Btrfs: fix btrfs_destroy_marked_extents
[cascardo/linux.git] / kernel / sched / debug.c
1 /*
2  * kernel/sched/debug.c
3  *
4  * Print the CFS rbtree
5  *
6  * Copyright(C) 2007, Red Hat, Inc., Ingo Molnar
7  *
8  * This program is free software; you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License version 2 as
10  * published by the Free Software Foundation.
11  */
12
13 #include <linux/proc_fs.h>
14 #include <linux/sched.h>
15 #include <linux/seq_file.h>
16 #include <linux/kallsyms.h>
17 #include <linux/utsname.h>
18
19 #include "sched.h"
20
21 static DEFINE_SPINLOCK(sched_debug_lock);
22
23 /*
24  * This allows printing both to /proc/sched_debug and
25  * to the console
26  */
27 #define SEQ_printf(m, x...)                     \
28  do {                                           \
29         if (m)                                  \
30                 seq_printf(m, x);               \
31         else                                    \
32                 printk(x);                      \
33  } while (0)
34
35 /*
36  * Ease the printing of nsec fields:
37  */
38 static long long nsec_high(unsigned long long nsec)
39 {
40         if ((long long)nsec < 0) {
41                 nsec = -nsec;
42                 do_div(nsec, 1000000);
43                 return -nsec;
44         }
45         do_div(nsec, 1000000);
46
47         return nsec;
48 }
49
50 static unsigned long nsec_low(unsigned long long nsec)
51 {
52         if ((long long)nsec < 0)
53                 nsec = -nsec;
54
55         return do_div(nsec, 1000000);
56 }
57
58 #define SPLIT_NS(x) nsec_high(x), nsec_low(x)
59
60 #ifdef CONFIG_FAIR_GROUP_SCHED
61 static void print_cfs_group_stats(struct seq_file *m, int cpu, struct task_group *tg)
62 {
63         struct sched_entity *se = tg->se[cpu];
64         if (!se)
65                 return;
66
67 #define P(F) \
68         SEQ_printf(m, "  .%-30s: %lld\n", #F, (long long)F)
69 #define PN(F) \
70         SEQ_printf(m, "  .%-30s: %lld.%06ld\n", #F, SPLIT_NS((long long)F))
71
72         PN(se->exec_start);
73         PN(se->vruntime);
74         PN(se->sum_exec_runtime);
75 #ifdef CONFIG_SCHEDSTATS
76         PN(se->statistics.wait_start);
77         PN(se->statistics.sleep_start);
78         PN(se->statistics.block_start);
79         PN(se->statistics.sleep_max);
80         PN(se->statistics.block_max);
81         PN(se->statistics.exec_max);
82         PN(se->statistics.slice_max);
83         PN(se->statistics.wait_max);
84         PN(se->statistics.wait_sum);
85         P(se->statistics.wait_count);
86 #endif
87         P(se->load.weight);
88 #undef PN
89 #undef P
90 }
91 #endif
92
93 #ifdef CONFIG_CGROUP_SCHED
94 static char group_path[PATH_MAX];
95
96 static char *task_group_path(struct task_group *tg)
97 {
98         if (autogroup_path(tg, group_path, PATH_MAX))
99                 return group_path;
100
101         /*
102          * May be NULL if the underlying cgroup isn't fully-created yet
103          */
104         if (!tg->css.cgroup) {
105                 group_path[0] = '\0';
106                 return group_path;
107         }
108         cgroup_path(tg->css.cgroup, group_path, PATH_MAX);
109         return group_path;
110 }
111 #endif
112
113 static void
114 print_task(struct seq_file *m, struct rq *rq, struct task_struct *p)
115 {
116         if (rq->curr == p)
117                 SEQ_printf(m, "R");
118         else
119                 SEQ_printf(m, " ");
120
121         SEQ_printf(m, "%15s %5d %9Ld.%06ld %9Ld %5d ",
122                 p->comm, p->pid,
123                 SPLIT_NS(p->se.vruntime),
124                 (long long)(p->nvcsw + p->nivcsw),
125                 p->prio);
126 #ifdef CONFIG_SCHEDSTATS
127         SEQ_printf(m, "%9Ld.%06ld %9Ld.%06ld %9Ld.%06ld",
128                 SPLIT_NS(p->se.vruntime),
129                 SPLIT_NS(p->se.sum_exec_runtime),
130                 SPLIT_NS(p->se.statistics.sum_sleep_runtime));
131 #else
132         SEQ_printf(m, "%15Ld %15Ld %15Ld.%06ld %15Ld.%06ld %15Ld.%06ld",
133                 0LL, 0LL, 0LL, 0L, 0LL, 0L, 0LL, 0L);
134 #endif
135 #ifdef CONFIG_CGROUP_SCHED
136         SEQ_printf(m, " %s", task_group_path(task_group(p)));
137 #endif
138
139         SEQ_printf(m, "\n");
140 }
141
142 static void print_rq(struct seq_file *m, struct rq *rq, int rq_cpu)
143 {
144         struct task_struct *g, *p;
145         unsigned long flags;
146
147         SEQ_printf(m,
148         "\nrunnable tasks:\n"
149         "            task   PID         tree-key  switches  prio"
150         "     exec-runtime         sum-exec        sum-sleep\n"
151         "------------------------------------------------------"
152         "----------------------------------------------------\n");
153
154         read_lock_irqsave(&tasklist_lock, flags);
155
156         do_each_thread(g, p) {
157                 if (!p->on_rq || task_cpu(p) != rq_cpu)
158                         continue;
159
160                 print_task(m, rq, p);
161         } while_each_thread(g, p);
162
163         read_unlock_irqrestore(&tasklist_lock, flags);
164 }
165
166 void print_cfs_rq(struct seq_file *m, int cpu, struct cfs_rq *cfs_rq)
167 {
168         s64 MIN_vruntime = -1, min_vruntime, max_vruntime = -1,
169                 spread, rq0_min_vruntime, spread0;
170         struct rq *rq = cpu_rq(cpu);
171         struct sched_entity *last;
172         unsigned long flags;
173
174 #ifdef CONFIG_FAIR_GROUP_SCHED
175         SEQ_printf(m, "\ncfs_rq[%d]:%s\n", cpu, task_group_path(cfs_rq->tg));
176 #else
177         SEQ_printf(m, "\ncfs_rq[%d]:\n", cpu);
178 #endif
179         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", "exec_clock",
180                         SPLIT_NS(cfs_rq->exec_clock));
181
182         raw_spin_lock_irqsave(&rq->lock, flags);
183         if (cfs_rq->rb_leftmost)
184                 MIN_vruntime = (__pick_first_entity(cfs_rq))->vruntime;
185         last = __pick_last_entity(cfs_rq);
186         if (last)
187                 max_vruntime = last->vruntime;
188         min_vruntime = cfs_rq->min_vruntime;
189         rq0_min_vruntime = cpu_rq(0)->cfs.min_vruntime;
190         raw_spin_unlock_irqrestore(&rq->lock, flags);
191         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", "MIN_vruntime",
192                         SPLIT_NS(MIN_vruntime));
193         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", "min_vruntime",
194                         SPLIT_NS(min_vruntime));
195         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", "max_vruntime",
196                         SPLIT_NS(max_vruntime));
197         spread = max_vruntime - MIN_vruntime;
198         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", "spread",
199                         SPLIT_NS(spread));
200         spread0 = min_vruntime - rq0_min_vruntime;
201         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", "spread0",
202                         SPLIT_NS(spread0));
203         SEQ_printf(m, "  .%-30s: %d\n", "nr_spread_over",
204                         cfs_rq->nr_spread_over);
205         SEQ_printf(m, "  .%-30s: %ld\n", "nr_running", cfs_rq->nr_running);
206         SEQ_printf(m, "  .%-30s: %ld\n", "load", cfs_rq->load.weight);
207 #ifdef CONFIG_FAIR_GROUP_SCHED
208 #ifdef CONFIG_SMP
209         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", "load_avg",
210                         SPLIT_NS(cfs_rq->load_avg));
211         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", "load_period",
212                         SPLIT_NS(cfs_rq->load_period));
213         SEQ_printf(m, "  .%-30s: %ld\n", "load_contrib",
214                         cfs_rq->load_contribution);
215         SEQ_printf(m, "  .%-30s: %d\n", "load_tg",
216                         atomic_read(&cfs_rq->tg->load_weight));
217 #endif
218
219         print_cfs_group_stats(m, cpu, cfs_rq->tg);
220 #endif
221 }
222
223 void print_rt_rq(struct seq_file *m, int cpu, struct rt_rq *rt_rq)
224 {
225 #ifdef CONFIG_RT_GROUP_SCHED
226         SEQ_printf(m, "\nrt_rq[%d]:%s\n", cpu, task_group_path(rt_rq->tg));
227 #else
228         SEQ_printf(m, "\nrt_rq[%d]:\n", cpu);
229 #endif
230
231 #define P(x) \
232         SEQ_printf(m, "  .%-30s: %Ld\n", #x, (long long)(rt_rq->x))
233 #define PN(x) \
234         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", #x, SPLIT_NS(rt_rq->x))
235
236         P(rt_nr_running);
237         P(rt_throttled);
238         PN(rt_time);
239         PN(rt_runtime);
240
241 #undef PN
242 #undef P
243 }
244
245 extern __read_mostly int sched_clock_running;
246
247 static void print_cpu(struct seq_file *m, int cpu)
248 {
249         struct rq *rq = cpu_rq(cpu);
250         unsigned long flags;
251
252 #ifdef CONFIG_X86
253         {
254                 unsigned int freq = cpu_khz ? : 1;
255
256                 SEQ_printf(m, "\ncpu#%d, %u.%03u MHz\n",
257                            cpu, freq / 1000, (freq % 1000));
258         }
259 #else
260         SEQ_printf(m, "\ncpu#%d\n", cpu);
261 #endif
262
263 #define P(x) \
264         SEQ_printf(m, "  .%-30s: %Ld\n", #x, (long long)(rq->x))
265 #define PN(x) \
266         SEQ_printf(m, "  .%-30s: %Ld.%06ld\n", #x, SPLIT_NS(rq->x))
267
268         P(nr_running);
269         SEQ_printf(m, "  .%-30s: %lu\n", "load",
270                    rq->load.weight);
271         P(nr_switches);
272         P(nr_load_updates);
273         P(nr_uninterruptible);
274         PN(next_balance);
275         P(curr->pid);
276         PN(clock);
277         P(cpu_load[0]);
278         P(cpu_load[1]);
279         P(cpu_load[2]);
280         P(cpu_load[3]);
281         P(cpu_load[4]);
282 #undef P
283 #undef PN
284
285 #ifdef CONFIG_SCHEDSTATS
286 #define P(n) SEQ_printf(m, "  .%-30s: %d\n", #n, rq->n);
287 #define P64(n) SEQ_printf(m, "  .%-30s: %Ld\n", #n, rq->n);
288
289         P(yld_count);
290
291         P(sched_count);
292         P(sched_goidle);
293 #ifdef CONFIG_SMP
294         P64(avg_idle);
295 #endif
296
297         P(ttwu_count);
298         P(ttwu_local);
299
300 #undef P
301 #undef P64
302 #endif
303         spin_lock_irqsave(&sched_debug_lock, flags);
304         print_cfs_stats(m, cpu);
305         print_rt_stats(m, cpu);
306
307         rcu_read_lock();
308         print_rq(m, rq, cpu);
309         rcu_read_unlock();
310         spin_unlock_irqrestore(&sched_debug_lock, flags);
311 }
312
313 static const char *sched_tunable_scaling_names[] = {
314         "none",
315         "logaritmic",
316         "linear"
317 };
318
319 static int sched_debug_show(struct seq_file *m, void *v)
320 {
321         u64 ktime, sched_clk, cpu_clk;
322         unsigned long flags;
323         int cpu;
324
325         local_irq_save(flags);
326         ktime = ktime_to_ns(ktime_get());
327         sched_clk = sched_clock();
328         cpu_clk = local_clock();
329         local_irq_restore(flags);
330
331         SEQ_printf(m, "Sched Debug Version: v0.10, %s %.*s\n",
332                 init_utsname()->release,
333                 (int)strcspn(init_utsname()->version, " "),
334                 init_utsname()->version);
335
336 #define P(x) \
337         SEQ_printf(m, "%-40s: %Ld\n", #x, (long long)(x))
338 #define PN(x) \
339         SEQ_printf(m, "%-40s: %Ld.%06ld\n", #x, SPLIT_NS(x))
340         PN(ktime);
341         PN(sched_clk);
342         PN(cpu_clk);
343         P(jiffies);
344 #ifdef CONFIG_HAVE_UNSTABLE_SCHED_CLOCK
345         P(sched_clock_stable);
346 #endif
347 #undef PN
348 #undef P
349
350         SEQ_printf(m, "\n");
351         SEQ_printf(m, "sysctl_sched\n");
352
353 #define P(x) \
354         SEQ_printf(m, "  .%-40s: %Ld\n", #x, (long long)(x))
355 #define PN(x) \
356         SEQ_printf(m, "  .%-40s: %Ld.%06ld\n", #x, SPLIT_NS(x))
357         PN(sysctl_sched_latency);
358         PN(sysctl_sched_min_granularity);
359         PN(sysctl_sched_wakeup_granularity);
360         P(sysctl_sched_child_runs_first);
361         P(sysctl_sched_features);
362 #undef PN
363 #undef P
364
365         SEQ_printf(m, "  .%-40s: %d (%s)\n", "sysctl_sched_tunable_scaling",
366                 sysctl_sched_tunable_scaling,
367                 sched_tunable_scaling_names[sysctl_sched_tunable_scaling]);
368
369         for_each_online_cpu(cpu)
370                 print_cpu(m, cpu);
371
372         SEQ_printf(m, "\n");
373
374         return 0;
375 }
376
377 void sysrq_sched_debug_show(void)
378 {
379         sched_debug_show(NULL, NULL);
380 }
381
382 static int sched_debug_open(struct inode *inode, struct file *filp)
383 {
384         return single_open(filp, sched_debug_show, NULL);
385 }
386
387 static const struct file_operations sched_debug_fops = {
388         .open           = sched_debug_open,
389         .read           = seq_read,
390         .llseek         = seq_lseek,
391         .release        = single_release,
392 };
393
394 static int __init init_sched_debug_procfs(void)
395 {
396         struct proc_dir_entry *pe;
397
398         pe = proc_create("sched_debug", 0444, NULL, &sched_debug_fops);
399         if (!pe)
400                 return -ENOMEM;
401         return 0;
402 }
403
404 __initcall(init_sched_debug_procfs);
405
406 void proc_sched_show_task(struct task_struct *p, struct seq_file *m)
407 {
408         unsigned long nr_switches;
409
410         SEQ_printf(m, "%s (%d, #threads: %d)\n", p->comm, p->pid,
411                                                 get_nr_threads(p));
412         SEQ_printf(m,
413                 "---------------------------------------------------------\n");
414 #define __P(F) \
415         SEQ_printf(m, "%-35s:%21Ld\n", #F, (long long)F)
416 #define P(F) \
417         SEQ_printf(m, "%-35s:%21Ld\n", #F, (long long)p->F)
418 #define __PN(F) \
419         SEQ_printf(m, "%-35s:%14Ld.%06ld\n", #F, SPLIT_NS((long long)F))
420 #define PN(F) \
421         SEQ_printf(m, "%-35s:%14Ld.%06ld\n", #F, SPLIT_NS((long long)p->F))
422
423         PN(se.exec_start);
424         PN(se.vruntime);
425         PN(se.sum_exec_runtime);
426
427         nr_switches = p->nvcsw + p->nivcsw;
428
429 #ifdef CONFIG_SCHEDSTATS
430         PN(se.statistics.wait_start);
431         PN(se.statistics.sleep_start);
432         PN(se.statistics.block_start);
433         PN(se.statistics.sleep_max);
434         PN(se.statistics.block_max);
435         PN(se.statistics.exec_max);
436         PN(se.statistics.slice_max);
437         PN(se.statistics.wait_max);
438         PN(se.statistics.wait_sum);
439         P(se.statistics.wait_count);
440         PN(se.statistics.iowait_sum);
441         P(se.statistics.iowait_count);
442         P(se.nr_migrations);
443         P(se.statistics.nr_migrations_cold);
444         P(se.statistics.nr_failed_migrations_affine);
445         P(se.statistics.nr_failed_migrations_running);
446         P(se.statistics.nr_failed_migrations_hot);
447         P(se.statistics.nr_forced_migrations);
448         P(se.statistics.nr_wakeups);
449         P(se.statistics.nr_wakeups_sync);
450         P(se.statistics.nr_wakeups_migrate);
451         P(se.statistics.nr_wakeups_local);
452         P(se.statistics.nr_wakeups_remote);
453         P(se.statistics.nr_wakeups_affine);
454         P(se.statistics.nr_wakeups_affine_attempts);
455         P(se.statistics.nr_wakeups_passive);
456         P(se.statistics.nr_wakeups_idle);
457
458         {
459                 u64 avg_atom, avg_per_cpu;
460
461                 avg_atom = p->se.sum_exec_runtime;
462                 if (nr_switches)
463                         do_div(avg_atom, nr_switches);
464                 else
465                         avg_atom = -1LL;
466
467                 avg_per_cpu = p->se.sum_exec_runtime;
468                 if (p->se.nr_migrations) {
469                         avg_per_cpu = div64_u64(avg_per_cpu,
470                                                 p->se.nr_migrations);
471                 } else {
472                         avg_per_cpu = -1LL;
473                 }
474
475                 __PN(avg_atom);
476                 __PN(avg_per_cpu);
477         }
478 #endif
479         __P(nr_switches);
480         SEQ_printf(m, "%-35s:%21Ld\n",
481                    "nr_voluntary_switches", (long long)p->nvcsw);
482         SEQ_printf(m, "%-35s:%21Ld\n",
483                    "nr_involuntary_switches", (long long)p->nivcsw);
484
485         P(se.load.weight);
486         P(policy);
487         P(prio);
488 #undef PN
489 #undef __PN
490 #undef P
491 #undef __P
492
493         {
494                 unsigned int this_cpu = raw_smp_processor_id();
495                 u64 t0, t1;
496
497                 t0 = cpu_clock(this_cpu);
498                 t1 = cpu_clock(this_cpu);
499                 SEQ_printf(m, "%-35s:%21Ld\n",
500                            "clock-delta", (long long)(t1-t0));
501         }
502 }
503
504 void proc_sched_set_task(struct task_struct *p)
505 {
506 #ifdef CONFIG_SCHEDSTATS
507         memset(&p->se.statistics, 0, sizeof(p->se.statistics));
508 #endif
509 }