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Distributed SaturationThe Saturation algorithm for symbolic state-space generation, has been a recent break-through in the exhaustive veri cation of complex systems, in particular globally-asyn- chronous/locally-synchronous systems. The algorithm uses a very compact Multiway Decision Diagram (MDD) encoding for states and the fastest symbolic exploration algo- rithm to date. The distributed version of Saturation uses the overall memory available on a network of workstations (NOW) to efficiently spread the memory load during the highly irregular exploration. A crucial factor in limiting the memory consumption during the symbolic state-space generation is the ability to perform garbage collection to free up the memory occupied by dead nodes. However, garbage collection over a NOW requires a nontrivial communication overhead. In addition, operation cache policies become critical while analyzing large-scale systems using the symbolic approach. In this technical report, we develop a garbage collection scheme and several operation cache policies to help on solving extremely complex systems. Experiments show that our schemes improve the performance of the original distributed implementation, SmArTNow, in terms of time and memory efficiency.
Document ID
20070017995
Acquisition Source
Langley Research Center
Document Type
Contractor Report (CR)
Authors
Chung, Ming-Ying
(California Univ. Riverside, CA, United States)
Ciardo, Gianfranco
(California Univ. Riverside, CA, United States)
Siminiceanu, Radu I.
(National Inst. of Aerospace Hampton, VA, United States)
Date Acquired
August 23, 2013
Publication Date
April 1, 2007
Subject Category
Computer Systems
Report/Patent Number
NIA Report No. 2007-05
NASA/CR-2007-214862
Report Number: NIA Report No. 2007-05
Report Number: NASA/CR-2007-214862
Funding Number(s)
CONTRACT_GRANT: NCC1-02043
WBS: WBS 706801.04.13.01.02
Distribution Limits
Public
Copyright
Public Use Permitted.
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