目录python
安装:pip3 install gevent编程
Gevent 是一个第三方库,能够轻松经过gevent实现并发同步或异步编程,在gevent中用到的主要模式是Greenlet,它是以C扩展模块形式接入Python的轻量级协程。 Greenlet所有运行在主程序操做系统进程的内部,但它们被协做式地调度。数组
g1=gevent.spawn(func,1,,2,3,x=4,y=5)
:建立一个协程对象g1,spawn括号内第一个参数是函数名,如eat,后面能够有多个参数,能够是位置实参或关键字实参,都是传给函数eat的多线程
g2=gevent.spawn(func2)
并发
g1.join()
:等待g1结束异步
g2.join()
:等待g2结束socket
上述两步合做一步:gevent.joinall([g1,g2])
async
g1.value
:拿到func1的返回值异步编程
import gevent def eat(name): print('%s eat 1' %name) gevent.sleep(2) print('%s eat 2' %name) def play(name): print('%s play 1' %name) gevent.sleep(1) print('%s play 2' %name) g1=gevent.spawn(eat,'egon') g2=gevent.spawn(play,name='egon') g1.join() g2.join() # 或者gevent.joinall([g1,g2]) print('主')
上例gevent.sleep(2)
模拟的是gevent能够识别的io阻塞,而time.sleep(2)
或其余的阻塞,gevent是不能直接识别的须要用下面一行代码,打补丁,就能够识别了。函数
from gevent import monkey;monkey.patch_all()
必须放到被打补丁者的前面,如time,socket模块以前。
或者咱们干脆记忆成:要用gevent,须要将from gevent import monkey;monkey.patch_all()
放到文件的开头。
from gevent import monkey;monkey.patch_all() import gevent import time def eat(): print('eat food 1') time.sleep(2) print('eat food 2') def play(): print('play 1') time.sleep(1) print('play 2') g1=gevent.spawn(eat) g2=gevent.spawn(play) gevent.joinall([g1,g2]) print('主')
咱们能够用threading.current_thread().getName()
来查看每一个g1和g2,查看的结果为DummyThread-n,即假线程
from gevent import monkey;monkey.patch_all() import threading import gevent import time def eat(): print(threading.current_thread().getName()) print('eat food 1') time.sleep(2) print('eat food 2') def play(): print(threading.current_thread().getName()) print('play 1') time.sleep(1) print('play 2') g1=gevent.spawn(eat) g2=gevent.spawn(play) gevent.joinall([g1,g2]) print('主')
from gevent import spawn,joinall,monkey;monkey.patch_all() import time def task(pid): """ Some non-deterministic task """ time.sleep(0.5) print('Task %s done' % pid) def synchronous(): # 同步 for i in range(10): task(i) def asynchronous(): # 异步 g_l=[spawn(task,i) for i in range(10)] joinall(g_l) print('DONE') if __name__ == '__main__': print('Synchronous:') synchronous() print('Asynchronous:') asynchronous() # 上面程序的重要部分是将task函数封装到Greenlet内部线程的gevent.spawn。 # 初始化的greenlet列表存放在数组threads中,此数组被传给gevent.joinall 函数, # 后者阻塞当前流程,并执行全部给定的greenlet任务。执行流程只会在 全部greenlet执行完后才会继续向下走。
经过gevent实现单线程下的socket并发
注意:from gevent import monkey;monkey.patch_all()
必定要放到导入socket模块以前,不然gevent没法识别socket的阻塞。
from gevent import monkey;monkey.patch_all() from socket import * import gevent #若是不想用money.patch_all()打补丁,能够用gevent自带的socket # from gevent import socket # s=socket.socket() def server(server_ip,port): s=socket(AF_INET,SOCK_STREAM) s.setsockopt(SOL_SOCKET,SO_REUSEADDR,1) s.bind((server_ip,port)) s.listen(5) while True: conn,addr=s.accept() gevent.spawn(talk,conn,addr) def talk(conn,addr): try: while True: res=conn.recv(1024) print('client %s:%s msg: %s' %(addr[0],addr[1],res)) conn.send(res.upper()) except Exception as e: print(e) finally: conn.close() if __name__ == '__main__': server('127.0.0.1',8080)
from socket import * client=socket(AF_INET,SOCK_STREAM) client.connect(('127.0.0.1',8080)) while True: msg=input('>>: ').strip() if not msg:continue client.send(msg.encode('utf-8')) msg=client.recv(1024) print(msg.decode('utf-8'))
from threading import Thread from socket import * import threading def client(server_ip,port): c=socket(AF_INET,SOCK_STREAM) #套接字对象必定要加到函数内,即局部名称空间内,放在函数外则被全部线程共享,则你们公用一个套接字对象,那么客户端端口永远同样了 c.connect((server_ip,port)) count=0 while True: c.send(('%s say hello %s' %(threading.current_thread().getName(),count)).encode('utf-8')) msg=c.recv(1024) print(msg.decode('utf-8')) count+=1 if __name__ == '__main__': for i in range(500): t=Thread(target=client,args=('127.0.0.1',8080)) t.start()