Files
linux-apfs/kernel/power/process.c
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/*
* drivers/power/process.c - Functions for starting/stopping processes on
* suspend transitions.
*
* Originally from swsusp.
*/
#undef DEBUG
#include <linux/interrupt.h>
#include <linux/suspend.h>
#include <linux/module.h>
#include <linux/syscalls.h>
#include <linux/freezer.h>
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/*
* Timeout for stopping processes
*/
#define TIMEOUT (20 * HZ)
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#define FREEZER_KERNEL_THREADS 0
#define FREEZER_USER_SPACE 1
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static inline int freezeable(struct task_struct * p)
{
if ((p == current) ||
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(p->flags & PF_NOFREEZE) ||
(p->exit_state != 0))
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return 0;
return 1;
}
/*
* freezing is complete, mark current process as frozen
*/
static inline void frozen_process(void)
{
if (!unlikely(current->flags & PF_NOFREEZE)) {
current->flags |= PF_FROZEN;
wmb();
}
clear_freeze_flag(current);
}
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/* Refrigerator is place where frozen processes are stored :-). */
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void refrigerator(void)
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{
/* Hmm, should we be allowed to suspend when there are realtime
processes around? */
long save;
task_lock(current);
if (freezing(current)) {
frozen_process();
task_unlock(current);
} else {
task_unlock(current);
return;
}
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save = current->state;
pr_debug("%s entered refrigerator\n", current->comm);
spin_lock_irq(&current->sighand->siglock);
recalc_sigpending(); /* We sent fake signal, clean it up */
spin_unlock_irq(&current->sighand->siglock);
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for (;;) {
set_current_state(TASK_UNINTERRUPTIBLE);
if (!frozen(current))
break;
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schedule();
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}
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pr_debug("%s left refrigerator\n", current->comm);
__set_current_state(save);
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}
static void freeze_task(struct task_struct *p)
{
unsigned long flags;
if (!freezing(p)) {
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rmb();
if (!frozen(p)) {
set_freeze_flag(p);
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if (p->state == TASK_STOPPED)
force_sig_specific(SIGSTOP, p);
spin_lock_irqsave(&p->sighand->siglock, flags);
signal_wake_up(p, p->state == TASK_STOPPED);
spin_unlock_irqrestore(&p->sighand->siglock, flags);
}
}
}
static void cancel_freezing(struct task_struct *p)
{
unsigned long flags;
if (freezing(p)) {
pr_debug(" clean up: %s\n", p->comm);
clear_freeze_flag(p);
spin_lock_irqsave(&p->sighand->siglock, flags);
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recalc_sigpending_and_wake(p);
spin_unlock_irqrestore(&p->sighand->siglock, flags);
}
}
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static int try_to_freeze_tasks(int freeze_user_space)
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{
struct task_struct *g, *p;
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unsigned long end_time;
unsigned int todo;
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end_time = jiffies + TIMEOUT;
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do {
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todo = 0;
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read_lock(&tasklist_lock);
do_each_thread(g, p) {
if (frozen(p) || !freezeable(p))
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continue;
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if (freeze_user_space) {
if (p->state == TASK_TRACED &&
frozen(p->parent)) {
cancel_freezing(p);
continue;
}
/*
* Kernel threads should not have TIF_FREEZE set
* at this point, so we must ensure that either
* p->mm is not NULL *and* PF_BORROWED_MM is
* unset, or TIF_FRREZE is left unset.
* The task_lock() is necessary to prevent races
* with exit_mm() or use_mm()/unuse_mm() from
* occuring.
*/
task_lock(p);
if (!p->mm || (p->flags & PF_BORROWED_MM)) {
task_unlock(p);
continue;
}
freeze_task(p);
task_unlock(p);
} else {
freeze_task(p);
}
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if (!freezer_should_skip(p))
todo++;
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} while_each_thread(g, p);
read_unlock(&tasklist_lock);
yield(); /* Yield is okay here */
if (time_after(jiffies, end_time))
break;
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} while (todo);
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if (todo) {
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/* This does not unfreeze processes that are already frozen
* (we have slightly ugly calling convention in that respect,
* and caller must call thaw_processes() if something fails),
* but it cleans up leftover PF_FREEZE requests.
*/
printk("\n");
printk(KERN_ERR "Freezing of %s timed out after %d seconds "
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"(%d tasks refusing to freeze):\n",
freeze_user_space ? "user space " : "tasks ",
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TIMEOUT / HZ, todo);
show_state();
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read_lock(&tasklist_lock);
do_each_thread(g, p) {
task_lock(p);
if (freezing(p) && !freezer_should_skip(p))
printk(KERN_ERR " %s\n", p->comm);
cancel_freezing(p);
task_unlock(p);
} while_each_thread(g, p);
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read_unlock(&tasklist_lock);
}
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return todo ? -EBUSY : 0;
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}
/**
* freeze_processes - tell processes to enter the refrigerator
*/
int freeze_processes(void)
{
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int error;
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printk("Stopping tasks ... ");
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error = try_to_freeze_tasks(FREEZER_USER_SPACE);
if (error)
return error;
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error = try_to_freeze_tasks(FREEZER_KERNEL_THREADS);
if (error)
return error;
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printk("done.\n");
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BUG_ON(in_atomic());
return 0;
}
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static void thaw_tasks(int thaw_user_space)
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{
struct task_struct *g, *p;
read_lock(&tasklist_lock);
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do_each_thread(g, p) {
if (!freezeable(p))
continue;
if (!p->mm == thaw_user_space)
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continue;
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thaw_process(p);
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} while_each_thread(g, p);
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read_unlock(&tasklist_lock);
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}
void thaw_processes(void)
{
printk("Restarting tasks ... ");
thaw_tasks(FREEZER_KERNEL_THREADS);
thaw_tasks(FREEZER_USER_SPACE);
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schedule();
printk("done.\n");
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}
EXPORT_SYMBOL(refrigerator);