Merge tag 'pm+acpi-3.18-rc2' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael...
[sfrench/cifs-2.6.git] / kernel / power / process.c
1 /*
2  * drivers/power/process.c - Functions for starting/stopping processes on 
3  *                           suspend transitions.
4  *
5  * Originally from swsusp.
6  */
7
8
9 #undef DEBUG
10
11 #include <linux/interrupt.h>
12 #include <linux/oom.h>
13 #include <linux/suspend.h>
14 #include <linux/module.h>
15 #include <linux/syscalls.h>
16 #include <linux/freezer.h>
17 #include <linux/delay.h>
18 #include <linux/workqueue.h>
19 #include <linux/kmod.h>
20 #include <trace/events/power.h>
21
22 /* 
23  * Timeout for stopping processes
24  */
25 unsigned int __read_mostly freeze_timeout_msecs = 20 * MSEC_PER_SEC;
26
27 static int try_to_freeze_tasks(bool user_only)
28 {
29         struct task_struct *g, *p;
30         unsigned long end_time;
31         unsigned int todo;
32         bool wq_busy = false;
33         struct timeval start, end;
34         u64 elapsed_msecs64;
35         unsigned int elapsed_msecs;
36         bool wakeup = false;
37         int sleep_usecs = USEC_PER_MSEC;
38
39         do_gettimeofday(&start);
40
41         end_time = jiffies + msecs_to_jiffies(freeze_timeout_msecs);
42
43         if (!user_only)
44                 freeze_workqueues_begin();
45
46         while (true) {
47                 todo = 0;
48                 read_lock(&tasklist_lock);
49                 for_each_process_thread(g, p) {
50                         if (p == current || !freeze_task(p))
51                                 continue;
52
53                         if (!freezer_should_skip(p))
54                                 todo++;
55                 }
56                 read_unlock(&tasklist_lock);
57
58                 if (!user_only) {
59                         wq_busy = freeze_workqueues_busy();
60                         todo += wq_busy;
61                 }
62
63                 if (!todo || time_after(jiffies, end_time))
64                         break;
65
66                 if (pm_wakeup_pending()) {
67                         wakeup = true;
68                         break;
69                 }
70
71                 /*
72                  * We need to retry, but first give the freezing tasks some
73                  * time to enter the refrigerator.  Start with an initial
74                  * 1 ms sleep followed by exponential backoff until 8 ms.
75                  */
76                 usleep_range(sleep_usecs / 2, sleep_usecs);
77                 if (sleep_usecs < 8 * USEC_PER_MSEC)
78                         sleep_usecs *= 2;
79         }
80
81         do_gettimeofday(&end);
82         elapsed_msecs64 = timeval_to_ns(&end) - timeval_to_ns(&start);
83         do_div(elapsed_msecs64, NSEC_PER_MSEC);
84         elapsed_msecs = elapsed_msecs64;
85
86         if (todo) {
87                 printk("\n");
88                 printk(KERN_ERR "Freezing of tasks %s after %d.%03d seconds "
89                        "(%d tasks refusing to freeze, wq_busy=%d):\n",
90                        wakeup ? "aborted" : "failed",
91                        elapsed_msecs / 1000, elapsed_msecs % 1000,
92                        todo - wq_busy, wq_busy);
93
94                 if (!wakeup) {
95                         read_lock(&tasklist_lock);
96                         for_each_process_thread(g, p) {
97                                 if (p != current && !freezer_should_skip(p)
98                                     && freezing(p) && !frozen(p))
99                                         sched_show_task(p);
100                         }
101                         read_unlock(&tasklist_lock);
102                 }
103         } else {
104                 printk("(elapsed %d.%03d seconds) ", elapsed_msecs / 1000,
105                         elapsed_msecs % 1000);
106         }
107
108         return todo ? -EBUSY : 0;
109 }
110
111 static bool __check_frozen_processes(void)
112 {
113         struct task_struct *g, *p;
114
115         for_each_process_thread(g, p)
116                 if (p != current && !freezer_should_skip(p) && !frozen(p))
117                         return false;
118
119         return true;
120 }
121
122 /*
123  * Returns true if all freezable tasks (except for current) are frozen already
124  */
125 static bool check_frozen_processes(void)
126 {
127         bool ret;
128
129         read_lock(&tasklist_lock);
130         ret = __check_frozen_processes();
131         read_unlock(&tasklist_lock);
132         return ret;
133 }
134
135 /**
136  * freeze_processes - Signal user space processes to enter the refrigerator.
137  * The current thread will not be frozen.  The same process that calls
138  * freeze_processes must later call thaw_processes.
139  *
140  * On success, returns 0.  On failure, -errno and system is fully thawed.
141  */
142 int freeze_processes(void)
143 {
144         int error;
145         int oom_kills_saved;
146
147         error = __usermodehelper_disable(UMH_FREEZING);
148         if (error)
149                 return error;
150
151         /* Make sure this task doesn't get frozen */
152         current->flags |= PF_SUSPEND_TASK;
153
154         if (!pm_freezing)
155                 atomic_inc(&system_freezing_cnt);
156
157         pm_wakeup_clear();
158         printk("Freezing user space processes ... ");
159         pm_freezing = true;
160         oom_kills_saved = oom_kills_count();
161         error = try_to_freeze_tasks(true);
162         if (!error) {
163                 __usermodehelper_set_disable_depth(UMH_DISABLED);
164                 oom_killer_disable();
165
166                 /*
167                  * There might have been an OOM kill while we were
168                  * freezing tasks and the killed task might be still
169                  * on the way out so we have to double check for race.
170                  */
171                 if (oom_kills_count() != oom_kills_saved &&
172                     !check_frozen_processes()) {
173                         __usermodehelper_set_disable_depth(UMH_ENABLED);
174                         printk("OOM in progress.");
175                         error = -EBUSY;
176                 } else {
177                         printk("done.");
178                 }
179         }
180         printk("\n");
181         BUG_ON(in_atomic());
182
183         if (error)
184                 thaw_processes();
185         return error;
186 }
187
188 /**
189  * freeze_kernel_threads - Make freezable kernel threads go to the refrigerator.
190  *
191  * On success, returns 0.  On failure, -errno and only the kernel threads are
192  * thawed, so as to give a chance to the caller to do additional cleanups
193  * (if any) before thawing the userspace tasks. So, it is the responsibility
194  * of the caller to thaw the userspace tasks, when the time is right.
195  */
196 int freeze_kernel_threads(void)
197 {
198         int error;
199
200         printk("Freezing remaining freezable tasks ... ");
201         pm_nosig_freezing = true;
202         error = try_to_freeze_tasks(false);
203         if (!error)
204                 printk("done.");
205
206         printk("\n");
207         BUG_ON(in_atomic());
208
209         if (error)
210                 thaw_kernel_threads();
211         return error;
212 }
213
214 void thaw_processes(void)
215 {
216         struct task_struct *g, *p;
217         struct task_struct *curr = current;
218
219         trace_suspend_resume(TPS("thaw_processes"), 0, true);
220         if (pm_freezing)
221                 atomic_dec(&system_freezing_cnt);
222         pm_freezing = false;
223         pm_nosig_freezing = false;
224
225         oom_killer_enable();
226
227         printk("Restarting tasks ... ");
228
229         __usermodehelper_set_disable_depth(UMH_FREEZING);
230         thaw_workqueues();
231
232         read_lock(&tasklist_lock);
233         for_each_process_thread(g, p) {
234                 /* No other threads should have PF_SUSPEND_TASK set */
235                 WARN_ON((p != curr) && (p->flags & PF_SUSPEND_TASK));
236                 __thaw_task(p);
237         }
238         read_unlock(&tasklist_lock);
239
240         WARN_ON(!(curr->flags & PF_SUSPEND_TASK));
241         curr->flags &= ~PF_SUSPEND_TASK;
242
243         usermodehelper_enable();
244
245         schedule();
246         printk("done.\n");
247         trace_suspend_resume(TPS("thaw_processes"), 0, false);
248 }
249
250 void thaw_kernel_threads(void)
251 {
252         struct task_struct *g, *p;
253
254         pm_nosig_freezing = false;
255         printk("Restarting kernel threads ... ");
256
257         thaw_workqueues();
258
259         read_lock(&tasklist_lock);
260         for_each_process_thread(g, p) {
261                 if (p->flags & (PF_KTHREAD | PF_WQ_WORKER))
262                         __thaw_task(p);
263         }
264         read_unlock(&tasklist_lock);
265
266         schedule();
267         printk("done.\n");
268 }