DocumentCode :
3077546
Title :
General Functional Regenerating Codes with Uncoded Repair for Distributed Storage System
Author :
Qing Liu ; Dan Feng ; Zhan Shi ; Min Fu
Author_Institution :
Wuhan Nat. Lab. for Optoelectron., HUST, China
fYear :
2015
fDate :
4-7 May 2015
Firstpage :
372
Lastpage :
381
Abstract :
Erasure codes are widely used in modern distributed storage systems to prevent data loss and server failures. Regenerating codes are a class of erasure codes that trades storage efficiency and computation for repair bandwidth reduction. However, their non-unified coding parameters and huge computation overhead prohibit their applications. Hence, we first propose a family of Functional Regenerating Codes (FRCs) with uncoded repair, balancing storage efficiency and repair bandwidth with general parameters. FRCs take advantage of a heuristic repair algorithm, which makes efforts to employ as little repair bandwidth as possible. Second, we optimize encoding by constructing the generator matrix with a bitmatrix, so encoding of FRCs can be executed by fast bitwise XORs. Further, we also optimize repairing with the Scheduled Shift Multiplication (SSM) algorithm, which accelerates the matrix product over the Galois field during repair. Compared to the traditional table-lookup multiplication algorithm, our SSM algorithm gains 1.2~2X speed-up.
Keywords :
Galois fields; error correction codes; matrix multiplication; storage management; FRCs; Galois field; SSM algorithm; balancing storage efficiency; bitmatrix; data loss; distributed storage system; erasure codes; fast bitwise XORs; general functional regenerating codes; generator matrix; heuristic repair algorithm; matrix product; nonunified coding parameters; repair bandwidth reduction; scheduled shift multiplication algorithm; server failures; table-lookup multiplication algorithm; uncoded repair; Bandwidth; Distributed databases; Encoding; Generators; Intellectual property; Maintenance engineering; Robustness; Performance and evaluation; Regenerating codes; Repair bandwidth; Storage system; Uncoded repair;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Cluster, Cloud and Grid Computing (CCGrid), 2015 15th IEEE/ACM International Symposium on
Conference_Location :
Shenzhen
Type :
conf
DOI :
10.1109/CCGrid.2015.38
Filename :
7152503
Link To Document :
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