf, buf_size) == blk_crc;
962}
963
39a53e0c
JK
964static inline struct f2fs_inode_info *F2FS_I(struct inode *inode)
965{
966 return container_of(inode, struct f2fs_inode_info, vfs_inode);
967}
968
969static inline struct f2fs_sb_info *F2FS_SB(struct super_block *sb)
970{
971 return sb->s_fs_info;
972}
973
4081363f
JK
974static inline struct f2fs_sb_info *F2FS_I_SB(struct inode *inode)
975{
976 return F2FS_SB(inode->i_sb);
977}
978
979static inline struct f2fs_sb_info *F2FS_M_SB(struct address_space *mapping)
980{
981 return F2FS_I_SB(mapping->host);
982}
983
984static inline struct f2fs_sb_info *F2FS_P_SB(struct page *page)
985{
986 return F2FS_M_SB(page->mapping);
987}
988
39a53e0c
JK
989static inline struct f2fs_super_block *F2FS_RAW_SUPER(struct f2fs_sb_info *sbi)
990{
991 return (struct f2fs_super_block *)(sbi->raw_super);
992}
993
994static inline struct f2fs_checkpoint *F2FS_CKPT(struct f2fs_sb_info *sbi)
995{
996 return (struct f2fs_checkpoint *)(sbi->ckpt);
997}
998
45590710
GZ
999static inline struct f2fs_node *F2FS_NODE(struct page *page)
1000{
1001 return (struct f2fs_node *)page_address(page);
1002}
1003
58bfaf44
JK
1004static inline struct f2fs_inode *F2FS_INODE(struct page *page)
1005{
1006 return &((struct f2fs_node *)page_address(page))->i;
1007}
1008
39a53e0c
JK
1009static inline struct f2fs_nm_info *NM_I(struct f2fs_sb_info *sbi)
1010{
1011 return (struct f2fs_nm_info *)(sbi->nm_info);
1012}
1013
1014static inline struct f2fs_sm_info *SM_I(struct f2fs_sb_info *sbi)
1015{
1016 return (struct f2fs_sm_info *)(sbi->sm_info);
1017}
1018
1019static inline struct sit_info *SIT_I(struct f2fs_sb_info *sbi)
1020{
1021 return (struct sit_info *)(SM_I(sbi)->sit_info);
1022}
1023
1024static inline struct free_segmap_info *FREE_I(struct f2fs_sb_info *sbi)
1025{
1026 return (struct free_segmap_info *)(SM_I(sbi)->free_info);
1027}
1028
1029static inline struct dirty_seglist_info *DIRTY_I(struct f2fs_sb_info *sbi)
1030{
1031 return (struct dirty_seglist_info *)(SM_I(sbi)->dirty_info);
1032}
1033
9df27d98
GZ
1034static inline struct address_space *META_MAPPING(struct f2fs_sb_info *sbi)
1035{
1036 return sbi->meta_inode->i_mapping;
1037}
1038
4ef51a8f
JK
1039static inline struct address_space *NODE_MAPPING(struct f2fs_sb_info *sbi)
1040{
1041 return sbi->node_inode->i_mapping;
1042}
1043
caf0047e
CY
1044static inline bool is_sbi_flag_set(struct f2fs_sb_info *sbi, unsigned int type)
1045{
fadb2fb8 1046 return test_bit(type, &sbi->s_flag);
caf0047e
CY
1047}
1048
1049static inline void set_sbi_flag(struct f2fs_sb_info *sbi, unsigned int type)
39a53e0c 1050{
fadb2fb8 1051 set_bit(type, &sbi->s_flag);
39a53e0c
JK
1052}
1053
caf0047e 1054static inline void clear_sbi_flag(struct f2fs_sb_info *sbi, unsigned int type)
39a53e0c 1055{
fadb2fb8 1056 clear_bit(type, &sbi->s_flag);
39a53e0c
JK
1057}
1058
d71b5564
JK
1059static inline unsigned long long cur_cp_version(struct f2fs_checkpoint *cp)
1060{
1061 return le64_to_cpu(cp->checkpoint_ver);
1062}
1063
aaec2b1d 1064static inline bool __is_set_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
25ca923b
JK
1065{
1066 unsigned int ckpt_flags = le32_to_cpu(cp->ckpt_flags);
aaec2b1d 1067
25ca923b
JK
1068 return ckpt_flags & f;
1069}
1070
aaec2b1d 1071static inline bool is_set_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
25ca923b 1072{
aaec2b1d
CY
1073 return __is_set_ckpt_flags(F2FS_CKPT(sbi), f);
1074}
1075
1076static inline void __set_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
1077{
1078 unsigned int ckpt_flags;
1079
1080 ckpt_flags = le32_to_cpu(cp->ckpt_flags);
25ca923b
JK
1081 ckpt_flags |= f;
1082 cp->ckpt_flags = cpu_to_le32(ckpt_flags);
1083}
1084
aaec2b1d 1085static inline void set_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
25ca923b 1086{
aaec2b1d
CY
1087 spin_lock(&sbi->cp_lock);
1088 __set_ckpt_flags(F2FS_CKPT(sbi), f);
1089 spin_unlock(&sbi->cp_lock);
1090}
1091
1092static inline void __clear_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
1093{
1094 unsigned int ckpt_flags;
1095
1096 ckpt_flags = le32_to_cpu(cp->ckpt_flags);
25ca923b
JK
1097 ckpt_flags &= (~f);
1098 cp->ckpt_flags = cpu_to_le32(ckpt_flags);
1099}
1100
aaec2b1d
CY
1101static inline void clear_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
1102{
1103 spin_lock(&sbi->cp_lock);
1104 __clear_ckpt_flags(F2FS_CKPT(sbi), f);
1105 spin_unlock(&sbi->cp_lock);
1106}
1107
3e025740
JK
1108static inline bool f2fs_discard_en(struct f2fs_sb_info *sbi)
1109{
1110 struct request_queue *q = bdev_get_queue(sbi->sb->s_bdev);
1111
1112 return blk_queue_discard(q);
1113}
1114
e479556b 1115static inline void f2fs_lock_op(struct f2fs_sb_info *sbi)
39936837 1116{
b873b798 1117 down_read(&sbi->cp_rwsem);
39936837
JK
1118}
1119
e479556b 1120static inline void f2fs_unlock_op(struct f2fs_sb_info *sbi)
39a53e0c 1121{
b873b798 1122 up_read(&sbi->cp_rwsem);
39a53e0c
JK
1123}
1124
e479556b 1125static inline void f2fs_lock_all(struct f2fs_sb_info *sbi)
39a53e0c 1126{
b873b798 1127 down_write(&sbi->cp_rwsem);
39936837
JK
1128}
1129
e479556b 1130static inline void f2fs_unlock_all(struct f2fs_sb_info *sbi)
39936837 1131{
b873b798 1132 up_write(&sbi->cp_rwsem);
39a53e0c
JK
1133}
1134
119ee914
JK
1135static inline int __get_cp_reason(struct f2fs_sb_info *sbi)
1136{
1137 int reason = CP_SYNC;
1138
1139 if (test_opt(sbi, FASTBOOT))
1140 reason = CP_FASTBOOT;
1141 if (is_sbi_flag_set(sbi, SBI_IS_CLOSE))
1142 reason = CP_UMOUNT;
1143 return reason;
1144}
1145
1146static inline bool __remain_node_summaries(int reason)
1147{
1148 return (reason == CP_UMOUNT || reason == CP_FASTBOOT);
1149}
1150
1151static inline bool __exist_node_summaries(struct f2fs_sb_info *sbi)
1152{
aaec2b1d
CY
1153 return (is_set_ckpt_flags(sbi, CP_UMOUNT_FLAG) ||
1154 is_set_ckpt_flags(sbi, CP_FASTBOOT_FLAG));
119ee914
JK
1155}
1156
39a53e0c
JK
1157/*
1158 * Check whether the given nid is within node id range.
1159 */
064e0823 1160static inline int check_nid_range(struct f2fs_sb_info *sbi, nid_t nid)
39a53e0c 1161{
d6b7d4b3
CY
1162 if (unlikely(nid < F2FS_ROOT_INO(sbi)))
1163 return -EINVAL;
cfb271d4 1164 if (unlikely(nid >= NM_I(sbi)->max_nid))
064e0823
NJ
1165 return -EINVAL;
1166 return 0;
39a53e0c
JK
1167}
1168
1169#define F2FS_DEFAULT_ALLOCATED_BLOCKS 1
1170
1171/*
1172 * Check whether the inode has blocks or not
1173 */
1174static inline int F2FS_HAS_BLOCKS(struct inode *inode)
1175{
1176 if (F2FS_I(inode)->i_xattr_nid)
6c311ec6 1177 return inode->i_blocks > F2FS_DEFAULT_ALLOCATED_BLOCKS + 1;
39a53e0c 1178 else
6c311ec6 1179 return inode->i_blocks > F2FS_DEFAULT_ALLOCATED_BLOCKS;
39a53e0c
JK
1180}
1181
4bc8e9bc
CY
1182static inline bool f2fs_has_xattr_block(unsigned int ofs)
1183{
1184 return ofs == XATTR_NODE_OFFSET;
1185}
1186
8edd03c8 1187static inline void f2fs_i_blocks_write(struct inode *, blkcnt_t, bool);
39a53e0c 1188static inline bool inc_valid_block_count(struct f2fs_sb_info *sbi,
46008c6d 1189 struct inode *inode, blkcnt_t *count)
39a53e0c 1190{
dd11a5df 1191 blkcnt_t diff;
39a53e0c 1192
cb78942b 1193#ifdef CONFIG_F2FS_FAULT_INJECTION
1ecc0c5c 1194 if (time_to_inject(sbi, FAULT_BLOCK))
cb78942b 1195 return false;
cb78942b 1196#endif
dd11a5df
JK
1197 /*
1198 * let's increase this in prior to actual block count change in order
1199 * for f2fs_sync_file to avoid data races when deciding checkpoint.
1200 */
1201 percpu_counter_add(&sbi->alloc_valid_block_count, (*count));
1202
2555a2d5
JK
1203 spin_lock(&sbi->stat_lock);
1204 sbi->total_valid_block_count += (block_t)(*count);
1205 if (unlikely(sbi->total_valid_block_count > sbi->user_block_count)) {
dd11a5df
JK
1206 diff = sbi->total_valid_block_count - sbi->user_block_count;
1207 *count -= diff;
2555a2d5 1208 sbi->total_valid_block_count = sbi->user_block_count;
46008c6d
CY
1209 if (!*count) {
1210 spin_unlock(&sbi->stat_lock);
dd11a5df 1211 percpu_counter_sub(&sbi->alloc_valid_block_count, diff);
46008c6d
CY
1212 return false;
1213 }
39a53e0c 1214 }
39a53e0c 1215 spin_unlock(&sbi->stat_lock);
41382ec4 1216
2555a2d5 1217 f2fs_i_blocks_write(inode, *count, true);
39a53e0c
JK
1218 return true;
1219}
1220
da19b0dc 1221static inline void dec_valid_block_count(struct f2fs_sb_info *sbi,
39a53e0c
JK
1222 struct inode *inode,
1223 blkcnt_t count)
1224{
1225 spin_lock(&sbi->stat_lock);
9850cf4a
JK
1226 f2fs_bug_on(sbi, sbi->total_valid_block_count < (block_t) count);
1227 f2fs_bug_on(sbi, inode->i_blocks < count);
39a53e0c
JK
1228 sbi->total_valid_block_count -= (block_t)count;
1229 spin_unlock(&sbi->stat_lock);
2555a2d5 1230 f2fs_i_blocks_write(inode, count, false);
39a53e0c
JK
1231}
1232
1233static inline void inc_page_count(struct f2fs_sb_info *sbi, int count_type)
1234{
523be8a6 1235 percpu_counter_inc(&sbi->nr_pages[count_type]);
7c4abcbe
CY
1236
1237 if (count_type == F2FS_DIRTY_DATA || count_type == F2FS_INMEM_PAGES)
1238 return;
1239
caf0047e 1240 set_sbi_flag(sbi, SBI_IS_DIRTY);
39a53e0c
JK
1241}
1242
a7ffdbe2 1243static inline void inode_inc_dirty_pages(struct inode *inode)
39a53e0c 1244{
1beba1b3 1245 percpu_counter_inc(&F2FS_I(inode)->dirty_pages);
c227f912
CY
1246 inc_page_count(F2FS_I_SB(inode), S_ISDIR(inode->i_mode) ?
1247 F2FS_DIRTY_DENTS : F2FS_DIRTY_DATA);
39a53e0c
JK
1248}
1249
1250static inline void dec_page_count(struct f2fs_sb_info *sbi, int count_type)
1251{
523be8a6 1252 percpu_counter_dec(&sbi->nr_pages[count_type]);
39a53e0c
JK
1253}
1254
a7ffdbe2 1255static inline void inode_dec_dirty_pages(struct inode *inode)
39a53e0c 1256{
5ac9f36f
CY
1257 if (!S_ISDIR(inode->i_mode) && !S_ISREG(inode->i_mode) &&
1258 !S_ISLNK(inode->i_mode))
1fe54f9d
JK
1259 return;
1260
1beba1b3 1261 percpu_counter_dec(&F2FS_I(inode)->dirty_pages);
c227f912
CY
1262 dec_page_count(F2FS_I_SB(inode), S_ISDIR(inode->i_mode) ?
1263 F2FS_DIRTY_DENTS : F2FS_DIRTY_DATA);
39a53e0c
JK
1264}
1265
523be8a6 1266static inline s64 get_pages(struct f2fs_sb_info *sbi, int count_type)
39a53e0c 1267{
523be8a6 1268 return percpu_counter_sum_positive(&sbi->nr_pages[count_type]);
39a53e0c
JK
1269}
1270
1beba1b3 1271static inline s64 get_dirty_pages(struct inode *inode)
f8b2c1f9 1272{
1beba1b3 1273 return percpu_counter_sum_positive(&F2FS_I(inode)->dirty_pages);
f8b2c1f9
JK
1274}
1275
5ac206cf
NJ
1276static inline int get_blocktype_secs(struct f2fs_sb_info *sbi, int block_type)
1277{
3519e3f9 1278 unsigned int pages_per_sec = sbi->segs_per_sec * sbi->blocks_per_seg;
523be8a6
JK
1279 unsigned int segs = (get_pages(sbi, block_type) + pages_per_sec - 1) >>
1280 sbi->log_blocks_per_seg;
1281
1282 return segs / sbi->segs_per_sec;
5ac206cf
NJ
1283}
1284
39a53e0c
JK
1285static inline block_t valid_user_blocks(struct f2fs_sb_info *sbi)
1286{
8b8343fa 1287 return sbi->total_valid_block_count;
39a53e0c
JK
1288}
1289
f83a2584
YH
1290static inline block_t discard_blocks(struct f2fs_sb_info *sbi)
1291{
1292 return sbi->discard_blks;
1293}
1294
39a53e0c
JK
1295static inline unsigned long __bitmap_size(struct f2fs_sb_info *sbi, int flag)
1296{
1297 struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
1298
1299 /* return NAT or SIT bitmap */
1300 if (flag == NAT_BITMAP)
1301 return le32_to_cpu(ckpt->nat_ver_bitmap_bytesize);
1302 else if (flag == SIT_BITMAP)
1303 return le32_to_cpu(ckpt->sit_ver_bitmap_bytesize);
1304
1305 return 0;
1306}
1307
55141486
WL
1308static inline block_t __cp_payload(struct f2fs_sb_info *sbi)
1309{
1310 return le32_to_cpu(F2FS_RAW_SUPER(sbi)->cp_payload);
1311}
1312
39a53e0c
JK
1313static inline void *__bitmap_ptr(struct f2fs_sb_info *sbi, int flag)
1314{
1315 struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
1dbe4152
CL
1316 int offset;
1317
55141486 1318 if (__cp_payload(sbi) > 0) {
1dbe4152
CL
1319 if (flag == NAT_BITMAP)
1320 return &ckpt->sit_nat_version_bitmap;
1321 else
65b85ccc 1322 return (unsigned char *)ckpt + F2FS_BLKSIZE;
1dbe4152
CL
1323 } else {
1324 offset = (flag == NAT_BITMAP) ?
25ca923b 1325 le32_to_cpu(ckpt->sit_ver_bitmap_bytesize) : 0;
1dbe4152
CL
1326 return &ckpt->sit_nat_version_bitmap + offset;
1327 }
39a53e0c
JK
1328}
1329
1330static inline block_t __start_cp_addr(struct f2fs_sb_info *sbi)
1331{
1332 block_t start_addr;
1333 struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
d71b5564 1334 unsigned long long ckpt_version = cur_cp_version(ckpt);
39a53e0c 1335
25ca923b 1336 start_addr = le32_to_cpu(F2FS_RAW_SUPER(sbi)->cp_blkaddr);
39a53e0c
JK
1337
1338 /*
1339 * odd numbered checkpoint should at cp segment 0
e1c42045 1340 * and even segment must be at cp segment 1
39a53e0c
JK
1341 */
1342 if (!(ckpt_version & 1))
1343 start_addr += sbi->blocks_per_seg;
1344
1345 return start_addr;
1346}
1347
1348static inline block_t __start_sum_addr(struct f2fs_sb_info *sbi)
1349{
1350 return le32_to_cpu(F2FS_CKPT(sbi)->cp_pack_start_sum);
1351}
1352
1353static inline bool inc_valid_node_count(struct f2fs_sb_info *sbi,
ef86d709 1354 struct inode *inode)
39a53e0c
JK
1355{
1356 block_t valid_block_count;
1357 unsigned int valid_node_count;
1358
1359 spin_lock(&sbi->stat_lock);
1360
ef86d709 1361 valid_block_count = sbi->total_valid_block_count + 1;
cfb271d4 1362 if (unlikely(valid_block_count > sbi->user_block_count)) {
39a53e0c
JK
1363 spin_unlock(&sbi->stat_lock);
1364 return false;
1365 }
1366
ef86d709 1367 valid_node_count = sbi->total_valid_node_count + 1;
cfb271d4 1368 if (unlikely(valid_node_count > sbi->total_node_count)) {
39a53e0c
JK
1369 spin_unlock(&sbi->stat_lock);
1370 return false;
1371 }
1372
1373 if (inode)
8edd03c8 1374 f2fs_i_blocks_write(inode, 1, true);
ef86d709 1375
ef86d709
GZ
1376 sbi->total_valid_node_count++;
1377 sbi->total_valid_block_count++;
39a53e0c
JK
1378 spin_unlock(&sbi->stat_lock);
1379
41382ec4 1380 percpu_counter_inc(&sbi->alloc_valid_block_count);
39a53e0c
JK
1381 return true;
1382}
1383
1384static inline void dec_valid_node_count(struct f2fs_sb_info *sbi,
ef86d709 1385 struct inode *inode)
39a53e0c
JK
1386{
1387 spin_lock(&sbi->stat_lock);
1388
9850cf4a
JK
1389 f2fs_bug_on(sbi, !sbi->total_valid_block_count);
1390 f2fs_bug_on(sbi, !sbi->total_valid_node_count);
1391 f2fs_bug_on(sbi, !inode->i_blocks);
39a53e0c 1392
8edd03c8 1393 f2fs_i_blocks_write(inode, 1, false);
ef86d709
GZ
1394 sbi->total_valid_node_count--;
1395 sbi->total_valid_block_count--;
39a53e0c
JK
1396
1397 spin_unlock(&sbi->stat_lock);
1398}
1399
1400static inline unsigned int valid_node_count(struct f2fs_sb_info *sbi)
1401{
8b8343fa 1402 return sbi->total_valid_node_count;
39a53e0c
JK
1403}
1404
1405static inline void inc_valid_inode_count(struct f2fs_sb_info *sbi)
1406{
513c5f37 1407 percpu_counter_inc(&sbi->total_valid_inode_count);
39a53e0c
JK
1408}
1409
0e80220a 1410static inline void dec_valid_inode_count(struct f2fs_sb_info *sbi)
39a53e0c 1411{
513c5f37 1412 percpu_counter_dec(&sbi->total_valid_inode_count);
39a53e0c
JK
1413}
1414
513c5f37 1415static inline s64 valid_inode_count(struct f2fs_sb_info *sbi)
39a53e0c 1416{
513c5f37 1417 return percpu_counter_sum_positive(&sbi->total_valid_inode_count);
39a53e0c
JK
1418}
1419
a56c7c6f
JK
1420static inline struct page *f2fs_grab_cache_page(struct address_space *mapping,
1421 pgoff_t index, bool for_write)
1422{
c41f3cc3
JK
1423#ifdef CONFIG_F2FS_FAULT_INJECTION
1424 struct page *page = find_lock_page(mapping, index);
1425 if (page)
1426 return page;
1427
1ecc0c5c 1428 if (time_to_inject(F2FS_M_SB(mapping), FAULT_PAGE_ALLOC))
c41f3cc3
JK
1429 return NULL;
1430#endif
a56c7c6f
JK
1431 if (!for_write)
1432 return grab_cache_page(mapping, index);
1433 return grab_cache_page_write_begin(mapping, index, AOP_FLAG_NOFS);
1434}
1435
6e2c64ad
JK
1436static inline void f2fs_copy_page(struct page *src, struct page *dst)
1437{
1438 char *src_kaddr = kmap(src);
1439 char *dst_kaddr = kmap(dst);
1440
1441 memcpy(dst_kaddr, src_kaddr, PAGE_SIZE);
1442 kunmap(dst);
1443 kunmap(src);
1444}
1445
39a53e0c
JK
1446static inline void f2fs_put_page(struct page *page, int unlock)
1447{
031fa8cc 1448 if (!page)
39a53e0c
JK
1449 return;
1450
1451 if (unlock) {
9850cf4a 1452 f2fs_bug_on(F2FS_P_SB(page), !PageLocked(page));
39a53e0c
JK
1453 unlock_page(page);
1454 }
09cbfeaf 1455 put_page(page);
39a53e0c
JK
1456}
1457
1458static inline void f2fs_put_dnode(struct dnode_of_data *dn)
1459{
1460 if (dn->node_page)
1461 f2fs_put_page(dn->node_page, 1);
1462 if (dn->inode_page && dn->node_page != dn->inode_page)
1463 f2fs_put_page(dn->inode_page, 0);
1464 dn->node_page = NULL;
1465 dn->inode_page = NULL;
1466}
1467
1468static inline struct kmem_cache *f2fs_kmem_cache_create(const char *name,
e8512d2e 1469 size_t size)
39a53e0c 1470{
e8512d2e 1471 return kmem_cache_create(name, size, 0, SLAB_RECLAIM_ACCOUNT, NULL);
39a53e0c
JK
1472}
1473
7bd59381
GZ
1474static inline void *f2fs_kmem_cache_alloc(struct kmem_cache *cachep,
1475 gfp_t flags)
1476{
1477 void *entry;
7bd59381 1478
80c54505
JK
1479 entry = kmem_cache_alloc(cachep, flags);
1480 if (!entry)
1481 entry = kmem_cache_alloc(cachep, flags | __GFP_NOFAIL);
7bd59381
GZ
1482 return entry;
1483}
1484
740432f8
JK
1485static inline struct bio *f2fs_bio_alloc(int npages)
1486{
1487 struct bio *bio;
1488
1489 /* No failure on bio allocation */
740432f8 1490 bio = bio_alloc(GFP_NOIO, npages);
80c54505
JK
1491 if (!bio)
1492 bio = bio_alloc(GFP_NOIO | __GFP_NOFAIL, npages);
740432f8
JK
1493 return bio;
1494}
1495
9be32d72
JK
1496static inline void f2fs_radix_tree_insert(struct radix_tree_root *root,
1497 unsigned long index, void *item)
1498{
1499 while (radix_tree_insert(root, index, item))
1500 cond_resched();
1501}
1502
39a53e0c
JK
1503#define RAW_IS_INODE(p) ((p)->footer.nid == (p)->footer.ino)
1504
1505static inline bool IS_INODE(struct page *page)
1506{
45590710 1507 struct f2fs_node *p = F2FS_NODE(page);
39a53e0c
JK
1508 return RAW_IS_INODE(p);
1509}
1510
1511static inline __le32 *blkaddr_in_node(struct f2fs_node *node)
1512{
1513 return RAW_IS_INODE(node) ? node->i.i_addr : node->dn.addr;
1514}
1515
1516static inline block_t datablock_addr(struct page *node_page,
1517 unsigned int offset)
1518{
1519 struct f2fs_node *raw_node;
1520 __le32 *addr_array;
45590710 1521 raw_node = F2FS_NODE(node_page);
39a53e0c
JK
1522 addr_array = blkaddr_in_node(raw_node);
1523 return le32_to_cpu(addr_array[offset]);
1524}
1525
1526static inline int f2fs_test_bit(unsigned int nr, char *addr)
1527{
1528 int mask;
1529
1530 addr += (nr >> 3);
1531 mask = 1 << (7 - (nr & 0x07));
1532 return mask & *addr;
1533}
1534
a66cdd98
JK
1535static inline void f2fs_set_bit(unsigned int nr, char *addr)
1536{
1537 int mask;
1538
1539 addr += (nr >> 3);
1540 mask = 1 << (7 - (nr & 0x07));
1541 *addr |= mask;
1542}
1543
1544static inline void f2fs_clear_bit(unsigned int nr, char *addr)
1545{
1546 int mask;
1547
1548 addr += (nr >> 3);
1549 mask = 1 << (7 - (nr & 0x07));
1550 *addr &= ~mask;
1551}
1552
52aca074 1553static inline int f2fs_test_and_set_bit(unsigned int nr, char *addr)
39a53e0c
JK
1554{
1555 int mask;
1556 int ret;
1557
1558 addr += (nr >> 3);
1559 mask = 1 << (7 - (nr & 0x07));
1560 ret = mask & *addr;
1561 *addr |= mask;
1562 return ret;
1563}
1564
52aca074 1565static inline int f2fs_test_and_clear_bit(unsigned int nr, char *addr)
39a53e0c
JK
1566{
1567 int mask;
1568 int ret;
1569
1570 addr += (nr >> 3);
1571 mask = 1 << (7 - (nr & 0x07));
1572 ret = mask & *addr;
1573 *addr &= ~mask;
1574 return ret;
1575}
1576
c6ac4c0e
GZ
1577static inline void f2fs_change_bit(unsigned int nr, char *addr)
1578{
1579 int mask;
1580
1581 addr += (nr >> 3);
1582 mask = 1 << (7 - (nr & 0x07));
1583 *addr ^= mask;
1584}
1585
39a53e0c
JK
1586/* used for f2fs_inode_info->flags */
1587enum {
1588 FI_NEW_INODE, /* indicate newly allocated inode */
b3783873 1589 FI_DIRTY_INODE, /* indicate inode is dirty or not */
26de9b11 1590 FI_AUTO_RECOVER, /* indicate inode is recoverable */
ed57c27f 1591 FI_DIRTY_DIR, /* indicate directory has dirty pages */
39a53e0c
JK
1592 FI_INC_LINK, /* need to increment i_nlink */
1593 FI_ACL_MODE, /* indicate acl mode */
1594 FI_NO_ALLOC, /* should not allocate any blocks */
c9b63bd0 1595 FI_FREE_NID, /* free allocated nide */
c11abd1a 1596 FI_NO_EXTENT, /* not to use the extent cache */
444c580f 1597 FI_INLINE_XATTR, /* used for inline xattr */
1001b347 1598 FI_INLINE_DATA, /* used for inline data*/
34d67deb 1599 FI_INLINE_DENTRY, /* used for inline dentry */
fff04f90
JK
1600 FI_APPEND_WRITE, /* inode has appended data */
1601 FI_UPDATE_WRITE, /* inode has in-place-update data */
88b88a66
JK
1602 FI_NEED_IPU, /* used for ipu per file */
1603 FI_ATOMIC_FILE, /* indicate atomic file */
02a1335f 1604 FI_VOLATILE_FILE, /* indicate volatile file */
3c6c2beb 1605 FI_FIRST_BLOCK_WRITTEN, /* indicate #0 data block was written */
1e84371f 1606 FI_DROP_CACHE, /* drop dirty page cache */
b3d208f9 1607 FI_DATA_EXIST, /* indicate data exists */
510022a8 1608 FI_INLINE_DOTS, /* indicate inline dot dentries */
d323d005 1609 FI_DO_DEFRAG, /* indicate defragment is running */
c227f912 1610 FI_DIRTY_FILE, /* indicate regular/symlink has dirty pages */
39a53e0c
JK
1611};
1612
205b9822
JK
1613static inline void __mark_inode_dirty_flag(struct inode *inode,
1614 int flag, bool set)
1615{
1616 switch (flag) {
1617 case FI_INLINE_XATTR:
1618 case FI_INLINE_DATA:
1619 case FI_INLINE_DENTRY:
1620 if (set)
1621 return;
1622 case FI_DATA_EXIST:
1623 case FI_INLINE_DOTS:
b56ab837 1624 f2fs_mark_inode_dirty_sync(inode);
205b9822
JK
1625 }
1626}
1627
91942321 1628static inline void set_inode_flag(struct inode *inode, int flag)
39a53e0c 1629{
91942321
JK
1630 if (!test_bit(flag, &F2FS_I(inode)->flags))
1631 set_bit(flag, &F2FS_I(inode)->flags);
205b9822 1632 __mark_inode_dirty_flag(inode, flag, true);
39a53e0c
JK
1633}
1634
91942321 1635static inline int is_inode_flag_set(struct inode *inode, int flag)
39a53e0c 1636{
91942321 1637 return test_bit(flag, &F2FS_I(inode)->flags);
39a53e0c
JK
1638}
1639
91942321 1640static inline void clear_inode_flag(struct inode *inode, int flag)
39a53e0c 1641{
91942321
JK
1642 if (test_bit(flag, &F2FS_I(inode)->flags))
1643 clear_bit(flag, &F2FS_I(inode)->flags);
205b9822 1644 __mark_inode_dirty_flag(inode, flag, false);
39a53e0c
JK
1645}
1646
91942321 1647static inline void set_acl_inode(struct inode *inode, umode_t mode)
39a53e0c 1648{
91942321
JK
1649 F2FS_I(inode)->i_acl_mode = mode;
1650 set_inode_flag(inode, FI_ACL_MODE);
b56ab837 1651 f2fs_mark_inode_dirty_sync(inode);
39a53e0c
JK
1652}
1653
a1961246 1654static inline void f2fs_i_links_write(struct inode *inode, bool inc)
39a53e0c 1655{
a1961246
JK
1656 if (inc)
1657 inc_nlink(inode);
1658 else
1659 drop_nlink(inode);
b56ab837 1660 f2fs_mark_inode_dirty_sync(inode);
a1961246
JK
1661}
1662
8edd03c8
JK
1663static inline void f2fs_i_blocks_write(struct inode *inode,
1664 blkcnt_t diff, bool add)
1665{
26de9b11
JK
1666 bool clean = !is_inode_flag_set(inode, FI_DIRTY_INODE);
1667 bool recover = is_inode_flag_set(inode, FI_AUTO_RECOVER);
1668
8edd03c8
JK
1669 inode->i_blocks = add ? inode->i_blocks + diff :
1670 inode->i_blocks - diff;
b56ab837 1671 f2fs_mark_inode_dirty_sync(inode);
26de9b11
JK
1672 if (clean || recover)
1673 set_inode_flag(inode, FI_AUTO_RECOVER);
8edd03c8
JK
1674}
1675
fc9581c8
JK
1676static inline void f2fs_i_size_write(struct inode *inode, loff_t i_size)
1677{
26de9b11
JK
1678 bool clean = !is_inode_flag_set(inode, FI_DIRTY_INODE);
1679 bool recover = is_inode_flag_set(inode, FI_AUTO_RECOVER);
1680
fc9581c8
JK
1681 if (i_size_read(inode) == i_size)
1682 return;
1683
1684 i_size_write(inode, i_size);
b56ab837 1685 f2fs_mark_inode_dirty_sync(inode);
26de9b11
JK
1686 if (clean || recover)
1687 set_inode_flag(inode, FI_AUTO_RECOVER);
39a53e0c
JK
1688}
1689
26de9b11 1690static inline bool f2fs_skip_inode_update(struct inode *inode)
39a53e0c 1691{
26de9b11
JK
1692 if (!is_inode_flag_set(inode, FI_AUTO_RECOVER))
1693 return false;
1694 return F2FS_I(inode)->last_disk_size == i_size_read(inode);
39a53e0c
JK
1695}
1696
205b9822 1697static inline void f2fs_i_depth_write(struct inode *inode, unsigned int depth)
39a53e0c 1698{
205b9822 1699 F2FS_I(inode)->i_current_depth = depth;
b56ab837 1700 f2fs_mark_inode_dirty_sync(inode);
39a53e0c
JK
1701}
1702
205b9822 1703static inline void f2fs_i_xnid_write(struct inode *inode, nid_t xnid)
444c580f 1704{
205b9822 1705 F2FS_I(inode)->i_xattr_nid = xnid;
b56ab837 1706 f2fs_mark_inode_dirty_sync(inode);
205b9822
JK
1707}
1708
1709static inline void f2fs_i_pino_write(struct inode *inode, nid_t pino)
1710{
1711 F2FS_I(inode)->i_pino = pino;
b56ab837 1712 f2fs_mark_inode_dirty_sync(inode);
205b9822
JK
1713}
1714
91942321 1715static inline void get_inline_info(struct inode *inode, struct f2fs_inode *ri)
444c580f 1716{
205b9822
JK
1717 struct f2fs_inode_info *fi = F2FS_I(inode);
1718
444c580f 1719 if (ri->i_inline & F2FS_INLINE_XATTR)
205b9822 1720 set_bit(FI_INLINE_XATTR, &fi->flags);
1001b347 1721 if (ri->i_inline & F2FS_INLINE_DATA)
205b9822 1722 set_bit(FI_INLINE_DATA, &fi->flags);
34d67deb 1723 if (ri->i_inline & F2FS_INLINE_DENTRY)
205b9822 1724 set_bit(FI_INLINE_DENTRY, &fi->flags);
b3d208f9 1725 if (ri->i_inline & F2FS_DATA_EXIST)
205b9822 1726 set_bit(FI_DATA_EXIST, &fi->flags);
510022a8 1727 if (ri->i_inline & F2FS_INLINE_DOTS)
205b9822 1728 set_bit(FI_INLINE_DOTS, &fi->flags);
444c580f
JK
1729}
1730
91942321 1731static inline void set_raw_inline(struct inode *inode, struct f2fs_inode *ri)
444c580f
JK
1732{
1733 ri->i_inline = 0;
1734
91942321 1735 if (is_inode_flag_set(inode, FI_INLINE_XATTR))
444c580f 1736 ri->i_inline |= F2FS_INLINE_XATTR;
91942321 1737 if (is_inode_flag_set(inode, FI_INLINE_DATA))
1001b347 1738 ri->i_inline |= F2FS_INLINE_DATA;
91942321 1739 if (is_inode_flag_set(inode, FI_INLINE_DENTRY))
34d67deb 1740 ri->i_inline |= F2FS_INLINE_DENTRY;
91942321 1741 if (is_inode_flag_set(inode, FI_DATA_EXIST))
b3d208f9 1742 ri->i_inline |= F2FS_DATA_EXIST;
91942321 1743 if (is_inode_flag_set(inode, FI_INLINE_DOTS))
510022a8 1744 ri->i_inline |= F2FS_INLINE_DOTS;
444c580f
JK
1745}
1746
987c7c31
CY
1747static inline int f2fs_has_inline_xattr(struct inode *inode)
1748{
91942321 1749 return is_inode_flag_set(inode, FI_INLINE_XATTR);
987c7c31
CY
1750}
1751
81ca7350 1752static inline unsigned int addrs_per_inode(struct inode *inode)
de93653f 1753{
81ca7350 1754 if (f2fs_has_inline_xattr(inode))
de93653f
JK
1755 return DEF_ADDRS_PER_INODE - F2FS_INLINE_XATTR_ADDRS;
1756 return DEF_ADDRS_PER_INODE;
1757}
1758
65985d93
JK
1759static inline void *inline_xattr_addr(struct page *page)
1760{
695fd1ed 1761 struct f2fs_inode *ri = F2FS_INODE(page);
65985d93
JK
1762 return (void *)&(ri->i_addr[DEF_ADDRS_PER_INODE -
1763 F2FS_INLINE_XATTR_ADDRS]);
1764}
1765
1766static inline int inline_xattr_size(struct inode *inode)
1767{
987c7c31 1768 if (f2fs_has_inline_xattr(inode))
65985d93
JK
1769 return F2FS_INLINE_XATTR_ADDRS << 2;
1770 else
1771 return 0;
1772}
1773
0dbdc2ae
JK
1774static inline int f2fs_has_inline_data(struct inode *inode)
1775{
91942321 1776 return is_inode_flag_set(inode, FI_INLINE_DATA);
0dbdc2ae
JK
1777}
1778
b3d208f9
JK
1779static inline void f2fs_clear_inline_inode(struct inode *inode)
1780{
91942321
JK
1781 clear_inode_flag(inode, FI_INLINE_DATA);
1782 clear_inode_flag(inode, FI_DATA_EXIST);
b3d208f9
JK
1783}
1784
1785static inline int f2fs_exist_data(struct inode *inode)
1786{
91942321 1787 return is_inode_flag_set(inode, FI_DATA_EXIST);
b3d208f9
JK
1788}
1789
510022a8
JK
1790static inline int f2fs_has_inline_dots(struct inode *inode)
1791{
91942321 1792 return is_inode_flag_set(inode, FI_INLINE_DOTS);
510022a8
JK
1793}
1794
88b88a66
JK
1795static inline bool f2fs_is_atomic_file(struct inode *inode)
1796{
91942321 1797 return is_inode_flag_set(inode, FI_ATOMIC_FILE);
88b88a66
JK
1798}
1799
02a1335f
JK
1800static inline bool f2fs_is_volatile_file(struct inode *inode)
1801{
91942321 1802 return is_inode_flag_set(inode, FI_VOLATILE_FILE);
02a1335f
JK
1803}
1804
3c6c2beb
JK
1805static inline bool f2fs_is_first_block_written(struct inode *inode)
1806{
91942321 1807 return is_inode_flag_set(inode, FI_FIRST_BLOCK_WRITTEN);
3c6c2beb
JK
1808}
1809
1e84371f
JK
1810static inline bool f2fs_is_drop_cache(struct inode *inode)
1811{
91942321 1812 return is_inode_flag_set(inode, FI_DROP_CACHE);
1e84371f
JK
1813}
1814
1001b347
HL
1815static inline void *inline_data_addr(struct page *page)
1816{
695fd1ed 1817 struct f2fs_inode *ri = F2FS_INODE(page);
1001b347
HL
1818 return (void *)&(ri->i_addr[1]);
1819}
1820
34d67deb
CY
1821static inline int f2fs_has_inline_dentry(struct inode *inode)
1822{
91942321 1823 return is_inode_flag_set(inode, FI_INLINE_DENTRY);
34d67deb
CY
1824}
1825
9486ba44
JK
1826static inline void f2fs_dentry_kunmap(struct inode *dir, struct page *page)
1827{
1828 if (!f2fs_has_inline_dentry(dir))
1829 kunmap(page);
1830}
1831
b5492af7
JK
1832static inline int is_file(struct inode *inode, int type)
1833{
1834 return F2FS_I(inode)->i_advise & type;
1835}
1836
1837static inline void set_file(struct inode *inode, int type)
1838{
1839 F2FS_I(inode)->i_advise |= type;
b56ab837 1840 f2fs_mark_inode_dirty_sync(inode);
b5492af7
JK
1841}
1842
1843static inline void clear_file(struct inode *inode, int type)
1844{
1845 F2FS_I(inode)->i_advise &= ~type;
b56ab837 1846 f2fs_mark_inode_dirty_sync(inode);
b5492af7
JK
1847}
1848
77888c1e
JK
1849static inline int f2fs_readonly(struct super_block *sb)
1850{
1851 return sb->s_flags & MS_RDONLY;
1852}
1853
1e968fdf
JK
1854static inline bool f2fs_cp_error(struct f2fs_sb_info *sbi)
1855{
aaec2b1d 1856 return is_set_ckpt_flags(sbi, CP_ERROR_FLAG);
1e968fdf
JK
1857}
1858
eaa693f4
JK
1859static inline bool is_dot_dotdot(const struct qstr *str)
1860{
1861 if (str->len == 1 && str->name[0] == '.')
1862 return true;
1863
1864 if (str->len == 2 && str->name[0] == '.' && str->name[1] == '.')
1865 return true;
1866
1867 return false;
1868}
1869
3e72f721
JK
1870static inline bool f2fs_may_extent_tree(struct inode *inode)
1871{
3e72f721 1872 if (!test_opt(F2FS_I_SB(inode), EXTENT_CACHE) ||
91942321 1873 is_inode_flag_set(inode, FI_NO_EXTENT))
3e72f721
JK
1874 return false;
1875
886f56f9 1876 return S_ISREG(inode->i_mode);
3e72f721
JK
1877}
1878
1ecc0c5c
CY
1879static inline void *f2fs_kmalloc(struct f2fs_sb_info *sbi,
1880 size_t size, gfp_t flags)
0414b004 1881{
2c63fead 1882#ifdef CONFIG_F2FS_FAULT_INJECTION
1ecc0c5c 1883 if (time_to_inject(sbi, FAULT_KMALLOC))
2c63fead
JK
1884 return NULL;
1885#endif
0414b004
JK
1886 return kmalloc(size, flags);
1887}
1888
39307a8e
JK
1889static inline void *f2fs_kvmalloc(size_t size, gfp_t flags)
1890{
1891 void *ret;
1892
1893 ret = kmalloc(size, flags | __GFP_NOWARN);
1894 if (!ret)
1895 ret = __vmalloc(size, flags, PAGE_KERNEL);
1896 return ret;
1897}
1898
1899static inline void *f2fs_kvzalloc(size_t size, gfp_t flags)
1900{
1901 void *ret;
1902
1903 ret = kzalloc(size, flags | __GFP_NOWARN);
1904 if (!ret)
1905 ret = __vmalloc(size, flags | __GFP_ZERO, PAGE_KERNEL);
1906 return ret;
1907}
1908
a6dda0e6 1909#define get_inode_mode(i) \
91942321 1910 ((is_inode_flag_set(i, FI_ACL_MODE)) ? \
a6dda0e6
CH
1911 (F2FS_I(i)->i_acl_mode) : ((i)->i_mode))
1912
267378d4 1913/* get offset of first page in next direct node */
81ca7350
CY
1914#define PGOFS_OF_NEXT_DNODE(pgofs, inode) \
1915 ((pgofs < ADDRS_PER_INODE(inode)) ? ADDRS_PER_INODE(inode) : \
1916 (pgofs - ADDRS_PER_INODE(inode) + ADDRS_PER_BLOCK) / \
1917 ADDRS_PER_BLOCK * ADDRS_PER_BLOCK + ADDRS_PER_INODE(inode))
267378d4 1918
39a53e0c
JK
1919/*
1920 * file.c
1921 */
1922int f2fs_sync_file(struct file *, loff_t, loff_t, int);
1923void truncate_data_blocks(struct dnode_of_data *);
764aa3e9 1924int truncate_blocks(struct inode *, u64, bool);
9a449e9c 1925int f2fs_truncate(struct inode *);
2d4d9fb5 1926int f2fs_getattr(struct vfsmount *, struct dentry *, struct kstat *);
39a53e0c
JK
1927int f2fs_setattr(struct dentry *, struct iattr *);
1928int truncate_hole(struct inode *, pgoff_t, pgoff_t);
b292dcab 1929int truncate_data_blocks_range(struct dnode_of_data *, int);
39a53e0c 1930long f2fs_ioctl(struct file *, unsigned int, unsigned long);
e9750824 1931long f2fs_compat_ioctl(struct file *, unsigned int, unsigned long);
39a53e0c
JK
1932
1933/*
1934 * inode.c
1935 */
1936void f2fs_set_inode_flags(struct inode *);
39a53e0c 1937struct inode *f2fs_iget(struct super_block *, unsigned long);
e8ea9b3d 1938struct inode *f2fs_iget_retry(struct super_block *, unsigned long);
4660f9c0 1939int try_to_free_nats(struct f2fs_sb_info *, int);
12719ae1
JK
1940int update_inode(struct inode *, struct page *);
1941int update_inode_page(struct inode *);
39a53e0c
JK
1942int f2fs_write_inode(struct inode *, struct writeback_control *);
1943void f2fs_evict_inode(struct inode *);
44c16156 1944void handle_failed_inode(struct inode *);
39a53e0c
JK
1945
1946/*
1947 * namei.c
1948 */
1949struct dentry *f2fs_get_parent(struct dentry *child);
1950
1951/*
1952 * dir.c
1953 */
510022a8 1954void set_de_type(struct f2fs_dir_entry *, umode_t);
675f10bd 1955unsigned char get_de_type(struct f2fs_dir_entry *);
0b81d077 1956struct f2fs_dir_entry *find_target_dentry(struct fscrypt_name *,
6e22c691 1957 f2fs_hash_t, int *, struct f2fs_dentry_ptr *);
7b3cd7d6 1958bool f2fs_fill_dentries(struct dir_context *, struct f2fs_dentry_ptr *,
0b81d077 1959 unsigned int, struct fscrypt_str *);
062a3e7b
JK
1960void do_make_empty_dir(struct inode *, struct inode *,
1961 struct f2fs_dentry_ptr *);
dbeacf02 1962struct page *init_inode_metadata(struct inode *, struct inode *,
9421d570 1963 const struct qstr *, const struct qstr *, struct page *);
dbeacf02 1964void update_parent_metadata(struct inode *, struct inode *, unsigned int);
a82afa20 1965int room_for_filename(const void *, int, int);
9f7c45cc 1966void f2fs_drop_nlink(struct inode *, struct inode *);
e7ba108a
SL
1967struct f2fs_dir_entry *__f2fs_find_entry(struct inode *, struct fscrypt_name *,
1968 struct page **);
185de68f 1969struct f2fs_dir_entry *f2fs_find_entry(struct inode *, const struct qstr *,
39a53e0c
JK
1970 struct page **);
1971struct f2fs_dir_entry *f2fs_parent_dir(struct inode *, struct page **);
835c92d4 1972ino_t f2fs_inode_by_name(struct inode *, const struct qstr *, struct page **);
39a53e0c
JK
1973void f2fs_set_link(struct inode *, struct f2fs_dir_entry *,
1974 struct page *, struct inode *);
e7d55452 1975int update_dent_inode(struct inode *, struct inode *, const struct qstr *);
510022a8 1976void f2fs_update_dentry(nid_t ino, umode_t mode, struct f2fs_dentry_ptr *,
3b4d732a 1977 const struct qstr *, f2fs_hash_t , unsigned int);
675f10bd 1978int f2fs_add_regular_entry(struct inode *, const struct qstr *,
9421d570 1979 const struct qstr *, struct inode *, nid_t, umode_t);
e7ba108a
SL
1980int __f2fs_do_add_link(struct inode *, struct fscrypt_name*, struct inode *,
1981 nid_t, umode_t);
510022a8
JK
1982int __f2fs_add_link(struct inode *, const struct qstr *, struct inode *, nid_t,
1983 umode_t);
dbeacf02
CY
1984void f2fs_delete_entry(struct f2fs_dir_entry *, struct page *, struct inode *,
1985 struct inode *);
b97a9b5d 1986int f2fs_do_tmpfile(struct inode *, struct inode *);
39a53e0c
JK
1987bool f2fs_empty_dir(struct inode *);
1988
b7f7a5e0
AV
1989static inline int f2fs_add_link(struct dentry *dentry, struct inode *inode)
1990{
2b0143b5 1991 return __f2fs_add_link(d_inode(dentry->d_parent), &dentry->d_name,
510022a8 1992 inode, inode->i_ino, inode->i_mode);
b7f7a5e0
AV
1993}
1994
39a53e0c
JK
1995/*
1996 * super.c
1997 */
b56ab837 1998int f2fs_inode_dirtied(struct inode *);
0f18b462 1999void f2fs_inode_synced(struct inode *);
c5bda1c8 2000int f2fs_commit_super(struct f2fs_sb_info *, bool);
39a53e0c 2001int f2fs_sync_fs(struct super_block *, int);
a07ef784
NJ
2002extern __printf(3, 4)
2003void f2fs_msg(struct super_block *, const char *, const char *, ...);
984ec63c 2004int sanity_check_ckpt(struct f2fs_sb_info *sbi);
39a53e0c
JK
2005
2006/*
2007 * hash.c
2008 */
eee6160f 2009f2fs_hash_t f2fs_dentry_hash(const struct qstr *);
39a53e0c
JK
2010
2011/*
2012 * node.c
2013 */
2014struct dnode_of_data;
2015struct node_info;
2016
6fb03f3a 2017bool available_free_memory(struct f2fs_sb_info *, int);
2dcf51ab 2018int need_dentry_mark(struct f2fs_sb_info *, nid_t);
88bd02c9 2019bool is_checkpointed_node(struct f2fs_sb_info *, nid_t);
88bd02c9 2020bool need_inode_block_update(struct f2fs_sb_info *, nid_t);
39a53e0c 2021void get_node_info(struct f2fs_sb_info *, nid_t, struct node_info *);
3cf45747 2022pgoff_t get_next_page_offset(struct dnode_of_data *, pgoff_t);
39a53e0c
JK
2023int get_dnode_of_data(struct dnode_of_data *, pgoff_t, int);
2024int truncate_inode_blocks(struct inode *, pgoff_t);
4f16fb0f 2025int truncate_xattr_node(struct inode *, struct page *);
cfe58f9d 2026int wait_on_node_pages_writeback(struct f2fs_sb_info *, nid_t);
13ec7297 2027int remove_inode_page(struct inode *);
a014e037 2028struct page *new_inode_page(struct inode *);
8ae8f162 2029struct page *new_node_page(struct dnode_of_data *, unsigned int, struct page *);
39a53e0c
JK
2030void ra_node_page(struct f2fs_sb_info *, nid_t);
2031struct page *get_node_page(struct f2fs_sb_info *, pgoff_t);
2032struct page *get_node_page_ra(struct page *, int);
da011cc0 2033void move_node_page(struct page *, int);
26de9b11
JK
2034int fsync_node_pages(struct f2fs_sb_info *, struct inode *,
2035 struct writeback_control *, bool);
52681375 2036int sync_node_pages(struct f2fs_sb_info *, struct writeback_control *);
ad4edb83 2037void build_free_nids(struct f2fs_sb_info *);
39a53e0c
JK
2038bool alloc_nid(struct f2fs_sb_info *, nid_t *);
2039void alloc_nid_done(struct f2fs_sb_info *, nid_t);
2040void alloc_nid_failed(struct f2fs_sb_info *, nid_t);
31696580 2041int try_to_free_nids(struct f2fs_sb_info *, int);
70cfed88 2042void recover_inline_xattr(struct inode *, struct page *);
1c35a90e 2043void recover_xattr_data(struct inode *, struct page *, block_t);
39a53e0c
JK
2044int recover_inode_page(struct f2fs_sb_info *, struct page *);
2045int restore_node_summary(struct f2fs_sb_info *, unsigned int,
2046 struct f2fs_summary_block *);
2047void flush_nat_entries(struct f2fs_sb_info *);
2048int build_node_manager(struct f2fs_sb_info *);
2049void destroy_node_manager(struct f2fs_sb_info *);
6e6093a8 2050int __init create_node_manager_caches(void);
39a53e0c
JK
2051void destroy_node_manager_caches(void);
2052
2053/*
2054 * segment.c
2055 */
88b88a66 2056void register_inmem_page(struct inode *, struct page *);
29b96b54
CY
2057void drop_inmem_pages(struct inode *);
2058int commit_inmem_pages(struct inode *);
2c4db1a6 2059void f2fs_balance_fs(struct f2fs_sb_info *, bool);
4660f9c0 2060void f2fs_balance_fs_bg(struct f2fs_sb_info *);
6b4afdd7 2061int f2fs_issue_flush(struct f2fs_sb_info *);
2163d198
GZ
2062int create_flush_cmd_control(struct f2fs_sb_info *);
2063void destroy_flush_cmd_control(struct f2fs_sb_info *);
39a53e0c 2064void invalidate_blocks(struct f2fs_sb_info *, block_t);
6e2c64ad 2065bool is_checkpointed_data(struct f2fs_sb_info *, block_t);
5e443818 2066void refresh_sit_entry(struct f2fs_sb_info *, block_t, block_t);
275b66b0 2067void f2fs_wait_all_discard_bio(struct f2fs_sb_info *);
836b5a63 2068void clear_prefree_segments(struct f2fs_sb_info *, struct cp_control *);
4b2fecc8 2069void release_discard_addrs(struct f2fs_sb_info *);
3fa06d7b 2070int npages_for_summary_flush(struct f2fs_sb_info *, bool);
39a53e0c 2071void allocate_new_segments(struct f2fs_sb_info *);
4b2fecc8 2072int f2fs_trim_fs(struct f2fs_sb_info *, struct fstrim_range *);
39a53e0c 2073struct page *get_sum_page(struct f2fs_sb_info *, unsigned int);
381722d2 2074void update_meta_page(struct f2fs_sb_info *, void *, block_t);
577e3495 2075void write_meta_page(struct f2fs_sb_info *, struct page *);
05ca3632
JK
2076void write_node_page(unsigned int, struct f2fs_io_info *);
2077void write_data_page(struct dnode_of_data *, struct f2fs_io_info *);
2078void rewrite_data_page(struct f2fs_io_info *);
4356e48e
CY
2079void __f2fs_replace_block(struct f2fs_sb_info *, struct f2fs_summary *,
2080 block_t, block_t, bool, bool);
528e3459 2081void f2fs_replace_block(struct f2fs_sb_info *, struct dnode_of_data *,
28bc106b 2082 block_t, block_t, unsigned char, bool, bool);
bfad7c2d
JK
2083void allocate_data_block(struct f2fs_sb_info *, struct page *,
2084 block_t, block_t *, struct f2fs_summary *, int);
fec1d657 2085void f2fs_wait_on_page_writeback(struct page *, enum page_type, bool);
08b39fbd 2086void f2fs_wait_on_encrypted_page_writeback(struct f2fs_sb_info *, block_t);
39a53e0c
JK
2087void write_data_summaries(struct f2fs_sb_info *, block_t);
2088void write_node_summaries(struct f2fs_sb_info *, block_t);
dfc08a12 2089int lookup_journal_in_cursum(struct f2fs_journal *, int, unsigned int, int);
4b2fecc8 2090void flush_sit_entries(struct f2fs_sb_info *, struct cp_control *);
39a53e0c 2091int build_segment_manager(struct f2fs_sb_info *);
39a53e0c 2092void destroy_segment_manager(struct f2fs_sb_info *);
7fd9e544
JK
2093int __init create_segment_manager_caches(void);
2094void destroy_segment_manager_caches(void);
39a53e0c
JK
2095
2096/*
2097 * checkpoint.c
2098 */
38f91ca8 2099void f2fs_stop_checkpoint(struct f2fs_sb_info *, bool);
39a53e0c
JK
2100struct page *grab_meta_page(struct f2fs_sb_info *, pgoff_t);
2101struct page *get_meta_page(struct f2fs_sb_info *, pgoff_t);
2b947003 2102struct page *get_tmp_page(struct f2fs_sb_info *, pgoff_t);
f0c9cada 2103bool is_valid_blkaddr(struct f2fs_sb_info *, block_t, int);
26879fb1 2104int ra_meta_pages(struct f2fs_sb_info *, block_t, int, int, bool);
635aee1f 2105void ra_meta_pages_cond(struct f2fs_sb_info *, pgoff_t);
39a53e0c 2106long sync_meta_pages(struct f2fs_sb_info *, enum page_type, long);
a49324f1
CY
2107void add_ino_entry(struct f2fs_sb_info *, nid_t, int type);
2108void remove_ino_entry(struct f2fs_sb_info *, nid_t, int type);
74ef9241 2109void release_ino_entry(struct f2fs_sb_info *, bool);
fff04f90 2110bool exist_written_data(struct f2fs_sb_info *, nid_t, int);
0f18b462 2111int f2fs_sync_inode_meta(struct f2fs_sb_info *);
cbd56e7d
JK
2112int acquire_orphan_inode(struct f2fs_sb_info *);
2113void release_orphan_inode(struct f2fs_sb_info *);
67c3758d 2114void add_orphan_inode(struct inode *);
39a53e0c 2115void remove_orphan_inode(struct f2fs_sb_info *, nid_t);
8c14bfad 2116int recover_orphan_inodes(struct f2fs_sb_info *);
39a53e0c 2117int get_valid_checkpoint(struct f2fs_sb_info *);
a7ffdbe2 2118void update_dirty_page(struct inode *, struct page *);
c227f912 2119void remove_dirty_inode(struct inode *);
6d5a1495 2120int sync_dirty_inodes(struct f2fs_sb_info *, enum inode_type);
c34f42e2 2121int write_checkpoint(struct f2fs_sb_info *, struct cp_control *);
6451e041 2122void init_ino_entry_info(struct f2fs_sb_info *);
6e6093a8 2123int __init create_checkpoint_caches(void);
39a53e0c
JK
2124void destroy_checkpoint_caches(void);
2125
2126/*
2127 * data.c
2128 */
458e6197 2129void f2fs_submit_merged_bio(struct f2fs_sb_info *, enum page_type, int);
0c3a5797
CY
2130void f2fs_submit_merged_bio_cond(struct f2fs_sb_info *, struct inode *,
2131 struct page *, nid_t, enum page_type, int);
406657dd 2132void f2fs_flush_merged_bios(struct f2fs_sb_info *);
05ca3632
JK
2133int f2fs_submit_page_bio(struct f2fs_io_info *);
2134void f2fs_submit_page_mbio(struct f2fs_io_info *);
216a620a 2135void set_data_blkaddr(struct dnode_of_data *);
f28b3434 2136void f2fs_update_data_blkaddr(struct dnode_of_data *, block_t);
46008c6d 2137int reserve_new_blocks(struct dnode_of_data *, blkcnt_t);
39a53e0c 2138int reserve_new_block(struct dnode_of_data *);
759af1c9 2139int f2fs_get_block(struct dnode_of_data *, pgoff_t);
b439b103 2140ssize_t f2fs_preallocate_blocks(struct kiocb *, struct iov_iter *);
b600965c 2141int f2fs_reserve_block(struct dnode_of_data *, pgoff_t);
a56c7c6f 2142struct page *get_read_data_page(struct inode *, pgoff_t, int, bool);
43f3eae1 2143struct page *find_data_page(struct inode *, pgoff_t);
a56c7c6f 2144struct page *get_lock_data_page(struct inode *, pgoff_t, bool);
64aa7ed9 2145struct page *get_new_data_page(struct inode *, struct page *, pgoff_t, bool);
05ca3632 2146int do_write_data_page(struct f2fs_io_info *);
d323d005 2147int f2fs_map_blocks(struct inode *, struct f2fs_map_blocks *, int, int);
9ab70134 2148int f2fs_fiemap(struct inode *inode, struct fiemap_extent_info *, u64, u64);
fe76b796 2149void f2fs_set_page_dirty_nobuffers(struct page *);
487261f3
CY
2150void f2fs_invalidate_page(struct page *, unsigned int, unsigned int);
2151int f2fs_release_page(struct page *, gfp_t);
5b7a487c
WG
2152#ifdef CONFIG_MIGRATION
2153int f2fs_migrate_page(struct address_space *, struct page *, struct page *,
2154 enum migrate_mode);
2155#endif
39a53e0c
JK
2156
2157/*
2158 * gc.c
2159 */
2160int start_gc_thread(struct f2fs_sb_info *);
2161void stop_gc_thread(struct f2fs_sb_info *);
81ca7350 2162block_t start_bidx_of_node(unsigned int, struct inode *);
d530d4d8 2163int f2fs_gc(struct f2fs_sb_info *, bool);
39a53e0c 2164void build_gc_manager(struct f2fs_sb_info *);
39a53e0c
JK
2165
2166/*
2167 * recovery.c
2168 */
6781eabb 2169int recover_fsync_data(struct f2fs_sb_info *, bool);
39a53e0c
JK
2170bool space_for_roll_forward(struct f2fs_sb_info *);
2171
2172/*
2173 * debug.c
2174 */
2175#ifdef CONFIG_F2FS_STAT_FS
2176struct f2fs_stat_info {
2177 struct list_head stat_list;
2178 struct f2fs_sb_info *sbi;
39a53e0c
JK
2179 int all_area_segs, sit_area_segs, nat_area_segs, ssa_area_segs;
2180 int main_area_segs, main_area_sections, main_area_zones;
5b7ee374
CY
2181 unsigned long long hit_largest, hit_cached, hit_rbtree;
2182 unsigned long long hit_total, total_ext;
c00ba554 2183 int ext_tree, zombie_tree, ext_node;
5bc994a0
CY
2184 s64 ndirty_node, ndirty_dent, ndirty_meta, ndirty_data, ndirty_imeta;
2185 s64 inmem_pages;
0f18b462 2186 unsigned int ndirty_dirs, ndirty_files, ndirty_all;
dd4e4b59 2187 int nats, dirty_nats, sits, dirty_sits, fnids;
39a53e0c 2188 int total_count, utilization;
523be8a6 2189 int bg_gc, wb_bios;
652be551 2190 int inline_xattr, inline_inode, inline_dir, orphans;
f83a2584 2191 unsigned int valid_count, valid_node_count, valid_inode_count, discard_blks;
39a53e0c
JK
2192 unsigned int bimodal, avg_vblocks;
2193 int util_free, util_valid, util_invalid;
2194 int rsvd_segs, overp_segs;
2195 int dirty_count, node_pages, meta_pages;
42190d2a 2196 int prefree_count, call_count, cp_count, bg_cp_count;
39a53e0c 2197 int tot_segs, node_segs, data_segs, free_segs, free_secs;
e1235983 2198 int bg_node_segs, bg_data_segs;
39a53e0c 2199 int tot_blks, data_blks, node_blks;
e1235983 2200 int bg_data_blks, bg_node_blks;
39a53e0c
JK
2201 int curseg[NR_CURSEG_TYPE];
2202 int cursec[NR_CURSEG_TYPE];
2203 int curzone[NR_CURSEG_TYPE];
2204
2205 unsigned int segment_count[2];
2206 unsigned int block_count[2];
b9a2c252 2207 unsigned int inplace_count;
9edcdabf 2208 unsigned long long base_mem, cache_mem, page_mem;
39a53e0c
JK
2209};
2210
963d4f7d
GZ
2211static inline struct f2fs_stat_info *F2FS_STAT(struct f2fs_sb_info *sbi)
2212{
6c311ec6 2213 return (struct f2fs_stat_info *)sbi->stat_info;
963d4f7d
GZ
2214}
2215
942e0be6 2216#define stat_inc_cp_count(si) ((si)->cp_count++)
42190d2a 2217#define stat_inc_bg_cp_count(si) ((si)->bg_cp_count++)
dcdfff65
JK
2218#define stat_inc_call_count(si) ((si)->call_count++)
2219#define stat_inc_bggc_count(sbi) ((sbi)->bg_gc++)
33fbd510
CY
2220#define stat_inc_dirty_inode(sbi, type) ((sbi)->ndirty_inode[type]++)
2221#define stat_dec_dirty_inode(sbi, type) ((sbi)->ndirty_inode[type]--)
5b7ee374
CY
2222#define stat_inc_total_hit(sbi) (atomic64_inc(&(sbi)->total_hit_ext))
2223#define stat_inc_rbtree_node_hit(sbi) (atomic64_inc(&(sbi)->read_hit_rbtree))
2224#define stat_inc_largest_node_hit(sbi) (atomic64_inc(&(sbi)->read_hit_largest))
2225#define stat_inc_cached_node_hit(sbi) (atomic64_inc(&(sbi)->read_hit_cached))
d5e8f6c9
CY
2226#define stat_inc_inline_xattr(inode) \
2227 do { \
2228 if (f2fs_has_inline_xattr(inode)) \
2229 (atomic_inc(&F2FS_I_SB(inode)->inline_xattr)); \
2230 } while (0)
2231#define stat_dec_inline_xattr(inode) \
2232 do { \
2233 if (f2fs_has_inline_xattr(inode)) \
2234 (atomic_dec(&F2FS_I_SB(inode)->inline_xattr)); \
2235 } while (0)
0dbdc2ae
JK
2236#define stat_inc_inline_inode(inode) \
2237 do { \
2238 if (f2fs_has_inline_data(inode)) \
03e14d52 2239 (atomic_inc(&F2FS_I_SB(inode)->inline_inode)); \
0dbdc2ae
JK
2240 } while (0)
2241#define stat_dec_inline_inode(inode) \
2242 do { \
2243 if (f2fs_has_inline_data(inode)) \
03e14d52 2244 (atomic_dec(&F2FS_I_SB(inode)->inline_inode)); \
0dbdc2ae 2245 } while (0)
3289c061
JK
2246#define stat_inc_inline_dir(inode) \
2247 do { \
2248 if (f2fs_has_inline_dentry(inode)) \
03e14d52 2249 (atomic_inc(&F2FS_I_SB(inode)->inline_dir)); \
3289c061
JK
2250 } while (0)
2251#define stat_dec_inline_dir(inode) \
2252 do { \
2253 if (f2fs_has_inline_dentry(inode)) \
03e14d52 2254 (atomic_dec(&F2FS_I_SB(inode)->inline_dir)); \
3289c061 2255 } while (0)
dcdfff65
JK
2256#define stat_inc_seg_type(sbi, curseg) \
2257 ((sbi)->segment_count[(curseg)->alloc_type]++)
2258#define stat_inc_block_count(sbi, curseg) \
2259 ((sbi)->block_count[(curseg)->alloc_type]++)
b9a2c252
CL
2260#define stat_inc_inplace_blocks(sbi) \
2261 (atomic_inc(&(sbi)->inplace_count))
e1235983 2262#define stat_inc_seg_count(sbi, type, gc_type) \
39a53e0c 2263 do { \
963d4f7d 2264 struct f2fs_stat_info *si = F2FS_STAT(sbi); \
39a53e0c 2265 (si)->tot_segs++; \
e1235983 2266 if (type == SUM_TYPE_DATA) { \
39a53e0c 2267 si->data_segs++; \
e1235983
CL
2268 si->bg_data_segs += (gc_type == BG_GC) ? 1 : 0; \
2269 } else { \
39a53e0c 2270 si->node_segs++; \
e1235983
CL
2271 si->bg_node_segs += (gc_type == BG_GC) ? 1 : 0; \
2272 } \
39a53e0c
JK
2273 } while (0)
2274
2275#define stat_inc_tot_blk_count(si, blks) \
2276 (si->tot_blks += (blks))
2277
e1235983 2278#define stat_inc_data_blk_count(sbi, blks, gc_type) \
39a53e0c 2279 do { \
963d4f7d 2280 struct f2fs_stat_info *si = F2FS_STAT(sbi); \
39a53e0c
JK
2281 stat_inc_tot_blk_count(si, blks); \
2282 si->data_blks += (blks); \
e1235983 2283 si->bg_data_blks += (gc_type == BG_GC) ? (blks) : 0; \
39a53e0c
JK
2284 } while (0)
2285
e1235983 2286#define stat_inc_node_blk_count(sbi, blks, gc_type) \
39a53e0c 2287 do { \
963d4f7d 2288 struct f2fs_stat_info *si = F2FS_STAT(sbi); \
39a53e0c
JK
2289 stat_inc_tot_blk_count(si, blks); \
2290 si->node_blks += (blks); \
e1235983 2291 si->bg_node_blks += (gc_type == BG_GC) ? (blks) : 0; \
39a53e0c
JK
2292 } while (0)
2293
2294int f2fs_build_stats(struct f2fs_sb_info *);
2295void f2fs_destroy_stats(struct f2fs_sb_info *);
787c7b8c 2296int __init f2fs_create_root_stats(void);
4589d25d 2297void f2fs_destroy_root_stats(void);
39a53e0c 2298#else
942e0be6 2299#define stat_inc_cp_count(si)
42190d2a 2300#define stat_inc_bg_cp_count(si)
39a53e0c 2301#define stat_inc_call_count(si)
dcdfff65 2302#define stat_inc_bggc_count(si)
33fbd510
CY
2303#define stat_inc_dirty_inode(sbi, type)
2304#define stat_dec_dirty_inode(sbi, type)
dcdfff65 2305#define stat_inc_total_hit(sb)
029e13cc 2306#define stat_inc_rbtree_node_hit(sb)
91c481ff
CY
2307#define stat_inc_largest_node_hit(sbi)
2308#define stat_inc_cached_node_hit(sbi)
d5e8f6c9
CY
2309#define stat_inc_inline_xattr(inode)
2310#define stat_dec_inline_xattr(inode)
0dbdc2ae
JK
2311#define stat_inc_inline_inode(inode)
2312#define stat_dec_inline_inode(inode)
3289c061
JK
2313#define stat_inc_inline_dir(inode)
2314#define stat_dec_inline_dir(inode)
dcdfff65
JK
2315#define stat_inc_seg_type(sbi, curseg)
2316#define stat_inc_block_count(sbi, curseg)
b9a2c252 2317#define stat_inc_inplace_blocks(sbi)
e1235983 2318#define stat_inc_seg_count(sbi, type, gc_type)
39a53e0c 2319#define stat_inc_tot_blk_count(si, blks)
e1235983
CL
2320#define stat_inc_data_blk_count(sbi, blks, gc_type)
2321#define stat_inc_node_blk_count(sbi, blks, gc_type)
39a53e0c
JK
2322
2323static inline int f2fs_build_stats(struct f2fs_sb_info *sbi) { return 0; }
2324static inline void f2fs_destroy_stats(struct f2fs_sb_info *sbi) { }
787c7b8c 2325static inline int __init f2fs_create_root_stats(void) { return 0; }
4589d25d 2326static inline void f2fs_destroy_root_stats(void) { }
39a53e0c
JK
2327#endif
2328
2329extern const struct file_operations f2fs_dir_operations;
2330extern const struct file_operations f2fs_file_operations;
2331extern const struct inode_operations f2fs_file_inode_operations;
2332extern const struct address_space_operations f2fs_dblock_aops;
2333extern const struct address_space_operations f2fs_node_aops;
2334extern const struct address_space_operations f2fs_meta_aops;
2335extern const struct inode_operations f2fs_dir_inode_operations;
2336extern const struct inode_operations f2fs_symlink_inode_operations;
cbaf042a 2337extern const struct inode_operations f2fs_encrypted_symlink_inode_operations;
39a53e0c 2338extern const struct inode_operations f2fs_special_inode_operations;
29e7043f 2339extern struct kmem_cache *inode_entry_slab;
1001b347 2340
e18c65b2
HL
2341/*
2342 * inline.c
2343 */
01b960e9
JK
2344bool f2fs_may_inline_data(struct inode *);
2345bool f2fs_may_inline_dentry(struct inode *);
b3d208f9 2346void read_inline_data(struct page *, struct page *);
0bfcfcca 2347bool truncate_inline_inode(struct page *, u64);
e18c65b2 2348int f2fs_read_inline_data(struct inode *, struct page *);
b3d208f9
JK
2349int f2fs_convert_inline_page(struct dnode_of_data *, struct page *);
2350int f2fs_convert_inline_inode(struct inode *);
2351int f2fs_write_inline_data(struct inode *, struct page *);
0342fd30 2352bool recover_inline_data(struct inode *, struct page *);
6e22c691 2353struct f2fs_dir_entry *find_in_inline_dir(struct inode *,
0b81d077 2354 struct fscrypt_name *, struct page **);
201a05be 2355int make_empty_inline_dir(struct inode *inode, struct inode *, struct page *);
9421d570
CY
2356int f2fs_add_inline_entry(struct inode *, const struct qstr *,
2357 const struct qstr *, struct inode *, nid_t, umode_t);
201a05be
CY
2358void f2fs_delete_inline_entry(struct f2fs_dir_entry *, struct page *,
2359 struct inode *, struct inode *);
2360bool f2fs_empty_inline_dir(struct inode *);
d8c6822a 2361int f2fs_read_inline_dir(struct file *, struct dir_context *,
0b81d077 2362 struct fscrypt_str *);
67f8cf3c
JK
2363int f2fs_inline_data_fiemap(struct inode *,
2364 struct fiemap_extent_info *, __u64, __u64);
cde4de12 2365
2658e50d
JK
2366/*
2367 * shrinker.c
2368 */
2369unsigned long f2fs_shrink_count(struct shrinker *, struct shrink_control *);
2370unsigned long f2fs_shrink_scan(struct shrinker *, struct shrink_control *);
2371void f2fs_join_shrinker(struct f2fs_sb_info *);
2372void f2fs_leave_shrinker(struct f2fs_sb_info *);
2373
a28ef1f5
CY
2374/*
2375 * extent_cache.c
2376 */
2377unsigned int f2fs_shrink_extent_tree(struct f2fs_sb_info *, int);
ed3d1256 2378bool f2fs_init_extent_tree(struct inode *, struct f2fs_extent *);
5f281fab 2379void f2fs_drop_extent_tree(struct inode *);
a28ef1f5
CY
2380unsigned int f2fs_destroy_extent_node(struct inode *);
2381void f2fs_destroy_extent_tree(struct inode *);
2382bool f2fs_lookup_extent_cache(struct inode *, pgoff_t, struct extent_info *);
2383void f2fs_update_extent_cache(struct dnode_of_data *);
19b2c30d
CY
2384void f2fs_update_extent_cache_range(struct dnode_of_data *dn,
2385 pgoff_t, block_t, unsigned int);
a28ef1f5
CY
2386void init_extent_cache_info(struct f2fs_sb_info *);
2387int __init create_extent_cache(void);
2388void destroy_extent_cache(void);
2389
cde4de12
JK
2390/*
2391 * crypto support
2392 */
0b81d077 2393static inline bool f2fs_encrypted_inode(struct inode *inode)
cde4de12 2394{
cde4de12 2395 return file_is_encrypt(inode);
cde4de12
JK
2396}
2397
2398static inline void f2fs_set_encrypted_inode(struct inode *inode)
2399{
2400#ifdef CONFIG_F2FS_FS_ENCRYPTION
2401 file_set_encrypt(inode);
2402#endif
2403}
2404
2405static inline bool f2fs_bio_encrypted(struct bio *bio)
2406{
0b81d077 2407 return bio->bi_private != NULL;
cde4de12
JK
2408}
2409
2410static inline int f2fs_sb_has_crypto(struct super_block *sb)
2411{
cde4de12 2412 return F2FS_HAS_FEATURE(sb, F2FS_FEATURE_ENCRYPT);
cde4de12 2413}
f424f664 2414
52763a4b
JK
2415static inline int f2fs_sb_mounted_hmsmr(struct super_block *sb)
2416{
2417 return F2FS_HAS_FEATURE(sb, F2FS_FEATURE_HMSMR);
2418}
2419
2420static inline void set_opt_mode(struct f2fs_sb_info *sbi, unsigned int mt)
2421{
2422 clear_opt(sbi, ADAPTIVE);
2423 clear_opt(sbi, LFS);
2424
2425 switch (mt) {
2426 case F2FS_MOUNT_ADAPTIVE:
2427 set_opt(sbi, ADAPTIVE);
2428 break;
2429 case F2FS_MOUNT_LFS:
2430 set_opt(sbi, LFS);
2431 break;
2432 }
2433}
2434
fcc85a4d
JK
2435static inline bool f2fs_may_encrypt(struct inode *inode)
2436{
2437#ifdef CONFIG_F2FS_FS_ENCRYPTION
886f56f9 2438 umode_t mode = inode->i_mode;
fcc85a4d
JK
2439
2440 return (S_ISREG(mode) || S_ISDIR(mode) || S_ISLNK(mode));
2441#else
2442 return 0;
2443#endif
2444}
2445
0b81d077
JK
2446#ifndef CONFIG_F2FS_FS_ENCRYPTION
2447#define fscrypt_set_d_op(i)
2448#define fscrypt_get_ctx fscrypt_notsupp_get_ctx
2449#define fscrypt_release_ctx fscrypt_notsupp_release_ctx
2450#define fscrypt_encrypt_page fscrypt_notsupp_encrypt_page
2451#define fscrypt_decrypt_page fscrypt_notsupp_decrypt_page
2452#define fscrypt_decrypt_bio_pages fscrypt_notsupp_decrypt_bio_pages
2453#define fscrypt_pullback_bio_page fscrypt_notsupp_pullback_bio_page
2454#define fscrypt_restore_control_page fscrypt_notsupp_restore_control_page
2455#define fscrypt_zeroout_range fscrypt_notsupp_zeroout_range
2456#define fscrypt_process_policy fscrypt_notsupp_process_policy
2457#define fscrypt_get_policy fscrypt_notsupp_get_policy
2458#define fscrypt_has_permitted_context fscrypt_notsupp_has_permitted_context
2459#define fscrypt_inherit_context fscrypt_notsupp_inherit_context
2460#define fscrypt_get_encryption_info fscrypt_notsupp_get_encryption_info
2461#define fscrypt_put_encryption_info fscrypt_notsupp_put_encryption_info
2462#define fscrypt_setup_filename fscrypt_notsupp_setup_filename
2463#define fscrypt_free_filename fscrypt_notsupp_free_filename
2464#define fscrypt_fname_encrypted_size fscrypt_notsupp_fname_encrypted_size
2465#define fscrypt_fname_alloc_buffer fscrypt_notsupp_fname_alloc_buffer
2466#define fscrypt_fname_free_buffer fscrypt_notsupp_fname_free_buffer
2467#define fscrypt_fname_disk_to_usr fscrypt_notsupp_fname_disk_to_usr
2468#define fscrypt_fname_usr_to_disk fscrypt_notsupp_fname_usr_to_disk
57e5055b 2469#endif
39a53e0c 2470#endif