1 /* SMP support routines.
3 * Copyright (C) 2006-2008 Panasonic Corporation
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * version 2 as published by the Free Software Foundation.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
16 #include <linux/interrupt.h>
17 #include <linux/spinlock.h>
18 #include <linux/init.h>
19 #include <linux/jiffies.h>
20 #include <linux/cpumask.h>
21 #include <linux/err.h>
22 #include <linux/kernel.h>
23 #include <linux/delay.h>
24 #include <linux/sched.h>
25 #include <linux/profile.h>
26 #include <linux/smp.h>
27 #include <asm/tlbflush.h>
28 #include <asm/system.h>
29 #include <asm/bitops.h>
30 #include <asm/processor.h>
32 #include <asm/exceptions.h>
33 #include <asm/hardirq.h>
35 #include <asm/mmu_context.h>
36 #include <asm/thread_info.h>
37 #include <asm/cpu-regs.h>
38 #include <asm/intctl-regs.h>
41 #ifdef CONFIG_HOTPLUG_CPU
42 #include <linux/cpu.h>
43 #include <asm/cacheflush.h>
45 static unsigned long sleep_mode
[NR_CPUS
];
47 static void run_sleep_cpu(unsigned int cpu
);
48 static void run_wakeup_cpu(unsigned int cpu
);
49 #endif /* CONFIG_HOTPLUG_CPU */
52 * Debug Message function
57 #define Dprintk(fmt, ...) printk(KERN_DEBUG fmt, ##__VA_ARGS__)
59 #define Dprintk(fmt, ...) no_printk(KERN_DEBUG fmt, ##__VA_ARGS__)
62 /* timeout value in msec for smp_nmi_call_function. zero is no timeout. */
63 #define CALL_FUNCTION_NMI_IPI_TIMEOUT 0
66 * Structure and data for smp_nmi_call_function().
68 struct nmi_call_data_struct
{
74 char size_alignment
[0]
75 __attribute__ ((__aligned__(SMP_CACHE_BYTES
)));
76 } __attribute__ ((__aligned__(SMP_CACHE_BYTES
)));
78 static DEFINE_SPINLOCK(smp_nmi_call_lock
);
79 static struct nmi_call_data_struct
*nmi_call_data
;
82 * Data structures and variables
84 static cpumask_t cpu_callin_map
; /* Bitmask of callin CPUs */
85 static cpumask_t cpu_callout_map
; /* Bitmask of callout CPUs */
86 cpumask_t cpu_boot_map
; /* Bitmask of boot APs */
87 unsigned long start_stack
[NR_CPUS
- 1];
92 struct mn10300_cpuinfo cpu_data
[NR_CPUS
] __cacheline_aligned
;
94 static int cpucount
; /* The count of boot CPUs */
95 static cpumask_t smp_commenced_mask
;
96 cpumask_t cpu_initialized __initdata
= CPU_MASK_NONE
;
101 static int do_boot_cpu(int);
102 static void smp_show_cpu_info(int cpu_id
);
103 static void smp_callin(void);
104 static void smp_online(void);
105 static void smp_store_cpu_info(int);
106 static void smp_cpu_init(void);
107 static void smp_tune_scheduling(void);
108 static void send_IPI_mask(const cpumask_t
*cpumask
, int irq
);
109 static void init_ipi(void);
112 * IPI Initialization interrupt definitions
114 static void mn10300_ipi_disable(unsigned int irq
);
115 static void mn10300_ipi_enable(unsigned int irq
);
116 static void mn10300_ipi_ack(unsigned int irq
);
117 static void mn10300_ipi_nop(unsigned int irq
);
119 static struct irq_chip mn10300_ipi_type
= {
121 .disable
= mn10300_ipi_disable
,
122 .enable
= mn10300_ipi_enable
,
123 .ack
= mn10300_ipi_ack
,
124 .eoi
= mn10300_ipi_nop
127 static irqreturn_t
smp_reschedule_interrupt(int irq
, void *dev_id
);
128 static irqreturn_t
smp_call_function_interrupt(int irq
, void *dev_id
);
130 static struct irqaction reschedule_ipi
= {
131 .handler
= smp_reschedule_interrupt
,
132 .name
= "smp reschedule IPI"
134 static struct irqaction call_function_ipi
= {
135 .handler
= smp_call_function_interrupt
,
136 .name
= "smp call function IPI"
139 #if !defined(CONFIG_GENERIC_CLOCKEVENTS) || defined(CONFIG_GENERIC_CLOCKEVENTS_BROADCAST)
140 static irqreturn_t
smp_ipi_timer_interrupt(int irq
, void *dev_id
);
141 static struct irqaction local_timer_ipi
= {
142 .handler
= smp_ipi_timer_interrupt
,
143 .flags
= IRQF_DISABLED
,
144 .name
= "smp local timer IPI"
149 * init_ipi - Initialise the IPI mechanism
151 static void init_ipi(void)
156 /* set up the reschedule IPI */
157 set_irq_chip_and_handler(RESCHEDULE_IPI
,
158 &mn10300_ipi_type
, handle_percpu_irq
);
159 setup_irq(RESCHEDULE_IPI
, &reschedule_ipi
);
160 set_intr_level(RESCHEDULE_IPI
, RESCHEDULE_GxICR_LV
);
161 mn10300_ipi_enable(RESCHEDULE_IPI
);
163 /* set up the call function IPI */
164 set_irq_chip_and_handler(CALL_FUNC_SINGLE_IPI
,
165 &mn10300_ipi_type
, handle_percpu_irq
);
166 setup_irq(CALL_FUNC_SINGLE_IPI
, &call_function_ipi
);
167 set_intr_level(CALL_FUNC_SINGLE_IPI
, CALL_FUNCTION_GxICR_LV
);
168 mn10300_ipi_enable(CALL_FUNC_SINGLE_IPI
);
170 /* set up the local timer IPI */
171 #if !defined(CONFIG_GENERIC_CLOCKEVENTS) || \
172 defined(CONFIG_GENERIC_CLOCKEVENTS_BROADCAST)
173 set_irq_chip_and_handler(LOCAL_TIMER_IPI
,
174 &mn10300_ipi_type
, handle_percpu_irq
);
175 setup_irq(LOCAL_TIMER_IPI
, &local_timer_ipi
);
176 set_intr_level(LOCAL_TIMER_IPI
, LOCAL_TIMER_GxICR_LV
);
177 mn10300_ipi_enable(LOCAL_TIMER_IPI
);
180 #ifdef CONFIG_MN10300_CACHE_ENABLED
181 /* set up the cache flush IPI */
182 flags
= arch_local_cli_save();
183 __set_intr_stub(NUM2EXCEP_IRQ_LEVEL(FLUSH_CACHE_GxICR_LV
),
184 mn10300_low_ipi_handler
);
185 GxICR(FLUSH_CACHE_IPI
) = FLUSH_CACHE_GxICR_LV
| GxICR_DETECT
;
186 mn10300_ipi_enable(FLUSH_CACHE_IPI
);
187 arch_local_irq_restore(flags
);
190 /* set up the NMI call function IPI */
191 flags
= arch_local_cli_save();
192 GxICR(CALL_FUNCTION_NMI_IPI
) = GxICR_NMI
| GxICR_ENABLE
| GxICR_DETECT
;
193 tmp16
= GxICR(CALL_FUNCTION_NMI_IPI
);
194 arch_local_irq_restore(flags
);
196 /* set up the SMP boot IPI */
197 flags
= arch_local_cli_save();
198 __set_intr_stub(NUM2EXCEP_IRQ_LEVEL(SMP_BOOT_GxICR_LV
),
199 mn10300_low_ipi_handler
);
200 arch_local_irq_restore(flags
);
204 * mn10300_ipi_shutdown - Shut down handling of an IPI
205 * @irq: The IPI to be shut down.
207 static void mn10300_ipi_shutdown(unsigned int irq
)
212 flags
= arch_local_cli_save();
215 GxICR(irq
) = (tmp
& GxICR_LEVEL
) | GxICR_DETECT
;
218 arch_local_irq_restore(flags
);
222 * mn10300_ipi_enable - Enable an IPI
223 * @irq: The IPI to be enabled.
225 static void mn10300_ipi_enable(unsigned int irq
)
230 flags
= arch_local_cli_save();
233 GxICR(irq
) = (tmp
& GxICR_LEVEL
) | GxICR_ENABLE
;
236 arch_local_irq_restore(flags
);
240 * mn10300_ipi_disable - Disable an IPI
241 * @irq: The IPI to be disabled.
243 static void mn10300_ipi_disable(unsigned int irq
)
248 flags
= arch_local_cli_save();
251 GxICR(irq
) = tmp
& GxICR_LEVEL
;
254 arch_local_irq_restore(flags
);
258 * mn10300_ipi_ack - Acknowledge an IPI interrupt in the PIC
259 * @irq: The IPI to be acknowledged.
261 * Clear the interrupt detection flag for the IPI on the appropriate interrupt
262 * channel in the PIC.
264 static void mn10300_ipi_ack(unsigned int irq
)
269 flags
= arch_local_cli_save();
270 GxICR_u8(irq
) = GxICR_DETECT
;
272 arch_local_irq_restore(flags
);
276 * mn10300_ipi_nop - Dummy IPI action
277 * @irq: The IPI to be acted upon.
279 static void mn10300_ipi_nop(unsigned int irq
)
284 * send_IPI_mask - Send IPIs to all CPUs in list
285 * @cpumask: The list of CPUs to target.
286 * @irq: The IPI request to be sent.
288 * Send the specified IPI to all the CPUs in the list, not waiting for them to
289 * finish before returning. The caller is responsible for synchronisation if
292 static void send_IPI_mask(const cpumask_t
*cpumask
, int irq
)
297 for (i
= 0; i
< NR_CPUS
; i
++) {
298 if (cpu_isset(i
, *cpumask
)) {
300 tmp
= CROSS_GxICR(irq
, i
);
301 CROSS_GxICR(irq
, i
) =
302 tmp
| GxICR_REQUEST
| GxICR_DETECT
;
303 tmp
= CROSS_GxICR(irq
, i
); /* flush write buffer */
309 * send_IPI_self - Send an IPI to this CPU.
310 * @irq: The IPI request to be sent.
312 * Send the specified IPI to the current CPU.
314 void send_IPI_self(int irq
)
316 send_IPI_mask(cpumask_of(smp_processor_id()), irq
);
320 * send_IPI_allbutself - Send IPIs to all the other CPUs.
321 * @irq: The IPI request to be sent.
323 * Send the specified IPI to all CPUs in the system barring the current one,
324 * not waiting for them to finish before returning. The caller is responsible
325 * for synchronisation if that is needed.
327 void send_IPI_allbutself(int irq
)
331 cpumask
= cpu_online_map
;
332 cpu_clear(smp_processor_id(), cpumask
);
333 send_IPI_mask(&cpumask
, irq
);
336 void arch_send_call_function_ipi_mask(const struct cpumask
*mask
)
339 /*send_IPI_mask(mask, CALL_FUNCTION_IPI);*/
342 void arch_send_call_function_single_ipi(int cpu
)
344 send_IPI_mask(cpumask_of(cpu
), CALL_FUNC_SINGLE_IPI
);
348 * smp_send_reschedule - Send reschedule IPI to a CPU
349 * @cpu: The CPU to target.
351 void smp_send_reschedule(int cpu
)
353 send_IPI_mask(cpumask_of(cpu
), RESCHEDULE_IPI
);
357 * smp_nmi_call_function - Send a call function NMI IPI to all CPUs
358 * @func: The function to ask to be run.
359 * @info: The context data to pass to that function.
360 * @wait: If true, wait (atomically) until function is run on all CPUs.
362 * Send a non-maskable request to all CPUs in the system, requesting them to
363 * run the specified function with the given context data, and, potentially, to
364 * wait for completion of that function on all CPUs.
366 * Returns 0 if successful, -ETIMEDOUT if we were asked to wait, but hit the
369 int smp_nmi_call_function(smp_call_func_t func
, void *info
, int wait
)
371 struct nmi_call_data_struct data
;
376 cpus
= num_online_cpus() - 1;
382 data
.started
= cpu_online_map
;
383 cpu_clear(smp_processor_id(), data
.started
);
386 data
.finished
= data
.started
;
388 spin_lock_irqsave(&smp_nmi_call_lock
, flags
);
389 nmi_call_data
= &data
;
392 /* Send a message to all other CPUs and wait for them to respond */
393 send_IPI_allbutself(CALL_FUNCTION_NMI_IPI
);
395 /* Wait for response */
396 if (CALL_FUNCTION_NMI_IPI_TIMEOUT
> 0) {
398 cnt
< CALL_FUNCTION_NMI_IPI_TIMEOUT
&&
399 !cpus_empty(data
.started
);
403 if (wait
&& cnt
< CALL_FUNCTION_NMI_IPI_TIMEOUT
) {
405 cnt
< CALL_FUNCTION_NMI_IPI_TIMEOUT
&&
406 !cpus_empty(data
.finished
);
411 if (cnt
>= CALL_FUNCTION_NMI_IPI_TIMEOUT
)
415 /* If timeout value is zero, wait until cpumask has been
417 while (!cpus_empty(data
.started
))
420 while (!cpus_empty(data
.finished
))
424 spin_unlock_irqrestore(&smp_nmi_call_lock
, flags
);
429 * stop_this_cpu - Callback to stop a CPU.
430 * @unused: Callback context (ignored).
432 void stop_this_cpu(void *unused
)
434 static volatile int stopflag
;
437 #ifdef CONFIG_GDBSTUB
438 /* In case of single stepping smp_send_stop by other CPU,
439 * clear procindebug to avoid deadlock.
441 atomic_set(&procindebug
[smp_processor_id()], 0);
442 #endif /* CONFIG_GDBSTUB */
444 flags
= arch_local_cli_save();
445 cpu_clear(smp_processor_id(), cpu_online_map
);
450 cpu_set(smp_processor_id(), cpu_online_map
);
451 arch_local_irq_restore(flags
);
455 * smp_send_stop - Send a stop request to all CPUs.
457 void smp_send_stop(void)
459 smp_nmi_call_function(stop_this_cpu
, NULL
, 0);
463 * smp_reschedule_interrupt - Reschedule IPI handler
464 * @irq: The interrupt number.
465 * @dev_id: The device ID.
467 * We need do nothing here, since the scheduling will be effected on our way
468 * back through entry.S.
470 * Returns IRQ_HANDLED to indicate we handled the interrupt successfully.
472 static irqreturn_t
smp_reschedule_interrupt(int irq
, void *dev_id
)
479 * smp_call_function_interrupt - Call function IPI handler
480 * @irq: The interrupt number.
481 * @dev_id: The device ID.
483 * Returns IRQ_HANDLED to indicate we handled the interrupt successfully.
485 static irqreturn_t
smp_call_function_interrupt(int irq
, void *dev_id
)
487 /* generic_smp_call_function_interrupt(); */
488 generic_smp_call_function_single_interrupt();
493 * smp_nmi_call_function_interrupt - Non-maskable call function IPI handler
495 void smp_nmi_call_function_interrupt(void)
497 smp_call_func_t func
= nmi_call_data
->func
;
498 void *info
= nmi_call_data
->info
;
499 int wait
= nmi_call_data
->wait
;
501 /* Notify the initiating CPU that I've grabbed the data and am about to
502 * execute the function
505 cpu_clear(smp_processor_id(), nmi_call_data
->started
);
510 cpu_clear(smp_processor_id(), nmi_call_data
->finished
);
514 #if !defined(CONFIG_GENERIC_CLOCKEVENTS) || \
515 defined(CONFIG_GENERIC_CLOCKEVENTS_BROADCAST)
517 * smp_ipi_timer_interrupt - Local timer IPI handler
518 * @irq: The interrupt number.
519 * @dev_id: The device ID.
521 * Returns IRQ_HANDLED to indicate we handled the interrupt successfully.
523 static irqreturn_t
smp_ipi_timer_interrupt(int irq
, void *dev_id
)
525 return local_timer_interrupt();
529 void __init
smp_init_cpus(void)
532 for (i
= 0; i
< NR_CPUS
; i
++) {
533 set_cpu_possible(i
, true);
534 set_cpu_present(i
, true);
539 * smp_cpu_init - Initialise AP in start_secondary.
541 * For this Application Processor, set up init_mm, initialise FPU and set
542 * interrupt level 0-6 setting.
544 static void __init
smp_cpu_init(void)
547 int cpu_id
= smp_processor_id();
550 if (test_and_set_bit(cpu_id
, &cpu_initialized
)) {
551 printk(KERN_WARNING
"CPU#%d already initialized!\n", cpu_id
);
555 printk(KERN_INFO
"Initializing CPU#%d\n", cpu_id
);
557 atomic_inc(&init_mm
.mm_count
);
558 current
->active_mm
= &init_mm
;
561 enter_lazy_tlb(&init_mm
, current
);
563 /* Force FPU initialization */
564 clear_using_fpu(current
);
566 GxICR(CALL_FUNC_SINGLE_IPI
) = CALL_FUNCTION_GxICR_LV
| GxICR_DETECT
;
567 mn10300_ipi_enable(CALL_FUNC_SINGLE_IPI
);
569 GxICR(LOCAL_TIMER_IPI
) = LOCAL_TIMER_GxICR_LV
| GxICR_DETECT
;
570 mn10300_ipi_enable(LOCAL_TIMER_IPI
);
572 GxICR(RESCHEDULE_IPI
) = RESCHEDULE_GxICR_LV
| GxICR_DETECT
;
573 mn10300_ipi_enable(RESCHEDULE_IPI
);
575 #ifdef CONFIG_MN10300_CACHE_ENABLED
576 GxICR(FLUSH_CACHE_IPI
) = FLUSH_CACHE_GxICR_LV
| GxICR_DETECT
;
577 mn10300_ipi_enable(FLUSH_CACHE_IPI
);
580 mn10300_ipi_shutdown(SMP_BOOT_IRQ
);
582 /* Set up the non-maskable call function IPI */
583 flags
= arch_local_cli_save();
584 GxICR(CALL_FUNCTION_NMI_IPI
) = GxICR_NMI
| GxICR_ENABLE
| GxICR_DETECT
;
585 tmp16
= GxICR(CALL_FUNCTION_NMI_IPI
);
586 arch_local_irq_restore(flags
);
590 * smp_prepare_cpu_init - Initialise CPU in startup_secondary
592 * Set interrupt level 0-6 setting and init ICR of gdbstub.
594 void smp_prepare_cpu_init(void)
598 /* Set the interrupt vector registers */
599 IVAR0
= EXCEP_IRQ_LEVEL0
;
600 IVAR1
= EXCEP_IRQ_LEVEL1
;
601 IVAR2
= EXCEP_IRQ_LEVEL2
;
602 IVAR3
= EXCEP_IRQ_LEVEL3
;
603 IVAR4
= EXCEP_IRQ_LEVEL4
;
604 IVAR5
= EXCEP_IRQ_LEVEL5
;
605 IVAR6
= EXCEP_IRQ_LEVEL6
;
607 /* Disable all interrupts and set to priority 6 (lowest) */
608 for (loop
= 0; loop
< GxICR_NUM_IRQS
; loop
++)
609 GxICR(loop
) = GxICR_LEVEL_6
| GxICR_DETECT
;
611 #ifdef CONFIG_GDBSTUB
612 /* initialise GDB-stub */
617 flags
= arch_local_cli_save();
618 GxICR(GDB_NMI_IPI
) = GxICR_NMI
| GxICR_ENABLE
| GxICR_DETECT
;
619 tmp16
= GxICR(GDB_NMI_IPI
);
620 arch_local_irq_restore(flags
);
626 * start_secondary - Activate a secondary CPU (AP)
627 * @unused: Thread parameter (ignored).
629 int __init
start_secondary(void *unused
)
633 while (!cpu_isset(smp_processor_id(), smp_commenced_mask
))
640 #ifdef CONFIG_GENERIC_CLOCKEVENTS
648 * smp_prepare_cpus - Boot up secondary CPUs (APs)
649 * @max_cpus: Maximum number of CPUs to boot.
651 * Call do_boot_cpu, and boot up APs.
653 void __init
smp_prepare_cpus(unsigned int max_cpus
)
657 /* Setup boot CPU information */
658 smp_store_cpu_info(0);
659 smp_tune_scheduling();
663 /* If SMP should be disabled, then finish */
665 printk(KERN_INFO
"SMP mode deactivated.\n");
669 /* Boot secondary CPUs (for which phy_id > 0) */
670 for (phy_id
= 0; phy_id
< NR_CPUS
; phy_id
++) {
671 /* Don't boot primary CPU */
672 if (max_cpus
<= cpucount
+ 1)
676 set_cpu_possible(phy_id
, true);
677 smp_show_cpu_info(phy_id
);
681 Dprintk("Boot done.\n");
685 * smp_store_cpu_info - Save a CPU's information
686 * @cpu: The CPU to save for.
688 * Save boot_cpu_data and jiffy for the specified CPU.
690 static void __init
smp_store_cpu_info(int cpu
)
692 struct mn10300_cpuinfo
*ci
= &cpu_data
[cpu
];
695 ci
->loops_per_jiffy
= loops_per_jiffy
;
700 * smp_tune_scheduling - Set time slice value
702 * Nothing to do here.
704 static void __init
smp_tune_scheduling(void)
709 * do_boot_cpu: Boot up one CPU
710 * @phy_id: Physical ID of CPU to boot.
712 * Send an IPI to a secondary CPU to boot it. Returns 0 on success, 1
715 static int __init
do_boot_cpu(int phy_id
)
717 struct task_struct
*idle
;
718 unsigned long send_status
, callin_status
;
721 send_status
= GxICR_REQUEST
;
728 /* Create idle thread for this CPU */
729 idle
= fork_idle(cpu_id
);
731 panic("Failed fork for CPU#%d.", cpu_id
);
733 idle
->thread
.pc
= (unsigned long)start_secondary
;
735 printk(KERN_NOTICE
"Booting CPU#%d\n", cpu_id
);
736 start_stack
[cpu_id
- 1] = idle
->thread
.sp
;
738 task_thread_info(idle
)->cpu
= cpu_id
;
740 /* Send boot IPI to AP */
741 send_IPI_mask(cpumask_of(phy_id
), SMP_BOOT_IRQ
);
743 Dprintk("Waiting for send to finish...\n");
745 /* Wait for AP's IPI receive in 100[ms] */
749 CROSS_GxICR(SMP_BOOT_IRQ
, phy_id
) & GxICR_REQUEST
;
750 } while (send_status
== GxICR_REQUEST
&& timeout
++ < 100);
752 Dprintk("Waiting for cpu_callin_map.\n");
754 if (send_status
== 0) {
755 /* Allow AP to start initializing */
756 cpu_set(cpu_id
, cpu_callout_map
);
758 /* Wait for setting cpu_callin_map */
762 callin_status
= cpu_isset(cpu_id
, cpu_callin_map
);
763 } while (callin_status
== 0 && timeout
++ < 5000);
765 if (callin_status
== 0)
766 Dprintk("Not responding.\n");
768 printk(KERN_WARNING
"IPI not delivered.\n");
771 if (send_status
== GxICR_REQUEST
|| callin_status
== 0) {
772 cpu_clear(cpu_id
, cpu_callout_map
);
773 cpu_clear(cpu_id
, cpu_callin_map
);
774 cpu_clear(cpu_id
, cpu_initialized
);
782 * smp_show_cpu_info - Show SMP CPU information
783 * @cpu: The CPU of interest.
785 static void __init
smp_show_cpu_info(int cpu
)
787 struct mn10300_cpuinfo
*ci
= &cpu_data
[cpu
];
790 "CPU#%d : ioclk speed: %lu.%02luMHz : bogomips : %lu.%02lu\n",
792 MN10300_IOCLK
/ 1000000,
793 (MN10300_IOCLK
/ 10000) % 100,
794 ci
->loops_per_jiffy
/ (500000 / HZ
),
795 (ci
->loops_per_jiffy
/ (5000 / HZ
)) % 100);
799 * smp_callin - Set cpu_callin_map of the current CPU ID
801 static void __init
smp_callin(void)
803 unsigned long timeout
;
806 cpu
= smp_processor_id();
807 timeout
= jiffies
+ (2 * HZ
);
809 if (cpu_isset(cpu
, cpu_callin_map
)) {
810 printk(KERN_ERR
"CPU#%d already present.\n", cpu
);
813 Dprintk("CPU#%d waiting for CALLOUT\n", cpu
);
815 /* Wait for AP startup 2s total */
816 while (time_before(jiffies
, timeout
)) {
817 if (cpu_isset(cpu
, cpu_callout_map
))
822 if (!time_before(jiffies
, timeout
)) {
824 "BUG: CPU#%d started up but did not get a callout!\n",
829 #ifdef CONFIG_CALIBRATE_DELAY
830 calibrate_delay(); /* Get our bogomips */
833 /* Save our processor parameters */
834 smp_store_cpu_info(cpu
);
836 /* Allow the boot processor to continue */
837 cpu_set(cpu
, cpu_callin_map
);
841 * smp_online - Set cpu_online_map
843 static void __init
smp_online(void)
847 cpu
= smp_processor_id();
851 cpu_set(cpu
, cpu_online_map
);
857 * @max_cpus: Maximum CPU count.
861 void __init
smp_cpus_done(unsigned int max_cpus
)
866 * smp_prepare_boot_cpu - Set up stuff for the boot processor.
868 * Set up the cpu_online_map, cpu_callout_map and cpu_callin_map of the boot
871 void __devinit
smp_prepare_boot_cpu(void)
873 cpu_set(0, cpu_callout_map
);
874 cpu_set(0, cpu_callin_map
);
875 current_thread_info()->cpu
= 0;
879 * initialize_secondary - Initialise a secondary CPU (Application Processor).
881 * Set SP register and jump to thread's PC address.
883 void initialize_secondary(void)
889 : "a"(current
->thread
.sp
), "a"(current
->thread
.pc
));
893 * __cpu_up - Set smp_commenced_mask for the nominated CPU
894 * @cpu: The target CPU.
896 int __devinit
__cpu_up(unsigned int cpu
)
900 #ifdef CONFIG_HOTPLUG_CPU
901 if (num_online_cpus() == 1)
905 #endif /* CONFIG_HOTPLUG_CPU */
907 cpu_set(cpu
, smp_commenced_mask
);
909 /* Wait 5s total for a response */
910 for (timeout
= 0 ; timeout
< 5000 ; timeout
++) {
911 if (cpu_isset(cpu
, cpu_online_map
))
916 BUG_ON(!cpu_isset(cpu
, cpu_online_map
));
921 * setup_profiling_timer - Set up the profiling timer
922 * @multiplier - The frequency multiplier to use
924 * The frequency of the profiling timer can be changed by writing a multiplier
925 * value into /proc/profile.
927 int setup_profiling_timer(unsigned int multiplier
)
933 * CPU hotplug routines
935 #ifdef CONFIG_HOTPLUG_CPU
937 static DEFINE_PER_CPU(struct cpu
, cpu_devices
);
939 static int __init
topology_init(void)
944 ret
= register_cpu(&per_cpu(cpu_devices
, cpu
), cpu
, NULL
);
947 "topology_init: register_cpu %d failed (%d)\n",
953 subsys_initcall(topology_init
);
955 int __cpu_disable(void)
957 int cpu
= smp_processor_id();
962 cpu_clear(cpu
, current
->active_mm
->cpu_vm_mask
);
966 void __cpu_die(unsigned int cpu
)
970 if (num_online_cpus() == 1)
974 #ifdef CONFIG_MN10300_CACHE_ENABLED
975 static inline void hotplug_cpu_disable_cache(void)
982 "1: movhu (%1),%0 \n"
987 "i"(~(CHCTR_ICEN
| CHCTR_DCEN
)),
988 "i"(CHCTR_ICBUSY
| CHCTR_DCBUSY
)
992 static inline void hotplug_cpu_enable_cache(void)
1001 "i"(CHCTR_ICEN
| CHCTR_DCEN
)
1005 static inline void hotplug_cpu_invalidate_cache(void)
1014 "i"(CHCTR_ICINV
| CHCTR_DCINV
)
1018 #else /* CONFIG_MN10300_CACHE_ENABLED */
1019 #define hotplug_cpu_disable_cache() do {} while (0)
1020 #define hotplug_cpu_enable_cache() do {} while (0)
1021 #define hotplug_cpu_invalidate_cache() do {} while (0)
1022 #endif /* CONFIG_MN10300_CACHE_ENABLED */
1025 * hotplug_cpu_nmi_call_function - Call a function on other CPUs for hotplug
1026 * @cpumask: List of target CPUs.
1027 * @func: The function to call on those CPUs.
1028 * @info: The context data for the function to be called.
1029 * @wait: Whether to wait for the calls to complete.
1031 * Non-maskably call a function on another CPU for hotplug purposes.
1033 * This function must be called with maskable interrupts disabled.
1035 static int hotplug_cpu_nmi_call_function(cpumask_t cpumask
,
1036 smp_call_func_t func
, void *info
,
1040 * The address and the size of nmi_call_func_mask_data
1041 * need to be aligned on L1_CACHE_BYTES.
1043 static struct nmi_call_data_struct nmi_call_func_mask_data
1044 __cacheline_aligned
;
1045 unsigned long start
, end
;
1047 start
= (unsigned long)&nmi_call_func_mask_data
;
1048 end
= start
+ sizeof(struct nmi_call_data_struct
);
1050 nmi_call_func_mask_data
.func
= func
;
1051 nmi_call_func_mask_data
.info
= info
;
1052 nmi_call_func_mask_data
.started
= cpumask
;
1053 nmi_call_func_mask_data
.wait
= wait
;
1055 nmi_call_func_mask_data
.finished
= cpumask
;
1057 spin_lock(&smp_nmi_call_lock
);
1058 nmi_call_data
= &nmi_call_func_mask_data
;
1059 mn10300_local_dcache_flush_range(start
, end
);
1062 send_IPI_mask(cpumask
, CALL_FUNCTION_NMI_IPI
);
1065 mn10300_local_dcache_inv_range(start
, end
);
1067 } while (!cpus_empty(nmi_call_func_mask_data
.started
));
1071 mn10300_local_dcache_inv_range(start
, end
);
1073 } while (!cpus_empty(nmi_call_func_mask_data
.finished
));
1076 spin_unlock(&smp_nmi_call_lock
);
1080 static void restart_wakeup_cpu(void)
1082 unsigned int cpu
= smp_processor_id();
1084 cpu_set(cpu
, cpu_callin_map
);
1086 cpu_set(cpu
, cpu_online_map
);
1090 static void prepare_sleep_cpu(void *unused
)
1092 sleep_mode
[smp_processor_id()] = 1;
1094 mn10300_local_dcache_flush_inv();
1095 hotplug_cpu_disable_cache();
1096 hotplug_cpu_invalidate_cache();
1099 /* when this function called, IE=0, NMID=0. */
1100 static void sleep_cpu(void *unused
)
1102 unsigned int cpu_id
= smp_processor_id();
1104 * CALL_FUNCTION_NMI_IPI for wakeup_cpu() shall not be requested,
1105 * before this cpu goes in SLEEP mode.
1110 } while (sleep_mode
[cpu_id
]);
1111 restart_wakeup_cpu();
1114 static void run_sleep_cpu(unsigned int cpu
)
1116 unsigned long flags
;
1117 cpumask_t cpumask
= cpumask_of(cpu
);
1119 flags
= arch_local_cli_save();
1120 hotplug_cpu_nmi_call_function(cpumask
, prepare_sleep_cpu
, NULL
, 1);
1121 hotplug_cpu_nmi_call_function(cpumask
, sleep_cpu
, NULL
, 0);
1122 udelay(1); /* delay for the cpu to sleep. */
1123 arch_local_irq_restore(flags
);
1126 static void wakeup_cpu(void)
1128 hotplug_cpu_invalidate_cache();
1129 hotplug_cpu_enable_cache();
1131 sleep_mode
[smp_processor_id()] = 0;
1134 static void run_wakeup_cpu(unsigned int cpu
)
1136 unsigned long flags
;
1138 flags
= arch_local_cli_save();
1140 mn10300_local_dcache_flush_inv();
1143 * Before waking up the cpu,
1144 * all online cpus should stop and flush D-Cache for global data.
1146 #error not support NR_CPUS > 2, when CONFIG_HOTPLUG_CPU=y.
1148 hotplug_cpu_nmi_call_function(cpumask_of(cpu
), wakeup_cpu
, NULL
, 1);
1149 arch_local_irq_restore(flags
);
1152 #endif /* CONFIG_HOTPLUG_CPU */