Energy-aware scheduling of malleable fork-join tasks under a deadline constraint on heterogeneous multicores

Hiroki Nishikawa, Kaname Shimada, Ittetsu Taniguchi, H. Tomiyama
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引用次数: 4

Abstract

This paper proposes an energy-aware scheduling of malleable fork-join (MFJ) tasks on heterogeneous multicores. This work allows a task to be split into multiple sub-tasks for fork-join parallel execution. The number of the sub-tasks is determined simultaneously with scheduling. Our scheduling technique aims at the minimization of energy consumption under a deadline constraint. In addition, this paper proposes a technique for simultaneous scheduling and core-type optimization. The technique optimally decides types of cores (to be either "big" or "little") at the same time as MFJ task scheduling in order to further reduce energy consumption.
异构多核下期限约束下的可锻铸分叉连接任务能量感知调度
提出了一种异构多核环境下可延展分叉连接(MFJ)任务的能量感知调度方法。这项工作允许将一个任务拆分为多个子任务,以便fork-join并行执行。子任务的数量与调度同时确定。我们的调度技术的目标是在期限约束下最小化能源消耗。此外,本文还提出了一种并行调度和核型优化技术。该技术在MFJ任务调度的同时最优地决定内核类型(“大”或“小”),以进一步降低能耗。
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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