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Encapsulating Application Subsystems Using the DECOS Core OS

机译:使用DECOS Core OS封装应用子系统

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This paper presents an approach to structured integration of different application subsystems on the same embedded hardware, as currently developed in DECOS (Dependable Embedded Components and Systems), an integrated project within the Sixth Framework Programme of the European Commission. Those application subsystems can have different criticality levels and vendors. Furthermore, reliable communication among application subsystems is a major concern. Focusing on the Encapsulated Execution Environment (EEE), which separates application subsystems in the space AND the time domain, this approach outlines the concepts and principles of an exokernel operating system, of artitioning, and of virtualization. The Core Operating System (COS) is described as a case study, including the hardware used, the current feature set, and benchmark values of central COS operations. This paper also presents a model for a platform-independent application interface layer. Parts of this interface layer are generated from task specification to provide tasks with tailored communication services.
机译:本文提出了一种在同一嵌入式硬件上结构化集成不同应用程序子系统的方法,正如目前在DECOS(可靠嵌入式组件和系统)中开发的那样,DECOS是欧盟委员会第六框架计划中的一个集成项目。这些应用程序子系统可以具有不同的关键级别和供应商。此外,应用子系统之间的可靠通信是一个主要问题。着眼于在空间和时域上分隔应用程序子系统的封装执行环境(EEE),该方法概述了exokernel操作系统,分区和虚拟化的概念和原理。核心操作系统(COS)被描述为一个案例研究,包括所使用的硬件,当前功能集以及中央COS操作的基准值。本文还提出了一种与平台无关的应用程序接口层的模型。此接口层的某些部分是根据任务规范生成的,以为任务提供量身定制的通信服务。

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