An Efficient Countermeasure against Fault Sensitivity Analysis Using Hybrid Parallel S-boxes

Fault Sensitivity Analysis (FSA) is one of the fault attacks which can threaten the security of cryptographic module equipped with conventional countermeasure. In this paper, we present an efficient countermeasure against FSA based on mask strategy and hybrid parallel S-boxes structure. The masked A...

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Vydáno v:Lecture notes in engineering and computer science Ročník 2231/2232; s. 1
Hlavní autoři: Li, Qipeng, Zhou, Fang, Wu, Ning, Yasir
Médium: Journal Article
Jazyk:angličtina
Vydáno: Hong Kong International Association of Engineers 25.10.2017
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ISSN:2078-0958, 2078-0966
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Abstract Fault Sensitivity Analysis (FSA) is one of the fault attacks which can threaten the security of cryptographic module equipped with conventional countermeasure. In this paper, we present an efficient countermeasure against FSA based on mask strategy and hybrid parallel S-boxes structure. The masked AES circuit with the hybrid parallel S-boxes structure was proposed. The hybrid parallel S-boxes structure is composed of random selectors and four kinds of mask S-boxes. The proposed countermeasure can destroy the relationship between the fault sensitivity and the input Hamming weight, but also destroy collisions among the fault sensitivity characteristics of S-boxes. We conduct two kinds of FSA attacks against the AES circuit implemented on Xilinx Spartan FPGA, and the results show that FSA cannot threaten the security of the AES circuit with proposed countermeasure.
AbstractList Fault Sensitivity Analysis (FSA) is one of the fault attacks which can threaten the security of cryptographic module equipped with conventional countermeasure. In this paper, we present an efficient countermeasure against FSA based on mask strategy and hybrid parallel S-boxes structure. The masked AES circuit with the hybrid parallel S-boxes structure was proposed. The hybrid parallel S-boxes structure is composed of random selectors and four kinds of mask S-boxes. The proposed countermeasure can destroy the relationship between the fault sensitivity and the input Hamming weight, but also destroy collisions among the fault sensitivity characteristics of S-boxes. We conduct two kinds of FSA attacks against the AES circuit implemented on Xilinx Spartan FPGA, and the results show that FSA cannot threaten the security of the AES circuit with proposed countermeasure.
Author Yasir
Li, Qipeng
Wu, Ning
Zhou, Fang
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Cryptography
Security
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Sensitivity analysis
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Title An Efficient Countermeasure against Fault Sensitivity Analysis Using Hybrid Parallel S-boxes
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