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Concertina: Squeezing in Cache Content to Operate at Near-Threshold Voltage

机译:六角琴:压缩高速缓存内容以在接近阈值电压下运行

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Scaling supply voltage to values near the threshold voltage allows a dramatic decrease in the power consumption of processors; however, the lower the voltage, the higher the sensitivity to process variation, and, hence, the lower the reliability. Large SRAM structures, like the last-level cache (LLC), are extremely vulnerable to process variation because they are aggressively sized to satisfy high density requirements. In this paper, we propose Concertina, an LLC designed to enable reliable operation at low voltages with conventional SRAM cells. Based on the observation that for many applications the LLC contains large amounts of null data, Concertina compresses cache blocks in order that they can be allocated to cache entries with faulty cells, enabling use of 100 percent of the LLC capacity. To distribute blocks among cache entries, Concertina implements a compression- and fault-aware insertion/replacement policy that reduces the LLC miss rate. Concertina reaches the performance of an ideal system implementing an LLC that does not suffer from parameter variation with a modest storage overhead. Specifically, performance degrades by less than 2 percent, even when using small SRAM cells, which implies over 90 percent of cache entries having defective cells, and this represents a notable improvement on previously proposed techniques.
机译:将电源电压缩放到接近阈值电压的值可以显着降低处理器的功耗。但是,电压越低,对工艺变化的敏感性越高,因此可靠性越低。大型SRAM结构(如最后一级缓存(LLC))极易受到工艺变化的影响,因为它们的尺寸会激进地满足高密度要求。在本文中,我们提出了Concertina,这是一种LLC,旨在通过常规SRAM单元在低电压下实现可靠​​的操作。根据观察发现,对于许多应用,LLC包含大量的空数据,Concertina会压缩缓存块,以便可以将其分配给具有故障单元的缓存条目,从而可以使用100%的LLC容量。为了在缓存条目之间分配块,Concertina实现了一种压缩和故障感知的插入/替换策略,可降低LLC丢失率。六角琴达到了实现LLC的理想系统的性能,该系统不受参数变化的影响,并具有适度的存储开销。具体而言,即使使用小型SRAM单元,性能也会下降不到2%,这意味着超过90%的高速缓存条目具有缺陷单元,这代表了对先前提出的技术的显着改进。

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