transaction.c 65.7 KB
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/*
 * Copyright (C) 2007 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.
 */

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#include <linux/fs.h>
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#include <linux/slab.h>
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#include <linux/sched.h>
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#include <linux/writeback.h>
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#include <linux/pagemap.h>
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#include <linux/blkdev.h>
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#include <linux/uuid.h>
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#include "ctree.h"
#include "disk-io.h"
#include "transaction.h"
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#include "locking.h"
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#include "tree-log.h"
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#include "inode-map.h"
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#include "volumes.h"
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#include "dev-replace.h"
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#include "qgroup.h"
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#define BTRFS_ROOT_TRANS_TAG 0

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static const unsigned int btrfs_blocked_trans_types[TRANS_STATE_MAX] = {
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	[TRANS_STATE_RUNNING]		= 0U,
	[TRANS_STATE_BLOCKED]		= (__TRANS_USERSPACE |
					   __TRANS_START),
	[TRANS_STATE_COMMIT_START]	= (__TRANS_USERSPACE |
					   __TRANS_START |
					   __TRANS_ATTACH),
	[TRANS_STATE_COMMIT_DOING]	= (__TRANS_USERSPACE |
					   __TRANS_START |
					   __TRANS_ATTACH |
					   __TRANS_JOIN),
	[TRANS_STATE_UNBLOCKED]		= (__TRANS_USERSPACE |
					   __TRANS_START |
					   __TRANS_ATTACH |
					   __TRANS_JOIN |
					   __TRANS_JOIN_NOLOCK),
	[TRANS_STATE_COMPLETED]		= (__TRANS_USERSPACE |
					   __TRANS_START |
					   __TRANS_ATTACH |
					   __TRANS_JOIN |
					   __TRANS_JOIN_NOLOCK),
};

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void btrfs_put_transaction(struct btrfs_transaction *transaction)
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{
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	WARN_ON(atomic_read(&transaction->use_count) == 0);
	if (atomic_dec_and_test(&transaction->use_count)) {
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		BUG_ON(!list_empty(&transaction->list));
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		WARN_ON(!RB_EMPTY_ROOT(&transaction->delayed_refs.href_root));
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		if (transaction->delayed_refs.pending_csums)
			printk(KERN_ERR "pending csums is %llu\n",
			       transaction->delayed_refs.pending_csums);
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		while (!list_empty(&transaction->pending_chunks)) {
			struct extent_map *em;

			em = list_first_entry(&transaction->pending_chunks,
					      struct extent_map, list);
			list_del_init(&em->list);
			free_extent_map(em);
		}
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		/*
		 * If any block groups are found in ->deleted_bgs then it's
		 * because the transaction was aborted and a commit did not
		 * happen (things failed before writing the new superblock
		 * and calling btrfs_finish_extent_commit()), so we can not
		 * discard the physical locations of the block groups.
		 */
		while (!list_empty(&transaction->deleted_bgs)) {
			struct btrfs_block_group_cache *cache;

			cache = list_first_entry(&transaction->deleted_bgs,
						 struct btrfs_block_group_cache,
						 bg_list);
			list_del_init(&cache->bg_list);
			btrfs_put_block_group_trimming(cache);
			btrfs_put_block_group(cache);
		}
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		kmem_cache_free(btrfs_transaction_cachep, transaction);
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	}
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}

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static void clear_btree_io_tree(struct extent_io_tree *tree)
{
	spin_lock(&tree->lock);
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	/*
	 * Do a single barrier for the waitqueue_active check here, the state
	 * of the waitqueue should not change once clear_btree_io_tree is
	 * called.
	 */
	smp_mb();
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	while (!RB_EMPTY_ROOT(&tree->state)) {
		struct rb_node *node;
		struct extent_state *state;

		node = rb_first(&tree->state);
		state = rb_entry(node, struct extent_state, rb_node);
		rb_erase(&state->rb_node, &tree->state);
		RB_CLEAR_NODE(&state->rb_node);
		/*
		 * btree io trees aren't supposed to have tasks waiting for
		 * changes in the flags of extent states ever.
		 */
		ASSERT(!waitqueue_active(&state->wq));
		free_extent_state(state);
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		cond_resched_lock(&tree->lock);
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	}
	spin_unlock(&tree->lock);
}

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static noinline void switch_commit_roots(struct btrfs_transaction *trans,
					 struct btrfs_fs_info *fs_info)
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{
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	struct btrfs_root *root, *tmp;

	down_write(&fs_info->commit_root_sem);
	list_for_each_entry_safe(root, tmp, &trans->switch_commits,
				 dirty_list) {
		list_del_init(&root->dirty_list);
		free_extent_buffer(root->commit_root);
		root->commit_root = btrfs_root_node(root);
		if (is_fstree(root->objectid))
			btrfs_unpin_free_ino(root);
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		clear_btree_io_tree(&root->dirty_log_pages);
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	}
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	/* We can free old roots now. */
	spin_lock(&trans->dropped_roots_lock);
	while (!list_empty(&trans->dropped_roots)) {
		root = list_first_entry(&trans->dropped_roots,
					struct btrfs_root, root_list);
		list_del_init(&root->root_list);
		spin_unlock(&trans->dropped_roots_lock);
		btrfs_drop_and_free_fs_root(fs_info, root);
		spin_lock(&trans->dropped_roots_lock);
	}
	spin_unlock(&trans->dropped_roots_lock);
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	up_write(&fs_info->commit_root_sem);
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}

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static inline void extwriter_counter_inc(struct btrfs_transaction *trans,
					 unsigned int type)
{
	if (type & TRANS_EXTWRITERS)
		atomic_inc(&trans->num_extwriters);
}

static inline void extwriter_counter_dec(struct btrfs_transaction *trans,
					 unsigned int type)
{
	if (type & TRANS_EXTWRITERS)
		atomic_dec(&trans->num_extwriters);
}

static inline void extwriter_counter_init(struct btrfs_transaction *trans,
					  unsigned int type)
{
	atomic_set(&trans->num_extwriters, ((type & TRANS_EXTWRITERS) ? 1 : 0));
}

static inline int extwriter_counter_read(struct btrfs_transaction *trans)
{
	return atomic_read(&trans->num_extwriters);
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}

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/*
 * either allocate a new transaction or hop into the existing one
 */
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static noinline int join_transaction(struct btrfs_root *root, unsigned int type)
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{
	struct btrfs_transaction *cur_trans;
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	struct btrfs_fs_info *fs_info = root->fs_info;
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	spin_lock(&fs_info->trans_lock);
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loop:
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	/* The file system has been taken offline. No new transactions. */
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	if (test_bit(BTRFS_FS_STATE_ERROR, &fs_info->fs_state)) {
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		spin_unlock(&fs_info->trans_lock);
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		return -EROFS;
	}

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	cur_trans = fs_info->running_transaction;
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	if (cur_trans) {
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		if (cur_trans->aborted) {
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			spin_unlock(&fs_info->trans_lock);
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			return cur_trans->aborted;
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		}
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		if (btrfs_blocked_trans_types[cur_trans->state] & type) {
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			spin_unlock(&fs_info->trans_lock);
			return -EBUSY;
		}
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		atomic_inc(&cur_trans->use_count);
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		atomic_inc(&cur_trans->num_writers);
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		extwriter_counter_inc(cur_trans, type);
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		spin_unlock(&fs_info->trans_lock);
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		return 0;
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	}
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	spin_unlock(&fs_info->trans_lock);
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	/*
	 * If we are ATTACH, we just want to catch the current transaction,
	 * and commit it. If there is no transaction, just return ENOENT.
	 */
	if (type == TRANS_ATTACH)
		return -ENOENT;

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	/*
	 * JOIN_NOLOCK only happens during the transaction commit, so
	 * it is impossible that ->running_transaction is NULL
	 */
	BUG_ON(type == TRANS_JOIN_NOLOCK);

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	cur_trans = kmem_cache_alloc(btrfs_transaction_cachep, GFP_NOFS);
	if (!cur_trans)
		return -ENOMEM;
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	spin_lock(&fs_info->trans_lock);
	if (fs_info->running_transaction) {
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		/*
		 * someone started a transaction after we unlocked.  Make sure
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		 * to redo the checks above
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		 */
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		kmem_cache_free(btrfs_transaction_cachep, cur_trans);
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		goto loop;
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	} else if (test_bit(BTRFS_FS_STATE_ERROR, &fs_info->fs_state)) {
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		spin_unlock(&fs_info->trans_lock);
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		kmem_cache_free(btrfs_transaction_cachep, cur_trans);
		return -EROFS;
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	}
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	atomic_set(&cur_trans->num_writers, 1);
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	extwriter_counter_init(cur_trans, type);
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	init_waitqueue_head(&cur_trans->writer_wait);
	init_waitqueue_head(&cur_trans->commit_wait);
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	init_waitqueue_head(&cur_trans->pending_wait);
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	cur_trans->state = TRANS_STATE_RUNNING;
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	/*
	 * One for this trans handle, one so it will live on until we
	 * commit the transaction.
	 */
	atomic_set(&cur_trans->use_count, 2);
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	atomic_set(&cur_trans->pending_ordered, 0);
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	cur_trans->flags = 0;
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	cur_trans->start_time = get_seconds();

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	memset(&cur_trans->delayed_refs, 0, sizeof(cur_trans->delayed_refs));

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	cur_trans->delayed_refs.href_root = RB_ROOT;
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	cur_trans->delayed_refs.dirty_extent_root = RB_ROOT;
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	atomic_set(&cur_trans->delayed_refs.num_entries, 0);
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	/*
	 * although the tree mod log is per file system and not per transaction,
	 * the log must never go across transaction boundaries.
	 */
	smp_mb();
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	if (!list_empty(&fs_info->tree_mod_seq_list))
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		WARN(1, KERN_ERR "BTRFS: tree_mod_seq_list not empty when "
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			"creating a fresh transaction\n");
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	if (!RB_EMPTY_ROOT(&fs_info->tree_mod_log))
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		WARN(1, KERN_ERR "BTRFS: tree_mod_log rb tree not empty when "
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			"creating a fresh transaction\n");
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	atomic64_set(&fs_info->tree_mod_seq, 0);
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	spin_lock_init(&cur_trans->delayed_refs.lock);

	INIT_LIST_HEAD(&cur_trans->pending_snapshots);
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	INIT_LIST_HEAD(&cur_trans->pending_chunks);
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	INIT_LIST_HEAD(&cur_trans->switch_commits);
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	INIT_LIST_HEAD(&cur_trans->dirty_bgs);
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	INIT_LIST_HEAD(&cur_trans->io_bgs);
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	INIT_LIST_HEAD(&cur_trans->dropped_roots);
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	mutex_init(&cur_trans->cache_write_mutex);
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	cur_trans->num_dirty_bgs = 0;
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	spin_lock_init(&cur_trans->dirty_bgs_lock);
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	INIT_LIST_HEAD(&cur_trans->deleted_bgs);
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	spin_lock_init(&cur_trans->dropped_roots_lock);
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	list_add_tail(&cur_trans->list, &fs_info->trans_list);
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	extent_io_tree_init(&cur_trans->dirty_pages,
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			     fs_info->btree_inode->i_mapping);
	fs_info->generation++;
	cur_trans->transid = fs_info->generation;
	fs_info->running_transaction = cur_trans;
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	cur_trans->aborted = 0;
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	spin_unlock(&fs_info->trans_lock);
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	return 0;
}

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/*
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 * this does all the record keeping required to make sure that a reference
 * counted root is properly recorded in a given transaction.  This is required
 * to make sure the old root from before we joined the transaction is deleted
 * when the transaction commits
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 */
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static int record_root_in_trans(struct btrfs_trans_handle *trans,
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			       struct btrfs_root *root,
			       int force)
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{
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	if ((test_bit(BTRFS_ROOT_REF_COWS, &root->state) &&
	    root->last_trans < trans->transid) || force) {
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		WARN_ON(root == root->fs_info->extent_root);
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		WARN_ON(root->commit_root != root->node);

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		/*
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		 * see below for IN_TRANS_SETUP usage rules
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		 * we have the reloc mutex held now, so there
		 * is only one writer in this function
		 */
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		set_bit(BTRFS_ROOT_IN_TRANS_SETUP, &root->state);
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		/* make sure readers find IN_TRANS_SETUP before
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		 * they find our root->last_trans update
		 */
		smp_wmb();

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		spin_lock(&root->fs_info->fs_roots_radix_lock);
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		if (root->last_trans == trans->transid && !force) {
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			spin_unlock(&root->fs_info->fs_roots_radix_lock);
			return 0;
		}
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		radix_tree_tag_set(&root->fs_info->fs_roots_radix,
			   (unsigned long)root->root_key.objectid,
			   BTRFS_ROOT_TRANS_TAG);
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		spin_unlock(&root->fs_info->fs_roots_radix_lock);
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		root->last_trans = trans->transid;

		/* this is pretty tricky.  We don't want to
		 * take the relocation lock in btrfs_record_root_in_trans
		 * unless we're really doing the first setup for this root in
		 * this transaction.
		 *
		 * Normally we'd use root->last_trans as a flag to decide
		 * if we want to take the expensive mutex.
		 *
		 * But, we have to set root->last_trans before we
		 * init the relocation root, otherwise, we trip over warnings
		 * in ctree.c.  The solution used here is to flag ourselves
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		 * with root IN_TRANS_SETUP.  When this is 1, we're still
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		 * fixing up the reloc trees and everyone must wait.
		 *
		 * When this is zero, they can trust root->last_trans and fly
		 * through btrfs_record_root_in_trans without having to take the
		 * lock.  smp_wmb() makes sure that all the writes above are
		 * done before we pop in the zero below
		 */
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		btrfs_init_reloc_root(trans, root);
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		smp_mb__before_atomic();
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		clear_bit(BTRFS_ROOT_IN_TRANS_SETUP, &root->state);
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	}
	return 0;
}
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void btrfs_add_dropped_root(struct btrfs_trans_handle *trans,
			    struct btrfs_root *root)
{
	struct btrfs_transaction *cur_trans = trans->transaction;

	/* Add ourselves to the transaction dropped list */
	spin_lock(&cur_trans->dropped_roots_lock);
	list_add_tail(&root->root_list, &cur_trans->dropped_roots);
	spin_unlock(&cur_trans->dropped_roots_lock);

	/* Make sure we don't try to update the root at commit time */
	spin_lock(&root->fs_info->fs_roots_radix_lock);
	radix_tree_tag_clear(&root->fs_info->fs_roots_radix,
			     (unsigned long)root->root_key.objectid,
			     BTRFS_ROOT_TRANS_TAG);
	spin_unlock(&root->fs_info->fs_roots_radix_lock);
}

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int btrfs_record_root_in_trans(struct btrfs_trans_handle *trans,
			       struct btrfs_root *root)
{
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	if (!test_bit(BTRFS_ROOT_REF_COWS, &root->state))
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		return 0;

	/*
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	 * see record_root_in_trans for comments about IN_TRANS_SETUP usage
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	 * and barriers
	 */
	smp_rmb();
	if (root->last_trans == trans->transid &&
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	    !test_bit(BTRFS_ROOT_IN_TRANS_SETUP, &root->state))
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		return 0;

	mutex_lock(&root->fs_info->reloc_mutex);
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	record_root_in_trans(trans, root, 0);
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	mutex_unlock(&root->fs_info->reloc_mutex);

	return 0;
}

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static inline int is_transaction_blocked(struct btrfs_transaction *trans)
{
	return (trans->state >= TRANS_STATE_BLOCKED &&
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		trans->state < TRANS_STATE_UNBLOCKED &&
		!trans->aborted);
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}

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/* wait for commit against the current transaction to become unblocked
 * when this is done, it is safe to start a new transaction, but the current
 * transaction might not be fully on disk.
 */
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static void wait_current_trans(struct btrfs_root *root)
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{
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	struct btrfs_transaction *cur_trans;
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	spin_lock(&root->fs_info->trans_lock);
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	cur_trans = root->fs_info->running_transaction;
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	if (cur_trans && is_transaction_blocked(cur_trans)) {
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		atomic_inc(&cur_trans->use_count);
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		spin_unlock(&root->fs_info->trans_lock);
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		wait_event(root->fs_info->transaction_wait,
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			   cur_trans->state >= TRANS_STATE_UNBLOCKED ||
			   cur_trans->aborted);
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		btrfs_put_transaction(cur_trans);
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	} else {
		spin_unlock(&root->fs_info->trans_lock);
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	}
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}

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static int may_wait_transaction(struct btrfs_root *root, int type)
{
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	if (root->fs_info->log_root_recovering)
		return 0;

	if (type == TRANS_USERSPACE)
		return 1;

	if (type == TRANS_START &&
	    !atomic_read(&root->fs_info->open_ioctl_trans))
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		return 1;
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	return 0;
}

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static inline bool need_reserve_reloc_root(struct btrfs_root *root)
{
	if (!root->fs_info->reloc_ctl ||
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	    !test_bit(BTRFS_ROOT_REF_COWS, &root->state) ||
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	    root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID ||
	    root->reloc_root)
		return false;

	return true;
}

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static struct btrfs_trans_handle *
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start_transaction(struct btrfs_root *root, unsigned int num_items,
		  unsigned int type, enum btrfs_reserve_flush_enum flush)
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{
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	struct btrfs_trans_handle *h;
	struct btrfs_transaction *cur_trans;
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	u64 num_bytes = 0;
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	u64 qgroup_reserved = 0;
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	bool reloc_reserved = false;
	int ret;
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	/* Send isn't supposed to start transactions. */
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	ASSERT(current->journal_info != BTRFS_SEND_TRANS_STUB);
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	if (test_bit(BTRFS_FS_STATE_ERROR, &root->fs_info->fs_state))
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		return ERR_PTR(-EROFS);
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	if (current->journal_info) {
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		WARN_ON(type & TRANS_EXTWRITERS);
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		h = current->journal_info;
		h->use_count++;
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		WARN_ON(h->use_count > 2);
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		h->orig_rsv = h->block_rsv;
		h->block_rsv = NULL;
		goto got_it;
	}
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	/*
	 * Do the reservation before we join the transaction so we can do all
	 * the appropriate flushing if need be.
	 */
	if (num_items > 0 && root != root->fs_info->chunk_root) {
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		qgroup_reserved = num_items * root->nodesize;
		ret = btrfs_qgroup_reserve_meta(root, qgroup_reserved);
		if (ret)
			return ERR_PTR(ret);
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		num_bytes = btrfs_calc_trans_metadata_size(root, num_items);
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		/*
		 * Do the reservation for the relocation root creation
		 */
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		if (need_reserve_reloc_root(root)) {
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			num_bytes += root->nodesize;
			reloc_reserved = true;
		}

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		ret = btrfs_block_rsv_add(root,
					  &root->fs_info->trans_block_rsv,
					  num_bytes, flush);
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		if (ret)
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			goto reserve_fail;
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	}
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again:
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	h = kmem_cache_zalloc(btrfs_trans_handle_cachep, GFP_NOFS);
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	if (!h) {
		ret = -ENOMEM;
		goto alloc_fail;
	}
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527 528 529 530 531 532
	/*
	 * If we are JOIN_NOLOCK we're already committing a transaction and
	 * waiting on this guy, so we don't need to do the sb_start_intwrite
	 * because we're already holding a ref.  We need this because we could
	 * have raced in and did an fsync() on a file which can kick a commit
	 * and then we deadlock with somebody doing a freeze.
533 534 535
	 *
	 * If we are ATTACH, it means we just want to catch the current
	 * transaction and commit it, so we needn't do sb_start_intwrite(). 
536
	 */
537
	if (type & __TRANS_FREEZABLE)
538
		sb_start_intwrite(root->fs_info->sb);
539

540
	if (may_wait_transaction(root, type))
C
Chris Mason 已提交
541
		wait_current_trans(root);
542

J
Josef Bacik 已提交
543
	do {
544
		ret = join_transaction(root, type);
545
		if (ret == -EBUSY) {
J
Josef Bacik 已提交
546
			wait_current_trans(root);
547 548 549
			if (unlikely(type == TRANS_ATTACH))
				ret = -ENOENT;
		}
J
Josef Bacik 已提交
550 551
	} while (ret == -EBUSY);

T
Tsutomu Itoh 已提交
552
	if (ret < 0) {
553 554
		/* We must get the transaction if we are JOIN_NOLOCK. */
		BUG_ON(type == TRANS_JOIN_NOLOCK);
555
		goto join_fail;
T
Tsutomu Itoh 已提交
556
	}
557

558 559 560 561
	cur_trans = root->fs_info->running_transaction;

	h->transid = cur_trans->transid;
	h->transaction = cur_trans;
562
	h->root = root;
563
	h->use_count = 1;
564

565
	h->type = type;
566
	h->can_flush_pending_bgs = true;
567
	INIT_LIST_HEAD(&h->qgroup_ref_list);
568
	INIT_LIST_HEAD(&h->new_bgs);
569

570
	smp_mb();
571 572
	if (cur_trans->state >= TRANS_STATE_BLOCKED &&
	    may_wait_transaction(root, type)) {
573
		current->journal_info = h;
574 575 576 577
		btrfs_commit_transaction(h, root);
		goto again;
	}

578
	if (num_bytes) {
J
Josef Bacik 已提交
579
		trace_btrfs_space_reservation(root->fs_info, "transaction",
580
					      h->transid, num_bytes, 1);
581 582
		h->block_rsv = &root->fs_info->trans_block_rsv;
		h->bytes_reserved = num_bytes;
583
		h->reloc_reserved = reloc_reserved;
584
	}
J
Josef Bacik 已提交
585

586
got_it:
J
Josef Bacik 已提交
587
	btrfs_record_root_in_trans(h, root);
588 589 590

	if (!current->journal_info && type != TRANS_USERSPACE)
		current->journal_info = h;
C
Chris Mason 已提交
591
	return h;
592 593

join_fail:
594
	if (type & __TRANS_FREEZABLE)
595 596 597 598 599 600 601
		sb_end_intwrite(root->fs_info->sb);
	kmem_cache_free(btrfs_trans_handle_cachep, h);
alloc_fail:
	if (num_bytes)
		btrfs_block_rsv_release(root, &root->fs_info->trans_block_rsv,
					num_bytes);
reserve_fail:
602
	btrfs_qgroup_free_meta(root, qgroup_reserved);
603
	return ERR_PTR(ret);
C
Chris Mason 已提交
604 605
}

606
struct btrfs_trans_handle *btrfs_start_transaction(struct btrfs_root *root,
607
						   unsigned int num_items)
608
{
M
Miao Xie 已提交
609 610
	return start_transaction(root, num_items, TRANS_START,
				 BTRFS_RESERVE_FLUSH_ALL);
611
}
612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640
struct btrfs_trans_handle *btrfs_start_transaction_fallback_global_rsv(
					struct btrfs_root *root,
					unsigned int num_items,
					int min_factor)
{
	struct btrfs_trans_handle *trans;
	u64 num_bytes;
	int ret;

	trans = btrfs_start_transaction(root, num_items);
	if (!IS_ERR(trans) || PTR_ERR(trans) != -ENOSPC)
		return trans;

	trans = btrfs_start_transaction(root, 0);
	if (IS_ERR(trans))
		return trans;

	num_bytes = btrfs_calc_trans_metadata_size(root, num_items);
	ret = btrfs_cond_migrate_bytes(root->fs_info,
				       &root->fs_info->trans_block_rsv,
				       num_bytes,
				       min_factor);
	if (ret) {
		btrfs_end_transaction(trans, root);
		return ERR_PTR(ret);
	}

	trans->block_rsv = &root->fs_info->trans_block_rsv;
	trans->bytes_reserved = num_bytes;
641 642
	trace_btrfs_space_reservation(root->fs_info, "transaction",
				      trans->transid, num_bytes, 1);
643 644 645

	return trans;
}
646

M
Miao Xie 已提交
647
struct btrfs_trans_handle *btrfs_start_transaction_lflush(
648 649
					struct btrfs_root *root,
					unsigned int num_items)
650
{
M
Miao Xie 已提交
651 652
	return start_transaction(root, num_items, TRANS_START,
				 BTRFS_RESERVE_FLUSH_LIMIT);
653 654
}

655
struct btrfs_trans_handle *btrfs_join_transaction(struct btrfs_root *root)
656
{
657 658
	return start_transaction(root, 0, TRANS_JOIN,
				 BTRFS_RESERVE_NO_FLUSH);
659 660
}

661
struct btrfs_trans_handle *btrfs_join_transaction_nolock(struct btrfs_root *root)
662
{
663 664
	return start_transaction(root, 0, TRANS_JOIN_NOLOCK,
				 BTRFS_RESERVE_NO_FLUSH);
665 666
}

667
struct btrfs_trans_handle *btrfs_start_ioctl_transaction(struct btrfs_root *root)
668
{
669 670
	return start_transaction(root, 0, TRANS_USERSPACE,
				 BTRFS_RESERVE_NO_FLUSH);
671 672
}

M
Miao Xie 已提交
673 674 675 676 677 678 679 680 681 682 683 684 685
/*
 * btrfs_attach_transaction() - catch the running transaction
 *
 * It is used when we want to commit the current the transaction, but
 * don't want to start a new one.
 *
 * Note: If this function return -ENOENT, it just means there is no
 * running transaction. But it is possible that the inactive transaction
 * is still in the memory, not fully on disk. If you hope there is no
 * inactive transaction in the fs when -ENOENT is returned, you should
 * invoke
 *     btrfs_attach_transaction_barrier()
 */
686
struct btrfs_trans_handle *btrfs_attach_transaction(struct btrfs_root *root)
687
{
688 689
	return start_transaction(root, 0, TRANS_ATTACH,
				 BTRFS_RESERVE_NO_FLUSH);
690 691
}

M
Miao Xie 已提交
692
/*
693
 * btrfs_attach_transaction_barrier() - catch the running transaction
M
Miao Xie 已提交
694 695 696 697 698 699 700 701 702 703
 *
 * It is similar to the above function, the differentia is this one
 * will wait for all the inactive transactions until they fully
 * complete.
 */
struct btrfs_trans_handle *
btrfs_attach_transaction_barrier(struct btrfs_root *root)
{
	struct btrfs_trans_handle *trans;

704 705
	trans = start_transaction(root, 0, TRANS_ATTACH,
				  BTRFS_RESERVE_NO_FLUSH);
M
Miao Xie 已提交
706 707 708 709 710 711
	if (IS_ERR(trans) && PTR_ERR(trans) == -ENOENT)
		btrfs_wait_for_commit(root, 0);

	return trans;
}

C
Chris Mason 已提交
712
/* wait for a transaction commit to be fully complete */
713
static noinline void wait_for_commit(struct btrfs_root *root,
714 715
				    struct btrfs_transaction *commit)
{
716
	wait_event(commit->commit_wait, commit->state == TRANS_STATE_COMPLETED);
717 718
}

719 720 721
int btrfs_wait_for_commit(struct btrfs_root *root, u64 transid)
{
	struct btrfs_transaction *cur_trans = NULL, *t;
722
	int ret = 0;
723 724 725

	if (transid) {
		if (transid <= root->fs_info->last_trans_committed)
J
Josef Bacik 已提交
726
			goto out;
727 728

		/* find specified transaction */
J
Josef Bacik 已提交
729
		spin_lock(&root->fs_info->trans_lock);
730 731 732
		list_for_each_entry(t, &root->fs_info->trans_list, list) {
			if (t->transid == transid) {
				cur_trans = t;
J
Josef Bacik 已提交
733
				atomic_inc(&cur_trans->use_count);
734
				ret = 0;
735 736
				break;
			}
737 738
			if (t->transid > transid) {
				ret = 0;
739
				break;
740
			}
741
		}
J
Josef Bacik 已提交
742
		spin_unlock(&root->fs_info->trans_lock);
S
Sage Weil 已提交
743 744 745 746 747 748 749 750

		/*
		 * The specified transaction doesn't exist, or we
		 * raced with btrfs_commit_transaction
		 */
		if (!cur_trans) {
			if (transid > root->fs_info->last_trans_committed)
				ret = -EINVAL;
751
			goto out;
S
Sage Weil 已提交
752
		}
753 754
	} else {
		/* find newest transaction that is committing | committed */
J
Josef Bacik 已提交
755
		spin_lock(&root->fs_info->trans_lock);
756 757
		list_for_each_entry_reverse(t, &root->fs_info->trans_list,
					    list) {
758 759
			if (t->state >= TRANS_STATE_COMMIT_START) {
				if (t->state == TRANS_STATE_COMPLETED)
760
					break;
761
				cur_trans = t;
J
Josef Bacik 已提交
762
				atomic_inc(&cur_trans->use_count);
763 764 765
				break;
			}
		}
J
Josef Bacik 已提交
766
		spin_unlock(&root->fs_info->trans_lock);
767
		if (!cur_trans)
J
Josef Bacik 已提交
768
			goto out;  /* nothing committing|committed */
769 770 771
	}

	wait_for_commit(root, cur_trans);
772
	btrfs_put_transaction(cur_trans);
J
Josef Bacik 已提交
773
out:
774 775 776
	return ret;
}

C
Chris Mason 已提交
777 778
void btrfs_throttle(struct btrfs_root *root)
{
J
Josef Bacik 已提交
779
	if (!atomic_read(&root->fs_info->open_ioctl_trans))
780
		wait_current_trans(root);
C
Chris Mason 已提交
781 782
}

783 784 785
static int should_end_transaction(struct btrfs_trans_handle *trans,
				  struct btrfs_root *root)
{
786
	if (root->fs_info->global_block_rsv.space_info->full &&
787
	    btrfs_check_space_for_delayed_refs(trans, root))
788
		return 1;
789

790
	return !!btrfs_block_rsv_check(root, &root->fs_info->global_block_rsv, 5);
791 792 793 794 795 796 797
}

int btrfs_should_end_transaction(struct btrfs_trans_handle *trans,
				 struct btrfs_root *root)
{
	struct btrfs_transaction *cur_trans = trans->transaction;
	int updates;
798
	int err;
799

J
Josef Bacik 已提交
800
	smp_mb();
801 802
	if (cur_trans->state >= TRANS_STATE_BLOCKED ||
	    cur_trans->delayed_refs.flushing)
803 804 805 806
		return 1;

	updates = trans->delayed_ref_updates;
	trans->delayed_ref_updates = 0;
807
	if (updates) {
808
		err = btrfs_run_delayed_refs(trans, root, updates * 2);
809 810 811
		if (err) /* Error code will also eval true */
			return err;
	}
812 813 814 815

	return should_end_transaction(trans, root);
}

816
static int __btrfs_end_transaction(struct btrfs_trans_handle *trans,
817
			  struct btrfs_root *root, int throttle)
C
Chris Mason 已提交
818
{
819
	struct btrfs_transaction *cur_trans = trans->transaction;
820
	struct btrfs_fs_info *info = root->fs_info;
821
	unsigned long cur = trans->delayed_ref_updates;
822
	int lock = (trans->type != TRANS_JOIN_NOLOCK);
823
	int err = 0;
C
Chris Mason 已提交
824
	int must_run_delayed_refs = 0;
825

826 827
	if (trans->use_count > 1) {
		trans->use_count--;
828 829 830 831
		trans->block_rsv = trans->orig_rsv;
		return 0;
	}

832
	btrfs_trans_release_metadata(trans, root);
833
	trans->block_rsv = NULL;
834

835 836 837
	if (!list_empty(&trans->new_bgs))
		btrfs_create_pending_block_groups(trans, root);

838
	trans->delayed_ref_updates = 0;
C
Chris Mason 已提交
839 840 841
	if (!trans->sync) {
		must_run_delayed_refs =
			btrfs_should_throttle_delayed_refs(trans, root);
842
		cur = max_t(unsigned long, cur, 32);
C
Chris Mason 已提交
843 844 845 846 847 848 849 850

		/*
		 * don't make the caller wait if they are from a NOLOCK
		 * or ATTACH transaction, it will deadlock with commit
		 */
		if (must_run_delayed_refs == 1 &&
		    (trans->type & (__TRANS_JOIN_NOLOCK | __TRANS_ATTACH)))
			must_run_delayed_refs = 2;
851
	}
852

853 854
	btrfs_trans_release_metadata(trans, root);
	trans->block_rsv = NULL;
855

856 857 858
	if (!list_empty(&trans->new_bgs))
		btrfs_create_pending_block_groups(trans, root);

859 860
	btrfs_trans_release_chunk_metadata(trans);

J
Josef Bacik 已提交
861
	if (lock && !atomic_read(&root->fs_info->open_ioctl_trans) &&
862 863 864 865 866 867
	    should_end_transaction(trans, root) &&
	    ACCESS_ONCE(cur_trans->state) == TRANS_STATE_RUNNING) {
		spin_lock(&info->trans_lock);
		if (cur_trans->state == TRANS_STATE_RUNNING)
			cur_trans->state = TRANS_STATE_BLOCKED;
		spin_unlock(&info->trans_lock);
J
Josef Bacik 已提交
868
	}
869

870
	if (lock && ACCESS_ONCE(cur_trans->state) == TRANS_STATE_BLOCKED) {
871
		if (throttle)
872
			return btrfs_commit_transaction(trans, root);
873
		else
874 875 876
			wake_up_process(info->transaction_kthread);
	}

877
	if (trans->type & __TRANS_FREEZABLE)
878
		sb_end_intwrite(root->fs_info->sb);
879

880
	WARN_ON(cur_trans != info->running_transaction);
881 882
	WARN_ON(atomic_read(&cur_trans->num_writers) < 1);
	atomic_dec(&cur_trans->num_writers);
883
	extwriter_counter_dec(cur_trans, trans->type);
884

885 886 887
	/*
	 * Make sure counter is updated before we wake up waiters.
	 */
888
	smp_mb();
C
Chris Mason 已提交
889 890
	if (waitqueue_active(&cur_trans->writer_wait))
		wake_up(&cur_trans->writer_wait);
891
	btrfs_put_transaction(cur_trans);
J
Josef Bacik 已提交
892 893 894

	if (current->journal_info == trans)
		current->journal_info = NULL;
895

Y
Yan, Zheng 已提交
896 897 898
	if (throttle)
		btrfs_run_delayed_iputs(root);

899
	if (trans->aborted ||
J
Josef Bacik 已提交
900 901
	    test_bit(BTRFS_FS_STATE_ERROR, &root->fs_info->fs_state)) {
		wake_up_process(info->transaction_kthread);
902
		err = -EIO;
J
Josef Bacik 已提交
903
	}
904
	assert_qgroups_uptodate(trans);
905

906
	kmem_cache_free(btrfs_trans_handle_cachep, trans);
C
Chris Mason 已提交
907 908 909 910
	if (must_run_delayed_refs) {
		btrfs_async_run_delayed_refs(root, cur,
					     must_run_delayed_refs == 1);
	}
911
	return err;
C
Chris Mason 已提交
912 913
}

914 915 916
int btrfs_end_transaction(struct btrfs_trans_handle *trans,
			  struct btrfs_root *root)
{
917
	return __btrfs_end_transaction(trans, root, 0);
918 919 920 921 922
}

int btrfs_end_transaction_throttle(struct btrfs_trans_handle *trans,
				   struct btrfs_root *root)
{
923
	return __btrfs_end_transaction(trans, root, 1);
924 925
}

C
Chris Mason 已提交
926 927 928
/*
 * when btree blocks are allocated, they have some corresponding bits set for
 * them in one of two extent_io trees.  This is used to make sure all of
929
 * those extents are sent to disk but does not wait on them
C
Chris Mason 已提交
930
 */
931
int btrfs_write_marked_extents(struct btrfs_root *root,
932
			       struct extent_io_tree *dirty_pages, int mark)
C
Chris Mason 已提交
933
{
934
	int err = 0;
935
	int werr = 0;
J
Josef Bacik 已提交
936
	struct address_space *mapping = root->fs_info->btree_inode->i_mapping;
937
	struct extent_state *cached_state = NULL;
938
	u64 start = 0;
939
	u64 end;
940

J
Josef Bacik 已提交
941
	while (!find_first_extent_bit(dirty_pages, start, &start, &end,
942
				      mark, &cached_state)) {
943 944 945 946
		bool wait_writeback = false;

		err = convert_extent_bit(dirty_pages, start, end,
					 EXTENT_NEED_WAIT,
947
					 mark, &cached_state);
948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966
		/*
		 * convert_extent_bit can return -ENOMEM, which is most of the
		 * time a temporary error. So when it happens, ignore the error
		 * and wait for writeback of this range to finish - because we
		 * failed to set the bit EXTENT_NEED_WAIT for the range, a call
		 * to btrfs_wait_marked_extents() would not know that writeback
		 * for this range started and therefore wouldn't wait for it to
		 * finish - we don't want to commit a superblock that points to
		 * btree nodes/leafs for which writeback hasn't finished yet
		 * (and without errors).
		 * We cleanup any entries left in the io tree when committing
		 * the transaction (through clear_btree_io_tree()).
		 */
		if (err == -ENOMEM) {
			err = 0;
			wait_writeback = true;
		}
		if (!err)
			err = filemap_fdatawrite_range(mapping, start, end);
J
Josef Bacik 已提交
967 968
		if (err)
			werr = err;
969 970
		else if (wait_writeback)
			werr = filemap_fdatawait_range(mapping, start, end);
971
		free_extent_state(cached_state);
972
		cached_state = NULL;
J
Josef Bacik 已提交
973 974
		cond_resched();
		start = end + 1;
975
	}
976 977 978 979 980 981 982 983 984 985
	return werr;
}

/*
 * when btree blocks are allocated, they have some corresponding bits set for
 * them in one of two extent_io trees.  This is used to make sure all of
 * those extents are on disk for transaction or log commit.  We wait
 * on all the pages and clear them from the dirty pages state tree
 */
int btrfs_wait_marked_extents(struct btrfs_root *root,
986
			      struct extent_io_tree *dirty_pages, int mark)
987 988 989
{
	int err = 0;
	int werr = 0;
J
Josef Bacik 已提交
990
	struct address_space *mapping = root->fs_info->btree_inode->i_mapping;
991
	struct extent_state *cached_state = NULL;
992 993
	u64 start = 0;
	u64 end;
994 995
	struct btrfs_inode *btree_ino = BTRFS_I(root->fs_info->btree_inode);
	bool errors = false;
996

J
Josef Bacik 已提交
997
	while (!find_first_extent_bit(dirty_pages, start, &start, &end,
998
				      EXTENT_NEED_WAIT, &cached_state)) {
999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013
		/*
		 * Ignore -ENOMEM errors returned by clear_extent_bit().
		 * When committing the transaction, we'll remove any entries
		 * left in the io tree. For a log commit, we don't remove them
		 * after committing the log because the tree can be accessed
		 * concurrently - we do it only at transaction commit time when
		 * it's safe to do it (through clear_btree_io_tree()).
		 */
		err = clear_extent_bit(dirty_pages, start, end,
				       EXTENT_NEED_WAIT,
				       0, 0, &cached_state, GFP_NOFS);
		if (err == -ENOMEM)
			err = 0;
		if (!err)
			err = filemap_fdatawait_range(mapping, start, end);
J
Josef Bacik 已提交
1014 1015
		if (err)
			werr = err;
1016 1017
		free_extent_state(cached_state);
		cached_state = NULL;
J
Josef Bacik 已提交
1018 1019
		cond_resched();
		start = end + 1;
1020
	}
1021 1022
	if (err)
		werr = err;
1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042

	if (root->root_key.objectid == BTRFS_TREE_LOG_OBJECTID) {
		if ((mark & EXTENT_DIRTY) &&
		    test_and_clear_bit(BTRFS_INODE_BTREE_LOG1_ERR,
				       &btree_ino->runtime_flags))
			errors = true;

		if ((mark & EXTENT_NEW) &&
		    test_and_clear_bit(BTRFS_INODE_BTREE_LOG2_ERR,
				       &btree_ino->runtime_flags))
			errors = true;
	} else {
		if (test_and_clear_bit(BTRFS_INODE_BTREE_ERR,
				       &btree_ino->runtime_flags))
			errors = true;
	}

	if (errors && !werr)
		werr = -EIO;

1043
	return werr;
C
Chris Mason 已提交
1044 1045
}

1046 1047 1048 1049 1050
/*
 * when btree blocks are allocated, they have some corresponding bits set for
 * them in one of two extent_io trees.  This is used to make sure all of
 * those extents are on disk for transaction or log commit
 */
1051
static int btrfs_write_and_wait_marked_extents(struct btrfs_root *root,
1052
				struct extent_io_tree *dirty_pages, int mark)
1053 1054 1055
{
	int ret;
	int ret2;
1056
	struct blk_plug plug;
1057

1058
	blk_start_plug(&plug);
1059
	ret = btrfs_write_marked_extents(root, dirty_pages, mark);
1060
	blk_finish_plug(&plug);
1061
	ret2 = btrfs_wait_marked_extents(root, dirty_pages, mark);
1062 1063 1064 1065 1066 1067

	if (ret)
		return ret;
	if (ret2)
		return ret2;
	return 0;
1068 1069
}

1070
static int btrfs_write_and_wait_transaction(struct btrfs_trans_handle *trans,
1071 1072
				     struct btrfs_root *root)
{
1073 1074 1075
	int ret;

	ret = btrfs_write_and_wait_marked_extents(root,
1076 1077
					   &trans->transaction->dirty_pages,
					   EXTENT_DIRTY);
1078 1079 1080
	clear_btree_io_tree(&trans->transaction->dirty_pages);

	return ret;
1081 1082
}

C
Chris Mason 已提交
1083 1084 1085 1086 1087 1088 1089 1090 1091 1092
/*
 * this is used to update the root pointer in the tree of tree roots.
 *
 * But, in the case of the extent allocation tree, updating the root
 * pointer may allocate blocks which may change the root of the extent
 * allocation tree.
 *
 * So, this loops and repeats and makes sure the cowonly root didn't
 * change while the root pointer was being updated in the metadata.
 */
1093 1094
static int update_cowonly_root(struct btrfs_trans_handle *trans,
			       struct btrfs_root *root)
C
Chris Mason 已提交
1095 1096
{
	int ret;
1097
	u64 old_root_bytenr;
1098
	u64 old_root_used;
1099
	struct btrfs_root *tree_root = root->fs_info->tree_root;
C
Chris Mason 已提交
1100

1101
	old_root_used = btrfs_root_used(&root->root_item);
1102

C
Chris Mason 已提交
1103
	while (1) {
1104
		old_root_bytenr = btrfs_root_bytenr(&root->root_item);
1105
		if (old_root_bytenr == root->node->start &&
1106
		    old_root_used == btrfs_root_used(&root->root_item))
C
Chris Mason 已提交
1107
			break;
1108

1109
		btrfs_set_root_node(&root->root_item, root->node);
C
Chris Mason 已提交
1110
		ret = btrfs_update_root(trans, tree_root,
1111 1112
					&root->root_key,
					&root->root_item);
1113 1114
		if (ret)
			return ret;
1115

1116
		old_root_used = btrfs_root_used(&root->root_item);
1117
	}
1118

1119 1120 1121
	return 0;
}

C
Chris Mason 已提交
1122 1123
/*
 * update all the cowonly tree roots on disk
1124 1125 1126 1127
 *
 * The error handling in this function may not be obvious. Any of the
 * failures will cause the file system to go offline. We still need
 * to clean up the delayed refs.
C
Chris Mason 已提交
1128
 */
1129 1130
static noinline int commit_cowonly_roots(struct btrfs_trans_handle *trans,
					 struct btrfs_root *root)
1131 1132
{
	struct btrfs_fs_info *fs_info = root->fs_info;
1133
	struct list_head *dirty_bgs = &trans->transaction->dirty_bgs;
1134
	struct list_head *io_bgs = &trans->transaction->io_bgs;
1135
	struct list_head *next;
1136
	struct extent_buffer *eb;
1137
	int ret;
1138 1139

	eb = btrfs_lock_root_node(fs_info->tree_root);
1140 1141
	ret = btrfs_cow_block(trans, fs_info->tree_root, eb, NULL,
			      0, &eb);
1142 1143
	btrfs_tree_unlock(eb);
	free_extent_buffer(eb);
1144

1145 1146 1147
	if (ret)
		return ret;

1148
	ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1);
1149 1150
	if (ret)
		return ret;
1151

1152
	ret = btrfs_run_dev_stats(trans, root->fs_info);
1153 1154
	if (ret)
		return ret;
1155
	ret = btrfs_run_dev_replace(trans, root->fs_info);
1156 1157
	if (ret)
		return ret;
1158
	ret = btrfs_run_qgroups(trans, root->fs_info);
1159 1160
	if (ret)
		return ret;
1161

1162 1163 1164 1165
	ret = btrfs_setup_space_cache(trans, root);
	if (ret)
		return ret;

1166 1167
	/* run_qgroups might have added some more refs */
	ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1);
1168 1169
	if (ret)
		return ret;
1170
again:
C
Chris Mason 已提交
1171
	while (!list_empty(&fs_info->dirty_cowonly_roots)) {
1172 1173 1174
		next = fs_info->dirty_cowonly_roots.next;
		list_del_init(next);
		root = list_entry(next, struct btrfs_root, dirty_list);
1175
		clear_bit(BTRFS_ROOT_DIRTY, &root->state);
1176

1177 1178 1179
		if (root != fs_info->extent_root)
			list_add_tail(&root->dirty_list,
				      &trans->transaction->switch_commits);
1180 1181 1182
		ret = update_cowonly_root(trans, root);
		if (ret)
			return ret;
1183 1184 1185
		ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1);
		if (ret)
			return ret;
C
Chris Mason 已提交
1186
	}
1187

1188
	while (!list_empty(dirty_bgs) || !list_empty(io_bgs)) {
1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199
		ret = btrfs_write_dirty_block_groups(trans, root);
		if (ret)
			return ret;
		ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1);
		if (ret)
			return ret;
	}

	if (!list_empty(&fs_info->dirty_cowonly_roots))
		goto again;

1200 1201
	list_add_tail(&fs_info->extent_root->dirty_list,
		      &trans->transaction->switch_commits);
1202 1203
	btrfs_after_dev_replace_commit(fs_info);

C
Chris Mason 已提交
1204 1205 1206
	return 0;
}

C
Chris Mason 已提交
1207 1208 1209 1210 1211
/*
 * dead roots are old snapshots that need to be deleted.  This allocates
 * a dirty root struct and adds it into the list of dead roots that need to
 * be deleted
 */
1212
void btrfs_add_dead_root(struct btrfs_root *root)
1213
{
J
Josef Bacik 已提交
1214
	spin_lock(&root->fs_info->trans_lock);
1215 1216
	if (list_empty(&root->root_list))
		list_add_tail(&root->root_list, &root->fs_info->dead_roots);
J
Josef Bacik 已提交
1217
	spin_unlock(&root->fs_info->trans_lock);
1218 1219
}

C
Chris Mason 已提交
1220
/*
1221
 * update all the cowonly tree roots on disk
C
Chris Mason 已提交
1222
 */
1223 1224
static noinline int commit_fs_roots(struct btrfs_trans_handle *trans,
				    struct btrfs_root *root)
1225 1226
{
	struct btrfs_root *gang[8];
1227
	struct btrfs_fs_info *fs_info = root->fs_info;
1228 1229
	int i;
	int ret;
1230 1231
	int err = 0;

J
Josef Bacik 已提交
1232
	spin_lock(&fs_info->fs_roots_radix_lock);
C
Chris Mason 已提交
1233
	while (1) {
1234 1235
		ret = radix_tree_gang_lookup_tag(&fs_info->fs_roots_radix,
						 (void **)gang, 0,
1236 1237 1238 1239 1240 1241
						 ARRAY_SIZE(gang),
						 BTRFS_ROOT_TRANS_TAG);
		if (ret == 0)
			break;
		for (i = 0; i < ret; i++) {
			root = gang[i];
1242 1243 1244
			radix_tree_tag_clear(&fs_info->fs_roots_radix,
					(unsigned long)root->root_key.objectid,
					BTRFS_ROOT_TRANS_TAG);
J
Josef Bacik 已提交
1245
			spin_unlock(&fs_info->fs_roots_radix_lock);
Y
Yan Zheng 已提交
1246

1247
			btrfs_free_log(trans, root);
1248
			btrfs_update_reloc_root(trans, root);
1249
			btrfs_orphan_commit_root(trans, root);
1250

1251 1252
			btrfs_save_ino_cache(root, trans);

1253
			/* see comments in should_cow_block() */
1254
			clear_bit(BTRFS_ROOT_FORCE_COW, &root->state);
1255
			smp_mb__after_atomic();
1256

1257
			if (root->commit_root != root->node) {
1258 1259
				list_add_tail(&root->dirty_list,
					&trans->transaction->switch_commits);
1260 1261 1262
				btrfs_set_root_node(&root->root_item,
						    root->node);
			}
1263 1264

			err = btrfs_update_root(trans, fs_info->tree_root,
1265 1266
						&root->root_key,
						&root->root_item);
J
Josef Bacik 已提交
1267
			spin_lock(&fs_info->fs_roots_radix_lock);
1268 1269
			if (err)
				break;
1270
			btrfs_qgroup_free_meta_all(root);
1271 1272
		}
	}
J
Josef Bacik 已提交
1273
	spin_unlock(&fs_info->fs_roots_radix_lock);
1274
	return err;
1275 1276
}

C
Chris Mason 已提交
1277
/*
1278 1279
 * defrag a given btree.
 * Every leaf in the btree is read and defragged.
C
Chris Mason 已提交
1280
 */
1281
int btrfs_defrag_root(struct btrfs_root *root)
1282 1283 1284
{
	struct btrfs_fs_info *info = root->fs_info;
	struct btrfs_trans_handle *trans;
1285
	int ret;
1286

1287
	if (test_and_set_bit(BTRFS_ROOT_DEFRAG_RUNNING, &root->state))
1288
		return 0;
1289

1290
	while (1) {
1291 1292 1293 1294
		trans = btrfs_start_transaction(root, 0);
		if (IS_ERR(trans))
			return PTR_ERR(trans);

1295
		ret = btrfs_defrag_leaves(trans, root);
1296

1297
		btrfs_end_transaction(trans, root);
1298
		btrfs_btree_balance_dirty(info->tree_root);
1299 1300
		cond_resched();

1301
		if (btrfs_fs_closing(root->fs_info) || ret != -EAGAIN)
1302
			break;
1303 1304

		if (btrfs_defrag_cancelled(root->fs_info)) {
1305
			pr_debug("BTRFS: defrag_root cancelled\n");
1306 1307 1308
			ret = -EAGAIN;
			break;
		}
1309
	}
1310
	clear_bit(BTRFS_ROOT_DEFRAG_RUNNING, &root->state);
1311
	return ret;
1312 1313
}

1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382
/*
 * Do all special snapshot related qgroup dirty hack.
 *
 * Will do all needed qgroup inherit and dirty hack like switch commit
 * roots inside one transaction and write all btree into disk, to make
 * qgroup works.
 */
static int qgroup_account_snapshot(struct btrfs_trans_handle *trans,
				   struct btrfs_root *src,
				   struct btrfs_root *parent,
				   struct btrfs_qgroup_inherit *inherit,
				   u64 dst_objectid)
{
	struct btrfs_fs_info *fs_info = src->fs_info;
	int ret;

	/*
	 * Save some performance in the case that qgroups are not
	 * enabled. If this check races with the ioctl, rescan will
	 * kick in anyway.
	 */
	mutex_lock(&fs_info->qgroup_ioctl_lock);
	if (!fs_info->quota_enabled) {
		mutex_unlock(&fs_info->qgroup_ioctl_lock);
		return 0;
	}
	mutex_unlock(&fs_info->qgroup_ioctl_lock);

	/*
	 * We are going to commit transaction, see btrfs_commit_transaction()
	 * comment for reason locking tree_log_mutex
	 */
	mutex_lock(&fs_info->tree_log_mutex);

	ret = commit_fs_roots(trans, src);
	if (ret)
		goto out;
	ret = btrfs_qgroup_prepare_account_extents(trans, fs_info);
	if (ret < 0)
		goto out;
	ret = btrfs_qgroup_account_extents(trans, fs_info);
	if (ret < 0)
		goto out;

	/* Now qgroup are all updated, we can inherit it to new qgroups */
	ret = btrfs_qgroup_inherit(trans, fs_info,
				   src->root_key.objectid, dst_objectid,
				   inherit);
	if (ret < 0)
		goto out;

	/*
	 * Now we do a simplified commit transaction, which will:
	 * 1) commit all subvolume and extent tree
	 *    To ensure all subvolume and extent tree have a valid
	 *    commit_root to accounting later insert_dir_item()
	 * 2) write all btree blocks onto disk
	 *    This is to make sure later btree modification will be cowed
	 *    Or commit_root can be populated and cause wrong qgroup numbers
	 * In this simplified commit, we don't really care about other trees
	 * like chunk and root tree, as they won't affect qgroup.
	 * And we don't write super to avoid half committed status.
	 */
	ret = commit_cowonly_roots(trans, src);
	if (ret)
		goto out;
	switch_commit_roots(trans->transaction, fs_info);
	ret = btrfs_write_and_wait_transaction(trans, src);
	if (ret)
1383
		btrfs_handle_fs_error(fs_info, ret,
1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399
			"Error while writing out transaction for qgroup");

out:
	mutex_unlock(&fs_info->tree_log_mutex);

	/*
	 * Force parent root to be updated, as we recorded it before so its
	 * last_trans == cur_transid.
	 * Or it won't be committed again onto disk after later
	 * insert_dir_item()
	 */
	if (!ret)
		record_root_in_trans(trans, parent, 1);
	return ret;
}

C
Chris Mason 已提交
1400 1401
/*
 * new snapshots need to be created at a very specific time in the
1402 1403 1404 1405 1406 1407
 * transaction commit.  This does the actual creation.
 *
 * Note:
 * If the error which may affect the commitment of the current transaction
 * happens, we should return the error number. If the error which just affect
 * the creation of the pending snapshots, just return 0.
C
Chris Mason 已提交
1408
 */
1409
static noinline int create_pending_snapshot(struct btrfs_trans_handle *trans,
1410 1411 1412 1413
				   struct btrfs_fs_info *fs_info,
				   struct btrfs_pending_snapshot *pending)
{
	struct btrfs_key key;
1414
	struct btrfs_root_item *new_root_item;
1415 1416
	struct btrfs_root *tree_root = fs_info->tree_root;
	struct btrfs_root *root = pending->root;
1417
	struct btrfs_root *parent_root;
L
Liu Bo 已提交
1418
	struct btrfs_block_rsv *rsv;
1419
	struct inode *parent_inode;
1420 1421
	struct btrfs_path *path;
	struct btrfs_dir_item *dir_item;
1422
	struct dentry *dentry;
1423
	struct extent_buffer *tmp;
1424
	struct extent_buffer *old;
1425
	struct timespec cur_time;
1426
	int ret = 0;
1427
	u64 to_reserve = 0;
1428
	u64 index = 0;
1429
	u64 objectid;
L
Li Zefan 已提交
1430
	u64 root_flags;
1431
	uuid_le new_uuid;
1432

1433 1434
	ASSERT(pending->path);
	path = pending->path;
1435

1436 1437
	ASSERT(pending->root_item);
	new_root_item = pending->root_item;
1438

1439 1440
	pending->error = btrfs_find_free_objectid(tree_root, &objectid);
	if (pending->error)
1441
		goto no_free_objectid;
1442

1443 1444 1445 1446 1447 1448
	/*
	 * Make qgroup to skip current new snapshot's qgroupid, as it is
	 * accounted by later btrfs_qgroup_inherit().
	 */
	btrfs_set_skip_qgroup(trans, objectid);

1449
	btrfs_reloc_pre_snapshot(pending, &to_reserve);
1450 1451

	if (to_reserve > 0) {
1452 1453 1454 1455 1456
		pending->error = btrfs_block_rsv_add(root,
						     &pending->block_rsv,
						     to_reserve,
						     BTRFS_RESERVE_NO_FLUSH);
		if (pending->error)
1457
			goto clear_skip_qgroup;
1458 1459
	}

1460
	key.objectid = objectid;
1461 1462
	key.offset = (u64)-1;
	key.type = BTRFS_ROOT_ITEM_KEY;
1463

1464
	rsv = trans->block_rsv;
1465
	trans->block_rsv = &pending->block_rsv;
1466
	trans->bytes_reserved = trans->block_rsv->reserved;
1467 1468 1469
	trace_btrfs_space_reservation(root->fs_info, "transaction",
				      trans->transid,
				      trans->bytes_reserved, 1);
1470
	dentry = pending->dentry;
1471
	parent_inode = pending->dir;
1472
	parent_root = BTRFS_I(parent_inode)->root;
1473
	record_root_in_trans(trans, parent_root, 0);
1474

1475 1476
	cur_time = current_fs_time(parent_inode->i_sb);

1477 1478 1479
	/*
	 * insert the directory item
	 */
1480
	ret = btrfs_set_inode_index(parent_inode, &index);
1481
	BUG_ON(ret); /* -ENOMEM */
1482 1483 1484 1485 1486 1487 1488

	/* check if there is a file/dir which has the same name. */
	dir_item = btrfs_lookup_dir_item(NULL, parent_root, path,
					 btrfs_ino(parent_inode),
					 dentry->d_name.name,
					 dentry->d_name.len, 0);
	if (dir_item != NULL && !IS_ERR(dir_item)) {
1489
		pending->error = -EEXIST;
1490
		goto dir_item_existed;
1491 1492
	} else if (IS_ERR(dir_item)) {
		ret = PTR_ERR(dir_item);
1493 1494
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
1495
	}
1496
	btrfs_release_path(path);
1497

1498 1499 1500 1501 1502 1503 1504
	/*
	 * pull in the delayed directory update
	 * and the delayed inode item
	 * otherwise we corrupt the FS during
	 * snapshot
	 */
	ret = btrfs_run_delayed_items(trans, root);
1505 1506 1507 1508
	if (ret) {	/* Transaction aborted */
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}
1509

1510
	record_root_in_trans(trans, root, 0);
1511 1512
	btrfs_set_root_last_snapshot(&root->root_item, trans->transid);
	memcpy(new_root_item, &root->root_item, sizeof(*new_root_item));
1513
	btrfs_check_and_init_root_item(new_root_item);
1514

L
Li Zefan 已提交
1515 1516 1517 1518 1519 1520 1521
	root_flags = btrfs_root_flags(new_root_item);
	if (pending->readonly)
		root_flags |= BTRFS_ROOT_SUBVOL_RDONLY;
	else
		root_flags &= ~BTRFS_ROOT_SUBVOL_RDONLY;
	btrfs_set_root_flags(new_root_item, root_flags);

1522 1523 1524 1525 1526 1527
	btrfs_set_root_generation_v2(new_root_item,
			trans->transid);
	uuid_le_gen(&new_uuid);
	memcpy(new_root_item->uuid, new_uuid.b, BTRFS_UUID_SIZE);
	memcpy(new_root_item->parent_uuid, root->root_item.uuid,
			BTRFS_UUID_SIZE);
1528 1529 1530 1531 1532 1533 1534 1535
	if (!(root_flags & BTRFS_ROOT_SUBVOL_RDONLY)) {
		memset(new_root_item->received_uuid, 0,
		       sizeof(new_root_item->received_uuid));
		memset(&new_root_item->stime, 0, sizeof(new_root_item->stime));
		memset(&new_root_item->rtime, 0, sizeof(new_root_item->rtime));
		btrfs_set_root_stransid(new_root_item, 0);
		btrfs_set_root_rtransid(new_root_item, 0);
	}
1536 1537
	btrfs_set_stack_timespec_sec(&new_root_item->otime, cur_time.tv_sec);
	btrfs_set_stack_timespec_nsec(&new_root_item->otime, cur_time.tv_nsec);
1538 1539
	btrfs_set_root_otransid(new_root_item, trans->transid);

1540
	old = btrfs_lock_root_node(root);
1541
	ret = btrfs_cow_block(trans, root, old, NULL, 0, &old);
1542 1543 1544
	if (ret) {
		btrfs_tree_unlock(old);
		free_extent_buffer(old);
1545 1546
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
1547
	}
1548

1549 1550
	btrfs_set_lock_blocking(old);

1551
	ret = btrfs_copy_root(trans, root, old, &tmp, objectid);
1552
	/* clean up in any case */
1553 1554
	btrfs_tree_unlock(old);
	free_extent_buffer(old);
1555 1556 1557 1558
	if (ret) {
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}
1559
	/* see comments in should_cow_block() */
1560
	set_bit(BTRFS_ROOT_FORCE_COW, &root->state);
1561 1562
	smp_wmb();

1563
	btrfs_set_root_node(new_root_item, tmp);
1564 1565 1566
	/* record when the snapshot was created in key.offset */
	key.offset = trans->transid;
	ret = btrfs_insert_root(trans, tree_root, &key, new_root_item);
1567 1568
	btrfs_tree_unlock(tmp);
	free_extent_buffer(tmp);
1569 1570 1571 1572
	if (ret) {
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}
1573

1574 1575 1576 1577
	/*
	 * insert root back/forward references
	 */
	ret = btrfs_add_root_ref(trans, tree_root, objectid,
1578
				 parent_root->root_key.objectid,
L
Li Zefan 已提交
1579
				 btrfs_ino(parent_inode), index,
1580
				 dentry->d_name.name, dentry->d_name.len);
1581 1582 1583 1584
	if (ret) {
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}
1585

1586 1587
	key.offset = (u64)-1;
	pending->snap = btrfs_read_fs_root_no_name(root->fs_info, &key);
1588 1589
	if (IS_ERR(pending->snap)) {
		ret = PTR_ERR(pending->snap);
1590 1591
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
1592
	}
1593

1594
	ret = btrfs_reloc_post_snapshot(trans, pending);
1595 1596 1597 1598
	if (ret) {
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}
1599 1600

	ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1);
1601 1602 1603 1604
	if (ret) {
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}
1605

1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616
	/*
	 * Do special qgroup accounting for snapshot, as we do some qgroup
	 * snapshot hack to do fast snapshot.
	 * To co-operate with that hack, we do hack again.
	 * Or snapshot will be greatly slowed down by a subtree qgroup rescan
	 */
	ret = qgroup_account_snapshot(trans, root, parent_root,
				      pending->inherit, objectid);
	if (ret < 0)
		goto fail;

1617 1618 1619 1620 1621
	ret = btrfs_insert_dir_item(trans, parent_root,
				    dentry->d_name.name, dentry->d_name.len,
				    parent_inode, &key,
				    BTRFS_FT_DIR, index);
	/* We have check then name at the beginning, so it is impossible. */
C
Chris Mason 已提交
1622
	BUG_ON(ret == -EEXIST || ret == -EOVERFLOW);
1623 1624 1625 1626
	if (ret) {
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}
1627 1628 1629

	btrfs_i_size_write(parent_inode, parent_inode->i_size +
					 dentry->d_name.len * 2);
1630 1631
	parent_inode->i_mtime = parent_inode->i_ctime =
		current_fs_time(parent_inode->i_sb);
1632
	ret = btrfs_update_inode_fallback(trans, parent_root, parent_inode);
1633 1634 1635 1636 1637 1638 1639
	if (ret) {
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}
	ret = btrfs_uuid_tree_add(trans, fs_info->uuid_root, new_uuid.b,
				  BTRFS_UUID_KEY_SUBVOL, objectid);
	if (ret) {
1640
		btrfs_abort_transaction(trans, root, ret);
1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652
		goto fail;
	}
	if (!btrfs_is_empty_uuid(new_root_item->received_uuid)) {
		ret = btrfs_uuid_tree_add(trans, fs_info->uuid_root,
					  new_root_item->received_uuid,
					  BTRFS_UUID_KEY_RECEIVED_SUBVOL,
					  objectid);
		if (ret && ret != -EEXIST) {
			btrfs_abort_transaction(trans, root, ret);
			goto fail;
		}
	}
1653 1654 1655 1656 1657 1658 1659

	ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1);
	if (ret) {
		btrfs_abort_transaction(trans, root, ret);
		goto fail;
	}

1660
fail:
1661 1662
	pending->error = ret;
dir_item_existed:
L
Liu Bo 已提交
1663
	trans->block_rsv = rsv;
1664
	trans->bytes_reserved = 0;
1665 1666
clear_skip_qgroup:
	btrfs_clear_skip_qgroup(trans);
1667 1668
no_free_objectid:
	kfree(new_root_item);
1669
	pending->root_item = NULL;
1670
	btrfs_free_path(path);
1671 1672
	pending->path = NULL;

1673
	return ret;
1674 1675
}

C
Chris Mason 已提交
1676 1677 1678
/*
 * create all the snapshots we've scheduled for creation
 */
1679 1680
static noinline int create_pending_snapshots(struct btrfs_trans_handle *trans,
					     struct btrfs_fs_info *fs_info)
1681
{
1682
	struct btrfs_pending_snapshot *pending, *next;
1683
	struct list_head *head = &trans->transaction->pending_snapshots;
1684
	int ret = 0;
1685

1686 1687 1688 1689 1690 1691 1692
	list_for_each_entry_safe(pending, next, head, list) {
		list_del(&pending->list);
		ret = create_pending_snapshot(trans, fs_info, pending);
		if (ret)
			break;
	}
	return ret;
1693 1694
}

1695 1696 1697 1698 1699
static void update_super_roots(struct btrfs_root *root)
{
	struct btrfs_root_item *root_item;
	struct btrfs_super_block *super;

1700
	super = root->fs_info->super_copy;
1701 1702 1703 1704 1705 1706 1707 1708 1709 1710

	root_item = &root->fs_info->chunk_root->root_item;
	super->chunk_root = root_item->bytenr;
	super->chunk_root_generation = root_item->generation;
	super->chunk_root_level = root_item->level;

	root_item = &root->fs_info->tree_root->root_item;
	super->root = root_item->bytenr;
	super->generation = root_item->generation;
	super->root_level = root_item->level;
1711
	if (btrfs_test_opt(root, SPACE_CACHE))
1712
		super->cache_generation = root_item->generation;
1713 1714
	if (root->fs_info->update_uuid_tree_gen)
		super->uuid_tree_generation = root_item->generation;
1715 1716
}

1717 1718
int btrfs_transaction_in_commit(struct btrfs_fs_info *info)
{
1719
	struct btrfs_transaction *trans;
1720
	int ret = 0;
1721

J
Josef Bacik 已提交
1722
	spin_lock(&info->trans_lock);
1723 1724 1725
	trans = info->running_transaction;
	if (trans)
		ret = (trans->state >= TRANS_STATE_COMMIT_START);
J
Josef Bacik 已提交
1726
	spin_unlock(&info->trans_lock);
1727 1728 1729
	return ret;
}

1730 1731
int btrfs_transaction_blocked(struct btrfs_fs_info *info)
{
1732
	struct btrfs_transaction *trans;
1733
	int ret = 0;
1734

J
Josef Bacik 已提交
1735
	spin_lock(&info->trans_lock);
1736 1737 1738
	trans = info->running_transaction;
	if (trans)
		ret = is_transaction_blocked(trans);
J
Josef Bacik 已提交
1739
	spin_unlock(&info->trans_lock);
1740 1741 1742
	return ret;
}

S
Sage Weil 已提交
1743 1744 1745 1746 1747 1748 1749
/*
 * wait for the current transaction commit to start and block subsequent
 * transaction joins
 */
static void wait_current_trans_commit_start(struct btrfs_root *root,
					    struct btrfs_transaction *trans)
{
1750
	wait_event(root->fs_info->transaction_blocked_wait,
1751 1752
		   trans->state >= TRANS_STATE_COMMIT_START ||
		   trans->aborted);
S
Sage Weil 已提交
1753 1754 1755 1756 1757 1758 1759 1760 1761
}

/*
 * wait for the current transaction to start and then become unblocked.
 * caller holds ref.
 */
static void wait_current_trans_commit_start_and_unblock(struct btrfs_root *root,
					 struct btrfs_transaction *trans)
{
L
Li Zefan 已提交
1762
	wait_event(root->fs_info->transaction_wait,
1763 1764
		   trans->state >= TRANS_STATE_UNBLOCKED ||
		   trans->aborted);
S
Sage Weil 已提交
1765 1766 1767 1768 1769 1770 1771 1772 1773
}

/*
 * commit transactions asynchronously. once btrfs_commit_transaction_async
 * returns, any subsequent transaction will not be allowed to join.
 */
struct btrfs_async_commit {
	struct btrfs_trans_handle *newtrans;
	struct btrfs_root *root;
1774
	struct work_struct work;
S
Sage Weil 已提交
1775 1776 1777 1778 1779
};

static void do_async_commit(struct work_struct *work)
{
	struct btrfs_async_commit *ac =
1780
		container_of(work, struct btrfs_async_commit, work);
S
Sage Weil 已提交
1781

1782 1783 1784 1785
	/*
	 * We've got freeze protection passed with the transaction.
	 * Tell lockdep about it.
	 */
L
Liu Bo 已提交
1786
	if (ac->newtrans->type & __TRANS_FREEZABLE)
1787
		__sb_writers_acquired(ac->root->fs_info->sb, SB_FREEZE_FS);
1788

1789 1790
	current->journal_info = ac->newtrans;

S
Sage Weil 已提交
1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802
	btrfs_commit_transaction(ac->newtrans, ac->root);
	kfree(ac);
}

int btrfs_commit_transaction_async(struct btrfs_trans_handle *trans,
				   struct btrfs_root *root,
				   int wait_for_unblock)
{
	struct btrfs_async_commit *ac;
	struct btrfs_transaction *cur_trans;

	ac = kmalloc(sizeof(*ac), GFP_NOFS);
T
Tsutomu Itoh 已提交
1803 1804
	if (!ac)
		return -ENOMEM;
S
Sage Weil 已提交
1805

1806
	INIT_WORK(&ac->work, do_async_commit);
S
Sage Weil 已提交
1807
	ac->root = root;
1808
	ac->newtrans = btrfs_join_transaction(root);
1809 1810 1811 1812 1813
	if (IS_ERR(ac->newtrans)) {
		int err = PTR_ERR(ac->newtrans);
		kfree(ac);
		return err;
	}
S
Sage Weil 已提交
1814 1815 1816

	/* take transaction reference */
	cur_trans = trans->transaction;
1817
	atomic_inc(&cur_trans->use_count);
S
Sage Weil 已提交
1818 1819

	btrfs_end_transaction(trans, root);
1820 1821 1822 1823 1824

	/*
	 * Tell lockdep we've released the freeze rwsem, since the
	 * async commit thread will be the one to unlock it.
	 */
L
Liu Bo 已提交
1825
	if (ac->newtrans->type & __TRANS_FREEZABLE)
1826
		__sb_writers_release(root->fs_info->sb, SB_FREEZE_FS);
1827

1828
	schedule_work(&ac->work);
S
Sage Weil 已提交
1829 1830 1831 1832 1833 1834 1835

	/* wait for transaction to start and unblock */
	if (wait_for_unblock)
		wait_current_trans_commit_start_and_unblock(root, cur_trans);
	else
		wait_current_trans_commit_start(root, cur_trans);

1836 1837 1838
	if (current->journal_info == trans)
		current->journal_info = NULL;

1839
	btrfs_put_transaction(cur_trans);
S
Sage Weil 已提交
1840 1841 1842
	return 0;
}

1843 1844

static void cleanup_transaction(struct btrfs_trans_handle *trans,
1845
				struct btrfs_root *root, int err)
1846 1847
{
	struct btrfs_transaction *cur_trans = trans->transaction;
1848
	DEFINE_WAIT(wait);
1849 1850 1851

	WARN_ON(trans->use_count > 1);

1852 1853
	btrfs_abort_transaction(trans, root, err);

1854
	spin_lock(&root->fs_info->trans_lock);
1855

1856 1857 1858 1859 1860 1861
	/*
	 * If the transaction is removed from the list, it means this
	 * transaction has been committed successfully, so it is impossible
	 * to call the cleanup function.
	 */
	BUG_ON(list_empty(&cur_trans->list));
1862

1863
	list_del_init(&cur_trans->list);
1864
	if (cur_trans == root->fs_info->running_transaction) {
1865
		cur_trans->state = TRANS_STATE_COMMIT_DOING;
1866 1867 1868 1869 1870
		spin_unlock(&root->fs_info->trans_lock);
		wait_event(cur_trans->writer_wait,
			   atomic_read(&cur_trans->num_writers) == 1);

		spin_lock(&root->fs_info->trans_lock);
1871
	}
1872 1873 1874 1875
	spin_unlock(&root->fs_info->trans_lock);

	btrfs_cleanup_one_transaction(trans->transaction, root);

1876 1877 1878 1879 1880
	spin_lock(&root->fs_info->trans_lock);
	if (cur_trans == root->fs_info->running_transaction)
		root->fs_info->running_transaction = NULL;
	spin_unlock(&root->fs_info->trans_lock);

1881 1882
	if (trans->type & __TRANS_FREEZABLE)
		sb_end_intwrite(root->fs_info->sb);
1883 1884
	btrfs_put_transaction(cur_trans);
	btrfs_put_transaction(cur_trans);
1885 1886 1887 1888 1889

	trace_btrfs_transaction_commit(root);

	if (current->journal_info == trans)
		current->journal_info = NULL;
1890
	btrfs_scrub_cancel(root->fs_info);
1891 1892 1893 1894

	kmem_cache_free(btrfs_trans_handle_cachep, trans);
}

1895 1896 1897
static inline int btrfs_start_delalloc_flush(struct btrfs_fs_info *fs_info)
{
	if (btrfs_test_opt(fs_info->tree_root, FLUSHONCOMMIT))
1898
		return btrfs_start_delalloc_roots(fs_info, 1, -1);
1899 1900 1901 1902 1903 1904
	return 0;
}

static inline void btrfs_wait_delalloc_flush(struct btrfs_fs_info *fs_info)
{
	if (btrfs_test_opt(fs_info->tree_root, FLUSHONCOMMIT))
1905
		btrfs_wait_ordered_roots(fs_info, -1, 0, (u64)-1);
1906 1907
}

1908
static inline void
1909
btrfs_wait_pending_ordered(struct btrfs_transaction *cur_trans)
1910
{
1911 1912
	wait_event(cur_trans->pending_wait,
		   atomic_read(&cur_trans->pending_ordered) == 0);
1913 1914
}

C
Chris Mason 已提交
1915 1916 1917
int btrfs_commit_transaction(struct btrfs_trans_handle *trans,
			     struct btrfs_root *root)
{
1918
	struct btrfs_transaction *cur_trans = trans->transaction;
C
Chris Mason 已提交
1919
	struct btrfs_transaction *prev_trans = NULL;
1920
	struct btrfs_inode *btree_ino = BTRFS_I(root->fs_info->btree_inode);
1921
	int ret;
C
Chris Mason 已提交
1922

1923 1924
	/* Stop the commit early if ->aborted is set */
	if (unlikely(ACCESS_ONCE(cur_trans->aborted))) {
1925
		ret = cur_trans->aborted;
1926 1927
		btrfs_end_transaction(trans, root);
		return ret;
1928
	}
1929

1930 1931 1932 1933
	/* make a pass through all the delayed refs we have so far
	 * any runnings procs may add more while we are here
	 */
	ret = btrfs_run_delayed_refs(trans, root, 0);
1934 1935 1936 1937
	if (ret) {
		btrfs_end_transaction(trans, root);
		return ret;
	}
1938

1939 1940 1941
	btrfs_trans_release_metadata(trans, root);
	trans->block_rsv = NULL;

1942
	cur_trans = trans->transaction;
1943

1944 1945 1946 1947
	/*
	 * set the flushing flag so procs in this transaction have to
	 * start sending their work down.
	 */
1948
	cur_trans->delayed_refs.flushing = 1;
1949
	smp_wmb();
1950

1951 1952 1953
	if (!list_empty(&trans->new_bgs))
		btrfs_create_pending_block_groups(trans, root);

1954
	ret = btrfs_run_delayed_refs(trans, root, 0);
1955 1956 1957 1958
	if (ret) {
		btrfs_end_transaction(trans, root);
		return ret;
	}
1959

1960
	if (!test_bit(BTRFS_TRANS_DIRTY_BG_RUN, &cur_trans->flags)) {
1961 1962 1963 1964 1965 1966 1967 1968
		int run_it = 0;

		/* this mutex is also taken before trying to set
		 * block groups readonly.  We need to make sure
		 * that nobody has set a block group readonly
		 * after a extents from that block group have been
		 * allocated for cache files.  btrfs_set_block_group_ro
		 * will wait for the transaction to commit if it
1969
		 * finds BTRFS_TRANS_DIRTY_BG_RUN set.
1970
		 *
1971 1972
		 * The BTRFS_TRANS_DIRTY_BG_RUN flag is also used to make sure
		 * only one process starts all the block group IO.  It wouldn't
1973 1974 1975 1976
		 * hurt to have more than one go through, but there's no
		 * real advantage to it either.
		 */
		mutex_lock(&root->fs_info->ro_block_group_mutex);
1977 1978
		if (!test_and_set_bit(BTRFS_TRANS_DIRTY_BG_RUN,
				      &cur_trans->flags))
1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989
			run_it = 1;
		mutex_unlock(&root->fs_info->ro_block_group_mutex);

		if (run_it)
			ret = btrfs_start_dirty_block_groups(trans, root);
	}
	if (ret) {
		btrfs_end_transaction(trans, root);
		return ret;
	}

1990 1991 1992
	spin_lock(&root->fs_info->trans_lock);
	if (cur_trans->state >= TRANS_STATE_COMMIT_START) {
		spin_unlock(&root->fs_info->trans_lock);
1993
		atomic_inc(&cur_trans->use_count);
1994
		ret = btrfs_end_transaction(trans, root);
C
Chris Mason 已提交
1995

1996
		wait_for_commit(root, cur_trans);
1997

1998 1999 2000
		if (unlikely(cur_trans->aborted))
			ret = cur_trans->aborted;

2001
		btrfs_put_transaction(cur_trans);
2002

2003
		return ret;
C
Chris Mason 已提交
2004
	}
2005

2006
	cur_trans->state = TRANS_STATE_COMMIT_START;
S
Sage Weil 已提交
2007 2008
	wake_up(&root->fs_info->transaction_blocked_wait);

C
Chris Mason 已提交
2009 2010 2011
	if (cur_trans->list.prev != &root->fs_info->trans_list) {
		prev_trans = list_entry(cur_trans->list.prev,
					struct btrfs_transaction, list);
2012
		if (prev_trans->state != TRANS_STATE_COMPLETED) {
2013
			atomic_inc(&prev_trans->use_count);
J
Josef Bacik 已提交
2014
			spin_unlock(&root->fs_info->trans_lock);
C
Chris Mason 已提交
2015 2016

			wait_for_commit(root, prev_trans);
2017
			ret = prev_trans->aborted;
C
Chris Mason 已提交
2018

2019
			btrfs_put_transaction(prev_trans);
2020 2021
			if (ret)
				goto cleanup_transaction;
J
Josef Bacik 已提交
2022 2023
		} else {
			spin_unlock(&root->fs_info->trans_lock);
C
Chris Mason 已提交
2024
		}
J
Josef Bacik 已提交
2025 2026
	} else {
		spin_unlock(&root->fs_info->trans_lock);
C
Chris Mason 已提交
2027
	}
2028

2029 2030
	extwriter_counter_dec(cur_trans, trans->type);

2031 2032 2033 2034
	ret = btrfs_start_delalloc_flush(root->fs_info);
	if (ret)
		goto cleanup_transaction;

2035
	ret = btrfs_run_delayed_items(trans, root);
2036 2037
	if (ret)
		goto cleanup_transaction;
2038

2039 2040
	wait_event(cur_trans->writer_wait,
		   extwriter_counter_read(cur_trans) == 0);
2041

2042
	/* some pending stuffs might be added after the previous flush. */
2043
	ret = btrfs_run_delayed_items(trans, root);
2044 2045 2046
	if (ret)
		goto cleanup_transaction;

2047
	btrfs_wait_delalloc_flush(root->fs_info);
2048

2049
	btrfs_wait_pending_ordered(cur_trans);
2050

2051
	btrfs_scrub_pause(root);
2052 2053 2054
	/*
	 * Ok now we need to make sure to block out any other joins while we
	 * commit the transaction.  We could have started a join before setting
2055
	 * COMMIT_DOING so make sure to wait for num_writers to == 1 again.
2056 2057
	 */
	spin_lock(&root->fs_info->trans_lock);
2058
	cur_trans->state = TRANS_STATE_COMMIT_DOING;
2059 2060 2061 2062
	spin_unlock(&root->fs_info->trans_lock);
	wait_event(cur_trans->writer_wait,
		   atomic_read(&cur_trans->num_writers) == 1);

2063 2064 2065
	/* ->aborted might be set after the previous check, so check it */
	if (unlikely(ACCESS_ONCE(cur_trans->aborted))) {
		ret = cur_trans->aborted;
2066
		goto scrub_continue;
2067
	}
C
Chris Mason 已提交
2068 2069 2070 2071 2072 2073 2074
	/*
	 * the reloc mutex makes sure that we stop
	 * the balancing code from coming in and moving
	 * extents around in the middle of the commit
	 */
	mutex_lock(&root->fs_info->reloc_mutex);

2075 2076 2077 2078 2079 2080
	/*
	 * We needn't worry about the delayed items because we will
	 * deal with them in create_pending_snapshot(), which is the
	 * core function of the snapshot creation.
	 */
	ret = create_pending_snapshots(trans, root->fs_info);
2081 2082
	if (ret) {
		mutex_unlock(&root->fs_info->reloc_mutex);
2083
		goto scrub_continue;
2084
	}
2085

2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096
	/*
	 * We insert the dir indexes of the snapshots and update the inode
	 * of the snapshots' parents after the snapshot creation, so there
	 * are some delayed items which are not dealt with. Now deal with
	 * them.
	 *
	 * We needn't worry that this operation will corrupt the snapshots,
	 * because all the tree which are snapshoted will be forced to COW
	 * the nodes and leaves.
	 */
	ret = btrfs_run_delayed_items(trans, root);
2097 2098
	if (ret) {
		mutex_unlock(&root->fs_info->reloc_mutex);
2099
		goto scrub_continue;
2100
	}
2101

2102
	ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1);
2103 2104
	if (ret) {
		mutex_unlock(&root->fs_info->reloc_mutex);
2105
		goto scrub_continue;
2106
	}
2107

2108 2109 2110 2111 2112 2113 2114
	/* Reocrd old roots for later qgroup accounting */
	ret = btrfs_qgroup_prepare_account_extents(trans, root->fs_info);
	if (ret) {
		mutex_unlock(&root->fs_info->reloc_mutex);
		goto scrub_continue;
	}

2115 2116 2117 2118 2119 2120
	/*
	 * make sure none of the code above managed to slip in a
	 * delayed item
	 */
	btrfs_assert_delayed_root_empty(root);

C
Chris Mason 已提交
2121
	WARN_ON(cur_trans != trans->transaction);
C
Chris Mason 已提交
2122

2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137
	/* btrfs_commit_tree_roots is responsible for getting the
	 * various roots consistent with each other.  Every pointer
	 * in the tree of tree roots has to point to the most up to date
	 * root for every subvolume and other tree.  So, we have to keep
	 * the tree logging code from jumping in and changing any
	 * of the trees.
	 *
	 * At this point in the commit, there can't be any tree-log
	 * writers, but a little lower down we drop the trans mutex
	 * and let new people in.  By holding the tree_log_mutex
	 * from now until after the super is written, we avoid races
	 * with the tree-log code.
	 */
	mutex_lock(&root->fs_info->tree_log_mutex);

2138
	ret = commit_fs_roots(trans, root);
2139 2140
	if (ret) {
		mutex_unlock(&root->fs_info->tree_log_mutex);
2141
		mutex_unlock(&root->fs_info->reloc_mutex);
2142
		goto scrub_continue;
2143
	}
2144

2145
	/*
2146 2147
	 * Since the transaction is done, we can apply the pending changes
	 * before the next transaction.
2148
	 */
2149
	btrfs_apply_pending_changes(root->fs_info);
2150

2151
	/* commit_fs_roots gets rid of all the tree log roots, it is now
2152 2153 2154 2155
	 * safe to free the root of tree log roots
	 */
	btrfs_free_log_root_tree(trans, root->fs_info);

2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166
	/*
	 * Since fs roots are all committed, we can get a quite accurate
	 * new_roots. So let's do quota accounting.
	 */
	ret = btrfs_qgroup_account_extents(trans, root->fs_info);
	if (ret < 0) {
		mutex_unlock(&root->fs_info->tree_log_mutex);
		mutex_unlock(&root->fs_info->reloc_mutex);
		goto scrub_continue;
	}

2167
	ret = commit_cowonly_roots(trans, root);
2168 2169
	if (ret) {
		mutex_unlock(&root->fs_info->tree_log_mutex);
2170
		mutex_unlock(&root->fs_info->reloc_mutex);
2171
		goto scrub_continue;
2172
	}
2173

2174 2175 2176 2177 2178 2179 2180 2181
	/*
	 * The tasks which save the space cache and inode cache may also
	 * update ->aborted, check it.
	 */
	if (unlikely(ACCESS_ONCE(cur_trans->aborted))) {
		ret = cur_trans->aborted;
		mutex_unlock(&root->fs_info->tree_log_mutex);
		mutex_unlock(&root->fs_info->reloc_mutex);
2182
		goto scrub_continue;
2183 2184
	}

2185 2186
	btrfs_prepare_extent_commit(trans, root);

C
Chris Mason 已提交
2187
	cur_trans = root->fs_info->running_transaction;
2188 2189 2190

	btrfs_set_root_node(&root->fs_info->tree_root->root_item,
			    root->fs_info->tree_root->node);
2191 2192
	list_add_tail(&root->fs_info->tree_root->dirty_list,
		      &cur_trans->switch_commits);
2193 2194 2195

	btrfs_set_root_node(&root->fs_info->chunk_root->root_item,
			    root->fs_info->chunk_root->node);
2196 2197 2198 2199
	list_add_tail(&root->fs_info->chunk_root->dirty_list,
		      &cur_trans->switch_commits);

	switch_commit_roots(cur_trans, root->fs_info);
2200

2201
	assert_qgroups_uptodate(trans);
2202
	ASSERT(list_empty(&cur_trans->dirty_bgs));
2203
	ASSERT(list_empty(&cur_trans->io_bgs));
2204
	update_super_roots(root);
2205

2206 2207
	btrfs_set_super_log_root(root->fs_info->super_copy, 0);
	btrfs_set_super_log_root_level(root->fs_info->super_copy, 0);
2208 2209
	memcpy(root->fs_info->super_for_commit, root->fs_info->super_copy,
	       sizeof(*root->fs_info->super_copy));
C
Chris Mason 已提交
2210

2211
	btrfs_update_commit_device_size(root->fs_info);
2212
	btrfs_update_commit_device_bytes_used(root, cur_trans);
2213

2214 2215 2216
	clear_bit(BTRFS_INODE_BTREE_LOG1_ERR, &btree_ino->runtime_flags);
	clear_bit(BTRFS_INODE_BTREE_LOG2_ERR, &btree_ino->runtime_flags);

2217 2218
	btrfs_trans_release_chunk_metadata(trans);

J
Josef Bacik 已提交
2219
	spin_lock(&root->fs_info->trans_lock);
2220
	cur_trans->state = TRANS_STATE_UNBLOCKED;
J
Josef Bacik 已提交
2221 2222
	root->fs_info->running_transaction = NULL;
	spin_unlock(&root->fs_info->trans_lock);
C
Chris Mason 已提交
2223
	mutex_unlock(&root->fs_info->reloc_mutex);
2224

2225
	wake_up(&root->fs_info->transaction_wait);
2226

C
Chris Mason 已提交
2227
	ret = btrfs_write_and_wait_transaction(trans, root);
2228
	if (ret) {
2229
		btrfs_handle_fs_error(root->fs_info, ret,
2230
			    "Error while writing out transaction");
2231
		mutex_unlock(&root->fs_info->tree_log_mutex);
2232
		goto scrub_continue;
2233 2234 2235 2236 2237
	}

	ret = write_ctree_super(trans, root, 0);
	if (ret) {
		mutex_unlock(&root->fs_info->tree_log_mutex);
2238
		goto scrub_continue;
2239
	}
2240

2241 2242 2243 2244 2245 2246
	/*
	 * the super is written, we can safely allow the tree-loggers
	 * to go about their business
	 */
	mutex_unlock(&root->fs_info->tree_log_mutex);

2247
	btrfs_finish_extent_commit(trans, root);
2248

2249
	if (test_bit(BTRFS_TRANS_HAVE_FREE_BGS, &cur_trans->flags))
Z
Zhao Lei 已提交
2250 2251
		btrfs_clear_space_info_full(root->fs_info);

2252
	root->fs_info->last_trans_committed = cur_trans->transid;
2253 2254 2255 2256 2257
	/*
	 * We needn't acquire the lock here because there is no other task
	 * which can change it.
	 */
	cur_trans->state = TRANS_STATE_COMPLETED;
C
Chris Mason 已提交
2258
	wake_up(&cur_trans->commit_wait);
2259

J
Josef Bacik 已提交
2260
	spin_lock(&root->fs_info->trans_lock);
2261
	list_del_init(&cur_trans->list);
J
Josef Bacik 已提交
2262 2263
	spin_unlock(&root->fs_info->trans_lock);

2264 2265
	btrfs_put_transaction(cur_trans);
	btrfs_put_transaction(cur_trans);
2266

2267
	if (trans->type & __TRANS_FREEZABLE)
2268
		sb_end_intwrite(root->fs_info->sb);
2269

2270 2271
	trace_btrfs_transaction_commit(root);

A
Arne Jansen 已提交
2272 2273
	btrfs_scrub_continue(root);

J
Josef Bacik 已提交
2274 2275 2276
	if (current->journal_info == trans)
		current->journal_info = NULL;

C
Chris Mason 已提交
2277
	kmem_cache_free(btrfs_trans_handle_cachep, trans);
Y
Yan, Zheng 已提交
2278

2279 2280
	if (current != root->fs_info->transaction_kthread &&
	    current != root->fs_info->cleaner_kthread)
Y
Yan, Zheng 已提交
2281 2282
		btrfs_run_delayed_iputs(root);

C
Chris Mason 已提交
2283
	return ret;
2284

2285 2286
scrub_continue:
	btrfs_scrub_continue(root);
2287
cleanup_transaction:
2288
	btrfs_trans_release_metadata(trans, root);
2289
	btrfs_trans_release_chunk_metadata(trans);
2290
	trans->block_rsv = NULL;
2291
	btrfs_warn(root->fs_info, "Skipping commit of aborted transaction.");
2292 2293
	if (current->journal_info == trans)
		current->journal_info = NULL;
2294
	cleanup_transaction(trans, root, ret);
2295 2296

	return ret;
C
Chris Mason 已提交
2297 2298
}

C
Chris Mason 已提交
2299
/*
D
David Sterba 已提交
2300 2301 2302 2303 2304 2305 2306 2307
 * return < 0 if error
 * 0 if there are no more dead_roots at the time of call
 * 1 there are more to be processed, call me again
 *
 * The return value indicates there are certainly more snapshots to delete, but
 * if there comes a new one during processing, it may return 0. We don't mind,
 * because btrfs_commit_super will poke cleaner thread and it will process it a
 * few seconds later.
C
Chris Mason 已提交
2308
 */
D
David Sterba 已提交
2309
int btrfs_clean_one_deleted_snapshot(struct btrfs_root *root)
2310
{
D
David Sterba 已提交
2311
	int ret;
2312 2313
	struct btrfs_fs_info *fs_info = root->fs_info;

J
Josef Bacik 已提交
2314
	spin_lock(&fs_info->trans_lock);
D
David Sterba 已提交
2315 2316 2317 2318 2319 2320
	if (list_empty(&fs_info->dead_roots)) {
		spin_unlock(&fs_info->trans_lock);
		return 0;
	}
	root = list_first_entry(&fs_info->dead_roots,
			struct btrfs_root, root_list);
2321
	list_del_init(&root->root_list);
J
Josef Bacik 已提交
2322
	spin_unlock(&fs_info->trans_lock);
2323

2324
	pr_debug("BTRFS: cleaner removing %llu\n", root->objectid);
2325

D
David Sterba 已提交
2326
	btrfs_kill_all_delayed_nodes(root);
2327

D
David Sterba 已提交
2328 2329 2330 2331 2332
	if (btrfs_header_backref_rev(root->node) <
			BTRFS_MIXED_BACKREF_REV)
		ret = btrfs_drop_snapshot(root, NULL, 0, 0);
	else
		ret = btrfs_drop_snapshot(root, NULL, 1, 0);
2333

2334
	return (ret < 0) ? 0 : 1;
2335
}
2336 2337 2338 2339 2340 2341

void btrfs_apply_pending_changes(struct btrfs_fs_info *fs_info)
{
	unsigned long prev;
	unsigned long bit;

2342
	prev = xchg(&fs_info->pending_changes, 0);
2343 2344 2345
	if (!prev)
		return;

2346 2347 2348 2349 2350 2351 2352 2353 2354 2355
	bit = 1 << BTRFS_PENDING_SET_INODE_MAP_CACHE;
	if (prev & bit)
		btrfs_set_opt(fs_info->mount_opt, INODE_MAP_CACHE);
	prev &= ~bit;

	bit = 1 << BTRFS_PENDING_CLEAR_INODE_MAP_CACHE;
	if (prev & bit)
		btrfs_clear_opt(fs_info->mount_opt, INODE_MAP_CACHE);
	prev &= ~bit;

2356 2357 2358 2359 2360
	bit = 1 << BTRFS_PENDING_COMMIT;
	if (prev & bit)
		btrfs_debug(fs_info, "pending commit done");
	prev &= ~bit;

2361 2362 2363 2364
	if (prev)
		btrfs_warn(fs_info,
			"unknown pending changes left 0x%lx, ignoring", prev);
}