首页> 外文会议>Proceedings of the 2011 ACM international conference on supercomputing. >Generic Topology Mapping Strategies for Large-scale Parallel Architectures
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Generic Topology Mapping Strategies for Large-scale Parallel Architectures

机译:大规模并行架构的通用拓扑映射策略

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The steadily increasing number of nodes in high-performance computing systems and the technology and power constraints lead to sparse network topologies. Efficient mapping of application communication patterns to the network topology gains importance as systems grow to petascale and beyond. Such mapping is supported in parallel programming frameworks such as MPI, but is often not well implemented. We show that the topology mapping problem is NP-complete and analyze and compare different practical topology mapping heuristics. We demonstrate an efficient and fast new-heuristic which is based on graph similarity and show its utility with application communication patterns on real topologies. Our mapping strategies support heterogeneous networks and show significant reduction of congestion on torus, fat-tree, and the PERCS network topologies, for irregular communication patterns. We also demonstrate that the benefit of topology mapping grows with the network size and show how our algorithms can be used in a practical setting to optimize communication performance. Our efficient topology mapping strategies are shown to reduce network congestion by up to 80%, reduce average dilation by up to 50%, and improve benchmarked communication performance by 18%.
机译:高性能计算系统中节点的数量稳定增长,并且技术和功率限制导致网络拓扑稀疏。随着系统增长到PB级甚至更高,将应用程序通信模式有效映射到网络拓扑变得越来越重要。这样的映射在诸如MPI的并行编程框架中受支持,但通常无法很好地实现。我们表明拓扑映射问题是NP完全的,并分析和比较了不同的实际拓扑映射启发式方法。我们演示了一种基于图相似性的高效快速的新启发式方法,并通过在实际拓扑上的应用程序通信模式展示了其实用性。我们的映射策略支持异构网络,对于不规则的通信模式,可以显着减少圆环,胖树和PERCS网络拓扑上的拥塞。我们还演示了拓扑映射的好处随着网络规模的增长而增长,并展示了如何在实际环境中使用我们的算法来优化通信性能。我们的高效拓扑映射策略已显示出最多可将网络拥塞减少80%,将平均膨胀减少50%,并将基准通信性能提高18%。

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