Title :
FAIR: Forwarding Accountability for Internet Reputability
Author :
Christos Pappas;Raphael M. Reischuk;Adrian Perrig
Author_Institution :
ETH Zurich, Zurich, Switzerland
Abstract :
This paper presents FAIR, a forwarding accountability mechanism that incentivizes ISPs to apply stricter security policies to their customers. The Autonomous System (AS) of the receiver specifies a traffic profile that the sender AS must adhere to. Transit ASes on the path mark packets. In case of traffic profile violations, the marked packets are used as a proof of misbehavior. FAIR introduces low bandwidth overhead and requires no per-packet and no per-flow state for forwarding. We describe integration with IP and demonstrate a software switch running on commodity hardware that can switch packets at a line rate of 120 Gbps, and can forward 140M minimum-sized packets per second, limited by the hardware I/O subsystem. Moreover, this paper proposes a "suspicious bit" for packet headers -- an application that builds on top of FAIR´s proofs of misbehavior and flags packets to warn other entities in the network.
Keywords :
"Security","Servers","Internet","Bandwidth","Proposals","Protocols","IP networks"
Conference_Titel :
Network Protocols (ICNP), 2015 IEEE 23rd International Conference on
DOI :
10.1109/ICNP.2015.22