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SPV

机译:SPV。

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摘要

As our economy and critical infrastructure increasingly relies on the Internet, the insecurity of the underlying border gateway routing protocol (BGP) stands out as the Achilles heel. Recent misconfigurations and attacks have demonstrated the brittleness of BGP. Securing BGP has become a priority.In this paper, we focus on a viable deployment path to secure BGP. We analyze security requirements, and consider tradeoffs of mechanisms that achieve the requirements. In particular, we study how to secure BGP update messages against attacks. We design an efficient cryptographic mechanism that relies only on symmetric cryptographic primitives to guard an ASPATH from alteration, and propose the Secure Path Vector (SPV) protocol. In contrast to the previously proposed S-BGP protocol, SPV is around 22 times faster. With the current effort to secure BGP, we anticipate that SPV will contribute several alternative mechanisms to secure BGP, especially for the case of incremental deployments.
机译:随着我们的经济和关键基础设施越来越依赖互联网,潜在边境网关路由协议(BGP)的不安全性突出了Achilles脚跟。最近的错误配置和攻击已经证明了BGP的脆性。保护BGP已成为优先级。在本文中,我们专注于安全的部署路径来保护BGP。我们分析安全要求,并考虑实现要求的机制权衡。特别是,我们研究如何保护BGP更新攻击。我们设计一个有效的加密机制,依赖于对称加密原语来保护aspath免于改变,并提出安全路径向量(SPV)协议。与先前提出的S-BGP协议相比,SPV速度快22倍。凭借目前为安全BGP的努力,我们预计SPV将有多种替代机制来保护BGP,特别是对于增量部署的情况。

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