主动sdn控制器攻击与故障恢复

M. Azab, J. Fortes
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引用次数: 14

摘要

SDN网络主要依赖于一组软件定义的模块,运行在通用的硬件平台上,由中央SDN控制器进行管理。控制器和底层主机之间的紧密耦合和缺乏隔离限制了控制器抵御基于主机的攻击和故障的弹性。该控制器是单点故障,也是攻击者的目标。“linux -容器”是一种成功的瘦虚拟化技术,它为运行的应用程序提供了封装的、主机隔离的执行环境。本文提出了一种基于linux容器的控制器沙箱机制PAFR。PAFR支持控制器/主机隔离、即插即用操作、故障和攻击弹性执行以及快速恢复。PAFR采用并管理实时远程检查点和不同主机之间的迁移,以避免故障和攻击。实验和模拟表明,频繁使用PAFR的实时迁移可以最大限度地减少成功攻击/失败的机会,而对网络性能的影响有限或没有影响。
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Towards proactive SDN-controller attack and failure resilience
SDN networks rely mainly on a set of software defined modules, running on generic hardware platforms, and managed by a central SDN controller. The tight coupling and lack of isolation between the controller and the underlying host limit the controller resilience against host-based attacks and failures. That controller is a single point of failure and a target for attackers. “Linux-containers” is a successful thin virtualization technique that enables encapsulated, host-isolated execution-environments for running applications. In this paper we present PAFR, a controller sandboxing mechanism based on Linux-containers. PAFR enables controller/host isolation, plug-and-play operation, failure-and-attack-resilient execution, and fast recovery. PAFR employs and manages live remote checkpointing and migration between different hosts to evade failures and attacks. Experiments and simulations show that the frequent employment of PAFR's live-migration minimizes the chance of successful attack/failure with limited to no impact on network performance.
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