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AIMR: An Adaptive Page Management Policy for Hybrid Memory Architecture with NVM and DRAM

机译:AIMR:具有NVM和DRAM的混合内存体系结构的自适应页面管理策略

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The last few years have witnessed the emergence of Non-Volatile Memories (NVMs), which are actively pursued as scalable substitutes for traditional DRAM-based main memory due to higher scalability and lower leakage power. However, current NVM technologies also exhibit potential drawbacks including lower endurance, higher dynamic power, and longer write latency. Recent studies show that hybrid memory architectures involving NVM and DRAM are able to effectively utilize the merits of both memory devices. However, allocating write-intensive pages to NVM can still greatly impeding the performance of the overall memory system. In this paper, we provide an adaptive page management policy called AIMR (Adaptive page Insertion, Migration, and Replacement) for hybrid memory architecture. The main objective of our scheme is to ensure DRAM absorbs most memory writes while maintaining a high performance of the overall system. Specifically, we use both 'recency' and 'frequency' features to estimate the future memory access patterns and then carefully insert, migrate, and replace pages in the hybrid memory without setting any additional user-defined parameters. Experimental results show that AIMR can achieve average NVM write count, memory access latency, and memory energy consumption reduction by 19.3%, 45.8% and 27.8%, respectively compared with the existing page management policies under hybrid memory architecture.
机译:过去几年见证了非易失性内存(NVM)的出现,由于具有更高的可扩展性和更低的泄漏功率,它们正在积极寻求作为基于DRAM的主内存的可扩展替代品。但是,当前的NVM技术还表现出潜在的缺点,包括较低的耐用性,较高的动态功耗和较长的写入延迟。最近的研究表明,涉及NVM和DRAM的混合存储体系结构能够有效利用两种存储设备的优点。但是,将写密集型页面分配给NVM仍然会极大地阻碍整个内存系统的性能。在本文中,我们为混合内存体系结构提供了一种称为AIMR(自适应页面插入,迁移和替换)的自适应页面管理策略。我们方案的主要目标是确保DRAM吸收大多数存储器写入数据,同时保持整个系统的高性能。具体来说,我们同时使用“新近度”和“频率”功能来估计将来的内存访问模式,然后在不设置任何其他用户定义参数的情况下,小心地在混合内存中插入,迁移和替换页面。实验结果表明,与混合存储架构下的现有页面管理策略相比,AIMR可以实现平均NVM写计数,内存访问延迟和内存能耗分别减少19.3%,45.8%和27.8%。

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