不规则网格noc中的多相路由方案

Xinming Duan, Yuanyuan Li
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引用次数: 5

摘要

目前,典型的特定应用NoC系统通常集成了许多异构组件,这些组件具有不同的功能、大小和通信要求。构建不规则网格拓扑的片上网络(NoC)取代规则拓扑网络成为构建未来不规则结构的NoC系统的一种有吸引力的方法。无死锁路由控制算法是一个很有前途的不规则网格拓扑问题。现有的规则网格路由算法不适用于不规则网格网络。因此,本文提出了一种结合超大矩形模块的不规则网格混合方案多相路由算法。该方案的基本思想借鉴了容错网络的领域,在容错网络中,由于故障区域的存在,网络拓扑结构呈现不规则。所提出的方案每个物理通道仅使用2个虚拟通道,具有快速的路由决策。当所提出的两阶段路由方案不能保持某些节点对之间的连接时,通过停用某些健康节点来保证其无死锁。提出了一种贪心方法,以确保只有最小的节点不被激活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Multiphase Routing Scheme in Irregular Mesh-Based NoCs
At present, typical application-specific NoC systems often integrate a number of heterogeneous components which have varied functions, sizes and communication requirements. Instead of regular topology networks, constructing irregular mesh topology network on chip (NoCs) becomes an attractive approach to building future NoC systems with irregular structure. Deadlock-free routing control algorithm is a promising problem for irregular mesh topology. The available routing algorithms from regular mesh are not suitable for irregular mesh network. So in this paper, we introduce a hybrid scheme multiphase routing algorithm for irregular mesh integrating oversized rectangle modules. The basic idea of the scheme is borrowed from the area of fault tolerant networks, where a network topology is rendered irregular due to fault regions. The proposed scheme only employs 2 virtual channels per physical channel with fast routing decisions. In the case that the proposed two-phase routing scheme does not keep connection between some pairs of nodes, certain healthy nodes are deactivated to guarantee its deadlock-freeness. A greedy method is presented to ensure that only the minimum nodes are deactivated.
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