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An Adaptable Rule Placement for Software-Defined Networks

机译:适用于软件定义网络的适应性规则放置

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摘要

There is a strong trend in networking to move towards Software-Defined Networks (SDN). SDNs enable easier network configuration through a separation between a centralized controller and a distributed data plane comprising a network of switches. The controller implements network policies through installing rules on switches. Recently the "Big Switch" abstraction [1] was proposed as a specification mechanism for high-level network behavior, i.e., the network policies. The network operating system or compiler can use his specification for placing rules on individual switches. However, this is constrained by the limited capacity of the Ternary Content Addressable Memories (TCAMs) used for rules in each switch. We propose an Integer Linear Programming (ILP) based solution for placing rules on switches for a given firewall policy while optimizing for the total number of rules and meeting the switch capacity constraints. Experimental results demonstrate that our approach is scalable to practical sized networks.
机译:在网络领域,存在一种向软件定义网络(SDN)过渡的强烈趋势。 SDN通过集中式控制器与包含交换机网络的分布式数据平面之间的分离,使网络配置更加容易。控制器通过在交换机上安装规则来实施网络策略。最近,提出了“大交换机”抽象[1]作为用于高级网络行为即网络策略的规范机制。网络操作系统或编译器可以使用其规范在各个交换机上放置规则。但是,这受限于用于每个交换机中的规则的三进制内容可寻址存储器(TCAM)的容量有限。我们提出了一种基于整数线性规划(ILP)的解决方案,用于针对给定的防火墙策略在交换机上放置规则,同时优化规则的总数并满足交换机的容量限制。实验结果表明,我们的方法可扩展到实际规模的网络。

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