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A Scalable and Resilient Layer-2 Network With Ethernet Compatibility

机译:具有以太网兼容性的可扩展的弹性第二层网络

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摘要

We present the architecture and protocols of ROME, a layer-2 network designed to be backwards-compatible with Ethernet and scalable to tens of thousands of switches and millions of end-hosts. Such large-scale networks are needed for emerging applications including data center networks, wide area networks, and metro Ethernet. ROME is based upon a recently developed greedy routing protocol, greedy distance vector (GDV). Protocol design innovations in ROME include a stateless multicast protocol, a Delaunay distributed hash table (DHT), as well as routing and host discovery protocols for a hierarchical network. ROME protocols do not use broadcast and provide both control-plane and data-plane scalability. Extensive experimental results from a packet-level event-driven simulator, in which ROME protocols are implemented in detail, show that ROME protocols are efficient and scalable to metropolitan size. Furthermore, ROME protocols are highly resilient to network dynamics. The routing latency of ROME is only slightly higher than shortest-path latency. To demonstrate scalability, we provide simulation performance results for ROME networks with up to 25000 switches and 1.25 million hosts.
机译:我们介绍了ROME的体系结构和协议,ROME是一个第二层网络,旨在与以太网向后兼容,并可以扩展到成千上万的交换机和数百万个终端主机。对于包括数据中心网络,广域网和城域以太网在内的新兴应用来说,需要这种大规模网络。 ROME基于最近开发的贪婪路由协议,贪婪距离矢量(GDV)。 ROME中的协议设计创新包括无状态多播协议,Delaunay分布式哈希表(DHT)以及用于分层网络的路由和主机发现协议。 ROME协议不使用广播,而是提供控制平面和数据平面可伸缩性。来自数据包级事件驱动模拟器的大量实验结果(其中详细实现了ROME协议)表明,ROME协议高效且可扩展到城市规模。此外,ROME协议对网络动态具有高度的适应性。 ROME的路由延迟仅比最短路径延迟稍高。为了演示可扩展性,我们提供了具有25,000台交换机和125万台主机的ROME网络的仿真性能结果。

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