A Layered and Parallelized Method of Eventual Model Checking

Inf. Comput. Pub Date : 2023-07-06 DOI:10.3390/info14070384
Yati Phyo, Moe Nandi Aung, Canh Minh Do, K. Ogata
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Abstract

Termination or halting is an important system requirement that many systems should satisfy and can be expressed in linear temporal logic as eventual properties. We devised a divide-and-conquer approach to eventual model checking in order to reduce the state space explosion in model checking. The idea of the technique is to split an original model checking problem for eventual properties into multiple smaller model checking problems and handle each smaller one. Due to the nature of the divide-and-conquer approach, each smaller model checking problem can essentially be tackled independently. Hence, this paper proposes a parallel technique/tool based on a master–worker pattern for the divide-and-conquer approach to model checking eventual properties. We carry out some experiments to show the effectiveness of our parallel technique/tool, which can somewhat enhance the running performance to a certain extent when conducting model checking for eventual properties.
一种分层并行的最终模型检验方法
终止或停止是许多系统应该满足的重要系统要求,并且可以用线性时间逻辑表示为最终属性。我们设计了一种分而治之的方法来进行最终的模型检查,以减少模型检查中的状态空间爆炸。该技术的思想是将最终属性的原始模型检查问题拆分为多个较小的模型检查问题,并处理每个较小的模型检查问题。由于分而治之方法的性质,每个较小的模型检查问题本质上可以独立解决。因此,本文提出了一种基于主工模式的并行技术/工具,用于分而治之的方法来模型检查最终属性。我们进行了一些实验来证明我们的并行技术/工具的有效性,在进行最终属性的模型检查时,可以在一定程度上提高运行性能。
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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