Unix网络编程---第三次作业

Unix网络编程---第三次作业

 

要求:

利用多线程技术实现如下并发网络程序,要求对上课时的实现进行完善,利用线程专用数据TSD实现。

服务端:

服务器等待客户连接,连接成功后显示客户地址,接着接收该客户的名字并显示,然后接收来自客户的信息(字符串),将该字符串反转,并将结果送回客户。要求服务器具有同时处理多个客户的能力。

客户端:

客户首先与服务器连接,接着接收用户输入客户的名字,将该名字发送给服务器,然后接收用户输入的字符串,并发送给服务器,然后接收服务器返回的经处理后的字符串,并显示之。当用户输入Ctrl+D,终止连接并退出。

程序实现:

服务器端:my_server3.c

#include <sys/socket.h>

#include <sys/types.h>/*The funcion sizeof,socklen_t need*/

#include <netinet/in.h>/*The funcion sockaddr_in need*/

#include <unistd.h>

#include <arpa/inet.h>/*The funcion inet_ntoa need*/

#include <string.h>/*The funcion strlen need*/

#include <errno.h>/*errno == EINTR*/

#include <sys/wait.h>/*WNOHANG*/

#include <pthread.h>

#define  UPORT 8088 /*This is the port number used by me */

#define  MAXLINE 255

#define  LISTENQ 32

#define  NAMELEN 21

typedef struct {

       char buf[MAXLINE+1];

       ssize_t n;

       int sockfd;

       char name[NAMELEN+1];

} readline;

pthread_key_t ser_key;

pthread_once_t ser_once=PTHREAD_ONCE_INIT;

void str_echo( readline *tsd);

void sig_chld(int signo);

void ser_destructor(void *ptr);

void service_once(void);

static void *doit(void *arg);

void echo_name(readline *tsd);

int main(int argc, char **argv)

{

       int   listenfd ,connfd, reuse=1;//if the value of reuse is not zero, mean open this reuse address selection, or else ban this function

       int *cfdp;

       struct sockaddr_in  servaddr, cliaddr;

       socklen_t  clilen;

       pthread_t tid,tid1;

       listenfd = socket(AF_INET, SOCK_STREAM, 0);

       bzero(&servaddr, sizeof(servaddr));

       servaddr.sin_family      = AF_INET;

       servaddr.sin_addr.s_addr = htonl(INADDR_ANY);

       servaddr.sin_port        = htons(UPORT);       /* daytime server */

    if( setsockopt(listenfd,SOL_SOCKET,SO_REUSEADDR,&reuse,sizeof(reuse))==-1){

              perror("There is an error occured when the program set REUSEADDR symbol ");

              return -1;

       }

       if(bind(listenfd, (struct sockaddr *) &servaddr, sizeof(servaddr))==-1){

              perror("%s ","bind error");

              exit(-1);

       }

       listen(listenfd, LISTENQ);

       signal(SIGCHLD, sig_chld);

       for ( ; ; ) {

              clilen=sizeof(cliaddr);

              cfdp=(int *)malloc(sizeof(int));

              if((*cfdp = accept(listenfd, (struct sockaddr *) &cliaddr, &clilen))==-1){

                     perror("%s ","An error occured while tring to creat a connfd! ");

                     exit(-1);

              }

              printf("the new connection address is:%s:%d ",inet_ntoa(cliaddr.sin_addr),cliaddr.sin_port);

              if(pthread_create(&tid, NULL, &doit, cfdp )!=0){

                     perror("pthread_create: error ");

                     exit(-1);

              }

              //pthread_create(&tid, NULL, &doit,NULL );

              /*if( (childpid=fork())==0) {

                     close(listenfd);

                     str_echo(connfd);

                     exit(0);

              }*/

              //pthread_join(tid,NULL);

              //close(*cfdp); /*parent closes connected socket*/

       }

}

void echo_name(readline *tsd){

       char  tmp;

       int i, j;

       char name[21];//all

       strcpy(tsd->buf,"Dear client please input your name: ");

       if(write(tsd->sockfd, tsd->buf,strlen(tsd->buf)+1)==-1) {

              perror("write error");

              exit(-1);

       }

       if ((tsd->n=read(tsd->sockfd,tsd->name, NAMELEN)) > 0) { /*tsd->=*tsd.n*/

              tsd->name[tsd->n-2]=0;

              printf("the client's name: [ %s ] ", tsd->name);

              strcpy(tsd->buf,"Now,you can begin to input the string you need to conver! ");

              if(write(tsd->sockfd, tsd->buf,strlen(tsd->buf)+1)==-1) {

                     perror("write error");

                     exit(-1);

              }

       }

       if (tsd->n<0 && errno == EINTR) {

              perror("read:error interrupt");

       }

       else if (tsd->n<0) {

              perror("str_echo:read error");

              exit(-1);

       }

}

void str_echo( readline *tsd) {

       char  tmp;

       int i, j;

again:

       while ( (tsd->n=read(tsd->sockfd,tsd->buf, MAXLINE)) > 0) { /*tsd->=*tsd.n*/

              printf("client [ %s ] input string:%s",tsd->name,tsd->buf);

              for(i=0, j=tsd->n-3; i<j; i++, j--) {

                     tmp=tsd->buf[i];

                     tsd->buf[i]=tsd->buf[j];

                     tsd->buf[j]=tmp;

              }

              if(write(tsd->sockfd, tsd->buf, tsd->n)==-1) {

                     perror("write error");

                     exit(-1);

              }

              printf("inverted order %s's string:%s",tsd->name,tsd->buf);

       }

       if (tsd->n<0 && errno == EINTR) {

              goto again;

       }

       else if (tsd->n<0) {

              perror("str_echo:read error");

              exit(-1);

       }

}

void sig_chld(int signo)

{

       pid_t pid;

       int stat;

       while( (pid = waitpid(-1,&stat,WNOHANG))>0)

              printf("child %d terminated ", pid);

       return;

}

void ser_destructor(void *ptr) {

       free(ptr);

       printf("one of the tsd end:%d ",pthread_self());

}

void service_once(void) {

       pthread_key_create(&ser_key, ser_destructor);

}

static void *doit(void *arg) {

       readline *tsd;

       if(pthread_detach(pthread_self())!=0) {

              perror("pthread_detach:error ");

              exit(-1);

       }

       pthread_once(&ser_once,service_once);

       if( (tsd=pthread_getspecific(ser_key)) == NULL){

              tsd=calloc(1,sizeof(readline));

              pthread_setspecific(ser_key,tsd);

              tsd->sockfd=*( (int*)arg);

       }

       //printf("%d ",tsd->sockfd);

    echo_name(tsd);

       str_echo( tsd);

       if(close(*( (int*)arg))==-1){

              perror("close:error ");

              exit(-1);

       }

       pthread_exit(0);

       return;

}

客户端:my_client3.c(与作业二的客户端相同)

#include <sys/socket.h>

#include <sys/types.h>

#include <netinet/in.h>

#include <unistd.h>

#include <stdio.h>

#include <string.h>

#include <errno.h>

#define  UPORT 8088 /*This is the port number used by me */

#define  MAXLINE 255

void str_cli(FILE *fp, int sockfd) {

       char sendline[MAXLINE+1], recvline[MAXLINE+1];

       if(read(sockfd, recvline, MAXLINE) <= 0 ) {

              printf("server terminated prematurely! ");

              exit(0);

       }

       else{

              fputs(recvline,stdout);

       }

       while (fgets(sendline, MAXLINE+1, fp) != NULL) {

              if(write(sockfd, sendline, (strlen(sendline)+1)) == -1) {

                     perror("write error");

                     exit(-1);

              }

              if(read(sockfd, recvline, MAXLINE) <= 0 ) {

                     printf("server terminated prematurely! ");

                     exit(0);

              }

              //recvline(MAXLINE)=0;/*auto set 0 by initializing*/

              fputs(recvline,stdout);

       }

}

int main(int argc, char **argv)

{

       int                               sockfd, n;

       struct sockaddr_in  servaddr;

       if (argc != 2){

              perror("usage: a.out <IPaddress>");

              exit(-1);

       }

       if ( (sockfd = socket(AF_INET, SOCK_STREAM, 0)) < 0){

              perror("socket error");

              exit(-1);

       }

    bzero(&servaddr, sizeof(servaddr));

       servaddr.sin_family = AF_INET;

       servaddr.sin_port   = htons(UPORT);  /* daytime server */

       if (inet_pton(AF_INET, argv[1], &servaddr.sin_addr) <= 0){

              printf("inet_pton error for %s", argv[1]);

              exit(-1);

       }

       if (connect(sockfd, (struct sockaddr *) &servaddr, sizeof(servaddr)) < 0){

              perror("connect error");

              exit(-1);

       }

       str_cli(stdin,sockfd); /*do it all*/

       exit(0);

}

运行截图:

编译:gcc -pthread my_client3.c -o my_client3

Gcc -pthread my_server3.c -o my_server3

服务端运行:./my_server3

客户端1运行:./my_client3 192.168.1.119

客户端2运行:./my_client3 192.168.1.119

本实验是在两台虚拟机上操作

服务端ip:192.168.1.119

客户端1 ip:192.168.1.119

客户端2 ip:192.168.1.120。

服务端实现:利用线程专用数据TSD,并设置析构函数ser_destructor当线程退出时调用。通过listen套接字,为每个客户创建一个线程,并通过线程专用数据存储客户名与套接字描述符。

1、服务端:

 

2、客户端1:

 

3、客户端2:

 

总结:

1、 每个线程都有自己的数据栈,对于执行线程的函数其数据都是在线程单独的数据栈中,那么TSD主要是对全局变量的使用,来减少程序编写复杂性(个人理解),比如说每个线程都要用的数据,而每个线程所执行的功能又不一样,但是又要用到相同的数据或数据结构,如果定义全局变量,则都可能会修改,若是在每个功能函数都定义一下,这样又太麻烦,所以对于这种情况就利用线程专用数据TSD。

2、 对于服务端进程被kill后客户端还没能反应。当服务端被kill后内核发送FIN给客户端,客户端回ACK,但客户端阻塞在fgets中,只能当它发送数据后,服务端返回RST,于是客户端读到字节数小于等于0,才得知服务器关闭然后退出。

3、 对于2的问题解决方法:I/O复用、非阻塞、SO_KEEPALIVE套接字选项。还有没其它方法呢?

原文地址:https://www.cnblogs.com/lwhp/p/4996182.html