Abstract
AbstractWe introduce a formal language for specifying dynamic updates for Software Defined Networks. Our language builds upon Network Kleene Algebra with Tests (NetKAT) and adds constructs for synchronisations and multi-packet behaviour to capture the interaction between the control- and data-plane in dynamic updates. We provide a sound and ground-complete axiomatisation of our language. We exploit the equational theory and provide an efficient method for reasoning about safety properties. We implement our equational theory in DyNetiKAT – a tool prototype, based on the Maude Rewriting Logic and the NetKAT tool, and apply it to a case study. We show that we can analyse the case study for networks with hundreds of switches using our tool prototype.
Publisher
Springer International Publishing
Cited by
2 articles.
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1. Concurrent NetKAT with Ports;Proceedings of the 39th ACM/SIGAPP Symposium on Applied Computing;2024-04-08
2. P4R-Type: A Verified API for P4 Control Plane Programs;Proceedings of the ACM on Programming Languages;2023-10-16