Behavioral validation of JFSL specifications through model synthesis

C. Ghezzi, Andrea Mocci
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引用次数: 2

Abstract

Contracts are a popular declarative specification technique to describe the behavior of stateful components in terms of pre/post conditions and invariants. Since each operation is specified separately in terms of an abstract implementation, it may be hard to understand and validate the resulting component behavior from contracts in terms of method interactions. In particular, properties expressed through algebraic axioms, which specify the effect of sequences of operations, require complex theorem proving techniques to be validated. In this paper, we propose an automatic small-scope based approach to synthesize incomplete behavioral abstractions for contracts expressed in the JFSL notation. The proposed abstraction technique enables the possibility to check that the contract behavior is coherent with behavioral properties expressed as axioms of an algebraic specifications. We assess the applicability of our approach by showing how the synthesis methodology can be applied to some classes of contract-based artifacts like specifications of data abstractions and requirement engineering models.
通过模型综合对JFSL规范进行行为验证
契约是一种流行的声明性规范技术,用于根据前后条件和不变量描述有状态组件的行为。由于每个操作都是根据抽象实现单独指定的,因此就方法交互而言,可能很难理解和验证契约产生的组件行为。特别是,通过代数公理表达的属性,它指定了操作序列的效果,需要复杂的定理证明技术来验证。在本文中,我们提出了一种基于小范围的自动方法来合成用JFSL符号表示的契约的不完全行为抽象。提出的抽象技术使检查契约行为是否与用代数规范的公理表示的行为属性一致成为可能。我们通过展示如何将综合方法应用于某些基于契约的工件类(如数据抽象和需求工程模型的规范)来评估我们方法的适用性。
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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