DocumentCode :
3531361
Title :
Design for Security of Block Cipher S-Boxes to Resist Differential Power Attacks
Author :
Mazumdar, Bodhisatwa ; Mukhopadhyay, Debdeep ; Sengupta, Indranil
Author_Institution :
Dept. of Comput. Sci. & Eng., Indian Inst. of Technol. Kharagpur, Kharagpur, India
fYear :
2012
fDate :
7-11 Jan. 2012
Firstpage :
113
Lastpage :
118
Abstract :
This paper proposes an S-box construction of AES-128 block cipher which is more robust to differential power analysis (DPA) attacks than that of AES-128 implemented with Rijndael S-box while having similar cryptographic properties. The proposed S-box avoids use of countermeasures for thwarting DPA attacks thus consuming lesser area and power in the embedded hardware and still being more DPA resistive compared to Rijndael S-box. The design has been prototyped on Xilinx FPGA Spartan device XC3S400-4PQ208 and the power traces of the two different running AES-128 algorithms with the proposed and Rijndael S-boxes have been analyzed separately. The experimental results of the FPGA implementations show a lesser gate count consumption and increased throughput for the AES-128 with proposed S-box as that when implemented with Rijndael S-box on the same FPGA device. The requirement of higher number of power traces to perform DPA analysis on AES-128 with RAIN S-box as compared to that implemented with Rijndael S-box is an experimental validation of the theoretical claim of lower transparency order computed for RAIN S-box as being more DPA resistant than that of Rijndael S-box.
Keywords :
cryptography; field programmable gate arrays; AES-128 block cipher S-box construction; DPA attacks; FPGA device; RAIN S-box; Rijndael S-box; Xilinx FPGA Spartan device XC3S400-4PQ208; block cipher S-boxes security design; cryptographic properties; differential power analysis attacks; Algorithm design and analysis; Boolean functions; Cryptography; Field programmable gate arrays; Rain; Robustness; Differential Cryptanalysis; Differential Power Analysis; Linear Cryptanalysis; S-box; Side-Channel Attacks; Transparency Order;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
VLSI Design (VLSID), 2012 25th International Conference on
Conference_Location :
Hyderabad
ISSN :
1063-9667
Print_ISBN :
978-1-4673-0438-2
Type :
conf
DOI :
10.1109/VLSID.2012.56
Filename :
6167738
Link To Document :
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