Title :
A Scalable Reverse Lookup Scheme Using Group-Based Shifted Declustering Layout
Author :
Zhang, Junyao ; Shang, Pengju ; Wang, Jun
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of Central Florida, Orlando, FL, USA
Abstract :
Recent years have witnessed an increasing demand for super data clusters. The super data clusters have reached the petabyte-scale that can consist of thousands or tens of thousands storage nodes at a single site. For this architecture, reliability is becoming a great concern. In order to achieve a high reliability, data recovery and node reconstruction is a must. Although extensive research works have investigated how to sustain high performance and high reliability in case of node failures at large scale, a reverse lookup problem, namely finding the objects list for the failed node remains open. This is especially true for storage systems with high requirement of data integrity and availability, such as scientific research data clusters and etc. Existing solutions are either time consuming or expensive. Meanwhile, replication based block placement can be used to realize fast reverse lookup. However, they are designed for centralized, small-scale storage architectures. In this paper, we propose a fast and efficient reverse lookup scheme named Group-based Shifted Declustering (G-SD) layout that is able to locate the whole content of the failed node. G-SD extends our previous shifted declustering layout and applies to large-scale file systems. Our mathematical proofs and real-life experiments show that G-SD is a scalable reverse lookup scheme that is up to one order of magnitude faster than existing schemes.
Keywords :
pattern clustering; storage management; data availability; data integrity; data recovery; file system; group-based shifted declustering layout; node reconstruction; petabyte-scale data cluster; replication based block placement; reverse lookup scheme; storage architecture; super data cluster; Computer architecture; Heuristic algorithms; Layout; Peer to peer computing; Redundancy; Servers;
Conference_Titel :
Parallel & Distributed Processing Symposium (IPDPS), 2011 IEEE International
Conference_Location :
Anchorage, AK
Print_ISBN :
978-1-61284-372-8
Electronic_ISBN :
1530-2075
DOI :
10.1109/IPDPS.2011.64