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ACOR: Adaptive congestion-oblivious routing in dragonfly networks

机译:ACOR:蜻蜓网络中的自适应拥塞忽略路由

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Low-diameter network topologies require non-minimal routing to avoid network congestion, such as Valiant routing. This increases base latency but avoids congestion issues. Optimized restricted variants focus on reducing path length. However, these optimizations only reduce paths for local traffic, where source and destination of each packet belong to the same partition of the network. This paper introduces ACOR: Adaptive Congestion-Oblivious Routing. ACOR leverages the restricted and recomputation mechanisms to reduce path length for local and global traffic, and extends it when the network conditions are adverse. ACOR relies on a sequence of misrouting policies ordered by path length. A hysteresis mechanism improves performance and avoids variability in the results. The ACOR mechanism can be combined with other non-minimal routing mechanism such as Piggyback. Results show that ACOR improves base latency in all cases, up to 28% standalone and up to 25.5% when combined with Piggyback, while requiring a simple implementation. (C) 2019 Elsevier Inc. All rights reserved.
机译:低直径网络拓扑要求非最小路由,以避免网络拥塞,例如有效路由。这增加了基本延迟,但避免了拥塞问题。优化的受限变体专注于缩短路径长度。但是,这些优化仅减少了本地流量的路径,其中每个数据包的源和目的地都属于网络的同一分区。本文介绍了ACOR:自适应拥塞-不易路由。 ACOR利用受限和重新计算机制来减少本地和全局流量的路径长度,并在网络条件不利时进行扩展。 ACOR依赖于按路径长度排序的一系列错误路由策略。磁滞机制可提高性能并避免结果变化。 ACOR机制可以与其他非最小路由机制(例如Piggyback)结合使用。结果表明,ACOR在所有情况下均可改善基本延迟,独立时最多可提高28%,与Piggyback结合时最多可提高25.5%,同时需要简单的实现。 (C)2019 Elsevier Inc.保留所有权利。

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