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ESM: Efficient and Scalable Data Center Multicast Routing

机译:ESM:高效且可扩展的数据中心多播路由

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Multicast benefits group communications in saving network traffic and improving application throughput, both of which are important for data center applications. However, the technical trend of data center design poses new challenges for efficient and scalable multicast routing. First, the densely connected networks make traditional receiver-driven multicast routing protocols inefficient in multicast tree formation. Second, it is quite difficult for the low-end switches widely used in data centers to hold the routing entries of massive multicast groups. In this paper, we propose ESM, an efficient and scalable multicast routing scheme for data center networks. ESM addresses the challenges above by exploiting the feature of modern data center networks. Based on the regular topology of data centers, ESM uses a source-to-receiver expansion approach to build efficient multicast trees, excluding many unnecessary intermediate switches used in receiver-driven multicast routing. For scalable multicast routing, ESM combines both in-packet Bloom Filters and in-switch entries to make the tradeoff between the number of multicast groups supported and the additional bandwidth overhead. Simulations show that ESM saves 40%$sim$50% network traffic and doubles the application throughputs compared to receiver-driven multicast routing, and the combination routing scheme significantly reduces the number of in-switch entries required. We implement ESM on a Linux platform. The experimental results further demonstrate that ESM can well support online tree building for large-scale groups with churns, and the overhead of the combination forwarding engine is light-weighted.
机译:组播使分组通信受益于节省网络流量和提高应用程序吞吐量,这两者对于数据中心应用程序都很重要。但是,数据中心设计的技术趋势对有效和可扩展的多播路由提出了新的挑战。首先,密集连接的网络使传统的接收器驱动的多播路由协议在多播树形成中效率低下。其次,对于数据中心中广泛使用的低端交换机而言,要保存大量组播组的路由条目非常困难。在本文中,我们提出了ESM,一种用于数据中心网络的高效且可扩展的多播路由方案。 ESM通过利用现代数据中心网络的功能来解决上述挑战。基于数据中心的常规拓扑,ESM使用从源到接收器的扩展方法来构建有效的多播树,不包括在接收器驱动的多播路由中使用的许多不必要的中间交换机。对于可伸缩的多播路由,ESM结合了数据包内的布隆过滤器和交换机内的条目,以在支持的多播组数量和附加带宽开销之间进行权衡。仿真显示,与接收机驱动的多播路由相比,ESM节省40%$ sim $ 50%的网络流量,并使应用程序吞吐量翻倍,并且组合路由方案显着减少了所需的交换机内条目的数量。我们在Linux平台上实现ESM。实验结果进一步证明,ESM可以很好地支持大规模流失群体的在线树构建,并且组合转发引擎的开销较轻。

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