Title of article
Efficient tree codes on SIMD computer architectures Original Research Article
Author/Authors
Kevin M. Olson، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 1996
Pages
21
From page
267
To page
287
Abstract
This paper describes changes made to a previous implementation of an N-body tree code developed for a fine-grained, SIMD computer architecture. These changes include (1) switching from a balanced binary tree to a balanced oct tree, (2) addition of quadrupole corrections, and (3) having the particles search the tree in groups rather than individually. An algorithm for limiting errors is also discussed. In aggregate, these changes have led to a performance increase of over a factor of 10 compared to the previous code. For problems several times larger than the processor array, the code now achieves performance levels of ∼ 1 Gflop on the Maspar MP-2 or roughly 20% of the quoted peak performance of this machine. This percentage is competitive with other parallel implementations of tree codes on MIMD architectures. This is significant, considering the low relative cost of SIMD architectures.
Keywords
Software including parallel algorithms , Astronomy and astrophysics , Hardware and software , Computer languages , Stars and stellar systems
Journal title
Computer Physics Communications
Serial Year
1996
Journal title
Computer Physics Communications
Record number
1134225
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