On 2021-02-11 06:09, Matthew Wilcox wrote:
On Wed, Feb 10, 2021 at 09:35:40PM -0800, Chris Goldsworthy wrote:
+/* These are used to control the BH LRU invalidation during page migration */
+static struct cpumask lru_needs_invalidation;
+static bool bh_lru_disabled = false;

As I asked before, what protects this on an SMP system?


Sorry Matthew, I misconstrued your earlier question in V1, and thought you had been referring to compile-time protection (so as to prevent build breakages). It is not protected, so I'll need to change this into an atomic counter that is incremented and decremented by bh_lru_enable() and bh_lru_disable() respectively (such that if the counter is greater than zero, we bail).

@@ -1292,7 +1296,9 @@ static inline void check_irqs_on(void)
 /*
* Install a buffer_head into this cpu's LRU. If not already in the LRU, it is * inserted at the front, and the buffer_head at the back if any is evicted.
- * Or, if already in the LRU it is moved to the front.
+ * Or, if already in the LRU it is moved to the front. Note that if LRU is + * disabled because of an ongoing page migration, we won't insert bh into the
+ * LRU.

And also, why do we need to do this?  The page LRU has no equivalent
mechanism to prevent new pages being added to the per-CPU LRU lists.
If a BH has just been used, isn't that a strong hint that this page is
a bad candidate for migration?

I had assumed that up until now, that pages in the page cache aren't an issue, such that they're dropped during migration as needed. Looking at try_to_free_buffers[1], I don't see any handling for the page cache. I will need to do due diligence and follow up on this.

As for the question on necessity, if there is a case in which preventing buffer_heads from being added to the BH LRU ensures that the containing page can be migrated, then I would say that the change is justified, since adds another scenario in which migration is guaranteed (I will follow up on this as well).

Regards,

Chris.

[1] https://elixir.bootlin.com/linux/latest/source/fs/buffer.c#L3225

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