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Fast Atomic Multicast

机译:快速原子组播

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摘要

Atomic multicast is a communication building block of scalable and highly available applications. With atomic multicast, messages can be ordered and reliably propagated to one or more groups of server processes. Because each message can be multicast to a different set of destinations, distributed message ordering is challenging. Some atomic multicast protocols address this challenge by ordering all messages using a fixed group of processes, regardless of the destination of the messages. To be efficient, however, an atomic multicast protocol must be genuine: only the message sender and destination groups should communicate to order a message. In this paper, we present FastCast, a genuine atomic multicast algorithm that offers unprecedented low time complexity, measured in communication delays. FastCast can order messages addressed to multiple groups in four communication delays, messages addressed to a single group take three communication delays. In addition to proposing a novel atomic multicast protocol, we extensively assess its performance experimentally.
机译:原子多播是可扩展和高可用应用的通信构建块。通过原子组播,可以订购消息并可可靠地传播到一个或多个服务器进程组。因为每个消息都可以是不同一组目的地的多播,所以分布式消息排序是具有挑战性的。某些原子组播协议通过使用固定的一组进程订购所有消息,无论消息的目的地如何,通过订购所有消息来解决这一挑战。然而,要高效,但原子组播协议必须是真实的:只有消息发件人和目标组应该进行通信以订购消息。在本文中,我们呈现FaSTCast,这是一种真实的原子组播算法,可以在通信延迟中测量前所未有的低时间复杂性。 FaSTCast可以在四个通信延迟中向多个组命令发送消息,发送给单个组的消息采用三个通信延迟。除了提出新的原子多播协议外,我们还通过实验广泛评估其性能。

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