MAJOR=4
MINOR=63
DEVNAME=tty63
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 :ÿ    /* SPDX-License-Identifier: GPL-2.0 */
#ifndef LINUX_IOMAP_H
#define LINUX_IOMAP_H 1

#include <linux/atomic.h>
#include <linux/bitmap.h>
#include <linux/blk_types.h>
#include <linux/mm.h>
#include <linux/types.h>
#include <linux/mm_types.h>
#include <linux/blkdev.h>

struct address_space;
struct fiemap_extent_info;
struct inode;
struct iomap_dio;
struct iomap_writepage_ctx;
struct iov_iter;
struct kiocb;
struct page;
struct vm_area_struct;
struct vm_fault;

/*
 * Types of block ranges for iomap mappings:
 */
#define IOMAP_HOLE	0	/* no blocks allocated, need allocation */
#define IOMAP_DELALLOC	1	/* delayed allocation blocks */
#define IOMAP_MAPPED	2	/* blocks allocated at @addr */
#define IOMAP_UNWRITTEN	3	/* blocks allocated at @addr in unwritten state */
#define IOMAP_INLINE	4	/* data inline in the inode */

/*
 * Flags reported by the file system from iomap_begin:
 *
 * IOMAP_F_NEW indicates that the blocks have been newly allocated and need
 * zeroing for areas that no data is copied to.
 *
 * IOMAP_F_DIRTY indicates the inode has uncommitted metadata needed to access
 * written data and requires fdatasync to commit them to persistent storage.
 * This needs to take into account metadata changes that *may* be made at IO
 * completion, such as file size updates from direct IO.
 *
 * IOMAP_F_SHARED indicates that the blocks are shared, and will need to be
 * unshared as part a write.
 *
 * IOMAP_F_MERGED indicates that the iomap contains the merge of multiple block
 * mappings.
 *
 * IOMAP_F_BUFFER_HEAD indicates that the file system requires the use of
 * buffer heads for this mapping.
 *
 * IOMAP_F_XATTR indicates that the iomap is for an extended attribute extent
 * rather than a file data extent.
 *
 * IOMAP_F_BOUNDARY indicates that I/O and I/O completions for this iomap must
 * never be merged with the mapping before it.
 */
#define IOMAP_F_NEW		(1U << 0)
#define IOMAP_F_DIRTY		(1U << 1)
#define IOMAP_F_SHARED		(1U << 2)
#define IOMAP_F_MERGED		(1U << 3)
#ifdef CONFIG_BUFFER_HEAD
#define IOMAP_F_BUFFER_HEAD	(1U << 4)
#else
#define IOMAP_F_BUFFER_HEAD	0
#endif /* CONFIG_BUFFER_HEAD */
#define IOMAP_F_XATTR		(1U << 5)
#define IOMAP_F_BOUNDARY	(1U << 6)
#define IOMAP_F_ZONE_APPEND	(1U << 9)

/*
 * Flags set by the core iomap code during operations:
 *
 * IOMAP_F_SIZE_CHANGED indicates to the iomap_end method that the file size
 * has changed as the result of this write operation.
 *
 * IOMAP_F_STALE indicates that the iomap is not valid any longer and the file
 * range it covers needs to be remapped by the high level before the operation
 * can proceed.
 */
#define IOMAP_F_SIZE_CHANGED	(1U << 8)
#define IOMAP_F_STALE		(1U << 9)

/*
 * Flags from 0x1000 up are for file system specific usage:
 */
#define IOMAP_F_PRIVATE		(1U << 12)


/*
 * Magic value for addr:
 */
#define IOMAP_NULL_ADDR -1ULL	/* addr is not valid */

struct iomap_page_ops;

struct iomap {
	u64			addr; /* disk offset of mapping, bytes */
	loff_t			offset;	/* file offset of mapping, bytes */
	u64			length;	/* length of mapping, bytes */
	u16			type;	/* type of mapping */
	u16			flags;	/* flags for mapping */
	struct block_device	*bdev;	/* block device for I/O */
	struct dax_device	*dax_dev; /* dax_dev for dax operations */
	void			*inline_data;
	void			*private; /* filesystem private */
	const struct iomap_page_ops *page_ops;
	u64			validity_cookie; /* used with .iomap_valid() */
};

static inline sector_t iomap_sector(const struct iomap *iomap, loff_t pos)
{
	return (iomap->addr + pos - iomap->offset) >> SECTOR_SHIFT;
}

/*
 * Returns the inline data pointer for logical offset @pos.
 */
static inline void *iomap_inline_data(const struct iomap *iomap, loff_t pos)
{
	return iomap->inline_data + pos - iomap->offset;
}

/*
 * Check if the mapping's length is within the valid range for inline data.
 * This is used to guard against accessing data beyond the page inline_data
 * points at.
 */
static inline bool iomap_inline_dat