DocumentCode :
33721
Title :
Fault Analysis-Based Logic Encryption
Author :
Rajendran, Jeyavijayan ; Huan Zhang ; Chi Zhang ; Rose, Garrett S. ; Youngok Pino ; Sinanoglu, Ozgur ; Karri, Ramesh
Author_Institution :
Electr. & Comput. Eng. Dept., New York Univ., New York, NY, USA
Volume :
64
Issue :
2
fYear :
2015
fDate :
Feb. 2015
Firstpage :
410
Lastpage :
424
Abstract :
Globalization of the integrated circuit (IC) design industry is making it easy for rogue elements in the supply chain to pirate ICs, overbuild ICs, and insert hardware Trojans. Due to supply chain attacks, the IC industry is losing approximately $4 billion annually. One way to protect ICs from these attacks is to encrypt the design by inserting additional gates such that correct outputs are produced only when specific inputs are applied to these gates. The state-of-the-art logic encryption technique inserts gates randomly into the design, but does not necessarily ensure that wrong keys corrupt the outputs. Our technique ensures that wrong keys corrupt the outputs. We relate logic encryption to fault propagation analysis in IC testing and develop a fault analysis-based logic encryption technique. This technique enables a designer to controllably corrupt the outputs. Specifically, to maximize the ambiguity for an attacker, this technique targets 50% Hamming distance between the correct and wrong outputs (ideal case) when a wrong key is applied. Furthermore, this 50% Hamming distance target is achieved using a smaller number of additional gates when compared to random logic encryption.
Keywords :
cryptography; fault diagnosis; integrated circuit design; integrated circuit testing; invasive software; logic gates; Hamming distance; IC design industry; IC testing; fault analysis-based logic encryption; fault propagation analysis; gates; hardware Trojans; integrated circuit design industry; random logic encryption; supply chain attacks; Circuit faults; Encryption; Foundries; Integrated circuits; Logic gates; Testing; Automatic test pattern generation; IC piracy; IP piracy; combinational logic circuit; hardware security; integrated circuit testing; logic obfuscation;
fLanguage :
English
Journal_Title :
Computers, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9340
Type :
jour
DOI :
10.1109/TC.2013.193
Filename :
6616532
Link To Document :
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