blob: 8d85f9ac42627335b1f776143b4d1e24481eefb0 [file] [log] [blame]
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001/*
2 * Real-Time Scheduling Class (mapped to the SCHED_FIFO and SCHED_RR
3 * policies)
4 */
5
Peter Zijlstra029632f2011-10-25 10:00:11 +02006#include "sched.h"
7
8#include <linux/slab.h>
9
Clark Williamsce0dbbb2013-02-07 09:47:04 -060010int sched_rr_timeslice = RR_TIMESLICE;
11
Peter Zijlstra029632f2011-10-25 10:00:11 +020012static int do_sched_rt_period_timer(struct rt_bandwidth *rt_b, int overrun);
13
14struct rt_bandwidth def_rt_bandwidth;
15
16static enum hrtimer_restart sched_rt_period_timer(struct hrtimer *timer)
17{
18 struct rt_bandwidth *rt_b =
19 container_of(timer, struct rt_bandwidth, rt_period_timer);
20 ktime_t now;
21 int overrun;
22 int idle = 0;
23
24 for (;;) {
25 now = hrtimer_cb_get_time(timer);
26 overrun = hrtimer_forward(timer, now, rt_b->rt_period);
27
28 if (!overrun)
29 break;
30
31 idle = do_sched_rt_period_timer(rt_b, overrun);
32 }
33
34 return idle ? HRTIMER_NORESTART : HRTIMER_RESTART;
35}
36
37void init_rt_bandwidth(struct rt_bandwidth *rt_b, u64 period, u64 runtime)
38{
39 rt_b->rt_period = ns_to_ktime(period);
40 rt_b->rt_runtime = runtime;
41
42 raw_spin_lock_init(&rt_b->rt_runtime_lock);
43
44 hrtimer_init(&rt_b->rt_period_timer,
45 CLOCK_MONOTONIC, HRTIMER_MODE_REL);
46 rt_b->rt_period_timer.function = sched_rt_period_timer;
47}
48
49static void start_rt_bandwidth(struct rt_bandwidth *rt_b)
50{
51 if (!rt_bandwidth_enabled() || rt_b->rt_runtime == RUNTIME_INF)
52 return;
53
54 if (hrtimer_active(&rt_b->rt_period_timer))
55 return;
56
57 raw_spin_lock(&rt_b->rt_runtime_lock);
58 start_bandwidth_timer(&rt_b->rt_period_timer, rt_b->rt_period);
59 raw_spin_unlock(&rt_b->rt_runtime_lock);
60}
61
62void init_rt_rq(struct rt_rq *rt_rq, struct rq *rq)
63{
64 struct rt_prio_array *array;
65 int i;
66
67 array = &rt_rq->active;
68 for (i = 0; i < MAX_RT_PRIO; i++) {
69 INIT_LIST_HEAD(array->queue + i);
70 __clear_bit(i, array->bitmap);
71 }
72 /* delimiter for bitsearch: */
73 __set_bit(MAX_RT_PRIO, array->bitmap);
74
75#if defined CONFIG_SMP
76 rt_rq->highest_prio.curr = MAX_RT_PRIO;
77 rt_rq->highest_prio.next = MAX_RT_PRIO;
78 rt_rq->rt_nr_migratory = 0;
79 rt_rq->overloaded = 0;
80 plist_head_init(&rt_rq->pushable_tasks);
81#endif
82
83 rt_rq->rt_time = 0;
84 rt_rq->rt_throttled = 0;
85 rt_rq->rt_runtime = 0;
86 raw_spin_lock_init(&rt_rq->rt_runtime_lock);
87}
88
Gregory Haskins398a1532009-01-14 09:10:04 -050089#ifdef CONFIG_RT_GROUP_SCHED
Peter Zijlstra029632f2011-10-25 10:00:11 +020090static void destroy_rt_bandwidth(struct rt_bandwidth *rt_b)
91{
92 hrtimer_cancel(&rt_b->rt_period_timer);
93}
Gregory Haskins398a1532009-01-14 09:10:04 -050094
Peter Zijlstraa1ba4d82009-04-01 18:40:15 +020095#define rt_entity_is_task(rt_se) (!(rt_se)->my_q)
96
Peter Zijlstra8f488942009-07-24 12:25:30 +020097static inline struct task_struct *rt_task_of(struct sched_rt_entity *rt_se)
98{
99#ifdef CONFIG_SCHED_DEBUG
100 WARN_ON_ONCE(!rt_entity_is_task(rt_se));
101#endif
102 return container_of(rt_se, struct task_struct, rt);
103}
104
Gregory Haskins398a1532009-01-14 09:10:04 -0500105static inline struct rq *rq_of_rt_rq(struct rt_rq *rt_rq)
106{
107 return rt_rq->rq;
108}
109
110static inline struct rt_rq *rt_rq_of_se(struct sched_rt_entity *rt_se)
111{
112 return rt_se->rt_rq;
113}
114
Peter Zijlstra029632f2011-10-25 10:00:11 +0200115void free_rt_sched_group(struct task_group *tg)
116{
117 int i;
118
119 if (tg->rt_se)
120 destroy_rt_bandwidth(&tg->rt_bandwidth);
121
122 for_each_possible_cpu(i) {
123 if (tg->rt_rq)
124 kfree(tg->rt_rq[i]);
125 if (tg->rt_se)
126 kfree(tg->rt_se[i]);
127 }
128
129 kfree(tg->rt_rq);
130 kfree(tg->rt_se);
131}
132
133void init_tg_rt_entry(struct task_group *tg, struct rt_rq *rt_rq,
134 struct sched_rt_entity *rt_se, int cpu,
135 struct sched_rt_entity *parent)
136{
137 struct rq *rq = cpu_rq(cpu);
138
139 rt_rq->highest_prio.curr = MAX_RT_PRIO;
140 rt_rq->rt_nr_boosted = 0;
141 rt_rq->rq = rq;
142 rt_rq->tg = tg;
143
144 tg->rt_rq[cpu] = rt_rq;
145 tg->rt_se[cpu] = rt_se;
146
147 if (!rt_se)
148 return;
149
150 if (!parent)
151 rt_se->rt_rq = &rq->rt;
152 else
153 rt_se->rt_rq = parent->my_q;
154
155 rt_se->my_q = rt_rq;
156 rt_se->parent = parent;
157 INIT_LIST_HEAD(&rt_se->run_list);
158}
159
160int alloc_rt_sched_group(struct task_group *tg, struct task_group *parent)
161{
162 struct rt_rq *rt_rq;
163 struct sched_rt_entity *rt_se;
164 int i;
165
166 tg->rt_rq = kzalloc(sizeof(rt_rq) * nr_cpu_ids, GFP_KERNEL);
167 if (!tg->rt_rq)
168 goto err;
169 tg->rt_se = kzalloc(sizeof(rt_se) * nr_cpu_ids, GFP_KERNEL);
170 if (!tg->rt_se)
171 goto err;
172
173 init_rt_bandwidth(&tg->rt_bandwidth,
174 ktime_to_ns(def_rt_bandwidth.rt_period), 0);
175
176 for_each_possible_cpu(i) {
177 rt_rq = kzalloc_node(sizeof(struct rt_rq),
178 GFP_KERNEL, cpu_to_node(i));
179 if (!rt_rq)
180 goto err;
181
182 rt_se = kzalloc_node(sizeof(struct sched_rt_entity),
183 GFP_KERNEL, cpu_to_node(i));
184 if (!rt_se)
185 goto err_free_rq;
186
187 init_rt_rq(rt_rq, cpu_rq(i));
188 rt_rq->rt_runtime = tg->rt_bandwidth.rt_runtime;
189 init_tg_rt_entry(tg, rt_rq, rt_se, i, parent->rt_se[i]);
190 }
191
192 return 1;
193
194err_free_rq:
195 kfree(rt_rq);
196err:
197 return 0;
198}
199
Gregory Haskins398a1532009-01-14 09:10:04 -0500200#else /* CONFIG_RT_GROUP_SCHED */
201
Peter Zijlstraa1ba4d82009-04-01 18:40:15 +0200202#define rt_entity_is_task(rt_se) (1)
203
Peter Zijlstra8f488942009-07-24 12:25:30 +0200204static inline struct task_struct *rt_task_of(struct sched_rt_entity *rt_se)
205{
206 return container_of(rt_se, struct task_struct, rt);
207}
208
Gregory Haskins398a1532009-01-14 09:10:04 -0500209static inline struct rq *rq_of_rt_rq(struct rt_rq *rt_rq)
210{
211 return container_of(rt_rq, struct rq, rt);
212}
213
214static inline struct rt_rq *rt_rq_of_se(struct sched_rt_entity *rt_se)
215{
216 struct task_struct *p = rt_task_of(rt_se);
217 struct rq *rq = task_rq(p);
218
219 return &rq->rt;
220}
221
Peter Zijlstra029632f2011-10-25 10:00:11 +0200222void free_rt_sched_group(struct task_group *tg) { }
223
224int alloc_rt_sched_group(struct task_group *tg, struct task_group *parent)
225{
226 return 1;
227}
Gregory Haskins398a1532009-01-14 09:10:04 -0500228#endif /* CONFIG_RT_GROUP_SCHED */
229
Steven Rostedt4fd29172008-01-25 21:08:06 +0100230#ifdef CONFIG_SMP
Ingo Molnar84de4272008-01-25 21:08:15 +0100231
Gregory Haskins637f5082008-01-25 21:08:18 +0100232static inline int rt_overloaded(struct rq *rq)
Steven Rostedt4fd29172008-01-25 21:08:06 +0100233{
Gregory Haskins637f5082008-01-25 21:08:18 +0100234 return atomic_read(&rq->rd->rto_count);
Steven Rostedt4fd29172008-01-25 21:08:06 +0100235}
Ingo Molnar84de4272008-01-25 21:08:15 +0100236
Steven Rostedt4fd29172008-01-25 21:08:06 +0100237static inline void rt_set_overload(struct rq *rq)
238{
Gregory Haskins1f11eb62008-06-04 15:04:05 -0400239 if (!rq->online)
240 return;
241
Rusty Russellc6c49272008-11-25 02:35:05 +1030242 cpumask_set_cpu(rq->cpu, rq->rd->rto_mask);
Steven Rostedt4fd29172008-01-25 21:08:06 +0100243 /*
244 * Make sure the mask is visible before we set
245 * the overload count. That is checked to determine
246 * if we should look at the mask. It would be a shame
247 * if we looked at the mask, but the mask was not
248 * updated yet.
249 */
250 wmb();
Gregory Haskins637f5082008-01-25 21:08:18 +0100251 atomic_inc(&rq->rd->rto_count);
Steven Rostedt4fd29172008-01-25 21:08:06 +0100252}
Ingo Molnar84de4272008-01-25 21:08:15 +0100253
Steven Rostedt4fd29172008-01-25 21:08:06 +0100254static inline void rt_clear_overload(struct rq *rq)
255{
Gregory Haskins1f11eb62008-06-04 15:04:05 -0400256 if (!rq->online)
257 return;
258
Steven Rostedt4fd29172008-01-25 21:08:06 +0100259 /* the order here really doesn't matter */
Gregory Haskins637f5082008-01-25 21:08:18 +0100260 atomic_dec(&rq->rd->rto_count);
Rusty Russellc6c49272008-11-25 02:35:05 +1030261 cpumask_clear_cpu(rq->cpu, rq->rd->rto_mask);
Steven Rostedt4fd29172008-01-25 21:08:06 +0100262}
Gregory Haskins73fe6aa2008-01-25 21:08:07 +0100263
Gregory Haskins398a1532009-01-14 09:10:04 -0500264static void update_rt_migration(struct rt_rq *rt_rq)
Gregory Haskins73fe6aa2008-01-25 21:08:07 +0100265{
Peter Zijlstraa1ba4d82009-04-01 18:40:15 +0200266 if (rt_rq->rt_nr_migratory && rt_rq->rt_nr_total > 1) {
Gregory Haskins398a1532009-01-14 09:10:04 -0500267 if (!rt_rq->overloaded) {
268 rt_set_overload(rq_of_rt_rq(rt_rq));
269 rt_rq->overloaded = 1;
Gregory Haskinscdc8eb92008-01-25 21:08:23 +0100270 }
Gregory Haskins398a1532009-01-14 09:10:04 -0500271 } else if (rt_rq->overloaded) {
272 rt_clear_overload(rq_of_rt_rq(rt_rq));
273 rt_rq->overloaded = 0;
Gregory Haskins637f5082008-01-25 21:08:18 +0100274 }
Gregory Haskins73fe6aa2008-01-25 21:08:07 +0100275}
Steven Rostedt4fd29172008-01-25 21:08:06 +0100276
Gregory Haskins398a1532009-01-14 09:10:04 -0500277static void inc_rt_migration(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
Peter Zijlstrafa85ae22008-01-25 21:08:29 +0100278{
Peter Zijlstra29baa742012-04-23 12:11:21 +0200279 struct task_struct *p;
280
Peter Zijlstraa1ba4d82009-04-01 18:40:15 +0200281 if (!rt_entity_is_task(rt_se))
282 return;
283
Peter Zijlstra29baa742012-04-23 12:11:21 +0200284 p = rt_task_of(rt_se);
Peter Zijlstraa1ba4d82009-04-01 18:40:15 +0200285 rt_rq = &rq_of_rt_rq(rt_rq)->rt;
286
287 rt_rq->rt_nr_total++;
Peter Zijlstra29baa742012-04-23 12:11:21 +0200288 if (p->nr_cpus_allowed > 1)
Gregory Haskins398a1532009-01-14 09:10:04 -0500289 rt_rq->rt_nr_migratory++;
290
291 update_rt_migration(rt_rq);
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100292}
293
Gregory Haskins398a1532009-01-14 09:10:04 -0500294static void dec_rt_migration(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
295{
Peter Zijlstra29baa742012-04-23 12:11:21 +0200296 struct task_struct *p;
297
Peter Zijlstraa1ba4d82009-04-01 18:40:15 +0200298 if (!rt_entity_is_task(rt_se))
299 return;
300
Peter Zijlstra29baa742012-04-23 12:11:21 +0200301 p = rt_task_of(rt_se);
Peter Zijlstraa1ba4d82009-04-01 18:40:15 +0200302 rt_rq = &rq_of_rt_rq(rt_rq)->rt;
303
304 rt_rq->rt_nr_total--;
Peter Zijlstra29baa742012-04-23 12:11:21 +0200305 if (p->nr_cpus_allowed > 1)
Gregory Haskins398a1532009-01-14 09:10:04 -0500306 rt_rq->rt_nr_migratory--;
307
308 update_rt_migration(rt_rq);
309}
310
Steven Rostedt5181f4a42011-06-16 21:55:23 -0400311static inline int has_pushable_tasks(struct rq *rq)
312{
313 return !plist_head_empty(&rq->rt.pushable_tasks);
314}
315
Gregory Haskins917b6272008-12-29 09:39:53 -0500316static void enqueue_pushable_task(struct rq *rq, struct task_struct *p)
317{
318 plist_del(&p->pushable_tasks, &rq->rt.pushable_tasks);
319 plist_node_init(&p->pushable_tasks, p->prio);
320 plist_add(&p->pushable_tasks, &rq->rt.pushable_tasks);
Steven Rostedt5181f4a42011-06-16 21:55:23 -0400321
322 /* Update the highest prio pushable task */
323 if (p->prio < rq->rt.highest_prio.next)
324 rq->rt.highest_prio.next = p->prio;
Gregory Haskins917b6272008-12-29 09:39:53 -0500325}
326
327static void dequeue_pushable_task(struct rq *rq, struct task_struct *p)
328{
329 plist_del(&p->pushable_tasks, &rq->rt.pushable_tasks);
Gregory Haskins917b6272008-12-29 09:39:53 -0500330
Steven Rostedt5181f4a42011-06-16 21:55:23 -0400331 /* Update the new highest prio pushable task */
332 if (has_pushable_tasks(rq)) {
333 p = plist_first_entry(&rq->rt.pushable_tasks,
334 struct task_struct, pushable_tasks);
335 rq->rt.highest_prio.next = p->prio;
336 } else
337 rq->rt.highest_prio.next = MAX_RT_PRIO;
Ingo Molnarbcf08df2008-04-19 12:11:10 +0200338}
339
Gregory Haskins917b6272008-12-29 09:39:53 -0500340#else
341
Peter Zijlstraceacc2c2009-01-16 14:46:40 +0100342static inline void enqueue_pushable_task(struct rq *rq, struct task_struct *p)
343{
344}
345
346static inline void dequeue_pushable_task(struct rq *rq, struct task_struct *p)
347{
348}
349
Gregory Haskinsb07430a2009-01-14 08:55:39 -0500350static inline
Peter Zijlstraceacc2c2009-01-16 14:46:40 +0100351void inc_rt_migration(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
352{
353}
354
Gregory Haskinsb07430a2009-01-14 08:55:39 -0500355static inline
Peter Zijlstraceacc2c2009-01-16 14:46:40 +0100356void dec_rt_migration(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
357{
358}
Gregory Haskins917b6272008-12-29 09:39:53 -0500359
Ingo Molnarbb44e5d2007-07-09 18:51:58 +0200360#endif /* CONFIG_SMP */
361
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100362static inline int on_rt_rq(struct sched_rt_entity *rt_se)
363{
364 return !list_empty(&rt_se->run_list);
365}
366
Peter Zijlstra052f1dc2008-02-13 15:45:40 +0100367#ifdef CONFIG_RT_GROUP_SCHED
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100368
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100369static inline u64 sched_rt_runtime(struct rt_rq *rt_rq)
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100370{
371 if (!rt_rq->tg)
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100372 return RUNTIME_INF;
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100373
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200374 return rt_rq->rt_runtime;
375}
376
377static inline u64 sched_rt_period(struct rt_rq *rt_rq)
378{
379 return ktime_to_ns(rt_rq->tg->rt_bandwidth.rt_period);
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100380}
381
Cheng Xuec514c42011-05-14 14:20:02 +0800382typedef struct task_group *rt_rq_iter_t;
383
Yong Zhang1c09ab02011-06-28 10:51:31 +0800384static inline struct task_group *next_task_group(struct task_group *tg)
385{
386 do {
387 tg = list_entry_rcu(tg->list.next,
388 typeof(struct task_group), list);
389 } while (&tg->list != &task_groups && task_group_is_autogroup(tg));
390
391 if (&tg->list == &task_groups)
392 tg = NULL;
393
394 return tg;
395}
396
397#define for_each_rt_rq(rt_rq, iter, rq) \
398 for (iter = container_of(&task_groups, typeof(*iter), list); \
399 (iter = next_task_group(iter)) && \
400 (rt_rq = iter->rt_rq[cpu_of(rq)]);)
Cheng Xuec514c42011-05-14 14:20:02 +0800401
Peter Zijlstra3d4b47b2010-11-15 15:47:01 -0800402static inline void list_add_leaf_rt_rq(struct rt_rq *rt_rq)
403{
404 list_add_rcu(&rt_rq->leaf_rt_rq_list,
405 &rq_of_rt_rq(rt_rq)->leaf_rt_rq_list);
406}
407
408static inline void list_del_leaf_rt_rq(struct rt_rq *rt_rq)
409{
410 list_del_rcu(&rt_rq->leaf_rt_rq_list);
411}
412
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100413#define for_each_leaf_rt_rq(rt_rq, rq) \
Bharata B Rao80f40ee2008-12-15 11:56:48 +0530414 list_for_each_entry_rcu(rt_rq, &rq->leaf_rt_rq_list, leaf_rt_rq_list)
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100415
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100416#define for_each_sched_rt_entity(rt_se) \
417 for (; rt_se; rt_se = rt_se->parent)
418
419static inline struct rt_rq *group_rt_rq(struct sched_rt_entity *rt_se)
420{
421 return rt_se->my_q;
422}
423
Thomas Gleixner37dad3f2010-01-20 20:59:01 +0000424static void enqueue_rt_entity(struct sched_rt_entity *rt_se, bool head);
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100425static void dequeue_rt_entity(struct sched_rt_entity *rt_se);
426
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100427static void sched_rt_rq_enqueue(struct rt_rq *rt_rq)
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100428{
Dario Faggiolif6121f42008-10-03 17:40:46 +0200429 struct task_struct *curr = rq_of_rt_rq(rt_rq)->curr;
Yong Zhang74b7eb52010-01-29 14:57:52 +0800430 struct sched_rt_entity *rt_se;
431
Balbir Singh0c3b9162011-03-03 17:04:35 +0530432 int cpu = cpu_of(rq_of_rt_rq(rt_rq));
433
434 rt_se = rt_rq->tg->rt_se[cpu];
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100435
Dario Faggiolif6121f42008-10-03 17:40:46 +0200436 if (rt_rq->rt_nr_running) {
437 if (rt_se && !on_rt_rq(rt_se))
Thomas Gleixner37dad3f2010-01-20 20:59:01 +0000438 enqueue_rt_entity(rt_se, false);
Gregory Haskinse864c492008-12-29 09:39:49 -0500439 if (rt_rq->highest_prio.curr < curr->prio)
Peter Zijlstra10203872008-01-25 21:08:32 +0100440 resched_task(curr);
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100441 }
442}
443
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100444static void sched_rt_rq_dequeue(struct rt_rq *rt_rq)
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100445{
Yong Zhang74b7eb52010-01-29 14:57:52 +0800446 struct sched_rt_entity *rt_se;
Balbir Singh0c3b9162011-03-03 17:04:35 +0530447 int cpu = cpu_of(rq_of_rt_rq(rt_rq));
Yong Zhang74b7eb52010-01-29 14:57:52 +0800448
Balbir Singh0c3b9162011-03-03 17:04:35 +0530449 rt_se = rt_rq->tg->rt_se[cpu];
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100450
451 if (rt_se && on_rt_rq(rt_se))
452 dequeue_rt_entity(rt_se);
453}
454
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +0100455static inline int rt_rq_throttled(struct rt_rq *rt_rq)
456{
457 return rt_rq->rt_throttled && !rt_rq->rt_nr_boosted;
458}
459
460static int rt_se_boosted(struct sched_rt_entity *rt_se)
461{
462 struct rt_rq *rt_rq = group_rt_rq(rt_se);
463 struct task_struct *p;
464
465 if (rt_rq)
466 return !!rt_rq->rt_nr_boosted;
467
468 p = rt_task_of(rt_se);
469 return p->prio != p->normal_prio;
470}
471
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200472#ifdef CONFIG_SMP
Rusty Russellc6c49272008-11-25 02:35:05 +1030473static inline const struct cpumask *sched_rt_period_mask(void)
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200474{
Nathan Zimmer424c93f2013-05-09 11:24:03 -0500475 return this_rq()->rd->span;
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200476}
477#else
Rusty Russellc6c49272008-11-25 02:35:05 +1030478static inline const struct cpumask *sched_rt_period_mask(void)
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200479{
Rusty Russellc6c49272008-11-25 02:35:05 +1030480 return cpu_online_mask;
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200481}
482#endif
483
484static inline
485struct rt_rq *sched_rt_period_rt_rq(struct rt_bandwidth *rt_b, int cpu)
486{
487 return container_of(rt_b, struct task_group, rt_bandwidth)->rt_rq[cpu];
488}
489
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200490static inline struct rt_bandwidth *sched_rt_bandwidth(struct rt_rq *rt_rq)
491{
492 return &rt_rq->tg->rt_bandwidth;
493}
494
Dhaval Giani55e12e52008-06-24 23:39:43 +0530495#else /* !CONFIG_RT_GROUP_SCHED */
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100496
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100497static inline u64 sched_rt_runtime(struct rt_rq *rt_rq)
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100498{
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200499 return rt_rq->rt_runtime;
500}
501
502static inline u64 sched_rt_period(struct rt_rq *rt_rq)
503{
504 return ktime_to_ns(def_rt_bandwidth.rt_period);
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100505}
506
Cheng Xuec514c42011-05-14 14:20:02 +0800507typedef struct rt_rq *rt_rq_iter_t;
508
509#define for_each_rt_rq(rt_rq, iter, rq) \
510 for ((void) iter, rt_rq = &rq->rt; rt_rq; rt_rq = NULL)
511
Peter Zijlstra3d4b47b2010-11-15 15:47:01 -0800512static inline void list_add_leaf_rt_rq(struct rt_rq *rt_rq)
513{
514}
515
516static inline void list_del_leaf_rt_rq(struct rt_rq *rt_rq)
517{
518}
519
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100520#define for_each_leaf_rt_rq(rt_rq, rq) \
521 for (rt_rq = &rq->rt; rt_rq; rt_rq = NULL)
522
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100523#define for_each_sched_rt_entity(rt_se) \
524 for (; rt_se; rt_se = NULL)
525
526static inline struct rt_rq *group_rt_rq(struct sched_rt_entity *rt_se)
527{
528 return NULL;
529}
530
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100531static inline void sched_rt_rq_enqueue(struct rt_rq *rt_rq)
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100532{
John Blackwoodf3ade832008-08-26 15:09:43 -0400533 if (rt_rq->rt_nr_running)
534 resched_task(rq_of_rt_rq(rt_rq)->curr);
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100535}
536
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100537static inline void sched_rt_rq_dequeue(struct rt_rq *rt_rq)
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100538{
539}
540
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +0100541static inline int rt_rq_throttled(struct rt_rq *rt_rq)
542{
543 return rt_rq->rt_throttled;
544}
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200545
Rusty Russellc6c49272008-11-25 02:35:05 +1030546static inline const struct cpumask *sched_rt_period_mask(void)
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200547{
Rusty Russellc6c49272008-11-25 02:35:05 +1030548 return cpu_online_mask;
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200549}
550
551static inline
552struct rt_rq *sched_rt_period_rt_rq(struct rt_bandwidth *rt_b, int cpu)
553{
554 return &cpu_rq(cpu)->rt;
555}
556
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200557static inline struct rt_bandwidth *sched_rt_bandwidth(struct rt_rq *rt_rq)
558{
559 return &def_rt_bandwidth;
560}
561
Dhaval Giani55e12e52008-06-24 23:39:43 +0530562#endif /* CONFIG_RT_GROUP_SCHED */
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100563
Peter Zijlstrab79f3832008-06-19 14:22:25 +0200564#ifdef CONFIG_SMP
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200565/*
566 * We ran out of runtime, see if we can borrow some from our neighbours.
567 */
Peter Zijlstrab79f3832008-06-19 14:22:25 +0200568static int do_balance_runtime(struct rt_rq *rt_rq)
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200569{
570 struct rt_bandwidth *rt_b = sched_rt_bandwidth(rt_rq);
Shawn Bohreraa7f6732013-01-14 11:55:31 -0600571 struct root_domain *rd = rq_of_rt_rq(rt_rq)->rd;
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200572 int i, weight, more = 0;
573 u64 rt_period;
574
Rusty Russellc6c49272008-11-25 02:35:05 +1030575 weight = cpumask_weight(rd->span);
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200576
Thomas Gleixner0986b112009-11-17 15:32:06 +0100577 raw_spin_lock(&rt_b->rt_runtime_lock);
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200578 rt_period = ktime_to_ns(rt_b->rt_period);
Rusty Russellc6c49272008-11-25 02:35:05 +1030579 for_each_cpu(i, rd->span) {
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200580 struct rt_rq *iter = sched_rt_period_rt_rq(rt_b, i);
581 s64 diff;
582
583 if (iter == rt_rq)
584 continue;
585
Thomas Gleixner0986b112009-11-17 15:32:06 +0100586 raw_spin_lock(&iter->rt_runtime_lock);
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200587 /*
588 * Either all rqs have inf runtime and there's nothing to steal
589 * or __disable_runtime() below sets a specific rq to inf to
590 * indicate its been disabled and disalow stealing.
591 */
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200592 if (iter->rt_runtime == RUNTIME_INF)
593 goto next;
594
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200595 /*
596 * From runqueues with spare time, take 1/n part of their
597 * spare time, but no more than our period.
598 */
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200599 diff = iter->rt_runtime - iter->rt_time;
600 if (diff > 0) {
Peter Zijlstra58838cf2008-07-24 12:43:13 +0200601 diff = div_u64((u64)diff, weight);
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200602 if (rt_rq->rt_runtime + diff > rt_period)
603 diff = rt_period - rt_rq->rt_runtime;
604 iter->rt_runtime -= diff;
605 rt_rq->rt_runtime += diff;
606 more = 1;
607 if (rt_rq->rt_runtime == rt_period) {
Thomas Gleixner0986b112009-11-17 15:32:06 +0100608 raw_spin_unlock(&iter->rt_runtime_lock);
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200609 break;
610 }
611 }
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200612next:
Thomas Gleixner0986b112009-11-17 15:32:06 +0100613 raw_spin_unlock(&iter->rt_runtime_lock);
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200614 }
Thomas Gleixner0986b112009-11-17 15:32:06 +0100615 raw_spin_unlock(&rt_b->rt_runtime_lock);
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200616
617 return more;
618}
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200619
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200620/*
621 * Ensure this RQ takes back all the runtime it lend to its neighbours.
622 */
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200623static void __disable_runtime(struct rq *rq)
624{
625 struct root_domain *rd = rq->rd;
Cheng Xuec514c42011-05-14 14:20:02 +0800626 rt_rq_iter_t iter;
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200627 struct rt_rq *rt_rq;
628
629 if (unlikely(!scheduler_running))
630 return;
631
Cheng Xuec514c42011-05-14 14:20:02 +0800632 for_each_rt_rq(rt_rq, iter, rq) {
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200633 struct rt_bandwidth *rt_b = sched_rt_bandwidth(rt_rq);
634 s64 want;
635 int i;
636
Thomas Gleixner0986b112009-11-17 15:32:06 +0100637 raw_spin_lock(&rt_b->rt_runtime_lock);
638 raw_spin_lock(&rt_rq->rt_runtime_lock);
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200639 /*
640 * Either we're all inf and nobody needs to borrow, or we're
641 * already disabled and thus have nothing to do, or we have
642 * exactly the right amount of runtime to take out.
643 */
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200644 if (rt_rq->rt_runtime == RUNTIME_INF ||
645 rt_rq->rt_runtime == rt_b->rt_runtime)
646 goto balanced;
Thomas Gleixner0986b112009-11-17 15:32:06 +0100647 raw_spin_unlock(&rt_rq->rt_runtime_lock);
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200648
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200649 /*
650 * Calculate the difference between what we started out with
651 * and what we current have, that's the amount of runtime
652 * we lend and now have to reclaim.
653 */
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200654 want = rt_b->rt_runtime - rt_rq->rt_runtime;
655
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200656 /*
657 * Greedy reclaim, take back as much as we can.
658 */
Rusty Russellc6c49272008-11-25 02:35:05 +1030659 for_each_cpu(i, rd->span) {
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200660 struct rt_rq *iter = sched_rt_period_rt_rq(rt_b, i);
661 s64 diff;
662
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200663 /*
664 * Can't reclaim from ourselves or disabled runqueues.
665 */
Peter Zijlstraf1679d02008-08-14 15:49:00 +0200666 if (iter == rt_rq || iter->rt_runtime == RUNTIME_INF)
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200667 continue;
668
Thomas Gleixner0986b112009-11-17 15:32:06 +0100669 raw_spin_lock(&iter->rt_runtime_lock);
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200670 if (want > 0) {
671 diff = min_t(s64, iter->rt_runtime, want);
672 iter->rt_runtime -= diff;
673 want -= diff;
674 } else {
675 iter->rt_runtime -= want;
676 want -= want;
677 }
Thomas Gleixner0986b112009-11-17 15:32:06 +0100678 raw_spin_unlock(&iter->rt_runtime_lock);
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200679
680 if (!want)
681 break;
682 }
683
Thomas Gleixner0986b112009-11-17 15:32:06 +0100684 raw_spin_lock(&rt_rq->rt_runtime_lock);
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200685 /*
686 * We cannot be left wanting - that would mean some runtime
687 * leaked out of the system.
688 */
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200689 BUG_ON(want);
690balanced:
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200691 /*
692 * Disable all the borrow logic by pretending we have inf
693 * runtime - in which case borrowing doesn't make sense.
694 */
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200695 rt_rq->rt_runtime = RUNTIME_INF;
Peter Boonstoppela4c96ae2012-08-09 15:34:47 -0700696 rt_rq->rt_throttled = 0;
Thomas Gleixner0986b112009-11-17 15:32:06 +0100697 raw_spin_unlock(&rt_rq->rt_runtime_lock);
698 raw_spin_unlock(&rt_b->rt_runtime_lock);
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200699 }
700}
701
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200702static void __enable_runtime(struct rq *rq)
703{
Cheng Xuec514c42011-05-14 14:20:02 +0800704 rt_rq_iter_t iter;
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200705 struct rt_rq *rt_rq;
706
707 if (unlikely(!scheduler_running))
708 return;
709
Peter Zijlstra78333cd2008-09-23 15:33:43 +0200710 /*
711 * Reset each runqueue's bandwidth settings
712 */
Cheng Xuec514c42011-05-14 14:20:02 +0800713 for_each_rt_rq(rt_rq, iter, rq) {
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200714 struct rt_bandwidth *rt_b = sched_rt_bandwidth(rt_rq);
715
Thomas Gleixner0986b112009-11-17 15:32:06 +0100716 raw_spin_lock(&rt_b->rt_runtime_lock);
717 raw_spin_lock(&rt_rq->rt_runtime_lock);
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200718 rt_rq->rt_runtime = rt_b->rt_runtime;
719 rt_rq->rt_time = 0;
Zhang, Yanminbaf25732008-09-09 11:26:33 +0800720 rt_rq->rt_throttled = 0;
Thomas Gleixner0986b112009-11-17 15:32:06 +0100721 raw_spin_unlock(&rt_rq->rt_runtime_lock);
722 raw_spin_unlock(&rt_b->rt_runtime_lock);
Peter Zijlstra7def2be2008-06-05 14:49:58 +0200723 }
724}
725
Peter Zijlstraeff65492008-06-19 14:22:26 +0200726static int balance_runtime(struct rt_rq *rt_rq)
727{
728 int more = 0;
729
Peter Zijlstra4a6184c2011-10-06 22:39:14 +0200730 if (!sched_feat(RT_RUNTIME_SHARE))
731 return more;
732
Peter Zijlstraeff65492008-06-19 14:22:26 +0200733 if (rt_rq->rt_time > rt_rq->rt_runtime) {
Thomas Gleixner0986b112009-11-17 15:32:06 +0100734 raw_spin_unlock(&rt_rq->rt_runtime_lock);
Peter Zijlstraeff65492008-06-19 14:22:26 +0200735 more = do_balance_runtime(rt_rq);
Thomas Gleixner0986b112009-11-17 15:32:06 +0100736 raw_spin_lock(&rt_rq->rt_runtime_lock);
Peter Zijlstraeff65492008-06-19 14:22:26 +0200737 }
738
739 return more;
740}
Dhaval Giani55e12e52008-06-24 23:39:43 +0530741#else /* !CONFIG_SMP */
Peter Zijlstraeff65492008-06-19 14:22:26 +0200742static inline int balance_runtime(struct rt_rq *rt_rq)
743{
744 return 0;
745}
Dhaval Giani55e12e52008-06-24 23:39:43 +0530746#endif /* CONFIG_SMP */
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100747
748static int do_sched_rt_period_timer(struct rt_bandwidth *rt_b, int overrun)
749{
Peter Zijlstra42c62a52011-10-18 22:03:48 +0200750 int i, idle = 1, throttled = 0;
Rusty Russellc6c49272008-11-25 02:35:05 +1030751 const struct cpumask *span;
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200752
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200753 span = sched_rt_period_mask();
Mike Galbraithe221d022012-08-07 10:02:38 +0200754#ifdef CONFIG_RT_GROUP_SCHED
755 /*
756 * FIXME: isolated CPUs should really leave the root task group,
757 * whether they are isolcpus or were isolated via cpusets, lest
758 * the timer run on a CPU which does not service all runqueues,
759 * potentially leaving other CPUs indefinitely throttled. If
760 * isolation is really required, the user will turn the throttle
761 * off to kill the perturbations it causes anyway. Meanwhile,
762 * this maintains functionality for boot and/or troubleshooting.
763 */
764 if (rt_b == &root_task_group.rt_bandwidth)
765 span = cpu_online_mask;
766#endif
Rusty Russellc6c49272008-11-25 02:35:05 +1030767 for_each_cpu(i, span) {
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200768 int enqueue = 0;
769 struct rt_rq *rt_rq = sched_rt_period_rt_rq(rt_b, i);
770 struct rq *rq = rq_of_rt_rq(rt_rq);
771
Thomas Gleixner05fa7852009-11-17 14:28:38 +0100772 raw_spin_lock(&rq->lock);
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200773 if (rt_rq->rt_time) {
774 u64 runtime;
775
Thomas Gleixner0986b112009-11-17 15:32:06 +0100776 raw_spin_lock(&rt_rq->rt_runtime_lock);
Peter Zijlstraeff65492008-06-19 14:22:26 +0200777 if (rt_rq->rt_throttled)
778 balance_runtime(rt_rq);
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200779 runtime = rt_rq->rt_runtime;
780 rt_rq->rt_time -= min(rt_rq->rt_time, overrun*runtime);
781 if (rt_rq->rt_throttled && rt_rq->rt_time < runtime) {
782 rt_rq->rt_throttled = 0;
783 enqueue = 1;
Mike Galbraith61eadef2011-04-29 08:36:50 +0200784
785 /*
786 * Force a clock update if the CPU was idle,
787 * lest wakeup -> unthrottle time accumulate.
788 */
789 if (rt_rq->rt_nr_running && rq->curr == rq->idle)
790 rq->skip_clock_update = -1;
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200791 }
792 if (rt_rq->rt_time || rt_rq->rt_nr_running)
793 idle = 0;
Thomas Gleixner0986b112009-11-17 15:32:06 +0100794 raw_spin_unlock(&rt_rq->rt_runtime_lock);
Balbir Singh0c3b9162011-03-03 17:04:35 +0530795 } else if (rt_rq->rt_nr_running) {
Peter Zijlstra8a8cde12008-06-19 14:22:28 +0200796 idle = 0;
Balbir Singh0c3b9162011-03-03 17:04:35 +0530797 if (!rt_rq_throttled(rt_rq))
798 enqueue = 1;
799 }
Peter Zijlstra42c62a52011-10-18 22:03:48 +0200800 if (rt_rq->rt_throttled)
801 throttled = 1;
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200802
803 if (enqueue)
804 sched_rt_rq_enqueue(rt_rq);
Thomas Gleixner05fa7852009-11-17 14:28:38 +0100805 raw_spin_unlock(&rq->lock);
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200806 }
807
Peter Zijlstra42c62a52011-10-18 22:03:48 +0200808 if (!throttled && (!rt_bandwidth_enabled() || rt_b->rt_runtime == RUNTIME_INF))
809 return 1;
810
Peter Zijlstrad0b27fa2008-04-19 19:44:57 +0200811 return idle;
812}
813
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100814static inline int rt_se_prio(struct sched_rt_entity *rt_se)
815{
Peter Zijlstra052f1dc2008-02-13 15:45:40 +0100816#ifdef CONFIG_RT_GROUP_SCHED
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100817 struct rt_rq *rt_rq = group_rt_rq(rt_se);
818
819 if (rt_rq)
Gregory Haskinse864c492008-12-29 09:39:49 -0500820 return rt_rq->highest_prio.curr;
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100821#endif
822
823 return rt_task_of(rt_se)->prio;
824}
825
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100826static int sched_rt_runtime_exceeded(struct rt_rq *rt_rq)
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100827{
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100828 u64 runtime = sched_rt_runtime(rt_rq);
Peter Zijlstrafa85ae22008-01-25 21:08:29 +0100829
Peter Zijlstrafa85ae22008-01-25 21:08:29 +0100830 if (rt_rq->rt_throttled)
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +0100831 return rt_rq_throttled(rt_rq);
Peter Zijlstrafa85ae22008-01-25 21:08:29 +0100832
Shan Hai5b680fd2011-11-29 11:03:56 +0800833 if (runtime >= sched_rt_period(rt_rq))
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200834 return 0;
835
Peter Zijlstrab79f3832008-06-19 14:22:25 +0200836 balance_runtime(rt_rq);
837 runtime = sched_rt_runtime(rt_rq);
838 if (runtime == RUNTIME_INF)
839 return 0;
Peter Zijlstraac086bc2008-04-19 19:44:58 +0200840
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100841 if (rt_rq->rt_time > runtime) {
Peter Zijlstra7abc63b2011-10-18 22:03:48 +0200842 struct rt_bandwidth *rt_b = sched_rt_bandwidth(rt_rq);
843
844 /*
845 * Don't actually throttle groups that have no runtime assigned
846 * but accrue some time due to boosting.
847 */
848 if (likely(rt_b->rt_runtime)) {
Peter Zijlstra3ccf3e82012-02-27 10:47:00 +0100849 static bool once = false;
850
Peter Zijlstra7abc63b2011-10-18 22:03:48 +0200851 rt_rq->rt_throttled = 1;
Peter Zijlstra3ccf3e82012-02-27 10:47:00 +0100852
853 if (!once) {
854 once = true;
855 printk_sched("sched: RT throttling activated\n");
856 }
Peter Zijlstra7abc63b2011-10-18 22:03:48 +0200857 } else {
858 /*
859 * In case we did anyway, make it go away,
860 * replenishment is a joke, since it will replenish us
861 * with exactly 0 ns.
862 */
863 rt_rq->rt_time = 0;
864 }
865
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +0100866 if (rt_rq_throttled(rt_rq)) {
Peter Zijlstra9f0c1e52008-02-13 15:45:39 +0100867 sched_rt_rq_dequeue(rt_rq);
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +0100868 return 1;
869 }
Peter Zijlstrafa85ae22008-01-25 21:08:29 +0100870 }
871
872 return 0;
873}
874
Ingo Molnarbb44e5d2007-07-09 18:51:58 +0200875/*
876 * Update the current task's runtime statistics. Skip current tasks that
877 * are not in our scheduling class.
878 */
Alexey Dobriyana9957442007-10-15 17:00:13 +0200879static void update_curr_rt(struct rq *rq)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +0200880{
881 struct task_struct *curr = rq->curr;
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100882 struct sched_rt_entity *rt_se = &curr->rt;
883 struct rt_rq *rt_rq = rt_rq_of_se(rt_se);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +0200884 u64 delta_exec;
885
Peter Zijlstra06c3bc62011-02-02 13:19:48 +0100886 if (curr->sched_class != &rt_sched_class)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +0200887 return;
888
Frederic Weisbecker78becc22013-04-12 01:51:02 +0200889 delta_exec = rq_clock_task(rq) - curr->se.exec_start;
Kirill Tkhaifc79e242013-01-30 16:50:36 +0400890 if (unlikely((s64)delta_exec <= 0))
891 return;
Ingo Molnar6cfb0d52007-08-02 17:41:40 +0200892
Peter Zijlstra42c62a52011-10-18 22:03:48 +0200893 schedstat_set(curr->se.statistics.exec_max,
894 max(curr->se.statistics.exec_max, delta_exec));
Ingo Molnarbb44e5d2007-07-09 18:51:58 +0200895
896 curr->se.sum_exec_runtime += delta_exec;
Frank Mayharf06febc2008-09-12 09:54:39 -0700897 account_group_exec_runtime(curr, delta_exec);
898
Frederic Weisbecker78becc22013-04-12 01:51:02 +0200899 curr->se.exec_start = rq_clock_task(rq);
Srivatsa Vaddagirid842de82007-12-02 20:04:49 +0100900 cpuacct_charge(curr, delta_exec);
Peter Zijlstrafa85ae22008-01-25 21:08:29 +0100901
Peter Zijlstrae9e92502009-09-01 10:34:37 +0200902 sched_rt_avg_update(rq, delta_exec);
903
Peter Zijlstra0b148fa2008-08-19 12:33:04 +0200904 if (!rt_bandwidth_enabled())
905 return;
906
Dhaval Giani354d60c2008-04-19 19:44:59 +0200907 for_each_sched_rt_entity(rt_se) {
908 rt_rq = rt_rq_of_se(rt_se);
909
Peter Zijlstracc2991c2008-08-19 12:33:03 +0200910 if (sched_rt_runtime(rt_rq) != RUNTIME_INF) {
Thomas Gleixner0986b112009-11-17 15:32:06 +0100911 raw_spin_lock(&rt_rq->rt_runtime_lock);
Peter Zijlstracc2991c2008-08-19 12:33:03 +0200912 rt_rq->rt_time += delta_exec;
913 if (sched_rt_runtime_exceeded(rt_rq))
914 resched_task(curr);
Thomas Gleixner0986b112009-11-17 15:32:06 +0100915 raw_spin_unlock(&rt_rq->rt_runtime_lock);
Peter Zijlstracc2991c2008-08-19 12:33:03 +0200916 }
Dhaval Giani354d60c2008-04-19 19:44:59 +0200917 }
Ingo Molnarbb44e5d2007-07-09 18:51:58 +0200918}
919
Gregory Haskins398a1532009-01-14 09:10:04 -0500920#if defined CONFIG_SMP
Gregory Haskinse864c492008-12-29 09:39:49 -0500921
Gregory Haskins398a1532009-01-14 09:10:04 -0500922static void
923inc_rt_prio_smp(struct rt_rq *rt_rq, int prio, int prev_prio)
Steven Rostedt63489e42008-01-25 21:08:03 +0100924{
Gregory Haskins4d984272008-12-29 09:39:49 -0500925 struct rq *rq = rq_of_rt_rq(rt_rq);
Gregory Haskins4d984272008-12-29 09:39:49 -0500926
Steven Rostedt5181f4a42011-06-16 21:55:23 -0400927 if (rq->online && prio < prev_prio)
928 cpupri_set(&rq->rd->cpupri, rq->cpu, prio);
Steven Rostedt63489e42008-01-25 21:08:03 +0100929}
Peter Zijlstra6f505b12008-01-25 21:08:30 +0100930
Gregory Haskins398a1532009-01-14 09:10:04 -0500931static void
932dec_rt_prio_smp(struct rt_rq *rt_rq, int prio, int prev_prio)
Steven Rostedt63489e42008-01-25 21:08:03 +0100933{
Gregory Haskins4d984272008-12-29 09:39:49 -0500934 struct rq *rq = rq_of_rt_rq(rt_rq);
Gregory Haskins6e0534f2008-05-12 21:21:01 +0200935
Gregory Haskins398a1532009-01-14 09:10:04 -0500936 if (rq->online && rt_rq->highest_prio.curr != prev_prio)
937 cpupri_set(&rq->rd->cpupri, rq->cpu, rt_rq->highest_prio.curr);
938}
939
940#else /* CONFIG_SMP */
941
942static inline
943void inc_rt_prio_smp(struct rt_rq *rt_rq, int prio, int prev_prio) {}
944static inline
945void dec_rt_prio_smp(struct rt_rq *rt_rq, int prio, int prev_prio) {}
946
947#endif /* CONFIG_SMP */
948
Steven Rostedt63489e42008-01-25 21:08:03 +0100949#if defined CONFIG_SMP || defined CONFIG_RT_GROUP_SCHED
Gregory Haskins398a1532009-01-14 09:10:04 -0500950static void
951inc_rt_prio(struct rt_rq *rt_rq, int prio)
952{
953 int prev_prio = rt_rq->highest_prio.curr;
Steven Rostedt63489e42008-01-25 21:08:03 +0100954
Gregory Haskins398a1532009-01-14 09:10:04 -0500955 if (prio < prev_prio)
956 rt_rq->highest_prio.curr = prio;
957
958 inc_rt_prio_smp(rt_rq, prio, prev_prio);
959}
960
961static void
962dec_rt_prio(struct rt_rq *rt_rq, int prio)
963{
964 int prev_prio = rt_rq->highest_prio.curr;
965
966 if (rt_rq->rt_nr_running) {
967
968 WARN_ON(prio < prev_prio);
Gregory Haskinse864c492008-12-29 09:39:49 -0500969
970 /*
Gregory Haskins398a1532009-01-14 09:10:04 -0500971 * This may have been our highest task, and therefore
972 * we may have some recomputation to do
Gregory Haskinse864c492008-12-29 09:39:49 -0500973 */
Gregory Haskins398a1532009-01-14 09:10:04 -0500974 if (prio == prev_prio) {
Gregory Haskinse864c492008-12-29 09:39:49 -0500975 struct rt_prio_array *array = &rt_rq->active;
976
977 rt_rq->highest_prio.curr =
Steven Rostedt764a9d62008-01-25 21:08:04 +0100978 sched_find_first_bit(array->bitmap);
Gregory Haskinse864c492008-12-29 09:39:49 -0500979 }
980
Steven Rostedt764a9d62008-01-25 21:08:04 +0100981 } else
Gregory Haskinse864c492008-12-29 09:39:49 -0500982 rt_rq->highest_prio.curr = MAX_RT_PRIO;
Gregory Haskins73fe6aa2008-01-25 21:08:07 +0100983
Gregory Haskins398a1532009-01-14 09:10:04 -0500984 dec_rt_prio_smp(rt_rq, prio, prev_prio);
985}
Gregory Haskins1f11eb62008-06-04 15:04:05 -0400986
Gregory Haskins398a1532009-01-14 09:10:04 -0500987#else
988
989static inline void inc_rt_prio(struct rt_rq *rt_rq, int prio) {}
990static inline void dec_rt_prio(struct rt_rq *rt_rq, int prio) {}
991
992#endif /* CONFIG_SMP || CONFIG_RT_GROUP_SCHED */
993
Gregory Haskins73fe6aa2008-01-25 21:08:07 +0100994#ifdef CONFIG_RT_GROUP_SCHED
Gregory Haskins398a1532009-01-14 09:10:04 -0500995
996static void
997inc_rt_group(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
998{
Gregory Haskins73fe6aa2008-01-25 21:08:07 +0100999 if (rt_se_boosted(rt_se))
Steven Rostedt764a9d62008-01-25 21:08:04 +01001000 rt_rq->rt_nr_boosted++;
Peter Zijlstra052f1dc2008-02-13 15:45:40 +01001001
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +01001002 if (rt_rq->tg)
1003 start_rt_bandwidth(&rt_rq->tg->rt_bandwidth);
Gregory Haskins398a1532009-01-14 09:10:04 -05001004}
1005
1006static void
1007dec_rt_group(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
1008{
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +01001009 if (rt_se_boosted(rt_se))
1010 rt_rq->rt_nr_boosted--;
1011
1012 WARN_ON(!rt_rq->rt_nr_running && rt_rq->rt_nr_boosted);
Gregory Haskins398a1532009-01-14 09:10:04 -05001013}
1014
1015#else /* CONFIG_RT_GROUP_SCHED */
1016
1017static void
1018inc_rt_group(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
1019{
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001020 start_rt_bandwidth(&def_rt_bandwidth);
Gregory Haskins398a1532009-01-14 09:10:04 -05001021}
1022
1023static inline
1024void dec_rt_group(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq) {}
1025
1026#endif /* CONFIG_RT_GROUP_SCHED */
1027
1028static inline
1029void inc_rt_tasks(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
1030{
1031 int prio = rt_se_prio(rt_se);
1032
1033 WARN_ON(!rt_prio(prio));
1034 rt_rq->rt_nr_running++;
1035
1036 inc_rt_prio(rt_rq, prio);
1037 inc_rt_migration(rt_se, rt_rq);
1038 inc_rt_group(rt_se, rt_rq);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001039}
1040
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +01001041static inline
1042void dec_rt_tasks(struct sched_rt_entity *rt_se, struct rt_rq *rt_rq)
1043{
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001044 WARN_ON(!rt_prio(rt_se_prio(rt_se)));
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001045 WARN_ON(!rt_rq->rt_nr_running);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001046 rt_rq->rt_nr_running--;
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001047
Gregory Haskins398a1532009-01-14 09:10:04 -05001048 dec_rt_prio(rt_rq, rt_se_prio(rt_se));
1049 dec_rt_migration(rt_se, rt_rq);
1050 dec_rt_group(rt_se, rt_rq);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001051}
1052
Thomas Gleixner37dad3f2010-01-20 20:59:01 +00001053static void __enqueue_rt_entity(struct sched_rt_entity *rt_se, bool head)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001054{
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001055 struct rt_rq *rt_rq = rt_rq_of_se(rt_se);
1056 struct rt_prio_array *array = &rt_rq->active;
1057 struct rt_rq *group_rq = group_rt_rq(rt_se);
Dmitry Adamushko20b63312008-06-11 00:58:30 +02001058 struct list_head *queue = array->queue + rt_se_prio(rt_se);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001059
Peter Zijlstraad2a3f12008-06-19 09:06:57 +02001060 /*
1061 * Don't enqueue the group if its throttled, or when empty.
1062 * The latter is a consequence of the former when a child group
1063 * get throttled and the current group doesn't have any other
1064 * active members.
1065 */
1066 if (group_rq && (rt_rq_throttled(group_rq) || !group_rq->rt_nr_running))
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001067 return;
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001068
Peter Zijlstra3d4b47b2010-11-15 15:47:01 -08001069 if (!rt_rq->rt_nr_running)
1070 list_add_leaf_rt_rq(rt_rq);
1071
Thomas Gleixner37dad3f2010-01-20 20:59:01 +00001072 if (head)
1073 list_add(&rt_se->run_list, queue);
1074 else
1075 list_add_tail(&rt_se->run_list, queue);
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001076 __set_bit(rt_se_prio(rt_se), array->bitmap);
Peter Zijlstra78f2c7d2008-01-25 21:08:27 +01001077
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001078 inc_rt_tasks(rt_se, rt_rq);
1079}
1080
Peter Zijlstraad2a3f12008-06-19 09:06:57 +02001081static void __dequeue_rt_entity(struct sched_rt_entity *rt_se)
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001082{
1083 struct rt_rq *rt_rq = rt_rq_of_se(rt_se);
1084 struct rt_prio_array *array = &rt_rq->active;
1085
1086 list_del_init(&rt_se->run_list);
1087 if (list_empty(array->queue + rt_se_prio(rt_se)))
1088 __clear_bit(rt_se_prio(rt_se), array->bitmap);
1089
1090 dec_rt_tasks(rt_se, rt_rq);
Peter Zijlstra3d4b47b2010-11-15 15:47:01 -08001091 if (!rt_rq->rt_nr_running)
1092 list_del_leaf_rt_rq(rt_rq);
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001093}
1094
1095/*
1096 * Because the prio of an upper entry depends on the lower
1097 * entries, we must remove entries top - down.
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001098 */
Peter Zijlstraad2a3f12008-06-19 09:06:57 +02001099static void dequeue_rt_stack(struct sched_rt_entity *rt_se)
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001100{
Peter Zijlstraad2a3f12008-06-19 09:06:57 +02001101 struct sched_rt_entity *back = NULL;
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001102
Peter Zijlstra58d6c2d2008-04-19 19:45:00 +02001103 for_each_sched_rt_entity(rt_se) {
1104 rt_se->back = back;
1105 back = rt_se;
1106 }
1107
1108 for (rt_se = back; rt_se; rt_se = rt_se->back) {
1109 if (on_rt_rq(rt_se))
Peter Zijlstraad2a3f12008-06-19 09:06:57 +02001110 __dequeue_rt_entity(rt_se);
1111 }
1112}
1113
Thomas Gleixner37dad3f2010-01-20 20:59:01 +00001114static void enqueue_rt_entity(struct sched_rt_entity *rt_se, bool head)
Peter Zijlstraad2a3f12008-06-19 09:06:57 +02001115{
1116 dequeue_rt_stack(rt_se);
1117 for_each_sched_rt_entity(rt_se)
Thomas Gleixner37dad3f2010-01-20 20:59:01 +00001118 __enqueue_rt_entity(rt_se, head);
Peter Zijlstraad2a3f12008-06-19 09:06:57 +02001119}
1120
1121static void dequeue_rt_entity(struct sched_rt_entity *rt_se)
1122{
1123 dequeue_rt_stack(rt_se);
1124
1125 for_each_sched_rt_entity(rt_se) {
1126 struct rt_rq *rt_rq = group_rt_rq(rt_se);
1127
1128 if (rt_rq && rt_rq->rt_nr_running)
Thomas Gleixner37dad3f2010-01-20 20:59:01 +00001129 __enqueue_rt_entity(rt_se, false);
Peter Zijlstra58d6c2d2008-04-19 19:45:00 +02001130 }
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001131}
1132
1133/*
1134 * Adding/removing a task to/from a priority array:
1135 */
Thomas Gleixnerea87bb72010-01-20 20:58:57 +00001136static void
Peter Zijlstra371fd7e2010-03-24 16:38:48 +01001137enqueue_task_rt(struct rq *rq, struct task_struct *p, int flags)
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001138{
1139 struct sched_rt_entity *rt_se = &p->rt;
1140
Peter Zijlstra371fd7e2010-03-24 16:38:48 +01001141 if (flags & ENQUEUE_WAKEUP)
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001142 rt_se->timeout = 0;
1143
Peter Zijlstra371fd7e2010-03-24 16:38:48 +01001144 enqueue_rt_entity(rt_se, flags & ENQUEUE_HEAD);
Peter Zijlstrac09595f2008-06-27 13:41:14 +02001145
Peter Zijlstra29baa742012-04-23 12:11:21 +02001146 if (!task_current(rq, p) && p->nr_cpus_allowed > 1)
Gregory Haskins917b6272008-12-29 09:39:53 -05001147 enqueue_pushable_task(rq, p);
Paul Turner953bfcd2011-07-21 09:43:27 -07001148
1149 inc_nr_running(rq);
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001150}
1151
Peter Zijlstra371fd7e2010-03-24 16:38:48 +01001152static void dequeue_task_rt(struct rq *rq, struct task_struct *p, int flags)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001153{
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001154 struct sched_rt_entity *rt_se = &p->rt;
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001155
1156 update_curr_rt(rq);
Peter Zijlstraad2a3f12008-06-19 09:06:57 +02001157 dequeue_rt_entity(rt_se);
Peter Zijlstrac09595f2008-06-27 13:41:14 +02001158
Gregory Haskins917b6272008-12-29 09:39:53 -05001159 dequeue_pushable_task(rq, p);
Paul Turner953bfcd2011-07-21 09:43:27 -07001160
1161 dec_nr_running(rq);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001162}
1163
1164/*
Richard Weinberger60686312011-11-12 18:07:57 +01001165 * Put task to the head or the end of the run list without the overhead of
1166 * dequeue followed by enqueue.
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001167 */
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001168static void
1169requeue_rt_entity(struct rt_rq *rt_rq, struct sched_rt_entity *rt_se, int head)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001170{
Ingo Molnar1cdad712008-06-19 09:09:15 +02001171 if (on_rt_rq(rt_se)) {
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001172 struct rt_prio_array *array = &rt_rq->active;
1173 struct list_head *queue = array->queue + rt_se_prio(rt_se);
1174
1175 if (head)
1176 list_move(&rt_se->run_list, queue);
1177 else
1178 list_move_tail(&rt_se->run_list, queue);
Ingo Molnar1cdad712008-06-19 09:09:15 +02001179 }
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001180}
1181
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001182static void requeue_task_rt(struct rq *rq, struct task_struct *p, int head)
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001183{
1184 struct sched_rt_entity *rt_se = &p->rt;
1185 struct rt_rq *rt_rq;
1186
1187 for_each_sched_rt_entity(rt_se) {
1188 rt_rq = rt_rq_of_se(rt_se);
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001189 requeue_rt_entity(rt_rq, rt_se, head);
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001190 }
1191}
1192
1193static void yield_task_rt(struct rq *rq)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001194{
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001195 requeue_task_rt(rq, rq->curr, 0);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001196}
1197
Gregory Haskinse7693a32008-01-25 21:08:09 +01001198#ifdef CONFIG_SMP
Gregory Haskins318e0892008-01-25 21:08:10 +01001199static int find_lowest_rq(struct task_struct *task);
1200
Peter Zijlstra0017d732010-03-24 18:34:10 +01001201static int
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001202select_task_rq_rt(struct task_struct *p, int sd_flag, int flags)
Gregory Haskinse7693a32008-01-25 21:08:09 +01001203{
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001204 struct task_struct *curr;
1205 struct rq *rq;
1206 int cpu;
1207
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001208 cpu = task_cpu(p);
Steven Rostedtc37495f2011-06-16 21:55:22 -04001209
Peter Zijlstra29baa742012-04-23 12:11:21 +02001210 if (p->nr_cpus_allowed == 1)
Mike Galbraith76854c72011-11-22 15:18:24 +01001211 goto out;
1212
Steven Rostedtc37495f2011-06-16 21:55:22 -04001213 /* For anything but wake ups, just return the task_cpu */
1214 if (sd_flag != SD_BALANCE_WAKE && sd_flag != SD_BALANCE_FORK)
1215 goto out;
1216
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001217 rq = cpu_rq(cpu);
1218
1219 rcu_read_lock();
1220 curr = ACCESS_ONCE(rq->curr); /* unlocked access */
1221
Gregory Haskins318e0892008-01-25 21:08:10 +01001222 /*
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001223 * If the current task on @p's runqueue is an RT task, then
Steven Rostedte1f47d82008-01-25 21:08:12 +01001224 * try to see if we can wake this RT task up on another
1225 * runqueue. Otherwise simply start this RT task
1226 * on its current runqueue.
1227 *
Steven Rostedt43fa5462010-09-20 22:40:03 -04001228 * We want to avoid overloading runqueues. If the woken
1229 * task is a higher priority, then it will stay on this CPU
1230 * and the lower prio task should be moved to another CPU.
1231 * Even though this will probably make the lower prio task
1232 * lose its cache, we do not want to bounce a higher task
1233 * around just because it gave up its CPU, perhaps for a
1234 * lock?
1235 *
1236 * For equal prio tasks, we just let the scheduler sort it out.
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001237 *
Gregory Haskins318e0892008-01-25 21:08:10 +01001238 * Otherwise, just let it ride on the affined RQ and the
1239 * post-schedule router will push the preempted task away
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001240 *
1241 * This test is optimistic, if we get it wrong the load-balancer
1242 * will have to sort it out.
Gregory Haskins318e0892008-01-25 21:08:10 +01001243 */
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001244 if (curr && unlikely(rt_task(curr)) &&
Peter Zijlstra29baa742012-04-23 12:11:21 +02001245 (curr->nr_cpus_allowed < 2 ||
Shawn Bohrer3be209a2011-09-12 09:28:04 -05001246 curr->prio <= p->prio) &&
Peter Zijlstra29baa742012-04-23 12:11:21 +02001247 (p->nr_cpus_allowed > 1)) {
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001248 int target = find_lowest_rq(p);
1249
1250 if (target != -1)
1251 cpu = target;
1252 }
1253 rcu_read_unlock();
1254
Steven Rostedtc37495f2011-06-16 21:55:22 -04001255out:
Peter Zijlstra7608dec2011-04-05 17:23:46 +02001256 return cpu;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001257}
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001258
1259static void check_preempt_equal_prio(struct rq *rq, struct task_struct *p)
1260{
Peter Zijlstra29baa742012-04-23 12:11:21 +02001261 if (rq->curr->nr_cpus_allowed == 1)
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001262 return;
1263
Peter Zijlstra29baa742012-04-23 12:11:21 +02001264 if (p->nr_cpus_allowed != 1
Rusty Russell13b8bd02009-03-25 15:01:22 +10301265 && cpupri_find(&rq->rd->cpupri, p, NULL))
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001266 return;
1267
Rusty Russell13b8bd02009-03-25 15:01:22 +10301268 if (!cpupri_find(&rq->rd->cpupri, rq->curr, NULL))
1269 return;
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001270
1271 /*
1272 * There appears to be other cpus that can accept
1273 * current and none to run 'p', so lets reschedule
1274 * to try and push current away:
1275 */
1276 requeue_task_rt(rq, p, 1);
1277 resched_task(rq->curr);
1278}
1279
Gregory Haskinse7693a32008-01-25 21:08:09 +01001280#endif /* CONFIG_SMP */
1281
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001282/*
1283 * Preempt the current task with a newly woken task if needed:
1284 */
Peter Zijlstra7d478722009-09-14 19:55:44 +02001285static void check_preempt_curr_rt(struct rq *rq, struct task_struct *p, int flags)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001286{
Gregory Haskins45c01e82008-05-12 21:20:41 +02001287 if (p->prio < rq->curr->prio) {
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001288 resched_task(rq->curr);
Gregory Haskins45c01e82008-05-12 21:20:41 +02001289 return;
1290 }
1291
1292#ifdef CONFIG_SMP
1293 /*
1294 * If:
1295 *
1296 * - the newly woken task is of equal priority to the current task
1297 * - the newly woken task is non-migratable while current is migratable
1298 * - current will be preempted on the next reschedule
1299 *
1300 * we should check to see if current can readily move to a different
1301 * cpu. If so, we will reschedule to allow the push logic to try
1302 * to move current somewhere else, making room for our non-migratable
1303 * task.
1304 */
Hillf Danton8dd0de82011-06-14 18:36:24 -04001305 if (p->prio == rq->curr->prio && !test_tsk_need_resched(rq->curr))
Dmitry Adamushko7ebefa82008-07-01 23:32:15 +02001306 check_preempt_equal_prio(rq, p);
Gregory Haskins45c01e82008-05-12 21:20:41 +02001307#endif
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001308}
1309
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001310static struct sched_rt_entity *pick_next_rt_entity(struct rq *rq,
1311 struct rt_rq *rt_rq)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001312{
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001313 struct rt_prio_array *array = &rt_rq->active;
1314 struct sched_rt_entity *next = NULL;
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001315 struct list_head *queue;
1316 int idx;
1317
1318 idx = sched_find_first_bit(array->bitmap);
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001319 BUG_ON(idx >= MAX_RT_PRIO);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001320
1321 queue = array->queue + idx;
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001322 next = list_entry(queue->next, struct sched_rt_entity, run_list);
Dmitry Adamushko326587b2008-01-25 21:08:34 +01001323
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001324 return next;
1325}
1326
Gregory Haskins917b6272008-12-29 09:39:53 -05001327static struct task_struct *_pick_next_task_rt(struct rq *rq)
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001328{
1329 struct sched_rt_entity *rt_se;
1330 struct task_struct *p;
1331 struct rt_rq *rt_rq;
1332
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001333 rt_rq = &rq->rt;
1334
Steven Rostedt8e54a2c2010-12-06 11:28:30 -05001335 if (!rt_rq->rt_nr_running)
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001336 return NULL;
1337
Peter Zijlstra23b0fdf2008-02-13 15:45:39 +01001338 if (rt_rq_throttled(rt_rq))
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001339 return NULL;
1340
1341 do {
1342 rt_se = pick_next_rt_entity(rq, rt_rq);
Dmitry Adamushko326587b2008-01-25 21:08:34 +01001343 BUG_ON(!rt_se);
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001344 rt_rq = group_rt_rq(rt_se);
1345 } while (rt_rq);
1346
1347 p = rt_task_of(rt_se);
Frederic Weisbecker78becc22013-04-12 01:51:02 +02001348 p->se.exec_start = rq_clock_task(rq);
Gregory Haskins917b6272008-12-29 09:39:53 -05001349
1350 return p;
1351}
1352
1353static struct task_struct *pick_next_task_rt(struct rq *rq)
1354{
1355 struct task_struct *p = _pick_next_task_rt(rq);
1356
1357 /* The running task is never eligible for pushing */
1358 if (p)
1359 dequeue_pushable_task(rq, p);
1360
Ingo Molnarbcf08df2008-04-19 12:11:10 +02001361#ifdef CONFIG_SMP
Gregory Haskins3f029d32009-07-29 11:08:47 -04001362 /*
1363 * We detect this state here so that we can avoid taking the RQ
1364 * lock again later if there is no need to push
1365 */
1366 rq->post_schedule = has_pushable_tasks(rq);
Ingo Molnarbcf08df2008-04-19 12:11:10 +02001367#endif
Gregory Haskins3f029d32009-07-29 11:08:47 -04001368
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001369 return p;
1370}
1371
Ingo Molnar31ee5292007-08-09 11:16:49 +02001372static void put_prev_task_rt(struct rq *rq, struct task_struct *p)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001373{
Ingo Molnarf1e14ef2007-08-09 11:16:48 +02001374 update_curr_rt(rq);
Gregory Haskins917b6272008-12-29 09:39:53 -05001375
1376 /*
1377 * The previous task needs to be made eligible for pushing
1378 * if it is still active
1379 */
Peter Zijlstra29baa742012-04-23 12:11:21 +02001380 if (on_rt_rq(&p->rt) && p->nr_cpus_allowed > 1)
Gregory Haskins917b6272008-12-29 09:39:53 -05001381 enqueue_pushable_task(rq, p);
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001382}
1383
Peter Williams681f3e62007-10-24 18:23:51 +02001384#ifdef CONFIG_SMP
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001385
Steven Rostedte8fa1362008-01-25 21:08:05 +01001386/* Only try algorithms three times */
1387#define RT_MAX_TRIES 3
1388
Steven Rostedtf65eda42008-01-25 21:08:07 +01001389static int pick_rt_task(struct rq *rq, struct task_struct *p, int cpu)
1390{
1391 if (!task_running(rq, p) &&
Kirill Tkhai60334ca2013-01-31 18:56:17 +04001392 cpumask_test_cpu(cpu, tsk_cpus_allowed(p)))
Steven Rostedtf65eda42008-01-25 21:08:07 +01001393 return 1;
1394 return 0;
1395}
1396
Steven Rostedte8fa1362008-01-25 21:08:05 +01001397/* Return the second highest RT task, NULL otherwise */
Ingo Molnar79064fb2008-01-25 21:08:14 +01001398static struct task_struct *pick_next_highest_task_rt(struct rq *rq, int cpu)
Steven Rostedte8fa1362008-01-25 21:08:05 +01001399{
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001400 struct task_struct *next = NULL;
1401 struct sched_rt_entity *rt_se;
1402 struct rt_prio_array *array;
1403 struct rt_rq *rt_rq;
Steven Rostedte8fa1362008-01-25 21:08:05 +01001404 int idx;
1405
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001406 for_each_leaf_rt_rq(rt_rq, rq) {
1407 array = &rt_rq->active;
1408 idx = sched_find_first_bit(array->bitmap);
Peter Zijlstra49246272010-10-17 21:46:10 +02001409next_idx:
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001410 if (idx >= MAX_RT_PRIO)
1411 continue;
Michael J Wang1b028ab2012-03-19 22:26:19 +00001412 if (next && next->prio <= idx)
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001413 continue;
1414 list_for_each_entry(rt_se, array->queue + idx, run_list) {
Peter Zijlstra3d074672010-03-10 17:07:24 +01001415 struct task_struct *p;
1416
1417 if (!rt_entity_is_task(rt_se))
1418 continue;
1419
1420 p = rt_task_of(rt_se);
Peter Zijlstra6f505b12008-01-25 21:08:30 +01001421 if (pick_rt_task(rq, p, cpu)) {
1422 next = p;
1423 break;
1424 }
1425 }
1426 if (!next) {
1427 idx = find_next_bit(array->bitmap, MAX_RT_PRIO, idx+1);
1428 goto next_idx;
1429 }
Steven Rostedte8fa1362008-01-25 21:08:05 +01001430 }
1431
Steven Rostedte8fa1362008-01-25 21:08:05 +01001432 return next;
1433}
1434
Rusty Russell0e3900e2008-11-25 02:35:13 +10301435static DEFINE_PER_CPU(cpumask_var_t, local_cpu_mask);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001436
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001437static int find_lowest_rq(struct task_struct *task)
1438{
1439 struct sched_domain *sd;
Rusty Russell96f874e2008-11-25 02:35:14 +10301440 struct cpumask *lowest_mask = __get_cpu_var(local_cpu_mask);
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001441 int this_cpu = smp_processor_id();
1442 int cpu = task_cpu(task);
1443
Steven Rostedt0da938c2011-06-14 18:36:25 -04001444 /* Make sure the mask is initialized first */
1445 if (unlikely(!lowest_mask))
1446 return -1;
1447
Peter Zijlstra29baa742012-04-23 12:11:21 +02001448 if (task->nr_cpus_allowed == 1)
Gregory Haskins6e0534f2008-05-12 21:21:01 +02001449 return -1; /* No other targets possible */
1450
1451 if (!cpupri_find(&task_rq(task)->rd->cpupri, task, lowest_mask))
Gregory Haskins06f90db2008-01-25 21:08:13 +01001452 return -1; /* No targets found */
1453
1454 /*
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001455 * At this point we have built a mask of cpus representing the
1456 * lowest priority tasks in the system. Now we want to elect
1457 * the best one based on our affinity and topology.
1458 *
1459 * We prioritize the last cpu that the task executed on since
1460 * it is most likely cache-hot in that location.
1461 */
Rusty Russell96f874e2008-11-25 02:35:14 +10301462 if (cpumask_test_cpu(cpu, lowest_mask))
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001463 return cpu;
1464
1465 /*
1466 * Otherwise, we consult the sched_domains span maps to figure
1467 * out which cpu is logically closest to our hot cache data.
1468 */
Rusty Russelle2c88062009-11-03 14:53:15 +10301469 if (!cpumask_test_cpu(this_cpu, lowest_mask))
1470 this_cpu = -1; /* Skip this_cpu opt if not among lowest */
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001471
Xiaotian Fengcd4ae6a2011-04-22 18:53:54 +08001472 rcu_read_lock();
Rusty Russelle2c88062009-11-03 14:53:15 +10301473 for_each_domain(cpu, sd) {
1474 if (sd->flags & SD_WAKE_AFFINE) {
1475 int best_cpu;
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001476
Rusty Russelle2c88062009-11-03 14:53:15 +10301477 /*
1478 * "this_cpu" is cheaper to preempt than a
1479 * remote processor.
1480 */
1481 if (this_cpu != -1 &&
Xiaotian Fengcd4ae6a2011-04-22 18:53:54 +08001482 cpumask_test_cpu(this_cpu, sched_domain_span(sd))) {
1483 rcu_read_unlock();
Rusty Russelle2c88062009-11-03 14:53:15 +10301484 return this_cpu;
Xiaotian Fengcd4ae6a2011-04-22 18:53:54 +08001485 }
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001486
Rusty Russelle2c88062009-11-03 14:53:15 +10301487 best_cpu = cpumask_first_and(lowest_mask,
1488 sched_domain_span(sd));
Xiaotian Fengcd4ae6a2011-04-22 18:53:54 +08001489 if (best_cpu < nr_cpu_ids) {
1490 rcu_read_unlock();
Rusty Russelle2c88062009-11-03 14:53:15 +10301491 return best_cpu;
Xiaotian Fengcd4ae6a2011-04-22 18:53:54 +08001492 }
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001493 }
1494 }
Xiaotian Fengcd4ae6a2011-04-22 18:53:54 +08001495 rcu_read_unlock();
Gregory Haskins6e1254d2008-01-25 21:08:11 +01001496
1497 /*
1498 * And finally, if there were no matches within the domains
1499 * just give the caller *something* to work with from the compatible
1500 * locations.
1501 */
Rusty Russelle2c88062009-11-03 14:53:15 +10301502 if (this_cpu != -1)
1503 return this_cpu;
1504
1505 cpu = cpumask_any(lowest_mask);
1506 if (cpu < nr_cpu_ids)
1507 return cpu;
1508 return -1;
Gregory Haskins07b40322008-01-25 21:08:10 +01001509}
1510
Steven Rostedte8fa1362008-01-25 21:08:05 +01001511/* Will lock the rq it finds */
Ingo Molnar4df64c02008-01-25 21:08:15 +01001512static struct rq *find_lock_lowest_rq(struct task_struct *task, struct rq *rq)
Steven Rostedte8fa1362008-01-25 21:08:05 +01001513{
1514 struct rq *lowest_rq = NULL;
Steven Rostedte8fa1362008-01-25 21:08:05 +01001515 int tries;
Ingo Molnar4df64c02008-01-25 21:08:15 +01001516 int cpu;
Steven Rostedte8fa1362008-01-25 21:08:05 +01001517
1518 for (tries = 0; tries < RT_MAX_TRIES; tries++) {
Gregory Haskins07b40322008-01-25 21:08:10 +01001519 cpu = find_lowest_rq(task);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001520
Gregory Haskins2de0b462008-01-25 21:08:10 +01001521 if ((cpu == -1) || (cpu == rq->cpu))
Steven Rostedte8fa1362008-01-25 21:08:05 +01001522 break;
1523
Gregory Haskins07b40322008-01-25 21:08:10 +01001524 lowest_rq = cpu_rq(cpu);
1525
Steven Rostedte8fa1362008-01-25 21:08:05 +01001526 /* if the prio of this runqueue changed, try again */
Gregory Haskins07b40322008-01-25 21:08:10 +01001527 if (double_lock_balance(rq, lowest_rq)) {
Steven Rostedte8fa1362008-01-25 21:08:05 +01001528 /*
1529 * We had to unlock the run queue. In
1530 * the mean time, task could have
1531 * migrated already or had its affinity changed.
1532 * Also make sure that it wasn't scheduled on its rq.
1533 */
Gregory Haskins07b40322008-01-25 21:08:10 +01001534 if (unlikely(task_rq(task) != rq ||
Rusty Russell96f874e2008-11-25 02:35:14 +10301535 !cpumask_test_cpu(lowest_rq->cpu,
Peter Zijlstrafa17b502011-06-16 12:23:22 +02001536 tsk_cpus_allowed(task)) ||
Gregory Haskins07b40322008-01-25 21:08:10 +01001537 task_running(rq, task) ||
Peter Zijlstrafd2f4412011-04-05 17:23:44 +02001538 !task->on_rq)) {
Ingo Molnar4df64c02008-01-25 21:08:15 +01001539
Peter Zijlstra7f1b4392012-05-17 21:19:46 +02001540 double_unlock_balance(rq, lowest_rq);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001541 lowest_rq = NULL;
1542 break;
1543 }
1544 }
1545
1546 /* If this rq is still suitable use it. */
Gregory Haskinse864c492008-12-29 09:39:49 -05001547 if (lowest_rq->rt.highest_prio.curr > task->prio)
Steven Rostedte8fa1362008-01-25 21:08:05 +01001548 break;
1549
1550 /* try again */
Peter Zijlstra1b12bbc2008-08-11 09:30:22 +02001551 double_unlock_balance(rq, lowest_rq);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001552 lowest_rq = NULL;
1553 }
1554
1555 return lowest_rq;
1556}
1557
Gregory Haskins917b6272008-12-29 09:39:53 -05001558static struct task_struct *pick_next_pushable_task(struct rq *rq)
1559{
1560 struct task_struct *p;
1561
1562 if (!has_pushable_tasks(rq))
1563 return NULL;
1564
1565 p = plist_first_entry(&rq->rt.pushable_tasks,
1566 struct task_struct, pushable_tasks);
1567
1568 BUG_ON(rq->cpu != task_cpu(p));
1569 BUG_ON(task_current(rq, p));
Peter Zijlstra29baa742012-04-23 12:11:21 +02001570 BUG_ON(p->nr_cpus_allowed <= 1);
Gregory Haskins917b6272008-12-29 09:39:53 -05001571
Peter Zijlstrafd2f4412011-04-05 17:23:44 +02001572 BUG_ON(!p->on_rq);
Gregory Haskins917b6272008-12-29 09:39:53 -05001573 BUG_ON(!rt_task(p));
1574
1575 return p;
1576}
1577
Steven Rostedte8fa1362008-01-25 21:08:05 +01001578/*
1579 * If the current CPU has more than one RT task, see if the non
1580 * running task can migrate over to a CPU that is running a task
1581 * of lesser priority.
1582 */
Gregory Haskins697f0a42008-01-25 21:08:09 +01001583static int push_rt_task(struct rq *rq)
Steven Rostedte8fa1362008-01-25 21:08:05 +01001584{
1585 struct task_struct *next_task;
1586 struct rq *lowest_rq;
Hillf Danton311e8002011-06-16 21:55:20 -04001587 int ret = 0;
Steven Rostedte8fa1362008-01-25 21:08:05 +01001588
Gregory Haskinsa22d7fc2008-01-25 21:08:12 +01001589 if (!rq->rt.overloaded)
1590 return 0;
1591
Gregory Haskins917b6272008-12-29 09:39:53 -05001592 next_task = pick_next_pushable_task(rq);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001593 if (!next_task)
1594 return 0;
1595
Peter Zijlstra49246272010-10-17 21:46:10 +02001596retry:
Gregory Haskins697f0a42008-01-25 21:08:09 +01001597 if (unlikely(next_task == rq->curr)) {
Steven Rostedtf65eda42008-01-25 21:08:07 +01001598 WARN_ON(1);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001599 return 0;
Steven Rostedtf65eda42008-01-25 21:08:07 +01001600 }
Steven Rostedte8fa1362008-01-25 21:08:05 +01001601
1602 /*
1603 * It's possible that the next_task slipped in of
1604 * higher priority than current. If that's the case
1605 * just reschedule current.
1606 */
Gregory Haskins697f0a42008-01-25 21:08:09 +01001607 if (unlikely(next_task->prio < rq->curr->prio)) {
1608 resched_task(rq->curr);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001609 return 0;
1610 }
1611
Gregory Haskins697f0a42008-01-25 21:08:09 +01001612 /* We might release rq lock */
Steven Rostedte8fa1362008-01-25 21:08:05 +01001613 get_task_struct(next_task);
1614
1615 /* find_lock_lowest_rq locks the rq if found */
Gregory Haskins697f0a42008-01-25 21:08:09 +01001616 lowest_rq = find_lock_lowest_rq(next_task, rq);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001617 if (!lowest_rq) {
1618 struct task_struct *task;
1619 /*
Hillf Danton311e8002011-06-16 21:55:20 -04001620 * find_lock_lowest_rq releases rq->lock
Gregory Haskins15635132008-12-29 09:39:53 -05001621 * so it is possible that next_task has migrated.
1622 *
1623 * We need to make sure that the task is still on the same
1624 * run-queue and is also still the next task eligible for
1625 * pushing.
Steven Rostedte8fa1362008-01-25 21:08:05 +01001626 */
Gregory Haskins917b6272008-12-29 09:39:53 -05001627 task = pick_next_pushable_task(rq);
Gregory Haskins15635132008-12-29 09:39:53 -05001628 if (task_cpu(next_task) == rq->cpu && task == next_task) {
1629 /*
Hillf Danton311e8002011-06-16 21:55:20 -04001630 * The task hasn't migrated, and is still the next
1631 * eligible task, but we failed to find a run-queue
1632 * to push it to. Do not retry in this case, since
1633 * other cpus will pull from us when ready.
Gregory Haskins15635132008-12-29 09:39:53 -05001634 */
Gregory Haskins15635132008-12-29 09:39:53 -05001635 goto out;
Steven Rostedte8fa1362008-01-25 21:08:05 +01001636 }
Gregory Haskins917b6272008-12-29 09:39:53 -05001637
Gregory Haskins15635132008-12-29 09:39:53 -05001638 if (!task)
1639 /* No more tasks, just exit */
1640 goto out;
1641
Gregory Haskins917b6272008-12-29 09:39:53 -05001642 /*
Gregory Haskins15635132008-12-29 09:39:53 -05001643 * Something has shifted, try again.
Gregory Haskins917b6272008-12-29 09:39:53 -05001644 */
Gregory Haskins15635132008-12-29 09:39:53 -05001645 put_task_struct(next_task);
1646 next_task = task;
1647 goto retry;
Steven Rostedte8fa1362008-01-25 21:08:05 +01001648 }
1649
Gregory Haskins697f0a42008-01-25 21:08:09 +01001650 deactivate_task(rq, next_task, 0);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001651 set_task_cpu(next_task, lowest_rq->cpu);
1652 activate_task(lowest_rq, next_task, 0);
Hillf Danton311e8002011-06-16 21:55:20 -04001653 ret = 1;
Steven Rostedte8fa1362008-01-25 21:08:05 +01001654
1655 resched_task(lowest_rq->curr);
1656
Peter Zijlstra1b12bbc2008-08-11 09:30:22 +02001657 double_unlock_balance(rq, lowest_rq);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001658
Steven Rostedte8fa1362008-01-25 21:08:05 +01001659out:
1660 put_task_struct(next_task);
1661
Hillf Danton311e8002011-06-16 21:55:20 -04001662 return ret;
Steven Rostedte8fa1362008-01-25 21:08:05 +01001663}
1664
Steven Rostedte8fa1362008-01-25 21:08:05 +01001665static void push_rt_tasks(struct rq *rq)
1666{
1667 /* push_rt_task will return true if it moved an RT */
1668 while (push_rt_task(rq))
1669 ;
1670}
1671
Steven Rostedtf65eda42008-01-25 21:08:07 +01001672static int pull_rt_task(struct rq *this_rq)
1673{
Ingo Molnar80bf3172008-01-25 21:08:17 +01001674 int this_cpu = this_rq->cpu, ret = 0, cpu;
Gregory Haskinsa8728942008-12-29 09:39:49 -05001675 struct task_struct *p;
Steven Rostedtf65eda42008-01-25 21:08:07 +01001676 struct rq *src_rq;
Steven Rostedtf65eda42008-01-25 21:08:07 +01001677
Gregory Haskins637f5082008-01-25 21:08:18 +01001678 if (likely(!rt_overloaded(this_rq)))
Steven Rostedtf65eda42008-01-25 21:08:07 +01001679 return 0;
1680
Rusty Russellc6c49272008-11-25 02:35:05 +10301681 for_each_cpu(cpu, this_rq->rd->rto_mask) {
Steven Rostedtf65eda42008-01-25 21:08:07 +01001682 if (this_cpu == cpu)
1683 continue;
1684
1685 src_rq = cpu_rq(cpu);
Gregory Haskins74ab8e42008-12-29 09:39:50 -05001686
1687 /*
1688 * Don't bother taking the src_rq->lock if the next highest
1689 * task is known to be lower-priority than our current task.
1690 * This may look racy, but if this value is about to go
1691 * logically higher, the src_rq will push this task away.
1692 * And if its going logically lower, we do not care
1693 */
1694 if (src_rq->rt.highest_prio.next >=
1695 this_rq->rt.highest_prio.curr)
1696 continue;
1697
Steven Rostedtf65eda42008-01-25 21:08:07 +01001698 /*
1699 * We can potentially drop this_rq's lock in
1700 * double_lock_balance, and another CPU could
Gregory Haskinsa8728942008-12-29 09:39:49 -05001701 * alter this_rq
Steven Rostedtf65eda42008-01-25 21:08:07 +01001702 */
Gregory Haskinsa8728942008-12-29 09:39:49 -05001703 double_lock_balance(this_rq, src_rq);
Steven Rostedtf65eda42008-01-25 21:08:07 +01001704
1705 /*
1706 * Are there still pullable RT tasks?
1707 */
Mike Galbraith614ee1f2008-01-25 21:08:30 +01001708 if (src_rq->rt.rt_nr_running <= 1)
1709 goto skip;
Steven Rostedtf65eda42008-01-25 21:08:07 +01001710
Steven Rostedtf65eda42008-01-25 21:08:07 +01001711 p = pick_next_highest_task_rt(src_rq, this_cpu);
1712
1713 /*
1714 * Do we have an RT task that preempts
1715 * the to-be-scheduled task?
1716 */
Gregory Haskinsa8728942008-12-29 09:39:49 -05001717 if (p && (p->prio < this_rq->rt.highest_prio.curr)) {
Steven Rostedtf65eda42008-01-25 21:08:07 +01001718 WARN_ON(p == src_rq->curr);
Peter Zijlstrafd2f4412011-04-05 17:23:44 +02001719 WARN_ON(!p->on_rq);
Steven Rostedtf65eda42008-01-25 21:08:07 +01001720
1721 /*
1722 * There's a chance that p is higher in priority
1723 * than what's currently running on its cpu.
1724 * This is just that p is wakeing up and hasn't
1725 * had a chance to schedule. We only pull
1726 * p if it is lower in priority than the
Gregory Haskinsa8728942008-12-29 09:39:49 -05001727 * current task on the run queue
Steven Rostedtf65eda42008-01-25 21:08:07 +01001728 */
Gregory Haskinsa8728942008-12-29 09:39:49 -05001729 if (p->prio < src_rq->curr->prio)
Mike Galbraith614ee1f2008-01-25 21:08:30 +01001730 goto skip;
Steven Rostedtf65eda42008-01-25 21:08:07 +01001731
1732 ret = 1;
1733
1734 deactivate_task(src_rq, p, 0);
1735 set_task_cpu(p, this_cpu);
1736 activate_task(this_rq, p, 0);
1737 /*
1738 * We continue with the search, just in
1739 * case there's an even higher prio task
Lucas De Marchi25985ed2011-03-30 22:57:33 -03001740 * in another runqueue. (low likelihood
Steven Rostedtf65eda42008-01-25 21:08:07 +01001741 * but possible)
Steven Rostedtf65eda42008-01-25 21:08:07 +01001742 */
Steven Rostedtf65eda42008-01-25 21:08:07 +01001743 }
Peter Zijlstra49246272010-10-17 21:46:10 +02001744skip:
Peter Zijlstra1b12bbc2008-08-11 09:30:22 +02001745 double_unlock_balance(this_rq, src_rq);
Steven Rostedtf65eda42008-01-25 21:08:07 +01001746 }
1747
1748 return ret;
1749}
1750
Steven Rostedt9a897c52008-01-25 21:08:22 +01001751static void pre_schedule_rt(struct rq *rq, struct task_struct *prev)
Steven Rostedtf65eda42008-01-25 21:08:07 +01001752{
1753 /* Try to pull RT tasks here if we lower this rq's prio */
Yong Zhang33c3d6c2010-02-09 14:43:59 -05001754 if (rq->rt.highest_prio.curr > prev->prio)
Steven Rostedtf65eda42008-01-25 21:08:07 +01001755 pull_rt_task(rq);
1756}
1757
Steven Rostedt9a897c52008-01-25 21:08:22 +01001758static void post_schedule_rt(struct rq *rq)
Steven Rostedte8fa1362008-01-25 21:08:05 +01001759{
Gregory Haskins967fc042008-12-29 09:39:52 -05001760 push_rt_tasks(rq);
Steven Rostedte8fa1362008-01-25 21:08:05 +01001761}
1762
Gregory Haskins8ae121a2008-04-23 07:13:29 -04001763/*
1764 * If we are not running and we are not going to reschedule soon, we should
1765 * try to push tasks away now
1766 */
Peter Zijlstraefbbd052009-12-16 18:04:40 +01001767static void task_woken_rt(struct rq *rq, struct task_struct *p)
Steven Rostedt4642daf2008-01-25 21:08:07 +01001768{
Steven Rostedt9a897c52008-01-25 21:08:22 +01001769 if (!task_running(rq, p) &&
Gregory Haskins8ae121a2008-04-23 07:13:29 -04001770 !test_tsk_need_resched(rq->curr) &&
Gregory Haskins917b6272008-12-29 09:39:53 -05001771 has_pushable_tasks(rq) &&
Peter Zijlstra29baa742012-04-23 12:11:21 +02001772 p->nr_cpus_allowed > 1 &&
Steven Rostedt43fa5462010-09-20 22:40:03 -04001773 rt_task(rq->curr) &&
Peter Zijlstra29baa742012-04-23 12:11:21 +02001774 (rq->curr->nr_cpus_allowed < 2 ||
Shawn Bohrer3be209a2011-09-12 09:28:04 -05001775 rq->curr->prio <= p->prio))
Steven Rostedt4642daf2008-01-25 21:08:07 +01001776 push_rt_tasks(rq);
1777}
1778
Mike Traviscd8ba7c2008-03-26 14:23:49 -07001779static void set_cpus_allowed_rt(struct task_struct *p,
Rusty Russell96f874e2008-11-25 02:35:14 +10301780 const struct cpumask *new_mask)
Gregory Haskins73fe6aa2008-01-25 21:08:07 +01001781{
Kirill Tkhai8d3d5ad2012-04-11 09:06:04 +04001782 struct rq *rq;
1783 int weight;
Gregory Haskins73fe6aa2008-01-25 21:08:07 +01001784
1785 BUG_ON(!rt_task(p));
1786
Kirill Tkhai8d3d5ad2012-04-11 09:06:04 +04001787 if (!p->on_rq)
1788 return;
1789
1790 weight = cpumask_weight(new_mask);
1791
Gregory Haskins73fe6aa2008-01-25 21:08:07 +01001792 /*
Kirill Tkhai8d3d5ad2012-04-11 09:06:04 +04001793 * Only update if the process changes its state from whether it
1794 * can migrate or not.
Gregory Haskins73fe6aa2008-01-25 21:08:07 +01001795 */
Peter Zijlstra29baa742012-04-23 12:11:21 +02001796 if ((p->nr_cpus_allowed > 1) == (weight > 1))
Kirill Tkhai8d3d5ad2012-04-11 09:06:04 +04001797 return;
Gregory Haskins73fe6aa2008-01-25 21:08:07 +01001798
Kirill Tkhai8d3d5ad2012-04-11 09:06:04 +04001799 rq = task_rq(p);
Gregory Haskins917b6272008-12-29 09:39:53 -05001800
Kirill Tkhai8d3d5ad2012-04-11 09:06:04 +04001801 /*
1802 * The process used to be able to migrate OR it can now migrate
1803 */
1804 if (weight <= 1) {
1805 if (!task_current(rq, p))
1806 dequeue_pushable_task(rq, p);
1807 BUG_ON(!rq->rt.rt_nr_migratory);
1808 rq->rt.rt_nr_migratory--;
1809 } else {
1810 if (!task_current(rq, p))
1811 enqueue_pushable_task(rq, p);
1812 rq->rt.rt_nr_migratory++;
Gregory Haskins73fe6aa2008-01-25 21:08:07 +01001813 }
Kirill Tkhai8d3d5ad2012-04-11 09:06:04 +04001814
1815 update_rt_migration(&rq->rt);
Gregory Haskins73fe6aa2008-01-25 21:08:07 +01001816}
Ingo Molnardeeeccd2008-01-25 21:08:15 +01001817
Ingo Molnarbdd7c812008-01-25 21:08:18 +01001818/* Assumes rq->lock is held */
Gregory Haskins1f11eb62008-06-04 15:04:05 -04001819static void rq_online_rt(struct rq *rq)
Ingo Molnarbdd7c812008-01-25 21:08:18 +01001820{
1821 if (rq->rt.overloaded)
1822 rt_set_overload(rq);
Gregory Haskins6e0534f2008-05-12 21:21:01 +02001823
Peter Zijlstra7def2be2008-06-05 14:49:58 +02001824 __enable_runtime(rq);
1825
Gregory Haskinse864c492008-12-29 09:39:49 -05001826 cpupri_set(&rq->rd->cpupri, rq->cpu, rq->rt.highest_prio.curr);
Ingo Molnarbdd7c812008-01-25 21:08:18 +01001827}
1828
1829/* Assumes rq->lock is held */
Gregory Haskins1f11eb62008-06-04 15:04:05 -04001830static void rq_offline_rt(struct rq *rq)
Ingo Molnarbdd7c812008-01-25 21:08:18 +01001831{
1832 if (rq->rt.overloaded)
1833 rt_clear_overload(rq);
Gregory Haskins6e0534f2008-05-12 21:21:01 +02001834
Peter Zijlstra7def2be2008-06-05 14:49:58 +02001835 __disable_runtime(rq);
1836
Gregory Haskins6e0534f2008-05-12 21:21:01 +02001837 cpupri_set(&rq->rd->cpupri, rq->cpu, CPUPRI_INVALID);
Ingo Molnarbdd7c812008-01-25 21:08:18 +01001838}
Steven Rostedtcb469842008-01-25 21:08:22 +01001839
1840/*
1841 * When switch from the rt queue, we bring ourselves to a position
1842 * that we might want to pull RT tasks from other runqueues.
1843 */
Peter Zijlstrada7a7352011-01-17 17:03:27 +01001844static void switched_from_rt(struct rq *rq, struct task_struct *p)
Steven Rostedtcb469842008-01-25 21:08:22 +01001845{
1846 /*
1847 * If there are other RT tasks then we will reschedule
1848 * and the scheduling of the other RT tasks will handle
1849 * the balancing. But if we are the last RT task
1850 * we may need to handle the pulling of RT tasks
1851 * now.
1852 */
Kirill Tkhai1158ddb2012-11-23 00:02:15 +04001853 if (!p->on_rq || rq->rt.rt_nr_running)
1854 return;
1855
1856 if (pull_rt_task(rq))
1857 resched_task(rq->curr);
Steven Rostedtcb469842008-01-25 21:08:22 +01001858}
Rusty Russell3d8cbdf2008-11-25 09:58:41 +10301859
Peter Zijlstra029632f2011-10-25 10:00:11 +02001860void init_sched_rt_class(void)
Rusty Russell3d8cbdf2008-11-25 09:58:41 +10301861{
1862 unsigned int i;
1863
Peter Zijlstra029632f2011-10-25 10:00:11 +02001864 for_each_possible_cpu(i) {
Yinghai Lueaa958402009-06-06 14:51:36 -07001865 zalloc_cpumask_var_node(&per_cpu(local_cpu_mask, i),
Mike Travis6ca09df2008-12-31 18:08:45 -08001866 GFP_KERNEL, cpu_to_node(i));
Peter Zijlstra029632f2011-10-25 10:00:11 +02001867 }
Rusty Russell3d8cbdf2008-11-25 09:58:41 +10301868}
Steven Rostedte8fa1362008-01-25 21:08:05 +01001869#endif /* CONFIG_SMP */
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001870
Steven Rostedtcb469842008-01-25 21:08:22 +01001871/*
1872 * When switching a task to RT, we may overload the runqueue
1873 * with RT tasks. In this case we try to push them off to
1874 * other runqueues.
1875 */
Peter Zijlstrada7a7352011-01-17 17:03:27 +01001876static void switched_to_rt(struct rq *rq, struct task_struct *p)
Steven Rostedtcb469842008-01-25 21:08:22 +01001877{
1878 int check_resched = 1;
1879
1880 /*
1881 * If we are already running, then there's nothing
1882 * that needs to be done. But if we are not running
1883 * we may need to preempt the current running task.
1884 * If that current running task is also an RT task
1885 * then see if we can move to another run queue.
1886 */
Peter Zijlstrafd2f4412011-04-05 17:23:44 +02001887 if (p->on_rq && rq->curr != p) {
Steven Rostedtcb469842008-01-25 21:08:22 +01001888#ifdef CONFIG_SMP
1889 if (rq->rt.overloaded && push_rt_task(rq) &&
1890 /* Don't resched if we changed runqueues */
1891 rq != task_rq(p))
1892 check_resched = 0;
1893#endif /* CONFIG_SMP */
1894 if (check_resched && p->prio < rq->curr->prio)
1895 resched_task(rq->curr);
1896 }
1897}
1898
1899/*
1900 * Priority of the task has changed. This may cause
1901 * us to initiate a push or pull.
1902 */
Peter Zijlstrada7a7352011-01-17 17:03:27 +01001903static void
1904prio_changed_rt(struct rq *rq, struct task_struct *p, int oldprio)
Steven Rostedtcb469842008-01-25 21:08:22 +01001905{
Peter Zijlstrafd2f4412011-04-05 17:23:44 +02001906 if (!p->on_rq)
Peter Zijlstrada7a7352011-01-17 17:03:27 +01001907 return;
1908
1909 if (rq->curr == p) {
Steven Rostedtcb469842008-01-25 21:08:22 +01001910#ifdef CONFIG_SMP
1911 /*
1912 * If our priority decreases while running, we
1913 * may need to pull tasks to this runqueue.
1914 */
1915 if (oldprio < p->prio)
1916 pull_rt_task(rq);
1917 /*
1918 * If there's a higher priority task waiting to run
Steven Rostedt6fa46fa2008-03-05 10:00:12 -05001919 * then reschedule. Note, the above pull_rt_task
1920 * can release the rq lock and p could migrate.
1921 * Only reschedule if p is still on the same runqueue.
Steven Rostedtcb469842008-01-25 21:08:22 +01001922 */
Gregory Haskinse864c492008-12-29 09:39:49 -05001923 if (p->prio > rq->rt.highest_prio.curr && rq->curr == p)
Steven Rostedtcb469842008-01-25 21:08:22 +01001924 resched_task(p);
1925#else
1926 /* For UP simply resched on drop of prio */
1927 if (oldprio < p->prio)
1928 resched_task(p);
1929#endif /* CONFIG_SMP */
1930 } else {
1931 /*
1932 * This task is not running, but if it is
1933 * greater than the current running task
1934 * then reschedule.
1935 */
1936 if (p->prio < rq->curr->prio)
1937 resched_task(rq->curr);
1938 }
1939}
1940
Peter Zijlstra78f2c7d2008-01-25 21:08:27 +01001941static void watchdog(struct rq *rq, struct task_struct *p)
1942{
1943 unsigned long soft, hard;
1944
Jiri Slaby78d7d402010-03-05 13:42:54 -08001945 /* max may change after cur was read, this will be fixed next tick */
1946 soft = task_rlimit(p, RLIMIT_RTTIME);
1947 hard = task_rlimit_max(p, RLIMIT_RTTIME);
Peter Zijlstra78f2c7d2008-01-25 21:08:27 +01001948
1949 if (soft != RLIM_INFINITY) {
1950 unsigned long next;
1951
Ying Xue57d2aa02012-07-17 15:03:43 +08001952 if (p->rt.watchdog_stamp != jiffies) {
1953 p->rt.timeout++;
1954 p->rt.watchdog_stamp = jiffies;
1955 }
1956
Peter Zijlstra78f2c7d2008-01-25 21:08:27 +01001957 next = DIV_ROUND_UP(min(soft, hard), USEC_PER_SEC/HZ);
Peter Zijlstra5a52dd52008-01-25 21:08:32 +01001958 if (p->rt.timeout > next)
Frank Mayharf06febc2008-09-12 09:54:39 -07001959 p->cputime_expires.sched_exp = p->se.sum_exec_runtime;
Peter Zijlstra78f2c7d2008-01-25 21:08:27 +01001960 }
1961}
Steven Rostedtcb469842008-01-25 21:08:22 +01001962
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +01001963static void task_tick_rt(struct rq *rq, struct task_struct *p, int queued)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001964{
Colin Cross454c7992012-05-16 21:34:23 -07001965 struct sched_rt_entity *rt_se = &p->rt;
1966
Peter Zijlstra67e2be02007-12-20 15:01:17 +01001967 update_curr_rt(rq);
1968
Peter Zijlstra78f2c7d2008-01-25 21:08:27 +01001969 watchdog(rq, p);
1970
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001971 /*
1972 * RR tasks need a special form of timeslice management.
1973 * FIFO tasks have no timeslices.
1974 */
1975 if (p->policy != SCHED_RR)
1976 return;
1977
Peter Zijlstrafa717062008-01-25 21:08:27 +01001978 if (--p->rt.time_slice)
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001979 return;
1980
Clark Williamsce0dbbb2013-02-07 09:47:04 -06001981 p->rt.time_slice = sched_rr_timeslice;
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001982
Dmitry Adamushko98fbc792007-08-24 20:39:10 +02001983 /*
Colin Cross454c7992012-05-16 21:34:23 -07001984 * Requeue to the end of queue if we (and all of our ancestors) are the
1985 * only element on the queue
Dmitry Adamushko98fbc792007-08-24 20:39:10 +02001986 */
Colin Cross454c7992012-05-16 21:34:23 -07001987 for_each_sched_rt_entity(rt_se) {
1988 if (rt_se->run_list.prev != rt_se->run_list.next) {
1989 requeue_task_rt(rq, p, 0);
1990 set_tsk_need_resched(p);
1991 return;
1992 }
Dmitry Adamushko98fbc792007-08-24 20:39:10 +02001993 }
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02001994}
1995
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +02001996static void set_curr_task_rt(struct rq *rq)
1997{
1998 struct task_struct *p = rq->curr;
1999
Frederic Weisbecker78becc22013-04-12 01:51:02 +02002000 p->se.exec_start = rq_clock_task(rq);
Gregory Haskins917b6272008-12-29 09:39:53 -05002001
2002 /* The running task is never eligible for pushing */
2003 dequeue_pushable_task(rq, p);
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +02002004}
2005
H Hartley Sweeten6d686f42010-01-13 20:21:52 -07002006static unsigned int get_rr_interval_rt(struct rq *rq, struct task_struct *task)
Peter Williams0d721ce2009-09-21 01:31:53 +00002007{
2008 /*
2009 * Time slice is 0 for SCHED_FIFO tasks
2010 */
2011 if (task->policy == SCHED_RR)
Clark Williamsce0dbbb2013-02-07 09:47:04 -06002012 return sched_rr_timeslice;
Peter Williams0d721ce2009-09-21 01:31:53 +00002013 else
2014 return 0;
2015}
2016
Peter Zijlstra029632f2011-10-25 10:00:11 +02002017const struct sched_class rt_sched_class = {
Ingo Molnar5522d5d2007-10-15 17:00:12 +02002018 .next = &fair_sched_class,
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02002019 .enqueue_task = enqueue_task_rt,
2020 .dequeue_task = dequeue_task_rt,
2021 .yield_task = yield_task_rt,
2022
2023 .check_preempt_curr = check_preempt_curr_rt,
2024
2025 .pick_next_task = pick_next_task_rt,
2026 .put_prev_task = put_prev_task_rt,
2027
Peter Williams681f3e62007-10-24 18:23:51 +02002028#ifdef CONFIG_SMP
Li Zefan4ce72a22008-10-22 15:25:26 +08002029 .select_task_rq = select_task_rq_rt,
2030
Gregory Haskins73fe6aa2008-01-25 21:08:07 +01002031 .set_cpus_allowed = set_cpus_allowed_rt,
Gregory Haskins1f11eb62008-06-04 15:04:05 -04002032 .rq_online = rq_online_rt,
2033 .rq_offline = rq_offline_rt,
Steven Rostedt9a897c52008-01-25 21:08:22 +01002034 .pre_schedule = pre_schedule_rt,
2035 .post_schedule = post_schedule_rt,
Peter Zijlstraefbbd052009-12-16 18:04:40 +01002036 .task_woken = task_woken_rt,
Steven Rostedtcb469842008-01-25 21:08:22 +01002037 .switched_from = switched_from_rt,
Peter Williams681f3e62007-10-24 18:23:51 +02002038#endif
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02002039
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +02002040 .set_curr_task = set_curr_task_rt,
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02002041 .task_tick = task_tick_rt,
Steven Rostedtcb469842008-01-25 21:08:22 +01002042
Peter Williams0d721ce2009-09-21 01:31:53 +00002043 .get_rr_interval = get_rr_interval_rt,
2044
Steven Rostedtcb469842008-01-25 21:08:22 +01002045 .prio_changed = prio_changed_rt,
2046 .switched_to = switched_to_rt,
Ingo Molnarbb44e5d2007-07-09 18:51:58 +02002047};
Peter Zijlstraada18de2008-06-19 14:22:24 +02002048
2049#ifdef CONFIG_SCHED_DEBUG
2050extern void print_rt_rq(struct seq_file *m, int cpu, struct rt_rq *rt_rq);
2051
Peter Zijlstra029632f2011-10-25 10:00:11 +02002052void print_rt_stats(struct seq_file *m, int cpu)
Peter Zijlstraada18de2008-06-19 14:22:24 +02002053{
Cheng Xuec514c42011-05-14 14:20:02 +08002054 rt_rq_iter_t iter;
Peter Zijlstraada18de2008-06-19 14:22:24 +02002055 struct rt_rq *rt_rq;
2056
2057 rcu_read_lock();
Cheng Xuec514c42011-05-14 14:20:02 +08002058 for_each_rt_rq(rt_rq, iter, cpu_rq(cpu))
Peter Zijlstraada18de2008-06-19 14:22:24 +02002059 print_rt_rq(m, cpu, rt_rq);
2060 rcu_read_unlock();
2061}
Dhaval Giani55e12e52008-06-24 23:39:43 +05302062#endif /* CONFIG_SCHED_DEBUG */