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Optimizing Emerging Storage Primitives with Virtualization for Flash Memory Storage Systems

机译:通过虚拟化优化闪存存储系统中的新兴存储基元

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摘要

NAND flash memory has become the mainstream storage medium for both enterprise high performance computers and embedded systems. However, over the past several decades, the storage primitives that access secondary storage have remained unchanged, forcing NAND flash memory to serve merely as a block device like hard disk drive. Recently, several emerging storage primitives have been presented to explore the potential value of non-volatile memory devices. They provide high-level virtual address to logical address mapping and allow the applications to directly manipulate I/O operations. Although these primitives can significantly boost the access performance by providing virtual to logical address mappings, they still need to handle the logical to physical address translations in current flash-based storage systems and require further support for update operations. This paper presents ESP to optimize Emerging Storage Primitives with virtualization for flash memory storage systems. We propose an optimization strategy, namely virtual duplication, to solve the critical issues in existing emerging storage primitives. The objective is to reduce unnecessary flash memory accesses and improve the address translation for emerging storage primitives. We have evaluated ESP on an embedded development platform. Experimental result show that ESP can improve the write/read performance by 56.71% and reduce over 30% of garbage collection operations.
机译:NAND闪存已成为企业高性能计算机和嵌入式系统的主流存储介质。但是,在过去的几十年中,访问辅助存储的存储原语保持不变,从而迫使NAND闪存仅用作硬盘驱动器之类的块设备。近来,已经提出了几种新兴的存储原语以探索非易失性存储设备的潜在价值。它们提供了高级虚拟地址到逻辑地址的映射,并允许应用程序直接操纵I / O操作。尽管这些原语可以通过提供虚拟到逻辑地址的映射来显着提高访问性能,但是它们仍然需要处理当前基于闪存的存储系统中逻辑到物理地址的转换,并且需要对更新操作的进一步支持。本文介绍了ESP,可通过虚拟化优化闪存存储系统的新兴存储基元。我们提出一种优化策略,即虚拟复制,以解决现有的新兴存储基元中的关键问题。目的是减少不必要的闪存访问并改善新兴存储原语的地址转换。我们已经在嵌入式开发平台上评估了ESP。实验结果表明,ESP可以将写入/读取性能提高56.71%,并减少30%以上的垃圾回收操作。

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