.release        = single_release,
 };
 
-static int zs_pool_stat_create(const char *name, struct zs_pool *pool)
+static int zs_pool_stat_create(struct zs_pool *pool, const char *name)
 {
        struct dentry *entry;
 
 {
 }
 
-static inline int zs_pool_stat_create(const char *name, struct zs_pool *pool)
+static inline int zs_pool_stat_create(struct zs_pool *pool, const char *name)
 {
        return 0;
 }
  * have. This functions inserts the given zspage into the freelist
  * identified by <class, fullness_group>.
  */
-static void insert_zspage(struct page *first_page, struct size_class *class,
-                               enum fullness_group fullness)
+static void insert_zspage(struct size_class *class,
+                               enum fullness_group fullness,
+                               struct page *first_page)
 {
        struct page **head;
 
  * This function removes the given zspage from the freelist identified
  * by <class, fullness_group>.
  */
-static void remove_zspage(struct page *first_page, struct size_class *class,
-                               enum fullness_group fullness)
+static void remove_zspage(struct size_class *class,
+                               enum fullness_group fullness,
+                               struct page *first_page)
 {
        struct page **head;
 
        if (newfg == currfg)
                goto out;
 
-       remove_zspage(first_page, class, currfg);
-       insert_zspage(first_page, class, newfg);
+       remove_zspage(class, currfg, first_page);
+       insert_zspage(class, newfg, first_page);
        set_zspage_mapping(first_page, class_idx, newfg);
 
 out:
 }
 
 /* Initialize a newly allocated zspage */
-static void init_zspage(struct page *first_page, struct size_class *class)
+static void init_zspage(struct size_class *class, struct page *first_page)
 {
        unsigned long off = 0;
        struct page *page = first_page;
                prev_page = page;
        }
 
-       init_zspage(first_page, class);
+       init_zspage(class, first_page);
 
        first_page->freelist = location_to_obj(first_page, 0);
        /* Maximum number of objects we can store in this zspage */
 }
 EXPORT_SYMBOL_GPL(zs_unmap_object);
 
-static unsigned long obj_malloc(struct page *first_page,
-               struct size_class *class, unsigned long handle)
+static unsigned long obj_malloc(struct size_class *class,
+                               struct page *first_page, unsigned long handle)
 {
        unsigned long obj;
        struct link_free *link;
                                class->size, class->pages_per_zspage));
        }
 
-       obj = obj_malloc(first_page, class, handle);
+       obj = obj_malloc(class, first_page, handle);
        /* Now move the zspage to another fullness group, if required */
        fix_fullness_group(class, first_page);
        record_obj(handle, obj);
 }
 EXPORT_SYMBOL_GPL(zs_free);
 
-static void zs_object_copy(unsigned long dst, unsigned long src,
-                               struct size_class *class)
+static void zs_object_copy(struct size_class *class, unsigned long dst,
+                               unsigned long src)
 {
        struct page *s_page, *d_page;
        unsigned long s_objidx, d_objidx;
  * Find alloced object in zspage from index object and
  * return handle.
  */
-static unsigned long find_alloced_obj(struct page *page, int index,
-                                       struct size_class *class)
+static unsigned long find_alloced_obj(struct size_class *class,
+                                       struct page *page, int index)
 {
        unsigned long head;
        int offset = 0;
        int ret = 0;
 
        while (1) {
-               handle = find_alloced_obj(s_page, index, class);
+               handle = find_alloced_obj(class, s_page, index);
                if (!handle) {
                        s_page = get_next_page(s_page);
                        if (!s_page)
                }
 
                used_obj = handle_to_obj(handle);
-               free_obj = obj_malloc(d_page, class, handle);
-               zs_object_copy(free_obj, used_obj, class);
+               free_obj = obj_malloc(class, d_page, handle);
+               zs_object_copy(class, free_obj, used_obj);
                index++;
                /*
                 * record_obj updates handle's value to free_obj and it will
        for (i = 0; i < _ZS_NR_FULLNESS_GROUPS; i++) {
                page = class->fullness_list[i];
                if (page) {
-                       remove_zspage(page, class, i);
+                       remove_zspage(class, i, page);
                        break;
                }
        }
        enum fullness_group fullness;
 
        fullness = get_fullness_group(first_page);
-       insert_zspage(first_page, class, fullness);
+       insert_zspage(class, fullness, first_page);
        set_zspage_mapping(first_page, class->index, fullness);
 
        if (fullness == ZS_EMPTY) {
                if (!page)
                        continue;
 
-               remove_zspage(page, class, i);
+               remove_zspage(class, i, page);
                break;
        }
 
 
        pool->flags = flags;
 
-       if (zs_pool_stat_create(name, pool))
+       if (zs_pool_stat_create(pool, name))
                goto err;
 
        /*