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2010 18th IEEE Annual International Symposium on Field-Programmable Custom Computing Machines
BURAQ: A Dynamically Reconfigurable System for Stateful Measurement of Network Traffic
Charlotte, North Carolina, USA
May 02-May 04
ISBN: 978-0-7695-4056-6
| ASCII Text | x | ||
| Faisal Khan, Nicholas Hosein, Scott Vernon, Soheil Ghiasi, "BURAQ: A Dynamically Reconfigurable System for Stateful Measurement of Network Traffic," Field-Programmable Custom Computing Machines, Annual IEEE Symposium on, pp. 185-192, 2010 18th IEEE Annual International Symposium on Field-Programmable Custom Computing Machines, 2010. | |||
| BibTex | x | ||
| @article{ 10.1109/FCCM.2010.36, author = {Faisal Khan and Nicholas Hosein and Scott Vernon and Soheil Ghiasi}, title = {BURAQ: A Dynamically Reconfigurable System for Stateful Measurement of Network Traffic}, journal ={Field-Programmable Custom Computing Machines, Annual IEEE Symposium on}, volume = {0}, year = {2010}, isbn = {978-0-7695-4056-6}, pages = {185-192}, doi = {http://doi.ieeecomputersociety.org/10.1109/FCCM.2010.36}, publisher = {IEEE Computer Society}, address = {Los Alamitos, CA, USA}, } | |||
| RefWorks Procite/RefMan/Endnote | x | ||
| TY - CONF JO - Field-Programmable Custom Computing Machines, Annual IEEE Symposium on TI - BURAQ: A Dynamically Reconfigurable System for Stateful Measurement of Network Traffic SN - 978-0-7695-4056-6 SP185 EP192 A1 - Faisal Khan, A1 - Nicholas Hosein, A1 - Scott Vernon, A1 - Soheil Ghiasi, PY - 2010 VL - 0 JA - Field-Programmable Custom Computing Machines, Annual IEEE Symposium on ER - | |||
DOI Bookmark: http://doi.ieeecomputersociety.org/10.1109/FCCM.2010.36
Programmable analysis of network traffic is critical for wide range of higher level traffic engineering and anomaly detection applications. Such applications demand stateful and programmable network traffic measurements (NTM) at high throughputs. We exploit the features and requirements of NTM, and develop an application-specific FPGA based Partial Dynamic Reconfiguration (PDR) scheme that is tailored to NTM problem. PDR has traditionally been done through swapping of statically compiled FPGA configuration data. Besides being latency intensive, static compilation cannot take into account exact requirements as they appear during real-time in many applications like NTM. In this paper, we make novel use of fine-grained PDR, performing minute logic changes in real-time and demonstrate its effectiveness in a prototype solution for programmable and real-time NTM. We specifically make use of flexibility available through the application and present a number of novel tools and algorithms that enabled developing the BURAQ system. Our results show 4x area and 1.3x latency improvements of BURAQ from a comparative statically compiled recent solution.
Citation:
Faisal Khan, Nicholas Hosein, Scott Vernon, Soheil Ghiasi, "BURAQ: A Dynamically Reconfigurable System for Stateful Measurement of Network Traffic," fccm, pp.185-192, 2010 18th IEEE Annual International Symposium on Field-Programmable Custom Computing Machines, 2010
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