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Multithreaded global address space communication techniques for Gyrokinetic fusion applications on ultra-scale platforms

机译:多线程全局地址空间通信技术,用于超尺度平台上的热能融合应用

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We present novel parallel language constructs for the communication intensive part of a magnetic fusion simulation code. The focus of this work is the shift phase of charged particles of a tokamak simulation code in toroidal geometry. We introduce new hybrid PGAS/OpenMP implementations of highly optimized hybrid MPI/OpenMP based communication kernels. The hybrid PGAS implementations use an extension of standard hybrid programming techniques, enabling the distribution of high communication work loads of the underlying kernel among OpenMP threads. Building upon lightweight one-sided CAF (Fortran 2008) communication techniques, we also show the benefits of spreading out the communication over a longer period of time, resulting in a reduction of bandwidth requirements and a more sustained communication and computation overlap. Experiments on up to 130560 processors are conducted on the NERSC Hopper system, which is currently the largest HPC platform with hardware support for one-sided communication and show performance improvements of 52% at highest concurrency.
机译:我们提出了用于磁融合仿真代码的通信密集型部分的新颖的并行语言构造。这项工作的焦点是环形几何形状的Tokamak模拟代码的带电粒子的移位阶段。我们介绍了高度优化的混合MPI / OpenMP通信核的新型混合PGAS / OpenMP实现。混合PGA实现使用标准混合编程技术的扩展,从而能够在OpenMP线程中分布底层内核的高通信工作负载。在轻量级单面CAF(Fortran 2008)通信技术上,我们还显示了在更长的时间内传播通信的好处,导致带宽要求的减少和更持续的通信和计算重叠。最多可在NERSC料斗系统上进行高达130560个处理器的实验,该系统是目前最大的HPC平台,具有硬件支持,用于片面通信,并显示最高并发的性能提高52%。

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