Soundness of the quasi-synchronous abstraction

Guillaume Baudart, T. Bourke, Marc Pouzet
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引用次数: 3

Abstract

Many critical real-time embedded systems are implemented as a set of processes that execute periodically with bounded jitter and communicate with bounded transmission delay. The quasi-synchronous abstraction was introduced by P. Caspi for model-checking the safety properties of applications running on such systems. The simplicity of the abstraction is appealing: the only events are process activations; logical steps account for transmission delays; and no process may be activated more than twice between two successive activations of any other. We formalize the relation between the real-time model and the quasi-synchronous abstraction by introducing the notion of a unitary discretization. Even though the abstraction has been applied several times in the literature, we show, surprisingly, that it is not sound for general systems of more than two processes. Our central result is to propose necessary and sufficient conditions on both communication topologies and timing parameters to recover soundness.
准同步抽象的合理性
许多关键的实时嵌入式系统被实现为一组进程,这些进程周期性地执行有界抖动,并以有界传输延迟进行通信。准同步抽象是由P. Caspi引入的,用于对运行在这种系统上的应用程序的安全特性进行模型检查。抽象的简单性很吸引人:唯一的事件是流程激活;逻辑步骤解释传输延迟;并且在任何其它过程的两次连续激活之间不得激活两次以上。通过引入统一离散化的概念,形式化了实时模型与准同步抽象之间的关系。尽管这种抽象在文献中已经被应用了好几次,但令人惊讶的是,我们发现它不适用于两个以上过程的一般系统。我们的中心结果是提出通信拓扑和时序参数恢复稳健性的必要和充分条件。
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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