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A Limits Study of Benefits from Nanostore-Based Future Data-Centric System Architectures

机译:基于纳米存储的未来以数据为中心的系统架构的收益的极限研究

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The adoption of non-volatile memories (NVMs) in system architecture and the growth in data-centric workloads offer exciting opportunities for new designs. In this paper, we examine the potential and limit of designs that move compute in close proximity to NVM-based data stores. To address the challenges in evaluating such system architectures for distributed systems, we develop and validate a new methodology for large-scale data-centric workloads. We then study "nanostores" as an example design that constructs distributed systems from building blocks with 3D-stacked compute and NVM layers on the same chip, replacing both traditional storage and memory with NVM. Our limits study demonstrates significant potential of this approach (3-162X improvement in energy delay product) over 2015 baselines, particularly for IO-inlensive workloads. We also discuss and quantify the impact of network bandwidth, software scalability, and power density, and design tradeoffs for future NVM-based data-centric architectures.
机译:系统架构中非易失性存储器(NVM)的采用以及以数据为中心的工作负载的增长为新设计提供了令人兴奋的机会。在本文中,我们研究了将计算移至非常接近基于NVM的数据存储的设计的潜力和局限性。为了应对在评估分布式系统的此类系统体系结构时遇到的挑战,我们开发并验证了针对大规模以数据为中心的工作负载的新方法。然后,我们以“ nanostores”为例进行设计,该设计从具有3D堆栈的计算和NVM层在同一芯片上的构建块构造分布式系统,并用NVM代替传统的存储和内存。我们的极限研究表明,相对于2015年基线,此方法(在能源延迟产品方面提高3-162倍)具有巨大潜力,尤其是对于IO密集型工作负载而言。我们还将讨论和量化网络带宽,软件可扩展性和功率密度的影响,并为未来基于NVM的以数据为中心的体系结构设计权衡。

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