2 * drivers/power/process.c - Functions for starting/stopping processes on
5 * Originally from swsusp.
11 #include <linux/interrupt.h>
12 #include <linux/suspend.h>
13 #include <linux/module.h>
14 #include <linux/syscalls.h>
15 #include <linux/freezer.h>
18 * Timeout for stopping processes
20 #define TIMEOUT (20 * HZ)
22 #define FREEZER_KERNEL_THREADS 0
23 #define FREEZER_USER_SPACE 1
25 static inline int freezeable(struct task_struct
* p
)
28 (p
->flags
& PF_NOFREEZE
) ||
35 * freezing is complete, mark current process as frozen
37 static inline void frozen_process(void)
39 if (!unlikely(current
->flags
& PF_NOFREEZE
)) {
40 current
->flags
|= PF_FROZEN
;
43 clear_freeze_flag(current
);
46 /* Refrigerator is place where frozen processes are stored :-). */
47 void refrigerator(void)
49 /* Hmm, should we be allowed to suspend when there are realtime
54 if (freezing(current
)) {
61 save
= current
->state
;
62 pr_debug("%s entered refrigerator\n", current
->comm
);
64 spin_lock_irq(¤t
->sighand
->siglock
);
65 recalc_sigpending(); /* We sent fake signal, clean it up */
66 spin_unlock_irq(¤t
->sighand
->siglock
);
69 set_current_state(TASK_UNINTERRUPTIBLE
);
74 pr_debug("%s left refrigerator\n", current
->comm
);
75 __set_current_state(save
);
78 static void fake_signal_wake_up(struct task_struct
*p
, int resume
)
82 spin_lock_irqsave(&p
->sighand
->siglock
, flags
);
83 signal_wake_up(p
, resume
);
84 spin_unlock_irqrestore(&p
->sighand
->siglock
, flags
);
87 static void send_fake_signal(struct task_struct
*p
)
89 if (p
->state
== TASK_STOPPED
)
90 force_sig_specific(SIGSTOP
, p
);
91 fake_signal_wake_up(p
, p
->state
== TASK_STOPPED
);
94 static int has_mm(struct task_struct
*p
)
96 return (p
->mm
&& !(p
->flags
& PF_BORROWED_MM
));
100 * freeze_task - send a freeze request to given task
101 * @p: task to send the request to
102 * @with_mm_only: if set, the request will only be sent if the task has its
104 * Return value: 0, if @with_mm_only is set and the task has no mm of its
105 * own or the task is frozen, 1, otherwise
107 * The freeze request is sent by seting the tasks's TIF_FREEZE flag and
108 * either sending a fake signal to it or waking it up, depending on whether
109 * or not it has its own mm (ie. it is a user land task). If @with_mm_only
110 * is set and the task has no mm of its own (ie. it is a kernel thread),
111 * its TIF_FREEZE flag should not be set.
113 * The task_lock() is necessary to prevent races with exit_mm() or
114 * use_mm()/unuse_mm() from occuring.
116 static int freeze_task(struct task_struct
*p
, int with_mm_only
)
123 if (!signal_pending(p
))
124 fake_signal_wake_up(p
, 0);
129 wake_up_state(p
, TASK_INTERRUPTIBLE
);
144 wake_up_state(p
, TASK_INTERRUPTIBLE
);
153 static void cancel_freezing(struct task_struct
*p
)
158 pr_debug(" clean up: %s\n", p
->comm
);
159 clear_freeze_flag(p
);
160 spin_lock_irqsave(&p
->sighand
->siglock
, flags
);
161 recalc_sigpending_and_wake(p
);
162 spin_unlock_irqrestore(&p
->sighand
->siglock
, flags
);
166 static int try_to_freeze_tasks(int freeze_user_space
)
168 struct task_struct
*g
, *p
;
169 unsigned long end_time
;
172 end_time
= jiffies
+ TIMEOUT
;
175 read_lock(&tasklist_lock
);
176 do_each_thread(g
, p
) {
177 if (frozen(p
) || !freezeable(p
))
180 if (p
->state
== TASK_TRACED
&& frozen(p
->parent
)) {
185 if (!freeze_task(p
, freeze_user_space
))
188 if (!freezer_should_skip(p
))
190 } while_each_thread(g
, p
);
191 read_unlock(&tasklist_lock
);
192 yield(); /* Yield is okay here */
193 if (time_after(jiffies
, end_time
))
198 /* This does not unfreeze processes that are already frozen
199 * (we have slightly ugly calling convention in that respect,
200 * and caller must call thaw_processes() if something fails),
201 * but it cleans up leftover PF_FREEZE requests.
204 printk(KERN_ERR
"Freezing of %s timed out after %d seconds "
205 "(%d tasks refusing to freeze):\n",
206 freeze_user_space
? "user space " : "tasks ",
209 read_lock(&tasklist_lock
);
210 do_each_thread(g
, p
) {
212 if (freezing(p
) && !freezer_should_skip(p
))
213 printk(KERN_ERR
" %s\n", p
->comm
);
216 } while_each_thread(g
, p
);
217 read_unlock(&tasklist_lock
);
220 return todo
? -EBUSY
: 0;
224 * freeze_processes - tell processes to enter the refrigerator
226 int freeze_processes(void)
230 printk("Stopping tasks ... ");
231 error
= try_to_freeze_tasks(FREEZER_USER_SPACE
);
235 error
= try_to_freeze_tasks(FREEZER_KERNEL_THREADS
);
244 static void thaw_tasks(int thaw_user_space
)
246 struct task_struct
*g
, *p
;
248 read_lock(&tasklist_lock
);
249 do_each_thread(g
, p
) {
253 if (!p
->mm
== thaw_user_space
)
257 } while_each_thread(g
, p
);
258 read_unlock(&tasklist_lock
);
261 void thaw_processes(void)
263 printk("Restarting tasks ... ");
264 thaw_tasks(FREEZER_KERNEL_THREADS
);
265 thaw_tasks(FREEZER_USER_SPACE
);
270 EXPORT_SYMBOL(refrigerator
);