处理器对时间可预测性的支持——SPEAR设计示例

M. Delvai, Wolfgang Huber, P. Puschner, A. Steininger
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引用次数: 47

摘要

对可预测的时序行为的需求是实时应用程序的特征。经验表明,这种特性不能仅靠软件实现,而是需要处理器的支持。对这种情况进行了分析,并将其映射到SPEAR(实时环境中嵌入式应用程序的可伸缩处理器)的设计原理,这是一种专为满足实时系统的特定时间需求而设计的处理器。在硬件层面,SPEAR保证中断响应具有最小的时间抖动和最小的延迟。此外,处理器提供了一个指令集,该指令集只有恒定时间的指令。在软件级别,SPEAR支持根据单路径编程范式实现暂时可预测的代码。总之,这些特性支持以最小的抖动编写代码,并为精确的时间可预测性提供基础。实验结果表明,SPEAR确实表现出预期的高度可预测的时序行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Processor support for temporal predictability - the SPEAR design example
The demand for predictable timing behavior is characteristic for real-time applications. Experience has shown that this property cannot be achieved by software alone but rather requires support from the processor. This situation is analyzed and mapped to a design rationale for SPEAR (Scalable Processor for Embedded Applications in Real-time Environments), a processor that has been designed to meet the specific temporal demands of real-time systems. At the hardware level, SPEAR guarantees interrupt response with minimum temporal jitter and minimum delay. Furthermore, the processor provides an instruction set that only has constant-time instructions. At the software level, SPEAR supports the implementation of temporally predictable code according to the single-path programming paradigm. Altogether, these features support writing of code with minimal jitter and provide the basis for exact temporal predictability. Experimental results show that SPEAR indeed exhibits the anticipated highly predictable timing behavior.
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