INT-label:基于间隔的分布式标签的轻量级带内全网遥测

Enge Song, Tian Pan, Chenhao Jia, Wendi Cao, Jiao Zhang, Tao Huang, Yun-jie Liu
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引用次数: 12

摘要

带内网络遥测(INT)支持逐跳设备内部状态暴露,以可靠地维护和排除数据中心网络故障。为了实现网络范围的遥测,还需要在INT原语之上进行编排。一种直接的解决方案是将INT探测数据包注入网络拓扑以获得最大的测量覆盖范围,但是这会导致巨大的带宽开销。一种改进的解决方案是利用SDN控制器收集拓扑并进行集中探测路径规划,但是这种方法不能无缝地适应偶尔的拓扑变化。为了解决上述问题,在这项工作中,我们提出了INT-label,一种基于间隔的分布式标记的轻量级带内全网遥测架构。INT-label定期将设备内部状态标记到采样数据包上,这是一种具有较小带宽开销的经济高效方法,并且能够无缝地适应拓扑变化。此外,为了避免因丢失标签数据包而导致遥测分辨率降低,我们还设计了一种自适应改变即时标签频率的反馈机制。对软件P4开关的评估表明,在每秒20次的标签频率下,INT-label可以达到99.72%的测量覆盖率。启用自适应标签后,即使60%的数据包在数据平面上丢失,覆盖率仍然可以达到92%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INT-label: Lightweight In-band Network-Wide Telemetry via Interval-based Distributed Labelling
The In-band Network Telemetry (INT) enables hop-by-hop device-internal state exposure for reliably maintaining and troubleshooting data center networks. For achieving network-wide telemetry, orchestration on top of the INT primitive is further required. One straightforward solution is to flood the INT probe packets into the network topology for maximum measurement coverage, which, however, leads to huge bandwidth overhead. A refined solution is to leverage the SDN controller to collect the topology and carry out centralized probing path planning, which, however, cannot seamlessly adapt to occasional topology changes. To tackle the above problems, in this work, we propose INT-label, a lightweight In-band Network-Wide Telemetry architecture via interval-based distributed labelling. INT-label periodically labels device-internal states onto sampled packets, which is cost-effective with minor bandwidth overhead and able to seamlessly adapt to topology changes. Furthermore, to avoid telemetry resolution degradation due to loss of labelled packets, we also design a feedback mechanism to adaptively change the instant label frequency. Evaluation on software P4 switches suggests that INT-label can achieve 99.72% measurement coverage under a label frequency of 20 times per second. With adaptive labelling enabled, the coverage can still reach 92% even if 60% of the packets are lost in the data plane.
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