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  • (转)pika详解 (一)

    原文:https://blog.csdn.net/comprel/article/details/94592316

    pika

    pika处理消息可以简单分为以下几个步骤:

    我们首先创建连接对象,然后启动事件循环。
    当有连接时,调用on_connected方法。在该方法中创建channel
    channel创建完成,将调用on_channel_open方法。在该方法中,声明了一个queue。
    queue声明成功后,将调用on_queue_declared。在该方法中,调用channel.basic_consume,为RabbitMQ传递的每条消息调用handle_delivery。
    当RabbitMQ有发送消息,将调用handle_delivery方法传递AMQP Method框架,Header框架和Body
    官方给出的示例如下:

    import pika

    # Create a global channel variable to hold our channel object in
    channel = None

    # Step #2
    def on_connected(connection):
    """Called when we are fully connected to RabbitMQ"""
    # Open a channel
    connection.channel(on_channel_open)

    # Step #3
    def on_channel_open(new_channel):
    """Called when our channel has opened"""
    global channel
    channel = new_channel
    channel.queue_declare(queue="test", durable=True, exclusive=False, auto_delete=False, callback=on_queue_declared)

    # Step #4
    def on_queue_declared(frame):
    """Called when RabbitMQ has told us our Queue has been declared, frame is the response from RabbitMQ"""
    channel.basic_consume('test', handle_delivery)

    # Step #5
    def handle_delivery(channel, method, header, body):
    """Called when we receive a message from RabbitMQ"""
    print(body)

    # Step #1: Connect to RabbitMQ using the default parameters
    parameters = pika.ConnectionParameters()
    connection = pika.SelectConnection(parameters, on_connected)

    try:
    # Loop so we can communicate with RabbitMQ
    connection.ioloop.start()
    except KeyboardInterrupt:
    # Gracefully close the connection
    connection.close()
    # Loop until we're fully closed, will stop on its own
    connection.ioloop.start()
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    认证:

    认证使用PlainCredentials ,传递给credentials参数

    import pika
    credentials = pika.PlainCredentials('username', 'password')
    parameters = pika.ConnectionParameters(credentials=credentials)
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    连接器的参数传递:

    有两种方式:ConnectionParameters 和 URLParameters

    TCP Backpressure

    TCP背压, 流控机制的一种, 在rabbitmq 2.0 channel.flow移除,使用tcp backpresssure进行限流。 参数backpressure_detection。 如果pika发现有太多消息积压, 将调用通过add_backpressure_callback注册的回调函数。

    默认超过平常10倍的积压将会调用,这个参数也可以设置, 设置方法为set_backpressure_multiplier 值为整数

    例如:

    import pika

    parameters = pika.URLParameters('amqp://guest:guest@rabbit-server1:5672/%2F?backpressure_detection=t')
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    pika扩展时, 需要启动监听,使用connection.ioloop.start()方法

    import pika

    def on_open(connection):
    # Invoked when the connection is open
    pass

    # Create our connection object, passing in the on_open method
    connection = pika.SelectConnection(on_open_callback=on_open)

    try:
    # Loop so we can communicate with RabbitMQ
    connection.ioloop.start()
    except KeyboardInterrupt:
    # Gracefully close the connection
    connection.close()
    # Loop until we're fully closed, will stop on its own
    connection.ioloop.start()
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    拥有4种连接器

    pika.BlockingConnection - 同步模式, 简单易用
    pika.SelectConnection - 没有第三方依赖包的异步模式
    pika.adapters.tornado_connection.TornadoConnection - 基于Tornado 的异步IO请求模式
    pika.adapters.twisted_connection.TwistedProtocolConnection - 基于Twisted’的异步IO请求模式

     
    技术链接
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    技术有待改进,知识需要更新
    原来那些网络协议都是这么回事啊!!!
    谢谢老乡们的关注……
  • 原文地址:https://www.cnblogs.com/liujiacai/p/15489550.html
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