f2fs.h 108.1 KB
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/*
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 * fs/f2fs/f2fs.h
 *
 * Copyright (c) 2012 Samsung Electronics Co., Ltd.
 *             http://www.samsung.com/
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */
#ifndef _LINUX_F2FS_H
#define _LINUX_F2FS_H

#include <linux/types.h>
#include <linux/page-flags.h>
#include <linux/buffer_head.h>
#include <linux/slab.h>
#include <linux/crc32.h>
#include <linux/magic.h>
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#include <linux/kobject.h>
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#include <linux/sched.h>
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#include <linux/cred.h>
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#include <linux/vmalloc.h>
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#include <linux/bio.h>
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#include <linux/blkdev.h>
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#include <linux/quotaops.h>
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#include <crypto/hash.h>
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#define __FS_HAS_ENCRYPTION IS_ENABLED(CONFIG_F2FS_FS_ENCRYPTION)
#include <linux/fscrypt.h>

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#ifdef CONFIG_F2FS_CHECK_FS
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#define f2fs_bug_on(sbi, condition)	BUG_ON(condition)
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#else
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#define f2fs_bug_on(sbi, condition)					\
	do {								\
		if (unlikely(condition)) {				\
			WARN_ON(1);					\
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			set_sbi_flag(sbi, SBI_NEED_FSCK);		\
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		}							\
	} while (0)
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#endif

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#ifdef CONFIG_F2FS_FAULT_INJECTION
enum {
	FAULT_KMALLOC,
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	FAULT_KVMALLOC,
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	FAULT_PAGE_ALLOC,
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	FAULT_PAGE_GET,
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	FAULT_ALLOC_BIO,
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	FAULT_ALLOC_NID,
	FAULT_ORPHAN,
	FAULT_BLOCK,
	FAULT_DIR_DEPTH,
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	FAULT_EVICT_INODE,
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	FAULT_TRUNCATE,
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	FAULT_IO,
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	FAULT_CHECKPOINT,
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	FAULT_MAX,
};

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struct f2fs_fault_info {
	atomic_t inject_ops;
	unsigned int inject_rate;
	unsigned int inject_type;
};

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extern char *f2fs_fault_name[FAULT_MAX];
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#define IS_FAULT_SET(fi, type) ((fi)->inject_type & (1 << (type)))
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#endif

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/*
 * For mount options
 */
#define F2FS_MOUNT_BG_GC		0x00000001
#define F2FS_MOUNT_DISABLE_ROLL_FORWARD	0x00000002
#define F2FS_MOUNT_DISCARD		0x00000004
#define F2FS_MOUNT_NOHEAP		0x00000008
#define F2FS_MOUNT_XATTR_USER		0x00000010
#define F2FS_MOUNT_POSIX_ACL		0x00000020
#define F2FS_MOUNT_DISABLE_EXT_IDENTIFY	0x00000040
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#define F2FS_MOUNT_INLINE_XATTR		0x00000080
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#define F2FS_MOUNT_INLINE_DATA		0x00000100
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#define F2FS_MOUNT_INLINE_DENTRY	0x00000200
#define F2FS_MOUNT_FLUSH_MERGE		0x00000400
#define F2FS_MOUNT_NOBARRIER		0x00000800
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#define F2FS_MOUNT_FASTBOOT		0x00001000
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#define F2FS_MOUNT_EXTENT_CACHE		0x00002000
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#define F2FS_MOUNT_FORCE_FG_GC		0x00004000
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#define F2FS_MOUNT_DATA_FLUSH		0x00008000
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#define F2FS_MOUNT_FAULT_INJECTION	0x00010000
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#define F2FS_MOUNT_ADAPTIVE		0x00020000
#define F2FS_MOUNT_LFS			0x00040000
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#define F2FS_MOUNT_USRQUOTA		0x00080000
#define F2FS_MOUNT_GRPQUOTA		0x00100000
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#define F2FS_MOUNT_PRJQUOTA		0x00200000
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#define F2FS_MOUNT_QUOTA		0x00400000
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#define F2FS_MOUNT_INLINE_XATTR_SIZE	0x00800000
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#define F2FS_MOUNT_RESERVE_ROOT		0x01000000
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#define F2FS_OPTION(sbi)	((sbi)->mount_opt)
#define clear_opt(sbi, option)	(F2FS_OPTION(sbi).opt &= ~F2FS_MOUNT_##option)
#define set_opt(sbi, option)	(F2FS_OPTION(sbi).opt |= F2FS_MOUNT_##option)
#define test_opt(sbi, option)	(F2FS_OPTION(sbi).opt & F2FS_MOUNT_##option)
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#define ver_after(a, b)	(typecheck(unsigned long long, a) &&		\
		typecheck(unsigned long long, b) &&			\
		((long long)((a) - (b)) > 0))

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typedef u32 block_t;	/*
			 * should not change u32, since it is the on-disk block
			 * address format, __le32.
			 */
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typedef u32 nid_t;

struct f2fs_mount_info {
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	unsigned int opt;
	int write_io_size_bits;		/* Write IO size bits */
	block_t root_reserved_blocks;	/* root reserved blocks */
	kuid_t s_resuid;		/* reserved blocks for uid */
	kgid_t s_resgid;		/* reserved blocks for gid */
	int active_logs;		/* # of active logs */
	int inline_xattr_size;		/* inline xattr size */
#ifdef CONFIG_F2FS_FAULT_INJECTION
	struct f2fs_fault_info fault_info;	/* For fault injection */
#endif
#ifdef CONFIG_QUOTA
	/* Names of quota files with journalled quota */
	char *s_qf_names[MAXQUOTAS];
	int s_jquota_fmt;			/* Format of quota to use */
#endif
	/* For which write hints are passed down to block layer */
	int whint_mode;
	int alloc_mode;			/* segment allocation policy */
	int fsync_mode;			/* fsync policy */
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	bool test_dummy_encryption;	/* test dummy encryption */
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};

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#define F2FS_FEATURE_ENCRYPT		0x0001
#define F2FS_FEATURE_BLKZONED		0x0002
#define F2FS_FEATURE_ATOMIC_WRITE	0x0004
#define F2FS_FEATURE_EXTRA_ATTR		0x0008
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#define F2FS_FEATURE_PRJQUOTA		0x0010
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#define F2FS_FEATURE_INODE_CHKSUM	0x0020
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#define F2FS_FEATURE_FLEXIBLE_INLINE_XATTR	0x0040
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#define F2FS_FEATURE_QUOTA_INO		0x0080
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#define F2FS_FEATURE_INODE_CRTIME	0x0100
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#define F2FS_FEATURE_LOST_FOUND		0x0200
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#define F2FS_FEATURE_VERITY		0x0400	/* reserved */
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#define F2FS_HAS_FEATURE(sb, mask)					\
	((F2FS_SB(sb)->raw_super->feature & cpu_to_le32(mask)) != 0)
#define F2FS_SET_FEATURE(sb, mask)					\
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	(F2FS_SB(sb)->raw_super->feature |= cpu_to_le32(mask))
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#define F2FS_CLEAR_FEATURE(sb, mask)					\
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	(F2FS_SB(sb)->raw_super->feature &= ~cpu_to_le32(mask))
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/*
 * Default values for user and/or group using reserved blocks
 */
#define	F2FS_DEF_RESUID		0
#define	F2FS_DEF_RESGID		0

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/*
 * For checkpoint manager
 */
enum {
	NAT_BITMAP,
	SIT_BITMAP
};

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#define	CP_UMOUNT	0x00000001
#define	CP_FASTBOOT	0x00000002
#define	CP_SYNC		0x00000004
#define	CP_RECOVERY	0x00000008
#define	CP_DISCARD	0x00000010
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#define CP_TRIMMED	0x00000020
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#define MAX_DISCARD_BLOCKS(sbi)		BLKS_PER_SEC(sbi)
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#define DEF_MAX_DISCARD_REQUEST		8	/* issue 8 discards per round */
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#define DEF_MIN_DISCARD_ISSUE_TIME	50	/* 50 ms, if exists */
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#define DEF_MID_DISCARD_ISSUE_TIME	500	/* 500 ms, if device busy */
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#define DEF_MAX_DISCARD_ISSUE_TIME	60000	/* 60 s, if no candidates */
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#define DEF_DISCARD_URGENT_UTIL		80	/* do more discard over 80% */
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#define DEF_CP_INTERVAL			60	/* 60 secs */
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#define DEF_IDLE_INTERVAL		5	/* 5 secs */
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struct cp_control {
	int reason;
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	__u64 trim_start;
	__u64 trim_end;
	__u64 trim_minlen;
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};

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/*
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 * indicate meta/data type
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 */
enum {
	META_CP,
	META_NAT,
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	META_SIT,
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	META_SSA,
	META_POR,
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	DATA_GENERIC,
	META_GENERIC,
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};

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/* for the list of ino */
enum {
	ORPHAN_INO,		/* for orphan ino list */
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	APPEND_INO,		/* for append ino list */
	UPDATE_INO,		/* for update ino list */
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	TRANS_DIR_INO,		/* for trasactions dir ino list */
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	FLUSH_INO,		/* for multiple device flushing */
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	MAX_INO_ENTRY,		/* max. list */
};

struct ino_entry {
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	struct list_head list;		/* list head */
	nid_t ino;			/* inode number */
	unsigned int dirty_device;	/* dirty device bitmap */
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};

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/* for the list of inodes to be GCed */
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struct inode_entry {
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	struct list_head list;	/* list head */
	struct inode *inode;	/* vfs inode pointer */
};

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struct fsync_node_entry {
	struct list_head list;	/* list head */
	struct page *page;	/* warm node page pointer */
	unsigned int seq_id;	/* sequence id */
};

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/* for the bitmap indicate blocks to be discarded */
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struct discard_entry {
	struct list_head list;	/* list head */
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	block_t start_blkaddr;	/* start blockaddr of current segment */
	unsigned char discard_map[SIT_VBLOCK_MAP_SIZE];	/* segment discard bitmap */
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};

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/* default discard granularity of inner discard thread, unit: block count */
#define DEFAULT_DISCARD_GRANULARITY		16

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/* max discard pend list number */
#define MAX_PLIST_NUM		512
#define plist_idx(blk_num)	((blk_num) >= MAX_PLIST_NUM ?		\
					(MAX_PLIST_NUM - 1) : (blk_num - 1))

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enum {
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	D_PREP,			/* initial */
	D_PARTIAL,		/* partially submitted */
	D_SUBMIT,		/* all submitted */
	D_DONE,			/* finished */
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};

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struct discard_info {
	block_t lstart;			/* logical start address */
	block_t len;			/* length */
	block_t start;			/* actual start address in dev */
};

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struct discard_cmd {
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	struct rb_node rb_node;		/* rb node located in rb-tree */
	union {
		struct {
			block_t lstart;	/* logical start address */
			block_t len;	/* length */
			block_t start;	/* actual start address in dev */
		};
		struct discard_info di;	/* discard info */

	};
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	struct list_head list;		/* command list */
	struct completion wait;		/* compleation */
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	struct block_device *bdev;	/* bdev */
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	unsigned short ref;		/* reference count */
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	unsigned char state;		/* state */
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	unsigned char issuing;		/* issuing discard */
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	int error;			/* bio error */
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	spinlock_t lock;		/* for state/bio_ref updating */
	unsigned short bio_ref;		/* bio reference count */
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};

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enum {
	DPOLICY_BG,
	DPOLICY_FORCE,
	DPOLICY_FSTRIM,
	DPOLICY_UMOUNT,
	MAX_DPOLICY,
};

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struct discard_policy {
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	int type;			/* type of discard */
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	unsigned int min_interval;	/* used for candidates exist */
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	unsigned int mid_interval;	/* used for device busy */
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	unsigned int max_interval;	/* used for candidates not exist */
	unsigned int max_requests;	/* # of discards issued per round */
	unsigned int io_aware_gran;	/* minimum granularity discard not be aware of I/O */
	bool io_aware;			/* issue discard in idle time */
	bool sync;			/* submit discard with REQ_SYNC flag */
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	bool ordered;			/* issue discard by lba order */
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	unsigned int granularity;	/* discard granularity */
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};

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struct discard_cmd_control {
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	struct task_struct *f2fs_issue_discard;	/* discard thread */
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	struct list_head entry_list;		/* 4KB discard entry list */
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	struct list_head pend_list[MAX_PLIST_NUM];/* store pending entries */
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	struct list_head wait_list;		/* store on-flushing entries */
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	struct list_head fstrim_list;		/* in-flight discard from fstrim */
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	wait_queue_head_t discard_wait_queue;	/* waiting queue for wake-up */
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	unsigned int discard_wake;		/* to wake up discard thread */
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	struct mutex cmd_lock;
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	unsigned int nr_discards;		/* # of discards in the list */
	unsigned int max_discards;		/* max. discards to be issued */
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	unsigned int discard_granularity;	/* discard granularity */
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	unsigned int undiscard_blks;		/* # of undiscard blocks */
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	unsigned int next_pos;			/* next discard position */
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	atomic_t issued_discard;		/* # of issued discard */
	atomic_t issing_discard;		/* # of issing discard */
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	atomic_t discard_cmd_cnt;		/* # of cached cmd count */
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	struct rb_root root;			/* root of discard rb-tree */
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	bool rbtree_check;			/* config for consistence check */
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};

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/* for the list of fsync inodes, used only during recovery */
struct fsync_inode_entry {
	struct list_head list;	/* list head */
	struct inode *inode;	/* vfs inode pointer */
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	block_t blkaddr;	/* block address locating the last fsync */
	block_t last_dentry;	/* block address locating the last dentry */
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};

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#define nats_in_cursum(jnl)		(le16_to_cpu((jnl)->n_nats))
#define sits_in_cursum(jnl)		(le16_to_cpu((jnl)->n_sits))
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#define nat_in_journal(jnl, i)		((jnl)->nat_j.entries[i].ne)
#define nid_in_journal(jnl, i)		((jnl)->nat_j.entries[i].nid)
#define sit_in_journal(jnl, i)		((jnl)->sit_j.entries[i].se)
#define segno_in_journal(jnl, i)	((jnl)->sit_j.entries[i].segno)
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#define MAX_NAT_JENTRIES(jnl)	(NAT_JOURNAL_ENTRIES - nats_in_cursum(jnl))
#define MAX_SIT_JENTRIES(jnl)	(SIT_JOURNAL_ENTRIES - sits_in_cursum(jnl))
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static inline int update_nats_in_cursum(struct f2fs_journal *journal, int i)
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{
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	int before = nats_in_cursum(journal);
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	journal->n_nats = cpu_to_le16(before + i);
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	return before;
}

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static inline int update_sits_in_cursum(struct f2fs_journal *journal, int i)
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{
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	int before = sits_in_cursum(journal);
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	journal->n_sits = cpu_to_le16(before + i);
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	return before;
}

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static inline bool __has_cursum_space(struct f2fs_journal *journal,
							int size, int type)
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{
	if (type == NAT_JOURNAL)
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		return size <= MAX_NAT_JENTRIES(journal);
	return size <= MAX_SIT_JENTRIES(journal);
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}

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/*
 * ioctl commands
 */
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#define F2FS_IOC_GETFLAGS		FS_IOC_GETFLAGS
#define F2FS_IOC_SETFLAGS		FS_IOC_SETFLAGS
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#define F2FS_IOC_GETVERSION		FS_IOC_GETVERSION
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#define F2FS_IOCTL_MAGIC		0xf5
#define F2FS_IOC_START_ATOMIC_WRITE	_IO(F2FS_IOCTL_MAGIC, 1)
#define F2FS_IOC_COMMIT_ATOMIC_WRITE	_IO(F2FS_IOCTL_MAGIC, 2)
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#define F2FS_IOC_START_VOLATILE_WRITE	_IO(F2FS_IOCTL_MAGIC, 3)
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#define F2FS_IOC_RELEASE_VOLATILE_WRITE	_IO(F2FS_IOCTL_MAGIC, 4)
#define F2FS_IOC_ABORT_VOLATILE_WRITE	_IO(F2FS_IOCTL_MAGIC, 5)
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#define F2FS_IOC_GARBAGE_COLLECT	_IOW(F2FS_IOCTL_MAGIC, 6, __u32)
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#define F2FS_IOC_WRITE_CHECKPOINT	_IO(F2FS_IOCTL_MAGIC, 7)
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#define F2FS_IOC_DEFRAGMENT		_IOWR(F2FS_IOCTL_MAGIC, 8,	\
						struct f2fs_defragment)
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#define F2FS_IOC_MOVE_RANGE		_IOWR(F2FS_IOCTL_MAGIC, 9,	\
						struct f2fs_move_range)
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#define F2FS_IOC_FLUSH_DEVICE		_IOW(F2FS_IOCTL_MAGIC, 10,	\
						struct f2fs_flush_device)
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#define F2FS_IOC_GARBAGE_COLLECT_RANGE	_IOW(F2FS_IOCTL_MAGIC, 11,	\
						struct f2fs_gc_range)
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#define F2FS_IOC_GET_FEATURES		_IOR(F2FS_IOCTL_MAGIC, 12, __u32)
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#define F2FS_IOC_SET_PIN_FILE		_IOW(F2FS_IOCTL_MAGIC, 13, __u32)
#define F2FS_IOC_GET_PIN_FILE		_IOR(F2FS_IOCTL_MAGIC, 14, __u32)
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#define F2FS_IOC_PRECACHE_EXTENTS	_IO(F2FS_IOCTL_MAGIC, 15)
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#define F2FS_IOC_SET_ENCRYPTION_POLICY	FS_IOC_SET_ENCRYPTION_POLICY
#define F2FS_IOC_GET_ENCRYPTION_POLICY	FS_IOC_GET_ENCRYPTION_POLICY
#define F2FS_IOC_GET_ENCRYPTION_PWSALT	FS_IOC_GET_ENCRYPTION_PWSALT
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/*
 * should be same as XFS_IOC_GOINGDOWN.
 * Flags for going down operation used by FS_IOC_GOINGDOWN
 */
#define F2FS_IOC_SHUTDOWN	_IOR('X', 125, __u32)	/* Shutdown */
#define F2FS_GOING_DOWN_FULLSYNC	0x0	/* going down with full sync */
#define F2FS_GOING_DOWN_METASYNC	0x1	/* going down with metadata */
#define F2FS_GOING_DOWN_NOSYNC		0x2	/* going down */
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#define F2FS_GOING_DOWN_METAFLUSH	0x3	/* going down with meta flush */
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#if defined(__KERNEL__) && defined(CONFIG_COMPAT)
/*
 * ioctl commands in 32 bit emulation
 */
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#define F2FS_IOC32_GETFLAGS		FS_IOC32_GETFLAGS
#define F2FS_IOC32_SETFLAGS		FS_IOC32_SETFLAGS
#define F2FS_IOC32_GETVERSION		FS_IOC32_GETVERSION
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#endif

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#define F2FS_IOC_FSGETXATTR		FS_IOC_FSGETXATTR
#define F2FS_IOC_FSSETXATTR		FS_IOC_FSSETXATTR

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struct f2fs_gc_range {
	u32 sync;
	u64 start;
	u64 len;
};

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struct f2fs_defragment {
	u64 start;
	u64 len;
};

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struct f2fs_move_range {
	u32 dst_fd;		/* destination fd */
	u64 pos_in;		/* start position in src_fd */
	u64 pos_out;		/* start position in dst_fd */
	u64 len;		/* size to move */
};

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struct f2fs_flush_device {
	u32 dev_num;		/* device number to flush */
	u32 segments;		/* # of segments to flush */
};

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/* for inline stuff */
#define DEF_INLINE_RESERVED_SIZE	1
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#define DEF_MIN_INLINE_SIZE		1
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static inline int get_extra_isize(struct inode *inode);
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static inline int get_inline_xattr_addrs(struct inode *inode);
#define MAX_INLINE_DATA(inode)	(sizeof(__le32) *			\
				(CUR_ADDRS_PER_INODE(inode) -		\
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				get_inline_xattr_addrs(inode) -	\
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				DEF_INLINE_RESERVED_SIZE))
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/* for inline dir */
#define NR_INLINE_DENTRY(inode)	(MAX_INLINE_DATA(inode) * BITS_PER_BYTE / \
				((SIZE_OF_DIR_ENTRY + F2FS_SLOT_LEN) * \
				BITS_PER_BYTE + 1))
#define INLINE_DENTRY_BITMAP_SIZE(inode)	((NR_INLINE_DENTRY(inode) + \
					BITS_PER_BYTE - 1) / BITS_PER_BYTE)
#define INLINE_RESERVED_SIZE(inode)	(MAX_INLINE_DATA(inode) - \
				((SIZE_OF_DIR_ENTRY + F2FS_SLOT_LEN) * \
				NR_INLINE_DENTRY(inode) + \
				INLINE_DENTRY_BITMAP_SIZE(inode)))

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/*
 * For INODE and NODE manager
 */
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/* for directory operations */
struct f2fs_dentry_ptr {
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	struct inode *inode;
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	void *bitmap;
476 477 478
	struct f2fs_dir_entry *dentry;
	__u8 (*filename)[F2FS_SLOT_LEN];
	int max;
479
	int nr_bitmap;
480 481
};

482 483
static inline void make_dentry_ptr_block(struct inode *inode,
		struct f2fs_dentry_ptr *d, struct f2fs_dentry_block *t)
484
{
485
	d->inode = inode;
486
	d->max = NR_DENTRY_IN_BLOCK;
487
	d->nr_bitmap = SIZE_OF_DENTRY_BITMAP;
488
	d->bitmap = t->dentry_bitmap;
489 490 491
	d->dentry = t->dentry;
	d->filename = t->filename;
}
492

493
static inline void make_dentry_ptr_inline(struct inode *inode,
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					struct f2fs_dentry_ptr *d, void *t)
495
{
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	int entry_cnt = NR_INLINE_DENTRY(inode);
	int bitmap_size = INLINE_DENTRY_BITMAP_SIZE(inode);
	int reserved_size = INLINE_RESERVED_SIZE(inode);

500
	d->inode = inode;
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	d->max = entry_cnt;
	d->nr_bitmap = bitmap_size;
	d->bitmap = t;
	d->dentry = t + bitmap_size + reserved_size;
	d->filename = t + bitmap_size + reserved_size +
					SIZE_OF_DIR_ENTRY * entry_cnt;
507 508
}

509 510 511 512 513 514 515
/*
 * XATTR_NODE_OFFSET stores xattrs to one node block per file keeping -1
 * as its node offset to distinguish from index node blocks.
 * But some bits are used to mark the node block.
 */
#define XATTR_NODE_OFFSET	((((unsigned int)-1) << OFFSET_BIT_SHIFT) \
				>> OFFSET_BIT_SHIFT)
516 517 518 519 520
enum {
	ALLOC_NODE,			/* allocate a new node page if needed */
	LOOKUP_NODE,			/* look up a node without readahead */
	LOOKUP_NODE_RA,			/*
					 * look up a node with readahead called
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					 * by get_data_block.
522
					 */
523 524
};

525 526
#define DEFAULT_RETRY_IO_COUNT	8	/* maximum retry read IO count */

527
#define F2FS_LINK_MAX	0xffffffff	/* maximum link count per file */
528

529 530
#define MAX_DIR_RA_PAGES	4	/* maximum ra pages of dir */

531
/* for in-memory extent cache entry */
532 533 534 535
#define F2FS_MIN_EXTENT_LEN	64	/* minimum extent length */

/* number of extent info in extent cache we try to shrink */
#define EXTENT_CACHE_SHRINK_NUMBER	128
536

537 538 539 540 541 542
struct rb_entry {
	struct rb_node rb_node;		/* rb node located in rb-tree */
	unsigned int ofs;		/* start offset of the entry */
	unsigned int len;		/* length of the entry */
};

543
struct extent_info {
544 545
	unsigned int fofs;		/* start offset in a file */
	unsigned int len;		/* length of the extent */
546
	u32 blk;			/* start block address of the extent */
547 548 549
};

struct extent_node {
550 551 552 553 554 555 556 557 558 559
	struct rb_node rb_node;
	union {
		struct {
			unsigned int fofs;
			unsigned int len;
			u32 blk;
		};
		struct extent_info ei;	/* extent info */

	};
560
	struct list_head list;		/* node in global extent list of sbi */
561
	struct extent_tree *et;		/* extent tree pointer */
562 563 564 565 566
};

struct extent_tree {
	nid_t ino;			/* inode number */
	struct rb_root root;		/* root of extent info rb-tree */
567
	struct extent_node *cached_en;	/* recently accessed extent node */
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	struct extent_info largest;	/* largested extent info */
569
	struct list_head list;		/* to be used by sbi->zombie_list */
570
	rwlock_t lock;			/* protect extent info rb-tree */
571
	atomic_t node_cnt;		/* # of extent node in rb-tree*/
572 573
};

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/*
 * This structure is taken from ext4_map_blocks.
 *
 * Note that, however, f2fs uses NEW and MAPPED flags for f2fs_map_blocks().
 */
#define F2FS_MAP_NEW		(1 << BH_New)
#define F2FS_MAP_MAPPED		(1 << BH_Mapped)
581 582 583
#define F2FS_MAP_UNWRITTEN	(1 << BH_Unwritten)
#define F2FS_MAP_FLAGS		(F2FS_MAP_NEW | F2FS_MAP_MAPPED |\
				F2FS_MAP_UNWRITTEN)
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struct f2fs_map_blocks {
	block_t m_pblk;
	block_t m_lblk;
	unsigned int m_len;
	unsigned int m_flags;
590
	pgoff_t *m_next_pgofs;		/* point next possible non-hole pgofs */
591
	pgoff_t *m_next_extent;		/* point to next possible extent */
592
	int m_seg_type;
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};

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/* for flag in get_data_block */
596 597 598 599 600 601
enum {
	F2FS_GET_BLOCK_DEFAULT,
	F2FS_GET_BLOCK_FIEMAP,
	F2FS_GET_BLOCK_BMAP,
	F2FS_GET_BLOCK_PRE_DIO,
	F2FS_GET_BLOCK_PRE_AIO,
602
	F2FS_GET_BLOCK_PRECACHE,
603
};
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605 606 607 608
/*
 * i_advise uses FADVISE_XXX_BIT. We can add additional hints later.
 */
#define FADVISE_COLD_BIT	0x01
609
#define FADVISE_LOST_PINO_BIT	0x02
610
#define FADVISE_ENCRYPT_BIT	0x04
611
#define FADVISE_ENC_NAME_BIT	0x08
612
#define FADVISE_KEEP_SIZE_BIT	0x10
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#define FADVISE_HOT_BIT		0x20
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#define FADVISE_VERITY_BIT	0x40	/* reserved */
615

616 617
#define FADVISE_MODIFIABLE_BITS	(FADVISE_COLD_BIT | FADVISE_HOT_BIT)

618 619 620 621 622 623
#define file_is_cold(inode)	is_file(inode, FADVISE_COLD_BIT)
#define file_wrong_pino(inode)	is_file(inode, FADVISE_LOST_PINO_BIT)
#define file_set_cold(inode)	set_file(inode, FADVISE_COLD_BIT)
#define file_lost_pino(inode)	set_file(inode, FADVISE_LOST_PINO_BIT)
#define file_clear_cold(inode)	clear_file(inode, FADVISE_COLD_BIT)
#define file_got_pino(inode)	clear_file(inode, FADVISE_LOST_PINO_BIT)
624 625 626
#define file_is_encrypt(inode)	is_file(inode, FADVISE_ENCRYPT_BIT)
#define file_set_encrypt(inode)	set_file(inode, FADVISE_ENCRYPT_BIT)
#define file_clear_encrypt(inode) clear_file(inode, FADVISE_ENCRYPT_BIT)
627 628
#define file_enc_name(inode)	is_file(inode, FADVISE_ENC_NAME_BIT)
#define file_set_enc_name(inode) set_file(inode, FADVISE_ENC_NAME_BIT)
629 630
#define file_keep_isize(inode)	is_file(inode, FADVISE_KEEP_SIZE_BIT)
#define file_set_keep_isize(inode) set_file(inode, FADVISE_KEEP_SIZE_BIT)
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#define file_is_hot(inode)	is_file(inode, FADVISE_HOT_BIT)
#define file_set_hot(inode)	set_file(inode, FADVISE_HOT_BIT)
#define file_clear_hot(inode)	clear_file(inode, FADVISE_HOT_BIT)
634

635 636
#define DEF_DIR_LEVEL		0

637 638 639 640 641 642
enum {
	GC_FAILURE_PIN,
	GC_FAILURE_ATOMIC,
	MAX_GC_FAILURE
};

643 644 645 646
struct f2fs_inode_info {
	struct inode vfs_inode;		/* serve a vfs inode */
	unsigned long i_flags;		/* keep an inode flags for ioctl */
	unsigned char i_advise;		/* use to give file attribute hints */
647
	unsigned char i_dir_level;	/* use for dentry level for large dir */
648 649 650
	unsigned int i_current_depth;	/* only for directory depth */
	/* for gc failure statistic */
	unsigned int i_gc_failures[MAX_GC_FAILURE];
651
	unsigned int i_pino;		/* parent inode number */
652 653 654 655
	umode_t i_acl_mode;		/* keep file acl mode temporarily */

	/* Use below internally in f2fs*/
	unsigned long flags;		/* use to pass per-file flags */
656
	struct rw_semaphore i_sem;	/* protect fi info */
657
	atomic_t dirty_pages;		/* # of dirty pages */
658 659
	f2fs_hash_t chash;		/* hash value of given file name */
	unsigned int clevel;		/* maximum level of given file name */
660
	struct task_struct *task;	/* lookup and create consistency */
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	struct task_struct *cp_task;	/* separate cp/wb IO stats*/
662
	nid_t i_xattr_nid;		/* node id that contains xattrs */
663
	loff_t	last_disk_size;		/* lastly written file size */
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#ifdef CONFIG_QUOTA
	struct dquot *i_dquot[MAXQUOTAS];

	/* quota space reservation, managed internally by quota code */
	qsize_t i_reserved_quota;
#endif
671 672
	struct list_head dirty_list;	/* dirty list for dirs and files */
	struct list_head gdirty_list;	/* linked in global dirty list */
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	struct list_head inmem_ilist;	/* list for inmem inodes */
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	struct list_head inmem_pages;	/* inmemory pages managed by f2fs */
675
	struct task_struct *inmem_task;	/* store inmemory task */
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	struct mutex inmem_lock;	/* lock for inmemory pages */
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	struct extent_tree *extent_tree;	/* cached extent_tree entry */
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	/* avoid racing between foreground op and gc */
	struct rw_semaphore i_gc_rwsem[2];
681
	struct rw_semaphore i_mmap_sem;
682
	struct rw_semaphore i_xattr_sem; /* avoid racing between reading and changing EAs */
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684
	int i_extra_isize;		/* size of extra space located in i_addr */
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	kprojid_t i_projid;		/* id for project quota */
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	int i_inline_xattr_size;	/* inline xattr size */
687 688
	struct timespec64 i_crtime;	/* inode creation time */
	struct timespec64 i_disk_time[4];/* inode disk times */
689 690 691
};

static inline void get_extent_info(struct extent_info *ext,
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					struct f2fs_extent *i_ext)
693
{
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	ext->fofs = le32_to_cpu(i_ext->fofs);
	ext->blk = le32_to_cpu(i_ext->blk);
	ext->len = le32_to_cpu(i_ext->len);
697 698 699 700 701 702
}

static inline void set_raw_extent(struct extent_info *ext,
					struct f2fs_extent *i_ext)
{
	i_ext->fofs = cpu_to_le32(ext->fofs);
703
	i_ext->blk = cpu_to_le32(ext->blk);
704 705 706
	i_ext->len = cpu_to_le32(ext->len);
}

707 708 709 710 711 712 713 714
static inline void set_extent_info(struct extent_info *ei, unsigned int fofs,
						u32 blk, unsigned int len)
{
	ei->fofs = fofs;
	ei->blk = blk;
	ei->len = len;
}

715
static inline bool __is_discard_mergeable(struct discard_info *back,
716
			struct discard_info *front, unsigned int max_len)
717
{
718
	return (back->lstart + back->len == front->lstart) &&
719
		(back->len + front->len <= max_len);
720 721 722
}

static inline bool __is_discard_back_mergeable(struct discard_info *cur,
723
			struct discard_info *back, unsigned int max_len)
724
{
725
	return __is_discard_mergeable(back, cur, max_len);
726 727 728
}

static inline bool __is_discard_front_mergeable(struct discard_info *cur,
729
			struct discard_info *front, unsigned int max_len)
730
{
731
	return __is_discard_mergeable(cur, front, max_len);
732 733
}

734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752
static inline bool __is_extent_mergeable(struct extent_info *back,
						struct extent_info *front)
{
	return (back->fofs + back->len == front->fofs &&
			back->blk + back->len == front->blk);
}

static inline bool __is_back_mergeable(struct extent_info *cur,
						struct extent_info *back)
{
	return __is_extent_mergeable(back, cur);
}

static inline bool __is_front_mergeable(struct extent_info *cur,
						struct extent_info *front)
{
	return __is_extent_mergeable(cur, front);
}

753
extern void f2fs_mark_inode_dirty_sync(struct inode *inode, bool sync);
754 755
static inline void __try_update_largest_extent(struct inode *inode,
			struct extent_tree *et, struct extent_node *en)
756
{
757
	if (en->ei.len > et->largest.len) {
758
		et->largest = en->ei;
759
		f2fs_mark_inode_dirty_sync(inode, true);
760
	}
761 762
}

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/*
 * For free nid management
 */
enum nid_state {
	FREE_NID,		/* newly added to free nid list */
	PREALLOC_NID,		/* it is preallocated */
	MAX_NID_STATE,
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};

772 773 774
struct f2fs_nm_info {
	block_t nat_blkaddr;		/* base disk address of NAT */
	nid_t max_nid;			/* maximum possible node ids */
775
	nid_t available_nids;		/* # of available node ids */
776
	nid_t next_scan_nid;		/* the next nid to be scanned */
777
	unsigned int ram_thresh;	/* control the memory footprint */
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	unsigned int ra_nid_pages;	/* # of nid pages to be readaheaded */
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	unsigned int dirty_nats_ratio;	/* control dirty nats ratio threshold */
780 781 782

	/* NAT cache management */
	struct radix_tree_root nat_root;/* root of the nat entry cache */
783
	struct radix_tree_root nat_set_root;/* root of the nat set cache */
784
	struct rw_semaphore nat_tree_lock;	/* protect nat_tree_lock */
785
	struct list_head nat_entries;	/* cached nat entry list (clean) */
786
	spinlock_t nat_list_lock;	/* protect clean nat entry list */
787
	unsigned int nat_cnt;		/* the # of cached nat entries */
788
	unsigned int dirty_nat_cnt;	/* total num of nat entries in set */
789
	unsigned int nat_blocks;	/* # of nat blocks */
790 791

	/* free node ids management */
792
	struct radix_tree_root free_nid_root;/* root of the free_nid cache */
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	struct list_head free_nid_list;		/* list for free nids excluding preallocated nids */
	unsigned int nid_cnt[MAX_NID_STATE];	/* the number of free node id */
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	spinlock_t nid_list_lock;	/* protect nid lists ops */
796
	struct mutex build_lock;	/* lock for build free nids */
797
	unsigned char **free_nid_bitmap;
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	unsigned char *nat_block_bitmap;
799
	unsigned short *free_nid_count;	/* free nid count of NAT block */
800 801 802

	/* for checkpoint */
	char *nat_bitmap;		/* NAT bitmap pointer */
803 804 805 806 807

	unsigned int nat_bits_blocks;	/* # of nat bits blocks */
	unsigned char *nat_bits;	/* NAT bits blocks */
	unsigned char *full_nat_bits;	/* full NAT pages */
	unsigned char *empty_nat_bits;	/* empty NAT pages */
808 809 810
#ifdef CONFIG_F2FS_CHECK_FS
	char *nat_bitmap_mir;		/* NAT bitmap mirror */
#endif
811 812 813 814 815 816 817 818 819 820 821 822 823 824 825
	int bitmap_size;		/* bitmap size */
};

/*
 * this structure is used as one of function parameters.
 * all the information are dedicated to a given direct node block determined
 * by the data offset in a file.
 */
struct dnode_of_data {
	struct inode *inode;		/* vfs inode pointer */
	struct page *inode_page;	/* its inode page, NULL is possible */
	struct page *node_page;		/* cached direct node page */
	nid_t nid;			/* node id of the direct node block */
	unsigned int ofs_in_node;	/* data offset in the node page */
	bool inode_page_locked;		/* inode page is locked or not */
826
	bool node_changed;		/* is node block changed */
827 828
	char cur_level;			/* level of hole node page */
	char max_level;			/* level of current page located */
829 830 831 832 833 834
	block_t	data_blkaddr;		/* block address of the node block */
};

static inline void set_new_dnode(struct dnode_of_data *dn, struct inode *inode,
		struct page *ipage, struct page *npage, nid_t nid)
{
835
	memset(dn, 0, sizeof(*dn));
836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865
	dn->inode = inode;
	dn->inode_page = ipage;
	dn->node_page = npage;
	dn->nid = nid;
}

/*
 * For SIT manager
 *
 * By default, there are 6 active log areas across the whole main area.
 * When considering hot and cold data separation to reduce cleaning overhead,
 * we split 3 for data logs and 3 for node logs as hot, warm, and cold types,
 * respectively.
 * In the current design, you should not change the numbers intentionally.
 * Instead, as a mount option such as active_logs=x, you can use 2, 4, and 6
 * logs individually according to the underlying devices. (default: 6)
 * Just in case, on-disk layout covers maximum 16 logs that consist of 8 for
 * data and 8 for node logs.
 */
#define	NR_CURSEG_DATA_TYPE	(3)
#define NR_CURSEG_NODE_TYPE	(3)
#define NR_CURSEG_TYPE	(NR_CURSEG_DATA_TYPE + NR_CURSEG_NODE_TYPE)

enum {
	CURSEG_HOT_DATA	= 0,	/* directory entry blocks */
	CURSEG_WARM_DATA,	/* data blocks */
	CURSEG_COLD_DATA,	/* multimedia or GCed data blocks */
	CURSEG_HOT_NODE,	/* direct node blocks of directory files */
	CURSEG_WARM_NODE,	/* direct node blocks of normal files */
	CURSEG_COLD_NODE,	/* indirect node blocks */
866
	NO_CHECK_TYPE,
867 868
};

869 870
struct flush_cmd {
	struct completion wait;
871
	struct llist_node llnode;
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	nid_t ino;
873 874 875
	int ret;
};

876 877 878
struct flush_cmd_control {
	struct task_struct *f2fs_issue_flush;	/* flush thread */
	wait_queue_head_t flush_wait_queue;	/* waiting queue for wake-up */
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	atomic_t issued_flush;			/* # of issued flushes */
	atomic_t issing_flush;			/* # of issing flushes */
881 882
	struct llist_head issue_list;		/* list for command issue */
	struct llist_node *dispatch_list;	/* list for command dispatch */
883 884
};

885 886 887 888 889 890
struct f2fs_sm_info {
	struct sit_info *sit_info;		/* whole segment information */
	struct free_segmap_info *free_info;	/* free segment information */
	struct dirty_seglist_info *dirty_info;	/* dirty segment information */
	struct curseg_info *curseg_array;	/* active segment information */

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	struct rw_semaphore curseg_lock;	/* for preventing curseg change */

893 894 895 896 897 898 899 900
	block_t seg0_blkaddr;		/* block address of 0'th segment */
	block_t main_blkaddr;		/* start block address of main area */
	block_t ssa_blkaddr;		/* start block address of SSA area */

	unsigned int segment_count;	/* total # of segments */
	unsigned int main_segments;	/* # of segments in main area */
	unsigned int reserved_segments;	/* # of reserved segments */
	unsigned int ovp_segments;	/* # of overprovision segments */
901 902 903

	/* a threshold to reclaim prefree segments */
	unsigned int rec_prefree_segments;
904

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	/* for batched trimming */
	unsigned int trim_sections;		/* # of sections to trim */

908 909
	struct list_head sit_entry_set;	/* sit entry set list */

910 911
	unsigned int ipu_policy;	/* in-place-update policy */
	unsigned int min_ipu_util;	/* in-place-update threshold */
912
	unsigned int min_fsync_blocks;	/* threshold for fsync */
913
	unsigned int min_hot_blocks;	/* threshold for hot block allocation */
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	unsigned int min_ssr_sections;	/* threshold to trigger SSR allocation */
915 916

	/* for flush command control */
917
	struct flush_cmd_control *fcc_info;
918

919 920
	/* for discard command control */
	struct discard_cmd_control *dcc_info;
921 922 923 924 925 926 927 928 929 930 931
};

/*
 * For superblock
 */
/*
 * COUNT_TYPE for monitoring
 *
 * f2fs monitors the number of several block types such as on-writeback,
 * dirty dentry blocks, dirty node blocks, and dirty meta blocks.
 */
932
#define WB_DATA_TYPE(p)	(__is_cp_guaranteed(p) ? F2FS_WB_CP_DATA : F2FS_WB_DATA)
933 934
enum count_type {
	F2FS_DIRTY_DENTS,
935
	F2FS_DIRTY_DATA,
936
	F2FS_DIRTY_QDATA,
937 938
	F2FS_DIRTY_NODES,
	F2FS_DIRTY_META,
939
	F2FS_INMEM_PAGES,
940
	F2FS_DIRTY_IMETA,
941 942
	F2FS_WB_CP_DATA,
	F2FS_WB_DATA,
943 944 945 946
	NR_COUNT_TYPE,
};

/*
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 * The below are the page types of bios used in submit_bio().
948 949 950 951 952 953 954 955 956
 * The available types are:
 * DATA			User data pages. It operates as async mode.
 * NODE			Node pages. It operates as async mode.
 * META			FS metadata pages such as SIT, NAT, CP.
 * NR_PAGE_TYPE		The number of page types.
 * META_FLUSH		Make sure the previous pages are written
 *			with waiting the bio's completion
 * ...			Only can be used with META.
 */
957
#define PAGE_TYPE_OF_BIO(type)	((type) > META ? META : (type))
958 959 960 961 962 963
enum page_type {
	DATA,
	NODE,
	META,
	NR_PAGE_TYPE,
	META_FLUSH,
964 965
	INMEM,		/* the below types are used by tracepoints only. */
	INMEM_DROP,
966
	INMEM_INVALIDATE,
967
	INMEM_REVOKE,
968 969
	IPU,
	OPU,
970 971
};

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enum temp_type {
	HOT = 0,	/* must be zero for meta bio */
	WARM,
	COLD,
	NR_TEMP_TYPE,
};

979 980 981 982 983 984
enum need_lock_type {
	LOCK_REQ = 0,
	LOCK_DONE,
	LOCK_RETRY,
};

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985 986 987 988 989 990 991 992 993 994
enum cp_reason_type {
	CP_NO_NEEDED,
	CP_NON_REGULAR,
	CP_HARDLINK,
	CP_SB_NEED_CP,
	CP_WRONG_PINO,
	CP_NO_SPC_ROLL,
	CP_NODE_NEED_CP,
	CP_FASTBOOT_MODE,
	CP_SPEC_LOG_NUM,
995
	CP_RECOVER_DIR,
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};

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enum iostat_type {
	APP_DIRECT_IO,			/* app direct IOs */
	APP_BUFFERED_IO,		/* app buffered IOs */
	APP_WRITE_IO,			/* app write IOs */
	APP_MAPPED_IO,			/* app mapped IOs */
	FS_DATA_IO,			/* data IOs from kworker/fsync/reclaimer */
	FS_NODE_IO,			/* node IOs from kworker/fsync/reclaimer */
	FS_META_IO,			/* meta IOs from kworker/reclaimer */
	FS_GC_DATA_IO,			/* data IOs from forground gc */
	FS_GC_NODE_IO,			/* node IOs from forground gc */
	FS_CP_DATA_IO,			/* data IOs from checkpoint */
	FS_CP_NODE_IO,			/* node IOs from checkpoint */
	FS_CP_META_IO,			/* meta IOs from checkpoint */
	FS_DISCARD,			/* discard */
	NR_IO_TYPE,
};

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struct f2fs_io_info {
1016
	struct f2fs_sb_info *sbi;	/* f2fs_sb_info pointer */
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	nid_t ino;		/* inode number */
1018
	enum page_type type;	/* contains DATA/NODE/META/META_FLUSH */
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1019
	enum temp_type temp;	/* contains HOT/WARM/COLD */
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1020
	int op;			/* contains REQ_OP_ */
1021
	int op_flags;		/* req_flag_bits */
1022
	block_t new_blkaddr;	/* new block address to be written */
1023
	block_t old_blkaddr;	/* old block address before Cow */
1024
	struct page *page;	/* page to be written */
1025
	struct page *encrypted_page;	/* encrypted page */
1026
	struct list_head list;		/* serialize IOs */
1027
	bool submitted;		/* indicate IO submission */
1028
	int need_lock;		/* indicate we need to lock cp_rwsem */
1029
	bool in_list;		/* indicate fio is in io_list */
1030
	bool is_meta;		/* indicate borrow meta inode mapping or not */
1031
	bool retry;		/* need to reallocate block address */
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	enum iostat_type io_type;	/* io type */
1033
	struct writeback_control *io_wbc; /* writeback control */
1034
	unsigned char version;		/* version of the node */
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};

1037
#define is_read_io(rw) ((rw) == READ)
1038
struct f2fs_bio_info {
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1039
	struct f2fs_sb_info *sbi;	/* f2fs superblock */
1040 1041
	struct bio *bio;		/* bios to merge */
	sector_t last_block_in_bio;	/* last block number */
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	struct f2fs_io_info fio;	/* store buffered io info. */
1043
	struct rw_semaphore io_rwsem;	/* blocking op for bio */
1044 1045
	spinlock_t io_lock;		/* serialize DATA/NODE IOs */
	struct list_head io_list;	/* track fios */
1046 1047
};

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1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061
#define FDEV(i)				(sbi->devs[i])
#define RDEV(i)				(raw_super->devs[i])
struct f2fs_dev_info {
	struct block_device *bdev;
	char path[MAX_PATH_LEN];
	unsigned int total_segments;
	block_t start_blk;
	block_t end_blk;
#ifdef CONFIG_BLK_DEV_ZONED
	unsigned int nr_blkz;			/* Total number of zones */
	u8 *blkz_type;				/* Array of zones type */
#endif
};

1062 1063 1064
enum inode_type {
	DIR_INODE,			/* for dirty dir inode */
	FILE_INODE,			/* for dirty regular/symlink inode */
1065
	DIRTY_META,			/* for all dirtied inode metadata */
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	ATOMIC_FILE,			/* for all atomic files */
1067 1068 1069
	NR_INODE_TYPE,
};

1070 1071 1072 1073 1074 1075 1076 1077
/* for inner inode cache management */
struct inode_management {
	struct radix_tree_root ino_root;	/* ino entry array */
	spinlock_t ino_lock;			/* for ino entry lock */
	struct list_head ino_list;		/* inode list head */
	unsigned long ino_num;			/* number of entries */
};

1078 1079 1080 1081 1082 1083
/* For s_flag in struct f2fs_sb_info */
enum {
	SBI_IS_DIRTY,				/* dirty flag for checkpoint */
	SBI_IS_CLOSE,				/* specify unmounting */
	SBI_NEED_FSCK,				/* need fsck.f2fs to fix */
	SBI_POR_DOING,				/* recovery is doing or not */
1084
	SBI_NEED_SB_WRITE,			/* need to recover superblock */
1085
	SBI_NEED_CP,				/* need to checkpoint */
1086
	SBI_IS_SHUTDOWN,			/* shutdown by ioctl */
1087 1088
};

1089 1090
enum {
	CP_TIME,
1091
	REQ_TIME,
1092 1093 1094
	MAX_TIME,
};

1095 1096 1097 1098 1099 1100 1101
enum {
	GC_NORMAL,
	GC_IDLE_CB,
	GC_IDLE_GREEDY,
	GC_URGENT,
};

1102 1103 1104
enum {
	WHINT_MODE_OFF,		/* not pass down write hints */
	WHINT_MODE_USER,	/* try to pass down hints given by users */
1105
	WHINT_MODE_FS,		/* pass down hints with F2FS policy */
1106 1107
};

1108 1109 1110 1111 1112
enum {
	ALLOC_MODE_DEFAULT,	/* stay default */
	ALLOC_MODE_REUSE,	/* reuse segments as much as possible */
};

1113 1114 1115
enum fsync_mode {
	FSYNC_MODE_POSIX,	/* fsync follows posix semantics */
	FSYNC_MODE_STRICT,	/* fsync behaves in line with ext4 */
1116
	FSYNC_MODE_NOBARRIER,	/* fsync behaves nobarrier based on posix */
1117 1118
};

1119 1120 1121 1122 1123 1124 1125
#ifdef CONFIG_F2FS_FS_ENCRYPTION
#define DUMMY_ENCRYPTION_ENABLED(sbi) \
			(unlikely(F2FS_OPTION(sbi).test_dummy_encryption))
#else
#define DUMMY_ENCRYPTION_ENABLED(sbi) (0)
#endif

1126 1127
struct f2fs_sb_info {
	struct super_block *sb;			/* pointer to VFS super block */
1128
	struct proc_dir_entry *s_proc;		/* proc entry */
1129
	struct f2fs_super_block *raw_super;	/* raw super block pointer */
1130
	struct rw_semaphore sb_lock;		/* lock for raw super block */
1131
	int valid_super_block;			/* valid super block no */
1132
	unsigned long s_flag;				/* flags for sbi */
1133

1134 1135 1136 1137 1138
#ifdef CONFIG_BLK_DEV_ZONED
	unsigned int blocks_per_blkz;		/* F2FS blocks per zone */
	unsigned int log_blocks_per_blkz;	/* log2 F2FS blocks per zone */
#endif

1139 1140 1141 1142 1143 1144
	/* for node-related operations */
	struct f2fs_nm_info *nm_info;		/* node manager */
	struct inode *node_inode;		/* cache node blocks */

	/* for segment-related operations */
	struct f2fs_sm_info *sm_info;		/* segment manager */
1145 1146

	/* for bio operations */
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	struct f2fs_bio_info *write_io[NR_PAGE_TYPE];	/* for write bios */
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	struct mutex wio_mutex[NR_PAGE_TYPE - 1][NR_TEMP_TYPE];
						/* bio ordering for NODE/DATA */
1150 1151
	/* keep migration IO order for LFS mode */
	struct rw_semaphore io_order_lock;
1152
	mempool_t *write_io_dummy;		/* Dummy pages */
1153 1154 1155

	/* for checkpoint */
	struct f2fs_checkpoint *ckpt;		/* raw checkpoint pointer */
1156
	int cur_cp_pack;			/* remain current cp pack */
1157
	spinlock_t cp_lock;			/* for flag in ckpt */
1158
	struct inode *meta_inode;		/* cache meta blocks */
1159
	struct mutex cp_mutex;			/* checkpoint procedure lock */
1160
	struct rw_semaphore cp_rwsem;		/* blocking FS operations */
1161
	struct rw_semaphore node_write;		/* locking node writes */
1162
	struct rw_semaphore node_change;	/* locking node change */
1163
	wait_queue_head_t cp_wait;
1164 1165
	unsigned long last_time[MAX_TIME];	/* to store time in jiffies */
	long interval_time[MAX_TIME];		/* to store thresholds */
1166

1167
	struct inode_management im[MAX_INO_ENTRY];      /* manage inode cache */
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1169 1170 1171 1172 1173
	spinlock_t fsync_node_lock;		/* for node entry lock */
	struct list_head fsync_node_list;	/* node list head */
	unsigned int fsync_seg_id;		/* sequence id */
	unsigned int fsync_node_num;		/* number of node entries */

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	/* for orphan inode, use 0'th array */
1175
	unsigned int max_orphans;		/* max orphan inodes */
1176

1177 1178 1179
	/* for inode management */
	struct list_head inode_list[NR_INODE_TYPE];	/* dirty inode list */
	spinlock_t inode_lock[NR_INODE_TYPE];	/* for dirty inode list lock */
1180

1181 1182
	/* for extent tree cache */
	struct radix_tree_root extent_tree_root;/* cache extent cache entries */
1183
	struct mutex extent_tree_lock;	/* locking extent radix tree */
1184 1185
	struct list_head extent_list;		/* lru list for shrinker */
	spinlock_t extent_lock;			/* locking extent lru list */
1186
	atomic_t total_ext_tree;		/* extent tree count */
1187
	struct list_head zombie_list;		/* extent zombie tree list */
1188
	atomic_t total_zombie_tree;		/* extent zombie tree count */
1189 1190
	atomic_t total_ext_node;		/* extent info count */

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	/* basic filesystem units */
1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204
	unsigned int log_sectors_per_block;	/* log2 sectors per block */
	unsigned int log_blocksize;		/* log2 block size */
	unsigned int blocksize;			/* block size */
	unsigned int root_ino_num;		/* root inode number*/
	unsigned int node_ino_num;		/* node inode number*/
	unsigned int meta_ino_num;		/* meta inode number*/
	unsigned int log_blocks_per_seg;	/* log2 blocks per segment */
	unsigned int blocks_per_seg;		/* blocks per segment */
	unsigned int segs_per_sec;		/* segments per section */
	unsigned int secs_per_zone;		/* sections per zone */
	unsigned int total_sections;		/* total section count */
	unsigned int total_node_count;		/* total node block count */
	unsigned int total_valid_node_count;	/* valid node block count */
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	loff_t max_file_blocks;			/* max block index of file */
1206
	int dir_level;				/* directory level */
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	unsigned int trigger_ssr_threshold;	/* threshold to trigger ssr */
1208
	int readdir_ra;				/* readahead inode in readdir */
1209 1210 1211

	block_t user_block_count;		/* # of user blocks */
	block_t total_valid_block_count;	/* # of valid blocks */
1212
	block_t discard_blks;			/* discard command candidats */
1213
	block_t last_valid_block_count;		/* for recovery */
1214
	block_t reserved_blocks;		/* configurable reserved blocks */
1215
	block_t current_reserved_blocks;	/* current reserved blocks */
1216

1217 1218
	unsigned int nquota_files;		/* # of quota sysfile */

1219
	u32 s_next_generation;			/* for NFS support */
1220 1221

	/* # of pages, see count_type */
1222
	atomic_t nr_pages[NR_COUNT_TYPE];
1223 1224
	/* # of allocated blocks */
	struct percpu_counter alloc_valid_block_count;
1225

1226
	/* writeback control */
1227
	atomic_t wb_sync_req[META];	/* count # of WB_SYNC threads */
1228

1229 1230 1231
	/* valid inode count */
	struct percpu_counter total_valid_inode_count;

1232 1233 1234 1235 1236
	struct f2fs_mount_info mount_opt;	/* mount options */

	/* for cleaning operations */
	struct mutex gc_mutex;			/* mutex for GC */
	struct f2fs_gc_kthread	*gc_thread;	/* GC thread */
1237
	unsigned int cur_victim_sec;		/* current victim section num */
1238
	unsigned int gc_mode;			/* current GC state */
1239 1240
	/* for skip statistic */
	unsigned long long skipped_atomic_files[2];	/* FG_GC and BG_GC */
1241

1242 1243 1244
	/* threshold for gc trials on pinned files */
	u64 gc_pin_file_threshold;

1245 1246 1247
	/* maximum # of trials to find a victim segment for SSR and GC */
	unsigned int max_victim_search;

1248 1249 1250 1251
	/*
	 * for stat information.
	 * one is for the LFS mode, and the other is for the SSR mode.
	 */
1252
#ifdef CONFIG_F2FS_STAT_FS
1253 1254 1255
	struct f2fs_stat_info *stat_info;	/* FS status information */
	unsigned int segment_count[2];		/* # of allocated segments */
	unsigned int block_count[2];		/* # of allocated blocks */
1256
	atomic_t inplace_count;		/* # of inplace update */
1257 1258 1259 1260
	atomic64_t total_hit_ext;		/* # of lookup extent cache */
	atomic64_t read_hit_rbtree;		/* # of hit rbtree extent node */
	atomic64_t read_hit_largest;		/* # of hit largest extent node */
	atomic64_t read_hit_cached;		/* # of hit cached extent node */
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	atomic_t inline_xattr;			/* # of inline_xattr inodes */
1262 1263
	atomic_t inline_inode;			/* # of inline_data inodes */
	atomic_t inline_dir;			/* # of inline_dentry inodes */
1264
	atomic_t aw_cnt;			/* # of atomic writes */
1265
	atomic_t vw_cnt;			/* # of volatile writes */
1266
	atomic_t max_aw_cnt;			/* max # of atomic writes */
1267
	atomic_t max_vw_cnt;			/* max # of volatile writes */
1268
	int bg_gc;				/* background gc calls */
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	unsigned int ndirty_inode[NR_INODE_TYPE];	/* # of dirty inodes */
1270
#endif
1271
	spinlock_t stat_lock;			/* lock for stat operations */
1272

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	/* For app/fs IO statistics */
	spinlock_t iostat_lock;
	unsigned long long write_iostat[NR_IO_TYPE];
	bool iostat_enable;

1278 1279 1280
	/* For sysfs suppport */
	struct kobject s_kobj;
	struct completion s_kobj_unregister;
1281 1282 1283

	/* For shrinker support */
	struct list_head s_list;
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	int s_ndevs;				/* number of devices */
	struct f2fs_dev_info *devs;		/* for device list */
1286 1287
	unsigned int dirty_device;		/* for checkpoint data flush */
	spinlock_t dev_lock;			/* protect dirty_device */
1288 1289
	struct mutex umount_mutex;
	unsigned int shrinker_run_no;
1290 1291 1292 1293

	/* For write statistics */
	u64 sectors_written_start;
	u64 kbytes_written;
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	/* Reference to checksum algorithm driver via cryptoapi */
	struct crypto_shash *s_chksum_driver;
1297

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	/* Precomputed FS UUID checksum for seeding other checksums */
	__u32 s_chksum_seed;
1300 1301
};

1302
#ifdef CONFIG_F2FS_FAULT_INJECTION
1303 1304
#define f2fs_show_injection_info(type)				\
	printk("%sF2FS-fs : inject %s in %s of %pF\n",		\
1305
		KERN_INFO, f2fs_fault_name[type],		\
1306
		__func__, __builtin_return_address(0))
1307 1308
static inline bool time_to_inject(struct f2fs_sb_info *sbi, int type)
{
1309
	struct f2fs_fault_info *ffi = &F2FS_OPTION(sbi).fault_info;
1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325

	if (!ffi->inject_rate)
		return false;

	if (!IS_FAULT_SET(ffi, type))
		return false;

	atomic_inc(&ffi->inject_ops);
	if (atomic_read(&ffi->inject_ops) >= ffi->inject_rate) {
		atomic_set(&ffi->inject_ops, 0);
		return true;
	}
	return false;
}
#endif

1326 1327 1328 1329
/* For write statistics. Suppose sector size is 512 bytes,
 * and the return value is in kbytes. s is of struct f2fs_sb_info.
 */
#define BD_PART_WRITTEN(s)						 \
1330 1331
(((u64)part_stat_read((s)->sb->s_bdev->bd_part, sectors[1]) -		 \
		(s)->sectors_written_start) >> 1)
1332

1333 1334 1335 1336 1337 1338 1339
static inline void f2fs_update_time(struct f2fs_sb_info *sbi, int type)
{
	sbi->last_time[type] = jiffies;
}

static inline bool f2fs_time_over(struct f2fs_sb_info *sbi, int type)
{
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	unsigned long interval = sbi->interval_time[type] * HZ;
1341 1342 1343 1344

	return time_after(jiffies, sbi->last_time[type] + interval);
}

1345 1346 1347 1348 1349 1350 1351
static inline bool is_idle(struct f2fs_sb_info *sbi)
{
	struct block_device *bdev = sbi->sb->s_bdev;
	struct request_queue *q = bdev_get_queue(bdev);
	struct request_list *rl = &q->root_rl;

	if (rl->count[BLK_RW_SYNC] || rl->count[BLK_RW_ASYNC])
1352
		return false;
1353 1354 1355 1356

	return f2fs_time_over(sbi, REQ_TIME);
}

1357 1358 1359
/*
 * Inline functions
 */
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static inline u32 __f2fs_crc32(struct f2fs_sb_info *sbi, u32 crc,
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			      const void *address, unsigned int length)
{
	struct {
		struct shash_desc shash;
		char ctx[4];
	} desc;
	int err;

	BUG_ON(crypto_shash_descsize(sbi->s_chksum_driver) != sizeof(desc.ctx));

	desc.shash.tfm = sbi->s_chksum_driver;
	desc.shash.flags = 0;
	*(u32 *)desc.ctx = crc;

	err = crypto_shash_update(&desc.shash, address, length);
	BUG_ON(err);

	return *(u32 *)desc.ctx;
}

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static inline u32 f2fs_crc32(struct f2fs_sb_info *sbi, const void *address,
			   unsigned int length)
{
	return __f2fs_crc32(sbi, F2FS_SUPER_MAGIC, address, length);
}

static inline bool f2fs_crc_valid(struct f2fs_sb_info *sbi, __u32 blk_crc,
				  void *buf, size_t buf_size)
{
	return f2fs_crc32(sbi, buf, buf_size) == blk_crc;
}

static inline u32 f2fs_chksum(struct f2fs_sb_info *sbi, u32 crc,
			      const void *address, unsigned int length)
{
	return __f2fs_crc32(sbi, crc, address, length);
}

1399 1400 1401 1402 1403 1404 1405 1406 1407 1408
static inline struct f2fs_inode_info *F2FS_I(struct inode *inode)
{
	return container_of(inode, struct f2fs_inode_info, vfs_inode);
}

static inline struct f2fs_sb_info *F2FS_SB(struct super_block *sb)
{
	return sb->s_fs_info;
}

1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423
static inline struct f2fs_sb_info *F2FS_I_SB(struct inode *inode)
{
	return F2FS_SB(inode->i_sb);
}

static inline struct f2fs_sb_info *F2FS_M_SB(struct address_space *mapping)
{
	return F2FS_I_SB(mapping->host);
}

static inline struct f2fs_sb_info *F2FS_P_SB(struct page *page)
{
	return F2FS_M_SB(page->mapping);
}

1424 1425 1426 1427 1428 1429 1430 1431 1432 1433
static inline struct f2fs_super_block *F2FS_RAW_SUPER(struct f2fs_sb_info *sbi)
{
	return (struct f2fs_super_block *)(sbi->raw_super);
}

static inline struct f2fs_checkpoint *F2FS_CKPT(struct f2fs_sb_info *sbi)
{
	return (struct f2fs_checkpoint *)(sbi->ckpt);
}

1434 1435 1436 1437 1438
static inline struct f2fs_node *F2FS_NODE(struct page *page)
{
	return (struct f2fs_node *)page_address(page);
}

1439 1440 1441 1442 1443
static inline struct f2fs_inode *F2FS_INODE(struct page *page)
{
	return &((struct f2fs_node *)page_address(page))->i;
}

1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468
static inline struct f2fs_nm_info *NM_I(struct f2fs_sb_info *sbi)
{
	return (struct f2fs_nm_info *)(sbi->nm_info);
}

static inline struct f2fs_sm_info *SM_I(struct f2fs_sb_info *sbi)
{
	return (struct f2fs_sm_info *)(sbi->sm_info);
}

static inline struct sit_info *SIT_I(struct f2fs_sb_info *sbi)
{
	return (struct sit_info *)(SM_I(sbi)->sit_info);
}

static inline struct free_segmap_info *FREE_I(struct f2fs_sb_info *sbi)
{
	return (struct free_segmap_info *)(SM_I(sbi)->free_info);
}

static inline struct dirty_seglist_info *DIRTY_I(struct f2fs_sb_info *sbi)
{
	return (struct dirty_seglist_info *)(SM_I(sbi)->dirty_info);
}

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static inline struct address_space *META_MAPPING(struct f2fs_sb_info *sbi)
{
	return sbi->meta_inode->i_mapping;
}

1474 1475 1476 1477 1478
static inline struct address_space *NODE_MAPPING(struct f2fs_sb_info *sbi)
{
	return sbi->node_inode->i_mapping;
}

1479 1480
static inline bool is_sbi_flag_set(struct f2fs_sb_info *sbi, unsigned int type)
{
1481
	return test_bit(type, &sbi->s_flag);
1482 1483 1484
}

static inline void set_sbi_flag(struct f2fs_sb_info *sbi, unsigned int type)
1485
{
1486
	set_bit(type, &sbi->s_flag);
1487 1488
}

1489
static inline void clear_sbi_flag(struct f2fs_sb_info *sbi, unsigned int type)
1490
{
1491
	clear_bit(type, &sbi->s_flag);
1492 1493
}

1494 1495 1496 1497 1498
static inline unsigned long long cur_cp_version(struct f2fs_checkpoint *cp)
{
	return le64_to_cpu(cp->checkpoint_ver);
}

J
Jaegeuk Kim 已提交
1499 1500 1501 1502 1503 1504 1505
static inline unsigned long f2fs_qf_ino(struct super_block *sb, int type)
{
	if (type < F2FS_MAX_QUOTAS)
		return le32_to_cpu(F2FS_SB(sb)->raw_super->qf_ino[type]);
	return 0;
}

1506 1507 1508 1509 1510 1511
static inline __u64 cur_cp_crc(struct f2fs_checkpoint *cp)
{
	size_t crc_offset = le32_to_cpu(cp->checksum_offset);
	return le32_to_cpu(*((__le32 *)((unsigned char *)cp + crc_offset)));
}

1512
static inline bool __is_set_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
1513 1514
{
	unsigned int ckpt_flags = le32_to_cpu(cp->ckpt_flags);
1515

1516 1517 1518
	return ckpt_flags & f;
}

1519
static inline bool is_set_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
1520
{
1521 1522 1523 1524 1525 1526 1527 1528
	return __is_set_ckpt_flags(F2FS_CKPT(sbi), f);
}

static inline void __set_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
{
	unsigned int ckpt_flags;

	ckpt_flags = le32_to_cpu(cp->ckpt_flags);
1529 1530 1531 1532
	ckpt_flags |= f;
	cp->ckpt_flags = cpu_to_le32(ckpt_flags);
}

1533
static inline void set_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
1534
{
1535 1536 1537
	unsigned long flags;

	spin_lock_irqsave(&sbi->cp_lock, flags);
1538
	__set_ckpt_flags(F2FS_CKPT(sbi), f);
1539
	spin_unlock_irqrestore(&sbi->cp_lock, flags);
1540 1541 1542 1543 1544 1545 1546
}

static inline void __clear_ckpt_flags(struct f2fs_checkpoint *cp, unsigned int f)
{
	unsigned int ckpt_flags;

	ckpt_flags = le32_to_cpu(cp->ckpt_flags);
1547 1548 1549 1550
	ckpt_flags &= (~f);
	cp->ckpt_flags = cpu_to_le32(ckpt_flags);
}

1551 1552
static inline void clear_ckpt_flags(struct f2fs_sb_info *sbi, unsigned int f)
{
1553 1554 1555
	unsigned long flags;

	spin_lock_irqsave(&sbi->cp_lock, flags);
1556
	__clear_ckpt_flags(F2FS_CKPT(sbi), f);
1557
	spin_unlock_irqrestore(&sbi->cp_lock, flags);
1558 1559
}

1560 1561
static inline void disable_nat_bits(struct f2fs_sb_info *sbi, bool lock)
{
1562 1563
	unsigned long flags;

1564 1565 1566
	set_sbi_flag(sbi, SBI_NEED_FSCK);

	if (lock)
1567
		spin_lock_irqsave(&sbi->cp_lock, flags);
1568 1569 1570 1571
	__clear_ckpt_flags(F2FS_CKPT(sbi), CP_NAT_BITS_FLAG);
	kfree(NM_I(sbi)->nat_bits);
	NM_I(sbi)->nat_bits = NULL;
	if (lock)
1572
		spin_unlock_irqrestore(&sbi->cp_lock, flags);
1573 1574 1575 1576 1577 1578 1579
}

static inline bool enabled_nat_bits(struct f2fs_sb_info *sbi,
					struct cp_control *cpc)
{
	bool set = is_set_ckpt_flags(sbi, CP_NAT_BITS_FLAG);

1580
	return (cpc) ? (cpc->reason & CP_UMOUNT) && set : set;
1581 1582
}

1583
static inline void f2fs_lock_op(struct f2fs_sb_info *sbi)
1584
{
1585
	down_read(&sbi->cp_rwsem);
1586 1587
}

1588 1589 1590 1591 1592
static inline int f2fs_trylock_op(struct f2fs_sb_info *sbi)
{
	return down_read_trylock(&sbi->cp_rwsem);
}

1593
static inline void f2fs_unlock_op(struct f2fs_sb_info *sbi)
1594
{
1595
	up_read(&sbi->cp_rwsem);
1596 1597
}

1598
static inline void f2fs_lock_all(struct f2fs_sb_info *sbi)
1599
{
1600
	down_write(&sbi->cp_rwsem);
1601 1602
}

1603
static inline void f2fs_unlock_all(struct f2fs_sb_info *sbi)
1604
{
1605
	up_write(&sbi->cp_rwsem);
1606 1607
}

1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620
static inline int __get_cp_reason(struct f2fs_sb_info *sbi)
{
	int reason = CP_SYNC;

	if (test_opt(sbi, FASTBOOT))
		reason = CP_FASTBOOT;
	if (is_sbi_flag_set(sbi, SBI_IS_CLOSE))
		reason = CP_UMOUNT;
	return reason;
}

static inline bool __remain_node_summaries(int reason)
{
1621
	return (reason & (CP_UMOUNT | CP_FASTBOOT));
1622 1623 1624 1625
}

static inline bool __exist_node_summaries(struct f2fs_sb_info *sbi)
{
1626 1627
	return (is_set_ckpt_flags(sbi, CP_UMOUNT_FLAG) ||
			is_set_ckpt_flags(sbi, CP_FASTBOOT_FLAG));
1628 1629
}

1630 1631 1632 1633 1634
/*
 * Check whether the inode has blocks or not
 */
static inline int F2FS_HAS_BLOCKS(struct inode *inode)
{
1635 1636
	block_t xattr_block = F2FS_I(inode)->i_xattr_nid ? 1 : 0;

1637
	return (inode->i_blocks >> F2FS_LOG_SECTORS_PER_BLOCK) > xattr_block;
1638 1639
}

1640 1641 1642 1643 1644
static inline bool f2fs_has_xattr_block(unsigned int ofs)
{
	return ofs == XATTR_NODE_OFFSET;
}

1645
static inline bool __allow_reserved_blocks(struct f2fs_sb_info *sbi,
1646
					struct inode *inode, bool cap)
1647
{
1648 1649
	if (!inode)
		return true;
1650 1651
	if (!test_opt(sbi, RESERVE_ROOT))
		return false;
1652 1653
	if (IS_NOQUOTA(inode))
		return true;
1654
	if (uid_eq(F2FS_OPTION(sbi).s_resuid, current_fsuid()))
1655
		return true;
1656 1657
	if (!gid_eq(F2FS_OPTION(sbi).s_resgid, GLOBAL_ROOT_GID) &&
					in_group_p(F2FS_OPTION(sbi).s_resgid))
1658
		return true;
1659
	if (cap && capable(CAP_SYS_RESOURCE))
1660
		return true;
1661 1662 1663
	return false;
}

C
Chao Yu 已提交
1664 1665
static inline void f2fs_i_blocks_write(struct inode *, block_t, bool, bool);
static inline int inc_valid_block_count(struct f2fs_sb_info *sbi,
1666
				 struct inode *inode, blkcnt_t *count)
1667
{
C
Chao Yu 已提交
1668
	blkcnt_t diff = 0, release = 0;
1669
	block_t avail_user_block_count;
C
Chao Yu 已提交
1670 1671 1672 1673 1674
	int ret;

	ret = dquot_reserve_block(inode, *count);
	if (ret)
		return ret;
1675

J
Jaegeuk Kim 已提交
1676
#ifdef CONFIG_F2FS_FAULT_INJECTION
1677 1678
	if (time_to_inject(sbi, FAULT_BLOCK)) {
		f2fs_show_injection_info(FAULT_BLOCK);
C
Chao Yu 已提交
1679 1680
		release = *count;
		goto enospc;
1681
	}
J
Jaegeuk Kim 已提交
1682
#endif
1683 1684 1685 1686 1687 1688
	/*
	 * let's increase this in prior to actual block count change in order
	 * for f2fs_sync_file to avoid data races when deciding checkpoint.
	 */
	percpu_counter_add(&sbi->alloc_valid_block_count, (*count));

1689 1690
	spin_lock(&sbi->stat_lock);
	sbi->total_valid_block_count += (block_t)(*count);
1691 1692
	avail_user_block_count = sbi->user_block_count -
					sbi->current_reserved_blocks;
1693

1694
	if (!__allow_reserved_blocks(sbi, inode, true))
1695
		avail_user_block_count -= F2FS_OPTION(sbi).root_reserved_blocks;
1696

1697 1698
	if (unlikely(sbi->total_valid_block_count > avail_user_block_count)) {
		diff = sbi->total_valid_block_count - avail_user_block_count;
1699 1700
		if (diff > *count)
			diff = *count;
1701
		*count -= diff;
C
Chao Yu 已提交
1702
		release = diff;
1703
		sbi->total_valid_block_count -= diff;
1704 1705
		if (!*count) {
			spin_unlock(&sbi->stat_lock);
C
Chao Yu 已提交
1706
			goto enospc;
1707
		}
1708 1709
	}
	spin_unlock(&sbi->stat_lock);
1710

1711 1712
	if (unlikely(release)) {
		percpu_counter_sub(&sbi->alloc_valid_block_count, release);
C
Chao Yu 已提交
1713
		dquot_release_reservation_block(inode, release);
1714
	}
C
Chao Yu 已提交
1715 1716 1717 1718
	f2fs_i_blocks_write(inode, *count, true, true);
	return 0;

enospc:
1719
	percpu_counter_sub(&sbi->alloc_valid_block_count, release);
C
Chao Yu 已提交
1720 1721
	dquot_release_reservation_block(inode, release);
	return -ENOSPC;
1722 1723
}

1724
static inline void dec_valid_block_count(struct f2fs_sb_info *sbi,
1725
						struct inode *inode,
1726
						block_t count)
1727
{
1728 1729
	blkcnt_t sectors = count << F2FS_LOG_SECTORS_PER_BLOCK;

1730
	spin_lock(&sbi->stat_lock);
1731
	f2fs_bug_on(sbi, sbi->total_valid_block_count < (block_t) count);
1732
	f2fs_bug_on(sbi, inode->i_blocks < sectors);
1733
	sbi->total_valid_block_count -= (block_t)count;
1734 1735 1736 1737
	if (sbi->reserved_blocks &&
		sbi->current_reserved_blocks < sbi->reserved_blocks)
		sbi->current_reserved_blocks = min(sbi->reserved_blocks,
					sbi->current_reserved_blocks + count);
1738
	spin_unlock(&sbi->stat_lock);
C
Chao Yu 已提交
1739
	f2fs_i_blocks_write(inode, count, false, true);
1740 1741 1742 1743
}

static inline void inc_page_count(struct f2fs_sb_info *sbi, int count_type)
{
1744
	atomic_inc(&sbi->nr_pages[count_type]);
1745

1746 1747
	if (count_type == F2FS_DIRTY_DATA || count_type == F2FS_INMEM_PAGES ||
		count_type == F2FS_WB_CP_DATA || count_type == F2FS_WB_DATA)
1748 1749
		return;

1750
	set_sbi_flag(sbi, SBI_IS_DIRTY);
1751 1752
}

1753
static inline void inode_inc_dirty_pages(struct inode *inode)
1754
{
1755
	atomic_inc(&F2FS_I(inode)->dirty_pages);
1756 1757
	inc_page_count(F2FS_I_SB(inode), S_ISDIR(inode->i_mode) ?
				F2FS_DIRTY_DENTS : F2FS_DIRTY_DATA);
1758 1759
	if (IS_NOQUOTA(inode))
		inc_page_count(F2FS_I_SB(inode), F2FS_DIRTY_QDATA);
1760 1761 1762 1763
}

static inline void dec_page_count(struct f2fs_sb_info *sbi, int count_type)
{
1764
	atomic_dec(&sbi->nr_pages[count_type]);
1765 1766
}

1767
static inline void inode_dec_dirty_pages(struct inode *inode)
1768
{
1769 1770
	if (!S_ISDIR(inode->i_mode) && !S_ISREG(inode->i_mode) &&
			!S_ISLNK(inode->i_mode))
1771 1772
		return;

1773
	atomic_dec(&F2FS_I(inode)->dirty_pages);
1774 1775
	dec_page_count(F2FS_I_SB(inode), S_ISDIR(inode->i_mode) ?
				F2FS_DIRTY_DENTS : F2FS_DIRTY_DATA);
1776 1777
	if (IS_NOQUOTA(inode))
		dec_page_count(F2FS_I_SB(inode), F2FS_DIRTY_QDATA);
1778 1779
}

1780
static inline s64 get_pages(struct f2fs_sb_info *sbi, int count_type)
1781
{
1782
	return atomic_read(&sbi->nr_pages[count_type]);
1783 1784
}

1785
static inline int get_dirty_pages(struct inode *inode)
1786
{
1787
	return atomic_read(&F2FS_I(inode)->dirty_pages);
1788 1789
}

1790 1791
static inline int get_blocktype_secs(struct f2fs_sb_info *sbi, int block_type)
{
1792
	unsigned int pages_per_sec = sbi->segs_per_sec * sbi->blocks_per_seg;
1793 1794 1795 1796
	unsigned int segs = (get_pages(sbi, block_type) + pages_per_sec - 1) >>
						sbi->log_blocks_per_seg;

	return segs / sbi->segs_per_sec;
1797 1798
}

1799 1800
static inline block_t valid_user_blocks(struct f2fs_sb_info *sbi)
{
1801
	return sbi->total_valid_block_count;
1802 1803
}

1804 1805 1806 1807 1808
static inline block_t discard_blocks(struct f2fs_sb_info *sbi)
{
	return sbi->discard_blks;
}

1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821
static inline unsigned long __bitmap_size(struct f2fs_sb_info *sbi, int flag)
{
	struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);

	/* return NAT or SIT bitmap */
	if (flag == NAT_BITMAP)
		return le32_to_cpu(ckpt->nat_ver_bitmap_bytesize);
	else if (flag == SIT_BITMAP)
		return le32_to_cpu(ckpt->sit_ver_bitmap_bytesize);

	return 0;
}

W
Wanpeng Li 已提交
1822 1823 1824 1825 1826
static inline block_t __cp_payload(struct f2fs_sb_info *sbi)
{
	return le32_to_cpu(F2FS_RAW_SUPER(sbi)->cp_payload);
}

1827 1828 1829
static inline void *__bitmap_ptr(struct f2fs_sb_info *sbi, int flag)
{
	struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
C
Changman Lee 已提交
1830 1831
	int offset;

C
Chao Yu 已提交
1832 1833 1834 1835 1836 1837
	if (is_set_ckpt_flags(sbi, CP_LARGE_NAT_BITMAP_FLAG)) {
		offset = (flag == SIT_BITMAP) ?
			le32_to_cpu(ckpt->nat_ver_bitmap_bytesize) : 0;
		return &ckpt->sit_nat_version_bitmap + offset;
	}

W
Wanpeng Li 已提交
1838
	if (__cp_payload(sbi) > 0) {
C
Changman Lee 已提交
1839 1840 1841
		if (flag == NAT_BITMAP)
			return &ckpt->sit_nat_version_bitmap;
		else
J
Jaegeuk Kim 已提交
1842
			return (unsigned char *)ckpt + F2FS_BLKSIZE;
C
Changman Lee 已提交
1843 1844
	} else {
		offset = (flag == NAT_BITMAP) ?
1845
			le32_to_cpu(ckpt->sit_ver_bitmap_bytesize) : 0;
C
Changman Lee 已提交
1846 1847
		return &ckpt->sit_nat_version_bitmap + offset;
	}
1848 1849 1850 1851
}

static inline block_t __start_cp_addr(struct f2fs_sb_info *sbi)
{
1852
	block_t start_addr = le32_to_cpu(F2FS_RAW_SUPER(sbi)->cp_blkaddr);
1853

1854
	if (sbi->cur_cp_pack == 2)
1855
		start_addr += sbi->blocks_per_seg;
1856 1857
	return start_addr;
}
1858

1859 1860 1861
static inline block_t __start_cp_next_addr(struct f2fs_sb_info *sbi)
{
	block_t start_addr = le32_to_cpu(F2FS_RAW_SUPER(sbi)->cp_blkaddr);
1862

1863 1864
	if (sbi->cur_cp_pack == 1)
		start_addr += sbi->blocks_per_seg;
1865 1866 1867
	return start_addr;
}

1868 1869 1870 1871 1872
static inline void __set_cp_next_pack(struct f2fs_sb_info *sbi)
{
	sbi->cur_cp_pack = (sbi->cur_cp_pack == 1) ? 2 : 1;
}

1873 1874 1875 1876 1877
static inline block_t __start_sum_addr(struct f2fs_sb_info *sbi)
{
	return le32_to_cpu(F2FS_CKPT(sbi)->cp_pack_start_sum);
}

C
Chao Yu 已提交
1878
static inline int inc_valid_node_count(struct f2fs_sb_info *sbi,
1879
					struct inode *inode, bool is_inode)
1880 1881 1882
{
	block_t	valid_block_count;
	unsigned int valid_node_count;
C
Chao Yu 已提交
1883 1884 1885 1886 1887 1888 1889
	bool quota = inode && !is_inode;

	if (quota) {
		int ret = dquot_reserve_block(inode, 1);
		if (ret)
			return ret;
	}
1890

1891 1892 1893 1894 1895 1896 1897
#ifdef CONFIG_F2FS_FAULT_INJECTION
	if (time_to_inject(sbi, FAULT_BLOCK)) {
		f2fs_show_injection_info(FAULT_BLOCK);
		goto enospc;
	}
#endif

1898 1899
	spin_lock(&sbi->stat_lock);

1900 1901 1902
	valid_block_count = sbi->total_valid_block_count +
					sbi->current_reserved_blocks + 1;

1903
	if (!__allow_reserved_blocks(sbi, inode, false))
1904
		valid_block_count += F2FS_OPTION(sbi).root_reserved_blocks;
1905 1906

	if (unlikely(valid_block_count > sbi->user_block_count)) {
1907
		spin_unlock(&sbi->stat_lock);
C
Chao Yu 已提交
1908
		goto enospc;
1909 1910
	}

1911
	valid_node_count = sbi->total_valid_node_count + 1;
1912
	if (unlikely(valid_node_count > sbi->total_node_count)) {
1913
		spin_unlock(&sbi->stat_lock);
C
Chao Yu 已提交
1914
		goto enospc;
1915 1916
	}

1917 1918
	sbi->total_valid_node_count++;
	sbi->total_valid_block_count++;
1919 1920
	spin_unlock(&sbi->stat_lock);

1921 1922 1923 1924
	if (inode) {
		if (is_inode)
			f2fs_mark_inode_dirty_sync(inode, true);
		else
C
Chao Yu 已提交
1925
			f2fs_i_blocks_write(inode, 1, true, true);
1926
	}
1927

1928
	percpu_counter_inc(&sbi->alloc_valid_block_count);
C
Chao Yu 已提交
1929 1930 1931 1932 1933 1934
	return 0;

enospc:
	if (quota)
		dquot_release_reservation_block(inode, 1);
	return -ENOSPC;
1935 1936 1937
}

static inline void dec_valid_node_count(struct f2fs_sb_info *sbi,
1938
					struct inode *inode, bool is_inode)
1939 1940 1941
{
	spin_lock(&sbi->stat_lock);

1942 1943
	f2fs_bug_on(sbi, !sbi->total_valid_block_count);
	f2fs_bug_on(sbi, !sbi->total_valid_node_count);
1944
	f2fs_bug_on(sbi, !is_inode && !inode->i_blocks);
1945

1946 1947
	sbi->total_valid_node_count--;
	sbi->total_valid_block_count--;
1948 1949 1950
	if (sbi->reserved_blocks &&
		sbi->current_reserved_blocks < sbi->reserved_blocks)
		sbi->current_reserved_blocks++;
1951 1952

	spin_unlock(&sbi->stat_lock);
C
Chao Yu 已提交
1953 1954 1955

	if (!is_inode)
		f2fs_i_blocks_write(inode, 1, false, true);
1956 1957 1958 1959
}

static inline unsigned int valid_node_count(struct f2fs_sb_info *sbi)
{
1960
	return sbi->total_valid_node_count;
1961 1962 1963 1964
}

static inline void inc_valid_inode_count(struct f2fs_sb_info *sbi)
{
1965
	percpu_counter_inc(&sbi->total_valid_inode_count);
1966 1967
}

1968
static inline void dec_valid_inode_count(struct f2fs_sb_info *sbi)
1969
{
1970
	percpu_counter_dec(&sbi->total_valid_inode_count);
1971 1972
}

1973
static inline s64 valid_inode_count(struct f2fs_sb_info *sbi)
1974
{
1975
	return percpu_counter_sum_positive(&sbi->total_valid_inode_count);
1976 1977
}

1978 1979 1980
static inline struct page *f2fs_grab_cache_page(struct address_space *mapping,
						pgoff_t index, bool for_write)
{
1981
#ifdef CONFIG_F2FS_FAULT_INJECTION
1982
	struct page *page;
1983

1984 1985 1986 1987 1988
	if (!for_write)
		page = find_get_page_flags(mapping, index,
						FGP_LOCK | FGP_ACCESSED);
	else
		page = find_lock_page(mapping, index);
1989 1990 1991
	if (page)
		return page;

1992 1993
	if (time_to_inject(F2FS_M_SB(mapping), FAULT_PAGE_ALLOC)) {
		f2fs_show_injection_info(FAULT_PAGE_ALLOC);
1994
		return NULL;
1995
	}
1996
#endif
1997 1998 1999 2000 2001
	if (!for_write)
		return grab_cache_page(mapping, index);
	return grab_cache_page_write_begin(mapping, index, AOP_FLAG_NOFS);
}

C
Chao Yu 已提交
2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014
static inline struct page *f2fs_pagecache_get_page(
				struct address_space *mapping, pgoff_t index,
				int fgp_flags, gfp_t gfp_mask)
{
#ifdef CONFIG_F2FS_FAULT_INJECTION
	if (time_to_inject(F2FS_M_SB(mapping), FAULT_PAGE_GET)) {
		f2fs_show_injection_info(FAULT_PAGE_GET);
		return NULL;
	}
#endif
	return pagecache_get_page(mapping, index, fgp_flags, gfp_mask);
}

2015 2016 2017 2018 2019 2020 2021 2022 2023 2024
static inline void f2fs_copy_page(struct page *src, struct page *dst)
{
	char *src_kaddr = kmap(src);
	char *dst_kaddr = kmap(dst);

	memcpy(dst_kaddr, src_kaddr, PAGE_SIZE);
	kunmap(dst);
	kunmap(src);
}

2025 2026
static inline void f2fs_put_page(struct page *page, int unlock)
{
2027
	if (!page)
2028 2029 2030
		return;

	if (unlock) {
2031
		f2fs_bug_on(F2FS_P_SB(page), !PageLocked(page));
2032 2033
		unlock_page(page);
	}
2034
	put_page(page);
2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047
}

static inline void f2fs_put_dnode(struct dnode_of_data *dn)
{
	if (dn->node_page)
		f2fs_put_page(dn->node_page, 1);
	if (dn->inode_page && dn->node_page != dn->inode_page)
		f2fs_put_page(dn->inode_page, 0);
	dn->node_page = NULL;
	dn->inode_page = NULL;
}

static inline struct kmem_cache *f2fs_kmem_cache_create(const char *name,
2048
					size_t size)
2049
{
2050
	return kmem_cache_create(name, size, 0, SLAB_RECLAIM_ACCOUNT, NULL);
2051 2052
}

2053 2054 2055 2056 2057
static inline void *f2fs_kmem_cache_alloc(struct kmem_cache *cachep,
						gfp_t flags)
{
	void *entry;

2058 2059 2060
	entry = kmem_cache_alloc(cachep, flags);
	if (!entry)
		entry = kmem_cache_alloc(cachep, flags | __GFP_NOFAIL);
2061 2062 2063
	return entry;
}

2064 2065
static inline struct bio *f2fs_bio_alloc(struct f2fs_sb_info *sbi,
						int npages, bool no_fail)
J
Jaegeuk Kim 已提交
2066 2067 2068
{
	struct bio *bio;

2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082
	if (no_fail) {
		/* No failure on bio allocation */
		bio = bio_alloc(GFP_NOIO, npages);
		if (!bio)
			bio = bio_alloc(GFP_NOIO | __GFP_NOFAIL, npages);
		return bio;
	}
#ifdef CONFIG_F2FS_FAULT_INJECTION
	if (time_to_inject(sbi, FAULT_ALLOC_BIO)) {
		f2fs_show_injection_info(FAULT_ALLOC_BIO);
		return NULL;
	}
#endif
	return bio_alloc(GFP_KERNEL, npages);
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Jaegeuk Kim 已提交
2083 2084
}

2085 2086 2087 2088 2089 2090 2091
static inline void f2fs_radix_tree_insert(struct radix_tree_root *root,
				unsigned long index, void *item)
{
	while (radix_tree_insert(root, index, item))
		cond_resched();
}

2092 2093 2094 2095
#define RAW_IS_INODE(p)	((p)->footer.nid == (p)->footer.ino)

static inline bool IS_INODE(struct page *page)
{
2096
	struct f2fs_node *p = F2FS_NODE(page);
2097

2098 2099 2100
	return RAW_IS_INODE(p);
}

2101 2102 2103 2104 2105 2106
static inline int offset_in_addr(struct f2fs_inode *i)
{
	return (i->i_inline & F2FS_EXTRA_ATTR) ?
			(le16_to_cpu(i->i_extra_isize) / sizeof(__le32)) : 0;
}

2107 2108 2109 2110 2111
static inline __le32 *blkaddr_in_node(struct f2fs_node *node)
{
	return RAW_IS_INODE(node) ? node->i.i_addr : node->dn.addr;
}

2112 2113 2114
static inline int f2fs_has_extra_attr(struct inode *inode);
static inline block_t datablock_addr(struct inode *inode,
			struct page *node_page, unsigned int offset)
2115 2116 2117
{
	struct f2fs_node *raw_node;
	__le32 *addr_array;
2118 2119
	int base = 0;
	bool is_inode = IS_INODE(node_page);
2120

2121
	raw_node = F2FS_NODE(node_page);
2122 2123

	/* from GC path only */
2124 2125
	if (is_inode) {
		if (!inode)
2126
			base = offset_in_addr(&raw_node->i);
2127 2128
		else if (f2fs_has_extra_attr(inode))
			base = get_extra_isize(inode);
2129 2130
	}

2131
	addr_array = blkaddr_in_node(raw_node);
2132
	return le32_to_cpu(addr_array[base + offset]);
2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143
}

static inline int f2fs_test_bit(unsigned int nr, char *addr)
{
	int mask;

	addr += (nr >> 3);
	mask = 1 << (7 - (nr & 0x07));
	return mask & *addr;
}

2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161
static inline void f2fs_set_bit(unsigned int nr, char *addr)
{
	int mask;

	addr += (nr >> 3);
	mask = 1 << (7 - (nr & 0x07));
	*addr |= mask;
}

static inline void f2fs_clear_bit(unsigned int nr, char *addr)
{
	int mask;

	addr += (nr >> 3);
	mask = 1 << (7 - (nr & 0x07));
	*addr &= ~mask;
}

2162
static inline int f2fs_test_and_set_bit(unsigned int nr, char *addr)
2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173
{
	int mask;
	int ret;

	addr += (nr >> 3);
	mask = 1 << (7 - (nr & 0x07));
	ret = mask & *addr;
	*addr |= mask;
	return ret;
}

2174
static inline int f2fs_test_and_clear_bit(unsigned int nr, char *addr)
2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185
{
	int mask;
	int ret;

	addr += (nr >> 3);
	mask = 1 << (7 - (nr & 0x07));
	ret = mask & *addr;
	*addr &= ~mask;
	return ret;
}

2186 2187 2188 2189 2190 2191 2192 2193 2194
static inline void f2fs_change_bit(unsigned int nr, char *addr)
{
	int mask;

	addr += (nr >> 3);
	mask = 1 << (7 - (nr & 0x07));
	*addr ^= mask;
}

2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248
/*
 * Inode flags
 */
#define F2FS_SECRM_FL			0x00000001 /* Secure deletion */
#define F2FS_UNRM_FL			0x00000002 /* Undelete */
#define F2FS_COMPR_FL			0x00000004 /* Compress file */
#define F2FS_SYNC_FL			0x00000008 /* Synchronous updates */
#define F2FS_IMMUTABLE_FL		0x00000010 /* Immutable file */
#define F2FS_APPEND_FL			0x00000020 /* writes to file may only append */
#define F2FS_NODUMP_FL			0x00000040 /* do not dump file */
#define F2FS_NOATIME_FL			0x00000080 /* do not update atime */
/* Reserved for compression usage... */
#define F2FS_DIRTY_FL			0x00000100
#define F2FS_COMPRBLK_FL		0x00000200 /* One or more compressed clusters */
#define F2FS_NOCOMPR_FL			0x00000400 /* Don't compress */
#define F2FS_ENCRYPT_FL			0x00000800 /* encrypted file */
/* End compression flags --- maybe not all used */
#define F2FS_INDEX_FL			0x00001000 /* hash-indexed directory */
#define F2FS_IMAGIC_FL			0x00002000 /* AFS directory */
#define F2FS_JOURNAL_DATA_FL		0x00004000 /* file data should be journaled */
#define F2FS_NOTAIL_FL			0x00008000 /* file tail should not be merged */
#define F2FS_DIRSYNC_FL			0x00010000 /* dirsync behaviour (directories only) */
#define F2FS_TOPDIR_FL			0x00020000 /* Top of directory hierarchies*/
#define F2FS_HUGE_FILE_FL               0x00040000 /* Set to each huge file */
#define F2FS_EXTENTS_FL			0x00080000 /* Inode uses extents */
#define F2FS_EA_INODE_FL	        0x00200000 /* Inode used for large EA */
#define F2FS_EOFBLOCKS_FL		0x00400000 /* Blocks allocated beyond EOF */
#define F2FS_INLINE_DATA_FL		0x10000000 /* Inode has inline data. */
#define F2FS_PROJINHERIT_FL		0x20000000 /* Create with parents projid */
#define F2FS_RESERVED_FL		0x80000000 /* reserved for ext4 lib */

#define F2FS_FL_USER_VISIBLE		0x304BDFFF /* User visible flags */
#define F2FS_FL_USER_MODIFIABLE		0x204BC0FF /* User modifiable flags */

/* Flags we can manipulate with through F2FS_IOC_FSSETXATTR */
#define F2FS_FL_XFLAG_VISIBLE		(F2FS_SYNC_FL | \
					 F2FS_IMMUTABLE_FL | \
					 F2FS_APPEND_FL | \
					 F2FS_NODUMP_FL | \
					 F2FS_NOATIME_FL | \
					 F2FS_PROJINHERIT_FL)

/* Flags that should be inherited by new inodes from their parent. */
#define F2FS_FL_INHERITED (F2FS_SECRM_FL | F2FS_UNRM_FL | F2FS_COMPR_FL |\
			   F2FS_SYNC_FL | F2FS_NODUMP_FL | F2FS_NOATIME_FL |\
			   F2FS_NOCOMPR_FL | F2FS_JOURNAL_DATA_FL |\
			   F2FS_NOTAIL_FL | F2FS_DIRSYNC_FL |\
			   F2FS_PROJINHERIT_FL)

/* Flags that are appropriate for regular files (all but dir-specific ones). */
#define F2FS_REG_FLMASK		(~(F2FS_DIRSYNC_FL | F2FS_TOPDIR_FL))

/* Flags that are appropriate for non-directories/regular files. */
#define F2FS_OTHER_FLMASK	(F2FS_NODUMP_FL | F2FS_NOATIME_FL)
C
Chao Yu 已提交
2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259

static inline __u32 f2fs_mask_flags(umode_t mode, __u32 flags)
{
	if (S_ISDIR(mode))
		return flags;
	else if (S_ISREG(mode))
		return flags & F2FS_REG_FLMASK;
	else
		return flags & F2FS_OTHER_FLMASK;
}

2260 2261 2262
/* used for f2fs_inode_info->flags */
enum {
	FI_NEW_INODE,		/* indicate newly allocated inode */
2263
	FI_DIRTY_INODE,		/* indicate inode is dirty or not */
2264
	FI_AUTO_RECOVER,	/* indicate inode is recoverable */
2265
	FI_DIRTY_DIR,		/* indicate directory has dirty pages */
2266 2267 2268
	FI_INC_LINK,		/* need to increment i_nlink */
	FI_ACL_MODE,		/* indicate acl mode */
	FI_NO_ALLOC,		/* should not allocate any blocks */
2269
	FI_FREE_NID,		/* free allocated nide */
2270
	FI_NO_EXTENT,		/* not to use the extent cache */
J
Jaegeuk Kim 已提交
2271
	FI_INLINE_XATTR,	/* used for inline xattr */
2272
	FI_INLINE_DATA,		/* used for inline data*/
2273
	FI_INLINE_DENTRY,	/* used for inline dentry */
2274 2275
	FI_APPEND_WRITE,	/* inode has appended data */
	FI_UPDATE_WRITE,	/* inode has in-place-update data */
J
Jaegeuk Kim 已提交
2276 2277
	FI_NEED_IPU,		/* used for ipu per file */
	FI_ATOMIC_FILE,		/* indicate atomic file */
C
Chao Yu 已提交
2278
	FI_ATOMIC_COMMIT,	/* indicate the state of atomical committing */
2279
	FI_VOLATILE_FILE,	/* indicate volatile file */
2280
	FI_FIRST_BLOCK_WRITTEN,	/* indicate #0 data block was written */
2281
	FI_DROP_CACHE,		/* drop dirty page cache */
2282
	FI_DATA_EXIST,		/* indicate data exists */
2283
	FI_INLINE_DOTS,		/* indicate inline dot dentries */
C
Chao Yu 已提交
2284
	FI_DO_DEFRAG,		/* indicate defragment is running */
2285
	FI_DIRTY_FILE,		/* indicate regular/symlink has dirty pages */
2286
	FI_NO_PREALLOC,		/* indicate skipped preallocated blocks */
2287
	FI_HOT_DATA,		/* indicate file is hot */
2288
	FI_EXTRA_ATTR,		/* indicate file has extra attribute */
C
Chao Yu 已提交
2289
	FI_PROJ_INHERIT,	/* indicate file inherits projectid */
2290
	FI_PIN_FILE,		/* indicate file should not be gced */
2291
	FI_ATOMIC_REVOKE_REQUEST, /* request to drop atomic data */
2292 2293
};

2294 2295 2296 2297 2298 2299 2300
static inline void __mark_inode_dirty_flag(struct inode *inode,
						int flag, bool set)
{
	switch (flag) {
	case FI_INLINE_XATTR:
	case FI_INLINE_DATA:
	case FI_INLINE_DENTRY:
2301
	case FI_NEW_INODE:
2302 2303 2304 2305
		if (set)
			return;
	case FI_DATA_EXIST:
	case FI_INLINE_DOTS:
2306
	case FI_PIN_FILE:
2307
		f2fs_mark_inode_dirty_sync(inode, true);
2308 2309 2310
	}
}

2311
static inline void set_inode_flag(struct inode *inode, int flag)
2312
{
2313 2314
	if (!test_bit(flag, &F2FS_I(inode)->flags))
		set_bit(flag, &F2FS_I(inode)->flags);
2315
	__mark_inode_dirty_flag(inode, flag, true);
2316 2317
}

2318
static inline int is_inode_flag_set(struct inode *inode, int flag)
2319
{
2320
	return test_bit(flag, &F2FS_I(inode)->flags);
2321 2322
}

2323
static inline void clear_inode_flag(struct inode *inode, int flag)
2324
{
2325 2326
	if (test_bit(flag, &F2FS_I(inode)->flags))
		clear_bit(flag, &F2FS_I(inode)->flags);
2327
	__mark_inode_dirty_flag(inode, flag, false);
2328 2329
}

2330
static inline void set_acl_inode(struct inode *inode, umode_t mode)
2331
{
2332 2333
	F2FS_I(inode)->i_acl_mode = mode;
	set_inode_flag(inode, FI_ACL_MODE);
2334
	f2fs_mark_inode_dirty_sync(inode, false);
2335 2336
}

2337
static inline void f2fs_i_links_write(struct inode *inode, bool inc)
2338
{
2339 2340 2341 2342
	if (inc)
		inc_nlink(inode);
	else
		drop_nlink(inode);
2343
	f2fs_mark_inode_dirty_sync(inode, true);
2344 2345
}

2346
static inline void f2fs_i_blocks_write(struct inode *inode,
C
Chao Yu 已提交
2347
					block_t diff, bool add, bool claim)
2348
{
2349 2350 2351
	bool clean = !is_inode_flag_set(inode, FI_DIRTY_INODE);
	bool recover = is_inode_flag_set(inode, FI_AUTO_RECOVER);

C
Chao Yu 已提交
2352 2353 2354 2355 2356 2357 2358 2359 2360 2361
	/* add = 1, claim = 1 should be dquot_reserve_block in pair */
	if (add) {
		if (claim)
			dquot_claim_block(inode, diff);
		else
			dquot_alloc_block_nofail(inode, diff);
	} else {
		dquot_free_block(inode, diff);
	}

2362
	f2fs_mark_inode_dirty_sync(inode, true);
2363 2364
	if (clean || recover)
		set_inode_flag(inode, FI_AUTO_RECOVER);
2365 2366
}

2367 2368
static inline void f2fs_i_size_write(struct inode *inode, loff_t i_size)
{
2369 2370 2371
	bool clean = !is_inode_flag_set(inode, FI_DIRTY_INODE);
	bool recover = is_inode_flag_set(inode, FI_AUTO_RECOVER);

2372 2373 2374 2375
	if (i_size_read(inode) == i_size)
		return;

	i_size_write(inode, i_size);
2376
	f2fs_mark_inode_dirty_sync(inode, true);
2377 2378
	if (clean || recover)
		set_inode_flag(inode, FI_AUTO_RECOVER);
2379 2380
}

2381
static inline void f2fs_i_depth_write(struct inode *inode, unsigned int depth)
2382
{
2383
	F2FS_I(inode)->i_current_depth = depth;
2384
	f2fs_mark_inode_dirty_sync(inode, true);
2385 2386
}

2387 2388 2389
static inline void f2fs_i_gc_failures_write(struct inode *inode,
					unsigned int count)
{
2390
	F2FS_I(inode)->i_gc_failures[GC_FAILURE_PIN] = count;
2391 2392 2393
	f2fs_mark_inode_dirty_sync(inode, true);
}

2394
static inline void f2fs_i_xnid_write(struct inode *inode, nid_t xnid)
J
Jaegeuk Kim 已提交
2395
{
2396
	F2FS_I(inode)->i_xattr_nid = xnid;
2397
	f2fs_mark_inode_dirty_sync(inode, true);
2398 2399 2400 2401 2402
}

static inline void f2fs_i_pino_write(struct inode *inode, nid_t pino)
{
	F2FS_I(inode)->i_pino = pino;
2403
	f2fs_mark_inode_dirty_sync(inode, true);
2404 2405
}

2406
static inline void get_inline_info(struct inode *inode, struct f2fs_inode *ri)
J
Jaegeuk Kim 已提交
2407
{
2408 2409
	struct f2fs_inode_info *fi = F2FS_I(inode);

J
Jaegeuk Kim 已提交
2410
	if (ri->i_inline & F2FS_INLINE_XATTR)
2411
		set_bit(FI_INLINE_XATTR, &fi->flags);
2412
	if (ri->i_inline & F2FS_INLINE_DATA)
2413
		set_bit(FI_INLINE_DATA, &fi->flags);
2414
	if (ri->i_inline & F2FS_INLINE_DENTRY)
2415
		set_bit(FI_INLINE_DENTRY, &fi->flags);
2416
	if (ri->i_inline & F2FS_DATA_EXIST)
2417
		set_bit(FI_DATA_EXIST, &fi->flags);
2418
	if (ri->i_inline & F2FS_INLINE_DOTS)
2419
		set_bit(FI_INLINE_DOTS, &fi->flags);
2420 2421
	if (ri->i_inline & F2FS_EXTRA_ATTR)
		set_bit(FI_EXTRA_ATTR, &fi->flags);
2422 2423
	if (ri->i_inline & F2FS_PIN_FILE)
		set_bit(FI_PIN_FILE, &fi->flags);
J
Jaegeuk Kim 已提交
2424 2425
}

2426
static inline void set_raw_inline(struct inode *inode, struct f2fs_inode *ri)
J
Jaegeuk Kim 已提交
2427 2428 2429
{
	ri->i_inline = 0;

2430
	if (is_inode_flag_set(inode, FI_INLINE_XATTR))
J
Jaegeuk Kim 已提交
2431
		ri->i_inline |= F2FS_INLINE_XATTR;
2432
	if (is_inode_flag_set(inode, FI_INLINE_DATA))
2433
		ri->i_inline |= F2FS_INLINE_DATA;
2434
	if (is_inode_flag_set(inode, FI_INLINE_DENTRY))
2435
		ri->i_inline |= F2FS_INLINE_DENTRY;
2436
	if (is_inode_flag_set(inode, FI_DATA_EXIST))
2437
		ri->i_inline |= F2FS_DATA_EXIST;
2438
	if (is_inode_flag_set(inode, FI_INLINE_DOTS))
2439
		ri->i_inline |= F2FS_INLINE_DOTS;
2440 2441
	if (is_inode_flag_set(inode, FI_EXTRA_ATTR))
		ri->i_inline |= F2FS_EXTRA_ATTR;
2442 2443
	if (is_inode_flag_set(inode, FI_PIN_FILE))
		ri->i_inline |= F2FS_PIN_FILE;
2444 2445 2446 2447 2448
}

static inline int f2fs_has_extra_attr(struct inode *inode)
{
	return is_inode_flag_set(inode, FI_EXTRA_ATTR);
J
Jaegeuk Kim 已提交
2449 2450
}

2451 2452
static inline int f2fs_has_inline_xattr(struct inode *inode)
{
2453
	return is_inode_flag_set(inode, FI_INLINE_XATTR);
2454 2455
}

2456
static inline unsigned int addrs_per_inode(struct inode *inode)
2457
{
2458
	return CUR_ADDRS_PER_INODE(inode) - get_inline_xattr_addrs(inode);
2459 2460
}

C
Chao Yu 已提交
2461
static inline void *inline_xattr_addr(struct inode *inode, struct page *page)
J
Jaegeuk Kim 已提交
2462
{
2463
	struct f2fs_inode *ri = F2FS_INODE(page);
2464

J
Jaegeuk Kim 已提交
2465
	return (void *)&(ri->i_addr[DEF_ADDRS_PER_INODE -
2466
					get_inline_xattr_addrs(inode)]);
J
Jaegeuk Kim 已提交
2467 2468 2469 2470
}

static inline int inline_xattr_size(struct inode *inode)
{
C
Chao Yu 已提交
2471
	return get_inline_xattr_addrs(inode) * sizeof(__le32);
J
Jaegeuk Kim 已提交
2472 2473
}

2474 2475
static inline int f2fs_has_inline_data(struct inode *inode)
{
2476
	return is_inode_flag_set(inode, FI_INLINE_DATA);
2477 2478
}

2479 2480
static inline int f2fs_exist_data(struct inode *inode)
{
2481
	return is_inode_flag_set(inode, FI_DATA_EXIST);
2482 2483
}

2484 2485
static inline int f2fs_has_inline_dots(struct inode *inode)
{
2486
	return is_inode_flag_set(inode, FI_INLINE_DOTS);
2487 2488
}

2489 2490 2491 2492 2493
static inline bool f2fs_is_pinned_file(struct inode *inode)
{
	return is_inode_flag_set(inode, FI_PIN_FILE);
}

J
Jaegeuk Kim 已提交
2494 2495
static inline bool f2fs_is_atomic_file(struct inode *inode)
{
2496
	return is_inode_flag_set(inode, FI_ATOMIC_FILE);
J
Jaegeuk Kim 已提交
2497 2498
}

C
Chao Yu 已提交
2499 2500 2501 2502 2503
static inline bool f2fs_is_commit_atomic_write(struct inode *inode)
{
	return is_inode_flag_set(inode, FI_ATOMIC_COMMIT);
}

2504 2505
static inline bool f2fs_is_volatile_file(struct inode *inode)
{
2506
	return is_inode_flag_set(inode, FI_VOLATILE_FILE);
2507 2508
}

2509 2510
static inline bool f2fs_is_first_block_written(struct inode *inode)
{
2511
	return is_inode_flag_set(inode, FI_FIRST_BLOCK_WRITTEN);
2512 2513
}

2514 2515
static inline bool f2fs_is_drop_cache(struct inode *inode)
{
2516
	return is_inode_flag_set(inode, FI_DROP_CACHE);
2517 2518
}

C
Chao Yu 已提交
2519
static inline void *inline_data_addr(struct inode *inode, struct page *page)
2520
{
2521
	struct f2fs_inode *ri = F2FS_INODE(page);
2522
	int extra_size = get_extra_isize(inode);
2523

2524
	return (void *)&(ri->i_addr[extra_size + DEF_INLINE_RESERVED_SIZE]);
2525 2526
}

2527 2528
static inline int f2fs_has_inline_dentry(struct inode *inode)
{
2529
	return is_inode_flag_set(inode, FI_INLINE_DENTRY);
2530 2531
}

2532 2533 2534 2535 2536 2537 2538 2539
static inline int is_file(struct inode *inode, int type)
{
	return F2FS_I(inode)->i_advise & type;
}

static inline void set_file(struct inode *inode, int type)
{
	F2FS_I(inode)->i_advise |= type;
2540
	f2fs_mark_inode_dirty_sync(inode, true);
2541 2542 2543 2544 2545
}

static inline void clear_file(struct inode *inode, int type)
{
	F2FS_I(inode)->i_advise &= ~type;
2546
	f2fs_mark_inode_dirty_sync(inode, true);
2547 2548
}

2549 2550
static inline bool f2fs_skip_inode_update(struct inode *inode, int dsync)
{
2551 2552
	bool ret;

2553 2554 2555 2556 2557 2558 2559 2560 2561 2562
	if (dsync) {
		struct f2fs_sb_info *sbi = F2FS_I_SB(inode);

		spin_lock(&sbi->inode_lock[DIRTY_META]);
		ret = list_empty(&F2FS_I(inode)->gdirty_list);
		spin_unlock(&sbi->inode_lock[DIRTY_META]);
		return ret;
	}
	if (!is_inode_flag_set(inode, FI_AUTO_RECOVER) ||
			file_keep_isize(inode) ||
2563
			i_size_read(inode) & ~PAGE_MASK)
2564
		return false;
2565

2566
	if (!timespec64_equal(F2FS_I(inode)->i_disk_time, &inode->i_atime))
2567
		return false;
2568
	if (!timespec64_equal(F2FS_I(inode)->i_disk_time + 1, &inode->i_ctime))
2569
		return false;
2570
	if (!timespec64_equal(F2FS_I(inode)->i_disk_time + 2, &inode->i_mtime))
2571
		return false;
2572
	if (!timespec64_equal(F2FS_I(inode)->i_disk_time + 3,
2573 2574 2575
						&F2FS_I(inode)->i_crtime))
		return false;

2576 2577 2578 2579 2580
	down_read(&F2FS_I(inode)->i_sem);
	ret = F2FS_I(inode)->last_disk_size == i_size_read(inode);
	up_read(&F2FS_I(inode)->i_sem);

	return ret;
2581 2582
}

2583
static inline bool f2fs_readonly(struct super_block *sb)
J
Jaegeuk Kim 已提交
2584
{
2585
	return sb_rdonly(sb);
J
Jaegeuk Kim 已提交
2586 2587
}

2588 2589
static inline bool f2fs_cp_error(struct f2fs_sb_info *sbi)
{
2590
	return is_set_ckpt_flags(sbi, CP_ERROR_FLAG);
2591 2592
}

2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603
static inline bool is_dot_dotdot(const struct qstr *str)
{
	if (str->len == 1 && str->name[0] == '.')
		return true;

	if (str->len == 2 && str->name[0] == '.' && str->name[1] == '.')
		return true;

	return false;
}

J
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static inline bool f2fs_may_extent_tree(struct inode *inode)
{
	if (!test_opt(F2FS_I_SB(inode), EXTENT_CACHE) ||
2607
			is_inode_flag_set(inode, FI_NO_EXTENT))
J
Jaegeuk Kim 已提交
2608 2609
		return false;

A
Al Viro 已提交
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	return S_ISREG(inode->i_mode);
J
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2611 2612
}

2613 2614
static inline void *f2fs_kmalloc(struct f2fs_sb_info *sbi,
					size_t size, gfp_t flags)
2615
{
J
Jaegeuk Kim 已提交
2616
#ifdef CONFIG_F2FS_FAULT_INJECTION
2617 2618
	if (time_to_inject(sbi, FAULT_KMALLOC)) {
		f2fs_show_injection_info(FAULT_KMALLOC);
J
Jaegeuk Kim 已提交
2619
		return NULL;
2620
	}
J
Jaegeuk Kim 已提交
2621
#endif
2622 2623 2624
	return kmalloc(size, flags);
}

C
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static inline void *f2fs_kzalloc(struct f2fs_sb_info *sbi,
					size_t size, gfp_t flags)
{
	return f2fs_kmalloc(sbi, size, flags | __GFP_ZERO);
}

C
Chao Yu 已提交
2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648
static inline void *f2fs_kvmalloc(struct f2fs_sb_info *sbi,
					size_t size, gfp_t flags)
{
#ifdef CONFIG_F2FS_FAULT_INJECTION
	if (time_to_inject(sbi, FAULT_KVMALLOC)) {
		f2fs_show_injection_info(FAULT_KVMALLOC);
		return NULL;
	}
#endif
	return kvmalloc(size, flags);
}

static inline void *f2fs_kvzalloc(struct f2fs_sb_info *sbi,
					size_t size, gfp_t flags)
{
	return f2fs_kvmalloc(sbi, size, flags | __GFP_ZERO);
}

2649
static inline int get_extra_isize(struct inode *inode)
C
Chao Yu 已提交
2650
{
2651
	return F2FS_I(inode)->i_extra_isize / sizeof(__le32);
C
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2652 2653
}

C
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static inline int get_inline_xattr_addrs(struct inode *inode)
{
	return F2FS_I(inode)->i_inline_xattr_size;
}

C
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2659
#define f2fs_get_inode_mode(i) \
2660
	((is_inode_flag_set(i, FI_ACL_MODE)) ? \
2661 2662
	 (F2FS_I(i)->i_acl_mode) : ((i)->i_mode))

2663 2664 2665 2666
#define F2FS_TOTAL_EXTRA_ATTR_SIZE			\
	(offsetof(struct f2fs_inode, i_extra_end) -	\
	offsetof(struct f2fs_inode, i_extra_isize))	\

C
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2667 2668 2669 2670 2671 2672
#define F2FS_OLD_ATTRIBUTE_SIZE	(offsetof(struct f2fs_inode, i_addr))
#define F2FS_FITS_IN_INODE(f2fs_inode, extra_isize, field)		\
		((offsetof(typeof(*f2fs_inode), field) +	\
		sizeof((f2fs_inode)->field))			\
		<= (F2FS_OLD_ATTRIBUTE_SIZE + extra_isize))	\

C
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2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697
static inline void f2fs_reset_iostat(struct f2fs_sb_info *sbi)
{
	int i;

	spin_lock(&sbi->iostat_lock);
	for (i = 0; i < NR_IO_TYPE; i++)
		sbi->write_iostat[i] = 0;
	spin_unlock(&sbi->iostat_lock);
}

static inline void f2fs_update_iostat(struct f2fs_sb_info *sbi,
			enum iostat_type type, unsigned long long io_bytes)
{
	if (!sbi->iostat_enable)
		return;
	spin_lock(&sbi->iostat_lock);
	sbi->write_iostat[type] += io_bytes;

	if (type == APP_WRITE_IO || type == APP_DIRECT_IO)
		sbi->write_iostat[APP_BUFFERED_IO] =
			sbi->write_iostat[APP_WRITE_IO] -
			sbi->write_iostat[APP_DIRECT_IO];
	spin_unlock(&sbi->iostat_lock);
}

2698 2699 2700
#define __is_meta_io(fio) (PAGE_TYPE_OF_BIO(fio->type) == META &&	\
				(!is_read_io(fio->op) || fio->is_meta))

2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712 2713 2714 2715
bool f2fs_is_valid_blkaddr(struct f2fs_sb_info *sbi,
					block_t blkaddr, int type);
void f2fs_msg(struct super_block *sb, const char *level, const char *fmt, ...);
static inline void verify_blkaddr(struct f2fs_sb_info *sbi,
					block_t blkaddr, int type)
{
	if (!f2fs_is_valid_blkaddr(sbi, blkaddr, type)) {
		f2fs_msg(sbi->sb, KERN_ERR,
			"invalid blkaddr: %u, type: %d, run fsck to fix.",
			blkaddr, type);
		f2fs_bug_on(sbi, 1);
	}
}

static inline bool __is_valid_data_blkaddr(block_t blkaddr)
C
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{
	if (blkaddr == NEW_ADDR || blkaddr == NULL_ADDR)
		return false;
	return true;
}

2722 2723 2724 2725 2726 2727 2728 2729 2730
static inline bool is_valid_data_blkaddr(struct f2fs_sb_info *sbi,
						block_t blkaddr)
{
	if (!__is_valid_data_blkaddr(blkaddr))
		return false;
	verify_blkaddr(sbi, blkaddr, DATA_GENERIC);
	return true;
}

2731 2732 2733
/*
 * file.c
 */
2734
int f2fs_sync_file(struct file *file, loff_t start, loff_t end, int datasync);
C
Chao Yu 已提交
2735 2736
void f2fs_truncate_data_blocks(struct dnode_of_data *dn);
int f2fs_truncate_blocks(struct inode *inode, u64 from, bool lock);
2737
int f2fs_truncate(struct inode *inode);
2738 2739
int f2fs_getattr(const struct path *path, struct kstat *stat,
			u32 request_mask, unsigned int flags);
2740
int f2fs_setattr(struct dentry *dentry, struct iattr *attr);
C
Chao Yu 已提交
2741 2742
int f2fs_truncate_hole(struct inode *inode, pgoff_t pg_start, pgoff_t pg_end);
void f2fs_truncate_data_blocks_range(struct dnode_of_data *dn, int count);
2743
int f2fs_precache_extents(struct inode *inode);
2744 2745
long f2fs_ioctl(struct file *filp, unsigned int cmd, unsigned long arg);
long f2fs_compat_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
2746
int f2fs_pin_file_control(struct inode *inode, bool inc);
2747 2748 2749 2750

/*
 * inode.c
 */
2751
void f2fs_set_inode_flags(struct inode *inode);
C
Chao Yu 已提交
2752 2753
bool f2fs_inode_chksum_verify(struct f2fs_sb_info *sbi, struct page *page);
void f2fs_inode_chksum_set(struct f2fs_sb_info *sbi, struct page *page);
2754 2755
struct inode *f2fs_iget(struct super_block *sb, unsigned long ino);
struct inode *f2fs_iget_retry(struct super_block *sb, unsigned long ino);
C
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2756 2757 2758
int f2fs_try_to_free_nats(struct f2fs_sb_info *sbi, int nr_shrink);
void f2fs_update_inode(struct inode *inode, struct page *node_page);
void f2fs_update_inode_page(struct inode *inode);
2759 2760
int f2fs_write_inode(struct inode *inode, struct writeback_control *wbc);
void f2fs_evict_inode(struct inode *inode);
C
Chao Yu 已提交
2761
void f2fs_handle_failed_inode(struct inode *inode);
2762 2763 2764 2765

/*
 * namei.c
 */
C
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2766
int f2fs_update_extension_list(struct f2fs_sb_info *sbi, const char *name,
C
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							bool hot, bool set);
2768 2769 2770 2771 2772
struct dentry *f2fs_get_parent(struct dentry *child);

/*
 * dir.c
 */
C
Chao Yu 已提交
2773 2774
unsigned char f2fs_get_de_type(struct f2fs_dir_entry *de);
struct f2fs_dir_entry *f2fs_find_target_dentry(struct fscrypt_name *fname,
2775 2776 2777 2778
			f2fs_hash_t namehash, int *max_slots,
			struct f2fs_dentry_ptr *d);
int f2fs_fill_dentries(struct dir_context *ctx, struct f2fs_dentry_ptr *d,
			unsigned int start_pos, struct fscrypt_str *fstr);
C
Chao Yu 已提交
2779
void f2fs_do_make_empty_dir(struct inode *inode, struct inode *parent,
2780
			struct f2fs_dentry_ptr *d);
C
Chao Yu 已提交
2781
struct page *f2fs_init_inode_metadata(struct inode *inode, struct inode *dir,
2782 2783
			const struct qstr *new_name,
			const struct qstr *orig_name, struct page *dpage);
C
Chao Yu 已提交
2784
void f2fs_update_parent_metadata(struct inode *dir, struct inode *inode,
2785
			unsigned int current_depth);
C
Chao Yu 已提交
2786
int f2fs_room_for_filename(const void *bitmap, int slots, int max_slots);
2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802
void f2fs_drop_nlink(struct inode *dir, struct inode *inode);
struct f2fs_dir_entry *__f2fs_find_entry(struct inode *dir,
			struct fscrypt_name *fname, struct page **res_page);
struct f2fs_dir_entry *f2fs_find_entry(struct inode *dir,
			const struct qstr *child, struct page **res_page);
struct f2fs_dir_entry *f2fs_parent_dir(struct inode *dir, struct page **p);
ino_t f2fs_inode_by_name(struct inode *dir, const struct qstr *qstr,
			struct page **page);
void f2fs_set_link(struct inode *dir, struct f2fs_dir_entry *de,
			struct page *page, struct inode *inode);
void f2fs_update_dentry(nid_t ino, umode_t mode, struct f2fs_dentry_ptr *d,
			const struct qstr *name, f2fs_hash_t name_hash,
			unsigned int bit_pos);
int f2fs_add_regular_entry(struct inode *dir, const struct qstr *new_name,
			const struct qstr *orig_name,
			struct inode *inode, nid_t ino, umode_t mode);
C
Chao Yu 已提交
2803
int f2fs_add_dentry(struct inode *dir, struct fscrypt_name *fname,
2804
			struct inode *inode, nid_t ino, umode_t mode);
C
Chao Yu 已提交
2805
int f2fs_do_add_link(struct inode *dir, const struct qstr *name,
2806 2807 2808 2809 2810
			struct inode *inode, nid_t ino, umode_t mode);
void f2fs_delete_entry(struct f2fs_dir_entry *dentry, struct page *page,
			struct inode *dir, struct inode *inode);
int f2fs_do_tmpfile(struct inode *inode, struct inode *dir);
bool f2fs_empty_dir(struct inode *dir);
2811

2812 2813
static inline int f2fs_add_link(struct dentry *dentry, struct inode *inode)
{
C
Chao Yu 已提交
2814
	return f2fs_do_add_link(d_inode(dentry->d_parent), &dentry->d_name,
2815
				inode, inode->i_ino, inode->i_mode);
2816 2817
}

2818 2819 2820
/*
 * super.c
 */
2821 2822
int f2fs_inode_dirtied(struct inode *inode, bool sync);
void f2fs_inode_synced(struct inode *inode);
J
Jaegeuk Kim 已提交
2823
int f2fs_enable_quota_files(struct f2fs_sb_info *sbi, bool rdonly);
C
Chao Yu 已提交
2824
void f2fs_quota_off_umount(struct super_block *sb);
2825 2826
int f2fs_commit_super(struct f2fs_sb_info *sbi, bool recover);
int f2fs_sync_fs(struct super_block *sb, int sync);
2827
extern __printf(3, 4)
2828
void f2fs_msg(struct super_block *sb, const char *level, const char *fmt, ...);
C
Chao Yu 已提交
2829
int f2fs_sanity_check_ckpt(struct f2fs_sb_info *sbi);
2830 2831 2832 2833

/*
 * hash.c
 */
2834 2835
f2fs_hash_t f2fs_dentry_hash(const struct qstr *name_info,
				struct fscrypt_name *fname);
2836 2837 2838 2839 2840 2841 2842

/*
 * node.c
 */
struct dnode_of_data;
struct node_info;

C
Chao Yu 已提交
2843 2844
int f2fs_check_nid_range(struct f2fs_sb_info *sbi, nid_t nid);
bool f2fs_available_free_memory(struct f2fs_sb_info *sbi, int type);
2845 2846 2847 2848
bool f2fs_in_warm_node_list(struct f2fs_sb_info *sbi, struct page *page);
void f2fs_init_fsync_node_info(struct f2fs_sb_info *sbi);
void f2fs_del_fsync_node_entry(struct f2fs_sb_info *sbi, struct page *page);
void f2fs_reset_fsync_node_info(struct f2fs_sb_info *sbi);
C
Chao Yu 已提交
2849 2850 2851
int f2fs_need_dentry_mark(struct f2fs_sb_info *sbi, nid_t nid);
bool f2fs_is_checkpointed_node(struct f2fs_sb_info *sbi, nid_t nid);
bool f2fs_need_inode_block_update(struct f2fs_sb_info *sbi, nid_t ino);
2852
int f2fs_get_node_info(struct f2fs_sb_info *sbi, nid_t nid,
C
Chao Yu 已提交
2853 2854 2855 2856 2857
						struct node_info *ni);
pgoff_t f2fs_get_next_page_offset(struct dnode_of_data *dn, pgoff_t pgofs);
int f2fs_get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode);
int f2fs_truncate_inode_blocks(struct inode *inode, pgoff_t from);
int f2fs_truncate_xattr_node(struct inode *inode);
2858 2859
int f2fs_wait_on_node_pages_writeback(struct f2fs_sb_info *sbi,
					unsigned int seq_id);
C
Chao Yu 已提交
2860 2861 2862 2863 2864 2865 2866 2867
int f2fs_remove_inode_page(struct inode *inode);
struct page *f2fs_new_inode_page(struct inode *inode);
struct page *f2fs_new_node_page(struct dnode_of_data *dn, unsigned int ofs);
void f2fs_ra_node_page(struct f2fs_sb_info *sbi, nid_t nid);
struct page *f2fs_get_node_page(struct f2fs_sb_info *sbi, pgoff_t nid);
struct page *f2fs_get_node_page_ra(struct page *parent, int start);
void f2fs_move_node_page(struct page *node_page, int gc_type);
int f2fs_fsync_node_pages(struct f2fs_sb_info *sbi, struct inode *inode,
2868 2869
			struct writeback_control *wbc, bool atomic,
			unsigned int *seq_id);
C
Chao Yu 已提交
2870 2871
int f2fs_sync_node_pages(struct f2fs_sb_info *sbi,
			struct writeback_control *wbc,
C
Chao Yu 已提交
2872
			bool do_balance, enum iostat_type io_type);
2873
int f2fs_build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount);
C
Chao Yu 已提交
2874 2875 2876 2877 2878 2879 2880
bool f2fs_alloc_nid(struct f2fs_sb_info *sbi, nid_t *nid);
void f2fs_alloc_nid_done(struct f2fs_sb_info *sbi, nid_t nid);
void f2fs_alloc_nid_failed(struct f2fs_sb_info *sbi, nid_t nid);
int f2fs_try_to_free_nids(struct f2fs_sb_info *sbi, int nr_shrink);
void f2fs_recover_inline_xattr(struct inode *inode, struct page *page);
int f2fs_recover_xattr_data(struct inode *inode, struct page *page);
int f2fs_recover_inode_page(struct f2fs_sb_info *sbi, struct page *page);
2881
int f2fs_restore_node_summary(struct f2fs_sb_info *sbi,
2882
			unsigned int segno, struct f2fs_summary_block *sum);
C
Chao Yu 已提交
2883 2884 2885 2886 2887
void f2fs_flush_nat_entries(struct f2fs_sb_info *sbi, struct cp_control *cpc);
int f2fs_build_node_manager(struct f2fs_sb_info *sbi);
void f2fs_destroy_node_manager(struct f2fs_sb_info *sbi);
int __init f2fs_create_node_manager_caches(void);
void f2fs_destroy_node_manager_caches(void);
2888 2889 2890 2891

/*
 * segment.c
 */
C
Chao Yu 已提交
2892 2893 2894 2895 2896 2897
bool f2fs_need_SSR(struct f2fs_sb_info *sbi);
void f2fs_register_inmem_page(struct inode *inode, struct page *page);
void f2fs_drop_inmem_pages_all(struct f2fs_sb_info *sbi, bool gc_failure);
void f2fs_drop_inmem_pages(struct inode *inode);
void f2fs_drop_inmem_page(struct inode *inode, struct page *page);
int f2fs_commit_inmem_pages(struct inode *inode);
2898 2899
void f2fs_balance_fs(struct f2fs_sb_info *sbi, bool need);
void f2fs_balance_fs_bg(struct f2fs_sb_info *sbi);
C
Chao Yu 已提交
2900
int f2fs_issue_flush(struct f2fs_sb_info *sbi, nid_t ino);
C
Chao Yu 已提交
2901
int f2fs_create_flush_cmd_control(struct f2fs_sb_info *sbi);
2902
int f2fs_flush_device_cache(struct f2fs_sb_info *sbi);
C
Chao Yu 已提交
2903 2904 2905 2906 2907
void f2fs_destroy_flush_cmd_control(struct f2fs_sb_info *sbi, bool free);
void f2fs_invalidate_blocks(struct f2fs_sb_info *sbi, block_t addr);
bool f2fs_is_checkpointed_data(struct f2fs_sb_info *sbi, block_t blkaddr);
void f2fs_drop_discard_cmd(struct f2fs_sb_info *sbi);
void f2fs_stop_discard_thread(struct f2fs_sb_info *sbi);
2908
bool f2fs_wait_discard_bios(struct f2fs_sb_info *sbi);
C
Chao Yu 已提交
2909 2910 2911 2912 2913
void f2fs_clear_prefree_segments(struct f2fs_sb_info *sbi,
					struct cp_control *cpc);
void f2fs_release_discard_addrs(struct f2fs_sb_info *sbi);
int f2fs_npages_for_summary_flush(struct f2fs_sb_info *sbi, bool for_ra);
void f2fs_allocate_new_segments(struct f2fs_sb_info *sbi);
2914
int f2fs_trim_fs(struct f2fs_sb_info *sbi, struct fstrim_range *range);
C
Chao Yu 已提交
2915 2916 2917 2918 2919 2920
bool f2fs_exist_trim_candidates(struct f2fs_sb_info *sbi,
					struct cp_control *cpc);
struct page *f2fs_get_sum_page(struct f2fs_sb_info *sbi, unsigned int segno);
void f2fs_update_meta_page(struct f2fs_sb_info *sbi, void *src,
					block_t blk_addr);
void f2fs_do_write_meta_page(struct f2fs_sb_info *sbi, struct page *page,
C
Chao Yu 已提交
2921
						enum iostat_type io_type);
C
Chao Yu 已提交
2922 2923 2924 2925 2926
void f2fs_do_write_node_page(unsigned int nid, struct f2fs_io_info *fio);
void f2fs_outplace_write_data(struct dnode_of_data *dn,
			struct f2fs_io_info *fio);
int f2fs_inplace_write_data(struct f2fs_io_info *fio);
void f2fs_do_replace_block(struct f2fs_sb_info *sbi, struct f2fs_summary *sum,
2927 2928 2929 2930 2931 2932
			block_t old_blkaddr, block_t new_blkaddr,
			bool recover_curseg, bool recover_newaddr);
void f2fs_replace_block(struct f2fs_sb_info *sbi, struct dnode_of_data *dn,
			block_t old_addr, block_t new_addr,
			unsigned char version, bool recover_curseg,
			bool recover_newaddr);
C
Chao Yu 已提交
2933
void f2fs_allocate_data_block(struct f2fs_sb_info *sbi, struct page *page,
2934
			block_t old_blkaddr, block_t *new_blkaddr,
2935 2936
			struct f2fs_summary *sum, int type,
			struct f2fs_io_info *fio, bool add_list);
2937 2938
void f2fs_wait_on_page_writeback(struct page *page,
			enum page_type type, bool ordered);
2939
void f2fs_wait_on_block_writeback(struct f2fs_sb_info *sbi, block_t blkaddr);
C
Chao Yu 已提交
2940 2941 2942
void f2fs_write_data_summaries(struct f2fs_sb_info *sbi, block_t start_blk);
void f2fs_write_node_summaries(struct f2fs_sb_info *sbi, block_t start_blk);
int f2fs_lookup_journal_in_cursum(struct f2fs_journal *journal, int type,
2943
			unsigned int val, int alloc);
C
Chao Yu 已提交
2944 2945 2946 2947 2948 2949 2950 2951
void f2fs_flush_sit_entries(struct f2fs_sb_info *sbi, struct cp_control *cpc);
int f2fs_build_segment_manager(struct f2fs_sb_info *sbi);
void f2fs_destroy_segment_manager(struct f2fs_sb_info *sbi);
int __init f2fs_create_segment_manager_caches(void);
void f2fs_destroy_segment_manager_caches(void);
int f2fs_rw_hint_to_seg_type(enum rw_hint hint);
enum rw_hint f2fs_io_type_to_rw_hint(struct f2fs_sb_info *sbi,
			enum page_type type, enum temp_type temp);
2952 2953 2954 2955

/*
 * checkpoint.c
 */
2956
void f2fs_stop_checkpoint(struct f2fs_sb_info *sbi, bool end_io);
C
Chao Yu 已提交
2957 2958
struct page *f2fs_grab_meta_page(struct f2fs_sb_info *sbi, pgoff_t index);
struct page *f2fs_get_meta_page(struct f2fs_sb_info *sbi, pgoff_t index);
2959
struct page *f2fs_get_meta_page_nofail(struct f2fs_sb_info *sbi, pgoff_t index);
C
Chao Yu 已提交
2960
struct page *f2fs_get_tmp_page(struct f2fs_sb_info *sbi, pgoff_t index);
2961 2962
bool f2fs_is_valid_blkaddr(struct f2fs_sb_info *sbi,
					block_t blkaddr, int type);
C
Chao Yu 已提交
2963
int f2fs_ra_meta_pages(struct f2fs_sb_info *sbi, block_t start, int nrpages,
2964
			int type, bool sync);
C
Chao Yu 已提交
2965 2966
void f2fs_ra_meta_pages_cond(struct f2fs_sb_info *sbi, pgoff_t index);
long f2fs_sync_meta_pages(struct f2fs_sb_info *sbi, enum page_type type,
C
Chao Yu 已提交
2967
			long nr_to_write, enum iostat_type io_type);
C
Chao Yu 已提交
2968 2969 2970 2971 2972
void f2fs_add_ino_entry(struct f2fs_sb_info *sbi, nid_t ino, int type);
void f2fs_remove_ino_entry(struct f2fs_sb_info *sbi, nid_t ino, int type);
void f2fs_release_ino_entry(struct f2fs_sb_info *sbi, bool all);
bool f2fs_exist_written_data(struct f2fs_sb_info *sbi, nid_t ino, int mode);
void f2fs_set_dirty_device(struct f2fs_sb_info *sbi, nid_t ino,
C
Chao Yu 已提交
2973
					unsigned int devidx, int type);
C
Chao Yu 已提交
2974
bool f2fs_is_dirty_device(struct f2fs_sb_info *sbi, nid_t ino,
C
Chao Yu 已提交
2975
					unsigned int devidx, int type);
2976
int f2fs_sync_inode_meta(struct f2fs_sb_info *sbi);
C
Chao Yu 已提交
2977 2978 2979 2980 2981 2982 2983 2984 2985
int f2fs_acquire_orphan_inode(struct f2fs_sb_info *sbi);
void f2fs_release_orphan_inode(struct f2fs_sb_info *sbi);
void f2fs_add_orphan_inode(struct inode *inode);
void f2fs_remove_orphan_inode(struct f2fs_sb_info *sbi, nid_t ino);
int f2fs_recover_orphan_inodes(struct f2fs_sb_info *sbi);
int f2fs_get_valid_checkpoint(struct f2fs_sb_info *sbi);
void f2fs_update_dirty_page(struct inode *inode, struct page *page);
void f2fs_remove_dirty_inode(struct inode *inode);
int f2fs_sync_dirty_inodes(struct f2fs_sb_info *sbi, enum inode_type type);
2986
void f2fs_wait_on_all_pages_writeback(struct f2fs_sb_info *sbi);
C
Chao Yu 已提交
2987 2988 2989 2990
int f2fs_write_checkpoint(struct f2fs_sb_info *sbi, struct cp_control *cpc);
void f2fs_init_ino_entry_info(struct f2fs_sb_info *sbi);
int __init f2fs_create_checkpoint_caches(void);
void f2fs_destroy_checkpoint_caches(void);
2991 2992 2993 2994

/*
 * data.c
 */
2995 2996
int f2fs_init_post_read_processing(void);
void f2fs_destroy_post_read_processing(void);
2997 2998
void f2fs_submit_merged_write(struct f2fs_sb_info *sbi, enum page_type type);
void f2fs_submit_merged_write_cond(struct f2fs_sb_info *sbi,
2999
				struct inode *inode, nid_t ino, pgoff_t idx,
3000 3001
				enum page_type type);
void f2fs_flush_merged_writes(struct f2fs_sb_info *sbi);
3002
int f2fs_submit_page_bio(struct f2fs_io_info *fio);
3003
void f2fs_submit_page_write(struct f2fs_io_info *fio);
3004 3005 3006
struct block_device *f2fs_target_device(struct f2fs_sb_info *sbi,
			block_t blk_addr, struct bio *bio);
int f2fs_target_device_index(struct f2fs_sb_info *sbi, block_t blkaddr);
C
Chao Yu 已提交
3007
void f2fs_set_data_blkaddr(struct dnode_of_data *dn);
3008
void f2fs_update_data_blkaddr(struct dnode_of_data *dn, block_t blkaddr);
C
Chao Yu 已提交
3009 3010
int f2fs_reserve_new_blocks(struct dnode_of_data *dn, blkcnt_t count);
int f2fs_reserve_new_block(struct dnode_of_data *dn);
3011 3012 3013
int f2fs_get_block(struct dnode_of_data *dn, pgoff_t index);
int f2fs_preallocate_blocks(struct kiocb *iocb, struct iov_iter *from);
int f2fs_reserve_block(struct dnode_of_data *dn, pgoff_t index);
C
Chao Yu 已提交
3014
struct page *f2fs_get_read_data_page(struct inode *inode, pgoff_t index,
3015
			int op_flags, bool for_write);
C
Chao Yu 已提交
3016 3017
struct page *f2fs_find_data_page(struct inode *inode, pgoff_t index);
struct page *f2fs_get_lock_data_page(struct inode *inode, pgoff_t index,
3018
			bool for_write);
C
Chao Yu 已提交
3019
struct page *f2fs_get_new_data_page(struct inode *inode,
3020
			struct page *ipage, pgoff_t index, bool new_i_size);
C
Chao Yu 已提交
3021
int f2fs_do_write_data_page(struct f2fs_io_info *fio);
3022 3023 3024 3025
int f2fs_map_blocks(struct inode *inode, struct f2fs_map_blocks *map,
			int create, int flag);
int f2fs_fiemap(struct inode *inode, struct fiemap_extent_info *fieinfo,
			u64 start, u64 len);
C
Chao Yu 已提交
3026 3027
bool f2fs_should_update_inplace(struct inode *inode, struct f2fs_io_info *fio);
bool f2fs_should_update_outplace(struct inode *inode, struct f2fs_io_info *fio);
3028 3029 3030
void f2fs_invalidate_page(struct page *page, unsigned int offset,
			unsigned int length);
int f2fs_release_page(struct page *page, gfp_t wait);
3031
#ifdef CONFIG_MIGRATION
3032 3033
int f2fs_migrate_page(struct address_space *mapping, struct page *newpage,
			struct page *page, enum migrate_mode mode);
3034
#endif
H
Hyunchul Lee 已提交
3035
bool f2fs_overwrite_io(struct inode *inode, loff_t pos, size_t len);
C
Chao Yu 已提交
3036
void f2fs_clear_radix_tree_dirty_tag(struct page *page);
3037 3038 3039 3040

/*
 * gc.c
 */
C
Chao Yu 已提交
3041 3042 3043
int f2fs_start_gc_thread(struct f2fs_sb_info *sbi);
void f2fs_stop_gc_thread(struct f2fs_sb_info *sbi);
block_t f2fs_start_bidx_of_node(unsigned int node_ofs, struct inode *inode);
3044 3045
int f2fs_gc(struct f2fs_sb_info *sbi, bool sync, bool background,
			unsigned int segno);
C
Chao Yu 已提交
3046
void f2fs_build_gc_manager(struct f2fs_sb_info *sbi);
3047 3048 3049 3050

/*
 * recovery.c
 */
C
Chao Yu 已提交
3051 3052
int f2fs_recover_fsync_data(struct f2fs_sb_info *sbi, bool check_only);
bool f2fs_space_for_roll_forward(struct f2fs_sb_info *sbi);
3053 3054 3055 3056 3057 3058 3059 3060 3061 3062

/*
 * debug.c
 */
#ifdef CONFIG_F2FS_STAT_FS
struct f2fs_stat_info {
	struct list_head stat_list;
	struct f2fs_sb_info *sbi;
	int all_area_segs, sit_area_segs, nat_area_segs, ssa_area_segs;
	int main_area_segs, main_area_sections, main_area_zones;
3063 3064
	unsigned long long hit_largest, hit_cached, hit_rbtree;
	unsigned long long hit_total, total_ext;
J
Jaegeuk Kim 已提交
3065
	int ext_tree, zombie_tree, ext_node;
3066 3067
	int ndirty_node, ndirty_dent, ndirty_meta, ndirty_imeta;
	int ndirty_data, ndirty_qdata;
3068
	int inmem_pages;
3069
	unsigned int ndirty_dirs, ndirty_files, nquota_files, ndirty_all;
3070 3071
	int nats, dirty_nats, sits, dirty_sits;
	int free_nids, avail_nids, alloc_nids;
3072
	int total_count, utilization;
C
Chao Yu 已提交
3073
	int bg_gc, nr_wb_cp_data, nr_wb_data;
C
Chao Yu 已提交
3074 3075
	int nr_flushing, nr_flushed, flush_list_empty;
	int nr_discarding, nr_discarded;
C
Chao Yu 已提交
3076
	int nr_discard_cmd;
C
Chao Yu 已提交
3077
	unsigned int undiscard_blks;
3078
	int inline_xattr, inline_inode, inline_dir, append, update, orphans;
3079
	int aw_cnt, max_aw_cnt, vw_cnt, max_vw_cnt;
3080
	unsigned int valid_count, valid_node_count, valid_inode_count, discard_blks;
3081 3082 3083 3084
	unsigned int bimodal, avg_vblocks;
	int util_free, util_valid, util_invalid;
	int rsvd_segs, overp_segs;
	int dirty_count, node_pages, meta_pages;
3085
	int prefree_count, call_count, cp_count, bg_cp_count;
3086
	int tot_segs, node_segs, data_segs, free_segs, free_secs;
3087
	int bg_node_segs, bg_data_segs;
3088
	int tot_blks, data_blks, node_blks;
3089
	int bg_data_blks, bg_node_blks;
3090
	unsigned long long skipped_atomic_files[2];
3091 3092 3093 3094 3095 3096
	int curseg[NR_CURSEG_TYPE];
	int cursec[NR_CURSEG_TYPE];
	int curzone[NR_CURSEG_TYPE];

	unsigned int segment_count[2];
	unsigned int block_count[2];
3097
	unsigned int inplace_count;
C
Chao Yu 已提交
3098
	unsigned long long base_mem, cache_mem, page_mem;
3099 3100
};

3101 3102
static inline struct f2fs_stat_info *F2FS_STAT(struct f2fs_sb_info *sbi)
{
C
Chris Fries 已提交
3103
	return (struct f2fs_stat_info *)sbi->stat_info;
3104 3105
}

3106
#define stat_inc_cp_count(si)		((si)->cp_count++)
3107
#define stat_inc_bg_cp_count(si)	((si)->bg_cp_count++)
3108 3109
#define stat_inc_call_count(si)		((si)->call_count++)
#define stat_inc_bggc_count(sbi)	((sbi)->bg_gc++)
C
Chao Yu 已提交
3110 3111
#define stat_inc_dirty_inode(sbi, type)	((sbi)->ndirty_inode[type]++)
#define stat_dec_dirty_inode(sbi, type)	((sbi)->ndirty_inode[type]--)
3112 3113 3114 3115
#define stat_inc_total_hit(sbi)		(atomic64_inc(&(sbi)->total_hit_ext))
#define stat_inc_rbtree_node_hit(sbi)	(atomic64_inc(&(sbi)->read_hit_rbtree))
#define stat_inc_largest_node_hit(sbi)	(atomic64_inc(&(sbi)->read_hit_largest))
#define stat_inc_cached_node_hit(sbi)	(atomic64_inc(&(sbi)->read_hit_cached))
C
Chao Yu 已提交
3116 3117 3118 3119 3120 3121 3122 3123 3124 3125
#define stat_inc_inline_xattr(inode)					\
	do {								\
		if (f2fs_has_inline_xattr(inode))			\
			(atomic_inc(&F2FS_I_SB(inode)->inline_xattr));	\
	} while (0)
#define stat_dec_inline_xattr(inode)					\
	do {								\
		if (f2fs_has_inline_xattr(inode))			\
			(atomic_dec(&F2FS_I_SB(inode)->inline_xattr));	\
	} while (0)
3126 3127 3128
#define stat_inc_inline_inode(inode)					\
	do {								\
		if (f2fs_has_inline_data(inode))			\
3129
			(atomic_inc(&F2FS_I_SB(inode)->inline_inode));	\
3130 3131 3132 3133
	} while (0)
#define stat_dec_inline_inode(inode)					\
	do {								\
		if (f2fs_has_inline_data(inode))			\
3134
			(atomic_dec(&F2FS_I_SB(inode)->inline_inode));	\
3135
	} while (0)
3136 3137 3138
#define stat_inc_inline_dir(inode)					\
	do {								\
		if (f2fs_has_inline_dentry(inode))			\
3139
			(atomic_inc(&F2FS_I_SB(inode)->inline_dir));	\
3140 3141 3142 3143
	} while (0)
#define stat_dec_inline_dir(inode)					\
	do {								\
		if (f2fs_has_inline_dentry(inode))			\
3144
			(atomic_dec(&F2FS_I_SB(inode)->inline_dir));	\
3145
	} while (0)
3146 3147 3148 3149
#define stat_inc_seg_type(sbi, curseg)					\
		((sbi)->segment_count[(curseg)->alloc_type]++)
#define stat_inc_block_count(sbi, curseg)				\
		((sbi)->block_count[(curseg)->alloc_type]++)
3150 3151
#define stat_inc_inplace_blocks(sbi)					\
		(atomic_inc(&(sbi)->inplace_count))
3152
#define stat_inc_atomic_write(inode)					\
3153
		(atomic_inc(&F2FS_I_SB(inode)->aw_cnt))
3154
#define stat_dec_atomic_write(inode)					\
3155
		(atomic_dec(&F2FS_I_SB(inode)->aw_cnt))
3156 3157 3158 3159 3160 3161 3162
#define stat_update_max_atomic_write(inode)				\
	do {								\
		int cur = atomic_read(&F2FS_I_SB(inode)->aw_cnt);	\
		int max = atomic_read(&F2FS_I_SB(inode)->max_aw_cnt);	\
		if (cur > max)						\
			atomic_set(&F2FS_I_SB(inode)->max_aw_cnt, cur);	\
	} while (0)
3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173
#define stat_inc_volatile_write(inode)					\
		(atomic_inc(&F2FS_I_SB(inode)->vw_cnt))
#define stat_dec_volatile_write(inode)					\
		(atomic_dec(&F2FS_I_SB(inode)->vw_cnt))
#define stat_update_max_volatile_write(inode)				\
	do {								\
		int cur = atomic_read(&F2FS_I_SB(inode)->vw_cnt);	\
		int max = atomic_read(&F2FS_I_SB(inode)->max_vw_cnt);	\
		if (cur > max)						\
			atomic_set(&F2FS_I_SB(inode)->max_vw_cnt, cur);	\
	} while (0)
3174
#define stat_inc_seg_count(sbi, type, gc_type)				\
3175
	do {								\
3176
		struct f2fs_stat_info *si = F2FS_STAT(sbi);		\
3177 3178
		si->tot_segs++;						\
		if ((type) == SUM_TYPE_DATA) {				\
3179
			si->data_segs++;				\
3180 3181
			si->bg_data_segs += (gc_type == BG_GC) ? 1 : 0;	\
		} else {						\
3182
			si->node_segs++;				\
3183 3184
			si->bg_node_segs += (gc_type == BG_GC) ? 1 : 0;	\
		}							\
3185 3186 3187
	} while (0)

#define stat_inc_tot_blk_count(si, blks)				\
3188
	((si)->tot_blks += (blks))
3189

3190
#define stat_inc_data_blk_count(sbi, blks, gc_type)			\
3191
	do {								\
3192
		struct f2fs_stat_info *si = F2FS_STAT(sbi);		\
3193 3194
		stat_inc_tot_blk_count(si, blks);			\
		si->data_blks += (blks);				\
3195
		si->bg_data_blks += ((gc_type) == BG_GC) ? (blks) : 0;	\
3196 3197
	} while (0)

3198
#define stat_inc_node_blk_count(sbi, blks, gc_type)			\
3199
	do {								\
3200
		struct f2fs_stat_info *si = F2FS_STAT(sbi);		\
3201 3202
		stat_inc_tot_blk_count(si, blks);			\
		si->node_blks += (blks);				\
3203
		si->bg_node_blks += ((gc_type) == BG_GC) ? (blks) : 0;	\
3204 3205
	} while (0)

3206 3207
int f2fs_build_stats(struct f2fs_sb_info *sbi);
void f2fs_destroy_stats(struct f2fs_sb_info *sbi);
3208
int __init f2fs_create_root_stats(void);
3209
void f2fs_destroy_root_stats(void);
3210
#else
3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237 3238 3239
#define stat_inc_cp_count(si)				do { } while (0)
#define stat_inc_bg_cp_count(si)			do { } while (0)
#define stat_inc_call_count(si)				do { } while (0)
#define stat_inc_bggc_count(si)				do { } while (0)
#define stat_inc_dirty_inode(sbi, type)			do { } while (0)
#define stat_dec_dirty_inode(sbi, type)			do { } while (0)
#define stat_inc_total_hit(sb)				do { } while (0)
#define stat_inc_rbtree_node_hit(sb)			do { } while (0)
#define stat_inc_largest_node_hit(sbi)			do { } while (0)
#define stat_inc_cached_node_hit(sbi)			do { } while (0)
#define stat_inc_inline_xattr(inode)			do { } while (0)
#define stat_dec_inline_xattr(inode)			do { } while (0)
#define stat_inc_inline_inode(inode)			do { } while (0)
#define stat_dec_inline_inode(inode)			do { } while (0)
#define stat_inc_inline_dir(inode)			do { } while (0)
#define stat_dec_inline_dir(inode)			do { } while (0)
#define stat_inc_atomic_write(inode)			do { } while (0)
#define stat_dec_atomic_write(inode)			do { } while (0)
#define stat_update_max_atomic_write(inode)		do { } while (0)
#define stat_inc_volatile_write(inode)			do { } while (0)
#define stat_dec_volatile_write(inode)			do { } while (0)
#define stat_update_max_volatile_write(inode)		do { } while (0)
#define stat_inc_seg_type(sbi, curseg)			do { } while (0)
#define stat_inc_block_count(sbi, curseg)		do { } while (0)
#define stat_inc_inplace_blocks(sbi)			do { } while (0)
#define stat_inc_seg_count(sbi, type, gc_type)		do { } while (0)
#define stat_inc_tot_blk_count(si, blks)		do { } while (0)
#define stat_inc_data_blk_count(sbi, blks, gc_type)	do { } while (0)
#define stat_inc_node_blk_count(sbi, blks, gc_type)	do { } while (0)
3240 3241 3242

static inline int f2fs_build_stats(struct f2fs_sb_info *sbi) { return 0; }
static inline void f2fs_destroy_stats(struct f2fs_sb_info *sbi) { }
3243
static inline int __init f2fs_create_root_stats(void) { return 0; }
3244
static inline void f2fs_destroy_root_stats(void) { }
3245 3246 3247 3248 3249 3250 3251 3252 3253 3254
#endif

extern const struct file_operations f2fs_dir_operations;
extern const struct file_operations f2fs_file_operations;
extern const struct inode_operations f2fs_file_inode_operations;
extern const struct address_space_operations f2fs_dblock_aops;
extern const struct address_space_operations f2fs_node_aops;
extern const struct address_space_operations f2fs_meta_aops;
extern const struct inode_operations f2fs_dir_inode_operations;
extern const struct inode_operations f2fs_symlink_inode_operations;
3255
extern const struct inode_operations f2fs_encrypted_symlink_inode_operations;
3256
extern const struct inode_operations f2fs_special_inode_operations;
C
Chao Yu 已提交
3257
extern struct kmem_cache *f2fs_inode_entry_slab;
3258

3259 3260 3261
/*
 * inline.c
 */
3262 3263
bool f2fs_may_inline_data(struct inode *inode);
bool f2fs_may_inline_dentry(struct inode *inode);
C
Chao Yu 已提交
3264 3265 3266
void f2fs_do_read_inline_data(struct page *page, struct page *ipage);
void f2fs_truncate_inline_inode(struct inode *inode,
						struct page *ipage, u64 from);
3267 3268 3269 3270
int f2fs_read_inline_data(struct inode *inode, struct page *page);
int f2fs_convert_inline_page(struct dnode_of_data *dn, struct page *page);
int f2fs_convert_inline_inode(struct inode *inode);
int f2fs_write_inline_data(struct inode *inode, struct page *page);
C
Chao Yu 已提交
3271 3272
bool f2fs_recover_inline_data(struct inode *inode, struct page *npage);
struct f2fs_dir_entry *f2fs_find_in_inline_dir(struct inode *dir,
3273
			struct fscrypt_name *fname, struct page **res_page);
C
Chao Yu 已提交
3274
int f2fs_make_empty_inline_dir(struct inode *inode, struct inode *parent,
3275 3276 3277 3278
			struct page *ipage);
int f2fs_add_inline_entry(struct inode *dir, const struct qstr *new_name,
			const struct qstr *orig_name,
			struct inode *inode, nid_t ino, umode_t mode);
C
Chao Yu 已提交
3279 3280 3281
void f2fs_delete_inline_entry(struct f2fs_dir_entry *dentry,
				struct page *page, struct inode *dir,
				struct inode *inode);
3282 3283 3284 3285 3286 3287
bool f2fs_empty_inline_dir(struct inode *dir);
int f2fs_read_inline_dir(struct file *file, struct dir_context *ctx,
			struct fscrypt_str *fstr);
int f2fs_inline_data_fiemap(struct inode *inode,
			struct fiemap_extent_info *fieinfo,
			__u64 start, __u64 len);
3288

3289 3290 3291
/*
 * shrinker.c
 */
3292 3293 3294 3295 3296 3297
unsigned long f2fs_shrink_count(struct shrinker *shrink,
			struct shrink_control *sc);
unsigned long f2fs_shrink_scan(struct shrinker *shrink,
			struct shrink_control *sc);
void f2fs_join_shrinker(struct f2fs_sb_info *sbi);
void f2fs_leave_shrinker(struct f2fs_sb_info *sbi);
3298

3299 3300 3301
/*
 * extent_cache.c
 */
C
Chao Yu 已提交
3302
struct rb_entry *f2fs_lookup_rb_tree(struct rb_root *root,
3303
				struct rb_entry *cached_re, unsigned int ofs);
C
Chao Yu 已提交
3304
struct rb_node **f2fs_lookup_rb_tree_for_insert(struct f2fs_sb_info *sbi,
3305 3306
				struct rb_root *root, struct rb_node **parent,
				unsigned int ofs);
C
Chao Yu 已提交
3307
struct rb_entry *f2fs_lookup_rb_tree_ret(struct rb_root *root,
3308 3309 3310 3311
		struct rb_entry *cached_re, unsigned int ofs,
		struct rb_entry **prev_entry, struct rb_entry **next_entry,
		struct rb_node ***insert_p, struct rb_node **insert_parent,
		bool force);
C
Chao Yu 已提交
3312
bool f2fs_check_rb_tree_consistence(struct f2fs_sb_info *sbi,
3313
						struct rb_root *root);
3314 3315 3316 3317 3318 3319 3320 3321
unsigned int f2fs_shrink_extent_tree(struct f2fs_sb_info *sbi, int nr_shrink);
bool f2fs_init_extent_tree(struct inode *inode, struct f2fs_extent *i_ext);
void f2fs_drop_extent_tree(struct inode *inode);
unsigned int f2fs_destroy_extent_node(struct inode *inode);
void f2fs_destroy_extent_tree(struct inode *inode);
bool f2fs_lookup_extent_cache(struct inode *inode, pgoff_t pgofs,
			struct extent_info *ei);
void f2fs_update_extent_cache(struct dnode_of_data *dn);
C
Chao Yu 已提交
3322
void f2fs_update_extent_cache_range(struct dnode_of_data *dn,
3323
			pgoff_t fofs, block_t blkaddr, unsigned int len);
C
Chao Yu 已提交
3324 3325 3326
void f2fs_init_extent_cache_info(struct f2fs_sb_info *sbi);
int __init f2fs_create_extent_cache(void);
void f2fs_destroy_extent_cache(void);
3327

3328 3329 3330
/*
 * sysfs.c
 */
3331 3332 3333 3334
int __init f2fs_init_sysfs(void);
void f2fs_exit_sysfs(void);
int f2fs_register_sysfs(struct f2fs_sb_info *sbi);
void f2fs_unregister_sysfs(struct f2fs_sb_info *sbi);
3335

3336 3337 3338
/*
 * crypto support
 */
3339
static inline bool f2fs_encrypted_inode(struct inode *inode)
3340 3341 3342 3343
{
	return file_is_encrypt(inode);
}

3344 3345 3346 3347 3348
static inline bool f2fs_encrypted_file(struct inode *inode)
{
	return f2fs_encrypted_inode(inode) && S_ISREG(inode->i_mode);
}

3349 3350 3351 3352
static inline void f2fs_set_encrypted_inode(struct inode *inode)
{
#ifdef CONFIG_F2FS_FS_ENCRYPTION
	file_set_encrypt(inode);
3353
	inode->i_flags |= S_ENCRYPTED;
3354 3355 3356
#endif
}

3357 3358 3359 3360 3361
/*
 * Returns true if the reads of the inode's data need to undergo some
 * postprocessing step, like decryption or authenticity verification.
 */
static inline bool f2fs_post_read_required(struct inode *inode)
3362
{
3363
	return f2fs_encrypted_file(inode);
3364 3365
}

3366 3367 3368 3369
#define F2FS_FEATURE_FUNCS(name, flagname) \
static inline int f2fs_sb_has_##name(struct super_block *sb) \
{ \
	return F2FS_HAS_FEATURE(sb, F2FS_FEATURE_##flagname); \
3370 3371
}

3372 3373 3374 3375 3376 3377 3378 3379
F2FS_FEATURE_FUNCS(encrypt, ENCRYPT);
F2FS_FEATURE_FUNCS(blkzoned, BLKZONED);
F2FS_FEATURE_FUNCS(extra_attr, EXTRA_ATTR);
F2FS_FEATURE_FUNCS(project_quota, PRJQUOTA);
F2FS_FEATURE_FUNCS(inode_chksum, INODE_CHKSUM);
F2FS_FEATURE_FUNCS(flexible_inline_xattr, FLEXIBLE_INLINE_XATTR);
F2FS_FEATURE_FUNCS(quota_ino, QUOTA_INO);
F2FS_FEATURE_FUNCS(inode_crtime, INODE_CRTIME);
3380
F2FS_FEATURE_FUNCS(lost_found, LOST_FOUND);
C
Chao Yu 已提交
3381

3382 3383
#ifdef CONFIG_BLK_DEV_ZONED
static inline int get_blkz_type(struct f2fs_sb_info *sbi,
J
Jaegeuk Kim 已提交
3384
			struct block_device *bdev, block_t blkaddr)
3385 3386
{
	unsigned int zno = blkaddr >> sbi->log_blocks_per_blkz;
J
Jaegeuk Kim 已提交
3387
	int i;
3388

J
Jaegeuk Kim 已提交
3389 3390 3391 3392
	for (i = 0; i < sbi->s_ndevs; i++)
		if (FDEV(i).bdev == bdev)
			return FDEV(i).blkz_type[zno];
	return -EINVAL;
3393 3394 3395
}
#endif

3396
static inline bool f2fs_discard_en(struct f2fs_sb_info *sbi)
3397
{
3398 3399
	struct request_queue *q = bdev_get_queue(sbi->sb->s_bdev);

3400
	return blk_queue_discard(q) || f2fs_sb_has_blkzoned(sbi->sb);
3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411 3412 3413 3414 3415 3416 3417
}

static inline void set_opt_mode(struct f2fs_sb_info *sbi, unsigned int mt)
{
	clear_opt(sbi, ADAPTIVE);
	clear_opt(sbi, LFS);

	switch (mt) {
	case F2FS_MOUNT_ADAPTIVE:
		set_opt(sbi, ADAPTIVE);
		break;
	case F2FS_MOUNT_LFS:
		set_opt(sbi, LFS);
		break;
	}
}

3418 3419 3420
static inline bool f2fs_may_encrypt(struct inode *inode)
{
#ifdef CONFIG_F2FS_FS_ENCRYPTION
A
Al Viro 已提交
3421
	umode_t mode = inode->i_mode;
3422 3423 3424

	return (S_ISREG(mode) || S_ISDIR(mode) || S_ISLNK(mode));
#else
3425
	return false;
3426 3427 3428
#endif
}

H
Hyunchul Lee 已提交
3429 3430
static inline bool f2fs_force_buffered_io(struct inode *inode, int rw)
{
3431
	return (f2fs_post_read_required(inode) ||
H
Hyunchul Lee 已提交
3432 3433 3434 3435
			(rw == WRITE && test_opt(F2FS_I_SB(inode), LFS)) ||
			F2FS_I_SB(inode)->s_ndevs);
}

3436 3437 3438 3439 3440 3441
#ifdef CONFIG_F2FS_FAULT_INJECTION
extern void f2fs_build_fault_attr(struct f2fs_sb_info *sbi, unsigned int rate);
#else
#define f2fs_build_fault_attr(sbi, rate)		do { } while (0)
#endif

3442
#endif