Build One, Get One Free: Leveraging the Coexistence of Multiple P2P Overlay Networks

B. Maniymaran, M. Bertier, Anne-Marie Kermarrec
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引用次数: 38

Abstract

Many different P2P overlay networks providing various functionalities, targeting specific applications, have been proposed in the past five years. It is now reasonable to consider that multiple overlays may be deployed over a large set of nodes so that the most appropriate overlay might be chosen depending on the application. A physical peer may then host several instances of logical peers belonging to different overlay networks. In this paper, we show that the coexistence of a structured P2P overlay and an unstructured one may be leveraged so that, by building one, the other is automatically constructed as well. More specifically, we show that the randomness provided by an unstructured gossip-based overlay can be used to build the routing table of a structured P2P overlay and the randomness in the numerical proximity links in the structured networks provides the random peer sampling required by gossip-based unstructured overlays. In this paper, we show that maintaining the leaf set of Pastry and the proximity links of an unstructured overlay is enough to build the complete overlays. Simulation results comparing our approach with both a Pastry-like system and a gossip-based unstructured overlay show that we significantly reduce the overlay maintenance overhead without sacrificing the performance.
构建一个,免费获得一个:利用多个P2P覆盖网络的共存
在过去的五年中,已经提出了许多不同的P2P覆盖网络,提供各种功能,针对特定的应用。现在可以合理地考虑在一大批节点上部署多个覆盖层,以便根据应用程序选择最合适的覆盖层。然后,物理对等点可以承载属于不同覆盖网络的逻辑对等点的若干实例。在本文中,我们证明了结构化P2P覆盖和非结构化P2P覆盖的共存可以被利用,这样,通过构建一个,另一个也会自动构建。更具体地说,我们证明了非结构化基于八卦的覆盖所提供的随机性可以用于构建结构化P2P覆盖的路由表,结构化网络中数字邻近链路的随机性提供了基于八卦的非结构化覆盖所需的随机对等抽样。在本文中,我们证明了维持一个非结构化覆盖层的叶子集和邻近链接足以构建完整的覆盖层。仿真结果表明,我们的方法在不牺牲性能的情况下显著降低了覆盖层维护开销。
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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