DocumentCode :
3462379
Title :
OAMS: A Highly Reliable Metadata Service for Big Data Storage
Author :
Jiang Zhou ; Jing Guo ; Weiping Wang ; Cuilan Du ; Xiaoyan Gu ; Dan Meng
Author_Institution :
Inst. of Comput. Technol., Comput. Applic. Res. Center, Grad. Univ. of Chinese Acad. of Sci., Beijing, China
fYear :
2013
fDate :
3-5 Dec. 2013
Firstpage :
1287
Lastpage :
1294
Abstract :
As application requirements increase in quantity and popularity, big data storage is becoming an important technology which data centers and Internet companies depend on. The cluster file system with centralized metadata management often encounters planned or unplanned downtime which requires higher reliability for metadata service. Current paradigms use the backup server to take over as the primary when the latter is in the case of failures. But if the backup crashes, the file system is still in an unreliable state. In this paper, we present a novel primary-backup policy (OAMS), which ensures the availability of metadata service in cluster file system. Different from traditional paradigms, OAMS employs multiple standbys to tolerate the single point of failure. It is based on the built-in shared storage pool for metadata synchronization and a series of protocols for active election, active-standby switching and etc. By using a prepared, automatic state transition among metadata servers, OAMS achieves an automatic recovery in the form of hot standby. It also supports server self-recovery and dynamical addition for standbys at runtime. Evaluation results show that OAMS obviously improves the reliability of metadata service while the average performance degradation is below 8%.
Keywords :
Big Data; back-up procedures; meta data; software reliability; storage management; Internet company; OAMS; active-standby switching; automatic recovery; automatic state transition; average performance degradation; backup server; big data storage; built-in shared storage pool; centralized metadata management; cluster file system; data centers; metadata servers; metadata service reliability; metadata synchronization; primary-backup policy; server self-recovery; unplanned downtime; Computer crashes; Manuals; Protocols; Reliability; Servers; Switches; Synchronization; big data; cluster file system; high reliability; metadata service; primary-backup paradigm;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational Science and Engineering (CSE), 2013 IEEE 16th International Conference on
Conference_Location :
Sydney, NSW
Type :
conf
DOI :
10.1109/CSE.2013.191
Filename :
6755373
Link To Document :
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