Extending Routes in Tor to Achieve Recipient Anonymity against the Global Adversary

F. Buccafurri, V. D. Angelis, Maria Francesca Idone, Cecilia Labrini
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Abstract

Tor is a famous routing overlay network based on the Onion multi-layered encryption to support communication anonymity in a threat model in which some network nodes are malicious. However, Tor does not provide any protection against the global passive adversary. In this threat model, an idea to obtain recipient anonymity, which is enough to have relationship anonymity, is to hide the recipient among a sufficiently large anonymity set. However, this would lead to high latency both in the set-up phase (which has a quadratic cost in the number of involved nodes) and in the successive communication. In this paper, we propose a way to arrange a Tor circuit with a tree-like topology, in which the anonymity set consists of all its nodes, whereas set-up and communication latency depends on the number of the sole branch nodes (which is a small fraction of all the nodes). Basically, the cost goes down from quadratic to linear. Anonymity is obtained by applying a broadcast-based technique for the forward message, and cover traffic (generated by the terminal-chain nodes) plus mixing over branch nodes, for the response.
在Tor中扩展路由以实现对全球对手的接收者匿名
Tor是一种著名的基于洋葱多层加密的路由覆盖网络,在某些网络节点存在恶意威胁的情况下支持通信匿名。然而,Tor不提供任何针对全球被动对手的保护。在该威胁模型中,为了获得足以具有关系匿名性的接收者匿名性,将接收者隐藏在一个足够大的匿名集中。然而,这将导致在设置阶段(在涉及的节点数量上具有二次成本)和后续通信中的高延迟。在本文中,我们提出了一种树形拓扑的Tor电路布置方法,其中匿名集由其所有节点组成,而建立和通信延迟取决于唯一分支节点的数量(它是所有节点的一小部分)。基本上,成本从二次元下降到线性元。匿名是通过对转发消息和覆盖流量(由终端链节点生成)以及分支节点上的混合应用基于广播的技术来获得的。
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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