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Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk()

Started by"Kani, Toshimitsu" <toshi.kani@hpe.com>
First post2017-08-14 18:00 +0200
Last post2017-08-15 18:30 +0200
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  Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-14 18:00 +0200
    Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-14 18:30 +0200
      Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-14 18:50 +0200
        Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-14 19:10 +0200
          Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-14 20:00 +0200
            Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-14 20:10 +0200
              Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-14 20:20 +0200
                Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-14 20:40 +0200
                  Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-14 21:10 +0200
                    Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-14 21:40 +0200
                      Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-14 22:20 +0200
                        Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-14 22:40 +0200
                          Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-15 17:40 +0200
                            Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Luck, Tony" <tony.luck@intel.com> - 2017-08-15 17:50 +0200
                              Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-15 18:00 +0200
                              Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-16 10:30 +0200
                                Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-16 13:30 +0200
                                Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Steven Rostedt <rostedt@goodmis.org> - 2017-08-16 16:00 +0200
                                  Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-16 16:10 +0200
                                    Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Steven Rostedt <rostedt@goodmis.org> - 2017-08-16 16:30 +0200
                                      Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-16 19:40 +0200
                                Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-16 17:30 +0200
                                  Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-16 18:50 +0200
                                    Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-16 19:30 +0200
                                      Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-16 19:50 +0200
                                        Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-16 20:10 +0200
                                          Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-17 23:10 +0200
                                            Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-21 11:30 +0200
                            Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() Borislav Petkov <bp@alien8.de> - 2017-08-15 18:00 +0200
                              Re: [PATCH v2 4/7] ghes_edac: avoid multiple calls to dmi_walk() "Kani, Toshimitsu" <toshi.kani@hpe.com> - 2017-08-15 18:30 +0200

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#1713186

FromBorislav Petkov <bp@alien8.de>
Date2017-08-16 19:40 +0200
Message-ID<ufass-1zg-37@gated-at.bofh.it>
In reply to#1713005
On Wed, Aug 16, 2017 at 10:22:49AM -0400, Steven Rostedt wrote:
> Maybe keep that original mutex just in case.

Let's do the elegant thing:

---
diff --git a/drivers/edac/ghes_edac.c b/drivers/edac/ghes_edac.c
index d4089c2980ef..386e04a7bda0 100644
--- a/drivers/edac/ghes_edac.c
+++ b/drivers/edac/ghes_edac.c
@@ -28,6 +28,7 @@ struct ghes_edac_pvt {
 	char msg[80];
 };
 
+static atomic_t ghes_init = ATOMIC_INIT(0);
 static struct ghes_edac_pvt *ghes_pvt;
 
 /*
@@ -426,7 +427,7 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	/*
 	 * We have only one logical memory controller to which all DIMMs belong.
 	 */
-	if (ghes_pvt)
+	if (atomic_inc_return(&ghes_init) > 1)
 		return 0;
 
 	/* Get the number of DIMMs */

-- 
Regards/Gruss,
    Boris.

Good mailing practices for 400: avoid top-posting and trim the reply.

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#1713057

From"Kani, Toshimitsu" <toshi.kani@hpe.com>
Date2017-08-16 17:30 +0200
Message-ID<uf8qC-ju-11@gated-at.bofh.it>
In reply to#1712765
On Wed, 2017-08-16 at 10:29 +0200, Borislav Petkov wrote:
> On Tue, Aug 15, 2017 at 08:48:16AM -0700, Luck, Tony wrote:
> > Won't the user see all their DIMMs reported for each memory
> > controller
> > under /sys/devices/system/edac/mc/mc*/dimm* ?
> > 
> > That sounds confusing.
> 
> Right, and adding the locking was really easy. If only people would
> debate less and actually try to do what they're being advised to.
> But not really: if you wanna have something done, you have to do it
> yourself.

Sorry, but I did not agree on allowing concurrent accesses to mci...

 /* Memory Device - Type 17 of SMBIOS spec */
>  struct memdev_dmi_entry {
> @@ -169,14 +173,11 @@ void ghes_edac_report_mem_error(struct ghes
> *ghes, int sev,
>  	enum hw_event_mc_err_type type;
>  	struct edac_raw_error_desc *e;
>  	struct mem_ctl_info *mci;
> -	struct ghes_edac_pvt *pvt = NULL;
> +	struct ghes_edac_pvt *pvt = ghes_pvt;
> +	unsigned long flags;
>  	char *p;
>  	u8 grain_bits;

I believe you now need to protect from a race condition that a single
mci and pvt can be initialized / consumed from multiple threads.  This
protection is missing in your patch.

Thanks,
-Toshi

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#1713117

FromBorislav Petkov <bp@alien8.de>
Date2017-08-16 18:50 +0200
Message-ID<uf9G1-11c-11@gated-at.bofh.it>
In reply to#1713057
On Wed, Aug 16, 2017 at 03:26:04PM +0000, Kani, Toshimitsu wrote:
> I believe you now need to protect from a race condition that a single
> mci and pvt can be initialized / consumed from multiple threads.  This
> protection is missing in your patch.

Easy. Done.

---
diff --git a/drivers/edac/ghes_edac.c b/drivers/edac/ghes_edac.c
index 6f80eb65c26c..d4089c2980ef 100644
--- a/drivers/edac/ghes_edac.c
+++ b/drivers/edac/ghes_edac.c
@@ -28,10 +28,14 @@ struct ghes_edac_pvt {
 	char msg[80];
 };
 
-static LIST_HEAD(ghes_reglist);
-static DEFINE_MUTEX(ghes_edac_lock);
-static int ghes_edac_mc_num;
+static struct ghes_edac_pvt *ghes_pvt;
 
+/*
+ * Sync with other, potentially concurrent callers of
+ * ghes_edac_report_mem_error(). We don't know what the
+ * "inventive" firmware would do.
+ */
+static DEFINE_SPINLOCK(ghes_lock);
 
 /* Memory Device - Type 17 of SMBIOS spec */
 struct memdev_dmi_entry {
@@ -169,18 +173,26 @@ void ghes_edac_report_mem_error(struct ghes *ghes, int sev,
 	enum hw_event_mc_err_type type;
 	struct edac_raw_error_desc *e;
 	struct mem_ctl_info *mci;
-	struct ghes_edac_pvt *pvt = NULL;
+	struct ghes_edac_pvt *pvt = ghes_pvt;
+	unsigned long flags;
 	char *p;
 	u8 grain_bits;
 
-	list_for_each_entry(pvt, &ghes_reglist, list) {
-		if (ghes == pvt->ghes)
-			break;
-	}
 	if (!pvt) {
 		pr_err("Internal error: Can't find EDAC structure\n");
 		return;
 	}
+
+	/*
+	 * We can do the locking below because GHES defers error processing
+	 * from NMI to IRQ context. Whenever that changes, we'd at least
+	 * know.
+	 */
+	if (WARN_ON_ONCE(in_nmi()))
+		return;
+
+	spin_lock_irqsave(&ghes_lock, flags);
+
 	mci = pvt->mci;
 	e = &mci->error_desc;
 
@@ -398,8 +410,8 @@ void ghes_edac_report_mem_error(struct ghes *ghes, int sev,
 		       (e->page_frame_number << PAGE_SHIFT) | e->offset_in_page,
 		       grain_bits, e->syndrome, pvt->detail_location);
 
-	/* Report the error via EDAC API */
 	edac_raw_mc_handle_error(type, mci, e);
+	spin_unlock_irqrestore(&ghes_lock, flags);
 }
 EXPORT_SYMBOL_GPL(ghes_edac_report_mem_error);
 
@@ -409,9 +421,14 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	int rc, num_dimm = 0;
 	struct mem_ctl_info *mci;
 	struct edac_mc_layer layers[1];
-	struct ghes_edac_pvt *pvt;
 	struct ghes_edac_dimm_fill dimm_fill;
 
+	/*
+	 * We have only one logical memory controller to which all DIMMs belong.
+	 */
+	if (ghes_pvt)
+		return 0;
+
 	/* Get the number of DIMMs */
 	dmi_walk(ghes_edac_count_dimms, &num_dimm);
 
@@ -425,26 +442,17 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	layers[0].size = num_dimm;
 	layers[0].is_virt_csrow = true;
 
-	/*
-	 * We need to serialize edac_mc_alloc() and edac_mc_add_mc(),
-	 * to avoid duplicated memory controller numbers
-	 */
-	mutex_lock(&ghes_edac_lock);
-	mci = edac_mc_alloc(ghes_edac_mc_num, ARRAY_SIZE(layers), layers,
-			    sizeof(*pvt));
+	mci = edac_mc_alloc(1, ARRAY_SIZE(layers), layers, sizeof(struct ghes_edac_pvt));
 	if (!mci) {
 		pr_info("Can't allocate memory for EDAC data\n");
-		mutex_unlock(&ghes_edac_lock);
 		return -ENOMEM;
 	}
 
-	pvt = mci->pvt_info;
-	memset(pvt, 0, sizeof(*pvt));
-	list_add_tail(&pvt->list, &ghes_reglist);
-	pvt->ghes = ghes;
-	pvt->mci  = mci;
-	mci->pdev = dev;
+	ghes_pvt	= mci->pvt_info;
+	ghes_pvt->ghes	= ghes;
+	ghes_pvt->mci	= mci;
 
+	mci->pdev = dev;
 	mci->mtype_cap = MEM_FLAG_EMPTY;
 	mci->edac_ctl_cap = EDAC_FLAG_NONE;
 	mci->edac_cap = EDAC_FLAG_NONE;
@@ -452,36 +460,23 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	mci->ctl_name = "ghes_edac";
 	mci->dev_name = "ghes";
 
-	if (!ghes_edac_mc_num) {
-		if (!fake) {
-			pr_info("This EDAC driver relies on BIOS to enumerate memory and get error reports.\n");
-			pr_info("Unfortunately, not all BIOSes reflect the memory layout correctly.\n");
-			pr_info("So, the end result of using this driver varies from vendor to vendor.\n");
-			pr_info("If you find incorrect reports, please contact your hardware vendor\n");
-			pr_info("to correct its BIOS.\n");
-			pr_info("This system has %d DIMM sockets.\n",
-				num_dimm);
-		} else {
-			pr_info("This system has a very crappy BIOS: It doesn't even list the DIMMS.\n");
-			pr_info("Its SMBIOS info is wrong. It is doubtful that the error report would\n");
-			pr_info("work on such system. Use this driver with caution\n");
-		}
+	if (!fake) {
+		pr_info("This EDAC driver relies on BIOS to enumerate memory and get error reports.\n");
+		pr_info("Unfortunately, not all BIOSes reflect the memory layout correctly.\n");
+		pr_info("So, the end result of using this driver varies from vendor to vendor.\n");
+		pr_info("If you find incorrect reports, please contact your hardware vendor\n");
+		pr_info("to correct its BIOS.\n");
+		pr_info("This system has %d DIMM sockets.\n", num_dimm);
+	} else {
+		pr_info("This system has a very crappy BIOS: It doesn't even list the DIMMS.\n");
+		pr_info("Its SMBIOS info is wrong. It is doubtful that the error report would\n");
+		pr_info("work on such system. Use this driver with caution\n");
 	}
 
 	if (!fake) {
-		/*
-		 * Fill DIMM info from DMI for the memory controller #0
-		 *
-		 * Keep it in blank for the other memory controllers, as
-		 * there's no reliable way to properly credit each DIMM to
-		 * the memory controller, as different BIOSes fill the
-		 * DMI bank location fields on different ways
-		 */
-		if (!ghes_edac_mc_num) {
-			dimm_fill.count = 0;
-			dimm_fill.mci = mci;
-			dmi_walk(ghes_edac_dmidecode, &dimm_fill);
-		}
+		dimm_fill.count = 0;
+		dimm_fill.mci = mci;
+		dmi_walk(ghes_edac_dmidecode, &dimm_fill);
 	} else {
 		struct dimm_info *dimm = EDAC_DIMM_PTR(mci->layers, mci->dimms,
 						       mci->n_layers, 0, 0, 0);
@@ -497,12 +492,8 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	if (rc < 0) {
 		pr_info("Can't register at EDAC core\n");
 		edac_mc_free(mci);
-		mutex_unlock(&ghes_edac_lock);
 		return -ENODEV;
 	}
-
-	ghes_edac_mc_num++;
-	mutex_unlock(&ghes_edac_lock);
 	return 0;
 }
 EXPORT_SYMBOL_GPL(ghes_edac_register);
@@ -510,15 +501,9 @@ EXPORT_SYMBOL_GPL(ghes_edac_register);
 void ghes_edac_unregister(struct ghes *ghes)
 {
 	struct mem_ctl_info *mci;
-	struct ghes_edac_pvt *pvt, *tmp;
-
-	list_for_each_entry_safe(pvt, tmp, &ghes_reglist, list) {
-		if (ghes == pvt->ghes) {
-			mci = pvt->mci;
-			edac_mc_del_mc(mci->pdev);
-			edac_mc_free(mci);
-			list_del(&pvt->list);
-		}
-	}
+
+	mci = ghes_pvt->mci;
+	edac_mc_del_mc(mci->pdev);
+	edac_mc_free(mci);
 }
 EXPORT_SYMBOL_GPL(ghes_edac_unregister);
-- 
2.13.0


-- 
Regards/Gruss,
    Boris.

Good mailing practices for 400: avoid top-posting and trim the reply.

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#1713173

From"Kani, Toshimitsu" <toshi.kani@hpe.com>
Date2017-08-16 19:30 +0200
Message-ID<ufaiM-1vO-51@gated-at.bofh.it>
In reply to#1713117
On Wed, 2017-08-16 at 18:42 +0200, Borislav Petkov wrote:
> On Wed, Aug 16, 2017 at 03:26:04PM +0000, Kani, Toshimitsu wrote:
> > I believe you now need to protect from a race condition that a
> > single mci and pvt can be initialized / consumed from multiple
> > threads.  This protection is missing in your patch.
> 
> Easy. Done.

Assuming this big spinlock works, yes, this addresses my concern that
it does not allow concurrent accesses to mci. :-)

I will test the patch with an SCI when I got a chance.  I won't be able
to test other notification types or race conditions, though.

Thanks,
-Toshi

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#1713195

FromBorislav Petkov <bp@alien8.de>
Date2017-08-16 19:50 +0200
Message-ID<ufaC6-1CF-15@gated-at.bofh.it>
In reply to#1713173
On Wed, Aug 16, 2017 at 05:28:50PM +0000, Kani, Toshimitsu wrote:
> Assuming this big spinlock works, yes, this addresses my concern that

You mean, lengthy locked section. We can always switch to on-stack
buffers if there are issues or even to something more fancy like
genpool.

> I will test the patch with an SCI when I got a chance.  I won't be able
> to test other notification types or race conditions, though.

Thanks, here's the latest version with the atomic registration too.

---
 drivers/edac/ghes_edac.c | 116 +++++++++++++++++++++--------------------------
 1 file changed, 51 insertions(+), 65 deletions(-)

diff --git a/drivers/edac/ghes_edac.c b/drivers/edac/ghes_edac.c
index 6f80eb65c26c..386e04a7bda0 100644
--- a/drivers/edac/ghes_edac.c
+++ b/drivers/edac/ghes_edac.c
@@ -28,10 +28,15 @@ struct ghes_edac_pvt {
 	char msg[80];
 };
 
-static LIST_HEAD(ghes_reglist);
-static DEFINE_MUTEX(ghes_edac_lock);
-static int ghes_edac_mc_num;
+static atomic_t ghes_init = ATOMIC_INIT(0);
+static struct ghes_edac_pvt *ghes_pvt;
 
+/*
+ * Sync with other, potentially concurrent callers of
+ * ghes_edac_report_mem_error(). We don't know what the
+ * "inventive" firmware would do.
+ */
+static DEFINE_SPINLOCK(ghes_lock);
 
 /* Memory Device - Type 17 of SMBIOS spec */
 struct memdev_dmi_entry {
@@ -169,18 +174,26 @@ void ghes_edac_report_mem_error(struct ghes *ghes, int sev,
 	enum hw_event_mc_err_type type;
 	struct edac_raw_error_desc *e;
 	struct mem_ctl_info *mci;
-	struct ghes_edac_pvt *pvt = NULL;
+	struct ghes_edac_pvt *pvt = ghes_pvt;
+	unsigned long flags;
 	char *p;
 	u8 grain_bits;
 
-	list_for_each_entry(pvt, &ghes_reglist, list) {
-		if (ghes == pvt->ghes)
-			break;
-	}
 	if (!pvt) {
 		pr_err("Internal error: Can't find EDAC structure\n");
 		return;
 	}
+
+	/*
+	 * We can do the locking below because GHES defers error processing
+	 * from NMI to IRQ context. Whenever that changes, we'd at least
+	 * know.
+	 */
+	if (WARN_ON_ONCE(in_nmi()))
+		return;
+
+	spin_lock_irqsave(&ghes_lock, flags);
+
 	mci = pvt->mci;
 	e = &mci->error_desc;
 
@@ -398,8 +411,8 @@ void ghes_edac_report_mem_error(struct ghes *ghes, int sev,
 		       (e->page_frame_number << PAGE_SHIFT) | e->offset_in_page,
 		       grain_bits, e->syndrome, pvt->detail_location);
 
-	/* Report the error via EDAC API */
 	edac_raw_mc_handle_error(type, mci, e);
+	spin_unlock_irqrestore(&ghes_lock, flags);
 }
 EXPORT_SYMBOL_GPL(ghes_edac_report_mem_error);
 
@@ -409,9 +422,14 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	int rc, num_dimm = 0;
 	struct mem_ctl_info *mci;
 	struct edac_mc_layer layers[1];
-	struct ghes_edac_pvt *pvt;
 	struct ghes_edac_dimm_fill dimm_fill;
 
+	/*
+	 * We have only one logical memory controller to which all DIMMs belong.
+	 */
+	if (atomic_inc_return(&ghes_init) > 1)
+		return 0;
+
 	/* Get the number of DIMMs */
 	dmi_walk(ghes_edac_count_dimms, &num_dimm);
 
@@ -425,26 +443,17 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	layers[0].size = num_dimm;
 	layers[0].is_virt_csrow = true;
 
-	/*
-	 * We need to serialize edac_mc_alloc() and edac_mc_add_mc(),
-	 * to avoid duplicated memory controller numbers
-	 */
-	mutex_lock(&ghes_edac_lock);
-	mci = edac_mc_alloc(ghes_edac_mc_num, ARRAY_SIZE(layers), layers,
-			    sizeof(*pvt));
+	mci = edac_mc_alloc(1, ARRAY_SIZE(layers), layers, sizeof(struct ghes_edac_pvt));
 	if (!mci) {
 		pr_info("Can't allocate memory for EDAC data\n");
-		mutex_unlock(&ghes_edac_lock);
 		return -ENOMEM;
 	}
 
-	pvt = mci->pvt_info;
-	memset(pvt, 0, sizeof(*pvt));
-	list_add_tail(&pvt->list, &ghes_reglist);
-	pvt->ghes = ghes;
-	pvt->mci  = mci;
-	mci->pdev = dev;
+	ghes_pvt	= mci->pvt_info;
+	ghes_pvt->ghes	= ghes;
+	ghes_pvt->mci	= mci;
 
+	mci->pdev = dev;
 	mci->mtype_cap = MEM_FLAG_EMPTY;
 	mci->edac_ctl_cap = EDAC_FLAG_NONE;
 	mci->edac_cap = EDAC_FLAG_NONE;
@@ -452,36 +461,23 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	mci->ctl_name = "ghes_edac";
 	mci->dev_name = "ghes";
 
-	if (!ghes_edac_mc_num) {
-		if (!fake) {
-			pr_info("This EDAC driver relies on BIOS to enumerate memory and get error reports.\n");
-			pr_info("Unfortunately, not all BIOSes reflect the memory layout correctly.\n");
-			pr_info("So, the end result of using this driver varies from vendor to vendor.\n");
-			pr_info("If you find incorrect reports, please contact your hardware vendor\n");
-			pr_info("to correct its BIOS.\n");
-			pr_info("This system has %d DIMM sockets.\n",
-				num_dimm);
-		} else {
-			pr_info("This system has a very crappy BIOS: It doesn't even list the DIMMS.\n");
-			pr_info("Its SMBIOS info is wrong. It is doubtful that the error report would\n");
-			pr_info("work on such system. Use this driver with caution\n");
-		}
+	if (!fake) {
+		pr_info("This EDAC driver relies on BIOS to enumerate memory and get error reports.\n");
+		pr_info("Unfortunately, not all BIOSes reflect the memory layout correctly.\n");
+		pr_info("So, the end result of using this driver varies from vendor to vendor.\n");
+		pr_info("If you find incorrect reports, please contact your hardware vendor\n");
+		pr_info("to correct its BIOS.\n");
+		pr_info("This system has %d DIMM sockets.\n", num_dimm);
+	} else {
+		pr_info("This system has a very crappy BIOS: It doesn't even list the DIMMS.\n");
+		pr_info("Its SMBIOS info is wrong. It is doubtful that the error report would\n");
+		pr_info("work on such system. Use this driver with caution\n");
 	}
 
 	if (!fake) {
-		/*
-		 * Fill DIMM info from DMI for the memory controller #0
-		 *
-		 * Keep it in blank for the other memory controllers, as
-		 * there's no reliable way to properly credit each DIMM to
-		 * the memory controller, as different BIOSes fill the
-		 * DMI bank location fields on different ways
-		 */
-		if (!ghes_edac_mc_num) {
-			dimm_fill.count = 0;
-			dimm_fill.mci = mci;
-			dmi_walk(ghes_edac_dmidecode, &dimm_fill);
-		}
+		dimm_fill.count = 0;
+		dimm_fill.mci = mci;
+		dmi_walk(ghes_edac_dmidecode, &dimm_fill);
 	} else {
 		struct dimm_info *dimm = EDAC_DIMM_PTR(mci->layers, mci->dimms,
 						       mci->n_layers, 0, 0, 0);
@@ -497,12 +493,8 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	if (rc < 0) {
 		pr_info("Can't register at EDAC core\n");
 		edac_mc_free(mci);
-		mutex_unlock(&ghes_edac_lock);
 		return -ENODEV;
 	}
-
-	ghes_edac_mc_num++;
-	mutex_unlock(&ghes_edac_lock);
 	return 0;
 }
 EXPORT_SYMBOL_GPL(ghes_edac_register);
@@ -510,15 +502,9 @@ EXPORT_SYMBOL_GPL(ghes_edac_register);
 void ghes_edac_unregister(struct ghes *ghes)
 {
 	struct mem_ctl_info *mci;
-	struct ghes_edac_pvt *pvt, *tmp;
-
-	list_for_each_entry_safe(pvt, tmp, &ghes_reglist, list) {
-		if (ghes == pvt->ghes) {
-			mci = pvt->mci;
-			edac_mc_del_mc(mci->pdev);
-			edac_mc_free(mci);
-			list_del(&pvt->list);
-		}
-	}
+
+	mci = ghes_pvt->mci;
+	edac_mc_del_mc(mci->pdev);
+	edac_mc_free(mci);
 }
 EXPORT_SYMBOL_GPL(ghes_edac_unregister);
-- 
2.13.0

Regards/Gruss,
    Boris.

Good mailing practices for 400: avoid top-posting and trim the reply.

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#1713201

From"Kani, Toshimitsu" <toshi.kani@hpe.com>
Date2017-08-16 20:10 +0200
Message-ID<ufaVt-1YD-29@gated-at.bofh.it>
In reply to#1713195
On Wed, 2017-08-16 at 19:40 +0200, Borislav Petkov wrote:
> On Wed, Aug 16, 2017 at 05:28:50PM +0000, Kani, Toshimitsu wrote:
> > Assuming this big spinlock works, yes, this addresses my concern
> > that
> 
> You mean, lengthy locked section. We can always switch to on-stack
> buffers if there are issues or even to something more fancy like
> genpool.

Yes, I meant the lengthy locked section.  I still think that multiple
mcis is a better approach for concurrency as it naturally addresses it.
But as long as edac func and error handlers are tolerant with this
spinlock and serialization, I am OK with that.

> > I will test the patch with an SCI when I got a chance.  I won't be
> > able to test other notification types or race conditions, though.
> 
> Thanks, here's the latest version with the atomic registration too.

Sure, I will test with this version.

Thanks,
-Toshi

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#1714379

From"Kani, Toshimitsu" <toshi.kani@hpe.com>
Date2017-08-17 23:10 +0200
Message-ID<ufAdb-1Xc-1@gated-at.bofh.it>
In reply to#1713201
On Wed, 2017-08-16 at 11:51 -0600, Toshi Kani wrote:
> On Wed, 2017-08-16 at 19:40 +0200, Borislav Petkov wrote:
> > On Wed, Aug 16, 2017 at 05:28:50PM +0000, Kani, Toshimitsu wrote:
 :
> > > I will test the patch with an SCI when I got a chance.  I won't
> > > be able to test other notification types or race conditions,
> > > though.
> > 
> > Thanks, here's the latest version with the atomic registration too.
> 
> Sure, I will test with this version.

I briefly tested the patch with an SCI. The error reporting part seems
to work fine.

There are two issues I noticed:

1. It creates mc0 and mc1.  
I think this is because you called edac_mc_alloc() with mc_num 1.

2. 'ras-mc-ctl --layout' does not show all DIMMs.

# ras-mc-ctl --layout
         +------------------------+
         |    mc0     |    mc1     |
---------+------------------------+
memory4: |     0 MB  |  16384 MB  |
memory3: |     0 MB  |     0 MB  |
memory2: |     0 MB  |     0 MB  |
memory1: |     0 MB  |     0 MB  |
memory0: |     0 MB  |  8192 MB  |
---------+-----------------------+

# ls /sys/bus/mc1/devices
csrow0   csrow12  csrow23  dimm0   dimm12  dimm23  mc1
csrow11  csrow19  csrow4   dimm11  dimm19  dimm4

Thanks,
-Toshi


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#1716242

FromBorislav Petkov <bp@alien8.de>
Date2017-08-21 11:30 +0200
Message-ID<ugRbZ-2zH-49@gated-at.bofh.it>
In reply to#1714379
On Thu, Aug 17, 2017 at 09:08:40PM +0000, Kani, Toshimitsu wrote:
> 1. It creates mc0 and mc1.  
> I think this is because you called edac_mc_alloc() with mc_num 1.

Fixed, see below.

> 
> 2. 'ras-mc-ctl --layout' does not show all DIMMs.

Yap, that's strange.

$ grep . /sys/devices/system/edac/mc/mc0/dimm*/size
/sys/devices/system/edac/mc/mc0/dimm10/size:2048
/sys/devices/system/edac/mc/mc0/dimm11/size:2048
/sys/devices/system/edac/mc/mc0/dimm12/size:2048
/sys/devices/system/edac/mc/mc0/dimm13/size:2048
/sys/devices/system/edac/mc/mc0/dimm14/size:2048
/sys/devices/system/edac/mc/mc0/dimm15/size:2048
/sys/devices/system/edac/mc/mc0/dimm8/size:2048
/sys/devices/system/edac/mc/mc0/dimm9/size:2048
$ ras-mc-ctl --layout
         +-----------+
         |    mc0    |
---------+-----------+
memory9: |  2048 MB  |
memory8: |  2048 MB  |
---------+-----------+
memory7: |     0 MB  |
memory6: |     0 MB  |
---------+-----------+
memory5: |     0 MB  |
memory4: |     0 MB  |
---------+-----------+
memory3: |     0 MB  |
memory2: |     0 MB  |
---------+-----------+
memory1: |     0 MB  |
memory0: |     0 MB  |
---------+-----------+

the driver detects them correctly though:

[    7.900694] ghes_edac: This system has 16 DIMM sockets.
[    7.911366] EDAC DEBUG: ghes_edac_dmidecode: DIMM8: Unbuffered DDR3 RAM size = 2048 MB(ECC)
[    7.928437] EDAC DEBUG: ghes_edac_dmidecode:         type 24, detail 0x80, width 72(total 64)
[    7.944628] EDAC DEBUG: ghes_edac_dmidecode: DIMM9: Unbuffered DDR3 RAM size = 2048 MB(ECC)
[    7.961683] EDAC DEBUG: ghes_edac_dmidecode:         type 24, detail 0x80, width 72(total 64)
[    7.977871] EDAC DEBUG: ghes_edac_dmidecode: DIMM10: Unbuffered DDR3 RAM size = 2048 MB(ECC)
[    7.995105] EDAC DEBUG: ghes_edac_dmidecode:         type 24, detail 0x80, width 72(total 64)
[    8.011291] EDAC DEBUG: ghes_edac_dmidecode: DIMM11: Unbuffered DDR3 RAM size = 2048 MB(ECC)
[    8.028524] EDAC DEBUG: ghes_edac_dmidecode:         type 24, detail 0x80, width 72(total 64)
[    8.044712] EDAC DEBUG: ghes_edac_dmidecode: DIMM12: Unbuffered DDR3 RAM size = 2048 MB(ECC)
[    8.061942] EDAC DEBUG: ghes_edac_dmidecode:         type 24, detail 0x80, width 72(total 64)
[    8.078129] EDAC DEBUG: ghes_edac_dmidecode: DIMM13: Unbuffered DDR3 RAM size = 2048 MB(ECC)
[    8.095360] EDAC DEBUG: ghes_edac_dmidecode:         type 24, detail 0x80, width 72(total 64)
[    8.111547] EDAC DEBUG: ghes_edac_dmidecode: DIMM14: Unbuffered DDR3 RAM size = 2048 MB(ECC)
[    8.161703] EDAC DEBUG: ghes_edac_dmidecode:         type 24, detail 0x80, width 72(total 64)
[    8.177904] EDAC DEBUG: ghes_edac_dmidecode: DIMM15: Unbuffered DDR3 RAM size = 2048 MB(ECC)
[    8.195132] EDAC DEBUG: ghes_edac_dmidecode:         type 24, detail 0x80, width 72(total 64)
[    8.211321] EDAC DEBUG: edac_mc_add_mc_with_groups: 
[    8.221456] EDAC DEBUG: edac_create_sysfs_mci_device: creating bus mc0
[    8.234736] EDAC DEBUG: edac_create_sysfs_mci_device: creating device mc0
[    8.248545] EDAC DEBUG: edac_create_sysfs_mci_device: creating dimm8, located at memory 8 
[    8.265457] EDAC DEBUG: edac_create_dimm_object: creating rank/dimm device dimm8
[    8.280601] EDAC DEBUG: edac_create_sysfs_mci_device: creating dimm9, located at memory 9 
[    8.297503] EDAC DEBUG: edac_create_dimm_object: creating rank/dimm device dimm9
[    8.312650] EDAC DEBUG: edac_create_sysfs_mci_device: creating dimm10, located at memory 10 
[    8.329900] EDAC DEBUG: edac_create_dimm_object: creating rank/dimm device dimm10
[    8.345220] EDAC DEBUG: edac_create_sysfs_mci_device: creating dimm11, located at memory 11 
[    8.362470] EDAC DEBUG: edac_create_dimm_object: creating rank/dimm device dimm11
[    8.377789] EDAC DEBUG: edac_create_sysfs_mci_device: creating dimm12, located at memory 12 
[    8.395039] EDAC DEBUG: edac_create_dimm_object: creating rank/dimm device dimm12
[    8.410358] EDAC DEBUG: edac_create_sysfs_mci_device: creating dimm13, located at memory 13 
[    8.427608] EDAC DEBUG: edac_create_dimm_object: creating rank/dimm device dimm13
[    8.442928] EDAC DEBUG: edac_create_sysfs_mci_device: creating dimm14, located at memory 14 
[    8.460194] EDAC DEBUG: edac_create_dimm_object: creating rank/dimm device dimm14
[    8.475517] EDAC DEBUG: edac_create_sysfs_mci_device: creating dimm15, located at memory 15 
[    8.492768] EDAC DEBUG: edac_create_dimm_object: creating rank/dimm device dimm15

Mauro?

---
From: Borislav Petkov <bp@suse.de>
Date: Wed, 16 Aug 2017 10:33:44 +0200
Subject: [PATCH] EDAC, ghes: Model a single, logical memory controller

We're enumerating the DIMMs through a DMI walk and since we can't get
any more detailed topological information about which DIMMs belong to
which memory controller, convert it to a single, logical controller
which contains all the DIMMs.

The error reporting path from GHES ghes_edac_report_mem_error() doesn't
get called in NMI context but add a warning about it to catch any
changes in the future as if so, our locking scheme will be insufficient
then.

Signed-off-by: Borislav Petkov <bp@suse.de>
---
 drivers/edac/ghes_edac.c | 116 +++++++++++++++++++++--------------------------
 1 file changed, 51 insertions(+), 65 deletions(-)

diff --git a/drivers/edac/ghes_edac.c b/drivers/edac/ghes_edac.c
index 6f80eb65c26c..e790d64b8edd 100644
--- a/drivers/edac/ghes_edac.c
+++ b/drivers/edac/ghes_edac.c
@@ -28,10 +28,15 @@ struct ghes_edac_pvt {
 	char msg[80];
 };
 
-static LIST_HEAD(ghes_reglist);
-static DEFINE_MUTEX(ghes_edac_lock);
-static int ghes_edac_mc_num;
+static atomic_t ghes_init = ATOMIC_INIT(0);
+static struct ghes_edac_pvt *ghes_pvt;
 
+/*
+ * Sync with other, potentially concurrent callers of
+ * ghes_edac_report_mem_error(). We don't know what the
+ * "inventive" firmware would do.
+ */
+static DEFINE_SPINLOCK(ghes_lock);
 
 /* Memory Device - Type 17 of SMBIOS spec */
 struct memdev_dmi_entry {
@@ -169,18 +174,26 @@ void ghes_edac_report_mem_error(struct ghes *ghes, int sev,
 	enum hw_event_mc_err_type type;
 	struct edac_raw_error_desc *e;
 	struct mem_ctl_info *mci;
-	struct ghes_edac_pvt *pvt = NULL;
+	struct ghes_edac_pvt *pvt = ghes_pvt;
+	unsigned long flags;
 	char *p;
 	u8 grain_bits;
 
-	list_for_each_entry(pvt, &ghes_reglist, list) {
-		if (ghes == pvt->ghes)
-			break;
-	}
 	if (!pvt) {
 		pr_err("Internal error: Can't find EDAC structure\n");
 		return;
 	}
+
+	/*
+	 * We can do the locking below because GHES defers error processing
+	 * from NMI to IRQ context. Whenever that changes, we'd at least
+	 * know.
+	 */
+	if (WARN_ON_ONCE(in_nmi()))
+		return;
+
+	spin_lock_irqsave(&ghes_lock, flags);
+
 	mci = pvt->mci;
 	e = &mci->error_desc;
 
@@ -398,8 +411,8 @@ void ghes_edac_report_mem_error(struct ghes *ghes, int sev,
 		       (e->page_frame_number << PAGE_SHIFT) | e->offset_in_page,
 		       grain_bits, e->syndrome, pvt->detail_location);
 
-	/* Report the error via EDAC API */
 	edac_raw_mc_handle_error(type, mci, e);
+	spin_unlock_irqrestore(&ghes_lock, flags);
 }
 EXPORT_SYMBOL_GPL(ghes_edac_report_mem_error);
 
@@ -409,9 +422,14 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	int rc, num_dimm = 0;
 	struct mem_ctl_info *mci;
 	struct edac_mc_layer layers[1];
-	struct ghes_edac_pvt *pvt;
 	struct ghes_edac_dimm_fill dimm_fill;
 
+	/*
+	 * We have only one logical memory controller to which all DIMMs belong.
+	 */
+	if (atomic_inc_return(&ghes_init) > 1)
+		return 0;
+
 	/* Get the number of DIMMs */
 	dmi_walk(ghes_edac_count_dimms, &num_dimm);
 
@@ -425,26 +443,17 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	layers[0].size = num_dimm;
 	layers[0].is_virt_csrow = true;
 
-	/*
-	 * We need to serialize edac_mc_alloc() and edac_mc_add_mc(),
-	 * to avoid duplicated memory controller numbers
-	 */
-	mutex_lock(&ghes_edac_lock);
-	mci = edac_mc_alloc(ghes_edac_mc_num, ARRAY_SIZE(layers), layers,
-			    sizeof(*pvt));
+	mci = edac_mc_alloc(0, ARRAY_SIZE(layers), layers, sizeof(struct ghes_edac_pvt));
 	if (!mci) {
 		pr_info("Can't allocate memory for EDAC data\n");
-		mutex_unlock(&ghes_edac_lock);
 		return -ENOMEM;
 	}
 
-	pvt = mci->pvt_info;
-	memset(pvt, 0, sizeof(*pvt));
-	list_add_tail(&pvt->list, &ghes_reglist);
-	pvt->ghes = ghes;
-	pvt->mci  = mci;
-	mci->pdev = dev;
+	ghes_pvt	= mci->pvt_info;
+	ghes_pvt->ghes	= ghes;
+	ghes_pvt->mci	= mci;
 
+	mci->pdev = dev;
 	mci->mtype_cap = MEM_FLAG_EMPTY;
 	mci->edac_ctl_cap = EDAC_FLAG_NONE;
 	mci->edac_cap = EDAC_FLAG_NONE;
@@ -452,36 +461,23 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	mci->ctl_name = "ghes_edac";
 	mci->dev_name = "ghes";
 
-	if (!ghes_edac_mc_num) {
-		if (!fake) {
-			pr_info("This EDAC driver relies on BIOS to enumerate memory and get error reports.\n");
-			pr_info("Unfortunately, not all BIOSes reflect the memory layout correctly.\n");
-			pr_info("So, the end result of using this driver varies from vendor to vendor.\n");
-			pr_info("If you find incorrect reports, please contact your hardware vendor\n");
-			pr_info("to correct its BIOS.\n");
-			pr_info("This system has %d DIMM sockets.\n",
-				num_dimm);
-		} else {
-			pr_info("This system has a very crappy BIOS: It doesn't even list the DIMMS.\n");
-			pr_info("Its SMBIOS info is wrong. It is doubtful that the error report would\n");
-			pr_info("work on such system. Use this driver with caution\n");
-		}
+	if (!fake) {
+		pr_info("This EDAC driver relies on BIOS to enumerate memory and get error reports.\n");
+		pr_info("Unfortunately, not all BIOSes reflect the memory layout correctly.\n");
+		pr_info("So, the end result of using this driver varies from vendor to vendor.\n");
+		pr_info("If you find incorrect reports, please contact your hardware vendor\n");
+		pr_info("to correct its BIOS.\n");
+		pr_info("This system has %d DIMM sockets.\n", num_dimm);
+	} else {
+		pr_info("This system has a very crappy BIOS: It doesn't even list the DIMMS.\n");
+		pr_info("Its SMBIOS info is wrong. It is doubtful that the error report would\n");
+		pr_info("work on such system. Use this driver with caution\n");
 	}
 
 	if (!fake) {
-		/*
-		 * Fill DIMM info from DMI for the memory controller #0
-		 *
-		 * Keep it in blank for the other memory controllers, as
-		 * there's no reliable way to properly credit each DIMM to
-		 * the memory controller, as different BIOSes fill the
-		 * DMI bank location fields on different ways
-		 */
-		if (!ghes_edac_mc_num) {
-			dimm_fill.count = 0;
-			dimm_fill.mci = mci;
-			dmi_walk(ghes_edac_dmidecode, &dimm_fill);
-		}
+		dimm_fill.count = 0;
+		dimm_fill.mci = mci;
+		dmi_walk(ghes_edac_dmidecode, &dimm_fill);
 	} else {
 		struct dimm_info *dimm = EDAC_DIMM_PTR(mci->layers, mci->dimms,
 						       mci->n_layers, 0, 0, 0);
@@ -497,12 +493,8 @@ int ghes_edac_register(struct ghes *ghes, struct device *dev)
 	if (rc < 0) {
 		pr_info("Can't register at EDAC core\n");
 		edac_mc_free(mci);
-		mutex_unlock(&ghes_edac_lock);
 		return -ENODEV;
 	}
-
-	ghes_edac_mc_num++;
-	mutex_unlock(&ghes_edac_lock);
 	return 0;
 }
 EXPORT_SYMBOL_GPL(ghes_edac_register);
@@ -510,15 +502,9 @@ EXPORT_SYMBOL_GPL(ghes_edac_register);
 void ghes_edac_unregister(struct ghes *ghes)
 {
 	struct mem_ctl_info *mci;
-	struct ghes_edac_pvt *pvt, *tmp;
-
-	list_for_each_entry_safe(pvt, tmp, &ghes_reglist, list) {
-		if (ghes == pvt->ghes) {
-			mci = pvt->mci;
-			edac_mc_del_mc(mci->pdev);
-			edac_mc_free(mci);
-			list_del(&pvt->list);
-		}
-	}
+
+	mci = ghes_pvt->mci;
+	edac_mc_del_mc(mci->pdev);
+	edac_mc_free(mci);
 }
 EXPORT_SYMBOL_GPL(ghes_edac_unregister);
-- 
2.13.0


-- 
Regards/Gruss,
    Boris.

Good mailing practices for 400: avoid top-posting and trim the reply.

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#1712291

FromBorislav Petkov <bp@alien8.de>
Date2017-08-15 18:00 +0200
Message-ID<ueMq6-3aI-11@gated-at.bofh.it>
In reply to#1712259
On Tue, Aug 15, 2017 at 03:35:51PM +0000, Kani, Toshimitsu wrote:
> ghes_edac instantiates an mci as a pseudo device representing a GHES
> error source.  Each error source associates with all DIMMs, and may
> report errors independently.  As ghes_edac is an GHES error-reporting
> wrapper to edac, this abstraction makes sense.

Bullshit.

An MCI is a memory controller descriptor. That doesn't fit the GHES
platform devices that get probed. GHES platform device != MCI. How many
times do I need to say this for it to get through to you?

> I do not see a problem in having counters for each GHES error source.

And the error counters of that "simulated" mci get incremented depending
on which pointer gets passed in from GHES? More bullshit.

> This is just statistics info, and ghes_edac does not expect any OS
> action from the counters.

So let me know if you don't want to do it and rather would prefer to
pointlessly debate. I certainly don't want to waste my time debating.

-- 
Regards/Gruss,
    Boris.

Good mailing practices for 400: avoid top-posting and trim the reply.

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#1712314

From"Kani, Toshimitsu" <toshi.kani@hpe.com>
Date2017-08-15 18:30 +0200
Message-ID<ueMT8-3Ar-11@gated-at.bofh.it>
In reply to#1712291
On Tue, 2017-08-15 at 17:50 +0200, Borislav Petkov wrote:
> On Tue, Aug 15, 2017 at 03:35:51PM +0000, Kani, Toshimitsu wrote:
> > ghes_edac instantiates an mci as a pseudo device representing a
> > GHES error source.  Each error source associates with all DIMMs,
> > and may report errors independently.  As ghes_edac is an GHES
> > error-reporting wrapper to edac, this abstraction makes sense.
> 
> Bullshit.
> 
> An MCI is a memory controller descriptor. That doesn't fit the GHES
> platform devices that get probed. GHES platform device != MCI. How
> many times do I need to say this for it to get through to you?

Right, but it has to be a "pseudo" device for ghes_edac.  There is no
memory controller info available.  A single mci does not make it a real
memory controller, either.

> > I do not see a problem in having counters for each GHES error
> > source.
> 
> And the error counters of that "simulated" mci get incremented
> depending on which pointer gets passed in from GHES? More bullshit.
>
> > This is just statistics info, and ghes_edac does not expect any OS
> > action from the counters.
> 
> So let me know if you don't want to do it and rather would prefer to
> pointlessly debate. I certainly don't want to waste my time debating.

Yes, ghes_edac refactoring like this should be considered a separate
item.  My patchset is aimed to introduce a platform-check to attach
ghes_edac on supported platforms.

Thanks,
-Toshi

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