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Layered routing in irregular networks

机译:不规则网络中的分层路由

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摘要

Freedom from deadlock is a key issue in cut-through, wormhole, and store and forward networks, and such freedom is usually obtained through careful design of the routing algorithm. Most existing deadlock-free routing methods for irregular topologies do, however, impose severe limitations on the available routing paths. We present a method called layered routing, which gives rise to a series of routing algorithms, some of which perform considerably better than previous ones. Our method groups virtual channels into network layers and to each layer it assigns a limited set of source/destination address pairs. This separation of traffic yields a significant increase in routing efficiency. We show how the method can be used to improve the performance of irregular networks, both through load balancing and by guaranteeing shortest-path routing. The method is simple to implement, and its application does not require any features in the switches other than the existence of a modest number of virtual channels. The performance of the approach is evaluated through extensive experiments within three classes of technologies. These experiments reveal a need for virtual channels as well as an improvement in throughput for each technology class.
机译:摆脱死锁是直通,虫洞以及存储和转发网络中的关键问题,通常可以通过精心设计路由算法来获得这种自由。但是,大多数现有的用于不规则拓扑的无死锁路由方法的确对可用的路由路径施加了严格的限制。我们提出了一种称为分层路由的方法,该方法产生了一系列路由算法,其中一些算法的性能比以前的算法好得多。我们的方法将虚拟通道分为网络层,并为每一层分配一组有限的源/目标地址对。流量的这种分离大大提高了路由效率。我们将展示如何通过负载平衡和通过保证最短路径路由来提高不规则网络的性能。该方法易于实现,并且其应用除了存在少量虚拟通道外,不需要交换机中的任何功能。该方法的性能通过三类技术的广泛实验进行评估。这些实验表明,对于每种技术类别,都需要虚拟通道以及提高吞吐量。

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