Time in SCCharts

Alexander Schulz-Rosengarten, R. V. Hanxleden, F. Mallet, R. Simone, Julien Deantoni
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引用次数: 7

Abstract

Synchronous languages, such as the recently proposed SCCharts language, have been designed for the rigorous specification of real-time systems. Their sound semantics, which builds on an abstraction from physical execution time, make these languages appealing, in particular for safety-critical systems. However, they traditionally lack built-in support for physical time. This makes it rather cumbersome to express things like time-outs or periodic executions within the language. We here propose several mechanisms to reconcile the synchronous paradigm with physical time. Specifically, we propose extensions to the SCCharts language to express clocks and execution periods within the model. We draw on several sources, in particular timed automata, the Clock Constraint Specification Language, and the recently proposed concept of dynamic ticks. We illustrate how these extensions can be mapped to the SCChart language core, with minimal requirements on the run-time system, and we argue that the same concepts could be applied to other synchronous languages such as Esterel, Lustre or SCADE.
scc图表中的时间
同步语言,如最近提出的SCCharts语言,是为实时系统的严格规范而设计的。它们健全的语义(建立在对物理执行时间的抽象之上)使这些语言具有吸引力,特别是对于安全关键型系统。然而,它们传统上缺乏对物理时间的内置支持。这使得在语言中表达超时或定期执行之类的东西变得相当麻烦。我们在这里提出了几种机制来调和同步范式与物理时间。具体来说,我们建议对SCCharts语言进行扩展,以在模型中表达时钟和执行周期。我们借鉴了几个来源,特别是时间自动机、时钟约束规范语言和最近提出的动态节拍的概念。我们说明了如何将这些扩展映射到SCChart语言核心,对运行时系统的要求最低,并且我们认为相同的概念可以应用于其他同步语言,如Esterel, Lustre或SCADE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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