@@ -268,8 +268,9 @@ bool __kasan_mempool_poison_object(void *ptr, unsigned long ip);
* to reuse them instead of freeing them back to the slab allocator (e.g.
* mempool).
*
- * This function poisons a slab allocation without initializing its memory and
- * without putting it into the quarantine (for the Generic mode).
+ * This function poisons a slab allocation and saves a free stack trace for it
+ * without initializing the allocation's memory and without putting it into the
+ * quarantine (for the Generic mode).
*
* This function also performs checks to detect double-free and invalid-free
* bugs and reports them. The caller can use the return value of this function
@@ -197,8 +197,8 @@ void * __must_check __kasan_init_slab_obj(struct kmem_cache *cache,
return (void *)object;
}
-static inline bool ____kasan_slab_free(struct kmem_cache *cache, void *object,
- unsigned long ip, bool quarantine, bool init)
+static inline bool poison_slab_object(struct kmem_cache *cache, void *object,
+ unsigned long ip, bool init)
{
void *tagged_object;
@@ -211,13 +211,12 @@ static inline bool ____kasan_slab_free(struct kmem_cache *cache, void *object,
if (is_kfence_address(object))
return false;
- if (unlikely(nearest_obj(cache, virt_to_slab(object), object) !=
- object)) {
+ if (unlikely(nearest_obj(cache, virt_to_slab(object), object) != object)) {
kasan_report_invalid_free(tagged_object, ip, KASAN_REPORT_INVALID_FREE);
return true;
}
- /* RCU slabs could be legally used after free within the RCU period */
+ /* RCU slabs could be legally used after free within the RCU period. */
if (unlikely(cache->flags & SLAB_TYPESAFE_BY_RCU))
return false;
@@ -229,19 +228,18 @@ static inline bool ____kasan_slab_free(struct kmem_cache *cache, void *object,
kasan_poison(object, round_up(cache->object_size, KASAN_GRANULE_SIZE),
KASAN_SLAB_FREE, init);
- if ((IS_ENABLED(CONFIG_KASAN_GENERIC) && !quarantine))
- return false;
-
if (kasan_stack_collection_enabled())
kasan_save_free_info(cache, tagged_object);
- return kasan_quarantine_put(cache, object);
+ return false;
}
bool __kasan_slab_free(struct kmem_cache *cache, void *object,
unsigned long ip, bool init)
{
- return ____kasan_slab_free(cache, object, ip, true, init);
+ bool buggy_object = poison_slab_object(cache, object, ip, init);
+
+ return buggy_object ? true : kasan_quarantine_put(cache, object);
}
static inline bool check_page_allocation(void *ptr, unsigned long ip)
@@ -462,7 +460,7 @@ bool __kasan_mempool_poison_object(void *ptr, unsigned long ip)
}
slab = folio_slab(folio);
- return !____kasan_slab_free(slab->slab_cache, ptr, ip, false, false);
+ return !poison_slab_object(slab->slab_cache, ptr, ip, false);
}
void __kasan_mempool_unpoison_object(void *ptr, size_t size, unsigned long ip)