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An adaptive demand-based caching mechanism for NAND flash memory storage systems

机译:NAND闪存存储系统的基于需求的自适应缓存机制

摘要

During past decades, the capacity of NAND flash memory has been increasing dramatically, leading to the use of nonvolatile flash in the system's memory hierarchy. The increasing capacity of NAND flash memory introduces a large RAM footprint to store the logical to physical address mapping. The demand-based approach can effectively reduce and well control the RAM footprint. However, extra address translation overhead is also introduced which may degrade the system performance. In this article, we present CDFTL, an adaptive Caching mechanism for Demand-based Flash Translation Layer, for NAND flash memory storage systems. CDFTL adopts both the fine-grained entry-based caching mechanism to exploit temporal locality and the coarse-grained translation-page-based caching mechanism to exploit spatial locality of workloads. By selectively caching the on-demand address mappings and adaptively changing the space configurations of two granularities, CDFTL can effectively utilize the RAM space and improve the cache hit ratio. We evaluate CDFTL under a real hardware embedded platform using a variety of I/O traces. Experimental results show that our technique can achieve an 11.13% reduction in average system response time and a 35.21% reduction in translation block erase counts compared with the previous work.
机译:在过去的几十年中,NAND闪存的容量急剧增加,导致在系统的内存层次结构中使用非易失性闪存。 NAND闪存容量的增加引入了较大的RAM占用空间,以存储逻辑到物理地址的映射。基于需求的方法可以有效减少并很好地控制RAM占用空间。但是,还会引入额外的地址转换开销,这可能会降低系统性能。在本文中,我们介绍了CDFTL,一种用于基于需求的闪存转换层的自适应缓存机制,用于NAND闪存存储系统。 CDFTL既采用细粒度的基于条目的缓存机制来利用时间局部性,又采用粗粒度的基于翻译页面的缓存机制来利用工作负载的空间局部性。通过有选择地缓存按需地址映射并自适应地更改两个粒度的空间配置,CDFTL可以有效利用RAM空间并提高缓存命中率。我们使用各种I / O跟踪在真实的硬件嵌入式平台下评估CDFTL。实验结果表明,与以前的工作相比,我们的技术可以使平均系统响应时间减少11.13%,转换块擦除次数减少35.21%。

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