A novel approach to Real-time contract based reasoning for Hybrid Systems

Surinder Sood, Avinash Malik, P. Roop
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Abstract

Worst Case Execution Time (WCET) analysis of large and complex hybrid systems can be time consuming. Contract based design allows for compositional reasoning of complex systems. Contracts justify the behavior of a system by way of assumptions (which are to be satisfied by the system environment) and guarantees, which are to be met by the system. Contracts also play a major role in compositional reasoning, refinement and re-usability of the system components. In this paper, we present a formal framework to enforce real-time contracts using Hoare triples, for synchronous system design and verification. In that regard, we propose real-time Hoare rules which are based on the WCET of the system and its components. We verify the real-time behavior of the system by applying these rules. These rules not only justify the system behavior and the behavior of its components but their timing as well. We also show that these Hoare rules are sound. Then we show that the synchronous composition of component level Hoare rules based contracts justify a system level contract. This real-time contract composition and reasoning technique which is based on real-time Hoare logic rules is the first ever attempt in synchronous system design and verification.
混合系统实时契约推理的新方法
大型复杂混合系统的最坏情况执行时间(WCET)分析可能非常耗时。基于契约的设计允许对复杂系统进行组合推理。契约通过假设(由系统环境来满足)和保证(由系统来满足)来证明系统的行为是合理的。契约在系统组件的组合推理、细化和可重用性方面也起着重要作用。在本文中,我们提出了一个正式的框架,使用Hoare三元组来执行实时契约,用于同步系统的设计和验证。在这方面,我们提出了基于系统及其组件的WCET的实时Hoare规则。我们通过应用这些规则来验证系统的实时行为。这些规则不仅证明了系统行为及其组件的行为,而且也证明了它们的时间。我们也证明了这些霍尔规则是合理的。然后,我们证明了基于组件级Hoare规则的契约的同步组合证明了系统级契约的正确性。这种基于实时霍尔逻辑规则的实时合约组合与推理技术是同步系统设计与验证的首次尝试。
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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