可扩展的软件基础设施项目

A. Nishida, Hisashi Kotakemori, Tamito Kajiyama, Akira Nukada
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引用次数: 6

摘要

近年来科学技术的进步使数值模拟成为各个领域研究的重要手段。虽然大规模计算资源上的可扩展和高性能数值库是处理各种多尺度现象不可或缺的工具,但很少有集成这些数值库的项目被报道。该项目的目标是开发大规模科学模拟所需的基本解决方案和算法库,这些解决方案和算法已在每个领域单独开发,并将其集成到可扩展的软件基础设施中。这些组件包括一个可扩展的迭代求解器库Lis,它具有许多可灵活组合的求解器、预处理器和矩阵存储格式;一个快速傅立叶变换库FFTSS,用于各种带有SIMD指令的标量体系结构,其性能优于一些供应商提供的FFT库;以及一个与语言和计算环境无关的矩阵计算框架SILC。我们展示了我们在领先的高性能计算机上取得的一些成就。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scalable software infrastructure project
Recent progress of science and technology has made numerical simulation an important approach for studies in various fields. Although scalable and high performance numerical libraries on large scale computing resources are indispensable tools for handling various multiscale phenomena, few projects for integrating these numerical libraries have been reported. The object of this project is the development of a basic library of solutions and algorithms required for large scale scientific simulations, which have been developed separately in each fields, and its integration into a scalable software infrastructure. The components include a scalable iterative solvers library Lis, having a number of solvers, preconditioners, and matrix storage formats that are flexibly combinable, a fast Fourier transform library FFTSS for various superscalar architectures with SIMD instructions, which outperforms some vendor-provided FFT libraries, and a language- and computing environment-independent matrix computation framework SILC. We show some highlights of our achievements on leading high performance computers.
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