2 * arch/s390/kernel/smp.c
4 * Copyright IBM Corp. 1999,2007
5 * Author(s): Denis Joseph Barrow (djbarrow@de.ibm.com,barrow_dj@yahoo.com),
6 * Martin Schwidefsky (schwidefsky@de.ibm.com)
7 * Heiko Carstens (heiko.carstens@de.ibm.com)
9 * based on other smp stuff by
10 * (c) 1995 Alan Cox, CymruNET Ltd <alan@cymru.net>
11 * (c) 1998 Ingo Molnar
13 * We work with logical cpu numbering everywhere we can. The only
14 * functions using the real cpu address (got from STAP) are the sigp
15 * functions. For all other functions we use the identity mapping.
16 * That means that cpu_number_map[i] == i for every cpu. cpu_number_map is
17 * used e.g. to find the idle task belonging to a logical cpu. Every array
18 * in the kernel is sorted by the logical cpu number and not by the physical
19 * one which is causing all the confusion with __cpu_logical_map and
20 * cpu_number_map in other architectures.
23 #include <linux/module.h>
24 #include <linux/init.h>
26 #include <linux/err.h>
27 #include <linux/spinlock.h>
28 #include <linux/kernel_stat.h>
29 #include <linux/delay.h>
30 #include <linux/cache.h>
31 #include <linux/interrupt.h>
32 #include <linux/cpu.h>
33 #include <linux/timex.h>
34 #include <linux/bootmem.h>
36 #include <asm/setup.h>
38 #include <asm/pgalloc.h>
40 #include <asm/s390_ext.h>
41 #include <asm/cpcmd.h>
42 #include <asm/tlbflush.h>
43 #include <asm/timer.h>
44 #include <asm/lowcore.h>
48 * An array with a pointer the lowcore of every CPU.
50 struct _lowcore
*lowcore_ptr
[NR_CPUS
];
51 EXPORT_SYMBOL(lowcore_ptr
);
53 cpumask_t cpu_online_map
= CPU_MASK_NONE
;
54 EXPORT_SYMBOL(cpu_online_map
);
56 cpumask_t cpu_possible_map
= CPU_MASK_NONE
;
57 EXPORT_SYMBOL(cpu_possible_map
);
59 static struct task_struct
*current_set
[NR_CPUS
];
61 static void smp_ext_bitcall(int, ec_bit_sig
);
64 * Structure and data for __smp_call_function_map(). This is designed to
65 * minimise static memory requirements. It also looks cleaner.
67 static DEFINE_SPINLOCK(call_lock
);
69 struct call_data_struct
{
70 void (*func
) (void *info
);
77 static struct call_data_struct
*call_data
;
80 * 'Call function' interrupt callback
82 static void do_call_function(void)
84 void (*func
) (void *info
) = call_data
->func
;
85 void *info
= call_data
->info
;
86 int wait
= call_data
->wait
;
88 cpu_set(smp_processor_id(), call_data
->started
);
91 cpu_set(smp_processor_id(), call_data
->finished
);;
94 static void __smp_call_function_map(void (*func
) (void *info
), void *info
,
95 int nonatomic
, int wait
, cpumask_t map
)
97 struct call_data_struct data
;
101 * Can deadlock when interrupts are disabled or if in wrong context.
103 WARN_ON(irqs_disabled() || in_irq());
106 * Check for local function call. We have to have the same call order
107 * as in on_each_cpu() because of machine_restart_smp().
109 if (cpu_isset(smp_processor_id(), map
)) {
111 cpu_clear(smp_processor_id(), map
);
114 cpus_and(map
, map
, cpu_online_map
);
120 data
.started
= CPU_MASK_NONE
;
123 data
.finished
= CPU_MASK_NONE
;
125 spin_lock(&call_lock
);
128 for_each_cpu_mask(cpu
, map
)
129 smp_ext_bitcall(cpu
, ec_call_function
);
131 /* Wait for response */
132 while (!cpus_equal(map
, data
.started
))
135 while (!cpus_equal(map
, data
.finished
))
137 spin_unlock(&call_lock
);
148 * @func: the function to run; this must be fast and non-blocking
149 * @info: an arbitrary pointer to pass to the function
151 * @wait: if true, wait (atomically) until function has completed on other CPUs
153 * Run a function on all other CPUs.
155 * You must not call this function with disabled interrupts, from a
156 * hardware interrupt handler or from a bottom half.
158 int smp_call_function(void (*func
) (void *info
), void *info
, int nonatomic
,
164 map
= cpu_online_map
;
165 cpu_clear(smp_processor_id(), map
);
166 __smp_call_function_map(func
, info
, nonatomic
, wait
, map
);
170 EXPORT_SYMBOL(smp_call_function
);
173 * smp_call_function_single:
174 * @cpu: the CPU where func should run
175 * @func: the function to run; this must be fast and non-blocking
176 * @info: an arbitrary pointer to pass to the function
178 * @wait: if true, wait (atomically) until function has completed on other CPUs
180 * Run a function on one processor.
182 * You must not call this function with disabled interrupts, from a
183 * hardware interrupt handler or from a bottom half.
185 int smp_call_function_single(int cpu
, void (*func
) (void *info
), void *info
,
186 int nonatomic
, int wait
)
189 __smp_call_function_map(func
, info
, nonatomic
, wait
,
190 cpumask_of_cpu(cpu
));
194 EXPORT_SYMBOL(smp_call_function_single
);
196 static void do_send_stop(void)
200 /* stop all processors */
201 for_each_online_cpu(cpu
) {
202 if (cpu
== smp_processor_id())
205 rc
= signal_processor(cpu
, sigp_stop
);
206 } while (rc
== sigp_busy
);
210 static void do_store_status(void)
214 /* store status of all processors in their lowcores (real 0) */
215 for_each_online_cpu(cpu
) {
216 if (cpu
== smp_processor_id())
219 rc
= signal_processor_p(
220 (__u32
)(unsigned long) lowcore_ptr
[cpu
], cpu
,
221 sigp_store_status_at_address
);
222 } while (rc
== sigp_busy
);
226 static void do_wait_for_stop(void)
230 /* Wait for all other cpus to enter stopped state */
231 for_each_online_cpu(cpu
) {
232 if (cpu
== smp_processor_id())
234 while (!smp_cpu_not_running(cpu
))
240 * this function sends a 'stop' sigp to all other CPUs in the system.
241 * it goes straight through.
243 void smp_send_stop(void)
245 /* Disable all interrupts/machine checks */
246 __load_psw_mask(psw_kernel_bits
& ~PSW_MASK_MCHECK
);
248 /* write magic number to zero page (absolute 0) */
249 lowcore_ptr
[smp_processor_id()]->panic_magic
= __PANIC_MAGIC
;
251 /* stop other processors. */
254 /* wait until other processors are stopped */
257 /* store status of other processors. */
262 * Reboot, halt and power_off routines for SMP.
264 void machine_restart_smp(char *__unused
)
270 void machine_halt_smp(void)
273 if (MACHINE_IS_VM
&& strlen(vmhalt_cmd
) > 0)
274 __cpcmd(vmhalt_cmd
, NULL
, 0, NULL
);
275 signal_processor(smp_processor_id(), sigp_stop_and_store_status
);
279 void machine_power_off_smp(void)
282 if (MACHINE_IS_VM
&& strlen(vmpoff_cmd
) > 0)
283 __cpcmd(vmpoff_cmd
, NULL
, 0, NULL
);
284 signal_processor(smp_processor_id(), sigp_stop_and_store_status
);
289 * This is the main routine where commands issued by other
293 static void do_ext_call_interrupt(__u16 code
)
298 * handle bit signal external calls
300 * For the ec_schedule signal we have to do nothing. All the work
301 * is done automatically when we return from the interrupt.
303 bits
= xchg(&S390_lowcore
.ext_call_fast
, 0);
305 if (test_bit(ec_call_function
, &bits
))
310 * Send an external call sigp to another cpu and return without waiting
311 * for its completion.
313 static void smp_ext_bitcall(int cpu
, ec_bit_sig sig
)
316 * Set signaling bit in lowcore of target cpu and kick it
318 set_bit(sig
, (unsigned long *) &lowcore_ptr
[cpu
]->ext_call_fast
);
319 while (signal_processor(cpu
, sigp_emergency_signal
) == sigp_busy
)
325 * this function sends a 'purge tlb' signal to another CPU.
327 void smp_ptlb_callback(void *info
)
332 void smp_ptlb_all(void)
334 on_each_cpu(smp_ptlb_callback
, NULL
, 0, 1);
336 EXPORT_SYMBOL(smp_ptlb_all
);
337 #endif /* ! CONFIG_64BIT */
340 * this function sends a 'reschedule' IPI to another CPU.
341 * it goes straight through and wastes no time serializing
342 * anything. Worst case is that we lose a reschedule ...
344 void smp_send_reschedule(int cpu
)
346 smp_ext_bitcall(cpu
, ec_schedule
);
350 * parameter area for the set/clear control bit callbacks
352 struct ec_creg_mask_parms
{
353 unsigned long orvals
[16];
354 unsigned long andvals
[16];
358 * callback for setting/clearing control bits
360 static void smp_ctl_bit_callback(void *info
)
362 struct ec_creg_mask_parms
*pp
= info
;
363 unsigned long cregs
[16];
366 __ctl_store(cregs
, 0, 15);
367 for (i
= 0; i
<= 15; i
++)
368 cregs
[i
] = (cregs
[i
] & pp
->andvals
[i
]) | pp
->orvals
[i
];
369 __ctl_load(cregs
, 0, 15);
373 * Set a bit in a control register of all cpus
375 void smp_ctl_set_bit(int cr
, int bit
)
377 struct ec_creg_mask_parms parms
;
379 memset(&parms
.orvals
, 0, sizeof(parms
.orvals
));
380 memset(&parms
.andvals
, 0xff, sizeof(parms
.andvals
));
381 parms
.orvals
[cr
] = 1 << bit
;
382 on_each_cpu(smp_ctl_bit_callback
, &parms
, 0, 1);
384 EXPORT_SYMBOL(smp_ctl_set_bit
);
387 * Clear a bit in a control register of all cpus
389 void smp_ctl_clear_bit(int cr
, int bit
)
391 struct ec_creg_mask_parms parms
;
393 memset(&parms
.orvals
, 0, sizeof(parms
.orvals
));
394 memset(&parms
.andvals
, 0xff, sizeof(parms
.andvals
));
395 parms
.andvals
[cr
] = ~(1L << bit
);
396 on_each_cpu(smp_ctl_bit_callback
, &parms
, 0, 1);
398 EXPORT_SYMBOL(smp_ctl_clear_bit
);
400 #if defined(CONFIG_ZFCPDUMP) || defined(CONFIG_ZFCPDUMP_MODULE)
403 * zfcpdump_prefix_array holds prefix registers for the following scenario:
404 * 64 bit zfcpdump kernel and 31 bit kernel which is to be dumped. We have to
405 * save its prefix registers, since they get lost, when switching from 31 bit
408 unsigned int zfcpdump_prefix_array
[NR_CPUS
+ 1] \
409 __attribute__((__section__(".data")));
411 static void __init
smp_get_save_area(unsigned int cpu
, unsigned int phy_cpu
)
413 if (ipl_info
.type
!= IPL_TYPE_FCP_DUMP
)
415 if (cpu
>= NR_CPUS
) {
416 printk(KERN_WARNING
"Registers for cpu %i not saved since dump "
417 "kernel was compiled with NR_CPUS=%i\n", cpu
, NR_CPUS
);
420 zfcpdump_save_areas
[cpu
] = alloc_bootmem(sizeof(union save_area
));
421 __cpu_logical_map
[1] = (__u16
) phy_cpu
;
422 while (signal_processor(1, sigp_stop_and_store_status
) == sigp_busy
)
424 memcpy(zfcpdump_save_areas
[cpu
],
425 (void *)(unsigned long) store_prefix() + SAVE_AREA_BASE
,
428 /* copy original prefix register */
429 zfcpdump_save_areas
[cpu
]->s390x
.pref_reg
= zfcpdump_prefix_array
[cpu
];
433 union save_area
*zfcpdump_save_areas
[NR_CPUS
+ 1];
434 EXPORT_SYMBOL_GPL(zfcpdump_save_areas
);
438 static inline void smp_get_save_area(unsigned int cpu
, unsigned int phy_cpu
) { }
440 #endif /* CONFIG_ZFCPDUMP || CONFIG_ZFCPDUMP_MODULE */
443 * Lets check how many CPUs we have.
445 static unsigned int __init
smp_count_cpus(void)
447 unsigned int cpu
, num_cpus
;
451 * cpu 0 is the boot cpu. See smp_prepare_boot_cpu.
453 boot_cpu_addr
= S390_lowcore
.cpu_data
.cpu_addr
;
454 current_thread_info()->cpu
= 0;
456 for (cpu
= 0; cpu
<= 65535; cpu
++) {
457 if ((__u16
) cpu
== boot_cpu_addr
)
459 __cpu_logical_map
[1] = (__u16
) cpu
;
460 if (signal_processor(1, sigp_sense
) == sigp_not_operational
)
462 smp_get_save_area(num_cpus
, cpu
);
465 printk("Detected %d CPU's\n", (int) num_cpus
);
466 printk("Boot cpu address %2X\n", boot_cpu_addr
);
471 * Activate a secondary processor.
473 int __cpuinit
start_secondary(void *cpuvoid
)
478 /* Enable TOD clock interrupts on the secondary cpu. */
480 #ifdef CONFIG_VIRT_TIMER
481 /* Enable cpu timer interrupts on the secondary cpu. */
484 /* Enable pfault pseudo page faults on this cpu. */
487 /* Mark this cpu as online */
488 cpu_set(smp_processor_id(), cpu_online_map
);
489 /* Switch on interrupts */
491 /* Print info about this processor */
492 print_cpu_info(&S390_lowcore
.cpu_data
);
493 /* cpu_idle will call schedule for us */
498 DEFINE_PER_CPU(struct s390_idle_data
, s390_idle
);
500 static void __init
smp_create_idle(unsigned int cpu
)
502 struct task_struct
*p
;
505 * don't care about the psw and regs settings since we'll never
506 * reschedule the forked task.
510 panic("failed fork for CPU %u: %li", cpu
, PTR_ERR(p
));
511 current_set
[cpu
] = p
;
512 spin_lock_init(&(&per_cpu(s390_idle
, cpu
))->lock
);
515 static int cpu_stopped(int cpu
)
519 /* Check for stopped state */
520 if (signal_processor_ps(&status
, 0, cpu
, sigp_sense
) ==
521 sigp_status_stored
) {
528 /* Upping and downing of CPUs */
530 int __cpu_up(unsigned int cpu
)
532 struct task_struct
*idle
;
533 struct _lowcore
*cpu_lowcore
;
534 struct stack_frame
*sf
;
538 for (curr_cpu
= 0; curr_cpu
<= 65535; curr_cpu
++) {
539 __cpu_logical_map
[cpu
] = (__u16
) curr_cpu
;
540 if (cpu_stopped(cpu
))
544 if (!cpu_stopped(cpu
))
547 ccode
= signal_processor_p((__u32
)(unsigned long)(lowcore_ptr
[cpu
]),
548 cpu
, sigp_set_prefix
);
550 printk("sigp_set_prefix failed for cpu %d "
551 "with condition code %d\n",
552 (int) cpu
, (int) ccode
);
556 idle
= current_set
[cpu
];
557 cpu_lowcore
= lowcore_ptr
[cpu
];
558 cpu_lowcore
->kernel_stack
= (unsigned long)
559 task_stack_page(idle
) + THREAD_SIZE
;
560 sf
= (struct stack_frame
*) (cpu_lowcore
->kernel_stack
561 - sizeof(struct pt_regs
)
562 - sizeof(struct stack_frame
));
563 memset(sf
, 0, sizeof(struct stack_frame
));
564 sf
->gprs
[9] = (unsigned long) sf
;
565 cpu_lowcore
->save_area
[15] = (unsigned long) sf
;
566 __ctl_store(cpu_lowcore
->cregs_save_area
[0], 0, 15);
569 : : "a" (&cpu_lowcore
->access_regs_save_area
) : "memory");
570 cpu_lowcore
->percpu_offset
= __per_cpu_offset
[cpu
];
571 cpu_lowcore
->current_task
= (unsigned long) idle
;
572 cpu_lowcore
->cpu_data
.cpu_nr
= cpu
;
575 while (signal_processor(cpu
, sigp_restart
) == sigp_busy
)
578 while (!cpu_online(cpu
))
583 static unsigned int __initdata additional_cpus
;
584 static unsigned int __initdata possible_cpus
;
586 void __init
smp_setup_cpu_possible_map(void)
588 unsigned int phy_cpus
, pos_cpus
, cpu
;
590 phy_cpus
= smp_count_cpus();
591 pos_cpus
= min(phy_cpus
+ additional_cpus
, (unsigned int) NR_CPUS
);
594 pos_cpus
= min(possible_cpus
, (unsigned int) NR_CPUS
);
596 for (cpu
= 0; cpu
< pos_cpus
; cpu
++)
597 cpu_set(cpu
, cpu_possible_map
);
599 phy_cpus
= min(phy_cpus
, pos_cpus
);
601 for (cpu
= 0; cpu
< phy_cpus
; cpu
++)
602 cpu_set(cpu
, cpu_present_map
);
605 #ifdef CONFIG_HOTPLUG_CPU
607 static int __init
setup_additional_cpus(char *s
)
609 additional_cpus
= simple_strtoul(s
, NULL
, 0);
612 early_param("additional_cpus", setup_additional_cpus
);
614 static int __init
setup_possible_cpus(char *s
)
616 possible_cpus
= simple_strtoul(s
, NULL
, 0);
619 early_param("possible_cpus", setup_possible_cpus
);
621 int __cpu_disable(void)
623 struct ec_creg_mask_parms cr_parms
;
624 int cpu
= smp_processor_id();
626 cpu_clear(cpu
, cpu_online_map
);
628 /* Disable pfault pseudo page faults on this cpu. */
631 memset(&cr_parms
.orvals
, 0, sizeof(cr_parms
.orvals
));
632 memset(&cr_parms
.andvals
, 0xff, sizeof(cr_parms
.andvals
));
634 /* disable all external interrupts */
635 cr_parms
.orvals
[0] = 0;
636 cr_parms
.andvals
[0] = ~(1 << 15 | 1 << 14 | 1 << 13 | 1 << 12 |
637 1 << 11 | 1 << 10 | 1 << 6 | 1 << 4);
638 /* disable all I/O interrupts */
639 cr_parms
.orvals
[6] = 0;
640 cr_parms
.andvals
[6] = ~(1 << 31 | 1 << 30 | 1 << 29 | 1 << 28 |
641 1 << 27 | 1 << 26 | 1 << 25 | 1 << 24);
642 /* disable most machine checks */
643 cr_parms
.orvals
[14] = 0;
644 cr_parms
.andvals
[14] = ~(1 << 28 | 1 << 27 | 1 << 26 |
647 smp_ctl_bit_callback(&cr_parms
);
652 void __cpu_die(unsigned int cpu
)
654 /* Wait until target cpu is down */
655 while (!smp_cpu_not_running(cpu
))
657 printk("Processor %d spun down\n", cpu
);
663 signal_processor(smp_processor_id(), sigp_stop
);
668 #endif /* CONFIG_HOTPLUG_CPU */
671 * Cycle through the processors and setup structures.
674 void __init
smp_prepare_cpus(unsigned int max_cpus
)
680 /* request the 0x1201 emergency signal external interrupt */
681 if (register_external_interrupt(0x1201, do_ext_call_interrupt
) != 0)
682 panic("Couldn't request external interrupt 0x1201");
683 memset(lowcore_ptr
, 0, sizeof(lowcore_ptr
));
685 * Initialize prefix pages and stacks for all possible cpus
687 print_cpu_info(&S390_lowcore
.cpu_data
);
689 for_each_possible_cpu(i
) {
690 lowcore_ptr
[i
] = (struct _lowcore
*)
691 __get_free_pages(GFP_KERNEL
| GFP_DMA
,
692 sizeof(void*) == 8 ? 1 : 0);
693 stack
= __get_free_pages(GFP_KERNEL
, ASYNC_ORDER
);
694 if (!lowcore_ptr
[i
] || !stack
)
695 panic("smp_boot_cpus failed to allocate memory\n");
697 *(lowcore_ptr
[i
]) = S390_lowcore
;
698 lowcore_ptr
[i
]->async_stack
= stack
+ ASYNC_SIZE
;
699 stack
= __get_free_pages(GFP_KERNEL
, 0);
701 panic("smp_boot_cpus failed to allocate memory\n");
702 lowcore_ptr
[i
]->panic_stack
= stack
+ PAGE_SIZE
;
704 if (MACHINE_HAS_IEEE
) {
705 lowcore_ptr
[i
]->extended_save_area_addr
=
706 (__u32
) __get_free_pages(GFP_KERNEL
, 0);
707 if (!lowcore_ptr
[i
]->extended_save_area_addr
)
708 panic("smp_boot_cpus failed to "
709 "allocate memory\n");
714 if (MACHINE_HAS_IEEE
)
715 ctl_set_bit(14, 29); /* enable extended save area */
717 set_prefix((u32
)(unsigned long) lowcore_ptr
[smp_processor_id()]);
719 for_each_possible_cpu(cpu
)
720 if (cpu
!= smp_processor_id())
721 smp_create_idle(cpu
);
724 void __init
smp_prepare_boot_cpu(void)
726 BUG_ON(smp_processor_id() != 0);
728 cpu_set(0, cpu_online_map
);
729 S390_lowcore
.percpu_offset
= __per_cpu_offset
[0];
730 current_set
[0] = current
;
731 spin_lock_init(&(&__get_cpu_var(s390_idle
))->lock
);
734 void __init
smp_cpus_done(unsigned int max_cpus
)
736 cpu_present_map
= cpu_possible_map
;
740 * the frequency of the profiling timer can be changed
741 * by writing a multiplier value into /proc/profile.
743 * usually you want to run this on all CPUs ;)
745 int setup_profiling_timer(unsigned int multiplier
)
750 static DEFINE_PER_CPU(struct cpu
, cpu_devices
);
752 static ssize_t
show_capability(struct sys_device
*dev
, char *buf
)
754 unsigned int capability
;
757 rc
= get_cpu_capability(&capability
);
760 return sprintf(buf
, "%u\n", capability
);
762 static SYSDEV_ATTR(capability
, 0444, show_capability
, NULL
);
764 static ssize_t
show_idle_count(struct sys_device
*dev
, char *buf
)
766 struct s390_idle_data
*idle
;
767 unsigned long long idle_count
;
769 idle
= &per_cpu(s390_idle
, dev
->id
);
770 spin_lock_irq(&idle
->lock
);
771 idle_count
= idle
->idle_count
;
772 spin_unlock_irq(&idle
->lock
);
773 return sprintf(buf
, "%llu\n", idle_count
);
775 static SYSDEV_ATTR(idle_count
, 0444, show_idle_count
, NULL
);
777 static ssize_t
show_idle_time(struct sys_device
*dev
, char *buf
)
779 struct s390_idle_data
*idle
;
780 unsigned long long new_time
;
782 idle
= &per_cpu(s390_idle
, dev
->id
);
783 spin_lock_irq(&idle
->lock
);
785 new_time
= get_clock();
786 idle
->idle_time
+= new_time
- idle
->idle_enter
;
787 idle
->idle_enter
= new_time
;
789 new_time
= idle
->idle_time
;
790 spin_unlock_irq(&idle
->lock
);
791 return sprintf(buf
, "%llu\n", new_time
>> 12);
793 static SYSDEV_ATTR(idle_time_us
, 0444, show_idle_time
, NULL
);
795 static struct attribute
*cpu_attrs
[] = {
796 &attr_capability
.attr
,
797 &attr_idle_count
.attr
,
798 &attr_idle_time_us
.attr
,
802 static struct attribute_group cpu_attr_group
= {
806 static int __cpuinit
smp_cpu_notify(struct notifier_block
*self
,
807 unsigned long action
, void *hcpu
)
809 unsigned int cpu
= (unsigned int)(long)hcpu
;
810 struct cpu
*c
= &per_cpu(cpu_devices
, cpu
);
811 struct sys_device
*s
= &c
->sysdev
;
812 struct s390_idle_data
*idle
;
816 case CPU_ONLINE_FROZEN
:
817 idle
= &per_cpu(s390_idle
, cpu
);
818 spin_lock_irq(&idle
->lock
);
819 idle
->idle_enter
= 0;
821 idle
->idle_count
= 0;
822 spin_unlock_irq(&idle
->lock
);
823 if (sysfs_create_group(&s
->kobj
, &cpu_attr_group
))
827 case CPU_DEAD_FROZEN
:
828 sysfs_remove_group(&s
->kobj
, &cpu_attr_group
);
834 static struct notifier_block __cpuinitdata smp_cpu_nb
= {
835 .notifier_call
= smp_cpu_notify
,
838 static int __init
topology_init(void)
843 register_cpu_notifier(&smp_cpu_nb
);
845 for_each_possible_cpu(cpu
) {
846 struct cpu
*c
= &per_cpu(cpu_devices
, cpu
);
847 struct sys_device
*s
= &c
->sysdev
;
850 register_cpu(c
, cpu
);
851 if (!cpu_online(cpu
))
854 rc
= sysfs_create_group(&s
->kobj
, &cpu_attr_group
);
860 subsys_initcall(topology_init
);