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Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001/*
2 * Completely Fair Scheduling (CFS) Class (SCHED_NORMAL/SCHED_BATCH)
3 *
4 * Copyright (C) 2007 Red Hat, Inc., Ingo Molnar <mingo@redhat.com>
5 *
6 * Interactivity improvements by Mike Galbraith
7 * (C) 2007 Mike Galbraith <efault@gmx.de>
8 *
9 * Various enhancements by Dmitry Adamushko.
10 * (C) 2007 Dmitry Adamushko <dmitry.adamushko@gmail.com>
11 *
12 * Group scheduling enhancements by Srivatsa Vaddagiri
13 * Copyright IBM Corporation, 2007
14 * Author: Srivatsa Vaddagiri <vatsa@linux.vnet.ibm.com>
15 *
16 * Scaled math optimizations by Thomas Gleixner
17 * Copyright (C) 2007, Thomas Gleixner <tglx@linutronix.de>
Peter Zijlstra21805082007-08-25 18:41:53 +020018 *
19 * Adaptive scheduling granularity, math enhancements by Peter Zijlstra
20 * Copyright (C) 2007 Red Hat, Inc., Peter Zijlstra <pzijlstr@redhat.com>
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020021 */
22
Arjan van de Ven97455122008-01-25 21:08:34 +010023#include <linux/latencytop.h>
24
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020025/*
Peter Zijlstra21805082007-08-25 18:41:53 +020026 * Targeted preemption latency for CPU-bound tasks:
Zou Nan hai722aab02007-11-26 21:21:49 +010027 * (default: 20ms * (1 + ilog(ncpus)), units: nanoseconds)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020028 *
Peter Zijlstra21805082007-08-25 18:41:53 +020029 * NOTE: this latency value is not the same as the concept of
Ingo Molnard274a4c2007-10-15 17:00:14 +020030 * 'timeslice length' - timeslices in CFS are of variable length
31 * and have no persistent notion like in traditional, time-slice
32 * based scheduling concepts.
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020033 *
Ingo Molnard274a4c2007-10-15 17:00:14 +020034 * (to see the precise effective timeslice length of your workload,
35 * run vmstat and monitor the context-switches (cs) field)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020036 */
Ingo Molnar19978ca2007-11-09 22:39:38 +010037unsigned int sysctl_sched_latency = 20000000ULL;
Ingo Molnar2bd8e6d2007-10-15 17:00:02 +020038
39/*
Peter Zijlstrab2be5e92007-11-09 22:39:37 +010040 * Minimal preemption granularity for CPU-bound tasks:
Zou Nan hai722aab02007-11-26 21:21:49 +010041 * (default: 4 msec * (1 + ilog(ncpus)), units: nanoseconds)
Peter Zijlstrab2be5e92007-11-09 22:39:37 +010042 */
Zou Nan hai722aab02007-11-26 21:21:49 +010043unsigned int sysctl_sched_min_granularity = 4000000ULL;
Peter Zijlstrab2be5e92007-11-09 22:39:37 +010044
45/*
46 * is kept at sysctl_sched_latency / sysctl_sched_min_granularity
47 */
Zou Nan hai722aab02007-11-26 21:21:49 +010048static unsigned int sched_nr_latency = 5;
Peter Zijlstrab2be5e92007-11-09 22:39:37 +010049
50/*
Ingo Molnar2bd8e6d2007-10-15 17:00:02 +020051 * After fork, child runs first. (default) If set to 0 then
52 * parent will (try to) run first.
53 */
54const_debug unsigned int sysctl_sched_child_runs_first = 1;
Peter Zijlstra21805082007-08-25 18:41:53 +020055
56/*
Ingo Molnar1799e352007-09-19 23:34:46 +020057 * sys_sched_yield() compat mode
58 *
59 * This option switches the agressive yield implementation of the
60 * old scheduler back on.
61 */
62unsigned int __read_mostly sysctl_sched_compat_yield;
63
64/*
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020065 * SCHED_OTHER wake-up granularity.
Peter Zijlstra0bbd3332008-04-19 19:44:57 +020066 * (default: 10 msec * (1 + ilog(ncpus)), units: nanoseconds)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020067 *
68 * This option delays the preemption effects of decoupled workloads
69 * and reduces their over-scheduling. Synchronous workloads will still
70 * have immediate wakeup/sleep latencies.
71 */
Peter Zijlstra0bbd3332008-04-19 19:44:57 +020072unsigned int sysctl_sched_wakeup_granularity = 10000000UL;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020073
Ingo Molnarda84d962007-10-15 17:00:18 +020074const_debug unsigned int sysctl_sched_migration_cost = 500000UL;
75
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020076/**************************************************************
77 * CFS operations on generic schedulable entities:
78 */
79
Peter Zijlstrab7581492008-04-19 19:45:00 +020080static inline struct task_struct *task_of(struct sched_entity *se)
81{
82 return container_of(se, struct task_struct, se);
83}
84
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020085#ifdef CONFIG_FAIR_GROUP_SCHED
86
87/* cpu runqueue to which this cfs_rq is attached */
88static inline struct rq *rq_of(struct cfs_rq *cfs_rq)
89{
90 return cfs_rq->rq;
91}
92
Ingo Molnarbf0f6f22007-07-09 18:51:58 +020093/* An entity is a task if it doesn't "own" a runqueue */
94#define entity_is_task(se) (!se->my_q)
95
Peter Zijlstrab7581492008-04-19 19:45:00 +020096/* Walk up scheduling entities hierarchy */
97#define for_each_sched_entity(se) \
98 for (; se; se = se->parent)
99
100static inline struct cfs_rq *task_cfs_rq(struct task_struct *p)
101{
102 return p->se.cfs_rq;
103}
104
105/* runqueue on which this entity is (to be) queued */
106static inline struct cfs_rq *cfs_rq_of(struct sched_entity *se)
107{
108 return se->cfs_rq;
109}
110
111/* runqueue "owned" by this group */
112static inline struct cfs_rq *group_cfs_rq(struct sched_entity *grp)
113{
114 return grp->my_q;
115}
116
117/* Given a group's cfs_rq on one cpu, return its corresponding cfs_rq on
118 * another cpu ('this_cpu')
119 */
120static inline struct cfs_rq *cpu_cfs_rq(struct cfs_rq *cfs_rq, int this_cpu)
121{
122 return cfs_rq->tg->cfs_rq[this_cpu];
123}
124
125/* Iterate thr' all leaf cfs_rq's on a runqueue */
126#define for_each_leaf_cfs_rq(rq, cfs_rq) \
127 list_for_each_entry_rcu(cfs_rq, &rq->leaf_cfs_rq_list, leaf_cfs_rq_list)
128
129/* Do the two (enqueued) entities belong to the same group ? */
130static inline int
131is_same_group(struct sched_entity *se, struct sched_entity *pse)
132{
133 if (se->cfs_rq == pse->cfs_rq)
134 return 1;
135
136 return 0;
137}
138
139static inline struct sched_entity *parent_entity(struct sched_entity *se)
140{
141 return se->parent;
142}
143
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200144#else /* CONFIG_FAIR_GROUP_SCHED */
145
146static inline struct rq *rq_of(struct cfs_rq *cfs_rq)
147{
148 return container_of(cfs_rq, struct rq, cfs);
149}
150
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200151#define entity_is_task(se) 1
152
Peter Zijlstrab7581492008-04-19 19:45:00 +0200153#define for_each_sched_entity(se) \
154 for (; se; se = NULL)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200155
Peter Zijlstrab7581492008-04-19 19:45:00 +0200156static inline struct cfs_rq *task_cfs_rq(struct task_struct *p)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200157{
Peter Zijlstrab7581492008-04-19 19:45:00 +0200158 return &task_rq(p)->cfs;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200159}
160
Peter Zijlstrab7581492008-04-19 19:45:00 +0200161static inline struct cfs_rq *cfs_rq_of(struct sched_entity *se)
162{
163 struct task_struct *p = task_of(se);
164 struct rq *rq = task_rq(p);
165
166 return &rq->cfs;
167}
168
169/* runqueue "owned" by this group */
170static inline struct cfs_rq *group_cfs_rq(struct sched_entity *grp)
171{
172 return NULL;
173}
174
175static inline struct cfs_rq *cpu_cfs_rq(struct cfs_rq *cfs_rq, int this_cpu)
176{
177 return &cpu_rq(this_cpu)->cfs;
178}
179
180#define for_each_leaf_cfs_rq(rq, cfs_rq) \
181 for (cfs_rq = &rq->cfs; cfs_rq; cfs_rq = NULL)
182
183static inline int
184is_same_group(struct sched_entity *se, struct sched_entity *pse)
185{
186 return 1;
187}
188
189static inline struct sched_entity *parent_entity(struct sched_entity *se)
190{
191 return NULL;
192}
193
194#endif /* CONFIG_FAIR_GROUP_SCHED */
195
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200196
197/**************************************************************
198 * Scheduling class tree data structure manipulation methods:
199 */
200
Ingo Molnar0702e3e2007-10-15 17:00:14 +0200201static inline u64 max_vruntime(u64 min_vruntime, u64 vruntime)
Peter Zijlstra02e04312007-10-15 17:00:07 +0200202{
Peter Zijlstra368059a2007-10-15 17:00:11 +0200203 s64 delta = (s64)(vruntime - min_vruntime);
204 if (delta > 0)
Peter Zijlstra02e04312007-10-15 17:00:07 +0200205 min_vruntime = vruntime;
206
207 return min_vruntime;
208}
209
Ingo Molnar0702e3e2007-10-15 17:00:14 +0200210static inline u64 min_vruntime(u64 min_vruntime, u64 vruntime)
Peter Zijlstrab0ffd242007-10-15 17:00:12 +0200211{
212 s64 delta = (s64)(vruntime - min_vruntime);
213 if (delta < 0)
214 min_vruntime = vruntime;
215
216 return min_vruntime;
217}
218
Ingo Molnar0702e3e2007-10-15 17:00:14 +0200219static inline s64 entity_key(struct cfs_rq *cfs_rq, struct sched_entity *se)
Peter Zijlstra90146232007-10-15 17:00:05 +0200220{
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200221 return se->vruntime - cfs_rq->min_vruntime;
Peter Zijlstra90146232007-10-15 17:00:05 +0200222}
223
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200224/*
225 * Enqueue an entity into the rb-tree:
226 */
Ingo Molnar0702e3e2007-10-15 17:00:14 +0200227static void __enqueue_entity(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200228{
229 struct rb_node **link = &cfs_rq->tasks_timeline.rb_node;
230 struct rb_node *parent = NULL;
231 struct sched_entity *entry;
Peter Zijlstra90146232007-10-15 17:00:05 +0200232 s64 key = entity_key(cfs_rq, se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200233 int leftmost = 1;
234
235 /*
236 * Find the right place in the rbtree:
237 */
238 while (*link) {
239 parent = *link;
240 entry = rb_entry(parent, struct sched_entity, run_node);
241 /*
242 * We dont care about collisions. Nodes with
243 * the same key stay together.
244 */
Peter Zijlstra90146232007-10-15 17:00:05 +0200245 if (key < entity_key(cfs_rq, entry)) {
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200246 link = &parent->rb_left;
247 } else {
248 link = &parent->rb_right;
249 leftmost = 0;
250 }
251 }
252
253 /*
254 * Maintain a cache of leftmost tree entries (it is frequently
255 * used):
256 */
Peter Zijlstra3fe69742008-03-14 20:55:51 +0100257 if (leftmost) {
Ingo Molnar57cb4992007-10-15 17:00:11 +0200258 cfs_rq->rb_leftmost = &se->run_node;
Peter Zijlstra3fe69742008-03-14 20:55:51 +0100259 /*
260 * maintain cfs_rq->min_vruntime to be a monotonic increasing
261 * value tracking the leftmost vruntime in the tree.
262 */
263 cfs_rq->min_vruntime =
264 max_vruntime(cfs_rq->min_vruntime, se->vruntime);
265 }
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200266
267 rb_link_node(&se->run_node, parent, link);
268 rb_insert_color(&se->run_node, &cfs_rq->tasks_timeline);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200269}
270
Ingo Molnar0702e3e2007-10-15 17:00:14 +0200271static void __dequeue_entity(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200272{
Peter Zijlstra3fe69742008-03-14 20:55:51 +0100273 if (cfs_rq->rb_leftmost == &se->run_node) {
274 struct rb_node *next_node;
275 struct sched_entity *next;
276
277 next_node = rb_next(&se->run_node);
278 cfs_rq->rb_leftmost = next_node;
279
280 if (next_node) {
281 next = rb_entry(next_node,
282 struct sched_entity, run_node);
283 cfs_rq->min_vruntime =
284 max_vruntime(cfs_rq->min_vruntime,
285 next->vruntime);
286 }
287 }
Ingo Molnare9acbff2007-10-15 17:00:04 +0200288
Peter Zijlstraaa2ac252008-03-14 21:12:12 +0100289 if (cfs_rq->next == se)
290 cfs_rq->next = NULL;
291
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200292 rb_erase(&se->run_node, &cfs_rq->tasks_timeline);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200293}
294
295static inline struct rb_node *first_fair(struct cfs_rq *cfs_rq)
296{
297 return cfs_rq->rb_leftmost;
298}
299
300static struct sched_entity *__pick_next_entity(struct cfs_rq *cfs_rq)
301{
302 return rb_entry(first_fair(cfs_rq), struct sched_entity, run_node);
303}
304
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200305static inline struct sched_entity *__pick_last_entity(struct cfs_rq *cfs_rq)
306{
Ingo Molnar7eee3e62008-02-22 10:32:21 +0100307 struct rb_node *last = rb_last(&cfs_rq->tasks_timeline);
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200308
Balbir Singh70eee742008-02-22 13:25:53 +0530309 if (!last)
310 return NULL;
Ingo Molnar7eee3e62008-02-22 10:32:21 +0100311
312 return rb_entry(last, struct sched_entity, run_node);
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200313}
314
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200315/**************************************************************
316 * Scheduling class statistics methods:
317 */
318
Peter Zijlstrab2be5e92007-11-09 22:39:37 +0100319#ifdef CONFIG_SCHED_DEBUG
320int sched_nr_latency_handler(struct ctl_table *table, int write,
321 struct file *filp, void __user *buffer, size_t *lenp,
322 loff_t *ppos)
323{
324 int ret = proc_dointvec_minmax(table, write, filp, buffer, lenp, ppos);
325
326 if (ret || !write)
327 return ret;
328
329 sched_nr_latency = DIV_ROUND_UP(sysctl_sched_latency,
330 sysctl_sched_min_granularity);
331
332 return 0;
333}
334#endif
Ingo Molnar647e7ca2007-10-15 17:00:13 +0200335
336/*
337 * The idea is to set a period in which each task runs once.
338 *
339 * When there are too many tasks (sysctl_sched_nr_latency) we have to stretch
340 * this period because otherwise the slices get too small.
341 *
342 * p = (nr <= nl) ? l : l*nr/nl
343 */
Peter Zijlstra4d78e7b2007-10-15 17:00:04 +0200344static u64 __sched_period(unsigned long nr_running)
345{
346 u64 period = sysctl_sched_latency;
Peter Zijlstrab2be5e92007-11-09 22:39:37 +0100347 unsigned long nr_latency = sched_nr_latency;
Peter Zijlstra4d78e7b2007-10-15 17:00:04 +0200348
349 if (unlikely(nr_running > nr_latency)) {
Peter Zijlstra4bf0b772008-01-25 21:08:21 +0100350 period = sysctl_sched_min_granularity;
Peter Zijlstra4d78e7b2007-10-15 17:00:04 +0200351 period *= nr_running;
Peter Zijlstra4d78e7b2007-10-15 17:00:04 +0200352 }
353
354 return period;
355}
356
Ingo Molnar647e7ca2007-10-15 17:00:13 +0200357/*
358 * We calculate the wall-time slice from the period by taking a part
359 * proportional to the weight.
360 *
361 * s = p*w/rw
362 */
Peter Zijlstra6d0f0ebd2007-10-15 17:00:05 +0200363static u64 sched_slice(struct cfs_rq *cfs_rq, struct sched_entity *se)
Peter Zijlstra21805082007-08-25 18:41:53 +0200364{
Ingo Molnar6a6029b2008-03-14 22:17:08 +0100365 return calc_delta_mine(__sched_period(cfs_rq->nr_running),
366 se->load.weight, &cfs_rq->load);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200367}
368
Ingo Molnar647e7ca2007-10-15 17:00:13 +0200369/*
370 * We calculate the vruntime slice.
371 *
372 * vs = s/w = p/rw
373 */
374static u64 __sched_vslice(unsigned long rq_weight, unsigned long nr_running)
Peter Zijlstra67e9fb22007-10-15 17:00:10 +0200375{
Ingo Molnar647e7ca2007-10-15 17:00:13 +0200376 u64 vslice = __sched_period(nr_running);
Peter Zijlstra67e9fb22007-10-15 17:00:10 +0200377
Peter Zijlstra10b77722007-11-09 22:39:37 +0100378 vslice *= NICE_0_LOAD;
Ingo Molnar647e7ca2007-10-15 17:00:13 +0200379 do_div(vslice, rq_weight);
Peter Zijlstra67e9fb22007-10-15 17:00:10 +0200380
Ingo Molnar647e7ca2007-10-15 17:00:13 +0200381 return vslice;
382}
Peter Zijlstra5f6d858e2007-10-15 17:00:12 +0200383
Ingo Molnar647e7ca2007-10-15 17:00:13 +0200384static u64 sched_vslice_add(struct cfs_rq *cfs_rq, struct sched_entity *se)
385{
386 return __sched_vslice(cfs_rq->load.weight + se->load.weight,
387 cfs_rq->nr_running + 1);
Peter Zijlstra67e9fb22007-10-15 17:00:10 +0200388}
389
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200390/*
391 * Update the current task's runtime statistics. Skip current tasks that
392 * are not in our scheduling class.
393 */
394static inline void
Ingo Molnar8ebc91d2007-10-15 17:00:03 +0200395__update_curr(struct cfs_rq *cfs_rq, struct sched_entity *curr,
396 unsigned long delta_exec)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200397{
Ingo Molnarbbdba7c2007-10-15 17:00:06 +0200398 unsigned long delta_exec_weighted;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200399
Ingo Molnar8179ca232007-08-02 17:41:40 +0200400 schedstat_set(curr->exec_max, max((u64)delta_exec, curr->exec_max));
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200401
402 curr->sum_exec_runtime += delta_exec;
Ingo Molnar7a62eab2007-10-15 17:00:06 +0200403 schedstat_add(cfs_rq, exec_clock, delta_exec);
Ingo Molnare9acbff2007-10-15 17:00:04 +0200404 delta_exec_weighted = delta_exec;
405 if (unlikely(curr->load.weight != NICE_0_LOAD)) {
406 delta_exec_weighted = calc_delta_fair(delta_exec_weighted,
407 &curr->load);
408 }
409 curr->vruntime += delta_exec_weighted;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200410}
411
Ingo Molnarb7cc0892007-08-09 11:16:47 +0200412static void update_curr(struct cfs_rq *cfs_rq)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200413{
Ingo Molnar429d43b2007-10-15 17:00:03 +0200414 struct sched_entity *curr = cfs_rq->curr;
Ingo Molnar8ebc91d2007-10-15 17:00:03 +0200415 u64 now = rq_of(cfs_rq)->clock;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200416 unsigned long delta_exec;
417
418 if (unlikely(!curr))
419 return;
420
421 /*
422 * Get the amount of time the current task was running
423 * since the last time we changed load (this cannot
424 * overflow on 32 bits):
425 */
Ingo Molnar8ebc91d2007-10-15 17:00:03 +0200426 delta_exec = (unsigned long)(now - curr->exec_start);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200427
Ingo Molnar8ebc91d2007-10-15 17:00:03 +0200428 __update_curr(cfs_rq, curr, delta_exec);
429 curr->exec_start = now;
Srivatsa Vaddagirid842de82007-12-02 20:04:49 +0100430
431 if (entity_is_task(curr)) {
432 struct task_struct *curtask = task_of(curr);
433
434 cpuacct_charge(curtask, delta_exec);
435 }
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200436}
437
438static inline void
Ingo Molnar5870db52007-08-09 11:16:47 +0200439update_stats_wait_start(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200440{
Ingo Molnard2819182007-08-09 11:16:47 +0200441 schedstat_set(se->wait_start, rq_of(cfs_rq)->clock);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200442}
443
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200444/*
445 * Task is being enqueued - update stats:
446 */
Ingo Molnard2417e52007-08-09 11:16:47 +0200447static void update_stats_enqueue(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200448{
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200449 /*
450 * Are we enqueueing a waiting task? (for current tasks
451 * a dequeue/enqueue event is a NOP)
452 */
Ingo Molnar429d43b2007-10-15 17:00:03 +0200453 if (se != cfs_rq->curr)
Ingo Molnar5870db52007-08-09 11:16:47 +0200454 update_stats_wait_start(cfs_rq, se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200455}
456
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200457static void
Ingo Molnar9ef0a962007-08-09 11:16:47 +0200458update_stats_wait_end(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200459{
Ingo Molnarbbdba7c2007-10-15 17:00:06 +0200460 schedstat_set(se->wait_max, max(se->wait_max,
461 rq_of(cfs_rq)->clock - se->wait_start));
Arjan van de Ven6d082592008-01-25 21:08:35 +0100462 schedstat_set(se->wait_count, se->wait_count + 1);
463 schedstat_set(se->wait_sum, se->wait_sum +
464 rq_of(cfs_rq)->clock - se->wait_start);
Ingo Molnar6cfb0d52007-08-02 17:41:40 +0200465 schedstat_set(se->wait_start, 0);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200466}
467
468static inline void
Ingo Molnar19b6a2e2007-08-09 11:16:48 +0200469update_stats_dequeue(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200470{
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200471 /*
472 * Mark the end of the wait period if dequeueing a
473 * waiting task:
474 */
Ingo Molnar429d43b2007-10-15 17:00:03 +0200475 if (se != cfs_rq->curr)
Ingo Molnar9ef0a962007-08-09 11:16:47 +0200476 update_stats_wait_end(cfs_rq, se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200477}
478
479/*
480 * We are picking a new current task - update its stats:
481 */
482static inline void
Ingo Molnar79303e92007-08-09 11:16:47 +0200483update_stats_curr_start(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200484{
485 /*
486 * We are starting a new run period:
487 */
Ingo Molnard2819182007-08-09 11:16:47 +0200488 se->exec_start = rq_of(cfs_rq)->clock;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200489}
490
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200491/**************************************************
492 * Scheduling class queueing methods:
493 */
494
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200495static void
496account_entity_enqueue(struct cfs_rq *cfs_rq, struct sched_entity *se)
497{
498 update_load_add(&cfs_rq->load, se->load.weight);
499 cfs_rq->nr_running++;
500 se->on_rq = 1;
501}
502
503static void
504account_entity_dequeue(struct cfs_rq *cfs_rq, struct sched_entity *se)
505{
506 update_load_sub(&cfs_rq->load, se->load.weight);
507 cfs_rq->nr_running--;
508 se->on_rq = 0;
509}
510
Ingo Molnar2396af62007-08-09 11:16:48 +0200511static void enqueue_sleeper(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200512{
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200513#ifdef CONFIG_SCHEDSTATS
514 if (se->sleep_start) {
Ingo Molnard2819182007-08-09 11:16:47 +0200515 u64 delta = rq_of(cfs_rq)->clock - se->sleep_start;
Arjan van de Ven97455122008-01-25 21:08:34 +0100516 struct task_struct *tsk = task_of(se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200517
518 if ((s64)delta < 0)
519 delta = 0;
520
521 if (unlikely(delta > se->sleep_max))
522 se->sleep_max = delta;
523
524 se->sleep_start = 0;
525 se->sum_sleep_runtime += delta;
Arjan van de Ven97455122008-01-25 21:08:34 +0100526
527 account_scheduler_latency(tsk, delta >> 10, 1);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200528 }
529 if (se->block_start) {
Ingo Molnard2819182007-08-09 11:16:47 +0200530 u64 delta = rq_of(cfs_rq)->clock - se->block_start;
Arjan van de Ven97455122008-01-25 21:08:34 +0100531 struct task_struct *tsk = task_of(se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200532
533 if ((s64)delta < 0)
534 delta = 0;
535
536 if (unlikely(delta > se->block_max))
537 se->block_max = delta;
538
539 se->block_start = 0;
540 se->sum_sleep_runtime += delta;
Ingo Molnar30084fb2007-10-02 14:13:08 +0200541
542 /*
543 * Blocking time is in units of nanosecs, so shift by 20 to
544 * get a milliseconds-range estimation of the amount of
545 * time that the task spent sleeping:
546 */
547 if (unlikely(prof_on == SLEEP_PROFILING)) {
Ingo Molnare22f5bb2007-10-15 17:00:06 +0200548
Ingo Molnar30084fb2007-10-02 14:13:08 +0200549 profile_hits(SLEEP_PROFILING, (void *)get_wchan(tsk),
550 delta >> 20);
551 }
Arjan van de Ven97455122008-01-25 21:08:34 +0100552 account_scheduler_latency(tsk, delta >> 10, 0);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200553 }
554#endif
555}
556
Peter Zijlstraddc97292007-10-15 17:00:10 +0200557static void check_spread(struct cfs_rq *cfs_rq, struct sched_entity *se)
558{
559#ifdef CONFIG_SCHED_DEBUG
560 s64 d = se->vruntime - cfs_rq->min_vruntime;
561
562 if (d < 0)
563 d = -d;
564
565 if (d > 3*sysctl_sched_latency)
566 schedstat_inc(cfs_rq, nr_spread_over);
567#endif
568}
569
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200570static void
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200571place_entity(struct cfs_rq *cfs_rq, struct sched_entity *se, int initial)
572{
Peter Zijlstra67e9fb22007-10-15 17:00:10 +0200573 u64 vruntime;
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200574
Peter Zijlstra3fe69742008-03-14 20:55:51 +0100575 if (first_fair(cfs_rq)) {
576 vruntime = min_vruntime(cfs_rq->min_vruntime,
577 __pick_next_entity(cfs_rq)->vruntime);
578 } else
579 vruntime = cfs_rq->min_vruntime;
Peter Zijlstra94dfb5e2007-10-15 17:00:05 +0200580
Peter Zijlstra2cb86002007-11-09 22:39:37 +0100581 /*
582 * The 'current' period is already promised to the current tasks,
583 * however the extra weight of the new task will slow them down a
584 * little, place the new task so that it fits in the slot that
585 * stays open at the end.
586 */
Peter Zijlstra94dfb5e2007-10-15 17:00:05 +0200587 if (initial && sched_feat(START_DEBIT))
Ingo Molnar647e7ca2007-10-15 17:00:13 +0200588 vruntime += sched_vslice_add(cfs_rq, se);
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200589
Ingo Molnar8465e792007-10-15 17:00:11 +0200590 if (!initial) {
Peter Zijlstra2cb86002007-11-09 22:39:37 +0100591 /* sleeps upto a single latency don't count. */
Ingo Molnar018d6db2008-04-14 08:53:32 +0200592 if (sched_feat(NEW_FAIR_SLEEPERS)) {
Peter Zijlstra112f53f2008-03-19 11:43:36 +0100593 if (sched_feat(NORMALIZED_SLEEPER))
594 vruntime -= calc_delta_fair(sysctl_sched_latency,
595 &cfs_rq->load);
596 else
597 vruntime -= sysctl_sched_latency;
Ingo Molnar018d6db2008-04-14 08:53:32 +0200598 }
Ingo Molnar94359f02007-10-15 17:00:11 +0200599
Peter Zijlstra2cb86002007-11-09 22:39:37 +0100600 /* ensure we never gain time by being placed backwards. */
601 vruntime = max_vruntime(se->vruntime, vruntime);
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200602 }
603
Peter Zijlstra67e9fb22007-10-15 17:00:10 +0200604 se->vruntime = vruntime;
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200605}
606
607static void
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +0200608enqueue_entity(struct cfs_rq *cfs_rq, struct sched_entity *se, int wakeup)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200609{
610 /*
Dmitry Adamushkoa2a2d682007-10-15 17:00:13 +0200611 * Update run-time statistics of the 'current'.
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200612 */
Ingo Molnarb7cc0892007-08-09 11:16:47 +0200613 update_curr(cfs_rq);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200614
Ingo Molnare9acbff2007-10-15 17:00:04 +0200615 if (wakeup) {
Peter Zijlstraaeb73b02007-10-15 17:00:05 +0200616 place_entity(cfs_rq, se, 0);
Ingo Molnar2396af62007-08-09 11:16:48 +0200617 enqueue_sleeper(cfs_rq, se);
Ingo Molnare9acbff2007-10-15 17:00:04 +0200618 }
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200619
Ingo Molnard2417e52007-08-09 11:16:47 +0200620 update_stats_enqueue(cfs_rq, se);
Peter Zijlstraddc97292007-10-15 17:00:10 +0200621 check_spread(cfs_rq, se);
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +0200622 if (se != cfs_rq->curr)
623 __enqueue_entity(cfs_rq, se);
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200624 account_entity_enqueue(cfs_rq, se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200625}
626
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +0100627static void update_avg(u64 *avg, u64 sample)
628{
629 s64 diff = sample - *avg;
630 *avg += diff >> 3;
631}
632
633static void update_avg_stats(struct cfs_rq *cfs_rq, struct sched_entity *se)
634{
635 if (!se->last_wakeup)
636 return;
637
638 update_avg(&se->avg_overlap, se->sum_exec_runtime - se->last_wakeup);
639 se->last_wakeup = 0;
640}
641
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200642static void
Ingo Molnar525c2712007-08-09 11:16:48 +0200643dequeue_entity(struct cfs_rq *cfs_rq, struct sched_entity *se, int sleep)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200644{
Dmitry Adamushkoa2a2d682007-10-15 17:00:13 +0200645 /*
646 * Update run-time statistics of the 'current'.
647 */
648 update_curr(cfs_rq);
649
Ingo Molnar19b6a2e2007-08-09 11:16:48 +0200650 update_stats_dequeue(cfs_rq, se);
Dmitry Adamushkodb36cc72007-10-15 17:00:06 +0200651 if (sleep) {
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +0100652 update_avg_stats(cfs_rq, se);
Peter Zijlstra67e9fb22007-10-15 17:00:10 +0200653#ifdef CONFIG_SCHEDSTATS
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200654 if (entity_is_task(se)) {
655 struct task_struct *tsk = task_of(se);
656
657 if (tsk->state & TASK_INTERRUPTIBLE)
Ingo Molnard2819182007-08-09 11:16:47 +0200658 se->sleep_start = rq_of(cfs_rq)->clock;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200659 if (tsk->state & TASK_UNINTERRUPTIBLE)
Ingo Molnard2819182007-08-09 11:16:47 +0200660 se->block_start = rq_of(cfs_rq)->clock;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200661 }
Dmitry Adamushkodb36cc72007-10-15 17:00:06 +0200662#endif
Peter Zijlstra67e9fb22007-10-15 17:00:10 +0200663 }
664
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +0200665 if (se != cfs_rq->curr)
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200666 __dequeue_entity(cfs_rq, se);
667 account_entity_dequeue(cfs_rq, se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200668}
669
670/*
671 * Preempt the current task with a newly woken task if needed:
672 */
Peter Zijlstra7c92e542007-09-05 14:32:49 +0200673static void
Ingo Molnar2e09bf52007-10-15 17:00:05 +0200674check_preempt_tick(struct cfs_rq *cfs_rq, struct sched_entity *curr)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200675{
Peter Zijlstra11697832007-09-05 14:32:49 +0200676 unsigned long ideal_runtime, delta_exec;
677
Peter Zijlstra6d0f0ebd2007-10-15 17:00:05 +0200678 ideal_runtime = sched_slice(cfs_rq, curr);
Peter Zijlstra11697832007-09-05 14:32:49 +0200679 delta_exec = curr->sum_exec_runtime - curr->prev_sum_exec_runtime;
Ingo Molnar3e3e13f2007-11-09 22:39:39 +0100680 if (delta_exec > ideal_runtime)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200681 resched_task(rq_of(cfs_rq)->curr);
682}
683
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +0200684static void
Ingo Molnar8494f412007-08-09 11:16:48 +0200685set_next_entity(struct cfs_rq *cfs_rq, struct sched_entity *se)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200686{
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +0200687 /* 'current' is not kept within the tree. */
688 if (se->on_rq) {
689 /*
690 * Any task has to be enqueued before it get to execute on
691 * a CPU. So account for the time it spent waiting on the
692 * runqueue.
693 */
694 update_stats_wait_end(cfs_rq, se);
695 __dequeue_entity(cfs_rq, se);
696 }
697
Ingo Molnar79303e92007-08-09 11:16:47 +0200698 update_stats_curr_start(cfs_rq, se);
Ingo Molnar429d43b2007-10-15 17:00:03 +0200699 cfs_rq->curr = se;
Ingo Molnareba1ed42007-10-15 17:00:02 +0200700#ifdef CONFIG_SCHEDSTATS
701 /*
702 * Track our maximum slice length, if the CPU's load is at
703 * least twice that of our own weight (i.e. dont track it
704 * when there are only lesser-weight tasks around):
705 */
Dmitry Adamushko495eca42007-10-15 17:00:06 +0200706 if (rq_of(cfs_rq)->load.weight >= 2*se->load.weight) {
Ingo Molnareba1ed42007-10-15 17:00:02 +0200707 se->slice_max = max(se->slice_max,
708 se->sum_exec_runtime - se->prev_sum_exec_runtime);
709 }
710#endif
Peter Zijlstra4a55b452007-09-05 14:32:49 +0200711 se->prev_sum_exec_runtime = se->sum_exec_runtime;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200712}
713
Peter Zijlstra0bbd3332008-04-19 19:44:57 +0200714static int
715wakeup_preempt_entity(struct sched_entity *curr, struct sched_entity *se);
716
Peter Zijlstraaa2ac252008-03-14 21:12:12 +0100717static struct sched_entity *
718pick_next(struct cfs_rq *cfs_rq, struct sched_entity *se)
719{
Peter Zijlstraaa2ac252008-03-14 21:12:12 +0100720 if (!cfs_rq->next)
721 return se;
722
Peter Zijlstra0bbd3332008-04-19 19:44:57 +0200723 if (wakeup_preempt_entity(cfs_rq->next, se) != 0)
Peter Zijlstraaa2ac252008-03-14 21:12:12 +0100724 return se;
725
726 return cfs_rq->next;
727}
728
Ingo Molnar9948f4b2007-08-09 11:16:48 +0200729static struct sched_entity *pick_next_entity(struct cfs_rq *cfs_rq)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200730{
Dmitry Adamushko08ec3df2007-10-15 17:00:13 +0200731 struct sched_entity *se = NULL;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200732
Dmitry Adamushko08ec3df2007-10-15 17:00:13 +0200733 if (first_fair(cfs_rq)) {
734 se = __pick_next_entity(cfs_rq);
Peter Zijlstraaa2ac252008-03-14 21:12:12 +0100735 se = pick_next(cfs_rq, se);
Dmitry Adamushko08ec3df2007-10-15 17:00:13 +0200736 set_next_entity(cfs_rq, se);
737 }
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200738
739 return se;
740}
741
Ingo Molnarab6cde22007-08-09 11:16:48 +0200742static void put_prev_entity(struct cfs_rq *cfs_rq, struct sched_entity *prev)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200743{
744 /*
745 * If still on the runqueue then deactivate_task()
746 * was not called and update_curr() has to be done:
747 */
748 if (prev->on_rq)
Ingo Molnarb7cc0892007-08-09 11:16:47 +0200749 update_curr(cfs_rq);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200750
Peter Zijlstraddc97292007-10-15 17:00:10 +0200751 check_spread(cfs_rq, prev);
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200752 if (prev->on_rq) {
Ingo Molnar5870db52007-08-09 11:16:47 +0200753 update_stats_wait_start(cfs_rq, prev);
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200754 /* Put 'current' back into the tree. */
755 __enqueue_entity(cfs_rq, prev);
756 }
Ingo Molnar429d43b2007-10-15 17:00:03 +0200757 cfs_rq->curr = NULL;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200758}
759
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +0100760static void
761entity_tick(struct cfs_rq *cfs_rq, struct sched_entity *curr, int queued)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200762{
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200763 /*
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200764 * Update run-time statistics of the 'current'.
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200765 */
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200766 update_curr(cfs_rq);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200767
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +0100768#ifdef CONFIG_SCHED_HRTICK
769 /*
770 * queued ticks are scheduled to match the slice, so don't bother
771 * validating it and just reschedule.
772 */
773 if (queued)
774 return resched_task(rq_of(cfs_rq)->curr);
775 /*
776 * don't let the period tick interfere with the hrtick preemption
777 */
778 if (!sched_feat(DOUBLE_TICK) &&
779 hrtimer_active(&rq_of(cfs_rq)->hrtick_timer))
780 return;
781#endif
782
Peter Zijlstrace6c1312007-10-15 17:00:14 +0200783 if (cfs_rq->nr_running > 1 || !sched_feat(WAKEUP_PREEMPT))
Ingo Molnar2e09bf52007-10-15 17:00:05 +0200784 check_preempt_tick(cfs_rq, curr);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200785}
786
787/**************************************************
788 * CFS operations on tasks:
789 */
790
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +0100791#ifdef CONFIG_SCHED_HRTICK
792static void hrtick_start_fair(struct rq *rq, struct task_struct *p)
793{
794 int requeue = rq->curr == p;
795 struct sched_entity *se = &p->se;
796 struct cfs_rq *cfs_rq = cfs_rq_of(se);
797
798 WARN_ON(task_rq(p) != rq);
799
800 if (hrtick_enabled(rq) && cfs_rq->nr_running > 1) {
801 u64 slice = sched_slice(cfs_rq, se);
802 u64 ran = se->sum_exec_runtime - se->prev_sum_exec_runtime;
803 s64 delta = slice - ran;
804
805 if (delta < 0) {
806 if (rq->curr == p)
807 resched_task(p);
808 return;
809 }
810
811 /*
812 * Don't schedule slices shorter than 10000ns, that just
813 * doesn't make sense. Rely on vruntime for fairness.
814 */
815 if (!requeue)
816 delta = max(10000LL, delta);
817
818 hrtick_start(rq, delta, requeue);
819 }
820}
821#else
822static inline void
823hrtick_start_fair(struct rq *rq, struct task_struct *p)
824{
825}
826#endif
827
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200828/*
829 * The enqueue_task method is called before nr_running is
830 * increased. Here we update the fair scheduling stats and
831 * then put the task into the rbtree:
832 */
Ingo Molnarfd390f62007-08-09 11:16:48 +0200833static void enqueue_task_fair(struct rq *rq, struct task_struct *p, int wakeup)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200834{
835 struct cfs_rq *cfs_rq;
Peter Zijlstra62fb1852008-02-25 17:34:02 +0100836 struct sched_entity *se = &p->se;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200837
838 for_each_sched_entity(se) {
Peter Zijlstra62fb1852008-02-25 17:34:02 +0100839 if (se->on_rq)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200840 break;
841 cfs_rq = cfs_rq_of(se);
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +0200842 enqueue_entity(cfs_rq, se, wakeup);
Srivatsa Vaddagirib9fa3df2007-10-15 17:00:12 +0200843 wakeup = 1;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200844 }
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +0100845
846 hrtick_start_fair(rq, rq->curr);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200847}
848
849/*
850 * The dequeue_task method is called before nr_running is
851 * decreased. We remove the task from the rbtree and
852 * update the fair scheduling stats:
853 */
Ingo Molnarf02231e2007-08-09 11:16:48 +0200854static void dequeue_task_fair(struct rq *rq, struct task_struct *p, int sleep)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200855{
856 struct cfs_rq *cfs_rq;
Peter Zijlstra62fb1852008-02-25 17:34:02 +0100857 struct sched_entity *se = &p->se;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200858
859 for_each_sched_entity(se) {
860 cfs_rq = cfs_rq_of(se);
Ingo Molnar525c2712007-08-09 11:16:48 +0200861 dequeue_entity(cfs_rq, se, sleep);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200862 /* Don't dequeue parent if it has other entities besides us */
Peter Zijlstra62fb1852008-02-25 17:34:02 +0100863 if (cfs_rq->load.weight)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200864 break;
Srivatsa Vaddagirib9fa3df2007-10-15 17:00:12 +0200865 sleep = 1;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200866 }
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +0100867
868 hrtick_start_fair(rq, rq->curr);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200869}
870
871/*
Ingo Molnar1799e352007-09-19 23:34:46 +0200872 * sched_yield() support is very simple - we dequeue and enqueue.
873 *
874 * If compat_yield is turned on then we requeue to the end of the tree.
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200875 */
Dmitry Adamushko4530d7a2007-10-15 17:00:08 +0200876static void yield_task_fair(struct rq *rq)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200877{
Ingo Molnardb292ca2007-12-04 17:04:39 +0100878 struct task_struct *curr = rq->curr;
879 struct cfs_rq *cfs_rq = task_cfs_rq(curr);
880 struct sched_entity *rightmost, *se = &curr->se;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200881
882 /*
Ingo Molnar1799e352007-09-19 23:34:46 +0200883 * Are we the only task in the tree?
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200884 */
Ingo Molnar1799e352007-09-19 23:34:46 +0200885 if (unlikely(cfs_rq->nr_running == 1))
886 return;
887
Ingo Molnardb292ca2007-12-04 17:04:39 +0100888 if (likely(!sysctl_sched_compat_yield) && curr->policy != SCHED_BATCH) {
Ingo Molnar1799e352007-09-19 23:34:46 +0200889 __update_rq_clock(rq);
890 /*
Dmitry Adamushkoa2a2d682007-10-15 17:00:13 +0200891 * Update run-time statistics of the 'current'.
Ingo Molnar1799e352007-09-19 23:34:46 +0200892 */
Dmitry Adamushko2b1e3152007-10-15 17:00:12 +0200893 update_curr(cfs_rq);
Ingo Molnar1799e352007-09-19 23:34:46 +0200894
895 return;
896 }
897 /*
898 * Find the rightmost entry in the rbtree:
899 */
Dmitry Adamushko2b1e3152007-10-15 17:00:12 +0200900 rightmost = __pick_last_entity(cfs_rq);
Ingo Molnar1799e352007-09-19 23:34:46 +0200901 /*
902 * Already in the rightmost position?
903 */
Peter Zijlstra79b3fef2008-02-18 13:39:37 +0100904 if (unlikely(!rightmost || rightmost->vruntime < se->vruntime))
Ingo Molnar1799e352007-09-19 23:34:46 +0200905 return;
906
907 /*
908 * Minimally necessary key value to be last in the tree:
Dmitry Adamushko2b1e3152007-10-15 17:00:12 +0200909 * Upon rescheduling, sched_class::put_prev_task() will place
910 * 'current' within the tree based on its new key value.
Ingo Molnar1799e352007-09-19 23:34:46 +0200911 */
Dmitry Adamushko30cfdcf2007-10-15 17:00:07 +0200912 se->vruntime = rightmost->vruntime + 1;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +0200913}
914
915/*
Gregory Haskinse7693a32008-01-25 21:08:09 +0100916 * wake_idle() will wake a task on an idle cpu if task->cpu is
917 * not idle and an idle cpu is available. The span of cpus to
918 * search starts with cpus closest then further out as needed,
919 * so we always favor a closer, idle cpu.
920 *
921 * Returns the CPU we should wake onto.
922 */
923#if defined(ARCH_HAS_SCHED_WAKE_IDLE)
924static int wake_idle(int cpu, struct task_struct *p)
925{
926 cpumask_t tmp;
927 struct sched_domain *sd;
928 int i;
929
930 /*
931 * If it is idle, then it is the best cpu to run this task.
932 *
933 * This cpu is also the best, if it has more than one task already.
934 * Siblings must be also busy(in most cases) as they didn't already
935 * pickup the extra load from this cpu and hence we need not check
936 * sibling runqueue info. This will avoid the checks and cache miss
937 * penalities associated with that.
938 */
939 if (idle_cpu(cpu) || cpu_rq(cpu)->nr_running > 1)
940 return cpu;
941
942 for_each_domain(cpu, sd) {
943 if (sd->flags & SD_WAKE_IDLE) {
944 cpus_and(tmp, sd->span, p->cpus_allowed);
945 for_each_cpu_mask(i, tmp) {
946 if (idle_cpu(i)) {
947 if (i != task_cpu(p)) {
948 schedstat_inc(p,
949 se.nr_wakeups_idle);
950 }
951 return i;
952 }
953 }
954 } else {
955 break;
956 }
957 }
958 return cpu;
959}
960#else
961static inline int wake_idle(int cpu, struct task_struct *p)
962{
963 return cpu;
964}
965#endif
966
967#ifdef CONFIG_SMP
Ingo Molnar098fb9d2008-03-16 20:36:10 +0100968
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +0100969static const struct sched_class fair_sched_class;
970
Ingo Molnar098fb9d2008-03-16 20:36:10 +0100971static int
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +0100972wake_affine(struct rq *rq, struct sched_domain *this_sd, struct rq *this_rq,
973 struct task_struct *p, int prev_cpu, int this_cpu, int sync,
974 int idx, unsigned long load, unsigned long this_load,
Ingo Molnar098fb9d2008-03-16 20:36:10 +0100975 unsigned int imbalance)
976{
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +0100977 struct task_struct *curr = this_rq->curr;
Ingo Molnar098fb9d2008-03-16 20:36:10 +0100978 unsigned long tl = this_load;
979 unsigned long tl_per_task;
980
981 if (!(this_sd->flags & SD_WAKE_AFFINE))
982 return 0;
983
984 /*
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +0100985 * If the currently running task will sleep within
986 * a reasonable amount of time then attract this newly
987 * woken task:
Ingo Molnar098fb9d2008-03-16 20:36:10 +0100988 */
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +0100989 if (sync && curr->sched_class == &fair_sched_class) {
990 if (curr->se.avg_overlap < sysctl_sched_migration_cost &&
991 p->se.avg_overlap < sysctl_sched_migration_cost)
992 return 1;
993 }
Ingo Molnar098fb9d2008-03-16 20:36:10 +0100994
995 schedstat_inc(p, se.nr_wakeups_affine_attempts);
996 tl_per_task = cpu_avg_load_per_task(this_cpu);
997
998 /*
999 * If sync wakeup then subtract the (maximum possible)
1000 * effect of the currently running task from the load
1001 * of the current CPU:
1002 */
1003 if (sync)
1004 tl -= current->se.load.weight;
1005
Ingo Molnarac192d32008-03-16 20:56:26 +01001006 if ((tl <= load && tl + target_load(prev_cpu, idx) <= tl_per_task) ||
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001007 100*(tl + p->se.load.weight) <= imbalance*load) {
1008 /*
1009 * This domain has SD_WAKE_AFFINE and
1010 * p is cache cold in this domain, and
1011 * there is no bad imbalance.
1012 */
1013 schedstat_inc(this_sd, ttwu_move_affine);
1014 schedstat_inc(p, se.nr_wakeups_affine);
1015
1016 return 1;
1017 }
1018 return 0;
1019}
1020
Gregory Haskinse7693a32008-01-25 21:08:09 +01001021static int select_task_rq_fair(struct task_struct *p, int sync)
1022{
Gregory Haskinse7693a32008-01-25 21:08:09 +01001023 struct sched_domain *sd, *this_sd = NULL;
Ingo Molnarac192d32008-03-16 20:56:26 +01001024 int prev_cpu, this_cpu, new_cpu;
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001025 unsigned long load, this_load;
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +01001026 struct rq *rq, *this_rq;
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001027 unsigned int imbalance;
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001028 int idx;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001029
Ingo Molnarac192d32008-03-16 20:56:26 +01001030 prev_cpu = task_cpu(p);
1031 rq = task_rq(p);
1032 this_cpu = smp_processor_id();
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +01001033 this_rq = cpu_rq(this_cpu);
Ingo Molnarac192d32008-03-16 20:56:26 +01001034 new_cpu = prev_cpu;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001035
Ingo Molnarac192d32008-03-16 20:56:26 +01001036 /*
1037 * 'this_sd' is the first domain that both
1038 * this_cpu and prev_cpu are present in:
1039 */
Gregory Haskinse7693a32008-01-25 21:08:09 +01001040 for_each_domain(this_cpu, sd) {
Ingo Molnarac192d32008-03-16 20:56:26 +01001041 if (cpu_isset(prev_cpu, sd->span)) {
Gregory Haskinse7693a32008-01-25 21:08:09 +01001042 this_sd = sd;
1043 break;
1044 }
1045 }
1046
1047 if (unlikely(!cpu_isset(this_cpu, p->cpus_allowed)))
Ingo Molnarf4827382008-03-16 21:21:47 +01001048 goto out;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001049
1050 /*
1051 * Check for affine wakeup and passive balancing possibilities.
1052 */
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001053 if (!this_sd)
Ingo Molnarf4827382008-03-16 21:21:47 +01001054 goto out;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001055
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001056 idx = this_sd->wake_idx;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001057
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001058 imbalance = 100 + (this_sd->imbalance_pct - 100) / 2;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001059
Ingo Molnarac192d32008-03-16 20:56:26 +01001060 load = source_load(prev_cpu, idx);
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001061 this_load = target_load(this_cpu, idx);
Gregory Haskinse7693a32008-01-25 21:08:09 +01001062
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +01001063 if (wake_affine(rq, this_sd, this_rq, p, prev_cpu, this_cpu, sync, idx,
1064 load, this_load, imbalance))
1065 return this_cpu;
1066
1067 if (prev_cpu == this_cpu)
Ingo Molnarf4827382008-03-16 21:21:47 +01001068 goto out;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001069
Ingo Molnar098fb9d2008-03-16 20:36:10 +01001070 /*
1071 * Start passive balancing when half the imbalance_pct
1072 * limit is reached.
1073 */
1074 if (this_sd->flags & SD_WAKE_BALANCE) {
1075 if (imbalance*this_load <= 100*load) {
1076 schedstat_inc(this_sd, ttwu_move_balance);
1077 schedstat_inc(p, se.nr_wakeups_passive);
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +01001078 return this_cpu;
Gregory Haskinse7693a32008-01-25 21:08:09 +01001079 }
1080 }
1081
Ingo Molnarf4827382008-03-16 21:21:47 +01001082out:
Gregory Haskinse7693a32008-01-25 21:08:09 +01001083 return wake_idle(new_cpu, p);
1084}
1085#endif /* CONFIG_SMP */
1086
Peter Zijlstra0bbd3332008-04-19 19:44:57 +02001087static unsigned long wakeup_gran(struct sched_entity *se)
1088{
1089 unsigned long gran = sysctl_sched_wakeup_granularity;
1090
1091 /*
1092 * More easily preempt - nice tasks, while not making
1093 * it harder for + nice tasks.
1094 */
1095 if (unlikely(se->load.weight > NICE_0_LOAD))
1096 gran = calc_delta_fair(gran, &se->load);
1097
1098 return gran;
1099}
1100
1101/*
1102 * Should 'se' preempt 'curr'.
1103 *
1104 * |s1
1105 * |s2
1106 * |s3
1107 * g
1108 * |<--->|c
1109 *
1110 * w(c, s1) = -1
1111 * w(c, s2) = 0
1112 * w(c, s3) = 1
1113 *
1114 */
1115static int
1116wakeup_preempt_entity(struct sched_entity *curr, struct sched_entity *se)
1117{
1118 s64 gran, vdiff = curr->vruntime - se->vruntime;
1119
1120 if (vdiff < 0)
1121 return -1;
1122
1123 gran = wakeup_gran(curr);
1124 if (vdiff > gran)
1125 return 1;
1126
1127 return 0;
1128}
Gregory Haskinse7693a32008-01-25 21:08:09 +01001129
Dhaval Giani354d60c2008-04-19 19:44:59 +02001130/* return depth at which a sched entity is present in the hierarchy */
1131static inline int depth_se(struct sched_entity *se)
1132{
1133 int depth = 0;
1134
1135 for_each_sched_entity(se)
1136 depth++;
1137
1138 return depth;
1139}
1140
Gregory Haskinse7693a32008-01-25 21:08:09 +01001141/*
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001142 * Preempt the current task with a newly woken task if needed:
1143 */
Ingo Molnar2e09bf52007-10-15 17:00:05 +02001144static void check_preempt_wakeup(struct rq *rq, struct task_struct *p)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001145{
1146 struct task_struct *curr = rq->curr;
Srivatsa Vaddagirifad095a2007-10-15 17:00:12 +02001147 struct cfs_rq *cfs_rq = task_cfs_rq(curr);
Srivatsa Vaddagiri8651a862007-10-15 17:00:12 +02001148 struct sched_entity *se = &curr->se, *pse = &p->se;
Dhaval Giani354d60c2008-04-19 19:44:59 +02001149 int se_depth, pse_depth;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001150
1151 if (unlikely(rt_prio(p->prio))) {
Ingo Molnara8e504d2007-08-09 11:16:47 +02001152 update_rq_clock(rq);
Ingo Molnarb7cc0892007-08-09 11:16:47 +02001153 update_curr(cfs_rq);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001154 resched_task(curr);
1155 return;
1156 }
Peter Zijlstraaa2ac252008-03-14 21:12:12 +01001157
Ingo Molnar4ae7d5c2008-03-19 01:42:00 +01001158 se->last_wakeup = se->sum_exec_runtime;
1159 if (unlikely(se == pse))
1160 return;
1161
Peter Zijlstraaa2ac252008-03-14 21:12:12 +01001162 cfs_rq_of(pse)->next = pse;
1163
Ingo Molnar91c234b2007-10-15 17:00:18 +02001164 /*
1165 * Batch tasks do not preempt (their preemption is driven by
1166 * the tick):
1167 */
1168 if (unlikely(p->policy == SCHED_BATCH))
1169 return;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001170
Ingo Molnar77d9cc42007-11-09 22:39:39 +01001171 if (!sched_feat(WAKEUP_PREEMPT))
1172 return;
Peter Zijlstrace6c1312007-10-15 17:00:14 +02001173
Dhaval Giani354d60c2008-04-19 19:44:59 +02001174 /*
1175 * preemption test can be made between sibling entities who are in the
1176 * same cfs_rq i.e who have a common parent. Walk up the hierarchy of
1177 * both tasks until we find their ancestors who are siblings of common
1178 * parent.
1179 */
1180
1181 /* First walk up until both entities are at same depth */
1182 se_depth = depth_se(se);
1183 pse_depth = depth_se(pse);
1184
1185 while (se_depth > pse_depth) {
1186 se_depth--;
1187 se = parent_entity(se);
1188 }
1189
1190 while (pse_depth > se_depth) {
1191 pse_depth--;
1192 pse = parent_entity(pse);
1193 }
1194
Ingo Molnar77d9cc42007-11-09 22:39:39 +01001195 while (!is_same_group(se, pse)) {
1196 se = parent_entity(se);
1197 pse = parent_entity(pse);
Ingo Molnar2e09bf52007-10-15 17:00:05 +02001198 }
Ingo Molnar77d9cc42007-11-09 22:39:39 +01001199
Peter Zijlstra0bbd3332008-04-19 19:44:57 +02001200 if (wakeup_preempt_entity(se, pse) == 1)
Ingo Molnar77d9cc42007-11-09 22:39:39 +01001201 resched_task(curr);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001202}
1203
Ingo Molnarfb8d4722007-08-09 11:16:48 +02001204static struct task_struct *pick_next_task_fair(struct rq *rq)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001205{
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +01001206 struct task_struct *p;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001207 struct cfs_rq *cfs_rq = &rq->cfs;
1208 struct sched_entity *se;
1209
1210 if (unlikely(!cfs_rq->nr_running))
1211 return NULL;
1212
1213 do {
Ingo Molnar9948f4b2007-08-09 11:16:48 +02001214 se = pick_next_entity(cfs_rq);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001215 cfs_rq = group_cfs_rq(se);
1216 } while (cfs_rq);
1217
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +01001218 p = task_of(se);
1219 hrtick_start_fair(rq, p);
1220
1221 return p;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001222}
1223
1224/*
1225 * Account for a descheduled task:
1226 */
Ingo Molnar31ee5292007-08-09 11:16:49 +02001227static void put_prev_task_fair(struct rq *rq, struct task_struct *prev)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001228{
1229 struct sched_entity *se = &prev->se;
1230 struct cfs_rq *cfs_rq;
1231
1232 for_each_sched_entity(se) {
1233 cfs_rq = cfs_rq_of(se);
Ingo Molnarab6cde22007-08-09 11:16:48 +02001234 put_prev_entity(cfs_rq, se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001235 }
1236}
1237
Peter Williams681f3e62007-10-24 18:23:51 +02001238#ifdef CONFIG_SMP
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001239/**************************************************
1240 * Fair scheduling class load-balancing methods:
1241 */
1242
1243/*
1244 * Load-balancing iterator. Note: while the runqueue stays locked
1245 * during the whole iteration, the current task might be
1246 * dequeued so the iterator has to be dequeue-safe. Here we
1247 * achieve that by always pre-iterating before returning
1248 * the current task:
1249 */
Alexey Dobriyana9957442007-10-15 17:00:13 +02001250static struct task_struct *
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001251__load_balance_iterator(struct cfs_rq *cfs_rq, struct rb_node *curr)
1252{
Dhaval Giani354d60c2008-04-19 19:44:59 +02001253 struct task_struct *p = NULL;
1254 struct sched_entity *se;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001255
1256 if (!curr)
1257 return NULL;
1258
Dhaval Giani354d60c2008-04-19 19:44:59 +02001259 /* Skip over entities that are not tasks */
1260 do {
1261 se = rb_entry(curr, struct sched_entity, run_node);
1262 curr = rb_next(curr);
1263 } while (curr && !entity_is_task(se));
1264
1265 cfs_rq->rb_load_balance_curr = curr;
1266
1267 if (entity_is_task(se))
1268 p = task_of(se);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001269
1270 return p;
1271}
1272
1273static struct task_struct *load_balance_start_fair(void *arg)
1274{
1275 struct cfs_rq *cfs_rq = arg;
1276
1277 return __load_balance_iterator(cfs_rq, first_fair(cfs_rq));
1278}
1279
1280static struct task_struct *load_balance_next_fair(void *arg)
1281{
1282 struct cfs_rq *cfs_rq = arg;
1283
1284 return __load_balance_iterator(cfs_rq, cfs_rq->rb_load_balance_curr);
1285}
1286
Peter Zijlstra62fb1852008-02-25 17:34:02 +01001287#ifdef CONFIG_FAIR_GROUP_SCHED
1288static int cfs_rq_best_prio(struct cfs_rq *cfs_rq)
1289{
1290 struct sched_entity *curr;
1291 struct task_struct *p;
1292
1293 if (!cfs_rq->nr_running || !first_fair(cfs_rq))
1294 return MAX_PRIO;
1295
1296 curr = cfs_rq->curr;
1297 if (!curr)
1298 curr = __pick_next_entity(cfs_rq);
1299
1300 p = task_of(curr);
1301
1302 return p->prio;
1303}
1304#endif
1305
Peter Williams43010652007-08-09 11:16:46 +02001306static unsigned long
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001307load_balance_fair(struct rq *this_rq, int this_cpu, struct rq *busiest,
Peter Williamse1d14842007-10-24 18:23:51 +02001308 unsigned long max_load_move,
Peter Williamsa4ac01c2007-08-09 11:16:46 +02001309 struct sched_domain *sd, enum cpu_idle_type idle,
1310 int *all_pinned, int *this_best_prio)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001311{
1312 struct cfs_rq *busy_cfs_rq;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001313 long rem_load_move = max_load_move;
1314 struct rq_iterator cfs_rq_iterator;
1315
1316 cfs_rq_iterator.start = load_balance_start_fair;
1317 cfs_rq_iterator.next = load_balance_next_fair;
1318
1319 for_each_leaf_cfs_rq(busiest, busy_cfs_rq) {
Peter Williamsa4ac01c2007-08-09 11:16:46 +02001320#ifdef CONFIG_FAIR_GROUP_SCHED
Peter Zijlstra62fb1852008-02-25 17:34:02 +01001321 struct cfs_rq *this_cfs_rq;
1322 long imbalance;
1323 unsigned long maxload;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001324
Peter Zijlstra62fb1852008-02-25 17:34:02 +01001325 this_cfs_rq = cpu_cfs_rq(busy_cfs_rq, this_cpu);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001326
Peter Zijlstra62fb1852008-02-25 17:34:02 +01001327 imbalance = busy_cfs_rq->load.weight - this_cfs_rq->load.weight;
1328 /* Don't pull if this_cfs_rq has more load than busy_cfs_rq */
1329 if (imbalance <= 0)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001330 continue;
1331
Peter Zijlstra62fb1852008-02-25 17:34:02 +01001332 /* Don't pull more than imbalance/2 */
1333 imbalance /= 2;
1334 maxload = min(rem_load_move, imbalance);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001335
Peter Zijlstra62fb1852008-02-25 17:34:02 +01001336 *this_best_prio = cfs_rq_best_prio(this_cfs_rq);
Peter Williamsa4ac01c2007-08-09 11:16:46 +02001337#else
Ingo Molnare56f31a2007-08-10 23:05:11 +02001338# define maxload rem_load_move
Peter Williamsa4ac01c2007-08-09 11:16:46 +02001339#endif
Peter Williamse1d14842007-10-24 18:23:51 +02001340 /*
1341 * pass busy_cfs_rq argument into
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001342 * load_balance_[start|next]_fair iterators
1343 */
1344 cfs_rq_iterator.arg = busy_cfs_rq;
Peter Zijlstra62fb1852008-02-25 17:34:02 +01001345 rem_load_move -= balance_tasks(this_rq, this_cpu, busiest,
Peter Williamse1d14842007-10-24 18:23:51 +02001346 maxload, sd, idle, all_pinned,
1347 this_best_prio,
1348 &cfs_rq_iterator);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001349
Peter Williamse1d14842007-10-24 18:23:51 +02001350 if (rem_load_move <= 0)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001351 break;
1352 }
1353
Peter Williams43010652007-08-09 11:16:46 +02001354 return max_load_move - rem_load_move;
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001355}
1356
Peter Williamse1d14842007-10-24 18:23:51 +02001357static int
1358move_one_task_fair(struct rq *this_rq, int this_cpu, struct rq *busiest,
1359 struct sched_domain *sd, enum cpu_idle_type idle)
1360{
1361 struct cfs_rq *busy_cfs_rq;
1362 struct rq_iterator cfs_rq_iterator;
1363
1364 cfs_rq_iterator.start = load_balance_start_fair;
1365 cfs_rq_iterator.next = load_balance_next_fair;
1366
1367 for_each_leaf_cfs_rq(busiest, busy_cfs_rq) {
1368 /*
1369 * pass busy_cfs_rq argument into
1370 * load_balance_[start|next]_fair iterators
1371 */
1372 cfs_rq_iterator.arg = busy_cfs_rq;
1373 if (iter_move_one_task(this_rq, this_cpu, busiest, sd, idle,
1374 &cfs_rq_iterator))
1375 return 1;
1376 }
1377
1378 return 0;
1379}
Peter Williams681f3e62007-10-24 18:23:51 +02001380#endif
Peter Williamse1d14842007-10-24 18:23:51 +02001381
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001382/*
1383 * scheduler tick hitting a task of our scheduling class:
1384 */
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +01001385static void task_tick_fair(struct rq *rq, struct task_struct *curr, int queued)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001386{
1387 struct cfs_rq *cfs_rq;
1388 struct sched_entity *se = &curr->se;
1389
1390 for_each_sched_entity(se) {
1391 cfs_rq = cfs_rq_of(se);
Peter Zijlstra8f4d37e2008-01-25 21:08:29 +01001392 entity_tick(cfs_rq, se, queued);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001393 }
1394}
1395
Ingo Molnar8eb172d2007-10-29 21:18:11 +01001396#define swap(a, b) do { typeof(a) tmp = (a); (a) = (b); (b) = tmp; } while (0)
Peter Zijlstra4d78e7b2007-10-15 17:00:04 +02001397
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001398/*
1399 * Share the fairness runtime between parent and child, thus the
1400 * total amount of pressure for CPU stays equal - new tasks
1401 * get a chance to run but frequent forkers are not allowed to
1402 * monopolize the CPU. Note: the parent runqueue is locked,
1403 * the child is not running yet.
1404 */
Ingo Molnaree0827d2007-08-09 11:16:49 +02001405static void task_new_fair(struct rq *rq, struct task_struct *p)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001406{
1407 struct cfs_rq *cfs_rq = task_cfs_rq(p);
Ingo Molnar429d43b2007-10-15 17:00:03 +02001408 struct sched_entity *se = &p->se, *curr = cfs_rq->curr;
Ingo Molnar00bf7bf2007-10-15 17:00:14 +02001409 int this_cpu = smp_processor_id();
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001410
1411 sched_info_queued(p);
1412
Ting Yang7109c4422007-08-28 12:53:24 +02001413 update_curr(cfs_rq);
Peter Zijlstraaeb73b02007-10-15 17:00:05 +02001414 place_entity(cfs_rq, se, 1);
Peter Zijlstra4d78e7b2007-10-15 17:00:04 +02001415
Srivatsa Vaddagiri3c90e6e2007-11-09 22:39:39 +01001416 /* 'curr' will be NULL if the child belongs to a different group */
Ingo Molnar00bf7bf2007-10-15 17:00:14 +02001417 if (sysctl_sched_child_runs_first && this_cpu == task_cpu(p) &&
Srivatsa Vaddagiri3c90e6e2007-11-09 22:39:39 +01001418 curr && curr->vruntime < se->vruntime) {
Dmitry Adamushko87fefa32007-10-15 17:00:08 +02001419 /*
Ingo Molnaredcb60a2007-10-15 17:00:08 +02001420 * Upon rescheduling, sched_class::put_prev_task() will place
1421 * 'current' within the tree based on its new key value.
1422 */
Peter Zijlstra4d78e7b2007-10-15 17:00:04 +02001423 swap(curr->vruntime, se->vruntime);
Peter Zijlstra4d78e7b2007-10-15 17:00:04 +02001424 }
1425
Srivatsa Vaddagirib9dca1e2007-10-17 16:55:11 +02001426 enqueue_task_fair(rq, p, 0);
Ingo Molnarbb61c212007-10-15 17:00:02 +02001427 resched_task(rq->curr);
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001428}
1429
Steven Rostedtcb469842008-01-25 21:08:22 +01001430/*
1431 * Priority of the task has changed. Check to see if we preempt
1432 * the current task.
1433 */
1434static void prio_changed_fair(struct rq *rq, struct task_struct *p,
1435 int oldprio, int running)
1436{
1437 /*
1438 * Reschedule if we are currently running on this runqueue and
1439 * our priority decreased, or if we are not currently running on
1440 * this runqueue and our priority is higher than the current's
1441 */
1442 if (running) {
1443 if (p->prio > oldprio)
1444 resched_task(rq->curr);
1445 } else
1446 check_preempt_curr(rq, p);
1447}
1448
1449/*
1450 * We switched to the sched_fair class.
1451 */
1452static void switched_to_fair(struct rq *rq, struct task_struct *p,
1453 int running)
1454{
1455 /*
1456 * We were most likely switched from sched_rt, so
1457 * kick off the schedule if running, otherwise just see
1458 * if we can still preempt the current task.
1459 */
1460 if (running)
1461 resched_task(rq->curr);
1462 else
1463 check_preempt_curr(rq, p);
1464}
1465
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +02001466/* Account for a task changing its policy or group.
1467 *
1468 * This routine is mostly called to set cfs_rq->curr field when a task
1469 * migrates between groups/classes.
1470 */
1471static void set_curr_task_fair(struct rq *rq)
1472{
1473 struct sched_entity *se = &rq->curr->se;
1474
1475 for_each_sched_entity(se)
1476 set_next_entity(cfs_rq_of(se), se);
1477}
1478
Peter Zijlstra810b3812008-02-29 15:21:01 -05001479#ifdef CONFIG_FAIR_GROUP_SCHED
1480static void moved_group_fair(struct task_struct *p)
1481{
1482 struct cfs_rq *cfs_rq = task_cfs_rq(p);
1483
1484 update_curr(cfs_rq);
1485 place_entity(cfs_rq, &p->se, 1);
1486}
1487#endif
1488
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001489/*
1490 * All the scheduling class methods:
1491 */
Ingo Molnar5522d5d2007-10-15 17:00:12 +02001492static const struct sched_class fair_sched_class = {
1493 .next = &idle_sched_class,
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001494 .enqueue_task = enqueue_task_fair,
1495 .dequeue_task = dequeue_task_fair,
1496 .yield_task = yield_task_fair,
Gregory Haskinse7693a32008-01-25 21:08:09 +01001497#ifdef CONFIG_SMP
1498 .select_task_rq = select_task_rq_fair,
1499#endif /* CONFIG_SMP */
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001500
Ingo Molnar2e09bf52007-10-15 17:00:05 +02001501 .check_preempt_curr = check_preempt_wakeup,
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001502
1503 .pick_next_task = pick_next_task_fair,
1504 .put_prev_task = put_prev_task_fair,
1505
Peter Williams681f3e62007-10-24 18:23:51 +02001506#ifdef CONFIG_SMP
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001507 .load_balance = load_balance_fair,
Peter Williamse1d14842007-10-24 18:23:51 +02001508 .move_one_task = move_one_task_fair,
Peter Williams681f3e62007-10-24 18:23:51 +02001509#endif
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001510
Srivatsa Vaddagiri83b699e2007-10-15 17:00:08 +02001511 .set_curr_task = set_curr_task_fair,
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001512 .task_tick = task_tick_fair,
1513 .task_new = task_new_fair,
Steven Rostedtcb469842008-01-25 21:08:22 +01001514
1515 .prio_changed = prio_changed_fair,
1516 .switched_to = switched_to_fair,
Peter Zijlstra810b3812008-02-29 15:21:01 -05001517
1518#ifdef CONFIG_FAIR_GROUP_SCHED
1519 .moved_group = moved_group_fair,
1520#endif
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001521};
1522
1523#ifdef CONFIG_SCHED_DEBUG
Ingo Molnar5cef9ec2007-08-09 11:16:47 +02001524static void print_cfs_stats(struct seq_file *m, int cpu)
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001525{
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001526 struct cfs_rq *cfs_rq;
1527
Peter Zijlstra5973e5b2008-01-25 21:08:34 +01001528 rcu_read_lock();
Ingo Molnarc3b64f12007-08-09 11:16:51 +02001529 for_each_leaf_cfs_rq(cpu_rq(cpu), cfs_rq)
Ingo Molnar5cef9ec2007-08-09 11:16:47 +02001530 print_cfs_rq(m, cpu, cfs_rq);
Peter Zijlstra5973e5b2008-01-25 21:08:34 +01001531 rcu_read_unlock();
Ingo Molnarbf0f6f22007-07-09 18:51:58 +02001532}
1533#endif