}
 
 static int add_all_parents(struct btrfs_root *root, struct btrfs_path *path,
-                               struct ulist *parents, int level,
-                               struct btrfs_key *key_for_search, u64 time_seq,
-                               u64 wanted_disk_byte,
-                               const u64 *extent_item_pos)
+                          struct ulist *parents, struct __prelim_ref *ref,
+                          int level, u64 time_seq, const u64 *extent_item_pos)
 {
        int ret = 0;
        int slot;
        struct extent_buffer *eb;
        struct btrfs_key key;
+       struct btrfs_key *key_for_search = &ref->key_for_search;
        struct btrfs_file_extent_item *fi;
        struct extent_inode_elem *eie = NULL, *old = NULL;
        u64 disk_byte;
+       u64 wanted_disk_byte = ref->wanted_disk_byte;
+       u64 count = 0;
 
        if (level != 0) {
                eb = path->nodes[level];
        if (path->slots[0] >= btrfs_header_nritems(path->nodes[0]))
                ret = btrfs_next_old_leaf(root, path, time_seq);
 
-       while (!ret) {
+       while (!ret && count < ref->count) {
                eb = path->nodes[0];
                slot = path->slots[0];
 
                if (disk_byte == wanted_disk_byte) {
                        eie = NULL;
                        old = NULL;
+                       count++;
                        if (extent_item_pos) {
                                ret = check_extent_in_eb(&key, eb, fi,
                                                *extent_item_pos,
                eb = path->nodes[level];
        }
 
-       ret = add_all_parents(root, path, parents, level, &ref->key_for_search,
-                               time_seq, ref->wanted_disk_byte,
-                               extent_item_pos);
+       ret = add_all_parents(root, path, parents, ref, level, time_seq,
+                             extent_item_pos);
 out:
        path->lowest_level = 0;
        btrfs_release_path(path);