Analysis of Probabilistic Cache Related Pre-emption Delays

Robert I. Davis, L. Santinelli, S. Altmeyer, Claire Maiza, L. Cucu-Grosjean
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引用次数: 84

Abstract

This paper integrates analysis of probabilistic cache related pre-emption delays (pCRPD) and static probabilistic timing analysis (SPTA) for multipath programs running on a hardware platform that uses an evict-on-miss random cache replacement policy. The SPTA computes an upper bound on the probabilistic worst-case execution time (pWCET) of the program, which is an exceedance function giving the probability that the execution time of the program will exceed any given value on any particular run. The pCRPD analysis determines the maximum effect of a pre-emption on the pWCET. The integration between SPTA and pCRPD updates the pWCET to account for the effects of one or more pre-emptions at any arbitrary points in the program. This integration is a necessary step enabling effective schedulability analysis for probabilistic hard real-time systems that use pre-emptive or co-operative scheduling. The analysis is illustrated via a number of benchmark programs.
概率缓存相关抢占延迟分析
本文将概率缓存相关抢占延迟(pCRPD)和静态概率时序分析(SPTA)集成在一个硬件平台上运行的多路径程序中,该平台使用了一错过就退出的随机缓存替换策略。SPTA计算程序的概率最坏情况执行时间(pWCET)的上限,这是一个超出函数,给出程序在任何特定运行时超过任何给定值的概率。pCRPD分析确定了先发制人对pWCET的最大影响。SPTA和pCRPD之间的集成更新了pWCET,以说明在程序中任意点的一个或多个先发制人的影响。对于使用抢占式调度或协作式调度的概率硬实时系统,这种集成是实现有效可调度性分析的必要步骤。通过一些基准程序说明了该分析。
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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