2 * x86 SMP booting functions
4 * (c) 1995 Alan Cox, Building #3 <alan@lxorguk.ukuu.org.uk>
5 * (c) 1998, 1999, 2000, 2009 Ingo Molnar <mingo@redhat.com>
6 * Copyright 2001 Andi Kleen, SuSE Labs.
8 * Much of the core SMP work is based on previous work by Thomas Radke, to
9 * whom a great many thanks are extended.
11 * Thanks to Intel for making available several different Pentium,
12 * Pentium Pro and Pentium-II/Xeon MP machines.
13 * Original development of Linux SMP code supported by Caldera.
15 * This code is released under the GNU General Public License version 2 or
19 * Felix Koop : NR_CPUS used properly
20 * Jose Renau : Handle single CPU case.
21 * Alan Cox : By repeated request 8) - Total BogoMIPS report.
22 * Greg Wright : Fix for kernel stacks panic.
23 * Erich Boleyn : MP v1.4 and additional changes.
24 * Matthias Sattler : Changes for 2.1 kernel map.
25 * Michel Lespinasse : Changes for 2.1 kernel map.
26 * Michael Chastain : Change trampoline.S to gnu as.
27 * Alan Cox : Dumb bug: 'B' step PPro's are fine
28 * Ingo Molnar : Added APIC timers, based on code
30 * Ingo Molnar : various cleanups and rewrites
31 * Tigran Aivazian : fixed "0.00 in /proc/uptime on SMP" bug.
32 * Maciej W. Rozycki : Bits for genuine 82489DX APICs
33 * Andi Kleen : Changed for SMP boot into long mode.
34 * Martin J. Bligh : Added support for multi-quad systems
35 * Dave Jones : Report invalid combinations of Athlon CPUs.
36 * Rusty Russell : Hacked into shape for new "hotplug" boot process.
37 * Andi Kleen : Converted to new state machine.
38 * Ashok Raj : CPU hotplug support
39 * Glauber Costa : i386 and x86_64 integration
42 #include <linux/init.h>
43 #include <linux/smp.h>
44 #include <linux/module.h>
45 #include <linux/sched.h>
46 #include <linux/percpu.h>
47 #include <linux/bootmem.h>
48 #include <linux/err.h>
49 #include <linux/nmi.h>
50 #include <linux/tboot.h>
51 #include <linux/stackprotector.h>
52 #include <linux/gfp.h>
59 #include <asm/trampoline.h>
62 #include <asm/pgtable.h>
63 #include <asm/tlbflush.h>
65 #include <asm/mwait.h>
67 #include <asm/io_apic.h>
68 #include <asm/setup.h>
69 #include <asm/uv/uv.h>
70 #include <linux/mc146818rtc.h>
72 #include <asm/smpboot_hooks.h>
73 #include <asm/i8259.h>
75 /* State of each CPU */
76 DEFINE_PER_CPU(int, cpu_state
) = { 0 };
78 /* Store all idle threads, this can be reused instead of creating
79 * a new thread. Also avoids complicated thread destroy functionality
82 #ifdef CONFIG_HOTPLUG_CPU
84 * Needed only for CONFIG_HOTPLUG_CPU because __cpuinitdata is
85 * removed after init for !CONFIG_HOTPLUG_CPU.
87 static DEFINE_PER_CPU(struct task_struct
*, idle_thread_array
);
88 #define get_idle_for_cpu(x) (per_cpu(idle_thread_array, x))
89 #define set_idle_for_cpu(x, p) (per_cpu(idle_thread_array, x) = (p))
92 * We need this for trampoline_base protection from concurrent accesses when
93 * off- and onlining cores wildly.
95 static DEFINE_MUTEX(x86_cpu_hotplug_driver_mutex
);
97 void cpu_hotplug_driver_lock(void)
99 mutex_lock(&x86_cpu_hotplug_driver_mutex
);
102 void cpu_hotplug_driver_unlock(void)
104 mutex_unlock(&x86_cpu_hotplug_driver_mutex
);
107 ssize_t
arch_cpu_probe(const char *buf
, size_t count
) { return -1; }
108 ssize_t
arch_cpu_release(const char *buf
, size_t count
) { return -1; }
110 static struct task_struct
*idle_thread_array
[NR_CPUS
] __cpuinitdata
;
111 #define get_idle_for_cpu(x) (idle_thread_array[(x)])
112 #define set_idle_for_cpu(x, p) (idle_thread_array[(x)] = (p))
115 /* Number of siblings per CPU package */
116 int smp_num_siblings
= 1;
117 EXPORT_SYMBOL(smp_num_siblings
);
119 /* Last level cache ID of each logical CPU */
120 DEFINE_PER_CPU(u16
, cpu_llc_id
) = BAD_APICID
;
122 /* representing HT siblings of each logical CPU */
123 DEFINE_PER_CPU(cpumask_var_t
, cpu_sibling_map
);
124 EXPORT_PER_CPU_SYMBOL(cpu_sibling_map
);
126 /* representing HT and core siblings of each logical CPU */
127 DEFINE_PER_CPU(cpumask_var_t
, cpu_core_map
);
128 EXPORT_PER_CPU_SYMBOL(cpu_core_map
);
130 DEFINE_PER_CPU(cpumask_var_t
, cpu_llc_shared_map
);
132 /* Per CPU bogomips and other parameters */
133 DEFINE_PER_CPU_SHARED_ALIGNED(struct cpuinfo_x86
, cpu_info
);
134 EXPORT_PER_CPU_SYMBOL(cpu_info
);
136 atomic_t init_deasserted
;
139 * Report back to the Boot Processor.
142 static void __cpuinit
smp_callin(void)
145 unsigned long timeout
;
148 * If waken up by an INIT in an 82489DX configuration
149 * we may get here before an INIT-deassert IPI reaches
150 * our local APIC. We have to wait for the IPI or we'll
151 * lock up on an APIC access.
153 if (apic
->wait_for_init_deassert
)
154 apic
->wait_for_init_deassert(&init_deasserted
);
157 * (This works even if the APIC is not enabled.)
159 phys_id
= read_apic_id();
160 cpuid
= smp_processor_id();
161 if (cpumask_test_cpu(cpuid
, cpu_callin_mask
)) {
162 panic("%s: phys CPU#%d, CPU#%d already present??\n", __func__
,
165 pr_debug("CPU#%d (phys ID: %d) waiting for CALLOUT\n", cpuid
, phys_id
);
168 * STARTUP IPIs are fragile beasts as they might sometimes
169 * trigger some glue motherboard logic. Complete APIC bus
170 * silence for 1 second, this overestimates the time the
171 * boot CPU is spending to send the up to 2 STARTUP IPIs
172 * by a factor of two. This should be enough.
176 * Waiting 2s total for startup (udelay is not yet working)
178 timeout
= jiffies
+ 2*HZ
;
179 while (time_before(jiffies
, timeout
)) {
181 * Has the boot CPU finished it's STARTUP sequence?
183 if (cpumask_test_cpu(cpuid
, cpu_callout_mask
))
188 if (!time_before(jiffies
, timeout
)) {
189 panic("%s: CPU%d started up but did not get a callout!\n",
194 * the boot CPU has finished the init stage and is spinning
195 * on callin_map until we finish. We are free to set up this
196 * CPU, first the APIC. (this is probably redundant on most
200 pr_debug("CALLIN, before setup_local_APIC().\n");
201 if (apic
->smp_callin_clear_local_apic
)
202 apic
->smp_callin_clear_local_apic();
204 end_local_APIC_setup();
207 * Need to setup vector mappings before we enable interrupts.
209 setup_vector_irq(smp_processor_id());
213 * Need to enable IRQs because it can take longer and then
214 * the NMI watchdog might kill us.
219 pr_debug("Stack at about %p\n", &cpuid
);
222 * Save our processor parameters
224 smp_store_cpu_info(cpuid
);
227 * This must be done before setting cpu_online_mask
228 * or calling notify_cpu_starting.
230 set_cpu_sibling_map(raw_smp_processor_id());
233 notify_cpu_starting(cpuid
);
236 * Allow the master to continue.
238 cpumask_set_cpu(cpuid
, cpu_callin_mask
);
242 * Activate a secondary processor.
244 notrace
static void __cpuinit
start_secondary(void *unused
)
247 * Don't put *anything* before cpu_init(), SMP booting is too
248 * fragile that we want to limit the things done here to the
249 * most necessary things.
256 /* switch away from the initial page table */
257 load_cr3(swapper_pg_dir
);
261 /* otherwise gcc will move up smp_processor_id before the cpu_init */
264 * Check TSC synchronization with the BP:
266 check_tsc_sync_target();
269 * We need to hold call_lock, so there is no inconsistency
270 * between the time smp_call_function() determines number of
271 * IPI recipients, and the time when the determination is made
272 * for which cpus receive the IPI. Holding this
273 * lock helps us to not include this cpu in a currently in progress
274 * smp_call_function().
276 * We need to hold vector_lock so there the set of online cpus
277 * does not change while we are assigning vectors to cpus. Holding
278 * this lock ensures we don't half assign or remove an irq from a cpu.
282 set_cpu_online(smp_processor_id(), true);
283 unlock_vector_lock();
285 per_cpu(cpu_state
, smp_processor_id()) = CPU_ONLINE
;
286 x86_platform
.nmi_init();
288 /* enable local interrupts */
291 /* to prevent fake stack check failure in clock setup */
292 boot_init_stack_canary();
294 x86_cpuinit
.setup_percpu_clockev();
301 * The bootstrap kernel entry code has set these up. Save them for
305 void __cpuinit
smp_store_cpu_info(int id
)
307 struct cpuinfo_x86
*c
= &cpu_data(id
);
312 identify_secondary_cpu(c
);
315 static void __cpuinit
link_thread_siblings(int cpu1
, int cpu2
)
317 cpumask_set_cpu(cpu1
, cpu_sibling_mask(cpu2
));
318 cpumask_set_cpu(cpu2
, cpu_sibling_mask(cpu1
));
319 cpumask_set_cpu(cpu1
, cpu_core_mask(cpu2
));
320 cpumask_set_cpu(cpu2
, cpu_core_mask(cpu1
));
321 cpumask_set_cpu(cpu1
, cpu_llc_shared_mask(cpu2
));
322 cpumask_set_cpu(cpu2
, cpu_llc_shared_mask(cpu1
));
326 void __cpuinit
set_cpu_sibling_map(int cpu
)
329 struct cpuinfo_x86
*c
= &cpu_data(cpu
);
331 cpumask_set_cpu(cpu
, cpu_sibling_setup_mask
);
333 if (smp_num_siblings
> 1) {
334 for_each_cpu(i
, cpu_sibling_setup_mask
) {
335 struct cpuinfo_x86
*o
= &cpu_data(i
);
337 if (cpu_has(c
, X86_FEATURE_TOPOEXT
)) {
338 if (c
->phys_proc_id
== o
->phys_proc_id
&&
339 per_cpu(cpu_llc_id
, cpu
) == per_cpu(cpu_llc_id
, i
) &&
340 c
->compute_unit_id
== o
->compute_unit_id
)
341 link_thread_siblings(cpu
, i
);
342 } else if (c
->phys_proc_id
== o
->phys_proc_id
&&
343 c
->cpu_core_id
== o
->cpu_core_id
) {
344 link_thread_siblings(cpu
, i
);
348 cpumask_set_cpu(cpu
, cpu_sibling_mask(cpu
));
351 cpumask_set_cpu(cpu
, cpu_llc_shared_mask(cpu
));
353 if (__this_cpu_read(cpu_info
.x86_max_cores
) == 1) {
354 cpumask_copy(cpu_core_mask(cpu
), cpu_sibling_mask(cpu
));
359 for_each_cpu(i
, cpu_sibling_setup_mask
) {
360 if (per_cpu(cpu_llc_id
, cpu
) != BAD_APICID
&&
361 per_cpu(cpu_llc_id
, cpu
) == per_cpu(cpu_llc_id
, i
)) {
362 cpumask_set_cpu(i
, cpu_llc_shared_mask(cpu
));
363 cpumask_set_cpu(cpu
, cpu_llc_shared_mask(i
));
365 if (c
->phys_proc_id
== cpu_data(i
).phys_proc_id
) {
366 cpumask_set_cpu(i
, cpu_core_mask(cpu
));
367 cpumask_set_cpu(cpu
, cpu_core_mask(i
));
369 * Does this new cpu bringup a new core?
371 if (cpumask_weight(cpu_sibling_mask(cpu
)) == 1) {
373 * for each core in package, increment
374 * the booted_cores for this new cpu
376 if (cpumask_first(cpu_sibling_mask(i
)) == i
)
379 * increment the core count for all
380 * the other cpus in this package
383 cpu_data(i
).booted_cores
++;
384 } else if (i
!= cpu
&& !c
->booted_cores
)
385 c
->booted_cores
= cpu_data(i
).booted_cores
;
390 /* maps the cpu to the sched domain representing multi-core */
391 const struct cpumask
*cpu_coregroup_mask(int cpu
)
393 struct cpuinfo_x86
*c
= &cpu_data(cpu
);
395 * For perf, we return last level cache shared map.
396 * And for power savings, we return cpu_core_map
398 if ((sched_mc_power_savings
|| sched_smt_power_savings
) &&
399 !(cpu_has(c
, X86_FEATURE_AMD_DCM
)))
400 return cpu_core_mask(cpu
);
402 return cpu_llc_shared_mask(cpu
);
405 static void impress_friends(void)
408 unsigned long bogosum
= 0;
410 * Allow the user to impress friends.
412 pr_debug("Before bogomips.\n");
413 for_each_possible_cpu(cpu
)
414 if (cpumask_test_cpu(cpu
, cpu_callout_mask
))
415 bogosum
+= cpu_data(cpu
).loops_per_jiffy
;
417 "Total of %d processors activated (%lu.%02lu BogoMIPS).\n",
420 (bogosum
/(5000/HZ
))%100);
422 pr_debug("Before bogocount - setting activated=1.\n");
425 void __inquire_remote_apic(int apicid
)
427 unsigned i
, regs
[] = { APIC_ID
>> 4, APIC_LVR
>> 4, APIC_SPIV
>> 4 };
428 char *names
[] = { "ID", "VERSION", "SPIV" };
432 printk(KERN_INFO
"Inquiring remote APIC 0x%x...\n", apicid
);
434 for (i
= 0; i
< ARRAY_SIZE(regs
); i
++) {
435 printk(KERN_INFO
"... APIC 0x%x %s: ", apicid
, names
[i
]);
440 status
= safe_apic_wait_icr_idle();
443 "a previous APIC delivery may have failed\n");
445 apic_icr_write(APIC_DM_REMRD
| regs
[i
], apicid
);
450 status
= apic_read(APIC_ICR
) & APIC_ICR_RR_MASK
;
451 } while (status
== APIC_ICR_RR_INPROG
&& timeout
++ < 1000);
454 case APIC_ICR_RR_VALID
:
455 status
= apic_read(APIC_RRR
);
456 printk(KERN_CONT
"%08x\n", status
);
459 printk(KERN_CONT
"failed\n");
465 * Poke the other CPU in the eye via NMI to wake it up. Remember that the normal
466 * INIT, INIT, STARTUP sequence will reset the chip hard for us, and this
467 * won't ... remember to clear down the APIC, etc later.
470 wakeup_secondary_cpu_via_nmi(int logical_apicid
, unsigned long start_eip
)
472 unsigned long send_status
, accept_status
= 0;
476 /* Boot on the stack */
477 /* Kick the second */
478 apic_icr_write(APIC_DM_NMI
| apic
->dest_logical
, logical_apicid
);
480 pr_debug("Waiting for send to finish...\n");
481 send_status
= safe_apic_wait_icr_idle();
484 * Give the other CPU some time to accept the IPI.
487 if (APIC_INTEGRATED(apic_version
[boot_cpu_physical_apicid
])) {
488 maxlvt
= lapic_get_maxlvt();
489 if (maxlvt
> 3) /* Due to the Pentium erratum 3AP. */
490 apic_write(APIC_ESR
, 0);
491 accept_status
= (apic_read(APIC_ESR
) & 0xEF);
493 pr_debug("NMI sent.\n");
496 printk(KERN_ERR
"APIC never delivered???\n");
498 printk(KERN_ERR
"APIC delivery error (%lx).\n", accept_status
);
500 return (send_status
| accept_status
);
504 wakeup_secondary_cpu_via_init(int phys_apicid
, unsigned long start_eip
)
506 unsigned long send_status
, accept_status
= 0;
507 int maxlvt
, num_starts
, j
;
509 maxlvt
= lapic_get_maxlvt();
512 * Be paranoid about clearing APIC errors.
514 if (APIC_INTEGRATED(apic_version
[phys_apicid
])) {
515 if (maxlvt
> 3) /* Due to the Pentium erratum 3AP. */
516 apic_write(APIC_ESR
, 0);
520 pr_debug("Asserting INIT.\n");
523 * Turn INIT on target chip
528 apic_icr_write(APIC_INT_LEVELTRIG
| APIC_INT_ASSERT
| APIC_DM_INIT
,
531 pr_debug("Waiting for send to finish...\n");
532 send_status
= safe_apic_wait_icr_idle();
536 pr_debug("Deasserting INIT.\n");
540 apic_icr_write(APIC_INT_LEVELTRIG
| APIC_DM_INIT
, phys_apicid
);
542 pr_debug("Waiting for send to finish...\n");
543 send_status
= safe_apic_wait_icr_idle();
546 atomic_set(&init_deasserted
, 1);
549 * Should we send STARTUP IPIs ?
551 * Determine this based on the APIC version.
552 * If we don't have an integrated APIC, don't send the STARTUP IPIs.
554 if (APIC_INTEGRATED(apic_version
[phys_apicid
]))
560 * Paravirt / VMI wants a startup IPI hook here to set up the
561 * target processor state.
563 startup_ipi_hook(phys_apicid
, (unsigned long) start_secondary
,
567 * Run STARTUP IPI loop.
569 pr_debug("#startup loops: %d.\n", num_starts
);
571 for (j
= 1; j
<= num_starts
; j
++) {
572 pr_debug("Sending STARTUP #%d.\n", j
);
573 if (maxlvt
> 3) /* Due to the Pentium erratum 3AP. */
574 apic_write(APIC_ESR
, 0);
576 pr_debug("After apic_write.\n");
583 /* Boot on the stack */
584 /* Kick the second */
585 apic_icr_write(APIC_DM_STARTUP
| (start_eip
>> 12),
589 * Give the other CPU some time to accept the IPI.
593 pr_debug("Startup point 1.\n");
595 pr_debug("Waiting for send to finish...\n");
596 send_status
= safe_apic_wait_icr_idle();
599 * Give the other CPU some time to accept the IPI.
602 if (maxlvt
> 3) /* Due to the Pentium erratum 3AP. */
603 apic_write(APIC_ESR
, 0);
604 accept_status
= (apic_read(APIC_ESR
) & 0xEF);
605 if (send_status
|| accept_status
)
608 pr_debug("After Startup.\n");
611 printk(KERN_ERR
"APIC never delivered???\n");
613 printk(KERN_ERR
"APIC delivery error (%lx).\n", accept_status
);
615 return (send_status
| accept_status
);
619 struct work_struct work
;
620 struct task_struct
*idle
;
621 struct completion done
;
625 static void __cpuinit
do_fork_idle(struct work_struct
*work
)
627 struct create_idle
*c_idle
=
628 container_of(work
, struct create_idle
, work
);
630 c_idle
->idle
= fork_idle(c_idle
->cpu
);
631 complete(&c_idle
->done
);
634 /* reduce the number of lines printed when booting a large cpu count system */
635 static void __cpuinit
announce_cpu(int cpu
, int apicid
)
637 static int current_node
= -1;
638 int node
= early_cpu_to_node(cpu
);
640 if (system_state
== SYSTEM_BOOTING
) {
641 if (node
!= current_node
) {
642 if (current_node
> (-1))
645 pr_info("Booting Node %3d, Processors ", node
);
647 pr_cont(" #%d%s", cpu
, cpu
== (nr_cpu_ids
- 1) ? " Ok.\n" : "");
650 pr_info("Booting Node %d Processor %d APIC 0x%x\n",
655 * NOTE - on most systems this is a PHYSICAL apic ID, but on multiquad
656 * (ie clustered apic addressing mode), this is a LOGICAL apic ID.
657 * Returns zero if CPU booted OK, else error code from
658 * ->wakeup_secondary_cpu.
660 static int __cpuinit
do_boot_cpu(int apicid
, int cpu
)
662 unsigned long boot_error
= 0;
663 unsigned long start_ip
;
665 struct create_idle c_idle
= {
667 .done
= COMPLETION_INITIALIZER_ONSTACK(c_idle
.done
),
670 INIT_WORK_ONSTACK(&c_idle
.work
, do_fork_idle
);
672 alternatives_smp_switch(1);
674 c_idle
.idle
= get_idle_for_cpu(cpu
);
677 * We can't use kernel_thread since we must avoid to
678 * reschedule the child.
681 c_idle
.idle
->thread
.sp
= (unsigned long) (((struct pt_regs
*)
682 (THREAD_SIZE
+ task_stack_page(c_idle
.idle
))) - 1);
683 init_idle(c_idle
.idle
, cpu
);
687 schedule_work(&c_idle
.work
);
688 wait_for_completion(&c_idle
.done
);
690 if (IS_ERR(c_idle
.idle
)) {
691 printk("failed fork for CPU %d\n", cpu
);
692 destroy_work_on_stack(&c_idle
.work
);
693 return PTR_ERR(c_idle
.idle
);
696 set_idle_for_cpu(cpu
, c_idle
.idle
);
698 per_cpu(current_task
, cpu
) = c_idle
.idle
;
700 /* Stack for startup_32 can be just as for start_secondary onwards */
703 clear_tsk_thread_flag(c_idle
.idle
, TIF_FORK
);
704 initial_gs
= per_cpu_offset(cpu
);
705 per_cpu(kernel_stack
, cpu
) =
706 (unsigned long)task_stack_page(c_idle
.idle
) -
707 KERNEL_STACK_OFFSET
+ THREAD_SIZE
;
709 early_gdt_descr
.address
= (unsigned long)get_cpu_gdt_table(cpu
);
710 initial_code
= (unsigned long)start_secondary
;
711 stack_start
= c_idle
.idle
->thread
.sp
;
713 /* start_ip had better be page-aligned! */
714 start_ip
= trampoline_address();
716 /* So we see what's up */
717 announce_cpu(cpu
, apicid
);
720 * This grunge runs the startup process for
721 * the targeted processor.
724 printk(KERN_DEBUG
"smpboot cpu %d: start_ip = %lx\n", cpu
, start_ip
);
726 atomic_set(&init_deasserted
, 0);
728 if (get_uv_system_type() != UV_NON_UNIQUE_APIC
) {
730 pr_debug("Setting warm reset code and vector.\n");
732 smpboot_setup_warm_reset_vector(start_ip
);
734 * Be paranoid about clearing APIC errors.
736 if (APIC_INTEGRATED(apic_version
[boot_cpu_physical_apicid
])) {
737 apic_write(APIC_ESR
, 0);
743 * Kick the secondary CPU. Use the method in the APIC driver
744 * if it's defined - or use an INIT boot APIC message otherwise:
746 if (apic
->wakeup_secondary_cpu
)
747 boot_error
= apic
->wakeup_secondary_cpu(apicid
, start_ip
);
749 boot_error
= wakeup_secondary_cpu_via_init(apicid
, start_ip
);
753 * allow APs to start initializing.
755 pr_debug("Before Callout %d.\n", cpu
);
756 cpumask_set_cpu(cpu
, cpu_callout_mask
);
757 pr_debug("After Callout %d.\n", cpu
);
760 * Wait 5s total for a response
762 for (timeout
= 0; timeout
< 50000; timeout
++) {
763 if (cpumask_test_cpu(cpu
, cpu_callin_mask
))
764 break; /* It has booted */
767 * Allow other tasks to run while we wait for the
768 * AP to come online. This also gives a chance
769 * for the MTRR work(triggered by the AP coming online)
770 * to be completed in the stop machine context.
775 if (cpumask_test_cpu(cpu
, cpu_callin_mask
))
776 pr_debug("CPU%d: has booted.\n", cpu
);
779 if (*(volatile u32
*)TRAMPOLINE_SYM(trampoline_status
)
781 /* trampoline started but...? */
782 pr_err("CPU%d: Stuck ??\n", cpu
);
784 /* trampoline code not run */
785 pr_err("CPU%d: Not responding.\n", cpu
);
786 if (apic
->inquire_remote_apic
)
787 apic
->inquire_remote_apic(apicid
);
792 /* Try to put things back the way they were before ... */
793 numa_remove_cpu(cpu
); /* was set by numa_add_cpu */
795 /* was set by do_boot_cpu() */
796 cpumask_clear_cpu(cpu
, cpu_callout_mask
);
798 /* was set by cpu_init() */
799 cpumask_clear_cpu(cpu
, cpu_initialized_mask
);
801 set_cpu_present(cpu
, false);
802 per_cpu(x86_cpu_to_apicid
, cpu
) = BAD_APICID
;
805 /* mark "stuck" area as not stuck */
806 *(volatile u32
*)TRAMPOLINE_SYM(trampoline_status
) = 0;
808 if (get_uv_system_type() != UV_NON_UNIQUE_APIC
) {
810 * Cleanup possible dangling ends...
812 smpboot_restore_warm_reset_vector();
815 destroy_work_on_stack(&c_idle
.work
);
819 int __cpuinit
native_cpu_up(unsigned int cpu
)
821 int apicid
= apic
->cpu_present_to_apicid(cpu
);
825 WARN_ON(irqs_disabled());
827 pr_debug("++++++++++++++++++++=_---CPU UP %u\n", cpu
);
829 if (apicid
== BAD_APICID
|| apicid
== boot_cpu_physical_apicid
||
830 !physid_isset(apicid
, phys_cpu_present_map
)) {
831 printk(KERN_ERR
"%s: bad cpu %d\n", __func__
, cpu
);
836 * Already booted CPU?
838 if (cpumask_test_cpu(cpu
, cpu_callin_mask
)) {
839 pr_debug("do_boot_cpu %d Already started\n", cpu
);
844 * Save current MTRR state in case it was changed since early boot
845 * (e.g. by the ACPI SMI) to initialize new CPUs with MTRRs in sync:
849 per_cpu(cpu_state
, cpu
) = CPU_UP_PREPARE
;
851 err
= do_boot_cpu(apicid
, cpu
);
853 pr_debug("do_boot_cpu failed %d\n", err
);
858 * Check TSC synchronization with the AP (keep irqs disabled
861 local_irq_save(flags
);
862 check_tsc_sync_source(cpu
);
863 local_irq_restore(flags
);
865 while (!cpu_online(cpu
)) {
867 touch_nmi_watchdog();
874 * arch_disable_smp_support() - disables SMP support for x86 at runtime
876 void arch_disable_smp_support(void)
878 disable_ioapic_support();
882 * Fall back to non SMP mode after errors.
884 * RED-PEN audit/test this more. I bet there is more state messed up here.
886 static __init
void disable_smp(void)
888 init_cpu_present(cpumask_of(0));
889 init_cpu_possible(cpumask_of(0));
890 smpboot_clear_io_apic_irqs();
892 if (smp_found_config
)
893 physid_set_mask_of_physid(boot_cpu_physical_apicid
, &phys_cpu_present_map
);
895 physid_set_mask_of_physid(0, &phys_cpu_present_map
);
896 cpumask_set_cpu(0, cpu_sibling_mask(0));
897 cpumask_set_cpu(0, cpu_core_mask(0));
901 * Various sanity checks.
903 static int __init
smp_sanity_check(unsigned max_cpus
)
907 #if !defined(CONFIG_X86_BIGSMP) && defined(CONFIG_X86_32)
908 if (def_to_bigsmp
&& nr_cpu_ids
> 8) {
913 "More than 8 CPUs detected - skipping them.\n"
914 "Use CONFIG_X86_BIGSMP.\n");
917 for_each_present_cpu(cpu
) {
919 set_cpu_present(cpu
, false);
924 for_each_possible_cpu(cpu
) {
926 set_cpu_possible(cpu
, false);
934 if (!physid_isset(hard_smp_processor_id(), phys_cpu_present_map
)) {
936 "weird, boot CPU (#%d) not listed by the BIOS.\n",
937 hard_smp_processor_id());
939 physid_set(hard_smp_processor_id(), phys_cpu_present_map
);
943 * If we couldn't find an SMP configuration at boot time,
944 * get out of here now!
946 if (!smp_found_config
&& !acpi_lapic
) {
948 printk(KERN_NOTICE
"SMP motherboard not detected.\n");
950 if (APIC_init_uniprocessor())
951 printk(KERN_NOTICE
"Local APIC not detected."
952 " Using dummy APIC emulation.\n");
957 * Should not be necessary because the MP table should list the boot
958 * CPU too, but we do it for the sake of robustness anyway.
960 if (!apic
->check_phys_apicid_present(boot_cpu_physical_apicid
)) {
962 "weird, boot CPU (#%d) not listed by the BIOS.\n",
963 boot_cpu_physical_apicid
);
964 physid_set(hard_smp_processor_id(), phys_cpu_present_map
);
969 * If we couldn't find a local APIC, then get out of here now!
971 if (APIC_INTEGRATED(apic_version
[boot_cpu_physical_apicid
]) &&
974 pr_err("BIOS bug, local APIC #%d not detected!...\n",
975 boot_cpu_physical_apicid
);
976 pr_err("... forcing use of dummy APIC emulation."
977 "(tell your hw vendor)\n");
979 smpboot_clear_io_apic();
980 disable_ioapic_support();
987 * If SMP should be disabled, then really disable it!
990 printk(KERN_INFO
"SMP mode deactivated.\n");
991 smpboot_clear_io_apic();
995 bsp_end_local_APIC_setup();
1002 static void __init
smp_cpu_index_default(void)
1005 struct cpuinfo_x86
*c
;
1007 for_each_possible_cpu(i
) {
1009 /* mark all to hotplug */
1010 c
->cpu_index
= nr_cpu_ids
;
1015 * Prepare for SMP bootup. The MP table or ACPI has been read
1016 * earlier. Just do some sanity checking here and enable APIC mode.
1018 void __init
native_smp_prepare_cpus(unsigned int max_cpus
)
1023 smp_cpu_index_default();
1026 * Setup boot CPU information
1028 smp_store_cpu_info(0); /* Final full version of the data */
1029 cpumask_copy(cpu_callin_mask
, cpumask_of(0));
1032 current_thread_info()->cpu
= 0; /* needed? */
1033 for_each_possible_cpu(i
) {
1034 zalloc_cpumask_var(&per_cpu(cpu_sibling_map
, i
), GFP_KERNEL
);
1035 zalloc_cpumask_var(&per_cpu(cpu_core_map
, i
), GFP_KERNEL
);
1036 zalloc_cpumask_var(&per_cpu(cpu_llc_shared_map
, i
), GFP_KERNEL
);
1038 set_cpu_sibling_map(0);
1041 if (smp_sanity_check(max_cpus
) < 0) {
1042 printk(KERN_INFO
"SMP disabled\n");
1047 default_setup_apic_routing();
1050 if (read_apic_id() != boot_cpu_physical_apicid
) {
1051 panic("Boot APIC ID in local APIC unexpected (%d vs %d)",
1052 read_apic_id(), boot_cpu_physical_apicid
);
1053 /* Or can we switch back to PIC here? */
1060 * Switch from PIC to APIC mode.
1065 * Enable IO APIC before setting up error vector
1067 if (!skip_ioapic_setup
&& nr_ioapics
)
1070 bsp_end_local_APIC_setup();
1072 if (apic
->setup_portio_remap
)
1073 apic
->setup_portio_remap();
1075 smpboot_setup_io_apic();
1077 * Set up local APIC timer on boot CPU.
1080 printk(KERN_INFO
"CPU%d: ", 0);
1081 print_cpu_info(&cpu_data(0));
1082 x86_init
.timers
.setup_percpu_clockev();
1087 set_mtrr_aps_delayed_init();
1092 void arch_disable_nonboot_cpus_begin(void)
1095 * Avoid the smp alternatives switch during the disable_nonboot_cpus().
1096 * In the suspend path, we will be back in the SMP mode shortly anyways.
1098 skip_smp_alternatives
= true;
1101 void arch_disable_nonboot_cpus_end(void)
1103 skip_smp_alternatives
= false;
1106 void arch_enable_nonboot_cpus_begin(void)
1108 set_mtrr_aps_delayed_init();
1111 void arch_enable_nonboot_cpus_end(void)
1117 * Early setup to make printk work.
1119 void __init
native_smp_prepare_boot_cpu(void)
1121 int me
= smp_processor_id();
1122 switch_to_new_gdt(me
);
1123 /* already set me in cpu_online_mask in boot_cpu_init() */
1124 cpumask_set_cpu(me
, cpu_callout_mask
);
1125 per_cpu(cpu_state
, me
) = CPU_ONLINE
;
1128 void __init
native_smp_cpus_done(unsigned int max_cpus
)
1130 pr_debug("Boot done.\n");
1133 #ifdef CONFIG_X86_IO_APIC
1134 setup_ioapic_dest();
1139 static int __initdata setup_possible_cpus
= -1;
1140 static int __init
_setup_possible_cpus(char *str
)
1142 get_option(&str
, &setup_possible_cpus
);
1145 early_param("possible_cpus", _setup_possible_cpus
);
1149 * cpu_possible_mask should be static, it cannot change as cpu's
1150 * are onlined, or offlined. The reason is per-cpu data-structures
1151 * are allocated by some modules at init time, and dont expect to
1152 * do this dynamically on cpu arrival/departure.
1153 * cpu_present_mask on the other hand can change dynamically.
1154 * In case when cpu_hotplug is not compiled, then we resort to current
1155 * behaviour, which is cpu_possible == cpu_present.
1158 * Three ways to find out the number of additional hotplug CPUs:
1159 * - If the BIOS specified disabled CPUs in ACPI/mptables use that.
1160 * - The user can overwrite it with possible_cpus=NUM
1161 * - Otherwise don't reserve additional CPUs.
1162 * We do this because additional CPUs waste a lot of memory.
1165 __init
void prefill_possible_map(void)
1169 /* no processor from mptable or madt */
1170 if (!num_processors
)
1173 i
= setup_max_cpus
?: 1;
1174 if (setup_possible_cpus
== -1) {
1175 possible
= num_processors
;
1176 #ifdef CONFIG_HOTPLUG_CPU
1178 possible
+= disabled_cpus
;
1184 possible
= setup_possible_cpus
;
1186 total_cpus
= max_t(int, possible
, num_processors
+ disabled_cpus
);
1188 /* nr_cpu_ids could be reduced via nr_cpus= */
1189 if (possible
> nr_cpu_ids
) {
1191 "%d Processors exceeds NR_CPUS limit of %d\n",
1192 possible
, nr_cpu_ids
);
1193 possible
= nr_cpu_ids
;
1196 #ifdef CONFIG_HOTPLUG_CPU
1197 if (!setup_max_cpus
)
1201 "%d Processors exceeds max_cpus limit of %u\n",
1202 possible
, setup_max_cpus
);
1206 printk(KERN_INFO
"SMP: Allowing %d CPUs, %d hotplug CPUs\n",
1207 possible
, max_t(int, possible
- num_processors
, 0));
1209 for (i
= 0; i
< possible
; i
++)
1210 set_cpu_possible(i
, true);
1211 for (; i
< NR_CPUS
; i
++)
1212 set_cpu_possible(i
, false);
1214 nr_cpu_ids
= possible
;
1217 #ifdef CONFIG_HOTPLUG_CPU
1219 static void remove_siblinginfo(int cpu
)
1222 struct cpuinfo_x86
*c
= &cpu_data(cpu
);
1224 for_each_cpu(sibling
, cpu_core_mask(cpu
)) {
1225 cpumask_clear_cpu(cpu
, cpu_core_mask(sibling
));
1227 * last thread sibling in this cpu core going down
1229 if (cpumask_weight(cpu_sibling_mask(cpu
)) == 1)
1230 cpu_data(sibling
).booted_cores
--;
1233 for_each_cpu(sibling
, cpu_sibling_mask(cpu
))
1234 cpumask_clear_cpu(cpu
, cpu_sibling_mask(sibling
));
1235 cpumask_clear(cpu_sibling_mask(cpu
));
1236 cpumask_clear(cpu_core_mask(cpu
));
1237 c
->phys_proc_id
= 0;
1239 cpumask_clear_cpu(cpu
, cpu_sibling_setup_mask
);
1242 static void __ref
remove_cpu_from_maps(int cpu
)
1244 set_cpu_online(cpu
, false);
1245 cpumask_clear_cpu(cpu
, cpu_callout_mask
);
1246 cpumask_clear_cpu(cpu
, cpu_callin_mask
);
1247 /* was set by cpu_init() */
1248 cpumask_clear_cpu(cpu
, cpu_initialized_mask
);
1249 numa_remove_cpu(cpu
);
1252 void cpu_disable_common(void)
1254 int cpu
= smp_processor_id();
1256 remove_siblinginfo(cpu
);
1258 /* It's now safe to remove this processor from the online map */
1260 remove_cpu_from_maps(cpu
);
1261 unlock_vector_lock();
1265 int native_cpu_disable(void)
1267 int cpu
= smp_processor_id();
1270 * Perhaps use cpufreq to drop frequency, but that could go
1271 * into generic code.
1273 * We won't take down the boot processor on i386 due to some
1274 * interrupts only being able to be serviced by the BSP.
1275 * Especially so if we're not using an IOAPIC -zwane
1282 cpu_disable_common();
1286 void native_cpu_die(unsigned int cpu
)
1288 /* We don't do anything here: idle task is faking death itself. */
1291 for (i
= 0; i
< 10; i
++) {
1292 /* They ack this in play_dead by setting CPU_DEAD */
1293 if (per_cpu(cpu_state
, cpu
) == CPU_DEAD
) {
1294 if (system_state
== SYSTEM_RUNNING
)
1295 pr_info("CPU %u is now offline\n", cpu
);
1297 if (1 == num_online_cpus())
1298 alternatives_smp_switch(0);
1303 pr_err("CPU %u didn't die...\n", cpu
);
1306 void play_dead_common(void)
1309 reset_lazy_tlbstate();
1310 c1e_remove_cpu(raw_smp_processor_id());
1314 __this_cpu_write(cpu_state
, CPU_DEAD
);
1317 * With physical CPU hotplug, we should halt the cpu
1319 local_irq_disable();
1323 * We need to flush the caches before going to sleep, lest we have
1324 * dirty data in our caches when we come back up.
1326 static inline void mwait_play_dead(void)
1328 unsigned int eax
, ebx
, ecx
, edx
;
1329 unsigned int highest_cstate
= 0;
1330 unsigned int highest_subcstate
= 0;
1333 struct cpuinfo_x86
*c
= __this_cpu_ptr(&cpu_info
);
1335 if (!(cpu_has(c
, X86_FEATURE_MWAIT
) && mwait_usable(c
)))
1337 if (!cpu_has(__this_cpu_ptr(&cpu_info
), X86_FEATURE_CLFLSH
))
1339 if (__this_cpu_read(cpu_info
.cpuid_level
) < CPUID_MWAIT_LEAF
)
1342 eax
= CPUID_MWAIT_LEAF
;
1344 native_cpuid(&eax
, &ebx
, &ecx
, &edx
);
1347 * eax will be 0 if EDX enumeration is not valid.
1348 * Initialized below to cstate, sub_cstate value when EDX is valid.
1350 if (!(ecx
& CPUID5_ECX_EXTENSIONS_SUPPORTED
)) {
1353 edx
>>= MWAIT_SUBSTATE_SIZE
;
1354 for (i
= 0; i
< 7 && edx
; i
++, edx
>>= MWAIT_SUBSTATE_SIZE
) {
1355 if (edx
& MWAIT_SUBSTATE_MASK
) {
1357 highest_subcstate
= edx
& MWAIT_SUBSTATE_MASK
;
1360 eax
= (highest_cstate
<< MWAIT_SUBSTATE_SIZE
) |
1361 (highest_subcstate
- 1);
1365 * This should be a memory location in a cache line which is
1366 * unlikely to be touched by other processors. The actual
1367 * content is immaterial as it is not actually modified in any way.
1369 mwait_ptr
= ¤t_thread_info()->flags
;
1375 * The CLFLUSH is a workaround for erratum AAI65 for
1376 * the Xeon 7400 series. It's not clear it is actually
1377 * needed, but it should be harmless in either case.
1378 * The WBINVD is insufficient due to the spurious-wakeup
1379 * case where we return around the loop.
1382 __monitor(mwait_ptr
, 0, 0);
1388 static inline void hlt_play_dead(void)
1390 if (__this_cpu_read(cpu_info
.x86
) >= 4)
1398 void native_play_dead(void)
1401 tboot_shutdown(TB_SHUTDOWN_WFS
);
1403 mwait_play_dead(); /* Only returns on failure */
1407 #else /* ... !CONFIG_HOTPLUG_CPU */
1408 int native_cpu_disable(void)
1413 void native_cpu_die(unsigned int cpu
)
1415 /* We said "no" in __cpu_disable */
1419 void native_play_dead(void)