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Initial Experiences with Dreamy Memory and the RAMpage Memory Hierarchy

机译:梦幻内存和RAMpage内存层次结构的初步经验

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This paper is a first look at the value of the RAMpage memory hierarchy to low-energy design. The approach used, dreamy memory, is to put DRAM in a low-power mode, unless it is referenced. Simulation results show that RAMpage provides a better overall speed-energy compromise than the conventional architecture used for comparison. The most energy-efficient RAMpage configuration in dreamy mode ran 3% faster and used 71% of the energy for DRAM of the best dreamy run of the conventional model. As compared with the best non-dreamy run time, the best dreamy time was 9% slower, but used under 17% of the energy for DRAM. The lowest-energy dreamy simulation used less than 16% of the DRAM energy of the fastest non-dreamy version, a very useful gain, given that DRAM uses significantly more power than the processor in a low-energy design. The most energy-efficient variant ran 12% slower than the fastest, allowing several trade-offs between speed and energy.
机译:本文首先介绍了RAMpage存储器层次结构对低能耗设计的价值。除非引用,否则使用的方法,即梦幻内存,是将DRAM置于低功耗模式。仿真结果表明,RAMpage提供了比用于比较的常规体系结构更好的整体速度-能量折衷。在理想模式下,最节能的RAMpage配置运行速度提高了3%,并为传统模式中最佳理想运行的DRAM消耗了71%的能量。与最佳的非空想运行时间相比,最佳空想时间慢了9%,但DRAM消耗的能量不到17%。能耗最低的梦幻模拟仅使用了最快的非梦想版本的DRAM能量的不到16%,这是非常有用的收益,因为在低能耗设计中DRAM比处理器使用的功率要多得多。能源效率最高的变体比最快的变体慢12%,从而在速度和能量之间进行了一些权衡。

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