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  +   ˆl–Ü4ý( ©³( 	Å€fàB¦-ÿÁ„át?_†I|¥�+ÁÅ ?÷     /* SPDX-License-Identifier: GPL-2.0 */
/*
 * Copyright (C) 2001 Jens Axboe <axboe@suse.de>
 */
#ifndef __LINUX_BIO_H
#define __LINUX_BIO_H

#include <linux/mempool.h>
/* struct bio, bio_vec and BIO_* flags are defined in blk_types.h */
#include <linux/blk_types.h>
#include <linux/uio.h>

#define BIO_MAX_VECS		256U
#define BIO_MAX_INLINE_VECS	UIO_MAXIOV

struct queue_limits;

static inline unsigned int bio_max_segs(unsigned int nr_segs)
{
	return min(nr_segs, BIO_MAX_VECS);
}

#define bio_set_prio(bio, prio)		((bio)->bi_ioprio = prio)

#define bio_iter_iovec(bio, iter)				\
	bvec_iter_bvec((bio)->bi_io_vec, (iter))

#define bio_iter_page(bio, iter)				\
	bvec_iter_page((bio)->bi_io_vec, (iter))
#define bio_iter_len(bio, iter)					\
	bvec_iter_len((bio)->bi_io_vec, (iter))
#define bio_iter_offset(bio, iter)				\
	bvec_iter_offset((bio)->bi_io_vec, (iter))

#define bio_page(bio)		bio_iter_page((bio), (bio)->bi_iter)
#define bio_offset(bio)		bio_iter_offset((bio), (bio)->bi_iter)
#define bio_iovec(bio)		bio_iter_iovec((bio), (bio)->bi_iter)

#define bvec_iter_sectors(iter)	((iter).bi_size >> 9)
#define bvec_iter_end_sector(iter) ((iter).bi_sector + bvec_iter_sectors((iter)))

#define bio_sectors(bio)	bvec_iter_sectors((bio)->bi_iter)
#define bio_end_sector(bio)	bvec_iter_end_sector((bio)->bi_iter)

/*
 * Return the data direction, READ or WRITE.
 */
#define bio_data_dir(bio) \
	(op_is_write(bio_op(bio)) ? WRITE : READ)

/*
 * Check whether this bio carries any data or not. A NULL bio is allowed.
 */
static inline bool bio_has_data(struct bio *bio)
{
	if (bio &&
	    bio->bi_iter.bi_size &&
	    bio_op(bio) != REQ_OP_DISCARD &&
	    bio_op(bio) != REQ_OP_SECURE_ERASE &&
	    bio_op(bio) != REQ_OP_WRITE_ZEROES)
		return true;

	return false;
}

static inline bool bio_no_advance_iter(const struct bio *bio)
{
	return bio_op(bio) == REQ_OP_DISCARD ||
	       bio_op(bio) == REQ_OP_SECURE_ERASE ||
	       bio_op(bio) == REQ_OP_WRITE_ZEROES;
}

static inline void *bio_data(struct bio *bio)
{
	if (bio_has_data(bio))
		return page_address(bio_page(bio)) + bio_offset(bio);

	return NULL;
}

static inline bool bio_next_segment(const struct bio *bio,
				    struct bvec_iter_all *iter)
{
	if (iter->idx >= bio->bi_vcnt)
		return false;

	bvec_advance(&bio->bi_io_vec[iter->idx], iter);
	return true;
}

/*
 * drivers should _never_ use the all version - the bio may have been split
 * before it got to the driver and the driver won't own all of it
 */
#define bio_for_each_segment_all(bvl, bio, iter) \
	for (bvl = bvec_init_iter_all(&iter); bio_next_segment((bio), &iter); )

static inline void bio_advance_iter(const struct bio *bio,
				    struct bvec_iter *iter, unsigned int bytes)
{
	iter->bi_sector += bytes >> 9;

	if (bio_no_advance_iter(bio))
		iter->bi_size -= bytes;
	else
		bvec_iter_advance(bio->bi_io_vec, iter, bytes);
		/* TODO: It is reasonable to complete bio with error here. */
}

/* @bytes should be less or equal to bvec[i->bi_idx].bv_len */
static inline void bio_advance_iter_single(const struct bio *bio,
					   struct bvec_iter *iter,
					   unsigned int bytes)
{
	iter->bi_sector += bytes >> 9;

	if (bio_no_advance_iter(bio))
		iter->bi_size -= bytes;
	else
		bvec_iter_advance_single(bio->bi_io_vec, iter, bytes);
}

void __bio_advance(struct bio *, unsigned bytes);

/**
 * bio_advance - increment/complete a bio by some number of bytes
 * @bio:	bio to advance
 * @nbytes:	number of bytes to complete
 *
 * This updates bi_sector, bi_size and bi_idx; if the number of bytes to
 * complete doesn't align with a bvec boundary, then bv_len and bv_offset will
 * be updated on the last bvec as well.
 *
 * @bio will then represent the remaining, uncompleted portion of the io.
 */
static inline void bio_advance(struct bio *bio, unsigned int nbyte