Publication No 36638

Author(s)

Hauger, S.*; Scharf, M.*; Kögel, J.*; Suriyajan, C.

Title

Quick-Start and XCP on a Network Processor: Implementation Issues and Performance Evaluation

Topics

Computer Architecture; Broadband Networks; Internet

Methods

Computer Architecture; Measurement and Trials; Performance Evaluation; Protocol Engineering

Keywords

PROTOCOL IMPLEMENTATION; NETWORK PROCESSOR; TCP; CONGESTION CONTROL; PERFORMANCE MEASUREMENT; INTERNET; HIGH SPEED; HARDWARE; DELAY; THROUGHPUT

Abstract

The Quick-Start extension of the Transmission Control Protocol (TCP), as well as the Explicit Control Protocol (XCP), are experimental congestion control schemes that use router feedback to overcome limitations of TCP's standard mechanisms. Both approaches require additional packet processing in every router and therefore raise the question whether, and how, this can be achieved in high-speed routers. This paper studies the realization complexity of the Quick-Start and XCP router functions on a network processor. We show that in both cases synchronization issues among parallel processing entities have to be considered, and that this affects the router performance. We develop and compare different synchronization mechanisms for highly parallel packet processing. Our prototype implementation on an Intel IXP network processor allows to quantify the impact on throughput and delay caused by the additional packet processing in the fast path. The measurements reveal that Quick-Start and XCP processing is feasible at multiple Gbit/s line speed, with Quick-Start being simpler to scale.

Year

2008

Reference entry

Hauger, S.; Scharf, M.; Kögel, J.; Suriyajan, C.
Quick-Start and XCP on a Network Processor: Implementation Issues and Performance Evaluation
Proceedings of the IEEE International Conference on High Performance Switching and Routing (HPSR 2008), Shanghai, May 2008

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Authors marked with an asterisk (*) were IKR staff members at the time the publication has been written.