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Support ECN in Multi-Queue Datacenter Networks via Per-Port Marking with Selective Blindness

机译:通过基于端口的选择性盲标记在多队列数据中心网络中支持ECN

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ECN is a powerful tool that can achieve low latency and high throughput simultaneously. Support ECN for multiqueue scenarios is an industry trend in datacenter networks. However, ECN schemes developed for per-port marking cannot be applied directly to the multi-queue scenarios. It hurts at least one metric among latency, throughput, and the scheduling policy. State-of-the-art multi-queue ECN marking schemes each has its own limitations. In this paper, we present per-Port Marking with Selective Blindness (PMSB). The intuition is that: if a flow is found to be a victim of per-port marking, we can either revoke the marking or cancel the flow back-off even if its packets qualify the per-port threshold (i.e., selective blindness). By breaking the fixed causal relationship between ECN marking and flow backoff, flows from un-congested queues can be protected. We evaluate PMSB with large-scale NS-3 simulations. Our results demonstrate that PMSB can preserve a given scheduling policy. Compared with the current practice, PMSB can reduce the average/99% completion time for small flows by 64.49%/72.89% respectively while delivering a slightly better performance for large flows.
机译:ECN是功能强大的工具,可以同时实现低延迟和高吞吐量。在多队列方案中支持ECN是数据中心网络的行业趋势。但是,为每个端口标记开发的ECN方案不能直接应用于多队列方案。它损害了延迟,吞吐量和调度策略中的至少一个指标。最新的多队列ECN标记方案各有其局限性。在本文中,我们提出了带有选择性盲的每端口标记(PMSB)。直觉是:如果发现某个流是每个端口标记的受害者,我们可以撤销标记或取消该流退避,即使其数据包符合每个端口阈值(即选择性盲目)。通过打破ECN标记和流量退回之间的固定因果关系,可以保护未拥塞队列的流量。我们通过大规模的NS-3仿真评估PMSB。我们的结果表明,PMSB可以保留给定的调度策略。与目前的做法相比,PMSB可以将小流量的平均完成时间/ 99%减少64.49%/ 72.89%,同时为大流量提供更好的性能。

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