memcg, slab: unregister cache from memcg before starting to destroy it
Currently, memcg_unregister_cache(), which deletes the cache being destroyed from the memcg_slab_caches list, is called after __kmem_cache_shutdown() (see kmem_cache_destroy()), which starts to destroy the cache. As a result, one can access a partially destroyed cache while traversing a memcg_slab_caches list, which can have deadly consequences (for instance, cache_show() called for each cache on a memcg_slab_caches list from mem_cgroup_slabinfo_read() will dereference pointers to already freed data). To fix this, let's move memcg_unregister_cache() before the cache destruction process beginning, issuing memcg_register_cache() on failure. Signed-off-by: Vladimir Davydov <vdavydov@parallels.com> Cc: Michal Hocko <mhocko@suse.cz> Cc: Johannes Weiner <hannes@cmpxchg.org> Cc: David Rientjes <rientjes@google.com> Cc: Pekka Enberg <penberg@kernel.org> Cc: Glauber Costa <glommer@gmail.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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794b1248be
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051dd46050
2 changed files with 8 additions and 7 deletions
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@ -3140,6 +3140,7 @@ int memcg_alloc_cache_params(struct mem_cgroup *memcg, struct kmem_cache *s,
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s->memcg_params->root_cache = root_cache;
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s->memcg_params->root_cache = root_cache;
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INIT_WORK(&s->memcg_params->destroy,
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INIT_WORK(&s->memcg_params->destroy,
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kmem_cache_destroy_work_func);
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kmem_cache_destroy_work_func);
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css_get(&memcg->css);
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} else
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} else
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s->memcg_params->is_root_cache = true;
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s->memcg_params->is_root_cache = true;
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@ -3148,6 +3149,10 @@ int memcg_alloc_cache_params(struct mem_cgroup *memcg, struct kmem_cache *s,
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void memcg_free_cache_params(struct kmem_cache *s)
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void memcg_free_cache_params(struct kmem_cache *s)
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{
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{
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if (!s->memcg_params)
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return;
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if (!s->memcg_params->is_root_cache)
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css_put(&s->memcg_params->memcg->css);
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kfree(s->memcg_params);
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kfree(s->memcg_params);
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}
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}
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@ -3170,9 +3175,6 @@ void memcg_register_cache(struct kmem_cache *s)
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memcg = s->memcg_params->memcg;
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memcg = s->memcg_params->memcg;
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id = memcg_cache_id(memcg);
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id = memcg_cache_id(memcg);
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css_get(&memcg->css);
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/*
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/*
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* Since readers won't lock (see cache_from_memcg_idx()), we need a
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* Since readers won't lock (see cache_from_memcg_idx()), we need a
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* barrier here to ensure nobody will see the kmem_cache partially
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* barrier here to ensure nobody will see the kmem_cache partially
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@ -3221,10 +3223,8 @@ void memcg_unregister_cache(struct kmem_cache *s)
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* after removing it from the memcg_slab_caches list, otherwise we can
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* after removing it from the memcg_slab_caches list, otherwise we can
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* fail to convert memcg_params_to_cache() while traversing the list.
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* fail to convert memcg_params_to_cache() while traversing the list.
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*/
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*/
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VM_BUG_ON(!root->memcg_params->memcg_caches[id]);
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VM_BUG_ON(root->memcg_params->memcg_caches[id] != s);
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root->memcg_params->memcg_caches[id] = NULL;
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root->memcg_params->memcg_caches[id] = NULL;
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css_put(&memcg->css);
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}
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}
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/*
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/*
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@ -313,9 +313,9 @@ void kmem_cache_destroy(struct kmem_cache *s)
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s->refcount--;
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s->refcount--;
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if (!s->refcount) {
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if (!s->refcount) {
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list_del(&s->list);
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list_del(&s->list);
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memcg_unregister_cache(s);
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if (!__kmem_cache_shutdown(s)) {
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if (!__kmem_cache_shutdown(s)) {
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memcg_unregister_cache(s);
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mutex_unlock(&slab_mutex);
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mutex_unlock(&slab_mutex);
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if (s->flags & SLAB_DESTROY_BY_RCU)
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if (s->flags & SLAB_DESTROY_BY_RCU)
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rcu_barrier();
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rcu_barrier();
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@ -325,6 +325,7 @@ void kmem_cache_destroy(struct kmem_cache *s)
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kmem_cache_free(kmem_cache, s);
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kmem_cache_free(kmem_cache, s);
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} else {
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} else {
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list_add(&s->list, &slab_caches);
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list_add(&s->list, &slab_caches);
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memcg_register_cache(s);
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mutex_unlock(&slab_mutex);
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mutex_unlock(&slab_mutex);
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printk(KERN_ERR "kmem_cache_destroy %s: Slab cache still has objects\n",
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printk(KERN_ERR "kmem_cache_destroy %s: Slab cache still has objects\n",
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s->name);
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s->name);
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