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SmartRep: Reducing Flow Completion Times with Minimal Replication in Data Centers

机译:smartRep:通过数据中心中的最小复制减少流完成时间

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摘要

To improve users\u27 experience, TCP short flows that are heavily used in interactive services should be completed as soon as possible. In current data centers, large flows and head-of-line blocking in switches hinder short flows from completion, which leads to long-tailed flow completion times (FCT). Replicating short flows with multiple equal-cost paths is a promising way to reduce FCT. However, the original flow and its replicated one are quite likely to be routed to the same path (ECMP hash collision), which increases both the mean and 99-percentile FCT significantly. What\u27s more, inadequate replication leaves many other less-congested equal-cost paths unused and limits the performance while excess replication degrades throughput of large flows. To solve these problems, we propose SmartRep, a scheme consisting of an efficient and effective traceroute based hash collision avoidance method and an algorithm to decide the optimal number of replicated flows for different short flows. SmartRep can be easily implemented in software and readily deployed in data centers. Extensive NS2 simulations show that our approach improves previous replication-based work by 25%-50% in both mean and 99th percentile FCT, and meanwhile imposes negligible impact on large flows.
机译:为了改善用户的体验,应尽快完成交互式服务中大量使用的TCP短流。在当前的数据中心中,交换机中的大流量和行头阻塞会阻碍短流量的完成,从而导致长尾流量完成时间(FCT)。用多个等价路径复制短流程是减少FCT的一种有前途的方法。但是,原始流及其复制的流很可能被路由到同一路径(ECMP哈希冲突),这会显着增加均值和99%的FCT。此外,复制不足会导致许多其他拥塞较少的等价路径未使用,并限制了性能,而过多的复制则会降低大流量的吞吐量。为了解决这些问题,我们提出了SmartRep,一种由高效且有效的基于traceroute的哈希冲突避免方法和为不同的短流确定最佳复制流数的算法组成的方案。 SmartRep可以轻松地用软件实现,也可以轻松地部署在数据中心中。大量的NS2模拟表明,我们的方法在均值和第99个百分位数的FCT方面,将以前基于复制的工作提高了25%-50%,同时对大流量的影响可忽略不计。

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