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Decoupled Quorum-Based Byzantine-Resilient Coordination in Open Distributed Systems

机译:开放式分布式系统中基于Quorum的解耦仲裁的拜占庭弹性协调

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Open distributed systems are typically composed by an unknown number of processes running in heterogeneous hosts. Their communication often requires tolerance to temporary disconnections and security against malicious actions. Tuple spaces are a well-known coordination model for this sort of systems. They can support communication that is decoupled both in time and space. There are currently several implementations of distributed fault-tolerant tuple spaces but they are not Byzantine-resilient, i.e., they do not provide a correct service if some replicas are attacked and start to misbehave. This paper presents an efficient implementation of LBTS, a linearizable Byzantine fault-tolerant tuple space. LBTS uses a novel Byzantine quorum systems replication technique in which most operations are implemented by quorum protocols while stronger operations are implemented by more expensive protocols based on consensus. LBTS is linearizable and wait-free, showing interesting performance gains when compared to a similar construction based on state machine replication.
机译:开放式分布式系统通常由异构主机中运行的未知数量的进程组成。他们的通信通常需要对临时断开的容忍度和对恶意行为的安全性。元组空间是此类系统的众所周知的协调模型。他们可以支持在时间和空间上都分离的通信。当前有几种分布式容错元组空间的实现,但是它们不是拜占庭弹性的,即,如果某些副本受到攻击并开始行为异常,它们将无法提供正确的服务。本文提出了LBTS(线性化拜占庭容错元组空间)的有效实现。 LBTS使用新颖的拜占庭仲裁系统复制技术,其中大多数操作由仲裁协议实现,而更强大的操作由基于共识的更昂贵的协议实现。 LBTS是可线性化的且无需等待,与基于状态机复制的类似构造相比,它显示出令人感兴趣的性能提升。

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