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@@ -31,6 +31,10 @@
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static DEFINE_PER_CPU(int, mce_nest_count);
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static DEFINE_PER_CPU(struct machine_check_event[MAX_MC_EVT], mce_event);
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+/* Queue for delayed MCE events. */
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+static DEFINE_PER_CPU(int, mce_queue_count);
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+static DEFINE_PER_CPU(struct machine_check_event[MAX_MC_EVT], mce_event_queue);
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+
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static void mce_set_error_info(struct machine_check_event *mce,
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struct mce_error_info *mce_err)
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{
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@@ -162,3 +166,153 @@ void release_mce_event(void)
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{
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get_mce_event(NULL, true);
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}
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+
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+/*
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+ * Queue up the MCE event which then can be handled later.
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+ */
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+void machine_check_queue_event(void)
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+{
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+ int index;
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+ struct machine_check_event evt;
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+
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+ if (!get_mce_event(&evt, MCE_EVENT_RELEASE))
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+ return;
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+
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+ index = __get_cpu_var(mce_queue_count)++;
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+ /* If queue is full, just return for now. */
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+ if (index >= MAX_MC_EVT) {
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+ __get_cpu_var(mce_queue_count)--;
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+ return;
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+ }
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+ __get_cpu_var(mce_event_queue[index]) = evt;
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+}
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+
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+/*
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+ * process pending MCE event from the mce event queue. This function will be
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+ * called during syscall exit.
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+ */
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+void machine_check_process_queued_event(void)
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+{
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+ int index;
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+
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+ preempt_disable();
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+ /*
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+ * For now just print it to console.
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+ * TODO: log this error event to FSP or nvram.
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+ */
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+ while (__get_cpu_var(mce_queue_count) > 0) {
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+ index = __get_cpu_var(mce_queue_count) - 1;
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+ machine_check_print_event_info(
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+ &__get_cpu_var(mce_event_queue[index]));
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+ __get_cpu_var(mce_queue_count)--;
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+ }
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+ preempt_enable();
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+}
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+
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+void machine_check_print_event_info(struct machine_check_event *evt)
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+{
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+ const char *level, *sevstr, *subtype;
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+ static const char *mc_ue_types[] = {
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+ "Indeterminate",
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+ "Instruction fetch",
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+ "Page table walk ifetch",
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+ "Load/Store",
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+ "Page table walk Load/Store",
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+ };
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+ static const char *mc_slb_types[] = {
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+ "Indeterminate",
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+ "Parity",
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+ "Multihit",
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+ };
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+ static const char *mc_erat_types[] = {
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+ "Indeterminate",
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+ "Parity",
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+ "Multihit",
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+ };
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+ static const char *mc_tlb_types[] = {
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+ "Indeterminate",
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+ "Parity",
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+ "Multihit",
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+ };
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+
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+ /* Print things out */
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+ if (evt->version != MCE_V1) {
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+ pr_err("Machine Check Exception, Unknown event version %d !\n",
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+ evt->version);
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+ return;
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+ }
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+ switch (evt->severity) {
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+ case MCE_SEV_NO_ERROR:
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+ level = KERN_INFO;
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+ sevstr = "Harmless";
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+ break;
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+ case MCE_SEV_WARNING:
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+ level = KERN_WARNING;
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+ sevstr = "";
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+ break;
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+ case MCE_SEV_ERROR_SYNC:
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+ level = KERN_ERR;
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+ sevstr = "Severe";
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+ break;
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+ case MCE_SEV_FATAL:
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+ default:
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+ level = KERN_ERR;
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+ sevstr = "Fatal";
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+ break;
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+ }
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+
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+ printk("%s%s Machine check interrupt [%s]\n", level, sevstr,
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+ evt->disposition == MCE_DISPOSITION_RECOVERED ?
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+ "Recovered" : "[Not recovered");
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+ printk("%s Initiator: %s\n", level,
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+ evt->initiator == MCE_INITIATOR_CPU ? "CPU" : "Unknown");
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+ switch (evt->error_type) {
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+ case MCE_ERROR_TYPE_UE:
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+ subtype = evt->u.ue_error.ue_error_type <
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+ ARRAY_SIZE(mc_ue_types) ?
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+ mc_ue_types[evt->u.ue_error.ue_error_type]
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+ : "Unknown";
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+ printk("%s Error type: UE [%s]\n", level, subtype);
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+ if (evt->u.ue_error.effective_address_provided)
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+ printk("%s Effective address: %016llx\n",
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+ level, evt->u.ue_error.effective_address);
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+ if (evt->u.ue_error.physical_address_provided)
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+ printk("%s Physial address: %016llx\n",
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+ level, evt->u.ue_error.physical_address);
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+ break;
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+ case MCE_ERROR_TYPE_SLB:
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+ subtype = evt->u.slb_error.slb_error_type <
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+ ARRAY_SIZE(mc_slb_types) ?
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+ mc_slb_types[evt->u.slb_error.slb_error_type]
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+ : "Unknown";
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+ printk("%s Error type: SLB [%s]\n", level, subtype);
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+ if (evt->u.slb_error.effective_address_provided)
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+ printk("%s Effective address: %016llx\n",
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+ level, evt->u.slb_error.effective_address);
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+ break;
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+ case MCE_ERROR_TYPE_ERAT:
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+ subtype = evt->u.erat_error.erat_error_type <
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+ ARRAY_SIZE(mc_erat_types) ?
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+ mc_erat_types[evt->u.erat_error.erat_error_type]
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+ : "Unknown";
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+ printk("%s Error type: ERAT [%s]\n", level, subtype);
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+ if (evt->u.erat_error.effective_address_provided)
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+ printk("%s Effective address: %016llx\n",
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+ level, evt->u.erat_error.effective_address);
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+ break;
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+ case MCE_ERROR_TYPE_TLB:
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+ subtype = evt->u.tlb_error.tlb_error_type <
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+ ARRAY_SIZE(mc_tlb_types) ?
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+ mc_tlb_types[evt->u.tlb_error.tlb_error_type]
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+ : "Unknown";
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+ printk("%s Error type: TLB [%s]\n", level, subtype);
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+ if (evt->u.tlb_error.effective_address_provided)
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+ printk("%s Effective address: %016llx\n",
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+ level, evt->u.tlb_error.effective_address);
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+ break;
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+ default:
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+ case MCE_ERROR_TYPE_UNKNOWN:
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+ printk("%s Error type: Unknown\n", level);
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+ break;
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+ }
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+}
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