Experiments with Memory-to-Memory Coupling for End-to-End Fusion Simulation Workflows

C. Docan, Fan Zhang, M. Parashar, J. Cummings, N. Podhorszki, S. Klasky
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引用次数: 13

Abstract

Scientific applications are striving to accurately simulate multiple interacting physical processes that comprise complex phenomena being modeled. Efficient and scalable parallel implementations of these coupled simulations present challenging interaction and coordination requirements, especially when the coupled physical processes are computationally heterogeneous and progress at different speeds. In this paper, we present the design, implementation and evaluation of a memory-to-memory coupling framework for coupled scientific simulations on high-performance parallel computing platforms. The framework is driven by the coupling requirements of the Center for Plasma Edge Simulation, and it provides simple coupling abstractions as well as efficient asynchronous (RDMA-based) memory-to-memory data transport mechanisms that complement existing parallel programming systems and data sharing frameworks. The framework enables flexible coupling behaviors that are asynchronous in time and space, and it supports dynamic coupling between heterogeneous simulation processes without enforcing any synchronization constraints. We evaluate the performance and scalability of the coupling framework using a specific coupling scenario, on the Jaguar Cray XT5 system at Oak Ridge National Laboratory.
面向端到端融合仿真工作流的内存-内存耦合实验
科学应用正在努力精确地模拟包含正在建模的复杂现象的多种相互作用的物理过程。这些耦合模拟的高效和可伸缩的并行实现提出了具有挑战性的交互和协调要求,特别是当耦合物理过程在计算上是异构的并且以不同的速度进行时。在本文中,我们提出了一个内存到内存耦合框架的设计、实现和评估,用于高性能并行计算平台上的耦合科学仿真。该框架是由等离子体边缘仿真中心的耦合需求驱动的,它提供了简单的耦合抽象以及高效的异步(基于rdma的)内存到内存数据传输机制,以补充现有的并行编程系统和数据共享框架。该框架支持在时间和空间上异步的灵活耦合行为,并且支持异构模拟过程之间的动态耦合,而不强制任何同步约束。在橡树岭国家实验室的Jaguar Cray XT5系统上,我们使用一个特定的耦合场景来评估耦合框架的性能和可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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