DocumentCode :
1685527
Title :
Efficient packet matching for gigabit network intrusion detection using TCAMs
Author :
Gao, Ming ; Zhang, Kenong ; Lu, Jiahua
Author_Institution :
Syst. Eng. Inst., Xi´´an Jiaotong Univ., China
Volume :
1
fYear :
2006
Abstract :
Ternary content-addressable memories (TCAMs) have gained wide acceptance in the industry for storing and searching patterns in routers. But two important problems block the way to deploy TCAMs as deep package matching engines for network intrusion detection systems (NIDS): long patterns matching and range patterns matching. A novel high speed long patterns matching architecture using cascade TCAMs for large signature set based NIDS is presented in this paper. Systems to handle tens of thousands of signatures with thousands of bytes length each can be built on such architecture. A novel efficient header rules matching system is proposed in this paper. This scheme offloads the range matching task to efficient specialized comparing engines in FPGAs so that it soIves the range matching problem with high throughout performance, about 250 million packets per second (Mpps) theoretically.
Keywords :
content-addressable storage; field programmable gate arrays; pattern matching; search engines; security of data; telecommunication security; FPGA; TCAM; field programmable gate array; gigabit network intrusion detection system; header rules matching system; long pattern matching architecture; packet matching; range pattern matching; router; searching pattern; signature set based NIDS; ternary content-addressable memory; Engines; Ethernet networks; Field programmable gate arrays; Intrusion detection; Packaging; Pattern matching; Software performance; Spine; Systems engineering and theory; TCPIP;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Information Networking and Applications, 2006. AINA 2006. 20th International Conference on
ISSN :
1550-445X
Print_ISBN :
0-7695-2466-4
Type :
conf
DOI :
10.1109/AINA.2006.164
Filename :
1620200
Link To Document :
بازگشت