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首页> 外文期刊>Journal of systems architecture >Crown-scheduling of sets of parallelizable tasks for robustness and energy-elasticity on many-core systems with discrete dynamic voltage and frequency scaling
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Crown-scheduling of sets of parallelizable tasks for robustness and energy-elasticity on many-core systems with discrete dynamic voltage and frequency scaling

机译:具有离散动态电压和频率缩放的许多核心系统的鲁棒性和能量弹性集合的冠军计划

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摘要

Crown scheduling is a static scheduling approach for sets of parallelizable tasks with a common deadline, aiming to minimize energy consumption on parallel processors with frequency scaling. We demonstrate that crown schedules are robust, i. e. that the runtime prolongation of one task by a moderate percentage does not cause a deadline transgression by the same fraction. In addition, by speeding up some tasks scheduled after the prolonged task, the deadline can still be met at a moderate additional energy consumption. We present a heuristic to perform this re-scaling online and explore the tradeoff between additional energy consumption in normal execution and limitation of deadline transgression in delay cases. We evaluate our approach with scheduling experiments on synthetic and application task sets. Finally, we consider influence of heterogeneous platforms such as ARM?s big.LITTLE on robustness.
机译:Crown调度是一种针对具有共同截止时间的可并行任务集的静态调度方法,其目标是在具有频率缩放的并行处理器上最小化能耗。我们证明了crown调度是稳健的,即一个任务的运行时延长适度的百分比不会导致相同比例的最后期限违规。此外,通过加快延长任务后安排的一些任务,仍然可以在适度额外能耗的情况下满足最后期限。我们提出了一种在线执行这种重新缩放的启发式方法,并探讨了正常执行中的额外能量消耗和延迟情况下的期限违规限制之间的权衡。我们通过在合成和应用任务集上安排实验来评估我们的方法。最后,我们考虑异构平台的影响,如ARM?它很大。几乎没有关于健壮性的内容。

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