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linux多线程实验报告



Linux系统下的多线程遵循POSIX线程接口,称为 pthread。编写Linux下的多线程程序,需要使用头文件pthread.h,连接时需要使用库libpthread.a。顺便说一下,Linux 下pthread的实现是通过系统调用clone()来实现的。clone()是 Linux所特有的系统调用,它的使用方式类似fork,关于clone()的详细情况,有兴趣的读者可以去查看有关文档说明。下面我们展示一个最简单的多线程程序 pthread_create.c。


一个重要的线程创建函数原型:
#include <pthread.h>
int pthread_create(pthread_t *restrict tidp,const pthread_attr_t *restrict attr, void *(*start_rtn)(void),void *restrict arg);

    返回值:若是成功建立线程返回0,否则返回错误的编号
    形式参数:
                pthread_t *restrict tidp 要创建的线程的线程id指针
                const pthread_attr_t *restrict attr 创建线程时的线程属性
                void* (start_rtn)(void) 返回值是void类型的指针函数
                void *restrict arg   start_rtn的行参
               
例程1:                              
    功能:创建一个简单的线程
    程序名称:pthread_create.c         
/
    Name:pthread_create.c
    Used to study the multithread programming in Linux OS
    Author:zeickey
    Date:2006/9/16      
    Copyright (c) 2006,All Rights Reserved!
*/

void *myThread1(void)
{
    int i;
    for (i=0; i<100; i++)
    {
        printf("This is the 1st pthread,created by zieckeyhttps://blog.csdn.net/do2jiang/article/details/n");
        sleep(1);//Let this thread to sleep 1 second,and then continue to run
    }
}

void *myThread2(void)
{
    int i;
    for (i=0; i<100; i++)
    {
        printf("This is the 2st pthread,created by zieckeyhttps://blog.csdn.net/do2jiang/article/details/n");
        sleep(1);
    }
}

int main()
{
    int i=0, ret=0;
    pthread_t id1,id2;
  
    ret = pthread_create(&id2, NULL, (void*)myThread1, NULL);
    if (ret)
    {
        printf("Create pthread error!/n");
        return 1;
    }
  
    ret = pthread_create(&id2, NULL, (void*)myThread2, NULL);
    if (ret)
    {
        printf("Create pthread error!/n");
        return 1;
    }
  
    pthread_join(id1, NULL);
    pthread_join(id2, NULL);
  
    return 0;
}


  我们编译此程序:
# gcc pthread_create.c -lpthread

因为pthread的库不是linux系统的库,所以在进行编译的时候要加上-lpthread,否则编译不过,会出现下面错误
thread_test.c: 在函数 ‘create’ 中:
thread_test.c:7: 警告: 在有返回值的函数中,程序流程到达函数尾
/tmp/ccOBJmuD.o: In function `main':thread_test.c:(.text+0x4f):对‘pthread_create’未定义的引用
collect2: ld 返回 1

  运行,我们得到如下结果:
# https://blog.csdn.net/do2jiang/article/details/a.out
This is the 1st pthread,created by zieckey.
This is the 2st pthread,created by zieckey.
This is the 1st pthread,created by zieckey.
This is the 2st pthread,created by zieckey.
This is the 2st pthread,created by zieckey.
This is the 1st pthread,created by zieckey.
....

两个线程交替执行。
此例子介绍了创建线程的方法。
下面例子介绍向线程传递参数。


例程2:
    功能:向新的线程传递整形值
    程序名称:pthread_int.c
/
    Name:pthread_int.c
    Used to study the multithread programming in Linux OS
    Pass a parameter to the thread.
    Author:zeickey
    Date:2006/9/16      
    Copyright (c) 2006,All Rights Reserved!
*/

#include <stdio.h>
#include <pthread.h>
#include <unistd.h>

void *create(void *arg)
{
    int *num;
    num=(int *)arg;
    printf("create parameter is %d /n",*num);
    return (void *)0;
}
int main(int argc ,char *argv[])
{
    pthread_t tidp;
    int error;
  
    int test=4;
    int *attr=&test;
  
    error=pthread_create(&tidp,NULL,create,(void *)attr);

    if(error)
        {
        printf("pthread_create is created is not created ... /n");
        return -1;
        }
    sleep(1);
    printf("pthread_create is created .https://blog.csdn.net/do2jiang/article/n");
    return 0;      
}

gcc -lpthread pthread_int.c -Wall


    例程总结:
    可以看出来,我们在main函数中传递的整行指针,传递到我们新建的线程函数中。
    在上面的例子可以看出来我们向新的线程传入了另一个线程的int数据,线程之间还可以传递字符串或是更复杂的数据结构。

例程3:
    程序功能:向新建的线程传递字符串
        程序名称:pthread_string.c
/
    Name:pthread_string.c
    Used to study the multithread programming in Linux OS
    Pass a ‘char*‘ parameter to the thread.
    Author:zeickey
    Date:2006/9/16      
    Copyright (c) 2006,All Rights Reserved!
*/
#include <pthread.h>
#include <stdio.h>
#include <unistd.h>

void *create(void *arg)
{
    char *name;
    name=(char *)arg;
    printf("The parameter passed from main function is %s  /n",name);
    return (void *)0;
}

int main(int argc, char *argv[])
{
    char *a="zieckey";
    int error;
    pthread_t tidp;

    error=pthread_create(&tidp, NULL, create, (void *)a);

    if(error!=0)
    {
        printf("pthread is not createdhttps://blog.csdn.net/do2jiang/article/details/n");
        return -1;
    }
    sleep(1);
    printf("pthread is created... /n");
    return 0;
}  

  编译方法:

gcc -Wall pthread_string.c -lpthread


    执行结果:
The parameter passed from main function is zieckey
pthread is created...


    例程总结:
    可以看出来main函数中的字符串传入了新建的线程中。

例程4:
    程序功能:向新建的线程传递字符串
        程序名称:pthread_struct.c
/
    Name:pthread_struct.c
    Used to study the multithread programming in Linux OS
    Pass a ‘char*‘ parameter to the thread.
    Author:zeickey
    Date:2006/9/16      
    Copyright (c) 2006,All Rights Reserved!
*/
#include <stdio.h>
#include <pthread.h>
#include <unistd.h>
#include <stdlib.h>

struct menber
{
    int a;
    char *s;
};

void *create(void *arg)
{
    struct menber *temp;
    temp=(struct menber *)arg;
    printf("menber->a = %d  /n",temp->a);
    printf("menber->s = %s  /n",temp->s);
    return (void *)0;
}

int main(int argc,char *argv[])
{
    pthread_t tidp;
    int error;
    struct menber *b;
    b=(struct menber *)malloc( sizeof(struct menber) );
    b->a = 4;
    b->s = "zieckey";

    error = pthread_create(&tidp, NULL, create, (void *)b);

    if( error )
    {
        printf("phread is not created.https://blog.csdn.net/do2jiang/article/n");
        return -1;
    }
    sleep(1);
    printf("pthread is created.https://blog.csdn.net/do2jiang/article/n");
    return 0;
}

  编译方法:

gcc -Wall pthread_struct.c -lpthread


    执行结果:
menber->a = 4
menber->s = zieckey
pthread is created...

    例程总结:
    可以看出来main函数中的一个结构体传入了新建的线程中。
    线程包含了标识进程内执行环境必须的信息。他集成了进程中的所有信息都是对线程进行共享的,包括文本程序、程序的全局内存和堆内存、栈以及文件描述符。
  

例程5:
    程序目的:验证新建立的线程可以共享进程中的数据
    程序名称:pthread_share.c

/
    Name:pthread_share_data.c
    Used to study the multithread programming in Linux OS
    Pass a ‘char*‘ parameter to the thread.
    Author:zeickey
    Date:2006/9/16      
    Copyright (c) 2006,All Rights Reserved!
*/
#include <stdio.h>
#include <pthread.h>
#include <unistd.h>

static int a=4;
void *create(void *arg)
{
    printf("new pthread ... /n");
    printf("a=%d  /n",a);
    return (void *)0;
}

int main(int argc,char *argv[])
{
    pthread_t tidp;
    int error;
  
    a=5;

    error=pthread_create(&tidp, NULL, create, NULL);

    if(error!=0)
    {
        printf("new thread is not create ... /n");
        return -1;
    }
  
    sleep(1);
  
    printf("new thread is created ... /n");
    return 0;
}
  
  编译方法:

gcc -Wall pthread_share_data.c -lpthread


    执行结果:
new pthread ...
a=5
new thread is created ...


    例程总结:
可以看出来,我们在主线程更改了我们的全局变量a的值的时候,我们新建立的线程则打印出来了改变的值,可以看出可以访问线程所在进程中的数据信息。

         2、线程的终止

    如果进程中任何一个线程中调用exit,_Exit,或者是_exit,那么整个进程就会终止,
    与此类似,如果信号的默认的动作是终止进程,那么,把该信号发送到线程会终止进程。
    线程的正常退出的方式:
       (1) 线程只是从启动例程中返回,返回值是线程中的退出码
       (2) 线程可以被另一个进程进行终止
       (3) 线程自己调用pthread_exit函数
    两个重要的函数原型:

#include <pthread.h>
void pthread_exit(void *rval_ptr);
/*rval_ptr 线程退出返回的指针*/


    例程6
    程序目的:线程正常退出,接受线程退出的返回码
    程序名称:pthread_exit.c

/
    Name:pthread_exit.c
    Used to study the multithread programming in Linux OS
    A example showing a thread to exit and with a return code.
    Author:zeickey
    Date:2006/9/16       
    Copyright (c) 2006,All Rights Reserved!
*/

#include <stdio.h>
#include <pthread.h>
#include <unistd.h>

void *create(void *arg)
{
    printf("new thread is created ... /n");
    return (void *)8;
}

int main(int argc,char *argv[])
{
    pthread_t tid;
    int error;
    void *temp;

    error = pthread_create(&tid, NULL, create, NULL);

    if( error )
    {
        printf("thread is not created ... /n");
        return -1;
    }
    error = pthread_join(tid, &temp);

    if( error )
    {
        printf("thread is not exit ... /n");
        return -2;
    }
   
    printf("thread is exit code %d /n", (int )temp);
    return 0;
}

  编译方法:

gcc -Wall pthread_exit.c -lpthread


    执行结果:
new thread is created ...
thread is exit code 8

    例程7
    程序目的:线程结束返回一个复杂的数据结构
    程序名称:pthread_return_struct.c
#include <stdio.h>
#include <pthread.h>
#include <unistd.h>

struct menber
{
    int a;
    char *b;
}temp={8,"zieckey"};
void *create(void *arg)
{
    printf("new thread ... /n");
    return (void *)&temp;
}

int main(int argc,char *argv[])
{
    int error;
    pthread_t tid;
    struct menber *c;

    error = pthread_create(&tid, NULL, create, NULL);
  
    if( error )
    {
        printf("new thread is not created ... /n");
        return -1;
    }
    printf("main ... /n");

    error = pthread_join(tid,(void *)&c);

    if( error )
    {
        printf("new thread is not exit ... /n");
        return -2;
    }
    printf("c->a = %d  /n",c->a);
    printf("c->b = %s  /n",c->b);
    sleep(1);
    return 0;
}

gcc -Wall pthread_return_struct.c -lpthread

main ...
new thread ...
c->a = 8
c->b = zieckey


例程总结:
一定要记得返回的数据结构要是在这个数据要返回的结构没有释放的时候应用,
如果数据结构已经发生变化,那返回的就不会是我们所需要的,而是脏数据
3、线程标识

    函数原型:
  
#include <pthread.h>
pthread_t pthread_self(void);

    例程8
    程序目的:实现在新建立的线程中打印该线程的id和进程id
    程序名称:pthread_id.c
 
/
    Name:pthread_id.c
    Used to study the multithread programming in Linux OS.
    Showing how to get the thread's tid and the process's pid.
    Author:zeickey
    Date:2006/9/16      
    Copyright (c) 2006,All Rights Reserved!
*/
#include <stdio.h>
#include <pthread.h>
#include <unistd.h> /*getpid()*/

void *create(void *arg)
{
    printf("New thread .... /n");
    printf("This thread's id is 碷", (unsigned int)pthread_self());
    printf("The process pid is %d  /n",getpid());
    return (void *)0;
}

int main(int argc,char *argv[])
{
    pthread_t tid;
    int error;

    printf("Main thread is starting ... /n");

    error = pthread_create(&tid, NULL, create, NULL);

    if(error)
    {
        printf("thread is not created ... /n");
        return -1;
    }
    printf("The main process's pid is %d  /n",getpid());
    sleep(1);
    return 0;
}

    执行结果:

Main thread is starting ...
The main process's pid is 3307
New thread ....
This thread's id is
The process pid is 3307

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