1 // SPDX-License-Identifier: GPL-2.0
6 * messaging: Benchmark for scheduler and IPC mechanisms
8 * Based on hackbench by Rusty Russell <rusty@rustcorp.com.au>
9 * Ported to perf by Hitoshi Mitake <mitake@dcl.info.waseda.ac.jp>
13 #include <subcmd/parse-options.h>
16 /* Test groups of 20 processes spraying to 20 receivers */
23 #include <sys/types.h>
24 #include <sys/socket.h>
30 #include <linux/time64.h>
34 static bool use_pipes
= false;
35 static unsigned int nr_loops
= 100;
36 static bool thread_mode
= false;
37 static unsigned int num_groups
= 10;
39 struct sender_context
{
46 struct receiver_context
{
47 unsigned int num_packets
;
53 static void fdpair(int fds
[2])
59 if (socketpair(AF_UNIX
, SOCK_STREAM
, 0, fds
) == 0)
63 err(EXIT_FAILURE
, use_pipes
? "pipe()" : "socketpair()");
66 /* Block until we're ready to go */
67 static void ready(int ready_out
, int wakefd
)
69 struct pollfd pollfd
= { .fd
= wakefd
, .events
= POLLIN
};
71 /* Tell them we're ready. */
72 if (write(ready_out
, "R", 1) != 1)
73 err(EXIT_FAILURE
, "CLIENT: ready write");
75 /* Wait for "GO" signal */
76 if (poll(&pollfd
, 1, -1) != 1)
77 err(EXIT_FAILURE
, "poll");
80 /* Sender sprays nr_loops messages down each file descriptor */
81 static void *sender(struct sender_context
*ctx
)
86 ready(ctx
->ready_out
, ctx
->wakefd
);
87 memset(data
, 'S', sizeof(data
));
89 /* Now pump to every receiver. */
90 for (i
= 0; i
< nr_loops
; i
++) {
91 for (j
= 0; j
< ctx
->num_fds
; j
++) {
95 ret
= write(ctx
->out_fds
[j
], data
+ done
,
98 err(EXIT_FAILURE
, "SENDER: write");
109 /* One receiver per fd */
110 static void *receiver(struct receiver_context
* ctx
)
115 close(ctx
->in_fds
[1]);
117 /* Wait for start... */
118 ready(ctx
->ready_out
, ctx
->wakefd
);
120 /* Receive them all */
121 for (i
= 0; i
< ctx
->num_packets
; i
++) {
126 ret
= read(ctx
->in_fds
[0], data
+ done
, DATASIZE
- done
);
128 err(EXIT_FAILURE
, "SERVER: read");
137 static pthread_t
create_worker(void *ctx
, void *(*func
)(void *))
145 /* Fork the receiver. */
148 err(EXIT_FAILURE
, "fork()");
161 if (pthread_attr_init(&attr
) != 0)
162 err(EXIT_FAILURE
, "pthread_attr_init:");
165 if (pthread_attr_setstacksize(&attr
, PTHREAD_STACK_MIN
) != 0)
166 err(EXIT_FAILURE
, "pthread_attr_setstacksize");
169 ret
= pthread_create(&childid
, &attr
, func
, ctx
);
171 err(EXIT_FAILURE
, "pthread_create failed");
176 static void reap_worker(pthread_t id
)
184 if (!WIFEXITED(proc_status
))
187 pthread_join(id
, &thread_status
);
191 /* One group of senders and receivers */
192 static unsigned int group(pthread_t
*pth
,
193 unsigned int num_fds
,
198 struct sender_context
*snd_ctx
= malloc(sizeof(struct sender_context
)
199 + num_fds
* sizeof(int));
202 err(EXIT_FAILURE
, "malloc()");
204 for (i
= 0; i
< num_fds
; i
++) {
206 struct receiver_context
*ctx
= malloc(sizeof(*ctx
));
209 err(EXIT_FAILURE
, "malloc()");
212 /* Create the pipe between client and server */
215 ctx
->num_packets
= num_fds
* nr_loops
;
216 ctx
->in_fds
[0] = fds
[0];
217 ctx
->in_fds
[1] = fds
[1];
218 ctx
->ready_out
= ready_out
;
219 ctx
->wakefd
= wakefd
;
221 pth
[i
] = create_worker(ctx
, (void *)receiver
);
223 snd_ctx
->out_fds
[i
] = fds
[1];
228 /* Now we have all the fds, fork the senders */
229 for (i
= 0; i
< num_fds
; i
++) {
230 snd_ctx
->ready_out
= ready_out
;
231 snd_ctx
->wakefd
= wakefd
;
232 snd_ctx
->num_fds
= num_fds
;
234 pth
[num_fds
+i
] = create_worker(snd_ctx
, (void *)sender
);
237 /* Close the fds we have left */
239 for (i
= 0; i
< num_fds
; i
++)
240 close(snd_ctx
->out_fds
[i
]);
242 /* Return number of children to reap */
246 static const struct option options
[] = {
247 OPT_BOOLEAN('p', "pipe", &use_pipes
,
248 "Use pipe() instead of socketpair()"),
249 OPT_BOOLEAN('t', "thread", &thread_mode
,
250 "Be multi thread instead of multi process"),
251 OPT_UINTEGER('g', "group", &num_groups
, "Specify number of groups"),
252 OPT_UINTEGER('l', "nr_loops", &nr_loops
, "Specify the number of loops to run (default: 100)"),
256 static const char * const bench_sched_message_usage
[] = {
257 "perf bench sched messaging <options>",
261 int bench_sched_messaging(int argc
, const char **argv
)
263 unsigned int i
, total_children
;
264 struct timeval start
, stop
, diff
;
265 unsigned int num_fds
= 20;
266 int readyfds
[2], wakefds
[2];
270 argc
= parse_options(argc
, argv
, options
,
271 bench_sched_message_usage
, 0);
273 pth_tab
= malloc(num_fds
* 2 * num_groups
* sizeof(pthread_t
));
275 err(EXIT_FAILURE
, "main:malloc()");
281 for (i
= 0; i
< num_groups
; i
++)
282 total_children
+= group(pth_tab
+total_children
, num_fds
,
283 readyfds
[1], wakefds
[0]);
285 /* Wait for everyone to be ready */
286 for (i
= 0; i
< total_children
; i
++)
287 if (read(readyfds
[0], &dummy
, 1) != 1)
288 err(EXIT_FAILURE
, "Reading for readyfds");
290 gettimeofday(&start
, NULL
);
293 if (write(wakefds
[1], &dummy
, 1) != 1)
294 err(EXIT_FAILURE
, "Writing to start them");
297 for (i
= 0; i
< total_children
; i
++)
298 reap_worker(pth_tab
[i
]);
300 gettimeofday(&stop
, NULL
);
302 timersub(&stop
, &start
, &diff
);
304 switch (bench_format
) {
305 case BENCH_FORMAT_DEFAULT
:
306 printf("# %d sender and receiver %s per group\n",
307 num_fds
, thread_mode
? "threads" : "processes");
308 printf("# %d groups == %d %s run\n\n",
309 num_groups
, num_groups
* 2 * num_fds
,
310 thread_mode
? "threads" : "processes");
311 printf(" %14s: %lu.%03lu [sec]\n", "Total time",
313 (unsigned long) (diff
.tv_usec
/ USEC_PER_MSEC
));
315 case BENCH_FORMAT_SIMPLE
:
316 printf("%lu.%03lu\n", diff
.tv_sec
,
317 (unsigned long) (diff
.tv_usec
/ USEC_PER_MSEC
));
320 /* reaching here is something disaster */
321 fprintf(stderr
, "Unknown format:%d\n", bench_format
);