ctree.h 126.3 KB
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/* SPDX-License-Identifier: GPL-2.0 */
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/*
 * Copyright (C) 2007 Oracle.  All rights reserved.
 */

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#ifndef BTRFS_CTREE_H
#define BTRFS_CTREE_H
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#include <linux/mm.h>
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#include <linux/sched/signal.h>
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#include <linux/highmem.h>
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#include <linux/fs.h>
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#include <linux/rwsem.h>
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#include <linux/semaphore.h>
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#include <linux/completion.h>
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#include <linux/backing-dev.h>
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#include <linux/wait.h>
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#include <linux/slab.h>
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#include <linux/kobject.h>
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#include <trace/events/btrfs.h>
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#include <asm/kmap_types.h>
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#include <linux/pagemap.h>
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#include <linux/btrfs.h>
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#include <linux/btrfs_tree.h>
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#include <linux/workqueue.h>
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#include <linux/security.h>
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#include <linux/sizes.h>
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#include <linux/dynamic_debug.h>
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#include <linux/refcount.h>
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#include <linux/crc32c.h>
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#include "extent_io.h"
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#include "extent_map.h"
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#include "async-thread.h"
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struct btrfs_trans_handle;
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struct btrfs_transaction;
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struct btrfs_pending_snapshot;
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extern struct kmem_cache *btrfs_trans_handle_cachep;
extern struct kmem_cache *btrfs_bit_radix_cachep;
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extern struct kmem_cache *btrfs_path_cachep;
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extern struct kmem_cache *btrfs_free_space_cachep;
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struct btrfs_ordered_sum;
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#define BTRFS_MAGIC 0x4D5F53665248425FULL /* ascii _BHRfS_M, no null */
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#define BTRFS_MAX_MIRRORS 3
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#define BTRFS_MAX_LEVEL 8
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#define BTRFS_OLDEST_GENERATION	0ULL

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/*
 * the max metadata block size.  This limit is somewhat artificial,
 * but the memmove costs go through the roof for larger blocks.
 */
#define BTRFS_MAX_METADATA_BLOCKSIZE 65536

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/*
 * we can actually store much bigger names, but lets not confuse the rest
 * of linux
 */
#define BTRFS_NAME_LEN 255

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/*
 * Theoretical limit is larger, but we keep this down to a sane
 * value. That should limit greatly the possibility of collisions on
 * inode ref items.
 */
#define BTRFS_LINK_MAX 65535U

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/* four bytes for CRC32 */
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static const int btrfs_csum_sizes[] = { 4 };
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#define BTRFS_EMPTY_DIR_SIZE 0
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/* ioprio of readahead is set to idle */
#define BTRFS_IOPRIO_READA (IOPRIO_PRIO_VALUE(IOPRIO_CLASS_IDLE, 0))

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#define BTRFS_DIRTY_METADATA_THRESH	SZ_32M
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/*
 * Use large batch size to reduce overhead of metadata updates.  On the reader
 * side, we only read it when we are close to ENOSPC and the read overhead is
 * mostly related to the number of CPUs, so it is OK to use arbitrary large
 * value here.
 */
#define BTRFS_TOTAL_BYTES_PINNED_BATCH	SZ_128M

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#define BTRFS_MAX_EXTENT_SIZE SZ_128M
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/*
 * Count how many BTRFS_MAX_EXTENT_SIZE cover the @size
 */
static inline u32 count_max_extents(u64 size)
{
	return div_u64(size + BTRFS_MAX_EXTENT_SIZE - 1, BTRFS_MAX_EXTENT_SIZE);
}

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struct btrfs_mapping_tree {
	struct extent_map_tree map_tree;
};

static inline unsigned long btrfs_chunk_item_size(int num_stripes)
{
	BUG_ON(num_stripes == 0);
	return sizeof(struct btrfs_chunk) +
		sizeof(struct btrfs_stripe) * (num_stripes - 1);
}

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/*
 * File system states
 */
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#define BTRFS_FS_STATE_ERROR		0
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#define BTRFS_FS_STATE_REMOUNTING	1
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#define BTRFS_FS_STATE_TRANS_ABORTED	2
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#define BTRFS_FS_STATE_DEV_REPLACING	3
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#define BTRFS_FS_STATE_DUMMY_FS_INFO	4
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#define BTRFS_BACKREF_REV_MAX		256
#define BTRFS_BACKREF_REV_SHIFT		56
#define BTRFS_BACKREF_REV_MASK		(((u64)BTRFS_BACKREF_REV_MAX - 1) << \
					 BTRFS_BACKREF_REV_SHIFT)

#define BTRFS_OLD_BACKREF_REV		0
#define BTRFS_MIXED_BACKREF_REV		1
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/*
 * every tree block (leaf or node) starts with this header.
 */
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struct btrfs_header {
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	/* these first four must match the super block */
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	u8 csum[BTRFS_CSUM_SIZE];
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	u8 fsid[BTRFS_FSID_SIZE]; /* FS specific uuid */
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	__le64 bytenr; /* which block this node is supposed to live in */
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	__le64 flags;
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	/* allowed to be different from the super from here on down */
	u8 chunk_tree_uuid[BTRFS_UUID_SIZE];
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	__le64 generation;
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	__le64 owner;
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	__le32 nritems;
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	u8 level;
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} __attribute__ ((__packed__));

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/*
 * this is a very generous portion of the super block, giving us
 * room to translate 14 chunks with 3 stripes each.
 */
#define BTRFS_SYSTEM_CHUNK_ARRAY_SIZE 2048

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/*
 * just in case we somehow lose the roots and are not able to mount,
 * we store an array of the roots from previous transactions
 * in the super.
 */
#define BTRFS_NUM_BACKUP_ROOTS 4
struct btrfs_root_backup {
	__le64 tree_root;
	__le64 tree_root_gen;

	__le64 chunk_root;
	__le64 chunk_root_gen;

	__le64 extent_root;
	__le64 extent_root_gen;

	__le64 fs_root;
	__le64 fs_root_gen;

	__le64 dev_root;
	__le64 dev_root_gen;

	__le64 csum_root;
	__le64 csum_root_gen;

	__le64 total_bytes;
	__le64 bytes_used;
	__le64 num_devices;
	/* future */
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	__le64 unused_64[4];
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	u8 tree_root_level;
	u8 chunk_root_level;
	u8 extent_root_level;
	u8 fs_root_level;
	u8 dev_root_level;
	u8 csum_root_level;
	/* future and to align */
	u8 unused_8[10];
} __attribute__ ((__packed__));

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/*
 * the super block basically lists the main trees of the FS
 * it currently lacks any block count etc etc
 */
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struct btrfs_super_block {
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	u8 csum[BTRFS_CSUM_SIZE];
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	/* the first 4 fields must match struct btrfs_header */
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	u8 fsid[BTRFS_FSID_SIZE];    /* FS specific uuid */
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	__le64 bytenr; /* this block number */
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	__le64 flags;
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	/* allowed to be different from the btrfs_header from here own down */
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	__le64 magic;
	__le64 generation;
	__le64 root;
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	__le64 chunk_root;
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	__le64 log_root;
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	/* this will help find the new super based on the log root */
	__le64 log_root_transid;
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	__le64 total_bytes;
	__le64 bytes_used;
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	__le64 root_dir_objectid;
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	__le64 num_devices;
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	__le32 sectorsize;
	__le32 nodesize;
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	__le32 __unused_leafsize;
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	__le32 stripesize;
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	__le32 sys_chunk_array_size;
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	__le64 chunk_root_generation;
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	__le64 compat_flags;
	__le64 compat_ro_flags;
	__le64 incompat_flags;
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	__le16 csum_type;
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	u8 root_level;
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	u8 chunk_root_level;
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	u8 log_root_level;
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	struct btrfs_dev_item dev_item;
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	char label[BTRFS_LABEL_SIZE];
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	__le64 cache_generation;
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	__le64 uuid_tree_generation;
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	/* future expansion */
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	__le64 reserved[30];
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	u8 sys_chunk_array[BTRFS_SYSTEM_CHUNK_ARRAY_SIZE];
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	struct btrfs_root_backup super_roots[BTRFS_NUM_BACKUP_ROOTS];
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} __attribute__ ((__packed__));

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/*
 * Compat flags that we support.  If any incompat flags are set other than the
 * ones specified below then we will fail to mount
 */
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#define BTRFS_FEATURE_COMPAT_SUPP		0ULL
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#define BTRFS_FEATURE_COMPAT_SAFE_SET		0ULL
#define BTRFS_FEATURE_COMPAT_SAFE_CLEAR		0ULL
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#define BTRFS_FEATURE_COMPAT_RO_SUPP			\
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	(BTRFS_FEATURE_COMPAT_RO_FREE_SPACE_TREE |	\
	 BTRFS_FEATURE_COMPAT_RO_FREE_SPACE_TREE_VALID)
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#define BTRFS_FEATURE_COMPAT_RO_SAFE_SET	0ULL
#define BTRFS_FEATURE_COMPAT_RO_SAFE_CLEAR	0ULL

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#define BTRFS_FEATURE_INCOMPAT_SUPP			\
	(BTRFS_FEATURE_INCOMPAT_MIXED_BACKREF |		\
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	 BTRFS_FEATURE_INCOMPAT_DEFAULT_SUBVOL |	\
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	 BTRFS_FEATURE_INCOMPAT_MIXED_GROUPS |		\
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	 BTRFS_FEATURE_INCOMPAT_BIG_METADATA |		\
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	 BTRFS_FEATURE_INCOMPAT_COMPRESS_LZO |		\
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	 BTRFS_FEATURE_INCOMPAT_COMPRESS_ZSTD |		\
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	 BTRFS_FEATURE_INCOMPAT_RAID56 |		\
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	 BTRFS_FEATURE_INCOMPAT_EXTENDED_IREF |		\
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	 BTRFS_FEATURE_INCOMPAT_SKINNY_METADATA |	\
	 BTRFS_FEATURE_INCOMPAT_NO_HOLES)
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#define BTRFS_FEATURE_INCOMPAT_SAFE_SET			\
	(BTRFS_FEATURE_INCOMPAT_EXTENDED_IREF)
#define BTRFS_FEATURE_INCOMPAT_SAFE_CLEAR		0ULL
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/*
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 * A leaf is full of items. offset and size tell us where to find
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 * the item in the leaf (relative to the start of the data area)
 */
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struct btrfs_item {
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	struct btrfs_disk_key key;
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	__le32 offset;
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	__le32 size;
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} __attribute__ ((__packed__));

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/*
 * leaves have an item area and a data area:
 * [item0, item1....itemN] [free space] [dataN...data1, data0]
 *
 * The data is separate from the items to get the keys closer together
 * during searches.
 */
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struct btrfs_leaf {
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	struct btrfs_header header;
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	struct btrfs_item items[];
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} __attribute__ ((__packed__));

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/*
 * all non-leaf blocks are nodes, they hold only keys and pointers to
 * other blocks
 */
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struct btrfs_key_ptr {
	struct btrfs_disk_key key;
	__le64 blockptr;
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	__le64 generation;
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} __attribute__ ((__packed__));

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struct btrfs_node {
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	struct btrfs_header header;
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	struct btrfs_key_ptr ptrs[];
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} __attribute__ ((__packed__));

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/*
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 * btrfs_paths remember the path taken from the root down to the leaf.
 * level 0 is always the leaf, and nodes[1...BTRFS_MAX_LEVEL] will point
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 * to any other levels that are present.
 *
 * The slots array records the index of the item or block pointer
 * used while walking the tree.
 */
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enum { READA_NONE = 0, READA_BACK, READA_FORWARD };
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struct btrfs_path {
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	struct extent_buffer *nodes[BTRFS_MAX_LEVEL];
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	int slots[BTRFS_MAX_LEVEL];
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	/* if there is real range locking, this locks field will change */
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	u8 locks[BTRFS_MAX_LEVEL];
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	u8 reada;
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	/* keep some upper locks as we walk down */
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	u8 lowest_level;
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	/*
	 * set by btrfs_split_item, tells search_slot to keep all locks
	 * and to force calls to keep space in the nodes
	 */
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	unsigned int search_for_split:1;
	unsigned int keep_locks:1;
	unsigned int skip_locking:1;
	unsigned int leave_spinning:1;
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	unsigned int search_commit_root:1;
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	unsigned int need_commit_sem:1;
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	unsigned int skip_release_on_error:1;
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};
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#define BTRFS_MAX_EXTENT_ITEM_SIZE(r) ((BTRFS_LEAF_DATA_SIZE(r->fs_info) >> 4) - \
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					sizeof(struct btrfs_item))
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struct btrfs_dev_replace {
	u64 replace_state;	/* see #define above */
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	time64_t time_started;	/* seconds since 1-Jan-1970 */
	time64_t time_stopped;	/* seconds since 1-Jan-1970 */
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	atomic64_t num_write_errors;
	atomic64_t num_uncorrectable_read_errors;

	u64 cursor_left;
	u64 committed_cursor_left;
	u64 cursor_left_last_write_of_item;
	u64 cursor_right;

	u64 cont_reading_from_srcdev_mode;	/* see #define above */

	int is_valid;
	int item_needs_writeback;
	struct btrfs_device *srcdev;
	struct btrfs_device *tgtdev;

	struct mutex lock_finishing_cancel_unmount;
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	rwlock_t lock;
	atomic_t blocking_readers;
	wait_queue_head_t read_lock_wq;
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	struct btrfs_scrub_progress scrub_progress;
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	struct percpu_counter bio_counter;
	wait_queue_head_t replace_wait;
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};

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/* For raid type sysfs entries */
struct raid_kobject {
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	u64 flags;
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	struct kobject kobj;
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	struct list_head list;
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};

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struct btrfs_space_info {
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	spinlock_t lock;
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	u64 total_bytes;	/* total bytes in the space,
				   this doesn't take mirrors into account */
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	u64 bytes_used;		/* total bytes used,
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				   this doesn't take mirrors into account */
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	u64 bytes_pinned;	/* total bytes pinned, will be freed when the
				   transaction finishes */
	u64 bytes_reserved;	/* total bytes the allocator has reserved for
				   current allocations */
	u64 bytes_may_use;	/* number of bytes that may be used for
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				   delalloc/allocations */
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	u64 bytes_readonly;	/* total bytes that are read only */

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	u64 max_extent_size;	/* This will hold the maximum extent size of
				   the space info if we had an ENOSPC in the
				   allocator. */

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	unsigned int full:1;	/* indicates that we cannot allocate any more
				   chunks for this space */
	unsigned int chunk_alloc:1;	/* set if we are allocating a chunk */

	unsigned int flush:1;		/* set if we are trying to make space */

	unsigned int force_alloc;	/* set if we need to force a chunk
					   alloc for this space */

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	u64 disk_used;		/* total bytes used on disk */
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	u64 disk_total;		/* total bytes on disk, takes mirrors into
				   account */
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	u64 flags;

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	/*
	 * bytes_pinned is kept in line with what is actually pinned, as in
	 * we've called update_block_group and dropped the bytes_used counter
	 * and increased the bytes_pinned counter.  However this means that
	 * bytes_pinned does not reflect the bytes that will be pinned once the
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	 * delayed refs are flushed, so this counter is inc'ed every time we
	 * call btrfs_free_extent so it is a realtime count of what will be
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	 * freed once the transaction is committed.  It will be zeroed every
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	 * time the transaction commits.
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	 */
	struct percpu_counter total_bytes_pinned;

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	struct list_head list;
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	/* Protected by the spinlock 'lock'. */
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	struct list_head ro_bgs;
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	struct list_head priority_tickets;
	struct list_head tickets;
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	/*
	 * tickets_id just indicates the next ticket will be handled, so note
	 * it's not stored per ticket.
	 */
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	u64 tickets_id;
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	struct rw_semaphore groups_sem;
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	/* for block groups in our same type */
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	struct list_head block_groups[BTRFS_NR_RAID_TYPES];
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	wait_queue_head_t wait;
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	struct kobject kobj;
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	struct kobject *block_group_kobjs[BTRFS_NR_RAID_TYPES];
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};

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#define	BTRFS_BLOCK_RSV_GLOBAL		1
#define	BTRFS_BLOCK_RSV_DELALLOC	2
#define	BTRFS_BLOCK_RSV_TRANS		3
#define	BTRFS_BLOCK_RSV_CHUNK		4
#define	BTRFS_BLOCK_RSV_DELOPS		5
#define	BTRFS_BLOCK_RSV_EMPTY		6
#define	BTRFS_BLOCK_RSV_TEMP		7

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struct btrfs_block_rsv {
	u64 size;
	u64 reserved;
	struct btrfs_space_info *space_info;
	spinlock_t lock;
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	unsigned short full;
	unsigned short type;
	unsigned short failfast;
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	/*
	 * Qgroup equivalent for @size @reserved
	 *
	 * Unlike normal @size/@reserved for inode rsv, qgroup doesn't care
	 * about things like csum size nor how many tree blocks it will need to
	 * reserve.
	 *
	 * Qgroup cares more about net change of the extent usage.
	 *
	 * So for one newly inserted file extent, in worst case it will cause
	 * leaf split and level increase, nodesize for each file extent is
	 * already too much.
	 *
	 * In short, qgroup_size/reserved is the upper limit of possible needed
	 * qgroup metadata reservation.
	 */
	u64 qgroup_rsv_size;
	u64 qgroup_rsv_reserved;
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};

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/*
 * free clusters are used to claim free space in relatively large chunks,
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 * allowing us to do less seeky writes. They are used for all metadata
 * allocations. In ssd_spread mode they are also used for data allocations.
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 */
struct btrfs_free_cluster {
	spinlock_t lock;
	spinlock_t refill_lock;
	struct rb_root root;

	/* largest extent in this cluster */
	u64 max_size;

	/* first extent starting offset */
	u64 window_start;

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	/* We did a full search and couldn't create a cluster */
	bool fragmented;

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	struct btrfs_block_group_cache *block_group;
	/*
	 * when a cluster is allocated from a block group, we put the
	 * cluster onto a list in the block group so that it can
	 * be freed before the block group is freed.
	 */
	struct list_head block_group_list;
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};

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enum btrfs_caching_type {
	BTRFS_CACHE_NO		= 0,
	BTRFS_CACHE_STARTED	= 1,
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	BTRFS_CACHE_FAST	= 2,
	BTRFS_CACHE_FINISHED	= 3,
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	BTRFS_CACHE_ERROR	= 4,
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};

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enum btrfs_disk_cache_state {
	BTRFS_DC_WRITTEN	= 0,
	BTRFS_DC_ERROR		= 1,
	BTRFS_DC_CLEAR		= 2,
	BTRFS_DC_SETUP		= 3,
};

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struct btrfs_caching_control {
	struct list_head list;
	struct mutex mutex;
	wait_queue_head_t wait;
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	struct btrfs_work work;
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	struct btrfs_block_group_cache *block_group;
	u64 progress;
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	refcount_t count;
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};

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/* Once caching_thread() finds this much free space, it will wake up waiters. */
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#define CACHING_CTL_WAKE_UP SZ_2M
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struct btrfs_io_ctl {
	void *cur, *orig;
	struct page *page;
	struct page **pages;
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	struct btrfs_fs_info *fs_info;
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	struct inode *inode;
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	unsigned long size;
	int index;
	int num_pages;
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	int entries;
	int bitmaps;
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	unsigned check_crcs:1;
};

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/*
 * Tree to record all locked full stripes of a RAID5/6 block group
 */
struct btrfs_full_stripe_locks_tree {
	struct rb_root root;
	struct mutex lock;
};

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struct btrfs_block_group_cache {
	struct btrfs_key key;
	struct btrfs_block_group_item item;
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	struct btrfs_fs_info *fs_info;
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	struct inode *inode;
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	spinlock_t lock;
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	u64 pinned;
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	u64 reserved;
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	u64 delalloc_bytes;
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	u64 bytes_super;
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	u64 flags;
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	u64 cache_generation;
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	/*
	 * If the free space extent count exceeds this number, convert the block
	 * group to bitmaps.
	 */
	u32 bitmap_high_thresh;

	/*
	 * If the free space extent count drops below this number, convert the
	 * block group back to extents.
	 */
	u32 bitmap_low_thresh;
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	/*
	 * It is just used for the delayed data space allocation because
	 * only the data space allocation and the relative metadata update
	 * can be done cross the transaction.
	 */
	struct rw_semaphore data_rwsem;

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	/* for raid56, this is a full stripe, without parity */
	unsigned long full_stripe_len;

596
	unsigned int ro;
597
	unsigned int iref:1;
598
	unsigned int has_caching_ctl:1;
599
	unsigned int removed:1;
600 601

	int disk_cache_state;
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	/* cache tracking stuff */
	int cached;
605 606
	struct btrfs_caching_control *caching_ctl;
	u64 last_byte_to_unpin;
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	struct btrfs_space_info *space_info;

	/* free space cache stuff */
611
	struct btrfs_free_space_ctl *free_space_ctl;
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	/* block group cache stuff */
	struct rb_node cache_node;

	/* for block groups in the same raid type */
	struct list_head list;
618 619 620

	/* usage count */
	atomic_t count;
621 622 623 624 625

	/* List of struct btrfs_free_clusters for this block group.
	 * Today it will only have one thing on it, but that may change
	 */
	struct list_head cluster_list;
626

627 628
	/* For delayed block group creation or deletion of empty block groups */
	struct list_head bg_list;
629 630 631

	/* For read-only block groups */
	struct list_head ro_list;
632 633

	atomic_t trimming;
634 635 636

	/* For dirty block groups */
	struct list_head dirty_list;
637 638 639
	struct list_head io_list;

	struct btrfs_io_ctl io_ctl;
640

641 642 643 644 645 646 647 648 649 650 651
	/*
	 * Incremented when doing extent allocations and holding a read lock
	 * on the space_info's groups_sem semaphore.
	 * Decremented when an ordered extent that represents an IO against this
	 * block group's range is created (after it's added to its inode's
	 * root's list of ordered extents) or immediately after the allocation
	 * if it's a metadata extent or fallocate extent (for these cases we
	 * don't create ordered extents).
	 */
	atomic_t reservations;

652 653 654 655 656 657 658 659 660 661
	/*
	 * Incremented while holding the spinlock *lock* by a task checking if
	 * it can perform a nocow write (incremented if the value for the *ro*
	 * field is 0). Decremented by such tasks once they create an ordered
	 * extent or before that if some error happens before reaching that step.
	 * This is to prevent races between block group relocation and nocow
	 * writes through direct IO.
	 */
	atomic_t nocow_writers;

662 663 664 665 666 667 668 669
	/* Lock for free space tree operations. */
	struct mutex free_space_lock;

	/*
	 * Does the block group need to be added to the free space tree?
	 * Protected by free_space_lock.
	 */
	int needs_free_space;
670 671 672

	/* Record locked full stripes for RAID5/6 block group */
	struct btrfs_full_stripe_locks_tree full_stripe_locks_root;
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};
674

675 676 677 678 679 680
/* delayed seq elem */
struct seq_list {
	struct list_head list;
	u64 seq;
};

681 682
#define SEQ_LIST_INIT(name)	{ .list = LIST_HEAD_INIT((name).list), .seq = 0 }

683 684
#define SEQ_LAST	((u64)-1)

685 686 687 688 689
enum btrfs_orphan_cleanup_state {
	ORPHAN_CLEANUP_STARTED	= 1,
	ORPHAN_CLEANUP_DONE	= 2,
};

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/* used by the raid56 code to lock stripes for read/modify/write */
struct btrfs_stripe_hash {
	struct list_head hash_list;
	spinlock_t lock;
};

/* used by the raid56 code to lock stripes for read/modify/write */
struct btrfs_stripe_hash_table {
698 699 700 701
	struct list_head stripe_cache;
	spinlock_t cache_lock;
	int cache_size;
	struct btrfs_stripe_hash table[];
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};

#define BTRFS_STRIPE_HASH_TABLE_BITS 11

706 707
void btrfs_init_async_reclaim_work(struct work_struct *work);

708
/* fs_info */
709
struct reloc_control;
710
struct btrfs_device;
711
struct btrfs_fs_devices;
712
struct btrfs_balance_control;
713
struct btrfs_delayed_root;
714 715 716 717 718 719 720 721 722 723 724 725

#define BTRFS_FS_BARRIER			1
#define BTRFS_FS_CLOSING_START			2
#define BTRFS_FS_CLOSING_DONE			3
#define BTRFS_FS_LOG_RECOVERING			4
#define BTRFS_FS_OPEN				5
#define BTRFS_FS_QUOTA_ENABLED			6
#define BTRFS_FS_UPDATE_UUID_TREE_GEN		9
#define BTRFS_FS_CREATING_FREE_SPACE_TREE	10
#define BTRFS_FS_BTREE_ERR			11
#define BTRFS_FS_LOG1_ERR			12
#define BTRFS_FS_LOG2_ERR			13
726
#define BTRFS_FS_QUOTA_OVERRIDE			14
727 728
/* Used to record internally whether fs has been frozen */
#define BTRFS_FS_FROZEN				15
729

730 731 732 733
/*
 * Indicate that a whole-filesystem exclusive operation is running
 * (device replace, resize, device add/delete, balance)
 */
734
#define BTRFS_FS_EXCL_OP			16
735

736 737 738 739 740 741
/*
 * To info transaction_kthread we need an immediate commit so it doesn't
 * need to wait for commit_interval
 */
#define BTRFS_FS_NEED_ASYNC_COMMIT		17

742 743 744 745 746 747
/*
 * Indicate that balance has been set up from the ioctl and is in the main
 * phase. The fs_info::balance_ctl is initialized.
 */
#define BTRFS_FS_BALANCE_RUNNING		18

748
struct btrfs_fs_info {
749
	u8 fsid[BTRFS_FSID_SIZE];
750
	u8 chunk_tree_uuid[BTRFS_UUID_SIZE];
751
	unsigned long flags;
752 753
	struct btrfs_root *extent_root;
	struct btrfs_root *tree_root;
754 755
	struct btrfs_root *chunk_root;
	struct btrfs_root *dev_root;
756
	struct btrfs_root *fs_root;
757
	struct btrfs_root *csum_root;
758
	struct btrfs_root *quota_root;
759
	struct btrfs_root *uuid_root;
760
	struct btrfs_root *free_space_root;
761 762 763

	/* the log root tree is a directory of all the other log roots */
	struct btrfs_root *log_root_tree;
764 765

	spinlock_t fs_roots_radix_lock;
766
	struct radix_tree_root fs_roots_radix;
767

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	/* block group cache stuff */
	spinlock_t block_group_cache_lock;
770
	u64 first_logical_byte;
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771 772
	struct rb_root block_group_cache_tree;

773
	/* keep track of unallocated space */
774
	atomic64_t free_chunk_space;
775

776 777
	struct extent_io_tree freed_extents[2];
	struct extent_io_tree *pinned_extents;
778

779 780 781
	/* logical->physical extent mapping */
	struct btrfs_mapping_tree mapping_tree;

782 783 784 785
	/*
	 * block reservation for extent, checksum, root tree and
	 * delayed dir index item
	 */
786 787 788 789 790
	struct btrfs_block_rsv global_block_rsv;
	/* block reservation for metadata operations */
	struct btrfs_block_rsv trans_block_rsv;
	/* block reservation for chunk tree */
	struct btrfs_block_rsv chunk_block_rsv;
791 792
	/* block reservation for delayed operations */
	struct btrfs_block_rsv delayed_block_rsv;
793 794 795

	struct btrfs_block_rsv empty_block_rsv;

796
	u64 generation;
797
	u64 last_trans_committed;
798
	u64 avg_delayed_ref_runtime;
799 800 801 802 803 804

	/*
	 * this is updated to the current trans every time a full commit
	 * is required instead of the faster short fsync log commits
	 */
	u64 last_trans_log_full_commit;
805
	unsigned long mount_opt;
806 807 808 809 810
	/*
	 * Track requests for actions that need to be done during transaction
	 * commit (like for some mount options).
	 */
	unsigned long pending_changes;
811
	unsigned long compress_type:4;
812
	unsigned int compress_level;
813
	u32 commit_interval;
814 815 816 817 818 819
	/*
	 * It is a suggestive number, the read side is safe even it gets a
	 * wrong number because we will write out the data into a regular
	 * extent. The write side(mount/remount) is under ->s_umount lock,
	 * so it is also safe.
	 */
820
	u64 max_inline;
821

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822
	struct btrfs_transaction *running_transaction;
823
	wait_queue_head_t transaction_throttle;
824
	wait_queue_head_t transaction_wait;
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825
	wait_queue_head_t transaction_blocked_wait;
826
	wait_queue_head_t async_submit_wait;
827

828 829 830 831 832 833 834 835 836 837 838
	/*
	 * Used to protect the incompat_flags, compat_flags, compat_ro_flags
	 * when they are updated.
	 *
	 * Because we do not clear the flags for ever, so we needn't use
	 * the lock on the read side.
	 *
	 * We also needn't use the lock when we mount the fs, because
	 * there is no other task which will update the flag.
	 */
	spinlock_t super_lock;
839 840
	struct btrfs_super_block *super_copy;
	struct btrfs_super_block *super_for_commit;
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841
	struct super_block *sb;
842
	struct inode *btree_inode;
843
	struct mutex tree_log_mutex;
844 845
	struct mutex transaction_kthread_mutex;
	struct mutex cleaner_mutex;
846
	struct mutex chunk_mutex;
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847

848 849 850 851 852 853
	/*
	 * this is taken to make sure we don't set block groups ro after
	 * the free space cache has been allocated on them
	 */
	struct mutex ro_block_group_mutex;

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854 855 856 857 858 859
	/* this is used during read/modify/write to make sure
	 * no two ios are trying to mod the same stripe at the same
	 * time
	 */
	struct btrfs_stripe_hash_table *stripe_hash_table;

860 861 862 863 864 865 866 867
	/*
	 * this protects the ordered operations list only while we are
	 * processing all of the entries on it.  This way we make
	 * sure the commit code doesn't find the list temporarily empty
	 * because another function happens to be doing non-waiting preflush
	 * before jumping into the main commit.
	 */
	struct mutex ordered_operations_mutex;
868

869
	struct rw_semaphore commit_root_sem;
870

871
	struct rw_semaphore cleanup_work_sem;
872

873
	struct rw_semaphore subvol_sem;
874 875
	struct srcu_struct subvol_srcu;

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876
	spinlock_t trans_lock;
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877 878 879 880 881 882
	/*
	 * the reloc mutex goes with the trans lock, it is taken
	 * during commit to protect us from the relocation code
	 */
	struct mutex reloc_mutex;

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883
	struct list_head trans_list;
884
	struct list_head dead_roots;
885
	struct list_head caching_block_groups;
886

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	spinlock_t delayed_iput_lock;
	struct list_head delayed_iputs;
889
	struct mutex cleaner_delayed_iput_mutex;
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Yan, Zheng 已提交
890

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891 892
	/* this protects tree_mod_seq_list */
	spinlock_t tree_mod_seq_lock;
893
	atomic64_t tree_mod_seq;
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894 895 896 897 898 899
	struct list_head tree_mod_seq_list;

	/* this protects tree_mod_log */
	rwlock_t tree_mod_log_lock;
	struct rb_root tree_mod_log;

900
	atomic_t async_delalloc_pages;
901

902
	/*
903
	 * this is used to protect the following list -- ordered_roots.
904
	 */
905
	spinlock_t ordered_root_lock;
906 907

	/*
908 909 910
	 * all fs/file tree roots in which there are data=ordered extents
	 * pending writeback are added into this list.
	 *
911 912 913
	 * these can span multiple transactions and basically include
	 * every dirty data page that isn't from nodatacow
	 */
914
	struct list_head ordered_roots;
915

916
	struct mutex delalloc_root_mutex;
917 918 919
	spinlock_t delalloc_root_lock;
	/* all fs/file tree roots that have delalloc inodes. */
	struct list_head delalloc_roots;
920

921 922 923 924 925 926
	/*
	 * there is a pool of worker threads for checksumming during writes
	 * and a pool for checksumming after reads.  This is because readers
	 * can run with FS locks held, and the writers may be waiting for
	 * those locks.  We don't want ordering in the pending list to cause
	 * deadlocks, and so the two are serviced separately.
927 928 929
	 *
	 * A third pool does submit_bio to avoid deadlocking with the other
	 * two
930
	 */
931 932 933 934 935 936
	struct btrfs_workqueue *workers;
	struct btrfs_workqueue *delalloc_workers;
	struct btrfs_workqueue *flush_workers;
	struct btrfs_workqueue *endio_workers;
	struct btrfs_workqueue *endio_meta_workers;
	struct btrfs_workqueue *endio_raid56_workers;
937
	struct btrfs_workqueue *endio_repair_workers;
938 939 940 941 942 943 944
	struct btrfs_workqueue *rmw_workers;
	struct btrfs_workqueue *endio_meta_write_workers;
	struct btrfs_workqueue *endio_write_workers;
	struct btrfs_workqueue *endio_freespace_worker;
	struct btrfs_workqueue *submit_workers;
	struct btrfs_workqueue *caching_workers;
	struct btrfs_workqueue *readahead_workers;
945

946 947 948 949 950
	/*
	 * fixup workers take dirty pages that didn't properly go through
	 * the cow mechanism and make them safe to write.  It happens
	 * for the sys_munmap function call path
	 */
951 952
	struct btrfs_workqueue *fixup_workers;
	struct btrfs_workqueue *delayed_workers;
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953 954 955

	/* the extent workers do delayed refs on the extent allocation tree */
	struct btrfs_workqueue *extent_workers;
956 957
	struct task_struct *transaction_kthread;
	struct task_struct *cleaner_kthread;
958
	u32 thread_pool_size;
959

960
	struct kobject *space_info_kobj;
961 962
	struct list_head pending_raid_kobjs;
	spinlock_t pending_raid_kobjs_lock; /* uncontended */
963

964
	u64 total_pinned;
965

966 967
	/* used to keep from writing metadata until there is a nice batch */
	struct percpu_counter dirty_metadata_bytes;
968
	struct percpu_counter delalloc_bytes;
969
	s32 dirty_metadata_batch;
970 971
	s32 delalloc_batch;

972 973
	struct list_head dirty_cowonly_roots;

974
	struct btrfs_fs_devices *fs_devices;
975 976

	/*
977 978 979
	 * The space_info list is effectively read only after initial
	 * setup.  It is populated at mount time and cleaned up after
	 * all block groups are removed.  RCU is used to protect it.
980
	 */
981
	struct list_head space_info;
982

983 984
	struct btrfs_space_info *data_sinfo;

985 986
	struct reloc_control *reloc_ctl;

987
	/* data_alloc_cluster is only used in ssd_spread mode */
988 989 990 991
	struct btrfs_free_cluster data_alloc_cluster;

	/* all metadata allocations go through this cluster */
	struct btrfs_free_cluster meta_alloc_cluster;
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992

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993 994 995 996 997
	/* auto defrag inodes go here */
	spinlock_t defrag_inodes_lock;
	struct rb_root defrag_inodes;
	atomic_t defrag_running;

998 999
	/* Used to protect avail_{data, metadata, system}_alloc_bits */
	seqlock_t profiles_lock;
1000 1001 1002 1003 1004
	/*
	 * these three are in extended format (availability of single
	 * chunks is denoted by BTRFS_AVAIL_ALLOC_BIT_SINGLE bit, other
	 * types are denoted by corresponding BTRFS_BLOCK_GROUP_* bits)
	 */
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1005 1006 1007
	u64 avail_data_alloc_bits;
	u64 avail_metadata_alloc_bits;
	u64 avail_system_alloc_bits;
1008

1009 1010 1011
	/* restriper state */
	spinlock_t balance_lock;
	struct mutex balance_mutex;
1012
	atomic_t balance_pause_req;
1013
	atomic_t balance_cancel_req;
1014
	struct btrfs_balance_control *balance_ctl;
1015
	wait_queue_head_t balance_wait_q;
1016

1017 1018
	u32 data_chunk_allocations;
	u32 metadata_ratio;
1019

1020
	void *bdev_holder;
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1021

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1022 1023 1024 1025 1026 1027 1028 1029
	/* private scrub information */
	struct mutex scrub_lock;
	atomic_t scrubs_running;
	atomic_t scrub_pause_req;
	atomic_t scrubs_paused;
	atomic_t scrub_cancel_req;
	wait_queue_head_t scrub_pause_wait;
	int scrub_workers_refcnt;
1030 1031 1032
	struct btrfs_workqueue *scrub_workers;
	struct btrfs_workqueue *scrub_wr_completion_workers;
	struct btrfs_workqueue *scrub_nocow_workers;
1033
	struct btrfs_workqueue *scrub_parity_workers;
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1034

1035 1036 1037
#ifdef CONFIG_BTRFS_FS_CHECK_INTEGRITY
	u32 check_integrity_print_mask;
#endif
1038 1039 1040 1041 1042
	/* is qgroup tracking in a consistent state? */
	u64 qgroup_flags;

	/* holds configuration and tracking. Protected by qgroup_lock */
	struct rb_root qgroup_tree;
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1043
	struct rb_root qgroup_op_tree;
1044
	spinlock_t qgroup_lock;
J
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1045 1046
	spinlock_t qgroup_op_lock;
	atomic_t qgroup_op_seq;
1047

1048 1049 1050 1051 1052 1053
	/*
	 * used to avoid frequently calling ulist_alloc()/ulist_free()
	 * when doing qgroup accounting, it must be protected by qgroup_lock.
	 */
	struct ulist *qgroup_ulist;

1054 1055 1056
	/* protect user change for quota operations */
	struct mutex qgroup_ioctl_lock;

1057 1058 1059
	/* list of dirty qgroups to be written at next commit */
	struct list_head dirty_qgroups;

1060
	/* used by qgroup for an efficient tree traversal */
1061
	u64 qgroup_seq;
1062

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1063 1064 1065
	/* qgroup rescan items */
	struct mutex qgroup_rescan_lock; /* protects the progress item */
	struct btrfs_key qgroup_rescan_progress;
1066
	struct btrfs_workqueue *qgroup_rescan_workers;
1067
	struct completion qgroup_rescan_completion;
1068
	struct btrfs_work qgroup_rescan_work;
1069
	bool qgroup_rescan_running;	/* protected by qgroup_rescan_lock */
J
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1070

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1071
	/* filesystem state */
1072
	unsigned long fs_state;
1073 1074

	struct btrfs_delayed_root *delayed_root;
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1075

1076 1077 1078
	/* readahead tree */
	spinlock_t reada_lock;
	struct radix_tree_root reada_tree;
1079

Z
Zhao Lei 已提交
1080 1081 1082
	/* readahead works cnt */
	atomic_t reada_works_cnt;

1083 1084 1085 1086
	/* Extent buffer radix tree */
	spinlock_t buffer_lock;
	struct radix_tree_root buffer_radix;

C
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1087 1088
	/* next backup root to be overwritten */
	int backup_root_index;
1089

1090 1091
	/* device replace state */
	struct btrfs_dev_replace dev_replace;
1092

S
Stefan Behrens 已提交
1093
	struct semaphore uuid_tree_rescan_sem;
1094 1095 1096

	/* Used to reclaim the metadata space in the background. */
	struct work_struct async_reclaim_work;
1097 1098 1099

	spinlock_t unused_bgs_lock;
	struct list_head unused_bgs;
1100
	struct mutex unused_bg_unpin_mutex;
1101
	struct mutex delete_unused_bgs_mutex;
1102 1103 1104

	/* For btrfs to record security options */
	struct security_mnt_opts security_opts;
1105 1106 1107 1108 1109 1110

	/*
	 * Chunks that can't be freed yet (under a trim/discard operation)
	 * and will be latter freed. Protected by fs_info->chunk_mutex.
	 */
	struct list_head pinned_chunks;
1111

1112 1113 1114 1115
	/* Cached block sizes */
	u32 nodesize;
	u32 sectorsize;
	u32 stripesize;
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1116 1117 1118 1119 1120

#ifdef CONFIG_BTRFS_FS_REF_VERIFY
	spinlock_t ref_verify_lock;
	struct rb_root block_tree;
#endif
1121
};
1122

1123 1124 1125 1126 1127
static inline struct btrfs_fs_info *btrfs_sb(struct super_block *sb)
{
	return sb->s_fs_info;
}

1128 1129 1130 1131 1132
struct btrfs_subvolume_writers {
	struct percpu_counter	counter;
	wait_queue_head_t	wait;
};

1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
/*
 * The state of btrfs root
 */
/*
 * btrfs_record_root_in_trans is a multi-step process,
 * and it can race with the balancing code.   But the
 * race is very small, and only the first time the root
 * is added to each transaction.  So IN_TRANS_SETUP
 * is used to tell us when more checks are required
 */
#define BTRFS_ROOT_IN_TRANS_SETUP	0
#define BTRFS_ROOT_REF_COWS		1
#define BTRFS_ROOT_TRACK_DIRTY		2
#define BTRFS_ROOT_IN_RADIX		3
1147 1148 1149 1150 1151
#define BTRFS_ROOT_ORPHAN_ITEM_INSERTED	4
#define BTRFS_ROOT_DEFRAG_RUNNING	5
#define BTRFS_ROOT_FORCE_COW		6
#define BTRFS_ROOT_MULTI_LOG_TASKS	7
#define BTRFS_ROOT_DIRTY		8
1152

1153 1154
/*
 * in ram representation of the tree.  extent_root is used for all allocations
1155
 * and for the extent tree extent_root root.
1156 1157
 */
struct btrfs_root {
1158
	struct extent_buffer *node;
1159

1160
	struct extent_buffer *commit_root;
1161
	struct btrfs_root *log_root;
Z
Zheng Yan 已提交
1162
	struct btrfs_root *reloc_root;
Y
Yan Zheng 已提交
1163

1164
	unsigned long state;
1165 1166
	struct btrfs_root_item root_item;
	struct btrfs_key root_key;
1167
	struct btrfs_fs_info *fs_info;
1168 1169
	struct extent_io_tree dirty_log_pages;

1170
	struct mutex objectid_mutex;
Y
Yan Zheng 已提交
1171

1172 1173 1174
	spinlock_t accounting_lock;
	struct btrfs_block_rsv *block_rsv;

1175 1176
	/* free ino cache stuff */
	struct btrfs_free_space_ctl *free_ino_ctl;
1177 1178 1179
	enum btrfs_caching_type ino_cache_state;
	spinlock_t ino_cache_lock;
	wait_queue_head_t ino_cache_wait;
1180
	struct btrfs_free_space_ctl *free_ino_pinned;
1181 1182
	u64 ino_cache_progress;
	struct inode *ino_cache_inode;
1183

1184
	struct mutex log_mutex;
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	wait_queue_head_t log_writer_wait;
	wait_queue_head_t log_commit_wait[2];
1187
	struct list_head log_ctxs[2];
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1188 1189
	atomic_t log_writers;
	atomic_t log_commit[2];
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1190
	atomic_t log_batch;
1191
	int log_transid;
1192 1193 1194
	/* No matter the commit succeeds or not*/
	int log_transid_committed;
	/* Just be updated when the commit succeeds. */
1195
	int last_log_commit;
1196
	pid_t log_start_pid;
1197

1198
	u64 last_trans;
1199

1200
	u32 type;
1201 1202

	u64 highest_objectid;
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1203

1204
	u64 defrag_trans_start;
1205
	struct btrfs_key defrag_progress;
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1206
	struct btrfs_key defrag_max;
1207 1208 1209

	/* the dirty list is only used by non-reference counted roots */
	struct list_head dirty_list;
1210

1211 1212
	struct list_head root_list;

1213 1214 1215
	spinlock_t log_extents_lock[2];
	struct list_head logged_list[2];

1216
	int orphan_cleanup_state;
1217

1218 1219 1220 1221
	spinlock_t inode_lock;
	/* red-black tree that keeps track of in-memory inodes */
	struct rb_root inode_tree;

1222 1223 1224 1225 1226
	/*
	 * radix tree that keeps track of delayed nodes of every inode,
	 * protected by inode_lock
	 */
	struct radix_tree_root delayed_nodes_tree;
1227 1228 1229 1230
	/*
	 * right now this just gets used so that a root has its own devid
	 * for stat.  It may be used for more later
	 */
1231
	dev_t anon_dev;
1232

1233
	spinlock_t root_item_lock;
1234
	refcount_t refs;
1235

1236
	struct mutex delalloc_mutex;
1237 1238 1239 1240 1241 1242 1243 1244 1245
	spinlock_t delalloc_lock;
	/*
	 * all of the inodes that have delalloc bytes.  It is possible for
	 * this list to be empty even when there is still dirty data=ordered
	 * extents waiting to finish IO.
	 */
	struct list_head delalloc_inodes;
	struct list_head delalloc_root;
	u64 nr_delalloc_inodes;
1246 1247

	struct mutex ordered_extent_mutex;
1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261
	/*
	 * this is used by the balancing code to wait for all the pending
	 * ordered extents
	 */
	spinlock_t ordered_extent_lock;

	/*
	 * all of the data=ordered extents pending writeback
	 * these can span multiple transactions and basically include
	 * every dirty data page that isn't from nodatacow
	 */
	struct list_head ordered_extents;
	struct list_head ordered_root;
	u64 nr_ordered_extents;
1262 1263 1264 1265 1266 1267

	/*
	 * Number of currently running SEND ioctls to prevent
	 * manipulation with the read-only status via SUBVOL_SETFLAGS
	 */
	int send_in_progress;
1268
	struct btrfs_subvolume_writers *subv_writers;
1269
	atomic_t will_be_snapshotted;
1270
	atomic_t snapshot_force_cow;
1271 1272 1273 1274 1275

	/* For qgroup metadata reserved space */
	spinlock_t qgroup_meta_rsv_lock;
	u64 qgroup_meta_rsv_pertrans;
	u64 qgroup_meta_rsv_prealloc;
1276 1277 1278 1279

#ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
	u64 alloc_bytenr;
#endif
1280
};
1281

1282 1283 1284 1285
struct btrfs_file_private {
	void *filldir_buf;
};

1286 1287 1288 1289
static inline u32 btrfs_inode_sectorsize(const struct inode *inode)
{
	return btrfs_sb(inode->i_sb)->sectorsize;
}
1290

1291
static inline u32 BTRFS_LEAF_DATA_SIZE(const struct btrfs_fs_info *info)
1292
{
1293 1294

	return info->nodesize - sizeof(struct btrfs_header);
1295 1296
}

1297 1298
#define BTRFS_LEAF_DATA_OFFSET		offsetof(struct btrfs_leaf, items)

1299
static inline u32 BTRFS_MAX_ITEM_SIZE(const struct btrfs_fs_info *info)
1300
{
1301
	return BTRFS_LEAF_DATA_SIZE(info) - sizeof(struct btrfs_item);
1302 1303
}

1304
static inline u32 BTRFS_NODEPTRS_PER_BLOCK(const struct btrfs_fs_info *info)
1305
{
1306
	return BTRFS_LEAF_DATA_SIZE(info) / sizeof(struct btrfs_key_ptr);
1307 1308 1309 1310
}

#define BTRFS_FILE_EXTENT_INLINE_DATA_START		\
		(offsetof(struct btrfs_file_extent_item, disk_bytenr))
1311
static inline u32 BTRFS_MAX_INLINE_DATA_SIZE(const struct btrfs_fs_info *info)
1312
{
1313
	return BTRFS_MAX_ITEM_SIZE(info) -
1314 1315 1316
	       BTRFS_FILE_EXTENT_INLINE_DATA_START;
}

1317
static inline u32 BTRFS_MAX_XATTR_SIZE(const struct btrfs_fs_info *info)
1318
{
1319
	return BTRFS_MAX_ITEM_SIZE(info) - sizeof(struct btrfs_dir_item);
1320 1321
}

1322 1323 1324 1325 1326
/*
 * Flags for mount options.
 *
 * Note: don't forget to add new options to btrfs_show_options()
 */
1327 1328 1329
#define BTRFS_MOUNT_NODATASUM		(1 << 0)
#define BTRFS_MOUNT_NODATACOW		(1 << 1)
#define BTRFS_MOUNT_NOBARRIER		(1 << 2)
1330
#define BTRFS_MOUNT_SSD			(1 << 3)
1331
#define BTRFS_MOUNT_DEGRADED		(1 << 4)
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#define BTRFS_MOUNT_COMPRESS		(1 << 5)
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#define BTRFS_MOUNT_NOTREELOG           (1 << 6)
1334
#define BTRFS_MOUNT_FLUSHONCOMMIT       (1 << 7)
1335
#define BTRFS_MOUNT_SSD_SPREAD		(1 << 8)
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1336
#define BTRFS_MOUNT_NOSSD		(1 << 9)
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1337
#define BTRFS_MOUNT_DISCARD		(1 << 10)
C
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1338
#define BTRFS_MOUNT_FORCE_COMPRESS      (1 << 11)
1339
#define BTRFS_MOUNT_SPACE_CACHE		(1 << 12)
1340
#define BTRFS_MOUNT_CLEAR_CACHE		(1 << 13)
1341
#define BTRFS_MOUNT_USER_SUBVOL_RM_ALLOWED (1 << 14)
1342
#define BTRFS_MOUNT_ENOSPC_DEBUG	 (1 << 15)
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#define BTRFS_MOUNT_AUTO_DEFRAG		(1 << 16)
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#define BTRFS_MOUNT_INODE_MAP_CACHE	(1 << 17)
1345
#define BTRFS_MOUNT_USEBACKUPROOT	(1 << 18)
1346
#define BTRFS_MOUNT_SKIP_BALANCE	(1 << 19)
1347 1348
#define BTRFS_MOUNT_CHECK_INTEGRITY	(1 << 20)
#define BTRFS_MOUNT_CHECK_INTEGRITY_INCLUDING_EXTENT_DATA (1 << 21)
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#define BTRFS_MOUNT_PANIC_ON_FATAL_ERROR	(1 << 22)
1350
#define BTRFS_MOUNT_RESCAN_UUID_TREE	(1 << 23)
1351 1352
#define BTRFS_MOUNT_FRAGMENT_DATA	(1 << 24)
#define BTRFS_MOUNT_FRAGMENT_METADATA	(1 << 25)
1353
#define BTRFS_MOUNT_FREE_SPACE_TREE	(1 << 26)
1354
#define BTRFS_MOUNT_NOLOGREPLAY		(1 << 27)
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#define BTRFS_MOUNT_REF_VERIFY		(1 << 28)
1356

1357
#define BTRFS_DEFAULT_COMMIT_INTERVAL	(30)
1358
#define BTRFS_DEFAULT_MAX_INLINE	(2048)
1359

1360 1361
#define btrfs_clear_opt(o, opt)		((o) &= ~BTRFS_MOUNT_##opt)
#define btrfs_set_opt(o, opt)		((o) |= BTRFS_MOUNT_##opt)
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#define btrfs_raw_test_opt(o, opt)	((o) & BTRFS_MOUNT_##opt)
1363
#define btrfs_test_opt(fs_info, opt)	((fs_info)->mount_opt & \
1364
					 BTRFS_MOUNT_##opt)
1365

1366
#define btrfs_set_and_info(fs_info, opt, fmt, args...)			\
1367
{									\
1368 1369 1370
	if (!btrfs_test_opt(fs_info, opt))				\
		btrfs_info(fs_info, fmt, ##args);			\
	btrfs_set_opt(fs_info->mount_opt, opt);				\
1371 1372
}

1373
#define btrfs_clear_and_info(fs_info, opt, fmt, args...)		\
1374
{									\
1375 1376 1377
	if (btrfs_test_opt(fs_info, opt))				\
		btrfs_info(fs_info, fmt, ##args);			\
	btrfs_clear_opt(fs_info->mount_opt, opt);			\
1378 1379
}

1380 1381
#ifdef CONFIG_BTRFS_DEBUG
static inline int
1382
btrfs_should_fragment_free_space(struct btrfs_block_group_cache *block_group)
1383
{
1384
	struct btrfs_fs_info *fs_info = block_group->fs_info;
1385 1386

	return (btrfs_test_opt(fs_info, FRAGMENT_METADATA) &&
1387
		block_group->flags & BTRFS_BLOCK_GROUP_METADATA) ||
1388
	       (btrfs_test_opt(fs_info, FRAGMENT_DATA) &&
1389 1390 1391 1392
		block_group->flags &  BTRFS_BLOCK_GROUP_DATA);
}
#endif

1393 1394 1395 1396 1397 1398 1399 1400
/*
 * Requests for changes that need to be done during transaction commit.
 *
 * Internal mount options that are used for special handling of the real
 * mount options (eg. cannot be set during remount and have to be set during
 * transaction commit)
 */

1401 1402
#define BTRFS_PENDING_SET_INODE_MAP_CACHE	(0)
#define BTRFS_PENDING_CLEAR_INODE_MAP_CACHE	(1)
1403
#define BTRFS_PENDING_COMMIT			(2)
1404

1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435
#define btrfs_test_pending(info, opt)	\
	test_bit(BTRFS_PENDING_##opt, &(info)->pending_changes)
#define btrfs_set_pending(info, opt)	\
	set_bit(BTRFS_PENDING_##opt, &(info)->pending_changes)
#define btrfs_clear_pending(info, opt)	\
	clear_bit(BTRFS_PENDING_##opt, &(info)->pending_changes)

/*
 * Helpers for setting pending mount option changes.
 *
 * Expects corresponding macros
 * BTRFS_PENDING_SET_ and CLEAR_ + short mount option name
 */
#define btrfs_set_pending_and_info(info, opt, fmt, args...)            \
do {                                                                   \
       if (!btrfs_raw_test_opt((info)->mount_opt, opt)) {              \
               btrfs_info((info), fmt, ##args);                        \
               btrfs_set_pending((info), SET_##opt);                   \
               btrfs_clear_pending((info), CLEAR_##opt);               \
       }                                                               \
} while(0)

#define btrfs_clear_pending_and_info(info, opt, fmt, args...)          \
do {                                                                   \
       if (btrfs_raw_test_opt((info)->mount_opt, opt)) {               \
               btrfs_info((info), fmt, ##args);                        \
               btrfs_set_pending((info), CLEAR_##opt);                 \
               btrfs_clear_pending((info), SET_##opt);                 \
       }                                                               \
} while(0)

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/*
 * Inode flags
 */
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#define BTRFS_INODE_NODATASUM		(1 << 0)
#define BTRFS_INODE_NODATACOW		(1 << 1)
#define BTRFS_INODE_READONLY		(1 << 2)
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#define BTRFS_INODE_NOCOMPRESS		(1 << 3)
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#define BTRFS_INODE_PREALLOC		(1 << 4)
1444 1445 1446 1447 1448 1449
#define BTRFS_INODE_SYNC		(1 << 5)
#define BTRFS_INODE_IMMUTABLE		(1 << 6)
#define BTRFS_INODE_APPEND		(1 << 7)
#define BTRFS_INODE_NODUMP		(1 << 8)
#define BTRFS_INODE_NOATIME		(1 << 9)
#define BTRFS_INODE_DIRSYNC		(1 << 10)
1450
#define BTRFS_INODE_COMPRESS		(1 << 11)
1451

1452 1453
#define BTRFS_INODE_ROOT_ITEM_INIT	(1 << 31)

1454
struct btrfs_map_token {
1455
	const struct extent_buffer *eb;
1456 1457 1458 1459
	char *kaddr;
	unsigned long offset;
};

1460 1461 1462
#define BTRFS_BYTES_TO_BLKS(fs_info, bytes) \
				((bytes) >> (fs_info)->sb->s_blocksize_bits)

1463 1464
static inline void btrfs_init_map_token (struct btrfs_map_token *token)
{
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1465
	token->kaddr = NULL;
1466 1467
}

1468
/* some macros to generate set/get functions for the struct fields.  This
1469 1470 1471 1472 1473 1474 1475
 * assumes there is a lefoo_to_cpu for every type, so lets make a simple
 * one for u8:
 */
#define le8_to_cpu(v) (v)
#define cpu_to_le8(v) (v)
#define __le8 u8

1476
#define read_eb_member(eb, ptr, type, member, result) (\
1477 1478 1479 1480 1481
	read_extent_buffer(eb, (char *)(result),			\
			   ((unsigned long)(ptr)) +			\
			    offsetof(type, member),			\
			   sizeof(((type *)0)->member)))

1482
#define write_eb_member(eb, ptr, type, member, result) (\
1483 1484 1485 1486 1487
	write_extent_buffer(eb, (char *)(result),			\
			   ((unsigned long)(ptr)) +			\
			    offsetof(type, member),			\
			   sizeof(((type *)0)->member)))

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1488
#define DECLARE_BTRFS_SETGET_BITS(bits)					\
1489 1490 1491 1492
u##bits btrfs_get_token_##bits(const struct extent_buffer *eb,		\
			       const void *ptr, unsigned long off,	\
			       struct btrfs_map_token *token);		\
void btrfs_set_token_##bits(struct extent_buffer *eb, const void *ptr,	\
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1493 1494
			    unsigned long off, u##bits val,		\
			    struct btrfs_map_token *token);		\
1495 1496
static inline u##bits btrfs_get_##bits(const struct extent_buffer *eb,	\
				       const void *ptr,			\
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1497 1498 1499 1500
				       unsigned long off)		\
{									\
	return btrfs_get_token_##bits(eb, ptr, off, NULL);		\
}									\
1501
static inline void btrfs_set_##bits(struct extent_buffer *eb, void *ptr,\
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1502 1503 1504 1505 1506 1507 1508 1509 1510 1511
				    unsigned long off, u##bits val)	\
{									\
       btrfs_set_token_##bits(eb, ptr, off, val, NULL);			\
}

DECLARE_BTRFS_SETGET_BITS(8)
DECLARE_BTRFS_SETGET_BITS(16)
DECLARE_BTRFS_SETGET_BITS(32)
DECLARE_BTRFS_SETGET_BITS(64)

1512
#define BTRFS_SETGET_FUNCS(name, type, member, bits)			\
1513 1514
static inline u##bits btrfs_##name(const struct extent_buffer *eb,	\
				   const type *s)			\
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1515 1516 1517 1518 1519 1520 1521 1522 1523 1524
{									\
	BUILD_BUG_ON(sizeof(u##bits) != sizeof(((type *)0))->member);	\
	return btrfs_get_##bits(eb, s, offsetof(type, member));		\
}									\
static inline void btrfs_set_##name(struct extent_buffer *eb, type *s,	\
				    u##bits val)			\
{									\
	BUILD_BUG_ON(sizeof(u##bits) != sizeof(((type *)0))->member);	\
	btrfs_set_##bits(eb, s, offsetof(type, member), val);		\
}									\
1525 1526
static inline u##bits btrfs_token_##name(const struct extent_buffer *eb,\
					 const type *s,			\
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1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538
					 struct btrfs_map_token *token)	\
{									\
	BUILD_BUG_ON(sizeof(u##bits) != sizeof(((type *)0))->member);	\
	return btrfs_get_token_##bits(eb, s, offsetof(type, member), token); \
}									\
static inline void btrfs_set_token_##name(struct extent_buffer *eb,	\
					  type *s, u##bits val,		\
                                         struct btrfs_map_token *token)	\
{									\
	BUILD_BUG_ON(sizeof(u##bits) != sizeof(((type *)0))->member);	\
	btrfs_set_token_##bits(eb, s, offsetof(type, member), val, token); \
}
1539 1540

#define BTRFS_SETGET_HEADER_FUNCS(name, type, member, bits)		\
1541
static inline u##bits btrfs_##name(const struct extent_buffer *eb)	\
1542
{									\
1543
	const type *p = page_address(eb->pages[0]);			\
D
David Miller 已提交
1544
	u##bits res = le##bits##_to_cpu(p->member);			\
1545
	return res;							\
1546 1547 1548 1549
}									\
static inline void btrfs_set_##name(struct extent_buffer *eb,		\
				    u##bits val)			\
{									\
1550
	type *p = page_address(eb->pages[0]);				\
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1551
	p->member = cpu_to_le##bits(val);				\
1552
}
C
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1553

1554
#define BTRFS_SETGET_STACK_FUNCS(name, type, member, bits)		\
1555
static inline u##bits btrfs_##name(const type *s)			\
1556 1557 1558 1559 1560 1561
{									\
	return le##bits##_to_cpu(s->member);				\
}									\
static inline void btrfs_set_##name(type *s, u##bits val)		\
{									\
	s->member = cpu_to_le##bits(val);				\
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1562 1563
}

1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578

static inline u64 btrfs_device_total_bytes(struct extent_buffer *eb,
					   struct btrfs_dev_item *s)
{
	BUILD_BUG_ON(sizeof(u64) !=
		     sizeof(((struct btrfs_dev_item *)0))->total_bytes);
	return btrfs_get_64(eb, s, offsetof(struct btrfs_dev_item,
					    total_bytes));
}
static inline void btrfs_set_device_total_bytes(struct extent_buffer *eb,
						struct btrfs_dev_item *s,
						u64 val)
{
	BUILD_BUG_ON(sizeof(u64) !=
		     sizeof(((struct btrfs_dev_item *)0))->total_bytes);
1579
	WARN_ON(!IS_ALIGNED(val, eb->fs_info->sectorsize));
1580 1581 1582 1583
	btrfs_set_64(eb, s, offsetof(struct btrfs_dev_item, total_bytes), val);
}


1584 1585 1586 1587
BTRFS_SETGET_FUNCS(device_type, struct btrfs_dev_item, type, 64);
BTRFS_SETGET_FUNCS(device_bytes_used, struct btrfs_dev_item, bytes_used, 64);
BTRFS_SETGET_FUNCS(device_io_align, struct btrfs_dev_item, io_align, 32);
BTRFS_SETGET_FUNCS(device_io_width, struct btrfs_dev_item, io_width, 32);
1588 1589
BTRFS_SETGET_FUNCS(device_start_offset, struct btrfs_dev_item,
		   start_offset, 64);
1590 1591
BTRFS_SETGET_FUNCS(device_sector_size, struct btrfs_dev_item, sector_size, 32);
BTRFS_SETGET_FUNCS(device_id, struct btrfs_dev_item, devid, 64);
1592 1593 1594
BTRFS_SETGET_FUNCS(device_group, struct btrfs_dev_item, dev_group, 32);
BTRFS_SETGET_FUNCS(device_seek_speed, struct btrfs_dev_item, seek_speed, 8);
BTRFS_SETGET_FUNCS(device_bandwidth, struct btrfs_dev_item, bandwidth, 8);
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BTRFS_SETGET_FUNCS(device_generation, struct btrfs_dev_item, generation, 64);
1596

1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608
BTRFS_SETGET_STACK_FUNCS(stack_device_type, struct btrfs_dev_item, type, 64);
BTRFS_SETGET_STACK_FUNCS(stack_device_total_bytes, struct btrfs_dev_item,
			 total_bytes, 64);
BTRFS_SETGET_STACK_FUNCS(stack_device_bytes_used, struct btrfs_dev_item,
			 bytes_used, 64);
BTRFS_SETGET_STACK_FUNCS(stack_device_io_align, struct btrfs_dev_item,
			 io_align, 32);
BTRFS_SETGET_STACK_FUNCS(stack_device_io_width, struct btrfs_dev_item,
			 io_width, 32);
BTRFS_SETGET_STACK_FUNCS(stack_device_sector_size, struct btrfs_dev_item,
			 sector_size, 32);
BTRFS_SETGET_STACK_FUNCS(stack_device_id, struct btrfs_dev_item, devid, 64);
1609 1610 1611 1612 1613 1614
BTRFS_SETGET_STACK_FUNCS(stack_device_group, struct btrfs_dev_item,
			 dev_group, 32);
BTRFS_SETGET_STACK_FUNCS(stack_device_seek_speed, struct btrfs_dev_item,
			 seek_speed, 8);
BTRFS_SETGET_STACK_FUNCS(stack_device_bandwidth, struct btrfs_dev_item,
			 bandwidth, 8);
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BTRFS_SETGET_STACK_FUNCS(stack_device_generation, struct btrfs_dev_item,
			 generation, 64);
1617

1618
static inline unsigned long btrfs_device_uuid(struct btrfs_dev_item *d)
1619
{
1620
	return (unsigned long)d + offsetof(struct btrfs_dev_item, uuid);
1621 1622
}

1623
static inline unsigned long btrfs_device_fsid(struct btrfs_dev_item *d)
Y
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1624
{
1625
	return (unsigned long)d + offsetof(struct btrfs_dev_item, fsid);
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1626 1627
}

1628
BTRFS_SETGET_FUNCS(chunk_length, struct btrfs_chunk, length, 64);
1629 1630 1631 1632 1633 1634 1635
BTRFS_SETGET_FUNCS(chunk_owner, struct btrfs_chunk, owner, 64);
BTRFS_SETGET_FUNCS(chunk_stripe_len, struct btrfs_chunk, stripe_len, 64);
BTRFS_SETGET_FUNCS(chunk_io_align, struct btrfs_chunk, io_align, 32);
BTRFS_SETGET_FUNCS(chunk_io_width, struct btrfs_chunk, io_width, 32);
BTRFS_SETGET_FUNCS(chunk_sector_size, struct btrfs_chunk, sector_size, 32);
BTRFS_SETGET_FUNCS(chunk_type, struct btrfs_chunk, type, 64);
BTRFS_SETGET_FUNCS(chunk_num_stripes, struct btrfs_chunk, num_stripes, 16);
C
Chris Mason 已提交
1636
BTRFS_SETGET_FUNCS(chunk_sub_stripes, struct btrfs_chunk, sub_stripes, 16);
1637 1638 1639
BTRFS_SETGET_FUNCS(stripe_devid, struct btrfs_stripe, devid, 64);
BTRFS_SETGET_FUNCS(stripe_offset, struct btrfs_stripe, offset, 64);

1640 1641 1642 1643 1644 1645
static inline char *btrfs_stripe_dev_uuid(struct btrfs_stripe *s)
{
	return (char *)s + offsetof(struct btrfs_stripe, dev_uuid);
}

BTRFS_SETGET_STACK_FUNCS(stack_chunk_length, struct btrfs_chunk, length, 64);
1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657
BTRFS_SETGET_STACK_FUNCS(stack_chunk_owner, struct btrfs_chunk, owner, 64);
BTRFS_SETGET_STACK_FUNCS(stack_chunk_stripe_len, struct btrfs_chunk,
			 stripe_len, 64);
BTRFS_SETGET_STACK_FUNCS(stack_chunk_io_align, struct btrfs_chunk,
			 io_align, 32);
BTRFS_SETGET_STACK_FUNCS(stack_chunk_io_width, struct btrfs_chunk,
			 io_width, 32);
BTRFS_SETGET_STACK_FUNCS(stack_chunk_sector_size, struct btrfs_chunk,
			 sector_size, 32);
BTRFS_SETGET_STACK_FUNCS(stack_chunk_type, struct btrfs_chunk, type, 64);
BTRFS_SETGET_STACK_FUNCS(stack_chunk_num_stripes, struct btrfs_chunk,
			 num_stripes, 16);
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1658 1659
BTRFS_SETGET_STACK_FUNCS(stack_chunk_sub_stripes, struct btrfs_chunk,
			 sub_stripes, 16);
1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671
BTRFS_SETGET_STACK_FUNCS(stack_stripe_devid, struct btrfs_stripe, devid, 64);
BTRFS_SETGET_STACK_FUNCS(stack_stripe_offset, struct btrfs_stripe, offset, 64);

static inline struct btrfs_stripe *btrfs_stripe_nr(struct btrfs_chunk *c,
						   int nr)
{
	unsigned long offset = (unsigned long)c;
	offset += offsetof(struct btrfs_chunk, stripe);
	offset += nr * sizeof(struct btrfs_stripe);
	return (struct btrfs_stripe *)offset;
}

1672 1673 1674 1675 1676
static inline char *btrfs_stripe_dev_uuid_nr(struct btrfs_chunk *c, int nr)
{
	return btrfs_stripe_dev_uuid(btrfs_stripe_nr(c, nr));
}

1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688
static inline u64 btrfs_stripe_offset_nr(struct extent_buffer *eb,
					 struct btrfs_chunk *c, int nr)
{
	return btrfs_stripe_offset(eb, btrfs_stripe_nr(c, nr));
}

static inline u64 btrfs_stripe_devid_nr(struct extent_buffer *eb,
					 struct btrfs_chunk *c, int nr)
{
	return btrfs_stripe_devid(eb, btrfs_stripe_nr(c, nr));
}

1689 1690 1691 1692 1693
/* struct btrfs_block_group_item */
BTRFS_SETGET_STACK_FUNCS(block_group_used, struct btrfs_block_group_item,
			 used, 64);
BTRFS_SETGET_FUNCS(disk_block_group_used, struct btrfs_block_group_item,
			 used, 64);
1694 1695
BTRFS_SETGET_STACK_FUNCS(block_group_chunk_objectid,
			struct btrfs_block_group_item, chunk_objectid, 64);
1696 1697

BTRFS_SETGET_FUNCS(disk_block_group_chunk_objectid,
1698 1699 1700 1701 1702
		   struct btrfs_block_group_item, chunk_objectid, 64);
BTRFS_SETGET_FUNCS(disk_block_group_flags,
		   struct btrfs_block_group_item, flags, 64);
BTRFS_SETGET_STACK_FUNCS(block_group_flags,
			struct btrfs_block_group_item, flags, 64);
C
Chris Mason 已提交
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1704 1705 1706 1707 1708
/* struct btrfs_free_space_info */
BTRFS_SETGET_FUNCS(free_space_extent_count, struct btrfs_free_space_info,
		   extent_count, 32);
BTRFS_SETGET_FUNCS(free_space_flags, struct btrfs_free_space_info, flags, 32);

1709 1710
/* struct btrfs_inode_ref */
BTRFS_SETGET_FUNCS(inode_ref_name_len, struct btrfs_inode_ref, name_len, 16);
1711
BTRFS_SETGET_FUNCS(inode_ref_index, struct btrfs_inode_ref, index, 64);
1712

M
Mark Fasheh 已提交
1713 1714 1715 1716 1717 1718 1719
/* struct btrfs_inode_extref */
BTRFS_SETGET_FUNCS(inode_extref_parent, struct btrfs_inode_extref,
		   parent_objectid, 64);
BTRFS_SETGET_FUNCS(inode_extref_name_len, struct btrfs_inode_extref,
		   name_len, 16);
BTRFS_SETGET_FUNCS(inode_extref_index, struct btrfs_inode_extref, index, 64);

1720 1721
/* struct btrfs_inode_item */
BTRFS_SETGET_FUNCS(inode_generation, struct btrfs_inode_item, generation, 64);
1722
BTRFS_SETGET_FUNCS(inode_sequence, struct btrfs_inode_item, sequence, 64);
1723
BTRFS_SETGET_FUNCS(inode_transid, struct btrfs_inode_item, transid, 64);
1724
BTRFS_SETGET_FUNCS(inode_size, struct btrfs_inode_item, size, 64);
1725
BTRFS_SETGET_FUNCS(inode_nbytes, struct btrfs_inode_item, nbytes, 64);
1726 1727 1728 1729 1730
BTRFS_SETGET_FUNCS(inode_block_group, struct btrfs_inode_item, block_group, 64);
BTRFS_SETGET_FUNCS(inode_nlink, struct btrfs_inode_item, nlink, 32);
BTRFS_SETGET_FUNCS(inode_uid, struct btrfs_inode_item, uid, 32);
BTRFS_SETGET_FUNCS(inode_gid, struct btrfs_inode_item, gid, 32);
BTRFS_SETGET_FUNCS(inode_mode, struct btrfs_inode_item, mode, 32);
1731
BTRFS_SETGET_FUNCS(inode_rdev, struct btrfs_inode_item, rdev, 64);
1732
BTRFS_SETGET_FUNCS(inode_flags, struct btrfs_inode_item, flags, 64);
1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749
BTRFS_SETGET_STACK_FUNCS(stack_inode_generation, struct btrfs_inode_item,
			 generation, 64);
BTRFS_SETGET_STACK_FUNCS(stack_inode_sequence, struct btrfs_inode_item,
			 sequence, 64);
BTRFS_SETGET_STACK_FUNCS(stack_inode_transid, struct btrfs_inode_item,
			 transid, 64);
BTRFS_SETGET_STACK_FUNCS(stack_inode_size, struct btrfs_inode_item, size, 64);
BTRFS_SETGET_STACK_FUNCS(stack_inode_nbytes, struct btrfs_inode_item,
			 nbytes, 64);
BTRFS_SETGET_STACK_FUNCS(stack_inode_block_group, struct btrfs_inode_item,
			 block_group, 64);
BTRFS_SETGET_STACK_FUNCS(stack_inode_nlink, struct btrfs_inode_item, nlink, 32);
BTRFS_SETGET_STACK_FUNCS(stack_inode_uid, struct btrfs_inode_item, uid, 32);
BTRFS_SETGET_STACK_FUNCS(stack_inode_gid, struct btrfs_inode_item, gid, 32);
BTRFS_SETGET_STACK_FUNCS(stack_inode_mode, struct btrfs_inode_item, mode, 32);
BTRFS_SETGET_STACK_FUNCS(stack_inode_rdev, struct btrfs_inode_item, rdev, 64);
BTRFS_SETGET_STACK_FUNCS(stack_inode_flags, struct btrfs_inode_item, flags, 64);
1750 1751
BTRFS_SETGET_FUNCS(timespec_sec, struct btrfs_timespec, sec, 64);
BTRFS_SETGET_FUNCS(timespec_nsec, struct btrfs_timespec, nsec, 32);
1752 1753
BTRFS_SETGET_STACK_FUNCS(stack_timespec_sec, struct btrfs_timespec, sec, 64);
BTRFS_SETGET_STACK_FUNCS(stack_timespec_nsec, struct btrfs_timespec, nsec, 32);
C
Chris Mason 已提交
1754

1755
/* struct btrfs_dev_extent */
1756 1757 1758 1759 1760 1761
BTRFS_SETGET_FUNCS(dev_extent_chunk_tree, struct btrfs_dev_extent,
		   chunk_tree, 64);
BTRFS_SETGET_FUNCS(dev_extent_chunk_objectid, struct btrfs_dev_extent,
		   chunk_objectid, 64);
BTRFS_SETGET_FUNCS(dev_extent_chunk_offset, struct btrfs_dev_extent,
		   chunk_offset, 64);
1762 1763
BTRFS_SETGET_FUNCS(dev_extent_length, struct btrfs_dev_extent, length, 64);

1764
static inline unsigned long btrfs_dev_extent_chunk_tree_uuid(struct btrfs_dev_extent *dev)
1765 1766
{
	unsigned long ptr = offsetof(struct btrfs_dev_extent, chunk_tree_uuid);
1767
	return (unsigned long)dev + ptr;
1768 1769
}

1770 1771 1772 1773
BTRFS_SETGET_FUNCS(extent_refs, struct btrfs_extent_item, refs, 64);
BTRFS_SETGET_FUNCS(extent_generation, struct btrfs_extent_item,
		   generation, 64);
BTRFS_SETGET_FUNCS(extent_flags, struct btrfs_extent_item, flags, 64);
1774

1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792
BTRFS_SETGET_FUNCS(extent_refs_v0, struct btrfs_extent_item_v0, refs, 32);


BTRFS_SETGET_FUNCS(tree_block_level, struct btrfs_tree_block_info, level, 8);

static inline void btrfs_tree_block_key(struct extent_buffer *eb,
					struct btrfs_tree_block_info *item,
					struct btrfs_disk_key *key)
{
	read_eb_member(eb, item, struct btrfs_tree_block_info, key, key);
}

static inline void btrfs_set_tree_block_key(struct extent_buffer *eb,
					    struct btrfs_tree_block_info *item,
					    struct btrfs_disk_key *key)
{
	write_eb_member(eb, item, struct btrfs_tree_block_info, key, key);
}
C
Chris Mason 已提交
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1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829
BTRFS_SETGET_FUNCS(extent_data_ref_root, struct btrfs_extent_data_ref,
		   root, 64);
BTRFS_SETGET_FUNCS(extent_data_ref_objectid, struct btrfs_extent_data_ref,
		   objectid, 64);
BTRFS_SETGET_FUNCS(extent_data_ref_offset, struct btrfs_extent_data_ref,
		   offset, 64);
BTRFS_SETGET_FUNCS(extent_data_ref_count, struct btrfs_extent_data_ref,
		   count, 32);

BTRFS_SETGET_FUNCS(shared_data_ref_count, struct btrfs_shared_data_ref,
		   count, 32);

BTRFS_SETGET_FUNCS(extent_inline_ref_type, struct btrfs_extent_inline_ref,
		   type, 8);
BTRFS_SETGET_FUNCS(extent_inline_ref_offset, struct btrfs_extent_inline_ref,
		   offset, 64);

static inline u32 btrfs_extent_inline_ref_size(int type)
{
	if (type == BTRFS_TREE_BLOCK_REF_KEY ||
	    type == BTRFS_SHARED_BLOCK_REF_KEY)
		return sizeof(struct btrfs_extent_inline_ref);
	if (type == BTRFS_SHARED_DATA_REF_KEY)
		return sizeof(struct btrfs_shared_data_ref) +
		       sizeof(struct btrfs_extent_inline_ref);
	if (type == BTRFS_EXTENT_DATA_REF_KEY)
		return sizeof(struct btrfs_extent_data_ref) +
		       offsetof(struct btrfs_extent_inline_ref, offset);
	return 0;
}

BTRFS_SETGET_FUNCS(ref_root_v0, struct btrfs_extent_ref_v0, root, 64);
BTRFS_SETGET_FUNCS(ref_generation_v0, struct btrfs_extent_ref_v0,
		   generation, 64);
BTRFS_SETGET_FUNCS(ref_objectid_v0, struct btrfs_extent_ref_v0, objectid, 64);
BTRFS_SETGET_FUNCS(ref_count_v0, struct btrfs_extent_ref_v0, count, 32);
C
Chris Mason 已提交
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1831 1832
/* struct btrfs_node */
BTRFS_SETGET_FUNCS(key_blockptr, struct btrfs_key_ptr, blockptr, 64);
1833
BTRFS_SETGET_FUNCS(key_generation, struct btrfs_key_ptr, generation, 64);
1834 1835 1836 1837
BTRFS_SETGET_STACK_FUNCS(stack_key_blockptr, struct btrfs_key_ptr,
			 blockptr, 64);
BTRFS_SETGET_STACK_FUNCS(stack_key_generation, struct btrfs_key_ptr,
			 generation, 64);
C
Chris Mason 已提交
1838

1839
static inline u64 btrfs_node_blockptr(struct extent_buffer *eb, int nr)
C
Chris Mason 已提交
1840
{
1841 1842 1843 1844
	unsigned long ptr;
	ptr = offsetof(struct btrfs_node, ptrs) +
		sizeof(struct btrfs_key_ptr) * nr;
	return btrfs_key_blockptr(eb, (struct btrfs_key_ptr *)ptr);
C
Chris Mason 已提交
1845 1846
}

1847 1848
static inline void btrfs_set_node_blockptr(struct extent_buffer *eb,
					   int nr, u64 val)
C
Chris Mason 已提交
1849
{
1850 1851 1852 1853
	unsigned long ptr;
	ptr = offsetof(struct btrfs_node, ptrs) +
		sizeof(struct btrfs_key_ptr) * nr;
	btrfs_set_key_blockptr(eb, (struct btrfs_key_ptr *)ptr, val);
C
Chris Mason 已提交
1854 1855
}

1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872
static inline u64 btrfs_node_ptr_generation(struct extent_buffer *eb, int nr)
{
	unsigned long ptr;
	ptr = offsetof(struct btrfs_node, ptrs) +
		sizeof(struct btrfs_key_ptr) * nr;
	return btrfs_key_generation(eb, (struct btrfs_key_ptr *)ptr);
}

static inline void btrfs_set_node_ptr_generation(struct extent_buffer *eb,
						 int nr, u64 val)
{
	unsigned long ptr;
	ptr = offsetof(struct btrfs_node, ptrs) +
		sizeof(struct btrfs_key_ptr) * nr;
	btrfs_set_key_generation(eb, (struct btrfs_key_ptr *)ptr, val);
}

1873
static inline unsigned long btrfs_node_key_ptr_offset(int nr)
1874
{
1875 1876
	return offsetof(struct btrfs_node, ptrs) +
		sizeof(struct btrfs_key_ptr) * nr;
1877 1878
}

1879
void btrfs_node_key(const struct extent_buffer *eb,
1880 1881
		    struct btrfs_disk_key *disk_key, int nr);

1882 1883
static inline void btrfs_set_node_key(struct extent_buffer *eb,
				      struct btrfs_disk_key *disk_key, int nr)
1884
{
1885 1886 1887 1888
	unsigned long ptr;
	ptr = btrfs_node_key_ptr_offset(nr);
	write_eb_member(eb, (struct btrfs_key_ptr *)ptr,
		       struct btrfs_key_ptr, key, disk_key);
1889 1890
}

1891 1892 1893
/* struct btrfs_item */
BTRFS_SETGET_FUNCS(item_offset, struct btrfs_item, offset, 32);
BTRFS_SETGET_FUNCS(item_size, struct btrfs_item, size, 32);
1894 1895
BTRFS_SETGET_STACK_FUNCS(stack_item_offset, struct btrfs_item, offset, 32);
BTRFS_SETGET_STACK_FUNCS(stack_item_size, struct btrfs_item, size, 32);
1896

1897
static inline unsigned long btrfs_item_nr_offset(int nr)
1898
{
1899 1900
	return offsetof(struct btrfs_leaf, items) +
		sizeof(struct btrfs_item) * nr;
1901 1902
}

1903
static inline struct btrfs_item *btrfs_item_nr(int nr)
C
Chris Mason 已提交
1904
{
1905
	return (struct btrfs_item *)btrfs_item_nr_offset(nr);
C
Chris Mason 已提交
1906 1907
}

1908
static inline u32 btrfs_item_end(const struct extent_buffer *eb,
1909
				 struct btrfs_item *item)
C
Chris Mason 已提交
1910
{
1911
	return btrfs_item_offset(eb, item) + btrfs_item_size(eb, item);
C
Chris Mason 已提交
1912 1913
}

1914
static inline u32 btrfs_item_end_nr(const struct extent_buffer *eb, int nr)
C
Chris Mason 已提交
1915
{
1916
	return btrfs_item_end(eb, btrfs_item_nr(nr));
C
Chris Mason 已提交
1917 1918
}

1919
static inline u32 btrfs_item_offset_nr(const struct extent_buffer *eb, int nr)
C
Chris Mason 已提交
1920
{
1921
	return btrfs_item_offset(eb, btrfs_item_nr(nr));
C
Chris Mason 已提交
1922 1923
}

1924
static inline u32 btrfs_item_size_nr(const struct extent_buffer *eb, int nr)
C
Chris Mason 已提交
1925
{
1926
	return btrfs_item_size(eb, btrfs_item_nr(nr));
C
Chris Mason 已提交
1927 1928
}

1929
static inline void btrfs_item_key(const struct extent_buffer *eb,
1930
			   struct btrfs_disk_key *disk_key, int nr)
1931
{
1932
	struct btrfs_item *item = btrfs_item_nr(nr);
1933
	read_eb_member(eb, item, struct btrfs_item, key, disk_key);
1934 1935
}

1936 1937
static inline void btrfs_set_item_key(struct extent_buffer *eb,
			       struct btrfs_disk_key *disk_key, int nr)
1938
{
1939
	struct btrfs_item *item = btrfs_item_nr(nr);
1940
	write_eb_member(eb, item, struct btrfs_item, key, disk_key);
1941 1942
}

1943 1944
BTRFS_SETGET_FUNCS(dir_log_end, struct btrfs_dir_log_item, end, 64);

1945 1946 1947 1948 1949 1950 1951
/*
 * struct btrfs_root_ref
 */
BTRFS_SETGET_FUNCS(root_ref_dirid, struct btrfs_root_ref, dirid, 64);
BTRFS_SETGET_FUNCS(root_ref_sequence, struct btrfs_root_ref, sequence, 64);
BTRFS_SETGET_FUNCS(root_ref_name_len, struct btrfs_root_ref, name_len, 16);

1952
/* struct btrfs_dir_item */
J
Josef Bacik 已提交
1953
BTRFS_SETGET_FUNCS(dir_data_len, struct btrfs_dir_item, data_len, 16);
1954 1955
BTRFS_SETGET_FUNCS(dir_type, struct btrfs_dir_item, type, 8);
BTRFS_SETGET_FUNCS(dir_name_len, struct btrfs_dir_item, name_len, 16);
1956
BTRFS_SETGET_FUNCS(dir_transid, struct btrfs_dir_item, transid, 64);
1957 1958 1959 1960 1961 1962 1963
BTRFS_SETGET_STACK_FUNCS(stack_dir_type, struct btrfs_dir_item, type, 8);
BTRFS_SETGET_STACK_FUNCS(stack_dir_data_len, struct btrfs_dir_item,
			 data_len, 16);
BTRFS_SETGET_STACK_FUNCS(stack_dir_name_len, struct btrfs_dir_item,
			 name_len, 16);
BTRFS_SETGET_STACK_FUNCS(stack_dir_transid, struct btrfs_dir_item,
			 transid, 64);
1964

1965 1966
static inline void btrfs_dir_item_key(const struct extent_buffer *eb,
				      const struct btrfs_dir_item *item,
1967
				      struct btrfs_disk_key *key)
1968
{
1969
	read_eb_member(eb, item, struct btrfs_dir_item, location, key);
1970 1971
}

1972 1973
static inline void btrfs_set_dir_item_key(struct extent_buffer *eb,
					  struct btrfs_dir_item *item,
1974
					  const struct btrfs_disk_key *key)
1975
{
1976
	write_eb_member(eb, item, struct btrfs_dir_item, location, key);
1977 1978
}

1979 1980 1981 1982 1983 1984 1985
BTRFS_SETGET_FUNCS(free_space_entries, struct btrfs_free_space_header,
		   num_entries, 64);
BTRFS_SETGET_FUNCS(free_space_bitmaps, struct btrfs_free_space_header,
		   num_bitmaps, 64);
BTRFS_SETGET_FUNCS(free_space_generation, struct btrfs_free_space_header,
		   generation, 64);

1986 1987
static inline void btrfs_free_space_key(const struct extent_buffer *eb,
					const struct btrfs_free_space_header *h,
1988 1989 1990 1991 1992 1993 1994
					struct btrfs_disk_key *key)
{
	read_eb_member(eb, h, struct btrfs_free_space_header, location, key);
}

static inline void btrfs_set_free_space_key(struct extent_buffer *eb,
					    struct btrfs_free_space_header *h,
1995
					    const struct btrfs_disk_key *key)
1996 1997 1998 1999
{
	write_eb_member(eb, h, struct btrfs_free_space_header, location, key);
}

2000 2001 2002 2003 2004
/* struct btrfs_disk_key */
BTRFS_SETGET_STACK_FUNCS(disk_key_objectid, struct btrfs_disk_key,
			 objectid, 64);
BTRFS_SETGET_STACK_FUNCS(disk_key_offset, struct btrfs_disk_key, offset, 64);
BTRFS_SETGET_STACK_FUNCS(disk_key_type, struct btrfs_disk_key, type, 8);
2005

C
Chris Mason 已提交
2006
static inline void btrfs_disk_key_to_cpu(struct btrfs_key *cpu,
2007
					 const struct btrfs_disk_key *disk)
C
Chris Mason 已提交
2008 2009
{
	cpu->offset = le64_to_cpu(disk->offset);
2010
	cpu->type = disk->type;
C
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2011 2012 2013 2014
	cpu->objectid = le64_to_cpu(disk->objectid);
}

static inline void btrfs_cpu_key_to_disk(struct btrfs_disk_key *disk,
2015
					 const struct btrfs_key *cpu)
C
Chris Mason 已提交
2016 2017
{
	disk->offset = cpu_to_le64(cpu->offset);
2018
	disk->type = cpu->type;
C
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2019 2020 2021
	disk->objectid = cpu_to_le64(cpu->objectid);
}

2022 2023
static inline void btrfs_node_key_to_cpu(const struct extent_buffer *eb,
					 struct btrfs_key *key, int nr)
2024
{
2025 2026 2027
	struct btrfs_disk_key disk_key;
	btrfs_node_key(eb, &disk_key, nr);
	btrfs_disk_key_to_cpu(key, &disk_key);
2028 2029
}

2030 2031
static inline void btrfs_item_key_to_cpu(const struct extent_buffer *eb,
					 struct btrfs_key *key, int nr)
2032
{
2033 2034 2035
	struct btrfs_disk_key disk_key;
	btrfs_item_key(eb, &disk_key, nr);
	btrfs_disk_key_to_cpu(key, &disk_key);
2036 2037
}

2038 2039 2040
static inline void btrfs_dir_item_key_to_cpu(const struct extent_buffer *eb,
					     const struct btrfs_dir_item *item,
					     struct btrfs_key *key)
2041
{
2042 2043 2044
	struct btrfs_disk_key disk_key;
	btrfs_dir_item_key(eb, item, &disk_key);
	btrfs_disk_key_to_cpu(key, &disk_key);
2045 2046
}

2047
static inline u8 btrfs_key_type(const struct btrfs_key *key)
2048
{
2049
	return key->type;
2050 2051
}

2052
static inline void btrfs_set_key_type(struct btrfs_key *key, u8 val)
2053
{
2054
	key->type = val;
2055 2056
}

2057
/* struct btrfs_header */
2058
BTRFS_SETGET_HEADER_FUNCS(header_bytenr, struct btrfs_header, bytenr, 64);
2059 2060 2061 2062
BTRFS_SETGET_HEADER_FUNCS(header_generation, struct btrfs_header,
			  generation, 64);
BTRFS_SETGET_HEADER_FUNCS(header_owner, struct btrfs_header, owner, 64);
BTRFS_SETGET_HEADER_FUNCS(header_nritems, struct btrfs_header, nritems, 32);
2063
BTRFS_SETGET_HEADER_FUNCS(header_flags, struct btrfs_header, flags, 64);
2064
BTRFS_SETGET_HEADER_FUNCS(header_level, struct btrfs_header, level, 8);
2065 2066 2067 2068 2069 2070
BTRFS_SETGET_STACK_FUNCS(stack_header_generation, struct btrfs_header,
			 generation, 64);
BTRFS_SETGET_STACK_FUNCS(stack_header_owner, struct btrfs_header, owner, 64);
BTRFS_SETGET_STACK_FUNCS(stack_header_nritems, struct btrfs_header,
			 nritems, 32);
BTRFS_SETGET_STACK_FUNCS(stack_header_bytenr, struct btrfs_header, bytenr, 64);
2071

2072
static inline int btrfs_header_flag(const struct extent_buffer *eb, u64 flag)
2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090
{
	return (btrfs_header_flags(eb) & flag) == flag;
}

static inline int btrfs_set_header_flag(struct extent_buffer *eb, u64 flag)
{
	u64 flags = btrfs_header_flags(eb);
	btrfs_set_header_flags(eb, flags | flag);
	return (flags & flag) == flag;
}

static inline int btrfs_clear_header_flag(struct extent_buffer *eb, u64 flag)
{
	u64 flags = btrfs_header_flags(eb);
	btrfs_set_header_flags(eb, flags & ~flag);
	return (flags & flag) == flag;
}

2091
static inline int btrfs_header_backref_rev(const struct extent_buffer *eb)
2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105
{
	u64 flags = btrfs_header_flags(eb);
	return flags >> BTRFS_BACKREF_REV_SHIFT;
}

static inline void btrfs_set_header_backref_rev(struct extent_buffer *eb,
						int rev)
{
	u64 flags = btrfs_header_flags(eb);
	flags &= ~BTRFS_BACKREF_REV_MASK;
	flags |= (u64)rev << BTRFS_BACKREF_REV_SHIFT;
	btrfs_set_header_flags(eb, flags);
}

2106
static inline unsigned long btrfs_header_fsid(void)
2107
{
2108
	return offsetof(struct btrfs_header, fsid);
2109 2110
}

2111
static inline unsigned long btrfs_header_chunk_tree_uuid(const struct extent_buffer *eb)
2112
{
2113
	return offsetof(struct btrfs_header, chunk_tree_uuid);
2114 2115
}

2116
static inline int btrfs_is_leaf(const struct extent_buffer *eb)
2117
{
C
Chris Mason 已提交
2118
	return btrfs_header_level(eb) == 0;
2119 2120
}

2121
/* struct btrfs_root_item */
2122 2123
BTRFS_SETGET_FUNCS(disk_root_generation, struct btrfs_root_item,
		   generation, 64);
2124
BTRFS_SETGET_FUNCS(disk_root_refs, struct btrfs_root_item, refs, 32);
2125 2126
BTRFS_SETGET_FUNCS(disk_root_bytenr, struct btrfs_root_item, bytenr, 64);
BTRFS_SETGET_FUNCS(disk_root_level, struct btrfs_root_item, level, 8);
2127

2128 2129
BTRFS_SETGET_STACK_FUNCS(root_generation, struct btrfs_root_item,
			 generation, 64);
2130 2131
BTRFS_SETGET_STACK_FUNCS(root_bytenr, struct btrfs_root_item, bytenr, 64);
BTRFS_SETGET_STACK_FUNCS(root_level, struct btrfs_root_item, level, 8);
2132 2133
BTRFS_SETGET_STACK_FUNCS(root_dirid, struct btrfs_root_item, root_dirid, 64);
BTRFS_SETGET_STACK_FUNCS(root_refs, struct btrfs_root_item, refs, 32);
2134
BTRFS_SETGET_STACK_FUNCS(root_flags, struct btrfs_root_item, flags, 64);
2135 2136
BTRFS_SETGET_STACK_FUNCS(root_used, struct btrfs_root_item, bytes_used, 64);
BTRFS_SETGET_STACK_FUNCS(root_limit, struct btrfs_root_item, byte_limit, 64);
Y
Yan Zheng 已提交
2137 2138
BTRFS_SETGET_STACK_FUNCS(root_last_snapshot, struct btrfs_root_item,
			 last_snapshot, 64);
2139 2140 2141 2142 2143 2144 2145 2146 2147 2148
BTRFS_SETGET_STACK_FUNCS(root_generation_v2, struct btrfs_root_item,
			 generation_v2, 64);
BTRFS_SETGET_STACK_FUNCS(root_ctransid, struct btrfs_root_item,
			 ctransid, 64);
BTRFS_SETGET_STACK_FUNCS(root_otransid, struct btrfs_root_item,
			 otransid, 64);
BTRFS_SETGET_STACK_FUNCS(root_stransid, struct btrfs_root_item,
			 stransid, 64);
BTRFS_SETGET_STACK_FUNCS(root_rtransid, struct btrfs_root_item,
			 rtransid, 64);
C
Chris Mason 已提交
2149

2150
static inline bool btrfs_root_readonly(const struct btrfs_root *root)
L
Li Zefan 已提交
2151
{
2152
	return (root->root_item.flags & cpu_to_le64(BTRFS_ROOT_SUBVOL_RDONLY)) != 0;
L
Li Zefan 已提交
2153 2154
}

2155
static inline bool btrfs_root_dead(const struct btrfs_root *root)
2156 2157 2158 2159
{
	return (root->root_item.flags & cpu_to_le64(BTRFS_ROOT_SUBVOL_DEAD)) != 0;
}

C
Chris Mason 已提交
2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208
/* struct btrfs_root_backup */
BTRFS_SETGET_STACK_FUNCS(backup_tree_root, struct btrfs_root_backup,
		   tree_root, 64);
BTRFS_SETGET_STACK_FUNCS(backup_tree_root_gen, struct btrfs_root_backup,
		   tree_root_gen, 64);
BTRFS_SETGET_STACK_FUNCS(backup_tree_root_level, struct btrfs_root_backup,
		   tree_root_level, 8);

BTRFS_SETGET_STACK_FUNCS(backup_chunk_root, struct btrfs_root_backup,
		   chunk_root, 64);
BTRFS_SETGET_STACK_FUNCS(backup_chunk_root_gen, struct btrfs_root_backup,
		   chunk_root_gen, 64);
BTRFS_SETGET_STACK_FUNCS(backup_chunk_root_level, struct btrfs_root_backup,
		   chunk_root_level, 8);

BTRFS_SETGET_STACK_FUNCS(backup_extent_root, struct btrfs_root_backup,
		   extent_root, 64);
BTRFS_SETGET_STACK_FUNCS(backup_extent_root_gen, struct btrfs_root_backup,
		   extent_root_gen, 64);
BTRFS_SETGET_STACK_FUNCS(backup_extent_root_level, struct btrfs_root_backup,
		   extent_root_level, 8);

BTRFS_SETGET_STACK_FUNCS(backup_fs_root, struct btrfs_root_backup,
		   fs_root, 64);
BTRFS_SETGET_STACK_FUNCS(backup_fs_root_gen, struct btrfs_root_backup,
		   fs_root_gen, 64);
BTRFS_SETGET_STACK_FUNCS(backup_fs_root_level, struct btrfs_root_backup,
		   fs_root_level, 8);

BTRFS_SETGET_STACK_FUNCS(backup_dev_root, struct btrfs_root_backup,
		   dev_root, 64);
BTRFS_SETGET_STACK_FUNCS(backup_dev_root_gen, struct btrfs_root_backup,
		   dev_root_gen, 64);
BTRFS_SETGET_STACK_FUNCS(backup_dev_root_level, struct btrfs_root_backup,
		   dev_root_level, 8);

BTRFS_SETGET_STACK_FUNCS(backup_csum_root, struct btrfs_root_backup,
		   csum_root, 64);
BTRFS_SETGET_STACK_FUNCS(backup_csum_root_gen, struct btrfs_root_backup,
		   csum_root_gen, 64);
BTRFS_SETGET_STACK_FUNCS(backup_csum_root_level, struct btrfs_root_backup,
		   csum_root_level, 8);
BTRFS_SETGET_STACK_FUNCS(backup_total_bytes, struct btrfs_root_backup,
		   total_bytes, 64);
BTRFS_SETGET_STACK_FUNCS(backup_bytes_used, struct btrfs_root_backup,
		   bytes_used, 64);
BTRFS_SETGET_STACK_FUNCS(backup_num_devices, struct btrfs_root_backup,
		   num_devices, 64);

2209 2210
/* struct btrfs_balance_item */
BTRFS_SETGET_FUNCS(balance_flags, struct btrfs_balance_item, flags, 64);
2211

2212 2213
static inline void btrfs_balance_data(const struct extent_buffer *eb,
				      const struct btrfs_balance_item *bi,
2214 2215 2216 2217 2218 2219
				      struct btrfs_disk_balance_args *ba)
{
	read_eb_member(eb, bi, struct btrfs_balance_item, data, ba);
}

static inline void btrfs_set_balance_data(struct extent_buffer *eb,
2220 2221
				  struct btrfs_balance_item *bi,
				  const struct btrfs_disk_balance_args *ba)
2222 2223 2224 2225
{
	write_eb_member(eb, bi, struct btrfs_balance_item, data, ba);
}

2226 2227
static inline void btrfs_balance_meta(const struct extent_buffer *eb,
				      const struct btrfs_balance_item *bi,
2228 2229 2230 2231 2232 2233
				      struct btrfs_disk_balance_args *ba)
{
	read_eb_member(eb, bi, struct btrfs_balance_item, meta, ba);
}

static inline void btrfs_set_balance_meta(struct extent_buffer *eb,
2234 2235
				  struct btrfs_balance_item *bi,
				  const struct btrfs_disk_balance_args *ba)
2236 2237 2238 2239
{
	write_eb_member(eb, bi, struct btrfs_balance_item, meta, ba);
}

2240 2241
static inline void btrfs_balance_sys(const struct extent_buffer *eb,
				     const struct btrfs_balance_item *bi,
2242 2243 2244 2245 2246 2247
				     struct btrfs_disk_balance_args *ba)
{
	read_eb_member(eb, bi, struct btrfs_balance_item, sys, ba);
}

static inline void btrfs_set_balance_sys(struct extent_buffer *eb,
2248 2249
				 struct btrfs_balance_item *bi,
				 const struct btrfs_disk_balance_args *ba)
2250 2251 2252 2253 2254 2255
{
	write_eb_member(eb, bi, struct btrfs_balance_item, sys, ba);
}

static inline void
btrfs_disk_balance_args_to_cpu(struct btrfs_balance_args *cpu,
2256
			       const struct btrfs_disk_balance_args *disk)
2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268
{
	memset(cpu, 0, sizeof(*cpu));

	cpu->profiles = le64_to_cpu(disk->profiles);
	cpu->usage = le64_to_cpu(disk->usage);
	cpu->devid = le64_to_cpu(disk->devid);
	cpu->pstart = le64_to_cpu(disk->pstart);
	cpu->pend = le64_to_cpu(disk->pend);
	cpu->vstart = le64_to_cpu(disk->vstart);
	cpu->vend = le64_to_cpu(disk->vend);
	cpu->target = le64_to_cpu(disk->target);
	cpu->flags = le64_to_cpu(disk->flags);
2269
	cpu->limit = le64_to_cpu(disk->limit);
2270 2271
	cpu->stripes_min = le32_to_cpu(disk->stripes_min);
	cpu->stripes_max = le32_to_cpu(disk->stripes_max);
2272 2273 2274 2275
}

static inline void
btrfs_cpu_balance_args_to_disk(struct btrfs_disk_balance_args *disk,
2276
			       const struct btrfs_balance_args *cpu)
2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288
{
	memset(disk, 0, sizeof(*disk));

	disk->profiles = cpu_to_le64(cpu->profiles);
	disk->usage = cpu_to_le64(cpu->usage);
	disk->devid = cpu_to_le64(cpu->devid);
	disk->pstart = cpu_to_le64(cpu->pstart);
	disk->pend = cpu_to_le64(cpu->pend);
	disk->vstart = cpu_to_le64(cpu->vstart);
	disk->vend = cpu_to_le64(cpu->vend);
	disk->target = cpu_to_le64(cpu->target);
	disk->flags = cpu_to_le64(cpu->flags);
2289
	disk->limit = cpu_to_le64(cpu->limit);
2290 2291
	disk->stripes_min = cpu_to_le32(cpu->stripes_min);
	disk->stripes_max = cpu_to_le32(cpu->stripes_max);
2292 2293 2294
}

/* struct btrfs_super_block */
2295
BTRFS_SETGET_STACK_FUNCS(super_bytenr, struct btrfs_super_block, bytenr, 64);
2296
BTRFS_SETGET_STACK_FUNCS(super_flags, struct btrfs_super_block, flags, 64);
2297 2298 2299
BTRFS_SETGET_STACK_FUNCS(super_generation, struct btrfs_super_block,
			 generation, 64);
BTRFS_SETGET_STACK_FUNCS(super_root, struct btrfs_super_block, root, 64);
2300 2301
BTRFS_SETGET_STACK_FUNCS(super_sys_array_size,
			 struct btrfs_super_block, sys_chunk_array_size, 32);
2302 2303
BTRFS_SETGET_STACK_FUNCS(super_chunk_root_generation,
			 struct btrfs_super_block, chunk_root_generation, 64);
2304 2305
BTRFS_SETGET_STACK_FUNCS(super_root_level, struct btrfs_super_block,
			 root_level, 8);
2306 2307 2308
BTRFS_SETGET_STACK_FUNCS(super_chunk_root, struct btrfs_super_block,
			 chunk_root, 64);
BTRFS_SETGET_STACK_FUNCS(super_chunk_root_level, struct btrfs_super_block,
2309 2310 2311
			 chunk_root_level, 8);
BTRFS_SETGET_STACK_FUNCS(super_log_root, struct btrfs_super_block,
			 log_root, 64);
2312 2313
BTRFS_SETGET_STACK_FUNCS(super_log_root_transid, struct btrfs_super_block,
			 log_root_transid, 64);
2314 2315
BTRFS_SETGET_STACK_FUNCS(super_log_root_level, struct btrfs_super_block,
			 log_root_level, 8);
2316 2317 2318 2319
BTRFS_SETGET_STACK_FUNCS(super_total_bytes, struct btrfs_super_block,
			 total_bytes, 64);
BTRFS_SETGET_STACK_FUNCS(super_bytes_used, struct btrfs_super_block,
			 bytes_used, 64);
2320 2321 2322 2323
BTRFS_SETGET_STACK_FUNCS(super_sectorsize, struct btrfs_super_block,
			 sectorsize, 32);
BTRFS_SETGET_STACK_FUNCS(super_nodesize, struct btrfs_super_block,
			 nodesize, 32);
2324 2325
BTRFS_SETGET_STACK_FUNCS(super_stripesize, struct btrfs_super_block,
			 stripesize, 32);
2326 2327
BTRFS_SETGET_STACK_FUNCS(super_root_dir, struct btrfs_super_block,
			 root_dir_objectid, 64);
2328 2329
BTRFS_SETGET_STACK_FUNCS(super_num_devices, struct btrfs_super_block,
			 num_devices, 64);
2330 2331 2332
BTRFS_SETGET_STACK_FUNCS(super_compat_flags, struct btrfs_super_block,
			 compat_flags, 64);
BTRFS_SETGET_STACK_FUNCS(super_compat_ro_flags, struct btrfs_super_block,
2333
			 compat_ro_flags, 64);
2334 2335
BTRFS_SETGET_STACK_FUNCS(super_incompat_flags, struct btrfs_super_block,
			 incompat_flags, 64);
2336 2337
BTRFS_SETGET_STACK_FUNCS(super_csum_type, struct btrfs_super_block,
			 csum_type, 16);
2338 2339
BTRFS_SETGET_STACK_FUNCS(super_cache_generation, struct btrfs_super_block,
			 cache_generation, 64);
2340
BTRFS_SETGET_STACK_FUNCS(super_magic, struct btrfs_super_block, magic, 64);
2341 2342
BTRFS_SETGET_STACK_FUNCS(super_uuid_tree_generation, struct btrfs_super_block,
			 uuid_tree_generation, 64);
2343

2344
static inline int btrfs_super_csum_size(const struct btrfs_super_block *s)
2345
{
D
David Sterba 已提交
2346 2347 2348 2349
	u16 t = btrfs_super_csum_type(s);
	/*
	 * csum type is validated at mount time
	 */
2350 2351
	return btrfs_csum_sizes[t];
}
2352 2353


2354 2355 2356 2357 2358
/*
 * The leaf data grows from end-to-front in the node.
 * this returns the address of the start of the last item,
 * which is the stop of the leaf data stack
 */
2359 2360
static inline unsigned int leaf_data_end(const struct btrfs_fs_info *fs_info,
					 const struct extent_buffer *leaf)
2361 2362 2363 2364
{
	u32 nr = btrfs_header_nritems(leaf);

	if (nr == 0)
2365
		return BTRFS_LEAF_DATA_SIZE(fs_info);
2366 2367 2368
	return btrfs_item_offset_nr(leaf, nr - 1);
}

2369 2370
/* struct btrfs_file_extent_item */
BTRFS_SETGET_FUNCS(file_extent_type, struct btrfs_file_extent_item, type, 8);
2371 2372 2373 2374 2375 2376 2377 2378
BTRFS_SETGET_STACK_FUNCS(stack_file_extent_disk_bytenr,
			 struct btrfs_file_extent_item, disk_bytenr, 64);
BTRFS_SETGET_STACK_FUNCS(stack_file_extent_offset,
			 struct btrfs_file_extent_item, offset, 64);
BTRFS_SETGET_STACK_FUNCS(stack_file_extent_generation,
			 struct btrfs_file_extent_item, generation, 64);
BTRFS_SETGET_STACK_FUNCS(stack_file_extent_num_bytes,
			 struct btrfs_file_extent_item, num_bytes, 64);
2379 2380 2381 2382
BTRFS_SETGET_STACK_FUNCS(stack_file_extent_disk_num_bytes,
			 struct btrfs_file_extent_item, disk_num_bytes, 64);
BTRFS_SETGET_STACK_FUNCS(stack_file_extent_compression,
			 struct btrfs_file_extent_item, compression, 8);
2383

C
Chris Mason 已提交
2384
static inline unsigned long
2385
btrfs_file_extent_inline_start(const struct btrfs_file_extent_item *e)
2386
{
2387
	return (unsigned long)e + BTRFS_FILE_EXTENT_INLINE_DATA_START;
2388 2389 2390 2391
}

static inline u32 btrfs_file_extent_calc_inline_size(u32 datasize)
{
2392
	return BTRFS_FILE_EXTENT_INLINE_DATA_START + datasize;
2393 2394
}

2395 2396
BTRFS_SETGET_FUNCS(file_extent_disk_bytenr, struct btrfs_file_extent_item,
		   disk_bytenr, 64);
2397 2398
BTRFS_SETGET_FUNCS(file_extent_generation, struct btrfs_file_extent_item,
		   generation, 64);
2399 2400
BTRFS_SETGET_FUNCS(file_extent_disk_num_bytes, struct btrfs_file_extent_item,
		   disk_num_bytes, 64);
2401 2402
BTRFS_SETGET_FUNCS(file_extent_offset, struct btrfs_file_extent_item,
		  offset, 64);
2403 2404
BTRFS_SETGET_FUNCS(file_extent_num_bytes, struct btrfs_file_extent_item,
		   num_bytes, 64);
C
Chris Mason 已提交
2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418
BTRFS_SETGET_FUNCS(file_extent_ram_bytes, struct btrfs_file_extent_item,
		   ram_bytes, 64);
BTRFS_SETGET_FUNCS(file_extent_compression, struct btrfs_file_extent_item,
		   compression, 8);
BTRFS_SETGET_FUNCS(file_extent_encryption, struct btrfs_file_extent_item,
		   encryption, 8);
BTRFS_SETGET_FUNCS(file_extent_other_encoding, struct btrfs_file_extent_item,
		   other_encoding, 16);

/*
 * this returns the number of bytes used by the item on disk, minus the
 * size of any extent headers.  If a file is compressed on disk, this is
 * the compressed size
 */
2419 2420 2421
static inline u32 btrfs_file_extent_inline_item_len(
						const struct extent_buffer *eb,
						struct btrfs_item *e)
C
Chris Mason 已提交
2422
{
2423
	return btrfs_item_size(eb, e) - BTRFS_FILE_EXTENT_INLINE_DATA_START;
C
Chris Mason 已提交
2424
}
2425

2426
/* btrfs_dev_stats_item */
2427 2428
static inline u64 btrfs_dev_stats_value(const struct extent_buffer *eb,
					const struct btrfs_dev_stats_item *ptr,
2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449
					int index)
{
	u64 val;

	read_extent_buffer(eb, &val,
			   offsetof(struct btrfs_dev_stats_item, values) +
			    ((unsigned long)ptr) + (index * sizeof(u64)),
			   sizeof(val));
	return val;
}

static inline void btrfs_set_dev_stats_value(struct extent_buffer *eb,
					     struct btrfs_dev_stats_item *ptr,
					     int index, u64 val)
{
	write_extent_buffer(eb, &val,
			    offsetof(struct btrfs_dev_stats_item, values) +
			     ((unsigned long)ptr) + (index * sizeof(u64)),
			    sizeof(val));
}

A
Arne Jansen 已提交
2450 2451 2452 2453 2454 2455 2456
/* btrfs_qgroup_status_item */
BTRFS_SETGET_FUNCS(qgroup_status_generation, struct btrfs_qgroup_status_item,
		   generation, 64);
BTRFS_SETGET_FUNCS(qgroup_status_version, struct btrfs_qgroup_status_item,
		   version, 64);
BTRFS_SETGET_FUNCS(qgroup_status_flags, struct btrfs_qgroup_status_item,
		   flags, 64);
J
Jan Schmidt 已提交
2457 2458
BTRFS_SETGET_FUNCS(qgroup_status_rescan, struct btrfs_qgroup_status_item,
		   rescan, 64);
A
Arne Jansen 已提交
2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492

/* btrfs_qgroup_info_item */
BTRFS_SETGET_FUNCS(qgroup_info_generation, struct btrfs_qgroup_info_item,
		   generation, 64);
BTRFS_SETGET_FUNCS(qgroup_info_rfer, struct btrfs_qgroup_info_item, rfer, 64);
BTRFS_SETGET_FUNCS(qgroup_info_rfer_cmpr, struct btrfs_qgroup_info_item,
		   rfer_cmpr, 64);
BTRFS_SETGET_FUNCS(qgroup_info_excl, struct btrfs_qgroup_info_item, excl, 64);
BTRFS_SETGET_FUNCS(qgroup_info_excl_cmpr, struct btrfs_qgroup_info_item,
		   excl_cmpr, 64);

BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_generation,
			 struct btrfs_qgroup_info_item, generation, 64);
BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_rfer, struct btrfs_qgroup_info_item,
			 rfer, 64);
BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_rfer_cmpr,
			 struct btrfs_qgroup_info_item, rfer_cmpr, 64);
BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_excl, struct btrfs_qgroup_info_item,
			 excl, 64);
BTRFS_SETGET_STACK_FUNCS(stack_qgroup_info_excl_cmpr,
			 struct btrfs_qgroup_info_item, excl_cmpr, 64);

/* btrfs_qgroup_limit_item */
BTRFS_SETGET_FUNCS(qgroup_limit_flags, struct btrfs_qgroup_limit_item,
		   flags, 64);
BTRFS_SETGET_FUNCS(qgroup_limit_max_rfer, struct btrfs_qgroup_limit_item,
		   max_rfer, 64);
BTRFS_SETGET_FUNCS(qgroup_limit_max_excl, struct btrfs_qgroup_limit_item,
		   max_excl, 64);
BTRFS_SETGET_FUNCS(qgroup_limit_rsv_rfer, struct btrfs_qgroup_limit_item,
		   rsv_rfer, 64);
BTRFS_SETGET_FUNCS(qgroup_limit_rsv_excl, struct btrfs_qgroup_limit_item,
		   rsv_excl, 64);

2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535
/* btrfs_dev_replace_item */
BTRFS_SETGET_FUNCS(dev_replace_src_devid,
		   struct btrfs_dev_replace_item, src_devid, 64);
BTRFS_SETGET_FUNCS(dev_replace_cont_reading_from_srcdev_mode,
		   struct btrfs_dev_replace_item, cont_reading_from_srcdev_mode,
		   64);
BTRFS_SETGET_FUNCS(dev_replace_replace_state, struct btrfs_dev_replace_item,
		   replace_state, 64);
BTRFS_SETGET_FUNCS(dev_replace_time_started, struct btrfs_dev_replace_item,
		   time_started, 64);
BTRFS_SETGET_FUNCS(dev_replace_time_stopped, struct btrfs_dev_replace_item,
		   time_stopped, 64);
BTRFS_SETGET_FUNCS(dev_replace_num_write_errors, struct btrfs_dev_replace_item,
		   num_write_errors, 64);
BTRFS_SETGET_FUNCS(dev_replace_num_uncorrectable_read_errors,
		   struct btrfs_dev_replace_item, num_uncorrectable_read_errors,
		   64);
BTRFS_SETGET_FUNCS(dev_replace_cursor_left, struct btrfs_dev_replace_item,
		   cursor_left, 64);
BTRFS_SETGET_FUNCS(dev_replace_cursor_right, struct btrfs_dev_replace_item,
		   cursor_right, 64);

BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_src_devid,
			 struct btrfs_dev_replace_item, src_devid, 64);
BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_cont_reading_from_srcdev_mode,
			 struct btrfs_dev_replace_item,
			 cont_reading_from_srcdev_mode, 64);
BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_replace_state,
			 struct btrfs_dev_replace_item, replace_state, 64);
BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_time_started,
			 struct btrfs_dev_replace_item, time_started, 64);
BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_time_stopped,
			 struct btrfs_dev_replace_item, time_stopped, 64);
BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_num_write_errors,
			 struct btrfs_dev_replace_item, num_write_errors, 64);
BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_num_uncorrectable_read_errors,
			 struct btrfs_dev_replace_item,
			 num_uncorrectable_read_errors, 64);
BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_cursor_left,
			 struct btrfs_dev_replace_item, cursor_left, 64);
BTRFS_SETGET_STACK_FUNCS(stack_dev_replace_cursor_right,
			 struct btrfs_dev_replace_item, cursor_right, 64);

2536 2537
/* helper function to cast into the data area of the leaf. */
#define btrfs_item_ptr(leaf, slot, type) \
2538
	((type *)(BTRFS_LEAF_DATA_OFFSET + \
2539 2540 2541
	btrfs_item_offset_nr(leaf, slot)))

#define btrfs_item_ptr_offset(leaf, slot) \
2542
	((unsigned long)(BTRFS_LEAF_DATA_OFFSET + \
2543
	btrfs_item_offset_nr(leaf, slot)))
2544

2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558
static inline u64 btrfs_name_hash(const char *name, int len)
{
       return crc32c((u32)~1, name, len);
}

/*
 * Figure the key offset of an extended inode ref
 */
static inline u64 btrfs_extref_hash(u64 parent_objectid, const char *name,
                                   int len)
{
       return (u64) crc32c(parent_objectid, name, len);
}

2559 2560 2561 2562 2563 2564
static inline bool btrfs_mixed_space_info(struct btrfs_space_info *space_info)
{
	return ((space_info->flags & BTRFS_BLOCK_GROUP_METADATA) &&
		(space_info->flags & BTRFS_BLOCK_GROUP_DATA));
}

2565 2566
static inline gfp_t btrfs_alloc_write_mask(struct address_space *mapping)
{
2567
	return mapping_gfp_constraint(mapping, ~__GFP_FS);
2568 2569
}

C
Chris Mason 已提交
2570
/* extent-tree.c */
2571

2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582
enum btrfs_inline_ref_type {
	BTRFS_REF_TYPE_INVALID =	 0,
	BTRFS_REF_TYPE_BLOCK =		 1,
	BTRFS_REF_TYPE_DATA =		 2,
	BTRFS_REF_TYPE_ANY =		 3,
};

int btrfs_get_extent_inline_ref_type(const struct extent_buffer *eb,
				     struct btrfs_extent_inline_ref *iref,
				     enum btrfs_inline_ref_type is_data);

2583
u64 btrfs_csum_bytes_to_leaves(struct btrfs_fs_info *fs_info, u64 csum_bytes);
2584

2585
static inline u64 btrfs_calc_trans_metadata_size(struct btrfs_fs_info *fs_info,
2586
						 unsigned num_items)
2587
{
2588
	return (u64)fs_info->nodesize * BTRFS_MAX_LEVEL * 2 * num_items;
2589 2590 2591 2592 2593 2594
}

/*
 * Doing a truncate won't result in new nodes or leaves, just what we need for
 * COW.
 */
2595
static inline u64 btrfs_calc_trunc_metadata_size(struct btrfs_fs_info *fs_info,
2596 2597
						 unsigned num_items)
{
2598
	return (u64)fs_info->nodesize * BTRFS_MAX_LEVEL * num_items;
2599 2600
}

2601
int btrfs_should_throttle_delayed_refs(struct btrfs_trans_handle *trans);
2602
int btrfs_check_space_for_delayed_refs(struct btrfs_trans_handle *trans);
2603 2604 2605
void btrfs_dec_block_group_reservations(struct btrfs_fs_info *fs_info,
					 const u64 start);
void btrfs_wait_block_group_reservations(struct btrfs_block_group_cache *bg);
2606 2607 2608
bool btrfs_inc_nocow_writers(struct btrfs_fs_info *fs_info, u64 bytenr);
void btrfs_dec_nocow_writers(struct btrfs_fs_info *fs_info, u64 bytenr);
void btrfs_wait_nocow_writers(struct btrfs_block_group_cache *bg);
2609
void btrfs_put_block_group(struct btrfs_block_group_cache *cache);
2610
int btrfs_run_delayed_refs(struct btrfs_trans_handle *trans,
2611
			   unsigned long count);
2612
int btrfs_async_run_delayed_refs(struct btrfs_fs_info *fs_info,
2613
				 unsigned long count, u64 transid, int wait);
2614
int btrfs_lookup_data_extent(struct btrfs_fs_info *fs_info, u64 start, u64 len);
2615
int btrfs_lookup_extent_info(struct btrfs_trans_handle *trans,
2616
			     struct btrfs_fs_info *fs_info, u64 bytenr,
2617
			     u64 offset, int metadata, u64 *refs, u64 *flags);
2618
int btrfs_pin_extent(struct btrfs_fs_info *fs_info,
2619
		     u64 bytenr, u64 num, int reserved);
2620
int btrfs_pin_extent_for_log_replay(struct btrfs_fs_info *fs_info,
2621
				    u64 bytenr, u64 num_bytes);
2622
int btrfs_exclude_logged_extents(struct btrfs_fs_info *fs_info,
2623
				 struct extent_buffer *eb);
2624
int btrfs_cross_ref_exist(struct btrfs_root *root,
2625
			  u64 objectid, u64 offset, u64 bytenr);
C
Chris Mason 已提交
2626 2627 2628
struct btrfs_block_group_cache *btrfs_lookup_block_group(
						 struct btrfs_fs_info *info,
						 u64 bytenr);
2629
void btrfs_get_block_group(struct btrfs_block_group_cache *cache);
2630
void btrfs_put_block_group(struct btrfs_block_group_cache *cache);
2631
struct extent_buffer *btrfs_alloc_tree_block(struct btrfs_trans_handle *trans,
2632 2633 2634 2635 2636
					     struct btrfs_root *root,
					     u64 parent, u64 root_objectid,
					     const struct btrfs_disk_key *key,
					     int level, u64 hint,
					     u64 empty_size);
2637 2638 2639
void btrfs_free_tree_block(struct btrfs_trans_handle *trans,
			   struct btrfs_root *root,
			   struct extent_buffer *buf,
2640
			   u64 parent, int last_ref);
2641
int btrfs_alloc_reserved_file_extent(struct btrfs_trans_handle *trans,
2642
				     struct btrfs_root *root, u64 owner,
2643 2644
				     u64 offset, u64 ram_bytes,
				     struct btrfs_key *ins);
2645 2646 2647
int btrfs_alloc_logged_file_extent(struct btrfs_trans_handle *trans,
				   u64 root_objectid, u64 owner, u64 offset,
				   struct btrfs_key *ins);
2648
int btrfs_reserve_extent(struct btrfs_root *root, u64 ram_bytes, u64 num_bytes,
2649
			 u64 min_alloc_size, u64 empty_size, u64 hint_byte,
2650
			 struct btrfs_key *ins, int is_data, int delalloc);
2651
int btrfs_inc_ref(struct btrfs_trans_handle *trans, struct btrfs_root *root,
2652
		  struct extent_buffer *buf, int full_backref);
2653
int btrfs_dec_ref(struct btrfs_trans_handle *trans, struct btrfs_root *root,
2654
		  struct extent_buffer *buf, int full_backref);
2655
int btrfs_set_disk_extent_flags(struct btrfs_trans_handle *trans,
2656
				struct btrfs_fs_info *fs_info,
2657
				u64 bytenr, u64 num_bytes, u64 flags,
2658
				int level, int is_data);
Z
Zheng Yan 已提交
2659
int btrfs_free_extent(struct btrfs_trans_handle *trans,
2660
		      struct btrfs_root *root,
A
Arne Jansen 已提交
2661
		      u64 bytenr, u64 num_bytes, u64 parent, u64 root_objectid,
2662
		      u64 owner, u64 offset);
2663

2664 2665 2666
int btrfs_free_reserved_extent(struct btrfs_fs_info *fs_info,
			       u64 start, u64 len, int delalloc);
int btrfs_free_and_pin_reserved_extent(struct btrfs_fs_info *fs_info,
2667
				       u64 start, u64 len);
2668
void btrfs_prepare_extent_commit(struct btrfs_fs_info *fs_info);
2669
int btrfs_finish_extent_commit(struct btrfs_trans_handle *trans);
C
Chris Mason 已提交
2670
int btrfs_inc_extent_ref(struct btrfs_trans_handle *trans,
2671
			 struct btrfs_root *root,
Z
Zheng Yan 已提交
2672
			 u64 bytenr, u64 num_bytes, u64 parent,
2673
			 u64 root_objectid, u64 owner, u64 offset);
2674

2675
int btrfs_start_dirty_block_groups(struct btrfs_trans_handle *trans);
C
Chris Mason 已提交
2676
int btrfs_write_dirty_block_groups(struct btrfs_trans_handle *trans,
2677
				   struct btrfs_fs_info *fs_info);
2678
int btrfs_setup_space_cache(struct btrfs_trans_handle *trans,
2679 2680
			    struct btrfs_fs_info *fs_info);
int btrfs_extent_readonly(struct btrfs_fs_info *fs_info, u64 bytenr);
C
Chris Mason 已提交
2681
int btrfs_free_block_groups(struct btrfs_fs_info *info);
2682
int btrfs_read_block_groups(struct btrfs_fs_info *info);
2683
int btrfs_can_relocate(struct btrfs_fs_info *fs_info, u64 bytenr);
2684
int btrfs_make_block_group(struct btrfs_trans_handle *trans,
2685 2686
			   u64 bytes_used, u64 type, u64 chunk_offset,
			   u64 size);
2687
void btrfs_add_raid_kobjects(struct btrfs_fs_info *fs_info);
2688
struct btrfs_trans_handle *btrfs_start_trans_remove_block_group(
2689 2690
				struct btrfs_fs_info *fs_info,
				const u64 chunk_offset);
Z
Zheng Yan 已提交
2691
int btrfs_remove_block_group(struct btrfs_trans_handle *trans,
2692
			     u64 group_start, struct extent_map *em);
2693
void btrfs_delete_unused_bgs(struct btrfs_fs_info *fs_info);
2694 2695
void btrfs_get_block_group_trimming(struct btrfs_block_group_cache *cache);
void btrfs_put_block_group_trimming(struct btrfs_block_group_cache *cache);
2696
void btrfs_create_pending_block_groups(struct btrfs_trans_handle *trans);
2697 2698 2699
u64 btrfs_data_alloc_profile(struct btrfs_fs_info *fs_info);
u64 btrfs_metadata_alloc_profile(struct btrfs_fs_info *fs_info);
u64 btrfs_system_alloc_profile(struct btrfs_fs_info *fs_info);
2700
void btrfs_clear_space_info_full(struct btrfs_fs_info *info);
M
Miao Xie 已提交
2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712

enum btrfs_reserve_flush_enum {
	/* If we are in the transaction, we can't flush anything.*/
	BTRFS_RESERVE_NO_FLUSH,
	/*
	 * Flushing delalloc may cause deadlock somewhere, in this
	 * case, use FLUSH LIMIT
	 */
	BTRFS_RESERVE_FLUSH_LIMIT,
	BTRFS_RESERVE_FLUSH_ALL,
};

2713 2714 2715 2716 2717 2718 2719 2720 2721
enum btrfs_flush_state {
	FLUSH_DELAYED_ITEMS_NR	=	1,
	FLUSH_DELAYED_ITEMS	=	2,
	FLUSH_DELALLOC		=	3,
	FLUSH_DELALLOC_WAIT	=	4,
	ALLOC_CHUNK		=	5,
	COMMIT_TRANS		=	6,
};

2722
int btrfs_alloc_data_chunk_ondemand(struct btrfs_inode *inode, u64 bytes);
2723 2724
int btrfs_check_data_free_space(struct inode *inode,
			struct extent_changeset **reserved, u64 start, u64 len);
2725 2726 2727
void btrfs_free_reserved_data_space(struct inode *inode,
			struct extent_changeset *reserved, u64 start, u64 len);
void btrfs_delalloc_release_space(struct inode *inode,
2728 2729
				  struct extent_changeset *reserved,
				  u64 start, u64 len, bool qgroup_free);
2730 2731
void btrfs_free_reserved_data_space_noquota(struct inode *inode, u64 start,
					    u64 len);
2732
void btrfs_trans_release_chunk_metadata(struct btrfs_trans_handle *trans);
2733 2734
int btrfs_subvolume_reserve_metadata(struct btrfs_root *root,
				     struct btrfs_block_rsv *rsv,
2735
				     int nitems, bool use_global_rsv);
2736
void btrfs_subvolume_release_metadata(struct btrfs_fs_info *fs_info,
2737
				      struct btrfs_block_rsv *rsv);
2738 2739
void btrfs_delalloc_release_extents(struct btrfs_inode *inode, u64 num_bytes,
				    bool qgroup_free);
J
Josef Bacik 已提交
2740

2741
int btrfs_delalloc_reserve_metadata(struct btrfs_inode *inode, u64 num_bytes);
2742 2743
void btrfs_delalloc_release_metadata(struct btrfs_inode *inode, u64 num_bytes,
				     bool qgroup_free);
2744 2745
int btrfs_delalloc_reserve_space(struct inode *inode,
			struct extent_changeset **reserved, u64 start, u64 len);
2746
void btrfs_init_block_rsv(struct btrfs_block_rsv *rsv, unsigned short type);
2747
struct btrfs_block_rsv *btrfs_alloc_block_rsv(struct btrfs_fs_info *fs_info,
2748
					      unsigned short type);
2749 2750 2751
void btrfs_init_metadata_block_rsv(struct btrfs_fs_info *fs_info,
				   struct btrfs_block_rsv *rsv,
				   unsigned short type);
2752
void btrfs_free_block_rsv(struct btrfs_fs_info *fs_info,
2753
			  struct btrfs_block_rsv *rsv);
2754
int btrfs_block_rsv_add(struct btrfs_root *root,
M
Miao Xie 已提交
2755 2756
			struct btrfs_block_rsv *block_rsv, u64 num_bytes,
			enum btrfs_reserve_flush_enum flush);
2757
int btrfs_block_rsv_check(struct btrfs_block_rsv *block_rsv, int min_factor);
2758
int btrfs_block_rsv_refill(struct btrfs_root *root,
M
Miao Xie 已提交
2759 2760
			   struct btrfs_block_rsv *block_rsv, u64 min_reserved,
			   enum btrfs_reserve_flush_enum flush);
2761
int btrfs_block_rsv_migrate(struct btrfs_block_rsv *src_rsv,
2762
			    struct btrfs_block_rsv *dst_rsv, u64 num_bytes,
2763
			    bool update_size);
2764 2765 2766
int btrfs_cond_migrate_bytes(struct btrfs_fs_info *fs_info,
			     struct btrfs_block_rsv *dest, u64 num_bytes,
			     int min_factor);
2767
void btrfs_block_rsv_release(struct btrfs_fs_info *fs_info,
2768 2769
			     struct btrfs_block_rsv *block_rsv,
			     u64 num_bytes);
2770
int btrfs_inc_block_group_ro(struct btrfs_block_group_cache *cache);
2771
void btrfs_dec_block_group_ro(struct btrfs_block_group_cache *cache);
2772
void btrfs_put_block_group_cache(struct btrfs_fs_info *info);
2773
u64 btrfs_account_ro_block_groups_free_space(struct btrfs_space_info *sinfo);
2774
int btrfs_error_unpin_extent_range(struct btrfs_fs_info *fs_info,
L
liubo 已提交
2775
				   u64 start, u64 end);
2776
int btrfs_discard_extent(struct btrfs_fs_info *fs_info, u64 bytenr,
2777
			 u64 num_bytes, u64 *actual_bytes);
2778
int btrfs_force_chunk_alloc(struct btrfs_trans_handle *trans, u64 type);
2779
int btrfs_trim_fs(struct btrfs_fs_info *fs_info, struct fstrim_range *range);
L
liubo 已提交
2780

2781
int btrfs_init_space_info(struct btrfs_fs_info *fs_info);
2782 2783
int btrfs_delayed_refs_qgroup_accounting(struct btrfs_trans_handle *trans,
					 struct btrfs_fs_info *fs_info);
2784 2785
int btrfs_start_write_no_snapshotting(struct btrfs_root *root);
void btrfs_end_write_no_snapshotting(struct btrfs_root *root);
2786
void btrfs_wait_for_snapshot_creation(struct btrfs_root *root);
2787
void check_system_chunk(struct btrfs_trans_handle *trans, const u64 type);
2788
u64 add_new_free_space(struct btrfs_block_group_cache *block_group,
2789
		       u64 start, u64 end);
2790
void btrfs_mark_bg_unused(struct btrfs_block_group_cache *bg);
2791

C
Chris Mason 已提交
2792
/* ctree.c */
2793
int btrfs_bin_search(struct extent_buffer *eb, const struct btrfs_key *key,
2794
		     int level, int *slot);
2795
int btrfs_comp_cpu_keys(const struct btrfs_key *k1, const struct btrfs_key *k2);
2796 2797 2798
int btrfs_previous_item(struct btrfs_root *root,
			struct btrfs_path *path, u64 min_objectid,
			int type);
2799 2800
int btrfs_previous_extent_item(struct btrfs_root *root,
			struct btrfs_path *path, u64 min_objectid);
2801 2802
void btrfs_set_item_key_safe(struct btrfs_fs_info *fs_info,
			     struct btrfs_path *path,
2803
			     const struct btrfs_key *new_key);
2804 2805
struct extent_buffer *btrfs_root_node(struct btrfs_root *root);
struct extent_buffer *btrfs_lock_root_node(struct btrfs_root *root);
2806
struct extent_buffer *btrfs_read_lock_root_node(struct btrfs_root *root);
2807
int btrfs_find_next_key(struct btrfs_root *root, struct btrfs_path *path,
2808
			struct btrfs_key *key, int lowest_level,
2809
			u64 min_trans);
2810
int btrfs_search_forward(struct btrfs_root *root, struct btrfs_key *min_key,
2811
			 struct btrfs_path *path,
2812
			 u64 min_trans);
2813 2814 2815 2816
enum btrfs_compare_tree_result {
	BTRFS_COMPARE_TREE_NEW,
	BTRFS_COMPARE_TREE_DELETED,
	BTRFS_COMPARE_TREE_CHANGED,
2817
	BTRFS_COMPARE_TREE_SAME,
2818
};
2819
typedef int (*btrfs_changed_cb_t)(struct btrfs_path *left_path,
2820 2821 2822 2823 2824 2825 2826
				  struct btrfs_path *right_path,
				  struct btrfs_key *key,
				  enum btrfs_compare_tree_result result,
				  void *ctx);
int btrfs_compare_trees(struct btrfs_root *left_root,
			struct btrfs_root *right_root,
			btrfs_changed_cb_t cb, void *ctx);
2827 2828 2829
int btrfs_cow_block(struct btrfs_trans_handle *trans,
		    struct btrfs_root *root, struct extent_buffer *buf,
		    struct extent_buffer *parent, int parent_slot,
2830
		    struct extent_buffer **cow_ret);
2831 2832 2833 2834
int btrfs_copy_root(struct btrfs_trans_handle *trans,
		      struct btrfs_root *root,
		      struct extent_buffer *buf,
		      struct extent_buffer **cow_ret, u64 new_root_objectid);
2835 2836
int btrfs_block_can_be_shared(struct btrfs_root *root,
			      struct extent_buffer *buf);
2837
void btrfs_extend_item(struct btrfs_fs_info *fs_info, struct btrfs_path *path,
2838
		       u32 data_size);
2839 2840
void btrfs_truncate_item(struct btrfs_fs_info *fs_info,
			 struct btrfs_path *path, u32 new_size, int from_end);
2841 2842 2843
int btrfs_split_item(struct btrfs_trans_handle *trans,
		     struct btrfs_root *root,
		     struct btrfs_path *path,
2844
		     const struct btrfs_key *new_key,
2845
		     unsigned long split_offset);
Y
Yan, Zheng 已提交
2846 2847 2848
int btrfs_duplicate_item(struct btrfs_trans_handle *trans,
			 struct btrfs_root *root,
			 struct btrfs_path *path,
2849
			 const struct btrfs_key *new_key);
2850 2851
int btrfs_find_item(struct btrfs_root *fs_root, struct btrfs_path *path,
		u64 inum, u64 ioff, u8 key_type, struct btrfs_key *found_key);
2852 2853 2854 2855
int btrfs_search_slot(struct btrfs_trans_handle *trans, struct btrfs_root *root,
		      const struct btrfs_key *key, struct btrfs_path *p,
		      int ins_len, int cow);
int btrfs_search_old_slot(struct btrfs_root *root, const struct btrfs_key *key,
J
Jan Schmidt 已提交
2856
			  struct btrfs_path *p, u64 time_seq);
2857
int btrfs_search_slot_for_read(struct btrfs_root *root,
2858 2859 2860
			       const struct btrfs_key *key,
			       struct btrfs_path *p, int find_higher,
			       int return_any);
2861
int btrfs_realloc_node(struct btrfs_trans_handle *trans,
2862
		       struct btrfs_root *root, struct extent_buffer *parent,
2863
		       int start_slot, u64 *last_ret,
2864
		       struct btrfs_key *progress);
2865
void btrfs_release_path(struct btrfs_path *p);
C
Chris Mason 已提交
2866 2867
struct btrfs_path *btrfs_alloc_path(void);
void btrfs_free_path(struct btrfs_path *p);
2868 2869 2870
void btrfs_set_path_blocking(struct btrfs_path *p);
void btrfs_unlock_up_safe(struct btrfs_path *p, int level);

2871 2872 2873 2874 2875 2876 2877 2878 2879
int btrfs_del_items(struct btrfs_trans_handle *trans, struct btrfs_root *root,
		   struct btrfs_path *path, int slot, int nr);
static inline int btrfs_del_item(struct btrfs_trans_handle *trans,
				 struct btrfs_root *root,
				 struct btrfs_path *path)
{
	return btrfs_del_items(trans, root, path, path->slots[0], 1);
}

2880
void setup_items_for_insert(struct btrfs_root *root, struct btrfs_path *path,
2881
			    const struct btrfs_key *cpu_key, u32 *data_size,
2882
			    u32 total_data, u32 total_size, int nr);
2883 2884
int btrfs_insert_item(struct btrfs_trans_handle *trans, struct btrfs_root *root,
		      const struct btrfs_key *key, void *data, u32 data_size);
2885 2886 2887
int btrfs_insert_empty_items(struct btrfs_trans_handle *trans,
			     struct btrfs_root *root,
			     struct btrfs_path *path,
2888 2889
			     const struct btrfs_key *cpu_key, u32 *data_size,
			     int nr);
2890 2891 2892 2893

static inline int btrfs_insert_empty_item(struct btrfs_trans_handle *trans,
					  struct btrfs_root *root,
					  struct btrfs_path *path,
2894
					  const struct btrfs_key *key,
2895 2896 2897 2898 2899
					  u32 data_size)
{
	return btrfs_insert_empty_items(trans, root, path, key, &data_size, 1);
}

C
Chris Mason 已提交
2900
int btrfs_next_leaf(struct btrfs_root *root, struct btrfs_path *path);
2901
int btrfs_prev_leaf(struct btrfs_root *root, struct btrfs_path *path);
J
Jan Schmidt 已提交
2902 2903
int btrfs_next_old_leaf(struct btrfs_root *root, struct btrfs_path *path,
			u64 time_seq);
2904 2905
static inline int btrfs_next_old_item(struct btrfs_root *root,
				      struct btrfs_path *p, u64 time_seq)
2906 2907 2908
{
	++p->slots[0];
	if (p->slots[0] >= btrfs_header_nritems(p->nodes[0]))
2909
		return btrfs_next_old_leaf(root, p, time_seq);
2910 2911
	return 0;
}
2912 2913 2914 2915
static inline int btrfs_next_item(struct btrfs_root *root, struct btrfs_path *p)
{
	return btrfs_next_old_item(root, p, 0);
}
2916 2917
int btrfs_leaf_free_space(struct btrfs_fs_info *fs_info,
			  struct extent_buffer *leaf);
2918 2919 2920
int __must_check btrfs_drop_snapshot(struct btrfs_root *root,
				     struct btrfs_block_rsv *block_rsv,
				     int update_ref, int for_reloc);
Y
Yan Zheng 已提交
2921 2922 2923 2924
int btrfs_drop_subtree(struct btrfs_trans_handle *trans,
			struct btrfs_root *root,
			struct extent_buffer *node,
			struct extent_buffer *parent);
2925 2926 2927
static inline int btrfs_fs_closing(struct btrfs_fs_info *fs_info)
{
	/*
2928
	 * Do it this way so we only ever do one test_bit in the normal case.
2929
	 */
2930 2931 2932 2933 2934 2935
	if (test_bit(BTRFS_FS_CLOSING_START, &fs_info->flags)) {
		if (test_bit(BTRFS_FS_CLOSING_DONE, &fs_info->flags))
			return 2;
		return 1;
	}
	return 0;
2936
}
2937 2938 2939 2940 2941 2942

/*
 * If we remount the fs to be R/O or umount the fs, the cleaner needn't do
 * anything except sleeping. This function is used to check the status of
 * the fs.
 */
2943
static inline int btrfs_need_cleaner_sleep(struct btrfs_fs_info *fs_info)
2944
{
2945
	return fs_info->sb->s_flags & SB_RDONLY || btrfs_fs_closing(fs_info);
2946 2947
}

2948 2949
static inline void free_fs_info(struct btrfs_fs_info *fs_info)
{
2950
	kfree(fs_info->balance_ctl);
2951 2952 2953 2954 2955 2956
	kfree(fs_info->delayed_root);
	kfree(fs_info->extent_root);
	kfree(fs_info->tree_root);
	kfree(fs_info->chunk_root);
	kfree(fs_info->dev_root);
	kfree(fs_info->csum_root);
2957
	kfree(fs_info->quota_root);
2958
	kfree(fs_info->uuid_root);
2959
	kfree(fs_info->free_space_root);
2960 2961
	kfree(fs_info->super_copy);
	kfree(fs_info->super_for_commit);
2962
	security_free_mnt_opts(&fs_info->security_opts);
2963
	kvfree(fs_info);
2964
}
2965

2966 2967 2968 2969 2970
/* tree mod log functions from ctree.c */
u64 btrfs_get_tree_mod_seq(struct btrfs_fs_info *fs_info,
			   struct seq_list *elem);
void btrfs_put_tree_mod_seq(struct btrfs_fs_info *fs_info,
			    struct seq_list *elem);
J
Jan Schmidt 已提交
2971
int btrfs_old_root_level(struct btrfs_root *root, u64 time_seq);
2972

C
Chris Mason 已提交
2973
/* root-item.c */
2974 2975 2976
int btrfs_add_root_ref(struct btrfs_trans_handle *trans, u64 root_id,
		       u64 ref_id, u64 dirid, u64 sequence, const char *name,
		       int name_len);
2977 2978 2979
int btrfs_del_root_ref(struct btrfs_trans_handle *trans, u64 root_id,
		       u64 ref_id, u64 dirid, u64 *sequence, const char *name,
		       int name_len);
2980
int btrfs_del_root(struct btrfs_trans_handle *trans,
2981
		   const struct btrfs_key *key);
2982 2983 2984
int btrfs_insert_root(struct btrfs_trans_handle *trans, struct btrfs_root *root,
		      const struct btrfs_key *key,
		      struct btrfs_root_item *item);
2985 2986 2987 2988
int __must_check btrfs_update_root(struct btrfs_trans_handle *trans,
				   struct btrfs_root *root,
				   struct btrfs_key *key,
				   struct btrfs_root_item *item);
2989
int btrfs_find_root(struct btrfs_root *root, const struct btrfs_key *search_key,
2990 2991
		    struct btrfs_path *path, struct btrfs_root_item *root_item,
		    struct btrfs_key *root_key);
2992
int btrfs_find_orphan_roots(struct btrfs_fs_info *fs_info);
2993 2994
void btrfs_set_root_node(struct btrfs_root_item *item,
			 struct extent_buffer *node);
2995
void btrfs_check_and_init_root_item(struct btrfs_root_item *item);
2996 2997
void btrfs_update_root_times(struct btrfs_trans_handle *trans,
			     struct btrfs_root *root);
2998

2999
/* uuid-tree.c */
3000
int btrfs_uuid_tree_add(struct btrfs_trans_handle *trans, u8 *uuid, u8 type,
3001
			u64 subid);
3002
int btrfs_uuid_tree_remove(struct btrfs_trans_handle *trans, u8 *uuid, u8 type,
3003
			u64 subid);
3004 3005 3006
int btrfs_uuid_tree_iterate(struct btrfs_fs_info *fs_info,
			    int (*check_func)(struct btrfs_fs_info *, u8 *, u8,
					      u64));
3007

C
Chris Mason 已提交
3008
/* dir-item.c */
C
Chris Mason 已提交
3009 3010
int btrfs_check_dir_item_collision(struct btrfs_root *root, u64 dir,
			  const char *name, int name_len);
3011
int btrfs_insert_dir_item(struct btrfs_trans_handle *trans, const char *name,
3012
			  int name_len, struct btrfs_inode *dir,
3013
			  struct btrfs_key *location, u8 type, u64 index);
3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024
struct btrfs_dir_item *btrfs_lookup_dir_item(struct btrfs_trans_handle *trans,
					     struct btrfs_root *root,
					     struct btrfs_path *path, u64 dir,
					     const char *name, int name_len,
					     int mod);
struct btrfs_dir_item *
btrfs_lookup_dir_index_item(struct btrfs_trans_handle *trans,
			    struct btrfs_root *root,
			    struct btrfs_path *path, u64 dir,
			    u64 objectid, const char *name, int name_len,
			    int mod);
3025 3026 3027 3028
struct btrfs_dir_item *
btrfs_search_dir_index_item(struct btrfs_root *root,
			    struct btrfs_path *path, u64 dirid,
			    const char *name, int name_len);
3029 3030 3031 3032
int btrfs_delete_one_dir_name(struct btrfs_trans_handle *trans,
			      struct btrfs_root *root,
			      struct btrfs_path *path,
			      struct btrfs_dir_item *di);
J
Josef Bacik 已提交
3033
int btrfs_insert_xattr_item(struct btrfs_trans_handle *trans,
3034 3035 3036 3037
			    struct btrfs_root *root,
			    struct btrfs_path *path, u64 objectid,
			    const char *name, u16 name_len,
			    const void *data, u16 data_len);
J
Josef Bacik 已提交
3038 3039 3040 3041 3042
struct btrfs_dir_item *btrfs_lookup_xattr(struct btrfs_trans_handle *trans,
					  struct btrfs_root *root,
					  struct btrfs_path *path, u64 dir,
					  const char *name, u16 name_len,
					  int mod);
3043
struct btrfs_dir_item *btrfs_match_dir_item_name(struct btrfs_fs_info *fs_info,
3044 3045 3046
						 struct btrfs_path *path,
						 const char *name,
						 int name_len);
3047 3048 3049 3050 3051 3052

/* orphan.c */
int btrfs_insert_orphan_item(struct btrfs_trans_handle *trans,
			     struct btrfs_root *root, u64 offset);
int btrfs_del_orphan_item(struct btrfs_trans_handle *trans,
			  struct btrfs_root *root, u64 offset);
3053
int btrfs_find_orphan_item(struct btrfs_root *root, u64 offset);
3054

C
Chris Mason 已提交
3055
/* inode-item.c */
3056 3057 3058
int btrfs_insert_inode_ref(struct btrfs_trans_handle *trans,
			   struct btrfs_root *root,
			   const char *name, int name_len,
3059
			   u64 inode_objectid, u64 ref_objectid, u64 index);
3060 3061 3062
int btrfs_del_inode_ref(struct btrfs_trans_handle *trans,
			   struct btrfs_root *root,
			   const char *name, int name_len,
3063
			   u64 inode_objectid, u64 ref_objectid, u64 *index);
3064 3065 3066
int btrfs_insert_empty_inode(struct btrfs_trans_handle *trans,
			     struct btrfs_root *root,
			     struct btrfs_path *path, u64 objectid);
3067
int btrfs_lookup_inode(struct btrfs_trans_handle *trans, struct btrfs_root
3068 3069
		       *root, struct btrfs_path *path,
		       struct btrfs_key *location, int mod);
C
Chris Mason 已提交
3070

M
Mark Fasheh 已提交
3071 3072 3073 3074 3075 3076 3077 3078
struct btrfs_inode_extref *
btrfs_lookup_inode_extref(struct btrfs_trans_handle *trans,
			  struct btrfs_root *root,
			  struct btrfs_path *path,
			  const char *name, int name_len,
			  u64 inode_objectid, u64 ref_objectid, int ins_len,
			  int cow);

3079 3080 3081 3082
int btrfs_find_name_in_backref(struct extent_buffer *leaf, int slot,
			       const char *name,
			       int name_len, struct btrfs_inode_ref **ref_ret);
int btrfs_find_name_in_ext_backref(struct extent_buffer *leaf, int slot,
M
Mark Fasheh 已提交
3083 3084 3085 3086
				   u64 ref_objectid, const char *name,
				   int name_len,
				   struct btrfs_inode_extref **extref_ret);

C
Chris Mason 已提交
3087
/* file-item.c */
3088
struct btrfs_dio_private;
3089
int btrfs_del_csums(struct btrfs_trans_handle *trans,
3090
		    struct btrfs_fs_info *fs_info, u64 bytenr, u64 len);
3091 3092
blk_status_t btrfs_lookup_bio_sums(struct inode *inode, struct bio *bio, u32 *dst);
blk_status_t btrfs_lookup_bio_sums_dio(struct inode *inode, struct bio *bio,
3093
			      u64 logical_offset);
C
Chris Mason 已提交
3094
int btrfs_insert_file_extent(struct btrfs_trans_handle *trans,
C
Chris Mason 已提交
3095 3096 3097 3098 3099
			     struct btrfs_root *root,
			     u64 objectid, u64 pos,
			     u64 disk_offset, u64 disk_num_bytes,
			     u64 num_bytes, u64 offset, u64 ram_bytes,
			     u8 compression, u8 encryption, u16 other_encoding);
C
Chris Mason 已提交
3100 3101 3102
int btrfs_lookup_file_extent(struct btrfs_trans_handle *trans,
			     struct btrfs_root *root,
			     struct btrfs_path *path, u64 objectid,
3103
			     u64 bytenr, int mod);
3104
int btrfs_csum_file_blocks(struct btrfs_trans_handle *trans,
3105
			   struct btrfs_root *root,
3106
			   struct btrfs_ordered_sum *sums);
3107
blk_status_t btrfs_csum_one_bio(struct inode *inode, struct bio *bio,
3108
		       u64 file_start, int contig);
A
Arne Jansen 已提交
3109 3110
int btrfs_lookup_csums_range(struct btrfs_root *root, u64 start, u64 end,
			     struct list_head *list, int search_commit);
3111
void btrfs_extent_item_to_extent_map(struct btrfs_inode *inode,
3112 3113 3114 3115 3116
				     const struct btrfs_path *path,
				     struct btrfs_file_extent_item *fi,
				     const bool new_inline,
				     struct extent_map *em);

C
Chris Mason 已提交
3117
/* inode.c */
3118 3119 3120
struct extent_map *btrfs_get_extent_fiemap(struct btrfs_inode *inode,
		struct page *page, size_t pg_offset, u64 start,
		u64 len, int create);
3121
noinline int can_nocow_extent(struct inode *inode, u64 offset, u64 *len,
3122 3123
			      u64 *orig_start, u64 *orig_block_len,
			      u64 *ram_bytes);
3124

3125 3126
void __btrfs_del_delalloc_inode(struct btrfs_root *root,
				struct btrfs_inode *inode);
3127
struct inode *btrfs_lookup_dentry(struct inode *dir, struct dentry *dentry);
3128
int btrfs_set_inode_index(struct btrfs_inode *dir, u64 *index);
3129 3130
int btrfs_unlink_inode(struct btrfs_trans_handle *trans,
		       struct btrfs_root *root,
3131
		       struct btrfs_inode *dir, struct btrfs_inode *inode,
3132 3133
		       const char *name, int name_len);
int btrfs_add_link(struct btrfs_trans_handle *trans,
3134
		   struct btrfs_inode *parent_inode, struct btrfs_inode *inode,
3135
		   const char *name, int name_len, int add_backref, u64 index);
3136
int btrfs_delete_subvolume(struct inode *dir, struct dentry *dentry);
3137
int btrfs_truncate_block(struct inode *inode, loff_t from, loff_t len,
J
Josef Bacik 已提交
3138
			int front);
3139 3140 3141 3142 3143
int btrfs_truncate_inode_items(struct btrfs_trans_handle *trans,
			       struct btrfs_root *root,
			       struct inode *inode, u64 new_size,
			       u32 min_type);

3144
int btrfs_start_delalloc_inodes(struct btrfs_root *root);
3145
int btrfs_start_delalloc_roots(struct btrfs_fs_info *fs_info, int nr);
3146
int btrfs_set_extent_delalloc(struct inode *inode, u64 start, u64 end,
3147
			      unsigned int extra_bits,
3148
			      struct extent_state **cached_state, int dedupe);
3149
int btrfs_create_subvol_root(struct btrfs_trans_handle *trans,
3150 3151 3152
			     struct btrfs_root *new_root,
			     struct btrfs_root *parent_root,
			     u64 new_dirid);
3153
int btrfs_merge_bio_hook(struct page *page, unsigned long offset,
3154 3155
			 size_t size, struct bio *bio,
			 unsigned long bio_flags);
3156
void btrfs_set_range_writeback(struct extent_io_tree *tree, u64 start, u64 end);
3157
vm_fault_t btrfs_page_mkwrite(struct vm_fault *vmf);
C
Chris Mason 已提交
3158
int btrfs_readpage(struct file *file, struct page *page);
A
Al Viro 已提交
3159
void btrfs_evict_inode(struct inode *inode);
3160
int btrfs_write_inode(struct inode *inode, struct writeback_control *wbc);
C
Chris Mason 已提交
3161 3162
struct inode *btrfs_alloc_inode(struct super_block *sb);
void btrfs_destroy_inode(struct inode *inode);
3163
int btrfs_drop_inode(struct inode *inode);
3164
int __init btrfs_init_cachep(void);
3165
void __cold btrfs_destroy_cachep(void);
B
Balaji Rao 已提交
3166
struct inode *btrfs_iget(struct super_block *s, struct btrfs_key *location,
3167
			 struct btrfs_root *root, int *was_new);
3168
struct extent_map *btrfs_get_extent(struct btrfs_inode *inode,
3169 3170
				    struct page *page, size_t pg_offset,
				    u64 start, u64 end, int create);
3171 3172 3173
int btrfs_update_inode(struct btrfs_trans_handle *trans,
			      struct btrfs_root *root,
			      struct inode *inode);
3174 3175
int btrfs_update_inode_fallback(struct btrfs_trans_handle *trans,
				struct btrfs_root *root, struct inode *inode);
3176 3177
int btrfs_orphan_add(struct btrfs_trans_handle *trans,
		struct btrfs_inode *inode);
3178
int btrfs_orphan_cleanup(struct btrfs_root *root);
3179
int btrfs_cont_expand(struct inode *inode, loff_t oldsize, loff_t size);
Y
Yan, Zheng 已提交
3180
void btrfs_add_delayed_iput(struct inode *inode);
3181
void btrfs_run_delayed_iputs(struct btrfs_fs_info *fs_info);
3182 3183 3184
int btrfs_prealloc_file_range(struct inode *inode, int mode,
			      u64 start, u64 num_bytes, u64 min_size,
			      loff_t actual_len, u64 *alloc_hint);
3185 3186 3187 3188
int btrfs_prealloc_file_range_trans(struct inode *inode,
				    struct btrfs_trans_handle *trans, int mode,
				    u64 start, u64 num_bytes, u64 min_size,
				    loff_t actual_len, u64 *alloc_hint);
3189
extern const struct dentry_operations btrfs_dentry_operations;
C
Christoph Hellwig 已提交
3190 3191 3192

/* ioctl.c */
long btrfs_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
3193
long btrfs_compat_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
3194
int btrfs_ioctl_get_supported_features(void __user *arg);
3195
void btrfs_sync_inode_flags_to_i_flags(struct inode *inode);
3196
int btrfs_is_empty_uuid(u8 *uuid);
C
Chris Mason 已提交
3197 3198 3199
int btrfs_defrag_file(struct inode *inode, struct file *file,
		      struct btrfs_ioctl_defrag_range_args *range,
		      u64 newer_than, unsigned long max_pages);
3200 3201 3202
void btrfs_get_block_group_info(struct list_head *groups_list,
				struct btrfs_ioctl_space_info *space);
void btrfs_update_ioctl_balance_args(struct btrfs_fs_info *fs_info,
3203
			       struct btrfs_ioctl_balance_args *bargs);
M
Miklos Szeredi 已提交
3204 3205 3206
int btrfs_dedupe_file_range(struct file *src_file, loff_t src_loff,
			    struct file *dst_file, loff_t dst_loff,
			    u64 olen);
3207

C
Chris Mason 已提交
3208
/* file.c */
3209
int __init btrfs_auto_defrag_init(void);
3210
void __cold btrfs_auto_defrag_exit(void);
C
Chris Mason 已提交
3211
int btrfs_add_inode_defrag(struct btrfs_trans_handle *trans,
3212
			   struct btrfs_inode *inode);
C
Chris Mason 已提交
3213
int btrfs_run_defrag_inodes(struct btrfs_fs_info *fs_info);
3214
void btrfs_cleanup_defrag_inodes(struct btrfs_fs_info *fs_info);
3215
int btrfs_sync_file(struct file *file, loff_t start, loff_t end, int datasync);
3216
void btrfs_drop_extent_cache(struct btrfs_inode *inode, u64 start, u64 end,
3217
			     int skip_pinned);
3218
extern const struct file_operations btrfs_file_operations;
J
Josef Bacik 已提交
3219 3220 3221
int __btrfs_drop_extents(struct btrfs_trans_handle *trans,
			 struct btrfs_root *root, struct inode *inode,
			 struct btrfs_path *path, u64 start, u64 end,
3222 3223 3224 3225
			 u64 *drop_end, int drop_cache,
			 int replace_extent,
			 u32 extent_item_size,
			 int *key_inserted);
J
Josef Bacik 已提交
3226 3227
int btrfs_drop_extents(struct btrfs_trans_handle *trans,
		       struct btrfs_root *root, struct inode *inode, u64 start,
3228
		       u64 end, int drop_cache);
Y
Yan Zheng 已提交
3229
int btrfs_mark_extent_written(struct btrfs_trans_handle *trans,
3230
			      struct btrfs_inode *inode, u64 start, u64 end);
S
Sage Weil 已提交
3231
int btrfs_release_file(struct inode *inode, struct file *file);
3232 3233
int btrfs_dirty_pages(struct inode *inode, struct page **pages,
		      size_t num_pages, loff_t pos, size_t write_bytes,
3234
		      struct extent_state **cached);
3235
int btrfs_fdatawrite_range(struct inode *inode, loff_t start, loff_t end);
3236 3237
int btrfs_clone_file_range(struct file *file_in, loff_t pos_in,
			   struct file *file_out, loff_t pos_out, u64 len);
S
Sage Weil 已提交
3238

3239 3240
/* tree-defrag.c */
int btrfs_defrag_leaves(struct btrfs_trans_handle *trans,
3241
			struct btrfs_root *root);
3242 3243

/* sysfs.c */
3244
int __init btrfs_init_sysfs(void);
3245
void __cold btrfs_exit_sysfs(void);
3246
int btrfs_sysfs_add_mounted(struct btrfs_fs_info *fs_info);
3247
void btrfs_sysfs_remove_mounted(struct btrfs_fs_info *fs_info);
3248

3249
/* super.c */
3250
int btrfs_parse_options(struct btrfs_fs_info *info, char *options,
3251
			unsigned long new_flags);
S
Sage Weil 已提交
3252
int btrfs_sync_fs(struct super_block *sb, int wait);
3253

3254
static inline __printf(2, 3) __cold
3255 3256 3257 3258
void btrfs_no_printk(const struct btrfs_fs_info *fs_info, const char *fmt, ...)
{
}

3259 3260
#ifdef CONFIG_PRINTK
__printf(2, 3)
3261
__cold
3262
void btrfs_printk(const struct btrfs_fs_info *fs_info, const char *fmt, ...);
3263
#else
3264 3265
#define btrfs_printk(fs_info, fmt, args...) \
	btrfs_no_printk(fs_info, fmt, ##args)
3266 3267
#endif

3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280 3281
#define btrfs_emerg(fs_info, fmt, args...) \
	btrfs_printk(fs_info, KERN_EMERG fmt, ##args)
#define btrfs_alert(fs_info, fmt, args...) \
	btrfs_printk(fs_info, KERN_ALERT fmt, ##args)
#define btrfs_crit(fs_info, fmt, args...) \
	btrfs_printk(fs_info, KERN_CRIT fmt, ##args)
#define btrfs_err(fs_info, fmt, args...) \
	btrfs_printk(fs_info, KERN_ERR fmt, ##args)
#define btrfs_warn(fs_info, fmt, args...) \
	btrfs_printk(fs_info, KERN_WARNING fmt, ##args)
#define btrfs_notice(fs_info, fmt, args...) \
	btrfs_printk(fs_info, KERN_NOTICE fmt, ##args)
#define btrfs_info(fs_info, fmt, args...) \
	btrfs_printk(fs_info, KERN_INFO fmt, ##args)
3282

3283 3284 3285 3286 3287 3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300
/*
 * Wrappers that use printk_in_rcu
 */
#define btrfs_emerg_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_in_rcu(fs_info, KERN_EMERG fmt, ##args)
#define btrfs_alert_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_in_rcu(fs_info, KERN_ALERT fmt, ##args)
#define btrfs_crit_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_in_rcu(fs_info, KERN_CRIT fmt, ##args)
#define btrfs_err_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_in_rcu(fs_info, KERN_ERR fmt, ##args)
#define btrfs_warn_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_in_rcu(fs_info, KERN_WARNING fmt, ##args)
#define btrfs_notice_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_in_rcu(fs_info, KERN_NOTICE fmt, ##args)
#define btrfs_info_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_in_rcu(fs_info, KERN_INFO fmt, ##args)

3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318
/*
 * Wrappers that use a ratelimited printk_in_rcu
 */
#define btrfs_emerg_rl_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_rl_in_rcu(fs_info, KERN_EMERG fmt, ##args)
#define btrfs_alert_rl_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_rl_in_rcu(fs_info, KERN_ALERT fmt, ##args)
#define btrfs_crit_rl_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_rl_in_rcu(fs_info, KERN_CRIT fmt, ##args)
#define btrfs_err_rl_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_rl_in_rcu(fs_info, KERN_ERR fmt, ##args)
#define btrfs_warn_rl_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_rl_in_rcu(fs_info, KERN_WARNING fmt, ##args)
#define btrfs_notice_rl_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_rl_in_rcu(fs_info, KERN_NOTICE fmt, ##args)
#define btrfs_info_rl_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_rl_in_rcu(fs_info, KERN_INFO fmt, ##args)

3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335
/*
 * Wrappers that use a ratelimited printk
 */
#define btrfs_emerg_rl(fs_info, fmt, args...) \
	btrfs_printk_ratelimited(fs_info, KERN_EMERG fmt, ##args)
#define btrfs_alert_rl(fs_info, fmt, args...) \
	btrfs_printk_ratelimited(fs_info, KERN_ALERT fmt, ##args)
#define btrfs_crit_rl(fs_info, fmt, args...) \
	btrfs_printk_ratelimited(fs_info, KERN_CRIT fmt, ##args)
#define btrfs_err_rl(fs_info, fmt, args...) \
	btrfs_printk_ratelimited(fs_info, KERN_ERR fmt, ##args)
#define btrfs_warn_rl(fs_info, fmt, args...) \
	btrfs_printk_ratelimited(fs_info, KERN_WARNING fmt, ##args)
#define btrfs_notice_rl(fs_info, fmt, args...) \
	btrfs_printk_ratelimited(fs_info, KERN_NOTICE fmt, ##args)
#define btrfs_info_rl(fs_info, fmt, args...) \
	btrfs_printk_ratelimited(fs_info, KERN_INFO fmt, ##args)
J
Jeff Mahoney 已提交
3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364

#if defined(CONFIG_DYNAMIC_DEBUG)
#define btrfs_debug(fs_info, fmt, args...)				\
do {									\
        DEFINE_DYNAMIC_DEBUG_METADATA(descriptor, fmt);         	\
        if (unlikely(descriptor.flags & _DPRINTK_FLAGS_PRINT))  	\
		btrfs_printk(fs_info, KERN_DEBUG fmt, ##args);		\
} while (0)
#define btrfs_debug_in_rcu(fs_info, fmt, args...) 			\
do {									\
        DEFINE_DYNAMIC_DEBUG_METADATA(descriptor, fmt); 	        \
        if (unlikely(descriptor.flags & _DPRINTK_FLAGS_PRINT)) 		\
		btrfs_printk_in_rcu(fs_info, KERN_DEBUG fmt, ##args);	\
} while (0)
#define btrfs_debug_rl_in_rcu(fs_info, fmt, args...)			\
do {									\
        DEFINE_DYNAMIC_DEBUG_METADATA(descriptor, fmt);         	\
        if (unlikely(descriptor.flags & _DPRINTK_FLAGS_PRINT))  	\
		btrfs_printk_rl_in_rcu(fs_info, KERN_DEBUG fmt,		\
				       ##args);\
} while (0)
#define btrfs_debug_rl(fs_info, fmt, args...) 				\
do {									\
        DEFINE_DYNAMIC_DEBUG_METADATA(descriptor, fmt);         	\
        if (unlikely(descriptor.flags & _DPRINTK_FLAGS_PRINT))  	\
		btrfs_printk_ratelimited(fs_info, KERN_DEBUG fmt,	\
					 ##args);			\
} while (0)
#elif defined(DEBUG)
3365 3366
#define btrfs_debug(fs_info, fmt, args...) \
	btrfs_printk(fs_info, KERN_DEBUG fmt, ##args)
3367 3368
#define btrfs_debug_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_in_rcu(fs_info, KERN_DEBUG fmt, ##args)
3369 3370
#define btrfs_debug_rl_in_rcu(fs_info, fmt, args...) \
	btrfs_printk_rl_in_rcu(fs_info, KERN_DEBUG fmt, ##args)
3371 3372
#define btrfs_debug_rl(fs_info, fmt, args...) \
	btrfs_printk_ratelimited(fs_info, KERN_DEBUG fmt, ##args)
3373 3374
#else
#define btrfs_debug(fs_info, fmt, args...) \
3375
	btrfs_no_printk(fs_info, KERN_DEBUG fmt, ##args)
3376
#define btrfs_debug_in_rcu(fs_info, fmt, args...) \
3377
	btrfs_no_printk_in_rcu(fs_info, KERN_DEBUG fmt, ##args)
3378
#define btrfs_debug_rl_in_rcu(fs_info, fmt, args...) \
3379
	btrfs_no_printk_in_rcu(fs_info, KERN_DEBUG fmt, ##args)
3380
#define btrfs_debug_rl(fs_info, fmt, args...) \
3381
	btrfs_no_printk(fs_info, KERN_DEBUG fmt, ##args)
3382
#endif
3383

3384 3385 3386 3387
#define btrfs_printk_in_rcu(fs_info, fmt, args...)	\
do {							\
	rcu_read_lock();				\
	btrfs_printk(fs_info, fmt, ##args);		\
3388 3389 3390 3391 3392 3393 3394
	rcu_read_unlock();				\
} while (0)

#define btrfs_no_printk_in_rcu(fs_info, fmt, args...)	\
do {							\
	rcu_read_lock();				\
	btrfs_no_printk(fs_info, fmt, ##args);		\
3395 3396 3397
	rcu_read_unlock();				\
} while (0)

3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411 3412 3413
#define btrfs_printk_ratelimited(fs_info, fmt, args...)		\
do {								\
	static DEFINE_RATELIMIT_STATE(_rs,			\
		DEFAULT_RATELIMIT_INTERVAL,			\
		DEFAULT_RATELIMIT_BURST);       		\
	if (__ratelimit(&_rs))					\
		btrfs_printk(fs_info, fmt, ##args);		\
} while (0)

#define btrfs_printk_rl_in_rcu(fs_info, fmt, args...)		\
do {								\
	rcu_read_lock();					\
	btrfs_printk_ratelimited(fs_info, fmt, ##args);		\
	rcu_read_unlock();					\
} while (0)

J
Josef Bacik 已提交
3414 3415
#ifdef CONFIG_BTRFS_ASSERT

3416
__cold
3417
static inline void assfail(const char *expr, const char *file, int line)
J
Josef Bacik 已提交
3418
{
3419
	pr_err("assertion failed: %s, file: %s, line: %d\n",
J
Josef Bacik 已提交
3420 3421 3422 3423 3424 3425 3426 3427 3428 3429
	       expr, file, line);
	BUG();
}

#define ASSERT(expr)	\
	(likely(expr) ? (void)0 : assfail(#expr, __FILE__, __LINE__))
#else
#define ASSERT(expr)	((void)0)
#endif

3430 3431 3432 3433 3434 3435 3436
__cold
static inline void btrfs_print_v0_err(struct btrfs_fs_info *fs_info)
{
	btrfs_err(fs_info,
"Unsupported V0 extent filesystem detected. Aborting. Please re-create your filesystem with a newer kernel");
}

3437
__printf(5, 6)
3438
__cold
3439
void __btrfs_handle_fs_error(struct btrfs_fs_info *fs_info, const char *function,
J
Jeff Mahoney 已提交
3440
		     unsigned int line, int errno, const char *fmt, ...);
L
liubo 已提交
3441

3442
const char *btrfs_decode_error(int errno);
3443

3444
__cold
3445
void __btrfs_abort_transaction(struct btrfs_trans_handle *trans,
3446
			       const char *function,
3447 3448
			       unsigned int line, int errno);

3449 3450 3451 3452
/*
 * Call btrfs_abort_transaction as early as possible when an error condition is
 * detected, that way the exact line number is reported.
 */
3453
#define btrfs_abort_transaction(trans, errno)		\
3454 3455 3456
do {								\
	/* Report first abort since mount */			\
	if (!test_and_set_bit(BTRFS_FS_STATE_TRANS_ABORTED,	\
3457
			&((trans)->fs_info->fs_state))) {	\
3458 3459 3460 3461 3462
		if ((errno) != -EIO) {				\
			WARN(1, KERN_DEBUG				\
			"BTRFS: Transaction aborted (error %d)\n",	\
			(errno));					\
		} else {						\
3463 3464
			btrfs_debug((trans)->fs_info,			\
				    "Transaction aborted (error %d)", \
3465 3466
				  (errno));			\
		}						\
3467
	}							\
3468
	__btrfs_abort_transaction((trans), __func__,		\
3469 3470 3471 3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494
				  __LINE__, (errno));		\
} while (0)

#define btrfs_handle_fs_error(fs_info, errno, fmt, args...)		\
do {								\
	__btrfs_handle_fs_error((fs_info), __func__, __LINE__,	\
			  (errno), fmt, ##args);		\
} while (0)

__printf(5, 6)
__cold
void __btrfs_panic(struct btrfs_fs_info *fs_info, const char *function,
		   unsigned int line, int errno, const char *fmt, ...);
/*
 * If BTRFS_MOUNT_PANIC_ON_FATAL_ERROR is in mount_opt, __btrfs_panic
 * will panic().  Otherwise we BUG() here.
 */
#define btrfs_panic(fs_info, errno, fmt, args...)			\
do {									\
	__btrfs_panic(fs_info, __func__, __LINE__, errno, fmt, ##args);	\
	BUG();								\
} while (0)


/* compatibility and incompatibility defines */

3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506
#define btrfs_set_fs_incompat(__fs_info, opt) \
	__btrfs_set_fs_incompat((__fs_info), BTRFS_FEATURE_INCOMPAT_##opt)

static inline void __btrfs_set_fs_incompat(struct btrfs_fs_info *fs_info,
					   u64 flag)
{
	struct btrfs_super_block *disk_super;
	u64 features;

	disk_super = fs_info->super_copy;
	features = btrfs_super_incompat_flags(disk_super);
	if (!(features & flag)) {
3507 3508 3509 3510 3511
		spin_lock(&fs_info->super_lock);
		features = btrfs_super_incompat_flags(disk_super);
		if (!(features & flag)) {
			features |= flag;
			btrfs_set_super_incompat_flags(disk_super, features);
3512
			btrfs_info(fs_info, "setting %llu feature flag",
3513 3514 3515
					 flag);
		}
		spin_unlock(&fs_info->super_lock);
3516 3517 3518
	}
}

3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542
#define btrfs_clear_fs_incompat(__fs_info, opt) \
	__btrfs_clear_fs_incompat((__fs_info), BTRFS_FEATURE_INCOMPAT_##opt)

static inline void __btrfs_clear_fs_incompat(struct btrfs_fs_info *fs_info,
					     u64 flag)
{
	struct btrfs_super_block *disk_super;
	u64 features;

	disk_super = fs_info->super_copy;
	features = btrfs_super_incompat_flags(disk_super);
	if (features & flag) {
		spin_lock(&fs_info->super_lock);
		features = btrfs_super_incompat_flags(disk_super);
		if (features & flag) {
			features &= ~flag;
			btrfs_set_super_incompat_flags(disk_super, features);
			btrfs_info(fs_info, "clearing %llu feature flag",
					 flag);
		}
		spin_unlock(&fs_info->super_lock);
	}
}

3543 3544 3545
#define btrfs_fs_incompat(fs_info, opt) \
	__btrfs_fs_incompat((fs_info), BTRFS_FEATURE_INCOMPAT_##opt)

3546
static inline bool __btrfs_fs_incompat(struct btrfs_fs_info *fs_info, u64 flag)
3547 3548 3549 3550 3551 3552
{
	struct btrfs_super_block *disk_super;
	disk_super = fs_info->super_copy;
	return !!(btrfs_super_incompat_flags(disk_super) & flag);
}

3553 3554 3555 3556 3557 3558 3559 3560 3561 3562 3563 3564 3565 3566 3567 3568 3569 3570 3571 3572 3573 3574 3575 3576 3577 3578 3579 3580 3581 3582 3583 3584 3585 3586 3587 3588 3589 3590 3591 3592 3593 3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610
#define btrfs_set_fs_compat_ro(__fs_info, opt) \
	__btrfs_set_fs_compat_ro((__fs_info), BTRFS_FEATURE_COMPAT_RO_##opt)

static inline void __btrfs_set_fs_compat_ro(struct btrfs_fs_info *fs_info,
					    u64 flag)
{
	struct btrfs_super_block *disk_super;
	u64 features;

	disk_super = fs_info->super_copy;
	features = btrfs_super_compat_ro_flags(disk_super);
	if (!(features & flag)) {
		spin_lock(&fs_info->super_lock);
		features = btrfs_super_compat_ro_flags(disk_super);
		if (!(features & flag)) {
			features |= flag;
			btrfs_set_super_compat_ro_flags(disk_super, features);
			btrfs_info(fs_info, "setting %llu ro feature flag",
				   flag);
		}
		spin_unlock(&fs_info->super_lock);
	}
}

#define btrfs_clear_fs_compat_ro(__fs_info, opt) \
	__btrfs_clear_fs_compat_ro((__fs_info), BTRFS_FEATURE_COMPAT_RO_##opt)

static inline void __btrfs_clear_fs_compat_ro(struct btrfs_fs_info *fs_info,
					      u64 flag)
{
	struct btrfs_super_block *disk_super;
	u64 features;

	disk_super = fs_info->super_copy;
	features = btrfs_super_compat_ro_flags(disk_super);
	if (features & flag) {
		spin_lock(&fs_info->super_lock);
		features = btrfs_super_compat_ro_flags(disk_super);
		if (features & flag) {
			features &= ~flag;
			btrfs_set_super_compat_ro_flags(disk_super, features);
			btrfs_info(fs_info, "clearing %llu ro feature flag",
				   flag);
		}
		spin_unlock(&fs_info->super_lock);
	}
}

#define btrfs_fs_compat_ro(fs_info, opt) \
	__btrfs_fs_compat_ro((fs_info), BTRFS_FEATURE_COMPAT_RO_##opt)

static inline int __btrfs_fs_compat_ro(struct btrfs_fs_info *fs_info, u64 flag)
{
	struct btrfs_super_block *disk_super;
	disk_super = fs_info->super_copy;
	return !!(btrfs_super_compat_ro_flags(disk_super) & flag);
}

J
Josef Bacik 已提交
3611
/* acl.c */
C
Chris Mason 已提交
3612
#ifdef CONFIG_BTRFS_FS_POSIX_ACL
3613
struct posix_acl *btrfs_get_acl(struct inode *inode, int type);
3614
int btrfs_set_acl(struct inode *inode, struct posix_acl *acl, int type);
3615 3616
int btrfs_init_acl(struct btrfs_trans_handle *trans,
		   struct inode *inode, struct inode *dir);
3617
#else
3618
#define btrfs_get_acl NULL
3619
#define btrfs_set_acl NULL
3620 3621 3622 3623 3624 3625
static inline int btrfs_init_acl(struct btrfs_trans_handle *trans,
				 struct inode *inode, struct inode *dir)
{
	return 0;
}
#endif
J
Josef Bacik 已提交
3626

3627
/* relocation.c */
3628
int btrfs_relocate_block_group(struct btrfs_fs_info *fs_info, u64 group_start);
3629 3630 3631 3632 3633 3634
int btrfs_init_reloc_root(struct btrfs_trans_handle *trans,
			  struct btrfs_root *root);
int btrfs_update_reloc_root(struct btrfs_trans_handle *trans,
			    struct btrfs_root *root);
int btrfs_recover_relocation(struct btrfs_root *root);
int btrfs_reloc_clone_csums(struct inode *inode, u64 file_pos, u64 len);
3635 3636 3637
int btrfs_reloc_cow_block(struct btrfs_trans_handle *trans,
			  struct btrfs_root *root, struct extent_buffer *buf,
			  struct extent_buffer *cow);
3638
void btrfs_reloc_pre_snapshot(struct btrfs_pending_snapshot *pending,
3639
			      u64 *bytes_to_reserve);
3640
int btrfs_reloc_post_snapshot(struct btrfs_trans_handle *trans,
3641
			      struct btrfs_pending_snapshot *pending);
A
Arne Jansen 已提交
3642 3643

/* scrub.c */
3644 3645
int btrfs_scrub_dev(struct btrfs_fs_info *fs_info, u64 devid, u64 start,
		    u64 end, struct btrfs_scrub_progress *progress,
3646
		    int readonly, int is_dev_replace);
3647 3648
void btrfs_scrub_pause(struct btrfs_fs_info *fs_info);
void btrfs_scrub_continue(struct btrfs_fs_info *fs_info);
3649 3650 3651
int btrfs_scrub_cancel(struct btrfs_fs_info *info);
int btrfs_scrub_cancel_dev(struct btrfs_fs_info *info,
			   struct btrfs_device *dev);
3652
int btrfs_scrub_progress(struct btrfs_fs_info *fs_info, u64 devid,
A
Arne Jansen 已提交
3653
			 struct btrfs_scrub_progress *progress);
3654 3655 3656 3657 3658 3659
static inline void btrfs_init_full_stripe_locks_tree(
			struct btrfs_full_stripe_locks_tree *locks_root)
{
	locks_root->root = RB_ROOT;
	mutex_init(&locks_root->lock);
}
3660 3661 3662 3663

/* dev-replace.c */
void btrfs_bio_counter_inc_blocked(struct btrfs_fs_info *fs_info);
void btrfs_bio_counter_inc_noblocked(struct btrfs_fs_info *fs_info);
3664 3665 3666 3667 3668 3669
void btrfs_bio_counter_sub(struct btrfs_fs_info *fs_info, s64 amount);

static inline void btrfs_bio_counter_dec(struct btrfs_fs_info *fs_info)
{
	btrfs_bio_counter_sub(fs_info, 1);
}
A
Arne Jansen 已提交
3670

3671 3672
/* reada.c */
struct reada_control {
3673
	struct btrfs_fs_info	*fs_info;		/* tree to prefetch */
3674 3675 3676 3677 3678 3679 3680 3681 3682 3683
	struct btrfs_key	key_start;
	struct btrfs_key	key_end;	/* exclusive */
	atomic_t		elems;
	struct kref		refcnt;
	wait_queue_head_t	wait;
};
struct reada_control *btrfs_reada_add(struct btrfs_root *root,
			      struct btrfs_key *start, struct btrfs_key *end);
int btrfs_reada_wait(void *handle);
void btrfs_reada_detach(void *handle);
3684
int btree_readahead_hook(struct extent_buffer *eb, int err);
3685

3686 3687 3688
static inline int is_fstree(u64 rootid)
{
	if (rootid == BTRFS_FS_TREE_OBJECTID ||
3689 3690
	    ((s64)rootid >= (s64)BTRFS_FIRST_FREE_OBJECTID &&
	      !btrfs_qgroup_level(rootid)))
3691 3692 3693
		return 1;
	return 0;
}
3694 3695 3696 3697 3698 3699

static inline int btrfs_defrag_cancelled(struct btrfs_fs_info *fs_info)
{
	return signal_pending(current);
}

3700 3701
/* Sanity test specific functions */
#ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
3702
void btrfs_test_inode_set_ops(struct inode *inode);
3703
void btrfs_test_destroy_inode(struct inode *inode);
3704

3705
static inline int btrfs_is_testing(struct btrfs_fs_info *fs_info)
3706
{
3707 3708 3709 3710 3711
	return test_bit(BTRFS_FS_STATE_DUMMY_FS_INFO, &fs_info->fs_state);
}
#else
static inline int btrfs_is_testing(struct btrfs_fs_info *fs_info)
{
3712 3713
	return 0;
}
3714
#endif
3715

3716 3717 3718 3719 3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731 3732 3733 3734 3735 3736 3737
static inline void cond_wake_up(struct wait_queue_head *wq)
{
	/*
	 * This implies a full smp_mb barrier, see comments for
	 * waitqueue_active why.
	 */
	if (wq_has_sleeper(wq))
		wake_up(wq);
}

static inline void cond_wake_up_nomb(struct wait_queue_head *wq)
{
	/*
	 * Special case for conditional wakeup where the barrier required for
	 * waitqueue_active is implied by some of the preceding code. Eg. one
	 * of such atomic operations (atomic_dec_and_return, ...), or a
	 * unlock/lock sequence, etc.
	 */
	if (waitqueue_active(wq))
		wake_up(wq);
}

3738
#endif