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Glauber Costa0941ecb2008-03-03 14:12:55 -03001/*
2 * Intel SMP support routines.
3 *
Alan Cox87c6fe22009-01-05 14:08:04 +00004 * (c) 1995 Alan Cox, Building #3 <alan@lxorguk.ukuu.org.uk>
Ingo Molnar8f47e162009-01-31 02:03:42 +01005 * (c) 1998-99, 2000, 2009 Ingo Molnar <mingo@redhat.com>
Glauber Costa0941ecb2008-03-03 14:12:55 -03006 * (c) 2002,2003 Andi Kleen, SuSE Labs.
7 *
8 * i386 and x86_64 integration by Glauber Costa <gcosta@redhat.com>
9 *
10 * This code is released under the GNU General Public License version 2 or
11 * later.
12 */
13
Glauber Costaf9e47a12008-03-03 14:12:52 -030014#include <linux/init.h>
15
16#include <linux/mm.h>
17#include <linux/delay.h>
18#include <linux/spinlock.h>
Paul Gortmaker69c60c82011-05-26 12:22:53 -040019#include <linux/export.h>
Glauber Costaf9e47a12008-03-03 14:12:52 -030020#include <linux/kernel_stat.h>
21#include <linux/mc146818rtc.h>
22#include <linux/cache.h>
23#include <linux/interrupt.h>
24#include <linux/cpu.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090025#include <linux/gfp.h>
Glauber Costaf9e47a12008-03-03 14:12:52 -030026
27#include <asm/mtrr.h>
28#include <asm/tlbflush.h>
29#include <asm/mmu_context.h>
30#include <asm/proto.h>
Ingo Molnar7b6aa332009-02-17 13:58:15 +010031#include <asm/apic.h>
Don Zickus7d007d22012-05-11 14:41:14 -040032#include <asm/nmi.h>
Seiji Aguchicf910e82013-06-20 11:46:53 -040033#include <asm/trace/irq_vectors.h>
Glauber Costa0941ecb2008-03-03 14:12:55 -030034/*
35 * Some notes on x86 processor bugs affecting SMP operation:
36 *
37 * Pentium, Pentium Pro, II, III (and all CPUs) have bugs.
38 * The Linux implications for SMP are handled as follows:
39 *
40 * Pentium III / [Xeon]
41 * None of the E1AP-E3AP errata are visible to the user.
42 *
43 * E1AP. see PII A1AP
44 * E2AP. see PII A2AP
45 * E3AP. see PII A3AP
46 *
47 * Pentium II / [Xeon]
48 * None of the A1AP-A3AP errata are visible to the user.
49 *
50 * A1AP. see PPro 1AP
51 * A2AP. see PPro 2AP
52 * A3AP. see PPro 7AP
53 *
54 * Pentium Pro
55 * None of 1AP-9AP errata are visible to the normal user,
56 * except occasional delivery of 'spurious interrupt' as trap #15.
57 * This is very rare and a non-problem.
58 *
59 * 1AP. Linux maps APIC as non-cacheable
60 * 2AP. worked around in hardware
61 * 3AP. fixed in C0 and above steppings microcode update.
62 * Linux does not use excessive STARTUP_IPIs.
63 * 4AP. worked around in hardware
64 * 5AP. symmetric IO mode (normal Linux operation) not affected.
65 * 'noapic' mode has vector 0xf filled out properly.
66 * 6AP. 'noapic' mode might be affected - fixed in later steppings
67 * 7AP. We do not assume writes to the LVT deassering IRQs
68 * 8AP. We do not enable low power mode (deep sleep) during MP bootup
69 * 9AP. We do not use mixed mode
70 *
71 * Pentium
72 * There is a marginal case where REP MOVS on 100MHz SMP
73 * machines with B stepping processors can fail. XXX should provide
74 * an L1cache=Writethrough or L1cache=off option.
75 *
76 * B stepping CPUs may hang. There are hardware work arounds
77 * for this. We warn about it in case your board doesn't have the work
78 * arounds. Basically that's so I can tell anyone with a B stepping
79 * CPU and SMP problems "tough".
80 *
81 * Specific items [From Pentium Processor Specification Update]
82 *
83 * 1AP. Linux doesn't use remote read
84 * 2AP. Linux doesn't trust APIC errors
85 * 3AP. We work around this
86 * 4AP. Linux never generated 3 interrupts of the same priority
87 * to cause a lost local interrupt.
88 * 5AP. Remote read is never used
89 * 6AP. not affected - worked around in hardware
90 * 7AP. not affected - worked around in hardware
91 * 8AP. worked around in hardware - we get explicit CS errors if not
92 * 9AP. only 'noapic' mode affected. Might generate spurious
93 * interrupts, we log only the first one and count the
94 * rest silently.
95 * 10AP. not affected - worked around in hardware
96 * 11AP. Linux reads the APIC between writes to avoid this, as per
97 * the documentation. Make sure you preserve this as it affects
98 * the C stepping chips too.
99 * 12AP. not affected - worked around in hardware
100 * 13AP. not affected - worked around in hardware
101 * 14AP. we always deassert INIT during bootup
102 * 15AP. not affected - worked around in hardware
103 * 16AP. not affected - worked around in hardware
104 * 17AP. not affected - worked around in hardware
105 * 18AP. not affected - worked around in hardware
106 * 19AP. not affected - worked around in BIOS
107 *
108 * If this sounds worrying believe me these bugs are either ___RARE___,
109 * or are signal timing bugs worked around in hardware and there's
110 * about nothing of note with C stepping upwards.
111 */
Glauber Costaf9e47a12008-03-03 14:12:52 -0300112
Don Zickus7d007d22012-05-11 14:41:14 -0400113static atomic_t stopping_cpu = ATOMIC_INIT(-1);
Don Zickus3aac27a2012-05-11 14:41:15 -0400114static bool smp_no_nmi_ipi = false;
Don Zickus7d007d22012-05-11 14:41:14 -0400115
Glauber Costaf9e47a12008-03-03 14:12:52 -0300116/*
117 * this function sends a 'reschedule' IPI to another CPU.
118 * it goes straight through and wastes no time serializing
119 * anything. Worst case is that we lose a reschedule ...
120 */
121static void native_smp_send_reschedule(int cpu)
122{
Gautham R Shenoyf6940102008-03-10 17:44:03 +0530123 if (unlikely(cpu_is_offline(cpu))) {
124 WARN_ON(1);
125 return;
126 }
Ingo Molnardac5f412009-01-28 15:42:24 +0100127 apic->send_IPI_mask(cpumask_of(cpu), RESCHEDULE_VECTOR);
Glauber Costaf9e47a12008-03-03 14:12:52 -0300128}
129
Jens Axboe3b16cf82008-06-26 11:21:54 +0200130void native_send_call_func_single_ipi(int cpu)
Glauber Costaf9e47a12008-03-03 14:12:52 -0300131{
Ingo Molnardac5f412009-01-28 15:42:24 +0100132 apic->send_IPI_mask(cpumask_of(cpu), CALL_FUNCTION_SINGLE_VECTOR);
Glauber Costaf9e47a12008-03-03 14:12:52 -0300133}
134
Mike Travisbcda0162008-12-16 17:33:59 -0800135void native_send_call_func_ipi(const struct cpumask *mask)
Glauber Costaf9e47a12008-03-03 14:12:52 -0300136{
Mike Travisc2d1cec2009-01-04 05:18:03 -0800137 cpumask_var_t allbutself;
Glauber Costaf9e47a12008-03-03 14:12:52 -0300138
Mike Travisc2d1cec2009-01-04 05:18:03 -0800139 if (!alloc_cpumask_var(&allbutself, GFP_ATOMIC)) {
Ingo Molnardac5f412009-01-28 15:42:24 +0100140 apic->send_IPI_mask(mask, CALL_FUNCTION_VECTOR);
Mike Travisc2d1cec2009-01-04 05:18:03 -0800141 return;
142 }
Glauber Costaf9e47a12008-03-03 14:12:52 -0300143
Mike Travisc2d1cec2009-01-04 05:18:03 -0800144 cpumask_copy(allbutself, cpu_online_mask);
145 cpumask_clear_cpu(smp_processor_id(), allbutself);
146
147 if (cpumask_equal(mask, allbutself) &&
148 cpumask_equal(cpu_online_mask, cpu_callout_mask))
Ingo Molnardac5f412009-01-28 15:42:24 +0100149 apic->send_IPI_allbutself(CALL_FUNCTION_VECTOR);
Glauber Costaf9e47a12008-03-03 14:12:52 -0300150 else
Ingo Molnardac5f412009-01-28 15:42:24 +0100151 apic->send_IPI_mask(mask, CALL_FUNCTION_VECTOR);
Mike Travisc2d1cec2009-01-04 05:18:03 -0800152
153 free_cpumask_var(allbutself);
Glauber Costaf9e47a12008-03-03 14:12:52 -0300154}
155
Don Zickus7d007d22012-05-11 14:41:14 -0400156static int smp_stop_nmi_callback(unsigned int val, struct pt_regs *regs)
157{
158 /* We are registered on stopping cpu too, avoid spurious NMI */
159 if (raw_smp_processor_id() == atomic_read(&stopping_cpu))
160 return NMI_HANDLED;
161
162 stop_this_cpu(NULL);
163
164 return NMI_HANDLED;
165}
166
Glauber Costaf9e47a12008-03-03 14:12:52 -0300167/*
168 * this function calls the 'stop' function on all other CPUs in the system.
169 */
170
Andi Kleen2605fc22014-05-02 00:44:37 +0200171asmlinkage __visible void smp_reboot_interrupt(void)
Andi Kleen4ef702c2009-05-27 21:56:52 +0200172{
173 ack_APIC_irq();
174 irq_enter();
175 stop_this_cpu(NULL);
176 irq_exit();
177}
178
Don Zickus5d2b86d2012-05-11 14:41:13 -0400179static void native_stop_other_cpus(int wait)
Glauber Costaf9e47a12008-03-03 14:12:52 -0300180{
Glauber Costaf9e47a12008-03-03 14:12:52 -0300181 unsigned long flags;
Alok Kataria76fac072010-10-11 14:37:08 -0700182 unsigned long timeout;
Glauber Costaf9e47a12008-03-03 14:12:52 -0300183
184 if (reboot_force)
185 return;
186
Andi Kleen4ef702c2009-05-27 21:56:52 +0200187 /*
188 * Use an own vector here because smp_call_function
189 * does lots of things not suitable in a panic situation.
Don Zickus7d007d22012-05-11 14:41:14 -0400190 */
191
192 /*
193 * We start by using the REBOOT_VECTOR irq.
194 * The irq is treated as a sync point to allow critical
195 * regions of code on other cpus to release their spin locks
196 * and re-enable irqs. Jumping straight to an NMI might
197 * accidentally cause deadlocks with further shutdown/panic
198 * code. By syncing, we give the cpus up to one second to
199 * finish their work before we force them off with the NMI.
Andi Kleen4ef702c2009-05-27 21:56:52 +0200200 */
201 if (num_online_cpus() > 1) {
Don Zickus7d007d22012-05-11 14:41:14 -0400202 /* did someone beat us here? */
203 if (atomic_cmpxchg(&stopping_cpu, -1, safe_smp_processor_id()) != -1)
204 return;
205
206 /* sync above data before sending IRQ */
207 wmb();
208
Andi Kleen4ef702c2009-05-27 21:56:52 +0200209 apic->send_IPI_allbutself(REBOOT_VECTOR);
210
Alok Kataria76fac072010-10-11 14:37:08 -0700211 /*
212 * Don't wait longer than a second if the caller
213 * didn't ask us to wait.
214 */
215 timeout = USEC_PER_SEC;
216 while (num_online_cpus() > 1 && (wait || timeout--))
Andi Kleen4ef702c2009-05-27 21:56:52 +0200217 udelay(1);
218 }
Don Zickus7d007d22012-05-11 14:41:14 -0400219
220 /* if the REBOOT_VECTOR didn't work, try with the NMI */
Don Zickus3aac27a2012-05-11 14:41:15 -0400221 if ((num_online_cpus() > 1) && (!smp_no_nmi_ipi)) {
Don Zickus7d007d22012-05-11 14:41:14 -0400222 if (register_nmi_handler(NMI_LOCAL, smp_stop_nmi_callback,
223 NMI_FLAG_FIRST, "smp_stop"))
224 /* Note: we ignore failures here */
225 /* Hope the REBOOT_IRQ is good enough */
226 goto finish;
Andi Kleen4ef702c2009-05-27 21:56:52 +0200227
Don Zickus7d007d22012-05-11 14:41:14 -0400228 /* sync above data before sending IRQ */
229 wmb();
230
231 pr_emerg("Shutting down cpus with NMI\n");
232
233 apic->send_IPI_allbutself(NMI_VECTOR);
234
235 /*
236 * Don't wait longer than a 10 ms if the caller
237 * didn't ask us to wait.
238 */
239 timeout = USEC_PER_MSEC * 10;
240 while (num_online_cpus() > 1 && (wait || timeout--))
241 udelay(1);
242 }
243
244finish:
Glauber Costaf9e47a12008-03-03 14:12:52 -0300245 local_irq_save(flags);
Glauber Costaf9e47a12008-03-03 14:12:52 -0300246 disable_local_APIC();
247 local_irq_restore(flags);
248}
249
250/*
Peter Zijlstra184748c2011-04-05 17:23:39 +0200251 * Reschedule call back.
Glauber Costaf9e47a12008-03-03 14:12:52 -0300252 */
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400253static inline void __smp_reschedule_interrupt(void)
254{
255 inc_irq_stat(irq_resched_count);
256 scheduler_ipi();
257}
258
Andi Kleen1d9090e2013-08-05 15:02:37 -0700259__visible void smp_reschedule_interrupt(struct pt_regs *regs)
Glauber Costaf9e47a12008-03-03 14:12:52 -0300260{
261 ack_APIC_irq();
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400262 __smp_reschedule_interrupt();
Marcelo Tosatti32f88402009-05-07 17:55:12 -0300263 /*
264 * KVM uses this interrupt to force a cpu out of guest mode
265 */
Glauber Costaf9e47a12008-03-03 14:12:52 -0300266}
267
Seiji Aguchi4787c362013-06-28 14:02:11 -0400268static inline void smp_entering_irq(void)
Glauber Costaf9e47a12008-03-03 14:12:52 -0300269{
Glauber Costaf9e47a12008-03-03 14:12:52 -0300270 ack_APIC_irq();
Glauber Costaf9e47a12008-03-03 14:12:52 -0300271 irq_enter();
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400272}
273
Andi Kleen1d9090e2013-08-05 15:02:37 -0700274__visible void smp_trace_reschedule_interrupt(struct pt_regs *regs)
Seiji Aguchi4787c362013-06-28 14:02:11 -0400275{
276 /*
277 * Need to call irq_enter() before calling the trace point.
278 * __smp_reschedule_interrupt() calls irq_enter/exit() too (in
279 * scheduler_ipi(). This is OK, since those functions are allowed
280 * to nest.
281 */
282 smp_entering_irq();
283 trace_reschedule_entry(RESCHEDULE_VECTOR);
284 __smp_reschedule_interrupt();
285 trace_reschedule_exit(RESCHEDULE_VECTOR);
286 exiting_irq();
287 /*
288 * KVM uses this interrupt to force a cpu out of guest mode
289 */
290}
291
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400292static inline void __smp_call_function_interrupt(void)
293{
Jens Axboe3b16cf82008-06-26 11:21:54 +0200294 generic_smp_call_function_interrupt();
Hiroshi Shimamoto915b0d02008-12-08 19:19:26 -0800295 inc_irq_stat(irq_call_count);
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400296}
297
Andi Kleen1d9090e2013-08-05 15:02:37 -0700298__visible void smp_call_function_interrupt(struct pt_regs *regs)
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400299{
Seiji Aguchi4787c362013-06-28 14:02:11 -0400300 smp_entering_irq();
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400301 __smp_call_function_interrupt();
302 exiting_irq();
303}
304
Andi Kleen1d9090e2013-08-05 15:02:37 -0700305__visible void smp_trace_call_function_interrupt(struct pt_regs *regs)
Seiji Aguchicf910e82013-06-20 11:46:53 -0400306{
Seiji Aguchi4787c362013-06-28 14:02:11 -0400307 smp_entering_irq();
Seiji Aguchicf910e82013-06-20 11:46:53 -0400308 trace_call_function_entry(CALL_FUNCTION_VECTOR);
309 __smp_call_function_interrupt();
310 trace_call_function_exit(CALL_FUNCTION_VECTOR);
311 exiting_irq();
312}
313
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400314static inline void __smp_call_function_single_interrupt(void)
315{
316 generic_smp_call_function_single_interrupt();
317 inc_irq_stat(irq_call_count);
Jens Axboe3b16cf82008-06-26 11:21:54 +0200318}
Glauber Costaf9e47a12008-03-03 14:12:52 -0300319
Andi Kleen1d9090e2013-08-05 15:02:37 -0700320__visible void smp_call_function_single_interrupt(struct pt_regs *regs)
Jens Axboe3b16cf82008-06-26 11:21:54 +0200321{
Seiji Aguchi4787c362013-06-28 14:02:11 -0400322 smp_entering_irq();
Seiji Aguchieddc0e92013-06-20 11:45:17 -0400323 __smp_call_function_single_interrupt();
324 exiting_irq();
Glauber Costaf9e47a12008-03-03 14:12:52 -0300325}
326
Andi Kleen1d9090e2013-08-05 15:02:37 -0700327__visible void smp_trace_call_function_single_interrupt(struct pt_regs *regs)
Seiji Aguchicf910e82013-06-20 11:46:53 -0400328{
Seiji Aguchi4787c362013-06-28 14:02:11 -0400329 smp_entering_irq();
Seiji Aguchicf910e82013-06-20 11:46:53 -0400330 trace_call_function_single_entry(CALL_FUNCTION_SINGLE_VECTOR);
331 __smp_call_function_single_interrupt();
332 trace_call_function_single_exit(CALL_FUNCTION_SINGLE_VECTOR);
333 exiting_irq();
334}
335
Don Zickusbda62632011-10-13 15:14:27 -0400336static int __init nonmi_ipi_setup(char *str)
337{
Don Zickus3aac27a2012-05-11 14:41:15 -0400338 smp_no_nmi_ipi = true;
339 return 1;
Don Zickusbda62632011-10-13 15:14:27 -0400340}
341
342__setup("nonmi_ipi", nonmi_ipi_setup);
343
Glauber Costaf9e47a12008-03-03 14:12:52 -0300344struct smp_ops smp_ops = {
Cyrill Gorcunovb9b34f22009-04-12 20:47:42 +0400345 .smp_prepare_boot_cpu = native_smp_prepare_boot_cpu,
346 .smp_prepare_cpus = native_smp_prepare_cpus,
347 .smp_cpus_done = native_smp_cpus_done,
Glauber Costaf9e47a12008-03-03 14:12:52 -0300348
Don Zickus5d2b86d2012-05-11 14:41:13 -0400349 .stop_other_cpus = native_stop_other_cpus,
Cyrill Gorcunovb9b34f22009-04-12 20:47:42 +0400350 .smp_send_reschedule = native_smp_send_reschedule,
Jens Axboe3b16cf82008-06-26 11:21:54 +0200351
Cyrill Gorcunovb9b34f22009-04-12 20:47:42 +0400352 .cpu_up = native_cpu_up,
353 .cpu_die = native_cpu_die,
354 .cpu_disable = native_cpu_disable,
355 .play_dead = native_play_dead,
Alex Nixon93be71b2008-08-22 11:52:11 +0100356
Cyrill Gorcunovb9b34f22009-04-12 20:47:42 +0400357 .send_call_func_ipi = native_send_call_func_ipi,
Jens Axboe3b16cf82008-06-26 11:21:54 +0200358 .send_call_func_single_ipi = native_send_call_func_single_ipi,
Glauber Costaf9e47a12008-03-03 14:12:52 -0300359};
360EXPORT_SYMBOL_GPL(smp_ops);