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An Operating System level data migration scheme in hybrid DRAM-NVM memory architecture

机译:混合DRAM-NVM内存体系结构中的操作系统级数据迁移方案

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With the emergence of Non-Volatile Memories (NVMs) and their shortcomings such as limited endurance and high power consumption in write requests, several studies have suggested hybrid memory architecture employing both Dynamic Random Access Memory (DRAM) and NVM in a memory system. By conducting a comprehensive experiments, we have observed that such studies lack to consider very important aspects of hybrid memories including the effect of: a) data migrations on performance, b) data migrations on power, and c) the granularity of data migration. This paper presents an efficient data migration scheme at the Operating System level in a hybrid DRAM-NVM memory architecture. In the proposed scheme, two Least Recently Used (LRU) queues, one for DRAM section and one for NVM section, are used for the sake of data migration. With careful characterization of the workloads obtained from PARSEC benchmark suite, the proposed scheme prevents unnecessary migrations and only allows migrations which benefits the system in terms of power and performance. The experimental results show that the proposed scheme can reduce the power consumption up to 79% compared to DRAM-only memory and up to 48% compared to the state-of-the art techniques.
机译:随着非易失性存储器(NVMS)的出现及其缺点,例如写入请求中的有限耐久性和高功耗,提出了在存储系统中采用动态随机存取存储器(DRAM)和NVM的混合存储器架构。通过进行全面的实验,我们观察到,这些研究缺乏考虑混合存储器的非常重要方面,包括:a)数据迁移对性能的数据迁移,b)数据迁移和c)数据迁移的粒度。本文在混合DRAM-NVM内存架构中提供了在操作系统级别的有效数据迁移方案。在所提出的方案中,用于数据迁移,使用了两个最近使用最近使用的(LRU)队列,一个用于NVM部分的队列,一个用于NVM部分。通过仔细表征从PARSEC基准套件获得的工作负载,所提出的方案可以防止不必要的迁移,并且只允许在电力和性能方面受益于系统的迁移。实验结果表明,与仅最先进的技术相比,该方案可将功耗降低高达79%,高达48%。

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