支持动态软件架构:从架构描述到实现

Everton Cavalcante, T. Batista, F. Oquendo
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引用次数: 34

摘要

动态软件体系结构描述了如何在系统执行期间创建、互连和/或删除组件和连接器。大多数现有的体系结构描述语言(adl)对表达性地描述这些体系结构提供了有限的支持,并且由于它们与实现分离,导致体系结构不匹配和体系结构与实现之间的不一致。本文介绍了π-ADL提供的动态重构支持,π-ADL是一种从结构和行为的角度描述动态软件体系结构的形式化的、有良好理论基础的语言。π-ADL提供了用于指定可编程动态重新配置的体系结构级原语,即在设计时描述并在运行时触发的可预见的更改。此外,π-ADL允许通过以下方式实现动态重新配置:(i)外生方法,在这种方法中,可以控制软件架构的所有元素并将更改应用于整个结构;(ii)内源性方法,在这种方法中,架构元素可以管理动态重新配置操作。此外,π-ADL与Go编程语言集成,可以根据体系结构描述自动生成实现代码,从而解决了两者之间存在的差距。本文以一个实际的洪水监测系统为例,说明如何在π-ADL中描述动态软件架构,并在Go语言中自动生成源代码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supporting Dynamic Software Architectures: From Architectural Description to Implementation
Dynamic software architectures are those that describe how components and connectors can be created, interconnected, and/or removed during system execution. Most existing architecture description languages (ADLs) provide a limited support to expressively describe these architectures and entail architectural mismatches and inconsistencies between architecture and implementation due to their decoupling from implementation. In this paper, we introduce the dynamic reconfiguration support provided by π-ADL, a formal, well-founded theoretically language for describing dynamic software architectures under structural and behavioral viewpoints. π-ADL provides architectural-level primitives for specifying programmed dynamic reconfigurations, i.e., Foreseen changes described at design time and triggered at runtime. In addition, π-ADL allows enacting dynamic reconfiguration by means of: (i) an exogenous approach, in which it is possible to control all elements of the software architectures and to apply the changes on the whole structure, and (ii) an endogenous approach, in which the architectural elements can manage dynamic reconfiguration actions. Furthermore, π-ADL is integrated with the Go programming language, thus enabling to automatically generate implementation code from architectural descriptions, thus tackling the existing gap between them. We hereby use a real-world flood monitoring system as an illustrative example of how to describe dynamic software architectures in π-ADL and automatically generate source code in Go.
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