18c2ecf20Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0
28c2ecf20Sopenharmony_ci
38c2ecf20Sopenharmony_ci#include <linux/bitops.h>
48c2ecf20Sopenharmony_ci#include <linux/slab.h>
58c2ecf20Sopenharmony_ci#include <linux/bio.h>
68c2ecf20Sopenharmony_ci#include <linux/mm.h>
78c2ecf20Sopenharmony_ci#include <linux/pagemap.h>
88c2ecf20Sopenharmony_ci#include <linux/page-flags.h>
98c2ecf20Sopenharmony_ci#include <linux/spinlock.h>
108c2ecf20Sopenharmony_ci#include <linux/blkdev.h>
118c2ecf20Sopenharmony_ci#include <linux/swap.h>
128c2ecf20Sopenharmony_ci#include <linux/writeback.h>
138c2ecf20Sopenharmony_ci#include <linux/pagevec.h>
148c2ecf20Sopenharmony_ci#include <linux/prefetch.h>
158c2ecf20Sopenharmony_ci#include <linux/cleancache.h>
168c2ecf20Sopenharmony_ci#include "extent_io.h"
178c2ecf20Sopenharmony_ci#include "extent-io-tree.h"
188c2ecf20Sopenharmony_ci#include "extent_map.h"
198c2ecf20Sopenharmony_ci#include "ctree.h"
208c2ecf20Sopenharmony_ci#include "btrfs_inode.h"
218c2ecf20Sopenharmony_ci#include "volumes.h"
228c2ecf20Sopenharmony_ci#include "check-integrity.h"
238c2ecf20Sopenharmony_ci#include "locking.h"
248c2ecf20Sopenharmony_ci#include "rcu-string.h"
258c2ecf20Sopenharmony_ci#include "backref.h"
268c2ecf20Sopenharmony_ci#include "disk-io.h"
278c2ecf20Sopenharmony_ci
288c2ecf20Sopenharmony_cistatic struct kmem_cache *extent_state_cache;
298c2ecf20Sopenharmony_cistatic struct kmem_cache *extent_buffer_cache;
308c2ecf20Sopenharmony_cistatic struct bio_set btrfs_bioset;
318c2ecf20Sopenharmony_ci
328c2ecf20Sopenharmony_cistatic inline bool extent_state_in_tree(const struct extent_state *state)
338c2ecf20Sopenharmony_ci{
348c2ecf20Sopenharmony_ci	return !RB_EMPTY_NODE(&state->rb_node);
358c2ecf20Sopenharmony_ci}
368c2ecf20Sopenharmony_ci
378c2ecf20Sopenharmony_ci#ifdef CONFIG_BTRFS_DEBUG
388c2ecf20Sopenharmony_cistatic LIST_HEAD(states);
398c2ecf20Sopenharmony_cistatic DEFINE_SPINLOCK(leak_lock);
408c2ecf20Sopenharmony_ci
418c2ecf20Sopenharmony_cistatic inline void btrfs_leak_debug_add(spinlock_t *lock,
428c2ecf20Sopenharmony_ci					struct list_head *new,
438c2ecf20Sopenharmony_ci					struct list_head *head)
448c2ecf20Sopenharmony_ci{
458c2ecf20Sopenharmony_ci	unsigned long flags;
468c2ecf20Sopenharmony_ci
478c2ecf20Sopenharmony_ci	spin_lock_irqsave(lock, flags);
488c2ecf20Sopenharmony_ci	list_add(new, head);
498c2ecf20Sopenharmony_ci	spin_unlock_irqrestore(lock, flags);
508c2ecf20Sopenharmony_ci}
518c2ecf20Sopenharmony_ci
528c2ecf20Sopenharmony_cistatic inline void btrfs_leak_debug_del(spinlock_t *lock,
538c2ecf20Sopenharmony_ci					struct list_head *entry)
548c2ecf20Sopenharmony_ci{
558c2ecf20Sopenharmony_ci	unsigned long flags;
568c2ecf20Sopenharmony_ci
578c2ecf20Sopenharmony_ci	spin_lock_irqsave(lock, flags);
588c2ecf20Sopenharmony_ci	list_del(entry);
598c2ecf20Sopenharmony_ci	spin_unlock_irqrestore(lock, flags);
608c2ecf20Sopenharmony_ci}
618c2ecf20Sopenharmony_ci
628c2ecf20Sopenharmony_civoid btrfs_extent_buffer_leak_debug_check(struct btrfs_fs_info *fs_info)
638c2ecf20Sopenharmony_ci{
648c2ecf20Sopenharmony_ci	struct extent_buffer *eb;
658c2ecf20Sopenharmony_ci	unsigned long flags;
668c2ecf20Sopenharmony_ci
678c2ecf20Sopenharmony_ci	/*
688c2ecf20Sopenharmony_ci	 * If we didn't get into open_ctree our allocated_ebs will not be
698c2ecf20Sopenharmony_ci	 * initialized, so just skip this.
708c2ecf20Sopenharmony_ci	 */
718c2ecf20Sopenharmony_ci	if (!fs_info->allocated_ebs.next)
728c2ecf20Sopenharmony_ci		return;
738c2ecf20Sopenharmony_ci
748c2ecf20Sopenharmony_ci	spin_lock_irqsave(&fs_info->eb_leak_lock, flags);
758c2ecf20Sopenharmony_ci	while (!list_empty(&fs_info->allocated_ebs)) {
768c2ecf20Sopenharmony_ci		eb = list_first_entry(&fs_info->allocated_ebs,
778c2ecf20Sopenharmony_ci				      struct extent_buffer, leak_list);
788c2ecf20Sopenharmony_ci		pr_err(
798c2ecf20Sopenharmony_ci	"BTRFS: buffer leak start %llu len %lu refs %d bflags %lu owner %llu\n",
808c2ecf20Sopenharmony_ci		       eb->start, eb->len, atomic_read(&eb->refs), eb->bflags,
818c2ecf20Sopenharmony_ci		       btrfs_header_owner(eb));
828c2ecf20Sopenharmony_ci		list_del(&eb->leak_list);
838c2ecf20Sopenharmony_ci		kmem_cache_free(extent_buffer_cache, eb);
848c2ecf20Sopenharmony_ci	}
858c2ecf20Sopenharmony_ci	spin_unlock_irqrestore(&fs_info->eb_leak_lock, flags);
868c2ecf20Sopenharmony_ci}
878c2ecf20Sopenharmony_ci
888c2ecf20Sopenharmony_cistatic inline void btrfs_extent_state_leak_debug_check(void)
898c2ecf20Sopenharmony_ci{
908c2ecf20Sopenharmony_ci	struct extent_state *state;
918c2ecf20Sopenharmony_ci
928c2ecf20Sopenharmony_ci	while (!list_empty(&states)) {
938c2ecf20Sopenharmony_ci		state = list_entry(states.next, struct extent_state, leak_list);
948c2ecf20Sopenharmony_ci		pr_err("BTRFS: state leak: start %llu end %llu state %u in tree %d refs %d\n",
958c2ecf20Sopenharmony_ci		       state->start, state->end, state->state,
968c2ecf20Sopenharmony_ci		       extent_state_in_tree(state),
978c2ecf20Sopenharmony_ci		       refcount_read(&state->refs));
988c2ecf20Sopenharmony_ci		list_del(&state->leak_list);
998c2ecf20Sopenharmony_ci		kmem_cache_free(extent_state_cache, state);
1008c2ecf20Sopenharmony_ci	}
1018c2ecf20Sopenharmony_ci}
1028c2ecf20Sopenharmony_ci
1038c2ecf20Sopenharmony_ci#define btrfs_debug_check_extent_io_range(tree, start, end)		\
1048c2ecf20Sopenharmony_ci	__btrfs_debug_check_extent_io_range(__func__, (tree), (start), (end))
1058c2ecf20Sopenharmony_cistatic inline void __btrfs_debug_check_extent_io_range(const char *caller,
1068c2ecf20Sopenharmony_ci		struct extent_io_tree *tree, u64 start, u64 end)
1078c2ecf20Sopenharmony_ci{
1088c2ecf20Sopenharmony_ci	struct inode *inode = tree->private_data;
1098c2ecf20Sopenharmony_ci	u64 isize;
1108c2ecf20Sopenharmony_ci
1118c2ecf20Sopenharmony_ci	if (!inode || !is_data_inode(inode))
1128c2ecf20Sopenharmony_ci		return;
1138c2ecf20Sopenharmony_ci
1148c2ecf20Sopenharmony_ci	isize = i_size_read(inode);
1158c2ecf20Sopenharmony_ci	if (end >= PAGE_SIZE && (end % 2) == 0 && end != isize - 1) {
1168c2ecf20Sopenharmony_ci		btrfs_debug_rl(BTRFS_I(inode)->root->fs_info,
1178c2ecf20Sopenharmony_ci		    "%s: ino %llu isize %llu odd range [%llu,%llu]",
1188c2ecf20Sopenharmony_ci			caller, btrfs_ino(BTRFS_I(inode)), isize, start, end);
1198c2ecf20Sopenharmony_ci	}
1208c2ecf20Sopenharmony_ci}
1218c2ecf20Sopenharmony_ci#else
1228c2ecf20Sopenharmony_ci#define btrfs_leak_debug_add(lock, new, head)	do {} while (0)
1238c2ecf20Sopenharmony_ci#define btrfs_leak_debug_del(lock, entry)	do {} while (0)
1248c2ecf20Sopenharmony_ci#define btrfs_extent_state_leak_debug_check()	do {} while (0)
1258c2ecf20Sopenharmony_ci#define btrfs_debug_check_extent_io_range(c, s, e)	do {} while (0)
1268c2ecf20Sopenharmony_ci#endif
1278c2ecf20Sopenharmony_ci
1288c2ecf20Sopenharmony_cistruct tree_entry {
1298c2ecf20Sopenharmony_ci	u64 start;
1308c2ecf20Sopenharmony_ci	u64 end;
1318c2ecf20Sopenharmony_ci	struct rb_node rb_node;
1328c2ecf20Sopenharmony_ci};
1338c2ecf20Sopenharmony_ci
1348c2ecf20Sopenharmony_cistruct extent_page_data {
1358c2ecf20Sopenharmony_ci	struct bio *bio;
1368c2ecf20Sopenharmony_ci	/* tells writepage not to lock the state bits for this range
1378c2ecf20Sopenharmony_ci	 * it still does the unlocking
1388c2ecf20Sopenharmony_ci	 */
1398c2ecf20Sopenharmony_ci	unsigned int extent_locked:1;
1408c2ecf20Sopenharmony_ci
1418c2ecf20Sopenharmony_ci	/* tells the submit_bio code to use REQ_SYNC */
1428c2ecf20Sopenharmony_ci	unsigned int sync_io:1;
1438c2ecf20Sopenharmony_ci};
1448c2ecf20Sopenharmony_ci
1458c2ecf20Sopenharmony_cistatic int add_extent_changeset(struct extent_state *state, unsigned bits,
1468c2ecf20Sopenharmony_ci				 struct extent_changeset *changeset,
1478c2ecf20Sopenharmony_ci				 int set)
1488c2ecf20Sopenharmony_ci{
1498c2ecf20Sopenharmony_ci	int ret;
1508c2ecf20Sopenharmony_ci
1518c2ecf20Sopenharmony_ci	if (!changeset)
1528c2ecf20Sopenharmony_ci		return 0;
1538c2ecf20Sopenharmony_ci	if (set && (state->state & bits) == bits)
1548c2ecf20Sopenharmony_ci		return 0;
1558c2ecf20Sopenharmony_ci	if (!set && (state->state & bits) == 0)
1568c2ecf20Sopenharmony_ci		return 0;
1578c2ecf20Sopenharmony_ci	changeset->bytes_changed += state->end - state->start + 1;
1588c2ecf20Sopenharmony_ci	ret = ulist_add(&changeset->range_changed, state->start, state->end,
1598c2ecf20Sopenharmony_ci			GFP_ATOMIC);
1608c2ecf20Sopenharmony_ci	return ret;
1618c2ecf20Sopenharmony_ci}
1628c2ecf20Sopenharmony_ci
1638c2ecf20Sopenharmony_ciint __must_check submit_one_bio(struct bio *bio, int mirror_num,
1648c2ecf20Sopenharmony_ci				unsigned long bio_flags)
1658c2ecf20Sopenharmony_ci{
1668c2ecf20Sopenharmony_ci	blk_status_t ret = 0;
1678c2ecf20Sopenharmony_ci	struct extent_io_tree *tree = bio->bi_private;
1688c2ecf20Sopenharmony_ci
1698c2ecf20Sopenharmony_ci	bio->bi_private = NULL;
1708c2ecf20Sopenharmony_ci
1718c2ecf20Sopenharmony_ci	if (is_data_inode(tree->private_data))
1728c2ecf20Sopenharmony_ci		ret = btrfs_submit_data_bio(tree->private_data, bio, mirror_num,
1738c2ecf20Sopenharmony_ci					    bio_flags);
1748c2ecf20Sopenharmony_ci	else
1758c2ecf20Sopenharmony_ci		ret = btrfs_submit_metadata_bio(tree->private_data, bio,
1768c2ecf20Sopenharmony_ci						mirror_num, bio_flags);
1778c2ecf20Sopenharmony_ci
1788c2ecf20Sopenharmony_ci	return blk_status_to_errno(ret);
1798c2ecf20Sopenharmony_ci}
1808c2ecf20Sopenharmony_ci
1818c2ecf20Sopenharmony_ci/* Cleanup unsubmitted bios */
1828c2ecf20Sopenharmony_cistatic void end_write_bio(struct extent_page_data *epd, int ret)
1838c2ecf20Sopenharmony_ci{
1848c2ecf20Sopenharmony_ci	if (epd->bio) {
1858c2ecf20Sopenharmony_ci		epd->bio->bi_status = errno_to_blk_status(ret);
1868c2ecf20Sopenharmony_ci		bio_endio(epd->bio);
1878c2ecf20Sopenharmony_ci		epd->bio = NULL;
1888c2ecf20Sopenharmony_ci	}
1898c2ecf20Sopenharmony_ci}
1908c2ecf20Sopenharmony_ci
1918c2ecf20Sopenharmony_ci/*
1928c2ecf20Sopenharmony_ci * Submit bio from extent page data via submit_one_bio
1938c2ecf20Sopenharmony_ci *
1948c2ecf20Sopenharmony_ci * Return 0 if everything is OK.
1958c2ecf20Sopenharmony_ci * Return <0 for error.
1968c2ecf20Sopenharmony_ci */
1978c2ecf20Sopenharmony_cistatic int __must_check flush_write_bio(struct extent_page_data *epd)
1988c2ecf20Sopenharmony_ci{
1998c2ecf20Sopenharmony_ci	int ret = 0;
2008c2ecf20Sopenharmony_ci
2018c2ecf20Sopenharmony_ci	if (epd->bio) {
2028c2ecf20Sopenharmony_ci		ret = submit_one_bio(epd->bio, 0, 0);
2038c2ecf20Sopenharmony_ci		/*
2048c2ecf20Sopenharmony_ci		 * Clean up of epd->bio is handled by its endio function.
2058c2ecf20Sopenharmony_ci		 * And endio is either triggered by successful bio execution
2068c2ecf20Sopenharmony_ci		 * or the error handler of submit bio hook.
2078c2ecf20Sopenharmony_ci		 * So at this point, no matter what happened, we don't need
2088c2ecf20Sopenharmony_ci		 * to clean up epd->bio.
2098c2ecf20Sopenharmony_ci		 */
2108c2ecf20Sopenharmony_ci		epd->bio = NULL;
2118c2ecf20Sopenharmony_ci	}
2128c2ecf20Sopenharmony_ci	return ret;
2138c2ecf20Sopenharmony_ci}
2148c2ecf20Sopenharmony_ci
2158c2ecf20Sopenharmony_ciint __init extent_state_cache_init(void)
2168c2ecf20Sopenharmony_ci{
2178c2ecf20Sopenharmony_ci	extent_state_cache = kmem_cache_create("btrfs_extent_state",
2188c2ecf20Sopenharmony_ci			sizeof(struct extent_state), 0,
2198c2ecf20Sopenharmony_ci			SLAB_MEM_SPREAD, NULL);
2208c2ecf20Sopenharmony_ci	if (!extent_state_cache)
2218c2ecf20Sopenharmony_ci		return -ENOMEM;
2228c2ecf20Sopenharmony_ci	return 0;
2238c2ecf20Sopenharmony_ci}
2248c2ecf20Sopenharmony_ci
2258c2ecf20Sopenharmony_ciint __init extent_io_init(void)
2268c2ecf20Sopenharmony_ci{
2278c2ecf20Sopenharmony_ci	extent_buffer_cache = kmem_cache_create("btrfs_extent_buffer",
2288c2ecf20Sopenharmony_ci			sizeof(struct extent_buffer), 0,
2298c2ecf20Sopenharmony_ci			SLAB_MEM_SPREAD, NULL);
2308c2ecf20Sopenharmony_ci	if (!extent_buffer_cache)
2318c2ecf20Sopenharmony_ci		return -ENOMEM;
2328c2ecf20Sopenharmony_ci
2338c2ecf20Sopenharmony_ci	if (bioset_init(&btrfs_bioset, BIO_POOL_SIZE,
2348c2ecf20Sopenharmony_ci			offsetof(struct btrfs_io_bio, bio),
2358c2ecf20Sopenharmony_ci			BIOSET_NEED_BVECS))
2368c2ecf20Sopenharmony_ci		goto free_buffer_cache;
2378c2ecf20Sopenharmony_ci
2388c2ecf20Sopenharmony_ci	if (bioset_integrity_create(&btrfs_bioset, BIO_POOL_SIZE))
2398c2ecf20Sopenharmony_ci		goto free_bioset;
2408c2ecf20Sopenharmony_ci
2418c2ecf20Sopenharmony_ci	return 0;
2428c2ecf20Sopenharmony_ci
2438c2ecf20Sopenharmony_cifree_bioset:
2448c2ecf20Sopenharmony_ci	bioset_exit(&btrfs_bioset);
2458c2ecf20Sopenharmony_ci
2468c2ecf20Sopenharmony_cifree_buffer_cache:
2478c2ecf20Sopenharmony_ci	kmem_cache_destroy(extent_buffer_cache);
2488c2ecf20Sopenharmony_ci	extent_buffer_cache = NULL;
2498c2ecf20Sopenharmony_ci	return -ENOMEM;
2508c2ecf20Sopenharmony_ci}
2518c2ecf20Sopenharmony_ci
2528c2ecf20Sopenharmony_civoid __cold extent_state_cache_exit(void)
2538c2ecf20Sopenharmony_ci{
2548c2ecf20Sopenharmony_ci	btrfs_extent_state_leak_debug_check();
2558c2ecf20Sopenharmony_ci	kmem_cache_destroy(extent_state_cache);
2568c2ecf20Sopenharmony_ci}
2578c2ecf20Sopenharmony_ci
2588c2ecf20Sopenharmony_civoid __cold extent_io_exit(void)
2598c2ecf20Sopenharmony_ci{
2608c2ecf20Sopenharmony_ci	/*
2618c2ecf20Sopenharmony_ci	 * Make sure all delayed rcu free are flushed before we
2628c2ecf20Sopenharmony_ci	 * destroy caches.
2638c2ecf20Sopenharmony_ci	 */
2648c2ecf20Sopenharmony_ci	rcu_barrier();
2658c2ecf20Sopenharmony_ci	kmem_cache_destroy(extent_buffer_cache);
2668c2ecf20Sopenharmony_ci	bioset_exit(&btrfs_bioset);
2678c2ecf20Sopenharmony_ci}
2688c2ecf20Sopenharmony_ci
2698c2ecf20Sopenharmony_ci/*
2708c2ecf20Sopenharmony_ci * For the file_extent_tree, we want to hold the inode lock when we lookup and
2718c2ecf20Sopenharmony_ci * update the disk_i_size, but lockdep will complain because our io_tree we hold
2728c2ecf20Sopenharmony_ci * the tree lock and get the inode lock when setting delalloc.  These two things
2738c2ecf20Sopenharmony_ci * are unrelated, so make a class for the file_extent_tree so we don't get the
2748c2ecf20Sopenharmony_ci * two locking patterns mixed up.
2758c2ecf20Sopenharmony_ci */
2768c2ecf20Sopenharmony_cistatic struct lock_class_key file_extent_tree_class;
2778c2ecf20Sopenharmony_ci
2788c2ecf20Sopenharmony_civoid extent_io_tree_init(struct btrfs_fs_info *fs_info,
2798c2ecf20Sopenharmony_ci			 struct extent_io_tree *tree, unsigned int owner,
2808c2ecf20Sopenharmony_ci			 void *private_data)
2818c2ecf20Sopenharmony_ci{
2828c2ecf20Sopenharmony_ci	tree->fs_info = fs_info;
2838c2ecf20Sopenharmony_ci	tree->state = RB_ROOT;
2848c2ecf20Sopenharmony_ci	tree->dirty_bytes = 0;
2858c2ecf20Sopenharmony_ci	spin_lock_init(&tree->lock);
2868c2ecf20Sopenharmony_ci	tree->private_data = private_data;
2878c2ecf20Sopenharmony_ci	tree->owner = owner;
2888c2ecf20Sopenharmony_ci	if (owner == IO_TREE_INODE_FILE_EXTENT)
2898c2ecf20Sopenharmony_ci		lockdep_set_class(&tree->lock, &file_extent_tree_class);
2908c2ecf20Sopenharmony_ci}
2918c2ecf20Sopenharmony_ci
2928c2ecf20Sopenharmony_civoid extent_io_tree_release(struct extent_io_tree *tree)
2938c2ecf20Sopenharmony_ci{
2948c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
2958c2ecf20Sopenharmony_ci	/*
2968c2ecf20Sopenharmony_ci	 * Do a single barrier for the waitqueue_active check here, the state
2978c2ecf20Sopenharmony_ci	 * of the waitqueue should not change once extent_io_tree_release is
2988c2ecf20Sopenharmony_ci	 * called.
2998c2ecf20Sopenharmony_ci	 */
3008c2ecf20Sopenharmony_ci	smp_mb();
3018c2ecf20Sopenharmony_ci	while (!RB_EMPTY_ROOT(&tree->state)) {
3028c2ecf20Sopenharmony_ci		struct rb_node *node;
3038c2ecf20Sopenharmony_ci		struct extent_state *state;
3048c2ecf20Sopenharmony_ci
3058c2ecf20Sopenharmony_ci		node = rb_first(&tree->state);
3068c2ecf20Sopenharmony_ci		state = rb_entry(node, struct extent_state, rb_node);
3078c2ecf20Sopenharmony_ci		rb_erase(&state->rb_node, &tree->state);
3088c2ecf20Sopenharmony_ci		RB_CLEAR_NODE(&state->rb_node);
3098c2ecf20Sopenharmony_ci		/*
3108c2ecf20Sopenharmony_ci		 * btree io trees aren't supposed to have tasks waiting for
3118c2ecf20Sopenharmony_ci		 * changes in the flags of extent states ever.
3128c2ecf20Sopenharmony_ci		 */
3138c2ecf20Sopenharmony_ci		ASSERT(!waitqueue_active(&state->wq));
3148c2ecf20Sopenharmony_ci		free_extent_state(state);
3158c2ecf20Sopenharmony_ci
3168c2ecf20Sopenharmony_ci		cond_resched_lock(&tree->lock);
3178c2ecf20Sopenharmony_ci	}
3188c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
3198c2ecf20Sopenharmony_ci}
3208c2ecf20Sopenharmony_ci
3218c2ecf20Sopenharmony_cistatic struct extent_state *alloc_extent_state(gfp_t mask)
3228c2ecf20Sopenharmony_ci{
3238c2ecf20Sopenharmony_ci	struct extent_state *state;
3248c2ecf20Sopenharmony_ci
3258c2ecf20Sopenharmony_ci	/*
3268c2ecf20Sopenharmony_ci	 * The given mask might be not appropriate for the slab allocator,
3278c2ecf20Sopenharmony_ci	 * drop the unsupported bits
3288c2ecf20Sopenharmony_ci	 */
3298c2ecf20Sopenharmony_ci	mask &= ~(__GFP_DMA32|__GFP_HIGHMEM);
3308c2ecf20Sopenharmony_ci	state = kmem_cache_alloc(extent_state_cache, mask);
3318c2ecf20Sopenharmony_ci	if (!state)
3328c2ecf20Sopenharmony_ci		return state;
3338c2ecf20Sopenharmony_ci	state->state = 0;
3348c2ecf20Sopenharmony_ci	state->failrec = NULL;
3358c2ecf20Sopenharmony_ci	RB_CLEAR_NODE(&state->rb_node);
3368c2ecf20Sopenharmony_ci	btrfs_leak_debug_add(&leak_lock, &state->leak_list, &states);
3378c2ecf20Sopenharmony_ci	refcount_set(&state->refs, 1);
3388c2ecf20Sopenharmony_ci	init_waitqueue_head(&state->wq);
3398c2ecf20Sopenharmony_ci	trace_alloc_extent_state(state, mask, _RET_IP_);
3408c2ecf20Sopenharmony_ci	return state;
3418c2ecf20Sopenharmony_ci}
3428c2ecf20Sopenharmony_ci
3438c2ecf20Sopenharmony_civoid free_extent_state(struct extent_state *state)
3448c2ecf20Sopenharmony_ci{
3458c2ecf20Sopenharmony_ci	if (!state)
3468c2ecf20Sopenharmony_ci		return;
3478c2ecf20Sopenharmony_ci	if (refcount_dec_and_test(&state->refs)) {
3488c2ecf20Sopenharmony_ci		WARN_ON(extent_state_in_tree(state));
3498c2ecf20Sopenharmony_ci		btrfs_leak_debug_del(&leak_lock, &state->leak_list);
3508c2ecf20Sopenharmony_ci		trace_free_extent_state(state, _RET_IP_);
3518c2ecf20Sopenharmony_ci		kmem_cache_free(extent_state_cache, state);
3528c2ecf20Sopenharmony_ci	}
3538c2ecf20Sopenharmony_ci}
3548c2ecf20Sopenharmony_ci
3558c2ecf20Sopenharmony_cistatic struct rb_node *tree_insert(struct rb_root *root,
3568c2ecf20Sopenharmony_ci				   struct rb_node *search_start,
3578c2ecf20Sopenharmony_ci				   u64 offset,
3588c2ecf20Sopenharmony_ci				   struct rb_node *node,
3598c2ecf20Sopenharmony_ci				   struct rb_node ***p_in,
3608c2ecf20Sopenharmony_ci				   struct rb_node **parent_in)
3618c2ecf20Sopenharmony_ci{
3628c2ecf20Sopenharmony_ci	struct rb_node **p;
3638c2ecf20Sopenharmony_ci	struct rb_node *parent = NULL;
3648c2ecf20Sopenharmony_ci	struct tree_entry *entry;
3658c2ecf20Sopenharmony_ci
3668c2ecf20Sopenharmony_ci	if (p_in && parent_in) {
3678c2ecf20Sopenharmony_ci		p = *p_in;
3688c2ecf20Sopenharmony_ci		parent = *parent_in;
3698c2ecf20Sopenharmony_ci		goto do_insert;
3708c2ecf20Sopenharmony_ci	}
3718c2ecf20Sopenharmony_ci
3728c2ecf20Sopenharmony_ci	p = search_start ? &search_start : &root->rb_node;
3738c2ecf20Sopenharmony_ci	while (*p) {
3748c2ecf20Sopenharmony_ci		parent = *p;
3758c2ecf20Sopenharmony_ci		entry = rb_entry(parent, struct tree_entry, rb_node);
3768c2ecf20Sopenharmony_ci
3778c2ecf20Sopenharmony_ci		if (offset < entry->start)
3788c2ecf20Sopenharmony_ci			p = &(*p)->rb_left;
3798c2ecf20Sopenharmony_ci		else if (offset > entry->end)
3808c2ecf20Sopenharmony_ci			p = &(*p)->rb_right;
3818c2ecf20Sopenharmony_ci		else
3828c2ecf20Sopenharmony_ci			return parent;
3838c2ecf20Sopenharmony_ci	}
3848c2ecf20Sopenharmony_ci
3858c2ecf20Sopenharmony_cido_insert:
3868c2ecf20Sopenharmony_ci	rb_link_node(node, parent, p);
3878c2ecf20Sopenharmony_ci	rb_insert_color(node, root);
3888c2ecf20Sopenharmony_ci	return NULL;
3898c2ecf20Sopenharmony_ci}
3908c2ecf20Sopenharmony_ci
3918c2ecf20Sopenharmony_ci/**
3928c2ecf20Sopenharmony_ci * __etree_search - searche @tree for an entry that contains @offset. Such
3938c2ecf20Sopenharmony_ci * entry would have entry->start <= offset && entry->end >= offset.
3948c2ecf20Sopenharmony_ci *
3958c2ecf20Sopenharmony_ci * @tree - the tree to search
3968c2ecf20Sopenharmony_ci * @offset - offset that should fall within an entry in @tree
3978c2ecf20Sopenharmony_ci * @next_ret - pointer to the first entry whose range ends after @offset
3988c2ecf20Sopenharmony_ci * @prev - pointer to the first entry whose range begins before @offset
3998c2ecf20Sopenharmony_ci * @p_ret - pointer where new node should be anchored (used when inserting an
4008c2ecf20Sopenharmony_ci *	    entry in the tree)
4018c2ecf20Sopenharmony_ci * @parent_ret - points to entry which would have been the parent of the entry,
4028c2ecf20Sopenharmony_ci *               containing @offset
4038c2ecf20Sopenharmony_ci *
4048c2ecf20Sopenharmony_ci * This function returns a pointer to the entry that contains @offset byte
4058c2ecf20Sopenharmony_ci * address. If no such entry exists, then NULL is returned and the other
4068c2ecf20Sopenharmony_ci * pointer arguments to the function are filled, otherwise the found entry is
4078c2ecf20Sopenharmony_ci * returned and other pointers are left untouched.
4088c2ecf20Sopenharmony_ci */
4098c2ecf20Sopenharmony_cistatic struct rb_node *__etree_search(struct extent_io_tree *tree, u64 offset,
4108c2ecf20Sopenharmony_ci				      struct rb_node **next_ret,
4118c2ecf20Sopenharmony_ci				      struct rb_node **prev_ret,
4128c2ecf20Sopenharmony_ci				      struct rb_node ***p_ret,
4138c2ecf20Sopenharmony_ci				      struct rb_node **parent_ret)
4148c2ecf20Sopenharmony_ci{
4158c2ecf20Sopenharmony_ci	struct rb_root *root = &tree->state;
4168c2ecf20Sopenharmony_ci	struct rb_node **n = &root->rb_node;
4178c2ecf20Sopenharmony_ci	struct rb_node *prev = NULL;
4188c2ecf20Sopenharmony_ci	struct rb_node *orig_prev = NULL;
4198c2ecf20Sopenharmony_ci	struct tree_entry *entry;
4208c2ecf20Sopenharmony_ci	struct tree_entry *prev_entry = NULL;
4218c2ecf20Sopenharmony_ci
4228c2ecf20Sopenharmony_ci	while (*n) {
4238c2ecf20Sopenharmony_ci		prev = *n;
4248c2ecf20Sopenharmony_ci		entry = rb_entry(prev, struct tree_entry, rb_node);
4258c2ecf20Sopenharmony_ci		prev_entry = entry;
4268c2ecf20Sopenharmony_ci
4278c2ecf20Sopenharmony_ci		if (offset < entry->start)
4288c2ecf20Sopenharmony_ci			n = &(*n)->rb_left;
4298c2ecf20Sopenharmony_ci		else if (offset > entry->end)
4308c2ecf20Sopenharmony_ci			n = &(*n)->rb_right;
4318c2ecf20Sopenharmony_ci		else
4328c2ecf20Sopenharmony_ci			return *n;
4338c2ecf20Sopenharmony_ci	}
4348c2ecf20Sopenharmony_ci
4358c2ecf20Sopenharmony_ci	if (p_ret)
4368c2ecf20Sopenharmony_ci		*p_ret = n;
4378c2ecf20Sopenharmony_ci	if (parent_ret)
4388c2ecf20Sopenharmony_ci		*parent_ret = prev;
4398c2ecf20Sopenharmony_ci
4408c2ecf20Sopenharmony_ci	if (next_ret) {
4418c2ecf20Sopenharmony_ci		orig_prev = prev;
4428c2ecf20Sopenharmony_ci		while (prev && offset > prev_entry->end) {
4438c2ecf20Sopenharmony_ci			prev = rb_next(prev);
4448c2ecf20Sopenharmony_ci			prev_entry = rb_entry(prev, struct tree_entry, rb_node);
4458c2ecf20Sopenharmony_ci		}
4468c2ecf20Sopenharmony_ci		*next_ret = prev;
4478c2ecf20Sopenharmony_ci		prev = orig_prev;
4488c2ecf20Sopenharmony_ci	}
4498c2ecf20Sopenharmony_ci
4508c2ecf20Sopenharmony_ci	if (prev_ret) {
4518c2ecf20Sopenharmony_ci		prev_entry = rb_entry(prev, struct tree_entry, rb_node);
4528c2ecf20Sopenharmony_ci		while (prev && offset < prev_entry->start) {
4538c2ecf20Sopenharmony_ci			prev = rb_prev(prev);
4548c2ecf20Sopenharmony_ci			prev_entry = rb_entry(prev, struct tree_entry, rb_node);
4558c2ecf20Sopenharmony_ci		}
4568c2ecf20Sopenharmony_ci		*prev_ret = prev;
4578c2ecf20Sopenharmony_ci	}
4588c2ecf20Sopenharmony_ci	return NULL;
4598c2ecf20Sopenharmony_ci}
4608c2ecf20Sopenharmony_ci
4618c2ecf20Sopenharmony_cistatic inline struct rb_node *
4628c2ecf20Sopenharmony_citree_search_for_insert(struct extent_io_tree *tree,
4638c2ecf20Sopenharmony_ci		       u64 offset,
4648c2ecf20Sopenharmony_ci		       struct rb_node ***p_ret,
4658c2ecf20Sopenharmony_ci		       struct rb_node **parent_ret)
4668c2ecf20Sopenharmony_ci{
4678c2ecf20Sopenharmony_ci	struct rb_node *next= NULL;
4688c2ecf20Sopenharmony_ci	struct rb_node *ret;
4698c2ecf20Sopenharmony_ci
4708c2ecf20Sopenharmony_ci	ret = __etree_search(tree, offset, &next, NULL, p_ret, parent_ret);
4718c2ecf20Sopenharmony_ci	if (!ret)
4728c2ecf20Sopenharmony_ci		return next;
4738c2ecf20Sopenharmony_ci	return ret;
4748c2ecf20Sopenharmony_ci}
4758c2ecf20Sopenharmony_ci
4768c2ecf20Sopenharmony_cistatic inline struct rb_node *tree_search(struct extent_io_tree *tree,
4778c2ecf20Sopenharmony_ci					  u64 offset)
4788c2ecf20Sopenharmony_ci{
4798c2ecf20Sopenharmony_ci	return tree_search_for_insert(tree, offset, NULL, NULL);
4808c2ecf20Sopenharmony_ci}
4818c2ecf20Sopenharmony_ci
4828c2ecf20Sopenharmony_ci/*
4838c2ecf20Sopenharmony_ci * utility function to look for merge candidates inside a given range.
4848c2ecf20Sopenharmony_ci * Any extents with matching state are merged together into a single
4858c2ecf20Sopenharmony_ci * extent in the tree.  Extents with EXTENT_IO in their state field
4868c2ecf20Sopenharmony_ci * are not merged because the end_io handlers need to be able to do
4878c2ecf20Sopenharmony_ci * operations on them without sleeping (or doing allocations/splits).
4888c2ecf20Sopenharmony_ci *
4898c2ecf20Sopenharmony_ci * This should be called with the tree lock held.
4908c2ecf20Sopenharmony_ci */
4918c2ecf20Sopenharmony_cistatic void merge_state(struct extent_io_tree *tree,
4928c2ecf20Sopenharmony_ci		        struct extent_state *state)
4938c2ecf20Sopenharmony_ci{
4948c2ecf20Sopenharmony_ci	struct extent_state *other;
4958c2ecf20Sopenharmony_ci	struct rb_node *other_node;
4968c2ecf20Sopenharmony_ci
4978c2ecf20Sopenharmony_ci	if (state->state & (EXTENT_LOCKED | EXTENT_BOUNDARY))
4988c2ecf20Sopenharmony_ci		return;
4998c2ecf20Sopenharmony_ci
5008c2ecf20Sopenharmony_ci	other_node = rb_prev(&state->rb_node);
5018c2ecf20Sopenharmony_ci	if (other_node) {
5028c2ecf20Sopenharmony_ci		other = rb_entry(other_node, struct extent_state, rb_node);
5038c2ecf20Sopenharmony_ci		if (other->end == state->start - 1 &&
5048c2ecf20Sopenharmony_ci		    other->state == state->state) {
5058c2ecf20Sopenharmony_ci			if (tree->private_data &&
5068c2ecf20Sopenharmony_ci			    is_data_inode(tree->private_data))
5078c2ecf20Sopenharmony_ci				btrfs_merge_delalloc_extent(tree->private_data,
5088c2ecf20Sopenharmony_ci							    state, other);
5098c2ecf20Sopenharmony_ci			state->start = other->start;
5108c2ecf20Sopenharmony_ci			rb_erase(&other->rb_node, &tree->state);
5118c2ecf20Sopenharmony_ci			RB_CLEAR_NODE(&other->rb_node);
5128c2ecf20Sopenharmony_ci			free_extent_state(other);
5138c2ecf20Sopenharmony_ci		}
5148c2ecf20Sopenharmony_ci	}
5158c2ecf20Sopenharmony_ci	other_node = rb_next(&state->rb_node);
5168c2ecf20Sopenharmony_ci	if (other_node) {
5178c2ecf20Sopenharmony_ci		other = rb_entry(other_node, struct extent_state, rb_node);
5188c2ecf20Sopenharmony_ci		if (other->start == state->end + 1 &&
5198c2ecf20Sopenharmony_ci		    other->state == state->state) {
5208c2ecf20Sopenharmony_ci			if (tree->private_data &&
5218c2ecf20Sopenharmony_ci			    is_data_inode(tree->private_data))
5228c2ecf20Sopenharmony_ci				btrfs_merge_delalloc_extent(tree->private_data,
5238c2ecf20Sopenharmony_ci							    state, other);
5248c2ecf20Sopenharmony_ci			state->end = other->end;
5258c2ecf20Sopenharmony_ci			rb_erase(&other->rb_node, &tree->state);
5268c2ecf20Sopenharmony_ci			RB_CLEAR_NODE(&other->rb_node);
5278c2ecf20Sopenharmony_ci			free_extent_state(other);
5288c2ecf20Sopenharmony_ci		}
5298c2ecf20Sopenharmony_ci	}
5308c2ecf20Sopenharmony_ci}
5318c2ecf20Sopenharmony_ci
5328c2ecf20Sopenharmony_cistatic void set_state_bits(struct extent_io_tree *tree,
5338c2ecf20Sopenharmony_ci			   struct extent_state *state, unsigned *bits,
5348c2ecf20Sopenharmony_ci			   struct extent_changeset *changeset);
5358c2ecf20Sopenharmony_ci
5368c2ecf20Sopenharmony_ci/*
5378c2ecf20Sopenharmony_ci * insert an extent_state struct into the tree.  'bits' are set on the
5388c2ecf20Sopenharmony_ci * struct before it is inserted.
5398c2ecf20Sopenharmony_ci *
5408c2ecf20Sopenharmony_ci * This may return -EEXIST if the extent is already there, in which case the
5418c2ecf20Sopenharmony_ci * state struct is freed.
5428c2ecf20Sopenharmony_ci *
5438c2ecf20Sopenharmony_ci * The tree lock is not taken internally.  This is a utility function and
5448c2ecf20Sopenharmony_ci * probably isn't what you want to call (see set/clear_extent_bit).
5458c2ecf20Sopenharmony_ci */
5468c2ecf20Sopenharmony_cistatic int insert_state(struct extent_io_tree *tree,
5478c2ecf20Sopenharmony_ci			struct extent_state *state, u64 start, u64 end,
5488c2ecf20Sopenharmony_ci			struct rb_node ***p,
5498c2ecf20Sopenharmony_ci			struct rb_node **parent,
5508c2ecf20Sopenharmony_ci			unsigned *bits, struct extent_changeset *changeset)
5518c2ecf20Sopenharmony_ci{
5528c2ecf20Sopenharmony_ci	struct rb_node *node;
5538c2ecf20Sopenharmony_ci
5548c2ecf20Sopenharmony_ci	if (end < start) {
5558c2ecf20Sopenharmony_ci		btrfs_err(tree->fs_info,
5568c2ecf20Sopenharmony_ci			"insert state: end < start %llu %llu", end, start);
5578c2ecf20Sopenharmony_ci		WARN_ON(1);
5588c2ecf20Sopenharmony_ci	}
5598c2ecf20Sopenharmony_ci	state->start = start;
5608c2ecf20Sopenharmony_ci	state->end = end;
5618c2ecf20Sopenharmony_ci
5628c2ecf20Sopenharmony_ci	set_state_bits(tree, state, bits, changeset);
5638c2ecf20Sopenharmony_ci
5648c2ecf20Sopenharmony_ci	node = tree_insert(&tree->state, NULL, end, &state->rb_node, p, parent);
5658c2ecf20Sopenharmony_ci	if (node) {
5668c2ecf20Sopenharmony_ci		struct extent_state *found;
5678c2ecf20Sopenharmony_ci		found = rb_entry(node, struct extent_state, rb_node);
5688c2ecf20Sopenharmony_ci		btrfs_err(tree->fs_info,
5698c2ecf20Sopenharmony_ci		       "found node %llu %llu on insert of %llu %llu",
5708c2ecf20Sopenharmony_ci		       found->start, found->end, start, end);
5718c2ecf20Sopenharmony_ci		return -EEXIST;
5728c2ecf20Sopenharmony_ci	}
5738c2ecf20Sopenharmony_ci	merge_state(tree, state);
5748c2ecf20Sopenharmony_ci	return 0;
5758c2ecf20Sopenharmony_ci}
5768c2ecf20Sopenharmony_ci
5778c2ecf20Sopenharmony_ci/*
5788c2ecf20Sopenharmony_ci * split a given extent state struct in two, inserting the preallocated
5798c2ecf20Sopenharmony_ci * struct 'prealloc' as the newly created second half.  'split' indicates an
5808c2ecf20Sopenharmony_ci * offset inside 'orig' where it should be split.
5818c2ecf20Sopenharmony_ci *
5828c2ecf20Sopenharmony_ci * Before calling,
5838c2ecf20Sopenharmony_ci * the tree has 'orig' at [orig->start, orig->end].  After calling, there
5848c2ecf20Sopenharmony_ci * are two extent state structs in the tree:
5858c2ecf20Sopenharmony_ci * prealloc: [orig->start, split - 1]
5868c2ecf20Sopenharmony_ci * orig: [ split, orig->end ]
5878c2ecf20Sopenharmony_ci *
5888c2ecf20Sopenharmony_ci * The tree locks are not taken by this function. They need to be held
5898c2ecf20Sopenharmony_ci * by the caller.
5908c2ecf20Sopenharmony_ci */
5918c2ecf20Sopenharmony_cistatic int split_state(struct extent_io_tree *tree, struct extent_state *orig,
5928c2ecf20Sopenharmony_ci		       struct extent_state *prealloc, u64 split)
5938c2ecf20Sopenharmony_ci{
5948c2ecf20Sopenharmony_ci	struct rb_node *node;
5958c2ecf20Sopenharmony_ci
5968c2ecf20Sopenharmony_ci	if (tree->private_data && is_data_inode(tree->private_data))
5978c2ecf20Sopenharmony_ci		btrfs_split_delalloc_extent(tree->private_data, orig, split);
5988c2ecf20Sopenharmony_ci
5998c2ecf20Sopenharmony_ci	prealloc->start = orig->start;
6008c2ecf20Sopenharmony_ci	prealloc->end = split - 1;
6018c2ecf20Sopenharmony_ci	prealloc->state = orig->state;
6028c2ecf20Sopenharmony_ci	orig->start = split;
6038c2ecf20Sopenharmony_ci
6048c2ecf20Sopenharmony_ci	node = tree_insert(&tree->state, &orig->rb_node, prealloc->end,
6058c2ecf20Sopenharmony_ci			   &prealloc->rb_node, NULL, NULL);
6068c2ecf20Sopenharmony_ci	if (node) {
6078c2ecf20Sopenharmony_ci		free_extent_state(prealloc);
6088c2ecf20Sopenharmony_ci		return -EEXIST;
6098c2ecf20Sopenharmony_ci	}
6108c2ecf20Sopenharmony_ci	return 0;
6118c2ecf20Sopenharmony_ci}
6128c2ecf20Sopenharmony_ci
6138c2ecf20Sopenharmony_cistatic struct extent_state *next_state(struct extent_state *state)
6148c2ecf20Sopenharmony_ci{
6158c2ecf20Sopenharmony_ci	struct rb_node *next = rb_next(&state->rb_node);
6168c2ecf20Sopenharmony_ci	if (next)
6178c2ecf20Sopenharmony_ci		return rb_entry(next, struct extent_state, rb_node);
6188c2ecf20Sopenharmony_ci	else
6198c2ecf20Sopenharmony_ci		return NULL;
6208c2ecf20Sopenharmony_ci}
6218c2ecf20Sopenharmony_ci
6228c2ecf20Sopenharmony_ci/*
6238c2ecf20Sopenharmony_ci * utility function to clear some bits in an extent state struct.
6248c2ecf20Sopenharmony_ci * it will optionally wake up anyone waiting on this state (wake == 1).
6258c2ecf20Sopenharmony_ci *
6268c2ecf20Sopenharmony_ci * If no bits are set on the state struct after clearing things, the
6278c2ecf20Sopenharmony_ci * struct is freed and removed from the tree
6288c2ecf20Sopenharmony_ci */
6298c2ecf20Sopenharmony_cistatic struct extent_state *clear_state_bit(struct extent_io_tree *tree,
6308c2ecf20Sopenharmony_ci					    struct extent_state *state,
6318c2ecf20Sopenharmony_ci					    unsigned *bits, int wake,
6328c2ecf20Sopenharmony_ci					    struct extent_changeset *changeset)
6338c2ecf20Sopenharmony_ci{
6348c2ecf20Sopenharmony_ci	struct extent_state *next;
6358c2ecf20Sopenharmony_ci	unsigned bits_to_clear = *bits & ~EXTENT_CTLBITS;
6368c2ecf20Sopenharmony_ci	int ret;
6378c2ecf20Sopenharmony_ci
6388c2ecf20Sopenharmony_ci	if ((bits_to_clear & EXTENT_DIRTY) && (state->state & EXTENT_DIRTY)) {
6398c2ecf20Sopenharmony_ci		u64 range = state->end - state->start + 1;
6408c2ecf20Sopenharmony_ci		WARN_ON(range > tree->dirty_bytes);
6418c2ecf20Sopenharmony_ci		tree->dirty_bytes -= range;
6428c2ecf20Sopenharmony_ci	}
6438c2ecf20Sopenharmony_ci
6448c2ecf20Sopenharmony_ci	if (tree->private_data && is_data_inode(tree->private_data))
6458c2ecf20Sopenharmony_ci		btrfs_clear_delalloc_extent(tree->private_data, state, bits);
6468c2ecf20Sopenharmony_ci
6478c2ecf20Sopenharmony_ci	ret = add_extent_changeset(state, bits_to_clear, changeset, 0);
6488c2ecf20Sopenharmony_ci	BUG_ON(ret < 0);
6498c2ecf20Sopenharmony_ci	state->state &= ~bits_to_clear;
6508c2ecf20Sopenharmony_ci	if (wake)
6518c2ecf20Sopenharmony_ci		wake_up(&state->wq);
6528c2ecf20Sopenharmony_ci	if (state->state == 0) {
6538c2ecf20Sopenharmony_ci		next = next_state(state);
6548c2ecf20Sopenharmony_ci		if (extent_state_in_tree(state)) {
6558c2ecf20Sopenharmony_ci			rb_erase(&state->rb_node, &tree->state);
6568c2ecf20Sopenharmony_ci			RB_CLEAR_NODE(&state->rb_node);
6578c2ecf20Sopenharmony_ci			free_extent_state(state);
6588c2ecf20Sopenharmony_ci		} else {
6598c2ecf20Sopenharmony_ci			WARN_ON(1);
6608c2ecf20Sopenharmony_ci		}
6618c2ecf20Sopenharmony_ci	} else {
6628c2ecf20Sopenharmony_ci		merge_state(tree, state);
6638c2ecf20Sopenharmony_ci		next = next_state(state);
6648c2ecf20Sopenharmony_ci	}
6658c2ecf20Sopenharmony_ci	return next;
6668c2ecf20Sopenharmony_ci}
6678c2ecf20Sopenharmony_ci
6688c2ecf20Sopenharmony_cistatic struct extent_state *
6698c2ecf20Sopenharmony_cialloc_extent_state_atomic(struct extent_state *prealloc)
6708c2ecf20Sopenharmony_ci{
6718c2ecf20Sopenharmony_ci	if (!prealloc)
6728c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state(GFP_ATOMIC);
6738c2ecf20Sopenharmony_ci
6748c2ecf20Sopenharmony_ci	return prealloc;
6758c2ecf20Sopenharmony_ci}
6768c2ecf20Sopenharmony_ci
6778c2ecf20Sopenharmony_cistatic void extent_io_tree_panic(struct extent_io_tree *tree, int err)
6788c2ecf20Sopenharmony_ci{
6798c2ecf20Sopenharmony_ci	btrfs_panic(tree->fs_info, err,
6808c2ecf20Sopenharmony_ci	"locking error: extent tree was modified by another thread while locked");
6818c2ecf20Sopenharmony_ci}
6828c2ecf20Sopenharmony_ci
6838c2ecf20Sopenharmony_ci/*
6848c2ecf20Sopenharmony_ci * clear some bits on a range in the tree.  This may require splitting
6858c2ecf20Sopenharmony_ci * or inserting elements in the tree, so the gfp mask is used to
6868c2ecf20Sopenharmony_ci * indicate which allocations or sleeping are allowed.
6878c2ecf20Sopenharmony_ci *
6888c2ecf20Sopenharmony_ci * pass 'wake' == 1 to kick any sleepers, and 'delete' == 1 to remove
6898c2ecf20Sopenharmony_ci * the given range from the tree regardless of state (ie for truncate).
6908c2ecf20Sopenharmony_ci *
6918c2ecf20Sopenharmony_ci * the range [start, end] is inclusive.
6928c2ecf20Sopenharmony_ci *
6938c2ecf20Sopenharmony_ci * This takes the tree lock, and returns 0 on success and < 0 on error.
6948c2ecf20Sopenharmony_ci */
6958c2ecf20Sopenharmony_ciint __clear_extent_bit(struct extent_io_tree *tree, u64 start, u64 end,
6968c2ecf20Sopenharmony_ci			      unsigned bits, int wake, int delete,
6978c2ecf20Sopenharmony_ci			      struct extent_state **cached_state,
6988c2ecf20Sopenharmony_ci			      gfp_t mask, struct extent_changeset *changeset)
6998c2ecf20Sopenharmony_ci{
7008c2ecf20Sopenharmony_ci	struct extent_state *state;
7018c2ecf20Sopenharmony_ci	struct extent_state *cached;
7028c2ecf20Sopenharmony_ci	struct extent_state *prealloc = NULL;
7038c2ecf20Sopenharmony_ci	struct rb_node *node;
7048c2ecf20Sopenharmony_ci	u64 last_end;
7058c2ecf20Sopenharmony_ci	int err;
7068c2ecf20Sopenharmony_ci	int clear = 0;
7078c2ecf20Sopenharmony_ci
7088c2ecf20Sopenharmony_ci	btrfs_debug_check_extent_io_range(tree, start, end);
7098c2ecf20Sopenharmony_ci	trace_btrfs_clear_extent_bit(tree, start, end - start + 1, bits);
7108c2ecf20Sopenharmony_ci
7118c2ecf20Sopenharmony_ci	if (bits & EXTENT_DELALLOC)
7128c2ecf20Sopenharmony_ci		bits |= EXTENT_NORESERVE;
7138c2ecf20Sopenharmony_ci
7148c2ecf20Sopenharmony_ci	if (delete)
7158c2ecf20Sopenharmony_ci		bits |= ~EXTENT_CTLBITS;
7168c2ecf20Sopenharmony_ci
7178c2ecf20Sopenharmony_ci	if (bits & (EXTENT_LOCKED | EXTENT_BOUNDARY))
7188c2ecf20Sopenharmony_ci		clear = 1;
7198c2ecf20Sopenharmony_ciagain:
7208c2ecf20Sopenharmony_ci	if (!prealloc && gfpflags_allow_blocking(mask)) {
7218c2ecf20Sopenharmony_ci		/*
7228c2ecf20Sopenharmony_ci		 * Don't care for allocation failure here because we might end
7238c2ecf20Sopenharmony_ci		 * up not needing the pre-allocated extent state at all, which
7248c2ecf20Sopenharmony_ci		 * is the case if we only have in the tree extent states that
7258c2ecf20Sopenharmony_ci		 * cover our input range and don't cover too any other range.
7268c2ecf20Sopenharmony_ci		 * If we end up needing a new extent state we allocate it later.
7278c2ecf20Sopenharmony_ci		 */
7288c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state(mask);
7298c2ecf20Sopenharmony_ci	}
7308c2ecf20Sopenharmony_ci
7318c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
7328c2ecf20Sopenharmony_ci	if (cached_state) {
7338c2ecf20Sopenharmony_ci		cached = *cached_state;
7348c2ecf20Sopenharmony_ci
7358c2ecf20Sopenharmony_ci		if (clear) {
7368c2ecf20Sopenharmony_ci			*cached_state = NULL;
7378c2ecf20Sopenharmony_ci			cached_state = NULL;
7388c2ecf20Sopenharmony_ci		}
7398c2ecf20Sopenharmony_ci
7408c2ecf20Sopenharmony_ci		if (cached && extent_state_in_tree(cached) &&
7418c2ecf20Sopenharmony_ci		    cached->start <= start && cached->end > start) {
7428c2ecf20Sopenharmony_ci			if (clear)
7438c2ecf20Sopenharmony_ci				refcount_dec(&cached->refs);
7448c2ecf20Sopenharmony_ci			state = cached;
7458c2ecf20Sopenharmony_ci			goto hit_next;
7468c2ecf20Sopenharmony_ci		}
7478c2ecf20Sopenharmony_ci		if (clear)
7488c2ecf20Sopenharmony_ci			free_extent_state(cached);
7498c2ecf20Sopenharmony_ci	}
7508c2ecf20Sopenharmony_ci	/*
7518c2ecf20Sopenharmony_ci	 * this search will find the extents that end after
7528c2ecf20Sopenharmony_ci	 * our range starts
7538c2ecf20Sopenharmony_ci	 */
7548c2ecf20Sopenharmony_ci	node = tree_search(tree, start);
7558c2ecf20Sopenharmony_ci	if (!node)
7568c2ecf20Sopenharmony_ci		goto out;
7578c2ecf20Sopenharmony_ci	state = rb_entry(node, struct extent_state, rb_node);
7588c2ecf20Sopenharmony_cihit_next:
7598c2ecf20Sopenharmony_ci	if (state->start > end)
7608c2ecf20Sopenharmony_ci		goto out;
7618c2ecf20Sopenharmony_ci	WARN_ON(state->end < start);
7628c2ecf20Sopenharmony_ci	last_end = state->end;
7638c2ecf20Sopenharmony_ci
7648c2ecf20Sopenharmony_ci	/* the state doesn't have the wanted bits, go ahead */
7658c2ecf20Sopenharmony_ci	if (!(state->state & bits)) {
7668c2ecf20Sopenharmony_ci		state = next_state(state);
7678c2ecf20Sopenharmony_ci		goto next;
7688c2ecf20Sopenharmony_ci	}
7698c2ecf20Sopenharmony_ci
7708c2ecf20Sopenharmony_ci	/*
7718c2ecf20Sopenharmony_ci	 *     | ---- desired range ---- |
7728c2ecf20Sopenharmony_ci	 *  | state | or
7738c2ecf20Sopenharmony_ci	 *  | ------------- state -------------- |
7748c2ecf20Sopenharmony_ci	 *
7758c2ecf20Sopenharmony_ci	 * We need to split the extent we found, and may flip
7768c2ecf20Sopenharmony_ci	 * bits on second half.
7778c2ecf20Sopenharmony_ci	 *
7788c2ecf20Sopenharmony_ci	 * If the extent we found extends past our range, we
7798c2ecf20Sopenharmony_ci	 * just split and search again.  It'll get split again
7808c2ecf20Sopenharmony_ci	 * the next time though.
7818c2ecf20Sopenharmony_ci	 *
7828c2ecf20Sopenharmony_ci	 * If the extent we found is inside our range, we clear
7838c2ecf20Sopenharmony_ci	 * the desired bit on it.
7848c2ecf20Sopenharmony_ci	 */
7858c2ecf20Sopenharmony_ci
7868c2ecf20Sopenharmony_ci	if (state->start < start) {
7878c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
7888c2ecf20Sopenharmony_ci		BUG_ON(!prealloc);
7898c2ecf20Sopenharmony_ci		err = split_state(tree, state, prealloc, start);
7908c2ecf20Sopenharmony_ci		if (err)
7918c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
7928c2ecf20Sopenharmony_ci
7938c2ecf20Sopenharmony_ci		prealloc = NULL;
7948c2ecf20Sopenharmony_ci		if (err)
7958c2ecf20Sopenharmony_ci			goto out;
7968c2ecf20Sopenharmony_ci		if (state->end <= end) {
7978c2ecf20Sopenharmony_ci			state = clear_state_bit(tree, state, &bits, wake,
7988c2ecf20Sopenharmony_ci						changeset);
7998c2ecf20Sopenharmony_ci			goto next;
8008c2ecf20Sopenharmony_ci		}
8018c2ecf20Sopenharmony_ci		goto search_again;
8028c2ecf20Sopenharmony_ci	}
8038c2ecf20Sopenharmony_ci	/*
8048c2ecf20Sopenharmony_ci	 * | ---- desired range ---- |
8058c2ecf20Sopenharmony_ci	 *                        | state |
8068c2ecf20Sopenharmony_ci	 * We need to split the extent, and clear the bit
8078c2ecf20Sopenharmony_ci	 * on the first half
8088c2ecf20Sopenharmony_ci	 */
8098c2ecf20Sopenharmony_ci	if (state->start <= end && state->end > end) {
8108c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
8118c2ecf20Sopenharmony_ci		BUG_ON(!prealloc);
8128c2ecf20Sopenharmony_ci		err = split_state(tree, state, prealloc, end + 1);
8138c2ecf20Sopenharmony_ci		if (err)
8148c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
8158c2ecf20Sopenharmony_ci
8168c2ecf20Sopenharmony_ci		if (wake)
8178c2ecf20Sopenharmony_ci			wake_up(&state->wq);
8188c2ecf20Sopenharmony_ci
8198c2ecf20Sopenharmony_ci		clear_state_bit(tree, prealloc, &bits, wake, changeset);
8208c2ecf20Sopenharmony_ci
8218c2ecf20Sopenharmony_ci		prealloc = NULL;
8228c2ecf20Sopenharmony_ci		goto out;
8238c2ecf20Sopenharmony_ci	}
8248c2ecf20Sopenharmony_ci
8258c2ecf20Sopenharmony_ci	state = clear_state_bit(tree, state, &bits, wake, changeset);
8268c2ecf20Sopenharmony_cinext:
8278c2ecf20Sopenharmony_ci	if (last_end == (u64)-1)
8288c2ecf20Sopenharmony_ci		goto out;
8298c2ecf20Sopenharmony_ci	start = last_end + 1;
8308c2ecf20Sopenharmony_ci	if (start <= end && state && !need_resched())
8318c2ecf20Sopenharmony_ci		goto hit_next;
8328c2ecf20Sopenharmony_ci
8338c2ecf20Sopenharmony_cisearch_again:
8348c2ecf20Sopenharmony_ci	if (start > end)
8358c2ecf20Sopenharmony_ci		goto out;
8368c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
8378c2ecf20Sopenharmony_ci	if (gfpflags_allow_blocking(mask))
8388c2ecf20Sopenharmony_ci		cond_resched();
8398c2ecf20Sopenharmony_ci	goto again;
8408c2ecf20Sopenharmony_ci
8418c2ecf20Sopenharmony_ciout:
8428c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
8438c2ecf20Sopenharmony_ci	if (prealloc)
8448c2ecf20Sopenharmony_ci		free_extent_state(prealloc);
8458c2ecf20Sopenharmony_ci
8468c2ecf20Sopenharmony_ci	return 0;
8478c2ecf20Sopenharmony_ci
8488c2ecf20Sopenharmony_ci}
8498c2ecf20Sopenharmony_ci
8508c2ecf20Sopenharmony_cistatic void wait_on_state(struct extent_io_tree *tree,
8518c2ecf20Sopenharmony_ci			  struct extent_state *state)
8528c2ecf20Sopenharmony_ci		__releases(tree->lock)
8538c2ecf20Sopenharmony_ci		__acquires(tree->lock)
8548c2ecf20Sopenharmony_ci{
8558c2ecf20Sopenharmony_ci	DEFINE_WAIT(wait);
8568c2ecf20Sopenharmony_ci	prepare_to_wait(&state->wq, &wait, TASK_UNINTERRUPTIBLE);
8578c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
8588c2ecf20Sopenharmony_ci	schedule();
8598c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
8608c2ecf20Sopenharmony_ci	finish_wait(&state->wq, &wait);
8618c2ecf20Sopenharmony_ci}
8628c2ecf20Sopenharmony_ci
8638c2ecf20Sopenharmony_ci/*
8648c2ecf20Sopenharmony_ci * waits for one or more bits to clear on a range in the state tree.
8658c2ecf20Sopenharmony_ci * The range [start, end] is inclusive.
8668c2ecf20Sopenharmony_ci * The tree lock is taken by this function
8678c2ecf20Sopenharmony_ci */
8688c2ecf20Sopenharmony_cistatic void wait_extent_bit(struct extent_io_tree *tree, u64 start, u64 end,
8698c2ecf20Sopenharmony_ci			    unsigned long bits)
8708c2ecf20Sopenharmony_ci{
8718c2ecf20Sopenharmony_ci	struct extent_state *state;
8728c2ecf20Sopenharmony_ci	struct rb_node *node;
8738c2ecf20Sopenharmony_ci
8748c2ecf20Sopenharmony_ci	btrfs_debug_check_extent_io_range(tree, start, end);
8758c2ecf20Sopenharmony_ci
8768c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
8778c2ecf20Sopenharmony_ciagain:
8788c2ecf20Sopenharmony_ci	while (1) {
8798c2ecf20Sopenharmony_ci		/*
8808c2ecf20Sopenharmony_ci		 * this search will find all the extents that end after
8818c2ecf20Sopenharmony_ci		 * our range starts
8828c2ecf20Sopenharmony_ci		 */
8838c2ecf20Sopenharmony_ci		node = tree_search(tree, start);
8848c2ecf20Sopenharmony_ciprocess_node:
8858c2ecf20Sopenharmony_ci		if (!node)
8868c2ecf20Sopenharmony_ci			break;
8878c2ecf20Sopenharmony_ci
8888c2ecf20Sopenharmony_ci		state = rb_entry(node, struct extent_state, rb_node);
8898c2ecf20Sopenharmony_ci
8908c2ecf20Sopenharmony_ci		if (state->start > end)
8918c2ecf20Sopenharmony_ci			goto out;
8928c2ecf20Sopenharmony_ci
8938c2ecf20Sopenharmony_ci		if (state->state & bits) {
8948c2ecf20Sopenharmony_ci			start = state->start;
8958c2ecf20Sopenharmony_ci			refcount_inc(&state->refs);
8968c2ecf20Sopenharmony_ci			wait_on_state(tree, state);
8978c2ecf20Sopenharmony_ci			free_extent_state(state);
8988c2ecf20Sopenharmony_ci			goto again;
8998c2ecf20Sopenharmony_ci		}
9008c2ecf20Sopenharmony_ci		start = state->end + 1;
9018c2ecf20Sopenharmony_ci
9028c2ecf20Sopenharmony_ci		if (start > end)
9038c2ecf20Sopenharmony_ci			break;
9048c2ecf20Sopenharmony_ci
9058c2ecf20Sopenharmony_ci		if (!cond_resched_lock(&tree->lock)) {
9068c2ecf20Sopenharmony_ci			node = rb_next(node);
9078c2ecf20Sopenharmony_ci			goto process_node;
9088c2ecf20Sopenharmony_ci		}
9098c2ecf20Sopenharmony_ci	}
9108c2ecf20Sopenharmony_ciout:
9118c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
9128c2ecf20Sopenharmony_ci}
9138c2ecf20Sopenharmony_ci
9148c2ecf20Sopenharmony_cistatic void set_state_bits(struct extent_io_tree *tree,
9158c2ecf20Sopenharmony_ci			   struct extent_state *state,
9168c2ecf20Sopenharmony_ci			   unsigned *bits, struct extent_changeset *changeset)
9178c2ecf20Sopenharmony_ci{
9188c2ecf20Sopenharmony_ci	unsigned bits_to_set = *bits & ~EXTENT_CTLBITS;
9198c2ecf20Sopenharmony_ci	int ret;
9208c2ecf20Sopenharmony_ci
9218c2ecf20Sopenharmony_ci	if (tree->private_data && is_data_inode(tree->private_data))
9228c2ecf20Sopenharmony_ci		btrfs_set_delalloc_extent(tree->private_data, state, bits);
9238c2ecf20Sopenharmony_ci
9248c2ecf20Sopenharmony_ci	if ((bits_to_set & EXTENT_DIRTY) && !(state->state & EXTENT_DIRTY)) {
9258c2ecf20Sopenharmony_ci		u64 range = state->end - state->start + 1;
9268c2ecf20Sopenharmony_ci		tree->dirty_bytes += range;
9278c2ecf20Sopenharmony_ci	}
9288c2ecf20Sopenharmony_ci	ret = add_extent_changeset(state, bits_to_set, changeset, 1);
9298c2ecf20Sopenharmony_ci	BUG_ON(ret < 0);
9308c2ecf20Sopenharmony_ci	state->state |= bits_to_set;
9318c2ecf20Sopenharmony_ci}
9328c2ecf20Sopenharmony_ci
9338c2ecf20Sopenharmony_cistatic void cache_state_if_flags(struct extent_state *state,
9348c2ecf20Sopenharmony_ci				 struct extent_state **cached_ptr,
9358c2ecf20Sopenharmony_ci				 unsigned flags)
9368c2ecf20Sopenharmony_ci{
9378c2ecf20Sopenharmony_ci	if (cached_ptr && !(*cached_ptr)) {
9388c2ecf20Sopenharmony_ci		if (!flags || (state->state & flags)) {
9398c2ecf20Sopenharmony_ci			*cached_ptr = state;
9408c2ecf20Sopenharmony_ci			refcount_inc(&state->refs);
9418c2ecf20Sopenharmony_ci		}
9428c2ecf20Sopenharmony_ci	}
9438c2ecf20Sopenharmony_ci}
9448c2ecf20Sopenharmony_ci
9458c2ecf20Sopenharmony_cistatic void cache_state(struct extent_state *state,
9468c2ecf20Sopenharmony_ci			struct extent_state **cached_ptr)
9478c2ecf20Sopenharmony_ci{
9488c2ecf20Sopenharmony_ci	return cache_state_if_flags(state, cached_ptr,
9498c2ecf20Sopenharmony_ci				    EXTENT_LOCKED | EXTENT_BOUNDARY);
9508c2ecf20Sopenharmony_ci}
9518c2ecf20Sopenharmony_ci
9528c2ecf20Sopenharmony_ci/*
9538c2ecf20Sopenharmony_ci * set some bits on a range in the tree.  This may require allocations or
9548c2ecf20Sopenharmony_ci * sleeping, so the gfp mask is used to indicate what is allowed.
9558c2ecf20Sopenharmony_ci *
9568c2ecf20Sopenharmony_ci * If any of the exclusive bits are set, this will fail with -EEXIST if some
9578c2ecf20Sopenharmony_ci * part of the range already has the desired bits set.  The start of the
9588c2ecf20Sopenharmony_ci * existing range is returned in failed_start in this case.
9598c2ecf20Sopenharmony_ci *
9608c2ecf20Sopenharmony_ci * [start, end] is inclusive This takes the tree lock.
9618c2ecf20Sopenharmony_ci */
9628c2ecf20Sopenharmony_ci
9638c2ecf20Sopenharmony_cistatic int __must_check
9648c2ecf20Sopenharmony_ci__set_extent_bit(struct extent_io_tree *tree, u64 start, u64 end,
9658c2ecf20Sopenharmony_ci		 unsigned bits, unsigned exclusive_bits,
9668c2ecf20Sopenharmony_ci		 u64 *failed_start, struct extent_state **cached_state,
9678c2ecf20Sopenharmony_ci		 gfp_t mask, struct extent_changeset *changeset)
9688c2ecf20Sopenharmony_ci{
9698c2ecf20Sopenharmony_ci	struct extent_state *state;
9708c2ecf20Sopenharmony_ci	struct extent_state *prealloc = NULL;
9718c2ecf20Sopenharmony_ci	struct rb_node *node;
9728c2ecf20Sopenharmony_ci	struct rb_node **p;
9738c2ecf20Sopenharmony_ci	struct rb_node *parent;
9748c2ecf20Sopenharmony_ci	int err = 0;
9758c2ecf20Sopenharmony_ci	u64 last_start;
9768c2ecf20Sopenharmony_ci	u64 last_end;
9778c2ecf20Sopenharmony_ci
9788c2ecf20Sopenharmony_ci	btrfs_debug_check_extent_io_range(tree, start, end);
9798c2ecf20Sopenharmony_ci	trace_btrfs_set_extent_bit(tree, start, end - start + 1, bits);
9808c2ecf20Sopenharmony_ci
9818c2ecf20Sopenharmony_ciagain:
9828c2ecf20Sopenharmony_ci	if (!prealloc && gfpflags_allow_blocking(mask)) {
9838c2ecf20Sopenharmony_ci		/*
9848c2ecf20Sopenharmony_ci		 * Don't care for allocation failure here because we might end
9858c2ecf20Sopenharmony_ci		 * up not needing the pre-allocated extent state at all, which
9868c2ecf20Sopenharmony_ci		 * is the case if we only have in the tree extent states that
9878c2ecf20Sopenharmony_ci		 * cover our input range and don't cover too any other range.
9888c2ecf20Sopenharmony_ci		 * If we end up needing a new extent state we allocate it later.
9898c2ecf20Sopenharmony_ci		 */
9908c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state(mask);
9918c2ecf20Sopenharmony_ci	}
9928c2ecf20Sopenharmony_ci
9938c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
9948c2ecf20Sopenharmony_ci	if (cached_state && *cached_state) {
9958c2ecf20Sopenharmony_ci		state = *cached_state;
9968c2ecf20Sopenharmony_ci		if (state->start <= start && state->end > start &&
9978c2ecf20Sopenharmony_ci		    extent_state_in_tree(state)) {
9988c2ecf20Sopenharmony_ci			node = &state->rb_node;
9998c2ecf20Sopenharmony_ci			goto hit_next;
10008c2ecf20Sopenharmony_ci		}
10018c2ecf20Sopenharmony_ci	}
10028c2ecf20Sopenharmony_ci	/*
10038c2ecf20Sopenharmony_ci	 * this search will find all the extents that end after
10048c2ecf20Sopenharmony_ci	 * our range starts.
10058c2ecf20Sopenharmony_ci	 */
10068c2ecf20Sopenharmony_ci	node = tree_search_for_insert(tree, start, &p, &parent);
10078c2ecf20Sopenharmony_ci	if (!node) {
10088c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
10098c2ecf20Sopenharmony_ci		BUG_ON(!prealloc);
10108c2ecf20Sopenharmony_ci		err = insert_state(tree, prealloc, start, end,
10118c2ecf20Sopenharmony_ci				   &p, &parent, &bits, changeset);
10128c2ecf20Sopenharmony_ci		if (err)
10138c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
10148c2ecf20Sopenharmony_ci
10158c2ecf20Sopenharmony_ci		cache_state(prealloc, cached_state);
10168c2ecf20Sopenharmony_ci		prealloc = NULL;
10178c2ecf20Sopenharmony_ci		goto out;
10188c2ecf20Sopenharmony_ci	}
10198c2ecf20Sopenharmony_ci	state = rb_entry(node, struct extent_state, rb_node);
10208c2ecf20Sopenharmony_cihit_next:
10218c2ecf20Sopenharmony_ci	last_start = state->start;
10228c2ecf20Sopenharmony_ci	last_end = state->end;
10238c2ecf20Sopenharmony_ci
10248c2ecf20Sopenharmony_ci	/*
10258c2ecf20Sopenharmony_ci	 * | ---- desired range ---- |
10268c2ecf20Sopenharmony_ci	 * | state |
10278c2ecf20Sopenharmony_ci	 *
10288c2ecf20Sopenharmony_ci	 * Just lock what we found and keep going
10298c2ecf20Sopenharmony_ci	 */
10308c2ecf20Sopenharmony_ci	if (state->start == start && state->end <= end) {
10318c2ecf20Sopenharmony_ci		if (state->state & exclusive_bits) {
10328c2ecf20Sopenharmony_ci			*failed_start = state->start;
10338c2ecf20Sopenharmony_ci			err = -EEXIST;
10348c2ecf20Sopenharmony_ci			goto out;
10358c2ecf20Sopenharmony_ci		}
10368c2ecf20Sopenharmony_ci
10378c2ecf20Sopenharmony_ci		set_state_bits(tree, state, &bits, changeset);
10388c2ecf20Sopenharmony_ci		cache_state(state, cached_state);
10398c2ecf20Sopenharmony_ci		merge_state(tree, state);
10408c2ecf20Sopenharmony_ci		if (last_end == (u64)-1)
10418c2ecf20Sopenharmony_ci			goto out;
10428c2ecf20Sopenharmony_ci		start = last_end + 1;
10438c2ecf20Sopenharmony_ci		state = next_state(state);
10448c2ecf20Sopenharmony_ci		if (start < end && state && state->start == start &&
10458c2ecf20Sopenharmony_ci		    !need_resched())
10468c2ecf20Sopenharmony_ci			goto hit_next;
10478c2ecf20Sopenharmony_ci		goto search_again;
10488c2ecf20Sopenharmony_ci	}
10498c2ecf20Sopenharmony_ci
10508c2ecf20Sopenharmony_ci	/*
10518c2ecf20Sopenharmony_ci	 *     | ---- desired range ---- |
10528c2ecf20Sopenharmony_ci	 * | state |
10538c2ecf20Sopenharmony_ci	 *   or
10548c2ecf20Sopenharmony_ci	 * | ------------- state -------------- |
10558c2ecf20Sopenharmony_ci	 *
10568c2ecf20Sopenharmony_ci	 * We need to split the extent we found, and may flip bits on
10578c2ecf20Sopenharmony_ci	 * second half.
10588c2ecf20Sopenharmony_ci	 *
10598c2ecf20Sopenharmony_ci	 * If the extent we found extends past our
10608c2ecf20Sopenharmony_ci	 * range, we just split and search again.  It'll get split
10618c2ecf20Sopenharmony_ci	 * again the next time though.
10628c2ecf20Sopenharmony_ci	 *
10638c2ecf20Sopenharmony_ci	 * If the extent we found is inside our range, we set the
10648c2ecf20Sopenharmony_ci	 * desired bit on it.
10658c2ecf20Sopenharmony_ci	 */
10668c2ecf20Sopenharmony_ci	if (state->start < start) {
10678c2ecf20Sopenharmony_ci		if (state->state & exclusive_bits) {
10688c2ecf20Sopenharmony_ci			*failed_start = start;
10698c2ecf20Sopenharmony_ci			err = -EEXIST;
10708c2ecf20Sopenharmony_ci			goto out;
10718c2ecf20Sopenharmony_ci		}
10728c2ecf20Sopenharmony_ci
10738c2ecf20Sopenharmony_ci		/*
10748c2ecf20Sopenharmony_ci		 * If this extent already has all the bits we want set, then
10758c2ecf20Sopenharmony_ci		 * skip it, not necessary to split it or do anything with it.
10768c2ecf20Sopenharmony_ci		 */
10778c2ecf20Sopenharmony_ci		if ((state->state & bits) == bits) {
10788c2ecf20Sopenharmony_ci			start = state->end + 1;
10798c2ecf20Sopenharmony_ci			cache_state(state, cached_state);
10808c2ecf20Sopenharmony_ci			goto search_again;
10818c2ecf20Sopenharmony_ci		}
10828c2ecf20Sopenharmony_ci
10838c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
10848c2ecf20Sopenharmony_ci		BUG_ON(!prealloc);
10858c2ecf20Sopenharmony_ci		err = split_state(tree, state, prealloc, start);
10868c2ecf20Sopenharmony_ci		if (err)
10878c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
10888c2ecf20Sopenharmony_ci
10898c2ecf20Sopenharmony_ci		prealloc = NULL;
10908c2ecf20Sopenharmony_ci		if (err)
10918c2ecf20Sopenharmony_ci			goto out;
10928c2ecf20Sopenharmony_ci		if (state->end <= end) {
10938c2ecf20Sopenharmony_ci			set_state_bits(tree, state, &bits, changeset);
10948c2ecf20Sopenharmony_ci			cache_state(state, cached_state);
10958c2ecf20Sopenharmony_ci			merge_state(tree, state);
10968c2ecf20Sopenharmony_ci			if (last_end == (u64)-1)
10978c2ecf20Sopenharmony_ci				goto out;
10988c2ecf20Sopenharmony_ci			start = last_end + 1;
10998c2ecf20Sopenharmony_ci			state = next_state(state);
11008c2ecf20Sopenharmony_ci			if (start < end && state && state->start == start &&
11018c2ecf20Sopenharmony_ci			    !need_resched())
11028c2ecf20Sopenharmony_ci				goto hit_next;
11038c2ecf20Sopenharmony_ci		}
11048c2ecf20Sopenharmony_ci		goto search_again;
11058c2ecf20Sopenharmony_ci	}
11068c2ecf20Sopenharmony_ci	/*
11078c2ecf20Sopenharmony_ci	 * | ---- desired range ---- |
11088c2ecf20Sopenharmony_ci	 *     | state | or               | state |
11098c2ecf20Sopenharmony_ci	 *
11108c2ecf20Sopenharmony_ci	 * There's a hole, we need to insert something in it and
11118c2ecf20Sopenharmony_ci	 * ignore the extent we found.
11128c2ecf20Sopenharmony_ci	 */
11138c2ecf20Sopenharmony_ci	if (state->start > start) {
11148c2ecf20Sopenharmony_ci		u64 this_end;
11158c2ecf20Sopenharmony_ci		if (end < last_start)
11168c2ecf20Sopenharmony_ci			this_end = end;
11178c2ecf20Sopenharmony_ci		else
11188c2ecf20Sopenharmony_ci			this_end = last_start - 1;
11198c2ecf20Sopenharmony_ci
11208c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
11218c2ecf20Sopenharmony_ci		BUG_ON(!prealloc);
11228c2ecf20Sopenharmony_ci
11238c2ecf20Sopenharmony_ci		/*
11248c2ecf20Sopenharmony_ci		 * Avoid to free 'prealloc' if it can be merged with
11258c2ecf20Sopenharmony_ci		 * the later extent.
11268c2ecf20Sopenharmony_ci		 */
11278c2ecf20Sopenharmony_ci		err = insert_state(tree, prealloc, start, this_end,
11288c2ecf20Sopenharmony_ci				   NULL, NULL, &bits, changeset);
11298c2ecf20Sopenharmony_ci		if (err)
11308c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
11318c2ecf20Sopenharmony_ci
11328c2ecf20Sopenharmony_ci		cache_state(prealloc, cached_state);
11338c2ecf20Sopenharmony_ci		prealloc = NULL;
11348c2ecf20Sopenharmony_ci		start = this_end + 1;
11358c2ecf20Sopenharmony_ci		goto search_again;
11368c2ecf20Sopenharmony_ci	}
11378c2ecf20Sopenharmony_ci	/*
11388c2ecf20Sopenharmony_ci	 * | ---- desired range ---- |
11398c2ecf20Sopenharmony_ci	 *                        | state |
11408c2ecf20Sopenharmony_ci	 * We need to split the extent, and set the bit
11418c2ecf20Sopenharmony_ci	 * on the first half
11428c2ecf20Sopenharmony_ci	 */
11438c2ecf20Sopenharmony_ci	if (state->start <= end && state->end > end) {
11448c2ecf20Sopenharmony_ci		if (state->state & exclusive_bits) {
11458c2ecf20Sopenharmony_ci			*failed_start = start;
11468c2ecf20Sopenharmony_ci			err = -EEXIST;
11478c2ecf20Sopenharmony_ci			goto out;
11488c2ecf20Sopenharmony_ci		}
11498c2ecf20Sopenharmony_ci
11508c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
11518c2ecf20Sopenharmony_ci		BUG_ON(!prealloc);
11528c2ecf20Sopenharmony_ci		err = split_state(tree, state, prealloc, end + 1);
11538c2ecf20Sopenharmony_ci		if (err)
11548c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
11558c2ecf20Sopenharmony_ci
11568c2ecf20Sopenharmony_ci		set_state_bits(tree, prealloc, &bits, changeset);
11578c2ecf20Sopenharmony_ci		cache_state(prealloc, cached_state);
11588c2ecf20Sopenharmony_ci		merge_state(tree, prealloc);
11598c2ecf20Sopenharmony_ci		prealloc = NULL;
11608c2ecf20Sopenharmony_ci		goto out;
11618c2ecf20Sopenharmony_ci	}
11628c2ecf20Sopenharmony_ci
11638c2ecf20Sopenharmony_cisearch_again:
11648c2ecf20Sopenharmony_ci	if (start > end)
11658c2ecf20Sopenharmony_ci		goto out;
11668c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
11678c2ecf20Sopenharmony_ci	if (gfpflags_allow_blocking(mask))
11688c2ecf20Sopenharmony_ci		cond_resched();
11698c2ecf20Sopenharmony_ci	goto again;
11708c2ecf20Sopenharmony_ci
11718c2ecf20Sopenharmony_ciout:
11728c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
11738c2ecf20Sopenharmony_ci	if (prealloc)
11748c2ecf20Sopenharmony_ci		free_extent_state(prealloc);
11758c2ecf20Sopenharmony_ci
11768c2ecf20Sopenharmony_ci	return err;
11778c2ecf20Sopenharmony_ci
11788c2ecf20Sopenharmony_ci}
11798c2ecf20Sopenharmony_ci
11808c2ecf20Sopenharmony_ciint set_extent_bit(struct extent_io_tree *tree, u64 start, u64 end,
11818c2ecf20Sopenharmony_ci		   unsigned bits, u64 * failed_start,
11828c2ecf20Sopenharmony_ci		   struct extent_state **cached_state, gfp_t mask)
11838c2ecf20Sopenharmony_ci{
11848c2ecf20Sopenharmony_ci	return __set_extent_bit(tree, start, end, bits, 0, failed_start,
11858c2ecf20Sopenharmony_ci				cached_state, mask, NULL);
11868c2ecf20Sopenharmony_ci}
11878c2ecf20Sopenharmony_ci
11888c2ecf20Sopenharmony_ci
11898c2ecf20Sopenharmony_ci/**
11908c2ecf20Sopenharmony_ci * convert_extent_bit - convert all bits in a given range from one bit to
11918c2ecf20Sopenharmony_ci * 			another
11928c2ecf20Sopenharmony_ci * @tree:	the io tree to search
11938c2ecf20Sopenharmony_ci * @start:	the start offset in bytes
11948c2ecf20Sopenharmony_ci * @end:	the end offset in bytes (inclusive)
11958c2ecf20Sopenharmony_ci * @bits:	the bits to set in this range
11968c2ecf20Sopenharmony_ci * @clear_bits:	the bits to clear in this range
11978c2ecf20Sopenharmony_ci * @cached_state:	state that we're going to cache
11988c2ecf20Sopenharmony_ci *
11998c2ecf20Sopenharmony_ci * This will go through and set bits for the given range.  If any states exist
12008c2ecf20Sopenharmony_ci * already in this range they are set with the given bit and cleared of the
12018c2ecf20Sopenharmony_ci * clear_bits.  This is only meant to be used by things that are mergeable, ie
12028c2ecf20Sopenharmony_ci * converting from say DELALLOC to DIRTY.  This is not meant to be used with
12038c2ecf20Sopenharmony_ci * boundary bits like LOCK.
12048c2ecf20Sopenharmony_ci *
12058c2ecf20Sopenharmony_ci * All allocations are done with GFP_NOFS.
12068c2ecf20Sopenharmony_ci */
12078c2ecf20Sopenharmony_ciint convert_extent_bit(struct extent_io_tree *tree, u64 start, u64 end,
12088c2ecf20Sopenharmony_ci		       unsigned bits, unsigned clear_bits,
12098c2ecf20Sopenharmony_ci		       struct extent_state **cached_state)
12108c2ecf20Sopenharmony_ci{
12118c2ecf20Sopenharmony_ci	struct extent_state *state;
12128c2ecf20Sopenharmony_ci	struct extent_state *prealloc = NULL;
12138c2ecf20Sopenharmony_ci	struct rb_node *node;
12148c2ecf20Sopenharmony_ci	struct rb_node **p;
12158c2ecf20Sopenharmony_ci	struct rb_node *parent;
12168c2ecf20Sopenharmony_ci	int err = 0;
12178c2ecf20Sopenharmony_ci	u64 last_start;
12188c2ecf20Sopenharmony_ci	u64 last_end;
12198c2ecf20Sopenharmony_ci	bool first_iteration = true;
12208c2ecf20Sopenharmony_ci
12218c2ecf20Sopenharmony_ci	btrfs_debug_check_extent_io_range(tree, start, end);
12228c2ecf20Sopenharmony_ci	trace_btrfs_convert_extent_bit(tree, start, end - start + 1, bits,
12238c2ecf20Sopenharmony_ci				       clear_bits);
12248c2ecf20Sopenharmony_ci
12258c2ecf20Sopenharmony_ciagain:
12268c2ecf20Sopenharmony_ci	if (!prealloc) {
12278c2ecf20Sopenharmony_ci		/*
12288c2ecf20Sopenharmony_ci		 * Best effort, don't worry if extent state allocation fails
12298c2ecf20Sopenharmony_ci		 * here for the first iteration. We might have a cached state
12308c2ecf20Sopenharmony_ci		 * that matches exactly the target range, in which case no
12318c2ecf20Sopenharmony_ci		 * extent state allocations are needed. We'll only know this
12328c2ecf20Sopenharmony_ci		 * after locking the tree.
12338c2ecf20Sopenharmony_ci		 */
12348c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state(GFP_NOFS);
12358c2ecf20Sopenharmony_ci		if (!prealloc && !first_iteration)
12368c2ecf20Sopenharmony_ci			return -ENOMEM;
12378c2ecf20Sopenharmony_ci	}
12388c2ecf20Sopenharmony_ci
12398c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
12408c2ecf20Sopenharmony_ci	if (cached_state && *cached_state) {
12418c2ecf20Sopenharmony_ci		state = *cached_state;
12428c2ecf20Sopenharmony_ci		if (state->start <= start && state->end > start &&
12438c2ecf20Sopenharmony_ci		    extent_state_in_tree(state)) {
12448c2ecf20Sopenharmony_ci			node = &state->rb_node;
12458c2ecf20Sopenharmony_ci			goto hit_next;
12468c2ecf20Sopenharmony_ci		}
12478c2ecf20Sopenharmony_ci	}
12488c2ecf20Sopenharmony_ci
12498c2ecf20Sopenharmony_ci	/*
12508c2ecf20Sopenharmony_ci	 * this search will find all the extents that end after
12518c2ecf20Sopenharmony_ci	 * our range starts.
12528c2ecf20Sopenharmony_ci	 */
12538c2ecf20Sopenharmony_ci	node = tree_search_for_insert(tree, start, &p, &parent);
12548c2ecf20Sopenharmony_ci	if (!node) {
12558c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
12568c2ecf20Sopenharmony_ci		if (!prealloc) {
12578c2ecf20Sopenharmony_ci			err = -ENOMEM;
12588c2ecf20Sopenharmony_ci			goto out;
12598c2ecf20Sopenharmony_ci		}
12608c2ecf20Sopenharmony_ci		err = insert_state(tree, prealloc, start, end,
12618c2ecf20Sopenharmony_ci				   &p, &parent, &bits, NULL);
12628c2ecf20Sopenharmony_ci		if (err)
12638c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
12648c2ecf20Sopenharmony_ci		cache_state(prealloc, cached_state);
12658c2ecf20Sopenharmony_ci		prealloc = NULL;
12668c2ecf20Sopenharmony_ci		goto out;
12678c2ecf20Sopenharmony_ci	}
12688c2ecf20Sopenharmony_ci	state = rb_entry(node, struct extent_state, rb_node);
12698c2ecf20Sopenharmony_cihit_next:
12708c2ecf20Sopenharmony_ci	last_start = state->start;
12718c2ecf20Sopenharmony_ci	last_end = state->end;
12728c2ecf20Sopenharmony_ci
12738c2ecf20Sopenharmony_ci	/*
12748c2ecf20Sopenharmony_ci	 * | ---- desired range ---- |
12758c2ecf20Sopenharmony_ci	 * | state |
12768c2ecf20Sopenharmony_ci	 *
12778c2ecf20Sopenharmony_ci	 * Just lock what we found and keep going
12788c2ecf20Sopenharmony_ci	 */
12798c2ecf20Sopenharmony_ci	if (state->start == start && state->end <= end) {
12808c2ecf20Sopenharmony_ci		set_state_bits(tree, state, &bits, NULL);
12818c2ecf20Sopenharmony_ci		cache_state(state, cached_state);
12828c2ecf20Sopenharmony_ci		state = clear_state_bit(tree, state, &clear_bits, 0, NULL);
12838c2ecf20Sopenharmony_ci		if (last_end == (u64)-1)
12848c2ecf20Sopenharmony_ci			goto out;
12858c2ecf20Sopenharmony_ci		start = last_end + 1;
12868c2ecf20Sopenharmony_ci		if (start < end && state && state->start == start &&
12878c2ecf20Sopenharmony_ci		    !need_resched())
12888c2ecf20Sopenharmony_ci			goto hit_next;
12898c2ecf20Sopenharmony_ci		goto search_again;
12908c2ecf20Sopenharmony_ci	}
12918c2ecf20Sopenharmony_ci
12928c2ecf20Sopenharmony_ci	/*
12938c2ecf20Sopenharmony_ci	 *     | ---- desired range ---- |
12948c2ecf20Sopenharmony_ci	 * | state |
12958c2ecf20Sopenharmony_ci	 *   or
12968c2ecf20Sopenharmony_ci	 * | ------------- state -------------- |
12978c2ecf20Sopenharmony_ci	 *
12988c2ecf20Sopenharmony_ci	 * We need to split the extent we found, and may flip bits on
12998c2ecf20Sopenharmony_ci	 * second half.
13008c2ecf20Sopenharmony_ci	 *
13018c2ecf20Sopenharmony_ci	 * If the extent we found extends past our
13028c2ecf20Sopenharmony_ci	 * range, we just split and search again.  It'll get split
13038c2ecf20Sopenharmony_ci	 * again the next time though.
13048c2ecf20Sopenharmony_ci	 *
13058c2ecf20Sopenharmony_ci	 * If the extent we found is inside our range, we set the
13068c2ecf20Sopenharmony_ci	 * desired bit on it.
13078c2ecf20Sopenharmony_ci	 */
13088c2ecf20Sopenharmony_ci	if (state->start < start) {
13098c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
13108c2ecf20Sopenharmony_ci		if (!prealloc) {
13118c2ecf20Sopenharmony_ci			err = -ENOMEM;
13128c2ecf20Sopenharmony_ci			goto out;
13138c2ecf20Sopenharmony_ci		}
13148c2ecf20Sopenharmony_ci		err = split_state(tree, state, prealloc, start);
13158c2ecf20Sopenharmony_ci		if (err)
13168c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
13178c2ecf20Sopenharmony_ci		prealloc = NULL;
13188c2ecf20Sopenharmony_ci		if (err)
13198c2ecf20Sopenharmony_ci			goto out;
13208c2ecf20Sopenharmony_ci		if (state->end <= end) {
13218c2ecf20Sopenharmony_ci			set_state_bits(tree, state, &bits, NULL);
13228c2ecf20Sopenharmony_ci			cache_state(state, cached_state);
13238c2ecf20Sopenharmony_ci			state = clear_state_bit(tree, state, &clear_bits, 0,
13248c2ecf20Sopenharmony_ci						NULL);
13258c2ecf20Sopenharmony_ci			if (last_end == (u64)-1)
13268c2ecf20Sopenharmony_ci				goto out;
13278c2ecf20Sopenharmony_ci			start = last_end + 1;
13288c2ecf20Sopenharmony_ci			if (start < end && state && state->start == start &&
13298c2ecf20Sopenharmony_ci			    !need_resched())
13308c2ecf20Sopenharmony_ci				goto hit_next;
13318c2ecf20Sopenharmony_ci		}
13328c2ecf20Sopenharmony_ci		goto search_again;
13338c2ecf20Sopenharmony_ci	}
13348c2ecf20Sopenharmony_ci	/*
13358c2ecf20Sopenharmony_ci	 * | ---- desired range ---- |
13368c2ecf20Sopenharmony_ci	 *     | state | or               | state |
13378c2ecf20Sopenharmony_ci	 *
13388c2ecf20Sopenharmony_ci	 * There's a hole, we need to insert something in it and
13398c2ecf20Sopenharmony_ci	 * ignore the extent we found.
13408c2ecf20Sopenharmony_ci	 */
13418c2ecf20Sopenharmony_ci	if (state->start > start) {
13428c2ecf20Sopenharmony_ci		u64 this_end;
13438c2ecf20Sopenharmony_ci		if (end < last_start)
13448c2ecf20Sopenharmony_ci			this_end = end;
13458c2ecf20Sopenharmony_ci		else
13468c2ecf20Sopenharmony_ci			this_end = last_start - 1;
13478c2ecf20Sopenharmony_ci
13488c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
13498c2ecf20Sopenharmony_ci		if (!prealloc) {
13508c2ecf20Sopenharmony_ci			err = -ENOMEM;
13518c2ecf20Sopenharmony_ci			goto out;
13528c2ecf20Sopenharmony_ci		}
13538c2ecf20Sopenharmony_ci
13548c2ecf20Sopenharmony_ci		/*
13558c2ecf20Sopenharmony_ci		 * Avoid to free 'prealloc' if it can be merged with
13568c2ecf20Sopenharmony_ci		 * the later extent.
13578c2ecf20Sopenharmony_ci		 */
13588c2ecf20Sopenharmony_ci		err = insert_state(tree, prealloc, start, this_end,
13598c2ecf20Sopenharmony_ci				   NULL, NULL, &bits, NULL);
13608c2ecf20Sopenharmony_ci		if (err)
13618c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
13628c2ecf20Sopenharmony_ci		cache_state(prealloc, cached_state);
13638c2ecf20Sopenharmony_ci		prealloc = NULL;
13648c2ecf20Sopenharmony_ci		start = this_end + 1;
13658c2ecf20Sopenharmony_ci		goto search_again;
13668c2ecf20Sopenharmony_ci	}
13678c2ecf20Sopenharmony_ci	/*
13688c2ecf20Sopenharmony_ci	 * | ---- desired range ---- |
13698c2ecf20Sopenharmony_ci	 *                        | state |
13708c2ecf20Sopenharmony_ci	 * We need to split the extent, and set the bit
13718c2ecf20Sopenharmony_ci	 * on the first half
13728c2ecf20Sopenharmony_ci	 */
13738c2ecf20Sopenharmony_ci	if (state->start <= end && state->end > end) {
13748c2ecf20Sopenharmony_ci		prealloc = alloc_extent_state_atomic(prealloc);
13758c2ecf20Sopenharmony_ci		if (!prealloc) {
13768c2ecf20Sopenharmony_ci			err = -ENOMEM;
13778c2ecf20Sopenharmony_ci			goto out;
13788c2ecf20Sopenharmony_ci		}
13798c2ecf20Sopenharmony_ci
13808c2ecf20Sopenharmony_ci		err = split_state(tree, state, prealloc, end + 1);
13818c2ecf20Sopenharmony_ci		if (err)
13828c2ecf20Sopenharmony_ci			extent_io_tree_panic(tree, err);
13838c2ecf20Sopenharmony_ci
13848c2ecf20Sopenharmony_ci		set_state_bits(tree, prealloc, &bits, NULL);
13858c2ecf20Sopenharmony_ci		cache_state(prealloc, cached_state);
13868c2ecf20Sopenharmony_ci		clear_state_bit(tree, prealloc, &clear_bits, 0, NULL);
13878c2ecf20Sopenharmony_ci		prealloc = NULL;
13888c2ecf20Sopenharmony_ci		goto out;
13898c2ecf20Sopenharmony_ci	}
13908c2ecf20Sopenharmony_ci
13918c2ecf20Sopenharmony_cisearch_again:
13928c2ecf20Sopenharmony_ci	if (start > end)
13938c2ecf20Sopenharmony_ci		goto out;
13948c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
13958c2ecf20Sopenharmony_ci	cond_resched();
13968c2ecf20Sopenharmony_ci	first_iteration = false;
13978c2ecf20Sopenharmony_ci	goto again;
13988c2ecf20Sopenharmony_ci
13998c2ecf20Sopenharmony_ciout:
14008c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
14018c2ecf20Sopenharmony_ci	if (prealloc)
14028c2ecf20Sopenharmony_ci		free_extent_state(prealloc);
14038c2ecf20Sopenharmony_ci
14048c2ecf20Sopenharmony_ci	return err;
14058c2ecf20Sopenharmony_ci}
14068c2ecf20Sopenharmony_ci
14078c2ecf20Sopenharmony_ci/* wrappers around set/clear extent bit */
14088c2ecf20Sopenharmony_ciint set_record_extent_bits(struct extent_io_tree *tree, u64 start, u64 end,
14098c2ecf20Sopenharmony_ci			   unsigned bits, struct extent_changeset *changeset)
14108c2ecf20Sopenharmony_ci{
14118c2ecf20Sopenharmony_ci	/*
14128c2ecf20Sopenharmony_ci	 * We don't support EXTENT_LOCKED yet, as current changeset will
14138c2ecf20Sopenharmony_ci	 * record any bits changed, so for EXTENT_LOCKED case, it will
14148c2ecf20Sopenharmony_ci	 * either fail with -EEXIST or changeset will record the whole
14158c2ecf20Sopenharmony_ci	 * range.
14168c2ecf20Sopenharmony_ci	 */
14178c2ecf20Sopenharmony_ci	BUG_ON(bits & EXTENT_LOCKED);
14188c2ecf20Sopenharmony_ci
14198c2ecf20Sopenharmony_ci	return __set_extent_bit(tree, start, end, bits, 0, NULL, NULL, GFP_NOFS,
14208c2ecf20Sopenharmony_ci				changeset);
14218c2ecf20Sopenharmony_ci}
14228c2ecf20Sopenharmony_ci
14238c2ecf20Sopenharmony_ciint set_extent_bits_nowait(struct extent_io_tree *tree, u64 start, u64 end,
14248c2ecf20Sopenharmony_ci			   unsigned bits)
14258c2ecf20Sopenharmony_ci{
14268c2ecf20Sopenharmony_ci	return __set_extent_bit(tree, start, end, bits, 0, NULL, NULL,
14278c2ecf20Sopenharmony_ci				GFP_NOWAIT, NULL);
14288c2ecf20Sopenharmony_ci}
14298c2ecf20Sopenharmony_ci
14308c2ecf20Sopenharmony_ciint clear_extent_bit(struct extent_io_tree *tree, u64 start, u64 end,
14318c2ecf20Sopenharmony_ci		     unsigned bits, int wake, int delete,
14328c2ecf20Sopenharmony_ci		     struct extent_state **cached)
14338c2ecf20Sopenharmony_ci{
14348c2ecf20Sopenharmony_ci	return __clear_extent_bit(tree, start, end, bits, wake, delete,
14358c2ecf20Sopenharmony_ci				  cached, GFP_NOFS, NULL);
14368c2ecf20Sopenharmony_ci}
14378c2ecf20Sopenharmony_ci
14388c2ecf20Sopenharmony_ciint clear_record_extent_bits(struct extent_io_tree *tree, u64 start, u64 end,
14398c2ecf20Sopenharmony_ci		unsigned bits, struct extent_changeset *changeset)
14408c2ecf20Sopenharmony_ci{
14418c2ecf20Sopenharmony_ci	/*
14428c2ecf20Sopenharmony_ci	 * Don't support EXTENT_LOCKED case, same reason as
14438c2ecf20Sopenharmony_ci	 * set_record_extent_bits().
14448c2ecf20Sopenharmony_ci	 */
14458c2ecf20Sopenharmony_ci	BUG_ON(bits & EXTENT_LOCKED);
14468c2ecf20Sopenharmony_ci
14478c2ecf20Sopenharmony_ci	return __clear_extent_bit(tree, start, end, bits, 0, 0, NULL, GFP_NOFS,
14488c2ecf20Sopenharmony_ci				  changeset);
14498c2ecf20Sopenharmony_ci}
14508c2ecf20Sopenharmony_ci
14518c2ecf20Sopenharmony_ci/*
14528c2ecf20Sopenharmony_ci * either insert or lock state struct between start and end use mask to tell
14538c2ecf20Sopenharmony_ci * us if waiting is desired.
14548c2ecf20Sopenharmony_ci */
14558c2ecf20Sopenharmony_ciint lock_extent_bits(struct extent_io_tree *tree, u64 start, u64 end,
14568c2ecf20Sopenharmony_ci		     struct extent_state **cached_state)
14578c2ecf20Sopenharmony_ci{
14588c2ecf20Sopenharmony_ci	int err;
14598c2ecf20Sopenharmony_ci	u64 failed_start;
14608c2ecf20Sopenharmony_ci
14618c2ecf20Sopenharmony_ci	while (1) {
14628c2ecf20Sopenharmony_ci		err = __set_extent_bit(tree, start, end, EXTENT_LOCKED,
14638c2ecf20Sopenharmony_ci				       EXTENT_LOCKED, &failed_start,
14648c2ecf20Sopenharmony_ci				       cached_state, GFP_NOFS, NULL);
14658c2ecf20Sopenharmony_ci		if (err == -EEXIST) {
14668c2ecf20Sopenharmony_ci			wait_extent_bit(tree, failed_start, end, EXTENT_LOCKED);
14678c2ecf20Sopenharmony_ci			start = failed_start;
14688c2ecf20Sopenharmony_ci		} else
14698c2ecf20Sopenharmony_ci			break;
14708c2ecf20Sopenharmony_ci		WARN_ON(start > end);
14718c2ecf20Sopenharmony_ci	}
14728c2ecf20Sopenharmony_ci	return err;
14738c2ecf20Sopenharmony_ci}
14748c2ecf20Sopenharmony_ci
14758c2ecf20Sopenharmony_ciint try_lock_extent(struct extent_io_tree *tree, u64 start, u64 end)
14768c2ecf20Sopenharmony_ci{
14778c2ecf20Sopenharmony_ci	int err;
14788c2ecf20Sopenharmony_ci	u64 failed_start;
14798c2ecf20Sopenharmony_ci
14808c2ecf20Sopenharmony_ci	err = __set_extent_bit(tree, start, end, EXTENT_LOCKED, EXTENT_LOCKED,
14818c2ecf20Sopenharmony_ci			       &failed_start, NULL, GFP_NOFS, NULL);
14828c2ecf20Sopenharmony_ci	if (err == -EEXIST) {
14838c2ecf20Sopenharmony_ci		if (failed_start > start)
14848c2ecf20Sopenharmony_ci			clear_extent_bit(tree, start, failed_start - 1,
14858c2ecf20Sopenharmony_ci					 EXTENT_LOCKED, 1, 0, NULL);
14868c2ecf20Sopenharmony_ci		return 0;
14878c2ecf20Sopenharmony_ci	}
14888c2ecf20Sopenharmony_ci	return 1;
14898c2ecf20Sopenharmony_ci}
14908c2ecf20Sopenharmony_ci
14918c2ecf20Sopenharmony_civoid extent_range_clear_dirty_for_io(struct inode *inode, u64 start, u64 end)
14928c2ecf20Sopenharmony_ci{
14938c2ecf20Sopenharmony_ci	unsigned long index = start >> PAGE_SHIFT;
14948c2ecf20Sopenharmony_ci	unsigned long end_index = end >> PAGE_SHIFT;
14958c2ecf20Sopenharmony_ci	struct page *page;
14968c2ecf20Sopenharmony_ci
14978c2ecf20Sopenharmony_ci	while (index <= end_index) {
14988c2ecf20Sopenharmony_ci		page = find_get_page(inode->i_mapping, index);
14998c2ecf20Sopenharmony_ci		BUG_ON(!page); /* Pages should be in the extent_io_tree */
15008c2ecf20Sopenharmony_ci		clear_page_dirty_for_io(page);
15018c2ecf20Sopenharmony_ci		put_page(page);
15028c2ecf20Sopenharmony_ci		index++;
15038c2ecf20Sopenharmony_ci	}
15048c2ecf20Sopenharmony_ci}
15058c2ecf20Sopenharmony_ci
15068c2ecf20Sopenharmony_civoid extent_range_redirty_for_io(struct inode *inode, u64 start, u64 end)
15078c2ecf20Sopenharmony_ci{
15088c2ecf20Sopenharmony_ci	unsigned long index = start >> PAGE_SHIFT;
15098c2ecf20Sopenharmony_ci	unsigned long end_index = end >> PAGE_SHIFT;
15108c2ecf20Sopenharmony_ci	struct page *page;
15118c2ecf20Sopenharmony_ci
15128c2ecf20Sopenharmony_ci	while (index <= end_index) {
15138c2ecf20Sopenharmony_ci		page = find_get_page(inode->i_mapping, index);
15148c2ecf20Sopenharmony_ci		BUG_ON(!page); /* Pages should be in the extent_io_tree */
15158c2ecf20Sopenharmony_ci		__set_page_dirty_nobuffers(page);
15168c2ecf20Sopenharmony_ci		account_page_redirty(page);
15178c2ecf20Sopenharmony_ci		put_page(page);
15188c2ecf20Sopenharmony_ci		index++;
15198c2ecf20Sopenharmony_ci	}
15208c2ecf20Sopenharmony_ci}
15218c2ecf20Sopenharmony_ci
15228c2ecf20Sopenharmony_ci/* find the first state struct with 'bits' set after 'start', and
15238c2ecf20Sopenharmony_ci * return it.  tree->lock must be held.  NULL will returned if
15248c2ecf20Sopenharmony_ci * nothing was found after 'start'
15258c2ecf20Sopenharmony_ci */
15268c2ecf20Sopenharmony_cistatic struct extent_state *
15278c2ecf20Sopenharmony_cifind_first_extent_bit_state(struct extent_io_tree *tree,
15288c2ecf20Sopenharmony_ci			    u64 start, unsigned bits)
15298c2ecf20Sopenharmony_ci{
15308c2ecf20Sopenharmony_ci	struct rb_node *node;
15318c2ecf20Sopenharmony_ci	struct extent_state *state;
15328c2ecf20Sopenharmony_ci
15338c2ecf20Sopenharmony_ci	/*
15348c2ecf20Sopenharmony_ci	 * this search will find all the extents that end after
15358c2ecf20Sopenharmony_ci	 * our range starts.
15368c2ecf20Sopenharmony_ci	 */
15378c2ecf20Sopenharmony_ci	node = tree_search(tree, start);
15388c2ecf20Sopenharmony_ci	if (!node)
15398c2ecf20Sopenharmony_ci		goto out;
15408c2ecf20Sopenharmony_ci
15418c2ecf20Sopenharmony_ci	while (1) {
15428c2ecf20Sopenharmony_ci		state = rb_entry(node, struct extent_state, rb_node);
15438c2ecf20Sopenharmony_ci		if (state->end >= start && (state->state & bits))
15448c2ecf20Sopenharmony_ci			return state;
15458c2ecf20Sopenharmony_ci
15468c2ecf20Sopenharmony_ci		node = rb_next(node);
15478c2ecf20Sopenharmony_ci		if (!node)
15488c2ecf20Sopenharmony_ci			break;
15498c2ecf20Sopenharmony_ci	}
15508c2ecf20Sopenharmony_ciout:
15518c2ecf20Sopenharmony_ci	return NULL;
15528c2ecf20Sopenharmony_ci}
15538c2ecf20Sopenharmony_ci
15548c2ecf20Sopenharmony_ci/*
15558c2ecf20Sopenharmony_ci * find the first offset in the io tree with 'bits' set. zero is
15568c2ecf20Sopenharmony_ci * returned if we find something, and *start_ret and *end_ret are
15578c2ecf20Sopenharmony_ci * set to reflect the state struct that was found.
15588c2ecf20Sopenharmony_ci *
15598c2ecf20Sopenharmony_ci * If nothing was found, 1 is returned. If found something, return 0.
15608c2ecf20Sopenharmony_ci */
15618c2ecf20Sopenharmony_ciint find_first_extent_bit(struct extent_io_tree *tree, u64 start,
15628c2ecf20Sopenharmony_ci			  u64 *start_ret, u64 *end_ret, unsigned bits,
15638c2ecf20Sopenharmony_ci			  struct extent_state **cached_state)
15648c2ecf20Sopenharmony_ci{
15658c2ecf20Sopenharmony_ci	struct extent_state *state;
15668c2ecf20Sopenharmony_ci	int ret = 1;
15678c2ecf20Sopenharmony_ci
15688c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
15698c2ecf20Sopenharmony_ci	if (cached_state && *cached_state) {
15708c2ecf20Sopenharmony_ci		state = *cached_state;
15718c2ecf20Sopenharmony_ci		if (state->end == start - 1 && extent_state_in_tree(state)) {
15728c2ecf20Sopenharmony_ci			while ((state = next_state(state)) != NULL) {
15738c2ecf20Sopenharmony_ci				if (state->state & bits)
15748c2ecf20Sopenharmony_ci					goto got_it;
15758c2ecf20Sopenharmony_ci			}
15768c2ecf20Sopenharmony_ci			free_extent_state(*cached_state);
15778c2ecf20Sopenharmony_ci			*cached_state = NULL;
15788c2ecf20Sopenharmony_ci			goto out;
15798c2ecf20Sopenharmony_ci		}
15808c2ecf20Sopenharmony_ci		free_extent_state(*cached_state);
15818c2ecf20Sopenharmony_ci		*cached_state = NULL;
15828c2ecf20Sopenharmony_ci	}
15838c2ecf20Sopenharmony_ci
15848c2ecf20Sopenharmony_ci	state = find_first_extent_bit_state(tree, start, bits);
15858c2ecf20Sopenharmony_cigot_it:
15868c2ecf20Sopenharmony_ci	if (state) {
15878c2ecf20Sopenharmony_ci		cache_state_if_flags(state, cached_state, 0);
15888c2ecf20Sopenharmony_ci		*start_ret = state->start;
15898c2ecf20Sopenharmony_ci		*end_ret = state->end;
15908c2ecf20Sopenharmony_ci		ret = 0;
15918c2ecf20Sopenharmony_ci	}
15928c2ecf20Sopenharmony_ciout:
15938c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
15948c2ecf20Sopenharmony_ci	return ret;
15958c2ecf20Sopenharmony_ci}
15968c2ecf20Sopenharmony_ci
15978c2ecf20Sopenharmony_ci/**
15988c2ecf20Sopenharmony_ci * find_contiguous_extent_bit: find a contiguous area of bits
15998c2ecf20Sopenharmony_ci * @tree - io tree to check
16008c2ecf20Sopenharmony_ci * @start - offset to start the search from
16018c2ecf20Sopenharmony_ci * @start_ret - the first offset we found with the bits set
16028c2ecf20Sopenharmony_ci * @end_ret - the final contiguous range of the bits that were set
16038c2ecf20Sopenharmony_ci * @bits - bits to look for
16048c2ecf20Sopenharmony_ci *
16058c2ecf20Sopenharmony_ci * set_extent_bit and clear_extent_bit can temporarily split contiguous ranges
16068c2ecf20Sopenharmony_ci * to set bits appropriately, and then merge them again.  During this time it
16078c2ecf20Sopenharmony_ci * will drop the tree->lock, so use this helper if you want to find the actual
16088c2ecf20Sopenharmony_ci * contiguous area for given bits.  We will search to the first bit we find, and
16098c2ecf20Sopenharmony_ci * then walk down the tree until we find a non-contiguous area.  The area
16108c2ecf20Sopenharmony_ci * returned will be the full contiguous area with the bits set.
16118c2ecf20Sopenharmony_ci */
16128c2ecf20Sopenharmony_ciint find_contiguous_extent_bit(struct extent_io_tree *tree, u64 start,
16138c2ecf20Sopenharmony_ci			       u64 *start_ret, u64 *end_ret, unsigned bits)
16148c2ecf20Sopenharmony_ci{
16158c2ecf20Sopenharmony_ci	struct extent_state *state;
16168c2ecf20Sopenharmony_ci	int ret = 1;
16178c2ecf20Sopenharmony_ci
16188c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
16198c2ecf20Sopenharmony_ci	state = find_first_extent_bit_state(tree, start, bits);
16208c2ecf20Sopenharmony_ci	if (state) {
16218c2ecf20Sopenharmony_ci		*start_ret = state->start;
16228c2ecf20Sopenharmony_ci		*end_ret = state->end;
16238c2ecf20Sopenharmony_ci		while ((state = next_state(state)) != NULL) {
16248c2ecf20Sopenharmony_ci			if (state->start > (*end_ret + 1))
16258c2ecf20Sopenharmony_ci				break;
16268c2ecf20Sopenharmony_ci			*end_ret = state->end;
16278c2ecf20Sopenharmony_ci		}
16288c2ecf20Sopenharmony_ci		ret = 0;
16298c2ecf20Sopenharmony_ci	}
16308c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
16318c2ecf20Sopenharmony_ci	return ret;
16328c2ecf20Sopenharmony_ci}
16338c2ecf20Sopenharmony_ci
16348c2ecf20Sopenharmony_ci/**
16358c2ecf20Sopenharmony_ci * find_first_clear_extent_bit - find the first range that has @bits not set.
16368c2ecf20Sopenharmony_ci * This range could start before @start.
16378c2ecf20Sopenharmony_ci *
16388c2ecf20Sopenharmony_ci * @tree - the tree to search
16398c2ecf20Sopenharmony_ci * @start - the offset at/after which the found extent should start
16408c2ecf20Sopenharmony_ci * @start_ret - records the beginning of the range
16418c2ecf20Sopenharmony_ci * @end_ret - records the end of the range (inclusive)
16428c2ecf20Sopenharmony_ci * @bits - the set of bits which must be unset
16438c2ecf20Sopenharmony_ci *
16448c2ecf20Sopenharmony_ci * Since unallocated range is also considered one which doesn't have the bits
16458c2ecf20Sopenharmony_ci * set it's possible that @end_ret contains -1, this happens in case the range
16468c2ecf20Sopenharmony_ci * spans (last_range_end, end of device]. In this case it's up to the caller to
16478c2ecf20Sopenharmony_ci * trim @end_ret to the appropriate size.
16488c2ecf20Sopenharmony_ci */
16498c2ecf20Sopenharmony_civoid find_first_clear_extent_bit(struct extent_io_tree *tree, u64 start,
16508c2ecf20Sopenharmony_ci				 u64 *start_ret, u64 *end_ret, unsigned bits)
16518c2ecf20Sopenharmony_ci{
16528c2ecf20Sopenharmony_ci	struct extent_state *state;
16538c2ecf20Sopenharmony_ci	struct rb_node *node, *prev = NULL, *next;
16548c2ecf20Sopenharmony_ci
16558c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
16568c2ecf20Sopenharmony_ci
16578c2ecf20Sopenharmony_ci	/* Find first extent with bits cleared */
16588c2ecf20Sopenharmony_ci	while (1) {
16598c2ecf20Sopenharmony_ci		node = __etree_search(tree, start, &next, &prev, NULL, NULL);
16608c2ecf20Sopenharmony_ci		if (!node && !next && !prev) {
16618c2ecf20Sopenharmony_ci			/*
16628c2ecf20Sopenharmony_ci			 * Tree is completely empty, send full range and let
16638c2ecf20Sopenharmony_ci			 * caller deal with it
16648c2ecf20Sopenharmony_ci			 */
16658c2ecf20Sopenharmony_ci			*start_ret = 0;
16668c2ecf20Sopenharmony_ci			*end_ret = -1;
16678c2ecf20Sopenharmony_ci			goto out;
16688c2ecf20Sopenharmony_ci		} else if (!node && !next) {
16698c2ecf20Sopenharmony_ci			/*
16708c2ecf20Sopenharmony_ci			 * We are past the last allocated chunk, set start at
16718c2ecf20Sopenharmony_ci			 * the end of the last extent.
16728c2ecf20Sopenharmony_ci			 */
16738c2ecf20Sopenharmony_ci			state = rb_entry(prev, struct extent_state, rb_node);
16748c2ecf20Sopenharmony_ci			*start_ret = state->end + 1;
16758c2ecf20Sopenharmony_ci			*end_ret = -1;
16768c2ecf20Sopenharmony_ci			goto out;
16778c2ecf20Sopenharmony_ci		} else if (!node) {
16788c2ecf20Sopenharmony_ci			node = next;
16798c2ecf20Sopenharmony_ci		}
16808c2ecf20Sopenharmony_ci		/*
16818c2ecf20Sopenharmony_ci		 * At this point 'node' either contains 'start' or start is
16828c2ecf20Sopenharmony_ci		 * before 'node'
16838c2ecf20Sopenharmony_ci		 */
16848c2ecf20Sopenharmony_ci		state = rb_entry(node, struct extent_state, rb_node);
16858c2ecf20Sopenharmony_ci
16868c2ecf20Sopenharmony_ci		if (in_range(start, state->start, state->end - state->start + 1)) {
16878c2ecf20Sopenharmony_ci			if (state->state & bits) {
16888c2ecf20Sopenharmony_ci				/*
16898c2ecf20Sopenharmony_ci				 * |--range with bits sets--|
16908c2ecf20Sopenharmony_ci				 *    |
16918c2ecf20Sopenharmony_ci				 *    start
16928c2ecf20Sopenharmony_ci				 */
16938c2ecf20Sopenharmony_ci				start = state->end + 1;
16948c2ecf20Sopenharmony_ci			} else {
16958c2ecf20Sopenharmony_ci				/*
16968c2ecf20Sopenharmony_ci				 * 'start' falls within a range that doesn't
16978c2ecf20Sopenharmony_ci				 * have the bits set, so take its start as
16988c2ecf20Sopenharmony_ci				 * the beginning of the desired range
16998c2ecf20Sopenharmony_ci				 *
17008c2ecf20Sopenharmony_ci				 * |--range with bits cleared----|
17018c2ecf20Sopenharmony_ci				 *      |
17028c2ecf20Sopenharmony_ci				 *      start
17038c2ecf20Sopenharmony_ci				 */
17048c2ecf20Sopenharmony_ci				*start_ret = state->start;
17058c2ecf20Sopenharmony_ci				break;
17068c2ecf20Sopenharmony_ci			}
17078c2ecf20Sopenharmony_ci		} else {
17088c2ecf20Sopenharmony_ci			/*
17098c2ecf20Sopenharmony_ci			 * |---prev range---|---hole/unset---|---node range---|
17108c2ecf20Sopenharmony_ci			 *                          |
17118c2ecf20Sopenharmony_ci			 *                        start
17128c2ecf20Sopenharmony_ci			 *
17138c2ecf20Sopenharmony_ci			 *                        or
17148c2ecf20Sopenharmony_ci			 *
17158c2ecf20Sopenharmony_ci			 * |---hole/unset--||--first node--|
17168c2ecf20Sopenharmony_ci			 * 0   |
17178c2ecf20Sopenharmony_ci			 *    start
17188c2ecf20Sopenharmony_ci			 */
17198c2ecf20Sopenharmony_ci			if (prev) {
17208c2ecf20Sopenharmony_ci				state = rb_entry(prev, struct extent_state,
17218c2ecf20Sopenharmony_ci						 rb_node);
17228c2ecf20Sopenharmony_ci				*start_ret = state->end + 1;
17238c2ecf20Sopenharmony_ci			} else {
17248c2ecf20Sopenharmony_ci				*start_ret = 0;
17258c2ecf20Sopenharmony_ci			}
17268c2ecf20Sopenharmony_ci			break;
17278c2ecf20Sopenharmony_ci		}
17288c2ecf20Sopenharmony_ci	}
17298c2ecf20Sopenharmony_ci
17308c2ecf20Sopenharmony_ci	/*
17318c2ecf20Sopenharmony_ci	 * Find the longest stretch from start until an entry which has the
17328c2ecf20Sopenharmony_ci	 * bits set
17338c2ecf20Sopenharmony_ci	 */
17348c2ecf20Sopenharmony_ci	while (1) {
17358c2ecf20Sopenharmony_ci		state = rb_entry(node, struct extent_state, rb_node);
17368c2ecf20Sopenharmony_ci		if (state->end >= start && !(state->state & bits)) {
17378c2ecf20Sopenharmony_ci			*end_ret = state->end;
17388c2ecf20Sopenharmony_ci		} else {
17398c2ecf20Sopenharmony_ci			*end_ret = state->start - 1;
17408c2ecf20Sopenharmony_ci			break;
17418c2ecf20Sopenharmony_ci		}
17428c2ecf20Sopenharmony_ci
17438c2ecf20Sopenharmony_ci		node = rb_next(node);
17448c2ecf20Sopenharmony_ci		if (!node)
17458c2ecf20Sopenharmony_ci			break;
17468c2ecf20Sopenharmony_ci	}
17478c2ecf20Sopenharmony_ciout:
17488c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
17498c2ecf20Sopenharmony_ci}
17508c2ecf20Sopenharmony_ci
17518c2ecf20Sopenharmony_ci/*
17528c2ecf20Sopenharmony_ci * find a contiguous range of bytes in the file marked as delalloc, not
17538c2ecf20Sopenharmony_ci * more than 'max_bytes'.  start and end are used to return the range,
17548c2ecf20Sopenharmony_ci *
17558c2ecf20Sopenharmony_ci * true is returned if we find something, false if nothing was in the tree
17568c2ecf20Sopenharmony_ci */
17578c2ecf20Sopenharmony_cibool btrfs_find_delalloc_range(struct extent_io_tree *tree, u64 *start,
17588c2ecf20Sopenharmony_ci			       u64 *end, u64 max_bytes,
17598c2ecf20Sopenharmony_ci			       struct extent_state **cached_state)
17608c2ecf20Sopenharmony_ci{
17618c2ecf20Sopenharmony_ci	struct rb_node *node;
17628c2ecf20Sopenharmony_ci	struct extent_state *state;
17638c2ecf20Sopenharmony_ci	u64 cur_start = *start;
17648c2ecf20Sopenharmony_ci	bool found = false;
17658c2ecf20Sopenharmony_ci	u64 total_bytes = 0;
17668c2ecf20Sopenharmony_ci
17678c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
17688c2ecf20Sopenharmony_ci
17698c2ecf20Sopenharmony_ci	/*
17708c2ecf20Sopenharmony_ci	 * this search will find all the extents that end after
17718c2ecf20Sopenharmony_ci	 * our range starts.
17728c2ecf20Sopenharmony_ci	 */
17738c2ecf20Sopenharmony_ci	node = tree_search(tree, cur_start);
17748c2ecf20Sopenharmony_ci	if (!node) {
17758c2ecf20Sopenharmony_ci		*end = (u64)-1;
17768c2ecf20Sopenharmony_ci		goto out;
17778c2ecf20Sopenharmony_ci	}
17788c2ecf20Sopenharmony_ci
17798c2ecf20Sopenharmony_ci	while (1) {
17808c2ecf20Sopenharmony_ci		state = rb_entry(node, struct extent_state, rb_node);
17818c2ecf20Sopenharmony_ci		if (found && (state->start != cur_start ||
17828c2ecf20Sopenharmony_ci			      (state->state & EXTENT_BOUNDARY))) {
17838c2ecf20Sopenharmony_ci			goto out;
17848c2ecf20Sopenharmony_ci		}
17858c2ecf20Sopenharmony_ci		if (!(state->state & EXTENT_DELALLOC)) {
17868c2ecf20Sopenharmony_ci			if (!found)
17878c2ecf20Sopenharmony_ci				*end = state->end;
17888c2ecf20Sopenharmony_ci			goto out;
17898c2ecf20Sopenharmony_ci		}
17908c2ecf20Sopenharmony_ci		if (!found) {
17918c2ecf20Sopenharmony_ci			*start = state->start;
17928c2ecf20Sopenharmony_ci			*cached_state = state;
17938c2ecf20Sopenharmony_ci			refcount_inc(&state->refs);
17948c2ecf20Sopenharmony_ci		}
17958c2ecf20Sopenharmony_ci		found = true;
17968c2ecf20Sopenharmony_ci		*end = state->end;
17978c2ecf20Sopenharmony_ci		cur_start = state->end + 1;
17988c2ecf20Sopenharmony_ci		node = rb_next(node);
17998c2ecf20Sopenharmony_ci		total_bytes += state->end - state->start + 1;
18008c2ecf20Sopenharmony_ci		if (total_bytes >= max_bytes)
18018c2ecf20Sopenharmony_ci			break;
18028c2ecf20Sopenharmony_ci		if (!node)
18038c2ecf20Sopenharmony_ci			break;
18048c2ecf20Sopenharmony_ci	}
18058c2ecf20Sopenharmony_ciout:
18068c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
18078c2ecf20Sopenharmony_ci	return found;
18088c2ecf20Sopenharmony_ci}
18098c2ecf20Sopenharmony_ci
18108c2ecf20Sopenharmony_cistatic int __process_pages_contig(struct address_space *mapping,
18118c2ecf20Sopenharmony_ci				  struct page *locked_page,
18128c2ecf20Sopenharmony_ci				  pgoff_t start_index, pgoff_t end_index,
18138c2ecf20Sopenharmony_ci				  unsigned long page_ops, pgoff_t *index_ret);
18148c2ecf20Sopenharmony_ci
18158c2ecf20Sopenharmony_cistatic noinline void __unlock_for_delalloc(struct inode *inode,
18168c2ecf20Sopenharmony_ci					   struct page *locked_page,
18178c2ecf20Sopenharmony_ci					   u64 start, u64 end)
18188c2ecf20Sopenharmony_ci{
18198c2ecf20Sopenharmony_ci	unsigned long index = start >> PAGE_SHIFT;
18208c2ecf20Sopenharmony_ci	unsigned long end_index = end >> PAGE_SHIFT;
18218c2ecf20Sopenharmony_ci
18228c2ecf20Sopenharmony_ci	ASSERT(locked_page);
18238c2ecf20Sopenharmony_ci	if (index == locked_page->index && end_index == index)
18248c2ecf20Sopenharmony_ci		return;
18258c2ecf20Sopenharmony_ci
18268c2ecf20Sopenharmony_ci	__process_pages_contig(inode->i_mapping, locked_page, index, end_index,
18278c2ecf20Sopenharmony_ci			       PAGE_UNLOCK, NULL);
18288c2ecf20Sopenharmony_ci}
18298c2ecf20Sopenharmony_ci
18308c2ecf20Sopenharmony_cistatic noinline int lock_delalloc_pages(struct inode *inode,
18318c2ecf20Sopenharmony_ci					struct page *locked_page,
18328c2ecf20Sopenharmony_ci					u64 delalloc_start,
18338c2ecf20Sopenharmony_ci					u64 delalloc_end)
18348c2ecf20Sopenharmony_ci{
18358c2ecf20Sopenharmony_ci	unsigned long index = delalloc_start >> PAGE_SHIFT;
18368c2ecf20Sopenharmony_ci	unsigned long index_ret = index;
18378c2ecf20Sopenharmony_ci	unsigned long end_index = delalloc_end >> PAGE_SHIFT;
18388c2ecf20Sopenharmony_ci	int ret;
18398c2ecf20Sopenharmony_ci
18408c2ecf20Sopenharmony_ci	ASSERT(locked_page);
18418c2ecf20Sopenharmony_ci	if (index == locked_page->index && index == end_index)
18428c2ecf20Sopenharmony_ci		return 0;
18438c2ecf20Sopenharmony_ci
18448c2ecf20Sopenharmony_ci	ret = __process_pages_contig(inode->i_mapping, locked_page, index,
18458c2ecf20Sopenharmony_ci				     end_index, PAGE_LOCK, &index_ret);
18468c2ecf20Sopenharmony_ci	if (ret == -EAGAIN)
18478c2ecf20Sopenharmony_ci		__unlock_for_delalloc(inode, locked_page, delalloc_start,
18488c2ecf20Sopenharmony_ci				      (u64)index_ret << PAGE_SHIFT);
18498c2ecf20Sopenharmony_ci	return ret;
18508c2ecf20Sopenharmony_ci}
18518c2ecf20Sopenharmony_ci
18528c2ecf20Sopenharmony_ci/*
18538c2ecf20Sopenharmony_ci * Find and lock a contiguous range of bytes in the file marked as delalloc, no
18548c2ecf20Sopenharmony_ci * more than @max_bytes.  @Start and @end are used to return the range,
18558c2ecf20Sopenharmony_ci *
18568c2ecf20Sopenharmony_ci * Return: true if we find something
18578c2ecf20Sopenharmony_ci *         false if nothing was in the tree
18588c2ecf20Sopenharmony_ci */
18598c2ecf20Sopenharmony_ciEXPORT_FOR_TESTS
18608c2ecf20Sopenharmony_cinoinline_for_stack bool find_lock_delalloc_range(struct inode *inode,
18618c2ecf20Sopenharmony_ci				    struct page *locked_page, u64 *start,
18628c2ecf20Sopenharmony_ci				    u64 *end)
18638c2ecf20Sopenharmony_ci{
18648c2ecf20Sopenharmony_ci	struct extent_io_tree *tree = &BTRFS_I(inode)->io_tree;
18658c2ecf20Sopenharmony_ci	u64 max_bytes = BTRFS_MAX_EXTENT_SIZE;
18668c2ecf20Sopenharmony_ci	u64 delalloc_start;
18678c2ecf20Sopenharmony_ci	u64 delalloc_end;
18688c2ecf20Sopenharmony_ci	bool found;
18698c2ecf20Sopenharmony_ci	struct extent_state *cached_state = NULL;
18708c2ecf20Sopenharmony_ci	int ret;
18718c2ecf20Sopenharmony_ci	int loops = 0;
18728c2ecf20Sopenharmony_ci
18738c2ecf20Sopenharmony_ciagain:
18748c2ecf20Sopenharmony_ci	/* step one, find a bunch of delalloc bytes starting at start */
18758c2ecf20Sopenharmony_ci	delalloc_start = *start;
18768c2ecf20Sopenharmony_ci	delalloc_end = 0;
18778c2ecf20Sopenharmony_ci	found = btrfs_find_delalloc_range(tree, &delalloc_start, &delalloc_end,
18788c2ecf20Sopenharmony_ci					  max_bytes, &cached_state);
18798c2ecf20Sopenharmony_ci	if (!found || delalloc_end <= *start) {
18808c2ecf20Sopenharmony_ci		*start = delalloc_start;
18818c2ecf20Sopenharmony_ci		*end = delalloc_end;
18828c2ecf20Sopenharmony_ci		free_extent_state(cached_state);
18838c2ecf20Sopenharmony_ci		return false;
18848c2ecf20Sopenharmony_ci	}
18858c2ecf20Sopenharmony_ci
18868c2ecf20Sopenharmony_ci	/*
18878c2ecf20Sopenharmony_ci	 * start comes from the offset of locked_page.  We have to lock
18888c2ecf20Sopenharmony_ci	 * pages in order, so we can't process delalloc bytes before
18898c2ecf20Sopenharmony_ci	 * locked_page
18908c2ecf20Sopenharmony_ci	 */
18918c2ecf20Sopenharmony_ci	if (delalloc_start < *start)
18928c2ecf20Sopenharmony_ci		delalloc_start = *start;
18938c2ecf20Sopenharmony_ci
18948c2ecf20Sopenharmony_ci	/*
18958c2ecf20Sopenharmony_ci	 * make sure to limit the number of pages we try to lock down
18968c2ecf20Sopenharmony_ci	 */
18978c2ecf20Sopenharmony_ci	if (delalloc_end + 1 - delalloc_start > max_bytes)
18988c2ecf20Sopenharmony_ci		delalloc_end = delalloc_start + max_bytes - 1;
18998c2ecf20Sopenharmony_ci
19008c2ecf20Sopenharmony_ci	/* step two, lock all the pages after the page that has start */
19018c2ecf20Sopenharmony_ci	ret = lock_delalloc_pages(inode, locked_page,
19028c2ecf20Sopenharmony_ci				  delalloc_start, delalloc_end);
19038c2ecf20Sopenharmony_ci	ASSERT(!ret || ret == -EAGAIN);
19048c2ecf20Sopenharmony_ci	if (ret == -EAGAIN) {
19058c2ecf20Sopenharmony_ci		/* some of the pages are gone, lets avoid looping by
19068c2ecf20Sopenharmony_ci		 * shortening the size of the delalloc range we're searching
19078c2ecf20Sopenharmony_ci		 */
19088c2ecf20Sopenharmony_ci		free_extent_state(cached_state);
19098c2ecf20Sopenharmony_ci		cached_state = NULL;
19108c2ecf20Sopenharmony_ci		if (!loops) {
19118c2ecf20Sopenharmony_ci			max_bytes = PAGE_SIZE;
19128c2ecf20Sopenharmony_ci			loops = 1;
19138c2ecf20Sopenharmony_ci			goto again;
19148c2ecf20Sopenharmony_ci		} else {
19158c2ecf20Sopenharmony_ci			found = false;
19168c2ecf20Sopenharmony_ci			goto out_failed;
19178c2ecf20Sopenharmony_ci		}
19188c2ecf20Sopenharmony_ci	}
19198c2ecf20Sopenharmony_ci
19208c2ecf20Sopenharmony_ci	/* step three, lock the state bits for the whole range */
19218c2ecf20Sopenharmony_ci	lock_extent_bits(tree, delalloc_start, delalloc_end, &cached_state);
19228c2ecf20Sopenharmony_ci
19238c2ecf20Sopenharmony_ci	/* then test to make sure it is all still delalloc */
19248c2ecf20Sopenharmony_ci	ret = test_range_bit(tree, delalloc_start, delalloc_end,
19258c2ecf20Sopenharmony_ci			     EXTENT_DELALLOC, 1, cached_state);
19268c2ecf20Sopenharmony_ci	if (!ret) {
19278c2ecf20Sopenharmony_ci		unlock_extent_cached(tree, delalloc_start, delalloc_end,
19288c2ecf20Sopenharmony_ci				     &cached_state);
19298c2ecf20Sopenharmony_ci		__unlock_for_delalloc(inode, locked_page,
19308c2ecf20Sopenharmony_ci			      delalloc_start, delalloc_end);
19318c2ecf20Sopenharmony_ci		cond_resched();
19328c2ecf20Sopenharmony_ci		goto again;
19338c2ecf20Sopenharmony_ci	}
19348c2ecf20Sopenharmony_ci	free_extent_state(cached_state);
19358c2ecf20Sopenharmony_ci	*start = delalloc_start;
19368c2ecf20Sopenharmony_ci	*end = delalloc_end;
19378c2ecf20Sopenharmony_ciout_failed:
19388c2ecf20Sopenharmony_ci	return found;
19398c2ecf20Sopenharmony_ci}
19408c2ecf20Sopenharmony_ci
19418c2ecf20Sopenharmony_cistatic int __process_pages_contig(struct address_space *mapping,
19428c2ecf20Sopenharmony_ci				  struct page *locked_page,
19438c2ecf20Sopenharmony_ci				  pgoff_t start_index, pgoff_t end_index,
19448c2ecf20Sopenharmony_ci				  unsigned long page_ops, pgoff_t *index_ret)
19458c2ecf20Sopenharmony_ci{
19468c2ecf20Sopenharmony_ci	unsigned long nr_pages = end_index - start_index + 1;
19478c2ecf20Sopenharmony_ci	unsigned long pages_locked = 0;
19488c2ecf20Sopenharmony_ci	pgoff_t index = start_index;
19498c2ecf20Sopenharmony_ci	struct page *pages[16];
19508c2ecf20Sopenharmony_ci	unsigned ret;
19518c2ecf20Sopenharmony_ci	int err = 0;
19528c2ecf20Sopenharmony_ci	int i;
19538c2ecf20Sopenharmony_ci
19548c2ecf20Sopenharmony_ci	if (page_ops & PAGE_LOCK) {
19558c2ecf20Sopenharmony_ci		ASSERT(page_ops == PAGE_LOCK);
19568c2ecf20Sopenharmony_ci		ASSERT(index_ret && *index_ret == start_index);
19578c2ecf20Sopenharmony_ci	}
19588c2ecf20Sopenharmony_ci
19598c2ecf20Sopenharmony_ci	if ((page_ops & PAGE_SET_ERROR) && nr_pages > 0)
19608c2ecf20Sopenharmony_ci		mapping_set_error(mapping, -EIO);
19618c2ecf20Sopenharmony_ci
19628c2ecf20Sopenharmony_ci	while (nr_pages > 0) {
19638c2ecf20Sopenharmony_ci		ret = find_get_pages_contig(mapping, index,
19648c2ecf20Sopenharmony_ci				     min_t(unsigned long,
19658c2ecf20Sopenharmony_ci				     nr_pages, ARRAY_SIZE(pages)), pages);
19668c2ecf20Sopenharmony_ci		if (ret == 0) {
19678c2ecf20Sopenharmony_ci			/*
19688c2ecf20Sopenharmony_ci			 * Only if we're going to lock these pages,
19698c2ecf20Sopenharmony_ci			 * can we find nothing at @index.
19708c2ecf20Sopenharmony_ci			 */
19718c2ecf20Sopenharmony_ci			ASSERT(page_ops & PAGE_LOCK);
19728c2ecf20Sopenharmony_ci			err = -EAGAIN;
19738c2ecf20Sopenharmony_ci			goto out;
19748c2ecf20Sopenharmony_ci		}
19758c2ecf20Sopenharmony_ci
19768c2ecf20Sopenharmony_ci		for (i = 0; i < ret; i++) {
19778c2ecf20Sopenharmony_ci			if (page_ops & PAGE_SET_PRIVATE2)
19788c2ecf20Sopenharmony_ci				SetPagePrivate2(pages[i]);
19798c2ecf20Sopenharmony_ci
19808c2ecf20Sopenharmony_ci			if (locked_page && pages[i] == locked_page) {
19818c2ecf20Sopenharmony_ci				put_page(pages[i]);
19828c2ecf20Sopenharmony_ci				pages_locked++;
19838c2ecf20Sopenharmony_ci				continue;
19848c2ecf20Sopenharmony_ci			}
19858c2ecf20Sopenharmony_ci			if (page_ops & PAGE_CLEAR_DIRTY)
19868c2ecf20Sopenharmony_ci				clear_page_dirty_for_io(pages[i]);
19878c2ecf20Sopenharmony_ci			if (page_ops & PAGE_SET_WRITEBACK)
19888c2ecf20Sopenharmony_ci				set_page_writeback(pages[i]);
19898c2ecf20Sopenharmony_ci			if (page_ops & PAGE_SET_ERROR)
19908c2ecf20Sopenharmony_ci				SetPageError(pages[i]);
19918c2ecf20Sopenharmony_ci			if (page_ops & PAGE_END_WRITEBACK)
19928c2ecf20Sopenharmony_ci				end_page_writeback(pages[i]);
19938c2ecf20Sopenharmony_ci			if (page_ops & PAGE_UNLOCK)
19948c2ecf20Sopenharmony_ci				unlock_page(pages[i]);
19958c2ecf20Sopenharmony_ci			if (page_ops & PAGE_LOCK) {
19968c2ecf20Sopenharmony_ci				lock_page(pages[i]);
19978c2ecf20Sopenharmony_ci				if (!PageDirty(pages[i]) ||
19988c2ecf20Sopenharmony_ci				    pages[i]->mapping != mapping) {
19998c2ecf20Sopenharmony_ci					unlock_page(pages[i]);
20008c2ecf20Sopenharmony_ci					for (; i < ret; i++)
20018c2ecf20Sopenharmony_ci						put_page(pages[i]);
20028c2ecf20Sopenharmony_ci					err = -EAGAIN;
20038c2ecf20Sopenharmony_ci					goto out;
20048c2ecf20Sopenharmony_ci				}
20058c2ecf20Sopenharmony_ci			}
20068c2ecf20Sopenharmony_ci			put_page(pages[i]);
20078c2ecf20Sopenharmony_ci			pages_locked++;
20088c2ecf20Sopenharmony_ci		}
20098c2ecf20Sopenharmony_ci		nr_pages -= ret;
20108c2ecf20Sopenharmony_ci		index += ret;
20118c2ecf20Sopenharmony_ci		cond_resched();
20128c2ecf20Sopenharmony_ci	}
20138c2ecf20Sopenharmony_ciout:
20148c2ecf20Sopenharmony_ci	if (err && index_ret)
20158c2ecf20Sopenharmony_ci		*index_ret = start_index + pages_locked - 1;
20168c2ecf20Sopenharmony_ci	return err;
20178c2ecf20Sopenharmony_ci}
20188c2ecf20Sopenharmony_ci
20198c2ecf20Sopenharmony_civoid extent_clear_unlock_delalloc(struct btrfs_inode *inode, u64 start, u64 end,
20208c2ecf20Sopenharmony_ci				  struct page *locked_page,
20218c2ecf20Sopenharmony_ci				  unsigned clear_bits,
20228c2ecf20Sopenharmony_ci				  unsigned long page_ops)
20238c2ecf20Sopenharmony_ci{
20248c2ecf20Sopenharmony_ci	clear_extent_bit(&inode->io_tree, start, end, clear_bits, 1, 0, NULL);
20258c2ecf20Sopenharmony_ci
20268c2ecf20Sopenharmony_ci	__process_pages_contig(inode->vfs_inode.i_mapping, locked_page,
20278c2ecf20Sopenharmony_ci			       start >> PAGE_SHIFT, end >> PAGE_SHIFT,
20288c2ecf20Sopenharmony_ci			       page_ops, NULL);
20298c2ecf20Sopenharmony_ci}
20308c2ecf20Sopenharmony_ci
20318c2ecf20Sopenharmony_ci/*
20328c2ecf20Sopenharmony_ci * count the number of bytes in the tree that have a given bit(s)
20338c2ecf20Sopenharmony_ci * set.  This can be fairly slow, except for EXTENT_DIRTY which is
20348c2ecf20Sopenharmony_ci * cached.  The total number found is returned.
20358c2ecf20Sopenharmony_ci */
20368c2ecf20Sopenharmony_ciu64 count_range_bits(struct extent_io_tree *tree,
20378c2ecf20Sopenharmony_ci		     u64 *start, u64 search_end, u64 max_bytes,
20388c2ecf20Sopenharmony_ci		     unsigned bits, int contig)
20398c2ecf20Sopenharmony_ci{
20408c2ecf20Sopenharmony_ci	struct rb_node *node;
20418c2ecf20Sopenharmony_ci	struct extent_state *state;
20428c2ecf20Sopenharmony_ci	u64 cur_start = *start;
20438c2ecf20Sopenharmony_ci	u64 total_bytes = 0;
20448c2ecf20Sopenharmony_ci	u64 last = 0;
20458c2ecf20Sopenharmony_ci	int found = 0;
20468c2ecf20Sopenharmony_ci
20478c2ecf20Sopenharmony_ci	if (WARN_ON(search_end <= cur_start))
20488c2ecf20Sopenharmony_ci		return 0;
20498c2ecf20Sopenharmony_ci
20508c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
20518c2ecf20Sopenharmony_ci	if (cur_start == 0 && bits == EXTENT_DIRTY) {
20528c2ecf20Sopenharmony_ci		total_bytes = tree->dirty_bytes;
20538c2ecf20Sopenharmony_ci		goto out;
20548c2ecf20Sopenharmony_ci	}
20558c2ecf20Sopenharmony_ci	/*
20568c2ecf20Sopenharmony_ci	 * this search will find all the extents that end after
20578c2ecf20Sopenharmony_ci	 * our range starts.
20588c2ecf20Sopenharmony_ci	 */
20598c2ecf20Sopenharmony_ci	node = tree_search(tree, cur_start);
20608c2ecf20Sopenharmony_ci	if (!node)
20618c2ecf20Sopenharmony_ci		goto out;
20628c2ecf20Sopenharmony_ci
20638c2ecf20Sopenharmony_ci	while (1) {
20648c2ecf20Sopenharmony_ci		state = rb_entry(node, struct extent_state, rb_node);
20658c2ecf20Sopenharmony_ci		if (state->start > search_end)
20668c2ecf20Sopenharmony_ci			break;
20678c2ecf20Sopenharmony_ci		if (contig && found && state->start > last + 1)
20688c2ecf20Sopenharmony_ci			break;
20698c2ecf20Sopenharmony_ci		if (state->end >= cur_start && (state->state & bits) == bits) {
20708c2ecf20Sopenharmony_ci			total_bytes += min(search_end, state->end) + 1 -
20718c2ecf20Sopenharmony_ci				       max(cur_start, state->start);
20728c2ecf20Sopenharmony_ci			if (total_bytes >= max_bytes)
20738c2ecf20Sopenharmony_ci				break;
20748c2ecf20Sopenharmony_ci			if (!found) {
20758c2ecf20Sopenharmony_ci				*start = max(cur_start, state->start);
20768c2ecf20Sopenharmony_ci				found = 1;
20778c2ecf20Sopenharmony_ci			}
20788c2ecf20Sopenharmony_ci			last = state->end;
20798c2ecf20Sopenharmony_ci		} else if (contig && found) {
20808c2ecf20Sopenharmony_ci			break;
20818c2ecf20Sopenharmony_ci		}
20828c2ecf20Sopenharmony_ci		node = rb_next(node);
20838c2ecf20Sopenharmony_ci		if (!node)
20848c2ecf20Sopenharmony_ci			break;
20858c2ecf20Sopenharmony_ci	}
20868c2ecf20Sopenharmony_ciout:
20878c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
20888c2ecf20Sopenharmony_ci	return total_bytes;
20898c2ecf20Sopenharmony_ci}
20908c2ecf20Sopenharmony_ci
20918c2ecf20Sopenharmony_ci/*
20928c2ecf20Sopenharmony_ci * set the private field for a given byte offset in the tree.  If there isn't
20938c2ecf20Sopenharmony_ci * an extent_state there already, this does nothing.
20948c2ecf20Sopenharmony_ci */
20958c2ecf20Sopenharmony_ciint set_state_failrec(struct extent_io_tree *tree, u64 start,
20968c2ecf20Sopenharmony_ci		      struct io_failure_record *failrec)
20978c2ecf20Sopenharmony_ci{
20988c2ecf20Sopenharmony_ci	struct rb_node *node;
20998c2ecf20Sopenharmony_ci	struct extent_state *state;
21008c2ecf20Sopenharmony_ci	int ret = 0;
21018c2ecf20Sopenharmony_ci
21028c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
21038c2ecf20Sopenharmony_ci	/*
21048c2ecf20Sopenharmony_ci	 * this search will find all the extents that end after
21058c2ecf20Sopenharmony_ci	 * our range starts.
21068c2ecf20Sopenharmony_ci	 */
21078c2ecf20Sopenharmony_ci	node = tree_search(tree, start);
21088c2ecf20Sopenharmony_ci	if (!node) {
21098c2ecf20Sopenharmony_ci		ret = -ENOENT;
21108c2ecf20Sopenharmony_ci		goto out;
21118c2ecf20Sopenharmony_ci	}
21128c2ecf20Sopenharmony_ci	state = rb_entry(node, struct extent_state, rb_node);
21138c2ecf20Sopenharmony_ci	if (state->start != start) {
21148c2ecf20Sopenharmony_ci		ret = -ENOENT;
21158c2ecf20Sopenharmony_ci		goto out;
21168c2ecf20Sopenharmony_ci	}
21178c2ecf20Sopenharmony_ci	state->failrec = failrec;
21188c2ecf20Sopenharmony_ciout:
21198c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
21208c2ecf20Sopenharmony_ci	return ret;
21218c2ecf20Sopenharmony_ci}
21228c2ecf20Sopenharmony_ci
21238c2ecf20Sopenharmony_cistruct io_failure_record *get_state_failrec(struct extent_io_tree *tree, u64 start)
21248c2ecf20Sopenharmony_ci{
21258c2ecf20Sopenharmony_ci	struct rb_node *node;
21268c2ecf20Sopenharmony_ci	struct extent_state *state;
21278c2ecf20Sopenharmony_ci	struct io_failure_record *failrec;
21288c2ecf20Sopenharmony_ci
21298c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
21308c2ecf20Sopenharmony_ci	/*
21318c2ecf20Sopenharmony_ci	 * this search will find all the extents that end after
21328c2ecf20Sopenharmony_ci	 * our range starts.
21338c2ecf20Sopenharmony_ci	 */
21348c2ecf20Sopenharmony_ci	node = tree_search(tree, start);
21358c2ecf20Sopenharmony_ci	if (!node) {
21368c2ecf20Sopenharmony_ci		failrec = ERR_PTR(-ENOENT);
21378c2ecf20Sopenharmony_ci		goto out;
21388c2ecf20Sopenharmony_ci	}
21398c2ecf20Sopenharmony_ci	state = rb_entry(node, struct extent_state, rb_node);
21408c2ecf20Sopenharmony_ci	if (state->start != start) {
21418c2ecf20Sopenharmony_ci		failrec = ERR_PTR(-ENOENT);
21428c2ecf20Sopenharmony_ci		goto out;
21438c2ecf20Sopenharmony_ci	}
21448c2ecf20Sopenharmony_ci
21458c2ecf20Sopenharmony_ci	failrec = state->failrec;
21468c2ecf20Sopenharmony_ciout:
21478c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
21488c2ecf20Sopenharmony_ci	return failrec;
21498c2ecf20Sopenharmony_ci}
21508c2ecf20Sopenharmony_ci
21518c2ecf20Sopenharmony_ci/*
21528c2ecf20Sopenharmony_ci * searches a range in the state tree for a given mask.
21538c2ecf20Sopenharmony_ci * If 'filled' == 1, this returns 1 only if every extent in the tree
21548c2ecf20Sopenharmony_ci * has the bits set.  Otherwise, 1 is returned if any bit in the
21558c2ecf20Sopenharmony_ci * range is found set.
21568c2ecf20Sopenharmony_ci */
21578c2ecf20Sopenharmony_ciint test_range_bit(struct extent_io_tree *tree, u64 start, u64 end,
21588c2ecf20Sopenharmony_ci		   unsigned bits, int filled, struct extent_state *cached)
21598c2ecf20Sopenharmony_ci{
21608c2ecf20Sopenharmony_ci	struct extent_state *state = NULL;
21618c2ecf20Sopenharmony_ci	struct rb_node *node;
21628c2ecf20Sopenharmony_ci	int bitset = 0;
21638c2ecf20Sopenharmony_ci
21648c2ecf20Sopenharmony_ci	spin_lock(&tree->lock);
21658c2ecf20Sopenharmony_ci	if (cached && extent_state_in_tree(cached) && cached->start <= start &&
21668c2ecf20Sopenharmony_ci	    cached->end > start)
21678c2ecf20Sopenharmony_ci		node = &cached->rb_node;
21688c2ecf20Sopenharmony_ci	else
21698c2ecf20Sopenharmony_ci		node = tree_search(tree, start);
21708c2ecf20Sopenharmony_ci	while (node && start <= end) {
21718c2ecf20Sopenharmony_ci		state = rb_entry(node, struct extent_state, rb_node);
21728c2ecf20Sopenharmony_ci
21738c2ecf20Sopenharmony_ci		if (filled && state->start > start) {
21748c2ecf20Sopenharmony_ci			bitset = 0;
21758c2ecf20Sopenharmony_ci			break;
21768c2ecf20Sopenharmony_ci		}
21778c2ecf20Sopenharmony_ci
21788c2ecf20Sopenharmony_ci		if (state->start > end)
21798c2ecf20Sopenharmony_ci			break;
21808c2ecf20Sopenharmony_ci
21818c2ecf20Sopenharmony_ci		if (state->state & bits) {
21828c2ecf20Sopenharmony_ci			bitset = 1;
21838c2ecf20Sopenharmony_ci			if (!filled)
21848c2ecf20Sopenharmony_ci				break;
21858c2ecf20Sopenharmony_ci		} else if (filled) {
21868c2ecf20Sopenharmony_ci			bitset = 0;
21878c2ecf20Sopenharmony_ci			break;
21888c2ecf20Sopenharmony_ci		}
21898c2ecf20Sopenharmony_ci
21908c2ecf20Sopenharmony_ci		if (state->end == (u64)-1)
21918c2ecf20Sopenharmony_ci			break;
21928c2ecf20Sopenharmony_ci
21938c2ecf20Sopenharmony_ci		start = state->end + 1;
21948c2ecf20Sopenharmony_ci		if (start > end)
21958c2ecf20Sopenharmony_ci			break;
21968c2ecf20Sopenharmony_ci		node = rb_next(node);
21978c2ecf20Sopenharmony_ci		if (!node) {
21988c2ecf20Sopenharmony_ci			if (filled)
21998c2ecf20Sopenharmony_ci				bitset = 0;
22008c2ecf20Sopenharmony_ci			break;
22018c2ecf20Sopenharmony_ci		}
22028c2ecf20Sopenharmony_ci	}
22038c2ecf20Sopenharmony_ci	spin_unlock(&tree->lock);
22048c2ecf20Sopenharmony_ci	return bitset;
22058c2ecf20Sopenharmony_ci}
22068c2ecf20Sopenharmony_ci
22078c2ecf20Sopenharmony_ci/*
22088c2ecf20Sopenharmony_ci * helper function to set a given page up to date if all the
22098c2ecf20Sopenharmony_ci * extents in the tree for that page are up to date
22108c2ecf20Sopenharmony_ci */
22118c2ecf20Sopenharmony_cistatic void check_page_uptodate(struct extent_io_tree *tree, struct page *page)
22128c2ecf20Sopenharmony_ci{
22138c2ecf20Sopenharmony_ci	u64 start = page_offset(page);
22148c2ecf20Sopenharmony_ci	u64 end = start + PAGE_SIZE - 1;
22158c2ecf20Sopenharmony_ci	if (test_range_bit(tree, start, end, EXTENT_UPTODATE, 1, NULL))
22168c2ecf20Sopenharmony_ci		SetPageUptodate(page);
22178c2ecf20Sopenharmony_ci}
22188c2ecf20Sopenharmony_ci
22198c2ecf20Sopenharmony_ciint free_io_failure(struct extent_io_tree *failure_tree,
22208c2ecf20Sopenharmony_ci		    struct extent_io_tree *io_tree,
22218c2ecf20Sopenharmony_ci		    struct io_failure_record *rec)
22228c2ecf20Sopenharmony_ci{
22238c2ecf20Sopenharmony_ci	int ret;
22248c2ecf20Sopenharmony_ci	int err = 0;
22258c2ecf20Sopenharmony_ci
22268c2ecf20Sopenharmony_ci	set_state_failrec(failure_tree, rec->start, NULL);
22278c2ecf20Sopenharmony_ci	ret = clear_extent_bits(failure_tree, rec->start,
22288c2ecf20Sopenharmony_ci				rec->start + rec->len - 1,
22298c2ecf20Sopenharmony_ci				EXTENT_LOCKED | EXTENT_DIRTY);
22308c2ecf20Sopenharmony_ci	if (ret)
22318c2ecf20Sopenharmony_ci		err = ret;
22328c2ecf20Sopenharmony_ci
22338c2ecf20Sopenharmony_ci	ret = clear_extent_bits(io_tree, rec->start,
22348c2ecf20Sopenharmony_ci				rec->start + rec->len - 1,
22358c2ecf20Sopenharmony_ci				EXTENT_DAMAGED);
22368c2ecf20Sopenharmony_ci	if (ret && !err)
22378c2ecf20Sopenharmony_ci		err = ret;
22388c2ecf20Sopenharmony_ci
22398c2ecf20Sopenharmony_ci	kfree(rec);
22408c2ecf20Sopenharmony_ci	return err;
22418c2ecf20Sopenharmony_ci}
22428c2ecf20Sopenharmony_ci
22438c2ecf20Sopenharmony_ci/*
22448c2ecf20Sopenharmony_ci * this bypasses the standard btrfs submit functions deliberately, as
22458c2ecf20Sopenharmony_ci * the standard behavior is to write all copies in a raid setup. here we only
22468c2ecf20Sopenharmony_ci * want to write the one bad copy. so we do the mapping for ourselves and issue
22478c2ecf20Sopenharmony_ci * submit_bio directly.
22488c2ecf20Sopenharmony_ci * to avoid any synchronization issues, wait for the data after writing, which
22498c2ecf20Sopenharmony_ci * actually prevents the read that triggered the error from finishing.
22508c2ecf20Sopenharmony_ci * currently, there can be no more than two copies of every data bit. thus,
22518c2ecf20Sopenharmony_ci * exactly one rewrite is required.
22528c2ecf20Sopenharmony_ci */
22538c2ecf20Sopenharmony_ciint repair_io_failure(struct btrfs_fs_info *fs_info, u64 ino, u64 start,
22548c2ecf20Sopenharmony_ci		      u64 length, u64 logical, struct page *page,
22558c2ecf20Sopenharmony_ci		      unsigned int pg_offset, int mirror_num)
22568c2ecf20Sopenharmony_ci{
22578c2ecf20Sopenharmony_ci	struct bio *bio;
22588c2ecf20Sopenharmony_ci	struct btrfs_device *dev;
22598c2ecf20Sopenharmony_ci	u64 map_length = 0;
22608c2ecf20Sopenharmony_ci	u64 sector;
22618c2ecf20Sopenharmony_ci	struct btrfs_bio *bbio = NULL;
22628c2ecf20Sopenharmony_ci	int ret;
22638c2ecf20Sopenharmony_ci
22648c2ecf20Sopenharmony_ci	ASSERT(!(fs_info->sb->s_flags & SB_RDONLY));
22658c2ecf20Sopenharmony_ci	BUG_ON(!mirror_num);
22668c2ecf20Sopenharmony_ci
22678c2ecf20Sopenharmony_ci	bio = btrfs_io_bio_alloc(1);
22688c2ecf20Sopenharmony_ci	bio->bi_iter.bi_size = 0;
22698c2ecf20Sopenharmony_ci	map_length = length;
22708c2ecf20Sopenharmony_ci
22718c2ecf20Sopenharmony_ci	/*
22728c2ecf20Sopenharmony_ci	 * Avoid races with device replace and make sure our bbio has devices
22738c2ecf20Sopenharmony_ci	 * associated to its stripes that don't go away while we are doing the
22748c2ecf20Sopenharmony_ci	 * read repair operation.
22758c2ecf20Sopenharmony_ci	 */
22768c2ecf20Sopenharmony_ci	btrfs_bio_counter_inc_blocked(fs_info);
22778c2ecf20Sopenharmony_ci	if (btrfs_is_parity_mirror(fs_info, logical, length)) {
22788c2ecf20Sopenharmony_ci		/*
22798c2ecf20Sopenharmony_ci		 * Note that we don't use BTRFS_MAP_WRITE because it's supposed
22808c2ecf20Sopenharmony_ci		 * to update all raid stripes, but here we just want to correct
22818c2ecf20Sopenharmony_ci		 * bad stripe, thus BTRFS_MAP_READ is abused to only get the bad
22828c2ecf20Sopenharmony_ci		 * stripe's dev and sector.
22838c2ecf20Sopenharmony_ci		 */
22848c2ecf20Sopenharmony_ci		ret = btrfs_map_block(fs_info, BTRFS_MAP_READ, logical,
22858c2ecf20Sopenharmony_ci				      &map_length, &bbio, 0);
22868c2ecf20Sopenharmony_ci		if (ret) {
22878c2ecf20Sopenharmony_ci			btrfs_bio_counter_dec(fs_info);
22888c2ecf20Sopenharmony_ci			bio_put(bio);
22898c2ecf20Sopenharmony_ci			return -EIO;
22908c2ecf20Sopenharmony_ci		}
22918c2ecf20Sopenharmony_ci		ASSERT(bbio->mirror_num == 1);
22928c2ecf20Sopenharmony_ci	} else {
22938c2ecf20Sopenharmony_ci		ret = btrfs_map_block(fs_info, BTRFS_MAP_WRITE, logical,
22948c2ecf20Sopenharmony_ci				      &map_length, &bbio, mirror_num);
22958c2ecf20Sopenharmony_ci		if (ret) {
22968c2ecf20Sopenharmony_ci			btrfs_bio_counter_dec(fs_info);
22978c2ecf20Sopenharmony_ci			bio_put(bio);
22988c2ecf20Sopenharmony_ci			return -EIO;
22998c2ecf20Sopenharmony_ci		}
23008c2ecf20Sopenharmony_ci		BUG_ON(mirror_num != bbio->mirror_num);
23018c2ecf20Sopenharmony_ci	}
23028c2ecf20Sopenharmony_ci
23038c2ecf20Sopenharmony_ci	sector = bbio->stripes[bbio->mirror_num - 1].physical >> 9;
23048c2ecf20Sopenharmony_ci	bio->bi_iter.bi_sector = sector;
23058c2ecf20Sopenharmony_ci	dev = bbio->stripes[bbio->mirror_num - 1].dev;
23068c2ecf20Sopenharmony_ci	btrfs_put_bbio(bbio);
23078c2ecf20Sopenharmony_ci	if (!dev || !dev->bdev ||
23088c2ecf20Sopenharmony_ci	    !test_bit(BTRFS_DEV_STATE_WRITEABLE, &dev->dev_state)) {
23098c2ecf20Sopenharmony_ci		btrfs_bio_counter_dec(fs_info);
23108c2ecf20Sopenharmony_ci		bio_put(bio);
23118c2ecf20Sopenharmony_ci		return -EIO;
23128c2ecf20Sopenharmony_ci	}
23138c2ecf20Sopenharmony_ci	bio_set_dev(bio, dev->bdev);
23148c2ecf20Sopenharmony_ci	bio->bi_opf = REQ_OP_WRITE | REQ_SYNC;
23158c2ecf20Sopenharmony_ci	bio_add_page(bio, page, length, pg_offset);
23168c2ecf20Sopenharmony_ci
23178c2ecf20Sopenharmony_ci	if (btrfsic_submit_bio_wait(bio)) {
23188c2ecf20Sopenharmony_ci		/* try to remap that extent elsewhere? */
23198c2ecf20Sopenharmony_ci		btrfs_bio_counter_dec(fs_info);
23208c2ecf20Sopenharmony_ci		bio_put(bio);
23218c2ecf20Sopenharmony_ci		btrfs_dev_stat_inc_and_print(dev, BTRFS_DEV_STAT_WRITE_ERRS);
23228c2ecf20Sopenharmony_ci		return -EIO;
23238c2ecf20Sopenharmony_ci	}
23248c2ecf20Sopenharmony_ci
23258c2ecf20Sopenharmony_ci	btrfs_info_rl_in_rcu(fs_info,
23268c2ecf20Sopenharmony_ci		"read error corrected: ino %llu off %llu (dev %s sector %llu)",
23278c2ecf20Sopenharmony_ci				  ino, start,
23288c2ecf20Sopenharmony_ci				  rcu_str_deref(dev->name), sector);
23298c2ecf20Sopenharmony_ci	btrfs_bio_counter_dec(fs_info);
23308c2ecf20Sopenharmony_ci	bio_put(bio);
23318c2ecf20Sopenharmony_ci	return 0;
23328c2ecf20Sopenharmony_ci}
23338c2ecf20Sopenharmony_ci
23348c2ecf20Sopenharmony_ciint btrfs_repair_eb_io_failure(const struct extent_buffer *eb, int mirror_num)
23358c2ecf20Sopenharmony_ci{
23368c2ecf20Sopenharmony_ci	struct btrfs_fs_info *fs_info = eb->fs_info;
23378c2ecf20Sopenharmony_ci	u64 start = eb->start;
23388c2ecf20Sopenharmony_ci	int i, num_pages = num_extent_pages(eb);
23398c2ecf20Sopenharmony_ci	int ret = 0;
23408c2ecf20Sopenharmony_ci
23418c2ecf20Sopenharmony_ci	if (sb_rdonly(fs_info->sb))
23428c2ecf20Sopenharmony_ci		return -EROFS;
23438c2ecf20Sopenharmony_ci
23448c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
23458c2ecf20Sopenharmony_ci		struct page *p = eb->pages[i];
23468c2ecf20Sopenharmony_ci
23478c2ecf20Sopenharmony_ci		ret = repair_io_failure(fs_info, 0, start, PAGE_SIZE, start, p,
23488c2ecf20Sopenharmony_ci					start - page_offset(p), mirror_num);
23498c2ecf20Sopenharmony_ci		if (ret)
23508c2ecf20Sopenharmony_ci			break;
23518c2ecf20Sopenharmony_ci		start += PAGE_SIZE;
23528c2ecf20Sopenharmony_ci	}
23538c2ecf20Sopenharmony_ci
23548c2ecf20Sopenharmony_ci	return ret;
23558c2ecf20Sopenharmony_ci}
23568c2ecf20Sopenharmony_ci
23578c2ecf20Sopenharmony_ci/*
23588c2ecf20Sopenharmony_ci * each time an IO finishes, we do a fast check in the IO failure tree
23598c2ecf20Sopenharmony_ci * to see if we need to process or clean up an io_failure_record
23608c2ecf20Sopenharmony_ci */
23618c2ecf20Sopenharmony_ciint clean_io_failure(struct btrfs_fs_info *fs_info,
23628c2ecf20Sopenharmony_ci		     struct extent_io_tree *failure_tree,
23638c2ecf20Sopenharmony_ci		     struct extent_io_tree *io_tree, u64 start,
23648c2ecf20Sopenharmony_ci		     struct page *page, u64 ino, unsigned int pg_offset)
23658c2ecf20Sopenharmony_ci{
23668c2ecf20Sopenharmony_ci	u64 private;
23678c2ecf20Sopenharmony_ci	struct io_failure_record *failrec;
23688c2ecf20Sopenharmony_ci	struct extent_state *state;
23698c2ecf20Sopenharmony_ci	int num_copies;
23708c2ecf20Sopenharmony_ci	int ret;
23718c2ecf20Sopenharmony_ci
23728c2ecf20Sopenharmony_ci	private = 0;
23738c2ecf20Sopenharmony_ci	ret = count_range_bits(failure_tree, &private, (u64)-1, 1,
23748c2ecf20Sopenharmony_ci			       EXTENT_DIRTY, 0);
23758c2ecf20Sopenharmony_ci	if (!ret)
23768c2ecf20Sopenharmony_ci		return 0;
23778c2ecf20Sopenharmony_ci
23788c2ecf20Sopenharmony_ci	failrec = get_state_failrec(failure_tree, start);
23798c2ecf20Sopenharmony_ci	if (IS_ERR(failrec))
23808c2ecf20Sopenharmony_ci		return 0;
23818c2ecf20Sopenharmony_ci
23828c2ecf20Sopenharmony_ci	BUG_ON(!failrec->this_mirror);
23838c2ecf20Sopenharmony_ci
23848c2ecf20Sopenharmony_ci	if (failrec->in_validation) {
23858c2ecf20Sopenharmony_ci		/* there was no real error, just free the record */
23868c2ecf20Sopenharmony_ci		btrfs_debug(fs_info,
23878c2ecf20Sopenharmony_ci			"clean_io_failure: freeing dummy error at %llu",
23888c2ecf20Sopenharmony_ci			failrec->start);
23898c2ecf20Sopenharmony_ci		goto out;
23908c2ecf20Sopenharmony_ci	}
23918c2ecf20Sopenharmony_ci	if (sb_rdonly(fs_info->sb))
23928c2ecf20Sopenharmony_ci		goto out;
23938c2ecf20Sopenharmony_ci
23948c2ecf20Sopenharmony_ci	spin_lock(&io_tree->lock);
23958c2ecf20Sopenharmony_ci	state = find_first_extent_bit_state(io_tree,
23968c2ecf20Sopenharmony_ci					    failrec->start,
23978c2ecf20Sopenharmony_ci					    EXTENT_LOCKED);
23988c2ecf20Sopenharmony_ci	spin_unlock(&io_tree->lock);
23998c2ecf20Sopenharmony_ci
24008c2ecf20Sopenharmony_ci	if (state && state->start <= failrec->start &&
24018c2ecf20Sopenharmony_ci	    state->end >= failrec->start + failrec->len - 1) {
24028c2ecf20Sopenharmony_ci		num_copies = btrfs_num_copies(fs_info, failrec->logical,
24038c2ecf20Sopenharmony_ci					      failrec->len);
24048c2ecf20Sopenharmony_ci		if (num_copies > 1)  {
24058c2ecf20Sopenharmony_ci			repair_io_failure(fs_info, ino, start, failrec->len,
24068c2ecf20Sopenharmony_ci					  failrec->logical, page, pg_offset,
24078c2ecf20Sopenharmony_ci					  failrec->failed_mirror);
24088c2ecf20Sopenharmony_ci		}
24098c2ecf20Sopenharmony_ci	}
24108c2ecf20Sopenharmony_ci
24118c2ecf20Sopenharmony_ciout:
24128c2ecf20Sopenharmony_ci	free_io_failure(failure_tree, io_tree, failrec);
24138c2ecf20Sopenharmony_ci
24148c2ecf20Sopenharmony_ci	return 0;
24158c2ecf20Sopenharmony_ci}
24168c2ecf20Sopenharmony_ci
24178c2ecf20Sopenharmony_ci/*
24188c2ecf20Sopenharmony_ci * Can be called when
24198c2ecf20Sopenharmony_ci * - hold extent lock
24208c2ecf20Sopenharmony_ci * - under ordered extent
24218c2ecf20Sopenharmony_ci * - the inode is freeing
24228c2ecf20Sopenharmony_ci */
24238c2ecf20Sopenharmony_civoid btrfs_free_io_failure_record(struct btrfs_inode *inode, u64 start, u64 end)
24248c2ecf20Sopenharmony_ci{
24258c2ecf20Sopenharmony_ci	struct extent_io_tree *failure_tree = &inode->io_failure_tree;
24268c2ecf20Sopenharmony_ci	struct io_failure_record *failrec;
24278c2ecf20Sopenharmony_ci	struct extent_state *state, *next;
24288c2ecf20Sopenharmony_ci
24298c2ecf20Sopenharmony_ci	if (RB_EMPTY_ROOT(&failure_tree->state))
24308c2ecf20Sopenharmony_ci		return;
24318c2ecf20Sopenharmony_ci
24328c2ecf20Sopenharmony_ci	spin_lock(&failure_tree->lock);
24338c2ecf20Sopenharmony_ci	state = find_first_extent_bit_state(failure_tree, start, EXTENT_DIRTY);
24348c2ecf20Sopenharmony_ci	while (state) {
24358c2ecf20Sopenharmony_ci		if (state->start > end)
24368c2ecf20Sopenharmony_ci			break;
24378c2ecf20Sopenharmony_ci
24388c2ecf20Sopenharmony_ci		ASSERT(state->end <= end);
24398c2ecf20Sopenharmony_ci
24408c2ecf20Sopenharmony_ci		next = next_state(state);
24418c2ecf20Sopenharmony_ci
24428c2ecf20Sopenharmony_ci		failrec = state->failrec;
24438c2ecf20Sopenharmony_ci		free_extent_state(state);
24448c2ecf20Sopenharmony_ci		kfree(failrec);
24458c2ecf20Sopenharmony_ci
24468c2ecf20Sopenharmony_ci		state = next;
24478c2ecf20Sopenharmony_ci	}
24488c2ecf20Sopenharmony_ci	spin_unlock(&failure_tree->lock);
24498c2ecf20Sopenharmony_ci}
24508c2ecf20Sopenharmony_ci
24518c2ecf20Sopenharmony_cistatic struct io_failure_record *btrfs_get_io_failure_record(struct inode *inode,
24528c2ecf20Sopenharmony_ci							     u64 start, u64 end)
24538c2ecf20Sopenharmony_ci{
24548c2ecf20Sopenharmony_ci	struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
24558c2ecf20Sopenharmony_ci	struct io_failure_record *failrec;
24568c2ecf20Sopenharmony_ci	struct extent_map *em;
24578c2ecf20Sopenharmony_ci	struct extent_io_tree *failure_tree = &BTRFS_I(inode)->io_failure_tree;
24588c2ecf20Sopenharmony_ci	struct extent_io_tree *tree = &BTRFS_I(inode)->io_tree;
24598c2ecf20Sopenharmony_ci	struct extent_map_tree *em_tree = &BTRFS_I(inode)->extent_tree;
24608c2ecf20Sopenharmony_ci	int ret;
24618c2ecf20Sopenharmony_ci	u64 logical;
24628c2ecf20Sopenharmony_ci
24638c2ecf20Sopenharmony_ci	failrec = get_state_failrec(failure_tree, start);
24648c2ecf20Sopenharmony_ci	if (!IS_ERR(failrec)) {
24658c2ecf20Sopenharmony_ci		btrfs_debug(fs_info,
24668c2ecf20Sopenharmony_ci			"Get IO Failure Record: (found) logical=%llu, start=%llu, len=%llu, validation=%d",
24678c2ecf20Sopenharmony_ci			failrec->logical, failrec->start, failrec->len,
24688c2ecf20Sopenharmony_ci			failrec->in_validation);
24698c2ecf20Sopenharmony_ci		/*
24708c2ecf20Sopenharmony_ci		 * when data can be on disk more than twice, add to failrec here
24718c2ecf20Sopenharmony_ci		 * (e.g. with a list for failed_mirror) to make
24728c2ecf20Sopenharmony_ci		 * clean_io_failure() clean all those errors at once.
24738c2ecf20Sopenharmony_ci		 */
24748c2ecf20Sopenharmony_ci
24758c2ecf20Sopenharmony_ci		return failrec;
24768c2ecf20Sopenharmony_ci	}
24778c2ecf20Sopenharmony_ci
24788c2ecf20Sopenharmony_ci	failrec = kzalloc(sizeof(*failrec), GFP_NOFS);
24798c2ecf20Sopenharmony_ci	if (!failrec)
24808c2ecf20Sopenharmony_ci		return ERR_PTR(-ENOMEM);
24818c2ecf20Sopenharmony_ci
24828c2ecf20Sopenharmony_ci	failrec->start = start;
24838c2ecf20Sopenharmony_ci	failrec->len = end - start + 1;
24848c2ecf20Sopenharmony_ci	failrec->this_mirror = 0;
24858c2ecf20Sopenharmony_ci	failrec->bio_flags = 0;
24868c2ecf20Sopenharmony_ci	failrec->in_validation = 0;
24878c2ecf20Sopenharmony_ci
24888c2ecf20Sopenharmony_ci	read_lock(&em_tree->lock);
24898c2ecf20Sopenharmony_ci	em = lookup_extent_mapping(em_tree, start, failrec->len);
24908c2ecf20Sopenharmony_ci	if (!em) {
24918c2ecf20Sopenharmony_ci		read_unlock(&em_tree->lock);
24928c2ecf20Sopenharmony_ci		kfree(failrec);
24938c2ecf20Sopenharmony_ci		return ERR_PTR(-EIO);
24948c2ecf20Sopenharmony_ci	}
24958c2ecf20Sopenharmony_ci
24968c2ecf20Sopenharmony_ci	if (em->start > start || em->start + em->len <= start) {
24978c2ecf20Sopenharmony_ci		free_extent_map(em);
24988c2ecf20Sopenharmony_ci		em = NULL;
24998c2ecf20Sopenharmony_ci	}
25008c2ecf20Sopenharmony_ci	read_unlock(&em_tree->lock);
25018c2ecf20Sopenharmony_ci	if (!em) {
25028c2ecf20Sopenharmony_ci		kfree(failrec);
25038c2ecf20Sopenharmony_ci		return ERR_PTR(-EIO);
25048c2ecf20Sopenharmony_ci	}
25058c2ecf20Sopenharmony_ci
25068c2ecf20Sopenharmony_ci	logical = start - em->start;
25078c2ecf20Sopenharmony_ci	logical = em->block_start + logical;
25088c2ecf20Sopenharmony_ci	if (test_bit(EXTENT_FLAG_COMPRESSED, &em->flags)) {
25098c2ecf20Sopenharmony_ci		logical = em->block_start;
25108c2ecf20Sopenharmony_ci		failrec->bio_flags = EXTENT_BIO_COMPRESSED;
25118c2ecf20Sopenharmony_ci		extent_set_compress_type(&failrec->bio_flags, em->compress_type);
25128c2ecf20Sopenharmony_ci	}
25138c2ecf20Sopenharmony_ci
25148c2ecf20Sopenharmony_ci	btrfs_debug(fs_info,
25158c2ecf20Sopenharmony_ci		    "Get IO Failure Record: (new) logical=%llu, start=%llu, len=%llu",
25168c2ecf20Sopenharmony_ci		    logical, start, failrec->len);
25178c2ecf20Sopenharmony_ci
25188c2ecf20Sopenharmony_ci	failrec->logical = logical;
25198c2ecf20Sopenharmony_ci	free_extent_map(em);
25208c2ecf20Sopenharmony_ci
25218c2ecf20Sopenharmony_ci	/* Set the bits in the private failure tree */
25228c2ecf20Sopenharmony_ci	ret = set_extent_bits(failure_tree, start, end,
25238c2ecf20Sopenharmony_ci			      EXTENT_LOCKED | EXTENT_DIRTY);
25248c2ecf20Sopenharmony_ci	if (ret >= 0) {
25258c2ecf20Sopenharmony_ci		ret = set_state_failrec(failure_tree, start, failrec);
25268c2ecf20Sopenharmony_ci		/* Set the bits in the inode's tree */
25278c2ecf20Sopenharmony_ci		ret = set_extent_bits(tree, start, end, EXTENT_DAMAGED);
25288c2ecf20Sopenharmony_ci	} else if (ret < 0) {
25298c2ecf20Sopenharmony_ci		kfree(failrec);
25308c2ecf20Sopenharmony_ci		return ERR_PTR(ret);
25318c2ecf20Sopenharmony_ci	}
25328c2ecf20Sopenharmony_ci
25338c2ecf20Sopenharmony_ci	return failrec;
25348c2ecf20Sopenharmony_ci}
25358c2ecf20Sopenharmony_ci
25368c2ecf20Sopenharmony_cistatic bool btrfs_check_repairable(struct inode *inode, bool needs_validation,
25378c2ecf20Sopenharmony_ci				   struct io_failure_record *failrec,
25388c2ecf20Sopenharmony_ci				   int failed_mirror)
25398c2ecf20Sopenharmony_ci{
25408c2ecf20Sopenharmony_ci	struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
25418c2ecf20Sopenharmony_ci	int num_copies;
25428c2ecf20Sopenharmony_ci
25438c2ecf20Sopenharmony_ci	num_copies = btrfs_num_copies(fs_info, failrec->logical, failrec->len);
25448c2ecf20Sopenharmony_ci	if (num_copies == 1) {
25458c2ecf20Sopenharmony_ci		/*
25468c2ecf20Sopenharmony_ci		 * we only have a single copy of the data, so don't bother with
25478c2ecf20Sopenharmony_ci		 * all the retry and error correction code that follows. no
25488c2ecf20Sopenharmony_ci		 * matter what the error is, it is very likely to persist.
25498c2ecf20Sopenharmony_ci		 */
25508c2ecf20Sopenharmony_ci		btrfs_debug(fs_info,
25518c2ecf20Sopenharmony_ci			"Check Repairable: cannot repair, num_copies=%d, next_mirror %d, failed_mirror %d",
25528c2ecf20Sopenharmony_ci			num_copies, failrec->this_mirror, failed_mirror);
25538c2ecf20Sopenharmony_ci		return false;
25548c2ecf20Sopenharmony_ci	}
25558c2ecf20Sopenharmony_ci
25568c2ecf20Sopenharmony_ci	/*
25578c2ecf20Sopenharmony_ci	 * there are two premises:
25588c2ecf20Sopenharmony_ci	 *	a) deliver good data to the caller
25598c2ecf20Sopenharmony_ci	 *	b) correct the bad sectors on disk
25608c2ecf20Sopenharmony_ci	 */
25618c2ecf20Sopenharmony_ci	if (needs_validation) {
25628c2ecf20Sopenharmony_ci		/*
25638c2ecf20Sopenharmony_ci		 * to fulfill b), we need to know the exact failing sectors, as
25648c2ecf20Sopenharmony_ci		 * we don't want to rewrite any more than the failed ones. thus,
25658c2ecf20Sopenharmony_ci		 * we need separate read requests for the failed bio
25668c2ecf20Sopenharmony_ci		 *
25678c2ecf20Sopenharmony_ci		 * if the following BUG_ON triggers, our validation request got
25688c2ecf20Sopenharmony_ci		 * merged. we need separate requests for our algorithm to work.
25698c2ecf20Sopenharmony_ci		 */
25708c2ecf20Sopenharmony_ci		BUG_ON(failrec->in_validation);
25718c2ecf20Sopenharmony_ci		failrec->in_validation = 1;
25728c2ecf20Sopenharmony_ci		failrec->this_mirror = failed_mirror;
25738c2ecf20Sopenharmony_ci	} else {
25748c2ecf20Sopenharmony_ci		/*
25758c2ecf20Sopenharmony_ci		 * we're ready to fulfill a) and b) alongside. get a good copy
25768c2ecf20Sopenharmony_ci		 * of the failed sector and if we succeed, we have setup
25778c2ecf20Sopenharmony_ci		 * everything for repair_io_failure to do the rest for us.
25788c2ecf20Sopenharmony_ci		 */
25798c2ecf20Sopenharmony_ci		if (failrec->in_validation) {
25808c2ecf20Sopenharmony_ci			BUG_ON(failrec->this_mirror != failed_mirror);
25818c2ecf20Sopenharmony_ci			failrec->in_validation = 0;
25828c2ecf20Sopenharmony_ci			failrec->this_mirror = 0;
25838c2ecf20Sopenharmony_ci		}
25848c2ecf20Sopenharmony_ci		failrec->failed_mirror = failed_mirror;
25858c2ecf20Sopenharmony_ci		failrec->this_mirror++;
25868c2ecf20Sopenharmony_ci		if (failrec->this_mirror == failed_mirror)
25878c2ecf20Sopenharmony_ci			failrec->this_mirror++;
25888c2ecf20Sopenharmony_ci	}
25898c2ecf20Sopenharmony_ci
25908c2ecf20Sopenharmony_ci	if (failrec->this_mirror > num_copies) {
25918c2ecf20Sopenharmony_ci		btrfs_debug(fs_info,
25928c2ecf20Sopenharmony_ci			"Check Repairable: (fail) num_copies=%d, next_mirror %d, failed_mirror %d",
25938c2ecf20Sopenharmony_ci			num_copies, failrec->this_mirror, failed_mirror);
25948c2ecf20Sopenharmony_ci		return false;
25958c2ecf20Sopenharmony_ci	}
25968c2ecf20Sopenharmony_ci
25978c2ecf20Sopenharmony_ci	return true;
25988c2ecf20Sopenharmony_ci}
25998c2ecf20Sopenharmony_ci
26008c2ecf20Sopenharmony_cistatic bool btrfs_io_needs_validation(struct inode *inode, struct bio *bio)
26018c2ecf20Sopenharmony_ci{
26028c2ecf20Sopenharmony_ci	u64 len = 0;
26038c2ecf20Sopenharmony_ci	const u32 blocksize = inode->i_sb->s_blocksize;
26048c2ecf20Sopenharmony_ci
26058c2ecf20Sopenharmony_ci	/*
26068c2ecf20Sopenharmony_ci	 * If bi_status is BLK_STS_OK, then this was a checksum error, not an
26078c2ecf20Sopenharmony_ci	 * I/O error. In this case, we already know exactly which sector was
26088c2ecf20Sopenharmony_ci	 * bad, so we don't need to validate.
26098c2ecf20Sopenharmony_ci	 */
26108c2ecf20Sopenharmony_ci	if (bio->bi_status == BLK_STS_OK)
26118c2ecf20Sopenharmony_ci		return false;
26128c2ecf20Sopenharmony_ci
26138c2ecf20Sopenharmony_ci	/*
26148c2ecf20Sopenharmony_ci	 * We need to validate each sector individually if the failed I/O was
26158c2ecf20Sopenharmony_ci	 * for multiple sectors.
26168c2ecf20Sopenharmony_ci	 *
26178c2ecf20Sopenharmony_ci	 * There are a few possible bios that can end up here:
26188c2ecf20Sopenharmony_ci	 * 1. A buffered read bio, which is not cloned.
26198c2ecf20Sopenharmony_ci	 * 2. A direct I/O read bio, which is cloned.
26208c2ecf20Sopenharmony_ci	 * 3. A (buffered or direct) repair bio, which is not cloned.
26218c2ecf20Sopenharmony_ci	 *
26228c2ecf20Sopenharmony_ci	 * For cloned bios (case 2), we can get the size from
26238c2ecf20Sopenharmony_ci	 * btrfs_io_bio->iter; for non-cloned bios (cases 1 and 3), we can get
26248c2ecf20Sopenharmony_ci	 * it from the bvecs.
26258c2ecf20Sopenharmony_ci	 */
26268c2ecf20Sopenharmony_ci	if (bio_flagged(bio, BIO_CLONED)) {
26278c2ecf20Sopenharmony_ci		if (btrfs_io_bio(bio)->iter.bi_size > blocksize)
26288c2ecf20Sopenharmony_ci			return true;
26298c2ecf20Sopenharmony_ci	} else {
26308c2ecf20Sopenharmony_ci		struct bio_vec *bvec;
26318c2ecf20Sopenharmony_ci		int i;
26328c2ecf20Sopenharmony_ci
26338c2ecf20Sopenharmony_ci		bio_for_each_bvec_all(bvec, bio, i) {
26348c2ecf20Sopenharmony_ci			len += bvec->bv_len;
26358c2ecf20Sopenharmony_ci			if (len > blocksize)
26368c2ecf20Sopenharmony_ci				return true;
26378c2ecf20Sopenharmony_ci		}
26388c2ecf20Sopenharmony_ci	}
26398c2ecf20Sopenharmony_ci	return false;
26408c2ecf20Sopenharmony_ci}
26418c2ecf20Sopenharmony_ci
26428c2ecf20Sopenharmony_ciblk_status_t btrfs_submit_read_repair(struct inode *inode,
26438c2ecf20Sopenharmony_ci				      struct bio *failed_bio, u64 phy_offset,
26448c2ecf20Sopenharmony_ci				      struct page *page, unsigned int pgoff,
26458c2ecf20Sopenharmony_ci				      u64 start, u64 end, int failed_mirror,
26468c2ecf20Sopenharmony_ci				      submit_bio_hook_t *submit_bio_hook)
26478c2ecf20Sopenharmony_ci{
26488c2ecf20Sopenharmony_ci	struct io_failure_record *failrec;
26498c2ecf20Sopenharmony_ci	struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
26508c2ecf20Sopenharmony_ci	struct extent_io_tree *tree = &BTRFS_I(inode)->io_tree;
26518c2ecf20Sopenharmony_ci	struct extent_io_tree *failure_tree = &BTRFS_I(inode)->io_failure_tree;
26528c2ecf20Sopenharmony_ci	struct btrfs_io_bio *failed_io_bio = btrfs_io_bio(failed_bio);
26538c2ecf20Sopenharmony_ci	const int icsum = phy_offset >> inode->i_sb->s_blocksize_bits;
26548c2ecf20Sopenharmony_ci	bool need_validation;
26558c2ecf20Sopenharmony_ci	struct bio *repair_bio;
26568c2ecf20Sopenharmony_ci	struct btrfs_io_bio *repair_io_bio;
26578c2ecf20Sopenharmony_ci	blk_status_t status;
26588c2ecf20Sopenharmony_ci
26598c2ecf20Sopenharmony_ci	btrfs_debug(fs_info,
26608c2ecf20Sopenharmony_ci		   "repair read error: read error at %llu", start);
26618c2ecf20Sopenharmony_ci
26628c2ecf20Sopenharmony_ci	BUG_ON(bio_op(failed_bio) == REQ_OP_WRITE);
26638c2ecf20Sopenharmony_ci
26648c2ecf20Sopenharmony_ci	failrec = btrfs_get_io_failure_record(inode, start, end);
26658c2ecf20Sopenharmony_ci	if (IS_ERR(failrec))
26668c2ecf20Sopenharmony_ci		return errno_to_blk_status(PTR_ERR(failrec));
26678c2ecf20Sopenharmony_ci
26688c2ecf20Sopenharmony_ci	need_validation = btrfs_io_needs_validation(inode, failed_bio);
26698c2ecf20Sopenharmony_ci
26708c2ecf20Sopenharmony_ci	if (!btrfs_check_repairable(inode, need_validation, failrec,
26718c2ecf20Sopenharmony_ci				    failed_mirror)) {
26728c2ecf20Sopenharmony_ci		free_io_failure(failure_tree, tree, failrec);
26738c2ecf20Sopenharmony_ci		return BLK_STS_IOERR;
26748c2ecf20Sopenharmony_ci	}
26758c2ecf20Sopenharmony_ci
26768c2ecf20Sopenharmony_ci	repair_bio = btrfs_io_bio_alloc(1);
26778c2ecf20Sopenharmony_ci	repair_io_bio = btrfs_io_bio(repair_bio);
26788c2ecf20Sopenharmony_ci	repair_bio->bi_opf = REQ_OP_READ;
26798c2ecf20Sopenharmony_ci	if (need_validation)
26808c2ecf20Sopenharmony_ci		repair_bio->bi_opf |= REQ_FAILFAST_DEV;
26818c2ecf20Sopenharmony_ci	repair_bio->bi_end_io = failed_bio->bi_end_io;
26828c2ecf20Sopenharmony_ci	repair_bio->bi_iter.bi_sector = failrec->logical >> 9;
26838c2ecf20Sopenharmony_ci	repair_bio->bi_private = failed_bio->bi_private;
26848c2ecf20Sopenharmony_ci
26858c2ecf20Sopenharmony_ci	if (failed_io_bio->csum) {
26868c2ecf20Sopenharmony_ci		const u16 csum_size = btrfs_super_csum_size(fs_info->super_copy);
26878c2ecf20Sopenharmony_ci
26888c2ecf20Sopenharmony_ci		repair_io_bio->csum = repair_io_bio->csum_inline;
26898c2ecf20Sopenharmony_ci		memcpy(repair_io_bio->csum,
26908c2ecf20Sopenharmony_ci		       failed_io_bio->csum + csum_size * icsum, csum_size);
26918c2ecf20Sopenharmony_ci	}
26928c2ecf20Sopenharmony_ci
26938c2ecf20Sopenharmony_ci	bio_add_page(repair_bio, page, failrec->len, pgoff);
26948c2ecf20Sopenharmony_ci	repair_io_bio->logical = failrec->start;
26958c2ecf20Sopenharmony_ci	repair_io_bio->iter = repair_bio->bi_iter;
26968c2ecf20Sopenharmony_ci
26978c2ecf20Sopenharmony_ci	btrfs_debug(btrfs_sb(inode->i_sb),
26988c2ecf20Sopenharmony_ci"repair read error: submitting new read to mirror %d, in_validation=%d",
26998c2ecf20Sopenharmony_ci		    failrec->this_mirror, failrec->in_validation);
27008c2ecf20Sopenharmony_ci
27018c2ecf20Sopenharmony_ci	status = submit_bio_hook(inode, repair_bio, failrec->this_mirror,
27028c2ecf20Sopenharmony_ci				 failrec->bio_flags);
27038c2ecf20Sopenharmony_ci	if (status) {
27048c2ecf20Sopenharmony_ci		free_io_failure(failure_tree, tree, failrec);
27058c2ecf20Sopenharmony_ci		bio_put(repair_bio);
27068c2ecf20Sopenharmony_ci	}
27078c2ecf20Sopenharmony_ci	return status;
27088c2ecf20Sopenharmony_ci}
27098c2ecf20Sopenharmony_ci
27108c2ecf20Sopenharmony_ci/* lots and lots of room for performance fixes in the end_bio funcs */
27118c2ecf20Sopenharmony_ci
27128c2ecf20Sopenharmony_civoid end_extent_writepage(struct page *page, int err, u64 start, u64 end)
27138c2ecf20Sopenharmony_ci{
27148c2ecf20Sopenharmony_ci	int uptodate = (err == 0);
27158c2ecf20Sopenharmony_ci	int ret = 0;
27168c2ecf20Sopenharmony_ci
27178c2ecf20Sopenharmony_ci	btrfs_writepage_endio_finish_ordered(page, start, end, uptodate);
27188c2ecf20Sopenharmony_ci
27198c2ecf20Sopenharmony_ci	if (!uptodate) {
27208c2ecf20Sopenharmony_ci		ClearPageUptodate(page);
27218c2ecf20Sopenharmony_ci		SetPageError(page);
27228c2ecf20Sopenharmony_ci		ret = err < 0 ? err : -EIO;
27238c2ecf20Sopenharmony_ci		mapping_set_error(page->mapping, ret);
27248c2ecf20Sopenharmony_ci	}
27258c2ecf20Sopenharmony_ci}
27268c2ecf20Sopenharmony_ci
27278c2ecf20Sopenharmony_ci/*
27288c2ecf20Sopenharmony_ci * after a writepage IO is done, we need to:
27298c2ecf20Sopenharmony_ci * clear the uptodate bits on error
27308c2ecf20Sopenharmony_ci * clear the writeback bits in the extent tree for this IO
27318c2ecf20Sopenharmony_ci * end_page_writeback if the page has no more pending IO
27328c2ecf20Sopenharmony_ci *
27338c2ecf20Sopenharmony_ci * Scheduling is not allowed, so the extent state tree is expected
27348c2ecf20Sopenharmony_ci * to have one and only one object corresponding to this IO.
27358c2ecf20Sopenharmony_ci */
27368c2ecf20Sopenharmony_cistatic void end_bio_extent_writepage(struct bio *bio)
27378c2ecf20Sopenharmony_ci{
27388c2ecf20Sopenharmony_ci	int error = blk_status_to_errno(bio->bi_status);
27398c2ecf20Sopenharmony_ci	struct bio_vec *bvec;
27408c2ecf20Sopenharmony_ci	u64 start;
27418c2ecf20Sopenharmony_ci	u64 end;
27428c2ecf20Sopenharmony_ci	struct bvec_iter_all iter_all;
27438c2ecf20Sopenharmony_ci
27448c2ecf20Sopenharmony_ci	ASSERT(!bio_flagged(bio, BIO_CLONED));
27458c2ecf20Sopenharmony_ci	bio_for_each_segment_all(bvec, bio, iter_all) {
27468c2ecf20Sopenharmony_ci		struct page *page = bvec->bv_page;
27478c2ecf20Sopenharmony_ci		struct inode *inode = page->mapping->host;
27488c2ecf20Sopenharmony_ci		struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
27498c2ecf20Sopenharmony_ci
27508c2ecf20Sopenharmony_ci		/* We always issue full-page reads, but if some block
27518c2ecf20Sopenharmony_ci		 * in a page fails to read, blk_update_request() will
27528c2ecf20Sopenharmony_ci		 * advance bv_offset and adjust bv_len to compensate.
27538c2ecf20Sopenharmony_ci		 * Print a warning for nonzero offsets, and an error
27548c2ecf20Sopenharmony_ci		 * if they don't add up to a full page.  */
27558c2ecf20Sopenharmony_ci		if (bvec->bv_offset || bvec->bv_len != PAGE_SIZE) {
27568c2ecf20Sopenharmony_ci			if (bvec->bv_offset + bvec->bv_len != PAGE_SIZE)
27578c2ecf20Sopenharmony_ci				btrfs_err(fs_info,
27588c2ecf20Sopenharmony_ci				   "partial page write in btrfs with offset %u and length %u",
27598c2ecf20Sopenharmony_ci					bvec->bv_offset, bvec->bv_len);
27608c2ecf20Sopenharmony_ci			else
27618c2ecf20Sopenharmony_ci				btrfs_info(fs_info,
27628c2ecf20Sopenharmony_ci				   "incomplete page write in btrfs with offset %u and length %u",
27638c2ecf20Sopenharmony_ci					bvec->bv_offset, bvec->bv_len);
27648c2ecf20Sopenharmony_ci		}
27658c2ecf20Sopenharmony_ci
27668c2ecf20Sopenharmony_ci		start = page_offset(page);
27678c2ecf20Sopenharmony_ci		end = start + bvec->bv_offset + bvec->bv_len - 1;
27688c2ecf20Sopenharmony_ci
27698c2ecf20Sopenharmony_ci		end_extent_writepage(page, error, start, end);
27708c2ecf20Sopenharmony_ci		end_page_writeback(page);
27718c2ecf20Sopenharmony_ci	}
27728c2ecf20Sopenharmony_ci
27738c2ecf20Sopenharmony_ci	bio_put(bio);
27748c2ecf20Sopenharmony_ci}
27758c2ecf20Sopenharmony_ci
27768c2ecf20Sopenharmony_cistatic void
27778c2ecf20Sopenharmony_ciendio_readpage_release_extent(struct extent_io_tree *tree, u64 start, u64 len,
27788c2ecf20Sopenharmony_ci			      int uptodate)
27798c2ecf20Sopenharmony_ci{
27808c2ecf20Sopenharmony_ci	struct extent_state *cached = NULL;
27818c2ecf20Sopenharmony_ci	u64 end = start + len - 1;
27828c2ecf20Sopenharmony_ci
27838c2ecf20Sopenharmony_ci	if (uptodate && tree->track_uptodate)
27848c2ecf20Sopenharmony_ci		set_extent_uptodate(tree, start, end, &cached, GFP_ATOMIC);
27858c2ecf20Sopenharmony_ci	unlock_extent_cached_atomic(tree, start, end, &cached);
27868c2ecf20Sopenharmony_ci}
27878c2ecf20Sopenharmony_ci
27888c2ecf20Sopenharmony_ci/*
27898c2ecf20Sopenharmony_ci * after a readpage IO is done, we need to:
27908c2ecf20Sopenharmony_ci * clear the uptodate bits on error
27918c2ecf20Sopenharmony_ci * set the uptodate bits if things worked
27928c2ecf20Sopenharmony_ci * set the page up to date if all extents in the tree are uptodate
27938c2ecf20Sopenharmony_ci * clear the lock bit in the extent tree
27948c2ecf20Sopenharmony_ci * unlock the page if there are no other extents locked for it
27958c2ecf20Sopenharmony_ci *
27968c2ecf20Sopenharmony_ci * Scheduling is not allowed, so the extent state tree is expected
27978c2ecf20Sopenharmony_ci * to have one and only one object corresponding to this IO.
27988c2ecf20Sopenharmony_ci */
27998c2ecf20Sopenharmony_cistatic void end_bio_extent_readpage(struct bio *bio)
28008c2ecf20Sopenharmony_ci{
28018c2ecf20Sopenharmony_ci	struct bio_vec *bvec;
28028c2ecf20Sopenharmony_ci	int uptodate = !bio->bi_status;
28038c2ecf20Sopenharmony_ci	struct btrfs_io_bio *io_bio = btrfs_io_bio(bio);
28048c2ecf20Sopenharmony_ci	struct extent_io_tree *tree, *failure_tree;
28058c2ecf20Sopenharmony_ci	u64 offset = 0;
28068c2ecf20Sopenharmony_ci	u64 start;
28078c2ecf20Sopenharmony_ci	u64 end;
28088c2ecf20Sopenharmony_ci	u64 len;
28098c2ecf20Sopenharmony_ci	u64 extent_start = 0;
28108c2ecf20Sopenharmony_ci	u64 extent_len = 0;
28118c2ecf20Sopenharmony_ci	int mirror;
28128c2ecf20Sopenharmony_ci	int ret;
28138c2ecf20Sopenharmony_ci	struct bvec_iter_all iter_all;
28148c2ecf20Sopenharmony_ci
28158c2ecf20Sopenharmony_ci	ASSERT(!bio_flagged(bio, BIO_CLONED));
28168c2ecf20Sopenharmony_ci	bio_for_each_segment_all(bvec, bio, iter_all) {
28178c2ecf20Sopenharmony_ci		struct page *page = bvec->bv_page;
28188c2ecf20Sopenharmony_ci		struct inode *inode = page->mapping->host;
28198c2ecf20Sopenharmony_ci		struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
28208c2ecf20Sopenharmony_ci
28218c2ecf20Sopenharmony_ci		btrfs_debug(fs_info,
28228c2ecf20Sopenharmony_ci			"end_bio_extent_readpage: bi_sector=%llu, err=%d, mirror=%u",
28238c2ecf20Sopenharmony_ci			(u64)bio->bi_iter.bi_sector, bio->bi_status,
28248c2ecf20Sopenharmony_ci			io_bio->mirror_num);
28258c2ecf20Sopenharmony_ci		tree = &BTRFS_I(inode)->io_tree;
28268c2ecf20Sopenharmony_ci		failure_tree = &BTRFS_I(inode)->io_failure_tree;
28278c2ecf20Sopenharmony_ci
28288c2ecf20Sopenharmony_ci		/* We always issue full-page reads, but if some block
28298c2ecf20Sopenharmony_ci		 * in a page fails to read, blk_update_request() will
28308c2ecf20Sopenharmony_ci		 * advance bv_offset and adjust bv_len to compensate.
28318c2ecf20Sopenharmony_ci		 * Print a warning for nonzero offsets, and an error
28328c2ecf20Sopenharmony_ci		 * if they don't add up to a full page.  */
28338c2ecf20Sopenharmony_ci		if (bvec->bv_offset || bvec->bv_len != PAGE_SIZE) {
28348c2ecf20Sopenharmony_ci			if (bvec->bv_offset + bvec->bv_len != PAGE_SIZE)
28358c2ecf20Sopenharmony_ci				btrfs_err(fs_info,
28368c2ecf20Sopenharmony_ci					"partial page read in btrfs with offset %u and length %u",
28378c2ecf20Sopenharmony_ci					bvec->bv_offset, bvec->bv_len);
28388c2ecf20Sopenharmony_ci			else
28398c2ecf20Sopenharmony_ci				btrfs_info(fs_info,
28408c2ecf20Sopenharmony_ci					"incomplete page read in btrfs with offset %u and length %u",
28418c2ecf20Sopenharmony_ci					bvec->bv_offset, bvec->bv_len);
28428c2ecf20Sopenharmony_ci		}
28438c2ecf20Sopenharmony_ci
28448c2ecf20Sopenharmony_ci		start = page_offset(page);
28458c2ecf20Sopenharmony_ci		end = start + bvec->bv_offset + bvec->bv_len - 1;
28468c2ecf20Sopenharmony_ci		len = bvec->bv_len;
28478c2ecf20Sopenharmony_ci
28488c2ecf20Sopenharmony_ci		mirror = io_bio->mirror_num;
28498c2ecf20Sopenharmony_ci		if (likely(uptodate)) {
28508c2ecf20Sopenharmony_ci			if (is_data_inode(inode))
28518c2ecf20Sopenharmony_ci				ret = btrfs_verify_data_csum(io_bio, offset, page,
28528c2ecf20Sopenharmony_ci							     start, end, mirror);
28538c2ecf20Sopenharmony_ci			else
28548c2ecf20Sopenharmony_ci				ret = btrfs_validate_metadata_buffer(io_bio,
28558c2ecf20Sopenharmony_ci					offset, page, start, end, mirror);
28568c2ecf20Sopenharmony_ci			if (ret)
28578c2ecf20Sopenharmony_ci				uptodate = 0;
28588c2ecf20Sopenharmony_ci			else
28598c2ecf20Sopenharmony_ci				clean_io_failure(BTRFS_I(inode)->root->fs_info,
28608c2ecf20Sopenharmony_ci						 failure_tree, tree, start,
28618c2ecf20Sopenharmony_ci						 page,
28628c2ecf20Sopenharmony_ci						 btrfs_ino(BTRFS_I(inode)), 0);
28638c2ecf20Sopenharmony_ci		}
28648c2ecf20Sopenharmony_ci
28658c2ecf20Sopenharmony_ci		if (likely(uptodate))
28668c2ecf20Sopenharmony_ci			goto readpage_ok;
28678c2ecf20Sopenharmony_ci
28688c2ecf20Sopenharmony_ci		if (is_data_inode(inode)) {
28698c2ecf20Sopenharmony_ci
28708c2ecf20Sopenharmony_ci			/*
28718c2ecf20Sopenharmony_ci			 * The generic bio_readpage_error handles errors the
28728c2ecf20Sopenharmony_ci			 * following way: If possible, new read requests are
28738c2ecf20Sopenharmony_ci			 * created and submitted and will end up in
28748c2ecf20Sopenharmony_ci			 * end_bio_extent_readpage as well (if we're lucky,
28758c2ecf20Sopenharmony_ci			 * not in the !uptodate case). In that case it returns
28768c2ecf20Sopenharmony_ci			 * 0 and we just go on with the next page in our bio.
28778c2ecf20Sopenharmony_ci			 * If it can't handle the error it will return -EIO and
28788c2ecf20Sopenharmony_ci			 * we remain responsible for that page.
28798c2ecf20Sopenharmony_ci			 */
28808c2ecf20Sopenharmony_ci			if (!btrfs_submit_read_repair(inode, bio, offset, page,
28818c2ecf20Sopenharmony_ci						start - page_offset(page),
28828c2ecf20Sopenharmony_ci						start, end, mirror,
28838c2ecf20Sopenharmony_ci						btrfs_submit_data_bio)) {
28848c2ecf20Sopenharmony_ci				uptodate = !bio->bi_status;
28858c2ecf20Sopenharmony_ci				offset += len;
28868c2ecf20Sopenharmony_ci				continue;
28878c2ecf20Sopenharmony_ci			}
28888c2ecf20Sopenharmony_ci		} else {
28898c2ecf20Sopenharmony_ci			struct extent_buffer *eb;
28908c2ecf20Sopenharmony_ci
28918c2ecf20Sopenharmony_ci			eb = (struct extent_buffer *)page->private;
28928c2ecf20Sopenharmony_ci			set_bit(EXTENT_BUFFER_READ_ERR, &eb->bflags);
28938c2ecf20Sopenharmony_ci			eb->read_mirror = mirror;
28948c2ecf20Sopenharmony_ci			atomic_dec(&eb->io_pages);
28958c2ecf20Sopenharmony_ci			if (test_and_clear_bit(EXTENT_BUFFER_READAHEAD,
28968c2ecf20Sopenharmony_ci					       &eb->bflags))
28978c2ecf20Sopenharmony_ci				btree_readahead_hook(eb, -EIO);
28988c2ecf20Sopenharmony_ci		}
28998c2ecf20Sopenharmony_cireadpage_ok:
29008c2ecf20Sopenharmony_ci		if (likely(uptodate)) {
29018c2ecf20Sopenharmony_ci			loff_t i_size = i_size_read(inode);
29028c2ecf20Sopenharmony_ci			pgoff_t end_index = i_size >> PAGE_SHIFT;
29038c2ecf20Sopenharmony_ci			unsigned off;
29048c2ecf20Sopenharmony_ci
29058c2ecf20Sopenharmony_ci			/* Zero out the end if this page straddles i_size */
29068c2ecf20Sopenharmony_ci			off = offset_in_page(i_size);
29078c2ecf20Sopenharmony_ci			if (page->index == end_index && off)
29088c2ecf20Sopenharmony_ci				zero_user_segment(page, off, PAGE_SIZE);
29098c2ecf20Sopenharmony_ci			SetPageUptodate(page);
29108c2ecf20Sopenharmony_ci		} else {
29118c2ecf20Sopenharmony_ci			ClearPageUptodate(page);
29128c2ecf20Sopenharmony_ci			SetPageError(page);
29138c2ecf20Sopenharmony_ci		}
29148c2ecf20Sopenharmony_ci		unlock_page(page);
29158c2ecf20Sopenharmony_ci		offset += len;
29168c2ecf20Sopenharmony_ci
29178c2ecf20Sopenharmony_ci		if (unlikely(!uptodate)) {
29188c2ecf20Sopenharmony_ci			if (extent_len) {
29198c2ecf20Sopenharmony_ci				endio_readpage_release_extent(tree,
29208c2ecf20Sopenharmony_ci							      extent_start,
29218c2ecf20Sopenharmony_ci							      extent_len, 1);
29228c2ecf20Sopenharmony_ci				extent_start = 0;
29238c2ecf20Sopenharmony_ci				extent_len = 0;
29248c2ecf20Sopenharmony_ci			}
29258c2ecf20Sopenharmony_ci			endio_readpage_release_extent(tree, start,
29268c2ecf20Sopenharmony_ci						      end - start + 1, 0);
29278c2ecf20Sopenharmony_ci		} else if (!extent_len) {
29288c2ecf20Sopenharmony_ci			extent_start = start;
29298c2ecf20Sopenharmony_ci			extent_len = end + 1 - start;
29308c2ecf20Sopenharmony_ci		} else if (extent_start + extent_len == start) {
29318c2ecf20Sopenharmony_ci			extent_len += end + 1 - start;
29328c2ecf20Sopenharmony_ci		} else {
29338c2ecf20Sopenharmony_ci			endio_readpage_release_extent(tree, extent_start,
29348c2ecf20Sopenharmony_ci						      extent_len, uptodate);
29358c2ecf20Sopenharmony_ci			extent_start = start;
29368c2ecf20Sopenharmony_ci			extent_len = end + 1 - start;
29378c2ecf20Sopenharmony_ci		}
29388c2ecf20Sopenharmony_ci	}
29398c2ecf20Sopenharmony_ci
29408c2ecf20Sopenharmony_ci	if (extent_len)
29418c2ecf20Sopenharmony_ci		endio_readpage_release_extent(tree, extent_start, extent_len,
29428c2ecf20Sopenharmony_ci					      uptodate);
29438c2ecf20Sopenharmony_ci	btrfs_io_bio_free_csum(io_bio);
29448c2ecf20Sopenharmony_ci	bio_put(bio);
29458c2ecf20Sopenharmony_ci}
29468c2ecf20Sopenharmony_ci
29478c2ecf20Sopenharmony_ci/*
29488c2ecf20Sopenharmony_ci * Initialize the members up to but not including 'bio'. Use after allocating a
29498c2ecf20Sopenharmony_ci * new bio by bio_alloc_bioset as it does not initialize the bytes outside of
29508c2ecf20Sopenharmony_ci * 'bio' because use of __GFP_ZERO is not supported.
29518c2ecf20Sopenharmony_ci */
29528c2ecf20Sopenharmony_cistatic inline void btrfs_io_bio_init(struct btrfs_io_bio *btrfs_bio)
29538c2ecf20Sopenharmony_ci{
29548c2ecf20Sopenharmony_ci	memset(btrfs_bio, 0, offsetof(struct btrfs_io_bio, bio));
29558c2ecf20Sopenharmony_ci}
29568c2ecf20Sopenharmony_ci
29578c2ecf20Sopenharmony_ci/*
29588c2ecf20Sopenharmony_ci * The following helpers allocate a bio. As it's backed by a bioset, it'll
29598c2ecf20Sopenharmony_ci * never fail.  We're returning a bio right now but you can call btrfs_io_bio
29608c2ecf20Sopenharmony_ci * for the appropriate container_of magic
29618c2ecf20Sopenharmony_ci */
29628c2ecf20Sopenharmony_cistruct bio *btrfs_bio_alloc(u64 first_byte)
29638c2ecf20Sopenharmony_ci{
29648c2ecf20Sopenharmony_ci	struct bio *bio;
29658c2ecf20Sopenharmony_ci
29668c2ecf20Sopenharmony_ci	bio = bio_alloc_bioset(GFP_NOFS, BIO_MAX_PAGES, &btrfs_bioset);
29678c2ecf20Sopenharmony_ci	bio->bi_iter.bi_sector = first_byte >> 9;
29688c2ecf20Sopenharmony_ci	btrfs_io_bio_init(btrfs_io_bio(bio));
29698c2ecf20Sopenharmony_ci	return bio;
29708c2ecf20Sopenharmony_ci}
29718c2ecf20Sopenharmony_ci
29728c2ecf20Sopenharmony_cistruct bio *btrfs_bio_clone(struct bio *bio)
29738c2ecf20Sopenharmony_ci{
29748c2ecf20Sopenharmony_ci	struct btrfs_io_bio *btrfs_bio;
29758c2ecf20Sopenharmony_ci	struct bio *new;
29768c2ecf20Sopenharmony_ci
29778c2ecf20Sopenharmony_ci	/* Bio allocation backed by a bioset does not fail */
29788c2ecf20Sopenharmony_ci	new = bio_clone_fast(bio, GFP_NOFS, &btrfs_bioset);
29798c2ecf20Sopenharmony_ci	btrfs_bio = btrfs_io_bio(new);
29808c2ecf20Sopenharmony_ci	btrfs_io_bio_init(btrfs_bio);
29818c2ecf20Sopenharmony_ci	btrfs_bio->iter = bio->bi_iter;
29828c2ecf20Sopenharmony_ci	return new;
29838c2ecf20Sopenharmony_ci}
29848c2ecf20Sopenharmony_ci
29858c2ecf20Sopenharmony_cistruct bio *btrfs_io_bio_alloc(unsigned int nr_iovecs)
29868c2ecf20Sopenharmony_ci{
29878c2ecf20Sopenharmony_ci	struct bio *bio;
29888c2ecf20Sopenharmony_ci
29898c2ecf20Sopenharmony_ci	/* Bio allocation backed by a bioset does not fail */
29908c2ecf20Sopenharmony_ci	bio = bio_alloc_bioset(GFP_NOFS, nr_iovecs, &btrfs_bioset);
29918c2ecf20Sopenharmony_ci	btrfs_io_bio_init(btrfs_io_bio(bio));
29928c2ecf20Sopenharmony_ci	return bio;
29938c2ecf20Sopenharmony_ci}
29948c2ecf20Sopenharmony_ci
29958c2ecf20Sopenharmony_cistruct bio *btrfs_bio_clone_partial(struct bio *orig, int offset, int size)
29968c2ecf20Sopenharmony_ci{
29978c2ecf20Sopenharmony_ci	struct bio *bio;
29988c2ecf20Sopenharmony_ci	struct btrfs_io_bio *btrfs_bio;
29998c2ecf20Sopenharmony_ci
30008c2ecf20Sopenharmony_ci	/* this will never fail when it's backed by a bioset */
30018c2ecf20Sopenharmony_ci	bio = bio_clone_fast(orig, GFP_NOFS, &btrfs_bioset);
30028c2ecf20Sopenharmony_ci	ASSERT(bio);
30038c2ecf20Sopenharmony_ci
30048c2ecf20Sopenharmony_ci	btrfs_bio = btrfs_io_bio(bio);
30058c2ecf20Sopenharmony_ci	btrfs_io_bio_init(btrfs_bio);
30068c2ecf20Sopenharmony_ci
30078c2ecf20Sopenharmony_ci	bio_trim(bio, offset >> 9, size >> 9);
30088c2ecf20Sopenharmony_ci	btrfs_bio->iter = bio->bi_iter;
30098c2ecf20Sopenharmony_ci	return bio;
30108c2ecf20Sopenharmony_ci}
30118c2ecf20Sopenharmony_ci
30128c2ecf20Sopenharmony_ci/*
30138c2ecf20Sopenharmony_ci * @opf:	bio REQ_OP_* and REQ_* flags as one value
30148c2ecf20Sopenharmony_ci * @wbc:	optional writeback control for io accounting
30158c2ecf20Sopenharmony_ci * @page:	page to add to the bio
30168c2ecf20Sopenharmony_ci * @pg_offset:	offset of the new bio or to check whether we are adding
30178c2ecf20Sopenharmony_ci *              a contiguous page to the previous one
30188c2ecf20Sopenharmony_ci * @size:	portion of page that we want to write
30198c2ecf20Sopenharmony_ci * @offset:	starting offset in the page
30208c2ecf20Sopenharmony_ci * @bio_ret:	must be valid pointer, newly allocated bio will be stored there
30218c2ecf20Sopenharmony_ci * @end_io_func:     end_io callback for new bio
30228c2ecf20Sopenharmony_ci * @mirror_num:	     desired mirror to read/write
30238c2ecf20Sopenharmony_ci * @prev_bio_flags:  flags of previous bio to see if we can merge the current one
30248c2ecf20Sopenharmony_ci * @bio_flags:	flags of the current bio to see if we can merge them
30258c2ecf20Sopenharmony_ci */
30268c2ecf20Sopenharmony_cistatic int submit_extent_page(unsigned int opf,
30278c2ecf20Sopenharmony_ci			      struct writeback_control *wbc,
30288c2ecf20Sopenharmony_ci			      struct page *page, u64 offset,
30298c2ecf20Sopenharmony_ci			      size_t size, unsigned long pg_offset,
30308c2ecf20Sopenharmony_ci			      struct bio **bio_ret,
30318c2ecf20Sopenharmony_ci			      bio_end_io_t end_io_func,
30328c2ecf20Sopenharmony_ci			      int mirror_num,
30338c2ecf20Sopenharmony_ci			      unsigned long prev_bio_flags,
30348c2ecf20Sopenharmony_ci			      unsigned long bio_flags,
30358c2ecf20Sopenharmony_ci			      bool force_bio_submit)
30368c2ecf20Sopenharmony_ci{
30378c2ecf20Sopenharmony_ci	int ret = 0;
30388c2ecf20Sopenharmony_ci	struct bio *bio;
30398c2ecf20Sopenharmony_ci	size_t page_size = min_t(size_t, size, PAGE_SIZE);
30408c2ecf20Sopenharmony_ci	sector_t sector = offset >> 9;
30418c2ecf20Sopenharmony_ci	struct extent_io_tree *tree = &BTRFS_I(page->mapping->host)->io_tree;
30428c2ecf20Sopenharmony_ci
30438c2ecf20Sopenharmony_ci	ASSERT(bio_ret);
30448c2ecf20Sopenharmony_ci
30458c2ecf20Sopenharmony_ci	if (*bio_ret) {
30468c2ecf20Sopenharmony_ci		bool contig;
30478c2ecf20Sopenharmony_ci		bool can_merge = true;
30488c2ecf20Sopenharmony_ci
30498c2ecf20Sopenharmony_ci		bio = *bio_ret;
30508c2ecf20Sopenharmony_ci		if (prev_bio_flags & EXTENT_BIO_COMPRESSED)
30518c2ecf20Sopenharmony_ci			contig = bio->bi_iter.bi_sector == sector;
30528c2ecf20Sopenharmony_ci		else
30538c2ecf20Sopenharmony_ci			contig = bio_end_sector(bio) == sector;
30548c2ecf20Sopenharmony_ci
30558c2ecf20Sopenharmony_ci		if (btrfs_bio_fits_in_stripe(page, page_size, bio, bio_flags))
30568c2ecf20Sopenharmony_ci			can_merge = false;
30578c2ecf20Sopenharmony_ci
30588c2ecf20Sopenharmony_ci		if (prev_bio_flags != bio_flags || !contig || !can_merge ||
30598c2ecf20Sopenharmony_ci		    force_bio_submit ||
30608c2ecf20Sopenharmony_ci		    bio_add_page(bio, page, page_size, pg_offset) < page_size) {
30618c2ecf20Sopenharmony_ci			ret = submit_one_bio(bio, mirror_num, prev_bio_flags);
30628c2ecf20Sopenharmony_ci			if (ret < 0) {
30638c2ecf20Sopenharmony_ci				*bio_ret = NULL;
30648c2ecf20Sopenharmony_ci				return ret;
30658c2ecf20Sopenharmony_ci			}
30668c2ecf20Sopenharmony_ci			bio = NULL;
30678c2ecf20Sopenharmony_ci		} else {
30688c2ecf20Sopenharmony_ci			if (wbc)
30698c2ecf20Sopenharmony_ci				wbc_account_cgroup_owner(wbc, page, page_size);
30708c2ecf20Sopenharmony_ci			return 0;
30718c2ecf20Sopenharmony_ci		}
30728c2ecf20Sopenharmony_ci	}
30738c2ecf20Sopenharmony_ci
30748c2ecf20Sopenharmony_ci	bio = btrfs_bio_alloc(offset);
30758c2ecf20Sopenharmony_ci	bio_add_page(bio, page, page_size, pg_offset);
30768c2ecf20Sopenharmony_ci	bio->bi_end_io = end_io_func;
30778c2ecf20Sopenharmony_ci	bio->bi_private = tree;
30788c2ecf20Sopenharmony_ci	bio->bi_write_hint = page->mapping->host->i_write_hint;
30798c2ecf20Sopenharmony_ci	bio->bi_opf = opf;
30808c2ecf20Sopenharmony_ci	if (wbc) {
30818c2ecf20Sopenharmony_ci		struct block_device *bdev;
30828c2ecf20Sopenharmony_ci
30838c2ecf20Sopenharmony_ci		bdev = BTRFS_I(page->mapping->host)->root->fs_info->fs_devices->latest_bdev;
30848c2ecf20Sopenharmony_ci		bio_set_dev(bio, bdev);
30858c2ecf20Sopenharmony_ci		wbc_init_bio(wbc, bio);
30868c2ecf20Sopenharmony_ci		wbc_account_cgroup_owner(wbc, page, page_size);
30878c2ecf20Sopenharmony_ci	}
30888c2ecf20Sopenharmony_ci
30898c2ecf20Sopenharmony_ci	*bio_ret = bio;
30908c2ecf20Sopenharmony_ci
30918c2ecf20Sopenharmony_ci	return ret;
30928c2ecf20Sopenharmony_ci}
30938c2ecf20Sopenharmony_ci
30948c2ecf20Sopenharmony_cistatic void attach_extent_buffer_page(struct extent_buffer *eb,
30958c2ecf20Sopenharmony_ci				      struct page *page)
30968c2ecf20Sopenharmony_ci{
30978c2ecf20Sopenharmony_ci	if (!PagePrivate(page))
30988c2ecf20Sopenharmony_ci		attach_page_private(page, eb);
30998c2ecf20Sopenharmony_ci	else
31008c2ecf20Sopenharmony_ci		WARN_ON(page->private != (unsigned long)eb);
31018c2ecf20Sopenharmony_ci}
31028c2ecf20Sopenharmony_ci
31038c2ecf20Sopenharmony_civoid set_page_extent_mapped(struct page *page)
31048c2ecf20Sopenharmony_ci{
31058c2ecf20Sopenharmony_ci	if (!PagePrivate(page))
31068c2ecf20Sopenharmony_ci		attach_page_private(page, (void *)EXTENT_PAGE_PRIVATE);
31078c2ecf20Sopenharmony_ci}
31088c2ecf20Sopenharmony_ci
31098c2ecf20Sopenharmony_cistatic struct extent_map *
31108c2ecf20Sopenharmony_ci__get_extent_map(struct inode *inode, struct page *page, size_t pg_offset,
31118c2ecf20Sopenharmony_ci		 u64 start, u64 len, struct extent_map **em_cached)
31128c2ecf20Sopenharmony_ci{
31138c2ecf20Sopenharmony_ci	struct extent_map *em;
31148c2ecf20Sopenharmony_ci
31158c2ecf20Sopenharmony_ci	if (em_cached && *em_cached) {
31168c2ecf20Sopenharmony_ci		em = *em_cached;
31178c2ecf20Sopenharmony_ci		if (extent_map_in_tree(em) && start >= em->start &&
31188c2ecf20Sopenharmony_ci		    start < extent_map_end(em)) {
31198c2ecf20Sopenharmony_ci			refcount_inc(&em->refs);
31208c2ecf20Sopenharmony_ci			return em;
31218c2ecf20Sopenharmony_ci		}
31228c2ecf20Sopenharmony_ci
31238c2ecf20Sopenharmony_ci		free_extent_map(em);
31248c2ecf20Sopenharmony_ci		*em_cached = NULL;
31258c2ecf20Sopenharmony_ci	}
31268c2ecf20Sopenharmony_ci
31278c2ecf20Sopenharmony_ci	em = btrfs_get_extent(BTRFS_I(inode), page, pg_offset, start, len);
31288c2ecf20Sopenharmony_ci	if (em_cached && !IS_ERR_OR_NULL(em)) {
31298c2ecf20Sopenharmony_ci		BUG_ON(*em_cached);
31308c2ecf20Sopenharmony_ci		refcount_inc(&em->refs);
31318c2ecf20Sopenharmony_ci		*em_cached = em;
31328c2ecf20Sopenharmony_ci	}
31338c2ecf20Sopenharmony_ci	return em;
31348c2ecf20Sopenharmony_ci}
31358c2ecf20Sopenharmony_ci/*
31368c2ecf20Sopenharmony_ci * basic readpage implementation.  Locked extent state structs are inserted
31378c2ecf20Sopenharmony_ci * into the tree that are removed when the IO is done (by the end_io
31388c2ecf20Sopenharmony_ci * handlers)
31398c2ecf20Sopenharmony_ci * XXX JDM: This needs looking at to ensure proper page locking
31408c2ecf20Sopenharmony_ci * return 0 on success, otherwise return error
31418c2ecf20Sopenharmony_ci */
31428c2ecf20Sopenharmony_ciint btrfs_do_readpage(struct page *page, struct extent_map **em_cached,
31438c2ecf20Sopenharmony_ci		      struct bio **bio, unsigned long *bio_flags,
31448c2ecf20Sopenharmony_ci		      unsigned int read_flags, u64 *prev_em_start)
31458c2ecf20Sopenharmony_ci{
31468c2ecf20Sopenharmony_ci	struct inode *inode = page->mapping->host;
31478c2ecf20Sopenharmony_ci	u64 start = page_offset(page);
31488c2ecf20Sopenharmony_ci	const u64 end = start + PAGE_SIZE - 1;
31498c2ecf20Sopenharmony_ci	u64 cur = start;
31508c2ecf20Sopenharmony_ci	u64 extent_offset;
31518c2ecf20Sopenharmony_ci	u64 last_byte = i_size_read(inode);
31528c2ecf20Sopenharmony_ci	u64 block_start;
31538c2ecf20Sopenharmony_ci	u64 cur_end;
31548c2ecf20Sopenharmony_ci	struct extent_map *em;
31558c2ecf20Sopenharmony_ci	int ret = 0;
31568c2ecf20Sopenharmony_ci	int nr = 0;
31578c2ecf20Sopenharmony_ci	size_t pg_offset = 0;
31588c2ecf20Sopenharmony_ci	size_t iosize;
31598c2ecf20Sopenharmony_ci	size_t disk_io_size;
31608c2ecf20Sopenharmony_ci	size_t blocksize = inode->i_sb->s_blocksize;
31618c2ecf20Sopenharmony_ci	unsigned long this_bio_flag = 0;
31628c2ecf20Sopenharmony_ci	struct extent_io_tree *tree = &BTRFS_I(inode)->io_tree;
31638c2ecf20Sopenharmony_ci
31648c2ecf20Sopenharmony_ci	set_page_extent_mapped(page);
31658c2ecf20Sopenharmony_ci
31668c2ecf20Sopenharmony_ci	if (!PageUptodate(page)) {
31678c2ecf20Sopenharmony_ci		if (cleancache_get_page(page) == 0) {
31688c2ecf20Sopenharmony_ci			BUG_ON(blocksize != PAGE_SIZE);
31698c2ecf20Sopenharmony_ci			unlock_extent(tree, start, end);
31708c2ecf20Sopenharmony_ci			goto out;
31718c2ecf20Sopenharmony_ci		}
31728c2ecf20Sopenharmony_ci	}
31738c2ecf20Sopenharmony_ci
31748c2ecf20Sopenharmony_ci	if (page->index == last_byte >> PAGE_SHIFT) {
31758c2ecf20Sopenharmony_ci		char *userpage;
31768c2ecf20Sopenharmony_ci		size_t zero_offset = offset_in_page(last_byte);
31778c2ecf20Sopenharmony_ci
31788c2ecf20Sopenharmony_ci		if (zero_offset) {
31798c2ecf20Sopenharmony_ci			iosize = PAGE_SIZE - zero_offset;
31808c2ecf20Sopenharmony_ci			userpage = kmap_atomic(page);
31818c2ecf20Sopenharmony_ci			memset(userpage + zero_offset, 0, iosize);
31828c2ecf20Sopenharmony_ci			flush_dcache_page(page);
31838c2ecf20Sopenharmony_ci			kunmap_atomic(userpage);
31848c2ecf20Sopenharmony_ci		}
31858c2ecf20Sopenharmony_ci	}
31868c2ecf20Sopenharmony_ci	while (cur <= end) {
31878c2ecf20Sopenharmony_ci		bool force_bio_submit = false;
31888c2ecf20Sopenharmony_ci		u64 offset;
31898c2ecf20Sopenharmony_ci
31908c2ecf20Sopenharmony_ci		if (cur >= last_byte) {
31918c2ecf20Sopenharmony_ci			char *userpage;
31928c2ecf20Sopenharmony_ci			struct extent_state *cached = NULL;
31938c2ecf20Sopenharmony_ci
31948c2ecf20Sopenharmony_ci			iosize = PAGE_SIZE - pg_offset;
31958c2ecf20Sopenharmony_ci			userpage = kmap_atomic(page);
31968c2ecf20Sopenharmony_ci			memset(userpage + pg_offset, 0, iosize);
31978c2ecf20Sopenharmony_ci			flush_dcache_page(page);
31988c2ecf20Sopenharmony_ci			kunmap_atomic(userpage);
31998c2ecf20Sopenharmony_ci			set_extent_uptodate(tree, cur, cur + iosize - 1,
32008c2ecf20Sopenharmony_ci					    &cached, GFP_NOFS);
32018c2ecf20Sopenharmony_ci			unlock_extent_cached(tree, cur,
32028c2ecf20Sopenharmony_ci					     cur + iosize - 1, &cached);
32038c2ecf20Sopenharmony_ci			break;
32048c2ecf20Sopenharmony_ci		}
32058c2ecf20Sopenharmony_ci		em = __get_extent_map(inode, page, pg_offset, cur,
32068c2ecf20Sopenharmony_ci				      end - cur + 1, em_cached);
32078c2ecf20Sopenharmony_ci		if (IS_ERR_OR_NULL(em)) {
32088c2ecf20Sopenharmony_ci			SetPageError(page);
32098c2ecf20Sopenharmony_ci			unlock_extent(tree, cur, end);
32108c2ecf20Sopenharmony_ci			break;
32118c2ecf20Sopenharmony_ci		}
32128c2ecf20Sopenharmony_ci		extent_offset = cur - em->start;
32138c2ecf20Sopenharmony_ci		BUG_ON(extent_map_end(em) <= cur);
32148c2ecf20Sopenharmony_ci		BUG_ON(end < cur);
32158c2ecf20Sopenharmony_ci
32168c2ecf20Sopenharmony_ci		if (test_bit(EXTENT_FLAG_COMPRESSED, &em->flags)) {
32178c2ecf20Sopenharmony_ci			this_bio_flag |= EXTENT_BIO_COMPRESSED;
32188c2ecf20Sopenharmony_ci			extent_set_compress_type(&this_bio_flag,
32198c2ecf20Sopenharmony_ci						 em->compress_type);
32208c2ecf20Sopenharmony_ci		}
32218c2ecf20Sopenharmony_ci
32228c2ecf20Sopenharmony_ci		iosize = min(extent_map_end(em) - cur, end - cur + 1);
32238c2ecf20Sopenharmony_ci		cur_end = min(extent_map_end(em) - 1, end);
32248c2ecf20Sopenharmony_ci		iosize = ALIGN(iosize, blocksize);
32258c2ecf20Sopenharmony_ci		if (this_bio_flag & EXTENT_BIO_COMPRESSED) {
32268c2ecf20Sopenharmony_ci			disk_io_size = em->block_len;
32278c2ecf20Sopenharmony_ci			offset = em->block_start;
32288c2ecf20Sopenharmony_ci		} else {
32298c2ecf20Sopenharmony_ci			offset = em->block_start + extent_offset;
32308c2ecf20Sopenharmony_ci			disk_io_size = iosize;
32318c2ecf20Sopenharmony_ci		}
32328c2ecf20Sopenharmony_ci		block_start = em->block_start;
32338c2ecf20Sopenharmony_ci		if (test_bit(EXTENT_FLAG_PREALLOC, &em->flags))
32348c2ecf20Sopenharmony_ci			block_start = EXTENT_MAP_HOLE;
32358c2ecf20Sopenharmony_ci
32368c2ecf20Sopenharmony_ci		/*
32378c2ecf20Sopenharmony_ci		 * If we have a file range that points to a compressed extent
32388c2ecf20Sopenharmony_ci		 * and it's followed by a consecutive file range that points
32398c2ecf20Sopenharmony_ci		 * to the same compressed extent (possibly with a different
32408c2ecf20Sopenharmony_ci		 * offset and/or length, so it either points to the whole extent
32418c2ecf20Sopenharmony_ci		 * or only part of it), we must make sure we do not submit a
32428c2ecf20Sopenharmony_ci		 * single bio to populate the pages for the 2 ranges because
32438c2ecf20Sopenharmony_ci		 * this makes the compressed extent read zero out the pages
32448c2ecf20Sopenharmony_ci		 * belonging to the 2nd range. Imagine the following scenario:
32458c2ecf20Sopenharmony_ci		 *
32468c2ecf20Sopenharmony_ci		 *  File layout
32478c2ecf20Sopenharmony_ci		 *  [0 - 8K]                     [8K - 24K]
32488c2ecf20Sopenharmony_ci		 *    |                               |
32498c2ecf20Sopenharmony_ci		 *    |                               |
32508c2ecf20Sopenharmony_ci		 * points to extent X,         points to extent X,
32518c2ecf20Sopenharmony_ci		 * offset 4K, length of 8K     offset 0, length 16K
32528c2ecf20Sopenharmony_ci		 *
32538c2ecf20Sopenharmony_ci		 * [extent X, compressed length = 4K uncompressed length = 16K]
32548c2ecf20Sopenharmony_ci		 *
32558c2ecf20Sopenharmony_ci		 * If the bio to read the compressed extent covers both ranges,
32568c2ecf20Sopenharmony_ci		 * it will decompress extent X into the pages belonging to the
32578c2ecf20Sopenharmony_ci		 * first range and then it will stop, zeroing out the remaining
32588c2ecf20Sopenharmony_ci		 * pages that belong to the other range that points to extent X.
32598c2ecf20Sopenharmony_ci		 * So here we make sure we submit 2 bios, one for the first
32608c2ecf20Sopenharmony_ci		 * range and another one for the third range. Both will target
32618c2ecf20Sopenharmony_ci		 * the same physical extent from disk, but we can't currently
32628c2ecf20Sopenharmony_ci		 * make the compressed bio endio callback populate the pages
32638c2ecf20Sopenharmony_ci		 * for both ranges because each compressed bio is tightly
32648c2ecf20Sopenharmony_ci		 * coupled with a single extent map, and each range can have
32658c2ecf20Sopenharmony_ci		 * an extent map with a different offset value relative to the
32668c2ecf20Sopenharmony_ci		 * uncompressed data of our extent and different lengths. This
32678c2ecf20Sopenharmony_ci		 * is a corner case so we prioritize correctness over
32688c2ecf20Sopenharmony_ci		 * non-optimal behavior (submitting 2 bios for the same extent).
32698c2ecf20Sopenharmony_ci		 */
32708c2ecf20Sopenharmony_ci		if (test_bit(EXTENT_FLAG_COMPRESSED, &em->flags) &&
32718c2ecf20Sopenharmony_ci		    prev_em_start && *prev_em_start != (u64)-1 &&
32728c2ecf20Sopenharmony_ci		    *prev_em_start != em->start)
32738c2ecf20Sopenharmony_ci			force_bio_submit = true;
32748c2ecf20Sopenharmony_ci
32758c2ecf20Sopenharmony_ci		if (prev_em_start)
32768c2ecf20Sopenharmony_ci			*prev_em_start = em->start;
32778c2ecf20Sopenharmony_ci
32788c2ecf20Sopenharmony_ci		free_extent_map(em);
32798c2ecf20Sopenharmony_ci		em = NULL;
32808c2ecf20Sopenharmony_ci
32818c2ecf20Sopenharmony_ci		/* we've found a hole, just zero and go on */
32828c2ecf20Sopenharmony_ci		if (block_start == EXTENT_MAP_HOLE) {
32838c2ecf20Sopenharmony_ci			char *userpage;
32848c2ecf20Sopenharmony_ci			struct extent_state *cached = NULL;
32858c2ecf20Sopenharmony_ci
32868c2ecf20Sopenharmony_ci			userpage = kmap_atomic(page);
32878c2ecf20Sopenharmony_ci			memset(userpage + pg_offset, 0, iosize);
32888c2ecf20Sopenharmony_ci			flush_dcache_page(page);
32898c2ecf20Sopenharmony_ci			kunmap_atomic(userpage);
32908c2ecf20Sopenharmony_ci
32918c2ecf20Sopenharmony_ci			set_extent_uptodate(tree, cur, cur + iosize - 1,
32928c2ecf20Sopenharmony_ci					    &cached, GFP_NOFS);
32938c2ecf20Sopenharmony_ci			unlock_extent_cached(tree, cur,
32948c2ecf20Sopenharmony_ci					     cur + iosize - 1, &cached);
32958c2ecf20Sopenharmony_ci			cur = cur + iosize;
32968c2ecf20Sopenharmony_ci			pg_offset += iosize;
32978c2ecf20Sopenharmony_ci			continue;
32988c2ecf20Sopenharmony_ci		}
32998c2ecf20Sopenharmony_ci		/* the get_extent function already copied into the page */
33008c2ecf20Sopenharmony_ci		if (test_range_bit(tree, cur, cur_end,
33018c2ecf20Sopenharmony_ci				   EXTENT_UPTODATE, 1, NULL)) {
33028c2ecf20Sopenharmony_ci			check_page_uptodate(tree, page);
33038c2ecf20Sopenharmony_ci			unlock_extent(tree, cur, cur + iosize - 1);
33048c2ecf20Sopenharmony_ci			cur = cur + iosize;
33058c2ecf20Sopenharmony_ci			pg_offset += iosize;
33068c2ecf20Sopenharmony_ci			continue;
33078c2ecf20Sopenharmony_ci		}
33088c2ecf20Sopenharmony_ci		/* we have an inline extent but it didn't get marked up
33098c2ecf20Sopenharmony_ci		 * to date.  Error out
33108c2ecf20Sopenharmony_ci		 */
33118c2ecf20Sopenharmony_ci		if (block_start == EXTENT_MAP_INLINE) {
33128c2ecf20Sopenharmony_ci			SetPageError(page);
33138c2ecf20Sopenharmony_ci			unlock_extent(tree, cur, cur + iosize - 1);
33148c2ecf20Sopenharmony_ci			cur = cur + iosize;
33158c2ecf20Sopenharmony_ci			pg_offset += iosize;
33168c2ecf20Sopenharmony_ci			continue;
33178c2ecf20Sopenharmony_ci		}
33188c2ecf20Sopenharmony_ci
33198c2ecf20Sopenharmony_ci		ret = submit_extent_page(REQ_OP_READ | read_flags, NULL,
33208c2ecf20Sopenharmony_ci					 page, offset, disk_io_size,
33218c2ecf20Sopenharmony_ci					 pg_offset, bio,
33228c2ecf20Sopenharmony_ci					 end_bio_extent_readpage, 0,
33238c2ecf20Sopenharmony_ci					 *bio_flags,
33248c2ecf20Sopenharmony_ci					 this_bio_flag,
33258c2ecf20Sopenharmony_ci					 force_bio_submit);
33268c2ecf20Sopenharmony_ci		if (!ret) {
33278c2ecf20Sopenharmony_ci			nr++;
33288c2ecf20Sopenharmony_ci			*bio_flags = this_bio_flag;
33298c2ecf20Sopenharmony_ci		} else {
33308c2ecf20Sopenharmony_ci			SetPageError(page);
33318c2ecf20Sopenharmony_ci			unlock_extent(tree, cur, cur + iosize - 1);
33328c2ecf20Sopenharmony_ci			goto out;
33338c2ecf20Sopenharmony_ci		}
33348c2ecf20Sopenharmony_ci		cur = cur + iosize;
33358c2ecf20Sopenharmony_ci		pg_offset += iosize;
33368c2ecf20Sopenharmony_ci	}
33378c2ecf20Sopenharmony_ciout:
33388c2ecf20Sopenharmony_ci	if (!nr) {
33398c2ecf20Sopenharmony_ci		if (!PageError(page))
33408c2ecf20Sopenharmony_ci			SetPageUptodate(page);
33418c2ecf20Sopenharmony_ci		unlock_page(page);
33428c2ecf20Sopenharmony_ci	}
33438c2ecf20Sopenharmony_ci	return ret;
33448c2ecf20Sopenharmony_ci}
33458c2ecf20Sopenharmony_ci
33468c2ecf20Sopenharmony_cistatic inline void contiguous_readpages(struct page *pages[], int nr_pages,
33478c2ecf20Sopenharmony_ci					     u64 start, u64 end,
33488c2ecf20Sopenharmony_ci					     struct extent_map **em_cached,
33498c2ecf20Sopenharmony_ci					     struct bio **bio,
33508c2ecf20Sopenharmony_ci					     unsigned long *bio_flags,
33518c2ecf20Sopenharmony_ci					     u64 *prev_em_start)
33528c2ecf20Sopenharmony_ci{
33538c2ecf20Sopenharmony_ci	struct btrfs_inode *inode = BTRFS_I(pages[0]->mapping->host);
33548c2ecf20Sopenharmony_ci	int index;
33558c2ecf20Sopenharmony_ci
33568c2ecf20Sopenharmony_ci	btrfs_lock_and_flush_ordered_range(inode, start, end, NULL);
33578c2ecf20Sopenharmony_ci
33588c2ecf20Sopenharmony_ci	for (index = 0; index < nr_pages; index++) {
33598c2ecf20Sopenharmony_ci		btrfs_do_readpage(pages[index], em_cached, bio, bio_flags,
33608c2ecf20Sopenharmony_ci				  REQ_RAHEAD, prev_em_start);
33618c2ecf20Sopenharmony_ci		put_page(pages[index]);
33628c2ecf20Sopenharmony_ci	}
33638c2ecf20Sopenharmony_ci}
33648c2ecf20Sopenharmony_ci
33658c2ecf20Sopenharmony_cistatic void update_nr_written(struct writeback_control *wbc,
33668c2ecf20Sopenharmony_ci			      unsigned long nr_written)
33678c2ecf20Sopenharmony_ci{
33688c2ecf20Sopenharmony_ci	wbc->nr_to_write -= nr_written;
33698c2ecf20Sopenharmony_ci}
33708c2ecf20Sopenharmony_ci
33718c2ecf20Sopenharmony_ci/*
33728c2ecf20Sopenharmony_ci * helper for __extent_writepage, doing all of the delayed allocation setup.
33738c2ecf20Sopenharmony_ci *
33748c2ecf20Sopenharmony_ci * This returns 1 if btrfs_run_delalloc_range function did all the work required
33758c2ecf20Sopenharmony_ci * to write the page (copy into inline extent).  In this case the IO has
33768c2ecf20Sopenharmony_ci * been started and the page is already unlocked.
33778c2ecf20Sopenharmony_ci *
33788c2ecf20Sopenharmony_ci * This returns 0 if all went well (page still locked)
33798c2ecf20Sopenharmony_ci * This returns < 0 if there were errors (page still locked)
33808c2ecf20Sopenharmony_ci */
33818c2ecf20Sopenharmony_cistatic noinline_for_stack int writepage_delalloc(struct btrfs_inode *inode,
33828c2ecf20Sopenharmony_ci		struct page *page, struct writeback_control *wbc,
33838c2ecf20Sopenharmony_ci		u64 delalloc_start, unsigned long *nr_written)
33848c2ecf20Sopenharmony_ci{
33858c2ecf20Sopenharmony_ci	u64 page_end = delalloc_start + PAGE_SIZE - 1;
33868c2ecf20Sopenharmony_ci	bool found;
33878c2ecf20Sopenharmony_ci	u64 delalloc_to_write = 0;
33888c2ecf20Sopenharmony_ci	u64 delalloc_end = 0;
33898c2ecf20Sopenharmony_ci	int ret;
33908c2ecf20Sopenharmony_ci	int page_started = 0;
33918c2ecf20Sopenharmony_ci
33928c2ecf20Sopenharmony_ci
33938c2ecf20Sopenharmony_ci	while (delalloc_end < page_end) {
33948c2ecf20Sopenharmony_ci		found = find_lock_delalloc_range(&inode->vfs_inode, page,
33958c2ecf20Sopenharmony_ci					       &delalloc_start,
33968c2ecf20Sopenharmony_ci					       &delalloc_end);
33978c2ecf20Sopenharmony_ci		if (!found) {
33988c2ecf20Sopenharmony_ci			delalloc_start = delalloc_end + 1;
33998c2ecf20Sopenharmony_ci			continue;
34008c2ecf20Sopenharmony_ci		}
34018c2ecf20Sopenharmony_ci		ret = btrfs_run_delalloc_range(inode, page, delalloc_start,
34028c2ecf20Sopenharmony_ci				delalloc_end, &page_started, nr_written, wbc);
34038c2ecf20Sopenharmony_ci		if (ret) {
34048c2ecf20Sopenharmony_ci			SetPageError(page);
34058c2ecf20Sopenharmony_ci			/*
34068c2ecf20Sopenharmony_ci			 * btrfs_run_delalloc_range should return < 0 for error
34078c2ecf20Sopenharmony_ci			 * but just in case, we use > 0 here meaning the IO is
34088c2ecf20Sopenharmony_ci			 * started, so we don't want to return > 0 unless
34098c2ecf20Sopenharmony_ci			 * things are going well.
34108c2ecf20Sopenharmony_ci			 */
34118c2ecf20Sopenharmony_ci			return ret < 0 ? ret : -EIO;
34128c2ecf20Sopenharmony_ci		}
34138c2ecf20Sopenharmony_ci		/*
34148c2ecf20Sopenharmony_ci		 * delalloc_end is already one less than the total length, so
34158c2ecf20Sopenharmony_ci		 * we don't subtract one from PAGE_SIZE
34168c2ecf20Sopenharmony_ci		 */
34178c2ecf20Sopenharmony_ci		delalloc_to_write += (delalloc_end - delalloc_start +
34188c2ecf20Sopenharmony_ci				      PAGE_SIZE) >> PAGE_SHIFT;
34198c2ecf20Sopenharmony_ci		delalloc_start = delalloc_end + 1;
34208c2ecf20Sopenharmony_ci	}
34218c2ecf20Sopenharmony_ci	if (wbc->nr_to_write < delalloc_to_write) {
34228c2ecf20Sopenharmony_ci		int thresh = 8192;
34238c2ecf20Sopenharmony_ci
34248c2ecf20Sopenharmony_ci		if (delalloc_to_write < thresh * 2)
34258c2ecf20Sopenharmony_ci			thresh = delalloc_to_write;
34268c2ecf20Sopenharmony_ci		wbc->nr_to_write = min_t(u64, delalloc_to_write,
34278c2ecf20Sopenharmony_ci					 thresh);
34288c2ecf20Sopenharmony_ci	}
34298c2ecf20Sopenharmony_ci
34308c2ecf20Sopenharmony_ci	/* did the fill delalloc function already unlock and start
34318c2ecf20Sopenharmony_ci	 * the IO?
34328c2ecf20Sopenharmony_ci	 */
34338c2ecf20Sopenharmony_ci	if (page_started) {
34348c2ecf20Sopenharmony_ci		/*
34358c2ecf20Sopenharmony_ci		 * we've unlocked the page, so we can't update
34368c2ecf20Sopenharmony_ci		 * the mapping's writeback index, just update
34378c2ecf20Sopenharmony_ci		 * nr_to_write.
34388c2ecf20Sopenharmony_ci		 */
34398c2ecf20Sopenharmony_ci		wbc->nr_to_write -= *nr_written;
34408c2ecf20Sopenharmony_ci		return 1;
34418c2ecf20Sopenharmony_ci	}
34428c2ecf20Sopenharmony_ci
34438c2ecf20Sopenharmony_ci	return 0;
34448c2ecf20Sopenharmony_ci}
34458c2ecf20Sopenharmony_ci
34468c2ecf20Sopenharmony_ci/*
34478c2ecf20Sopenharmony_ci * helper for __extent_writepage.  This calls the writepage start hooks,
34488c2ecf20Sopenharmony_ci * and does the loop to map the page into extents and bios.
34498c2ecf20Sopenharmony_ci *
34508c2ecf20Sopenharmony_ci * We return 1 if the IO is started and the page is unlocked,
34518c2ecf20Sopenharmony_ci * 0 if all went well (page still locked)
34528c2ecf20Sopenharmony_ci * < 0 if there were errors (page still locked)
34538c2ecf20Sopenharmony_ci */
34548c2ecf20Sopenharmony_cistatic noinline_for_stack int __extent_writepage_io(struct btrfs_inode *inode,
34558c2ecf20Sopenharmony_ci				 struct page *page,
34568c2ecf20Sopenharmony_ci				 struct writeback_control *wbc,
34578c2ecf20Sopenharmony_ci				 struct extent_page_data *epd,
34588c2ecf20Sopenharmony_ci				 loff_t i_size,
34598c2ecf20Sopenharmony_ci				 unsigned long nr_written,
34608c2ecf20Sopenharmony_ci				 int *nr_ret)
34618c2ecf20Sopenharmony_ci{
34628c2ecf20Sopenharmony_ci	struct extent_io_tree *tree = &inode->io_tree;
34638c2ecf20Sopenharmony_ci	u64 start = page_offset(page);
34648c2ecf20Sopenharmony_ci	u64 page_end = start + PAGE_SIZE - 1;
34658c2ecf20Sopenharmony_ci	u64 end;
34668c2ecf20Sopenharmony_ci	u64 cur = start;
34678c2ecf20Sopenharmony_ci	u64 extent_offset;
34688c2ecf20Sopenharmony_ci	u64 block_start;
34698c2ecf20Sopenharmony_ci	u64 iosize;
34708c2ecf20Sopenharmony_ci	struct extent_map *em;
34718c2ecf20Sopenharmony_ci	size_t pg_offset = 0;
34728c2ecf20Sopenharmony_ci	size_t blocksize;
34738c2ecf20Sopenharmony_ci	int ret = 0;
34748c2ecf20Sopenharmony_ci	int nr = 0;
34758c2ecf20Sopenharmony_ci	const unsigned int write_flags = wbc_to_write_flags(wbc);
34768c2ecf20Sopenharmony_ci	bool compressed;
34778c2ecf20Sopenharmony_ci
34788c2ecf20Sopenharmony_ci	ret = btrfs_writepage_cow_fixup(page, start, page_end);
34798c2ecf20Sopenharmony_ci	if (ret) {
34808c2ecf20Sopenharmony_ci		/* Fixup worker will requeue */
34818c2ecf20Sopenharmony_ci		redirty_page_for_writepage(wbc, page);
34828c2ecf20Sopenharmony_ci		update_nr_written(wbc, nr_written);
34838c2ecf20Sopenharmony_ci		unlock_page(page);
34848c2ecf20Sopenharmony_ci		return 1;
34858c2ecf20Sopenharmony_ci	}
34868c2ecf20Sopenharmony_ci
34878c2ecf20Sopenharmony_ci	/*
34888c2ecf20Sopenharmony_ci	 * we don't want to touch the inode after unlocking the page,
34898c2ecf20Sopenharmony_ci	 * so we update the mapping writeback index now
34908c2ecf20Sopenharmony_ci	 */
34918c2ecf20Sopenharmony_ci	update_nr_written(wbc, nr_written + 1);
34928c2ecf20Sopenharmony_ci
34938c2ecf20Sopenharmony_ci	end = page_end;
34948c2ecf20Sopenharmony_ci	blocksize = inode->vfs_inode.i_sb->s_blocksize;
34958c2ecf20Sopenharmony_ci
34968c2ecf20Sopenharmony_ci	while (cur <= end) {
34978c2ecf20Sopenharmony_ci		u64 em_end;
34988c2ecf20Sopenharmony_ci		u64 offset;
34998c2ecf20Sopenharmony_ci
35008c2ecf20Sopenharmony_ci		if (cur >= i_size) {
35018c2ecf20Sopenharmony_ci			btrfs_writepage_endio_finish_ordered(page, cur,
35028c2ecf20Sopenharmony_ci							     page_end, 1);
35038c2ecf20Sopenharmony_ci			break;
35048c2ecf20Sopenharmony_ci		}
35058c2ecf20Sopenharmony_ci		em = btrfs_get_extent(inode, NULL, 0, cur, end - cur + 1);
35068c2ecf20Sopenharmony_ci		if (IS_ERR_OR_NULL(em)) {
35078c2ecf20Sopenharmony_ci			SetPageError(page);
35088c2ecf20Sopenharmony_ci			ret = PTR_ERR_OR_ZERO(em);
35098c2ecf20Sopenharmony_ci			break;
35108c2ecf20Sopenharmony_ci		}
35118c2ecf20Sopenharmony_ci
35128c2ecf20Sopenharmony_ci		extent_offset = cur - em->start;
35138c2ecf20Sopenharmony_ci		em_end = extent_map_end(em);
35148c2ecf20Sopenharmony_ci		BUG_ON(em_end <= cur);
35158c2ecf20Sopenharmony_ci		BUG_ON(end < cur);
35168c2ecf20Sopenharmony_ci		iosize = min(em_end - cur, end - cur + 1);
35178c2ecf20Sopenharmony_ci		iosize = ALIGN(iosize, blocksize);
35188c2ecf20Sopenharmony_ci		offset = em->block_start + extent_offset;
35198c2ecf20Sopenharmony_ci		block_start = em->block_start;
35208c2ecf20Sopenharmony_ci		compressed = test_bit(EXTENT_FLAG_COMPRESSED, &em->flags);
35218c2ecf20Sopenharmony_ci		free_extent_map(em);
35228c2ecf20Sopenharmony_ci		em = NULL;
35238c2ecf20Sopenharmony_ci
35248c2ecf20Sopenharmony_ci		/*
35258c2ecf20Sopenharmony_ci		 * compressed and inline extents are written through other
35268c2ecf20Sopenharmony_ci		 * paths in the FS
35278c2ecf20Sopenharmony_ci		 */
35288c2ecf20Sopenharmony_ci		if (compressed || block_start == EXTENT_MAP_HOLE ||
35298c2ecf20Sopenharmony_ci		    block_start == EXTENT_MAP_INLINE) {
35308c2ecf20Sopenharmony_ci			if (compressed)
35318c2ecf20Sopenharmony_ci				nr++;
35328c2ecf20Sopenharmony_ci			else
35338c2ecf20Sopenharmony_ci				btrfs_writepage_endio_finish_ordered(page, cur,
35348c2ecf20Sopenharmony_ci							cur + iosize - 1, 1);
35358c2ecf20Sopenharmony_ci			cur += iosize;
35368c2ecf20Sopenharmony_ci			pg_offset += iosize;
35378c2ecf20Sopenharmony_ci			continue;
35388c2ecf20Sopenharmony_ci		}
35398c2ecf20Sopenharmony_ci
35408c2ecf20Sopenharmony_ci		btrfs_set_range_writeback(tree, cur, cur + iosize - 1);
35418c2ecf20Sopenharmony_ci		if (!PageWriteback(page)) {
35428c2ecf20Sopenharmony_ci			btrfs_err(inode->root->fs_info,
35438c2ecf20Sopenharmony_ci				   "page %lu not writeback, cur %llu end %llu",
35448c2ecf20Sopenharmony_ci			       page->index, cur, end);
35458c2ecf20Sopenharmony_ci		}
35468c2ecf20Sopenharmony_ci
35478c2ecf20Sopenharmony_ci		ret = submit_extent_page(REQ_OP_WRITE | write_flags, wbc,
35488c2ecf20Sopenharmony_ci					 page, offset, iosize, pg_offset,
35498c2ecf20Sopenharmony_ci					 &epd->bio,
35508c2ecf20Sopenharmony_ci					 end_bio_extent_writepage,
35518c2ecf20Sopenharmony_ci					 0, 0, 0, false);
35528c2ecf20Sopenharmony_ci		if (ret) {
35538c2ecf20Sopenharmony_ci			SetPageError(page);
35548c2ecf20Sopenharmony_ci			if (PageWriteback(page))
35558c2ecf20Sopenharmony_ci				end_page_writeback(page);
35568c2ecf20Sopenharmony_ci		}
35578c2ecf20Sopenharmony_ci
35588c2ecf20Sopenharmony_ci		cur = cur + iosize;
35598c2ecf20Sopenharmony_ci		pg_offset += iosize;
35608c2ecf20Sopenharmony_ci		nr++;
35618c2ecf20Sopenharmony_ci	}
35628c2ecf20Sopenharmony_ci	*nr_ret = nr;
35638c2ecf20Sopenharmony_ci	return ret;
35648c2ecf20Sopenharmony_ci}
35658c2ecf20Sopenharmony_ci
35668c2ecf20Sopenharmony_ci/*
35678c2ecf20Sopenharmony_ci * the writepage semantics are similar to regular writepage.  extent
35688c2ecf20Sopenharmony_ci * records are inserted to lock ranges in the tree, and as dirty areas
35698c2ecf20Sopenharmony_ci * are found, they are marked writeback.  Then the lock bits are removed
35708c2ecf20Sopenharmony_ci * and the end_io handler clears the writeback ranges
35718c2ecf20Sopenharmony_ci *
35728c2ecf20Sopenharmony_ci * Return 0 if everything goes well.
35738c2ecf20Sopenharmony_ci * Return <0 for error.
35748c2ecf20Sopenharmony_ci */
35758c2ecf20Sopenharmony_cistatic int __extent_writepage(struct page *page, struct writeback_control *wbc,
35768c2ecf20Sopenharmony_ci			      struct extent_page_data *epd)
35778c2ecf20Sopenharmony_ci{
35788c2ecf20Sopenharmony_ci	struct inode *inode = page->mapping->host;
35798c2ecf20Sopenharmony_ci	u64 start = page_offset(page);
35808c2ecf20Sopenharmony_ci	u64 page_end = start + PAGE_SIZE - 1;
35818c2ecf20Sopenharmony_ci	int ret;
35828c2ecf20Sopenharmony_ci	int nr = 0;
35838c2ecf20Sopenharmony_ci	size_t pg_offset;
35848c2ecf20Sopenharmony_ci	loff_t i_size = i_size_read(inode);
35858c2ecf20Sopenharmony_ci	unsigned long end_index = i_size >> PAGE_SHIFT;
35868c2ecf20Sopenharmony_ci	unsigned long nr_written = 0;
35878c2ecf20Sopenharmony_ci
35888c2ecf20Sopenharmony_ci	trace___extent_writepage(page, inode, wbc);
35898c2ecf20Sopenharmony_ci
35908c2ecf20Sopenharmony_ci	WARN_ON(!PageLocked(page));
35918c2ecf20Sopenharmony_ci
35928c2ecf20Sopenharmony_ci	ClearPageError(page);
35938c2ecf20Sopenharmony_ci
35948c2ecf20Sopenharmony_ci	pg_offset = offset_in_page(i_size);
35958c2ecf20Sopenharmony_ci	if (page->index > end_index ||
35968c2ecf20Sopenharmony_ci	   (page->index == end_index && !pg_offset)) {
35978c2ecf20Sopenharmony_ci		page->mapping->a_ops->invalidatepage(page, 0, PAGE_SIZE);
35988c2ecf20Sopenharmony_ci		unlock_page(page);
35998c2ecf20Sopenharmony_ci		return 0;
36008c2ecf20Sopenharmony_ci	}
36018c2ecf20Sopenharmony_ci
36028c2ecf20Sopenharmony_ci	if (page->index == end_index) {
36038c2ecf20Sopenharmony_ci		char *userpage;
36048c2ecf20Sopenharmony_ci
36058c2ecf20Sopenharmony_ci		userpage = kmap_atomic(page);
36068c2ecf20Sopenharmony_ci		memset(userpage + pg_offset, 0,
36078c2ecf20Sopenharmony_ci		       PAGE_SIZE - pg_offset);
36088c2ecf20Sopenharmony_ci		kunmap_atomic(userpage);
36098c2ecf20Sopenharmony_ci		flush_dcache_page(page);
36108c2ecf20Sopenharmony_ci	}
36118c2ecf20Sopenharmony_ci
36128c2ecf20Sopenharmony_ci	set_page_extent_mapped(page);
36138c2ecf20Sopenharmony_ci
36148c2ecf20Sopenharmony_ci	if (!epd->extent_locked) {
36158c2ecf20Sopenharmony_ci		ret = writepage_delalloc(BTRFS_I(inode), page, wbc, start,
36168c2ecf20Sopenharmony_ci					 &nr_written);
36178c2ecf20Sopenharmony_ci		if (ret == 1)
36188c2ecf20Sopenharmony_ci			return 0;
36198c2ecf20Sopenharmony_ci		if (ret)
36208c2ecf20Sopenharmony_ci			goto done;
36218c2ecf20Sopenharmony_ci	}
36228c2ecf20Sopenharmony_ci
36238c2ecf20Sopenharmony_ci	ret = __extent_writepage_io(BTRFS_I(inode), page, wbc, epd, i_size,
36248c2ecf20Sopenharmony_ci				    nr_written, &nr);
36258c2ecf20Sopenharmony_ci	if (ret == 1)
36268c2ecf20Sopenharmony_ci		return 0;
36278c2ecf20Sopenharmony_ci
36288c2ecf20Sopenharmony_cidone:
36298c2ecf20Sopenharmony_ci	if (nr == 0) {
36308c2ecf20Sopenharmony_ci		/* make sure the mapping tag for page dirty gets cleared */
36318c2ecf20Sopenharmony_ci		set_page_writeback(page);
36328c2ecf20Sopenharmony_ci		end_page_writeback(page);
36338c2ecf20Sopenharmony_ci	}
36348c2ecf20Sopenharmony_ci	if (PageError(page)) {
36358c2ecf20Sopenharmony_ci		ret = ret < 0 ? ret : -EIO;
36368c2ecf20Sopenharmony_ci		end_extent_writepage(page, ret, start, page_end);
36378c2ecf20Sopenharmony_ci	}
36388c2ecf20Sopenharmony_ci	unlock_page(page);
36398c2ecf20Sopenharmony_ci	ASSERT(ret <= 0);
36408c2ecf20Sopenharmony_ci	return ret;
36418c2ecf20Sopenharmony_ci}
36428c2ecf20Sopenharmony_ci
36438c2ecf20Sopenharmony_civoid wait_on_extent_buffer_writeback(struct extent_buffer *eb)
36448c2ecf20Sopenharmony_ci{
36458c2ecf20Sopenharmony_ci	wait_on_bit_io(&eb->bflags, EXTENT_BUFFER_WRITEBACK,
36468c2ecf20Sopenharmony_ci		       TASK_UNINTERRUPTIBLE);
36478c2ecf20Sopenharmony_ci}
36488c2ecf20Sopenharmony_ci
36498c2ecf20Sopenharmony_cistatic void end_extent_buffer_writeback(struct extent_buffer *eb)
36508c2ecf20Sopenharmony_ci{
36518c2ecf20Sopenharmony_ci	clear_bit(EXTENT_BUFFER_WRITEBACK, &eb->bflags);
36528c2ecf20Sopenharmony_ci	smp_mb__after_atomic();
36538c2ecf20Sopenharmony_ci	wake_up_bit(&eb->bflags, EXTENT_BUFFER_WRITEBACK);
36548c2ecf20Sopenharmony_ci}
36558c2ecf20Sopenharmony_ci
36568c2ecf20Sopenharmony_ci/*
36578c2ecf20Sopenharmony_ci * Lock eb pages and flush the bio if we can't the locks
36588c2ecf20Sopenharmony_ci *
36598c2ecf20Sopenharmony_ci * Return  0 if nothing went wrong
36608c2ecf20Sopenharmony_ci * Return >0 is same as 0, except bio is not submitted
36618c2ecf20Sopenharmony_ci * Return <0 if something went wrong, no page is locked
36628c2ecf20Sopenharmony_ci */
36638c2ecf20Sopenharmony_cistatic noinline_for_stack int lock_extent_buffer_for_io(struct extent_buffer *eb,
36648c2ecf20Sopenharmony_ci			  struct extent_page_data *epd)
36658c2ecf20Sopenharmony_ci{
36668c2ecf20Sopenharmony_ci	struct btrfs_fs_info *fs_info = eb->fs_info;
36678c2ecf20Sopenharmony_ci	int i, num_pages, failed_page_nr;
36688c2ecf20Sopenharmony_ci	int flush = 0;
36698c2ecf20Sopenharmony_ci	int ret = 0;
36708c2ecf20Sopenharmony_ci
36718c2ecf20Sopenharmony_ci	if (!btrfs_try_tree_write_lock(eb)) {
36728c2ecf20Sopenharmony_ci		ret = flush_write_bio(epd);
36738c2ecf20Sopenharmony_ci		if (ret < 0)
36748c2ecf20Sopenharmony_ci			return ret;
36758c2ecf20Sopenharmony_ci		flush = 1;
36768c2ecf20Sopenharmony_ci		btrfs_tree_lock(eb);
36778c2ecf20Sopenharmony_ci	}
36788c2ecf20Sopenharmony_ci
36798c2ecf20Sopenharmony_ci	if (test_bit(EXTENT_BUFFER_WRITEBACK, &eb->bflags)) {
36808c2ecf20Sopenharmony_ci		btrfs_tree_unlock(eb);
36818c2ecf20Sopenharmony_ci		if (!epd->sync_io)
36828c2ecf20Sopenharmony_ci			return 0;
36838c2ecf20Sopenharmony_ci		if (!flush) {
36848c2ecf20Sopenharmony_ci			ret = flush_write_bio(epd);
36858c2ecf20Sopenharmony_ci			if (ret < 0)
36868c2ecf20Sopenharmony_ci				return ret;
36878c2ecf20Sopenharmony_ci			flush = 1;
36888c2ecf20Sopenharmony_ci		}
36898c2ecf20Sopenharmony_ci		while (1) {
36908c2ecf20Sopenharmony_ci			wait_on_extent_buffer_writeback(eb);
36918c2ecf20Sopenharmony_ci			btrfs_tree_lock(eb);
36928c2ecf20Sopenharmony_ci			if (!test_bit(EXTENT_BUFFER_WRITEBACK, &eb->bflags))
36938c2ecf20Sopenharmony_ci				break;
36948c2ecf20Sopenharmony_ci			btrfs_tree_unlock(eb);
36958c2ecf20Sopenharmony_ci		}
36968c2ecf20Sopenharmony_ci	}
36978c2ecf20Sopenharmony_ci
36988c2ecf20Sopenharmony_ci	/*
36998c2ecf20Sopenharmony_ci	 * We need to do this to prevent races in people who check if the eb is
37008c2ecf20Sopenharmony_ci	 * under IO since we can end up having no IO bits set for a short period
37018c2ecf20Sopenharmony_ci	 * of time.
37028c2ecf20Sopenharmony_ci	 */
37038c2ecf20Sopenharmony_ci	spin_lock(&eb->refs_lock);
37048c2ecf20Sopenharmony_ci	if (test_and_clear_bit(EXTENT_BUFFER_DIRTY, &eb->bflags)) {
37058c2ecf20Sopenharmony_ci		set_bit(EXTENT_BUFFER_WRITEBACK, &eb->bflags);
37068c2ecf20Sopenharmony_ci		spin_unlock(&eb->refs_lock);
37078c2ecf20Sopenharmony_ci		btrfs_set_header_flag(eb, BTRFS_HEADER_FLAG_WRITTEN);
37088c2ecf20Sopenharmony_ci		percpu_counter_add_batch(&fs_info->dirty_metadata_bytes,
37098c2ecf20Sopenharmony_ci					 -eb->len,
37108c2ecf20Sopenharmony_ci					 fs_info->dirty_metadata_batch);
37118c2ecf20Sopenharmony_ci		ret = 1;
37128c2ecf20Sopenharmony_ci	} else {
37138c2ecf20Sopenharmony_ci		spin_unlock(&eb->refs_lock);
37148c2ecf20Sopenharmony_ci	}
37158c2ecf20Sopenharmony_ci
37168c2ecf20Sopenharmony_ci	btrfs_tree_unlock(eb);
37178c2ecf20Sopenharmony_ci
37188c2ecf20Sopenharmony_ci	if (!ret)
37198c2ecf20Sopenharmony_ci		return ret;
37208c2ecf20Sopenharmony_ci
37218c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
37228c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
37238c2ecf20Sopenharmony_ci		struct page *p = eb->pages[i];
37248c2ecf20Sopenharmony_ci
37258c2ecf20Sopenharmony_ci		if (!trylock_page(p)) {
37268c2ecf20Sopenharmony_ci			if (!flush) {
37278c2ecf20Sopenharmony_ci				int err;
37288c2ecf20Sopenharmony_ci
37298c2ecf20Sopenharmony_ci				err = flush_write_bio(epd);
37308c2ecf20Sopenharmony_ci				if (err < 0) {
37318c2ecf20Sopenharmony_ci					ret = err;
37328c2ecf20Sopenharmony_ci					failed_page_nr = i;
37338c2ecf20Sopenharmony_ci					goto err_unlock;
37348c2ecf20Sopenharmony_ci				}
37358c2ecf20Sopenharmony_ci				flush = 1;
37368c2ecf20Sopenharmony_ci			}
37378c2ecf20Sopenharmony_ci			lock_page(p);
37388c2ecf20Sopenharmony_ci		}
37398c2ecf20Sopenharmony_ci	}
37408c2ecf20Sopenharmony_ci
37418c2ecf20Sopenharmony_ci	return ret;
37428c2ecf20Sopenharmony_cierr_unlock:
37438c2ecf20Sopenharmony_ci	/* Unlock already locked pages */
37448c2ecf20Sopenharmony_ci	for (i = 0; i < failed_page_nr; i++)
37458c2ecf20Sopenharmony_ci		unlock_page(eb->pages[i]);
37468c2ecf20Sopenharmony_ci	/*
37478c2ecf20Sopenharmony_ci	 * Clear EXTENT_BUFFER_WRITEBACK and wake up anyone waiting on it.
37488c2ecf20Sopenharmony_ci	 * Also set back EXTENT_BUFFER_DIRTY so future attempts to this eb can
37498c2ecf20Sopenharmony_ci	 * be made and undo everything done before.
37508c2ecf20Sopenharmony_ci	 */
37518c2ecf20Sopenharmony_ci	btrfs_tree_lock(eb);
37528c2ecf20Sopenharmony_ci	spin_lock(&eb->refs_lock);
37538c2ecf20Sopenharmony_ci	set_bit(EXTENT_BUFFER_DIRTY, &eb->bflags);
37548c2ecf20Sopenharmony_ci	end_extent_buffer_writeback(eb);
37558c2ecf20Sopenharmony_ci	spin_unlock(&eb->refs_lock);
37568c2ecf20Sopenharmony_ci	percpu_counter_add_batch(&fs_info->dirty_metadata_bytes, eb->len,
37578c2ecf20Sopenharmony_ci				 fs_info->dirty_metadata_batch);
37588c2ecf20Sopenharmony_ci	btrfs_clear_header_flag(eb, BTRFS_HEADER_FLAG_WRITTEN);
37598c2ecf20Sopenharmony_ci	btrfs_tree_unlock(eb);
37608c2ecf20Sopenharmony_ci	return ret;
37618c2ecf20Sopenharmony_ci}
37628c2ecf20Sopenharmony_ci
37638c2ecf20Sopenharmony_cistatic void set_btree_ioerr(struct page *page)
37648c2ecf20Sopenharmony_ci{
37658c2ecf20Sopenharmony_ci	struct extent_buffer *eb = (struct extent_buffer *)page->private;
37668c2ecf20Sopenharmony_ci	struct btrfs_fs_info *fs_info;
37678c2ecf20Sopenharmony_ci
37688c2ecf20Sopenharmony_ci	SetPageError(page);
37698c2ecf20Sopenharmony_ci	if (test_and_set_bit(EXTENT_BUFFER_WRITE_ERR, &eb->bflags))
37708c2ecf20Sopenharmony_ci		return;
37718c2ecf20Sopenharmony_ci
37728c2ecf20Sopenharmony_ci	/*
37738c2ecf20Sopenharmony_ci	 * A read may stumble upon this buffer later, make sure that it gets an
37748c2ecf20Sopenharmony_ci	 * error and knows there was an error.
37758c2ecf20Sopenharmony_ci	 */
37768c2ecf20Sopenharmony_ci	clear_bit(EXTENT_BUFFER_UPTODATE, &eb->bflags);
37778c2ecf20Sopenharmony_ci
37788c2ecf20Sopenharmony_ci	/*
37798c2ecf20Sopenharmony_ci	 * If we error out, we should add back the dirty_metadata_bytes
37808c2ecf20Sopenharmony_ci	 * to make it consistent.
37818c2ecf20Sopenharmony_ci	 */
37828c2ecf20Sopenharmony_ci	fs_info = eb->fs_info;
37838c2ecf20Sopenharmony_ci	percpu_counter_add_batch(&fs_info->dirty_metadata_bytes,
37848c2ecf20Sopenharmony_ci				 eb->len, fs_info->dirty_metadata_batch);
37858c2ecf20Sopenharmony_ci
37868c2ecf20Sopenharmony_ci	/*
37878c2ecf20Sopenharmony_ci	 * If writeback for a btree extent that doesn't belong to a log tree
37888c2ecf20Sopenharmony_ci	 * failed, increment the counter transaction->eb_write_errors.
37898c2ecf20Sopenharmony_ci	 * We do this because while the transaction is running and before it's
37908c2ecf20Sopenharmony_ci	 * committing (when we call filemap_fdata[write|wait]_range against
37918c2ecf20Sopenharmony_ci	 * the btree inode), we might have
37928c2ecf20Sopenharmony_ci	 * btree_inode->i_mapping->a_ops->writepages() called by the VM - if it
37938c2ecf20Sopenharmony_ci	 * returns an error or an error happens during writeback, when we're
37948c2ecf20Sopenharmony_ci	 * committing the transaction we wouldn't know about it, since the pages
37958c2ecf20Sopenharmony_ci	 * can be no longer dirty nor marked anymore for writeback (if a
37968c2ecf20Sopenharmony_ci	 * subsequent modification to the extent buffer didn't happen before the
37978c2ecf20Sopenharmony_ci	 * transaction commit), which makes filemap_fdata[write|wait]_range not
37988c2ecf20Sopenharmony_ci	 * able to find the pages tagged with SetPageError at transaction
37998c2ecf20Sopenharmony_ci	 * commit time. So if this happens we must abort the transaction,
38008c2ecf20Sopenharmony_ci	 * otherwise we commit a super block with btree roots that point to
38018c2ecf20Sopenharmony_ci	 * btree nodes/leafs whose content on disk is invalid - either garbage
38028c2ecf20Sopenharmony_ci	 * or the content of some node/leaf from a past generation that got
38038c2ecf20Sopenharmony_ci	 * cowed or deleted and is no longer valid.
38048c2ecf20Sopenharmony_ci	 *
38058c2ecf20Sopenharmony_ci	 * Note: setting AS_EIO/AS_ENOSPC in the btree inode's i_mapping would
38068c2ecf20Sopenharmony_ci	 * not be enough - we need to distinguish between log tree extents vs
38078c2ecf20Sopenharmony_ci	 * non-log tree extents, and the next filemap_fdatawait_range() call
38088c2ecf20Sopenharmony_ci	 * will catch and clear such errors in the mapping - and that call might
38098c2ecf20Sopenharmony_ci	 * be from a log sync and not from a transaction commit. Also, checking
38108c2ecf20Sopenharmony_ci	 * for the eb flag EXTENT_BUFFER_WRITE_ERR at transaction commit time is
38118c2ecf20Sopenharmony_ci	 * not done and would not be reliable - the eb might have been released
38128c2ecf20Sopenharmony_ci	 * from memory and reading it back again means that flag would not be
38138c2ecf20Sopenharmony_ci	 * set (since it's a runtime flag, not persisted on disk).
38148c2ecf20Sopenharmony_ci	 *
38158c2ecf20Sopenharmony_ci	 * Using the flags below in the btree inode also makes us achieve the
38168c2ecf20Sopenharmony_ci	 * goal of AS_EIO/AS_ENOSPC when writepages() returns success, started
38178c2ecf20Sopenharmony_ci	 * writeback for all dirty pages and before filemap_fdatawait_range()
38188c2ecf20Sopenharmony_ci	 * is called, the writeback for all dirty pages had already finished
38198c2ecf20Sopenharmony_ci	 * with errors - because we were not using AS_EIO/AS_ENOSPC,
38208c2ecf20Sopenharmony_ci	 * filemap_fdatawait_range() would return success, as it could not know
38218c2ecf20Sopenharmony_ci	 * that writeback errors happened (the pages were no longer tagged for
38228c2ecf20Sopenharmony_ci	 * writeback).
38238c2ecf20Sopenharmony_ci	 */
38248c2ecf20Sopenharmony_ci	switch (eb->log_index) {
38258c2ecf20Sopenharmony_ci	case -1:
38268c2ecf20Sopenharmony_ci		set_bit(BTRFS_FS_BTREE_ERR, &eb->fs_info->flags);
38278c2ecf20Sopenharmony_ci		break;
38288c2ecf20Sopenharmony_ci	case 0:
38298c2ecf20Sopenharmony_ci		set_bit(BTRFS_FS_LOG1_ERR, &eb->fs_info->flags);
38308c2ecf20Sopenharmony_ci		break;
38318c2ecf20Sopenharmony_ci	case 1:
38328c2ecf20Sopenharmony_ci		set_bit(BTRFS_FS_LOG2_ERR, &eb->fs_info->flags);
38338c2ecf20Sopenharmony_ci		break;
38348c2ecf20Sopenharmony_ci	default:
38358c2ecf20Sopenharmony_ci		BUG(); /* unexpected, logic error */
38368c2ecf20Sopenharmony_ci	}
38378c2ecf20Sopenharmony_ci}
38388c2ecf20Sopenharmony_ci
38398c2ecf20Sopenharmony_cistatic void end_bio_extent_buffer_writepage(struct bio *bio)
38408c2ecf20Sopenharmony_ci{
38418c2ecf20Sopenharmony_ci	struct bio_vec *bvec;
38428c2ecf20Sopenharmony_ci	struct extent_buffer *eb;
38438c2ecf20Sopenharmony_ci	int done;
38448c2ecf20Sopenharmony_ci	struct bvec_iter_all iter_all;
38458c2ecf20Sopenharmony_ci
38468c2ecf20Sopenharmony_ci	ASSERT(!bio_flagged(bio, BIO_CLONED));
38478c2ecf20Sopenharmony_ci	bio_for_each_segment_all(bvec, bio, iter_all) {
38488c2ecf20Sopenharmony_ci		struct page *page = bvec->bv_page;
38498c2ecf20Sopenharmony_ci
38508c2ecf20Sopenharmony_ci		eb = (struct extent_buffer *)page->private;
38518c2ecf20Sopenharmony_ci		BUG_ON(!eb);
38528c2ecf20Sopenharmony_ci		done = atomic_dec_and_test(&eb->io_pages);
38538c2ecf20Sopenharmony_ci
38548c2ecf20Sopenharmony_ci		if (bio->bi_status ||
38558c2ecf20Sopenharmony_ci		    test_bit(EXTENT_BUFFER_WRITE_ERR, &eb->bflags)) {
38568c2ecf20Sopenharmony_ci			ClearPageUptodate(page);
38578c2ecf20Sopenharmony_ci			set_btree_ioerr(page);
38588c2ecf20Sopenharmony_ci		}
38598c2ecf20Sopenharmony_ci
38608c2ecf20Sopenharmony_ci		end_page_writeback(page);
38618c2ecf20Sopenharmony_ci
38628c2ecf20Sopenharmony_ci		if (!done)
38638c2ecf20Sopenharmony_ci			continue;
38648c2ecf20Sopenharmony_ci
38658c2ecf20Sopenharmony_ci		end_extent_buffer_writeback(eb);
38668c2ecf20Sopenharmony_ci	}
38678c2ecf20Sopenharmony_ci
38688c2ecf20Sopenharmony_ci	bio_put(bio);
38698c2ecf20Sopenharmony_ci}
38708c2ecf20Sopenharmony_ci
38718c2ecf20Sopenharmony_cistatic noinline_for_stack int write_one_eb(struct extent_buffer *eb,
38728c2ecf20Sopenharmony_ci			struct writeback_control *wbc,
38738c2ecf20Sopenharmony_ci			struct extent_page_data *epd)
38748c2ecf20Sopenharmony_ci{
38758c2ecf20Sopenharmony_ci	u64 offset = eb->start;
38768c2ecf20Sopenharmony_ci	u32 nritems;
38778c2ecf20Sopenharmony_ci	int i, num_pages;
38788c2ecf20Sopenharmony_ci	unsigned long start, end;
38798c2ecf20Sopenharmony_ci	unsigned int write_flags = wbc_to_write_flags(wbc) | REQ_META;
38808c2ecf20Sopenharmony_ci	int ret = 0;
38818c2ecf20Sopenharmony_ci
38828c2ecf20Sopenharmony_ci	clear_bit(EXTENT_BUFFER_WRITE_ERR, &eb->bflags);
38838c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
38848c2ecf20Sopenharmony_ci	atomic_set(&eb->io_pages, num_pages);
38858c2ecf20Sopenharmony_ci
38868c2ecf20Sopenharmony_ci	/* set btree blocks beyond nritems with 0 to avoid stale content. */
38878c2ecf20Sopenharmony_ci	nritems = btrfs_header_nritems(eb);
38888c2ecf20Sopenharmony_ci	if (btrfs_header_level(eb) > 0) {
38898c2ecf20Sopenharmony_ci		end = btrfs_node_key_ptr_offset(nritems);
38908c2ecf20Sopenharmony_ci
38918c2ecf20Sopenharmony_ci		memzero_extent_buffer(eb, end, eb->len - end);
38928c2ecf20Sopenharmony_ci	} else {
38938c2ecf20Sopenharmony_ci		/*
38948c2ecf20Sopenharmony_ci		 * leaf:
38958c2ecf20Sopenharmony_ci		 * header 0 1 2 .. N ... data_N .. data_2 data_1 data_0
38968c2ecf20Sopenharmony_ci		 */
38978c2ecf20Sopenharmony_ci		start = btrfs_item_nr_offset(nritems);
38988c2ecf20Sopenharmony_ci		end = BTRFS_LEAF_DATA_OFFSET + leaf_data_end(eb);
38998c2ecf20Sopenharmony_ci		memzero_extent_buffer(eb, start, end - start);
39008c2ecf20Sopenharmony_ci	}
39018c2ecf20Sopenharmony_ci
39028c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
39038c2ecf20Sopenharmony_ci		struct page *p = eb->pages[i];
39048c2ecf20Sopenharmony_ci
39058c2ecf20Sopenharmony_ci		clear_page_dirty_for_io(p);
39068c2ecf20Sopenharmony_ci		set_page_writeback(p);
39078c2ecf20Sopenharmony_ci		ret = submit_extent_page(REQ_OP_WRITE | write_flags, wbc,
39088c2ecf20Sopenharmony_ci					 p, offset, PAGE_SIZE, 0,
39098c2ecf20Sopenharmony_ci					 &epd->bio,
39108c2ecf20Sopenharmony_ci					 end_bio_extent_buffer_writepage,
39118c2ecf20Sopenharmony_ci					 0, 0, 0, false);
39128c2ecf20Sopenharmony_ci		if (ret) {
39138c2ecf20Sopenharmony_ci			set_btree_ioerr(p);
39148c2ecf20Sopenharmony_ci			if (PageWriteback(p))
39158c2ecf20Sopenharmony_ci				end_page_writeback(p);
39168c2ecf20Sopenharmony_ci			if (atomic_sub_and_test(num_pages - i, &eb->io_pages))
39178c2ecf20Sopenharmony_ci				end_extent_buffer_writeback(eb);
39188c2ecf20Sopenharmony_ci			ret = -EIO;
39198c2ecf20Sopenharmony_ci			break;
39208c2ecf20Sopenharmony_ci		}
39218c2ecf20Sopenharmony_ci		offset += PAGE_SIZE;
39228c2ecf20Sopenharmony_ci		update_nr_written(wbc, 1);
39238c2ecf20Sopenharmony_ci		unlock_page(p);
39248c2ecf20Sopenharmony_ci	}
39258c2ecf20Sopenharmony_ci
39268c2ecf20Sopenharmony_ci	if (unlikely(ret)) {
39278c2ecf20Sopenharmony_ci		for (; i < num_pages; i++) {
39288c2ecf20Sopenharmony_ci			struct page *p = eb->pages[i];
39298c2ecf20Sopenharmony_ci			clear_page_dirty_for_io(p);
39308c2ecf20Sopenharmony_ci			unlock_page(p);
39318c2ecf20Sopenharmony_ci		}
39328c2ecf20Sopenharmony_ci	}
39338c2ecf20Sopenharmony_ci
39348c2ecf20Sopenharmony_ci	return ret;
39358c2ecf20Sopenharmony_ci}
39368c2ecf20Sopenharmony_ci
39378c2ecf20Sopenharmony_ciint btree_write_cache_pages(struct address_space *mapping,
39388c2ecf20Sopenharmony_ci				   struct writeback_control *wbc)
39398c2ecf20Sopenharmony_ci{
39408c2ecf20Sopenharmony_ci	struct extent_buffer *eb, *prev_eb = NULL;
39418c2ecf20Sopenharmony_ci	struct extent_page_data epd = {
39428c2ecf20Sopenharmony_ci		.bio = NULL,
39438c2ecf20Sopenharmony_ci		.extent_locked = 0,
39448c2ecf20Sopenharmony_ci		.sync_io = wbc->sync_mode == WB_SYNC_ALL,
39458c2ecf20Sopenharmony_ci	};
39468c2ecf20Sopenharmony_ci	struct btrfs_fs_info *fs_info = BTRFS_I(mapping->host)->root->fs_info;
39478c2ecf20Sopenharmony_ci	int ret = 0;
39488c2ecf20Sopenharmony_ci	int done = 0;
39498c2ecf20Sopenharmony_ci	int nr_to_write_done = 0;
39508c2ecf20Sopenharmony_ci	struct pagevec pvec;
39518c2ecf20Sopenharmony_ci	int nr_pages;
39528c2ecf20Sopenharmony_ci	pgoff_t index;
39538c2ecf20Sopenharmony_ci	pgoff_t end;		/* Inclusive */
39548c2ecf20Sopenharmony_ci	int scanned = 0;
39558c2ecf20Sopenharmony_ci	xa_mark_t tag;
39568c2ecf20Sopenharmony_ci
39578c2ecf20Sopenharmony_ci	pagevec_init(&pvec);
39588c2ecf20Sopenharmony_ci	if (wbc->range_cyclic) {
39598c2ecf20Sopenharmony_ci		index = mapping->writeback_index; /* Start from prev offset */
39608c2ecf20Sopenharmony_ci		end = -1;
39618c2ecf20Sopenharmony_ci		/*
39628c2ecf20Sopenharmony_ci		 * Start from the beginning does not need to cycle over the
39638c2ecf20Sopenharmony_ci		 * range, mark it as scanned.
39648c2ecf20Sopenharmony_ci		 */
39658c2ecf20Sopenharmony_ci		scanned = (index == 0);
39668c2ecf20Sopenharmony_ci	} else {
39678c2ecf20Sopenharmony_ci		index = wbc->range_start >> PAGE_SHIFT;
39688c2ecf20Sopenharmony_ci		end = wbc->range_end >> PAGE_SHIFT;
39698c2ecf20Sopenharmony_ci		scanned = 1;
39708c2ecf20Sopenharmony_ci	}
39718c2ecf20Sopenharmony_ci	if (wbc->sync_mode == WB_SYNC_ALL)
39728c2ecf20Sopenharmony_ci		tag = PAGECACHE_TAG_TOWRITE;
39738c2ecf20Sopenharmony_ci	else
39748c2ecf20Sopenharmony_ci		tag = PAGECACHE_TAG_DIRTY;
39758c2ecf20Sopenharmony_ciretry:
39768c2ecf20Sopenharmony_ci	if (wbc->sync_mode == WB_SYNC_ALL)
39778c2ecf20Sopenharmony_ci		tag_pages_for_writeback(mapping, index, end);
39788c2ecf20Sopenharmony_ci	while (!done && !nr_to_write_done && (index <= end) &&
39798c2ecf20Sopenharmony_ci	       (nr_pages = pagevec_lookup_range_tag(&pvec, mapping, &index, end,
39808c2ecf20Sopenharmony_ci			tag))) {
39818c2ecf20Sopenharmony_ci		unsigned i;
39828c2ecf20Sopenharmony_ci
39838c2ecf20Sopenharmony_ci		for (i = 0; i < nr_pages; i++) {
39848c2ecf20Sopenharmony_ci			struct page *page = pvec.pages[i];
39858c2ecf20Sopenharmony_ci
39868c2ecf20Sopenharmony_ci			if (!PagePrivate(page))
39878c2ecf20Sopenharmony_ci				continue;
39888c2ecf20Sopenharmony_ci
39898c2ecf20Sopenharmony_ci			spin_lock(&mapping->private_lock);
39908c2ecf20Sopenharmony_ci			if (!PagePrivate(page)) {
39918c2ecf20Sopenharmony_ci				spin_unlock(&mapping->private_lock);
39928c2ecf20Sopenharmony_ci				continue;
39938c2ecf20Sopenharmony_ci			}
39948c2ecf20Sopenharmony_ci
39958c2ecf20Sopenharmony_ci			eb = (struct extent_buffer *)page->private;
39968c2ecf20Sopenharmony_ci
39978c2ecf20Sopenharmony_ci			/*
39988c2ecf20Sopenharmony_ci			 * Shouldn't happen and normally this would be a BUG_ON
39998c2ecf20Sopenharmony_ci			 * but no sense in crashing the users box for something
40008c2ecf20Sopenharmony_ci			 * we can survive anyway.
40018c2ecf20Sopenharmony_ci			 */
40028c2ecf20Sopenharmony_ci			if (WARN_ON(!eb)) {
40038c2ecf20Sopenharmony_ci				spin_unlock(&mapping->private_lock);
40048c2ecf20Sopenharmony_ci				continue;
40058c2ecf20Sopenharmony_ci			}
40068c2ecf20Sopenharmony_ci
40078c2ecf20Sopenharmony_ci			if (eb == prev_eb) {
40088c2ecf20Sopenharmony_ci				spin_unlock(&mapping->private_lock);
40098c2ecf20Sopenharmony_ci				continue;
40108c2ecf20Sopenharmony_ci			}
40118c2ecf20Sopenharmony_ci
40128c2ecf20Sopenharmony_ci			ret = atomic_inc_not_zero(&eb->refs);
40138c2ecf20Sopenharmony_ci			spin_unlock(&mapping->private_lock);
40148c2ecf20Sopenharmony_ci			if (!ret)
40158c2ecf20Sopenharmony_ci				continue;
40168c2ecf20Sopenharmony_ci
40178c2ecf20Sopenharmony_ci			prev_eb = eb;
40188c2ecf20Sopenharmony_ci			ret = lock_extent_buffer_for_io(eb, &epd);
40198c2ecf20Sopenharmony_ci			if (!ret) {
40208c2ecf20Sopenharmony_ci				free_extent_buffer(eb);
40218c2ecf20Sopenharmony_ci				continue;
40228c2ecf20Sopenharmony_ci			} else if (ret < 0) {
40238c2ecf20Sopenharmony_ci				done = 1;
40248c2ecf20Sopenharmony_ci				free_extent_buffer(eb);
40258c2ecf20Sopenharmony_ci				break;
40268c2ecf20Sopenharmony_ci			}
40278c2ecf20Sopenharmony_ci
40288c2ecf20Sopenharmony_ci			ret = write_one_eb(eb, wbc, &epd);
40298c2ecf20Sopenharmony_ci			if (ret) {
40308c2ecf20Sopenharmony_ci				done = 1;
40318c2ecf20Sopenharmony_ci				free_extent_buffer(eb);
40328c2ecf20Sopenharmony_ci				break;
40338c2ecf20Sopenharmony_ci			}
40348c2ecf20Sopenharmony_ci			free_extent_buffer(eb);
40358c2ecf20Sopenharmony_ci
40368c2ecf20Sopenharmony_ci			/*
40378c2ecf20Sopenharmony_ci			 * The filesystem may choose to bump up nr_to_write.
40388c2ecf20Sopenharmony_ci			 * We have to make sure to honor the new nr_to_write
40398c2ecf20Sopenharmony_ci			 * at any time.
40408c2ecf20Sopenharmony_ci			 */
40418c2ecf20Sopenharmony_ci			nr_to_write_done = (wbc->sync_mode == WB_SYNC_NONE &&
40428c2ecf20Sopenharmony_ci					    wbc->nr_to_write <= 0);
40438c2ecf20Sopenharmony_ci		}
40448c2ecf20Sopenharmony_ci		pagevec_release(&pvec);
40458c2ecf20Sopenharmony_ci		cond_resched();
40468c2ecf20Sopenharmony_ci	}
40478c2ecf20Sopenharmony_ci	if (!scanned && !done) {
40488c2ecf20Sopenharmony_ci		/*
40498c2ecf20Sopenharmony_ci		 * We hit the last page and there is more work to be done: wrap
40508c2ecf20Sopenharmony_ci		 * back to the start of the file
40518c2ecf20Sopenharmony_ci		 */
40528c2ecf20Sopenharmony_ci		scanned = 1;
40538c2ecf20Sopenharmony_ci		index = 0;
40548c2ecf20Sopenharmony_ci		goto retry;
40558c2ecf20Sopenharmony_ci	}
40568c2ecf20Sopenharmony_ci	ASSERT(ret <= 0);
40578c2ecf20Sopenharmony_ci	if (ret < 0) {
40588c2ecf20Sopenharmony_ci		end_write_bio(&epd, ret);
40598c2ecf20Sopenharmony_ci		return ret;
40608c2ecf20Sopenharmony_ci	}
40618c2ecf20Sopenharmony_ci	/*
40628c2ecf20Sopenharmony_ci	 * If something went wrong, don't allow any metadata write bio to be
40638c2ecf20Sopenharmony_ci	 * submitted.
40648c2ecf20Sopenharmony_ci	 *
40658c2ecf20Sopenharmony_ci	 * This would prevent use-after-free if we had dirty pages not
40668c2ecf20Sopenharmony_ci	 * cleaned up, which can still happen by fuzzed images.
40678c2ecf20Sopenharmony_ci	 *
40688c2ecf20Sopenharmony_ci	 * - Bad extent tree
40698c2ecf20Sopenharmony_ci	 *   Allowing existing tree block to be allocated for other trees.
40708c2ecf20Sopenharmony_ci	 *
40718c2ecf20Sopenharmony_ci	 * - Log tree operations
40728c2ecf20Sopenharmony_ci	 *   Exiting tree blocks get allocated to log tree, bumps its
40738c2ecf20Sopenharmony_ci	 *   generation, then get cleaned in tree re-balance.
40748c2ecf20Sopenharmony_ci	 *   Such tree block will not be written back, since it's clean,
40758c2ecf20Sopenharmony_ci	 *   thus no WRITTEN flag set.
40768c2ecf20Sopenharmony_ci	 *   And after log writes back, this tree block is not traced by
40778c2ecf20Sopenharmony_ci	 *   any dirty extent_io_tree.
40788c2ecf20Sopenharmony_ci	 *
40798c2ecf20Sopenharmony_ci	 * - Offending tree block gets re-dirtied from its original owner
40808c2ecf20Sopenharmony_ci	 *   Since it has bumped generation, no WRITTEN flag, it can be
40818c2ecf20Sopenharmony_ci	 *   reused without COWing. This tree block will not be traced
40828c2ecf20Sopenharmony_ci	 *   by btrfs_transaction::dirty_pages.
40838c2ecf20Sopenharmony_ci	 *
40848c2ecf20Sopenharmony_ci	 *   Now such dirty tree block will not be cleaned by any dirty
40858c2ecf20Sopenharmony_ci	 *   extent io tree. Thus we don't want to submit such wild eb
40868c2ecf20Sopenharmony_ci	 *   if the fs already has error.
40878c2ecf20Sopenharmony_ci	 */
40888c2ecf20Sopenharmony_ci	if (!test_bit(BTRFS_FS_STATE_ERROR, &fs_info->fs_state)) {
40898c2ecf20Sopenharmony_ci		ret = flush_write_bio(&epd);
40908c2ecf20Sopenharmony_ci	} else {
40918c2ecf20Sopenharmony_ci		ret = -EROFS;
40928c2ecf20Sopenharmony_ci		end_write_bio(&epd, ret);
40938c2ecf20Sopenharmony_ci	}
40948c2ecf20Sopenharmony_ci	return ret;
40958c2ecf20Sopenharmony_ci}
40968c2ecf20Sopenharmony_ci
40978c2ecf20Sopenharmony_ci/**
40988c2ecf20Sopenharmony_ci * write_cache_pages - walk the list of dirty pages of the given address space and write all of them.
40998c2ecf20Sopenharmony_ci * @mapping: address space structure to write
41008c2ecf20Sopenharmony_ci * @wbc: subtract the number of written pages from *@wbc->nr_to_write
41018c2ecf20Sopenharmony_ci * @data: data passed to __extent_writepage function
41028c2ecf20Sopenharmony_ci *
41038c2ecf20Sopenharmony_ci * If a page is already under I/O, write_cache_pages() skips it, even
41048c2ecf20Sopenharmony_ci * if it's dirty.  This is desirable behaviour for memory-cleaning writeback,
41058c2ecf20Sopenharmony_ci * but it is INCORRECT for data-integrity system calls such as fsync().  fsync()
41068c2ecf20Sopenharmony_ci * and msync() need to guarantee that all the data which was dirty at the time
41078c2ecf20Sopenharmony_ci * the call was made get new I/O started against them.  If wbc->sync_mode is
41088c2ecf20Sopenharmony_ci * WB_SYNC_ALL then we were called for data integrity and we must wait for
41098c2ecf20Sopenharmony_ci * existing IO to complete.
41108c2ecf20Sopenharmony_ci */
41118c2ecf20Sopenharmony_cistatic int extent_write_cache_pages(struct address_space *mapping,
41128c2ecf20Sopenharmony_ci			     struct writeback_control *wbc,
41138c2ecf20Sopenharmony_ci			     struct extent_page_data *epd)
41148c2ecf20Sopenharmony_ci{
41158c2ecf20Sopenharmony_ci	struct inode *inode = mapping->host;
41168c2ecf20Sopenharmony_ci	int ret = 0;
41178c2ecf20Sopenharmony_ci	int done = 0;
41188c2ecf20Sopenharmony_ci	int nr_to_write_done = 0;
41198c2ecf20Sopenharmony_ci	struct pagevec pvec;
41208c2ecf20Sopenharmony_ci	int nr_pages;
41218c2ecf20Sopenharmony_ci	pgoff_t index;
41228c2ecf20Sopenharmony_ci	pgoff_t end;		/* Inclusive */
41238c2ecf20Sopenharmony_ci	pgoff_t done_index;
41248c2ecf20Sopenharmony_ci	int range_whole = 0;
41258c2ecf20Sopenharmony_ci	int scanned = 0;
41268c2ecf20Sopenharmony_ci	xa_mark_t tag;
41278c2ecf20Sopenharmony_ci
41288c2ecf20Sopenharmony_ci	/*
41298c2ecf20Sopenharmony_ci	 * We have to hold onto the inode so that ordered extents can do their
41308c2ecf20Sopenharmony_ci	 * work when the IO finishes.  The alternative to this is failing to add
41318c2ecf20Sopenharmony_ci	 * an ordered extent if the igrab() fails there and that is a huge pain
41328c2ecf20Sopenharmony_ci	 * to deal with, so instead just hold onto the inode throughout the
41338c2ecf20Sopenharmony_ci	 * writepages operation.  If it fails here we are freeing up the inode
41348c2ecf20Sopenharmony_ci	 * anyway and we'd rather not waste our time writing out stuff that is
41358c2ecf20Sopenharmony_ci	 * going to be truncated anyway.
41368c2ecf20Sopenharmony_ci	 */
41378c2ecf20Sopenharmony_ci	if (!igrab(inode))
41388c2ecf20Sopenharmony_ci		return 0;
41398c2ecf20Sopenharmony_ci
41408c2ecf20Sopenharmony_ci	pagevec_init(&pvec);
41418c2ecf20Sopenharmony_ci	if (wbc->range_cyclic) {
41428c2ecf20Sopenharmony_ci		index = mapping->writeback_index; /* Start from prev offset */
41438c2ecf20Sopenharmony_ci		end = -1;
41448c2ecf20Sopenharmony_ci		/*
41458c2ecf20Sopenharmony_ci		 * Start from the beginning does not need to cycle over the
41468c2ecf20Sopenharmony_ci		 * range, mark it as scanned.
41478c2ecf20Sopenharmony_ci		 */
41488c2ecf20Sopenharmony_ci		scanned = (index == 0);
41498c2ecf20Sopenharmony_ci	} else {
41508c2ecf20Sopenharmony_ci		index = wbc->range_start >> PAGE_SHIFT;
41518c2ecf20Sopenharmony_ci		end = wbc->range_end >> PAGE_SHIFT;
41528c2ecf20Sopenharmony_ci		if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX)
41538c2ecf20Sopenharmony_ci			range_whole = 1;
41548c2ecf20Sopenharmony_ci		scanned = 1;
41558c2ecf20Sopenharmony_ci	}
41568c2ecf20Sopenharmony_ci
41578c2ecf20Sopenharmony_ci	/*
41588c2ecf20Sopenharmony_ci	 * We do the tagged writepage as long as the snapshot flush bit is set
41598c2ecf20Sopenharmony_ci	 * and we are the first one who do the filemap_flush() on this inode.
41608c2ecf20Sopenharmony_ci	 *
41618c2ecf20Sopenharmony_ci	 * The nr_to_write == LONG_MAX is needed to make sure other flushers do
41628c2ecf20Sopenharmony_ci	 * not race in and drop the bit.
41638c2ecf20Sopenharmony_ci	 */
41648c2ecf20Sopenharmony_ci	if (range_whole && wbc->nr_to_write == LONG_MAX &&
41658c2ecf20Sopenharmony_ci	    test_and_clear_bit(BTRFS_INODE_SNAPSHOT_FLUSH,
41668c2ecf20Sopenharmony_ci			       &BTRFS_I(inode)->runtime_flags))
41678c2ecf20Sopenharmony_ci		wbc->tagged_writepages = 1;
41688c2ecf20Sopenharmony_ci
41698c2ecf20Sopenharmony_ci	if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages)
41708c2ecf20Sopenharmony_ci		tag = PAGECACHE_TAG_TOWRITE;
41718c2ecf20Sopenharmony_ci	else
41728c2ecf20Sopenharmony_ci		tag = PAGECACHE_TAG_DIRTY;
41738c2ecf20Sopenharmony_ciretry:
41748c2ecf20Sopenharmony_ci	if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages)
41758c2ecf20Sopenharmony_ci		tag_pages_for_writeback(mapping, index, end);
41768c2ecf20Sopenharmony_ci	done_index = index;
41778c2ecf20Sopenharmony_ci	while (!done && !nr_to_write_done && (index <= end) &&
41788c2ecf20Sopenharmony_ci			(nr_pages = pagevec_lookup_range_tag(&pvec, mapping,
41798c2ecf20Sopenharmony_ci						&index, end, tag))) {
41808c2ecf20Sopenharmony_ci		unsigned i;
41818c2ecf20Sopenharmony_ci
41828c2ecf20Sopenharmony_ci		for (i = 0; i < nr_pages; i++) {
41838c2ecf20Sopenharmony_ci			struct page *page = pvec.pages[i];
41848c2ecf20Sopenharmony_ci
41858c2ecf20Sopenharmony_ci			done_index = page->index + 1;
41868c2ecf20Sopenharmony_ci			/*
41878c2ecf20Sopenharmony_ci			 * At this point we hold neither the i_pages lock nor
41888c2ecf20Sopenharmony_ci			 * the page lock: the page may be truncated or
41898c2ecf20Sopenharmony_ci			 * invalidated (changing page->mapping to NULL),
41908c2ecf20Sopenharmony_ci			 * or even swizzled back from swapper_space to
41918c2ecf20Sopenharmony_ci			 * tmpfs file mapping
41928c2ecf20Sopenharmony_ci			 */
41938c2ecf20Sopenharmony_ci			if (!trylock_page(page)) {
41948c2ecf20Sopenharmony_ci				ret = flush_write_bio(epd);
41958c2ecf20Sopenharmony_ci				BUG_ON(ret < 0);
41968c2ecf20Sopenharmony_ci				lock_page(page);
41978c2ecf20Sopenharmony_ci			}
41988c2ecf20Sopenharmony_ci
41998c2ecf20Sopenharmony_ci			if (unlikely(page->mapping != mapping)) {
42008c2ecf20Sopenharmony_ci				unlock_page(page);
42018c2ecf20Sopenharmony_ci				continue;
42028c2ecf20Sopenharmony_ci			}
42038c2ecf20Sopenharmony_ci
42048c2ecf20Sopenharmony_ci			if (wbc->sync_mode != WB_SYNC_NONE) {
42058c2ecf20Sopenharmony_ci				if (PageWriteback(page)) {
42068c2ecf20Sopenharmony_ci					ret = flush_write_bio(epd);
42078c2ecf20Sopenharmony_ci					BUG_ON(ret < 0);
42088c2ecf20Sopenharmony_ci				}
42098c2ecf20Sopenharmony_ci				wait_on_page_writeback(page);
42108c2ecf20Sopenharmony_ci			}
42118c2ecf20Sopenharmony_ci
42128c2ecf20Sopenharmony_ci			if (PageWriteback(page) ||
42138c2ecf20Sopenharmony_ci			    !clear_page_dirty_for_io(page)) {
42148c2ecf20Sopenharmony_ci				unlock_page(page);
42158c2ecf20Sopenharmony_ci				continue;
42168c2ecf20Sopenharmony_ci			}
42178c2ecf20Sopenharmony_ci
42188c2ecf20Sopenharmony_ci			ret = __extent_writepage(page, wbc, epd);
42198c2ecf20Sopenharmony_ci			if (ret < 0) {
42208c2ecf20Sopenharmony_ci				done = 1;
42218c2ecf20Sopenharmony_ci				break;
42228c2ecf20Sopenharmony_ci			}
42238c2ecf20Sopenharmony_ci
42248c2ecf20Sopenharmony_ci			/*
42258c2ecf20Sopenharmony_ci			 * the filesystem may choose to bump up nr_to_write.
42268c2ecf20Sopenharmony_ci			 * We have to make sure to honor the new nr_to_write
42278c2ecf20Sopenharmony_ci			 * at any time
42288c2ecf20Sopenharmony_ci			 */
42298c2ecf20Sopenharmony_ci			nr_to_write_done = wbc->nr_to_write <= 0;
42308c2ecf20Sopenharmony_ci		}
42318c2ecf20Sopenharmony_ci		pagevec_release(&pvec);
42328c2ecf20Sopenharmony_ci		cond_resched();
42338c2ecf20Sopenharmony_ci	}
42348c2ecf20Sopenharmony_ci	if (!scanned && !done) {
42358c2ecf20Sopenharmony_ci		/*
42368c2ecf20Sopenharmony_ci		 * We hit the last page and there is more work to be done: wrap
42378c2ecf20Sopenharmony_ci		 * back to the start of the file
42388c2ecf20Sopenharmony_ci		 */
42398c2ecf20Sopenharmony_ci		scanned = 1;
42408c2ecf20Sopenharmony_ci		index = 0;
42418c2ecf20Sopenharmony_ci
42428c2ecf20Sopenharmony_ci		/*
42438c2ecf20Sopenharmony_ci		 * If we're looping we could run into a page that is locked by a
42448c2ecf20Sopenharmony_ci		 * writer and that writer could be waiting on writeback for a
42458c2ecf20Sopenharmony_ci		 * page in our current bio, and thus deadlock, so flush the
42468c2ecf20Sopenharmony_ci		 * write bio here.
42478c2ecf20Sopenharmony_ci		 */
42488c2ecf20Sopenharmony_ci		ret = flush_write_bio(epd);
42498c2ecf20Sopenharmony_ci		if (!ret)
42508c2ecf20Sopenharmony_ci			goto retry;
42518c2ecf20Sopenharmony_ci	}
42528c2ecf20Sopenharmony_ci
42538c2ecf20Sopenharmony_ci	if (wbc->range_cyclic || (wbc->nr_to_write > 0 && range_whole))
42548c2ecf20Sopenharmony_ci		mapping->writeback_index = done_index;
42558c2ecf20Sopenharmony_ci
42568c2ecf20Sopenharmony_ci	btrfs_add_delayed_iput(inode);
42578c2ecf20Sopenharmony_ci	return ret;
42588c2ecf20Sopenharmony_ci}
42598c2ecf20Sopenharmony_ci
42608c2ecf20Sopenharmony_ciint extent_write_full_page(struct page *page, struct writeback_control *wbc)
42618c2ecf20Sopenharmony_ci{
42628c2ecf20Sopenharmony_ci	int ret;
42638c2ecf20Sopenharmony_ci	struct extent_page_data epd = {
42648c2ecf20Sopenharmony_ci		.bio = NULL,
42658c2ecf20Sopenharmony_ci		.extent_locked = 0,
42668c2ecf20Sopenharmony_ci		.sync_io = wbc->sync_mode == WB_SYNC_ALL,
42678c2ecf20Sopenharmony_ci	};
42688c2ecf20Sopenharmony_ci
42698c2ecf20Sopenharmony_ci	ret = __extent_writepage(page, wbc, &epd);
42708c2ecf20Sopenharmony_ci	ASSERT(ret <= 0);
42718c2ecf20Sopenharmony_ci	if (ret < 0) {
42728c2ecf20Sopenharmony_ci		end_write_bio(&epd, ret);
42738c2ecf20Sopenharmony_ci		return ret;
42748c2ecf20Sopenharmony_ci	}
42758c2ecf20Sopenharmony_ci
42768c2ecf20Sopenharmony_ci	ret = flush_write_bio(&epd);
42778c2ecf20Sopenharmony_ci	ASSERT(ret <= 0);
42788c2ecf20Sopenharmony_ci	return ret;
42798c2ecf20Sopenharmony_ci}
42808c2ecf20Sopenharmony_ci
42818c2ecf20Sopenharmony_ciint extent_write_locked_range(struct inode *inode, u64 start, u64 end,
42828c2ecf20Sopenharmony_ci			      int mode)
42838c2ecf20Sopenharmony_ci{
42848c2ecf20Sopenharmony_ci	int ret = 0;
42858c2ecf20Sopenharmony_ci	struct address_space *mapping = inode->i_mapping;
42868c2ecf20Sopenharmony_ci	struct page *page;
42878c2ecf20Sopenharmony_ci	unsigned long nr_pages = (end - start + PAGE_SIZE) >>
42888c2ecf20Sopenharmony_ci		PAGE_SHIFT;
42898c2ecf20Sopenharmony_ci
42908c2ecf20Sopenharmony_ci	struct extent_page_data epd = {
42918c2ecf20Sopenharmony_ci		.bio = NULL,
42928c2ecf20Sopenharmony_ci		.extent_locked = 1,
42938c2ecf20Sopenharmony_ci		.sync_io = mode == WB_SYNC_ALL,
42948c2ecf20Sopenharmony_ci	};
42958c2ecf20Sopenharmony_ci	struct writeback_control wbc_writepages = {
42968c2ecf20Sopenharmony_ci		.sync_mode	= mode,
42978c2ecf20Sopenharmony_ci		.nr_to_write	= nr_pages * 2,
42988c2ecf20Sopenharmony_ci		.range_start	= start,
42998c2ecf20Sopenharmony_ci		.range_end	= end + 1,
43008c2ecf20Sopenharmony_ci		/* We're called from an async helper function */
43018c2ecf20Sopenharmony_ci		.punt_to_cgroup	= 1,
43028c2ecf20Sopenharmony_ci		.no_cgroup_owner = 1,
43038c2ecf20Sopenharmony_ci	};
43048c2ecf20Sopenharmony_ci
43058c2ecf20Sopenharmony_ci	wbc_attach_fdatawrite_inode(&wbc_writepages, inode);
43068c2ecf20Sopenharmony_ci	while (start <= end) {
43078c2ecf20Sopenharmony_ci		page = find_get_page(mapping, start >> PAGE_SHIFT);
43088c2ecf20Sopenharmony_ci		if (clear_page_dirty_for_io(page))
43098c2ecf20Sopenharmony_ci			ret = __extent_writepage(page, &wbc_writepages, &epd);
43108c2ecf20Sopenharmony_ci		else {
43118c2ecf20Sopenharmony_ci			btrfs_writepage_endio_finish_ordered(page, start,
43128c2ecf20Sopenharmony_ci						    start + PAGE_SIZE - 1, 1);
43138c2ecf20Sopenharmony_ci			unlock_page(page);
43148c2ecf20Sopenharmony_ci		}
43158c2ecf20Sopenharmony_ci		put_page(page);
43168c2ecf20Sopenharmony_ci		start += PAGE_SIZE;
43178c2ecf20Sopenharmony_ci	}
43188c2ecf20Sopenharmony_ci
43198c2ecf20Sopenharmony_ci	ASSERT(ret <= 0);
43208c2ecf20Sopenharmony_ci	if (ret == 0)
43218c2ecf20Sopenharmony_ci		ret = flush_write_bio(&epd);
43228c2ecf20Sopenharmony_ci	else
43238c2ecf20Sopenharmony_ci		end_write_bio(&epd, ret);
43248c2ecf20Sopenharmony_ci
43258c2ecf20Sopenharmony_ci	wbc_detach_inode(&wbc_writepages);
43268c2ecf20Sopenharmony_ci	return ret;
43278c2ecf20Sopenharmony_ci}
43288c2ecf20Sopenharmony_ci
43298c2ecf20Sopenharmony_ciint extent_writepages(struct address_space *mapping,
43308c2ecf20Sopenharmony_ci		      struct writeback_control *wbc)
43318c2ecf20Sopenharmony_ci{
43328c2ecf20Sopenharmony_ci	int ret = 0;
43338c2ecf20Sopenharmony_ci	struct extent_page_data epd = {
43348c2ecf20Sopenharmony_ci		.bio = NULL,
43358c2ecf20Sopenharmony_ci		.extent_locked = 0,
43368c2ecf20Sopenharmony_ci		.sync_io = wbc->sync_mode == WB_SYNC_ALL,
43378c2ecf20Sopenharmony_ci	};
43388c2ecf20Sopenharmony_ci
43398c2ecf20Sopenharmony_ci	ret = extent_write_cache_pages(mapping, wbc, &epd);
43408c2ecf20Sopenharmony_ci	ASSERT(ret <= 0);
43418c2ecf20Sopenharmony_ci	if (ret < 0) {
43428c2ecf20Sopenharmony_ci		end_write_bio(&epd, ret);
43438c2ecf20Sopenharmony_ci		return ret;
43448c2ecf20Sopenharmony_ci	}
43458c2ecf20Sopenharmony_ci	ret = flush_write_bio(&epd);
43468c2ecf20Sopenharmony_ci	return ret;
43478c2ecf20Sopenharmony_ci}
43488c2ecf20Sopenharmony_ci
43498c2ecf20Sopenharmony_civoid extent_readahead(struct readahead_control *rac)
43508c2ecf20Sopenharmony_ci{
43518c2ecf20Sopenharmony_ci	struct bio *bio = NULL;
43528c2ecf20Sopenharmony_ci	unsigned long bio_flags = 0;
43538c2ecf20Sopenharmony_ci	struct page *pagepool[16];
43548c2ecf20Sopenharmony_ci	struct extent_map *em_cached = NULL;
43558c2ecf20Sopenharmony_ci	u64 prev_em_start = (u64)-1;
43568c2ecf20Sopenharmony_ci	int nr;
43578c2ecf20Sopenharmony_ci
43588c2ecf20Sopenharmony_ci	while ((nr = readahead_page_batch(rac, pagepool))) {
43598c2ecf20Sopenharmony_ci		u64 contig_start = page_offset(pagepool[0]);
43608c2ecf20Sopenharmony_ci		u64 contig_end = page_offset(pagepool[nr - 1]) + PAGE_SIZE - 1;
43618c2ecf20Sopenharmony_ci
43628c2ecf20Sopenharmony_ci		ASSERT(contig_start + nr * PAGE_SIZE - 1 == contig_end);
43638c2ecf20Sopenharmony_ci
43648c2ecf20Sopenharmony_ci		contiguous_readpages(pagepool, nr, contig_start, contig_end,
43658c2ecf20Sopenharmony_ci				&em_cached, &bio, &bio_flags, &prev_em_start);
43668c2ecf20Sopenharmony_ci	}
43678c2ecf20Sopenharmony_ci
43688c2ecf20Sopenharmony_ci	if (em_cached)
43698c2ecf20Sopenharmony_ci		free_extent_map(em_cached);
43708c2ecf20Sopenharmony_ci
43718c2ecf20Sopenharmony_ci	if (bio) {
43728c2ecf20Sopenharmony_ci		if (submit_one_bio(bio, 0, bio_flags))
43738c2ecf20Sopenharmony_ci			return;
43748c2ecf20Sopenharmony_ci	}
43758c2ecf20Sopenharmony_ci}
43768c2ecf20Sopenharmony_ci
43778c2ecf20Sopenharmony_ci/*
43788c2ecf20Sopenharmony_ci * basic invalidatepage code, this waits on any locked or writeback
43798c2ecf20Sopenharmony_ci * ranges corresponding to the page, and then deletes any extent state
43808c2ecf20Sopenharmony_ci * records from the tree
43818c2ecf20Sopenharmony_ci */
43828c2ecf20Sopenharmony_ciint extent_invalidatepage(struct extent_io_tree *tree,
43838c2ecf20Sopenharmony_ci			  struct page *page, unsigned long offset)
43848c2ecf20Sopenharmony_ci{
43858c2ecf20Sopenharmony_ci	struct extent_state *cached_state = NULL;
43868c2ecf20Sopenharmony_ci	u64 start = page_offset(page);
43878c2ecf20Sopenharmony_ci	u64 end = start + PAGE_SIZE - 1;
43888c2ecf20Sopenharmony_ci	size_t blocksize = page->mapping->host->i_sb->s_blocksize;
43898c2ecf20Sopenharmony_ci
43908c2ecf20Sopenharmony_ci	start += ALIGN(offset, blocksize);
43918c2ecf20Sopenharmony_ci	if (start > end)
43928c2ecf20Sopenharmony_ci		return 0;
43938c2ecf20Sopenharmony_ci
43948c2ecf20Sopenharmony_ci	lock_extent_bits(tree, start, end, &cached_state);
43958c2ecf20Sopenharmony_ci	wait_on_page_writeback(page);
43968c2ecf20Sopenharmony_ci	clear_extent_bit(tree, start, end, EXTENT_LOCKED | EXTENT_DELALLOC |
43978c2ecf20Sopenharmony_ci			 EXTENT_DO_ACCOUNTING, 1, 1, &cached_state);
43988c2ecf20Sopenharmony_ci	return 0;
43998c2ecf20Sopenharmony_ci}
44008c2ecf20Sopenharmony_ci
44018c2ecf20Sopenharmony_ci/*
44028c2ecf20Sopenharmony_ci * a helper for releasepage, this tests for areas of the page that
44038c2ecf20Sopenharmony_ci * are locked or under IO and drops the related state bits if it is safe
44048c2ecf20Sopenharmony_ci * to drop the page.
44058c2ecf20Sopenharmony_ci */
44068c2ecf20Sopenharmony_cistatic int try_release_extent_state(struct extent_io_tree *tree,
44078c2ecf20Sopenharmony_ci				    struct page *page, gfp_t mask)
44088c2ecf20Sopenharmony_ci{
44098c2ecf20Sopenharmony_ci	u64 start = page_offset(page);
44108c2ecf20Sopenharmony_ci	u64 end = start + PAGE_SIZE - 1;
44118c2ecf20Sopenharmony_ci	int ret = 1;
44128c2ecf20Sopenharmony_ci
44138c2ecf20Sopenharmony_ci	if (test_range_bit(tree, start, end, EXTENT_LOCKED, 0, NULL)) {
44148c2ecf20Sopenharmony_ci		ret = 0;
44158c2ecf20Sopenharmony_ci	} else {
44168c2ecf20Sopenharmony_ci		/*
44178c2ecf20Sopenharmony_ci		 * at this point we can safely clear everything except the
44188c2ecf20Sopenharmony_ci		 * locked bit and the nodatasum bit
44198c2ecf20Sopenharmony_ci		 */
44208c2ecf20Sopenharmony_ci		ret = __clear_extent_bit(tree, start, end,
44218c2ecf20Sopenharmony_ci				 ~(EXTENT_LOCKED | EXTENT_NODATASUM),
44228c2ecf20Sopenharmony_ci				 0, 0, NULL, mask, NULL);
44238c2ecf20Sopenharmony_ci
44248c2ecf20Sopenharmony_ci		/* if clear_extent_bit failed for enomem reasons,
44258c2ecf20Sopenharmony_ci		 * we can't allow the release to continue.
44268c2ecf20Sopenharmony_ci		 */
44278c2ecf20Sopenharmony_ci		if (ret < 0)
44288c2ecf20Sopenharmony_ci			ret = 0;
44298c2ecf20Sopenharmony_ci		else
44308c2ecf20Sopenharmony_ci			ret = 1;
44318c2ecf20Sopenharmony_ci	}
44328c2ecf20Sopenharmony_ci	return ret;
44338c2ecf20Sopenharmony_ci}
44348c2ecf20Sopenharmony_ci
44358c2ecf20Sopenharmony_ci/*
44368c2ecf20Sopenharmony_ci * a helper for releasepage.  As long as there are no locked extents
44378c2ecf20Sopenharmony_ci * in the range corresponding to the page, both state records and extent
44388c2ecf20Sopenharmony_ci * map records are removed
44398c2ecf20Sopenharmony_ci */
44408c2ecf20Sopenharmony_ciint try_release_extent_mapping(struct page *page, gfp_t mask)
44418c2ecf20Sopenharmony_ci{
44428c2ecf20Sopenharmony_ci	struct extent_map *em;
44438c2ecf20Sopenharmony_ci	u64 start = page_offset(page);
44448c2ecf20Sopenharmony_ci	u64 end = start + PAGE_SIZE - 1;
44458c2ecf20Sopenharmony_ci	struct btrfs_inode *btrfs_inode = BTRFS_I(page->mapping->host);
44468c2ecf20Sopenharmony_ci	struct extent_io_tree *tree = &btrfs_inode->io_tree;
44478c2ecf20Sopenharmony_ci	struct extent_map_tree *map = &btrfs_inode->extent_tree;
44488c2ecf20Sopenharmony_ci
44498c2ecf20Sopenharmony_ci	if (gfpflags_allow_blocking(mask) &&
44508c2ecf20Sopenharmony_ci	    page->mapping->host->i_size > SZ_16M) {
44518c2ecf20Sopenharmony_ci		u64 len;
44528c2ecf20Sopenharmony_ci		while (start <= end) {
44538c2ecf20Sopenharmony_ci			struct btrfs_fs_info *fs_info;
44548c2ecf20Sopenharmony_ci			u64 cur_gen;
44558c2ecf20Sopenharmony_ci
44568c2ecf20Sopenharmony_ci			len = end - start + 1;
44578c2ecf20Sopenharmony_ci			write_lock(&map->lock);
44588c2ecf20Sopenharmony_ci			em = lookup_extent_mapping(map, start, len);
44598c2ecf20Sopenharmony_ci			if (!em) {
44608c2ecf20Sopenharmony_ci				write_unlock(&map->lock);
44618c2ecf20Sopenharmony_ci				break;
44628c2ecf20Sopenharmony_ci			}
44638c2ecf20Sopenharmony_ci			if (test_bit(EXTENT_FLAG_PINNED, &em->flags) ||
44648c2ecf20Sopenharmony_ci			    em->start != start) {
44658c2ecf20Sopenharmony_ci				write_unlock(&map->lock);
44668c2ecf20Sopenharmony_ci				free_extent_map(em);
44678c2ecf20Sopenharmony_ci				break;
44688c2ecf20Sopenharmony_ci			}
44698c2ecf20Sopenharmony_ci			if (test_range_bit(tree, em->start,
44708c2ecf20Sopenharmony_ci					   extent_map_end(em) - 1,
44718c2ecf20Sopenharmony_ci					   EXTENT_LOCKED, 0, NULL))
44728c2ecf20Sopenharmony_ci				goto next;
44738c2ecf20Sopenharmony_ci			/*
44748c2ecf20Sopenharmony_ci			 * If it's not in the list of modified extents, used
44758c2ecf20Sopenharmony_ci			 * by a fast fsync, we can remove it. If it's being
44768c2ecf20Sopenharmony_ci			 * logged we can safely remove it since fsync took an
44778c2ecf20Sopenharmony_ci			 * extra reference on the em.
44788c2ecf20Sopenharmony_ci			 */
44798c2ecf20Sopenharmony_ci			if (list_empty(&em->list) ||
44808c2ecf20Sopenharmony_ci			    test_bit(EXTENT_FLAG_LOGGING, &em->flags))
44818c2ecf20Sopenharmony_ci				goto remove_em;
44828c2ecf20Sopenharmony_ci			/*
44838c2ecf20Sopenharmony_ci			 * If it's in the list of modified extents, remove it
44848c2ecf20Sopenharmony_ci			 * only if its generation is older then the current one,
44858c2ecf20Sopenharmony_ci			 * in which case we don't need it for a fast fsync.
44868c2ecf20Sopenharmony_ci			 * Otherwise don't remove it, we could be racing with an
44878c2ecf20Sopenharmony_ci			 * ongoing fast fsync that could miss the new extent.
44888c2ecf20Sopenharmony_ci			 */
44898c2ecf20Sopenharmony_ci			fs_info = btrfs_inode->root->fs_info;
44908c2ecf20Sopenharmony_ci			spin_lock(&fs_info->trans_lock);
44918c2ecf20Sopenharmony_ci			cur_gen = fs_info->generation;
44928c2ecf20Sopenharmony_ci			spin_unlock(&fs_info->trans_lock);
44938c2ecf20Sopenharmony_ci			if (em->generation >= cur_gen)
44948c2ecf20Sopenharmony_ci				goto next;
44958c2ecf20Sopenharmony_ciremove_em:
44968c2ecf20Sopenharmony_ci			/*
44978c2ecf20Sopenharmony_ci			 * We only remove extent maps that are not in the list of
44988c2ecf20Sopenharmony_ci			 * modified extents or that are in the list but with a
44998c2ecf20Sopenharmony_ci			 * generation lower then the current generation, so there
45008c2ecf20Sopenharmony_ci			 * is no need to set the full fsync flag on the inode (it
45018c2ecf20Sopenharmony_ci			 * hurts the fsync performance for workloads with a data
45028c2ecf20Sopenharmony_ci			 * size that exceeds or is close to the system's memory).
45038c2ecf20Sopenharmony_ci			 */
45048c2ecf20Sopenharmony_ci			remove_extent_mapping(map, em);
45058c2ecf20Sopenharmony_ci			/* once for the rb tree */
45068c2ecf20Sopenharmony_ci			free_extent_map(em);
45078c2ecf20Sopenharmony_cinext:
45088c2ecf20Sopenharmony_ci			start = extent_map_end(em);
45098c2ecf20Sopenharmony_ci			write_unlock(&map->lock);
45108c2ecf20Sopenharmony_ci
45118c2ecf20Sopenharmony_ci			/* once for us */
45128c2ecf20Sopenharmony_ci			free_extent_map(em);
45138c2ecf20Sopenharmony_ci
45148c2ecf20Sopenharmony_ci			cond_resched(); /* Allow large-extent preemption. */
45158c2ecf20Sopenharmony_ci		}
45168c2ecf20Sopenharmony_ci	}
45178c2ecf20Sopenharmony_ci	return try_release_extent_state(tree, page, mask);
45188c2ecf20Sopenharmony_ci}
45198c2ecf20Sopenharmony_ci
45208c2ecf20Sopenharmony_ci/*
45218c2ecf20Sopenharmony_ci * helper function for fiemap, which doesn't want to see any holes.
45228c2ecf20Sopenharmony_ci * This maps until we find something past 'last'
45238c2ecf20Sopenharmony_ci */
45248c2ecf20Sopenharmony_cistatic struct extent_map *get_extent_skip_holes(struct btrfs_inode *inode,
45258c2ecf20Sopenharmony_ci						u64 offset, u64 last)
45268c2ecf20Sopenharmony_ci{
45278c2ecf20Sopenharmony_ci	u64 sectorsize = btrfs_inode_sectorsize(inode);
45288c2ecf20Sopenharmony_ci	struct extent_map *em;
45298c2ecf20Sopenharmony_ci	u64 len;
45308c2ecf20Sopenharmony_ci
45318c2ecf20Sopenharmony_ci	if (offset >= last)
45328c2ecf20Sopenharmony_ci		return NULL;
45338c2ecf20Sopenharmony_ci
45348c2ecf20Sopenharmony_ci	while (1) {
45358c2ecf20Sopenharmony_ci		len = last - offset;
45368c2ecf20Sopenharmony_ci		if (len == 0)
45378c2ecf20Sopenharmony_ci			break;
45388c2ecf20Sopenharmony_ci		len = ALIGN(len, sectorsize);
45398c2ecf20Sopenharmony_ci		em = btrfs_get_extent_fiemap(inode, offset, len);
45408c2ecf20Sopenharmony_ci		if (IS_ERR_OR_NULL(em))
45418c2ecf20Sopenharmony_ci			return em;
45428c2ecf20Sopenharmony_ci
45438c2ecf20Sopenharmony_ci		/* if this isn't a hole return it */
45448c2ecf20Sopenharmony_ci		if (em->block_start != EXTENT_MAP_HOLE)
45458c2ecf20Sopenharmony_ci			return em;
45468c2ecf20Sopenharmony_ci
45478c2ecf20Sopenharmony_ci		/* this is a hole, advance to the next extent */
45488c2ecf20Sopenharmony_ci		offset = extent_map_end(em);
45498c2ecf20Sopenharmony_ci		free_extent_map(em);
45508c2ecf20Sopenharmony_ci		if (offset >= last)
45518c2ecf20Sopenharmony_ci			break;
45528c2ecf20Sopenharmony_ci	}
45538c2ecf20Sopenharmony_ci	return NULL;
45548c2ecf20Sopenharmony_ci}
45558c2ecf20Sopenharmony_ci
45568c2ecf20Sopenharmony_ci/*
45578c2ecf20Sopenharmony_ci * To cache previous fiemap extent
45588c2ecf20Sopenharmony_ci *
45598c2ecf20Sopenharmony_ci * Will be used for merging fiemap extent
45608c2ecf20Sopenharmony_ci */
45618c2ecf20Sopenharmony_cistruct fiemap_cache {
45628c2ecf20Sopenharmony_ci	u64 offset;
45638c2ecf20Sopenharmony_ci	u64 phys;
45648c2ecf20Sopenharmony_ci	u64 len;
45658c2ecf20Sopenharmony_ci	u32 flags;
45668c2ecf20Sopenharmony_ci	bool cached;
45678c2ecf20Sopenharmony_ci};
45688c2ecf20Sopenharmony_ci
45698c2ecf20Sopenharmony_ci/*
45708c2ecf20Sopenharmony_ci * Helper to submit fiemap extent.
45718c2ecf20Sopenharmony_ci *
45728c2ecf20Sopenharmony_ci * Will try to merge current fiemap extent specified by @offset, @phys,
45738c2ecf20Sopenharmony_ci * @len and @flags with cached one.
45748c2ecf20Sopenharmony_ci * And only when we fails to merge, cached one will be submitted as
45758c2ecf20Sopenharmony_ci * fiemap extent.
45768c2ecf20Sopenharmony_ci *
45778c2ecf20Sopenharmony_ci * Return value is the same as fiemap_fill_next_extent().
45788c2ecf20Sopenharmony_ci */
45798c2ecf20Sopenharmony_cistatic int emit_fiemap_extent(struct fiemap_extent_info *fieinfo,
45808c2ecf20Sopenharmony_ci				struct fiemap_cache *cache,
45818c2ecf20Sopenharmony_ci				u64 offset, u64 phys, u64 len, u32 flags)
45828c2ecf20Sopenharmony_ci{
45838c2ecf20Sopenharmony_ci	int ret = 0;
45848c2ecf20Sopenharmony_ci
45858c2ecf20Sopenharmony_ci	if (!cache->cached)
45868c2ecf20Sopenharmony_ci		goto assign;
45878c2ecf20Sopenharmony_ci
45888c2ecf20Sopenharmony_ci	/*
45898c2ecf20Sopenharmony_ci	 * Sanity check, extent_fiemap() should have ensured that new
45908c2ecf20Sopenharmony_ci	 * fiemap extent won't overlap with cached one.
45918c2ecf20Sopenharmony_ci	 * Not recoverable.
45928c2ecf20Sopenharmony_ci	 *
45938c2ecf20Sopenharmony_ci	 * NOTE: Physical address can overlap, due to compression
45948c2ecf20Sopenharmony_ci	 */
45958c2ecf20Sopenharmony_ci	if (cache->offset + cache->len > offset) {
45968c2ecf20Sopenharmony_ci		WARN_ON(1);
45978c2ecf20Sopenharmony_ci		return -EINVAL;
45988c2ecf20Sopenharmony_ci	}
45998c2ecf20Sopenharmony_ci
46008c2ecf20Sopenharmony_ci	/*
46018c2ecf20Sopenharmony_ci	 * Only merges fiemap extents if
46028c2ecf20Sopenharmony_ci	 * 1) Their logical addresses are continuous
46038c2ecf20Sopenharmony_ci	 *
46048c2ecf20Sopenharmony_ci	 * 2) Their physical addresses are continuous
46058c2ecf20Sopenharmony_ci	 *    So truly compressed (physical size smaller than logical size)
46068c2ecf20Sopenharmony_ci	 *    extents won't get merged with each other
46078c2ecf20Sopenharmony_ci	 *
46088c2ecf20Sopenharmony_ci	 * 3) Share same flags except FIEMAP_EXTENT_LAST
46098c2ecf20Sopenharmony_ci	 *    So regular extent won't get merged with prealloc extent
46108c2ecf20Sopenharmony_ci	 */
46118c2ecf20Sopenharmony_ci	if (cache->offset + cache->len  == offset &&
46128c2ecf20Sopenharmony_ci	    cache->phys + cache->len == phys  &&
46138c2ecf20Sopenharmony_ci	    (cache->flags & ~FIEMAP_EXTENT_LAST) ==
46148c2ecf20Sopenharmony_ci			(flags & ~FIEMAP_EXTENT_LAST)) {
46158c2ecf20Sopenharmony_ci		cache->len += len;
46168c2ecf20Sopenharmony_ci		cache->flags |= flags;
46178c2ecf20Sopenharmony_ci		goto try_submit_last;
46188c2ecf20Sopenharmony_ci	}
46198c2ecf20Sopenharmony_ci
46208c2ecf20Sopenharmony_ci	/* Not mergeable, need to submit cached one */
46218c2ecf20Sopenharmony_ci	ret = fiemap_fill_next_extent(fieinfo, cache->offset, cache->phys,
46228c2ecf20Sopenharmony_ci				      cache->len, cache->flags);
46238c2ecf20Sopenharmony_ci	cache->cached = false;
46248c2ecf20Sopenharmony_ci	if (ret)
46258c2ecf20Sopenharmony_ci		return ret;
46268c2ecf20Sopenharmony_ciassign:
46278c2ecf20Sopenharmony_ci	cache->cached = true;
46288c2ecf20Sopenharmony_ci	cache->offset = offset;
46298c2ecf20Sopenharmony_ci	cache->phys = phys;
46308c2ecf20Sopenharmony_ci	cache->len = len;
46318c2ecf20Sopenharmony_ci	cache->flags = flags;
46328c2ecf20Sopenharmony_citry_submit_last:
46338c2ecf20Sopenharmony_ci	if (cache->flags & FIEMAP_EXTENT_LAST) {
46348c2ecf20Sopenharmony_ci		ret = fiemap_fill_next_extent(fieinfo, cache->offset,
46358c2ecf20Sopenharmony_ci				cache->phys, cache->len, cache->flags);
46368c2ecf20Sopenharmony_ci		cache->cached = false;
46378c2ecf20Sopenharmony_ci	}
46388c2ecf20Sopenharmony_ci	return ret;
46398c2ecf20Sopenharmony_ci}
46408c2ecf20Sopenharmony_ci
46418c2ecf20Sopenharmony_ci/*
46428c2ecf20Sopenharmony_ci * Emit last fiemap cache
46438c2ecf20Sopenharmony_ci *
46448c2ecf20Sopenharmony_ci * The last fiemap cache may still be cached in the following case:
46458c2ecf20Sopenharmony_ci * 0		      4k		    8k
46468c2ecf20Sopenharmony_ci * |<- Fiemap range ->|
46478c2ecf20Sopenharmony_ci * |<------------  First extent ----------->|
46488c2ecf20Sopenharmony_ci *
46498c2ecf20Sopenharmony_ci * In this case, the first extent range will be cached but not emitted.
46508c2ecf20Sopenharmony_ci * So we must emit it before ending extent_fiemap().
46518c2ecf20Sopenharmony_ci */
46528c2ecf20Sopenharmony_cistatic int emit_last_fiemap_cache(struct fiemap_extent_info *fieinfo,
46538c2ecf20Sopenharmony_ci				  struct fiemap_cache *cache)
46548c2ecf20Sopenharmony_ci{
46558c2ecf20Sopenharmony_ci	int ret;
46568c2ecf20Sopenharmony_ci
46578c2ecf20Sopenharmony_ci	if (!cache->cached)
46588c2ecf20Sopenharmony_ci		return 0;
46598c2ecf20Sopenharmony_ci
46608c2ecf20Sopenharmony_ci	ret = fiemap_fill_next_extent(fieinfo, cache->offset, cache->phys,
46618c2ecf20Sopenharmony_ci				      cache->len, cache->flags);
46628c2ecf20Sopenharmony_ci	cache->cached = false;
46638c2ecf20Sopenharmony_ci	if (ret > 0)
46648c2ecf20Sopenharmony_ci		ret = 0;
46658c2ecf20Sopenharmony_ci	return ret;
46668c2ecf20Sopenharmony_ci}
46678c2ecf20Sopenharmony_ci
46688c2ecf20Sopenharmony_ciint extent_fiemap(struct btrfs_inode *inode, struct fiemap_extent_info *fieinfo,
46698c2ecf20Sopenharmony_ci		  u64 start, u64 len)
46708c2ecf20Sopenharmony_ci{
46718c2ecf20Sopenharmony_ci	int ret = 0;
46728c2ecf20Sopenharmony_ci	u64 off;
46738c2ecf20Sopenharmony_ci	u64 max = start + len;
46748c2ecf20Sopenharmony_ci	u32 flags = 0;
46758c2ecf20Sopenharmony_ci	u32 found_type;
46768c2ecf20Sopenharmony_ci	u64 last;
46778c2ecf20Sopenharmony_ci	u64 last_for_get_extent = 0;
46788c2ecf20Sopenharmony_ci	u64 disko = 0;
46798c2ecf20Sopenharmony_ci	u64 isize = i_size_read(&inode->vfs_inode);
46808c2ecf20Sopenharmony_ci	struct btrfs_key found_key;
46818c2ecf20Sopenharmony_ci	struct extent_map *em = NULL;
46828c2ecf20Sopenharmony_ci	struct extent_state *cached_state = NULL;
46838c2ecf20Sopenharmony_ci	struct btrfs_path *path;
46848c2ecf20Sopenharmony_ci	struct btrfs_root *root = inode->root;
46858c2ecf20Sopenharmony_ci	struct fiemap_cache cache = { 0 };
46868c2ecf20Sopenharmony_ci	struct ulist *roots;
46878c2ecf20Sopenharmony_ci	struct ulist *tmp_ulist;
46888c2ecf20Sopenharmony_ci	int end = 0;
46898c2ecf20Sopenharmony_ci	u64 em_start = 0;
46908c2ecf20Sopenharmony_ci	u64 em_len = 0;
46918c2ecf20Sopenharmony_ci	u64 em_end = 0;
46928c2ecf20Sopenharmony_ci
46938c2ecf20Sopenharmony_ci	if (len == 0)
46948c2ecf20Sopenharmony_ci		return -EINVAL;
46958c2ecf20Sopenharmony_ci
46968c2ecf20Sopenharmony_ci	path = btrfs_alloc_path();
46978c2ecf20Sopenharmony_ci	if (!path)
46988c2ecf20Sopenharmony_ci		return -ENOMEM;
46998c2ecf20Sopenharmony_ci	path->leave_spinning = 1;
47008c2ecf20Sopenharmony_ci
47018c2ecf20Sopenharmony_ci	roots = ulist_alloc(GFP_KERNEL);
47028c2ecf20Sopenharmony_ci	tmp_ulist = ulist_alloc(GFP_KERNEL);
47038c2ecf20Sopenharmony_ci	if (!roots || !tmp_ulist) {
47048c2ecf20Sopenharmony_ci		ret = -ENOMEM;
47058c2ecf20Sopenharmony_ci		goto out_free_ulist;
47068c2ecf20Sopenharmony_ci	}
47078c2ecf20Sopenharmony_ci
47088c2ecf20Sopenharmony_ci	/*
47098c2ecf20Sopenharmony_ci	 * We can't initialize that to 'start' as this could miss extents due
47108c2ecf20Sopenharmony_ci	 * to extent item merging
47118c2ecf20Sopenharmony_ci	 */
47128c2ecf20Sopenharmony_ci	off = 0;
47138c2ecf20Sopenharmony_ci	start = round_down(start, btrfs_inode_sectorsize(inode));
47148c2ecf20Sopenharmony_ci	len = round_up(max, btrfs_inode_sectorsize(inode)) - start;
47158c2ecf20Sopenharmony_ci
47168c2ecf20Sopenharmony_ci	/*
47178c2ecf20Sopenharmony_ci	 * lookup the last file extent.  We're not using i_size here
47188c2ecf20Sopenharmony_ci	 * because there might be preallocation past i_size
47198c2ecf20Sopenharmony_ci	 */
47208c2ecf20Sopenharmony_ci	ret = btrfs_lookup_file_extent(NULL, root, path, btrfs_ino(inode), -1,
47218c2ecf20Sopenharmony_ci				       0);
47228c2ecf20Sopenharmony_ci	if (ret < 0) {
47238c2ecf20Sopenharmony_ci		goto out_free_ulist;
47248c2ecf20Sopenharmony_ci	} else {
47258c2ecf20Sopenharmony_ci		WARN_ON(!ret);
47268c2ecf20Sopenharmony_ci		if (ret == 1)
47278c2ecf20Sopenharmony_ci			ret = 0;
47288c2ecf20Sopenharmony_ci	}
47298c2ecf20Sopenharmony_ci
47308c2ecf20Sopenharmony_ci	path->slots[0]--;
47318c2ecf20Sopenharmony_ci	btrfs_item_key_to_cpu(path->nodes[0], &found_key, path->slots[0]);
47328c2ecf20Sopenharmony_ci	found_type = found_key.type;
47338c2ecf20Sopenharmony_ci
47348c2ecf20Sopenharmony_ci	/* No extents, but there might be delalloc bits */
47358c2ecf20Sopenharmony_ci	if (found_key.objectid != btrfs_ino(inode) ||
47368c2ecf20Sopenharmony_ci	    found_type != BTRFS_EXTENT_DATA_KEY) {
47378c2ecf20Sopenharmony_ci		/* have to trust i_size as the end */
47388c2ecf20Sopenharmony_ci		last = (u64)-1;
47398c2ecf20Sopenharmony_ci		last_for_get_extent = isize;
47408c2ecf20Sopenharmony_ci	} else {
47418c2ecf20Sopenharmony_ci		/*
47428c2ecf20Sopenharmony_ci		 * remember the start of the last extent.  There are a
47438c2ecf20Sopenharmony_ci		 * bunch of different factors that go into the length of the
47448c2ecf20Sopenharmony_ci		 * extent, so its much less complex to remember where it started
47458c2ecf20Sopenharmony_ci		 */
47468c2ecf20Sopenharmony_ci		last = found_key.offset;
47478c2ecf20Sopenharmony_ci		last_for_get_extent = last + 1;
47488c2ecf20Sopenharmony_ci	}
47498c2ecf20Sopenharmony_ci	btrfs_release_path(path);
47508c2ecf20Sopenharmony_ci
47518c2ecf20Sopenharmony_ci	/*
47528c2ecf20Sopenharmony_ci	 * we might have some extents allocated but more delalloc past those
47538c2ecf20Sopenharmony_ci	 * extents.  so, we trust isize unless the start of the last extent is
47548c2ecf20Sopenharmony_ci	 * beyond isize
47558c2ecf20Sopenharmony_ci	 */
47568c2ecf20Sopenharmony_ci	if (last < isize) {
47578c2ecf20Sopenharmony_ci		last = (u64)-1;
47588c2ecf20Sopenharmony_ci		last_for_get_extent = isize;
47598c2ecf20Sopenharmony_ci	}
47608c2ecf20Sopenharmony_ci
47618c2ecf20Sopenharmony_ci	lock_extent_bits(&inode->io_tree, start, start + len - 1,
47628c2ecf20Sopenharmony_ci			 &cached_state);
47638c2ecf20Sopenharmony_ci
47648c2ecf20Sopenharmony_ci	em = get_extent_skip_holes(inode, start, last_for_get_extent);
47658c2ecf20Sopenharmony_ci	if (!em)
47668c2ecf20Sopenharmony_ci		goto out;
47678c2ecf20Sopenharmony_ci	if (IS_ERR(em)) {
47688c2ecf20Sopenharmony_ci		ret = PTR_ERR(em);
47698c2ecf20Sopenharmony_ci		goto out;
47708c2ecf20Sopenharmony_ci	}
47718c2ecf20Sopenharmony_ci
47728c2ecf20Sopenharmony_ci	while (!end) {
47738c2ecf20Sopenharmony_ci		u64 offset_in_extent = 0;
47748c2ecf20Sopenharmony_ci
47758c2ecf20Sopenharmony_ci		/* break if the extent we found is outside the range */
47768c2ecf20Sopenharmony_ci		if (em->start >= max || extent_map_end(em) < off)
47778c2ecf20Sopenharmony_ci			break;
47788c2ecf20Sopenharmony_ci
47798c2ecf20Sopenharmony_ci		/*
47808c2ecf20Sopenharmony_ci		 * get_extent may return an extent that starts before our
47818c2ecf20Sopenharmony_ci		 * requested range.  We have to make sure the ranges
47828c2ecf20Sopenharmony_ci		 * we return to fiemap always move forward and don't
47838c2ecf20Sopenharmony_ci		 * overlap, so adjust the offsets here
47848c2ecf20Sopenharmony_ci		 */
47858c2ecf20Sopenharmony_ci		em_start = max(em->start, off);
47868c2ecf20Sopenharmony_ci
47878c2ecf20Sopenharmony_ci		/*
47888c2ecf20Sopenharmony_ci		 * record the offset from the start of the extent
47898c2ecf20Sopenharmony_ci		 * for adjusting the disk offset below.  Only do this if the
47908c2ecf20Sopenharmony_ci		 * extent isn't compressed since our in ram offset may be past
47918c2ecf20Sopenharmony_ci		 * what we have actually allocated on disk.
47928c2ecf20Sopenharmony_ci		 */
47938c2ecf20Sopenharmony_ci		if (!test_bit(EXTENT_FLAG_COMPRESSED, &em->flags))
47948c2ecf20Sopenharmony_ci			offset_in_extent = em_start - em->start;
47958c2ecf20Sopenharmony_ci		em_end = extent_map_end(em);
47968c2ecf20Sopenharmony_ci		em_len = em_end - em_start;
47978c2ecf20Sopenharmony_ci		flags = 0;
47988c2ecf20Sopenharmony_ci		if (em->block_start < EXTENT_MAP_LAST_BYTE)
47998c2ecf20Sopenharmony_ci			disko = em->block_start + offset_in_extent;
48008c2ecf20Sopenharmony_ci		else
48018c2ecf20Sopenharmony_ci			disko = 0;
48028c2ecf20Sopenharmony_ci
48038c2ecf20Sopenharmony_ci		/*
48048c2ecf20Sopenharmony_ci		 * bump off for our next call to get_extent
48058c2ecf20Sopenharmony_ci		 */
48068c2ecf20Sopenharmony_ci		off = extent_map_end(em);
48078c2ecf20Sopenharmony_ci		if (off >= max)
48088c2ecf20Sopenharmony_ci			end = 1;
48098c2ecf20Sopenharmony_ci
48108c2ecf20Sopenharmony_ci		if (em->block_start == EXTENT_MAP_LAST_BYTE) {
48118c2ecf20Sopenharmony_ci			end = 1;
48128c2ecf20Sopenharmony_ci			flags |= FIEMAP_EXTENT_LAST;
48138c2ecf20Sopenharmony_ci		} else if (em->block_start == EXTENT_MAP_INLINE) {
48148c2ecf20Sopenharmony_ci			flags |= (FIEMAP_EXTENT_DATA_INLINE |
48158c2ecf20Sopenharmony_ci				  FIEMAP_EXTENT_NOT_ALIGNED);
48168c2ecf20Sopenharmony_ci		} else if (em->block_start == EXTENT_MAP_DELALLOC) {
48178c2ecf20Sopenharmony_ci			flags |= (FIEMAP_EXTENT_DELALLOC |
48188c2ecf20Sopenharmony_ci				  FIEMAP_EXTENT_UNKNOWN);
48198c2ecf20Sopenharmony_ci		} else if (fieinfo->fi_extents_max) {
48208c2ecf20Sopenharmony_ci			u64 bytenr = em->block_start -
48218c2ecf20Sopenharmony_ci				(em->start - em->orig_start);
48228c2ecf20Sopenharmony_ci
48238c2ecf20Sopenharmony_ci			/*
48248c2ecf20Sopenharmony_ci			 * As btrfs supports shared space, this information
48258c2ecf20Sopenharmony_ci			 * can be exported to userspace tools via
48268c2ecf20Sopenharmony_ci			 * flag FIEMAP_EXTENT_SHARED.  If fi_extents_max == 0
48278c2ecf20Sopenharmony_ci			 * then we're just getting a count and we can skip the
48288c2ecf20Sopenharmony_ci			 * lookup stuff.
48298c2ecf20Sopenharmony_ci			 */
48308c2ecf20Sopenharmony_ci			ret = btrfs_check_shared(root, btrfs_ino(inode),
48318c2ecf20Sopenharmony_ci						 bytenr, roots, tmp_ulist);
48328c2ecf20Sopenharmony_ci			if (ret < 0)
48338c2ecf20Sopenharmony_ci				goto out_free;
48348c2ecf20Sopenharmony_ci			if (ret)
48358c2ecf20Sopenharmony_ci				flags |= FIEMAP_EXTENT_SHARED;
48368c2ecf20Sopenharmony_ci			ret = 0;
48378c2ecf20Sopenharmony_ci		}
48388c2ecf20Sopenharmony_ci		if (test_bit(EXTENT_FLAG_COMPRESSED, &em->flags))
48398c2ecf20Sopenharmony_ci			flags |= FIEMAP_EXTENT_ENCODED;
48408c2ecf20Sopenharmony_ci		if (test_bit(EXTENT_FLAG_PREALLOC, &em->flags))
48418c2ecf20Sopenharmony_ci			flags |= FIEMAP_EXTENT_UNWRITTEN;
48428c2ecf20Sopenharmony_ci
48438c2ecf20Sopenharmony_ci		free_extent_map(em);
48448c2ecf20Sopenharmony_ci		em = NULL;
48458c2ecf20Sopenharmony_ci		if ((em_start >= last) || em_len == (u64)-1 ||
48468c2ecf20Sopenharmony_ci		   (last == (u64)-1 && isize <= em_end)) {
48478c2ecf20Sopenharmony_ci			flags |= FIEMAP_EXTENT_LAST;
48488c2ecf20Sopenharmony_ci			end = 1;
48498c2ecf20Sopenharmony_ci		}
48508c2ecf20Sopenharmony_ci
48518c2ecf20Sopenharmony_ci		/* now scan forward to see if this is really the last extent. */
48528c2ecf20Sopenharmony_ci		em = get_extent_skip_holes(inode, off, last_for_get_extent);
48538c2ecf20Sopenharmony_ci		if (IS_ERR(em)) {
48548c2ecf20Sopenharmony_ci			ret = PTR_ERR(em);
48558c2ecf20Sopenharmony_ci			goto out;
48568c2ecf20Sopenharmony_ci		}
48578c2ecf20Sopenharmony_ci		if (!em) {
48588c2ecf20Sopenharmony_ci			flags |= FIEMAP_EXTENT_LAST;
48598c2ecf20Sopenharmony_ci			end = 1;
48608c2ecf20Sopenharmony_ci		}
48618c2ecf20Sopenharmony_ci		ret = emit_fiemap_extent(fieinfo, &cache, em_start, disko,
48628c2ecf20Sopenharmony_ci					   em_len, flags);
48638c2ecf20Sopenharmony_ci		if (ret) {
48648c2ecf20Sopenharmony_ci			if (ret == 1)
48658c2ecf20Sopenharmony_ci				ret = 0;
48668c2ecf20Sopenharmony_ci			goto out_free;
48678c2ecf20Sopenharmony_ci		}
48688c2ecf20Sopenharmony_ci	}
48698c2ecf20Sopenharmony_ciout_free:
48708c2ecf20Sopenharmony_ci	if (!ret)
48718c2ecf20Sopenharmony_ci		ret = emit_last_fiemap_cache(fieinfo, &cache);
48728c2ecf20Sopenharmony_ci	free_extent_map(em);
48738c2ecf20Sopenharmony_ciout:
48748c2ecf20Sopenharmony_ci	unlock_extent_cached(&inode->io_tree, start, start + len - 1,
48758c2ecf20Sopenharmony_ci			     &cached_state);
48768c2ecf20Sopenharmony_ci
48778c2ecf20Sopenharmony_ciout_free_ulist:
48788c2ecf20Sopenharmony_ci	btrfs_free_path(path);
48798c2ecf20Sopenharmony_ci	ulist_free(roots);
48808c2ecf20Sopenharmony_ci	ulist_free(tmp_ulist);
48818c2ecf20Sopenharmony_ci	return ret;
48828c2ecf20Sopenharmony_ci}
48838c2ecf20Sopenharmony_ci
48848c2ecf20Sopenharmony_cistatic void __free_extent_buffer(struct extent_buffer *eb)
48858c2ecf20Sopenharmony_ci{
48868c2ecf20Sopenharmony_ci	kmem_cache_free(extent_buffer_cache, eb);
48878c2ecf20Sopenharmony_ci}
48888c2ecf20Sopenharmony_ci
48898c2ecf20Sopenharmony_ciint extent_buffer_under_io(const struct extent_buffer *eb)
48908c2ecf20Sopenharmony_ci{
48918c2ecf20Sopenharmony_ci	return (atomic_read(&eb->io_pages) ||
48928c2ecf20Sopenharmony_ci		test_bit(EXTENT_BUFFER_WRITEBACK, &eb->bflags) ||
48938c2ecf20Sopenharmony_ci		test_bit(EXTENT_BUFFER_DIRTY, &eb->bflags));
48948c2ecf20Sopenharmony_ci}
48958c2ecf20Sopenharmony_ci
48968c2ecf20Sopenharmony_ci/*
48978c2ecf20Sopenharmony_ci * Release all pages attached to the extent buffer.
48988c2ecf20Sopenharmony_ci */
48998c2ecf20Sopenharmony_cistatic void btrfs_release_extent_buffer_pages(struct extent_buffer *eb)
49008c2ecf20Sopenharmony_ci{
49018c2ecf20Sopenharmony_ci	int i;
49028c2ecf20Sopenharmony_ci	int num_pages;
49038c2ecf20Sopenharmony_ci	int mapped = !test_bit(EXTENT_BUFFER_UNMAPPED, &eb->bflags);
49048c2ecf20Sopenharmony_ci
49058c2ecf20Sopenharmony_ci	BUG_ON(extent_buffer_under_io(eb));
49068c2ecf20Sopenharmony_ci
49078c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
49088c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
49098c2ecf20Sopenharmony_ci		struct page *page = eb->pages[i];
49108c2ecf20Sopenharmony_ci
49118c2ecf20Sopenharmony_ci		if (!page)
49128c2ecf20Sopenharmony_ci			continue;
49138c2ecf20Sopenharmony_ci		if (mapped)
49148c2ecf20Sopenharmony_ci			spin_lock(&page->mapping->private_lock);
49158c2ecf20Sopenharmony_ci		/*
49168c2ecf20Sopenharmony_ci		 * We do this since we'll remove the pages after we've
49178c2ecf20Sopenharmony_ci		 * removed the eb from the radix tree, so we could race
49188c2ecf20Sopenharmony_ci		 * and have this page now attached to the new eb.  So
49198c2ecf20Sopenharmony_ci		 * only clear page_private if it's still connected to
49208c2ecf20Sopenharmony_ci		 * this eb.
49218c2ecf20Sopenharmony_ci		 */
49228c2ecf20Sopenharmony_ci		if (PagePrivate(page) &&
49238c2ecf20Sopenharmony_ci		    page->private == (unsigned long)eb) {
49248c2ecf20Sopenharmony_ci			BUG_ON(test_bit(EXTENT_BUFFER_DIRTY, &eb->bflags));
49258c2ecf20Sopenharmony_ci			BUG_ON(PageDirty(page));
49268c2ecf20Sopenharmony_ci			BUG_ON(PageWriteback(page));
49278c2ecf20Sopenharmony_ci			/*
49288c2ecf20Sopenharmony_ci			 * We need to make sure we haven't be attached
49298c2ecf20Sopenharmony_ci			 * to a new eb.
49308c2ecf20Sopenharmony_ci			 */
49318c2ecf20Sopenharmony_ci			detach_page_private(page);
49328c2ecf20Sopenharmony_ci		}
49338c2ecf20Sopenharmony_ci
49348c2ecf20Sopenharmony_ci		if (mapped)
49358c2ecf20Sopenharmony_ci			spin_unlock(&page->mapping->private_lock);
49368c2ecf20Sopenharmony_ci
49378c2ecf20Sopenharmony_ci		/* One for when we allocated the page */
49388c2ecf20Sopenharmony_ci		put_page(page);
49398c2ecf20Sopenharmony_ci	}
49408c2ecf20Sopenharmony_ci}
49418c2ecf20Sopenharmony_ci
49428c2ecf20Sopenharmony_ci/*
49438c2ecf20Sopenharmony_ci * Helper for releasing the extent buffer.
49448c2ecf20Sopenharmony_ci */
49458c2ecf20Sopenharmony_cistatic inline void btrfs_release_extent_buffer(struct extent_buffer *eb)
49468c2ecf20Sopenharmony_ci{
49478c2ecf20Sopenharmony_ci	btrfs_release_extent_buffer_pages(eb);
49488c2ecf20Sopenharmony_ci	btrfs_leak_debug_del(&eb->fs_info->eb_leak_lock, &eb->leak_list);
49498c2ecf20Sopenharmony_ci	__free_extent_buffer(eb);
49508c2ecf20Sopenharmony_ci}
49518c2ecf20Sopenharmony_ci
49528c2ecf20Sopenharmony_cistatic struct extent_buffer *
49538c2ecf20Sopenharmony_ci__alloc_extent_buffer(struct btrfs_fs_info *fs_info, u64 start,
49548c2ecf20Sopenharmony_ci		      unsigned long len)
49558c2ecf20Sopenharmony_ci{
49568c2ecf20Sopenharmony_ci	struct extent_buffer *eb = NULL;
49578c2ecf20Sopenharmony_ci
49588c2ecf20Sopenharmony_ci	eb = kmem_cache_zalloc(extent_buffer_cache, GFP_NOFS|__GFP_NOFAIL);
49598c2ecf20Sopenharmony_ci	eb->start = start;
49608c2ecf20Sopenharmony_ci	eb->len = len;
49618c2ecf20Sopenharmony_ci	eb->fs_info = fs_info;
49628c2ecf20Sopenharmony_ci	eb->bflags = 0;
49638c2ecf20Sopenharmony_ci	rwlock_init(&eb->lock);
49648c2ecf20Sopenharmony_ci	atomic_set(&eb->blocking_readers, 0);
49658c2ecf20Sopenharmony_ci	eb->blocking_writers = 0;
49668c2ecf20Sopenharmony_ci	eb->lock_recursed = false;
49678c2ecf20Sopenharmony_ci	init_waitqueue_head(&eb->write_lock_wq);
49688c2ecf20Sopenharmony_ci	init_waitqueue_head(&eb->read_lock_wq);
49698c2ecf20Sopenharmony_ci
49708c2ecf20Sopenharmony_ci	btrfs_leak_debug_add(&fs_info->eb_leak_lock, &eb->leak_list,
49718c2ecf20Sopenharmony_ci			     &fs_info->allocated_ebs);
49728c2ecf20Sopenharmony_ci
49738c2ecf20Sopenharmony_ci	spin_lock_init(&eb->refs_lock);
49748c2ecf20Sopenharmony_ci	atomic_set(&eb->refs, 1);
49758c2ecf20Sopenharmony_ci	atomic_set(&eb->io_pages, 0);
49768c2ecf20Sopenharmony_ci
49778c2ecf20Sopenharmony_ci	/*
49788c2ecf20Sopenharmony_ci	 * Sanity checks, currently the maximum is 64k covered by 16x 4k pages
49798c2ecf20Sopenharmony_ci	 */
49808c2ecf20Sopenharmony_ci	BUILD_BUG_ON(BTRFS_MAX_METADATA_BLOCKSIZE
49818c2ecf20Sopenharmony_ci		> MAX_INLINE_EXTENT_BUFFER_SIZE);
49828c2ecf20Sopenharmony_ci	BUG_ON(len > MAX_INLINE_EXTENT_BUFFER_SIZE);
49838c2ecf20Sopenharmony_ci
49848c2ecf20Sopenharmony_ci#ifdef CONFIG_BTRFS_DEBUG
49858c2ecf20Sopenharmony_ci	eb->spinning_writers = 0;
49868c2ecf20Sopenharmony_ci	atomic_set(&eb->spinning_readers, 0);
49878c2ecf20Sopenharmony_ci	atomic_set(&eb->read_locks, 0);
49888c2ecf20Sopenharmony_ci	eb->write_locks = 0;
49898c2ecf20Sopenharmony_ci#endif
49908c2ecf20Sopenharmony_ci
49918c2ecf20Sopenharmony_ci	return eb;
49928c2ecf20Sopenharmony_ci}
49938c2ecf20Sopenharmony_ci
49948c2ecf20Sopenharmony_cistruct extent_buffer *btrfs_clone_extent_buffer(const struct extent_buffer *src)
49958c2ecf20Sopenharmony_ci{
49968c2ecf20Sopenharmony_ci	int i;
49978c2ecf20Sopenharmony_ci	struct page *p;
49988c2ecf20Sopenharmony_ci	struct extent_buffer *new;
49998c2ecf20Sopenharmony_ci	int num_pages = num_extent_pages(src);
50008c2ecf20Sopenharmony_ci
50018c2ecf20Sopenharmony_ci	new = __alloc_extent_buffer(src->fs_info, src->start, src->len);
50028c2ecf20Sopenharmony_ci	if (new == NULL)
50038c2ecf20Sopenharmony_ci		return NULL;
50048c2ecf20Sopenharmony_ci
50058c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
50068c2ecf20Sopenharmony_ci		p = alloc_page(GFP_NOFS);
50078c2ecf20Sopenharmony_ci		if (!p) {
50088c2ecf20Sopenharmony_ci			btrfs_release_extent_buffer(new);
50098c2ecf20Sopenharmony_ci			return NULL;
50108c2ecf20Sopenharmony_ci		}
50118c2ecf20Sopenharmony_ci		attach_extent_buffer_page(new, p);
50128c2ecf20Sopenharmony_ci		WARN_ON(PageDirty(p));
50138c2ecf20Sopenharmony_ci		SetPageUptodate(p);
50148c2ecf20Sopenharmony_ci		new->pages[i] = p;
50158c2ecf20Sopenharmony_ci		copy_page(page_address(p), page_address(src->pages[i]));
50168c2ecf20Sopenharmony_ci	}
50178c2ecf20Sopenharmony_ci
50188c2ecf20Sopenharmony_ci	set_bit(EXTENT_BUFFER_UPTODATE, &new->bflags);
50198c2ecf20Sopenharmony_ci	set_bit(EXTENT_BUFFER_UNMAPPED, &new->bflags);
50208c2ecf20Sopenharmony_ci
50218c2ecf20Sopenharmony_ci	return new;
50228c2ecf20Sopenharmony_ci}
50238c2ecf20Sopenharmony_ci
50248c2ecf20Sopenharmony_cistruct extent_buffer *__alloc_dummy_extent_buffer(struct btrfs_fs_info *fs_info,
50258c2ecf20Sopenharmony_ci						  u64 start, unsigned long len)
50268c2ecf20Sopenharmony_ci{
50278c2ecf20Sopenharmony_ci	struct extent_buffer *eb;
50288c2ecf20Sopenharmony_ci	int num_pages;
50298c2ecf20Sopenharmony_ci	int i;
50308c2ecf20Sopenharmony_ci
50318c2ecf20Sopenharmony_ci	eb = __alloc_extent_buffer(fs_info, start, len);
50328c2ecf20Sopenharmony_ci	if (!eb)
50338c2ecf20Sopenharmony_ci		return NULL;
50348c2ecf20Sopenharmony_ci
50358c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
50368c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
50378c2ecf20Sopenharmony_ci		eb->pages[i] = alloc_page(GFP_NOFS);
50388c2ecf20Sopenharmony_ci		if (!eb->pages[i])
50398c2ecf20Sopenharmony_ci			goto err;
50408c2ecf20Sopenharmony_ci	}
50418c2ecf20Sopenharmony_ci	set_extent_buffer_uptodate(eb);
50428c2ecf20Sopenharmony_ci	btrfs_set_header_nritems(eb, 0);
50438c2ecf20Sopenharmony_ci	set_bit(EXTENT_BUFFER_UNMAPPED, &eb->bflags);
50448c2ecf20Sopenharmony_ci
50458c2ecf20Sopenharmony_ci	return eb;
50468c2ecf20Sopenharmony_cierr:
50478c2ecf20Sopenharmony_ci	for (; i > 0; i--)
50488c2ecf20Sopenharmony_ci		__free_page(eb->pages[i - 1]);
50498c2ecf20Sopenharmony_ci	__free_extent_buffer(eb);
50508c2ecf20Sopenharmony_ci	return NULL;
50518c2ecf20Sopenharmony_ci}
50528c2ecf20Sopenharmony_ci
50538c2ecf20Sopenharmony_cistruct extent_buffer *alloc_dummy_extent_buffer(struct btrfs_fs_info *fs_info,
50548c2ecf20Sopenharmony_ci						u64 start)
50558c2ecf20Sopenharmony_ci{
50568c2ecf20Sopenharmony_ci	return __alloc_dummy_extent_buffer(fs_info, start, fs_info->nodesize);
50578c2ecf20Sopenharmony_ci}
50588c2ecf20Sopenharmony_ci
50598c2ecf20Sopenharmony_cistatic void check_buffer_tree_ref(struct extent_buffer *eb)
50608c2ecf20Sopenharmony_ci{
50618c2ecf20Sopenharmony_ci	int refs;
50628c2ecf20Sopenharmony_ci	/*
50638c2ecf20Sopenharmony_ci	 * The TREE_REF bit is first set when the extent_buffer is added
50648c2ecf20Sopenharmony_ci	 * to the radix tree. It is also reset, if unset, when a new reference
50658c2ecf20Sopenharmony_ci	 * is created by find_extent_buffer.
50668c2ecf20Sopenharmony_ci	 *
50678c2ecf20Sopenharmony_ci	 * It is only cleared in two cases: freeing the last non-tree
50688c2ecf20Sopenharmony_ci	 * reference to the extent_buffer when its STALE bit is set or
50698c2ecf20Sopenharmony_ci	 * calling releasepage when the tree reference is the only reference.
50708c2ecf20Sopenharmony_ci	 *
50718c2ecf20Sopenharmony_ci	 * In both cases, care is taken to ensure that the extent_buffer's
50728c2ecf20Sopenharmony_ci	 * pages are not under io. However, releasepage can be concurrently
50738c2ecf20Sopenharmony_ci	 * called with creating new references, which is prone to race
50748c2ecf20Sopenharmony_ci	 * conditions between the calls to check_buffer_tree_ref in those
50758c2ecf20Sopenharmony_ci	 * codepaths and clearing TREE_REF in try_release_extent_buffer.
50768c2ecf20Sopenharmony_ci	 *
50778c2ecf20Sopenharmony_ci	 * The actual lifetime of the extent_buffer in the radix tree is
50788c2ecf20Sopenharmony_ci	 * adequately protected by the refcount, but the TREE_REF bit and
50798c2ecf20Sopenharmony_ci	 * its corresponding reference are not. To protect against this
50808c2ecf20Sopenharmony_ci	 * class of races, we call check_buffer_tree_ref from the codepaths
50818c2ecf20Sopenharmony_ci	 * which trigger io after they set eb->io_pages. Note that once io is
50828c2ecf20Sopenharmony_ci	 * initiated, TREE_REF can no longer be cleared, so that is the
50838c2ecf20Sopenharmony_ci	 * moment at which any such race is best fixed.
50848c2ecf20Sopenharmony_ci	 */
50858c2ecf20Sopenharmony_ci	refs = atomic_read(&eb->refs);
50868c2ecf20Sopenharmony_ci	if (refs >= 2 && test_bit(EXTENT_BUFFER_TREE_REF, &eb->bflags))
50878c2ecf20Sopenharmony_ci		return;
50888c2ecf20Sopenharmony_ci
50898c2ecf20Sopenharmony_ci	spin_lock(&eb->refs_lock);
50908c2ecf20Sopenharmony_ci	if (!test_and_set_bit(EXTENT_BUFFER_TREE_REF, &eb->bflags))
50918c2ecf20Sopenharmony_ci		atomic_inc(&eb->refs);
50928c2ecf20Sopenharmony_ci	spin_unlock(&eb->refs_lock);
50938c2ecf20Sopenharmony_ci}
50948c2ecf20Sopenharmony_ci
50958c2ecf20Sopenharmony_cistatic void mark_extent_buffer_accessed(struct extent_buffer *eb,
50968c2ecf20Sopenharmony_ci		struct page *accessed)
50978c2ecf20Sopenharmony_ci{
50988c2ecf20Sopenharmony_ci	int num_pages, i;
50998c2ecf20Sopenharmony_ci
51008c2ecf20Sopenharmony_ci	check_buffer_tree_ref(eb);
51018c2ecf20Sopenharmony_ci
51028c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
51038c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
51048c2ecf20Sopenharmony_ci		struct page *p = eb->pages[i];
51058c2ecf20Sopenharmony_ci
51068c2ecf20Sopenharmony_ci		if (p != accessed)
51078c2ecf20Sopenharmony_ci			mark_page_accessed(p);
51088c2ecf20Sopenharmony_ci	}
51098c2ecf20Sopenharmony_ci}
51108c2ecf20Sopenharmony_ci
51118c2ecf20Sopenharmony_cistruct extent_buffer *find_extent_buffer(struct btrfs_fs_info *fs_info,
51128c2ecf20Sopenharmony_ci					 u64 start)
51138c2ecf20Sopenharmony_ci{
51148c2ecf20Sopenharmony_ci	struct extent_buffer *eb;
51158c2ecf20Sopenharmony_ci
51168c2ecf20Sopenharmony_ci	rcu_read_lock();
51178c2ecf20Sopenharmony_ci	eb = radix_tree_lookup(&fs_info->buffer_radix,
51188c2ecf20Sopenharmony_ci			       start >> PAGE_SHIFT);
51198c2ecf20Sopenharmony_ci	if (eb && atomic_inc_not_zero(&eb->refs)) {
51208c2ecf20Sopenharmony_ci		rcu_read_unlock();
51218c2ecf20Sopenharmony_ci		/*
51228c2ecf20Sopenharmony_ci		 * Lock our eb's refs_lock to avoid races with
51238c2ecf20Sopenharmony_ci		 * free_extent_buffer. When we get our eb it might be flagged
51248c2ecf20Sopenharmony_ci		 * with EXTENT_BUFFER_STALE and another task running
51258c2ecf20Sopenharmony_ci		 * free_extent_buffer might have seen that flag set,
51268c2ecf20Sopenharmony_ci		 * eb->refs == 2, that the buffer isn't under IO (dirty and
51278c2ecf20Sopenharmony_ci		 * writeback flags not set) and it's still in the tree (flag
51288c2ecf20Sopenharmony_ci		 * EXTENT_BUFFER_TREE_REF set), therefore being in the process
51298c2ecf20Sopenharmony_ci		 * of decrementing the extent buffer's reference count twice.
51308c2ecf20Sopenharmony_ci		 * So here we could race and increment the eb's reference count,
51318c2ecf20Sopenharmony_ci		 * clear its stale flag, mark it as dirty and drop our reference
51328c2ecf20Sopenharmony_ci		 * before the other task finishes executing free_extent_buffer,
51338c2ecf20Sopenharmony_ci		 * which would later result in an attempt to free an extent
51348c2ecf20Sopenharmony_ci		 * buffer that is dirty.
51358c2ecf20Sopenharmony_ci		 */
51368c2ecf20Sopenharmony_ci		if (test_bit(EXTENT_BUFFER_STALE, &eb->bflags)) {
51378c2ecf20Sopenharmony_ci			spin_lock(&eb->refs_lock);
51388c2ecf20Sopenharmony_ci			spin_unlock(&eb->refs_lock);
51398c2ecf20Sopenharmony_ci		}
51408c2ecf20Sopenharmony_ci		mark_extent_buffer_accessed(eb, NULL);
51418c2ecf20Sopenharmony_ci		return eb;
51428c2ecf20Sopenharmony_ci	}
51438c2ecf20Sopenharmony_ci	rcu_read_unlock();
51448c2ecf20Sopenharmony_ci
51458c2ecf20Sopenharmony_ci	return NULL;
51468c2ecf20Sopenharmony_ci}
51478c2ecf20Sopenharmony_ci
51488c2ecf20Sopenharmony_ci#ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
51498c2ecf20Sopenharmony_cistruct extent_buffer *alloc_test_extent_buffer(struct btrfs_fs_info *fs_info,
51508c2ecf20Sopenharmony_ci					u64 start)
51518c2ecf20Sopenharmony_ci{
51528c2ecf20Sopenharmony_ci	struct extent_buffer *eb, *exists = NULL;
51538c2ecf20Sopenharmony_ci	int ret;
51548c2ecf20Sopenharmony_ci
51558c2ecf20Sopenharmony_ci	eb = find_extent_buffer(fs_info, start);
51568c2ecf20Sopenharmony_ci	if (eb)
51578c2ecf20Sopenharmony_ci		return eb;
51588c2ecf20Sopenharmony_ci	eb = alloc_dummy_extent_buffer(fs_info, start);
51598c2ecf20Sopenharmony_ci	if (!eb)
51608c2ecf20Sopenharmony_ci		return ERR_PTR(-ENOMEM);
51618c2ecf20Sopenharmony_ci	eb->fs_info = fs_info;
51628c2ecf20Sopenharmony_ciagain:
51638c2ecf20Sopenharmony_ci	ret = radix_tree_preload(GFP_NOFS);
51648c2ecf20Sopenharmony_ci	if (ret) {
51658c2ecf20Sopenharmony_ci		exists = ERR_PTR(ret);
51668c2ecf20Sopenharmony_ci		goto free_eb;
51678c2ecf20Sopenharmony_ci	}
51688c2ecf20Sopenharmony_ci	spin_lock(&fs_info->buffer_lock);
51698c2ecf20Sopenharmony_ci	ret = radix_tree_insert(&fs_info->buffer_radix,
51708c2ecf20Sopenharmony_ci				start >> PAGE_SHIFT, eb);
51718c2ecf20Sopenharmony_ci	spin_unlock(&fs_info->buffer_lock);
51728c2ecf20Sopenharmony_ci	radix_tree_preload_end();
51738c2ecf20Sopenharmony_ci	if (ret == -EEXIST) {
51748c2ecf20Sopenharmony_ci		exists = find_extent_buffer(fs_info, start);
51758c2ecf20Sopenharmony_ci		if (exists)
51768c2ecf20Sopenharmony_ci			goto free_eb;
51778c2ecf20Sopenharmony_ci		else
51788c2ecf20Sopenharmony_ci			goto again;
51798c2ecf20Sopenharmony_ci	}
51808c2ecf20Sopenharmony_ci	check_buffer_tree_ref(eb);
51818c2ecf20Sopenharmony_ci	set_bit(EXTENT_BUFFER_IN_TREE, &eb->bflags);
51828c2ecf20Sopenharmony_ci
51838c2ecf20Sopenharmony_ci	return eb;
51848c2ecf20Sopenharmony_cifree_eb:
51858c2ecf20Sopenharmony_ci	btrfs_release_extent_buffer(eb);
51868c2ecf20Sopenharmony_ci	return exists;
51878c2ecf20Sopenharmony_ci}
51888c2ecf20Sopenharmony_ci#endif
51898c2ecf20Sopenharmony_ci
51908c2ecf20Sopenharmony_cistruct extent_buffer *alloc_extent_buffer(struct btrfs_fs_info *fs_info,
51918c2ecf20Sopenharmony_ci					  u64 start)
51928c2ecf20Sopenharmony_ci{
51938c2ecf20Sopenharmony_ci	unsigned long len = fs_info->nodesize;
51948c2ecf20Sopenharmony_ci	int num_pages;
51958c2ecf20Sopenharmony_ci	int i;
51968c2ecf20Sopenharmony_ci	unsigned long index = start >> PAGE_SHIFT;
51978c2ecf20Sopenharmony_ci	struct extent_buffer *eb;
51988c2ecf20Sopenharmony_ci	struct extent_buffer *exists = NULL;
51998c2ecf20Sopenharmony_ci	struct page *p;
52008c2ecf20Sopenharmony_ci	struct address_space *mapping = fs_info->btree_inode->i_mapping;
52018c2ecf20Sopenharmony_ci	int uptodate = 1;
52028c2ecf20Sopenharmony_ci	int ret;
52038c2ecf20Sopenharmony_ci
52048c2ecf20Sopenharmony_ci	if (!IS_ALIGNED(start, fs_info->sectorsize)) {
52058c2ecf20Sopenharmony_ci		btrfs_err(fs_info, "bad tree block start %llu", start);
52068c2ecf20Sopenharmony_ci		return ERR_PTR(-EINVAL);
52078c2ecf20Sopenharmony_ci	}
52088c2ecf20Sopenharmony_ci
52098c2ecf20Sopenharmony_ci	eb = find_extent_buffer(fs_info, start);
52108c2ecf20Sopenharmony_ci	if (eb)
52118c2ecf20Sopenharmony_ci		return eb;
52128c2ecf20Sopenharmony_ci
52138c2ecf20Sopenharmony_ci	eb = __alloc_extent_buffer(fs_info, start, len);
52148c2ecf20Sopenharmony_ci	if (!eb)
52158c2ecf20Sopenharmony_ci		return ERR_PTR(-ENOMEM);
52168c2ecf20Sopenharmony_ci
52178c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
52188c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++, index++) {
52198c2ecf20Sopenharmony_ci		p = find_or_create_page(mapping, index, GFP_NOFS|__GFP_NOFAIL);
52208c2ecf20Sopenharmony_ci		if (!p) {
52218c2ecf20Sopenharmony_ci			exists = ERR_PTR(-ENOMEM);
52228c2ecf20Sopenharmony_ci			goto free_eb;
52238c2ecf20Sopenharmony_ci		}
52248c2ecf20Sopenharmony_ci
52258c2ecf20Sopenharmony_ci		spin_lock(&mapping->private_lock);
52268c2ecf20Sopenharmony_ci		if (PagePrivate(p)) {
52278c2ecf20Sopenharmony_ci			/*
52288c2ecf20Sopenharmony_ci			 * We could have already allocated an eb for this page
52298c2ecf20Sopenharmony_ci			 * and attached one so lets see if we can get a ref on
52308c2ecf20Sopenharmony_ci			 * the existing eb, and if we can we know it's good and
52318c2ecf20Sopenharmony_ci			 * we can just return that one, else we know we can just
52328c2ecf20Sopenharmony_ci			 * overwrite page->private.
52338c2ecf20Sopenharmony_ci			 */
52348c2ecf20Sopenharmony_ci			exists = (struct extent_buffer *)p->private;
52358c2ecf20Sopenharmony_ci			if (atomic_inc_not_zero(&exists->refs)) {
52368c2ecf20Sopenharmony_ci				spin_unlock(&mapping->private_lock);
52378c2ecf20Sopenharmony_ci				unlock_page(p);
52388c2ecf20Sopenharmony_ci				put_page(p);
52398c2ecf20Sopenharmony_ci				mark_extent_buffer_accessed(exists, p);
52408c2ecf20Sopenharmony_ci				goto free_eb;
52418c2ecf20Sopenharmony_ci			}
52428c2ecf20Sopenharmony_ci			exists = NULL;
52438c2ecf20Sopenharmony_ci
52448c2ecf20Sopenharmony_ci			/*
52458c2ecf20Sopenharmony_ci			 * Do this so attach doesn't complain and we need to
52468c2ecf20Sopenharmony_ci			 * drop the ref the old guy had.
52478c2ecf20Sopenharmony_ci			 */
52488c2ecf20Sopenharmony_ci			ClearPagePrivate(p);
52498c2ecf20Sopenharmony_ci			WARN_ON(PageDirty(p));
52508c2ecf20Sopenharmony_ci			put_page(p);
52518c2ecf20Sopenharmony_ci		}
52528c2ecf20Sopenharmony_ci		attach_extent_buffer_page(eb, p);
52538c2ecf20Sopenharmony_ci		spin_unlock(&mapping->private_lock);
52548c2ecf20Sopenharmony_ci		WARN_ON(PageDirty(p));
52558c2ecf20Sopenharmony_ci		eb->pages[i] = p;
52568c2ecf20Sopenharmony_ci		if (!PageUptodate(p))
52578c2ecf20Sopenharmony_ci			uptodate = 0;
52588c2ecf20Sopenharmony_ci
52598c2ecf20Sopenharmony_ci		/*
52608c2ecf20Sopenharmony_ci		 * We can't unlock the pages just yet since the extent buffer
52618c2ecf20Sopenharmony_ci		 * hasn't been properly inserted in the radix tree, this
52628c2ecf20Sopenharmony_ci		 * opens a race with btree_releasepage which can free a page
52638c2ecf20Sopenharmony_ci		 * while we are still filling in all pages for the buffer and
52648c2ecf20Sopenharmony_ci		 * we could crash.
52658c2ecf20Sopenharmony_ci		 */
52668c2ecf20Sopenharmony_ci	}
52678c2ecf20Sopenharmony_ci	if (uptodate)
52688c2ecf20Sopenharmony_ci		set_bit(EXTENT_BUFFER_UPTODATE, &eb->bflags);
52698c2ecf20Sopenharmony_ciagain:
52708c2ecf20Sopenharmony_ci	ret = radix_tree_preload(GFP_NOFS);
52718c2ecf20Sopenharmony_ci	if (ret) {
52728c2ecf20Sopenharmony_ci		exists = ERR_PTR(ret);
52738c2ecf20Sopenharmony_ci		goto free_eb;
52748c2ecf20Sopenharmony_ci	}
52758c2ecf20Sopenharmony_ci
52768c2ecf20Sopenharmony_ci	spin_lock(&fs_info->buffer_lock);
52778c2ecf20Sopenharmony_ci	ret = radix_tree_insert(&fs_info->buffer_radix,
52788c2ecf20Sopenharmony_ci				start >> PAGE_SHIFT, eb);
52798c2ecf20Sopenharmony_ci	spin_unlock(&fs_info->buffer_lock);
52808c2ecf20Sopenharmony_ci	radix_tree_preload_end();
52818c2ecf20Sopenharmony_ci	if (ret == -EEXIST) {
52828c2ecf20Sopenharmony_ci		exists = find_extent_buffer(fs_info, start);
52838c2ecf20Sopenharmony_ci		if (exists)
52848c2ecf20Sopenharmony_ci			goto free_eb;
52858c2ecf20Sopenharmony_ci		else
52868c2ecf20Sopenharmony_ci			goto again;
52878c2ecf20Sopenharmony_ci	}
52888c2ecf20Sopenharmony_ci	/* add one reference for the tree */
52898c2ecf20Sopenharmony_ci	check_buffer_tree_ref(eb);
52908c2ecf20Sopenharmony_ci	set_bit(EXTENT_BUFFER_IN_TREE, &eb->bflags);
52918c2ecf20Sopenharmony_ci
52928c2ecf20Sopenharmony_ci	/*
52938c2ecf20Sopenharmony_ci	 * Now it's safe to unlock the pages because any calls to
52948c2ecf20Sopenharmony_ci	 * btree_releasepage will correctly detect that a page belongs to a
52958c2ecf20Sopenharmony_ci	 * live buffer and won't free them prematurely.
52968c2ecf20Sopenharmony_ci	 */
52978c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++)
52988c2ecf20Sopenharmony_ci		unlock_page(eb->pages[i]);
52998c2ecf20Sopenharmony_ci	return eb;
53008c2ecf20Sopenharmony_ci
53018c2ecf20Sopenharmony_cifree_eb:
53028c2ecf20Sopenharmony_ci	WARN_ON(!atomic_dec_and_test(&eb->refs));
53038c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
53048c2ecf20Sopenharmony_ci		if (eb->pages[i])
53058c2ecf20Sopenharmony_ci			unlock_page(eb->pages[i]);
53068c2ecf20Sopenharmony_ci	}
53078c2ecf20Sopenharmony_ci
53088c2ecf20Sopenharmony_ci	btrfs_release_extent_buffer(eb);
53098c2ecf20Sopenharmony_ci	return exists;
53108c2ecf20Sopenharmony_ci}
53118c2ecf20Sopenharmony_ci
53128c2ecf20Sopenharmony_cistatic inline void btrfs_release_extent_buffer_rcu(struct rcu_head *head)
53138c2ecf20Sopenharmony_ci{
53148c2ecf20Sopenharmony_ci	struct extent_buffer *eb =
53158c2ecf20Sopenharmony_ci			container_of(head, struct extent_buffer, rcu_head);
53168c2ecf20Sopenharmony_ci
53178c2ecf20Sopenharmony_ci	__free_extent_buffer(eb);
53188c2ecf20Sopenharmony_ci}
53198c2ecf20Sopenharmony_ci
53208c2ecf20Sopenharmony_cistatic int release_extent_buffer(struct extent_buffer *eb)
53218c2ecf20Sopenharmony_ci	__releases(&eb->refs_lock)
53228c2ecf20Sopenharmony_ci{
53238c2ecf20Sopenharmony_ci	lockdep_assert_held(&eb->refs_lock);
53248c2ecf20Sopenharmony_ci
53258c2ecf20Sopenharmony_ci	WARN_ON(atomic_read(&eb->refs) == 0);
53268c2ecf20Sopenharmony_ci	if (atomic_dec_and_test(&eb->refs)) {
53278c2ecf20Sopenharmony_ci		if (test_and_clear_bit(EXTENT_BUFFER_IN_TREE, &eb->bflags)) {
53288c2ecf20Sopenharmony_ci			struct btrfs_fs_info *fs_info = eb->fs_info;
53298c2ecf20Sopenharmony_ci
53308c2ecf20Sopenharmony_ci			spin_unlock(&eb->refs_lock);
53318c2ecf20Sopenharmony_ci
53328c2ecf20Sopenharmony_ci			spin_lock(&fs_info->buffer_lock);
53338c2ecf20Sopenharmony_ci			radix_tree_delete(&fs_info->buffer_radix,
53348c2ecf20Sopenharmony_ci					  eb->start >> PAGE_SHIFT);
53358c2ecf20Sopenharmony_ci			spin_unlock(&fs_info->buffer_lock);
53368c2ecf20Sopenharmony_ci		} else {
53378c2ecf20Sopenharmony_ci			spin_unlock(&eb->refs_lock);
53388c2ecf20Sopenharmony_ci		}
53398c2ecf20Sopenharmony_ci
53408c2ecf20Sopenharmony_ci		btrfs_leak_debug_del(&eb->fs_info->eb_leak_lock, &eb->leak_list);
53418c2ecf20Sopenharmony_ci		/* Should be safe to release our pages at this point */
53428c2ecf20Sopenharmony_ci		btrfs_release_extent_buffer_pages(eb);
53438c2ecf20Sopenharmony_ci#ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS
53448c2ecf20Sopenharmony_ci		if (unlikely(test_bit(EXTENT_BUFFER_UNMAPPED, &eb->bflags))) {
53458c2ecf20Sopenharmony_ci			__free_extent_buffer(eb);
53468c2ecf20Sopenharmony_ci			return 1;
53478c2ecf20Sopenharmony_ci		}
53488c2ecf20Sopenharmony_ci#endif
53498c2ecf20Sopenharmony_ci		call_rcu(&eb->rcu_head, btrfs_release_extent_buffer_rcu);
53508c2ecf20Sopenharmony_ci		return 1;
53518c2ecf20Sopenharmony_ci	}
53528c2ecf20Sopenharmony_ci	spin_unlock(&eb->refs_lock);
53538c2ecf20Sopenharmony_ci
53548c2ecf20Sopenharmony_ci	return 0;
53558c2ecf20Sopenharmony_ci}
53568c2ecf20Sopenharmony_ci
53578c2ecf20Sopenharmony_civoid free_extent_buffer(struct extent_buffer *eb)
53588c2ecf20Sopenharmony_ci{
53598c2ecf20Sopenharmony_ci	int refs;
53608c2ecf20Sopenharmony_ci	int old;
53618c2ecf20Sopenharmony_ci	if (!eb)
53628c2ecf20Sopenharmony_ci		return;
53638c2ecf20Sopenharmony_ci
53648c2ecf20Sopenharmony_ci	while (1) {
53658c2ecf20Sopenharmony_ci		refs = atomic_read(&eb->refs);
53668c2ecf20Sopenharmony_ci		if ((!test_bit(EXTENT_BUFFER_UNMAPPED, &eb->bflags) && refs <= 3)
53678c2ecf20Sopenharmony_ci		    || (test_bit(EXTENT_BUFFER_UNMAPPED, &eb->bflags) &&
53688c2ecf20Sopenharmony_ci			refs == 1))
53698c2ecf20Sopenharmony_ci			break;
53708c2ecf20Sopenharmony_ci		old = atomic_cmpxchg(&eb->refs, refs, refs - 1);
53718c2ecf20Sopenharmony_ci		if (old == refs)
53728c2ecf20Sopenharmony_ci			return;
53738c2ecf20Sopenharmony_ci	}
53748c2ecf20Sopenharmony_ci
53758c2ecf20Sopenharmony_ci	spin_lock(&eb->refs_lock);
53768c2ecf20Sopenharmony_ci	if (atomic_read(&eb->refs) == 2 &&
53778c2ecf20Sopenharmony_ci	    test_bit(EXTENT_BUFFER_STALE, &eb->bflags) &&
53788c2ecf20Sopenharmony_ci	    !extent_buffer_under_io(eb) &&
53798c2ecf20Sopenharmony_ci	    test_and_clear_bit(EXTENT_BUFFER_TREE_REF, &eb->bflags))
53808c2ecf20Sopenharmony_ci		atomic_dec(&eb->refs);
53818c2ecf20Sopenharmony_ci
53828c2ecf20Sopenharmony_ci	/*
53838c2ecf20Sopenharmony_ci	 * I know this is terrible, but it's temporary until we stop tracking
53848c2ecf20Sopenharmony_ci	 * the uptodate bits and such for the extent buffers.
53858c2ecf20Sopenharmony_ci	 */
53868c2ecf20Sopenharmony_ci	release_extent_buffer(eb);
53878c2ecf20Sopenharmony_ci}
53888c2ecf20Sopenharmony_ci
53898c2ecf20Sopenharmony_civoid free_extent_buffer_stale(struct extent_buffer *eb)
53908c2ecf20Sopenharmony_ci{
53918c2ecf20Sopenharmony_ci	if (!eb)
53928c2ecf20Sopenharmony_ci		return;
53938c2ecf20Sopenharmony_ci
53948c2ecf20Sopenharmony_ci	spin_lock(&eb->refs_lock);
53958c2ecf20Sopenharmony_ci	set_bit(EXTENT_BUFFER_STALE, &eb->bflags);
53968c2ecf20Sopenharmony_ci
53978c2ecf20Sopenharmony_ci	if (atomic_read(&eb->refs) == 2 && !extent_buffer_under_io(eb) &&
53988c2ecf20Sopenharmony_ci	    test_and_clear_bit(EXTENT_BUFFER_TREE_REF, &eb->bflags))
53998c2ecf20Sopenharmony_ci		atomic_dec(&eb->refs);
54008c2ecf20Sopenharmony_ci	release_extent_buffer(eb);
54018c2ecf20Sopenharmony_ci}
54028c2ecf20Sopenharmony_ci
54038c2ecf20Sopenharmony_civoid clear_extent_buffer_dirty(const struct extent_buffer *eb)
54048c2ecf20Sopenharmony_ci{
54058c2ecf20Sopenharmony_ci	int i;
54068c2ecf20Sopenharmony_ci	int num_pages;
54078c2ecf20Sopenharmony_ci	struct page *page;
54088c2ecf20Sopenharmony_ci
54098c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
54108c2ecf20Sopenharmony_ci
54118c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
54128c2ecf20Sopenharmony_ci		page = eb->pages[i];
54138c2ecf20Sopenharmony_ci		if (!PageDirty(page))
54148c2ecf20Sopenharmony_ci			continue;
54158c2ecf20Sopenharmony_ci
54168c2ecf20Sopenharmony_ci		lock_page(page);
54178c2ecf20Sopenharmony_ci		WARN_ON(!PagePrivate(page));
54188c2ecf20Sopenharmony_ci
54198c2ecf20Sopenharmony_ci		clear_page_dirty_for_io(page);
54208c2ecf20Sopenharmony_ci		xa_lock_irq(&page->mapping->i_pages);
54218c2ecf20Sopenharmony_ci		if (!PageDirty(page))
54228c2ecf20Sopenharmony_ci			__xa_clear_mark(&page->mapping->i_pages,
54238c2ecf20Sopenharmony_ci					page_index(page), PAGECACHE_TAG_DIRTY);
54248c2ecf20Sopenharmony_ci		xa_unlock_irq(&page->mapping->i_pages);
54258c2ecf20Sopenharmony_ci		ClearPageError(page);
54268c2ecf20Sopenharmony_ci		unlock_page(page);
54278c2ecf20Sopenharmony_ci	}
54288c2ecf20Sopenharmony_ci	WARN_ON(atomic_read(&eb->refs) == 0);
54298c2ecf20Sopenharmony_ci}
54308c2ecf20Sopenharmony_ci
54318c2ecf20Sopenharmony_cibool set_extent_buffer_dirty(struct extent_buffer *eb)
54328c2ecf20Sopenharmony_ci{
54338c2ecf20Sopenharmony_ci	int i;
54348c2ecf20Sopenharmony_ci	int num_pages;
54358c2ecf20Sopenharmony_ci	bool was_dirty;
54368c2ecf20Sopenharmony_ci
54378c2ecf20Sopenharmony_ci	check_buffer_tree_ref(eb);
54388c2ecf20Sopenharmony_ci
54398c2ecf20Sopenharmony_ci	was_dirty = test_and_set_bit(EXTENT_BUFFER_DIRTY, &eb->bflags);
54408c2ecf20Sopenharmony_ci
54418c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
54428c2ecf20Sopenharmony_ci	WARN_ON(atomic_read(&eb->refs) == 0);
54438c2ecf20Sopenharmony_ci	WARN_ON(!test_bit(EXTENT_BUFFER_TREE_REF, &eb->bflags));
54448c2ecf20Sopenharmony_ci
54458c2ecf20Sopenharmony_ci	if (!was_dirty)
54468c2ecf20Sopenharmony_ci		for (i = 0; i < num_pages; i++)
54478c2ecf20Sopenharmony_ci			set_page_dirty(eb->pages[i]);
54488c2ecf20Sopenharmony_ci
54498c2ecf20Sopenharmony_ci#ifdef CONFIG_BTRFS_DEBUG
54508c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++)
54518c2ecf20Sopenharmony_ci		ASSERT(PageDirty(eb->pages[i]));
54528c2ecf20Sopenharmony_ci#endif
54538c2ecf20Sopenharmony_ci
54548c2ecf20Sopenharmony_ci	return was_dirty;
54558c2ecf20Sopenharmony_ci}
54568c2ecf20Sopenharmony_ci
54578c2ecf20Sopenharmony_civoid clear_extent_buffer_uptodate(struct extent_buffer *eb)
54588c2ecf20Sopenharmony_ci{
54598c2ecf20Sopenharmony_ci	int i;
54608c2ecf20Sopenharmony_ci	struct page *page;
54618c2ecf20Sopenharmony_ci	int num_pages;
54628c2ecf20Sopenharmony_ci
54638c2ecf20Sopenharmony_ci	clear_bit(EXTENT_BUFFER_UPTODATE, &eb->bflags);
54648c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
54658c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
54668c2ecf20Sopenharmony_ci		page = eb->pages[i];
54678c2ecf20Sopenharmony_ci		if (page)
54688c2ecf20Sopenharmony_ci			ClearPageUptodate(page);
54698c2ecf20Sopenharmony_ci	}
54708c2ecf20Sopenharmony_ci}
54718c2ecf20Sopenharmony_ci
54728c2ecf20Sopenharmony_civoid set_extent_buffer_uptodate(struct extent_buffer *eb)
54738c2ecf20Sopenharmony_ci{
54748c2ecf20Sopenharmony_ci	int i;
54758c2ecf20Sopenharmony_ci	struct page *page;
54768c2ecf20Sopenharmony_ci	int num_pages;
54778c2ecf20Sopenharmony_ci
54788c2ecf20Sopenharmony_ci	set_bit(EXTENT_BUFFER_UPTODATE, &eb->bflags);
54798c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
54808c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
54818c2ecf20Sopenharmony_ci		page = eb->pages[i];
54828c2ecf20Sopenharmony_ci		SetPageUptodate(page);
54838c2ecf20Sopenharmony_ci	}
54848c2ecf20Sopenharmony_ci}
54858c2ecf20Sopenharmony_ci
54868c2ecf20Sopenharmony_ciint read_extent_buffer_pages(struct extent_buffer *eb, int wait, int mirror_num)
54878c2ecf20Sopenharmony_ci{
54888c2ecf20Sopenharmony_ci	int i;
54898c2ecf20Sopenharmony_ci	struct page *page;
54908c2ecf20Sopenharmony_ci	int err;
54918c2ecf20Sopenharmony_ci	int ret = 0;
54928c2ecf20Sopenharmony_ci	int locked_pages = 0;
54938c2ecf20Sopenharmony_ci	int all_uptodate = 1;
54948c2ecf20Sopenharmony_ci	int num_pages;
54958c2ecf20Sopenharmony_ci	unsigned long num_reads = 0;
54968c2ecf20Sopenharmony_ci	struct bio *bio = NULL;
54978c2ecf20Sopenharmony_ci	unsigned long bio_flags = 0;
54988c2ecf20Sopenharmony_ci
54998c2ecf20Sopenharmony_ci	if (test_bit(EXTENT_BUFFER_UPTODATE, &eb->bflags))
55008c2ecf20Sopenharmony_ci		return 0;
55018c2ecf20Sopenharmony_ci
55028c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(eb);
55038c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
55048c2ecf20Sopenharmony_ci		page = eb->pages[i];
55058c2ecf20Sopenharmony_ci		if (wait == WAIT_NONE) {
55068c2ecf20Sopenharmony_ci			if (!trylock_page(page))
55078c2ecf20Sopenharmony_ci				goto unlock_exit;
55088c2ecf20Sopenharmony_ci		} else {
55098c2ecf20Sopenharmony_ci			lock_page(page);
55108c2ecf20Sopenharmony_ci		}
55118c2ecf20Sopenharmony_ci		locked_pages++;
55128c2ecf20Sopenharmony_ci	}
55138c2ecf20Sopenharmony_ci	/*
55148c2ecf20Sopenharmony_ci	 * We need to firstly lock all pages to make sure that
55158c2ecf20Sopenharmony_ci	 * the uptodate bit of our pages won't be affected by
55168c2ecf20Sopenharmony_ci	 * clear_extent_buffer_uptodate().
55178c2ecf20Sopenharmony_ci	 */
55188c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
55198c2ecf20Sopenharmony_ci		page = eb->pages[i];
55208c2ecf20Sopenharmony_ci		if (!PageUptodate(page)) {
55218c2ecf20Sopenharmony_ci			num_reads++;
55228c2ecf20Sopenharmony_ci			all_uptodate = 0;
55238c2ecf20Sopenharmony_ci		}
55248c2ecf20Sopenharmony_ci	}
55258c2ecf20Sopenharmony_ci
55268c2ecf20Sopenharmony_ci	if (all_uptodate) {
55278c2ecf20Sopenharmony_ci		set_bit(EXTENT_BUFFER_UPTODATE, &eb->bflags);
55288c2ecf20Sopenharmony_ci		goto unlock_exit;
55298c2ecf20Sopenharmony_ci	}
55308c2ecf20Sopenharmony_ci
55318c2ecf20Sopenharmony_ci	clear_bit(EXTENT_BUFFER_READ_ERR, &eb->bflags);
55328c2ecf20Sopenharmony_ci	eb->read_mirror = 0;
55338c2ecf20Sopenharmony_ci	atomic_set(&eb->io_pages, num_reads);
55348c2ecf20Sopenharmony_ci	/*
55358c2ecf20Sopenharmony_ci	 * It is possible for releasepage to clear the TREE_REF bit before we
55368c2ecf20Sopenharmony_ci	 * set io_pages. See check_buffer_tree_ref for a more detailed comment.
55378c2ecf20Sopenharmony_ci	 */
55388c2ecf20Sopenharmony_ci	check_buffer_tree_ref(eb);
55398c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
55408c2ecf20Sopenharmony_ci		page = eb->pages[i];
55418c2ecf20Sopenharmony_ci
55428c2ecf20Sopenharmony_ci		if (!PageUptodate(page)) {
55438c2ecf20Sopenharmony_ci			if (ret) {
55448c2ecf20Sopenharmony_ci				atomic_dec(&eb->io_pages);
55458c2ecf20Sopenharmony_ci				unlock_page(page);
55468c2ecf20Sopenharmony_ci				continue;
55478c2ecf20Sopenharmony_ci			}
55488c2ecf20Sopenharmony_ci
55498c2ecf20Sopenharmony_ci			ClearPageError(page);
55508c2ecf20Sopenharmony_ci			err = submit_extent_page(REQ_OP_READ | REQ_META, NULL,
55518c2ecf20Sopenharmony_ci					 page, page_offset(page), PAGE_SIZE, 0,
55528c2ecf20Sopenharmony_ci					 &bio, end_bio_extent_readpage,
55538c2ecf20Sopenharmony_ci					 mirror_num, 0, 0, false);
55548c2ecf20Sopenharmony_ci			if (err) {
55558c2ecf20Sopenharmony_ci				/*
55568c2ecf20Sopenharmony_ci				 * We failed to submit the bio so it's the
55578c2ecf20Sopenharmony_ci				 * caller's responsibility to perform cleanup
55588c2ecf20Sopenharmony_ci				 * i.e unlock page/set error bit.
55598c2ecf20Sopenharmony_ci				 */
55608c2ecf20Sopenharmony_ci				ret = err;
55618c2ecf20Sopenharmony_ci				SetPageError(page);
55628c2ecf20Sopenharmony_ci				unlock_page(page);
55638c2ecf20Sopenharmony_ci				atomic_dec(&eb->io_pages);
55648c2ecf20Sopenharmony_ci			}
55658c2ecf20Sopenharmony_ci		} else {
55668c2ecf20Sopenharmony_ci			unlock_page(page);
55678c2ecf20Sopenharmony_ci		}
55688c2ecf20Sopenharmony_ci	}
55698c2ecf20Sopenharmony_ci
55708c2ecf20Sopenharmony_ci	if (bio) {
55718c2ecf20Sopenharmony_ci		err = submit_one_bio(bio, mirror_num, bio_flags);
55728c2ecf20Sopenharmony_ci		if (err)
55738c2ecf20Sopenharmony_ci			return err;
55748c2ecf20Sopenharmony_ci	}
55758c2ecf20Sopenharmony_ci
55768c2ecf20Sopenharmony_ci	if (ret || wait != WAIT_COMPLETE)
55778c2ecf20Sopenharmony_ci		return ret;
55788c2ecf20Sopenharmony_ci
55798c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++) {
55808c2ecf20Sopenharmony_ci		page = eb->pages[i];
55818c2ecf20Sopenharmony_ci		wait_on_page_locked(page);
55828c2ecf20Sopenharmony_ci		if (!PageUptodate(page))
55838c2ecf20Sopenharmony_ci			ret = -EIO;
55848c2ecf20Sopenharmony_ci	}
55858c2ecf20Sopenharmony_ci
55868c2ecf20Sopenharmony_ci	return ret;
55878c2ecf20Sopenharmony_ci
55888c2ecf20Sopenharmony_ciunlock_exit:
55898c2ecf20Sopenharmony_ci	while (locked_pages > 0) {
55908c2ecf20Sopenharmony_ci		locked_pages--;
55918c2ecf20Sopenharmony_ci		page = eb->pages[locked_pages];
55928c2ecf20Sopenharmony_ci		unlock_page(page);
55938c2ecf20Sopenharmony_ci	}
55948c2ecf20Sopenharmony_ci	return ret;
55958c2ecf20Sopenharmony_ci}
55968c2ecf20Sopenharmony_ci
55978c2ecf20Sopenharmony_cistatic bool report_eb_range(const struct extent_buffer *eb, unsigned long start,
55988c2ecf20Sopenharmony_ci			    unsigned long len)
55998c2ecf20Sopenharmony_ci{
56008c2ecf20Sopenharmony_ci	btrfs_warn(eb->fs_info,
56018c2ecf20Sopenharmony_ci		"access to eb bytenr %llu len %lu out of range start %lu len %lu",
56028c2ecf20Sopenharmony_ci		eb->start, eb->len, start, len);
56038c2ecf20Sopenharmony_ci	WARN_ON(IS_ENABLED(CONFIG_BTRFS_DEBUG));
56048c2ecf20Sopenharmony_ci
56058c2ecf20Sopenharmony_ci	return true;
56068c2ecf20Sopenharmony_ci}
56078c2ecf20Sopenharmony_ci
56088c2ecf20Sopenharmony_ci/*
56098c2ecf20Sopenharmony_ci * Check if the [start, start + len) range is valid before reading/writing
56108c2ecf20Sopenharmony_ci * the eb.
56118c2ecf20Sopenharmony_ci * NOTE: @start and @len are offset inside the eb, not logical address.
56128c2ecf20Sopenharmony_ci *
56138c2ecf20Sopenharmony_ci * Caller should not touch the dst/src memory if this function returns error.
56148c2ecf20Sopenharmony_ci */
56158c2ecf20Sopenharmony_cistatic inline int check_eb_range(const struct extent_buffer *eb,
56168c2ecf20Sopenharmony_ci				 unsigned long start, unsigned long len)
56178c2ecf20Sopenharmony_ci{
56188c2ecf20Sopenharmony_ci	unsigned long offset;
56198c2ecf20Sopenharmony_ci
56208c2ecf20Sopenharmony_ci	/* start, start + len should not go beyond eb->len nor overflow */
56218c2ecf20Sopenharmony_ci	if (unlikely(check_add_overflow(start, len, &offset) || offset > eb->len))
56228c2ecf20Sopenharmony_ci		return report_eb_range(eb, start, len);
56238c2ecf20Sopenharmony_ci
56248c2ecf20Sopenharmony_ci	return false;
56258c2ecf20Sopenharmony_ci}
56268c2ecf20Sopenharmony_ci
56278c2ecf20Sopenharmony_civoid read_extent_buffer(const struct extent_buffer *eb, void *dstv,
56288c2ecf20Sopenharmony_ci			unsigned long start, unsigned long len)
56298c2ecf20Sopenharmony_ci{
56308c2ecf20Sopenharmony_ci	size_t cur;
56318c2ecf20Sopenharmony_ci	size_t offset;
56328c2ecf20Sopenharmony_ci	struct page *page;
56338c2ecf20Sopenharmony_ci	char *kaddr;
56348c2ecf20Sopenharmony_ci	char *dst = (char *)dstv;
56358c2ecf20Sopenharmony_ci	unsigned long i = start >> PAGE_SHIFT;
56368c2ecf20Sopenharmony_ci
56378c2ecf20Sopenharmony_ci	if (check_eb_range(eb, start, len)) {
56388c2ecf20Sopenharmony_ci		/*
56398c2ecf20Sopenharmony_ci		 * Invalid range hit, reset the memory, so callers won't get
56408c2ecf20Sopenharmony_ci		 * some random garbage for their uninitialzed memory.
56418c2ecf20Sopenharmony_ci		 */
56428c2ecf20Sopenharmony_ci		memset(dstv, 0, len);
56438c2ecf20Sopenharmony_ci		return;
56448c2ecf20Sopenharmony_ci	}
56458c2ecf20Sopenharmony_ci
56468c2ecf20Sopenharmony_ci	offset = offset_in_page(start);
56478c2ecf20Sopenharmony_ci
56488c2ecf20Sopenharmony_ci	while (len > 0) {
56498c2ecf20Sopenharmony_ci		page = eb->pages[i];
56508c2ecf20Sopenharmony_ci
56518c2ecf20Sopenharmony_ci		cur = min(len, (PAGE_SIZE - offset));
56528c2ecf20Sopenharmony_ci		kaddr = page_address(page);
56538c2ecf20Sopenharmony_ci		memcpy(dst, kaddr + offset, cur);
56548c2ecf20Sopenharmony_ci
56558c2ecf20Sopenharmony_ci		dst += cur;
56568c2ecf20Sopenharmony_ci		len -= cur;
56578c2ecf20Sopenharmony_ci		offset = 0;
56588c2ecf20Sopenharmony_ci		i++;
56598c2ecf20Sopenharmony_ci	}
56608c2ecf20Sopenharmony_ci}
56618c2ecf20Sopenharmony_ci
56628c2ecf20Sopenharmony_ciint read_extent_buffer_to_user_nofault(const struct extent_buffer *eb,
56638c2ecf20Sopenharmony_ci				       void __user *dstv,
56648c2ecf20Sopenharmony_ci				       unsigned long start, unsigned long len)
56658c2ecf20Sopenharmony_ci{
56668c2ecf20Sopenharmony_ci	size_t cur;
56678c2ecf20Sopenharmony_ci	size_t offset;
56688c2ecf20Sopenharmony_ci	struct page *page;
56698c2ecf20Sopenharmony_ci	char *kaddr;
56708c2ecf20Sopenharmony_ci	char __user *dst = (char __user *)dstv;
56718c2ecf20Sopenharmony_ci	unsigned long i = start >> PAGE_SHIFT;
56728c2ecf20Sopenharmony_ci	int ret = 0;
56738c2ecf20Sopenharmony_ci
56748c2ecf20Sopenharmony_ci	WARN_ON(start > eb->len);
56758c2ecf20Sopenharmony_ci	WARN_ON(start + len > eb->start + eb->len);
56768c2ecf20Sopenharmony_ci
56778c2ecf20Sopenharmony_ci	offset = offset_in_page(start);
56788c2ecf20Sopenharmony_ci
56798c2ecf20Sopenharmony_ci	while (len > 0) {
56808c2ecf20Sopenharmony_ci		page = eb->pages[i];
56818c2ecf20Sopenharmony_ci
56828c2ecf20Sopenharmony_ci		cur = min(len, (PAGE_SIZE - offset));
56838c2ecf20Sopenharmony_ci		kaddr = page_address(page);
56848c2ecf20Sopenharmony_ci		if (copy_to_user_nofault(dst, kaddr + offset, cur)) {
56858c2ecf20Sopenharmony_ci			ret = -EFAULT;
56868c2ecf20Sopenharmony_ci			break;
56878c2ecf20Sopenharmony_ci		}
56888c2ecf20Sopenharmony_ci
56898c2ecf20Sopenharmony_ci		dst += cur;
56908c2ecf20Sopenharmony_ci		len -= cur;
56918c2ecf20Sopenharmony_ci		offset = 0;
56928c2ecf20Sopenharmony_ci		i++;
56938c2ecf20Sopenharmony_ci	}
56948c2ecf20Sopenharmony_ci
56958c2ecf20Sopenharmony_ci	return ret;
56968c2ecf20Sopenharmony_ci}
56978c2ecf20Sopenharmony_ci
56988c2ecf20Sopenharmony_ciint memcmp_extent_buffer(const struct extent_buffer *eb, const void *ptrv,
56998c2ecf20Sopenharmony_ci			 unsigned long start, unsigned long len)
57008c2ecf20Sopenharmony_ci{
57018c2ecf20Sopenharmony_ci	size_t cur;
57028c2ecf20Sopenharmony_ci	size_t offset;
57038c2ecf20Sopenharmony_ci	struct page *page;
57048c2ecf20Sopenharmony_ci	char *kaddr;
57058c2ecf20Sopenharmony_ci	char *ptr = (char *)ptrv;
57068c2ecf20Sopenharmony_ci	unsigned long i = start >> PAGE_SHIFT;
57078c2ecf20Sopenharmony_ci	int ret = 0;
57088c2ecf20Sopenharmony_ci
57098c2ecf20Sopenharmony_ci	if (check_eb_range(eb, start, len))
57108c2ecf20Sopenharmony_ci		return -EINVAL;
57118c2ecf20Sopenharmony_ci
57128c2ecf20Sopenharmony_ci	offset = offset_in_page(start);
57138c2ecf20Sopenharmony_ci
57148c2ecf20Sopenharmony_ci	while (len > 0) {
57158c2ecf20Sopenharmony_ci		page = eb->pages[i];
57168c2ecf20Sopenharmony_ci
57178c2ecf20Sopenharmony_ci		cur = min(len, (PAGE_SIZE - offset));
57188c2ecf20Sopenharmony_ci
57198c2ecf20Sopenharmony_ci		kaddr = page_address(page);
57208c2ecf20Sopenharmony_ci		ret = memcmp(ptr, kaddr + offset, cur);
57218c2ecf20Sopenharmony_ci		if (ret)
57228c2ecf20Sopenharmony_ci			break;
57238c2ecf20Sopenharmony_ci
57248c2ecf20Sopenharmony_ci		ptr += cur;
57258c2ecf20Sopenharmony_ci		len -= cur;
57268c2ecf20Sopenharmony_ci		offset = 0;
57278c2ecf20Sopenharmony_ci		i++;
57288c2ecf20Sopenharmony_ci	}
57298c2ecf20Sopenharmony_ci	return ret;
57308c2ecf20Sopenharmony_ci}
57318c2ecf20Sopenharmony_ci
57328c2ecf20Sopenharmony_civoid write_extent_buffer_chunk_tree_uuid(const struct extent_buffer *eb,
57338c2ecf20Sopenharmony_ci		const void *srcv)
57348c2ecf20Sopenharmony_ci{
57358c2ecf20Sopenharmony_ci	char *kaddr;
57368c2ecf20Sopenharmony_ci
57378c2ecf20Sopenharmony_ci	WARN_ON(!PageUptodate(eb->pages[0]));
57388c2ecf20Sopenharmony_ci	kaddr = page_address(eb->pages[0]);
57398c2ecf20Sopenharmony_ci	memcpy(kaddr + offsetof(struct btrfs_header, chunk_tree_uuid), srcv,
57408c2ecf20Sopenharmony_ci			BTRFS_FSID_SIZE);
57418c2ecf20Sopenharmony_ci}
57428c2ecf20Sopenharmony_ci
57438c2ecf20Sopenharmony_civoid write_extent_buffer_fsid(const struct extent_buffer *eb, const void *srcv)
57448c2ecf20Sopenharmony_ci{
57458c2ecf20Sopenharmony_ci	char *kaddr;
57468c2ecf20Sopenharmony_ci
57478c2ecf20Sopenharmony_ci	WARN_ON(!PageUptodate(eb->pages[0]));
57488c2ecf20Sopenharmony_ci	kaddr = page_address(eb->pages[0]);
57498c2ecf20Sopenharmony_ci	memcpy(kaddr + offsetof(struct btrfs_header, fsid), srcv,
57508c2ecf20Sopenharmony_ci			BTRFS_FSID_SIZE);
57518c2ecf20Sopenharmony_ci}
57528c2ecf20Sopenharmony_ci
57538c2ecf20Sopenharmony_civoid write_extent_buffer(const struct extent_buffer *eb, const void *srcv,
57548c2ecf20Sopenharmony_ci			 unsigned long start, unsigned long len)
57558c2ecf20Sopenharmony_ci{
57568c2ecf20Sopenharmony_ci	size_t cur;
57578c2ecf20Sopenharmony_ci	size_t offset;
57588c2ecf20Sopenharmony_ci	struct page *page;
57598c2ecf20Sopenharmony_ci	char *kaddr;
57608c2ecf20Sopenharmony_ci	char *src = (char *)srcv;
57618c2ecf20Sopenharmony_ci	unsigned long i = start >> PAGE_SHIFT;
57628c2ecf20Sopenharmony_ci
57638c2ecf20Sopenharmony_ci	if (check_eb_range(eb, start, len))
57648c2ecf20Sopenharmony_ci		return;
57658c2ecf20Sopenharmony_ci
57668c2ecf20Sopenharmony_ci	offset = offset_in_page(start);
57678c2ecf20Sopenharmony_ci
57688c2ecf20Sopenharmony_ci	while (len > 0) {
57698c2ecf20Sopenharmony_ci		page = eb->pages[i];
57708c2ecf20Sopenharmony_ci		WARN_ON(!PageUptodate(page));
57718c2ecf20Sopenharmony_ci
57728c2ecf20Sopenharmony_ci		cur = min(len, PAGE_SIZE - offset);
57738c2ecf20Sopenharmony_ci		kaddr = page_address(page);
57748c2ecf20Sopenharmony_ci		memcpy(kaddr + offset, src, cur);
57758c2ecf20Sopenharmony_ci
57768c2ecf20Sopenharmony_ci		src += cur;
57778c2ecf20Sopenharmony_ci		len -= cur;
57788c2ecf20Sopenharmony_ci		offset = 0;
57798c2ecf20Sopenharmony_ci		i++;
57808c2ecf20Sopenharmony_ci	}
57818c2ecf20Sopenharmony_ci}
57828c2ecf20Sopenharmony_ci
57838c2ecf20Sopenharmony_civoid memzero_extent_buffer(const struct extent_buffer *eb, unsigned long start,
57848c2ecf20Sopenharmony_ci		unsigned long len)
57858c2ecf20Sopenharmony_ci{
57868c2ecf20Sopenharmony_ci	size_t cur;
57878c2ecf20Sopenharmony_ci	size_t offset;
57888c2ecf20Sopenharmony_ci	struct page *page;
57898c2ecf20Sopenharmony_ci	char *kaddr;
57908c2ecf20Sopenharmony_ci	unsigned long i = start >> PAGE_SHIFT;
57918c2ecf20Sopenharmony_ci
57928c2ecf20Sopenharmony_ci	if (check_eb_range(eb, start, len))
57938c2ecf20Sopenharmony_ci		return;
57948c2ecf20Sopenharmony_ci
57958c2ecf20Sopenharmony_ci	offset = offset_in_page(start);
57968c2ecf20Sopenharmony_ci
57978c2ecf20Sopenharmony_ci	while (len > 0) {
57988c2ecf20Sopenharmony_ci		page = eb->pages[i];
57998c2ecf20Sopenharmony_ci		WARN_ON(!PageUptodate(page));
58008c2ecf20Sopenharmony_ci
58018c2ecf20Sopenharmony_ci		cur = min(len, PAGE_SIZE - offset);
58028c2ecf20Sopenharmony_ci		kaddr = page_address(page);
58038c2ecf20Sopenharmony_ci		memset(kaddr + offset, 0, cur);
58048c2ecf20Sopenharmony_ci
58058c2ecf20Sopenharmony_ci		len -= cur;
58068c2ecf20Sopenharmony_ci		offset = 0;
58078c2ecf20Sopenharmony_ci		i++;
58088c2ecf20Sopenharmony_ci	}
58098c2ecf20Sopenharmony_ci}
58108c2ecf20Sopenharmony_ci
58118c2ecf20Sopenharmony_civoid copy_extent_buffer_full(const struct extent_buffer *dst,
58128c2ecf20Sopenharmony_ci			     const struct extent_buffer *src)
58138c2ecf20Sopenharmony_ci{
58148c2ecf20Sopenharmony_ci	int i;
58158c2ecf20Sopenharmony_ci	int num_pages;
58168c2ecf20Sopenharmony_ci
58178c2ecf20Sopenharmony_ci	ASSERT(dst->len == src->len);
58188c2ecf20Sopenharmony_ci
58198c2ecf20Sopenharmony_ci	num_pages = num_extent_pages(dst);
58208c2ecf20Sopenharmony_ci	for (i = 0; i < num_pages; i++)
58218c2ecf20Sopenharmony_ci		copy_page(page_address(dst->pages[i]),
58228c2ecf20Sopenharmony_ci				page_address(src->pages[i]));
58238c2ecf20Sopenharmony_ci}
58248c2ecf20Sopenharmony_ci
58258c2ecf20Sopenharmony_civoid copy_extent_buffer(const struct extent_buffer *dst,
58268c2ecf20Sopenharmony_ci			const struct extent_buffer *src,
58278c2ecf20Sopenharmony_ci			unsigned long dst_offset, unsigned long src_offset,
58288c2ecf20Sopenharmony_ci			unsigned long len)
58298c2ecf20Sopenharmony_ci{
58308c2ecf20Sopenharmony_ci	u64 dst_len = dst->len;
58318c2ecf20Sopenharmony_ci	size_t cur;
58328c2ecf20Sopenharmony_ci	size_t offset;
58338c2ecf20Sopenharmony_ci	struct page *page;
58348c2ecf20Sopenharmony_ci	char *kaddr;
58358c2ecf20Sopenharmony_ci	unsigned long i = dst_offset >> PAGE_SHIFT;
58368c2ecf20Sopenharmony_ci
58378c2ecf20Sopenharmony_ci	if (check_eb_range(dst, dst_offset, len) ||
58388c2ecf20Sopenharmony_ci	    check_eb_range(src, src_offset, len))
58398c2ecf20Sopenharmony_ci		return;
58408c2ecf20Sopenharmony_ci
58418c2ecf20Sopenharmony_ci	WARN_ON(src->len != dst_len);
58428c2ecf20Sopenharmony_ci
58438c2ecf20Sopenharmony_ci	offset = offset_in_page(dst_offset);
58448c2ecf20Sopenharmony_ci
58458c2ecf20Sopenharmony_ci	while (len > 0) {
58468c2ecf20Sopenharmony_ci		page = dst->pages[i];
58478c2ecf20Sopenharmony_ci		WARN_ON(!PageUptodate(page));
58488c2ecf20Sopenharmony_ci
58498c2ecf20Sopenharmony_ci		cur = min(len, (unsigned long)(PAGE_SIZE - offset));
58508c2ecf20Sopenharmony_ci
58518c2ecf20Sopenharmony_ci		kaddr = page_address(page);
58528c2ecf20Sopenharmony_ci		read_extent_buffer(src, kaddr + offset, src_offset, cur);
58538c2ecf20Sopenharmony_ci
58548c2ecf20Sopenharmony_ci		src_offset += cur;
58558c2ecf20Sopenharmony_ci		len -= cur;
58568c2ecf20Sopenharmony_ci		offset = 0;
58578c2ecf20Sopenharmony_ci		i++;
58588c2ecf20Sopenharmony_ci	}
58598c2ecf20Sopenharmony_ci}
58608c2ecf20Sopenharmony_ci
58618c2ecf20Sopenharmony_ci/*
58628c2ecf20Sopenharmony_ci * eb_bitmap_offset() - calculate the page and offset of the byte containing the
58638c2ecf20Sopenharmony_ci * given bit number
58648c2ecf20Sopenharmony_ci * @eb: the extent buffer
58658c2ecf20Sopenharmony_ci * @start: offset of the bitmap item in the extent buffer
58668c2ecf20Sopenharmony_ci * @nr: bit number
58678c2ecf20Sopenharmony_ci * @page_index: return index of the page in the extent buffer that contains the
58688c2ecf20Sopenharmony_ci * given bit number
58698c2ecf20Sopenharmony_ci * @page_offset: return offset into the page given by page_index
58708c2ecf20Sopenharmony_ci *
58718c2ecf20Sopenharmony_ci * This helper hides the ugliness of finding the byte in an extent buffer which
58728c2ecf20Sopenharmony_ci * contains a given bit.
58738c2ecf20Sopenharmony_ci */
58748c2ecf20Sopenharmony_cistatic inline void eb_bitmap_offset(const struct extent_buffer *eb,
58758c2ecf20Sopenharmony_ci				    unsigned long start, unsigned long nr,
58768c2ecf20Sopenharmony_ci				    unsigned long *page_index,
58778c2ecf20Sopenharmony_ci				    size_t *page_offset)
58788c2ecf20Sopenharmony_ci{
58798c2ecf20Sopenharmony_ci	size_t byte_offset = BIT_BYTE(nr);
58808c2ecf20Sopenharmony_ci	size_t offset;
58818c2ecf20Sopenharmony_ci
58828c2ecf20Sopenharmony_ci	/*
58838c2ecf20Sopenharmony_ci	 * The byte we want is the offset of the extent buffer + the offset of
58848c2ecf20Sopenharmony_ci	 * the bitmap item in the extent buffer + the offset of the byte in the
58858c2ecf20Sopenharmony_ci	 * bitmap item.
58868c2ecf20Sopenharmony_ci	 */
58878c2ecf20Sopenharmony_ci	offset = start + byte_offset;
58888c2ecf20Sopenharmony_ci
58898c2ecf20Sopenharmony_ci	*page_index = offset >> PAGE_SHIFT;
58908c2ecf20Sopenharmony_ci	*page_offset = offset_in_page(offset);
58918c2ecf20Sopenharmony_ci}
58928c2ecf20Sopenharmony_ci
58938c2ecf20Sopenharmony_ci/**
58948c2ecf20Sopenharmony_ci * extent_buffer_test_bit - determine whether a bit in a bitmap item is set
58958c2ecf20Sopenharmony_ci * @eb: the extent buffer
58968c2ecf20Sopenharmony_ci * @start: offset of the bitmap item in the extent buffer
58978c2ecf20Sopenharmony_ci * @nr: bit number to test
58988c2ecf20Sopenharmony_ci */
58998c2ecf20Sopenharmony_ciint extent_buffer_test_bit(const struct extent_buffer *eb, unsigned long start,
59008c2ecf20Sopenharmony_ci			   unsigned long nr)
59018c2ecf20Sopenharmony_ci{
59028c2ecf20Sopenharmony_ci	u8 *kaddr;
59038c2ecf20Sopenharmony_ci	struct page *page;
59048c2ecf20Sopenharmony_ci	unsigned long i;
59058c2ecf20Sopenharmony_ci	size_t offset;
59068c2ecf20Sopenharmony_ci
59078c2ecf20Sopenharmony_ci	eb_bitmap_offset(eb, start, nr, &i, &offset);
59088c2ecf20Sopenharmony_ci	page = eb->pages[i];
59098c2ecf20Sopenharmony_ci	WARN_ON(!PageUptodate(page));
59108c2ecf20Sopenharmony_ci	kaddr = page_address(page);
59118c2ecf20Sopenharmony_ci	return 1U & (kaddr[offset] >> (nr & (BITS_PER_BYTE - 1)));
59128c2ecf20Sopenharmony_ci}
59138c2ecf20Sopenharmony_ci
59148c2ecf20Sopenharmony_ci/**
59158c2ecf20Sopenharmony_ci * extent_buffer_bitmap_set - set an area of a bitmap
59168c2ecf20Sopenharmony_ci * @eb: the extent buffer
59178c2ecf20Sopenharmony_ci * @start: offset of the bitmap item in the extent buffer
59188c2ecf20Sopenharmony_ci * @pos: bit number of the first bit
59198c2ecf20Sopenharmony_ci * @len: number of bits to set
59208c2ecf20Sopenharmony_ci */
59218c2ecf20Sopenharmony_civoid extent_buffer_bitmap_set(const struct extent_buffer *eb, unsigned long start,
59228c2ecf20Sopenharmony_ci			      unsigned long pos, unsigned long len)
59238c2ecf20Sopenharmony_ci{
59248c2ecf20Sopenharmony_ci	u8 *kaddr;
59258c2ecf20Sopenharmony_ci	struct page *page;
59268c2ecf20Sopenharmony_ci	unsigned long i;
59278c2ecf20Sopenharmony_ci	size_t offset;
59288c2ecf20Sopenharmony_ci	const unsigned int size = pos + len;
59298c2ecf20Sopenharmony_ci	int bits_to_set = BITS_PER_BYTE - (pos % BITS_PER_BYTE);
59308c2ecf20Sopenharmony_ci	u8 mask_to_set = BITMAP_FIRST_BYTE_MASK(pos);
59318c2ecf20Sopenharmony_ci
59328c2ecf20Sopenharmony_ci	eb_bitmap_offset(eb, start, pos, &i, &offset);
59338c2ecf20Sopenharmony_ci	page = eb->pages[i];
59348c2ecf20Sopenharmony_ci	WARN_ON(!PageUptodate(page));
59358c2ecf20Sopenharmony_ci	kaddr = page_address(page);
59368c2ecf20Sopenharmony_ci
59378c2ecf20Sopenharmony_ci	while (len >= bits_to_set) {
59388c2ecf20Sopenharmony_ci		kaddr[offset] |= mask_to_set;
59398c2ecf20Sopenharmony_ci		len -= bits_to_set;
59408c2ecf20Sopenharmony_ci		bits_to_set = BITS_PER_BYTE;
59418c2ecf20Sopenharmony_ci		mask_to_set = ~0;
59428c2ecf20Sopenharmony_ci		if (++offset >= PAGE_SIZE && len > 0) {
59438c2ecf20Sopenharmony_ci			offset = 0;
59448c2ecf20Sopenharmony_ci			page = eb->pages[++i];
59458c2ecf20Sopenharmony_ci			WARN_ON(!PageUptodate(page));
59468c2ecf20Sopenharmony_ci			kaddr = page_address(page);
59478c2ecf20Sopenharmony_ci		}
59488c2ecf20Sopenharmony_ci	}
59498c2ecf20Sopenharmony_ci	if (len) {
59508c2ecf20Sopenharmony_ci		mask_to_set &= BITMAP_LAST_BYTE_MASK(size);
59518c2ecf20Sopenharmony_ci		kaddr[offset] |= mask_to_set;
59528c2ecf20Sopenharmony_ci	}
59538c2ecf20Sopenharmony_ci}
59548c2ecf20Sopenharmony_ci
59558c2ecf20Sopenharmony_ci
59568c2ecf20Sopenharmony_ci/**
59578c2ecf20Sopenharmony_ci * extent_buffer_bitmap_clear - clear an area of a bitmap
59588c2ecf20Sopenharmony_ci * @eb: the extent buffer
59598c2ecf20Sopenharmony_ci * @start: offset of the bitmap item in the extent buffer
59608c2ecf20Sopenharmony_ci * @pos: bit number of the first bit
59618c2ecf20Sopenharmony_ci * @len: number of bits to clear
59628c2ecf20Sopenharmony_ci */
59638c2ecf20Sopenharmony_civoid extent_buffer_bitmap_clear(const struct extent_buffer *eb,
59648c2ecf20Sopenharmony_ci				unsigned long start, unsigned long pos,
59658c2ecf20Sopenharmony_ci				unsigned long len)
59668c2ecf20Sopenharmony_ci{
59678c2ecf20Sopenharmony_ci	u8 *kaddr;
59688c2ecf20Sopenharmony_ci	struct page *page;
59698c2ecf20Sopenharmony_ci	unsigned long i;
59708c2ecf20Sopenharmony_ci	size_t offset;
59718c2ecf20Sopenharmony_ci	const unsigned int size = pos + len;
59728c2ecf20Sopenharmony_ci	int bits_to_clear = BITS_PER_BYTE - (pos % BITS_PER_BYTE);
59738c2ecf20Sopenharmony_ci	u8 mask_to_clear = BITMAP_FIRST_BYTE_MASK(pos);
59748c2ecf20Sopenharmony_ci
59758c2ecf20Sopenharmony_ci	eb_bitmap_offset(eb, start, pos, &i, &offset);
59768c2ecf20Sopenharmony_ci	page = eb->pages[i];
59778c2ecf20Sopenharmony_ci	WARN_ON(!PageUptodate(page));
59788c2ecf20Sopenharmony_ci	kaddr = page_address(page);
59798c2ecf20Sopenharmony_ci
59808c2ecf20Sopenharmony_ci	while (len >= bits_to_clear) {
59818c2ecf20Sopenharmony_ci		kaddr[offset] &= ~mask_to_clear;
59828c2ecf20Sopenharmony_ci		len -= bits_to_clear;
59838c2ecf20Sopenharmony_ci		bits_to_clear = BITS_PER_BYTE;
59848c2ecf20Sopenharmony_ci		mask_to_clear = ~0;
59858c2ecf20Sopenharmony_ci		if (++offset >= PAGE_SIZE && len > 0) {
59868c2ecf20Sopenharmony_ci			offset = 0;
59878c2ecf20Sopenharmony_ci			page = eb->pages[++i];
59888c2ecf20Sopenharmony_ci			WARN_ON(!PageUptodate(page));
59898c2ecf20Sopenharmony_ci			kaddr = page_address(page);
59908c2ecf20Sopenharmony_ci		}
59918c2ecf20Sopenharmony_ci	}
59928c2ecf20Sopenharmony_ci	if (len) {
59938c2ecf20Sopenharmony_ci		mask_to_clear &= BITMAP_LAST_BYTE_MASK(size);
59948c2ecf20Sopenharmony_ci		kaddr[offset] &= ~mask_to_clear;
59958c2ecf20Sopenharmony_ci	}
59968c2ecf20Sopenharmony_ci}
59978c2ecf20Sopenharmony_ci
59988c2ecf20Sopenharmony_cistatic inline bool areas_overlap(unsigned long src, unsigned long dst, unsigned long len)
59998c2ecf20Sopenharmony_ci{
60008c2ecf20Sopenharmony_ci	unsigned long distance = (src > dst) ? src - dst : dst - src;
60018c2ecf20Sopenharmony_ci	return distance < len;
60028c2ecf20Sopenharmony_ci}
60038c2ecf20Sopenharmony_ci
60048c2ecf20Sopenharmony_cistatic void copy_pages(struct page *dst_page, struct page *src_page,
60058c2ecf20Sopenharmony_ci		       unsigned long dst_off, unsigned long src_off,
60068c2ecf20Sopenharmony_ci		       unsigned long len)
60078c2ecf20Sopenharmony_ci{
60088c2ecf20Sopenharmony_ci	char *dst_kaddr = page_address(dst_page);
60098c2ecf20Sopenharmony_ci	char *src_kaddr;
60108c2ecf20Sopenharmony_ci	int must_memmove = 0;
60118c2ecf20Sopenharmony_ci
60128c2ecf20Sopenharmony_ci	if (dst_page != src_page) {
60138c2ecf20Sopenharmony_ci		src_kaddr = page_address(src_page);
60148c2ecf20Sopenharmony_ci	} else {
60158c2ecf20Sopenharmony_ci		src_kaddr = dst_kaddr;
60168c2ecf20Sopenharmony_ci		if (areas_overlap(src_off, dst_off, len))
60178c2ecf20Sopenharmony_ci			must_memmove = 1;
60188c2ecf20Sopenharmony_ci	}
60198c2ecf20Sopenharmony_ci
60208c2ecf20Sopenharmony_ci	if (must_memmove)
60218c2ecf20Sopenharmony_ci		memmove(dst_kaddr + dst_off, src_kaddr + src_off, len);
60228c2ecf20Sopenharmony_ci	else
60238c2ecf20Sopenharmony_ci		memcpy(dst_kaddr + dst_off, src_kaddr + src_off, len);
60248c2ecf20Sopenharmony_ci}
60258c2ecf20Sopenharmony_ci
60268c2ecf20Sopenharmony_civoid memcpy_extent_buffer(const struct extent_buffer *dst,
60278c2ecf20Sopenharmony_ci			  unsigned long dst_offset, unsigned long src_offset,
60288c2ecf20Sopenharmony_ci			  unsigned long len)
60298c2ecf20Sopenharmony_ci{
60308c2ecf20Sopenharmony_ci	size_t cur;
60318c2ecf20Sopenharmony_ci	size_t dst_off_in_page;
60328c2ecf20Sopenharmony_ci	size_t src_off_in_page;
60338c2ecf20Sopenharmony_ci	unsigned long dst_i;
60348c2ecf20Sopenharmony_ci	unsigned long src_i;
60358c2ecf20Sopenharmony_ci
60368c2ecf20Sopenharmony_ci	if (check_eb_range(dst, dst_offset, len) ||
60378c2ecf20Sopenharmony_ci	    check_eb_range(dst, src_offset, len))
60388c2ecf20Sopenharmony_ci		return;
60398c2ecf20Sopenharmony_ci
60408c2ecf20Sopenharmony_ci	while (len > 0) {
60418c2ecf20Sopenharmony_ci		dst_off_in_page = offset_in_page(dst_offset);
60428c2ecf20Sopenharmony_ci		src_off_in_page = offset_in_page(src_offset);
60438c2ecf20Sopenharmony_ci
60448c2ecf20Sopenharmony_ci		dst_i = dst_offset >> PAGE_SHIFT;
60458c2ecf20Sopenharmony_ci		src_i = src_offset >> PAGE_SHIFT;
60468c2ecf20Sopenharmony_ci
60478c2ecf20Sopenharmony_ci		cur = min(len, (unsigned long)(PAGE_SIZE -
60488c2ecf20Sopenharmony_ci					       src_off_in_page));
60498c2ecf20Sopenharmony_ci		cur = min_t(unsigned long, cur,
60508c2ecf20Sopenharmony_ci			(unsigned long)(PAGE_SIZE - dst_off_in_page));
60518c2ecf20Sopenharmony_ci
60528c2ecf20Sopenharmony_ci		copy_pages(dst->pages[dst_i], dst->pages[src_i],
60538c2ecf20Sopenharmony_ci			   dst_off_in_page, src_off_in_page, cur);
60548c2ecf20Sopenharmony_ci
60558c2ecf20Sopenharmony_ci		src_offset += cur;
60568c2ecf20Sopenharmony_ci		dst_offset += cur;
60578c2ecf20Sopenharmony_ci		len -= cur;
60588c2ecf20Sopenharmony_ci	}
60598c2ecf20Sopenharmony_ci}
60608c2ecf20Sopenharmony_ci
60618c2ecf20Sopenharmony_civoid memmove_extent_buffer(const struct extent_buffer *dst,
60628c2ecf20Sopenharmony_ci			   unsigned long dst_offset, unsigned long src_offset,
60638c2ecf20Sopenharmony_ci			   unsigned long len)
60648c2ecf20Sopenharmony_ci{
60658c2ecf20Sopenharmony_ci	size_t cur;
60668c2ecf20Sopenharmony_ci	size_t dst_off_in_page;
60678c2ecf20Sopenharmony_ci	size_t src_off_in_page;
60688c2ecf20Sopenharmony_ci	unsigned long dst_end = dst_offset + len - 1;
60698c2ecf20Sopenharmony_ci	unsigned long src_end = src_offset + len - 1;
60708c2ecf20Sopenharmony_ci	unsigned long dst_i;
60718c2ecf20Sopenharmony_ci	unsigned long src_i;
60728c2ecf20Sopenharmony_ci
60738c2ecf20Sopenharmony_ci	if (check_eb_range(dst, dst_offset, len) ||
60748c2ecf20Sopenharmony_ci	    check_eb_range(dst, src_offset, len))
60758c2ecf20Sopenharmony_ci		return;
60768c2ecf20Sopenharmony_ci	if (dst_offset < src_offset) {
60778c2ecf20Sopenharmony_ci		memcpy_extent_buffer(dst, dst_offset, src_offset, len);
60788c2ecf20Sopenharmony_ci		return;
60798c2ecf20Sopenharmony_ci	}
60808c2ecf20Sopenharmony_ci	while (len > 0) {
60818c2ecf20Sopenharmony_ci		dst_i = dst_end >> PAGE_SHIFT;
60828c2ecf20Sopenharmony_ci		src_i = src_end >> PAGE_SHIFT;
60838c2ecf20Sopenharmony_ci
60848c2ecf20Sopenharmony_ci		dst_off_in_page = offset_in_page(dst_end);
60858c2ecf20Sopenharmony_ci		src_off_in_page = offset_in_page(src_end);
60868c2ecf20Sopenharmony_ci
60878c2ecf20Sopenharmony_ci		cur = min_t(unsigned long, len, src_off_in_page + 1);
60888c2ecf20Sopenharmony_ci		cur = min(cur, dst_off_in_page + 1);
60898c2ecf20Sopenharmony_ci		copy_pages(dst->pages[dst_i], dst->pages[src_i],
60908c2ecf20Sopenharmony_ci			   dst_off_in_page - cur + 1,
60918c2ecf20Sopenharmony_ci			   src_off_in_page - cur + 1, cur);
60928c2ecf20Sopenharmony_ci
60938c2ecf20Sopenharmony_ci		dst_end -= cur;
60948c2ecf20Sopenharmony_ci		src_end -= cur;
60958c2ecf20Sopenharmony_ci		len -= cur;
60968c2ecf20Sopenharmony_ci	}
60978c2ecf20Sopenharmony_ci}
60988c2ecf20Sopenharmony_ci
60998c2ecf20Sopenharmony_ciint try_release_extent_buffer(struct page *page)
61008c2ecf20Sopenharmony_ci{
61018c2ecf20Sopenharmony_ci	struct extent_buffer *eb;
61028c2ecf20Sopenharmony_ci
61038c2ecf20Sopenharmony_ci	/*
61048c2ecf20Sopenharmony_ci	 * We need to make sure nobody is attaching this page to an eb right
61058c2ecf20Sopenharmony_ci	 * now.
61068c2ecf20Sopenharmony_ci	 */
61078c2ecf20Sopenharmony_ci	spin_lock(&page->mapping->private_lock);
61088c2ecf20Sopenharmony_ci	if (!PagePrivate(page)) {
61098c2ecf20Sopenharmony_ci		spin_unlock(&page->mapping->private_lock);
61108c2ecf20Sopenharmony_ci		return 1;
61118c2ecf20Sopenharmony_ci	}
61128c2ecf20Sopenharmony_ci
61138c2ecf20Sopenharmony_ci	eb = (struct extent_buffer *)page->private;
61148c2ecf20Sopenharmony_ci	BUG_ON(!eb);
61158c2ecf20Sopenharmony_ci
61168c2ecf20Sopenharmony_ci	/*
61178c2ecf20Sopenharmony_ci	 * This is a little awful but should be ok, we need to make sure that
61188c2ecf20Sopenharmony_ci	 * the eb doesn't disappear out from under us while we're looking at
61198c2ecf20Sopenharmony_ci	 * this page.
61208c2ecf20Sopenharmony_ci	 */
61218c2ecf20Sopenharmony_ci	spin_lock(&eb->refs_lock);
61228c2ecf20Sopenharmony_ci	if (atomic_read(&eb->refs) != 1 || extent_buffer_under_io(eb)) {
61238c2ecf20Sopenharmony_ci		spin_unlock(&eb->refs_lock);
61248c2ecf20Sopenharmony_ci		spin_unlock(&page->mapping->private_lock);
61258c2ecf20Sopenharmony_ci		return 0;
61268c2ecf20Sopenharmony_ci	}
61278c2ecf20Sopenharmony_ci	spin_unlock(&page->mapping->private_lock);
61288c2ecf20Sopenharmony_ci
61298c2ecf20Sopenharmony_ci	/*
61308c2ecf20Sopenharmony_ci	 * If tree ref isn't set then we know the ref on this eb is a real ref,
61318c2ecf20Sopenharmony_ci	 * so just return, this page will likely be freed soon anyway.
61328c2ecf20Sopenharmony_ci	 */
61338c2ecf20Sopenharmony_ci	if (!test_and_clear_bit(EXTENT_BUFFER_TREE_REF, &eb->bflags)) {
61348c2ecf20Sopenharmony_ci		spin_unlock(&eb->refs_lock);
61358c2ecf20Sopenharmony_ci		return 0;
61368c2ecf20Sopenharmony_ci	}
61378c2ecf20Sopenharmony_ci
61388c2ecf20Sopenharmony_ci	return release_extent_buffer(eb);
61398c2ecf20Sopenharmony_ci}
6140