Virtual persistent cache: Remedy the long latency behavior of host-aware shingled magnetic recording drives

Ming-Chang Yang, Yuan-Hao Chang, Fenggang Wu, Tei-Wei Kuo, D. Du
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引用次数: 16

Abstract

This paper presents a Virtual Persistent Cache design to remedy the long latency behavior of the Host-Aware Shingled Magnetic Recording (HA-SMR) drive. Our design keeps the cost-effective model of the existing HA-SMR drives, but at the same time asks the great help from the host system for adaptively providing some computing and management resources to improve the drive performance when needed. The technical contribution is to trick the HA-SMR drives by smartly reshaping the access patterns to HA-SMR drives, so as to avoid the occurrences of long latencies in most cases and thus to ultimately improve the drive performance and responsiveness. We conduct experiments on real Seagate 8 TB HA-SMR drives to demonstrate the advantages of Virtual Persistent Cache over the real workloads from Microsoft Research Cambridge. The results show that the proposed design can remedy most of the long latencies and improve the drive performance by at least 58.11%, under the evaluated workloads.
虚拟持久缓存:补救主机感知的带状磁记录驱动器的长延迟行为
本文提出了一种虚拟持久缓存设计,以弥补主机感知的带状磁记录(HA-SMR)驱动器的长延迟行为。我们的设计既保留了现有HA-SMR驱动器的性价比模式,同时又要求主机系统在需要时自适应地提供一些计算和管理资源,以提高驱动器的性能。技术上的贡献是通过巧妙地重塑对HA-SMR驱动器的访问模式来欺骗HA-SMR驱动器,从而避免在大多数情况下出现长延迟,从而最终提高驱动器性能和响应性。我们在真正的希捷8 TB HA-SMR驱动器上进行了实验,以证明虚拟持久缓存相对于微软剑桥研究院的实际工作负载的优势。结果表明,在评估的工作负载下,所提出的设计可以弥补大部分长延迟,并将驱动器性能提高至少58.11%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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