The temporal and topological characteristics of BGP path changes

Di-Fa Chang, R. Govindan, J. Heidemann
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引用次数: 111

Abstract

BGP has been deployed in Internet for more than a decade. However, the events that cause BGP topological changes are not well understood. Although large traces of routing updates seen in BGP operation are collected by RIPE RlS and University of Oregon RouteViews, previous work examines this data set as individual routing updates. This paper describes methods that group routing updates into events. Since one event (a policy change or peering failure) results in many update messages, we cluster updates both temporally and topologically (based on the path vector information). We propose a new approach to analyzing the update traces, classifying the topological impact of muting events, and approximating the distance to the autonomous system originating the event. Our analysis provides some insight into routing behavior: First, at least 45% path changes are caused by events on transit peerings. Second, a significant number (23-37%) of path changes are transient, in that routing updates indicate temporary path changes, but they ultimately converge on a path that is identical from the previously stable path. These observations suggest that a content provider cannot guarantee end-to-end routing stability based solely on its relationship with its immediate ISP, and that better detection of transient changes may improve routing stability.
BGP路径的时间和拓扑特征发生变化
BGP已经在互联网上部署了十多年。但是,引起BGP拓扑变化的事件还不是很清楚。尽管RIPE RlS和University of Oregon RouteViews收集了BGP操作中看到的大量路由更新痕迹,但之前的工作将这些数据集作为单独的路由更新进行检查。本文描述了将路由更新分组到事件中的方法。由于一个事件(策略更改或对等失败)会导致许多更新消息,因此我们在时间上和拓扑上(基于路径向量信息)对更新进行聚类。我们提出了一种新的方法来分析更新轨迹,对静音事件的拓扑影响进行分类,并逼近到发起事件的自治系统的距离。我们的分析提供了一些关于路由行为的见解:首先,至少45%的路径变化是由过境节点上的事件引起的。其次,大量(23-37%)的路径变化是短暂的,因为路由更新表明临时路径变化,但它们最终收敛到与先前稳定路径相同的路径上。这些观察结果表明,内容提供者不能仅仅基于与其直接ISP的关系来保证端到端路由的稳定性,更好地检测瞬态变化可能会提高路由的稳定性。
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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