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Distributed And Dynamic Self-scheduling Of Parallel Mpi Grid Applications

机译:并行Mpi网格应用程序的分布式和动态自调度

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The execution of distributed applications on the Grid is already a reality. However, as both the number of applications grow and Grids increase in scale, the efficient utilization of the available but shared heterogeneous resources will become increasingly essential to the Grid's successful maturity. Furthermore, it is unclear whether existing Grid management systems are capable of meeting this challenge. The Easy Grid middleware is a hierarchically distributed application management system (AMS) that is embedded into MPI applications to autonomously orchestrate their execution efficiently in computational Grids. The overhead of employing a distinct AMS to make each application system aware brings at least two benefits. First, the adopted policies can be tailored to the specific needs of each application, leading to improved performance. Second, distributing the management effort among executing applications makes Grid management more scalable. This article focuses on scheduling policies of an AMS for a particular class of application, describing a low intrusion implementation of a hybrid scheduling strategy designed to elicit good performance even in dynamic environments such as Grids. Using application-specific scheduling policies, near-optimal runtimes highlight the advantages of self-scheduling when executing one or more system aware applications on a Grid.
机译:在网格上执行分布式应用程序已经是现实。但是,随着应用程序数量的增加和Grids规模的增加,对可用但共享的异构资源的有效利用对于Grid成功的成熟将变得越来越重要。此外,尚不清楚现有的网格管理系统是否能够应对这一挑战。 Easy Grid中间件是一种层次结构的分布式应用程序管理系统(AMS),该系统嵌入到MPI应用程序中,可以在计算网格中自动有效地协调其执行。采用不同的AMS来使每个应用程序系统感知的开销至少带来了两个好处。首先,可以针对每个应用程序的特定需求量身定制所采用的策略,从而提高性能。其次,在执行的应用程序之间分配管理工作量使网格管理更具可伸缩性。本文着重于针对特定应用程序类的AMS调度策略,描述了混合调度策略的低入侵实现,该策略旨在即使在诸如Grids的动态环境中也能带来良好的性能。使用特定于应用程序的调度策略,当在Grid上执行一个或多个系统感知的应用程序时,近乎最优的运行时突出显示了自调度的优势。

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