1 /* Copyright 2005 Rusty Russell rusty@rustcorp.com.au IBM Corporation.
2 * GPL v2 and any later version.
6 #include <linux/kthread.h>
7 #include <linux/module.h>
8 #include <linux/sched.h>
9 #include <linux/stop_machine.h>
10 #include <linux/syscalls.h>
11 #include <linux/interrupt.h>
13 #include <asm/atomic.h>
14 #include <asm/semaphore.h>
15 #include <asm/uaccess.h>
17 /* Since we effect priority and affinity (both of which are visible
18 * to, and settable by outside processes) we do indirection via a
21 /* Thread to stop each CPU in user context. */
22 enum stopmachine_state
{
25 STOPMACHINE_DISABLE_IRQ
,
29 static enum stopmachine_state stopmachine_state
;
30 static unsigned int stopmachine_num_threads
;
31 static atomic_t stopmachine_thread_ack
;
33 static int stopmachine(void *cpu
)
35 int irqs_disabled
= 0;
38 set_cpus_allowed(current
, cpumask_of_cpu((int)(long)cpu
));
40 /* Ack: we are alive */
41 smp_mb(); /* Theoretically the ack = 0 might not be on this CPU yet. */
42 atomic_inc(&stopmachine_thread_ack
);
44 /* Simple state machine */
45 while (stopmachine_state
!= STOPMACHINE_EXIT
) {
46 if (stopmachine_state
== STOPMACHINE_DISABLE_IRQ
51 /* Ack: irqs disabled. */
52 smp_mb(); /* Must read state first. */
53 atomic_inc(&stopmachine_thread_ack
);
54 } else if (stopmachine_state
== STOPMACHINE_PREPARE
56 /* Everyone is in place, hold CPU. */
59 smp_mb(); /* Must read state first. */
60 atomic_inc(&stopmachine_thread_ack
);
62 /* Yield in first stage: migration threads need to
63 * help our sisters onto their CPUs. */
64 if (!prepared
&& !irqs_disabled
)
70 /* Ack: we are exiting. */
71 smp_mb(); /* Must read state first. */
72 atomic_inc(&stopmachine_thread_ack
);
82 /* Change the thread state */
83 static void stopmachine_set_state(enum stopmachine_state state
)
85 atomic_set(&stopmachine_thread_ack
, 0);
87 stopmachine_state
= state
;
88 while (atomic_read(&stopmachine_thread_ack
) != stopmachine_num_threads
)
92 static int stop_machine(void)
96 atomic_set(&stopmachine_thread_ack
, 0);
97 stopmachine_num_threads
= 0;
98 stopmachine_state
= STOPMACHINE_WAIT
;
100 for_each_online_cpu(i
) {
101 if (i
== raw_smp_processor_id())
103 ret
= kernel_thread(stopmachine
, (void *)(long)i
,CLONE_KERNEL
);
106 stopmachine_num_threads
++;
109 /* Wait for them all to come to life. */
110 while (atomic_read(&stopmachine_thread_ack
) != stopmachine_num_threads
)
113 /* If some failed, kill them all. */
115 stopmachine_set_state(STOPMACHINE_EXIT
);
119 /* Now they are all started, make them hold the CPUs, ready. */
121 stopmachine_set_state(STOPMACHINE_PREPARE
);
123 /* Make them disable irqs. */
126 stopmachine_set_state(STOPMACHINE_DISABLE_IRQ
);
131 static void restart_machine(void)
133 stopmachine_set_state(STOPMACHINE_EXIT
);
135 preempt_enable_no_resched();
138 struct stop_machine_data
142 struct completion done
;
145 static int do_stop(void *_smdata
)
147 struct stop_machine_data
*smdata
= _smdata
;
150 ret
= stop_machine();
152 ret
= smdata
->fn(smdata
->data
);
156 /* We're done: you can kthread_stop us now */
157 complete(&smdata
->done
);
159 /* Wait for kthread_stop */
160 set_current_state(TASK_INTERRUPTIBLE
);
161 while (!kthread_should_stop()) {
163 set_current_state(TASK_INTERRUPTIBLE
);
165 __set_current_state(TASK_RUNNING
);
169 struct task_struct
*__stop_machine_run(int (*fn
)(void *), void *data
,
172 static DEFINE_MUTEX(stopmachine_mutex
);
173 struct stop_machine_data smdata
;
174 struct task_struct
*p
;
178 init_completion(&smdata
.done
);
180 mutex_lock(&stopmachine_mutex
);
182 /* If they don't care which CPU fn runs on, bind to any online one. */
184 cpu
= raw_smp_processor_id();
186 p
= kthread_create(do_stop
, &smdata
, "kstopmachine");
188 struct sched_param param
= { .sched_priority
= MAX_RT_PRIO
-1 };
190 /* One high-prio thread per cpu. We'll do this one. */
191 sched_setscheduler(p
, SCHED_FIFO
, ¶m
);
192 kthread_bind(p
, cpu
);
194 wait_for_completion(&smdata
.done
);
196 mutex_unlock(&stopmachine_mutex
);
200 int stop_machine_run(int (*fn
)(void *), void *data
, unsigned int cpu
)
202 struct task_struct
*p
;
205 /* No CPUs can come up or down during this. */
207 p
= __stop_machine_run(fn
, data
, cpu
);
209 ret
= kthread_stop(p
);
216 EXPORT_SYMBOL_GPL(stop_machine_run
);