在分布式系统中构建可互操作的组件

Sea Ling, H. Schmidt, R. Fletcher
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引用次数: 12

摘要

体系结构定义语言(ADL)和接口定义语言(IDL)的分离在分布式系统社区得到了广泛的认可。它将分层组合和配置问题与服务、通信和同步问题分离开来,从而在不更改接口和实现的情况下简化了重新配置,并允许在定义良好的配置约束下更改服务。我们对分布式系统定义的方法借鉴了Darwin项目的分布式系统架构定义概念和Eiffel的契约式设计概念。我们扩展契约来处理更高层次的同步和协调,明确地针对大规模松耦合分布式组件和紧耦合并行或多线程对象。在本文中,我们给出了由此产生的合约扩展的Java绑定。我们将注释合并到Java程序中,添加了eiffel风格的断言和其他契约约束。然后,Java组件代码和约束与可视化编程环境中的架构图相关联。本文以某电梯控制系统为例,阐述了该语言的特点。通过实例分析,说明了基于组件的设计方法,并说明了方法执行的内部同步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Constructing interoperable components in distributed systems
The separation of architecture definition language (ADL) and interface definition language (IDL) is widely accepted in the distributed system community. It separates issues of hierarchical composition and configuration from those of services, communication and synchronisation and thus eases reconfiguration without changing the interfaces and implementation and allows the change of services within well-defined configuration constraints. Our approach towards distributed system definition draws on the Darwin project's notion of distributed system architecture definition and on Eiffel's notion of design-by-contract. We extend contracts to deal with synchronisation and coordination at a higher level, explicitly targeting both large-scale loosely-coupled distributed components and tightly coupled parallel or multithreaded objects. In this paper we present a Java binding of the resulting contract extensions. We incorporate annotations into Java programs adding Eiffel-style assertions and other contractual constraints. Java component code and constraints are then associated to architectural diagrams in a visual programming environment. The paper illustrates the language features in a case study of a lift control system. Based on the case study, the component-based design approach is illustrated and the internal synchronisation of method execution is explained.
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