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首页> 外文期刊>ACM Journal on Emerging Technologies in Computing Systems >Self-learnable Cluster-based Prefetching Method for DRAM-Flash Hybrid Main Memory Architecture
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Self-learnable Cluster-based Prefetching Method for DRAM-Flash Hybrid Main Memory Architecture

机译:基于自学习的基于群集的DRAM-Flash混合主内存架构的预取方法

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This article presents a novel prefetching mechanism for memory-intensive workloads used in large-scale data centers. We design a negative-AND-flash/dynamic random-access memory (DRAM) hybrid memory architecture as a cost-effective memory architecture to resolve the scalability and power consumption problems of a DRAM-based model. A smart prefetching mechanism based on a cluster-management scheme to cope with dynamically varying and complex access patterns of any given application is designed for maximizing the performance of the DRAM. In this article, we propose a new concept for page management, called a cluster, which prefetches data in our hybrid memory architecture. The cluster management is based on a self-learning scheme on dynamically changeable access patterns by considering any correlation between missed pages. Experimental results show that the overall performance is significantly improved in relation to hit rate, execution time, and energy consumption. Namely, our proposed model can enhance the hit rate by 15% and reduce the execution time by 1.75 times. In addition, we can save energy consumption by around 48% by cutting the number of flushed pages to about an eighth of that in a conventional system.
机译:本文介绍了大型数据中心中使用的内存密集型工作负载的新型预取机制。我们将负载闪存/动态随机存取存储器(DRAM)混合内存架构设计为经济高效的内存架构,以解决基于DRAM的模型的可伸缩性和功耗问题。基于群集管理方案的智能预取机制,以应对任何给定应用程序的动态变化和复杂的访问模式,专为最大化DRAM的性能而设计。在本文中,我们向名为群集的页面管理提出了一个新的概念,该群集预先取代我们的混合内存架构中的数据。群集管理通过考虑错过页面之间的任何相关性,基于自学习方案。实验结果表明,与击中率,执行时间和能量消耗有关的整体性能显着改善。即,我们所提出的模型可以将命中率提高15%,并将执行时间减少1.75倍。此外,我们可以通过将刷新页数切割到传统系统中的八分之八,通过将次数的数量减少到大约第八次来节省能耗大约48%。

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