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Tairong Shi
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2020 – today
- 2024
- [j14]Lin Ding, Zheng Wu, Guixian Zhang, Tairong Shi:
Quantum Guess and Determine Attack on Stream Ciphers. Comput. J. 67(1): 292-303 (2024) - [j13]Kai Zhang, Xuejia Lai, Lei Wang, Jie Guan, Bin Hu, Senpeng Wang, Tairong Shi:
Real-Time Related-Key Attack on Full-Round Shadow Designed for IoT Nodes. IEEE Trans. Computers 73(2): 613-620 (2024) - [j12]Tairong Shi, Wenling Wu, Bin Hu, Jie Guan, Han Sui, Senpeng Wang, Mengyuan Zhang:
Dedicated Quantum Attacks on XOR-Type Function With Applications to Beyond-Birthday- Bound MACs. IEEE Trans. Inf. Forensics Secur. 19: 5971-5984 (2024) - [j11]Kai Zhang, Senpeng Wang, Xuejia Lai, Lei Wang, Jie Guan, Bin Hu, Tairong Shi:
Impossible Differential Cryptanalysis and a Security Evaluation Framework for AND-RX Ciphers. IEEE Trans. Inf. Theory 70(8): 6025-6040 (2024) - [j10]Yufei Yuan, Wenling Wu, Tairong Shi, Lei Zhang, Yu Zhang:
A Framework to Improve the Implementations of Linear Layers. IACR Trans. Symmetric Cryptol. 2024(2): 322-347 (2024) - 2023
- [j9]Kai Zhang, Xuejia Lai, Lei Wang, Jie Guan, Bin Hu, Senpeng Wang, Tairong Shi:
Meet-in-the-middle attack with splice-and-cut technique and a general automatic framework. Des. Codes Cryptogr. 91(9): 2845-2878 (2023) - [j8]Senpeng Wang, Dengguo Feng, Bin Hu, Jie Guan, Kai Zhang, Tairong Shi:
New method for combining Matsui's bounding conditions with sequential encoding method. Des. Codes Cryptogr. 91(11): 3603-3642 (2023) - [j7]Kai Zhang, Xuejia Lai, Lei Wang, Jie Guan, Bin Hu, Senpeng Wang, Tairong Shi:
Rotational-XOR Differential Cryptanalysis and an Automatic Framework for AND-RX Ciphers. IEEE Trans. Inf. Theory 69(2): 1282-1294 (2023) - [c2]Bo Yu, Tairong Shi, Xiaoyang Dong, Xuan Shen, Yiyuan Luo, Bing Sun:
Quantum Attacks: A View of Data Complexity on Offline Simon's Algorithm. Inscrypt (2) 2023: 329-342 - [i5]Senpeng Wang, Dengguo Feng, Bin Hu, Jie Guan, Ting Cui, Tairong Shi, Kai Zhang:
New Methods for Bounding the Length of Impossible Differentials of SPN Block Ciphers. IACR Cryptol. ePrint Arch. 2023: 316 (2023) - 2022
- [j6]Senpeng Wang, Dengguo Feng, Bin Hu, Jie Guan, Tairong Shi:
Practical Attacks on Full-round FRIET. IACR Trans. Symmetric Cryptol. 2022(4): 105-119 (2022) - [i4]Senpeng Wang, Dengguo Feng, Bin Hu, Jie Guan, Tairong Shi, Kai Zhang:
The Simplest SAT Model of Combining Matsui's Bounding Conditions with Sequential Encoding Method. IACR Cryptol. ePrint Arch. 2022: 626 (2022) - [i3]Senpeng Wang, Dengguo Feng, Bin Hu, Jie Guan, Tairong Shi:
Practical Attacks on the Full-round FRIET. IACR Cryptol. ePrint Arch. 2022: 1121 (2022) - 2021
- [j5]Tairong Shi, Wenling Wu, Bin Hu, Jie Guan, Sengpeng Wang:
Breaking LWC candidates: sESTATE and Elephant in quantum setting. Des. Codes Cryptogr. 89(7): 1405-1432 (2021) - 2020
- [j4]Senpeng Wang, Bin Hu, Jie Guan, Kai Zhang, Tairong Shi:
Exploring Secret Keys in Searching Integral Distinguishers Based on Division Property. IACR Trans. Symmetric Cryptol. 2020(3): 288-304 (2020)
2010 – 2019
- 2019
- [j3]Tairong Shi, Jie Guan:
Real-time state recovery attack against MORUS in nonce-misuse setting. Sci. China Inf. Sci. 62(3): 39109:1-39109:3 (2019) - [j2]Tairong Shi, Jie Guan:
Cryptanalysis of the Authentication in ACORN. KSII Trans. Internet Inf. Syst. 13(8): 4060-4075 (2019) - [j1]Tairong Shi, Chenhui Jin, Bin Hu, Jie Guan, Jing-Yi Cui, Sen-Peng Wang:
Complete analysis of Simon's quantum algorithm with additional collisions. Quantum Inf. Process. 18(11): 334 (2019) - [c1]Senpeng Wang, Bin Hu, Jie Guan, Kai Zhang, Tairong Shi:
MILP-aided Method of Searching Division Property Using Three Subsets and Applications. ASIACRYPT (3) 2019: 398-427 - [i2]SenPeng Wang, Bin Hu, Jie Guan, Kai Zhang, Tairong Shi:
A Practical Method to Recover Exact Superpoly in Cube Attack. IACR Cryptol. ePrint Arch. 2019: 259 (2019) - 2018
- [i1]Senpeng Wang, Bin Hu, Jie Guan, Kai Zhang, Tairong Shi:
MILP Method of Searching Integral Distinguishers Based on Division Property Using Three Subsets. IACR Cryptol. ePrint Arch. 2018: 1186 (2018)
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last updated on 2024-10-07 21:25 CEST by the dblp team
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