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Implicit Unstructured Aerodynamics on Emerging Multi- and Many-Core HPC Architectures

机译:新兴的多核和多核HPC架构上的隐式非结构化空气动力学

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摘要

Shared memory parallelization of PETSc-FUN3D, an unstructured tetrahedral mesh Euler code previously characterized for distributed memory Single Program, Multiple Data (SPMD) for thousands of nodes, is hybridized with shared memory Single Instruction, Multiple Data (SIMD) for hundreds of threads per node. We explore thread-level performance optimizations on state-of-the-art multi- and many-core Intel processors, including the second generation of Xeon Phi, Knights Landing (KNL). We study the performance on the KNL with different configurations of memory and cluster modes, with code optimizations to minimize indirect addressing and enhance the cache locality. The optimizations employed are expected to be of value other unstructured applications as many-core architecture evolves.
机译:PETSc-FUN3D的共享内存并行化是一种非结构化的四面体网格Euler代码,以前将其特征化为用于数千个节点的分布式内存单程序多数据(SPMD),并与共享内存的单指令多数据(SIMD)混合,每个单线程多数据(SIMD)节点。我们探讨了最新的多核和多核Intel处理器(包括第二代Xeon Phi Knights Landing(KNL))上的线程级性能优化。我们使用不同的内存和群集模式配置研究KNL的性能,并通过代码优化来最大程度地减少间接寻址并增强缓存局部性。随着多核体系结构的发展,预计所采用的优化将对其他非结构化应用有价值。

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