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Reroute on loop in anonymous peer-to-peer content sharing networks

机译:在匿名对等内容共享网络中循环重新路由

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Detecting and handling routing loops is a critical issue in the design of anonymous peer-to-peer content sharing networks (apCSNs). A principal requirement of such a scheme is that it should not leak any message forwarding information that can undermine the user anonymity of the resulting apCSN. A number of loop handling schemes have been developed in apCSNs such as Freenet and GNUnet. However, they all leak certain level of message forwarding information, which can be exploited to undermine or compromise the user anonymity. In this paper we develop a new loop handling scheme named Reroute-on-Loop (ROL) that will not leak any message forwarding information. Using the Thynix simulator developed by the Freenet project, we show that overall ROL only has minor performance impacts on message path lengths compared to the current loop handling scheme of Freenet on various network topologies, ranging from small-world topologies to random topologies. For example, the average routing path lengths of ROL are only increased by less than 1 hop compared to those with the current loop handling scheme of Freenet on small-world network topologies. Our performance studies confirm that ROL is a practical scheme, and can be deployed on Freenet and similar apCSN systems.
机译:在设计匿名对等内容共享网络(apCSN)时,检测和处理路由环路是一个关键问题。这种方案的主要要求是,它不应泄漏任何可能破坏所得apCSN的用户匿名性的消息转发信息。在apCSN中开发了许多循环处理方案,例如Freenet和GNUnet。但是,它们都会泄漏一定级别的消息转发信息,这些信息可以被用来破坏或损害用户的匿名性。在本文中,我们开发了一种新的循环处理方案,称为循环重路由(ROL),该方案不会泄漏任何消息转发信息。使用Freenet项目开发的Thynix模拟器,我们发现与Freenet当前在各种网络拓扑(从小世界拓扑到随机拓扑)上的循环处理方案相比,总体ROL对消息路径长度的性能影响较小。例如,与小世界网络拓扑上采用Freenet当前循环处理方案的ROL相比,ROL的平均路由路径长度仅增加了不到1跳。我们的性能研究证实,ROL是一种可行的方案,并且可以部署在Freenet和类似的apCSN系统上。

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