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Cache-Persistence-Aware Response-Time Analysis for Fixed-Priority Preemptive Systems

机译:缓存 - 持久感知固定优先级抢占式系统的响应时间分析

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A task can be preempted by several jobs of higher priority tasks during its response time. Assuming the worst-case memory demand for each of these jobs leads to pessimistic worst-case response time (WCRT) estimations. Indeed, there is a big chance that a large portion of the instructions and data associated with the preempting task Tj are still available in the cache when Tj releases its next jobs. Accounting for this observation allows the pessimism of WCRT analysis to be significantly reduced, which is not considered by existing work. The four main contributions of this paper are: 1) The concept of persistent cache blocks is introduced in the context of WCRT analysis, which allows re-use of cache blocks to be captured,2) A cache-persistence-aware WCRT analysis for fixed-priority preemptive systems exploiting the PCBs to reduce the WCRT bound, 3) A multi-set extension of the analysis that further improves the WCRT bound and 4) An evaluation showing that our cache-persistence-aware WCRT analysis results in up to 10%higher schedulability than state-of-the-art approaches.
机译:在响应时间期间,任务可以通过多个优先任务的几个工作抢占。假设对这些作业中的每一个的最坏情况的需求导致悲观最坏情况响应时间(WcRT)估计。实际上,当TJ释放其下一个作业时,大部分有很大的指示和与抢占任务TJ相关的指令和数据仍然可用。对该观察结果进行核算允许WCRT分析的悲观值得显着减少,这是现有工作不考虑的。本文的四个主要贡献是:1)在WCRT分析的上下文中引入了持久缓存块的概念,这允许重新使用要捕获的缓存块,2)修复的缓存持久感知vcrt分析 - 提高PCB的抢占式系统,以减少WCRT绑定,3)分析的多集扩展,进一步改善了WCRT绑定和4)评估显示我们的缓存持久感知感知WCRT分析结果高达10%比最先进的方法更高的调度性。

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