Efficient traffic splitting on commodity switches

Nanxi Kang, Monia Ghobadi, J. Reumann, A. Shraer, J. Rexford
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引用次数: 85

Abstract

Traffic often needs to be split over multiple equivalent backend servers, links, paths, or middleboxes. For example, in a load-balancing system, switches distribute requests of online services to backend servers. Hash-based approaches like Equal-Cost Multi-Path (ECMP) have low accuracy due to hash collision and incur significant churn during update. In a Software-Defined Network (SDN) the accuracy of traffic splits can be improved by crafting a set of wildcard rules for switches that better match the actual traffic distribution. The drawback of existing SDN-based traffic-splitting solutions is poor scalability as they generate too many rules for small rule-tables on switches. In this paper, we propose Niagara, an SDN-based traffic-splitting scheme that achieves accurate traffic splits while being extremely efficient in the use of rule-table space available on commodity switches. Niagara uses an incremental update strategy to minimize the traffic churn given an update. Experiments demonstrate that Niagara (1) achieves nearly optimal accuracy using only 1.2%--37% of the rule space of the current state-of-art, (2) scales to tens of thousands of services with the constrained rule-table capacity and (3) offers nearly minimum churn.
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商品交换机上的高效流量分流
流量通常需要在多个等效的后端服务器、链接、路径或中间设备上进行分割。例如,在负载平衡系统中,交换机将在线服务的请求分发给后端服务器。基于哈希的方法,如等价多路径(ECMP),由于哈希冲突,准确性较低,并且在更新期间会导致大量流失。在软件定义网络(SDN)中,可以通过为交换机制定一组通配符规则来提高流量分割的准确性,这些规则可以更好地匹配实际的流量分布。现有的基于sdn的流量划分解决方案的缺点是可扩展性差,因为它们为交换机上的小规则表生成了太多的规则。在本文中,我们提出了Niagara,一种基于sdn的流量分割方案,该方案实现了准确的流量分割,同时非常有效地利用了商品交换机上可用的规则表空间。Niagara使用增量更新策略来最小化给定更新的流量波动。实验表明,Niagara(1)仅使用当前最先进的规则空间的1.2%- 37%就实现了近乎最佳的精度,(2)在规则表容量受限的情况下扩展到数万个服务,(3)提供了几乎最小的流通量。
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