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@@ -376,38 +376,42 @@ static void uv_nmi_wait(int master)
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atomic_read(&uv_nmi_cpus_in_nmi), num_online_cpus());
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}
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/* Dump Instruction Pointer header */
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static void uv_nmi_dump_cpu_ip_hdr(void)
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{
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printk(KERN_DEFAULT
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"\nUV: %4s %6s %-32s %s (Note: PID 0 not listed)\n",
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pr_info("\nUV: %4s %6s %-32s %s (Note: PID 0 not listed)\n",
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"CPU", "PID", "COMMAND", "IP");
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}
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/* Dump Instruction Pointer info */
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static void uv_nmi_dump_cpu_ip(int cpu, struct pt_regs *regs)
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{
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printk(KERN_DEFAULT "UV: %4d %6d %-32.32s ",
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cpu, current->pid, current->comm);
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pr_info("UV: %4d %6d %-32.32s ", cpu, current->pid, current->comm);
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printk_address(regs->ip);
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}
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/* Dump this cpu's state */
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/*
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* Dump this CPU's state. If action was set to "kdump" and the crash_kexec
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* failed, then we provide "dump" as an alternate action. Action "dump" now
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* also includes the show "ips" (instruction pointers) action whereas the
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* action "ips" only displays instruction pointers for the non-idle CPU's.
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* This is an abbreviated form of the "ps" command.
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*/
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static void uv_nmi_dump_state_cpu(int cpu, struct pt_regs *regs)
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{
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const char *dots = " ................................. ";
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if (uv_nmi_action_is("ips")) {
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if (cpu == 0)
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uv_nmi_dump_cpu_ip_hdr();
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if (cpu == 0)
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uv_nmi_dump_cpu_ip_hdr();
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if (current->pid != 0)
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uv_nmi_dump_cpu_ip(cpu, regs);
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if (current->pid != 0 || !uv_nmi_action_is("ips"))
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uv_nmi_dump_cpu_ip(cpu, regs);
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} else if (uv_nmi_action_is("dump")) {
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printk(KERN_DEFAULT
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"UV:%sNMI process trace for CPU %d\n", dots, cpu);
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if (uv_nmi_action_is("dump")) {
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pr_info("UV:%sNMI process trace for CPU %d\n", dots, cpu);
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show_regs(regs);
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}
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this_cpu_write(uv_cpu_nmi.state, UV_NMI_STATE_DUMP_DONE);
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}
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@@ -469,8 +473,7 @@ static void uv_nmi_dump_state(int cpu, struct pt_regs *regs, int master)
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uv_nmi_trigger_dump(tcpu);
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}
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if (ignored)
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printk(KERN_DEFAULT "UV: %d CPUs ignored NMI\n",
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ignored);
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pr_alert("UV: %d CPUs ignored NMI\n", ignored);
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console_loglevel = saved_console_loglevel;
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pr_alert("UV: process trace complete\n");
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@@ -492,8 +495,9 @@ static void uv_nmi_touch_watchdogs(void)
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touch_nmi_watchdog();
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}
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#if defined(CONFIG_KEXEC_CORE)
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static atomic_t uv_nmi_kexec_failed;
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#if defined(CONFIG_KEXEC_CORE)
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static void uv_nmi_kdump(int cpu, int master, struct pt_regs *regs)
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{
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/* Call crash to dump system state */
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@@ -502,10 +506,9 @@ static void uv_nmi_kdump(int cpu, int master, struct pt_regs *regs)
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crash_kexec(regs);
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pr_emerg("UV: crash_kexec unexpectedly returned, ");
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atomic_set(&uv_nmi_kexec_failed, 1);
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if (!kexec_crash_image) {
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pr_cont("crash kernel not loaded\n");
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atomic_set(&uv_nmi_kexec_failed, 1);
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uv_nmi_sync_exit(1);
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return;
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}
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pr_cont("kexec busy, stalling cpus while waiting\n");
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@@ -514,9 +517,6 @@ static void uv_nmi_kdump(int cpu, int master, struct pt_regs *regs)
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/* If crash exec fails the slaves should return, otherwise stall */
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while (atomic_read(&uv_nmi_kexec_failed) == 0)
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mdelay(10);
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/* Crash kernel most likely not loaded, return in an orderly fashion */
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uv_nmi_sync_exit(0);
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}
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#else /* !CONFIG_KEXEC_CORE */
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@@ -524,6 +524,7 @@ static inline void uv_nmi_kdump(int cpu, int master, struct pt_regs *regs)
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{
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if (master)
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pr_err("UV: NMI kdump: KEXEC not supported in this kernel\n");
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atomic_set(&uv_nmi_kexec_failed, 1);
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}
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#endif /* !CONFIG_KEXEC_CORE */
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@@ -613,9 +614,14 @@ int uv_handle_nmi(unsigned int reason, struct pt_regs *regs)
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master = (atomic_read(&uv_nmi_cpu) == cpu);
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/* If NMI action is "kdump", then attempt to do it */
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if (uv_nmi_action_is("kdump"))
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if (uv_nmi_action_is("kdump")) {
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uv_nmi_kdump(cpu, master, regs);
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/* Unexpected return, revert action to "dump" */
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if (master)
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strncpy(uv_nmi_action, "dump", strlen(uv_nmi_action));
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}
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/* Pause as all cpus enter the NMI handler */
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uv_nmi_wait(master);
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@@ -640,6 +646,7 @@ int uv_handle_nmi(unsigned int reason, struct pt_regs *regs)
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atomic_set(&uv_nmi_cpus_in_nmi, -1);
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atomic_set(&uv_nmi_cpu, -1);
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atomic_set(&uv_in_nmi, 0);
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atomic_set(&uv_nmi_kexec_failed, 0);
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}
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uv_nmi_touch_watchdogs();
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