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A framework for compositional verification of multi-valued systems via abstraction-refinement

机译:通过抽象提炼对多值系统进行成分验证的框架

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摘要

We present a framework for fully automated compositional verification of μ-calculus specifications over multi-valued systems, based on abstraction and refinement In a multi-valued model of a system, both the system transitions and the state labels are assigned values from a lattice. We formalize our framework based on bilattices, consisting of a truth lattice and an information lattice. Formulas are interpreted on the truth lattice. The information lattice determines how definite the value is, in terms of the concrete system being modeled. Our compositional approach views each component as an abstraction of the entire system and checks it separately. Only if all individual checks return indefinite values, the parts of the components which are responsible for these values, are composed and checked. If the latter check is still indefinite, a refinement of the multi-valued system is needed. Refinement is aimed at increasing the information level of model details.
机译:我们提出了一种基于抽象和细化对多值系统中的微积分规格进行全自动组成验证的框架。在系统的多值模型中,系统转换和状态标签都从晶格中分配了值。我们基于能力对形式框架进行形式化,包括真相格和信息格。公式在真格上解释。信息晶格确定了要建模的具体系统的值的确定性。我们的组合方法将每个组件视为整个系统的抽象,并分别进行检查。仅当所有单个检查都返回不确定的值时,才负责构成和检查负责这些值的组件部分。如果后面的检查仍然不确定,则需要完善多值系统。细化旨在增加模型细节的信息水平。

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