xref: /openbmc/linux/fs/btrfs/ctree.c (revision a2cea677db6099d71c9f70de7f907d3d7e6bec3b)
1c1d7c514SDavid Sterba // SPDX-License-Identifier: GPL-2.0
26cbd5570SChris Mason /*
3d352ac68SChris Mason  * Copyright (C) 2007,2008 Oracle.  All rights reserved.
46cbd5570SChris Mason  */
56cbd5570SChris Mason 
6a6b6e75eSChris Mason #include <linux/sched.h>
75a0e3ad6STejun Heo #include <linux/slab.h>
8bd989ba3SJan Schmidt #include <linux/rbtree.h>
9adf02123SDavid Sterba #include <linux/mm.h>
10e41d12f5SChristoph Hellwig #include <linux/error-injection.h>
119b569ea0SJosef Bacik #include "messages.h"
12eb60ceacSChris Mason #include "ctree.h"
13eb60ceacSChris Mason #include "disk-io.h"
147f5c1516SChris Mason #include "transaction.h"
155f39d397SChris Mason #include "print-tree.h"
16925baeddSChris Mason #include "locking.h"
17de37aa51SNikolay Borisov #include "volumes.h"
18f616f5cdSQu Wenruo #include "qgroup.h"
19f3a84ccdSFilipe Manana #include "tree-mod-log.h"
2088c602abSQu Wenruo #include "tree-checker.h"
21ec8eb376SJosef Bacik #include "fs.h"
22ad1ac501SJosef Bacik #include "accessors.h"
23a0231804SJosef Bacik #include "extent-tree.h"
2467707479SJosef Bacik #include "relocation.h"
256bfd0ffaSJosef Bacik #include "file-item.h"
269a8dd150SChris Mason 
27226463d7SJosef Bacik static struct kmem_cache *btrfs_path_cachep;
28226463d7SJosef Bacik 
29e089f05cSChris Mason static int split_node(struct btrfs_trans_handle *trans, struct btrfs_root
30e089f05cSChris Mason 		      *root, struct btrfs_path *path, int level);
31310712b2SOmar Sandoval static int split_leaf(struct btrfs_trans_handle *trans, struct btrfs_root *root,
32310712b2SOmar Sandoval 		      const struct btrfs_key *ins_key, struct btrfs_path *path,
33310712b2SOmar Sandoval 		      int data_size, int extend);
345f39d397SChris Mason static int push_node_left(struct btrfs_trans_handle *trans,
352ff7e61eSJeff Mahoney 			  struct extent_buffer *dst,
36971a1f66SChris Mason 			  struct extent_buffer *src, int empty);
375f39d397SChris Mason static int balance_node_right(struct btrfs_trans_handle *trans,
385f39d397SChris Mason 			      struct extent_buffer *dst_buf,
395f39d397SChris Mason 			      struct extent_buffer *src_buf);
40afe5fea7STsutomu Itoh static void del_ptr(struct btrfs_root *root, struct btrfs_path *path,
41afe5fea7STsutomu Itoh 		    int level, int slot);
42d97e63b6SChris Mason 
43af024ed2SJohannes Thumshirn static const struct btrfs_csums {
44af024ed2SJohannes Thumshirn 	u16		size;
4559a0fcdbSDavid Sterba 	const char	name[10];
4659a0fcdbSDavid Sterba 	const char	driver[12];
47af024ed2SJohannes Thumshirn } btrfs_csums[] = {
48af024ed2SJohannes Thumshirn 	[BTRFS_CSUM_TYPE_CRC32] = { .size = 4, .name = "crc32c" },
493951e7f0SJohannes Thumshirn 	[BTRFS_CSUM_TYPE_XXHASH] = { .size = 8, .name = "xxhash64" },
503831bf00SJohannes Thumshirn 	[BTRFS_CSUM_TYPE_SHA256] = { .size = 32, .name = "sha256" },
51352ae07bSDavid Sterba 	[BTRFS_CSUM_TYPE_BLAKE2] = { .size = 32, .name = "blake2b",
52352ae07bSDavid Sterba 				     .driver = "blake2b-256" },
53af024ed2SJohannes Thumshirn };
54af024ed2SJohannes Thumshirn 
553a3178c7SJosef Bacik /*
563a3178c7SJosef Bacik  * The leaf data grows from end-to-front in the node.  this returns the address
573a3178c7SJosef Bacik  * of the start of the last item, which is the stop of the leaf data stack.
583a3178c7SJosef Bacik  */
593a3178c7SJosef Bacik static unsigned int leaf_data_end(const struct extent_buffer *leaf)
603a3178c7SJosef Bacik {
613a3178c7SJosef Bacik 	u32 nr = btrfs_header_nritems(leaf);
623a3178c7SJosef Bacik 
633a3178c7SJosef Bacik 	if (nr == 0)
643a3178c7SJosef Bacik 		return BTRFS_LEAF_DATA_SIZE(leaf->fs_info);
653a3178c7SJosef Bacik 	return btrfs_item_offset(leaf, nr - 1);
663a3178c7SJosef Bacik }
673a3178c7SJosef Bacik 
68637e3b48SJosef Bacik /*
69637e3b48SJosef Bacik  * Move data in a @leaf (using memmove, safe for overlapping ranges).
70637e3b48SJosef Bacik  *
71637e3b48SJosef Bacik  * @leaf:	leaf that we're doing a memmove on
72637e3b48SJosef Bacik  * @dst_offset:	item data offset we're moving to
73637e3b48SJosef Bacik  * @src_offset:	item data offset were' moving from
74637e3b48SJosef Bacik  * @len:	length of the data we're moving
75637e3b48SJosef Bacik  *
76637e3b48SJosef Bacik  * Wrapper around memmove_extent_buffer() that takes into account the header on
77637e3b48SJosef Bacik  * the leaf.  The btrfs_item offset's start directly after the header, so we
78637e3b48SJosef Bacik  * have to adjust any offsets to account for the header in the leaf.  This
79637e3b48SJosef Bacik  * handles that math to simplify the callers.
80637e3b48SJosef Bacik  */
81637e3b48SJosef Bacik static inline void memmove_leaf_data(const struct extent_buffer *leaf,
82637e3b48SJosef Bacik 				     unsigned long dst_offset,
83637e3b48SJosef Bacik 				     unsigned long src_offset,
84637e3b48SJosef Bacik 				     unsigned long len)
85637e3b48SJosef Bacik {
868009adf3SJosef Bacik 	memmove_extent_buffer(leaf, btrfs_item_nr_offset(leaf, 0) + dst_offset,
878009adf3SJosef Bacik 			      btrfs_item_nr_offset(leaf, 0) + src_offset, len);
88637e3b48SJosef Bacik }
89637e3b48SJosef Bacik 
90637e3b48SJosef Bacik /*
91637e3b48SJosef Bacik  * Copy item data from @src into @dst at the given @offset.
92637e3b48SJosef Bacik  *
93637e3b48SJosef Bacik  * @dst:	destination leaf that we're copying into
94637e3b48SJosef Bacik  * @src:	source leaf that we're copying from
95637e3b48SJosef Bacik  * @dst_offset:	item data offset we're copying to
96637e3b48SJosef Bacik  * @src_offset:	item data offset were' copying from
97637e3b48SJosef Bacik  * @len:	length of the data we're copying
98637e3b48SJosef Bacik  *
99637e3b48SJosef Bacik  * Wrapper around copy_extent_buffer() that takes into account the header on
100637e3b48SJosef Bacik  * the leaf.  The btrfs_item offset's start directly after the header, so we
101637e3b48SJosef Bacik  * have to adjust any offsets to account for the header in the leaf.  This
102637e3b48SJosef Bacik  * handles that math to simplify the callers.
103637e3b48SJosef Bacik  */
104637e3b48SJosef Bacik static inline void copy_leaf_data(const struct extent_buffer *dst,
105637e3b48SJosef Bacik 				  const struct extent_buffer *src,
106637e3b48SJosef Bacik 				  unsigned long dst_offset,
107637e3b48SJosef Bacik 				  unsigned long src_offset, unsigned long len)
108637e3b48SJosef Bacik {
1098009adf3SJosef Bacik 	copy_extent_buffer(dst, src, btrfs_item_nr_offset(dst, 0) + dst_offset,
1108009adf3SJosef Bacik 			   btrfs_item_nr_offset(src, 0) + src_offset, len);
111637e3b48SJosef Bacik }
112637e3b48SJosef Bacik 
113637e3b48SJosef Bacik /*
114637e3b48SJosef Bacik  * Move items in a @leaf (using memmove).
115637e3b48SJosef Bacik  *
116637e3b48SJosef Bacik  * @dst:	destination leaf for the items
117637e3b48SJosef Bacik  * @dst_item:	the item nr we're copying into
118637e3b48SJosef Bacik  * @src_item:	the item nr we're copying from
119637e3b48SJosef Bacik  * @nr_items:	the number of items to copy
120637e3b48SJosef Bacik  *
121637e3b48SJosef Bacik  * Wrapper around memmove_extent_buffer() that does the math to get the
122637e3b48SJosef Bacik  * appropriate offsets into the leaf from the item numbers.
123637e3b48SJosef Bacik  */
124637e3b48SJosef Bacik static inline void memmove_leaf_items(const struct extent_buffer *leaf,
125637e3b48SJosef Bacik 				      int dst_item, int src_item, int nr_items)
126637e3b48SJosef Bacik {
127637e3b48SJosef Bacik 	memmove_extent_buffer(leaf, btrfs_item_nr_offset(leaf, dst_item),
128637e3b48SJosef Bacik 			      btrfs_item_nr_offset(leaf, src_item),
129637e3b48SJosef Bacik 			      nr_items * sizeof(struct btrfs_item));
130637e3b48SJosef Bacik }
131637e3b48SJosef Bacik 
132637e3b48SJosef Bacik /*
133637e3b48SJosef Bacik  * Copy items from @src into @dst at the given @offset.
134637e3b48SJosef Bacik  *
135637e3b48SJosef Bacik  * @dst:	destination leaf for the items
136637e3b48SJosef Bacik  * @src:	source leaf for the items
137637e3b48SJosef Bacik  * @dst_item:	the item nr we're copying into
138637e3b48SJosef Bacik  * @src_item:	the item nr we're copying from
139637e3b48SJosef Bacik  * @nr_items:	the number of items to copy
140637e3b48SJosef Bacik  *
141637e3b48SJosef Bacik  * Wrapper around copy_extent_buffer() that does the math to get the
142637e3b48SJosef Bacik  * appropriate offsets into the leaf from the item numbers.
143637e3b48SJosef Bacik  */
144637e3b48SJosef Bacik static inline void copy_leaf_items(const struct extent_buffer *dst,
145637e3b48SJosef Bacik 				   const struct extent_buffer *src,
146637e3b48SJosef Bacik 				   int dst_item, int src_item, int nr_items)
147637e3b48SJosef Bacik {
148637e3b48SJosef Bacik 	copy_extent_buffer(dst, src, btrfs_item_nr_offset(dst, dst_item),
149637e3b48SJosef Bacik 			      btrfs_item_nr_offset(src, src_item),
150637e3b48SJosef Bacik 			      nr_items * sizeof(struct btrfs_item));
151637e3b48SJosef Bacik }
152637e3b48SJosef Bacik 
153af024ed2SJohannes Thumshirn int btrfs_super_csum_size(const struct btrfs_super_block *s)
154af024ed2SJohannes Thumshirn {
155af024ed2SJohannes Thumshirn 	u16 t = btrfs_super_csum_type(s);
156af024ed2SJohannes Thumshirn 	/*
157af024ed2SJohannes Thumshirn 	 * csum type is validated at mount time
158af024ed2SJohannes Thumshirn 	 */
159af024ed2SJohannes Thumshirn 	return btrfs_csums[t].size;
160af024ed2SJohannes Thumshirn }
161af024ed2SJohannes Thumshirn 
162af024ed2SJohannes Thumshirn const char *btrfs_super_csum_name(u16 csum_type)
163af024ed2SJohannes Thumshirn {
164af024ed2SJohannes Thumshirn 	/* csum type is validated at mount time */
165af024ed2SJohannes Thumshirn 	return btrfs_csums[csum_type].name;
166af024ed2SJohannes Thumshirn }
167af024ed2SJohannes Thumshirn 
168b4e967beSDavid Sterba /*
169b4e967beSDavid Sterba  * Return driver name if defined, otherwise the name that's also a valid driver
170b4e967beSDavid Sterba  * name
171b4e967beSDavid Sterba  */
172b4e967beSDavid Sterba const char *btrfs_super_csum_driver(u16 csum_type)
173b4e967beSDavid Sterba {
174b4e967beSDavid Sterba 	/* csum type is validated at mount time */
17559a0fcdbSDavid Sterba 	return btrfs_csums[csum_type].driver[0] ?
17659a0fcdbSDavid Sterba 		btrfs_csums[csum_type].driver :
177b4e967beSDavid Sterba 		btrfs_csums[csum_type].name;
178b4e967beSDavid Sterba }
179b4e967beSDavid Sterba 
180604997b4SDavid Sterba size_t __attribute_const__ btrfs_get_num_csums(void)
181f7cea56cSDavid Sterba {
182f7cea56cSDavid Sterba 	return ARRAY_SIZE(btrfs_csums);
183f7cea56cSDavid Sterba }
184f7cea56cSDavid Sterba 
1852c90e5d6SChris Mason struct btrfs_path *btrfs_alloc_path(void)
1862c90e5d6SChris Mason {
187a4c853afSChenXiaoSong 	might_sleep();
188a4c853afSChenXiaoSong 
189e2c89907SMasahiro Yamada 	return kmem_cache_zalloc(btrfs_path_cachep, GFP_NOFS);
1902c90e5d6SChris Mason }
1912c90e5d6SChris Mason 
192d352ac68SChris Mason /* this also releases the path */
1932c90e5d6SChris Mason void btrfs_free_path(struct btrfs_path *p)
1942c90e5d6SChris Mason {
195ff175d57SJesper Juhl 	if (!p)
196ff175d57SJesper Juhl 		return;
197b3b4aa74SDavid Sterba 	btrfs_release_path(p);
1982c90e5d6SChris Mason 	kmem_cache_free(btrfs_path_cachep, p);
1992c90e5d6SChris Mason }
2002c90e5d6SChris Mason 
201d352ac68SChris Mason /*
202d352ac68SChris Mason  * path release drops references on the extent buffers in the path
203d352ac68SChris Mason  * and it drops any locks held by this path
204d352ac68SChris Mason  *
205d352ac68SChris Mason  * It is safe to call this on paths that no locks or extent buffers held.
206d352ac68SChris Mason  */
207b3b4aa74SDavid Sterba noinline void btrfs_release_path(struct btrfs_path *p)
208eb60ceacSChris Mason {
209eb60ceacSChris Mason 	int i;
210a2135011SChris Mason 
211234b63a0SChris Mason 	for (i = 0; i < BTRFS_MAX_LEVEL; i++) {
2123f157a2fSChris Mason 		p->slots[i] = 0;
213eb60ceacSChris Mason 		if (!p->nodes[i])
214925baeddSChris Mason 			continue;
215925baeddSChris Mason 		if (p->locks[i]) {
216bd681513SChris Mason 			btrfs_tree_unlock_rw(p->nodes[i], p->locks[i]);
217925baeddSChris Mason 			p->locks[i] = 0;
218925baeddSChris Mason 		}
2195f39d397SChris Mason 		free_extent_buffer(p->nodes[i]);
2203f157a2fSChris Mason 		p->nodes[i] = NULL;
221eb60ceacSChris Mason 	}
222eb60ceacSChris Mason }
223eb60ceacSChris Mason 
224d352ac68SChris Mason /*
2258bb808c6SDavid Sterba  * We want the transaction abort to print stack trace only for errors where the
2268bb808c6SDavid Sterba  * cause could be a bug, eg. due to ENOSPC, and not for common errors that are
2278bb808c6SDavid Sterba  * caused by external factors.
2288bb808c6SDavid Sterba  */
2298bb808c6SDavid Sterba bool __cold abort_should_print_stack(int errno)
2308bb808c6SDavid Sterba {
2318bb808c6SDavid Sterba 	switch (errno) {
2328bb808c6SDavid Sterba 	case -EIO:
2338bb808c6SDavid Sterba 	case -EROFS:
2348bb808c6SDavid Sterba 	case -ENOMEM:
2358bb808c6SDavid Sterba 		return false;
2368bb808c6SDavid Sterba 	}
2378bb808c6SDavid Sterba 	return true;
2388bb808c6SDavid Sterba }
2398bb808c6SDavid Sterba 
2408bb808c6SDavid Sterba /*
241d352ac68SChris Mason  * safely gets a reference on the root node of a tree.  A lock
242d352ac68SChris Mason  * is not taken, so a concurrent writer may put a different node
243d352ac68SChris Mason  * at the root of the tree.  See btrfs_lock_root_node for the
244d352ac68SChris Mason  * looping required.
245d352ac68SChris Mason  *
246d352ac68SChris Mason  * The extent buffer returned by this has a reference taken, so
247d352ac68SChris Mason  * it won't disappear.  It may stop being the root of the tree
248d352ac68SChris Mason  * at any time because there are no locks held.
249d352ac68SChris Mason  */
250925baeddSChris Mason struct extent_buffer *btrfs_root_node(struct btrfs_root *root)
251925baeddSChris Mason {
252925baeddSChris Mason 	struct extent_buffer *eb;
253240f62c8SChris Mason 
2543083ee2eSJosef Bacik 	while (1) {
255240f62c8SChris Mason 		rcu_read_lock();
256240f62c8SChris Mason 		eb = rcu_dereference(root->node);
2573083ee2eSJosef Bacik 
2583083ee2eSJosef Bacik 		/*
2593083ee2eSJosef Bacik 		 * RCU really hurts here, we could free up the root node because
26001327610SNicholas D Steeves 		 * it was COWed but we may not get the new root node yet so do
2613083ee2eSJosef Bacik 		 * the inc_not_zero dance and if it doesn't work then
2623083ee2eSJosef Bacik 		 * synchronize_rcu and try again.
2633083ee2eSJosef Bacik 		 */
2643083ee2eSJosef Bacik 		if (atomic_inc_not_zero(&eb->refs)) {
265240f62c8SChris Mason 			rcu_read_unlock();
2663083ee2eSJosef Bacik 			break;
2673083ee2eSJosef Bacik 		}
2683083ee2eSJosef Bacik 		rcu_read_unlock();
2693083ee2eSJosef Bacik 		synchronize_rcu();
2703083ee2eSJosef Bacik 	}
271925baeddSChris Mason 	return eb;
272925baeddSChris Mason }
273925baeddSChris Mason 
27492a7cc42SQu Wenruo /*
27592a7cc42SQu Wenruo  * Cowonly root (not-shareable trees, everything not subvolume or reloc roots),
27692a7cc42SQu Wenruo  * just get put onto a simple dirty list.  Transaction walks this list to make
27792a7cc42SQu Wenruo  * sure they get properly updated on disk.
278d352ac68SChris Mason  */
2790b86a832SChris Mason static void add_root_to_dirty_list(struct btrfs_root *root)
2800b86a832SChris Mason {
2810b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
2820b246afaSJeff Mahoney 
283e7070be1SJosef Bacik 	if (test_bit(BTRFS_ROOT_DIRTY, &root->state) ||
284e7070be1SJosef Bacik 	    !test_bit(BTRFS_ROOT_TRACK_DIRTY, &root->state))
285e7070be1SJosef Bacik 		return;
286e7070be1SJosef Bacik 
2870b246afaSJeff Mahoney 	spin_lock(&fs_info->trans_lock);
288e7070be1SJosef Bacik 	if (!test_and_set_bit(BTRFS_ROOT_DIRTY, &root->state)) {
289e7070be1SJosef Bacik 		/* Want the extent tree to be the last on the list */
2904fd786e6SMisono Tomohiro 		if (root->root_key.objectid == BTRFS_EXTENT_TREE_OBJECTID)
291e7070be1SJosef Bacik 			list_move_tail(&root->dirty_list,
2920b246afaSJeff Mahoney 				       &fs_info->dirty_cowonly_roots);
293e7070be1SJosef Bacik 		else
294e7070be1SJosef Bacik 			list_move(&root->dirty_list,
2950b246afaSJeff Mahoney 				  &fs_info->dirty_cowonly_roots);
2960b86a832SChris Mason 	}
2970b246afaSJeff Mahoney 	spin_unlock(&fs_info->trans_lock);
2980b86a832SChris Mason }
2990b86a832SChris Mason 
300d352ac68SChris Mason /*
301d352ac68SChris Mason  * used by snapshot creation to make a copy of a root for a tree with
302d352ac68SChris Mason  * a given objectid.  The buffer with the new root node is returned in
303d352ac68SChris Mason  * cow_ret, and this func returns zero on success or a negative error code.
304d352ac68SChris Mason  */
305be20aa9dSChris Mason int btrfs_copy_root(struct btrfs_trans_handle *trans,
306be20aa9dSChris Mason 		      struct btrfs_root *root,
307be20aa9dSChris Mason 		      struct extent_buffer *buf,
308be20aa9dSChris Mason 		      struct extent_buffer **cow_ret, u64 new_root_objectid)
309be20aa9dSChris Mason {
3100b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
311be20aa9dSChris Mason 	struct extent_buffer *cow;
312be20aa9dSChris Mason 	int ret = 0;
313be20aa9dSChris Mason 	int level;
3145d4f98a2SYan Zheng 	struct btrfs_disk_key disk_key;
315be20aa9dSChris Mason 
31692a7cc42SQu Wenruo 	WARN_ON(test_bit(BTRFS_ROOT_SHAREABLE, &root->state) &&
3170b246afaSJeff Mahoney 		trans->transid != fs_info->running_transaction->transid);
31892a7cc42SQu Wenruo 	WARN_ON(test_bit(BTRFS_ROOT_SHAREABLE, &root->state) &&
31927cdeb70SMiao Xie 		trans->transid != root->last_trans);
320be20aa9dSChris Mason 
321be20aa9dSChris Mason 	level = btrfs_header_level(buf);
3225d4f98a2SYan Zheng 	if (level == 0)
3235d4f98a2SYan Zheng 		btrfs_item_key(buf, &disk_key, 0);
3245d4f98a2SYan Zheng 	else
3255d4f98a2SYan Zheng 		btrfs_node_key(buf, &disk_key, 0);
32631840ae1SZheng Yan 
3274d75f8a9SDavid Sterba 	cow = btrfs_alloc_tree_block(trans, root, 0, new_root_objectid,
328cf6f34aaSJosef Bacik 				     &disk_key, level, buf->start, 0,
329cf6f34aaSJosef Bacik 				     BTRFS_NESTING_NEW_ROOT);
3305d4f98a2SYan Zheng 	if (IS_ERR(cow))
331be20aa9dSChris Mason 		return PTR_ERR(cow);
332be20aa9dSChris Mason 
33358e8012cSDavid Sterba 	copy_extent_buffer_full(cow, buf);
334be20aa9dSChris Mason 	btrfs_set_header_bytenr(cow, cow->start);
335be20aa9dSChris Mason 	btrfs_set_header_generation(cow, trans->transid);
3365d4f98a2SYan Zheng 	btrfs_set_header_backref_rev(cow, BTRFS_MIXED_BACKREF_REV);
3375d4f98a2SYan Zheng 	btrfs_clear_header_flag(cow, BTRFS_HEADER_FLAG_WRITTEN |
3385d4f98a2SYan Zheng 				     BTRFS_HEADER_FLAG_RELOC);
3395d4f98a2SYan Zheng 	if (new_root_objectid == BTRFS_TREE_RELOC_OBJECTID)
3405d4f98a2SYan Zheng 		btrfs_set_header_flag(cow, BTRFS_HEADER_FLAG_RELOC);
3415d4f98a2SYan Zheng 	else
342be20aa9dSChris Mason 		btrfs_set_header_owner(cow, new_root_objectid);
343be20aa9dSChris Mason 
344de37aa51SNikolay Borisov 	write_extent_buffer_fsid(cow, fs_info->fs_devices->metadata_uuid);
3452b82032cSYan Zheng 
346be20aa9dSChris Mason 	WARN_ON(btrfs_header_generation(buf) > trans->transid);
3475d4f98a2SYan Zheng 	if (new_root_objectid == BTRFS_TREE_RELOC_OBJECTID)
348e339a6b0SJosef Bacik 		ret = btrfs_inc_ref(trans, root, cow, 1);
3495d4f98a2SYan Zheng 	else
350e339a6b0SJosef Bacik 		ret = btrfs_inc_ref(trans, root, cow, 0);
351867ed321SJosef Bacik 	if (ret) {
35272c9925fSFilipe Manana 		btrfs_tree_unlock(cow);
35372c9925fSFilipe Manana 		free_extent_buffer(cow);
354867ed321SJosef Bacik 		btrfs_abort_transaction(trans, ret);
355be20aa9dSChris Mason 		return ret;
356867ed321SJosef Bacik 	}
357be20aa9dSChris Mason 
358be20aa9dSChris Mason 	btrfs_mark_buffer_dirty(cow);
359be20aa9dSChris Mason 	*cow_ret = cow;
360be20aa9dSChris Mason 	return 0;
361be20aa9dSChris Mason }
362be20aa9dSChris Mason 
363d352ac68SChris Mason /*
3645d4f98a2SYan Zheng  * check if the tree block can be shared by multiple trees
3655d4f98a2SYan Zheng  */
3665d4f98a2SYan Zheng int btrfs_block_can_be_shared(struct btrfs_root *root,
3675d4f98a2SYan Zheng 			      struct extent_buffer *buf)
3685d4f98a2SYan Zheng {
3695d4f98a2SYan Zheng 	/*
37092a7cc42SQu Wenruo 	 * Tree blocks not in shareable trees and tree roots are never shared.
37192a7cc42SQu Wenruo 	 * If a block was allocated after the last snapshot and the block was
37292a7cc42SQu Wenruo 	 * not allocated by tree relocation, we know the block is not shared.
3735d4f98a2SYan Zheng 	 */
37492a7cc42SQu Wenruo 	if (test_bit(BTRFS_ROOT_SHAREABLE, &root->state) &&
3755d4f98a2SYan Zheng 	    buf != root->node && buf != root->commit_root &&
3765d4f98a2SYan Zheng 	    (btrfs_header_generation(buf) <=
3775d4f98a2SYan Zheng 	     btrfs_root_last_snapshot(&root->root_item) ||
3785d4f98a2SYan Zheng 	     btrfs_header_flag(buf, BTRFS_HEADER_FLAG_RELOC)))
3795d4f98a2SYan Zheng 		return 1;
380a79865c6SNikolay Borisov 
3815d4f98a2SYan Zheng 	return 0;
3825d4f98a2SYan Zheng }
3835d4f98a2SYan Zheng 
3845d4f98a2SYan Zheng static noinline int update_ref_for_cow(struct btrfs_trans_handle *trans,
3855d4f98a2SYan Zheng 				       struct btrfs_root *root,
3865d4f98a2SYan Zheng 				       struct extent_buffer *buf,
387f0486c68SYan, Zheng 				       struct extent_buffer *cow,
388f0486c68SYan, Zheng 				       int *last_ref)
3895d4f98a2SYan Zheng {
3900b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
3915d4f98a2SYan Zheng 	u64 refs;
3925d4f98a2SYan Zheng 	u64 owner;
3935d4f98a2SYan Zheng 	u64 flags;
3945d4f98a2SYan Zheng 	u64 new_flags = 0;
3955d4f98a2SYan Zheng 	int ret;
3965d4f98a2SYan Zheng 
3975d4f98a2SYan Zheng 	/*
3985d4f98a2SYan Zheng 	 * Backrefs update rules:
3995d4f98a2SYan Zheng 	 *
4005d4f98a2SYan Zheng 	 * Always use full backrefs for extent pointers in tree block
4015d4f98a2SYan Zheng 	 * allocated by tree relocation.
4025d4f98a2SYan Zheng 	 *
4035d4f98a2SYan Zheng 	 * If a shared tree block is no longer referenced by its owner
4045d4f98a2SYan Zheng 	 * tree (btrfs_header_owner(buf) == root->root_key.objectid),
4055d4f98a2SYan Zheng 	 * use full backrefs for extent pointers in tree block.
4065d4f98a2SYan Zheng 	 *
4075d4f98a2SYan Zheng 	 * If a tree block is been relocating
4085d4f98a2SYan Zheng 	 * (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID),
4095d4f98a2SYan Zheng 	 * use full backrefs for extent pointers in tree block.
4105d4f98a2SYan Zheng 	 * The reason for this is some operations (such as drop tree)
4115d4f98a2SYan Zheng 	 * are only allowed for blocks use full backrefs.
4125d4f98a2SYan Zheng 	 */
4135d4f98a2SYan Zheng 
4145d4f98a2SYan Zheng 	if (btrfs_block_can_be_shared(root, buf)) {
4152ff7e61eSJeff Mahoney 		ret = btrfs_lookup_extent_info(trans, fs_info, buf->start,
4163173a18fSJosef Bacik 					       btrfs_header_level(buf), 1,
4173173a18fSJosef Bacik 					       &refs, &flags);
418be1a5564SMark Fasheh 		if (ret)
419be1a5564SMark Fasheh 			return ret;
420e5df9573SMark Fasheh 		if (refs == 0) {
421e5df9573SMark Fasheh 			ret = -EROFS;
4220b246afaSJeff Mahoney 			btrfs_handle_fs_error(fs_info, ret, NULL);
423e5df9573SMark Fasheh 			return ret;
424e5df9573SMark Fasheh 		}
4255d4f98a2SYan Zheng 	} else {
4265d4f98a2SYan Zheng 		refs = 1;
4275d4f98a2SYan Zheng 		if (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID ||
4285d4f98a2SYan Zheng 		    btrfs_header_backref_rev(buf) < BTRFS_MIXED_BACKREF_REV)
4295d4f98a2SYan Zheng 			flags = BTRFS_BLOCK_FLAG_FULL_BACKREF;
4305d4f98a2SYan Zheng 		else
4315d4f98a2SYan Zheng 			flags = 0;
4325d4f98a2SYan Zheng 	}
4335d4f98a2SYan Zheng 
4345d4f98a2SYan Zheng 	owner = btrfs_header_owner(buf);
4355d4f98a2SYan Zheng 	BUG_ON(owner == BTRFS_TREE_RELOC_OBJECTID &&
4365d4f98a2SYan Zheng 	       !(flags & BTRFS_BLOCK_FLAG_FULL_BACKREF));
4375d4f98a2SYan Zheng 
4385d4f98a2SYan Zheng 	if (refs > 1) {
4395d4f98a2SYan Zheng 		if ((owner == root->root_key.objectid ||
4405d4f98a2SYan Zheng 		     root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID) &&
4415d4f98a2SYan Zheng 		    !(flags & BTRFS_BLOCK_FLAG_FULL_BACKREF)) {
442e339a6b0SJosef Bacik 			ret = btrfs_inc_ref(trans, root, buf, 1);
443692826b2SJeff Mahoney 			if (ret)
444692826b2SJeff Mahoney 				return ret;
4455d4f98a2SYan Zheng 
4465d4f98a2SYan Zheng 			if (root->root_key.objectid ==
4475d4f98a2SYan Zheng 			    BTRFS_TREE_RELOC_OBJECTID) {
448e339a6b0SJosef Bacik 				ret = btrfs_dec_ref(trans, root, buf, 0);
449692826b2SJeff Mahoney 				if (ret)
450692826b2SJeff Mahoney 					return ret;
451e339a6b0SJosef Bacik 				ret = btrfs_inc_ref(trans, root, cow, 1);
452692826b2SJeff Mahoney 				if (ret)
453692826b2SJeff Mahoney 					return ret;
4545d4f98a2SYan Zheng 			}
4555d4f98a2SYan Zheng 			new_flags |= BTRFS_BLOCK_FLAG_FULL_BACKREF;
4565d4f98a2SYan Zheng 		} else {
4575d4f98a2SYan Zheng 
4585d4f98a2SYan Zheng 			if (root->root_key.objectid ==
4595d4f98a2SYan Zheng 			    BTRFS_TREE_RELOC_OBJECTID)
460e339a6b0SJosef Bacik 				ret = btrfs_inc_ref(trans, root, cow, 1);
4615d4f98a2SYan Zheng 			else
462e339a6b0SJosef Bacik 				ret = btrfs_inc_ref(trans, root, cow, 0);
463692826b2SJeff Mahoney 			if (ret)
464692826b2SJeff Mahoney 				return ret;
4655d4f98a2SYan Zheng 		}
4665d4f98a2SYan Zheng 		if (new_flags != 0) {
467b1c79e09SJosef Bacik 			int level = btrfs_header_level(buf);
468b1c79e09SJosef Bacik 
46942c9d0b5SDavid Sterba 			ret = btrfs_set_disk_extent_flags(trans, buf,
4702fe6a5a1SDavid Sterba 							  new_flags, level);
471be1a5564SMark Fasheh 			if (ret)
472be1a5564SMark Fasheh 				return ret;
4735d4f98a2SYan Zheng 		}
4745d4f98a2SYan Zheng 	} else {
4755d4f98a2SYan Zheng 		if (flags & BTRFS_BLOCK_FLAG_FULL_BACKREF) {
4765d4f98a2SYan Zheng 			if (root->root_key.objectid ==
4775d4f98a2SYan Zheng 			    BTRFS_TREE_RELOC_OBJECTID)
478e339a6b0SJosef Bacik 				ret = btrfs_inc_ref(trans, root, cow, 1);
4795d4f98a2SYan Zheng 			else
480e339a6b0SJosef Bacik 				ret = btrfs_inc_ref(trans, root, cow, 0);
481692826b2SJeff Mahoney 			if (ret)
482692826b2SJeff Mahoney 				return ret;
483e339a6b0SJosef Bacik 			ret = btrfs_dec_ref(trans, root, buf, 1);
484692826b2SJeff Mahoney 			if (ret)
485692826b2SJeff Mahoney 				return ret;
4865d4f98a2SYan Zheng 		}
487190a8339SJosef Bacik 		btrfs_clear_buffer_dirty(trans, buf);
488f0486c68SYan, Zheng 		*last_ref = 1;
4895d4f98a2SYan Zheng 	}
4905d4f98a2SYan Zheng 	return 0;
4915d4f98a2SYan Zheng }
4925d4f98a2SYan Zheng 
4935d4f98a2SYan Zheng /*
494d397712bSChris Mason  * does the dirty work in cow of a single block.  The parent block (if
495d397712bSChris Mason  * supplied) is updated to point to the new cow copy.  The new buffer is marked
496d397712bSChris Mason  * dirty and returned locked.  If you modify the block it needs to be marked
497d397712bSChris Mason  * dirty again.
498d352ac68SChris Mason  *
499d352ac68SChris Mason  * search_start -- an allocation hint for the new block
500d352ac68SChris Mason  *
501d397712bSChris Mason  * empty_size -- a hint that you plan on doing more cow.  This is the size in
502d397712bSChris Mason  * bytes the allocator should try to find free next to the block it returns.
503d397712bSChris Mason  * This is just a hint and may be ignored by the allocator.
504d352ac68SChris Mason  */
505d397712bSChris Mason static noinline int __btrfs_cow_block(struct btrfs_trans_handle *trans,
5065f39d397SChris Mason 			     struct btrfs_root *root,
5075f39d397SChris Mason 			     struct extent_buffer *buf,
5085f39d397SChris Mason 			     struct extent_buffer *parent, int parent_slot,
5095f39d397SChris Mason 			     struct extent_buffer **cow_ret,
5109631e4ccSJosef Bacik 			     u64 search_start, u64 empty_size,
5119631e4ccSJosef Bacik 			     enum btrfs_lock_nesting nest)
5126702ed49SChris Mason {
5130b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
5145d4f98a2SYan Zheng 	struct btrfs_disk_key disk_key;
5155f39d397SChris Mason 	struct extent_buffer *cow;
516be1a5564SMark Fasheh 	int level, ret;
517f0486c68SYan, Zheng 	int last_ref = 0;
518925baeddSChris Mason 	int unlock_orig = 0;
5190f5053ebSGoldwyn Rodrigues 	u64 parent_start = 0;
5206702ed49SChris Mason 
521925baeddSChris Mason 	if (*cow_ret == buf)
522925baeddSChris Mason 		unlock_orig = 1;
523925baeddSChris Mason 
52449d0c642SFilipe Manana 	btrfs_assert_tree_write_locked(buf);
525925baeddSChris Mason 
52692a7cc42SQu Wenruo 	WARN_ON(test_bit(BTRFS_ROOT_SHAREABLE, &root->state) &&
5270b246afaSJeff Mahoney 		trans->transid != fs_info->running_transaction->transid);
52892a7cc42SQu Wenruo 	WARN_ON(test_bit(BTRFS_ROOT_SHAREABLE, &root->state) &&
52927cdeb70SMiao Xie 		trans->transid != root->last_trans);
5305f39d397SChris Mason 
5317bb86316SChris Mason 	level = btrfs_header_level(buf);
53231840ae1SZheng Yan 
5335d4f98a2SYan Zheng 	if (level == 0)
5345d4f98a2SYan Zheng 		btrfs_item_key(buf, &disk_key, 0);
5355d4f98a2SYan Zheng 	else
5365d4f98a2SYan Zheng 		btrfs_node_key(buf, &disk_key, 0);
5375d4f98a2SYan Zheng 
5380f5053ebSGoldwyn Rodrigues 	if ((root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID) && parent)
5395d4f98a2SYan Zheng 		parent_start = parent->start;
5405d4f98a2SYan Zheng 
54179bd3712SFilipe Manana 	cow = btrfs_alloc_tree_block(trans, root, parent_start,
54279bd3712SFilipe Manana 				     root->root_key.objectid, &disk_key, level,
54379bd3712SFilipe Manana 				     search_start, empty_size, nest);
5446702ed49SChris Mason 	if (IS_ERR(cow))
5456702ed49SChris Mason 		return PTR_ERR(cow);
5466702ed49SChris Mason 
547b4ce94deSChris Mason 	/* cow is set to blocking by btrfs_init_new_buffer */
548b4ce94deSChris Mason 
54958e8012cSDavid Sterba 	copy_extent_buffer_full(cow, buf);
550db94535dSChris Mason 	btrfs_set_header_bytenr(cow, cow->start);
5515f39d397SChris Mason 	btrfs_set_header_generation(cow, trans->transid);
5525d4f98a2SYan Zheng 	btrfs_set_header_backref_rev(cow, BTRFS_MIXED_BACKREF_REV);
5535d4f98a2SYan Zheng 	btrfs_clear_header_flag(cow, BTRFS_HEADER_FLAG_WRITTEN |
5545d4f98a2SYan Zheng 				     BTRFS_HEADER_FLAG_RELOC);
5555d4f98a2SYan Zheng 	if (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID)
5565d4f98a2SYan Zheng 		btrfs_set_header_flag(cow, BTRFS_HEADER_FLAG_RELOC);
5575d4f98a2SYan Zheng 	else
5585f39d397SChris Mason 		btrfs_set_header_owner(cow, root->root_key.objectid);
5596702ed49SChris Mason 
560de37aa51SNikolay Borisov 	write_extent_buffer_fsid(cow, fs_info->fs_devices->metadata_uuid);
5612b82032cSYan Zheng 
562be1a5564SMark Fasheh 	ret = update_ref_for_cow(trans, root, buf, cow, &last_ref);
563b68dc2a9SMark Fasheh 	if (ret) {
564572c83acSJosef Bacik 		btrfs_tree_unlock(cow);
565572c83acSJosef Bacik 		free_extent_buffer(cow);
56666642832SJeff Mahoney 		btrfs_abort_transaction(trans, ret);
567b68dc2a9SMark Fasheh 		return ret;
568b68dc2a9SMark Fasheh 	}
5691a40e23bSZheng Yan 
57092a7cc42SQu Wenruo 	if (test_bit(BTRFS_ROOT_SHAREABLE, &root->state)) {
57183d4cfd4SJosef Bacik 		ret = btrfs_reloc_cow_block(trans, root, buf, cow);
57293314e3bSZhaolei 		if (ret) {
573572c83acSJosef Bacik 			btrfs_tree_unlock(cow);
574572c83acSJosef Bacik 			free_extent_buffer(cow);
57566642832SJeff Mahoney 			btrfs_abort_transaction(trans, ret);
57683d4cfd4SJosef Bacik 			return ret;
57783d4cfd4SJosef Bacik 		}
57893314e3bSZhaolei 	}
5793fd0a558SYan, Zheng 
5806702ed49SChris Mason 	if (buf == root->node) {
581925baeddSChris Mason 		WARN_ON(parent && parent != buf);
5825d4f98a2SYan Zheng 		if (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID ||
5835d4f98a2SYan Zheng 		    btrfs_header_backref_rev(buf) < BTRFS_MIXED_BACKREF_REV)
5845d4f98a2SYan Zheng 			parent_start = buf->start;
585925baeddSChris Mason 
58667439dadSDavid Sterba 		atomic_inc(&cow->refs);
587406808abSFilipe Manana 		ret = btrfs_tree_mod_log_insert_root(root->node, cow, true);
588d9d19a01SDavid Sterba 		BUG_ON(ret < 0);
589240f62c8SChris Mason 		rcu_assign_pointer(root->node, cow);
590925baeddSChris Mason 
5917a163608SFilipe Manana 		btrfs_free_tree_block(trans, btrfs_root_id(root), buf,
5927a163608SFilipe Manana 				      parent_start, last_ref);
5935f39d397SChris Mason 		free_extent_buffer(buf);
5940b86a832SChris Mason 		add_root_to_dirty_list(root);
5956702ed49SChris Mason 	} else {
5965d4f98a2SYan Zheng 		WARN_ON(trans->transid != btrfs_header_generation(parent));
597f3a84ccdSFilipe Manana 		btrfs_tree_mod_log_insert_key(parent, parent_slot,
59833cff222SFilipe Manana 					      BTRFS_MOD_LOG_KEY_REPLACE);
5995f39d397SChris Mason 		btrfs_set_node_blockptr(parent, parent_slot,
600db94535dSChris Mason 					cow->start);
60174493f7aSChris Mason 		btrfs_set_node_ptr_generation(parent, parent_slot,
60274493f7aSChris Mason 					      trans->transid);
6036702ed49SChris Mason 		btrfs_mark_buffer_dirty(parent);
6045de865eeSFilipe David Borba Manana 		if (last_ref) {
605f3a84ccdSFilipe Manana 			ret = btrfs_tree_mod_log_free_eb(buf);
6065de865eeSFilipe David Borba Manana 			if (ret) {
607572c83acSJosef Bacik 				btrfs_tree_unlock(cow);
608572c83acSJosef Bacik 				free_extent_buffer(cow);
60966642832SJeff Mahoney 				btrfs_abort_transaction(trans, ret);
6105de865eeSFilipe David Borba Manana 				return ret;
6115de865eeSFilipe David Borba Manana 			}
6125de865eeSFilipe David Borba Manana 		}
6137a163608SFilipe Manana 		btrfs_free_tree_block(trans, btrfs_root_id(root), buf,
6147a163608SFilipe Manana 				      parent_start, last_ref);
6156702ed49SChris Mason 	}
616925baeddSChris Mason 	if (unlock_orig)
617925baeddSChris Mason 		btrfs_tree_unlock(buf);
6183083ee2eSJosef Bacik 	free_extent_buffer_stale(buf);
6196702ed49SChris Mason 	btrfs_mark_buffer_dirty(cow);
6206702ed49SChris Mason 	*cow_ret = cow;
6216702ed49SChris Mason 	return 0;
6226702ed49SChris Mason }
6236702ed49SChris Mason 
6245d4f98a2SYan Zheng static inline int should_cow_block(struct btrfs_trans_handle *trans,
6255d4f98a2SYan Zheng 				   struct btrfs_root *root,
6265d4f98a2SYan Zheng 				   struct extent_buffer *buf)
6275d4f98a2SYan Zheng {
628f5ee5c9aSJeff Mahoney 	if (btrfs_is_testing(root->fs_info))
629faa2dbf0SJosef Bacik 		return 0;
630fccb84c9SDavid Sterba 
631d1980131SDavid Sterba 	/* Ensure we can see the FORCE_COW bit */
632d1980131SDavid Sterba 	smp_mb__before_atomic();
633f1ebcc74SLiu Bo 
634f1ebcc74SLiu Bo 	/*
635f1ebcc74SLiu Bo 	 * We do not need to cow a block if
636f1ebcc74SLiu Bo 	 * 1) this block is not created or changed in this transaction;
637f1ebcc74SLiu Bo 	 * 2) this block does not belong to TREE_RELOC tree;
638f1ebcc74SLiu Bo 	 * 3) the root is not forced COW.
639f1ebcc74SLiu Bo 	 *
640f1ebcc74SLiu Bo 	 * What is forced COW:
64101327610SNicholas D Steeves 	 *    when we create snapshot during committing the transaction,
64252042d8eSAndrea Gelmini 	 *    after we've finished copying src root, we must COW the shared
643f1ebcc74SLiu Bo 	 *    block to ensure the metadata consistency.
644f1ebcc74SLiu Bo 	 */
6455d4f98a2SYan Zheng 	if (btrfs_header_generation(buf) == trans->transid &&
6465d4f98a2SYan Zheng 	    !btrfs_header_flag(buf, BTRFS_HEADER_FLAG_WRITTEN) &&
6475d4f98a2SYan Zheng 	    !(root->root_key.objectid != BTRFS_TREE_RELOC_OBJECTID &&
648f1ebcc74SLiu Bo 	      btrfs_header_flag(buf, BTRFS_HEADER_FLAG_RELOC)) &&
64927cdeb70SMiao Xie 	    !test_bit(BTRFS_ROOT_FORCE_COW, &root->state))
6505d4f98a2SYan Zheng 		return 0;
6515d4f98a2SYan Zheng 	return 1;
6525d4f98a2SYan Zheng }
6535d4f98a2SYan Zheng 
654d352ac68SChris Mason /*
655d352ac68SChris Mason  * cows a single block, see __btrfs_cow_block for the real work.
65601327610SNicholas D Steeves  * This version of it has extra checks so that a block isn't COWed more than
657d352ac68SChris Mason  * once per transaction, as long as it hasn't been written yet
658d352ac68SChris Mason  */
659d397712bSChris Mason noinline int btrfs_cow_block(struct btrfs_trans_handle *trans,
6605f39d397SChris Mason 		    struct btrfs_root *root, struct extent_buffer *buf,
6615f39d397SChris Mason 		    struct extent_buffer *parent, int parent_slot,
6629631e4ccSJosef Bacik 		    struct extent_buffer **cow_ret,
6639631e4ccSJosef Bacik 		    enum btrfs_lock_nesting nest)
66402217ed2SChris Mason {
6650b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
6666702ed49SChris Mason 	u64 search_start;
667f510cfecSChris Mason 	int ret;
668dc17ff8fSChris Mason 
66983354f07SJosef Bacik 	if (test_bit(BTRFS_ROOT_DELETING, &root->state))
67083354f07SJosef Bacik 		btrfs_err(fs_info,
67183354f07SJosef Bacik 			"COW'ing blocks on a fs root that's being dropped");
67283354f07SJosef Bacik 
6730b246afaSJeff Mahoney 	if (trans->transaction != fs_info->running_transaction)
67431b1a2bdSJulia Lawall 		WARN(1, KERN_CRIT "trans %llu running %llu\n",
675c1c9ff7cSGeert Uytterhoeven 		       trans->transid,
6760b246afaSJeff Mahoney 		       fs_info->running_transaction->transid);
67731b1a2bdSJulia Lawall 
6780b246afaSJeff Mahoney 	if (trans->transid != fs_info->generation)
67931b1a2bdSJulia Lawall 		WARN(1, KERN_CRIT "trans %llu running %llu\n",
6800b246afaSJeff Mahoney 		       trans->transid, fs_info->generation);
681dc17ff8fSChris Mason 
6825d4f98a2SYan Zheng 	if (!should_cow_block(trans, root, buf)) {
68302217ed2SChris Mason 		*cow_ret = buf;
68402217ed2SChris Mason 		return 0;
68502217ed2SChris Mason 	}
686c487685dSChris Mason 
687ee22184bSByongho Lee 	search_start = buf->start & ~((u64)SZ_1G - 1);
688b4ce94deSChris Mason 
689f616f5cdSQu Wenruo 	/*
690f616f5cdSQu Wenruo 	 * Before CoWing this block for later modification, check if it's
691f616f5cdSQu Wenruo 	 * the subtree root and do the delayed subtree trace if needed.
692f616f5cdSQu Wenruo 	 *
693f616f5cdSQu Wenruo 	 * Also We don't care about the error, as it's handled internally.
694f616f5cdSQu Wenruo 	 */
695f616f5cdSQu Wenruo 	btrfs_qgroup_trace_subtree_after_cow(trans, root, buf);
696f510cfecSChris Mason 	ret = __btrfs_cow_block(trans, root, buf, parent,
6979631e4ccSJosef Bacik 				 parent_slot, cow_ret, search_start, 0, nest);
6981abe9b8aSliubo 
6991abe9b8aSliubo 	trace_btrfs_cow_block(root, buf, *cow_ret);
7001abe9b8aSliubo 
701f510cfecSChris Mason 	return ret;
7022c90e5d6SChris Mason }
703f75e2b79SJosef Bacik ALLOW_ERROR_INJECTION(btrfs_cow_block, ERRNO);
7046702ed49SChris Mason 
705d352ac68SChris Mason /*
706d352ac68SChris Mason  * helper function for defrag to decide if two blocks pointed to by a
707d352ac68SChris Mason  * node are actually close by
708d352ac68SChris Mason  */
7096b80053dSChris Mason static int close_blocks(u64 blocknr, u64 other, u32 blocksize)
7106702ed49SChris Mason {
7116b80053dSChris Mason 	if (blocknr < other && other - (blocknr + blocksize) < 32768)
7126702ed49SChris Mason 		return 1;
7136b80053dSChris Mason 	if (blocknr > other && blocknr - (other + blocksize) < 32768)
7146702ed49SChris Mason 		return 1;
71502217ed2SChris Mason 	return 0;
71602217ed2SChris Mason }
71702217ed2SChris Mason 
718ce6ef5abSDavid Sterba #ifdef __LITTLE_ENDIAN
719ce6ef5abSDavid Sterba 
720ce6ef5abSDavid Sterba /*
721ce6ef5abSDavid Sterba  * Compare two keys, on little-endian the disk order is same as CPU order and
722ce6ef5abSDavid Sterba  * we can avoid the conversion.
723ce6ef5abSDavid Sterba  */
724ce6ef5abSDavid Sterba static int comp_keys(const struct btrfs_disk_key *disk_key,
725ce6ef5abSDavid Sterba 		     const struct btrfs_key *k2)
726ce6ef5abSDavid Sterba {
727ce6ef5abSDavid Sterba 	const struct btrfs_key *k1 = (const struct btrfs_key *)disk_key;
728ce6ef5abSDavid Sterba 
729ce6ef5abSDavid Sterba 	return btrfs_comp_cpu_keys(k1, k2);
730ce6ef5abSDavid Sterba }
731ce6ef5abSDavid Sterba 
732ce6ef5abSDavid Sterba #else
733ce6ef5abSDavid Sterba 
734081e9573SChris Mason /*
735081e9573SChris Mason  * compare two keys in a memcmp fashion
736081e9573SChris Mason  */
737310712b2SOmar Sandoval static int comp_keys(const struct btrfs_disk_key *disk,
738310712b2SOmar Sandoval 		     const struct btrfs_key *k2)
739081e9573SChris Mason {
740081e9573SChris Mason 	struct btrfs_key k1;
741081e9573SChris Mason 
742081e9573SChris Mason 	btrfs_disk_key_to_cpu(&k1, disk);
743081e9573SChris Mason 
74420736abaSDiego Calleja 	return btrfs_comp_cpu_keys(&k1, k2);
745081e9573SChris Mason }
746ce6ef5abSDavid Sterba #endif
747081e9573SChris Mason 
748f3465ca4SJosef Bacik /*
749f3465ca4SJosef Bacik  * same as comp_keys only with two btrfs_key's
750f3465ca4SJosef Bacik  */
751e1f60a65SDavid Sterba int __pure btrfs_comp_cpu_keys(const struct btrfs_key *k1, const struct btrfs_key *k2)
752f3465ca4SJosef Bacik {
753f3465ca4SJosef Bacik 	if (k1->objectid > k2->objectid)
754f3465ca4SJosef Bacik 		return 1;
755f3465ca4SJosef Bacik 	if (k1->objectid < k2->objectid)
756f3465ca4SJosef Bacik 		return -1;
757f3465ca4SJosef Bacik 	if (k1->type > k2->type)
758f3465ca4SJosef Bacik 		return 1;
759f3465ca4SJosef Bacik 	if (k1->type < k2->type)
760f3465ca4SJosef Bacik 		return -1;
761f3465ca4SJosef Bacik 	if (k1->offset > k2->offset)
762f3465ca4SJosef Bacik 		return 1;
763f3465ca4SJosef Bacik 	if (k1->offset < k2->offset)
764f3465ca4SJosef Bacik 		return -1;
765f3465ca4SJosef Bacik 	return 0;
766f3465ca4SJosef Bacik }
767081e9573SChris Mason 
768d352ac68SChris Mason /*
769d352ac68SChris Mason  * this is used by the defrag code to go through all the
770d352ac68SChris Mason  * leaves pointed to by a node and reallocate them so that
771d352ac68SChris Mason  * disk order is close to key order
772d352ac68SChris Mason  */
7736702ed49SChris Mason int btrfs_realloc_node(struct btrfs_trans_handle *trans,
7745f39d397SChris Mason 		       struct btrfs_root *root, struct extent_buffer *parent,
775de78b51aSEric Sandeen 		       int start_slot, u64 *last_ret,
776a6b6e75eSChris Mason 		       struct btrfs_key *progress)
7776702ed49SChris Mason {
7780b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
7796b80053dSChris Mason 	struct extent_buffer *cur;
7806702ed49SChris Mason 	u64 blocknr;
781e9d0b13bSChris Mason 	u64 search_start = *last_ret;
782e9d0b13bSChris Mason 	u64 last_block = 0;
7836702ed49SChris Mason 	u64 other;
7846702ed49SChris Mason 	u32 parent_nritems;
7856702ed49SChris Mason 	int end_slot;
7866702ed49SChris Mason 	int i;
7876702ed49SChris Mason 	int err = 0;
7886b80053dSChris Mason 	u32 blocksize;
789081e9573SChris Mason 	int progress_passed = 0;
790081e9573SChris Mason 	struct btrfs_disk_key disk_key;
7916702ed49SChris Mason 
7920b246afaSJeff Mahoney 	WARN_ON(trans->transaction != fs_info->running_transaction);
7930b246afaSJeff Mahoney 	WARN_ON(trans->transid != fs_info->generation);
79486479a04SChris Mason 
7956b80053dSChris Mason 	parent_nritems = btrfs_header_nritems(parent);
7960b246afaSJeff Mahoney 	blocksize = fs_info->nodesize;
7975dfe2be7SFilipe Manana 	end_slot = parent_nritems - 1;
7986702ed49SChris Mason 
7995dfe2be7SFilipe Manana 	if (parent_nritems <= 1)
8006702ed49SChris Mason 		return 0;
8016702ed49SChris Mason 
8025dfe2be7SFilipe Manana 	for (i = start_slot; i <= end_slot; i++) {
8036702ed49SChris Mason 		int close = 1;
804a6b6e75eSChris Mason 
805081e9573SChris Mason 		btrfs_node_key(parent, &disk_key, i);
806081e9573SChris Mason 		if (!progress_passed && comp_keys(&disk_key, progress) < 0)
807081e9573SChris Mason 			continue;
808081e9573SChris Mason 
809081e9573SChris Mason 		progress_passed = 1;
8106b80053dSChris Mason 		blocknr = btrfs_node_blockptr(parent, i);
811e9d0b13bSChris Mason 		if (last_block == 0)
812e9d0b13bSChris Mason 			last_block = blocknr;
8135708b959SChris Mason 
8146702ed49SChris Mason 		if (i > 0) {
8156b80053dSChris Mason 			other = btrfs_node_blockptr(parent, i - 1);
8166b80053dSChris Mason 			close = close_blocks(blocknr, other, blocksize);
8176702ed49SChris Mason 		}
8185dfe2be7SFilipe Manana 		if (!close && i < end_slot) {
8196b80053dSChris Mason 			other = btrfs_node_blockptr(parent, i + 1);
8206b80053dSChris Mason 			close = close_blocks(blocknr, other, blocksize);
8216702ed49SChris Mason 		}
822e9d0b13bSChris Mason 		if (close) {
823e9d0b13bSChris Mason 			last_block = blocknr;
8246702ed49SChris Mason 			continue;
825e9d0b13bSChris Mason 		}
8266702ed49SChris Mason 
827206983b7SJosef Bacik 		cur = btrfs_read_node_slot(parent, i);
828206983b7SJosef Bacik 		if (IS_ERR(cur))
82964c043deSLiu Bo 			return PTR_ERR(cur);
830e9d0b13bSChris Mason 		if (search_start == 0)
8316b80053dSChris Mason 			search_start = last_block;
832e9d0b13bSChris Mason 
833e7a84565SChris Mason 		btrfs_tree_lock(cur);
8346b80053dSChris Mason 		err = __btrfs_cow_block(trans, root, cur, parent, i,
835e7a84565SChris Mason 					&cur, search_start,
8366b80053dSChris Mason 					min(16 * blocksize,
8379631e4ccSJosef Bacik 					    (end_slot - i) * blocksize),
8389631e4ccSJosef Bacik 					BTRFS_NESTING_COW);
839252c38f0SYan 		if (err) {
840e7a84565SChris Mason 			btrfs_tree_unlock(cur);
8416b80053dSChris Mason 			free_extent_buffer(cur);
8426702ed49SChris Mason 			break;
843252c38f0SYan 		}
844e7a84565SChris Mason 		search_start = cur->start;
845e7a84565SChris Mason 		last_block = cur->start;
846f2183bdeSChris Mason 		*last_ret = search_start;
847e7a84565SChris Mason 		btrfs_tree_unlock(cur);
848e7a84565SChris Mason 		free_extent_buffer(cur);
8496702ed49SChris Mason 	}
8506702ed49SChris Mason 	return err;
8516702ed49SChris Mason }
8526702ed49SChris Mason 
85374123bd7SChris Mason /*
854fb81212cSFilipe Manana  * Search for a key in the given extent_buffer.
8555f39d397SChris Mason  *
856a724f313SFilipe Manana  * The lower boundary for the search is specified by the slot number @first_slot.
857fdf8d595SAnand Jain  * Use a value of 0 to search over the whole extent buffer. Works for both
858fdf8d595SAnand Jain  * leaves and nodes.
85974123bd7SChris Mason  *
860fb81212cSFilipe Manana  * The slot in the extent buffer is returned via @slot. If the key exists in the
861fb81212cSFilipe Manana  * extent buffer, then @slot will point to the slot where the key is, otherwise
862fb81212cSFilipe Manana  * it points to the slot where you would insert the key.
863fb81212cSFilipe Manana  *
864fb81212cSFilipe Manana  * Slot may point to the total number of items (i.e. one position beyond the last
865fb81212cSFilipe Manana  * key) if the key is bigger than the last key in the extent buffer.
86674123bd7SChris Mason  */
867fdf8d595SAnand Jain int btrfs_bin_search(struct extent_buffer *eb, int first_slot,
86867d5e289SMarcos Paulo de Souza 		     const struct btrfs_key *key, int *slot)
869be0e5c09SChris Mason {
870fb81212cSFilipe Manana 	unsigned long p;
871fb81212cSFilipe Manana 	int item_size;
872a724f313SFilipe Manana 	/*
873a724f313SFilipe Manana 	 * Use unsigned types for the low and high slots, so that we get a more
874a724f313SFilipe Manana 	 * efficient division in the search loop below.
875a724f313SFilipe Manana 	 */
876a724f313SFilipe Manana 	u32 low = first_slot;
877a724f313SFilipe Manana 	u32 high = btrfs_header_nritems(eb);
878be0e5c09SChris Mason 	int ret;
8795cd17f34SDavid Sterba 	const int key_size = sizeof(struct btrfs_disk_key);
880be0e5c09SChris Mason 
881a724f313SFilipe Manana 	if (unlikely(low > high)) {
8825e24e9afSLiu Bo 		btrfs_err(eb->fs_info,
883a724f313SFilipe Manana 		 "%s: low (%u) > high (%u) eb %llu owner %llu level %d",
8845e24e9afSLiu Bo 			  __func__, low, high, eb->start,
8855e24e9afSLiu Bo 			  btrfs_header_owner(eb), btrfs_header_level(eb));
8865e24e9afSLiu Bo 		return -EINVAL;
8875e24e9afSLiu Bo 	}
8885e24e9afSLiu Bo 
889fb81212cSFilipe Manana 	if (btrfs_header_level(eb) == 0) {
890fb81212cSFilipe Manana 		p = offsetof(struct btrfs_leaf, items);
891fb81212cSFilipe Manana 		item_size = sizeof(struct btrfs_item);
892fb81212cSFilipe Manana 	} else {
893fb81212cSFilipe Manana 		p = offsetof(struct btrfs_node, ptrs);
894fb81212cSFilipe Manana 		item_size = sizeof(struct btrfs_key_ptr);
895fb81212cSFilipe Manana 	}
896fb81212cSFilipe Manana 
897be0e5c09SChris Mason 	while (low < high) {
8985cd17f34SDavid Sterba 		unsigned long oip;
8995cd17f34SDavid Sterba 		unsigned long offset;
9005cd17f34SDavid Sterba 		struct btrfs_disk_key *tmp;
9015cd17f34SDavid Sterba 		struct btrfs_disk_key unaligned;
9025cd17f34SDavid Sterba 		int mid;
9035cd17f34SDavid Sterba 
904be0e5c09SChris Mason 		mid = (low + high) / 2;
9055f39d397SChris Mason 		offset = p + mid * item_size;
9065cd17f34SDavid Sterba 		oip = offset_in_page(offset);
9075f39d397SChris Mason 
9085cd17f34SDavid Sterba 		if (oip + key_size <= PAGE_SIZE) {
909884b07d0SQu Wenruo 			const unsigned long idx = get_eb_page_index(offset);
9105cd17f34SDavid Sterba 			char *kaddr = page_address(eb->pages[idx]);
911934d375bSChris Mason 
912884b07d0SQu Wenruo 			oip = get_eb_offset_in_page(eb, offset);
9135cd17f34SDavid Sterba 			tmp = (struct btrfs_disk_key *)(kaddr + oip);
9145cd17f34SDavid Sterba 		} else {
9155cd17f34SDavid Sterba 			read_extent_buffer(eb, &unaligned, offset, key_size);
9165f39d397SChris Mason 			tmp = &unaligned;
917479965d6SChris Mason 		}
918479965d6SChris Mason 
919be0e5c09SChris Mason 		ret = comp_keys(tmp, key);
920be0e5c09SChris Mason 
921be0e5c09SChris Mason 		if (ret < 0)
922be0e5c09SChris Mason 			low = mid + 1;
923be0e5c09SChris Mason 		else if (ret > 0)
924be0e5c09SChris Mason 			high = mid;
925be0e5c09SChris Mason 		else {
926be0e5c09SChris Mason 			*slot = mid;
927be0e5c09SChris Mason 			return 0;
928be0e5c09SChris Mason 		}
929be0e5c09SChris Mason 	}
930be0e5c09SChris Mason 	*slot = low;
931be0e5c09SChris Mason 	return 1;
932be0e5c09SChris Mason }
933be0e5c09SChris Mason 
934f0486c68SYan, Zheng static void root_add_used(struct btrfs_root *root, u32 size)
935f0486c68SYan, Zheng {
936f0486c68SYan, Zheng 	spin_lock(&root->accounting_lock);
937f0486c68SYan, Zheng 	btrfs_set_root_used(&root->root_item,
938f0486c68SYan, Zheng 			    btrfs_root_used(&root->root_item) + size);
939f0486c68SYan, Zheng 	spin_unlock(&root->accounting_lock);
940f0486c68SYan, Zheng }
941f0486c68SYan, Zheng 
942f0486c68SYan, Zheng static void root_sub_used(struct btrfs_root *root, u32 size)
943f0486c68SYan, Zheng {
944f0486c68SYan, Zheng 	spin_lock(&root->accounting_lock);
945f0486c68SYan, Zheng 	btrfs_set_root_used(&root->root_item,
946f0486c68SYan, Zheng 			    btrfs_root_used(&root->root_item) - size);
947f0486c68SYan, Zheng 	spin_unlock(&root->accounting_lock);
948f0486c68SYan, Zheng }
949f0486c68SYan, Zheng 
950d352ac68SChris Mason /* given a node and slot number, this reads the blocks it points to.  The
951d352ac68SChris Mason  * extent buffer is returned with a reference taken (but unlocked).
952d352ac68SChris Mason  */
9534b231ae4SDavid Sterba struct extent_buffer *btrfs_read_node_slot(struct extent_buffer *parent,
9544b231ae4SDavid Sterba 					   int slot)
955bb803951SChris Mason {
956ca7a79adSChris Mason 	int level = btrfs_header_level(parent);
957789d6a3aSQu Wenruo 	struct btrfs_tree_parent_check check = { 0 };
958416bc658SJosef Bacik 	struct extent_buffer *eb;
959416bc658SJosef Bacik 
960fb770ae4SLiu Bo 	if (slot < 0 || slot >= btrfs_header_nritems(parent))
961fb770ae4SLiu Bo 		return ERR_PTR(-ENOENT);
962ca7a79adSChris Mason 
963d4694728SJosef Bacik 	ASSERT(level);
964ca7a79adSChris Mason 
965789d6a3aSQu Wenruo 	check.level = level - 1;
966789d6a3aSQu Wenruo 	check.transid = btrfs_node_ptr_generation(parent, slot);
967789d6a3aSQu Wenruo 	check.owner_root = btrfs_header_owner(parent);
968789d6a3aSQu Wenruo 	check.has_first_key = true;
969789d6a3aSQu Wenruo 	btrfs_node_key_to_cpu(parent, &check.first_key, slot);
970789d6a3aSQu Wenruo 
971d0d20b0fSDavid Sterba 	eb = read_tree_block(parent->fs_info, btrfs_node_blockptr(parent, slot),
972789d6a3aSQu Wenruo 			     &check);
9734eb150d6SQu Wenruo 	if (IS_ERR(eb))
9744eb150d6SQu Wenruo 		return eb;
9754eb150d6SQu Wenruo 	if (!extent_buffer_uptodate(eb)) {
976416bc658SJosef Bacik 		free_extent_buffer(eb);
9774eb150d6SQu Wenruo 		return ERR_PTR(-EIO);
978416bc658SJosef Bacik 	}
979416bc658SJosef Bacik 
980416bc658SJosef Bacik 	return eb;
981bb803951SChris Mason }
982bb803951SChris Mason 
983d352ac68SChris Mason /*
984d352ac68SChris Mason  * node level balancing, used to make sure nodes are in proper order for
985d352ac68SChris Mason  * item deletion.  We balance from the top down, so we have to make sure
986d352ac68SChris Mason  * that a deletion won't leave an node completely empty later on.
987d352ac68SChris Mason  */
988e02119d5SChris Mason static noinline int balance_level(struct btrfs_trans_handle *trans,
98998ed5174SChris Mason 			 struct btrfs_root *root,
99098ed5174SChris Mason 			 struct btrfs_path *path, int level)
991bb803951SChris Mason {
9920b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
9935f39d397SChris Mason 	struct extent_buffer *right = NULL;
9945f39d397SChris Mason 	struct extent_buffer *mid;
9955f39d397SChris Mason 	struct extent_buffer *left = NULL;
9965f39d397SChris Mason 	struct extent_buffer *parent = NULL;
997bb803951SChris Mason 	int ret = 0;
998bb803951SChris Mason 	int wret;
999bb803951SChris Mason 	int pslot;
1000bb803951SChris Mason 	int orig_slot = path->slots[level];
100179f95c82SChris Mason 	u64 orig_ptr;
1002bb803951SChris Mason 
100398e6b1ebSLiu Bo 	ASSERT(level > 0);
1004bb803951SChris Mason 
10055f39d397SChris Mason 	mid = path->nodes[level];
1006b4ce94deSChris Mason 
1007ac5887c8SJosef Bacik 	WARN_ON(path->locks[level] != BTRFS_WRITE_LOCK);
10087bb86316SChris Mason 	WARN_ON(btrfs_header_generation(mid) != trans->transid);
10097bb86316SChris Mason 
10101d4f8a0cSChris Mason 	orig_ptr = btrfs_node_blockptr(mid, orig_slot);
101179f95c82SChris Mason 
1012a05a9bb1SLi Zefan 	if (level < BTRFS_MAX_LEVEL - 1) {
10135f39d397SChris Mason 		parent = path->nodes[level + 1];
1014bb803951SChris Mason 		pslot = path->slots[level + 1];
1015a05a9bb1SLi Zefan 	}
1016bb803951SChris Mason 
101740689478SChris Mason 	/*
101840689478SChris Mason 	 * deal with the case where there is only one pointer in the root
101940689478SChris Mason 	 * by promoting the node below to a root
102040689478SChris Mason 	 */
10215f39d397SChris Mason 	if (!parent) {
10225f39d397SChris Mason 		struct extent_buffer *child;
1023bb803951SChris Mason 
10245f39d397SChris Mason 		if (btrfs_header_nritems(mid) != 1)
1025bb803951SChris Mason 			return 0;
1026bb803951SChris Mason 
1027bb803951SChris Mason 		/* promote the child to a root */
10284b231ae4SDavid Sterba 		child = btrfs_read_node_slot(mid, 0);
1029fb770ae4SLiu Bo 		if (IS_ERR(child)) {
1030fb770ae4SLiu Bo 			ret = PTR_ERR(child);
10310b246afaSJeff Mahoney 			btrfs_handle_fs_error(fs_info, ret, NULL);
1032305a26afSMark Fasheh 			goto enospc;
1033305a26afSMark Fasheh 		}
1034305a26afSMark Fasheh 
1035925baeddSChris Mason 		btrfs_tree_lock(child);
10369631e4ccSJosef Bacik 		ret = btrfs_cow_block(trans, root, child, mid, 0, &child,
10379631e4ccSJosef Bacik 				      BTRFS_NESTING_COW);
1038f0486c68SYan, Zheng 		if (ret) {
1039f0486c68SYan, Zheng 			btrfs_tree_unlock(child);
1040f0486c68SYan, Zheng 			free_extent_buffer(child);
1041f0486c68SYan, Zheng 			goto enospc;
1042f0486c68SYan, Zheng 		}
10432f375ab9SYan 
1044406808abSFilipe Manana 		ret = btrfs_tree_mod_log_insert_root(root->node, child, true);
1045d9d19a01SDavid Sterba 		BUG_ON(ret < 0);
1046240f62c8SChris Mason 		rcu_assign_pointer(root->node, child);
1047925baeddSChris Mason 
10480b86a832SChris Mason 		add_root_to_dirty_list(root);
1049925baeddSChris Mason 		btrfs_tree_unlock(child);
1050b4ce94deSChris Mason 
1051925baeddSChris Mason 		path->locks[level] = 0;
1052bb803951SChris Mason 		path->nodes[level] = NULL;
1053190a8339SJosef Bacik 		btrfs_clear_buffer_dirty(trans, mid);
1054925baeddSChris Mason 		btrfs_tree_unlock(mid);
1055bb803951SChris Mason 		/* once for the path */
10565f39d397SChris Mason 		free_extent_buffer(mid);
1057f0486c68SYan, Zheng 
1058f0486c68SYan, Zheng 		root_sub_used(root, mid->len);
10597a163608SFilipe Manana 		btrfs_free_tree_block(trans, btrfs_root_id(root), mid, 0, 1);
1060bb803951SChris Mason 		/* once for the root ptr */
10613083ee2eSJosef Bacik 		free_extent_buffer_stale(mid);
1062f0486c68SYan, Zheng 		return 0;
1063bb803951SChris Mason 	}
10645f39d397SChris Mason 	if (btrfs_header_nritems(mid) >
10650b246afaSJeff Mahoney 	    BTRFS_NODEPTRS_PER_BLOCK(fs_info) / 4)
1066bb803951SChris Mason 		return 0;
1067bb803951SChris Mason 
10689cf14029SJosef Bacik 	if (pslot) {
10694b231ae4SDavid Sterba 		left = btrfs_read_node_slot(parent, pslot - 1);
10709cf14029SJosef Bacik 		if (IS_ERR(left)) {
10719cf14029SJosef Bacik 			ret = PTR_ERR(left);
1072fb770ae4SLiu Bo 			left = NULL;
10739cf14029SJosef Bacik 			goto enospc;
10749cf14029SJosef Bacik 		}
1075fb770ae4SLiu Bo 
1076bf77467aSJosef Bacik 		__btrfs_tree_lock(left, BTRFS_NESTING_LEFT);
10775f39d397SChris Mason 		wret = btrfs_cow_block(trans, root, left,
10789631e4ccSJosef Bacik 				       parent, pslot - 1, &left,
1079bf59a5a2SJosef Bacik 				       BTRFS_NESTING_LEFT_COW);
108054aa1f4dSChris Mason 		if (wret) {
108154aa1f4dSChris Mason 			ret = wret;
108254aa1f4dSChris Mason 			goto enospc;
108354aa1f4dSChris Mason 		}
10842cc58cf2SChris Mason 	}
1085fb770ae4SLiu Bo 
10869cf14029SJosef Bacik 	if (pslot + 1 < btrfs_header_nritems(parent)) {
10874b231ae4SDavid Sterba 		right = btrfs_read_node_slot(parent, pslot + 1);
10889cf14029SJosef Bacik 		if (IS_ERR(right)) {
10899cf14029SJosef Bacik 			ret = PTR_ERR(right);
1090fb770ae4SLiu Bo 			right = NULL;
10919cf14029SJosef Bacik 			goto enospc;
10929cf14029SJosef Bacik 		}
1093fb770ae4SLiu Bo 
1094bf77467aSJosef Bacik 		__btrfs_tree_lock(right, BTRFS_NESTING_RIGHT);
10955f39d397SChris Mason 		wret = btrfs_cow_block(trans, root, right,
10969631e4ccSJosef Bacik 				       parent, pslot + 1, &right,
1097bf59a5a2SJosef Bacik 				       BTRFS_NESTING_RIGHT_COW);
10982cc58cf2SChris Mason 		if (wret) {
10992cc58cf2SChris Mason 			ret = wret;
11002cc58cf2SChris Mason 			goto enospc;
11012cc58cf2SChris Mason 		}
11022cc58cf2SChris Mason 	}
11032cc58cf2SChris Mason 
11042cc58cf2SChris Mason 	/* first, try to make some room in the middle buffer */
11055f39d397SChris Mason 	if (left) {
11065f39d397SChris Mason 		orig_slot += btrfs_header_nritems(left);
1107d30a668fSDavid Sterba 		wret = push_node_left(trans, left, mid, 1);
110879f95c82SChris Mason 		if (wret < 0)
110979f95c82SChris Mason 			ret = wret;
1110bb803951SChris Mason 	}
111179f95c82SChris Mason 
111279f95c82SChris Mason 	/*
111379f95c82SChris Mason 	 * then try to empty the right most buffer into the middle
111479f95c82SChris Mason 	 */
11155f39d397SChris Mason 	if (right) {
1116d30a668fSDavid Sterba 		wret = push_node_left(trans, mid, right, 1);
111754aa1f4dSChris Mason 		if (wret < 0 && wret != -ENOSPC)
111879f95c82SChris Mason 			ret = wret;
11195f39d397SChris Mason 		if (btrfs_header_nritems(right) == 0) {
1120190a8339SJosef Bacik 			btrfs_clear_buffer_dirty(trans, right);
1121925baeddSChris Mason 			btrfs_tree_unlock(right);
1122afe5fea7STsutomu Itoh 			del_ptr(root, path, level + 1, pslot + 1);
1123f0486c68SYan, Zheng 			root_sub_used(root, right->len);
11247a163608SFilipe Manana 			btrfs_free_tree_block(trans, btrfs_root_id(root), right,
11257a163608SFilipe Manana 					      0, 1);
11263083ee2eSJosef Bacik 			free_extent_buffer_stale(right);
1127f0486c68SYan, Zheng 			right = NULL;
1128bb803951SChris Mason 		} else {
11295f39d397SChris Mason 			struct btrfs_disk_key right_key;
11305f39d397SChris Mason 			btrfs_node_key(right, &right_key, 0);
1131f3a84ccdSFilipe Manana 			ret = btrfs_tree_mod_log_insert_key(parent, pslot + 1,
113233cff222SFilipe Manana 					BTRFS_MOD_LOG_KEY_REPLACE);
11330e82bcfeSDavid Sterba 			BUG_ON(ret < 0);
11345f39d397SChris Mason 			btrfs_set_node_key(parent, &right_key, pslot + 1);
11355f39d397SChris Mason 			btrfs_mark_buffer_dirty(parent);
1136bb803951SChris Mason 		}
1137bb803951SChris Mason 	}
11385f39d397SChris Mason 	if (btrfs_header_nritems(mid) == 1) {
113979f95c82SChris Mason 		/*
114079f95c82SChris Mason 		 * we're not allowed to leave a node with one item in the
114179f95c82SChris Mason 		 * tree during a delete.  A deletion from lower in the tree
114279f95c82SChris Mason 		 * could try to delete the only pointer in this node.
114379f95c82SChris Mason 		 * So, pull some keys from the left.
114479f95c82SChris Mason 		 * There has to be a left pointer at this point because
114579f95c82SChris Mason 		 * otherwise we would have pulled some pointers from the
114679f95c82SChris Mason 		 * right
114779f95c82SChris Mason 		 */
1148305a26afSMark Fasheh 		if (!left) {
1149305a26afSMark Fasheh 			ret = -EROFS;
11500b246afaSJeff Mahoney 			btrfs_handle_fs_error(fs_info, ret, NULL);
1151305a26afSMark Fasheh 			goto enospc;
1152305a26afSMark Fasheh 		}
115355d32ed8SDavid Sterba 		wret = balance_node_right(trans, mid, left);
115454aa1f4dSChris Mason 		if (wret < 0) {
115579f95c82SChris Mason 			ret = wret;
115654aa1f4dSChris Mason 			goto enospc;
115754aa1f4dSChris Mason 		}
1158bce4eae9SChris Mason 		if (wret == 1) {
1159d30a668fSDavid Sterba 			wret = push_node_left(trans, left, mid, 1);
1160bce4eae9SChris Mason 			if (wret < 0)
1161bce4eae9SChris Mason 				ret = wret;
1162bce4eae9SChris Mason 		}
116379f95c82SChris Mason 		BUG_ON(wret == 1);
116479f95c82SChris Mason 	}
11655f39d397SChris Mason 	if (btrfs_header_nritems(mid) == 0) {
1166190a8339SJosef Bacik 		btrfs_clear_buffer_dirty(trans, mid);
1167925baeddSChris Mason 		btrfs_tree_unlock(mid);
1168afe5fea7STsutomu Itoh 		del_ptr(root, path, level + 1, pslot);
1169f0486c68SYan, Zheng 		root_sub_used(root, mid->len);
11707a163608SFilipe Manana 		btrfs_free_tree_block(trans, btrfs_root_id(root), mid, 0, 1);
11713083ee2eSJosef Bacik 		free_extent_buffer_stale(mid);
1172f0486c68SYan, Zheng 		mid = NULL;
117379f95c82SChris Mason 	} else {
117479f95c82SChris Mason 		/* update the parent key to reflect our changes */
11755f39d397SChris Mason 		struct btrfs_disk_key mid_key;
11765f39d397SChris Mason 		btrfs_node_key(mid, &mid_key, 0);
1177f3a84ccdSFilipe Manana 		ret = btrfs_tree_mod_log_insert_key(parent, pslot,
117833cff222SFilipe Manana 						    BTRFS_MOD_LOG_KEY_REPLACE);
11790e82bcfeSDavid Sterba 		BUG_ON(ret < 0);
11805f39d397SChris Mason 		btrfs_set_node_key(parent, &mid_key, pslot);
11815f39d397SChris Mason 		btrfs_mark_buffer_dirty(parent);
118279f95c82SChris Mason 	}
1183bb803951SChris Mason 
118479f95c82SChris Mason 	/* update the path */
11855f39d397SChris Mason 	if (left) {
11865f39d397SChris Mason 		if (btrfs_header_nritems(left) > orig_slot) {
118767439dadSDavid Sterba 			atomic_inc(&left->refs);
1188925baeddSChris Mason 			/* left was locked after cow */
11895f39d397SChris Mason 			path->nodes[level] = left;
1190bb803951SChris Mason 			path->slots[level + 1] -= 1;
1191bb803951SChris Mason 			path->slots[level] = orig_slot;
1192925baeddSChris Mason 			if (mid) {
1193925baeddSChris Mason 				btrfs_tree_unlock(mid);
11945f39d397SChris Mason 				free_extent_buffer(mid);
1195925baeddSChris Mason 			}
1196bb803951SChris Mason 		} else {
11975f39d397SChris Mason 			orig_slot -= btrfs_header_nritems(left);
1198bb803951SChris Mason 			path->slots[level] = orig_slot;
1199bb803951SChris Mason 		}
1200bb803951SChris Mason 	}
120179f95c82SChris Mason 	/* double check we haven't messed things up */
1202e20d96d6SChris Mason 	if (orig_ptr !=
12035f39d397SChris Mason 	    btrfs_node_blockptr(path->nodes[level], path->slots[level]))
120479f95c82SChris Mason 		BUG();
120554aa1f4dSChris Mason enospc:
1206925baeddSChris Mason 	if (right) {
1207925baeddSChris Mason 		btrfs_tree_unlock(right);
12085f39d397SChris Mason 		free_extent_buffer(right);
1209925baeddSChris Mason 	}
1210925baeddSChris Mason 	if (left) {
1211925baeddSChris Mason 		if (path->nodes[level] != left)
1212925baeddSChris Mason 			btrfs_tree_unlock(left);
12135f39d397SChris Mason 		free_extent_buffer(left);
1214925baeddSChris Mason 	}
1215bb803951SChris Mason 	return ret;
1216bb803951SChris Mason }
1217bb803951SChris Mason 
1218d352ac68SChris Mason /* Node balancing for insertion.  Here we only split or push nodes around
1219d352ac68SChris Mason  * when they are completely full.  This is also done top down, so we
1220d352ac68SChris Mason  * have to be pessimistic.
1221d352ac68SChris Mason  */
1222d397712bSChris Mason static noinline int push_nodes_for_insert(struct btrfs_trans_handle *trans,
1223e66f709bSChris Mason 					  struct btrfs_root *root,
1224e66f709bSChris Mason 					  struct btrfs_path *path, int level)
1225e66f709bSChris Mason {
12260b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
12275f39d397SChris Mason 	struct extent_buffer *right = NULL;
12285f39d397SChris Mason 	struct extent_buffer *mid;
12295f39d397SChris Mason 	struct extent_buffer *left = NULL;
12305f39d397SChris Mason 	struct extent_buffer *parent = NULL;
1231e66f709bSChris Mason 	int ret = 0;
1232e66f709bSChris Mason 	int wret;
1233e66f709bSChris Mason 	int pslot;
1234e66f709bSChris Mason 	int orig_slot = path->slots[level];
1235e66f709bSChris Mason 
1236e66f709bSChris Mason 	if (level == 0)
1237e66f709bSChris Mason 		return 1;
1238e66f709bSChris Mason 
12395f39d397SChris Mason 	mid = path->nodes[level];
12407bb86316SChris Mason 	WARN_ON(btrfs_header_generation(mid) != trans->transid);
1241e66f709bSChris Mason 
1242a05a9bb1SLi Zefan 	if (level < BTRFS_MAX_LEVEL - 1) {
12435f39d397SChris Mason 		parent = path->nodes[level + 1];
1244e66f709bSChris Mason 		pslot = path->slots[level + 1];
1245a05a9bb1SLi Zefan 	}
1246e66f709bSChris Mason 
12475f39d397SChris Mason 	if (!parent)
1248e66f709bSChris Mason 		return 1;
1249e66f709bSChris Mason 
12509cf14029SJosef Bacik 	/* first, try to make some room in the middle buffer */
12519cf14029SJosef Bacik 	if (pslot) {
12529cf14029SJosef Bacik 		u32 left_nr;
12539cf14029SJosef Bacik 
12544b231ae4SDavid Sterba 		left = btrfs_read_node_slot(parent, pslot - 1);
1255fb770ae4SLiu Bo 		if (IS_ERR(left))
12569cf14029SJosef Bacik 			return PTR_ERR(left);
1257925baeddSChris Mason 
1258bf77467aSJosef Bacik 		__btrfs_tree_lock(left, BTRFS_NESTING_LEFT);
1259b4ce94deSChris Mason 
12605f39d397SChris Mason 		left_nr = btrfs_header_nritems(left);
12610b246afaSJeff Mahoney 		if (left_nr >= BTRFS_NODEPTRS_PER_BLOCK(fs_info) - 1) {
126233ade1f8SChris Mason 			wret = 1;
126333ade1f8SChris Mason 		} else {
12645f39d397SChris Mason 			ret = btrfs_cow_block(trans, root, left, parent,
12659631e4ccSJosef Bacik 					      pslot - 1, &left,
1266bf59a5a2SJosef Bacik 					      BTRFS_NESTING_LEFT_COW);
126754aa1f4dSChris Mason 			if (ret)
126854aa1f4dSChris Mason 				wret = 1;
126954aa1f4dSChris Mason 			else {
1270d30a668fSDavid Sterba 				wret = push_node_left(trans, left, mid, 0);
127154aa1f4dSChris Mason 			}
127233ade1f8SChris Mason 		}
1273e66f709bSChris Mason 		if (wret < 0)
1274e66f709bSChris Mason 			ret = wret;
1275e66f709bSChris Mason 		if (wret == 0) {
12765f39d397SChris Mason 			struct btrfs_disk_key disk_key;
1277e66f709bSChris Mason 			orig_slot += left_nr;
12785f39d397SChris Mason 			btrfs_node_key(mid, &disk_key, 0);
1279f3a84ccdSFilipe Manana 			ret = btrfs_tree_mod_log_insert_key(parent, pslot,
128033cff222SFilipe Manana 					BTRFS_MOD_LOG_KEY_REPLACE);
12810e82bcfeSDavid Sterba 			BUG_ON(ret < 0);
12825f39d397SChris Mason 			btrfs_set_node_key(parent, &disk_key, pslot);
12835f39d397SChris Mason 			btrfs_mark_buffer_dirty(parent);
12845f39d397SChris Mason 			if (btrfs_header_nritems(left) > orig_slot) {
12855f39d397SChris Mason 				path->nodes[level] = left;
1286e66f709bSChris Mason 				path->slots[level + 1] -= 1;
1287e66f709bSChris Mason 				path->slots[level] = orig_slot;
1288925baeddSChris Mason 				btrfs_tree_unlock(mid);
12895f39d397SChris Mason 				free_extent_buffer(mid);
1290e66f709bSChris Mason 			} else {
1291e66f709bSChris Mason 				orig_slot -=
12925f39d397SChris Mason 					btrfs_header_nritems(left);
1293e66f709bSChris Mason 				path->slots[level] = orig_slot;
1294925baeddSChris Mason 				btrfs_tree_unlock(left);
12955f39d397SChris Mason 				free_extent_buffer(left);
1296e66f709bSChris Mason 			}
1297e66f709bSChris Mason 			return 0;
1298e66f709bSChris Mason 		}
1299925baeddSChris Mason 		btrfs_tree_unlock(left);
13005f39d397SChris Mason 		free_extent_buffer(left);
1301e66f709bSChris Mason 	}
1302e66f709bSChris Mason 
1303e66f709bSChris Mason 	/*
1304e66f709bSChris Mason 	 * then try to empty the right most buffer into the middle
1305e66f709bSChris Mason 	 */
13069cf14029SJosef Bacik 	if (pslot + 1 < btrfs_header_nritems(parent)) {
130733ade1f8SChris Mason 		u32 right_nr;
1308b4ce94deSChris Mason 
13099cf14029SJosef Bacik 		right = btrfs_read_node_slot(parent, pslot + 1);
13109cf14029SJosef Bacik 		if (IS_ERR(right))
13119cf14029SJosef Bacik 			return PTR_ERR(right);
13129cf14029SJosef Bacik 
1313bf77467aSJosef Bacik 		__btrfs_tree_lock(right, BTRFS_NESTING_RIGHT);
1314b4ce94deSChris Mason 
13155f39d397SChris Mason 		right_nr = btrfs_header_nritems(right);
13160b246afaSJeff Mahoney 		if (right_nr >= BTRFS_NODEPTRS_PER_BLOCK(fs_info) - 1) {
131733ade1f8SChris Mason 			wret = 1;
131833ade1f8SChris Mason 		} else {
13195f39d397SChris Mason 			ret = btrfs_cow_block(trans, root, right,
13205f39d397SChris Mason 					      parent, pslot + 1,
1321bf59a5a2SJosef Bacik 					      &right, BTRFS_NESTING_RIGHT_COW);
132254aa1f4dSChris Mason 			if (ret)
132354aa1f4dSChris Mason 				wret = 1;
132454aa1f4dSChris Mason 			else {
132555d32ed8SDavid Sterba 				wret = balance_node_right(trans, right, mid);
132633ade1f8SChris Mason 			}
132754aa1f4dSChris Mason 		}
1328e66f709bSChris Mason 		if (wret < 0)
1329e66f709bSChris Mason 			ret = wret;
1330e66f709bSChris Mason 		if (wret == 0) {
13315f39d397SChris Mason 			struct btrfs_disk_key disk_key;
13325f39d397SChris Mason 
13335f39d397SChris Mason 			btrfs_node_key(right, &disk_key, 0);
1334f3a84ccdSFilipe Manana 			ret = btrfs_tree_mod_log_insert_key(parent, pslot + 1,
133533cff222SFilipe Manana 					BTRFS_MOD_LOG_KEY_REPLACE);
13360e82bcfeSDavid Sterba 			BUG_ON(ret < 0);
13375f39d397SChris Mason 			btrfs_set_node_key(parent, &disk_key, pslot + 1);
13385f39d397SChris Mason 			btrfs_mark_buffer_dirty(parent);
13395f39d397SChris Mason 
13405f39d397SChris Mason 			if (btrfs_header_nritems(mid) <= orig_slot) {
13415f39d397SChris Mason 				path->nodes[level] = right;
1342e66f709bSChris Mason 				path->slots[level + 1] += 1;
1343e66f709bSChris Mason 				path->slots[level] = orig_slot -
13445f39d397SChris Mason 					btrfs_header_nritems(mid);
1345925baeddSChris Mason 				btrfs_tree_unlock(mid);
13465f39d397SChris Mason 				free_extent_buffer(mid);
1347e66f709bSChris Mason 			} else {
1348925baeddSChris Mason 				btrfs_tree_unlock(right);
13495f39d397SChris Mason 				free_extent_buffer(right);
1350e66f709bSChris Mason 			}
1351e66f709bSChris Mason 			return 0;
1352e66f709bSChris Mason 		}
1353925baeddSChris Mason 		btrfs_tree_unlock(right);
13545f39d397SChris Mason 		free_extent_buffer(right);
1355e66f709bSChris Mason 	}
1356e66f709bSChris Mason 	return 1;
1357e66f709bSChris Mason }
1358e66f709bSChris Mason 
135974123bd7SChris Mason /*
1360d352ac68SChris Mason  * readahead one full node of leaves, finding things that are close
1361d352ac68SChris Mason  * to the block in 'slot', and triggering ra on them.
13623c69faecSChris Mason  */
13632ff7e61eSJeff Mahoney static void reada_for_search(struct btrfs_fs_info *fs_info,
1364e02119d5SChris Mason 			     struct btrfs_path *path,
136501f46658SChris Mason 			     int level, int slot, u64 objectid)
13663c69faecSChris Mason {
13675f39d397SChris Mason 	struct extent_buffer *node;
136801f46658SChris Mason 	struct btrfs_disk_key disk_key;
13693c69faecSChris Mason 	u32 nritems;
13703c69faecSChris Mason 	u64 search;
1371a7175319SChris Mason 	u64 target;
13726b80053dSChris Mason 	u64 nread = 0;
1373ace75066SFilipe Manana 	u64 nread_max;
13746b80053dSChris Mason 	u32 nr;
13756b80053dSChris Mason 	u32 blocksize;
13766b80053dSChris Mason 	u32 nscan = 0;
1377db94535dSChris Mason 
1378ace75066SFilipe Manana 	if (level != 1 && path->reada != READA_FORWARD_ALWAYS)
13793c69faecSChris Mason 		return;
13803c69faecSChris Mason 
13816702ed49SChris Mason 	if (!path->nodes[level])
13826702ed49SChris Mason 		return;
13836702ed49SChris Mason 
13845f39d397SChris Mason 	node = path->nodes[level];
1385925baeddSChris Mason 
1386ace75066SFilipe Manana 	/*
1387ace75066SFilipe Manana 	 * Since the time between visiting leaves is much shorter than the time
1388ace75066SFilipe Manana 	 * between visiting nodes, limit read ahead of nodes to 1, to avoid too
1389ace75066SFilipe Manana 	 * much IO at once (possibly random).
1390ace75066SFilipe Manana 	 */
1391ace75066SFilipe Manana 	if (path->reada == READA_FORWARD_ALWAYS) {
1392ace75066SFilipe Manana 		if (level > 1)
1393ace75066SFilipe Manana 			nread_max = node->fs_info->nodesize;
1394ace75066SFilipe Manana 		else
1395ace75066SFilipe Manana 			nread_max = SZ_128K;
1396ace75066SFilipe Manana 	} else {
1397ace75066SFilipe Manana 		nread_max = SZ_64K;
1398ace75066SFilipe Manana 	}
1399ace75066SFilipe Manana 
14003c69faecSChris Mason 	search = btrfs_node_blockptr(node, slot);
14010b246afaSJeff Mahoney 	blocksize = fs_info->nodesize;
1402069a2e37SFilipe Manana 	if (path->reada != READA_FORWARD_ALWAYS) {
1403069a2e37SFilipe Manana 		struct extent_buffer *eb;
1404069a2e37SFilipe Manana 
14050b246afaSJeff Mahoney 		eb = find_extent_buffer(fs_info, search);
14065f39d397SChris Mason 		if (eb) {
14075f39d397SChris Mason 			free_extent_buffer(eb);
14083c69faecSChris Mason 			return;
14093c69faecSChris Mason 		}
1410069a2e37SFilipe Manana 	}
14113c69faecSChris Mason 
1412a7175319SChris Mason 	target = search;
14136b80053dSChris Mason 
14145f39d397SChris Mason 	nritems = btrfs_header_nritems(node);
14156b80053dSChris Mason 	nr = slot;
141625b8b936SJosef Bacik 
14173c69faecSChris Mason 	while (1) {
1418e4058b54SDavid Sterba 		if (path->reada == READA_BACK) {
14196b80053dSChris Mason 			if (nr == 0)
14203c69faecSChris Mason 				break;
14216b80053dSChris Mason 			nr--;
1422ace75066SFilipe Manana 		} else if (path->reada == READA_FORWARD ||
1423ace75066SFilipe Manana 			   path->reada == READA_FORWARD_ALWAYS) {
14246b80053dSChris Mason 			nr++;
14256b80053dSChris Mason 			if (nr >= nritems)
14266b80053dSChris Mason 				break;
14273c69faecSChris Mason 		}
1428e4058b54SDavid Sterba 		if (path->reada == READA_BACK && objectid) {
142901f46658SChris Mason 			btrfs_node_key(node, &disk_key, nr);
143001f46658SChris Mason 			if (btrfs_disk_key_objectid(&disk_key) != objectid)
143101f46658SChris Mason 				break;
143201f46658SChris Mason 		}
14336b80053dSChris Mason 		search = btrfs_node_blockptr(node, nr);
1434ace75066SFilipe Manana 		if (path->reada == READA_FORWARD_ALWAYS ||
1435ace75066SFilipe Manana 		    (search <= target && target - search <= 65536) ||
1436a7175319SChris Mason 		    (search > target && search - target <= 65536)) {
1437bfb484d9SJosef Bacik 			btrfs_readahead_node_child(node, nr);
14386b80053dSChris Mason 			nread += blocksize;
14393c69faecSChris Mason 		}
14406b80053dSChris Mason 		nscan++;
1441ace75066SFilipe Manana 		if (nread > nread_max || nscan > 32)
14426b80053dSChris Mason 			break;
14433c69faecSChris Mason 	}
14443c69faecSChris Mason }
1445925baeddSChris Mason 
1446bfb484d9SJosef Bacik static noinline void reada_for_balance(struct btrfs_path *path, int level)
1447b4ce94deSChris Mason {
1448bfb484d9SJosef Bacik 	struct extent_buffer *parent;
1449b4ce94deSChris Mason 	int slot;
1450b4ce94deSChris Mason 	int nritems;
1451b4ce94deSChris Mason 
14528c594ea8SChris Mason 	parent = path->nodes[level + 1];
1453b4ce94deSChris Mason 	if (!parent)
14540b08851fSJosef Bacik 		return;
1455b4ce94deSChris Mason 
1456b4ce94deSChris Mason 	nritems = btrfs_header_nritems(parent);
14578c594ea8SChris Mason 	slot = path->slots[level + 1];
1458b4ce94deSChris Mason 
1459bfb484d9SJosef Bacik 	if (slot > 0)
1460bfb484d9SJosef Bacik 		btrfs_readahead_node_child(parent, slot - 1);
1461bfb484d9SJosef Bacik 	if (slot + 1 < nritems)
1462bfb484d9SJosef Bacik 		btrfs_readahead_node_child(parent, slot + 1);
1463b4ce94deSChris Mason }
1464b4ce94deSChris Mason 
1465b4ce94deSChris Mason 
1466b4ce94deSChris Mason /*
1467d397712bSChris Mason  * when we walk down the tree, it is usually safe to unlock the higher layers
1468d397712bSChris Mason  * in the tree.  The exceptions are when our path goes through slot 0, because
1469d397712bSChris Mason  * operations on the tree might require changing key pointers higher up in the
1470d397712bSChris Mason  * tree.
1471d352ac68SChris Mason  *
1472d397712bSChris Mason  * callers might also have set path->keep_locks, which tells this code to keep
1473d397712bSChris Mason  * the lock if the path points to the last slot in the block.  This is part of
1474d397712bSChris Mason  * walking through the tree, and selecting the next slot in the higher block.
1475d352ac68SChris Mason  *
1476d397712bSChris Mason  * lowest_unlock sets the lowest level in the tree we're allowed to unlock.  so
1477d397712bSChris Mason  * if lowest_unlock is 1, level 0 won't be unlocked
1478d352ac68SChris Mason  */
1479e02119d5SChris Mason static noinline void unlock_up(struct btrfs_path *path, int level,
1480f7c79f30SChris Mason 			       int lowest_unlock, int min_write_lock_level,
1481f7c79f30SChris Mason 			       int *write_lock_level)
1482925baeddSChris Mason {
1483925baeddSChris Mason 	int i;
1484925baeddSChris Mason 	int skip_level = level;
1485c1227996SNikolay Borisov 	bool check_skip = true;
1486925baeddSChris Mason 
1487925baeddSChris Mason 	for (i = level; i < BTRFS_MAX_LEVEL; i++) {
1488925baeddSChris Mason 		if (!path->nodes[i])
1489925baeddSChris Mason 			break;
1490925baeddSChris Mason 		if (!path->locks[i])
1491925baeddSChris Mason 			break;
1492c1227996SNikolay Borisov 
1493c1227996SNikolay Borisov 		if (check_skip) {
1494c1227996SNikolay Borisov 			if (path->slots[i] == 0) {
1495925baeddSChris Mason 				skip_level = i + 1;
1496925baeddSChris Mason 				continue;
1497925baeddSChris Mason 			}
1498c1227996SNikolay Borisov 
1499c1227996SNikolay Borisov 			if (path->keep_locks) {
1500925baeddSChris Mason 				u32 nritems;
1501c1227996SNikolay Borisov 
1502c1227996SNikolay Borisov 				nritems = btrfs_header_nritems(path->nodes[i]);
1503051e1b9fSChris Mason 				if (nritems < 1 || path->slots[i] >= nritems - 1) {
1504925baeddSChris Mason 					skip_level = i + 1;
1505925baeddSChris Mason 					continue;
1506925baeddSChris Mason 				}
1507925baeddSChris Mason 			}
1508c1227996SNikolay Borisov 		}
1509051e1b9fSChris Mason 
1510d80bb3f9SLiu Bo 		if (i >= lowest_unlock && i > skip_level) {
1511c1227996SNikolay Borisov 			check_skip = false;
1512c1227996SNikolay Borisov 			btrfs_tree_unlock_rw(path->nodes[i], path->locks[i]);
1513925baeddSChris Mason 			path->locks[i] = 0;
1514f7c79f30SChris Mason 			if (write_lock_level &&
1515f7c79f30SChris Mason 			    i > min_write_lock_level &&
1516f7c79f30SChris Mason 			    i <= *write_lock_level) {
1517f7c79f30SChris Mason 				*write_lock_level = i - 1;
1518f7c79f30SChris Mason 			}
1519925baeddSChris Mason 		}
1520925baeddSChris Mason 	}
1521925baeddSChris Mason }
1522925baeddSChris Mason 
15233c69faecSChris Mason /*
1524376a21d7SFilipe Manana  * Helper function for btrfs_search_slot() and other functions that do a search
1525376a21d7SFilipe Manana  * on a btree. The goal is to find a tree block in the cache (the radix tree at
1526376a21d7SFilipe Manana  * fs_info->buffer_radix), but if we can't find it, or it's not up to date, read
1527376a21d7SFilipe Manana  * its pages from disk.
1528c8c42864SChris Mason  *
1529376a21d7SFilipe Manana  * Returns -EAGAIN, with the path unlocked, if the caller needs to repeat the
1530376a21d7SFilipe Manana  * whole btree search, starting again from the current root node.
1531c8c42864SChris Mason  */
1532c8c42864SChris Mason static int
1533d07b8528SLiu Bo read_block_for_search(struct btrfs_root *root, struct btrfs_path *p,
1534c8c42864SChris Mason 		      struct extent_buffer **eb_ret, int level, int slot,
1535cda79c54SDavid Sterba 		      const struct btrfs_key *key)
1536c8c42864SChris Mason {
15370b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
1538789d6a3aSQu Wenruo 	struct btrfs_tree_parent_check check = { 0 };
1539c8c42864SChris Mason 	u64 blocknr;
1540c8c42864SChris Mason 	u64 gen;
1541c8c42864SChris Mason 	struct extent_buffer *tmp;
154276a05b35SChris Mason 	int ret;
1543581c1760SQu Wenruo 	int parent_level;
1544b246666eSFilipe Manana 	bool unlock_up;
1545c8c42864SChris Mason 
1546b246666eSFilipe Manana 	unlock_up = ((level + 1 < BTRFS_MAX_LEVEL) && p->locks[level + 1]);
1547213ff4b7SNikolay Borisov 	blocknr = btrfs_node_blockptr(*eb_ret, slot);
1548213ff4b7SNikolay Borisov 	gen = btrfs_node_ptr_generation(*eb_ret, slot);
1549213ff4b7SNikolay Borisov 	parent_level = btrfs_header_level(*eb_ret);
1550789d6a3aSQu Wenruo 	btrfs_node_key_to_cpu(*eb_ret, &check.first_key, slot);
1551789d6a3aSQu Wenruo 	check.has_first_key = true;
1552789d6a3aSQu Wenruo 	check.level = parent_level - 1;
1553789d6a3aSQu Wenruo 	check.transid = gen;
1554789d6a3aSQu Wenruo 	check.owner_root = root->root_key.objectid;
1555c8c42864SChris Mason 
1556b246666eSFilipe Manana 	/*
1557b246666eSFilipe Manana 	 * If we need to read an extent buffer from disk and we are holding locks
1558b246666eSFilipe Manana 	 * on upper level nodes, we unlock all the upper nodes before reading the
1559b246666eSFilipe Manana 	 * extent buffer, and then return -EAGAIN to the caller as it needs to
1560b246666eSFilipe Manana 	 * restart the search. We don't release the lock on the current level
1561b246666eSFilipe Manana 	 * because we need to walk this node to figure out which blocks to read.
1562b246666eSFilipe Manana 	 */
15630b246afaSJeff Mahoney 	tmp = find_extent_buffer(fs_info, blocknr);
1564cb44921aSChris Mason 	if (tmp) {
1565ace75066SFilipe Manana 		if (p->reada == READA_FORWARD_ALWAYS)
1566ace75066SFilipe Manana 			reada_for_search(fs_info, p, level, slot, key->objectid);
1567ace75066SFilipe Manana 
1568b9fab919SChris Mason 		/* first we do an atomic uptodate check */
1569b9fab919SChris Mason 		if (btrfs_buffer_uptodate(tmp, gen, 1) > 0) {
1570448de471SQu Wenruo 			/*
1571448de471SQu Wenruo 			 * Do extra check for first_key, eb can be stale due to
1572448de471SQu Wenruo 			 * being cached, read from scrub, or have multiple
1573448de471SQu Wenruo 			 * parents (shared tree blocks).
1574448de471SQu Wenruo 			 */
1575e064d5e9SDavid Sterba 			if (btrfs_verify_level_key(tmp,
1576789d6a3aSQu Wenruo 					parent_level - 1, &check.first_key, gen)) {
1577448de471SQu Wenruo 				free_extent_buffer(tmp);
1578448de471SQu Wenruo 				return -EUCLEAN;
1579448de471SQu Wenruo 			}
1580c8c42864SChris Mason 			*eb_ret = tmp;
1581c8c42864SChris Mason 			return 0;
1582c8c42864SChris Mason 		}
1583bdf7c00eSJosef Bacik 
1584857bc13fSJosef Bacik 		if (p->nowait) {
1585857bc13fSJosef Bacik 			free_extent_buffer(tmp);
1586857bc13fSJosef Bacik 			return -EAGAIN;
1587857bc13fSJosef Bacik 		}
1588857bc13fSJosef Bacik 
1589b246666eSFilipe Manana 		if (unlock_up)
1590b246666eSFilipe Manana 			btrfs_unlock_up_safe(p, level + 1);
1591b246666eSFilipe Manana 
1592b9fab919SChris Mason 		/* now we're allowed to do a blocking uptodate check */
1593789d6a3aSQu Wenruo 		ret = btrfs_read_extent_buffer(tmp, &check);
15949a4ffa1bSQu Wenruo 		if (ret) {
1595cb44921aSChris Mason 			free_extent_buffer(tmp);
1596b3b4aa74SDavid Sterba 			btrfs_release_path(p);
1597cb44921aSChris Mason 			return -EIO;
1598cb44921aSChris Mason 		}
159988c602abSQu Wenruo 		if (btrfs_check_eb_owner(tmp, root->root_key.objectid)) {
160088c602abSQu Wenruo 			free_extent_buffer(tmp);
160188c602abSQu Wenruo 			btrfs_release_path(p);
160288c602abSQu Wenruo 			return -EUCLEAN;
160388c602abSQu Wenruo 		}
1604b246666eSFilipe Manana 
1605b246666eSFilipe Manana 		if (unlock_up)
1606b246666eSFilipe Manana 			ret = -EAGAIN;
1607b246666eSFilipe Manana 
1608b246666eSFilipe Manana 		goto out;
1609857bc13fSJosef Bacik 	} else if (p->nowait) {
1610857bc13fSJosef Bacik 		return -EAGAIN;
16119a4ffa1bSQu Wenruo 	}
1612c8c42864SChris Mason 
1613b246666eSFilipe Manana 	if (unlock_up) {
16148c594ea8SChris Mason 		btrfs_unlock_up_safe(p, level + 1);
16154bb59055SFilipe Manana 		ret = -EAGAIN;
16164bb59055SFilipe Manana 	} else {
16174bb59055SFilipe Manana 		ret = 0;
16184bb59055SFilipe Manana 	}
16198c594ea8SChris Mason 
1620e4058b54SDavid Sterba 	if (p->reada != READA_NONE)
16212ff7e61eSJeff Mahoney 		reada_for_search(fs_info, p, level, slot, key->objectid);
1622c8c42864SChris Mason 
1623789d6a3aSQu Wenruo 	tmp = read_tree_block(fs_info, blocknr, &check);
16244eb150d6SQu Wenruo 	if (IS_ERR(tmp)) {
16254eb150d6SQu Wenruo 		btrfs_release_path(p);
16264eb150d6SQu Wenruo 		return PTR_ERR(tmp);
16274eb150d6SQu Wenruo 	}
162876a05b35SChris Mason 	/*
162976a05b35SChris Mason 	 * If the read above didn't mark this buffer up to date,
163076a05b35SChris Mason 	 * it will never end up being up to date.  Set ret to EIO now
163176a05b35SChris Mason 	 * and give up so that our caller doesn't loop forever
163276a05b35SChris Mason 	 * on our EAGAINs.
163376a05b35SChris Mason 	 */
1634e6a1d6fdSLiu Bo 	if (!extent_buffer_uptodate(tmp))
163576a05b35SChris Mason 		ret = -EIO;
163602a3307aSLiu Bo 
1637b246666eSFilipe Manana out:
16384bb59055SFilipe Manana 	if (ret == 0) {
16394bb59055SFilipe Manana 		*eb_ret = tmp;
16404bb59055SFilipe Manana 	} else {
16414bb59055SFilipe Manana 		free_extent_buffer(tmp);
164202a3307aSLiu Bo 		btrfs_release_path(p);
16434bb59055SFilipe Manana 	}
16444bb59055SFilipe Manana 
164576a05b35SChris Mason 	return ret;
1646c8c42864SChris Mason }
1647c8c42864SChris Mason 
1648c8c42864SChris Mason /*
1649c8c42864SChris Mason  * helper function for btrfs_search_slot.  This does all of the checks
1650c8c42864SChris Mason  * for node-level blocks and does any balancing required based on
1651c8c42864SChris Mason  * the ins_len.
1652c8c42864SChris Mason  *
1653c8c42864SChris Mason  * If no extra work was required, zero is returned.  If we had to
1654c8c42864SChris Mason  * drop the path, -EAGAIN is returned and btrfs_search_slot must
1655c8c42864SChris Mason  * start over
1656c8c42864SChris Mason  */
1657c8c42864SChris Mason static int
1658c8c42864SChris Mason setup_nodes_for_search(struct btrfs_trans_handle *trans,
1659c8c42864SChris Mason 		       struct btrfs_root *root, struct btrfs_path *p,
1660bd681513SChris Mason 		       struct extent_buffer *b, int level, int ins_len,
1661bd681513SChris Mason 		       int *write_lock_level)
1662c8c42864SChris Mason {
16630b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
166495b982deSNikolay Borisov 	int ret = 0;
16650b246afaSJeff Mahoney 
1666c8c42864SChris Mason 	if ((p->search_for_split || ins_len > 0) && btrfs_header_nritems(b) >=
16670b246afaSJeff Mahoney 	    BTRFS_NODEPTRS_PER_BLOCK(fs_info) - 3) {
1668c8c42864SChris Mason 
1669bd681513SChris Mason 		if (*write_lock_level < level + 1) {
1670bd681513SChris Mason 			*write_lock_level = level + 1;
1671bd681513SChris Mason 			btrfs_release_path(p);
167295b982deSNikolay Borisov 			return -EAGAIN;
1673bd681513SChris Mason 		}
1674bd681513SChris Mason 
1675bfb484d9SJosef Bacik 		reada_for_balance(p, level);
167695b982deSNikolay Borisov 		ret = split_node(trans, root, p, level);
1677c8c42864SChris Mason 
1678c8c42864SChris Mason 		b = p->nodes[level];
1679c8c42864SChris Mason 	} else if (ins_len < 0 && btrfs_header_nritems(b) <
16800b246afaSJeff Mahoney 		   BTRFS_NODEPTRS_PER_BLOCK(fs_info) / 2) {
1681c8c42864SChris Mason 
1682bd681513SChris Mason 		if (*write_lock_level < level + 1) {
1683bd681513SChris Mason 			*write_lock_level = level + 1;
1684bd681513SChris Mason 			btrfs_release_path(p);
168595b982deSNikolay Borisov 			return -EAGAIN;
1686bd681513SChris Mason 		}
1687bd681513SChris Mason 
1688bfb484d9SJosef Bacik 		reada_for_balance(p, level);
168995b982deSNikolay Borisov 		ret = balance_level(trans, root, p, level);
169095b982deSNikolay Borisov 		if (ret)
169195b982deSNikolay Borisov 			return ret;
1692c8c42864SChris Mason 
1693c8c42864SChris Mason 		b = p->nodes[level];
1694c8c42864SChris Mason 		if (!b) {
1695b3b4aa74SDavid Sterba 			btrfs_release_path(p);
169695b982deSNikolay Borisov 			return -EAGAIN;
1697c8c42864SChris Mason 		}
1698c8c42864SChris Mason 		BUG_ON(btrfs_header_nritems(b) == 1);
1699c8c42864SChris Mason 	}
1700c8c42864SChris Mason 	return ret;
1701c8c42864SChris Mason }
1702c8c42864SChris Mason 
1703381cf658SDavid Sterba int btrfs_find_item(struct btrfs_root *fs_root, struct btrfs_path *path,
1704e33d5c3dSKelley Nielsen 		u64 iobjectid, u64 ioff, u8 key_type,
1705e33d5c3dSKelley Nielsen 		struct btrfs_key *found_key)
1706e33d5c3dSKelley Nielsen {
1707e33d5c3dSKelley Nielsen 	int ret;
1708e33d5c3dSKelley Nielsen 	struct btrfs_key key;
1709e33d5c3dSKelley Nielsen 	struct extent_buffer *eb;
1710381cf658SDavid Sterba 
1711381cf658SDavid Sterba 	ASSERT(path);
17121d4c08e0SDavid Sterba 	ASSERT(found_key);
1713e33d5c3dSKelley Nielsen 
1714e33d5c3dSKelley Nielsen 	key.type = key_type;
1715e33d5c3dSKelley Nielsen 	key.objectid = iobjectid;
1716e33d5c3dSKelley Nielsen 	key.offset = ioff;
1717e33d5c3dSKelley Nielsen 
1718e33d5c3dSKelley Nielsen 	ret = btrfs_search_slot(NULL, fs_root, &key, path, 0, 0);
17191d4c08e0SDavid Sterba 	if (ret < 0)
1720e33d5c3dSKelley Nielsen 		return ret;
1721e33d5c3dSKelley Nielsen 
1722e33d5c3dSKelley Nielsen 	eb = path->nodes[0];
1723e33d5c3dSKelley Nielsen 	if (ret && path->slots[0] >= btrfs_header_nritems(eb)) {
1724e33d5c3dSKelley Nielsen 		ret = btrfs_next_leaf(fs_root, path);
1725e33d5c3dSKelley Nielsen 		if (ret)
1726e33d5c3dSKelley Nielsen 			return ret;
1727e33d5c3dSKelley Nielsen 		eb = path->nodes[0];
1728e33d5c3dSKelley Nielsen 	}
1729e33d5c3dSKelley Nielsen 
1730e33d5c3dSKelley Nielsen 	btrfs_item_key_to_cpu(eb, found_key, path->slots[0]);
1731e33d5c3dSKelley Nielsen 	if (found_key->type != key.type ||
1732e33d5c3dSKelley Nielsen 			found_key->objectid != key.objectid)
1733e33d5c3dSKelley Nielsen 		return 1;
1734e33d5c3dSKelley Nielsen 
1735e33d5c3dSKelley Nielsen 	return 0;
1736e33d5c3dSKelley Nielsen }
1737e33d5c3dSKelley Nielsen 
17381fc28d8eSLiu Bo static struct extent_buffer *btrfs_search_slot_get_root(struct btrfs_root *root,
17391fc28d8eSLiu Bo 							struct btrfs_path *p,
17401fc28d8eSLiu Bo 							int write_lock_level)
17411fc28d8eSLiu Bo {
17421fc28d8eSLiu Bo 	struct extent_buffer *b;
1743120de408SJosef Bacik 	int root_lock = 0;
17441fc28d8eSLiu Bo 	int level = 0;
17451fc28d8eSLiu Bo 
17461fc28d8eSLiu Bo 	if (p->search_commit_root) {
17471fc28d8eSLiu Bo 		b = root->commit_root;
174867439dadSDavid Sterba 		atomic_inc(&b->refs);
17491fc28d8eSLiu Bo 		level = btrfs_header_level(b);
1750f9ddfd05SLiu Bo 		/*
1751f9ddfd05SLiu Bo 		 * Ensure that all callers have set skip_locking when
1752f9ddfd05SLiu Bo 		 * p->search_commit_root = 1.
1753f9ddfd05SLiu Bo 		 */
1754f9ddfd05SLiu Bo 		ASSERT(p->skip_locking == 1);
17551fc28d8eSLiu Bo 
17561fc28d8eSLiu Bo 		goto out;
17571fc28d8eSLiu Bo 	}
17581fc28d8eSLiu Bo 
17591fc28d8eSLiu Bo 	if (p->skip_locking) {
17601fc28d8eSLiu Bo 		b = btrfs_root_node(root);
17611fc28d8eSLiu Bo 		level = btrfs_header_level(b);
17621fc28d8eSLiu Bo 		goto out;
17631fc28d8eSLiu Bo 	}
17641fc28d8eSLiu Bo 
1765120de408SJosef Bacik 	/* We try very hard to do read locks on the root */
1766120de408SJosef Bacik 	root_lock = BTRFS_READ_LOCK;
1767120de408SJosef Bacik 
17681fc28d8eSLiu Bo 	/*
1769662c653bSLiu Bo 	 * If the level is set to maximum, we can skip trying to get the read
1770662c653bSLiu Bo 	 * lock.
1771662c653bSLiu Bo 	 */
1772662c653bSLiu Bo 	if (write_lock_level < BTRFS_MAX_LEVEL) {
1773662c653bSLiu Bo 		/*
1774662c653bSLiu Bo 		 * We don't know the level of the root node until we actually
1775662c653bSLiu Bo 		 * have it read locked
17761fc28d8eSLiu Bo 		 */
1777857bc13fSJosef Bacik 		if (p->nowait) {
1778857bc13fSJosef Bacik 			b = btrfs_try_read_lock_root_node(root);
1779857bc13fSJosef Bacik 			if (IS_ERR(b))
1780857bc13fSJosef Bacik 				return b;
1781857bc13fSJosef Bacik 		} else {
17821bb96598SJosef Bacik 			b = btrfs_read_lock_root_node(root);
1783857bc13fSJosef Bacik 		}
17841fc28d8eSLiu Bo 		level = btrfs_header_level(b);
17851fc28d8eSLiu Bo 		if (level > write_lock_level)
17861fc28d8eSLiu Bo 			goto out;
17871fc28d8eSLiu Bo 
1788662c653bSLiu Bo 		/* Whoops, must trade for write lock */
17891fc28d8eSLiu Bo 		btrfs_tree_read_unlock(b);
17901fc28d8eSLiu Bo 		free_extent_buffer(b);
1791662c653bSLiu Bo 	}
1792662c653bSLiu Bo 
17931fc28d8eSLiu Bo 	b = btrfs_lock_root_node(root);
17941fc28d8eSLiu Bo 	root_lock = BTRFS_WRITE_LOCK;
17951fc28d8eSLiu Bo 
17961fc28d8eSLiu Bo 	/* The level might have changed, check again */
17971fc28d8eSLiu Bo 	level = btrfs_header_level(b);
17981fc28d8eSLiu Bo 
17991fc28d8eSLiu Bo out:
1800120de408SJosef Bacik 	/*
1801120de408SJosef Bacik 	 * The root may have failed to write out at some point, and thus is no
1802120de408SJosef Bacik 	 * longer valid, return an error in this case.
1803120de408SJosef Bacik 	 */
1804120de408SJosef Bacik 	if (!extent_buffer_uptodate(b)) {
1805120de408SJosef Bacik 		if (root_lock)
1806120de408SJosef Bacik 			btrfs_tree_unlock_rw(b, root_lock);
1807120de408SJosef Bacik 		free_extent_buffer(b);
1808120de408SJosef Bacik 		return ERR_PTR(-EIO);
1809120de408SJosef Bacik 	}
1810120de408SJosef Bacik 
18111fc28d8eSLiu Bo 	p->nodes[level] = b;
18121fc28d8eSLiu Bo 	if (!p->skip_locking)
18131fc28d8eSLiu Bo 		p->locks[level] = root_lock;
18141fc28d8eSLiu Bo 	/*
18151fc28d8eSLiu Bo 	 * Callers are responsible for dropping b's references.
18161fc28d8eSLiu Bo 	 */
18171fc28d8eSLiu Bo 	return b;
18181fc28d8eSLiu Bo }
18191fc28d8eSLiu Bo 
1820d96b3424SFilipe Manana /*
1821d96b3424SFilipe Manana  * Replace the extent buffer at the lowest level of the path with a cloned
1822d96b3424SFilipe Manana  * version. The purpose is to be able to use it safely, after releasing the
1823d96b3424SFilipe Manana  * commit root semaphore, even if relocation is happening in parallel, the
1824d96b3424SFilipe Manana  * transaction used for relocation is committed and the extent buffer is
1825d96b3424SFilipe Manana  * reallocated in the next transaction.
1826d96b3424SFilipe Manana  *
1827d96b3424SFilipe Manana  * This is used in a context where the caller does not prevent transaction
1828d96b3424SFilipe Manana  * commits from happening, either by holding a transaction handle or holding
1829d96b3424SFilipe Manana  * some lock, while it's doing searches through a commit root.
1830d96b3424SFilipe Manana  * At the moment it's only used for send operations.
1831d96b3424SFilipe Manana  */
1832d96b3424SFilipe Manana static int finish_need_commit_sem_search(struct btrfs_path *path)
1833d96b3424SFilipe Manana {
1834d96b3424SFilipe Manana 	const int i = path->lowest_level;
1835d96b3424SFilipe Manana 	const int slot = path->slots[i];
1836d96b3424SFilipe Manana 	struct extent_buffer *lowest = path->nodes[i];
1837d96b3424SFilipe Manana 	struct extent_buffer *clone;
1838d96b3424SFilipe Manana 
1839d96b3424SFilipe Manana 	ASSERT(path->need_commit_sem);
1840d96b3424SFilipe Manana 
1841d96b3424SFilipe Manana 	if (!lowest)
1842d96b3424SFilipe Manana 		return 0;
1843d96b3424SFilipe Manana 
1844d96b3424SFilipe Manana 	lockdep_assert_held_read(&lowest->fs_info->commit_root_sem);
1845d96b3424SFilipe Manana 
1846d96b3424SFilipe Manana 	clone = btrfs_clone_extent_buffer(lowest);
1847d96b3424SFilipe Manana 	if (!clone)
1848d96b3424SFilipe Manana 		return -ENOMEM;
1849d96b3424SFilipe Manana 
1850d96b3424SFilipe Manana 	btrfs_release_path(path);
1851d96b3424SFilipe Manana 	path->nodes[i] = clone;
1852d96b3424SFilipe Manana 	path->slots[i] = slot;
1853d96b3424SFilipe Manana 
1854d96b3424SFilipe Manana 	return 0;
1855d96b3424SFilipe Manana }
18561fc28d8eSLiu Bo 
1857e2e58d0fSFilipe Manana static inline int search_for_key_slot(struct extent_buffer *eb,
1858e2e58d0fSFilipe Manana 				      int search_low_slot,
1859e2e58d0fSFilipe Manana 				      const struct btrfs_key *key,
1860e2e58d0fSFilipe Manana 				      int prev_cmp,
1861e2e58d0fSFilipe Manana 				      int *slot)
1862e2e58d0fSFilipe Manana {
1863e2e58d0fSFilipe Manana 	/*
1864e2e58d0fSFilipe Manana 	 * If a previous call to btrfs_bin_search() on a parent node returned an
1865e2e58d0fSFilipe Manana 	 * exact match (prev_cmp == 0), we can safely assume the target key will
1866e2e58d0fSFilipe Manana 	 * always be at slot 0 on lower levels, since each key pointer
1867e2e58d0fSFilipe Manana 	 * (struct btrfs_key_ptr) refers to the lowest key accessible from the
1868e2e58d0fSFilipe Manana 	 * subtree it points to. Thus we can skip searching lower levels.
1869e2e58d0fSFilipe Manana 	 */
1870e2e58d0fSFilipe Manana 	if (prev_cmp == 0) {
1871e2e58d0fSFilipe Manana 		*slot = 0;
1872e2e58d0fSFilipe Manana 		return 0;
1873e2e58d0fSFilipe Manana 	}
1874e2e58d0fSFilipe Manana 
1875fdf8d595SAnand Jain 	return btrfs_bin_search(eb, search_low_slot, key, slot);
1876e2e58d0fSFilipe Manana }
1877e2e58d0fSFilipe Manana 
1878109324cfSFilipe Manana static int search_leaf(struct btrfs_trans_handle *trans,
1879109324cfSFilipe Manana 		       struct btrfs_root *root,
1880109324cfSFilipe Manana 		       const struct btrfs_key *key,
1881109324cfSFilipe Manana 		       struct btrfs_path *path,
1882109324cfSFilipe Manana 		       int ins_len,
1883109324cfSFilipe Manana 		       int prev_cmp)
1884109324cfSFilipe Manana {
1885109324cfSFilipe Manana 	struct extent_buffer *leaf = path->nodes[0];
1886109324cfSFilipe Manana 	int leaf_free_space = -1;
1887109324cfSFilipe Manana 	int search_low_slot = 0;
1888109324cfSFilipe Manana 	int ret;
1889109324cfSFilipe Manana 	bool do_bin_search = true;
1890109324cfSFilipe Manana 
1891109324cfSFilipe Manana 	/*
1892109324cfSFilipe Manana 	 * If we are doing an insertion, the leaf has enough free space and the
1893109324cfSFilipe Manana 	 * destination slot for the key is not slot 0, then we can unlock our
1894109324cfSFilipe Manana 	 * write lock on the parent, and any other upper nodes, before doing the
1895109324cfSFilipe Manana 	 * binary search on the leaf (with search_for_key_slot()), allowing other
1896109324cfSFilipe Manana 	 * tasks to lock the parent and any other upper nodes.
1897109324cfSFilipe Manana 	 */
1898109324cfSFilipe Manana 	if (ins_len > 0) {
1899109324cfSFilipe Manana 		/*
1900109324cfSFilipe Manana 		 * Cache the leaf free space, since we will need it later and it
1901109324cfSFilipe Manana 		 * will not change until then.
1902109324cfSFilipe Manana 		 */
1903109324cfSFilipe Manana 		leaf_free_space = btrfs_leaf_free_space(leaf);
1904109324cfSFilipe Manana 
1905109324cfSFilipe Manana 		/*
1906109324cfSFilipe Manana 		 * !path->locks[1] means we have a single node tree, the leaf is
1907109324cfSFilipe Manana 		 * the root of the tree.
1908109324cfSFilipe Manana 		 */
1909109324cfSFilipe Manana 		if (path->locks[1] && leaf_free_space >= ins_len) {
1910109324cfSFilipe Manana 			struct btrfs_disk_key first_key;
1911109324cfSFilipe Manana 
1912109324cfSFilipe Manana 			ASSERT(btrfs_header_nritems(leaf) > 0);
1913109324cfSFilipe Manana 			btrfs_item_key(leaf, &first_key, 0);
1914109324cfSFilipe Manana 
1915109324cfSFilipe Manana 			/*
1916109324cfSFilipe Manana 			 * Doing the extra comparison with the first key is cheap,
1917109324cfSFilipe Manana 			 * taking into account that the first key is very likely
1918109324cfSFilipe Manana 			 * already in a cache line because it immediately follows
1919109324cfSFilipe Manana 			 * the extent buffer's header and we have recently accessed
1920109324cfSFilipe Manana 			 * the header's level field.
1921109324cfSFilipe Manana 			 */
1922109324cfSFilipe Manana 			ret = comp_keys(&first_key, key);
1923109324cfSFilipe Manana 			if (ret < 0) {
1924109324cfSFilipe Manana 				/*
1925109324cfSFilipe Manana 				 * The first key is smaller than the key we want
1926109324cfSFilipe Manana 				 * to insert, so we are safe to unlock all upper
1927109324cfSFilipe Manana 				 * nodes and we have to do the binary search.
1928109324cfSFilipe Manana 				 *
1929109324cfSFilipe Manana 				 * We do use btrfs_unlock_up_safe() and not
1930109324cfSFilipe Manana 				 * unlock_up() because the later does not unlock
1931109324cfSFilipe Manana 				 * nodes with a slot of 0 - we can safely unlock
1932109324cfSFilipe Manana 				 * any node even if its slot is 0 since in this
1933109324cfSFilipe Manana 				 * case the key does not end up at slot 0 of the
1934109324cfSFilipe Manana 				 * leaf and there's no need to split the leaf.
1935109324cfSFilipe Manana 				 */
1936109324cfSFilipe Manana 				btrfs_unlock_up_safe(path, 1);
1937109324cfSFilipe Manana 				search_low_slot = 1;
1938109324cfSFilipe Manana 			} else {
1939109324cfSFilipe Manana 				/*
1940109324cfSFilipe Manana 				 * The first key is >= then the key we want to
1941109324cfSFilipe Manana 				 * insert, so we can skip the binary search as
1942109324cfSFilipe Manana 				 * the target key will be at slot 0.
1943109324cfSFilipe Manana 				 *
1944109324cfSFilipe Manana 				 * We can not unlock upper nodes when the key is
1945109324cfSFilipe Manana 				 * less than the first key, because we will need
1946109324cfSFilipe Manana 				 * to update the key at slot 0 of the parent node
1947109324cfSFilipe Manana 				 * and possibly of other upper nodes too.
1948109324cfSFilipe Manana 				 * If the key matches the first key, then we can
1949109324cfSFilipe Manana 				 * unlock all the upper nodes, using
1950109324cfSFilipe Manana 				 * btrfs_unlock_up_safe() instead of unlock_up()
1951109324cfSFilipe Manana 				 * as stated above.
1952109324cfSFilipe Manana 				 */
1953109324cfSFilipe Manana 				if (ret == 0)
1954109324cfSFilipe Manana 					btrfs_unlock_up_safe(path, 1);
1955109324cfSFilipe Manana 				/*
1956109324cfSFilipe Manana 				 * ret is already 0 or 1, matching the result of
1957109324cfSFilipe Manana 				 * a btrfs_bin_search() call, so there is no need
1958109324cfSFilipe Manana 				 * to adjust it.
1959109324cfSFilipe Manana 				 */
1960109324cfSFilipe Manana 				do_bin_search = false;
1961109324cfSFilipe Manana 				path->slots[0] = 0;
1962109324cfSFilipe Manana 			}
1963109324cfSFilipe Manana 		}
1964109324cfSFilipe Manana 	}
1965109324cfSFilipe Manana 
1966109324cfSFilipe Manana 	if (do_bin_search) {
1967109324cfSFilipe Manana 		ret = search_for_key_slot(leaf, search_low_slot, key,
1968109324cfSFilipe Manana 					  prev_cmp, &path->slots[0]);
1969109324cfSFilipe Manana 		if (ret < 0)
1970109324cfSFilipe Manana 			return ret;
1971109324cfSFilipe Manana 	}
1972109324cfSFilipe Manana 
1973109324cfSFilipe Manana 	if (ins_len > 0) {
1974109324cfSFilipe Manana 		/*
1975109324cfSFilipe Manana 		 * Item key already exists. In this case, if we are allowed to
1976109324cfSFilipe Manana 		 * insert the item (for example, in dir_item case, item key
1977109324cfSFilipe Manana 		 * collision is allowed), it will be merged with the original
1978109324cfSFilipe Manana 		 * item. Only the item size grows, no new btrfs item will be
1979109324cfSFilipe Manana 		 * added. If search_for_extension is not set, ins_len already
1980109324cfSFilipe Manana 		 * accounts the size btrfs_item, deduct it here so leaf space
1981109324cfSFilipe Manana 		 * check will be correct.
1982109324cfSFilipe Manana 		 */
1983109324cfSFilipe Manana 		if (ret == 0 && !path->search_for_extension) {
1984109324cfSFilipe Manana 			ASSERT(ins_len >= sizeof(struct btrfs_item));
1985109324cfSFilipe Manana 			ins_len -= sizeof(struct btrfs_item);
1986109324cfSFilipe Manana 		}
1987109324cfSFilipe Manana 
1988109324cfSFilipe Manana 		ASSERT(leaf_free_space >= 0);
1989109324cfSFilipe Manana 
1990109324cfSFilipe Manana 		if (leaf_free_space < ins_len) {
1991109324cfSFilipe Manana 			int err;
1992109324cfSFilipe Manana 
1993109324cfSFilipe Manana 			err = split_leaf(trans, root, key, path, ins_len,
1994109324cfSFilipe Manana 					 (ret == 0));
1995bb8e9a60SFilipe Manana 			ASSERT(err <= 0);
1996bb8e9a60SFilipe Manana 			if (WARN_ON(err > 0))
1997bb8e9a60SFilipe Manana 				err = -EUCLEAN;
1998109324cfSFilipe Manana 			if (err)
1999109324cfSFilipe Manana 				ret = err;
2000109324cfSFilipe Manana 		}
2001109324cfSFilipe Manana 	}
2002109324cfSFilipe Manana 
2003109324cfSFilipe Manana 	return ret;
2004109324cfSFilipe Manana }
2005109324cfSFilipe Manana 
2006c8c42864SChris Mason /*
20074271eceaSNikolay Borisov  * btrfs_search_slot - look for a key in a tree and perform necessary
20084271eceaSNikolay Borisov  * modifications to preserve tree invariants.
200974123bd7SChris Mason  *
20104271eceaSNikolay Borisov  * @trans:	Handle of transaction, used when modifying the tree
20114271eceaSNikolay Borisov  * @p:		Holds all btree nodes along the search path
20124271eceaSNikolay Borisov  * @root:	The root node of the tree
20134271eceaSNikolay Borisov  * @key:	The key we are looking for
20149a664971Sethanwu  * @ins_len:	Indicates purpose of search:
20159a664971Sethanwu  *              >0  for inserts it's size of item inserted (*)
20169a664971Sethanwu  *              <0  for deletions
20179a664971Sethanwu  *               0  for plain searches, not modifying the tree
20189a664971Sethanwu  *
20199a664971Sethanwu  *              (*) If size of item inserted doesn't include
20209a664971Sethanwu  *              sizeof(struct btrfs_item), then p->search_for_extension must
20219a664971Sethanwu  *              be set.
20224271eceaSNikolay Borisov  * @cow:	boolean should CoW operations be performed. Must always be 1
20234271eceaSNikolay Borisov  *		when modifying the tree.
202497571fd0SChris Mason  *
20254271eceaSNikolay Borisov  * If @ins_len > 0, nodes and leaves will be split as we walk down the tree.
20264271eceaSNikolay Borisov  * If @ins_len < 0, nodes will be merged as we walk down the tree (if possible)
20274271eceaSNikolay Borisov  *
20284271eceaSNikolay Borisov  * If @key is found, 0 is returned and you can find the item in the leaf level
20294271eceaSNikolay Borisov  * of the path (level 0)
20304271eceaSNikolay Borisov  *
20314271eceaSNikolay Borisov  * If @key isn't found, 1 is returned and the leaf level of the path (level 0)
20324271eceaSNikolay Borisov  * points to the slot where it should be inserted
20334271eceaSNikolay Borisov  *
20344271eceaSNikolay Borisov  * If an error is encountered while searching the tree a negative error number
20354271eceaSNikolay Borisov  * is returned
203674123bd7SChris Mason  */
2037310712b2SOmar Sandoval int btrfs_search_slot(struct btrfs_trans_handle *trans, struct btrfs_root *root,
2038310712b2SOmar Sandoval 		      const struct btrfs_key *key, struct btrfs_path *p,
2039310712b2SOmar Sandoval 		      int ins_len, int cow)
2040be0e5c09SChris Mason {
2041d96b3424SFilipe Manana 	struct btrfs_fs_info *fs_info = root->fs_info;
20425f39d397SChris Mason 	struct extent_buffer *b;
2043be0e5c09SChris Mason 	int slot;
2044be0e5c09SChris Mason 	int ret;
204533c66f43SYan Zheng 	int err;
2046be0e5c09SChris Mason 	int level;
2047925baeddSChris Mason 	int lowest_unlock = 1;
2048bd681513SChris Mason 	/* everything at write_lock_level or lower must be write locked */
2049bd681513SChris Mason 	int write_lock_level = 0;
20509f3a7427SChris Mason 	u8 lowest_level = 0;
2051f7c79f30SChris Mason 	int min_write_lock_level;
2052d7396f07SFilipe David Borba Manana 	int prev_cmp;
20539f3a7427SChris Mason 
2054a4c853afSChenXiaoSong 	might_sleep();
2055a4c853afSChenXiaoSong 
20566702ed49SChris Mason 	lowest_level = p->lowest_level;
2057323ac95bSChris Mason 	WARN_ON(lowest_level && ins_len > 0);
205822b0ebdaSChris Mason 	WARN_ON(p->nodes[0] != NULL);
2059eb653de1SFilipe David Borba Manana 	BUG_ON(!cow && ins_len);
206025179201SJosef Bacik 
2061857bc13fSJosef Bacik 	/*
2062857bc13fSJosef Bacik 	 * For now only allow nowait for read only operations.  There's no
2063857bc13fSJosef Bacik 	 * strict reason why we can't, we just only need it for reads so it's
2064857bc13fSJosef Bacik 	 * only implemented for reads.
2065857bc13fSJosef Bacik 	 */
2066857bc13fSJosef Bacik 	ASSERT(!p->nowait || !cow);
2067857bc13fSJosef Bacik 
2068bd681513SChris Mason 	if (ins_len < 0) {
2069925baeddSChris Mason 		lowest_unlock = 2;
207065b51a00SChris Mason 
2071bd681513SChris Mason 		/* when we are removing items, we might have to go up to level
2072bd681513SChris Mason 		 * two as we update tree pointers  Make sure we keep write
2073bd681513SChris Mason 		 * for those levels as well
2074bd681513SChris Mason 		 */
2075bd681513SChris Mason 		write_lock_level = 2;
2076bd681513SChris Mason 	} else if (ins_len > 0) {
2077bd681513SChris Mason 		/*
2078bd681513SChris Mason 		 * for inserting items, make sure we have a write lock on
2079bd681513SChris Mason 		 * level 1 so we can update keys
2080bd681513SChris Mason 		 */
2081bd681513SChris Mason 		write_lock_level = 1;
2082bd681513SChris Mason 	}
2083bd681513SChris Mason 
2084bd681513SChris Mason 	if (!cow)
2085bd681513SChris Mason 		write_lock_level = -1;
2086bd681513SChris Mason 
208709a2a8f9SJosef Bacik 	if (cow && (p->keep_locks || p->lowest_level))
2088bd681513SChris Mason 		write_lock_level = BTRFS_MAX_LEVEL;
2089bd681513SChris Mason 
2090f7c79f30SChris Mason 	min_write_lock_level = write_lock_level;
2091f7c79f30SChris Mason 
2092d96b3424SFilipe Manana 	if (p->need_commit_sem) {
2093d96b3424SFilipe Manana 		ASSERT(p->search_commit_root);
2094857bc13fSJosef Bacik 		if (p->nowait) {
2095857bc13fSJosef Bacik 			if (!down_read_trylock(&fs_info->commit_root_sem))
2096857bc13fSJosef Bacik 				return -EAGAIN;
2097857bc13fSJosef Bacik 		} else {
2098d96b3424SFilipe Manana 			down_read(&fs_info->commit_root_sem);
2099d96b3424SFilipe Manana 		}
2100857bc13fSJosef Bacik 	}
2101d96b3424SFilipe Manana 
2102bb803951SChris Mason again:
2103d7396f07SFilipe David Borba Manana 	prev_cmp = -1;
21041fc28d8eSLiu Bo 	b = btrfs_search_slot_get_root(root, p, write_lock_level);
2105be6821f8SFilipe Manana 	if (IS_ERR(b)) {
2106be6821f8SFilipe Manana 		ret = PTR_ERR(b);
2107be6821f8SFilipe Manana 		goto done;
2108be6821f8SFilipe Manana 	}
2109925baeddSChris Mason 
2110eb60ceacSChris Mason 	while (b) {
2111f624d976SQu Wenruo 		int dec = 0;
2112f624d976SQu Wenruo 
21135f39d397SChris Mason 		level = btrfs_header_level(b);
211465b51a00SChris Mason 
211502217ed2SChris Mason 		if (cow) {
21169ea2c7c9SNikolay Borisov 			bool last_level = (level == (BTRFS_MAX_LEVEL - 1));
21179ea2c7c9SNikolay Borisov 
2118c8c42864SChris Mason 			/*
2119c8c42864SChris Mason 			 * if we don't really need to cow this block
2120c8c42864SChris Mason 			 * then we don't want to set the path blocking,
2121c8c42864SChris Mason 			 * so we test it here
2122c8c42864SChris Mason 			 */
21235963ffcaSJosef Bacik 			if (!should_cow_block(trans, root, b))
212465b51a00SChris Mason 				goto cow_done;
21255d4f98a2SYan Zheng 
2126bd681513SChris Mason 			/*
2127bd681513SChris Mason 			 * must have write locks on this node and the
2128bd681513SChris Mason 			 * parent
2129bd681513SChris Mason 			 */
21305124e00eSJosef Bacik 			if (level > write_lock_level ||
21315124e00eSJosef Bacik 			    (level + 1 > write_lock_level &&
21325124e00eSJosef Bacik 			    level + 1 < BTRFS_MAX_LEVEL &&
21335124e00eSJosef Bacik 			    p->nodes[level + 1])) {
2134bd681513SChris Mason 				write_lock_level = level + 1;
2135bd681513SChris Mason 				btrfs_release_path(p);
2136bd681513SChris Mason 				goto again;
2137bd681513SChris Mason 			}
2138bd681513SChris Mason 
21399ea2c7c9SNikolay Borisov 			if (last_level)
21409ea2c7c9SNikolay Borisov 				err = btrfs_cow_block(trans, root, b, NULL, 0,
21419631e4ccSJosef Bacik 						      &b,
21429631e4ccSJosef Bacik 						      BTRFS_NESTING_COW);
21439ea2c7c9SNikolay Borisov 			else
214433c66f43SYan Zheng 				err = btrfs_cow_block(trans, root, b,
2145e20d96d6SChris Mason 						      p->nodes[level + 1],
21469631e4ccSJosef Bacik 						      p->slots[level + 1], &b,
21479631e4ccSJosef Bacik 						      BTRFS_NESTING_COW);
214833c66f43SYan Zheng 			if (err) {
214933c66f43SYan Zheng 				ret = err;
215065b51a00SChris Mason 				goto done;
215154aa1f4dSChris Mason 			}
215202217ed2SChris Mason 		}
215365b51a00SChris Mason cow_done:
2154eb60ceacSChris Mason 		p->nodes[level] = b;
2155b4ce94deSChris Mason 
2156b4ce94deSChris Mason 		/*
2157b4ce94deSChris Mason 		 * we have a lock on b and as long as we aren't changing
2158b4ce94deSChris Mason 		 * the tree, there is no way to for the items in b to change.
2159b4ce94deSChris Mason 		 * It is safe to drop the lock on our parent before we
2160b4ce94deSChris Mason 		 * go through the expensive btree search on b.
2161b4ce94deSChris Mason 		 *
2162eb653de1SFilipe David Borba Manana 		 * If we're inserting or deleting (ins_len != 0), then we might
2163eb653de1SFilipe David Borba Manana 		 * be changing slot zero, which may require changing the parent.
2164eb653de1SFilipe David Borba Manana 		 * So, we can't drop the lock until after we know which slot
2165eb653de1SFilipe David Borba Manana 		 * we're operating on.
2166b4ce94deSChris Mason 		 */
2167eb653de1SFilipe David Borba Manana 		if (!ins_len && !p->keep_locks) {
2168eb653de1SFilipe David Borba Manana 			int u = level + 1;
2169eb653de1SFilipe David Borba Manana 
2170eb653de1SFilipe David Borba Manana 			if (u < BTRFS_MAX_LEVEL && p->locks[u]) {
2171eb653de1SFilipe David Borba Manana 				btrfs_tree_unlock_rw(p->nodes[u], p->locks[u]);
2172eb653de1SFilipe David Borba Manana 				p->locks[u] = 0;
2173eb653de1SFilipe David Borba Manana 			}
2174eb653de1SFilipe David Borba Manana 		}
2175b4ce94deSChris Mason 
2176e2e58d0fSFilipe Manana 		if (level == 0) {
2177109324cfSFilipe Manana 			if (ins_len > 0)
2178e5e1c174SFilipe Manana 				ASSERT(write_lock_level >= 1);
2179bd681513SChris Mason 
2180109324cfSFilipe Manana 			ret = search_leaf(trans, root, key, p, ins_len, prev_cmp);
2181459931ecSChris Mason 			if (!p->search_for_split)
2182f7c79f30SChris Mason 				unlock_up(p, level, lowest_unlock,
21834b6f8e96SLiu Bo 					  min_write_lock_level, NULL);
218465b51a00SChris Mason 			goto done;
218565b51a00SChris Mason 		}
2186e2e58d0fSFilipe Manana 
2187e2e58d0fSFilipe Manana 		ret = search_for_key_slot(b, 0, key, prev_cmp, &slot);
2188e2e58d0fSFilipe Manana 		if (ret < 0)
2189e2e58d0fSFilipe Manana 			goto done;
2190e2e58d0fSFilipe Manana 		prev_cmp = ret;
2191e2e58d0fSFilipe Manana 
2192f624d976SQu Wenruo 		if (ret && slot > 0) {
2193f624d976SQu Wenruo 			dec = 1;
2194f624d976SQu Wenruo 			slot--;
2195f624d976SQu Wenruo 		}
2196f624d976SQu Wenruo 		p->slots[level] = slot;
2197f624d976SQu Wenruo 		err = setup_nodes_for_search(trans, root, p, b, level, ins_len,
2198f624d976SQu Wenruo 					     &write_lock_level);
2199f624d976SQu Wenruo 		if (err == -EAGAIN)
2200f624d976SQu Wenruo 			goto again;
2201f624d976SQu Wenruo 		if (err) {
2202f624d976SQu Wenruo 			ret = err;
2203f624d976SQu Wenruo 			goto done;
2204f624d976SQu Wenruo 		}
2205f624d976SQu Wenruo 		b = p->nodes[level];
2206f624d976SQu Wenruo 		slot = p->slots[level];
2207f624d976SQu Wenruo 
2208f624d976SQu Wenruo 		/*
2209f624d976SQu Wenruo 		 * Slot 0 is special, if we change the key we have to update
2210f624d976SQu Wenruo 		 * the parent pointer which means we must have a write lock on
2211f624d976SQu Wenruo 		 * the parent
2212f624d976SQu Wenruo 		 */
2213f624d976SQu Wenruo 		if (slot == 0 && ins_len && write_lock_level < level + 1) {
2214f624d976SQu Wenruo 			write_lock_level = level + 1;
2215f624d976SQu Wenruo 			btrfs_release_path(p);
2216f624d976SQu Wenruo 			goto again;
2217f624d976SQu Wenruo 		}
2218f624d976SQu Wenruo 
2219f624d976SQu Wenruo 		unlock_up(p, level, lowest_unlock, min_write_lock_level,
2220f624d976SQu Wenruo 			  &write_lock_level);
2221f624d976SQu Wenruo 
2222f624d976SQu Wenruo 		if (level == lowest_level) {
2223f624d976SQu Wenruo 			if (dec)
2224f624d976SQu Wenruo 				p->slots[level]++;
2225f624d976SQu Wenruo 			goto done;
2226f624d976SQu Wenruo 		}
2227f624d976SQu Wenruo 
2228f624d976SQu Wenruo 		err = read_block_for_search(root, p, &b, level, slot, key);
2229f624d976SQu Wenruo 		if (err == -EAGAIN)
2230f624d976SQu Wenruo 			goto again;
2231f624d976SQu Wenruo 		if (err) {
2232f624d976SQu Wenruo 			ret = err;
2233f624d976SQu Wenruo 			goto done;
2234f624d976SQu Wenruo 		}
2235f624d976SQu Wenruo 
2236f624d976SQu Wenruo 		if (!p->skip_locking) {
2237f624d976SQu Wenruo 			level = btrfs_header_level(b);
2238b40130b2SJosef Bacik 
2239b40130b2SJosef Bacik 			btrfs_maybe_reset_lockdep_class(root, b);
2240b40130b2SJosef Bacik 
2241f624d976SQu Wenruo 			if (level <= write_lock_level) {
2242f624d976SQu Wenruo 				btrfs_tree_lock(b);
2243f624d976SQu Wenruo 				p->locks[level] = BTRFS_WRITE_LOCK;
2244f624d976SQu Wenruo 			} else {
2245857bc13fSJosef Bacik 				if (p->nowait) {
2246857bc13fSJosef Bacik 					if (!btrfs_try_tree_read_lock(b)) {
2247857bc13fSJosef Bacik 						free_extent_buffer(b);
2248857bc13fSJosef Bacik 						ret = -EAGAIN;
2249857bc13fSJosef Bacik 						goto done;
2250857bc13fSJosef Bacik 					}
2251857bc13fSJosef Bacik 				} else {
2252fe596ca3SJosef Bacik 					btrfs_tree_read_lock(b);
2253857bc13fSJosef Bacik 				}
2254f624d976SQu Wenruo 				p->locks[level] = BTRFS_READ_LOCK;
2255f624d976SQu Wenruo 			}
2256f624d976SQu Wenruo 			p->nodes[level] = b;
2257f624d976SQu Wenruo 		}
225865b51a00SChris Mason 	}
225965b51a00SChris Mason 	ret = 1;
226065b51a00SChris Mason done:
22615f5bc6b1SFilipe Manana 	if (ret < 0 && !p->skip_release_on_error)
2262b3b4aa74SDavid Sterba 		btrfs_release_path(p);
2263d96b3424SFilipe Manana 
2264d96b3424SFilipe Manana 	if (p->need_commit_sem) {
2265d96b3424SFilipe Manana 		int ret2;
2266d96b3424SFilipe Manana 
2267d96b3424SFilipe Manana 		ret2 = finish_need_commit_sem_search(p);
2268d96b3424SFilipe Manana 		up_read(&fs_info->commit_root_sem);
2269d96b3424SFilipe Manana 		if (ret2)
2270d96b3424SFilipe Manana 			ret = ret2;
2271d96b3424SFilipe Manana 	}
2272d96b3424SFilipe Manana 
2273be0e5c09SChris Mason 	return ret;
2274be0e5c09SChris Mason }
2275f75e2b79SJosef Bacik ALLOW_ERROR_INJECTION(btrfs_search_slot, ERRNO);
2276be0e5c09SChris Mason 
227774123bd7SChris Mason /*
22785d9e75c4SJan Schmidt  * Like btrfs_search_slot, this looks for a key in the given tree. It uses the
22795d9e75c4SJan Schmidt  * current state of the tree together with the operations recorded in the tree
22805d9e75c4SJan Schmidt  * modification log to search for the key in a previous version of this tree, as
22815d9e75c4SJan Schmidt  * denoted by the time_seq parameter.
22825d9e75c4SJan Schmidt  *
22835d9e75c4SJan Schmidt  * Naturally, there is no support for insert, delete or cow operations.
22845d9e75c4SJan Schmidt  *
22855d9e75c4SJan Schmidt  * The resulting path and return value will be set up as if we called
22865d9e75c4SJan Schmidt  * btrfs_search_slot at that point in time with ins_len and cow both set to 0.
22875d9e75c4SJan Schmidt  */
2288310712b2SOmar Sandoval int btrfs_search_old_slot(struct btrfs_root *root, const struct btrfs_key *key,
22895d9e75c4SJan Schmidt 			  struct btrfs_path *p, u64 time_seq)
22905d9e75c4SJan Schmidt {
22910b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
22925d9e75c4SJan Schmidt 	struct extent_buffer *b;
22935d9e75c4SJan Schmidt 	int slot;
22945d9e75c4SJan Schmidt 	int ret;
22955d9e75c4SJan Schmidt 	int err;
22965d9e75c4SJan Schmidt 	int level;
22975d9e75c4SJan Schmidt 	int lowest_unlock = 1;
22985d9e75c4SJan Schmidt 	u8 lowest_level = 0;
22995d9e75c4SJan Schmidt 
23005d9e75c4SJan Schmidt 	lowest_level = p->lowest_level;
23015d9e75c4SJan Schmidt 	WARN_ON(p->nodes[0] != NULL);
2302c922b016SStefan Roesch 	ASSERT(!p->nowait);
23035d9e75c4SJan Schmidt 
23045d9e75c4SJan Schmidt 	if (p->search_commit_root) {
23055d9e75c4SJan Schmidt 		BUG_ON(time_seq);
23065d9e75c4SJan Schmidt 		return btrfs_search_slot(NULL, root, key, p, 0, 0);
23075d9e75c4SJan Schmidt 	}
23085d9e75c4SJan Schmidt 
23095d9e75c4SJan Schmidt again:
2310f3a84ccdSFilipe Manana 	b = btrfs_get_old_root(root, time_seq);
2311315bed43SNikolay Borisov 	if (!b) {
2312315bed43SNikolay Borisov 		ret = -EIO;
2313315bed43SNikolay Borisov 		goto done;
2314315bed43SNikolay Borisov 	}
23155d9e75c4SJan Schmidt 	level = btrfs_header_level(b);
23165d9e75c4SJan Schmidt 	p->locks[level] = BTRFS_READ_LOCK;
23175d9e75c4SJan Schmidt 
23185d9e75c4SJan Schmidt 	while (b) {
2319abe9339dSQu Wenruo 		int dec = 0;
2320abe9339dSQu Wenruo 
23215d9e75c4SJan Schmidt 		level = btrfs_header_level(b);
23225d9e75c4SJan Schmidt 		p->nodes[level] = b;
23235d9e75c4SJan Schmidt 
23245d9e75c4SJan Schmidt 		/*
23255d9e75c4SJan Schmidt 		 * we have a lock on b and as long as we aren't changing
23265d9e75c4SJan Schmidt 		 * the tree, there is no way to for the items in b to change.
23275d9e75c4SJan Schmidt 		 * It is safe to drop the lock on our parent before we
23285d9e75c4SJan Schmidt 		 * go through the expensive btree search on b.
23295d9e75c4SJan Schmidt 		 */
23305d9e75c4SJan Schmidt 		btrfs_unlock_up_safe(p, level + 1);
23315d9e75c4SJan Schmidt 
2332fdf8d595SAnand Jain 		ret = btrfs_bin_search(b, 0, key, &slot);
2333cbca7d59SFilipe Manana 		if (ret < 0)
2334cbca7d59SFilipe Manana 			goto done;
23355d9e75c4SJan Schmidt 
2336abe9339dSQu Wenruo 		if (level == 0) {
2337abe9339dSQu Wenruo 			p->slots[level] = slot;
2338abe9339dSQu Wenruo 			unlock_up(p, level, lowest_unlock, 0, NULL);
2339abe9339dSQu Wenruo 			goto done;
2340abe9339dSQu Wenruo 		}
2341abe9339dSQu Wenruo 
23425d9e75c4SJan Schmidt 		if (ret && slot > 0) {
23435d9e75c4SJan Schmidt 			dec = 1;
2344abe9339dSQu Wenruo 			slot--;
23455d9e75c4SJan Schmidt 		}
23465d9e75c4SJan Schmidt 		p->slots[level] = slot;
23475d9e75c4SJan Schmidt 		unlock_up(p, level, lowest_unlock, 0, NULL);
23485d9e75c4SJan Schmidt 
23495d9e75c4SJan Schmidt 		if (level == lowest_level) {
23505d9e75c4SJan Schmidt 			if (dec)
23515d9e75c4SJan Schmidt 				p->slots[level]++;
23525d9e75c4SJan Schmidt 			goto done;
23535d9e75c4SJan Schmidt 		}
23545d9e75c4SJan Schmidt 
2355abe9339dSQu Wenruo 		err = read_block_for_search(root, p, &b, level, slot, key);
23565d9e75c4SJan Schmidt 		if (err == -EAGAIN)
23575d9e75c4SJan Schmidt 			goto again;
23585d9e75c4SJan Schmidt 		if (err) {
23595d9e75c4SJan Schmidt 			ret = err;
23605d9e75c4SJan Schmidt 			goto done;
23615d9e75c4SJan Schmidt 		}
23625d9e75c4SJan Schmidt 
23635d9e75c4SJan Schmidt 		level = btrfs_header_level(b);
23645d9e75c4SJan Schmidt 		btrfs_tree_read_lock(b);
2365f3a84ccdSFilipe Manana 		b = btrfs_tree_mod_log_rewind(fs_info, p, b, time_seq);
2366db7f3436SJosef Bacik 		if (!b) {
2367db7f3436SJosef Bacik 			ret = -ENOMEM;
2368db7f3436SJosef Bacik 			goto done;
2369db7f3436SJosef Bacik 		}
23705d9e75c4SJan Schmidt 		p->locks[level] = BTRFS_READ_LOCK;
23715d9e75c4SJan Schmidt 		p->nodes[level] = b;
23725d9e75c4SJan Schmidt 	}
23735d9e75c4SJan Schmidt 	ret = 1;
23745d9e75c4SJan Schmidt done:
23755d9e75c4SJan Schmidt 	if (ret < 0)
23765d9e75c4SJan Schmidt 		btrfs_release_path(p);
23775d9e75c4SJan Schmidt 
23785d9e75c4SJan Schmidt 	return ret;
23795d9e75c4SJan Schmidt }
23805d9e75c4SJan Schmidt 
23815d9e75c4SJan Schmidt /*
23822f38b3e1SArne Jansen  * helper to use instead of search slot if no exact match is needed but
23832f38b3e1SArne Jansen  * instead the next or previous item should be returned.
23842f38b3e1SArne Jansen  * When find_higher is true, the next higher item is returned, the next lower
23852f38b3e1SArne Jansen  * otherwise.
23862f38b3e1SArne Jansen  * When return_any and find_higher are both true, and no higher item is found,
23872f38b3e1SArne Jansen  * return the next lower instead.
23882f38b3e1SArne Jansen  * When return_any is true and find_higher is false, and no lower item is found,
23892f38b3e1SArne Jansen  * return the next higher instead.
23902f38b3e1SArne Jansen  * It returns 0 if any item is found, 1 if none is found (tree empty), and
23912f38b3e1SArne Jansen  * < 0 on error
23922f38b3e1SArne Jansen  */
23932f38b3e1SArne Jansen int btrfs_search_slot_for_read(struct btrfs_root *root,
2394310712b2SOmar Sandoval 			       const struct btrfs_key *key,
2395310712b2SOmar Sandoval 			       struct btrfs_path *p, int find_higher,
2396310712b2SOmar Sandoval 			       int return_any)
23972f38b3e1SArne Jansen {
23982f38b3e1SArne Jansen 	int ret;
23992f38b3e1SArne Jansen 	struct extent_buffer *leaf;
24002f38b3e1SArne Jansen 
24012f38b3e1SArne Jansen again:
24022f38b3e1SArne Jansen 	ret = btrfs_search_slot(NULL, root, key, p, 0, 0);
24032f38b3e1SArne Jansen 	if (ret <= 0)
24042f38b3e1SArne Jansen 		return ret;
24052f38b3e1SArne Jansen 	/*
24062f38b3e1SArne Jansen 	 * a return value of 1 means the path is at the position where the
24072f38b3e1SArne Jansen 	 * item should be inserted. Normally this is the next bigger item,
24082f38b3e1SArne Jansen 	 * but in case the previous item is the last in a leaf, path points
24092f38b3e1SArne Jansen 	 * to the first free slot in the previous leaf, i.e. at an invalid
24102f38b3e1SArne Jansen 	 * item.
24112f38b3e1SArne Jansen 	 */
24122f38b3e1SArne Jansen 	leaf = p->nodes[0];
24132f38b3e1SArne Jansen 
24142f38b3e1SArne Jansen 	if (find_higher) {
24152f38b3e1SArne Jansen 		if (p->slots[0] >= btrfs_header_nritems(leaf)) {
24162f38b3e1SArne Jansen 			ret = btrfs_next_leaf(root, p);
24172f38b3e1SArne Jansen 			if (ret <= 0)
24182f38b3e1SArne Jansen 				return ret;
24192f38b3e1SArne Jansen 			if (!return_any)
24202f38b3e1SArne Jansen 				return 1;
24212f38b3e1SArne Jansen 			/*
24222f38b3e1SArne Jansen 			 * no higher item found, return the next
24232f38b3e1SArne Jansen 			 * lower instead
24242f38b3e1SArne Jansen 			 */
24252f38b3e1SArne Jansen 			return_any = 0;
24262f38b3e1SArne Jansen 			find_higher = 0;
24272f38b3e1SArne Jansen 			btrfs_release_path(p);
24282f38b3e1SArne Jansen 			goto again;
24292f38b3e1SArne Jansen 		}
24302f38b3e1SArne Jansen 	} else {
24312f38b3e1SArne Jansen 		if (p->slots[0] == 0) {
24322f38b3e1SArne Jansen 			ret = btrfs_prev_leaf(root, p);
2433e6793769SArne Jansen 			if (ret < 0)
24342f38b3e1SArne Jansen 				return ret;
2435e6793769SArne Jansen 			if (!ret) {
243623c6bf6aSFilipe David Borba Manana 				leaf = p->nodes[0];
243723c6bf6aSFilipe David Borba Manana 				if (p->slots[0] == btrfs_header_nritems(leaf))
243823c6bf6aSFilipe David Borba Manana 					p->slots[0]--;
2439e6793769SArne Jansen 				return 0;
2440e6793769SArne Jansen 			}
24412f38b3e1SArne Jansen 			if (!return_any)
24422f38b3e1SArne Jansen 				return 1;
24432f38b3e1SArne Jansen 			/*
24442f38b3e1SArne Jansen 			 * no lower item found, return the next
24452f38b3e1SArne Jansen 			 * higher instead
24462f38b3e1SArne Jansen 			 */
24472f38b3e1SArne Jansen 			return_any = 0;
24482f38b3e1SArne Jansen 			find_higher = 1;
24492f38b3e1SArne Jansen 			btrfs_release_path(p);
24502f38b3e1SArne Jansen 			goto again;
2451e6793769SArne Jansen 		} else {
24522f38b3e1SArne Jansen 			--p->slots[0];
24532f38b3e1SArne Jansen 		}
24542f38b3e1SArne Jansen 	}
24552f38b3e1SArne Jansen 	return 0;
24562f38b3e1SArne Jansen }
24572f38b3e1SArne Jansen 
24582f38b3e1SArne Jansen /*
24590ff40a91SMarcos Paulo de Souza  * Execute search and call btrfs_previous_item to traverse backwards if the item
24600ff40a91SMarcos Paulo de Souza  * was not found.
24610ff40a91SMarcos Paulo de Souza  *
24620ff40a91SMarcos Paulo de Souza  * Return 0 if found, 1 if not found and < 0 if error.
24630ff40a91SMarcos Paulo de Souza  */
24640ff40a91SMarcos Paulo de Souza int btrfs_search_backwards(struct btrfs_root *root, struct btrfs_key *key,
24650ff40a91SMarcos Paulo de Souza 			   struct btrfs_path *path)
24660ff40a91SMarcos Paulo de Souza {
24670ff40a91SMarcos Paulo de Souza 	int ret;
24680ff40a91SMarcos Paulo de Souza 
24690ff40a91SMarcos Paulo de Souza 	ret = btrfs_search_slot(NULL, root, key, path, 0, 0);
24700ff40a91SMarcos Paulo de Souza 	if (ret > 0)
24710ff40a91SMarcos Paulo de Souza 		ret = btrfs_previous_item(root, path, key->objectid, key->type);
24720ff40a91SMarcos Paulo de Souza 
24730ff40a91SMarcos Paulo de Souza 	if (ret == 0)
24740ff40a91SMarcos Paulo de Souza 		btrfs_item_key_to_cpu(path->nodes[0], key, path->slots[0]);
24750ff40a91SMarcos Paulo de Souza 
24760ff40a91SMarcos Paulo de Souza 	return ret;
24770ff40a91SMarcos Paulo de Souza }
24780ff40a91SMarcos Paulo de Souza 
247943dd529aSDavid Sterba /*
248062142be3SGabriel Niebler  * Search for a valid slot for the given path.
248162142be3SGabriel Niebler  *
248262142be3SGabriel Niebler  * @root:	The root node of the tree.
248362142be3SGabriel Niebler  * @key:	Will contain a valid item if found.
248462142be3SGabriel Niebler  * @path:	The starting point to validate the slot.
248562142be3SGabriel Niebler  *
248662142be3SGabriel Niebler  * Return: 0  if the item is valid
248762142be3SGabriel Niebler  *         1  if not found
248862142be3SGabriel Niebler  *         <0 if error.
248962142be3SGabriel Niebler  */
249062142be3SGabriel Niebler int btrfs_get_next_valid_item(struct btrfs_root *root, struct btrfs_key *key,
249162142be3SGabriel Niebler 			      struct btrfs_path *path)
249262142be3SGabriel Niebler {
2493524f14bbSFilipe Manana 	if (path->slots[0] >= btrfs_header_nritems(path->nodes[0])) {
249462142be3SGabriel Niebler 		int ret;
249562142be3SGabriel Niebler 
249662142be3SGabriel Niebler 		ret = btrfs_next_leaf(root, path);
249762142be3SGabriel Niebler 		if (ret)
249862142be3SGabriel Niebler 			return ret;
249962142be3SGabriel Niebler 	}
2500524f14bbSFilipe Manana 
2501524f14bbSFilipe Manana 	btrfs_item_key_to_cpu(path->nodes[0], key, path->slots[0]);
250262142be3SGabriel Niebler 	return 0;
250362142be3SGabriel Niebler }
250462142be3SGabriel Niebler 
25050ff40a91SMarcos Paulo de Souza /*
250674123bd7SChris Mason  * adjust the pointers going up the tree, starting at level
250774123bd7SChris Mason  * making sure the right key of each node is points to 'key'.
250874123bd7SChris Mason  * This is used after shifting pointers to the left, so it stops
250974123bd7SChris Mason  * fixing up pointers when a given leaf/node is not in slot 0 of the
251074123bd7SChris Mason  * higher levels
2511aa5d6bedSChris Mason  *
251274123bd7SChris Mason  */
2513b167fa91SNikolay Borisov static void fixup_low_keys(struct btrfs_path *path,
25145f39d397SChris Mason 			   struct btrfs_disk_key *key, int level)
2515be0e5c09SChris Mason {
2516be0e5c09SChris Mason 	int i;
25175f39d397SChris Mason 	struct extent_buffer *t;
25180e82bcfeSDavid Sterba 	int ret;
25195f39d397SChris Mason 
2520234b63a0SChris Mason 	for (i = level; i < BTRFS_MAX_LEVEL; i++) {
2521be0e5c09SChris Mason 		int tslot = path->slots[i];
25220e82bcfeSDavid Sterba 
2523eb60ceacSChris Mason 		if (!path->nodes[i])
2524be0e5c09SChris Mason 			break;
25255f39d397SChris Mason 		t = path->nodes[i];
2526f3a84ccdSFilipe Manana 		ret = btrfs_tree_mod_log_insert_key(t, tslot,
252733cff222SFilipe Manana 						    BTRFS_MOD_LOG_KEY_REPLACE);
25280e82bcfeSDavid Sterba 		BUG_ON(ret < 0);
25295f39d397SChris Mason 		btrfs_set_node_key(t, key, tslot);
2530d6025579SChris Mason 		btrfs_mark_buffer_dirty(path->nodes[i]);
2531be0e5c09SChris Mason 		if (tslot != 0)
2532be0e5c09SChris Mason 			break;
2533be0e5c09SChris Mason 	}
2534be0e5c09SChris Mason }
2535be0e5c09SChris Mason 
253674123bd7SChris Mason /*
253731840ae1SZheng Yan  * update item key.
253831840ae1SZheng Yan  *
253931840ae1SZheng Yan  * This function isn't completely safe. It's the caller's responsibility
254031840ae1SZheng Yan  * that the new key won't break the order
254131840ae1SZheng Yan  */
2542b7a0365eSDaniel Dressler void btrfs_set_item_key_safe(struct btrfs_fs_info *fs_info,
2543b7a0365eSDaniel Dressler 			     struct btrfs_path *path,
2544310712b2SOmar Sandoval 			     const struct btrfs_key *new_key)
254531840ae1SZheng Yan {
254631840ae1SZheng Yan 	struct btrfs_disk_key disk_key;
254731840ae1SZheng Yan 	struct extent_buffer *eb;
254831840ae1SZheng Yan 	int slot;
254931840ae1SZheng Yan 
255031840ae1SZheng Yan 	eb = path->nodes[0];
255131840ae1SZheng Yan 	slot = path->slots[0];
255231840ae1SZheng Yan 	if (slot > 0) {
255331840ae1SZheng Yan 		btrfs_item_key(eb, &disk_key, slot - 1);
25547c15d410SQu Wenruo 		if (unlikely(comp_keys(&disk_key, new_key) >= 0)) {
25557c15d410SQu Wenruo 			btrfs_crit(fs_info,
25567c15d410SQu Wenruo 		"slot %u key (%llu %u %llu) new key (%llu %u %llu)",
25577c15d410SQu Wenruo 				   slot, btrfs_disk_key_objectid(&disk_key),
25587c15d410SQu Wenruo 				   btrfs_disk_key_type(&disk_key),
25597c15d410SQu Wenruo 				   btrfs_disk_key_offset(&disk_key),
25607c15d410SQu Wenruo 				   new_key->objectid, new_key->type,
25617c15d410SQu Wenruo 				   new_key->offset);
25627c15d410SQu Wenruo 			btrfs_print_leaf(eb);
25637c15d410SQu Wenruo 			BUG();
25647c15d410SQu Wenruo 		}
256531840ae1SZheng Yan 	}
256631840ae1SZheng Yan 	if (slot < btrfs_header_nritems(eb) - 1) {
256731840ae1SZheng Yan 		btrfs_item_key(eb, &disk_key, slot + 1);
25687c15d410SQu Wenruo 		if (unlikely(comp_keys(&disk_key, new_key) <= 0)) {
25697c15d410SQu Wenruo 			btrfs_crit(fs_info,
25707c15d410SQu Wenruo 		"slot %u key (%llu %u %llu) new key (%llu %u %llu)",
25717c15d410SQu Wenruo 				   slot, btrfs_disk_key_objectid(&disk_key),
25727c15d410SQu Wenruo 				   btrfs_disk_key_type(&disk_key),
25737c15d410SQu Wenruo 				   btrfs_disk_key_offset(&disk_key),
25747c15d410SQu Wenruo 				   new_key->objectid, new_key->type,
25757c15d410SQu Wenruo 				   new_key->offset);
25767c15d410SQu Wenruo 			btrfs_print_leaf(eb);
25777c15d410SQu Wenruo 			BUG();
25787c15d410SQu Wenruo 		}
257931840ae1SZheng Yan 	}
258031840ae1SZheng Yan 
258131840ae1SZheng Yan 	btrfs_cpu_key_to_disk(&disk_key, new_key);
258231840ae1SZheng Yan 	btrfs_set_item_key(eb, &disk_key, slot);
258331840ae1SZheng Yan 	btrfs_mark_buffer_dirty(eb);
258431840ae1SZheng Yan 	if (slot == 0)
2585b167fa91SNikolay Borisov 		fixup_low_keys(path, &disk_key, 1);
258631840ae1SZheng Yan }
258731840ae1SZheng Yan 
258831840ae1SZheng Yan /*
2589d16c702fSQu Wenruo  * Check key order of two sibling extent buffers.
2590d16c702fSQu Wenruo  *
2591d16c702fSQu Wenruo  * Return true if something is wrong.
2592d16c702fSQu Wenruo  * Return false if everything is fine.
2593d16c702fSQu Wenruo  *
2594d16c702fSQu Wenruo  * Tree-checker only works inside one tree block, thus the following
2595d16c702fSQu Wenruo  * corruption can not be detected by tree-checker:
2596d16c702fSQu Wenruo  *
2597d16c702fSQu Wenruo  * Leaf @left			| Leaf @right
2598d16c702fSQu Wenruo  * --------------------------------------------------------------
2599d16c702fSQu Wenruo  * | 1 | 2 | 3 | 4 | 5 | f6 |   | 7 | 8 |
2600d16c702fSQu Wenruo  *
2601d16c702fSQu Wenruo  * Key f6 in leaf @left itself is valid, but not valid when the next
2602d16c702fSQu Wenruo  * key in leaf @right is 7.
2603d16c702fSQu Wenruo  * This can only be checked at tree block merge time.
2604d16c702fSQu Wenruo  * And since tree checker has ensured all key order in each tree block
2605d16c702fSQu Wenruo  * is correct, we only need to bother the last key of @left and the first
2606d16c702fSQu Wenruo  * key of @right.
2607d16c702fSQu Wenruo  */
2608d16c702fSQu Wenruo static bool check_sibling_keys(struct extent_buffer *left,
2609d16c702fSQu Wenruo 			       struct extent_buffer *right)
2610d16c702fSQu Wenruo {
2611d16c702fSQu Wenruo 	struct btrfs_key left_last;
2612d16c702fSQu Wenruo 	struct btrfs_key right_first;
2613d16c702fSQu Wenruo 	int level = btrfs_header_level(left);
2614d16c702fSQu Wenruo 	int nr_left = btrfs_header_nritems(left);
2615d16c702fSQu Wenruo 	int nr_right = btrfs_header_nritems(right);
2616d16c702fSQu Wenruo 
2617d16c702fSQu Wenruo 	/* No key to check in one of the tree blocks */
2618d16c702fSQu Wenruo 	if (!nr_left || !nr_right)
2619d16c702fSQu Wenruo 		return false;
2620d16c702fSQu Wenruo 
2621d16c702fSQu Wenruo 	if (level) {
2622d16c702fSQu Wenruo 		btrfs_node_key_to_cpu(left, &left_last, nr_left - 1);
2623d16c702fSQu Wenruo 		btrfs_node_key_to_cpu(right, &right_first, 0);
2624d16c702fSQu Wenruo 	} else {
2625d16c702fSQu Wenruo 		btrfs_item_key_to_cpu(left, &left_last, nr_left - 1);
2626d16c702fSQu Wenruo 		btrfs_item_key_to_cpu(right, &right_first, 0);
2627d16c702fSQu Wenruo 	}
2628d16c702fSQu Wenruo 
2629d16c702fSQu Wenruo 	if (btrfs_comp_cpu_keys(&left_last, &right_first) >= 0) {
2630*a2cea677SFilipe Manana 		btrfs_crit(left->fs_info, "left extent buffer:");
2631*a2cea677SFilipe Manana 		btrfs_print_tree(left, false);
2632*a2cea677SFilipe Manana 		btrfs_crit(left->fs_info, "right extent buffer:");
2633*a2cea677SFilipe Manana 		btrfs_print_tree(right, false);
2634d16c702fSQu Wenruo 		btrfs_crit(left->fs_info,
2635d16c702fSQu Wenruo "bad key order, sibling blocks, left last (%llu %u %llu) right first (%llu %u %llu)",
2636d16c702fSQu Wenruo 			   left_last.objectid, left_last.type,
2637d16c702fSQu Wenruo 			   left_last.offset, right_first.objectid,
2638d16c702fSQu Wenruo 			   right_first.type, right_first.offset);
2639d16c702fSQu Wenruo 		return true;
2640d16c702fSQu Wenruo 	}
2641d16c702fSQu Wenruo 	return false;
2642d16c702fSQu Wenruo }
2643d16c702fSQu Wenruo 
2644d16c702fSQu Wenruo /*
264574123bd7SChris Mason  * try to push data from one node into the next node left in the
264679f95c82SChris Mason  * tree.
2647aa5d6bedSChris Mason  *
2648aa5d6bedSChris Mason  * returns 0 if some ptrs were pushed left, < 0 if there was some horrible
2649aa5d6bedSChris Mason  * error, and > 0 if there was no room in the left hand block.
265074123bd7SChris Mason  */
265198ed5174SChris Mason static int push_node_left(struct btrfs_trans_handle *trans,
26522ff7e61eSJeff Mahoney 			  struct extent_buffer *dst,
2653971a1f66SChris Mason 			  struct extent_buffer *src, int empty)
2654be0e5c09SChris Mason {
2655d30a668fSDavid Sterba 	struct btrfs_fs_info *fs_info = trans->fs_info;
2656be0e5c09SChris Mason 	int push_items = 0;
2657bb803951SChris Mason 	int src_nritems;
2658bb803951SChris Mason 	int dst_nritems;
2659aa5d6bedSChris Mason 	int ret = 0;
2660be0e5c09SChris Mason 
26615f39d397SChris Mason 	src_nritems = btrfs_header_nritems(src);
26625f39d397SChris Mason 	dst_nritems = btrfs_header_nritems(dst);
26630b246afaSJeff Mahoney 	push_items = BTRFS_NODEPTRS_PER_BLOCK(fs_info) - dst_nritems;
26647bb86316SChris Mason 	WARN_ON(btrfs_header_generation(src) != trans->transid);
26657bb86316SChris Mason 	WARN_ON(btrfs_header_generation(dst) != trans->transid);
266654aa1f4dSChris Mason 
2667bce4eae9SChris Mason 	if (!empty && src_nritems <= 8)
2668971a1f66SChris Mason 		return 1;
2669971a1f66SChris Mason 
2670d397712bSChris Mason 	if (push_items <= 0)
2671be0e5c09SChris Mason 		return 1;
2672be0e5c09SChris Mason 
2673bce4eae9SChris Mason 	if (empty) {
2674971a1f66SChris Mason 		push_items = min(src_nritems, push_items);
2675bce4eae9SChris Mason 		if (push_items < src_nritems) {
2676bce4eae9SChris Mason 			/* leave at least 8 pointers in the node if
2677bce4eae9SChris Mason 			 * we aren't going to empty it
2678bce4eae9SChris Mason 			 */
2679bce4eae9SChris Mason 			if (src_nritems - push_items < 8) {
2680bce4eae9SChris Mason 				if (push_items <= 8)
2681bce4eae9SChris Mason 					return 1;
2682bce4eae9SChris Mason 				push_items -= 8;
2683bce4eae9SChris Mason 			}
2684bce4eae9SChris Mason 		}
2685bce4eae9SChris Mason 	} else
2686bce4eae9SChris Mason 		push_items = min(src_nritems - 8, push_items);
268779f95c82SChris Mason 
2688d16c702fSQu Wenruo 	/* dst is the left eb, src is the middle eb */
2689d16c702fSQu Wenruo 	if (check_sibling_keys(dst, src)) {
2690d16c702fSQu Wenruo 		ret = -EUCLEAN;
2691d16c702fSQu Wenruo 		btrfs_abort_transaction(trans, ret);
2692d16c702fSQu Wenruo 		return ret;
2693d16c702fSQu Wenruo 	}
2694f3a84ccdSFilipe Manana 	ret = btrfs_tree_mod_log_eb_copy(dst, src, dst_nritems, 0, push_items);
26955de865eeSFilipe David Borba Manana 	if (ret) {
269666642832SJeff Mahoney 		btrfs_abort_transaction(trans, ret);
26975de865eeSFilipe David Borba Manana 		return ret;
26985de865eeSFilipe David Borba Manana 	}
26995f39d397SChris Mason 	copy_extent_buffer(dst, src,
2700e23efd8eSJosef Bacik 			   btrfs_node_key_ptr_offset(dst, dst_nritems),
2701e23efd8eSJosef Bacik 			   btrfs_node_key_ptr_offset(src, 0),
2702123abc88SChris Mason 			   push_items * sizeof(struct btrfs_key_ptr));
27035f39d397SChris Mason 
2704bb803951SChris Mason 	if (push_items < src_nritems) {
270557911b8bSJan Schmidt 		/*
2706f3a84ccdSFilipe Manana 		 * Don't call btrfs_tree_mod_log_insert_move() here, key removal
2707f3a84ccdSFilipe Manana 		 * was already fully logged by btrfs_tree_mod_log_eb_copy() above.
270857911b8bSJan Schmidt 		 */
2709e23efd8eSJosef Bacik 		memmove_extent_buffer(src, btrfs_node_key_ptr_offset(src, 0),
2710e23efd8eSJosef Bacik 				      btrfs_node_key_ptr_offset(src, push_items),
2711e2fa7227SChris Mason 				      (src_nritems - push_items) *
2712123abc88SChris Mason 				      sizeof(struct btrfs_key_ptr));
2713bb803951SChris Mason 	}
27145f39d397SChris Mason 	btrfs_set_header_nritems(src, src_nritems - push_items);
27155f39d397SChris Mason 	btrfs_set_header_nritems(dst, dst_nritems + push_items);
27165f39d397SChris Mason 	btrfs_mark_buffer_dirty(src);
27175f39d397SChris Mason 	btrfs_mark_buffer_dirty(dst);
271831840ae1SZheng Yan 
2719bb803951SChris Mason 	return ret;
2720be0e5c09SChris Mason }
2721be0e5c09SChris Mason 
272297571fd0SChris Mason /*
272379f95c82SChris Mason  * try to push data from one node into the next node right in the
272479f95c82SChris Mason  * tree.
272579f95c82SChris Mason  *
272679f95c82SChris Mason  * returns 0 if some ptrs were pushed, < 0 if there was some horrible
272779f95c82SChris Mason  * error, and > 0 if there was no room in the right hand block.
272879f95c82SChris Mason  *
272979f95c82SChris Mason  * this will  only push up to 1/2 the contents of the left node over
273079f95c82SChris Mason  */
27315f39d397SChris Mason static int balance_node_right(struct btrfs_trans_handle *trans,
27325f39d397SChris Mason 			      struct extent_buffer *dst,
27335f39d397SChris Mason 			      struct extent_buffer *src)
273479f95c82SChris Mason {
273555d32ed8SDavid Sterba 	struct btrfs_fs_info *fs_info = trans->fs_info;
273679f95c82SChris Mason 	int push_items = 0;
273779f95c82SChris Mason 	int max_push;
273879f95c82SChris Mason 	int src_nritems;
273979f95c82SChris Mason 	int dst_nritems;
274079f95c82SChris Mason 	int ret = 0;
274179f95c82SChris Mason 
27427bb86316SChris Mason 	WARN_ON(btrfs_header_generation(src) != trans->transid);
27437bb86316SChris Mason 	WARN_ON(btrfs_header_generation(dst) != trans->transid);
27447bb86316SChris Mason 
27455f39d397SChris Mason 	src_nritems = btrfs_header_nritems(src);
27465f39d397SChris Mason 	dst_nritems = btrfs_header_nritems(dst);
27470b246afaSJeff Mahoney 	push_items = BTRFS_NODEPTRS_PER_BLOCK(fs_info) - dst_nritems;
2748d397712bSChris Mason 	if (push_items <= 0)
274979f95c82SChris Mason 		return 1;
2750bce4eae9SChris Mason 
2751d397712bSChris Mason 	if (src_nritems < 4)
2752bce4eae9SChris Mason 		return 1;
275379f95c82SChris Mason 
275479f95c82SChris Mason 	max_push = src_nritems / 2 + 1;
275579f95c82SChris Mason 	/* don't try to empty the node */
2756d397712bSChris Mason 	if (max_push >= src_nritems)
275779f95c82SChris Mason 		return 1;
2758252c38f0SYan 
275979f95c82SChris Mason 	if (max_push < push_items)
276079f95c82SChris Mason 		push_items = max_push;
276179f95c82SChris Mason 
2762d16c702fSQu Wenruo 	/* dst is the right eb, src is the middle eb */
2763d16c702fSQu Wenruo 	if (check_sibling_keys(src, dst)) {
2764d16c702fSQu Wenruo 		ret = -EUCLEAN;
2765d16c702fSQu Wenruo 		btrfs_abort_transaction(trans, ret);
2766d16c702fSQu Wenruo 		return ret;
2767d16c702fSQu Wenruo 	}
2768f3a84ccdSFilipe Manana 	ret = btrfs_tree_mod_log_insert_move(dst, push_items, 0, dst_nritems);
2769bf1d3425SDavid Sterba 	BUG_ON(ret < 0);
2770e23efd8eSJosef Bacik 	memmove_extent_buffer(dst, btrfs_node_key_ptr_offset(dst, push_items),
2771e23efd8eSJosef Bacik 				      btrfs_node_key_ptr_offset(dst, 0),
27725f39d397SChris Mason 				      (dst_nritems) *
27735f39d397SChris Mason 				      sizeof(struct btrfs_key_ptr));
2774d6025579SChris Mason 
2775f3a84ccdSFilipe Manana 	ret = btrfs_tree_mod_log_eb_copy(dst, src, 0, src_nritems - push_items,
2776ed874f0dSDavid Sterba 					 push_items);
27775de865eeSFilipe David Borba Manana 	if (ret) {
277866642832SJeff Mahoney 		btrfs_abort_transaction(trans, ret);
27795de865eeSFilipe David Borba Manana 		return ret;
27805de865eeSFilipe David Borba Manana 	}
27815f39d397SChris Mason 	copy_extent_buffer(dst, src,
2782e23efd8eSJosef Bacik 			   btrfs_node_key_ptr_offset(dst, 0),
2783e23efd8eSJosef Bacik 			   btrfs_node_key_ptr_offset(src, src_nritems - push_items),
2784123abc88SChris Mason 			   push_items * sizeof(struct btrfs_key_ptr));
278579f95c82SChris Mason 
27865f39d397SChris Mason 	btrfs_set_header_nritems(src, src_nritems - push_items);
27875f39d397SChris Mason 	btrfs_set_header_nritems(dst, dst_nritems + push_items);
278879f95c82SChris Mason 
27895f39d397SChris Mason 	btrfs_mark_buffer_dirty(src);
27905f39d397SChris Mason 	btrfs_mark_buffer_dirty(dst);
279131840ae1SZheng Yan 
279279f95c82SChris Mason 	return ret;
279379f95c82SChris Mason }
279479f95c82SChris Mason 
279579f95c82SChris Mason /*
279697571fd0SChris Mason  * helper function to insert a new root level in the tree.
279797571fd0SChris Mason  * A new node is allocated, and a single item is inserted to
279897571fd0SChris Mason  * point to the existing root
2799aa5d6bedSChris Mason  *
2800aa5d6bedSChris Mason  * returns zero on success or < 0 on failure.
280197571fd0SChris Mason  */
2802d397712bSChris Mason static noinline int insert_new_root(struct btrfs_trans_handle *trans,
28035f39d397SChris Mason 			   struct btrfs_root *root,
2804fdd99c72SLiu Bo 			   struct btrfs_path *path, int level)
280574123bd7SChris Mason {
28060b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
28077bb86316SChris Mason 	u64 lower_gen;
28085f39d397SChris Mason 	struct extent_buffer *lower;
28095f39d397SChris Mason 	struct extent_buffer *c;
2810925baeddSChris Mason 	struct extent_buffer *old;
28115f39d397SChris Mason 	struct btrfs_disk_key lower_key;
2812d9d19a01SDavid Sterba 	int ret;
28135c680ed6SChris Mason 
28145c680ed6SChris Mason 	BUG_ON(path->nodes[level]);
28155c680ed6SChris Mason 	BUG_ON(path->nodes[level-1] != root->node);
28165c680ed6SChris Mason 
28177bb86316SChris Mason 	lower = path->nodes[level-1];
28187bb86316SChris Mason 	if (level == 1)
28197bb86316SChris Mason 		btrfs_item_key(lower, &lower_key, 0);
28207bb86316SChris Mason 	else
28217bb86316SChris Mason 		btrfs_node_key(lower, &lower_key, 0);
28227bb86316SChris Mason 
282379bd3712SFilipe Manana 	c = btrfs_alloc_tree_block(trans, root, 0, root->root_key.objectid,
282479bd3712SFilipe Manana 				   &lower_key, level, root->node->start, 0,
2825cf6f34aaSJosef Bacik 				   BTRFS_NESTING_NEW_ROOT);
28265f39d397SChris Mason 	if (IS_ERR(c))
28275f39d397SChris Mason 		return PTR_ERR(c);
2828925baeddSChris Mason 
28290b246afaSJeff Mahoney 	root_add_used(root, fs_info->nodesize);
2830f0486c68SYan, Zheng 
28315f39d397SChris Mason 	btrfs_set_header_nritems(c, 1);
28325f39d397SChris Mason 	btrfs_set_node_key(c, &lower_key, 0);
2833db94535dSChris Mason 	btrfs_set_node_blockptr(c, 0, lower->start);
28347bb86316SChris Mason 	lower_gen = btrfs_header_generation(lower);
283531840ae1SZheng Yan 	WARN_ON(lower_gen != trans->transid);
28367bb86316SChris Mason 
28377bb86316SChris Mason 	btrfs_set_node_ptr_generation(c, 0, lower_gen);
28385f39d397SChris Mason 
28395f39d397SChris Mason 	btrfs_mark_buffer_dirty(c);
2840d5719762SChris Mason 
2841925baeddSChris Mason 	old = root->node;
2842406808abSFilipe Manana 	ret = btrfs_tree_mod_log_insert_root(root->node, c, false);
2843d9d19a01SDavid Sterba 	BUG_ON(ret < 0);
2844240f62c8SChris Mason 	rcu_assign_pointer(root->node, c);
2845925baeddSChris Mason 
2846925baeddSChris Mason 	/* the super has an extra ref to root->node */
2847925baeddSChris Mason 	free_extent_buffer(old);
2848925baeddSChris Mason 
28490b86a832SChris Mason 	add_root_to_dirty_list(root);
285067439dadSDavid Sterba 	atomic_inc(&c->refs);
28515f39d397SChris Mason 	path->nodes[level] = c;
2852ac5887c8SJosef Bacik 	path->locks[level] = BTRFS_WRITE_LOCK;
285374123bd7SChris Mason 	path->slots[level] = 0;
285474123bd7SChris Mason 	return 0;
285574123bd7SChris Mason }
28565c680ed6SChris Mason 
28575c680ed6SChris Mason /*
28585c680ed6SChris Mason  * worker function to insert a single pointer in a node.
28595c680ed6SChris Mason  * the node should have enough room for the pointer already
286097571fd0SChris Mason  *
28615c680ed6SChris Mason  * slot and level indicate where you want the key to go, and
28625c680ed6SChris Mason  * blocknr is the block the key points to.
28635c680ed6SChris Mason  */
2864143bede5SJeff Mahoney static void insert_ptr(struct btrfs_trans_handle *trans,
28656ad3cf6dSDavid Sterba 		       struct btrfs_path *path,
2866143bede5SJeff Mahoney 		       struct btrfs_disk_key *key, u64 bytenr,
2867c3e06965SJan Schmidt 		       int slot, int level)
28685c680ed6SChris Mason {
28695f39d397SChris Mason 	struct extent_buffer *lower;
28705c680ed6SChris Mason 	int nritems;
2871f3ea38daSJan Schmidt 	int ret;
28725c680ed6SChris Mason 
28735c680ed6SChris Mason 	BUG_ON(!path->nodes[level]);
287449d0c642SFilipe Manana 	btrfs_assert_tree_write_locked(path->nodes[level]);
28755f39d397SChris Mason 	lower = path->nodes[level];
28765f39d397SChris Mason 	nritems = btrfs_header_nritems(lower);
2877c293498bSStoyan Gaydarov 	BUG_ON(slot > nritems);
28786ad3cf6dSDavid Sterba 	BUG_ON(nritems == BTRFS_NODEPTRS_PER_BLOCK(trans->fs_info));
287974123bd7SChris Mason 	if (slot != nritems) {
2880bf1d3425SDavid Sterba 		if (level) {
2881f3a84ccdSFilipe Manana 			ret = btrfs_tree_mod_log_insert_move(lower, slot + 1,
2882f3a84ccdSFilipe Manana 					slot, nritems - slot);
2883bf1d3425SDavid Sterba 			BUG_ON(ret < 0);
2884bf1d3425SDavid Sterba 		}
28855f39d397SChris Mason 		memmove_extent_buffer(lower,
2886e23efd8eSJosef Bacik 			      btrfs_node_key_ptr_offset(lower, slot + 1),
2887e23efd8eSJosef Bacik 			      btrfs_node_key_ptr_offset(lower, slot),
2888123abc88SChris Mason 			      (nritems - slot) * sizeof(struct btrfs_key_ptr));
288974123bd7SChris Mason 	}
2890c3e06965SJan Schmidt 	if (level) {
2891f3a84ccdSFilipe Manana 		ret = btrfs_tree_mod_log_insert_key(lower, slot,
289233cff222SFilipe Manana 						    BTRFS_MOD_LOG_KEY_ADD);
2893f3ea38daSJan Schmidt 		BUG_ON(ret < 0);
2894f3ea38daSJan Schmidt 	}
28955f39d397SChris Mason 	btrfs_set_node_key(lower, key, slot);
2896db94535dSChris Mason 	btrfs_set_node_blockptr(lower, slot, bytenr);
289774493f7aSChris Mason 	WARN_ON(trans->transid == 0);
289874493f7aSChris Mason 	btrfs_set_node_ptr_generation(lower, slot, trans->transid);
28995f39d397SChris Mason 	btrfs_set_header_nritems(lower, nritems + 1);
29005f39d397SChris Mason 	btrfs_mark_buffer_dirty(lower);
290174123bd7SChris Mason }
290274123bd7SChris Mason 
290397571fd0SChris Mason /*
290497571fd0SChris Mason  * split the node at the specified level in path in two.
290597571fd0SChris Mason  * The path is corrected to point to the appropriate node after the split
290697571fd0SChris Mason  *
290797571fd0SChris Mason  * Before splitting this tries to make some room in the node by pushing
290897571fd0SChris Mason  * left and right, if either one works, it returns right away.
2909aa5d6bedSChris Mason  *
2910aa5d6bedSChris Mason  * returns 0 on success and < 0 on failure
291197571fd0SChris Mason  */
2912e02119d5SChris Mason static noinline int split_node(struct btrfs_trans_handle *trans,
2913e02119d5SChris Mason 			       struct btrfs_root *root,
2914e02119d5SChris Mason 			       struct btrfs_path *path, int level)
2915be0e5c09SChris Mason {
29160b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
29175f39d397SChris Mason 	struct extent_buffer *c;
29185f39d397SChris Mason 	struct extent_buffer *split;
29195f39d397SChris Mason 	struct btrfs_disk_key disk_key;
2920be0e5c09SChris Mason 	int mid;
29215c680ed6SChris Mason 	int ret;
29227518a238SChris Mason 	u32 c_nritems;
2923be0e5c09SChris Mason 
29245f39d397SChris Mason 	c = path->nodes[level];
29257bb86316SChris Mason 	WARN_ON(btrfs_header_generation(c) != trans->transid);
29265f39d397SChris Mason 	if (c == root->node) {
2927d9abbf1cSJan Schmidt 		/*
292890f8d62eSJan Schmidt 		 * trying to split the root, lets make a new one
292990f8d62eSJan Schmidt 		 *
2930fdd99c72SLiu Bo 		 * tree mod log: We don't log_removal old root in
293190f8d62eSJan Schmidt 		 * insert_new_root, because that root buffer will be kept as a
293290f8d62eSJan Schmidt 		 * normal node. We are going to log removal of half of the
2933f3a84ccdSFilipe Manana 		 * elements below with btrfs_tree_mod_log_eb_copy(). We're
2934f3a84ccdSFilipe Manana 		 * holding a tree lock on the buffer, which is why we cannot
2935f3a84ccdSFilipe Manana 		 * race with other tree_mod_log users.
2936d9abbf1cSJan Schmidt 		 */
2937fdd99c72SLiu Bo 		ret = insert_new_root(trans, root, path, level + 1);
29385c680ed6SChris Mason 		if (ret)
29395c680ed6SChris Mason 			return ret;
2940b3612421SChris Mason 	} else {
2941e66f709bSChris Mason 		ret = push_nodes_for_insert(trans, root, path, level);
29425f39d397SChris Mason 		c = path->nodes[level];
29435f39d397SChris Mason 		if (!ret && btrfs_header_nritems(c) <
29440b246afaSJeff Mahoney 		    BTRFS_NODEPTRS_PER_BLOCK(fs_info) - 3)
2945e66f709bSChris Mason 			return 0;
294654aa1f4dSChris Mason 		if (ret < 0)
294754aa1f4dSChris Mason 			return ret;
29485c680ed6SChris Mason 	}
2949e66f709bSChris Mason 
29505f39d397SChris Mason 	c_nritems = btrfs_header_nritems(c);
29515d4f98a2SYan Zheng 	mid = (c_nritems + 1) / 2;
29525d4f98a2SYan Zheng 	btrfs_node_key(c, &disk_key, mid);
29537bb86316SChris Mason 
295479bd3712SFilipe Manana 	split = btrfs_alloc_tree_block(trans, root, 0, root->root_key.objectid,
295579bd3712SFilipe Manana 				       &disk_key, level, c->start, 0,
295679bd3712SFilipe Manana 				       BTRFS_NESTING_SPLIT);
29575f39d397SChris Mason 	if (IS_ERR(split))
29585f39d397SChris Mason 		return PTR_ERR(split);
295954aa1f4dSChris Mason 
29600b246afaSJeff Mahoney 	root_add_used(root, fs_info->nodesize);
2961bc877d28SNikolay Borisov 	ASSERT(btrfs_header_level(c) == level);
29625f39d397SChris Mason 
2963f3a84ccdSFilipe Manana 	ret = btrfs_tree_mod_log_eb_copy(split, c, 0, mid, c_nritems - mid);
29645de865eeSFilipe David Borba Manana 	if (ret) {
296566642832SJeff Mahoney 		btrfs_abort_transaction(trans, ret);
29665de865eeSFilipe David Borba Manana 		return ret;
29675de865eeSFilipe David Borba Manana 	}
29685f39d397SChris Mason 	copy_extent_buffer(split, c,
2969e23efd8eSJosef Bacik 			   btrfs_node_key_ptr_offset(split, 0),
2970e23efd8eSJosef Bacik 			   btrfs_node_key_ptr_offset(c, mid),
2971123abc88SChris Mason 			   (c_nritems - mid) * sizeof(struct btrfs_key_ptr));
29725f39d397SChris Mason 	btrfs_set_header_nritems(split, c_nritems - mid);
29735f39d397SChris Mason 	btrfs_set_header_nritems(c, mid);
2974aa5d6bedSChris Mason 
29755f39d397SChris Mason 	btrfs_mark_buffer_dirty(c);
29765f39d397SChris Mason 	btrfs_mark_buffer_dirty(split);
29775f39d397SChris Mason 
29786ad3cf6dSDavid Sterba 	insert_ptr(trans, path, &disk_key, split->start,
2979c3e06965SJan Schmidt 		   path->slots[level + 1] + 1, level + 1);
2980aa5d6bedSChris Mason 
29815de08d7dSChris Mason 	if (path->slots[level] >= mid) {
29825c680ed6SChris Mason 		path->slots[level] -= mid;
2983925baeddSChris Mason 		btrfs_tree_unlock(c);
29845f39d397SChris Mason 		free_extent_buffer(c);
29855f39d397SChris Mason 		path->nodes[level] = split;
29865c680ed6SChris Mason 		path->slots[level + 1] += 1;
2987eb60ceacSChris Mason 	} else {
2988925baeddSChris Mason 		btrfs_tree_unlock(split);
29895f39d397SChris Mason 		free_extent_buffer(split);
2990be0e5c09SChris Mason 	}
2991d5286a92SNikolay Borisov 	return 0;
2992be0e5c09SChris Mason }
2993be0e5c09SChris Mason 
299474123bd7SChris Mason /*
299574123bd7SChris Mason  * how many bytes are required to store the items in a leaf.  start
299674123bd7SChris Mason  * and nr indicate which items in the leaf to check.  This totals up the
299774123bd7SChris Mason  * space used both by the item structs and the item data
299874123bd7SChris Mason  */
29995f39d397SChris Mason static int leaf_space_used(struct extent_buffer *l, int start, int nr)
3000be0e5c09SChris Mason {
3001be0e5c09SChris Mason 	int data_len;
30025f39d397SChris Mason 	int nritems = btrfs_header_nritems(l);
3003d4dbff95SChris Mason 	int end = min(nritems, start + nr) - 1;
3004be0e5c09SChris Mason 
3005be0e5c09SChris Mason 	if (!nr)
3006be0e5c09SChris Mason 		return 0;
30073212fa14SJosef Bacik 	data_len = btrfs_item_offset(l, start) + btrfs_item_size(l, start);
30083212fa14SJosef Bacik 	data_len = data_len - btrfs_item_offset(l, end);
30090783fcfcSChris Mason 	data_len += sizeof(struct btrfs_item) * nr;
3010d4dbff95SChris Mason 	WARN_ON(data_len < 0);
3011be0e5c09SChris Mason 	return data_len;
3012be0e5c09SChris Mason }
3013be0e5c09SChris Mason 
301474123bd7SChris Mason /*
3015d4dbff95SChris Mason  * The space between the end of the leaf items and
3016d4dbff95SChris Mason  * the start of the leaf data.  IOW, how much room
3017d4dbff95SChris Mason  * the leaf has left for both items and data
3018d4dbff95SChris Mason  */
3019e902baacSDavid Sterba noinline int btrfs_leaf_free_space(struct extent_buffer *leaf)
3020d4dbff95SChris Mason {
3021e902baacSDavid Sterba 	struct btrfs_fs_info *fs_info = leaf->fs_info;
30225f39d397SChris Mason 	int nritems = btrfs_header_nritems(leaf);
30235f39d397SChris Mason 	int ret;
30240b246afaSJeff Mahoney 
30250b246afaSJeff Mahoney 	ret = BTRFS_LEAF_DATA_SIZE(fs_info) - leaf_space_used(leaf, 0, nritems);
30265f39d397SChris Mason 	if (ret < 0) {
30270b246afaSJeff Mahoney 		btrfs_crit(fs_info,
3028efe120a0SFrank Holton 			   "leaf free space ret %d, leaf data size %lu, used %d nritems %d",
3029da17066cSJeff Mahoney 			   ret,
30300b246afaSJeff Mahoney 			   (unsigned long) BTRFS_LEAF_DATA_SIZE(fs_info),
30315f39d397SChris Mason 			   leaf_space_used(leaf, 0, nritems), nritems);
30325f39d397SChris Mason 	}
30335f39d397SChris Mason 	return ret;
3034d4dbff95SChris Mason }
3035d4dbff95SChris Mason 
303699d8f83cSChris Mason /*
303799d8f83cSChris Mason  * min slot controls the lowest index we're willing to push to the
303899d8f83cSChris Mason  * right.  We'll push up to and including min_slot, but no lower
303999d8f83cSChris Mason  */
3040ed25dab3SJosef Bacik static noinline int __push_leaf_right(struct btrfs_trans_handle *trans,
3041ed25dab3SJosef Bacik 				      struct btrfs_path *path,
304244871b1bSChris Mason 				      int data_size, int empty,
304344871b1bSChris Mason 				      struct extent_buffer *right,
304499d8f83cSChris Mason 				      int free_space, u32 left_nritems,
304599d8f83cSChris Mason 				      u32 min_slot)
304600ec4c51SChris Mason {
3047f72f0010SDavid Sterba 	struct btrfs_fs_info *fs_info = right->fs_info;
30485f39d397SChris Mason 	struct extent_buffer *left = path->nodes[0];
304944871b1bSChris Mason 	struct extent_buffer *upper = path->nodes[1];
3050cfed81a0SChris Mason 	struct btrfs_map_token token;
30515f39d397SChris Mason 	struct btrfs_disk_key disk_key;
305200ec4c51SChris Mason 	int slot;
305334a38218SChris Mason 	u32 i;
305400ec4c51SChris Mason 	int push_space = 0;
305500ec4c51SChris Mason 	int push_items = 0;
305634a38218SChris Mason 	u32 nr;
30577518a238SChris Mason 	u32 right_nritems;
30585f39d397SChris Mason 	u32 data_end;
3059db94535dSChris Mason 	u32 this_item_size;
306000ec4c51SChris Mason 
306134a38218SChris Mason 	if (empty)
306234a38218SChris Mason 		nr = 0;
306334a38218SChris Mason 	else
306499d8f83cSChris Mason 		nr = max_t(u32, 1, min_slot);
306534a38218SChris Mason 
306631840ae1SZheng Yan 	if (path->slots[0] >= left_nritems)
306787b29b20SYan Zheng 		push_space += data_size;
306831840ae1SZheng Yan 
306944871b1bSChris Mason 	slot = path->slots[1];
307034a38218SChris Mason 	i = left_nritems - 1;
307134a38218SChris Mason 	while (i >= nr) {
307231840ae1SZheng Yan 		if (!empty && push_items > 0) {
307331840ae1SZheng Yan 			if (path->slots[0] > i)
307431840ae1SZheng Yan 				break;
307531840ae1SZheng Yan 			if (path->slots[0] == i) {
3076e902baacSDavid Sterba 				int space = btrfs_leaf_free_space(left);
3077e902baacSDavid Sterba 
307831840ae1SZheng Yan 				if (space + push_space * 2 > free_space)
307931840ae1SZheng Yan 					break;
308031840ae1SZheng Yan 			}
308131840ae1SZheng Yan 		}
308231840ae1SZheng Yan 
308300ec4c51SChris Mason 		if (path->slots[0] == i)
308487b29b20SYan Zheng 			push_space += data_size;
3085db94535dSChris Mason 
30863212fa14SJosef Bacik 		this_item_size = btrfs_item_size(left, i);
308774794207SJosef Bacik 		if (this_item_size + sizeof(struct btrfs_item) +
308874794207SJosef Bacik 		    push_space > free_space)
308900ec4c51SChris Mason 			break;
309031840ae1SZheng Yan 
309100ec4c51SChris Mason 		push_items++;
309274794207SJosef Bacik 		push_space += this_item_size + sizeof(struct btrfs_item);
309334a38218SChris Mason 		if (i == 0)
309434a38218SChris Mason 			break;
309534a38218SChris Mason 		i--;
3096db94535dSChris Mason 	}
30975f39d397SChris Mason 
3098925baeddSChris Mason 	if (push_items == 0)
3099925baeddSChris Mason 		goto out_unlock;
31005f39d397SChris Mason 
31016c1500f2SJulia Lawall 	WARN_ON(!empty && push_items == left_nritems);
31025f39d397SChris Mason 
310300ec4c51SChris Mason 	/* push left to right */
31045f39d397SChris Mason 	right_nritems = btrfs_header_nritems(right);
310534a38218SChris Mason 
3106dc2e724eSJosef Bacik 	push_space = btrfs_item_data_end(left, left_nritems - push_items);
31078f881e8cSDavid Sterba 	push_space -= leaf_data_end(left);
31085f39d397SChris Mason 
310900ec4c51SChris Mason 	/* make room in the right data area */
31108f881e8cSDavid Sterba 	data_end = leaf_data_end(right);
3111637e3b48SJosef Bacik 	memmove_leaf_data(right, data_end - push_space, data_end,
31120b246afaSJeff Mahoney 			  BTRFS_LEAF_DATA_SIZE(fs_info) - data_end);
31135f39d397SChris Mason 
311400ec4c51SChris Mason 	/* copy from the left data area */
3115637e3b48SJosef Bacik 	copy_leaf_data(right, left, BTRFS_LEAF_DATA_SIZE(fs_info) - push_space,
3116637e3b48SJosef Bacik 		       leaf_data_end(left), push_space);
31175f39d397SChris Mason 
3118637e3b48SJosef Bacik 	memmove_leaf_items(right, push_items, 0, right_nritems);
31195f39d397SChris Mason 
312000ec4c51SChris Mason 	/* copy the items from left to right */
3121637e3b48SJosef Bacik 	copy_leaf_items(right, left, 0, left_nritems - push_items, push_items);
312200ec4c51SChris Mason 
312300ec4c51SChris Mason 	/* update the item pointers */
3124c82f823cSDavid Sterba 	btrfs_init_map_token(&token, right);
31257518a238SChris Mason 	right_nritems += push_items;
31265f39d397SChris Mason 	btrfs_set_header_nritems(right, right_nritems);
31270b246afaSJeff Mahoney 	push_space = BTRFS_LEAF_DATA_SIZE(fs_info);
31287518a238SChris Mason 	for (i = 0; i < right_nritems; i++) {
31293212fa14SJosef Bacik 		push_space -= btrfs_token_item_size(&token, i);
31303212fa14SJosef Bacik 		btrfs_set_token_item_offset(&token, i, push_space);
3131db94535dSChris Mason 	}
3132db94535dSChris Mason 
31337518a238SChris Mason 	left_nritems -= push_items;
31345f39d397SChris Mason 	btrfs_set_header_nritems(left, left_nritems);
313500ec4c51SChris Mason 
313634a38218SChris Mason 	if (left_nritems)
31375f39d397SChris Mason 		btrfs_mark_buffer_dirty(left);
3138f0486c68SYan, Zheng 	else
3139190a8339SJosef Bacik 		btrfs_clear_buffer_dirty(trans, left);
3140f0486c68SYan, Zheng 
31415f39d397SChris Mason 	btrfs_mark_buffer_dirty(right);
3142a429e513SChris Mason 
31435f39d397SChris Mason 	btrfs_item_key(right, &disk_key, 0);
31445f39d397SChris Mason 	btrfs_set_node_key(upper, &disk_key, slot + 1);
3145d6025579SChris Mason 	btrfs_mark_buffer_dirty(upper);
314602217ed2SChris Mason 
314700ec4c51SChris Mason 	/* then fixup the leaf pointer in the path */
31487518a238SChris Mason 	if (path->slots[0] >= left_nritems) {
31497518a238SChris Mason 		path->slots[0] -= left_nritems;
3150925baeddSChris Mason 		if (btrfs_header_nritems(path->nodes[0]) == 0)
3151190a8339SJosef Bacik 			btrfs_clear_buffer_dirty(trans, path->nodes[0]);
3152925baeddSChris Mason 		btrfs_tree_unlock(path->nodes[0]);
31535f39d397SChris Mason 		free_extent_buffer(path->nodes[0]);
31545f39d397SChris Mason 		path->nodes[0] = right;
315500ec4c51SChris Mason 		path->slots[1] += 1;
315600ec4c51SChris Mason 	} else {
3157925baeddSChris Mason 		btrfs_tree_unlock(right);
31585f39d397SChris Mason 		free_extent_buffer(right);
315900ec4c51SChris Mason 	}
316000ec4c51SChris Mason 	return 0;
3161925baeddSChris Mason 
3162925baeddSChris Mason out_unlock:
3163925baeddSChris Mason 	btrfs_tree_unlock(right);
3164925baeddSChris Mason 	free_extent_buffer(right);
3165925baeddSChris Mason 	return 1;
316600ec4c51SChris Mason }
3167925baeddSChris Mason 
316800ec4c51SChris Mason /*
316944871b1bSChris Mason  * push some data in the path leaf to the right, trying to free up at
317074123bd7SChris Mason  * least data_size bytes.  returns zero if the push worked, nonzero otherwise
317144871b1bSChris Mason  *
317244871b1bSChris Mason  * returns 1 if the push failed because the other node didn't have enough
317344871b1bSChris Mason  * room, 0 if everything worked out and < 0 if there were major errors.
317499d8f83cSChris Mason  *
317599d8f83cSChris Mason  * this will push starting from min_slot to the end of the leaf.  It won't
317699d8f83cSChris Mason  * push any slot lower than min_slot
317774123bd7SChris Mason  */
317844871b1bSChris Mason static int push_leaf_right(struct btrfs_trans_handle *trans, struct btrfs_root
317999d8f83cSChris Mason 			   *root, struct btrfs_path *path,
318099d8f83cSChris Mason 			   int min_data_size, int data_size,
318199d8f83cSChris Mason 			   int empty, u32 min_slot)
3182be0e5c09SChris Mason {
318344871b1bSChris Mason 	struct extent_buffer *left = path->nodes[0];
318444871b1bSChris Mason 	struct extent_buffer *right;
318544871b1bSChris Mason 	struct extent_buffer *upper;
318644871b1bSChris Mason 	int slot;
318744871b1bSChris Mason 	int free_space;
318844871b1bSChris Mason 	u32 left_nritems;
318944871b1bSChris Mason 	int ret;
319044871b1bSChris Mason 
319144871b1bSChris Mason 	if (!path->nodes[1])
319244871b1bSChris Mason 		return 1;
319344871b1bSChris Mason 
319444871b1bSChris Mason 	slot = path->slots[1];
319544871b1bSChris Mason 	upper = path->nodes[1];
319644871b1bSChris Mason 	if (slot >= btrfs_header_nritems(upper) - 1)
319744871b1bSChris Mason 		return 1;
319844871b1bSChris Mason 
319949d0c642SFilipe Manana 	btrfs_assert_tree_write_locked(path->nodes[1]);
320044871b1bSChris Mason 
32014b231ae4SDavid Sterba 	right = btrfs_read_node_slot(upper, slot + 1);
3202fb770ae4SLiu Bo 	if (IS_ERR(right))
32039cf14029SJosef Bacik 		return PTR_ERR(right);
320491ca338dSTsutomu Itoh 
3205bf77467aSJosef Bacik 	__btrfs_tree_lock(right, BTRFS_NESTING_RIGHT);
320644871b1bSChris Mason 
3207e902baacSDavid Sterba 	free_space = btrfs_leaf_free_space(right);
320844871b1bSChris Mason 	if (free_space < data_size)
320944871b1bSChris Mason 		goto out_unlock;
321044871b1bSChris Mason 
321144871b1bSChris Mason 	ret = btrfs_cow_block(trans, root, right, upper,
3212bf59a5a2SJosef Bacik 			      slot + 1, &right, BTRFS_NESTING_RIGHT_COW);
321344871b1bSChris Mason 	if (ret)
321444871b1bSChris Mason 		goto out_unlock;
321544871b1bSChris Mason 
321644871b1bSChris Mason 	left_nritems = btrfs_header_nritems(left);
321744871b1bSChris Mason 	if (left_nritems == 0)
321844871b1bSChris Mason 		goto out_unlock;
321944871b1bSChris Mason 
3220d16c702fSQu Wenruo 	if (check_sibling_keys(left, right)) {
3221d16c702fSQu Wenruo 		ret = -EUCLEAN;
32229ae5afd0SFilipe Manana 		btrfs_abort_transaction(trans, ret);
3223d16c702fSQu Wenruo 		btrfs_tree_unlock(right);
3224d16c702fSQu Wenruo 		free_extent_buffer(right);
3225d16c702fSQu Wenruo 		return ret;
3226d16c702fSQu Wenruo 	}
32272ef1fed2SFilipe David Borba Manana 	if (path->slots[0] == left_nritems && !empty) {
32282ef1fed2SFilipe David Borba Manana 		/* Key greater than all keys in the leaf, right neighbor has
32292ef1fed2SFilipe David Borba Manana 		 * enough room for it and we're not emptying our leaf to delete
32302ef1fed2SFilipe David Borba Manana 		 * it, therefore use right neighbor to insert the new item and
323152042d8eSAndrea Gelmini 		 * no need to touch/dirty our left leaf. */
32322ef1fed2SFilipe David Borba Manana 		btrfs_tree_unlock(left);
32332ef1fed2SFilipe David Borba Manana 		free_extent_buffer(left);
32342ef1fed2SFilipe David Borba Manana 		path->nodes[0] = right;
32352ef1fed2SFilipe David Borba Manana 		path->slots[0] = 0;
32362ef1fed2SFilipe David Borba Manana 		path->slots[1]++;
32372ef1fed2SFilipe David Borba Manana 		return 0;
32382ef1fed2SFilipe David Borba Manana 	}
32392ef1fed2SFilipe David Borba Manana 
3240ed25dab3SJosef Bacik 	return __push_leaf_right(trans, path, min_data_size, empty, right,
3241ed25dab3SJosef Bacik 				 free_space, left_nritems, min_slot);
324244871b1bSChris Mason out_unlock:
324344871b1bSChris Mason 	btrfs_tree_unlock(right);
324444871b1bSChris Mason 	free_extent_buffer(right);
324544871b1bSChris Mason 	return 1;
324644871b1bSChris Mason }
324744871b1bSChris Mason 
324844871b1bSChris Mason /*
324944871b1bSChris Mason  * push some data in the path leaf to the left, trying to free up at
325044871b1bSChris Mason  * least data_size bytes.  returns zero if the push worked, nonzero otherwise
325199d8f83cSChris Mason  *
325299d8f83cSChris Mason  * max_slot can put a limit on how far into the leaf we'll push items.  The
325399d8f83cSChris Mason  * item at 'max_slot' won't be touched.  Use (u32)-1 to make us do all the
325499d8f83cSChris Mason  * items
325544871b1bSChris Mason  */
3256ed25dab3SJosef Bacik static noinline int __push_leaf_left(struct btrfs_trans_handle *trans,
3257ed25dab3SJosef Bacik 				     struct btrfs_path *path, int data_size,
325844871b1bSChris Mason 				     int empty, struct extent_buffer *left,
325999d8f83cSChris Mason 				     int free_space, u32 right_nritems,
326099d8f83cSChris Mason 				     u32 max_slot)
326144871b1bSChris Mason {
32628087c193SDavid Sterba 	struct btrfs_fs_info *fs_info = left->fs_info;
32635f39d397SChris Mason 	struct btrfs_disk_key disk_key;
32645f39d397SChris Mason 	struct extent_buffer *right = path->nodes[0];
3265be0e5c09SChris Mason 	int i;
3266be0e5c09SChris Mason 	int push_space = 0;
3267be0e5c09SChris Mason 	int push_items = 0;
32687518a238SChris Mason 	u32 old_left_nritems;
326934a38218SChris Mason 	u32 nr;
3270aa5d6bedSChris Mason 	int ret = 0;
3271db94535dSChris Mason 	u32 this_item_size;
3272db94535dSChris Mason 	u32 old_left_item_size;
3273cfed81a0SChris Mason 	struct btrfs_map_token token;
3274cfed81a0SChris Mason 
327534a38218SChris Mason 	if (empty)
327699d8f83cSChris Mason 		nr = min(right_nritems, max_slot);
327734a38218SChris Mason 	else
327899d8f83cSChris Mason 		nr = min(right_nritems - 1, max_slot);
327934a38218SChris Mason 
328034a38218SChris Mason 	for (i = 0; i < nr; i++) {
328131840ae1SZheng Yan 		if (!empty && push_items > 0) {
328231840ae1SZheng Yan 			if (path->slots[0] < i)
328331840ae1SZheng Yan 				break;
328431840ae1SZheng Yan 			if (path->slots[0] == i) {
3285e902baacSDavid Sterba 				int space = btrfs_leaf_free_space(right);
3286e902baacSDavid Sterba 
328731840ae1SZheng Yan 				if (space + push_space * 2 > free_space)
328831840ae1SZheng Yan 					break;
328931840ae1SZheng Yan 			}
329031840ae1SZheng Yan 		}
329131840ae1SZheng Yan 
3292be0e5c09SChris Mason 		if (path->slots[0] == i)
329387b29b20SYan Zheng 			push_space += data_size;
3294db94535dSChris Mason 
32953212fa14SJosef Bacik 		this_item_size = btrfs_item_size(right, i);
329674794207SJosef Bacik 		if (this_item_size + sizeof(struct btrfs_item) + push_space >
329774794207SJosef Bacik 		    free_space)
3298be0e5c09SChris Mason 			break;
3299db94535dSChris Mason 
3300be0e5c09SChris Mason 		push_items++;
330174794207SJosef Bacik 		push_space += this_item_size + sizeof(struct btrfs_item);
3302be0e5c09SChris Mason 	}
3303db94535dSChris Mason 
3304be0e5c09SChris Mason 	if (push_items == 0) {
3305925baeddSChris Mason 		ret = 1;
3306925baeddSChris Mason 		goto out;
3307be0e5c09SChris Mason 	}
3308fae7f21cSDulshani Gunawardhana 	WARN_ON(!empty && push_items == btrfs_header_nritems(right));
33095f39d397SChris Mason 
3310be0e5c09SChris Mason 	/* push data from right to left */
3311637e3b48SJosef Bacik 	copy_leaf_items(left, right, btrfs_header_nritems(left), 0, push_items);
33125f39d397SChris Mason 
33130b246afaSJeff Mahoney 	push_space = BTRFS_LEAF_DATA_SIZE(fs_info) -
33143212fa14SJosef Bacik 		     btrfs_item_offset(right, push_items - 1);
33155f39d397SChris Mason 
3316637e3b48SJosef Bacik 	copy_leaf_data(left, right, leaf_data_end(left) - push_space,
3317637e3b48SJosef Bacik 		       btrfs_item_offset(right, push_items - 1), push_space);
33185f39d397SChris Mason 	old_left_nritems = btrfs_header_nritems(left);
331987b29b20SYan Zheng 	BUG_ON(old_left_nritems <= 0);
3320eb60ceacSChris Mason 
3321c82f823cSDavid Sterba 	btrfs_init_map_token(&token, left);
33223212fa14SJosef Bacik 	old_left_item_size = btrfs_item_offset(left, old_left_nritems - 1);
3323be0e5c09SChris Mason 	for (i = old_left_nritems; i < old_left_nritems + push_items; i++) {
33245f39d397SChris Mason 		u32 ioff;
3325db94535dSChris Mason 
33263212fa14SJosef Bacik 		ioff = btrfs_token_item_offset(&token, i);
33273212fa14SJosef Bacik 		btrfs_set_token_item_offset(&token, i,
3328cc4c13d5SDavid Sterba 		      ioff - (BTRFS_LEAF_DATA_SIZE(fs_info) - old_left_item_size));
3329be0e5c09SChris Mason 	}
33305f39d397SChris Mason 	btrfs_set_header_nritems(left, old_left_nritems + push_items);
3331be0e5c09SChris Mason 
3332be0e5c09SChris Mason 	/* fixup right node */
333331b1a2bdSJulia Lawall 	if (push_items > right_nritems)
333431b1a2bdSJulia Lawall 		WARN(1, KERN_CRIT "push items %d nr %u\n", push_items,
3335d397712bSChris Mason 		       right_nritems);
333634a38218SChris Mason 
333734a38218SChris Mason 	if (push_items < right_nritems) {
33383212fa14SJosef Bacik 		push_space = btrfs_item_offset(right, push_items - 1) -
33398f881e8cSDavid Sterba 						  leaf_data_end(right);
3340637e3b48SJosef Bacik 		memmove_leaf_data(right,
33410b246afaSJeff Mahoney 				  BTRFS_LEAF_DATA_SIZE(fs_info) - push_space,
33428f881e8cSDavid Sterba 				  leaf_data_end(right), push_space);
33435f39d397SChris Mason 
3344637e3b48SJosef Bacik 		memmove_leaf_items(right, 0, push_items,
3345637e3b48SJosef Bacik 				   btrfs_header_nritems(right) - push_items);
334634a38218SChris Mason 	}
3347c82f823cSDavid Sterba 
3348c82f823cSDavid Sterba 	btrfs_init_map_token(&token, right);
3349eef1c494SYan 	right_nritems -= push_items;
3350eef1c494SYan 	btrfs_set_header_nritems(right, right_nritems);
33510b246afaSJeff Mahoney 	push_space = BTRFS_LEAF_DATA_SIZE(fs_info);
33525f39d397SChris Mason 	for (i = 0; i < right_nritems; i++) {
33533212fa14SJosef Bacik 		push_space = push_space - btrfs_token_item_size(&token, i);
33543212fa14SJosef Bacik 		btrfs_set_token_item_offset(&token, i, push_space);
3355db94535dSChris Mason 	}
3356eb60ceacSChris Mason 
33575f39d397SChris Mason 	btrfs_mark_buffer_dirty(left);
335834a38218SChris Mason 	if (right_nritems)
33595f39d397SChris Mason 		btrfs_mark_buffer_dirty(right);
3360f0486c68SYan, Zheng 	else
3361190a8339SJosef Bacik 		btrfs_clear_buffer_dirty(trans, right);
3362098f59c2SChris Mason 
33635f39d397SChris Mason 	btrfs_item_key(right, &disk_key, 0);
3364b167fa91SNikolay Borisov 	fixup_low_keys(path, &disk_key, 1);
3365be0e5c09SChris Mason 
3366be0e5c09SChris Mason 	/* then fixup the leaf pointer in the path */
3367be0e5c09SChris Mason 	if (path->slots[0] < push_items) {
3368be0e5c09SChris Mason 		path->slots[0] += old_left_nritems;
3369925baeddSChris Mason 		btrfs_tree_unlock(path->nodes[0]);
33705f39d397SChris Mason 		free_extent_buffer(path->nodes[0]);
33715f39d397SChris Mason 		path->nodes[0] = left;
3372be0e5c09SChris Mason 		path->slots[1] -= 1;
3373be0e5c09SChris Mason 	} else {
3374925baeddSChris Mason 		btrfs_tree_unlock(left);
33755f39d397SChris Mason 		free_extent_buffer(left);
3376be0e5c09SChris Mason 		path->slots[0] -= push_items;
3377be0e5c09SChris Mason 	}
3378eb60ceacSChris Mason 	BUG_ON(path->slots[0] < 0);
3379aa5d6bedSChris Mason 	return ret;
3380925baeddSChris Mason out:
3381925baeddSChris Mason 	btrfs_tree_unlock(left);
3382925baeddSChris Mason 	free_extent_buffer(left);
3383925baeddSChris Mason 	return ret;
3384be0e5c09SChris Mason }
3385be0e5c09SChris Mason 
338674123bd7SChris Mason /*
338744871b1bSChris Mason  * push some data in the path leaf to the left, trying to free up at
338844871b1bSChris Mason  * least data_size bytes.  returns zero if the push worked, nonzero otherwise
338999d8f83cSChris Mason  *
339099d8f83cSChris Mason  * max_slot can put a limit on how far into the leaf we'll push items.  The
339199d8f83cSChris Mason  * item at 'max_slot' won't be touched.  Use (u32)-1 to make us push all the
339299d8f83cSChris Mason  * items
339344871b1bSChris Mason  */
339444871b1bSChris Mason static int push_leaf_left(struct btrfs_trans_handle *trans, struct btrfs_root
339599d8f83cSChris Mason 			  *root, struct btrfs_path *path, int min_data_size,
339699d8f83cSChris Mason 			  int data_size, int empty, u32 max_slot)
339744871b1bSChris Mason {
339844871b1bSChris Mason 	struct extent_buffer *right = path->nodes[0];
339944871b1bSChris Mason 	struct extent_buffer *left;
340044871b1bSChris Mason 	int slot;
340144871b1bSChris Mason 	int free_space;
340244871b1bSChris Mason 	u32 right_nritems;
340344871b1bSChris Mason 	int ret = 0;
340444871b1bSChris Mason 
340544871b1bSChris Mason 	slot = path->slots[1];
340644871b1bSChris Mason 	if (slot == 0)
340744871b1bSChris Mason 		return 1;
340844871b1bSChris Mason 	if (!path->nodes[1])
340944871b1bSChris Mason 		return 1;
341044871b1bSChris Mason 
341144871b1bSChris Mason 	right_nritems = btrfs_header_nritems(right);
341244871b1bSChris Mason 	if (right_nritems == 0)
341344871b1bSChris Mason 		return 1;
341444871b1bSChris Mason 
341549d0c642SFilipe Manana 	btrfs_assert_tree_write_locked(path->nodes[1]);
341644871b1bSChris Mason 
34174b231ae4SDavid Sterba 	left = btrfs_read_node_slot(path->nodes[1], slot - 1);
3418fb770ae4SLiu Bo 	if (IS_ERR(left))
34199cf14029SJosef Bacik 		return PTR_ERR(left);
342091ca338dSTsutomu Itoh 
3421bf77467aSJosef Bacik 	__btrfs_tree_lock(left, BTRFS_NESTING_LEFT);
342244871b1bSChris Mason 
3423e902baacSDavid Sterba 	free_space = btrfs_leaf_free_space(left);
342444871b1bSChris Mason 	if (free_space < data_size) {
342544871b1bSChris Mason 		ret = 1;
342644871b1bSChris Mason 		goto out;
342744871b1bSChris Mason 	}
342844871b1bSChris Mason 
342944871b1bSChris Mason 	ret = btrfs_cow_block(trans, root, left,
34309631e4ccSJosef Bacik 			      path->nodes[1], slot - 1, &left,
3431bf59a5a2SJosef Bacik 			      BTRFS_NESTING_LEFT_COW);
343244871b1bSChris Mason 	if (ret) {
343344871b1bSChris Mason 		/* we hit -ENOSPC, but it isn't fatal here */
343479787eaaSJeff Mahoney 		if (ret == -ENOSPC)
343544871b1bSChris Mason 			ret = 1;
343644871b1bSChris Mason 		goto out;
343744871b1bSChris Mason 	}
343844871b1bSChris Mason 
3439d16c702fSQu Wenruo 	if (check_sibling_keys(left, right)) {
3440d16c702fSQu Wenruo 		ret = -EUCLEAN;
34419ae5afd0SFilipe Manana 		btrfs_abort_transaction(trans, ret);
3442d16c702fSQu Wenruo 		goto out;
3443d16c702fSQu Wenruo 	}
3444ed25dab3SJosef Bacik 	return __push_leaf_left(trans, path, min_data_size, empty, left,
3445ed25dab3SJosef Bacik 				free_space, right_nritems, max_slot);
344644871b1bSChris Mason out:
344744871b1bSChris Mason 	btrfs_tree_unlock(left);
344844871b1bSChris Mason 	free_extent_buffer(left);
344944871b1bSChris Mason 	return ret;
345044871b1bSChris Mason }
345144871b1bSChris Mason 
345244871b1bSChris Mason /*
345374123bd7SChris Mason  * split the path's leaf in two, making sure there is at least data_size
345474123bd7SChris Mason  * available for the resulting leaf level of the path.
345574123bd7SChris Mason  */
3456143bede5SJeff Mahoney static noinline void copy_for_split(struct btrfs_trans_handle *trans,
345744871b1bSChris Mason 				    struct btrfs_path *path,
345844871b1bSChris Mason 				    struct extent_buffer *l,
345944871b1bSChris Mason 				    struct extent_buffer *right,
346044871b1bSChris Mason 				    int slot, int mid, int nritems)
3461be0e5c09SChris Mason {
346294f94ad9SDavid Sterba 	struct btrfs_fs_info *fs_info = trans->fs_info;
3463be0e5c09SChris Mason 	int data_copy_size;
3464be0e5c09SChris Mason 	int rt_data_off;
3465be0e5c09SChris Mason 	int i;
3466d4dbff95SChris Mason 	struct btrfs_disk_key disk_key;
3467cfed81a0SChris Mason 	struct btrfs_map_token token;
3468cfed81a0SChris Mason 
34695f39d397SChris Mason 	nritems = nritems - mid;
34705f39d397SChris Mason 	btrfs_set_header_nritems(right, nritems);
3471dc2e724eSJosef Bacik 	data_copy_size = btrfs_item_data_end(l, mid) - leaf_data_end(l);
34725f39d397SChris Mason 
3473637e3b48SJosef Bacik 	copy_leaf_items(right, l, 0, mid, nritems);
34745f39d397SChris Mason 
3475637e3b48SJosef Bacik 	copy_leaf_data(right, l, BTRFS_LEAF_DATA_SIZE(fs_info) - data_copy_size,
34768f881e8cSDavid Sterba 		       leaf_data_end(l), data_copy_size);
347774123bd7SChris Mason 
3478dc2e724eSJosef Bacik 	rt_data_off = BTRFS_LEAF_DATA_SIZE(fs_info) - btrfs_item_data_end(l, mid);
34795f39d397SChris Mason 
3480c82f823cSDavid Sterba 	btrfs_init_map_token(&token, right);
34815f39d397SChris Mason 	for (i = 0; i < nritems; i++) {
3482db94535dSChris Mason 		u32 ioff;
3483db94535dSChris Mason 
34843212fa14SJosef Bacik 		ioff = btrfs_token_item_offset(&token, i);
34853212fa14SJosef Bacik 		btrfs_set_token_item_offset(&token, i, ioff + rt_data_off);
34860783fcfcSChris Mason 	}
348774123bd7SChris Mason 
34885f39d397SChris Mason 	btrfs_set_header_nritems(l, mid);
34895f39d397SChris Mason 	btrfs_item_key(right, &disk_key, 0);
34906ad3cf6dSDavid Sterba 	insert_ptr(trans, path, &disk_key, right->start, path->slots[1] + 1, 1);
34915f39d397SChris Mason 
34925f39d397SChris Mason 	btrfs_mark_buffer_dirty(right);
34935f39d397SChris Mason 	btrfs_mark_buffer_dirty(l);
3494eb60ceacSChris Mason 	BUG_ON(path->slots[0] != slot);
34955f39d397SChris Mason 
3496be0e5c09SChris Mason 	if (mid <= slot) {
3497925baeddSChris Mason 		btrfs_tree_unlock(path->nodes[0]);
34985f39d397SChris Mason 		free_extent_buffer(path->nodes[0]);
34995f39d397SChris Mason 		path->nodes[0] = right;
3500be0e5c09SChris Mason 		path->slots[0] -= mid;
3501be0e5c09SChris Mason 		path->slots[1] += 1;
3502925baeddSChris Mason 	} else {
3503925baeddSChris Mason 		btrfs_tree_unlock(right);
35045f39d397SChris Mason 		free_extent_buffer(right);
3505925baeddSChris Mason 	}
35065f39d397SChris Mason 
3507eb60ceacSChris Mason 	BUG_ON(path->slots[0] < 0);
350844871b1bSChris Mason }
350944871b1bSChris Mason 
351044871b1bSChris Mason /*
351199d8f83cSChris Mason  * double splits happen when we need to insert a big item in the middle
351299d8f83cSChris Mason  * of a leaf.  A double split can leave us with 3 mostly empty leaves:
351399d8f83cSChris Mason  * leaf: [ slots 0 - N] [ our target ] [ N + 1 - total in leaf ]
351499d8f83cSChris Mason  *          A                 B                 C
351599d8f83cSChris Mason  *
351699d8f83cSChris Mason  * We avoid this by trying to push the items on either side of our target
351799d8f83cSChris Mason  * into the adjacent leaves.  If all goes well we can avoid the double split
351899d8f83cSChris Mason  * completely.
351999d8f83cSChris Mason  */
352099d8f83cSChris Mason static noinline int push_for_double_split(struct btrfs_trans_handle *trans,
352199d8f83cSChris Mason 					  struct btrfs_root *root,
352299d8f83cSChris Mason 					  struct btrfs_path *path,
352399d8f83cSChris Mason 					  int data_size)
352499d8f83cSChris Mason {
352599d8f83cSChris Mason 	int ret;
352699d8f83cSChris Mason 	int progress = 0;
352799d8f83cSChris Mason 	int slot;
352899d8f83cSChris Mason 	u32 nritems;
35295a4267caSFilipe David Borba Manana 	int space_needed = data_size;
353099d8f83cSChris Mason 
353199d8f83cSChris Mason 	slot = path->slots[0];
35325a4267caSFilipe David Borba Manana 	if (slot < btrfs_header_nritems(path->nodes[0]))
3533e902baacSDavid Sterba 		space_needed -= btrfs_leaf_free_space(path->nodes[0]);
353499d8f83cSChris Mason 
353599d8f83cSChris Mason 	/*
353699d8f83cSChris Mason 	 * try to push all the items after our slot into the
353799d8f83cSChris Mason 	 * right leaf
353899d8f83cSChris Mason 	 */
35395a4267caSFilipe David Borba Manana 	ret = push_leaf_right(trans, root, path, 1, space_needed, 0, slot);
354099d8f83cSChris Mason 	if (ret < 0)
354199d8f83cSChris Mason 		return ret;
354299d8f83cSChris Mason 
354399d8f83cSChris Mason 	if (ret == 0)
354499d8f83cSChris Mason 		progress++;
354599d8f83cSChris Mason 
354699d8f83cSChris Mason 	nritems = btrfs_header_nritems(path->nodes[0]);
354799d8f83cSChris Mason 	/*
354899d8f83cSChris Mason 	 * our goal is to get our slot at the start or end of a leaf.  If
354999d8f83cSChris Mason 	 * we've done so we're done
355099d8f83cSChris Mason 	 */
355199d8f83cSChris Mason 	if (path->slots[0] == 0 || path->slots[0] == nritems)
355299d8f83cSChris Mason 		return 0;
355399d8f83cSChris Mason 
3554e902baacSDavid Sterba 	if (btrfs_leaf_free_space(path->nodes[0]) >= data_size)
355599d8f83cSChris Mason 		return 0;
355699d8f83cSChris Mason 
355799d8f83cSChris Mason 	/* try to push all the items before our slot into the next leaf */
355899d8f83cSChris Mason 	slot = path->slots[0];
3559263d3995SFilipe Manana 	space_needed = data_size;
3560263d3995SFilipe Manana 	if (slot > 0)
3561e902baacSDavid Sterba 		space_needed -= btrfs_leaf_free_space(path->nodes[0]);
35625a4267caSFilipe David Borba Manana 	ret = push_leaf_left(trans, root, path, 1, space_needed, 0, slot);
356399d8f83cSChris Mason 	if (ret < 0)
356499d8f83cSChris Mason 		return ret;
356599d8f83cSChris Mason 
356699d8f83cSChris Mason 	if (ret == 0)
356799d8f83cSChris Mason 		progress++;
356899d8f83cSChris Mason 
356999d8f83cSChris Mason 	if (progress)
357099d8f83cSChris Mason 		return 0;
357199d8f83cSChris Mason 	return 1;
357299d8f83cSChris Mason }
357399d8f83cSChris Mason 
357499d8f83cSChris Mason /*
357544871b1bSChris Mason  * split the path's leaf in two, making sure there is at least data_size
357644871b1bSChris Mason  * available for the resulting leaf level of the path.
357744871b1bSChris Mason  *
357844871b1bSChris Mason  * returns 0 if all went well and < 0 on failure.
357944871b1bSChris Mason  */
358044871b1bSChris Mason static noinline int split_leaf(struct btrfs_trans_handle *trans,
358144871b1bSChris Mason 			       struct btrfs_root *root,
3582310712b2SOmar Sandoval 			       const struct btrfs_key *ins_key,
358344871b1bSChris Mason 			       struct btrfs_path *path, int data_size,
358444871b1bSChris Mason 			       int extend)
358544871b1bSChris Mason {
35865d4f98a2SYan Zheng 	struct btrfs_disk_key disk_key;
358744871b1bSChris Mason 	struct extent_buffer *l;
358844871b1bSChris Mason 	u32 nritems;
358944871b1bSChris Mason 	int mid;
359044871b1bSChris Mason 	int slot;
359144871b1bSChris Mason 	struct extent_buffer *right;
3592b7a0365eSDaniel Dressler 	struct btrfs_fs_info *fs_info = root->fs_info;
359344871b1bSChris Mason 	int ret = 0;
359444871b1bSChris Mason 	int wret;
35955d4f98a2SYan Zheng 	int split;
359644871b1bSChris Mason 	int num_doubles = 0;
359799d8f83cSChris Mason 	int tried_avoid_double = 0;
359844871b1bSChris Mason 
3599a5719521SYan, Zheng 	l = path->nodes[0];
3600a5719521SYan, Zheng 	slot = path->slots[0];
36013212fa14SJosef Bacik 	if (extend && data_size + btrfs_item_size(l, slot) +
36020b246afaSJeff Mahoney 	    sizeof(struct btrfs_item) > BTRFS_LEAF_DATA_SIZE(fs_info))
3603a5719521SYan, Zheng 		return -EOVERFLOW;
3604a5719521SYan, Zheng 
360544871b1bSChris Mason 	/* first try to make some room by pushing left and right */
360633157e05SLiu Bo 	if (data_size && path->nodes[1]) {
36075a4267caSFilipe David Borba Manana 		int space_needed = data_size;
36085a4267caSFilipe David Borba Manana 
36095a4267caSFilipe David Borba Manana 		if (slot < btrfs_header_nritems(l))
3610e902baacSDavid Sterba 			space_needed -= btrfs_leaf_free_space(l);
36115a4267caSFilipe David Borba Manana 
36125a4267caSFilipe David Borba Manana 		wret = push_leaf_right(trans, root, path, space_needed,
36135a4267caSFilipe David Borba Manana 				       space_needed, 0, 0);
361444871b1bSChris Mason 		if (wret < 0)
361544871b1bSChris Mason 			return wret;
361644871b1bSChris Mason 		if (wret) {
3617263d3995SFilipe Manana 			space_needed = data_size;
3618263d3995SFilipe Manana 			if (slot > 0)
3619e902baacSDavid Sterba 				space_needed -= btrfs_leaf_free_space(l);
36205a4267caSFilipe David Borba Manana 			wret = push_leaf_left(trans, root, path, space_needed,
36215a4267caSFilipe David Borba Manana 					      space_needed, 0, (u32)-1);
362244871b1bSChris Mason 			if (wret < 0)
362344871b1bSChris Mason 				return wret;
362444871b1bSChris Mason 		}
362544871b1bSChris Mason 		l = path->nodes[0];
362644871b1bSChris Mason 
362744871b1bSChris Mason 		/* did the pushes work? */
3628e902baacSDavid Sterba 		if (btrfs_leaf_free_space(l) >= data_size)
362944871b1bSChris Mason 			return 0;
363044871b1bSChris Mason 	}
363144871b1bSChris Mason 
363244871b1bSChris Mason 	if (!path->nodes[1]) {
3633fdd99c72SLiu Bo 		ret = insert_new_root(trans, root, path, 1);
363444871b1bSChris Mason 		if (ret)
363544871b1bSChris Mason 			return ret;
363644871b1bSChris Mason 	}
363744871b1bSChris Mason again:
36385d4f98a2SYan Zheng 	split = 1;
363944871b1bSChris Mason 	l = path->nodes[0];
364044871b1bSChris Mason 	slot = path->slots[0];
364144871b1bSChris Mason 	nritems = btrfs_header_nritems(l);
364244871b1bSChris Mason 	mid = (nritems + 1) / 2;
364344871b1bSChris Mason 
36445d4f98a2SYan Zheng 	if (mid <= slot) {
36455d4f98a2SYan Zheng 		if (nritems == 1 ||
36465d4f98a2SYan Zheng 		    leaf_space_used(l, mid, nritems - mid) + data_size >
36470b246afaSJeff Mahoney 			BTRFS_LEAF_DATA_SIZE(fs_info)) {
36485d4f98a2SYan Zheng 			if (slot >= nritems) {
36495d4f98a2SYan Zheng 				split = 0;
36505d4f98a2SYan Zheng 			} else {
36515d4f98a2SYan Zheng 				mid = slot;
36525d4f98a2SYan Zheng 				if (mid != nritems &&
36535d4f98a2SYan Zheng 				    leaf_space_used(l, mid, nritems - mid) +
36540b246afaSJeff Mahoney 				    data_size > BTRFS_LEAF_DATA_SIZE(fs_info)) {
365599d8f83cSChris Mason 					if (data_size && !tried_avoid_double)
365699d8f83cSChris Mason 						goto push_for_double;
36575d4f98a2SYan Zheng 					split = 2;
36585d4f98a2SYan Zheng 				}
36595d4f98a2SYan Zheng 			}
36605d4f98a2SYan Zheng 		}
36615d4f98a2SYan Zheng 	} else {
36625d4f98a2SYan Zheng 		if (leaf_space_used(l, 0, mid) + data_size >
36630b246afaSJeff Mahoney 			BTRFS_LEAF_DATA_SIZE(fs_info)) {
36645d4f98a2SYan Zheng 			if (!extend && data_size && slot == 0) {
36655d4f98a2SYan Zheng 				split = 0;
36665d4f98a2SYan Zheng 			} else if ((extend || !data_size) && slot == 0) {
36675d4f98a2SYan Zheng 				mid = 1;
36685d4f98a2SYan Zheng 			} else {
36695d4f98a2SYan Zheng 				mid = slot;
36705d4f98a2SYan Zheng 				if (mid != nritems &&
36715d4f98a2SYan Zheng 				    leaf_space_used(l, mid, nritems - mid) +
36720b246afaSJeff Mahoney 				    data_size > BTRFS_LEAF_DATA_SIZE(fs_info)) {
367399d8f83cSChris Mason 					if (data_size && !tried_avoid_double)
367499d8f83cSChris Mason 						goto push_for_double;
36755d4f98a2SYan Zheng 					split = 2;
36765d4f98a2SYan Zheng 				}
36775d4f98a2SYan Zheng 			}
36785d4f98a2SYan Zheng 		}
36795d4f98a2SYan Zheng 	}
36805d4f98a2SYan Zheng 
36815d4f98a2SYan Zheng 	if (split == 0)
36825d4f98a2SYan Zheng 		btrfs_cpu_key_to_disk(&disk_key, ins_key);
36835d4f98a2SYan Zheng 	else
36845d4f98a2SYan Zheng 		btrfs_item_key(l, &disk_key, mid);
36855d4f98a2SYan Zheng 
3686ca9d473aSJosef Bacik 	/*
3687ca9d473aSJosef Bacik 	 * We have to about BTRFS_NESTING_NEW_ROOT here if we've done a double
3688ca9d473aSJosef Bacik 	 * split, because we're only allowed to have MAX_LOCKDEP_SUBCLASSES
3689ca9d473aSJosef Bacik 	 * subclasses, which is 8 at the time of this patch, and we've maxed it
3690ca9d473aSJosef Bacik 	 * out.  In the future we could add a
3691ca9d473aSJosef Bacik 	 * BTRFS_NESTING_SPLIT_THE_SPLITTENING if we need to, but for now just
3692ca9d473aSJosef Bacik 	 * use BTRFS_NESTING_NEW_ROOT.
3693ca9d473aSJosef Bacik 	 */
369479bd3712SFilipe Manana 	right = btrfs_alloc_tree_block(trans, root, 0, root->root_key.objectid,
369579bd3712SFilipe Manana 				       &disk_key, 0, l->start, 0,
369679bd3712SFilipe Manana 				       num_doubles ? BTRFS_NESTING_NEW_ROOT :
3697ca9d473aSJosef Bacik 				       BTRFS_NESTING_SPLIT);
3698f0486c68SYan, Zheng 	if (IS_ERR(right))
369944871b1bSChris Mason 		return PTR_ERR(right);
3700f0486c68SYan, Zheng 
37010b246afaSJeff Mahoney 	root_add_used(root, fs_info->nodesize);
370244871b1bSChris Mason 
37035d4f98a2SYan Zheng 	if (split == 0) {
370444871b1bSChris Mason 		if (mid <= slot) {
370544871b1bSChris Mason 			btrfs_set_header_nritems(right, 0);
37066ad3cf6dSDavid Sterba 			insert_ptr(trans, path, &disk_key,
37072ff7e61eSJeff Mahoney 				   right->start, path->slots[1] + 1, 1);
370844871b1bSChris Mason 			btrfs_tree_unlock(path->nodes[0]);
370944871b1bSChris Mason 			free_extent_buffer(path->nodes[0]);
371044871b1bSChris Mason 			path->nodes[0] = right;
371144871b1bSChris Mason 			path->slots[0] = 0;
371244871b1bSChris Mason 			path->slots[1] += 1;
371344871b1bSChris Mason 		} else {
371444871b1bSChris Mason 			btrfs_set_header_nritems(right, 0);
37156ad3cf6dSDavid Sterba 			insert_ptr(trans, path, &disk_key,
37162ff7e61eSJeff Mahoney 				   right->start, path->slots[1], 1);
371744871b1bSChris Mason 			btrfs_tree_unlock(path->nodes[0]);
371844871b1bSChris Mason 			free_extent_buffer(path->nodes[0]);
371944871b1bSChris Mason 			path->nodes[0] = right;
372044871b1bSChris Mason 			path->slots[0] = 0;
3721143bede5SJeff Mahoney 			if (path->slots[1] == 0)
3722b167fa91SNikolay Borisov 				fixup_low_keys(path, &disk_key, 1);
37235d4f98a2SYan Zheng 		}
3724196e0249SLiu Bo 		/*
3725196e0249SLiu Bo 		 * We create a new leaf 'right' for the required ins_len and
3726196e0249SLiu Bo 		 * we'll do btrfs_mark_buffer_dirty() on this leaf after copying
3727196e0249SLiu Bo 		 * the content of ins_len to 'right'.
3728196e0249SLiu Bo 		 */
372944871b1bSChris Mason 		return ret;
373044871b1bSChris Mason 	}
373144871b1bSChris Mason 
373294f94ad9SDavid Sterba 	copy_for_split(trans, path, l, right, slot, mid, nritems);
373344871b1bSChris Mason 
37345d4f98a2SYan Zheng 	if (split == 2) {
3735cc0c5538SChris Mason 		BUG_ON(num_doubles != 0);
3736cc0c5538SChris Mason 		num_doubles++;
3737cc0c5538SChris Mason 		goto again;
37383326d1b0SChris Mason 	}
373944871b1bSChris Mason 
3740143bede5SJeff Mahoney 	return 0;
374199d8f83cSChris Mason 
374299d8f83cSChris Mason push_for_double:
374399d8f83cSChris Mason 	push_for_double_split(trans, root, path, data_size);
374499d8f83cSChris Mason 	tried_avoid_double = 1;
3745e902baacSDavid Sterba 	if (btrfs_leaf_free_space(path->nodes[0]) >= data_size)
374699d8f83cSChris Mason 		return 0;
374799d8f83cSChris Mason 	goto again;
3748be0e5c09SChris Mason }
3749be0e5c09SChris Mason 
3750ad48fd75SYan, Zheng static noinline int setup_leaf_for_split(struct btrfs_trans_handle *trans,
3751ad48fd75SYan, Zheng 					 struct btrfs_root *root,
3752ad48fd75SYan, Zheng 					 struct btrfs_path *path, int ins_len)
3753ad48fd75SYan, Zheng {
3754ad48fd75SYan, Zheng 	struct btrfs_key key;
3755ad48fd75SYan, Zheng 	struct extent_buffer *leaf;
3756ad48fd75SYan, Zheng 	struct btrfs_file_extent_item *fi;
3757ad48fd75SYan, Zheng 	u64 extent_len = 0;
3758ad48fd75SYan, Zheng 	u32 item_size;
3759ad48fd75SYan, Zheng 	int ret;
3760ad48fd75SYan, Zheng 
3761ad48fd75SYan, Zheng 	leaf = path->nodes[0];
3762ad48fd75SYan, Zheng 	btrfs_item_key_to_cpu(leaf, &key, path->slots[0]);
3763ad48fd75SYan, Zheng 
3764ad48fd75SYan, Zheng 	BUG_ON(key.type != BTRFS_EXTENT_DATA_KEY &&
3765ad48fd75SYan, Zheng 	       key.type != BTRFS_EXTENT_CSUM_KEY);
3766ad48fd75SYan, Zheng 
3767e902baacSDavid Sterba 	if (btrfs_leaf_free_space(leaf) >= ins_len)
3768ad48fd75SYan, Zheng 		return 0;
3769ad48fd75SYan, Zheng 
37703212fa14SJosef Bacik 	item_size = btrfs_item_size(leaf, path->slots[0]);
3771ad48fd75SYan, Zheng 	if (key.type == BTRFS_EXTENT_DATA_KEY) {
3772ad48fd75SYan, Zheng 		fi = btrfs_item_ptr(leaf, path->slots[0],
3773ad48fd75SYan, Zheng 				    struct btrfs_file_extent_item);
3774ad48fd75SYan, Zheng 		extent_len = btrfs_file_extent_num_bytes(leaf, fi);
3775ad48fd75SYan, Zheng 	}
3776b3b4aa74SDavid Sterba 	btrfs_release_path(path);
3777ad48fd75SYan, Zheng 
3778ad48fd75SYan, Zheng 	path->keep_locks = 1;
3779ad48fd75SYan, Zheng 	path->search_for_split = 1;
3780ad48fd75SYan, Zheng 	ret = btrfs_search_slot(trans, root, &key, path, 0, 1);
3781ad48fd75SYan, Zheng 	path->search_for_split = 0;
3782a8df6fe6SFilipe Manana 	if (ret > 0)
3783a8df6fe6SFilipe Manana 		ret = -EAGAIN;
3784ad48fd75SYan, Zheng 	if (ret < 0)
3785ad48fd75SYan, Zheng 		goto err;
3786ad48fd75SYan, Zheng 
3787ad48fd75SYan, Zheng 	ret = -EAGAIN;
3788ad48fd75SYan, Zheng 	leaf = path->nodes[0];
3789a8df6fe6SFilipe Manana 	/* if our item isn't there, return now */
37903212fa14SJosef Bacik 	if (item_size != btrfs_item_size(leaf, path->slots[0]))
3791ad48fd75SYan, Zheng 		goto err;
3792ad48fd75SYan, Zheng 
3793109f6aefSChris Mason 	/* the leaf has  changed, it now has room.  return now */
3794e902baacSDavid Sterba 	if (btrfs_leaf_free_space(path->nodes[0]) >= ins_len)
3795109f6aefSChris Mason 		goto err;
3796109f6aefSChris Mason 
3797ad48fd75SYan, Zheng 	if (key.type == BTRFS_EXTENT_DATA_KEY) {
3798ad48fd75SYan, Zheng 		fi = btrfs_item_ptr(leaf, path->slots[0],
3799ad48fd75SYan, Zheng 				    struct btrfs_file_extent_item);
3800ad48fd75SYan, Zheng 		if (extent_len != btrfs_file_extent_num_bytes(leaf, fi))
3801ad48fd75SYan, Zheng 			goto err;
3802ad48fd75SYan, Zheng 	}
3803ad48fd75SYan, Zheng 
3804ad48fd75SYan, Zheng 	ret = split_leaf(trans, root, &key, path, ins_len, 1);
3805f0486c68SYan, Zheng 	if (ret)
3806f0486c68SYan, Zheng 		goto err;
3807ad48fd75SYan, Zheng 
3808ad48fd75SYan, Zheng 	path->keep_locks = 0;
3809ad48fd75SYan, Zheng 	btrfs_unlock_up_safe(path, 1);
3810ad48fd75SYan, Zheng 	return 0;
3811ad48fd75SYan, Zheng err:
3812ad48fd75SYan, Zheng 	path->keep_locks = 0;
3813ad48fd75SYan, Zheng 	return ret;
3814ad48fd75SYan, Zheng }
3815ad48fd75SYan, Zheng 
381625263cd7SDavid Sterba static noinline int split_item(struct btrfs_path *path,
3817310712b2SOmar Sandoval 			       const struct btrfs_key *new_key,
3818459931ecSChris Mason 			       unsigned long split_offset)
3819459931ecSChris Mason {
3820459931ecSChris Mason 	struct extent_buffer *leaf;
3821c91666b1SJosef Bacik 	int orig_slot, slot;
3822ad48fd75SYan, Zheng 	char *buf;
3823459931ecSChris Mason 	u32 nritems;
3824ad48fd75SYan, Zheng 	u32 item_size;
3825459931ecSChris Mason 	u32 orig_offset;
3826459931ecSChris Mason 	struct btrfs_disk_key disk_key;
3827459931ecSChris Mason 
3828459931ecSChris Mason 	leaf = path->nodes[0];
3829e902baacSDavid Sterba 	BUG_ON(btrfs_leaf_free_space(leaf) < sizeof(struct btrfs_item));
3830b9473439SChris Mason 
3831c91666b1SJosef Bacik 	orig_slot = path->slots[0];
38323212fa14SJosef Bacik 	orig_offset = btrfs_item_offset(leaf, path->slots[0]);
38333212fa14SJosef Bacik 	item_size = btrfs_item_size(leaf, path->slots[0]);
3834459931ecSChris Mason 
3835459931ecSChris Mason 	buf = kmalloc(item_size, GFP_NOFS);
3836ad48fd75SYan, Zheng 	if (!buf)
3837ad48fd75SYan, Zheng 		return -ENOMEM;
3838ad48fd75SYan, Zheng 
3839459931ecSChris Mason 	read_extent_buffer(leaf, buf, btrfs_item_ptr_offset(leaf,
3840459931ecSChris Mason 			    path->slots[0]), item_size);
3841ad48fd75SYan, Zheng 
3842459931ecSChris Mason 	slot = path->slots[0] + 1;
3843459931ecSChris Mason 	nritems = btrfs_header_nritems(leaf);
3844459931ecSChris Mason 	if (slot != nritems) {
3845459931ecSChris Mason 		/* shift the items */
3846637e3b48SJosef Bacik 		memmove_leaf_items(leaf, slot + 1, slot, nritems - slot);
3847459931ecSChris Mason 	}
3848459931ecSChris Mason 
3849459931ecSChris Mason 	btrfs_cpu_key_to_disk(&disk_key, new_key);
3850459931ecSChris Mason 	btrfs_set_item_key(leaf, &disk_key, slot);
3851459931ecSChris Mason 
38523212fa14SJosef Bacik 	btrfs_set_item_offset(leaf, slot, orig_offset);
38533212fa14SJosef Bacik 	btrfs_set_item_size(leaf, slot, item_size - split_offset);
3854459931ecSChris Mason 
38553212fa14SJosef Bacik 	btrfs_set_item_offset(leaf, orig_slot,
3856459931ecSChris Mason 				 orig_offset + item_size - split_offset);
38573212fa14SJosef Bacik 	btrfs_set_item_size(leaf, orig_slot, split_offset);
3858459931ecSChris Mason 
3859459931ecSChris Mason 	btrfs_set_header_nritems(leaf, nritems + 1);
3860459931ecSChris Mason 
3861459931ecSChris Mason 	/* write the data for the start of the original item */
3862459931ecSChris Mason 	write_extent_buffer(leaf, buf,
3863459931ecSChris Mason 			    btrfs_item_ptr_offset(leaf, path->slots[0]),
3864459931ecSChris Mason 			    split_offset);
3865459931ecSChris Mason 
3866459931ecSChris Mason 	/* write the data for the new item */
3867459931ecSChris Mason 	write_extent_buffer(leaf, buf + split_offset,
3868459931ecSChris Mason 			    btrfs_item_ptr_offset(leaf, slot),
3869459931ecSChris Mason 			    item_size - split_offset);
3870459931ecSChris Mason 	btrfs_mark_buffer_dirty(leaf);
3871459931ecSChris Mason 
3872e902baacSDavid Sterba 	BUG_ON(btrfs_leaf_free_space(leaf) < 0);
3873459931ecSChris Mason 	kfree(buf);
3874ad48fd75SYan, Zheng 	return 0;
3875ad48fd75SYan, Zheng }
3876ad48fd75SYan, Zheng 
3877ad48fd75SYan, Zheng /*
3878ad48fd75SYan, Zheng  * This function splits a single item into two items,
3879ad48fd75SYan, Zheng  * giving 'new_key' to the new item and splitting the
3880ad48fd75SYan, Zheng  * old one at split_offset (from the start of the item).
3881ad48fd75SYan, Zheng  *
3882ad48fd75SYan, Zheng  * The path may be released by this operation.  After
3883ad48fd75SYan, Zheng  * the split, the path is pointing to the old item.  The
3884ad48fd75SYan, Zheng  * new item is going to be in the same node as the old one.
3885ad48fd75SYan, Zheng  *
3886ad48fd75SYan, Zheng  * Note, the item being split must be smaller enough to live alone on
3887ad48fd75SYan, Zheng  * a tree block with room for one extra struct btrfs_item
3888ad48fd75SYan, Zheng  *
3889ad48fd75SYan, Zheng  * This allows us to split the item in place, keeping a lock on the
3890ad48fd75SYan, Zheng  * leaf the entire time.
3891ad48fd75SYan, Zheng  */
3892ad48fd75SYan, Zheng int btrfs_split_item(struct btrfs_trans_handle *trans,
3893ad48fd75SYan, Zheng 		     struct btrfs_root *root,
3894ad48fd75SYan, Zheng 		     struct btrfs_path *path,
3895310712b2SOmar Sandoval 		     const struct btrfs_key *new_key,
3896ad48fd75SYan, Zheng 		     unsigned long split_offset)
3897ad48fd75SYan, Zheng {
3898ad48fd75SYan, Zheng 	int ret;
3899ad48fd75SYan, Zheng 	ret = setup_leaf_for_split(trans, root, path,
3900ad48fd75SYan, Zheng 				   sizeof(struct btrfs_item));
3901ad48fd75SYan, Zheng 	if (ret)
3902459931ecSChris Mason 		return ret;
3903ad48fd75SYan, Zheng 
390425263cd7SDavid Sterba 	ret = split_item(path, new_key, split_offset);
3905ad48fd75SYan, Zheng 	return ret;
3906ad48fd75SYan, Zheng }
3907ad48fd75SYan, Zheng 
3908ad48fd75SYan, Zheng /*
3909d352ac68SChris Mason  * make the item pointed to by the path smaller.  new_size indicates
3910d352ac68SChris Mason  * how small to make it, and from_end tells us if we just chop bytes
3911d352ac68SChris Mason  * off the end of the item or if we shift the item to chop bytes off
3912d352ac68SChris Mason  * the front.
3913d352ac68SChris Mason  */
391478ac4f9eSDavid Sterba void btrfs_truncate_item(struct btrfs_path *path, u32 new_size, int from_end)
3915b18c6685SChris Mason {
3916b18c6685SChris Mason 	int slot;
39175f39d397SChris Mason 	struct extent_buffer *leaf;
3918b18c6685SChris Mason 	u32 nritems;
3919b18c6685SChris Mason 	unsigned int data_end;
3920b18c6685SChris Mason 	unsigned int old_data_start;
3921b18c6685SChris Mason 	unsigned int old_size;
3922b18c6685SChris Mason 	unsigned int size_diff;
3923b18c6685SChris Mason 	int i;
3924cfed81a0SChris Mason 	struct btrfs_map_token token;
3925cfed81a0SChris Mason 
39265f39d397SChris Mason 	leaf = path->nodes[0];
3927179e29e4SChris Mason 	slot = path->slots[0];
3928179e29e4SChris Mason 
39293212fa14SJosef Bacik 	old_size = btrfs_item_size(leaf, slot);
3930179e29e4SChris Mason 	if (old_size == new_size)
3931143bede5SJeff Mahoney 		return;
3932b18c6685SChris Mason 
39335f39d397SChris Mason 	nritems = btrfs_header_nritems(leaf);
39348f881e8cSDavid Sterba 	data_end = leaf_data_end(leaf);
3935b18c6685SChris Mason 
39363212fa14SJosef Bacik 	old_data_start = btrfs_item_offset(leaf, slot);
3937179e29e4SChris Mason 
3938b18c6685SChris Mason 	size_diff = old_size - new_size;
3939b18c6685SChris Mason 
3940b18c6685SChris Mason 	BUG_ON(slot < 0);
3941b18c6685SChris Mason 	BUG_ON(slot >= nritems);
3942b18c6685SChris Mason 
3943b18c6685SChris Mason 	/*
3944b18c6685SChris Mason 	 * item0..itemN ... dataN.offset..dataN.size .. data0.size
3945b18c6685SChris Mason 	 */
3946b18c6685SChris Mason 	/* first correct the data pointers */
3947c82f823cSDavid Sterba 	btrfs_init_map_token(&token, leaf);
3948b18c6685SChris Mason 	for (i = slot; i < nritems; i++) {
39495f39d397SChris Mason 		u32 ioff;
3950db94535dSChris Mason 
39513212fa14SJosef Bacik 		ioff = btrfs_token_item_offset(&token, i);
39523212fa14SJosef Bacik 		btrfs_set_token_item_offset(&token, i, ioff + size_diff);
3953b18c6685SChris Mason 	}
3954db94535dSChris Mason 
3955b18c6685SChris Mason 	/* shift the data */
3956179e29e4SChris Mason 	if (from_end) {
3957637e3b48SJosef Bacik 		memmove_leaf_data(leaf, data_end + size_diff, data_end,
3958637e3b48SJosef Bacik 				  old_data_start + new_size - data_end);
3959179e29e4SChris Mason 	} else {
3960179e29e4SChris Mason 		struct btrfs_disk_key disk_key;
3961179e29e4SChris Mason 		u64 offset;
3962179e29e4SChris Mason 
3963179e29e4SChris Mason 		btrfs_item_key(leaf, &disk_key, slot);
3964179e29e4SChris Mason 
3965179e29e4SChris Mason 		if (btrfs_disk_key_type(&disk_key) == BTRFS_EXTENT_DATA_KEY) {
3966179e29e4SChris Mason 			unsigned long ptr;
3967179e29e4SChris Mason 			struct btrfs_file_extent_item *fi;
3968179e29e4SChris Mason 
3969179e29e4SChris Mason 			fi = btrfs_item_ptr(leaf, slot,
3970179e29e4SChris Mason 					    struct btrfs_file_extent_item);
3971179e29e4SChris Mason 			fi = (struct btrfs_file_extent_item *)(
3972179e29e4SChris Mason 			     (unsigned long)fi - size_diff);
3973179e29e4SChris Mason 
3974179e29e4SChris Mason 			if (btrfs_file_extent_type(leaf, fi) ==
3975179e29e4SChris Mason 			    BTRFS_FILE_EXTENT_INLINE) {
3976179e29e4SChris Mason 				ptr = btrfs_item_ptr_offset(leaf, slot);
3977179e29e4SChris Mason 				memmove_extent_buffer(leaf, ptr,
3978179e29e4SChris Mason 				      (unsigned long)fi,
39797ec20afbSDavid Sterba 				      BTRFS_FILE_EXTENT_INLINE_DATA_START);
3980179e29e4SChris Mason 			}
3981179e29e4SChris Mason 		}
3982179e29e4SChris Mason 
3983637e3b48SJosef Bacik 		memmove_leaf_data(leaf, data_end + size_diff, data_end,
3984637e3b48SJosef Bacik 				  old_data_start - data_end);
3985179e29e4SChris Mason 
3986179e29e4SChris Mason 		offset = btrfs_disk_key_offset(&disk_key);
3987179e29e4SChris Mason 		btrfs_set_disk_key_offset(&disk_key, offset + size_diff);
3988179e29e4SChris Mason 		btrfs_set_item_key(leaf, &disk_key, slot);
3989179e29e4SChris Mason 		if (slot == 0)
3990b167fa91SNikolay Borisov 			fixup_low_keys(path, &disk_key, 1);
3991179e29e4SChris Mason 	}
39925f39d397SChris Mason 
39933212fa14SJosef Bacik 	btrfs_set_item_size(leaf, slot, new_size);
39945f39d397SChris Mason 	btrfs_mark_buffer_dirty(leaf);
3995b18c6685SChris Mason 
3996e902baacSDavid Sterba 	if (btrfs_leaf_free_space(leaf) < 0) {
3997a4f78750SDavid Sterba 		btrfs_print_leaf(leaf);
3998b18c6685SChris Mason 		BUG();
39995f39d397SChris Mason 	}
4000b18c6685SChris Mason }
4001b18c6685SChris Mason 
4002d352ac68SChris Mason /*
40038f69dbd2SStefan Behrens  * make the item pointed to by the path bigger, data_size is the added size.
4004d352ac68SChris Mason  */
4005c71dd880SDavid Sterba void btrfs_extend_item(struct btrfs_path *path, u32 data_size)
40066567e837SChris Mason {
40076567e837SChris Mason 	int slot;
40085f39d397SChris Mason 	struct extent_buffer *leaf;
40096567e837SChris Mason 	u32 nritems;
40106567e837SChris Mason 	unsigned int data_end;
40116567e837SChris Mason 	unsigned int old_data;
40126567e837SChris Mason 	unsigned int old_size;
40136567e837SChris Mason 	int i;
4014cfed81a0SChris Mason 	struct btrfs_map_token token;
4015cfed81a0SChris Mason 
40165f39d397SChris Mason 	leaf = path->nodes[0];
40176567e837SChris Mason 
40185f39d397SChris Mason 	nritems = btrfs_header_nritems(leaf);
40198f881e8cSDavid Sterba 	data_end = leaf_data_end(leaf);
40206567e837SChris Mason 
4021e902baacSDavid Sterba 	if (btrfs_leaf_free_space(leaf) < data_size) {
4022a4f78750SDavid Sterba 		btrfs_print_leaf(leaf);
40236567e837SChris Mason 		BUG();
40245f39d397SChris Mason 	}
40256567e837SChris Mason 	slot = path->slots[0];
4026dc2e724eSJosef Bacik 	old_data = btrfs_item_data_end(leaf, slot);
40276567e837SChris Mason 
40286567e837SChris Mason 	BUG_ON(slot < 0);
40293326d1b0SChris Mason 	if (slot >= nritems) {
4030a4f78750SDavid Sterba 		btrfs_print_leaf(leaf);
4031c71dd880SDavid Sterba 		btrfs_crit(leaf->fs_info, "slot %d too large, nritems %d",
4032d397712bSChris Mason 			   slot, nritems);
4033290342f6SArnd Bergmann 		BUG();
40343326d1b0SChris Mason 	}
40356567e837SChris Mason 
40366567e837SChris Mason 	/*
40376567e837SChris Mason 	 * item0..itemN ... dataN.offset..dataN.size .. data0.size
40386567e837SChris Mason 	 */
40396567e837SChris Mason 	/* first correct the data pointers */
4040c82f823cSDavid Sterba 	btrfs_init_map_token(&token, leaf);
40416567e837SChris Mason 	for (i = slot; i < nritems; i++) {
40425f39d397SChris Mason 		u32 ioff;
4043db94535dSChris Mason 
40443212fa14SJosef Bacik 		ioff = btrfs_token_item_offset(&token, i);
40453212fa14SJosef Bacik 		btrfs_set_token_item_offset(&token, i, ioff - data_size);
40466567e837SChris Mason 	}
40475f39d397SChris Mason 
40486567e837SChris Mason 	/* shift the data */
4049637e3b48SJosef Bacik 	memmove_leaf_data(leaf, data_end - data_size, data_end,
4050637e3b48SJosef Bacik 			  old_data - data_end);
40515f39d397SChris Mason 
40526567e837SChris Mason 	data_end = old_data;
40533212fa14SJosef Bacik 	old_size = btrfs_item_size(leaf, slot);
40543212fa14SJosef Bacik 	btrfs_set_item_size(leaf, slot, old_size + data_size);
40555f39d397SChris Mason 	btrfs_mark_buffer_dirty(leaf);
40566567e837SChris Mason 
4057e902baacSDavid Sterba 	if (btrfs_leaf_free_space(leaf) < 0) {
4058a4f78750SDavid Sterba 		btrfs_print_leaf(leaf);
40596567e837SChris Mason 		BUG();
40605f39d397SChris Mason 	}
40616567e837SChris Mason }
40626567e837SChris Mason 
406343dd529aSDavid Sterba /*
406443dd529aSDavid Sterba  * Make space in the node before inserting one or more items.
4065da9ffb24SNikolay Borisov  *
4066da9ffb24SNikolay Borisov  * @root:	root we are inserting items to
4067da9ffb24SNikolay Borisov  * @path:	points to the leaf/slot where we are going to insert new items
4068b7ef5f3aSFilipe Manana  * @batch:      information about the batch of items to insert
406943dd529aSDavid Sterba  *
407043dd529aSDavid Sterba  * Main purpose is to save stack depth by doing the bulk of the work in a
407143dd529aSDavid Sterba  * function that doesn't call btrfs_search_slot
407274123bd7SChris Mason  */
4073f0641656SFilipe Manana static void setup_items_for_insert(struct btrfs_root *root, struct btrfs_path *path,
4074b7ef5f3aSFilipe Manana 				   const struct btrfs_item_batch *batch)
4075be0e5c09SChris Mason {
40760b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
40779c58309dSChris Mason 	int i;
40787518a238SChris Mason 	u32 nritems;
4079be0e5c09SChris Mason 	unsigned int data_end;
4080e2fa7227SChris Mason 	struct btrfs_disk_key disk_key;
408144871b1bSChris Mason 	struct extent_buffer *leaf;
408244871b1bSChris Mason 	int slot;
4083cfed81a0SChris Mason 	struct btrfs_map_token token;
4084fc0d82e1SNikolay Borisov 	u32 total_size;
4085fc0d82e1SNikolay Borisov 
4086b7ef5f3aSFilipe Manana 	/*
4087b7ef5f3aSFilipe Manana 	 * Before anything else, update keys in the parent and other ancestors
4088b7ef5f3aSFilipe Manana 	 * if needed, then release the write locks on them, so that other tasks
4089b7ef5f3aSFilipe Manana 	 * can use them while we modify the leaf.
4090b7ef5f3aSFilipe Manana 	 */
409124cdc847SFilipe Manana 	if (path->slots[0] == 0) {
4092b7ef5f3aSFilipe Manana 		btrfs_cpu_key_to_disk(&disk_key, &batch->keys[0]);
4093b167fa91SNikolay Borisov 		fixup_low_keys(path, &disk_key, 1);
409424cdc847SFilipe Manana 	}
409524cdc847SFilipe Manana 	btrfs_unlock_up_safe(path, 1);
409624cdc847SFilipe Manana 
40975f39d397SChris Mason 	leaf = path->nodes[0];
409844871b1bSChris Mason 	slot = path->slots[0];
409974123bd7SChris Mason 
41005f39d397SChris Mason 	nritems = btrfs_header_nritems(leaf);
41018f881e8cSDavid Sterba 	data_end = leaf_data_end(leaf);
4102b7ef5f3aSFilipe Manana 	total_size = batch->total_data_size + (batch->nr * sizeof(struct btrfs_item));
4103eb60ceacSChris Mason 
4104e902baacSDavid Sterba 	if (btrfs_leaf_free_space(leaf) < total_size) {
4105a4f78750SDavid Sterba 		btrfs_print_leaf(leaf);
41060b246afaSJeff Mahoney 		btrfs_crit(fs_info, "not enough freespace need %u have %d",
4107e902baacSDavid Sterba 			   total_size, btrfs_leaf_free_space(leaf));
4108be0e5c09SChris Mason 		BUG();
4109d4dbff95SChris Mason 	}
41105f39d397SChris Mason 
4111c82f823cSDavid Sterba 	btrfs_init_map_token(&token, leaf);
4112be0e5c09SChris Mason 	if (slot != nritems) {
4113dc2e724eSJosef Bacik 		unsigned int old_data = btrfs_item_data_end(leaf, slot);
4114be0e5c09SChris Mason 
41155f39d397SChris Mason 		if (old_data < data_end) {
4116a4f78750SDavid Sterba 			btrfs_print_leaf(leaf);
41177269ddd2SNikolay Borisov 			btrfs_crit(fs_info,
41187269ddd2SNikolay Borisov 		"item at slot %d with data offset %u beyond data end of leaf %u",
41195f39d397SChris Mason 				   slot, old_data, data_end);
4120290342f6SArnd Bergmann 			BUG();
41215f39d397SChris Mason 		}
4122be0e5c09SChris Mason 		/*
4123be0e5c09SChris Mason 		 * item0..itemN ... dataN.offset..dataN.size .. data0.size
4124be0e5c09SChris Mason 		 */
4125be0e5c09SChris Mason 		/* first correct the data pointers */
41260783fcfcSChris Mason 		for (i = slot; i < nritems; i++) {
41275f39d397SChris Mason 			u32 ioff;
4128db94535dSChris Mason 
41293212fa14SJosef Bacik 			ioff = btrfs_token_item_offset(&token, i);
41303212fa14SJosef Bacik 			btrfs_set_token_item_offset(&token, i,
4131b7ef5f3aSFilipe Manana 						       ioff - batch->total_data_size);
41320783fcfcSChris Mason 		}
4133be0e5c09SChris Mason 		/* shift the items */
4134637e3b48SJosef Bacik 		memmove_leaf_items(leaf, slot + batch->nr, slot, nritems - slot);
4135be0e5c09SChris Mason 
4136be0e5c09SChris Mason 		/* shift the data */
4137637e3b48SJosef Bacik 		memmove_leaf_data(leaf, data_end - batch->total_data_size,
4138637e3b48SJosef Bacik 				  data_end, old_data - data_end);
4139be0e5c09SChris Mason 		data_end = old_data;
4140be0e5c09SChris Mason 	}
41415f39d397SChris Mason 
414262e2749eSChris Mason 	/* setup the item for the new data */
4143b7ef5f3aSFilipe Manana 	for (i = 0; i < batch->nr; i++) {
4144b7ef5f3aSFilipe Manana 		btrfs_cpu_key_to_disk(&disk_key, &batch->keys[i]);
41459c58309dSChris Mason 		btrfs_set_item_key(leaf, &disk_key, slot + i);
4146b7ef5f3aSFilipe Manana 		data_end -= batch->data_sizes[i];
41473212fa14SJosef Bacik 		btrfs_set_token_item_offset(&token, slot + i, data_end);
41483212fa14SJosef Bacik 		btrfs_set_token_item_size(&token, slot + i, batch->data_sizes[i]);
41499c58309dSChris Mason 	}
415044871b1bSChris Mason 
4151b7ef5f3aSFilipe Manana 	btrfs_set_header_nritems(leaf, nritems + batch->nr);
4152b9473439SChris Mason 	btrfs_mark_buffer_dirty(leaf);
4153aa5d6bedSChris Mason 
4154e902baacSDavid Sterba 	if (btrfs_leaf_free_space(leaf) < 0) {
4155a4f78750SDavid Sterba 		btrfs_print_leaf(leaf);
4156be0e5c09SChris Mason 		BUG();
41575f39d397SChris Mason 	}
415844871b1bSChris Mason }
415944871b1bSChris Mason 
416044871b1bSChris Mason /*
4161f0641656SFilipe Manana  * Insert a new item into a leaf.
4162f0641656SFilipe Manana  *
4163f0641656SFilipe Manana  * @root:      The root of the btree.
4164f0641656SFilipe Manana  * @path:      A path pointing to the target leaf and slot.
4165f0641656SFilipe Manana  * @key:       The key of the new item.
4166f0641656SFilipe Manana  * @data_size: The size of the data associated with the new key.
4167f0641656SFilipe Manana  */
4168f0641656SFilipe Manana void btrfs_setup_item_for_insert(struct btrfs_root *root,
4169f0641656SFilipe Manana 				 struct btrfs_path *path,
4170f0641656SFilipe Manana 				 const struct btrfs_key *key,
4171f0641656SFilipe Manana 				 u32 data_size)
4172f0641656SFilipe Manana {
4173f0641656SFilipe Manana 	struct btrfs_item_batch batch;
4174f0641656SFilipe Manana 
4175f0641656SFilipe Manana 	batch.keys = key;
4176f0641656SFilipe Manana 	batch.data_sizes = &data_size;
4177f0641656SFilipe Manana 	batch.total_data_size = data_size;
4178f0641656SFilipe Manana 	batch.nr = 1;
4179f0641656SFilipe Manana 
4180f0641656SFilipe Manana 	setup_items_for_insert(root, path, &batch);
4181f0641656SFilipe Manana }
4182f0641656SFilipe Manana 
4183f0641656SFilipe Manana /*
418444871b1bSChris Mason  * Given a key and some data, insert items into the tree.
418544871b1bSChris Mason  * This does all the path init required, making room in the tree if needed.
418644871b1bSChris Mason  */
418744871b1bSChris Mason int btrfs_insert_empty_items(struct btrfs_trans_handle *trans,
418844871b1bSChris Mason 			    struct btrfs_root *root,
418944871b1bSChris Mason 			    struct btrfs_path *path,
4190b7ef5f3aSFilipe Manana 			    const struct btrfs_item_batch *batch)
419144871b1bSChris Mason {
419244871b1bSChris Mason 	int ret = 0;
419344871b1bSChris Mason 	int slot;
4194b7ef5f3aSFilipe Manana 	u32 total_size;
419544871b1bSChris Mason 
4196b7ef5f3aSFilipe Manana 	total_size = batch->total_data_size + (batch->nr * sizeof(struct btrfs_item));
4197b7ef5f3aSFilipe Manana 	ret = btrfs_search_slot(trans, root, &batch->keys[0], path, total_size, 1);
419844871b1bSChris Mason 	if (ret == 0)
419944871b1bSChris Mason 		return -EEXIST;
420044871b1bSChris Mason 	if (ret < 0)
4201143bede5SJeff Mahoney 		return ret;
420244871b1bSChris Mason 
420344871b1bSChris Mason 	slot = path->slots[0];
420444871b1bSChris Mason 	BUG_ON(slot < 0);
420544871b1bSChris Mason 
4206b7ef5f3aSFilipe Manana 	setup_items_for_insert(root, path, batch);
4207143bede5SJeff Mahoney 	return 0;
420862e2749eSChris Mason }
420962e2749eSChris Mason 
421062e2749eSChris Mason /*
421162e2749eSChris Mason  * Given a key and some data, insert an item into the tree.
421262e2749eSChris Mason  * This does all the path init required, making room in the tree if needed.
421362e2749eSChris Mason  */
4214310712b2SOmar Sandoval int btrfs_insert_item(struct btrfs_trans_handle *trans, struct btrfs_root *root,
4215310712b2SOmar Sandoval 		      const struct btrfs_key *cpu_key, void *data,
4216310712b2SOmar Sandoval 		      u32 data_size)
421762e2749eSChris Mason {
421862e2749eSChris Mason 	int ret = 0;
42192c90e5d6SChris Mason 	struct btrfs_path *path;
42205f39d397SChris Mason 	struct extent_buffer *leaf;
42215f39d397SChris Mason 	unsigned long ptr;
422262e2749eSChris Mason 
42232c90e5d6SChris Mason 	path = btrfs_alloc_path();
4224db5b493aSTsutomu Itoh 	if (!path)
4225db5b493aSTsutomu Itoh 		return -ENOMEM;
42262c90e5d6SChris Mason 	ret = btrfs_insert_empty_item(trans, root, path, cpu_key, data_size);
422762e2749eSChris Mason 	if (!ret) {
42285f39d397SChris Mason 		leaf = path->nodes[0];
42295f39d397SChris Mason 		ptr = btrfs_item_ptr_offset(leaf, path->slots[0]);
42305f39d397SChris Mason 		write_extent_buffer(leaf, data, ptr, data_size);
42315f39d397SChris Mason 		btrfs_mark_buffer_dirty(leaf);
423262e2749eSChris Mason 	}
42332c90e5d6SChris Mason 	btrfs_free_path(path);
4234aa5d6bedSChris Mason 	return ret;
4235be0e5c09SChris Mason }
4236be0e5c09SChris Mason 
423774123bd7SChris Mason /*
4238f0641656SFilipe Manana  * This function duplicates an item, giving 'new_key' to the new item.
4239f0641656SFilipe Manana  * It guarantees both items live in the same tree leaf and the new item is
4240f0641656SFilipe Manana  * contiguous with the original item.
4241f0641656SFilipe Manana  *
4242f0641656SFilipe Manana  * This allows us to split a file extent in place, keeping a lock on the leaf
4243f0641656SFilipe Manana  * the entire time.
4244f0641656SFilipe Manana  */
4245f0641656SFilipe Manana int btrfs_duplicate_item(struct btrfs_trans_handle *trans,
4246f0641656SFilipe Manana 			 struct btrfs_root *root,
4247f0641656SFilipe Manana 			 struct btrfs_path *path,
4248f0641656SFilipe Manana 			 const struct btrfs_key *new_key)
4249f0641656SFilipe Manana {
4250f0641656SFilipe Manana 	struct extent_buffer *leaf;
4251f0641656SFilipe Manana 	int ret;
4252f0641656SFilipe Manana 	u32 item_size;
4253f0641656SFilipe Manana 
4254f0641656SFilipe Manana 	leaf = path->nodes[0];
42553212fa14SJosef Bacik 	item_size = btrfs_item_size(leaf, path->slots[0]);
4256f0641656SFilipe Manana 	ret = setup_leaf_for_split(trans, root, path,
4257f0641656SFilipe Manana 				   item_size + sizeof(struct btrfs_item));
4258f0641656SFilipe Manana 	if (ret)
4259f0641656SFilipe Manana 		return ret;
4260f0641656SFilipe Manana 
4261f0641656SFilipe Manana 	path->slots[0]++;
4262f0641656SFilipe Manana 	btrfs_setup_item_for_insert(root, path, new_key, item_size);
4263f0641656SFilipe Manana 	leaf = path->nodes[0];
4264f0641656SFilipe Manana 	memcpy_extent_buffer(leaf,
4265f0641656SFilipe Manana 			     btrfs_item_ptr_offset(leaf, path->slots[0]),
4266f0641656SFilipe Manana 			     btrfs_item_ptr_offset(leaf, path->slots[0] - 1),
4267f0641656SFilipe Manana 			     item_size);
4268f0641656SFilipe Manana 	return 0;
4269f0641656SFilipe Manana }
4270f0641656SFilipe Manana 
4271f0641656SFilipe Manana /*
42725de08d7dSChris Mason  * delete the pointer from a given node.
427374123bd7SChris Mason  *
4274d352ac68SChris Mason  * the tree should have been previously balanced so the deletion does not
4275d352ac68SChris Mason  * empty a node.
427674123bd7SChris Mason  */
4277afe5fea7STsutomu Itoh static void del_ptr(struct btrfs_root *root, struct btrfs_path *path,
4278afe5fea7STsutomu Itoh 		    int level, int slot)
4279be0e5c09SChris Mason {
42805f39d397SChris Mason 	struct extent_buffer *parent = path->nodes[level];
42817518a238SChris Mason 	u32 nritems;
4282f3ea38daSJan Schmidt 	int ret;
4283be0e5c09SChris Mason 
42845f39d397SChris Mason 	nritems = btrfs_header_nritems(parent);
4285be0e5c09SChris Mason 	if (slot != nritems - 1) {
4286bf1d3425SDavid Sterba 		if (level) {
4287f3a84ccdSFilipe Manana 			ret = btrfs_tree_mod_log_insert_move(parent, slot,
4288f3a84ccdSFilipe Manana 					slot + 1, nritems - slot - 1);
4289bf1d3425SDavid Sterba 			BUG_ON(ret < 0);
4290bf1d3425SDavid Sterba 		}
42915f39d397SChris Mason 		memmove_extent_buffer(parent,
4292e23efd8eSJosef Bacik 			      btrfs_node_key_ptr_offset(parent, slot),
4293e23efd8eSJosef Bacik 			      btrfs_node_key_ptr_offset(parent, slot + 1),
4294d6025579SChris Mason 			      sizeof(struct btrfs_key_ptr) *
4295d6025579SChris Mason 			      (nritems - slot - 1));
429657ba86c0SChris Mason 	} else if (level) {
4297f3a84ccdSFilipe Manana 		ret = btrfs_tree_mod_log_insert_key(parent, slot,
429833cff222SFilipe Manana 						    BTRFS_MOD_LOG_KEY_REMOVE);
429957ba86c0SChris Mason 		BUG_ON(ret < 0);
4300be0e5c09SChris Mason 	}
4301f3ea38daSJan Schmidt 
43027518a238SChris Mason 	nritems--;
43035f39d397SChris Mason 	btrfs_set_header_nritems(parent, nritems);
43047518a238SChris Mason 	if (nritems == 0 && parent == root->node) {
43055f39d397SChris Mason 		BUG_ON(btrfs_header_level(root->node) != 1);
4306eb60ceacSChris Mason 		/* just turn the root into a leaf and break */
43075f39d397SChris Mason 		btrfs_set_header_level(root->node, 0);
4308bb803951SChris Mason 	} else if (slot == 0) {
43095f39d397SChris Mason 		struct btrfs_disk_key disk_key;
43105f39d397SChris Mason 
43115f39d397SChris Mason 		btrfs_node_key(parent, &disk_key, 0);
4312b167fa91SNikolay Borisov 		fixup_low_keys(path, &disk_key, level + 1);
4313be0e5c09SChris Mason 	}
4314d6025579SChris Mason 	btrfs_mark_buffer_dirty(parent);
4315be0e5c09SChris Mason }
4316be0e5c09SChris Mason 
431774123bd7SChris Mason /*
4318323ac95bSChris Mason  * a helper function to delete the leaf pointed to by path->slots[1] and
43195d4f98a2SYan Zheng  * path->nodes[1].
4320323ac95bSChris Mason  *
4321323ac95bSChris Mason  * This deletes the pointer in path->nodes[1] and frees the leaf
4322323ac95bSChris Mason  * block extent.  zero is returned if it all worked out, < 0 otherwise.
4323323ac95bSChris Mason  *
4324323ac95bSChris Mason  * The path must have already been setup for deleting the leaf, including
4325323ac95bSChris Mason  * all the proper balancing.  path->nodes[1] must be locked.
4326323ac95bSChris Mason  */
4327143bede5SJeff Mahoney static noinline void btrfs_del_leaf(struct btrfs_trans_handle *trans,
4328323ac95bSChris Mason 				    struct btrfs_root *root,
43295d4f98a2SYan Zheng 				    struct btrfs_path *path,
43305d4f98a2SYan Zheng 				    struct extent_buffer *leaf)
4331323ac95bSChris Mason {
43325d4f98a2SYan Zheng 	WARN_ON(btrfs_header_generation(leaf) != trans->transid);
4333afe5fea7STsutomu Itoh 	del_ptr(root, path, 1, path->slots[1]);
4334323ac95bSChris Mason 
43354d081c41SChris Mason 	/*
43364d081c41SChris Mason 	 * btrfs_free_extent is expensive, we want to make sure we
43374d081c41SChris Mason 	 * aren't holding any locks when we call it
43384d081c41SChris Mason 	 */
43394d081c41SChris Mason 	btrfs_unlock_up_safe(path, 0);
43404d081c41SChris Mason 
4341f0486c68SYan, Zheng 	root_sub_used(root, leaf->len);
4342f0486c68SYan, Zheng 
434367439dadSDavid Sterba 	atomic_inc(&leaf->refs);
43447a163608SFilipe Manana 	btrfs_free_tree_block(trans, btrfs_root_id(root), leaf, 0, 1);
43453083ee2eSJosef Bacik 	free_extent_buffer_stale(leaf);
4346323ac95bSChris Mason }
4347323ac95bSChris Mason /*
434874123bd7SChris Mason  * delete the item at the leaf level in path.  If that empties
434974123bd7SChris Mason  * the leaf, remove it from the tree
435074123bd7SChris Mason  */
435185e21bacSChris Mason int btrfs_del_items(struct btrfs_trans_handle *trans, struct btrfs_root *root,
435285e21bacSChris Mason 		    struct btrfs_path *path, int slot, int nr)
4353be0e5c09SChris Mason {
43540b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
43555f39d397SChris Mason 	struct extent_buffer *leaf;
4356aa5d6bedSChris Mason 	int ret = 0;
4357aa5d6bedSChris Mason 	int wret;
43587518a238SChris Mason 	u32 nritems;
4359be0e5c09SChris Mason 
43605f39d397SChris Mason 	leaf = path->nodes[0];
43615f39d397SChris Mason 	nritems = btrfs_header_nritems(leaf);
4362be0e5c09SChris Mason 
436385e21bacSChris Mason 	if (slot + nr != nritems) {
43640cae23b6SFilipe Manana 		const u32 last_off = btrfs_item_offset(leaf, slot + nr - 1);
43650cae23b6SFilipe Manana 		const int data_end = leaf_data_end(leaf);
4366c82f823cSDavid Sterba 		struct btrfs_map_token token;
43670cae23b6SFilipe Manana 		u32 dsize = 0;
43680cae23b6SFilipe Manana 		int i;
43690cae23b6SFilipe Manana 
43700cae23b6SFilipe Manana 		for (i = 0; i < nr; i++)
43710cae23b6SFilipe Manana 			dsize += btrfs_item_size(leaf, slot + i);
43725f39d397SChris Mason 
4373637e3b48SJosef Bacik 		memmove_leaf_data(leaf, data_end + dsize, data_end,
437485e21bacSChris Mason 				  last_off - data_end);
43755f39d397SChris Mason 
4376c82f823cSDavid Sterba 		btrfs_init_map_token(&token, leaf);
437785e21bacSChris Mason 		for (i = slot + nr; i < nritems; i++) {
43785f39d397SChris Mason 			u32 ioff;
4379db94535dSChris Mason 
43803212fa14SJosef Bacik 			ioff = btrfs_token_item_offset(&token, i);
43813212fa14SJosef Bacik 			btrfs_set_token_item_offset(&token, i, ioff + dsize);
43820783fcfcSChris Mason 		}
4383db94535dSChris Mason 
4384637e3b48SJosef Bacik 		memmove_leaf_items(leaf, slot, slot + nr, nritems - slot - nr);
4385be0e5c09SChris Mason 	}
438685e21bacSChris Mason 	btrfs_set_header_nritems(leaf, nritems - nr);
438785e21bacSChris Mason 	nritems -= nr;
43885f39d397SChris Mason 
438974123bd7SChris Mason 	/* delete the leaf if we've emptied it */
43907518a238SChris Mason 	if (nritems == 0) {
43915f39d397SChris Mason 		if (leaf == root->node) {
43925f39d397SChris Mason 			btrfs_set_header_level(leaf, 0);
43939a8dd150SChris Mason 		} else {
4394190a8339SJosef Bacik 			btrfs_clear_buffer_dirty(trans, leaf);
4395143bede5SJeff Mahoney 			btrfs_del_leaf(trans, root, path, leaf);
43969a8dd150SChris Mason 		}
4397be0e5c09SChris Mason 	} else {
43987518a238SChris Mason 		int used = leaf_space_used(leaf, 0, nritems);
4399aa5d6bedSChris Mason 		if (slot == 0) {
44005f39d397SChris Mason 			struct btrfs_disk_key disk_key;
44015f39d397SChris Mason 
44025f39d397SChris Mason 			btrfs_item_key(leaf, &disk_key, 0);
4403b167fa91SNikolay Borisov 			fixup_low_keys(path, &disk_key, 1);
4404aa5d6bedSChris Mason 		}
4405aa5d6bedSChris Mason 
44067c4063d1SFilipe Manana 		/*
44077c4063d1SFilipe Manana 		 * Try to delete the leaf if it is mostly empty. We do this by
44087c4063d1SFilipe Manana 		 * trying to move all its items into its left and right neighbours.
44097c4063d1SFilipe Manana 		 * If we can't move all the items, then we don't delete it - it's
44107c4063d1SFilipe Manana 		 * not ideal, but future insertions might fill the leaf with more
44117c4063d1SFilipe Manana 		 * items, or items from other leaves might be moved later into our
44127c4063d1SFilipe Manana 		 * leaf due to deletions on those leaves.
44137c4063d1SFilipe Manana 		 */
44140b246afaSJeff Mahoney 		if (used < BTRFS_LEAF_DATA_SIZE(fs_info) / 3) {
44157c4063d1SFilipe Manana 			u32 min_push_space;
44167c4063d1SFilipe Manana 
4417be0e5c09SChris Mason 			/* push_leaf_left fixes the path.
4418be0e5c09SChris Mason 			 * make sure the path still points to our leaf
4419be0e5c09SChris Mason 			 * for possible call to del_ptr below
4420be0e5c09SChris Mason 			 */
44214920c9acSChris Mason 			slot = path->slots[1];
442267439dadSDavid Sterba 			atomic_inc(&leaf->refs);
44237c4063d1SFilipe Manana 			/*
44247c4063d1SFilipe Manana 			 * We want to be able to at least push one item to the
44257c4063d1SFilipe Manana 			 * left neighbour leaf, and that's the first item.
44267c4063d1SFilipe Manana 			 */
44277c4063d1SFilipe Manana 			min_push_space = sizeof(struct btrfs_item) +
44287c4063d1SFilipe Manana 				btrfs_item_size(leaf, 0);
44297c4063d1SFilipe Manana 			wret = push_leaf_left(trans, root, path, 0,
44307c4063d1SFilipe Manana 					      min_push_space, 1, (u32)-1);
443154aa1f4dSChris Mason 			if (wret < 0 && wret != -ENOSPC)
4432aa5d6bedSChris Mason 				ret = wret;
44335f39d397SChris Mason 
44345f39d397SChris Mason 			if (path->nodes[0] == leaf &&
44355f39d397SChris Mason 			    btrfs_header_nritems(leaf)) {
44367c4063d1SFilipe Manana 				/*
44377c4063d1SFilipe Manana 				 * If we were not able to push all items from our
44387c4063d1SFilipe Manana 				 * leaf to its left neighbour, then attempt to
44397c4063d1SFilipe Manana 				 * either push all the remaining items to the
44407c4063d1SFilipe Manana 				 * right neighbour or none. There's no advantage
44417c4063d1SFilipe Manana 				 * in pushing only some items, instead of all, as
44427c4063d1SFilipe Manana 				 * it's pointless to end up with a leaf having
44437c4063d1SFilipe Manana 				 * too few items while the neighbours can be full
44447c4063d1SFilipe Manana 				 * or nearly full.
44457c4063d1SFilipe Manana 				 */
44467c4063d1SFilipe Manana 				nritems = btrfs_header_nritems(leaf);
44477c4063d1SFilipe Manana 				min_push_space = leaf_space_used(leaf, 0, nritems);
44487c4063d1SFilipe Manana 				wret = push_leaf_right(trans, root, path, 0,
44497c4063d1SFilipe Manana 						       min_push_space, 1, 0);
445054aa1f4dSChris Mason 				if (wret < 0 && wret != -ENOSPC)
4451aa5d6bedSChris Mason 					ret = wret;
4452aa5d6bedSChris Mason 			}
44535f39d397SChris Mason 
44545f39d397SChris Mason 			if (btrfs_header_nritems(leaf) == 0) {
4455323ac95bSChris Mason 				path->slots[1] = slot;
4456143bede5SJeff Mahoney 				btrfs_del_leaf(trans, root, path, leaf);
44575f39d397SChris Mason 				free_extent_buffer(leaf);
4458143bede5SJeff Mahoney 				ret = 0;
44595de08d7dSChris Mason 			} else {
4460925baeddSChris Mason 				/* if we're still in the path, make sure
4461925baeddSChris Mason 				 * we're dirty.  Otherwise, one of the
4462925baeddSChris Mason 				 * push_leaf functions must have already
4463925baeddSChris Mason 				 * dirtied this buffer
4464925baeddSChris Mason 				 */
4465925baeddSChris Mason 				if (path->nodes[0] == leaf)
44665f39d397SChris Mason 					btrfs_mark_buffer_dirty(leaf);
44675f39d397SChris Mason 				free_extent_buffer(leaf);
4468be0e5c09SChris Mason 			}
4469d5719762SChris Mason 		} else {
44705f39d397SChris Mason 			btrfs_mark_buffer_dirty(leaf);
4471be0e5c09SChris Mason 		}
44729a8dd150SChris Mason 	}
4473aa5d6bedSChris Mason 	return ret;
44749a8dd150SChris Mason }
44759a8dd150SChris Mason 
447697571fd0SChris Mason /*
4477925baeddSChris Mason  * search the tree again to find a leaf with lesser keys
44787bb86316SChris Mason  * returns 0 if it found something or 1 if there are no lesser leaves.
44797bb86316SChris Mason  * returns < 0 on io errors.
4480d352ac68SChris Mason  *
4481d352ac68SChris Mason  * This may release the path, and so you may lose any locks held at the
4482d352ac68SChris Mason  * time you call it.
44837bb86316SChris Mason  */
448416e7549fSJosef Bacik int btrfs_prev_leaf(struct btrfs_root *root, struct btrfs_path *path)
44857bb86316SChris Mason {
4486925baeddSChris Mason 	struct btrfs_key key;
44876f932d4eSFilipe Manana 	struct btrfs_key orig_key;
4488925baeddSChris Mason 	struct btrfs_disk_key found_key;
4489925baeddSChris Mason 	int ret;
44907bb86316SChris Mason 
4491925baeddSChris Mason 	btrfs_item_key_to_cpu(path->nodes[0], &key, 0);
44926f932d4eSFilipe Manana 	orig_key = key;
4493925baeddSChris Mason 
4494e8b0d724SFilipe David Borba Manana 	if (key.offset > 0) {
4495925baeddSChris Mason 		key.offset--;
4496e8b0d724SFilipe David Borba Manana 	} else if (key.type > 0) {
4497925baeddSChris Mason 		key.type--;
4498e8b0d724SFilipe David Borba Manana 		key.offset = (u64)-1;
4499e8b0d724SFilipe David Borba Manana 	} else if (key.objectid > 0) {
4500925baeddSChris Mason 		key.objectid--;
4501e8b0d724SFilipe David Borba Manana 		key.type = (u8)-1;
4502e8b0d724SFilipe David Borba Manana 		key.offset = (u64)-1;
4503e8b0d724SFilipe David Borba Manana 	} else {
45047bb86316SChris Mason 		return 1;
4505e8b0d724SFilipe David Borba Manana 	}
45067bb86316SChris Mason 
4507b3b4aa74SDavid Sterba 	btrfs_release_path(path);
4508925baeddSChris Mason 	ret = btrfs_search_slot(NULL, root, &key, path, 0, 0);
45096f932d4eSFilipe Manana 	if (ret <= 0)
4510925baeddSChris Mason 		return ret;
45116f932d4eSFilipe Manana 
45126f932d4eSFilipe Manana 	/*
45136f932d4eSFilipe Manana 	 * Previous key not found. Even if we were at slot 0 of the leaf we had
45146f932d4eSFilipe Manana 	 * before releasing the path and calling btrfs_search_slot(), we now may
45156f932d4eSFilipe Manana 	 * be in a slot pointing to the same original key - this can happen if
45166f932d4eSFilipe Manana 	 * after we released the path, one of more items were moved from a
45176f932d4eSFilipe Manana 	 * sibling leaf into the front of the leaf we had due to an insertion
45186f932d4eSFilipe Manana 	 * (see push_leaf_right()).
45196f932d4eSFilipe Manana 	 * If we hit this case and our slot is > 0 and just decrement the slot
45206f932d4eSFilipe Manana 	 * so that the caller does not process the same key again, which may or
45216f932d4eSFilipe Manana 	 * may not break the caller, depending on its logic.
45226f932d4eSFilipe Manana 	 */
45236f932d4eSFilipe Manana 	if (path->slots[0] < btrfs_header_nritems(path->nodes[0])) {
45246f932d4eSFilipe Manana 		btrfs_item_key(path->nodes[0], &found_key, path->slots[0]);
45256f932d4eSFilipe Manana 		ret = comp_keys(&found_key, &orig_key);
45266f932d4eSFilipe Manana 		if (ret == 0) {
45276f932d4eSFilipe Manana 			if (path->slots[0] > 0) {
45286f932d4eSFilipe Manana 				path->slots[0]--;
45296f932d4eSFilipe Manana 				return 0;
45306f932d4eSFilipe Manana 			}
45316f932d4eSFilipe Manana 			/*
45326f932d4eSFilipe Manana 			 * At slot 0, same key as before, it means orig_key is
45336f932d4eSFilipe Manana 			 * the lowest, leftmost, key in the tree. We're done.
45346f932d4eSFilipe Manana 			 */
45356f932d4eSFilipe Manana 			return 1;
45366f932d4eSFilipe Manana 		}
45376f932d4eSFilipe Manana 	}
45386f932d4eSFilipe Manana 
4539925baeddSChris Mason 	btrfs_item_key(path->nodes[0], &found_key, 0);
4540925baeddSChris Mason 	ret = comp_keys(&found_key, &key);
4541337c6f68SFilipe Manana 	/*
4542337c6f68SFilipe Manana 	 * We might have had an item with the previous key in the tree right
4543337c6f68SFilipe Manana 	 * before we released our path. And after we released our path, that
4544337c6f68SFilipe Manana 	 * item might have been pushed to the first slot (0) of the leaf we
4545337c6f68SFilipe Manana 	 * were holding due to a tree balance. Alternatively, an item with the
4546337c6f68SFilipe Manana 	 * previous key can exist as the only element of a leaf (big fat item).
4547337c6f68SFilipe Manana 	 * Therefore account for these 2 cases, so that our callers (like
4548337c6f68SFilipe Manana 	 * btrfs_previous_item) don't miss an existing item with a key matching
4549337c6f68SFilipe Manana 	 * the previous key we computed above.
4550337c6f68SFilipe Manana 	 */
4551337c6f68SFilipe Manana 	if (ret <= 0)
45527bb86316SChris Mason 		return 0;
4553925baeddSChris Mason 	return 1;
45547bb86316SChris Mason }
45557bb86316SChris Mason 
45563f157a2fSChris Mason /*
45573f157a2fSChris Mason  * A helper function to walk down the tree starting at min_key, and looking
4558de78b51aSEric Sandeen  * for nodes or leaves that are have a minimum transaction id.
4559de78b51aSEric Sandeen  * This is used by the btree defrag code, and tree logging
45603f157a2fSChris Mason  *
45613f157a2fSChris Mason  * This does not cow, but it does stuff the starting key it finds back
45623f157a2fSChris Mason  * into min_key, so you can call btrfs_search_slot with cow=1 on the
45633f157a2fSChris Mason  * key and get a writable path.
45643f157a2fSChris Mason  *
45653f157a2fSChris Mason  * This honors path->lowest_level to prevent descent past a given level
45663f157a2fSChris Mason  * of the tree.
45673f157a2fSChris Mason  *
4568d352ac68SChris Mason  * min_trans indicates the oldest transaction that you are interested
4569d352ac68SChris Mason  * in walking through.  Any nodes or leaves older than min_trans are
4570d352ac68SChris Mason  * skipped over (without reading them).
4571d352ac68SChris Mason  *
45723f157a2fSChris Mason  * returns zero if something useful was found, < 0 on error and 1 if there
45733f157a2fSChris Mason  * was nothing in the tree that matched the search criteria.
45743f157a2fSChris Mason  */
45753f157a2fSChris Mason int btrfs_search_forward(struct btrfs_root *root, struct btrfs_key *min_key,
4576de78b51aSEric Sandeen 			 struct btrfs_path *path,
45773f157a2fSChris Mason 			 u64 min_trans)
45783f157a2fSChris Mason {
45793f157a2fSChris Mason 	struct extent_buffer *cur;
45803f157a2fSChris Mason 	struct btrfs_key found_key;
45813f157a2fSChris Mason 	int slot;
45829652480bSYan 	int sret;
45833f157a2fSChris Mason 	u32 nritems;
45843f157a2fSChris Mason 	int level;
45853f157a2fSChris Mason 	int ret = 1;
4586f98de9b9SFilipe Manana 	int keep_locks = path->keep_locks;
45873f157a2fSChris Mason 
4588c922b016SStefan Roesch 	ASSERT(!path->nowait);
4589f98de9b9SFilipe Manana 	path->keep_locks = 1;
45903f157a2fSChris Mason again:
4591bd681513SChris Mason 	cur = btrfs_read_lock_root_node(root);
45923f157a2fSChris Mason 	level = btrfs_header_level(cur);
4593e02119d5SChris Mason 	WARN_ON(path->nodes[level]);
45943f157a2fSChris Mason 	path->nodes[level] = cur;
4595bd681513SChris Mason 	path->locks[level] = BTRFS_READ_LOCK;
45963f157a2fSChris Mason 
45973f157a2fSChris Mason 	if (btrfs_header_generation(cur) < min_trans) {
45983f157a2fSChris Mason 		ret = 1;
45993f157a2fSChris Mason 		goto out;
46003f157a2fSChris Mason 	}
46013f157a2fSChris Mason 	while (1) {
46023f157a2fSChris Mason 		nritems = btrfs_header_nritems(cur);
46033f157a2fSChris Mason 		level = btrfs_header_level(cur);
4604fdf8d595SAnand Jain 		sret = btrfs_bin_search(cur, 0, min_key, &slot);
4605cbca7d59SFilipe Manana 		if (sret < 0) {
4606cbca7d59SFilipe Manana 			ret = sret;
4607cbca7d59SFilipe Manana 			goto out;
4608cbca7d59SFilipe Manana 		}
46093f157a2fSChris Mason 
4610323ac95bSChris Mason 		/* at the lowest level, we're done, setup the path and exit */
4611323ac95bSChris Mason 		if (level == path->lowest_level) {
4612e02119d5SChris Mason 			if (slot >= nritems)
4613e02119d5SChris Mason 				goto find_next_key;
46143f157a2fSChris Mason 			ret = 0;
46153f157a2fSChris Mason 			path->slots[level] = slot;
46163f157a2fSChris Mason 			btrfs_item_key_to_cpu(cur, &found_key, slot);
46173f157a2fSChris Mason 			goto out;
46183f157a2fSChris Mason 		}
46199652480bSYan 		if (sret && slot > 0)
46209652480bSYan 			slot--;
46213f157a2fSChris Mason 		/*
4622de78b51aSEric Sandeen 		 * check this node pointer against the min_trans parameters.
4623260db43cSRandy Dunlap 		 * If it is too old, skip to the next one.
46243f157a2fSChris Mason 		 */
46253f157a2fSChris Mason 		while (slot < nritems) {
46263f157a2fSChris Mason 			u64 gen;
4627e02119d5SChris Mason 
46283f157a2fSChris Mason 			gen = btrfs_node_ptr_generation(cur, slot);
46293f157a2fSChris Mason 			if (gen < min_trans) {
46303f157a2fSChris Mason 				slot++;
46313f157a2fSChris Mason 				continue;
46323f157a2fSChris Mason 			}
46333f157a2fSChris Mason 			break;
46343f157a2fSChris Mason 		}
4635e02119d5SChris Mason find_next_key:
46363f157a2fSChris Mason 		/*
46373f157a2fSChris Mason 		 * we didn't find a candidate key in this node, walk forward
46383f157a2fSChris Mason 		 * and find another one
46393f157a2fSChris Mason 		 */
46403f157a2fSChris Mason 		if (slot >= nritems) {
4641e02119d5SChris Mason 			path->slots[level] = slot;
4642e02119d5SChris Mason 			sret = btrfs_find_next_key(root, path, min_key, level,
4643de78b51aSEric Sandeen 						  min_trans);
4644e02119d5SChris Mason 			if (sret == 0) {
4645b3b4aa74SDavid Sterba 				btrfs_release_path(path);
46463f157a2fSChris Mason 				goto again;
46473f157a2fSChris Mason 			} else {
46483f157a2fSChris Mason 				goto out;
46493f157a2fSChris Mason 			}
46503f157a2fSChris Mason 		}
46513f157a2fSChris Mason 		/* save our key for returning back */
46523f157a2fSChris Mason 		btrfs_node_key_to_cpu(cur, &found_key, slot);
46533f157a2fSChris Mason 		path->slots[level] = slot;
46543f157a2fSChris Mason 		if (level == path->lowest_level) {
46553f157a2fSChris Mason 			ret = 0;
46563f157a2fSChris Mason 			goto out;
46573f157a2fSChris Mason 		}
46584b231ae4SDavid Sterba 		cur = btrfs_read_node_slot(cur, slot);
4659fb770ae4SLiu Bo 		if (IS_ERR(cur)) {
4660fb770ae4SLiu Bo 			ret = PTR_ERR(cur);
4661fb770ae4SLiu Bo 			goto out;
4662fb770ae4SLiu Bo 		}
46633f157a2fSChris Mason 
4664bd681513SChris Mason 		btrfs_tree_read_lock(cur);
4665b4ce94deSChris Mason 
4666bd681513SChris Mason 		path->locks[level - 1] = BTRFS_READ_LOCK;
46673f157a2fSChris Mason 		path->nodes[level - 1] = cur;
4668f7c79f30SChris Mason 		unlock_up(path, level, 1, 0, NULL);
46693f157a2fSChris Mason 	}
46703f157a2fSChris Mason out:
4671f98de9b9SFilipe Manana 	path->keep_locks = keep_locks;
4672f98de9b9SFilipe Manana 	if (ret == 0) {
4673f98de9b9SFilipe Manana 		btrfs_unlock_up_safe(path, path->lowest_level + 1);
4674f98de9b9SFilipe Manana 		memcpy(min_key, &found_key, sizeof(found_key));
4675f98de9b9SFilipe Manana 	}
46763f157a2fSChris Mason 	return ret;
46773f157a2fSChris Mason }
46783f157a2fSChris Mason 
46793f157a2fSChris Mason /*
46803f157a2fSChris Mason  * this is similar to btrfs_next_leaf, but does not try to preserve
46813f157a2fSChris Mason  * and fixup the path.  It looks for and returns the next key in the
4682de78b51aSEric Sandeen  * tree based on the current path and the min_trans parameters.
46833f157a2fSChris Mason  *
46843f157a2fSChris Mason  * 0 is returned if another key is found, < 0 if there are any errors
46853f157a2fSChris Mason  * and 1 is returned if there are no higher keys in the tree
46863f157a2fSChris Mason  *
46873f157a2fSChris Mason  * path->keep_locks should be set to 1 on the search made before
46883f157a2fSChris Mason  * calling this function.
46893f157a2fSChris Mason  */
4690e7a84565SChris Mason int btrfs_find_next_key(struct btrfs_root *root, struct btrfs_path *path,
4691de78b51aSEric Sandeen 			struct btrfs_key *key, int level, u64 min_trans)
4692e7a84565SChris Mason {
4693e7a84565SChris Mason 	int slot;
4694e7a84565SChris Mason 	struct extent_buffer *c;
4695e7a84565SChris Mason 
46966a9fb468SJosef Bacik 	WARN_ON(!path->keep_locks && !path->skip_locking);
4697e7a84565SChris Mason 	while (level < BTRFS_MAX_LEVEL) {
4698e7a84565SChris Mason 		if (!path->nodes[level])
4699e7a84565SChris Mason 			return 1;
4700e7a84565SChris Mason 
4701e7a84565SChris Mason 		slot = path->slots[level] + 1;
4702e7a84565SChris Mason 		c = path->nodes[level];
47033f157a2fSChris Mason next:
4704e7a84565SChris Mason 		if (slot >= btrfs_header_nritems(c)) {
470533c66f43SYan Zheng 			int ret;
470633c66f43SYan Zheng 			int orig_lowest;
470733c66f43SYan Zheng 			struct btrfs_key cur_key;
470833c66f43SYan Zheng 			if (level + 1 >= BTRFS_MAX_LEVEL ||
470933c66f43SYan Zheng 			    !path->nodes[level + 1])
4710e7a84565SChris Mason 				return 1;
471133c66f43SYan Zheng 
47126a9fb468SJosef Bacik 			if (path->locks[level + 1] || path->skip_locking) {
471333c66f43SYan Zheng 				level++;
4714e7a84565SChris Mason 				continue;
4715e7a84565SChris Mason 			}
471633c66f43SYan Zheng 
471733c66f43SYan Zheng 			slot = btrfs_header_nritems(c) - 1;
471833c66f43SYan Zheng 			if (level == 0)
471933c66f43SYan Zheng 				btrfs_item_key_to_cpu(c, &cur_key, slot);
472033c66f43SYan Zheng 			else
472133c66f43SYan Zheng 				btrfs_node_key_to_cpu(c, &cur_key, slot);
472233c66f43SYan Zheng 
472333c66f43SYan Zheng 			orig_lowest = path->lowest_level;
4724b3b4aa74SDavid Sterba 			btrfs_release_path(path);
472533c66f43SYan Zheng 			path->lowest_level = level;
472633c66f43SYan Zheng 			ret = btrfs_search_slot(NULL, root, &cur_key, path,
472733c66f43SYan Zheng 						0, 0);
472833c66f43SYan Zheng 			path->lowest_level = orig_lowest;
472933c66f43SYan Zheng 			if (ret < 0)
473033c66f43SYan Zheng 				return ret;
473133c66f43SYan Zheng 
473233c66f43SYan Zheng 			c = path->nodes[level];
473333c66f43SYan Zheng 			slot = path->slots[level];
473433c66f43SYan Zheng 			if (ret == 0)
473533c66f43SYan Zheng 				slot++;
473633c66f43SYan Zheng 			goto next;
473733c66f43SYan Zheng 		}
473833c66f43SYan Zheng 
4739e7a84565SChris Mason 		if (level == 0)
4740e7a84565SChris Mason 			btrfs_item_key_to_cpu(c, key, slot);
47413f157a2fSChris Mason 		else {
47423f157a2fSChris Mason 			u64 gen = btrfs_node_ptr_generation(c, slot);
47433f157a2fSChris Mason 
47443f157a2fSChris Mason 			if (gen < min_trans) {
47453f157a2fSChris Mason 				slot++;
47463f157a2fSChris Mason 				goto next;
47473f157a2fSChris Mason 			}
4748e7a84565SChris Mason 			btrfs_node_key_to_cpu(c, key, slot);
47493f157a2fSChris Mason 		}
4750e7a84565SChris Mason 		return 0;
4751e7a84565SChris Mason 	}
4752e7a84565SChris Mason 	return 1;
4753e7a84565SChris Mason }
4754e7a84565SChris Mason 
47553d7806ecSJan Schmidt int btrfs_next_old_leaf(struct btrfs_root *root, struct btrfs_path *path,
47563d7806ecSJan Schmidt 			u64 time_seq)
47573d7806ecSJan Schmidt {
4758d97e63b6SChris Mason 	int slot;
47598e73f275SChris Mason 	int level;
47605f39d397SChris Mason 	struct extent_buffer *c;
47618e73f275SChris Mason 	struct extent_buffer *next;
4762d96b3424SFilipe Manana 	struct btrfs_fs_info *fs_info = root->fs_info;
4763925baeddSChris Mason 	struct btrfs_key key;
4764d96b3424SFilipe Manana 	bool need_commit_sem = false;
4765925baeddSChris Mason 	u32 nritems;
4766925baeddSChris Mason 	int ret;
47670e46318dSJosef Bacik 	int i;
4768925baeddSChris Mason 
4769bdcdd86cSFilipe Manana 	/*
4770bdcdd86cSFilipe Manana 	 * The nowait semantics are used only for write paths, where we don't
4771bdcdd86cSFilipe Manana 	 * use the tree mod log and sequence numbers.
4772bdcdd86cSFilipe Manana 	 */
4773bdcdd86cSFilipe Manana 	if (time_seq)
4774c922b016SStefan Roesch 		ASSERT(!path->nowait);
4775c922b016SStefan Roesch 
4776925baeddSChris Mason 	nritems = btrfs_header_nritems(path->nodes[0]);
4777d397712bSChris Mason 	if (nritems == 0)
4778925baeddSChris Mason 		return 1;
4779925baeddSChris Mason 
47808e73f275SChris Mason 	btrfs_item_key_to_cpu(path->nodes[0], &key, nritems - 1);
47818e73f275SChris Mason again:
47828e73f275SChris Mason 	level = 1;
47838e73f275SChris Mason 	next = NULL;
4784b3b4aa74SDavid Sterba 	btrfs_release_path(path);
47858e73f275SChris Mason 
4786a2135011SChris Mason 	path->keep_locks = 1;
47878e73f275SChris Mason 
4788d96b3424SFilipe Manana 	if (time_seq) {
47893d7806ecSJan Schmidt 		ret = btrfs_search_old_slot(root, &key, path, time_seq);
4790d96b3424SFilipe Manana 	} else {
4791d96b3424SFilipe Manana 		if (path->need_commit_sem) {
4792d96b3424SFilipe Manana 			path->need_commit_sem = 0;
4793d96b3424SFilipe Manana 			need_commit_sem = true;
4794bdcdd86cSFilipe Manana 			if (path->nowait) {
4795bdcdd86cSFilipe Manana 				if (!down_read_trylock(&fs_info->commit_root_sem)) {
4796bdcdd86cSFilipe Manana 					ret = -EAGAIN;
4797bdcdd86cSFilipe Manana 					goto done;
4798bdcdd86cSFilipe Manana 				}
4799bdcdd86cSFilipe Manana 			} else {
4800d96b3424SFilipe Manana 				down_read(&fs_info->commit_root_sem);
4801d96b3424SFilipe Manana 			}
4802bdcdd86cSFilipe Manana 		}
4803925baeddSChris Mason 		ret = btrfs_search_slot(NULL, root, &key, path, 0, 0);
4804d96b3424SFilipe Manana 	}
4805925baeddSChris Mason 	path->keep_locks = 0;
4806925baeddSChris Mason 
4807925baeddSChris Mason 	if (ret < 0)
4808d96b3424SFilipe Manana 		goto done;
4809925baeddSChris Mason 
4810a2135011SChris Mason 	nritems = btrfs_header_nritems(path->nodes[0]);
4811168fd7d2SChris Mason 	/*
4812168fd7d2SChris Mason 	 * by releasing the path above we dropped all our locks.  A balance
4813168fd7d2SChris Mason 	 * could have added more items next to the key that used to be
4814168fd7d2SChris Mason 	 * at the very end of the block.  So, check again here and
4815168fd7d2SChris Mason 	 * advance the path if there are now more items available.
4816168fd7d2SChris Mason 	 */
4817a2135011SChris Mason 	if (nritems > 0 && path->slots[0] < nritems - 1) {
4818e457afecSYan Zheng 		if (ret == 0)
4819168fd7d2SChris Mason 			path->slots[0]++;
48208e73f275SChris Mason 		ret = 0;
4821925baeddSChris Mason 		goto done;
4822925baeddSChris Mason 	}
48230b43e04fSLiu Bo 	/*
48240b43e04fSLiu Bo 	 * So the above check misses one case:
48250b43e04fSLiu Bo 	 * - after releasing the path above, someone has removed the item that
48260b43e04fSLiu Bo 	 *   used to be at the very end of the block, and balance between leafs
48270b43e04fSLiu Bo 	 *   gets another one with bigger key.offset to replace it.
48280b43e04fSLiu Bo 	 *
48290b43e04fSLiu Bo 	 * This one should be returned as well, or we can get leaf corruption
48300b43e04fSLiu Bo 	 * later(esp. in __btrfs_drop_extents()).
48310b43e04fSLiu Bo 	 *
48320b43e04fSLiu Bo 	 * And a bit more explanation about this check,
48330b43e04fSLiu Bo 	 * with ret > 0, the key isn't found, the path points to the slot
48340b43e04fSLiu Bo 	 * where it should be inserted, so the path->slots[0] item must be the
48350b43e04fSLiu Bo 	 * bigger one.
48360b43e04fSLiu Bo 	 */
48370b43e04fSLiu Bo 	if (nritems > 0 && ret > 0 && path->slots[0] == nritems - 1) {
48380b43e04fSLiu Bo 		ret = 0;
48390b43e04fSLiu Bo 		goto done;
48400b43e04fSLiu Bo 	}
4841d97e63b6SChris Mason 
4842234b63a0SChris Mason 	while (level < BTRFS_MAX_LEVEL) {
48438e73f275SChris Mason 		if (!path->nodes[level]) {
48448e73f275SChris Mason 			ret = 1;
48458e73f275SChris Mason 			goto done;
48468e73f275SChris Mason 		}
48475f39d397SChris Mason 
4848d97e63b6SChris Mason 		slot = path->slots[level] + 1;
4849d97e63b6SChris Mason 		c = path->nodes[level];
48505f39d397SChris Mason 		if (slot >= btrfs_header_nritems(c)) {
4851d97e63b6SChris Mason 			level++;
48528e73f275SChris Mason 			if (level == BTRFS_MAX_LEVEL) {
48538e73f275SChris Mason 				ret = 1;
48548e73f275SChris Mason 				goto done;
48558e73f275SChris Mason 			}
4856d97e63b6SChris Mason 			continue;
4857d97e63b6SChris Mason 		}
48585f39d397SChris Mason 
48590e46318dSJosef Bacik 
48600e46318dSJosef Bacik 		/*
48610e46318dSJosef Bacik 		 * Our current level is where we're going to start from, and to
48620e46318dSJosef Bacik 		 * make sure lockdep doesn't complain we need to drop our locks
48630e46318dSJosef Bacik 		 * and nodes from 0 to our current level.
48640e46318dSJosef Bacik 		 */
48650e46318dSJosef Bacik 		for (i = 0; i < level; i++) {
48660e46318dSJosef Bacik 			if (path->locks[level]) {
48670e46318dSJosef Bacik 				btrfs_tree_read_unlock(path->nodes[i]);
48680e46318dSJosef Bacik 				path->locks[i] = 0;
48690e46318dSJosef Bacik 			}
48700e46318dSJosef Bacik 			free_extent_buffer(path->nodes[i]);
48710e46318dSJosef Bacik 			path->nodes[i] = NULL;
4872925baeddSChris Mason 		}
48735f39d397SChris Mason 
48748e73f275SChris Mason 		next = c;
4875d07b8528SLiu Bo 		ret = read_block_for_search(root, path, &next, level,
4876cda79c54SDavid Sterba 					    slot, &key);
4877bdcdd86cSFilipe Manana 		if (ret == -EAGAIN && !path->nowait)
48788e73f275SChris Mason 			goto again;
48795f39d397SChris Mason 
488076a05b35SChris Mason 		if (ret < 0) {
4881b3b4aa74SDavid Sterba 			btrfs_release_path(path);
488276a05b35SChris Mason 			goto done;
488376a05b35SChris Mason 		}
488476a05b35SChris Mason 
48855cd57b2cSChris Mason 		if (!path->skip_locking) {
4886bd681513SChris Mason 			ret = btrfs_try_tree_read_lock(next);
4887bdcdd86cSFilipe Manana 			if (!ret && path->nowait) {
4888bdcdd86cSFilipe Manana 				ret = -EAGAIN;
4889bdcdd86cSFilipe Manana 				goto done;
4890bdcdd86cSFilipe Manana 			}
4891d42244a0SJan Schmidt 			if (!ret && time_seq) {
4892d42244a0SJan Schmidt 				/*
4893d42244a0SJan Schmidt 				 * If we don't get the lock, we may be racing
4894d42244a0SJan Schmidt 				 * with push_leaf_left, holding that lock while
4895d42244a0SJan Schmidt 				 * itself waiting for the leaf we've currently
4896d42244a0SJan Schmidt 				 * locked. To solve this situation, we give up
4897d42244a0SJan Schmidt 				 * on our lock and cycle.
4898d42244a0SJan Schmidt 				 */
4899cf538830SJan Schmidt 				free_extent_buffer(next);
4900d42244a0SJan Schmidt 				btrfs_release_path(path);
4901d42244a0SJan Schmidt 				cond_resched();
4902d42244a0SJan Schmidt 				goto again;
4903d42244a0SJan Schmidt 			}
49040e46318dSJosef Bacik 			if (!ret)
49050e46318dSJosef Bacik 				btrfs_tree_read_lock(next);
4906bd681513SChris Mason 		}
4907d97e63b6SChris Mason 		break;
4908d97e63b6SChris Mason 	}
4909d97e63b6SChris Mason 	path->slots[level] = slot;
4910d97e63b6SChris Mason 	while (1) {
4911d97e63b6SChris Mason 		level--;
4912d97e63b6SChris Mason 		path->nodes[level] = next;
4913d97e63b6SChris Mason 		path->slots[level] = 0;
4914a74a4b97SChris Mason 		if (!path->skip_locking)
4915ffeb03cfSJosef Bacik 			path->locks[level] = BTRFS_READ_LOCK;
4916d97e63b6SChris Mason 		if (!level)
4917d97e63b6SChris Mason 			break;
4918b4ce94deSChris Mason 
4919d07b8528SLiu Bo 		ret = read_block_for_search(root, path, &next, level,
4920cda79c54SDavid Sterba 					    0, &key);
4921bdcdd86cSFilipe Manana 		if (ret == -EAGAIN && !path->nowait)
49228e73f275SChris Mason 			goto again;
49238e73f275SChris Mason 
492476a05b35SChris Mason 		if (ret < 0) {
4925b3b4aa74SDavid Sterba 			btrfs_release_path(path);
492676a05b35SChris Mason 			goto done;
492776a05b35SChris Mason 		}
492876a05b35SChris Mason 
4929bdcdd86cSFilipe Manana 		if (!path->skip_locking) {
4930bdcdd86cSFilipe Manana 			if (path->nowait) {
4931bdcdd86cSFilipe Manana 				if (!btrfs_try_tree_read_lock(next)) {
4932bdcdd86cSFilipe Manana 					ret = -EAGAIN;
4933bdcdd86cSFilipe Manana 					goto done;
4934bdcdd86cSFilipe Manana 				}
4935bdcdd86cSFilipe Manana 			} else {
49360e46318dSJosef Bacik 				btrfs_tree_read_lock(next);
4937d97e63b6SChris Mason 			}
4938bdcdd86cSFilipe Manana 		}
4939bdcdd86cSFilipe Manana 	}
49408e73f275SChris Mason 	ret = 0;
4941925baeddSChris Mason done:
4942f7c79f30SChris Mason 	unlock_up(path, 0, 1, 0, NULL);
4943d96b3424SFilipe Manana 	if (need_commit_sem) {
4944d96b3424SFilipe Manana 		int ret2;
4945d96b3424SFilipe Manana 
4946d96b3424SFilipe Manana 		path->need_commit_sem = 1;
4947d96b3424SFilipe Manana 		ret2 = finish_need_commit_sem_search(path);
4948d96b3424SFilipe Manana 		up_read(&fs_info->commit_root_sem);
4949d96b3424SFilipe Manana 		if (ret2)
4950d96b3424SFilipe Manana 			ret = ret2;
4951d96b3424SFilipe Manana 	}
49528e73f275SChris Mason 
49538e73f275SChris Mason 	return ret;
4954d97e63b6SChris Mason }
49550b86a832SChris Mason 
4956890d2b1aSJosef Bacik int btrfs_next_old_item(struct btrfs_root *root, struct btrfs_path *path, u64 time_seq)
4957890d2b1aSJosef Bacik {
4958890d2b1aSJosef Bacik 	path->slots[0]++;
4959890d2b1aSJosef Bacik 	if (path->slots[0] >= btrfs_header_nritems(path->nodes[0]))
4960890d2b1aSJosef Bacik 		return btrfs_next_old_leaf(root, path, time_seq);
4961890d2b1aSJosef Bacik 	return 0;
4962890d2b1aSJosef Bacik }
4963890d2b1aSJosef Bacik 
49643f157a2fSChris Mason /*
49653f157a2fSChris Mason  * this uses btrfs_prev_leaf to walk backwards in the tree, and keeps
49663f157a2fSChris Mason  * searching until it gets past min_objectid or finds an item of 'type'
49673f157a2fSChris Mason  *
49683f157a2fSChris Mason  * returns 0 if something is found, 1 if nothing was found and < 0 on error
49693f157a2fSChris Mason  */
49700b86a832SChris Mason int btrfs_previous_item(struct btrfs_root *root,
49710b86a832SChris Mason 			struct btrfs_path *path, u64 min_objectid,
49720b86a832SChris Mason 			int type)
49730b86a832SChris Mason {
49740b86a832SChris Mason 	struct btrfs_key found_key;
49750b86a832SChris Mason 	struct extent_buffer *leaf;
4976e02119d5SChris Mason 	u32 nritems;
49770b86a832SChris Mason 	int ret;
49780b86a832SChris Mason 
49790b86a832SChris Mason 	while (1) {
49800b86a832SChris Mason 		if (path->slots[0] == 0) {
49810b86a832SChris Mason 			ret = btrfs_prev_leaf(root, path);
49820b86a832SChris Mason 			if (ret != 0)
49830b86a832SChris Mason 				return ret;
49840b86a832SChris Mason 		} else {
49850b86a832SChris Mason 			path->slots[0]--;
49860b86a832SChris Mason 		}
49870b86a832SChris Mason 		leaf = path->nodes[0];
4988e02119d5SChris Mason 		nritems = btrfs_header_nritems(leaf);
4989e02119d5SChris Mason 		if (nritems == 0)
4990e02119d5SChris Mason 			return 1;
4991e02119d5SChris Mason 		if (path->slots[0] == nritems)
4992e02119d5SChris Mason 			path->slots[0]--;
4993e02119d5SChris Mason 
49940b86a832SChris Mason 		btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]);
4995e02119d5SChris Mason 		if (found_key.objectid < min_objectid)
4996e02119d5SChris Mason 			break;
49970a4eefbbSYan Zheng 		if (found_key.type == type)
49980a4eefbbSYan Zheng 			return 0;
4999e02119d5SChris Mason 		if (found_key.objectid == min_objectid &&
5000e02119d5SChris Mason 		    found_key.type < type)
5001e02119d5SChris Mason 			break;
50020b86a832SChris Mason 	}
50030b86a832SChris Mason 	return 1;
50040b86a832SChris Mason }
5005ade2e0b3SWang Shilong 
5006ade2e0b3SWang Shilong /*
5007ade2e0b3SWang Shilong  * search in extent tree to find a previous Metadata/Data extent item with
5008ade2e0b3SWang Shilong  * min objecitd.
5009ade2e0b3SWang Shilong  *
5010ade2e0b3SWang Shilong  * returns 0 if something is found, 1 if nothing was found and < 0 on error
5011ade2e0b3SWang Shilong  */
5012ade2e0b3SWang Shilong int btrfs_previous_extent_item(struct btrfs_root *root,
5013ade2e0b3SWang Shilong 			struct btrfs_path *path, u64 min_objectid)
5014ade2e0b3SWang Shilong {
5015ade2e0b3SWang Shilong 	struct btrfs_key found_key;
5016ade2e0b3SWang Shilong 	struct extent_buffer *leaf;
5017ade2e0b3SWang Shilong 	u32 nritems;
5018ade2e0b3SWang Shilong 	int ret;
5019ade2e0b3SWang Shilong 
5020ade2e0b3SWang Shilong 	while (1) {
5021ade2e0b3SWang Shilong 		if (path->slots[0] == 0) {
5022ade2e0b3SWang Shilong 			ret = btrfs_prev_leaf(root, path);
5023ade2e0b3SWang Shilong 			if (ret != 0)
5024ade2e0b3SWang Shilong 				return ret;
5025ade2e0b3SWang Shilong 		} else {
5026ade2e0b3SWang Shilong 			path->slots[0]--;
5027ade2e0b3SWang Shilong 		}
5028ade2e0b3SWang Shilong 		leaf = path->nodes[0];
5029ade2e0b3SWang Shilong 		nritems = btrfs_header_nritems(leaf);
5030ade2e0b3SWang Shilong 		if (nritems == 0)
5031ade2e0b3SWang Shilong 			return 1;
5032ade2e0b3SWang Shilong 		if (path->slots[0] == nritems)
5033ade2e0b3SWang Shilong 			path->slots[0]--;
5034ade2e0b3SWang Shilong 
5035ade2e0b3SWang Shilong 		btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]);
5036ade2e0b3SWang Shilong 		if (found_key.objectid < min_objectid)
5037ade2e0b3SWang Shilong 			break;
5038ade2e0b3SWang Shilong 		if (found_key.type == BTRFS_EXTENT_ITEM_KEY ||
5039ade2e0b3SWang Shilong 		    found_key.type == BTRFS_METADATA_ITEM_KEY)
5040ade2e0b3SWang Shilong 			return 0;
5041ade2e0b3SWang Shilong 		if (found_key.objectid == min_objectid &&
5042ade2e0b3SWang Shilong 		    found_key.type < BTRFS_EXTENT_ITEM_KEY)
5043ade2e0b3SWang Shilong 			break;
5044ade2e0b3SWang Shilong 	}
5045ade2e0b3SWang Shilong 	return 1;
5046ade2e0b3SWang Shilong }
5047226463d7SJosef Bacik 
5048226463d7SJosef Bacik int __init btrfs_ctree_init(void)
5049226463d7SJosef Bacik {
5050226463d7SJosef Bacik 	btrfs_path_cachep = kmem_cache_create("btrfs_path",
5051226463d7SJosef Bacik 			sizeof(struct btrfs_path), 0,
5052226463d7SJosef Bacik 			SLAB_MEM_SPREAD, NULL);
5053226463d7SJosef Bacik 	if (!btrfs_path_cachep)
5054226463d7SJosef Bacik 		return -ENOMEM;
5055226463d7SJosef Bacik 	return 0;
5056226463d7SJosef Bacik }
5057226463d7SJosef Bacik 
5058226463d7SJosef Bacik void __cold btrfs_ctree_exit(void)
5059226463d7SJosef Bacik {
5060226463d7SJosef Bacik 	kmem_cache_destroy(btrfs_path_cachep);
5061226463d7SJosef Bacik }
5062