Hypercube Fault Tolerant Routing with Bit Constraint

A. Bossard, K. Kaneko
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引用次数: 2

Abstract

Thanks to its simple definition, the hypercube topology is very popular as interconnection network of parallel systems. There have been several routing algorithms described for the hypercube topology, yet in this paper we focus on hypercube routing extended with an additional restriction: bit constraint. Concretely, path selection is performed on a particular subset of nodes: the nodes are required to satisfy a condition regarding their bit weights (a.k.a. Hamming weights). There are several applications to such restricted routing, including simplification of disjoint paths routing. We propose in this paper two hypercube routing algorithms enforcing such node restriction: first, a shortest path routing algorithm, second a fault tolerant point-to-point routing algorithm. Formal proof of correctness and complexity analysis for the described algorithms are conducted. We show that the shortest path routing algorithm proposed is time optimal. Finally, we perform an empirical evaluation of the proposed fault tolerant point-to-point routing algorithm so as to inspect its practical behaviour. Along with this experimentation, we analyse further the average performance of the proposed algorithm by discussing the average Hamming distance in a hypercube when satisfying a bit constraint.
具有位约束的超立方体容错路由
由于其定义简单,超立方体拓扑结构作为并行系统互连网络非常受欢迎。已经有几种针对超立方体拓扑的路由算法被描述,但在本文中,我们关注的是扩展了额外限制的超立方体路由:位约束。具体地说,路径选择是在一个特定的节点子集上执行的:节点需要满足一个关于它们的位权(又称汉明权)的条件。这种受限路由有几种应用,包括不相交路径路由的简化。本文提出了两种实现这种节点限制的超立方体路由算法:第一种是最短路径路由算法,第二种是容错点对点路由算法。对所描述的算法进行了正确性的形式化证明和复杂度分析。结果表明,最短路径路由算法是时间最优的。最后,我们对所提出的容错点对点路由算法进行了经验评估,以检查其实际行为。Â在此实验中,我们通过讨论满足位约束时超立方体中的平均汉明距离进一步分析了所提出算法的平均性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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