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A Local Approach to Fast Failure Recovery of LISP Ingress Tunnel Routers

机译:LISP入口隧道路由器快速故障恢复的本地方法

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LISP (Locator/ID Separation Protocol) has been proposed as a future Internet architecture in order to solve the scalability issues the current architecture is facing. LISP tunnels packets between border routers, which are the locators of the non-globally routable identifiers associated to end-hosts. In this context, the encapsulating routers, which are called Ingress Thnnel Routers (ITR) and learn dynamically identifier-to-locators mappings needed for the encapsulation, can cause severe and long lasting traffic disruption upon failure. In this paper, thanks to real traffic traces, we first explore the impact of ITR failures on ongoing traffic. Our measurements confirm that the failure of an ITR can have severe impact on traffic. We then propose and evaluate an ITR synchronization mechanism to locally protect ITRs, achieving disruptionless traffic redirection. We finally explore how to minimize the number of ITRs to synchronize in large networks.
机译:为了解决当前体系结构所面临的可扩展性问题,已经提出将LISP(定位器/ ID分离协议)作为未来的Internet体系结构。 LISP在边界路由器之间建立数据包隧道,边界路由器是与终端主机关联的非全局可路由标识符的定位器。在这种情况下,称为Ingress Thnnel路由器(ITR)的封装路由器会动态学习封装所需的标识符到定位器的映射,一旦发生故障,可能会导致严重而持久的流量中断。在本文中,由于有真实的流量跟踪,我们首先探讨了ITR故障对正在进行的流量的影响。我们的测量结果证实,ITR的故障可能会对流量产生严重影响。然后,我们提出并评估一种ITR同步机制,以本地保护ITR,实现无中断的流量重定向。我们最终将探索如何最大程度地减少ITR的数量,以在大型网络中进行同步。

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