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Heterogeneous Mini-rank: Adaptive, Power-Efficient Memory Architecture

机译:异构迷你等级:自适应,节能型存储器架构

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Memory power consumption has become a big concern in server platforms. A recently proposed mini-rank architecture reduces the memory power consumption by breaking each DRAM rank into multiple narrow mini-ranks and activating fewer devices for each request. However, its fixed and uniform configuration may degrade performance significantly or lose power saving opportunities on some workloads. We propose a heterogeneous mini-rank design that sets the near-optimal configuration for each workload based on its memory access behavior and its memory bandwidth requirement. Compared with the original, homogeneous mini-rank design, the heterogeneous mini-rank design can balance between the performance and power saving and avoid large performance loss. For instance, for multiprogramming workloads with SPEC2000 application running on a quad-core system with two-channel DDR3-1066 memory, on average, the heterogeneous mini-rank can reduce the memory power by 53.1% (up to 60.8%) with the performance loss of 4.6% (up to 11.1%), compared with a conventional memory system. In comparison, the x32 homogeneous mini-rank can only save memory power by up to 29.8%; and the x8 homogeneous mini-rank will cause performance loss by up to 22.8%. Compared with x16 homogeneous mini-rank configuration, it can further reduce the EDP (energy-delay product) by up to 15.5% (10.0% on average).
机译:内存功耗已成为服务器平台中的主要问题。最近提出的迷你等级架构通过将每个DRAM等级分成多个狭窄的迷你等级并为每个请求激活更少的设备来减少存储器功耗。但是,其固定和统一的配置可能会显着降低性能或在某些工作负载上失去节电的机会。我们提出了一种异构的迷你等级设计,该设计根据每个工作负载的内存访问行为和内存带宽要求为它设置接近最佳的配置。与原始的同质迷你等级设计相比,异类迷你等级设计可以在性能和节能之间取得平衡,并避免大量的性能损失。例如,对于SPEC2000应用程序在带有两个通道DDR3-1066内存的四核系统上运行的多程序工作负载,平均而言,异构小型存储阵列可以将存储性能降低53.1%(最高60.8%)。与传统的内存系统相比,它的丢失率为4.6%(最高为11.1%)。相比之下,x32同质迷你等级最多只能节省29.8%的内存容量; x8均质迷你等级将导致最高22.8%的性能损失。与x16均质迷你等级配置相比,它可以进一步将EDP(能源延迟产品)降低多达15.5%(平均为10.0%)。

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