Title :
EVENODD: an optimal scheme for tolerating double disk failures in RAID architectures
Author :
Blaum, Mario ; Brady, Jim ; Bruck, Jehoshua ; Menon, Jai
Author_Institution :
IBM Almaden Res. Center, San Jose, CA, USA
Abstract :
Presents a novel method, called EVENODD, for tolerating up to two disk failures in RAID architectures. EVENODD is the first known scheme for tolerating double disk failures that is optimal with regard to both storage and performance. EVENODD employs the addition of only two redundant disks and consists of simple exclusive-OR computations. A major advantage of EVENODD is that it only requires parity hardware, which is typically present in standard RAID-5 controllers. Hence, EVENODD can be implemented on standard RAID-5 controllers without any hardware changes. The only previously known scheme that employs optimal redundant storage (i.e. two extra disks) is based on Reed-Solomon (RS) error-correcting codes, requires computation over finite fields and results in a more complex implementation. For example, the authors show that the number of exclusive-OR operations involved in implementing EVENODD in a disk array with 15 disks is about 50% of the number required when using the RS scheme
Keywords :
fault tolerant computing; magnetic disc storage; redundancy; EVENODD; RAID architectures; double disk failures; optimal redundant storage; parity hardware; performance; redundant disks; storage; Acceleration; Computer architecture; Error correction codes; Galois fields; Hardware; Maintenance; Military computing; Protection; Reed-Solomon codes; Writing;
Conference_Titel :
Computer Architecture, 1994., Proceedings the 21st Annual International Symposium on
Conference_Location :
Chicago, IL
Print_ISBN :
0-8186-5510-0
DOI :
10.1109/ISCA.1994.288145