实现声明性覆盖

B. T. Loo, Tyson Condie, J. Hellerstein, Petros Maniatis, Timothy Roscoe, I. Stoica
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引用次数: 377

摘要

覆盖网络今天被用于各种分布式系统,从文件共享和存储系统到通信基础设施。然而,设计、构建和调整这些覆盖以适应预期的应用程序和目标环境是一个困难且耗时的过程。为了简化这种覆盖网络的开发和部署,我们实现了P2,这是一个使用声明性逻辑语言以高度紧凑和可重用的形式表达覆盖网络的系统。P2可以用16条规则表达一个narada风格的网状网络,而Chord结构覆盖只用47条规则。P2使用数据流架构直接解析和执行这些规范,以构建和维护覆盖网络。我们描述了P2方法,我们的实现是如何工作的,并通过实验展示了它在规范复杂性和性能之间的折衷点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementing declarative overlays
Overlay networks are used today in a variety of distributed systems ranging from file-sharing and storage systems to communication infrastructures. However, designing, building and adapting these overlays to the intended application and the target environment is a difficult and time consuming process.To ease the development and the deployment of such overlay networks we have implemented P2, a system that uses a declarative logic language to express overlay networks in a highly compact and reusable form. P2 can express a Narada-style mesh network in 16 rules, and the Chord structured overlay in only 47 rules. P2 directly parses and executes such specifications using a dataflow architecture to construct and maintain overlay networks. We describe the P2 approach, how our implementation works, and show by experiment its promising trade-off point between specification complexity and performance.
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