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From: Brice Goglin <Brice.Goglin@inria.fr>
To: Keith Busch <keith.busch@intel.com>,
	linux-kernel@vger.kernel.org, linux-acpi@vger.kernel.org,
	linux-mm@kvack.org, linux-api@vger.kernel.org
Cc: Greg Kroah-Hartman <gregkh@linuxfoundation.org>,
	Rafael Wysocki <rafael@kernel.org>,
	Dave Hansen <dave.hansen@intel.com>,
	Dan Williams <dan.j.williams@intel.com>
Subject: Re: [PATCHv6 07/10] acpi/hmat: Register processor domain to its memory
Date: Thu, 7 Mar 2019 12:49:15 +0100	[thread overview]
Message-ID: <8fb27d2c-2165-7029-6ea1-94fc379b3be7@inria.fr> (raw)
In-Reply-To: <20190214171017.9362-8-keith.busch@intel.com>

Le 14/02/2019 à 18:10, Keith Busch a écrit :
> If the HMAT Subsystem Address Range provides a valid processor proximity
> domain for a memory domain, or a processor domain matches the performance
> access of the valid processor proximity domain, register the memory
> target with that initiator so this relationship will be visible under
> the node's sysfs directory.
>
> By registering only the best performing relationships, this provides the
> most useful information applications may want to know when considering
> which CPU they should run on for a given memory node, or which memory
> node they should allocate memory from for a given CPU.
>
> Since HMAT requires valid address ranges have an equivalent SRAT entry,
> verify each memory target satisfies this requirement.
>
> Signed-off-by: Keith Busch <keith.busch@intel.com>

[...]

> +static __init struct memory_initiator *find_mem_initiator(unsigned int cpu_pxm)
> +{
> +	struct memory_initiator *intitator;
> +
> +	list_for_each_entry(intitator, &initiators, node)
> +		if (intitator->processor_pxm == cpu_pxm)
> +			return intitator;
> +	return NULL;
> +}

Typo intitator -> initiator

> +static __init void alloc_memory_initiator(unsigned int cpu_pxm)
> +{
> +	struct memory_initiator *intitator;
> +
> +	if (pxm_to_node(cpu_pxm) == NUMA_NO_NODE)
> +		return;
> +
> +	intitator = find_mem_initiator(cpu_pxm);
> +	if (intitator)
> +		return;
> +
> +	intitator = kzalloc(sizeof(*intitator), GFP_KERNEL);
> +	if (!intitator)
> +		return;
> +
> +	intitator->processor_pxm = cpu_pxm;
> +	list_add_tail(&intitator->node, &initiators);
> +}

Same typo


> +static __init void hmat_register_target_initiators(struct memory_target *target)
> +{
> +	static DECLARE_BITMAP(p_nodes, MAX_NUMNODES);
> +	struct memory_initiator *initiator;
> +	unsigned int mem_nid, cpu_nid;
> +	struct memory_locality *loc = NULL;
> +	u32 best = 0;
> +	int i;
> +
> +	if (target->processor_pxm == PXM_INVAL)
> +		return;


This test above looks wrong to me. First, it means that either you
return from here, or from the next branch below, hence the loop that
looks for best performance is dead code. Secondly, it means that memory
targets without a PXM never get an initiator.

I verified that removing this test makes things look better on my HMAT
tests.


> +	mem_nid = pxm_to_node(target->memory_pxm);
> +
> +	/*
> +	 * If the Address Range Structure provides a local processor pxm, link
> +	 * only that one. Otherwise, find the best performance attribtes and
> +	 * register all initiators that match.
> +	 */
> +	if (target->processor_pxm != PXM_INVAL) {
> +		cpu_nid = pxm_to_node(target->processor_pxm);
> +		register_memory_node_under_compute_node(mem_nid, cpu_nid, 0);
> +		return;
> +	}


This seems to contradict your first paragraph in the header where you say

"or a processor domain matches the performance access of the valid processor proximity domain".

By returning here, you're only keeping the the local PXM and ignoring
other initiators that may have the same performance.

I am testing a HMAT where one memory target has same performance to two
processor proxdomains. If no processor proxdomain is set in the HMAT for
this target, I get two initiators as expected. If proxdomain is
explicitly set in the HMAT, I get only that one as initiator.

Brice



  parent reply	other threads:[~2019-03-07 11:49 UTC|newest]

Thread overview: 37+ messages / expand[flat|nested]  mbox.gz  Atom feed  top
2019-02-14 17:10 [PATCHv6 00/10] Heterogenous memory node attributes Keith Busch
2019-02-14 17:10 ` [PATCHv6 01/10] acpi: Create subtable parsing infrastructure Keith Busch
2019-02-14 17:10 ` [PATCHv6 02/10] acpi: Add HMAT to generic parsing tables Keith Busch
2019-02-14 17:10 ` [PATCHv6 03/10] acpi/hmat: Parse and report heterogeneous memory Keith Busch
2019-02-14 17:10 ` [PATCHv6 04/10] node: Link memory nodes to their compute nodes Keith Busch
2019-02-14 17:10 ` [PATCHv6 05/10] node: Add heterogenous memory access attributes Keith Busch
2019-02-14 17:10 ` [PATCHv6 06/10] node: Add memory-side caching attributes Keith Busch
2019-02-22 10:12   ` Brice Goglin
2019-02-22 18:09     ` Keith Busch
2019-02-22 18:20       ` Dan Williams
2019-02-22 10:22   ` Brice Goglin
2019-02-22 18:13     ` Keith Busch
2019-02-14 17:10 ` [PATCHv6 07/10] acpi/hmat: Register processor domain to its memory Keith Busch
2019-02-20 22:02   ` Rafael J. Wysocki
2019-02-20 22:11     ` Dave Hansen
2019-02-20 22:13       ` Dan Williams
2019-02-20 22:16         ` Rafael J. Wysocki
2019-02-20 22:20           ` Dan Williams
2019-02-20 22:21       ` Rafael J. Wysocki
2019-02-20 22:44         ` Keith Busch
2019-02-20 22:50           ` Rafael J. Wysocki
2019-02-22 18:48     ` Keith Busch
2019-02-22 19:21       ` Dan Williams
2019-02-24 20:07         ` Rafael J. Wysocki
2019-02-24 19:59       ` Rafael J. Wysocki
2019-02-25 16:51         ` Keith Busch
2019-02-25 22:30           ` Rafael J. Wysocki
2019-03-07 11:49   ` Brice Goglin [this message]
2019-03-07 15:19     ` Keith Busch
2019-02-14 17:10 ` [PATCHv6 08/10] acpi/hmat: Register performance attributes Keith Busch
2019-02-20 22:04   ` Rafael J. Wysocki
2019-02-14 17:10 ` [PATCHv6 09/10] acpi/hmat: Register memory side cache attributes Keith Busch
2019-02-20 22:05   ` Rafael J. Wysocki
2019-02-14 17:10 ` [PATCHv6 10/10] doc/mm: New documentation for memory performance Keith Busch
2019-02-18 14:25 ` [PATCHv6 00/10] Heterogenous memory node attributes Brice Goglin
2019-02-19 17:20   ` Keith Busch
2019-02-20 18:25 ` Keith Busch

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