xref: /openbmc/linux/fs/erofs/internal.h (revision de06a6a3)
147e4937aSGao Xiang /* SPDX-License-Identifier: GPL-2.0-only */
247e4937aSGao Xiang /*
347e4937aSGao Xiang  * Copyright (C) 2017-2018 HUAWEI, Inc.
4592e7cd0SAlexander A. Klimov  *             https://www.huawei.com/
547e4937aSGao Xiang  * Created by Gao Xiang <gaoxiang25@huawei.com>
647e4937aSGao Xiang  */
747e4937aSGao Xiang #ifndef __EROFS_INTERNAL_H
847e4937aSGao Xiang #define __EROFS_INTERNAL_H
947e4937aSGao Xiang 
1047e4937aSGao Xiang #include <linux/fs.h>
1147e4937aSGao Xiang #include <linux/dcache.h>
1247e4937aSGao Xiang #include <linux/mm.h>
1347e4937aSGao Xiang #include <linux/pagemap.h>
1447e4937aSGao Xiang #include <linux/bio.h>
1547e4937aSGao Xiang #include <linux/buffer_head.h>
1647e4937aSGao Xiang #include <linux/magic.h>
1747e4937aSGao Xiang #include <linux/slab.h>
1847e4937aSGao Xiang #include <linux/vmalloc.h>
1947e4937aSGao Xiang #include "erofs_fs.h"
2047e4937aSGao Xiang 
2147e4937aSGao Xiang /* redefine pr_fmt "erofs: " */
2247e4937aSGao Xiang #undef pr_fmt
2347e4937aSGao Xiang #define pr_fmt(fmt) "erofs: " fmt
2447e4937aSGao Xiang 
254f761fa2SGao Xiang __printf(3, 4) void _erofs_err(struct super_block *sb,
264f761fa2SGao Xiang 			       const char *function, const char *fmt, ...);
274f761fa2SGao Xiang #define erofs_err(sb, fmt, ...)	\
284f761fa2SGao Xiang 	_erofs_err(sb, __func__, fmt "\n", ##__VA_ARGS__)
294f761fa2SGao Xiang __printf(3, 4) void _erofs_info(struct super_block *sb,
304f761fa2SGao Xiang 			       const char *function, const char *fmt, ...);
314f761fa2SGao Xiang #define erofs_info(sb, fmt, ...) \
324f761fa2SGao Xiang 	_erofs_info(sb, __func__, fmt "\n", ##__VA_ARGS__)
3347e4937aSGao Xiang #ifdef CONFIG_EROFS_FS_DEBUG
344f761fa2SGao Xiang #define erofs_dbg(x, ...)       pr_debug(x "\n", ##__VA_ARGS__)
3547e4937aSGao Xiang #define DBG_BUGON               BUG_ON
3647e4937aSGao Xiang #else
374f761fa2SGao Xiang #define erofs_dbg(x, ...)       ((void)0)
3847e4937aSGao Xiang #define DBG_BUGON(x)            ((void)(x))
3947e4937aSGao Xiang #endif	/* !CONFIG_EROFS_FS_DEBUG */
4047e4937aSGao Xiang 
4147e4937aSGao Xiang /* EROFS_SUPER_MAGIC_V1 to represent the whole file system */
4247e4937aSGao Xiang #define EROFS_SUPER_MAGIC   EROFS_SUPER_MAGIC_V1
4347e4937aSGao Xiang 
4447e4937aSGao Xiang typedef u64 erofs_nid_t;
4547e4937aSGao Xiang typedef u64 erofs_off_t;
4647e4937aSGao Xiang /* data type for filesystem-wide blocks number */
4747e4937aSGao Xiang typedef u32 erofs_blk_t;
4847e4937aSGao Xiang 
49f57a3fe4SChao Yu struct erofs_fs_context {
50f57a3fe4SChao Yu #ifdef CONFIG_EROFS_FS_ZIP
51f57a3fe4SChao Yu 	/* current strategy of how to use managed cache */
52f57a3fe4SChao Yu 	unsigned char cache_strategy;
5330048cdaSHuang Jianan 	/* strategy of sync decompression (false - auto, true - force on) */
5430048cdaSHuang Jianan 	bool readahead_sync_decompress;
55f57a3fe4SChao Yu 
56f57a3fe4SChao Yu 	/* threshold for decompression synchronously */
57f57a3fe4SChao Yu 	unsigned int max_sync_decompress_pages;
58f57a3fe4SChao Yu #endif
59f57a3fe4SChao Yu 	unsigned int mount_opt;
60f57a3fe4SChao Yu };
61f57a3fe4SChao Yu 
6247e4937aSGao Xiang struct erofs_sb_info {
6347e4937aSGao Xiang #ifdef CONFIG_EROFS_FS_ZIP
6447e4937aSGao Xiang 	/* list for all registered superblocks, mainly for shrinker */
6547e4937aSGao Xiang 	struct list_head list;
6647e4937aSGao Xiang 	struct mutex umount_mutex;
6747e4937aSGao Xiang 
6864094a04SGao Xiang 	/* managed XArray arranged in physical block number */
6964094a04SGao Xiang 	struct xarray managed_pslots;
7047e4937aSGao Xiang 
7147e4937aSGao Xiang 	unsigned int shrinker_run_no;
7247e4937aSGao Xiang 
7347e4937aSGao Xiang 	/* pseudo inode to manage cached pages */
7447e4937aSGao Xiang 	struct inode *managed_cache;
7547e4937aSGao Xiang #endif	/* CONFIG_EROFS_FS_ZIP */
7647e4937aSGao Xiang 	u32 blocks;
7747e4937aSGao Xiang 	u32 meta_blkaddr;
7847e4937aSGao Xiang #ifdef CONFIG_EROFS_FS_XATTR
7947e4937aSGao Xiang 	u32 xattr_blkaddr;
8047e4937aSGao Xiang #endif
8147e4937aSGao Xiang 
8247e4937aSGao Xiang 	/* inode slot unit size in bit shift */
8347e4937aSGao Xiang 	unsigned char islotbits;
8447e4937aSGao Xiang 
8547e4937aSGao Xiang 	u32 build_time_nsec;
8647e4937aSGao Xiang 	u64 build_time;
8747e4937aSGao Xiang 
8847e4937aSGao Xiang 	/* what we really care is nid, rather than ino.. */
8947e4937aSGao Xiang 	erofs_nid_t root_nid;
9047e4937aSGao Xiang 	/* used for statfs, f_files - f_favail */
9147e4937aSGao Xiang 	u64 inos;
9247e4937aSGao Xiang 
9347e4937aSGao Xiang 	u8 uuid[16];                    /* 128-bit uuid for volume */
9447e4937aSGao Xiang 	u8 volume_name[16];             /* volume name */
95b858a484SPratik Shinde 	u32 feature_compat;
96426a9308SGao Xiang 	u32 feature_incompat;
9747e4937aSGao Xiang 
98f57a3fe4SChao Yu 	struct erofs_fs_context ctx;	/* options */
9947e4937aSGao Xiang };
10047e4937aSGao Xiang 
10147e4937aSGao Xiang #define EROFS_SB(sb) ((struct erofs_sb_info *)(sb)->s_fs_info)
10247e4937aSGao Xiang #define EROFS_I_SB(inode) ((struct erofs_sb_info *)(inode)->i_sb->s_fs_info)
10347e4937aSGao Xiang 
10447e4937aSGao Xiang /* Mount flags set via mount options or defaults */
10547e4937aSGao Xiang #define EROFS_MOUNT_XATTR_USER		0x00000010
10647e4937aSGao Xiang #define EROFS_MOUNT_POSIX_ACL		0x00000020
10747e4937aSGao Xiang 
108f57a3fe4SChao Yu #define clear_opt(ctx, option)	((ctx)->mount_opt &= ~EROFS_MOUNT_##option)
109f57a3fe4SChao Yu #define set_opt(ctx, option)	((ctx)->mount_opt |= EROFS_MOUNT_##option)
110f57a3fe4SChao Yu #define test_opt(ctx, option)	((ctx)->mount_opt & EROFS_MOUNT_##option)
11147e4937aSGao Xiang 
11247e4937aSGao Xiang enum {
11347e4937aSGao Xiang 	EROFS_ZIP_CACHE_DISABLED,
11447e4937aSGao Xiang 	EROFS_ZIP_CACHE_READAHEAD,
11547e4937aSGao Xiang 	EROFS_ZIP_CACHE_READAROUND
11647e4937aSGao Xiang };
11747e4937aSGao Xiang 
118f57a3fe4SChao Yu #ifdef CONFIG_EROFS_FS_ZIP
11947e4937aSGao Xiang #define EROFS_LOCKED_MAGIC     (INT_MIN | 0xE0F510CCL)
12047e4937aSGao Xiang 
12147e4937aSGao Xiang /* basic unit of the workstation of a super_block */
12247e4937aSGao Xiang struct erofs_workgroup {
12347e4937aSGao Xiang 	/* the workgroup index in the workstation */
12447e4937aSGao Xiang 	pgoff_t index;
12547e4937aSGao Xiang 
12647e4937aSGao Xiang 	/* overall workgroup reference count */
12747e4937aSGao Xiang 	atomic_t refcount;
12847e4937aSGao Xiang };
12947e4937aSGao Xiang 
13047e4937aSGao Xiang #if defined(CONFIG_SMP)
13147e4937aSGao Xiang static inline bool erofs_workgroup_try_to_freeze(struct erofs_workgroup *grp,
13247e4937aSGao Xiang 						 int val)
13347e4937aSGao Xiang {
13447e4937aSGao Xiang 	preempt_disable();
13547e4937aSGao Xiang 	if (val != atomic_cmpxchg(&grp->refcount, val, EROFS_LOCKED_MAGIC)) {
13647e4937aSGao Xiang 		preempt_enable();
13747e4937aSGao Xiang 		return false;
13847e4937aSGao Xiang 	}
13947e4937aSGao Xiang 	return true;
14047e4937aSGao Xiang }
14147e4937aSGao Xiang 
14247e4937aSGao Xiang static inline void erofs_workgroup_unfreeze(struct erofs_workgroup *grp,
14347e4937aSGao Xiang 					    int orig_val)
14447e4937aSGao Xiang {
14547e4937aSGao Xiang 	/*
14647e4937aSGao Xiang 	 * other observers should notice all modifications
14747e4937aSGao Xiang 	 * in the freezing period.
14847e4937aSGao Xiang 	 */
14947e4937aSGao Xiang 	smp_mb();
15047e4937aSGao Xiang 	atomic_set(&grp->refcount, orig_val);
15147e4937aSGao Xiang 	preempt_enable();
15247e4937aSGao Xiang }
15347e4937aSGao Xiang 
15447e4937aSGao Xiang static inline int erofs_wait_on_workgroup_freezed(struct erofs_workgroup *grp)
15547e4937aSGao Xiang {
15647e4937aSGao Xiang 	return atomic_cond_read_relaxed(&grp->refcount,
15747e4937aSGao Xiang 					VAL != EROFS_LOCKED_MAGIC);
15847e4937aSGao Xiang }
15947e4937aSGao Xiang #else
16047e4937aSGao Xiang static inline bool erofs_workgroup_try_to_freeze(struct erofs_workgroup *grp,
16147e4937aSGao Xiang 						 int val)
16247e4937aSGao Xiang {
16347e4937aSGao Xiang 	preempt_disable();
16447e4937aSGao Xiang 	/* no need to spin on UP platforms, let's just disable preemption. */
16547e4937aSGao Xiang 	if (val != atomic_read(&grp->refcount)) {
16647e4937aSGao Xiang 		preempt_enable();
16747e4937aSGao Xiang 		return false;
16847e4937aSGao Xiang 	}
16947e4937aSGao Xiang 	return true;
17047e4937aSGao Xiang }
17147e4937aSGao Xiang 
17247e4937aSGao Xiang static inline void erofs_workgroup_unfreeze(struct erofs_workgroup *grp,
17347e4937aSGao Xiang 					    int orig_val)
17447e4937aSGao Xiang {
17547e4937aSGao Xiang 	preempt_enable();
17647e4937aSGao Xiang }
17747e4937aSGao Xiang 
17847e4937aSGao Xiang static inline int erofs_wait_on_workgroup_freezed(struct erofs_workgroup *grp)
17947e4937aSGao Xiang {
18047e4937aSGao Xiang 	int v = atomic_read(&grp->refcount);
18147e4937aSGao Xiang 
18247e4937aSGao Xiang 	/* workgroup is never freezed on uniprocessor systems */
18347e4937aSGao Xiang 	DBG_BUGON(v == EROFS_LOCKED_MAGIC);
18447e4937aSGao Xiang 	return v;
18547e4937aSGao Xiang }
18647e4937aSGao Xiang #endif	/* !CONFIG_SMP */
18747e4937aSGao Xiang 
18847e4937aSGao Xiang /* hard limit of pages per compressed cluster */
18947e4937aSGao Xiang #define Z_EROFS_CLUSTER_MAX_PAGES       (CONFIG_EROFS_FS_CLUSTER_PAGE_LIMIT)
19047e4937aSGao Xiang #define EROFS_PCPUBUF_NR_PAGES          Z_EROFS_CLUSTER_MAX_PAGES
19147e4937aSGao Xiang #else
19247e4937aSGao Xiang #define EROFS_PCPUBUF_NR_PAGES          0
19347e4937aSGao Xiang #endif	/* !CONFIG_EROFS_FS_ZIP */
19447e4937aSGao Xiang 
19547e4937aSGao Xiang /* we strictly follow PAGE_SIZE and no buffer head yet */
19647e4937aSGao Xiang #define LOG_BLOCK_SIZE		PAGE_SHIFT
19747e4937aSGao Xiang 
19847e4937aSGao Xiang #undef LOG_SECTORS_PER_BLOCK
19947e4937aSGao Xiang #define LOG_SECTORS_PER_BLOCK	(PAGE_SHIFT - 9)
20047e4937aSGao Xiang 
20147e4937aSGao Xiang #undef SECTORS_PER_BLOCK
20247e4937aSGao Xiang #define SECTORS_PER_BLOCK	(1 << SECTORS_PER_BLOCK)
20347e4937aSGao Xiang 
20447e4937aSGao Xiang #define EROFS_BLKSIZ		(1 << LOG_BLOCK_SIZE)
20547e4937aSGao Xiang 
20647e4937aSGao Xiang #if (EROFS_BLKSIZ % 4096 || !EROFS_BLKSIZ)
20747e4937aSGao Xiang #error erofs cannot be used in this platform
20847e4937aSGao Xiang #endif
20947e4937aSGao Xiang 
21047e4937aSGao Xiang #define ROOT_NID(sb)		((sb)->root_nid)
21147e4937aSGao Xiang 
21247e4937aSGao Xiang #define erofs_blknr(addr)       ((addr) / EROFS_BLKSIZ)
21347e4937aSGao Xiang #define erofs_blkoff(addr)      ((addr) % EROFS_BLKSIZ)
21447e4937aSGao Xiang #define blknr_to_addr(nr)       ((erofs_off_t)(nr) * EROFS_BLKSIZ)
21547e4937aSGao Xiang 
21647e4937aSGao Xiang static inline erofs_off_t iloc(struct erofs_sb_info *sbi, erofs_nid_t nid)
21747e4937aSGao Xiang {
21847e4937aSGao Xiang 	return blknr_to_addr(sbi->meta_blkaddr) + (nid << sbi->islotbits);
21947e4937aSGao Xiang }
22047e4937aSGao Xiang 
221*de06a6a3SGao Xiang #define EROFS_FEATURE_FUNCS(name, compat, feature) \
222*de06a6a3SGao Xiang static inline bool erofs_sb_has_##name(struct erofs_sb_info *sbi) \
223*de06a6a3SGao Xiang { \
224*de06a6a3SGao Xiang 	return sbi->feature_##compat & EROFS_FEATURE_##feature; \
225*de06a6a3SGao Xiang }
226*de06a6a3SGao Xiang 
227*de06a6a3SGao Xiang EROFS_FEATURE_FUNCS(lz4_0padding, incompat, INCOMPAT_LZ4_0PADDING)
228*de06a6a3SGao Xiang EROFS_FEATURE_FUNCS(sb_chksum, compat, COMPAT_SB_CHKSUM)
229*de06a6a3SGao Xiang 
23047e4937aSGao Xiang /* atomic flag definitions */
231a5876e24SGao Xiang #define EROFS_I_EA_INITED_BIT	0
232a5876e24SGao Xiang #define EROFS_I_Z_INITED_BIT	1
23347e4937aSGao Xiang 
23447e4937aSGao Xiang /* bitlock definitions (arranged in reverse order) */
235a5876e24SGao Xiang #define EROFS_I_BL_XATTR_BIT	(BITS_PER_LONG - 1)
236a5876e24SGao Xiang #define EROFS_I_BL_Z_BIT	(BITS_PER_LONG - 2)
23747e4937aSGao Xiang 
238a5876e24SGao Xiang struct erofs_inode {
23947e4937aSGao Xiang 	erofs_nid_t nid;
24047e4937aSGao Xiang 
24147e4937aSGao Xiang 	/* atomic flags (including bitlocks) */
24247e4937aSGao Xiang 	unsigned long flags;
24347e4937aSGao Xiang 
2448a765682SGao Xiang 	unsigned char datalayout;
24547e4937aSGao Xiang 	unsigned char inode_isize;
24647e4937aSGao Xiang 	unsigned short xattr_isize;
24747e4937aSGao Xiang 
24847e4937aSGao Xiang 	unsigned int xattr_shared_count;
24947e4937aSGao Xiang 	unsigned int *xattr_shared_xattrs;
25047e4937aSGao Xiang 
25147e4937aSGao Xiang 	union {
25247e4937aSGao Xiang 		erofs_blk_t raw_blkaddr;
25347e4937aSGao Xiang #ifdef CONFIG_EROFS_FS_ZIP
25447e4937aSGao Xiang 		struct {
25547e4937aSGao Xiang 			unsigned short z_advise;
25647e4937aSGao Xiang 			unsigned char  z_algorithmtype[2];
25747e4937aSGao Xiang 			unsigned char  z_logical_clusterbits;
25847e4937aSGao Xiang 			unsigned char  z_physical_clusterbits[2];
25947e4937aSGao Xiang 		};
26047e4937aSGao Xiang #endif	/* CONFIG_EROFS_FS_ZIP */
26147e4937aSGao Xiang 	};
26247e4937aSGao Xiang 	/* the corresponding vfs inode */
26347e4937aSGao Xiang 	struct inode vfs_inode;
26447e4937aSGao Xiang };
26547e4937aSGao Xiang 
266a5876e24SGao Xiang #define EROFS_I(ptr)	\
267a5876e24SGao Xiang 	container_of(ptr, struct erofs_inode, vfs_inode)
26847e4937aSGao Xiang 
26999634bf3SGao Xiang static inline unsigned long erofs_inode_datablocks(struct inode *inode)
27047e4937aSGao Xiang {
27147e4937aSGao Xiang 	/* since i_size cannot be changed */
27247e4937aSGao Xiang 	return DIV_ROUND_UP(inode->i_size, EROFS_BLKSIZ);
27347e4937aSGao Xiang }
27447e4937aSGao Xiang 
2758a765682SGao Xiang static inline unsigned int erofs_bitrange(unsigned int value, unsigned int bit,
2768a765682SGao Xiang 					  unsigned int bits)
27747e4937aSGao Xiang {
2788a765682SGao Xiang 
2798a765682SGao Xiang 	return (value >> bit) & ((1 << bits) - 1);
28047e4937aSGao Xiang }
28147e4937aSGao Xiang 
2828a765682SGao Xiang 
2838a765682SGao Xiang static inline unsigned int erofs_inode_version(unsigned int value)
28447e4937aSGao Xiang {
2858a765682SGao Xiang 	return erofs_bitrange(value, EROFS_I_VERSION_BIT,
2868a765682SGao Xiang 			      EROFS_I_VERSION_BITS);
2878a765682SGao Xiang }
2888a765682SGao Xiang 
2898a765682SGao Xiang static inline unsigned int erofs_inode_datalayout(unsigned int value)
2908a765682SGao Xiang {
2918a765682SGao Xiang 	return erofs_bitrange(value, EROFS_I_DATALAYOUT_BIT,
2928a765682SGao Xiang 			      EROFS_I_DATALAYOUT_BITS);
29347e4937aSGao Xiang }
29447e4937aSGao Xiang 
29547e4937aSGao Xiang extern const struct super_operations erofs_sops;
29647e4937aSGao Xiang 
29747e4937aSGao Xiang extern const struct address_space_operations erofs_raw_access_aops;
2980c638f70SGao Xiang extern const struct address_space_operations z_erofs_aops;
29947e4937aSGao Xiang 
30047e4937aSGao Xiang /*
3018137824eSYue Hu  * Logical to physical block mapping
30247e4937aSGao Xiang  *
30347e4937aSGao Xiang  * Different with other file systems, it is used for 2 access modes:
30447e4937aSGao Xiang  *
30547e4937aSGao Xiang  * 1) RAW access mode:
30647e4937aSGao Xiang  *
30747e4937aSGao Xiang  * Users pass a valid (m_lblk, m_lofs -- usually 0) pair,
30847e4937aSGao Xiang  * and get the valid m_pblk, m_pofs and the longest m_len(in bytes).
30947e4937aSGao Xiang  *
31047e4937aSGao Xiang  * Note that m_lblk in the RAW access mode refers to the number of
31147e4937aSGao Xiang  * the compressed ondisk block rather than the uncompressed
31247e4937aSGao Xiang  * in-memory block for the compressed file.
31347e4937aSGao Xiang  *
31447e4937aSGao Xiang  * m_pofs equals to m_lofs except for the inline data page.
31547e4937aSGao Xiang  *
31647e4937aSGao Xiang  * 2) Normal access mode:
31747e4937aSGao Xiang  *
31847e4937aSGao Xiang  * If the inode is not compressed, it has no difference with
31947e4937aSGao Xiang  * the RAW access mode. However, if the inode is compressed,
32047e4937aSGao Xiang  * users should pass a valid (m_lblk, m_lofs) pair, and get
32147e4937aSGao Xiang  * the needed m_pblk, m_pofs, m_len to get the compressed data
32247e4937aSGao Xiang  * and the updated m_lblk, m_lofs which indicates the start
32347e4937aSGao Xiang  * of the corresponding uncompressed data in the file.
32447e4937aSGao Xiang  */
32547e4937aSGao Xiang enum {
32647e4937aSGao Xiang 	BH_Zipped = BH_PrivateStart,
32747e4937aSGao Xiang 	BH_FullMapped,
32847e4937aSGao Xiang };
32947e4937aSGao Xiang 
33047e4937aSGao Xiang /* Has a disk mapping */
33147e4937aSGao Xiang #define EROFS_MAP_MAPPED	(1 << BH_Mapped)
33247e4937aSGao Xiang /* Located in metadata (could be copied from bd_inode) */
33347e4937aSGao Xiang #define EROFS_MAP_META		(1 << BH_Meta)
33447e4937aSGao Xiang /* The extent has been compressed */
33547e4937aSGao Xiang #define EROFS_MAP_ZIPPED	(1 << BH_Zipped)
33647e4937aSGao Xiang /* The length of extent is full */
33747e4937aSGao Xiang #define EROFS_MAP_FULL_MAPPED	(1 << BH_FullMapped)
33847e4937aSGao Xiang 
33947e4937aSGao Xiang struct erofs_map_blocks {
34047e4937aSGao Xiang 	erofs_off_t m_pa, m_la;
34147e4937aSGao Xiang 	u64 m_plen, m_llen;
34247e4937aSGao Xiang 
34347e4937aSGao Xiang 	unsigned int m_flags;
34447e4937aSGao Xiang 
34547e4937aSGao Xiang 	struct page *mpage;
34647e4937aSGao Xiang };
34747e4937aSGao Xiang 
3488137824eSYue Hu /* Flags used by erofs_map_blocks_flatmode() */
34947e4937aSGao Xiang #define EROFS_GET_BLOCKS_RAW    0x0001
35047e4937aSGao Xiang 
35147e4937aSGao Xiang /* zmap.c */
35247e4937aSGao Xiang #ifdef CONFIG_EROFS_FS_ZIP
35347e4937aSGao Xiang int z_erofs_fill_inode(struct inode *inode);
35447e4937aSGao Xiang int z_erofs_map_blocks_iter(struct inode *inode,
35547e4937aSGao Xiang 			    struct erofs_map_blocks *map,
35647e4937aSGao Xiang 			    int flags);
35747e4937aSGao Xiang #else
35847e4937aSGao Xiang static inline int z_erofs_fill_inode(struct inode *inode) { return -EOPNOTSUPP; }
35947e4937aSGao Xiang static inline int z_erofs_map_blocks_iter(struct inode *inode,
36047e4937aSGao Xiang 					  struct erofs_map_blocks *map,
36147e4937aSGao Xiang 					  int flags)
36247e4937aSGao Xiang {
36347e4937aSGao Xiang 	return -EOPNOTSUPP;
36447e4937aSGao Xiang }
36547e4937aSGao Xiang #endif	/* !CONFIG_EROFS_FS_ZIP */
36647e4937aSGao Xiang 
36747e4937aSGao Xiang /* data.c */
368e655b5b3SGao Xiang struct page *erofs_get_meta_page(struct super_block *sb, erofs_blk_t blkaddr);
36947e4937aSGao Xiang 
37047e4937aSGao Xiang /* inode.c */
37147e4937aSGao Xiang static inline unsigned long erofs_inode_hash(erofs_nid_t nid)
37247e4937aSGao Xiang {
37347e4937aSGao Xiang #if BITS_PER_LONG == 32
37447e4937aSGao Xiang 	return (nid >> 32) ^ (nid & 0xffffffff);
37547e4937aSGao Xiang #else
37647e4937aSGao Xiang 	return nid;
37747e4937aSGao Xiang #endif
37847e4937aSGao Xiang }
37947e4937aSGao Xiang 
38047e4937aSGao Xiang extern const struct inode_operations erofs_generic_iops;
38147e4937aSGao Xiang extern const struct inode_operations erofs_symlink_iops;
38247e4937aSGao Xiang extern const struct inode_operations erofs_fast_symlink_iops;
38347e4937aSGao Xiang 
38447e4937aSGao Xiang struct inode *erofs_iget(struct super_block *sb, erofs_nid_t nid, bool dir);
385549c7297SChristian Brauner int erofs_getattr(struct user_namespace *mnt_userns, const struct path *path,
386549c7297SChristian Brauner 		  struct kstat *stat, u32 request_mask,
387549c7297SChristian Brauner 		  unsigned int query_flags);
38847e4937aSGao Xiang 
38947e4937aSGao Xiang /* namei.c */
39047e4937aSGao Xiang extern const struct inode_operations erofs_dir_iops;
39147e4937aSGao Xiang 
39247e4937aSGao Xiang int erofs_namei(struct inode *dir, struct qstr *name,
39347e4937aSGao Xiang 		erofs_nid_t *nid, unsigned int *d_type);
39447e4937aSGao Xiang 
39547e4937aSGao Xiang /* dir.c */
39647e4937aSGao Xiang extern const struct file_operations erofs_dir_fops;
39747e4937aSGao Xiang 
39847e4937aSGao Xiang /* utils.c / zdata.c */
3995ddcee1fSGao Xiang struct page *erofs_allocpage(struct list_head *pool, gfp_t gfp);
40047e4937aSGao Xiang 
40147e4937aSGao Xiang #if (EROFS_PCPUBUF_NR_PAGES > 0)
40247e4937aSGao Xiang void *erofs_get_pcpubuf(unsigned int pagenr);
40347e4937aSGao Xiang #define erofs_put_pcpubuf(buf) do { \
40447e4937aSGao Xiang 	(void)&(buf);	\
40547e4937aSGao Xiang 	preempt_enable();	\
40647e4937aSGao Xiang } while (0)
40747e4937aSGao Xiang #else
40847e4937aSGao Xiang static inline void *erofs_get_pcpubuf(unsigned int pagenr)
40947e4937aSGao Xiang {
41047e4937aSGao Xiang 	return ERR_PTR(-EOPNOTSUPP);
41147e4937aSGao Xiang }
41247e4937aSGao Xiang 
41347e4937aSGao Xiang #define erofs_put_pcpubuf(buf) do {} while (0)
41447e4937aSGao Xiang #endif
41547e4937aSGao Xiang 
41647e4937aSGao Xiang #ifdef CONFIG_EROFS_FS_ZIP
41747e4937aSGao Xiang int erofs_workgroup_put(struct erofs_workgroup *grp);
41847e4937aSGao Xiang struct erofs_workgroup *erofs_find_workgroup(struct super_block *sb,
419997626d8SVladimir Zapolskiy 					     pgoff_t index);
42064094a04SGao Xiang struct erofs_workgroup *erofs_insert_workgroup(struct super_block *sb,
421e5e9a432SVladimir Zapolskiy 					       struct erofs_workgroup *grp);
42247e4937aSGao Xiang void erofs_workgroup_free_rcu(struct erofs_workgroup *grp);
42347e4937aSGao Xiang void erofs_shrinker_register(struct super_block *sb);
42447e4937aSGao Xiang void erofs_shrinker_unregister(struct super_block *sb);
42547e4937aSGao Xiang int __init erofs_init_shrinker(void);
42647e4937aSGao Xiang void erofs_exit_shrinker(void);
42747e4937aSGao Xiang int __init z_erofs_init_zip_subsystem(void);
42847e4937aSGao Xiang void z_erofs_exit_zip_subsystem(void);
42947e4937aSGao Xiang int erofs_try_to_free_all_cached_pages(struct erofs_sb_info *sbi,
43047e4937aSGao Xiang 				       struct erofs_workgroup *egrp);
43147e4937aSGao Xiang int erofs_try_to_free_cached_page(struct address_space *mapping,
43247e4937aSGao Xiang 				  struct page *page);
43347e4937aSGao Xiang #else
43447e4937aSGao Xiang static inline void erofs_shrinker_register(struct super_block *sb) {}
43547e4937aSGao Xiang static inline void erofs_shrinker_unregister(struct super_block *sb) {}
43647e4937aSGao Xiang static inline int erofs_init_shrinker(void) { return 0; }
43747e4937aSGao Xiang static inline void erofs_exit_shrinker(void) {}
43847e4937aSGao Xiang static inline int z_erofs_init_zip_subsystem(void) { return 0; }
43947e4937aSGao Xiang static inline void z_erofs_exit_zip_subsystem(void) {}
44047e4937aSGao Xiang #endif	/* !CONFIG_EROFS_FS_ZIP */
44147e4937aSGao Xiang 
44247e4937aSGao Xiang #define EFSCORRUPTED    EUCLEAN         /* Filesystem is corrupted */
44347e4937aSGao Xiang 
44447e4937aSGao Xiang #endif	/* __EROFS_INTERNAL_H */
44547e4937aSGao Xiang 
446