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ClusterFetch: A Lightweight Prefetcher for Intensive Disk Reads

Authors
Ryu, JunheeLee, DongeunShin, Kang G.Kang, Kyungtae
Issue Date
Feb-2018
Publisher
IEEE COMPUTER SOC
Keywords
Disk prefetching; disk read bursts detection; quick application loading; user-perceived latency improvement
Citation
IEEE TRANSACTIONS ON COMPUTERS, v.67, no.2, pp 284 - 290
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
IEEE TRANSACTIONS ON COMPUTERS
Volume
67
Number
2
Start Page
284
End Page
290
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/6786
DOI
10.1109/TC.2017.2748939
ISSN
0018-9340
1557-9956
Abstract
By overlapping disk accesses with computation-intensive operations, prefetching can reduce delays in launching an application and in loading significant amounts of data while the application is running. The key to effective prefetching is making the tradeoff between the mining accuracy of selecting relevant blocks, and the time to decide those blocks. To address this problem, we propose a new prefetcher called ClusterFetch. In its learning mode, ClusterFetch detects periods of intensive disk accesses by monitoring the speed at which read requests are queued; it re-organizes these reads and locates the file opened by the application just before each such period. During subsequent runs of the same application, ClusterFetch prefetches the data associated with the opening of a "trigger" file. Our experimental results show that ClusterFetch implemented in Linux can reduce the application launch time by up to 41.3 percent and the loading time by up to 38.2 percent, while taking up less than 200 KB of main memory.
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Kang, Kyung tae
ERICA 소프트웨어융합대학 (DEPARTMENT OF ARTIFICIAL INTELLIGENCE)
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