xref: /openbmc/linux/fs/btrfs/delayed-inode.c (revision f379c3f4)
1c1d7c514SDavid Sterba // SPDX-License-Identifier: GPL-2.0
216cdcec7SMiao Xie /*
316cdcec7SMiao Xie  * Copyright (C) 2011 Fujitsu.  All rights reserved.
416cdcec7SMiao Xie  * Written by Miao Xie <miaox@cn.fujitsu.com>
516cdcec7SMiao Xie  */
616cdcec7SMiao Xie 
716cdcec7SMiao Xie #include <linux/slab.h>
8c7f88c4eSJeff Layton #include <linux/iversion.h>
9ec8eb376SJosef Bacik #include "ctree.h"
10ec8eb376SJosef Bacik #include "fs.h"
119b569ea0SJosef Bacik #include "messages.h"
12602cbe91SDavid Sterba #include "misc.h"
1316cdcec7SMiao Xie #include "delayed-inode.h"
1416cdcec7SMiao Xie #include "disk-io.h"
1516cdcec7SMiao Xie #include "transaction.h"
164f5427ccSQu Wenruo #include "qgroup.h"
171f95ec01SDavid Sterba #include "locking.h"
1826c2c454SJosef Bacik #include "inode-item.h"
19f1e5c618SJosef Bacik #include "space-info.h"
2007e81dc9SJosef Bacik #include "accessors.h"
217c8ede16SJosef Bacik #include "file-item.h"
2216cdcec7SMiao Xie 
23de3cb945SChris Mason #define BTRFS_DELAYED_WRITEBACK		512
24de3cb945SChris Mason #define BTRFS_DELAYED_BACKGROUND	128
25de3cb945SChris Mason #define BTRFS_DELAYED_BATCH		16
2616cdcec7SMiao Xie 
2716cdcec7SMiao Xie static struct kmem_cache *delayed_node_cache;
2816cdcec7SMiao Xie 
btrfs_delayed_inode_init(void)2916cdcec7SMiao Xie int __init btrfs_delayed_inode_init(void)
3016cdcec7SMiao Xie {
31837e1972SDavid Sterba 	delayed_node_cache = kmem_cache_create("btrfs_delayed_node",
3216cdcec7SMiao Xie 					sizeof(struct btrfs_delayed_node),
3316cdcec7SMiao Xie 					0,
34fba4b697SNikolay Borisov 					SLAB_MEM_SPREAD,
3516cdcec7SMiao Xie 					NULL);
3616cdcec7SMiao Xie 	if (!delayed_node_cache)
3716cdcec7SMiao Xie 		return -ENOMEM;
3816cdcec7SMiao Xie 	return 0;
3916cdcec7SMiao Xie }
4016cdcec7SMiao Xie 
btrfs_delayed_inode_exit(void)41e67c718bSDavid Sterba void __cold btrfs_delayed_inode_exit(void)
4216cdcec7SMiao Xie {
4316cdcec7SMiao Xie 	kmem_cache_destroy(delayed_node_cache);
4416cdcec7SMiao Xie }
4516cdcec7SMiao Xie 
btrfs_init_delayed_node(struct btrfs_delayed_node * delayed_node,struct btrfs_root * root,u64 inode_id)4616cdcec7SMiao Xie static inline void btrfs_init_delayed_node(
4716cdcec7SMiao Xie 				struct btrfs_delayed_node *delayed_node,
4816cdcec7SMiao Xie 				struct btrfs_root *root, u64 inode_id)
4916cdcec7SMiao Xie {
5016cdcec7SMiao Xie 	delayed_node->root = root;
5116cdcec7SMiao Xie 	delayed_node->inode_id = inode_id;
526de5f18eSElena Reshetova 	refcount_set(&delayed_node->refs, 0);
5303a1d4c8SLiu Bo 	delayed_node->ins_root = RB_ROOT_CACHED;
5403a1d4c8SLiu Bo 	delayed_node->del_root = RB_ROOT_CACHED;
5516cdcec7SMiao Xie 	mutex_init(&delayed_node->mutex);
5616cdcec7SMiao Xie 	INIT_LIST_HEAD(&delayed_node->n_list);
5716cdcec7SMiao Xie 	INIT_LIST_HEAD(&delayed_node->p_list);
5816cdcec7SMiao Xie }
5916cdcec7SMiao Xie 
btrfs_get_delayed_node(struct btrfs_inode * btrfs_inode)60f85b7379SDavid Sterba static struct btrfs_delayed_node *btrfs_get_delayed_node(
61f85b7379SDavid Sterba 		struct btrfs_inode *btrfs_inode)
622f7e33d4SMiao Xie {
632f7e33d4SMiao Xie 	struct btrfs_root *root = btrfs_inode->root;
644a0cc7caSNikolay Borisov 	u64 ino = btrfs_ino(btrfs_inode);
652f7e33d4SMiao Xie 	struct btrfs_delayed_node *node;
662f7e33d4SMiao Xie 
6720c7bcecSSeraphime Kirkovski 	node = READ_ONCE(btrfs_inode->delayed_node);
682f7e33d4SMiao Xie 	if (node) {
696de5f18eSElena Reshetova 		refcount_inc(&node->refs);
702f7e33d4SMiao Xie 		return node;
712f7e33d4SMiao Xie 	}
722f7e33d4SMiao Xie 
732f7e33d4SMiao Xie 	spin_lock(&root->inode_lock);
74088aea3bSDavid Sterba 	node = radix_tree_lookup(&root->delayed_nodes_tree, ino);
75ec35e48bSChris Mason 
762f7e33d4SMiao Xie 	if (node) {
772f7e33d4SMiao Xie 		if (btrfs_inode->delayed_node) {
786de5f18eSElena Reshetova 			refcount_inc(&node->refs);	/* can be accessed */
792f7e33d4SMiao Xie 			BUG_ON(btrfs_inode->delayed_node != node);
802f7e33d4SMiao Xie 			spin_unlock(&root->inode_lock);
812f7e33d4SMiao Xie 			return node;
822f7e33d4SMiao Xie 		}
83ec35e48bSChris Mason 
84ec35e48bSChris Mason 		/*
85ec35e48bSChris Mason 		 * It's possible that we're racing into the middle of removing
86088aea3bSDavid Sterba 		 * this node from the radix tree.  In this case, the refcount
87ec35e48bSChris Mason 		 * was zero and it should never go back to one.  Just return
88088aea3bSDavid Sterba 		 * NULL like it was never in the radix at all; our release
89ec35e48bSChris Mason 		 * function is in the process of removing it.
90ec35e48bSChris Mason 		 *
91ec35e48bSChris Mason 		 * Some implementations of refcount_inc refuse to bump the
92ec35e48bSChris Mason 		 * refcount once it has hit zero.  If we don't do this dance
93ec35e48bSChris Mason 		 * here, refcount_inc() may decide to just WARN_ONCE() instead
94ec35e48bSChris Mason 		 * of actually bumping the refcount.
95ec35e48bSChris Mason 		 *
96088aea3bSDavid Sterba 		 * If this node is properly in the radix, we want to bump the
97ec35e48bSChris Mason 		 * refcount twice, once for the inode and once for this get
98ec35e48bSChris Mason 		 * operation.
99ec35e48bSChris Mason 		 */
100ec35e48bSChris Mason 		if (refcount_inc_not_zero(&node->refs)) {
101ec35e48bSChris Mason 			refcount_inc(&node->refs);
1022f7e33d4SMiao Xie 			btrfs_inode->delayed_node = node;
103ec35e48bSChris Mason 		} else {
104ec35e48bSChris Mason 			node = NULL;
105ec35e48bSChris Mason 		}
106ec35e48bSChris Mason 
1072f7e33d4SMiao Xie 		spin_unlock(&root->inode_lock);
1082f7e33d4SMiao Xie 		return node;
1092f7e33d4SMiao Xie 	}
1102f7e33d4SMiao Xie 	spin_unlock(&root->inode_lock);
1112f7e33d4SMiao Xie 
1122f7e33d4SMiao Xie 	return NULL;
1132f7e33d4SMiao Xie }
1142f7e33d4SMiao Xie 
11579787eaaSJeff Mahoney /* Will return either the node or PTR_ERR(-ENOMEM) */
btrfs_get_or_create_delayed_node(struct btrfs_inode * btrfs_inode)11616cdcec7SMiao Xie static struct btrfs_delayed_node *btrfs_get_or_create_delayed_node(
117e5517a7bSNikolay Borisov 		struct btrfs_inode *btrfs_inode)
11816cdcec7SMiao Xie {
11916cdcec7SMiao Xie 	struct btrfs_delayed_node *node;
12016cdcec7SMiao Xie 	struct btrfs_root *root = btrfs_inode->root;
1214a0cc7caSNikolay Borisov 	u64 ino = btrfs_ino(btrfs_inode);
12216cdcec7SMiao Xie 	int ret;
12316cdcec7SMiao Xie 
124088aea3bSDavid Sterba again:
125340c6ca9SNikolay Borisov 	node = btrfs_get_delayed_node(btrfs_inode);
1262f7e33d4SMiao Xie 	if (node)
12716cdcec7SMiao Xie 		return node;
12816cdcec7SMiao Xie 
129352dd9c8SAlexandru Moise 	node = kmem_cache_zalloc(delayed_node_cache, GFP_NOFS);
13016cdcec7SMiao Xie 	if (!node)
13116cdcec7SMiao Xie 		return ERR_PTR(-ENOMEM);
1320d0ca30fSChris Mason 	btrfs_init_delayed_node(node, root, ino);
13316cdcec7SMiao Xie 
134088aea3bSDavid Sterba 	/* cached in the btrfs inode and can be accessed */
1356de5f18eSElena Reshetova 	refcount_set(&node->refs, 2);
13616cdcec7SMiao Xie 
137088aea3bSDavid Sterba 	ret = radix_tree_preload(GFP_NOFS);
13816cdcec7SMiao Xie 	if (ret) {
13916cdcec7SMiao Xie 		kmem_cache_free(delayed_node_cache, node);
14016cdcec7SMiao Xie 		return ERR_PTR(ret);
14116cdcec7SMiao Xie 	}
142088aea3bSDavid Sterba 
143088aea3bSDavid Sterba 	spin_lock(&root->inode_lock);
144088aea3bSDavid Sterba 	ret = radix_tree_insert(&root->delayed_nodes_tree, ino, node);
145088aea3bSDavid Sterba 	if (ret == -EEXIST) {
146088aea3bSDavid Sterba 		spin_unlock(&root->inode_lock);
147088aea3bSDavid Sterba 		kmem_cache_free(delayed_node_cache, node);
148088aea3bSDavid Sterba 		radix_tree_preload_end();
149088aea3bSDavid Sterba 		goto again;
150088aea3bSDavid Sterba 	}
15116cdcec7SMiao Xie 	btrfs_inode->delayed_node = node;
15216cdcec7SMiao Xie 	spin_unlock(&root->inode_lock);
153088aea3bSDavid Sterba 	radix_tree_preload_end();
15416cdcec7SMiao Xie 
15516cdcec7SMiao Xie 	return node;
15616cdcec7SMiao Xie }
15716cdcec7SMiao Xie 
15816cdcec7SMiao Xie /*
15916cdcec7SMiao Xie  * Call it when holding delayed_node->mutex
16016cdcec7SMiao Xie  *
16116cdcec7SMiao Xie  * If mod = 1, add this node into the prepared list.
16216cdcec7SMiao Xie  */
btrfs_queue_delayed_node(struct btrfs_delayed_root * root,struct btrfs_delayed_node * node,int mod)16316cdcec7SMiao Xie static void btrfs_queue_delayed_node(struct btrfs_delayed_root *root,
16416cdcec7SMiao Xie 				     struct btrfs_delayed_node *node,
16516cdcec7SMiao Xie 				     int mod)
16616cdcec7SMiao Xie {
16716cdcec7SMiao Xie 	spin_lock(&root->lock);
1687cf35d91SMiao Xie 	if (test_bit(BTRFS_DELAYED_NODE_IN_LIST, &node->flags)) {
16916cdcec7SMiao Xie 		if (!list_empty(&node->p_list))
17016cdcec7SMiao Xie 			list_move_tail(&node->p_list, &root->prepare_list);
17116cdcec7SMiao Xie 		else if (mod)
17216cdcec7SMiao Xie 			list_add_tail(&node->p_list, &root->prepare_list);
17316cdcec7SMiao Xie 	} else {
17416cdcec7SMiao Xie 		list_add_tail(&node->n_list, &root->node_list);
17516cdcec7SMiao Xie 		list_add_tail(&node->p_list, &root->prepare_list);
1766de5f18eSElena Reshetova 		refcount_inc(&node->refs);	/* inserted into list */
17716cdcec7SMiao Xie 		root->nodes++;
1787cf35d91SMiao Xie 		set_bit(BTRFS_DELAYED_NODE_IN_LIST, &node->flags);
17916cdcec7SMiao Xie 	}
18016cdcec7SMiao Xie 	spin_unlock(&root->lock);
18116cdcec7SMiao Xie }
18216cdcec7SMiao Xie 
18316cdcec7SMiao Xie /* Call it when holding delayed_node->mutex */
btrfs_dequeue_delayed_node(struct btrfs_delayed_root * root,struct btrfs_delayed_node * node)18416cdcec7SMiao Xie static void btrfs_dequeue_delayed_node(struct btrfs_delayed_root *root,
18516cdcec7SMiao Xie 				       struct btrfs_delayed_node *node)
18616cdcec7SMiao Xie {
18716cdcec7SMiao Xie 	spin_lock(&root->lock);
1887cf35d91SMiao Xie 	if (test_bit(BTRFS_DELAYED_NODE_IN_LIST, &node->flags)) {
18916cdcec7SMiao Xie 		root->nodes--;
1906de5f18eSElena Reshetova 		refcount_dec(&node->refs);	/* not in the list */
19116cdcec7SMiao Xie 		list_del_init(&node->n_list);
19216cdcec7SMiao Xie 		if (!list_empty(&node->p_list))
19316cdcec7SMiao Xie 			list_del_init(&node->p_list);
1947cf35d91SMiao Xie 		clear_bit(BTRFS_DELAYED_NODE_IN_LIST, &node->flags);
19516cdcec7SMiao Xie 	}
19616cdcec7SMiao Xie 	spin_unlock(&root->lock);
19716cdcec7SMiao Xie }
19816cdcec7SMiao Xie 
btrfs_first_delayed_node(struct btrfs_delayed_root * delayed_root)19948a3b636SEric Sandeen static struct btrfs_delayed_node *btrfs_first_delayed_node(
20016cdcec7SMiao Xie 			struct btrfs_delayed_root *delayed_root)
20116cdcec7SMiao Xie {
20216cdcec7SMiao Xie 	struct list_head *p;
20316cdcec7SMiao Xie 	struct btrfs_delayed_node *node = NULL;
20416cdcec7SMiao Xie 
20516cdcec7SMiao Xie 	spin_lock(&delayed_root->lock);
20616cdcec7SMiao Xie 	if (list_empty(&delayed_root->node_list))
20716cdcec7SMiao Xie 		goto out;
20816cdcec7SMiao Xie 
20916cdcec7SMiao Xie 	p = delayed_root->node_list.next;
21016cdcec7SMiao Xie 	node = list_entry(p, struct btrfs_delayed_node, n_list);
2116de5f18eSElena Reshetova 	refcount_inc(&node->refs);
21216cdcec7SMiao Xie out:
21316cdcec7SMiao Xie 	spin_unlock(&delayed_root->lock);
21416cdcec7SMiao Xie 
21516cdcec7SMiao Xie 	return node;
21616cdcec7SMiao Xie }
21716cdcec7SMiao Xie 
btrfs_next_delayed_node(struct btrfs_delayed_node * node)21848a3b636SEric Sandeen static struct btrfs_delayed_node *btrfs_next_delayed_node(
21916cdcec7SMiao Xie 						struct btrfs_delayed_node *node)
22016cdcec7SMiao Xie {
22116cdcec7SMiao Xie 	struct btrfs_delayed_root *delayed_root;
22216cdcec7SMiao Xie 	struct list_head *p;
22316cdcec7SMiao Xie 	struct btrfs_delayed_node *next = NULL;
22416cdcec7SMiao Xie 
22516cdcec7SMiao Xie 	delayed_root = node->root->fs_info->delayed_root;
22616cdcec7SMiao Xie 	spin_lock(&delayed_root->lock);
2277cf35d91SMiao Xie 	if (!test_bit(BTRFS_DELAYED_NODE_IN_LIST, &node->flags)) {
2287cf35d91SMiao Xie 		/* not in the list */
22916cdcec7SMiao Xie 		if (list_empty(&delayed_root->node_list))
23016cdcec7SMiao Xie 			goto out;
23116cdcec7SMiao Xie 		p = delayed_root->node_list.next;
23216cdcec7SMiao Xie 	} else if (list_is_last(&node->n_list, &delayed_root->node_list))
23316cdcec7SMiao Xie 		goto out;
23416cdcec7SMiao Xie 	else
23516cdcec7SMiao Xie 		p = node->n_list.next;
23616cdcec7SMiao Xie 
23716cdcec7SMiao Xie 	next = list_entry(p, struct btrfs_delayed_node, n_list);
2386de5f18eSElena Reshetova 	refcount_inc(&next->refs);
23916cdcec7SMiao Xie out:
24016cdcec7SMiao Xie 	spin_unlock(&delayed_root->lock);
24116cdcec7SMiao Xie 
24216cdcec7SMiao Xie 	return next;
24316cdcec7SMiao Xie }
24416cdcec7SMiao Xie 
__btrfs_release_delayed_node(struct btrfs_delayed_node * delayed_node,int mod)24516cdcec7SMiao Xie static void __btrfs_release_delayed_node(
24616cdcec7SMiao Xie 				struct btrfs_delayed_node *delayed_node,
24716cdcec7SMiao Xie 				int mod)
24816cdcec7SMiao Xie {
24916cdcec7SMiao Xie 	struct btrfs_delayed_root *delayed_root;
25016cdcec7SMiao Xie 
25116cdcec7SMiao Xie 	if (!delayed_node)
25216cdcec7SMiao Xie 		return;
25316cdcec7SMiao Xie 
25416cdcec7SMiao Xie 	delayed_root = delayed_node->root->fs_info->delayed_root;
25516cdcec7SMiao Xie 
25616cdcec7SMiao Xie 	mutex_lock(&delayed_node->mutex);
25716cdcec7SMiao Xie 	if (delayed_node->count)
25816cdcec7SMiao Xie 		btrfs_queue_delayed_node(delayed_root, delayed_node, mod);
25916cdcec7SMiao Xie 	else
26016cdcec7SMiao Xie 		btrfs_dequeue_delayed_node(delayed_root, delayed_node);
26116cdcec7SMiao Xie 	mutex_unlock(&delayed_node->mutex);
26216cdcec7SMiao Xie 
2636de5f18eSElena Reshetova 	if (refcount_dec_and_test(&delayed_node->refs)) {
26416cdcec7SMiao Xie 		struct btrfs_root *root = delayed_node->root;
265ec35e48bSChris Mason 
26616cdcec7SMiao Xie 		spin_lock(&root->inode_lock);
267ec35e48bSChris Mason 		/*
268ec35e48bSChris Mason 		 * Once our refcount goes to zero, nobody is allowed to bump it
269ec35e48bSChris Mason 		 * back up.  We can delete it now.
270ec35e48bSChris Mason 		 */
271ec35e48bSChris Mason 		ASSERT(refcount_read(&delayed_node->refs) == 0);
272088aea3bSDavid Sterba 		radix_tree_delete(&root->delayed_nodes_tree,
273088aea3bSDavid Sterba 				  delayed_node->inode_id);
27416cdcec7SMiao Xie 		spin_unlock(&root->inode_lock);
27596493031SJeff Mahoney 		kmem_cache_free(delayed_node_cache, delayed_node);
27616cdcec7SMiao Xie 	}
27716cdcec7SMiao Xie }
27816cdcec7SMiao Xie 
btrfs_release_delayed_node(struct btrfs_delayed_node * node)27916cdcec7SMiao Xie static inline void btrfs_release_delayed_node(struct btrfs_delayed_node *node)
28016cdcec7SMiao Xie {
28116cdcec7SMiao Xie 	__btrfs_release_delayed_node(node, 0);
28216cdcec7SMiao Xie }
28316cdcec7SMiao Xie 
btrfs_first_prepared_delayed_node(struct btrfs_delayed_root * delayed_root)28448a3b636SEric Sandeen static struct btrfs_delayed_node *btrfs_first_prepared_delayed_node(
28516cdcec7SMiao Xie 					struct btrfs_delayed_root *delayed_root)
28616cdcec7SMiao Xie {
28716cdcec7SMiao Xie 	struct list_head *p;
28816cdcec7SMiao Xie 	struct btrfs_delayed_node *node = NULL;
28916cdcec7SMiao Xie 
29016cdcec7SMiao Xie 	spin_lock(&delayed_root->lock);
29116cdcec7SMiao Xie 	if (list_empty(&delayed_root->prepare_list))
29216cdcec7SMiao Xie 		goto out;
29316cdcec7SMiao Xie 
29416cdcec7SMiao Xie 	p = delayed_root->prepare_list.next;
29516cdcec7SMiao Xie 	list_del_init(p);
29616cdcec7SMiao Xie 	node = list_entry(p, struct btrfs_delayed_node, p_list);
2976de5f18eSElena Reshetova 	refcount_inc(&node->refs);
29816cdcec7SMiao Xie out:
29916cdcec7SMiao Xie 	spin_unlock(&delayed_root->lock);
30016cdcec7SMiao Xie 
30116cdcec7SMiao Xie 	return node;
30216cdcec7SMiao Xie }
30316cdcec7SMiao Xie 
btrfs_release_prepared_delayed_node(struct btrfs_delayed_node * node)30416cdcec7SMiao Xie static inline void btrfs_release_prepared_delayed_node(
30516cdcec7SMiao Xie 					struct btrfs_delayed_node *node)
30616cdcec7SMiao Xie {
30716cdcec7SMiao Xie 	__btrfs_release_delayed_node(node, 1);
30816cdcec7SMiao Xie }
30916cdcec7SMiao Xie 
btrfs_alloc_delayed_item(u16 data_len,struct btrfs_delayed_node * node,enum btrfs_delayed_item_type type)3104c469798SFilipe Manana static struct btrfs_delayed_item *btrfs_alloc_delayed_item(u16 data_len,
3114c469798SFilipe Manana 					   struct btrfs_delayed_node *node,
3124c469798SFilipe Manana 					   enum btrfs_delayed_item_type type)
31316cdcec7SMiao Xie {
31416cdcec7SMiao Xie 	struct btrfs_delayed_item *item;
3154c469798SFilipe Manana 
31675f5f60bSGustavo A. R. Silva 	item = kmalloc(struct_size(item, data, data_len), GFP_NOFS);
31716cdcec7SMiao Xie 	if (item) {
31816cdcec7SMiao Xie 		item->data_len = data_len;
3194c469798SFilipe Manana 		item->type = type;
32016cdcec7SMiao Xie 		item->bytes_reserved = 0;
32196d89923SFilipe Manana 		item->delayed_node = node;
32296d89923SFilipe Manana 		RB_CLEAR_NODE(&item->rb_node);
32330b80f3cSFilipe Manana 		INIT_LIST_HEAD(&item->log_list);
32430b80f3cSFilipe Manana 		item->logged = false;
325089e77e1SElena Reshetova 		refcount_set(&item->refs, 1);
32616cdcec7SMiao Xie 	}
32716cdcec7SMiao Xie 	return item;
32816cdcec7SMiao Xie }
32916cdcec7SMiao Xie 
33016cdcec7SMiao Xie /*
33116cdcec7SMiao Xie  * __btrfs_lookup_delayed_item - look up the delayed item by key
33216cdcec7SMiao Xie  * @delayed_node: pointer to the delayed node
33396d89923SFilipe Manana  * @index:	  the dir index value to lookup (offset of a dir index key)
33416cdcec7SMiao Xie  *
33516cdcec7SMiao Xie  * Note: if we don't find the right item, we will return the prev item and
33616cdcec7SMiao Xie  * the next item.
33716cdcec7SMiao Xie  */
__btrfs_lookup_delayed_item(struct rb_root * root,u64 index)33816cdcec7SMiao Xie static struct btrfs_delayed_item *__btrfs_lookup_delayed_item(
33916cdcec7SMiao Xie 				struct rb_root *root,
3404cbf37f5SFilipe Manana 				u64 index)
34116cdcec7SMiao Xie {
3424cbf37f5SFilipe Manana 	struct rb_node *node = root->rb_node;
34316cdcec7SMiao Xie 	struct btrfs_delayed_item *delayed_item = NULL;
34416cdcec7SMiao Xie 
34516cdcec7SMiao Xie 	while (node) {
34616cdcec7SMiao Xie 		delayed_item = rb_entry(node, struct btrfs_delayed_item,
34716cdcec7SMiao Xie 					rb_node);
34896d89923SFilipe Manana 		if (delayed_item->index < index)
34916cdcec7SMiao Xie 			node = node->rb_right;
35096d89923SFilipe Manana 		else if (delayed_item->index > index)
35116cdcec7SMiao Xie 			node = node->rb_left;
35216cdcec7SMiao Xie 		else
35316cdcec7SMiao Xie 			return delayed_item;
35416cdcec7SMiao Xie 	}
35516cdcec7SMiao Xie 
35616cdcec7SMiao Xie 	return NULL;
35716cdcec7SMiao Xie }
35816cdcec7SMiao Xie 
__btrfs_add_delayed_item(struct btrfs_delayed_node * delayed_node,struct btrfs_delayed_item * ins)35916cdcec7SMiao Xie static int __btrfs_add_delayed_item(struct btrfs_delayed_node *delayed_node,
360c9d02ab4SFilipe Manana 				    struct btrfs_delayed_item *ins)
36116cdcec7SMiao Xie {
36216cdcec7SMiao Xie 	struct rb_node **p, *node;
36316cdcec7SMiao Xie 	struct rb_node *parent_node = NULL;
36403a1d4c8SLiu Bo 	struct rb_root_cached *root;
36516cdcec7SMiao Xie 	struct btrfs_delayed_item *item;
36603a1d4c8SLiu Bo 	bool leftmost = true;
36716cdcec7SMiao Xie 
3684c469798SFilipe Manana 	if (ins->type == BTRFS_DELAYED_INSERTION_ITEM)
36916cdcec7SMiao Xie 		root = &delayed_node->ins_root;
37016cdcec7SMiao Xie 	else
3714c469798SFilipe Manana 		root = &delayed_node->del_root;
3724c469798SFilipe Manana 
37303a1d4c8SLiu Bo 	p = &root->rb_root.rb_node;
37416cdcec7SMiao Xie 	node = &ins->rb_node;
37516cdcec7SMiao Xie 
37616cdcec7SMiao Xie 	while (*p) {
37716cdcec7SMiao Xie 		parent_node = *p;
37816cdcec7SMiao Xie 		item = rb_entry(parent_node, struct btrfs_delayed_item,
37916cdcec7SMiao Xie 				 rb_node);
38016cdcec7SMiao Xie 
38196d89923SFilipe Manana 		if (item->index < ins->index) {
38216cdcec7SMiao Xie 			p = &(*p)->rb_right;
38303a1d4c8SLiu Bo 			leftmost = false;
38496d89923SFilipe Manana 		} else if (item->index > ins->index) {
38516cdcec7SMiao Xie 			p = &(*p)->rb_left;
38603a1d4c8SLiu Bo 		} else {
38716cdcec7SMiao Xie 			return -EEXIST;
38816cdcec7SMiao Xie 		}
38903a1d4c8SLiu Bo 	}
39016cdcec7SMiao Xie 
39116cdcec7SMiao Xie 	rb_link_node(node, parent_node, p);
39203a1d4c8SLiu Bo 	rb_insert_color_cached(node, root, leftmost);
393a176affeSFilipe Manana 
3944c469798SFilipe Manana 	if (ins->type == BTRFS_DELAYED_INSERTION_ITEM &&
39596d89923SFilipe Manana 	    ins->index >= delayed_node->index_cnt)
39696d89923SFilipe Manana 		delayed_node->index_cnt = ins->index + 1;
39716cdcec7SMiao Xie 
39816cdcec7SMiao Xie 	delayed_node->count++;
39916cdcec7SMiao Xie 	atomic_inc(&delayed_node->root->fs_info->delayed_root->items);
40016cdcec7SMiao Xie 	return 0;
40116cdcec7SMiao Xie }
40216cdcec7SMiao Xie 
finish_one_item(struct btrfs_delayed_root * delayed_root)403de3cb945SChris Mason static void finish_one_item(struct btrfs_delayed_root *delayed_root)
404de3cb945SChris Mason {
405de3cb945SChris Mason 	int seq = atomic_inc_return(&delayed_root->items_seq);
406ee863954SDavid Sterba 
407093258e6SDavid Sterba 	/* atomic_dec_return implies a barrier */
408de3cb945SChris Mason 	if ((atomic_dec_return(&delayed_root->items) <
409093258e6SDavid Sterba 	    BTRFS_DELAYED_BACKGROUND || seq % BTRFS_DELAYED_BATCH == 0))
410093258e6SDavid Sterba 		cond_wake_up_nomb(&delayed_root->wait);
411de3cb945SChris Mason }
412de3cb945SChris Mason 
__btrfs_remove_delayed_item(struct btrfs_delayed_item * delayed_item)41316cdcec7SMiao Xie static void __btrfs_remove_delayed_item(struct btrfs_delayed_item *delayed_item)
41416cdcec7SMiao Xie {
415a57c2d4eSFilipe Manana 	struct btrfs_delayed_node *delayed_node = delayed_item->delayed_node;
41603a1d4c8SLiu Bo 	struct rb_root_cached *root;
41716cdcec7SMiao Xie 	struct btrfs_delayed_root *delayed_root;
41816cdcec7SMiao Xie 
41996d89923SFilipe Manana 	/* Not inserted, ignore it. */
42096d89923SFilipe Manana 	if (RB_EMPTY_NODE(&delayed_item->rb_node))
421933c22a7SQu Wenruo 		return;
42296d89923SFilipe Manana 
423a57c2d4eSFilipe Manana 	/* If it's in a rbtree, then we need to have delayed node locked. */
424a57c2d4eSFilipe Manana 	lockdep_assert_held(&delayed_node->mutex);
425a57c2d4eSFilipe Manana 
426a57c2d4eSFilipe Manana 	delayed_root = delayed_node->root->fs_info->delayed_root;
42716cdcec7SMiao Xie 
4284c469798SFilipe Manana 	if (delayed_item->type == BTRFS_DELAYED_INSERTION_ITEM)
429a57c2d4eSFilipe Manana 		root = &delayed_node->ins_root;
43016cdcec7SMiao Xie 	else
431a57c2d4eSFilipe Manana 		root = &delayed_node->del_root;
43216cdcec7SMiao Xie 
43303a1d4c8SLiu Bo 	rb_erase_cached(&delayed_item->rb_node, root);
43496d89923SFilipe Manana 	RB_CLEAR_NODE(&delayed_item->rb_node);
435a57c2d4eSFilipe Manana 	delayed_node->count--;
436de3cb945SChris Mason 
437de3cb945SChris Mason 	finish_one_item(delayed_root);
43816cdcec7SMiao Xie }
43916cdcec7SMiao Xie 
btrfs_release_delayed_item(struct btrfs_delayed_item * item)44016cdcec7SMiao Xie static void btrfs_release_delayed_item(struct btrfs_delayed_item *item)
44116cdcec7SMiao Xie {
44216cdcec7SMiao Xie 	if (item) {
44316cdcec7SMiao Xie 		__btrfs_remove_delayed_item(item);
444089e77e1SElena Reshetova 		if (refcount_dec_and_test(&item->refs))
44516cdcec7SMiao Xie 			kfree(item);
44616cdcec7SMiao Xie 	}
44716cdcec7SMiao Xie }
44816cdcec7SMiao Xie 
__btrfs_first_delayed_insertion_item(struct btrfs_delayed_node * delayed_node)44948a3b636SEric Sandeen static struct btrfs_delayed_item *__btrfs_first_delayed_insertion_item(
45016cdcec7SMiao Xie 					struct btrfs_delayed_node *delayed_node)
45116cdcec7SMiao Xie {
45216cdcec7SMiao Xie 	struct rb_node *p;
45316cdcec7SMiao Xie 	struct btrfs_delayed_item *item = NULL;
45416cdcec7SMiao Xie 
45503a1d4c8SLiu Bo 	p = rb_first_cached(&delayed_node->ins_root);
45616cdcec7SMiao Xie 	if (p)
45716cdcec7SMiao Xie 		item = rb_entry(p, struct btrfs_delayed_item, rb_node);
45816cdcec7SMiao Xie 
45916cdcec7SMiao Xie 	return item;
46016cdcec7SMiao Xie }
46116cdcec7SMiao Xie 
__btrfs_first_delayed_deletion_item(struct btrfs_delayed_node * delayed_node)46248a3b636SEric Sandeen static struct btrfs_delayed_item *__btrfs_first_delayed_deletion_item(
46316cdcec7SMiao Xie 					struct btrfs_delayed_node *delayed_node)
46416cdcec7SMiao Xie {
46516cdcec7SMiao Xie 	struct rb_node *p;
46616cdcec7SMiao Xie 	struct btrfs_delayed_item *item = NULL;
46716cdcec7SMiao Xie 
46803a1d4c8SLiu Bo 	p = rb_first_cached(&delayed_node->del_root);
46916cdcec7SMiao Xie 	if (p)
47016cdcec7SMiao Xie 		item = rb_entry(p, struct btrfs_delayed_item, rb_node);
47116cdcec7SMiao Xie 
47216cdcec7SMiao Xie 	return item;
47316cdcec7SMiao Xie }
47416cdcec7SMiao Xie 
__btrfs_next_delayed_item(struct btrfs_delayed_item * item)47548a3b636SEric Sandeen static struct btrfs_delayed_item *__btrfs_next_delayed_item(
47616cdcec7SMiao Xie 						struct btrfs_delayed_item *item)
47716cdcec7SMiao Xie {
47816cdcec7SMiao Xie 	struct rb_node *p;
47916cdcec7SMiao Xie 	struct btrfs_delayed_item *next = NULL;
48016cdcec7SMiao Xie 
48116cdcec7SMiao Xie 	p = rb_next(&item->rb_node);
48216cdcec7SMiao Xie 	if (p)
48316cdcec7SMiao Xie 		next = rb_entry(p, struct btrfs_delayed_item, rb_node);
48416cdcec7SMiao Xie 
48516cdcec7SMiao Xie 	return next;
48616cdcec7SMiao Xie }
48716cdcec7SMiao Xie 
btrfs_delayed_item_reserve_metadata(struct btrfs_trans_handle * trans,struct btrfs_delayed_item * item)48816cdcec7SMiao Xie static int btrfs_delayed_item_reserve_metadata(struct btrfs_trans_handle *trans,
48916cdcec7SMiao Xie 					       struct btrfs_delayed_item *item)
49016cdcec7SMiao Xie {
49116cdcec7SMiao Xie 	struct btrfs_block_rsv *src_rsv;
49216cdcec7SMiao Xie 	struct btrfs_block_rsv *dst_rsv;
493df492881SFilipe Manana 	struct btrfs_fs_info *fs_info = trans->fs_info;
49416cdcec7SMiao Xie 	u64 num_bytes;
49516cdcec7SMiao Xie 	int ret;
49616cdcec7SMiao Xie 
49716cdcec7SMiao Xie 	if (!trans->bytes_reserved)
49816cdcec7SMiao Xie 		return 0;
49916cdcec7SMiao Xie 
50016cdcec7SMiao Xie 	src_rsv = trans->block_rsv;
5010b246afaSJeff Mahoney 	dst_rsv = &fs_info->delayed_block_rsv;
50216cdcec7SMiao Xie 
5032bd36e7bSJosef Bacik 	num_bytes = btrfs_calc_insert_metadata_size(fs_info, 1);
504f218ea6cSQu Wenruo 
505f218ea6cSQu Wenruo 	/*
506f218ea6cSQu Wenruo 	 * Here we migrate space rsv from transaction rsv, since have already
507f218ea6cSQu Wenruo 	 * reserved space when starting a transaction.  So no need to reserve
508f218ea6cSQu Wenruo 	 * qgroup space here.
509f218ea6cSQu Wenruo 	 */
5103a584174SLu Fengqi 	ret = btrfs_block_rsv_migrate(src_rsv, dst_rsv, num_bytes, true);
5118c2a3ca2SJosef Bacik 	if (!ret) {
5120b246afaSJeff Mahoney 		trace_btrfs_space_reservation(fs_info, "delayed_item",
51396d89923SFilipe Manana 					      item->delayed_node->inode_id,
5148c2a3ca2SJosef Bacik 					      num_bytes, 1);
515763748b2SFilipe Manana 		/*
516763748b2SFilipe Manana 		 * For insertions we track reserved metadata space by accounting
517763748b2SFilipe Manana 		 * for the number of leaves that will be used, based on the delayed
518763748b2SFilipe Manana 		 * node's index_items_size field.
519763748b2SFilipe Manana 		 */
5204c469798SFilipe Manana 		if (item->type == BTRFS_DELAYED_DELETION_ITEM)
52116cdcec7SMiao Xie 			item->bytes_reserved = num_bytes;
5228c2a3ca2SJosef Bacik 	}
52316cdcec7SMiao Xie 
52416cdcec7SMiao Xie 	return ret;
52516cdcec7SMiao Xie }
52616cdcec7SMiao Xie 
btrfs_delayed_item_release_metadata(struct btrfs_root * root,struct btrfs_delayed_item * item)5274f5427ccSQu Wenruo static void btrfs_delayed_item_release_metadata(struct btrfs_root *root,
52816cdcec7SMiao Xie 						struct btrfs_delayed_item *item)
52916cdcec7SMiao Xie {
53019fd2949SMiao Xie 	struct btrfs_block_rsv *rsv;
5314f5427ccSQu Wenruo 	struct btrfs_fs_info *fs_info = root->fs_info;
53219fd2949SMiao Xie 
53316cdcec7SMiao Xie 	if (!item->bytes_reserved)
53416cdcec7SMiao Xie 		return;
53516cdcec7SMiao Xie 
5360b246afaSJeff Mahoney 	rsv = &fs_info->delayed_block_rsv;
537f218ea6cSQu Wenruo 	/*
538f218ea6cSQu Wenruo 	 * Check btrfs_delayed_item_reserve_metadata() to see why we don't need
539f218ea6cSQu Wenruo 	 * to release/reserve qgroup space.
540f218ea6cSQu Wenruo 	 */
5410b246afaSJeff Mahoney 	trace_btrfs_space_reservation(fs_info, "delayed_item",
54296d89923SFilipe Manana 				      item->delayed_node->inode_id,
54396d89923SFilipe Manana 				      item->bytes_reserved, 0);
54463f018beSNikolay Borisov 	btrfs_block_rsv_release(fs_info, rsv, item->bytes_reserved, NULL);
54516cdcec7SMiao Xie }
54616cdcec7SMiao Xie 
btrfs_delayed_item_release_leaves(struct btrfs_delayed_node * node,unsigned int num_leaves)547763748b2SFilipe Manana static void btrfs_delayed_item_release_leaves(struct btrfs_delayed_node *node,
548763748b2SFilipe Manana 					      unsigned int num_leaves)
549763748b2SFilipe Manana {
550763748b2SFilipe Manana 	struct btrfs_fs_info *fs_info = node->root->fs_info;
551763748b2SFilipe Manana 	const u64 bytes = btrfs_calc_insert_metadata_size(fs_info, num_leaves);
552763748b2SFilipe Manana 
553763748b2SFilipe Manana 	/* There are no space reservations during log replay, bail out. */
554763748b2SFilipe Manana 	if (test_bit(BTRFS_FS_LOG_RECOVERING, &fs_info->flags))
555763748b2SFilipe Manana 		return;
556763748b2SFilipe Manana 
557763748b2SFilipe Manana 	trace_btrfs_space_reservation(fs_info, "delayed_item", node->inode_id,
558763748b2SFilipe Manana 				      bytes, 0);
559763748b2SFilipe Manana 	btrfs_block_rsv_release(fs_info, &fs_info->delayed_block_rsv, bytes, NULL);
560763748b2SFilipe Manana }
561763748b2SFilipe Manana 
btrfs_delayed_inode_reserve_metadata(struct btrfs_trans_handle * trans,struct btrfs_root * root,struct btrfs_delayed_node * node)56216cdcec7SMiao Xie static int btrfs_delayed_inode_reserve_metadata(
56316cdcec7SMiao Xie 					struct btrfs_trans_handle *trans,
56416cdcec7SMiao Xie 					struct btrfs_root *root,
56516cdcec7SMiao Xie 					struct btrfs_delayed_node *node)
56616cdcec7SMiao Xie {
5670b246afaSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
56816cdcec7SMiao Xie 	struct btrfs_block_rsv *src_rsv;
56916cdcec7SMiao Xie 	struct btrfs_block_rsv *dst_rsv;
57016cdcec7SMiao Xie 	u64 num_bytes;
57116cdcec7SMiao Xie 	int ret;
57216cdcec7SMiao Xie 
57316cdcec7SMiao Xie 	src_rsv = trans->block_rsv;
5740b246afaSJeff Mahoney 	dst_rsv = &fs_info->delayed_block_rsv;
57516cdcec7SMiao Xie 
576bcacf5f3SJosef Bacik 	num_bytes = btrfs_calc_metadata_size(fs_info, 1);
577c06a0e12SJosef Bacik 
578c06a0e12SJosef Bacik 	/*
579c06a0e12SJosef Bacik 	 * btrfs_dirty_inode will update the inode under btrfs_join_transaction
580c06a0e12SJosef Bacik 	 * which doesn't reserve space for speed.  This is a problem since we
581c06a0e12SJosef Bacik 	 * still need to reserve space for this update, so try to reserve the
582c06a0e12SJosef Bacik 	 * space.
583c06a0e12SJosef Bacik 	 *
584c06a0e12SJosef Bacik 	 * Now if src_rsv == delalloc_block_rsv we'll let it just steal since
58569fe2d75SJosef Bacik 	 * we always reserve enough to update the inode item.
586c06a0e12SJosef Bacik 	 */
587e755d9abSChris Mason 	if (!src_rsv || (!trans->bytes_reserved &&
58866d8f3ddSMiao Xie 			 src_rsv->type != BTRFS_BLOCK_RSV_DELALLOC)) {
5894d14c5cdSNikolay Borisov 		ret = btrfs_qgroup_reserve_meta(root, num_bytes,
5904d14c5cdSNikolay Borisov 					  BTRFS_QGROUP_RSV_META_PREALLOC, true);
591f218ea6cSQu Wenruo 		if (ret < 0)
592f218ea6cSQu Wenruo 			return ret;
5939270501cSJosef Bacik 		ret = btrfs_block_rsv_add(fs_info, dst_rsv, num_bytes,
59408e007d2SMiao Xie 					  BTRFS_RESERVE_NO_FLUSH);
59598686ffcSNikolay Borisov 		/* NO_FLUSH could only fail with -ENOSPC */
59698686ffcSNikolay Borisov 		ASSERT(ret == 0 || ret == -ENOSPC);
59798686ffcSNikolay Borisov 		if (ret)
5984f5427ccSQu Wenruo 			btrfs_qgroup_free_meta_prealloc(root, num_bytes);
599f218ea6cSQu Wenruo 	} else {
60098686ffcSNikolay Borisov 		ret = btrfs_block_rsv_migrate(src_rsv, dst_rsv, num_bytes, true);
601c06a0e12SJosef Bacik 	}
602c06a0e12SJosef Bacik 
6038c2a3ca2SJosef Bacik 	if (!ret) {
6040b246afaSJeff Mahoney 		trace_btrfs_space_reservation(fs_info, "delayed_inode",
6058e3c9d3cSNikolay Borisov 					      node->inode_id, num_bytes, 1);
60616cdcec7SMiao Xie 		node->bytes_reserved = num_bytes;
6078c2a3ca2SJosef Bacik 	}
60816cdcec7SMiao Xie 
60916cdcec7SMiao Xie 	return ret;
61016cdcec7SMiao Xie }
61116cdcec7SMiao Xie 
btrfs_delayed_inode_release_metadata(struct btrfs_fs_info * fs_info,struct btrfs_delayed_node * node,bool qgroup_free)6122ff7e61eSJeff Mahoney static void btrfs_delayed_inode_release_metadata(struct btrfs_fs_info *fs_info,
6134f5427ccSQu Wenruo 						struct btrfs_delayed_node *node,
6144f5427ccSQu Wenruo 						bool qgroup_free)
61516cdcec7SMiao Xie {
61616cdcec7SMiao Xie 	struct btrfs_block_rsv *rsv;
61716cdcec7SMiao Xie 
61816cdcec7SMiao Xie 	if (!node->bytes_reserved)
61916cdcec7SMiao Xie 		return;
62016cdcec7SMiao Xie 
6210b246afaSJeff Mahoney 	rsv = &fs_info->delayed_block_rsv;
6220b246afaSJeff Mahoney 	trace_btrfs_space_reservation(fs_info, "delayed_inode",
6238c2a3ca2SJosef Bacik 				      node->inode_id, node->bytes_reserved, 0);
62463f018beSNikolay Borisov 	btrfs_block_rsv_release(fs_info, rsv, node->bytes_reserved, NULL);
6254f5427ccSQu Wenruo 	if (qgroup_free)
6264f5427ccSQu Wenruo 		btrfs_qgroup_free_meta_prealloc(node->root,
6274f5427ccSQu Wenruo 				node->bytes_reserved);
6284f5427ccSQu Wenruo 	else
6294f5427ccSQu Wenruo 		btrfs_qgroup_convert_reserved_meta(node->root,
6304f5427ccSQu Wenruo 				node->bytes_reserved);
63116cdcec7SMiao Xie 	node->bytes_reserved = 0;
63216cdcec7SMiao Xie }
63316cdcec7SMiao Xie 
63416cdcec7SMiao Xie /*
63506ac264fSFilipe Manana  * Insert a single delayed item or a batch of delayed items, as many as possible
63606ac264fSFilipe Manana  * that fit in a leaf. The delayed items (dir index keys) are sorted by their key
63706ac264fSFilipe Manana  * in the rbtree, and if there's a gap between two consecutive dir index items,
63806ac264fSFilipe Manana  * then it means at some point we had delayed dir indexes to add but they got
63906ac264fSFilipe Manana  * removed (by btrfs_delete_delayed_dir_index()) before we attempted to flush them
64006ac264fSFilipe Manana  * into the subvolume tree. Dir index keys also have their offsets coming from a
64106ac264fSFilipe Manana  * monotonically increasing counter, so we can't get new keys with an offset that
64206ac264fSFilipe Manana  * fits within a gap between delayed dir index items.
64316cdcec7SMiao Xie  */
btrfs_insert_delayed_item(struct btrfs_trans_handle * trans,struct btrfs_root * root,struct btrfs_path * path,struct btrfs_delayed_item * first_item)64416cdcec7SMiao Xie static int btrfs_insert_delayed_item(struct btrfs_trans_handle *trans,
64516cdcec7SMiao Xie 				     struct btrfs_root *root,
64616cdcec7SMiao Xie 				     struct btrfs_path *path,
647506650dcSFilipe Manana 				     struct btrfs_delayed_item *first_item)
64816cdcec7SMiao Xie {
649763748b2SFilipe Manana 	struct btrfs_fs_info *fs_info = root->fs_info;
650763748b2SFilipe Manana 	struct btrfs_delayed_node *node = first_item->delayed_node;
651b7ef5f3aSFilipe Manana 	LIST_HEAD(item_list);
652506650dcSFilipe Manana 	struct btrfs_delayed_item *curr;
653506650dcSFilipe Manana 	struct btrfs_delayed_item *next;
654763748b2SFilipe Manana 	const int max_size = BTRFS_LEAF_DATA_SIZE(fs_info);
655b7ef5f3aSFilipe Manana 	struct btrfs_item_batch batch;
65696d89923SFilipe Manana 	struct btrfs_key first_key;
6574c469798SFilipe Manana 	const u32 first_data_size = first_item->data_len;
658506650dcSFilipe Manana 	int total_size;
659506650dcSFilipe Manana 	char *ins_data = NULL;
66016cdcec7SMiao Xie 	int ret;
66171b68e9eSJosef Bacik 	bool continuous_keys_only = false;
66216cdcec7SMiao Xie 
663763748b2SFilipe Manana 	lockdep_assert_held(&node->mutex);
664763748b2SFilipe Manana 
665763748b2SFilipe Manana 	/*
66671b68e9eSJosef Bacik 	 * During normal operation the delayed index offset is continuously
66771b68e9eSJosef Bacik 	 * increasing, so we can batch insert all items as there will not be any
66871b68e9eSJosef Bacik 	 * overlapping keys in the tree.
66971b68e9eSJosef Bacik 	 *
67071b68e9eSJosef Bacik 	 * The exception to this is log replay, where we may have interleaved
67171b68e9eSJosef Bacik 	 * offsets in the tree, so our batch needs to be continuous keys only in
67271b68e9eSJosef Bacik 	 * order to ensure we do not end up with out of order items in our leaf.
67371b68e9eSJosef Bacik 	 */
67471b68e9eSJosef Bacik 	if (test_bit(BTRFS_FS_LOG_RECOVERING, &fs_info->flags))
67571b68e9eSJosef Bacik 		continuous_keys_only = true;
67671b68e9eSJosef Bacik 
67771b68e9eSJosef Bacik 	/*
678763748b2SFilipe Manana 	 * For delayed items to insert, we track reserved metadata bytes based
679763748b2SFilipe Manana 	 * on the number of leaves that we will use.
680763748b2SFilipe Manana 	 * See btrfs_insert_delayed_dir_index() and
681763748b2SFilipe Manana 	 * btrfs_delayed_item_reserve_metadata()).
682763748b2SFilipe Manana 	 */
683763748b2SFilipe Manana 	ASSERT(first_item->bytes_reserved == 0);
684763748b2SFilipe Manana 
685b7ef5f3aSFilipe Manana 	list_add_tail(&first_item->tree_list, &item_list);
6864c469798SFilipe Manana 	batch.total_data_size = first_data_size;
687b7ef5f3aSFilipe Manana 	batch.nr = 1;
6884c469798SFilipe Manana 	total_size = first_data_size + sizeof(struct btrfs_item);
689506650dcSFilipe Manana 	curr = first_item;
690506650dcSFilipe Manana 
691506650dcSFilipe Manana 	while (true) {
692506650dcSFilipe Manana 		int next_size;
693506650dcSFilipe Manana 
694506650dcSFilipe Manana 		next = __btrfs_next_delayed_item(curr);
69506ac264fSFilipe Manana 		if (!next)
696506650dcSFilipe Manana 			break;
697506650dcSFilipe Manana 
69871b68e9eSJosef Bacik 		/*
69971b68e9eSJosef Bacik 		 * We cannot allow gaps in the key space if we're doing log
70071b68e9eSJosef Bacik 		 * replay.
70171b68e9eSJosef Bacik 		 */
70296d89923SFilipe Manana 		if (continuous_keys_only && (next->index != curr->index + 1))
70371b68e9eSJosef Bacik 			break;
70471b68e9eSJosef Bacik 
705763748b2SFilipe Manana 		ASSERT(next->bytes_reserved == 0);
706763748b2SFilipe Manana 
707506650dcSFilipe Manana 		next_size = next->data_len + sizeof(struct btrfs_item);
708506650dcSFilipe Manana 		if (total_size + next_size > max_size)
709506650dcSFilipe Manana 			break;
710506650dcSFilipe Manana 
711b7ef5f3aSFilipe Manana 		list_add_tail(&next->tree_list, &item_list);
712b7ef5f3aSFilipe Manana 		batch.nr++;
713506650dcSFilipe Manana 		total_size += next_size;
714b7ef5f3aSFilipe Manana 		batch.total_data_size += next->data_len;
715506650dcSFilipe Manana 		curr = next;
716506650dcSFilipe Manana 	}
717506650dcSFilipe Manana 
718b7ef5f3aSFilipe Manana 	if (batch.nr == 1) {
71996d89923SFilipe Manana 		first_key.objectid = node->inode_id;
72096d89923SFilipe Manana 		first_key.type = BTRFS_DIR_INDEX_KEY;
72196d89923SFilipe Manana 		first_key.offset = first_item->index;
72296d89923SFilipe Manana 		batch.keys = &first_key;
7234c469798SFilipe Manana 		batch.data_sizes = &first_data_size;
724506650dcSFilipe Manana 	} else {
725b7ef5f3aSFilipe Manana 		struct btrfs_key *ins_keys;
726b7ef5f3aSFilipe Manana 		u32 *ins_sizes;
727506650dcSFilipe Manana 		int i = 0;
728506650dcSFilipe Manana 
729b7ef5f3aSFilipe Manana 		ins_data = kmalloc(batch.nr * sizeof(u32) +
730b7ef5f3aSFilipe Manana 				   batch.nr * sizeof(struct btrfs_key), GFP_NOFS);
731506650dcSFilipe Manana 		if (!ins_data) {
732506650dcSFilipe Manana 			ret = -ENOMEM;
733506650dcSFilipe Manana 			goto out;
734506650dcSFilipe Manana 		}
735506650dcSFilipe Manana 		ins_sizes = (u32 *)ins_data;
736b7ef5f3aSFilipe Manana 		ins_keys = (struct btrfs_key *)(ins_data + batch.nr * sizeof(u32));
737b7ef5f3aSFilipe Manana 		batch.keys = ins_keys;
738b7ef5f3aSFilipe Manana 		batch.data_sizes = ins_sizes;
739b7ef5f3aSFilipe Manana 		list_for_each_entry(curr, &item_list, tree_list) {
74096d89923SFilipe Manana 			ins_keys[i].objectid = node->inode_id;
74196d89923SFilipe Manana 			ins_keys[i].type = BTRFS_DIR_INDEX_KEY;
74296d89923SFilipe Manana 			ins_keys[i].offset = curr->index;
743506650dcSFilipe Manana 			ins_sizes[i] = curr->data_len;
744506650dcSFilipe Manana 			i++;
745506650dcSFilipe Manana 		}
746506650dcSFilipe Manana 	}
747506650dcSFilipe Manana 
748b7ef5f3aSFilipe Manana 	ret = btrfs_insert_empty_items(trans, root, path, &batch);
749506650dcSFilipe Manana 	if (ret)
750506650dcSFilipe Manana 		goto out;
75116cdcec7SMiao Xie 
752b7ef5f3aSFilipe Manana 	list_for_each_entry(curr, &item_list, tree_list) {
753506650dcSFilipe Manana 		char *data_ptr;
75416cdcec7SMiao Xie 
755506650dcSFilipe Manana 		data_ptr = btrfs_item_ptr(path->nodes[0], path->slots[0], char);
756506650dcSFilipe Manana 		write_extent_buffer(path->nodes[0], &curr->data,
757506650dcSFilipe Manana 				    (unsigned long)data_ptr, curr->data_len);
758506650dcSFilipe Manana 		path->slots[0]++;
75916cdcec7SMiao Xie 	}
76016cdcec7SMiao Xie 
76116cdcec7SMiao Xie 	/*
762506650dcSFilipe Manana 	 * Now release our path before releasing the delayed items and their
763506650dcSFilipe Manana 	 * metadata reservations, so that we don't block other tasks for more
764506650dcSFilipe Manana 	 * time than needed.
76516cdcec7SMiao Xie 	 */
766506650dcSFilipe Manana 	btrfs_release_path(path);
767506650dcSFilipe Manana 
768763748b2SFilipe Manana 	ASSERT(node->index_item_leaves > 0);
769763748b2SFilipe Manana 
77071b68e9eSJosef Bacik 	/*
77171b68e9eSJosef Bacik 	 * For normal operations we will batch an entire leaf's worth of delayed
77271b68e9eSJosef Bacik 	 * items, so if there are more items to process we can decrement
77371b68e9eSJosef Bacik 	 * index_item_leaves by 1 as we inserted 1 leaf's worth of items.
77471b68e9eSJosef Bacik 	 *
77571b68e9eSJosef Bacik 	 * However for log replay we may not have inserted an entire leaf's
77671b68e9eSJosef Bacik 	 * worth of items, we may have not had continuous items, so decrementing
77771b68e9eSJosef Bacik 	 * here would mess up the index_item_leaves accounting.  For this case
77871b68e9eSJosef Bacik 	 * only clean up the accounting when there are no items left.
77971b68e9eSJosef Bacik 	 */
78071b68e9eSJosef Bacik 	if (next && !continuous_keys_only) {
781763748b2SFilipe Manana 		/*
782763748b2SFilipe Manana 		 * We inserted one batch of items into a leaf a there are more
783763748b2SFilipe Manana 		 * items to flush in a future batch, now release one unit of
784763748b2SFilipe Manana 		 * metadata space from the delayed block reserve, corresponding
785763748b2SFilipe Manana 		 * the leaf we just flushed to.
786763748b2SFilipe Manana 		 */
787763748b2SFilipe Manana 		btrfs_delayed_item_release_leaves(node, 1);
788763748b2SFilipe Manana 		node->index_item_leaves--;
78971b68e9eSJosef Bacik 	} else if (!next) {
790763748b2SFilipe Manana 		/*
791763748b2SFilipe Manana 		 * There are no more items to insert. We can have a number of
792763748b2SFilipe Manana 		 * reserved leaves > 1 here - this happens when many dir index
793763748b2SFilipe Manana 		 * items are added and then removed before they are flushed (file
794763748b2SFilipe Manana 		 * names with a very short life, never span a transaction). So
795763748b2SFilipe Manana 		 * release all remaining leaves.
796763748b2SFilipe Manana 		 */
797763748b2SFilipe Manana 		btrfs_delayed_item_release_leaves(node, node->index_item_leaves);
798763748b2SFilipe Manana 		node->index_item_leaves = 0;
799763748b2SFilipe Manana 	}
800763748b2SFilipe Manana 
801b7ef5f3aSFilipe Manana 	list_for_each_entry_safe(curr, next, &item_list, tree_list) {
802506650dcSFilipe Manana 		list_del(&curr->tree_list);
803506650dcSFilipe Manana 		btrfs_release_delayed_item(curr);
804506650dcSFilipe Manana 	}
805506650dcSFilipe Manana out:
806506650dcSFilipe Manana 	kfree(ins_data);
807506650dcSFilipe Manana 	return ret;
808506650dcSFilipe Manana }
809506650dcSFilipe Manana 
btrfs_insert_delayed_items(struct btrfs_trans_handle * trans,struct btrfs_path * path,struct btrfs_root * root,struct btrfs_delayed_node * node)81016cdcec7SMiao Xie static int btrfs_insert_delayed_items(struct btrfs_trans_handle *trans,
81116cdcec7SMiao Xie 				      struct btrfs_path *path,
81216cdcec7SMiao Xie 				      struct btrfs_root *root,
81316cdcec7SMiao Xie 				      struct btrfs_delayed_node *node)
81416cdcec7SMiao Xie {
81516cdcec7SMiao Xie 	int ret = 0;
81616cdcec7SMiao Xie 
817506650dcSFilipe Manana 	while (ret == 0) {
818506650dcSFilipe Manana 		struct btrfs_delayed_item *curr;
819506650dcSFilipe Manana 
82016cdcec7SMiao Xie 		mutex_lock(&node->mutex);
82116cdcec7SMiao Xie 		curr = __btrfs_first_delayed_insertion_item(node);
822506650dcSFilipe Manana 		if (!curr) {
823506650dcSFilipe Manana 			mutex_unlock(&node->mutex);
824506650dcSFilipe Manana 			break;
825506650dcSFilipe Manana 		}
82616cdcec7SMiao Xie 		ret = btrfs_insert_delayed_item(trans, root, path, curr);
827506650dcSFilipe Manana 		mutex_unlock(&node->mutex);
82816cdcec7SMiao Xie 	}
82916cdcec7SMiao Xie 
83016cdcec7SMiao Xie 	return ret;
83116cdcec7SMiao Xie }
83216cdcec7SMiao Xie 
btrfs_batch_delete_items(struct btrfs_trans_handle * trans,struct btrfs_root * root,struct btrfs_path * path,struct btrfs_delayed_item * item)83316cdcec7SMiao Xie static int btrfs_batch_delete_items(struct btrfs_trans_handle *trans,
83416cdcec7SMiao Xie 				    struct btrfs_root *root,
83516cdcec7SMiao Xie 				    struct btrfs_path *path,
83616cdcec7SMiao Xie 				    struct btrfs_delayed_item *item)
83716cdcec7SMiao Xie {
83896d89923SFilipe Manana 	const u64 ino = item->delayed_node->inode_id;
8391f4f639fSNikolay Borisov 	struct btrfs_fs_info *fs_info = root->fs_info;
84016cdcec7SMiao Xie 	struct btrfs_delayed_item *curr, *next;
841659192e6SFilipe Manana 	struct extent_buffer *leaf = path->nodes[0];
8424bd02d90SFilipe Manana 	LIST_HEAD(batch_list);
8434bd02d90SFilipe Manana 	int nitems, slot, last_slot;
8444bd02d90SFilipe Manana 	int ret;
8451f4f639fSNikolay Borisov 	u64 total_reserved_size = item->bytes_reserved;
84616cdcec7SMiao Xie 
847659192e6SFilipe Manana 	ASSERT(leaf != NULL);
84816cdcec7SMiao Xie 
8494bd02d90SFilipe Manana 	slot = path->slots[0];
8504bd02d90SFilipe Manana 	last_slot = btrfs_header_nritems(leaf) - 1;
851659192e6SFilipe Manana 	/*
852659192e6SFilipe Manana 	 * Our caller always gives us a path pointing to an existing item, so
853659192e6SFilipe Manana 	 * this can not happen.
854659192e6SFilipe Manana 	 */
8554bd02d90SFilipe Manana 	ASSERT(slot <= last_slot);
8564bd02d90SFilipe Manana 	if (WARN_ON(slot > last_slot))
857659192e6SFilipe Manana 		return -ENOENT;
85816cdcec7SMiao Xie 
8594bd02d90SFilipe Manana 	nitems = 1;
8604bd02d90SFilipe Manana 	curr = item;
8614bd02d90SFilipe Manana 	list_add_tail(&curr->tree_list, &batch_list);
86216cdcec7SMiao Xie 
8634bd02d90SFilipe Manana 	/*
8644bd02d90SFilipe Manana 	 * Keep checking if the next delayed item matches the next item in the
8654bd02d90SFilipe Manana 	 * leaf - if so, we can add it to the batch of items to delete from the
8664bd02d90SFilipe Manana 	 * leaf.
8674bd02d90SFilipe Manana 	 */
8684bd02d90SFilipe Manana 	while (slot < last_slot) {
8694bd02d90SFilipe Manana 		struct btrfs_key key;
8704bd02d90SFilipe Manana 
87116cdcec7SMiao Xie 		next = __btrfs_next_delayed_item(curr);
87216cdcec7SMiao Xie 		if (!next)
87316cdcec7SMiao Xie 			break;
87416cdcec7SMiao Xie 
8754bd02d90SFilipe Manana 		slot++;
8764bd02d90SFilipe Manana 		btrfs_item_key_to_cpu(leaf, &key, slot);
87796d89923SFilipe Manana 		if (key.objectid != ino ||
87896d89923SFilipe Manana 		    key.type != BTRFS_DIR_INDEX_KEY ||
87996d89923SFilipe Manana 		    key.offset != next->index)
88016cdcec7SMiao Xie 			break;
8814bd02d90SFilipe Manana 		nitems++;
8824bd02d90SFilipe Manana 		curr = next;
8834bd02d90SFilipe Manana 		list_add_tail(&curr->tree_list, &batch_list);
8841f4f639fSNikolay Borisov 		total_reserved_size += curr->bytes_reserved;
88516cdcec7SMiao Xie 	}
88616cdcec7SMiao Xie 
88716cdcec7SMiao Xie 	ret = btrfs_del_items(trans, root, path, path->slots[0], nitems);
88816cdcec7SMiao Xie 	if (ret)
8894bd02d90SFilipe Manana 		return ret;
89016cdcec7SMiao Xie 
8911f4f639fSNikolay Borisov 	/* In case of BTRFS_FS_LOG_RECOVERING items won't have reserved space */
8921f4f639fSNikolay Borisov 	if (total_reserved_size > 0) {
8931f4f639fSNikolay Borisov 		/*
8941f4f639fSNikolay Borisov 		 * Check btrfs_delayed_item_reserve_metadata() to see why we
8951f4f639fSNikolay Borisov 		 * don't need to release/reserve qgroup space.
8961f4f639fSNikolay Borisov 		 */
89796d89923SFilipe Manana 		trace_btrfs_space_reservation(fs_info, "delayed_item", ino,
89896d89923SFilipe Manana 					      total_reserved_size, 0);
8991f4f639fSNikolay Borisov 		btrfs_block_rsv_release(fs_info, &fs_info->delayed_block_rsv,
9001f4f639fSNikolay Borisov 					total_reserved_size, NULL);
9011f4f639fSNikolay Borisov 	}
9021f4f639fSNikolay Borisov 
9034bd02d90SFilipe Manana 	list_for_each_entry_safe(curr, next, &batch_list, tree_list) {
90416cdcec7SMiao Xie 		list_del(&curr->tree_list);
90516cdcec7SMiao Xie 		btrfs_release_delayed_item(curr);
90616cdcec7SMiao Xie 	}
90716cdcec7SMiao Xie 
9084bd02d90SFilipe Manana 	return 0;
90916cdcec7SMiao Xie }
91016cdcec7SMiao Xie 
btrfs_delete_delayed_items(struct btrfs_trans_handle * trans,struct btrfs_path * path,struct btrfs_root * root,struct btrfs_delayed_node * node)91116cdcec7SMiao Xie static int btrfs_delete_delayed_items(struct btrfs_trans_handle *trans,
91216cdcec7SMiao Xie 				      struct btrfs_path *path,
91316cdcec7SMiao Xie 				      struct btrfs_root *root,
91416cdcec7SMiao Xie 				      struct btrfs_delayed_node *node)
91516cdcec7SMiao Xie {
91696d89923SFilipe Manana 	struct btrfs_key key;
91716cdcec7SMiao Xie 	int ret = 0;
91816cdcec7SMiao Xie 
91996d89923SFilipe Manana 	key.objectid = node->inode_id;
92096d89923SFilipe Manana 	key.type = BTRFS_DIR_INDEX_KEY;
92196d89923SFilipe Manana 
92236baa2c7SFilipe Manana 	while (ret == 0) {
92336baa2c7SFilipe Manana 		struct btrfs_delayed_item *item;
92416cdcec7SMiao Xie 
92536baa2c7SFilipe Manana 		mutex_lock(&node->mutex);
92636baa2c7SFilipe Manana 		item = __btrfs_first_delayed_deletion_item(node);
92736baa2c7SFilipe Manana 		if (!item) {
92862095265SFengguang Wu 			mutex_unlock(&node->mutex);
92936baa2c7SFilipe Manana 			break;
93016cdcec7SMiao Xie 		}
93116cdcec7SMiao Xie 
93296d89923SFilipe Manana 		key.offset = item->index;
93396d89923SFilipe Manana 		ret = btrfs_search_slot(trans, root, &key, path, -1, 1);
93436baa2c7SFilipe Manana 		if (ret > 0) {
93536baa2c7SFilipe Manana 			/*
93636baa2c7SFilipe Manana 			 * There's no matching item in the leaf. This means we
93736baa2c7SFilipe Manana 			 * have already deleted this item in a past run of the
93836baa2c7SFilipe Manana 			 * delayed items. We ignore errors when running delayed
93936baa2c7SFilipe Manana 			 * items from an async context, through a work queue job
94036baa2c7SFilipe Manana 			 * running btrfs_async_run_delayed_root(), and don't
94136baa2c7SFilipe Manana 			 * release delayed items that failed to complete. This
94236baa2c7SFilipe Manana 			 * is because we will retry later, and at transaction
94336baa2c7SFilipe Manana 			 * commit time we always run delayed items and will
94436baa2c7SFilipe Manana 			 * then deal with errors if they fail to run again.
94536baa2c7SFilipe Manana 			 *
94636baa2c7SFilipe Manana 			 * So just release delayed items for which we can't find
94736baa2c7SFilipe Manana 			 * an item in the tree, and move to the next item.
94836baa2c7SFilipe Manana 			 */
949945d8962SChris Mason 			btrfs_release_path(path);
95036baa2c7SFilipe Manana 			btrfs_release_delayed_item(item);
95136baa2c7SFilipe Manana 			ret = 0;
95236baa2c7SFilipe Manana 		} else if (ret == 0) {
95336baa2c7SFilipe Manana 			ret = btrfs_batch_delete_items(trans, root, path, item);
95436baa2c7SFilipe Manana 			btrfs_release_path(path);
95536baa2c7SFilipe Manana 		}
95616cdcec7SMiao Xie 
95736baa2c7SFilipe Manana 		/*
95836baa2c7SFilipe Manana 		 * We unlock and relock on each iteration, this is to prevent
95936baa2c7SFilipe Manana 		 * blocking other tasks for too long while we are being run from
96036baa2c7SFilipe Manana 		 * the async context (work queue job). Those tasks are typically
96136baa2c7SFilipe Manana 		 * running system calls like creat/mkdir/rename/unlink/etc which
96236baa2c7SFilipe Manana 		 * need to add delayed items to this delayed node.
96336baa2c7SFilipe Manana 		 */
96416cdcec7SMiao Xie 		mutex_unlock(&node->mutex);
96536baa2c7SFilipe Manana 	}
96636baa2c7SFilipe Manana 
96716cdcec7SMiao Xie 	return ret;
96816cdcec7SMiao Xie }
96916cdcec7SMiao Xie 
btrfs_release_delayed_inode(struct btrfs_delayed_node * delayed_node)97016cdcec7SMiao Xie static void btrfs_release_delayed_inode(struct btrfs_delayed_node *delayed_node)
97116cdcec7SMiao Xie {
97216cdcec7SMiao Xie 	struct btrfs_delayed_root *delayed_root;
97316cdcec7SMiao Xie 
9747cf35d91SMiao Xie 	if (delayed_node &&
9757cf35d91SMiao Xie 	    test_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &delayed_node->flags)) {
976*f379c3f4SDavid Sterba 		ASSERT(delayed_node->root);
9777cf35d91SMiao Xie 		clear_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &delayed_node->flags);
97816cdcec7SMiao Xie 		delayed_node->count--;
97916cdcec7SMiao Xie 
98016cdcec7SMiao Xie 		delayed_root = delayed_node->root->fs_info->delayed_root;
981de3cb945SChris Mason 		finish_one_item(delayed_root);
98216cdcec7SMiao Xie 	}
98316cdcec7SMiao Xie }
98416cdcec7SMiao Xie 
btrfs_release_delayed_iref(struct btrfs_delayed_node * delayed_node)98567de1176SMiao Xie static void btrfs_release_delayed_iref(struct btrfs_delayed_node *delayed_node)
98667de1176SMiao Xie {
987a4cb90dcSJosef Bacik 
988a4cb90dcSJosef Bacik 	if (test_and_clear_bit(BTRFS_DELAYED_NODE_DEL_IREF, &delayed_node->flags)) {
98967de1176SMiao Xie 		struct btrfs_delayed_root *delayed_root;
99067de1176SMiao Xie 
99167de1176SMiao Xie 		ASSERT(delayed_node->root);
99267de1176SMiao Xie 		delayed_node->count--;
99367de1176SMiao Xie 
99467de1176SMiao Xie 		delayed_root = delayed_node->root->fs_info->delayed_root;
99567de1176SMiao Xie 		finish_one_item(delayed_root);
99667de1176SMiao Xie 	}
997a4cb90dcSJosef Bacik }
99867de1176SMiao Xie 
__btrfs_update_delayed_inode(struct btrfs_trans_handle * trans,struct btrfs_root * root,struct btrfs_path * path,struct btrfs_delayed_node * node)9990e8c36a9SMiao Xie static int __btrfs_update_delayed_inode(struct btrfs_trans_handle *trans,
100016cdcec7SMiao Xie 					struct btrfs_root *root,
100116cdcec7SMiao Xie 					struct btrfs_path *path,
100216cdcec7SMiao Xie 					struct btrfs_delayed_node *node)
100316cdcec7SMiao Xie {
10042ff7e61eSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
100516cdcec7SMiao Xie 	struct btrfs_key key;
100616cdcec7SMiao Xie 	struct btrfs_inode_item *inode_item;
100716cdcec7SMiao Xie 	struct extent_buffer *leaf;
100867de1176SMiao Xie 	int mod;
100916cdcec7SMiao Xie 	int ret;
101016cdcec7SMiao Xie 
101116cdcec7SMiao Xie 	key.objectid = node->inode_id;
1012962a298fSDavid Sterba 	key.type = BTRFS_INODE_ITEM_KEY;
101316cdcec7SMiao Xie 	key.offset = 0;
10140e8c36a9SMiao Xie 
101567de1176SMiao Xie 	if (test_bit(BTRFS_DELAYED_NODE_DEL_IREF, &node->flags))
101667de1176SMiao Xie 		mod = -1;
101767de1176SMiao Xie 	else
101867de1176SMiao Xie 		mod = 1;
101967de1176SMiao Xie 
102067de1176SMiao Xie 	ret = btrfs_lookup_inode(trans, root, path, &key, mod);
1021bb385bedSJosef Bacik 	if (ret > 0)
1022bb385bedSJosef Bacik 		ret = -ENOENT;
1023bb385bedSJosef Bacik 	if (ret < 0)
1024bb385bedSJosef Bacik 		goto out;
102516cdcec7SMiao Xie 
102616cdcec7SMiao Xie 	leaf = path->nodes[0];
102716cdcec7SMiao Xie 	inode_item = btrfs_item_ptr(leaf, path->slots[0],
102816cdcec7SMiao Xie 				    struct btrfs_inode_item);
102916cdcec7SMiao Xie 	write_extent_buffer(leaf, &node->inode_item, (unsigned long)inode_item,
103016cdcec7SMiao Xie 			    sizeof(struct btrfs_inode_item));
1031d5e09e38SFilipe Manana 	btrfs_mark_buffer_dirty(trans, leaf);
103216cdcec7SMiao Xie 
103367de1176SMiao Xie 	if (!test_bit(BTRFS_DELAYED_NODE_DEL_IREF, &node->flags))
1034a4cb90dcSJosef Bacik 		goto out;
103567de1176SMiao Xie 
103667de1176SMiao Xie 	path->slots[0]++;
103767de1176SMiao Xie 	if (path->slots[0] >= btrfs_header_nritems(leaf))
103867de1176SMiao Xie 		goto search;
103967de1176SMiao Xie again:
104067de1176SMiao Xie 	btrfs_item_key_to_cpu(leaf, &key, path->slots[0]);
104167de1176SMiao Xie 	if (key.objectid != node->inode_id)
104267de1176SMiao Xie 		goto out;
104367de1176SMiao Xie 
104467de1176SMiao Xie 	if (key.type != BTRFS_INODE_REF_KEY &&
104567de1176SMiao Xie 	    key.type != BTRFS_INODE_EXTREF_KEY)
104667de1176SMiao Xie 		goto out;
104767de1176SMiao Xie 
104867de1176SMiao Xie 	/*
104967de1176SMiao Xie 	 * Delayed iref deletion is for the inode who has only one link,
105067de1176SMiao Xie 	 * so there is only one iref. The case that several irefs are
105167de1176SMiao Xie 	 * in the same item doesn't exist.
105267de1176SMiao Xie 	 */
1053c06016a0Svoid0red 	ret = btrfs_del_item(trans, root, path);
105467de1176SMiao Xie out:
105567de1176SMiao Xie 	btrfs_release_delayed_iref(node);
105667de1176SMiao Xie 	btrfs_release_path(path);
105767de1176SMiao Xie err_out:
10584f5427ccSQu Wenruo 	btrfs_delayed_inode_release_metadata(fs_info, node, (ret < 0));
105916cdcec7SMiao Xie 	btrfs_release_delayed_inode(node);
106016cdcec7SMiao Xie 
106104587ad9SJosef Bacik 	/*
106204587ad9SJosef Bacik 	 * If we fail to update the delayed inode we need to abort the
106304587ad9SJosef Bacik 	 * transaction, because we could leave the inode with the improper
106404587ad9SJosef Bacik 	 * counts behind.
106504587ad9SJosef Bacik 	 */
106604587ad9SJosef Bacik 	if (ret && ret != -ENOENT)
106704587ad9SJosef Bacik 		btrfs_abort_transaction(trans, ret);
106804587ad9SJosef Bacik 
106967de1176SMiao Xie 	return ret;
107067de1176SMiao Xie 
107167de1176SMiao Xie search:
107267de1176SMiao Xie 	btrfs_release_path(path);
107367de1176SMiao Xie 
1074962a298fSDavid Sterba 	key.type = BTRFS_INODE_EXTREF_KEY;
107567de1176SMiao Xie 	key.offset = -1;
1076351cbf6eSJosef Bacik 
107767de1176SMiao Xie 	ret = btrfs_search_slot(trans, root, &key, path, -1, 1);
107867de1176SMiao Xie 	if (ret < 0)
107967de1176SMiao Xie 		goto err_out;
108067de1176SMiao Xie 	ASSERT(ret);
108167de1176SMiao Xie 
108267de1176SMiao Xie 	ret = 0;
108367de1176SMiao Xie 	leaf = path->nodes[0];
108467de1176SMiao Xie 	path->slots[0]--;
108567de1176SMiao Xie 	goto again;
108616cdcec7SMiao Xie }
108716cdcec7SMiao Xie 
btrfs_update_delayed_inode(struct btrfs_trans_handle * trans,struct btrfs_root * root,struct btrfs_path * path,struct btrfs_delayed_node * node)10880e8c36a9SMiao Xie static inline int btrfs_update_delayed_inode(struct btrfs_trans_handle *trans,
10890e8c36a9SMiao Xie 					     struct btrfs_root *root,
10900e8c36a9SMiao Xie 					     struct btrfs_path *path,
10910e8c36a9SMiao Xie 					     struct btrfs_delayed_node *node)
10920e8c36a9SMiao Xie {
10930e8c36a9SMiao Xie 	int ret;
10940e8c36a9SMiao Xie 
10950e8c36a9SMiao Xie 	mutex_lock(&node->mutex);
10967cf35d91SMiao Xie 	if (!test_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &node->flags)) {
10970e8c36a9SMiao Xie 		mutex_unlock(&node->mutex);
10980e8c36a9SMiao Xie 		return 0;
10990e8c36a9SMiao Xie 	}
11000e8c36a9SMiao Xie 
11010e8c36a9SMiao Xie 	ret = __btrfs_update_delayed_inode(trans, root, path, node);
11020e8c36a9SMiao Xie 	mutex_unlock(&node->mutex);
11030e8c36a9SMiao Xie 	return ret;
11040e8c36a9SMiao Xie }
11050e8c36a9SMiao Xie 
11064ea41ce0SMiao Xie static inline int
__btrfs_commit_inode_delayed_items(struct btrfs_trans_handle * trans,struct btrfs_path * path,struct btrfs_delayed_node * node)11074ea41ce0SMiao Xie __btrfs_commit_inode_delayed_items(struct btrfs_trans_handle *trans,
11084ea41ce0SMiao Xie 				   struct btrfs_path *path,
11094ea41ce0SMiao Xie 				   struct btrfs_delayed_node *node)
11104ea41ce0SMiao Xie {
11114ea41ce0SMiao Xie 	int ret;
11124ea41ce0SMiao Xie 
11134ea41ce0SMiao Xie 	ret = btrfs_insert_delayed_items(trans, path, node->root, node);
11144ea41ce0SMiao Xie 	if (ret)
11154ea41ce0SMiao Xie 		return ret;
11164ea41ce0SMiao Xie 
11174ea41ce0SMiao Xie 	ret = btrfs_delete_delayed_items(trans, path, node->root, node);
11184ea41ce0SMiao Xie 	if (ret)
11194ea41ce0SMiao Xie 		return ret;
11204ea41ce0SMiao Xie 
1121363be24cSBoris Burkov 	ret = btrfs_record_root_in_trans(trans, node->root);
1122363be24cSBoris Burkov 	if (ret)
1123363be24cSBoris Burkov 		return ret;
11244ea41ce0SMiao Xie 	ret = btrfs_update_delayed_inode(trans, node->root, path, node);
11254ea41ce0SMiao Xie 	return ret;
11264ea41ce0SMiao Xie }
11274ea41ce0SMiao Xie 
112879787eaaSJeff Mahoney /*
112979787eaaSJeff Mahoney  * Called when committing the transaction.
113079787eaaSJeff Mahoney  * Returns 0 on success.
113179787eaaSJeff Mahoney  * Returns < 0 on error and returns with an aborted transaction with any
113279787eaaSJeff Mahoney  * outstanding delayed items cleaned up.
113379787eaaSJeff Mahoney  */
__btrfs_run_delayed_items(struct btrfs_trans_handle * trans,int nr)1134b84acab3SNikolay Borisov static int __btrfs_run_delayed_items(struct btrfs_trans_handle *trans, int nr)
113516cdcec7SMiao Xie {
1136b84acab3SNikolay Borisov 	struct btrfs_fs_info *fs_info = trans->fs_info;
113716cdcec7SMiao Xie 	struct btrfs_delayed_root *delayed_root;
113816cdcec7SMiao Xie 	struct btrfs_delayed_node *curr_node, *prev_node;
113916cdcec7SMiao Xie 	struct btrfs_path *path;
114019fd2949SMiao Xie 	struct btrfs_block_rsv *block_rsv;
114116cdcec7SMiao Xie 	int ret = 0;
114296c3f433SJosef Bacik 	bool count = (nr > 0);
114316cdcec7SMiao Xie 
1144bf31f87fSDavid Sterba 	if (TRANS_ABORTED(trans))
114579787eaaSJeff Mahoney 		return -EIO;
114679787eaaSJeff Mahoney 
114716cdcec7SMiao Xie 	path = btrfs_alloc_path();
114816cdcec7SMiao Xie 	if (!path)
114916cdcec7SMiao Xie 		return -ENOMEM;
115016cdcec7SMiao Xie 
115119fd2949SMiao Xie 	block_rsv = trans->block_rsv;
11520b246afaSJeff Mahoney 	trans->block_rsv = &fs_info->delayed_block_rsv;
115319fd2949SMiao Xie 
1154ccdf9b30SJeff Mahoney 	delayed_root = fs_info->delayed_root;
115516cdcec7SMiao Xie 
115616cdcec7SMiao Xie 	curr_node = btrfs_first_delayed_node(delayed_root);
1157a4559e6fSAbaci Team 	while (curr_node && (!count || nr--)) {
11584ea41ce0SMiao Xie 		ret = __btrfs_commit_inode_delayed_items(trans, path,
115916cdcec7SMiao Xie 							 curr_node);
116016cdcec7SMiao Xie 		if (ret) {
116166642832SJeff Mahoney 			btrfs_abort_transaction(trans, ret);
116216cdcec7SMiao Xie 			break;
116316cdcec7SMiao Xie 		}
116416cdcec7SMiao Xie 
116516cdcec7SMiao Xie 		prev_node = curr_node;
116616cdcec7SMiao Xie 		curr_node = btrfs_next_delayed_node(curr_node);
1167e110f891SFilipe Manana 		/*
1168e110f891SFilipe Manana 		 * See the comment below about releasing path before releasing
1169e110f891SFilipe Manana 		 * node. If the commit of delayed items was successful the path
1170e110f891SFilipe Manana 		 * should always be released, but in case of an error, it may
1171e110f891SFilipe Manana 		 * point to locked extent buffers (a leaf at the very least).
1172e110f891SFilipe Manana 		 */
1173e110f891SFilipe Manana 		ASSERT(path->nodes[0] == NULL);
117416cdcec7SMiao Xie 		btrfs_release_delayed_node(prev_node);
117516cdcec7SMiao Xie 	}
117616cdcec7SMiao Xie 
1177e110f891SFilipe Manana 	/*
1178e110f891SFilipe Manana 	 * Release the path to avoid a potential deadlock and lockdep splat when
1179e110f891SFilipe Manana 	 * releasing the delayed node, as that requires taking the delayed node's
1180e110f891SFilipe Manana 	 * mutex. If another task starts running delayed items before we take
1181e110f891SFilipe Manana 	 * the mutex, it will first lock the mutex and then it may try to lock
1182e110f891SFilipe Manana 	 * the same btree path (leaf).
1183e110f891SFilipe Manana 	 */
1184e110f891SFilipe Manana 	btrfs_free_path(path);
1185e110f891SFilipe Manana 
118696c3f433SJosef Bacik 	if (curr_node)
118796c3f433SJosef Bacik 		btrfs_release_delayed_node(curr_node);
118819fd2949SMiao Xie 	trans->block_rsv = block_rsv;
118979787eaaSJeff Mahoney 
119016cdcec7SMiao Xie 	return ret;
119116cdcec7SMiao Xie }
119216cdcec7SMiao Xie 
btrfs_run_delayed_items(struct btrfs_trans_handle * trans)1193e5c304e6SNikolay Borisov int btrfs_run_delayed_items(struct btrfs_trans_handle *trans)
119496c3f433SJosef Bacik {
1195b84acab3SNikolay Borisov 	return __btrfs_run_delayed_items(trans, -1);
119696c3f433SJosef Bacik }
119796c3f433SJosef Bacik 
btrfs_run_delayed_items_nr(struct btrfs_trans_handle * trans,int nr)1198e5c304e6SNikolay Borisov int btrfs_run_delayed_items_nr(struct btrfs_trans_handle *trans, int nr)
119996c3f433SJosef Bacik {
1200b84acab3SNikolay Borisov 	return __btrfs_run_delayed_items(trans, nr);
120196c3f433SJosef Bacik }
120296c3f433SJosef Bacik 
btrfs_commit_inode_delayed_items(struct btrfs_trans_handle * trans,struct btrfs_inode * inode)120316cdcec7SMiao Xie int btrfs_commit_inode_delayed_items(struct btrfs_trans_handle *trans,
12045f4b32e9SNikolay Borisov 				     struct btrfs_inode *inode)
120516cdcec7SMiao Xie {
12065f4b32e9SNikolay Borisov 	struct btrfs_delayed_node *delayed_node = btrfs_get_delayed_node(inode);
12074ea41ce0SMiao Xie 	struct btrfs_path *path;
12084ea41ce0SMiao Xie 	struct btrfs_block_rsv *block_rsv;
120916cdcec7SMiao Xie 	int ret;
121016cdcec7SMiao Xie 
121116cdcec7SMiao Xie 	if (!delayed_node)
121216cdcec7SMiao Xie 		return 0;
121316cdcec7SMiao Xie 
121416cdcec7SMiao Xie 	mutex_lock(&delayed_node->mutex);
121516cdcec7SMiao Xie 	if (!delayed_node->count) {
121616cdcec7SMiao Xie 		mutex_unlock(&delayed_node->mutex);
121716cdcec7SMiao Xie 		btrfs_release_delayed_node(delayed_node);
121816cdcec7SMiao Xie 		return 0;
121916cdcec7SMiao Xie 	}
122016cdcec7SMiao Xie 	mutex_unlock(&delayed_node->mutex);
122116cdcec7SMiao Xie 
12224ea41ce0SMiao Xie 	path = btrfs_alloc_path();
12233c77bd94SFilipe David Borba Manana 	if (!path) {
12243c77bd94SFilipe David Borba Manana 		btrfs_release_delayed_node(delayed_node);
12254ea41ce0SMiao Xie 		return -ENOMEM;
12263c77bd94SFilipe David Borba Manana 	}
12274ea41ce0SMiao Xie 
12284ea41ce0SMiao Xie 	block_rsv = trans->block_rsv;
12294ea41ce0SMiao Xie 	trans->block_rsv = &delayed_node->root->fs_info->delayed_block_rsv;
12304ea41ce0SMiao Xie 
12314ea41ce0SMiao Xie 	ret = __btrfs_commit_inode_delayed_items(trans, path, delayed_node);
12324ea41ce0SMiao Xie 
123316cdcec7SMiao Xie 	btrfs_release_delayed_node(delayed_node);
12344ea41ce0SMiao Xie 	btrfs_free_path(path);
12354ea41ce0SMiao Xie 	trans->block_rsv = block_rsv;
12364ea41ce0SMiao Xie 
123716cdcec7SMiao Xie 	return ret;
123816cdcec7SMiao Xie }
123916cdcec7SMiao Xie 
btrfs_commit_inode_delayed_inode(struct btrfs_inode * inode)1240aa79021fSNikolay Borisov int btrfs_commit_inode_delayed_inode(struct btrfs_inode *inode)
12410e8c36a9SMiao Xie {
12423ffbd68cSDavid Sterba 	struct btrfs_fs_info *fs_info = inode->root->fs_info;
12430e8c36a9SMiao Xie 	struct btrfs_trans_handle *trans;
1244aa79021fSNikolay Borisov 	struct btrfs_delayed_node *delayed_node = btrfs_get_delayed_node(inode);
12450e8c36a9SMiao Xie 	struct btrfs_path *path;
12460e8c36a9SMiao Xie 	struct btrfs_block_rsv *block_rsv;
12470e8c36a9SMiao Xie 	int ret;
12480e8c36a9SMiao Xie 
12490e8c36a9SMiao Xie 	if (!delayed_node)
12500e8c36a9SMiao Xie 		return 0;
12510e8c36a9SMiao Xie 
12520e8c36a9SMiao Xie 	mutex_lock(&delayed_node->mutex);
12537cf35d91SMiao Xie 	if (!test_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &delayed_node->flags)) {
12540e8c36a9SMiao Xie 		mutex_unlock(&delayed_node->mutex);
12550e8c36a9SMiao Xie 		btrfs_release_delayed_node(delayed_node);
12560e8c36a9SMiao Xie 		return 0;
12570e8c36a9SMiao Xie 	}
12580e8c36a9SMiao Xie 	mutex_unlock(&delayed_node->mutex);
12590e8c36a9SMiao Xie 
12600e8c36a9SMiao Xie 	trans = btrfs_join_transaction(delayed_node->root);
12610e8c36a9SMiao Xie 	if (IS_ERR(trans)) {
12620e8c36a9SMiao Xie 		ret = PTR_ERR(trans);
12630e8c36a9SMiao Xie 		goto out;
12640e8c36a9SMiao Xie 	}
12650e8c36a9SMiao Xie 
12660e8c36a9SMiao Xie 	path = btrfs_alloc_path();
12670e8c36a9SMiao Xie 	if (!path) {
12680e8c36a9SMiao Xie 		ret = -ENOMEM;
12690e8c36a9SMiao Xie 		goto trans_out;
12700e8c36a9SMiao Xie 	}
12710e8c36a9SMiao Xie 
12720e8c36a9SMiao Xie 	block_rsv = trans->block_rsv;
12732ff7e61eSJeff Mahoney 	trans->block_rsv = &fs_info->delayed_block_rsv;
12740e8c36a9SMiao Xie 
12750e8c36a9SMiao Xie 	mutex_lock(&delayed_node->mutex);
12767cf35d91SMiao Xie 	if (test_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &delayed_node->flags))
12770e8c36a9SMiao Xie 		ret = __btrfs_update_delayed_inode(trans, delayed_node->root,
12780e8c36a9SMiao Xie 						   path, delayed_node);
12790e8c36a9SMiao Xie 	else
12800e8c36a9SMiao Xie 		ret = 0;
12810e8c36a9SMiao Xie 	mutex_unlock(&delayed_node->mutex);
12820e8c36a9SMiao Xie 
12830e8c36a9SMiao Xie 	btrfs_free_path(path);
12840e8c36a9SMiao Xie 	trans->block_rsv = block_rsv;
12850e8c36a9SMiao Xie trans_out:
12863a45bb20SJeff Mahoney 	btrfs_end_transaction(trans);
12872ff7e61eSJeff Mahoney 	btrfs_btree_balance_dirty(fs_info);
12880e8c36a9SMiao Xie out:
12890e8c36a9SMiao Xie 	btrfs_release_delayed_node(delayed_node);
12900e8c36a9SMiao Xie 
12910e8c36a9SMiao Xie 	return ret;
12920e8c36a9SMiao Xie }
12930e8c36a9SMiao Xie 
btrfs_remove_delayed_node(struct btrfs_inode * inode)1294f48d1cf5SNikolay Borisov void btrfs_remove_delayed_node(struct btrfs_inode *inode)
129516cdcec7SMiao Xie {
129616cdcec7SMiao Xie 	struct btrfs_delayed_node *delayed_node;
129716cdcec7SMiao Xie 
1298f48d1cf5SNikolay Borisov 	delayed_node = READ_ONCE(inode->delayed_node);
129916cdcec7SMiao Xie 	if (!delayed_node)
130016cdcec7SMiao Xie 		return;
130116cdcec7SMiao Xie 
1302f48d1cf5SNikolay Borisov 	inode->delayed_node = NULL;
130316cdcec7SMiao Xie 	btrfs_release_delayed_node(delayed_node);
130416cdcec7SMiao Xie }
130516cdcec7SMiao Xie 
1306de3cb945SChris Mason struct btrfs_async_delayed_work {
1307de3cb945SChris Mason 	struct btrfs_delayed_root *delayed_root;
1308de3cb945SChris Mason 	int nr;
1309d458b054SQu Wenruo 	struct btrfs_work work;
131016cdcec7SMiao Xie };
131116cdcec7SMiao Xie 
btrfs_async_run_delayed_root(struct btrfs_work * work)1312d458b054SQu Wenruo static void btrfs_async_run_delayed_root(struct btrfs_work *work)
131316cdcec7SMiao Xie {
1314de3cb945SChris Mason 	struct btrfs_async_delayed_work *async_work;
1315de3cb945SChris Mason 	struct btrfs_delayed_root *delayed_root;
131616cdcec7SMiao Xie 	struct btrfs_trans_handle *trans;
131716cdcec7SMiao Xie 	struct btrfs_path *path;
131816cdcec7SMiao Xie 	struct btrfs_delayed_node *delayed_node = NULL;
131916cdcec7SMiao Xie 	struct btrfs_root *root;
132019fd2949SMiao Xie 	struct btrfs_block_rsv *block_rsv;
1321de3cb945SChris Mason 	int total_done = 0;
132216cdcec7SMiao Xie 
1323de3cb945SChris Mason 	async_work = container_of(work, struct btrfs_async_delayed_work, work);
1324de3cb945SChris Mason 	delayed_root = async_work->delayed_root;
132516cdcec7SMiao Xie 
132616cdcec7SMiao Xie 	path = btrfs_alloc_path();
132716cdcec7SMiao Xie 	if (!path)
132816cdcec7SMiao Xie 		goto out;
132916cdcec7SMiao Xie 
1330617c54a8SNikolay Borisov 	do {
1331617c54a8SNikolay Borisov 		if (atomic_read(&delayed_root->items) <
1332617c54a8SNikolay Borisov 		    BTRFS_DELAYED_BACKGROUND / 2)
1333617c54a8SNikolay Borisov 			break;
1334de3cb945SChris Mason 
1335de3cb945SChris Mason 		delayed_node = btrfs_first_prepared_delayed_node(delayed_root);
1336de3cb945SChris Mason 		if (!delayed_node)
1337617c54a8SNikolay Borisov 			break;
1338de3cb945SChris Mason 
133916cdcec7SMiao Xie 		root = delayed_node->root;
134016cdcec7SMiao Xie 
1341ff5714ccSChris Mason 		trans = btrfs_join_transaction(root);
1342617c54a8SNikolay Borisov 		if (IS_ERR(trans)) {
1343617c54a8SNikolay Borisov 			btrfs_release_path(path);
1344617c54a8SNikolay Borisov 			btrfs_release_prepared_delayed_node(delayed_node);
1345617c54a8SNikolay Borisov 			total_done++;
1346617c54a8SNikolay Borisov 			continue;
1347617c54a8SNikolay Borisov 		}
134816cdcec7SMiao Xie 
134919fd2949SMiao Xie 		block_rsv = trans->block_rsv;
13506d668ddaSJosef Bacik 		trans->block_rsv = &root->fs_info->delayed_block_rsv;
135119fd2949SMiao Xie 
13524ea41ce0SMiao Xie 		__btrfs_commit_inode_delayed_items(trans, path, delayed_node);
135316cdcec7SMiao Xie 
135419fd2949SMiao Xie 		trans->block_rsv = block_rsv;
13553a45bb20SJeff Mahoney 		btrfs_end_transaction(trans);
13562ff7e61eSJeff Mahoney 		btrfs_btree_balance_dirty_nodelay(root->fs_info);
1357de3cb945SChris Mason 
1358de3cb945SChris Mason 		btrfs_release_path(path);
1359617c54a8SNikolay Borisov 		btrfs_release_prepared_delayed_node(delayed_node);
1360de3cb945SChris Mason 		total_done++;
1361de3cb945SChris Mason 
1362617c54a8SNikolay Borisov 	} while ((async_work->nr == 0 && total_done < BTRFS_DELAYED_WRITEBACK)
1363617c54a8SNikolay Borisov 		 || total_done < async_work->nr);
1364de3cb945SChris Mason 
136516cdcec7SMiao Xie 	btrfs_free_path(path);
136616cdcec7SMiao Xie out:
1367de3cb945SChris Mason 	wake_up(&delayed_root->wait);
1368de3cb945SChris Mason 	kfree(async_work);
136916cdcec7SMiao Xie }
1370de3cb945SChris Mason 
137116cdcec7SMiao Xie 
btrfs_wq_run_delayed_node(struct btrfs_delayed_root * delayed_root,struct btrfs_fs_info * fs_info,int nr)137216cdcec7SMiao Xie static int btrfs_wq_run_delayed_node(struct btrfs_delayed_root *delayed_root,
1373a585e948SDaniel Dressler 				     struct btrfs_fs_info *fs_info, int nr)
137416cdcec7SMiao Xie {
1375de3cb945SChris Mason 	struct btrfs_async_delayed_work *async_work;
137616cdcec7SMiao Xie 
1377de3cb945SChris Mason 	async_work = kmalloc(sizeof(*async_work), GFP_NOFS);
1378de3cb945SChris Mason 	if (!async_work)
137916cdcec7SMiao Xie 		return -ENOMEM;
138016cdcec7SMiao Xie 
1381de3cb945SChris Mason 	async_work->delayed_root = delayed_root;
1382a0cac0ecSOmar Sandoval 	btrfs_init_work(&async_work->work, btrfs_async_run_delayed_root, NULL,
1383a0cac0ecSOmar Sandoval 			NULL);
1384de3cb945SChris Mason 	async_work->nr = nr;
138516cdcec7SMiao Xie 
1386a585e948SDaniel Dressler 	btrfs_queue_work(fs_info->delayed_workers, &async_work->work);
138716cdcec7SMiao Xie 	return 0;
138816cdcec7SMiao Xie }
138916cdcec7SMiao Xie 
btrfs_assert_delayed_root_empty(struct btrfs_fs_info * fs_info)1390ccdf9b30SJeff Mahoney void btrfs_assert_delayed_root_empty(struct btrfs_fs_info *fs_info)
1391e999376fSChris Mason {
1392ccdf9b30SJeff Mahoney 	WARN_ON(btrfs_first_delayed_node(fs_info->delayed_root));
1393e999376fSChris Mason }
1394e999376fSChris Mason 
could_end_wait(struct btrfs_delayed_root * delayed_root,int seq)13950353808cSMiao Xie static int could_end_wait(struct btrfs_delayed_root *delayed_root, int seq)
1396de3cb945SChris Mason {
1397de3cb945SChris Mason 	int val = atomic_read(&delayed_root->items_seq);
1398de3cb945SChris Mason 
13990353808cSMiao Xie 	if (val < seq || val >= seq + BTRFS_DELAYED_BATCH)
1400de3cb945SChris Mason 		return 1;
14010353808cSMiao Xie 
14020353808cSMiao Xie 	if (atomic_read(&delayed_root->items) < BTRFS_DELAYED_BACKGROUND)
14030353808cSMiao Xie 		return 1;
14040353808cSMiao Xie 
1405de3cb945SChris Mason 	return 0;
1406de3cb945SChris Mason }
1407de3cb945SChris Mason 
btrfs_balance_delayed_items(struct btrfs_fs_info * fs_info)14082ff7e61eSJeff Mahoney void btrfs_balance_delayed_items(struct btrfs_fs_info *fs_info)
140916cdcec7SMiao Xie {
14102ff7e61eSJeff Mahoney 	struct btrfs_delayed_root *delayed_root = fs_info->delayed_root;
141116cdcec7SMiao Xie 
14128577787fSNikolay Borisov 	if ((atomic_read(&delayed_root->items) < BTRFS_DELAYED_BACKGROUND) ||
14138577787fSNikolay Borisov 		btrfs_workqueue_normal_congested(fs_info->delayed_workers))
141416cdcec7SMiao Xie 		return;
141516cdcec7SMiao Xie 
141616cdcec7SMiao Xie 	if (atomic_read(&delayed_root->items) >= BTRFS_DELAYED_WRITEBACK) {
14170353808cSMiao Xie 		int seq;
141816cdcec7SMiao Xie 		int ret;
14190353808cSMiao Xie 
14200353808cSMiao Xie 		seq = atomic_read(&delayed_root->items_seq);
1421de3cb945SChris Mason 
1422a585e948SDaniel Dressler 		ret = btrfs_wq_run_delayed_node(delayed_root, fs_info, 0);
142316cdcec7SMiao Xie 		if (ret)
142416cdcec7SMiao Xie 			return;
142516cdcec7SMiao Xie 
14260353808cSMiao Xie 		wait_event_interruptible(delayed_root->wait,
14270353808cSMiao Xie 					 could_end_wait(delayed_root, seq));
14284dd466d3SMiao Xie 		return;
142916cdcec7SMiao Xie 	}
143016cdcec7SMiao Xie 
1431a585e948SDaniel Dressler 	btrfs_wq_run_delayed_node(delayed_root, fs_info, BTRFS_DELAYED_BATCH);
143216cdcec7SMiao Xie }
143316cdcec7SMiao Xie 
btrfs_release_dir_index_item_space(struct btrfs_trans_handle * trans)14342c58c393SFilipe Manana static void btrfs_release_dir_index_item_space(struct btrfs_trans_handle *trans)
14352c58c393SFilipe Manana {
14362c58c393SFilipe Manana 	struct btrfs_fs_info *fs_info = trans->fs_info;
14372c58c393SFilipe Manana 	const u64 bytes = btrfs_calc_insert_metadata_size(fs_info, 1);
14382c58c393SFilipe Manana 
14392c58c393SFilipe Manana 	if (test_bit(BTRFS_FS_LOG_RECOVERING, &fs_info->flags))
14402c58c393SFilipe Manana 		return;
14412c58c393SFilipe Manana 
14422c58c393SFilipe Manana 	/*
14432c58c393SFilipe Manana 	 * Adding the new dir index item does not require touching another
14442c58c393SFilipe Manana 	 * leaf, so we can release 1 unit of metadata that was previously
14452c58c393SFilipe Manana 	 * reserved when starting the transaction. This applies only to
14462c58c393SFilipe Manana 	 * the case where we had a transaction start and excludes the
14472c58c393SFilipe Manana 	 * transaction join case (when replaying log trees).
14482c58c393SFilipe Manana 	 */
14492c58c393SFilipe Manana 	trace_btrfs_space_reservation(fs_info, "transaction",
14502c58c393SFilipe Manana 				      trans->transid, bytes, 0);
14512c58c393SFilipe Manana 	btrfs_block_rsv_release(fs_info, trans->block_rsv, bytes, NULL);
14522c58c393SFilipe Manana 	ASSERT(trans->bytes_reserved >= bytes);
14532c58c393SFilipe Manana 	trans->bytes_reserved -= bytes;
14542c58c393SFilipe Manana }
14552c58c393SFilipe Manana 
14562c58c393SFilipe Manana /* Will return 0, -ENOMEM or -EEXIST (index number collision, unexpected). */
btrfs_insert_delayed_dir_index(struct btrfs_trans_handle * trans,const char * name,int name_len,struct btrfs_inode * dir,struct btrfs_disk_key * disk_key,u8 flags,u64 index)145716cdcec7SMiao Xie int btrfs_insert_delayed_dir_index(struct btrfs_trans_handle *trans,
14582ff7e61eSJeff Mahoney 				   const char *name, int name_len,
14596f45d185SNikolay Borisov 				   struct btrfs_inode *dir,
146094a48aefSOmar Sandoval 				   struct btrfs_disk_key *disk_key, u8 flags,
146116cdcec7SMiao Xie 				   u64 index)
146216cdcec7SMiao Xie {
1463763748b2SFilipe Manana 	struct btrfs_fs_info *fs_info = trans->fs_info;
1464763748b2SFilipe Manana 	const unsigned int leaf_data_size = BTRFS_LEAF_DATA_SIZE(fs_info);
146516cdcec7SMiao Xie 	struct btrfs_delayed_node *delayed_node;
146616cdcec7SMiao Xie 	struct btrfs_delayed_item *delayed_item;
146716cdcec7SMiao Xie 	struct btrfs_dir_item *dir_item;
1468763748b2SFilipe Manana 	bool reserve_leaf_space;
1469763748b2SFilipe Manana 	u32 data_len;
147016cdcec7SMiao Xie 	int ret;
147116cdcec7SMiao Xie 
14726f45d185SNikolay Borisov 	delayed_node = btrfs_get_or_create_delayed_node(dir);
147316cdcec7SMiao Xie 	if (IS_ERR(delayed_node))
147416cdcec7SMiao Xie 		return PTR_ERR(delayed_node);
147516cdcec7SMiao Xie 
147696d89923SFilipe Manana 	delayed_item = btrfs_alloc_delayed_item(sizeof(*dir_item) + name_len,
14774c469798SFilipe Manana 						delayed_node,
14784c469798SFilipe Manana 						BTRFS_DELAYED_INSERTION_ITEM);
147916cdcec7SMiao Xie 	if (!delayed_item) {
148016cdcec7SMiao Xie 		ret = -ENOMEM;
148116cdcec7SMiao Xie 		goto release_node;
148216cdcec7SMiao Xie 	}
148316cdcec7SMiao Xie 
148496d89923SFilipe Manana 	delayed_item->index = index;
148516cdcec7SMiao Xie 
148616cdcec7SMiao Xie 	dir_item = (struct btrfs_dir_item *)delayed_item->data;
148716cdcec7SMiao Xie 	dir_item->location = *disk_key;
14883cae210fSQu Wenruo 	btrfs_set_stack_dir_transid(dir_item, trans->transid);
14893cae210fSQu Wenruo 	btrfs_set_stack_dir_data_len(dir_item, 0);
14903cae210fSQu Wenruo 	btrfs_set_stack_dir_name_len(dir_item, name_len);
149194a48aefSOmar Sandoval 	btrfs_set_stack_dir_flags(dir_item, flags);
149216cdcec7SMiao Xie 	memcpy((char *)(dir_item + 1), name, name_len);
149316cdcec7SMiao Xie 
1494763748b2SFilipe Manana 	data_len = delayed_item->data_len + sizeof(struct btrfs_item);
1495763748b2SFilipe Manana 
1496763748b2SFilipe Manana 	mutex_lock(&delayed_node->mutex);
1497763748b2SFilipe Manana 
14982c58c393SFilipe Manana 	/*
14992c58c393SFilipe Manana 	 * First attempt to insert the delayed item. This is to make the error
15002c58c393SFilipe Manana 	 * handling path simpler in case we fail (-EEXIST). There's no risk of
15012c58c393SFilipe Manana 	 * any other task coming in and running the delayed item before we do
15022c58c393SFilipe Manana 	 * the metadata space reservation below, because we are holding the
15032c58c393SFilipe Manana 	 * delayed node's mutex and that mutex must also be locked before the
15042c58c393SFilipe Manana 	 * node's delayed items can be run.
15052c58c393SFilipe Manana 	 */
15062c58c393SFilipe Manana 	ret = __btrfs_add_delayed_item(delayed_node, delayed_item);
15072c58c393SFilipe Manana 	if (unlikely(ret)) {
15082c58c393SFilipe Manana 		btrfs_err(trans->fs_info,
15092c58c393SFilipe Manana "error adding delayed dir index item, name: %.*s, index: %llu, root: %llu, dir: %llu, dir->index_cnt: %llu, delayed_node->index_cnt: %llu, error: %d",
15102c58c393SFilipe Manana 			  name_len, name, index, btrfs_root_id(delayed_node->root),
15112c58c393SFilipe Manana 			  delayed_node->inode_id, dir->index_cnt,
15122c58c393SFilipe Manana 			  delayed_node->index_cnt, ret);
15132c58c393SFilipe Manana 		btrfs_release_delayed_item(delayed_item);
15142c58c393SFilipe Manana 		btrfs_release_dir_index_item_space(trans);
15152c58c393SFilipe Manana 		mutex_unlock(&delayed_node->mutex);
15162c58c393SFilipe Manana 		goto release_node;
15172c58c393SFilipe Manana 	}
15182c58c393SFilipe Manana 
1519763748b2SFilipe Manana 	if (delayed_node->index_item_leaves == 0 ||
1520763748b2SFilipe Manana 	    delayed_node->curr_index_batch_size + data_len > leaf_data_size) {
1521763748b2SFilipe Manana 		delayed_node->curr_index_batch_size = data_len;
1522763748b2SFilipe Manana 		reserve_leaf_space = true;
1523763748b2SFilipe Manana 	} else {
1524763748b2SFilipe Manana 		delayed_node->curr_index_batch_size += data_len;
1525763748b2SFilipe Manana 		reserve_leaf_space = false;
1526763748b2SFilipe Manana 	}
1527763748b2SFilipe Manana 
1528763748b2SFilipe Manana 	if (reserve_leaf_space) {
1529df492881SFilipe Manana 		ret = btrfs_delayed_item_reserve_metadata(trans, delayed_item);
15308c2a3ca2SJosef Bacik 		/*
1531763748b2SFilipe Manana 		 * Space was reserved for a dir index item insertion when we
1532763748b2SFilipe Manana 		 * started the transaction, so getting a failure here should be
1533763748b2SFilipe Manana 		 * impossible.
15348c2a3ca2SJosef Bacik 		 */
15353bae13e9SFilipe Manana 		if (WARN_ON(ret)) {
15363bae13e9SFilipe Manana 			btrfs_release_delayed_item(delayed_item);
15372c58c393SFilipe Manana 			mutex_unlock(&delayed_node->mutex);
15383bae13e9SFilipe Manana 			goto release_node;
15393bae13e9SFilipe Manana 		}
15408c2a3ca2SJosef Bacik 
1541763748b2SFilipe Manana 		delayed_node->index_item_leaves++;
15422c58c393SFilipe Manana 	} else {
15432c58c393SFilipe Manana 		btrfs_release_dir_index_item_space(trans);
154416cdcec7SMiao Xie 	}
154516cdcec7SMiao Xie 	mutex_unlock(&delayed_node->mutex);
154616cdcec7SMiao Xie 
154716cdcec7SMiao Xie release_node:
154816cdcec7SMiao Xie 	btrfs_release_delayed_node(delayed_node);
154916cdcec7SMiao Xie 	return ret;
155016cdcec7SMiao Xie }
155116cdcec7SMiao Xie 
btrfs_delete_delayed_insertion_item(struct btrfs_fs_info * fs_info,struct btrfs_delayed_node * node,u64 index)15522ff7e61eSJeff Mahoney static int btrfs_delete_delayed_insertion_item(struct btrfs_fs_info *fs_info,
155316cdcec7SMiao Xie 					       struct btrfs_delayed_node *node,
155496d89923SFilipe Manana 					       u64 index)
155516cdcec7SMiao Xie {
155616cdcec7SMiao Xie 	struct btrfs_delayed_item *item;
155716cdcec7SMiao Xie 
155816cdcec7SMiao Xie 	mutex_lock(&node->mutex);
15594cbf37f5SFilipe Manana 	item = __btrfs_lookup_delayed_item(&node->ins_root.rb_root, index);
156016cdcec7SMiao Xie 	if (!item) {
156116cdcec7SMiao Xie 		mutex_unlock(&node->mutex);
156216cdcec7SMiao Xie 		return 1;
156316cdcec7SMiao Xie 	}
156416cdcec7SMiao Xie 
1565763748b2SFilipe Manana 	/*
1566763748b2SFilipe Manana 	 * For delayed items to insert, we track reserved metadata bytes based
1567763748b2SFilipe Manana 	 * on the number of leaves that we will use.
1568763748b2SFilipe Manana 	 * See btrfs_insert_delayed_dir_index() and
1569763748b2SFilipe Manana 	 * btrfs_delayed_item_reserve_metadata()).
1570763748b2SFilipe Manana 	 */
1571763748b2SFilipe Manana 	ASSERT(item->bytes_reserved == 0);
1572763748b2SFilipe Manana 	ASSERT(node->index_item_leaves > 0);
1573763748b2SFilipe Manana 
1574763748b2SFilipe Manana 	/*
1575763748b2SFilipe Manana 	 * If there's only one leaf reserved, we can decrement this item from the
1576763748b2SFilipe Manana 	 * current batch, otherwise we can not because we don't know which leaf
1577763748b2SFilipe Manana 	 * it belongs to. With the current limit on delayed items, we rarely
1578763748b2SFilipe Manana 	 * accumulate enough dir index items to fill more than one leaf (even
1579763748b2SFilipe Manana 	 * when using a leaf size of 4K).
1580763748b2SFilipe Manana 	 */
1581763748b2SFilipe Manana 	if (node->index_item_leaves == 1) {
1582763748b2SFilipe Manana 		const u32 data_len = item->data_len + sizeof(struct btrfs_item);
1583763748b2SFilipe Manana 
1584763748b2SFilipe Manana 		ASSERT(node->curr_index_batch_size >= data_len);
1585763748b2SFilipe Manana 		node->curr_index_batch_size -= data_len;
1586763748b2SFilipe Manana 	}
1587763748b2SFilipe Manana 
158816cdcec7SMiao Xie 	btrfs_release_delayed_item(item);
1589763748b2SFilipe Manana 
1590763748b2SFilipe Manana 	/* If we now have no more dir index items, we can release all leaves. */
1591763748b2SFilipe Manana 	if (RB_EMPTY_ROOT(&node->ins_root.rb_root)) {
1592763748b2SFilipe Manana 		btrfs_delayed_item_release_leaves(node, node->index_item_leaves);
1593763748b2SFilipe Manana 		node->index_item_leaves = 0;
1594763748b2SFilipe Manana 	}
1595763748b2SFilipe Manana 
159616cdcec7SMiao Xie 	mutex_unlock(&node->mutex);
159716cdcec7SMiao Xie 	return 0;
159816cdcec7SMiao Xie }
159916cdcec7SMiao Xie 
btrfs_delete_delayed_dir_index(struct btrfs_trans_handle * trans,struct btrfs_inode * dir,u64 index)160016cdcec7SMiao Xie int btrfs_delete_delayed_dir_index(struct btrfs_trans_handle *trans,
1601e67bbbb9SNikolay Borisov 				   struct btrfs_inode *dir, u64 index)
160216cdcec7SMiao Xie {
160316cdcec7SMiao Xie 	struct btrfs_delayed_node *node;
160416cdcec7SMiao Xie 	struct btrfs_delayed_item *item;
160516cdcec7SMiao Xie 	int ret;
160616cdcec7SMiao Xie 
1607e67bbbb9SNikolay Borisov 	node = btrfs_get_or_create_delayed_node(dir);
160816cdcec7SMiao Xie 	if (IS_ERR(node))
160916cdcec7SMiao Xie 		return PTR_ERR(node);
161016cdcec7SMiao Xie 
161196d89923SFilipe Manana 	ret = btrfs_delete_delayed_insertion_item(trans->fs_info, node, index);
161216cdcec7SMiao Xie 	if (!ret)
161316cdcec7SMiao Xie 		goto end;
161416cdcec7SMiao Xie 
16154c469798SFilipe Manana 	item = btrfs_alloc_delayed_item(0, node, BTRFS_DELAYED_DELETION_ITEM);
161616cdcec7SMiao Xie 	if (!item) {
161716cdcec7SMiao Xie 		ret = -ENOMEM;
161816cdcec7SMiao Xie 		goto end;
161916cdcec7SMiao Xie 	}
162016cdcec7SMiao Xie 
162196d89923SFilipe Manana 	item->index = index;
162216cdcec7SMiao Xie 
1623df492881SFilipe Manana 	ret = btrfs_delayed_item_reserve_metadata(trans, item);
162416cdcec7SMiao Xie 	/*
162516cdcec7SMiao Xie 	 * we have reserved enough space when we start a new transaction,
162616cdcec7SMiao Xie 	 * so reserving metadata failure is impossible.
162716cdcec7SMiao Xie 	 */
1628933c22a7SQu Wenruo 	if (ret < 0) {
1629933c22a7SQu Wenruo 		btrfs_err(trans->fs_info,
1630933c22a7SQu Wenruo "metadata reservation failed for delayed dir item deltiona, should have been reserved");
1631933c22a7SQu Wenruo 		btrfs_release_delayed_item(item);
1632933c22a7SQu Wenruo 		goto end;
1633933c22a7SQu Wenruo 	}
163416cdcec7SMiao Xie 
163516cdcec7SMiao Xie 	mutex_lock(&node->mutex);
1636c9d02ab4SFilipe Manana 	ret = __btrfs_add_delayed_item(node, item);
163716cdcec7SMiao Xie 	if (unlikely(ret)) {
16389add2945SLu Fengqi 		btrfs_err(trans->fs_info,
16395d163e0eSJeff Mahoney 			  "err add delayed dir index item(index: %llu) into the deletion tree of the delayed node(root id: %llu, inode id: %llu, errno: %d)",
16404fd786e6SMisono Tomohiro 			  index, node->root->root_key.objectid,
16414fd786e6SMisono Tomohiro 			  node->inode_id, ret);
1642933c22a7SQu Wenruo 		btrfs_delayed_item_release_metadata(dir->root, item);
1643933c22a7SQu Wenruo 		btrfs_release_delayed_item(item);
164416cdcec7SMiao Xie 	}
164516cdcec7SMiao Xie 	mutex_unlock(&node->mutex);
164616cdcec7SMiao Xie end:
164716cdcec7SMiao Xie 	btrfs_release_delayed_node(node);
164816cdcec7SMiao Xie 	return ret;
164916cdcec7SMiao Xie }
165016cdcec7SMiao Xie 
btrfs_inode_delayed_dir_index_count(struct btrfs_inode * inode)1651f5cc7b80SNikolay Borisov int btrfs_inode_delayed_dir_index_count(struct btrfs_inode *inode)
165216cdcec7SMiao Xie {
1653f5cc7b80SNikolay Borisov 	struct btrfs_delayed_node *delayed_node = btrfs_get_delayed_node(inode);
165416cdcec7SMiao Xie 
165516cdcec7SMiao Xie 	if (!delayed_node)
165616cdcec7SMiao Xie 		return -ENOENT;
165716cdcec7SMiao Xie 
165816cdcec7SMiao Xie 	/*
165916cdcec7SMiao Xie 	 * Since we have held i_mutex of this directory, it is impossible that
166016cdcec7SMiao Xie 	 * a new directory index is added into the delayed node and index_cnt
166116cdcec7SMiao Xie 	 * is updated now. So we needn't lock the delayed node.
166216cdcec7SMiao Xie 	 */
16632f7e33d4SMiao Xie 	if (!delayed_node->index_cnt) {
16642f7e33d4SMiao Xie 		btrfs_release_delayed_node(delayed_node);
166516cdcec7SMiao Xie 		return -EINVAL;
16662f7e33d4SMiao Xie 	}
166716cdcec7SMiao Xie 
1668f5cc7b80SNikolay Borisov 	inode->index_cnt = delayed_node->index_cnt;
16692f7e33d4SMiao Xie 	btrfs_release_delayed_node(delayed_node);
16702f7e33d4SMiao Xie 	return 0;
167116cdcec7SMiao Xie }
167216cdcec7SMiao Xie 
btrfs_readdir_get_delayed_items(struct inode * inode,u64 last_index,struct list_head * ins_list,struct list_head * del_list)167302dbfc99SOmar Sandoval bool btrfs_readdir_get_delayed_items(struct inode *inode,
16749b378f6aSFilipe Manana 				     u64 last_index,
167502dbfc99SOmar Sandoval 				     struct list_head *ins_list,
167616cdcec7SMiao Xie 				     struct list_head *del_list)
167716cdcec7SMiao Xie {
167816cdcec7SMiao Xie 	struct btrfs_delayed_node *delayed_node;
167916cdcec7SMiao Xie 	struct btrfs_delayed_item *item;
168016cdcec7SMiao Xie 
1681340c6ca9SNikolay Borisov 	delayed_node = btrfs_get_delayed_node(BTRFS_I(inode));
168216cdcec7SMiao Xie 	if (!delayed_node)
168302dbfc99SOmar Sandoval 		return false;
168402dbfc99SOmar Sandoval 
168502dbfc99SOmar Sandoval 	/*
168602dbfc99SOmar Sandoval 	 * We can only do one readdir with delayed items at a time because of
168702dbfc99SOmar Sandoval 	 * item->readdir_list.
168802dbfc99SOmar Sandoval 	 */
1689e5d4d75bSDavid Sterba 	btrfs_inode_unlock(BTRFS_I(inode), BTRFS_ILOCK_SHARED);
169029b6352bSDavid Sterba 	btrfs_inode_lock(BTRFS_I(inode), 0);
169116cdcec7SMiao Xie 
169216cdcec7SMiao Xie 	mutex_lock(&delayed_node->mutex);
169316cdcec7SMiao Xie 	item = __btrfs_first_delayed_insertion_item(delayed_node);
16949b378f6aSFilipe Manana 	while (item && item->index <= last_index) {
1695089e77e1SElena Reshetova 		refcount_inc(&item->refs);
169616cdcec7SMiao Xie 		list_add_tail(&item->readdir_list, ins_list);
169716cdcec7SMiao Xie 		item = __btrfs_next_delayed_item(item);
169816cdcec7SMiao Xie 	}
169916cdcec7SMiao Xie 
170016cdcec7SMiao Xie 	item = __btrfs_first_delayed_deletion_item(delayed_node);
17019b378f6aSFilipe Manana 	while (item && item->index <= last_index) {
1702089e77e1SElena Reshetova 		refcount_inc(&item->refs);
170316cdcec7SMiao Xie 		list_add_tail(&item->readdir_list, del_list);
170416cdcec7SMiao Xie 		item = __btrfs_next_delayed_item(item);
170516cdcec7SMiao Xie 	}
170616cdcec7SMiao Xie 	mutex_unlock(&delayed_node->mutex);
170716cdcec7SMiao Xie 	/*
170816cdcec7SMiao Xie 	 * This delayed node is still cached in the btrfs inode, so refs
170916cdcec7SMiao Xie 	 * must be > 1 now, and we needn't check it is going to be freed
171016cdcec7SMiao Xie 	 * or not.
171116cdcec7SMiao Xie 	 *
171216cdcec7SMiao Xie 	 * Besides that, this function is used to read dir, we do not
171316cdcec7SMiao Xie 	 * insert/delete delayed items in this period. So we also needn't
171416cdcec7SMiao Xie 	 * requeue or dequeue this delayed node.
171516cdcec7SMiao Xie 	 */
17166de5f18eSElena Reshetova 	refcount_dec(&delayed_node->refs);
171702dbfc99SOmar Sandoval 
171802dbfc99SOmar Sandoval 	return true;
171916cdcec7SMiao Xie }
172016cdcec7SMiao Xie 
btrfs_readdir_put_delayed_items(struct inode * inode,struct list_head * ins_list,struct list_head * del_list)172102dbfc99SOmar Sandoval void btrfs_readdir_put_delayed_items(struct inode *inode,
172202dbfc99SOmar Sandoval 				     struct list_head *ins_list,
172316cdcec7SMiao Xie 				     struct list_head *del_list)
172416cdcec7SMiao Xie {
172516cdcec7SMiao Xie 	struct btrfs_delayed_item *curr, *next;
172616cdcec7SMiao Xie 
172716cdcec7SMiao Xie 	list_for_each_entry_safe(curr, next, ins_list, readdir_list) {
172816cdcec7SMiao Xie 		list_del(&curr->readdir_list);
1729089e77e1SElena Reshetova 		if (refcount_dec_and_test(&curr->refs))
173016cdcec7SMiao Xie 			kfree(curr);
173116cdcec7SMiao Xie 	}
173216cdcec7SMiao Xie 
173316cdcec7SMiao Xie 	list_for_each_entry_safe(curr, next, del_list, readdir_list) {
173416cdcec7SMiao Xie 		list_del(&curr->readdir_list);
1735089e77e1SElena Reshetova 		if (refcount_dec_and_test(&curr->refs))
173616cdcec7SMiao Xie 			kfree(curr);
173716cdcec7SMiao Xie 	}
173802dbfc99SOmar Sandoval 
173902dbfc99SOmar Sandoval 	/*
174002dbfc99SOmar Sandoval 	 * The VFS is going to do up_read(), so we need to downgrade back to a
174102dbfc99SOmar Sandoval 	 * read lock.
174202dbfc99SOmar Sandoval 	 */
174302dbfc99SOmar Sandoval 	downgrade_write(&inode->i_rwsem);
174416cdcec7SMiao Xie }
174516cdcec7SMiao Xie 
btrfs_should_delete_dir_index(struct list_head * del_list,u64 index)174616cdcec7SMiao Xie int btrfs_should_delete_dir_index(struct list_head *del_list,
174716cdcec7SMiao Xie 				  u64 index)
174816cdcec7SMiao Xie {
1749e4fd493cSJosef Bacik 	struct btrfs_delayed_item *curr;
1750e4fd493cSJosef Bacik 	int ret = 0;
175116cdcec7SMiao Xie 
1752e4fd493cSJosef Bacik 	list_for_each_entry(curr, del_list, readdir_list) {
175396d89923SFilipe Manana 		if (curr->index > index)
175416cdcec7SMiao Xie 			break;
175596d89923SFilipe Manana 		if (curr->index == index) {
1756e4fd493cSJosef Bacik 			ret = 1;
1757e4fd493cSJosef Bacik 			break;
175816cdcec7SMiao Xie 		}
1759e4fd493cSJosef Bacik 	}
1760e4fd493cSJosef Bacik 	return ret;
176116cdcec7SMiao Xie }
176216cdcec7SMiao Xie 
176316cdcec7SMiao Xie /*
176416cdcec7SMiao Xie  * btrfs_readdir_delayed_dir_index - read dir info stored in the delayed tree
176516cdcec7SMiao Xie  *
176616cdcec7SMiao Xie  */
btrfs_readdir_delayed_dir_index(struct dir_context * ctx,struct list_head * ins_list)17679cdda8d3SAl Viro int btrfs_readdir_delayed_dir_index(struct dir_context *ctx,
1768d2fbb2b5SJeff Mahoney 				    struct list_head *ins_list)
176916cdcec7SMiao Xie {
177016cdcec7SMiao Xie 	struct btrfs_dir_item *di;
177116cdcec7SMiao Xie 	struct btrfs_delayed_item *curr, *next;
177216cdcec7SMiao Xie 	struct btrfs_key location;
177316cdcec7SMiao Xie 	char *name;
177416cdcec7SMiao Xie 	int name_len;
177516cdcec7SMiao Xie 	int over = 0;
177616cdcec7SMiao Xie 	unsigned char d_type;
177716cdcec7SMiao Xie 
177816cdcec7SMiao Xie 	/*
177916cdcec7SMiao Xie 	 * Changing the data of the delayed item is impossible. So
178016cdcec7SMiao Xie 	 * we needn't lock them. And we have held i_mutex of the
178116cdcec7SMiao Xie 	 * directory, nobody can delete any directory indexes now.
178216cdcec7SMiao Xie 	 */
178316cdcec7SMiao Xie 	list_for_each_entry_safe(curr, next, ins_list, readdir_list) {
178416cdcec7SMiao Xie 		list_del(&curr->readdir_list);
178516cdcec7SMiao Xie 
178696d89923SFilipe Manana 		if (curr->index < ctx->pos) {
1787089e77e1SElena Reshetova 			if (refcount_dec_and_test(&curr->refs))
178816cdcec7SMiao Xie 				kfree(curr);
178916cdcec7SMiao Xie 			continue;
179016cdcec7SMiao Xie 		}
179116cdcec7SMiao Xie 
179296d89923SFilipe Manana 		ctx->pos = curr->index;
179316cdcec7SMiao Xie 
179416cdcec7SMiao Xie 		di = (struct btrfs_dir_item *)curr->data;
179516cdcec7SMiao Xie 		name = (char *)(di + 1);
17963cae210fSQu Wenruo 		name_len = btrfs_stack_dir_name_len(di);
179716cdcec7SMiao Xie 
179894a48aefSOmar Sandoval 		d_type = fs_ftype_to_dtype(btrfs_dir_flags_to_ftype(di->type));
179916cdcec7SMiao Xie 		btrfs_disk_key_to_cpu(&location, &di->location);
180016cdcec7SMiao Xie 
18019cdda8d3SAl Viro 		over = !dir_emit(ctx, name, name_len,
180216cdcec7SMiao Xie 			       location.objectid, d_type);
180316cdcec7SMiao Xie 
1804089e77e1SElena Reshetova 		if (refcount_dec_and_test(&curr->refs))
180516cdcec7SMiao Xie 			kfree(curr);
180616cdcec7SMiao Xie 
180716cdcec7SMiao Xie 		if (over)
180816cdcec7SMiao Xie 			return 1;
180942e9cc46SJosef Bacik 		ctx->pos++;
181016cdcec7SMiao Xie 	}
181116cdcec7SMiao Xie 	return 0;
181216cdcec7SMiao Xie }
181316cdcec7SMiao Xie 
fill_stack_inode_item(struct btrfs_trans_handle * trans,struct btrfs_inode_item * inode_item,struct inode * inode)181416cdcec7SMiao Xie static void fill_stack_inode_item(struct btrfs_trans_handle *trans,
181516cdcec7SMiao Xie 				  struct btrfs_inode_item *inode_item,
181616cdcec7SMiao Xie 				  struct inode *inode)
181716cdcec7SMiao Xie {
181877eea05eSBoris Burkov 	u64 flags;
181977eea05eSBoris Burkov 
18202f2f43d3SEric W. Biederman 	btrfs_set_stack_inode_uid(inode_item, i_uid_read(inode));
18212f2f43d3SEric W. Biederman 	btrfs_set_stack_inode_gid(inode_item, i_gid_read(inode));
182216cdcec7SMiao Xie 	btrfs_set_stack_inode_size(inode_item, BTRFS_I(inode)->disk_i_size);
182316cdcec7SMiao Xie 	btrfs_set_stack_inode_mode(inode_item, inode->i_mode);
182416cdcec7SMiao Xie 	btrfs_set_stack_inode_nlink(inode_item, inode->i_nlink);
182516cdcec7SMiao Xie 	btrfs_set_stack_inode_nbytes(inode_item, inode_get_bytes(inode));
182616cdcec7SMiao Xie 	btrfs_set_stack_inode_generation(inode_item,
182716cdcec7SMiao Xie 					 BTRFS_I(inode)->generation);
1828c7f88c4eSJeff Layton 	btrfs_set_stack_inode_sequence(inode_item,
1829c7f88c4eSJeff Layton 				       inode_peek_iversion(inode));
183016cdcec7SMiao Xie 	btrfs_set_stack_inode_transid(inode_item, trans->transid);
183116cdcec7SMiao Xie 	btrfs_set_stack_inode_rdev(inode_item, inode->i_rdev);
183277eea05eSBoris Burkov 	flags = btrfs_inode_combine_flags(BTRFS_I(inode)->flags,
183377eea05eSBoris Burkov 					  BTRFS_I(inode)->ro_flags);
183477eea05eSBoris Burkov 	btrfs_set_stack_inode_flags(inode_item, flags);
1835ff5714ccSChris Mason 	btrfs_set_stack_inode_block_group(inode_item, 0);
183616cdcec7SMiao Xie 
1837a937b979SDavid Sterba 	btrfs_set_stack_timespec_sec(&inode_item->atime,
183816cdcec7SMiao Xie 				     inode->i_atime.tv_sec);
1839a937b979SDavid Sterba 	btrfs_set_stack_timespec_nsec(&inode_item->atime,
184016cdcec7SMiao Xie 				      inode->i_atime.tv_nsec);
184116cdcec7SMiao Xie 
1842a937b979SDavid Sterba 	btrfs_set_stack_timespec_sec(&inode_item->mtime,
184316cdcec7SMiao Xie 				     inode->i_mtime.tv_sec);
1844a937b979SDavid Sterba 	btrfs_set_stack_timespec_nsec(&inode_item->mtime,
184516cdcec7SMiao Xie 				      inode->i_mtime.tv_nsec);
184616cdcec7SMiao Xie 
1847a937b979SDavid Sterba 	btrfs_set_stack_timespec_sec(&inode_item->ctime,
18482a9462deSJeff Layton 				     inode_get_ctime(inode).tv_sec);
1849a937b979SDavid Sterba 	btrfs_set_stack_timespec_nsec(&inode_item->ctime,
18502a9462deSJeff Layton 				      inode_get_ctime(inode).tv_nsec);
18519cc97d64Schandan r 
18529cc97d64Schandan r 	btrfs_set_stack_timespec_sec(&inode_item->otime,
18539cc97d64Schandan r 				     BTRFS_I(inode)->i_otime.tv_sec);
18549cc97d64Schandan r 	btrfs_set_stack_timespec_nsec(&inode_item->otime,
18559cc97d64Schandan r 				     BTRFS_I(inode)->i_otime.tv_nsec);
185616cdcec7SMiao Xie }
185716cdcec7SMiao Xie 
btrfs_fill_inode(struct inode * inode,u32 * rdev)18582f7e33d4SMiao Xie int btrfs_fill_inode(struct inode *inode, u32 *rdev)
18592f7e33d4SMiao Xie {
18609ddc959eSJosef Bacik 	struct btrfs_fs_info *fs_info = BTRFS_I(inode)->root->fs_info;
18612f7e33d4SMiao Xie 	struct btrfs_delayed_node *delayed_node;
18622f7e33d4SMiao Xie 	struct btrfs_inode_item *inode_item;
18632f7e33d4SMiao Xie 
1864340c6ca9SNikolay Borisov 	delayed_node = btrfs_get_delayed_node(BTRFS_I(inode));
18652f7e33d4SMiao Xie 	if (!delayed_node)
18662f7e33d4SMiao Xie 		return -ENOENT;
18672f7e33d4SMiao Xie 
18682f7e33d4SMiao Xie 	mutex_lock(&delayed_node->mutex);
18697cf35d91SMiao Xie 	if (!test_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &delayed_node->flags)) {
18702f7e33d4SMiao Xie 		mutex_unlock(&delayed_node->mutex);
18712f7e33d4SMiao Xie 		btrfs_release_delayed_node(delayed_node);
18722f7e33d4SMiao Xie 		return -ENOENT;
18732f7e33d4SMiao Xie 	}
18742f7e33d4SMiao Xie 
18752f7e33d4SMiao Xie 	inode_item = &delayed_node->inode_item;
18762f7e33d4SMiao Xie 
18772f2f43d3SEric W. Biederman 	i_uid_write(inode, btrfs_stack_inode_uid(inode_item));
18782f2f43d3SEric W. Biederman 	i_gid_write(inode, btrfs_stack_inode_gid(inode_item));
18796ef06d27SNikolay Borisov 	btrfs_i_size_write(BTRFS_I(inode), btrfs_stack_inode_size(inode_item));
18809ddc959eSJosef Bacik 	btrfs_inode_set_file_extent_range(BTRFS_I(inode), 0,
18819ddc959eSJosef Bacik 			round_up(i_size_read(inode), fs_info->sectorsize));
18822f7e33d4SMiao Xie 	inode->i_mode = btrfs_stack_inode_mode(inode_item);
1883bfe86848SMiklos Szeredi 	set_nlink(inode, btrfs_stack_inode_nlink(inode_item));
18842f7e33d4SMiao Xie 	inode_set_bytes(inode, btrfs_stack_inode_nbytes(inode_item));
18852f7e33d4SMiao Xie 	BTRFS_I(inode)->generation = btrfs_stack_inode_generation(inode_item);
18866e17d30bSYang Dongsheng         BTRFS_I(inode)->last_trans = btrfs_stack_inode_transid(inode_item);
18876e17d30bSYang Dongsheng 
1888c7f88c4eSJeff Layton 	inode_set_iversion_queried(inode,
1889c7f88c4eSJeff Layton 				   btrfs_stack_inode_sequence(inode_item));
18902f7e33d4SMiao Xie 	inode->i_rdev = 0;
18912f7e33d4SMiao Xie 	*rdev = btrfs_stack_inode_rdev(inode_item);
189277eea05eSBoris Burkov 	btrfs_inode_split_flags(btrfs_stack_inode_flags(inode_item),
189377eea05eSBoris Burkov 				&BTRFS_I(inode)->flags, &BTRFS_I(inode)->ro_flags);
18942f7e33d4SMiao Xie 
1895a937b979SDavid Sterba 	inode->i_atime.tv_sec = btrfs_stack_timespec_sec(&inode_item->atime);
1896a937b979SDavid Sterba 	inode->i_atime.tv_nsec = btrfs_stack_timespec_nsec(&inode_item->atime);
18972f7e33d4SMiao Xie 
1898a937b979SDavid Sterba 	inode->i_mtime.tv_sec = btrfs_stack_timespec_sec(&inode_item->mtime);
1899a937b979SDavid Sterba 	inode->i_mtime.tv_nsec = btrfs_stack_timespec_nsec(&inode_item->mtime);
19002f7e33d4SMiao Xie 
19012a9462deSJeff Layton 	inode_set_ctime(inode, btrfs_stack_timespec_sec(&inode_item->ctime),
19022a9462deSJeff Layton 			btrfs_stack_timespec_nsec(&inode_item->ctime));
19032f7e33d4SMiao Xie 
19049cc97d64Schandan r 	BTRFS_I(inode)->i_otime.tv_sec =
19059cc97d64Schandan r 		btrfs_stack_timespec_sec(&inode_item->otime);
19069cc97d64Schandan r 	BTRFS_I(inode)->i_otime.tv_nsec =
19079cc97d64Schandan r 		btrfs_stack_timespec_nsec(&inode_item->otime);
19089cc97d64Schandan r 
19092f7e33d4SMiao Xie 	inode->i_generation = BTRFS_I(inode)->generation;
19102f7e33d4SMiao Xie 	BTRFS_I(inode)->index_cnt = (u64)-1;
19112f7e33d4SMiao Xie 
19122f7e33d4SMiao Xie 	mutex_unlock(&delayed_node->mutex);
19132f7e33d4SMiao Xie 	btrfs_release_delayed_node(delayed_node);
19142f7e33d4SMiao Xie 	return 0;
19152f7e33d4SMiao Xie }
19162f7e33d4SMiao Xie 
btrfs_delayed_update_inode(struct btrfs_trans_handle * trans,struct btrfs_root * root,struct btrfs_inode * inode)191716cdcec7SMiao Xie int btrfs_delayed_update_inode(struct btrfs_trans_handle *trans,
1918f3fbcaefSNikolay Borisov 			       struct btrfs_root *root,
1919f3fbcaefSNikolay Borisov 			       struct btrfs_inode *inode)
192016cdcec7SMiao Xie {
192116cdcec7SMiao Xie 	struct btrfs_delayed_node *delayed_node;
1922aa0467d8SDavid Sterba 	int ret = 0;
192316cdcec7SMiao Xie 
1924f3fbcaefSNikolay Borisov 	delayed_node = btrfs_get_or_create_delayed_node(inode);
192516cdcec7SMiao Xie 	if (IS_ERR(delayed_node))
192616cdcec7SMiao Xie 		return PTR_ERR(delayed_node);
192716cdcec7SMiao Xie 
192816cdcec7SMiao Xie 	mutex_lock(&delayed_node->mutex);
19297cf35d91SMiao Xie 	if (test_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &delayed_node->flags)) {
1930f3fbcaefSNikolay Borisov 		fill_stack_inode_item(trans, &delayed_node->inode_item,
1931f3fbcaefSNikolay Borisov 				      &inode->vfs_inode);
193216cdcec7SMiao Xie 		goto release_node;
193316cdcec7SMiao Xie 	}
193416cdcec7SMiao Xie 
19358e3c9d3cSNikolay Borisov 	ret = btrfs_delayed_inode_reserve_metadata(trans, root, delayed_node);
1936c06a0e12SJosef Bacik 	if (ret)
1937c06a0e12SJosef Bacik 		goto release_node;
193816cdcec7SMiao Xie 
1939f3fbcaefSNikolay Borisov 	fill_stack_inode_item(trans, &delayed_node->inode_item, &inode->vfs_inode);
19407cf35d91SMiao Xie 	set_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &delayed_node->flags);
194116cdcec7SMiao Xie 	delayed_node->count++;
194216cdcec7SMiao Xie 	atomic_inc(&root->fs_info->delayed_root->items);
194316cdcec7SMiao Xie release_node:
194416cdcec7SMiao Xie 	mutex_unlock(&delayed_node->mutex);
194516cdcec7SMiao Xie 	btrfs_release_delayed_node(delayed_node);
194616cdcec7SMiao Xie 	return ret;
194716cdcec7SMiao Xie }
194816cdcec7SMiao Xie 
btrfs_delayed_delete_inode_ref(struct btrfs_inode * inode)1949e07222c7SNikolay Borisov int btrfs_delayed_delete_inode_ref(struct btrfs_inode *inode)
195067de1176SMiao Xie {
19513ffbd68cSDavid Sterba 	struct btrfs_fs_info *fs_info = inode->root->fs_info;
195267de1176SMiao Xie 	struct btrfs_delayed_node *delayed_node;
195367de1176SMiao Xie 
19546f896054SChris Mason 	/*
19556f896054SChris Mason 	 * we don't do delayed inode updates during log recovery because it
19566f896054SChris Mason 	 * leads to enospc problems.  This means we also can't do
19576f896054SChris Mason 	 * delayed inode refs
19586f896054SChris Mason 	 */
19590b246afaSJeff Mahoney 	if (test_bit(BTRFS_FS_LOG_RECOVERING, &fs_info->flags))
19606f896054SChris Mason 		return -EAGAIN;
19616f896054SChris Mason 
1962e07222c7SNikolay Borisov 	delayed_node = btrfs_get_or_create_delayed_node(inode);
196367de1176SMiao Xie 	if (IS_ERR(delayed_node))
196467de1176SMiao Xie 		return PTR_ERR(delayed_node);
196567de1176SMiao Xie 
196667de1176SMiao Xie 	/*
196767de1176SMiao Xie 	 * We don't reserve space for inode ref deletion is because:
196867de1176SMiao Xie 	 * - We ONLY do async inode ref deletion for the inode who has only
196967de1176SMiao Xie 	 *   one link(i_nlink == 1), it means there is only one inode ref.
197067de1176SMiao Xie 	 *   And in most case, the inode ref and the inode item are in the
197167de1176SMiao Xie 	 *   same leaf, and we will deal with them at the same time.
197267de1176SMiao Xie 	 *   Since we are sure we will reserve the space for the inode item,
197367de1176SMiao Xie 	 *   it is unnecessary to reserve space for inode ref deletion.
197467de1176SMiao Xie 	 * - If the inode ref and the inode item are not in the same leaf,
197567de1176SMiao Xie 	 *   We also needn't worry about enospc problem, because we reserve
197667de1176SMiao Xie 	 *   much more space for the inode update than it needs.
197767de1176SMiao Xie 	 * - At the worst, we can steal some space from the global reservation.
197867de1176SMiao Xie 	 *   It is very rare.
197967de1176SMiao Xie 	 */
198067de1176SMiao Xie 	mutex_lock(&delayed_node->mutex);
198167de1176SMiao Xie 	if (test_bit(BTRFS_DELAYED_NODE_DEL_IREF, &delayed_node->flags))
198267de1176SMiao Xie 		goto release_node;
198367de1176SMiao Xie 
198467de1176SMiao Xie 	set_bit(BTRFS_DELAYED_NODE_DEL_IREF, &delayed_node->flags);
198567de1176SMiao Xie 	delayed_node->count++;
19860b246afaSJeff Mahoney 	atomic_inc(&fs_info->delayed_root->items);
198767de1176SMiao Xie release_node:
198867de1176SMiao Xie 	mutex_unlock(&delayed_node->mutex);
198967de1176SMiao Xie 	btrfs_release_delayed_node(delayed_node);
199067de1176SMiao Xie 	return 0;
199167de1176SMiao Xie }
199267de1176SMiao Xie 
__btrfs_kill_delayed_node(struct btrfs_delayed_node * delayed_node)199316cdcec7SMiao Xie static void __btrfs_kill_delayed_node(struct btrfs_delayed_node *delayed_node)
199416cdcec7SMiao Xie {
199516cdcec7SMiao Xie 	struct btrfs_root *root = delayed_node->root;
19962ff7e61eSJeff Mahoney 	struct btrfs_fs_info *fs_info = root->fs_info;
199716cdcec7SMiao Xie 	struct btrfs_delayed_item *curr_item, *prev_item;
199816cdcec7SMiao Xie 
199916cdcec7SMiao Xie 	mutex_lock(&delayed_node->mutex);
200016cdcec7SMiao Xie 	curr_item = __btrfs_first_delayed_insertion_item(delayed_node);
200116cdcec7SMiao Xie 	while (curr_item) {
200216cdcec7SMiao Xie 		prev_item = curr_item;
200316cdcec7SMiao Xie 		curr_item = __btrfs_next_delayed_item(prev_item);
200416cdcec7SMiao Xie 		btrfs_release_delayed_item(prev_item);
200516cdcec7SMiao Xie 	}
200616cdcec7SMiao Xie 
2007763748b2SFilipe Manana 	if (delayed_node->index_item_leaves > 0) {
2008763748b2SFilipe Manana 		btrfs_delayed_item_release_leaves(delayed_node,
2009763748b2SFilipe Manana 					  delayed_node->index_item_leaves);
2010763748b2SFilipe Manana 		delayed_node->index_item_leaves = 0;
2011763748b2SFilipe Manana 	}
2012763748b2SFilipe Manana 
201316cdcec7SMiao Xie 	curr_item = __btrfs_first_delayed_deletion_item(delayed_node);
201416cdcec7SMiao Xie 	while (curr_item) {
20154f5427ccSQu Wenruo 		btrfs_delayed_item_release_metadata(root, curr_item);
201616cdcec7SMiao Xie 		prev_item = curr_item;
201716cdcec7SMiao Xie 		curr_item = __btrfs_next_delayed_item(prev_item);
201816cdcec7SMiao Xie 		btrfs_release_delayed_item(prev_item);
201916cdcec7SMiao Xie 	}
202016cdcec7SMiao Xie 
202167de1176SMiao Xie 	btrfs_release_delayed_iref(delayed_node);
202267de1176SMiao Xie 
20237cf35d91SMiao Xie 	if (test_bit(BTRFS_DELAYED_NODE_INODE_DIRTY, &delayed_node->flags)) {
20244f5427ccSQu Wenruo 		btrfs_delayed_inode_release_metadata(fs_info, delayed_node, false);
202516cdcec7SMiao Xie 		btrfs_release_delayed_inode(delayed_node);
202616cdcec7SMiao Xie 	}
202716cdcec7SMiao Xie 	mutex_unlock(&delayed_node->mutex);
202816cdcec7SMiao Xie }
202916cdcec7SMiao Xie 
btrfs_kill_delayed_inode_items(struct btrfs_inode * inode)20304ccb5c72SNikolay Borisov void btrfs_kill_delayed_inode_items(struct btrfs_inode *inode)
203116cdcec7SMiao Xie {
203216cdcec7SMiao Xie 	struct btrfs_delayed_node *delayed_node;
203316cdcec7SMiao Xie 
20344ccb5c72SNikolay Borisov 	delayed_node = btrfs_get_delayed_node(inode);
203516cdcec7SMiao Xie 	if (!delayed_node)
203616cdcec7SMiao Xie 		return;
203716cdcec7SMiao Xie 
203816cdcec7SMiao Xie 	__btrfs_kill_delayed_node(delayed_node);
203916cdcec7SMiao Xie 	btrfs_release_delayed_node(delayed_node);
204016cdcec7SMiao Xie }
204116cdcec7SMiao Xie 
btrfs_kill_all_delayed_nodes(struct btrfs_root * root)204216cdcec7SMiao Xie void btrfs_kill_all_delayed_nodes(struct btrfs_root *root)
204316cdcec7SMiao Xie {
2044088aea3bSDavid Sterba 	u64 inode_id = 0;
204516cdcec7SMiao Xie 	struct btrfs_delayed_node *delayed_nodes[8];
2046088aea3bSDavid Sterba 	int i, n;
204716cdcec7SMiao Xie 
204816cdcec7SMiao Xie 	while (1) {
204916cdcec7SMiao Xie 		spin_lock(&root->inode_lock);
2050088aea3bSDavid Sterba 		n = radix_tree_gang_lookup(&root->delayed_nodes_tree,
2051088aea3bSDavid Sterba 					   (void **)delayed_nodes, inode_id,
2052088aea3bSDavid Sterba 					   ARRAY_SIZE(delayed_nodes));
2053088aea3bSDavid Sterba 		if (!n) {
205416cdcec7SMiao Xie 			spin_unlock(&root->inode_lock);
2055088aea3bSDavid Sterba 			break;
205616cdcec7SMiao Xie 		}
205716cdcec7SMiao Xie 
2058088aea3bSDavid Sterba 		inode_id = delayed_nodes[n - 1]->inode_id + 1;
2059088aea3bSDavid Sterba 		for (i = 0; i < n; i++) {
2060baf320b9SJosef Bacik 			/*
2061baf320b9SJosef Bacik 			 * Don't increase refs in case the node is dead and
2062baf320b9SJosef Bacik 			 * about to be removed from the tree in the loop below
2063baf320b9SJosef Bacik 			 */
2064088aea3bSDavid Sterba 			if (!refcount_inc_not_zero(&delayed_nodes[i]->refs))
2065088aea3bSDavid Sterba 				delayed_nodes[i] = NULL;
2066baf320b9SJosef Bacik 		}
206716cdcec7SMiao Xie 		spin_unlock(&root->inode_lock);
206816cdcec7SMiao Xie 
2069088aea3bSDavid Sterba 		for (i = 0; i < n; i++) {
2070088aea3bSDavid Sterba 			if (!delayed_nodes[i])
2071088aea3bSDavid Sterba 				continue;
207216cdcec7SMiao Xie 			__btrfs_kill_delayed_node(delayed_nodes[i]);
207316cdcec7SMiao Xie 			btrfs_release_delayed_node(delayed_nodes[i]);
207416cdcec7SMiao Xie 		}
207516cdcec7SMiao Xie 	}
207616cdcec7SMiao Xie }
207767cde344SMiao Xie 
btrfs_destroy_delayed_inodes(struct btrfs_fs_info * fs_info)2078ccdf9b30SJeff Mahoney void btrfs_destroy_delayed_inodes(struct btrfs_fs_info *fs_info)
207967cde344SMiao Xie {
208067cde344SMiao Xie 	struct btrfs_delayed_node *curr_node, *prev_node;
208167cde344SMiao Xie 
2082ccdf9b30SJeff Mahoney 	curr_node = btrfs_first_delayed_node(fs_info->delayed_root);
208367cde344SMiao Xie 	while (curr_node) {
208467cde344SMiao Xie 		__btrfs_kill_delayed_node(curr_node);
208567cde344SMiao Xie 
208667cde344SMiao Xie 		prev_node = curr_node;
208767cde344SMiao Xie 		curr_node = btrfs_next_delayed_node(curr_node);
208867cde344SMiao Xie 		btrfs_release_delayed_node(prev_node);
208967cde344SMiao Xie 	}
209067cde344SMiao Xie }
209167cde344SMiao Xie 
btrfs_log_get_delayed_items(struct btrfs_inode * inode,struct list_head * ins_list,struct list_head * del_list)209230b80f3cSFilipe Manana void btrfs_log_get_delayed_items(struct btrfs_inode *inode,
209330b80f3cSFilipe Manana 				 struct list_head *ins_list,
209430b80f3cSFilipe Manana 				 struct list_head *del_list)
209530b80f3cSFilipe Manana {
209630b80f3cSFilipe Manana 	struct btrfs_delayed_node *node;
209730b80f3cSFilipe Manana 	struct btrfs_delayed_item *item;
209830b80f3cSFilipe Manana 
209930b80f3cSFilipe Manana 	node = btrfs_get_delayed_node(inode);
210030b80f3cSFilipe Manana 	if (!node)
210130b80f3cSFilipe Manana 		return;
210230b80f3cSFilipe Manana 
210330b80f3cSFilipe Manana 	mutex_lock(&node->mutex);
210430b80f3cSFilipe Manana 	item = __btrfs_first_delayed_insertion_item(node);
210530b80f3cSFilipe Manana 	while (item) {
210630b80f3cSFilipe Manana 		/*
210730b80f3cSFilipe Manana 		 * It's possible that the item is already in a log list. This
210830b80f3cSFilipe Manana 		 * can happen in case two tasks are trying to log the same
210930b80f3cSFilipe Manana 		 * directory. For example if we have tasks A and task B:
211030b80f3cSFilipe Manana 		 *
211130b80f3cSFilipe Manana 		 * Task A collected the delayed items into a log list while
211230b80f3cSFilipe Manana 		 * under the inode's log_mutex (at btrfs_log_inode()), but it
211330b80f3cSFilipe Manana 		 * only releases the items after logging the inodes they point
211430b80f3cSFilipe Manana 		 * to (if they are new inodes), which happens after unlocking
211530b80f3cSFilipe Manana 		 * the log mutex;
211630b80f3cSFilipe Manana 		 *
211730b80f3cSFilipe Manana 		 * Task B enters btrfs_log_inode() and acquires the log_mutex
211830b80f3cSFilipe Manana 		 * of the same directory inode, before task B releases the
211930b80f3cSFilipe Manana 		 * delayed items. This can happen for example when logging some
212030b80f3cSFilipe Manana 		 * inode we need to trigger logging of its parent directory, so
212130b80f3cSFilipe Manana 		 * logging two files that have the same parent directory can
212230b80f3cSFilipe Manana 		 * lead to this.
212330b80f3cSFilipe Manana 		 *
212430b80f3cSFilipe Manana 		 * If this happens, just ignore delayed items already in a log
212530b80f3cSFilipe Manana 		 * list. All the tasks logging the directory are under a log
212630b80f3cSFilipe Manana 		 * transaction and whichever finishes first can not sync the log
212730b80f3cSFilipe Manana 		 * before the other completes and leaves the log transaction.
212830b80f3cSFilipe Manana 		 */
212930b80f3cSFilipe Manana 		if (!item->logged && list_empty(&item->log_list)) {
213030b80f3cSFilipe Manana 			refcount_inc(&item->refs);
213130b80f3cSFilipe Manana 			list_add_tail(&item->log_list, ins_list);
213230b80f3cSFilipe Manana 		}
213330b80f3cSFilipe Manana 		item = __btrfs_next_delayed_item(item);
213430b80f3cSFilipe Manana 	}
213530b80f3cSFilipe Manana 
213630b80f3cSFilipe Manana 	item = __btrfs_first_delayed_deletion_item(node);
213730b80f3cSFilipe Manana 	while (item) {
213830b80f3cSFilipe Manana 		/* It may be non-empty, for the same reason mentioned above. */
213930b80f3cSFilipe Manana 		if (!item->logged && list_empty(&item->log_list)) {
214030b80f3cSFilipe Manana 			refcount_inc(&item->refs);
214130b80f3cSFilipe Manana 			list_add_tail(&item->log_list, del_list);
214230b80f3cSFilipe Manana 		}
214330b80f3cSFilipe Manana 		item = __btrfs_next_delayed_item(item);
214430b80f3cSFilipe Manana 	}
214530b80f3cSFilipe Manana 	mutex_unlock(&node->mutex);
214630b80f3cSFilipe Manana 
214730b80f3cSFilipe Manana 	/*
214830b80f3cSFilipe Manana 	 * We are called during inode logging, which means the inode is in use
214930b80f3cSFilipe Manana 	 * and can not be evicted before we finish logging the inode. So we never
215030b80f3cSFilipe Manana 	 * have the last reference on the delayed inode.
215130b80f3cSFilipe Manana 	 * Also, we don't use btrfs_release_delayed_node() because that would
215230b80f3cSFilipe Manana 	 * requeue the delayed inode (change its order in the list of prepared
215330b80f3cSFilipe Manana 	 * nodes) and we don't want to do such change because we don't create or
215430b80f3cSFilipe Manana 	 * delete delayed items.
215530b80f3cSFilipe Manana 	 */
215630b80f3cSFilipe Manana 	ASSERT(refcount_read(&node->refs) > 1);
215730b80f3cSFilipe Manana 	refcount_dec(&node->refs);
215830b80f3cSFilipe Manana }
215930b80f3cSFilipe Manana 
btrfs_log_put_delayed_items(struct btrfs_inode * inode,struct list_head * ins_list,struct list_head * del_list)216030b80f3cSFilipe Manana void btrfs_log_put_delayed_items(struct btrfs_inode *inode,
216130b80f3cSFilipe Manana 				 struct list_head *ins_list,
216230b80f3cSFilipe Manana 				 struct list_head *del_list)
216330b80f3cSFilipe Manana {
216430b80f3cSFilipe Manana 	struct btrfs_delayed_node *node;
216530b80f3cSFilipe Manana 	struct btrfs_delayed_item *item;
216630b80f3cSFilipe Manana 	struct btrfs_delayed_item *next;
216730b80f3cSFilipe Manana 
216830b80f3cSFilipe Manana 	node = btrfs_get_delayed_node(inode);
216930b80f3cSFilipe Manana 	if (!node)
217030b80f3cSFilipe Manana 		return;
217130b80f3cSFilipe Manana 
217230b80f3cSFilipe Manana 	mutex_lock(&node->mutex);
217330b80f3cSFilipe Manana 
217430b80f3cSFilipe Manana 	list_for_each_entry_safe(item, next, ins_list, log_list) {
217530b80f3cSFilipe Manana 		item->logged = true;
217630b80f3cSFilipe Manana 		list_del_init(&item->log_list);
217730b80f3cSFilipe Manana 		if (refcount_dec_and_test(&item->refs))
217830b80f3cSFilipe Manana 			kfree(item);
217930b80f3cSFilipe Manana 	}
218030b80f3cSFilipe Manana 
218130b80f3cSFilipe Manana 	list_for_each_entry_safe(item, next, del_list, log_list) {
218230b80f3cSFilipe Manana 		item->logged = true;
218330b80f3cSFilipe Manana 		list_del_init(&item->log_list);
218430b80f3cSFilipe Manana 		if (refcount_dec_and_test(&item->refs))
218530b80f3cSFilipe Manana 			kfree(item);
218630b80f3cSFilipe Manana 	}
218730b80f3cSFilipe Manana 
218830b80f3cSFilipe Manana 	mutex_unlock(&node->mutex);
218930b80f3cSFilipe Manana 
219030b80f3cSFilipe Manana 	/*
219130b80f3cSFilipe Manana 	 * We are called during inode logging, which means the inode is in use
219230b80f3cSFilipe Manana 	 * and can not be evicted before we finish logging the inode. So we never
219330b80f3cSFilipe Manana 	 * have the last reference on the delayed inode.
219430b80f3cSFilipe Manana 	 * Also, we don't use btrfs_release_delayed_node() because that would
219530b80f3cSFilipe Manana 	 * requeue the delayed inode (change its order in the list of prepared
219630b80f3cSFilipe Manana 	 * nodes) and we don't want to do such change because we don't create or
219730b80f3cSFilipe Manana 	 * delete delayed items.
219830b80f3cSFilipe Manana 	 */
219930b80f3cSFilipe Manana 	ASSERT(refcount_read(&node->refs) > 1);
220030b80f3cSFilipe Manana 	refcount_dec(&node->refs);
220130b80f3cSFilipe Manana }
2202