结构化点对点覆盖的性能和可靠性

M. Castro, Manuel Costa, A. Rowstron
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引用次数: 202

摘要

结构化点对点(P2P)覆盖网络为构建分布式应用程序提供了一个有用的基础。它们将对象键映射到覆盖节点,并提供向负责键的节点发送消息的原语。例如,它们可以实现分布式哈希表和多播树。然而,在现实环境中,存在对这些覆盖的性能和可靠性的担忧。一些研究表明,当前的P2P环境具有很高的流失率:节点不断地加入和离开覆盖层。本文提出了一种连续检测和修复叠加层的技术,使叠加层在实际环境中具有较高的可靠性和良好的性能。在节点到达和离开的真实轨迹指导下,采用故障注入的大规模网络仿真实验对这些技术进行了评估。结果表明,之前的担忧是没有根据的;我们的技术可以在实际环境中实现可靠的路由,平均延迟长度低于2,每个节点的维护开销低于每秒半条消息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance and dependability of structured peer-to-peer overlays
Structured peer-to-peer (P2P) overlay networks provide a useful substrate for building distributed applications. They map object keys to overlay nodes and offer a primitive to send a message to the node responsible for a key. They can implement, for example, distributed hash tables and multicast trees. However, there are concerns about the performance and dependability of these overlays in realistic environments. Several studies have shown that current P2P environments have high churn rates: nodes join and leave the overlay continuously. This paper presents techniques that continuously detect faults and repair the overlay to achieve high dependability and good performance in realistic environments. The techniques are evaluated using large-scale network simulation experiments with fault injection guided by real traces of node arrivals and departures. The results show that previous concerns are unfounded; our techniques can achieve dependable routing in realistic environments with an average delay stretch below two and a maintenance overhead of less than half a message per second per node.
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