Merge branch 'linus' into x86/microcode, to pick up merge window changes
[cascardo/linux.git] / tools / perf / bench / futex-wake-parallel.c
1 /*
2  * Copyright (C) 2015 Davidlohr Bueso.
3  *
4  * Block a bunch of threads and let parallel waker threads wakeup an
5  * equal amount of them. The program output reflects the avg latency
6  * for each individual thread to service its share of work. Ultimately
7  * it can be used to measure futex_wake() changes.
8  */
9
10 /* For the CLR_() macros */
11 #include <pthread.h>
12
13 #include <signal.h>
14 #include "../util/stat.h"
15 #include <subcmd/parse-options.h>
16 #include <linux/compiler.h>
17 #include <linux/kernel.h>
18 #include <errno.h>
19 #include "bench.h"
20 #include "futex.h"
21
22 #include <err.h>
23 #include <stdlib.h>
24 #include <sys/time.h>
25
26 struct thread_data {
27         pthread_t worker;
28         unsigned int nwoken;
29         struct timeval runtime;
30 };
31
32 static unsigned int nwakes = 1;
33
34 /* all threads will block on the same futex -- hash bucket chaos ;) */
35 static u_int32_t futex = 0;
36
37 static pthread_t *blocked_worker;
38 static bool done = false, silent = false, fshared = false;
39 static unsigned int nblocked_threads = 0, nwaking_threads = 0;
40 static pthread_mutex_t thread_lock;
41 static pthread_cond_t thread_parent, thread_worker;
42 static struct stats waketime_stats, wakeup_stats;
43 static unsigned int ncpus, threads_starting;
44 static int futex_flag = 0;
45
46 static const struct option options[] = {
47         OPT_UINTEGER('t', "threads", &nblocked_threads, "Specify amount of threads"),
48         OPT_UINTEGER('w', "nwakers", &nwaking_threads, "Specify amount of waking threads"),
49         OPT_BOOLEAN( 's', "silent",  &silent,   "Silent mode: do not display data/details"),
50         OPT_BOOLEAN( 'S', "shared",  &fshared,  "Use shared futexes instead of private ones"),
51         OPT_END()
52 };
53
54 static const char * const bench_futex_wake_parallel_usage[] = {
55         "perf bench futex wake-parallel <options>",
56         NULL
57 };
58
59 static void *waking_workerfn(void *arg)
60 {
61         struct thread_data *waker = (struct thread_data *) arg;
62         struct timeval start, end;
63
64         gettimeofday(&start, NULL);
65
66         waker->nwoken = futex_wake(&futex, nwakes, futex_flag);
67         if (waker->nwoken != nwakes)
68                 warnx("couldn't wakeup all tasks (%d/%d)",
69                       waker->nwoken, nwakes);
70
71         gettimeofday(&end, NULL);
72         timersub(&end, &start, &waker->runtime);
73
74         pthread_exit(NULL);
75         return NULL;
76 }
77
78 static void wakeup_threads(struct thread_data *td, pthread_attr_t thread_attr)
79 {
80         unsigned int i;
81
82         pthread_attr_setdetachstate(&thread_attr, PTHREAD_CREATE_JOINABLE);
83
84         /* create and block all threads */
85         for (i = 0; i < nwaking_threads; i++) {
86                 /*
87                  * Thread creation order will impact per-thread latency
88                  * as it will affect the order to acquire the hb spinlock.
89                  * For now let the scheduler decide.
90                  */
91                 if (pthread_create(&td[i].worker, &thread_attr,
92                                    waking_workerfn, (void *)&td[i]))
93                         err(EXIT_FAILURE, "pthread_create");
94         }
95
96         for (i = 0; i < nwaking_threads; i++)
97                 if (pthread_join(td[i].worker, NULL))
98                         err(EXIT_FAILURE, "pthread_join");
99 }
100
101 static void *blocked_workerfn(void *arg __maybe_unused)
102 {
103         pthread_mutex_lock(&thread_lock);
104         threads_starting--;
105         if (!threads_starting)
106                 pthread_cond_signal(&thread_parent);
107         pthread_cond_wait(&thread_worker, &thread_lock);
108         pthread_mutex_unlock(&thread_lock);
109
110         while (1) { /* handle spurious wakeups */
111                 if (futex_wait(&futex, 0, NULL, futex_flag) != EINTR)
112                         break;
113         }
114
115         pthread_exit(NULL);
116         return NULL;
117 }
118
119 static void block_threads(pthread_t *w, pthread_attr_t thread_attr)
120 {
121         cpu_set_t cpu;
122         unsigned int i;
123
124         threads_starting = nblocked_threads;
125
126         /* create and block all threads */
127         for (i = 0; i < nblocked_threads; i++) {
128                 CPU_ZERO(&cpu);
129                 CPU_SET(i % ncpus, &cpu);
130
131                 if (pthread_attr_setaffinity_np(&thread_attr, sizeof(cpu_set_t), &cpu))
132                         err(EXIT_FAILURE, "pthread_attr_setaffinity_np");
133
134                 if (pthread_create(&w[i], &thread_attr, blocked_workerfn, NULL))
135                         err(EXIT_FAILURE, "pthread_create");
136         }
137 }
138
139 static void print_run(struct thread_data *waking_worker, unsigned int run_num)
140 {
141         unsigned int i, wakeup_avg;
142         double waketime_avg, waketime_stddev;
143         struct stats __waketime_stats, __wakeup_stats;
144
145         init_stats(&__wakeup_stats);
146         init_stats(&__waketime_stats);
147
148         for (i = 0; i < nwaking_threads; i++) {
149                 update_stats(&__waketime_stats, waking_worker[i].runtime.tv_usec);
150                 update_stats(&__wakeup_stats, waking_worker[i].nwoken);
151         }
152
153         waketime_avg = avg_stats(&__waketime_stats);
154         waketime_stddev = stddev_stats(&__waketime_stats);
155         wakeup_avg = avg_stats(&__wakeup_stats);
156
157         printf("[Run %d]: Avg per-thread latency (waking %d/%d threads) "
158                "in %.4f ms (+-%.2f%%)\n", run_num + 1, wakeup_avg,
159                nblocked_threads, waketime_avg/1e3,
160                rel_stddev_stats(waketime_stddev, waketime_avg));
161 }
162
163 static void print_summary(void)
164 {
165         unsigned int wakeup_avg;
166         double waketime_avg, waketime_stddev;
167
168         waketime_avg = avg_stats(&waketime_stats);
169         waketime_stddev = stddev_stats(&waketime_stats);
170         wakeup_avg = avg_stats(&wakeup_stats);
171
172         printf("Avg per-thread latency (waking %d/%d threads) in %.4f ms (+-%.2f%%)\n",
173                wakeup_avg,
174                nblocked_threads,
175                waketime_avg/1e3,
176                rel_stddev_stats(waketime_stddev, waketime_avg));
177 }
178
179
180 static void do_run_stats(struct thread_data *waking_worker)
181 {
182         unsigned int i;
183
184         for (i = 0; i < nwaking_threads; i++) {
185                 update_stats(&waketime_stats, waking_worker[i].runtime.tv_usec);
186                 update_stats(&wakeup_stats, waking_worker[i].nwoken);
187         }
188
189 }
190
191 static void toggle_done(int sig __maybe_unused,
192                         siginfo_t *info __maybe_unused,
193                         void *uc __maybe_unused)
194 {
195         done = true;
196 }
197
198 int bench_futex_wake_parallel(int argc, const char **argv,
199                               const char *prefix __maybe_unused)
200 {
201         int ret = 0;
202         unsigned int i, j;
203         struct sigaction act;
204         pthread_attr_t thread_attr;
205         struct thread_data *waking_worker;
206
207         argc = parse_options(argc, argv, options,
208                              bench_futex_wake_parallel_usage, 0);
209         if (argc) {
210                 usage_with_options(bench_futex_wake_parallel_usage, options);
211                 exit(EXIT_FAILURE);
212         }
213
214         sigfillset(&act.sa_mask);
215         act.sa_sigaction = toggle_done;
216         sigaction(SIGINT, &act, NULL);
217
218         ncpus = sysconf(_SC_NPROCESSORS_ONLN);
219         if (!nblocked_threads)
220                 nblocked_threads = ncpus;
221
222         /* some sanity checks */
223         if (nwaking_threads > nblocked_threads || !nwaking_threads)
224                 nwaking_threads = nblocked_threads;
225
226         if (nblocked_threads % nwaking_threads)
227                 errx(EXIT_FAILURE, "Must be perfectly divisible");
228         /*
229          * Each thread will wakeup nwakes tasks in
230          * a single futex_wait call.
231          */
232         nwakes = nblocked_threads/nwaking_threads;
233
234         blocked_worker = calloc(nblocked_threads, sizeof(*blocked_worker));
235         if (!blocked_worker)
236                 err(EXIT_FAILURE, "calloc");
237
238         if (!fshared)
239                 futex_flag = FUTEX_PRIVATE_FLAG;
240
241         printf("Run summary [PID %d]: blocking on %d threads (at [%s] "
242                "futex %p), %d threads waking up %d at a time.\n\n",
243                getpid(), nblocked_threads, fshared ? "shared":"private",
244                &futex, nwaking_threads, nwakes);
245
246         init_stats(&wakeup_stats);
247         init_stats(&waketime_stats);
248
249         pthread_attr_init(&thread_attr);
250         pthread_mutex_init(&thread_lock, NULL);
251         pthread_cond_init(&thread_parent, NULL);
252         pthread_cond_init(&thread_worker, NULL);
253
254         for (j = 0; j < bench_repeat && !done; j++) {
255                 waking_worker = calloc(nwaking_threads, sizeof(*waking_worker));
256                 if (!waking_worker)
257                         err(EXIT_FAILURE, "calloc");
258
259                 /* create, launch & block all threads */
260                 block_threads(blocked_worker, thread_attr);
261
262                 /* make sure all threads are already blocked */
263                 pthread_mutex_lock(&thread_lock);
264                 while (threads_starting)
265                         pthread_cond_wait(&thread_parent, &thread_lock);
266                 pthread_cond_broadcast(&thread_worker);
267                 pthread_mutex_unlock(&thread_lock);
268
269                 usleep(100000);
270
271                 /* Ok, all threads are patiently blocked, start waking folks up */
272                 wakeup_threads(waking_worker, thread_attr);
273
274                 for (i = 0; i < nblocked_threads; i++) {
275                         ret = pthread_join(blocked_worker[i], NULL);
276                         if (ret)
277                                 err(EXIT_FAILURE, "pthread_join");
278                 }
279
280                 do_run_stats(waking_worker);
281                 if (!silent)
282                         print_run(waking_worker, j);
283
284                 free(waking_worker);
285         }
286
287         /* cleanup & report results */
288         pthread_cond_destroy(&thread_parent);
289         pthread_cond_destroy(&thread_worker);
290         pthread_mutex_destroy(&thread_lock);
291         pthread_attr_destroy(&thread_attr);
292
293         print_summary();
294
295         free(blocked_worker);
296         return ret;
297 }