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ZFTL: A Zone-based Flash Translation Layer with a two-tier selective caching mechanism

机译:ZFTL:具有两层选择性缓存机制的基于区域的Flash转换层

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In this paper, we propose a Zone-based Flash Translation Layer (ZFTL) for NAND flash-based storage systems. ZFTL is a novel page-level flash translation layer to divide a whole flash into several Zones so that it can reduce the size of SRAM by caching address mapping information of on-demand Zone. Moreover, we propose a two-tier selective caching mechanism to jointly exploit temporal locality and spatial locality of workloads. By selectively caching request mapping entry with the two-tier architecture, ZFTL utilizes the limited SRAM more efficiently so as to improve cache hit ratio and reduce system respond time. Our experimental evaluation with various realistic workloads shows that ZFTL outperforms state-of-the-art FTL schemes. In particular, ZFTL reduces address translation overhead by up to 85% and improves system response time by up to 60% compared to DFTL, though it uses only 5% of SRAM.
机译:在本文中,我们为基于NAND闪存的存储系统提出了基于区域的闪存转换层(ZFTL)。 ZFTL是一种新颖的页面级闪存转换层,可以将整个闪存划分为几个区域,从而可以通过缓存按需区域的地址映射信息来减小SRAM的大小。此外,我们提出了两层选择性缓存机制,以共同利用工作负载的时间局部性和空间局部性。通过使用两层体系结构选择性地缓存请求映射条目,ZFTL可以更有效地利用有限的SRAM,从而提高缓存命中率并减少系统响应时间。我们对各种实际工作负载的实验评估表明,ZFTL优于最新的FTL方案。尤其是,尽管它仅使用5%的SRAM,但与DFTL相比,ZFTL最多可将地址转换开销减少85%,并将系统响应时间缩短多达60%。

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