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首页> 外文期刊>Journal of Parallel and Distributed Computing >Towards completely fair scheduling on asymmetric single-ISA multicore processors
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Towards completely fair scheduling on asymmetric single-ISA multicore processors

机译:在完全公平的非对称单次MultiCore处理器上调度

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摘要

Single-ISA asymmetric multicore processors (AMPs), which combine high-performance big cores with low-power small cores, were shown to deliver higher performance per watt than symmetric CMPs (Chip Multi-Processors). Previous work has highlighted that this potential of AMP systems can be realizable via OS scheduling. To date, most existing scheduling schemes for AMPs have been designed to optimize the system throughput, but they are inherently unfair. Although fairness-aware schedulers have been also proposed, they fail to effectively deal with user priorities and do not always ensure that equal-priority applications experience a similar slowdown. To overcome these limitations, we propose ACFS, an asymmetry-aware completely fair scheduler that seeks to optimize fairness while ensuring acceptable throughput. Our evaluation on real AMP hardware and using scheduler implementations in the Linux kernel demonstrates that ACFS achieves an average 23% fairness improvement over two state-of-the-art schemes, while providing higher system throughput.
机译:将高性能大型核心的单次ISA不对称多核处理器(AMPS)与低功耗小核心相结合,比对称CMPS(芯片多处理器)提供更高的性能。以前的工作突出显示,可以通过OS调度可实现的AMP系统的这种潜力。迄今为止,大多数AMP的调度方案旨在优化系统吞吐量,但它们本质上是不公平的。虽然还提出了公平知识的调度程序,但它们未能有效地处理用户优先事项,并且并不总是确保相等优先级应用程序经历类似的放缓。为了克服这些限制,我们提出了ACFS,一个不对称的完全公平的调度程序,寻求优化公平性,同时确保可接受的吞吐量。我们对Real AMP硬件和Linux内核中的调度程序实现的评估演示了ACFS在两种最先进的方案上实现了平均23%的公平改善,同时提供更高的系统吞吐量。

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