DocumentCode
2056385
Title
Study of a multilevel approach to partitioning for parallel logic simulation
Author
Subramanian, Swaminathan ; Rao, Dhananjai M. ; Wilsey, Philip A.
Author_Institution
Exp. Comput. Lab., Cincinnati, OH, USA
fYear
2000
fDate
2000
Firstpage
833
Lastpage
838
Abstract
Parallel simulation techniques are often employed to meet the computational requirements of large hardware simulations in order to reduce simulation time. In addition, partitioning for parallel simulations has been shown to be vital for achieving higher simulation throughput. This paper presents the results of our partitioning studies conducted on an optimistic-parallel logic simulation framework based on the time warp synchronization protocol. The paper also presents the design and implementation of a new partitioning algorithm based on a multilevel heuristic, developed as a part of this study. The multilevel algorithm attempts to balance load, maximize concurrency, and reduce inter-processor communication in three phases to improve performance. The experimental results obtained from our benchmarks indicate that the multilevel algorithm yields better partitions than other partitioning algorithms included in the study
Keywords
logic simulation; parallel algorithms; protocols; synchronisation; time warp simulation; computational requirements; inter-processor communication; large hardware simulations; multilevel approach; multilevel heuristic; optimistic-parallel logic simulation framework; parallel logic simulation; partitioning; performance improvement; time warp synchronization protocol; Algorithm design and analysis; Circuit simulation; Computational modeling; Concurrent computing; Digital circuits; Laboratories; Logic; Partitioning algorithms; Throughput; Time warp simulation;
fLanguage
English
Publisher
ieee
Conference_Titel
Parallel and Distributed Processing Symposium, 2000. IPDPS 2000. Proceedings. 14th International
Conference_Location
Cancun
Print_ISBN
0-7695-0574-0
Type
conf
DOI
10.1109/IPDPS.2000.846071
Filename
846071
Link To Document