libevent深入浅出
  • Libevent深入浅出
  • 1 Libevent官方
  • 2 epoll
    • 2.1 流-IO操作-阻塞
    • 2.2 解决阻塞死等待的办法
    • 2.3 什么是epoll
    • 2.4 epollAPI
    • 2.5 触发模式
    • 2.6 简单的epoll服务器
  • 3 epoll和reactor
    • 3.1 reactor反应堆模式
    • 3.2 epoll的反应堆模式实现
  • 4 event_base
    • 4.1 创建event_base
    • 4.2 检查event_base后端
    • 4.3 释放event_base
    • 4.4 event_base优先级
    • 4.5 event_base和fork
  • 5 事件循环event_loop
    • 5.1 运行循环
    • 5.2 停止循环
    • 5.3 转储event_base的状态
  • 6 事件event
    • 6.1 创建事件
    • 6.2 事件的未决和非未决
    • 6.3 事件的优先级
    • 6.4 检查事件状态
    • 6.5 一次触发事件
    • 6.6 手动激活事件
    • 6.7 事件状态之间的转换
  • 7 数据缓冲Bufferevent
    • 7.1 回调和水位
    • 7.2 延迟回调
    • 7.3 bufferevent 选项标志
    • 7.4 使用bufferevent
    • 7.5 通用bufferevent操作
      • 7.5.1 释放bufferevent操作
      • 7.5.2 操作回调、水位和启用/禁用
      • 7.5.3 操作bufferevent中的数据
      • 7.5.4 bufferevent的清空操作
  • 8 数据封装evBuffer
    • 8.1 创建和释放evbuffer
    • 8.2 evbuffer与线程安全
    • 8.3 检查evbuffer
    • 8.4 向evbuffer添加数据
    • 8.5 evbuffer数据移动
    • 8.6 添加数据到evbuffer前
  • 8 链接监听器evconnlistener
    • 8.1 创建和释放 evconnlistener
    • 8.2 启用和禁用 evconnlistener
    • 8.3 调整 evconnlistener 的回调函数
    • 8.4 检测 evconnlistener
    • 8.5 侦测错误
  • 9 libevent常用设置
    • 9.1 日志消息回调设置
    • 9.2 致命错误回调设置
    • 9.3 内存管理回调设置
    • 9.4 锁和线程的设置
    • 9.5 调试事件的使用
  • 10 基于libevent服务器
    • 10.1 Hello_World服务器(基于信号)
    • 10.2 基于事件服务器
    • 10.3 回显服务器
    • 10.3 libevent实现http服务器
    • 10.4 libevent实现TCP/IP服务器
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  • 2.6.1 服务端
  • 2.6.2 客户端

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  1. 2 epoll

2.6 简单的epoll服务器

2.6.1 服务端

#include <stdio.h>
#include <stdlib.h>
#include <ctype.h>
#include <string.h>

#include <unistd.h>
#include <sys/types.h>
#include <sys/socket.h>
#include <arpa/inet.h>

#include <sys/epoll.h>


#define SERVER_PORT         (7778)
#define EPOLL_MAX_NUM       (2048)
#define BUFFER_MAX_LEN      (4096)

char buffer[BUFFER_MAX_LEN];

void str_toupper(char *str)
{
    int i;
    for (i = 0; i < strlen(str); i ++) {
        str[i] = toupper(str[i]);
    }
}

int main(int argc, char **argv)
{
    int listen_fd = 0;
    int client_fd = 0;
    struct sockaddr_in server_addr;
    struct sockaddr_in client_addr;
    socklen_t           client_len;

    int epfd = 0;
    struct epoll_event event, *my_events;

    // socket
    listen_fd = socket(AF_INET, SOCK_STREAM, 0);

    // bind
    server_addr.sin_family = AF_INET;
    server_addr.sin_addr.s_addr = htonl(INADDR_ANY);
    server_addr.sin_port = htons(SERVER_PORT);
    bind(listen_fd, (struct sockaddr*)&server_addr, sizeof(server_addr));

    // listen
    listen(listen_fd, 10);

    // epoll create
    epfd = epoll_create(EPOLL_MAX_NUM);
    if (epfd < 0) {
        perror("epoll create");
        goto END;
    }

    // listen_fd -> epoll
    event.events = EPOLLIN;
    event.data.fd = listen_fd;
    if (epoll_ctl(epfd, EPOLL_CTL_ADD, listen_fd, &event) < 0) {
        perror("epoll ctl add listen_fd ");
        goto END;
    }

    my_events = malloc(sizeof(struct epoll_event) * EPOLL_MAX_NUM);


    while (1) {
        // epoll wait
        int active_fds_cnt = epoll_wait(epfd, my_events, EPOLL_MAX_NUM, -1);
        int i = 0;
        for (i = 0; i < active_fds_cnt; i++) {
            // if fd == listen_fd
            if (my_events[i].data.fd == listen_fd) {
                //accept
                client_fd = accept(listen_fd, (struct sockaddr*)&client_addr, &client_len);
                if (client_fd < 0) {
                    perror("accept");
                    continue;
                }

                char ip[20];
                printf("new connection[%s:%d]\n", inet_ntop(AF_INET, &client_addr.sin_addr, ip, sizeof(ip)), ntohs(client_addr.sin_port));

                event.events = EPOLLIN | EPOLLET;
                event.data.fd = client_fd;
                epoll_ctl(epfd, EPOLL_CTL_ADD, client_fd, &event);
            }
            else if (my_events[i].events & EPOLLIN) {
                printf("EPOLLIN\n");
                client_fd = my_events[i].data.fd;

                // do read

                buffer[0] = '\0';
                int n = read(client_fd, buffer, 5);
                if (n < 0) {
                    perror("read");
                    continue;
                }
                else if (n == 0) {
                    epoll_ctl(epfd, EPOLL_CTL_DEL, client_fd, &event);
                    close(client_fd);
                }
                else {
                    printf("[read]: %s\n", buffer);
                    buffer[n] = '\0';
#if 1
                    str_toupper(buffer);
                    write(client_fd, buffer, strlen(buffer));
                    printf("[write]: %s\n", buffer);
                    memset(buffer, 0, BUFFER_MAX_LEN);
#endif

/*
                    event.events = EPOLLOUT;
                    event.data.fd = client_fd;
                    epoll_ctl(epfd, EPOLL_CTL_MOD, client_fd, &event);
*/
                }
            }
            else if (my_events[i].events & EPOLLOUT) {
                printf("EPOLLOUT\n");
/*
                client_fd = my_events[i].data.fd;
                str_toupper(buffer);
                write(client_fd, buffer, strlen(buffer));
                printf("[write]: %s\n", buffer);
                memset(buffer, 0, BUFFER_MAX_LEN);

                event.events = EPOLLIN;
                event.data.fd = client_fd;
                epoll_ctl(epfd, EPOLL_CTL_MOD, client_fd, &event);
*/
            }
        }
    }



END:
    close(epfd);
    close(listen_fd);
    return 0;
}

2.6.2 客户端

#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <strings.h>

#include <sys/types.h>
#include <sys/socket.h>
#include <arpa/inet.h>
#include <unistd.h>
#include <fcntl.h>

#define MAX_LINE (1024)
#define SERVER_PORT (7778)

void setnoblocking(int fd)
{
    int opts = 0;
    opts = fcntl(fd, F_GETFL);
    opts = opts | O_NONBLOCK;
    fcntl(fd, F_SETFL);
}

int main(int argc, char **argv)
{
    int  sockfd;
    char recvline[MAX_LINE + 1] = {0};

    struct sockaddr_in server_addr;

    if (argc != 2) {
        fprintf(stderr, "usage ./client <SERVER_IP>\n");
        exit(0);
    }


    // 创建socket
    if ( (sockfd = socket(AF_INET, SOCK_STREAM, 0)) < 0) {
        fprintf(stderr, "socket error");
        exit(0);
    }


    // server addr 赋值
    bzero(&server_addr, sizeof(server_addr));
    server_addr.sin_family = AF_INET;
    server_addr.sin_port = htons(SERVER_PORT);

    if (inet_pton(AF_INET, argv[1], &server_addr.sin_addr) <= 0) {
        fprintf(stderr, "inet_pton error for %s", argv[1]);
        exit(0);
    }


    // 链接服务端
    if (connect(sockfd, (struct sockaddr*) &server_addr, sizeof(server_addr)) < 0) {
        perror("connect");
        fprintf(stderr, "connect error\n"); 
        exit(0);
    }

    setnoblocking(sockfd);

    char input[100];
    int n = 0;
    int count = 0;



    // 不断的从标准输入字符串
    while (fgets(input, 100, stdin) != NULL)
    {
        printf("[send] %s\n", input);
        n = 0;
        // 把输入的字符串发送 到 服务器中去
        n = send(sockfd, input, strlen(input), 0);
        if (n < 0) {
            perror("send");
        }

        n = 0;
        count = 0;


        // 读取 服务器返回的数据
        while (1)
        {
            n = read(sockfd, recvline + count, MAX_LINE);
            if (n == MAX_LINE)
            {
                count += n;
                continue;
            }
            else if (n < 0){
                perror("recv");
                break;
            }
            else {
                count += n;
                recvline[count] = '\0';
                printf("[recv] %s\n", recvline);
                break;
            }
        }
    }

    return 0;
}
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