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path: root/drivers/edac/edac_mc.c
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Diffstat (limited to 'drivers/edac/edac_mc.c')
-rw-r--r--drivers/edac/edac_mc.c519
1 files changed, 243 insertions, 276 deletions
diff --git a/drivers/edac/edac_mc.c b/drivers/edac/edac_mc.c
index 7243b88f81d8..75ede27bdf6a 100644
--- a/drivers/edac/edac_mc.c
+++ b/drivers/edac/edac_mc.c
@@ -55,6 +55,11 @@ static LIST_HEAD(mc_devices);
*/
static const char *edac_mc_owner;
+static struct mem_ctl_info *error_desc_to_mci(struct edac_raw_error_desc *e)
+{
+ return container_of(e, struct mem_ctl_info, error_desc);
+}
+
int edac_get_report_status(void)
{
return edac_report;
@@ -278,6 +283,12 @@ void *edac_align_ptr(void **p, unsigned int size, int n_elems)
static void _edac_mc_free(struct mem_ctl_info *mci)
{
+ put_device(&mci->dev);
+}
+
+static void mci_release(struct device *dev)
+{
+ struct mem_ctl_info *mci = container_of(dev, struct mem_ctl_info, dev);
struct csrow_info *csr;
int i, chn, row;
@@ -305,103 +316,26 @@ static void _edac_mc_free(struct mem_ctl_info *mci)
kfree(mci);
}
-struct mem_ctl_info *edac_mc_alloc(unsigned int mc_num,
- unsigned int n_layers,
- struct edac_mc_layer *layers,
- unsigned int sz_pvt)
+static int edac_mc_alloc_csrows(struct mem_ctl_info *mci)
{
- struct mem_ctl_info *mci;
- struct edac_mc_layer *layer;
- struct csrow_info *csr;
- struct rank_info *chan;
- struct dimm_info *dimm;
- u32 *ce_per_layer[EDAC_MAX_LAYERS], *ue_per_layer[EDAC_MAX_LAYERS];
- unsigned int pos[EDAC_MAX_LAYERS];
- unsigned int idx, size, tot_dimms = 1, count = 1;
- unsigned int tot_csrows = 1, tot_channels = 1, tot_errcount = 0;
- void *pvt, *p, *ptr = NULL;
- int i, j, row, chn, n, len;
- bool per_rank = false;
-
- if (WARN_ON(n_layers > EDAC_MAX_LAYERS || n_layers == 0))
- return NULL;
-
- /*
- * Calculate the total amount of dimms and csrows/cschannels while
- * in the old API emulation mode
- */
- for (idx = 0; idx < n_layers; idx++) {
- tot_dimms *= layers[idx].size;
-
- if (layers[idx].is_virt_csrow)
- tot_csrows *= layers[idx].size;
- else
- tot_channels *= layers[idx].size;
-
- if (layers[idx].type == EDAC_MC_LAYER_CHIP_SELECT)
- per_rank = true;
- }
-
- /* 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.
- */
- mci = edac_align_ptr(&ptr, sizeof(*mci), 1);
- layer = edac_align_ptr(&ptr, sizeof(*layer), n_layers);
- for (i = 0; i < n_layers; i++) {
- count *= layers[i].size;
- edac_dbg(4, "errcount layer %d size %d\n", 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;
- }
-
- edac_dbg(4, "allocating %d error counters\n", tot_errcount);
- pvt = edac_align_ptr(&ptr, sz_pvt, 1);
- size = ((unsigned long)pvt) + sz_pvt;
-
- edac_dbg(1, "allocating %u bytes for mci data (%d %s, %d csrows/channels)\n",
- size,
- tot_dimms,
- per_rank ? "ranks" : "dimms",
- tot_csrows * tot_channels);
-
- mci = kzalloc(size, GFP_KERNEL);
- if (mci == NULL)
- return NULL;
-
- /* Adjust pointers so they point within the memory we just allocated
- * rather than an imaginary chunk of memory located at address 0.
- */
- layer = (struct edac_mc_layer *)(((char *)mci) + ((unsigned long)layer));
- 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]));
- }
- pvt = sz_pvt ? (((char *)mci) + ((unsigned long)pvt)) : NULL;
-
- /* setup index and various internal pointers */
- mci->mc_idx = mc_num;
- mci->tot_dimms = tot_dimms;
- mci->pvt_info = pvt;
- 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->csbased = per_rank;
+ unsigned int tot_channels = mci->num_cschannel;
+ unsigned int tot_csrows = mci->nr_csrows;
+ unsigned int row, chn;
/*
* Alocate and fill the csrow/channels structs
*/
mci->csrows = kcalloc(tot_csrows, sizeof(*mci->csrows), GFP_KERNEL);
if (!mci->csrows)
- goto error;
+ return -ENOMEM;
+
for (row = 0; row < tot_csrows; row++) {
+ struct csrow_info *csr;
+
csr = kzalloc(sizeof(**mci->csrows), GFP_KERNEL);
if (!csr)
- goto error;
+ return -ENOMEM;
+
mci->csrows[row] = csr;
csr->csrow_idx = row;
csr->mci = mci;
@@ -409,34 +343,51 @@ struct mem_ctl_info *edac_mc_alloc(unsigned int mc_num,
csr->channels = kcalloc(tot_channels, sizeof(*csr->channels),
GFP_KERNEL);
if (!csr->channels)
- goto error;
+ return -ENOMEM;
for (chn = 0; chn < tot_channels; chn++) {
+ struct rank_info *chan;
+
chan = kzalloc(sizeof(**csr->channels), GFP_KERNEL);
if (!chan)
- goto error;
+ return -ENOMEM;
+
csr->channels[chn] = chan;
chan->chan_idx = chn;
chan->csrow = csr;
}
}
+ return 0;
+}
+
+static int edac_mc_alloc_dimms(struct mem_ctl_info *mci)
+{
+ unsigned int pos[EDAC_MAX_LAYERS];
+ unsigned int row, chn, idx;
+ int layer;
+ void *p;
+
/*
* Allocate and fill the dimm structs
*/
- mci->dimms = kcalloc(tot_dimms, sizeof(*mci->dimms), GFP_KERNEL);
+ mci->dimms = kcalloc(mci->tot_dimms, sizeof(*mci->dimms), GFP_KERNEL);
if (!mci->dimms)
- goto error;
+ return -ENOMEM;
memset(&pos, 0, sizeof(pos));
row = 0;
chn = 0;
- for (idx = 0; idx < tot_dimms; idx++) {
+ for (idx = 0; idx < mci->tot_dimms; idx++) {
+ struct dimm_info *dimm;
+ struct rank_info *chan;
+ int n, len;
+
chan = mci->csrows[row]->channels[chn];
dimm = kzalloc(sizeof(**mci->dimms), GFP_KERNEL);
if (!dimm)
- goto error;
+ return -ENOMEM;
mci->dimms[idx] = dimm;
dimm->mci = mci;
dimm->idx = idx;
@@ -446,16 +397,16 @@ struct mem_ctl_info *edac_mc_alloc(unsigned int mc_num,
*/
len = sizeof(dimm->label);
p = dimm->label;
- n = snprintf(p, len, "mc#%u", mc_num);
+ n = snprintf(p, len, "mc#%u", mci->mc_idx);
p += n;
len -= n;
- for (j = 0; j < n_layers; j++) {
+ for (layer = 0; layer < mci->n_layers; layer++) {
n = snprintf(p, len, "%s#%u",
- edac_layer_name[layers[j].type],
- pos[j]);
+ edac_layer_name[mci->layers[layer].type],
+ pos[layer]);
p += n;
len -= n;
- dimm->location[j] = pos[j];
+ dimm->location[layer] = pos[layer];
if (len <= 0)
break;
@@ -467,29 +418,109 @@ struct mem_ctl_info *edac_mc_alloc(unsigned int mc_num,
dimm->cschannel = chn;
/* Increment csrow location */
- if (layers[0].is_virt_csrow) {
+ if (mci->layers[0].is_virt_csrow) {
chn++;
- if (chn == tot_channels) {
+ if (chn == mci->num_cschannel) {
chn = 0;
row++;
}
} else {
row++;
- if (row == tot_csrows) {
+ if (row == mci->nr_csrows) {
row = 0;
chn++;
}
}
/* Increment dimm location */
- for (j = n_layers - 1; j >= 0; j--) {
- pos[j]++;
- if (pos[j] < layers[j].size)
+ for (layer = mci->n_layers - 1; layer >= 0; layer--) {
+ pos[layer]++;
+ if (pos[layer] < mci->layers[layer].size)
break;
- pos[j] = 0;
+ pos[layer] = 0;
}
}
+ return 0;
+}
+
+struct mem_ctl_info *edac_mc_alloc(unsigned int mc_num,
+ unsigned int n_layers,
+ struct edac_mc_layer *layers,
+ unsigned int sz_pvt)
+{
+ struct mem_ctl_info *mci;
+ struct edac_mc_layer *layer;
+ unsigned int idx, size, tot_dimms = 1;
+ unsigned int tot_csrows = 1, tot_channels = 1;
+ void *pvt, *ptr = NULL;
+ bool per_rank = false;
+
+ if (WARN_ON(n_layers > EDAC_MAX_LAYERS || n_layers == 0))
+ return NULL;
+
+ /*
+ * Calculate the total amount of dimms and csrows/cschannels while
+ * in the old API emulation mode
+ */
+ for (idx = 0; idx < n_layers; idx++) {
+ tot_dimms *= layers[idx].size;
+
+ if (layers[idx].is_virt_csrow)
+ tot_csrows *= layers[idx].size;
+ else
+ tot_channels *= layers[idx].size;
+
+ if (layers[idx].type == EDAC_MC_LAYER_CHIP_SELECT)
+ per_rank = true;
+ }
+
+ /* 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.
+ */
+ mci = edac_align_ptr(&ptr, sizeof(*mci), 1);
+ layer = edac_align_ptr(&ptr, sizeof(*layer), n_layers);
+ pvt = edac_align_ptr(&ptr, sz_pvt, 1);
+ size = ((unsigned long)pvt) + sz_pvt;
+
+ edac_dbg(1, "allocating %u bytes for mci data (%d %s, %d csrows/channels)\n",
+ size,
+ tot_dimms,
+ per_rank ? "ranks" : "dimms",
+ tot_csrows * tot_channels);
+
+ mci = kzalloc(size, GFP_KERNEL);
+ if (mci == NULL)
+ return NULL;
+
+ mci->dev.release = mci_release;
+ device_initialize(&mci->dev);
+
+ /* Adjust pointers so they point within the memory we just allocated
+ * rather than an imaginary chunk of memory located at address 0.
+ */
+ layer = (struct edac_mc_layer *)(((char *)mci) + ((unsigned long)layer));
+ pvt = sz_pvt ? (((char *)mci) + ((unsigned long)pvt)) : NULL;
+
+ /* setup index and various internal pointers */
+ mci->mc_idx = mc_num;
+ mci->tot_dimms = tot_dimms;
+ mci->pvt_info = pvt;
+ 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->csbased = per_rank;
+
+ if (edac_mc_alloc_csrows(mci))
+ goto error;
+
+ if (edac_mc_alloc_dimms(mci))
+ goto error;
+
mci->op_state = OP_ALLOC;
return mci;
@@ -505,16 +536,7 @@ void edac_mc_free(struct mem_ctl_info *mci)
{
edac_dbg(1, "\n");
- /* If we're not yet registered with sysfs free only what was allocated
- * in edac_mc_alloc().
- */
- if (!device_is_registered(&mci->dev)) {
- _edac_mc_free(mci);
- return;
- }
-
- /* the mci instance is freed here, when the sysfs object is dropped */
- edac_unregister_sysfs(mci);
+ _edac_mc_free(mci);
}
EXPORT_SYMBOL_GPL(edac_mc_free);
@@ -908,88 +930,51 @@ const char *edac_layer_name[] = {
};
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],
- const u16 count)
+static void edac_inc_ce_error(struct edac_raw_error_desc *e)
{
- int i, index = 0;
-
- mci->ce_mc += count;
-
- if (!enable_per_layer_report) {
- mci->ce_noinfo_count += count;
- return;
- }
+ int pos[EDAC_MAX_LAYERS] = { e->top_layer, e->mid_layer, e->low_layer };
+ struct mem_ctl_info *mci = error_desc_to_mci(e);
+ struct dimm_info *dimm = edac_get_dimm(mci, pos[0], pos[1], pos[2]);
- for (i = 0; i < mci->n_layers; i++) {
- if (pos[i] < 0)
- break;
- index += pos[i];
- mci->ce_per_layer[i][index] += count;
+ mci->ce_mc += e->error_count;
- if (i < mci->n_layers - 1)
- index *= mci->layers[i + 1].size;
- }
+ if (dimm)
+ dimm->ce_count += e->error_count;
+ else
+ mci->ce_noinfo_count += e->error_count;
}
-static void edac_inc_ue_error(struct mem_ctl_info *mci,
- bool enable_per_layer_report,
- const int pos[EDAC_MAX_LAYERS],
- const u16 count)
+static void edac_inc_ue_error(struct edac_raw_error_desc *e)
{
- int i, index = 0;
-
- mci->ue_mc += count;
-
- if (!enable_per_layer_report) {
- mci->ue_noinfo_count += count;
- return;
- }
+ int pos[EDAC_MAX_LAYERS] = { e->top_layer, e->mid_layer, e->low_layer };
+ struct mem_ctl_info *mci = error_desc_to_mci(e);
+ struct dimm_info *dimm = edac_get_dimm(mci, pos[0], pos[1], pos[2]);
- for (i = 0; i < mci->n_layers; i++) {
- if (pos[i] < 0)
- break;
- index += pos[i];
- mci->ue_per_layer[i][index] += count;
+ mci->ue_mc += e->error_count;
- if (i < mci->n_layers - 1)
- index *= mci->layers[i + 1].size;
- }
+ if (dimm)
+ dimm->ue_count += e->error_count;
+ else
+ mci->ue_noinfo_count += e->error_count;
}
-static void edac_ce_error(struct mem_ctl_info *mci,
- const u16 error_count,
- 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,
- long grain)
+static void edac_ce_error(struct edac_raw_error_desc *e)
{
+ struct mem_ctl_info *mci = error_desc_to_mci(e);
unsigned long remapped_page;
- char *msg_aux = "";
-
- if (*msg)
- msg_aux = " ";
if (edac_mc_get_log_ce()) {
- if (other_detail && *other_detail)
- edac_mc_printk(mci, KERN_WARNING,
- "%d CE %s%son %s (%s %s - %s)\n",
- error_count, msg, msg_aux, label,
- location, detail, other_detail);
- else
- edac_mc_printk(mci, KERN_WARNING,
- "%d CE %s%son %s (%s %s)\n",
- error_count, msg, msg_aux, label,
- location, detail);
+ edac_mc_printk(mci, KERN_WARNING,
+ "%d CE %s%son %s (%s page:0x%lx offset:0x%lx grain:%ld syndrome:0x%lx%s%s)\n",
+ e->error_count, e->msg,
+ *e->msg ? " " : "",
+ e->label, e->location, e->page_frame_number, e->offset_in_page,
+ e->grain, e->syndrome,
+ *e->other_detail ? " - " : "",
+ e->other_detail);
}
- edac_inc_ce_error(mci, enable_per_layer_report, pos, error_count);
+
+ edac_inc_ce_error(e);
if (mci->scrub_mode == SCRUB_SW_SRC) {
/*
@@ -1004,60 +989,64 @@ static void edac_ce_error(struct mem_ctl_info *mci,
* be scrubbed.
*/
remapped_page = mci->ctl_page_to_phys ?
- mci->ctl_page_to_phys(mci, page_frame_number) :
- page_frame_number;
+ mci->ctl_page_to_phys(mci, e->page_frame_number) :
+ e->page_frame_number;
- edac_mc_scrub_block(remapped_page,
- offset_in_page, grain);
+ edac_mc_scrub_block(remapped_page, e->offset_in_page, e->grain);
}
}
-static void edac_ue_error(struct mem_ctl_info *mci,
- const u16 error_count,
- 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)
+static void edac_ue_error(struct edac_raw_error_desc *e)
{
- char *msg_aux = "";
-
- if (*msg)
- msg_aux = " ";
+ struct mem_ctl_info *mci = error_desc_to_mci(e);
if (edac_mc_get_log_ue()) {
- if (other_detail && *other_detail)
- edac_mc_printk(mci, KERN_WARNING,
- "%d UE %s%son %s (%s %s - %s)\n",
- error_count, msg, msg_aux, label,
- location, detail, other_detail);
- else
- edac_mc_printk(mci, KERN_WARNING,
- "%d UE %s%son %s (%s %s)\n",
- error_count, msg, msg_aux, label,
- location, detail);
+ edac_mc_printk(mci, KERN_WARNING,
+ "%d UE %s%son %s (%s page:0x%lx offset:0x%lx grain:%ld%s%s)\n",
+ e->error_count, e->msg,
+ *e->msg ? " " : "",
+ e->label, e->location, e->page_frame_number, e->offset_in_page,
+ e->grain,
+ *e->other_detail ? " - " : "",
+ e->other_detail);
}
if (edac_mc_get_panic_on_ue()) {
- if (other_detail && *other_detail)
- panic("UE %s%son %s (%s%s - %s)\n",
- msg, msg_aux, label, location, detail, other_detail);
- else
- panic("UE %s%son %s (%s%s)\n",
- msg, msg_aux, label, location, detail);
+ panic("UE %s%son %s (%s page:0x%lx offset:0x%lx grain:%ld%s%s)\n",
+ e->msg,
+ *e->msg ? " " : "",
+ e->label, e->location, e->page_frame_number, e->offset_in_page,
+ e->grain,
+ *e->other_detail ? " - " : "",
+ e->other_detail);
}
- edac_inc_ue_error(mci, enable_per_layer_report, pos, error_count);
+ edac_inc_ue_error(e);
}
-void edac_raw_mc_handle_error(const enum hw_event_mc_err_type type,
- struct mem_ctl_info *mci,
- struct edac_raw_error_desc *e)
+static void edac_inc_csrow(struct edac_raw_error_desc *e, int row, int chan)
{
- char detail[80];
- int pos[EDAC_MAX_LAYERS] = { e->top_layer, e->mid_layer, e->low_layer };
+ struct mem_ctl_info *mci = error_desc_to_mci(e);
+ enum hw_event_mc_err_type type = e->type;
+ u16 count = e->error_count;
+
+ if (row < 0)
+ return;
+
+ edac_dbg(4, "csrow/channel to increment: (%d,%d)\n", row, chan);
+
+ if (type == HW_EVENT_ERR_CORRECTED) {
+ mci->csrows[row]->ce_count += count;
+ if (chan >= 0)
+ mci->csrows[row]->channels[chan]->ce_count += count;
+ } else {
+ mci->csrows[row]->ue_count += count;
+ }
+}
+
+void edac_raw_mc_handle_error(struct edac_raw_error_desc *e)
+{
+ struct mem_ctl_info *mci = error_desc_to_mci(e);
u8 grain_bits;
/* Sanity-check driver-supplied grain value. */
@@ -1068,31 +1057,16 @@ void edac_raw_mc_handle_error(const enum hw_event_mc_err_type type,
/* Report the error via the trace interface */
if (IS_ENABLED(CONFIG_RAS))
- trace_mc_event(type, e->msg, e->label, e->error_count,
+ trace_mc_event(e->type, e->msg, e->label, e->error_count,
mci->mc_idx, e->top_layer, e->mid_layer,
e->low_layer,
(e->page_frame_number << PAGE_SHIFT) | e->offset_in_page,
grain_bits, e->syndrome, e->other_detail);
- /* Memory type dependent details about the error */
- if (type == HW_EVENT_ERR_CORRECTED) {
- snprintf(detail, sizeof(detail),
- "page:0x%lx offset:0x%lx grain:%ld syndrome:0x%lx",
- e->page_frame_number, e->offset_in_page,
- e->grain, e->syndrome);
- edac_ce_error(mci, e->error_count, pos, e->msg, e->location, e->label,
- detail, e->other_detail, e->enable_per_layer_report,
- e->page_frame_number, e->offset_in_page, e->grain);
- } else {
- snprintf(detail, sizeof(detail),
- "page:0x%lx offset:0x%lx grain:%ld",
- e->page_frame_number, e->offset_in_page, e->grain);
-
- edac_ue_error(mci, e->error_count, pos, e->msg, e->location, e->label,
- detail, e->other_detail, e->enable_per_layer_report);
- }
-
-
+ if (e->type == HW_EVENT_ERR_CORRECTED)
+ edac_ce_error(e);
+ else
+ edac_ue_error(e);
}
EXPORT_SYMBOL_GPL(edac_raw_mc_handle_error);
@@ -1114,25 +1088,27 @@ void edac_mc_handle_error(const enum hw_event_mc_err_type type,
int pos[EDAC_MAX_LAYERS] = { top_layer, mid_layer, low_layer };
int i, n_labels = 0;
struct edac_raw_error_desc *e = &mci->error_desc;
+ bool any_memory = true;
edac_dbg(3, "MC%d\n", mci->mc_idx);
/* Fills the error report buffer */
memset(e, 0, sizeof (*e));
e->error_count = error_count;
+ e->type = type;
e->top_layer = top_layer;
e->mid_layer = mid_layer;
e->low_layer = low_layer;
e->page_frame_number = page_frame_number;
e->offset_in_page = offset_in_page;
e->syndrome = syndrome;
- e->msg = msg;
- e->other_detail = other_detail;
+ /* need valid strings here for both: */
+ e->msg = msg ?: "";
+ e->other_detail = other_detail ?: "";
/*
- * 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
+ * Check if the event report is consistent and if the memory location is
+ * known. If it is, the DIMM(s) label info will be filled and the DIMM's
* error counters will be incremented.
*/
for (i = 0; i < mci->n_layers; i++) {
@@ -1151,7 +1127,7 @@ void edac_mc_handle_error(const enum hw_event_mc_err_type type,
pos[i] = -1;
}
if (pos[i] >= 0)
- e->enable_per_layer_report = true;
+ any_memory = false;
}
/*
@@ -1182,24 +1158,25 @@ void edac_mc_handle_error(const enum hw_event_mc_err_type type,
/*
* 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.
+ * seek for the affected DIMMs because the whole channel/memory
+ * controller/... may be affected. Also, don't show errors for
+ * empty DIMM slots.
*/
- if (!e->enable_per_layer_report || !dimm->nr_pages)
+ if (!dimm->nr_pages)
continue;
- if (n_labels >= EDAC_MAX_LABELS) {
- e->enable_per_layer_report = false;
- break;
- }
n_labels++;
- if (p != e->label) {
- strcpy(p, OTHER_LABEL);
- p += strlen(OTHER_LABEL);
+ if (n_labels > EDAC_MAX_LABELS) {
+ p = e->label;
+ *p = '\0';
+ } else {
+ if (p != e->label) {
+ strcpy(p, OTHER_LABEL);
+ p += strlen(OTHER_LABEL);
+ }
+ strcpy(p, dimm->label);
+ p += strlen(p);
}
- strcpy(p, dimm->label);
- p += strlen(p);
/*
* get csrow/channel of the DIMM, in order to allow
@@ -1219,22 +1196,12 @@ void edac_mc_handle_error(const enum hw_event_mc_err_type type,
chan = -2;
}
- if (!e->enable_per_layer_report) {
+ if (any_memory)
strcpy(e->label, "any memory");
- } else {
- edac_dbg(4, "csrow/channel to increment: (%d,%d)\n", row, chan);
- if (p == e->label)
- strcpy(e->label, "unknown memory");
- if (type == HW_EVENT_ERR_CORRECTED) {
- if (row >= 0) {
- mci->csrows[row]->ce_count += error_count;
- if (chan >= 0)
- mci->csrows[row]->channels[chan]->ce_count += error_count;
- }
- } else
- if (row >= 0)
- mci->csrows[row]->ue_count += error_count;
- }
+ else if (!*e->label)
+ strcpy(e->label, "unknown memory");
+
+ edac_inc_csrow(e, row, chan);
/* Fill the RAM location data */
p = e->location;
@@ -1250,6 +1217,6 @@ void edac_mc_handle_error(const enum hw_event_mc_err_type type,
if (p > e->location)
*(p - 1) = '\0';
- edac_raw_mc_handle_error(type, mci, e);
+ edac_raw_mc_handle_error(e);
}
EXPORT_SYMBOL_GPL(edac_mc_handle_error);