delayed-ref.c 26.4 KB
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/*
 * Copyright (C) 2009 Oracle.  All rights reserved.
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public
 * License v2 as published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * General Public License for more details.
 *
 * You should have received a copy of the GNU General Public
 * License along with this program; if not, write to the
 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
 * Boston, MA 021110-1307, USA.
 */

#include <linux/sched.h>
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#include <linux/slab.h>
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#include <linux/sort.h>
#include "ctree.h"
#include "delayed-ref.h"
#include "transaction.h"
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#include "qgroup.h"
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struct kmem_cache *btrfs_delayed_ref_head_cachep;
struct kmem_cache *btrfs_delayed_tree_ref_cachep;
struct kmem_cache *btrfs_delayed_data_ref_cachep;
struct kmem_cache *btrfs_delayed_extent_op_cachep;
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/*
 * delayed back reference update tracking.  For subvolume trees
 * we queue up extent allocations and backref maintenance for
 * delayed processing.   This avoids deep call chains where we
 * add extents in the middle of btrfs_search_slot, and it allows
 * us to buffer up frequently modified backrefs in an rb tree instead
 * of hammering updates on the extent allocation tree.
 */

/*
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 * compare two delayed tree backrefs with same bytenr and type
 */
static int comp_tree_refs(struct btrfs_delayed_tree_ref *ref2,
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			  struct btrfs_delayed_tree_ref *ref1, int type)
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{
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	if (type == BTRFS_TREE_BLOCK_REF_KEY) {
		if (ref1->root < ref2->root)
			return -1;
		if (ref1->root > ref2->root)
			return 1;
	} else {
		if (ref1->parent < ref2->parent)
			return -1;
		if (ref1->parent > ref2->parent)
			return 1;
	}
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	return 0;
}

/*
 * compare two delayed data backrefs with same bytenr and type
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 */
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static int comp_data_refs(struct btrfs_delayed_data_ref *ref2,
			  struct btrfs_delayed_data_ref *ref1)
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{
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	if (ref1->node.type == BTRFS_EXTENT_DATA_REF_KEY) {
		if (ref1->root < ref2->root)
			return -1;
		if (ref1->root > ref2->root)
			return 1;
		if (ref1->objectid < ref2->objectid)
			return -1;
		if (ref1->objectid > ref2->objectid)
			return 1;
		if (ref1->offset < ref2->offset)
			return -1;
		if (ref1->offset > ref2->offset)
			return 1;
	} else {
		if (ref1->parent < ref2->parent)
			return -1;
		if (ref1->parent > ref2->parent)
			return 1;
	}
	return 0;
}

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/* insert a new ref to head ref rbtree */
static struct btrfs_delayed_ref_head *htree_insert(struct rb_root *root,
						   struct rb_node *node)
{
	struct rb_node **p = &root->rb_node;
	struct rb_node *parent_node = NULL;
	struct btrfs_delayed_ref_head *entry;
	struct btrfs_delayed_ref_head *ins;
	u64 bytenr;

	ins = rb_entry(node, struct btrfs_delayed_ref_head, href_node);
	bytenr = ins->node.bytenr;
	while (*p) {
		parent_node = *p;
		entry = rb_entry(parent_node, struct btrfs_delayed_ref_head,
				 href_node);

		if (bytenr < entry->node.bytenr)
			p = &(*p)->rb_left;
		else if (bytenr > entry->node.bytenr)
			p = &(*p)->rb_right;
		else
			return entry;
	}

	rb_link_node(node, parent_node, p);
	rb_insert_color(node, root);
	return NULL;
}

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/*
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 * find an head entry based on bytenr. This returns the delayed ref
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 * head if it was able to find one, or NULL if nothing was in that spot.
 * If return_bigger is given, the next bigger entry is returned if no exact
 * match is found.
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 */
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static struct btrfs_delayed_ref_head *
find_ref_head(struct rb_root *root, u64 bytenr,
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	      int return_bigger)
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{
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	struct rb_node *n;
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	struct btrfs_delayed_ref_head *entry;
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	n = root->rb_node;
	entry = NULL;
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	while (n) {
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		entry = rb_entry(n, struct btrfs_delayed_ref_head, href_node);
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		if (bytenr < entry->node.bytenr)
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			n = n->rb_left;
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		else if (bytenr > entry->node.bytenr)
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			n = n->rb_right;
		else
			return entry;
	}
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	if (entry && return_bigger) {
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		if (bytenr > entry->node.bytenr) {
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			n = rb_next(&entry->href_node);
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			if (!n)
				n = rb_first(root);
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			entry = rb_entry(n, struct btrfs_delayed_ref_head,
					 href_node);
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			return entry;
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		}
		return entry;
	}
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	return NULL;
}

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int btrfs_delayed_ref_lock(struct btrfs_trans_handle *trans,
			   struct btrfs_delayed_ref_head *head)
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{
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	struct btrfs_delayed_ref_root *delayed_refs;

	delayed_refs = &trans->transaction->delayed_refs;
	assert_spin_locked(&delayed_refs->lock);
	if (mutex_trylock(&head->mutex))
		return 0;

	atomic_inc(&head->node.refs);
	spin_unlock(&delayed_refs->lock);

	mutex_lock(&head->mutex);
	spin_lock(&delayed_refs->lock);
	if (!head->node.in_tree) {
		mutex_unlock(&head->mutex);
		btrfs_put_delayed_ref(&head->node);
		return -EAGAIN;
	}
	btrfs_put_delayed_ref(&head->node);
	return 0;
}

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static inline void drop_delayed_ref(struct btrfs_trans_handle *trans,
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				    struct btrfs_delayed_ref_root *delayed_refs,
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				    struct btrfs_delayed_ref_head *head,
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				    struct btrfs_delayed_ref_node *ref)
{
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	if (btrfs_delayed_ref_is_head(ref)) {
		head = btrfs_delayed_node_to_head(ref);
		rb_erase(&head->href_node, &delayed_refs->href_root);
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	} else {
		assert_spin_locked(&head->lock);
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		list_del(&ref->list);
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	}
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	ref->in_tree = 0;
	btrfs_put_delayed_ref(ref);
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	atomic_dec(&delayed_refs->num_entries);
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	if (trans->delayed_ref_updates)
		trans->delayed_ref_updates--;
}

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static bool merge_ref(struct btrfs_trans_handle *trans,
		      struct btrfs_delayed_ref_root *delayed_refs,
		      struct btrfs_delayed_ref_head *head,
		      struct btrfs_delayed_ref_node *ref,
		      u64 seq)
{
	struct btrfs_delayed_ref_node *next;
	bool done = false;

	next = list_first_entry(&head->ref_list, struct btrfs_delayed_ref_node,
				list);
	while (!done && &next->list != &head->ref_list) {
		int mod;
		struct btrfs_delayed_ref_node *next2;

		next2 = list_next_entry(next, list);

		if (next == ref)
			goto next;

		if (seq && next->seq >= seq)
			goto next;

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		if (next->type != ref->type)
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			goto next;

		if ((ref->type == BTRFS_TREE_BLOCK_REF_KEY ||
		     ref->type == BTRFS_SHARED_BLOCK_REF_KEY) &&
		    comp_tree_refs(btrfs_delayed_node_to_tree_ref(ref),
				   btrfs_delayed_node_to_tree_ref(next),
				   ref->type))
			goto next;
		if ((ref->type == BTRFS_EXTENT_DATA_REF_KEY ||
		     ref->type == BTRFS_SHARED_DATA_REF_KEY) &&
		    comp_data_refs(btrfs_delayed_node_to_data_ref(ref),
				   btrfs_delayed_node_to_data_ref(next)))
			goto next;

		if (ref->action == next->action) {
			mod = next->ref_mod;
		} else {
			if (ref->ref_mod < next->ref_mod) {
				swap(ref, next);
				done = true;
			}
			mod = -next->ref_mod;
		}

		drop_delayed_ref(trans, delayed_refs, head, next);
		ref->ref_mod += mod;
		if (ref->ref_mod == 0) {
			drop_delayed_ref(trans, delayed_refs, head, ref);
			done = true;
		} else {
			/*
			 * Can't have multiples of the same ref on a tree block.
			 */
			WARN_ON(ref->type == BTRFS_TREE_BLOCK_REF_KEY ||
				ref->type == BTRFS_SHARED_BLOCK_REF_KEY);
		}
next:
		next = next2;
	}

	return done;
}

void btrfs_merge_delayed_refs(struct btrfs_trans_handle *trans,
			      struct btrfs_fs_info *fs_info,
			      struct btrfs_delayed_ref_root *delayed_refs,
			      struct btrfs_delayed_ref_head *head)
{
	struct btrfs_delayed_ref_node *ref;
	u64 seq = 0;

	assert_spin_locked(&head->lock);

	if (list_empty(&head->ref_list))
		return;

	/* We don't have too many refs to merge for data. */
	if (head->is_data)
		return;

	spin_lock(&fs_info->tree_mod_seq_lock);
	if (!list_empty(&fs_info->tree_mod_seq_list)) {
		struct seq_list *elem;

		elem = list_first_entry(&fs_info->tree_mod_seq_list,
					struct seq_list, list);
		seq = elem->seq;
	}
	spin_unlock(&fs_info->tree_mod_seq_lock);

	ref = list_first_entry(&head->ref_list, struct btrfs_delayed_ref_node,
			       list);
	while (&ref->list != &head->ref_list) {
		if (seq && ref->seq >= seq)
			goto next;

		if (merge_ref(trans, delayed_refs, head, ref, seq)) {
			if (list_empty(&head->ref_list))
				break;
			ref = list_first_entry(&head->ref_list,
					       struct btrfs_delayed_ref_node,
					       list);
			continue;
		}
next:
		ref = list_next_entry(ref, list);
	}
}

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int btrfs_check_delayed_seq(struct btrfs_fs_info *fs_info,
			    struct btrfs_delayed_ref_root *delayed_refs,
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			    u64 seq)
{
	struct seq_list *elem;
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	int ret = 0;

	spin_lock(&fs_info->tree_mod_seq_lock);
	if (!list_empty(&fs_info->tree_mod_seq_list)) {
		elem = list_first_entry(&fs_info->tree_mod_seq_list,
					struct seq_list, list);
		if (seq >= elem->seq) {
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			pr_debug("holding back delayed_ref %#x.%x, lowest is %#x.%x (%p)\n",
				 (u32)(seq >> 32), (u32)seq,
				 (u32)(elem->seq >> 32), (u32)elem->seq,
				 delayed_refs);
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			ret = 1;
		}
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	}
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	spin_unlock(&fs_info->tree_mod_seq_lock);
	return ret;
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}

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struct btrfs_delayed_ref_head *
btrfs_select_ref_head(struct btrfs_trans_handle *trans)
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{
	struct btrfs_delayed_ref_root *delayed_refs;
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	struct btrfs_delayed_ref_head *head;
	u64 start;
	bool loop = false;
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	delayed_refs = &trans->transaction->delayed_refs;
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again:
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	start = delayed_refs->run_delayed_start;
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	head = find_ref_head(&delayed_refs->href_root, start, 1);
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	if (!head && !loop) {
		delayed_refs->run_delayed_start = 0;
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		start = 0;
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		loop = true;
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		head = find_ref_head(&delayed_refs->href_root, start, 1);
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		if (!head)
			return NULL;
	} else if (!head && loop) {
		return NULL;
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	}
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	while (head->processing) {
		struct rb_node *node;

		node = rb_next(&head->href_node);
		if (!node) {
			if (loop)
				return NULL;
			delayed_refs->run_delayed_start = 0;
			start = 0;
			loop = true;
			goto again;
		}
		head = rb_entry(node, struct btrfs_delayed_ref_head,
				href_node);
	}
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	head->processing = 1;
	WARN_ON(delayed_refs->num_heads_ready == 0);
	delayed_refs->num_heads_ready--;
	delayed_refs->run_delayed_start = head->node.bytenr +
		head->node.num_bytes;
	return head;
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}

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/*
 * Helper to insert the ref_node to the tail or merge with tail.
 *
 * Return 0 for insert.
 * Return >0 for merge.
 */
static int
add_delayed_ref_tail_merge(struct btrfs_trans_handle *trans,
			   struct btrfs_delayed_ref_root *root,
			   struct btrfs_delayed_ref_head *href,
			   struct btrfs_delayed_ref_node *ref)
{
	struct btrfs_delayed_ref_node *exist;
	int mod;
	int ret = 0;

	spin_lock(&href->lock);
	/* Check whether we can merge the tail node with ref */
	if (list_empty(&href->ref_list))
		goto add_tail;
	exist = list_entry(href->ref_list.prev, struct btrfs_delayed_ref_node,
			   list);
	/* No need to compare bytenr nor is_head */
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	if (exist->type != ref->type || exist->seq != ref->seq)
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		goto add_tail;

	if ((exist->type == BTRFS_TREE_BLOCK_REF_KEY ||
	     exist->type == BTRFS_SHARED_BLOCK_REF_KEY) &&
	    comp_tree_refs(btrfs_delayed_node_to_tree_ref(exist),
			   btrfs_delayed_node_to_tree_ref(ref),
			   ref->type))
		goto add_tail;
	if ((exist->type == BTRFS_EXTENT_DATA_REF_KEY ||
	     exist->type == BTRFS_SHARED_DATA_REF_KEY) &&
	    comp_data_refs(btrfs_delayed_node_to_data_ref(exist),
			   btrfs_delayed_node_to_data_ref(ref)))
		goto add_tail;

	/* Now we are sure we can merge */
	ret = 1;
	if (exist->action == ref->action) {
		mod = ref->ref_mod;
	} else {
		/* Need to change action */
		if (exist->ref_mod < ref->ref_mod) {
			exist->action = ref->action;
			mod = -exist->ref_mod;
			exist->ref_mod = ref->ref_mod;
		} else
			mod = -ref->ref_mod;
	}
	exist->ref_mod += mod;

	/* remove existing tail if its ref_mod is zero */
	if (exist->ref_mod == 0)
		drop_delayed_ref(trans, root, href, exist);
	spin_unlock(&href->lock);
	return ret;

add_tail:
	list_add_tail(&ref->list, &href->ref_list);
	atomic_inc(&root->num_entries);
	trans->delayed_ref_updates++;
	spin_unlock(&href->lock);
	return ret;
}

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/*
 * helper function to update the accounting in the head ref
 * existing and update must have the same bytenr
 */
static noinline void
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update_existing_head_ref(struct btrfs_delayed_ref_root *delayed_refs,
			 struct btrfs_delayed_ref_node *existing,
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			 struct btrfs_delayed_ref_node *update)
{
	struct btrfs_delayed_ref_head *existing_ref;
	struct btrfs_delayed_ref_head *ref;
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	int old_ref_mod;
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	existing_ref = btrfs_delayed_node_to_head(existing);
	ref = btrfs_delayed_node_to_head(update);
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	BUG_ON(existing_ref->is_data != ref->is_data);
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	spin_lock(&existing_ref->lock);
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	if (ref->must_insert_reserved) {
		/* if the extent was freed and then
		 * reallocated before the delayed ref
		 * entries were processed, we can end up
		 * with an existing head ref without
		 * the must_insert_reserved flag set.
		 * Set it again here
		 */
		existing_ref->must_insert_reserved = ref->must_insert_reserved;

		/*
		 * update the num_bytes so we make sure the accounting
		 * is done correctly
		 */
		existing->num_bytes = update->num_bytes;

	}

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	if (ref->extent_op) {
		if (!existing_ref->extent_op) {
			existing_ref->extent_op = ref->extent_op;
		} else {
			if (ref->extent_op->update_key) {
				memcpy(&existing_ref->extent_op->key,
				       &ref->extent_op->key,
				       sizeof(ref->extent_op->key));
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				existing_ref->extent_op->update_key = true;
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			}
			if (ref->extent_op->update_flags) {
				existing_ref->extent_op->flags_to_set |=
					ref->extent_op->flags_to_set;
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				existing_ref->extent_op->update_flags = true;
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			}
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			btrfs_free_delayed_extent_op(ref->extent_op);
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		}
	}
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	/*
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	 * update the reference mod on the head to reflect this new operation,
	 * only need the lock for this case cause we could be processing it
	 * currently, for refs we just added we know we're a-ok.
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	 */
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	old_ref_mod = existing_ref->total_ref_mod;
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	existing->ref_mod += update->ref_mod;
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	existing_ref->total_ref_mod += update->ref_mod;

	/*
	 * If we are going to from a positive ref mod to a negative or vice
	 * versa we need to make sure to adjust pending_csums accordingly.
	 */
	if (existing_ref->is_data) {
		if (existing_ref->total_ref_mod >= 0 && old_ref_mod < 0)
			delayed_refs->pending_csums -= existing->num_bytes;
		if (existing_ref->total_ref_mod < 0 && old_ref_mod >= 0)
			delayed_refs->pending_csums += existing->num_bytes;
	}
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	spin_unlock(&existing_ref->lock);
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}

/*
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 * helper function to actually insert a head node into the rbtree.
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 * this does all the dirty work in terms of maintaining the correct
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 * overall modification count.
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 */
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static noinline struct btrfs_delayed_ref_head *
add_delayed_ref_head(struct btrfs_fs_info *fs_info,
		     struct btrfs_trans_handle *trans,
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		     struct btrfs_delayed_ref_node *ref,
		     struct btrfs_qgroup_extent_record *qrecord,
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		     u64 bytenr, u64 num_bytes, u64 ref_root, u64 reserved,
		     int action, int is_data)
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{
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	struct btrfs_delayed_ref_head *existing;
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	struct btrfs_delayed_ref_head *head_ref = NULL;
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	struct btrfs_delayed_ref_root *delayed_refs;
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	struct btrfs_qgroup_extent_record *qexisting;
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	int count_mod = 1;
	int must_insert_reserved = 0;

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	/* If reserved is provided, it must be a data extent. */
	BUG_ON(!is_data && reserved);

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	/*
	 * the head node stores the sum of all the mods, so dropping a ref
	 * should drop the sum in the head node by one.
	 */
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	if (action == BTRFS_UPDATE_DELAYED_HEAD)
		count_mod = 0;
	else if (action == BTRFS_DROP_DELAYED_REF)
		count_mod = -1;
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	/*
	 * BTRFS_ADD_DELAYED_EXTENT means that we need to update
	 * the reserved accounting when the extent is finally added, or
	 * if a later modification deletes the delayed ref without ever
	 * inserting the extent into the extent allocation tree.
	 * ref->must_insert_reserved is the flag used to record
	 * that accounting mods are required.
	 *
	 * Once we record must_insert_reserved, switch the action to
	 * BTRFS_ADD_DELAYED_REF because other special casing is not required.
	 */
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	if (action == BTRFS_ADD_DELAYED_EXTENT)
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		must_insert_reserved = 1;
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	else
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		must_insert_reserved = 0;

	delayed_refs = &trans->transaction->delayed_refs;

	/* first set the basic ref node struct up */
	atomic_set(&ref->refs, 1);
	ref->bytenr = bytenr;
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	ref->num_bytes = num_bytes;
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	ref->ref_mod = count_mod;
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	ref->type  = 0;
	ref->action  = 0;
	ref->is_head = 1;
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	ref->in_tree = 1;
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	ref->seq = 0;
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	head_ref = btrfs_delayed_node_to_head(ref);
	head_ref->must_insert_reserved = must_insert_reserved;
	head_ref->is_data = is_data;
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	INIT_LIST_HEAD(&head_ref->ref_list);
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	head_ref->processing = 0;
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	head_ref->total_ref_mod = count_mod;
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	head_ref->qgroup_reserved = 0;
	head_ref->qgroup_ref_root = 0;
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	/* Record qgroup extent info if provided */
	if (qrecord) {
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		if (ref_root && reserved) {
			head_ref->qgroup_ref_root = ref_root;
			head_ref->qgroup_reserved = reserved;
		}

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		qrecord->bytenr = bytenr;
		qrecord->num_bytes = num_bytes;
		qrecord->old_roots = NULL;

		qexisting = btrfs_qgroup_insert_dirty_extent(delayed_refs,
							     qrecord);
		if (qexisting)
			kfree(qrecord);
	}

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	spin_lock_init(&head_ref->lock);
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	mutex_init(&head_ref->mutex);

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	trace_add_delayed_ref_head(ref, head_ref, action);
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620 621
	existing = htree_insert(&delayed_refs->href_root,
				&head_ref->href_node);
622
	if (existing) {
623 624
		WARN_ON(ref_root && reserved && existing->qgroup_ref_root
			&& existing->qgroup_reserved);
625
		update_existing_head_ref(delayed_refs, &existing->node, ref);
626 627 628 629
		/*
		 * we've updated the existing ref, free the newly
		 * allocated ref
		 */
630
		kmem_cache_free(btrfs_delayed_ref_head_cachep, head_ref);
631
		head_ref = existing;
632
	} else {
633 634
		if (is_data && count_mod < 0)
			delayed_refs->pending_csums += num_bytes;
635 636
		delayed_refs->num_heads++;
		delayed_refs->num_heads_ready++;
637
		atomic_inc(&delayed_refs->num_entries);
638 639
		trans->delayed_ref_updates++;
	}
640
	return head_ref;
641 642 643 644 645
}

/*
 * helper to insert a delayed tree ref into the rbtree.
 */
646 647 648 649 650 651
static noinline void
add_delayed_tree_ref(struct btrfs_fs_info *fs_info,
		     struct btrfs_trans_handle *trans,
		     struct btrfs_delayed_ref_head *head_ref,
		     struct btrfs_delayed_ref_node *ref, u64 bytenr,
		     u64 num_bytes, u64 parent, u64 ref_root, int level,
652
		     int action)
653 654 655
{
	struct btrfs_delayed_tree_ref *full_ref;
	struct btrfs_delayed_ref_root *delayed_refs;
656
	u64 seq = 0;
657
	int ret;
658 659 660 661

	if (action == BTRFS_ADD_DELAYED_EXTENT)
		action = BTRFS_ADD_DELAYED_REF;

J
Josef Bacik 已提交
662 663
	if (is_fstree(ref_root))
		seq = atomic64_read(&fs_info->tree_mod_seq);
664 665 666 667 668
	delayed_refs = &trans->transaction->delayed_refs;

	/* first set the basic ref node struct up */
	atomic_set(&ref->refs, 1);
	ref->bytenr = bytenr;
669
	ref->num_bytes = num_bytes;
670 671 672 673
	ref->ref_mod = 1;
	ref->action = action;
	ref->is_head = 0;
	ref->in_tree = 1;
674 675
	ref->seq = seq;

676
	full_ref = btrfs_delayed_node_to_tree_ref(ref);
677 678 679
	full_ref->parent = parent;
	full_ref->root = ref_root;
	if (parent)
680
		ref->type = BTRFS_SHARED_BLOCK_REF_KEY;
681
	else
682 683
		ref->type = BTRFS_TREE_BLOCK_REF_KEY;
	full_ref->level = level;
684

685
	trace_add_delayed_tree_ref(ref, full_ref, action);
686

687 688 689 690 691 692 693
	ret = add_delayed_ref_tail_merge(trans, delayed_refs, head_ref, ref);

	/*
	 * XXX: memory should be freed at the same level allocated.
	 * But bad practice is anywhere... Follow it now. Need cleanup.
	 */
	if (ret > 0)
694
		kmem_cache_free(btrfs_delayed_tree_ref_cachep, full_ref);
695 696 697 698 699
}

/*
 * helper to insert a delayed data ref into the rbtree.
 */
700 701 702 703 704 705
static noinline void
add_delayed_data_ref(struct btrfs_fs_info *fs_info,
		     struct btrfs_trans_handle *trans,
		     struct btrfs_delayed_ref_head *head_ref,
		     struct btrfs_delayed_ref_node *ref, u64 bytenr,
		     u64 num_bytes, u64 parent, u64 ref_root, u64 owner,
706
		     u64 offset, int action)
707 708 709
{
	struct btrfs_delayed_data_ref *full_ref;
	struct btrfs_delayed_ref_root *delayed_refs;
710
	u64 seq = 0;
711
	int ret;
712 713 714 715 716 717

	if (action == BTRFS_ADD_DELAYED_EXTENT)
		action = BTRFS_ADD_DELAYED_REF;

	delayed_refs = &trans->transaction->delayed_refs;

J
Josef Bacik 已提交
718 719 720
	if (is_fstree(ref_root))
		seq = atomic64_read(&fs_info->tree_mod_seq);

721 722 723 724 725 726 727 728
	/* first set the basic ref node struct up */
	atomic_set(&ref->refs, 1);
	ref->bytenr = bytenr;
	ref->num_bytes = num_bytes;
	ref->ref_mod = 1;
	ref->action = action;
	ref->is_head = 0;
	ref->in_tree = 1;
729 730
	ref->seq = seq;

731
	full_ref = btrfs_delayed_node_to_data_ref(ref);
732 733 734
	full_ref->parent = parent;
	full_ref->root = ref_root;
	if (parent)
735
		ref->type = BTRFS_SHARED_DATA_REF_KEY;
736
	else
737
		ref->type = BTRFS_EXTENT_DATA_REF_KEY;
A
Arne Jansen 已提交
738

739 740
	full_ref->objectid = owner;
	full_ref->offset = offset;
741

742
	trace_add_delayed_data_ref(ref, full_ref, action);
743

744 745 746
	ret = add_delayed_ref_tail_merge(trans, delayed_refs, head_ref, ref);

	if (ret > 0)
747
		kmem_cache_free(btrfs_delayed_data_ref_cachep, full_ref);
748 749 750
}

/*
751
 * add a delayed tree ref.  This does all of the accounting required
752 753 754
 * to make sure the delayed ref is eventually processed before this
 * transaction commits.
 */
A
Arne Jansen 已提交
755 756
int btrfs_add_delayed_tree_ref(struct btrfs_fs_info *fs_info,
			       struct btrfs_trans_handle *trans,
757 758
			       u64 bytenr, u64 num_bytes, u64 parent,
			       u64 ref_root,  int level, int action,
759
			       struct btrfs_delayed_extent_op *extent_op)
760
{
761
	struct btrfs_delayed_tree_ref *ref;
762 763
	struct btrfs_delayed_ref_head *head_ref;
	struct btrfs_delayed_ref_root *delayed_refs;
764
	struct btrfs_qgroup_extent_record *record = NULL;
765

766
	BUG_ON(extent_op && extent_op->is_data);
767
	ref = kmem_cache_alloc(btrfs_delayed_tree_ref_cachep, GFP_NOFS);
768 769 770
	if (!ref)
		return -ENOMEM;

771
	head_ref = kmem_cache_alloc(btrfs_delayed_ref_head_cachep, GFP_NOFS);
772 773
	if (!head_ref)
		goto free_ref;
774

775 776
	if (fs_info->quota_enabled && is_fstree(ref_root)) {
		record = kmalloc(sizeof(*record), GFP_NOFS);
777 778
		if (!record)
			goto free_head_ref;
779 780
	}

781 782 783 784 785
	head_ref->extent_op = extent_op;

	delayed_refs = &trans->transaction->delayed_refs;
	spin_lock(&delayed_refs->lock);

786
	/*
787 788
	 * insert both the head node and the new ref without dropping
	 * the spin lock
789
	 */
790
	head_ref = add_delayed_ref_head(fs_info, trans, &head_ref->node, record,
791
					bytenr, num_bytes, 0, 0, action, 0);
792

793
	add_delayed_tree_ref(fs_info, trans, head_ref, &ref->node, bytenr,
794
			     num_bytes, parent, ref_root, level, action);
795
	spin_unlock(&delayed_refs->lock);
796

797
	return 0;
798 799 800 801 802 803 804

free_head_ref:
	kmem_cache_free(btrfs_delayed_ref_head_cachep, head_ref);
free_ref:
	kmem_cache_free(btrfs_delayed_tree_ref_cachep, ref);

	return -ENOMEM;
805 806 807 808 809
}

/*
 * add a delayed data ref. it's similar to btrfs_add_delayed_tree_ref.
 */
A
Arne Jansen 已提交
810 811
int btrfs_add_delayed_data_ref(struct btrfs_fs_info *fs_info,
			       struct btrfs_trans_handle *trans,
812 813
			       u64 bytenr, u64 num_bytes,
			       u64 parent, u64 ref_root,
814
			       u64 owner, u64 offset, u64 reserved, int action,
815
			       struct btrfs_delayed_extent_op *extent_op)
816 817 818 819
{
	struct btrfs_delayed_data_ref *ref;
	struct btrfs_delayed_ref_head *head_ref;
	struct btrfs_delayed_ref_root *delayed_refs;
820
	struct btrfs_qgroup_extent_record *record = NULL;
821 822

	BUG_ON(extent_op && !extent_op->is_data);
823
	ref = kmem_cache_alloc(btrfs_delayed_data_ref_cachep, GFP_NOFS);
824 825
	if (!ref)
		return -ENOMEM;
826

827
	head_ref = kmem_cache_alloc(btrfs_delayed_ref_head_cachep, GFP_NOFS);
828
	if (!head_ref) {
829
		kmem_cache_free(btrfs_delayed_data_ref_cachep, ref);
830 831
		return -ENOMEM;
	}
832

833 834 835 836 837 838 839 840 841 842
	if (fs_info->quota_enabled && is_fstree(ref_root)) {
		record = kmalloc(sizeof(*record), GFP_NOFS);
		if (!record) {
			kmem_cache_free(btrfs_delayed_data_ref_cachep, ref);
			kmem_cache_free(btrfs_delayed_ref_head_cachep,
					head_ref);
			return -ENOMEM;
		}
	}

843 844
	head_ref->extent_op = extent_op;

845 846 847 848 849 850 851
	delayed_refs = &trans->transaction->delayed_refs;
	spin_lock(&delayed_refs->lock);

	/*
	 * insert both the head node and the new ref without dropping
	 * the spin lock
	 */
852
	head_ref = add_delayed_ref_head(fs_info, trans, &head_ref->node, record,
853 854
					bytenr, num_bytes, ref_root, reserved,
					action, 1);
855

856
	add_delayed_data_ref(fs_info, trans, head_ref, &ref->node, bytenr,
A
Arne Jansen 已提交
857
				   num_bytes, parent, ref_root, owner, offset,
858
				   action);
859
	spin_unlock(&delayed_refs->lock);
860

861 862 863
	return 0;
}

864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890
int btrfs_add_delayed_qgroup_reserve(struct btrfs_fs_info *fs_info,
				     struct btrfs_trans_handle *trans,
				     u64 ref_root, u64 bytenr, u64 num_bytes)
{
	struct btrfs_delayed_ref_root *delayed_refs;
	struct btrfs_delayed_ref_head *ref_head;
	int ret = 0;

	if (!fs_info->quota_enabled || !is_fstree(ref_root))
		return 0;

	delayed_refs = &trans->transaction->delayed_refs;

	spin_lock(&delayed_refs->lock);
	ref_head = find_ref_head(&delayed_refs->href_root, bytenr, 0);
	if (!ref_head) {
		ret = -ENOENT;
		goto out;
	}
	WARN_ON(ref_head->qgroup_reserved || ref_head->qgroup_ref_root);
	ref_head->qgroup_ref_root = ref_root;
	ref_head->qgroup_reserved = num_bytes;
out:
	spin_unlock(&delayed_refs->lock);
	return ret;
}

A
Arne Jansen 已提交
891 892
int btrfs_add_delayed_extent_op(struct btrfs_fs_info *fs_info,
				struct btrfs_trans_handle *trans,
893 894 895 896 897 898
				u64 bytenr, u64 num_bytes,
				struct btrfs_delayed_extent_op *extent_op)
{
	struct btrfs_delayed_ref_head *head_ref;
	struct btrfs_delayed_ref_root *delayed_refs;

899
	head_ref = kmem_cache_alloc(btrfs_delayed_ref_head_cachep, GFP_NOFS);
900 901 902 903 904 905 906 907
	if (!head_ref)
		return -ENOMEM;

	head_ref->extent_op = extent_op;

	delayed_refs = &trans->transaction->delayed_refs;
	spin_lock(&delayed_refs->lock);

908
	add_delayed_ref_head(fs_info, trans, &head_ref->node, NULL, bytenr,
909
			     num_bytes, 0, 0, BTRFS_UPDATE_DELAYED_HEAD,
910
			     extent_op->is_data);
911

912 913 914 915
	spin_unlock(&delayed_refs->lock);
	return 0;
}

916 917 918 919 920 921 922 923 924 925 926
/*
 * this does a simple search for the head node for a given extent.
 * It must be called with the delayed ref spinlock held, and it returns
 * the head node if any where found, or NULL if not.
 */
struct btrfs_delayed_ref_head *
btrfs_find_delayed_ref_head(struct btrfs_trans_handle *trans, u64 bytenr)
{
	struct btrfs_delayed_ref_root *delayed_refs;

	delayed_refs = &trans->transaction->delayed_refs;
927
	return find_ref_head(&delayed_refs->href_root, bytenr, 0);
928
}
929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976

void btrfs_delayed_ref_exit(void)
{
	if (btrfs_delayed_ref_head_cachep)
		kmem_cache_destroy(btrfs_delayed_ref_head_cachep);
	if (btrfs_delayed_tree_ref_cachep)
		kmem_cache_destroy(btrfs_delayed_tree_ref_cachep);
	if (btrfs_delayed_data_ref_cachep)
		kmem_cache_destroy(btrfs_delayed_data_ref_cachep);
	if (btrfs_delayed_extent_op_cachep)
		kmem_cache_destroy(btrfs_delayed_extent_op_cachep);
}

int btrfs_delayed_ref_init(void)
{
	btrfs_delayed_ref_head_cachep = kmem_cache_create(
				"btrfs_delayed_ref_head",
				sizeof(struct btrfs_delayed_ref_head), 0,
				SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, NULL);
	if (!btrfs_delayed_ref_head_cachep)
		goto fail;

	btrfs_delayed_tree_ref_cachep = kmem_cache_create(
				"btrfs_delayed_tree_ref",
				sizeof(struct btrfs_delayed_tree_ref), 0,
				SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, NULL);
	if (!btrfs_delayed_tree_ref_cachep)
		goto fail;

	btrfs_delayed_data_ref_cachep = kmem_cache_create(
				"btrfs_delayed_data_ref",
				sizeof(struct btrfs_delayed_data_ref), 0,
				SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, NULL);
	if (!btrfs_delayed_data_ref_cachep)
		goto fail;

	btrfs_delayed_extent_op_cachep = kmem_cache_create(
				"btrfs_delayed_extent_op",
				sizeof(struct btrfs_delayed_extent_op), 0,
				SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, NULL);
	if (!btrfs_delayed_extent_op_cachep)
		goto fail;

	return 0;
fail:
	btrfs_delayed_ref_exit();
	return -ENOMEM;
}