多处理器软实时调度的随机框架

A. Mills, James H. Anderson
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引用次数: 50

摘要

先前的研究表明,全局最早截止日期优先(GEDF)调度算法保证了多处理器上有界的截止日期延迟而不造成利用率损失;因此,GEDF可能是软实时工作负载的一个很好的候选调度算法。然而,这样的工作负载通常是在假设平均情况供应的情况下实现的,并且在GEDF的先前延迟限制派生中,假设了最坏情况下的执行成本。由于最坏情况成本可能比平均情况成本高几个数量级,因此使用最坏情况配置可能会导致大量浪费处理能力。本文推广了GEDF的先验延迟界推导,使执行时间具有概率性,并导出了期望(平均)延迟界。结果表明,只要总期望利用率严格小于可用处理器数,每个任务的期望延迟在GEDF下是有界的。结果还表明,延迟分布的任何分位数也是有界的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Stochastic Framework for Multiprocessor Soft Real-Time Scheduling
Prior work has shown that the global earliest-deadline-first (GEDF) scheduling algorithm ensures bounded deadline tardiness on multiprocessors with no utilization loss; therefore, GEDF may be a good candidate scheduling algorithm for soft real-time workloads. However, such workloads are often implemented assuming an average-case provisioning, and in prior tardiness-bound derivations for GEDF, worst-case execution costs are assumed. As worst-case costs can be orders of magnitude higher than average-case costs, using a worst-case provisioning may result in significant wasted processing capacity. In this paper, prior tardiness-bound derivations for GEDF are generalized so that execution times are probabilistic, and a bound on expected (mean) tardiness is derived. It is shown that, as long as the total expected utilization is strictly less than the number of available processors, the expected tardiness of every task is bounded under GEDF. The result also implies that any quantile of the tardiness distribution is also bounded.
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