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SOME USEFUL STRATEGIES FOR UNSTRUCTURED EDGE-BASED SOLVERS ON SHARED MEMORY MACHINES

机译:共享内存机器上非结构化边缘求解的一些有用策略

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Three strategies for shared memory parallel edge-based solvers are proposed which guarantee that nodes belonging to one thread are not accessed by other threads for vertex centered discretizations (Replace nodes by cells in case of cell centered discretizations). The algorithms reorder the edges in groups in order for the parallelization to take place at the edge level, possibly through multiple passes, which constitutes the bulk of the work in an edge-based solver. These strategies are presented in increasing order of programming effort and their performances are also compared. Various renumbering algorithms are considered. Results and timings are given for a classical Computational Fluid Dynamics compressible edge-based solver and a Numerical Weather Prediction compressible dynamic solver for dry air, as well as computational details to illustrate the efficiency of the proposed approach. The influence of the point renumbering on the final edge grouping and efficiency is also studied through numerical results.
机译:针对共享存储器基于边缘的并行求解器,提出了三种策略,以保证属于一个线程的节点不会被其他线程访问以顶点为中心的离散化(在以单元为中心的离散化情况下,请按单元替换节点)。该算法将边缘按组重新排序,以便在边缘级别进行并行化(可能通过多次遍历),这构成了基于边缘的求解器中的大部分工作。这些策略以编程工作的递增顺序给出,并且还比较了它们的性能。考虑了各种重编号算法。给出了用于干燥空气的经典计算流体动力学可压缩基于边缘的求解器和数值天气预报可压缩动态求解器的结果和时序,并给出了计算细节以说明所提出方法的效率。还通过数值结果研究了点重编号对最终边缘分组和效率的影响。

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