2 * drivers/power/process.c - Functions for starting/stopping processes on
5 * Originally from swsusp.
11 #include <linux/smp_lock.h>
12 #include <linux/interrupt.h>
13 #include <linux/suspend.h>
14 #include <linux/module.h>
15 #include <linux/syscalls.h>
18 * Timeout for stopping processes
20 #define TIMEOUT (20 * HZ)
23 static inline int freezeable(struct task_struct
* p
)
26 (p
->flags
& PF_NOFREEZE
) ||
27 (p
->exit_state
== EXIT_ZOMBIE
) ||
28 (p
->exit_state
== EXIT_DEAD
) ||
29 (p
->state
== TASK_STOPPED
) ||
30 (p
->state
== TASK_TRACED
))
35 /* Refrigerator is place where frozen processes are stored :-). */
36 void refrigerator(void)
38 /* Hmm, should we be allowed to suspend when there are realtime
41 save
= current
->state
;
42 pr_debug("%s entered refrigerator\n", current
->comm
);
45 frozen_process(current
);
46 spin_lock_irq(¤t
->sighand
->siglock
);
47 recalc_sigpending(); /* We sent fake signal, clean it up */
48 spin_unlock_irq(¤t
->sighand
->siglock
);
50 while (frozen(current
)) {
51 current
->state
= TASK_UNINTERRUPTIBLE
;
54 pr_debug("%s left refrigerator\n", current
->comm
);
55 current
->state
= save
;
58 static inline void freeze_process(struct task_struct
*p
)
64 spin_lock_irqsave(&p
->sighand
->siglock
, flags
);
66 spin_unlock_irqrestore(&p
->sighand
->siglock
, flags
);
70 /* 0 = success, else # of processes that we failed to stop */
71 int freeze_processes(void)
73 int todo
, nr_user
, user_frozen
;
74 unsigned long start_time
;
75 struct task_struct
*g
, *p
;
78 printk( "Stopping tasks: " );
83 read_lock(&tasklist_lock
);
84 do_each_thread(g
, p
) {
89 if (p
->mm
&& !(p
->flags
& PF_BORROWED_MM
)) {
90 /* The task is a user-space one.
91 * Freeze it unless there's a vfork completion
98 /* Freeze only if the user space is frozen */
103 } while_each_thread(g
, p
);
104 read_unlock(&tasklist_lock
);
106 if (!user_frozen
&& !nr_user
) {
108 start_time
= jiffies
;
110 user_frozen
= !nr_user
;
111 yield(); /* Yield is okay here */
112 if (todo
&& time_after(jiffies
, start_time
+ TIMEOUT
))
116 /* This does not unfreeze processes that are already frozen
117 * (we have slightly ugly calling convention in that respect,
118 * and caller must call thaw_processes() if something fails),
119 * but it cleans up leftover PF_FREEZE requests.
123 printk(KERN_ERR
" stopping tasks timed out "
124 "after %d seconds (%d tasks remaining):\n",
126 read_lock(&tasklist_lock
);
127 do_each_thread(g
, p
) {
128 if (freezeable(p
) && !frozen(p
))
129 printk(KERN_ERR
" %s\n", p
->comm
);
131 pr_debug(" clean up: %s\n", p
->comm
);
132 p
->flags
&= ~PF_FREEZE
;
133 spin_lock_irqsave(&p
->sighand
->siglock
, flags
);
134 recalc_sigpending_tsk(p
);
135 spin_unlock_irqrestore(&p
->sighand
->siglock
, flags
);
137 } while_each_thread(g
, p
);
138 read_unlock(&tasklist_lock
);
147 void thaw_processes(void)
149 struct task_struct
*g
, *p
;
151 printk( "Restarting tasks..." );
152 read_lock(&tasklist_lock
);
153 do_each_thread(g
, p
) {
156 if (!thaw_process(p
))
157 printk(KERN_INFO
" Strange, %s not stopped\n", p
->comm
);
158 } while_each_thread(g
, p
);
160 read_unlock(&tasklist_lock
);
165 EXPORT_SYMBOL(refrigerator
);