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Path selection algorithm: the strategy for designing deterministic routing from alternative paths

机译:路径选择算法:从备用路径设计确定性路由的策略

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摘要

System Area Networks (SANs), which usually accept irregular topologies, have been used to connect nodes in PC/WS clusters or high-performance storage systems. Although routing algorithms for SANs usually find out alternative paths, SANs usually accept only deterministic routings. Thus, path selection algorithm, which chooses a single path from alternative paths, becomes essential for advanced routings in SANs. However, a few studies of it have been done only for SANs without virtual channels, and its impact is not well analyzed. In this paper, (1) we propose four path selection algorithms which have different concepts to distribute paths in SANs with virtual channels, and (2) we investigate the performance influences of various path selection algorithms through a flit-level simulation. Simulation results show that one of the four algorithms improves up to 92% of throughput against simple path selection algorithms, and policies to remove paths crossing the bottleneck channels are more efficient than ones to keep paths crossing channels that are not crowded.
机译:通常使用不规则拓扑的系统区域网络(SAN)已用于连接PC / WS群集或高性能存储系统中的节点。尽管SAN的路由算法通常会找到替代路径,但SAN通常仅接受确定性路由。因此,从替代路径中选择一条路径的路径选择算法对于SAN中的高级路由至关重要。但是,仅针对没有虚拟通道的SAN进行了一些研究,其影响尚未得到很好的分析。在本文中,(1)我们提出了四种具有不同概念的路径选择算法,以在具有虚拟通道的SAN中分配路径,(2)我们通过flit级仿真研究了各种路径选择算法对性能的影响。仿真结果表明,与简单的路径选择算法相比,这四种算法之一可将吞吐量提高多达92%,并且去除瓶颈通道的策略比保持不拥挤的通道的策略更为有效。

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