DocumentCode
3208804
Title
A Simulation-Based Methodology for Evaluating the DPA-Resistance of Cryptographic Functional Units with Application to CMOS and MCML Technologies
Author
Regazzoni, Francesco ; Badel, Stéphane ; Eisenbarth, Thomas ; Grobschadl, J. ; Poschmann, Axel ; Toprak, Zeynep ; Macchetti, Marco ; Pozzi, Laura ; Paar, Christof ; Leblebici, Yusuf ; Ienne, Paolo
Author_Institution
Lugano Univ., Lugano
fYear
2007
fDate
16-19 July 2007
Firstpage
209
Lastpage
214
Abstract
This paper explores the resistance of MOS current mode logic (MCML) against differential power analysis (DPA) attacks. Circuits implemented in MCML, in fact, have unique characteristics both in terms of power consumption and the dependency of the power profile from the input signal pattern. Therefore, MCML is suitable to protect cryptographic hardware from DPA and similar side-channel attacks. In order to demonstrate the effectiveness of different logic styles against power analysis attacks, the non-linear bijective function of the Kasumi algorithm (known as substitution box S7) was implemented with CMOS and MCML technology, and a set of attacks was performed using power traces derived from SPICE-level simulations. Although all keys were discovered for CMOS, only very few attacks to MCML were successful.
Keywords
CMOS logic circuits; SPICE; circuit simulation; cryptography; CMOS; DPA-resistance evaluation; Kasumi algorithm; MCML; cryptographic functional units; cryptographic hardware; differential power analysis; nonlinear bijective function; power consumption; side-channel attacks; simulation-based methodology; substitution box S7; Algorithm design and analysis; Analytical models; CMOS logic circuits; CMOS technology; Circuit simulation; Cryptography; Energy consumption; Hardware; Performance analysis; Protection;
fLanguage
English
Publisher
ieee
Conference_Titel
Embedded Computer Systems: Architectures, Modeling and Simulation, 2007. IC-SAMOS 2007. International Conference on
Conference_Location
Samos
Print_ISBN
1-4244-1058-4
Type
conf
DOI
10.1109/ICSAMOS.2007.4285753
Filename
4285753
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