Dealing with Bootstrapping, Maintenance, and Network Partitions and Mergers in Structured Overlay Networks

T. Shafaat, A. Ghodsi, Seif Haridi
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引用次数: 4

Abstract

In the last decade, numerous structured overlay networks were proposed as a scalable infrastructure to build large-scale distributed systems under dynamic environments. These overlays were touted to be fault-tolerant and self-managing, yet, as we show in this paper, they fall short of handling some extreme scenarios they envision. These scenarios include bootstrapping, and underlying network partitions and mergers. We argue that handling such extreme scenarios is fundamental to providing a fault-tolerant and self-managing system, and thus, structured overlay networks should intrinsically be able to handle them. In this paper, we present ReCircle, an overlay algorithm that apart from performing periodic maintenance to handle churn like any other overlay, can merge multiple structured overlay networks. We show how such an algorithm can be used for decentralized bootstrapping. ReCircle does not have any extra cost during normal maintenance compared to an isolated overlay maintenance algorithm. Furthermore, the algorithm is tunable to tradeoff between bandwidth consumption and time to convergence during extreme events like bootstrapping and handling network partitions and mergers. We evaluate the algorithm extensively under various scenarios through simulation and experimentation on Planet Lab.
结构化覆盖网络中的自举、维护、网络划分和合并
在过去的十年中,许多结构化覆盖网络被提出作为一种可扩展的基础设施来构建动态环境下的大规模分布式系统。这些覆盖被吹捧为容错和自我管理,然而,正如我们在本文中所展示的,它们无法处理它们所设想的一些极端场景。这些场景包括引导、底层网络分区和合并。我们认为,处理这种极端情况是提供容错和自我管理系统的基础,因此,结构化覆盖网络本质上应该能够处理它们。在本文中,我们提出了ReCircle,一种覆盖算法,除了像任何其他覆盖一样执行定期维护来处理流失之外,还可以合并多个结构化覆盖网络。我们展示了如何将这样的算法用于分散引导。与孤立的覆盖层维护算法相比,在正常维护期间,循环没有任何额外的成本。此外,该算法是可调的,可以在极端事件(如引导和处理网络分区和合并)中权衡带宽消耗和收敛时间。我们通过Planet Lab的模拟和实验,在各种场景下对算法进行了广泛的评估。
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