Verifying Bigraphical Models of Architectural Reconfigurations

A. Sánchez, L. Barbosa, D. Riesco
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引用次数: 4

Abstract

ARCHERY is an architectural description language for modelling and reasoning about distributed, heterogeneous and dynamically reconfigurable systems. This paper proposes a structural semantics for ARCHERY, and a method for deriving labelled transition systems (LTS) in which states and transitions represent configurations and reconfiguration operations, respectively. Architectures are modelled by bigraphs and their dynamics by parametric reaction rules. The resulting LTSs can be regarded as Kripke frames, appropriate for verifying reconfiguration constraints over architectural patterns expressed in a modal logic. The derivation method proposed here applies the approach in [1] twice, and combines the results of each application to obtain a label representing a reconfiguration operation and its actual parameters. Labels obtained in this way are minimal and yield LTSs in which bisimulation is a congruence.
验证建筑重构的图形模型
ARCHERY是一种架构描述语言,用于对分布式、异构和动态可重构系统进行建模和推理。本文提出了一种用于射箭的结构语义,以及一种导出标记转换系统(LTS)的方法,其中状态和转换分别表示配置和重新配置操作。体系结构由图形建模,其动力学由参数化反应规则建模。得到的LTSs可以看作是Kripke框架,适合于验证用模态逻辑表达的体系结构模式上的重新配置约束。本文提出的推导方法将[1]中的方法应用了两次,并将每次应用的结果结合起来,得到一个表示重构操作及其实际参数的标签。以这种方式获得的标签是最小的,并且产生双模拟是同余的LTSs。
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