convert a few do_div users
[linux-block.git] / kernel / sched_debug.c
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1/*
2 * kernel/time/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/*
20 * This allows printing both to /proc/sched_debug and
21 * to the console
22 */
23#define SEQ_printf(m, x...) \
24 do { \
25 if (m) \
26 seq_printf(m, x); \
27 else \
28 printk(x); \
29 } while (0)
30
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31/*
32 * Ease the printing of nsec fields:
33 */
90b2628f 34static long long nsec_high(unsigned long long nsec)
ef83a571 35{
90b2628f 36 if ((long long)nsec < 0) {
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37 nsec = -nsec;
38 do_div(nsec, 1000000);
39 return -nsec;
40 }
41 do_div(nsec, 1000000);
42
43 return nsec;
44}
45
90b2628f 46static unsigned long nsec_low(unsigned long long nsec)
ef83a571 47{
90b2628f 48 if ((long long)nsec < 0)
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49 nsec = -nsec;
50
51 return do_div(nsec, 1000000);
52}
53
54#define SPLIT_NS(x) nsec_high(x), nsec_low(x)
55
43ae34cb 56static void
a48da48b 57print_task(struct seq_file *m, struct rq *rq, struct task_struct *p)
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58{
59 if (rq->curr == p)
60 SEQ_printf(m, "R");
61 else
62 SEQ_printf(m, " ");
63
ef83a571 64 SEQ_printf(m, "%15s %5d %9Ld.%06ld %9Ld %5d ",
43ae34cb 65 p->comm, p->pid,
ef83a571 66 SPLIT_NS(p->se.vruntime),
43ae34cb 67 (long long)(p->nvcsw + p->nivcsw),
6f605d83 68 p->prio);
6cfb0d5d 69#ifdef CONFIG_SCHEDSTATS
d19ca308 70 SEQ_printf(m, "%9Ld.%06ld %9Ld.%06ld %9Ld.%06ld",
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71 SPLIT_NS(p->se.vruntime),
72 SPLIT_NS(p->se.sum_exec_runtime),
73 SPLIT_NS(p->se.sum_sleep_runtime));
6cfb0d5d 74#else
d19ca308 75 SEQ_printf(m, "%15Ld %15Ld %15Ld.%06ld %15Ld.%06ld %15Ld.%06ld",
ef83a571 76 0LL, 0LL, 0LL, 0L, 0LL, 0L, 0LL, 0L);
6cfb0d5d 77#endif
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78
79#ifdef CONFIG_CGROUP_SCHED
80 {
81 char path[64];
82
83 cgroup_path(task_group(p)->css.cgroup, path, sizeof(path));
84 SEQ_printf(m, " %s", path);
85 }
86#endif
87 SEQ_printf(m, "\n");
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88}
89
a48da48b 90static void print_rq(struct seq_file *m, struct rq *rq, int rq_cpu)
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91{
92 struct task_struct *g, *p;
ab63a633 93 unsigned long flags;
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94
95 SEQ_printf(m,
96 "\nrunnable tasks:\n"
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97 " task PID tree-key switches prio"
98 " exec-runtime sum-exec sum-sleep\n"
1a75b94f 99 "------------------------------------------------------"
c86da3a3 100 "----------------------------------------------------\n");
43ae34cb 101
ab63a633 102 read_lock_irqsave(&tasklist_lock, flags);
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103
104 do_each_thread(g, p) {
105 if (!p->se.on_rq || task_cpu(p) != rq_cpu)
106 continue;
107
a48da48b 108 print_task(m, rq, p);
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109 } while_each_thread(g, p);
110
ab63a633 111 read_unlock_irqrestore(&tasklist_lock, flags);
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112}
113
5cef9eca 114void print_cfs_rq(struct seq_file *m, int cpu, struct cfs_rq *cfs_rq)
43ae34cb 115{
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116 s64 MIN_vruntime = -1, min_vruntime, max_vruntime = -1,
117 spread, rq0_min_vruntime, spread0;
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118 struct rq *rq = &per_cpu(runqueues, cpu);
119 struct sched_entity *last;
120 unsigned long flags;
121
486fdae2 122#if !defined(CONFIG_CGROUP_SCHED) || !defined(CONFIG_USER_SCHED)
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123 SEQ_printf(m, "\ncfs_rq[%d]:\n", cpu);
124#else
125 char path[128] = "";
126 struct cgroup *cgroup = NULL;
127 struct task_group *tg = cfs_rq->tg;
128
129 if (tg)
130 cgroup = tg->css.cgroup;
131
132 if (cgroup)
133 cgroup_path(cgroup, path, sizeof(path));
134
135 SEQ_printf(m, "\ncfs_rq[%d]:%s\n", cpu, path);
136#endif
43ae34cb 137
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138 SEQ_printf(m, " .%-30s: %Ld.%06ld\n", "exec_clock",
139 SPLIT_NS(cfs_rq->exec_clock));
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140
141 spin_lock_irqsave(&rq->lock, flags);
142 if (cfs_rq->rb_leftmost)
143 MIN_vruntime = (__pick_next_entity(cfs_rq))->vruntime;
144 last = __pick_last_entity(cfs_rq);
145 if (last)
146 max_vruntime = last->vruntime;
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147 min_vruntime = rq->cfs.min_vruntime;
148 rq0_min_vruntime = per_cpu(runqueues, 0).cfs.min_vruntime;
67e12eac 149 spin_unlock_irqrestore(&rq->lock, flags);
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150 SEQ_printf(m, " .%-30s: %Ld.%06ld\n", "MIN_vruntime",
151 SPLIT_NS(MIN_vruntime));
152 SEQ_printf(m, " .%-30s: %Ld.%06ld\n", "min_vruntime",
153 SPLIT_NS(min_vruntime));
154 SEQ_printf(m, " .%-30s: %Ld.%06ld\n", "max_vruntime",
155 SPLIT_NS(max_vruntime));
67e12eac 156 spread = max_vruntime - MIN_vruntime;
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157 SEQ_printf(m, " .%-30s: %Ld.%06ld\n", "spread",
158 SPLIT_NS(spread));
86d9560c 159 spread0 = min_vruntime - rq0_min_vruntime;
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160 SEQ_printf(m, " .%-30s: %Ld.%06ld\n", "spread0",
161 SPLIT_NS(spread0));
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162 SEQ_printf(m, " .%-30s: %ld\n", "nr_running", cfs_rq->nr_running);
163 SEQ_printf(m, " .%-30s: %ld\n", "load", cfs_rq->load.weight);
fdd71d13 164#ifdef CONFIG_SCHEDSTATS
480b9434 165 SEQ_printf(m, " .%-30s: %d\n", "bkl_count",
2d72376b 166 rq->bkl_count);
fdd71d13 167#endif
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168 SEQ_printf(m, " .%-30s: %ld\n", "nr_spread_over",
169 cfs_rq->nr_spread_over);
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170#ifdef CONFIG_FAIR_GROUP_SCHED
171#ifdef CONFIG_SMP
172 SEQ_printf(m, " .%-30s: %lu\n", "shares", cfs_rq->shares);
173#endif
174#endif
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175}
176
a48da48b 177static void print_cpu(struct seq_file *m, int cpu)
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178{
179 struct rq *rq = &per_cpu(runqueues, cpu);
180
181#ifdef CONFIG_X86
182 {
183 unsigned int freq = cpu_khz ? : 1;
184
185 SEQ_printf(m, "\ncpu#%d, %u.%03u MHz\n",
186 cpu, freq / 1000, (freq % 1000));
187 }
188#else
189 SEQ_printf(m, "\ncpu#%d\n", cpu);
190#endif
191
192#define P(x) \
193 SEQ_printf(m, " .%-30s: %Ld\n", #x, (long long)(rq->x))
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194#define PN(x) \
195 SEQ_printf(m, " .%-30s: %Ld.%06ld\n", #x, SPLIT_NS(rq->x))
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196
197 P(nr_running);
198 SEQ_printf(m, " .%-30s: %lu\n", "load",
495eca49 199 rq->load.weight);
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200 P(nr_switches);
201 P(nr_load_updates);
202 P(nr_uninterruptible);
203 SEQ_printf(m, " .%-30s: %lu\n", "jiffies", jiffies);
ef83a571 204 PN(next_balance);
43ae34cb 205 P(curr->pid);
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206 PN(clock);
207 PN(idle_clock);
208 PN(prev_clock_raw);
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209 P(clock_warps);
210 P(clock_overflows);
cc203d24 211 P(clock_underflows);
2aa44d05 212 P(clock_deep_idle_events);
ef83a571 213 PN(clock_max_delta);
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214 P(cpu_load[0]);
215 P(cpu_load[1]);
216 P(cpu_load[2]);
217 P(cpu_load[3]);
218 P(cpu_load[4]);
219#undef P
ef83a571 220#undef PN
43ae34cb 221
5cef9eca 222 print_cfs_stats(m, cpu);
43ae34cb 223
a48da48b 224 print_rq(m, rq, cpu);
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225}
226
227static int sched_debug_show(struct seq_file *m, void *v)
228{
229 u64 now = ktime_to_ns(ktime_get());
230 int cpu;
231
f7b9329e 232 SEQ_printf(m, "Sched Debug Version: v0.07, %s %.*s\n",
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233 init_utsname()->release,
234 (int)strcspn(init_utsname()->version, " "),
235 init_utsname()->version);
236
ef83a571 237 SEQ_printf(m, "now at %Lu.%06ld msecs\n", SPLIT_NS(now));
43ae34cb 238
1aa4731e 239#define P(x) \
d822cece 240 SEQ_printf(m, " .%-40s: %Ld\n", #x, (long long)(x))
1aa4731e 241#define PN(x) \
d822cece 242 SEQ_printf(m, " .%-40s: %Ld.%06ld\n", #x, SPLIT_NS(x))
1aa4731e 243 PN(sysctl_sched_latency);
b2be5e96 244 PN(sysctl_sched_min_granularity);
1aa4731e 245 PN(sysctl_sched_wakeup_granularity);
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246 PN(sysctl_sched_child_runs_first);
247 P(sysctl_sched_features);
248#undef PN
249#undef P
250
43ae34cb 251 for_each_online_cpu(cpu)
a48da48b 252 print_cpu(m, cpu);
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253
254 SEQ_printf(m, "\n");
255
256 return 0;
257}
258
f3373461 259static void sysrq_sched_debug_show(void)
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260{
261 sched_debug_show(NULL, NULL);
262}
263
264static int sched_debug_open(struct inode *inode, struct file *filp)
265{
266 return single_open(filp, sched_debug_show, NULL);
267}
268
0dbee3a6 269static const struct file_operations sched_debug_fops = {
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270 .open = sched_debug_open,
271 .read = seq_read,
272 .llseek = seq_lseek,
5ea473a1 273 .release = single_release,
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274};
275
276static int __init init_sched_debug_procfs(void)
277{
278 struct proc_dir_entry *pe;
279
c33fff0a 280 pe = proc_create("sched_debug", 0644, NULL, &sched_debug_fops);
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281 if (!pe)
282 return -ENOMEM;
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283 return 0;
284}
285
286__initcall(init_sched_debug_procfs);
287
288void proc_sched_show_task(struct task_struct *p, struct seq_file *m)
289{
cc367732 290 unsigned long nr_switches;
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291 unsigned long flags;
292 int num_threads = 1;
293
294 rcu_read_lock();
295 if (lock_task_sighand(p, &flags)) {
296 num_threads = atomic_read(&p->signal->count);
297 unlock_task_sighand(p, &flags);
298 }
299 rcu_read_unlock();
300
301 SEQ_printf(m, "%s (%d, #threads: %d)\n", p->comm, p->pid, num_threads);
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302 SEQ_printf(m,
303 "---------------------------------------------------------\n");
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304#define __P(F) \
305 SEQ_printf(m, "%-35s:%21Ld\n", #F, (long long)F)
43ae34cb 306#define P(F) \
2d92f227 307 SEQ_printf(m, "%-35s:%21Ld\n", #F, (long long)p->F)
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308#define __PN(F) \
309 SEQ_printf(m, "%-35s:%14Ld.%06ld\n", #F, SPLIT_NS((long long)F))
ef83a571 310#define PN(F) \
2d92f227 311 SEQ_printf(m, "%-35s:%14Ld.%06ld\n", #F, SPLIT_NS((long long)p->F))
43ae34cb 312
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313 PN(se.exec_start);
314 PN(se.vruntime);
315 PN(se.sum_exec_runtime);
4ae7d5ce 316 PN(se.avg_overlap);
6cfb0d5d 317
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318 nr_switches = p->nvcsw + p->nivcsw;
319
6cfb0d5d 320#ifdef CONFIG_SCHEDSTATS
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321 PN(se.wait_start);
322 PN(se.sleep_start);
323 PN(se.block_start);
324 PN(se.sleep_max);
325 PN(se.block_max);
326 PN(se.exec_max);
327 PN(se.slice_max);
328 PN(se.wait_max);
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329 PN(se.wait_sum);
330 P(se.wait_count);
2d72376b 331 P(sched_info.bkl_count);
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332 P(se.nr_migrations);
333 P(se.nr_migrations_cold);
334 P(se.nr_failed_migrations_affine);
335 P(se.nr_failed_migrations_running);
336 P(se.nr_failed_migrations_hot);
337 P(se.nr_forced_migrations);
338 P(se.nr_forced2_migrations);
339 P(se.nr_wakeups);
340 P(se.nr_wakeups_sync);
341 P(se.nr_wakeups_migrate);
342 P(se.nr_wakeups_local);
343 P(se.nr_wakeups_remote);
344 P(se.nr_wakeups_affine);
345 P(se.nr_wakeups_affine_attempts);
346 P(se.nr_wakeups_passive);
347 P(se.nr_wakeups_idle);
348
349 {
350 u64 avg_atom, avg_per_cpu;
351
352 avg_atom = p->se.sum_exec_runtime;
353 if (nr_switches)
354 do_div(avg_atom, nr_switches);
355 else
356 avg_atom = -1LL;
357
358 avg_per_cpu = p->se.sum_exec_runtime;
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359 if (p->se.nr_migrations) {
360 avg_per_cpu = div64_64(avg_per_cpu,
361 p->se.nr_migrations);
362 } else {
cc367732 363 avg_per_cpu = -1LL;
c1a89740 364 }
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365
366 __PN(avg_atom);
367 __PN(avg_per_cpu);
368 }
6cfb0d5d 369#endif
cc367732 370 __P(nr_switches);
2d92f227 371 SEQ_printf(m, "%-35s:%21Ld\n",
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372 "nr_voluntary_switches", (long long)p->nvcsw);
373 SEQ_printf(m, "%-35s:%21Ld\n",
374 "nr_involuntary_switches", (long long)p->nivcsw);
375
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376 P(se.load.weight);
377 P(policy);
378 P(prio);
ef83a571 379#undef PN
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380#undef __PN
381#undef P
382#undef __P
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383
384 {
385 u64 t0, t1;
386
387 t0 = sched_clock();
388 t1 = sched_clock();
2d92f227 389 SEQ_printf(m, "%-35s:%21Ld\n",
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390 "clock-delta", (long long)(t1-t0));
391 }
392}
393
394void proc_sched_set_task(struct task_struct *p)
395{
6cfb0d5d 396#ifdef CONFIG_SCHEDSTATS
cc367732 397 p->se.wait_max = 0;
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398 p->se.wait_sum = 0;
399 p->se.wait_count = 0;
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400 p->se.sleep_max = 0;
401 p->se.sum_sleep_runtime = 0;
402 p->se.block_max = 0;
403 p->se.exec_max = 0;
404 p->se.slice_max = 0;
405 p->se.nr_migrations = 0;
406 p->se.nr_migrations_cold = 0;
407 p->se.nr_failed_migrations_affine = 0;
408 p->se.nr_failed_migrations_running = 0;
409 p->se.nr_failed_migrations_hot = 0;
410 p->se.nr_forced_migrations = 0;
411 p->se.nr_forced2_migrations = 0;
412 p->se.nr_wakeups = 0;
413 p->se.nr_wakeups_sync = 0;
414 p->se.nr_wakeups_migrate = 0;
415 p->se.nr_wakeups_local = 0;
416 p->se.nr_wakeups_remote = 0;
417 p->se.nr_wakeups_affine = 0;
418 p->se.nr_wakeups_affine_attempts = 0;
419 p->se.nr_wakeups_passive = 0;
420 p->se.nr_wakeups_idle = 0;
421 p->sched_info.bkl_count = 0;
6cfb0d5d 422#endif
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423 p->se.sum_exec_runtime = 0;
424 p->se.prev_sum_exec_runtime = 0;
425 p->nvcsw = 0;
426 p->nivcsw = 0;
43ae34cb 427}