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All-Path Bridging: Path Exploration Protocols for Data Center and Campus Networks

机译:全路径桥接:数据中心和园区网络的路径探索协议

摘要

Today, link-state routing protocols that compute multiple shortest paths predominate in data center and campus networks, where routing is performed either in layer three or in layer two using link-state routing protocols. But current proposals based on link-state routing do not adapt well to real time traffic variations and become very complex when attempting to balance the traffic load. We propose All-Path bridging, an evolution of the classical transparent bridging that forwards frames over shortest paths using the complete network topology, which overcomes the limitations of the spanning tree protocol. All-Path is a new frame routing paradigm based on the simultaneous exploration of all paths of the real network by a broadcast probe frame, instead of computing routes on the network graph. This paper presents All- Path switches and their differences with standard switches and describes ARP-Path protocol in detail, its path recovery mechanisms and compatibility with IEEE 802.1 standard bridges. ARP-Path is the first protocol variant of the All-Path protocol family. ARP-Path reuses the standard ARP Request and Reply packets to explore reactively the network and find the fastest path between two hosts. We compare its performance in terms of latency and load distribution with link-state shortest-path routing bridges, showing that ARP-Path distributes the load more evenly and provides lower latencies. Implementations on different platforms prove the robustness of the protocol. The conclusion is that All-Path bridging offer a simple, resilient and scalable alternative to path computation protocols.
机译:如今,计算多个最短路径的链路状态路由协议在数据中心和园区网络中占主导地位,其中,使用链路状态路由协议在第三层或第二层中执行路由。但是,当前基于链路状态路由的建议不能很好地适应实时流量变化,并且在尝试平衡流量负载时变得非常复杂。我们提出了全路径桥接,这是经典透明桥接的发展,它使用完整的网络拓扑结构在最短路径上转发帧,从而克服了生成树协议的局限性。 All-Path是一种新的帧路由范式,它基于广播探针帧同时探索实际网络的所有路径,而不是在网络图上计算路由。本文介绍了全路径交换机及其与标准交换机的区别,并详细介绍了ARP-Path协议,其路径恢复机制以及与IEEE 802.1标准网桥的兼容性。 ARP-Path是All-Path协议系列的第一个协议变体。 ARP-Path重用标准的ARP Request和Reply数据包以反应性地探索网络并找到两个主机之间的最快路径。我们将其在延迟和负载分配方面的性能与链路状态最短路径路由桥进行了比较,表明ARP-Path更均匀地分配了负载并提供了较低的延迟。在不同平台上的实现证明了该协议的鲁棒性。结论是,全路径桥接为路径计算协议提供了一种简单,有弹性和可扩展的替代方案。

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