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Hashing Directory Scheme for NAND Flash File System

机译:NAND Flash文件系统的哈希目录方案

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Flash memory, especially NAND flash memory, has become a major method for data storage in mobile systems because of its small size, shock resistance, and low power consumption. When the flash memory is used, conventional file systems cannot be used upon a bare flash memory due to physical characteristics. Instead, few flash file systems are developed which use the direct interfaces with flash memory. However, their data recording method have problems as the capacity of flash increases, because these use log based data recording method, which means that they encapsulate the metadata information into the data node for all files when data are written. Their method is good for the small capacity of flash memory, but not adequate for large sizes because it consumes more mount time, memory footprint and operation times as capacity increases. In this paper, we present an efficient metadata management scheme of flash file system for giga scale flash memory. Specifically, we design the hashing directory structure for directory management and two level index structure for file index management. These management scheme can reduce the file system mount time and memory footprint during runtime.
机译:闪速存储器,特别是NAND闪速存储器,由于其体积小,抗冲击性和低功耗而已成为移动系统中数据存储的主要方法。使用闪存时,由于物理特性,无法在裸闪存上使用常规文件系统。取而代之的是,很少开发使用直接接口与闪存的闪存文件系统。但是,它们的数据记录方法随着闪存容量的增加而出现问题,因为它们使用基于日志的数据记录方法,这意味着它们在写入数据时将元数据信息封装到所有文件的数据节点中。他们的方法适用于闪存容量较小的情况,但不适用于大容量闪存,因为随着容量的增加,它会消耗更多的安装时间,内存占用量和操作时间。在本文中,我们提出了一种用于千兆规模闪存的高效的闪存文件系统元数据管理方案。具体来说,我们设计用于目录管理的哈希目录结构和用于文件索引管理的二级索引结构。这些管理方案可以减少运行时的文件系统挂载时间和内存占用。

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