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- #include <signal.h>
- #include <stdio.h>
- #include <stdlib.h>
- #include <sys/time.h>
- #include <sys/wait.h>
- #include <unistd.h>
- #define DO_BENCH 1
- #define NTRIES 100
- #define TEST_TIMES 64
- int pids[TEST_TIMES];
- int main(int argc, char** argv) {
- int times = TEST_TIMES;
- int pipes[6];
- int i = 0;
- if (argc >= 2) {
- times = atoi(argv[1]);
- if (times > TEST_TIMES)
- return -1;
- }
- pipe(&pipes[0]);
- pipe(&pipes[2]);
- pipe(&pipes[4]);
- for (i = 0; i < times; i++) {
- pids[i] = fork();
- if (pids[i] < 0) {
- printf("fork failed\n");
- return -1;
- }
- if (pids[i] == 0) {
- close(pipes[1]);
- close(pipes[2]);
- close(pipes[5]);
- char byte;
- read(pipes[0], &byte, 1);
- struct timeval timevals[2];
- gettimeofday(&timevals[0], NULL);
- for (int count = 0; count < NTRIES; count++) {
- int child = fork();
- if (!child)
- exit(0);
- if (child > 0)
- waitpid(child, NULL, 0);
- }
- gettimeofday(&timevals[1], NULL);
- close(pipes[0]);
- write(pipes[3], timevals, sizeof(struct timeval) * 2);
- close(pipes[3]);
- read(pipes[4], &byte, 1);
- close(pipes[4]);
- exit(0);
- }
- }
- close(pipes[0]);
- close(pipes[3]);
- close(pipes[4]);
- sleep(1);
- char bytes[times];
- write(pipes[1], bytes, times);
- close(pipes[1]);
- unsigned long long start_time = 0;
- unsigned long long end_time = 0;
- unsigned long long total_time = 0;
- struct timeval timevals[2];
- for (int i = 0; i < times; i++) {
- read(pipes[2], timevals, sizeof(struct timeval) * 2);
- unsigned long s = timevals[0].tv_sec * 1000000ULL + timevals[0].tv_usec;
- unsigned long e = timevals[1].tv_sec * 1000000ULL + timevals[1].tv_usec;
- if (!start_time || s < start_time)
- start_time = s;
- if (!end_time || e > end_time)
- end_time = e;
- total_time += e - s;
- }
- close(pipes[2]);
- write(pipes[5], bytes, times);
- close(pipes[5]);
- for (i = 0; i < times; i++) {
- waitpid(pids[i], NULL, 0);
- }
- printf(
- "%d processes fork %d children: throughput = %lf procs/second, "
- "latency = %lf microseconds\n",
- times, NTRIES, 1.0 * NTRIES * times * 1000000 / (end_time - start_time),
- 1.0 * total_time / (NTRIES * times));
- return 0;
- }
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