嵌入式系统细粒度时序分析的体系结构模型改进

Etienne Borde, Smail Rahmoun, Fabien Cadoret, L. Pautet, Frank Singhoff, P. Dissaux
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引用次数: 17

摘要

随着实时系统变得越来越复杂,架构师依靠抽象的计算模型来设计和分析这些系统。为了简化尊重这种计算模型的源代码的生成,开发人员可以利用代码生成器和/或中间件。然而,在分析抽象的计算模型时,由于生成的代码或中间件组件而产生的时间开销没有被考虑在内。由于执行平台的可变性,在嵌入式系统领域回答这个问题甚至更加困难。为了解决这一问题,本文提出了一个模型细化和时序分析框架:首先将抽象的计算模型转换为更精确的模型,其中包括执行平台的时序特征。这些改进的模型然后用于更精确的时间分析。实验结果表明,该方法可以处理实时系统的实际软件体系结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Architecture models refinement for fine grain timing analysis of embedded systems
As real-time systems have become more and more complex, architects rely on abstract models of computation in order to design and analyse these systems. In order to ease the production of source code that respects such models of computation, developper can take advantage of code generators and/or middleware. However, when analyzing an abstract model of computation, timing overheads due to generated code or middleware components are not taken into account. Answering this issue is even more problematic in the domain of embedded systems because of the variability of execution platforms. To tackle this problem, we present in this paper a model refinement and timing analysis framework: abstract models of computation are first transformed in more precise models, which include the timing characteristics of the execution platform. These refined models are then used for a more precise timing analysis. The experiment results we present in this paper show that our method can deal with realistic software architecture of real-time systems.
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