Entry Green:1996:DFO from dectechj.bib
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BibTeX entry
@Article{Green:1996:DFO,
author = "Russell J. Green and Alasdair C. Baird and J.
Christopher Davies",
title = "Designing a Fast, On-line Backup System for a
Log-structured File System",
journal = j-DEC-TECH-J,
volume = "8",
number = "2",
pages = "32--45",
month = oct,
year = "1996",
CODEN = "DTJOEL",
ISSN = "0898-901X",
bibdate = "Thu Mar 20 18:15:43 MST 1997",
bibsource = "http://www.math.utah.edu/pub/tex/bib/dectechj.bib",
URL = "http://www.digital.com:80/info/DTJM03/DTJM03AH.HTM;
http://www.digital.com:80/info/DTJM03/DTJM03HM.HTM;
http://www.digital.com:80/info/DTJM03/DTJM03P8.PS;
http://www.digital.com:80/info/DTJM03/DTJM03PF.PDF;
http://www.digital.com:80/info/DTJM03/DTJM03SC.TXT",
abstract = "The Spiralog file system for the OpenVMS operating
system incorporates a new technical approach to backing
up data. The fast, low-impact backup can be used to
create consistent copies of the file system while
applications are actively modifying data. The Spiralog
backup uses the log-structured file system to solve the
backup problem. The physical on-disk structure allows
data to be saved at near-maximum device throughput with
little processing of data. The backup system achieves
this level of performance without compromising
functionality such as incremental backup or fast,
selective restore.",
acknowledgement = ack-nhfb,
classcodes = "C6120 (File organisation); C6150N (Distributed systems
software)",
keywords = "data structures; file system; functionality;
incremental backup; log-structured file system;
near-maximum device throughput; network operating
systems; online backup system; OpenVMS operating
system; physical on-disk; selective restore; Spiralog;
structure",
treatment = "P Practical",
}
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