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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Uncontracted Rys Quadrature Implementation of up to G Functions on Graphical Processing Units
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Uncontracted Rys Quadrature Implementation of up to G Functions on Graphical Processing Units

机译:图形处理单元上多达G函数的未约定Rys正交实现

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摘要

An implementation is presented of an uncontracted Rys quadrature algorithm for electron repulsion integrals, including up to g functions on graphical processing units (GPUs). The general GPU programming model, the challenges associated with implementing the Rys quadrature on these highly parallel emerging architectures, and a new approach to implementing the quadrature are outlined. The performance of the implementation is evaluated for single and double precision on two different types of GPU devices. The performance obtained is on par with the matrix-vector routine from the CUDA basic linear algebra subroutines (CUBLAS) library.
机译:提出了一种用于电子排斥积分的非契约Rys正交算法的实现,该算法包括图形处理单元(GPU)上的多达g个函数。概述了通用的GPU编程模型,在这些高度并行的新兴体系结构上实现Rys正交所面临的挑战以及实现该正交的新方法。在两种不同类型的GPU设备上对实现的性能进行了单精度和双精度评估。获得的性能与CUDA基本线性代数子例程(CUBLAS)库中的矩阵矢量例程相当。

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