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Valved routing: efficient flow control for adaptive nonminimal routing in interconnection networks

机译:阀式路由:互连网络中自适应非最小路由的有效流量控制

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Adaptive nonminimal routing (or misrouting) may move messages away from their destinations to temporarily cope with the dynamic load in an interconnection network. In most cases, misrouting is more powerful and flexible than minimal routing, especially under nonuniform load distribution. However, to take advantage of its misrouting, we have to avoid deadlock, livelock, and starvation in the network and to maintain the network performance across all levels of loading. In this paper, we propose a new flow control scheme for misrouting, called valved routing. Valved routing controls message injection and transmission through logical valves associated with the router ports. Designing routers using valved routing requires a proper choice of design parameters. We will discuss how to find the range of feasible design parameters. Issues in implementing routers using valved routing will also be addressed. We have conducted extensive simulations to compare the performance of routers with and without valved routing. Our simulation results show that valved routing has promising performance advantages, at light as well as heavy network load. Compared with the voluntary misrouting, valved routing performs better in network throughput without sacrificing the latency.
机译:自适应非最小路由(或错误路由)可能会将消息从其目的地移开,以临时应对互连网络中的动态负载。在大多数情况下,特别是在负载分配不均匀的情况下,错误路由比最小路由更强大,更灵活。但是,要利用它的错误路由,我们必须避免网络中的死锁,活锁和饥饿,并在所有负载级别上都保持网络性能。在本文中,我们提出了一种用于错误路由的新的流量控制方案,称为带阀路由。阀式路由控制消息的注入和通过与路由器端口关联的逻辑阀的传输。使用带阀路由设计路由器需要正确选择设计参数。我们将讨论如何找到可行的设计参数范围。也将解决使用带阀路由实现路由器的问题。我们进行了广泛的仿真,以比较带有和不带有阀式路由的路由器的性能。我们的仿真结果表明,无论是在轻负载还是重网络负载下,带阀路由都具有前景可观的性能优势。与自愿错误路由相比,带阀路由在不降低延迟的情况下在网络吞吐量方面表现更好。

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