基于约束的实时系统规范和验证方法

G. Gupta, Enrico Pontelli
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引用次数: 80

摘要

我们开发了一个基于通用约束逻辑编程(CLP)的框架,用于实时系统的规范和验证。我们的框架基于传统上用于指定实时系统的时间自动机的概念。在我们的框架中,用户将实时事件的顺序建模为时间自动机所接受的语言语法,然后将这些事件的实时约束捕获为用户指定的语法结果的表示。语法可以指定为定句语法(Definite Clause grammar, DCG),而表示法可以在约束逻辑中指定。由此产生的规范可以被视为约束逻辑程序(CLP),并且是可执行的。通过对这个CLP程序提出适当的查询,可以验证实时系统的许多有趣的特性。我们的方法的一个主要优点是它本质上是建设性的,也就是说,它可以用于计算给定实时系统的属性将保持的条件。我们的框架还提出了新的形式化类型,我们称之为约束自动机和定时下推自动机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A constraint-based approach for specification and verification of real-time systems
We develop a general constraint logic programming (CLP) based framework for specification and verification of real time systems. Our framework is based on the notion of timed automata that have traditionally been used for specifying real time systems. In our framework, a user models the ordering of real time events as the grammar of a language accepted by a timed automata, the real time constraints on these events are then captured as denotations of the grammar productions specified by the user. The grammar can be specified as a Definite Clause Grammar (DCG), while the denotations can be specified in constraint logic. The resulting specification can hence be regarded as a constraint logic program (CLP), and is executable. Many interesting properties of the real time system can be verified by posing appropriate queries to this CLP program. A major advantage of our approach is that it is constructive in nature, i.e., it can be used for computing the conditions under which a property will hold for a given real time system. Our framework also suggests new types of formalisms that we call constraint automata and timed push down automata.
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