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Efficient and Scalable Routing Algorithms for Collective Communication Operations on 2D All-Port Torus Networks

机译:用于2D全端口Torus网络上的集体通信操作的高效且可扩展的路由算法

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Collective Communication Algorithms for 2D torus networks have been investigated quite extensively in the literature and two broad approaches, namely direct methods and indirect (message combining) methods are recognized in the field. While direct methods minimize the volume of data, the indirect methods reduce the number of message start-ups. Consequently, either a suite of algorithms must be employed for efficiency over a wide range of message lengths and communication operations or algorithms should be able to adapt themselves to the current case, possibly by switching between direct and indirect routing modes as appropriate. In this paper, we propose adaptive routing algorithms for all-port, wormhole routed, synchronous, 2D torus networks optimized for one-to-all broadcast, gossiping and complete exchange collective communication operations. The proposed algorithms employ completely-connected subnetworks where complete exchange amongst the nodes in the subnetwork can be accomplished in one step only. Combined with suitable 2D plane tiling techniques, the proposed algorithms share the same set of primitive operations and yield superior performance compared to previously proposed methods, either pure or hybridized.
机译:在文献中已经对二维环面网络的集体通信算法进行了广泛的研究,并且在本领域中公认了两种广泛的方法,即直接方法和间接(消息组合)方法。虽然直接方法最大程度地减少了数据量,但间接方法却减少了消息启动的次数。因此,必须采用一套算法来提高在各种消息长度上的效率,并且通信操作或算法应该能够使自己适应当前情况,可能通过在适当的直接和间接路由模式之间进行切换来实现。在本文中,我们针对全端口,虫洞路由,同步,二维环面网络提出了自适应路由算法,这些网络针对一对一广播,八卦和完整的交换集体通信操作进行了优化。所提出的算法使用完全连接的子网,其中子网中节点之间的完全交换仅一步即可完成。与适当的2D平面切片技术相结合,与以前提出的纯或混合方法相比,提出的算法共享相同的原始操作集,并具有更高的性能。

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