DocumentCode
1832897
Title
ZOMA: a preemptive deadlock recovery mechanism for fully adaptive routing in wormhole networks
Author
Ai-Awwami, Z.H. ; Obaidat, M.S. ; Al-Mulhem, M.
Author_Institution
Dept. of Comput. Sci., Monmouth Univ., NJ, USA
fYear
2001
fDate
2001
Firstpage
519
Lastpage
525
Abstract
Deadlock is the most formidable obstacle that adaptive routing algorithms in wormhole switched interconnection networks must address and overcome. The class of True Fully Adaptive Routing algorithms represents an efficient routing technique with favorable performance and operational characteristics. These algorithms route packets without imposing any routing restrictions. This paper proposes a true fully adaptive routing algorithm with a new deadlock-recovery mechanism. Our proposed deadlock-recovery mechanism, ZOMA, is efficient and takes advantage of the concept of wormhole switching in terms of low hardware resource requirements. The performance of the new mechanism can match that of other more expensive deadlock-recovery mechanisms, while requiring lower hardware resources that are not on the critical path of the switching process. The proposed mechanism creates a new category of deadlock recovery techniques that we refer to as preemptive as opposed to the existing progressive and regressive categories. Performance evaluation of the proposed mechanism against other routing algorithms is accomplished via simulation
Keywords
concurrency control; multiprocessor interconnection networks; network routing; system recovery; ZOMA; adaptive routing; deadlock-recovery; performance evaluation; wormhole switched interconnection networks; wormhole switching; Adaptive algorithm; Communication switching; Computer science; Delay; Electronic mail; Hardware; Intelligent networks; Multiprocessor interconnection networks; Routing; System recovery;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Networks and Mobile Computing, 2001. Proceedings. 2001 International Conference on
Conference_Location
Los Alamitos, CA
Print_ISBN
0-7695-1381-6
Type
conf
DOI
10.1109/ICCNMC.2001.962641
Filename
962641
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