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| #include <unistd.h> #include <stdio.h> #include <stdlib.h> #include <string.h> #include <errno.h> #include <sys/wait.h> #include <signal.h>
void background_job(int job_id) { printf("后台作业 %d 启动 (PID: %d)\n", job_id, getpid()); if (setpgid(0, 0) == 0) { printf("后台作业 %d 成功创建进程组\n", job_id); } else { printf("后台作业 %d 创建进程组失败: %s\n", job_id, strerror(errno)); } for (int i = 0; i < 20; i++) { printf("后台作业 %d 运行中... (%d/20)\n", job_id, i + 1); sleep(1); if (i == 10) { printf("后台作业 %d 暂停工作\n", job_id); sleep(2); printf("后台作业 %d 恢复工作\n", job_id); } } printf("后台作业 %d 完成\n", job_id); exit(0); }
typedef struct { pid_t pid; int job_id; int status; char command[256]; } job_t;
void show_job_list(job_t *jobs, int count) { printf("\n=== 作业列表 ===\n"); printf("%-5s %-8s %-10s %s\n", "作业ID", "进程ID", "状态", "命令"); printf("----------------------------------------\n"); for (int i = 0; i < count; i++) { const char *status_str; switch (jobs[i].status) { case 0: status_str = "运行"; break; case 1: status_str = "暂停"; break; case 2: status_str = "完成"; break; default: status_str = "未知"; break; } printf("%-5d %-8d %-10s %s\n", jobs[i].job_id, jobs[i].pid, status_str, jobs[i].command); } printf("\n"); }
int demo_job_control() { job_t jobs[3]; int job_count = 0; printf("=== 作业控制演示 ===\n"); printf("1. 创建后台作业:\n"); for (int i = 0; i < 3; i++) { pid_t job_pid = fork(); if (job_pid == 0) { background_job(i + 1); } else if (job_pid > 0) { jobs[job_count].pid = job_pid; jobs[job_count].job_id = i + 1; jobs[job_count].status = 0; snprintf(jobs[job_count].command, sizeof(jobs[job_count].command), "background_job_%d", i + 1); job_count++; printf(" 创建后台作业 %d: PID=%d\n", i + 1, job_pid); if (setpgid(job_pid, job_pid) == 0) { printf(" 作业 %d 成功创建独立进程组\n", i + 1); } } else { perror("创建后台作业失败"); } } show_job_list(jobs, job_count); printf("2. 向作业发送信号:\n"); if (job_count > 0) { printf(" 向作业 1 (PID=%d) 发送 SIGUSR1 信号\n", jobs[0].pid); if (kill(jobs[0].pid, SIGUSR1) == 0) { printf(" ✓ 信号发送成功\n"); } else { printf(" ✗ 信号发送失败: %s\n", strerror(errno)); } } printf("\n3. 等待作业运行...\n"); sleep(5); show_job_list(jobs, job_count); printf("4. 作业控制操作:\n"); if (job_count > 1) { printf(" 暂停作业 2 (PID=%d)\n", jobs[1].pid); if (kill(-getpgid(jobs[1].pid), SIGSTOP) == 0) { jobs[1].status = 1; printf(" ✓ 作业 2 已暂停\n"); } else { printf(" ✗ 暂停作业 2 失败: %s\n", strerror(errno)); } } show_job_list(jobs, job_count); if (job_count > 1) { printf(" 恢复作业 2 (PID=%d)\n", jobs[1].pid); if (kill(-getpgid(jobs[1].pid), SIGCONT) == 0) { jobs[1].status = 0; printf(" ✓ 作业 2 已恢复\n"); } else { printf(" ✗ 恢复作业 2 失败: %s\n", strerror(errno)); } } printf("\n5. 等待所有作业完成:\n"); int completed_jobs = 0; while (completed_jobs < job_count) { int status; pid_t finished_pid = waitpid(-1, &status, WNOHANG); if (finished_pid > 0) { for (int i = 0; i < job_count; i++) { if (jobs[i].pid == finished_pid) { jobs[i].status = 2; printf(" 作业 %d (PID=%d) 已完成\n", jobs[i].job_id, finished_pid); completed_jobs++; break; } } } else if (finished_pid == 0) { usleep(100000); } else { if (errno != ECHILD) { perror("等待作业完成时出错"); } break; } } show_job_list(jobs, job_count); printf("作业控制演示完成\n"); return 0; }
int main() { return demo_job_control(); }
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