Speedtrap:互联网规模的IPv6别名解析

M. Luckie, Robert Beverly, William Brinkmeyer, K. Claffy
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引用次数: 40

摘要

解决IPv6路由器别名的障碍阻碍了理解新兴的路由器级IPv6互联网拓扑结构。在这项工作中,我们设计、实现并验证了IPv6的第一个互联网级别名解析技术。我们的技术,speedtrap,利用了从路由器接口以特定时间模式诱导分片IPv6响应的能力,从而产生区分每个路由器的指纹。我们的算法克服了互联网规模IPv6别名分辨率使用碎片标识符值的三个基本挑战:(1)与IPv4不同,IPv6路由器上的标识符计数器没有自然速度,(2)这些计数器的值在路由器上是相似的,(3)收集推断所需的数据包大小是IPv4所需的46倍。我们通过使用CAIDA的分布式基础设施测量生成路由器级互联网IPv6拓扑来证明该技术的有效性。我们的初步工作代表了理解互联网IPv6路由器级拓扑的一步,这是关于IPv6网络弹性、安全性、策略和纵向演进的重要目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Speedtrap: internet-scale IPv6 alias resolution
Impediments to resolving IPv6 router aliases have precluded understanding the emerging router-level IPv6 Internet topology. In this work, we design, implement, and validate the first Internet-scale alias resolution technique for IPv6. Our technique, speedtrap, leverages the ability to induce fragmented IPv6 responses from router interfaces in a particular temporal pattern that produces distinguishing per-router fingerprints. Our algorithm surmounts three fundamental challenges to Internet-scale IPv6 alias resolution using fragment identifier values: (1) unlike for IPv4, the identifier counters on IPv6 routers have no natural velocity, (2) the values of these counters are similar across routers, and (3) the packet size required to collect inferences is 46 times larger than required in IPv4. We demonstrate the efficacy of the technique by producing router-level Internet IPv6 topologies using measurements from CAIDA's distributed infrastructure. Our preliminary work represents a step toward understanding the Internet's IPv6 router-level topology, an important objective with respect to IPv6 network resilience, security, policy, and longitudinal evolution.
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