drivers/edac: add edac_device class

This patch adds the new 'class' of object to be managed, named: 'edac_device'.

As a peer of the 'edac_mc' class of object, it provides a non-memory centric
view of an ERROR DETECTING device in hardware. It provides a sysfs interface
and an abstraction for varioius EDAC type devices.

Multiple 'instances' within the class are possible, with each 'instance'
able to have multiple 'blocks', and each 'block' having 'attributes'.

At the 'block' level there are the 'ce_count' and 'ue_count' fields
which the device driver can update and/or call edac_device_handle_XX()
functions. At each higher level are additional 'total' count fields,
which are a summation of counts below that level.

This 'edac_device' has been used to capture and present ECC errors
which are found in a a L1 and L2 system on a per CORE/CPU basis.

Signed-off-by: Douglas Thompson <dougthompson@xmission.com>
Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
diff --git a/drivers/edac/edac_mc_sysfs.c b/drivers/edac/edac_mc_sysfs.c
index 4a5e335..35bcf92 100644
--- a/drivers/edac/edac_mc_sysfs.c
+++ b/drivers/edac/edac_mc_sysfs.c
@@ -94,14 +94,6 @@
 	[EDAC_S16ECD16ED] = "S16ECD16ED"
 };
 
-/*
- * sysfs object: /sys/devices/system/edac
- *	need to export to other files in this modules
- */
-struct sysdev_class edac_class = {
-	set_kset_name("edac"),
-};
-
 /* sysfs object:
  *	/sys/devices/system/edac/mc
  */
@@ -224,43 +216,38 @@
 int edac_sysfs_memctrl_setup(void)
 {
 	int err = 0;
+	struct sysdev_class *edac_class;
 
 	debugf1("%s()\n", __func__);
 
-	/* create the /sys/devices/system/edac directory */
-	err = sysdev_class_register(&edac_class);
-
-	if (err) {
-		debugf1("%s() error=%d\n", __func__, err);
+	/* get the /sys/devices/system/edac class reference */
+	edac_class = edac_get_edac_class();
+	if (edac_class == NULL) {
+		debugf1("%s() no edac_class error=%d\n", __func__, err);
 		return err;
 	}
 
 	/* Init the MC's kobject */
 	memset(&edac_memctrl_kobj, 0, sizeof (edac_memctrl_kobj));
-	edac_memctrl_kobj.parent = &edac_class.kset.kobj;
+	edac_memctrl_kobj.parent = &edac_class->kset.kobj;
 	edac_memctrl_kobj.ktype = &ktype_memctrl;
 
 	/* generate sysfs "..../edac/mc"   */
 	err = kobject_set_name(&edac_memctrl_kobj,"mc");
-
-	if (err)
-		goto fail;
+	if (err) {
+		debugf1("%s() Failed to set name '.../edac/mc'\n", __func__ );
+		return err;
+	}
 
 	/* FIXME: maybe new sysdev_create_subdir() */
 	err = kobject_register(&edac_memctrl_kobj);
-
 	if (err) {
-		debugf1("Failed to register '.../edac/mc'\n");
-		goto fail;
+		debugf1("%s() Failed to register '.../edac/mc'\n", __func__ );
+		return err;
 	}
 
-	debugf1("Registered '.../edac/mc' kobject\n");
-
+	debugf1("%s() Registered '.../edac/mc' kobject\n",__func__);
 	return 0;
-
-fail:
-	sysdev_class_unregister(&edac_class);
-	return err;
 }
 
 /*
@@ -276,9 +263,6 @@
 	init_completion(&edac_memctrl_kobj_complete);
 	kobject_unregister(&edac_memctrl_kobj);
 	wait_for_completion(&edac_memctrl_kobj_complete);
-
-	/* Unregister the 'edac' object */
-	sysdev_class_unregister(&edac_class);
 }
 
 
@@ -286,32 +270,38 @@
  */
 
 /* Set of more default csrow<id> attribute show/store functions */
-static ssize_t csrow_ue_count_show(struct csrow_info *csrow, char *data, int private)
+static ssize_t csrow_ue_count_show(struct csrow_info *csrow, char *data,
+			int private)
 {
 	return sprintf(data,"%u\n", csrow->ue_count);
 }
 
-static ssize_t csrow_ce_count_show(struct csrow_info *csrow, char *data, int private)
+static ssize_t csrow_ce_count_show(struct csrow_info *csrow, char *data,
+			int private)
 {
 	return sprintf(data,"%u\n", csrow->ce_count);
 }
 
-static ssize_t csrow_size_show(struct csrow_info *csrow, char *data, int private)
+static ssize_t csrow_size_show(struct csrow_info *csrow, char *data,
+			int private)
 {
 	return sprintf(data,"%u\n", PAGES_TO_MiB(csrow->nr_pages));
 }
 
-static ssize_t csrow_mem_type_show(struct csrow_info *csrow, char *data, int private)
+static ssize_t csrow_mem_type_show(struct csrow_info *csrow, char *data,
+			int private)
 {
 	return sprintf(data,"%s\n", mem_types[csrow->mtype]);
 }
 
-static ssize_t csrow_dev_type_show(struct csrow_info *csrow, char *data, int private)
+static ssize_t csrow_dev_type_show(struct csrow_info *csrow, char *data,
+			int private)
 {
 	return sprintf(data,"%s\n", dev_types[csrow->dtype]);
 }
 
-static ssize_t csrow_edac_mode_show(struct csrow_info *csrow, char *data, int private)
+static ssize_t csrow_edac_mode_show(struct csrow_info *csrow, char *data,
+			int private)
 {
 	return sprintf(data,"%s\n", edac_caps[csrow->edac_mode]);
 }
@@ -509,9 +499,10 @@
 	if (!err) {
 		/* create the CE Count attribute file */
 		err = sysfs_create_file(kobj,
-			(struct attribute *) dynamic_csrow_ce_count_attr[chan]);
+			(struct attribute *)dynamic_csrow_ce_count_attr[chan]);
 	} else {
-		debugf1("%s()  dimm labels and ce_count files created", __func__);
+		debugf1("%s()  dimm labels and ce_count files created",
+			__func__);
 	}
 
 	return err;
@@ -643,7 +634,7 @@
 	} else {
 		/* FIXME: produce "not implemented" ERROR for user-side.  */
 		edac_printk(KERN_WARNING, EDAC_MC,
-			"Memory scrubbing 'get' control is not implemented!\n");
+			"Memory scrubbing 'get' control is not implemented\n");
 	}
 	return sprintf(data, "%d\n", bandwidth);
 }
@@ -755,7 +746,8 @@
 MCIDEV_ATTR(ce_count,S_IRUGO,mci_ce_count_show,NULL);
 
 /* memory scrubber attribute file */
-MCIDEV_ATTR(sdram_scrub_rate,S_IRUGO|S_IWUSR,mci_sdram_scrub_rate_show,mci_sdram_scrub_rate_store);
+MCIDEV_ATTR(sdram_scrub_rate,S_IRUGO|S_IWUSR,mci_sdram_scrub_rate_show,\
+			mci_sdram_scrub_rate_store);
 
 static struct mcidev_attribute *mci_attr[] = {
 	&mci_attr_reset_counters,