内存树结构:高带宽和可扩展的内存系统

Kanit Therdsteerasukdi, Gyungsu Byun, J. Ir, Glenn D. Reinman, J. Cong, Mau-Chung Frank Chang
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引用次数: 22

摘要

随着我们将更多的内核集成到一个芯片上,对DRAM容量和片外带宽的需求将继续增长。然而,随着DRAM数据速率的提高,支持多滴总线的dimm数量减少了。因此,传统的存储系统不足以满足这两种需求。我们提出了DIMM树架构,通过将DIMM连接成树来获得更好的可扩展性。DIMM树架构能够随着树中的每个延迟级别呈指数级增长DIMM数量。我们还建议将多频段射频互连(MRF-I)应用于DIMM树结构,以获得更大的可扩展性和更高的吞吐量。没有MRF-I的DIMM树架构能够扩展到64个DIMM,而吞吐量仅比理想系统降低8%。与4-DIMM系统相比,具有MRF-I的DIMM树架构能够将64-DIMM系统的吞吐量提高68%(最高200%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The DIMM tree architecture: A high bandwidth and scalable memory system
The demand for capacity and off-chip bandwidth to DRAM will continue to grow as we integrate more cores onto a die. However, as the data rate of DRAM has increased, the number of DIMMs supported on a multi-drop bus has decreased. Therefore, traditional memory systems are not sufficient to meet both these demands. We propose the DIMM tree architecture for better scalability by connecting the DIMMs as a tree. The DIMM tree architecture is able to grow the number of DIMMs exponentially with each level of latency in the tree. We also propose application of Multiband Radio Frequency Interconnect (MRF-I) to the DIMM tree architecture for even greater scalability and higher throughput. The DIMM tree architecture without MRF-I was able to scale up to 64 DIMMs with only an 8% degradation in throughput over an ideal system. The DIMM tree architecture with MRF-I was able to increase throughput by 68% (up to 200%) on a 64-DIMM system over a 4-DIMM system.
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