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Analyzing Failures and Attacks in Map Encap Protocols

机译:分析地图和ENCAP协议中的故障和攻击

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This paper examines failures and attacks in Map & Encap routing protocols. In Map & Encap, a packet is routed to an encapsulator, which maps the destination address to a decapsulator, and encapsulates the packet. This important and growing class of protocols, ranging from widely used MPLS VPNs to future routing architectures such as LISP, introduce new problems and challenges for handling failures and attacks. To capture fundamental components, we introduce a Simple Map & Encap Protocol (SMEP). Some failure handling approaches from traditional routing protocols also apply in SMEP, but these approaches alone are insufficient. SMEP design choices, and mapping dissemination in particular, have a large impact on whether new techniques are needed. In some cases, the control plane alone cannot adequately handle failures without support from the data plane and attacks can be much harder to diagnose. The results identify new potential failures and attacks and can help designers improve Map & Encap protocol robustness. We illustrate the benefits of our work by analyzing two very different types of Map & Encap protocols, MPLS-VPN and LISP.
机译:本文考察了地图和ENCAP路由协议的故障和攻击。在地图&ENCAP,分组被路由到一个封装器,其中所述目标地址映射到一个解封装,并且封装该分组。这个重要的和不断增长类的协议,从广泛使用的MPLS VPN未来的路由架构,比如LISP,引入新的问题和处理故障和攻击的挑战。要捕捉的基本组成部分,我们介绍一个简单的地图和ENCAP协议(SMEP)。有些故障处理从传统路由协议方法也适用于SMEP,但这些方法单独是不够的。 SMEP设计选择,特别是测绘传播,对是否需要新的技术有很大的影响。在某些情况下,单独的控制面不能充分处理故障,而不支持数据平面和攻击可能更难诊断。结果发现新的潜在的故障和攻击,并可以帮助设计人员提高地图与ENCAP协议健壮性。我们通过分析两个非常不同类型的地图和ENCAP协议,MPLS-VPN和LISP说明我们的工作带来的好处。

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