DocumentCode :
3245210
Title :
A scalable plane-based broadcast algorithm for 3D-Mesh networks
Author :
Al-Dubai, A.Y. ; Ould-Khaoua, M. ; Mackenzie, L.
Author_Institution :
Dept. of Comput. Sci., Glasgow Univ., UK
fYear :
2003
fDate :
5-7 Feb. 2003
Firstpage :
149
Lastpage :
156
Abstract :
Broadcast algorithms for wormhole-switched meshes have been widely reported in the literature. However, most of these algorithms handle broadcast in a sequential manner and do not scale well with the network size. As a consequence, many parallel applications cannot be efficiently supported using existing algorithms. Motivated by these observations, this paper presents a new efficient broadcast algorithm for the mesh. The main feature of the proposed algorithm lies in its ability to perform broadcast operation with a high degree of scalability and parallelism. Furthermore, its performance is insensitive to the network size, i.e., only three message-passing steps are required to implement a broadcast operation irrespective of the network size. Results from a comparative analysis reveal that the new algorithm exhibits superior performance characteristics over those of the well-known Recursive Doubling, Extending Dominating Node.
Keywords :
distributed memory systems; message passing; multiprocessor interconnection networks; network routing; parallel algorithms; parallel programming; performance evaluation; 3D-mesh networks; distributed memory systems; message-passing steps; parallel applications; performance; scalable plane-based broadcast algorithm; wormhole-switched meshes; Broadcasting; Communication switching; Delay; Hardware; Network topology; Parallel processing; Performance analysis; Routing; Scalability; System recovery;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel, Distributed and Network-Based Processing, 2003. Proceedings. Eleventh Euromicro Conference on
Conference_Location :
Genova, Italy
ISSN :
1066-6192
Print_ISBN :
0-7695-1875-3
Type :
conf
DOI :
10.1109/EMPDP.2003.1183581
Filename :
1183581
Link To Document :
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