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Definition and validation of model transformations

机译:模型转换的定义和验证

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With model transformations becoming more widely used, there is an increasing need for approaches focussing on a systematic development of model transformations. Although a number of approaches for specifying model transformations exist, none of them focusses on systematically validating model transformations with respect to termination and confluence. Termination and confluence ensure that a model transformation always produces a unique result. Also called functionality, these properties are important requirements for practical applications of model transformations. In this paper, we introduce our approach to model transformation. Using and extending results from the theory of graph transformation, we investigate termination and confluence properties of model transformations specified in our approach. We establish a set of criteria for termination and confluence to be checked at design time by static analysis of the transformation rules and the underlying metamodels. Moreover, the criteria are formulated in such a way that they require less experience with the theory of graph transformation. Our concepts are illustrated by a running example of a model tranformation from statecharts to the process algebra Communicating Sequential Processes.
机译:随着模型转换的日益广泛使用,越来越需要着重于系统地开发模型转换的方法。尽管存在许多用于指定模型转换的方法,但是它们都没有集中于有关终止和融合的系统验证模型转换。终止和融合确保模型转换始终产生独特的结果。这些属性也称为功能,是模型转换的实际应用的重要要求。在本文中,我们介绍了模型转换的方法。使用并扩展图变换理论的结果,我们研究了在我们的方法中指定的模型变换的终止和融合特性。我们通过转换规则和基础元模型的静态分析,建立了一套在设计时检查终止和融合的标准。此外,这些标准以这样的方式制定,即它们需要较少的图形转换理论经验。从状态图到流程代数“通信顺序流程”的模型转换的运行示例说明了我们的概念。

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