Veriflow

Author:

Khurshid Ahmed1,Zhou Wenxuan1,Caesar Matthew1,Godfrey P. Brighten1

Affiliation:

1. University of Illinois at Urbana-Champaign, Urbana, IL, USA

Abstract

Networks are complex and prone to bugs. Existing tools that check configuration files and data-plane state operate offline at timescales of seconds to hours, and cannot detect or prevent bugs as they arise. Is it possible to check network-wide invariants in real time , as the network state evolves? The key challenge here is to achieve extremely low latency during the checks so that network performance is not affected. In this paper, we present a preliminary design, VeriFlow, which suggests that this goal is achievable. VeriFlow is a layer between a software-defined networking controller and network devices that checks for network-wide invariant violations dynamically as each forwarding rule is inserted. Based on an implementation using a Mininet OpenFlow network and Route Views trace data, we find that VeriFlow can perform rigorous checking within hundreds of microseconds per rule insertion.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications,Software

Reference18 articles.

1. Mininet: Rapid prototyping for software defined networks. http://yuba.stanford.edu/foswiki/bin/view/OpenFlow/Mininet. Mininet: Rapid prototyping for software defined networks. http://yuba.stanford.edu/foswiki/bin/view/OpenFlow/Mininet.

2. OpenFlow switch specification. http://www.openflow.org/documents/openflow-spec-v1.1.0.pdf. OpenFlow switch specification. http://www.openflow.org/documents/openflow-spec-v1.1.0.pdf.

3. Rocketfuel: An ISP topology mapping engine. http://www.cs.washington.edu/research/networking/rocketfuel/. Rocketfuel: An ISP topology mapping engine. http://www.cs.washington.edu/research/networking/rocketfuel/.

4. University of Oregon Route Views Project. http://www.routeviews.org/. University of Oregon Route Views Project. http://www.routeviews.org/.

5. FlowChecker

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