xref: /openbmc/linux/fs/btrfs/ctree.c (revision 35a3621beb3e2face3e7954eaee20a8fa0043fac)
16cbd5570SChris Mason /*
2d352ac68SChris Mason  * Copyright (C) 2007,2008 Oracle.  All rights reserved.
36cbd5570SChris Mason  *
46cbd5570SChris Mason  * This program is free software; you can redistribute it and/or
56cbd5570SChris Mason  * modify it under the terms of the GNU General Public
66cbd5570SChris Mason  * License v2 as published by the Free Software Foundation.
76cbd5570SChris Mason  *
86cbd5570SChris Mason  * This program is distributed in the hope that it will be useful,
96cbd5570SChris Mason  * but WITHOUT ANY WARRANTY; without even the implied warranty of
106cbd5570SChris Mason  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
116cbd5570SChris Mason  * General Public License for more details.
126cbd5570SChris Mason  *
136cbd5570SChris Mason  * You should have received a copy of the GNU General Public
146cbd5570SChris Mason  * License along with this program; if not, write to the
156cbd5570SChris Mason  * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
166cbd5570SChris Mason  * Boston, MA 021110-1307, USA.
176cbd5570SChris Mason  */
186cbd5570SChris Mason 
19a6b6e75eSChris Mason #include <linux/sched.h>
205a0e3ad6STejun Heo #include <linux/slab.h>
21bd989ba3SJan Schmidt #include <linux/rbtree.h>
22eb60ceacSChris Mason #include "ctree.h"
23eb60ceacSChris Mason #include "disk-io.h"
247f5c1516SChris Mason #include "transaction.h"
255f39d397SChris Mason #include "print-tree.h"
26925baeddSChris Mason #include "locking.h"
279a8dd150SChris Mason 
28e089f05cSChris Mason static int split_node(struct btrfs_trans_handle *trans, struct btrfs_root
29e089f05cSChris Mason 		      *root, struct btrfs_path *path, int level);
30e089f05cSChris Mason static int split_leaf(struct btrfs_trans_handle *trans, struct btrfs_root
31d4dbff95SChris Mason 		      *root, struct btrfs_key *ins_key,
32cc0c5538SChris Mason 		      struct btrfs_path *path, int data_size, int extend);
335f39d397SChris Mason static int push_node_left(struct btrfs_trans_handle *trans,
345f39d397SChris Mason 			  struct btrfs_root *root, struct extent_buffer *dst,
35971a1f66SChris Mason 			  struct extent_buffer *src, int empty);
365f39d397SChris Mason static int balance_node_right(struct btrfs_trans_handle *trans,
375f39d397SChris Mason 			      struct btrfs_root *root,
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);
42f230475eSJan Schmidt static void tree_mod_log_free_eb(struct btrfs_fs_info *fs_info,
43f230475eSJan Schmidt 				 struct extent_buffer *eb);
4448a3b636SEric Sandeen static int btrfs_prev_leaf(struct btrfs_root *root, struct btrfs_path *path);
45d97e63b6SChris Mason 
462c90e5d6SChris Mason struct btrfs_path *btrfs_alloc_path(void)
472c90e5d6SChris Mason {
48df24a2b9SChris Mason 	struct btrfs_path *path;
49e00f7308SJeff Mahoney 	path = kmem_cache_zalloc(btrfs_path_cachep, GFP_NOFS);
50df24a2b9SChris Mason 	return path;
512c90e5d6SChris Mason }
522c90e5d6SChris Mason 
53b4ce94deSChris Mason /*
54b4ce94deSChris Mason  * set all locked nodes in the path to blocking locks.  This should
55b4ce94deSChris Mason  * be done before scheduling
56b4ce94deSChris Mason  */
57b4ce94deSChris Mason noinline void btrfs_set_path_blocking(struct btrfs_path *p)
58b4ce94deSChris Mason {
59b4ce94deSChris Mason 	int i;
60b4ce94deSChris Mason 	for (i = 0; i < BTRFS_MAX_LEVEL; i++) {
61bd681513SChris Mason 		if (!p->nodes[i] || !p->locks[i])
62bd681513SChris Mason 			continue;
63bd681513SChris Mason 		btrfs_set_lock_blocking_rw(p->nodes[i], p->locks[i]);
64bd681513SChris Mason 		if (p->locks[i] == BTRFS_READ_LOCK)
65bd681513SChris Mason 			p->locks[i] = BTRFS_READ_LOCK_BLOCKING;
66bd681513SChris Mason 		else if (p->locks[i] == BTRFS_WRITE_LOCK)
67bd681513SChris Mason 			p->locks[i] = BTRFS_WRITE_LOCK_BLOCKING;
68b4ce94deSChris Mason 	}
69b4ce94deSChris Mason }
70b4ce94deSChris Mason 
71b4ce94deSChris Mason /*
72b4ce94deSChris Mason  * reset all the locked nodes in the patch to spinning locks.
734008c04aSChris Mason  *
744008c04aSChris Mason  * held is used to keep lockdep happy, when lockdep is enabled
754008c04aSChris Mason  * we set held to a blocking lock before we go around and
764008c04aSChris Mason  * retake all the spinlocks in the path.  You can safely use NULL
774008c04aSChris Mason  * for held
78b4ce94deSChris Mason  */
794008c04aSChris Mason noinline void btrfs_clear_path_blocking(struct btrfs_path *p,
80bd681513SChris Mason 					struct extent_buffer *held, int held_rw)
81b4ce94deSChris Mason {
82b4ce94deSChris Mason 	int i;
834008c04aSChris Mason 
844008c04aSChris Mason #ifdef CONFIG_DEBUG_LOCK_ALLOC
854008c04aSChris Mason 	/* lockdep really cares that we take all of these spinlocks
864008c04aSChris Mason 	 * in the right order.  If any of the locks in the path are not
874008c04aSChris Mason 	 * currently blocking, it is going to complain.  So, make really
884008c04aSChris Mason 	 * really sure by forcing the path to blocking before we clear
894008c04aSChris Mason 	 * the path blocking.
904008c04aSChris Mason 	 */
91bd681513SChris Mason 	if (held) {
92bd681513SChris Mason 		btrfs_set_lock_blocking_rw(held, held_rw);
93bd681513SChris Mason 		if (held_rw == BTRFS_WRITE_LOCK)
94bd681513SChris Mason 			held_rw = BTRFS_WRITE_LOCK_BLOCKING;
95bd681513SChris Mason 		else if (held_rw == BTRFS_READ_LOCK)
96bd681513SChris Mason 			held_rw = BTRFS_READ_LOCK_BLOCKING;
97bd681513SChris Mason 	}
984008c04aSChris Mason 	btrfs_set_path_blocking(p);
994008c04aSChris Mason #endif
1004008c04aSChris Mason 
1014008c04aSChris Mason 	for (i = BTRFS_MAX_LEVEL - 1; i >= 0; i--) {
102bd681513SChris Mason 		if (p->nodes[i] && p->locks[i]) {
103bd681513SChris Mason 			btrfs_clear_lock_blocking_rw(p->nodes[i], p->locks[i]);
104bd681513SChris Mason 			if (p->locks[i] == BTRFS_WRITE_LOCK_BLOCKING)
105bd681513SChris Mason 				p->locks[i] = BTRFS_WRITE_LOCK;
106bd681513SChris Mason 			else if (p->locks[i] == BTRFS_READ_LOCK_BLOCKING)
107bd681513SChris Mason 				p->locks[i] = BTRFS_READ_LOCK;
108bd681513SChris Mason 		}
109b4ce94deSChris Mason 	}
1104008c04aSChris Mason 
1114008c04aSChris Mason #ifdef CONFIG_DEBUG_LOCK_ALLOC
1124008c04aSChris Mason 	if (held)
113bd681513SChris Mason 		btrfs_clear_lock_blocking_rw(held, held_rw);
1144008c04aSChris Mason #endif
115b4ce94deSChris Mason }
116b4ce94deSChris Mason 
117d352ac68SChris Mason /* this also releases the path */
1182c90e5d6SChris Mason void btrfs_free_path(struct btrfs_path *p)
1192c90e5d6SChris Mason {
120ff175d57SJesper Juhl 	if (!p)
121ff175d57SJesper Juhl 		return;
122b3b4aa74SDavid Sterba 	btrfs_release_path(p);
1232c90e5d6SChris Mason 	kmem_cache_free(btrfs_path_cachep, p);
1242c90e5d6SChris Mason }
1252c90e5d6SChris Mason 
126d352ac68SChris Mason /*
127d352ac68SChris Mason  * path release drops references on the extent buffers in the path
128d352ac68SChris Mason  * and it drops any locks held by this path
129d352ac68SChris Mason  *
130d352ac68SChris Mason  * It is safe to call this on paths that no locks or extent buffers held.
131d352ac68SChris Mason  */
132b3b4aa74SDavid Sterba noinline void btrfs_release_path(struct btrfs_path *p)
133eb60ceacSChris Mason {
134eb60ceacSChris Mason 	int i;
135a2135011SChris Mason 
136234b63a0SChris Mason 	for (i = 0; i < BTRFS_MAX_LEVEL; i++) {
1373f157a2fSChris Mason 		p->slots[i] = 0;
138eb60ceacSChris Mason 		if (!p->nodes[i])
139925baeddSChris Mason 			continue;
140925baeddSChris Mason 		if (p->locks[i]) {
141bd681513SChris Mason 			btrfs_tree_unlock_rw(p->nodes[i], p->locks[i]);
142925baeddSChris Mason 			p->locks[i] = 0;
143925baeddSChris Mason 		}
1445f39d397SChris Mason 		free_extent_buffer(p->nodes[i]);
1453f157a2fSChris Mason 		p->nodes[i] = NULL;
146eb60ceacSChris Mason 	}
147eb60ceacSChris Mason }
148eb60ceacSChris Mason 
149d352ac68SChris Mason /*
150d352ac68SChris Mason  * safely gets a reference on the root node of a tree.  A lock
151d352ac68SChris Mason  * is not taken, so a concurrent writer may put a different node
152d352ac68SChris Mason  * at the root of the tree.  See btrfs_lock_root_node for the
153d352ac68SChris Mason  * looping required.
154d352ac68SChris Mason  *
155d352ac68SChris Mason  * The extent buffer returned by this has a reference taken, so
156d352ac68SChris Mason  * it won't disappear.  It may stop being the root of the tree
157d352ac68SChris Mason  * at any time because there are no locks held.
158d352ac68SChris Mason  */
159925baeddSChris Mason struct extent_buffer *btrfs_root_node(struct btrfs_root *root)
160925baeddSChris Mason {
161925baeddSChris Mason 	struct extent_buffer *eb;
162240f62c8SChris Mason 
1633083ee2eSJosef Bacik 	while (1) {
164240f62c8SChris Mason 		rcu_read_lock();
165240f62c8SChris Mason 		eb = rcu_dereference(root->node);
1663083ee2eSJosef Bacik 
1673083ee2eSJosef Bacik 		/*
1683083ee2eSJosef Bacik 		 * RCU really hurts here, we could free up the root node because
1693083ee2eSJosef Bacik 		 * it was cow'ed but we may not get the new root node yet so do
1703083ee2eSJosef Bacik 		 * the inc_not_zero dance and if it doesn't work then
1713083ee2eSJosef Bacik 		 * synchronize_rcu and try again.
1723083ee2eSJosef Bacik 		 */
1733083ee2eSJosef Bacik 		if (atomic_inc_not_zero(&eb->refs)) {
174240f62c8SChris Mason 			rcu_read_unlock();
1753083ee2eSJosef Bacik 			break;
1763083ee2eSJosef Bacik 		}
1773083ee2eSJosef Bacik 		rcu_read_unlock();
1783083ee2eSJosef Bacik 		synchronize_rcu();
1793083ee2eSJosef Bacik 	}
180925baeddSChris Mason 	return eb;
181925baeddSChris Mason }
182925baeddSChris Mason 
183d352ac68SChris Mason /* loop around taking references on and locking the root node of the
184d352ac68SChris Mason  * tree until you end up with a lock on the root.  A locked buffer
185d352ac68SChris Mason  * is returned, with a reference held.
186d352ac68SChris Mason  */
187925baeddSChris Mason struct extent_buffer *btrfs_lock_root_node(struct btrfs_root *root)
188925baeddSChris Mason {
189925baeddSChris Mason 	struct extent_buffer *eb;
190925baeddSChris Mason 
191925baeddSChris Mason 	while (1) {
192925baeddSChris Mason 		eb = btrfs_root_node(root);
193925baeddSChris Mason 		btrfs_tree_lock(eb);
194240f62c8SChris Mason 		if (eb == root->node)
195925baeddSChris Mason 			break;
196925baeddSChris Mason 		btrfs_tree_unlock(eb);
197925baeddSChris Mason 		free_extent_buffer(eb);
198925baeddSChris Mason 	}
199925baeddSChris Mason 	return eb;
200925baeddSChris Mason }
201925baeddSChris Mason 
202bd681513SChris Mason /* loop around taking references on and locking the root node of the
203bd681513SChris Mason  * tree until you end up with a lock on the root.  A locked buffer
204bd681513SChris Mason  * is returned, with a reference held.
205bd681513SChris Mason  */
20648a3b636SEric Sandeen static struct extent_buffer *btrfs_read_lock_root_node(struct btrfs_root *root)
207bd681513SChris Mason {
208bd681513SChris Mason 	struct extent_buffer *eb;
209bd681513SChris Mason 
210bd681513SChris Mason 	while (1) {
211bd681513SChris Mason 		eb = btrfs_root_node(root);
212bd681513SChris Mason 		btrfs_tree_read_lock(eb);
213bd681513SChris Mason 		if (eb == root->node)
214bd681513SChris Mason 			break;
215bd681513SChris Mason 		btrfs_tree_read_unlock(eb);
216bd681513SChris Mason 		free_extent_buffer(eb);
217bd681513SChris Mason 	}
218bd681513SChris Mason 	return eb;
219bd681513SChris Mason }
220bd681513SChris Mason 
221d352ac68SChris Mason /* cowonly root (everything not a reference counted cow subvolume), just get
222d352ac68SChris Mason  * put onto a simple dirty list.  transaction.c walks this to make sure they
223d352ac68SChris Mason  * get properly updated on disk.
224d352ac68SChris Mason  */
2250b86a832SChris Mason static void add_root_to_dirty_list(struct btrfs_root *root)
2260b86a832SChris Mason {
227e5846fc6SChris Mason 	spin_lock(&root->fs_info->trans_lock);
2280b86a832SChris Mason 	if (root->track_dirty && list_empty(&root->dirty_list)) {
2290b86a832SChris Mason 		list_add(&root->dirty_list,
2300b86a832SChris Mason 			 &root->fs_info->dirty_cowonly_roots);
2310b86a832SChris Mason 	}
232e5846fc6SChris Mason 	spin_unlock(&root->fs_info->trans_lock);
2330b86a832SChris Mason }
2340b86a832SChris Mason 
235d352ac68SChris Mason /*
236d352ac68SChris Mason  * used by snapshot creation to make a copy of a root for a tree with
237d352ac68SChris Mason  * a given objectid.  The buffer with the new root node is returned in
238d352ac68SChris Mason  * cow_ret, and this func returns zero on success or a negative error code.
239d352ac68SChris Mason  */
240be20aa9dSChris Mason int btrfs_copy_root(struct btrfs_trans_handle *trans,
241be20aa9dSChris Mason 		      struct btrfs_root *root,
242be20aa9dSChris Mason 		      struct extent_buffer *buf,
243be20aa9dSChris Mason 		      struct extent_buffer **cow_ret, u64 new_root_objectid)
244be20aa9dSChris Mason {
245be20aa9dSChris Mason 	struct extent_buffer *cow;
246be20aa9dSChris Mason 	int ret = 0;
247be20aa9dSChris Mason 	int level;
2485d4f98a2SYan Zheng 	struct btrfs_disk_key disk_key;
249be20aa9dSChris Mason 
250be20aa9dSChris Mason 	WARN_ON(root->ref_cows && trans->transid !=
251be20aa9dSChris Mason 		root->fs_info->running_transaction->transid);
252be20aa9dSChris Mason 	WARN_ON(root->ref_cows && trans->transid != root->last_trans);
253be20aa9dSChris Mason 
254be20aa9dSChris Mason 	level = btrfs_header_level(buf);
2555d4f98a2SYan Zheng 	if (level == 0)
2565d4f98a2SYan Zheng 		btrfs_item_key(buf, &disk_key, 0);
2575d4f98a2SYan Zheng 	else
2585d4f98a2SYan Zheng 		btrfs_node_key(buf, &disk_key, 0);
25931840ae1SZheng Yan 
2605d4f98a2SYan Zheng 	cow = btrfs_alloc_free_block(trans, root, buf->len, 0,
2615d4f98a2SYan Zheng 				     new_root_objectid, &disk_key, level,
2625581a51aSJan Schmidt 				     buf->start, 0);
2635d4f98a2SYan Zheng 	if (IS_ERR(cow))
264be20aa9dSChris Mason 		return PTR_ERR(cow);
265be20aa9dSChris Mason 
266be20aa9dSChris Mason 	copy_extent_buffer(cow, buf, 0, 0, cow->len);
267be20aa9dSChris Mason 	btrfs_set_header_bytenr(cow, cow->start);
268be20aa9dSChris Mason 	btrfs_set_header_generation(cow, trans->transid);
2695d4f98a2SYan Zheng 	btrfs_set_header_backref_rev(cow, BTRFS_MIXED_BACKREF_REV);
2705d4f98a2SYan Zheng 	btrfs_clear_header_flag(cow, BTRFS_HEADER_FLAG_WRITTEN |
2715d4f98a2SYan Zheng 				     BTRFS_HEADER_FLAG_RELOC);
2725d4f98a2SYan Zheng 	if (new_root_objectid == BTRFS_TREE_RELOC_OBJECTID)
2735d4f98a2SYan Zheng 		btrfs_set_header_flag(cow, BTRFS_HEADER_FLAG_RELOC);
2745d4f98a2SYan Zheng 	else
275be20aa9dSChris Mason 		btrfs_set_header_owner(cow, new_root_objectid);
276be20aa9dSChris Mason 
2772b82032cSYan Zheng 	write_extent_buffer(cow, root->fs_info->fsid,
2782b82032cSYan Zheng 			    (unsigned long)btrfs_header_fsid(cow),
2792b82032cSYan Zheng 			    BTRFS_FSID_SIZE);
2802b82032cSYan Zheng 
281be20aa9dSChris Mason 	WARN_ON(btrfs_header_generation(buf) > trans->transid);
2825d4f98a2SYan Zheng 	if (new_root_objectid == BTRFS_TREE_RELOC_OBJECTID)
28366d7e7f0SArne Jansen 		ret = btrfs_inc_ref(trans, root, cow, 1, 1);
2845d4f98a2SYan Zheng 	else
28566d7e7f0SArne Jansen 		ret = btrfs_inc_ref(trans, root, cow, 0, 1);
2864aec2b52SChris Mason 
287be20aa9dSChris Mason 	if (ret)
288be20aa9dSChris Mason 		return ret;
289be20aa9dSChris Mason 
290be20aa9dSChris Mason 	btrfs_mark_buffer_dirty(cow);
291be20aa9dSChris Mason 	*cow_ret = cow;
292be20aa9dSChris Mason 	return 0;
293be20aa9dSChris Mason }
294be20aa9dSChris Mason 
295bd989ba3SJan Schmidt enum mod_log_op {
296bd989ba3SJan Schmidt 	MOD_LOG_KEY_REPLACE,
297bd989ba3SJan Schmidt 	MOD_LOG_KEY_ADD,
298bd989ba3SJan Schmidt 	MOD_LOG_KEY_REMOVE,
299bd989ba3SJan Schmidt 	MOD_LOG_KEY_REMOVE_WHILE_FREEING,
300bd989ba3SJan Schmidt 	MOD_LOG_KEY_REMOVE_WHILE_MOVING,
301bd989ba3SJan Schmidt 	MOD_LOG_MOVE_KEYS,
302bd989ba3SJan Schmidt 	MOD_LOG_ROOT_REPLACE,
303bd989ba3SJan Schmidt };
304bd989ba3SJan Schmidt 
305bd989ba3SJan Schmidt struct tree_mod_move {
306bd989ba3SJan Schmidt 	int dst_slot;
307bd989ba3SJan Schmidt 	int nr_items;
308bd989ba3SJan Schmidt };
309bd989ba3SJan Schmidt 
310bd989ba3SJan Schmidt struct tree_mod_root {
311bd989ba3SJan Schmidt 	u64 logical;
312bd989ba3SJan Schmidt 	u8 level;
313bd989ba3SJan Schmidt };
314bd989ba3SJan Schmidt 
315bd989ba3SJan Schmidt struct tree_mod_elem {
316bd989ba3SJan Schmidt 	struct rb_node node;
317bd989ba3SJan Schmidt 	u64 index;		/* shifted logical */
318097b8a7cSJan Schmidt 	u64 seq;
319bd989ba3SJan Schmidt 	enum mod_log_op op;
320bd989ba3SJan Schmidt 
321bd989ba3SJan Schmidt 	/* this is used for MOD_LOG_KEY_* and MOD_LOG_MOVE_KEYS operations */
322bd989ba3SJan Schmidt 	int slot;
323bd989ba3SJan Schmidt 
324bd989ba3SJan Schmidt 	/* this is used for MOD_LOG_KEY* and MOD_LOG_ROOT_REPLACE */
325bd989ba3SJan Schmidt 	u64 generation;
326bd989ba3SJan Schmidt 
327bd989ba3SJan Schmidt 	/* those are used for op == MOD_LOG_KEY_{REPLACE,REMOVE} */
328bd989ba3SJan Schmidt 	struct btrfs_disk_key key;
329bd989ba3SJan Schmidt 	u64 blockptr;
330bd989ba3SJan Schmidt 
331bd989ba3SJan Schmidt 	/* this is used for op == MOD_LOG_MOVE_KEYS */
332bd989ba3SJan Schmidt 	struct tree_mod_move move;
333bd989ba3SJan Schmidt 
334bd989ba3SJan Schmidt 	/* this is used for op == MOD_LOG_ROOT_REPLACE */
335bd989ba3SJan Schmidt 	struct tree_mod_root old_root;
336bd989ba3SJan Schmidt };
337bd989ba3SJan Schmidt 
338097b8a7cSJan Schmidt static inline void tree_mod_log_read_lock(struct btrfs_fs_info *fs_info)
339bd989ba3SJan Schmidt {
340097b8a7cSJan Schmidt 	read_lock(&fs_info->tree_mod_log_lock);
341bd989ba3SJan Schmidt }
342bd989ba3SJan Schmidt 
343097b8a7cSJan Schmidt static inline void tree_mod_log_read_unlock(struct btrfs_fs_info *fs_info)
344097b8a7cSJan Schmidt {
345097b8a7cSJan Schmidt 	read_unlock(&fs_info->tree_mod_log_lock);
346097b8a7cSJan Schmidt }
347097b8a7cSJan Schmidt 
348097b8a7cSJan Schmidt static inline void tree_mod_log_write_lock(struct btrfs_fs_info *fs_info)
349097b8a7cSJan Schmidt {
350097b8a7cSJan Schmidt 	write_lock(&fs_info->tree_mod_log_lock);
351097b8a7cSJan Schmidt }
352097b8a7cSJan Schmidt 
353097b8a7cSJan Schmidt static inline void tree_mod_log_write_unlock(struct btrfs_fs_info *fs_info)
354097b8a7cSJan Schmidt {
355097b8a7cSJan Schmidt 	write_unlock(&fs_info->tree_mod_log_lock);
356097b8a7cSJan Schmidt }
357097b8a7cSJan Schmidt 
358097b8a7cSJan Schmidt /*
359fc36ed7eSJan Schmidt  * Increment the upper half of tree_mod_seq, set lower half zero.
360fc36ed7eSJan Schmidt  *
361fc36ed7eSJan Schmidt  * Must be called with fs_info->tree_mod_seq_lock held.
362fc36ed7eSJan Schmidt  */
363fc36ed7eSJan Schmidt static inline u64 btrfs_inc_tree_mod_seq_major(struct btrfs_fs_info *fs_info)
364fc36ed7eSJan Schmidt {
365fc36ed7eSJan Schmidt 	u64 seq = atomic64_read(&fs_info->tree_mod_seq);
366fc36ed7eSJan Schmidt 	seq &= 0xffffffff00000000ull;
367fc36ed7eSJan Schmidt 	seq += 1ull << 32;
368fc36ed7eSJan Schmidt 	atomic64_set(&fs_info->tree_mod_seq, seq);
369fc36ed7eSJan Schmidt 	return seq;
370fc36ed7eSJan Schmidt }
371fc36ed7eSJan Schmidt 
372fc36ed7eSJan Schmidt /*
373fc36ed7eSJan Schmidt  * Increment the lower half of tree_mod_seq.
374fc36ed7eSJan Schmidt  *
375fc36ed7eSJan Schmidt  * Must be called with fs_info->tree_mod_seq_lock held. The way major numbers
376fc36ed7eSJan Schmidt  * are generated should not technically require a spin lock here. (Rationale:
377fc36ed7eSJan Schmidt  * incrementing the minor while incrementing the major seq number is between its
378fc36ed7eSJan Schmidt  * atomic64_read and atomic64_set calls doesn't duplicate sequence numbers, it
379fc36ed7eSJan Schmidt  * just returns a unique sequence number as usual.) We have decided to leave
380fc36ed7eSJan Schmidt  * that requirement in here and rethink it once we notice it really imposes a
381fc36ed7eSJan Schmidt  * problem on some workload.
382fc36ed7eSJan Schmidt  */
383fc36ed7eSJan Schmidt static inline u64 btrfs_inc_tree_mod_seq_minor(struct btrfs_fs_info *fs_info)
384fc36ed7eSJan Schmidt {
385fc36ed7eSJan Schmidt 	return atomic64_inc_return(&fs_info->tree_mod_seq);
386fc36ed7eSJan Schmidt }
387fc36ed7eSJan Schmidt 
388fc36ed7eSJan Schmidt /*
389fc36ed7eSJan Schmidt  * return the last minor in the previous major tree_mod_seq number
390fc36ed7eSJan Schmidt  */
391fc36ed7eSJan Schmidt u64 btrfs_tree_mod_seq_prev(u64 seq)
392fc36ed7eSJan Schmidt {
393fc36ed7eSJan Schmidt 	return (seq & 0xffffffff00000000ull) - 1ull;
394fc36ed7eSJan Schmidt }
395fc36ed7eSJan Schmidt 
396fc36ed7eSJan Schmidt /*
397097b8a7cSJan Schmidt  * This adds a new blocker to the tree mod log's blocker list if the @elem
398097b8a7cSJan Schmidt  * passed does not already have a sequence number set. So when a caller expects
399097b8a7cSJan Schmidt  * to record tree modifications, it should ensure to set elem->seq to zero
400097b8a7cSJan Schmidt  * before calling btrfs_get_tree_mod_seq.
401097b8a7cSJan Schmidt  * Returns a fresh, unused tree log modification sequence number, even if no new
402097b8a7cSJan Schmidt  * blocker was added.
403097b8a7cSJan Schmidt  */
404097b8a7cSJan Schmidt u64 btrfs_get_tree_mod_seq(struct btrfs_fs_info *fs_info,
405bd989ba3SJan Schmidt 			   struct seq_list *elem)
406bd989ba3SJan Schmidt {
407097b8a7cSJan Schmidt 	u64 seq;
408097b8a7cSJan Schmidt 
409097b8a7cSJan Schmidt 	tree_mod_log_write_lock(fs_info);
410bd989ba3SJan Schmidt 	spin_lock(&fs_info->tree_mod_seq_lock);
411097b8a7cSJan Schmidt 	if (!elem->seq) {
412fc36ed7eSJan Schmidt 		elem->seq = btrfs_inc_tree_mod_seq_major(fs_info);
413097b8a7cSJan Schmidt 		list_add_tail(&elem->list, &fs_info->tree_mod_seq_list);
414097b8a7cSJan Schmidt 	}
415fc36ed7eSJan Schmidt 	seq = btrfs_inc_tree_mod_seq_minor(fs_info);
416bd989ba3SJan Schmidt 	spin_unlock(&fs_info->tree_mod_seq_lock);
417097b8a7cSJan Schmidt 	tree_mod_log_write_unlock(fs_info);
418097b8a7cSJan Schmidt 
419097b8a7cSJan Schmidt 	return seq;
420bd989ba3SJan Schmidt }
421bd989ba3SJan Schmidt 
422bd989ba3SJan Schmidt void btrfs_put_tree_mod_seq(struct btrfs_fs_info *fs_info,
423bd989ba3SJan Schmidt 			    struct seq_list *elem)
424bd989ba3SJan Schmidt {
425bd989ba3SJan Schmidt 	struct rb_root *tm_root;
426bd989ba3SJan Schmidt 	struct rb_node *node;
427bd989ba3SJan Schmidt 	struct rb_node *next;
428bd989ba3SJan Schmidt 	struct seq_list *cur_elem;
429bd989ba3SJan Schmidt 	struct tree_mod_elem *tm;
430bd989ba3SJan Schmidt 	u64 min_seq = (u64)-1;
431bd989ba3SJan Schmidt 	u64 seq_putting = elem->seq;
432bd989ba3SJan Schmidt 
433bd989ba3SJan Schmidt 	if (!seq_putting)
434bd989ba3SJan Schmidt 		return;
435bd989ba3SJan Schmidt 
436bd989ba3SJan Schmidt 	spin_lock(&fs_info->tree_mod_seq_lock);
437bd989ba3SJan Schmidt 	list_del(&elem->list);
438097b8a7cSJan Schmidt 	elem->seq = 0;
439bd989ba3SJan Schmidt 
440bd989ba3SJan Schmidt 	list_for_each_entry(cur_elem, &fs_info->tree_mod_seq_list, list) {
441097b8a7cSJan Schmidt 		if (cur_elem->seq < min_seq) {
442bd989ba3SJan Schmidt 			if (seq_putting > cur_elem->seq) {
443bd989ba3SJan Schmidt 				/*
444bd989ba3SJan Schmidt 				 * blocker with lower sequence number exists, we
445bd989ba3SJan Schmidt 				 * cannot remove anything from the log
446bd989ba3SJan Schmidt 				 */
447097b8a7cSJan Schmidt 				spin_unlock(&fs_info->tree_mod_seq_lock);
448097b8a7cSJan Schmidt 				return;
449bd989ba3SJan Schmidt 			}
450bd989ba3SJan Schmidt 			min_seq = cur_elem->seq;
451bd989ba3SJan Schmidt 		}
452bd989ba3SJan Schmidt 	}
453097b8a7cSJan Schmidt 	spin_unlock(&fs_info->tree_mod_seq_lock);
454097b8a7cSJan Schmidt 
455097b8a7cSJan Schmidt 	/*
456bd989ba3SJan Schmidt 	 * anything that's lower than the lowest existing (read: blocked)
457bd989ba3SJan Schmidt 	 * sequence number can be removed from the tree.
458bd989ba3SJan Schmidt 	 */
459097b8a7cSJan Schmidt 	tree_mod_log_write_lock(fs_info);
460bd989ba3SJan Schmidt 	tm_root = &fs_info->tree_mod_log;
461bd989ba3SJan Schmidt 	for (node = rb_first(tm_root); node; node = next) {
462bd989ba3SJan Schmidt 		next = rb_next(node);
463bd989ba3SJan Schmidt 		tm = container_of(node, struct tree_mod_elem, node);
464097b8a7cSJan Schmidt 		if (tm->seq > min_seq)
465bd989ba3SJan Schmidt 			continue;
466bd989ba3SJan Schmidt 		rb_erase(node, tm_root);
467bd989ba3SJan Schmidt 		kfree(tm);
468bd989ba3SJan Schmidt 	}
469097b8a7cSJan Schmidt 	tree_mod_log_write_unlock(fs_info);
470bd989ba3SJan Schmidt }
471bd989ba3SJan Schmidt 
472bd989ba3SJan Schmidt /*
473bd989ba3SJan Schmidt  * key order of the log:
474bd989ba3SJan Schmidt  *       index -> sequence
475bd989ba3SJan Schmidt  *
476bd989ba3SJan Schmidt  * the index is the shifted logical of the *new* root node for root replace
477bd989ba3SJan Schmidt  * operations, or the shifted logical of the affected block for all other
478bd989ba3SJan Schmidt  * operations.
479bd989ba3SJan Schmidt  */
480bd989ba3SJan Schmidt static noinline int
481bd989ba3SJan Schmidt __tree_mod_log_insert(struct btrfs_fs_info *fs_info, struct tree_mod_elem *tm)
482bd989ba3SJan Schmidt {
483bd989ba3SJan Schmidt 	struct rb_root *tm_root;
484bd989ba3SJan Schmidt 	struct rb_node **new;
485bd989ba3SJan Schmidt 	struct rb_node *parent = NULL;
486bd989ba3SJan Schmidt 	struct tree_mod_elem *cur;
487c8cc6341SJosef Bacik 	int ret = 0;
488bd989ba3SJan Schmidt 
489c8cc6341SJosef Bacik 	BUG_ON(!tm);
490c8cc6341SJosef Bacik 
491c8cc6341SJosef Bacik 	tree_mod_log_write_lock(fs_info);
492c8cc6341SJosef Bacik 	if (list_empty(&fs_info->tree_mod_seq_list)) {
493c8cc6341SJosef Bacik 		tree_mod_log_write_unlock(fs_info);
494c8cc6341SJosef Bacik 		/*
495c8cc6341SJosef Bacik 		 * Ok we no longer care about logging modifications, free up tm
496c8cc6341SJosef Bacik 		 * and return 0.  Any callers shouldn't be using tm after
497c8cc6341SJosef Bacik 		 * calling tree_mod_log_insert, but if they do we can just
498c8cc6341SJosef Bacik 		 * change this to return a special error code to let the callers
499c8cc6341SJosef Bacik 		 * do their own thing.
500c8cc6341SJosef Bacik 		 */
501c8cc6341SJosef Bacik 		kfree(tm);
502c8cc6341SJosef Bacik 		return 0;
503c8cc6341SJosef Bacik 	}
504c8cc6341SJosef Bacik 
505c8cc6341SJosef Bacik 	spin_lock(&fs_info->tree_mod_seq_lock);
506c8cc6341SJosef Bacik 	tm->seq = btrfs_inc_tree_mod_seq_minor(fs_info);
507c8cc6341SJosef Bacik 	spin_unlock(&fs_info->tree_mod_seq_lock);
508bd989ba3SJan Schmidt 
509bd989ba3SJan Schmidt 	tm_root = &fs_info->tree_mod_log;
510bd989ba3SJan Schmidt 	new = &tm_root->rb_node;
511bd989ba3SJan Schmidt 	while (*new) {
512bd989ba3SJan Schmidt 		cur = container_of(*new, struct tree_mod_elem, node);
513bd989ba3SJan Schmidt 		parent = *new;
514bd989ba3SJan Schmidt 		if (cur->index < tm->index)
515bd989ba3SJan Schmidt 			new = &((*new)->rb_left);
516bd989ba3SJan Schmidt 		else if (cur->index > tm->index)
517bd989ba3SJan Schmidt 			new = &((*new)->rb_right);
518097b8a7cSJan Schmidt 		else if (cur->seq < tm->seq)
519bd989ba3SJan Schmidt 			new = &((*new)->rb_left);
520097b8a7cSJan Schmidt 		else if (cur->seq > tm->seq)
521bd989ba3SJan Schmidt 			new = &((*new)->rb_right);
522bd989ba3SJan Schmidt 		else {
523c8cc6341SJosef Bacik 			ret = -EEXIST;
524bd989ba3SJan Schmidt 			kfree(tm);
525c8cc6341SJosef Bacik 			goto out;
526bd989ba3SJan Schmidt 		}
527bd989ba3SJan Schmidt 	}
528bd989ba3SJan Schmidt 
529bd989ba3SJan Schmidt 	rb_link_node(&tm->node, parent, new);
530bd989ba3SJan Schmidt 	rb_insert_color(&tm->node, tm_root);
531c8cc6341SJosef Bacik out:
532c8cc6341SJosef Bacik 	tree_mod_log_write_unlock(fs_info);
533c8cc6341SJosef Bacik 	return ret;
534bd989ba3SJan Schmidt }
535bd989ba3SJan Schmidt 
536097b8a7cSJan Schmidt /*
537097b8a7cSJan Schmidt  * Determines if logging can be omitted. Returns 1 if it can. Otherwise, it
538097b8a7cSJan Schmidt  * returns zero with the tree_mod_log_lock acquired. The caller must hold
539097b8a7cSJan Schmidt  * this until all tree mod log insertions are recorded in the rb tree and then
540097b8a7cSJan Schmidt  * call tree_mod_log_write_unlock() to release.
541097b8a7cSJan Schmidt  */
542e9b7fd4dSJan Schmidt static inline int tree_mod_dont_log(struct btrfs_fs_info *fs_info,
543e9b7fd4dSJan Schmidt 				    struct extent_buffer *eb) {
544e9b7fd4dSJan Schmidt 	smp_mb();
545e9b7fd4dSJan Schmidt 	if (list_empty(&(fs_info)->tree_mod_seq_list))
546e9b7fd4dSJan Schmidt 		return 1;
547097b8a7cSJan Schmidt 	if (eb && btrfs_header_level(eb) == 0)
548e9b7fd4dSJan Schmidt 		return 1;
549e9b7fd4dSJan Schmidt 	return 0;
550e9b7fd4dSJan Schmidt }
551e9b7fd4dSJan Schmidt 
552097b8a7cSJan Schmidt static inline int
553097b8a7cSJan Schmidt __tree_mod_log_insert_key(struct btrfs_fs_info *fs_info,
554bd989ba3SJan Schmidt 			  struct extent_buffer *eb, int slot,
555bd989ba3SJan Schmidt 			  enum mod_log_op op, gfp_t flags)
556bd989ba3SJan Schmidt {
557097b8a7cSJan Schmidt 	struct tree_mod_elem *tm;
558bd989ba3SJan Schmidt 
559c8cc6341SJosef Bacik 	tm = kzalloc(sizeof(*tm), flags);
560c8cc6341SJosef Bacik 	if (!tm)
561c8cc6341SJosef Bacik 		return -ENOMEM;
562bd989ba3SJan Schmidt 
563bd989ba3SJan Schmidt 	tm->index = eb->start >> PAGE_CACHE_SHIFT;
564bd989ba3SJan Schmidt 	if (op != MOD_LOG_KEY_ADD) {
565bd989ba3SJan Schmidt 		btrfs_node_key(eb, &tm->key, slot);
566bd989ba3SJan Schmidt 		tm->blockptr = btrfs_node_blockptr(eb, slot);
567bd989ba3SJan Schmidt 	}
568bd989ba3SJan Schmidt 	tm->op = op;
569bd989ba3SJan Schmidt 	tm->slot = slot;
570bd989ba3SJan Schmidt 	tm->generation = btrfs_node_ptr_generation(eb, slot);
571bd989ba3SJan Schmidt 
572097b8a7cSJan Schmidt 	return __tree_mod_log_insert(fs_info, tm);
573097b8a7cSJan Schmidt }
574097b8a7cSJan Schmidt 
575097b8a7cSJan Schmidt static noinline int
576c8cc6341SJosef Bacik tree_mod_log_insert_key(struct btrfs_fs_info *fs_info,
577097b8a7cSJan Schmidt 			struct extent_buffer *eb, int slot,
578097b8a7cSJan Schmidt 			enum mod_log_op op, gfp_t flags)
579097b8a7cSJan Schmidt {
580097b8a7cSJan Schmidt 	if (tree_mod_dont_log(fs_info, eb))
581097b8a7cSJan Schmidt 		return 0;
582097b8a7cSJan Schmidt 
583c8cc6341SJosef Bacik 	return __tree_mod_log_insert_key(fs_info, eb, slot, op, flags);
584097b8a7cSJan Schmidt }
585097b8a7cSJan Schmidt 
586097b8a7cSJan Schmidt static noinline int
587bd989ba3SJan Schmidt tree_mod_log_insert_move(struct btrfs_fs_info *fs_info,
588bd989ba3SJan Schmidt 			 struct extent_buffer *eb, int dst_slot, int src_slot,
589bd989ba3SJan Schmidt 			 int nr_items, gfp_t flags)
590bd989ba3SJan Schmidt {
591bd989ba3SJan Schmidt 	struct tree_mod_elem *tm;
592bd989ba3SJan Schmidt 	int ret;
593bd989ba3SJan Schmidt 	int i;
594bd989ba3SJan Schmidt 
595f395694cSJan Schmidt 	if (tree_mod_dont_log(fs_info, eb))
596f395694cSJan Schmidt 		return 0;
597bd989ba3SJan Schmidt 
59801763a2eSJan Schmidt 	/*
59901763a2eSJan Schmidt 	 * When we override something during the move, we log these removals.
60001763a2eSJan Schmidt 	 * This can only happen when we move towards the beginning of the
60101763a2eSJan Schmidt 	 * buffer, i.e. dst_slot < src_slot.
60201763a2eSJan Schmidt 	 */
603bd989ba3SJan Schmidt 	for (i = 0; i + dst_slot < src_slot && i < nr_items; i++) {
604c8cc6341SJosef Bacik 		ret = __tree_mod_log_insert_key(fs_info, eb, i + dst_slot,
605c8cc6341SJosef Bacik 				MOD_LOG_KEY_REMOVE_WHILE_MOVING, GFP_NOFS);
606bd989ba3SJan Schmidt 		BUG_ON(ret < 0);
607bd989ba3SJan Schmidt 	}
608bd989ba3SJan Schmidt 
609c8cc6341SJosef Bacik 	tm = kzalloc(sizeof(*tm), flags);
610c8cc6341SJosef Bacik 	if (!tm)
611c8cc6341SJosef Bacik 		return -ENOMEM;
612f395694cSJan Schmidt 
613bd989ba3SJan Schmidt 	tm->index = eb->start >> PAGE_CACHE_SHIFT;
614bd989ba3SJan Schmidt 	tm->slot = src_slot;
615bd989ba3SJan Schmidt 	tm->move.dst_slot = dst_slot;
616bd989ba3SJan Schmidt 	tm->move.nr_items = nr_items;
617bd989ba3SJan Schmidt 	tm->op = MOD_LOG_MOVE_KEYS;
618bd989ba3SJan Schmidt 
619c8cc6341SJosef Bacik 	return __tree_mod_log_insert(fs_info, tm);
620bd989ba3SJan Schmidt }
621bd989ba3SJan Schmidt 
622097b8a7cSJan Schmidt static inline void
623097b8a7cSJan Schmidt __tree_mod_log_free_eb(struct btrfs_fs_info *fs_info, struct extent_buffer *eb)
624097b8a7cSJan Schmidt {
625097b8a7cSJan Schmidt 	int i;
626097b8a7cSJan Schmidt 	u32 nritems;
627097b8a7cSJan Schmidt 	int ret;
628097b8a7cSJan Schmidt 
629b12a3b1eSChris Mason 	if (btrfs_header_level(eb) == 0)
630b12a3b1eSChris Mason 		return;
631b12a3b1eSChris Mason 
632097b8a7cSJan Schmidt 	nritems = btrfs_header_nritems(eb);
633097b8a7cSJan Schmidt 	for (i = nritems - 1; i >= 0; i--) {
634c8cc6341SJosef Bacik 		ret = __tree_mod_log_insert_key(fs_info, eb, i,
635c8cc6341SJosef Bacik 				MOD_LOG_KEY_REMOVE_WHILE_FREEING, GFP_NOFS);
636097b8a7cSJan Schmidt 		BUG_ON(ret < 0);
637097b8a7cSJan Schmidt 	}
638097b8a7cSJan Schmidt }
639097b8a7cSJan Schmidt 
640bd989ba3SJan Schmidt static noinline int
641bd989ba3SJan Schmidt tree_mod_log_insert_root(struct btrfs_fs_info *fs_info,
642bd989ba3SJan Schmidt 			 struct extent_buffer *old_root,
64390f8d62eSJan Schmidt 			 struct extent_buffer *new_root, gfp_t flags,
64490f8d62eSJan Schmidt 			 int log_removal)
645bd989ba3SJan Schmidt {
646bd989ba3SJan Schmidt 	struct tree_mod_elem *tm;
647bd989ba3SJan Schmidt 
648097b8a7cSJan Schmidt 	if (tree_mod_dont_log(fs_info, NULL))
649097b8a7cSJan Schmidt 		return 0;
650097b8a7cSJan Schmidt 
65190f8d62eSJan Schmidt 	if (log_removal)
652d9abbf1cSJan Schmidt 		__tree_mod_log_free_eb(fs_info, old_root);
653d9abbf1cSJan Schmidt 
654c8cc6341SJosef Bacik 	tm = kzalloc(sizeof(*tm), flags);
655c8cc6341SJosef Bacik 	if (!tm)
656c8cc6341SJosef Bacik 		return -ENOMEM;
657bd989ba3SJan Schmidt 
658bd989ba3SJan Schmidt 	tm->index = new_root->start >> PAGE_CACHE_SHIFT;
659bd989ba3SJan Schmidt 	tm->old_root.logical = old_root->start;
660bd989ba3SJan Schmidt 	tm->old_root.level = btrfs_header_level(old_root);
661bd989ba3SJan Schmidt 	tm->generation = btrfs_header_generation(old_root);
662bd989ba3SJan Schmidt 	tm->op = MOD_LOG_ROOT_REPLACE;
663bd989ba3SJan Schmidt 
664c8cc6341SJosef Bacik 	return __tree_mod_log_insert(fs_info, tm);
665bd989ba3SJan Schmidt }
666bd989ba3SJan Schmidt 
667bd989ba3SJan Schmidt static struct tree_mod_elem *
668bd989ba3SJan Schmidt __tree_mod_log_search(struct btrfs_fs_info *fs_info, u64 start, u64 min_seq,
669bd989ba3SJan Schmidt 		      int smallest)
670bd989ba3SJan Schmidt {
671bd989ba3SJan Schmidt 	struct rb_root *tm_root;
672bd989ba3SJan Schmidt 	struct rb_node *node;
673bd989ba3SJan Schmidt 	struct tree_mod_elem *cur = NULL;
674bd989ba3SJan Schmidt 	struct tree_mod_elem *found = NULL;
675bd989ba3SJan Schmidt 	u64 index = start >> PAGE_CACHE_SHIFT;
676bd989ba3SJan Schmidt 
677097b8a7cSJan Schmidt 	tree_mod_log_read_lock(fs_info);
678bd989ba3SJan Schmidt 	tm_root = &fs_info->tree_mod_log;
679bd989ba3SJan Schmidt 	node = tm_root->rb_node;
680bd989ba3SJan Schmidt 	while (node) {
681bd989ba3SJan Schmidt 		cur = container_of(node, struct tree_mod_elem, node);
682bd989ba3SJan Schmidt 		if (cur->index < index) {
683bd989ba3SJan Schmidt 			node = node->rb_left;
684bd989ba3SJan Schmidt 		} else if (cur->index > index) {
685bd989ba3SJan Schmidt 			node = node->rb_right;
686097b8a7cSJan Schmidt 		} else if (cur->seq < min_seq) {
687bd989ba3SJan Schmidt 			node = node->rb_left;
688bd989ba3SJan Schmidt 		} else if (!smallest) {
689bd989ba3SJan Schmidt 			/* we want the node with the highest seq */
690bd989ba3SJan Schmidt 			if (found)
691097b8a7cSJan Schmidt 				BUG_ON(found->seq > cur->seq);
692bd989ba3SJan Schmidt 			found = cur;
693bd989ba3SJan Schmidt 			node = node->rb_left;
694097b8a7cSJan Schmidt 		} else if (cur->seq > min_seq) {
695bd989ba3SJan Schmidt 			/* we want the node with the smallest seq */
696bd989ba3SJan Schmidt 			if (found)
697097b8a7cSJan Schmidt 				BUG_ON(found->seq < cur->seq);
698bd989ba3SJan Schmidt 			found = cur;
699bd989ba3SJan Schmidt 			node = node->rb_right;
700bd989ba3SJan Schmidt 		} else {
701bd989ba3SJan Schmidt 			found = cur;
702bd989ba3SJan Schmidt 			break;
703bd989ba3SJan Schmidt 		}
704bd989ba3SJan Schmidt 	}
705097b8a7cSJan Schmidt 	tree_mod_log_read_unlock(fs_info);
706bd989ba3SJan Schmidt 
707bd989ba3SJan Schmidt 	return found;
708bd989ba3SJan Schmidt }
709bd989ba3SJan Schmidt 
710bd989ba3SJan Schmidt /*
711bd989ba3SJan Schmidt  * this returns the element from the log with the smallest time sequence
712bd989ba3SJan Schmidt  * value that's in the log (the oldest log item). any element with a time
713bd989ba3SJan Schmidt  * sequence lower than min_seq will be ignored.
714bd989ba3SJan Schmidt  */
715bd989ba3SJan Schmidt static struct tree_mod_elem *
716bd989ba3SJan Schmidt tree_mod_log_search_oldest(struct btrfs_fs_info *fs_info, u64 start,
717bd989ba3SJan Schmidt 			   u64 min_seq)
718bd989ba3SJan Schmidt {
719bd989ba3SJan Schmidt 	return __tree_mod_log_search(fs_info, start, min_seq, 1);
720bd989ba3SJan Schmidt }
721bd989ba3SJan Schmidt 
722bd989ba3SJan Schmidt /*
723bd989ba3SJan Schmidt  * this returns the element from the log with the largest time sequence
724bd989ba3SJan Schmidt  * value that's in the log (the most recent log item). any element with
725bd989ba3SJan Schmidt  * a time sequence lower than min_seq will be ignored.
726bd989ba3SJan Schmidt  */
727bd989ba3SJan Schmidt static struct tree_mod_elem *
728bd989ba3SJan Schmidt tree_mod_log_search(struct btrfs_fs_info *fs_info, u64 start, u64 min_seq)
729bd989ba3SJan Schmidt {
730bd989ba3SJan Schmidt 	return __tree_mod_log_search(fs_info, start, min_seq, 0);
731bd989ba3SJan Schmidt }
732bd989ba3SJan Schmidt 
733097b8a7cSJan Schmidt static noinline void
734bd989ba3SJan Schmidt tree_mod_log_eb_copy(struct btrfs_fs_info *fs_info, struct extent_buffer *dst,
735bd989ba3SJan Schmidt 		     struct extent_buffer *src, unsigned long dst_offset,
73690f8d62eSJan Schmidt 		     unsigned long src_offset, int nr_items)
737bd989ba3SJan Schmidt {
738bd989ba3SJan Schmidt 	int ret;
739bd989ba3SJan Schmidt 	int i;
740bd989ba3SJan Schmidt 
741e9b7fd4dSJan Schmidt 	if (tree_mod_dont_log(fs_info, NULL))
742bd989ba3SJan Schmidt 		return;
743bd989ba3SJan Schmidt 
744c8cc6341SJosef Bacik 	if (btrfs_header_level(dst) == 0 && btrfs_header_level(src) == 0)
745bd989ba3SJan Schmidt 		return;
746bd989ba3SJan Schmidt 
747bd989ba3SJan Schmidt 	for (i = 0; i < nr_items; i++) {
748c8cc6341SJosef Bacik 		ret = __tree_mod_log_insert_key(fs_info, src,
749097b8a7cSJan Schmidt 						i + src_offset,
750c8cc6341SJosef Bacik 						MOD_LOG_KEY_REMOVE, GFP_NOFS);
751bd989ba3SJan Schmidt 		BUG_ON(ret < 0);
752c8cc6341SJosef Bacik 		ret = __tree_mod_log_insert_key(fs_info, dst,
753097b8a7cSJan Schmidt 						     i + dst_offset,
754c8cc6341SJosef Bacik 						     MOD_LOG_KEY_ADD,
755c8cc6341SJosef Bacik 						     GFP_NOFS);
756bd989ba3SJan Schmidt 		BUG_ON(ret < 0);
757bd989ba3SJan Schmidt 	}
758bd989ba3SJan Schmidt }
759bd989ba3SJan Schmidt 
760bd989ba3SJan Schmidt static inline void
761bd989ba3SJan Schmidt tree_mod_log_eb_move(struct btrfs_fs_info *fs_info, struct extent_buffer *dst,
762bd989ba3SJan Schmidt 		     int dst_offset, int src_offset, int nr_items)
763bd989ba3SJan Schmidt {
764bd989ba3SJan Schmidt 	int ret;
765bd989ba3SJan Schmidt 	ret = tree_mod_log_insert_move(fs_info, dst, dst_offset, src_offset,
766bd989ba3SJan Schmidt 				       nr_items, GFP_NOFS);
767bd989ba3SJan Schmidt 	BUG_ON(ret < 0);
768bd989ba3SJan Schmidt }
769bd989ba3SJan Schmidt 
770097b8a7cSJan Schmidt static noinline void
771bd989ba3SJan Schmidt tree_mod_log_set_node_key(struct btrfs_fs_info *fs_info,
77232adf090SLiu Bo 			  struct extent_buffer *eb, int slot, int atomic)
773bd989ba3SJan Schmidt {
774bd989ba3SJan Schmidt 	int ret;
775bd989ba3SJan Schmidt 
776c8cc6341SJosef Bacik 	ret = __tree_mod_log_insert_key(fs_info, eb, slot,
777bd989ba3SJan Schmidt 					MOD_LOG_KEY_REPLACE,
778bd989ba3SJan Schmidt 					atomic ? GFP_ATOMIC : GFP_NOFS);
779bd989ba3SJan Schmidt 	BUG_ON(ret < 0);
780bd989ba3SJan Schmidt }
781bd989ba3SJan Schmidt 
782097b8a7cSJan Schmidt static noinline void
783097b8a7cSJan Schmidt tree_mod_log_free_eb(struct btrfs_fs_info *fs_info, struct extent_buffer *eb)
784bd989ba3SJan Schmidt {
785e9b7fd4dSJan Schmidt 	if (tree_mod_dont_log(fs_info, eb))
786bd989ba3SJan Schmidt 		return;
787097b8a7cSJan Schmidt 	__tree_mod_log_free_eb(fs_info, eb);
788bd989ba3SJan Schmidt }
789bd989ba3SJan Schmidt 
790097b8a7cSJan Schmidt static noinline void
791bd989ba3SJan Schmidt tree_mod_log_set_root_pointer(struct btrfs_root *root,
79290f8d62eSJan Schmidt 			      struct extent_buffer *new_root_node,
79390f8d62eSJan Schmidt 			      int log_removal)
794bd989ba3SJan Schmidt {
795bd989ba3SJan Schmidt 	int ret;
796bd989ba3SJan Schmidt 	ret = tree_mod_log_insert_root(root->fs_info, root->node,
79790f8d62eSJan Schmidt 				       new_root_node, GFP_NOFS, log_removal);
798bd989ba3SJan Schmidt 	BUG_ON(ret < 0);
799bd989ba3SJan Schmidt }
800bd989ba3SJan Schmidt 
801d352ac68SChris Mason /*
8025d4f98a2SYan Zheng  * check if the tree block can be shared by multiple trees
8035d4f98a2SYan Zheng  */
8045d4f98a2SYan Zheng int btrfs_block_can_be_shared(struct btrfs_root *root,
8055d4f98a2SYan Zheng 			      struct extent_buffer *buf)
8065d4f98a2SYan Zheng {
8075d4f98a2SYan Zheng 	/*
8085d4f98a2SYan Zheng 	 * Tree blocks not in refernece counted trees and tree roots
8095d4f98a2SYan Zheng 	 * are never shared. If a block was allocated after the last
8105d4f98a2SYan Zheng 	 * snapshot and the block was not allocated by tree relocation,
8115d4f98a2SYan Zheng 	 * we know the block is not shared.
8125d4f98a2SYan Zheng 	 */
8135d4f98a2SYan Zheng 	if (root->ref_cows &&
8145d4f98a2SYan Zheng 	    buf != root->node && buf != root->commit_root &&
8155d4f98a2SYan Zheng 	    (btrfs_header_generation(buf) <=
8165d4f98a2SYan Zheng 	     btrfs_root_last_snapshot(&root->root_item) ||
8175d4f98a2SYan Zheng 	     btrfs_header_flag(buf, BTRFS_HEADER_FLAG_RELOC)))
8185d4f98a2SYan Zheng 		return 1;
8195d4f98a2SYan Zheng #ifdef BTRFS_COMPAT_EXTENT_TREE_V0
8205d4f98a2SYan Zheng 	if (root->ref_cows &&
8215d4f98a2SYan Zheng 	    btrfs_header_backref_rev(buf) < BTRFS_MIXED_BACKREF_REV)
8225d4f98a2SYan Zheng 		return 1;
8235d4f98a2SYan Zheng #endif
8245d4f98a2SYan Zheng 	return 0;
8255d4f98a2SYan Zheng }
8265d4f98a2SYan Zheng 
8275d4f98a2SYan Zheng static noinline int update_ref_for_cow(struct btrfs_trans_handle *trans,
8285d4f98a2SYan Zheng 				       struct btrfs_root *root,
8295d4f98a2SYan Zheng 				       struct extent_buffer *buf,
830f0486c68SYan, Zheng 				       struct extent_buffer *cow,
831f0486c68SYan, Zheng 				       int *last_ref)
8325d4f98a2SYan Zheng {
8335d4f98a2SYan Zheng 	u64 refs;
8345d4f98a2SYan Zheng 	u64 owner;
8355d4f98a2SYan Zheng 	u64 flags;
8365d4f98a2SYan Zheng 	u64 new_flags = 0;
8375d4f98a2SYan Zheng 	int ret;
8385d4f98a2SYan Zheng 
8395d4f98a2SYan Zheng 	/*
8405d4f98a2SYan Zheng 	 * Backrefs update rules:
8415d4f98a2SYan Zheng 	 *
8425d4f98a2SYan Zheng 	 * Always use full backrefs for extent pointers in tree block
8435d4f98a2SYan Zheng 	 * allocated by tree relocation.
8445d4f98a2SYan Zheng 	 *
8455d4f98a2SYan Zheng 	 * If a shared tree block is no longer referenced by its owner
8465d4f98a2SYan Zheng 	 * tree (btrfs_header_owner(buf) == root->root_key.objectid),
8475d4f98a2SYan Zheng 	 * use full backrefs for extent pointers in tree block.
8485d4f98a2SYan Zheng 	 *
8495d4f98a2SYan Zheng 	 * If a tree block is been relocating
8505d4f98a2SYan Zheng 	 * (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID),
8515d4f98a2SYan Zheng 	 * use full backrefs for extent pointers in tree block.
8525d4f98a2SYan Zheng 	 * The reason for this is some operations (such as drop tree)
8535d4f98a2SYan Zheng 	 * are only allowed for blocks use full backrefs.
8545d4f98a2SYan Zheng 	 */
8555d4f98a2SYan Zheng 
8565d4f98a2SYan Zheng 	if (btrfs_block_can_be_shared(root, buf)) {
8575d4f98a2SYan Zheng 		ret = btrfs_lookup_extent_info(trans, root, buf->start,
8583173a18fSJosef Bacik 					       btrfs_header_level(buf), 1,
8593173a18fSJosef Bacik 					       &refs, &flags);
860be1a5564SMark Fasheh 		if (ret)
861be1a5564SMark Fasheh 			return ret;
862e5df9573SMark Fasheh 		if (refs == 0) {
863e5df9573SMark Fasheh 			ret = -EROFS;
864e5df9573SMark Fasheh 			btrfs_std_error(root->fs_info, ret);
865e5df9573SMark Fasheh 			return ret;
866e5df9573SMark Fasheh 		}
8675d4f98a2SYan Zheng 	} else {
8685d4f98a2SYan Zheng 		refs = 1;
8695d4f98a2SYan Zheng 		if (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID ||
8705d4f98a2SYan Zheng 		    btrfs_header_backref_rev(buf) < BTRFS_MIXED_BACKREF_REV)
8715d4f98a2SYan Zheng 			flags = BTRFS_BLOCK_FLAG_FULL_BACKREF;
8725d4f98a2SYan Zheng 		else
8735d4f98a2SYan Zheng 			flags = 0;
8745d4f98a2SYan Zheng 	}
8755d4f98a2SYan Zheng 
8765d4f98a2SYan Zheng 	owner = btrfs_header_owner(buf);
8775d4f98a2SYan Zheng 	BUG_ON(owner == BTRFS_TREE_RELOC_OBJECTID &&
8785d4f98a2SYan Zheng 	       !(flags & BTRFS_BLOCK_FLAG_FULL_BACKREF));
8795d4f98a2SYan Zheng 
8805d4f98a2SYan Zheng 	if (refs > 1) {
8815d4f98a2SYan Zheng 		if ((owner == root->root_key.objectid ||
8825d4f98a2SYan Zheng 		     root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID) &&
8835d4f98a2SYan Zheng 		    !(flags & BTRFS_BLOCK_FLAG_FULL_BACKREF)) {
88466d7e7f0SArne Jansen 			ret = btrfs_inc_ref(trans, root, buf, 1, 1);
88579787eaaSJeff Mahoney 			BUG_ON(ret); /* -ENOMEM */
8865d4f98a2SYan Zheng 
8875d4f98a2SYan Zheng 			if (root->root_key.objectid ==
8885d4f98a2SYan Zheng 			    BTRFS_TREE_RELOC_OBJECTID) {
88966d7e7f0SArne Jansen 				ret = btrfs_dec_ref(trans, root, buf, 0, 1);
89079787eaaSJeff Mahoney 				BUG_ON(ret); /* -ENOMEM */
89166d7e7f0SArne Jansen 				ret = btrfs_inc_ref(trans, root, cow, 1, 1);
89279787eaaSJeff Mahoney 				BUG_ON(ret); /* -ENOMEM */
8935d4f98a2SYan Zheng 			}
8945d4f98a2SYan Zheng 			new_flags |= BTRFS_BLOCK_FLAG_FULL_BACKREF;
8955d4f98a2SYan Zheng 		} else {
8965d4f98a2SYan Zheng 
8975d4f98a2SYan Zheng 			if (root->root_key.objectid ==
8985d4f98a2SYan Zheng 			    BTRFS_TREE_RELOC_OBJECTID)
89966d7e7f0SArne Jansen 				ret = btrfs_inc_ref(trans, root, cow, 1, 1);
9005d4f98a2SYan Zheng 			else
90166d7e7f0SArne Jansen 				ret = btrfs_inc_ref(trans, root, cow, 0, 1);
90279787eaaSJeff Mahoney 			BUG_ON(ret); /* -ENOMEM */
9035d4f98a2SYan Zheng 		}
9045d4f98a2SYan Zheng 		if (new_flags != 0) {
905b1c79e09SJosef Bacik 			int level = btrfs_header_level(buf);
906b1c79e09SJosef Bacik 
9075d4f98a2SYan Zheng 			ret = btrfs_set_disk_extent_flags(trans, root,
9085d4f98a2SYan Zheng 							  buf->start,
9095d4f98a2SYan Zheng 							  buf->len,
910b1c79e09SJosef Bacik 							  new_flags, level, 0);
911be1a5564SMark Fasheh 			if (ret)
912be1a5564SMark Fasheh 				return ret;
9135d4f98a2SYan Zheng 		}
9145d4f98a2SYan Zheng 	} else {
9155d4f98a2SYan Zheng 		if (flags & BTRFS_BLOCK_FLAG_FULL_BACKREF) {
9165d4f98a2SYan Zheng 			if (root->root_key.objectid ==
9175d4f98a2SYan Zheng 			    BTRFS_TREE_RELOC_OBJECTID)
91866d7e7f0SArne Jansen 				ret = btrfs_inc_ref(trans, root, cow, 1, 1);
9195d4f98a2SYan Zheng 			else
92066d7e7f0SArne Jansen 				ret = btrfs_inc_ref(trans, root, cow, 0, 1);
92179787eaaSJeff Mahoney 			BUG_ON(ret); /* -ENOMEM */
92266d7e7f0SArne Jansen 			ret = btrfs_dec_ref(trans, root, buf, 1, 1);
92379787eaaSJeff Mahoney 			BUG_ON(ret); /* -ENOMEM */
9245d4f98a2SYan Zheng 		}
9255d4f98a2SYan Zheng 		clean_tree_block(trans, root, buf);
926f0486c68SYan, Zheng 		*last_ref = 1;
9275d4f98a2SYan Zheng 	}
9285d4f98a2SYan Zheng 	return 0;
9295d4f98a2SYan Zheng }
9305d4f98a2SYan Zheng 
9315d4f98a2SYan Zheng /*
932d397712bSChris Mason  * does the dirty work in cow of a single block.  The parent block (if
933d397712bSChris Mason  * supplied) is updated to point to the new cow copy.  The new buffer is marked
934d397712bSChris Mason  * dirty and returned locked.  If you modify the block it needs to be marked
935d397712bSChris Mason  * dirty again.
936d352ac68SChris Mason  *
937d352ac68SChris Mason  * search_start -- an allocation hint for the new block
938d352ac68SChris Mason  *
939d397712bSChris Mason  * empty_size -- a hint that you plan on doing more cow.  This is the size in
940d397712bSChris Mason  * bytes the allocator should try to find free next to the block it returns.
941d397712bSChris Mason  * This is just a hint and may be ignored by the allocator.
942d352ac68SChris Mason  */
943d397712bSChris Mason static noinline int __btrfs_cow_block(struct btrfs_trans_handle *trans,
9445f39d397SChris Mason 			     struct btrfs_root *root,
9455f39d397SChris Mason 			     struct extent_buffer *buf,
9465f39d397SChris Mason 			     struct extent_buffer *parent, int parent_slot,
9475f39d397SChris Mason 			     struct extent_buffer **cow_ret,
9489fa8cfe7SChris Mason 			     u64 search_start, u64 empty_size)
9496702ed49SChris Mason {
9505d4f98a2SYan Zheng 	struct btrfs_disk_key disk_key;
9515f39d397SChris Mason 	struct extent_buffer *cow;
952be1a5564SMark Fasheh 	int level, ret;
953f0486c68SYan, Zheng 	int last_ref = 0;
954925baeddSChris Mason 	int unlock_orig = 0;
9555d4f98a2SYan Zheng 	u64 parent_start;
9566702ed49SChris Mason 
957925baeddSChris Mason 	if (*cow_ret == buf)
958925baeddSChris Mason 		unlock_orig = 1;
959925baeddSChris Mason 
960b9447ef8SChris Mason 	btrfs_assert_tree_locked(buf);
961925baeddSChris Mason 
9627bb86316SChris Mason 	WARN_ON(root->ref_cows && trans->transid !=
9637bb86316SChris Mason 		root->fs_info->running_transaction->transid);
9646702ed49SChris Mason 	WARN_ON(root->ref_cows && trans->transid != root->last_trans);
9655f39d397SChris Mason 
9667bb86316SChris Mason 	level = btrfs_header_level(buf);
96731840ae1SZheng Yan 
9685d4f98a2SYan Zheng 	if (level == 0)
9695d4f98a2SYan Zheng 		btrfs_item_key(buf, &disk_key, 0);
9705d4f98a2SYan Zheng 	else
9715d4f98a2SYan Zheng 		btrfs_node_key(buf, &disk_key, 0);
9725d4f98a2SYan Zheng 
9735d4f98a2SYan Zheng 	if (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID) {
9745d4f98a2SYan Zheng 		if (parent)
9755d4f98a2SYan Zheng 			parent_start = parent->start;
9765d4f98a2SYan Zheng 		else
9775d4f98a2SYan Zheng 			parent_start = 0;
9785d4f98a2SYan Zheng 	} else
9795d4f98a2SYan Zheng 		parent_start = 0;
9805d4f98a2SYan Zheng 
9815d4f98a2SYan Zheng 	cow = btrfs_alloc_free_block(trans, root, buf->len, parent_start,
9825d4f98a2SYan Zheng 				     root->root_key.objectid, &disk_key,
9835581a51aSJan Schmidt 				     level, search_start, empty_size);
9846702ed49SChris Mason 	if (IS_ERR(cow))
9856702ed49SChris Mason 		return PTR_ERR(cow);
9866702ed49SChris Mason 
987b4ce94deSChris Mason 	/* cow is set to blocking by btrfs_init_new_buffer */
988b4ce94deSChris Mason 
9895f39d397SChris Mason 	copy_extent_buffer(cow, buf, 0, 0, cow->len);
990db94535dSChris Mason 	btrfs_set_header_bytenr(cow, cow->start);
9915f39d397SChris Mason 	btrfs_set_header_generation(cow, trans->transid);
9925d4f98a2SYan Zheng 	btrfs_set_header_backref_rev(cow, BTRFS_MIXED_BACKREF_REV);
9935d4f98a2SYan Zheng 	btrfs_clear_header_flag(cow, BTRFS_HEADER_FLAG_WRITTEN |
9945d4f98a2SYan Zheng 				     BTRFS_HEADER_FLAG_RELOC);
9955d4f98a2SYan Zheng 	if (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID)
9965d4f98a2SYan Zheng 		btrfs_set_header_flag(cow, BTRFS_HEADER_FLAG_RELOC);
9975d4f98a2SYan Zheng 	else
9985f39d397SChris Mason 		btrfs_set_header_owner(cow, root->root_key.objectid);
9996702ed49SChris Mason 
10002b82032cSYan Zheng 	write_extent_buffer(cow, root->fs_info->fsid,
10012b82032cSYan Zheng 			    (unsigned long)btrfs_header_fsid(cow),
10022b82032cSYan Zheng 			    BTRFS_FSID_SIZE);
10032b82032cSYan Zheng 
1004be1a5564SMark Fasheh 	ret = update_ref_for_cow(trans, root, buf, cow, &last_ref);
1005b68dc2a9SMark Fasheh 	if (ret) {
100679787eaaSJeff Mahoney 		btrfs_abort_transaction(trans, root, ret);
1007b68dc2a9SMark Fasheh 		return ret;
1008b68dc2a9SMark Fasheh 	}
10091a40e23bSZheng Yan 
10103fd0a558SYan, Zheng 	if (root->ref_cows)
10113fd0a558SYan, Zheng 		btrfs_reloc_cow_block(trans, root, buf, cow);
10123fd0a558SYan, Zheng 
10136702ed49SChris Mason 	if (buf == root->node) {
1014925baeddSChris Mason 		WARN_ON(parent && parent != buf);
10155d4f98a2SYan Zheng 		if (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID ||
10165d4f98a2SYan Zheng 		    btrfs_header_backref_rev(buf) < BTRFS_MIXED_BACKREF_REV)
10175d4f98a2SYan Zheng 			parent_start = buf->start;
10185d4f98a2SYan Zheng 		else
10195d4f98a2SYan Zheng 			parent_start = 0;
1020925baeddSChris Mason 
10215f39d397SChris Mason 		extent_buffer_get(cow);
102290f8d62eSJan Schmidt 		tree_mod_log_set_root_pointer(root, cow, 1);
1023240f62c8SChris Mason 		rcu_assign_pointer(root->node, cow);
1024925baeddSChris Mason 
1025f0486c68SYan, Zheng 		btrfs_free_tree_block(trans, root, buf, parent_start,
10265581a51aSJan Schmidt 				      last_ref);
10275f39d397SChris Mason 		free_extent_buffer(buf);
10280b86a832SChris Mason 		add_root_to_dirty_list(root);
10296702ed49SChris Mason 	} else {
10305d4f98a2SYan Zheng 		if (root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID)
10315d4f98a2SYan Zheng 			parent_start = parent->start;
10325d4f98a2SYan Zheng 		else
10335d4f98a2SYan Zheng 			parent_start = 0;
10345d4f98a2SYan Zheng 
10355d4f98a2SYan Zheng 		WARN_ON(trans->transid != btrfs_header_generation(parent));
1036f230475eSJan Schmidt 		tree_mod_log_insert_key(root->fs_info, parent, parent_slot,
1037c8cc6341SJosef Bacik 					MOD_LOG_KEY_REPLACE, GFP_NOFS);
10385f39d397SChris Mason 		btrfs_set_node_blockptr(parent, parent_slot,
1039db94535dSChris Mason 					cow->start);
104074493f7aSChris Mason 		btrfs_set_node_ptr_generation(parent, parent_slot,
104174493f7aSChris Mason 					      trans->transid);
10426702ed49SChris Mason 		btrfs_mark_buffer_dirty(parent);
10437fb7d76fSJosef Bacik 		if (last_ref)
1044d9abbf1cSJan Schmidt 			tree_mod_log_free_eb(root->fs_info, buf);
1045f0486c68SYan, Zheng 		btrfs_free_tree_block(trans, root, buf, parent_start,
10465581a51aSJan Schmidt 				      last_ref);
10476702ed49SChris Mason 	}
1048925baeddSChris Mason 	if (unlock_orig)
1049925baeddSChris Mason 		btrfs_tree_unlock(buf);
10503083ee2eSJosef Bacik 	free_extent_buffer_stale(buf);
10516702ed49SChris Mason 	btrfs_mark_buffer_dirty(cow);
10526702ed49SChris Mason 	*cow_ret = cow;
10536702ed49SChris Mason 	return 0;
10546702ed49SChris Mason }
10556702ed49SChris Mason 
10565d9e75c4SJan Schmidt /*
10575d9e75c4SJan Schmidt  * returns the logical address of the oldest predecessor of the given root.
10585d9e75c4SJan Schmidt  * entries older than time_seq are ignored.
10595d9e75c4SJan Schmidt  */
10605d9e75c4SJan Schmidt static struct tree_mod_elem *
10615d9e75c4SJan Schmidt __tree_mod_log_oldest_root(struct btrfs_fs_info *fs_info,
106230b0463aSJan Schmidt 			   struct extent_buffer *eb_root, u64 time_seq)
10635d9e75c4SJan Schmidt {
10645d9e75c4SJan Schmidt 	struct tree_mod_elem *tm;
10655d9e75c4SJan Schmidt 	struct tree_mod_elem *found = NULL;
106630b0463aSJan Schmidt 	u64 root_logical = eb_root->start;
10675d9e75c4SJan Schmidt 	int looped = 0;
10685d9e75c4SJan Schmidt 
10695d9e75c4SJan Schmidt 	if (!time_seq)
1070*35a3621bSStefan Behrens 		return NULL;
10715d9e75c4SJan Schmidt 
10725d9e75c4SJan Schmidt 	/*
10735d9e75c4SJan Schmidt 	 * the very last operation that's logged for a root is the replacement
10745d9e75c4SJan Schmidt 	 * operation (if it is replaced at all). this has the index of the *new*
10755d9e75c4SJan Schmidt 	 * root, making it the very first operation that's logged for this root.
10765d9e75c4SJan Schmidt 	 */
10775d9e75c4SJan Schmidt 	while (1) {
10785d9e75c4SJan Schmidt 		tm = tree_mod_log_search_oldest(fs_info, root_logical,
10795d9e75c4SJan Schmidt 						time_seq);
10805d9e75c4SJan Schmidt 		if (!looped && !tm)
1081*35a3621bSStefan Behrens 			return NULL;
10825d9e75c4SJan Schmidt 		/*
108328da9fb4SJan Schmidt 		 * if there are no tree operation for the oldest root, we simply
108428da9fb4SJan Schmidt 		 * return it. this should only happen if that (old) root is at
108528da9fb4SJan Schmidt 		 * level 0.
10865d9e75c4SJan Schmidt 		 */
108728da9fb4SJan Schmidt 		if (!tm)
108828da9fb4SJan Schmidt 			break;
10895d9e75c4SJan Schmidt 
109028da9fb4SJan Schmidt 		/*
109128da9fb4SJan Schmidt 		 * if there's an operation that's not a root replacement, we
109228da9fb4SJan Schmidt 		 * found the oldest version of our root. normally, we'll find a
109328da9fb4SJan Schmidt 		 * MOD_LOG_KEY_REMOVE_WHILE_FREEING operation here.
109428da9fb4SJan Schmidt 		 */
10955d9e75c4SJan Schmidt 		if (tm->op != MOD_LOG_ROOT_REPLACE)
10965d9e75c4SJan Schmidt 			break;
10975d9e75c4SJan Schmidt 
10985d9e75c4SJan Schmidt 		found = tm;
10995d9e75c4SJan Schmidt 		root_logical = tm->old_root.logical;
11005d9e75c4SJan Schmidt 		looped = 1;
11015d9e75c4SJan Schmidt 	}
11025d9e75c4SJan Schmidt 
1103a95236d9SJan Schmidt 	/* if there's no old root to return, return what we found instead */
1104a95236d9SJan Schmidt 	if (!found)
1105a95236d9SJan Schmidt 		found = tm;
1106a95236d9SJan Schmidt 
11075d9e75c4SJan Schmidt 	return found;
11085d9e75c4SJan Schmidt }
11095d9e75c4SJan Schmidt 
11105d9e75c4SJan Schmidt /*
11115d9e75c4SJan Schmidt  * tm is a pointer to the first operation to rewind within eb. then, all
11125d9e75c4SJan Schmidt  * previous operations will be rewinded (until we reach something older than
11135d9e75c4SJan Schmidt  * time_seq).
11145d9e75c4SJan Schmidt  */
11155d9e75c4SJan Schmidt static void
1116f1ca7e98SJosef Bacik __tree_mod_log_rewind(struct btrfs_fs_info *fs_info, struct extent_buffer *eb,
1117f1ca7e98SJosef Bacik 		      u64 time_seq, struct tree_mod_elem *first_tm)
11185d9e75c4SJan Schmidt {
11195d9e75c4SJan Schmidt 	u32 n;
11205d9e75c4SJan Schmidt 	struct rb_node *next;
11215d9e75c4SJan Schmidt 	struct tree_mod_elem *tm = first_tm;
11225d9e75c4SJan Schmidt 	unsigned long o_dst;
11235d9e75c4SJan Schmidt 	unsigned long o_src;
11245d9e75c4SJan Schmidt 	unsigned long p_size = sizeof(struct btrfs_key_ptr);
11255d9e75c4SJan Schmidt 
11265d9e75c4SJan Schmidt 	n = btrfs_header_nritems(eb);
1127f1ca7e98SJosef Bacik 	tree_mod_log_read_lock(fs_info);
1128097b8a7cSJan Schmidt 	while (tm && tm->seq >= time_seq) {
11295d9e75c4SJan Schmidt 		/*
11305d9e75c4SJan Schmidt 		 * all the operations are recorded with the operator used for
11315d9e75c4SJan Schmidt 		 * the modification. as we're going backwards, we do the
11325d9e75c4SJan Schmidt 		 * opposite of each operation here.
11335d9e75c4SJan Schmidt 		 */
11345d9e75c4SJan Schmidt 		switch (tm->op) {
11355d9e75c4SJan Schmidt 		case MOD_LOG_KEY_REMOVE_WHILE_FREEING:
11365d9e75c4SJan Schmidt 			BUG_ON(tm->slot < n);
11371c697d4aSEric Sandeen 			/* Fallthrough */
113895c80bb1SLiu Bo 		case MOD_LOG_KEY_REMOVE_WHILE_MOVING:
11394c3e6969SChris Mason 		case MOD_LOG_KEY_REMOVE:
11405d9e75c4SJan Schmidt 			btrfs_set_node_key(eb, &tm->key, tm->slot);
11415d9e75c4SJan Schmidt 			btrfs_set_node_blockptr(eb, tm->slot, tm->blockptr);
11425d9e75c4SJan Schmidt 			btrfs_set_node_ptr_generation(eb, tm->slot,
11435d9e75c4SJan Schmidt 						      tm->generation);
11444c3e6969SChris Mason 			n++;
11455d9e75c4SJan Schmidt 			break;
11465d9e75c4SJan Schmidt 		case MOD_LOG_KEY_REPLACE:
11475d9e75c4SJan Schmidt 			BUG_ON(tm->slot >= n);
11485d9e75c4SJan Schmidt 			btrfs_set_node_key(eb, &tm->key, tm->slot);
11495d9e75c4SJan Schmidt 			btrfs_set_node_blockptr(eb, tm->slot, tm->blockptr);
11505d9e75c4SJan Schmidt 			btrfs_set_node_ptr_generation(eb, tm->slot,
11515d9e75c4SJan Schmidt 						      tm->generation);
11525d9e75c4SJan Schmidt 			break;
11535d9e75c4SJan Schmidt 		case MOD_LOG_KEY_ADD:
115419956c7eSJan Schmidt 			/* if a move operation is needed it's in the log */
11555d9e75c4SJan Schmidt 			n--;
11565d9e75c4SJan Schmidt 			break;
11575d9e75c4SJan Schmidt 		case MOD_LOG_MOVE_KEYS:
1158c3193108SJan Schmidt 			o_dst = btrfs_node_key_ptr_offset(tm->slot);
1159c3193108SJan Schmidt 			o_src = btrfs_node_key_ptr_offset(tm->move.dst_slot);
1160c3193108SJan Schmidt 			memmove_extent_buffer(eb, o_dst, o_src,
11615d9e75c4SJan Schmidt 					      tm->move.nr_items * p_size);
11625d9e75c4SJan Schmidt 			break;
11635d9e75c4SJan Schmidt 		case MOD_LOG_ROOT_REPLACE:
11645d9e75c4SJan Schmidt 			/*
11655d9e75c4SJan Schmidt 			 * this operation is special. for roots, this must be
11665d9e75c4SJan Schmidt 			 * handled explicitly before rewinding.
11675d9e75c4SJan Schmidt 			 * for non-roots, this operation may exist if the node
11685d9e75c4SJan Schmidt 			 * was a root: root A -> child B; then A gets empty and
11695d9e75c4SJan Schmidt 			 * B is promoted to the new root. in the mod log, we'll
11705d9e75c4SJan Schmidt 			 * have a root-replace operation for B, a tree block
11715d9e75c4SJan Schmidt 			 * that is no root. we simply ignore that operation.
11725d9e75c4SJan Schmidt 			 */
11735d9e75c4SJan Schmidt 			break;
11745d9e75c4SJan Schmidt 		}
11755d9e75c4SJan Schmidt 		next = rb_next(&tm->node);
11765d9e75c4SJan Schmidt 		if (!next)
11775d9e75c4SJan Schmidt 			break;
11785d9e75c4SJan Schmidt 		tm = container_of(next, struct tree_mod_elem, node);
11795d9e75c4SJan Schmidt 		if (tm->index != first_tm->index)
11805d9e75c4SJan Schmidt 			break;
11815d9e75c4SJan Schmidt 	}
1182f1ca7e98SJosef Bacik 	tree_mod_log_read_unlock(fs_info);
11835d9e75c4SJan Schmidt 	btrfs_set_header_nritems(eb, n);
11845d9e75c4SJan Schmidt }
11855d9e75c4SJan Schmidt 
118647fb091fSJan Schmidt /*
118747fb091fSJan Schmidt  * Called with eb read locked. If the buffer cannot be rewinded, the same buffer
118847fb091fSJan Schmidt  * is returned. If rewind operations happen, a fresh buffer is returned. The
118947fb091fSJan Schmidt  * returned buffer is always read-locked. If the returned buffer is not the
119047fb091fSJan Schmidt  * input buffer, the lock on the input buffer is released and the input buffer
119147fb091fSJan Schmidt  * is freed (its refcount is decremented).
119247fb091fSJan Schmidt  */
11935d9e75c4SJan Schmidt static struct extent_buffer *
11949ec72677SJosef Bacik tree_mod_log_rewind(struct btrfs_fs_info *fs_info, struct btrfs_path *path,
11959ec72677SJosef Bacik 		    struct extent_buffer *eb, u64 time_seq)
11965d9e75c4SJan Schmidt {
11975d9e75c4SJan Schmidt 	struct extent_buffer *eb_rewin;
11985d9e75c4SJan Schmidt 	struct tree_mod_elem *tm;
11995d9e75c4SJan Schmidt 
12005d9e75c4SJan Schmidt 	if (!time_seq)
12015d9e75c4SJan Schmidt 		return eb;
12025d9e75c4SJan Schmidt 
12035d9e75c4SJan Schmidt 	if (btrfs_header_level(eb) == 0)
12045d9e75c4SJan Schmidt 		return eb;
12055d9e75c4SJan Schmidt 
12065d9e75c4SJan Schmidt 	tm = tree_mod_log_search(fs_info, eb->start, time_seq);
12075d9e75c4SJan Schmidt 	if (!tm)
12085d9e75c4SJan Schmidt 		return eb;
12095d9e75c4SJan Schmidt 
12109ec72677SJosef Bacik 	btrfs_set_path_blocking(path);
12119ec72677SJosef Bacik 	btrfs_set_lock_blocking_rw(eb, BTRFS_READ_LOCK);
12129ec72677SJosef Bacik 
12135d9e75c4SJan Schmidt 	if (tm->op == MOD_LOG_KEY_REMOVE_WHILE_FREEING) {
12145d9e75c4SJan Schmidt 		BUG_ON(tm->slot != 0);
12155d9e75c4SJan Schmidt 		eb_rewin = alloc_dummy_extent_buffer(eb->start,
12165d9e75c4SJan Schmidt 						fs_info->tree_root->nodesize);
1217db7f3436SJosef Bacik 		if (!eb_rewin) {
12189ec72677SJosef Bacik 			btrfs_tree_read_unlock_blocking(eb);
1219db7f3436SJosef Bacik 			free_extent_buffer(eb);
1220db7f3436SJosef Bacik 			return NULL;
1221db7f3436SJosef Bacik 		}
12225d9e75c4SJan Schmidt 		btrfs_set_header_bytenr(eb_rewin, eb->start);
12235d9e75c4SJan Schmidt 		btrfs_set_header_backref_rev(eb_rewin,
12245d9e75c4SJan Schmidt 					     btrfs_header_backref_rev(eb));
12255d9e75c4SJan Schmidt 		btrfs_set_header_owner(eb_rewin, btrfs_header_owner(eb));
1226c3193108SJan Schmidt 		btrfs_set_header_level(eb_rewin, btrfs_header_level(eb));
12275d9e75c4SJan Schmidt 	} else {
12285d9e75c4SJan Schmidt 		eb_rewin = btrfs_clone_extent_buffer(eb);
1229db7f3436SJosef Bacik 		if (!eb_rewin) {
12309ec72677SJosef Bacik 			btrfs_tree_read_unlock_blocking(eb);
1231db7f3436SJosef Bacik 			free_extent_buffer(eb);
1232db7f3436SJosef Bacik 			return NULL;
1233db7f3436SJosef Bacik 		}
12345d9e75c4SJan Schmidt 	}
12355d9e75c4SJan Schmidt 
12369ec72677SJosef Bacik 	btrfs_clear_path_blocking(path, NULL, BTRFS_READ_LOCK);
12379ec72677SJosef Bacik 	btrfs_tree_read_unlock_blocking(eb);
12385d9e75c4SJan Schmidt 	free_extent_buffer(eb);
12395d9e75c4SJan Schmidt 
124047fb091fSJan Schmidt 	extent_buffer_get(eb_rewin);
124147fb091fSJan Schmidt 	btrfs_tree_read_lock(eb_rewin);
1242f1ca7e98SJosef Bacik 	__tree_mod_log_rewind(fs_info, eb_rewin, time_seq, tm);
124357911b8bSJan Schmidt 	WARN_ON(btrfs_header_nritems(eb_rewin) >
12442a745b14SArne Jansen 		BTRFS_NODEPTRS_PER_BLOCK(fs_info->tree_root));
12455d9e75c4SJan Schmidt 
12465d9e75c4SJan Schmidt 	return eb_rewin;
12475d9e75c4SJan Schmidt }
12485d9e75c4SJan Schmidt 
12498ba97a15SJan Schmidt /*
12508ba97a15SJan Schmidt  * get_old_root() rewinds the state of @root's root node to the given @time_seq
12518ba97a15SJan Schmidt  * value. If there are no changes, the current root->root_node is returned. If
12528ba97a15SJan Schmidt  * anything changed in between, there's a fresh buffer allocated on which the
12538ba97a15SJan Schmidt  * rewind operations are done. In any case, the returned buffer is read locked.
12548ba97a15SJan Schmidt  * Returns NULL on error (with no locks held).
12558ba97a15SJan Schmidt  */
12565d9e75c4SJan Schmidt static inline struct extent_buffer *
12575d9e75c4SJan Schmidt get_old_root(struct btrfs_root *root, u64 time_seq)
12585d9e75c4SJan Schmidt {
12595d9e75c4SJan Schmidt 	struct tree_mod_elem *tm;
126030b0463aSJan Schmidt 	struct extent_buffer *eb = NULL;
126130b0463aSJan Schmidt 	struct extent_buffer *eb_root;
12627bfdcf7fSLiu Bo 	struct extent_buffer *old;
1263a95236d9SJan Schmidt 	struct tree_mod_root *old_root = NULL;
12644325edd0SChris Mason 	u64 old_generation = 0;
1265a95236d9SJan Schmidt 	u64 logical;
1266834328a8SJan Schmidt 	u32 blocksize;
12675d9e75c4SJan Schmidt 
126830b0463aSJan Schmidt 	eb_root = btrfs_read_lock_root_node(root);
126930b0463aSJan Schmidt 	tm = __tree_mod_log_oldest_root(root->fs_info, eb_root, time_seq);
12705d9e75c4SJan Schmidt 	if (!tm)
127130b0463aSJan Schmidt 		return eb_root;
12725d9e75c4SJan Schmidt 
1273a95236d9SJan Schmidt 	if (tm->op == MOD_LOG_ROOT_REPLACE) {
12745d9e75c4SJan Schmidt 		old_root = &tm->old_root;
12755d9e75c4SJan Schmidt 		old_generation = tm->generation;
1276a95236d9SJan Schmidt 		logical = old_root->logical;
1277a95236d9SJan Schmidt 	} else {
127830b0463aSJan Schmidt 		logical = eb_root->start;
1279a95236d9SJan Schmidt 	}
12805d9e75c4SJan Schmidt 
1281a95236d9SJan Schmidt 	tm = tree_mod_log_search(root->fs_info, logical, time_seq);
1282834328a8SJan Schmidt 	if (old_root && tm && tm->op != MOD_LOG_KEY_REMOVE_WHILE_FREEING) {
128330b0463aSJan Schmidt 		btrfs_tree_read_unlock(eb_root);
128430b0463aSJan Schmidt 		free_extent_buffer(eb_root);
1285834328a8SJan Schmidt 		blocksize = btrfs_level_size(root, old_root->level);
12867bfdcf7fSLiu Bo 		old = read_tree_block(root, logical, blocksize, 0);
1287416bc658SJosef Bacik 		if (!old || !extent_buffer_uptodate(old)) {
1288416bc658SJosef Bacik 			free_extent_buffer(old);
1289834328a8SJan Schmidt 			pr_warn("btrfs: failed to read tree block %llu from get_old_root\n",
1290834328a8SJan Schmidt 				logical);
1291834328a8SJan Schmidt 			WARN_ON(1);
1292834328a8SJan Schmidt 		} else {
12937bfdcf7fSLiu Bo 			eb = btrfs_clone_extent_buffer(old);
12947bfdcf7fSLiu Bo 			free_extent_buffer(old);
1295834328a8SJan Schmidt 		}
1296834328a8SJan Schmidt 	} else if (old_root) {
129730b0463aSJan Schmidt 		btrfs_tree_read_unlock(eb_root);
129830b0463aSJan Schmidt 		free_extent_buffer(eb_root);
129928da9fb4SJan Schmidt 		eb = alloc_dummy_extent_buffer(logical, root->nodesize);
1300834328a8SJan Schmidt 	} else {
13019ec72677SJosef Bacik 		btrfs_set_lock_blocking_rw(eb_root, BTRFS_READ_LOCK);
130230b0463aSJan Schmidt 		eb = btrfs_clone_extent_buffer(eb_root);
13039ec72677SJosef Bacik 		btrfs_tree_read_unlock_blocking(eb_root);
130430b0463aSJan Schmidt 		free_extent_buffer(eb_root);
1305834328a8SJan Schmidt 	}
1306834328a8SJan Schmidt 
13078ba97a15SJan Schmidt 	if (!eb)
13088ba97a15SJan Schmidt 		return NULL;
1309d6381084SJan Schmidt 	extent_buffer_get(eb);
13108ba97a15SJan Schmidt 	btrfs_tree_read_lock(eb);
1311a95236d9SJan Schmidt 	if (old_root) {
13125d9e75c4SJan Schmidt 		btrfs_set_header_bytenr(eb, eb->start);
13135d9e75c4SJan Schmidt 		btrfs_set_header_backref_rev(eb, BTRFS_MIXED_BACKREF_REV);
131430b0463aSJan Schmidt 		btrfs_set_header_owner(eb, btrfs_header_owner(eb_root));
13155d9e75c4SJan Schmidt 		btrfs_set_header_level(eb, old_root->level);
13165d9e75c4SJan Schmidt 		btrfs_set_header_generation(eb, old_generation);
1317a95236d9SJan Schmidt 	}
131828da9fb4SJan Schmidt 	if (tm)
1319f1ca7e98SJosef Bacik 		__tree_mod_log_rewind(root->fs_info, eb, time_seq, tm);
132028da9fb4SJan Schmidt 	else
132128da9fb4SJan Schmidt 		WARN_ON(btrfs_header_level(eb) != 0);
132257911b8bSJan Schmidt 	WARN_ON(btrfs_header_nritems(eb) > BTRFS_NODEPTRS_PER_BLOCK(root));
13235d9e75c4SJan Schmidt 
13245d9e75c4SJan Schmidt 	return eb;
13255d9e75c4SJan Schmidt }
13265d9e75c4SJan Schmidt 
13275b6602e7SJan Schmidt int btrfs_old_root_level(struct btrfs_root *root, u64 time_seq)
13285b6602e7SJan Schmidt {
13295b6602e7SJan Schmidt 	struct tree_mod_elem *tm;
13305b6602e7SJan Schmidt 	int level;
133130b0463aSJan Schmidt 	struct extent_buffer *eb_root = btrfs_root_node(root);
13325b6602e7SJan Schmidt 
133330b0463aSJan Schmidt 	tm = __tree_mod_log_oldest_root(root->fs_info, eb_root, time_seq);
13345b6602e7SJan Schmidt 	if (tm && tm->op == MOD_LOG_ROOT_REPLACE) {
13355b6602e7SJan Schmidt 		level = tm->old_root.level;
13365b6602e7SJan Schmidt 	} else {
133730b0463aSJan Schmidt 		level = btrfs_header_level(eb_root);
13385b6602e7SJan Schmidt 	}
133930b0463aSJan Schmidt 	free_extent_buffer(eb_root);
13405b6602e7SJan Schmidt 
13415b6602e7SJan Schmidt 	return level;
13425b6602e7SJan Schmidt }
13435b6602e7SJan Schmidt 
13445d4f98a2SYan Zheng static inline int should_cow_block(struct btrfs_trans_handle *trans,
13455d4f98a2SYan Zheng 				   struct btrfs_root *root,
13465d4f98a2SYan Zheng 				   struct extent_buffer *buf)
13475d4f98a2SYan Zheng {
1348f1ebcc74SLiu Bo 	/* ensure we can see the force_cow */
1349f1ebcc74SLiu Bo 	smp_rmb();
1350f1ebcc74SLiu Bo 
1351f1ebcc74SLiu Bo 	/*
1352f1ebcc74SLiu Bo 	 * We do not need to cow a block if
1353f1ebcc74SLiu Bo 	 * 1) this block is not created or changed in this transaction;
1354f1ebcc74SLiu Bo 	 * 2) this block does not belong to TREE_RELOC tree;
1355f1ebcc74SLiu Bo 	 * 3) the root is not forced COW.
1356f1ebcc74SLiu Bo 	 *
1357f1ebcc74SLiu Bo 	 * What is forced COW:
1358f1ebcc74SLiu Bo 	 *    when we create snapshot during commiting the transaction,
1359f1ebcc74SLiu Bo 	 *    after we've finished coping src root, we must COW the shared
1360f1ebcc74SLiu Bo 	 *    block to ensure the metadata consistency.
1361f1ebcc74SLiu Bo 	 */
13625d4f98a2SYan Zheng 	if (btrfs_header_generation(buf) == trans->transid &&
13635d4f98a2SYan Zheng 	    !btrfs_header_flag(buf, BTRFS_HEADER_FLAG_WRITTEN) &&
13645d4f98a2SYan Zheng 	    !(root->root_key.objectid != BTRFS_TREE_RELOC_OBJECTID &&
1365f1ebcc74SLiu Bo 	      btrfs_header_flag(buf, BTRFS_HEADER_FLAG_RELOC)) &&
1366f1ebcc74SLiu Bo 	    !root->force_cow)
13675d4f98a2SYan Zheng 		return 0;
13685d4f98a2SYan Zheng 	return 1;
13695d4f98a2SYan Zheng }
13705d4f98a2SYan Zheng 
1371d352ac68SChris Mason /*
1372d352ac68SChris Mason  * cows a single block, see __btrfs_cow_block for the real work.
1373d352ac68SChris Mason  * This version of it has extra checks so that a block isn't cow'd more than
1374d352ac68SChris Mason  * once per transaction, as long as it hasn't been written yet
1375d352ac68SChris Mason  */
1376d397712bSChris Mason noinline int btrfs_cow_block(struct btrfs_trans_handle *trans,
13775f39d397SChris Mason 		    struct btrfs_root *root, struct extent_buffer *buf,
13785f39d397SChris Mason 		    struct extent_buffer *parent, int parent_slot,
13799fa8cfe7SChris Mason 		    struct extent_buffer **cow_ret)
138002217ed2SChris Mason {
13816702ed49SChris Mason 	u64 search_start;
1382f510cfecSChris Mason 	int ret;
1383dc17ff8fSChris Mason 
138431b1a2bdSJulia Lawall 	if (trans->transaction != root->fs_info->running_transaction)
138531b1a2bdSJulia Lawall 		WARN(1, KERN_CRIT "trans %llu running %llu\n",
1386d397712bSChris Mason 		       (unsigned long long)trans->transid,
1387d397712bSChris Mason 		       (unsigned long long)
1388ccd467d6SChris Mason 		       root->fs_info->running_transaction->transid);
138931b1a2bdSJulia Lawall 
139031b1a2bdSJulia Lawall 	if (trans->transid != root->fs_info->generation)
139131b1a2bdSJulia Lawall 		WARN(1, KERN_CRIT "trans %llu running %llu\n",
1392d397712bSChris Mason 		       (unsigned long long)trans->transid,
1393d397712bSChris Mason 		       (unsigned long long)root->fs_info->generation);
1394dc17ff8fSChris Mason 
13955d4f98a2SYan Zheng 	if (!should_cow_block(trans, root, buf)) {
139602217ed2SChris Mason 		*cow_ret = buf;
139702217ed2SChris Mason 		return 0;
139802217ed2SChris Mason 	}
1399c487685dSChris Mason 
14000b86a832SChris Mason 	search_start = buf->start & ~((u64)(1024 * 1024 * 1024) - 1);
1401b4ce94deSChris Mason 
1402b4ce94deSChris Mason 	if (parent)
1403b4ce94deSChris Mason 		btrfs_set_lock_blocking(parent);
1404b4ce94deSChris Mason 	btrfs_set_lock_blocking(buf);
1405b4ce94deSChris Mason 
1406f510cfecSChris Mason 	ret = __btrfs_cow_block(trans, root, buf, parent,
14079fa8cfe7SChris Mason 				 parent_slot, cow_ret, search_start, 0);
14081abe9b8aSliubo 
14091abe9b8aSliubo 	trace_btrfs_cow_block(root, buf, *cow_ret);
14101abe9b8aSliubo 
1411f510cfecSChris Mason 	return ret;
14122c90e5d6SChris Mason }
14136702ed49SChris Mason 
1414d352ac68SChris Mason /*
1415d352ac68SChris Mason  * helper function for defrag to decide if two blocks pointed to by a
1416d352ac68SChris Mason  * node are actually close by
1417d352ac68SChris Mason  */
14186b80053dSChris Mason static int close_blocks(u64 blocknr, u64 other, u32 blocksize)
14196702ed49SChris Mason {
14206b80053dSChris Mason 	if (blocknr < other && other - (blocknr + blocksize) < 32768)
14216702ed49SChris Mason 		return 1;
14226b80053dSChris Mason 	if (blocknr > other && blocknr - (other + blocksize) < 32768)
14236702ed49SChris Mason 		return 1;
142402217ed2SChris Mason 	return 0;
142502217ed2SChris Mason }
142602217ed2SChris Mason 
1427081e9573SChris Mason /*
1428081e9573SChris Mason  * compare two keys in a memcmp fashion
1429081e9573SChris Mason  */
1430081e9573SChris Mason static int comp_keys(struct btrfs_disk_key *disk, struct btrfs_key *k2)
1431081e9573SChris Mason {
1432081e9573SChris Mason 	struct btrfs_key k1;
1433081e9573SChris Mason 
1434081e9573SChris Mason 	btrfs_disk_key_to_cpu(&k1, disk);
1435081e9573SChris Mason 
143620736abaSDiego Calleja 	return btrfs_comp_cpu_keys(&k1, k2);
1437081e9573SChris Mason }
1438081e9573SChris Mason 
1439f3465ca4SJosef Bacik /*
1440f3465ca4SJosef Bacik  * same as comp_keys only with two btrfs_key's
1441f3465ca4SJosef Bacik  */
14425d4f98a2SYan Zheng int btrfs_comp_cpu_keys(struct btrfs_key *k1, struct btrfs_key *k2)
1443f3465ca4SJosef Bacik {
1444f3465ca4SJosef Bacik 	if (k1->objectid > k2->objectid)
1445f3465ca4SJosef Bacik 		return 1;
1446f3465ca4SJosef Bacik 	if (k1->objectid < k2->objectid)
1447f3465ca4SJosef Bacik 		return -1;
1448f3465ca4SJosef Bacik 	if (k1->type > k2->type)
1449f3465ca4SJosef Bacik 		return 1;
1450f3465ca4SJosef Bacik 	if (k1->type < k2->type)
1451f3465ca4SJosef Bacik 		return -1;
1452f3465ca4SJosef Bacik 	if (k1->offset > k2->offset)
1453f3465ca4SJosef Bacik 		return 1;
1454f3465ca4SJosef Bacik 	if (k1->offset < k2->offset)
1455f3465ca4SJosef Bacik 		return -1;
1456f3465ca4SJosef Bacik 	return 0;
1457f3465ca4SJosef Bacik }
1458081e9573SChris Mason 
1459d352ac68SChris Mason /*
1460d352ac68SChris Mason  * this is used by the defrag code to go through all the
1461d352ac68SChris Mason  * leaves pointed to by a node and reallocate them so that
1462d352ac68SChris Mason  * disk order is close to key order
1463d352ac68SChris Mason  */
14646702ed49SChris Mason int btrfs_realloc_node(struct btrfs_trans_handle *trans,
14655f39d397SChris Mason 		       struct btrfs_root *root, struct extent_buffer *parent,
1466de78b51aSEric Sandeen 		       int start_slot, u64 *last_ret,
1467a6b6e75eSChris Mason 		       struct btrfs_key *progress)
14686702ed49SChris Mason {
14696b80053dSChris Mason 	struct extent_buffer *cur;
14706702ed49SChris Mason 	u64 blocknr;
1471ca7a79adSChris Mason 	u64 gen;
1472e9d0b13bSChris Mason 	u64 search_start = *last_ret;
1473e9d0b13bSChris Mason 	u64 last_block = 0;
14746702ed49SChris Mason 	u64 other;
14756702ed49SChris Mason 	u32 parent_nritems;
14766702ed49SChris Mason 	int end_slot;
14776702ed49SChris Mason 	int i;
14786702ed49SChris Mason 	int err = 0;
1479f2183bdeSChris Mason 	int parent_level;
14806b80053dSChris Mason 	int uptodate;
14816b80053dSChris Mason 	u32 blocksize;
1482081e9573SChris Mason 	int progress_passed = 0;
1483081e9573SChris Mason 	struct btrfs_disk_key disk_key;
14846702ed49SChris Mason 
14855708b959SChris Mason 	parent_level = btrfs_header_level(parent);
14865708b959SChris Mason 
14876c1500f2SJulia Lawall 	WARN_ON(trans->transaction != root->fs_info->running_transaction);
14886c1500f2SJulia Lawall 	WARN_ON(trans->transid != root->fs_info->generation);
148986479a04SChris Mason 
14906b80053dSChris Mason 	parent_nritems = btrfs_header_nritems(parent);
14916b80053dSChris Mason 	blocksize = btrfs_level_size(root, parent_level - 1);
14926702ed49SChris Mason 	end_slot = parent_nritems;
14936702ed49SChris Mason 
14946702ed49SChris Mason 	if (parent_nritems == 1)
14956702ed49SChris Mason 		return 0;
14966702ed49SChris Mason 
1497b4ce94deSChris Mason 	btrfs_set_lock_blocking(parent);
1498b4ce94deSChris Mason 
14996702ed49SChris Mason 	for (i = start_slot; i < end_slot; i++) {
15006702ed49SChris Mason 		int close = 1;
1501a6b6e75eSChris Mason 
1502081e9573SChris Mason 		btrfs_node_key(parent, &disk_key, i);
1503081e9573SChris Mason 		if (!progress_passed && comp_keys(&disk_key, progress) < 0)
1504081e9573SChris Mason 			continue;
1505081e9573SChris Mason 
1506081e9573SChris Mason 		progress_passed = 1;
15076b80053dSChris Mason 		blocknr = btrfs_node_blockptr(parent, i);
1508ca7a79adSChris Mason 		gen = btrfs_node_ptr_generation(parent, i);
1509e9d0b13bSChris Mason 		if (last_block == 0)
1510e9d0b13bSChris Mason 			last_block = blocknr;
15115708b959SChris Mason 
15126702ed49SChris Mason 		if (i > 0) {
15136b80053dSChris Mason 			other = btrfs_node_blockptr(parent, i - 1);
15146b80053dSChris Mason 			close = close_blocks(blocknr, other, blocksize);
15156702ed49SChris Mason 		}
15160ef3e66bSChris Mason 		if (!close && i < end_slot - 2) {
15176b80053dSChris Mason 			other = btrfs_node_blockptr(parent, i + 1);
15186b80053dSChris Mason 			close = close_blocks(blocknr, other, blocksize);
15196702ed49SChris Mason 		}
1520e9d0b13bSChris Mason 		if (close) {
1521e9d0b13bSChris Mason 			last_block = blocknr;
15226702ed49SChris Mason 			continue;
1523e9d0b13bSChris Mason 		}
15246702ed49SChris Mason 
15256b80053dSChris Mason 		cur = btrfs_find_tree_block(root, blocknr, blocksize);
15266b80053dSChris Mason 		if (cur)
1527b9fab919SChris Mason 			uptodate = btrfs_buffer_uptodate(cur, gen, 0);
15286b80053dSChris Mason 		else
15296b80053dSChris Mason 			uptodate = 0;
15305708b959SChris Mason 		if (!cur || !uptodate) {
15316b80053dSChris Mason 			if (!cur) {
15326b80053dSChris Mason 				cur = read_tree_block(root, blocknr,
1533ca7a79adSChris Mason 							 blocksize, gen);
1534416bc658SJosef Bacik 				if (!cur || !extent_buffer_uptodate(cur)) {
1535416bc658SJosef Bacik 					free_extent_buffer(cur);
153697d9a8a4STsutomu Itoh 					return -EIO;
1537416bc658SJosef Bacik 				}
15386b80053dSChris Mason 			} else if (!uptodate) {
1539018642a1STsutomu Itoh 				err = btrfs_read_buffer(cur, gen);
1540018642a1STsutomu Itoh 				if (err) {
1541018642a1STsutomu Itoh 					free_extent_buffer(cur);
1542018642a1STsutomu Itoh 					return err;
1543018642a1STsutomu Itoh 				}
15446702ed49SChris Mason 			}
1545f2183bdeSChris Mason 		}
1546e9d0b13bSChris Mason 		if (search_start == 0)
15476b80053dSChris Mason 			search_start = last_block;
1548e9d0b13bSChris Mason 
1549e7a84565SChris Mason 		btrfs_tree_lock(cur);
1550b4ce94deSChris Mason 		btrfs_set_lock_blocking(cur);
15516b80053dSChris Mason 		err = __btrfs_cow_block(trans, root, cur, parent, i,
1552e7a84565SChris Mason 					&cur, search_start,
15536b80053dSChris Mason 					min(16 * blocksize,
15549fa8cfe7SChris Mason 					    (end_slot - i) * blocksize));
1555252c38f0SYan 		if (err) {
1556e7a84565SChris Mason 			btrfs_tree_unlock(cur);
15576b80053dSChris Mason 			free_extent_buffer(cur);
15586702ed49SChris Mason 			break;
1559252c38f0SYan 		}
1560e7a84565SChris Mason 		search_start = cur->start;
1561e7a84565SChris Mason 		last_block = cur->start;
1562f2183bdeSChris Mason 		*last_ret = search_start;
1563e7a84565SChris Mason 		btrfs_tree_unlock(cur);
1564e7a84565SChris Mason 		free_extent_buffer(cur);
15656702ed49SChris Mason 	}
15666702ed49SChris Mason 	return err;
15676702ed49SChris Mason }
15686702ed49SChris Mason 
156974123bd7SChris Mason /*
157074123bd7SChris Mason  * The leaf data grows from end-to-front in the node.
157174123bd7SChris Mason  * this returns the address of the start of the last item,
157274123bd7SChris Mason  * which is the stop of the leaf data stack
157374123bd7SChris Mason  */
1574123abc88SChris Mason static inline unsigned int leaf_data_end(struct btrfs_root *root,
15755f39d397SChris Mason 					 struct extent_buffer *leaf)
1576be0e5c09SChris Mason {
15775f39d397SChris Mason 	u32 nr = btrfs_header_nritems(leaf);
1578be0e5c09SChris Mason 	if (nr == 0)
1579123abc88SChris Mason 		return BTRFS_LEAF_DATA_SIZE(root);
15805f39d397SChris Mason 	return btrfs_item_offset_nr(leaf, nr - 1);
1581be0e5c09SChris Mason }
1582be0e5c09SChris Mason 
1583aa5d6bedSChris Mason 
158474123bd7SChris Mason /*
15855f39d397SChris Mason  * search for key in the extent_buffer.  The items start at offset p,
15865f39d397SChris Mason  * and they are item_size apart.  There are 'max' items in p.
15875f39d397SChris Mason  *
158874123bd7SChris Mason  * the slot in the array is returned via slot, and it points to
158974123bd7SChris Mason  * the place where you would insert key if it is not found in
159074123bd7SChris Mason  * the array.
159174123bd7SChris Mason  *
159274123bd7SChris Mason  * slot may point to max if the key is bigger than all of the keys
159374123bd7SChris Mason  */
1594e02119d5SChris Mason static noinline int generic_bin_search(struct extent_buffer *eb,
1595e02119d5SChris Mason 				       unsigned long p,
15965f39d397SChris Mason 				       int item_size, struct btrfs_key *key,
1597be0e5c09SChris Mason 				       int max, int *slot)
1598be0e5c09SChris Mason {
1599be0e5c09SChris Mason 	int low = 0;
1600be0e5c09SChris Mason 	int high = max;
1601be0e5c09SChris Mason 	int mid;
1602be0e5c09SChris Mason 	int ret;
1603479965d6SChris Mason 	struct btrfs_disk_key *tmp = NULL;
16045f39d397SChris Mason 	struct btrfs_disk_key unaligned;
16055f39d397SChris Mason 	unsigned long offset;
16065f39d397SChris Mason 	char *kaddr = NULL;
16075f39d397SChris Mason 	unsigned long map_start = 0;
16085f39d397SChris Mason 	unsigned long map_len = 0;
1609479965d6SChris Mason 	int err;
1610be0e5c09SChris Mason 
1611be0e5c09SChris Mason 	while (low < high) {
1612be0e5c09SChris Mason 		mid = (low + high) / 2;
16135f39d397SChris Mason 		offset = p + mid * item_size;
16145f39d397SChris Mason 
1615a6591715SChris Mason 		if (!kaddr || offset < map_start ||
16165f39d397SChris Mason 		    (offset + sizeof(struct btrfs_disk_key)) >
16175f39d397SChris Mason 		    map_start + map_len) {
1618934d375bSChris Mason 
1619934d375bSChris Mason 			err = map_private_extent_buffer(eb, offset,
1620479965d6SChris Mason 						sizeof(struct btrfs_disk_key),
1621a6591715SChris Mason 						&kaddr, &map_start, &map_len);
16225f39d397SChris Mason 
1623479965d6SChris Mason 			if (!err) {
1624479965d6SChris Mason 				tmp = (struct btrfs_disk_key *)(kaddr + offset -
1625479965d6SChris Mason 							map_start);
1626479965d6SChris Mason 			} else {
16275f39d397SChris Mason 				read_extent_buffer(eb, &unaligned,
16285f39d397SChris Mason 						   offset, sizeof(unaligned));
16295f39d397SChris Mason 				tmp = &unaligned;
1630479965d6SChris Mason 			}
1631479965d6SChris Mason 
16325f39d397SChris Mason 		} else {
16335f39d397SChris Mason 			tmp = (struct btrfs_disk_key *)(kaddr + offset -
16345f39d397SChris Mason 							map_start);
16355f39d397SChris Mason 		}
1636be0e5c09SChris Mason 		ret = comp_keys(tmp, key);
1637be0e5c09SChris Mason 
1638be0e5c09SChris Mason 		if (ret < 0)
1639be0e5c09SChris Mason 			low = mid + 1;
1640be0e5c09SChris Mason 		else if (ret > 0)
1641be0e5c09SChris Mason 			high = mid;
1642be0e5c09SChris Mason 		else {
1643be0e5c09SChris Mason 			*slot = mid;
1644be0e5c09SChris Mason 			return 0;
1645be0e5c09SChris Mason 		}
1646be0e5c09SChris Mason 	}
1647be0e5c09SChris Mason 	*slot = low;
1648be0e5c09SChris Mason 	return 1;
1649be0e5c09SChris Mason }
1650be0e5c09SChris Mason 
165197571fd0SChris Mason /*
165297571fd0SChris Mason  * simple bin_search frontend that does the right thing for
165397571fd0SChris Mason  * leaves vs nodes
165497571fd0SChris Mason  */
16555f39d397SChris Mason static int bin_search(struct extent_buffer *eb, struct btrfs_key *key,
16565f39d397SChris Mason 		      int level, int *slot)
1657be0e5c09SChris Mason {
1658f775738fSWang Sheng-Hui 	if (level == 0)
16595f39d397SChris Mason 		return generic_bin_search(eb,
16605f39d397SChris Mason 					  offsetof(struct btrfs_leaf, items),
16610783fcfcSChris Mason 					  sizeof(struct btrfs_item),
16625f39d397SChris Mason 					  key, btrfs_header_nritems(eb),
16637518a238SChris Mason 					  slot);
1664f775738fSWang Sheng-Hui 	else
16655f39d397SChris Mason 		return generic_bin_search(eb,
16665f39d397SChris Mason 					  offsetof(struct btrfs_node, ptrs),
1667123abc88SChris Mason 					  sizeof(struct btrfs_key_ptr),
16685f39d397SChris Mason 					  key, btrfs_header_nritems(eb),
16697518a238SChris Mason 					  slot);
1670be0e5c09SChris Mason }
1671be0e5c09SChris Mason 
16725d4f98a2SYan Zheng int btrfs_bin_search(struct extent_buffer *eb, struct btrfs_key *key,
16735d4f98a2SYan Zheng 		     int level, int *slot)
16745d4f98a2SYan Zheng {
16755d4f98a2SYan Zheng 	return bin_search(eb, key, level, slot);
16765d4f98a2SYan Zheng }
16775d4f98a2SYan Zheng 
1678f0486c68SYan, Zheng static void root_add_used(struct btrfs_root *root, u32 size)
1679f0486c68SYan, Zheng {
1680f0486c68SYan, Zheng 	spin_lock(&root->accounting_lock);
1681f0486c68SYan, Zheng 	btrfs_set_root_used(&root->root_item,
1682f0486c68SYan, Zheng 			    btrfs_root_used(&root->root_item) + size);
1683f0486c68SYan, Zheng 	spin_unlock(&root->accounting_lock);
1684f0486c68SYan, Zheng }
1685f0486c68SYan, Zheng 
1686f0486c68SYan, Zheng static void root_sub_used(struct btrfs_root *root, u32 size)
1687f0486c68SYan, Zheng {
1688f0486c68SYan, Zheng 	spin_lock(&root->accounting_lock);
1689f0486c68SYan, Zheng 	btrfs_set_root_used(&root->root_item,
1690f0486c68SYan, Zheng 			    btrfs_root_used(&root->root_item) - size);
1691f0486c68SYan, Zheng 	spin_unlock(&root->accounting_lock);
1692f0486c68SYan, Zheng }
1693f0486c68SYan, Zheng 
1694d352ac68SChris Mason /* given a node and slot number, this reads the blocks it points to.  The
1695d352ac68SChris Mason  * extent buffer is returned with a reference taken (but unlocked).
1696d352ac68SChris Mason  * NULL is returned on error.
1697d352ac68SChris Mason  */
1698e02119d5SChris Mason static noinline struct extent_buffer *read_node_slot(struct btrfs_root *root,
16995f39d397SChris Mason 				   struct extent_buffer *parent, int slot)
1700bb803951SChris Mason {
1701ca7a79adSChris Mason 	int level = btrfs_header_level(parent);
1702416bc658SJosef Bacik 	struct extent_buffer *eb;
1703416bc658SJosef Bacik 
1704bb803951SChris Mason 	if (slot < 0)
1705bb803951SChris Mason 		return NULL;
17065f39d397SChris Mason 	if (slot >= btrfs_header_nritems(parent))
1707bb803951SChris Mason 		return NULL;
1708ca7a79adSChris Mason 
1709ca7a79adSChris Mason 	BUG_ON(level == 0);
1710ca7a79adSChris Mason 
1711416bc658SJosef Bacik 	eb = read_tree_block(root, btrfs_node_blockptr(parent, slot),
1712ca7a79adSChris Mason 			     btrfs_level_size(root, level - 1),
1713ca7a79adSChris Mason 			     btrfs_node_ptr_generation(parent, slot));
1714416bc658SJosef Bacik 	if (eb && !extent_buffer_uptodate(eb)) {
1715416bc658SJosef Bacik 		free_extent_buffer(eb);
1716416bc658SJosef Bacik 		eb = NULL;
1717416bc658SJosef Bacik 	}
1718416bc658SJosef Bacik 
1719416bc658SJosef Bacik 	return eb;
1720bb803951SChris Mason }
1721bb803951SChris Mason 
1722d352ac68SChris Mason /*
1723d352ac68SChris Mason  * node level balancing, used to make sure nodes are in proper order for
1724d352ac68SChris Mason  * item deletion.  We balance from the top down, so we have to make sure
1725d352ac68SChris Mason  * that a deletion won't leave an node completely empty later on.
1726d352ac68SChris Mason  */
1727e02119d5SChris Mason static noinline int balance_level(struct btrfs_trans_handle *trans,
172898ed5174SChris Mason 			 struct btrfs_root *root,
172998ed5174SChris Mason 			 struct btrfs_path *path, int level)
1730bb803951SChris Mason {
17315f39d397SChris Mason 	struct extent_buffer *right = NULL;
17325f39d397SChris Mason 	struct extent_buffer *mid;
17335f39d397SChris Mason 	struct extent_buffer *left = NULL;
17345f39d397SChris Mason 	struct extent_buffer *parent = NULL;
1735bb803951SChris Mason 	int ret = 0;
1736bb803951SChris Mason 	int wret;
1737bb803951SChris Mason 	int pslot;
1738bb803951SChris Mason 	int orig_slot = path->slots[level];
173979f95c82SChris Mason 	u64 orig_ptr;
1740bb803951SChris Mason 
1741bb803951SChris Mason 	if (level == 0)
1742bb803951SChris Mason 		return 0;
1743bb803951SChris Mason 
17445f39d397SChris Mason 	mid = path->nodes[level];
1745b4ce94deSChris Mason 
1746bd681513SChris Mason 	WARN_ON(path->locks[level] != BTRFS_WRITE_LOCK &&
1747bd681513SChris Mason 		path->locks[level] != BTRFS_WRITE_LOCK_BLOCKING);
17487bb86316SChris Mason 	WARN_ON(btrfs_header_generation(mid) != trans->transid);
17497bb86316SChris Mason 
17501d4f8a0cSChris Mason 	orig_ptr = btrfs_node_blockptr(mid, orig_slot);
175179f95c82SChris Mason 
1752a05a9bb1SLi Zefan 	if (level < BTRFS_MAX_LEVEL - 1) {
17535f39d397SChris Mason 		parent = path->nodes[level + 1];
1754bb803951SChris Mason 		pslot = path->slots[level + 1];
1755a05a9bb1SLi Zefan 	}
1756bb803951SChris Mason 
175740689478SChris Mason 	/*
175840689478SChris Mason 	 * deal with the case where there is only one pointer in the root
175940689478SChris Mason 	 * by promoting the node below to a root
176040689478SChris Mason 	 */
17615f39d397SChris Mason 	if (!parent) {
17625f39d397SChris Mason 		struct extent_buffer *child;
1763bb803951SChris Mason 
17645f39d397SChris Mason 		if (btrfs_header_nritems(mid) != 1)
1765bb803951SChris Mason 			return 0;
1766bb803951SChris Mason 
1767bb803951SChris Mason 		/* promote the child to a root */
17685f39d397SChris Mason 		child = read_node_slot(root, mid, 0);
1769305a26afSMark Fasheh 		if (!child) {
1770305a26afSMark Fasheh 			ret = -EROFS;
1771305a26afSMark Fasheh 			btrfs_std_error(root->fs_info, ret);
1772305a26afSMark Fasheh 			goto enospc;
1773305a26afSMark Fasheh 		}
1774305a26afSMark Fasheh 
1775925baeddSChris Mason 		btrfs_tree_lock(child);
1776b4ce94deSChris Mason 		btrfs_set_lock_blocking(child);
17779fa8cfe7SChris Mason 		ret = btrfs_cow_block(trans, root, child, mid, 0, &child);
1778f0486c68SYan, Zheng 		if (ret) {
1779f0486c68SYan, Zheng 			btrfs_tree_unlock(child);
1780f0486c68SYan, Zheng 			free_extent_buffer(child);
1781f0486c68SYan, Zheng 			goto enospc;
1782f0486c68SYan, Zheng 		}
17832f375ab9SYan 
178490f8d62eSJan Schmidt 		tree_mod_log_set_root_pointer(root, child, 1);
1785240f62c8SChris Mason 		rcu_assign_pointer(root->node, child);
1786925baeddSChris Mason 
17870b86a832SChris Mason 		add_root_to_dirty_list(root);
1788925baeddSChris Mason 		btrfs_tree_unlock(child);
1789b4ce94deSChris Mason 
1790925baeddSChris Mason 		path->locks[level] = 0;
1791bb803951SChris Mason 		path->nodes[level] = NULL;
17925f39d397SChris Mason 		clean_tree_block(trans, root, mid);
1793925baeddSChris Mason 		btrfs_tree_unlock(mid);
1794bb803951SChris Mason 		/* once for the path */
17955f39d397SChris Mason 		free_extent_buffer(mid);
1796f0486c68SYan, Zheng 
1797f0486c68SYan, Zheng 		root_sub_used(root, mid->len);
17985581a51aSJan Schmidt 		btrfs_free_tree_block(trans, root, mid, 0, 1);
1799bb803951SChris Mason 		/* once for the root ptr */
18003083ee2eSJosef Bacik 		free_extent_buffer_stale(mid);
1801f0486c68SYan, Zheng 		return 0;
1802bb803951SChris Mason 	}
18035f39d397SChris Mason 	if (btrfs_header_nritems(mid) >
1804123abc88SChris Mason 	    BTRFS_NODEPTRS_PER_BLOCK(root) / 4)
1805bb803951SChris Mason 		return 0;
1806bb803951SChris Mason 
18075f39d397SChris Mason 	left = read_node_slot(root, parent, pslot - 1);
18085f39d397SChris Mason 	if (left) {
1809925baeddSChris Mason 		btrfs_tree_lock(left);
1810b4ce94deSChris Mason 		btrfs_set_lock_blocking(left);
18115f39d397SChris Mason 		wret = btrfs_cow_block(trans, root, left,
18129fa8cfe7SChris Mason 				       parent, pslot - 1, &left);
181354aa1f4dSChris Mason 		if (wret) {
181454aa1f4dSChris Mason 			ret = wret;
181554aa1f4dSChris Mason 			goto enospc;
181654aa1f4dSChris Mason 		}
18172cc58cf2SChris Mason 	}
18185f39d397SChris Mason 	right = read_node_slot(root, parent, pslot + 1);
18195f39d397SChris Mason 	if (right) {
1820925baeddSChris Mason 		btrfs_tree_lock(right);
1821b4ce94deSChris Mason 		btrfs_set_lock_blocking(right);
18225f39d397SChris Mason 		wret = btrfs_cow_block(trans, root, right,
18239fa8cfe7SChris Mason 				       parent, pslot + 1, &right);
18242cc58cf2SChris Mason 		if (wret) {
18252cc58cf2SChris Mason 			ret = wret;
18262cc58cf2SChris Mason 			goto enospc;
18272cc58cf2SChris Mason 		}
18282cc58cf2SChris Mason 	}
18292cc58cf2SChris Mason 
18302cc58cf2SChris Mason 	/* first, try to make some room in the middle buffer */
18315f39d397SChris Mason 	if (left) {
18325f39d397SChris Mason 		orig_slot += btrfs_header_nritems(left);
1833bce4eae9SChris Mason 		wret = push_node_left(trans, root, left, mid, 1);
183479f95c82SChris Mason 		if (wret < 0)
183579f95c82SChris Mason 			ret = wret;
1836bb803951SChris Mason 	}
183779f95c82SChris Mason 
183879f95c82SChris Mason 	/*
183979f95c82SChris Mason 	 * then try to empty the right most buffer into the middle
184079f95c82SChris Mason 	 */
18415f39d397SChris Mason 	if (right) {
1842971a1f66SChris Mason 		wret = push_node_left(trans, root, mid, right, 1);
184354aa1f4dSChris Mason 		if (wret < 0 && wret != -ENOSPC)
184479f95c82SChris Mason 			ret = wret;
18455f39d397SChris Mason 		if (btrfs_header_nritems(right) == 0) {
18465f39d397SChris Mason 			clean_tree_block(trans, root, right);
1847925baeddSChris Mason 			btrfs_tree_unlock(right);
1848afe5fea7STsutomu Itoh 			del_ptr(root, path, level + 1, pslot + 1);
1849f0486c68SYan, Zheng 			root_sub_used(root, right->len);
18505581a51aSJan Schmidt 			btrfs_free_tree_block(trans, root, right, 0, 1);
18513083ee2eSJosef Bacik 			free_extent_buffer_stale(right);
1852f0486c68SYan, Zheng 			right = NULL;
1853bb803951SChris Mason 		} else {
18545f39d397SChris Mason 			struct btrfs_disk_key right_key;
18555f39d397SChris Mason 			btrfs_node_key(right, &right_key, 0);
1856f230475eSJan Schmidt 			tree_mod_log_set_node_key(root->fs_info, parent,
185732adf090SLiu Bo 						  pslot + 1, 0);
18585f39d397SChris Mason 			btrfs_set_node_key(parent, &right_key, pslot + 1);
18595f39d397SChris Mason 			btrfs_mark_buffer_dirty(parent);
1860bb803951SChris Mason 		}
1861bb803951SChris Mason 	}
18625f39d397SChris Mason 	if (btrfs_header_nritems(mid) == 1) {
186379f95c82SChris Mason 		/*
186479f95c82SChris Mason 		 * we're not allowed to leave a node with one item in the
186579f95c82SChris Mason 		 * tree during a delete.  A deletion from lower in the tree
186679f95c82SChris Mason 		 * could try to delete the only pointer in this node.
186779f95c82SChris Mason 		 * So, pull some keys from the left.
186879f95c82SChris Mason 		 * There has to be a left pointer at this point because
186979f95c82SChris Mason 		 * otherwise we would have pulled some pointers from the
187079f95c82SChris Mason 		 * right
187179f95c82SChris Mason 		 */
1872305a26afSMark Fasheh 		if (!left) {
1873305a26afSMark Fasheh 			ret = -EROFS;
1874305a26afSMark Fasheh 			btrfs_std_error(root->fs_info, ret);
1875305a26afSMark Fasheh 			goto enospc;
1876305a26afSMark Fasheh 		}
18775f39d397SChris Mason 		wret = balance_node_right(trans, root, mid, left);
187854aa1f4dSChris Mason 		if (wret < 0) {
187979f95c82SChris Mason 			ret = wret;
188054aa1f4dSChris Mason 			goto enospc;
188154aa1f4dSChris Mason 		}
1882bce4eae9SChris Mason 		if (wret == 1) {
1883bce4eae9SChris Mason 			wret = push_node_left(trans, root, left, mid, 1);
1884bce4eae9SChris Mason 			if (wret < 0)
1885bce4eae9SChris Mason 				ret = wret;
1886bce4eae9SChris Mason 		}
188779f95c82SChris Mason 		BUG_ON(wret == 1);
188879f95c82SChris Mason 	}
18895f39d397SChris Mason 	if (btrfs_header_nritems(mid) == 0) {
18905f39d397SChris Mason 		clean_tree_block(trans, root, mid);
1891925baeddSChris Mason 		btrfs_tree_unlock(mid);
1892afe5fea7STsutomu Itoh 		del_ptr(root, path, level + 1, pslot);
1893f0486c68SYan, Zheng 		root_sub_used(root, mid->len);
18945581a51aSJan Schmidt 		btrfs_free_tree_block(trans, root, mid, 0, 1);
18953083ee2eSJosef Bacik 		free_extent_buffer_stale(mid);
1896f0486c68SYan, Zheng 		mid = NULL;
189779f95c82SChris Mason 	} else {
189879f95c82SChris Mason 		/* update the parent key to reflect our changes */
18995f39d397SChris Mason 		struct btrfs_disk_key mid_key;
19005f39d397SChris Mason 		btrfs_node_key(mid, &mid_key, 0);
190132adf090SLiu Bo 		tree_mod_log_set_node_key(root->fs_info, parent,
1902f230475eSJan Schmidt 					  pslot, 0);
19035f39d397SChris Mason 		btrfs_set_node_key(parent, &mid_key, pslot);
19045f39d397SChris Mason 		btrfs_mark_buffer_dirty(parent);
190579f95c82SChris Mason 	}
1906bb803951SChris Mason 
190779f95c82SChris Mason 	/* update the path */
19085f39d397SChris Mason 	if (left) {
19095f39d397SChris Mason 		if (btrfs_header_nritems(left) > orig_slot) {
19105f39d397SChris Mason 			extent_buffer_get(left);
1911925baeddSChris Mason 			/* left was locked after cow */
19125f39d397SChris Mason 			path->nodes[level] = left;
1913bb803951SChris Mason 			path->slots[level + 1] -= 1;
1914bb803951SChris Mason 			path->slots[level] = orig_slot;
1915925baeddSChris Mason 			if (mid) {
1916925baeddSChris Mason 				btrfs_tree_unlock(mid);
19175f39d397SChris Mason 				free_extent_buffer(mid);
1918925baeddSChris Mason 			}
1919bb803951SChris Mason 		} else {
19205f39d397SChris Mason 			orig_slot -= btrfs_header_nritems(left);
1921bb803951SChris Mason 			path->slots[level] = orig_slot;
1922bb803951SChris Mason 		}
1923bb803951SChris Mason 	}
192479f95c82SChris Mason 	/* double check we haven't messed things up */
1925e20d96d6SChris Mason 	if (orig_ptr !=
19265f39d397SChris Mason 	    btrfs_node_blockptr(path->nodes[level], path->slots[level]))
192779f95c82SChris Mason 		BUG();
192854aa1f4dSChris Mason enospc:
1929925baeddSChris Mason 	if (right) {
1930925baeddSChris Mason 		btrfs_tree_unlock(right);
19315f39d397SChris Mason 		free_extent_buffer(right);
1932925baeddSChris Mason 	}
1933925baeddSChris Mason 	if (left) {
1934925baeddSChris Mason 		if (path->nodes[level] != left)
1935925baeddSChris Mason 			btrfs_tree_unlock(left);
19365f39d397SChris Mason 		free_extent_buffer(left);
1937925baeddSChris Mason 	}
1938bb803951SChris Mason 	return ret;
1939bb803951SChris Mason }
1940bb803951SChris Mason 
1941d352ac68SChris Mason /* Node balancing for insertion.  Here we only split or push nodes around
1942d352ac68SChris Mason  * when they are completely full.  This is also done top down, so we
1943d352ac68SChris Mason  * have to be pessimistic.
1944d352ac68SChris Mason  */
1945d397712bSChris Mason static noinline int push_nodes_for_insert(struct btrfs_trans_handle *trans,
1946e66f709bSChris Mason 					  struct btrfs_root *root,
1947e66f709bSChris Mason 					  struct btrfs_path *path, int level)
1948e66f709bSChris Mason {
19495f39d397SChris Mason 	struct extent_buffer *right = NULL;
19505f39d397SChris Mason 	struct extent_buffer *mid;
19515f39d397SChris Mason 	struct extent_buffer *left = NULL;
19525f39d397SChris Mason 	struct extent_buffer *parent = NULL;
1953e66f709bSChris Mason 	int ret = 0;
1954e66f709bSChris Mason 	int wret;
1955e66f709bSChris Mason 	int pslot;
1956e66f709bSChris Mason 	int orig_slot = path->slots[level];
1957e66f709bSChris Mason 
1958e66f709bSChris Mason 	if (level == 0)
1959e66f709bSChris Mason 		return 1;
1960e66f709bSChris Mason 
19615f39d397SChris Mason 	mid = path->nodes[level];
19627bb86316SChris Mason 	WARN_ON(btrfs_header_generation(mid) != trans->transid);
1963e66f709bSChris Mason 
1964a05a9bb1SLi Zefan 	if (level < BTRFS_MAX_LEVEL - 1) {
19655f39d397SChris Mason 		parent = path->nodes[level + 1];
1966e66f709bSChris Mason 		pslot = path->slots[level + 1];
1967a05a9bb1SLi Zefan 	}
1968e66f709bSChris Mason 
19695f39d397SChris Mason 	if (!parent)
1970e66f709bSChris Mason 		return 1;
1971e66f709bSChris Mason 
19725f39d397SChris Mason 	left = read_node_slot(root, parent, pslot - 1);
1973e66f709bSChris Mason 
1974e66f709bSChris Mason 	/* first, try to make some room in the middle buffer */
19755f39d397SChris Mason 	if (left) {
1976e66f709bSChris Mason 		u32 left_nr;
1977925baeddSChris Mason 
1978925baeddSChris Mason 		btrfs_tree_lock(left);
1979b4ce94deSChris Mason 		btrfs_set_lock_blocking(left);
1980b4ce94deSChris Mason 
19815f39d397SChris Mason 		left_nr = btrfs_header_nritems(left);
198233ade1f8SChris Mason 		if (left_nr >= BTRFS_NODEPTRS_PER_BLOCK(root) - 1) {
198333ade1f8SChris Mason 			wret = 1;
198433ade1f8SChris Mason 		} else {
19855f39d397SChris Mason 			ret = btrfs_cow_block(trans, root, left, parent,
19869fa8cfe7SChris Mason 					      pslot - 1, &left);
198754aa1f4dSChris Mason 			if (ret)
198854aa1f4dSChris Mason 				wret = 1;
198954aa1f4dSChris Mason 			else {
199054aa1f4dSChris Mason 				wret = push_node_left(trans, root,
1991971a1f66SChris Mason 						      left, mid, 0);
199254aa1f4dSChris Mason 			}
199333ade1f8SChris Mason 		}
1994e66f709bSChris Mason 		if (wret < 0)
1995e66f709bSChris Mason 			ret = wret;
1996e66f709bSChris Mason 		if (wret == 0) {
19975f39d397SChris Mason 			struct btrfs_disk_key disk_key;
1998e66f709bSChris Mason 			orig_slot += left_nr;
19995f39d397SChris Mason 			btrfs_node_key(mid, &disk_key, 0);
2000f230475eSJan Schmidt 			tree_mod_log_set_node_key(root->fs_info, parent,
200132adf090SLiu Bo 						  pslot, 0);
20025f39d397SChris Mason 			btrfs_set_node_key(parent, &disk_key, pslot);
20035f39d397SChris Mason 			btrfs_mark_buffer_dirty(parent);
20045f39d397SChris Mason 			if (btrfs_header_nritems(left) > orig_slot) {
20055f39d397SChris Mason 				path->nodes[level] = left;
2006e66f709bSChris Mason 				path->slots[level + 1] -= 1;
2007e66f709bSChris Mason 				path->slots[level] = orig_slot;
2008925baeddSChris Mason 				btrfs_tree_unlock(mid);
20095f39d397SChris Mason 				free_extent_buffer(mid);
2010e66f709bSChris Mason 			} else {
2011e66f709bSChris Mason 				orig_slot -=
20125f39d397SChris Mason 					btrfs_header_nritems(left);
2013e66f709bSChris Mason 				path->slots[level] = orig_slot;
2014925baeddSChris Mason 				btrfs_tree_unlock(left);
20155f39d397SChris Mason 				free_extent_buffer(left);
2016e66f709bSChris Mason 			}
2017e66f709bSChris Mason 			return 0;
2018e66f709bSChris Mason 		}
2019925baeddSChris Mason 		btrfs_tree_unlock(left);
20205f39d397SChris Mason 		free_extent_buffer(left);
2021e66f709bSChris Mason 	}
20225f39d397SChris Mason 	right = read_node_slot(root, parent, pslot + 1);
2023e66f709bSChris Mason 
2024e66f709bSChris Mason 	/*
2025e66f709bSChris Mason 	 * then try to empty the right most buffer into the middle
2026e66f709bSChris Mason 	 */
20275f39d397SChris Mason 	if (right) {
202833ade1f8SChris Mason 		u32 right_nr;
2029b4ce94deSChris Mason 
2030925baeddSChris Mason 		btrfs_tree_lock(right);
2031b4ce94deSChris Mason 		btrfs_set_lock_blocking(right);
2032b4ce94deSChris Mason 
20335f39d397SChris Mason 		right_nr = btrfs_header_nritems(right);
203433ade1f8SChris Mason 		if (right_nr >= BTRFS_NODEPTRS_PER_BLOCK(root) - 1) {
203533ade1f8SChris Mason 			wret = 1;
203633ade1f8SChris Mason 		} else {
20375f39d397SChris Mason 			ret = btrfs_cow_block(trans, root, right,
20385f39d397SChris Mason 					      parent, pslot + 1,
20399fa8cfe7SChris Mason 					      &right);
204054aa1f4dSChris Mason 			if (ret)
204154aa1f4dSChris Mason 				wret = 1;
204254aa1f4dSChris Mason 			else {
204333ade1f8SChris Mason 				wret = balance_node_right(trans, root,
20445f39d397SChris Mason 							  right, mid);
204533ade1f8SChris Mason 			}
204654aa1f4dSChris Mason 		}
2047e66f709bSChris Mason 		if (wret < 0)
2048e66f709bSChris Mason 			ret = wret;
2049e66f709bSChris Mason 		if (wret == 0) {
20505f39d397SChris Mason 			struct btrfs_disk_key disk_key;
20515f39d397SChris Mason 
20525f39d397SChris Mason 			btrfs_node_key(right, &disk_key, 0);
2053f230475eSJan Schmidt 			tree_mod_log_set_node_key(root->fs_info, parent,
205432adf090SLiu Bo 						  pslot + 1, 0);
20555f39d397SChris Mason 			btrfs_set_node_key(parent, &disk_key, pslot + 1);
20565f39d397SChris Mason 			btrfs_mark_buffer_dirty(parent);
20575f39d397SChris Mason 
20585f39d397SChris Mason 			if (btrfs_header_nritems(mid) <= orig_slot) {
20595f39d397SChris Mason 				path->nodes[level] = right;
2060e66f709bSChris Mason 				path->slots[level + 1] += 1;
2061e66f709bSChris Mason 				path->slots[level] = orig_slot -
20625f39d397SChris Mason 					btrfs_header_nritems(mid);
2063925baeddSChris Mason 				btrfs_tree_unlock(mid);
20645f39d397SChris Mason 				free_extent_buffer(mid);
2065e66f709bSChris Mason 			} else {
2066925baeddSChris Mason 				btrfs_tree_unlock(right);
20675f39d397SChris Mason 				free_extent_buffer(right);
2068e66f709bSChris Mason 			}
2069e66f709bSChris Mason 			return 0;
2070e66f709bSChris Mason 		}
2071925baeddSChris Mason 		btrfs_tree_unlock(right);
20725f39d397SChris Mason 		free_extent_buffer(right);
2073e66f709bSChris Mason 	}
2074e66f709bSChris Mason 	return 1;
2075e66f709bSChris Mason }
2076e66f709bSChris Mason 
207774123bd7SChris Mason /*
2078d352ac68SChris Mason  * readahead one full node of leaves, finding things that are close
2079d352ac68SChris Mason  * to the block in 'slot', and triggering ra on them.
20803c69faecSChris Mason  */
2081c8c42864SChris Mason static void reada_for_search(struct btrfs_root *root,
2082e02119d5SChris Mason 			     struct btrfs_path *path,
208301f46658SChris Mason 			     int level, int slot, u64 objectid)
20843c69faecSChris Mason {
20855f39d397SChris Mason 	struct extent_buffer *node;
208601f46658SChris Mason 	struct btrfs_disk_key disk_key;
20873c69faecSChris Mason 	u32 nritems;
20883c69faecSChris Mason 	u64 search;
2089a7175319SChris Mason 	u64 target;
20906b80053dSChris Mason 	u64 nread = 0;
2091cb25c2eaSJosef Bacik 	u64 gen;
20923c69faecSChris Mason 	int direction = path->reada;
20935f39d397SChris Mason 	struct extent_buffer *eb;
20946b80053dSChris Mason 	u32 nr;
20956b80053dSChris Mason 	u32 blocksize;
20966b80053dSChris Mason 	u32 nscan = 0;
2097db94535dSChris Mason 
2098a6b6e75eSChris Mason 	if (level != 1)
20993c69faecSChris Mason 		return;
21003c69faecSChris Mason 
21016702ed49SChris Mason 	if (!path->nodes[level])
21026702ed49SChris Mason 		return;
21036702ed49SChris Mason 
21045f39d397SChris Mason 	node = path->nodes[level];
2105925baeddSChris Mason 
21063c69faecSChris Mason 	search = btrfs_node_blockptr(node, slot);
21076b80053dSChris Mason 	blocksize = btrfs_level_size(root, level - 1);
21086b80053dSChris Mason 	eb = btrfs_find_tree_block(root, search, blocksize);
21095f39d397SChris Mason 	if (eb) {
21105f39d397SChris Mason 		free_extent_buffer(eb);
21113c69faecSChris Mason 		return;
21123c69faecSChris Mason 	}
21133c69faecSChris Mason 
2114a7175319SChris Mason 	target = search;
21156b80053dSChris Mason 
21165f39d397SChris Mason 	nritems = btrfs_header_nritems(node);
21176b80053dSChris Mason 	nr = slot;
211825b8b936SJosef Bacik 
21193c69faecSChris Mason 	while (1) {
21206b80053dSChris Mason 		if (direction < 0) {
21216b80053dSChris Mason 			if (nr == 0)
21223c69faecSChris Mason 				break;
21236b80053dSChris Mason 			nr--;
21246b80053dSChris Mason 		} else if (direction > 0) {
21256b80053dSChris Mason 			nr++;
21266b80053dSChris Mason 			if (nr >= nritems)
21276b80053dSChris Mason 				break;
21283c69faecSChris Mason 		}
212901f46658SChris Mason 		if (path->reada < 0 && objectid) {
213001f46658SChris Mason 			btrfs_node_key(node, &disk_key, nr);
213101f46658SChris Mason 			if (btrfs_disk_key_objectid(&disk_key) != objectid)
213201f46658SChris Mason 				break;
213301f46658SChris Mason 		}
21346b80053dSChris Mason 		search = btrfs_node_blockptr(node, nr);
2135a7175319SChris Mason 		if ((search <= target && target - search <= 65536) ||
2136a7175319SChris Mason 		    (search > target && search - target <= 65536)) {
2137cb25c2eaSJosef Bacik 			gen = btrfs_node_ptr_generation(node, nr);
2138cb25c2eaSJosef Bacik 			readahead_tree_block(root, search, blocksize, gen);
21396b80053dSChris Mason 			nread += blocksize;
21403c69faecSChris Mason 		}
21416b80053dSChris Mason 		nscan++;
2142a7175319SChris Mason 		if ((nread > 65536 || nscan > 32))
21436b80053dSChris Mason 			break;
21443c69faecSChris Mason 	}
21453c69faecSChris Mason }
2146925baeddSChris Mason 
21470b08851fSJosef Bacik static noinline void reada_for_balance(struct btrfs_root *root,
2148b4ce94deSChris Mason 				       struct btrfs_path *path, int level)
2149b4ce94deSChris Mason {
2150b4ce94deSChris Mason 	int slot;
2151b4ce94deSChris Mason 	int nritems;
2152b4ce94deSChris Mason 	struct extent_buffer *parent;
2153b4ce94deSChris Mason 	struct extent_buffer *eb;
2154b4ce94deSChris Mason 	u64 gen;
2155b4ce94deSChris Mason 	u64 block1 = 0;
2156b4ce94deSChris Mason 	u64 block2 = 0;
2157b4ce94deSChris Mason 	int blocksize;
2158b4ce94deSChris Mason 
21598c594ea8SChris Mason 	parent = path->nodes[level + 1];
2160b4ce94deSChris Mason 	if (!parent)
21610b08851fSJosef Bacik 		return;
2162b4ce94deSChris Mason 
2163b4ce94deSChris Mason 	nritems = btrfs_header_nritems(parent);
21648c594ea8SChris Mason 	slot = path->slots[level + 1];
2165b4ce94deSChris Mason 	blocksize = btrfs_level_size(root, level);
2166b4ce94deSChris Mason 
2167b4ce94deSChris Mason 	if (slot > 0) {
2168b4ce94deSChris Mason 		block1 = btrfs_node_blockptr(parent, slot - 1);
2169b4ce94deSChris Mason 		gen = btrfs_node_ptr_generation(parent, slot - 1);
2170b4ce94deSChris Mason 		eb = btrfs_find_tree_block(root, block1, blocksize);
2171b9fab919SChris Mason 		/*
2172b9fab919SChris Mason 		 * if we get -eagain from btrfs_buffer_uptodate, we
2173b9fab919SChris Mason 		 * don't want to return eagain here.  That will loop
2174b9fab919SChris Mason 		 * forever
2175b9fab919SChris Mason 		 */
2176b9fab919SChris Mason 		if (eb && btrfs_buffer_uptodate(eb, gen, 1) != 0)
2177b4ce94deSChris Mason 			block1 = 0;
2178b4ce94deSChris Mason 		free_extent_buffer(eb);
2179b4ce94deSChris Mason 	}
21808c594ea8SChris Mason 	if (slot + 1 < nritems) {
2181b4ce94deSChris Mason 		block2 = btrfs_node_blockptr(parent, slot + 1);
2182b4ce94deSChris Mason 		gen = btrfs_node_ptr_generation(parent, slot + 1);
2183b4ce94deSChris Mason 		eb = btrfs_find_tree_block(root, block2, blocksize);
2184b9fab919SChris Mason 		if (eb && btrfs_buffer_uptodate(eb, gen, 1) != 0)
2185b4ce94deSChris Mason 			block2 = 0;
2186b4ce94deSChris Mason 		free_extent_buffer(eb);
2187b4ce94deSChris Mason 	}
21888c594ea8SChris Mason 
2189b4ce94deSChris Mason 	if (block1)
2190b4ce94deSChris Mason 		readahead_tree_block(root, block1, blocksize, 0);
2191b4ce94deSChris Mason 	if (block2)
2192b4ce94deSChris Mason 		readahead_tree_block(root, block2, blocksize, 0);
2193b4ce94deSChris Mason }
2194b4ce94deSChris Mason 
2195b4ce94deSChris Mason 
2196b4ce94deSChris Mason /*
2197d397712bSChris Mason  * when we walk down the tree, it is usually safe to unlock the higher layers
2198d397712bSChris Mason  * in the tree.  The exceptions are when our path goes through slot 0, because
2199d397712bSChris Mason  * operations on the tree might require changing key pointers higher up in the
2200d397712bSChris Mason  * tree.
2201d352ac68SChris Mason  *
2202d397712bSChris Mason  * callers might also have set path->keep_locks, which tells this code to keep
2203d397712bSChris Mason  * the lock if the path points to the last slot in the block.  This is part of
2204d397712bSChris Mason  * walking through the tree, and selecting the next slot in the higher block.
2205d352ac68SChris Mason  *
2206d397712bSChris Mason  * lowest_unlock sets the lowest level in the tree we're allowed to unlock.  so
2207d397712bSChris Mason  * if lowest_unlock is 1, level 0 won't be unlocked
2208d352ac68SChris Mason  */
2209e02119d5SChris Mason static noinline void unlock_up(struct btrfs_path *path, int level,
2210f7c79f30SChris Mason 			       int lowest_unlock, int min_write_lock_level,
2211f7c79f30SChris Mason 			       int *write_lock_level)
2212925baeddSChris Mason {
2213925baeddSChris Mason 	int i;
2214925baeddSChris Mason 	int skip_level = level;
2215051e1b9fSChris Mason 	int no_skips = 0;
2216925baeddSChris Mason 	struct extent_buffer *t;
2217925baeddSChris Mason 
2218925baeddSChris Mason 	for (i = level; i < BTRFS_MAX_LEVEL; i++) {
2219925baeddSChris Mason 		if (!path->nodes[i])
2220925baeddSChris Mason 			break;
2221925baeddSChris Mason 		if (!path->locks[i])
2222925baeddSChris Mason 			break;
2223051e1b9fSChris Mason 		if (!no_skips && path->slots[i] == 0) {
2224925baeddSChris Mason 			skip_level = i + 1;
2225925baeddSChris Mason 			continue;
2226925baeddSChris Mason 		}
2227051e1b9fSChris Mason 		if (!no_skips && path->keep_locks) {
2228925baeddSChris Mason 			u32 nritems;
2229925baeddSChris Mason 			t = path->nodes[i];
2230925baeddSChris Mason 			nritems = btrfs_header_nritems(t);
2231051e1b9fSChris Mason 			if (nritems < 1 || path->slots[i] >= nritems - 1) {
2232925baeddSChris Mason 				skip_level = i + 1;
2233925baeddSChris Mason 				continue;
2234925baeddSChris Mason 			}
2235925baeddSChris Mason 		}
2236051e1b9fSChris Mason 		if (skip_level < i && i >= lowest_unlock)
2237051e1b9fSChris Mason 			no_skips = 1;
2238051e1b9fSChris Mason 
2239925baeddSChris Mason 		t = path->nodes[i];
2240925baeddSChris Mason 		if (i >= lowest_unlock && i > skip_level && path->locks[i]) {
2241bd681513SChris Mason 			btrfs_tree_unlock_rw(t, path->locks[i]);
2242925baeddSChris Mason 			path->locks[i] = 0;
2243f7c79f30SChris Mason 			if (write_lock_level &&
2244f7c79f30SChris Mason 			    i > min_write_lock_level &&
2245f7c79f30SChris Mason 			    i <= *write_lock_level) {
2246f7c79f30SChris Mason 				*write_lock_level = i - 1;
2247f7c79f30SChris Mason 			}
2248925baeddSChris Mason 		}
2249925baeddSChris Mason 	}
2250925baeddSChris Mason }
2251925baeddSChris Mason 
22523c69faecSChris Mason /*
2253b4ce94deSChris Mason  * This releases any locks held in the path starting at level and
2254b4ce94deSChris Mason  * going all the way up to the root.
2255b4ce94deSChris Mason  *
2256b4ce94deSChris Mason  * btrfs_search_slot will keep the lock held on higher nodes in a few
2257b4ce94deSChris Mason  * corner cases, such as COW of the block at slot zero in the node.  This
2258b4ce94deSChris Mason  * ignores those rules, and it should only be called when there are no
2259b4ce94deSChris Mason  * more updates to be done higher up in the tree.
2260b4ce94deSChris Mason  */
2261b4ce94deSChris Mason noinline void btrfs_unlock_up_safe(struct btrfs_path *path, int level)
2262b4ce94deSChris Mason {
2263b4ce94deSChris Mason 	int i;
2264b4ce94deSChris Mason 
226509a2a8f9SJosef Bacik 	if (path->keep_locks)
2266b4ce94deSChris Mason 		return;
2267b4ce94deSChris Mason 
2268b4ce94deSChris Mason 	for (i = level; i < BTRFS_MAX_LEVEL; i++) {
2269b4ce94deSChris Mason 		if (!path->nodes[i])
227012f4daccSChris Mason 			continue;
2271b4ce94deSChris Mason 		if (!path->locks[i])
227212f4daccSChris Mason 			continue;
2273bd681513SChris Mason 		btrfs_tree_unlock_rw(path->nodes[i], path->locks[i]);
2274b4ce94deSChris Mason 		path->locks[i] = 0;
2275b4ce94deSChris Mason 	}
2276b4ce94deSChris Mason }
2277b4ce94deSChris Mason 
2278b4ce94deSChris Mason /*
2279c8c42864SChris Mason  * helper function for btrfs_search_slot.  The goal is to find a block
2280c8c42864SChris Mason  * in cache without setting the path to blocking.  If we find the block
2281c8c42864SChris Mason  * we return zero and the path is unchanged.
2282c8c42864SChris Mason  *
2283c8c42864SChris Mason  * If we can't find the block, we set the path blocking and do some
2284c8c42864SChris Mason  * reada.  -EAGAIN is returned and the search must be repeated.
2285c8c42864SChris Mason  */
2286c8c42864SChris Mason static int
2287c8c42864SChris Mason read_block_for_search(struct btrfs_trans_handle *trans,
2288c8c42864SChris Mason 		       struct btrfs_root *root, struct btrfs_path *p,
2289c8c42864SChris Mason 		       struct extent_buffer **eb_ret, int level, int slot,
22905d9e75c4SJan Schmidt 		       struct btrfs_key *key, u64 time_seq)
2291c8c42864SChris Mason {
2292c8c42864SChris Mason 	u64 blocknr;
2293c8c42864SChris Mason 	u64 gen;
2294c8c42864SChris Mason 	u32 blocksize;
2295c8c42864SChris Mason 	struct extent_buffer *b = *eb_ret;
2296c8c42864SChris Mason 	struct extent_buffer *tmp;
229776a05b35SChris Mason 	int ret;
2298c8c42864SChris Mason 
2299c8c42864SChris Mason 	blocknr = btrfs_node_blockptr(b, slot);
2300c8c42864SChris Mason 	gen = btrfs_node_ptr_generation(b, slot);
2301c8c42864SChris Mason 	blocksize = btrfs_level_size(root, level - 1);
2302c8c42864SChris Mason 
2303c8c42864SChris Mason 	tmp = btrfs_find_tree_block(root, blocknr, blocksize);
2304cb44921aSChris Mason 	if (tmp) {
2305b9fab919SChris Mason 		/* first we do an atomic uptodate check */
2306b9fab919SChris Mason 		if (btrfs_buffer_uptodate(tmp, gen, 1) > 0) {
2307c8c42864SChris Mason 			*eb_ret = tmp;
2308c8c42864SChris Mason 			return 0;
2309c8c42864SChris Mason 		}
2310bdf7c00eSJosef Bacik 
2311cb44921aSChris Mason 		/* the pages were up to date, but we failed
2312cb44921aSChris Mason 		 * the generation number check.  Do a full
2313cb44921aSChris Mason 		 * read for the generation number that is correct.
2314cb44921aSChris Mason 		 * We must do this without dropping locks so
2315cb44921aSChris Mason 		 * we can trust our generation number
2316cb44921aSChris Mason 		 */
2317bd681513SChris Mason 		btrfs_set_path_blocking(p);
2318bd681513SChris Mason 
2319b9fab919SChris Mason 		/* now we're allowed to do a blocking uptodate check */
2320bdf7c00eSJosef Bacik 		ret = btrfs_read_buffer(tmp, gen);
2321bdf7c00eSJosef Bacik 		if (!ret) {
2322cb44921aSChris Mason 			*eb_ret = tmp;
2323cb44921aSChris Mason 			return 0;
2324cb44921aSChris Mason 		}
2325cb44921aSChris Mason 		free_extent_buffer(tmp);
2326b3b4aa74SDavid Sterba 		btrfs_release_path(p);
2327cb44921aSChris Mason 		return -EIO;
2328cb44921aSChris Mason 	}
2329c8c42864SChris Mason 
2330c8c42864SChris Mason 	/*
2331c8c42864SChris Mason 	 * reduce lock contention at high levels
2332c8c42864SChris Mason 	 * of the btree by dropping locks before
233376a05b35SChris Mason 	 * we read.  Don't release the lock on the current
233476a05b35SChris Mason 	 * level because we need to walk this node to figure
233576a05b35SChris Mason 	 * out which blocks to read.
2336c8c42864SChris Mason 	 */
23378c594ea8SChris Mason 	btrfs_unlock_up_safe(p, level + 1);
23388c594ea8SChris Mason 	btrfs_set_path_blocking(p);
23398c594ea8SChris Mason 
2340c8c42864SChris Mason 	free_extent_buffer(tmp);
2341c8c42864SChris Mason 	if (p->reada)
2342c8c42864SChris Mason 		reada_for_search(root, p, level, slot, key->objectid);
2343c8c42864SChris Mason 
2344b3b4aa74SDavid Sterba 	btrfs_release_path(p);
234576a05b35SChris Mason 
234676a05b35SChris Mason 	ret = -EAGAIN;
23475bdd3536SYan, Zheng 	tmp = read_tree_block(root, blocknr, blocksize, 0);
234876a05b35SChris Mason 	if (tmp) {
234976a05b35SChris Mason 		/*
235076a05b35SChris Mason 		 * If the read above didn't mark this buffer up to date,
235176a05b35SChris Mason 		 * it will never end up being up to date.  Set ret to EIO now
235276a05b35SChris Mason 		 * and give up so that our caller doesn't loop forever
235376a05b35SChris Mason 		 * on our EAGAINs.
235476a05b35SChris Mason 		 */
2355b9fab919SChris Mason 		if (!btrfs_buffer_uptodate(tmp, 0, 0))
235676a05b35SChris Mason 			ret = -EIO;
2357c8c42864SChris Mason 		free_extent_buffer(tmp);
235876a05b35SChris Mason 	}
235976a05b35SChris Mason 	return ret;
2360c8c42864SChris Mason }
2361c8c42864SChris Mason 
2362c8c42864SChris Mason /*
2363c8c42864SChris Mason  * helper function for btrfs_search_slot.  This does all of the checks
2364c8c42864SChris Mason  * for node-level blocks and does any balancing required based on
2365c8c42864SChris Mason  * the ins_len.
2366c8c42864SChris Mason  *
2367c8c42864SChris Mason  * If no extra work was required, zero is returned.  If we had to
2368c8c42864SChris Mason  * drop the path, -EAGAIN is returned and btrfs_search_slot must
2369c8c42864SChris Mason  * start over
2370c8c42864SChris Mason  */
2371c8c42864SChris Mason static int
2372c8c42864SChris Mason setup_nodes_for_search(struct btrfs_trans_handle *trans,
2373c8c42864SChris Mason 		       struct btrfs_root *root, struct btrfs_path *p,
2374bd681513SChris Mason 		       struct extent_buffer *b, int level, int ins_len,
2375bd681513SChris Mason 		       int *write_lock_level)
2376c8c42864SChris Mason {
2377c8c42864SChris Mason 	int ret;
2378c8c42864SChris Mason 	if ((p->search_for_split || ins_len > 0) && btrfs_header_nritems(b) >=
2379c8c42864SChris Mason 	    BTRFS_NODEPTRS_PER_BLOCK(root) - 3) {
2380c8c42864SChris Mason 		int sret;
2381c8c42864SChris Mason 
2382bd681513SChris Mason 		if (*write_lock_level < level + 1) {
2383bd681513SChris Mason 			*write_lock_level = level + 1;
2384bd681513SChris Mason 			btrfs_release_path(p);
2385bd681513SChris Mason 			goto again;
2386bd681513SChris Mason 		}
2387bd681513SChris Mason 
2388c8c42864SChris Mason 		btrfs_set_path_blocking(p);
23890b08851fSJosef Bacik 		reada_for_balance(root, p, level);
2390c8c42864SChris Mason 		sret = split_node(trans, root, p, level);
2391bd681513SChris Mason 		btrfs_clear_path_blocking(p, NULL, 0);
2392c8c42864SChris Mason 
2393c8c42864SChris Mason 		BUG_ON(sret > 0);
2394c8c42864SChris Mason 		if (sret) {
2395c8c42864SChris Mason 			ret = sret;
2396c8c42864SChris Mason 			goto done;
2397c8c42864SChris Mason 		}
2398c8c42864SChris Mason 		b = p->nodes[level];
2399c8c42864SChris Mason 	} else if (ins_len < 0 && btrfs_header_nritems(b) <
2400cfbb9308SChris Mason 		   BTRFS_NODEPTRS_PER_BLOCK(root) / 2) {
2401c8c42864SChris Mason 		int sret;
2402c8c42864SChris Mason 
2403bd681513SChris Mason 		if (*write_lock_level < level + 1) {
2404bd681513SChris Mason 			*write_lock_level = level + 1;
2405bd681513SChris Mason 			btrfs_release_path(p);
2406bd681513SChris Mason 			goto again;
2407bd681513SChris Mason 		}
2408bd681513SChris Mason 
2409c8c42864SChris Mason 		btrfs_set_path_blocking(p);
24100b08851fSJosef Bacik 		reada_for_balance(root, p, level);
2411c8c42864SChris Mason 		sret = balance_level(trans, root, p, level);
2412bd681513SChris Mason 		btrfs_clear_path_blocking(p, NULL, 0);
2413c8c42864SChris Mason 
2414c8c42864SChris Mason 		if (sret) {
2415c8c42864SChris Mason 			ret = sret;
2416c8c42864SChris Mason 			goto done;
2417c8c42864SChris Mason 		}
2418c8c42864SChris Mason 		b = p->nodes[level];
2419c8c42864SChris Mason 		if (!b) {
2420b3b4aa74SDavid Sterba 			btrfs_release_path(p);
2421c8c42864SChris Mason 			goto again;
2422c8c42864SChris Mason 		}
2423c8c42864SChris Mason 		BUG_ON(btrfs_header_nritems(b) == 1);
2424c8c42864SChris Mason 	}
2425c8c42864SChris Mason 	return 0;
2426c8c42864SChris Mason 
2427c8c42864SChris Mason again:
2428c8c42864SChris Mason 	ret = -EAGAIN;
2429c8c42864SChris Mason done:
2430c8c42864SChris Mason 	return ret;
2431c8c42864SChris Mason }
2432c8c42864SChris Mason 
2433c8c42864SChris Mason /*
243474123bd7SChris Mason  * look for key in the tree.  path is filled in with nodes along the way
243574123bd7SChris Mason  * if key is found, we return zero and you can find the item in the leaf
243674123bd7SChris Mason  * level of the path (level 0)
243774123bd7SChris Mason  *
243874123bd7SChris Mason  * If the key isn't found, the path points to the slot where it should
2439aa5d6bedSChris Mason  * be inserted, and 1 is returned.  If there are other errors during the
2440aa5d6bedSChris Mason  * search a negative error number is returned.
244197571fd0SChris Mason  *
244297571fd0SChris Mason  * if ins_len > 0, nodes and leaves will be split as we walk down the
244397571fd0SChris Mason  * tree.  if ins_len < 0, nodes will be merged as we walk down the tree (if
244497571fd0SChris Mason  * possible)
244574123bd7SChris Mason  */
2446e089f05cSChris Mason int btrfs_search_slot(struct btrfs_trans_handle *trans, struct btrfs_root
2447e089f05cSChris Mason 		      *root, struct btrfs_key *key, struct btrfs_path *p, int
2448e089f05cSChris Mason 		      ins_len, int cow)
2449be0e5c09SChris Mason {
24505f39d397SChris Mason 	struct extent_buffer *b;
2451be0e5c09SChris Mason 	int slot;
2452be0e5c09SChris Mason 	int ret;
245333c66f43SYan Zheng 	int err;
2454be0e5c09SChris Mason 	int level;
2455925baeddSChris Mason 	int lowest_unlock = 1;
2456bd681513SChris Mason 	int root_lock;
2457bd681513SChris Mason 	/* everything at write_lock_level or lower must be write locked */
2458bd681513SChris Mason 	int write_lock_level = 0;
24599f3a7427SChris Mason 	u8 lowest_level = 0;
2460f7c79f30SChris Mason 	int min_write_lock_level;
24619f3a7427SChris Mason 
24626702ed49SChris Mason 	lowest_level = p->lowest_level;
2463323ac95bSChris Mason 	WARN_ON(lowest_level && ins_len > 0);
246422b0ebdaSChris Mason 	WARN_ON(p->nodes[0] != NULL);
246525179201SJosef Bacik 
2466bd681513SChris Mason 	if (ins_len < 0) {
2467925baeddSChris Mason 		lowest_unlock = 2;
246865b51a00SChris Mason 
2469bd681513SChris Mason 		/* when we are removing items, we might have to go up to level
2470bd681513SChris Mason 		 * two as we update tree pointers  Make sure we keep write
2471bd681513SChris Mason 		 * for those levels as well
2472bd681513SChris Mason 		 */
2473bd681513SChris Mason 		write_lock_level = 2;
2474bd681513SChris Mason 	} else if (ins_len > 0) {
2475bd681513SChris Mason 		/*
2476bd681513SChris Mason 		 * for inserting items, make sure we have a write lock on
2477bd681513SChris Mason 		 * level 1 so we can update keys
2478bd681513SChris Mason 		 */
2479bd681513SChris Mason 		write_lock_level = 1;
2480bd681513SChris Mason 	}
2481bd681513SChris Mason 
2482bd681513SChris Mason 	if (!cow)
2483bd681513SChris Mason 		write_lock_level = -1;
2484bd681513SChris Mason 
248509a2a8f9SJosef Bacik 	if (cow && (p->keep_locks || p->lowest_level))
2486bd681513SChris Mason 		write_lock_level = BTRFS_MAX_LEVEL;
2487bd681513SChris Mason 
2488f7c79f30SChris Mason 	min_write_lock_level = write_lock_level;
2489f7c79f30SChris Mason 
2490bb803951SChris Mason again:
2491bd681513SChris Mason 	/*
2492bd681513SChris Mason 	 * we try very hard to do read locks on the root
2493bd681513SChris Mason 	 */
2494bd681513SChris Mason 	root_lock = BTRFS_READ_LOCK;
2495bd681513SChris Mason 	level = 0;
24965d4f98a2SYan Zheng 	if (p->search_commit_root) {
2497bd681513SChris Mason 		/*
2498bd681513SChris Mason 		 * the commit roots are read only
2499bd681513SChris Mason 		 * so we always do read locks
2500bd681513SChris Mason 		 */
25015d4f98a2SYan Zheng 		b = root->commit_root;
25025d4f98a2SYan Zheng 		extent_buffer_get(b);
2503bd681513SChris Mason 		level = btrfs_header_level(b);
25045d4f98a2SYan Zheng 		if (!p->skip_locking)
2505bd681513SChris Mason 			btrfs_tree_read_lock(b);
25065d4f98a2SYan Zheng 	} else {
2507bd681513SChris Mason 		if (p->skip_locking) {
25085cd57b2cSChris Mason 			b = btrfs_root_node(root);
2509bd681513SChris Mason 			level = btrfs_header_level(b);
2510bd681513SChris Mason 		} else {
2511bd681513SChris Mason 			/* we don't know the level of the root node
2512bd681513SChris Mason 			 * until we actually have it read locked
2513bd681513SChris Mason 			 */
2514bd681513SChris Mason 			b = btrfs_read_lock_root_node(root);
2515bd681513SChris Mason 			level = btrfs_header_level(b);
2516bd681513SChris Mason 			if (level <= write_lock_level) {
2517bd681513SChris Mason 				/* whoops, must trade for write lock */
2518bd681513SChris Mason 				btrfs_tree_read_unlock(b);
2519bd681513SChris Mason 				free_extent_buffer(b);
2520925baeddSChris Mason 				b = btrfs_lock_root_node(root);
2521bd681513SChris Mason 				root_lock = BTRFS_WRITE_LOCK;
2522bd681513SChris Mason 
2523bd681513SChris Mason 				/* the level might have changed, check again */
2524bd681513SChris Mason 				level = btrfs_header_level(b);
25255d4f98a2SYan Zheng 			}
2526bd681513SChris Mason 		}
2527bd681513SChris Mason 	}
2528bd681513SChris Mason 	p->nodes[level] = b;
2529bd681513SChris Mason 	if (!p->skip_locking)
2530bd681513SChris Mason 		p->locks[level] = root_lock;
2531925baeddSChris Mason 
2532eb60ceacSChris Mason 	while (b) {
25335f39d397SChris Mason 		level = btrfs_header_level(b);
253465b51a00SChris Mason 
253565b51a00SChris Mason 		/*
253665b51a00SChris Mason 		 * setup the path here so we can release it under lock
253765b51a00SChris Mason 		 * contention with the cow code
253865b51a00SChris Mason 		 */
253902217ed2SChris Mason 		if (cow) {
2540c8c42864SChris Mason 			/*
2541c8c42864SChris Mason 			 * if we don't really need to cow this block
2542c8c42864SChris Mason 			 * then we don't want to set the path blocking,
2543c8c42864SChris Mason 			 * so we test it here
2544c8c42864SChris Mason 			 */
25455d4f98a2SYan Zheng 			if (!should_cow_block(trans, root, b))
254665b51a00SChris Mason 				goto cow_done;
25475d4f98a2SYan Zheng 
2548b4ce94deSChris Mason 			btrfs_set_path_blocking(p);
2549b4ce94deSChris Mason 
2550bd681513SChris Mason 			/*
2551bd681513SChris Mason 			 * must have write locks on this node and the
2552bd681513SChris Mason 			 * parent
2553bd681513SChris Mason 			 */
25545124e00eSJosef Bacik 			if (level > write_lock_level ||
25555124e00eSJosef Bacik 			    (level + 1 > write_lock_level &&
25565124e00eSJosef Bacik 			    level + 1 < BTRFS_MAX_LEVEL &&
25575124e00eSJosef Bacik 			    p->nodes[level + 1])) {
2558bd681513SChris Mason 				write_lock_level = level + 1;
2559bd681513SChris Mason 				btrfs_release_path(p);
2560bd681513SChris Mason 				goto again;
2561bd681513SChris Mason 			}
2562bd681513SChris Mason 
256333c66f43SYan Zheng 			err = btrfs_cow_block(trans, root, b,
2564e20d96d6SChris Mason 					      p->nodes[level + 1],
25659fa8cfe7SChris Mason 					      p->slots[level + 1], &b);
256633c66f43SYan Zheng 			if (err) {
256733c66f43SYan Zheng 				ret = err;
256865b51a00SChris Mason 				goto done;
256954aa1f4dSChris Mason 			}
257002217ed2SChris Mason 		}
257165b51a00SChris Mason cow_done:
257202217ed2SChris Mason 		BUG_ON(!cow && ins_len);
257365b51a00SChris Mason 
2574eb60ceacSChris Mason 		p->nodes[level] = b;
2575bd681513SChris Mason 		btrfs_clear_path_blocking(p, NULL, 0);
2576b4ce94deSChris Mason 
2577b4ce94deSChris Mason 		/*
2578b4ce94deSChris Mason 		 * we have a lock on b and as long as we aren't changing
2579b4ce94deSChris Mason 		 * the tree, there is no way to for the items in b to change.
2580b4ce94deSChris Mason 		 * It is safe to drop the lock on our parent before we
2581b4ce94deSChris Mason 		 * go through the expensive btree search on b.
2582b4ce94deSChris Mason 		 *
2583b4ce94deSChris Mason 		 * If cow is true, then we might be changing slot zero,
2584b4ce94deSChris Mason 		 * which may require changing the parent.  So, we can't
2585b4ce94deSChris Mason 		 * drop the lock until after we know which slot we're
2586b4ce94deSChris Mason 		 * operating on.
2587b4ce94deSChris Mason 		 */
2588b4ce94deSChris Mason 		if (!cow)
2589b4ce94deSChris Mason 			btrfs_unlock_up_safe(p, level + 1);
2590b4ce94deSChris Mason 
25915f39d397SChris Mason 		ret = bin_search(b, key, level, &slot);
2592b4ce94deSChris Mason 
25935f39d397SChris Mason 		if (level != 0) {
259433c66f43SYan Zheng 			int dec = 0;
259533c66f43SYan Zheng 			if (ret && slot > 0) {
259633c66f43SYan Zheng 				dec = 1;
2597be0e5c09SChris Mason 				slot -= 1;
259833c66f43SYan Zheng 			}
2599be0e5c09SChris Mason 			p->slots[level] = slot;
260033c66f43SYan Zheng 			err = setup_nodes_for_search(trans, root, p, b, level,
2601bd681513SChris Mason 					     ins_len, &write_lock_level);
260233c66f43SYan Zheng 			if (err == -EAGAIN)
2603b4ce94deSChris Mason 				goto again;
260433c66f43SYan Zheng 			if (err) {
260533c66f43SYan Zheng 				ret = err;
260665b51a00SChris Mason 				goto done;
260733c66f43SYan Zheng 			}
26085c680ed6SChris Mason 			b = p->nodes[level];
26095c680ed6SChris Mason 			slot = p->slots[level];
2610b4ce94deSChris Mason 
2611bd681513SChris Mason 			/*
2612bd681513SChris Mason 			 * slot 0 is special, if we change the key
2613bd681513SChris Mason 			 * we have to update the parent pointer
2614bd681513SChris Mason 			 * which means we must have a write lock
2615bd681513SChris Mason 			 * on the parent
2616bd681513SChris Mason 			 */
2617bd681513SChris Mason 			if (slot == 0 && cow &&
2618bd681513SChris Mason 			    write_lock_level < level + 1) {
2619bd681513SChris Mason 				write_lock_level = level + 1;
2620bd681513SChris Mason 				btrfs_release_path(p);
2621bd681513SChris Mason 				goto again;
2622bd681513SChris Mason 			}
2623bd681513SChris Mason 
2624f7c79f30SChris Mason 			unlock_up(p, level, lowest_unlock,
2625f7c79f30SChris Mason 				  min_write_lock_level, &write_lock_level);
2626f9efa9c7SChris Mason 
2627925baeddSChris Mason 			if (level == lowest_level) {
262833c66f43SYan Zheng 				if (dec)
262933c66f43SYan Zheng 					p->slots[level]++;
26305b21f2edSZheng Yan 				goto done;
2631925baeddSChris Mason 			}
2632ca7a79adSChris Mason 
263333c66f43SYan Zheng 			err = read_block_for_search(trans, root, p,
26345d9e75c4SJan Schmidt 						    &b, level, slot, key, 0);
263533c66f43SYan Zheng 			if (err == -EAGAIN)
2636051e1b9fSChris Mason 				goto again;
263733c66f43SYan Zheng 			if (err) {
263833c66f43SYan Zheng 				ret = err;
263976a05b35SChris Mason 				goto done;
264033c66f43SYan Zheng 			}
264176a05b35SChris Mason 
2642b4ce94deSChris Mason 			if (!p->skip_locking) {
2643bd681513SChris Mason 				level = btrfs_header_level(b);
2644bd681513SChris Mason 				if (level <= write_lock_level) {
2645bd681513SChris Mason 					err = btrfs_try_tree_write_lock(b);
264633c66f43SYan Zheng 					if (!err) {
2647b4ce94deSChris Mason 						btrfs_set_path_blocking(p);
2648925baeddSChris Mason 						btrfs_tree_lock(b);
2649bd681513SChris Mason 						btrfs_clear_path_blocking(p, b,
2650bd681513SChris Mason 								  BTRFS_WRITE_LOCK);
2651b4ce94deSChris Mason 					}
2652bd681513SChris Mason 					p->locks[level] = BTRFS_WRITE_LOCK;
2653bd681513SChris Mason 				} else {
2654bd681513SChris Mason 					err = btrfs_try_tree_read_lock(b);
2655bd681513SChris Mason 					if (!err) {
2656bd681513SChris Mason 						btrfs_set_path_blocking(p);
2657bd681513SChris Mason 						btrfs_tree_read_lock(b);
2658bd681513SChris Mason 						btrfs_clear_path_blocking(p, b,
2659bd681513SChris Mason 								  BTRFS_READ_LOCK);
2660bd681513SChris Mason 					}
2661bd681513SChris Mason 					p->locks[level] = BTRFS_READ_LOCK;
2662bd681513SChris Mason 				}
2663bd681513SChris Mason 				p->nodes[level] = b;
2664b4ce94deSChris Mason 			}
2665be0e5c09SChris Mason 		} else {
2666be0e5c09SChris Mason 			p->slots[level] = slot;
266787b29b20SYan Zheng 			if (ins_len > 0 &&
266887b29b20SYan Zheng 			    btrfs_leaf_free_space(root, b) < ins_len) {
2669bd681513SChris Mason 				if (write_lock_level < 1) {
2670bd681513SChris Mason 					write_lock_level = 1;
2671bd681513SChris Mason 					btrfs_release_path(p);
2672bd681513SChris Mason 					goto again;
2673bd681513SChris Mason 				}
2674bd681513SChris Mason 
2675b4ce94deSChris Mason 				btrfs_set_path_blocking(p);
267633c66f43SYan Zheng 				err = split_leaf(trans, root, key,
2677cc0c5538SChris Mason 						 p, ins_len, ret == 0);
2678bd681513SChris Mason 				btrfs_clear_path_blocking(p, NULL, 0);
2679b4ce94deSChris Mason 
268033c66f43SYan Zheng 				BUG_ON(err > 0);
268133c66f43SYan Zheng 				if (err) {
268233c66f43SYan Zheng 					ret = err;
268365b51a00SChris Mason 					goto done;
268465b51a00SChris Mason 				}
26855c680ed6SChris Mason 			}
2686459931ecSChris Mason 			if (!p->search_for_split)
2687f7c79f30SChris Mason 				unlock_up(p, level, lowest_unlock,
2688f7c79f30SChris Mason 					  min_write_lock_level, &write_lock_level);
268965b51a00SChris Mason 			goto done;
269065b51a00SChris Mason 		}
269165b51a00SChris Mason 	}
269265b51a00SChris Mason 	ret = 1;
269365b51a00SChris Mason done:
2694b4ce94deSChris Mason 	/*
2695b4ce94deSChris Mason 	 * we don't really know what they plan on doing with the path
2696b4ce94deSChris Mason 	 * from here on, so for now just mark it as blocking
2697b4ce94deSChris Mason 	 */
2698b9473439SChris Mason 	if (!p->leave_spinning)
2699b4ce94deSChris Mason 		btrfs_set_path_blocking(p);
270076a05b35SChris Mason 	if (ret < 0)
2701b3b4aa74SDavid Sterba 		btrfs_release_path(p);
2702be0e5c09SChris Mason 	return ret;
2703be0e5c09SChris Mason }
2704be0e5c09SChris Mason 
270574123bd7SChris Mason /*
27065d9e75c4SJan Schmidt  * Like btrfs_search_slot, this looks for a key in the given tree. It uses the
27075d9e75c4SJan Schmidt  * current state of the tree together with the operations recorded in the tree
27085d9e75c4SJan Schmidt  * modification log to search for the key in a previous version of this tree, as
27095d9e75c4SJan Schmidt  * denoted by the time_seq parameter.
27105d9e75c4SJan Schmidt  *
27115d9e75c4SJan Schmidt  * Naturally, there is no support for insert, delete or cow operations.
27125d9e75c4SJan Schmidt  *
27135d9e75c4SJan Schmidt  * The resulting path and return value will be set up as if we called
27145d9e75c4SJan Schmidt  * btrfs_search_slot at that point in time with ins_len and cow both set to 0.
27155d9e75c4SJan Schmidt  */
27165d9e75c4SJan Schmidt int btrfs_search_old_slot(struct btrfs_root *root, struct btrfs_key *key,
27175d9e75c4SJan Schmidt 			  struct btrfs_path *p, u64 time_seq)
27185d9e75c4SJan Schmidt {
27195d9e75c4SJan Schmidt 	struct extent_buffer *b;
27205d9e75c4SJan Schmidt 	int slot;
27215d9e75c4SJan Schmidt 	int ret;
27225d9e75c4SJan Schmidt 	int err;
27235d9e75c4SJan Schmidt 	int level;
27245d9e75c4SJan Schmidt 	int lowest_unlock = 1;
27255d9e75c4SJan Schmidt 	u8 lowest_level = 0;
27265d9e75c4SJan Schmidt 
27275d9e75c4SJan Schmidt 	lowest_level = p->lowest_level;
27285d9e75c4SJan Schmidt 	WARN_ON(p->nodes[0] != NULL);
27295d9e75c4SJan Schmidt 
27305d9e75c4SJan Schmidt 	if (p->search_commit_root) {
27315d9e75c4SJan Schmidt 		BUG_ON(time_seq);
27325d9e75c4SJan Schmidt 		return btrfs_search_slot(NULL, root, key, p, 0, 0);
27335d9e75c4SJan Schmidt 	}
27345d9e75c4SJan Schmidt 
27355d9e75c4SJan Schmidt again:
27365d9e75c4SJan Schmidt 	b = get_old_root(root, time_seq);
27375d9e75c4SJan Schmidt 	level = btrfs_header_level(b);
27385d9e75c4SJan Schmidt 	p->locks[level] = BTRFS_READ_LOCK;
27395d9e75c4SJan Schmidt 
27405d9e75c4SJan Schmidt 	while (b) {
27415d9e75c4SJan Schmidt 		level = btrfs_header_level(b);
27425d9e75c4SJan Schmidt 		p->nodes[level] = b;
27435d9e75c4SJan Schmidt 		btrfs_clear_path_blocking(p, NULL, 0);
27445d9e75c4SJan Schmidt 
27455d9e75c4SJan Schmidt 		/*
27465d9e75c4SJan Schmidt 		 * we have a lock on b and as long as we aren't changing
27475d9e75c4SJan Schmidt 		 * the tree, there is no way to for the items in b to change.
27485d9e75c4SJan Schmidt 		 * It is safe to drop the lock on our parent before we
27495d9e75c4SJan Schmidt 		 * go through the expensive btree search on b.
27505d9e75c4SJan Schmidt 		 */
27515d9e75c4SJan Schmidt 		btrfs_unlock_up_safe(p, level + 1);
27525d9e75c4SJan Schmidt 
27535d9e75c4SJan Schmidt 		ret = bin_search(b, key, level, &slot);
27545d9e75c4SJan Schmidt 
27555d9e75c4SJan Schmidt 		if (level != 0) {
27565d9e75c4SJan Schmidt 			int dec = 0;
27575d9e75c4SJan Schmidt 			if (ret && slot > 0) {
27585d9e75c4SJan Schmidt 				dec = 1;
27595d9e75c4SJan Schmidt 				slot -= 1;
27605d9e75c4SJan Schmidt 			}
27615d9e75c4SJan Schmidt 			p->slots[level] = slot;
27625d9e75c4SJan Schmidt 			unlock_up(p, level, lowest_unlock, 0, NULL);
27635d9e75c4SJan Schmidt 
27645d9e75c4SJan Schmidt 			if (level == lowest_level) {
27655d9e75c4SJan Schmidt 				if (dec)
27665d9e75c4SJan Schmidt 					p->slots[level]++;
27675d9e75c4SJan Schmidt 				goto done;
27685d9e75c4SJan Schmidt 			}
27695d9e75c4SJan Schmidt 
27705d9e75c4SJan Schmidt 			err = read_block_for_search(NULL, root, p, &b, level,
27715d9e75c4SJan Schmidt 						    slot, key, time_seq);
27725d9e75c4SJan Schmidt 			if (err == -EAGAIN)
27735d9e75c4SJan Schmidt 				goto again;
27745d9e75c4SJan Schmidt 			if (err) {
27755d9e75c4SJan Schmidt 				ret = err;
27765d9e75c4SJan Schmidt 				goto done;
27775d9e75c4SJan Schmidt 			}
27785d9e75c4SJan Schmidt 
27795d9e75c4SJan Schmidt 			level = btrfs_header_level(b);
27805d9e75c4SJan Schmidt 			err = btrfs_try_tree_read_lock(b);
27815d9e75c4SJan Schmidt 			if (!err) {
27825d9e75c4SJan Schmidt 				btrfs_set_path_blocking(p);
27835d9e75c4SJan Schmidt 				btrfs_tree_read_lock(b);
27845d9e75c4SJan Schmidt 				btrfs_clear_path_blocking(p, b,
27855d9e75c4SJan Schmidt 							  BTRFS_READ_LOCK);
27865d9e75c4SJan Schmidt 			}
27879ec72677SJosef Bacik 			b = tree_mod_log_rewind(root->fs_info, p, b, time_seq);
2788db7f3436SJosef Bacik 			if (!b) {
2789db7f3436SJosef Bacik 				ret = -ENOMEM;
2790db7f3436SJosef Bacik 				goto done;
2791db7f3436SJosef Bacik 			}
27925d9e75c4SJan Schmidt 			p->locks[level] = BTRFS_READ_LOCK;
27935d9e75c4SJan Schmidt 			p->nodes[level] = b;
27945d9e75c4SJan Schmidt 		} else {
27955d9e75c4SJan Schmidt 			p->slots[level] = slot;
27965d9e75c4SJan Schmidt 			unlock_up(p, level, lowest_unlock, 0, NULL);
27975d9e75c4SJan Schmidt 			goto done;
27985d9e75c4SJan Schmidt 		}
27995d9e75c4SJan Schmidt 	}
28005d9e75c4SJan Schmidt 	ret = 1;
28015d9e75c4SJan Schmidt done:
28025d9e75c4SJan Schmidt 	if (!p->leave_spinning)
28035d9e75c4SJan Schmidt 		btrfs_set_path_blocking(p);
28045d9e75c4SJan Schmidt 	if (ret < 0)
28055d9e75c4SJan Schmidt 		btrfs_release_path(p);
28065d9e75c4SJan Schmidt 
28075d9e75c4SJan Schmidt 	return ret;
28085d9e75c4SJan Schmidt }
28095d9e75c4SJan Schmidt 
28105d9e75c4SJan Schmidt /*
28112f38b3e1SArne Jansen  * helper to use instead of search slot if no exact match is needed but
28122f38b3e1SArne Jansen  * instead the next or previous item should be returned.
28132f38b3e1SArne Jansen  * When find_higher is true, the next higher item is returned, the next lower
28142f38b3e1SArne Jansen  * otherwise.
28152f38b3e1SArne Jansen  * When return_any and find_higher are both true, and no higher item is found,
28162f38b3e1SArne Jansen  * return the next lower instead.
28172f38b3e1SArne Jansen  * When return_any is true and find_higher is false, and no lower item is found,
28182f38b3e1SArne Jansen  * return the next higher instead.
28192f38b3e1SArne Jansen  * It returns 0 if any item is found, 1 if none is found (tree empty), and
28202f38b3e1SArne Jansen  * < 0 on error
28212f38b3e1SArne Jansen  */
28222f38b3e1SArne Jansen int btrfs_search_slot_for_read(struct btrfs_root *root,
28232f38b3e1SArne Jansen 			       struct btrfs_key *key, struct btrfs_path *p,
28242f38b3e1SArne Jansen 			       int find_higher, int return_any)
28252f38b3e1SArne Jansen {
28262f38b3e1SArne Jansen 	int ret;
28272f38b3e1SArne Jansen 	struct extent_buffer *leaf;
28282f38b3e1SArne Jansen 
28292f38b3e1SArne Jansen again:
28302f38b3e1SArne Jansen 	ret = btrfs_search_slot(NULL, root, key, p, 0, 0);
28312f38b3e1SArne Jansen 	if (ret <= 0)
28322f38b3e1SArne Jansen 		return ret;
28332f38b3e1SArne Jansen 	/*
28342f38b3e1SArne Jansen 	 * a return value of 1 means the path is at the position where the
28352f38b3e1SArne Jansen 	 * item should be inserted. Normally this is the next bigger item,
28362f38b3e1SArne Jansen 	 * but in case the previous item is the last in a leaf, path points
28372f38b3e1SArne Jansen 	 * to the first free slot in the previous leaf, i.e. at an invalid
28382f38b3e1SArne Jansen 	 * item.
28392f38b3e1SArne Jansen 	 */
28402f38b3e1SArne Jansen 	leaf = p->nodes[0];
28412f38b3e1SArne Jansen 
28422f38b3e1SArne Jansen 	if (find_higher) {
28432f38b3e1SArne Jansen 		if (p->slots[0] >= btrfs_header_nritems(leaf)) {
28442f38b3e1SArne Jansen 			ret = btrfs_next_leaf(root, p);
28452f38b3e1SArne Jansen 			if (ret <= 0)
28462f38b3e1SArne Jansen 				return ret;
28472f38b3e1SArne Jansen 			if (!return_any)
28482f38b3e1SArne Jansen 				return 1;
28492f38b3e1SArne Jansen 			/*
28502f38b3e1SArne Jansen 			 * no higher item found, return the next
28512f38b3e1SArne Jansen 			 * lower instead
28522f38b3e1SArne Jansen 			 */
28532f38b3e1SArne Jansen 			return_any = 0;
28542f38b3e1SArne Jansen 			find_higher = 0;
28552f38b3e1SArne Jansen 			btrfs_release_path(p);
28562f38b3e1SArne Jansen 			goto again;
28572f38b3e1SArne Jansen 		}
28582f38b3e1SArne Jansen 	} else {
28592f38b3e1SArne Jansen 		if (p->slots[0] == 0) {
28602f38b3e1SArne Jansen 			ret = btrfs_prev_leaf(root, p);
2861e6793769SArne Jansen 			if (ret < 0)
28622f38b3e1SArne Jansen 				return ret;
2863e6793769SArne Jansen 			if (!ret) {
2864e6793769SArne Jansen 				p->slots[0] = btrfs_header_nritems(leaf) - 1;
2865e6793769SArne Jansen 				return 0;
2866e6793769SArne Jansen 			}
28672f38b3e1SArne Jansen 			if (!return_any)
28682f38b3e1SArne Jansen 				return 1;
28692f38b3e1SArne Jansen 			/*
28702f38b3e1SArne Jansen 			 * no lower item found, return the next
28712f38b3e1SArne Jansen 			 * higher instead
28722f38b3e1SArne Jansen 			 */
28732f38b3e1SArne Jansen 			return_any = 0;
28742f38b3e1SArne Jansen 			find_higher = 1;
28752f38b3e1SArne Jansen 			btrfs_release_path(p);
28762f38b3e1SArne Jansen 			goto again;
2877e6793769SArne Jansen 		} else {
28782f38b3e1SArne Jansen 			--p->slots[0];
28792f38b3e1SArne Jansen 		}
28802f38b3e1SArne Jansen 	}
28812f38b3e1SArne Jansen 	return 0;
28822f38b3e1SArne Jansen }
28832f38b3e1SArne Jansen 
28842f38b3e1SArne Jansen /*
288574123bd7SChris Mason  * adjust the pointers going up the tree, starting at level
288674123bd7SChris Mason  * making sure the right key of each node is points to 'key'.
288774123bd7SChris Mason  * This is used after shifting pointers to the left, so it stops
288874123bd7SChris Mason  * fixing up pointers when a given leaf/node is not in slot 0 of the
288974123bd7SChris Mason  * higher levels
2890aa5d6bedSChris Mason  *
289174123bd7SChris Mason  */
2892d6a0a126STsutomu Itoh static void fixup_low_keys(struct btrfs_root *root, struct btrfs_path *path,
28935f39d397SChris Mason 			   struct btrfs_disk_key *key, int level)
2894be0e5c09SChris Mason {
2895be0e5c09SChris Mason 	int i;
28965f39d397SChris Mason 	struct extent_buffer *t;
28975f39d397SChris Mason 
2898234b63a0SChris Mason 	for (i = level; i < BTRFS_MAX_LEVEL; i++) {
2899be0e5c09SChris Mason 		int tslot = path->slots[i];
2900eb60ceacSChris Mason 		if (!path->nodes[i])
2901be0e5c09SChris Mason 			break;
29025f39d397SChris Mason 		t = path->nodes[i];
290332adf090SLiu Bo 		tree_mod_log_set_node_key(root->fs_info, t, tslot, 1);
29045f39d397SChris Mason 		btrfs_set_node_key(t, key, tslot);
2905d6025579SChris Mason 		btrfs_mark_buffer_dirty(path->nodes[i]);
2906be0e5c09SChris Mason 		if (tslot != 0)
2907be0e5c09SChris Mason 			break;
2908be0e5c09SChris Mason 	}
2909be0e5c09SChris Mason }
2910be0e5c09SChris Mason 
291174123bd7SChris Mason /*
291231840ae1SZheng Yan  * update item key.
291331840ae1SZheng Yan  *
291431840ae1SZheng Yan  * This function isn't completely safe. It's the caller's responsibility
291531840ae1SZheng Yan  * that the new key won't break the order
291631840ae1SZheng Yan  */
2917afe5fea7STsutomu Itoh void btrfs_set_item_key_safe(struct btrfs_root *root, struct btrfs_path *path,
291831840ae1SZheng Yan 			     struct btrfs_key *new_key)
291931840ae1SZheng Yan {
292031840ae1SZheng Yan 	struct btrfs_disk_key disk_key;
292131840ae1SZheng Yan 	struct extent_buffer *eb;
292231840ae1SZheng Yan 	int slot;
292331840ae1SZheng Yan 
292431840ae1SZheng Yan 	eb = path->nodes[0];
292531840ae1SZheng Yan 	slot = path->slots[0];
292631840ae1SZheng Yan 	if (slot > 0) {
292731840ae1SZheng Yan 		btrfs_item_key(eb, &disk_key, slot - 1);
2928143bede5SJeff Mahoney 		BUG_ON(comp_keys(&disk_key, new_key) >= 0);
292931840ae1SZheng Yan 	}
293031840ae1SZheng Yan 	if (slot < btrfs_header_nritems(eb) - 1) {
293131840ae1SZheng Yan 		btrfs_item_key(eb, &disk_key, slot + 1);
2932143bede5SJeff Mahoney 		BUG_ON(comp_keys(&disk_key, new_key) <= 0);
293331840ae1SZheng Yan 	}
293431840ae1SZheng Yan 
293531840ae1SZheng Yan 	btrfs_cpu_key_to_disk(&disk_key, new_key);
293631840ae1SZheng Yan 	btrfs_set_item_key(eb, &disk_key, slot);
293731840ae1SZheng Yan 	btrfs_mark_buffer_dirty(eb);
293831840ae1SZheng Yan 	if (slot == 0)
2939d6a0a126STsutomu Itoh 		fixup_low_keys(root, path, &disk_key, 1);
294031840ae1SZheng Yan }
294131840ae1SZheng Yan 
294231840ae1SZheng Yan /*
294374123bd7SChris Mason  * try to push data from one node into the next node left in the
294479f95c82SChris Mason  * tree.
2945aa5d6bedSChris Mason  *
2946aa5d6bedSChris Mason  * returns 0 if some ptrs were pushed left, < 0 if there was some horrible
2947aa5d6bedSChris Mason  * error, and > 0 if there was no room in the left hand block.
294874123bd7SChris Mason  */
294998ed5174SChris Mason static int push_node_left(struct btrfs_trans_handle *trans,
295098ed5174SChris Mason 			  struct btrfs_root *root, struct extent_buffer *dst,
2951971a1f66SChris Mason 			  struct extent_buffer *src, int empty)
2952be0e5c09SChris Mason {
2953be0e5c09SChris Mason 	int push_items = 0;
2954bb803951SChris Mason 	int src_nritems;
2955bb803951SChris Mason 	int dst_nritems;
2956aa5d6bedSChris Mason 	int ret = 0;
2957be0e5c09SChris Mason 
29585f39d397SChris Mason 	src_nritems = btrfs_header_nritems(src);
29595f39d397SChris Mason 	dst_nritems = btrfs_header_nritems(dst);
2960123abc88SChris Mason 	push_items = BTRFS_NODEPTRS_PER_BLOCK(root) - dst_nritems;
29617bb86316SChris Mason 	WARN_ON(btrfs_header_generation(src) != trans->transid);
29627bb86316SChris Mason 	WARN_ON(btrfs_header_generation(dst) != trans->transid);
296354aa1f4dSChris Mason 
2964bce4eae9SChris Mason 	if (!empty && src_nritems <= 8)
2965971a1f66SChris Mason 		return 1;
2966971a1f66SChris Mason 
2967d397712bSChris Mason 	if (push_items <= 0)
2968be0e5c09SChris Mason 		return 1;
2969be0e5c09SChris Mason 
2970bce4eae9SChris Mason 	if (empty) {
2971971a1f66SChris Mason 		push_items = min(src_nritems, push_items);
2972bce4eae9SChris Mason 		if (push_items < src_nritems) {
2973bce4eae9SChris Mason 			/* leave at least 8 pointers in the node if
2974bce4eae9SChris Mason 			 * we aren't going to empty it
2975bce4eae9SChris Mason 			 */
2976bce4eae9SChris Mason 			if (src_nritems - push_items < 8) {
2977bce4eae9SChris Mason 				if (push_items <= 8)
2978bce4eae9SChris Mason 					return 1;
2979bce4eae9SChris Mason 				push_items -= 8;
2980bce4eae9SChris Mason 			}
2981bce4eae9SChris Mason 		}
2982bce4eae9SChris Mason 	} else
2983bce4eae9SChris Mason 		push_items = min(src_nritems - 8, push_items);
298479f95c82SChris Mason 
2985f230475eSJan Schmidt 	tree_mod_log_eb_copy(root->fs_info, dst, src, dst_nritems, 0,
298690f8d62eSJan Schmidt 			     push_items);
29875f39d397SChris Mason 	copy_extent_buffer(dst, src,
29885f39d397SChris Mason 			   btrfs_node_key_ptr_offset(dst_nritems),
29895f39d397SChris Mason 			   btrfs_node_key_ptr_offset(0),
2990123abc88SChris Mason 			   push_items * sizeof(struct btrfs_key_ptr));
29915f39d397SChris Mason 
2992bb803951SChris Mason 	if (push_items < src_nritems) {
299357911b8bSJan Schmidt 		/*
299457911b8bSJan Schmidt 		 * don't call tree_mod_log_eb_move here, key removal was already
299557911b8bSJan Schmidt 		 * fully logged by tree_mod_log_eb_copy above.
299657911b8bSJan Schmidt 		 */
29975f39d397SChris Mason 		memmove_extent_buffer(src, btrfs_node_key_ptr_offset(0),
29985f39d397SChris Mason 				      btrfs_node_key_ptr_offset(push_items),
2999e2fa7227SChris Mason 				      (src_nritems - push_items) *
3000123abc88SChris Mason 				      sizeof(struct btrfs_key_ptr));
3001bb803951SChris Mason 	}
30025f39d397SChris Mason 	btrfs_set_header_nritems(src, src_nritems - push_items);
30035f39d397SChris Mason 	btrfs_set_header_nritems(dst, dst_nritems + push_items);
30045f39d397SChris Mason 	btrfs_mark_buffer_dirty(src);
30055f39d397SChris Mason 	btrfs_mark_buffer_dirty(dst);
300631840ae1SZheng Yan 
3007bb803951SChris Mason 	return ret;
3008be0e5c09SChris Mason }
3009be0e5c09SChris Mason 
301097571fd0SChris Mason /*
301179f95c82SChris Mason  * try to push data from one node into the next node right in the
301279f95c82SChris Mason  * tree.
301379f95c82SChris Mason  *
301479f95c82SChris Mason  * returns 0 if some ptrs were pushed, < 0 if there was some horrible
301579f95c82SChris Mason  * error, and > 0 if there was no room in the right hand block.
301679f95c82SChris Mason  *
301779f95c82SChris Mason  * this will  only push up to 1/2 the contents of the left node over
301879f95c82SChris Mason  */
30195f39d397SChris Mason static int balance_node_right(struct btrfs_trans_handle *trans,
30205f39d397SChris Mason 			      struct btrfs_root *root,
30215f39d397SChris Mason 			      struct extent_buffer *dst,
30225f39d397SChris Mason 			      struct extent_buffer *src)
302379f95c82SChris Mason {
302479f95c82SChris Mason 	int push_items = 0;
302579f95c82SChris Mason 	int max_push;
302679f95c82SChris Mason 	int src_nritems;
302779f95c82SChris Mason 	int dst_nritems;
302879f95c82SChris Mason 	int ret = 0;
302979f95c82SChris Mason 
30307bb86316SChris Mason 	WARN_ON(btrfs_header_generation(src) != trans->transid);
30317bb86316SChris Mason 	WARN_ON(btrfs_header_generation(dst) != trans->transid);
30327bb86316SChris Mason 
30335f39d397SChris Mason 	src_nritems = btrfs_header_nritems(src);
30345f39d397SChris Mason 	dst_nritems = btrfs_header_nritems(dst);
3035123abc88SChris Mason 	push_items = BTRFS_NODEPTRS_PER_BLOCK(root) - dst_nritems;
3036d397712bSChris Mason 	if (push_items <= 0)
303779f95c82SChris Mason 		return 1;
3038bce4eae9SChris Mason 
3039d397712bSChris Mason 	if (src_nritems < 4)
3040bce4eae9SChris Mason 		return 1;
304179f95c82SChris Mason 
304279f95c82SChris Mason 	max_push = src_nritems / 2 + 1;
304379f95c82SChris Mason 	/* don't try to empty the node */
3044d397712bSChris Mason 	if (max_push >= src_nritems)
304579f95c82SChris Mason 		return 1;
3046252c38f0SYan 
304779f95c82SChris Mason 	if (max_push < push_items)
304879f95c82SChris Mason 		push_items = max_push;
304979f95c82SChris Mason 
3050f230475eSJan Schmidt 	tree_mod_log_eb_move(root->fs_info, dst, push_items, 0, dst_nritems);
30515f39d397SChris Mason 	memmove_extent_buffer(dst, btrfs_node_key_ptr_offset(push_items),
30525f39d397SChris Mason 				      btrfs_node_key_ptr_offset(0),
30535f39d397SChris Mason 				      (dst_nritems) *
30545f39d397SChris Mason 				      sizeof(struct btrfs_key_ptr));
3055d6025579SChris Mason 
3056f230475eSJan Schmidt 	tree_mod_log_eb_copy(root->fs_info, dst, src, 0,
305790f8d62eSJan Schmidt 			     src_nritems - push_items, push_items);
30585f39d397SChris Mason 	copy_extent_buffer(dst, src,
30595f39d397SChris Mason 			   btrfs_node_key_ptr_offset(0),
30605f39d397SChris Mason 			   btrfs_node_key_ptr_offset(src_nritems - push_items),
3061123abc88SChris Mason 			   push_items * sizeof(struct btrfs_key_ptr));
306279f95c82SChris Mason 
30635f39d397SChris Mason 	btrfs_set_header_nritems(src, src_nritems - push_items);
30645f39d397SChris Mason 	btrfs_set_header_nritems(dst, dst_nritems + push_items);
306579f95c82SChris Mason 
30665f39d397SChris Mason 	btrfs_mark_buffer_dirty(src);
30675f39d397SChris Mason 	btrfs_mark_buffer_dirty(dst);
306831840ae1SZheng Yan 
306979f95c82SChris Mason 	return ret;
307079f95c82SChris Mason }
307179f95c82SChris Mason 
307279f95c82SChris Mason /*
307397571fd0SChris Mason  * helper function to insert a new root level in the tree.
307497571fd0SChris Mason  * A new node is allocated, and a single item is inserted to
307597571fd0SChris Mason  * point to the existing root
3076aa5d6bedSChris Mason  *
3077aa5d6bedSChris Mason  * returns zero on success or < 0 on failure.
307897571fd0SChris Mason  */
3079d397712bSChris Mason static noinline int insert_new_root(struct btrfs_trans_handle *trans,
30805f39d397SChris Mason 			   struct btrfs_root *root,
3081fdd99c72SLiu Bo 			   struct btrfs_path *path, int level)
308274123bd7SChris Mason {
30837bb86316SChris Mason 	u64 lower_gen;
30845f39d397SChris Mason 	struct extent_buffer *lower;
30855f39d397SChris Mason 	struct extent_buffer *c;
3086925baeddSChris Mason 	struct extent_buffer *old;
30875f39d397SChris Mason 	struct btrfs_disk_key lower_key;
30885c680ed6SChris Mason 
30895c680ed6SChris Mason 	BUG_ON(path->nodes[level]);
30905c680ed6SChris Mason 	BUG_ON(path->nodes[level-1] != root->node);
30915c680ed6SChris Mason 
30927bb86316SChris Mason 	lower = path->nodes[level-1];
30937bb86316SChris Mason 	if (level == 1)
30947bb86316SChris Mason 		btrfs_item_key(lower, &lower_key, 0);
30957bb86316SChris Mason 	else
30967bb86316SChris Mason 		btrfs_node_key(lower, &lower_key, 0);
30977bb86316SChris Mason 
309831840ae1SZheng Yan 	c = btrfs_alloc_free_block(trans, root, root->nodesize, 0,
30995d4f98a2SYan Zheng 				   root->root_key.objectid, &lower_key,
31005581a51aSJan Schmidt 				   level, root->node->start, 0);
31015f39d397SChris Mason 	if (IS_ERR(c))
31025f39d397SChris Mason 		return PTR_ERR(c);
3103925baeddSChris Mason 
3104f0486c68SYan, Zheng 	root_add_used(root, root->nodesize);
3105f0486c68SYan, Zheng 
31065d4f98a2SYan Zheng 	memset_extent_buffer(c, 0, 0, sizeof(struct btrfs_header));
31075f39d397SChris Mason 	btrfs_set_header_nritems(c, 1);
31085f39d397SChris Mason 	btrfs_set_header_level(c, level);
3109db94535dSChris Mason 	btrfs_set_header_bytenr(c, c->start);
31105f39d397SChris Mason 	btrfs_set_header_generation(c, trans->transid);
31115d4f98a2SYan Zheng 	btrfs_set_header_backref_rev(c, BTRFS_MIXED_BACKREF_REV);
31125f39d397SChris Mason 	btrfs_set_header_owner(c, root->root_key.objectid);
3113d5719762SChris Mason 
31145f39d397SChris Mason 	write_extent_buffer(c, root->fs_info->fsid,
31155f39d397SChris Mason 			    (unsigned long)btrfs_header_fsid(c),
31165f39d397SChris Mason 			    BTRFS_FSID_SIZE);
3117e17cade2SChris Mason 
3118e17cade2SChris Mason 	write_extent_buffer(c, root->fs_info->chunk_tree_uuid,
3119e17cade2SChris Mason 			    (unsigned long)btrfs_header_chunk_tree_uuid(c),
3120e17cade2SChris Mason 			    BTRFS_UUID_SIZE);
3121e17cade2SChris Mason 
31225f39d397SChris Mason 	btrfs_set_node_key(c, &lower_key, 0);
3123db94535dSChris Mason 	btrfs_set_node_blockptr(c, 0, lower->start);
31247bb86316SChris Mason 	lower_gen = btrfs_header_generation(lower);
312531840ae1SZheng Yan 	WARN_ON(lower_gen != trans->transid);
31267bb86316SChris Mason 
31277bb86316SChris Mason 	btrfs_set_node_ptr_generation(c, 0, lower_gen);
31285f39d397SChris Mason 
31295f39d397SChris Mason 	btrfs_mark_buffer_dirty(c);
3130d5719762SChris Mason 
3131925baeddSChris Mason 	old = root->node;
3132fdd99c72SLiu Bo 	tree_mod_log_set_root_pointer(root, c, 0);
3133240f62c8SChris Mason 	rcu_assign_pointer(root->node, c);
3134925baeddSChris Mason 
3135925baeddSChris Mason 	/* the super has an extra ref to root->node */
3136925baeddSChris Mason 	free_extent_buffer(old);
3137925baeddSChris Mason 
31380b86a832SChris Mason 	add_root_to_dirty_list(root);
31395f39d397SChris Mason 	extent_buffer_get(c);
31405f39d397SChris Mason 	path->nodes[level] = c;
3141bd681513SChris Mason 	path->locks[level] = BTRFS_WRITE_LOCK;
314274123bd7SChris Mason 	path->slots[level] = 0;
314374123bd7SChris Mason 	return 0;
314474123bd7SChris Mason }
31455c680ed6SChris Mason 
31465c680ed6SChris Mason /*
31475c680ed6SChris Mason  * worker function to insert a single pointer in a node.
31485c680ed6SChris Mason  * the node should have enough room for the pointer already
314997571fd0SChris Mason  *
31505c680ed6SChris Mason  * slot and level indicate where you want the key to go, and
31515c680ed6SChris Mason  * blocknr is the block the key points to.
31525c680ed6SChris Mason  */
3153143bede5SJeff Mahoney static void insert_ptr(struct btrfs_trans_handle *trans,
3154143bede5SJeff Mahoney 		       struct btrfs_root *root, struct btrfs_path *path,
3155143bede5SJeff Mahoney 		       struct btrfs_disk_key *key, u64 bytenr,
3156c3e06965SJan Schmidt 		       int slot, int level)
31575c680ed6SChris Mason {
31585f39d397SChris Mason 	struct extent_buffer *lower;
31595c680ed6SChris Mason 	int nritems;
3160f3ea38daSJan Schmidt 	int ret;
31615c680ed6SChris Mason 
31625c680ed6SChris Mason 	BUG_ON(!path->nodes[level]);
3163f0486c68SYan, Zheng 	btrfs_assert_tree_locked(path->nodes[level]);
31645f39d397SChris Mason 	lower = path->nodes[level];
31655f39d397SChris Mason 	nritems = btrfs_header_nritems(lower);
3166c293498bSStoyan Gaydarov 	BUG_ON(slot > nritems);
3167143bede5SJeff Mahoney 	BUG_ON(nritems == BTRFS_NODEPTRS_PER_BLOCK(root));
316874123bd7SChris Mason 	if (slot != nritems) {
3169c3e06965SJan Schmidt 		if (level)
3170f3ea38daSJan Schmidt 			tree_mod_log_eb_move(root->fs_info, lower, slot + 1,
3171f3ea38daSJan Schmidt 					     slot, nritems - slot);
31725f39d397SChris Mason 		memmove_extent_buffer(lower,
31735f39d397SChris Mason 			      btrfs_node_key_ptr_offset(slot + 1),
31745f39d397SChris Mason 			      btrfs_node_key_ptr_offset(slot),
3175123abc88SChris Mason 			      (nritems - slot) * sizeof(struct btrfs_key_ptr));
317674123bd7SChris Mason 	}
3177c3e06965SJan Schmidt 	if (level) {
3178f3ea38daSJan Schmidt 		ret = tree_mod_log_insert_key(root->fs_info, lower, slot,
3179c8cc6341SJosef Bacik 					      MOD_LOG_KEY_ADD, GFP_NOFS);
3180f3ea38daSJan Schmidt 		BUG_ON(ret < 0);
3181f3ea38daSJan Schmidt 	}
31825f39d397SChris Mason 	btrfs_set_node_key(lower, key, slot);
3183db94535dSChris Mason 	btrfs_set_node_blockptr(lower, slot, bytenr);
318474493f7aSChris Mason 	WARN_ON(trans->transid == 0);
318574493f7aSChris Mason 	btrfs_set_node_ptr_generation(lower, slot, trans->transid);
31865f39d397SChris Mason 	btrfs_set_header_nritems(lower, nritems + 1);
31875f39d397SChris Mason 	btrfs_mark_buffer_dirty(lower);
318874123bd7SChris Mason }
318974123bd7SChris Mason 
319097571fd0SChris Mason /*
319197571fd0SChris Mason  * split the node at the specified level in path in two.
319297571fd0SChris Mason  * The path is corrected to point to the appropriate node after the split
319397571fd0SChris Mason  *
319497571fd0SChris Mason  * Before splitting this tries to make some room in the node by pushing
319597571fd0SChris Mason  * left and right, if either one works, it returns right away.
3196aa5d6bedSChris Mason  *
3197aa5d6bedSChris Mason  * returns 0 on success and < 0 on failure
319897571fd0SChris Mason  */
3199e02119d5SChris Mason static noinline int split_node(struct btrfs_trans_handle *trans,
3200e02119d5SChris Mason 			       struct btrfs_root *root,
3201e02119d5SChris Mason 			       struct btrfs_path *path, int level)
3202be0e5c09SChris Mason {
32035f39d397SChris Mason 	struct extent_buffer *c;
32045f39d397SChris Mason 	struct extent_buffer *split;
32055f39d397SChris Mason 	struct btrfs_disk_key disk_key;
3206be0e5c09SChris Mason 	int mid;
32075c680ed6SChris Mason 	int ret;
32087518a238SChris Mason 	u32 c_nritems;
3209be0e5c09SChris Mason 
32105f39d397SChris Mason 	c = path->nodes[level];
32117bb86316SChris Mason 	WARN_ON(btrfs_header_generation(c) != trans->transid);
32125f39d397SChris Mason 	if (c == root->node) {
3213d9abbf1cSJan Schmidt 		/*
321490f8d62eSJan Schmidt 		 * trying to split the root, lets make a new one
321590f8d62eSJan Schmidt 		 *
3216fdd99c72SLiu Bo 		 * tree mod log: We don't log_removal old root in
321790f8d62eSJan Schmidt 		 * insert_new_root, because that root buffer will be kept as a
321890f8d62eSJan Schmidt 		 * normal node. We are going to log removal of half of the
321990f8d62eSJan Schmidt 		 * elements below with tree_mod_log_eb_copy. We're holding a
322090f8d62eSJan Schmidt 		 * tree lock on the buffer, which is why we cannot race with
322190f8d62eSJan Schmidt 		 * other tree_mod_log users.
3222d9abbf1cSJan Schmidt 		 */
3223fdd99c72SLiu Bo 		ret = insert_new_root(trans, root, path, level + 1);
32245c680ed6SChris Mason 		if (ret)
32255c680ed6SChris Mason 			return ret;
3226b3612421SChris Mason 	} else {
3227e66f709bSChris Mason 		ret = push_nodes_for_insert(trans, root, path, level);
32285f39d397SChris Mason 		c = path->nodes[level];
32295f39d397SChris Mason 		if (!ret && btrfs_header_nritems(c) <
3230c448acf0SChris Mason 		    BTRFS_NODEPTRS_PER_BLOCK(root) - 3)
3231e66f709bSChris Mason 			return 0;
323254aa1f4dSChris Mason 		if (ret < 0)
323354aa1f4dSChris Mason 			return ret;
32345c680ed6SChris Mason 	}
3235e66f709bSChris Mason 
32365f39d397SChris Mason 	c_nritems = btrfs_header_nritems(c);
32375d4f98a2SYan Zheng 	mid = (c_nritems + 1) / 2;
32385d4f98a2SYan Zheng 	btrfs_node_key(c, &disk_key, mid);
32397bb86316SChris Mason 
32405d4f98a2SYan Zheng 	split = btrfs_alloc_free_block(trans, root, root->nodesize, 0,
32417bb86316SChris Mason 					root->root_key.objectid,
32425581a51aSJan Schmidt 					&disk_key, level, c->start, 0);
32435f39d397SChris Mason 	if (IS_ERR(split))
32445f39d397SChris Mason 		return PTR_ERR(split);
324554aa1f4dSChris Mason 
3246f0486c68SYan, Zheng 	root_add_used(root, root->nodesize);
3247f0486c68SYan, Zheng 
32485d4f98a2SYan Zheng 	memset_extent_buffer(split, 0, 0, sizeof(struct btrfs_header));
32495f39d397SChris Mason 	btrfs_set_header_level(split, btrfs_header_level(c));
3250db94535dSChris Mason 	btrfs_set_header_bytenr(split, split->start);
32515f39d397SChris Mason 	btrfs_set_header_generation(split, trans->transid);
32525d4f98a2SYan Zheng 	btrfs_set_header_backref_rev(split, BTRFS_MIXED_BACKREF_REV);
32535f39d397SChris Mason 	btrfs_set_header_owner(split, root->root_key.objectid);
32545f39d397SChris Mason 	write_extent_buffer(split, root->fs_info->fsid,
32555f39d397SChris Mason 			    (unsigned long)btrfs_header_fsid(split),
32565f39d397SChris Mason 			    BTRFS_FSID_SIZE);
3257e17cade2SChris Mason 	write_extent_buffer(split, root->fs_info->chunk_tree_uuid,
3258e17cade2SChris Mason 			    (unsigned long)btrfs_header_chunk_tree_uuid(split),
3259e17cade2SChris Mason 			    BTRFS_UUID_SIZE);
32605f39d397SChris Mason 
326190f8d62eSJan Schmidt 	tree_mod_log_eb_copy(root->fs_info, split, c, 0, mid, c_nritems - mid);
32625f39d397SChris Mason 	copy_extent_buffer(split, c,
32635f39d397SChris Mason 			   btrfs_node_key_ptr_offset(0),
32645f39d397SChris Mason 			   btrfs_node_key_ptr_offset(mid),
3265123abc88SChris Mason 			   (c_nritems - mid) * sizeof(struct btrfs_key_ptr));
32665f39d397SChris Mason 	btrfs_set_header_nritems(split, c_nritems - mid);
32675f39d397SChris Mason 	btrfs_set_header_nritems(c, mid);
3268aa5d6bedSChris Mason 	ret = 0;
3269aa5d6bedSChris Mason 
32705f39d397SChris Mason 	btrfs_mark_buffer_dirty(c);
32715f39d397SChris Mason 	btrfs_mark_buffer_dirty(split);
32725f39d397SChris Mason 
3273143bede5SJeff Mahoney 	insert_ptr(trans, root, path, &disk_key, split->start,
3274c3e06965SJan Schmidt 		   path->slots[level + 1] + 1, level + 1);
3275aa5d6bedSChris Mason 
32765de08d7dSChris Mason 	if (path->slots[level] >= mid) {
32775c680ed6SChris Mason 		path->slots[level] -= mid;
3278925baeddSChris Mason 		btrfs_tree_unlock(c);
32795f39d397SChris Mason 		free_extent_buffer(c);
32805f39d397SChris Mason 		path->nodes[level] = split;
32815c680ed6SChris Mason 		path->slots[level + 1] += 1;
3282eb60ceacSChris Mason 	} else {
3283925baeddSChris Mason 		btrfs_tree_unlock(split);
32845f39d397SChris Mason 		free_extent_buffer(split);
3285be0e5c09SChris Mason 	}
3286aa5d6bedSChris Mason 	return ret;
3287be0e5c09SChris Mason }
3288be0e5c09SChris Mason 
328974123bd7SChris Mason /*
329074123bd7SChris Mason  * how many bytes are required to store the items in a leaf.  start
329174123bd7SChris Mason  * and nr indicate which items in the leaf to check.  This totals up the
329274123bd7SChris Mason  * space used both by the item structs and the item data
329374123bd7SChris Mason  */
32945f39d397SChris Mason static int leaf_space_used(struct extent_buffer *l, int start, int nr)
3295be0e5c09SChris Mason {
329641be1f3bSJosef Bacik 	struct btrfs_item *start_item;
329741be1f3bSJosef Bacik 	struct btrfs_item *end_item;
329841be1f3bSJosef Bacik 	struct btrfs_map_token token;
3299be0e5c09SChris Mason 	int data_len;
33005f39d397SChris Mason 	int nritems = btrfs_header_nritems(l);
3301d4dbff95SChris Mason 	int end = min(nritems, start + nr) - 1;
3302be0e5c09SChris Mason 
3303be0e5c09SChris Mason 	if (!nr)
3304be0e5c09SChris Mason 		return 0;
330541be1f3bSJosef Bacik 	btrfs_init_map_token(&token);
330641be1f3bSJosef Bacik 	start_item = btrfs_item_nr(l, start);
330741be1f3bSJosef Bacik 	end_item = btrfs_item_nr(l, end);
330841be1f3bSJosef Bacik 	data_len = btrfs_token_item_offset(l, start_item, &token) +
330941be1f3bSJosef Bacik 		btrfs_token_item_size(l, start_item, &token);
331041be1f3bSJosef Bacik 	data_len = data_len - btrfs_token_item_offset(l, end_item, &token);
33110783fcfcSChris Mason 	data_len += sizeof(struct btrfs_item) * nr;
3312d4dbff95SChris Mason 	WARN_ON(data_len < 0);
3313be0e5c09SChris Mason 	return data_len;
3314be0e5c09SChris Mason }
3315be0e5c09SChris Mason 
331674123bd7SChris Mason /*
3317d4dbff95SChris Mason  * The space between the end of the leaf items and
3318d4dbff95SChris Mason  * the start of the leaf data.  IOW, how much room
3319d4dbff95SChris Mason  * the leaf has left for both items and data
3320d4dbff95SChris Mason  */
3321d397712bSChris Mason noinline int btrfs_leaf_free_space(struct btrfs_root *root,
3322e02119d5SChris Mason 				   struct extent_buffer *leaf)
3323d4dbff95SChris Mason {
33245f39d397SChris Mason 	int nritems = btrfs_header_nritems(leaf);
33255f39d397SChris Mason 	int ret;
33265f39d397SChris Mason 	ret = BTRFS_LEAF_DATA_SIZE(root) - leaf_space_used(leaf, 0, nritems);
33275f39d397SChris Mason 	if (ret < 0) {
3328d397712bSChris Mason 		printk(KERN_CRIT "leaf free space ret %d, leaf data size %lu, "
3329d397712bSChris Mason 		       "used %d nritems %d\n",
3330ae2f5411SJens Axboe 		       ret, (unsigned long) BTRFS_LEAF_DATA_SIZE(root),
33315f39d397SChris Mason 		       leaf_space_used(leaf, 0, nritems), nritems);
33325f39d397SChris Mason 	}
33335f39d397SChris Mason 	return ret;
3334d4dbff95SChris Mason }
3335d4dbff95SChris Mason 
333699d8f83cSChris Mason /*
333799d8f83cSChris Mason  * min slot controls the lowest index we're willing to push to the
333899d8f83cSChris Mason  * right.  We'll push up to and including min_slot, but no lower
333999d8f83cSChris Mason  */
334044871b1bSChris Mason static noinline int __push_leaf_right(struct btrfs_trans_handle *trans,
334144871b1bSChris Mason 				      struct btrfs_root *root,
334244871b1bSChris Mason 				      struct btrfs_path *path,
334344871b1bSChris Mason 				      int data_size, int empty,
334444871b1bSChris Mason 				      struct extent_buffer *right,
334599d8f83cSChris Mason 				      int free_space, u32 left_nritems,
334699d8f83cSChris Mason 				      u32 min_slot)
334700ec4c51SChris Mason {
33485f39d397SChris Mason 	struct extent_buffer *left = path->nodes[0];
334944871b1bSChris Mason 	struct extent_buffer *upper = path->nodes[1];
3350cfed81a0SChris Mason 	struct btrfs_map_token token;
33515f39d397SChris Mason 	struct btrfs_disk_key disk_key;
335200ec4c51SChris Mason 	int slot;
335334a38218SChris Mason 	u32 i;
335400ec4c51SChris Mason 	int push_space = 0;
335500ec4c51SChris Mason 	int push_items = 0;
33560783fcfcSChris Mason 	struct btrfs_item *item;
335734a38218SChris Mason 	u32 nr;
33587518a238SChris Mason 	u32 right_nritems;
33595f39d397SChris Mason 	u32 data_end;
3360db94535dSChris Mason 	u32 this_item_size;
336100ec4c51SChris Mason 
3362cfed81a0SChris Mason 	btrfs_init_map_token(&token);
3363cfed81a0SChris Mason 
336434a38218SChris Mason 	if (empty)
336534a38218SChris Mason 		nr = 0;
336634a38218SChris Mason 	else
336799d8f83cSChris Mason 		nr = max_t(u32, 1, min_slot);
336834a38218SChris Mason 
336931840ae1SZheng Yan 	if (path->slots[0] >= left_nritems)
337087b29b20SYan Zheng 		push_space += data_size;
337131840ae1SZheng Yan 
337244871b1bSChris Mason 	slot = path->slots[1];
337334a38218SChris Mason 	i = left_nritems - 1;
337434a38218SChris Mason 	while (i >= nr) {
33755f39d397SChris Mason 		item = btrfs_item_nr(left, i);
3376db94535dSChris Mason 
337731840ae1SZheng Yan 		if (!empty && push_items > 0) {
337831840ae1SZheng Yan 			if (path->slots[0] > i)
337931840ae1SZheng Yan 				break;
338031840ae1SZheng Yan 			if (path->slots[0] == i) {
338131840ae1SZheng Yan 				int space = btrfs_leaf_free_space(root, left);
338231840ae1SZheng Yan 				if (space + push_space * 2 > free_space)
338331840ae1SZheng Yan 					break;
338431840ae1SZheng Yan 			}
338531840ae1SZheng Yan 		}
338631840ae1SZheng Yan 
338700ec4c51SChris Mason 		if (path->slots[0] == i)
338887b29b20SYan Zheng 			push_space += data_size;
3389db94535dSChris Mason 
3390db94535dSChris Mason 		this_item_size = btrfs_item_size(left, item);
3391db94535dSChris Mason 		if (this_item_size + sizeof(*item) + push_space > free_space)
339200ec4c51SChris Mason 			break;
339331840ae1SZheng Yan 
339400ec4c51SChris Mason 		push_items++;
3395db94535dSChris Mason 		push_space += this_item_size + sizeof(*item);
339634a38218SChris Mason 		if (i == 0)
339734a38218SChris Mason 			break;
339834a38218SChris Mason 		i--;
3399db94535dSChris Mason 	}
34005f39d397SChris Mason 
3401925baeddSChris Mason 	if (push_items == 0)
3402925baeddSChris Mason 		goto out_unlock;
34035f39d397SChris Mason 
34046c1500f2SJulia Lawall 	WARN_ON(!empty && push_items == left_nritems);
34055f39d397SChris Mason 
340600ec4c51SChris Mason 	/* push left to right */
34075f39d397SChris Mason 	right_nritems = btrfs_header_nritems(right);
340834a38218SChris Mason 
34095f39d397SChris Mason 	push_space = btrfs_item_end_nr(left, left_nritems - push_items);
3410123abc88SChris Mason 	push_space -= leaf_data_end(root, left);
34115f39d397SChris Mason 
341200ec4c51SChris Mason 	/* make room in the right data area */
34135f39d397SChris Mason 	data_end = leaf_data_end(root, right);
34145f39d397SChris Mason 	memmove_extent_buffer(right,
34155f39d397SChris Mason 			      btrfs_leaf_data(right) + data_end - push_space,
34165f39d397SChris Mason 			      btrfs_leaf_data(right) + data_end,
34175f39d397SChris Mason 			      BTRFS_LEAF_DATA_SIZE(root) - data_end);
34185f39d397SChris Mason 
341900ec4c51SChris Mason 	/* copy from the left data area */
34205f39d397SChris Mason 	copy_extent_buffer(right, left, btrfs_leaf_data(right) +
3421d6025579SChris Mason 		     BTRFS_LEAF_DATA_SIZE(root) - push_space,
3422d6025579SChris Mason 		     btrfs_leaf_data(left) + leaf_data_end(root, left),
3423d6025579SChris Mason 		     push_space);
34245f39d397SChris Mason 
34255f39d397SChris Mason 	memmove_extent_buffer(right, btrfs_item_nr_offset(push_items),
34265f39d397SChris Mason 			      btrfs_item_nr_offset(0),
34270783fcfcSChris Mason 			      right_nritems * sizeof(struct btrfs_item));
34285f39d397SChris Mason 
342900ec4c51SChris Mason 	/* copy the items from left to right */
34305f39d397SChris Mason 	copy_extent_buffer(right, left, btrfs_item_nr_offset(0),
34315f39d397SChris Mason 		   btrfs_item_nr_offset(left_nritems - push_items),
34320783fcfcSChris Mason 		   push_items * sizeof(struct btrfs_item));
343300ec4c51SChris Mason 
343400ec4c51SChris Mason 	/* update the item pointers */
34357518a238SChris Mason 	right_nritems += push_items;
34365f39d397SChris Mason 	btrfs_set_header_nritems(right, right_nritems);
3437123abc88SChris Mason 	push_space = BTRFS_LEAF_DATA_SIZE(root);
34387518a238SChris Mason 	for (i = 0; i < right_nritems; i++) {
34395f39d397SChris Mason 		item = btrfs_item_nr(right, i);
3440cfed81a0SChris Mason 		push_space -= btrfs_token_item_size(right, item, &token);
3441cfed81a0SChris Mason 		btrfs_set_token_item_offset(right, item, push_space, &token);
3442db94535dSChris Mason 	}
3443db94535dSChris Mason 
34447518a238SChris Mason 	left_nritems -= push_items;
34455f39d397SChris Mason 	btrfs_set_header_nritems(left, left_nritems);
344600ec4c51SChris Mason 
344734a38218SChris Mason 	if (left_nritems)
34485f39d397SChris Mason 		btrfs_mark_buffer_dirty(left);
3449f0486c68SYan, Zheng 	else
3450f0486c68SYan, Zheng 		clean_tree_block(trans, root, left);
3451f0486c68SYan, Zheng 
34525f39d397SChris Mason 	btrfs_mark_buffer_dirty(right);
3453a429e513SChris Mason 
34545f39d397SChris Mason 	btrfs_item_key(right, &disk_key, 0);
34555f39d397SChris Mason 	btrfs_set_node_key(upper, &disk_key, slot + 1);
3456d6025579SChris Mason 	btrfs_mark_buffer_dirty(upper);
345702217ed2SChris Mason 
345800ec4c51SChris Mason 	/* then fixup the leaf pointer in the path */
34597518a238SChris Mason 	if (path->slots[0] >= left_nritems) {
34607518a238SChris Mason 		path->slots[0] -= left_nritems;
3461925baeddSChris Mason 		if (btrfs_header_nritems(path->nodes[0]) == 0)
3462925baeddSChris Mason 			clean_tree_block(trans, root, path->nodes[0]);
3463925baeddSChris Mason 		btrfs_tree_unlock(path->nodes[0]);
34645f39d397SChris Mason 		free_extent_buffer(path->nodes[0]);
34655f39d397SChris Mason 		path->nodes[0] = right;
346600ec4c51SChris Mason 		path->slots[1] += 1;
346700ec4c51SChris Mason 	} else {
3468925baeddSChris Mason 		btrfs_tree_unlock(right);
34695f39d397SChris Mason 		free_extent_buffer(right);
347000ec4c51SChris Mason 	}
347100ec4c51SChris Mason 	return 0;
3472925baeddSChris Mason 
3473925baeddSChris Mason out_unlock:
3474925baeddSChris Mason 	btrfs_tree_unlock(right);
3475925baeddSChris Mason 	free_extent_buffer(right);
3476925baeddSChris Mason 	return 1;
347700ec4c51SChris Mason }
3478925baeddSChris Mason 
347900ec4c51SChris Mason /*
348044871b1bSChris Mason  * push some data in the path leaf to the right, trying to free up at
348174123bd7SChris Mason  * least data_size bytes.  returns zero if the push worked, nonzero otherwise
348244871b1bSChris Mason  *
348344871b1bSChris Mason  * returns 1 if the push failed because the other node didn't have enough
348444871b1bSChris Mason  * room, 0 if everything worked out and < 0 if there were major errors.
348599d8f83cSChris Mason  *
348699d8f83cSChris Mason  * this will push starting from min_slot to the end of the leaf.  It won't
348799d8f83cSChris Mason  * push any slot lower than min_slot
348874123bd7SChris Mason  */
348944871b1bSChris Mason static int push_leaf_right(struct btrfs_trans_handle *trans, struct btrfs_root
349099d8f83cSChris Mason 			   *root, struct btrfs_path *path,
349199d8f83cSChris Mason 			   int min_data_size, int data_size,
349299d8f83cSChris Mason 			   int empty, u32 min_slot)
3493be0e5c09SChris Mason {
349444871b1bSChris Mason 	struct extent_buffer *left = path->nodes[0];
349544871b1bSChris Mason 	struct extent_buffer *right;
349644871b1bSChris Mason 	struct extent_buffer *upper;
349744871b1bSChris Mason 	int slot;
349844871b1bSChris Mason 	int free_space;
349944871b1bSChris Mason 	u32 left_nritems;
350044871b1bSChris Mason 	int ret;
350144871b1bSChris Mason 
350244871b1bSChris Mason 	if (!path->nodes[1])
350344871b1bSChris Mason 		return 1;
350444871b1bSChris Mason 
350544871b1bSChris Mason 	slot = path->slots[1];
350644871b1bSChris Mason 	upper = path->nodes[1];
350744871b1bSChris Mason 	if (slot >= btrfs_header_nritems(upper) - 1)
350844871b1bSChris Mason 		return 1;
350944871b1bSChris Mason 
351044871b1bSChris Mason 	btrfs_assert_tree_locked(path->nodes[1]);
351144871b1bSChris Mason 
351244871b1bSChris Mason 	right = read_node_slot(root, upper, slot + 1);
351391ca338dSTsutomu Itoh 	if (right == NULL)
351491ca338dSTsutomu Itoh 		return 1;
351591ca338dSTsutomu Itoh 
351644871b1bSChris Mason 	btrfs_tree_lock(right);
351744871b1bSChris Mason 	btrfs_set_lock_blocking(right);
351844871b1bSChris Mason 
351944871b1bSChris Mason 	free_space = btrfs_leaf_free_space(root, right);
352044871b1bSChris Mason 	if (free_space < data_size)
352144871b1bSChris Mason 		goto out_unlock;
352244871b1bSChris Mason 
352344871b1bSChris Mason 	/* cow and double check */
352444871b1bSChris Mason 	ret = btrfs_cow_block(trans, root, right, upper,
352544871b1bSChris Mason 			      slot + 1, &right);
352644871b1bSChris Mason 	if (ret)
352744871b1bSChris Mason 		goto out_unlock;
352844871b1bSChris Mason 
352944871b1bSChris Mason 	free_space = btrfs_leaf_free_space(root, right);
353044871b1bSChris Mason 	if (free_space < data_size)
353144871b1bSChris Mason 		goto out_unlock;
353244871b1bSChris Mason 
353344871b1bSChris Mason 	left_nritems = btrfs_header_nritems(left);
353444871b1bSChris Mason 	if (left_nritems == 0)
353544871b1bSChris Mason 		goto out_unlock;
353644871b1bSChris Mason 
353799d8f83cSChris Mason 	return __push_leaf_right(trans, root, path, min_data_size, empty,
353899d8f83cSChris Mason 				right, free_space, left_nritems, min_slot);
353944871b1bSChris Mason out_unlock:
354044871b1bSChris Mason 	btrfs_tree_unlock(right);
354144871b1bSChris Mason 	free_extent_buffer(right);
354244871b1bSChris Mason 	return 1;
354344871b1bSChris Mason }
354444871b1bSChris Mason 
354544871b1bSChris Mason /*
354644871b1bSChris Mason  * push some data in the path leaf to the left, trying to free up at
354744871b1bSChris Mason  * least data_size bytes.  returns zero if the push worked, nonzero otherwise
354899d8f83cSChris Mason  *
354999d8f83cSChris Mason  * max_slot can put a limit on how far into the leaf we'll push items.  The
355099d8f83cSChris Mason  * item at 'max_slot' won't be touched.  Use (u32)-1 to make us do all the
355199d8f83cSChris Mason  * items
355244871b1bSChris Mason  */
355344871b1bSChris Mason static noinline int __push_leaf_left(struct btrfs_trans_handle *trans,
355444871b1bSChris Mason 				     struct btrfs_root *root,
355544871b1bSChris Mason 				     struct btrfs_path *path, int data_size,
355644871b1bSChris Mason 				     int empty, struct extent_buffer *left,
355799d8f83cSChris Mason 				     int free_space, u32 right_nritems,
355899d8f83cSChris Mason 				     u32 max_slot)
355944871b1bSChris Mason {
35605f39d397SChris Mason 	struct btrfs_disk_key disk_key;
35615f39d397SChris Mason 	struct extent_buffer *right = path->nodes[0];
3562be0e5c09SChris Mason 	int i;
3563be0e5c09SChris Mason 	int push_space = 0;
3564be0e5c09SChris Mason 	int push_items = 0;
35650783fcfcSChris Mason 	struct btrfs_item *item;
35667518a238SChris Mason 	u32 old_left_nritems;
356734a38218SChris Mason 	u32 nr;
3568aa5d6bedSChris Mason 	int ret = 0;
3569db94535dSChris Mason 	u32 this_item_size;
3570db94535dSChris Mason 	u32 old_left_item_size;
3571cfed81a0SChris Mason 	struct btrfs_map_token token;
3572cfed81a0SChris Mason 
3573cfed81a0SChris Mason 	btrfs_init_map_token(&token);
3574be0e5c09SChris Mason 
357534a38218SChris Mason 	if (empty)
357699d8f83cSChris Mason 		nr = min(right_nritems, max_slot);
357734a38218SChris Mason 	else
357899d8f83cSChris Mason 		nr = min(right_nritems - 1, max_slot);
357934a38218SChris Mason 
358034a38218SChris Mason 	for (i = 0; i < nr; i++) {
35815f39d397SChris Mason 		item = btrfs_item_nr(right, i);
3582db94535dSChris Mason 
358331840ae1SZheng Yan 		if (!empty && push_items > 0) {
358431840ae1SZheng Yan 			if (path->slots[0] < i)
358531840ae1SZheng Yan 				break;
358631840ae1SZheng Yan 			if (path->slots[0] == i) {
358731840ae1SZheng Yan 				int space = btrfs_leaf_free_space(root, right);
358831840ae1SZheng Yan 				if (space + push_space * 2 > free_space)
358931840ae1SZheng Yan 					break;
359031840ae1SZheng Yan 			}
359131840ae1SZheng Yan 		}
359231840ae1SZheng Yan 
3593be0e5c09SChris Mason 		if (path->slots[0] == i)
359487b29b20SYan Zheng 			push_space += data_size;
3595db94535dSChris Mason 
3596db94535dSChris Mason 		this_item_size = btrfs_item_size(right, item);
3597db94535dSChris Mason 		if (this_item_size + sizeof(*item) + push_space > free_space)
3598be0e5c09SChris Mason 			break;
3599db94535dSChris Mason 
3600be0e5c09SChris Mason 		push_items++;
3601db94535dSChris Mason 		push_space += this_item_size + sizeof(*item);
3602be0e5c09SChris Mason 	}
3603db94535dSChris Mason 
3604be0e5c09SChris Mason 	if (push_items == 0) {
3605925baeddSChris Mason 		ret = 1;
3606925baeddSChris Mason 		goto out;
3607be0e5c09SChris Mason 	}
360834a38218SChris Mason 	if (!empty && push_items == btrfs_header_nritems(right))
3609a429e513SChris Mason 		WARN_ON(1);
36105f39d397SChris Mason 
3611be0e5c09SChris Mason 	/* push data from right to left */
36125f39d397SChris Mason 	copy_extent_buffer(left, right,
36135f39d397SChris Mason 			   btrfs_item_nr_offset(btrfs_header_nritems(left)),
36145f39d397SChris Mason 			   btrfs_item_nr_offset(0),
36155f39d397SChris Mason 			   push_items * sizeof(struct btrfs_item));
36165f39d397SChris Mason 
3617123abc88SChris Mason 	push_space = BTRFS_LEAF_DATA_SIZE(root) -
36185f39d397SChris Mason 		     btrfs_item_offset_nr(right, push_items - 1);
36195f39d397SChris Mason 
36205f39d397SChris Mason 	copy_extent_buffer(left, right, btrfs_leaf_data(left) +
3621d6025579SChris Mason 		     leaf_data_end(root, left) - push_space,
3622123abc88SChris Mason 		     btrfs_leaf_data(right) +
36235f39d397SChris Mason 		     btrfs_item_offset_nr(right, push_items - 1),
3624be0e5c09SChris Mason 		     push_space);
36255f39d397SChris Mason 	old_left_nritems = btrfs_header_nritems(left);
362687b29b20SYan Zheng 	BUG_ON(old_left_nritems <= 0);
3627eb60ceacSChris Mason 
3628db94535dSChris Mason 	old_left_item_size = btrfs_item_offset_nr(left, old_left_nritems - 1);
3629be0e5c09SChris Mason 	for (i = old_left_nritems; i < old_left_nritems + push_items; i++) {
36305f39d397SChris Mason 		u32 ioff;
3631db94535dSChris Mason 
36325f39d397SChris Mason 		item = btrfs_item_nr(left, i);
3633db94535dSChris Mason 
3634cfed81a0SChris Mason 		ioff = btrfs_token_item_offset(left, item, &token);
3635cfed81a0SChris Mason 		btrfs_set_token_item_offset(left, item,
3636cfed81a0SChris Mason 		      ioff - (BTRFS_LEAF_DATA_SIZE(root) - old_left_item_size),
3637cfed81a0SChris Mason 		      &token);
3638be0e5c09SChris Mason 	}
36395f39d397SChris Mason 	btrfs_set_header_nritems(left, old_left_nritems + push_items);
3640be0e5c09SChris Mason 
3641be0e5c09SChris Mason 	/* fixup right node */
364231b1a2bdSJulia Lawall 	if (push_items > right_nritems)
364331b1a2bdSJulia Lawall 		WARN(1, KERN_CRIT "push items %d nr %u\n", push_items,
3644d397712bSChris Mason 		       right_nritems);
364534a38218SChris Mason 
364634a38218SChris Mason 	if (push_items < right_nritems) {
36475f39d397SChris Mason 		push_space = btrfs_item_offset_nr(right, push_items - 1) -
3648123abc88SChris Mason 						  leaf_data_end(root, right);
36495f39d397SChris Mason 		memmove_extent_buffer(right, btrfs_leaf_data(right) +
3650d6025579SChris Mason 				      BTRFS_LEAF_DATA_SIZE(root) - push_space,
3651d6025579SChris Mason 				      btrfs_leaf_data(right) +
3652123abc88SChris Mason 				      leaf_data_end(root, right), push_space);
36535f39d397SChris Mason 
36545f39d397SChris Mason 		memmove_extent_buffer(right, btrfs_item_nr_offset(0),
36555f39d397SChris Mason 			      btrfs_item_nr_offset(push_items),
36565f39d397SChris Mason 			     (btrfs_header_nritems(right) - push_items) *
36570783fcfcSChris Mason 			     sizeof(struct btrfs_item));
365834a38218SChris Mason 	}
3659eef1c494SYan 	right_nritems -= push_items;
3660eef1c494SYan 	btrfs_set_header_nritems(right, right_nritems);
3661123abc88SChris Mason 	push_space = BTRFS_LEAF_DATA_SIZE(root);
36625f39d397SChris Mason 	for (i = 0; i < right_nritems; i++) {
36635f39d397SChris Mason 		item = btrfs_item_nr(right, i);
3664db94535dSChris Mason 
3665cfed81a0SChris Mason 		push_space = push_space - btrfs_token_item_size(right,
3666cfed81a0SChris Mason 								item, &token);
3667cfed81a0SChris Mason 		btrfs_set_token_item_offset(right, item, push_space, &token);
3668db94535dSChris Mason 	}
3669eb60ceacSChris Mason 
36705f39d397SChris Mason 	btrfs_mark_buffer_dirty(left);
367134a38218SChris Mason 	if (right_nritems)
36725f39d397SChris Mason 		btrfs_mark_buffer_dirty(right);
3673f0486c68SYan, Zheng 	else
3674f0486c68SYan, Zheng 		clean_tree_block(trans, root, right);
3675098f59c2SChris Mason 
36765f39d397SChris Mason 	btrfs_item_key(right, &disk_key, 0);
3677d6a0a126STsutomu Itoh 	fixup_low_keys(root, path, &disk_key, 1);
3678be0e5c09SChris Mason 
3679be0e5c09SChris Mason 	/* then fixup the leaf pointer in the path */
3680be0e5c09SChris Mason 	if (path->slots[0] < push_items) {
3681be0e5c09SChris Mason 		path->slots[0] += old_left_nritems;
3682925baeddSChris Mason 		btrfs_tree_unlock(path->nodes[0]);
36835f39d397SChris Mason 		free_extent_buffer(path->nodes[0]);
36845f39d397SChris Mason 		path->nodes[0] = left;
3685be0e5c09SChris Mason 		path->slots[1] -= 1;
3686be0e5c09SChris Mason 	} else {
3687925baeddSChris Mason 		btrfs_tree_unlock(left);
36885f39d397SChris Mason 		free_extent_buffer(left);
3689be0e5c09SChris Mason 		path->slots[0] -= push_items;
3690be0e5c09SChris Mason 	}
3691eb60ceacSChris Mason 	BUG_ON(path->slots[0] < 0);
3692aa5d6bedSChris Mason 	return ret;
3693925baeddSChris Mason out:
3694925baeddSChris Mason 	btrfs_tree_unlock(left);
3695925baeddSChris Mason 	free_extent_buffer(left);
3696925baeddSChris Mason 	return ret;
3697be0e5c09SChris Mason }
3698be0e5c09SChris Mason 
369974123bd7SChris Mason /*
370044871b1bSChris Mason  * push some data in the path leaf to the left, trying to free up at
370144871b1bSChris Mason  * least data_size bytes.  returns zero if the push worked, nonzero otherwise
370299d8f83cSChris Mason  *
370399d8f83cSChris Mason  * max_slot can put a limit on how far into the leaf we'll push items.  The
370499d8f83cSChris Mason  * item at 'max_slot' won't be touched.  Use (u32)-1 to make us push all the
370599d8f83cSChris Mason  * items
370644871b1bSChris Mason  */
370744871b1bSChris Mason static int push_leaf_left(struct btrfs_trans_handle *trans, struct btrfs_root
370899d8f83cSChris Mason 			  *root, struct btrfs_path *path, int min_data_size,
370999d8f83cSChris Mason 			  int data_size, int empty, u32 max_slot)
371044871b1bSChris Mason {
371144871b1bSChris Mason 	struct extent_buffer *right = path->nodes[0];
371244871b1bSChris Mason 	struct extent_buffer *left;
371344871b1bSChris Mason 	int slot;
371444871b1bSChris Mason 	int free_space;
371544871b1bSChris Mason 	u32 right_nritems;
371644871b1bSChris Mason 	int ret = 0;
371744871b1bSChris Mason 
371844871b1bSChris Mason 	slot = path->slots[1];
371944871b1bSChris Mason 	if (slot == 0)
372044871b1bSChris Mason 		return 1;
372144871b1bSChris Mason 	if (!path->nodes[1])
372244871b1bSChris Mason 		return 1;
372344871b1bSChris Mason 
372444871b1bSChris Mason 	right_nritems = btrfs_header_nritems(right);
372544871b1bSChris Mason 	if (right_nritems == 0)
372644871b1bSChris Mason 		return 1;
372744871b1bSChris Mason 
372844871b1bSChris Mason 	btrfs_assert_tree_locked(path->nodes[1]);
372944871b1bSChris Mason 
373044871b1bSChris Mason 	left = read_node_slot(root, path->nodes[1], slot - 1);
373191ca338dSTsutomu Itoh 	if (left == NULL)
373291ca338dSTsutomu Itoh 		return 1;
373391ca338dSTsutomu Itoh 
373444871b1bSChris Mason 	btrfs_tree_lock(left);
373544871b1bSChris Mason 	btrfs_set_lock_blocking(left);
373644871b1bSChris Mason 
373744871b1bSChris Mason 	free_space = btrfs_leaf_free_space(root, left);
373844871b1bSChris Mason 	if (free_space < data_size) {
373944871b1bSChris Mason 		ret = 1;
374044871b1bSChris Mason 		goto out;
374144871b1bSChris Mason 	}
374244871b1bSChris Mason 
374344871b1bSChris Mason 	/* cow and double check */
374444871b1bSChris Mason 	ret = btrfs_cow_block(trans, root, left,
374544871b1bSChris Mason 			      path->nodes[1], slot - 1, &left);
374644871b1bSChris Mason 	if (ret) {
374744871b1bSChris Mason 		/* we hit -ENOSPC, but it isn't fatal here */
374879787eaaSJeff Mahoney 		if (ret == -ENOSPC)
374944871b1bSChris Mason 			ret = 1;
375044871b1bSChris Mason 		goto out;
375144871b1bSChris Mason 	}
375244871b1bSChris Mason 
375344871b1bSChris Mason 	free_space = btrfs_leaf_free_space(root, left);
375444871b1bSChris Mason 	if (free_space < data_size) {
375544871b1bSChris Mason 		ret = 1;
375644871b1bSChris Mason 		goto out;
375744871b1bSChris Mason 	}
375844871b1bSChris Mason 
375999d8f83cSChris Mason 	return __push_leaf_left(trans, root, path, min_data_size,
376099d8f83cSChris Mason 			       empty, left, free_space, right_nritems,
376199d8f83cSChris Mason 			       max_slot);
376244871b1bSChris Mason out:
376344871b1bSChris Mason 	btrfs_tree_unlock(left);
376444871b1bSChris Mason 	free_extent_buffer(left);
376544871b1bSChris Mason 	return ret;
376644871b1bSChris Mason }
376744871b1bSChris Mason 
376844871b1bSChris Mason /*
376974123bd7SChris Mason  * split the path's leaf in two, making sure there is at least data_size
377074123bd7SChris Mason  * available for the resulting leaf level of the path.
377174123bd7SChris Mason  */
3772143bede5SJeff Mahoney static noinline void copy_for_split(struct btrfs_trans_handle *trans,
3773e02119d5SChris Mason 				    struct btrfs_root *root,
377444871b1bSChris Mason 				    struct btrfs_path *path,
377544871b1bSChris Mason 				    struct extent_buffer *l,
377644871b1bSChris Mason 				    struct extent_buffer *right,
377744871b1bSChris Mason 				    int slot, int mid, int nritems)
3778be0e5c09SChris Mason {
3779be0e5c09SChris Mason 	int data_copy_size;
3780be0e5c09SChris Mason 	int rt_data_off;
3781be0e5c09SChris Mason 	int i;
3782d4dbff95SChris Mason 	struct btrfs_disk_key disk_key;
3783cfed81a0SChris Mason 	struct btrfs_map_token token;
3784cfed81a0SChris Mason 
3785cfed81a0SChris Mason 	btrfs_init_map_token(&token);
3786be0e5c09SChris Mason 
37875f39d397SChris Mason 	nritems = nritems - mid;
37885f39d397SChris Mason 	btrfs_set_header_nritems(right, nritems);
37895f39d397SChris Mason 	data_copy_size = btrfs_item_end_nr(l, mid) - leaf_data_end(root, l);
37905f39d397SChris Mason 
37915f39d397SChris Mason 	copy_extent_buffer(right, l, btrfs_item_nr_offset(0),
37925f39d397SChris Mason 			   btrfs_item_nr_offset(mid),
37935f39d397SChris Mason 			   nritems * sizeof(struct btrfs_item));
37945f39d397SChris Mason 
37955f39d397SChris Mason 	copy_extent_buffer(right, l,
3796d6025579SChris Mason 		     btrfs_leaf_data(right) + BTRFS_LEAF_DATA_SIZE(root) -
3797123abc88SChris Mason 		     data_copy_size, btrfs_leaf_data(l) +
3798123abc88SChris Mason 		     leaf_data_end(root, l), data_copy_size);
379974123bd7SChris Mason 
38005f39d397SChris Mason 	rt_data_off = BTRFS_LEAF_DATA_SIZE(root) -
38015f39d397SChris Mason 		      btrfs_item_end_nr(l, mid);
38025f39d397SChris Mason 
38035f39d397SChris Mason 	for (i = 0; i < nritems; i++) {
38045f39d397SChris Mason 		struct btrfs_item *item = btrfs_item_nr(right, i);
3805db94535dSChris Mason 		u32 ioff;
3806db94535dSChris Mason 
3807cfed81a0SChris Mason 		ioff = btrfs_token_item_offset(right, item, &token);
3808cfed81a0SChris Mason 		btrfs_set_token_item_offset(right, item,
3809cfed81a0SChris Mason 					    ioff + rt_data_off, &token);
38100783fcfcSChris Mason 	}
381174123bd7SChris Mason 
38125f39d397SChris Mason 	btrfs_set_header_nritems(l, mid);
38135f39d397SChris Mason 	btrfs_item_key(right, &disk_key, 0);
3814143bede5SJeff Mahoney 	insert_ptr(trans, root, path, &disk_key, right->start,
3815c3e06965SJan Schmidt 		   path->slots[1] + 1, 1);
38165f39d397SChris Mason 
38175f39d397SChris Mason 	btrfs_mark_buffer_dirty(right);
38185f39d397SChris Mason 	btrfs_mark_buffer_dirty(l);
3819eb60ceacSChris Mason 	BUG_ON(path->slots[0] != slot);
38205f39d397SChris Mason 
3821be0e5c09SChris Mason 	if (mid <= slot) {
3822925baeddSChris Mason 		btrfs_tree_unlock(path->nodes[0]);
38235f39d397SChris Mason 		free_extent_buffer(path->nodes[0]);
38245f39d397SChris Mason 		path->nodes[0] = right;
3825be0e5c09SChris Mason 		path->slots[0] -= mid;
3826be0e5c09SChris Mason 		path->slots[1] += 1;
3827925baeddSChris Mason 	} else {
3828925baeddSChris Mason 		btrfs_tree_unlock(right);
38295f39d397SChris Mason 		free_extent_buffer(right);
3830925baeddSChris Mason 	}
38315f39d397SChris Mason 
3832eb60ceacSChris Mason 	BUG_ON(path->slots[0] < 0);
383344871b1bSChris Mason }
383444871b1bSChris Mason 
383544871b1bSChris Mason /*
383699d8f83cSChris Mason  * double splits happen when we need to insert a big item in the middle
383799d8f83cSChris Mason  * of a leaf.  A double split can leave us with 3 mostly empty leaves:
383899d8f83cSChris Mason  * leaf: [ slots 0 - N] [ our target ] [ N + 1 - total in leaf ]
383999d8f83cSChris Mason  *          A                 B                 C
384099d8f83cSChris Mason  *
384199d8f83cSChris Mason  * We avoid this by trying to push the items on either side of our target
384299d8f83cSChris Mason  * into the adjacent leaves.  If all goes well we can avoid the double split
384399d8f83cSChris Mason  * completely.
384499d8f83cSChris Mason  */
384599d8f83cSChris Mason static noinline int push_for_double_split(struct btrfs_trans_handle *trans,
384699d8f83cSChris Mason 					  struct btrfs_root *root,
384799d8f83cSChris Mason 					  struct btrfs_path *path,
384899d8f83cSChris Mason 					  int data_size)
384999d8f83cSChris Mason {
385099d8f83cSChris Mason 	int ret;
385199d8f83cSChris Mason 	int progress = 0;
385299d8f83cSChris Mason 	int slot;
385399d8f83cSChris Mason 	u32 nritems;
385499d8f83cSChris Mason 
385599d8f83cSChris Mason 	slot = path->slots[0];
385699d8f83cSChris Mason 
385799d8f83cSChris Mason 	/*
385899d8f83cSChris Mason 	 * try to push all the items after our slot into the
385999d8f83cSChris Mason 	 * right leaf
386099d8f83cSChris Mason 	 */
386199d8f83cSChris Mason 	ret = push_leaf_right(trans, root, path, 1, data_size, 0, slot);
386299d8f83cSChris Mason 	if (ret < 0)
386399d8f83cSChris Mason 		return ret;
386499d8f83cSChris Mason 
386599d8f83cSChris Mason 	if (ret == 0)
386699d8f83cSChris Mason 		progress++;
386799d8f83cSChris Mason 
386899d8f83cSChris Mason 	nritems = btrfs_header_nritems(path->nodes[0]);
386999d8f83cSChris Mason 	/*
387099d8f83cSChris Mason 	 * our goal is to get our slot at the start or end of a leaf.  If
387199d8f83cSChris Mason 	 * we've done so we're done
387299d8f83cSChris Mason 	 */
387399d8f83cSChris Mason 	if (path->slots[0] == 0 || path->slots[0] == nritems)
387499d8f83cSChris Mason 		return 0;
387599d8f83cSChris Mason 
387699d8f83cSChris Mason 	if (btrfs_leaf_free_space(root, path->nodes[0]) >= data_size)
387799d8f83cSChris Mason 		return 0;
387899d8f83cSChris Mason 
387999d8f83cSChris Mason 	/* try to push all the items before our slot into the next leaf */
388099d8f83cSChris Mason 	slot = path->slots[0];
388199d8f83cSChris Mason 	ret = push_leaf_left(trans, root, path, 1, data_size, 0, slot);
388299d8f83cSChris Mason 	if (ret < 0)
388399d8f83cSChris Mason 		return ret;
388499d8f83cSChris Mason 
388599d8f83cSChris Mason 	if (ret == 0)
388699d8f83cSChris Mason 		progress++;
388799d8f83cSChris Mason 
388899d8f83cSChris Mason 	if (progress)
388999d8f83cSChris Mason 		return 0;
389099d8f83cSChris Mason 	return 1;
389199d8f83cSChris Mason }
389299d8f83cSChris Mason 
389399d8f83cSChris Mason /*
389444871b1bSChris Mason  * split the path's leaf in two, making sure there is at least data_size
389544871b1bSChris Mason  * available for the resulting leaf level of the path.
389644871b1bSChris Mason  *
389744871b1bSChris Mason  * returns 0 if all went well and < 0 on failure.
389844871b1bSChris Mason  */
389944871b1bSChris Mason static noinline int split_leaf(struct btrfs_trans_handle *trans,
390044871b1bSChris Mason 			       struct btrfs_root *root,
390144871b1bSChris Mason 			       struct btrfs_key *ins_key,
390244871b1bSChris Mason 			       struct btrfs_path *path, int data_size,
390344871b1bSChris Mason 			       int extend)
390444871b1bSChris Mason {
39055d4f98a2SYan Zheng 	struct btrfs_disk_key disk_key;
390644871b1bSChris Mason 	struct extent_buffer *l;
390744871b1bSChris Mason 	u32 nritems;
390844871b1bSChris Mason 	int mid;
390944871b1bSChris Mason 	int slot;
391044871b1bSChris Mason 	struct extent_buffer *right;
391144871b1bSChris Mason 	int ret = 0;
391244871b1bSChris Mason 	int wret;
39135d4f98a2SYan Zheng 	int split;
391444871b1bSChris Mason 	int num_doubles = 0;
391599d8f83cSChris Mason 	int tried_avoid_double = 0;
391644871b1bSChris Mason 
3917a5719521SYan, Zheng 	l = path->nodes[0];
3918a5719521SYan, Zheng 	slot = path->slots[0];
3919a5719521SYan, Zheng 	if (extend && data_size + btrfs_item_size_nr(l, slot) +
3920a5719521SYan, Zheng 	    sizeof(struct btrfs_item) > BTRFS_LEAF_DATA_SIZE(root))
3921a5719521SYan, Zheng 		return -EOVERFLOW;
3922a5719521SYan, Zheng 
392344871b1bSChris Mason 	/* first try to make some room by pushing left and right */
392433157e05SLiu Bo 	if (data_size && path->nodes[1]) {
392599d8f83cSChris Mason 		wret = push_leaf_right(trans, root, path, data_size,
392699d8f83cSChris Mason 				       data_size, 0, 0);
392744871b1bSChris Mason 		if (wret < 0)
392844871b1bSChris Mason 			return wret;
392944871b1bSChris Mason 		if (wret) {
393099d8f83cSChris Mason 			wret = push_leaf_left(trans, root, path, data_size,
393199d8f83cSChris Mason 					      data_size, 0, (u32)-1);
393244871b1bSChris Mason 			if (wret < 0)
393344871b1bSChris Mason 				return wret;
393444871b1bSChris Mason 		}
393544871b1bSChris Mason 		l = path->nodes[0];
393644871b1bSChris Mason 
393744871b1bSChris Mason 		/* did the pushes work? */
393844871b1bSChris Mason 		if (btrfs_leaf_free_space(root, l) >= data_size)
393944871b1bSChris Mason 			return 0;
394044871b1bSChris Mason 	}
394144871b1bSChris Mason 
394244871b1bSChris Mason 	if (!path->nodes[1]) {
3943fdd99c72SLiu Bo 		ret = insert_new_root(trans, root, path, 1);
394444871b1bSChris Mason 		if (ret)
394544871b1bSChris Mason 			return ret;
394644871b1bSChris Mason 	}
394744871b1bSChris Mason again:
39485d4f98a2SYan Zheng 	split = 1;
394944871b1bSChris Mason 	l = path->nodes[0];
395044871b1bSChris Mason 	slot = path->slots[0];
395144871b1bSChris Mason 	nritems = btrfs_header_nritems(l);
395244871b1bSChris Mason 	mid = (nritems + 1) / 2;
395344871b1bSChris Mason 
39545d4f98a2SYan Zheng 	if (mid <= slot) {
39555d4f98a2SYan Zheng 		if (nritems == 1 ||
39565d4f98a2SYan Zheng 		    leaf_space_used(l, mid, nritems - mid) + data_size >
39575d4f98a2SYan Zheng 			BTRFS_LEAF_DATA_SIZE(root)) {
39585d4f98a2SYan Zheng 			if (slot >= nritems) {
39595d4f98a2SYan Zheng 				split = 0;
39605d4f98a2SYan Zheng 			} else {
39615d4f98a2SYan Zheng 				mid = slot;
39625d4f98a2SYan Zheng 				if (mid != nritems &&
39635d4f98a2SYan Zheng 				    leaf_space_used(l, mid, nritems - mid) +
39645d4f98a2SYan Zheng 				    data_size > BTRFS_LEAF_DATA_SIZE(root)) {
396599d8f83cSChris Mason 					if (data_size && !tried_avoid_double)
396699d8f83cSChris Mason 						goto push_for_double;
39675d4f98a2SYan Zheng 					split = 2;
39685d4f98a2SYan Zheng 				}
39695d4f98a2SYan Zheng 			}
39705d4f98a2SYan Zheng 		}
39715d4f98a2SYan Zheng 	} else {
39725d4f98a2SYan Zheng 		if (leaf_space_used(l, 0, mid) + data_size >
39735d4f98a2SYan Zheng 			BTRFS_LEAF_DATA_SIZE(root)) {
39745d4f98a2SYan Zheng 			if (!extend && data_size && slot == 0) {
39755d4f98a2SYan Zheng 				split = 0;
39765d4f98a2SYan Zheng 			} else if ((extend || !data_size) && slot == 0) {
39775d4f98a2SYan Zheng 				mid = 1;
39785d4f98a2SYan Zheng 			} else {
39795d4f98a2SYan Zheng 				mid = slot;
39805d4f98a2SYan Zheng 				if (mid != nritems &&
39815d4f98a2SYan Zheng 				    leaf_space_used(l, mid, nritems - mid) +
39825d4f98a2SYan Zheng 				    data_size > BTRFS_LEAF_DATA_SIZE(root)) {
398399d8f83cSChris Mason 					if (data_size && !tried_avoid_double)
398499d8f83cSChris Mason 						goto push_for_double;
39855d4f98a2SYan Zheng 					split = 2 ;
39865d4f98a2SYan Zheng 				}
39875d4f98a2SYan Zheng 			}
39885d4f98a2SYan Zheng 		}
39895d4f98a2SYan Zheng 	}
39905d4f98a2SYan Zheng 
39915d4f98a2SYan Zheng 	if (split == 0)
39925d4f98a2SYan Zheng 		btrfs_cpu_key_to_disk(&disk_key, ins_key);
39935d4f98a2SYan Zheng 	else
39945d4f98a2SYan Zheng 		btrfs_item_key(l, &disk_key, mid);
39955d4f98a2SYan Zheng 
39965d4f98a2SYan Zheng 	right = btrfs_alloc_free_block(trans, root, root->leafsize, 0,
399744871b1bSChris Mason 					root->root_key.objectid,
39985581a51aSJan Schmidt 					&disk_key, 0, l->start, 0);
3999f0486c68SYan, Zheng 	if (IS_ERR(right))
400044871b1bSChris Mason 		return PTR_ERR(right);
4001f0486c68SYan, Zheng 
4002f0486c68SYan, Zheng 	root_add_used(root, root->leafsize);
400344871b1bSChris Mason 
400444871b1bSChris Mason 	memset_extent_buffer(right, 0, 0, sizeof(struct btrfs_header));
400544871b1bSChris Mason 	btrfs_set_header_bytenr(right, right->start);
400644871b1bSChris Mason 	btrfs_set_header_generation(right, trans->transid);
40075d4f98a2SYan Zheng 	btrfs_set_header_backref_rev(right, BTRFS_MIXED_BACKREF_REV);
400844871b1bSChris Mason 	btrfs_set_header_owner(right, root->root_key.objectid);
400944871b1bSChris Mason 	btrfs_set_header_level(right, 0);
401044871b1bSChris Mason 	write_extent_buffer(right, root->fs_info->fsid,
401144871b1bSChris Mason 			    (unsigned long)btrfs_header_fsid(right),
401244871b1bSChris Mason 			    BTRFS_FSID_SIZE);
401344871b1bSChris Mason 
401444871b1bSChris Mason 	write_extent_buffer(right, root->fs_info->chunk_tree_uuid,
401544871b1bSChris Mason 			    (unsigned long)btrfs_header_chunk_tree_uuid(right),
401644871b1bSChris Mason 			    BTRFS_UUID_SIZE);
401744871b1bSChris Mason 
40185d4f98a2SYan Zheng 	if (split == 0) {
401944871b1bSChris Mason 		if (mid <= slot) {
402044871b1bSChris Mason 			btrfs_set_header_nritems(right, 0);
4021143bede5SJeff Mahoney 			insert_ptr(trans, root, path, &disk_key, right->start,
4022c3e06965SJan Schmidt 				   path->slots[1] + 1, 1);
402344871b1bSChris Mason 			btrfs_tree_unlock(path->nodes[0]);
402444871b1bSChris Mason 			free_extent_buffer(path->nodes[0]);
402544871b1bSChris Mason 			path->nodes[0] = right;
402644871b1bSChris Mason 			path->slots[0] = 0;
402744871b1bSChris Mason 			path->slots[1] += 1;
402844871b1bSChris Mason 		} else {
402944871b1bSChris Mason 			btrfs_set_header_nritems(right, 0);
4030143bede5SJeff Mahoney 			insert_ptr(trans, root, path, &disk_key, right->start,
4031c3e06965SJan Schmidt 					  path->slots[1], 1);
403244871b1bSChris Mason 			btrfs_tree_unlock(path->nodes[0]);
403344871b1bSChris Mason 			free_extent_buffer(path->nodes[0]);
403444871b1bSChris Mason 			path->nodes[0] = right;
403544871b1bSChris Mason 			path->slots[0] = 0;
4036143bede5SJeff Mahoney 			if (path->slots[1] == 0)
4037d6a0a126STsutomu Itoh 				fixup_low_keys(root, path, &disk_key, 1);
40385d4f98a2SYan Zheng 		}
403944871b1bSChris Mason 		btrfs_mark_buffer_dirty(right);
404044871b1bSChris Mason 		return ret;
404144871b1bSChris Mason 	}
404244871b1bSChris Mason 
4043143bede5SJeff Mahoney 	copy_for_split(trans, root, path, l, right, slot, mid, nritems);
404444871b1bSChris Mason 
40455d4f98a2SYan Zheng 	if (split == 2) {
4046cc0c5538SChris Mason 		BUG_ON(num_doubles != 0);
4047cc0c5538SChris Mason 		num_doubles++;
4048cc0c5538SChris Mason 		goto again;
40493326d1b0SChris Mason 	}
405044871b1bSChris Mason 
4051143bede5SJeff Mahoney 	return 0;
405299d8f83cSChris Mason 
405399d8f83cSChris Mason push_for_double:
405499d8f83cSChris Mason 	push_for_double_split(trans, root, path, data_size);
405599d8f83cSChris Mason 	tried_avoid_double = 1;
405699d8f83cSChris Mason 	if (btrfs_leaf_free_space(root, path->nodes[0]) >= data_size)
405799d8f83cSChris Mason 		return 0;
405899d8f83cSChris Mason 	goto again;
4059be0e5c09SChris Mason }
4060be0e5c09SChris Mason 
4061ad48fd75SYan, Zheng static noinline int setup_leaf_for_split(struct btrfs_trans_handle *trans,
4062ad48fd75SYan, Zheng 					 struct btrfs_root *root,
4063ad48fd75SYan, Zheng 					 struct btrfs_path *path, int ins_len)
4064ad48fd75SYan, Zheng {
4065ad48fd75SYan, Zheng 	struct btrfs_key key;
4066ad48fd75SYan, Zheng 	struct extent_buffer *leaf;
4067ad48fd75SYan, Zheng 	struct btrfs_file_extent_item *fi;
4068ad48fd75SYan, Zheng 	u64 extent_len = 0;
4069ad48fd75SYan, Zheng 	u32 item_size;
4070ad48fd75SYan, Zheng 	int ret;
4071ad48fd75SYan, Zheng 
4072ad48fd75SYan, Zheng 	leaf = path->nodes[0];
4073ad48fd75SYan, Zheng 	btrfs_item_key_to_cpu(leaf, &key, path->slots[0]);
4074ad48fd75SYan, Zheng 
4075ad48fd75SYan, Zheng 	BUG_ON(key.type != BTRFS_EXTENT_DATA_KEY &&
4076ad48fd75SYan, Zheng 	       key.type != BTRFS_EXTENT_CSUM_KEY);
4077ad48fd75SYan, Zheng 
4078ad48fd75SYan, Zheng 	if (btrfs_leaf_free_space(root, leaf) >= ins_len)
4079ad48fd75SYan, Zheng 		return 0;
4080ad48fd75SYan, Zheng 
4081ad48fd75SYan, Zheng 	item_size = btrfs_item_size_nr(leaf, path->slots[0]);
4082ad48fd75SYan, Zheng 	if (key.type == BTRFS_EXTENT_DATA_KEY) {
4083ad48fd75SYan, Zheng 		fi = btrfs_item_ptr(leaf, path->slots[0],
4084ad48fd75SYan, Zheng 				    struct btrfs_file_extent_item);
4085ad48fd75SYan, Zheng 		extent_len = btrfs_file_extent_num_bytes(leaf, fi);
4086ad48fd75SYan, Zheng 	}
4087b3b4aa74SDavid Sterba 	btrfs_release_path(path);
4088ad48fd75SYan, Zheng 
4089ad48fd75SYan, Zheng 	path->keep_locks = 1;
4090ad48fd75SYan, Zheng 	path->search_for_split = 1;
4091ad48fd75SYan, Zheng 	ret = btrfs_search_slot(trans, root, &key, path, 0, 1);
4092ad48fd75SYan, Zheng 	path->search_for_split = 0;
4093ad48fd75SYan, Zheng 	if (ret < 0)
4094ad48fd75SYan, Zheng 		goto err;
4095ad48fd75SYan, Zheng 
4096ad48fd75SYan, Zheng 	ret = -EAGAIN;
4097ad48fd75SYan, Zheng 	leaf = path->nodes[0];
4098ad48fd75SYan, Zheng 	/* if our item isn't there or got smaller, return now */
4099ad48fd75SYan, Zheng 	if (ret > 0 || item_size != btrfs_item_size_nr(leaf, path->slots[0]))
4100ad48fd75SYan, Zheng 		goto err;
4101ad48fd75SYan, Zheng 
4102109f6aefSChris Mason 	/* the leaf has  changed, it now has room.  return now */
4103109f6aefSChris Mason 	if (btrfs_leaf_free_space(root, path->nodes[0]) >= ins_len)
4104109f6aefSChris Mason 		goto err;
4105109f6aefSChris Mason 
4106ad48fd75SYan, Zheng 	if (key.type == BTRFS_EXTENT_DATA_KEY) {
4107ad48fd75SYan, Zheng 		fi = btrfs_item_ptr(leaf, path->slots[0],
4108ad48fd75SYan, Zheng 				    struct btrfs_file_extent_item);
4109ad48fd75SYan, Zheng 		if (extent_len != btrfs_file_extent_num_bytes(leaf, fi))
4110ad48fd75SYan, Zheng 			goto err;
4111ad48fd75SYan, Zheng 	}
4112ad48fd75SYan, Zheng 
4113ad48fd75SYan, Zheng 	btrfs_set_path_blocking(path);
4114ad48fd75SYan, Zheng 	ret = split_leaf(trans, root, &key, path, ins_len, 1);
4115f0486c68SYan, Zheng 	if (ret)
4116f0486c68SYan, Zheng 		goto err;
4117ad48fd75SYan, Zheng 
4118ad48fd75SYan, Zheng 	path->keep_locks = 0;
4119ad48fd75SYan, Zheng 	btrfs_unlock_up_safe(path, 1);
4120ad48fd75SYan, Zheng 	return 0;
4121ad48fd75SYan, Zheng err:
4122ad48fd75SYan, Zheng 	path->keep_locks = 0;
4123ad48fd75SYan, Zheng 	return ret;
4124ad48fd75SYan, Zheng }
4125ad48fd75SYan, Zheng 
4126ad48fd75SYan, Zheng static noinline int split_item(struct btrfs_trans_handle *trans,
4127459931ecSChris Mason 			       struct btrfs_root *root,
4128459931ecSChris Mason 			       struct btrfs_path *path,
4129459931ecSChris Mason 			       struct btrfs_key *new_key,
4130459931ecSChris Mason 			       unsigned long split_offset)
4131459931ecSChris Mason {
4132459931ecSChris Mason 	struct extent_buffer *leaf;
4133459931ecSChris Mason 	struct btrfs_item *item;
4134459931ecSChris Mason 	struct btrfs_item *new_item;
4135459931ecSChris Mason 	int slot;
4136ad48fd75SYan, Zheng 	char *buf;
4137459931ecSChris Mason 	u32 nritems;
4138ad48fd75SYan, Zheng 	u32 item_size;
4139459931ecSChris Mason 	u32 orig_offset;
4140459931ecSChris Mason 	struct btrfs_disk_key disk_key;
4141459931ecSChris Mason 
4142459931ecSChris Mason 	leaf = path->nodes[0];
4143b9473439SChris Mason 	BUG_ON(btrfs_leaf_free_space(root, leaf) < sizeof(struct btrfs_item));
4144b9473439SChris Mason 
4145b4ce94deSChris Mason 	btrfs_set_path_blocking(path);
4146b4ce94deSChris Mason 
4147459931ecSChris Mason 	item = btrfs_item_nr(leaf, path->slots[0]);
4148459931ecSChris Mason 	orig_offset = btrfs_item_offset(leaf, item);
4149459931ecSChris Mason 	item_size = btrfs_item_size(leaf, item);
4150459931ecSChris Mason 
4151459931ecSChris Mason 	buf = kmalloc(item_size, GFP_NOFS);
4152ad48fd75SYan, Zheng 	if (!buf)
4153ad48fd75SYan, Zheng 		return -ENOMEM;
4154ad48fd75SYan, Zheng 
4155459931ecSChris Mason 	read_extent_buffer(leaf, buf, btrfs_item_ptr_offset(leaf,
4156459931ecSChris Mason 			    path->slots[0]), item_size);
4157ad48fd75SYan, Zheng 
4158459931ecSChris Mason 	slot = path->slots[0] + 1;
4159459931ecSChris Mason 	nritems = btrfs_header_nritems(leaf);
4160459931ecSChris Mason 	if (slot != nritems) {
4161459931ecSChris Mason 		/* shift the items */
4162459931ecSChris Mason 		memmove_extent_buffer(leaf, btrfs_item_nr_offset(slot + 1),
4163459931ecSChris Mason 				btrfs_item_nr_offset(slot),
4164459931ecSChris Mason 				(nritems - slot) * sizeof(struct btrfs_item));
4165459931ecSChris Mason 	}
4166459931ecSChris Mason 
4167459931ecSChris Mason 	btrfs_cpu_key_to_disk(&disk_key, new_key);
4168459931ecSChris Mason 	btrfs_set_item_key(leaf, &disk_key, slot);
4169459931ecSChris Mason 
4170459931ecSChris Mason 	new_item = btrfs_item_nr(leaf, slot);
4171459931ecSChris Mason 
4172459931ecSChris Mason 	btrfs_set_item_offset(leaf, new_item, orig_offset);
4173459931ecSChris Mason 	btrfs_set_item_size(leaf, new_item, item_size - split_offset);
4174459931ecSChris Mason 
4175459931ecSChris Mason 	btrfs_set_item_offset(leaf, item,
4176459931ecSChris Mason 			      orig_offset + item_size - split_offset);
4177459931ecSChris Mason 	btrfs_set_item_size(leaf, item, split_offset);
4178459931ecSChris Mason 
4179459931ecSChris Mason 	btrfs_set_header_nritems(leaf, nritems + 1);
4180459931ecSChris Mason 
4181459931ecSChris Mason 	/* write the data for the start of the original item */
4182459931ecSChris Mason 	write_extent_buffer(leaf, buf,
4183459931ecSChris Mason 			    btrfs_item_ptr_offset(leaf, path->slots[0]),
4184459931ecSChris Mason 			    split_offset);
4185459931ecSChris Mason 
4186459931ecSChris Mason 	/* write the data for the new item */
4187459931ecSChris Mason 	write_extent_buffer(leaf, buf + split_offset,
4188459931ecSChris Mason 			    btrfs_item_ptr_offset(leaf, slot),
4189459931ecSChris Mason 			    item_size - split_offset);
4190459931ecSChris Mason 	btrfs_mark_buffer_dirty(leaf);
4191459931ecSChris Mason 
4192ad48fd75SYan, Zheng 	BUG_ON(btrfs_leaf_free_space(root, leaf) < 0);
4193459931ecSChris Mason 	kfree(buf);
4194ad48fd75SYan, Zheng 	return 0;
4195ad48fd75SYan, Zheng }
4196ad48fd75SYan, Zheng 
4197ad48fd75SYan, Zheng /*
4198ad48fd75SYan, Zheng  * This function splits a single item into two items,
4199ad48fd75SYan, Zheng  * giving 'new_key' to the new item and splitting the
4200ad48fd75SYan, Zheng  * old one at split_offset (from the start of the item).
4201ad48fd75SYan, Zheng  *
4202ad48fd75SYan, Zheng  * The path may be released by this operation.  After
4203ad48fd75SYan, Zheng  * the split, the path is pointing to the old item.  The
4204ad48fd75SYan, Zheng  * new item is going to be in the same node as the old one.
4205ad48fd75SYan, Zheng  *
4206ad48fd75SYan, Zheng  * Note, the item being split must be smaller enough to live alone on
4207ad48fd75SYan, Zheng  * a tree block with room for one extra struct btrfs_item
4208ad48fd75SYan, Zheng  *
4209ad48fd75SYan, Zheng  * This allows us to split the item in place, keeping a lock on the
4210ad48fd75SYan, Zheng  * leaf the entire time.
4211ad48fd75SYan, Zheng  */
4212ad48fd75SYan, Zheng int btrfs_split_item(struct btrfs_trans_handle *trans,
4213ad48fd75SYan, Zheng 		     struct btrfs_root *root,
4214ad48fd75SYan, Zheng 		     struct btrfs_path *path,
4215ad48fd75SYan, Zheng 		     struct btrfs_key *new_key,
4216ad48fd75SYan, Zheng 		     unsigned long split_offset)
4217ad48fd75SYan, Zheng {
4218ad48fd75SYan, Zheng 	int ret;
4219ad48fd75SYan, Zheng 	ret = setup_leaf_for_split(trans, root, path,
4220ad48fd75SYan, Zheng 				   sizeof(struct btrfs_item));
4221ad48fd75SYan, Zheng 	if (ret)
4222459931ecSChris Mason 		return ret;
4223ad48fd75SYan, Zheng 
4224ad48fd75SYan, Zheng 	ret = split_item(trans, root, path, new_key, split_offset);
4225ad48fd75SYan, Zheng 	return ret;
4226ad48fd75SYan, Zheng }
4227ad48fd75SYan, Zheng 
4228ad48fd75SYan, Zheng /*
4229ad48fd75SYan, Zheng  * This function duplicate a item, giving 'new_key' to the new item.
4230ad48fd75SYan, Zheng  * It guarantees both items live in the same tree leaf and the new item
4231ad48fd75SYan, Zheng  * is contiguous with the original item.
4232ad48fd75SYan, Zheng  *
4233ad48fd75SYan, Zheng  * This allows us to split file extent in place, keeping a lock on the
4234ad48fd75SYan, Zheng  * leaf the entire time.
4235ad48fd75SYan, Zheng  */
4236ad48fd75SYan, Zheng int btrfs_duplicate_item(struct btrfs_trans_handle *trans,
4237ad48fd75SYan, Zheng 			 struct btrfs_root *root,
4238ad48fd75SYan, Zheng 			 struct btrfs_path *path,
4239ad48fd75SYan, Zheng 			 struct btrfs_key *new_key)
4240ad48fd75SYan, Zheng {
4241ad48fd75SYan, Zheng 	struct extent_buffer *leaf;
4242ad48fd75SYan, Zheng 	int ret;
4243ad48fd75SYan, Zheng 	u32 item_size;
4244ad48fd75SYan, Zheng 
4245ad48fd75SYan, Zheng 	leaf = path->nodes[0];
4246ad48fd75SYan, Zheng 	item_size = btrfs_item_size_nr(leaf, path->slots[0]);
4247ad48fd75SYan, Zheng 	ret = setup_leaf_for_split(trans, root, path,
4248ad48fd75SYan, Zheng 				   item_size + sizeof(struct btrfs_item));
4249ad48fd75SYan, Zheng 	if (ret)
4250ad48fd75SYan, Zheng 		return ret;
4251ad48fd75SYan, Zheng 
4252ad48fd75SYan, Zheng 	path->slots[0]++;
4253afe5fea7STsutomu Itoh 	setup_items_for_insert(root, path, new_key, &item_size,
4254ad48fd75SYan, Zheng 			       item_size, item_size +
4255ad48fd75SYan, Zheng 			       sizeof(struct btrfs_item), 1);
4256ad48fd75SYan, Zheng 	leaf = path->nodes[0];
4257ad48fd75SYan, Zheng 	memcpy_extent_buffer(leaf,
4258ad48fd75SYan, Zheng 			     btrfs_item_ptr_offset(leaf, path->slots[0]),
4259ad48fd75SYan, Zheng 			     btrfs_item_ptr_offset(leaf, path->slots[0] - 1),
4260ad48fd75SYan, Zheng 			     item_size);
4261ad48fd75SYan, Zheng 	return 0;
4262459931ecSChris Mason }
4263459931ecSChris Mason 
4264459931ecSChris Mason /*
4265d352ac68SChris Mason  * make the item pointed to by the path smaller.  new_size indicates
4266d352ac68SChris Mason  * how small to make it, and from_end tells us if we just chop bytes
4267d352ac68SChris Mason  * off the end of the item or if we shift the item to chop bytes off
4268d352ac68SChris Mason  * the front.
4269d352ac68SChris Mason  */
4270afe5fea7STsutomu Itoh void btrfs_truncate_item(struct btrfs_root *root, struct btrfs_path *path,
4271179e29e4SChris Mason 			 u32 new_size, int from_end)
4272b18c6685SChris Mason {
4273b18c6685SChris Mason 	int slot;
42745f39d397SChris Mason 	struct extent_buffer *leaf;
42755f39d397SChris Mason 	struct btrfs_item *item;
4276b18c6685SChris Mason 	u32 nritems;
4277b18c6685SChris Mason 	unsigned int data_end;
4278b18c6685SChris Mason 	unsigned int old_data_start;
4279b18c6685SChris Mason 	unsigned int old_size;
4280b18c6685SChris Mason 	unsigned int size_diff;
4281b18c6685SChris Mason 	int i;
4282cfed81a0SChris Mason 	struct btrfs_map_token token;
4283cfed81a0SChris Mason 
4284cfed81a0SChris Mason 	btrfs_init_map_token(&token);
4285b18c6685SChris Mason 
42865f39d397SChris Mason 	leaf = path->nodes[0];
4287179e29e4SChris Mason 	slot = path->slots[0];
4288179e29e4SChris Mason 
4289179e29e4SChris Mason 	old_size = btrfs_item_size_nr(leaf, slot);
4290179e29e4SChris Mason 	if (old_size == new_size)
4291143bede5SJeff Mahoney 		return;
4292b18c6685SChris Mason 
42935f39d397SChris Mason 	nritems = btrfs_header_nritems(leaf);
4294b18c6685SChris Mason 	data_end = leaf_data_end(root, leaf);
4295b18c6685SChris Mason 
42965f39d397SChris Mason 	old_data_start = btrfs_item_offset_nr(leaf, slot);
4297179e29e4SChris Mason 
4298b18c6685SChris Mason 	size_diff = old_size - new_size;
4299b18c6685SChris Mason 
4300b18c6685SChris Mason 	BUG_ON(slot < 0);
4301b18c6685SChris Mason 	BUG_ON(slot >= nritems);
4302b18c6685SChris Mason 
4303b18c6685SChris Mason 	/*
4304b18c6685SChris Mason 	 * item0..itemN ... dataN.offset..dataN.size .. data0.size
4305b18c6685SChris Mason 	 */
4306b18c6685SChris Mason 	/* first correct the data pointers */
4307b18c6685SChris Mason 	for (i = slot; i < nritems; i++) {
43085f39d397SChris Mason 		u32 ioff;
43095f39d397SChris Mason 		item = btrfs_item_nr(leaf, i);
4310db94535dSChris Mason 
4311cfed81a0SChris Mason 		ioff = btrfs_token_item_offset(leaf, item, &token);
4312cfed81a0SChris Mason 		btrfs_set_token_item_offset(leaf, item,
4313cfed81a0SChris Mason 					    ioff + size_diff, &token);
4314b18c6685SChris Mason 	}
4315db94535dSChris Mason 
4316b18c6685SChris Mason 	/* shift the data */
4317179e29e4SChris Mason 	if (from_end) {
43185f39d397SChris Mason 		memmove_extent_buffer(leaf, btrfs_leaf_data(leaf) +
4319b18c6685SChris Mason 			      data_end + size_diff, btrfs_leaf_data(leaf) +
4320b18c6685SChris Mason 			      data_end, old_data_start + new_size - data_end);
4321179e29e4SChris Mason 	} else {
4322179e29e4SChris Mason 		struct btrfs_disk_key disk_key;
4323179e29e4SChris Mason 		u64 offset;
4324179e29e4SChris Mason 
4325179e29e4SChris Mason 		btrfs_item_key(leaf, &disk_key, slot);
4326179e29e4SChris Mason 
4327179e29e4SChris Mason 		if (btrfs_disk_key_type(&disk_key) == BTRFS_EXTENT_DATA_KEY) {
4328179e29e4SChris Mason 			unsigned long ptr;
4329179e29e4SChris Mason 			struct btrfs_file_extent_item *fi;
4330179e29e4SChris Mason 
4331179e29e4SChris Mason 			fi = btrfs_item_ptr(leaf, slot,
4332179e29e4SChris Mason 					    struct btrfs_file_extent_item);
4333179e29e4SChris Mason 			fi = (struct btrfs_file_extent_item *)(
4334179e29e4SChris Mason 			     (unsigned long)fi - size_diff);
4335179e29e4SChris Mason 
4336179e29e4SChris Mason 			if (btrfs_file_extent_type(leaf, fi) ==
4337179e29e4SChris Mason 			    BTRFS_FILE_EXTENT_INLINE) {
4338179e29e4SChris Mason 				ptr = btrfs_item_ptr_offset(leaf, slot);
4339179e29e4SChris Mason 				memmove_extent_buffer(leaf, ptr,
4340179e29e4SChris Mason 				      (unsigned long)fi,
4341179e29e4SChris Mason 				      offsetof(struct btrfs_file_extent_item,
4342179e29e4SChris Mason 						 disk_bytenr));
4343179e29e4SChris Mason 			}
4344179e29e4SChris Mason 		}
4345179e29e4SChris Mason 
4346179e29e4SChris Mason 		memmove_extent_buffer(leaf, btrfs_leaf_data(leaf) +
4347179e29e4SChris Mason 			      data_end + size_diff, btrfs_leaf_data(leaf) +
4348179e29e4SChris Mason 			      data_end, old_data_start - data_end);
4349179e29e4SChris Mason 
4350179e29e4SChris Mason 		offset = btrfs_disk_key_offset(&disk_key);
4351179e29e4SChris Mason 		btrfs_set_disk_key_offset(&disk_key, offset + size_diff);
4352179e29e4SChris Mason 		btrfs_set_item_key(leaf, &disk_key, slot);
4353179e29e4SChris Mason 		if (slot == 0)
4354d6a0a126STsutomu Itoh 			fixup_low_keys(root, path, &disk_key, 1);
4355179e29e4SChris Mason 	}
43565f39d397SChris Mason 
43575f39d397SChris Mason 	item = btrfs_item_nr(leaf, slot);
43585f39d397SChris Mason 	btrfs_set_item_size(leaf, item, new_size);
43595f39d397SChris Mason 	btrfs_mark_buffer_dirty(leaf);
4360b18c6685SChris Mason 
43615f39d397SChris Mason 	if (btrfs_leaf_free_space(root, leaf) < 0) {
43625f39d397SChris Mason 		btrfs_print_leaf(root, leaf);
4363b18c6685SChris Mason 		BUG();
43645f39d397SChris Mason 	}
4365b18c6685SChris Mason }
4366b18c6685SChris Mason 
4367d352ac68SChris Mason /*
43688f69dbd2SStefan Behrens  * make the item pointed to by the path bigger, data_size is the added size.
4369d352ac68SChris Mason  */
43704b90c680STsutomu Itoh void btrfs_extend_item(struct btrfs_root *root, struct btrfs_path *path,
43715f39d397SChris Mason 		       u32 data_size)
43726567e837SChris Mason {
43736567e837SChris Mason 	int slot;
43745f39d397SChris Mason 	struct extent_buffer *leaf;
43755f39d397SChris Mason 	struct btrfs_item *item;
43766567e837SChris Mason 	u32 nritems;
43776567e837SChris Mason 	unsigned int data_end;
43786567e837SChris Mason 	unsigned int old_data;
43796567e837SChris Mason 	unsigned int old_size;
43806567e837SChris Mason 	int i;
4381cfed81a0SChris Mason 	struct btrfs_map_token token;
4382cfed81a0SChris Mason 
4383cfed81a0SChris Mason 	btrfs_init_map_token(&token);
43846567e837SChris Mason 
43855f39d397SChris Mason 	leaf = path->nodes[0];
43866567e837SChris Mason 
43875f39d397SChris Mason 	nritems = btrfs_header_nritems(leaf);
43886567e837SChris Mason 	data_end = leaf_data_end(root, leaf);
43896567e837SChris Mason 
43905f39d397SChris Mason 	if (btrfs_leaf_free_space(root, leaf) < data_size) {
43915f39d397SChris Mason 		btrfs_print_leaf(root, leaf);
43926567e837SChris Mason 		BUG();
43935f39d397SChris Mason 	}
43946567e837SChris Mason 	slot = path->slots[0];
43955f39d397SChris Mason 	old_data = btrfs_item_end_nr(leaf, slot);
43966567e837SChris Mason 
43976567e837SChris Mason 	BUG_ON(slot < 0);
43983326d1b0SChris Mason 	if (slot >= nritems) {
43993326d1b0SChris Mason 		btrfs_print_leaf(root, leaf);
4400d397712bSChris Mason 		printk(KERN_CRIT "slot %d too large, nritems %d\n",
4401d397712bSChris Mason 		       slot, nritems);
44023326d1b0SChris Mason 		BUG_ON(1);
44033326d1b0SChris Mason 	}
44046567e837SChris Mason 
44056567e837SChris Mason 	/*
44066567e837SChris Mason 	 * item0..itemN ... dataN.offset..dataN.size .. data0.size
44076567e837SChris Mason 	 */
44086567e837SChris Mason 	/* first correct the data pointers */
44096567e837SChris Mason 	for (i = slot; i < nritems; i++) {
44105f39d397SChris Mason 		u32 ioff;
44115f39d397SChris Mason 		item = btrfs_item_nr(leaf, i);
4412db94535dSChris Mason 
4413cfed81a0SChris Mason 		ioff = btrfs_token_item_offset(leaf, item, &token);
4414cfed81a0SChris Mason 		btrfs_set_token_item_offset(leaf, item,
4415cfed81a0SChris Mason 					    ioff - data_size, &token);
44166567e837SChris Mason 	}
44175f39d397SChris Mason 
44186567e837SChris Mason 	/* shift the data */
44195f39d397SChris Mason 	memmove_extent_buffer(leaf, btrfs_leaf_data(leaf) +
44206567e837SChris Mason 		      data_end - data_size, btrfs_leaf_data(leaf) +
44216567e837SChris Mason 		      data_end, old_data - data_end);
44225f39d397SChris Mason 
44236567e837SChris Mason 	data_end = old_data;
44245f39d397SChris Mason 	old_size = btrfs_item_size_nr(leaf, slot);
44255f39d397SChris Mason 	item = btrfs_item_nr(leaf, slot);
44265f39d397SChris Mason 	btrfs_set_item_size(leaf, item, old_size + data_size);
44275f39d397SChris Mason 	btrfs_mark_buffer_dirty(leaf);
44286567e837SChris Mason 
44295f39d397SChris Mason 	if (btrfs_leaf_free_space(root, leaf) < 0) {
44305f39d397SChris Mason 		btrfs_print_leaf(root, leaf);
44316567e837SChris Mason 		BUG();
44325f39d397SChris Mason 	}
44336567e837SChris Mason }
44346567e837SChris Mason 
443574123bd7SChris Mason /*
443644871b1bSChris Mason  * this is a helper for btrfs_insert_empty_items, the main goal here is
443744871b1bSChris Mason  * to save stack depth by doing the bulk of the work in a function
443844871b1bSChris Mason  * that doesn't call btrfs_search_slot
443974123bd7SChris Mason  */
4440afe5fea7STsutomu Itoh void setup_items_for_insert(struct btrfs_root *root, struct btrfs_path *path,
44419c58309dSChris Mason 			    struct btrfs_key *cpu_key, u32 *data_size,
444244871b1bSChris Mason 			    u32 total_data, u32 total_size, int nr)
4443be0e5c09SChris Mason {
44445f39d397SChris Mason 	struct btrfs_item *item;
44459c58309dSChris Mason 	int i;
44467518a238SChris Mason 	u32 nritems;
4447be0e5c09SChris Mason 	unsigned int data_end;
4448e2fa7227SChris Mason 	struct btrfs_disk_key disk_key;
444944871b1bSChris Mason 	struct extent_buffer *leaf;
445044871b1bSChris Mason 	int slot;
4451cfed81a0SChris Mason 	struct btrfs_map_token token;
4452cfed81a0SChris Mason 
4453cfed81a0SChris Mason 	btrfs_init_map_token(&token);
4454e2fa7227SChris Mason 
44555f39d397SChris Mason 	leaf = path->nodes[0];
445644871b1bSChris Mason 	slot = path->slots[0];
445774123bd7SChris Mason 
44585f39d397SChris Mason 	nritems = btrfs_header_nritems(leaf);
4459123abc88SChris Mason 	data_end = leaf_data_end(root, leaf);
4460eb60ceacSChris Mason 
4461f25956ccSChris Mason 	if (btrfs_leaf_free_space(root, leaf) < total_size) {
44623326d1b0SChris Mason 		btrfs_print_leaf(root, leaf);
4463d397712bSChris Mason 		printk(KERN_CRIT "not enough freespace need %u have %d\n",
44649c58309dSChris Mason 		       total_size, btrfs_leaf_free_space(root, leaf));
4465be0e5c09SChris Mason 		BUG();
4466d4dbff95SChris Mason 	}
44675f39d397SChris Mason 
4468be0e5c09SChris Mason 	if (slot != nritems) {
44695f39d397SChris Mason 		unsigned int old_data = btrfs_item_end_nr(leaf, slot);
4470be0e5c09SChris Mason 
44715f39d397SChris Mason 		if (old_data < data_end) {
44725f39d397SChris Mason 			btrfs_print_leaf(root, leaf);
4473d397712bSChris Mason 			printk(KERN_CRIT "slot %d old_data %d data_end %d\n",
44745f39d397SChris Mason 			       slot, old_data, data_end);
44755f39d397SChris Mason 			BUG_ON(1);
44765f39d397SChris Mason 		}
4477be0e5c09SChris Mason 		/*
4478be0e5c09SChris Mason 		 * item0..itemN ... dataN.offset..dataN.size .. data0.size
4479be0e5c09SChris Mason 		 */
4480be0e5c09SChris Mason 		/* first correct the data pointers */
44810783fcfcSChris Mason 		for (i = slot; i < nritems; i++) {
44825f39d397SChris Mason 			u32 ioff;
4483db94535dSChris Mason 
44845f39d397SChris Mason 			item = btrfs_item_nr(leaf, i);
4485cfed81a0SChris Mason 			ioff = btrfs_token_item_offset(leaf, item, &token);
4486cfed81a0SChris Mason 			btrfs_set_token_item_offset(leaf, item,
4487cfed81a0SChris Mason 						    ioff - total_data, &token);
44880783fcfcSChris Mason 		}
4489be0e5c09SChris Mason 		/* shift the items */
44909c58309dSChris Mason 		memmove_extent_buffer(leaf, btrfs_item_nr_offset(slot + nr),
44915f39d397SChris Mason 			      btrfs_item_nr_offset(slot),
44920783fcfcSChris Mason 			      (nritems - slot) * sizeof(struct btrfs_item));
4493be0e5c09SChris Mason 
4494be0e5c09SChris Mason 		/* shift the data */
44955f39d397SChris Mason 		memmove_extent_buffer(leaf, btrfs_leaf_data(leaf) +
44969c58309dSChris Mason 			      data_end - total_data, btrfs_leaf_data(leaf) +
4497be0e5c09SChris Mason 			      data_end, old_data - data_end);
4498be0e5c09SChris Mason 		data_end = old_data;
4499be0e5c09SChris Mason 	}
45005f39d397SChris Mason 
450162e2749eSChris Mason 	/* setup the item for the new data */
45029c58309dSChris Mason 	for (i = 0; i < nr; i++) {
45039c58309dSChris Mason 		btrfs_cpu_key_to_disk(&disk_key, cpu_key + i);
45049c58309dSChris Mason 		btrfs_set_item_key(leaf, &disk_key, slot + i);
45059c58309dSChris Mason 		item = btrfs_item_nr(leaf, slot + i);
4506cfed81a0SChris Mason 		btrfs_set_token_item_offset(leaf, item,
4507cfed81a0SChris Mason 					    data_end - data_size[i], &token);
45089c58309dSChris Mason 		data_end -= data_size[i];
4509cfed81a0SChris Mason 		btrfs_set_token_item_size(leaf, item, data_size[i], &token);
45109c58309dSChris Mason 	}
451144871b1bSChris Mason 
45129c58309dSChris Mason 	btrfs_set_header_nritems(leaf, nritems + nr);
4513aa5d6bedSChris Mason 
45145a01a2e3SChris Mason 	if (slot == 0) {
45155a01a2e3SChris Mason 		btrfs_cpu_key_to_disk(&disk_key, cpu_key);
4516d6a0a126STsutomu Itoh 		fixup_low_keys(root, path, &disk_key, 1);
45175a01a2e3SChris Mason 	}
4518b9473439SChris Mason 	btrfs_unlock_up_safe(path, 1);
4519b9473439SChris Mason 	btrfs_mark_buffer_dirty(leaf);
4520aa5d6bedSChris Mason 
45215f39d397SChris Mason 	if (btrfs_leaf_free_space(root, leaf) < 0) {
45225f39d397SChris Mason 		btrfs_print_leaf(root, leaf);
4523be0e5c09SChris Mason 		BUG();
45245f39d397SChris Mason 	}
452544871b1bSChris Mason }
452644871b1bSChris Mason 
452744871b1bSChris Mason /*
452844871b1bSChris Mason  * Given a key and some data, insert items into the tree.
452944871b1bSChris Mason  * This does all the path init required, making room in the tree if needed.
453044871b1bSChris Mason  */
453144871b1bSChris Mason int btrfs_insert_empty_items(struct btrfs_trans_handle *trans,
453244871b1bSChris Mason 			    struct btrfs_root *root,
453344871b1bSChris Mason 			    struct btrfs_path *path,
453444871b1bSChris Mason 			    struct btrfs_key *cpu_key, u32 *data_size,
453544871b1bSChris Mason 			    int nr)
453644871b1bSChris Mason {
453744871b1bSChris Mason 	int ret = 0;
453844871b1bSChris Mason 	int slot;
453944871b1bSChris Mason 	int i;
454044871b1bSChris Mason 	u32 total_size = 0;
454144871b1bSChris Mason 	u32 total_data = 0;
454244871b1bSChris Mason 
454344871b1bSChris Mason 	for (i = 0; i < nr; i++)
454444871b1bSChris Mason 		total_data += data_size[i];
454544871b1bSChris Mason 
454644871b1bSChris Mason 	total_size = total_data + (nr * sizeof(struct btrfs_item));
454744871b1bSChris Mason 	ret = btrfs_search_slot(trans, root, cpu_key, path, total_size, 1);
454844871b1bSChris Mason 	if (ret == 0)
454944871b1bSChris Mason 		return -EEXIST;
455044871b1bSChris Mason 	if (ret < 0)
4551143bede5SJeff Mahoney 		return ret;
455244871b1bSChris Mason 
455344871b1bSChris Mason 	slot = path->slots[0];
455444871b1bSChris Mason 	BUG_ON(slot < 0);
455544871b1bSChris Mason 
4556afe5fea7STsutomu Itoh 	setup_items_for_insert(root, path, cpu_key, data_size,
455744871b1bSChris Mason 			       total_data, total_size, nr);
4558143bede5SJeff Mahoney 	return 0;
455962e2749eSChris Mason }
456062e2749eSChris Mason 
456162e2749eSChris Mason /*
456262e2749eSChris Mason  * Given a key and some data, insert an item into the tree.
456362e2749eSChris Mason  * This does all the path init required, making room in the tree if needed.
456462e2749eSChris Mason  */
4565e089f05cSChris Mason int btrfs_insert_item(struct btrfs_trans_handle *trans, struct btrfs_root
4566e089f05cSChris Mason 		      *root, struct btrfs_key *cpu_key, void *data, u32
4567e089f05cSChris Mason 		      data_size)
456862e2749eSChris Mason {
456962e2749eSChris Mason 	int ret = 0;
45702c90e5d6SChris Mason 	struct btrfs_path *path;
45715f39d397SChris Mason 	struct extent_buffer *leaf;
45725f39d397SChris Mason 	unsigned long ptr;
457362e2749eSChris Mason 
45742c90e5d6SChris Mason 	path = btrfs_alloc_path();
4575db5b493aSTsutomu Itoh 	if (!path)
4576db5b493aSTsutomu Itoh 		return -ENOMEM;
45772c90e5d6SChris Mason 	ret = btrfs_insert_empty_item(trans, root, path, cpu_key, data_size);
457862e2749eSChris Mason 	if (!ret) {
45795f39d397SChris Mason 		leaf = path->nodes[0];
45805f39d397SChris Mason 		ptr = btrfs_item_ptr_offset(leaf, path->slots[0]);
45815f39d397SChris Mason 		write_extent_buffer(leaf, data, ptr, data_size);
45825f39d397SChris Mason 		btrfs_mark_buffer_dirty(leaf);
458362e2749eSChris Mason 	}
45842c90e5d6SChris Mason 	btrfs_free_path(path);
4585aa5d6bedSChris Mason 	return ret;
4586be0e5c09SChris Mason }
4587be0e5c09SChris Mason 
458874123bd7SChris Mason /*
45895de08d7dSChris Mason  * delete the pointer from a given node.
459074123bd7SChris Mason  *
4591d352ac68SChris Mason  * the tree should have been previously balanced so the deletion does not
4592d352ac68SChris Mason  * empty a node.
459374123bd7SChris Mason  */
4594afe5fea7STsutomu Itoh static void del_ptr(struct btrfs_root *root, struct btrfs_path *path,
4595afe5fea7STsutomu Itoh 		    int level, int slot)
4596be0e5c09SChris Mason {
45975f39d397SChris Mason 	struct extent_buffer *parent = path->nodes[level];
45987518a238SChris Mason 	u32 nritems;
4599f3ea38daSJan Schmidt 	int ret;
4600be0e5c09SChris Mason 
46015f39d397SChris Mason 	nritems = btrfs_header_nritems(parent);
4602be0e5c09SChris Mason 	if (slot != nritems - 1) {
46030e411eceSLiu Bo 		if (level)
4604f3ea38daSJan Schmidt 			tree_mod_log_eb_move(root->fs_info, parent, slot,
4605f3ea38daSJan Schmidt 					     slot + 1, nritems - slot - 1);
46065f39d397SChris Mason 		memmove_extent_buffer(parent,
46075f39d397SChris Mason 			      btrfs_node_key_ptr_offset(slot),
46085f39d397SChris Mason 			      btrfs_node_key_ptr_offset(slot + 1),
4609d6025579SChris Mason 			      sizeof(struct btrfs_key_ptr) *
4610d6025579SChris Mason 			      (nritems - slot - 1));
461157ba86c0SChris Mason 	} else if (level) {
461257ba86c0SChris Mason 		ret = tree_mod_log_insert_key(root->fs_info, parent, slot,
4613c8cc6341SJosef Bacik 					      MOD_LOG_KEY_REMOVE, GFP_NOFS);
461457ba86c0SChris Mason 		BUG_ON(ret < 0);
4615be0e5c09SChris Mason 	}
4616f3ea38daSJan Schmidt 
46177518a238SChris Mason 	nritems--;
46185f39d397SChris Mason 	btrfs_set_header_nritems(parent, nritems);
46197518a238SChris Mason 	if (nritems == 0 && parent == root->node) {
46205f39d397SChris Mason 		BUG_ON(btrfs_header_level(root->node) != 1);
4621eb60ceacSChris Mason 		/* just turn the root into a leaf and break */
46225f39d397SChris Mason 		btrfs_set_header_level(root->node, 0);
4623bb803951SChris Mason 	} else if (slot == 0) {
46245f39d397SChris Mason 		struct btrfs_disk_key disk_key;
46255f39d397SChris Mason 
46265f39d397SChris Mason 		btrfs_node_key(parent, &disk_key, 0);
4627d6a0a126STsutomu Itoh 		fixup_low_keys(root, path, &disk_key, level + 1);
4628be0e5c09SChris Mason 	}
4629d6025579SChris Mason 	btrfs_mark_buffer_dirty(parent);
4630be0e5c09SChris Mason }
4631be0e5c09SChris Mason 
463274123bd7SChris Mason /*
4633323ac95bSChris Mason  * a helper function to delete the leaf pointed to by path->slots[1] and
46345d4f98a2SYan Zheng  * path->nodes[1].
4635323ac95bSChris Mason  *
4636323ac95bSChris Mason  * This deletes the pointer in path->nodes[1] and frees the leaf
4637323ac95bSChris Mason  * block extent.  zero is returned if it all worked out, < 0 otherwise.
4638323ac95bSChris Mason  *
4639323ac95bSChris Mason  * The path must have already been setup for deleting the leaf, including
4640323ac95bSChris Mason  * all the proper balancing.  path->nodes[1] must be locked.
4641323ac95bSChris Mason  */
4642143bede5SJeff Mahoney static noinline void btrfs_del_leaf(struct btrfs_trans_handle *trans,
4643323ac95bSChris Mason 				    struct btrfs_root *root,
46445d4f98a2SYan Zheng 				    struct btrfs_path *path,
46455d4f98a2SYan Zheng 				    struct extent_buffer *leaf)
4646323ac95bSChris Mason {
46475d4f98a2SYan Zheng 	WARN_ON(btrfs_header_generation(leaf) != trans->transid);
4648afe5fea7STsutomu Itoh 	del_ptr(root, path, 1, path->slots[1]);
4649323ac95bSChris Mason 
46504d081c41SChris Mason 	/*
46514d081c41SChris Mason 	 * btrfs_free_extent is expensive, we want to make sure we
46524d081c41SChris Mason 	 * aren't holding any locks when we call it
46534d081c41SChris Mason 	 */
46544d081c41SChris Mason 	btrfs_unlock_up_safe(path, 0);
46554d081c41SChris Mason 
4656f0486c68SYan, Zheng 	root_sub_used(root, leaf->len);
4657f0486c68SYan, Zheng 
46583083ee2eSJosef Bacik 	extent_buffer_get(leaf);
46595581a51aSJan Schmidt 	btrfs_free_tree_block(trans, root, leaf, 0, 1);
46603083ee2eSJosef Bacik 	free_extent_buffer_stale(leaf);
4661323ac95bSChris Mason }
4662323ac95bSChris Mason /*
466374123bd7SChris Mason  * delete the item at the leaf level in path.  If that empties
466474123bd7SChris Mason  * the leaf, remove it from the tree
466574123bd7SChris Mason  */
466685e21bacSChris Mason int btrfs_del_items(struct btrfs_trans_handle *trans, struct btrfs_root *root,
466785e21bacSChris Mason 		    struct btrfs_path *path, int slot, int nr)
4668be0e5c09SChris Mason {
46695f39d397SChris Mason 	struct extent_buffer *leaf;
46705f39d397SChris Mason 	struct btrfs_item *item;
467185e21bacSChris Mason 	int last_off;
467285e21bacSChris Mason 	int dsize = 0;
4673aa5d6bedSChris Mason 	int ret = 0;
4674aa5d6bedSChris Mason 	int wret;
467585e21bacSChris Mason 	int i;
46767518a238SChris Mason 	u32 nritems;
4677cfed81a0SChris Mason 	struct btrfs_map_token token;
4678cfed81a0SChris Mason 
4679cfed81a0SChris Mason 	btrfs_init_map_token(&token);
4680be0e5c09SChris Mason 
46815f39d397SChris Mason 	leaf = path->nodes[0];
468285e21bacSChris Mason 	last_off = btrfs_item_offset_nr(leaf, slot + nr - 1);
468385e21bacSChris Mason 
468485e21bacSChris Mason 	for (i = 0; i < nr; i++)
468585e21bacSChris Mason 		dsize += btrfs_item_size_nr(leaf, slot + i);
468685e21bacSChris Mason 
46875f39d397SChris Mason 	nritems = btrfs_header_nritems(leaf);
4688be0e5c09SChris Mason 
468985e21bacSChris Mason 	if (slot + nr != nritems) {
4690123abc88SChris Mason 		int data_end = leaf_data_end(root, leaf);
46915f39d397SChris Mason 
46925f39d397SChris Mason 		memmove_extent_buffer(leaf, btrfs_leaf_data(leaf) +
4693d6025579SChris Mason 			      data_end + dsize,
4694123abc88SChris Mason 			      btrfs_leaf_data(leaf) + data_end,
469585e21bacSChris Mason 			      last_off - data_end);
46965f39d397SChris Mason 
469785e21bacSChris Mason 		for (i = slot + nr; i < nritems; i++) {
46985f39d397SChris Mason 			u32 ioff;
4699db94535dSChris Mason 
47005f39d397SChris Mason 			item = btrfs_item_nr(leaf, i);
4701cfed81a0SChris Mason 			ioff = btrfs_token_item_offset(leaf, item, &token);
4702cfed81a0SChris Mason 			btrfs_set_token_item_offset(leaf, item,
4703cfed81a0SChris Mason 						    ioff + dsize, &token);
47040783fcfcSChris Mason 		}
4705db94535dSChris Mason 
47065f39d397SChris Mason 		memmove_extent_buffer(leaf, btrfs_item_nr_offset(slot),
470785e21bacSChris Mason 			      btrfs_item_nr_offset(slot + nr),
47080783fcfcSChris Mason 			      sizeof(struct btrfs_item) *
470985e21bacSChris Mason 			      (nritems - slot - nr));
4710be0e5c09SChris Mason 	}
471185e21bacSChris Mason 	btrfs_set_header_nritems(leaf, nritems - nr);
471285e21bacSChris Mason 	nritems -= nr;
47135f39d397SChris Mason 
471474123bd7SChris Mason 	/* delete the leaf if we've emptied it */
47157518a238SChris Mason 	if (nritems == 0) {
47165f39d397SChris Mason 		if (leaf == root->node) {
47175f39d397SChris Mason 			btrfs_set_header_level(leaf, 0);
47189a8dd150SChris Mason 		} else {
4719f0486c68SYan, Zheng 			btrfs_set_path_blocking(path);
4720f0486c68SYan, Zheng 			clean_tree_block(trans, root, leaf);
4721143bede5SJeff Mahoney 			btrfs_del_leaf(trans, root, path, leaf);
47229a8dd150SChris Mason 		}
4723be0e5c09SChris Mason 	} else {
47247518a238SChris Mason 		int used = leaf_space_used(leaf, 0, nritems);
4725aa5d6bedSChris Mason 		if (slot == 0) {
47265f39d397SChris Mason 			struct btrfs_disk_key disk_key;
47275f39d397SChris Mason 
47285f39d397SChris Mason 			btrfs_item_key(leaf, &disk_key, 0);
4729d6a0a126STsutomu Itoh 			fixup_low_keys(root, path, &disk_key, 1);
4730aa5d6bedSChris Mason 		}
4731aa5d6bedSChris Mason 
473274123bd7SChris Mason 		/* delete the leaf if it is mostly empty */
4733d717aa1dSYan Zheng 		if (used < BTRFS_LEAF_DATA_SIZE(root) / 3) {
4734be0e5c09SChris Mason 			/* push_leaf_left fixes the path.
4735be0e5c09SChris Mason 			 * make sure the path still points to our leaf
4736be0e5c09SChris Mason 			 * for possible call to del_ptr below
4737be0e5c09SChris Mason 			 */
47384920c9acSChris Mason 			slot = path->slots[1];
47395f39d397SChris Mason 			extent_buffer_get(leaf);
47405f39d397SChris Mason 
4741b9473439SChris Mason 			btrfs_set_path_blocking(path);
474299d8f83cSChris Mason 			wret = push_leaf_left(trans, root, path, 1, 1,
474399d8f83cSChris Mason 					      1, (u32)-1);
474454aa1f4dSChris Mason 			if (wret < 0 && wret != -ENOSPC)
4745aa5d6bedSChris Mason 				ret = wret;
47465f39d397SChris Mason 
47475f39d397SChris Mason 			if (path->nodes[0] == leaf &&
47485f39d397SChris Mason 			    btrfs_header_nritems(leaf)) {
474999d8f83cSChris Mason 				wret = push_leaf_right(trans, root, path, 1,
475099d8f83cSChris Mason 						       1, 1, 0);
475154aa1f4dSChris Mason 				if (wret < 0 && wret != -ENOSPC)
4752aa5d6bedSChris Mason 					ret = wret;
4753aa5d6bedSChris Mason 			}
47545f39d397SChris Mason 
47555f39d397SChris Mason 			if (btrfs_header_nritems(leaf) == 0) {
4756323ac95bSChris Mason 				path->slots[1] = slot;
4757143bede5SJeff Mahoney 				btrfs_del_leaf(trans, root, path, leaf);
47585f39d397SChris Mason 				free_extent_buffer(leaf);
4759143bede5SJeff Mahoney 				ret = 0;
47605de08d7dSChris Mason 			} else {
4761925baeddSChris Mason 				/* if we're still in the path, make sure
4762925baeddSChris Mason 				 * we're dirty.  Otherwise, one of the
4763925baeddSChris Mason 				 * push_leaf functions must have already
4764925baeddSChris Mason 				 * dirtied this buffer
4765925baeddSChris Mason 				 */
4766925baeddSChris Mason 				if (path->nodes[0] == leaf)
47675f39d397SChris Mason 					btrfs_mark_buffer_dirty(leaf);
47685f39d397SChris Mason 				free_extent_buffer(leaf);
4769be0e5c09SChris Mason 			}
4770d5719762SChris Mason 		} else {
47715f39d397SChris Mason 			btrfs_mark_buffer_dirty(leaf);
4772be0e5c09SChris Mason 		}
47739a8dd150SChris Mason 	}
4774aa5d6bedSChris Mason 	return ret;
47759a8dd150SChris Mason }
47769a8dd150SChris Mason 
477797571fd0SChris Mason /*
4778925baeddSChris Mason  * search the tree again to find a leaf with lesser keys
47797bb86316SChris Mason  * returns 0 if it found something or 1 if there are no lesser leaves.
47807bb86316SChris Mason  * returns < 0 on io errors.
4781d352ac68SChris Mason  *
4782d352ac68SChris Mason  * This may release the path, and so you may lose any locks held at the
4783d352ac68SChris Mason  * time you call it.
47847bb86316SChris Mason  */
4785*35a3621bSStefan Behrens static int btrfs_prev_leaf(struct btrfs_root *root, struct btrfs_path *path)
47867bb86316SChris Mason {
4787925baeddSChris Mason 	struct btrfs_key key;
4788925baeddSChris Mason 	struct btrfs_disk_key found_key;
4789925baeddSChris Mason 	int ret;
47907bb86316SChris Mason 
4791925baeddSChris Mason 	btrfs_item_key_to_cpu(path->nodes[0], &key, 0);
4792925baeddSChris Mason 
4793925baeddSChris Mason 	if (key.offset > 0)
4794925baeddSChris Mason 		key.offset--;
4795925baeddSChris Mason 	else if (key.type > 0)
4796925baeddSChris Mason 		key.type--;
4797925baeddSChris Mason 	else if (key.objectid > 0)
4798925baeddSChris Mason 		key.objectid--;
4799925baeddSChris Mason 	else
48007bb86316SChris Mason 		return 1;
48017bb86316SChris Mason 
4802b3b4aa74SDavid Sterba 	btrfs_release_path(path);
4803925baeddSChris Mason 	ret = btrfs_search_slot(NULL, root, &key, path, 0, 0);
4804925baeddSChris Mason 	if (ret < 0)
4805925baeddSChris Mason 		return ret;
4806925baeddSChris Mason 	btrfs_item_key(path->nodes[0], &found_key, 0);
4807925baeddSChris Mason 	ret = comp_keys(&found_key, &key);
4808925baeddSChris Mason 	if (ret < 0)
48097bb86316SChris Mason 		return 0;
4810925baeddSChris Mason 	return 1;
48117bb86316SChris Mason }
48127bb86316SChris Mason 
48133f157a2fSChris Mason /*
48143f157a2fSChris Mason  * A helper function to walk down the tree starting at min_key, and looking
4815de78b51aSEric Sandeen  * for nodes or leaves that are have a minimum transaction id.
4816de78b51aSEric Sandeen  * This is used by the btree defrag code, and tree logging
48173f157a2fSChris Mason  *
48183f157a2fSChris Mason  * This does not cow, but it does stuff the starting key it finds back
48193f157a2fSChris Mason  * into min_key, so you can call btrfs_search_slot with cow=1 on the
48203f157a2fSChris Mason  * key and get a writable path.
48213f157a2fSChris Mason  *
48223f157a2fSChris Mason  * This does lock as it descends, and path->keep_locks should be set
48233f157a2fSChris Mason  * to 1 by the caller.
48243f157a2fSChris Mason  *
48253f157a2fSChris Mason  * This honors path->lowest_level to prevent descent past a given level
48263f157a2fSChris Mason  * of the tree.
48273f157a2fSChris Mason  *
4828d352ac68SChris Mason  * min_trans indicates the oldest transaction that you are interested
4829d352ac68SChris Mason  * in walking through.  Any nodes or leaves older than min_trans are
4830d352ac68SChris Mason  * skipped over (without reading them).
4831d352ac68SChris Mason  *
48323f157a2fSChris Mason  * returns zero if something useful was found, < 0 on error and 1 if there
48333f157a2fSChris Mason  * was nothing in the tree that matched the search criteria.
48343f157a2fSChris Mason  */
48353f157a2fSChris Mason int btrfs_search_forward(struct btrfs_root *root, struct btrfs_key *min_key,
4836e02119d5SChris Mason 			 struct btrfs_key *max_key,
4837de78b51aSEric Sandeen 			 struct btrfs_path *path,
48383f157a2fSChris Mason 			 u64 min_trans)
48393f157a2fSChris Mason {
48403f157a2fSChris Mason 	struct extent_buffer *cur;
48413f157a2fSChris Mason 	struct btrfs_key found_key;
48423f157a2fSChris Mason 	int slot;
48439652480bSYan 	int sret;
48443f157a2fSChris Mason 	u32 nritems;
48453f157a2fSChris Mason 	int level;
48463f157a2fSChris Mason 	int ret = 1;
48473f157a2fSChris Mason 
4848934d375bSChris Mason 	WARN_ON(!path->keep_locks);
48493f157a2fSChris Mason again:
4850bd681513SChris Mason 	cur = btrfs_read_lock_root_node(root);
48513f157a2fSChris Mason 	level = btrfs_header_level(cur);
4852e02119d5SChris Mason 	WARN_ON(path->nodes[level]);
48533f157a2fSChris Mason 	path->nodes[level] = cur;
4854bd681513SChris Mason 	path->locks[level] = BTRFS_READ_LOCK;
48553f157a2fSChris Mason 
48563f157a2fSChris Mason 	if (btrfs_header_generation(cur) < min_trans) {
48573f157a2fSChris Mason 		ret = 1;
48583f157a2fSChris Mason 		goto out;
48593f157a2fSChris Mason 	}
48603f157a2fSChris Mason 	while (1) {
48613f157a2fSChris Mason 		nritems = btrfs_header_nritems(cur);
48623f157a2fSChris Mason 		level = btrfs_header_level(cur);
48639652480bSYan 		sret = bin_search(cur, min_key, level, &slot);
48643f157a2fSChris Mason 
4865323ac95bSChris Mason 		/* at the lowest level, we're done, setup the path and exit */
4866323ac95bSChris Mason 		if (level == path->lowest_level) {
4867e02119d5SChris Mason 			if (slot >= nritems)
4868e02119d5SChris Mason 				goto find_next_key;
48693f157a2fSChris Mason 			ret = 0;
48703f157a2fSChris Mason 			path->slots[level] = slot;
48713f157a2fSChris Mason 			btrfs_item_key_to_cpu(cur, &found_key, slot);
48723f157a2fSChris Mason 			goto out;
48733f157a2fSChris Mason 		}
48749652480bSYan 		if (sret && slot > 0)
48759652480bSYan 			slot--;
48763f157a2fSChris Mason 		/*
4877de78b51aSEric Sandeen 		 * check this node pointer against the min_trans parameters.
4878de78b51aSEric Sandeen 		 * If it is too old, old, skip to the next one.
48793f157a2fSChris Mason 		 */
48803f157a2fSChris Mason 		while (slot < nritems) {
48813f157a2fSChris Mason 			u64 blockptr;
48823f157a2fSChris Mason 			u64 gen;
4883e02119d5SChris Mason 
48843f157a2fSChris Mason 			blockptr = btrfs_node_blockptr(cur, slot);
48853f157a2fSChris Mason 			gen = btrfs_node_ptr_generation(cur, slot);
48863f157a2fSChris Mason 			if (gen < min_trans) {
48873f157a2fSChris Mason 				slot++;
48883f157a2fSChris Mason 				continue;
48893f157a2fSChris Mason 			}
48903f157a2fSChris Mason 			break;
48913f157a2fSChris Mason 		}
4892e02119d5SChris Mason find_next_key:
48933f157a2fSChris Mason 		/*
48943f157a2fSChris Mason 		 * we didn't find a candidate key in this node, walk forward
48953f157a2fSChris Mason 		 * and find another one
48963f157a2fSChris Mason 		 */
48973f157a2fSChris Mason 		if (slot >= nritems) {
4898e02119d5SChris Mason 			path->slots[level] = slot;
4899b4ce94deSChris Mason 			btrfs_set_path_blocking(path);
4900e02119d5SChris Mason 			sret = btrfs_find_next_key(root, path, min_key, level,
4901de78b51aSEric Sandeen 						  min_trans);
4902e02119d5SChris Mason 			if (sret == 0) {
4903b3b4aa74SDavid Sterba 				btrfs_release_path(path);
49043f157a2fSChris Mason 				goto again;
49053f157a2fSChris Mason 			} else {
49063f157a2fSChris Mason 				goto out;
49073f157a2fSChris Mason 			}
49083f157a2fSChris Mason 		}
49093f157a2fSChris Mason 		/* save our key for returning back */
49103f157a2fSChris Mason 		btrfs_node_key_to_cpu(cur, &found_key, slot);
49113f157a2fSChris Mason 		path->slots[level] = slot;
49123f157a2fSChris Mason 		if (level == path->lowest_level) {
49133f157a2fSChris Mason 			ret = 0;
4914f7c79f30SChris Mason 			unlock_up(path, level, 1, 0, NULL);
49153f157a2fSChris Mason 			goto out;
49163f157a2fSChris Mason 		}
4917b4ce94deSChris Mason 		btrfs_set_path_blocking(path);
49183f157a2fSChris Mason 		cur = read_node_slot(root, cur, slot);
491979787eaaSJeff Mahoney 		BUG_ON(!cur); /* -ENOMEM */
49203f157a2fSChris Mason 
4921bd681513SChris Mason 		btrfs_tree_read_lock(cur);
4922b4ce94deSChris Mason 
4923bd681513SChris Mason 		path->locks[level - 1] = BTRFS_READ_LOCK;
49243f157a2fSChris Mason 		path->nodes[level - 1] = cur;
4925f7c79f30SChris Mason 		unlock_up(path, level, 1, 0, NULL);
4926bd681513SChris Mason 		btrfs_clear_path_blocking(path, NULL, 0);
49273f157a2fSChris Mason 	}
49283f157a2fSChris Mason out:
49293f157a2fSChris Mason 	if (ret == 0)
49303f157a2fSChris Mason 		memcpy(min_key, &found_key, sizeof(found_key));
4931b4ce94deSChris Mason 	btrfs_set_path_blocking(path);
49323f157a2fSChris Mason 	return ret;
49333f157a2fSChris Mason }
49343f157a2fSChris Mason 
49357069830aSAlexander Block static void tree_move_down(struct btrfs_root *root,
49367069830aSAlexander Block 			   struct btrfs_path *path,
49377069830aSAlexander Block 			   int *level, int root_level)
49387069830aSAlexander Block {
493974dd17fbSChris Mason 	BUG_ON(*level == 0);
49407069830aSAlexander Block 	path->nodes[*level - 1] = read_node_slot(root, path->nodes[*level],
49417069830aSAlexander Block 					path->slots[*level]);
49427069830aSAlexander Block 	path->slots[*level - 1] = 0;
49437069830aSAlexander Block 	(*level)--;
49447069830aSAlexander Block }
49457069830aSAlexander Block 
49467069830aSAlexander Block static int tree_move_next_or_upnext(struct btrfs_root *root,
49477069830aSAlexander Block 				    struct btrfs_path *path,
49487069830aSAlexander Block 				    int *level, int root_level)
49497069830aSAlexander Block {
49507069830aSAlexander Block 	int ret = 0;
49517069830aSAlexander Block 	int nritems;
49527069830aSAlexander Block 	nritems = btrfs_header_nritems(path->nodes[*level]);
49537069830aSAlexander Block 
49547069830aSAlexander Block 	path->slots[*level]++;
49557069830aSAlexander Block 
495674dd17fbSChris Mason 	while (path->slots[*level] >= nritems) {
49577069830aSAlexander Block 		if (*level == root_level)
49587069830aSAlexander Block 			return -1;
49597069830aSAlexander Block 
49607069830aSAlexander Block 		/* move upnext */
49617069830aSAlexander Block 		path->slots[*level] = 0;
49627069830aSAlexander Block 		free_extent_buffer(path->nodes[*level]);
49637069830aSAlexander Block 		path->nodes[*level] = NULL;
49647069830aSAlexander Block 		(*level)++;
49657069830aSAlexander Block 		path->slots[*level]++;
49667069830aSAlexander Block 
49677069830aSAlexander Block 		nritems = btrfs_header_nritems(path->nodes[*level]);
49687069830aSAlexander Block 		ret = 1;
49697069830aSAlexander Block 	}
49707069830aSAlexander Block 	return ret;
49717069830aSAlexander Block }
49727069830aSAlexander Block 
49737069830aSAlexander Block /*
49747069830aSAlexander Block  * Returns 1 if it had to move up and next. 0 is returned if it moved only next
49757069830aSAlexander Block  * or down.
49767069830aSAlexander Block  */
49777069830aSAlexander Block static int tree_advance(struct btrfs_root *root,
49787069830aSAlexander Block 			struct btrfs_path *path,
49797069830aSAlexander Block 			int *level, int root_level,
49807069830aSAlexander Block 			int allow_down,
49817069830aSAlexander Block 			struct btrfs_key *key)
49827069830aSAlexander Block {
49837069830aSAlexander Block 	int ret;
49847069830aSAlexander Block 
49857069830aSAlexander Block 	if (*level == 0 || !allow_down) {
49867069830aSAlexander Block 		ret = tree_move_next_or_upnext(root, path, level, root_level);
49877069830aSAlexander Block 	} else {
49887069830aSAlexander Block 		tree_move_down(root, path, level, root_level);
49897069830aSAlexander Block 		ret = 0;
49907069830aSAlexander Block 	}
49917069830aSAlexander Block 	if (ret >= 0) {
49927069830aSAlexander Block 		if (*level == 0)
49937069830aSAlexander Block 			btrfs_item_key_to_cpu(path->nodes[*level], key,
49947069830aSAlexander Block 					path->slots[*level]);
49957069830aSAlexander Block 		else
49967069830aSAlexander Block 			btrfs_node_key_to_cpu(path->nodes[*level], key,
49977069830aSAlexander Block 					path->slots[*level]);
49987069830aSAlexander Block 	}
49997069830aSAlexander Block 	return ret;
50007069830aSAlexander Block }
50017069830aSAlexander Block 
50027069830aSAlexander Block static int tree_compare_item(struct btrfs_root *left_root,
50037069830aSAlexander Block 			     struct btrfs_path *left_path,
50047069830aSAlexander Block 			     struct btrfs_path *right_path,
50057069830aSAlexander Block 			     char *tmp_buf)
50067069830aSAlexander Block {
50077069830aSAlexander Block 	int cmp;
50087069830aSAlexander Block 	int len1, len2;
50097069830aSAlexander Block 	unsigned long off1, off2;
50107069830aSAlexander Block 
50117069830aSAlexander Block 	len1 = btrfs_item_size_nr(left_path->nodes[0], left_path->slots[0]);
50127069830aSAlexander Block 	len2 = btrfs_item_size_nr(right_path->nodes[0], right_path->slots[0]);
50137069830aSAlexander Block 	if (len1 != len2)
50147069830aSAlexander Block 		return 1;
50157069830aSAlexander Block 
50167069830aSAlexander Block 	off1 = btrfs_item_ptr_offset(left_path->nodes[0], left_path->slots[0]);
50177069830aSAlexander Block 	off2 = btrfs_item_ptr_offset(right_path->nodes[0],
50187069830aSAlexander Block 				right_path->slots[0]);
50197069830aSAlexander Block 
50207069830aSAlexander Block 	read_extent_buffer(left_path->nodes[0], tmp_buf, off1, len1);
50217069830aSAlexander Block 
50227069830aSAlexander Block 	cmp = memcmp_extent_buffer(right_path->nodes[0], tmp_buf, off2, len1);
50237069830aSAlexander Block 	if (cmp)
50247069830aSAlexander Block 		return 1;
50257069830aSAlexander Block 	return 0;
50267069830aSAlexander Block }
50277069830aSAlexander Block 
50287069830aSAlexander Block #define ADVANCE 1
50297069830aSAlexander Block #define ADVANCE_ONLY_NEXT -1
50307069830aSAlexander Block 
50317069830aSAlexander Block /*
50327069830aSAlexander Block  * This function compares two trees and calls the provided callback for
50337069830aSAlexander Block  * every changed/new/deleted item it finds.
50347069830aSAlexander Block  * If shared tree blocks are encountered, whole subtrees are skipped, making
50357069830aSAlexander Block  * the compare pretty fast on snapshotted subvolumes.
50367069830aSAlexander Block  *
50377069830aSAlexander Block  * This currently works on commit roots only. As commit roots are read only,
50387069830aSAlexander Block  * we don't do any locking. The commit roots are protected with transactions.
50397069830aSAlexander Block  * Transactions are ended and rejoined when a commit is tried in between.
50407069830aSAlexander Block  *
50417069830aSAlexander Block  * This function checks for modifications done to the trees while comparing.
50427069830aSAlexander Block  * If it detects a change, it aborts immediately.
50437069830aSAlexander Block  */
50447069830aSAlexander Block int btrfs_compare_trees(struct btrfs_root *left_root,
50457069830aSAlexander Block 			struct btrfs_root *right_root,
50467069830aSAlexander Block 			btrfs_changed_cb_t changed_cb, void *ctx)
50477069830aSAlexander Block {
50487069830aSAlexander Block 	int ret;
50497069830aSAlexander Block 	int cmp;
50507069830aSAlexander Block 	struct btrfs_trans_handle *trans = NULL;
50517069830aSAlexander Block 	struct btrfs_path *left_path = NULL;
50527069830aSAlexander Block 	struct btrfs_path *right_path = NULL;
50537069830aSAlexander Block 	struct btrfs_key left_key;
50547069830aSAlexander Block 	struct btrfs_key right_key;
50557069830aSAlexander Block 	char *tmp_buf = NULL;
50567069830aSAlexander Block 	int left_root_level;
50577069830aSAlexander Block 	int right_root_level;
50587069830aSAlexander Block 	int left_level;
50597069830aSAlexander Block 	int right_level;
50607069830aSAlexander Block 	int left_end_reached;
50617069830aSAlexander Block 	int right_end_reached;
50627069830aSAlexander Block 	int advance_left;
50637069830aSAlexander Block 	int advance_right;
50647069830aSAlexander Block 	u64 left_blockptr;
50657069830aSAlexander Block 	u64 right_blockptr;
50667069830aSAlexander Block 	u64 left_start_ctransid;
50677069830aSAlexander Block 	u64 right_start_ctransid;
50687069830aSAlexander Block 	u64 ctransid;
50697069830aSAlexander Block 
50707069830aSAlexander Block 	left_path = btrfs_alloc_path();
50717069830aSAlexander Block 	if (!left_path) {
50727069830aSAlexander Block 		ret = -ENOMEM;
50737069830aSAlexander Block 		goto out;
50747069830aSAlexander Block 	}
50757069830aSAlexander Block 	right_path = btrfs_alloc_path();
50767069830aSAlexander Block 	if (!right_path) {
50777069830aSAlexander Block 		ret = -ENOMEM;
50787069830aSAlexander Block 		goto out;
50797069830aSAlexander Block 	}
50807069830aSAlexander Block 
50817069830aSAlexander Block 	tmp_buf = kmalloc(left_root->leafsize, GFP_NOFS);
50827069830aSAlexander Block 	if (!tmp_buf) {
50837069830aSAlexander Block 		ret = -ENOMEM;
50847069830aSAlexander Block 		goto out;
50857069830aSAlexander Block 	}
50867069830aSAlexander Block 
50877069830aSAlexander Block 	left_path->search_commit_root = 1;
50887069830aSAlexander Block 	left_path->skip_locking = 1;
50897069830aSAlexander Block 	right_path->search_commit_root = 1;
50907069830aSAlexander Block 	right_path->skip_locking = 1;
50917069830aSAlexander Block 
50925f3ab90aSAnand Jain 	spin_lock(&left_root->root_item_lock);
50937069830aSAlexander Block 	left_start_ctransid = btrfs_root_ctransid(&left_root->root_item);
50945f3ab90aSAnand Jain 	spin_unlock(&left_root->root_item_lock);
50957069830aSAlexander Block 
50965f3ab90aSAnand Jain 	spin_lock(&right_root->root_item_lock);
50977069830aSAlexander Block 	right_start_ctransid = btrfs_root_ctransid(&right_root->root_item);
50985f3ab90aSAnand Jain 	spin_unlock(&right_root->root_item_lock);
50997069830aSAlexander Block 
51007069830aSAlexander Block 	trans = btrfs_join_transaction(left_root);
51017069830aSAlexander Block 	if (IS_ERR(trans)) {
51027069830aSAlexander Block 		ret = PTR_ERR(trans);
51037069830aSAlexander Block 		trans = NULL;
51047069830aSAlexander Block 		goto out;
51057069830aSAlexander Block 	}
51067069830aSAlexander Block 
51077069830aSAlexander Block 	/*
51087069830aSAlexander Block 	 * Strategy: Go to the first items of both trees. Then do
51097069830aSAlexander Block 	 *
51107069830aSAlexander Block 	 * If both trees are at level 0
51117069830aSAlexander Block 	 *   Compare keys of current items
51127069830aSAlexander Block 	 *     If left < right treat left item as new, advance left tree
51137069830aSAlexander Block 	 *       and repeat
51147069830aSAlexander Block 	 *     If left > right treat right item as deleted, advance right tree
51157069830aSAlexander Block 	 *       and repeat
51167069830aSAlexander Block 	 *     If left == right do deep compare of items, treat as changed if
51177069830aSAlexander Block 	 *       needed, advance both trees and repeat
51187069830aSAlexander Block 	 * If both trees are at the same level but not at level 0
51197069830aSAlexander Block 	 *   Compare keys of current nodes/leafs
51207069830aSAlexander Block 	 *     If left < right advance left tree and repeat
51217069830aSAlexander Block 	 *     If left > right advance right tree and repeat
51227069830aSAlexander Block 	 *     If left == right compare blockptrs of the next nodes/leafs
51237069830aSAlexander Block 	 *       If they match advance both trees but stay at the same level
51247069830aSAlexander Block 	 *         and repeat
51257069830aSAlexander Block 	 *       If they don't match advance both trees while allowing to go
51267069830aSAlexander Block 	 *         deeper and repeat
51277069830aSAlexander Block 	 * If tree levels are different
51287069830aSAlexander Block 	 *   Advance the tree that needs it and repeat
51297069830aSAlexander Block 	 *
51307069830aSAlexander Block 	 * Advancing a tree means:
51317069830aSAlexander Block 	 *   If we are at level 0, try to go to the next slot. If that's not
51327069830aSAlexander Block 	 *   possible, go one level up and repeat. Stop when we found a level
51337069830aSAlexander Block 	 *   where we could go to the next slot. We may at this point be on a
51347069830aSAlexander Block 	 *   node or a leaf.
51357069830aSAlexander Block 	 *
51367069830aSAlexander Block 	 *   If we are not at level 0 and not on shared tree blocks, go one
51377069830aSAlexander Block 	 *   level deeper.
51387069830aSAlexander Block 	 *
51397069830aSAlexander Block 	 *   If we are not at level 0 and on shared tree blocks, go one slot to
51407069830aSAlexander Block 	 *   the right if possible or go up and right.
51417069830aSAlexander Block 	 */
51427069830aSAlexander Block 
51437069830aSAlexander Block 	left_level = btrfs_header_level(left_root->commit_root);
51447069830aSAlexander Block 	left_root_level = left_level;
51457069830aSAlexander Block 	left_path->nodes[left_level] = left_root->commit_root;
51467069830aSAlexander Block 	extent_buffer_get(left_path->nodes[left_level]);
51477069830aSAlexander Block 
51487069830aSAlexander Block 	right_level = btrfs_header_level(right_root->commit_root);
51497069830aSAlexander Block 	right_root_level = right_level;
51507069830aSAlexander Block 	right_path->nodes[right_level] = right_root->commit_root;
51517069830aSAlexander Block 	extent_buffer_get(right_path->nodes[right_level]);
51527069830aSAlexander Block 
51537069830aSAlexander Block 	if (left_level == 0)
51547069830aSAlexander Block 		btrfs_item_key_to_cpu(left_path->nodes[left_level],
51557069830aSAlexander Block 				&left_key, left_path->slots[left_level]);
51567069830aSAlexander Block 	else
51577069830aSAlexander Block 		btrfs_node_key_to_cpu(left_path->nodes[left_level],
51587069830aSAlexander Block 				&left_key, left_path->slots[left_level]);
51597069830aSAlexander Block 	if (right_level == 0)
51607069830aSAlexander Block 		btrfs_item_key_to_cpu(right_path->nodes[right_level],
51617069830aSAlexander Block 				&right_key, right_path->slots[right_level]);
51627069830aSAlexander Block 	else
51637069830aSAlexander Block 		btrfs_node_key_to_cpu(right_path->nodes[right_level],
51647069830aSAlexander Block 				&right_key, right_path->slots[right_level]);
51657069830aSAlexander Block 
51667069830aSAlexander Block 	left_end_reached = right_end_reached = 0;
51677069830aSAlexander Block 	advance_left = advance_right = 0;
51687069830aSAlexander Block 
51697069830aSAlexander Block 	while (1) {
51707069830aSAlexander Block 		/*
51717069830aSAlexander Block 		 * We need to make sure the transaction does not get committed
51727069830aSAlexander Block 		 * while we do anything on commit roots. This means, we need to
51737069830aSAlexander Block 		 * join and leave transactions for every item that we process.
51747069830aSAlexander Block 		 */
51757069830aSAlexander Block 		if (trans && btrfs_should_end_transaction(trans, left_root)) {
51767069830aSAlexander Block 			btrfs_release_path(left_path);
51777069830aSAlexander Block 			btrfs_release_path(right_path);
51787069830aSAlexander Block 
51797069830aSAlexander Block 			ret = btrfs_end_transaction(trans, left_root);
51807069830aSAlexander Block 			trans = NULL;
51817069830aSAlexander Block 			if (ret < 0)
51827069830aSAlexander Block 				goto out;
51837069830aSAlexander Block 		}
51847069830aSAlexander Block 		/* now rejoin the transaction */
51857069830aSAlexander Block 		if (!trans) {
51867069830aSAlexander Block 			trans = btrfs_join_transaction(left_root);
51877069830aSAlexander Block 			if (IS_ERR(trans)) {
51887069830aSAlexander Block 				ret = PTR_ERR(trans);
51897069830aSAlexander Block 				trans = NULL;
51907069830aSAlexander Block 				goto out;
51917069830aSAlexander Block 			}
51927069830aSAlexander Block 
51935f3ab90aSAnand Jain 			spin_lock(&left_root->root_item_lock);
51947069830aSAlexander Block 			ctransid = btrfs_root_ctransid(&left_root->root_item);
51955f3ab90aSAnand Jain 			spin_unlock(&left_root->root_item_lock);
51967069830aSAlexander Block 			if (ctransid != left_start_ctransid)
51977069830aSAlexander Block 				left_start_ctransid = 0;
51987069830aSAlexander Block 
51995f3ab90aSAnand Jain 			spin_lock(&right_root->root_item_lock);
52007069830aSAlexander Block 			ctransid = btrfs_root_ctransid(&right_root->root_item);
52015f3ab90aSAnand Jain 			spin_unlock(&right_root->root_item_lock);
52027069830aSAlexander Block 			if (ctransid != right_start_ctransid)
52037069830aSAlexander Block 				right_start_ctransid = 0;
52047069830aSAlexander Block 
52057069830aSAlexander Block 			if (!left_start_ctransid || !right_start_ctransid) {
52067069830aSAlexander Block 				WARN(1, KERN_WARNING
52077069830aSAlexander Block 					"btrfs: btrfs_compare_tree detected "
52087069830aSAlexander Block 					"a change in one of the trees while "
52097069830aSAlexander Block 					"iterating. This is probably a "
52107069830aSAlexander Block 					"bug.\n");
52117069830aSAlexander Block 				ret = -EIO;
52127069830aSAlexander Block 				goto out;
52137069830aSAlexander Block 			}
52147069830aSAlexander Block 
52157069830aSAlexander Block 			/*
52167069830aSAlexander Block 			 * the commit root may have changed, so start again
52177069830aSAlexander Block 			 * where we stopped
52187069830aSAlexander Block 			 */
52197069830aSAlexander Block 			left_path->lowest_level = left_level;
52207069830aSAlexander Block 			right_path->lowest_level = right_level;
52217069830aSAlexander Block 			ret = btrfs_search_slot(NULL, left_root,
52227069830aSAlexander Block 					&left_key, left_path, 0, 0);
52237069830aSAlexander Block 			if (ret < 0)
52247069830aSAlexander Block 				goto out;
52257069830aSAlexander Block 			ret = btrfs_search_slot(NULL, right_root,
52267069830aSAlexander Block 					&right_key, right_path, 0, 0);
52277069830aSAlexander Block 			if (ret < 0)
52287069830aSAlexander Block 				goto out;
52297069830aSAlexander Block 		}
52307069830aSAlexander Block 
52317069830aSAlexander Block 		if (advance_left && !left_end_reached) {
52327069830aSAlexander Block 			ret = tree_advance(left_root, left_path, &left_level,
52337069830aSAlexander Block 					left_root_level,
52347069830aSAlexander Block 					advance_left != ADVANCE_ONLY_NEXT,
52357069830aSAlexander Block 					&left_key);
52367069830aSAlexander Block 			if (ret < 0)
52377069830aSAlexander Block 				left_end_reached = ADVANCE;
52387069830aSAlexander Block 			advance_left = 0;
52397069830aSAlexander Block 		}
52407069830aSAlexander Block 		if (advance_right && !right_end_reached) {
52417069830aSAlexander Block 			ret = tree_advance(right_root, right_path, &right_level,
52427069830aSAlexander Block 					right_root_level,
52437069830aSAlexander Block 					advance_right != ADVANCE_ONLY_NEXT,
52447069830aSAlexander Block 					&right_key);
52457069830aSAlexander Block 			if (ret < 0)
52467069830aSAlexander Block 				right_end_reached = ADVANCE;
52477069830aSAlexander Block 			advance_right = 0;
52487069830aSAlexander Block 		}
52497069830aSAlexander Block 
52507069830aSAlexander Block 		if (left_end_reached && right_end_reached) {
52517069830aSAlexander Block 			ret = 0;
52527069830aSAlexander Block 			goto out;
52537069830aSAlexander Block 		} else if (left_end_reached) {
52547069830aSAlexander Block 			if (right_level == 0) {
52557069830aSAlexander Block 				ret = changed_cb(left_root, right_root,
52567069830aSAlexander Block 						left_path, right_path,
52577069830aSAlexander Block 						&right_key,
52587069830aSAlexander Block 						BTRFS_COMPARE_TREE_DELETED,
52597069830aSAlexander Block 						ctx);
52607069830aSAlexander Block 				if (ret < 0)
52617069830aSAlexander Block 					goto out;
52627069830aSAlexander Block 			}
52637069830aSAlexander Block 			advance_right = ADVANCE;
52647069830aSAlexander Block 			continue;
52657069830aSAlexander Block 		} else if (right_end_reached) {
52667069830aSAlexander Block 			if (left_level == 0) {
52677069830aSAlexander Block 				ret = changed_cb(left_root, right_root,
52687069830aSAlexander Block 						left_path, right_path,
52697069830aSAlexander Block 						&left_key,
52707069830aSAlexander Block 						BTRFS_COMPARE_TREE_NEW,
52717069830aSAlexander Block 						ctx);
52727069830aSAlexander Block 				if (ret < 0)
52737069830aSAlexander Block 					goto out;
52747069830aSAlexander Block 			}
52757069830aSAlexander Block 			advance_left = ADVANCE;
52767069830aSAlexander Block 			continue;
52777069830aSAlexander Block 		}
52787069830aSAlexander Block 
52797069830aSAlexander Block 		if (left_level == 0 && right_level == 0) {
52807069830aSAlexander Block 			cmp = btrfs_comp_cpu_keys(&left_key, &right_key);
52817069830aSAlexander Block 			if (cmp < 0) {
52827069830aSAlexander Block 				ret = changed_cb(left_root, right_root,
52837069830aSAlexander Block 						left_path, right_path,
52847069830aSAlexander Block 						&left_key,
52857069830aSAlexander Block 						BTRFS_COMPARE_TREE_NEW,
52867069830aSAlexander Block 						ctx);
52877069830aSAlexander Block 				if (ret < 0)
52887069830aSAlexander Block 					goto out;
52897069830aSAlexander Block 				advance_left = ADVANCE;
52907069830aSAlexander Block 			} else if (cmp > 0) {
52917069830aSAlexander Block 				ret = changed_cb(left_root, right_root,
52927069830aSAlexander Block 						left_path, right_path,
52937069830aSAlexander Block 						&right_key,
52947069830aSAlexander Block 						BTRFS_COMPARE_TREE_DELETED,
52957069830aSAlexander Block 						ctx);
52967069830aSAlexander Block 				if (ret < 0)
52977069830aSAlexander Block 					goto out;
52987069830aSAlexander Block 				advance_right = ADVANCE;
52997069830aSAlexander Block 			} else {
5300ba5e8f2eSJosef Bacik 				enum btrfs_compare_tree_result cmp;
5301ba5e8f2eSJosef Bacik 
530274dd17fbSChris Mason 				WARN_ON(!extent_buffer_uptodate(left_path->nodes[0]));
53037069830aSAlexander Block 				ret = tree_compare_item(left_root, left_path,
53047069830aSAlexander Block 						right_path, tmp_buf);
5305ba5e8f2eSJosef Bacik 				if (ret)
5306ba5e8f2eSJosef Bacik 					cmp = BTRFS_COMPARE_TREE_CHANGED;
5307ba5e8f2eSJosef Bacik 				else
5308ba5e8f2eSJosef Bacik 					cmp = BTRFS_COMPARE_TREE_SAME;
53097069830aSAlexander Block 				ret = changed_cb(left_root, right_root,
53107069830aSAlexander Block 						 left_path, right_path,
5311ba5e8f2eSJosef Bacik 						 &left_key, cmp, ctx);
53127069830aSAlexander Block 				if (ret < 0)
53137069830aSAlexander Block 					goto out;
53147069830aSAlexander Block 				advance_left = ADVANCE;
53157069830aSAlexander Block 				advance_right = ADVANCE;
53167069830aSAlexander Block 			}
53177069830aSAlexander Block 		} else if (left_level == right_level) {
53187069830aSAlexander Block 			cmp = btrfs_comp_cpu_keys(&left_key, &right_key);
53197069830aSAlexander Block 			if (cmp < 0) {
53207069830aSAlexander Block 				advance_left = ADVANCE;
53217069830aSAlexander Block 			} else if (cmp > 0) {
53227069830aSAlexander Block 				advance_right = ADVANCE;
53237069830aSAlexander Block 			} else {
53247069830aSAlexander Block 				left_blockptr = btrfs_node_blockptr(
53257069830aSAlexander Block 						left_path->nodes[left_level],
53267069830aSAlexander Block 						left_path->slots[left_level]);
53277069830aSAlexander Block 				right_blockptr = btrfs_node_blockptr(
53287069830aSAlexander Block 						right_path->nodes[right_level],
53297069830aSAlexander Block 						right_path->slots[right_level]);
53307069830aSAlexander Block 				if (left_blockptr == right_blockptr) {
53317069830aSAlexander Block 					/*
53327069830aSAlexander Block 					 * As we're on a shared block, don't
53337069830aSAlexander Block 					 * allow to go deeper.
53347069830aSAlexander Block 					 */
53357069830aSAlexander Block 					advance_left = ADVANCE_ONLY_NEXT;
53367069830aSAlexander Block 					advance_right = ADVANCE_ONLY_NEXT;
53377069830aSAlexander Block 				} else {
53387069830aSAlexander Block 					advance_left = ADVANCE;
53397069830aSAlexander Block 					advance_right = ADVANCE;
53407069830aSAlexander Block 				}
53417069830aSAlexander Block 			}
53427069830aSAlexander Block 		} else if (left_level < right_level) {
53437069830aSAlexander Block 			advance_right = ADVANCE;
53447069830aSAlexander Block 		} else {
53457069830aSAlexander Block 			advance_left = ADVANCE;
53467069830aSAlexander Block 		}
53477069830aSAlexander Block 	}
53487069830aSAlexander Block 
53497069830aSAlexander Block out:
53507069830aSAlexander Block 	btrfs_free_path(left_path);
53517069830aSAlexander Block 	btrfs_free_path(right_path);
53527069830aSAlexander Block 	kfree(tmp_buf);
53537069830aSAlexander Block 
53547069830aSAlexander Block 	if (trans) {
53557069830aSAlexander Block 		if (!ret)
53567069830aSAlexander Block 			ret = btrfs_end_transaction(trans, left_root);
53577069830aSAlexander Block 		else
53587069830aSAlexander Block 			btrfs_end_transaction(trans, left_root);
53597069830aSAlexander Block 	}
53607069830aSAlexander Block 
53617069830aSAlexander Block 	return ret;
53627069830aSAlexander Block }
53637069830aSAlexander Block 
53643f157a2fSChris Mason /*
53653f157a2fSChris Mason  * this is similar to btrfs_next_leaf, but does not try to preserve
53663f157a2fSChris Mason  * and fixup the path.  It looks for and returns the next key in the
5367de78b51aSEric Sandeen  * tree based on the current path and the min_trans parameters.
53683f157a2fSChris Mason  *
53693f157a2fSChris Mason  * 0 is returned if another key is found, < 0 if there are any errors
53703f157a2fSChris Mason  * and 1 is returned if there are no higher keys in the tree
53713f157a2fSChris Mason  *
53723f157a2fSChris Mason  * path->keep_locks should be set to 1 on the search made before
53733f157a2fSChris Mason  * calling this function.
53743f157a2fSChris Mason  */
5375e7a84565SChris Mason int btrfs_find_next_key(struct btrfs_root *root, struct btrfs_path *path,
5376de78b51aSEric Sandeen 			struct btrfs_key *key, int level, u64 min_trans)
5377e7a84565SChris Mason {
5378e7a84565SChris Mason 	int slot;
5379e7a84565SChris Mason 	struct extent_buffer *c;
5380e7a84565SChris Mason 
5381934d375bSChris Mason 	WARN_ON(!path->keep_locks);
5382e7a84565SChris Mason 	while (level < BTRFS_MAX_LEVEL) {
5383e7a84565SChris Mason 		if (!path->nodes[level])
5384e7a84565SChris Mason 			return 1;
5385e7a84565SChris Mason 
5386e7a84565SChris Mason 		slot = path->slots[level] + 1;
5387e7a84565SChris Mason 		c = path->nodes[level];
53883f157a2fSChris Mason next:
5389e7a84565SChris Mason 		if (slot >= btrfs_header_nritems(c)) {
539033c66f43SYan Zheng 			int ret;
539133c66f43SYan Zheng 			int orig_lowest;
539233c66f43SYan Zheng 			struct btrfs_key cur_key;
539333c66f43SYan Zheng 			if (level + 1 >= BTRFS_MAX_LEVEL ||
539433c66f43SYan Zheng 			    !path->nodes[level + 1])
5395e7a84565SChris Mason 				return 1;
539633c66f43SYan Zheng 
539733c66f43SYan Zheng 			if (path->locks[level + 1]) {
539833c66f43SYan Zheng 				level++;
5399e7a84565SChris Mason 				continue;
5400e7a84565SChris Mason 			}
540133c66f43SYan Zheng 
540233c66f43SYan Zheng 			slot = btrfs_header_nritems(c) - 1;
540333c66f43SYan Zheng 			if (level == 0)
540433c66f43SYan Zheng 				btrfs_item_key_to_cpu(c, &cur_key, slot);
540533c66f43SYan Zheng 			else
540633c66f43SYan Zheng 				btrfs_node_key_to_cpu(c, &cur_key, slot);
540733c66f43SYan Zheng 
540833c66f43SYan Zheng 			orig_lowest = path->lowest_level;
5409b3b4aa74SDavid Sterba 			btrfs_release_path(path);
541033c66f43SYan Zheng 			path->lowest_level = level;
541133c66f43SYan Zheng 			ret = btrfs_search_slot(NULL, root, &cur_key, path,
541233c66f43SYan Zheng 						0, 0);
541333c66f43SYan Zheng 			path->lowest_level = orig_lowest;
541433c66f43SYan Zheng 			if (ret < 0)
541533c66f43SYan Zheng 				return ret;
541633c66f43SYan Zheng 
541733c66f43SYan Zheng 			c = path->nodes[level];
541833c66f43SYan Zheng 			slot = path->slots[level];
541933c66f43SYan Zheng 			if (ret == 0)
542033c66f43SYan Zheng 				slot++;
542133c66f43SYan Zheng 			goto next;
542233c66f43SYan Zheng 		}
542333c66f43SYan Zheng 
5424e7a84565SChris Mason 		if (level == 0)
5425e7a84565SChris Mason 			btrfs_item_key_to_cpu(c, key, slot);
54263f157a2fSChris Mason 		else {
54273f157a2fSChris Mason 			u64 gen = btrfs_node_ptr_generation(c, slot);
54283f157a2fSChris Mason 
54293f157a2fSChris Mason 			if (gen < min_trans) {
54303f157a2fSChris Mason 				slot++;
54313f157a2fSChris Mason 				goto next;
54323f157a2fSChris Mason 			}
5433e7a84565SChris Mason 			btrfs_node_key_to_cpu(c, key, slot);
54343f157a2fSChris Mason 		}
5435e7a84565SChris Mason 		return 0;
5436e7a84565SChris Mason 	}
5437e7a84565SChris Mason 	return 1;
5438e7a84565SChris Mason }
5439e7a84565SChris Mason 
54407bb86316SChris Mason /*
5441925baeddSChris Mason  * search the tree again to find a leaf with greater keys
54420f70abe2SChris Mason  * returns 0 if it found something or 1 if there are no greater leaves.
54430f70abe2SChris Mason  * returns < 0 on io errors.
544497571fd0SChris Mason  */
5445234b63a0SChris Mason int btrfs_next_leaf(struct btrfs_root *root, struct btrfs_path *path)
5446d97e63b6SChris Mason {
54473d7806ecSJan Schmidt 	return btrfs_next_old_leaf(root, path, 0);
54483d7806ecSJan Schmidt }
54493d7806ecSJan Schmidt 
54503d7806ecSJan Schmidt int btrfs_next_old_leaf(struct btrfs_root *root, struct btrfs_path *path,
54513d7806ecSJan Schmidt 			u64 time_seq)
54523d7806ecSJan Schmidt {
5453d97e63b6SChris Mason 	int slot;
54548e73f275SChris Mason 	int level;
54555f39d397SChris Mason 	struct extent_buffer *c;
54568e73f275SChris Mason 	struct extent_buffer *next;
5457925baeddSChris Mason 	struct btrfs_key key;
5458925baeddSChris Mason 	u32 nritems;
5459925baeddSChris Mason 	int ret;
54608e73f275SChris Mason 	int old_spinning = path->leave_spinning;
5461bd681513SChris Mason 	int next_rw_lock = 0;
5462925baeddSChris Mason 
5463925baeddSChris Mason 	nritems = btrfs_header_nritems(path->nodes[0]);
5464d397712bSChris Mason 	if (nritems == 0)
5465925baeddSChris Mason 		return 1;
5466925baeddSChris Mason 
54678e73f275SChris Mason 	btrfs_item_key_to_cpu(path->nodes[0], &key, nritems - 1);
54688e73f275SChris Mason again:
54698e73f275SChris Mason 	level = 1;
54708e73f275SChris Mason 	next = NULL;
5471bd681513SChris Mason 	next_rw_lock = 0;
5472b3b4aa74SDavid Sterba 	btrfs_release_path(path);
54738e73f275SChris Mason 
5474a2135011SChris Mason 	path->keep_locks = 1;
54758e73f275SChris Mason 	path->leave_spinning = 1;
54768e73f275SChris Mason 
54773d7806ecSJan Schmidt 	if (time_seq)
54783d7806ecSJan Schmidt 		ret = btrfs_search_old_slot(root, &key, path, time_seq);
54793d7806ecSJan Schmidt 	else
5480925baeddSChris Mason 		ret = btrfs_search_slot(NULL, root, &key, path, 0, 0);
5481925baeddSChris Mason 	path->keep_locks = 0;
5482925baeddSChris Mason 
5483925baeddSChris Mason 	if (ret < 0)
5484925baeddSChris Mason 		return ret;
5485925baeddSChris Mason 
5486a2135011SChris Mason 	nritems = btrfs_header_nritems(path->nodes[0]);
5487168fd7d2SChris Mason 	/*
5488168fd7d2SChris Mason 	 * by releasing the path above we dropped all our locks.  A balance
5489168fd7d2SChris Mason 	 * could have added more items next to the key that used to be
5490168fd7d2SChris Mason 	 * at the very end of the block.  So, check again here and
5491168fd7d2SChris Mason 	 * advance the path if there are now more items available.
5492168fd7d2SChris Mason 	 */
5493a2135011SChris Mason 	if (nritems > 0 && path->slots[0] < nritems - 1) {
5494e457afecSYan Zheng 		if (ret == 0)
5495168fd7d2SChris Mason 			path->slots[0]++;
54968e73f275SChris Mason 		ret = 0;
5497925baeddSChris Mason 		goto done;
5498925baeddSChris Mason 	}
5499d97e63b6SChris Mason 
5500234b63a0SChris Mason 	while (level < BTRFS_MAX_LEVEL) {
55018e73f275SChris Mason 		if (!path->nodes[level]) {
55028e73f275SChris Mason 			ret = 1;
55038e73f275SChris Mason 			goto done;
55048e73f275SChris Mason 		}
55055f39d397SChris Mason 
5506d97e63b6SChris Mason 		slot = path->slots[level] + 1;
5507d97e63b6SChris Mason 		c = path->nodes[level];
55085f39d397SChris Mason 		if (slot >= btrfs_header_nritems(c)) {
5509d97e63b6SChris Mason 			level++;
55108e73f275SChris Mason 			if (level == BTRFS_MAX_LEVEL) {
55118e73f275SChris Mason 				ret = 1;
55128e73f275SChris Mason 				goto done;
55138e73f275SChris Mason 			}
5514d97e63b6SChris Mason 			continue;
5515d97e63b6SChris Mason 		}
55165f39d397SChris Mason 
5517925baeddSChris Mason 		if (next) {
5518bd681513SChris Mason 			btrfs_tree_unlock_rw(next, next_rw_lock);
55195f39d397SChris Mason 			free_extent_buffer(next);
5520925baeddSChris Mason 		}
55215f39d397SChris Mason 
55228e73f275SChris Mason 		next = c;
5523bd681513SChris Mason 		next_rw_lock = path->locks[level];
55248e73f275SChris Mason 		ret = read_block_for_search(NULL, root, path, &next, level,
55255d9e75c4SJan Schmidt 					    slot, &key, 0);
55268e73f275SChris Mason 		if (ret == -EAGAIN)
55278e73f275SChris Mason 			goto again;
55285f39d397SChris Mason 
552976a05b35SChris Mason 		if (ret < 0) {
5530b3b4aa74SDavid Sterba 			btrfs_release_path(path);
553176a05b35SChris Mason 			goto done;
553276a05b35SChris Mason 		}
553376a05b35SChris Mason 
55345cd57b2cSChris Mason 		if (!path->skip_locking) {
5535bd681513SChris Mason 			ret = btrfs_try_tree_read_lock(next);
5536d42244a0SJan Schmidt 			if (!ret && time_seq) {
5537d42244a0SJan Schmidt 				/*
5538d42244a0SJan Schmidt 				 * If we don't get the lock, we may be racing
5539d42244a0SJan Schmidt 				 * with push_leaf_left, holding that lock while
5540d42244a0SJan Schmidt 				 * itself waiting for the leaf we've currently
5541d42244a0SJan Schmidt 				 * locked. To solve this situation, we give up
5542d42244a0SJan Schmidt 				 * on our lock and cycle.
5543d42244a0SJan Schmidt 				 */
5544cf538830SJan Schmidt 				free_extent_buffer(next);
5545d42244a0SJan Schmidt 				btrfs_release_path(path);
5546d42244a0SJan Schmidt 				cond_resched();
5547d42244a0SJan Schmidt 				goto again;
5548d42244a0SJan Schmidt 			}
55498e73f275SChris Mason 			if (!ret) {
55508e73f275SChris Mason 				btrfs_set_path_blocking(path);
5551bd681513SChris Mason 				btrfs_tree_read_lock(next);
5552bd681513SChris Mason 				btrfs_clear_path_blocking(path, next,
5553bd681513SChris Mason 							  BTRFS_READ_LOCK);
55548e73f275SChris Mason 			}
5555bd681513SChris Mason 			next_rw_lock = BTRFS_READ_LOCK;
5556bd681513SChris Mason 		}
5557d97e63b6SChris Mason 		break;
5558d97e63b6SChris Mason 	}
5559d97e63b6SChris Mason 	path->slots[level] = slot;
5560d97e63b6SChris Mason 	while (1) {
5561d97e63b6SChris Mason 		level--;
5562d97e63b6SChris Mason 		c = path->nodes[level];
5563925baeddSChris Mason 		if (path->locks[level])
5564bd681513SChris Mason 			btrfs_tree_unlock_rw(c, path->locks[level]);
55658e73f275SChris Mason 
55665f39d397SChris Mason 		free_extent_buffer(c);
5567d97e63b6SChris Mason 		path->nodes[level] = next;
5568d97e63b6SChris Mason 		path->slots[level] = 0;
5569a74a4b97SChris Mason 		if (!path->skip_locking)
5570bd681513SChris Mason 			path->locks[level] = next_rw_lock;
5571d97e63b6SChris Mason 		if (!level)
5572d97e63b6SChris Mason 			break;
5573b4ce94deSChris Mason 
55748e73f275SChris Mason 		ret = read_block_for_search(NULL, root, path, &next, level,
55755d9e75c4SJan Schmidt 					    0, &key, 0);
55768e73f275SChris Mason 		if (ret == -EAGAIN)
55778e73f275SChris Mason 			goto again;
55788e73f275SChris Mason 
557976a05b35SChris Mason 		if (ret < 0) {
5580b3b4aa74SDavid Sterba 			btrfs_release_path(path);
558176a05b35SChris Mason 			goto done;
558276a05b35SChris Mason 		}
558376a05b35SChris Mason 
55845cd57b2cSChris Mason 		if (!path->skip_locking) {
5585bd681513SChris Mason 			ret = btrfs_try_tree_read_lock(next);
55868e73f275SChris Mason 			if (!ret) {
55878e73f275SChris Mason 				btrfs_set_path_blocking(path);
5588bd681513SChris Mason 				btrfs_tree_read_lock(next);
5589bd681513SChris Mason 				btrfs_clear_path_blocking(path, next,
5590bd681513SChris Mason 							  BTRFS_READ_LOCK);
55918e73f275SChris Mason 			}
5592bd681513SChris Mason 			next_rw_lock = BTRFS_READ_LOCK;
5593bd681513SChris Mason 		}
5594d97e63b6SChris Mason 	}
55958e73f275SChris Mason 	ret = 0;
5596925baeddSChris Mason done:
5597f7c79f30SChris Mason 	unlock_up(path, 0, 1, 0, NULL);
55988e73f275SChris Mason 	path->leave_spinning = old_spinning;
55998e73f275SChris Mason 	if (!old_spinning)
56008e73f275SChris Mason 		btrfs_set_path_blocking(path);
56018e73f275SChris Mason 
56028e73f275SChris Mason 	return ret;
5603d97e63b6SChris Mason }
56040b86a832SChris Mason 
56053f157a2fSChris Mason /*
56063f157a2fSChris Mason  * this uses btrfs_prev_leaf to walk backwards in the tree, and keeps
56073f157a2fSChris Mason  * searching until it gets past min_objectid or finds an item of 'type'
56083f157a2fSChris Mason  *
56093f157a2fSChris Mason  * returns 0 if something is found, 1 if nothing was found and < 0 on error
56103f157a2fSChris Mason  */
56110b86a832SChris Mason int btrfs_previous_item(struct btrfs_root *root,
56120b86a832SChris Mason 			struct btrfs_path *path, u64 min_objectid,
56130b86a832SChris Mason 			int type)
56140b86a832SChris Mason {
56150b86a832SChris Mason 	struct btrfs_key found_key;
56160b86a832SChris Mason 	struct extent_buffer *leaf;
5617e02119d5SChris Mason 	u32 nritems;
56180b86a832SChris Mason 	int ret;
56190b86a832SChris Mason 
56200b86a832SChris Mason 	while (1) {
56210b86a832SChris Mason 		if (path->slots[0] == 0) {
5622b4ce94deSChris Mason 			btrfs_set_path_blocking(path);
56230b86a832SChris Mason 			ret = btrfs_prev_leaf(root, path);
56240b86a832SChris Mason 			if (ret != 0)
56250b86a832SChris Mason 				return ret;
56260b86a832SChris Mason 		} else {
56270b86a832SChris Mason 			path->slots[0]--;
56280b86a832SChris Mason 		}
56290b86a832SChris Mason 		leaf = path->nodes[0];
5630e02119d5SChris Mason 		nritems = btrfs_header_nritems(leaf);
5631e02119d5SChris Mason 		if (nritems == 0)
5632e02119d5SChris Mason 			return 1;
5633e02119d5SChris Mason 		if (path->slots[0] == nritems)
5634e02119d5SChris Mason 			path->slots[0]--;
5635e02119d5SChris Mason 
56360b86a832SChris Mason 		btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]);
5637e02119d5SChris Mason 		if (found_key.objectid < min_objectid)
5638e02119d5SChris Mason 			break;
56390a4eefbbSYan Zheng 		if (found_key.type == type)
56400a4eefbbSYan Zheng 			return 0;
5641e02119d5SChris Mason 		if (found_key.objectid == min_objectid &&
5642e02119d5SChris Mason 		    found_key.type < type)
5643e02119d5SChris Mason 			break;
56440b86a832SChris Mason 	}
56450b86a832SChris Mason 	return 1;
56460b86a832SChris Mason }
5647