一种以稳定性为导向的提高BGP收敛性的方法

Hongwei Zhang, A. Arora, Zhijun Liu
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引用次数: 17

摘要

本文表明,通过消除故障不可知的不稳定性(由故障不可知的分布式控制引起的不稳定性),可以大大提高BGP的收敛速度。为此,我们首先将BGP收敛不稳定性分为两类:故障不可知不稳定性和分布固有不稳定性;其次,我们证明了在分布式路由协议中不可能消除所有分布固有的不稳定性;第三,我们设计了葡萄边界网关协议(G-BGP),证明了所有故障诊断不稳定性都可以消除。G-BGP通过以下方式消除了不同故障和路由策略场景下所有故障不可知的不稳定性:(1)将细粒度的故障信息搭载到BGP UPDATE消息中,传递给受故障影响的节点;(2)快速解决链路和节点故障之间的不确定性以及节点是否改变了路由的不确定性;(3)拒绝过时的故障信息。我们通过分析和仿真对G-BGP进行了评估。通过分析,我们证明,通过消除故障不可知的不稳定性,G-BGP在BGP收敛严重延迟的几种情况下(例如,当节点或链路故障停止时)实现了最优收敛速度,当使用最短路径优先策略时,G-BGP渐进地提高了BGP收敛速度,但在BGP收敛速度已经最优的情况下(例如,当节点或链路加入时)。通过模拟多达115个自治系统的网络,我们观察到G-BGP将BGP的收敛稳定性和速度提高了一个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A stability-oriented approach to improving BGP convergence
This paper shows that the elimination of fault-agnostic instability, the instability caused by fault-agnostic distributed control, substantially improves BGP convergence speed. To this end, we first classify BGP convergence instability into two categories: fault-agnostic instability and distribution-inherent instability; secondly, we prove the impossibility of eliminating all distribution-inherent instability in distributed routing protocols; thirdly, we design the grapevine border gateway protocol (G-BGP) to show that all fault-agnostic instability can be eliminated. G-BGP eliminates all fault-agnostic instability under different fault and routing policy scenarios by (i) piggybacking onto BGP UPDATE messages fine-grained information about faults to the nodes affected by the faults, (ii) quickly resolving the uncertainty between link and node failure as well as the uncertainty of whether a node has changed route, and (iii) rejecting obsolete fault information. We have evaluated G-BGP by both analysis and simulation. Analytically, we prove that, by eliminating fault-agnostic instability, G-BGP achieves optimal convergence speed in several scenarios where BGP convergence is severely delayed (e.g., when a node or a link fail-stops), and when the shortest-path-first policy is used, G-BGP asymptotically improves BGP convergence speed except in scenarios where BGP convergence speed is already optimal (e.g., when a node or a link joins). By simulating networks with up to 115 autonomous systems, we observe that G-BGP improves BGP convergence stability and speed by an order of magnitude.
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