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1/*
2 *
3 * sched-messaging.c
4 *
5 * messaging: Benchmark for scheduler and IPC mechanisms
6 *
7 * Based on hackbench by Rusty Russell <rusty@rustcorp.com.au>
8 * Ported to perf by Hitoshi Mitake <mitake@dcl.info.waseda.ac.jp>
9 *
10 */
11
12#include "../perf.h"
13#include "../util/util.h"
14#include <subcmd/parse-options.h>
15#include "../builtin.h"
16#include "bench.h"
17
18/* Test groups of 20 processes spraying to 20 receivers */
19#include <pthread.h>
20#include <stdio.h>
21#include <stdlib.h>
22#include <string.h>
23#include <errno.h>
24#include <unistd.h>
25#include <sys/types.h>
26#include <sys/socket.h>
27#include <sys/wait.h>
28#include <sys/time.h>
29#include <poll.h>
30#include <limits.h>
31#include <err.h>
32
33#define DATASIZE 100
34
35static bool use_pipes = false;
36static unsigned int nr_loops = 100;
37static bool thread_mode = false;
38static unsigned int num_groups = 10;
39
40struct sender_context {
41 unsigned int num_fds;
42 int ready_out;
43 int wakefd;
44 int out_fds[0];
45};
46
47struct receiver_context {
48 unsigned int num_packets;
49 int in_fds[2];
50 int ready_out;
51 int wakefd;
52};
53
54static void fdpair(int fds[2])
55{
56 if (use_pipes) {
57 if (pipe(fds) == 0)
58 return;
59 } else {
60 if (socketpair(AF_UNIX, SOCK_STREAM, 0, fds) == 0)
61 return;
62 }
63
64 err(EXIT_FAILURE, use_pipes ? "pipe()" : "socketpair()");
65}
66
67/* Block until we're ready to go */
68static void ready(int ready_out, int wakefd)
69{
70 char dummy;
71 struct pollfd pollfd = { .fd = wakefd, .events = POLLIN };
72
73 /* Tell them we're ready. */
74 if (write(ready_out, &dummy, 1) != 1)
75 err(EXIT_FAILURE, "CLIENT: ready write");
76
77 /* Wait for "GO" signal */
78 if (poll(&pollfd, 1, -1) != 1)
79 err(EXIT_FAILURE, "poll");
80}
81
82/* Sender sprays nr_loops messages down each file descriptor */
83static void *sender(struct sender_context *ctx)
84{
85 char data[DATASIZE];
86 unsigned int i, j;
87
88 ready(ctx->ready_out, ctx->wakefd);
89
90 /* Now pump to every receiver. */
91 for (i = 0; i < nr_loops; i++) {
92 for (j = 0; j < ctx->num_fds; j++) {
93 int ret, done = 0;
94
95again:
96 ret = write(ctx->out_fds[j], data + done,
97 sizeof(data)-done);
98 if (ret < 0)
99 err(EXIT_FAILURE, "SENDER: write");
100 done += ret;
101 if (done < DATASIZE)
102 goto again;
103 }
104 }
105
106 return NULL;
107}
108
109
110/* One receiver per fd */
111static void *receiver(struct receiver_context* ctx)
112{
113 unsigned int i;
114
115 if (!thread_mode)
116 close(ctx->in_fds[1]);
117
118 /* Wait for start... */
119 ready(ctx->ready_out, ctx->wakefd);
120
121 /* Receive them all */
122 for (i = 0; i < ctx->num_packets; i++) {
123 char data[DATASIZE];
124 int ret, done = 0;
125
126again:
127 ret = read(ctx->in_fds[0], data + done, DATASIZE - done);
128 if (ret < 0)
129 err(EXIT_FAILURE, "SERVER: read");
130 done += ret;
131 if (done < DATASIZE)
132 goto again;
133 }
134
135 return NULL;
136}
137
138static pthread_t create_worker(void *ctx, void *(*func)(void *))
139{
140 pthread_attr_t attr;
141 pthread_t childid;
142 int ret;
143
144 if (!thread_mode) {
145 /* process mode */
146 /* Fork the receiver. */
147 switch (fork()) {
148 case -1:
149 err(EXIT_FAILURE, "fork()");
150 break;
151 case 0:
152 (*func) (ctx);
153 exit(0);
154 break;
155 default:
156 break;
157 }
158
159 return (pthread_t)0;
160 }
161
162 if (pthread_attr_init(&attr) != 0)
163 err(EXIT_FAILURE, "pthread_attr_init:");
164
165#ifndef __ia64__
166 if (pthread_attr_setstacksize(&attr, PTHREAD_STACK_MIN) != 0)
167 err(EXIT_FAILURE, "pthread_attr_setstacksize");
168#endif
169
170 ret = pthread_create(&childid, &attr, func, ctx);
171 if (ret != 0)
172 err(EXIT_FAILURE, "pthread_create failed");
173
174 return childid;
175}
176
177static void reap_worker(pthread_t id)
178{
179 int proc_status;
180 void *thread_status;
181
182 if (!thread_mode) {
183 /* process mode */
184 wait(&proc_status);
185 if (!WIFEXITED(proc_status))
186 exit(1);
187 } else {
188 pthread_join(id, &thread_status);
189 }
190}
191
192/* One group of senders and receivers */
193static unsigned int group(pthread_t *pth,
194 unsigned int num_fds,
195 int ready_out,
196 int wakefd)
197{
198 unsigned int i;
199 struct sender_context *snd_ctx = malloc(sizeof(struct sender_context)
200 + num_fds * sizeof(int));
201
202 if (!snd_ctx)
203 err(EXIT_FAILURE, "malloc()");
204
205 for (i = 0; i < num_fds; i++) {
206 int fds[2];
207 struct receiver_context *ctx = malloc(sizeof(*ctx));
208
209 if (!ctx)
210 err(EXIT_FAILURE, "malloc()");
211
212
213 /* Create the pipe between client and server */
214 fdpair(fds);
215
216 ctx->num_packets = num_fds * nr_loops;
217 ctx->in_fds[0] = fds[0];
218 ctx->in_fds[1] = fds[1];
219 ctx->ready_out = ready_out;
220 ctx->wakefd = wakefd;
221
222 pth[i] = create_worker(ctx, (void *)receiver);
223
224 snd_ctx->out_fds[i] = fds[1];
225 if (!thread_mode)
226 close(fds[0]);
227 }
228
229 /* Now we have all the fds, fork the senders */
230 for (i = 0; i < num_fds; i++) {
231 snd_ctx->ready_out = ready_out;
232 snd_ctx->wakefd = wakefd;
233 snd_ctx->num_fds = num_fds;
234
235 pth[num_fds+i] = create_worker(snd_ctx, (void *)sender);
236 }
237
238 /* Close the fds we have left */
239 if (!thread_mode)
240 for (i = 0; i < num_fds; i++)
241 close(snd_ctx->out_fds[i]);
242
243 /* Return number of children to reap */
244 return num_fds * 2;
245}
246
247static const struct option options[] = {
248 OPT_BOOLEAN('p', "pipe", &use_pipes,
249 "Use pipe() instead of socketpair()"),
250 OPT_BOOLEAN('t', "thread", &thread_mode,
251 "Be multi thread instead of multi process"),
252 OPT_UINTEGER('g', "group", &num_groups, "Specify number of groups"),
253 OPT_UINTEGER('l', "nr_loops", &nr_loops, "Specify the number of loops to run (default: 100)"),
254 OPT_END()
255};
256
257static const char * const bench_sched_message_usage[] = {
258 "perf bench sched messaging <options>",
259 NULL
260};
261
262int bench_sched_messaging(int argc, const char **argv,
263 const char *prefix __maybe_unused)
264{
265 unsigned int i, total_children;
266 struct timeval start, stop, diff;
267 unsigned int num_fds = 20;
268 int readyfds[2], wakefds[2];
269 char dummy;
270 pthread_t *pth_tab;
271
272 argc = parse_options(argc, argv, options,
273 bench_sched_message_usage, 0);
274
275 pth_tab = malloc(num_fds * 2 * num_groups * sizeof(pthread_t));
276 if (!pth_tab)
277 err(EXIT_FAILURE, "main:malloc()");
278
279 fdpair(readyfds);
280 fdpair(wakefds);
281
282 total_children = 0;
283 for (i = 0; i < num_groups; i++)
284 total_children += group(pth_tab+total_children, num_fds,
285 readyfds[1], wakefds[0]);
286
287 /* Wait for everyone to be ready */
288 for (i = 0; i < total_children; i++)
289 if (read(readyfds[0], &dummy, 1) != 1)
290 err(EXIT_FAILURE, "Reading for readyfds");
291
292 gettimeofday(&start, NULL);
293
294 /* Kick them off */
295 if (write(wakefds[1], &dummy, 1) != 1)
296 err(EXIT_FAILURE, "Writing to start them");
297
298 /* Reap them all */
299 for (i = 0; i < total_children; i++)
300 reap_worker(pth_tab[i]);
301
302 gettimeofday(&stop, NULL);
303
304 timersub(&stop, &start, &diff);
305
306 switch (bench_format) {
307 case BENCH_FORMAT_DEFAULT:
308 printf("# %d sender and receiver %s per group\n",
309 num_fds, thread_mode ? "threads" : "processes");
310 printf("# %d groups == %d %s run\n\n",
311 num_groups, num_groups * 2 * num_fds,
312 thread_mode ? "threads" : "processes");
313 printf(" %14s: %lu.%03lu [sec]\n", "Total time",
314 diff.tv_sec,
315 (unsigned long) (diff.tv_usec/1000));
316 break;
317 case BENCH_FORMAT_SIMPLE:
318 printf("%lu.%03lu\n", diff.tv_sec,
319 (unsigned long) (diff.tv_usec/1000));
320 break;
321 default:
322 /* reaching here is something disaster */
323 fprintf(stderr, "Unknown format:%d\n", bench_format);
324 exit(1);
325 break;
326 }
327
328 free(pth_tab);
329
330 return 0;
331}
1// SPDX-License-Identifier: GPL-2.0
2/*
3 *
4 * sched-messaging.c
5 *
6 * messaging: Benchmark for scheduler and IPC mechanisms
7 *
8 * Based on hackbench by Rusty Russell <rusty@rustcorp.com.au>
9 * Ported to perf by Hitoshi Mitake <mitake@dcl.info.waseda.ac.jp>
10 *
11 */
12
13#include "../perf.h"
14#include "../util/util.h"
15#include <subcmd/parse-options.h>
16#include "../builtin.h"
17#include "bench.h"
18
19/* Test groups of 20 processes spraying to 20 receivers */
20#include <pthread.h>
21#include <stdio.h>
22#include <stdlib.h>
23#include <string.h>
24#include <errno.h>
25#include <unistd.h>
26#include <sys/types.h>
27#include <sys/socket.h>
28#include <sys/wait.h>
29#include <sys/time.h>
30#include <poll.h>
31#include <limits.h>
32#include <err.h>
33#include <linux/time64.h>
34
35#define DATASIZE 100
36
37static bool use_pipes = false;
38static unsigned int nr_loops = 100;
39static bool thread_mode = false;
40static unsigned int num_groups = 10;
41
42struct sender_context {
43 unsigned int num_fds;
44 int ready_out;
45 int wakefd;
46 int out_fds[0];
47};
48
49struct receiver_context {
50 unsigned int num_packets;
51 int in_fds[2];
52 int ready_out;
53 int wakefd;
54};
55
56static void fdpair(int fds[2])
57{
58 if (use_pipes) {
59 if (pipe(fds) == 0)
60 return;
61 } else {
62 if (socketpair(AF_UNIX, SOCK_STREAM, 0, fds) == 0)
63 return;
64 }
65
66 err(EXIT_FAILURE, use_pipes ? "pipe()" : "socketpair()");
67}
68
69/* Block until we're ready to go */
70static void ready(int ready_out, int wakefd)
71{
72 char dummy;
73 struct pollfd pollfd = { .fd = wakefd, .events = POLLIN };
74
75 /* Tell them we're ready. */
76 if (write(ready_out, &dummy, 1) != 1)
77 err(EXIT_FAILURE, "CLIENT: ready write");
78
79 /* Wait for "GO" signal */
80 if (poll(&pollfd, 1, -1) != 1)
81 err(EXIT_FAILURE, "poll");
82}
83
84/* Sender sprays nr_loops messages down each file descriptor */
85static void *sender(struct sender_context *ctx)
86{
87 char data[DATASIZE];
88 unsigned int i, j;
89
90 ready(ctx->ready_out, ctx->wakefd);
91
92 /* Now pump to every receiver. */
93 for (i = 0; i < nr_loops; i++) {
94 for (j = 0; j < ctx->num_fds; j++) {
95 int ret, done = 0;
96
97again:
98 ret = write(ctx->out_fds[j], data + done,
99 sizeof(data)-done);
100 if (ret < 0)
101 err(EXIT_FAILURE, "SENDER: write");
102 done += ret;
103 if (done < DATASIZE)
104 goto again;
105 }
106 }
107
108 return NULL;
109}
110
111
112/* One receiver per fd */
113static void *receiver(struct receiver_context* ctx)
114{
115 unsigned int i;
116
117 if (!thread_mode)
118 close(ctx->in_fds[1]);
119
120 /* Wait for start... */
121 ready(ctx->ready_out, ctx->wakefd);
122
123 /* Receive them all */
124 for (i = 0; i < ctx->num_packets; i++) {
125 char data[DATASIZE];
126 int ret, done = 0;
127
128again:
129 ret = read(ctx->in_fds[0], data + done, DATASIZE - done);
130 if (ret < 0)
131 err(EXIT_FAILURE, "SERVER: read");
132 done += ret;
133 if (done < DATASIZE)
134 goto again;
135 }
136
137 return NULL;
138}
139
140static pthread_t create_worker(void *ctx, void *(*func)(void *))
141{
142 pthread_attr_t attr;
143 pthread_t childid;
144 int ret;
145
146 if (!thread_mode) {
147 /* process mode */
148 /* Fork the receiver. */
149 switch (fork()) {
150 case -1:
151 err(EXIT_FAILURE, "fork()");
152 break;
153 case 0:
154 (*func) (ctx);
155 exit(0);
156 break;
157 default:
158 break;
159 }
160
161 return (pthread_t)0;
162 }
163
164 if (pthread_attr_init(&attr) != 0)
165 err(EXIT_FAILURE, "pthread_attr_init:");
166
167#ifndef __ia64__
168 if (pthread_attr_setstacksize(&attr, PTHREAD_STACK_MIN) != 0)
169 err(EXIT_FAILURE, "pthread_attr_setstacksize");
170#endif
171
172 ret = pthread_create(&childid, &attr, func, ctx);
173 if (ret != 0)
174 err(EXIT_FAILURE, "pthread_create failed");
175
176 return childid;
177}
178
179static void reap_worker(pthread_t id)
180{
181 int proc_status;
182 void *thread_status;
183
184 if (!thread_mode) {
185 /* process mode */
186 wait(&proc_status);
187 if (!WIFEXITED(proc_status))
188 exit(1);
189 } else {
190 pthread_join(id, &thread_status);
191 }
192}
193
194/* One group of senders and receivers */
195static unsigned int group(pthread_t *pth,
196 unsigned int num_fds,
197 int ready_out,
198 int wakefd)
199{
200 unsigned int i;
201 struct sender_context *snd_ctx = malloc(sizeof(struct sender_context)
202 + num_fds * sizeof(int));
203
204 if (!snd_ctx)
205 err(EXIT_FAILURE, "malloc()");
206
207 for (i = 0; i < num_fds; i++) {
208 int fds[2];
209 struct receiver_context *ctx = malloc(sizeof(*ctx));
210
211 if (!ctx)
212 err(EXIT_FAILURE, "malloc()");
213
214
215 /* Create the pipe between client and server */
216 fdpair(fds);
217
218 ctx->num_packets = num_fds * nr_loops;
219 ctx->in_fds[0] = fds[0];
220 ctx->in_fds[1] = fds[1];
221 ctx->ready_out = ready_out;
222 ctx->wakefd = wakefd;
223
224 pth[i] = create_worker(ctx, (void *)receiver);
225
226 snd_ctx->out_fds[i] = fds[1];
227 if (!thread_mode)
228 close(fds[0]);
229 }
230
231 /* Now we have all the fds, fork the senders */
232 for (i = 0; i < num_fds; i++) {
233 snd_ctx->ready_out = ready_out;
234 snd_ctx->wakefd = wakefd;
235 snd_ctx->num_fds = num_fds;
236
237 pth[num_fds+i] = create_worker(snd_ctx, (void *)sender);
238 }
239
240 /* Close the fds we have left */
241 if (!thread_mode)
242 for (i = 0; i < num_fds; i++)
243 close(snd_ctx->out_fds[i]);
244
245 /* Return number of children to reap */
246 return num_fds * 2;
247}
248
249static const struct option options[] = {
250 OPT_BOOLEAN('p', "pipe", &use_pipes,
251 "Use pipe() instead of socketpair()"),
252 OPT_BOOLEAN('t', "thread", &thread_mode,
253 "Be multi thread instead of multi process"),
254 OPT_UINTEGER('g', "group", &num_groups, "Specify number of groups"),
255 OPT_UINTEGER('l', "nr_loops", &nr_loops, "Specify the number of loops to run (default: 100)"),
256 OPT_END()
257};
258
259static const char * const bench_sched_message_usage[] = {
260 "perf bench sched messaging <options>",
261 NULL
262};
263
264int bench_sched_messaging(int argc, const char **argv)
265{
266 unsigned int i, total_children;
267 struct timeval start, stop, diff;
268 unsigned int num_fds = 20;
269 int readyfds[2], wakefds[2];
270 char dummy;
271 pthread_t *pth_tab;
272
273 argc = parse_options(argc, argv, options,
274 bench_sched_message_usage, 0);
275
276 pth_tab = malloc(num_fds * 2 * num_groups * sizeof(pthread_t));
277 if (!pth_tab)
278 err(EXIT_FAILURE, "main:malloc()");
279
280 fdpair(readyfds);
281 fdpair(wakefds);
282
283 total_children = 0;
284 for (i = 0; i < num_groups; i++)
285 total_children += group(pth_tab+total_children, num_fds,
286 readyfds[1], wakefds[0]);
287
288 /* Wait for everyone to be ready */
289 for (i = 0; i < total_children; i++)
290 if (read(readyfds[0], &dummy, 1) != 1)
291 err(EXIT_FAILURE, "Reading for readyfds");
292
293 gettimeofday(&start, NULL);
294
295 /* Kick them off */
296 if (write(wakefds[1], &dummy, 1) != 1)
297 err(EXIT_FAILURE, "Writing to start them");
298
299 /* Reap them all */
300 for (i = 0; i < total_children; i++)
301 reap_worker(pth_tab[i]);
302
303 gettimeofday(&stop, NULL);
304
305 timersub(&stop, &start, &diff);
306
307 switch (bench_format) {
308 case BENCH_FORMAT_DEFAULT:
309 printf("# %d sender and receiver %s per group\n",
310 num_fds, thread_mode ? "threads" : "processes");
311 printf("# %d groups == %d %s run\n\n",
312 num_groups, num_groups * 2 * num_fds,
313 thread_mode ? "threads" : "processes");
314 printf(" %14s: %lu.%03lu [sec]\n", "Total time",
315 diff.tv_sec,
316 (unsigned long) (diff.tv_usec / USEC_PER_MSEC));
317 break;
318 case BENCH_FORMAT_SIMPLE:
319 printf("%lu.%03lu\n", diff.tv_sec,
320 (unsigned long) (diff.tv_usec / USEC_PER_MSEC));
321 break;
322 default:
323 /* reaching here is something disaster */
324 fprintf(stderr, "Unknown format:%d\n", bench_format);
325 exit(1);
326 break;
327 }
328
329 free(pth_tab);
330
331 return 0;
332}