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Complexity Measures of Cryptographically Secure Boolean Functions

Complexity Measures of Cryptographically Secure Boolean Functions

Chungath Srinivasan, K.V. Lakshmy, M. Sethumadhavan
ISBN13: 9781609601232|ISBN10: 1609601238|EISBN13: 9781609601256
DOI: 10.4018/978-1-60960-123-2.ch015
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MLA

Srinivasan, Chungath, et al. "Complexity Measures of Cryptographically Secure Boolean Functions." Cyber Security, Cyber Crime and Cyber Forensics: Applications and Perspectives, edited by Raghu Santanam, et al., IGI Global, 2011, pp. 220-230. https://doi.org/10.4018/978-1-60960-123-2.ch015

APA

Srinivasan, C., Lakshmy, K., & Sethumadhavan, M. (2011). Complexity Measures of Cryptographically Secure Boolean Functions. In R. Santanam, M. Sethumadhavan, & M. Virendra (Eds.), Cyber Security, Cyber Crime and Cyber Forensics: Applications and Perspectives (pp. 220-230). IGI Global. https://doi.org/10.4018/978-1-60960-123-2.ch015

Chicago

Srinivasan, Chungath, K.V. Lakshmy, and M. Sethumadhavan. "Complexity Measures of Cryptographically Secure Boolean Functions." In Cyber Security, Cyber Crime and Cyber Forensics: Applications and Perspectives, edited by Raghu Santanam, M. Sethumadhavan, and Mohit Virendra, 220-230. Hershey, PA: IGI Global, 2011. https://doi.org/10.4018/978-1-60960-123-2.ch015

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Abstract

Boolean functions are used in modern cryptosystems for providing confusion and diffusion. To achieve required security by resistance to various attacks such as algebraic attacks, correlation attacks, linear, differential attacks, several criteria for Boolean functions have been established over years by cryptographic community. These criteria include nonlinearity, avalanche criterion and correlation immunity and the like. The chapter is an attempt to present state of the art on properties of such Boolean functions and to suggest several directions for further research.

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