Distributed computability in Byzantine asynchronous systems

H. Mendes, C. Tasson, M. Herlihy
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引用次数: 23

Abstract

In this work, we extend the topology-based approach for characterizing computability in asynchronous crash-failure distributed systems to asynchronous Byzantine systems. We give the first theorem with necessary and sufficient conditions to solve arbitrary tasks in asynchronous Byzantine systems where an adversary chooses faulty processes. For colorless tasks, an important subclass of distributed problems, the general result reduces to an elegant model that effectively captures the relation between the number of processes, the number of failures, as well as the topological structure of the task's simplicial complexes.
拜占庭异步系统中的分布式可计算性
在这项工作中,我们将基于拓扑的方法扩展到异步拜占庭系统中,用于表征异步崩溃故障分布式系统的可计算性。在敌方选择错误过程的异步拜占庭系统中,我们给出了求解任意任务的充要条件定理。对于无色任务(分布式问题的一个重要子类),一般结果简化为一个优雅的模型,该模型有效地捕获了进程数量、故障数量以及任务简单复合体的拓扑结构之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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