异构近似计算系统的调度策略

Christos Kalogirou, Michalis Spyrou, K. Theodosiou, C. Antonopoulos
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引用次数: 0

摘要

能源消耗是现代计算机系统的主要问题。过去用于优化性能/功率权衡的保守方法,如DVFS,已经达到了极限。异构是一种很有前途的方法:将具有不同特性的设备、针对特定计算模式的每种性能和能效组合在同一个系统中。近似计算是另一个更具破坏性的解决方案:许多应用程序可以容忍受控的质量损失,以换取性能和能源足迹的显著改进。本文介绍了三种利用异构性的调度策略,其中一种策略将异构性与近似计算相结合。这些策略可以选择性地优化性能、能耗,或者在能耗和结果质量之间进行权衡。它们在运行时监视任务的执行,以便确定任务到设备的适当映射,以及控制近似程度。我们的实验评估表明,这三种策略都与由“oracle”选择的最优配置的有效性密切匹配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scheduling Policies for Heterogeneous, Approximate Computing Systems
Energy consumption is a primary concern for modern computer systems. Conservative approaches, such as DVFS, which have been used in the past to optimize the performance / power tradeoff have reached their limits. Heterogeneity is a promising approach: devices with different characteristics, each performance- and energy-efficient for specific computational patterns are combined in the same system. Approximate computing is another more disruptive solution: many applications can tolerate controlled quality loss in exchange to significant improvement of performance and energy footprint. In this paper we introduce three scheduling policies that exploit heterogeneity, one of them combining it with approximate computing. These policies can selectively optimize performance, energy consumption, or the tradeoff between energy consumption and quality of results. They monitor the execution of tasks at runtime in order to identify the appropriate mapping of tasks to devices, as well as to control the degree of approximation. Our experimental evaluation indicates that all three policies closely match the effectiveness of the optimal configuration, selected by an "oracle".
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