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x86/mce: Check for faults tagged in EXTABLE_CLASS_FAULT exception table entries
Extend the severity checking code to add a new context IN_KERN_RECOV which is used to indicate that the machine check was triggered by code in the kernel tagged with _ASM_EXTABLE_FAULT() so that the ex_handler_fault() handler will provide the fixup code with the trap number. Major re-work to the tail code in do_machine_check() to make all this readable/maintainable. One functional change is that tolerant=3 no longer stops recovery actions. Revert to only skipping sending SIGBUS to the current process. Signed-off-by: Tony Luck <tony.luck@intel.com> Reviewed-by: Borislav Petkov <bp@suse.de> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Link: http://lkml.kernel.org/r/89d243d05a7943bb187d1074bb30d9c4f482d5f5.1455732970.git.tony.luck@intel.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
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@ -14,6 +14,7 @@
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#include <linux/init.h>
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#include <linux/debugfs.h>
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#include <asm/mce.h>
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#include <asm/uaccess.h>
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#include "mce-internal.h"
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@ -29,7 +30,7 @@
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* panic situations)
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*/
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enum context { IN_KERNEL = 1, IN_USER = 2 };
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enum context { IN_KERNEL = 1, IN_USER = 2, IN_KERNEL_RECOV = 3 };
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enum ser { SER_REQUIRED = 1, NO_SER = 2 };
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enum exception { EXCP_CONTEXT = 1, NO_EXCP = 2 };
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@ -48,6 +49,7 @@ static struct severity {
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#define MCESEV(s, m, c...) { .sev = MCE_ ## s ## _SEVERITY, .msg = m, ## c }
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#define KERNEL .context = IN_KERNEL
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#define USER .context = IN_USER
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#define KERNEL_RECOV .context = IN_KERNEL_RECOV
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#define SER .ser = SER_REQUIRED
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#define NOSER .ser = NO_SER
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#define EXCP .excp = EXCP_CONTEXT
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@ -86,6 +88,10 @@ static struct severity {
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PANIC, "In kernel and no restart IP",
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EXCP, KERNEL, MCGMASK(MCG_STATUS_RIPV, 0)
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),
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MCESEV(
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PANIC, "In kernel and no restart IP",
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EXCP, KERNEL_RECOV, MCGMASK(MCG_STATUS_RIPV, 0)
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),
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MCESEV(
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DEFERRED, "Deferred error",
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NOSER, MASK(MCI_STATUS_UC|MCI_STATUS_DEFERRED|MCI_STATUS_POISON, MCI_STATUS_DEFERRED)
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@ -122,6 +128,11 @@ static struct severity {
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SER, MASK(MCI_STATUS_OVER|MCI_UC_SAR|MCI_ADDR, MCI_UC_SAR|MCI_ADDR),
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MCGMASK(MCG_STATUS_RIPV|MCG_STATUS_EIPV, MCG_STATUS_RIPV)
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),
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MCESEV(
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AR, "Action required: data load in error recoverable area of kernel",
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SER, MASK(MCI_STATUS_OVER|MCI_UC_SAR|MCI_ADDR|MCACOD, MCI_UC_SAR|MCI_ADDR|MCACOD_DATA),
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KERNEL_RECOV
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),
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MCESEV(
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AR, "Action required: data load error in a user process",
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SER, MASK(MCI_STATUS_OVER|MCI_UC_SAR|MCI_ADDR|MCACOD, MCI_UC_SAR|MCI_ADDR|MCACOD_DATA),
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@ -170,6 +181,9 @@ static struct severity {
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) /* always matches. keep at end */
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};
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#define mc_recoverable(mcg) (((mcg) & (MCG_STATUS_RIPV|MCG_STATUS_EIPV)) == \
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(MCG_STATUS_RIPV|MCG_STATUS_EIPV))
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/*
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* If mcgstatus indicated that ip/cs on the stack were
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* no good, then "m->cs" will be zero and we will have
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@ -183,7 +197,11 @@ static struct severity {
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*/
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static int error_context(struct mce *m)
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{
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return ((m->cs & 3) == 3) ? IN_USER : IN_KERNEL;
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if ((m->cs & 3) == 3)
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return IN_USER;
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if (mc_recoverable(m->mcgstatus) && ex_has_fault_handler(m->ip))
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return IN_KERNEL_RECOV;
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return IN_KERNEL;
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}
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/*
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@ -961,6 +961,20 @@ static void mce_clear_state(unsigned long *toclear)
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}
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}
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static int do_memory_failure(struct mce *m)
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{
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int flags = MF_ACTION_REQUIRED;
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int ret;
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pr_err("Uncorrected hardware memory error in user-access at %llx", m->addr);
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if (!(m->mcgstatus & MCG_STATUS_RIPV))
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flags |= MF_MUST_KILL;
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ret = memory_failure(m->addr >> PAGE_SHIFT, MCE_VECTOR, flags);
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if (ret)
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pr_err("Memory error not recovered");
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return ret;
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}
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/*
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* The actual machine check handler. This only handles real
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* exceptions when something got corrupted coming in through int 18.
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@ -998,8 +1012,6 @@ void do_machine_check(struct pt_regs *regs, long error_code)
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DECLARE_BITMAP(toclear, MAX_NR_BANKS);
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DECLARE_BITMAP(valid_banks, MAX_NR_BANKS);
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char *msg = "Unknown";
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u64 recover_paddr = ~0ull;
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int flags = MF_ACTION_REQUIRED;
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int lmce = 0;
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/* If this CPU is offline, just bail out. */
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@ -1136,22 +1148,13 @@ void do_machine_check(struct pt_regs *regs, long error_code)
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}
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/*
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* At insane "tolerant" levels we take no action. Otherwise
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* we only die if we have no other choice. For less serious
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* issues we try to recover, or limit damage to the current
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* process.
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* If tolerant is at an insane level we drop requests to kill
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* processes and continue even when there is no way out.
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*/
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if (cfg->tolerant < 3) {
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if (no_way_out)
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mce_panic("Fatal machine check on current CPU", &m, msg);
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if (worst == MCE_AR_SEVERITY) {
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recover_paddr = m.addr;
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if (!(m.mcgstatus & MCG_STATUS_RIPV))
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flags |= MF_MUST_KILL;
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} else if (kill_it) {
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force_sig(SIGBUS, current);
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}
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}
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if (cfg->tolerant == 3)
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kill_it = 0;
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else if (no_way_out)
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mce_panic("Fatal machine check on current CPU", &m, msg);
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if (worst > 0)
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mce_report_event(regs);
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@ -1159,25 +1162,24 @@ void do_machine_check(struct pt_regs *regs, long error_code)
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out:
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sync_core();
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if (recover_paddr == ~0ull)
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goto done;
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if (worst != MCE_AR_SEVERITY && !kill_it)
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goto out_ist;
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pr_err("Uncorrected hardware memory error in user-access at %llx",
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recover_paddr);
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/*
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* We must call memory_failure() here even if the current process is
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* doomed. We still need to mark the page as poisoned and alert any
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* other users of the page.
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*/
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ist_begin_non_atomic(regs);
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local_irq_enable();
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if (memory_failure(recover_paddr >> PAGE_SHIFT, MCE_VECTOR, flags) < 0) {
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pr_err("Memory error not recovered");
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force_sig(SIGBUS, current);
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/* Fault was in user mode and we need to take some action */
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if ((m.cs & 3) == 3) {
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ist_begin_non_atomic(regs);
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local_irq_enable();
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if (kill_it || do_memory_failure(&m))
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force_sig(SIGBUS, current);
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local_irq_disable();
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ist_end_non_atomic();
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} else {
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if (!fixup_exception(regs, X86_TRAP_MC))
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mce_panic("Failed kernel mode recovery", &m, NULL);
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}
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local_irq_disable();
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ist_end_non_atomic();
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done:
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out_ist:
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ist_exit(regs);
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}
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EXPORT_SYMBOL_GPL(do_machine_check);
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