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Performance Modeling of Algebraic Multigrid on Blue Gene/Q: Lessons Learned

机译:蓝色基因代数Multigrid的性能建模/问:学习的经验教训

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The IBM Blue Gene/Q represents a large step in the evolution of massively parallel machines. It features 16-core compute nodes, with additional parallelism in the form of four simultaneous hardware threads per core, connected together by a five-dimensional torus network. Machines are being built with core counts in the hundreds of thousands, with the largest, Sequoia, featuring over 1.5 million cores. In this paper, we develop a performance model for the solve cycle of algebraic multigrid on Blue Gene/Q to help us understand the issues this popular linear solver for large, sparse linear systems faces on this architecture. We validate the model on a Blue Gene/Q at IBM, and conclude with a discussion of the implications of our results.
机译:IBM Blue Gene / Q表示大型平行机的演变的大步骤。它具有16个核心计算节点,具有额外的并行性,以四个同时硬件线/核的形式,由五维Torus网络连接在一起。机器正在建造有数十万核心的核心计数,具有最大的红杉,具有超过150万核心的核心。在本文中,我们为蓝色基因/ Q上的代数MultiGrid求解循环开发了一个性能模型,以帮助我们了解这款流行的线性求解器的问题,对于此架构上的大型稀疏线性系统面临的群体。我们在IBM的蓝色基因/ Q上验证模型,并讨论了我们结果的含义。

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