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Compositional abstraction of CSP Z processes

机译:CSP Z流程的组成抽象

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Data abstraction is a powerful technique to overcome state explosion in model checking. For CSPZ (a formal integration of the well-known specification languages CSP and Z), current approaches can mechanically abstract infinite domains (types) as long as they are not used in communications. This work presents a compositional and systematic approach to data abstract CSPZ specifications even when communications are based on infinite domains. Therefore, we deal with a larger class of specifications than the previous techniques. Our approach requires that the domains (used in communications) being abstracted do not affect the behaviour of the system (data independence). This criteria is used to achieve an internal partitioning of the specification in such a way that complementary techniques for abstracting data types can be applied to the components of the partition. Afterwards, the partial results can be compositionally combined to abstract the entire specification. We propose an algorithm that implements the partitioning and show the application of the entire approach to a real case study.
机译:数据抽象是克服模型检查中状态爆炸的强大技术。对于CSPZ(众所周知的规范语言CSP和Z的正式集成),当前的方法可以机械地抽象无限域(类型),只要它们不用于通信即可。这项工作为数据抽象CSPZ规范提供了一种组合的系统方法,即使在通信基于无限域的情况下也是如此。因此,我们处理的规范比以前的技术更大。我们的方法要求抽象的域(用于通信)不影响系统的行为(数据独立性)。该标准用于实现规范的内部分区,以便可以将抽象数据类型的补充技术应用于该分区的组件。之后,可以将部分结果组合在一起以抽象出整个规范。我们提出了一种实现分区的算法,并展示了整个方法在实际案例研究中的应用。

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