Principles of aspect-oriented programming languages, design dimensions and the composition filters approach

M. Aksit
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引用次数: 1

Abstract

In traditional engineering disciplines, design is a problem solving process. It aims at mapping problems to realizable solutions, expressed using the artifacts in the corresponding engineering domain. Traditional engineering disciplines have introduced the concepts of canonical component models, systemic models, system construction rules and multiple (simultaneous) models. The emerging phenomena of the aspect-oriented software development techniques can be explained and motivated within this context. The concepts of component models, systemic models, system construction rules, multiple models as defined in traditional engineering disciplines correspond respectively to the concepts of base-level models, aspect models, join point models and multi-dimensional separation of concerns of aspect-oriented languages. Aspect-oriented languages can model the natural systemic properties of problem domains. This allows them to be a better representation than conventional object-oriented languages. This talk will explain the principles of aspect-oriented programming languages from the problem solving perspective. Based on this conceptual framework, aspect-oriented language design dimensions will be outlined. In the second part of the talk, the approach taken by the composition filters model will be explained. The talk will end by comparing filters with other approaches, advantages and shortcomings.
面向方面编程语言的原理,设计维度和组合过滤器的方法
在传统的工程学科中,设计是一个解决问题的过程。它旨在将问题映射到可实现的解决方案,并使用相应工程领域中的工件来表示。传统工程学科引入了规范构件模型、系统模型、系统构建规则和多(同时)模型等概念。面向方面的软件开发技术的出现现象可以在这种背景下解释和激励。传统工程学科中定义的构件模型、系统模型、系统构建规则、多模型等概念分别对应于面向方面语言的基层模型、方面模型、连接点模型和多维关注分离等概念。面向方面的语言可以对问题域的自然系统属性进行建模。这使得它们比传统的面向对象语言具有更好的表示。本讲座将从解决问题的角度解释面向方面编程语言的原理。基于这个概念框架,将概述面向方面的语言设计维度。在演讲的第二部分,将解释组合过滤器模型所采用的方法。最后,我们将比较过滤器与其他方法的优缺点。
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