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eTag: Tag-Comparison in Memory to Achieve Direct Data Access based on eDRAM to Improve Energy Efficiency of DRAM Cache

机译:eTag:内存中的标签比较,可实现基于eDRAM的直接数据访问,从而提高DRAM缓存的能效

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摘要

As 2.5D/3D die stacking technology emerges, stacked dynamic random access memory (DRAM) has been proposed as a cache due to its large capacity in order to bridge the latency gap between off-chip memory and SRAM caches. The main problems in utilizing a DRAM cache are the high tag storage overhead and the high lookup latency. To address these, we propose tags-in-eDRAM (embedded DRAM) due to its higher density and lower latency. This paper presents an eTag DRAM cache architecture that is composed of a novel tag-comparison-in-memory scheme to achieve direct data access. It eliminates access latency and comparison power by pushing tag-comparison into the sense amplifier. Furthermore, we propose a Merged Tag to enhance the eTag DRAM cache by comparing last-level cache tags and DRAM cache tags in parallel. Simulation results show that the eTag DRAM cache improves energy efficiency by 15.4% and 33.9% in 4-core and 8-core workloads, respectively. Additionally, the Merged Tag achieves 32.1% and 48.7% energy efficiency improvements in 4-core and 8-core workloads, respectively.
机译:随着2.5D / 3D裸片堆叠技术的出现,堆叠动态随机存取存储器(DRAM)由于具有大容量而被提出作为高速缓存,以弥合片外存储器和SRAM高速缓存之间的延迟差距。利用DRAM高速缓存的主要问题是高标签存储开销和高查找等待时间。为了解决这些问题,我们提出了eDRAM中的标签(嵌入式DRAM),因为它具有更高的密度和更低的延迟。本文介绍了一种eTag DRAM缓存体系结构,该体系结构由一种新颖的内存中标记比较方案组成,可实现直接数据访问。通过将标签比较推入读出放大器,它消除了访问等待时间和比较功能。此外,我们提出了一种合并标签,以通过并行比较末级缓存标签和DRAM缓存标签来增强eTag DRAM缓存。仿真结果表明,eTag DRAM缓存在4核和8核工作负载中分别将能源效率提高了15.4%和33.9%。此外,Merged Tag在4核和8核工作负载中分别实现了32.1%和48.7%的能效改进。

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