Scalable packet classification

Author:

Baboescu Florin1,Varghese George1

Affiliation:

1. Dept. of Computer Science and Engineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA

Abstract

Packet classification is important for applications such as firewalls, intrusion detection, and differentiated services. Existing algorithms for packet classification reported in the literature scale poorly in either time or space as filter databases grow in size. Hardware solutions such as TCAMs do not scale to large classifiers. However, even for large classifiers (say 100,000 rules), any packet is likely to match a few (say 10) rules. Our paper seeks to exploit this observation to produce a scalable packet classification scheme called Aggregated Bit Vector (ABV). Our paper takes the bit vector search algorithm (BV) described in [11] (which takes linear time) and adds two new ideas, recursive aggregation of bit maps and filter rearrangement, to create ABV (which can take logarithmic time for many databases). We show that ABV outperforms BV by an order of magnitude using simulations on both industrial firewall databases and synthetically generated databases.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications,Software

Reference17 articles.

1. IETF - Differentiated Services (di .serv)Working Group http://www.ietf.org/html.charters/diffservcharter.html. IETF - Differentiated Services (di .serv)Working Group http://www.ietf.org/html.charters/diffservcharter.html.

2. Cisco - ArrowPoint Communications . http://www.arrowpoint.com 2000. Cisco - ArrowPoint Communications . http://www.arrowpoint.com 2000.

3. IPMA Statistics. MeritInc.- http://nic.merit.edu/ipma 2000. IPMA Statistics. MeritInc.- http://nic.merit.edu/ipma 2000.

4. F. Baboescu and G.Varghese.Aggregated bit vector search algorithms for packet .lter lookups.In UCSD Tech.Report cs2001-0673 June 2001. F. Baboescu and G.Varghese.Aggregated bit vector search algorithms for packet .lter lookups.In UCSD Tech.Report cs2001-0673 June 2001.

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