OutFlank Routing: Increasing Throughput in Toroidal Interconnection Networks

F. Versaci
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引用次数: 8

Abstract

We present a new, deadlock-free, routing scheme for toroidal interconnection networks, called OutFlank Routing (OFR). OFR is an adaptive strategy which exploits non-minimal links, both in the source and in the destination nodes. When minimal links are congested, OFR deroutes packets to carefully chosen intermediate destinations, in order to obtain travel paths which are only an additive constant longer than the shortest ones. Since routing performance is very sensitive to changes in the traffic model or in the router parameters, an accurate discrete-event simulator of the toroidal network has been developed to empirically validate OFR, by comparing it against other relevant routing strategies, over a range of typical real-world traffic patterns. On the 16×16×16 (4096 nodes) simulated network OFR exhibits improvements of the maximum sustained throughput between 14% and 114%, with respect to Adaptive Bubble Routing.
外围路由:增加环形互连网络的吞吐量
我们提出了一种新的、无死锁的环形互连网络路由方案,称为外翼路由(OFR)。OFR是一种利用源节点和目的节点中的非最小链路的自适应策略。当最小链路拥塞时,OFR将数据包路由到精心选择的中间目的地,以获得仅比最短路径长一个附加常数的旅行路径。由于路由性能对流量模型或路由器参数的变化非常敏感,因此开发了一个精确的环面网络离散事件模拟器,通过将其与其他相关路由策略进行比较,在一系列典型的现实世界流量模式中对OFR进行经验验证。在16×16×16(4096个节点)模拟网络上,OFR表现出与自适应气泡路由相比,最大持续吞吐量提高了14%到114%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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