Understanding host interconnect congestion

Saksham Agarwal, R. Agarwal, Behnam Montazeri, M. Moshref, Khaled Elmeleegy, L. Rizzo, M. Kruijf, G. Kumar, S. Ratnasamy, D. Culler, A. Vahdat
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引用次数: 16

Abstract

We present evidence and characterization of host congestion in production clusters: adoption of high-bandwidth access links leading to emergence of bottlenecks within the host interconnect (NIC-to-CPU data path). We demonstrate that contention on existing IO memory management units and/or the memory subsystem can significantly reduce the available NIC-to-CPU bandwidth, resulting in hundreds of microseconds of queueing delays and eventual packet drops at hosts (even when running a state-of-the-art congestion control protocol that accounts for CPU-induced host congestion). We also discuss implications of host interconnect congestion to design of future host architecture, network stacks and network protocols.
了解主机互连拥塞
我们提出了生产集群中主机拥塞的证据和特征:采用高带宽访问链接导致主机互连(nic到cpu数据路径)中出现瓶颈。我们证明,对现有IO内存管理单元和/或内存子系统的争用可以显著减少可用的nic到cpu带宽,导致数百微秒的排队延迟和主机上的最终数据包丢失(即使在运行最先进的拥塞控制协议时也是如此,该协议可以解释cpu引起的主机拥塞)。我们还讨论了主机互连拥塞对未来主机架构、网络栈和网络协议设计的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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