将架构中间件平台定制为异构嵌入式环境

S. Malek, Chiyoung Seo, N. Medvidović
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引用次数: 6

摘要

嵌入式系统在规模、复杂性、分布和异构性方面都在迅速增长。因此,开发一次性嵌入式应用程序的传统做法往往是刚性的和难以管理的,这种做法已不再被接受。最近的研究表明,在这个领域开发软件系统的有效方法是采用软件体系结构的原则。然而,要使软件架构概念在开发环境中真正有用,它们必须伴随着对其实现和发展的支持。这激发了我们在过去几年里在一个叫做Prism-MW的架构中间件上的工作,它根据软件架构构造(例如,组件,连接器)为软件系统的开发提供了实现级的支持。Prism-MW最初是用Java开发的,并用于多个领域。最近,作为一个正在进行的项目的一部分,我们被要求在ANSI c++中实现Prism-MW。这种体验被证明比我们最初预期的更具挑战性,主要是由于计算基础的固有异质性。由于这一经验,我们不得不重新考虑我们之前关于什么构成了架构中间件及其在软件开发过程中的角色的一些假设。在本文中,我们概述了我们的经验和我们一路走来学到的教训。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tailoring an architectural middleware platform to a heterogeneous embedded environment
Embedded systems are rapidly growing in size, complexity, distribution, and heterogeneity. As a result, the traditional practice of developing one-off embedded applications that are often rigid and unmanageable is no longer acceptable. Recent studies have suggested that an effective approach to developing software systems in this domain is to employ the principles of software architecture. However, for software architectural concepts to be truly useful in a development setting, they must be accompanied by support for their implementation and evolution. This has motivated our work over the past several years on an architectural middleware, called Prism-MW, that provides implementation-level support for the development of software systems in terms of the software architectural constructs (e.g., components, connectors). Prism-MW was initially developed in Java and used in several domains. Recently, as part of an on-going project, we were required to implement Prism-MW in ANSI C++. This experience proved to be more challenging than we initially anticipated, mainly due to the inherent heterogeneity of the computing substrate. As a result of this experience, we had to reconsider some of our earlier assumptions of what constitutes an architectural middleware and its role in the software development process. In this paper, we provide an overview of our experience and the lessons we have learned along the way.
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