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(网上下了别人的例子想学习下,在其基础上小改下,运行时出问题:开一个client端连接server端,收发信息正常,再开一个client端,前一个client端失效,再开第三个,前两个失效)
主要变量定义:
int client[20]存放用户套接字标识符;
int sockfd表示服务器本地套接字;
char buf[ ]作为共享接收消息缓冲区;
server端:
两个线程:线程1 收client端信息,线程2 发信息给client端
client端:
两个进程:父进程 发信息给server端,子进程 收server端信息
程序如下:
client端:
//包含工程所需的头文件
#include<stdio.h>
#include<netinet/in.h> //定义数据结构sockaddr_in
#include<sys/socket.h> //提供socket函数及数据结构
#include<sys/types.h> //数据类型定义
#include<string.h>
#include<stdlib.h>
#include<netdb.h>
#include<unistd.h>
#include<signal.h>
#include<time.h>
int main(int argc, char *argv[])
{
struct sockaddr_in clientaddr;//定义地址结构
pid_t pid;
int clientfd,sendbytes,recvbytes;//定义客户端套接字
struct hostent *host;
char *buf,*buf_r;
/*
if(argc < 4)
{
printf("usage:\n");
printf("%s host port name\n",argv[0]);
exit(1);
}
*/
//host = gethostbyname(argv[1]);
if((clientfd = socket(AF_INET,SOCK_STREAM,0)) == -1) //创建客户端套接字
{
perror("socket\n");
exit(1);
}
//绑定客户端套接字
clientaddr.sin_family = AF_INET;
//clientaddr.sin_port = htons((uint16_t)atoi(argv[2]));
clientaddr.sin_port = htons((uint16_t)atoi("3491"));
inet_pton(AF_INET, "127.0.0.1", &clientaddr.sin_addr);
//clientaddr.sin_addr = *((struct in_addr *)host->h_addr);
bzero(&(clientaddr.sin_zero),0);
if(connect(clientfd,(struct sockaddr *)&clientaddr,sizeof(struct sockaddr)) == -1) //连接服务端
{
perror("connect\n");
exit(1);
}
buf=(char *)malloc(120);
memset(buf,0,120);
buf_r=(char *)malloc(100);
if( recv(clientfd,buf,100,0) == -1)
{
perror("recv:");
exit(1);
}
printf("\n%s\n",buf);
pid = fork();//创建子进程
while(1)
{
if(pid > 0){
//父进程用于发送信息
//get_cur_time(time_str);
//strcpy(buf,argv[3]);
//strcpy(buf,argv[1]);
strcpy(buf,"tuta");
strcat(buf,":");
memset(buf_r,0,100);
//gets(buf_r);
fgets(buf_r,100,stdin);
strncat(buf,buf_r,strlen(buf_r)-1);
//strcat(buf,time_str);
//printf("---%s\n",buf);
if((sendbytes = send(clientfd,buf,strlen(buf),0)) == -1)
{
perror("send\n");
exit(1);
}
}
else if(pid == 0)
{
//子进程用于接收信息
memset(buf,0,100);
if(recv(clientfd,buf,100,0) <= 0)
{
perror("recv:");
close(clientfd);
raise(SIGSTOP);
exit(1);
}
printf("%s\n",buf);
}
else
perror("fork");
}
close(clientfd);
return 0;
}
server端:
//包含工程所需的头文件
#include<stdio.h>
#include<stdlib.h>
#include<sys/types.h> //数据类型定义
#include<sys/stat.h>
#include<netinet/in.h> //定义数据结构sockaddr_in
#include<sys/socket.h> //提供socket函数及数据结构
#include<string.h>
#include<unistd.h>
#include<signal.h>
#include<sys/ipc.h>
#include<errno.h>
#include<sys/shm.h>
#include<time.h>
#include <pthread.h>
#define PERM S_IRUSR|S_IWUSR
#define MYPORT 3491 //宏定义定义通信端口
#define BACKLOG 10 //宏定义,定义服务程序可以连接的最大客户数量
#define WELCOME "|----------Welcome to the chat room! ----------|" //宏定义,当客户端连接服务端时,想客户发送此欢迎字符串
//转换函数,将int类型转换成char *类型
pthread_mutex_t mut;
pthread_t thread[20];
char *buf;
void itoa(int i,char*string)
{
int power,j;
j=i;
for(power=1;j>=10;j/=10)
power*=10;
for(;power>0;power/=10)
{
*string++='0'+i/power;
i%=power;
}
*string='\0';
}
//得到当前系统时间
void get_cur_time(char * time_str)
{
time_t timep;
struct tm *p_curtime;
char *time_tmp;
time_tmp=(char *)malloc(2);
memset(time_tmp,0,2);
memset(time_str,0,20);
time(&timep);
p_curtime = localtime(&timep);
strcat(time_str," (");
itoa(p_curtime->tm_hour,time_tmp);
strcat(time_str,time_tmp);
strcat(time_str,":");
itoa(p_curtime->tm_min,time_tmp);
strcat(time_str,time_tmp);
strcat(time_str,":");
itoa(p_curtime->tm_sec,time_tmp);
strcat(time_str,time_tmp);
strcat(time_str,")");
free(time_tmp);
}
//创建共享存储区
key_t shm_create()
{
key_t shmid;
//shmid = shmget(IPC_PRIVATE,1024,PERM);
if((shmid = shmget(IPC_PRIVATE,1024,PERM)) == -1)
{
fprintf(stderr,"Create Share Memory Error:%s\n\a",strerror(errno));
exit(1);
}
return shmid;
}
//端口绑定函数,创建套接字,并绑定到指定端口
int bindPort(unsigned short int port)
{
int sockfd;
struct sockaddr_in my_addr;
sockfd = socket(AF_INET,SOCK_STREAM,0);//创建基于流套接字
my_addr.sin_family = AF_INET;//IPv4协议族
my_addr.sin_port = htons(port);//端口转换
my_addr.sin_addr.s_addr = INADDR_ANY;
bzero(&(my_addr.sin_zero),0);
if(bind(sockfd,(struct sockaddr*)&my_addr,sizeof(struct sockaddr)) == -1)
{
perror("bind");
exit(1);
}
printf("bind success!\n");
return sockfd;
}
void *thread1(void *fd[])
{
char *time_str, *temp, *w_addr, *r_addr;
int recvbytes;
time_str=(char *)malloc(20);
temp = (char *)malloc(255);
//buf = (char *)malloc(255);
//memset(buf,0,255);
send(fd[0],WELCOME,strlen(WELCOME),0);//发送问候信息
while(1)
{
if((recvbytes = recv(fd[0],buf,255,0)) <= 0)
{
perror("recv1");
close(fd[0]);
raise(SIGKILL);
exit(1);
}
if(strstr(buf, "quit") != 0){
break;
}
sleep(2);
}
printf("------------------------------\n");
free(buf);
close(fd[0]);
return 0;
}
void *thread2(void *fd[])
{
char *time_str, *tmp;
time_str = (char *)malloc(20);
tmp = (char *)malloc(255);
while(1)
{
if(strcmp(tmp, buf) == 0){
continue;
}
printf(" %s\n",buf);
if(send(fd[0],buf,strlen(buf),0) == -1)
{
perror("send");
}
strcpy(tmp, buf);
}
printf("------------------------------\n");
free(buf);
close(fd[0]);
}
void multi_pthread(int m, int *store[])
{
pthread_mutex_init(&mut,NULL);
int temp;
memset(&thread, 0, sizeof(thread));
if((temp = pthread_create(&thread[m], NULL, thread1, store)) != 0){
printf("线程创建失败!\n");
}
else
printf("线程1被创建\n");
if((temp = pthread_create(&thread[m+1], NULL, thread2, store)) != 0){
printf("线程创建失败!\n");
}
else
printf("线程2被创建\n");
}
int main(int argc, char *argv[])
{
int sockfd,clientfd,sin_size,recvbytes,client_fd[10],i=0,k; //定义监听套接字、客户套接字
int *store[2];
socklen_t theiraddr_len;
char *r_addr, *w_addr, *temp, *time_str;//="\0"; //定义临时存储区
struct sockaddr_in their_addr; //定义地址结构
key_t shmid;
memset(client_fd,0,10);
buf = (char *)malloc(255);
shmid = shm_create(); //创建共享存储区
temp = (char *)malloc(255);
time_str=(char *)malloc(20);
sockfd = bindPort(MYPORT);//绑定端口
while(1)
{
if(listen(sockfd,BACKLOG) == -1)//在指定端口上监听
{
perror("listen");
exit(1);
}
printf("listening......\n");
theiraddr_len = sizeof(their_addr);
if((clientfd = accept(sockfd,(struct sockaddr*)&their_addr,&theiraddr_len)) == -1)//接收客户端连接
{
perror("accept");
exit(1);
}else{
while (1){
if((clientfd != client_fd[i]) && (client_fd[i+1] == 0)){
client_fd[i+1] = clientfd;
k = i+1;
store[0] = client_fd[i+1];
store[1] = shmid;
multi_pthread(k,store);
//pthread_join(thread[k],NULL);
break;
}
i++;
}
}
}
return 0;
}
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