Formal Metamodeling for Secure Model-Driven Engineering

L. Favre
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Abstract

Systems and applications aligned with new paradigms such as cloud computing and internet of the things are becoming more complex and interconnected, expanding the areas in which they are susceptible to attacks. Their security can be addressed by using model-driven engineering (MDE). In this context, specific IoT or cloud computing metamodels emerged to support the systematic development of software. In general, they are specified through semiformal metamodels in MOF style. This article shows the theoretical foundations of a method for automatically constructing secure metamodels in the context of realizations of MDE such as MDA. The formal metamodeling language Nereus and systems of transformation rules to bridge the gap between formal specifications and MOF are described. The main contribution of this article is the definition of a system of transformation rules called NEREUStoMOF for transforming automatically formal metamodeling specifications in Nereus to semiformal-MOF metamodels annotated in OCL.
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安全模型驱动工程的形式化元建模
与云计算和物联网等新范式相一致的系统和应用程序正变得更加复杂和相互关联,从而扩大了它们容易受到攻击的领域。它们的安全性可以通过使用模型驱动工程(MDE)来解决。在这种背景下,特定的物联网或云计算元模型出现,以支持软件的系统开发。通常,它们是通过MOF风格的半正式元模型指定的。本文展示了在MDE(如MDA)实现上下文中自动构建安全元模型的方法的理论基础。描述了形式化元建模语言Nereus和转换规则系统,以弥合形式化规范和MOF之间的差距。本文的主要贡献是定义了一个名为NEREUStoMOF的转换规则系统,用于将Nereus中的形式化元建模规范自动转换为OCL注释的半形式化元模型。
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