edac_mc.c 30.7 KB
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/*
 * edac_mc kernel module
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 * (C) 2005, 2006 Linux Networx (http://lnxi.com)
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 * This file may be distributed under the terms of the
 * GNU General Public License.
 *
 * Written by Thayne Harbaugh
 * Based on work by Dan Hollis <goemon at anime dot net> and others.
 *	http://www.anime.net/~goemon/linux-ecc/
 *
 * Modified by Dave Peterson and Doug Thompson
 *
 */

#include <linux/module.h>
#include <linux/proc_fs.h>
#include <linux/kernel.h>
#include <linux/types.h>
#include <linux/smp.h>
#include <linux/init.h>
#include <linux/sysctl.h>
#include <linux/highmem.h>
#include <linux/timer.h>
#include <linux/slab.h>
#include <linux/jiffies.h>
#include <linux/spinlock.h>
#include <linux/list.h>
#include <linux/ctype.h>
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#include <linux/edac.h>
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#include <linux/bitops.h>
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#include <asm/uaccess.h>
#include <asm/page.h>
#include <asm/edac.h>
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#include "edac_core.h"
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#include "edac_module.h"
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#define CREATE_TRACE_POINTS
#define TRACE_INCLUDE_PATH ../../include/ras
#include <ras/ras_event.h>

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/* lock to memory controller's control array */
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static DEFINE_MUTEX(mem_ctls_mutex);
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static LIST_HEAD(mc_devices);
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#ifdef CONFIG_EDAC_DEBUG

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static void edac_mc_dump_channel(struct rank_info *chan)
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{
	debugf4("\tchannel = %p\n", chan);
	debugf4("\tchannel->chan_idx = %d\n", chan->chan_idx);
	debugf4("\tchannel->csrow = %p\n\n", chan->csrow);
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	debugf4("\tchannel->dimm = %p\n", chan->dimm);
}

static void edac_mc_dump_dimm(struct dimm_info *dimm)
{
	int i;

	debugf4("\tdimm = %p\n", dimm);
	debugf4("\tdimm->label = '%s'\n", dimm->label);
	debugf4("\tdimm->nr_pages = 0x%x\n", dimm->nr_pages);
	debugf4("\tdimm location ");
	for (i = 0; i < dimm->mci->n_layers; i++) {
		printk(KERN_CONT "%d", dimm->location[i]);
		if (i < dimm->mci->n_layers - 1)
			printk(KERN_CONT ".");
	}
	printk(KERN_CONT "\n");
	debugf4("\tdimm->grain = %d\n", dimm->grain);
	debugf4("\tdimm->nr_pages = 0x%x\n", dimm->nr_pages);
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}

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static void edac_mc_dump_csrow(struct csrow_info *csrow)
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{
	debugf4("\tcsrow = %p\n", csrow);
	debugf4("\tcsrow->csrow_idx = %d\n", csrow->csrow_idx);
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	debugf4("\tcsrow->first_page = 0x%lx\n", csrow->first_page);
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	debugf4("\tcsrow->last_page = 0x%lx\n", csrow->last_page);
	debugf4("\tcsrow->page_mask = 0x%lx\n", csrow->page_mask);
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	debugf4("\tcsrow->nr_channels = %d\n", csrow->nr_channels);
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	debugf4("\tcsrow->channels = %p\n", csrow->channels);
	debugf4("\tcsrow->mci = %p\n\n", csrow->mci);
}

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static void edac_mc_dump_mci(struct mem_ctl_info *mci)
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{
	debugf3("\tmci = %p\n", mci);
	debugf3("\tmci->mtype_cap = %lx\n", mci->mtype_cap);
	debugf3("\tmci->edac_ctl_cap = %lx\n", mci->edac_ctl_cap);
	debugf3("\tmci->edac_cap = %lx\n", mci->edac_cap);
	debugf4("\tmci->edac_check = %p\n", mci->edac_check);
	debugf3("\tmci->nr_csrows = %d, csrows = %p\n",
		mci->nr_csrows, mci->csrows);
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	debugf3("\tmci->nr_dimms = %d, dimms = %p\n",
		mci->tot_dimms, mci->dimms);
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	debugf3("\tdev = %p\n", mci->pdev);
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	debugf3("\tmod_name:ctl_name = %s:%s\n", mci->mod_name, mci->ctl_name);
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	debugf3("\tpvt_info = %p\n\n", mci->pvt_info);
}

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#endif				/* CONFIG_EDAC_DEBUG */

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/*
 * keep those in sync with the enum mem_type
 */
const char *edac_mem_types[] = {
	"Empty csrow",
	"Reserved csrow type",
	"Unknown csrow type",
	"Fast page mode RAM",
	"Extended data out RAM",
	"Burst Extended data out RAM",
	"Single data rate SDRAM",
	"Registered single data rate SDRAM",
	"Double data rate SDRAM",
	"Registered Double data rate SDRAM",
	"Rambus DRAM",
	"Unbuffered DDR2 RAM",
	"Fully buffered DDR2",
	"Registered DDR2 RAM",
	"Rambus XDR",
	"Unbuffered DDR3 RAM",
	"Registered DDR3 RAM",
};
EXPORT_SYMBOL_GPL(edac_mem_types);

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/**
 * edac_align_ptr - Prepares the pointer offsets for a single-shot allocation
 * @p:		pointer to a pointer with the memory offset to be used. At
 *		return, this will be incremented to point to the next offset
 * @size:	Size of the data structure to be reserved
 * @n_elems:	Number of elements that should be reserved
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 *
 * If 'size' is a constant, the compiler will optimize this whole function
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 * down to either a no-op or the addition of a constant to the value of '*p'.
 *
 * The 'p' pointer is absolutely needed to keep the proper advancing
 * further in memory to the proper offsets when allocating the struct along
 * with its embedded structs, as edac_device_alloc_ctl_info() does it
 * above, for example.
 *
 * At return, the pointer 'p' will be incremented to be used on a next call
 * to this function.
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 */
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void *edac_align_ptr(void **p, unsigned size, int n_elems)
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{
	unsigned align, r;
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	void *ptr = *p;
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	*p += size * n_elems;

	/*
	 * 'p' can possibly be an unaligned item X such that sizeof(X) is
	 * 'size'.  Adjust 'p' so that its alignment is at least as
	 * stringent as what the compiler would provide for X and return
	 * the aligned result.
	 * Here we assume that the alignment of a "long long" is the most
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	 * stringent alignment that the compiler will ever provide by default.
	 * As far as I know, this is a reasonable assumption.
	 */
	if (size > sizeof(long))
		align = sizeof(long long);
	else if (size > sizeof(int))
		align = sizeof(long);
	else if (size > sizeof(short))
		align = sizeof(int);
	else if (size > sizeof(char))
		align = sizeof(short);
	else
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		return (char *)ptr;
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	r = size % align;

	if (r == 0)
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		return (char *)ptr;
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	*p += align - r;

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	return (void *)(((unsigned long)ptr) + align - r);
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}

/**
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 * edac_mc_alloc: Allocate and partially fill a struct mem_ctl_info structure
 * @mc_num:		Memory controller number
 * @n_layers:		Number of MC hierarchy layers
 * layers:		Describes each layer as seen by the Memory Controller
 * @size_pvt:		size of private storage needed
 *
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 *
 * Everything is kmalloc'ed as one big chunk - more efficient.
 * Only can be used if all structures have the same lifetime - otherwise
 * you have to allocate and initialize your own structures.
 *
 * Use edac_mc_free() to free mc structures allocated by this function.
 *
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 * NOTE: drivers handle multi-rank memories in different ways: in some
 * drivers, one multi-rank memory stick is mapped as one entry, while, in
 * others, a single multi-rank memory stick would be mapped into several
 * entries. Currently, this function will allocate multiple struct dimm_info
 * on such scenarios, as grouping the multiple ranks require drivers change.
 *
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 * Returns:
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 *	On failure: NULL
 *	On success: struct mem_ctl_info pointer
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 */
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struct mem_ctl_info *edac_mc_alloc(unsigned mc_num,
				   unsigned n_layers,
				   struct edac_mc_layer *layers,
				   unsigned sz_pvt)
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{
	struct mem_ctl_info *mci;
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	struct edac_mc_layer *layer;
	struct csrow_info *csi, *csr;
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	struct rank_info *chi, *chp, *chan;
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	struct dimm_info *dimm;
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	u32 *ce_per_layer[EDAC_MAX_LAYERS], *ue_per_layer[EDAC_MAX_LAYERS];
	unsigned pos[EDAC_MAX_LAYERS];
	unsigned size, tot_dimms = 1, count = 1;
	unsigned tot_csrows = 1, tot_channels = 1, tot_errcount = 0;
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	void *pvt, *p, *ptr = NULL;
	int i, j, err, row, chn, n, len;
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	bool per_rank = false;

	BUG_ON(n_layers > EDAC_MAX_LAYERS || n_layers == 0);
	/*
	 * Calculate the total amount of dimms and csrows/cschannels while
	 * in the old API emulation mode
	 */
	for (i = 0; i < n_layers; i++) {
		tot_dimms *= layers[i].size;
		if (layers[i].is_virt_csrow)
			tot_csrows *= layers[i].size;
		else
			tot_channels *= layers[i].size;

		if (layers[i].type == EDAC_MC_LAYER_CHIP_SELECT)
			per_rank = true;
	}
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	/* Figure out the offsets of the various items from the start of an mc
	 * structure.  We want the alignment of each item to be at least as
	 * stringent as what the compiler would provide if we could simply
	 * hardcode everything into a single struct.
	 */
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	mci = edac_align_ptr(&ptr, sizeof(*mci), 1);
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	layer = edac_align_ptr(&ptr, sizeof(*layer), n_layers);
	csi = edac_align_ptr(&ptr, sizeof(*csi), tot_csrows);
	chi = edac_align_ptr(&ptr, sizeof(*chi), tot_csrows * tot_channels);
	dimm = edac_align_ptr(&ptr, sizeof(*dimm), tot_dimms);
	for (i = 0; i < n_layers; i++) {
		count *= layers[i].size;
		debugf4("%s: errcount layer %d size %d\n", __func__, i, count);
		ce_per_layer[i] = edac_align_ptr(&ptr, sizeof(u32), count);
		ue_per_layer[i] = edac_align_ptr(&ptr, sizeof(u32), count);
		tot_errcount += 2 * count;
	}

	debugf4("%s: allocating %d error counters\n", __func__, tot_errcount);
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	pvt = edac_align_ptr(&ptr, sz_pvt, 1);
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	size = ((unsigned long)pvt) + sz_pvt;
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	debugf1("%s(): allocating %u bytes for mci data (%d %s, %d csrows/channels)\n",
		__func__, size,
		tot_dimms,
		per_rank ? "ranks" : "dimms",
		tot_csrows * tot_channels);
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	mci = kzalloc(size, GFP_KERNEL);
	if (mci == NULL)
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		return NULL;

	/* Adjust pointers so they point within the memory we just allocated
	 * rather than an imaginary chunk of memory located at address 0.
	 */
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	layer = (struct edac_mc_layer *)(((char *)mci) + ((unsigned long)layer));
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	csi = (struct csrow_info *)(((char *)mci) + ((unsigned long)csi));
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	chi = (struct rank_info *)(((char *)mci) + ((unsigned long)chi));
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	dimm = (struct dimm_info *)(((char *)mci) + ((unsigned long)dimm));
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	for (i = 0; i < n_layers; i++) {
		mci->ce_per_layer[i] = (u32 *)((char *)mci + ((unsigned long)ce_per_layer[i]));
		mci->ue_per_layer[i] = (u32 *)((char *)mci + ((unsigned long)ue_per_layer[i]));
	}
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	pvt = sz_pvt ? (((char *)mci) + ((unsigned long)pvt)) : NULL;
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	/* setup index and various internal pointers */
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	mci->mc_idx = mc_num;
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	mci->csrows = csi;
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	mci->dimms  = dimm;
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	mci->tot_dimms = tot_dimms;
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	mci->pvt_info = pvt;
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	mci->n_layers = n_layers;
	mci->layers = layer;
	memcpy(mci->layers, layers, sizeof(*layer) * n_layers);
	mci->nr_csrows = tot_csrows;
	mci->num_cschannel = tot_channels;
	mci->mem_is_per_rank = per_rank;
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	/*
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	 * Fill the csrow struct
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	 */
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	for (row = 0; row < tot_csrows; row++) {
		csr = &csi[row];
		csr->csrow_idx = row;
		csr->mci = mci;
		csr->nr_channels = tot_channels;
		chp = &chi[row * tot_channels];
		csr->channels = chp;

		for (chn = 0; chn < tot_channels; chn++) {
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			chan = &chp[chn];
			chan->chan_idx = chn;
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			chan->csrow = csr;
		}
	}

	/*
	 * Fill the dimm struct
	 */
	memset(&pos, 0, sizeof(pos));
	row = 0;
	chn = 0;
	debugf4("%s: initializing %d %s\n", __func__, tot_dimms,
		per_rank ? "ranks" : "dimms");
	for (i = 0; i < tot_dimms; i++) {
		chan = &csi[row].channels[chn];
		dimm = EDAC_DIMM_PTR(layer, mci->dimms, n_layers,
			       pos[0], pos[1], pos[2]);
		dimm->mci = mci;

		debugf2("%s: %d: %s%zd (%d:%d:%d): row %d, chan %d\n", __func__,
			i, per_rank ? "rank" : "dimm", (dimm - mci->dimms),
			pos[0], pos[1], pos[2], row, chn);

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		/*
		 * Copy DIMM location and initialize it.
		 */
		len = sizeof(dimm->label);
		p = dimm->label;
		n = snprintf(p, len, "mc#%u", mc_num);
		p += n;
		len -= n;
		for (j = 0; j < n_layers; j++) {
			n = snprintf(p, len, "%s#%u",
				     edac_layer_name[layers[j].type],
				     pos[j]);
			p += n;
			len -= n;
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			dimm->location[j] = pos[j];

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			if (len <= 0)
				break;
		}

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		/* Link it to the csrows old API data */
		chan->dimm = dimm;
		dimm->csrow = row;
		dimm->cschannel = chn;

		/* Increment csrow location */
		row++;
		if (row == tot_csrows) {
			row = 0;
			chn++;
		}
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		/* Increment dimm location */
		for (j = n_layers - 1; j >= 0; j--) {
			pos[j]++;
			if (pos[j] < layers[j].size)
				break;
			pos[j] = 0;
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		}
	}

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	mci->op_state = OP_ALLOC;
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	INIT_LIST_HEAD(&mci->grp_kobj_list);
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	/*
	 * Initialize the 'root' kobj for the edac_mc controller
	 */
	err = edac_mc_register_sysfs_main_kobj(mci);
	if (err) {
		kfree(mci);
		return NULL;
	}

	/* at this point, the root kobj is valid, and in order to
	 * 'free' the object, then the function:
	 *      edac_mc_unregister_sysfs_main_kobj() must be called
	 * which will perform kobj unregistration and the actual free
	 * will occur during the kobject callback operation
	 */
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	return mci;
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}
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EXPORT_SYMBOL_GPL(edac_mc_alloc);
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/**
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 * edac_mc_free
 *	'Free' a previously allocated 'mci' structure
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 * @mci: pointer to a struct mem_ctl_info structure
 */
void edac_mc_free(struct mem_ctl_info *mci)
{
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	debugf1("%s()\n", __func__);

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	edac_mc_unregister_sysfs_main_kobj(mci);
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	/* free the mci instance memory here */
	kfree(mci);
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}
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EXPORT_SYMBOL_GPL(edac_mc_free);
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/**
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 * find_mci_by_dev
 *
 *	scan list of controllers looking for the one that manages
 *	the 'dev' device
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 * @dev: pointer to a struct device related with the MCI
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 */
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struct mem_ctl_info *find_mci_by_dev(struct device *dev)
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{
	struct mem_ctl_info *mci;
	struct list_head *item;

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	debugf3("%s()\n", __func__);
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	list_for_each(item, &mc_devices) {
		mci = list_entry(item, struct mem_ctl_info, link);

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		if (mci->pdev == dev)
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			return mci;
	}

	return NULL;
}
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EXPORT_SYMBOL_GPL(find_mci_by_dev);
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/*
 * handler for EDAC to check if NMI type handler has asserted interrupt
 */
static int edac_mc_assert_error_check_and_clear(void)
{
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	int old_state;
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	if (edac_op_state == EDAC_OPSTATE_POLL)
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		return 1;

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	old_state = edac_err_assert;
	edac_err_assert = 0;
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	return old_state;
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}

/*
 * edac_mc_workq_function
 *	performs the operation scheduled by a workq request
 */
static void edac_mc_workq_function(struct work_struct *work_req)
{
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	struct delayed_work *d_work = to_delayed_work(work_req);
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	struct mem_ctl_info *mci = to_edac_mem_ctl_work(d_work);

	mutex_lock(&mem_ctls_mutex);

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	/* if this control struct has movd to offline state, we are done */
	if (mci->op_state == OP_OFFLINE) {
		mutex_unlock(&mem_ctls_mutex);
		return;
	}

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	/* Only poll controllers that are running polled and have a check */
	if (edac_mc_assert_error_check_and_clear() && (mci->edac_check != NULL))
		mci->edac_check(mci);

	mutex_unlock(&mem_ctls_mutex);

	/* Reschedule */
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	queue_delayed_work(edac_workqueue, &mci->work,
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			msecs_to_jiffies(edac_mc_get_poll_msec()));
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}

/*
 * edac_mc_workq_setup
 *	initialize a workq item for this mci
 *	passing in the new delay period in msec
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 *
 *	locking model:
 *
 *		called with the mem_ctls_mutex held
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 */
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static void edac_mc_workq_setup(struct mem_ctl_info *mci, unsigned msec)
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{
	debugf0("%s()\n", __func__);

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	/* if this instance is not in the POLL state, then simply return */
	if (mci->op_state != OP_RUNNING_POLL)
		return;

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	INIT_DELAYED_WORK(&mci->work, edac_mc_workq_function);
	queue_delayed_work(edac_workqueue, &mci->work, msecs_to_jiffies(msec));
}

/*
 * edac_mc_workq_teardown
 *	stop the workq processing on this mci
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 *
 *	locking model:
 *
 *		called WITHOUT lock held
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 */
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static void edac_mc_workq_teardown(struct mem_ctl_info *mci)
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{
	int status;

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	if (mci->op_state != OP_RUNNING_POLL)
		return;

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	status = cancel_delayed_work(&mci->work);
	if (status == 0) {
		debugf0("%s() not canceled, flush the queue\n",
			__func__);
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		/* workq instance might be running, wait for it */
		flush_workqueue(edac_workqueue);
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	}
}

/*
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 * edac_mc_reset_delay_period(unsigned long value)
 *
 *	user space has updated our poll period value, need to
 *	reset our workq delays
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 */
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void edac_mc_reset_delay_period(int value)
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{
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	struct mem_ctl_info *mci;
	struct list_head *item;

	mutex_lock(&mem_ctls_mutex);

	/* scan the list and turn off all workq timers, doing so under lock
	 */
	list_for_each(item, &mc_devices) {
		mci = list_entry(item, struct mem_ctl_info, link);

		if (mci->op_state == OP_RUNNING_POLL)
			cancel_delayed_work(&mci->work);
	}

	mutex_unlock(&mem_ctls_mutex);
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	/* re-walk the list, and reset the poll delay */
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	mutex_lock(&mem_ctls_mutex);

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	list_for_each(item, &mc_devices) {
		mci = list_entry(item, struct mem_ctl_info, link);

		edac_mc_workq_setup(mci, (unsigned long) value);
	}
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	mutex_unlock(&mem_ctls_mutex);
}

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/* Return 0 on success, 1 on failure.
 * Before calling this function, caller must
 * assign a unique value to mci->mc_idx.
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 *
 *	locking model:
 *
 *		called with the mem_ctls_mutex lock held
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 */
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static int add_mc_to_global_list(struct mem_ctl_info *mci)
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{
	struct list_head *item, *insert_before;
	struct mem_ctl_info *p;

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	insert_before = &mc_devices;
A
Alan Cox 已提交
582

583
	p = find_mci_by_dev(mci->pdev);
584
	if (unlikely(p != NULL))
585
		goto fail0;
A
Alan Cox 已提交
586

587 588
	list_for_each(item, &mc_devices) {
		p = list_entry(item, struct mem_ctl_info, link);
A
Alan Cox 已提交
589

590 591 592
		if (p->mc_idx >= mci->mc_idx) {
			if (unlikely(p->mc_idx == mci->mc_idx))
				goto fail1;
A
Alan Cox 已提交
593

594 595
			insert_before = item;
			break;
A
Alan Cox 已提交
596 597 598 599
		}
	}

	list_add_tail_rcu(&mci->link, insert_before);
D
Dave Jiang 已提交
600
	atomic_inc(&edac_handlers);
A
Alan Cox 已提交
601
	return 0;
602

603
fail0:
604
	edac_printk(KERN_WARNING, EDAC_MC,
605
		"%s (%s) %s %s already assigned %d\n", dev_name(p->pdev),
606
		edac_dev_name(mci), p->mod_name, p->ctl_name, p->mc_idx);
607 608
	return 1;

609
fail1:
610
	edac_printk(KERN_WARNING, EDAC_MC,
611 612
		"bug in low-level driver: attempt to assign\n"
		"    duplicate mc_idx %d in %s()\n", p->mc_idx, __func__);
613
	return 1;
A
Alan Cox 已提交
614 615
}

D
Dave Peterson 已提交
616
static void del_mc_from_global_list(struct mem_ctl_info *mci)
617
{
D
Dave Jiang 已提交
618
	atomic_dec(&edac_handlers);
619
	list_del_rcu(&mci->link);
620 621 622 623 624 625

	/* these are for safe removal of devices from global list while
	 * NMI handlers may be traversing list
	 */
	synchronize_rcu();
	INIT_LIST_HEAD(&mci->link);
626 627
}

628 629 630 631 632 633 634 635
/**
 * edac_mc_find: Search for a mem_ctl_info structure whose index is 'idx'.
 *
 * If found, return a pointer to the structure.
 * Else return NULL.
 *
 * Caller must hold mem_ctls_mutex.
 */
636
struct mem_ctl_info *edac_mc_find(int idx)
637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655
{
	struct list_head *item;
	struct mem_ctl_info *mci;

	list_for_each(item, &mc_devices) {
		mci = list_entry(item, struct mem_ctl_info, link);

		if (mci->mc_idx >= idx) {
			if (mci->mc_idx == idx)
				return mci;

			break;
		}
	}

	return NULL;
}
EXPORT_SYMBOL(edac_mc_find);

A
Alan Cox 已提交
656
/**
657 658
 * edac_mc_add_mc: Insert the 'mci' structure into the mci global list and
 *                 create sysfs entries associated with mci structure
A
Alan Cox 已提交
659 660 661 662 663 664 665 666
 * @mci: pointer to the mci structure to be added to the list
 *
 * Return:
 *	0	Success
 *	!0	Failure
 */

/* FIXME - should a warning be printed if no error detection? correction? */
667
int edac_mc_add_mc(struct mem_ctl_info *mci)
A
Alan Cox 已提交
668
{
D
Dave Peterson 已提交
669
	debugf0("%s()\n", __func__);
670

A
Alan Cox 已提交
671 672 673
#ifdef CONFIG_EDAC_DEBUG
	if (edac_debug_level >= 3)
		edac_mc_dump_mci(mci);
D
Dave Peterson 已提交
674

A
Alan Cox 已提交
675 676 677 678 679
	if (edac_debug_level >= 4) {
		int i;

		for (i = 0; i < mci->nr_csrows; i++) {
			int j;
D
Dave Peterson 已提交
680

A
Alan Cox 已提交
681 682
			edac_mc_dump_csrow(&mci->csrows[i]);
			for (j = 0; j < mci->csrows[i].nr_channels; j++)
683
				edac_mc_dump_channel(&mci->csrows[i].
684
						channels[j]);
A
Alan Cox 已提交
685
		}
686 687
		for (i = 0; i < mci->tot_dimms; i++)
			edac_mc_dump_dimm(&mci->dimms[i]);
A
Alan Cox 已提交
688 689
	}
#endif
690
	mutex_lock(&mem_ctls_mutex);
A
Alan Cox 已提交
691 692

	if (add_mc_to_global_list(mci))
693
		goto fail0;
A
Alan Cox 已提交
694 695 696 697

	/* set load time so that error rate can be tracked */
	mci->start_time = jiffies;

698 699
	if (edac_create_sysfs_mci_device(mci)) {
		edac_mc_printk(mci, KERN_WARNING,
700
			"failed to create sysfs device\n");
701 702
		goto fail1;
	}
A
Alan Cox 已提交
703

704 705 706 707 708 709 710 711 712 713
	/* If there IS a check routine, then we are running POLLED */
	if (mci->edac_check != NULL) {
		/* This instance is NOW RUNNING */
		mci->op_state = OP_RUNNING_POLL;

		edac_mc_workq_setup(mci, edac_mc_get_poll_msec());
	} else {
		mci->op_state = OP_RUNNING_INTERRUPT;
	}

A
Alan Cox 已提交
714
	/* Report action taken */
715
	edac_mc_printk(mci, KERN_INFO, "Giving out device to '%s' '%s':"
716
		" DEV %s\n", mci->mod_name, mci->ctl_name, edac_dev_name(mci));
A
Alan Cox 已提交
717

718
	mutex_unlock(&mem_ctls_mutex);
719
	return 0;
A
Alan Cox 已提交
720

721
fail1:
722 723
	del_mc_from_global_list(mci);

724
fail0:
725
	mutex_unlock(&mem_ctls_mutex);
726
	return 1;
A
Alan Cox 已提交
727
}
728
EXPORT_SYMBOL_GPL(edac_mc_add_mc);
A
Alan Cox 已提交
729 730

/**
731 732
 * edac_mc_del_mc: Remove sysfs entries for specified mci structure and
 *                 remove mci structure from global list
733
 * @pdev: Pointer to 'struct device' representing mci structure to remove.
A
Alan Cox 已提交
734
 *
735
 * Return pointer to removed mci structure, or NULL if device not found.
A
Alan Cox 已提交
736
 */
737
struct mem_ctl_info *edac_mc_del_mc(struct device *dev)
A
Alan Cox 已提交
738
{
739
	struct mem_ctl_info *mci;
A
Alan Cox 已提交
740

741 742
	debugf0("%s()\n", __func__);

743
	mutex_lock(&mem_ctls_mutex);
744

745 746 747
	/* find the requested mci struct in the global list */
	mci = find_mci_by_dev(dev);
	if (mci == NULL) {
748
		mutex_unlock(&mem_ctls_mutex);
749 750 751
		return NULL;
	}

A
Alan Cox 已提交
752
	del_mc_from_global_list(mci);
753
	mutex_unlock(&mem_ctls_mutex);
754

755
	/* flush workq processes */
756
	edac_mc_workq_teardown(mci);
757 758 759 760 761

	/* marking MCI offline */
	mci->op_state = OP_OFFLINE;

	/* remove from sysfs */
762 763
	edac_remove_sysfs_mci_device(mci);

D
Dave Peterson 已提交
764
	edac_printk(KERN_INFO, EDAC_MC,
765
		"Removed device %d for %s %s: DEV %s\n", mci->mc_idx,
766
		mci->mod_name, mci->ctl_name, edac_dev_name(mci));
767

768
	return mci;
A
Alan Cox 已提交
769
}
770
EXPORT_SYMBOL_GPL(edac_mc_del_mc);
A
Alan Cox 已提交
771

772 773
static void edac_mc_scrub_block(unsigned long page, unsigned long offset,
				u32 size)
A
Alan Cox 已提交
774 775 776 777 778
{
	struct page *pg;
	void *virt_addr;
	unsigned long flags = 0;

D
Dave Peterson 已提交
779
	debugf3("%s()\n", __func__);
A
Alan Cox 已提交
780 781

	/* ECC error page was not in our memory. Ignore it. */
782
	if (!pfn_valid(page))
A
Alan Cox 已提交
783 784 785 786 787 788 789 790
		return;

	/* Find the actual page structure then map it and fix */
	pg = pfn_to_page(page);

	if (PageHighMem(pg))
		local_irq_save(flags);

791
	virt_addr = kmap_atomic(pg);
A
Alan Cox 已提交
792 793 794 795 796

	/* Perform architecture specific atomic scrub operation */
	atomic_scrub(virt_addr + offset, size);

	/* Unmap and complete */
797
	kunmap_atomic(virt_addr);
A
Alan Cox 已提交
798 799 800 801 802 803

	if (PageHighMem(pg))
		local_irq_restore(flags);
}

/* FIXME - should return -1 */
D
Dave Peterson 已提交
804
int edac_mc_find_csrow_by_page(struct mem_ctl_info *mci, unsigned long page)
A
Alan Cox 已提交
805 806
{
	struct csrow_info *csrows = mci->csrows;
807
	int row, i, j, n;
A
Alan Cox 已提交
808

D
Dave Peterson 已提交
809
	debugf1("MC%d: %s(): 0x%lx\n", mci->mc_idx, __func__, page);
A
Alan Cox 已提交
810 811 812 813
	row = -1;

	for (i = 0; i < mci->nr_csrows; i++) {
		struct csrow_info *csrow = &csrows[i];
814 815 816 817 818 819
		n = 0;
		for (j = 0; j < csrow->nr_channels; j++) {
			struct dimm_info *dimm = csrow->channels[j].dimm;
			n += dimm->nr_pages;
		}
		if (n == 0)
A
Alan Cox 已提交
820 821
			continue;

D
Dave Peterson 已提交
822 823 824 825
		debugf3("MC%d: %s(): first(0x%lx) page(0x%lx) last(0x%lx) "
			"mask(0x%lx)\n", mci->mc_idx, __func__,
			csrow->first_page, page, csrow->last_page,
			csrow->page_mask);
A
Alan Cox 已提交
826 827 828 829 830 831 832 833 834 835 836

		if ((page >= csrow->first_page) &&
		    (page <= csrow->last_page) &&
		    ((page & csrow->page_mask) ==
		     (csrow->first_page & csrow->page_mask))) {
			row = i;
			break;
		}
	}

	if (row == -1)
D
Dave Peterson 已提交
837
		edac_mc_printk(mci, KERN_ERR,
838 839
			"could not look up page error address %lx\n",
			(unsigned long)page);
A
Alan Cox 已提交
840 841 842

	return row;
}
843
EXPORT_SYMBOL_GPL(edac_mc_find_csrow_by_page);
A
Alan Cox 已提交
844

845 846 847 848 849 850 851 852 853 854 855
const char *edac_layer_name[] = {
	[EDAC_MC_LAYER_BRANCH] = "branch",
	[EDAC_MC_LAYER_CHANNEL] = "channel",
	[EDAC_MC_LAYER_SLOT] = "slot",
	[EDAC_MC_LAYER_CHIP_SELECT] = "csrow",
};
EXPORT_SYMBOL_GPL(edac_layer_name);

static void edac_inc_ce_error(struct mem_ctl_info *mci,
				    bool enable_per_layer_report,
				    const int pos[EDAC_MAX_LAYERS])
A
Alan Cox 已提交
856
{
857
	int i, index = 0;
A
Alan Cox 已提交
858

859
	mci->ce_mc++;
A
Alan Cox 已提交
860

861 862
	if (!enable_per_layer_report) {
		mci->ce_noinfo_count++;
A
Alan Cox 已提交
863 864
		return;
	}
D
Dave Peterson 已提交
865

866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882
	for (i = 0; i < mci->n_layers; i++) {
		if (pos[i] < 0)
			break;
		index += pos[i];
		mci->ce_per_layer[i][index]++;

		if (i < mci->n_layers - 1)
			index *= mci->layers[i + 1].size;
	}
}

static void edac_inc_ue_error(struct mem_ctl_info *mci,
				    bool enable_per_layer_report,
				    const int pos[EDAC_MAX_LAYERS])
{
	int i, index = 0;

883
	mci->ue_mc++;
884 885 886

	if (!enable_per_layer_report) {
		mci->ce_noinfo_count++;
A
Alan Cox 已提交
887 888 889
		return;
	}

890 891 892 893 894
	for (i = 0; i < mci->n_layers; i++) {
		if (pos[i] < 0)
			break;
		index += pos[i];
		mci->ue_per_layer[i][index]++;
895

896 897 898 899
		if (i < mci->n_layers - 1)
			index *= mci->layers[i + 1].size;
	}
}
A
Alan Cox 已提交
900

901 902 903 904 905 906 907 908 909 910
static void edac_ce_error(struct mem_ctl_info *mci,
			  const int pos[EDAC_MAX_LAYERS],
			  const char *msg,
			  const char *location,
			  const char *label,
			  const char *detail,
			  const char *other_detail,
			  const bool enable_per_layer_report,
			  const unsigned long page_frame_number,
			  const unsigned long offset_in_page,
911
			  long grain)
912 913 914 915 916 917
{
	unsigned long remapped_page;

	if (edac_mc_get_log_ce()) {
		if (other_detail && *other_detail)
			edac_mc_printk(mci, KERN_WARNING,
918
				       "CE %s on %s (%s %s - %s)\n",
919 920 921 922
				       msg, label, location,
				       detail, other_detail);
		else
			edac_mc_printk(mci, KERN_WARNING,
923
				       "CE %s on %s (%s %s)\n",
924 925 926 927
				       msg, label, location,
				       detail);
	}
	edac_inc_ce_error(mci, enable_per_layer_report, pos);
A
Alan Cox 已提交
928 929 930

	if (mci->scrub_mode & SCRUB_SW_SRC) {
		/*
931 932 933 934 935 936 937 938 939 940
			* Some memory controllers (called MCs below) can remap
			* memory so that it is still available at a different
			* address when PCI devices map into memory.
			* MC's that can't do this, lose the memory where PCI
			* devices are mapped. This mapping is MC-dependent
			* and so we call back into the MC driver for it to
			* map the MC page to a physical (CPU) page which can
			* then be mapped to a virtual page - which can then
			* be scrubbed.
			*/
A
Alan Cox 已提交
941
		remapped_page = mci->ctl_page_to_phys ?
942 943
			mci->ctl_page_to_phys(mci, page_frame_number) :
			page_frame_number;
A
Alan Cox 已提交
944

945 946
		edac_mc_scrub_block(remapped_page,
					offset_in_page, grain);
A
Alan Cox 已提交
947 948 949
	}
}

950 951 952 953 954 955 956 957
static void edac_ue_error(struct mem_ctl_info *mci,
			  const int pos[EDAC_MAX_LAYERS],
			  const char *msg,
			  const char *location,
			  const char *label,
			  const char *detail,
			  const char *other_detail,
			  const bool enable_per_layer_report)
A
Alan Cox 已提交
958
{
959 960 961
	if (edac_mc_get_log_ue()) {
		if (other_detail && *other_detail)
			edac_mc_printk(mci, KERN_WARNING,
962
				       "UE %s on %s (%s %s - %s)\n",
963 964 965 966
			               msg, label, location, detail,
				       other_detail);
		else
			edac_mc_printk(mci, KERN_WARNING,
967
				       "UE %s on %s (%s %s)\n",
968 969
			               msg, label, location, detail);
	}
D
Dave Peterson 已提交
970

971 972 973 974 975 976 977 978 979 980
	if (edac_mc_get_panic_on_ue()) {
		if (other_detail && *other_detail)
			panic("UE %s on %s (%s%s - %s)\n",
			      msg, label, location, detail, other_detail);
		else
			panic("UE %s on %s (%s%s)\n",
			      msg, label, location, detail);
	}

	edac_inc_ue_error(mci, enable_per_layer_report, pos);
A
Alan Cox 已提交
981 982
}

983
#define OTHER_LABEL " or "
984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004

/**
 * edac_mc_handle_error - reports a memory event to userspace
 *
 * @type:		severity of the error (CE/UE/Fatal)
 * @mci:		a struct mem_ctl_info pointer
 * @page_frame_number:	mem page where the error occurred
 * @offset_in_page:	offset of the error inside the page
 * @syndrome:		ECC syndrome
 * @top_layer:		Memory layer[0] position
 * @mid_layer:		Memory layer[1] position
 * @low_layer:		Memory layer[2] position
 * @msg:		Message meaningful to the end users that
 *			explains the event
 * @other_detail:	Technical details about the event that
 *			may help hardware manufacturers and
 *			EDAC developers to analyse the event
 * @arch_log:		Architecture-specific struct that can
 *			be used to add extended information to the
 *			tracepoint, like dumping MCE registers.
 */
1005 1006 1007 1008 1009
void edac_mc_handle_error(const enum hw_event_mc_err_type type,
			  struct mem_ctl_info *mci,
			  const unsigned long page_frame_number,
			  const unsigned long offset_in_page,
			  const unsigned long syndrome,
1010 1011 1012
			  const int top_layer,
			  const int mid_layer,
			  const int low_layer,
1013 1014
			  const char *msg,
			  const char *other_detail,
1015
			  const void *arch_log)
A
Alan Cox 已提交
1016
{
1017 1018 1019 1020 1021
	/* FIXME: too much for stack: move it to some pre-alocated area */
	char detail[80], location[80];
	char label[(EDAC_MC_LABEL_LEN + 1 + sizeof(OTHER_LABEL)) * mci->tot_dimms];
	char *p;
	int row = -1, chan = -1;
1022
	int pos[EDAC_MAX_LAYERS] = { top_layer, mid_layer, low_layer };
1023
	int i;
1024
	long grain;
1025
	bool enable_per_layer_report = false;
1026 1027
	u16 error_count;	/* FIXME: make it a parameter */
	u8 grain_bits;
A
Alan Cox 已提交
1028

D
Dave Peterson 已提交
1029
	debugf3("MC%d: %s()\n", mci->mc_idx, __func__);
A
Alan Cox 已提交
1030

1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057
	/*
	 * Check if the event report is consistent and if the memory
	 * location is known. If it is known, enable_per_layer_report will be
	 * true, the DIMM(s) label info will be filled and the per-layer
	 * error counters will be incremented.
	 */
	for (i = 0; i < mci->n_layers; i++) {
		if (pos[i] >= (int)mci->layers[i].size) {
			if (type == HW_EVENT_ERR_CORRECTED)
				p = "CE";
			else
				p = "UE";

			edac_mc_printk(mci, KERN_ERR,
				       "INTERNAL ERROR: %s value is out of range (%d >= %d)\n",
				       edac_layer_name[mci->layers[i].type],
				       pos[i], mci->layers[i].size);
			/*
			 * Instead of just returning it, let's use what's
			 * known about the error. The increment routines and
			 * the DIMM filter logic will do the right thing by
			 * pointing the likely damaged DIMMs.
			 */
			pos[i] = -1;
		}
		if (pos[i] >= 0)
			enable_per_layer_report = true;
A
Alan Cox 已提交
1058 1059
	}

1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075
	/*
	 * Get the dimm label/grain that applies to the match criteria.
	 * As the error algorithm may not be able to point to just one memory
	 * stick, the logic here will get all possible labels that could
	 * pottentially be affected by the error.
	 * On FB-DIMM memory controllers, for uncorrected errors, it is common
	 * to have only the MC channel and the MC dimm (also called "branch")
	 * but the channel is not known, as the memory is arranged in pairs,
	 * where each memory belongs to a separate channel within the same
	 * branch.
	 */
	grain = 0;
	p = label;
	*p = '\0';
	for (i = 0; i < mci->tot_dimms; i++) {
		struct dimm_info *dimm = &mci->dimms[i];
A
Alan Cox 已提交
1076

1077
		if (top_layer >= 0 && top_layer != dimm->location[0])
1078
			continue;
1079
		if (mid_layer >= 0 && mid_layer != dimm->location[1])
1080
			continue;
1081
		if (low_layer >= 0 && low_layer != dimm->location[2])
1082
			continue;
A
Alan Cox 已提交
1083

1084 1085 1086
		/* get the max grain, over the error match range */
		if (dimm->grain > grain)
			grain = dimm->grain;
1087

1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121
		/*
		 * If the error is memory-controller wide, there's no need to
		 * seek for the affected DIMMs because the whole
		 * channel/memory controller/...  may be affected.
		 * Also, don't show errors for empty DIMM slots.
		 */
		if (enable_per_layer_report && dimm->nr_pages) {
			if (p != label) {
				strcpy(p, OTHER_LABEL);
				p += strlen(OTHER_LABEL);
			}
			strcpy(p, dimm->label);
			p += strlen(p);
			*p = '\0';

			/*
			 * get csrow/channel of the DIMM, in order to allow
			 * incrementing the compat API counters
			 */
			debugf4("%s: %s csrows map: (%d,%d)\n",
				__func__,
				mci->mem_is_per_rank ? "rank" : "dimm",
				dimm->csrow, dimm->cschannel);

			if (row == -1)
				row = dimm->csrow;
			else if (row >= 0 && row != dimm->csrow)
				row = -2;

			if (chan == -1)
				chan = dimm->cschannel;
			else if (chan >= 0 && chan != dimm->cschannel)
				chan = -2;
		}
1122 1123
	}

1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139
	if (!enable_per_layer_report) {
		strcpy(label, "any memory");
	} else {
		debugf4("%s: csrow/channel to increment: (%d,%d)\n",
			__func__, row, chan);
		if (p == label)
			strcpy(label, "unknown memory");
		if (type == HW_EVENT_ERR_CORRECTED) {
			if (row >= 0) {
				mci->csrows[row].ce_count++;
				if (chan >= 0)
					mci->csrows[row].channels[chan].ce_count++;
			}
		} else
			if (row >= 0)
				mci->csrows[row].ue_count++;
1140 1141
	}

1142 1143 1144 1145 1146
	/* Fill the RAM location data */
	p = location;
	for (i = 0; i < mci->n_layers; i++) {
		if (pos[i] < 0)
			continue;
1147

1148 1149 1150
		p += sprintf(p, "%s:%d ",
			     edac_layer_name[mci->layers[i].type],
			     pos[i]);
1151
	}
1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162
	if (p > location)
		*(p - 1) = '\0';

	/* Report the error via the trace interface */

	error_count = 1;	/* FIXME: allow change it */
	grain_bits = fls_long(grain) + 1;
	trace_mc_event(type, msg, label, error_count,
		       mci->mc_idx, top_layer, mid_layer, low_layer,
		       PAGES_TO_MiB(page_frame_number) | offset_in_page,
		       grain_bits, syndrome, other_detail);
1163

1164 1165 1166
	/* Memory type dependent details about the error */
	if (type == HW_EVENT_ERR_CORRECTED) {
		snprintf(detail, sizeof(detail),
1167
			"page:0x%lx offset:0x%lx grain:%ld syndrome:0x%lx",
1168 1169 1170 1171 1172 1173 1174
			page_frame_number, offset_in_page,
			grain, syndrome);
		edac_ce_error(mci, pos, msg, location, label, detail,
			      other_detail, enable_per_layer_report,
			      page_frame_number, offset_in_page, grain);
	} else {
		snprintf(detail, sizeof(detail),
1175
			"page:0x%lx offset:0x%lx grain:%ld",
1176
			page_frame_number, offset_in_page, grain);
1177

1178 1179 1180
		edac_ue_error(mci, pos, msg, location, label, detail,
			      other_detail, enable_per_layer_report);
	}
1181
}
1182
EXPORT_SYMBOL_GPL(edac_mc_handle_error);