The PROMPT design principles for predictable multi-core architectures

R. Wilhelm
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引用次数: 4

Abstract

Embedded hard real-time systems need reliable guarantees for the satisfaction of their timing constraints. The precision of the results and the efficiency of timing-analysis methods are highly dependent on the predictability of the execution platform. The possibility of proving the safety of embedded systems is seriously compromised by architectural developments aiming exclusively at improving average-case performance. Proving the correctness of a modern high-performance processor is beyond the reach of verification methods. Even the chances to derive reliable and precise bounds on execution times are endangered by exactly these developments. We propose design principles for multi-core architectures to provide efficiently predictable good worst-case performance as needed for embedded control in the aeronautics and automotive industries supporting the Integrated Modular Avionics (IMA) and the Automotive Open System Architecture (AUTOSAR) development trends. This talk presents a development process oriented at achieving predictability at all levels of the architecture hierarchy.
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可预测的多核架构的PROMPT设计原则
嵌入式硬实时系统需要可靠的保证来满足其时间约束。结果的精度和时间分析方法的效率高度依赖于执行平台的可预测性。证明嵌入式系统安全性的可能性受到了架构开发的严重损害,这些架构开发的目的仅仅是提高平均情况下的性能。证明现代高性能处理器的正确性超出了验证方法的范围。甚至推导出可靠和精确的执行时间界限的机会也受到这些发展的威胁。我们提出了多核架构的设计原则,为航空和汽车行业的嵌入式控制提供有效可预测的良好最差情况性能,以支持集成模块化航空电子设备(IMA)和汽车开放系统架构(AUTOSAR)的发展趋势。这个演讲展示了一个面向在架构层次的所有层次上实现可预测性的开发过程。
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