Detour planning for fast and reliable failure recovery in SDN with OpenState

A. Capone, C. Cascone, A. Q. Nguyen, B. Sansò
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引用次数: 96

Abstract

A reliable and scalable mechanism to provide protection against a link or node failure has additional requirements in the context of SDN and OpenFlow. Not only it has to minimize the load on the controller, but it must be able to react even when the controller is unreachable. In this paper we present a protection scheme based on precomputed backup paths and inspired by MPLS “crankback” routing, that guarantees instantaneous recovery times and aims at zero packet-loss after failure detection, regardless of controller reachability, even when OpenFlow's “fast-failover” feature cannot be used. The proposed mechanism is based on OpenState, an OpenFlow extension that allows a programmer to specify how forwarding rules should autonomously adapt in a stateful fashion, reducing the need to rely on remote controllers. We present the scheme as well as two different formulations for the computation of backup paths.
基于OpenState的SDN快速可靠故障恢复迂回规划
在SDN和OpenFlow环境中,提供防止链路或节点故障的可靠且可扩展的机制有额外的要求。它不仅要最小化控制器上的负载,而且必须能够在控制器不可达时做出反应。在本文中,我们提出了一种基于预先计算的备份路径和受MPLS“曲back”路由启发的保护方案,该方案保证了瞬时恢复时间,并且在故障检测后,无论控制器是否可达,即使无法使用OpenFlow的“快速故障转移”功能,也可以保证零包丢失。提议的机制基于OpenState,这是OpenFlow的一个扩展,它允许程序员指定转发规则应该如何以有状态的方式自主适应,从而减少对远程控制器的依赖。我们给出了该方案以及两种不同的备份路径计算公式。
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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