MIDAS: Middlebox discovery and selection for on-path flow processing

COMSNETS(2015)

引用 47|浏览31
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摘要
The deployment of micro-datacenters for network function virtualization (NFV) by Internet Service Providers creates opportunities for flow processing along the traffic path. On-path processing requires the discovery of the middleboxes that will be traversed by each flow and the assignment of network functions (NFs) to middleboxes, while preserving the order of the NFs as specified in the service chain. NF location dependencies may require flow processing establishment across multiple NF Providers (NFPs). This entails additional challenges for middlebox discovery and selection, stemming from the NFPs' restrictions in information disclosure and interoperability. To address these issues, we present MIDAS, an architecture for the coordination of middlebox discovery and selection across multiple NFPs. MIDAS relies on a centralized middlebox controller in each NFP to provide interoperability among NFPs for flow processing setup. MIDAS establishes on-path processing via middlebox signaling, controller chaining, and Multi-Party Computation (MPC) based middlebox selection. We particularly employ MPC to preserve the confidentiality of middlebox utilization across the NFPs. We study the feasibility of MIDAS using a prototype implementation and further present simulation results to assess the efficiency of our middlebox selection approach.
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关键词
open systems,nf providers,computer centres,service chain,middlebox discovery and selection,on-path flow processing,nfp,middlebox signaling,nf location dependencies,centralized middlebox controller,mpc based middlebox selection,internet,nfv,internet service providers,controller chaining,network function virtualization,telecommunication traffic,information disclosure,microdata center deployment,multiparty computation based middlebox selection,midas,information interoperability,hardware,irrigation,logic gates,lead
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