A Scalable Per-flow Priority Scheduling Scheme for High-Speed Network

Guodong Li, Zhen Chen, An'an Luo, Y. Xue, Jun Li, Chuang Lin
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引用次数: 1

Abstract

In order to provide the service differentiation for various network applications, and guarantee delay and bandwidth requirement, packet scheduling is considered as a hot research topic and a crucial module in network device. In high speed network, it is hard to maintain and schedule a great number of queues for millions of in-progress flows in memory in line speed. In this paper, we propose a scalable per-flow scheduling scheme using a small fast memory to achieve fine-grained service guarantee. A limited number of queues are dynamically shared among concurrent flows based on the interesting fact that the number of simultaneous active flows is only in hundreds whatever the link speed is. The scheduling scheme is in a scalable hierarchical manner, in which the first layer supplies service differentiation and the second guarantees bandwidth and delay. We also implement an instance based on this scheme called DQS-SPQ-DRR (Dynamic Queue Sharing-Strict Priority Queue-Deficit Round Robin). Experiments based on real and synthetic traces are conducted to evaluate the DQS-SPQ-DRR. The results demonstrate that DQS-SPQ-DRR is well held in small memory and supplies per-flow service guarantee.
一种高速网络可伸缩的按流优先级调度方案
为了给各种网络应用提供差异化的服务,保证时延和带宽需求,分组调度是网络设备中的一个研究热点和关键模块。在高速网络中,很难以线速维护和调度内存中数百万正在进行的流的大量队列。在本文中,我们提出了一种使用小的快速内存来实现细粒度服务保证的可扩展的逐流调度方案。在并发流之间动态共享的队列数量有限,这是基于一个有趣的事实,即无论链接速度如何,同时活动流的数量都只有数百个。该调度方案采用可扩展的分层方式,第一层提供业务差异化,第二层保证带宽和时延。我们还在此基础上实现了一个实例DQS-SPQ-DRR(动态队列共享-严格优先级队列亏缺轮询)。基于真实迹线和合成迹线对DQS-SPQ-DRR进行了评价。结果表明,DQS-SPQ-DRR在小内存环境下保持良好,并提供了逐流服务保障。
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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