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首页> 外文期刊>IEEE transactions on network and service management >An Incrementally-Deployable P4-Enabled Architecture for Network-Wide Heavy-Hitter Detection
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An Incrementally-Deployable P4-Enabled Architecture for Network-Wide Heavy-Hitter Detection

机译:用于网络范围的重发者检测的可增量部署的P4启用体系结构

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The advent of Software-Defined Networking with OpenFlow first, and subsequently the emergence of programmable data planes, has boosted lots of research around many networking aspects: monitoring, security, traffic engineering. In the context of monitoring, most of the proposed solutions show the benefits of data plane programmability by simplifying the network complexity with a one big-switch abstraction. Only few papers look at network-wide solutions, but consider the network only composed by programmable devices. In this paper, we argue that the primary challenge for a successful adoption of those solutions is the deployment problem: how to compose and monitor a network consisting of both legacy and programmable switches? We propose an approach for incrementally deploy programmable devices in an ISP network with the goal of monitoring as many distinct network flows as possible. While assessing the benefits of our solution, we realized that proposed network-wide monitoring algorithms might not be optimized for a partial deployment scenario. We then also developed and implemented in P4 a novel strategy capable of detecting network-wide heavy flows: results show that it can achieve better accuracy than state-of-the-art solutions while relying on less information from the data plane and leading to only marginal additional packet processing time.
机译:首先,随着OpenFlow的软件定义网络的出现,以及随后可编程数据平面的出现,已经在许多网络方面推动了许多研究:监控,安全性,流量工程。在监视的上下文中,大多数提出的解决方案通过使用一个大交换机抽象来简化网络复杂性,从而显示了数据平面可编程性的好处。只有很少的论文研究网络范围的解决方案,但考虑到仅由可编程设备组成的网络。在本文中,我们认为成功采用这些解决方案的主要挑战是部署问题:如何组成和监视由传统交换机和可编程交换机组成的网络?我们提出了一种在ISP网络中增量部署可编程设备的方法,旨在监视尽可能多的不同网络流量。在评估我们解决方案的好处时,我们意识到建议的网络范围监视算法可能不会针对部分部署方案进行优化。然后,我们还在P4中开发并实施了一种能够检测网络范围内大量流量的新颖策略:结果表明,与现有解决方案相比,它可以实现更高的准确性,同时依赖于来自数据平面的更少信息,并且仅导致边际附加数据包处理时间。

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