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A Study Of Process Arrival Patterns For Mpi Collective Operations

机译:Mpi集体操作的过程到达模式研究

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Process arrival pattern, which denotes the timing when different processes arrive at an MPI collective operation, can have a significant impact on the performance of the operation. In this work, we characterize the process arrival patterns in a set of MPI programs on two common cluster platforms, use a micro-benchmark to study the process arrival patterns in MPI programs with balanced loads, and investigate the impacts of different process arrival patterns on collective algorithms. Our results show that (1) the differences between the times when different processes arrive at a collective operation are usually sufficiently large to affect the performance; (2) application developers in general cannot effectively control the process arrival patterns in their MPI programs in the cluster environment: balancing loads at the application level does not balance the process arrival patterns; and (3) the performance of collective communication algorithms is sensitive to process arrival patterns. These results indicate that process arrival pattern is an important factor that must be taken into consideration in developing and optimizing MPI collective routines. We propose a scheme that achieves high performance with different process arrival patterns, and demonstrate that by explicitly considering process arrival pattern, more efficient MPI collective routines than the current ones can be obtained.
机译:流程到达模式(表示不同流程到达MPI集合操作的时间)可能会对操作的性能产生重大影响。在这项工作中,我们在两个通用集群平台上的一组MPI程序中表征过程到达模式,使用微基准研究负载均衡的MPI程序中的过程到达模式,并研究不同过程到达模式对集体算法。我们的结果表明:(1)不同流程到达集体操作的时间之间的差异通常足够大,以至于影响性能; (2)应用程序开发人员通常无法在集群环境中的MPI程序中有效地控制流程到达模式:在应用程序级别上平衡负载不会平衡流程到达模式; (3)集体通信算法的性能对过程到达模式很敏感。这些结果表明,流程到达模式是开发和优化MPI集合例程时必须考虑的重要因素。我们提出了一种在不同的流程到达模式下都能实现高性能的方案,并证明了通过明确考虑流程到达模式,可以获得比当前流程更有效的MPI集合例程。

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