DocumentCode
1964286
Title
A Media File Snapshot Technique Based on Embedded System
Author
Wu, Libin ; Wang, JinLin ; Sun, Peng ; Hu, Jianliang
Author_Institution
Nat. Network New Media Eng. Res. Center, Inst. of Acoust., Beijing
Volume
4
fYear
2008
fDate
12-14 Dec. 2008
Firstpage
110
Lastpage
113
Abstract
File system reliability has always been a strong concern in the embedded operating system. This reliability frequently involves a choice between raw performance and integrity guarantees. Snapshot technique is to create an instant image of the file system with little processing and space overheads. It performs data protection and provides the continuous data service during backup. To improve the reliability and stability of the embedded file system, we propose an embedded file system meta-data snapshot for the ext2 file system, which based on the asynchronous/synchronous I/O coexisted strategy of media file storage, in muCLinux kernel 2.4.26. As we all know, embedded systems usually have very strict memory, processor, and I/O limitations that must play factors in designing an embedded system. Moreover, the cost of additional system management complexity and disk latency are the key factors that directly affect the file system performance. Because of these limits, we introduce a media storage file system (MSFS). The main technique of this File system is MSnap (meta-date virtual view snapshot technique). Unlike other snapshot technologies; it dose not needs massive snapshot volume and complexity implementation. Experimental results show that MSnap induces less overhead and has higher performance, reliability than traditional snapshot system.
Keywords
embedded systems; file organisation; security of data; continuous data service; data protection; embedded file system; embedded operating system; file system reliability; media file snapshot technique; media storage file system; metadata snapshot; Acoustical engineering; Acoustics; Embedded system; File systems; High definition video; Image storage; Linux; Operating systems; Stability; Writing; asynchronous; embedded system; snapshot; synchronous;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Science and Software Engineering, 2008 International Conference on
Conference_Location
Wuhan, Hubei
Print_ISBN
978-0-7695-3336-0
Type
conf
DOI
10.1109/CSSE.2008.585
Filename
4722575
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