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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * linux/kernel/timer.c
3 *
john stultz85240702007-05-08 00:27:59 -07004 * Kernel internal timers, basic process system calls
Linus Torvalds1da177e2005-04-16 15:20:36 -07005 *
6 * Copyright (C) 1991, 1992 Linus Torvalds
7 *
8 * 1997-01-28 Modified by Finn Arne Gangstad to make timers scale better.
9 *
10 * 1997-09-10 Updated NTP code according to technical memorandum Jan '96
11 * "A Kernel Model for Precision Timekeeping" by Dave Mills
12 * 1998-12-24 Fixed a xtime SMP race (we need the xtime_lock rw spinlock to
13 * serialize accesses to xtime/lost_ticks).
14 * Copyright (C) 1998 Andrea Arcangeli
15 * 1999-03-10 Improved NTP compatibility by Ulrich Windl
16 * 2002-05-31 Move sys_sysinfo here and make its locking sane, Robert Love
17 * 2000-10-05 Implemented scalable SMP per-CPU timer handling.
18 * Copyright (C) 2000, 2001, 2002 Ingo Molnar
19 * Designed by David S. Miller, Alexey Kuznetsov and Ingo Molnar
20 */
21
22#include <linux/kernel_stat.h>
23#include <linux/module.h>
24#include <linux/interrupt.h>
25#include <linux/percpu.h>
26#include <linux/init.h>
27#include <linux/mm.h>
28#include <linux/swap.h>
Pavel Emelyanovb4888932007-10-18 23:40:14 -070029#include <linux/pid_namespace.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070030#include <linux/notifier.h>
31#include <linux/thread_info.h>
32#include <linux/time.h>
33#include <linux/jiffies.h>
34#include <linux/posix-timers.h>
35#include <linux/cpu.h>
36#include <linux/syscalls.h>
Adrian Bunk97a41e22006-01-08 01:02:17 -080037#include <linux/delay.h>
Thomas Gleixner79bf2bb2007-02-16 01:28:03 -080038#include <linux/tick.h>
Ingo Molnar82f67cd2007-02-16 01:28:13 -080039#include <linux/kallsyms.h>
Ingo Molnarcdd6c482009-09-21 12:02:48 +020040#include <linux/perf_event.h>
Arun R Bharadwajeea08f32009-04-16 12:16:41 +053041#include <linux/sched.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090042#include <linux/slab.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070043
44#include <asm/uaccess.h>
45#include <asm/unistd.h>
46#include <asm/div64.h>
47#include <asm/timex.h>
48#include <asm/io.h>
49
Xiao Guangrong2b022e32009-08-10 10:48:59 +080050#define CREATE_TRACE_POINTS
51#include <trace/events/timer.h>
52
Thomas Gleixnerecea8d12005-10-30 15:03:00 -080053u64 jiffies_64 __cacheline_aligned_in_smp = INITIAL_JIFFIES;
54
55EXPORT_SYMBOL(jiffies_64);
56
Linus Torvalds1da177e2005-04-16 15:20:36 -070057/*
58 * per-CPU timer vector definitions:
59 */
Linus Torvalds1da177e2005-04-16 15:20:36 -070060#define TVN_BITS (CONFIG_BASE_SMALL ? 4 : 6)
61#define TVR_BITS (CONFIG_BASE_SMALL ? 6 : 8)
62#define TVN_SIZE (1 << TVN_BITS)
63#define TVR_SIZE (1 << TVR_BITS)
64#define TVN_MASK (TVN_SIZE - 1)
65#define TVR_MASK (TVR_SIZE - 1)
66
Pavel Macheka6fa8e52008-01-30 13:30:00 +010067struct tvec {
Linus Torvalds1da177e2005-04-16 15:20:36 -070068 struct list_head vec[TVN_SIZE];
Pavel Macheka6fa8e52008-01-30 13:30:00 +010069};
Linus Torvalds1da177e2005-04-16 15:20:36 -070070
Pavel Macheka6fa8e52008-01-30 13:30:00 +010071struct tvec_root {
Linus Torvalds1da177e2005-04-16 15:20:36 -070072 struct list_head vec[TVR_SIZE];
Pavel Macheka6fa8e52008-01-30 13:30:00 +010073};
Linus Torvalds1da177e2005-04-16 15:20:36 -070074
Pavel Macheka6fa8e52008-01-30 13:30:00 +010075struct tvec_base {
Oleg Nesterov3691c512006-03-31 02:30:30 -080076 spinlock_t lock;
77 struct timer_list *running_timer;
Linus Torvalds1da177e2005-04-16 15:20:36 -070078 unsigned long timer_jiffies;
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +020079 unsigned long next_timer;
Pavel Macheka6fa8e52008-01-30 13:30:00 +010080 struct tvec_root tv1;
81 struct tvec tv2;
82 struct tvec tv3;
83 struct tvec tv4;
84 struct tvec tv5;
Venki Pallipadi6e453a62007-05-08 00:27:44 -070085} ____cacheline_aligned;
Linus Torvalds1da177e2005-04-16 15:20:36 -070086
Pavel Macheka6fa8e52008-01-30 13:30:00 +010087struct tvec_base boot_tvec_bases;
Oleg Nesterov3691c512006-03-31 02:30:30 -080088EXPORT_SYMBOL(boot_tvec_bases);
Pavel Macheka6fa8e52008-01-30 13:30:00 +010089static DEFINE_PER_CPU(struct tvec_base *, tvec_bases) = &boot_tvec_bases;
Linus Torvalds1da177e2005-04-16 15:20:36 -070090
Venki Pallipadi6e453a62007-05-08 00:27:44 -070091/* Functions below help us manage 'deferrable' flag */
Pavel Macheka6fa8e52008-01-30 13:30:00 +010092static inline unsigned int tbase_get_deferrable(struct tvec_base *base)
Venki Pallipadi6e453a62007-05-08 00:27:44 -070093{
akpm@linux-foundation.orge9910842007-05-10 03:16:01 -070094 return ((unsigned int)(unsigned long)base & TBASE_DEFERRABLE_FLAG);
Venki Pallipadi6e453a62007-05-08 00:27:44 -070095}
96
Pavel Macheka6fa8e52008-01-30 13:30:00 +010097static inline struct tvec_base *tbase_get_base(struct tvec_base *base)
Venki Pallipadi6e453a62007-05-08 00:27:44 -070098{
Pavel Macheka6fa8e52008-01-30 13:30:00 +010099 return ((struct tvec_base *)((unsigned long)base & ~TBASE_DEFERRABLE_FLAG));
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700100}
101
102static inline void timer_set_deferrable(struct timer_list *timer)
103{
Phil Carmodydd6414b2010-10-20 15:57:33 -0700104 timer->base = TBASE_MAKE_DEFERRED(timer->base);
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700105}
106
107static inline void
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100108timer_set_base(struct timer_list *timer, struct tvec_base *new_base)
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700109{
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100110 timer->base = (struct tvec_base *)((unsigned long)(new_base) |
Thomas Gleixner68194572007-07-19 01:49:16 -0700111 tbase_get_deferrable(timer->base));
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700112}
113
Alan Stern9c133c42008-11-06 08:42:48 +0100114static unsigned long round_jiffies_common(unsigned long j, int cpu,
115 bool force_up)
116{
117 int rem;
118 unsigned long original = j;
119
120 /*
121 * We don't want all cpus firing their timers at once hitting the
122 * same lock or cachelines, so we skew each extra cpu with an extra
123 * 3 jiffies. This 3 jiffies came originally from the mm/ code which
124 * already did this.
125 * The skew is done by adding 3*cpunr, then round, then subtract this
126 * extra offset again.
127 */
128 j += cpu * 3;
129
130 rem = j % HZ;
131
132 /*
133 * If the target jiffie is just after a whole second (which can happen
134 * due to delays of the timer irq, long irq off times etc etc) then
135 * we should round down to the whole second, not up. Use 1/4th second
136 * as cutoff for this rounding as an extreme upper bound for this.
137 * But never round down if @force_up is set.
138 */
139 if (rem < HZ/4 && !force_up) /* round down */
140 j = j - rem;
141 else /* round up */
142 j = j - rem + HZ;
143
144 /* now that we have rounded, subtract the extra skew again */
145 j -= cpu * 3;
146
147 if (j <= jiffies) /* rounding ate our timeout entirely; */
148 return original;
149 return j;
150}
151
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800152/**
153 * __round_jiffies - function to round jiffies to a full second
154 * @j: the time in (absolute) jiffies that should be rounded
155 * @cpu: the processor number on which the timeout will happen
156 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800157 * __round_jiffies() rounds an absolute time in the future (in jiffies)
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800158 * up or down to (approximately) full seconds. This is useful for timers
159 * for which the exact time they fire does not matter too much, as long as
160 * they fire approximately every X seconds.
161 *
162 * By rounding these timers to whole seconds, all such timers will fire
163 * at the same time, rather than at various times spread out. The goal
164 * of this is to have the CPU wake up less, which saves power.
165 *
166 * The exact rounding is skewed for each processor to avoid all
167 * processors firing at the exact same time, which could lead
168 * to lock contention or spurious cache line bouncing.
169 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800170 * The return value is the rounded version of the @j parameter.
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800171 */
172unsigned long __round_jiffies(unsigned long j, int cpu)
173{
Alan Stern9c133c42008-11-06 08:42:48 +0100174 return round_jiffies_common(j, cpu, false);
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800175}
176EXPORT_SYMBOL_GPL(__round_jiffies);
177
178/**
179 * __round_jiffies_relative - function to round jiffies to a full second
180 * @j: the time in (relative) jiffies that should be rounded
181 * @cpu: the processor number on which the timeout will happen
182 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800183 * __round_jiffies_relative() rounds a time delta in the future (in jiffies)
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800184 * up or down to (approximately) full seconds. This is useful for timers
185 * for which the exact time they fire does not matter too much, as long as
186 * they fire approximately every X seconds.
187 *
188 * By rounding these timers to whole seconds, all such timers will fire
189 * at the same time, rather than at various times spread out. The goal
190 * of this is to have the CPU wake up less, which saves power.
191 *
192 * The exact rounding is skewed for each processor to avoid all
193 * processors firing at the exact same time, which could lead
194 * to lock contention or spurious cache line bouncing.
195 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800196 * The return value is the rounded version of the @j parameter.
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800197 */
198unsigned long __round_jiffies_relative(unsigned long j, int cpu)
199{
Alan Stern9c133c42008-11-06 08:42:48 +0100200 unsigned long j0 = jiffies;
201
202 /* Use j0 because jiffies might change while we run */
203 return round_jiffies_common(j + j0, cpu, false) - j0;
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800204}
205EXPORT_SYMBOL_GPL(__round_jiffies_relative);
206
207/**
208 * round_jiffies - function to round jiffies to a full second
209 * @j: the time in (absolute) jiffies that should be rounded
210 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800211 * round_jiffies() rounds an absolute time in the future (in jiffies)
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800212 * up or down to (approximately) full seconds. This is useful for timers
213 * for which the exact time they fire does not matter too much, as long as
214 * they fire approximately every X seconds.
215 *
216 * By rounding these timers to whole seconds, all such timers will fire
217 * at the same time, rather than at various times spread out. The goal
218 * of this is to have the CPU wake up less, which saves power.
219 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800220 * The return value is the rounded version of the @j parameter.
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800221 */
222unsigned long round_jiffies(unsigned long j)
223{
Alan Stern9c133c42008-11-06 08:42:48 +0100224 return round_jiffies_common(j, raw_smp_processor_id(), false);
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800225}
226EXPORT_SYMBOL_GPL(round_jiffies);
227
228/**
229 * round_jiffies_relative - function to round jiffies to a full second
230 * @j: the time in (relative) jiffies that should be rounded
231 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800232 * round_jiffies_relative() rounds a time delta in the future (in jiffies)
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800233 * up or down to (approximately) full seconds. This is useful for timers
234 * for which the exact time they fire does not matter too much, as long as
235 * they fire approximately every X seconds.
236 *
237 * By rounding these timers to whole seconds, all such timers will fire
238 * at the same time, rather than at various times spread out. The goal
239 * of this is to have the CPU wake up less, which saves power.
240 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800241 * The return value is the rounded version of the @j parameter.
Arjan van de Ven4c36a5d2006-12-10 02:21:24 -0800242 */
243unsigned long round_jiffies_relative(unsigned long j)
244{
245 return __round_jiffies_relative(j, raw_smp_processor_id());
246}
247EXPORT_SYMBOL_GPL(round_jiffies_relative);
248
Alan Stern9c133c42008-11-06 08:42:48 +0100249/**
250 * __round_jiffies_up - function to round jiffies up to a full second
251 * @j: the time in (absolute) jiffies that should be rounded
252 * @cpu: the processor number on which the timeout will happen
253 *
254 * This is the same as __round_jiffies() except that it will never
255 * round down. This is useful for timeouts for which the exact time
256 * of firing does not matter too much, as long as they don't fire too
257 * early.
258 */
259unsigned long __round_jiffies_up(unsigned long j, int cpu)
260{
261 return round_jiffies_common(j, cpu, true);
262}
263EXPORT_SYMBOL_GPL(__round_jiffies_up);
264
265/**
266 * __round_jiffies_up_relative - function to round jiffies up to a full second
267 * @j: the time in (relative) jiffies that should be rounded
268 * @cpu: the processor number on which the timeout will happen
269 *
270 * This is the same as __round_jiffies_relative() except that it will never
271 * round down. This is useful for timeouts for which the exact time
272 * of firing does not matter too much, as long as they don't fire too
273 * early.
274 */
275unsigned long __round_jiffies_up_relative(unsigned long j, int cpu)
276{
277 unsigned long j0 = jiffies;
278
279 /* Use j0 because jiffies might change while we run */
280 return round_jiffies_common(j + j0, cpu, true) - j0;
281}
282EXPORT_SYMBOL_GPL(__round_jiffies_up_relative);
283
284/**
285 * round_jiffies_up - function to round jiffies up to a full second
286 * @j: the time in (absolute) jiffies that should be rounded
287 *
288 * This is the same as round_jiffies() except that it will never
289 * round down. This is useful for timeouts for which the exact time
290 * of firing does not matter too much, as long as they don't fire too
291 * early.
292 */
293unsigned long round_jiffies_up(unsigned long j)
294{
295 return round_jiffies_common(j, raw_smp_processor_id(), true);
296}
297EXPORT_SYMBOL_GPL(round_jiffies_up);
298
299/**
300 * round_jiffies_up_relative - function to round jiffies up to a full second
301 * @j: the time in (relative) jiffies that should be rounded
302 *
303 * This is the same as round_jiffies_relative() except that it will never
304 * round down. This is useful for timeouts for which the exact time
305 * of firing does not matter too much, as long as they don't fire too
306 * early.
307 */
308unsigned long round_jiffies_up_relative(unsigned long j)
309{
310 return __round_jiffies_up_relative(j, raw_smp_processor_id());
311}
312EXPORT_SYMBOL_GPL(round_jiffies_up_relative);
313
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800314/**
315 * set_timer_slack - set the allowed slack for a timer
Randy Dunlap0caa6212010-08-09 16:32:50 -0700316 * @timer: the timer to be modified
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800317 * @slack_hz: the amount of time (in jiffies) allowed for rounding
318 *
319 * Set the amount of time, in jiffies, that a certain timer has
320 * in terms of slack. By setting this value, the timer subsystem
321 * will schedule the actual timer somewhere between
322 * the time mod_timer() asks for, and that time plus the slack.
323 *
324 * By setting the slack to -1, a percentage of the delay is used
325 * instead.
326 */
327void set_timer_slack(struct timer_list *timer, int slack_hz)
328{
329 timer->slack = slack_hz;
330}
331EXPORT_SYMBOL_GPL(set_timer_slack);
332
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100333static void internal_add_timer(struct tvec_base *base, struct timer_list *timer)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700334{
335 unsigned long expires = timer->expires;
336 unsigned long idx = expires - base->timer_jiffies;
337 struct list_head *vec;
338
339 if (idx < TVR_SIZE) {
340 int i = expires & TVR_MASK;
341 vec = base->tv1.vec + i;
342 } else if (idx < 1 << (TVR_BITS + TVN_BITS)) {
343 int i = (expires >> TVR_BITS) & TVN_MASK;
344 vec = base->tv2.vec + i;
345 } else if (idx < 1 << (TVR_BITS + 2 * TVN_BITS)) {
346 int i = (expires >> (TVR_BITS + TVN_BITS)) & TVN_MASK;
347 vec = base->tv3.vec + i;
348 } else if (idx < 1 << (TVR_BITS + 3 * TVN_BITS)) {
349 int i = (expires >> (TVR_BITS + 2 * TVN_BITS)) & TVN_MASK;
350 vec = base->tv4.vec + i;
351 } else if ((signed long) idx < 0) {
352 /*
353 * Can happen if you add a timer with expires == jiffies,
354 * or you set a timer to go off in the past
355 */
356 vec = base->tv1.vec + (base->timer_jiffies & TVR_MASK);
357 } else {
358 int i;
359 /* If the timeout is larger than 0xffffffff on 64-bit
360 * architectures then we use the maximum timeout:
361 */
362 if (idx > 0xffffffffUL) {
363 idx = 0xffffffffUL;
364 expires = idx + base->timer_jiffies;
365 }
366 i = (expires >> (TVR_BITS + 3 * TVN_BITS)) & TVN_MASK;
367 vec = base->tv5.vec + i;
368 }
369 /*
370 * Timers are FIFO:
371 */
372 list_add_tail(&timer->entry, vec);
373}
374
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800375#ifdef CONFIG_TIMER_STATS
376void __timer_stats_timer_set_start_info(struct timer_list *timer, void *addr)
377{
378 if (timer->start_site)
379 return;
380
381 timer->start_site = addr;
382 memcpy(timer->start_comm, current->comm, TASK_COMM_LEN);
383 timer->start_pid = current->pid;
384}
Venki Pallipadic5c061b82007-07-15 23:40:30 -0700385
386static void timer_stats_account_timer(struct timer_list *timer)
387{
388 unsigned int flag = 0;
389
Heiko Carstens507e1232009-06-23 17:38:15 +0200390 if (likely(!timer->start_site))
391 return;
Venki Pallipadic5c061b82007-07-15 23:40:30 -0700392 if (unlikely(tbase_get_deferrable(timer->base)))
393 flag |= TIMER_STATS_FLAG_DEFERRABLE;
394
395 timer_stats_update_stats(timer, timer->start_pid, timer->start_site,
396 timer->function, timer->start_comm, flag);
397}
398
399#else
400static void timer_stats_account_timer(struct timer_list *timer) {}
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800401#endif
402
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700403#ifdef CONFIG_DEBUG_OBJECTS_TIMERS
404
405static struct debug_obj_descr timer_debug_descr;
406
407/*
408 * fixup_init is called when:
409 * - an active object is initialized
410 */
411static int timer_fixup_init(void *addr, enum debug_obj_state state)
412{
413 struct timer_list *timer = addr;
414
415 switch (state) {
416 case ODEBUG_STATE_ACTIVE:
417 del_timer_sync(timer);
418 debug_object_init(timer, &timer_debug_descr);
419 return 1;
420 default:
421 return 0;
422 }
423}
424
425/*
426 * fixup_activate is called when:
427 * - an active object is activated
428 * - an unknown object is activated (might be a statically initialized object)
429 */
430static int timer_fixup_activate(void *addr, enum debug_obj_state state)
431{
432 struct timer_list *timer = addr;
433
434 switch (state) {
435
436 case ODEBUG_STATE_NOTAVAILABLE:
437 /*
438 * This is not really a fixup. The timer was
439 * statically initialized. We just make sure that it
440 * is tracked in the object tracker.
441 */
442 if (timer->entry.next == NULL &&
443 timer->entry.prev == TIMER_ENTRY_STATIC) {
444 debug_object_init(timer, &timer_debug_descr);
445 debug_object_activate(timer, &timer_debug_descr);
446 return 0;
447 } else {
448 WARN_ON_ONCE(1);
449 }
450 return 0;
451
452 case ODEBUG_STATE_ACTIVE:
453 WARN_ON(1);
454
455 default:
456 return 0;
457 }
458}
459
460/*
461 * fixup_free is called when:
462 * - an active object is freed
463 */
464static int timer_fixup_free(void *addr, enum debug_obj_state state)
465{
466 struct timer_list *timer = addr;
467
468 switch (state) {
469 case ODEBUG_STATE_ACTIVE:
470 del_timer_sync(timer);
471 debug_object_free(timer, &timer_debug_descr);
472 return 1;
473 default:
474 return 0;
475 }
476}
477
478static struct debug_obj_descr timer_debug_descr = {
479 .name = "timer_list",
480 .fixup_init = timer_fixup_init,
481 .fixup_activate = timer_fixup_activate,
482 .fixup_free = timer_fixup_free,
483};
484
485static inline void debug_timer_init(struct timer_list *timer)
486{
487 debug_object_init(timer, &timer_debug_descr);
488}
489
490static inline void debug_timer_activate(struct timer_list *timer)
491{
492 debug_object_activate(timer, &timer_debug_descr);
493}
494
495static inline void debug_timer_deactivate(struct timer_list *timer)
496{
497 debug_object_deactivate(timer, &timer_debug_descr);
498}
499
500static inline void debug_timer_free(struct timer_list *timer)
501{
502 debug_object_free(timer, &timer_debug_descr);
503}
504
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100505static void __init_timer(struct timer_list *timer,
506 const char *name,
507 struct lock_class_key *key);
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700508
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100509void init_timer_on_stack_key(struct timer_list *timer,
510 const char *name,
511 struct lock_class_key *key)
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700512{
513 debug_object_init_on_stack(timer, &timer_debug_descr);
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100514 __init_timer(timer, name, key);
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700515}
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100516EXPORT_SYMBOL_GPL(init_timer_on_stack_key);
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700517
518void destroy_timer_on_stack(struct timer_list *timer)
519{
520 debug_object_free(timer, &timer_debug_descr);
521}
522EXPORT_SYMBOL_GPL(destroy_timer_on_stack);
523
524#else
525static inline void debug_timer_init(struct timer_list *timer) { }
526static inline void debug_timer_activate(struct timer_list *timer) { }
527static inline void debug_timer_deactivate(struct timer_list *timer) { }
528#endif
529
Xiao Guangrong2b022e32009-08-10 10:48:59 +0800530static inline void debug_init(struct timer_list *timer)
531{
532 debug_timer_init(timer);
533 trace_timer_init(timer);
534}
535
536static inline void
537debug_activate(struct timer_list *timer, unsigned long expires)
538{
539 debug_timer_activate(timer);
540 trace_timer_start(timer, expires);
541}
542
543static inline void debug_deactivate(struct timer_list *timer)
544{
545 debug_timer_deactivate(timer);
546 trace_timer_cancel(timer);
547}
548
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100549static void __init_timer(struct timer_list *timer,
550 const char *name,
551 struct lock_class_key *key)
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700552{
553 timer->entry.next = NULL;
554 timer->base = __raw_get_cpu_var(tvec_bases);
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800555 timer->slack = -1;
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700556#ifdef CONFIG_TIMER_STATS
557 timer->start_site = NULL;
558 timer->start_pid = -1;
559 memset(timer->start_comm, 0, TASK_COMM_LEN);
560#endif
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100561 lockdep_init_map(&timer->lockdep_map, name, key, 0);
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700562}
563
Jesse Barnes8cadd2832010-05-10 14:26:20 -0700564void setup_deferrable_timer_on_stack_key(struct timer_list *timer,
565 const char *name,
566 struct lock_class_key *key,
567 void (*function)(unsigned long),
568 unsigned long data)
569{
570 timer->function = function;
571 timer->data = data;
572 init_timer_on_stack_key(timer, name, key);
573 timer_set_deferrable(timer);
574}
575EXPORT_SYMBOL_GPL(setup_deferrable_timer_on_stack_key);
576
Rolf Eike Beer2aae4a12006-09-29 01:59:46 -0700577/**
Randy Dunlap633fe792009-04-01 17:47:23 -0700578 * init_timer_key - initialize a timer
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700579 * @timer: the timer to be initialized
Randy Dunlap633fe792009-04-01 17:47:23 -0700580 * @name: name of the timer
581 * @key: lockdep class key of the fake lock used for tracking timer
582 * sync lock dependencies
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700583 *
Randy Dunlap633fe792009-04-01 17:47:23 -0700584 * init_timer_key() must be done to a timer prior calling *any* of the
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700585 * other timer functions.
586 */
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100587void init_timer_key(struct timer_list *timer,
588 const char *name,
589 struct lock_class_key *key)
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700590{
Xiao Guangrong2b022e32009-08-10 10:48:59 +0800591 debug_init(timer);
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100592 __init_timer(timer, name, key);
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700593}
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100594EXPORT_SYMBOL(init_timer_key);
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700595
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100596void init_timer_deferrable_key(struct timer_list *timer,
597 const char *name,
598 struct lock_class_key *key)
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700599{
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100600 init_timer_key(timer, name, key);
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700601 timer_set_deferrable(timer);
602}
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100603EXPORT_SYMBOL(init_timer_deferrable_key);
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700604
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700605static inline void detach_timer(struct timer_list *timer,
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800606 int clear_pending)
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700607{
608 struct list_head *entry = &timer->entry;
609
Xiao Guangrong2b022e32009-08-10 10:48:59 +0800610 debug_deactivate(timer);
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700611
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700612 __list_del(entry->prev, entry->next);
613 if (clear_pending)
614 entry->next = NULL;
615 entry->prev = LIST_POISON2;
616}
617
618/*
Oleg Nesterov3691c512006-03-31 02:30:30 -0800619 * We are using hashed locking: holding per_cpu(tvec_bases).lock
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700620 * means that all timers which are tied to this base via timer->base are
621 * locked, and the base itself is locked too.
622 *
623 * So __run_timers/migrate_timers can safely modify all timers which could
624 * be found on ->tvX lists.
625 *
626 * When the timer's base is locked, and the timer removed from list, it is
627 * possible to set timer->base = NULL and drop the lock: the timer remains
628 * locked.
629 */
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100630static struct tvec_base *lock_timer_base(struct timer_list *timer,
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700631 unsigned long *flags)
Josh Triplett89e7e3742006-09-29 01:59:36 -0700632 __acquires(timer->base->lock)
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700633{
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100634 struct tvec_base *base;
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700635
636 for (;;) {
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100637 struct tvec_base *prelock_base = timer->base;
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700638 base = tbase_get_base(prelock_base);
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700639 if (likely(base != NULL)) {
640 spin_lock_irqsave(&base->lock, *flags);
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700641 if (likely(prelock_base == timer->base))
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700642 return base;
643 /* The timer has migrated to another CPU */
644 spin_unlock_irqrestore(&base->lock, *flags);
645 }
646 cpu_relax();
647 }
648}
649
Ingo Molnar74019222009-02-18 12:23:29 +0100650static inline int
Arun R Bharadwaj597d0272009-04-16 12:13:26 +0530651__mod_timer(struct timer_list *timer, unsigned long expires,
652 bool pending_only, int pinned)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700653{
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100654 struct tvec_base *base, *new_base;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700655 unsigned long flags;
Arun R Bharadwajeea08f32009-04-16 12:16:41 +0530656 int ret = 0 , cpu;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700657
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800658 timer_stats_timer_set_start_info(timer);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700659 BUG_ON(!timer->function);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700660
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700661 base = lock_timer_base(timer, &flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700662
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700663 if (timer_pending(timer)) {
664 detach_timer(timer, 0);
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +0200665 if (timer->expires == base->next_timer &&
666 !tbase_get_deferrable(timer->base))
667 base->next_timer = base->timer_jiffies;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700668 ret = 1;
Ingo Molnar74019222009-02-18 12:23:29 +0100669 } else {
670 if (pending_only)
671 goto out_unlock;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700672 }
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700673
Xiao Guangrong2b022e32009-08-10 10:48:59 +0800674 debug_activate(timer, expires);
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -0700675
Arun R Bharadwajeea08f32009-04-16 12:16:41 +0530676 cpu = smp_processor_id();
677
678#if defined(CONFIG_NO_HZ) && defined(CONFIG_SMP)
Venkatesh Pallipadi83cd4fe2010-05-21 17:09:41 -0700679 if (!pinned && get_sysctl_timer_migration() && idle_cpu(cpu))
680 cpu = get_nohz_timer_target();
Arun R Bharadwajeea08f32009-04-16 12:16:41 +0530681#endif
682 new_base = per_cpu(tvec_bases, cpu);
683
Oleg Nesterov3691c512006-03-31 02:30:30 -0800684 if (base != new_base) {
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700685 /*
686 * We are trying to schedule the timer on the local CPU.
687 * However we can't change timer's base while it is running,
688 * otherwise del_timer_sync() can't detect that the timer's
689 * handler yet has not finished. This also guarantees that
690 * the timer is serialized wrt itself.
691 */
Oleg Nesterova2c348f2006-03-31 02:30:31 -0800692 if (likely(base->running_timer != timer)) {
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700693 /* See the comment in lock_timer_base() */
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700694 timer_set_base(timer, NULL);
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700695 spin_unlock(&base->lock);
Oleg Nesterova2c348f2006-03-31 02:30:31 -0800696 base = new_base;
697 spin_lock(&base->lock);
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700698 timer_set_base(timer, base);
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700699 }
700 }
701
Linus Torvalds1da177e2005-04-16 15:20:36 -0700702 timer->expires = expires;
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +0200703 if (time_before(timer->expires, base->next_timer) &&
704 !tbase_get_deferrable(timer->base))
705 base->next_timer = timer->expires;
Oleg Nesterova2c348f2006-03-31 02:30:31 -0800706 internal_add_timer(base, timer);
Ingo Molnar74019222009-02-18 12:23:29 +0100707
708out_unlock:
Oleg Nesterova2c348f2006-03-31 02:30:31 -0800709 spin_unlock_irqrestore(&base->lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700710
711 return ret;
712}
713
Ingo Molnar74019222009-02-18 12:23:29 +0100714/**
715 * mod_timer_pending - modify a pending timer's timeout
716 * @timer: the pending timer to be modified
717 * @expires: new timeout in jiffies
718 *
719 * mod_timer_pending() is the same for pending timers as mod_timer(),
720 * but will not re-activate and modify already deleted timers.
721 *
722 * It is useful for unserialized use of timers.
723 */
724int mod_timer_pending(struct timer_list *timer, unsigned long expires)
725{
Arun R Bharadwaj597d0272009-04-16 12:13:26 +0530726 return __mod_timer(timer, expires, true, TIMER_NOT_PINNED);
Ingo Molnar74019222009-02-18 12:23:29 +0100727}
728EXPORT_SYMBOL(mod_timer_pending);
729
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800730/*
731 * Decide where to put the timer while taking the slack into account
732 *
733 * Algorithm:
734 * 1) calculate the maximum (absolute) time
735 * 2) calculate the highest bit where the expires and new max are different
736 * 3) use this bit to make a mask
737 * 4) use the bitmask to round down the maximum time, so that all last
738 * bits are zeros
739 */
740static inline
741unsigned long apply_slack(struct timer_list *timer, unsigned long expires)
742{
743 unsigned long expires_limit, mask;
744 int bit;
745
Jeff Chuaf00e0472010-05-24 07:16:24 +0800746 expires_limit = expires;
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800747
Thomas Gleixner8e63d772010-05-25 20:43:30 +0200748 if (timer->slack >= 0) {
Jeff Chuaf00e0472010-05-24 07:16:24 +0800749 expires_limit = expires + timer->slack;
Thomas Gleixner8e63d772010-05-25 20:43:30 +0200750 } else {
Thomas Gleixner2abfb9e2010-05-26 16:07:13 +0200751 unsigned long now = jiffies;
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800752
Thomas Gleixner8e63d772010-05-25 20:43:30 +0200753 /* No slack, if already expired else auto slack 0.4% */
754 if (time_after(expires, now))
755 expires_limit = expires + (expires - now)/256;
756 }
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800757 mask = expires ^ expires_limit;
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800758 if (mask == 0)
759 return expires;
760
761 bit = find_last_bit(&mask, BITS_PER_LONG);
762
763 mask = (1 << bit) - 1;
764
765 expires_limit = expires_limit & ~(mask);
766
767 return expires_limit;
768}
769
Ingo Molnar74019222009-02-18 12:23:29 +0100770/**
771 * mod_timer - modify a timer's timeout
772 * @timer: the timer to be modified
773 * @expires: new timeout in jiffies
774 *
775 * mod_timer() is a more efficient way to update the expire field of an
776 * active timer (if the timer is inactive it will be activated)
777 *
778 * mod_timer(timer, expires) is equivalent to:
779 *
780 * del_timer(timer); timer->expires = expires; add_timer(timer);
781 *
782 * Note that if there are multiple unserialized concurrent users of the
783 * same timer, then mod_timer() is the only safe way to modify the timeout,
784 * since add_timer() cannot modify an already running timer.
785 *
786 * The function returns whether it has modified a pending timer or not.
787 * (ie. mod_timer() of an inactive timer returns 0, mod_timer() of an
788 * active timer returns 1.)
789 */
790int mod_timer(struct timer_list *timer, unsigned long expires)
791{
792 /*
793 * This is a common optimization triggered by the
794 * networking code - if the timer is re-modified
795 * to be the same thing then just return:
796 */
Pavel Roskin48411582009-07-18 16:46:02 -0400797 if (timer_pending(timer) && timer->expires == expires)
Ingo Molnar74019222009-02-18 12:23:29 +0100798 return 1;
799
Arjan van de Ven3bbb9ec2010-03-11 14:04:36 -0800800 expires = apply_slack(timer, expires);
801
Arun R Bharadwaj597d0272009-04-16 12:13:26 +0530802 return __mod_timer(timer, expires, false, TIMER_NOT_PINNED);
Ingo Molnar74019222009-02-18 12:23:29 +0100803}
804EXPORT_SYMBOL(mod_timer);
805
806/**
Arun R Bharadwaj597d0272009-04-16 12:13:26 +0530807 * mod_timer_pinned - modify a timer's timeout
808 * @timer: the timer to be modified
809 * @expires: new timeout in jiffies
810 *
811 * mod_timer_pinned() is a way to update the expire field of an
812 * active timer (if the timer is inactive it will be activated)
813 * and not allow the timer to be migrated to a different CPU.
814 *
815 * mod_timer_pinned(timer, expires) is equivalent to:
816 *
817 * del_timer(timer); timer->expires = expires; add_timer(timer);
818 */
819int mod_timer_pinned(struct timer_list *timer, unsigned long expires)
820{
821 if (timer->expires == expires && timer_pending(timer))
822 return 1;
823
824 return __mod_timer(timer, expires, false, TIMER_PINNED);
825}
826EXPORT_SYMBOL(mod_timer_pinned);
827
828/**
Ingo Molnar74019222009-02-18 12:23:29 +0100829 * add_timer - start a timer
830 * @timer: the timer to be added
831 *
832 * The kernel will do a ->function(->data) callback from the
833 * timer interrupt at the ->expires point in the future. The
834 * current time is 'jiffies'.
835 *
836 * The timer's ->expires, ->function (and if the handler uses it, ->data)
837 * fields must be set prior calling this function.
838 *
839 * Timers with an ->expires field in the past will be executed in the next
840 * timer tick.
841 */
842void add_timer(struct timer_list *timer)
843{
844 BUG_ON(timer_pending(timer));
845 mod_timer(timer, timer->expires);
846}
847EXPORT_SYMBOL(add_timer);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700848
Rolf Eike Beer2aae4a12006-09-29 01:59:46 -0700849/**
Linus Torvalds1da177e2005-04-16 15:20:36 -0700850 * add_timer_on - start a timer on a particular CPU
851 * @timer: the timer to be added
852 * @cpu: the CPU to start it on
853 *
854 * This is not very scalable on SMP. Double adds are not possible.
855 */
856void add_timer_on(struct timer_list *timer, int cpu)
857{
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100858 struct tvec_base *base = per_cpu(tvec_bases, cpu);
Thomas Gleixner68194572007-07-19 01:49:16 -0700859 unsigned long flags;
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700860
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800861 timer_stats_timer_set_start_info(timer);
Thomas Gleixner68194572007-07-19 01:49:16 -0700862 BUG_ON(timer_pending(timer) || !timer->function);
Oleg Nesterov3691c512006-03-31 02:30:30 -0800863 spin_lock_irqsave(&base->lock, flags);
Venki Pallipadi6e453a62007-05-08 00:27:44 -0700864 timer_set_base(timer, base);
Xiao Guangrong2b022e32009-08-10 10:48:59 +0800865 debug_activate(timer, timer->expires);
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +0200866 if (time_before(timer->expires, base->next_timer) &&
867 !tbase_get_deferrable(timer->base))
868 base->next_timer = timer->expires;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700869 internal_add_timer(base, timer);
Thomas Gleixner06d83082008-03-22 09:20:24 +0100870 /*
871 * Check whether the other CPU is idle and needs to be
872 * triggered to reevaluate the timer wheel when nohz is
873 * active. We are protected against the other CPU fiddling
874 * with the timer by holding the timer base lock. This also
875 * makes sure that a CPU on the way to idle can not evaluate
876 * the timer wheel.
877 */
878 wake_up_idle_cpu(cpu);
Oleg Nesterov3691c512006-03-31 02:30:30 -0800879 spin_unlock_irqrestore(&base->lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700880}
Andi Kleena9862e02009-05-19 22:49:07 +0200881EXPORT_SYMBOL_GPL(add_timer_on);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700882
Rolf Eike Beer2aae4a12006-09-29 01:59:46 -0700883/**
Linus Torvalds1da177e2005-04-16 15:20:36 -0700884 * del_timer - deactive a timer.
885 * @timer: the timer to be deactivated
886 *
887 * del_timer() deactivates a timer - this works on both active and inactive
888 * timers.
889 *
890 * The function returns whether it has deactivated a pending timer or not.
891 * (ie. del_timer() of an inactive timer returns 0, del_timer() of an
892 * active timer returns 1.)
893 */
894int del_timer(struct timer_list *timer)
895{
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100896 struct tvec_base *base;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700897 unsigned long flags;
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700898 int ret = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700899
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800900 timer_stats_timer_clear_start_info(timer);
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700901 if (timer_pending(timer)) {
902 base = lock_timer_base(timer, &flags);
903 if (timer_pending(timer)) {
904 detach_timer(timer, 1);
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +0200905 if (timer->expires == base->next_timer &&
906 !tbase_get_deferrable(timer->base))
907 base->next_timer = base->timer_jiffies;
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700908 ret = 1;
909 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700910 spin_unlock_irqrestore(&base->lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700911 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700912
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700913 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700914}
Linus Torvalds1da177e2005-04-16 15:20:36 -0700915EXPORT_SYMBOL(del_timer);
916
Rolf Eike Beer2aae4a12006-09-29 01:59:46 -0700917/**
918 * try_to_del_timer_sync - Try to deactivate a timer
919 * @timer: timer do del
920 *
Oleg Nesterovfd450b72005-06-23 00:08:59 -0700921 * This function tries to deactivate a timer. Upon successful (ret >= 0)
922 * exit the timer is not queued and the handler is not running on any CPU.
Oleg Nesterovfd450b72005-06-23 00:08:59 -0700923 */
924int try_to_del_timer_sync(struct timer_list *timer)
925{
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100926 struct tvec_base *base;
Oleg Nesterovfd450b72005-06-23 00:08:59 -0700927 unsigned long flags;
928 int ret = -1;
929
930 base = lock_timer_base(timer, &flags);
931
932 if (base->running_timer == timer)
933 goto out;
934
Andrew Morton829b6c12010-03-11 14:04:30 -0800935 timer_stats_timer_clear_start_info(timer);
Oleg Nesterovfd450b72005-06-23 00:08:59 -0700936 ret = 0;
937 if (timer_pending(timer)) {
938 detach_timer(timer, 1);
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +0200939 if (timer->expires == base->next_timer &&
940 !tbase_get_deferrable(timer->base))
941 base->next_timer = base->timer_jiffies;
Oleg Nesterovfd450b72005-06-23 00:08:59 -0700942 ret = 1;
943 }
944out:
945 spin_unlock_irqrestore(&base->lock, flags);
946
947 return ret;
948}
David Howellse19dff12007-04-26 15:46:56 -0700949EXPORT_SYMBOL(try_to_del_timer_sync);
950
Yong Zhang6f1bc452010-10-20 15:57:31 -0700951#ifdef CONFIG_SMP
Rolf Eike Beer2aae4a12006-09-29 01:59:46 -0700952/**
Linus Torvalds1da177e2005-04-16 15:20:36 -0700953 * del_timer_sync - deactivate a timer and wait for the handler to finish.
954 * @timer: the timer to be deactivated
955 *
956 * This function only differs from del_timer() on SMP: besides deactivating
957 * the timer it also makes sure the handler has finished executing on other
958 * CPUs.
959 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800960 * Synchronization rules: Callers must prevent restarting of the timer,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700961 * otherwise this function is meaningless. It must not be called from
Yong Zhang1118e2c2010-10-20 15:57:32 -0700962 * hardirq contexts. The caller must not hold locks which would prevent
Oleg Nesterov55c888d2005-06-23 00:08:56 -0700963 * completion of the timer's handler. The timer's handler must not call
964 * add_timer_on(). Upon exit the timer is not queued and the handler is
965 * not running on any CPU.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700966 *
967 * The function returns whether it has deactivated a pending timer or not.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700968 */
969int del_timer_sync(struct timer_list *timer)
970{
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100971#ifdef CONFIG_LOCKDEP
Yong Zhang1118e2c2010-10-20 15:57:32 -0700972 local_bh_disable();
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100973 lock_map_acquire(&timer->lockdep_map);
974 lock_map_release(&timer->lockdep_map);
Yong Zhang1118e2c2010-10-20 15:57:32 -0700975 local_bh_enable();
Johannes Berg6f2b9b92009-01-29 16:03:20 +0100976#endif
Yong Zhang466bd302010-10-20 15:57:33 -0700977 /*
978 * don't use it in hardirq context, because it
979 * could lead to deadlock.
980 */
981 WARN_ON(in_irq());
Oleg Nesterovfd450b72005-06-23 00:08:59 -0700982 for (;;) {
983 int ret = try_to_del_timer_sync(timer);
984 if (ret >= 0)
985 return ret;
Andrew Mortona0009652006-07-14 00:24:06 -0700986 cpu_relax();
Oleg Nesterovfd450b72005-06-23 00:08:59 -0700987 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700988}
989EXPORT_SYMBOL(del_timer_sync);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700990#endif
991
Pavel Macheka6fa8e52008-01-30 13:30:00 +0100992static int cascade(struct tvec_base *base, struct tvec *tv, int index)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700993{
994 /* cascade all the timers from tv up one level */
Porpoise3439dd82006-06-23 02:05:56 -0700995 struct timer_list *timer, *tmp;
996 struct list_head tv_list;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700997
Porpoise3439dd82006-06-23 02:05:56 -0700998 list_replace_init(tv->vec + index, &tv_list);
999
Linus Torvalds1da177e2005-04-16 15:20:36 -07001000 /*
Porpoise3439dd82006-06-23 02:05:56 -07001001 * We are removing _all_ timers from the list, so we
1002 * don't have to detach them individually.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001003 */
Porpoise3439dd82006-06-23 02:05:56 -07001004 list_for_each_entry_safe(timer, tmp, &tv_list, entry) {
Venki Pallipadi6e453a62007-05-08 00:27:44 -07001005 BUG_ON(tbase_get_base(timer->base) != base);
Porpoise3439dd82006-06-23 02:05:56 -07001006 internal_add_timer(base, timer);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001007 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001008
1009 return index;
1010}
1011
Thomas Gleixner576da122010-03-12 21:10:29 +01001012static void call_timer_fn(struct timer_list *timer, void (*fn)(unsigned long),
1013 unsigned long data)
1014{
1015 int preempt_count = preempt_count();
1016
1017#ifdef CONFIG_LOCKDEP
1018 /*
1019 * It is permissible to free the timer from inside the
1020 * function that is called from it, this we need to take into
1021 * account for lockdep too. To avoid bogus "held lock freed"
1022 * warnings as well as problems when looking into
1023 * timer->lockdep_map, make a copy and use that here.
1024 */
1025 struct lockdep_map lockdep_map = timer->lockdep_map;
1026#endif
1027 /*
1028 * Couple the lock chain with the lock chain at
1029 * del_timer_sync() by acquiring the lock_map around the fn()
1030 * call here and in del_timer_sync().
1031 */
1032 lock_map_acquire(&lockdep_map);
1033
1034 trace_timer_expire_entry(timer);
1035 fn(data);
1036 trace_timer_expire_exit(timer);
1037
1038 lock_map_release(&lockdep_map);
1039
1040 if (preempt_count != preempt_count()) {
Thomas Gleixner802702e2010-03-12 20:13:23 +01001041 WARN_ONCE(1, "timer: %pF preempt leak: %08x -> %08x\n",
1042 fn, preempt_count, preempt_count());
1043 /*
1044 * Restore the preempt count. That gives us a decent
1045 * chance to survive and extract information. If the
1046 * callback kept a lock held, bad luck, but not worse
1047 * than the BUG() we had.
1048 */
1049 preempt_count() = preempt_count;
Thomas Gleixner576da122010-03-12 21:10:29 +01001050 }
1051}
1052
Rolf Eike Beer2aae4a12006-09-29 01:59:46 -07001053#define INDEX(N) ((base->timer_jiffies >> (TVR_BITS + (N) * TVN_BITS)) & TVN_MASK)
1054
1055/**
Linus Torvalds1da177e2005-04-16 15:20:36 -07001056 * __run_timers - run all expired timers (if any) on this CPU.
1057 * @base: the timer vector to be processed.
1058 *
1059 * This function cascades all vectors and executes all expired timer
1060 * vectors.
1061 */
Pavel Macheka6fa8e52008-01-30 13:30:00 +01001062static inline void __run_timers(struct tvec_base *base)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001063{
1064 struct timer_list *timer;
1065
Oleg Nesterov3691c512006-03-31 02:30:30 -08001066 spin_lock_irq(&base->lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001067 while (time_after_eq(jiffies, base->timer_jiffies)) {
Oleg Nesterov626ab0e2006-06-23 02:05:55 -07001068 struct list_head work_list;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001069 struct list_head *head = &work_list;
Thomas Gleixner68194572007-07-19 01:49:16 -07001070 int index = base->timer_jiffies & TVR_MASK;
Oleg Nesterov626ab0e2006-06-23 02:05:55 -07001071
Linus Torvalds1da177e2005-04-16 15:20:36 -07001072 /*
1073 * Cascade timers:
1074 */
1075 if (!index &&
1076 (!cascade(base, &base->tv2, INDEX(0))) &&
1077 (!cascade(base, &base->tv3, INDEX(1))) &&
1078 !cascade(base, &base->tv4, INDEX(2)))
1079 cascade(base, &base->tv5, INDEX(3));
Oleg Nesterov626ab0e2006-06-23 02:05:55 -07001080 ++base->timer_jiffies;
1081 list_replace_init(base->tv1.vec + index, &work_list);
Oleg Nesterov55c888d2005-06-23 00:08:56 -07001082 while (!list_empty(head)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001083 void (*fn)(unsigned long);
1084 unsigned long data;
1085
Pavel Emelianovb5e61812007-05-08 00:30:19 -07001086 timer = list_first_entry(head, struct timer_list,entry);
Thomas Gleixner68194572007-07-19 01:49:16 -07001087 fn = timer->function;
1088 data = timer->data;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001089
Ingo Molnar82f67cd2007-02-16 01:28:13 -08001090 timer_stats_account_timer(timer);
1091
Yong Zhang6f1bc452010-10-20 15:57:31 -07001092 base->running_timer = timer;
Oleg Nesterov55c888d2005-06-23 00:08:56 -07001093 detach_timer(timer, 1);
Johannes Berg6f2b9b92009-01-29 16:03:20 +01001094
Oleg Nesterov3691c512006-03-31 02:30:30 -08001095 spin_unlock_irq(&base->lock);
Thomas Gleixner576da122010-03-12 21:10:29 +01001096 call_timer_fn(timer, fn, data);
Oleg Nesterov3691c512006-03-31 02:30:30 -08001097 spin_lock_irq(&base->lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001098 }
1099 }
Yong Zhang6f1bc452010-10-20 15:57:31 -07001100 base->running_timer = NULL;
Oleg Nesterov3691c512006-03-31 02:30:30 -08001101 spin_unlock_irq(&base->lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001102}
1103
Russell Kingee9c5782008-04-20 13:59:33 +01001104#ifdef CONFIG_NO_HZ
Linus Torvalds1da177e2005-04-16 15:20:36 -07001105/*
1106 * Find out when the next timer event is due to happen. This
Randy Dunlap90cba642009-08-25 14:35:41 -07001107 * is used on S/390 to stop all activity when a CPU is idle.
1108 * This function needs to be called with interrupts disabled.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001109 */
Pavel Macheka6fa8e52008-01-30 13:30:00 +01001110static unsigned long __next_timer_interrupt(struct tvec_base *base)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001111{
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001112 unsigned long timer_jiffies = base->timer_jiffies;
Thomas Gleixnereaad0842007-05-29 23:47:39 +02001113 unsigned long expires = timer_jiffies + NEXT_TIMER_MAX_DELTA;
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001114 int index, slot, array, found = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001115 struct timer_list *nte;
Pavel Macheka6fa8e52008-01-30 13:30:00 +01001116 struct tvec *varray[4];
Linus Torvalds1da177e2005-04-16 15:20:36 -07001117
1118 /* Look for timer events in tv1. */
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001119 index = slot = timer_jiffies & TVR_MASK;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001120 do {
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001121 list_for_each_entry(nte, base->tv1.vec + slot, entry) {
Thomas Gleixner68194572007-07-19 01:49:16 -07001122 if (tbase_get_deferrable(nte->base))
1123 continue;
Venki Pallipadi6e453a62007-05-08 00:27:44 -07001124
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001125 found = 1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001126 expires = nte->expires;
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001127 /* Look at the cascade bucket(s)? */
1128 if (!index || slot < index)
1129 goto cascade;
1130 return expires;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001131 }
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001132 slot = (slot + 1) & TVR_MASK;
1133 } while (slot != index);
1134
1135cascade:
1136 /* Calculate the next cascade event */
1137 if (index)
1138 timer_jiffies += TVR_SIZE - index;
1139 timer_jiffies >>= TVR_BITS;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001140
1141 /* Check tv2-tv5. */
1142 varray[0] = &base->tv2;
1143 varray[1] = &base->tv3;
1144 varray[2] = &base->tv4;
1145 varray[3] = &base->tv5;
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001146
1147 for (array = 0; array < 4; array++) {
Pavel Macheka6fa8e52008-01-30 13:30:00 +01001148 struct tvec *varp = varray[array];
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001149
1150 index = slot = timer_jiffies & TVN_MASK;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001151 do {
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001152 list_for_each_entry(nte, varp->vec + slot, entry) {
Jon Huntera0419882009-05-01 13:10:23 -07001153 if (tbase_get_deferrable(nte->base))
1154 continue;
1155
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001156 found = 1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001157 if (time_before(nte->expires, expires))
1158 expires = nte->expires;
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001159 }
1160 /*
1161 * Do we still search for the first timer or are
1162 * we looking up the cascade buckets ?
1163 */
1164 if (found) {
1165 /* Look at the cascade bucket(s)? */
1166 if (!index || slot < index)
1167 break;
1168 return expires;
1169 }
1170 slot = (slot + 1) & TVN_MASK;
1171 } while (slot != index);
1172
1173 if (index)
1174 timer_jiffies += TVN_SIZE - index;
1175 timer_jiffies >>= TVN_BITS;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001176 }
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001177 return expires;
1178}
1179
1180/*
1181 * Check, if the next hrtimer event is before the next timer wheel
1182 * event:
1183 */
1184static unsigned long cmp_next_hrtimer_event(unsigned long now,
1185 unsigned long expires)
1186{
1187 ktime_t hr_delta = hrtimer_get_next_event();
1188 struct timespec tsdelta;
Thomas Gleixner9501b6c2007-03-25 14:31:17 +02001189 unsigned long delta;
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001190
1191 if (hr_delta.tv64 == KTIME_MAX)
1192 return expires;
1193
Thomas Gleixner9501b6c2007-03-25 14:31:17 +02001194 /*
1195 * Expired timer available, let it expire in the next tick
1196 */
1197 if (hr_delta.tv64 <= 0)
1198 return now + 1;
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001199
1200 tsdelta = ktime_to_timespec(hr_delta);
Thomas Gleixner9501b6c2007-03-25 14:31:17 +02001201 delta = timespec_to_jiffies(&tsdelta);
Thomas Gleixnereaad0842007-05-29 23:47:39 +02001202
1203 /*
1204 * Limit the delta to the max value, which is checked in
1205 * tick_nohz_stop_sched_tick():
1206 */
1207 if (delta > NEXT_TIMER_MAX_DELTA)
1208 delta = NEXT_TIMER_MAX_DELTA;
1209
Thomas Gleixner9501b6c2007-03-25 14:31:17 +02001210 /*
1211 * Take rounding errors in to account and make sure, that it
1212 * expires in the next tick. Otherwise we go into an endless
1213 * ping pong due to tick_nohz_stop_sched_tick() retriggering
1214 * the timer softirq
1215 */
1216 if (delta < 1)
1217 delta = 1;
1218 now += delta;
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001219 if (time_before(now, expires))
1220 return now;
1221 return expires;
1222}
1223
1224/**
Li Zefan8dce39c2007-11-05 14:51:10 -08001225 * get_next_timer_interrupt - return the jiffy of the next pending timer
Randy Dunlap05fb6bf2007-02-28 20:12:13 -08001226 * @now: current time (in jiffies)
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001227 */
Thomas Gleixnerfd064b92007-02-16 01:27:47 -08001228unsigned long get_next_timer_interrupt(unsigned long now)
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001229{
Christoph Lameter74963512010-11-30 14:05:53 -06001230 struct tvec_base *base = __this_cpu_read(tvec_bases);
Thomas Gleixnerfd064b92007-02-16 01:27:47 -08001231 unsigned long expires;
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001232
1233 spin_lock(&base->lock);
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +02001234 if (time_before_eq(base->next_timer, base->timer_jiffies))
1235 base->next_timer = __next_timer_interrupt(base);
1236 expires = base->next_timer;
Oleg Nesterov3691c512006-03-31 02:30:30 -08001237 spin_unlock(&base->lock);
Tony Lindgren69239742006-03-06 15:42:45 -08001238
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001239 if (time_before_eq(expires, now))
1240 return now;
Zachary Amsden0662b712006-05-20 15:00:24 -07001241
Thomas Gleixner1cfd6842007-02-16 01:27:46 -08001242 return cmp_next_hrtimer_event(now, expires);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001243}
1244#endif
1245
Linus Torvalds1da177e2005-04-16 15:20:36 -07001246/*
Daniel Walker5b4db0c2007-10-18 03:06:11 -07001247 * Called from the timer interrupt handler to charge one tick to the current
Linus Torvalds1da177e2005-04-16 15:20:36 -07001248 * process. user_tick is 1 if the tick is user time, 0 for system.
1249 */
1250void update_process_times(int user_tick)
1251{
1252 struct task_struct *p = current;
1253 int cpu = smp_processor_id();
1254
1255 /* Note: this timer irq context must be accounted for as well. */
Paul Mackerrasfa13a5a2007-11-09 22:39:38 +01001256 account_process_tick(p, user_tick);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001257 run_local_timers();
Paul E. McKenneya1572292009-08-22 13:56:51 -07001258 rcu_check_callbacks(cpu, user_tick);
Peter Zijlstrab845b512008-08-08 21:47:09 +02001259 printk_tick();
Peter Zijlstrafe432202010-01-18 09:08:26 +01001260 perf_event_do_pending();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001261 scheduler_tick();
Thomas Gleixner68194572007-07-19 01:49:16 -07001262 run_posix_cpu_timers(p);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001263}
1264
1265/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001266 * This function runs timers and the timer-tq in bottom half context.
1267 */
1268static void run_timer_softirq(struct softirq_action *h)
1269{
Christoph Lameter74963512010-11-30 14:05:53 -06001270 struct tvec_base *base = __this_cpu_read(tvec_bases);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001271
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001272 hrtimer_run_pending();
Ingo Molnar82f67cd2007-02-16 01:28:13 -08001273
Linus Torvalds1da177e2005-04-16 15:20:36 -07001274 if (time_after_eq(jiffies, base->timer_jiffies))
1275 __run_timers(base);
1276}
1277
1278/*
1279 * Called by the local, per-CPU timer interrupt on SMP.
1280 */
1281void run_local_timers(void)
1282{
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001283 hrtimer_run_queues();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001284 raise_softirq(TIMER_SOFTIRQ);
1285}
1286
1287/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001288 * The 64-bit jiffies value is not atomic - you MUST NOT read it
1289 * without sampling the sequence number in xtime_lock.
1290 * jiffies is defined in the linker script...
1291 */
1292
Atsushi Nemoto3171a032006-09-29 02:00:32 -07001293void do_timer(unsigned long ticks)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001294{
Atsushi Nemoto3171a032006-09-29 02:00:32 -07001295 jiffies_64 += ticks;
Thomas Gleixnerdce48a82009-04-11 10:43:41 +02001296 update_wall_time();
1297 calc_global_load();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001298}
1299
1300#ifdef __ARCH_WANT_SYS_ALARM
1301
1302/*
1303 * For backwards compatibility? This can be done in libc so Alpha
1304 * and all newer ports shouldn't need it.
1305 */
Heiko Carstens58fd3aa2009-01-14 14:14:03 +01001306SYSCALL_DEFINE1(alarm, unsigned int, seconds)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001307{
Thomas Gleixnerc08b8a42006-03-25 03:06:33 -08001308 return alarm_setitimer(seconds);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001309}
1310
1311#endif
1312
1313#ifndef __alpha__
1314
1315/*
1316 * The Alpha uses getxpid, getxuid, and getxgid instead. Maybe this
1317 * should be moved into arch/i386 instead?
1318 */
1319
1320/**
1321 * sys_getpid - return the thread group id of the current process
1322 *
1323 * Note, despite the name, this returns the tgid not the pid. The tgid and
1324 * the pid are identical unless CLONE_THREAD was specified on clone() in
1325 * which case the tgid is the same in all threads of the same group.
1326 *
1327 * This is SMP safe as current->tgid does not change.
1328 */
Heiko Carstens58fd3aa2009-01-14 14:14:03 +01001329SYSCALL_DEFINE0(getpid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001330{
Pavel Emelyanovb4888932007-10-18 23:40:14 -07001331 return task_tgid_vnr(current);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001332}
1333
1334/*
Kirill Korotaev6997a6f2006-08-13 23:24:23 -07001335 * Accessing ->real_parent is not SMP-safe, it could
1336 * change from under us. However, we can use a stale
1337 * value of ->real_parent under rcu_read_lock(), see
1338 * release_task()->call_rcu(delayed_put_task_struct).
Linus Torvalds1da177e2005-04-16 15:20:36 -07001339 */
Heiko Carstensdbf040d2009-01-14 14:14:04 +01001340SYSCALL_DEFINE0(getppid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001341{
1342 int pid;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001343
Kirill Korotaev6997a6f2006-08-13 23:24:23 -07001344 rcu_read_lock();
Pavel Emelyanov6c5f3e72008-02-08 04:19:20 -08001345 pid = task_tgid_vnr(current->real_parent);
Kirill Korotaev6997a6f2006-08-13 23:24:23 -07001346 rcu_read_unlock();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001347
Linus Torvalds1da177e2005-04-16 15:20:36 -07001348 return pid;
1349}
1350
Heiko Carstensdbf040d2009-01-14 14:14:04 +01001351SYSCALL_DEFINE0(getuid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001352{
1353 /* Only we change this so SMP safe */
David Howells76aac0e2008-11-14 10:39:12 +11001354 return current_uid();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001355}
1356
Heiko Carstensdbf040d2009-01-14 14:14:04 +01001357SYSCALL_DEFINE0(geteuid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001358{
1359 /* Only we change this so SMP safe */
David Howells76aac0e2008-11-14 10:39:12 +11001360 return current_euid();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001361}
1362
Heiko Carstensdbf040d2009-01-14 14:14:04 +01001363SYSCALL_DEFINE0(getgid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001364{
1365 /* Only we change this so SMP safe */
David Howells76aac0e2008-11-14 10:39:12 +11001366 return current_gid();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001367}
1368
Heiko Carstensdbf040d2009-01-14 14:14:04 +01001369SYSCALL_DEFINE0(getegid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001370{
1371 /* Only we change this so SMP safe */
David Howells76aac0e2008-11-14 10:39:12 +11001372 return current_egid();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001373}
1374
1375#endif
1376
1377static void process_timeout(unsigned long __data)
1378{
Ingo Molnar36c8b582006-07-03 00:25:41 -07001379 wake_up_process((struct task_struct *)__data);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001380}
1381
1382/**
1383 * schedule_timeout - sleep until timeout
1384 * @timeout: timeout value in jiffies
1385 *
1386 * Make the current task sleep until @timeout jiffies have
1387 * elapsed. The routine will return immediately unless
1388 * the current task state has been set (see set_current_state()).
1389 *
1390 * You can set the task state as follows -
1391 *
1392 * %TASK_UNINTERRUPTIBLE - at least @timeout jiffies are guaranteed to
1393 * pass before the routine returns. The routine will return 0
1394 *
1395 * %TASK_INTERRUPTIBLE - the routine may return early if a signal is
1396 * delivered to the current task. In this case the remaining time
1397 * in jiffies will be returned, or 0 if the timer expired in time
1398 *
1399 * The current task state is guaranteed to be TASK_RUNNING when this
1400 * routine returns.
1401 *
1402 * Specifying a @timeout value of %MAX_SCHEDULE_TIMEOUT will schedule
1403 * the CPU away without a bound on the timeout. In this case the return
1404 * value will be %MAX_SCHEDULE_TIMEOUT.
1405 *
1406 * In all cases the return value is guaranteed to be non-negative.
1407 */
Harvey Harrison7ad5b3a2008-02-08 04:19:53 -08001408signed long __sched schedule_timeout(signed long timeout)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001409{
1410 struct timer_list timer;
1411 unsigned long expire;
1412
1413 switch (timeout)
1414 {
1415 case MAX_SCHEDULE_TIMEOUT:
1416 /*
1417 * These two special cases are useful to be comfortable
1418 * in the caller. Nothing more. We could take
1419 * MAX_SCHEDULE_TIMEOUT from one of the negative value
1420 * but I' d like to return a valid offset (>=0) to allow
1421 * the caller to do everything it want with the retval.
1422 */
1423 schedule();
1424 goto out;
1425 default:
1426 /*
1427 * Another bit of PARANOID. Note that the retval will be
1428 * 0 since no piece of kernel is supposed to do a check
1429 * for a negative retval of schedule_timeout() (since it
1430 * should never happens anyway). You just have the printk()
1431 * that will tell you if something is gone wrong and where.
1432 */
Andrew Morton5b149bc2006-12-22 01:10:14 -08001433 if (timeout < 0) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001434 printk(KERN_ERR "schedule_timeout: wrong timeout "
Andrew Morton5b149bc2006-12-22 01:10:14 -08001435 "value %lx\n", timeout);
1436 dump_stack();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001437 current->state = TASK_RUNNING;
1438 goto out;
1439 }
1440 }
1441
1442 expire = timeout + jiffies;
1443
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -07001444 setup_timer_on_stack(&timer, process_timeout, (unsigned long)current);
Arun R Bharadwaj597d0272009-04-16 12:13:26 +05301445 __mod_timer(&timer, expire, false, TIMER_NOT_PINNED);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001446 schedule();
1447 del_singleshot_timer_sync(&timer);
1448
Thomas Gleixnerc6f3a972008-04-30 00:55:03 -07001449 /* Remove the timer from the object tracker */
1450 destroy_timer_on_stack(&timer);
1451
Linus Torvalds1da177e2005-04-16 15:20:36 -07001452 timeout = expire - jiffies;
1453
1454 out:
1455 return timeout < 0 ? 0 : timeout;
1456}
Linus Torvalds1da177e2005-04-16 15:20:36 -07001457EXPORT_SYMBOL(schedule_timeout);
1458
Andrew Morton8a1c1752005-09-13 01:25:15 -07001459/*
1460 * We can use __set_current_state() here because schedule_timeout() calls
1461 * schedule() unconditionally.
1462 */
Nishanth Aravamudan64ed93a2005-09-10 00:27:21 -07001463signed long __sched schedule_timeout_interruptible(signed long timeout)
1464{
Andrew Mortona5a0d522005-10-30 15:01:42 -08001465 __set_current_state(TASK_INTERRUPTIBLE);
1466 return schedule_timeout(timeout);
Nishanth Aravamudan64ed93a2005-09-10 00:27:21 -07001467}
1468EXPORT_SYMBOL(schedule_timeout_interruptible);
1469
Matthew Wilcox294d5cc2007-12-06 11:59:46 -05001470signed long __sched schedule_timeout_killable(signed long timeout)
1471{
1472 __set_current_state(TASK_KILLABLE);
1473 return schedule_timeout(timeout);
1474}
1475EXPORT_SYMBOL(schedule_timeout_killable);
1476
Nishanth Aravamudan64ed93a2005-09-10 00:27:21 -07001477signed long __sched schedule_timeout_uninterruptible(signed long timeout)
1478{
Andrew Mortona5a0d522005-10-30 15:01:42 -08001479 __set_current_state(TASK_UNINTERRUPTIBLE);
1480 return schedule_timeout(timeout);
Nishanth Aravamudan64ed93a2005-09-10 00:27:21 -07001481}
1482EXPORT_SYMBOL(schedule_timeout_uninterruptible);
1483
Linus Torvalds1da177e2005-04-16 15:20:36 -07001484/* Thread ID - the internal kernel "pid" */
Heiko Carstens58fd3aa2009-01-14 14:14:03 +01001485SYSCALL_DEFINE0(gettid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001486{
Pavel Emelyanovb4888932007-10-18 23:40:14 -07001487 return task_pid_vnr(current);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001488}
1489
Rolf Eike Beer2aae4a12006-09-29 01:59:46 -07001490/**
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001491 * do_sysinfo - fill in sysinfo struct
Rolf Eike Beer2aae4a12006-09-29 01:59:46 -07001492 * @info: pointer to buffer to fill
Thomas Gleixner68194572007-07-19 01:49:16 -07001493 */
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001494int do_sysinfo(struct sysinfo *info)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001495{
Linus Torvalds1da177e2005-04-16 15:20:36 -07001496 unsigned long mem_total, sav_total;
1497 unsigned int mem_unit, bitcount;
Thomas Gleixner2d024942009-05-02 20:08:52 +02001498 struct timespec tp;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001499
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001500 memset(info, 0, sizeof(struct sysinfo));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001501
Thomas Gleixner2d024942009-05-02 20:08:52 +02001502 ktime_get_ts(&tp);
1503 monotonic_to_bootbased(&tp);
1504 info->uptime = tp.tv_sec + (tp.tv_nsec ? 1 : 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001505
Thomas Gleixner2d024942009-05-02 20:08:52 +02001506 get_avenrun(info->loads, 0, SI_LOAD_SHIFT - FSHIFT);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001507
Thomas Gleixner2d024942009-05-02 20:08:52 +02001508 info->procs = nr_threads;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001509
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001510 si_meminfo(info);
1511 si_swapinfo(info);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001512
1513 /*
1514 * If the sum of all the available memory (i.e. ram + swap)
1515 * is less than can be stored in a 32 bit unsigned long then
1516 * we can be binary compatible with 2.2.x kernels. If not,
1517 * well, in that case 2.2.x was broken anyways...
1518 *
1519 * -Erik Andersen <andersee@debian.org>
1520 */
1521
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001522 mem_total = info->totalram + info->totalswap;
1523 if (mem_total < info->totalram || mem_total < info->totalswap)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001524 goto out;
1525 bitcount = 0;
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001526 mem_unit = info->mem_unit;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001527 while (mem_unit > 1) {
1528 bitcount++;
1529 mem_unit >>= 1;
1530 sav_total = mem_total;
1531 mem_total <<= 1;
1532 if (mem_total < sav_total)
1533 goto out;
1534 }
1535
1536 /*
1537 * If mem_total did not overflow, multiply all memory values by
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001538 * info->mem_unit and set it to 1. This leaves things compatible
Linus Torvalds1da177e2005-04-16 15:20:36 -07001539 * with 2.2.x, and also retains compatibility with earlier 2.4.x
1540 * kernels...
1541 */
1542
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001543 info->mem_unit = 1;
1544 info->totalram <<= bitcount;
1545 info->freeram <<= bitcount;
1546 info->sharedram <<= bitcount;
1547 info->bufferram <<= bitcount;
1548 info->totalswap <<= bitcount;
1549 info->freeswap <<= bitcount;
1550 info->totalhigh <<= bitcount;
1551 info->freehigh <<= bitcount;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001552
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001553out:
1554 return 0;
1555}
1556
Heiko Carstens1e7bfb22009-01-14 14:14:29 +01001557SYSCALL_DEFINE1(sysinfo, struct sysinfo __user *, info)
Kyle McMartind4d23ad2007-02-10 01:46:00 -08001558{
1559 struct sysinfo val;
1560
1561 do_sysinfo(&val);
1562
Linus Torvalds1da177e2005-04-16 15:20:36 -07001563 if (copy_to_user(info, &val, sizeof(struct sysinfo)))
1564 return -EFAULT;
1565
1566 return 0;
1567}
1568
Adrian Bunkb4be6252007-12-18 18:05:58 +01001569static int __cpuinit init_timers_cpu(int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001570{
1571 int j;
Pavel Macheka6fa8e52008-01-30 13:30:00 +01001572 struct tvec_base *base;
Adrian Bunkb4be6252007-12-18 18:05:58 +01001573 static char __cpuinitdata tvec_base_done[NR_CPUS];
Oleg Nesterov55c888d2005-06-23 00:08:56 -07001574
Andrew Mortonba6edfc2006-04-10 22:53:58 -07001575 if (!tvec_base_done[cpu]) {
Jan Beulicha4a61982006-03-24 03:15:54 -08001576 static char boot_done;
1577
Jan Beulicha4a61982006-03-24 03:15:54 -08001578 if (boot_done) {
Andrew Mortonba6edfc2006-04-10 22:53:58 -07001579 /*
1580 * The APs use this path later in boot
1581 */
Christoph Lameter94f60302007-07-17 04:03:29 -07001582 base = kmalloc_node(sizeof(*base),
1583 GFP_KERNEL | __GFP_ZERO,
Jan Beulicha4a61982006-03-24 03:15:54 -08001584 cpu_to_node(cpu));
1585 if (!base)
1586 return -ENOMEM;
Venki Pallipadi6e453a62007-05-08 00:27:44 -07001587
1588 /* Make sure that tvec_base is 2 byte aligned */
1589 if (tbase_get_deferrable(base)) {
1590 WARN_ON(1);
1591 kfree(base);
1592 return -ENOMEM;
1593 }
Andrew Mortonba6edfc2006-04-10 22:53:58 -07001594 per_cpu(tvec_bases, cpu) = base;
Jan Beulicha4a61982006-03-24 03:15:54 -08001595 } else {
Andrew Mortonba6edfc2006-04-10 22:53:58 -07001596 /*
1597 * This is for the boot CPU - we use compile-time
1598 * static initialisation because per-cpu memory isn't
1599 * ready yet and because the memory allocators are not
1600 * initialised either.
1601 */
Jan Beulicha4a61982006-03-24 03:15:54 -08001602 boot_done = 1;
Andrew Mortonba6edfc2006-04-10 22:53:58 -07001603 base = &boot_tvec_bases;
Jan Beulicha4a61982006-03-24 03:15:54 -08001604 }
Andrew Mortonba6edfc2006-04-10 22:53:58 -07001605 tvec_base_done[cpu] = 1;
1606 } else {
1607 base = per_cpu(tvec_bases, cpu);
Jan Beulicha4a61982006-03-24 03:15:54 -08001608 }
Andrew Mortonba6edfc2006-04-10 22:53:58 -07001609
Oleg Nesterov3691c512006-03-31 02:30:30 -08001610 spin_lock_init(&base->lock);
Ingo Molnard730e882006-07-03 00:25:10 -07001611
Linus Torvalds1da177e2005-04-16 15:20:36 -07001612 for (j = 0; j < TVN_SIZE; j++) {
1613 INIT_LIST_HEAD(base->tv5.vec + j);
1614 INIT_LIST_HEAD(base->tv4.vec + j);
1615 INIT_LIST_HEAD(base->tv3.vec + j);
1616 INIT_LIST_HEAD(base->tv2.vec + j);
1617 }
1618 for (j = 0; j < TVR_SIZE; j++)
1619 INIT_LIST_HEAD(base->tv1.vec + j);
1620
1621 base->timer_jiffies = jiffies;
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +02001622 base->next_timer = base->timer_jiffies;
Jan Beulicha4a61982006-03-24 03:15:54 -08001623 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001624}
1625
1626#ifdef CONFIG_HOTPLUG_CPU
Pavel Macheka6fa8e52008-01-30 13:30:00 +01001627static void migrate_timer_list(struct tvec_base *new_base, struct list_head *head)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001628{
1629 struct timer_list *timer;
1630
1631 while (!list_empty(head)) {
Pavel Emelianovb5e61812007-05-08 00:30:19 -07001632 timer = list_first_entry(head, struct timer_list, entry);
Oleg Nesterov55c888d2005-06-23 00:08:56 -07001633 detach_timer(timer, 0);
Venki Pallipadi6e453a62007-05-08 00:27:44 -07001634 timer_set_base(timer, new_base);
Martin Schwidefsky97fd9ed2009-07-21 20:25:05 +02001635 if (time_before(timer->expires, new_base->next_timer) &&
1636 !tbase_get_deferrable(timer->base))
1637 new_base->next_timer = timer->expires;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001638 internal_add_timer(new_base, timer);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001639 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001640}
1641
Randy Dunlap48ccf3d2008-01-21 17:18:25 -08001642static void __cpuinit migrate_timers(int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001643{
Pavel Macheka6fa8e52008-01-30 13:30:00 +01001644 struct tvec_base *old_base;
1645 struct tvec_base *new_base;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001646 int i;
1647
1648 BUG_ON(cpu_online(cpu));
Jan Beulicha4a61982006-03-24 03:15:54 -08001649 old_base = per_cpu(tvec_bases, cpu);
1650 new_base = get_cpu_var(tvec_bases);
Oleg Nesterovd82f0b02008-08-20 16:46:04 -07001651 /*
1652 * The caller is globally serialized and nobody else
1653 * takes two locks at once, deadlock is not possible.
1654 */
1655 spin_lock_irq(&new_base->lock);
Oleg Nesterov0d180402008-04-04 20:54:10 +02001656 spin_lock_nested(&old_base->lock, SINGLE_DEPTH_NESTING);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001657
Oleg Nesterov3691c512006-03-31 02:30:30 -08001658 BUG_ON(old_base->running_timer);
1659
Linus Torvalds1da177e2005-04-16 15:20:36 -07001660 for (i = 0; i < TVR_SIZE; i++)
Oleg Nesterov55c888d2005-06-23 00:08:56 -07001661 migrate_timer_list(new_base, old_base->tv1.vec + i);
1662 for (i = 0; i < TVN_SIZE; i++) {
1663 migrate_timer_list(new_base, old_base->tv2.vec + i);
1664 migrate_timer_list(new_base, old_base->tv3.vec + i);
1665 migrate_timer_list(new_base, old_base->tv4.vec + i);
1666 migrate_timer_list(new_base, old_base->tv5.vec + i);
1667 }
1668
Oleg Nesterov0d180402008-04-04 20:54:10 +02001669 spin_unlock(&old_base->lock);
Oleg Nesterovd82f0b02008-08-20 16:46:04 -07001670 spin_unlock_irq(&new_base->lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001671 put_cpu_var(tvec_bases);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001672}
1673#endif /* CONFIG_HOTPLUG_CPU */
1674
Chandra Seetharaman8c78f302006-07-30 03:03:35 -07001675static int __cpuinit timer_cpu_notify(struct notifier_block *self,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001676 unsigned long action, void *hcpu)
1677{
1678 long cpu = (long)hcpu;
Akinobu Mita80b51842010-05-26 14:43:32 -07001679 int err;
1680
Linus Torvalds1da177e2005-04-16 15:20:36 -07001681 switch(action) {
1682 case CPU_UP_PREPARE:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001683 case CPU_UP_PREPARE_FROZEN:
Akinobu Mita80b51842010-05-26 14:43:32 -07001684 err = init_timers_cpu(cpu);
1685 if (err < 0)
1686 return notifier_from_errno(err);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001687 break;
1688#ifdef CONFIG_HOTPLUG_CPU
1689 case CPU_DEAD:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001690 case CPU_DEAD_FROZEN:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001691 migrate_timers(cpu);
1692 break;
1693#endif
1694 default:
1695 break;
1696 }
1697 return NOTIFY_OK;
1698}
1699
Chandra Seetharaman8c78f302006-07-30 03:03:35 -07001700static struct notifier_block __cpuinitdata timers_nb = {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001701 .notifier_call = timer_cpu_notify,
1702};
1703
1704
1705void __init init_timers(void)
1706{
Akinobu Mita07dccf32006-09-29 02:00:22 -07001707 int err = timer_cpu_notify(&timers_nb, (unsigned long)CPU_UP_PREPARE,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001708 (void *)(long)smp_processor_id());
Akinobu Mita07dccf32006-09-29 02:00:22 -07001709
Ingo Molnar82f67cd2007-02-16 01:28:13 -08001710 init_timer_stats();
1711
Akinobu Mita9e506f72010-06-04 14:15:04 -07001712 BUG_ON(err != NOTIFY_OK);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001713 register_cpu_notifier(&timers_nb);
Carlos R. Mafra962cf362008-05-15 11:15:37 -03001714 open_softirq(TIMER_SOFTIRQ, run_timer_softirq);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001715}
1716
Linus Torvalds1da177e2005-04-16 15:20:36 -07001717/**
1718 * msleep - sleep safely even with waitqueue interruptions
1719 * @msecs: Time in milliseconds to sleep for
1720 */
1721void msleep(unsigned int msecs)
1722{
1723 unsigned long timeout = msecs_to_jiffies(msecs) + 1;
1724
Nishanth Aravamudan75bcc8c2005-09-10 00:27:24 -07001725 while (timeout)
1726 timeout = schedule_timeout_uninterruptible(timeout);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001727}
1728
1729EXPORT_SYMBOL(msleep);
1730
1731/**
Domen Puncer96ec3ef2005-06-25 14:58:43 -07001732 * msleep_interruptible - sleep waiting for signals
Linus Torvalds1da177e2005-04-16 15:20:36 -07001733 * @msecs: Time in milliseconds to sleep for
1734 */
1735unsigned long msleep_interruptible(unsigned int msecs)
1736{
1737 unsigned long timeout = msecs_to_jiffies(msecs) + 1;
1738
Nishanth Aravamudan75bcc8c2005-09-10 00:27:24 -07001739 while (timeout && !signal_pending(current))
1740 timeout = schedule_timeout_interruptible(timeout);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001741 return jiffies_to_msecs(timeout);
1742}
1743
1744EXPORT_SYMBOL(msleep_interruptible);
Patrick Pannuto5e7f5a12010-08-02 15:01:04 -07001745
1746static int __sched do_usleep_range(unsigned long min, unsigned long max)
1747{
1748 ktime_t kmin;
1749 unsigned long delta;
1750
1751 kmin = ktime_set(0, min * NSEC_PER_USEC);
1752 delta = (max - min) * NSEC_PER_USEC;
1753 return schedule_hrtimeout_range(&kmin, delta, HRTIMER_MODE_REL);
1754}
1755
1756/**
1757 * usleep_range - Drop in replacement for udelay where wakeup is flexible
1758 * @min: Minimum time in usecs to sleep
1759 * @max: Maximum time in usecs to sleep
1760 */
1761void usleep_range(unsigned long min, unsigned long max)
1762{
1763 __set_current_state(TASK_UNINTERRUPTIBLE);
1764 do_usleep_range(min, max);
1765}
1766EXPORT_SYMBOL(usleep_range);