Implementation and empirical comparison of partitioning-based multi-core scheduling

Yi Zhang, Nan Guan, Yanbin Xiao, W. Yi
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引用次数: 10

Abstract

Recent theoretical studies have shown that partitioning-based scheduling has better real-time performance than other scheduling paradigms like global scheduling on multi-cores. Especially, a class of partitioning-based scheduling algorithms (called semi-partitioned scheduling), which allow to split a small number of tasks among different cores, offer very high resource utilization. The major concern about the semi-partitioned scheduling is that due to the task splitting, some tasks will migrate from one core to another at run time, which incurs higher context switch overhead. So one would suspect whether the extra overhead caused by task splitting would counteract the theoretical performance gain of semi-partitioned scheduling. In this work, we implement a semi-partitioned scheduler in the Linux operating system, and run experiments on an Intel Core-i7 4-cores machine to measure the real overhead in both partitioned scheduling and semi-partitioned scheduling. Then we integrate the measured overhead into the state-of-the-art partitioned scheduling and semi-partitioned scheduling algorithms, and conduct empirical comparisons of their realtime performance. Our results show that the extra overhead caused by task splitting in semi-partitioned scheduling is very low, and its effect on the system schedulability is very small.
基于分区的多核调度的实现与经验比较
近年来的理论研究表明,基于分区的调度比多核全局调度等调度模式具有更好的实时性。特别是一类基于分区的调度算法(称为半分区调度),它允许在不同的核心之间分割少量任务,提供非常高的资源利用率。关于半分区调度的主要问题是,由于任务分割,一些任务将在运行时从一个核心迁移到另一个核心,这将导致更高的上下文切换开销。因此,人们会怀疑任务分割造成的额外开销是否会抵消半分区调度的理论上的性能增益。在这项工作中,我们在Linux操作系统中实现了一个半分区调度程序,并在Intel Core-i7 4核机器上运行实验,以测量分区调度和半分区调度的实际开销。然后,我们将测量的开销整合到最先进的分区调度和半分区调度算法中,并对其实时性能进行实证比较。结果表明,在半分区调度中,任务分割带来的额外开销很小,对系统可调度性的影响很小。
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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