Fault-tolerant and deadlock-free routing in 2-D meshes using rectilinear-monotone polygonal fault blocks

Jie Wu, Dajin Wang
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引用次数: 36

Abstract

We propose a deterministic fault-tolerant and deadlock-free routing protocol in 2D meshes based on Wu's fault-tolerant odd-even turn model (2000) and Wang's rectilinear-monotone polygonal fault block model. The fault-tolerant odd-even turn protocol, also called extended X-Y routing, was originally proposed to achieve fault-tolerant and deadlock-free routing among traditional, rectangular fault blocks. It does not use any virtual channels. The number of faults to be tolerated is unbounded as long as nodes outside fault blocks are connected in the mesh network. The recently proposed rectilinear-monotone polygonal fault blocks (also called minimal-connected-components or MCCs) are of the polygonal shapes, and is a refinement of rectangular fault blocks. The formation of MCCs depends on the relative locations of source and destination, and they include much fewer healthy nodes in resultant fault blocks. In this paper, we show that with a simple modification, the extended X-Y routing can also be applied to 2D meshes using extended MCCs.
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基于直线单调多边形故障块的二维网格容错无死锁路由
在Wu的容错奇偶转模型(2000)和Wang的直线-单调多边形故障块模型的基础上,提出了一种确定性的二维网格容错无死锁路由协议。容错奇偶转协议,也称为扩展X-Y路由,最初是为了在传统的矩形故障块之间实现容错和无死锁路由而提出的。它不使用任何虚拟通道。在网状网络中,只要连接故障块外的节点,可容忍的故障数量是无限的。最近提出的直线单调多边形断块(也称为最小连通分量或mcc)是多边形形状的断块,是对矩形断块的改进。mcc的形成取决于源和目的地的相对位置,它们在生成的断块中包含的健康节点要少得多。在本文中,我们证明了通过简单的修改,扩展的X-Y路由也可以应用于使用扩展mcc的2D网格。
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