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ICE: A memory-efficient BGP route collecting engine

机译:ICE:一种内存高效的BGP路由收集引擎

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摘要

Since their deployment, BGP route collectors have played a fundamental role in investigating and detecting routing accidents and hijack attempts. However, an increasing number of detection techniques designed for real-time environments show that the lack of interactivity of route collectors represents a limitation to their efficacy, together with the small amount of sources from which data is collected. Both issues stem from the current implementation of route collectors, which relies on single-threaded and general-purpose routing suites to establish BGP sessions and collect data. With this implementation any interactive operation impacts on the collection process and the number of sessions that can be established is limited by memory usage, which is not optimized for route collecting purposes. In this paper we present ICE, a multi-threaded and memory-efficient BGP collecting engine which allows route collectors to overcome the above mentioned limitations. The multi-threaded environment allows us to solve the lack of interactiveness, allowing concurrent read/write operations. Memory efficiency has been obtained thanks to the design of a variant of the Liv-Zempel compression algorithms specifically tailored to operate within a BGP real-time collecting environment. The proposed technique exploits the high degree of repetitiveness characterizing BGP data and reduces the ICE memory usage by as much as 30%. (C) 2017 Elsevier B.V. All rights reserved.
机译:自部署以来,BGP路由收集器在调查和检测路由事故和劫持尝试中发挥了基础性作用。但是,为实时环境设计的越来越多的检测技术表明,路由收集器缺乏交互性,限制了其有效性,同时也收集了少量来源的数据。这两个问题都源于路由收集器的当前实现,该实现依赖于单线程和通用路由套件来建立BGP会话并收集数据。使用此实现,任何交互操作都会对收集过程产生影响,并且可以建立的会话数受内存使用量的限制,而内存使用情况并未针对路由收集目的进行优化。在本文中,我们介绍了ICE,这是一种多线程且内存高效的BGP收集引擎,它使路由收集器可以克服上述限制。多线程环境使我们能够解决缺乏交互性的问题,从而允许并发的读/写操作。由于专门设计用于在BGP实时收集环境中运行的Liv-Zempel压缩算法变体的设计,已获得了内存效率。提出的技术利用了高度重复性来表征BGP数据,并将ICE内存使用量减少了多达30%。 (C)2017 Elsevier B.V.保留所有权利。

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