细粒度的每核频率调度,以实现高效的多核执行

Xinghui Zhao, Nadeem Jamali
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引用次数: 10

摘要

由于个人(电池寿命)和环境(全球变暖)的原因,人们对计算机系统消耗的能量越来越感兴趣。多核架构通过允许核心在较低频率下工作,为节能提供了潜在的机会。以前分析多核功耗的工作假设所有核必须以相同的频率运行。然而,新技术,如快速电压缩放和Turbo Boost,允许内核在不同的频率下工作。在本文中,我们提出了一个能量感知的资源管理模型,ROT-MCP,它提供了一种灵活的方法来分析在非均匀频率下工作的多核能耗。然后,这些信息可以用于生成执行计算的节能调度,以及基于每个核心的频率变化调度,同时满足计算的性能要求。实验结果表明,使用该方法所节省的能量远远超过生成调度所需的推理所消耗的能量。
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Fine-grained per-core frequency scheduling for power efficient-multicore execution
There is growing interest in the energy consumed by computer systems, for both individual (battery life) and environmental (global warming) reasons. Multicore architectures offer a potential opportunity for energy conservation by allowing cores to operate at lower frequencies. Previous work on analyzing power consumption of multicores assumes that all cores must run at the same frequency. However, new technologies, such as fast voltage scaling and Turbo Boost, allow cores to operate at different frequencies. In this paper, we present an energy-aware resource management model, ROT-MCP, which provides a flexible way to analyze energy consumption of multicores operating at non-uniform frequencies. This information can then be used to generate a energy-efficient schedule for execution of the computations - as well as a schedule of frequency changes on a per-core basis - while satisfying performance requirements of computations. Experimental results show that the energy savings achieved using this approach far outweigh the energy consumed in the reasoning required for generating the schedules.
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