Keting Jia

dblp:51/7169 · DBLP profile ↗
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28ranked-venue papers
4as first author
9since 2021 · last 2025
0000-0002-6396-8882ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 20 · 4 first-author · 4 since 2021Applied, interdisciplinary, general and emerging computing · 7 · 4 since 2021Systems, architecture and hardware · 1 · 1 since 2021
YearPublicationVenuePosition
2025 New Collision Attacks on Round-Reduced SHA-512
Yingxin Li, Fukang Liu, Gaoli Wang, Haifeng Qian, Keting Jia
CRYPTO (5)5
2025 Lumi: Lightweight Blockchain Layer 2 Protocol from On-chain Coordination
abstract
Layer 2 is one of the most promising approaches to improve the scalability of blockchains. The idea is to shift some tasks (e.g., ordering and execution of some transactions) off the mainchain (i.e., layer 1) to reduce the workload of the mainchain. In this work, we study the so-called committee-based layer 2 approaches. Being conceptually similar to sharding, committee-based layer 2 approaches allow committees to order and execute transactions in parallel to further improve the performance of the system. Different from existing committee-based layer 2 solutions that often prioritize low latency over high throughput, our solution strives to achieve both low latency and high throughput. The technical building blocks include a lightweight primary-backup design for off-chain committees, an efficient on-chain lease management design for managing the primaries, and a one-phase solution for cross-committee transactions (i.e., transactions that need to be processed by multiple committees). Experimental results show that our solution achieves both low latency and high throughput and can be deployed on even low-end machines.
Shuhe Cao, Keting Jia, Qidi You, Sisi Duan
ICDCS3
2025 Does Finality Gadget Finalize Your Block? A Case Study of Binance Consensus
Rujia Li 0001, Jingyuan Ding, Qin Wang 0008, Keting Jia, Sisi Duan
USENIX Security Symposium4
2025 Exploiting output bits and the χ operation in MitM preimage attacks on Keccak
Tianling Weng, Gaoli Wang, Keting Jia, Xiaoyang Dong 0001, Siwei Sun, Tingting Cui
Des. Codes Cryptogr.3
2024 Improved Related-Key Rectangle Attacks On GIFT
abstract
Abstract GIFT is a lightweight cipher proposed by Banik et al. at CHES’17, motivated by the design strategy of PRESENT. GIFT-64[2021] is a variant of GIFT proposed by Sun et al. at EUROCRYPT’22 to achieve better resistance against differential attack while maintaining a similar security level against linear attack. At EUROCRYPT’22, Dong et al. proposed a new rectangle framework considering the key guessing strategies for linear key-schedule ciphers, and established a uniform automatic search model for the whole rectangle attack. In this paper, we extend it to be applicable to bit-oriented ciphers, and construct an automatic search model involved in the distinguisher and key-recovery phase for GIFT. Moreover, we utilize the key relations of the linear key-schedule to the model, and find some new distinguishers both for GIFT-64 and GIFT-64[2021]. To evaluate the probability more accurately, we propose a method to calculate the probability of the 2-round middle part which connects the boomerang distinguisher for GIFT, and apply it with the SAT method to evaluate the probability of the whole distinguishers. As a result, we search out a new 20-round related-key boomerang distinguisher for GIFT-64, and achieve a 26-round attack with better time complexity than the best previous attack. For GIFT-64[2021], we find a 20-round boomerang distinguisher and give the first 26-round rectangle attack under related-key scenario.
Qingyuan Yu, Lingyue Qin, Xiaoyang Dong 0001, Keting Jia
Comput. J.4
2022 Differential Cryptanalysis of Round-Reduced SPEEDY Family
Qingyuan Yu, Keting Jia, Guangnan Zou, Guoyan Zhang
Inscrypt2
2021 New automatic tool for finding impossible differentials and zero-correlation linear approximations
Tingting Cui, Keting Jia
Sci. China Inf. Sci.5
2021 Key-dependent cube attack on reduced Frit permutation in Duplex-AE modes
Lingyue Qin, Xiaoyang Dong 0001, Keting Jia, Rui Zong
Sci. China Inf. Sci.3
2021 Interpolation Attacks on Round-Reduced Elephant, Kravatte and Xoofff
abstract
Abstract We introduce an interpolation attack using the Moebius Transform. This can reduce the time complexity to get a linear system of equations for specified intermediate state bits, which is general to cryptanalysis of some ciphers with update function of low algebraic degree. Along this line, we perform an interpolation attack against Elephant-Delirium, a round 2 submission of the ongoing national institute of standards and technology (NIST) lightweight cryptography project. This is the first third-party cryptanalysis on this cipher. Moreover, we promote the interpolation attack by applying it to the Farfalle pseudo-random constructions Kravatte and Xoofff. Our attacks turn out to be the most efficient method for these ciphers thus far.
Rui Zong, Xiaoyang Dong 0001, Keting Jia, Willi Meier
Comput. J.4
2020 Analysis of blockchain protocol against static adversarial miners corrupted by long delay attackers
Puwen Wei, Keting Jia, Haiyang Xue
Sci. China Inf. Sci.3
2020 Practical Key-Recovery Attacks On Round-Reduced Ketje Jr, Xoodoo-AE And Xoodyak
abstract
Abstract A new conditional cube attack was proposed by Li et al. at ToSC 2019 for cryptanalysis of Keccak keyed modes. In this paper, we find a new property of Li et al.’s method. The conditional cube attack is modified and applied to cryptanalysis of 5-round Ketje Jr, 6-round Xoodoo-AE and Xoodyak, where Ketje Jr is among the third round CAESAR competition candidates and Xoodyak is a Round 2 submission of the ongoing NIST lightweight cryptography project. For the updated conditional cube attack, all our results are shown to be of practical time complexity with negligible memory cost, and test codes are provided. Notably, our results on Xoodyak represent the first third-party cryptanalysis for Xoodyak.
Zheng Li 0008, Xiaoyang Dong 0001, Keting Jia, Willi Meier
Comput. J.4
2020 Generalized related-key rectangle attacks on block ciphers with linear key schedule: applications to SKINNY and GIFT
Boxin Zhao, Xiaoyang Dong 0001, Willi Meier, Keting Jia, Gaoli Wang
Des. Codes Cryptogr.4
2019 Provably Secure Three-Party Password-Based Authenticated Key Exchange from RLWE
Chao Liu 0060, Zhongxiang Zheng, Keting Jia, Qidi You
ISPEC3
2019 Identity-Concealed Authenticated Encryption from Ring Learning with Errors
Chao Liu 0060, Zhongxiang Zheng, Keting Jia, Limin Tao
ProvSec3
2018 Differential attacks on reduced SIMON versions with dynamic key-guessing techniques
Xiaoyun Wang 0001, Keting Jia
Sci. China Inf. Sci.3
2016 Impossible Differential Cryptanalysis of 14-Round Camellia-192
Keting Jia
ACISP (2)1
2016 Cryptanalysis of Reduced NORX
Nasour Bagheri, Tao Huang 0015, Keting Jia, Florian Mendel, Yu Sasaki 0001
FSE3
2015 Improved Attacks on Reduced-Round Camellia-128/192/256
Xiaoyang Dong 0001, Leibo Li, Keting Jia, Xiaoyun Wang 0001
CT-RSA3
2015 Meet-in-the-Middle Technique for Truncated Differential and Its Applications to CLEFIA and Camellia
Leibo Li, Keting Jia, Xiaoyun Wang 0001, Xiaoyang Dong 0001
FSE2
2014 Improved Single-Key Attacks on 9-Round AES-192/256
Leibo Li, Keting Jia, Xiaoyun Wang 0001
FSE2
2012 Improved Cryptanalysis of the Block Cipher KASUMI
Keting Jia, Leibo Li, Christian Rechberger, Jiazhe Chen, Xiaoyun Wang 0001
Selected Areas in Cryptography1
2011 New Impossible Differential Attacks of Reduced-Round Camellia-192 and Camellia-256
Jiazhe Chen, Keting Jia, Xiaoyun Wang 0001
ACISP2
2011 New Impossible Differential Cryptanalysis of Reduced-Round Camellia
Leibo Li, Jiazhe Chen, Keting Jia
CANS3
2010 Pseudo-Cryptanalysis of Luffa
Keting Jia, Yvo Desmedt, Lidong Han, Xiaoyun Wang 0001
Inscrypt1
2010 Improved Related-Key Boomerang Attacks on Round-Reduced Threefish-512
Jiazhe Chen, Keting Jia
ISPEC2
2009 Distinguishing and Second-Preimage Attacks on CBC-Like MACs
Keting Jia, Xiaoyun Wang 0001, Guangwu Xu
CANS1
2009 New Birthday Attacks on Some MACs Based on Block Ciphers
Wei Wang 0035, Keting Jia, Guangwu Xu, Xiaoyun Wang 0001
CRYPTO3
2009 New Distinguishing Attack on MAC Using Secret-Prefix Method
Xiaoyun Wang 0001, Wei Wang 0035, Keting Jia, Meiqin Wang 0001
FSE3