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A reliability-aware address mapping strategy for NAND Flash Memory Storage Systems

机译:NAND闪存存储系统的可靠性感知地址映射策略

摘要

The increasing density of NAND flash memory leads to a dramatic increase in the bit error rate of flash, which greatly reduces the ability of error correcting codes (ECC) to handle multibit errors. NAND flash memory is normally used to store the file system metadata and page mapping information. Thus, a broken physical page containing metadata may cause an unintended and severe change in functionality of the entire flash. This paper presents Meta-Cure, a novel hardware and file system interface that transparently protects metadata in the presence of multibit faults. Meta-Cure exploits built-in ECC and replication in order to protect pages containing critical data, such as file system metadata. Redundant pairs are formed at run time and distributed to different physical pages to protect against failures. Meta-Cure requires no changes to the file system, on-chip hierarchy, or hardware implementation of flash memory chip. We evaluate Meta-Cure under a real-embedded platform using a variety of I/O traces. The evaluation platform adopts dual ARM Cortex A9 processor cores with 64 Gb NAND flash memory. We have evaluated the effectiveness of Meta-Cure on the new technology file system file system. Experimental results show that the proposed technique can reduce uncorrectable page errors by 70.38% with less than 7.86% time overhead in comparison with conventional error correction techniques.
机译:NAND闪存的密度不断提高,导致闪存的误码率急剧增加,这大大降低了纠错码(ECC)处理多位错误的能力。 NAND闪存通常用于存储文件系统元数据和页面映射信息。因此,包含元数据的损坏的物理页面可能会导致整个闪存的功能发生意外的严重变化。本文介绍了Meta-Cure,这是一种新颖的硬件和文件系统接口,可在存在多位故障的情况下透明地保护元数据。 Meta-Cure利用内置的ECC和复制功能来保护包含关键数据(例如文件系统元数据)的页面。冗余对在运行时形成,并分配到不同的物理页面,以防止发生故障。 Meta-Cure不需要更改文件系统,片上层次结构或闪存芯片的硬件实现。我们在使用各种I / O跟踪的真实嵌入式平台下评估Meta-Cure。该评估平台采用带64 Gb NAND闪存的双ARM Cortex A9处理器内核。我们已经评估了Meta-Cure在新技术文件系统文件系统上的有效性。实验结果表明,与传统的纠错技术相比,该技术可以将不可纠正的页面错误减少70.38%,而时间开销却不到7.86%。

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