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Reducing Web Latency: the Virtue of Gentle Aggression

机译:减少网络延迟:温和侵略的美德

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To serve users quickly, Web service providers build infrastructure closer to clients and use multi-stage transport connections. Although these changes reduce client-perceived round-trip times, TCP's current mechanisms fundamentally limit latency improvements. We performed a measurement study of a large Web service provider and found that, while connections with no loss complete close to the ideal latency of one round-trip time, TCP's timeout-driven recovery causes transfers with loss to take five times longer on average. In this paper, we present the design of novel loss recovery mechanisms for TCP that judiciously use redundant transmissions to minimize timeout-driven recovery. Proactive, Reactive, and Corrective are three qualitatively-different, easily-deployable mechanisms that (1) proactively recover from losses, (2) recover from them as quickly as possible, and (3) reconstruct packets to mask loss. Crucially, the mechanisms are compatible both with mid-dleboxes and with TCP's existing congestion control and loss recovery. Our large-scale experiments on Google's production network that serves billions of flows demonstrate a 23% decrease in the mean and 47% in 99th percentile latency over today's TCP.
机译:为了快速为用户提供服务,Web服务提供商在靠近客户端的地方建立基础架构,并使用多阶段传输连接。尽管这些更改减少了客户感知的往返时间,但TCP的当前机制从根本上限制了延迟的改进。我们对一家大型Web服务提供商进行了一项测量研究,发现无损连接完全接近一个往返时间的理想延迟,而TCP的超时驱动恢复导致有损传输的平均时间要长五倍。在本文中,我们介绍了新颖的TCP丢失恢复机制的设计,该机制明智地使用冗余传输来最大程度地减少超时驱动的恢复。主动,被动和纠正是三种质量上不同,易于部署的机制,它们可以(1)主动从丢失中恢复,(2)尽快从丢失中恢复,以及(3)重构数据包以掩盖丢失。至关重要的是,该机制与中间盒以及TCP现有的拥塞控制和丢失恢复兼容。我们在可为数十亿流量提供服务的Google生产网络上进行的大规模实验表明,与目前的TCP相比,均值降低了23%,延迟百分位数降低了47%。

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