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High-Performance Scalable Flash File System Using Virtual Metadata Storage with Phase-Change RAM

机译:使用虚拟元数据存储和相变RAM的高性能可扩展Flash文件系统

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摘要

Several flash file systems have been developed based on the physical characteristics of NAND flash memory. However, previous flash file systems have performance overhead and scalability problems caused by metadata management in NAND flash memory. In this paper, we present a flash file system called PFFS2. PFFS2 stores all metadata into virtual metadata storage, which employs Phase-change RAM (PRAM). PRAM is a next-generation nonvolatile memory and will be good for dealing with word-level read/write of small-size data. Based on the virtual metadata storage, PFFS2 can manage metadata in a virtually fixed location and through byte-level in-place updates. Therefore, the performance of PFFS2 is 38 percent better than YAFFS2 for small file read/write while matching YAFFS2 performance for large file. Virtual metadata storage is particularly effective in decreasing the burden of computational and I/O overhead of garbage collection. In addition, PFFS2 maintains a 0.18 second mounting time and 284 KB memory usage in spite of increases in NAND flash memory size. We also propose a wear-leveling solution for PRAM in virtual metadata storage and greatly reduce the total write count of NAND flash memory. In addition, the life span of PFFS2 is longer than other flash file systems.
机译:基于NAND闪存的物理特性,已经开发了几种闪存文件系统。但是,以前的闪存文件系统存在性能开销和可扩展性问题,这些问题是由NAND闪存中的元数据管理引起的。在本文中,我们介绍了一个名为PFFS2的闪存文件系统。 PFFS2将所有元数据存储到使用相变RAM(PRAM)的虚拟元数据存储中。 PRAM是下一代非易失性存储器,将非常适合处理小型数据的字级读/写。基于虚拟元数据存储,PFFS2可以在几乎固定的位置并通过字节级就地更新来管理元数据。因此,对于小文件读/写,PFFS2的性能比YAFFS2好38%,而对于大文件则与YAFFS2的性能相匹配。虚拟元数据存储在减少垃圾收集的计算和I / O开销方面特别有效。此外,尽管NAND闪存容量增加,PFFS2仍保持0.18秒的安装时间和284 KB的内存使用量。我们还为虚拟元数据存储中的PRAM提出了一种耗损均衡解决方案,可大大减少NAND闪存的总写入次数。此外,PFFS2的寿命比其他Flash文件系统更长。

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