非阻塞广播网络的快速路径路由技术

Yuanyuan Yang, G. Masson
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引用次数: 4

摘要

在无阻塞广播网络中,从一个空闲的网络输入端口到一组空闲的网络输出端口的任何广播连接请求都可以在不干扰(即重排)其他现有连接的情况下实现。无阻塞广播网络在并行和分布式处理中有着重要的应用。用于确定连接路径路由的网络控制器对互连网络的性能至关重要,特别是在实时并行和分布式处理应用程序中。在本文中,我们将提出一种网络控制器的设计,用于目前可用的具有常数级的非阻塞广播交换网络的最佳显式结构。对于我们所考虑的类型的三级非阻塞广播网络,其中第一级和第三级各有r个交换模块,每个交换模块上有n个输入端口和n个输出端口,可以看到网络控制器可以确定连接路径路由以满足O(,:if;,.)门传播中的广播连接请求。该设计还将推广到具有相同路径路由时间顺序的多阶段网络。这与以前的软件控制算法所需的O(nr)步骤形成鲜明对比。此外,即使是硬件最密集的控制器设计在逻辑电路上也可与一个开关模块相媲美。本文提出的网络控制器设计实现了我们认为在需要高速网络连接路径设置的实时并行和分布式处理应用中有用的无阻塞广播网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast Path Routing Techniques for Nonblocking Broadcast Networks
I n a nonblocking broadcast network, any broadcast connection request from an idle network input port to a set of idle network outputports can be realized without any disturbance (that is, rearrangement) of other existing connections. Nonblocking broadcast networks have important applications in parallel and distributed processing. The network controller used for determining connection path routings figures critically in the performance of an interconnection network, particularly in real-time parallel and distributed processing applications. I n this paper, we will present designs of a network controller for the currently best available explicit constructions of nonblocking broadcast switching networks with a constant number of stages. For a three-stage nonblocking broadcast network of the type we consider wherein there are r switch modules in each of the first and third stages with n input ports and n output ports on each of these switch modules, i t will be seen that a network controller can determine connection path routings to satisfy a broadcast connection request in O( ,:if;,.) gate propagations. The designs will also be generalzzed to multi-stage networks in the same order of path routing time. This contrasts favorably with the O(nr) steps required in the previous software control algorithm. Furthermore, even the most hardware intensive of the controller designs is comparable in logic circuitry to that of one switching module. The network controller designs presented in this paper render the nonblocking broadcast networks we consider useful in real-time parallel and distributed processing applications which require high-speed network connection path set-ups.
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