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| #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #include <stdio.h> #include <stdlib.h> #include <string.h> #include <errno.h> #include <poll.h> #include <time.h>
/** * 网络服务器结构 */ typedef struct { int server_fd; int port; struct pollfd *clients; int max_clients; int client_count; } network_server_t;
/** * 初始化网络服务器 */ int server_init(network_server_t *server, int port, int max_clients) { struct sockaddr_in server_addr; memset(server, 0, sizeof(network_server_t)); server->port = port; server->max_clients = max_clients; server->client_count = 0; // 分配客户端数组 server->clients = calloc(max_clients + 1, sizeof(struct pollfd)); if (!server->clients) { perror("分配客户端数组失败"); return -1; } // 创建服务器套接字 server->server_fd = socket(AF_INET, SOCK_STREAM, 0); if (server->server_fd == -1) { perror("创建服务器套接字失败"); free(server->clients); return -1; } // 设置套接字选项 int opt = 1; if (setsockopt(server->server_fd, SOL_SOCKET, SO_REUSEADDR, &opt, sizeof(opt)) == -1) { perror("设置套接字选项失败"); close(server->server_fd); free(server->clients); return -1; } // 设置服务器地址 memset(&server_addr, 0, sizeof(server_addr)); server_addr.sin_family = AF_INET; server_addr.sin_addr.s_addr = INADDR_ANY; server_addr.sin_port = htons(port); // 绑定套接字 if (bind(server->server_fd, (struct sockaddr*)&server_addr, sizeof(server_addr)) == -1) { perror("绑定套接字失败"); close(server->server_fd); free(server->clients); return -1; } // 监听连接 if (listen(server->server_fd, 10) == -1) { perror("监听失败"); close(server->server_fd); free(server->clients); return -1; } // 设置服务器套接字为poll监听 server->clients[0].fd = server->server_fd; server->clients[0].events = POLLIN; printf("网络服务器初始化完成,监听端口 %d\n", port); return 0; }
/** * 接受新客户端连接 */ int server_accept_client(network_server_t *server) { struct sockaddr_in client_addr; socklen_t client_len = sizeof(client_addr); int client_fd; client_fd = accept(server->server_fd, (struct sockaddr*)&client_addr, &client_len); if (client_fd == -1) { perror("接受连接失败"); return -1; } if (server->client_count >= server->max_clients) { printf("客户端数量已达上限,拒绝连接\n"); close(client_fd); return -1; } // 添加到客户端数组 int index = server->client_count + 1; server->clients[index].fd = client_fd; server->clients[index].events = POLLIN; server->client_count++; printf("新客户端连接: %s:%d (fd=%d)\n", inet_ntoa(client_addr.sin_addr), ntohs(client_addr.sin_port), client_fd); return 0; }
/** * 使用recvmsg处理客户端消息 */ int server_handle_client_message(network_server_t *server, int client_index) { int client_fd = server->clients[client_index].fd; struct msghdr msg; struct iovec iov[2]; char buffer1[512], buffer2[512]; char control_buffer[1024]; ssize_t bytes_received; // 准备msghdr结构 memset(&msg, 0, sizeof(msg)); // 设置分散缓冲区 iov[0].iov_base = buffer1; iov[0].iov_len = sizeof(buffer1) - 1; iov[1].iov_base = buffer2; iov[1].iov_len = sizeof(buffer2) - 1; msg.msg_iov = iov; msg.msg_iovlen = 2; // 设置控制缓冲区 msg.msg_control = control_buffer; msg.msg_controllen = sizeof(control_buffer); // 接收消息 bytes_received = recvmsg(client_fd, &msg, 0); if (bytes_received == -1) { if (errno == ECONNRESET) { printf("客户端 %d 连接重置\n", client_fd); } else { perror("recvmsg 失败"); } return -1; } if (bytes_received == 0) { printf("客户端 %d 关闭连接\n", client_fd); return -1; } printf("从客户端 %d 接收到 %zd 字节数据\n", client_fd, bytes_received); // 处理接收到的数据 size_t total_copied = 0; char full_message[1024]; full_message[0] = '\0'; for (int i = 0; i < 2 && total_copied < (size_t)bytes_received; i++) { size_t to_copy = iov[i].iov_len; if (total_copied + to_copy > (size_t)bytes_received) { to_copy = bytes_received - total_copied; } strncat(full_message, (char*)iov[i].iov_base, to_copy); total_copied += to_copy; } printf(" 消息内容: %s\n", full_message); printf(" 使用缓冲区数: %d\n", (int)msg.msg_iovlen); printf(" 消息标志: %d\n", msg.msg_flags); // 回显消息 char response[1024]; snprintf(response, sizeof(response), "Echo: %s", full_message); send(client_fd, response, strlen(response), 0); return 0; }
/** * 运行服务器主循环 */ int server_run(network_server_t *server) { printf("服务器开始运行,等待客户端连接...\n"); while (1) { // 使用poll等待事件 int nfds = server->client_count + 1; int activity = poll(server->clients, nfds, 1000); // 1秒超时 if (activity == -1) { if (errno == EINTR) continue; // 被信号中断 perror("poll 失败"); break; } if (activity == 0) { // 超时,继续循环 continue; } // 检查服务器套接字(新连接) if (server->clients[0].revents & POLLIN) { server_accept_client(server); activity--; } // 检查客户端套接字 for (int i = 1; i <= server->client_count && activity > 0; i++) { if (server->clients[i].revents & POLLIN) { if (server_handle_client_message(server, i) == -1) { // 客户端断开连接,移除客户端 close(server->clients[i].fd); // 将最后一个客户端移到当前位置 if (i < server->client_count) { server->clients[i] = server->clients[server->client_count]; } server->client_count--; i--; // 重新检查当前位置 } activity--; } } } return 0; }
/** * 清理服务器资源 */ void server_cleanup(network_server_t *server) { // 关闭所有客户端连接 for (int i = 1; i <= server->client_count; i++) { close(server->clients[i].fd); } // 关闭服务器套接字 if (server->server_fd != -1) { close(server->server_fd); } // 释放内存 if (server->clients) { free(server->clients); } printf("服务器资源清理完成\n"); }
/** * 演示完整的网络服务器 */ int demo_complete_network_server() { network_server_t server; printf("=== 完整网络服务器示例 ===\n"); // 初始化服务器 if (server_init(&server, 8083, 10) != 0) { return -1; } // 启动测试客户端 if (fork() == 0) { sleep(2); // 等待服务器启动 // 创建多个客户端进行测试 for (int i = 0; i < 3; i++) { if (fork() == 0) { int client_sock = socket(AF_INET, SOCK_STREAM, 0); struct sockaddr_in serv_addr; memset(&serv_addr, 0, sizeof(serv_addr)); serv_addr.sin_family = AF_INET; serv_addr.sin_port = htons(8083); serv_addr.sin_addr.s_addr = inet_addr("127.0.0.1"); if (connect(client_sock, (struct sockaddr*)&serv_addr, sizeof(serv_addr)) == 0) { char message[256]; snprintf(message, sizeof(message), "Hello from client %d", i + 1); send(client_sock, message, strlen(message), 0); printf("客户端 %d 发送: %s\n", i + 1, message); // 接收回显 char response[1024]; ssize_t bytes = recv(client_sock, response, sizeof(response) - 1, 0); if (bytes > 0) { response[bytes] = '\0'; printf("客户端 %d 接收回显: %s\n", i + 1, response); } sleep(1); } close(client_sock); exit(0); } } // 等待所有客户端完成 for (int i = 0; i < 3; i++) { int status; wait(&status); } exit(0); } // 运行服务器30秒 printf("服务器将运行30秒...\n"); sleep(30); // 清理资源 server_cleanup(&server); // 等待测试客户端结束 int status; wait(&status); return 0; }
int main() { return demo_complete_network_server(); }
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