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Semi-Static and Dynamic Load Balancing for Asynchronous Hurricane Storm Surge Simulations

机译:异步飓风风暴潮仿真的半静态和动态负载平衡

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The performance of hurricane storm surge simulations is critical to forecast and mitigate the deadly effects of hurricane landfall. Supercomputers play a key role to run these simulations quickly; however, disruptive changes in future computer architectures will require adapting simulators to maintain high performance, such as increasing asynchrony and improving load balance. We introduce two new multi-constraint, fully asynchronous load balancers and a new discrete-event simulator (DGSim) that is able to natively model the execution of task-based hurricane simulations based on efficient one-sided, active message-based communication protocols. We calibrate and validate DGSim, use it to compare the algorithms' load balancing capabilities and task migration costs under many parameterizations, saving of over 5,000x core-hours compared to running the application code directly. Our load balancing algorithms achieve a performance improvement of up to 56 percent over the original static balancer and up to 97 percent of the optimal speed-up.
机译:飓风风暴潮模拟的性能对于预测和减轻飓风登陆的致命影响至关重要。超级计算机在快速运行这些仿真中起着关键作用。但是,未来计算机体系结构的颠覆性变化将要求调整模拟器以保持高性能,例如增加异步性并改善负载平衡。我们引入了两个新的多约束,完全异步负载平衡器和一个新的离散事件模拟器(DGSim),它们能够基于有效的单面,基于活动消息的通信协议对基于任务的飓风模拟的执行进行本地建模。我们校准并验证了DGSim,使用它来比较算法在许多参数设置下的负载平衡能力和任务迁移成本,与直接运行应用程序代码相比,节省了5,000倍的核心小时。我们的负载平衡算法与原始静态平衡器相比,性能提高了56%,最佳加速比提高了97%。

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