Related-key attacks on block ciphers

Download
2009
Darbuka, Aslı
One of the most important cryptographic primitives is the concept of block ciphers which yields confidentiality for data transmission in communication. Therefore, to be sure that confidentiality is provided, it is necessary to analyse the security of block ciphers by investigating their resistance to existing attacks. For this reason, related-key attacks gain much popularity in recent years and have been applied to many block ciphers with weak key schedules. In this work, our main motivation is to cover types of related-key attacks on block ciphers and exemplify them. \\ For years, cryptanalysts have been investigating the security of the block cipher XTEA and proposed several attacks on the cipher. First in FSE'02, Moon et al. presented a 14-round impossible differential attack on XTEA. Then in ICISC'03, Hong et al. proposed a 15-round differential attack and a 23-round truncated differential attack on XTEA. In FSE'04, Ko et al. proposed a 27-round related-key truncated differential attack on XTEA. Afterwards, in Vietcrypt'06, Lee et al. proposed a 34-round related-key rectangle attack on XTEA. Finally in 2008, Lu improved this attack to a related-key rectangle attack on 36-round XTEA which is the best attack on XTEA in terms of the number of attacked rounds. In this thesis, we also analyse differential properties of both structure and key schedule of XTEA block cipher and introduce our 25-round related-key impossible differential distinguisher for XTEA.

Suggestions

Combined attacks on block ciphers
Öztop, Neşe; Doğanaksoy, Ali; Department of Cryptography (2009)
Cryptanalytic methods are very important tools in terms of evaluating the security of block ciphers in a more accurate and reliable way. Differential and linear attacks have been the most effective cryptanalysis methods since the early 1990s. However, as the technology developed and more secure ciphers are designed, these fundamental methods started to be not so efficient. In order to analyze the ciphers, new methods should be introduced. One approach is inventing new techniques that are different from the ...
On statistical analysis of synchronous stream ciphers
Sönmez Turan, Meltem; Doğanaksoy, Ali; Department of Cryptography (2008)
Synchronous stream ciphers constitute an important class of symmetric ciphers. After the call of the eSTREAM project in 2004, 34 stream ciphers with different design approaches were proposed. In this thesis, we aim to provide a general framework to analyze stream ciphers statistically. Firstly, we consider stream ciphers as pseudo random number generators and study the quality of their output. We propose three randomness tests based on one dimensional random walks. Moreover, we theoretically and experimenta...
Basic cryptanalysis methods on block ciphers
Çelik, Dilek; Doğanaksoy, Ali; Department of Cryptography (2010)
Differential cryptanalysis and linear cryptanalysis are the first significant methods used to attack on block ciphers. These concepts compose the keystones for most of the attacks in recent years. Also, while designing a cipher, these attacks should be taken into consideration and the cipher should be created as secure against them. Although di fferential cryptanalysis and linear cryptanalysis are still important, they started to be ine cient due to the improvements in the technology. So, these attacks are ...
Analyzes of Block Recombination and Lazy Interpolation Methods and Their Applications to Saber
Aksoy, Berkin; Cenk, Murat; Department of Cryptography (2022-2-28)
Since the beginning of the National Institute of Standards and Technology (NIST), The Post-Quantum Cryptography (PQC) Standardization Process, efficient implementations of lattice-based algorithms have been studied extensively. Lattice-based NIST PQC finalists use polynomial or matrix-vector multiplications on the ring with type {Z}_{q}[x] / f(x). For convenient ring types, Number Theoretic Transform (NTT) can be used to perform multiplications as done in Crystals-KYBER among the finalists of the NIST PQC S...
Analysis of Block Recombination and Lazy Interpolation Methods and Their Applications to Saber
Aksoy, Berkin; Cenk, Murat (2022-01-01)
Since the beginning of the National Institute of Standards and Technology (NIST), The Post-Quantum Cryptog-raphy (PQC) Standardization Process, efficient implementations of lattice-based algorithms have been studied extensively. Lattice-based NIST PQC finalists use polynomial or matrix-vector multiplications on the ring with type Zq [x]/f(x). For convenient ring types, Number Theoretic Transform (NTT) can be used to perform multiplications as done in Crystals-KYBER among the finalists of the NIST PQC Standa...
Citation Formats
A. Darbuka, “Related-key attacks on block ciphers,” M.S. - Master of Science, Middle East Technical University, 2009.