ext4: convert s_fc_lock to mutex type
This allows us to hold s_fc_lock during kmem_cache_* functions, which is needed in the following patch. Signed-off-by: Harshad Shirwadkar <harshadshirwadkar@gmail.com> Reviewed-by: Jan Kara <jack@suse.cz> Link: https://patch.msgid.link/20250508175908.1004880-9-harshadshirwadkar@gmail.com Signed-off-by: Theodore Ts'o <tytso@mit.edu>
This commit is contained in:
committed by
Theodore Ts'o
parent
86e07d4b9b
commit
12e64e7f85
+1
-1
@@ -1754,7 +1754,7 @@ struct ext4_sb_info {
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* following fields:
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* ei->i_fc_list, s_fc_dentry_q, s_fc_q, s_fc_bytes, s_fc_bh.
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*/
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spinlock_t s_fc_lock;
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struct mutex s_fc_lock;
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struct buffer_head *s_fc_bh;
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struct ext4_fc_stats s_fc_stats;
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tid_t s_fc_ineligible_tid;
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+30
-30
@@ -238,9 +238,9 @@ void ext4_fc_del(struct inode *inode)
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if (ext4_fc_disabled(inode->i_sb))
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return;
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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if (list_empty(&ei->i_fc_list) && list_empty(&ei->i_fc_dilist)) {
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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return;
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}
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@@ -275,9 +275,9 @@ void ext4_fc_del(struct inode *inode)
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#endif
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prepare_to_wait(wq, &wait.wq_entry, TASK_UNINTERRUPTIBLE);
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if (ext4_test_inode_state(inode, EXT4_STATE_FC_FLUSHING_DATA)) {
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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schedule();
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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}
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finish_wait(wq, &wait.wq_entry);
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}
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@@ -288,7 +288,7 @@ void ext4_fc_del(struct inode *inode)
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* dentry create references, since it is not needed to log it anyways.
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*/
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if (list_empty(&ei->i_fc_dilist)) {
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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return;
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}
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@@ -298,7 +298,7 @@ void ext4_fc_del(struct inode *inode)
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list_del_init(&fc_dentry->fcd_dilist);
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WARN_ON(!list_empty(&ei->i_fc_dilist));
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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release_dentry_name_snapshot(&fc_dentry->fcd_name);
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kmem_cache_free(ext4_fc_dentry_cachep, fc_dentry);
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@@ -329,12 +329,12 @@ void ext4_fc_mark_ineligible(struct super_block *sb, int reason, handle_t *handl
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has_transaction = false;
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read_unlock(&sbi->s_journal->j_state_lock);
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}
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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is_ineligible = ext4_test_mount_flag(sb, EXT4_MF_FC_INELIGIBLE);
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if (has_transaction && (!is_ineligible || tid_gt(tid, sbi->s_fc_ineligible_tid)))
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sbi->s_fc_ineligible_tid = tid;
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ext4_set_mount_flag(sb, EXT4_MF_FC_INELIGIBLE);
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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WARN_ON(reason >= EXT4_FC_REASON_MAX);
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sbi->s_fc_stats.fc_ineligible_reason_count[reason]++;
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}
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@@ -373,14 +373,14 @@ static int ext4_fc_track_template(
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if (!enqueue)
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return ret;
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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if (list_empty(&EXT4_I(inode)->i_fc_list))
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list_add_tail(&EXT4_I(inode)->i_fc_list,
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(sbi->s_journal->j_flags & JBD2_FULL_COMMIT_ONGOING ||
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sbi->s_journal->j_flags & JBD2_FAST_COMMIT_ONGOING) ?
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&sbi->s_fc_q[FC_Q_STAGING] :
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&sbi->s_fc_q[FC_Q_MAIN]);
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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return ret;
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}
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@@ -424,7 +424,7 @@ static int __track_dentry_update(handle_t *handle, struct inode *inode,
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node->fcd_ino = inode->i_ino;
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take_dentry_name_snapshot(&node->fcd_name, dentry);
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INIT_LIST_HEAD(&node->fcd_dilist);
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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if (sbi->s_journal->j_flags & JBD2_FULL_COMMIT_ONGOING ||
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sbi->s_journal->j_flags & JBD2_FAST_COMMIT_ONGOING)
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list_add_tail(&node->fcd_list,
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@@ -445,7 +445,7 @@ static int __track_dentry_update(handle_t *handle, struct inode *inode,
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WARN_ON(!list_empty(&ei->i_fc_dilist));
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list_add_tail(&node->fcd_dilist, &ei->i_fc_dilist);
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}
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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spin_lock(&ei->i_fc_lock);
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return 0;
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@@ -1000,12 +1000,12 @@ __releases(&sbi->s_fc_lock)
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list_for_each_entry_safe(fc_dentry, fc_dentry_n,
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&sbi->s_fc_dentry_q[FC_Q_MAIN], fcd_list) {
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if (fc_dentry->fcd_op != EXT4_FC_TAG_CREAT) {
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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if (!ext4_fc_add_dentry_tlv(sb, crc, fc_dentry)) {
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ret = -ENOSPC;
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goto lock_and_exit;
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}
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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continue;
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}
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/*
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@@ -1018,7 +1018,7 @@ __releases(&sbi->s_fc_lock)
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inode = &ei->vfs_inode;
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WARN_ON(inode->i_ino != fc_dentry->fcd_ino);
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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/*
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* We first write the inode and then the create dirent. This
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@@ -1040,11 +1040,11 @@ __releases(&sbi->s_fc_lock)
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goto lock_and_exit;
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}
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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}
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return 0;
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lock_and_exit:
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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return ret;
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}
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@@ -1064,12 +1064,12 @@ static int ext4_fc_perform_commit(journal_t *journal)
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* EXT4_STATE_FC_FLUSHING_DATA. This prevents these inodes from being
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* freed until the data flush is over.
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*/
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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list_for_each_entry(iter, &sbi->s_fc_q[FC_Q_MAIN], i_fc_list) {
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ext4_set_inode_state(&iter->vfs_inode,
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EXT4_STATE_FC_FLUSHING_DATA);
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}
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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/* Step 2: Flush data for all the eligible inodes. */
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ret = ext4_fc_flush_data(journal);
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@@ -1079,7 +1079,7 @@ static int ext4_fc_perform_commit(journal_t *journal)
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* any error from step 2. This ensures that waiters waiting on
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* EXT4_STATE_FC_FLUSHING_DATA can resume.
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*/
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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list_for_each_entry(iter, &sbi->s_fc_q[FC_Q_MAIN], i_fc_list) {
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ext4_clear_inode_state(&iter->vfs_inode,
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EXT4_STATE_FC_FLUSHING_DATA);
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@@ -1096,7 +1096,7 @@ static int ext4_fc_perform_commit(journal_t *journal)
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* prepare_to_wait() in ext4_fc_del().
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*/
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smp_mb();
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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/*
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* If we encountered error in Step 2, return it now after clearing
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@@ -1113,12 +1113,12 @@ static int ext4_fc_perform_commit(journal_t *journal)
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* previous handles are now drained. We now mark the inodes on the
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* commit queue as being committed.
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*/
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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list_for_each_entry(iter, &sbi->s_fc_q[FC_Q_MAIN], i_fc_list) {
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ext4_set_inode_state(&iter->vfs_inode,
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EXT4_STATE_FC_COMMITTING);
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}
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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jbd2_journal_unlock_updates(journal);
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/*
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@@ -1146,10 +1146,10 @@ static int ext4_fc_perform_commit(journal_t *journal)
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}
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/* Step 6.2: Now write all the dentry updates. */
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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ret = ext4_fc_commit_dentry_updates(journal, &crc);
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if (ret) {
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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goto out;
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}
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@@ -1159,7 +1159,7 @@ static int ext4_fc_perform_commit(journal_t *journal)
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if (!ext4_test_inode_state(inode, EXT4_STATE_FC_COMMITTING))
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continue;
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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ret = ext4_fc_write_inode_data(inode, &crc);
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if (ret)
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goto out;
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@@ -1311,7 +1311,7 @@ static void ext4_fc_cleanup(journal_t *journal, int full, tid_t tid)
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trace_ext4_fc_cleanup(journal, full, tid);
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jbd2_fc_release_bufs(journal);
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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while (!list_empty(&sbi->s_fc_q[FC_Q_MAIN])) {
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ei = list_first_entry(&sbi->s_fc_q[FC_Q_MAIN],
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struct ext4_inode_info,
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@@ -1353,11 +1353,11 @@ static void ext4_fc_cleanup(journal_t *journal, int full, tid_t tid)
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fcd_list);
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list_del_init(&fc_dentry->fcd_list);
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list_del_init(&fc_dentry->fcd_dilist);
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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release_dentry_name_snapshot(&fc_dentry->fcd_name);
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kmem_cache_free(ext4_fc_dentry_cachep, fc_dentry);
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spin_lock(&sbi->s_fc_lock);
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mutex_lock(&sbi->s_fc_lock);
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}
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list_splice_init(&sbi->s_fc_dentry_q[FC_Q_STAGING],
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@@ -1372,7 +1372,7 @@ static void ext4_fc_cleanup(journal_t *journal, int full, tid_t tid)
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if (full)
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sbi->s_fc_bytes = 0;
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spin_unlock(&sbi->s_fc_lock);
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mutex_unlock(&sbi->s_fc_lock);
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trace_ext4_fc_stats(sb);
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}
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+1
-1
@@ -4481,7 +4481,7 @@ static void ext4_fast_commit_init(struct super_block *sb)
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sbi->s_fc_bytes = 0;
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ext4_clear_mount_flag(sb, EXT4_MF_FC_INELIGIBLE);
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sbi->s_fc_ineligible_tid = 0;
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spin_lock_init(&sbi->s_fc_lock);
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mutex_init(&sbi->s_fc_lock);
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memset(&sbi->s_fc_stats, 0, sizeof(sbi->s_fc_stats));
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sbi->s_fc_replay_state.fc_regions = NULL;
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sbi->s_fc_replay_state.fc_regions_size = 0;
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