状态流模型的自动分析

Hamza Bourbouh, P. Garoche, C. Garion, A. Gurfinkel, Temesghen Kahsai, X. Thirioux
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引用次数: 9

摘要

状态流是嵌入式和网络物理系统中广泛使用的建模框架,其中控制软件与物理过程交互。在这项工作中,我们提出了一个框架和一个全自动的状态流模型安全验证技术。我们的方法是双重的:(i)我们忠实地将状态流模型编译成分层状态机,(ii)我们使用基于逻辑的自动验证引擎来确定安全属性的有效性。我们的方法的起点是statflow的指称语义。我们提出了一个使用延续传递样式(CPS)指称语义的编译过程。我们的编译技术保留了系统的结构和模态行为。整个方法是作为一个开源工具箱实现的,可以集成到现有的Mathworks Simulink/ statflow建模框架中。我们提出了初步的实验评估,说明了我们的方法在工业规模状态流模型的代码生成和安全验证中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automated analysis of Stateflow models
Stateflow is a widely used modeling framework for embedded and cyberphysical systems where control software interacts with physical processes. In this work, we present a framework and a fully automated safety verification technique for Stateflow models. Our approach is two-folded: (i) we faithfully compile Stateflow models into hierarchical state machines, and (ii) we use automated logic-based verification engine to decide the validity of safety properties. The starting point of our approach is a denotational semantics of Stateflow. We propose a compilation process using continuation-passing style (CPS) denotational semantics. Our compilation technique preserves the structural and modal behavior of the system. The overall approach is implemented as an open source toolbox that can be integrated into the existing Mathworks Simulink/Stateflow modeling framework. We present preliminary experimental evaluations that illustrate the effectiveness of our approach in code generation and safety verification of industrial scale Stateflow models.
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