Method and Tools for Mixed-Criticality Real-Time Applications within PharOS

Matthieu Lemerre, Emmanuel Ohayon, Damien Chabrol, M. Jan, M. Jacques
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引用次数: 25

Abstract

This paper provides an overview of some principles and mechanisms to securely operate mixed-criticality real-time systems on embedded platforms. Those principles are illustrated with PharOS a complete set of tools to design, implement and execute real-time systems on automotive embedded platforms. The keystone of this approach is a dynamic time-triggered methodology that supports full temporal isolation without wasting CPU time. In addition, memory isolation is handled through automatic off-line generation of fine-grained memory protection tables used at runtime. These isolation mechanisms are building blocks for the support of mixed-criticality applications. Several extensions have been brought to this model to expand the support for mixed-criticality within the system. These extensions feature fault recovery, support for the cohabitation of event-triggered with time-triggered tasks and paravirtualization of other operating systems. The contribution of this paper is to provide a high-level description of these extensions, along with an analysis of their impact on the global system safety, in particular on the determinism property of the PharOS model.
PharOS中混合临界实时应用的方法和工具
本文概述了在嵌入式平台上安全运行混合临界实时系统的一些原理和机制。PharOS是一套完整的工具,用于在汽车嵌入式平台上设计、实现和执行实时系统。这种方法的核心是一种动态时间触发方法,它支持完全的时间隔离,而不会浪费CPU时间。此外,通过在运行时使用的细粒度内存保护表的自动脱机生成来处理内存隔离。这些隔离机制是支持混合临界应用程序的构建块。该模型中引入了几个扩展,以扩展对系统内混合临界性的支持。这些扩展的特点包括故障恢复、支持事件触发和时间触发任务的共存,以及对其他操作系统的半虚拟化。本文的贡献是提供这些扩展的高级描述,以及它们对全局系统安全性的影响的分析,特别是对PharOS模型的确定性属性的影响。
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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