Merge branch 'x86-apic-for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip
Pull x86 apic updates from Ingo Molnar:
"The main changes in this cycle were:
- introduce optimized single IPI sending methods on modern APICs
(Linus Torvalds, Thomas Gleixner)
- kexec/crash APIC handling fixes and enhancements (Hidehiro Kawai)
- extend lapic vector saving/restoring to the CMCI (MCE) vector as
well (Juergen Gross)
- various fixes and enhancements (Jake Oshins, Len Brown)"
* 'x86-apic-for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (23 commits)
x86/irq: Export functions to allow MSI domains in modules
Documentation: Document kernel.panic_on_io_nmi sysctl
x86/nmi: Save regs in crash dump on external NMI
x86/apic: Introduce apic_extnmi command line parameter
kexec: Fix race between panic() and crash_kexec()
panic, x86: Allow CPUs to save registers even if looping in NMI context
panic, x86: Fix re-entrance problem due to panic on NMI
x86/apic: Fix the saving and restoring of lapic vectors during suspend/resume
x86/smpboot: Re-enable init_udelay=0 by default on modern CPUs
x86/smp: Remove single IPI wrapper
x86/apic: Use default send single IPI wrapper
x86/apic: Provide default send single IPI wrapper
x86/apic: Implement single IPI for apic_noop
x86/apic: Wire up single IPI for apic_numachip
x86/apic: Wire up single IPI for x2apic_uv
x86/apic: Implement single IPI for x2apic_phys
x86/apic: Wire up single IPI for bigsmp_apic
x86/apic: Remove pointless indirections from bigsmp_apic
x86/apic: Wire up single IPI for apic_physflat
x86/apic: Remove pointless indirections from apic_physflat
...
This commit is contained in:
+29
-1
@@ -853,7 +853,12 @@ struct kimage *kexec_image;
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struct kimage *kexec_crash_image;
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int kexec_load_disabled;
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void crash_kexec(struct pt_regs *regs)
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/*
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* No panic_cpu check version of crash_kexec(). This function is called
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* only when panic_cpu holds the current CPU number; this is the only CPU
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* which processes crash_kexec routines.
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*/
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void __crash_kexec(struct pt_regs *regs)
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{
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/* Take the kexec_mutex here to prevent sys_kexec_load
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* running on one cpu from replacing the crash kernel
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@@ -876,6 +881,29 @@ void crash_kexec(struct pt_regs *regs)
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}
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}
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void crash_kexec(struct pt_regs *regs)
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{
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int old_cpu, this_cpu;
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/*
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* Only one CPU is allowed to execute the crash_kexec() code as with
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* panic(). Otherwise parallel calls of panic() and crash_kexec()
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* may stop each other. To exclude them, we use panic_cpu here too.
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*/
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this_cpu = raw_smp_processor_id();
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old_cpu = atomic_cmpxchg(&panic_cpu, PANIC_CPU_INVALID, this_cpu);
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if (old_cpu == PANIC_CPU_INVALID) {
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/* This is the 1st CPU which comes here, so go ahead. */
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__crash_kexec(regs);
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/*
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* Reset panic_cpu to allow another panic()/crash_kexec()
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* call.
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*/
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atomic_set(&panic_cpu, PANIC_CPU_INVALID);
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}
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}
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size_t crash_get_memory_size(void)
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{
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size_t size = 0;
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+28
-5
@@ -61,6 +61,17 @@ void __weak panic_smp_self_stop(void)
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cpu_relax();
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}
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/*
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* Stop ourselves in NMI context if another CPU has already panicked. Arch code
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* may override this to prepare for crash dumping, e.g. save regs info.
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*/
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void __weak nmi_panic_self_stop(struct pt_regs *regs)
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{
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panic_smp_self_stop();
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}
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atomic_t panic_cpu = ATOMIC_INIT(PANIC_CPU_INVALID);
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/**
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* panic - halt the system
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* @fmt: The text string to print
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@@ -71,17 +82,17 @@ void __weak panic_smp_self_stop(void)
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*/
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void panic(const char *fmt, ...)
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{
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static DEFINE_SPINLOCK(panic_lock);
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static char buf[1024];
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va_list args;
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long i, i_next = 0;
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int state = 0;
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int old_cpu, this_cpu;
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/*
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* Disable local interrupts. This will prevent panic_smp_self_stop
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* from deadlocking the first cpu that invokes the panic, since
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* there is nothing to prevent an interrupt handler (that runs
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* after the panic_lock is acquired) from invoking panic again.
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* after setting panic_cpu) from invoking panic() again.
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*/
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local_irq_disable();
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@@ -94,8 +105,16 @@ void panic(const char *fmt, ...)
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* multiple parallel invocations of panic, all other CPUs either
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* stop themself or will wait until they are stopped by the 1st CPU
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* with smp_send_stop().
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*
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* `old_cpu == PANIC_CPU_INVALID' means this is the 1st CPU which
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* comes here, so go ahead.
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* `old_cpu == this_cpu' means we came from nmi_panic() which sets
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* panic_cpu to this CPU. In this case, this is also the 1st CPU.
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*/
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if (!spin_trylock(&panic_lock))
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this_cpu = raw_smp_processor_id();
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old_cpu = atomic_cmpxchg(&panic_cpu, PANIC_CPU_INVALID, this_cpu);
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if (old_cpu != PANIC_CPU_INVALID && old_cpu != this_cpu)
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panic_smp_self_stop();
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console_verbose();
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@@ -117,9 +136,11 @@ void panic(const char *fmt, ...)
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* everything else.
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* If we want to run this after calling panic_notifiers, pass
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* the "crash_kexec_post_notifiers" option to the kernel.
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*
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* Bypass the panic_cpu check and call __crash_kexec directly.
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*/
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if (!crash_kexec_post_notifiers)
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crash_kexec(NULL);
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__crash_kexec(NULL);
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/*
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* Note smp_send_stop is the usual smp shutdown function, which
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@@ -142,9 +163,11 @@ void panic(const char *fmt, ...)
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* panic_notifiers and dumping kmsg before kdump.
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* Note: since some panic_notifiers can make crashed kernel
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* more unstable, it can increase risks of the kdump failure too.
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*
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* Bypass the panic_cpu check and call __crash_kexec directly.
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*/
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if (crash_kexec_post_notifiers)
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crash_kexec(NULL);
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__crash_kexec(NULL);
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bust_spinlocks(0);
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+1
-1
@@ -351,7 +351,7 @@ static void watchdog_overflow_callback(struct perf_event *event,
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trigger_allbutself_cpu_backtrace();
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if (hardlockup_panic)
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panic("Hard LOCKUP");
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nmi_panic(regs, "Hard LOCKUP");
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__this_cpu_write(hard_watchdog_warn, true);
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return;
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