广域复制的可定制容错

Y. Amir, B. Coan, J. Kirsch, John Lane
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引用次数: 36

摘要

从物理机器的集合中构造逻辑机器是一种众所周知的提高分布式系统健壮性和容错性的技术。我们提出了一种新的、可扩展的复制体系结构,构建在专门设计用于跨多个站点的广域系统的逻辑机器上。每个站点中的物理机器通过运行本地状态机复制协议来实现逻辑机器,并且在逻辑机器之间运行广域复制协议。通过状态机方法实现逻辑机提供了在每个站点和广域复制协议中使用的容错方法的自由替代,允许基于感知风险来平衡性能和容错。提出了一种新的拜占庭容错协议,在逻辑机之间建立可靠的虚拟通信链路。我们的通信协议是高效的(在广域环境中是必要的),避免了在正常情况下操作期间发送冗余消息的需要,并允许逻辑机器消耗与单个物理机器大致相同的广域带宽。与现有的基于逻辑机器的方法相比,这极大地提高了我们系统的广域性能。我们实现了一个原型系统,并将其性能和容错性与现有解决方案进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Customizable Fault Tolerance forWide-Area Replication
Constructing logical machines out of collections of physical machines is a well-known technique for improving the robustness and fault tolerance of distributed systems. We present a new, scalable replication architecture, built upon logical machines specifically designed to perform well in wide-area systems spanning multiple sites. The physical machines in each site implement a logical machine by running a local state machine replication protocol, and a wide-area replication protocol runs among the logical machines. Implementing logical machines via the state machine approach affords free substitution of the fault tolerance method used in each site and in the wide-area replication protocol, allowing one to balance performance and fault tolerance based on perceived risk. We present a new byzantine fault-tolerant protocol that establishes a reliable virtual communication link between logical machines. Our communication protocol is efficient (a necessity in wide-area environments), avoiding the need for redundant message sending during normal-case operation and allowing a logical machine to consume approximately the same wide-area bandwidth as a single physical machine. This dramatically improves the wide-area performance of our system compared to existing logical machine based approaches. We implemented a prototype system and compare its performance and fault tolerance to existing solutions.
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