et->root = RB_ROOT;
                et->cached_en = NULL;
                rwlock_init(&et->lock);
-               atomic_set(&et->refcount, 0);
+               INIT_LIST_HEAD(&et->list);
                et->count = 0;
                atomic_inc(&sbi->total_ext_tree);
        } else {
                atomic_dec(&sbi->total_zombie_tree);
+               list_del_init(&et->list);
        }
-       atomic_inc(&et->refcount);
        up_write(&sbi->extent_tree_lock);
 
        /* never died until evict_inode */
 unsigned int f2fs_shrink_extent_tree(struct f2fs_sb_info *sbi, int nr_shrink)
 {
        struct extent_tree *treevec[EXT_TREE_VEC_SIZE];
+       struct extent_tree *et, *next;
        struct extent_node *en, *tmp;
        unsigned long ino = F2FS_ROOT_INO(sbi);
-       struct radix_tree_root *root = &sbi->extent_tree_root;
        unsigned int found;
        unsigned int node_cnt = 0, tree_cnt = 0;
        int remained;
                goto out;
 
        /* 1. remove unreferenced extent tree */
-       while ((found = radix_tree_gang_lookup(root,
-                               (void **)treevec, ino, EXT_TREE_VEC_SIZE))) {
-               unsigned i;
-
-               ino = treevec[found - 1]->ino + 1;
-               for (i = 0; i < found; i++) {
-                       struct extent_tree *et = treevec[i];
-
-                       if (!atomic_read(&et->refcount)) {
-                               write_lock(&et->lock);
-                               node_cnt += __free_extent_tree(sbi, et, true);
-                               write_unlock(&et->lock);
+       list_for_each_entry_safe(et, next, &sbi->zombie_list, list) {
+               write_lock(&et->lock);
+               node_cnt += __free_extent_tree(sbi, et, true);
+               write_unlock(&et->lock);
 
-                               radix_tree_delete(root, et->ino);
-                               kmem_cache_free(extent_tree_slab, et);
-                               atomic_dec(&sbi->total_ext_tree);
-                               atomic_dec(&sbi->total_zombie_tree);
-                               tree_cnt++;
+               list_del_init(&et->list);
+               radix_tree_delete(&sbi->extent_tree_root, et->ino);
+               kmem_cache_free(extent_tree_slab, et);
+               atomic_dec(&sbi->total_ext_tree);
+               atomic_dec(&sbi->total_zombie_tree);
+               tree_cnt++;
 
-                               if (node_cnt + tree_cnt >= nr_shrink)
-                                       goto unlock_out;
-                       }
-               }
+               if (node_cnt + tree_cnt >= nr_shrink)
+                       goto unlock_out;
        }
        up_write(&sbi->extent_tree_lock);
 
         */
        ino = F2FS_ROOT_INO(sbi);
 
-       while ((found = radix_tree_gang_lookup(root,
+       while ((found = radix_tree_gang_lookup(&sbi->extent_tree_root,
                                (void **)treevec, ino, EXT_TREE_VEC_SIZE))) {
                unsigned i;
 
                return;
 
        if (inode->i_nlink && !is_bad_inode(inode) && et->count) {
-               atomic_dec(&et->refcount);
+               down_write(&sbi->extent_tree_lock);
+               list_add_tail(&et->list, &sbi->zombie_list);
                atomic_inc(&sbi->total_zombie_tree);
+               up_write(&sbi->extent_tree_lock);
                return;
        }
 
 
        /* delete extent tree entry in radix tree */
        down_write(&sbi->extent_tree_lock);
-       atomic_dec(&et->refcount);
-       f2fs_bug_on(sbi, atomic_read(&et->refcount) || et->count);
+       f2fs_bug_on(sbi, et->count);
        radix_tree_delete(&sbi->extent_tree_root, inode->i_ino);
        kmem_cache_free(extent_tree_slab, et);
        atomic_dec(&sbi->total_ext_tree);
        INIT_LIST_HEAD(&sbi->extent_list);
        spin_lock_init(&sbi->extent_lock);
        atomic_set(&sbi->total_ext_tree, 0);
+       INIT_LIST_HEAD(&sbi->zombie_list);
        atomic_set(&sbi->total_zombie_tree, 0);
        atomic_set(&sbi->total_ext_node, 0);
 }