Jintai Ding

dblp:42/393 · DBLP profile ↗
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71ranked-venue papers
23as first author
16since 2021 · last 2026
0000-0003-1257-7598ORCID · reported

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

Security and privacy · 57 · 20 first-author · 12 since 2021Theory of computation · 5 · 2 first-author · 2 since 2021Systems, architecture and hardware · 4Applied, interdisciplinary, general and emerging computing · 2Computer networks · 1 · 1 first-authorSoftware engineering, systems software and programming languages · 1 · 1 since 2021Databases, data management, data science and information retrieval · 1 · 1 since 2021
YearPublicationVenuePosition
2026 Graeffe-Based Attacks on Poseidon and NTT Lower Bounds
Ziyu Zhao 0002, Antonio Sanso, Giuseppe Vitto, Jintai Ding
CRYPTO (6)4
2026 Towards Large-Scale Lattice Attack: New Lattice Records by Disk-Based Sieving
Ziyu Zhao 0002, Jintai Ding
EUROCRYPT (4)2
2026 Security Analysis on UOV Families with Odd Characteristics: Using Symmetric Algebra
Yuansheng Pan, Xiaoou He, Boru Gong, Jintai Ding
PKC (1)5
2024 Efficient Secure Multi-party Computation for Multi-dimensional Arithmetics and Its Application in Privacy-Preserving Biometric Identification
Dongyu Wu, Bei Liang, Zijie Lu, Jintai Ding
CANS (1)4
2024 Two-Round Post-quantum Private Equality Test and OT from RLWE-Encryption
Shengzhe Meng, Chengrui Dang, Bei Liang, Jintai Ding
ICICS (2)4
2024 Practical and Theoretical Cryptanalysis of VOX
Yuansheng Pan, Xiaoou He, Boru Gong, Jintai Ding
PQCrypto (2)6
2024 Cryptanalysis of the SNOVA Signature Scheme
Peigen Li, Jintai Ding
PQCrypto (2)2
2024 An Improved Practical Key Mismatch Attack Against NTRU
Vishakha, Jintai Ding, Yanbin Pan 0001
PQCrypto (1)3
2022 Light the Signal: Optimization of Signal Leakage Attacks Against LWE-Based Key Exchange
Ruoyu Ding, Nina Bindel, Yanbin Pan 0001, Jintai Ding
ESORICS (1)6
2022 Algebraic Relation of Three MinRank Algebraic Modelings
Jintai Ding
WAIFI2
2022 Revisiting group oriented secret sharing schemes
Kirill Morozov, Jintai Ding
Inf. Sci.5
2022 Analysis and Enhancement of a Lattice-Based Data Outsourcing Scheme With Public Integrity Verification
abstract
Recently, Zhanget al.proposed a lattice-based data outsourcing scheme with public integrity verification (DOPIV), which enables an original data owner to delegate a proxy to generate the signatures of data and outsource them to the cloud server. They employed a third party auditor (TPA) to check the integrity of the outsourced data and any TPA can verify the data integrity efficiently. DOPIV is claimed to achieve proxy-oriented secure data outsourcing as well as storage correctness guarantee. Unfortunately, we find that there exist vulnerabilities in DOPIV which allow the cloud server to simply delete the received data without being noticed by the TPA. Fortunately, we come up with a simple and efficient solution to thwart the proposed attack. Our improved scheme maintains all the features claimed in DOPIV.
Qingxuan Wang, Chi Cheng 0003, Jintai Ding, Zhe Liu 0001
IEEE Trans. Serv. Comput.4
2021 A Systematic Approach and Analysis of Key Mismatch Attacks on Lattice-Based NIST Candidate KEMs
Yanbin Pan 0001, Lei Hu 0003, Jintai Ding
ASIACRYPT (4)6
2021 Efficient Key Recovery for All HFE Signature Variants
Chengdong Tao, Albrecht Petzoldt, Jintai Ding
CRYPTO (1)3
2021 The Nested Subset Differential Attack - A Practical Direct Attack Against LUOV Which Forges a Signature Within 210 Minutes
Jintai Ding, Joshua Deaton, Vishakha, Bo-Yin Yang
EUROCRYPT (1)1
2021 New complexity estimation on the Rainbow-Band-Separation attack
Shuhei Nakamura, Yasuhiko Ikematsu, Yacheng Wang, Jintai Ding, Tsuyoshi Takagi
Theor. Comput. Sci.4
2020 Cryptanalysis of the Lifted Unbalanced Oil Vinegar Signature Scheme
Jintai Ding, Joshua Deaton, Kurt Schmidt, Vishakha
CRYPTO (3)1
2020 A Complete Cryptanalysis of the Post-Quantum Multivariate Signature Scheme Himq-3
Jintai Ding, Joshua Deaton, Lih-Chung Wang
ICICS1
2019 One Sample Ring-LWE with Rounding and Its Application to Key Exchange
Jintai Ding, Xinwei Gao, Tsuyoshi Takagi, Yuntao Wang 0002
ACNS1
2019 A Complete and Optimized Key Mismatch Attack on NIST Candidate NewHope
Jintai Ding
ESORICS (2)3
2019 A Framework for Universally Composable Oblivious Transfer from One-Round Key-Exchange
Pedro Branco 0005, Jintai Ding, Manuel Goulão, Paulo Mateus
IMACC2
2019 Identity-Based Signature Schemes for Multivariate Public Key Cryptosystems
abstract
Abstract In this paper, we proposed an idea to construct a general multivariate public key cryptographic (MPKC) scheme based on a user’s identity. In our construction, each user is distributed a unique identity by the key distribution center (KDC) and we use this key to generate user’s private keys. Thereafter, we use these private keys to produce the corresponding public key. This method can make key generating process easier so that the public key will reduce from dozens of Kilobyte to several bits. We then use our general scheme to construct practical identity-based signature schemes named ID-UOV and ID-Rainbow based on two well-known and promising MPKC signature schemes, respectively. Finally, we present the security analysis and give experiments for all of our proposed schemes and the baseline schemes. Comparison shows that our schemes are both efficient and practical.
Jiahui Chen 0002, Jie Ling 0002, Jianting Ning, Jintai Ding
Comput. J.4
2018 Complete Attack on RLWE Key Exchange with Reused Keys, Without Signal Leakage
Jintai Ding, Scott R. Fluhrer, R. V. Saraswathy
ACISP1
2018 Improved Cryptanalysis of HFEv- via Projection
Jintai Ding, Ray A. Perlner, Albrecht Petzoldt, Daniel Smith-Tone
PQCrypto1
2018 Practical Randomized RLWE-Based Key Exchange Against Signal Leakage Attack
abstract
Ring Learning With Errors (RLWE)-based key exchange is one of the most efficient and secure primitive for post-quantum cryptography. One common approach to achieve key exchange over RLWE is error reconciliation. Recently, an efficient attack against reconciliation-based RLWE key exchange protocols with reused keys was proposed. This attack can recover a long-term private key if a key pair is reused. We also know that in the real world, key reuse is commonly adopted in applications like the Transport Layer Security (TLS) protocol to improve performance. Directly motivated by this attack, we construct a new randomized RLWE-based key exchange protocol against this attack. Our lightweight approach incorporates an additional ephemeral public error term into key exchange materials, so that this attack no longer works. With the same attack, we practically show that the signal value of our protocol is indistinguishable from uniform random, therefore, this attack no longer works. We explain how the attack fails, present 200-bit classic and 80-bit quantum secure parameter choice, efficient implementations, comparisons and discussion. Benchmark shows our protocol is truly efficient and even faster than related vulnerable protocols.
Xinwei Gao, Jintai Ding, Lin Li 0041, Jiqiang Liu
IEEE Trans. Computers2
2017 Post-Quantum Secure Remote Password Protocol from RLWE Problem
Xinwei Gao, Jintai Ding, Jiqiang Liu, Lin Li 0041
Inscrypt2
2017 Provably Secure Password Authenticated Key Exchange Based on RLWE for the Post-Quantum World
Jintai Ding, Saed Alsayigh, Jean Lancrenon, R. V. Saraswathy, Michael Snook
CT-RSA1
2017 Leakage of signal function with reused keys in RLWE key exchange
abstract
In this paper, we show that the signal function used in Ring-Learning with Errors (RLWE) key exchange could leak information to find the secret s of a reused public key p = as+2e. This work is motivated by an attack proposed in [1] and gives an insight into how public keys reused for long term in RLWE key exchange protocols can be exploited. This work specifically focuses on the attack on the KE protocol in [2] by initiating multiple sessions with the honest party and analyze the output of the signal function. Experiments have confirmed the success of our attack in recovering the secret.
Jintai Ding, Saed Alsayigh, R. V. Saraswathy, Scott R. Fluhrer, Xiaodong Lin 0004
ICC1
2017 Fast Discretized Gaussian Sampling and Post-quantum TLS Ciphersuite
Xinwei Gao, Lin Li 0041, Jintai Ding, Jiqiang Liu, R. V. Saraswathy, Zhe Liu 0001
ISPEC3
2017 HMFEv - An Efficient Multivariate Signature Scheme
Albrecht Petzoldt, Ming-Shing Chen, Jintai Ding, Bo-Yin Yang
PQCrypto3
2016 Extension Field Cancellation: A New Central Trapdoor for Multivariate Quadratic Systems
Alan Szepieniec, Jintai Ding, Bart Preneel
PQCrypto2
2015 Design Principles for HFEv- Based Multivariate Signature Schemes
Albrecht Petzoldt, Ming-Shing Chen, Bo-Yin Yang, Chengdong Tao, Jintai Ding
ASIACRYPT (1)5
2015 Authenticated Key Exchange from Ideal Lattices
Jiang Zhang 0001, Zhenfeng Zhang, Jintai Ding, Michael Snook, Özgür Dagdelen
EUROCRYPT (2)3
2014 The Cubic Simple Matrix Encryption Scheme
Jintai Ding, Albrecht Petzoldt, Lih-Chung Wang
PQCrypto1
2014 ZHFE, a New Multivariate Public Key Encryption Scheme
Jaiberth Porras, John Baena, Jintai Ding
PQCrypto3
2014 Provably Secure Group Key Management Approach Based upon Hyper-Sphere
abstract
Secure group communication systems have become increasingly important for many emerging network applications. An efficient and robust group key management approach is indispensable to a secure group communication system. Motivated by the theory of hyper-sphere, this paper presents a new group key management approach with a group controller (GC). In our new design, a hyper-sphere is constructed for a group and each member in the group corresponds to a point on the hyper-sphere, which is called the member's private point. The GC computes the central point of the hyper-sphere, intuitively, whose “distance” from each member's private point is identical. The central point is published such that each member can compute a common group key, using a function by taking each member's private point and the central point of the hyper-sphere as the input. This approach is provably secure under the pseudo-random function (PRF) assumption. Compared with other similar schemes, by both theoretical analysis and experiments, our scheme (1) has significantly reduced memory and computation load for each group member; (2) can efficiently deal with massive membership change with only two re-keying messages, i.e., the central point of the hyper-sphere and a random number; and (3) is efficient and very scalable for large-size groups.
Shaohua Tang, Niu Liu, Xinyi Huang 0001, Jintai Ding
IEEE Trans. Parallel Distributed Syst.5
2013 A Practical Attack on Patched MIFARE Classic
Yi-Hao Chiu, Wei-Chih Hong, Li-Ping Chou, Jintai Ding, Bo-Yin Yang, Chen-Mou Cheng
Inscrypt4
2013 Degree of Regularity for HFEv and HFEv-
Jintai Ding, Bo-Yin Yang
PQCrypto1
2013 Simple Matrix Scheme for Encryption
Chengdong Tao, Adama Diene, Shaohua Tang, Jintai Ding
PQCrypto4
2012 An Algebraic Broadcast Attack against NTRU
Jintai Ding, Yanbin Pan 0001, Yingpu Deng
ACISP1
2012 Embedded Surface Attack on Multivariate Public Key Cryptosystems from Diophantine Equations
Jintai Ding, Ai Ren, Chengdong Tao
Inscrypt1
2011 Inverting HFE Systems Is Quasi-Polynomial for All Fields
Jintai Ding, Timothy J. Hodges
CRYPTO1
2011 Kipnis-Shamir Attack on Unbalanced Oil-Vinegar Scheme
Lei Hu 0003, Jintai Ding, Zhijun Yin
ISPEC3
2011 Linear algebra to compute syzygies and Gröbner bases
abstract
In this paper, we introduce a new method to avoid zero reductions in Gröbner basis computation. We call this method LASyz, which stands for Lineal Algebra to compute Syzygies. LASyz uses exhaustively the information of both principal syzygies and non-trivial syzygies to avoid zero reductions. All computation is done using linear algebra techniques. LASyz is easy to understand and implement. The method does not require to compute Gröbner bases of subsequences of generators incrementally and it imposes no restrictions on the reductions allowed. We provide a complete theoretical foundation for the LASyz method and we describe an algorithm to compute Gröbner bases for zero dimensional ideals based on this foundation. A qualitative comparison with similar algorithms is provided and the performance of the algorithm is illustrated with experimental data.
Daniel Cabarcas, Jintai Ding
ISSAC2
2011 Algebraic solvers for certain lattice-related problems
abstract
In this paper, we present a new algorithm to solve algebraically the following lattice-related problems: 1) the small integer solution (SIS) problem under the condition: if the solution is bounded by an integer β in l∞norm, which we call a bounded SIS (BSIS) problem, and if the difference between the row dimension n and the column dimension m of the corresponding basis matrix is relatively small with respect the row dimension m; 2) the learning with errors (LWE) problems under the condition: if the errors are bounded - the errors do not span the whole prime finite field Fqbut a fixed known subset of size D (D <; q), which we call a learning with bounded errors (LWBE) problem. We will show that we can solve these problems with polynomial complexity.
Jintai Ding
ITW1
2011 High-Speed Hardware Implementation of Rainbow Signature on FPGAs
Shaohua Tang, Haibo Yi, Jintai Ding, Huan Chen 0004, Guomin Chen
PQCrypto3
2010 Practical Algebraic Cryptanalysis for Dragon-Based Cryptosystems
Johannes Buchmann 0001, Stanislav Bulygin, Jintai Ding, Wael Said, Fabian Werner
CANS3
2010 Cryptanalysis of Two Quartic Encryption Schemes and One Improved MFE Scheme
Xuyun Nie, Lei Hu 0003, Xiling Tang, Jintai Ding
PQCrypto5
2010 Secure Variants of the Square Encryption Scheme
Crystal Lee Clough, Jintai Ding
PQCrypto2
2010 Growth of the Ideal Generated by a Quadratic Boolean Function
Jintai Ding, Timothy J. Hodges, Victoria Kruglov
PQCrypto1
2010 Mutant Zhuang-Zi Algorithm
Jintai Ding, Dieter Schmidt
PQCrypto1
2009 Algebraic Attack on the MQQ Public Key Cryptosystem
Mohamed Saied Emam Mohamed, Jintai Ding, Johannes Buchmann 0001, Fabian Werner
CANS2
2009 SSE Implementation of Multivariate PKCs on Modern x86 CPUs
Anna Inn-Tung Chen, Ming-Shing Chen, Tien-Ren Chen, Chen-Mou Cheng, Jintai Ding, Eric Li-Hsiang Kuo, Frost Yu-Shuang Lee, Bo-Yin Yang
CHES5
2009 Square, a New Multivariate Encryption Scheme
Crystal Lee Clough, John Baena, Jintai Ding, Bo-Yin Yang, Ming-Shing Chen
CT-RSA3
2008 New Differential-Algebraic Attacks and Reparametrization of Rainbow
Jintai Ding, Bo-Yin Yang, Chia-Hsin Owen Chen, Ming-Shing Chen, Chen-Mou Cheng
ACNS1
2008 Fast multivariate signature generation in hardware: The case of rainbow
abstract
This paper presents a time-area efficient hardware architecture for the multivariate signature scheme Rainbow. As a part of this architecture, a high-performance hardware optimized variant of the well-known Gaussian elimination over GF(2l) and its efficient implementation are presented. The resulting signature generation core of Rainbow requires 63,593 gate equivalents and signs a message in just 804 clock cycles at 67 MHz using AMI 0.35μm CMOS technology. Thus, Rainbow provides significant performance improvements compared to RSA and ECDSA.
Sundar Balasubramanian, Harold W. Carter, Andrey Bogdanov, Andy Rupp, Jintai Ding
ASAP5
2008 Fast Multivariate Signature Generation in Hardware: The Case of Rainbow
abstract
This paper deals with the design of an area-time efficient hardware architecture for the multivariate signature scheme, Rainbow. As a part of this architecture, a high-performance hardware optimized variant of the well-known Gaussian elimination over GF(2l) and its efficient implementation is presented. Besides solving LSEs, the architecture is also re-used for the linear transformation operations of the scheme, thereby saving on area. The resulting signature generation core of Rainbow requires 63,593 gate equivalents and signs a message in just 804 clock cycles. A comparison of our architecture with implementations of the RSA, the ECDSA and the en-TTS scheme shows that Rainbow in hardware provides significant performance improvements.
Sundar Balasubramanian, Andrey Bogdanov, Andy Rupp, Jintai Ding, Harold W. Carter
FCCM4
2008 Could SFLASH be Repaired?
Jintai Ding, Vivien Dubois, Bo-Yin Yang, Chia-Hsin Owen Chen, Chen-Mou Cheng
ICALP (2)1
2008 Algebraic Attack on HFE Revisited
Jintai Ding, Dieter Schmidt, Fabian Werner
ISC1
2008 Square-Vinegar Signature Scheme
John Baena, Crystal Lee Clough, Jintai Ding
PQCrypto3
2008 Cryptanalysis of Rational Multivariate Public Key Cryptosystems
Jintai Ding, John Wagner
PQCrypto1
2008 MXL2: Solving Polynomial Equations over GF(2) Using an Improved Mutant Strategy
Mohamed Saied Emam Mohamed, Wael Said, Jintai Ding, Johannes Buchmann 0001
PQCrypto3
2007 Analysis of the SMS4 Block Cipher
Jintai Ding, Shuwang Lü, Andrei Pyshkin, Ralf-Philipp Weinmann
ACISP4
2007 Cryptanalysis of the TRMC-4 Public Key Cryptosystem
Xuyun Nie, Lei Hu 0003, Jintai Ding, John Wagner
ACNS3
2007 Multivariates Polynomials for Hashing
Jintai Ding, Bo-Yin Yang
Inscrypt1
2007 Kipnis-Shamir Attack on HFE Revisited
Jintai Ding, Lei Hu 0003
Inscrypt2
2006 Breaking a New Instance of TTM Cryptosystems
Xuyun Nie, Crystal Updegrove, Jintai Ding
ACNS5
2005 Rainbow, a New Multivariable Polynomial Signature Scheme
Jintai Ding, Dieter Schmidt
ACNS1
2005 Perturbed Hidden Matrix Cryptosystems
Zhiping Wu, Jintai Ding, Jason E. Gower, Dingfeng Ye
ICCSA (2)2
2005 Cryptanalysis of PASS II and MiniPass
Bok-Min Goi, Jintai Ding, Mohammad Umar Siddiqi
ICICS2
2005 Complexity Estimates for the F4 Attack on the Perturbed Matsumoto-Imai Cryptosystem
Jintai Ding, Jason E. Gower, Dieter Schmidt, Christopher Wolf, Zhijun Yin
IMACC1