Vectorization of a classical trajectory code on a floating point systems, Inc. Model 164 attached processor.

J Comput Chem

Theoretical Chemistry Group, Chemistry Division, Argonne National Laboratory, Argonne, Illinois 60439.

Published: April 1986

A triatomic classical trajectory code has been modified by extensive vectorization of the algorithms to achieve much improved performance on an FPS 164 attached processor. Extensive timings on both the FPS 164 and a VAX 11/780 with floating point accelerator are presented as a function of the number of trajectories simultaneously run. The timing tests involve a potential energy surface of the LEPS variety and trajectories with 1000 time steps. The results indicate that vectorization results in timing improvements on both the VAX and the FPS. For larger numbers of trajectories run simultaneously, up to a factor of 25 improvement in speed occurs between VAX and FPS vectorized code.

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http://dx.doi.org/10.1002/jcc.540070215DOI Listing

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