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Wear-Leveling Aware Page Management for Non-Volatile Main Memory on Embedded Systems

机译:嵌入式系统上非易失性主内存的耗损感知页面管理

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Non-volatile Memories (NVMs), have many promising characteristics, such as low leakage power, low cost, non-volatility, and high scalability, which are all attractive for embedded systems to employ them as the main memory. However, one of the constraints that undermine the credential of NVMs as main memory is its limited write endurance. To tackle this problem, this paper proposes five techniques: Rearrangement Inequality Based Page Allocation (RIPA), Virtual Page Mapping (VPM), On-demand Memory Merging and Splitting (OMS), Periodical Page Swapping (PPS), and Normalized Boundary Calibration (NBC) to evenly distribute the writes on Nonvolatile Main Memory (NVMM) purely on the Operating System (OS) level, which can greatly extend lifetime of NVMM. Without extra hardware support, OS management is easy to be integrated into existing embedded systems. The experimental results show that with less then 0.6 percent performance overhead the proposed techniques can extend the lifetime of NVMM to 17.28 times longer compared with traditional methods.
机译:非易失性存储器(NVM)具有许多令人鼓舞的特性,例如低泄漏功率,低成本,非易失性和高可伸缩性,所有这些对于嵌入式系统将其用作主存储器都具有吸引力。但是,破坏NVM作为主内存的凭据的限制之一是其有限的写入持久性。为了解决这个问题,本文提出了五种技术:基于重排不等式的页面分配(RIPA),虚拟页面映射(VPM),按需内存合并和拆分(OMS),定期页面交换(PPS)和归一化边界校准( NBC)可以纯粹在操作系统(OS)级别上平均分配非易失性主内存(NVMM)上的写入,这可以大大延长NVMM的寿命。如果没有额外的硬件支持,则易于将OS管理集成到现有的嵌入式系统中。实验结果表明,与传统方法相比,所提出的技术以不到0.6%的性能开销将NVMM的寿命延长到17.28倍。

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