Crash-Resilient Decentralized Synchronous Runtime Verification

Shokoufeh Kazemlou, Borzoo Bonakdarpour
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引用次数: 8

Abstract

In this paper, we consider runtime verification of synchronous distributed systems, where a decentralized set of monitors that only have a partial view of the system are subject to crash failures. In this context, it is unavoidable that monitors may have different views of the underlying system, and, therefore, have different opinions about the correctness property. We propose an automata-based synchronous monitoring algorithm that copes with t crash monitor failures. Moreover, local monitors do not communicate their explicit reading of the underlying system. Rather, they emit a symbolic verdict that efficiently encodes their partial views. This significantly reduces the communication overhead.
抗崩溃的分散式同步运行时验证
在本文中,我们考虑同步分布式系统的运行时验证,其中一组分散的监视器仅具有系统的部分视图,容易发生崩溃故障。在这种情况下,不可避免的是,监视器可能对底层系统有不同的看法,因此对正确性属性有不同的看法。我们提出了一种基于自动机的同步监控算法来处理崩溃监控的故障。此外,本地监视器不会传达它们对底层系统的显式读取。相反,他们发出一种象征性的判决,有效地编码了他们的部分观点。这大大减少了通信开销。
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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