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Efficient Metadata Management for Flash File Systems

机译:闪存文件系统的高效元数据管理

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摘要

NAND flash memory becomes one of the most popular storage for portable embedded systems. Although many flash-aware file systems, such as JFFS2 and YAFFS2, were proposed, the large memory consumption and the long mount delay have been serious obstacles for large-capacity NAND flash memory. In this paper, we present a new flash-aware file system called DFFS (Direct Flash File System) which fetches only the needed metadata on demand from flash memory. In addition, DFFS employs two novel metadata management schemes, inode embedding scheme and hybrid inode indexing scheme, to improve the performance of metadata operations. Comprehensive evaluation results using microbenchmark, postmark, and Linux kernel compilation trace, show that DFFS has comparable performance to JFFS2 and YAFFS2, while achieving a small memory footprint and instant mount time.
机译:NAND闪存成为便携式嵌入式系统最流行的存储之一。虽然提出了许多闪光感知文件系统,例如JFFS2和YAFFS2,但大容量NAND闪存的大存储器消耗和长安装延迟是严重的障碍。在本文中,我们介绍了一个名为DFFS(直接闪存文件系统)的新的闪光感知文件系统,该系统仅从闪存中仅获取所需的元数据。此外,DFFS使用两种新的元数据管理方案,inode嵌入方案和混合inode索引方案,以提高元数据操作的性能。使用Microbenchmark,Postmark和Linux内核编译跟踪的综合评估结果显示,DFFS对JFFS2和YAFFS2具有可比性性能,同时实现了小的内存占地面积和即时安装时间。

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