通过上一小节,能够看出,通过使用threading模块能完成多任务的程序开发,为了让每个线程的封装性更完美,所以使用threading模块时,往往会定义一个新的子类class,只要继承threading.Thread
就可以了,然后重写run
方法
示例如下:
#coding=utf-8
import threading
import time
class MyThread(threading.Thread):
def run(self):
for i in range(3):
time.sleep(1)
msg = "I‘m "+self.name+‘ @ ‘+str(i) #name属性中保存的是当前线程的名字
print(msg)
if __name__ == ‘__main__‘:
t = MyThread()
t.start()
#coding=utf-8
import threading
import time
class MyThread(threading.Thread):
def run(self):
for i in range(3):
time.sleep(1)
msg = "I‘m "+self.name+‘ @ ‘+str(i)
print(msg)
def test():
for i in range(5):
t = MyThread()
t.start()
if __name__ == ‘__main__‘:
test()
执行结果:(运行的结果可能不一样,但是大体是一致的)
I‘m Thread-1 @ 0
I‘m Thread-2 @ 0
I‘m Thread-5 @ 0
I‘m Thread-3 @ 0
I‘m Thread-4 @ 0
I‘m Thread-3 @ 1
I‘m Thread-4 @ 1
I‘m Thread-5 @ 1
I‘m Thread-1 @ 1
I‘m Thread-2 @ 1
I‘m Thread-4 @ 2
I‘m Thread-5 @ 2
I‘m Thread-2 @ 2
I‘m Thread-1 @ 2
I‘m Thread-3 @ 2
从代码和执行结果我们可以看出,多线程程序的执行顺序是不确定的。当执行到sleep语句时,线程将被阻塞(Blocked),到sleep结束后,线程进入就绪(Runnable)状态,等待调度。而线程调度将自行选择一个线程执行。上面的代码中只能保证每个线程都运行完整个run函数,但是线程的启动顺序、run函数中每次循环的执行顺序都不能确定。
原文:https://www.cnblogs.com/jyue/p/10459568.html