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Composing middlebox and traffic engineering policies in SDNs

机译:组合SDN中的中间盒和流量工程策略

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Middleboxes present new requirements that need to be integrated with traffic engineering applications that are already complex and consider myriad factors (e.g., routing, QoS, load-balancing). While it is possible to revisit traffic engineering algorithms to explicitly integrate middleboxes, such an approach is not compositional. Existing efforts at compositional SDN application development do not apply since they support application composition after static packet-forwarding policies are generated by application modules. Consequently, routes computed by a traffic engineering module cannot be influenced by the constraints imposed by a module that specifies middlebox traversal requirements. In this paper, we explore an alternate approach where application composition is done prior to the generation of packet-forwarding policies. Each application is written as a logic program, and provides a set of requirements that must be respected by a synthesized solution. A constraint solving engine iterates over these requirements to search the solution space and find a solution respecting all the requirements. We illustrate our approach with a concrete case study, and implement it using the Z3 SMT solver [1]. Our initial results point to the promise of the approach.
机译:中间盒提出了新要求,这些新要求需要与已经非常复杂并考虑了无数因素(例如,路由,QoS,负载平衡)的流量工程应用程序集成。尽管可以重新审视流量工程算法以显式集成中间盒,但这种方法并不是组合式的。现有的合成SDN应用程序开发工作不适用,因为它们在应用程序模块生成静态数据包转发策略后支持应用程序合成。因此,由流量工程模块计算出的路线不会受到指定中间箱遍历要求的模块施加的约束的影响。在本文中,我们探索了一种替代方法,其中在生成数据包转发策略之前先完成应用程序组合。每个应用程序都是作为逻辑程序编写的,并提供了一组必须由综合解决方案遵守的要求。约束求解引擎对这些需求进行迭代,以搜索解决方案空间并找到符合所有需求的解决方案。我们通过一个具体的案例研究来说明我们的方法,并使用Z3 SMT求解器[1]来实现它。我们的初步结果表明了该方法的前景。

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