多线程

run(): 用以表示线程活动的方法。
start():启动线程活动。
join([time]): 等待至线程中止。这阻塞调用线程直至线程的join() 方法被调用中止-正常退出或者抛出未处理的异常-或者是可选的超时发生。
isAlive(): 返回线程是否活动的。
getName(): 返回线程名。
setName(): 设置线程名。
1)使用Threading模块创建线程
使用Threading模块创建线程,直接从threading.Thread继承,然后重写__init__方法和run方法:
import threading
import time

exitFlag = 0

class myThread (threading.Thread): #继承父类threading.Thread
def __init__(self, threadID, name, counter):
threading.Thread.__init__(self)
self.threadID = threadID
self.name = name
self.counter = counter
def run(self): #把要执行的代码写到run函数里面 线程在创建后会直接运行run函数
print "Starting " + self.name
print_time(self.name, self.counter, 5)
print "Exiting " + self.name

def print_time(threadName, delay, counter):
while counter:
if exitFlag:
thread.exit()
time.sleep(delay)
print "%s: %s" % (threadName, time.ctime(time.time()))
counter -= 1

# 创建新线程
thread1 = myThread(1, "Thread-1", 1)
thread2 = myThread(2, "Thread-2", 2)

# 开启线程
thread1.start()
thread2.start()

print "Exiting Main Thread"

2)线程同步
如果多个线程共同对某个数据修改,则可能出现不可预料的结果,
为了保证数据的正确性,需要对多个线程进行同步。
使用Thread对象的Lock和Rlock可以实现简单的线程同步,这两个对象都有
acquire方法和release方法,对于那些需要每次只允许一个线程操作的数据,
可以将其操作放到acquire和release方法之间。
import threading
import time

class myThread (threading.Thread):
def __init__(self, threadID, name, counter):
threading.Thread.__init__(self)
self.threadID = threadID
self.name = name
self.counter = counter
def run(self):
print "Starting " + self.name
# 获得锁,成功获得锁定后返回True
# 可选的timeout参数不填时将一直阻塞直到获得锁定
# 否则超时后将返回False
threadLock.acquire()
print_time(self.name, self.counter, 3)
# 释放锁
threadLock.release()

def print_time(threadName, delay, counter):
while counter:
time.sleep(delay)
print "%s: %s" % (threadName, time.ctime(time.time()))
counter -= 1

threadLock = threading.Lock()
threads = []

# 创建新线程
thread1 = myThread(1, "Thread-1", 1)
thread2 = myThread(2, "Thread-2", 2)

# 开启新线程
thread1.start()
thread2.start()

# 添加线程到线程列表
threads.append(thread1)
threads.append(thread2)

# 等待所有线程完成
for t in threads:
t.join()
print "Exiting Main Thread"

3)线程优先级队列
Python的Queue模块中提供了同步的、线程安全的队列类,包括FIFO(先入先出)
队列Queue,LIFO(后入先出)队列LifoQueue,和优先级队列PriorityQueue。
这些队列都实现了锁原语,能够在多线程中直接使用。可以使用队列来实现线程间的同步。

Queue模块中的常用方法:
Queue.qsize() 返回队列的大小
Queue.empty() 如果队列为空,返回True,反之False
Queue.full() 如果队列满了,返回True,反之False
Queue.full 与 maxsize 大小对应
Queue.get([block[, timeout]])获取队列,timeout等待时间
Queue.get_nowait() 相当Queue.get(False)
Queue.put(item) 写入队列,timeout等待时间
Queue.put_nowait(item) 相当Queue.put(item, False)
Queue.task_done() 在完成一项工作之后,Queue.task_done()函数向任务已经完成的队列发送一个信号
Queue.join() 实际上意味着等到队列为空,再执行别的操作

lg:
import Queue
import threading
import time

exitFlag = 0

class myThread (threading.Thread):
def __init__(self, threadID, name, q):
threading.Thread.__init__(self)
self.threadID = threadID
self.name = name
self.q = q
def run(self):
print "Starting " + self.name
process_data(self.name, self.q)
print "Exiting " + self.name

def process_data(threadName, q):
while not exitFlag:
queueLock.acquire()
if not workQueue.empty():
data = q.get()
queueLock.release()
print "%s processing %s" % (threadName, data)
else:
queueLock.release()
time.sleep(1)

threadList = ["Thread-1", "Thread-2", "Thread-3"]
nameList = ["One", "Two", "Three", "Four", "Five"]
queueLock = threading.Lock()
workQueue = Queue.Queue(10)
threads = []
threadID = 1

# 创建新线程
for tName in threadList:
thread = myThread(threadID, tName, workQueue)
thread.start()
threads.append(thread)
threadID += 1

# 填充队列
queueLock.acquire()
for word in nameList:
workQueue.put(word)
queueLock.release()

# 等待队列清空
while not workQueue.empty():
pass

# 通知线程是时候退出
exitFlag = 1

# 等待所有线程完成
for t in threads:
t.join()
print "Exiting Main Thread"

4)线程间通信(Manager())
A manager return by Manager() will support type list,dict,Namespace,Lock,
RLock,Semaphore,BoundedSemaphore,Condition,Event,Queue,Value AND Array.
lg:
from multiprocessing import Process,Manager

def f(d,1):

原文地址:https://www.cnblogs.com/lens/p/4643208.html