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Scientific Workflows at DataWarp-Speed: Accelerated Data-Intensive Science Using NERSC's Burst Buffer

机译:DataWarp-Speed的科学工作流程:使用NERSC的突发缓冲区加速数据密集型科学

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Emerging exascale systems have the ability to accelerate the time-to-discovery for scientific workflows. However, as these workflows become more complex, their generated data has grown at an unprecedented rate, making I/O constraints challenging. To address this problem advanced memory hierarchies, such as burst buffers, have been proposed as intermediate layers between the compute nodes and the parallel file system. In this paper, we utilize Cray DataWarp burst buffer coupled with in-transit processing mechanisms, to demonstrate the advantages of advanced memory hierarchies in preserving traditional coupled scientific workflows. We consider in-transit workflow which couples simulation of subsurface flows with on-the-fly flow visualization. With respect to the proposed workflow, we study the performance of the Cray DataWarp Burst Buffer and provide a comparison with the Lustre parallel file system.
机译:新兴ExaScale Systems有能力加速科学工作流程的发现时间。 但是,由于这些工作流变得更加复杂,因此他们所生成的数据以前所未有的速率增长,使得I / O约束具有挑战性。 为了解决此问题,已提出高级存储器层次结构,例如突发缓冲区,作为计算节点和并行文件系统之间的中间层。 在本文中,我们利用CRAY DataWarp突发缓冲器与传输过程机制耦合,以展示先进的记忆层次在保持传统耦合的科学工作流程中的优势。 我们考虑在运输工作流程中,耦合仿真地下流量,随着飞行的流量可视化。 关于所提出的工作流程,我们研究CRAR DataWarp突发缓冲区的性能,并与Lustr Prisport文件系统进行比较。

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