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Enhanced graph rewriting systems for complex software domains

机译:用于复杂软件领域的增强型图形重写系统

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摘要

Methodologies for correct by construction reconfigurations can efficiently solve consistency issues in dynamic software architecture. Graph-based models are appropriate for designing such architectures and methods. At the same time, they may be unfit to characterize a system from a non-functional perspective. This stems from efficiency and applicability limitations in handling time-varying characteristics and their related dependencies. In order to lift these restrictions, an extension to graph rewriting systems is proposed herein. The suitability of this approach, as well as the restraints of currently available ones, is illustrated, analyzed, and experimentally evaluated with reference to a concrete example. This investigation demonstrates that the conceived solution can (i) express any kind of algebraic dependencies between evolving requirements and properties; (ii) significantly ameliorate the efficiency and scalability of system modifications with respect to classic methodologies; (iii) provide an efficient access to attribute values; (iv) be fruitfully exploited in software management systems; and (v) guarantee theoretical properties of a grammar, like its termination.
机译:通过构造重新配置进行校正的方法可以有效地解决动态软件体系结构中的一致性问题。基于图的模型适用于设计此类架构和方法。同时,它们可能不适合从非功能性的角度来表征系统。这是由于在处理时变特性及其相关依赖性方面的效率和适用性限制所致。为了解除这些限制,本文提出了对图形重写系统的扩展。参考具体示例,说明,分析和实验评估了此方法的适用性以及当前可用方法的限制。这项研究表明,设想的解决方案可以(i)表达不断变化的需求和属性之间的任何代数依赖关系; (ii)与传统方法相比,大大改善了系统修改的效率和可扩展性; (iii)提供对属性值的有效访问; (iv)在软件管理系统中得到有效利用; (v)保证语法的理论特性,例如语法终止。

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