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SIMULATeQCD: A simple multi-GPU lattice code for QCD calculations

delete2024-07-01
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OA
AI
L
L. Mazur *
D
Dennis Bollweg
D
D. Clarke *
L
Luis Altenkort
O
Olaf Kaczmarek *
R
Rasmus Larsen
舒海涛 cover
舒海涛 (Hai-Tao Shu)
J
Jishnu Goswami
P
Philipp Scior
H
Hauke Sandmeyer
M
Marius Neumann
H
Henrik Dick
S
Sajid Ali
J
Jangho Kim
C
Christian Schmidt
P
Péter Petreczky
S
Swagato Mukherjee *
DOI:10.1016/j.cpc.2024.109164delete
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Abstract

Abstract

En 中文
The rise of exascale supercomputers has fueled competition among GPU vendors, driving lattice QCD developers to write code that supports multiple APIs. Moreover, new developments in algorithms and physics research require frequent updates to existing software. These challenges have to be balanced against constantly changing personnel. At the same time, there is a wide range of applications for HISQ fermions in QCD studies. This situation encourages the development of software featuring a HISQ action that is flexible, high -performing, open source, easy to use, and easy to adapt. In this technical paper, we explain the design strategy, provide implementation details, list available algorithms and modules, and show key performance indicators for SIMULATeQCD , a simple multi-GPU lattice code for large-scale QCD calculations, mainly developed and used by the HotQCD collaboration. The code is publicly available on GitHub.
Keywords:
Lattice QCD
CUDA
HIP
GPU
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Computer Physics Communications cover
Computer Physics Communications
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