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URFA-Update based register file architecture with partial register write for energy efficiency

机译:基于URFA-Update的寄存器文件架构,具有部分寄存器写入功能,可提高能源效率

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In modern architectures the register file is one of the most energy consuming and frequently used components of the processor. Therefore, reducing the register file power dissipation is critical. In this paper, we propose schemes that reduce the energy dissipation of the register file by not writing the bits that are not changed. Our schemes rely on the observation that on the average only 10% of the register bits are changed by the instructions. In this study, we propose a combination of architectural and circuit level techniques that exploit this inefficiency for the register file's write power reduction using an update based scheme. We show that for a 64-bit datapath it is possible to reduce the energy dissipation of the register file up to 25% for individual benchmark programs and by 21% on the average across all simulated benchmarks with a negligible performance compromise. (C) 2016 Elsevier B.V. All rights reserved.
机译:在现代体系结构中,寄存器文件是处理器中最耗能且最常用的组件之一。因此,减少寄存器文件的功耗至关重要。在本文中,我们提出了一些方案,通过不写入未更改的位来减少寄存器文件的能耗。我们的方案基于以下观察结果:平均而言,指令仅会更改寄存器位的10%。在这项研究中,我们提出了一种架构和电路级技术的组合,利用基于更新的方案利用这种低效率来减少寄存器文件的写功率。我们表明,对于64位数据路径,可以将单个基准程序的寄存器文件的能耗降低25%,而将所有模拟基准的能耗平均降低21%,而对性能的影响可以忽略不计。 (C)2016 Elsevier B.V.保留所有权利。

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