Got loss? Get zOVN!

D. Crisan, R. Birke, Gilles Cressier, C. Minkenberg, M. Gusat
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引用次数: 19

Abstract

Datacenter networking is currently dominated by two major trends. One aims toward lossless, flat layer-2 fabrics based on Converged Enhanced Ethernet or InfiniBand, with benefits in efficiency and performance. The other targets flexibility based on Software Defined Networking, which enables Overlay Virtual Networking. Although clearly complementary, these trends also exhibit some conflicts: In contrast to physical fabrics, which avoid packet drops by means of flow control, practically all current virtual networks are lossy. We quantify these losses for several common combinations of hypervisors and virtual switches, and show their detrimental effect on application performance. Moreover, we propose a zero-loss Overlay Virtual Network (zOVN) designed to reduce the query and flow completion time of latency-sensitive datacenter applications. We describe its architecture and detail the design of its key component, the zVALE lossless virtual switch. As proof of concept, we implemented a zOVN prototype and benchmark it with Partition-Aggregate in two testbeds, achieving an up to 15-fold reduction of the mean completion time with three widespread TCP versions. For larger-scale validation and deeper introspection into zOVN, we developed an OMNeT++ model for accurate cross-layer simulations of a virtualized datacenter, which confirm the validity of our results.
有损失吗?得到zOVN !
数据中心网络目前由两大趋势主导。一种是基于融合增强型以太网或InfiniBand的无损、平面第二层结构,具有效率和性能方面的优势。另一个目标是基于软件定义网络的灵活性,从而实现覆盖虚拟网络。尽管这些趋势明显是互补的,但也表现出一些冲突:与物理结构(通过流控制避免数据包丢失)相反,实际上所有当前的虚拟网络都是有损的。我们量化了管理程序和虚拟交换机的几种常见组合的这些损失,并展示了它们对应用程序性能的有害影响。此外,我们提出了一种零损耗覆盖虚拟网络(zOVN),旨在减少对延迟敏感的数据中心应用的查询和流完成时间。介绍了该系统的体系结构,并详细介绍了其关键部件zVALE无损虚拟交换机的设计。作为概念验证,我们实现了zOVN原型,并在两个测试平台上使用Partition-Aggregate对其进行基准测试,在三个广泛使用的TCP版本中,平均完成时间减少了15倍。为了对zOVN进行更大规模的验证和更深入的反思,我们开发了一个omnet++模型,用于对虚拟化数据中心进行精确的跨层模拟,这证实了我们的结果的有效性。
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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