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Parallel iterative solvers for finite-element methods using an OpenMP/MPI hybrid programming model on the Earth Simulator

机译:在地球模拟器上使用OpenMP / MPI混合编程模型进行有限元方法的并行迭代求解器

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An efficient parallel iterative method for finite-element method has been developed for symmetric multiprocessor (SMP) cluster architectures with vector processors such as the Earth Simulator. The method is based on a three-level hybrid parallel programming model, including message passing for inter-SMP node communication, loop directives by OpenMP for intra-SMP node parallelization and vectorization for each processing element (PE). Simple 3D linear elastic problems with more than 2.2 x 10~9 DOF have been solved using 3x3 block ICCG(0) method with additive Schwarz domain decomposition and PDJDS/CM-RCM reordering on 176 nodes of the Earth Simulator, achieving performance of 3.80 TFLOPS. Furthermore, effect of color number in reordering has been evaluated on various types of computers.
机译:针对具有矢量处理器(例如Earth Simulator)的对称多处理器(SMP)集群体系结构,开发了一种有效的有限元并行迭代方法。该方法基于三级混合并行编程模型,包括用于SMP节点间通信的消息传递,OpenMP的SMP内节点并行化的循环指令以及每个处理元素(PE)的矢量化。使用3x3块ICCG(0)方法,在地球模拟器的176个节点上进行加性Schwarz域分解和PDJDS / CM-RCM重新排序,已解决了具有超过2.2 x 10〜9 DOF的简单3D线性弹性问题,从而实现了3.80 TFLOPS的性能。此外,已经在各种类型的计算机上评估了色号在重新排序中的作用。

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