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Implementation of ARP-Path Low Latency Bridges in Linux and OpenFlow/NetFPGA

机译:在Linux和OpenFlow / NetFPGA中实现ARP路径低延迟网桥

摘要

This paper describes the implementation of ARP- Path (a.k.a. FastPath) bridges, a recently proposed concept for low latency bridges, in Linux/Soekris and OpenFlow/NetFPGA platforms. These ARP-based Ethernet Switches rely on the race between the replicas of a standard ARP Request packet flooded over all links, to discover the minimum latency path to the destination host, complemented in the opposite direction by the ARP Reply packet directed to the source host. Implementations show that the protocol is loop free, does not block links, is fully transparent to hosts and neither needs a spanning tree protocol to prevent loops nor a link state protocol to obtain low latency paths. Implementations in Linux and OpenFlow on NetFPGA show inherent robustness and fast reconfiguration. Previous simulations showed a superior performance (throughput and delay) than the Spanning Tree Protocol and similar to shortest path routing, with lower complexity.
机译:本文介绍了Linux / Soekris和OpenFlow / NetFPGA平台中最新提出的低延迟网桥ARP-Path(又称FastPath)网桥的实现。这些基于ARP的以太网交换机依靠在所有链路上泛洪的标准ARP请求数据包的副本之间的竞争来发现到达目标主机的最小等待时间路径,并通过指向源主机的ARP应答数据包以相反的方向进行补充。实现显示该协议无环路,不阻塞链接,对主机完全透明,既不需要生成树协议来防止环路,也不需要链路状态协议来获得低延迟路径。 NetFPGA在Linux和OpenFlow上的实现显示出固有的鲁棒性和快速的重新配置。先前的模拟显示出比生成树协议更高的性能(吞吐量和延迟),并且与最短路径路由类似,但复杂度较低。

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