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Path-Moose: A Scalable All-Path Bridging Protocol

机译:路径麋:可扩展的全路径桥接协议

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This paper describes Path-Moose, a scalable tree-based shortest path bridging protocol. Both ARP-Path and Path-Moose protocols belong to a new category of bridges that we name All-path, because all paths of the network are explored simultaneously with a broadcast frame distributed over all network links to find a path or set a multicast tree. Path-Moose employs the ARP-based low latency routing mechanism of the ARP-Path protocol on a bridge basis instead of a per-single-host basis. This increases scalability by reducing forwarding table entries at core bridges by a factor of fifteen times for big data center networks and achieves a faster reconfiguration by an approximate factor of ten. Reconfiguration time is significantly shorter than ARP-Path (zero in many cases) because, due to the sharing of network paths by the hosts connected to same edge bridges, when a host needs the path it has already been recovered by another user of the path. Evaluation through simulations shows protocol correctness and confirms the theoretical evaluation results.
机译:本文介绍了Path-Moose,这是一种可伸缩的基于树的最短路径桥接协议。 ARP-Path和Path-Moose协议都属于新的网桥类别,我们将其称为“全路径”,这是因为同时探索了网络的所有路径以及分布在所有网络链路上的广播帧以查找路径或设置多播树。 。 Path-Moose在网桥的基础上而不是在单个主机的基础上采用ARP-Path协议的基于ARP的低延迟路由机制。对于大数据中心网络,这通过将核心网桥处的转发表条目减少15倍而增加了可伸缩性,并以大约10倍的速度实现了更快的重新配置。重新配置时间比ARP-Path明显短(在许多情况下为零),因为由于连接到相同边缘网桥的主机共享网络路径,当主机需要该路径时,该路径已被该路径的另一个用户恢复。通过仿真评估显示协议的正确性,并证实了理论评估结果。

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