通过减少随机存取DRAM来提高能源效率

Hai Huang, K. Shin, C. Lefurgy, T. Keller
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引用次数: 105

摘要

现有技术通过被动监控内存流量来管理主存储器的电源,并在此基础上预测何时断电以及转换到哪种低功耗状态。然而,被动地监控内存流量可能远远不够有效,因为连续内存访问之间的空闲时间通常太短,现有的电源管理技术无法充分利用现代DRAM体系结构中实现的更深层次的节能状态。在本文中,作者提出了一种新技术,该技术将主动重塑内存流量,将以前无法用于电源管理的短空闲时间合并为较长的空闲时间,从而使现有技术能够有效地利用内存中的空闲时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving energy efficiency by making DRAM less randomly accessed
Existing techniques manage power for the main memory by passively monitoring the memory traffic, and based on which, predict when to power down and into which low-power state to transition. However, passively monitoring the memory traffic can be far from being effective as idle periods between consecutive memory accesses are often too short for existing power-management techniques to take full advantage of the deeper power-saving state implemented in modem DRAM architectures. In this paper, the authors proposed a new technique that will actively reshape the memory traffic to coalesce short idle periods - which were previously unusable for power management - into longer ones, thus enabling existing techniques to effectively exploit idleness in the memory.
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