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Adaptive Computation over Dynamic and Heterogeneous Networks

机译:动态异构网络上的自适应计算

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摘要

Over the last two decades, efficient message passing libraries have been developed for parallel scientific computation. Concurrently, programming languages have been created supporting dynamically reconfigurable distributed systems over the heterogeneous Internet. In this paper, we introduce SALS A-MPI, an actor programming language approach to scientific computing that extends MPI with a checkpointing and migration API and a runtime system that manages both periodic checkpoints and process or application migration. The goal is to enable dynamic network reconfiguration and load balancing without sacrificing application performance or requiring extensive code modifications. As driving technology for this effort of unifying parallel and distributed computing, we plan to use adaptive solvers of partial differential equations. Fields as diverse as fluid dynamics, material science, biomechanics, and ecology make use of parallel adaptive computation, but target architectures have traditionally been supercomputers and tightly-coupled clusters. SALSA-MPI is intended to allow these computations to make efficient use of more distributed and dynamic computing resources.
机译:在过去的二十年中,已经开发了用于并行科学计算的有效消息传递库。同时,已经创建了编程语言,以支持通过异构Internet进行动态可重新配置的分布式系统。在本文中,我们介绍了SALS A-MPI,这是一种用于科学计算的actor编程语言方法,它使用检查点和迁移API扩展了MPI,并管理了定期检查点以及流程或应用程序迁移的运行时系统。目的是在不牺牲应用程序性能或不需要大量代码修改的情况下,实现动态网络重新配置和负载平衡。作为统一并行计算和分布式计算的驱动技术,我们计划使用偏微分方程的自适应求解器。流体动力学,材料科学,生物力学和生态学等众多领域都使用并行自适应计算,但是传统上,目标体系结构是超级计算机和紧密耦合的集群。 SALSA-MPI旨在允许这些计算有效利用更多分布式和动态计算资源。

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