INIT_LIST_HEAD(&parent->slabs_full);
        INIT_LIST_HEAD(&parent->slabs_partial);
        INIT_LIST_HEAD(&parent->slabs_free);
-       parent->active_slabs = 0;
+       parent->total_slabs = 0;
        parent->free_slabs = 0;
        parent->shared = NULL;
        parent->alien = NULL;
                cachep->name, cachep->size, cachep->gfporder);
 
        for_each_kmem_cache_node(cachep, node, n) {
-               unsigned long active_objs = 0, free_objs = 0;
-               unsigned long active_slabs, num_slabs;
+               unsigned long total_slabs, free_slabs, free_objs;
 
                spin_lock_irqsave(&n->list_lock, flags);
-               active_slabs = n->active_slabs;
-               num_slabs = active_slabs + n->free_slabs;
-
-               active_objs += (num_slabs * cachep->num) - n->free_objects;
-               free_objs += n->free_objects;
+               total_slabs = n->total_slabs;
+               free_slabs = n->free_slabs;
+               free_objs = n->free_objects;
                spin_unlock_irqrestore(&n->list_lock, flags);
 
-               pr_warn("  node %d: slabs: %ld/%ld, objs: %ld/%ld, free: %ld\n",
-                       node, active_slabs, num_slabs, active_objs,
-                       num_slabs * cachep->num, free_objs);
+               pr_warn("  node %d: slabs: %ld/%ld, objs: %ld/%ld\n",
+                       node, total_slabs - free_slabs, total_slabs,
+                       (total_slabs * cachep->num) - free_objs,
+                       total_slabs * cachep->num);
        }
 #endif
 }
                page = list_entry(p, struct page, lru);
                list_del(&page->lru);
                n->free_slabs--;
+               n->total_slabs--;
                /*
                 * Safe to drop the lock. The slab is no longer linked
                 * to the cache.
        n = get_node(cachep, page_to_nid(page));
 
        spin_lock(&n->list_lock);
+       n->total_slabs++;
        if (!page->active) {
                list_add_tail(&page->lru, &(n->slabs_free));
                n->free_slabs++;
-       } else {
+       } else
                fixup_slab_list(cachep, n, page, &list);
-               n->active_slabs++;
-       }
 
        STATS_INC_GROWN(cachep);
        n->free_objects += cachep->num - page->active;
 
 /* Try to find non-pfmemalloc slab if needed */
 static noinline struct page *get_valid_first_slab(struct kmem_cache_node *n,
-                       struct page *page, bool *page_is_free, bool pfmemalloc)
+                                       struct page *page, bool pfmemalloc)
 {
        if (!page)
                return NULL;
 
        /* Move pfmemalloc slab to the end of list to speed up next search */
        list_del(&page->lru);
-       if (*page_is_free) {
-               WARN_ON(page->active);
+       if (!page->active) {
                list_add_tail(&page->lru, &n->slabs_free);
-               *page_is_free = false;
+               n->free_slabs++;
        } else
                list_add_tail(&page->lru, &n->slabs_partial);
 
        n->free_touched = 1;
        list_for_each_entry(page, &n->slabs_free, lru) {
                if (!PageSlabPfmemalloc(page)) {
-                       *page_is_free = true;
+                       n->free_slabs--;
                        return page;
                }
        }
 static struct page *get_first_slab(struct kmem_cache_node *n, bool pfmemalloc)
 {
        struct page *page;
-       bool page_is_free = false;
 
        assert_spin_locked(&n->list_lock);
-       page = list_first_entry_or_null(&n->slabs_partial,
-                       struct page, lru);
+       page = list_first_entry_or_null(&n->slabs_partial, struct page, lru);
        if (!page) {
                n->free_touched = 1;
-               page = list_first_entry_or_null(&n->slabs_free,
-                               struct page, lru);
+               page = list_first_entry_or_null(&n->slabs_free, struct page,
+                                               lru);
                if (page)
-                       page_is_free = true;
+                       n->free_slabs--;
        }
 
        if (sk_memalloc_socks())
-               page = get_valid_first_slab(n, page, &page_is_free, pfmemalloc);
-
-       if (page && page_is_free) {
-               n->active_slabs++;
-               n->free_slabs--;
-       }
+               page = get_valid_first_slab(n, page, pfmemalloc);
 
        return page;
 }
                if (page->active == 0) {
                        list_add(&page->lru, &n->slabs_free);
                        n->free_slabs++;
-                       n->active_slabs--;
                } else {
                        /* Unconditionally move a slab to the end of the
                         * partial list on free - maximum time for the
                page = list_last_entry(&n->slabs_free, struct page, lru);
                list_move(&page->lru, list);
                n->free_slabs--;
+               n->total_slabs--;
        }
 }
 
 void get_slabinfo(struct kmem_cache *cachep, struct slabinfo *sinfo)
 {
        unsigned long active_objs, num_objs, active_slabs;
-       unsigned long num_slabs = 0, free_objs = 0, shared_avail = 0;
-       unsigned long num_slabs_free = 0;
+       unsigned long total_slabs = 0, free_objs = 0, shared_avail = 0;
+       unsigned long free_slabs = 0;
        int node;
        struct kmem_cache_node *n;
 
                check_irq_on();
                spin_lock_irq(&n->list_lock);
 
-               num_slabs += n->active_slabs + n->free_slabs;
-               num_slabs_free += n->free_slabs;
-
+               total_slabs += n->total_slabs;
+               free_slabs += n->free_slabs;
                free_objs += n->free_objects;
 
                if (n->shared)
 
                spin_unlock_irq(&n->list_lock);
        }
-       num_objs = num_slabs * cachep->num;
-       active_slabs = num_slabs - num_slabs_free;
-
+       num_objs = total_slabs * cachep->num;
+       active_slabs = total_slabs - free_slabs;
        active_objs = num_objs - free_objs;
 
        sinfo->active_objs = active_objs;
        sinfo->num_objs = num_objs;
        sinfo->active_slabs = active_slabs;
-       sinfo->num_slabs = num_slabs;
+       sinfo->num_slabs = total_slabs;
        sinfo->shared_avail = shared_avail;
        sinfo->limit = cachep->limit;
        sinfo->batchcount = cachep->batchcount;